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compile.c revision 1.47.16.1
      1  1.47.16.1    martin /*	$NetBSD: compile.c,v 1.47.16.1 2020/04/13 08:05:47 martin Exp $	*/
      2       1.15       tls 
      3        1.1       alm /*-
      4       1.41  christos  * Copyright (c) 1992 Diomidis Spinellis.
      5        1.9       cgd  * Copyright (c) 1992, 1993
      6        1.9       cgd  *	The Regents of the University of California.  All rights reserved.
      7        1.1       alm  *
      8        1.1       alm  * This code is derived from software contributed to Berkeley by
      9        1.1       alm  * Diomidis Spinellis of Imperial College, University of London.
     10        1.1       alm  *
     11        1.1       alm  * Redistribution and use in source and binary forms, with or without
     12        1.1       alm  * modification, are permitted provided that the following conditions
     13        1.1       alm  * are met:
     14        1.1       alm  * 1. Redistributions of source code must retain the above copyright
     15        1.1       alm  *    notice, this list of conditions and the following disclaimer.
     16        1.1       alm  * 2. Redistributions in binary form must reproduce the above copyright
     17        1.1       alm  *    notice, this list of conditions and the following disclaimer in the
     18        1.1       alm  *    documentation and/or other materials provided with the distribution.
     19       1.25       agc  * 3. Neither the name of the University nor the names of its contributors
     20       1.25       agc  *    may be used to endorse or promote products derived from this software
     21       1.25       agc  *    without specific prior written permission.
     22       1.25       agc  *
     23       1.25       agc  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     24       1.25       agc  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     25       1.25       agc  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     26       1.25       agc  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     27       1.25       agc  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     28       1.25       agc  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     29       1.25       agc  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     30       1.25       agc  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     31       1.25       agc  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     32       1.25       agc  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     33       1.25       agc  * SUCH DAMAGE.
     34       1.25       agc  */
     35       1.25       agc 
     36       1.34   gdamore #if HAVE_NBTOOL_CONFIG_H
     37       1.34   gdamore #include "nbtool_config.h"
     38       1.34   gdamore #endif
     39       1.34   gdamore 
     40       1.17     lukem #include <sys/cdefs.h>
     41  1.47.16.1    martin __RCSID("$NetBSD: compile.c,v 1.47.16.1 2020/04/13 08:05:47 martin Exp $");
     42       1.41  christos #ifdef __FBSDID
     43       1.41  christos __FBSDID("$FreeBSD: head/usr.bin/sed/compile.c 259132 2013-12-09 18:57:20Z eadler $");
     44       1.41  christos #endif
     45       1.41  christos 
     46       1.43  christos #if 0
     47       1.43  christos static const char sccsid[] = "@(#)compile.c	8.1 (Berkeley) 6/6/93";
     48       1.43  christos #endif
     49       1.43  christos 
     50        1.1       alm #include <sys/types.h>
     51        1.1       alm #include <sys/stat.h>
     52        1.1       alm 
     53        1.1       alm #include <ctype.h>
     54       1.41  christos #include <err.h>
     55        1.1       alm #include <errno.h>
     56        1.1       alm #include <fcntl.h>
     57        1.1       alm #include <limits.h>
     58        1.1       alm #include <regex.h>
     59        1.1       alm #include <stdio.h>
     60        1.1       alm #include <stdlib.h>
     61        1.1       alm #include <string.h>
     62       1.41  christos #include <wchar.h>
     63        1.1       alm 
     64        1.1       alm #include "defs.h"
     65        1.1       alm #include "extern.h"
     66        1.1       alm 
     67        1.9       cgd #define LHSZ	128
     68        1.9       cgd #define	LHMASK	(LHSZ - 1)
     69        1.9       cgd static struct labhash {
     70        1.9       cgd 	struct	labhash *lh_next;
     71        1.9       cgd 	u_int	lh_hash;
     72        1.9       cgd 	struct	s_command *lh_cmd;
     73        1.9       cgd 	int	lh_ref;
     74        1.9       cgd } *labels[LHSZ];
     75        1.9       cgd 
     76       1.24       wiz static char	 *compile_addr(char *, struct s_addr *);
     77       1.24       wiz static char	 *compile_ccl(char **, char *);
     78       1.41  christos static char	 *compile_delimited(char *, char *, int);
     79       1.24       wiz static char	 *compile_flags(char *, struct s_subst *);
     80       1.41  christos static regex_t	 *compile_re(char *, int);
     81       1.24       wiz static char	 *compile_subst(char *, struct s_subst *);
     82       1.24       wiz static char	 *compile_text(void);
     83       1.41  christos static char	 *compile_tr(char *, struct s_tr **);
     84        1.1       alm static struct s_command
     85       1.24       wiz 		**compile_stream(struct s_command **);
     86       1.36     lukem static char	 *duptoeol(char *, const char *);
     87       1.24       wiz static void	  enterlabel(struct s_command *);
     88        1.1       alm static struct s_command
     89       1.24       wiz 		 *findlabel(char *);
     90       1.24       wiz static void	  fixuplabel(struct s_command *, struct s_command *);
     91       1.24       wiz static void	  uselabel(void);
     92  1.47.16.1    martin static void	  parse_escapes(char *);
     93        1.1       alm 
     94        1.1       alm /*
     95        1.1       alm  * Command specification.  This is used to drive the command parser.
     96        1.1       alm  */
     97        1.1       alm struct s_format {
     98        1.1       alm 	char code;				/* Command code */
     99        1.1       alm 	int naddr;				/* Number of address args */
    100        1.1       alm 	enum e_args args;			/* Argument type */
    101        1.1       alm };
    102        1.1       alm 
    103        1.1       alm static struct s_format cmd_fmts[] = {
    104        1.1       alm 	{'{', 2, GROUP},
    105       1.14   mycroft 	{'}', 0, ENDGROUP},
    106        1.1       alm 	{'a', 1, TEXT},
    107        1.1       alm 	{'b', 2, BRANCH},
    108        1.1       alm 	{'c', 2, TEXT},
    109        1.1       alm 	{'d', 2, EMPTY},
    110        1.1       alm 	{'D', 2, EMPTY},
    111        1.1       alm 	{'g', 2, EMPTY},
    112        1.1       alm 	{'G', 2, EMPTY},
    113        1.1       alm 	{'h', 2, EMPTY},
    114        1.1       alm 	{'H', 2, EMPTY},
    115        1.1       alm 	{'i', 1, TEXT},
    116        1.1       alm 	{'l', 2, EMPTY},
    117        1.1       alm 	{'n', 2, EMPTY},
    118        1.1       alm 	{'N', 2, EMPTY},
    119        1.1       alm 	{'p', 2, EMPTY},
    120        1.1       alm 	{'P', 2, EMPTY},
    121        1.1       alm 	{'q', 1, EMPTY},
    122        1.1       alm 	{'r', 1, RFILE},
    123        1.1       alm 	{'s', 2, SUBST},
    124        1.1       alm 	{'t', 2, BRANCH},
    125        1.1       alm 	{'w', 2, WFILE},
    126        1.1       alm 	{'x', 2, EMPTY},
    127        1.1       alm 	{'y', 2, TR},
    128        1.1       alm 	{'!', 2, NONSEL},
    129        1.1       alm 	{':', 0, LABEL},
    130        1.1       alm 	{'#', 0, COMMENT},
    131        1.1       alm 	{'=', 1, EMPTY},
    132        1.1       alm 	{'\0', 0, COMMENT},
    133        1.1       alm };
    134        1.1       alm 
    135        1.1       alm /* The compiled program. */
    136        1.1       alm struct s_command *prog;
    137        1.1       alm 
    138        1.1       alm /*
    139        1.1       alm  * Compile the program into prog.
    140        1.1       alm  * Initialise appends.
    141        1.1       alm  */
    142        1.1       alm void
    143       1.24       wiz compile(void)
    144        1.1       alm {
    145       1.14   mycroft 	*compile_stream(&prog) = NULL;
    146        1.9       cgd 	fixuplabel(prog, NULL);
    147        1.9       cgd 	uselabel();
    148       1.46  christos 	if (appendnum > 0)
    149       1.46  christos 		appends = xmalloc(sizeof(struct s_appends) * appendnum);
    150       1.46  christos 	match = xmalloc((maxnsub + 1) * sizeof(regmatch_t));
    151        1.1       alm }
    152        1.1       alm 
    153       1.41  christos #define EATSPACE() do {							\
    154       1.41  christos 	if (p)								\
    155       1.41  christos 		while (*p && isspace((unsigned char)*p))                \
    156       1.41  christos 			p++;						\
    157       1.41  christos 	} while (0)
    158        1.1       alm 
    159        1.1       alm static struct s_command **
    160       1.24       wiz compile_stream(struct s_command **link)
    161       1.14   mycroft {
    162       1.17     lukem 	char *p;
    163       1.41  christos 	static char lbuf[_POSIX2_LINE_MAX + 1];	/* To save stack */
    164       1.14   mycroft 	struct s_command *cmd, *cmd2, *stack;
    165        1.1       alm 	struct s_format *fp;
    166       1.41  christos 	char re[_POSIX2_LINE_MAX + 1];
    167        1.1       alm 	int naddr;				/* Number of addresses */
    168        1.1       alm 
    169       1.14   mycroft 	stack = 0;
    170        1.1       alm 	for (;;) {
    171       1.41  christos 		if ((p = cu_fgets(lbuf, sizeof(lbuf), NULL)) == NULL) {
    172       1.14   mycroft 			if (stack != 0)
    173       1.41  christos 				errx(1, "%lu: %s: unexpected EOF (pending }'s)",
    174       1.41  christos 							linenum, fname);
    175        1.1       alm 			return (link);
    176        1.1       alm 		}
    177        1.1       alm 
    178        1.1       alm semicolon:	EATSPACE();
    179       1.41  christos 		if (p) {
    180       1.41  christos 			if (*p == '#' || *p == '\0')
    181       1.41  christos 				continue;
    182       1.41  christos 			else if (*p == ';') {
    183       1.41  christos 				p++;
    184       1.41  christos 				goto semicolon;
    185       1.41  christos 			}
    186       1.20    kleink 		}
    187        1.1       alm 		*link = cmd = xmalloc(sizeof(struct s_command));
    188        1.1       alm 		link = &cmd->next;
    189       1.41  christos 		cmd->startline = cmd->nonsel = 0;
    190        1.1       alm 		/* First parse the addresses */
    191        1.1       alm 		naddr = 0;
    192        1.1       alm 
    193        1.1       alm /* Valid characters to start an address */
    194        1.1       alm #define	addrchar(c)	(strchr("0123456789/\\$", (c)))
    195        1.1       alm 		if (addrchar(*p)) {
    196        1.1       alm 			naddr++;
    197        1.1       alm 			cmd->a1 = xmalloc(sizeof(struct s_addr));
    198        1.1       alm 			p = compile_addr(p, cmd->a1);
    199        1.1       alm 			EATSPACE();				/* EXTENSION */
    200        1.1       alm 			if (*p == ',') {
    201        1.1       alm 				p++;
    202        1.1       alm 				EATSPACE();			/* EXTENSION */
    203       1.13   mycroft 				naddr++;
    204        1.1       alm 				cmd->a2 = xmalloc(sizeof(struct s_addr));
    205        1.1       alm 				p = compile_addr(p, cmd->a2);
    206       1.13   mycroft 				EATSPACE();
    207       1.12   mycroft 			} else
    208       1.12   mycroft 				cmd->a2 = 0;
    209       1.12   mycroft 		} else
    210       1.13   mycroft 			cmd->a1 = cmd->a2 = 0;
    211        1.1       alm 
    212        1.1       alm nonsel:		/* Now parse the command */
    213        1.1       alm 		if (!*p)
    214       1.41  christos 			errx(1, "%lu: %s: command expected", linenum, fname);
    215        1.1       alm 		cmd->code = *p;
    216        1.1       alm 		for (fp = cmd_fmts; fp->code; fp++)
    217        1.1       alm 			if (fp->code == *p)
    218        1.1       alm 				break;
    219        1.1       alm 		if (!fp->code)
    220       1.41  christos 			errx(1, "%lu: %s: invalid command code %c", linenum, fname, *p);
    221        1.1       alm 		if (naddr > fp->naddr)
    222       1.41  christos 			errx(1,
    223       1.41  christos 				"%lu: %s: command %c expects up to %d address(es), found %d",
    224       1.41  christos 				linenum, fname, *p, fp->naddr, naddr);
    225        1.1       alm 		switch (fp->args) {
    226        1.1       alm 		case NONSEL:			/* ! */
    227       1.13   mycroft 			p++;
    228       1.13   mycroft 			EATSPACE();
    229        1.1       alm 			cmd->nonsel = ! cmd->nonsel;
    230        1.1       alm 			goto nonsel;
    231        1.1       alm 		case GROUP:			/* { */
    232        1.1       alm 			p++;
    233        1.1       alm 			EATSPACE();
    234       1.14   mycroft 			cmd->next = stack;
    235       1.14   mycroft 			stack = cmd;
    236       1.14   mycroft 			link = &cmd->u.c;
    237       1.14   mycroft 			if (*p)
    238       1.14   mycroft 				goto semicolon;
    239       1.14   mycroft 			break;
    240       1.14   mycroft 		case ENDGROUP:
    241       1.12   mycroft 			/*
    242       1.12   mycroft 			 * Short-circuit command processing, since end of
    243       1.12   mycroft 			 * group is really just a noop.
    244       1.12   mycroft 			 */
    245       1.14   mycroft 			cmd->nonsel = 1;
    246       1.14   mycroft 			if (stack == 0)
    247       1.41  christos 				errx(1, "%lu: %s: unexpected }", linenum, fname);
    248       1.14   mycroft 			cmd2 = stack;
    249       1.14   mycroft 			stack = cmd2->next;
    250       1.14   mycroft 			cmd2->next = cmd;
    251       1.14   mycroft 			/*FALLTHROUGH*/
    252        1.1       alm 		case EMPTY:		/* d D g G h H l n N p P q x = \0 */
    253        1.1       alm 			p++;
    254        1.1       alm 			EATSPACE();
    255       1.40  christos 			switch (*p) {
    256       1.40  christos 			case ';':
    257        1.1       alm 				p++;
    258        1.1       alm 				link = &cmd->next;
    259        1.1       alm 				goto semicolon;
    260       1.40  christos 			case '}':
    261       1.40  christos 				goto semicolon;
    262       1.40  christos 			case '\0':
    263       1.40  christos 				break;
    264       1.40  christos 			default:
    265       1.41  christos 				errx(1, "%lu: %s: extra characters at the end of %c command",
    266       1.41  christos 						linenum, fname, cmd->code);
    267       1.40  christos 			}
    268        1.1       alm 			break;
    269        1.1       alm 		case TEXT:			/* a c i */
    270        1.1       alm 			p++;
    271        1.1       alm 			EATSPACE();
    272        1.1       alm 			if (*p != '\\')
    273       1.41  christos 				errx(1,
    274       1.41  christos "%lu: %s: command %c expects \\ followed by text", linenum, fname, cmd->code);
    275        1.1       alm 			p++;
    276        1.1       alm 			EATSPACE();
    277        1.1       alm 			if (*p)
    278       1.41  christos 				errx(1,
    279       1.41  christos 				"%lu: %s: extra characters after \\ at the end of %c command",
    280       1.41  christos 				linenum, fname, cmd->code);
    281        1.1       alm 			cmd->t = compile_text();
    282        1.1       alm 			break;
    283        1.1       alm 		case COMMENT:			/* \0 # */
    284        1.1       alm 			break;
    285        1.1       alm 		case WFILE:			/* w */
    286        1.1       alm 			p++;
    287        1.1       alm 			EATSPACE();
    288        1.1       alm 			if (*p == '\0')
    289       1.41  christos 				errx(1, "%lu: %s: filename expected", linenum, fname);
    290        1.9       cgd 			cmd->t = duptoeol(p, "w command");
    291        1.1       alm 			if (aflag)
    292        1.1       alm 				cmd->u.fd = -1;
    293       1.41  christos 			else if ((cmd->u.fd = open(p,
    294        1.1       alm 			    O_WRONLY|O_APPEND|O_CREAT|O_TRUNC,
    295        1.1       alm 			    DEFFILEMODE)) == -1)
    296       1.41  christos 				err(1, "%s", p);
    297        1.1       alm 			break;
    298        1.1       alm 		case RFILE:			/* r */
    299        1.1       alm 			p++;
    300        1.1       alm 			EATSPACE();
    301        1.1       alm 			if (*p == '\0')
    302       1.41  christos 				errx(1, "%lu: %s: filename expected", linenum, fname);
    303        1.1       alm 			else
    304        1.9       cgd 				cmd->t = duptoeol(p, "read command");
    305        1.1       alm 			break;
    306        1.1       alm 		case BRANCH:			/* b t */
    307        1.1       alm 			p++;
    308        1.1       alm 			EATSPACE();
    309        1.1       alm 			if (*p == '\0')
    310        1.1       alm 				cmd->t = NULL;
    311        1.1       alm 			else
    312        1.9       cgd 				cmd->t = duptoeol(p, "branch");
    313        1.1       alm 			break;
    314        1.1       alm 		case LABEL:			/* : */
    315        1.1       alm 			p++;
    316        1.1       alm 			EATSPACE();
    317        1.9       cgd 			cmd->t = duptoeol(p, "label");
    318        1.1       alm 			if (strlen(p) == 0)
    319       1.41  christos 				errx(1, "%lu: %s: empty label", linenum, fname);
    320        1.9       cgd 			enterlabel(cmd);
    321        1.1       alm 			break;
    322        1.1       alm 		case SUBST:			/* s */
    323        1.1       alm 			p++;
    324        1.1       alm 			if (*p == '\0' || *p == '\\')
    325       1.41  christos 				errx(1,
    326       1.41  christos "%lu: %s: substitute pattern can not be delimited by newline or backslash",
    327       1.41  christos 					linenum, fname);
    328       1.41  christos 			cmd->u.s = xcalloc(1, sizeof(struct s_subst));
    329       1.41  christos 			p = compile_delimited(p, re, 0);
    330        1.1       alm 			if (p == NULL)
    331       1.41  christos 				errx(1,
    332       1.41  christos 				"%lu: %s: unterminated substitute pattern", linenum, fname);
    333       1.41  christos 
    334       1.41  christos 			/* Compile RE with no case sensitivity temporarily */
    335       1.41  christos 			if (*re == '\0')
    336       1.41  christos 				cmd->u.s->re = NULL;
    337       1.41  christos 			else
    338       1.41  christos 				cmd->u.s->re = compile_re(re, 0);
    339        1.1       alm 			--p;
    340        1.1       alm 			p = compile_subst(p, cmd->u.s);
    341        1.1       alm 			p = compile_flags(p, cmd->u.s);
    342       1.41  christos 
    343       1.41  christos 			/* Recompile RE with case sensitivity from "I" flag if any */
    344       1.41  christos 			if (*re == '\0')
    345       1.41  christos 				cmd->u.s->re = NULL;
    346       1.41  christos 			else
    347       1.41  christos 				cmd->u.s->re = compile_re(re, cmd->u.s->icase);
    348        1.1       alm 			EATSPACE();
    349        1.1       alm 			if (*p == ';') {
    350        1.1       alm 				p++;
    351        1.1       alm 				link = &cmd->next;
    352        1.1       alm 				goto semicolon;
    353        1.1       alm 			}
    354        1.1       alm 			break;
    355        1.1       alm 		case TR:			/* y */
    356        1.1       alm 			p++;
    357       1.41  christos 			p = compile_tr(p, &cmd->u.y);
    358        1.1       alm 			EATSPACE();
    359       1.40  christos 			switch (*p) {
    360       1.40  christos 			case ';':
    361        1.1       alm 				p++;
    362        1.1       alm 				link = &cmd->next;
    363        1.1       alm 				goto semicolon;
    364       1.40  christos 			case '}':
    365       1.40  christos 				goto semicolon;
    366       1.40  christos 			case '\0':
    367       1.40  christos 				break;
    368       1.40  christos 			default:
    369       1.41  christos 				errx(1,
    370       1.41  christos "%lu: %s: extra text at the end of a transform command", linenum, fname);
    371       1.40  christos 			}
    372       1.41  christos 			if (*p)
    373        1.1       alm 			break;
    374        1.1       alm 		}
    375        1.1       alm 	}
    376        1.1       alm }
    377        1.1       alm 
    378        1.1       alm /*
    379       1.41  christos  * Get a delimited string.  P points to the delimeter of the string; d points
    380        1.1       alm  * to a buffer area.  Newline and delimiter escapes are processed; other
    381        1.1       alm  * escapes are ignored.
    382        1.1       alm  *
    383        1.1       alm  * Returns a pointer to the first character after the final delimiter or NULL
    384        1.1       alm  * in the case of a non-terminated string.  The character array d is filled
    385        1.1       alm  * with the processed string.
    386        1.1       alm  */
    387        1.1       alm static char *
    388       1.41  christos compile_delimited(char *p, char *d, int is_tr)
    389        1.1       alm {
    390        1.1       alm 	char c;
    391        1.1       alm 
    392        1.1       alm 	c = *p++;
    393        1.1       alm 	if (c == '\0')
    394        1.1       alm 		return (NULL);
    395        1.1       alm 	else if (c == '\\')
    396       1.41  christos 		errx(1, "%lu: %s: \\ can not be used as a string delimiter",
    397       1.41  christos 				linenum, fname);
    398        1.1       alm 	else if (c == '\n')
    399       1.41  christos 		errx(1, "%lu: %s: newline can not be used as a string delimiter",
    400       1.41  christos 				linenum, fname);
    401        1.1       alm 	while (*p) {
    402       1.41  christos 		if (*p == '[' && *p != c) {
    403       1.11       alm 			if ((d = compile_ccl(&p, d)) == NULL)
    404       1.41  christos 				errx(1, "%lu: %s: unbalanced brackets ([])", linenum, fname);
    405       1.11       alm 			continue;
    406       1.11       alm 		} else if (*p == '\\' && p[1] == '[') {
    407       1.11       alm 			*d++ = *p++;
    408       1.11       alm 		} else if (*p == '\\' && p[1] == c)
    409        1.1       alm 			p++;
    410        1.1       alm 		else if (*p == '\\' && p[1] == 'n') {
    411        1.1       alm 			*d++ = '\n';
    412        1.1       alm 			p += 2;
    413        1.1       alm 			continue;
    414       1.41  christos 		} else if (*p == '\\' && p[1] == '\\') {
    415       1.41  christos 			if (is_tr)
    416       1.41  christos 				p++;
    417       1.41  christos 			else
    418       1.41  christos 				*d++ = *p++;
    419       1.41  christos 		} else if (*p == c) {
    420        1.1       alm 			*d = '\0';
    421        1.1       alm 			return (p + 1);
    422        1.1       alm 		}
    423        1.1       alm 		*d++ = *p++;
    424        1.1       alm 	}
    425        1.1       alm 	return (NULL);
    426       1.11       alm }
    427       1.11       alm 
    428       1.11       alm 
    429       1.11       alm /* compile_ccl: expand a POSIX character class */
    430       1.11       alm static char *
    431       1.24       wiz compile_ccl(char **sp, char *t)
    432       1.11       alm {
    433       1.11       alm 	int c, d;
    434       1.11       alm 	char *s = *sp;
    435       1.11       alm 
    436       1.11       alm 	*t++ = *s++;
    437       1.11       alm 	if (*s == '^')
    438       1.11       alm 		*t++ = *s++;
    439       1.11       alm 	if (*s == ']')
    440       1.11       alm 		*t++ = *s++;
    441       1.11       alm 	for (; *s && (*t = *s) != ']'; s++, t++)
    442       1.11       alm 		if (*s == '[' && ((d = *(s+1)) == '.' || d == ':' || d == '=')) {
    443       1.11       alm 			*++t = *++s, t++, s++;
    444       1.11       alm 			for (c = *s; (*t = *s) != ']' || c != d; s++, t++)
    445       1.11       alm 				if ((c = *s) == '\0')
    446       1.11       alm 					return NULL;
    447       1.41  christos 		}
    448       1.11       alm 	return (*s == ']') ? *sp = ++s, ++t : NULL;
    449        1.2       alm }
    450        1.2       alm 
    451        1.1       alm /*
    452       1.41  christos  * Compiles the regular expression in RE and returns a pointer to the compiled
    453       1.41  christos  * regular expression.
    454        1.1       alm  * Cflags are passed to regcomp.
    455        1.1       alm  */
    456       1.41  christos static regex_t *
    457       1.41  christos compile_re(char *re, int case_insensitive)
    458        1.1       alm {
    459       1.41  christos 	regex_t *rep;
    460       1.41  christos 	int eval, flags;
    461       1.41  christos 
    462        1.1       alm 
    463       1.41  christos 	flags = rflags;
    464       1.41  christos 	if (case_insensitive)
    465       1.41  christos 		flags |= REG_ICASE;
    466       1.41  christos 	rep = xmalloc(sizeof(regex_t));
    467  1.47.16.1    martin 	parse_escapes(re);
    468       1.41  christos 	if ((eval = regcomp(rep, re, flags)) != 0)
    469       1.41  christos 		errx(1, "%lu: %s: RE error: %s",
    470       1.41  christos 				linenum, fname, strregerror(eval, rep));
    471       1.41  christos 	if (maxnsub < rep->re_nsub)
    472       1.41  christos 		maxnsub = rep->re_nsub;
    473       1.41  christos 	return (rep);
    474        1.1       alm }
    475        1.1       alm 
    476  1.47.16.1    martin static char
    477  1.47.16.1    martin cton(char c, int base)
    478  1.47.16.1    martin {
    479  1.47.16.1    martin 	switch (c) {
    480  1.47.16.1    martin 	case '0': case '1': case '2': case '3': case '4':
    481  1.47.16.1    martin 	case '5': case '6': case '7':
    482  1.47.16.1    martin 		return (char)(c - '0');
    483  1.47.16.1    martin 	case '8': case '9':
    484  1.47.16.1    martin 		return base == 8 ? '?' : (char)(c - '0');
    485  1.47.16.1    martin 	case 'a': case 'b': case 'c': case 'd': case 'e': case 'f':
    486  1.47.16.1    martin 		return base == 16 ? (char)(c - 'a' + 10) : '?';
    487  1.47.16.1    martin 	case 'A': case 'B': case 'C': case 'D': case 'E': case 'F':
    488  1.47.16.1    martin 		return base == 16 ? (char)(c - 'A' + 10) : '?';
    489  1.47.16.1    martin 	default:
    490  1.47.16.1    martin 		return '?';
    491  1.47.16.1    martin 	}
    492  1.47.16.1    martin }
    493  1.47.16.1    martin 
    494  1.47.16.1    martin static int
    495  1.47.16.1    martin ston(char **pp, char *sp, int base)
    496  1.47.16.1    martin {
    497  1.47.16.1    martin 	char *p = *pp, n;
    498  1.47.16.1    martin 	int r = cton(p[1], base);
    499  1.47.16.1    martin 
    500  1.47.16.1    martin 	if (r == '?')
    501  1.47.16.1    martin 		return 0;
    502  1.47.16.1    martin 
    503  1.47.16.1    martin 	p++;
    504  1.47.16.1    martin 	while ((n = cton(p[1], base)) != '?' && r < 255) {
    505  1.47.16.1    martin 		r = r * base + n;
    506  1.47.16.1    martin 		p++;
    507  1.47.16.1    martin 	}
    508  1.47.16.1    martin 	*sp = (char)r;
    509  1.47.16.1    martin 	*pp = p;
    510  1.47.16.1    martin 	return 1;
    511  1.47.16.1    martin }
    512  1.47.16.1    martin 
    513  1.47.16.1    martin static int
    514  1.47.16.1    martin unescape(char **pp, char **spp)
    515  1.47.16.1    martin {
    516  1.47.16.1    martin 	char *p = *pp;
    517  1.47.16.1    martin 	char *sp = *spp;
    518  1.47.16.1    martin 
    519  1.47.16.1    martin 	switch (*p) {
    520  1.47.16.1    martin 	case 'o':
    521  1.47.16.1    martin 		if (!ston(&p, sp, 8))
    522  1.47.16.1    martin 			return 0;
    523  1.47.16.1    martin 		break;
    524  1.47.16.1    martin 	case 'd':
    525  1.47.16.1    martin 		if (!ston(&p, sp, 10))
    526  1.47.16.1    martin 			return 0;
    527  1.47.16.1    martin 		break;
    528  1.47.16.1    martin 	case 'x':
    529  1.47.16.1    martin 		if (!ston(&p, sp, 16))
    530  1.47.16.1    martin 			return 0;
    531  1.47.16.1    martin 		break;
    532  1.47.16.1    martin 	case 'a':
    533  1.47.16.1    martin 		*sp = '\a';
    534  1.47.16.1    martin 		p++;
    535  1.47.16.1    martin 		break;
    536  1.47.16.1    martin #if 0
    537  1.47.16.1    martin 	// No, \b RE
    538  1.47.16.1    martin 	case 'b':
    539  1.47.16.1    martin 		*sp = '\b';
    540  1.47.16.1    martin 		break;
    541  1.47.16.1    martin #endif
    542  1.47.16.1    martin 	case 'f':
    543  1.47.16.1    martin 		*sp = '\f';
    544  1.47.16.1    martin 		break;
    545  1.47.16.1    martin 	case 'n':
    546  1.47.16.1    martin 		*sp = '\n';
    547  1.47.16.1    martin 		break;
    548  1.47.16.1    martin 	case 'r':
    549  1.47.16.1    martin 		*sp = '\r';
    550  1.47.16.1    martin 		break;
    551  1.47.16.1    martin 	case 'v':
    552  1.47.16.1    martin 		*sp = '\v';
    553  1.47.16.1    martin 		break;
    554  1.47.16.1    martin 	default:
    555  1.47.16.1    martin 		return 0;
    556  1.47.16.1    martin 	}
    557  1.47.16.1    martin 	*spp = sp + 1;
    558  1.47.16.1    martin 	*pp = p;
    559  1.47.16.1    martin 	return 1;
    560  1.47.16.1    martin }
    561  1.47.16.1    martin 
    562  1.47.16.1    martin static void
    563  1.47.16.1    martin parse_escapes(char *buf)
    564  1.47.16.1    martin {
    565  1.47.16.1    martin 	char bracket = '\0';
    566  1.47.16.1    martin 	char *p, *q;
    567  1.47.16.1    martin 
    568  1.47.16.1    martin 	p = q = buf;
    569  1.47.16.1    martin 
    570  1.47.16.1    martin 	for (p = q = buf; *p; p++) {
    571  1.47.16.1    martin 		if (*p == '\\' && p[1] && !bracket) {
    572  1.47.16.1    martin 			p++;
    573  1.47.16.1    martin 			if (unescape(&p, &q))
    574  1.47.16.1    martin 				continue;
    575  1.47.16.1    martin 			*q++ = '\\';
    576  1.47.16.1    martin 		}
    577  1.47.16.1    martin 		switch (*p) {
    578  1.47.16.1    martin 		case '[':
    579  1.47.16.1    martin 			if (!bracket)
    580  1.47.16.1    martin 				bracket = *p;
    581  1.47.16.1    martin 			break;
    582  1.47.16.1    martin 		case '.':
    583  1.47.16.1    martin 		case ':':
    584  1.47.16.1    martin 		case '=':
    585  1.47.16.1    martin 			if (bracket == '[' && p[-1] == '[')
    586  1.47.16.1    martin 				bracket = *p;
    587  1.47.16.1    martin 			break;
    588  1.47.16.1    martin 		case ']':
    589  1.47.16.1    martin 			if (!bracket)
    590  1.47.16.1    martin 			    break;
    591  1.47.16.1    martin 			if (bracket == '[')
    592  1.47.16.1    martin 				bracket = '\0';
    593  1.47.16.1    martin 			else if (p[-2] != bracket && p[-1] == bracket)
    594  1.47.16.1    martin 				bracket = '[';
    595  1.47.16.1    martin 			break;
    596  1.47.16.1    martin 		default:
    597  1.47.16.1    martin 			break;
    598  1.47.16.1    martin 		}
    599  1.47.16.1    martin 		*q++ = *p;
    600  1.47.16.1    martin 	}
    601  1.47.16.1    martin 	*q = '\0';
    602  1.47.16.1    martin }
    603  1.47.16.1    martin 
    604        1.1       alm /*
    605        1.1       alm  * Compile the substitution string of a regular expression and set res to
    606        1.1       alm  * point to a saved copy of it.  Nsub is the number of parenthesized regular
    607        1.1       alm  * expressions.
    608        1.1       alm  */
    609        1.1       alm static char *
    610       1.24       wiz compile_subst(char *p, struct s_subst *s)
    611        1.1       alm {
    612       1.41  christos 	static char lbuf[_POSIX2_LINE_MAX + 1];
    613       1.41  christos 	size_t asize, size;
    614       1.41  christos 	u_char ref;
    615        1.1       alm 	char c, *text, *op, *sp;
    616       1.41  christos 	int more = 1, sawesc = 0;
    617        1.1       alm 
    618        1.1       alm 	c = *p++;			/* Terminator character */
    619        1.1       alm 	if (c == '\0')
    620        1.1       alm 		return (NULL);
    621        1.1       alm 
    622        1.1       alm 	s->maxbref = 0;
    623        1.1       alm 	s->linenum = linenum;
    624       1.41  christos 	asize = 2 * _POSIX2_LINE_MAX + 1;
    625       1.41  christos 	text = xmalloc(asize);
    626       1.41  christos 	size = 0;
    627        1.1       alm 	do {
    628        1.1       alm 		op = sp = text + size;
    629        1.1       alm 		for (; *p; p++) {
    630       1.26   minskim 			if (*p == '\\' || sawesc) {
    631       1.26   minskim 				/*
    632       1.26   minskim 				 * If this is a continuation from the last
    633       1.26   minskim 				 * buffer, we won't have a character to
    634       1.26   minskim 				 * skip over.
    635       1.26   minskim 				 */
    636       1.26   minskim 				if (sawesc)
    637       1.26   minskim 					sawesc = 0;
    638       1.26   minskim 				else
    639       1.26   minskim 					p++;
    640       1.26   minskim 
    641  1.47.16.1    martin 				switch (*p) {
    642  1.47.16.1    martin 				case '\0':
    643       1.26   minskim 					/*
    644       1.26   minskim 					 * This escaped character is continued
    645       1.26   minskim 					 * in the next part of the line.  Note
    646       1.26   minskim 					 * this fact, then cause the loop to
    647       1.26   minskim 					 * exit w/ normal EOL case and reenter
    648       1.26   minskim 					 * above with the new buffer.
    649       1.26   minskim 					 */
    650       1.26   minskim 					sawesc = 1;
    651       1.26   minskim 					p--;
    652       1.26   minskim 					continue;
    653  1.47.16.1    martin 				case '0': case '1': case '2': case '3':
    654  1.47.16.1    martin 				case '4': case '5': case '6': case '7':
    655  1.47.16.1    martin 				case '8': case '9':
    656        1.1       alm 					*sp++ = '\\';
    657       1.41  christos 					ref = (u_char)(*p - '0');
    658        1.1       alm 					if (s->re != NULL &&
    659       1.41  christos 					    ref > s->re->re_nsub)
    660       1.41  christos 						errx(1, "%lu: %s: \\%c not defined in the RE",
    661       1.41  christos 								linenum, fname, *p);
    662        1.1       alm 					if (s->maxbref < ref)
    663        1.1       alm 						s->maxbref = ref;
    664  1.47.16.1    martin 					break;
    665  1.47.16.1    martin 				case '&':
    666  1.47.16.1    martin 				case '\\':
    667        1.1       alm 					*sp++ = '\\';
    668  1.47.16.1    martin 					break;
    669  1.47.16.1    martin 				default:
    670  1.47.16.1    martin 					if (unescape(&p, &sp))
    671  1.47.16.1    martin 						continue;
    672  1.47.16.1    martin 					break;
    673  1.47.16.1    martin 				}
    674        1.1       alm 			} else if (*p == c) {
    675       1.41  christos 				if (*++p == '\0' && more) {
    676       1.41  christos 					if (cu_fgets(lbuf, sizeof(lbuf), &more))
    677       1.41  christos 						p = lbuf;
    678       1.41  christos 				}
    679        1.1       alm 				*sp++ = '\0';
    680       1.41  christos 				size += (size_t)(sp - op);
    681        1.1       alm 				s->new = xrealloc(text, size);
    682        1.1       alm 				return (p);
    683        1.1       alm 			} else if (*p == '\n') {
    684       1.41  christos 				errx(1,
    685       1.41  christos "%lu: %s: unescaped newline inside substitute pattern", linenum, fname);
    686        1.1       alm 				/* NOTREACHED */
    687        1.1       alm 			}
    688        1.1       alm 			*sp++ = *p;
    689        1.1       alm 		}
    690       1.41  christos 		size += (size_t)(sp - op);
    691       1.41  christos 		if (asize - size < _POSIX2_LINE_MAX + 1) {
    692       1.41  christos 			asize *= 2;
    693       1.41  christos 			text = xrealloc(text, asize);
    694       1.41  christos 		}
    695       1.41  christos 	} while (cu_fgets(p = lbuf, sizeof(lbuf), &more));
    696       1.41  christos 	errx(1, "%lu: %s: unterminated substitute in regular expression",
    697       1.41  christos 			linenum, fname);
    698        1.1       alm 	/* NOTREACHED */
    699        1.1       alm }
    700        1.1       alm 
    701        1.1       alm /*
    702        1.1       alm  * Compile the flags of the s command
    703        1.1       alm  */
    704        1.1       alm static char *
    705       1.24       wiz compile_flags(char *p, struct s_subst *s)
    706        1.1       alm {
    707        1.1       alm 	int gn;			/* True if we have seen g or n */
    708       1.41  christos 	unsigned long nval;
    709       1.41  christos 	char wfile[_POSIX2_LINE_MAX + 1], *q;
    710        1.1       alm 
    711        1.1       alm 	s->n = 1;				/* Default */
    712        1.1       alm 	s->p = 0;
    713        1.1       alm 	s->wfile = NULL;
    714        1.1       alm 	s->wfd = -1;
    715       1.41  christos 	s->icase = 0;
    716        1.1       alm 	for (gn = 0;;) {
    717        1.1       alm 		EATSPACE();			/* EXTENSION */
    718        1.1       alm 		switch (*p) {
    719        1.1       alm 		case 'g':
    720        1.1       alm 			if (gn)
    721       1.41  christos 				errx(1,
    722       1.41  christos "%lu: %s: more than one number or 'g' in substitute flags", linenum, fname);
    723        1.1       alm 			gn = 1;
    724        1.1       alm 			s->n = 0;
    725        1.1       alm 			break;
    726        1.1       alm 		case '\0':
    727        1.1       alm 		case '\n':
    728        1.1       alm 		case ';':
    729        1.1       alm 			return (p);
    730        1.1       alm 		case 'p':
    731        1.1       alm 			s->p = 1;
    732        1.1       alm 			break;
    733       1.41  christos 		case 'i':
    734       1.41  christos 		case 'I':
    735       1.41  christos 			s->icase = 1;
    736       1.41  christos 			break;
    737        1.1       alm 		case '1': case '2': case '3':
    738        1.1       alm 		case '4': case '5': case '6':
    739        1.1       alm 		case '7': case '8': case '9':
    740        1.1       alm 			if (gn)
    741       1.41  christos 				errx(1,
    742       1.41  christos "%lu: %s: more than one number or 'g' in substitute flags", linenum, fname);
    743        1.1       alm 			gn = 1;
    744       1.41  christos 			errno = 0;
    745       1.41  christos 			nval = strtoul(p, &p, 10);
    746       1.41  christos 			if (errno == ERANGE || nval > INT_MAX)
    747       1.41  christos 				errx(1,
    748       1.41  christos "%lu: %s: overflow in the 'N' substitute flag", linenum, fname);
    749       1.41  christos 			s->n = (int)nval;
    750       1.27     grant 			p--;
    751        1.1       alm 			break;
    752        1.1       alm 		case 'w':
    753        1.1       alm 			p++;
    754        1.9       cgd #ifdef HISTORIC_PRACTICE
    755        1.1       alm 			if (*p != ' ') {
    756       1.41  christos 				warnx("%lu: %s: space missing before w wfile", linenum, fname);
    757        1.1       alm 				return (p);
    758        1.1       alm 			}
    759        1.1       alm #endif
    760        1.1       alm 			EATSPACE();
    761        1.1       alm 			q = wfile;
    762        1.1       alm 			while (*p) {
    763        1.1       alm 				if (*p == '\n')
    764        1.1       alm 					break;
    765        1.1       alm 				*q++ = *p++;
    766        1.1       alm 			}
    767        1.1       alm 			*q = '\0';
    768        1.1       alm 			if (q == wfile)
    769       1.41  christos 				errx(1, "%lu: %s: no wfile specified", linenum, fname);
    770        1.1       alm 			s->wfile = strdup(wfile);
    771        1.1       alm 			if (!aflag && (s->wfd = open(wfile,
    772        1.1       alm 			    O_WRONLY|O_APPEND|O_CREAT|O_TRUNC,
    773        1.1       alm 			    DEFFILEMODE)) == -1)
    774       1.41  christos 				err(1, "%s", wfile);
    775        1.1       alm 			return (p);
    776        1.1       alm 		default:
    777       1.41  christos 			errx(1, "%lu: %s: bad flag in substitute command: '%c'",
    778       1.41  christos 					linenum, fname, *p);
    779        1.1       alm 			break;
    780        1.1       alm 		}
    781        1.1       alm 		p++;
    782        1.1       alm 	}
    783        1.1       alm }
    784        1.1       alm 
    785        1.1       alm /*
    786        1.1       alm  * Compile a translation set of strings into a lookup table.
    787        1.1       alm  */
    788        1.1       alm static char *
    789       1.41  christos compile_tr(char *p, struct s_tr **py)
    790        1.1       alm {
    791       1.41  christos 	struct s_tr *y;
    792       1.41  christos 	size_t i;
    793       1.41  christos 	const char *op, *np;
    794       1.41  christos 	char old[_POSIX2_LINE_MAX + 1];
    795       1.41  christos 	char new[_POSIX2_LINE_MAX + 1];
    796       1.41  christos 	size_t oclen, oldlen, nclen, newlen;
    797       1.41  christos 	mbstate_t mbs1, mbs2;
    798       1.41  christos 
    799       1.41  christos 	*py = y = xmalloc(sizeof(*y));
    800       1.41  christos 	y->multis = NULL;
    801       1.41  christos 	y->nmultis = 0;
    802        1.1       alm 
    803        1.1       alm 	if (*p == '\0' || *p == '\\')
    804       1.41  christos 		errx(1,
    805       1.41  christos 	"%lu: %s: transform pattern can not be delimited by newline or backslash",
    806       1.41  christos 			linenum, fname);
    807       1.41  christos 	p = compile_delimited(p, old, 1);
    808       1.41  christos 	if (p == NULL)
    809       1.41  christos 		errx(1, "%lu: %s: unterminated transform source string",
    810       1.41  christos 				linenum, fname);
    811       1.41  christos 	p = compile_delimited(p - 1, new, 1);
    812       1.41  christos 	if (p == NULL)
    813       1.41  christos 		errx(1, "%lu: %s: unterminated transform target string",
    814       1.41  christos 				linenum, fname);
    815        1.1       alm 	EATSPACE();
    816       1.41  christos 	op = old;
    817       1.41  christos 	oldlen = mbsrtowcs(NULL, &op, 0, NULL);
    818       1.41  christos 	if (oldlen == (size_t)-1)
    819       1.41  christos 		err(1, NULL);
    820       1.41  christos 	np = new;
    821       1.41  christos 	newlen = mbsrtowcs(NULL, &np, 0, NULL);
    822       1.41  christos 	if (newlen == (size_t)-1)
    823       1.41  christos 		err(1, NULL);
    824       1.41  christos 	if (newlen != oldlen)
    825       1.41  christos 		errx(1, "%lu: %s: transform strings are not the same length",
    826       1.41  christos 				linenum, fname);
    827       1.41  christos 	if (MB_CUR_MAX == 1) {
    828       1.41  christos 		/*
    829       1.41  christos 		 * The single-byte encoding case is easy: generate a
    830       1.41  christos 		 * lookup table.
    831       1.41  christos 		 */
    832       1.41  christos 		for (i = 0; i <= UCHAR_MAX; i++)
    833       1.41  christos 			y->bytetab[i] = (u_char)i;
    834       1.41  christos 		for (; *op; op++, np++)
    835       1.41  christos 			y->bytetab[(u_char)*op] = (u_char)*np;
    836       1.41  christos 	} else {
    837       1.41  christos 		/*
    838       1.41  christos 		 * Multi-byte encoding case: generate a lookup table as
    839       1.41  christos 		 * above, but only for single-byte characters. The first
    840       1.41  christos 		 * bytes of multi-byte characters have their lookup table
    841       1.41  christos 		 * entries set to 0, which causes do_tr() to search through
    842       1.41  christos 		 * an auxiliary vector of multi-byte mappings.
    843       1.41  christos 		 */
    844       1.41  christos 		memset(&mbs1, 0, sizeof(mbs1));
    845       1.41  christos 		memset(&mbs2, 0, sizeof(mbs2));
    846       1.41  christos 		for (i = 0; i <= UCHAR_MAX; i++)
    847       1.41  christos 			y->bytetab[i] = (u_char)((btowc((int)i) != WEOF) ? i : 0);
    848       1.41  christos 		while (*op != '\0') {
    849       1.41  christos 			oclen = mbrlen(op, MB_LEN_MAX, &mbs1);
    850       1.41  christos 			if (oclen == (size_t)-1 || oclen == (size_t)-2)
    851       1.41  christos 				errc(1, EILSEQ, NULL);
    852       1.41  christos 			nclen = mbrlen(np, MB_LEN_MAX, &mbs2);
    853       1.41  christos 			if (nclen == (size_t)-1 || nclen == (size_t)-2)
    854       1.41  christos 				errc(1, EILSEQ, NULL);
    855       1.41  christos 			if (oclen == 1 && nclen == 1)
    856       1.41  christos 				y->bytetab[(u_char)*op] = (u_char)*np;
    857       1.41  christos 			else {
    858       1.41  christos 				y->bytetab[(u_char)*op] = 0;
    859       1.41  christos 				y->multis = xrealloc(y->multis,
    860       1.41  christos 				    (y->nmultis + 1) * sizeof(*y->multis));
    861       1.41  christos 				i = y->nmultis++;
    862       1.41  christos 				y->multis[i].fromlen = oclen;
    863       1.41  christos 				memcpy(y->multis[i].from, op, oclen);
    864       1.41  christos 				y->multis[i].tolen = nclen;
    865       1.41  christos 				memcpy(y->multis[i].to, np, nclen);
    866       1.41  christos 			}
    867       1.41  christos 			op += oclen;
    868       1.41  christos 			np += nclen;
    869       1.41  christos 		}
    870        1.1       alm 	}
    871        1.1       alm 	return (p);
    872        1.1       alm }
    873        1.1       alm 
    874        1.1       alm /*
    875       1.41  christos  * Compile the text following an a or i command.
    876        1.1       alm  */
    877        1.1       alm static char *
    878       1.24       wiz compile_text(void)
    879        1.1       alm {
    880       1.41  christos 	size_t asize, size;
    881       1.41  christos 	int esc_nl;
    882       1.41  christos 	char *text, *p, *op, *s;
    883       1.41  christos 	char lbuf[_POSIX2_LINE_MAX + 1];
    884       1.41  christos 
    885       1.41  christos 	asize = 2 * _POSIX2_LINE_MAX + 1;
    886       1.41  christos 	text = xmalloc(asize);
    887       1.41  christos 	size = 0;
    888       1.41  christos 	while (cu_fgets(lbuf, sizeof(lbuf), NULL)) {
    889        1.1       alm 		op = s = text + size;
    890       1.41  christos 		p = lbuf;
    891       1.41  christos 		for (esc_nl = 0; *p != '\0'; p++) {
    892       1.41  christos 			if (*p == '\\' && p[1] != '\0' && *++p == '\n')
    893       1.41  christos 				esc_nl = 1;
    894        1.1       alm 			*s++ = *p;
    895        1.1       alm 		}
    896       1.41  christos 		size += (size_t)(s - op);
    897       1.41  christos 		if (!esc_nl) {
    898        1.1       alm 			*s = '\0';
    899        1.1       alm 			break;
    900        1.1       alm 		}
    901       1.41  christos 		if (asize - size < _POSIX2_LINE_MAX + 1) {
    902       1.41  christos 			asize *= 2;
    903       1.41  christos 			text = xrealloc(text, asize);
    904       1.41  christos 		}
    905        1.1       alm 	}
    906       1.41  christos 	text[size] = '\0';
    907       1.41  christos 	p = xrealloc(text, size + 1);
    908       1.41  christos 	return (p);
    909        1.1       alm }
    910        1.1       alm 
    911        1.1       alm /*
    912        1.1       alm  * Get an address and return a pointer to the first character after
    913        1.1       alm  * it.  Fill the structure pointed to according to the address.
    914        1.1       alm  */
    915        1.1       alm static char *
    916       1.24       wiz compile_addr(char *p, struct s_addr *a)
    917        1.1       alm {
    918       1.41  christos 	char *end, re[_POSIX2_LINE_MAX + 1];
    919       1.41  christos 	int icase;
    920        1.1       alm 
    921       1.41  christos 	icase = 0;
    922       1.41  christos 
    923       1.41  christos 	a->type = 0;
    924        1.1       alm 	switch (*p) {
    925        1.1       alm 	case '\\':				/* Context address */
    926        1.1       alm 		++p;
    927        1.1       alm 		/* FALLTHROUGH */
    928        1.1       alm 	case '/':				/* Context address */
    929       1.41  christos 		p = compile_delimited(p, re, 0);
    930        1.1       alm 		if (p == NULL)
    931       1.41  christos 			errx(1, "%lu: %s: unterminated regular expression", linenum, fname);
    932       1.41  christos 		/* Check for case insensitive regexp flag */
    933       1.41  christos 		if (*p == 'I') {
    934       1.41  christos 			icase = 1;
    935       1.41  christos 			p++;
    936       1.41  christos 		}
    937       1.41  christos 		if (*re == '\0')
    938       1.41  christos 			a->u.r = NULL;
    939       1.41  christos 		else
    940       1.41  christos 			a->u.r = compile_re(re, icase);
    941        1.1       alm 		a->type = AT_RE;
    942        1.1       alm 		return (p);
    943        1.1       alm 
    944        1.1       alm 	case '$':				/* Last line */
    945        1.1       alm 		a->type = AT_LAST;
    946        1.1       alm 		return (p + 1);
    947       1.41  christos 
    948       1.41  christos 	case '+':				/* Relative line number */
    949       1.41  christos 		a->type = AT_RELLINE;
    950       1.41  christos 		p++;
    951       1.41  christos 		/* FALLTHROUGH */
    952        1.1       alm 						/* Line number */
    953       1.41  christos 	case '0': case '1': case '2': case '3': case '4':
    954        1.1       alm 	case '5': case '6': case '7': case '8': case '9':
    955       1.41  christos 		if (a->type == 0)
    956       1.41  christos 			a->type = AT_LINE;
    957       1.41  christos 		a->u.l = strtoul(p, &end, 10);
    958        1.1       alm 		return (end);
    959        1.1       alm 	default:
    960       1.41  christos 		errx(1, "%lu: %s: expected context address", linenum, fname);
    961        1.1       alm 		return (NULL);
    962        1.1       alm 	}
    963        1.1       alm }
    964        1.1       alm 
    965        1.1       alm /*
    966        1.9       cgd  * duptoeol --
    967        1.9       cgd  *	Return a copy of all the characters up to \n or \0.
    968        1.1       alm  */
    969        1.1       alm static char *
    970       1.36     lukem duptoeol(char *s, const char *ctype)
    971        1.1       alm {
    972        1.1       alm 	size_t len;
    973        1.9       cgd 	int ws;
    974       1.41  christos 	char *p, *start;
    975        1.1       alm 
    976        1.9       cgd 	ws = 0;
    977        1.9       cgd 	for (start = s; *s != '\0' && *s != '\n'; ++s)
    978       1.19  christos 		ws = isspace((unsigned char)*s);
    979        1.1       alm 	*s = '\0';
    980        1.9       cgd 	if (ws)
    981       1.41  christos 		warnx("%lu: %s: whitespace after %s", linenum, fname, ctype);
    982       1.41  christos 	len = (size_t)(s - start + 1);
    983       1.41  christos 	p = xmalloc(len);
    984       1.41  christos 	return (memmove(p, start, len));
    985        1.1       alm }
    986        1.1       alm 
    987        1.1       alm /*
    988        1.9       cgd  * Convert goto label names to addresses, and count a and r commands, in
    989        1.9       cgd  * the given subset of the script.  Free the memory used by labels in b
    990        1.9       cgd  * and t commands (but not by :).
    991        1.9       cgd  *
    992        1.1       alm  * TODO: Remove } nodes
    993        1.1       alm  */
    994        1.1       alm static void
    995       1.24       wiz fixuplabel(struct s_command *cp, struct s_command *end)
    996        1.1       alm {
    997        1.1       alm 
    998        1.1       alm 	for (; cp != end; cp = cp->next)
    999        1.1       alm 		switch (cp->code) {
   1000        1.1       alm 		case 'a':
   1001        1.1       alm 		case 'r':
   1002        1.1       alm 			appendnum++;
   1003        1.1       alm 			break;
   1004        1.1       alm 		case 'b':
   1005        1.1       alm 		case 't':
   1006        1.9       cgd 			/* Resolve branch target. */
   1007        1.1       alm 			if (cp->t == NULL) {
   1008        1.1       alm 				cp->u.c = NULL;
   1009        1.1       alm 				break;
   1010        1.1       alm 			}
   1011        1.9       cgd 			if ((cp->u.c = findlabel(cp->t)) == NULL)
   1012       1.41  christos 				errx(1, "%lu: %s: undefined label '%s'", linenum, fname, cp->t);
   1013        1.1       alm 			free(cp->t);
   1014        1.1       alm 			break;
   1015        1.1       alm 		case '{':
   1016        1.9       cgd 			/* Do interior commands. */
   1017        1.9       cgd 			fixuplabel(cp->u.c, cp->next);
   1018        1.1       alm 			break;
   1019        1.1       alm 		}
   1020        1.9       cgd }
   1021        1.9       cgd 
   1022        1.9       cgd /*
   1023        1.9       cgd  * Associate the given command label for later lookup.
   1024        1.9       cgd  */
   1025        1.9       cgd static void
   1026       1.24       wiz enterlabel(struct s_command *cp)
   1027        1.9       cgd {
   1028       1.17     lukem 	struct labhash **lhp, *lh;
   1029       1.17     lukem 	u_char *p;
   1030       1.17     lukem 	u_int h, c;
   1031        1.9       cgd 
   1032        1.9       cgd 	for (h = 0, p = (u_char *)cp->t; (c = *p) != 0; p++)
   1033        1.9       cgd 		h = (h << 5) + h + c;
   1034        1.9       cgd 	lhp = &labels[h & LHMASK];
   1035        1.9       cgd 	for (lh = *lhp; lh != NULL; lh = lh->lh_next)
   1036        1.9       cgd 		if (lh->lh_hash == h && strcmp(cp->t, lh->lh_cmd->t) == 0)
   1037       1.41  christos 			errx(1, "%lu: %s: duplicate label '%s'", linenum, fname, cp->t);
   1038        1.9       cgd 	lh = xmalloc(sizeof *lh);
   1039        1.9       cgd 	lh->lh_next = *lhp;
   1040        1.9       cgd 	lh->lh_hash = h;
   1041        1.9       cgd 	lh->lh_cmd = cp;
   1042        1.9       cgd 	lh->lh_ref = 0;
   1043        1.9       cgd 	*lhp = lh;
   1044        1.9       cgd }
   1045        1.9       cgd 
   1046        1.9       cgd /*
   1047        1.9       cgd  * Find the label contained in the command l in the command linked
   1048        1.9       cgd  * list cp.  L is excluded from the search.  Return NULL if not found.
   1049        1.9       cgd  */
   1050        1.9       cgd static struct s_command *
   1051       1.24       wiz findlabel(char *name)
   1052        1.9       cgd {
   1053       1.17     lukem 	struct labhash *lh;
   1054       1.17     lukem 	u_char *p;
   1055       1.17     lukem 	u_int h, c;
   1056        1.9       cgd 
   1057        1.9       cgd 	for (h = 0, p = (u_char *)name; (c = *p) != 0; p++)
   1058        1.9       cgd 		h = (h << 5) + h + c;
   1059        1.9       cgd 	for (lh = labels[h & LHMASK]; lh != NULL; lh = lh->lh_next) {
   1060        1.9       cgd 		if (lh->lh_hash == h && strcmp(name, lh->lh_cmd->t) == 0) {
   1061        1.9       cgd 			lh->lh_ref = 1;
   1062        1.9       cgd 			return (lh->lh_cmd);
   1063        1.9       cgd 		}
   1064        1.9       cgd 	}
   1065        1.9       cgd 	return (NULL);
   1066        1.9       cgd }
   1067        1.9       cgd 
   1068       1.41  christos /*
   1069        1.9       cgd  * Warn about any unused labels.  As a side effect, release the label hash
   1070        1.9       cgd  * table space.
   1071        1.9       cgd  */
   1072        1.9       cgd static void
   1073       1.24       wiz uselabel(void)
   1074        1.9       cgd {
   1075       1.17     lukem 	struct labhash *lh, *next;
   1076       1.17     lukem 	int i;
   1077        1.9       cgd 
   1078        1.9       cgd 	for (i = 0; i < LHSZ; i++) {
   1079        1.9       cgd 		for (lh = labels[i]; lh != NULL; lh = next) {
   1080        1.9       cgd 			next = lh->lh_next;
   1081        1.9       cgd 			if (!lh->lh_ref)
   1082       1.41  christos 				warnx("%lu: %s: unused label '%s'",
   1083       1.41  christos 				    linenum, fname, lh->lh_cmd->t);
   1084        1.9       cgd 			free(lh);
   1085        1.9       cgd 		}
   1086        1.9       cgd 	}
   1087        1.1       alm }
   1088