source: trunk/src/emx/include/xregex2.h@ 2017

Last change on this file since 2017 was 1506, checked in by bird, 21 years ago

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1/* xregex2.h,v 1.2 2004/09/14 22:27:36 bird Exp */
2/** @file
3 * GNU, -liberty.
4 */
5
6/* Definitions for data structures and routines for the regular
7 expression library, version 0.12.
8 Copyright (C) 1985,1989-1993,1995-1998, 2000 Free Software Foundation, Inc.
9 This file is part of the GNU C Library. Its master source is NOT part of
10 the C library, however. The master source lives in /gd/gnu/lib.
11
12 The GNU C Library is free software; you can redistribute it and/or
13 modify it under the terms of the GNU Lesser General Public
14 License as published by the Free Software Foundation; either
15 version 2.1 of the License, or (at your option) any later version.
16
17 The GNU C Library is distributed in the hope that it will be useful,
18 but WITHOUT ANY WARRANTY; without even the implied warranty of
19 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
20 Lesser General Public License for more details.
21
22 You should have received a copy of the GNU Lesser General Public
23 License along with the GNU C Library; if not, write to the Free
24 Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
25 02111-1307 USA. */
26
27#ifndef _REGEX_H
28#define _REGEX_H 1
29
30/* Allow the use in C++ code. */
31#ifdef __cplusplus
32extern "C" {
33#endif
34
35/* POSIX says that <sys/types.h> must be included (by the caller) before
36 <regex.h>. */
37
38#if !defined _POSIX_C_SOURCE && !defined _POSIX_SOURCE && defined VMS
39/* VMS doesn't have `size_t' in <sys/types.h>, even though POSIX says it
40 should be there. */
41# include <stddef.h>
42#endif
43
44/* The following two types have to be signed and unsigned integer type
45 wide enough to hold a value of a pointer. For most ANSI compilers
46 ptrdiff_t and size_t should be likely OK. Still size of these two
47 types is 2 for Microsoft C. Ugh... */
48typedef long int s_reg_t;
49typedef unsigned long int active_reg_t;
50
51/* The following bits are used to determine the regexp syntax we
52 recognize. The set/not-set meanings are chosen so that Emacs syntax
53 remains the value 0. The bits are given in alphabetical order, and
54 the definitions shifted by one from the previous bit; thus, when we
55 add or remove a bit, only one other definition need change. */
56typedef unsigned long int reg_syntax_t;
57
58/* If this bit is not set, then \ inside a bracket expression is literal.
59 If set, then such a \ quotes the following character. */
60#define RE_BACKSLASH_ESCAPE_IN_LISTS ((unsigned long int) 1)
61
62/* If this bit is not set, then + and ? are operators, and \+ and \? are
63 literals.
64 If set, then \+ and \? are operators and + and ? are literals. */
65#define RE_BK_PLUS_QM (RE_BACKSLASH_ESCAPE_IN_LISTS << 1)
66
67/* If this bit is set, then character classes are supported. They are:
68 [:alpha:], [:upper:], [:lower:], [:digit:], [:alnum:], [:xdigit:],
69 [:space:], [:print:], [:punct:], [:graph:], and [:cntrl:].
70 If not set, then character classes are not supported. */
71#define RE_CHAR_CLASSES (RE_BK_PLUS_QM << 1)
72
73/* If this bit is set, then ^ and $ are always anchors (outside bracket
74 expressions, of course).
75 If this bit is not set, then it depends:
76 ^ is an anchor if it is at the beginning of a regular
77 expression or after an open-group or an alternation operator;
78 $ is an anchor if it is at the end of a regular expression, or
79 before a close-group or an alternation operator.
80
81 This bit could be (re)combined with RE_CONTEXT_INDEP_OPS, because
82 POSIX draft 11.2 says that * etc. in leading positions is undefined.
83 We already implemented a previous draft which made those constructs
84 invalid, though, so we haven't changed the code back. */
85#define RE_CONTEXT_INDEP_ANCHORS (RE_CHAR_CLASSES << 1)
86
87/* If this bit is set, then special characters are always special
88 regardless of where they are in the pattern.
89 If this bit is not set, then special characters are special only in
90 some contexts; otherwise they are ordinary. Specifically,
91 * + ? and intervals are only special when not after the beginning,
92 open-group, or alternation operator. */
93#define RE_CONTEXT_INDEP_OPS (RE_CONTEXT_INDEP_ANCHORS << 1)
94
95/* If this bit is set, then *, +, ?, and { cannot be first in an re or
96 immediately after an alternation or begin-group operator. */
97#define RE_CONTEXT_INVALID_OPS (RE_CONTEXT_INDEP_OPS << 1)
98
99/* If this bit is set, then . matches newline.
100 If not set, then it doesn't. */
101#define RE_DOT_NEWLINE (RE_CONTEXT_INVALID_OPS << 1)
102
103/* If this bit is set, then . doesn't match NUL.
104 If not set, then it does. */
105#define RE_DOT_NOT_NULL (RE_DOT_NEWLINE << 1)
106
107/* If this bit is set, nonmatching lists [^...] do not match newline.
108 If not set, they do. */
109#define RE_HAT_LISTS_NOT_NEWLINE (RE_DOT_NOT_NULL << 1)
110
111/* If this bit is set, either \{...\} or {...} defines an
112 interval, depending on RE_NO_BK_BRACES.
113 If not set, \{, \}, {, and } are literals. */
114#define RE_INTERVALS (RE_HAT_LISTS_NOT_NEWLINE << 1)
115
116/* If this bit is set, +, ? and | aren't recognized as operators.
117 If not set, they are. */
118#define RE_LIMITED_OPS (RE_INTERVALS << 1)
119
120/* If this bit is set, newline is an alternation operator.
121 If not set, newline is literal. */
122#define RE_NEWLINE_ALT (RE_LIMITED_OPS << 1)
123
124/* If this bit is set, then `{...}' defines an interval, and \{ and \}
125 are literals.
126 If not set, then `\{...\}' defines an interval. */
127#define RE_NO_BK_BRACES (RE_NEWLINE_ALT << 1)
128
129/* If this bit is set, (...) defines a group, and \( and \) are literals.
130 If not set, \(...\) defines a group, and ( and ) are literals. */
131#define RE_NO_BK_PARENS (RE_NO_BK_BRACES << 1)
132
133/* If this bit is set, then \<digit> matches <digit>.
134 If not set, then \<digit> is a back-reference. */
135#define RE_NO_BK_REFS (RE_NO_BK_PARENS << 1)
136
137/* If this bit is set, then | is an alternation operator, and \| is literal.
138 If not set, then \| is an alternation operator, and | is literal. */
139#define RE_NO_BK_VBAR (RE_NO_BK_REFS << 1)
140
141/* If this bit is set, then an ending range point collating higher
142 than the starting range point, as in [z-a], is invalid.
143 If not set, then when ending range point collates higher than the
144 starting range point, the range is ignored. */
145#define RE_NO_EMPTY_RANGES (RE_NO_BK_VBAR << 1)
146
147/* If this bit is set, then an unmatched ) is ordinary.
148 If not set, then an unmatched ) is invalid. */
149#define RE_UNMATCHED_RIGHT_PAREN_ORD (RE_NO_EMPTY_RANGES << 1)
150
151/* If this bit is set, succeed as soon as we match the whole pattern,
152 without further backtracking. */
153#define RE_NO_POSIX_BACKTRACKING (RE_UNMATCHED_RIGHT_PAREN_ORD << 1)
154
155/* If this bit is set, do not process the GNU regex operators.
156 If not set, then the GNU regex operators are recognized. */
157#define RE_NO_GNU_OPS (RE_NO_POSIX_BACKTRACKING << 1)
158
159/* If this bit is set, turn on internal regex debugging.
160 If not set, and debugging was on, turn it off.
161 This only works if regex.c is compiled -DDEBUG.
162 We define this bit always, so that all that's needed to turn on
163 debugging is to recompile regex.c; the calling code can always have
164 this bit set, and it won't affect anything in the normal case. */
165#define RE_DEBUG (RE_NO_GNU_OPS << 1)
166
167/* If this bit is set, a syntactically invalid interval is treated as
168 a string of ordinary characters. For example, the ERE 'a{1' is
169 treated as 'a\{1'. */
170#define RE_INVALID_INTERVAL_ORD (RE_DEBUG << 1)
171
172/* This global variable defines the particular regexp syntax to use (for
173 some interfaces). When a regexp is compiled, the syntax used is
174 stored in the pattern buffer, so changing this does not affect
175 already-compiled regexps. */
176extern reg_syntax_t re_syntax_options;
177
178
179/* Define combinations of the above bits for the standard possibilities.
180 (The [[[ comments delimit what gets put into the Texinfo file, so
181 don't delete them!) */
182/* [[[begin syntaxes]]] */
183#define RE_SYNTAX_EMACS 0
184
185#define RE_SYNTAX_AWK \
186 (RE_BACKSLASH_ESCAPE_IN_LISTS | RE_DOT_NOT_NULL \
187 | RE_NO_BK_PARENS | RE_NO_BK_REFS \
188 | RE_NO_BK_VBAR | RE_NO_EMPTY_RANGES \
189 | RE_DOT_NEWLINE | RE_CONTEXT_INDEP_ANCHORS \
190 | RE_UNMATCHED_RIGHT_PAREN_ORD | RE_NO_GNU_OPS)
191
192#define RE_SYNTAX_GNU_AWK \
193 ((RE_SYNTAX_POSIX_EXTENDED | RE_BACKSLASH_ESCAPE_IN_LISTS | RE_DEBUG) \
194 & ~(RE_DOT_NOT_NULL | RE_INTERVALS | RE_CONTEXT_INDEP_OPS))
195
196#define RE_SYNTAX_POSIX_AWK \
197 (RE_SYNTAX_POSIX_EXTENDED | RE_BACKSLASH_ESCAPE_IN_LISTS \
198 | RE_INTERVALS | RE_NO_GNU_OPS)
199
200#define RE_SYNTAX_GREP \
201 (RE_BK_PLUS_QM | RE_CHAR_CLASSES \
202 | RE_HAT_LISTS_NOT_NEWLINE | RE_INTERVALS \
203 | RE_NEWLINE_ALT)
204
205#define RE_SYNTAX_EGREP \
206 (RE_CHAR_CLASSES | RE_CONTEXT_INDEP_ANCHORS \
207 | RE_CONTEXT_INDEP_OPS | RE_HAT_LISTS_NOT_NEWLINE \
208 | RE_NEWLINE_ALT | RE_NO_BK_PARENS \
209 | RE_NO_BK_VBAR)
210
211#define RE_SYNTAX_POSIX_EGREP \
212 (RE_SYNTAX_EGREP | RE_INTERVALS | RE_NO_BK_BRACES \
213 | RE_INVALID_INTERVAL_ORD)
214
215/* P1003.2/D11.2, section 4.20.7.1, lines 5078ff. */
216#define RE_SYNTAX_ED RE_SYNTAX_POSIX_BASIC
217
218#define RE_SYNTAX_SED RE_SYNTAX_POSIX_BASIC
219
220/* Syntax bits common to both basic and extended POSIX regex syntax. */
221#define _RE_SYNTAX_POSIX_COMMON \
222 (RE_CHAR_CLASSES | RE_DOT_NEWLINE | RE_DOT_NOT_NULL \
223 | RE_INTERVALS | RE_NO_EMPTY_RANGES)
224
225#define RE_SYNTAX_POSIX_BASIC \
226 (_RE_SYNTAX_POSIX_COMMON | RE_BK_PLUS_QM)
227
228/* Differs from ..._POSIX_BASIC only in that RE_BK_PLUS_QM becomes
229 RE_LIMITED_OPS, i.e., \? \+ \| are not recognized. Actually, this
230 isn't minimal, since other operators, such as \`, aren't disabled. */
231#define RE_SYNTAX_POSIX_MINIMAL_BASIC \
232 (_RE_SYNTAX_POSIX_COMMON | RE_LIMITED_OPS)
233
234#define RE_SYNTAX_POSIX_EXTENDED \
235 (_RE_SYNTAX_POSIX_COMMON | RE_CONTEXT_INDEP_ANCHORS \
236 | RE_CONTEXT_INDEP_OPS | RE_NO_BK_BRACES \
237 | RE_NO_BK_PARENS | RE_NO_BK_VBAR \
238 | RE_CONTEXT_INVALID_OPS | RE_UNMATCHED_RIGHT_PAREN_ORD)
239
240/* Differs from ..._POSIX_EXTENDED in that RE_CONTEXT_INDEP_OPS is
241 removed and RE_NO_BK_REFS is added. */
242#define RE_SYNTAX_POSIX_MINIMAL_EXTENDED \
243 (_RE_SYNTAX_POSIX_COMMON | RE_CONTEXT_INDEP_ANCHORS \
244 | RE_CONTEXT_INVALID_OPS | RE_NO_BK_BRACES \
245 | RE_NO_BK_PARENS | RE_NO_BK_REFS \
246 | RE_NO_BK_VBAR | RE_UNMATCHED_RIGHT_PAREN_ORD)
247/* [[[end syntaxes]]] */
248
249
250/* Maximum number of duplicates an interval can allow. Some systems
251 (erroneously) define this in other header files, but we want our
252 value, so remove any previous define. */
253#ifdef RE_DUP_MAX
254# undef RE_DUP_MAX
255#endif
256/* If sizeof(int) == 2, then ((1 << 15) - 1) overflows. */
257#define RE_DUP_MAX (0x7fff)
258
259
260/* POSIX `cflags' bits (i.e., information for `regcomp'). */
261
262/* If this bit is set, then use extended regular expression syntax.
263 If not set, then use basic regular expression syntax. */
264#define REG_EXTENDED 1
265
266/* If this bit is set, then ignore case when matching.
267 If not set, then case is significant. */
268#define REG_ICASE (REG_EXTENDED << 1)
269
270/* If this bit is set, then anchors do not match at newline
271 characters in the string.
272 If not set, then anchors do match at newlines. */
273#define REG_NEWLINE (REG_ICASE << 1)
274
275/* If this bit is set, then report only success or fail in regexec.
276 If not set, then returns differ between not matching and errors. */
277#define REG_NOSUB (REG_NEWLINE << 1)
278
279
280/* POSIX `eflags' bits (i.e., information for regexec). */
281
282/* If this bit is set, then the beginning-of-line operator doesn't match
283 the beginning of the string (presumably because it's not the
284 beginning of a line).
285 If not set, then the beginning-of-line operator does match the
286 beginning of the string. */
287#define REG_NOTBOL 1
288
289/* Like REG_NOTBOL, except for the end-of-line. */
290#define REG_NOTEOL (1 << 1)
291
292
293/* If any error codes are removed, changed, or added, update the
294 `re_error_msg' table in regex.c. */
295typedef enum
296{
297#ifdef _XOPEN_SOURCE
298 REG_ENOSYS = -1, /* This will never happen for this implementation. */
299#endif
300
301 REG_NOERROR = 0, /* Success. */
302 REG_NOMATCH, /* Didn't find a match (for regexec). */
303
304 /* POSIX regcomp return error codes. (In the order listed in the
305 standard.) */
306 REG_BADPAT, /* Invalid pattern. */
307 REG_ECOLLATE, /* Not implemented. */
308 REG_ECTYPE, /* Invalid character class name. */
309 REG_EESCAPE, /* Trailing backslash. */
310 REG_ESUBREG, /* Invalid back reference. */
311 REG_EBRACK, /* Unmatched left bracket. */
312 REG_EPAREN, /* Parenthesis imbalance. */
313 REG_EBRACE, /* Unmatched \{. */
314 REG_BADBR, /* Invalid contents of \{\}. */
315 REG_ERANGE, /* Invalid range end. */
316 REG_ESPACE, /* Ran out of memory. */
317 REG_BADRPT, /* No preceding re for repetition op. */
318
319 /* Error codes we've added. */
320 REG_EEND, /* Premature end. */
321 REG_ESIZE, /* Compiled pattern bigger than 2^16 bytes. */
322 REG_ERPAREN /* Unmatched ) or \); not returned from regcomp. */
323} reg_errcode_t;
324
325
326/* This data structure represents a compiled pattern. Before calling
327 the pattern compiler, the fields `buffer', `allocated', `fastmap',
328 `translate', and `no_sub' can be set. After the pattern has been
329 compiled, the `re_nsub' field is available. All other fields are
330 private to the regex routines. */
331
332#ifndef RE_TRANSLATE_TYPE
333# define RE_TRANSLATE_TYPE char *
334#endif
335
336struct re_pattern_buffer
337{
338/* [[[begin pattern_buffer]]] */
339 /* Space that holds the compiled pattern. It is declared as
340 `unsigned char *' because its elements are
341 sometimes used as array indexes. */
342 unsigned char *buffer;
343
344 /* Number of bytes to which `buffer' points. */
345 unsigned long int allocated;
346
347 /* Number of bytes actually used in `buffer'. */
348 unsigned long int used;
349
350 /* Syntax setting with which the pattern was compiled. */
351 reg_syntax_t syntax;
352
353 /* Pointer to a fastmap, if any, otherwise zero. re_search uses
354 the fastmap, if there is one, to skip over impossible
355 starting points for matches. */
356 char *fastmap;
357
358 /* Either a translate table to apply to all characters before
359 comparing them, or zero for no translation. The translation
360 is applied to a pattern when it is compiled and to a string
361 when it is matched. */
362 RE_TRANSLATE_TYPE translate;
363
364 /* Number of subexpressions found by the compiler. */
365 size_t re_nsub;
366
367 /* Zero if this pattern cannot match the empty string, one else.
368 Well, in truth it's used only in `re_search_2', to see
369 whether or not we should use the fastmap, so we don't set
370 this absolutely perfectly; see `re_compile_fastmap' (the
371 `duplicate' case). */
372 unsigned can_be_null : 1;
373
374 /* If REGS_UNALLOCATED, allocate space in the `regs' structure
375 for `max (RE_NREGS, re_nsub + 1)' groups.
376 If REGS_REALLOCATE, reallocate space if necessary.
377 If REGS_FIXED, use what's there. */
378#define REGS_UNALLOCATED 0
379#define REGS_REALLOCATE 1
380#define REGS_FIXED 2
381 unsigned regs_allocated : 2;
382
383 /* Set to zero when `regex_compile' compiles a pattern; set to one
384 by `re_compile_fastmap' if it updates the fastmap. */
385 unsigned fastmap_accurate : 1;
386
387 /* If set, `re_match_2' does not return information about
388 subexpressions. */
389 unsigned no_sub : 1;
390
391 /* If set, a beginning-of-line anchor doesn't match at the
392 beginning of the string. */
393 unsigned not_bol : 1;
394
395 /* Similarly for an end-of-line anchor. */
396 unsigned not_eol : 1;
397
398 /* If true, an anchor at a newline matches. */
399 unsigned newline_anchor : 1;
400
401/* [[[end pattern_buffer]]] */
402};
403
404typedef struct re_pattern_buffer regex_t;
405
406
407/* Type for byte offsets within the string. POSIX mandates this. */
408typedef int regoff_t;
409
410
411/* This is the structure we store register match data in. See
412 regex.texinfo for a full description of what registers match. */
413struct re_registers
414{
415 unsigned num_regs;
416 regoff_t *start;
417 regoff_t *end;
418};
419
420
421/* If `regs_allocated' is REGS_UNALLOCATED in the pattern buffer,
422 `re_match_2' returns information about at least this many registers
423 the first time a `regs' structure is passed. */
424#ifndef RE_NREGS
425# define RE_NREGS 30
426#endif
427
428
429/* POSIX specification for registers. Aside from the different names than
430 `re_registers', POSIX uses an array of structures, instead of a
431 structure of arrays. */
432typedef struct
433{
434 regoff_t rm_so; /* Byte offset from string's start to substring's start. */
435 regoff_t rm_eo; /* Byte offset from string's start to substring's end. */
436} regmatch_t;
437
438
439/* Declarations for routines. */
440
441/* To avoid duplicating every routine declaration -- once with a
442 prototype (if we are ANSI), and once without (if we aren't) -- we
443 use the following macro to declare argument types. This
444 unfortunately clutters up the declarations a bit, but I think it's
445 worth it. */
446
447#if __STDC__
448
449# define _RE_ARGS(args) args
450
451#else /* not __STDC__ */
452
453# define _RE_ARGS(args) ()
454
455#endif /* not __STDC__ */
456
457/* Sets the current default syntax to SYNTAX, and return the old syntax.
458 You can also simply assign to the `re_syntax_options' variable. */
459extern reg_syntax_t re_set_syntax _RE_ARGS ((reg_syntax_t syntax));
460
461/* Compile the regular expression PATTERN, with length LENGTH
462 and syntax given by the global `re_syntax_options', into the buffer
463 BUFFER. Return NULL if successful, and an error string if not. */
464extern const char *re_compile_pattern
465 _RE_ARGS ((const char *pattern, size_t length,
466 struct re_pattern_buffer *buffer));
467
468
469/* Compile a fastmap for the compiled pattern in BUFFER; used to
470 accelerate searches. Return 0 if successful and -2 if was an
471 internal error. */
472extern int re_compile_fastmap _RE_ARGS ((struct re_pattern_buffer *buffer));
473
474
475/* Search in the string STRING (with length LENGTH) for the pattern
476 compiled into BUFFER. Start searching at position START, for RANGE
477 characters. Return the starting position of the match, -1 for no
478 match, or -2 for an internal error. Also return register
479 information in REGS (if REGS and BUFFER->no_sub are nonzero). */
480extern int re_search
481 _RE_ARGS ((struct re_pattern_buffer *buffer, const char *string,
482 int length, int start, int range, struct re_registers *regs));
483
484
485/* Like `re_search', but search in the concatenation of STRING1 and
486 STRING2. Also, stop searching at index START + STOP. */
487extern int re_search_2
488 _RE_ARGS ((struct re_pattern_buffer *buffer, const char *string1,
489 int length1, const char *string2, int length2,
490 int start, int range, struct re_registers *regs, int stop));
491
492
493/* Like `re_search', but return how many characters in STRING the regexp
494 in BUFFER matched, starting at position START. */
495extern int re_match
496 _RE_ARGS ((struct re_pattern_buffer *buffer, const char *string,
497 int length, int start, struct re_registers *regs));
498
499
500/* Relates to `re_match' as `re_search_2' relates to `re_search'. */
501extern int re_match_2
502 _RE_ARGS ((struct re_pattern_buffer *buffer, const char *string1,
503 int length1, const char *string2, int length2,
504 int start, struct re_registers *regs, int stop));
505
506
507/* Set REGS to hold NUM_REGS registers, storing them in STARTS and
508 ENDS. Subsequent matches using BUFFER and REGS will use this memory
509 for recording register information. STARTS and ENDS must be
510 allocated with malloc, and must each be at least `NUM_REGS * sizeof
511 (regoff_t)' bytes long.
512
513 If NUM_REGS == 0, then subsequent matches should allocate their own
514 register data.
515
516 Unless this function is called, the first search or match using
517 PATTERN_BUFFER will allocate its own register data, without
518 freeing the old data. */
519extern void re_set_registers
520 _RE_ARGS ((struct re_pattern_buffer *buffer, struct re_registers *regs,
521 unsigned num_regs, regoff_t *starts, regoff_t *ends));
522
523#if defined _REGEX_RE_COMP || defined _LIBC
524# ifndef _CRAY
525/* 4.2 bsd compatibility. */
526extern char *re_comp _RE_ARGS ((const char *));
527extern int re_exec _RE_ARGS ((const char *));
528# endif
529#endif
530
531/* GCC 2.95 and later have "__restrict"; C99 compilers have
532 "restrict", and "configure" may have defined "restrict". */
533#ifndef __restrict
534# if ! (2 < __GNUC__ || (2 == __GNUC__ && 95 <= __GNUC_MINOR__))
535# if defined restrict || 199901L <= __STDC_VERSION__
536# define __restrict restrict
537# else
538# define __restrict
539# endif
540# endif
541#endif
542
543/* GCC 3.1 and later support declaring arrays as non-overlapping
544 using the syntax array_name[restrict] */
545#ifndef __restrict_arr
546# if ! (3 < __GNUC__ || (3 == __GNUC__ && 1 <= __GNUC_MINOR__)) || defined (__GNUG__)
547# define __restrict_arr
548# else
549# define __restrict_arr __restrict
550# endif
551#endif
552
553/* POSIX compatibility. */
554extern int regcomp _RE_ARGS ((regex_t *__restrict __preg,
555 const char *__restrict __pattern,
556 int __cflags));
557
558extern int regexec _RE_ARGS ((const regex_t *__restrict __preg,
559 const char *__restrict __string, size_t __nmatch,
560 regmatch_t __pmatch[__restrict_arr],
561 int __eflags));
562
563extern size_t regerror _RE_ARGS ((int __errcode, const regex_t *__preg,
564 char *__errbuf, size_t __errbuf_size));
565
566extern void regfree _RE_ARGS ((regex_t *__preg));
567
568
569#ifdef __cplusplus
570}
571#endif /* C++ */
572
573#endif /* regex.h */
574
575
576/*
577Local variables:
578make-backup-files: t
579version-control: t
580trim-versions-without-asking: nil
581End:
582*/
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