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pippijn |
1.1 |
/* |
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* match.C: Casemapping and matching functions. |
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pippijn |
1.5 |
* |
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* Copyright © 2007 Pippijn van Steenhoven / The Ermyth Team |
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* Rights to this code are as documented in COPYING. |
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* |
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* |
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* Portions of this file were derived from sources bearing the following license: |
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pippijn |
1.2 |
* Rights to this code are documented in doc/pod/license.pod. |
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pippijn |
1.4 |
* Copyright © 2005-2007 Atheme Project (http://www.atheme.org) |
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pippijn |
1.1 |
*/ |
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pippijn |
1.6 |
static char const rcsid[] = "$Id: match.C,v 1.5 2007-09-16 18:54:45 pippijn Exp $"; |
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pippijn |
1.1 |
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#include "atheme.h" |
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#define BadPtr(x) (!(x) || (*(x) == '\0')) |
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#define MAX_ITERATIONS 512 |
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/* |
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** Compare if a given string (name) matches the given |
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** mask (which can contain wild cards: '*' - match any |
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** number of chars, '?' - match any single character. |
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** |
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** return 0, if match |
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** 1, if no match |
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*/ |
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/* |
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** match() |
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** Iterative matching function, rather than recursive. |
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** Written by Douglas A Lewis (dalewis@acsu.buffalo.edu) |
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*/ |
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int |
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pippijn |
1.4 |
match (char const * const mask, char const * const name) |
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pippijn |
1.1 |
{ |
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const u_char *m = (const u_char *) mask, *n = (const u_char *) name; |
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pippijn |
1.4 |
char const *ma = mask, *na = name; |
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pippijn |
1.1 |
int wild = 0, q = 0, calls = 0; |
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if (!mask || !name) |
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return 1; |
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/* if the mask is "*", it matches everything */ |
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if ((*m == '*') && (*(m + 1) == '\0')) |
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return 0; |
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while (1) |
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{ |
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#ifdef MAX_ITERATIONS |
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if (calls++ > MAX_ITERATIONS) |
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break; |
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#endif |
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if (*m == '*') |
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{ |
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while (*m == '*') |
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m++; |
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wild = 1; |
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pippijn |
1.4 |
ma = reinterpret_cast<char const *> (m); |
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na = reinterpret_cast<char const *> (n); |
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pippijn |
1.1 |
} |
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if (!*m) |
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{ |
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if (!*n) |
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return 0; |
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for (m--; (m > (const u_char *) mask) && (*m == '?' || *m == '&' || *m == '#'); m--) |
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; |
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if ((m > (const u_char *) mask) && (*m == '*') && (m[-1] != '\\')) |
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return 0; |
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if (!wild) |
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return 1; |
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m = (const u_char *) ma; |
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n = (const u_char *) ++na; |
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} |
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else if (!*n) |
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return 1; |
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if ((*m == '\\') && ((m[1] == '*') || (m[1] == '?') || (m[1] == '&') || (m[1] == '#') || (m[1] == '%'))) |
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{ |
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m++; |
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q = 1; |
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} |
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else |
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q = 0; |
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if ((ToLower (*m) != ToLower (*n)) && (((*m != '?') && !(*m == '&' && IsAlpha (*n)) && !(*m == '#' && IsDigit (*n)) && !(*m == '%' && IsNon (*n))) || q)) |
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{ |
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if (!wild) |
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return 1; |
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m = (const u_char *) ma; |
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n = (const u_char *) ++na; |
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} |
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else |
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{ |
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if (*m) |
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m++; |
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if (*n) |
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n++; |
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} |
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} |
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return 1; |
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} |
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/* |
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** collapse a pattern string into minimal components. |
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** This particular version is "in place", so that it changes the pattern |
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** which is to be reduced to a "minimal" size. |
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*/ |
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char * |
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collapse (char *pattern) |
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{ |
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char *s = pattern, *s1, *t; |
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if (BadPtr (pattern)) |
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return pattern; |
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/* |
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* Collapse all \** into \*, \*[?]+\** into \*[?]+ |
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*/ |
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for (; *s; s++) |
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if (*s == '\\') |
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if (!*(s + 1)) |
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break; |
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else |
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s++; |
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else if (*s == '*') |
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{ |
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if (*(t = s1 = s + 1) == '*') |
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while (*t == '*') |
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t++; |
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else if (*t == '?') |
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for (t++, s1++; *t == '*' || *t == '?'; t++) |
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if (*t == '?') |
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*s1++ = *t; |
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while ((*s1++ = *t++)) |
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; |
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} |
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return pattern; |
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} |
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/* |
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* regex_compile() |
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* Compile a regex of `pattern' and return it. |
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*/ |
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regex_t * |
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regex_create (char *pattern, int flags) |
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{ |
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static char errmsg[BUFSIZE]; |
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int errnum; |
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regex_t *preg; |
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if (pattern == NULL) |
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{ |
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return NULL; |
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} |
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pippijn |
1.4 |
preg = new regex_t; |
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pippijn |
1.1 |
errnum = regcomp (preg, pattern, (flags & AREGEX_ICASE ? REG_ICASE : 0) | REG_EXTENDED); |
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if (errnum != 0) |
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{ |
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regerror (errnum, preg, errmsg, BUFSIZE); |
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slog (LG_ERROR, "regex_match(): %s\n", errmsg); |
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regfree (preg); |
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pippijn |
1.4 |
delete preg; |
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pippijn |
1.1 |
return NULL; |
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} |
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return preg; |
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} |
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char * |
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regex_extract (char *pattern, char **pend, int *pflags) |
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{ |
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char c, *p, *p2; |
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bool backslash = false; |
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c = *pattern; |
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if (isalnum (c) || isspace (c) || c == '\\') |
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return NULL; |
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p = pattern + 1; |
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while (*p != c || backslash) |
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{ |
| 187 |
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if (*p == '\0') |
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return NULL; |
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if (backslash || *p == '\\') |
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backslash = !backslash; |
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p++; |
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} |
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p2 = p; |
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p++; |
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*pflags = 0; |
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while (*p != '\0' && *p != ' ') |
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{ |
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if (*p == 'i') |
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*pflags |= AREGEX_ICASE; |
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else if (!isalnum (*p)) |
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return NULL; |
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p++; |
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} |
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*pend = p; |
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*p2 = '\0'; |
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return pattern + 1; |
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} |
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/* |
| 210 |
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* regex_match() |
| 211 |
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* Internal wrapper API for POSIX-based regex matching. |
| 212 |
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* `preg' is the regex to check with, `string' needs to be checked against. |
| 213 |
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* Returns `true' on match, `false' else. |
| 214 |
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*/ |
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bool |
| 216 |
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regex_match (regex_t * preg, char *string) |
| 217 |
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{ |
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bool retval; |
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if (preg == NULL || string == NULL) |
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{ |
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slog (LG_ERROR, "regex_match(): we were given NULL string or pattern, bad!"); |
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return false; |
| 224 |
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} |
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/* match it */ |
| 227 |
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if (regexec (preg, string, 0, NULL, 0) == 0) |
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retval = true; |
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else |
| 230 |
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retval = false; |
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| 232 |
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return retval; |
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} |
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/* |
| 236 |
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* regex_destroy() |
| 237 |
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* Perform cleanup with regex `preg', free associated memory. |
| 238 |
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*/ |
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bool |
| 240 |
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regex_destroy (regex_t * preg) |
| 241 |
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{ |
| 242 |
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regfree (preg); |
| 243 |
pippijn |
1.4 |
delete preg; |
| 244 |
pippijn |
1.1 |
return true; |
| 245 |
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} |