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root/svn/ircd-hybrid/trunk/src/hostmask.c
Revision: 4340
Committed: Sat Aug 2 16:53:22 2014 UTC (11 years ago) by michael
Content type: text/x-csrc
File size: 21054 byte(s)
Log Message:
- Renamed structures to meet code conventions

File Contents

# User Rev Content
1 adx 30 /*
2 michael 2916 * ircd-hybrid: an advanced, lightweight Internet Relay Chat Daemon (ircd)
3 adx 30 *
4 michael 2916 * Copyright (c) 2001-2014 ircd-hybrid development team
5 adx 30 *
6     * This program is free software; you can redistribute it and/or modify
7     * it under the terms of the GNU General Public License as published by
8     * the Free Software Foundation; either version 2 of the License, or
9     * (at your option) any later version.
10     *
11     * This program is distributed in the hope that it will be useful,
12     * but WITHOUT ANY WARRANTY; without even the implied warranty of
13     * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14     * GNU General Public License for more details.
15     *
16     * You should have received a copy of the GNU General Public License
17     * along with this program; if not, write to the Free Software
18     * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
19     * USA
20     */
21    
22 michael 2916 /*! \file hostmask.c
23     * \brief Code to efficiently find IP & hostmask based configs.
24     * \version $Id$
25     */
26    
27 adx 30 #include "stdinc.h"
28     #include "memory.h"
29     #include "ircd_defs.h"
30 michael 1011 #include "list.h"
31 michael 1309 #include "conf.h"
32 adx 30 #include "hostmask.h"
33     #include "send.h"
34     #include "irc_string.h"
35 michael 1369 #include "ircd.h"
36 adx 30
37    
38     #define DigitParse(ch) do { \
39     if (ch >= '0' && ch <= '9') \
40     ch = ch - '0'; \
41     else if (ch >= 'A' && ch <= 'F') \
42     ch = ch - 'A' + 10; \
43     else if (ch >= 'a' && ch <= 'f') \
44     ch = ch - 'a' + 10; \
45 michael 1298 } while (0);
46 adx 30
47     /* The mask parser/type determination code... */
48    
49     /* int try_parse_v6_netmask(const char *, struct irc_ssaddr *, int *);
50     * Input: A possible IPV6 address as a string.
51     * Output: An integer describing whether it is an IPV6 or hostmask,
52     * an address(if it is IPV6), a bitlength(if it is IPV6).
53     * Side effects: None
54     * Comments: Called from parse_netmask
55     */
56 michael 2916 /* Fixed so ::/0 (any IPv6 address) is valid
57 adx 30 Also a bug in DigitParse above.
58     -Gozem 2002-07-19 gozem@linux.nu
59     */
60     #ifdef IPV6
61     static int
62     try_parse_v6_netmask(const char *text, struct irc_ssaddr *addr, int *b)
63     {
64     char c;
65     int d[8] = { 0, 0, 0, 0, 0, 0, 0, 0 };
66     int dp = 0;
67     int nyble = 4;
68     int finsert = -1;
69     int bits = 128;
70     int deficit = 0;
71     short dc[8];
72 michael 1298 struct sockaddr_in6 *v6 = (struct sockaddr_in6 *)addr;
73 adx 30
74 michael 3469 for (const char *p = text; (c = *p); ++p)
75 michael 2894 {
76 adx 30 if (IsXDigit(c))
77     {
78     if (nyble == 0)
79     return HM_HOST;
80     DigitParse(c);
81     d[dp] |= c << (4 * --nyble);
82     }
83     else if (c == ':')
84     {
85     if (p > text && *(p - 1) == ':')
86     {
87     if (finsert >= 0)
88     return HM_HOST;
89     finsert = dp;
90     }
91     else
92     {
93     /* If there were less than 4 hex digits, e.g. :ABC: shift right
94     * so we don't interpret it as ABC0 -A1kmm */
95     d[dp] = d[dp] >> 4 * nyble;
96     nyble = 4;
97     if (++dp >= 8)
98     return HM_HOST;
99     }
100     }
101     else if (c == '*')
102     {
103     /* * must be last, and * is ambiguous if there is a ::... -A1kmm */
104     if (finsert >= 0 || *(p + 1) || dp == 0 || *(p - 1) != ':')
105     return HM_HOST;
106     bits = dp * 16;
107     }
108     else if (c == '/')
109     {
110     char *after;
111    
112     d[dp] = d[dp] >> 4 * nyble;
113 michael 3215 ++dp;
114 adx 30 bits = strtoul(p + 1, &after, 10);
115 michael 1298
116 adx 30 if (bits < 0 || *after)
117     return HM_HOST;
118     if (bits > dp * 4 && !(finsert >= 0 && bits <= 128))
119     return HM_HOST;
120     break;
121     }
122     else
123     return HM_HOST;
124 michael 2894 }
125 adx 30
126     d[dp] = d[dp] >> 4 * nyble;
127 michael 1298
128 adx 30 if (c == 0)
129 michael 3215 ++dp;
130 adx 30 if (finsert < 0 && bits == 0)
131     bits = dp * 16;
132 michael 1298
133 adx 30 /* How many words are missing? -A1kmm */
134     deficit = bits / 16 + ((bits % 16) ? 1 : 0) - dp;
135 michael 1298
136 adx 30 /* Now fill in the gaps(from ::) in the copied table... -A1kmm */
137 michael 3215 for (dp = 0, nyble = 0; dp < 8; ++dp)
138 adx 30 {
139     if (nyble == finsert && deficit)
140     {
141     dc[dp] = 0;
142     deficit--;
143     }
144     else
145     dc[dp] = d[nyble++];
146     }
147 michael 1298
148 adx 30 /* Set unused bits to 0... -A1kmm */
149     if (bits < 128 && (bits % 16 != 0))
150     dc[bits / 16] &= ~((1 << (15 - bits % 16)) - 1);
151 michael 3215 for (dp = bits / 16 + (bits % 16 ? 1 : 0); dp < 8; ++dp)
152 adx 30 dc[dp] = 0;
153 michael 1298
154 adx 30 /* And assign... -A1kmm */
155     if (addr)
156 michael 3215 for (dp = 0; dp < 8; ++dp)
157 adx 30 /* The cast is a kludge to make netbsd work. */
158     ((unsigned short *)&v6->sin6_addr)[dp] = htons(dc[dp]);
159 michael 1298
160 michael 3215 if (b)
161 adx 30 *b = bits;
162     return HM_IPV6;
163     }
164     #endif
165    
166     /* int try_parse_v4_netmask(const char *, struct irc_ssaddr *, int *);
167     * Input: A possible IPV4 address as a string.
168     * Output: An integer describing whether it is an IPV4 or hostmask,
169     * an address(if it is IPV4), a bitlength(if it is IPV4).
170     * Side effects: None
171     * Comments: Called from parse_netmask
172     */
173     static int
174     try_parse_v4_netmask(const char *text, struct irc_ssaddr *addr, int *b)
175     {
176     const char *digits[4];
177     unsigned char addb[4];
178     int n = 0, bits = 0;
179     char c;
180 michael 1298 struct sockaddr_in *v4 = (struct sockaddr_in *)addr;
181 adx 30
182     digits[n++] = text;
183    
184 michael 3469 for (const char *p = text; (c = *p); ++p)
185 michael 2894 {
186 adx 30 if (c >= '0' && c <= '9') /* empty */
187     ;
188     else if (c == '.')
189     {
190     if (n >= 4)
191     return HM_HOST;
192 michael 1298
193 adx 30 digits[n++] = p + 1;
194     }
195     else if (c == '*')
196     {
197     if (*(p + 1) || n == 0 || *(p - 1) != '.')
198     return HM_HOST;
199 michael 1298
200 adx 30 bits = (n - 1) * 8;
201     break;
202     }
203     else if (c == '/')
204     {
205     char *after;
206     bits = strtoul(p + 1, &after, 10);
207 michael 1298
208 michael 1786 if (bits < 0 || *after)
209 adx 30 return HM_HOST;
210     if (bits > n * 8)
211     return HM_HOST;
212 michael 1298
213 adx 30 break;
214     }
215     else
216     return HM_HOST;
217 michael 2894 }
218 adx 30
219     if (n < 4 && bits == 0)
220     bits = n * 8;
221     if (bits)
222     while (n < 4)
223     digits[n++] = "0";
224 michael 1298
225 michael 3215 for (n = 0; n < 4; ++n)
226 adx 30 addb[n] = strtoul(digits[n], NULL, 10);
227 michael 1298
228 adx 30 if (bits == 0)
229     bits = 32;
230 michael 1298
231 adx 30 /* Set unused bits to 0... -A1kmm */
232     if (bits < 32 && bits % 8)
233     addb[bits / 8] &= ~((1 << (8 - bits % 8)) - 1);
234 michael 3215 for (n = bits / 8 + (bits % 8 ? 1 : 0); n < 4; ++n)
235 adx 30 addb[n] = 0;
236     if (addr)
237     v4->sin_addr.s_addr =
238     htonl(addb[0] << 24 | addb[1] << 16 | addb[2] << 8 | addb[3]);
239 michael 3215 if (b)
240 adx 30 *b = bits;
241     return HM_IPV4;
242     }
243    
244     /* int parse_netmask(const char *, struct irc_ssaddr *, int *);
245     * Input: A hostmask, or an IPV4/6 address.
246     * Output: An integer describing whether it is an IPV4, IPV6 address or a
247     * hostmask, an address(if it is an IP mask),
248     * a bitlength(if it is IP mask).
249     * Side effects: None
250     */
251     int
252     parse_netmask(const char *text, struct irc_ssaddr *addr, int *b)
253     {
254 michael 2814 if (strchr(text, '.'))
255     return try_parse_v4_netmask(text, addr, b);
256 adx 30 #ifdef IPV6
257 michael 1298 if (strchr(text, ':'))
258 adx 30 return try_parse_v6_netmask(text, addr, b);
259     #endif
260     return HM_HOST;
261     }
262    
263     /* The address matching stuff... */
264     /* int match_ipv6(struct irc_ssaddr *, struct irc_ssaddr *, int)
265     * Input: An IP address, an IP mask, the number of bits in the mask.
266     * Output: if match, -1 else 0
267     * Side effects: None
268     */
269     #ifdef IPV6
270     int
271 michael 1455 match_ipv6(const struct irc_ssaddr *addr, const struct irc_ssaddr *mask, int bits)
272 adx 30 {
273     int i, m, n = bits / 8;
274 michael 1455 const struct sockaddr_in6 *v6 = (const struct sockaddr_in6 *)addr;
275     const struct sockaddr_in6 *v6mask = (const struct sockaddr_in6 *)mask;
276 adx 30
277 michael 3215 for (i = 0; i < n; ++i)
278 adx 30 if (v6->sin6_addr.s6_addr[i] != v6mask->sin6_addr.s6_addr[i])
279     return 0;
280 michael 3215
281 adx 30 if ((m = bits % 8) == 0)
282     return -1;
283     if ((v6->sin6_addr.s6_addr[n] & ~((1 << (8 - m)) - 1)) ==
284     v6mask->sin6_addr.s6_addr[n])
285     return -1;
286     return 0;
287     }
288     #endif
289 michael 1372
290 adx 30 /* int match_ipv4(struct irc_ssaddr *, struct irc_ssaddr *, int)
291     * Input: An IP address, an IP mask, the number of bits in the mask.
292     * Output: if match, -1 else 0
293     * Side Effects: None
294     */
295     int
296 michael 1455 match_ipv4(const struct irc_ssaddr *addr, const struct irc_ssaddr *mask, int bits)
297 adx 30 {
298 michael 1455 const struct sockaddr_in *v4 = (const struct sockaddr_in *)addr;
299     const struct sockaddr_in *v4mask = (const struct sockaddr_in *)mask;
300 michael 1298
301 adx 30 if ((ntohl(v4->sin_addr.s_addr) & ~((1 << (32 - bits)) - 1)) !=
302     ntohl(v4mask->sin_addr.s_addr))
303     return 0;
304     return -1;
305     }
306    
307     /*
308     * mask_addr
309     *
310     * inputs - pointer to the ip to mask
311     * - bitlen
312     * output - NONE
313     * side effects -
314     */
315     void
316     mask_addr(struct irc_ssaddr *ip, int bits)
317     {
318     int mask;
319     #ifdef IPV6
320     struct sockaddr_in6 *v6_base_ip;
321     int i, m, n;
322     #endif
323     struct sockaddr_in *v4_base_ip;
324    
325     #ifdef IPV6
326     if (ip->ss.ss_family != AF_INET6)
327     #endif
328     {
329 michael 3770 uint32_t tmp = 0;
330 michael 1298 v4_base_ip = (struct sockaddr_in *)ip;
331    
332 adx 30 mask = ~((1 << (32 - bits)) - 1);
333 michael 3770 tmp = ntohl(v4_base_ip->sin_addr.s_addr);
334     v4_base_ip->sin_addr.s_addr = htonl(tmp & mask);
335 adx 30 }
336     #ifdef IPV6
337     else
338     {
339     n = bits / 8;
340     m = bits % 8;
341 michael 1298 v6_base_ip = (struct sockaddr_in6 *)ip;
342 adx 30
343     mask = ~((1 << (8 - m)) -1 );
344     v6_base_ip->sin6_addr.s6_addr[n] = v6_base_ip->sin6_addr.s6_addr[n] & mask;
345 michael 1298
346 db 300 for (i = n + 1; i < 16; i++)
347     v6_base_ip->sin6_addr.s6_addr[i] = 0;
348 adx 30 }
349     #endif
350     }
351    
352 michael 4298 /* Hashtable stuff...now external as it's used in m_stats.c */
353 michael 1367 dlink_list atable[ATABLE_SIZE];
354 adx 30
355     void
356     init_host_hash(void)
357     {
358     memset(&atable, 0, sizeof(atable));
359     }
360    
361     /* unsigned long hash_ipv4(struct irc_ssaddr*)
362     * Input: An IP address.
363     * Output: A hash value of the IP address.
364     * Side effects: None
365     */
366 michael 1343 static uint32_t
367 michael 2898 hash_ipv4(const struct irc_ssaddr *addr, int bits)
368 adx 30 {
369     if (bits != 0)
370     {
371 michael 2898 const struct sockaddr_in *v4 = (const struct sockaddr_in *)addr;
372 michael 1343 uint32_t av = ntohl(v4->sin_addr.s_addr) & ~((1 << (32 - bits)) - 1);
373 michael 1298
374     return (av ^ (av >> 12) ^ (av >> 24)) & (ATABLE_SIZE - 1);
375 adx 30 }
376    
377 michael 1298 return 0;
378 adx 30 }
379    
380     /* unsigned long hash_ipv6(struct irc_ssaddr*)
381     * Input: An IP address.
382     * Output: A hash value of the IP address.
383     * Side effects: None
384     */
385     #ifdef IPV6
386 michael 1343 static uint32_t
387 michael 2898 hash_ipv6(const struct irc_ssaddr *addr, int bits)
388 adx 30 {
389 michael 1343 uint32_t v = 0, n;
390 michael 2898 const struct sockaddr_in6 *v6 = (const struct sockaddr_in6 *)addr;
391 michael 1298
392 michael 3215 for (n = 0; n < 16; ++n)
393 adx 30 {
394     if (bits >= 8)
395     {
396     v ^= v6->sin6_addr.s6_addr[n];
397     bits -= 8;
398     }
399     else if (bits)
400     {
401     v ^= v6->sin6_addr.s6_addr[n] & ~((1 << (8 - bits)) - 1);
402     return v & (ATABLE_SIZE - 1);
403     }
404     else
405     return v & (ATABLE_SIZE - 1);
406     }
407     return v & (ATABLE_SIZE - 1);
408     }
409     #endif
410    
411     /* int hash_text(const char *start)
412     * Input: The start of the text to hash.
413     * Output: The hash of the string between 1 and (TH_MAX-1)
414     * Side-effects: None.
415     */
416 michael 1343 static uint32_t
417 adx 30 hash_text(const char *start)
418     {
419 michael 1343 uint32_t h = 0;
420 adx 30
421 michael 3469 for (const char *p = start; *p; ++p)
422 michael 2331 h = (h << 4) - (h + ToLower(*p));
423 michael 1298
424     return h & (ATABLE_SIZE - 1);
425 adx 30 }
426    
427     /* unsigned long get_hash_mask(const char *)
428     * Input: The text to hash.
429     * Output: The hash of the string right of the first '.' past the last
430     * wildcard in the string.
431     * Side-effects: None.
432     */
433 michael 1343 static uint32_t
434 adx 30 get_mask_hash(const char *text)
435     {
436     const char *hp = "", *p;
437    
438 michael 3215 for (p = text + strlen(text) - 1; p >= text; --p)
439 adx 723 if (IsMWildChar(*p))
440 adx 30 return hash_text(hp);
441     else if (*p == '.')
442     hp = p + 1;
443     return hash_text(text);
444     }
445    
446 michael 1632 /* struct MaskItem *find_conf_by_address(const char *, struct irc_ssaddr *,
447 adx 30 * int type, int fam, const char *username)
448     * Input: The hostname, the address, the type of mask to find, the address
449     * family, the username.
450     * Output: The matching value with the highest precedence.
451     * Side-effects: None
452     * Note: Setting bit 0 of the type means that the username is ignored.
453     * Warning: IsNeedPassword for everything that is not an auth{} entry
454 michael 1632 * should always be true (i.e. conf->flags & CONF_FLAGS_NEED_PASSWORD == 0)
455 adx 30 */
456 michael 1632 struct MaskItem *
457 michael 1369 find_conf_by_address(const char *name, struct irc_ssaddr *addr, unsigned int type,
458 michael 1371 int fam, const char *username, const char *password, int do_match)
459 adx 30 {
460 michael 1343 unsigned int hprecv = 0;
461 michael 1367 dlink_node *ptr = NULL;
462 michael 1632 struct MaskItem *hprec = NULL;
463     struct AddressRec *arec = NULL;
464 adx 30 int b;
465 michael 1371 int (*cmpfunc)(const char *, const char *) = do_match ? match : irccmp;
466 adx 30
467     if (addr)
468     {
469     /* Check for IPV6 matches... */
470     #ifdef IPV6
471     if (fam == AF_INET6)
472     {
473     for (b = 128; b >= 0; b -= 16)
474     {
475 michael 1367 DLINK_FOREACH(ptr, atable[hash_ipv6(addr, b)].head)
476     {
477 michael 2916 arec = ptr->data;
478 michael 1367
479 michael 2995 if ((arec->type == type) &&
480 adx 30 arec->precedence > hprecv &&
481     arec->masktype == HM_IPV6 &&
482     match_ipv6(addr, &arec->Mask.ipa.addr,
483     arec->Mask.ipa.bits) &&
484 michael 2995 (!username || !cmpfunc(arec->username, username)) &&
485 michael 2916 (IsNeedPassword(arec->conf) || arec->conf->passwd == NULL ||
486     match_conf_password(password, arec->conf)))
487 adx 30 {
488     hprecv = arec->precedence;
489 michael 1632 hprec = arec->conf;
490 adx 30 }
491 michael 1367 }
492 adx 30 }
493     }
494     else
495     #endif
496     if (fam == AF_INET)
497     {
498     for (b = 32; b >= 0; b -= 8)
499     {
500 michael 1367 DLINK_FOREACH(ptr, atable[hash_ipv4(addr, b)].head)
501     {
502     arec = ptr->data;
503    
504 michael 2995 if ((arec->type == type) &&
505 adx 30 arec->precedence > hprecv &&
506     arec->masktype == HM_IPV4 &&
507     match_ipv4(addr, &arec->Mask.ipa.addr,
508     arec->Mask.ipa.bits) &&
509 michael 2995 (!username || !cmpfunc(arec->username, username)) &&
510 michael 2916 (IsNeedPassword(arec->conf) || arec->conf->passwd == NULL ||
511     match_conf_password(password, arec->conf)))
512 adx 30 {
513     hprecv = arec->precedence;
514 michael 1632 hprec = arec->conf;
515 adx 30 }
516 michael 1367 }
517 adx 30 }
518     }
519     }
520    
521 michael 3215 if (name)
522 adx 30 {
523     const char *p = name;
524    
525     while (1)
526     {
527 michael 1367 DLINK_FOREACH(ptr, atable[hash_text(p)].head)
528     {
529     arec = ptr->data;
530 michael 2995 if ((arec->type == type) &&
531 adx 30 arec->precedence > hprecv &&
532     (arec->masktype == HM_HOST) &&
533 michael 1652 !cmpfunc(arec->Mask.hostname, name) &&
534 michael 2995 (!username || !cmpfunc(arec->username, username)) &&
535 michael 1632 (IsNeedPassword(arec->conf) || arec->conf->passwd == NULL ||
536     match_conf_password(password, arec->conf)))
537 adx 30 {
538     hprecv = arec->precedence;
539 michael 1632 hprec = arec->conf;
540 adx 30 }
541 michael 1367 }
542 michael 3215
543     if ((p = strchr(p, '.')) == NULL)
544 adx 30 break;
545 michael 3215 ++p;
546 adx 30 }
547 michael 1367
548     DLINK_FOREACH(ptr, atable[0].head)
549     {
550     arec = ptr->data;
551    
552 michael 2995 if (arec->type == type &&
553 adx 30 arec->precedence > hprecv &&
554     arec->masktype == HM_HOST &&
555 michael 1652 !cmpfunc(arec->Mask.hostname, name) &&
556 michael 2995 (!username || !cmpfunc(arec->username, username)) &&
557 michael 1632 (IsNeedPassword(arec->conf) || arec->conf->passwd == NULL ||
558     match_conf_password(password, arec->conf)))
559 adx 30 {
560     hprecv = arec->precedence;
561 michael 1632 hprec = arec->conf;
562 adx 30 }
563 michael 1367 }
564 adx 30 }
565    
566     return hprec;
567     }
568    
569 michael 1632 /* struct MaskItem* find_address_conf(const char*, const char*,
570 adx 30 * struct irc_ssaddr*, int, char *);
571     * Input: The hostname, username, address, address family.
572 michael 1632 * Output: The applicable MaskItem.
573 adx 30 * Side-effects: None
574     */
575 michael 1632 struct MaskItem *
576 michael 3553 find_address_conf(const char *host, const char *user, struct irc_ssaddr *ip,
577     int aftype, const char *password)
578 adx 30 {
579 michael 1632 struct MaskItem *authcnf = NULL, *killcnf = NULL;
580 adx 30
581 michael 1426 /* Find the best auth{} block... If none, return NULL -A1kmm */
582 michael 1632 if ((authcnf = find_conf_by_address(host, ip, CONF_CLIENT, aftype, user,
583     password, 1)) == NULL)
584 michael 1298 return NULL;
585 adx 30
586 michael 1426 /* If they are exempt from K-lines, return the best auth{} block. -A1kmm */
587 michael 1632 if (IsConfExemptKline(authcnf))
588     return authcnf;
589 adx 30
590     /* Find the best K-line... -A1kmm */
591 michael 1632 killcnf = find_conf_by_address(host, ip, CONF_KLINE, aftype, user, NULL, 1);
592 adx 30
593 michael 1426 /*
594     * If they are K-lined, return the K-line. Otherwise, return the
595     * auth{} block. -A1kmm
596     */
597 michael 3215 if (killcnf)
598 michael 1632 return killcnf;
599 adx 30
600 michael 1632 if (IsConfExemptGline(authcnf))
601     return authcnf;
602 adx 30
603 michael 1632 killcnf = find_conf_by_address(host, ip, CONF_GLINE, aftype, user, NULL, 1);
604 michael 3215 if (killcnf)
605 michael 1632 return killcnf;
606    
607     return authcnf;
608 adx 30 }
609    
610 michael 1632 /* struct MaskItem* find_dline_conf(struct irc_ssaddr*, int)
611 adx 30 *
612     * Input: An address, an address family.
613     * Output: The best matching D-line or exempt line.
614     * Side effects: None.
615     */
616 michael 1632 struct MaskItem *
617 adx 30 find_dline_conf(struct irc_ssaddr *addr, int aftype)
618     {
619 michael 1632 struct MaskItem *eline;
620 adx 30
621 michael 2995 eline = find_conf_by_address(NULL, addr, CONF_EXEMPT, aftype, NULL, NULL, 1);
622 michael 3215 if (eline)
623 michael 1298 return eline;
624    
625 michael 2995 return find_conf_by_address(NULL, addr, CONF_DLINE, aftype, NULL, NULL, 1);
626 adx 30 }
627    
628 michael 1632 /* void add_conf_by_address(int, struct MaskItem *aconf)
629 michael 2916 * Input:
630 adx 30 * Output: None
631     * Side-effects: Adds this entry to the hash table.
632     */
633 michael 2811 struct AddressRec *
634 michael 1632 add_conf_by_address(const unsigned int type, struct MaskItem *conf)
635 adx 30 {
636 michael 3001 const char *hostname = conf->host;
637     const char *username = conf->user;
638 michael 1343 static unsigned int prec_value = 0xFFFFFFFF;
639 michael 1367 int bits = 0;
640 michael 3001 struct AddressRec *arec = NULL;
641 adx 30
642 michael 3003 assert(type && !EmptyString(hostname));
643 adx 30
644 michael 3504 arec = MyCalloc(sizeof(struct AddressRec));
645 michael 3001 arec->masktype = parse_netmask(hostname, &arec->Mask.ipa.addr, &bits);
646 adx 30 arec->Mask.ipa.bits = bits;
647 michael 1367 arec->username = username;
648 michael 1632 arec->conf = conf;
649 michael 1367 arec->precedence = prec_value--;
650     arec->type = type;
651 michael 1298
652 michael 1367 switch (arec->masktype)
653     {
654     case HM_IPV4:
655     /* We have to do this, since we do not re-hash for every bit -A1kmm. */
656     bits -= bits % 8;
657     dlinkAdd(arec, &arec->node, &atable[hash_ipv4(&arec->Mask.ipa.addr, bits)]);
658     break;
659 adx 30 #ifdef IPV6
660 michael 1367 case HM_IPV6:
661     /* We have to do this, since we do not re-hash for every bit -A1kmm. */
662     bits -= bits % 16;
663     dlinkAdd(arec, &arec->node, &atable[hash_ipv6(&arec->Mask.ipa.addr, bits)]);
664     break;
665 adx 30 #endif
666 michael 1367 default: /* HM_HOST */
667 michael 3001 arec->Mask.hostname = hostname;
668     dlinkAdd(arec, &arec->node, &atable[get_mask_hash(hostname)]);
669 michael 1367 break;
670 adx 30 }
671 michael 2811
672     return arec;
673 adx 30 }
674    
675 michael 1632 /* void delete_one_address(const char*, struct MaskItem*)
676     * Input: An address string, the associated MaskItem.
677 adx 30 * Output: None
678 michael 1632 * Side effects: Deletes an address record. Frees the MaskItem if there
679 adx 30 * is nothing referencing it, sets it as illegal otherwise.
680     */
681     void
682 michael 1632 delete_one_address_conf(const char *address, struct MaskItem *conf)
683 adx 30 {
684 michael 1367 int bits = 0;
685     uint32_t hv = 0;
686 michael 3535 dlink_node *ptr = NULL;
687 adx 30 struct irc_ssaddr addr;
688 michael 1298
689 michael 1367 switch (parse_netmask(address, &addr, &bits))
690     {
691     case HM_IPV4:
692     /* We have to do this, since we do not re-hash for every bit -A1kmm. */
693     bits -= bits % 8;
694     hv = hash_ipv4(&addr, bits);
695     break;
696 adx 30 #ifdef IPV6
697 michael 1367 case HM_IPV6:
698     /* We have to do this, since we do not re-hash for every bit -A1kmm. */
699     bits -= bits % 16;
700     hv = hash_ipv6(&addr, bits);
701     break;
702 adx 30 #endif
703 michael 1367 default: /* HM_HOST */
704     hv = get_mask_hash(address);
705     break;
706 adx 30 }
707 michael 1298
708 michael 3535 DLINK_FOREACH(ptr, atable[hv].head)
709 adx 30 {
710 michael 1367 struct AddressRec *arec = ptr->data;
711    
712 michael 1632 if (arec->conf == conf)
713 adx 30 {
714 michael 1367 dlinkDelete(&arec->node, &atable[hv]);
715 michael 1298
716 michael 1644 if (!conf->ref_count)
717 michael 1632 conf_free(conf);
718 michael 1298
719 adx 30 MyFree(arec);
720     return;
721     }
722     }
723     }
724    
725     /* void clear_out_address_conf(void)
726     * Input: None
727     * Output: None
728     * Side effects: Clears out all address records in the hash table,
729 michael 1632 * frees them, and frees the MaskItems if nothing references
730 michael 2916 * them, otherwise sets them as illegal.
731 adx 30 */
732     void
733     clear_out_address_conf(void)
734     {
735 michael 1367 dlink_node *ptr = NULL, *ptr_next = NULL;
736 michael 2916
737 michael 3235 for (unsigned int i = 0; i < ATABLE_SIZE; ++i)
738 adx 30 {
739 michael 1367 DLINK_FOREACH_SAFE(ptr, ptr_next, atable[i].head)
740 adx 30 {
741 michael 1367 struct AddressRec *arec = ptr->data;
742    
743 michael 1628 /*
744     * We keep the temporary K-lines and destroy the permanent ones,
745     * just to be confusing :) -A1kmm
746     */
747 michael 1649 if (arec->conf->until || IsConfDatabase(arec->conf))
748 michael 1628 continue;
749 michael 1622
750 michael 1628 dlinkDelete(&arec->node, &atable[i]);
751 michael 1298
752 michael 1644 if (!arec->conf->ref_count)
753 michael 1632 conf_free(arec->conf);
754 michael 1628 MyFree(arec);
755 adx 30 }
756     }
757     }
758    
759 michael 1369 static void
760     hostmask_send_expiration(struct AddressRec *arec)
761     {
762     char ban_type = '\0';
763    
764 michael 4340 if (!ConfigGeneral.tkline_expire_notices)
765 michael 1369 return;
766    
767     switch (arec->type)
768     {
769     case CONF_KLINE:
770     ban_type = 'K';
771     break;
772     case CONF_DLINE:
773     ban_type = 'D';
774     break;
775     case CONF_GLINE:
776     ban_type = 'G';
777     break;
778 michael 1644 default: break;
779 michael 1369 }
780 michael 2916
781 michael 1618 sendto_realops_flags(UMODE_ALL, L_ALL, SEND_NOTICE,
782 michael 1369 "Temporary %c-line for [%s@%s] expired", ban_type,
783 michael 1632 (arec->conf->user) ? arec->conf->user : "*",
784     (arec->conf->host) ? arec->conf->host : "*");
785 michael 1369 }
786    
787     void
788     hostmask_expire_temporary(void)
789     {
790     dlink_node *ptr = NULL, *ptr_next = NULL;
791    
792 michael 3235 for (unsigned int i = 0; i < ATABLE_SIZE; ++i)
793 michael 1369 {
794     DLINK_FOREACH_SAFE(ptr, ptr_next, atable[i].head)
795     {
796     struct AddressRec *arec = ptr->data;
797    
798 michael 1649 if (!arec->conf->until || arec->conf->until > CurrentTime)
799 michael 1369 continue;
800    
801     switch (arec->type)
802     {
803     case CONF_KLINE:
804     case CONF_DLINE:
805     case CONF_GLINE:
806     hostmask_send_expiration(arec);
807    
808     dlinkDelete(&arec->node, &atable[i]);
809 michael 1632 conf_free(arec->conf);
810 michael 1369 MyFree(arec);
811     break;
812 michael 1644 default: break;
813 michael 1369 }
814     }
815     }
816     }

Properties

Name Value
svn:eol-style native
svn:keywords Id Revision