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root/svn/ircd-hybrid-8/src/conf.c
Revision: 1393
Committed: Wed May 2 19:17:37 2012 UTC (11 years, 11 months ago) by michael
Content type: text/x-csrc
File size: 93623 byte(s)
Log Message:
- conf.h: remove CONF_LISTEN_PORT and CONF_EXEMPTKLINE #defines
- hostmask.h: remove HostMaskEntry structure
- hostmask.c: remove find_gline_conf() and find_kline_conf() wrapper functions

File Contents

# User Rev Content
1 adx 30 /*
2     * ircd-hybrid: an advanced Internet Relay Chat Daemon(ircd).
3 michael 1309 * conf.c: Configuration file functions.
4 adx 30 *
5     * Copyright (C) 2002 by the past and present ircd coders, and others.
6     *
7     * This program is free software; you can redistribute it and/or modify
8     * it under the terms of the GNU General Public License as published by
9     * the Free Software Foundation; either version 2 of the License, or
10     * (at your option) any later version.
11     *
12     * This program is distributed in the hope that it will be useful,
13     * but WITHOUT ANY WARRANTY; without even the implied warranty of
14     * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15     * GNU General Public License for more details.
16     *
17     * You should have received a copy of the GNU General Public License
18     * along with this program; if not, write to the Free Software
19     * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
20     * USA
21     *
22 knight 31 * $Id$
23 adx 30 */
24    
25     #include "stdinc.h"
26 michael 1011 #include "list.h"
27 adx 30 #include "ircd_defs.h"
28 michael 1011 #include "balloc.h"
29 michael 1309 #include "conf.h"
30 adx 30 #include "s_serv.h"
31     #include "resv.h"
32     #include "channel.h"
33     #include "client.h"
34     #include "event.h"
35     #include "hook.h"
36     #include "irc_string.h"
37     #include "s_bsd.h"
38     #include "ircd.h"
39     #include "listener.h"
40     #include "hostmask.h"
41     #include "modules.h"
42     #include "numeric.h"
43     #include "fdlist.h"
44 michael 1309 #include "log.h"
45 adx 30 #include "send.h"
46     #include "s_gline.h"
47     #include "memory.h"
48     #include "irc_res.h"
49     #include "userhost.h"
50     #include "s_user.h"
51     #include "channel_mode.h"
52 michael 1243 #include "parse.h"
53     #include "s_misc.h"
54 adx 30
55     struct Callback *client_check_cb = NULL;
56     struct config_server_hide ConfigServerHide;
57    
58     /* general conf items link list root, other than k lines etc. */
59 michael 1157 dlink_list service_items = { NULL, NULL, 0 };
60 adx 30 dlink_list server_items = { NULL, NULL, 0 };
61     dlink_list cluster_items = { NULL, NULL, 0 };
62     dlink_list oconf_items = { NULL, NULL, 0 };
63     dlink_list uconf_items = { NULL, NULL, 0 };
64     dlink_list xconf_items = { NULL, NULL, 0 };
65     dlink_list rxconf_items = { NULL, NULL, 0 };
66     dlink_list rkconf_items = { NULL, NULL, 0 };
67     dlink_list nresv_items = { NULL, NULL, 0 };
68     dlink_list class_items = { NULL, NULL, 0 };
69     dlink_list gdeny_items = { NULL, NULL, 0 };
70    
71     dlink_list temporary_xlines = { NULL, NULL, 0 };
72     dlink_list temporary_resv = { NULL, NULL, 0 };
73    
74     extern unsigned int lineno;
75     extern char linebuf[];
76     extern char conffilebuf[IRCD_BUFSIZE];
77     extern int yyparse(); /* defined in y.tab.c */
78    
79 michael 967 struct conf_parser_context conf_parser_ctx = { 0, 0, NULL };
80    
81 adx 30 /* internally defined functions */
82 michael 1325 static void read_conf(FILE *);
83 adx 30 static void clear_out_old_conf(void);
84     static void flush_deleted_I_P(void);
85     static void expire_tklines(dlink_list *);
86     static void garbage_collect_ip_entries(void);
87     static int hash_ip(struct irc_ssaddr *);
88     static int verify_access(struct Client *, const char *);
89     static int attach_iline(struct Client *, struct ConfItem *);
90     static struct ip_entry *find_or_add_ip(struct irc_ssaddr *);
91     static void parse_conf_file(int, int);
92     static dlink_list *map_to_list(ConfType);
93     static struct AccessItem *find_regexp_kline(const char *[]);
94     static int find_user_host(struct Client *, char *, char *, char *, unsigned int);
95    
96     /*
97     * bit_len
98     */
99     static int cidr_limit_reached(int, struct irc_ssaddr *, struct ClassItem *);
100     static void remove_from_cidr_check(struct irc_ssaddr *, struct ClassItem *);
101     static void destroy_cidr_class(struct ClassItem *);
102    
103     static void flags_to_ascii(unsigned int, const unsigned int[], char *, int);
104    
105     /* address of default class conf */
106     static struct ConfItem *class_default;
107    
108     /* usually, with hash tables, you use a prime number...
109     * but in this case I am dealing with ip addresses,
110     * not ascii strings.
111     */
112     #define IP_HASH_SIZE 0x1000
113    
114     struct ip_entry
115     {
116     struct irc_ssaddr ip;
117     int count;
118     time_t last_attempt;
119     struct ip_entry *next;
120     };
121    
122     static struct ip_entry *ip_hash_table[IP_HASH_SIZE];
123     static BlockHeap *ip_entry_heap = NULL;
124     static int ip_entries_count = 0;
125    
126    
127 michael 1013 void *
128 adx 30 map_to_conf(struct ConfItem *aconf)
129     {
130     void *conf;
131 michael 1013 conf = (void *)((uintptr_t)aconf +
132     (uintptr_t)sizeof(struct ConfItem));
133 adx 30 return(conf);
134     }
135    
136 michael 1013 struct ConfItem *
137 adx 30 unmap_conf_item(void *aconf)
138     {
139     struct ConfItem *conf;
140    
141 michael 1013 conf = (struct ConfItem *)((uintptr_t)aconf -
142     (uintptr_t)sizeof(struct ConfItem));
143 adx 30 return(conf);
144     }
145    
146     /* conf_dns_callback()
147     *
148     * inputs - pointer to struct AccessItem
149     * - pointer to DNSReply reply
150     * output - none
151     * side effects - called when resolver query finishes
152     * if the query resulted in a successful search, hp will contain
153     * a non-null pointer, otherwise hp will be null.
154     * if successful save hp in the conf item it was called with
155     */
156     static void
157 michael 992 conf_dns_callback(void *vptr, const struct irc_ssaddr *addr, const char *name)
158 adx 30 {
159 michael 1005 struct AccessItem *aconf = vptr;
160 adx 30
161 michael 992 aconf->dns_pending = 0;
162 adx 30
163 michael 992 if (addr != NULL)
164 michael 1389 memcpy(&aconf->addr, addr, sizeof(aconf->addr));
165 michael 992 else
166     aconf->dns_failed = 1;
167 adx 30 }
168    
169     /* conf_dns_lookup()
170     *
171     * do a nameserver lookup of the conf host
172     * if the conf entry is currently doing a ns lookup do nothing, otherwise
173     * allocate a dns_query and start ns lookup.
174     */
175     static void
176     conf_dns_lookup(struct AccessItem *aconf)
177     {
178 michael 992 if (!aconf->dns_pending)
179 adx 30 {
180 michael 992 aconf->dns_pending = 1;
181     gethost_byname(conf_dns_callback, aconf, aconf->host);
182 adx 30 }
183     }
184    
185     /* make_conf_item()
186     *
187     * inputs - type of item
188     * output - pointer to new conf entry
189     * side effects - none
190     */
191     struct ConfItem *
192     make_conf_item(ConfType type)
193     {
194     struct ConfItem *conf = NULL;
195     struct AccessItem *aconf = NULL;
196     struct ClassItem *aclass = NULL;
197     int status = 0;
198    
199     switch (type)
200     {
201     case DLINE_TYPE:
202     case EXEMPTDLINE_TYPE:
203     case GLINE_TYPE:
204     case KLINE_TYPE:
205     case CLIENT_TYPE:
206     case OPER_TYPE:
207     case SERVER_TYPE:
208     conf = MyMalloc(sizeof(struct ConfItem) +
209     sizeof(struct AccessItem));
210     aconf = map_to_conf(conf);
211     aconf->aftype = AF_INET;
212    
213     /* Yes, sigh. switch on type again */
214     switch (type)
215     {
216     case EXEMPTDLINE_TYPE:
217     status = CONF_EXEMPTDLINE;
218     break;
219    
220     case DLINE_TYPE:
221     status = CONF_DLINE;
222     break;
223    
224     case KLINE_TYPE:
225     status = CONF_KLINE;
226     break;
227    
228     case GLINE_TYPE:
229     status = CONF_GLINE;
230     break;
231    
232     case CLIENT_TYPE:
233     status = CONF_CLIENT;
234     break;
235    
236     case OPER_TYPE:
237     status = CONF_OPERATOR;
238     dlinkAdd(conf, &conf->node, &oconf_items);
239     break;
240    
241     case SERVER_TYPE:
242     status = CONF_SERVER;
243     dlinkAdd(conf, &conf->node, &server_items);
244     break;
245    
246     default:
247     break;
248     }
249     aconf->status = status;
250     break;
251    
252     case ULINE_TYPE:
253     conf = (struct ConfItem *)MyMalloc(sizeof(struct ConfItem) +
254     sizeof(struct MatchItem));
255     dlinkAdd(conf, &conf->node, &uconf_items);
256     break;
257    
258     case GDENY_TYPE:
259     conf = (struct ConfItem *)MyMalloc(sizeof(struct ConfItem) +
260     sizeof(struct AccessItem));
261 michael 102 dlinkAdd(conf, &conf->node, &gdeny_items);
262 adx 30 break;
263    
264     case XLINE_TYPE:
265     conf = (struct ConfItem *)MyMalloc(sizeof(struct ConfItem) +
266     sizeof(struct MatchItem));
267     dlinkAdd(conf, &conf->node, &xconf_items);
268     break;
269 michael 1009 #ifdef HAVE_LIBPCRE
270 adx 30 case RXLINE_TYPE:
271     conf = (struct ConfItem *)MyMalloc(sizeof(struct ConfItem) +
272     sizeof(struct MatchItem));
273     dlinkAdd(conf, &conf->node, &rxconf_items);
274     break;
275    
276     case RKLINE_TYPE:
277     conf = (struct ConfItem *)MyMalloc(sizeof(struct ConfItem) +
278     sizeof(struct AccessItem));
279     aconf = map_to_conf(conf);
280     aconf->status = CONF_KLINE;
281     dlinkAdd(conf, &conf->node, &rkconf_items);
282     break;
283 michael 1009 #endif
284 adx 30 case CLUSTER_TYPE:
285     conf = (struct ConfItem *)MyMalloc(sizeof(struct ConfItem));
286     dlinkAdd(conf, &conf->node, &cluster_items);
287     break;
288    
289     case CRESV_TYPE:
290     conf = (struct ConfItem *)MyMalloc(sizeof(struct ConfItem) +
291     sizeof(struct ResvChannel));
292     break;
293    
294     case NRESV_TYPE:
295     conf = (struct ConfItem *)MyMalloc(sizeof(struct ConfItem) +
296     sizeof(struct MatchItem));
297     dlinkAdd(conf, &conf->node, &nresv_items);
298     break;
299    
300 michael 1157 case SERVICE_TYPE:
301     status = CONF_SERVICE;
302     conf = MyMalloc(sizeof(struct ConfItem));
303     dlinkAdd(conf, &conf->node, &service_items);
304     break;
305    
306 adx 30 case CLASS_TYPE:
307 michael 671 conf = MyMalloc(sizeof(struct ConfItem) +
308     sizeof(struct ClassItem));
309 adx 30 dlinkAdd(conf, &conf->node, &class_items);
310 michael 671
311     aclass = map_to_conf(conf);
312     aclass->active = 1;
313 michael 1377 aclass->con_freq = DEFAULT_CONNECTFREQUENCY;
314     aclass->ping_freq = DEFAULT_PINGFREQUENCY;
315     aclass->max_total = MAXIMUM_LINKS_DEFAULT;
316     aclass->max_sendq = DEFAULT_SENDQ;
317 michael 671
318 adx 30 break;
319    
320     default:
321     conf = NULL;
322     break;
323     }
324    
325     /* XXX Yes, this will core if default is hit. I want it to for now - db */
326     conf->type = type;
327    
328 michael 671 return conf;
329 adx 30 }
330    
331     void
332     delete_conf_item(struct ConfItem *conf)
333     {
334 michael 1383 dlink_node *m = NULL, *m_next = NULL;
335 adx 30 struct MatchItem *match_item;
336     struct AccessItem *aconf;
337     ConfType type = conf->type;
338    
339     MyFree(conf->name);
340     conf->name = NULL;
341    
342     switch(type)
343     {
344     case DLINE_TYPE:
345     case EXEMPTDLINE_TYPE:
346     case GLINE_TYPE:
347     case KLINE_TYPE:
348     case CLIENT_TYPE:
349     case OPER_TYPE:
350     case SERVER_TYPE:
351     aconf = map_to_conf(conf);
352    
353 michael 992 if (aconf->dns_pending)
354     delete_resolver_queries(aconf);
355 adx 30 if (aconf->passwd != NULL)
356     memset(aconf->passwd, 0, strlen(aconf->passwd));
357     if (aconf->spasswd != NULL)
358     memset(aconf->spasswd, 0, strlen(aconf->spasswd));
359     aconf->class_ptr = NULL;
360    
361     MyFree(aconf->passwd);
362     MyFree(aconf->spasswd);
363     MyFree(aconf->reason);
364     MyFree(aconf->oper_reason);
365     MyFree(aconf->user);
366     MyFree(aconf->host);
367 michael 1306 MyFree(aconf->cipher_list);
368 adx 30 #ifdef HAVE_LIBCRYPTO
369     if (aconf->rsa_public_key)
370     RSA_free(aconf->rsa_public_key);
371     MyFree(aconf->rsa_public_key_file);
372     #endif
373    
374     /* Yes, sigh. switch on type again */
375     switch(type)
376     {
377     case EXEMPTDLINE_TYPE:
378     case DLINE_TYPE:
379     case GLINE_TYPE:
380     case KLINE_TYPE:
381     case CLIENT_TYPE:
382     MyFree(conf);
383     break;
384    
385     case OPER_TYPE:
386     aconf = map_to_conf(conf);
387     if (!IsConfIllegal(aconf))
388     dlinkDelete(&conf->node, &oconf_items);
389     MyFree(conf);
390     break;
391    
392     case SERVER_TYPE:
393     aconf = map_to_conf(conf);
394 michael 1383
395     DLINK_FOREACH_SAFE(m, m_next, aconf->hub_list.head)
396     {
397     MyFree(m->data);
398     free_dlink_node(m);
399     }
400    
401     DLINK_FOREACH_SAFE(m, m_next, aconf->leaf_list.head)
402     {
403     MyFree(m->data);
404     free_dlink_node(m);
405     }
406    
407 adx 30 if (!IsConfIllegal(aconf))
408     dlinkDelete(&conf->node, &server_items);
409     MyFree(conf);
410     break;
411    
412     default:
413     break;
414     }
415     break;
416    
417     case ULINE_TYPE:
418     match_item = map_to_conf(conf);
419     MyFree(match_item->user);
420     MyFree(match_item->host);
421     MyFree(match_item->reason);
422     MyFree(match_item->oper_reason);
423     dlinkDelete(&conf->node, &uconf_items);
424     MyFree(conf);
425     break;
426    
427     case XLINE_TYPE:
428     match_item = map_to_conf(conf);
429     MyFree(match_item->user);
430     MyFree(match_item->host);
431     MyFree(match_item->reason);
432     MyFree(match_item->oper_reason);
433     dlinkDelete(&conf->node, &xconf_items);
434     MyFree(conf);
435     break;
436 michael 1009 #ifdef HAVE_LIBPCRE
437 adx 30 case RKLINE_TYPE:
438     aconf = map_to_conf(conf);
439     MyFree(aconf->regexuser);
440     MyFree(aconf->regexhost);
441     MyFree(aconf->user);
442     MyFree(aconf->host);
443     MyFree(aconf->reason);
444     MyFree(aconf->oper_reason);
445     dlinkDelete(&conf->node, &rkconf_items);
446     MyFree(conf);
447     break;
448    
449     case RXLINE_TYPE:
450     MyFree(conf->regexpname);
451     match_item = map_to_conf(conf);
452     MyFree(match_item->user);
453     MyFree(match_item->host);
454     MyFree(match_item->reason);
455     MyFree(match_item->oper_reason);
456     dlinkDelete(&conf->node, &rxconf_items);
457     MyFree(conf);
458     break;
459 michael 1009 #endif
460 adx 30 case NRESV_TYPE:
461     match_item = map_to_conf(conf);
462     MyFree(match_item->user);
463     MyFree(match_item->host);
464     MyFree(match_item->reason);
465     MyFree(match_item->oper_reason);
466     dlinkDelete(&conf->node, &nresv_items);
467 michael 433
468     if (conf->flags & CONF_FLAGS_TEMPORARY)
469     if ((m = dlinkFindDelete(&temporary_resv, conf)) != NULL)
470     free_dlink_node(m);
471    
472 adx 30 MyFree(conf);
473     break;
474    
475     case GDENY_TYPE:
476     aconf = map_to_conf(conf);
477     MyFree(aconf->user);
478     MyFree(aconf->host);
479     dlinkDelete(&conf->node, &gdeny_items);
480     MyFree(conf);
481     break;
482    
483     case CLUSTER_TYPE:
484     dlinkDelete(&conf->node, &cluster_items);
485     MyFree(conf);
486     break;
487    
488     case CRESV_TYPE:
489 michael 433 if (conf->flags & CONF_FLAGS_TEMPORARY)
490     if ((m = dlinkFindDelete(&temporary_resv, conf)) != NULL)
491     free_dlink_node(m);
492    
493 adx 30 MyFree(conf);
494     break;
495    
496     case CLASS_TYPE:
497     dlinkDelete(&conf->node, &class_items);
498     MyFree(conf);
499     break;
500    
501 michael 1157 case SERVICE_TYPE:
502     dlinkDelete(&conf->node, &service_items);
503     MyFree(conf);
504     break;
505    
506 adx 30 default:
507     break;
508     }
509     }
510    
511     /* free_access_item()
512     *
513     * inputs - pointer to conf to free
514     * output - none
515     * side effects - crucial password fields are zeroed, conf is freed
516     */
517     void
518     free_access_item(struct AccessItem *aconf)
519     {
520     struct ConfItem *conf;
521    
522     if (aconf == NULL)
523     return;
524     conf = unmap_conf_item(aconf);
525     delete_conf_item(conf);
526     }
527    
528     static const unsigned int shared_bit_table[] =
529     { 'K', 'k', 'U', 'X', 'x', 'Y', 'Q', 'q', 'R', 'L', 0};
530    
531     /* report_confitem_types()
532     *
533     * inputs - pointer to client requesting confitem report
534     * - ConfType to report
535     * output - none
536     * side effects -
537     */
538     void
539 michael 1368 report_confitem_types(struct Client *source_p, ConfType type)
540 adx 30 {
541 michael 1383 dlink_node *ptr = NULL, *dptr = NULL;
542 adx 30 struct ConfItem *conf = NULL;
543     struct AccessItem *aconf = NULL;
544     struct MatchItem *matchitem = NULL;
545     struct ClassItem *classitem = NULL;
546     char buf[12];
547     char *p = NULL;
548    
549     switch (type)
550     {
551     case GDENY_TYPE:
552     DLINK_FOREACH(ptr, gdeny_items.head)
553     {
554     conf = ptr->data;
555     aconf = map_to_conf(conf);
556    
557     p = buf;
558    
559     if (aconf->flags & GDENY_BLOCK)
560     *p++ = 'B';
561     else
562     *p++ = 'b';
563    
564     if (aconf->flags & GDENY_REJECT)
565     *p++ = 'R';
566     else
567     *p++ = 'r';
568    
569     *p = '\0';
570    
571     sendto_one(source_p, ":%s %d %s V %s@%s %s %s",
572     me.name, RPL_STATSDEBUG, source_p->name,
573     aconf->user, aconf->host, conf->name, buf);
574     }
575     break;
576    
577     case XLINE_TYPE:
578     DLINK_FOREACH(ptr, xconf_items.head)
579     {
580     conf = ptr->data;
581     matchitem = map_to_conf(conf);
582    
583     sendto_one(source_p, form_str(RPL_STATSXLINE),
584     me.name, source_p->name,
585     matchitem->hold ? "x": "X", matchitem->count,
586     conf->name, matchitem->reason);
587     }
588     break;
589    
590 michael 1009 #ifdef HAVE_LIBPCRE
591 adx 30 case RXLINE_TYPE:
592     DLINK_FOREACH(ptr, rxconf_items.head)
593     {
594     conf = ptr->data;
595     matchitem = map_to_conf(conf);
596    
597     sendto_one(source_p, form_str(RPL_STATSXLINE),
598     me.name, source_p->name,
599 michael 1368 "XR", matchitem->count,
600 adx 30 conf->name, matchitem->reason);
601     }
602     break;
603    
604     case RKLINE_TYPE:
605     DLINK_FOREACH(ptr, rkconf_items.head)
606     {
607     aconf = map_to_conf((conf = ptr->data));
608    
609     sendto_one(source_p, form_str(RPL_STATSKLINE), me.name,
610 michael 1368 source_p->name, "KR", aconf->host, aconf->user,
611 adx 30 aconf->reason, aconf->oper_reason ? aconf->oper_reason : "");
612     }
613     break;
614 michael 1009 #endif
615 adx 30
616     case ULINE_TYPE:
617     DLINK_FOREACH(ptr, uconf_items.head)
618     {
619     conf = ptr->data;
620     matchitem = map_to_conf(conf);
621    
622     p = buf;
623    
624     /* some of these are redundant for the sake of
625     * consistency with cluster{} flags
626     */
627     *p++ = 'c';
628     flags_to_ascii(matchitem->action, shared_bit_table, p, 0);
629    
630     sendto_one(source_p, form_str(RPL_STATSULINE),
631     me.name, source_p->name, conf->name,
632     matchitem->user?matchitem->user: "*",
633     matchitem->host?matchitem->host: "*", buf);
634     }
635    
636     DLINK_FOREACH(ptr, cluster_items.head)
637     {
638     conf = ptr->data;
639    
640     p = buf;
641    
642     *p++ = 'C';
643     flags_to_ascii(conf->flags, shared_bit_table, p, 0);
644    
645     sendto_one(source_p, form_str(RPL_STATSULINE),
646     me.name, source_p->name, conf->name,
647     "*", "*", buf);
648     }
649    
650     break;
651    
652     case OPER_TYPE:
653     DLINK_FOREACH(ptr, oconf_items.head)
654     {
655     conf = ptr->data;
656     aconf = map_to_conf(conf);
657    
658     /* Don't allow non opers to see oper privs */
659 michael 1219 if (HasUMode(source_p, UMODE_OPER))
660 adx 30 sendto_one(source_p, form_str(RPL_STATSOLINE),
661     me.name, source_p->name, 'O', aconf->user, aconf->host,
662     conf->name, oper_privs_as_string(aconf->port),
663     aconf->class_ptr ? aconf->class_ptr->name : "<default>");
664     else
665     sendto_one(source_p, form_str(RPL_STATSOLINE),
666     me.name, source_p->name, 'O', aconf->user, aconf->host,
667     conf->name, "0",
668     aconf->class_ptr ? aconf->class_ptr->name : "<default>");
669     }
670     break;
671    
672     case CLASS_TYPE:
673     DLINK_FOREACH(ptr, class_items.head)
674     {
675     conf = ptr->data;
676     classitem = map_to_conf(conf);
677     sendto_one(source_p, form_str(RPL_STATSYLINE),
678     me.name, source_p->name, 'Y',
679 michael 1377 conf->name, classitem->ping_freq,
680     classitem->con_freq,
681     classitem->max_total, classitem->max_sendq,
682     classitem->curr_user_count,
683 michael 671 classitem->active ? "active" : "disabled");
684 adx 30 }
685     break;
686    
687     case CONF_TYPE:
688     case CLIENT_TYPE:
689     break;
690    
691 michael 1175 case SERVICE_TYPE:
692 michael 1157 DLINK_FOREACH(ptr, service_items.head)
693     {
694     conf = ptr->data;
695 michael 1175 sendto_one(source_p, form_str(RPL_STATSSERVICE),
696     me.name, source_p->name, 'S', "*", conf->name, 0, 0);
697 michael 1157 }
698     break;
699    
700 adx 30 case SERVER_TYPE:
701     DLINK_FOREACH(ptr, server_items.head)
702     {
703     p = buf;
704    
705     conf = ptr->data;
706     aconf = map_to_conf(conf);
707    
708     buf[0] = '\0';
709    
710     if (IsConfAllowAutoConn(aconf))
711     *p++ = 'A';
712 michael 1303 if (IsConfSSL(aconf))
713     *p++ = 'S';
714 adx 30 if (IsConfTopicBurst(aconf))
715     *p++ = 'T';
716     if (buf[0] == '\0')
717     *p++ = '*';
718    
719     *p = '\0';
720    
721 michael 671 /*
722     * Allow admins to see actual ips unless hide_server_ips is enabled
723 adx 30 */
724 michael 1219 if (!ConfigServerHide.hide_server_ips && HasUMode(source_p, UMODE_ADMIN))
725 adx 30 sendto_one(source_p, form_str(RPL_STATSCLINE),
726     me.name, source_p->name, 'C', aconf->host,
727     buf, conf->name, aconf->port,
728     aconf->class_ptr ? aconf->class_ptr->name : "<default>");
729     else
730     sendto_one(source_p, form_str(RPL_STATSCLINE),
731     me.name, source_p->name, 'C',
732     "*@127.0.0.1", buf, conf->name, aconf->port,
733     aconf->class_ptr ? aconf->class_ptr->name : "<default>");
734     }
735     break;
736    
737     case HUB_TYPE:
738 michael 1383 DLINK_FOREACH(ptr, server_items.head)
739 adx 30 {
740     conf = ptr->data;
741 michael 1383 aconf = map_to_conf(conf);
742    
743     DLINK_FOREACH(dptr, aconf->hub_list.head)
744     sendto_one(source_p, form_str(RPL_STATSHLINE), me.name,
745     source_p->name, 'H', dptr->data, conf->name, 0, "*");
746 adx 30 }
747     break;
748    
749     case LEAF_TYPE:
750 michael 1383 DLINK_FOREACH(ptr, server_items.head)
751 adx 30 {
752     conf = ptr->data;
753 michael 1383 aconf = map_to_conf(conf);
754    
755     DLINK_FOREACH(dptr, aconf->leaf_list.head)
756     sendto_one(source_p, form_str(RPL_STATSLLINE), me.name,
757     source_p->name, 'L', dptr->data, conf->name, 0, "*");
758 adx 30 }
759     break;
760    
761     case GLINE_TYPE:
762     case KLINE_TYPE:
763     case DLINE_TYPE:
764     case EXEMPTDLINE_TYPE:
765     case CRESV_TYPE:
766     case NRESV_TYPE:
767     case CLUSTER_TYPE:
768 michael 1009 default:
769 adx 30 break;
770     }
771     }
772    
773     /* check_client()
774     *
775     * inputs - pointer to client
776     * output - 0 = Success
777     * NOT_AUTHORIZED (-1) = Access denied (no I line match)
778     * IRCD_SOCKET_ERROR (-2) = Bad socket.
779     * I_LINE_FULL (-3) = I-line is full
780     * TOO_MANY (-4) = Too many connections from hostname
781     * BANNED_CLIENT (-5) = K-lined
782     * side effects - Ordinary client access check.
783     * Look for conf lines which have the same
784     * status as the flags passed.
785     */
786     static void *
787     check_client(va_list args)
788     {
789     struct Client *source_p = va_arg(args, struct Client *);
790     const char *username = va_arg(args, const char *);
791     int i;
792    
793     /* I'm already in big trouble if source_p->localClient is NULL -db */
794     if ((i = verify_access(source_p, username)))
795 michael 1247 ilog(LOG_TYPE_IRCD, "Access denied: %s[%s]",
796 adx 30 source_p->name, source_p->sockhost);
797    
798     switch (i)
799     {
800     case TOO_MANY:
801     sendto_realops_flags(UMODE_FULL, L_ALL,
802     "Too many on IP for %s (%s).",
803     get_client_name(source_p, SHOW_IP),
804     source_p->sockhost);
805 michael 1247 ilog(LOG_TYPE_IRCD, "Too many connections on IP from %s.",
806 adx 30 get_client_name(source_p, SHOW_IP));
807 michael 896 ++ServerStats.is_ref;
808 adx 30 exit_client(source_p, &me, "No more connections allowed on that IP");
809     break;
810    
811     case I_LINE_FULL:
812     sendto_realops_flags(UMODE_FULL, L_ALL,
813     "I-line is full for %s (%s).",
814     get_client_name(source_p, SHOW_IP),
815     source_p->sockhost);
816 michael 1247 ilog(LOG_TYPE_IRCD, "Too many connections from %s.",
817 adx 30 get_client_name(source_p, SHOW_IP));
818 michael 896 ++ServerStats.is_ref;
819 adx 30 exit_client(source_p, &me,
820     "No more connections allowed in your connection class");
821     break;
822    
823     case NOT_AUTHORIZED:
824 michael 896 ++ServerStats.is_ref;
825 adx 30 /* jdc - lists server name & port connections are on */
826     /* a purely cosmetical change */
827     sendto_realops_flags(UMODE_UNAUTH, L_ALL,
828     "Unauthorized client connection from %s [%s] on [%s/%u].",
829     get_client_name(source_p, SHOW_IP),
830 michael 891 source_p->sockhost,
831 adx 30 source_p->localClient->listener->name,
832     source_p->localClient->listener->port);
833 michael 1247 ilog(LOG_TYPE_IRCD,
834 adx 30 "Unauthorized client connection from %s on [%s/%u].",
835     get_client_name(source_p, SHOW_IP),
836     source_p->localClient->listener->name,
837     source_p->localClient->listener->port);
838    
839     /* XXX It is prolematical whether it is better to use the
840     * capture reject code here or rely on the connecting too fast code.
841     * - Dianora
842     */
843 michael 671 if (REJECT_HOLD_TIME > 0)
844 adx 30 {
845     sendto_one(source_p, ":%s NOTICE %s :You are not authorized to use this server",
846     me.name, source_p->name);
847     source_p->localClient->reject_delay = CurrentTime + REJECT_HOLD_TIME;
848     SetCaptured(source_p);
849     }
850     else
851     exit_client(source_p, &me, "You are not authorized to use this server");
852     break;
853 michael 891
854 adx 30 case BANNED_CLIENT:
855     /*
856     * Don't exit them immediately, play with them a bit.
857     * - Dianora
858     */
859     if (REJECT_HOLD_TIME > 0)
860     {
861     source_p->localClient->reject_delay = CurrentTime + REJECT_HOLD_TIME;
862     SetCaptured(source_p);
863     }
864     else
865     exit_client(source_p, &me, "Banned");
866 michael 896 ++ServerStats.is_ref;
867 adx 30 break;
868    
869     case 0:
870     default:
871     break;
872     }
873    
874     return (i < 0 ? NULL : source_p);
875     }
876    
877     /* verify_access()
878     *
879     * inputs - pointer to client to verify
880     * - pointer to proposed username
881     * output - 0 if success -'ve if not
882     * side effect - find the first (best) I line to attach.
883     */
884     static int
885     verify_access(struct Client *client_p, const char *username)
886     {
887     struct AccessItem *aconf = NULL, *rkconf = NULL;
888     struct ConfItem *conf = NULL;
889     char non_ident[USERLEN + 1] = { '~', '\0' };
890     const char *uhi[3];
891    
892     if (IsGotId(client_p))
893     {
894     aconf = find_address_conf(client_p->host, client_p->username,
895     &client_p->localClient->ip,
896     client_p->localClient->aftype,
897     client_p->localClient->passwd);
898     }
899     else
900     {
901     strlcpy(non_ident+1, username, sizeof(non_ident)-1);
902     aconf = find_address_conf(client_p->host,non_ident,
903     &client_p->localClient->ip,
904     client_p->localClient->aftype,
905     client_p->localClient->passwd);
906     }
907    
908     uhi[0] = IsGotId(client_p) ? client_p->username : non_ident;
909     uhi[1] = client_p->host;
910     uhi[2] = client_p->sockhost;
911    
912     rkconf = find_regexp_kline(uhi);
913    
914     if (aconf != NULL)
915     {
916     if (IsConfClient(aconf) && !rkconf)
917     {
918     conf = unmap_conf_item(aconf);
919    
920     if (IsConfRedir(aconf))
921     {
922     sendto_one(client_p, form_str(RPL_REDIR),
923     me.name, client_p->name,
924     conf->name ? conf->name : "",
925     aconf->port);
926     return(NOT_AUTHORIZED);
927     }
928    
929     if (IsConfDoIdentd(aconf))
930     SetNeedId(client_p);
931    
932     /* Thanks for spoof idea amm */
933     if (IsConfDoSpoofIp(aconf))
934     {
935     conf = unmap_conf_item(aconf);
936    
937     if (!ConfigFileEntry.hide_spoof_ips && IsConfSpoofNotice(aconf))
938     sendto_realops_flags(UMODE_ALL, L_ADMIN, "%s spoofing: %s as %s",
939     client_p->name, client_p->host, conf->name);
940     strlcpy(client_p->host, conf->name, sizeof(client_p->host));
941     SetIPSpoof(client_p);
942     }
943    
944     return(attach_iline(client_p, conf));
945     }
946     else if (rkconf || IsConfKill(aconf) || (ConfigFileEntry.glines && IsConfGline(aconf)))
947     {
948     /* XXX */
949     aconf = rkconf ? rkconf : aconf;
950     if (IsConfGline(aconf))
951     sendto_one(client_p, ":%s NOTICE %s :*** G-lined", me.name,
952     client_p->name);
953     if (ConfigFileEntry.kline_with_reason)
954     sendto_one(client_p, ":%s NOTICE %s :*** Banned %s",
955     me.name, client_p->name, aconf->reason);
956     return(BANNED_CLIENT);
957     }
958     }
959    
960     return(NOT_AUTHORIZED);
961     }
962    
963     /* attach_iline()
964     *
965     * inputs - client pointer
966     * - conf pointer
967     * output -
968     * side effects - do actual attach
969     */
970     static int
971     attach_iline(struct Client *client_p, struct ConfItem *conf)
972     {
973     struct AccessItem *aconf;
974     struct ClassItem *aclass;
975     struct ip_entry *ip_found;
976     int a_limit_reached = 0;
977     int local = 0, global = 0, ident = 0;
978    
979     ip_found = find_or_add_ip(&client_p->localClient->ip);
980     ip_found->count++;
981     SetIpHash(client_p);
982    
983 michael 624 aconf = map_to_conf(conf);
984 adx 30 if (aconf->class_ptr == NULL)
985     return NOT_AUTHORIZED; /* If class is missing, this is best */
986    
987 michael 624 aclass = map_to_conf(aconf->class_ptr);
988 adx 30
989     count_user_host(client_p->username, client_p->host,
990     &global, &local, &ident);
991    
992     /* XXX blah. go down checking the various silly limits
993     * setting a_limit_reached if any limit is reached.
994     * - Dianora
995     */
996 michael 1377 if (aclass->max_total != 0 && aclass->curr_user_count >= aclass->max_total)
997 adx 30 a_limit_reached = 1;
998 michael 1377 else if (aclass->max_perip != 0 && ip_found->count > aclass->max_perip)
999 adx 30 a_limit_reached = 1;
1000 michael 1377 else if (aclass->max_local != 0 && local >= aclass->max_local)
1001 adx 30 a_limit_reached = 1;
1002 michael 1377 else if (aclass->max_global != 0 && global >= aclass->max_global)
1003 adx 30 a_limit_reached = 1;
1004 michael 1377 else if (aclass->max_ident != 0 && ident >= aclass->max_ident &&
1005 adx 30 client_p->username[0] != '~')
1006     a_limit_reached = 1;
1007    
1008     if (a_limit_reached)
1009     {
1010     if (!IsConfExemptLimits(aconf))
1011 michael 624 return TOO_MANY; /* Already at maximum allowed */
1012 adx 30
1013     sendto_one(client_p,
1014     ":%s NOTICE %s :*** Your connection class is full, "
1015     "but you have exceed_limit = yes;", me.name, client_p->name);
1016     }
1017    
1018     return attach_conf(client_p, conf);
1019     }
1020    
1021     /* init_ip_hash_table()
1022     *
1023     * inputs - NONE
1024     * output - NONE
1025     * side effects - allocate memory for ip_entry(s)
1026     * - clear the ip hash table
1027     */
1028     void
1029     init_ip_hash_table(void)
1030     {
1031     ip_entry_heap = BlockHeapCreate("ip", sizeof(struct ip_entry),
1032     2 * hard_fdlimit);
1033     memset(ip_hash_table, 0, sizeof(ip_hash_table));
1034     }
1035    
1036     /* find_or_add_ip()
1037     *
1038     * inputs - pointer to struct irc_ssaddr
1039     * output - pointer to a struct ip_entry
1040     * side effects -
1041     *
1042     * If the ip # was not found, a new struct ip_entry is created, and the ip
1043     * count set to 0.
1044     */
1045     static struct ip_entry *
1046     find_or_add_ip(struct irc_ssaddr *ip_in)
1047     {
1048     struct ip_entry *ptr, *newptr;
1049     int hash_index = hash_ip(ip_in), res;
1050     struct sockaddr_in *v4 = (struct sockaddr_in *)ip_in, *ptr_v4;
1051     #ifdef IPV6
1052     struct sockaddr_in6 *v6 = (struct sockaddr_in6 *)ip_in, *ptr_v6;
1053     #endif
1054    
1055     for (ptr = ip_hash_table[hash_index]; ptr; ptr = ptr->next)
1056     {
1057     #ifdef IPV6
1058     if (ptr->ip.ss.ss_family != ip_in->ss.ss_family)
1059     continue;
1060     if (ip_in->ss.ss_family == AF_INET6)
1061     {
1062     ptr_v6 = (struct sockaddr_in6 *)&ptr->ip;
1063     res = memcmp(&v6->sin6_addr, &ptr_v6->sin6_addr, sizeof(struct in6_addr));
1064     }
1065     else
1066     #endif
1067     {
1068     ptr_v4 = (struct sockaddr_in *)&ptr->ip;
1069     res = memcmp(&v4->sin_addr, &ptr_v4->sin_addr, sizeof(struct in_addr));
1070     }
1071     if (res == 0)
1072     {
1073     /* Found entry already in hash, return it. */
1074     return ptr;
1075     }
1076     }
1077    
1078     if (ip_entries_count >= 2 * hard_fdlimit)
1079     garbage_collect_ip_entries();
1080    
1081     newptr = BlockHeapAlloc(ip_entry_heap);
1082     ip_entries_count++;
1083     memcpy(&newptr->ip, ip_in, sizeof(struct irc_ssaddr));
1084    
1085     newptr->next = ip_hash_table[hash_index];
1086     ip_hash_table[hash_index] = newptr;
1087    
1088     return newptr;
1089     }
1090    
1091     /* remove_one_ip()
1092     *
1093     * inputs - unsigned long IP address value
1094     * output - NONE
1095     * side effects - The ip address given, is looked up in ip hash table
1096     * and number of ip#'s for that ip decremented.
1097     * If ip # count reaches 0 and has expired,
1098     * the struct ip_entry is returned to the ip_entry_heap
1099     */
1100     void
1101     remove_one_ip(struct irc_ssaddr *ip_in)
1102     {
1103     struct ip_entry *ptr;
1104     struct ip_entry *last_ptr = NULL;
1105     int hash_index = hash_ip(ip_in), res;
1106     struct sockaddr_in *v4 = (struct sockaddr_in *)ip_in, *ptr_v4;
1107     #ifdef IPV6
1108     struct sockaddr_in6 *v6 = (struct sockaddr_in6 *)ip_in, *ptr_v6;
1109     #endif
1110    
1111     for (ptr = ip_hash_table[hash_index]; ptr; ptr = ptr->next)
1112     {
1113     #ifdef IPV6
1114     if (ptr->ip.ss.ss_family != ip_in->ss.ss_family)
1115     continue;
1116     if (ip_in->ss.ss_family == AF_INET6)
1117     {
1118     ptr_v6 = (struct sockaddr_in6 *)&ptr->ip;
1119     res = memcmp(&v6->sin6_addr, &ptr_v6->sin6_addr, sizeof(struct in6_addr));
1120     }
1121     else
1122     #endif
1123     {
1124     ptr_v4 = (struct sockaddr_in *)&ptr->ip;
1125     res = memcmp(&v4->sin_addr, &ptr_v4->sin_addr, sizeof(struct in_addr));
1126     }
1127     if (res)
1128     continue;
1129     if (ptr->count > 0)
1130     ptr->count--;
1131     if (ptr->count == 0 &&
1132     (CurrentTime-ptr->last_attempt) >= ConfigFileEntry.throttle_time)
1133     {
1134     if (last_ptr != NULL)
1135     last_ptr->next = ptr->next;
1136     else
1137     ip_hash_table[hash_index] = ptr->next;
1138    
1139     BlockHeapFree(ip_entry_heap, ptr);
1140     ip_entries_count--;
1141     return;
1142     }
1143     last_ptr = ptr;
1144     }
1145     }
1146    
1147     /* hash_ip()
1148     *
1149     * input - pointer to an irc_inaddr
1150     * output - integer value used as index into hash table
1151     * side effects - hopefully, none
1152     */
1153     static int
1154     hash_ip(struct irc_ssaddr *addr)
1155     {
1156     if (addr->ss.ss_family == AF_INET)
1157     {
1158     struct sockaddr_in *v4 = (struct sockaddr_in *)addr;
1159     int hash;
1160 michael 1032 uint32_t ip;
1161 adx 30
1162     ip = ntohl(v4->sin_addr.s_addr);
1163     hash = ((ip >> 12) + ip) & (IP_HASH_SIZE-1);
1164     return hash;
1165     }
1166     #ifdef IPV6
1167     else
1168     {
1169     int hash;
1170     struct sockaddr_in6 *v6 = (struct sockaddr_in6 *)addr;
1171 michael 1032 uint32_t *ip = (uint32_t *)&v6->sin6_addr.s6_addr;
1172 adx 30
1173     hash = ip[0] ^ ip[3];
1174     hash ^= hash >> 16;
1175     hash ^= hash >> 8;
1176     hash = hash & (IP_HASH_SIZE - 1);
1177     return hash;
1178     }
1179     #else
1180     return 0;
1181     #endif
1182     }
1183    
1184     /* count_ip_hash()
1185     *
1186     * inputs - pointer to counter of number of ips hashed
1187     * - pointer to memory used for ip hash
1188     * output - returned via pointers input
1189     * side effects - NONE
1190     *
1191     * number of hashed ip #'s is counted up, plus the amount of memory
1192     * used in the hash.
1193     */
1194     void
1195 michael 948 count_ip_hash(unsigned int *number_ips_stored, uint64_t *mem_ips_stored)
1196 adx 30 {
1197     struct ip_entry *ptr;
1198     int i;
1199    
1200     *number_ips_stored = 0;
1201     *mem_ips_stored = 0;
1202    
1203     for (i = 0; i < IP_HASH_SIZE; i++)
1204     {
1205     for (ptr = ip_hash_table[i]; ptr; ptr = ptr->next)
1206     {
1207     *number_ips_stored += 1;
1208     *mem_ips_stored += sizeof(struct ip_entry);
1209     }
1210     }
1211     }
1212    
1213     /* garbage_collect_ip_entries()
1214     *
1215     * input - NONE
1216     * output - NONE
1217     * side effects - free up all ip entries with no connections
1218     */
1219     static void
1220     garbage_collect_ip_entries(void)
1221     {
1222     struct ip_entry *ptr;
1223     struct ip_entry *last_ptr;
1224     struct ip_entry *next_ptr;
1225     int i;
1226    
1227     for (i = 0; i < IP_HASH_SIZE; i++)
1228     {
1229     last_ptr = NULL;
1230    
1231     for (ptr = ip_hash_table[i]; ptr; ptr = next_ptr)
1232     {
1233     next_ptr = ptr->next;
1234    
1235     if (ptr->count == 0 &&
1236     (CurrentTime - ptr->last_attempt) >= ConfigFileEntry.throttle_time)
1237     {
1238     if (last_ptr != NULL)
1239     last_ptr->next = ptr->next;
1240     else
1241     ip_hash_table[i] = ptr->next;
1242     BlockHeapFree(ip_entry_heap, ptr);
1243     ip_entries_count--;
1244     }
1245     else
1246     last_ptr = ptr;
1247     }
1248     }
1249     }
1250    
1251     /* detach_conf()
1252     *
1253     * inputs - pointer to client to detach
1254     * - type of conf to detach
1255     * output - 0 for success, -1 for failure
1256     * side effects - Disassociate configuration from the client.
1257     * Also removes a class from the list if marked for deleting.
1258     */
1259     int
1260     detach_conf(struct Client *client_p, ConfType type)
1261     {
1262     dlink_node *ptr, *next_ptr;
1263     struct ConfItem *conf;
1264     struct ClassItem *aclass;
1265     struct AccessItem *aconf;
1266     struct ConfItem *aclass_conf;
1267     struct MatchItem *match_item;
1268    
1269     DLINK_FOREACH_SAFE(ptr, next_ptr, client_p->localClient->confs.head)
1270     {
1271     conf = ptr->data;
1272    
1273     if (type == CONF_TYPE || conf->type == type)
1274     {
1275     dlinkDelete(ptr, &client_p->localClient->confs);
1276     free_dlink_node(ptr);
1277    
1278     switch (conf->type)
1279     {
1280     case CLIENT_TYPE:
1281     case OPER_TYPE:
1282     case SERVER_TYPE:
1283 michael 618 aconf = map_to_conf(conf);
1284 michael 671
1285 michael 672 assert(aconf->clients > 0);
1286 michael 671
1287 michael 1377 if ((aclass_conf = aconf->class_ptr) != NULL)
1288 adx 30 {
1289 michael 618 aclass = map_to_conf(aclass_conf);
1290 adx 30
1291 michael 672 assert(aclass->curr_user_count > 0);
1292    
1293 adx 30 if (conf->type == CLIENT_TYPE)
1294     remove_from_cidr_check(&client_p->localClient->ip, aclass);
1295 michael 672 if (--aclass->curr_user_count == 0 && aclass->active == 0)
1296 adx 30 delete_conf_item(aclass_conf);
1297     }
1298    
1299 michael 672 if (--aconf->clients == 0 && IsConfIllegal(aconf))
1300     delete_conf_item(conf);
1301    
1302 adx 30 break;
1303     default:
1304     break;
1305     }
1306    
1307     if (type != CONF_TYPE)
1308     return 0;
1309     }
1310     }
1311    
1312     return -1;
1313     }
1314    
1315     /* attach_conf()
1316     *
1317     * inputs - client pointer
1318     * - conf pointer
1319     * output -
1320     * side effects - Associate a specific configuration entry to a *local*
1321     * client (this is the one which used in accepting the
1322     * connection). Note, that this automatically changes the
1323     * attachment if there was an old one...
1324     */
1325     int
1326     attach_conf(struct Client *client_p, struct ConfItem *conf)
1327     {
1328     if (dlinkFind(&client_p->localClient->confs, conf) != NULL)
1329     return 1;
1330    
1331     if (conf->type == CLIENT_TYPE ||
1332     conf->type == SERVER_TYPE ||
1333     conf->type == OPER_TYPE)
1334     {
1335 michael 618 struct AccessItem *aconf = map_to_conf(conf);
1336 michael 619 struct ClassItem *aclass = map_to_conf(aconf->class_ptr);
1337 adx 30
1338     if (IsConfIllegal(aconf))
1339     return NOT_AUTHORIZED;
1340    
1341     if (conf->type == CLIENT_TYPE)
1342     if (cidr_limit_reached(IsConfExemptLimits(aconf),
1343     &client_p->localClient->ip, aclass))
1344 michael 619 return TOO_MANY; /* Already at maximum allowed */
1345 adx 30
1346 michael 1377 aclass->curr_user_count++;
1347 adx 30 aconf->clients++;
1348     }
1349    
1350     dlinkAdd(conf, make_dlink_node(), &client_p->localClient->confs);
1351    
1352     return 0;
1353     }
1354    
1355     /* attach_connect_block()
1356     *
1357     * inputs - pointer to server to attach
1358     * - name of server
1359     * - hostname of server
1360     * output - true (1) if both are found, otherwise return false (0)
1361     * side effects - find connect block and attach them to connecting client
1362     */
1363     int
1364     attach_connect_block(struct Client *client_p, const char *name,
1365     const char *host)
1366     {
1367     dlink_node *ptr;
1368     struct ConfItem *conf;
1369     struct AccessItem *aconf;
1370    
1371     assert(client_p != NULL);
1372     assert(host != NULL);
1373    
1374     if (client_p == NULL || host == NULL)
1375     return 0;
1376    
1377     DLINK_FOREACH(ptr, server_items.head)
1378     {
1379     conf = ptr->data;
1380 michael 618 aconf = map_to_conf(conf);
1381 adx 30
1382     if (match(conf->name, name) == 0 || match(aconf->host, host) == 0)
1383     continue;
1384    
1385     attach_conf(client_p, conf);
1386     return -1;
1387     }
1388    
1389     return 0;
1390     }
1391    
1392     /* find_conf_exact()
1393     *
1394     * inputs - type of ConfItem
1395     * - pointer to name to find
1396     * - pointer to username to find
1397     * - pointer to host to find
1398     * output - NULL or pointer to conf found
1399     * side effects - find a conf entry which matches the hostname
1400     * and has the same name.
1401     */
1402     struct ConfItem *
1403     find_conf_exact(ConfType type, const char *name, const char *user,
1404     const char *host)
1405     {
1406     dlink_node *ptr;
1407     dlink_list *list_p;
1408     struct ConfItem *conf = NULL;
1409     struct AccessItem *aconf;
1410    
1411     /* Only valid for OPER_TYPE and ...? */
1412     list_p = map_to_list(type);
1413    
1414     DLINK_FOREACH(ptr, (*list_p).head)
1415     {
1416     conf = ptr->data;
1417    
1418     if (conf->name == NULL)
1419     continue;
1420 michael 815 aconf = map_to_conf(conf);
1421 adx 30 if (aconf->host == NULL)
1422     continue;
1423     if (irccmp(conf->name, name) != 0)
1424     continue;
1425    
1426     /*
1427     ** Accept if the *real* hostname (usually sockethost)
1428     ** socket host) matches *either* host or name field
1429     ** of the configuration.
1430     */
1431 michael 815 if (!match(aconf->host, host) || !match(aconf->user, user))
1432 adx 30 continue;
1433     if (type == OPER_TYPE)
1434     {
1435 michael 815 struct ClassItem *aclass = map_to_conf(aconf->class_ptr);
1436 adx 30
1437 michael 1377 if (aconf->clients >= aclass->max_total)
1438 adx 30 continue;
1439     }
1440 michael 815
1441     return conf;
1442 adx 30 }
1443 michael 815
1444 adx 30 return NULL;
1445     }
1446    
1447     /* find_conf_name()
1448     *
1449     * inputs - pointer to conf link list to search
1450     * - pointer to name to find
1451     * - int mask of type of conf to find
1452     * output - NULL or pointer to conf found
1453     * side effects - find a conf entry which matches the name
1454     * and has the given mask.
1455     */
1456     struct ConfItem *
1457     find_conf_name(dlink_list *list, const char *name, ConfType type)
1458     {
1459     dlink_node *ptr;
1460     struct ConfItem* conf;
1461    
1462     DLINK_FOREACH(ptr, list->head)
1463     {
1464     conf = ptr->data;
1465    
1466     if (conf->type == type)
1467     {
1468     if (conf->name && (irccmp(conf->name, name) == 0 ||
1469     match(conf->name, name)))
1470     return conf;
1471     }
1472     }
1473    
1474     return NULL;
1475     }
1476    
1477     /* map_to_list()
1478     *
1479     * inputs - ConfType conf
1480     * output - pointer to dlink_list to use
1481     * side effects - none
1482     */
1483     static dlink_list *
1484     map_to_list(ConfType type)
1485     {
1486     switch(type)
1487     {
1488     case RXLINE_TYPE:
1489     return(&rxconf_items);
1490     break;
1491     case XLINE_TYPE:
1492     return(&xconf_items);
1493     break;
1494     case ULINE_TYPE:
1495     return(&uconf_items);
1496     break;
1497     case NRESV_TYPE:
1498     return(&nresv_items);
1499     break;
1500     case OPER_TYPE:
1501     return(&oconf_items);
1502     break;
1503     case CLASS_TYPE:
1504     return(&class_items);
1505     break;
1506     case SERVER_TYPE:
1507     return(&server_items);
1508     break;
1509 michael 1172 case SERVICE_TYPE:
1510     return(&service_items);
1511     break;
1512 adx 30 case CLUSTER_TYPE:
1513     return(&cluster_items);
1514     break;
1515     case CONF_TYPE:
1516     case GLINE_TYPE:
1517     case KLINE_TYPE:
1518     case DLINE_TYPE:
1519     case CRESV_TYPE:
1520     default:
1521     return NULL;
1522     }
1523     }
1524    
1525     /* find_matching_name_conf()
1526     *
1527     * inputs - type of link list to look in
1528     * - pointer to name string to find
1529     * - pointer to user
1530     * - pointer to host
1531     * - optional action to match on as well
1532     * output - NULL or pointer to found struct MatchItem
1533     * side effects - looks for a match on name field
1534     */
1535     struct ConfItem *
1536     find_matching_name_conf(ConfType type, const char *name, const char *user,
1537     const char *host, int action)
1538     {
1539     dlink_node *ptr=NULL;
1540     struct ConfItem *conf=NULL;
1541     struct AccessItem *aconf=NULL;
1542     struct MatchItem *match_item=NULL;
1543     dlink_list *list_p = map_to_list(type);
1544    
1545     switch (type)
1546     {
1547 michael 1009 #ifdef HAVE_LIBPCRE
1548     case RXLINE_TYPE:
1549 adx 30 DLINK_FOREACH(ptr, list_p->head)
1550     {
1551     conf = ptr->data;
1552     assert(conf->regexpname);
1553    
1554     if (!ircd_pcre_exec(conf->regexpname, name))
1555     return conf;
1556     }
1557     break;
1558 michael 1009 #endif
1559 michael 1157 case SERVICE_TYPE:
1560     DLINK_FOREACH(ptr, list_p->head)
1561     {
1562     conf = ptr->data;
1563    
1564     if (EmptyString(conf->name))
1565     continue;
1566     if ((name != NULL) && !irccmp(name, conf->name))
1567     return conf;
1568     }
1569     break;
1570    
1571 adx 30 case XLINE_TYPE:
1572     case ULINE_TYPE:
1573     case NRESV_TYPE:
1574     DLINK_FOREACH(ptr, list_p->head)
1575     {
1576     conf = ptr->data;
1577    
1578     match_item = map_to_conf(conf);
1579     if (EmptyString(conf->name))
1580     continue;
1581     if ((name != NULL) && match_esc(conf->name, name))
1582     {
1583     if ((user == NULL && (host == NULL)))
1584     return conf;
1585     if ((match_item->action & action) != action)
1586     continue;
1587     if (EmptyString(match_item->user) || EmptyString(match_item->host))
1588     return conf;
1589     if (match(match_item->user, user) && match(match_item->host, host))
1590     return conf;
1591     }
1592     }
1593     break;
1594    
1595     case SERVER_TYPE:
1596     DLINK_FOREACH(ptr, list_p->head)
1597     {
1598     conf = ptr->data;
1599     aconf = map_to_conf(conf);
1600    
1601     if ((name != NULL) && match_esc(name, conf->name))
1602     return conf;
1603     else if ((host != NULL) && match_esc(host, aconf->host))
1604     return conf;
1605     }
1606     break;
1607    
1608     default:
1609     break;
1610     }
1611     return NULL;
1612     }
1613    
1614     /* find_exact_name_conf()
1615     *
1616     * inputs - type of link list to look in
1617     * - pointer to name string to find
1618     * - pointer to user
1619     * - pointer to host
1620     * output - NULL or pointer to found struct MatchItem
1621     * side effects - looks for an exact match on name field
1622     */
1623     struct ConfItem *
1624 michael 1285 find_exact_name_conf(ConfType type, const struct Client *who, const char *name,
1625 adx 30 const char *user, const char *host)
1626     {
1627     dlink_node *ptr = NULL;
1628     struct AccessItem *aconf;
1629     struct ConfItem *conf;
1630     struct MatchItem *match_item;
1631     dlink_list *list_p;
1632    
1633     list_p = map_to_list(type);
1634    
1635     switch(type)
1636     {
1637     case RXLINE_TYPE:
1638     case XLINE_TYPE:
1639     case ULINE_TYPE:
1640     case NRESV_TYPE:
1641    
1642     DLINK_FOREACH(ptr, list_p->head)
1643     {
1644     conf = ptr->data;
1645     match_item = (struct MatchItem *)map_to_conf(conf);
1646     if (EmptyString(conf->name))
1647     continue;
1648    
1649     if (irccmp(conf->name, name) == 0)
1650     {
1651     if ((user == NULL && (host == NULL)))
1652     return (conf);
1653     if (EmptyString(match_item->user) || EmptyString(match_item->host))
1654     return (conf);
1655     if (match(match_item->user, user) && match(match_item->host, host))
1656     return (conf);
1657     }
1658     }
1659     break;
1660    
1661     case OPER_TYPE:
1662     DLINK_FOREACH(ptr, list_p->head)
1663     {
1664     conf = ptr->data;
1665 michael 1285 aconf = map_to_conf(conf);
1666    
1667 adx 30 if (EmptyString(conf->name))
1668 michael 1285 continue;
1669    
1670     if (!irccmp(conf->name, name))
1671 adx 30 {
1672 michael 1285 if (!who)
1673     return conf;
1674     if (EmptyString(aconf->user) || EmptyString(aconf->host))
1675     return conf;
1676     if (match(aconf->user, who->username))
1677     {
1678     switch (aconf->type)
1679     {
1680     case HM_HOST:
1681     if (match(aconf->host, who->host) || match(aconf->host, who->sockhost))
1682     return conf;
1683     break;
1684     case HM_IPV4:
1685     if (who->localClient->aftype == AF_INET)
1686 michael 1389 if (match_ipv4(&who->localClient->ip, &aconf->addr, aconf->bits))
1687 michael 1285 return conf;
1688     break;
1689     #ifdef IPV6
1690     case HM_IPV6:
1691     if (who->localClient->aftype == AF_INET6)
1692 michael 1389 if (match_ipv6(&who->localClient->ip, &aconf->addr, aconf->bits))
1693 michael 1285 return conf;
1694     break;
1695     #endif
1696     default:
1697     assert(0);
1698     }
1699     }
1700 adx 30 }
1701     }
1702 michael 1285
1703 adx 30 break;
1704    
1705     case SERVER_TYPE:
1706     DLINK_FOREACH(ptr, list_p->head)
1707     {
1708     conf = ptr->data;
1709     aconf = (struct AccessItem *)map_to_conf(conf);
1710     if (EmptyString(conf->name))
1711     continue;
1712    
1713     if (name == NULL)
1714     {
1715     if (EmptyString(aconf->host))
1716     continue;
1717     if (irccmp(aconf->host, host) == 0)
1718     return(conf);
1719     }
1720     else if (irccmp(conf->name, name) == 0)
1721     {
1722     return (conf);
1723     }
1724     }
1725     break;
1726    
1727     case CLASS_TYPE:
1728     DLINK_FOREACH(ptr, list_p->head)
1729     {
1730     conf = ptr->data;
1731     if (EmptyString(conf->name))
1732     continue;
1733    
1734     if (irccmp(conf->name, name) == 0)
1735     return (conf);
1736     }
1737     break;
1738    
1739     default:
1740     break;
1741     }
1742     return(NULL);
1743     }
1744    
1745     /* rehash()
1746     *
1747     * Actual REHASH service routine. Called with sig == 0 if it has been called
1748     * as a result of an operator issuing this command, else assume it has been
1749     * called as a result of the server receiving a HUP signal.
1750     */
1751     int
1752     rehash(int sig)
1753     {
1754     if (sig != 0)
1755     sendto_realops_flags(UMODE_ALL, L_ALL,
1756     "Got signal SIGHUP, reloading ircd.conf file");
1757    
1758     restart_resolver();
1759 michael 1001
1760 adx 30 /* don't close listeners until we know we can go ahead with the rehash */
1761    
1762     /* Check to see if we magically got(or lost) IPv6 support */
1763     check_can_use_v6();
1764    
1765     read_conf_files(0);
1766    
1767     if (ServerInfo.description != NULL)
1768     strlcpy(me.info, ServerInfo.description, sizeof(me.info));
1769    
1770     load_conf_modules();
1771    
1772     flush_deleted_I_P();
1773    
1774     rehashed_klines = 1;
1775 michael 1247 /* XXX */
1776 adx 30 if (ConfigLoggingEntry.use_logging)
1777 michael 1247 log_close_all();
1778 adx 30
1779     return(0);
1780     }
1781    
1782     /* set_default_conf()
1783     *
1784     * inputs - NONE
1785     * output - NONE
1786     * side effects - Set default values here.
1787     * This is called **PRIOR** to parsing the
1788     * configuration file. If you want to do some validation
1789     * of values later, put them in validate_conf().
1790     */
1791     static void
1792     set_default_conf(void)
1793     {
1794     /* verify init_class() ran, this should be an unnecessary check
1795     * but its not much work.
1796     */
1797     assert(class_default == (struct ConfItem *) class_items.tail->data);
1798    
1799     #ifdef HAVE_LIBCRYPTO
1800     ServerInfo.rsa_private_key = NULL;
1801     ServerInfo.rsa_private_key_file = NULL;
1802     #endif
1803    
1804     /* ServerInfo.name is not rehashable */
1805     /* ServerInfo.name = ServerInfo.name; */
1806     ServerInfo.description = NULL;
1807     DupString(ServerInfo.network_name, NETWORK_NAME_DEFAULT);
1808     DupString(ServerInfo.network_desc, NETWORK_DESC_DEFAULT);
1809    
1810     memset(&ServerInfo.ip, 0, sizeof(ServerInfo.ip));
1811     ServerInfo.specific_ipv4_vhost = 0;
1812     memset(&ServerInfo.ip6, 0, sizeof(ServerInfo.ip6));
1813     ServerInfo.specific_ipv6_vhost = 0;
1814    
1815     ServerInfo.max_clients = MAXCLIENTS_MAX;
1816 michael 956
1817     ServerInfo.hub = 0;
1818 adx 30 ServerInfo.dns_host.sin_addr.s_addr = 0;
1819     ServerInfo.dns_host.sin_port = 0;
1820     AdminInfo.name = NULL;
1821     AdminInfo.email = NULL;
1822     AdminInfo.description = NULL;
1823    
1824 michael 1247 log_close_all();
1825    
1826 adx 30 ConfigLoggingEntry.use_logging = 1;
1827    
1828 michael 1243 ConfigChannel.disable_fake_channels = 0;
1829     ConfigChannel.restrict_channels = 0;
1830     ConfigChannel.disable_local_channels = 0;
1831     ConfigChannel.use_invex = 1;
1832     ConfigChannel.use_except = 1;
1833     ConfigChannel.use_knock = 1;
1834 adx 30 ConfigChannel.knock_delay = 300;
1835     ConfigChannel.knock_delay_channel = 60;
1836     ConfigChannel.max_chans_per_user = 15;
1837 michael 1243 ConfigChannel.quiet_on_ban = 1;
1838 adx 30 ConfigChannel.max_bans = 25;
1839     ConfigChannel.default_split_user_count = 0;
1840     ConfigChannel.default_split_server_count = 0;
1841 michael 1243 ConfigChannel.no_join_on_split = 0;
1842     ConfigChannel.no_create_on_split = 0;
1843     ConfigChannel.burst_topicwho = 1;
1844 adx 30
1845 michael 1243 ConfigServerHide.flatten_links = 0;
1846 adx 30 ConfigServerHide.links_delay = 300;
1847 michael 1243 ConfigServerHide.hidden = 0;
1848     ConfigServerHide.disable_hidden = 0;
1849     ConfigServerHide.hide_servers = 0;
1850 adx 30 DupString(ConfigServerHide.hidden_name, NETWORK_NAME_DEFAULT);
1851 michael 1243 ConfigServerHide.hide_server_ips = 0;
1852 adx 30
1853 michael 876
1854 michael 1157 DupString(ConfigFileEntry.service_name, SERVICE_NAME_DEFAULT);
1855 michael 876 ConfigFileEntry.max_watch = WATCHSIZE_DEFAULT;
1856 adx 30 ConfigFileEntry.gline_min_cidr = 16;
1857     ConfigFileEntry.gline_min_cidr6 = 48;
1858 michael 1243 ConfigFileEntry.invisible_on_connect = 1;
1859     ConfigFileEntry.burst_away = 0;
1860     ConfigFileEntry.use_whois_actually = 1;
1861     ConfigFileEntry.tkline_expire_notices = 1;
1862     ConfigFileEntry.hide_spoof_ips = 1;
1863     ConfigFileEntry.ignore_bogus_ts = 0;
1864     ConfigFileEntry.disable_auth = 0;
1865     ConfigFileEntry.disable_remote = 0;
1866 adx 30 ConfigFileEntry.kill_chase_time_limit = 90;
1867 michael 1119 ConfigFileEntry.default_floodcount = 8;
1868 michael 1243 ConfigFileEntry.failed_oper_notice = 1;
1869 michael 1119 ConfigFileEntry.dots_in_ident = 0;
1870 adx 30 ConfigFileEntry.min_nonwildcard = 4;
1871     ConfigFileEntry.min_nonwildcard_simple = 3;
1872     ConfigFileEntry.max_accept = 20;
1873 michael 1243 ConfigFileEntry.anti_nick_flood = 0;
1874 adx 30 ConfigFileEntry.max_nick_time = 20;
1875     ConfigFileEntry.max_nick_changes = 5;
1876 michael 1119 ConfigFileEntry.anti_spam_exit_message_time = 0;
1877 adx 30 ConfigFileEntry.ts_warn_delta = TS_WARN_DELTA_DEFAULT;
1878 michael 1119 ConfigFileEntry.ts_max_delta = TS_MAX_DELTA_DEFAULT;
1879 michael 1243 ConfigFileEntry.kline_with_reason = 1;
1880 adx 30 ConfigFileEntry.kline_reason = NULL;
1881 michael 1243 ConfigFileEntry.warn_no_nline = 1;
1882     ConfigFileEntry.stats_o_oper_only = 0;
1883 adx 30 ConfigFileEntry.stats_k_oper_only = 1; /* masked */
1884     ConfigFileEntry.stats_i_oper_only = 1; /* masked */
1885 michael 1243 ConfigFileEntry.stats_P_oper_only = 0;
1886 adx 30 ConfigFileEntry.caller_id_wait = 60;
1887 michael 1243 ConfigFileEntry.opers_bypass_callerid = 0;
1888 adx 30 ConfigFileEntry.pace_wait = 10;
1889     ConfigFileEntry.pace_wait_simple = 1;
1890 michael 1243 ConfigFileEntry.short_motd = 0;
1891     ConfigFileEntry.ping_cookie = 0;
1892     ConfigFileEntry.no_oper_flood = 0;
1893     ConfigFileEntry.true_no_oper_flood = 0;
1894     ConfigFileEntry.oper_pass_resv = 1;
1895     ConfigFileEntry.glines = 0;
1896 michael 1119 ConfigFileEntry.gline_time = 12 * 3600;
1897 adx 30 ConfigFileEntry.max_targets = MAX_TARGETS_DEFAULT;
1898     ConfigFileEntry.client_flood = CLIENT_FLOOD_DEFAULT;
1899 michael 1119 ConfigFileEntry.oper_only_umodes = UMODE_DEBUG;
1900 adx 264 ConfigFileEntry.oper_umodes = UMODE_BOTS | UMODE_LOCOPS | UMODE_SERVNOTICE |
1901 michael 1119 UMODE_OPERWALL | UMODE_WALLOP;
1902 michael 1243 ConfigFileEntry.use_egd = 0;
1903 adx 30 ConfigFileEntry.egdpool_path = NULL;
1904     ConfigFileEntry.throttle_time = 10;
1905     }
1906    
1907     static void
1908     validate_conf(void)
1909     {
1910     if (ConfigFileEntry.ts_warn_delta < TS_WARN_DELTA_MIN)
1911     ConfigFileEntry.ts_warn_delta = TS_WARN_DELTA_DEFAULT;
1912    
1913     if (ConfigFileEntry.ts_max_delta < TS_MAX_DELTA_MIN)
1914     ConfigFileEntry.ts_max_delta = TS_MAX_DELTA_DEFAULT;
1915    
1916     if (ServerInfo.network_name == NULL)
1917     DupString(ServerInfo.network_name,NETWORK_NAME_DEFAULT);
1918    
1919     if (ServerInfo.network_desc == NULL)
1920     DupString(ServerInfo.network_desc,NETWORK_DESC_DEFAULT);
1921    
1922 michael 1157 if (ConfigFileEntry.service_name == NULL)
1923     DupString(ConfigFileEntry.service_name, SERVICE_NAME_DEFAULT);
1924    
1925 adx 30 if ((ConfigFileEntry.client_flood < CLIENT_FLOOD_MIN) ||
1926     (ConfigFileEntry.client_flood > CLIENT_FLOOD_MAX))
1927     ConfigFileEntry.client_flood = CLIENT_FLOOD_MAX;
1928 michael 876
1929     ConfigFileEntry.max_watch = IRCD_MAX(ConfigFileEntry.max_watch, WATCHSIZE_MIN);
1930 adx 30 }
1931    
1932 michael 1363 /* read_conf()
1933     *
1934     * inputs - file descriptor pointing to config file to use
1935     * output - None
1936     * side effects - Read configuration file.
1937     */
1938     static void
1939     read_conf(FILE *file)
1940     {
1941     lineno = 0;
1942    
1943     set_default_conf(); /* Set default values prior to conf parsing */
1944     conf_parser_ctx.pass = 1;
1945     yyparse(); /* pick up the classes first */
1946    
1947     rewind(file);
1948    
1949     conf_parser_ctx.pass = 2;
1950     yyparse(); /* Load the values from the conf */
1951     validate_conf(); /* Check to make sure some values are still okay. */
1952     /* Some global values are also loaded here. */
1953     check_class(); /* Make sure classes are valid */
1954     }
1955    
1956 adx 30 /* lookup_confhost()
1957     *
1958     * start DNS lookups of all hostnames in the conf
1959     * line and convert an IP addresses in a.b.c.d number for to IP#s.
1960     */
1961     static void
1962     lookup_confhost(struct ConfItem *conf)
1963     {
1964     struct AccessItem *aconf;
1965     struct addrinfo hints, *res;
1966    
1967     aconf = map_to_conf(conf);
1968    
1969     if (EmptyString(aconf->host) ||
1970     EmptyString(aconf->user))
1971     {
1972 michael 1247 ilog(LOG_TYPE_IRCD, "Host/server name error: (%s) (%s)",
1973 adx 30 aconf->host, conf->name);
1974     return;
1975     }
1976    
1977     if (strchr(aconf->host, '*') ||
1978     strchr(aconf->host, '?'))
1979     return;
1980    
1981     /* Do name lookup now on hostnames given and store the
1982     * ip numbers in conf structure.
1983     */
1984     memset(&hints, 0, sizeof(hints));
1985    
1986     hints.ai_family = AF_UNSPEC;
1987     hints.ai_socktype = SOCK_STREAM;
1988    
1989     /* Get us ready for a bind() and don't bother doing dns lookup */
1990     hints.ai_flags = AI_PASSIVE | AI_NUMERICHOST;
1991    
1992 michael 1123 if (getaddrinfo(aconf->host, NULL, &hints, &res))
1993 adx 30 {
1994     conf_dns_lookup(aconf);
1995     return;
1996     }
1997    
1998     assert(res != NULL);
1999    
2000 michael 1389 memcpy(&aconf->addr, res->ai_addr, res->ai_addrlen);
2001     aconf->addr.ss_len = res->ai_addrlen;
2002     aconf->addr.ss.ss_family = res->ai_family;
2003 michael 1123 freeaddrinfo(res);
2004 adx 30 }
2005    
2006     /* conf_connect_allowed()
2007     *
2008     * inputs - pointer to inaddr
2009     * - int type ipv4 or ipv6
2010     * output - BANNED or accepted
2011     * side effects - none
2012     */
2013     int
2014     conf_connect_allowed(struct irc_ssaddr *addr, int aftype)
2015     {
2016     struct ip_entry *ip_found;
2017     struct AccessItem *aconf = find_dline_conf(addr, aftype);
2018    
2019     /* DLINE exempt also gets you out of static limits/pacing... */
2020     if (aconf && (aconf->status & CONF_EXEMPTDLINE))
2021     return 0;
2022    
2023     if (aconf != NULL)
2024     return BANNED_CLIENT;
2025    
2026     ip_found = find_or_add_ip(addr);
2027    
2028     if ((CurrentTime - ip_found->last_attempt) <
2029     ConfigFileEntry.throttle_time)
2030     {
2031     ip_found->last_attempt = CurrentTime;
2032     return TOO_FAST;
2033     }
2034    
2035     ip_found->last_attempt = CurrentTime;
2036     return 0;
2037     }
2038    
2039     static struct AccessItem *
2040     find_regexp_kline(const char *uhi[])
2041     {
2042 michael 1009 #ifdef HAVE_LIBPCRE
2043 adx 30 const dlink_node *ptr = NULL;
2044    
2045     DLINK_FOREACH(ptr, rkconf_items.head)
2046     {
2047     struct AccessItem *aptr = map_to_conf(ptr->data);
2048    
2049     assert(aptr->regexuser);
2050     assert(aptr->regexhost);
2051    
2052     if (!ircd_pcre_exec(aptr->regexuser, uhi[0]) &&
2053     (!ircd_pcre_exec(aptr->regexhost, uhi[1]) ||
2054     !ircd_pcre_exec(aptr->regexhost, uhi[2])))
2055     return aptr;
2056     }
2057 michael 1009 #endif
2058 adx 30 return NULL;
2059     }
2060    
2061     /* find_kill()
2062     *
2063     * inputs - pointer to client structure
2064     * output - pointer to struct AccessItem if found
2065     * side effects - See if this user is klined already,
2066     * and if so, return struct AccessItem pointer
2067     */
2068     struct AccessItem *
2069     find_kill(struct Client *client_p)
2070     {
2071     struct AccessItem *aconf = NULL;
2072     const char *uhi[3];
2073    
2074     uhi[0] = client_p->username;
2075     uhi[1] = client_p->host;
2076     uhi[2] = client_p->sockhost;
2077    
2078     assert(client_p != NULL);
2079    
2080 michael 1393 aconf = find_conf_by_address(client_p->host, &client_p->localClient->ip,
2081     CONF_KLINE, client_p->localClient->aftype,
2082     client_p->username, NULL, 1);
2083 adx 30 if (aconf == NULL)
2084     aconf = find_regexp_kline(uhi);
2085    
2086 michael 1393 return aconf;
2087 adx 30 }
2088    
2089     struct AccessItem *
2090     find_gline(struct Client *client_p)
2091     {
2092     struct AccessItem *aconf;
2093    
2094     assert(client_p != NULL);
2095    
2096 michael 1393 aconf = find_conf_by_address(client_p->host, &client_p->localClient->ip,
2097     CONF_GLINE, client_p->localClient->aftype,
2098     client_p->username, NULL, 1);
2099     return aconf;
2100 adx 30 }
2101    
2102     /* add_temp_line()
2103     *
2104     * inputs - pointer to struct ConfItem
2105     * output - none
2106     * Side effects - links in given struct ConfItem into
2107     * temporary *line link list
2108     */
2109     void
2110     add_temp_line(struct ConfItem *conf)
2111     {
2112 michael 1369 if (conf->type == XLINE_TYPE)
2113 adx 30 {
2114     conf->flags |= CONF_FLAGS_TEMPORARY;
2115     dlinkAdd(conf, make_dlink_node(), &temporary_xlines);
2116     }
2117     else if ((conf->type == NRESV_TYPE) || (conf->type == CRESV_TYPE))
2118     {
2119     conf->flags |= CONF_FLAGS_TEMPORARY;
2120     dlinkAdd(conf, make_dlink_node(), &temporary_resv);
2121     }
2122     }
2123    
2124     /* cleanup_tklines()
2125     *
2126     * inputs - NONE
2127     * output - NONE
2128     * side effects - call function to expire temporary k/d lines
2129     * This is an event started off in ircd.c
2130     */
2131     void
2132     cleanup_tklines(void *notused)
2133     {
2134 michael 1369 hostmask_expire_temporary();
2135 adx 30 expire_tklines(&temporary_xlines);
2136     expire_tklines(&temporary_resv);
2137     }
2138    
2139     /* expire_tklines()
2140     *
2141     * inputs - tkline list pointer
2142     * output - NONE
2143     * side effects - expire tklines
2144     */
2145     static void
2146     expire_tklines(dlink_list *tklist)
2147     {
2148     dlink_node *ptr;
2149     dlink_node *next_ptr;
2150     struct ConfItem *conf;
2151     struct MatchItem *xconf;
2152     struct MatchItem *nconf;
2153     struct ResvChannel *cconf;
2154    
2155     DLINK_FOREACH_SAFE(ptr, next_ptr, tklist->head)
2156     {
2157     conf = ptr->data;
2158    
2159 michael 1369 if (conf->type == XLINE_TYPE)
2160 adx 30 {
2161     xconf = (struct MatchItem *)map_to_conf(conf);
2162     if (xconf->hold <= CurrentTime)
2163     {
2164     if (ConfigFileEntry.tkline_expire_notices)
2165     sendto_realops_flags(UMODE_ALL, L_ALL,
2166 michael 1369 "Temporary X-line for [%s] sexpired", conf->name);
2167 adx 30 dlinkDelete(ptr, tklist);
2168     free_dlink_node(ptr);
2169     delete_conf_item(conf);
2170     }
2171     }
2172     else if (conf->type == NRESV_TYPE)
2173     {
2174     nconf = (struct MatchItem *)map_to_conf(conf);
2175     if (nconf->hold <= CurrentTime)
2176     {
2177     if (ConfigFileEntry.tkline_expire_notices)
2178     sendto_realops_flags(UMODE_ALL, L_ALL,
2179     "Temporary RESV for [%s] expired", conf->name);
2180     dlinkDelete(ptr, tklist);
2181     free_dlink_node(ptr);
2182     delete_conf_item(conf);
2183     }
2184     }
2185     else if (conf->type == CRESV_TYPE)
2186     {
2187     cconf = (struct ResvChannel *)map_to_conf(conf);
2188     if (cconf->hold <= CurrentTime)
2189     {
2190     if (ConfigFileEntry.tkline_expire_notices)
2191     sendto_realops_flags(UMODE_ALL, L_ALL,
2192     "Temporary RESV for [%s] expired", cconf->name);
2193 db 855 delete_channel_resv(cconf);
2194 adx 30 }
2195     }
2196     }
2197     }
2198    
2199     /* oper_privs_as_string()
2200     *
2201 michael 58 * inputs - pointer to client_p
2202 adx 30 * output - pointer to static string showing oper privs
2203     * side effects - return as string, the oper privs as derived from port
2204     */
2205 michael 58 static const struct oper_privs
2206     {
2207     const unsigned int oprivs;
2208     const unsigned char c;
2209     } flag_list[] = {
2210 michael 1294 { OPER_FLAG_ADMIN, 'A' },
2211     { OPER_FLAG_REMOTEBAN, 'B' },
2212     { OPER_FLAG_DIE, 'D' },
2213     { OPER_FLAG_GLINE, 'G' },
2214     { OPER_FLAG_REHASH, 'H' },
2215     { OPER_FLAG_K, 'K' },
2216     { OPER_FLAG_OPERWALL, 'L' },
2217     { OPER_FLAG_N, 'N' },
2218     { OPER_FLAG_GLOBAL_KILL, 'O' },
2219     { OPER_FLAG_REMOTE, 'R' },
2220     { OPER_FLAG_OPER_SPY, 'S' },
2221     { OPER_FLAG_UNKLINE, 'U' },
2222     { OPER_FLAG_X, 'X' },
2223     { 0, '\0' }
2224 michael 58 };
2225 adx 30
2226     char *
2227     oper_privs_as_string(const unsigned int port)
2228     {
2229 michael 58 static char privs_out[16];
2230     char *privs_ptr = privs_out;
2231     unsigned int i = 0;
2232 adx 30
2233 michael 58 for (; flag_list[i].oprivs; ++i)
2234     {
2235 michael 1294 if (port & flag_list[i].oprivs)
2236 michael 58 *privs_ptr++ = flag_list[i].c;
2237     else
2238     *privs_ptr++ = ToLowerTab[flag_list[i].c];
2239     }
2240    
2241     *privs_ptr = '\0';
2242    
2243 adx 30 return privs_out;
2244     }
2245    
2246     /*
2247     * Input: A client to find the active oper{} name for.
2248     * Output: The nick!user@host{oper} of the oper.
2249     * "oper" is server name for remote opers
2250     * Side effects: None.
2251     */
2252 michael 1364 const char *
2253 adx 30 get_oper_name(const struct Client *client_p)
2254     {
2255 michael 1364 dlink_node *cnode = NULL;
2256 adx 30 /* +5 for !,@,{,} and null */
2257 michael 1147 static char buffer[NICKLEN + USERLEN + HOSTLEN + HOSTLEN + 5];
2258 adx 30
2259     if (MyConnect(client_p))
2260     {
2261 michael 1364 if ((cnode = client_p->localClient->confs.head))
2262 adx 30 {
2263 michael 1364 struct ConfItem *conf = cnode->data;
2264     const struct AccessItem *aconf = map_to_conf(conf);
2265 adx 30
2266     if (IsConfOperator(aconf))
2267     {
2268 michael 1147 snprintf(buffer, sizeof(buffer), "%s!%s@%s{%s}", client_p->name,
2269     client_p->username, client_p->host, conf->name);
2270 adx 30 return buffer;
2271     }
2272     }
2273    
2274     /* Probably should assert here for now. If there is an oper out there
2275     * with no oper{} conf attached, it would be good for us to know...
2276     */
2277     assert(0); /* Oper without oper conf! */
2278     }
2279    
2280 michael 1147 snprintf(buffer, sizeof(buffer), "%s!%s@%s{%s}", client_p->name,
2281     client_p->username, client_p->host, client_p->servptr->name);
2282 adx 30 return buffer;
2283     }
2284    
2285     /* read_conf_files()
2286     *
2287     * inputs - cold start YES or NO
2288     * output - none
2289     * side effects - read all conf files needed, ircd.conf kline.conf etc.
2290     */
2291     void
2292     read_conf_files(int cold)
2293     {
2294     const char *filename;
2295     char chanmodes[32];
2296     char chanlimit[32];
2297    
2298 michael 967 conf_parser_ctx.boot = cold;
2299 adx 30 filename = get_conf_name(CONF_TYPE);
2300    
2301     /* We need to know the initial filename for the yyerror() to report
2302     FIXME: The full path is in conffilenamebuf first time since we
2303     dont know anything else
2304    
2305     - Gozem 2002-07-21
2306     */
2307     strlcpy(conffilebuf, filename, sizeof(conffilebuf));
2308    
2309 michael 1325 if ((conf_parser_ctx.conf_file = fopen(filename, "r")) == NULL)
2310 adx 30 {
2311     if (cold)
2312     {
2313 michael 1247 ilog(LOG_TYPE_IRCD, "Unable to read configuration file '%s': %s",
2314 adx 30 filename, strerror(errno));
2315     exit(-1);
2316     }
2317     else
2318     {
2319     sendto_realops_flags(UMODE_ALL, L_ALL,
2320     "Unable to read configuration file '%s': %s",
2321     filename, strerror(errno));
2322     return;
2323     }
2324     }
2325    
2326     if (!cold)
2327     clear_out_old_conf();
2328    
2329 michael 967 read_conf(conf_parser_ctx.conf_file);
2330 michael 1325 fclose(conf_parser_ctx.conf_file);
2331 adx 30
2332     add_isupport("NETWORK", ServerInfo.network_name, -1);
2333 michael 1147 snprintf(chanmodes, sizeof(chanmodes), "b%s%s:%d",
2334     ConfigChannel.use_except ? "e" : "",
2335     ConfigChannel.use_invex ? "I" : "", ConfigChannel.max_bans);
2336 adx 30 add_isupport("MAXLIST", chanmodes, -1);
2337     add_isupport("MAXTARGETS", NULL, ConfigFileEntry.max_targets);
2338 michael 1147
2339 adx 30 if (ConfigChannel.disable_local_channels)
2340     add_isupport("CHANTYPES", "#", -1);
2341     else
2342     add_isupport("CHANTYPES", "#&", -1);
2343 michael 1147
2344     snprintf(chanlimit, sizeof(chanlimit), "%s:%d",
2345     ConfigChannel.disable_local_channels ? "#" : "#&",
2346     ConfigChannel.max_chans_per_user);
2347 adx 30 add_isupport("CHANLIMIT", chanlimit, -1);
2348 michael 1147 snprintf(chanmodes, sizeof(chanmodes), "%s%s%s",
2349     ConfigChannel.use_except ? "e" : "",
2350 michael 1175 ConfigChannel.use_invex ? "I" : "", "b,k,l,imnprstORS");
2351 michael 100 add_isupport("CHANNELLEN", NULL, LOCAL_CHANNELLEN);
2352 michael 1147
2353 adx 30 if (ConfigChannel.use_except)
2354     add_isupport("EXCEPTS", "e", -1);
2355     if (ConfigChannel.use_invex)
2356     add_isupport("INVEX", "I", -1);
2357     add_isupport("CHANMODES", chanmodes, -1);
2358    
2359     /*
2360     * message_locale may have changed. rebuild isupport since it relies
2361     * on strlen(form_str(RPL_ISUPPORT))
2362     */
2363     rebuild_isupport_message_line();
2364    
2365 michael 1009 #ifdef HAVE_LIBPCRE
2366     parse_conf_file(RKLINE_TYPE, cold);
2367     parse_conf_file(RXLINE_TYPE, cold);
2368     #endif
2369 adx 30 parse_conf_file(KLINE_TYPE, cold);
2370     parse_conf_file(DLINE_TYPE, cold);
2371     parse_conf_file(XLINE_TYPE, cold);
2372     parse_conf_file(NRESV_TYPE, cold);
2373     parse_conf_file(CRESV_TYPE, cold);
2374     }
2375    
2376     /* parse_conf_file()
2377     *
2378     * inputs - type of conf file to parse
2379     * output - none
2380     * side effects - conf file for givenconf type is opened and read then parsed
2381     */
2382     static void
2383     parse_conf_file(int type, int cold)
2384     {
2385 michael 1325 FILE *file = NULL;
2386 adx 30 const char *filename = get_conf_name(type);
2387    
2388 michael 1325 if ((file = fopen(filename, "r")) == NULL)
2389 adx 30 {
2390     if (cold)
2391 michael 1247 ilog(LOG_TYPE_IRCD, "Unable to read configuration file '%s': %s",
2392 adx 30 filename, strerror(errno));
2393     else
2394     sendto_realops_flags(UMODE_ALL, L_ALL,
2395     "Unable to read configuration file '%s': %s",
2396     filename, strerror(errno));
2397     }
2398     else
2399     {
2400     parse_csv_file(file, type);
2401 michael 1325 fclose(file);
2402 adx 30 }
2403     }
2404    
2405     /* clear_out_old_conf()
2406     *
2407     * inputs - none
2408     * output - none
2409     * side effects - Clear out the old configuration
2410     */
2411     static void
2412     clear_out_old_conf(void)
2413     {
2414     dlink_node *ptr = NULL, *next_ptr = NULL;
2415     struct ConfItem *conf;
2416     struct AccessItem *aconf;
2417     struct ClassItem *cltmp;
2418     struct MatchItem *match_item;
2419     dlink_list *free_items [] = {
2420 michael 1383 &server_items, &oconf_items,
2421 adx 30 &uconf_items, &xconf_items, &rxconf_items, &rkconf_items,
2422 michael 1157 &nresv_items, &cluster_items, &gdeny_items, &service_items, NULL
2423 adx 30 };
2424    
2425     dlink_list ** iterator = free_items; /* C is dumb */
2426    
2427     /* We only need to free anything allocated by yyparse() here.
2428     * Resetting structs, etc, is taken care of by set_default_conf().
2429     */
2430    
2431     for (; *iterator != NULL; iterator++)
2432     {
2433     DLINK_FOREACH_SAFE(ptr, next_ptr, (*iterator)->head)
2434     {
2435     conf = ptr->data;
2436     /* XXX This is less than pretty */
2437     if (conf->type == SERVER_TYPE)
2438     {
2439 michael 671 aconf = map_to_conf(conf);
2440    
2441 adx 30 if (aconf->clients != 0)
2442     {
2443     SetConfIllegal(aconf);
2444     dlinkDelete(&conf->node, &server_items);
2445     }
2446     else
2447     {
2448     delete_conf_item(conf);
2449     }
2450     }
2451     else if (conf->type == OPER_TYPE)
2452     {
2453 michael 671 aconf = map_to_conf(conf);
2454    
2455 adx 30 if (aconf->clients != 0)
2456     {
2457     SetConfIllegal(aconf);
2458     dlinkDelete(&conf->node, &oconf_items);
2459     }
2460     else
2461     {
2462     delete_conf_item(conf);
2463     }
2464     }
2465     else if (conf->type == XLINE_TYPE ||
2466     conf->type == RXLINE_TYPE ||
2467     conf->type == RKLINE_TYPE)
2468     {
2469     /* temporary (r)xlines are also on
2470     * the (r)xconf items list */
2471     if (conf->flags & CONF_FLAGS_TEMPORARY)
2472     continue;
2473    
2474     delete_conf_item(conf);
2475     }
2476     else
2477     {
2478     delete_conf_item(conf);
2479     }
2480     }
2481     }
2482    
2483 michael 671 /*
2484     * don't delete the class table, rather mark all entries
2485 adx 30 * for deletion. The table is cleaned up by check_class. - avalon
2486     */
2487     DLINK_FOREACH(ptr, class_items.head)
2488     {
2489 michael 671 cltmp = map_to_conf(ptr->data);
2490    
2491 adx 30 if (ptr != class_items.tail) /* never mark the "default" class */
2492 michael 671 cltmp->active = 0;
2493 adx 30 }
2494    
2495     clear_out_address_conf();
2496    
2497     /* clean out module paths */
2498     mod_clear_paths();
2499    
2500     /* clean out ServerInfo */
2501     MyFree(ServerInfo.description);
2502     ServerInfo.description = NULL;
2503     MyFree(ServerInfo.network_name);
2504     ServerInfo.network_name = NULL;
2505     MyFree(ServerInfo.network_desc);
2506     ServerInfo.network_desc = NULL;
2507     MyFree(ConfigFileEntry.egdpool_path);
2508     ConfigFileEntry.egdpool_path = NULL;
2509     #ifdef HAVE_LIBCRYPTO
2510     if (ServerInfo.rsa_private_key != NULL)
2511     {
2512     RSA_free(ServerInfo.rsa_private_key);
2513     ServerInfo.rsa_private_key = NULL;
2514     }
2515    
2516     MyFree(ServerInfo.rsa_private_key_file);
2517     ServerInfo.rsa_private_key_file = NULL;
2518 michael 1316
2519     if (ServerInfo.server_ctx)
2520     SSL_CTX_set_options(ServerInfo.server_ctx, SSL_OP_NO_SSLv2|
2521     SSL_OP_NO_SSLv3|
2522     SSL_OP_NO_TLSv1);
2523     if (ServerInfo.client_ctx)
2524     SSL_CTX_set_options(ServerInfo.client_ctx, SSL_OP_NO_SSLv2|
2525     SSL_OP_NO_SSLv3|
2526     SSL_OP_NO_TLSv1);
2527 adx 30 #endif
2528    
2529     /* clean out old resvs from the conf */
2530     clear_conf_resv();
2531    
2532     /* clean out AdminInfo */
2533     MyFree(AdminInfo.name);
2534     AdminInfo.name = NULL;
2535     MyFree(AdminInfo.email);
2536     AdminInfo.email = NULL;
2537     MyFree(AdminInfo.description);
2538     AdminInfo.description = NULL;
2539    
2540     /* operator{} and class{} blocks are freed above */
2541     /* clean out listeners */
2542     close_listeners();
2543    
2544     /* auth{}, quarantine{}, shared{}, connect{}, kill{}, deny{},
2545     * exempt{} and gecos{} blocks are freed above too
2546     */
2547    
2548     /* clean out general */
2549 michael 1157 MyFree(ConfigFileEntry.service_name);
2550     ConfigFileEntry.service_name = NULL;
2551    
2552 adx 30 delete_isupport("INVEX");
2553     delete_isupport("EXCEPTS");
2554     }
2555    
2556     /* flush_deleted_I_P()
2557     *
2558     * inputs - none
2559     * output - none
2560     * side effects - This function removes I/P conf items
2561     */
2562     static void
2563     flush_deleted_I_P(void)
2564     {
2565     dlink_node *ptr;
2566     dlink_node *next_ptr;
2567     struct ConfItem *conf;
2568     struct AccessItem *aconf;
2569     dlink_list * free_items [] = {
2570 db 151 &server_items, &oconf_items, NULL
2571 adx 30 };
2572     dlink_list ** iterator = free_items; /* C is dumb */
2573    
2574     /* flush out deleted I and P lines
2575     * although still in use.
2576     */
2577     for (; *iterator != NULL; iterator++)
2578     {
2579     DLINK_FOREACH_SAFE(ptr, next_ptr, (*iterator)->head)
2580     {
2581     conf = ptr->data;
2582     aconf = (struct AccessItem *)map_to_conf(conf);
2583    
2584     if (IsConfIllegal(aconf))
2585     {
2586     dlinkDelete(ptr, *iterator);
2587    
2588     if (aconf->clients == 0)
2589     delete_conf_item(conf);
2590     }
2591     }
2592     }
2593     }
2594    
2595     /* get_conf_name()
2596     *
2597     * inputs - type of conf file to return name of file for
2598     * output - pointer to filename for type of conf
2599     * side effects - none
2600     */
2601     const char *
2602     get_conf_name(ConfType type)
2603     {
2604     switch (type)
2605     {
2606     case CONF_TYPE:
2607     return ConfigFileEntry.configfile;
2608     break;
2609     case KLINE_TYPE:
2610     return ConfigFileEntry.klinefile;
2611     break;
2612     case RKLINE_TYPE:
2613     return ConfigFileEntry.rklinefile;
2614     break;
2615     case DLINE_TYPE:
2616     return ConfigFileEntry.dlinefile;
2617     break;
2618     case XLINE_TYPE:
2619     return ConfigFileEntry.xlinefile;
2620     break;
2621     case RXLINE_TYPE:
2622     return ConfigFileEntry.rxlinefile;
2623     break;
2624     case CRESV_TYPE:
2625     return ConfigFileEntry.cresvfile;
2626     break;
2627     case NRESV_TYPE:
2628     return ConfigFileEntry.nresvfile;
2629     break;
2630     case GLINE_TYPE:
2631     return ConfigFileEntry.glinefile;
2632     break;
2633    
2634     default:
2635     return NULL; /* This should NEVER HAPPEN since we call this function
2636     only with the above values, this will cause us to core
2637     at some point if this happens so we know where it was */
2638     }
2639     }
2640    
2641     #define BAD_PING (-1)
2642    
2643     /* get_conf_ping()
2644     *
2645     * inputs - pointer to struct AccessItem
2646     * - pointer to a variable that receives ping warning time
2647     * output - ping frequency
2648     * side effects - NONE
2649     */
2650     static int
2651     get_conf_ping(struct ConfItem *conf, int *pingwarn)
2652     {
2653     struct ClassItem *aclass;
2654     struct AccessItem *aconf;
2655    
2656     if (conf != NULL)
2657     {
2658     aconf = (struct AccessItem *)map_to_conf(conf);
2659     if (aconf->class_ptr != NULL)
2660     {
2661     aclass = (struct ClassItem *)map_to_conf(aconf->class_ptr);
2662 michael 1377 *pingwarn = aclass->ping_warning;
2663     return aclass->ping_freq;
2664 adx 30 }
2665     }
2666    
2667     return BAD_PING;
2668     }
2669    
2670     /* get_client_class()
2671     *
2672     * inputs - pointer to client struct
2673     * output - pointer to name of class
2674     * side effects - NONE
2675     */
2676     const char *
2677     get_client_class(struct Client *target_p)
2678     {
2679 michael 1387 dlink_node *cnode = NULL;
2680     struct AccessItem *aconf = NULL;
2681 adx 30
2682 michael 1387 assert(!IsMe(target_p));
2683    
2684     if ((cnode = target_p->localClient->confs.head))
2685 adx 30 {
2686 michael 1387 struct ConfItem *conf = cnode->data;
2687 adx 30
2688 michael 1387 assert((conf->type == CLIENT_TYPE) || (conf->type == SERVER_TYPE) ||
2689     (conf->type == OPER_TYPE));
2690    
2691     aconf = map_to_conf(conf);
2692     if (aconf->class_ptr != NULL)
2693     return aconf->class_ptr->name;
2694 adx 30 }
2695    
2696     return "default";
2697     }
2698    
2699     /* get_client_ping()
2700     *
2701     * inputs - pointer to client struct
2702     * - pointer to a variable that receives ping warning time
2703     * output - ping frequency
2704     * side effects - NONE
2705     */
2706     int
2707     get_client_ping(struct Client *target_p, int *pingwarn)
2708     {
2709 michael 1387 int ping = 0;
2710     dlink_node *cnode = NULL;
2711 adx 30
2712 michael 1387 if ((cnode = target_p->localClient->confs.head))
2713     {
2714     struct ConfItem *conf = cnode->data;
2715 adx 30
2716 michael 1387 assert((conf->type == CLIENT_TYPE) || (conf->type == SERVER_TYPE) ||
2717     (conf->type == OPER_TYPE));
2718 adx 30
2719 michael 1387 ping = get_conf_ping(conf, pingwarn);
2720     if (ping > 0)
2721     return ping;
2722     }
2723    
2724 adx 30 *pingwarn = 0;
2725     return DEFAULT_PINGFREQUENCY;
2726     }
2727    
2728     /* find_class()
2729     *
2730     * inputs - string name of class
2731     * output - corresponding Class pointer
2732     * side effects - NONE
2733     */
2734     struct ConfItem *
2735     find_class(const char *classname)
2736     {
2737     struct ConfItem *conf;
2738    
2739 michael 1285 if ((conf = find_exact_name_conf(CLASS_TYPE, NULL, classname, NULL, NULL)) != NULL)
2740 michael 671 return conf;
2741 adx 30
2742     return class_default;
2743     }
2744    
2745     /* check_class()
2746     *
2747     * inputs - NONE
2748     * output - NONE
2749     * side effects -
2750     */
2751     void
2752     check_class(void)
2753     {
2754 michael 671 dlink_node *ptr = NULL, *next_ptr = NULL;
2755 adx 30
2756     DLINK_FOREACH_SAFE(ptr, next_ptr, class_items.head)
2757     {
2758 michael 671 struct ClassItem *aclass = map_to_conf(ptr->data);
2759 adx 30
2760 michael 1377 if (!aclass->active && !aclass->curr_user_count)
2761 adx 30 {
2762     destroy_cidr_class(aclass);
2763 michael 673 delete_conf_item(ptr->data);
2764 adx 30 }
2765     }
2766     }
2767    
2768     /* init_class()
2769     *
2770     * inputs - NONE
2771     * output - NONE
2772     * side effects -
2773     */
2774     void
2775     init_class(void)
2776     {
2777     struct ClassItem *aclass;
2778    
2779     class_default = make_conf_item(CLASS_TYPE);
2780 michael 671
2781     aclass = map_to_conf(class_default);
2782     aclass->active = 1;
2783 adx 30 DupString(class_default->name, "default");
2784 michael 1377 aclass->con_freq = DEFAULT_CONNECTFREQUENCY;
2785     aclass->ping_freq = DEFAULT_PINGFREQUENCY;
2786     aclass->max_total = MAXIMUM_LINKS_DEFAULT;
2787     aclass->max_sendq = DEFAULT_SENDQ;
2788 adx 30
2789     client_check_cb = register_callback("check_client", check_client);
2790     }
2791    
2792     /* get_sendq()
2793     *
2794     * inputs - pointer to client
2795     * output - sendq for this client as found from its class
2796     * side effects - NONE
2797     */
2798 michael 948 unsigned int
2799 adx 30 get_sendq(struct Client *client_p)
2800     {
2801 michael 948 unsigned int sendq = DEFAULT_SENDQ;
2802 michael 1387 dlink_node *cnode;
2803 adx 30 struct ConfItem *class_conf;
2804     struct ClassItem *aclass;
2805     struct AccessItem *aconf;
2806    
2807 michael 1388 assert(!IsMe(client_p));
2808 michael 1387
2809     if ((cnode = client_p->localClient->confs.head))
2810 adx 30 {
2811 michael 1387 struct ConfItem *conf = cnode->data;
2812    
2813     assert((conf->type == CLIENT_TYPE) || (conf->type == SERVER_TYPE) ||
2814     (conf->type == OPER_TYPE));
2815    
2816     aconf = map_to_conf(conf);
2817    
2818     if ((class_conf = aconf->class_ptr) == NULL)
2819     return DEFAULT_SENDQ; /* TBV: shouldn't be possible at all */
2820    
2821     aclass = map_to_conf(class_conf);
2822     sendq = aclass->max_sendq;
2823     return sendq;
2824 adx 30 }
2825 michael 1387
2826 adx 30 /* XXX return a default?
2827     * if here, then there wasn't an attached conf with a sendq
2828     * that is very bad -Dianora
2829     */
2830     return DEFAULT_SENDQ;
2831     }
2832    
2833     /* conf_add_class_to_conf()
2834     *
2835     * inputs - pointer to config item
2836     * output - NONE
2837     * side effects - Add a class pointer to a conf
2838     */
2839     void
2840     conf_add_class_to_conf(struct ConfItem *conf, const char *class_name)
2841     {
2842 michael 671 struct AccessItem *aconf = map_to_conf(conf);
2843     struct ClassItem *class = NULL;
2844 adx 30
2845     if (class_name == NULL)
2846     {
2847     aconf->class_ptr = class_default;
2848 michael 671
2849 adx 30 if (conf->type == CLIENT_TYPE)
2850     sendto_realops_flags(UMODE_ALL, L_ALL,
2851     "Warning *** Defaulting to default class for %s@%s",
2852     aconf->user, aconf->host);
2853     else
2854     sendto_realops_flags(UMODE_ALL, L_ALL,
2855     "Warning *** Defaulting to default class for %s",
2856     conf->name);
2857     }
2858     else
2859     aconf->class_ptr = find_class(class_name);
2860    
2861 michael 671 if (aconf->class_ptr)
2862     class = map_to_conf(aconf->class_ptr);
2863    
2864     if (aconf->class_ptr == NULL || !class->active)
2865 adx 30 {
2866     if (conf->type == CLIENT_TYPE)
2867     sendto_realops_flags(UMODE_ALL, L_ALL,
2868     "Warning *** Defaulting to default class for %s@%s",
2869     aconf->user, aconf->host);
2870     else
2871     sendto_realops_flags(UMODE_ALL, L_ALL,
2872     "Warning *** Defaulting to default class for %s",
2873     conf->name);
2874     aconf->class_ptr = class_default;
2875     }
2876     }
2877    
2878     /* conf_add_server()
2879     *
2880     * inputs - pointer to config item
2881     * - pointer to link count already on this conf
2882     * output - NONE
2883     * side effects - Add a connect block
2884     */
2885     int
2886 michael 593 conf_add_server(struct ConfItem *conf, const char *class_name)
2887 adx 30 {
2888 michael 1366 struct AccessItem *aconf = map_to_conf(conf);
2889 adx 30
2890     conf_add_class_to_conf(conf, class_name);
2891    
2892 michael 593 if (!aconf->host || !conf->name)
2893 adx 30 {
2894     sendto_realops_flags(UMODE_ALL, L_ALL, "Bad connect block");
2895 michael 1247 ilog(LOG_TYPE_IRCD, "Bad connect block");
2896 adx 30 return -1;
2897     }
2898    
2899 michael 1302 if (EmptyString(aconf->passwd))
2900 adx 30 {
2901     sendto_realops_flags(UMODE_ALL, L_ALL, "Bad connect block, name %s",
2902     conf->name);
2903 michael 1247 ilog(LOG_TYPE_IRCD, "Bad connect block, host %s", conf->name);
2904 adx 30 return -1;
2905     }
2906    
2907     lookup_confhost(conf);
2908    
2909     return 0;
2910     }
2911    
2912     /* yyerror()
2913     *
2914     * inputs - message from parser
2915     * output - NONE
2916     * side effects - message to opers and log file entry is made
2917     */
2918     void
2919     yyerror(const char *msg)
2920     {
2921     char newlinebuf[IRCD_BUFSIZE];
2922    
2923 michael 967 if (conf_parser_ctx.pass != 1)
2924 adx 30 return;
2925    
2926     strip_tabs(newlinebuf, linebuf, sizeof(newlinebuf));
2927     sendto_realops_flags(UMODE_ALL, L_ALL, "\"%s\", line %u: %s: %s",
2928     conffilebuf, lineno + 1, msg, newlinebuf);
2929 michael 1247 ilog(LOG_TYPE_IRCD, "\"%s\", line %u: %s: %s",
2930 adx 30 conffilebuf, lineno + 1, msg, newlinebuf);
2931     }
2932    
2933     /*
2934     * valid_tkline()
2935     *
2936     * inputs - pointer to ascii string to check
2937     * - whether the specified time is in seconds or minutes
2938     * output - -1 not enough parameters
2939     * - 0 if not an integer number, else the number
2940     * side effects - none
2941     * Originally written by Dianora (Diane, db@db.net)
2942     */
2943     time_t
2944 michael 1120 valid_tkline(const char *p, int minutes)
2945 adx 30 {
2946     time_t result = 0;
2947    
2948 michael 1120 for (; *p; ++p)
2949 adx 30 {
2950 michael 1120 if (!IsDigit(*p))
2951 michael 1121 return 0;
2952 michael 1120
2953     result *= 10;
2954     result += ((*p) & 0xF);
2955 adx 30 }
2956    
2957 michael 1120 /*
2958     * In the degenerate case where oper does a /quote kline 0 user@host :reason
2959 adx 30 * i.e. they specifically use 0, I am going to return 1 instead
2960     * as a return value of non-zero is used to flag it as a temporary kline
2961     */
2962     if (result == 0)
2963     result = 1;
2964    
2965     /*
2966     * If the incoming time is in seconds convert it to minutes for the purpose
2967     * of this calculation
2968     */
2969     if (!minutes)
2970     result = result / (time_t)60;
2971    
2972     if (result > MAX_TDKLINE_TIME)
2973     result = MAX_TDKLINE_TIME;
2974    
2975     result = result * (time_t)60; /* turn it into seconds */
2976    
2977     return result;
2978     }
2979    
2980     /* valid_wild_card()
2981     *
2982     * input - pointer to client
2983     * - int flag, 0 for no warning oper 1 for warning oper
2984     * - count of following varargs to check
2985     * output - 0 if not valid, 1 if valid
2986     * side effects - NOTICE is given to source_p if warn is 1
2987     */
2988     int
2989     valid_wild_card(struct Client *source_p, int warn, int count, ...)
2990     {
2991     char *p;
2992     char tmpch;
2993     int nonwild = 0;
2994     va_list args;
2995    
2996     /*
2997     * Now we must check the user and host to make sure there
2998     * are at least NONWILDCHARS non-wildcard characters in
2999     * them, otherwise assume they are attempting to kline
3000     * *@* or some variant of that. This code will also catch
3001     * people attempting to kline *@*.tld, as long as NONWILDCHARS
3002     * is greater than 3. In that case, there are only 3 non-wild
3003     * characters (tld), so if NONWILDCHARS is 4, the kline will
3004     * be disallowed.
3005     * -wnder
3006     */
3007    
3008     va_start(args, count);
3009    
3010     while (count--)
3011     {
3012     p = va_arg(args, char *);
3013     if (p == NULL)
3014     continue;
3015    
3016     while ((tmpch = *p++))
3017     {
3018     if (!IsKWildChar(tmpch))
3019     {
3020     /*
3021     * If we find enough non-wild characters, we can
3022     * break - no point in searching further.
3023     */
3024     if (++nonwild >= ConfigFileEntry.min_nonwildcard)
3025     return 1;
3026     }
3027     }
3028     }
3029    
3030     if (warn)
3031     sendto_one(source_p, ":%s NOTICE %s :Please include at least %d non-wildcard characters with the mask",
3032     me.name, source_p->name, ConfigFileEntry.min_nonwildcard);
3033     return 0;
3034     }
3035    
3036     /* XXX should this go into a separate file ? -Dianora */
3037     /* parse_aline
3038     *
3039     * input - pointer to cmd name being used
3040     * - pointer to client using cmd
3041     * - parc parameter count
3042     * - parv[] list of parameters to parse
3043     * - parse_flags bit map of things to test
3044     * - pointer to user or string to parse into
3045     * - pointer to host or NULL to parse into if non NULL
3046     * - pointer to optional tkline time or NULL
3047     * - pointer to target_server to parse into if non NULL
3048     * - pointer to reason to parse into
3049     *
3050     * output - 1 if valid, -1 if not valid
3051     * side effects - A generalised k/d/x etc. line parser,
3052     * "ALINE [time] user@host|string [ON] target :reason"
3053     * will parse returning a parsed user, host if
3054     * h_p pointer is non NULL, string otherwise.
3055     * if tkline_time pointer is non NULL a tk line will be set
3056     * to non zero if found.
3057     * if tkline_time pointer is NULL and tk line is found,
3058     * error is reported.
3059     * if target_server is NULL and an "ON" is found error
3060     * is reported.
3061     * if reason pointer is NULL ignore pointer,
3062 db 936 * this allows use of parse_a_line in unkline etc.
3063 adx 30 *
3064     * - Dianora
3065     */
3066     int
3067     parse_aline(const char *cmd, struct Client *source_p,
3068     int parc, char **parv,
3069     int parse_flags, char **up_p, char **h_p, time_t *tkline_time,
3070     char **target_server, char **reason)
3071     {
3072     int found_tkline_time=0;
3073     static char def_reason[] = "No Reason";
3074     static char user[USERLEN*4+1];
3075     static char host[HOSTLEN*4+1];
3076    
3077     parv++;
3078     parc--;
3079    
3080     found_tkline_time = valid_tkline(*parv, TK_MINUTES);
3081    
3082     if (found_tkline_time != 0)
3083     {
3084     parv++;
3085     parc--;
3086    
3087     if (tkline_time != NULL)
3088     *tkline_time = found_tkline_time;
3089     else
3090     {
3091     sendto_one(source_p, ":%s NOTICE %s :temp_line not supported by %s",
3092     me.name, source_p->name, cmd);
3093     return -1;
3094     }
3095     }
3096    
3097     if (parc == 0)
3098     {
3099     sendto_one(source_p, form_str(ERR_NEEDMOREPARAMS),
3100     me.name, source_p->name, cmd);
3101     return -1;
3102     }
3103    
3104     if (h_p == NULL)
3105     *up_p = *parv;
3106     else
3107     {
3108     if (find_user_host(source_p, *parv, user, host, parse_flags) == 0)
3109     return -1;
3110    
3111     *up_p = user;
3112     *h_p = host;
3113     }
3114    
3115     parc--;
3116     parv++;
3117    
3118     if (parc != 0)
3119     {
3120     if (irccmp(*parv, "ON") == 0)
3121     {
3122     parc--;
3123     parv++;
3124    
3125     if (target_server == NULL)
3126     {
3127     sendto_one(source_p, ":%s NOTICE %s :ON server not supported by %s",
3128     me.name, source_p->name, cmd);
3129     return -1;
3130     }
3131    
3132 michael 1219 if (!HasOFlag(source_p, OPER_FLAG_REMOTEBAN))
3133 adx 30 {
3134     sendto_one(source_p, form_str(ERR_NOPRIVS),
3135     me.name, source_p->name, "remoteban");
3136     return -1;
3137     }
3138    
3139     if (parc == 0 || EmptyString(*parv))
3140     {
3141     sendto_one(source_p, form_str(ERR_NEEDMOREPARAMS),
3142     me.name, source_p->name, cmd);
3143     return -1;
3144     }
3145    
3146     *target_server = *parv;
3147     parc--;
3148     parv++;
3149     }
3150     else
3151     {
3152     /* Make sure target_server *is* NULL if no ON server found
3153     * caller probably NULL'd it first, but no harm to do it again -db
3154     */
3155     if (target_server != NULL)
3156     *target_server = NULL;
3157     }
3158     }
3159    
3160     if (h_p != NULL)
3161     {
3162     if (strchr(user, '!') != NULL)
3163     {
3164     sendto_one(source_p, ":%s NOTICE %s :Invalid character '!' in kline",
3165     me.name, source_p->name);
3166     return -1;
3167     }
3168    
3169 michael 1243 if ((parse_flags & AWILD) && !valid_wild_card(source_p, 1, 2, *up_p, *h_p))
3170 adx 30 return -1;
3171     }
3172     else
3173 michael 1243 if ((parse_flags & AWILD) && !valid_wild_card(source_p, 1, 1, *up_p))
3174 adx 30 return -1;
3175    
3176     if (reason != NULL)
3177     {
3178 michael 867 if (parc != 0 && !EmptyString(*parv))
3179 adx 30 {
3180     *reason = *parv;
3181 michael 1243 if (!valid_comment(source_p, *reason, 1))
3182 adx 30 return -1;
3183     }
3184     else
3185     *reason = def_reason;
3186     }
3187    
3188     return 1;
3189     }
3190    
3191     /* find_user_host()
3192     *
3193     * inputs - pointer to client placing kline
3194     * - pointer to user_host_or_nick
3195     * - pointer to user buffer
3196     * - pointer to host buffer
3197     * output - 0 if not ok to kline, 1 to kline i.e. if valid user host
3198     * side effects -
3199     */
3200     static int
3201     find_user_host(struct Client *source_p, char *user_host_or_nick,
3202     char *luser, char *lhost, unsigned int flags)
3203     {
3204     struct Client *target_p = NULL;
3205     char *hostp = NULL;
3206    
3207     if (lhost == NULL)
3208     {
3209     strlcpy(luser, user_host_or_nick, USERLEN*4 + 1);
3210     return 1;
3211     }
3212    
3213     if ((hostp = strchr(user_host_or_nick, '@')) || *user_host_or_nick == '*')
3214     {
3215     /* Explicit user@host mask given */
3216    
3217 michael 593 if (hostp != NULL) /* I'm a little user@host */
3218 adx 30 {
3219     *(hostp++) = '\0'; /* short and squat */
3220     if (*user_host_or_nick)
3221     strlcpy(luser, user_host_or_nick, USERLEN*4 + 1); /* here is my user */
3222     else
3223     strcpy(luser, "*");
3224     if (*hostp)
3225     strlcpy(lhost, hostp, HOSTLEN + 1); /* here is my host */
3226     else
3227     strcpy(lhost, "*");
3228     }
3229     else
3230     {
3231     luser[0] = '*'; /* no @ found, assume its *@somehost */
3232     luser[1] = '\0';
3233     strlcpy(lhost, user_host_or_nick, HOSTLEN*4 + 1);
3234     }
3235    
3236     return 1;
3237     }
3238     else if (!(flags & NOUSERLOOKUP))
3239     {
3240     /* Try to find user@host mask from nick */
3241     /* Okay to use source_p as the first param, because source_p == client_p */
3242     if ((target_p =
3243     find_chasing(source_p, source_p, user_host_or_nick, NULL)) == NULL)
3244     return 0;
3245    
3246     if (IsExemptKline(target_p))
3247     {
3248     if (!IsServer(source_p))
3249     sendto_one(source_p,
3250     ":%s NOTICE %s :%s is E-lined",
3251     me.name, source_p->name, target_p->name);
3252     return 0;
3253     }
3254    
3255     /*
3256     * turn the "user" bit into "*user", blow away '~'
3257     * if found in original user name (non-idented)
3258     */
3259     strlcpy(luser, target_p->username, USERLEN*4 + 1);
3260    
3261     if (target_p->username[0] == '~')
3262     luser[0] = '*';
3263    
3264     if (target_p->sockhost[0] == '\0' ||
3265     (target_p->sockhost[0] == '0' && target_p->sockhost[1] == '\0'))
3266     strlcpy(lhost, target_p->host, HOSTLEN*4 + 1);
3267     else
3268     strlcpy(lhost, target_p->sockhost, HOSTLEN*4 + 1);
3269     return 1;
3270     }
3271    
3272     return 0;
3273     }
3274    
3275     /* valid_comment()
3276     *
3277     * inputs - pointer to client
3278     * - pointer to comment
3279     * output - 0 if no valid comment,
3280     * - 1 if valid
3281     * side effects - truncates reason where necessary
3282     */
3283     int
3284     valid_comment(struct Client *source_p, char *comment, int warn)
3285     {
3286     if (strchr(comment, '"'))
3287     {
3288     if (warn)
3289     sendto_one(source_p, ":%s NOTICE %s :Invalid character '\"' in comment",
3290     me.name, source_p->name);
3291     return 0;
3292     }
3293    
3294     if (strlen(comment) > REASONLEN)
3295     comment[REASONLEN-1] = '\0';
3296    
3297     return 1;
3298     }
3299    
3300     /* match_conf_password()
3301     *
3302     * inputs - pointer to given password
3303     * - pointer to Conf
3304     * output - 1 or 0 if match
3305     * side effects - none
3306     */
3307     int
3308     match_conf_password(const char *password, const struct AccessItem *aconf)
3309     {
3310     const char *encr = NULL;
3311    
3312 michael 1390 if (EmptyString(password) || EmptyString(aconf->passwd))
3313 adx 30 return 0;
3314    
3315     if (aconf->flags & CONF_FLAGS_ENCRYPTED)
3316 michael 1390 encr = crypt(password, aconf->passwd);
3317 adx 30 else
3318     encr = password;
3319    
3320     return !strcmp(encr, aconf->passwd);
3321     }
3322    
3323     /*
3324     * cluster_a_line
3325     *
3326     * inputs - client sending the cluster
3327     * - command name "KLINE" "XLINE" etc.
3328     * - capab -- CAP_KLN etc. from s_serv.h
3329 michael 1309 * - cluster type -- CLUSTER_KLINE etc. from conf.h
3330 adx 30 * - pattern and args to send along
3331     * output - none
3332     * side effects - Take source_p send the pattern with args given
3333     * along to all servers that match capab and cluster type
3334     */
3335     void
3336     cluster_a_line(struct Client *source_p, const char *command,
3337 michael 593 int capab, int cluster_type, const char *pattern, ...)
3338 adx 30 {
3339     va_list args;
3340     char buffer[IRCD_BUFSIZE];
3341 michael 593 const dlink_node *ptr = NULL;
3342 adx 30
3343     va_start(args, pattern);
3344     vsnprintf(buffer, sizeof(buffer), pattern, args);
3345     va_end(args);
3346    
3347     DLINK_FOREACH(ptr, cluster_items.head)
3348     {
3349 michael 593 const struct ConfItem *conf = ptr->data;
3350 adx 30
3351     if (conf->flags & cluster_type)
3352     sendto_match_servs(source_p, conf->name, CAP_CLUSTER|capab,
3353     "%s %s %s", command, conf->name, buffer);
3354     }
3355     }
3356    
3357     /*
3358     * split_nuh
3359     *
3360     * inputs - pointer to original mask (modified in place)
3361     * - pointer to pointer where nick should go
3362     * - pointer to pointer where user should go
3363     * - pointer to pointer where host should go
3364     * output - NONE
3365     * side effects - mask is modified in place
3366     * If nick pointer is NULL, ignore writing to it
3367     * this allows us to use this function elsewhere.
3368     *
3369     * mask nick user host
3370     * ---------------------- ------- ------- ------
3371     * Dianora!db@db.net Dianora db db.net
3372     * Dianora Dianora * *
3373     * db.net * * db.net
3374     * OR if nick pointer is NULL
3375     * Dianora - * Dianora
3376     * Dianora! Dianora * *
3377     * Dianora!@ Dianora * *
3378     * Dianora!db Dianora db *
3379     * Dianora!@db.net Dianora * db.net
3380     * db@db.net * db db.net
3381     * !@ * * *
3382     * @ * * *
3383     * ! * * *
3384     */
3385     void
3386 michael 593 split_nuh(struct split_nuh_item *const iptr)
3387 adx 30 {
3388     char *p = NULL, *q = NULL;
3389    
3390 michael 593 if (iptr->nickptr)
3391     strlcpy(iptr->nickptr, "*", iptr->nicksize);
3392     if (iptr->userptr)
3393     strlcpy(iptr->userptr, "*", iptr->usersize);
3394     if (iptr->hostptr)
3395     strlcpy(iptr->hostptr, "*", iptr->hostsize);
3396    
3397     if ((p = strchr(iptr->nuhmask, '!')))
3398 adx 30 {
3399     *p = '\0';
3400    
3401 michael 593 if (iptr->nickptr && *iptr->nuhmask != '\0')
3402     strlcpy(iptr->nickptr, iptr->nuhmask, iptr->nicksize);
3403 adx 30
3404 michael 593 if ((q = strchr(++p, '@'))) {
3405     *q++ = '\0';
3406    
3407 adx 30 if (*p != '\0')
3408 michael 593 strlcpy(iptr->userptr, p, iptr->usersize);
3409 adx 30
3410 michael 593 if (*q != '\0')
3411     strlcpy(iptr->hostptr, q, iptr->hostsize);
3412 adx 30 }
3413     else
3414     {
3415     if (*p != '\0')
3416 michael 593 strlcpy(iptr->userptr, p, iptr->usersize);
3417 adx 30 }
3418     }
3419 michael 593 else
3420 adx 30 {
3421 michael 593 /* No ! found so lets look for a user@host */
3422     if ((p = strchr(iptr->nuhmask, '@')))
3423 adx 30 {
3424 michael 593 /* if found a @ */
3425     *p++ = '\0';
3426 adx 30
3427 michael 593 if (*iptr->nuhmask != '\0')
3428     strlcpy(iptr->userptr, iptr->nuhmask, iptr->usersize);
3429 adx 30
3430 michael 593 if (*p != '\0')
3431     strlcpy(iptr->hostptr, p, iptr->hostsize);
3432 adx 30 }
3433 michael 593 else
3434 adx 30 {
3435 michael 593 /* no @ found */
3436     if (!iptr->nickptr || strpbrk(iptr->nuhmask, ".:"))
3437     strlcpy(iptr->hostptr, iptr->nuhmask, iptr->hostsize);
3438 adx 30 else
3439 michael 593 strlcpy(iptr->nickptr, iptr->nuhmask, iptr->nicksize);
3440 adx 30 }
3441     }
3442     }
3443    
3444     /*
3445     * flags_to_ascii
3446     *
3447     * inputs - flags is a bitmask
3448     * - pointer to table of ascii letters corresponding
3449     * to each bit
3450     * - flag 1 for convert ToLower if bit missing
3451     * 0 if ignore.
3452     * output - none
3453     * side effects - string pointed to by p has bitmap chars written to it
3454     */
3455     static void
3456     flags_to_ascii(unsigned int flags, const unsigned int bit_table[], char *p,
3457     int lowerit)
3458     {
3459     unsigned int mask = 1;
3460     int i = 0;
3461    
3462     for (mask = 1; (mask != 0) && (bit_table[i] != 0); mask <<= 1, i++)
3463     {
3464     if (flags & mask)
3465     *p++ = bit_table[i];
3466 michael 593 else if (lowerit)
3467 adx 30 *p++ = ToLower(bit_table[i]);
3468     }
3469     *p = '\0';
3470     }
3471    
3472     /*
3473     * cidr_limit_reached
3474     *
3475     * inputs - int flag allowing over_rule of limits
3476     * - pointer to the ip to be added
3477     * - pointer to the class
3478     * output - non zero if limit reached
3479     * 0 if limit not reached
3480     * side effects -
3481     */
3482     static int
3483     cidr_limit_reached(int over_rule,
3484     struct irc_ssaddr *ip, struct ClassItem *aclass)
3485     {
3486     dlink_node *ptr = NULL;
3487     struct CidrItem *cidr;
3488    
3489 michael 1377 if (aclass->number_per_cidr <= 0)
3490 adx 30 return 0;
3491    
3492     if (ip->ss.ss_family == AF_INET)
3493     {
3494 michael 1377 if (aclass->cidr_bitlen_ipv4 <= 0)
3495 adx 30 return 0;
3496    
3497     DLINK_FOREACH(ptr, aclass->list_ipv4.head)
3498     {
3499     cidr = ptr->data;
3500 michael 1377 if (match_ipv4(ip, &cidr->mask, aclass->cidr_bitlen_ipv4))
3501 adx 30 {
3502 michael 1377 if (!over_rule && (cidr->number_on_this_cidr >= aclass->number_per_cidr))
3503 adx 30 return -1;
3504     cidr->number_on_this_cidr++;
3505     return 0;
3506     }
3507     }
3508     cidr = MyMalloc(sizeof(struct CidrItem));
3509     cidr->number_on_this_cidr = 1;
3510     cidr->mask = *ip;
3511 michael 1377 mask_addr(&cidr->mask, aclass->cidr_bitlen_ipv4);
3512 adx 30 dlinkAdd(cidr, &cidr->node, &aclass->list_ipv4);
3513     }
3514     #ifdef IPV6
3515 michael 1377 else if (aclass->cidr_bitlen_ipv6 > 0)
3516 adx 30 {
3517     DLINK_FOREACH(ptr, aclass->list_ipv6.head)
3518     {
3519     cidr = ptr->data;
3520 michael 1377 if (match_ipv6(ip, &cidr->mask, aclass->cidr_bitlen_ipv6))
3521 adx 30 {
3522 michael 1377 if (!over_rule && (cidr->number_on_this_cidr >= aclass->number_per_cidr))
3523 adx 30 return -1;
3524     cidr->number_on_this_cidr++;
3525     return 0;
3526     }
3527     }
3528     cidr = MyMalloc(sizeof(struct CidrItem));
3529     cidr->number_on_this_cidr = 1;
3530     cidr->mask = *ip;
3531 michael 1377 mask_addr(&cidr->mask, aclass->cidr_bitlen_ipv6);
3532 adx 30 dlinkAdd(cidr, &cidr->node, &aclass->list_ipv6);
3533     }
3534     #endif
3535     return 0;
3536     }
3537    
3538     /*
3539     * remove_from_cidr_check
3540     *
3541     * inputs - pointer to the ip to be removed
3542     * - pointer to the class
3543     * output - NONE
3544     * side effects -
3545     */
3546     static void
3547     remove_from_cidr_check(struct irc_ssaddr *ip, struct ClassItem *aclass)
3548     {
3549     dlink_node *ptr = NULL;
3550     dlink_node *next_ptr = NULL;
3551     struct CidrItem *cidr;
3552    
3553 michael 1377 if (aclass->number_per_cidr == 0)
3554 adx 30 return;
3555    
3556     if (ip->ss.ss_family == AF_INET)
3557     {
3558 michael 1377 if (aclass->cidr_bitlen_ipv4 <= 0)
3559 adx 30 return;
3560    
3561     DLINK_FOREACH_SAFE(ptr, next_ptr, aclass->list_ipv4.head)
3562     {
3563     cidr = ptr->data;
3564 michael 1377 if (match_ipv4(ip, &cidr->mask, aclass->cidr_bitlen_ipv4))
3565 adx 30 {
3566     cidr->number_on_this_cidr--;
3567     if (cidr->number_on_this_cidr == 0)
3568     {
3569     dlinkDelete(ptr, &aclass->list_ipv4);
3570     MyFree(cidr);
3571     return;
3572     }
3573     }
3574     }
3575     }
3576     #ifdef IPV6
3577 michael 1377 else if (aclass->cidr_bitlen_ipv6 > 0)
3578 adx 30 {
3579     DLINK_FOREACH_SAFE(ptr, next_ptr, aclass->list_ipv6.head)
3580     {
3581     cidr = ptr->data;
3582 michael 1377 if (match_ipv6(ip, &cidr->mask, aclass->cidr_bitlen_ipv6))
3583 adx 30 {
3584     cidr->number_on_this_cidr--;
3585     if (cidr->number_on_this_cidr == 0)
3586     {
3587     dlinkDelete(ptr, &aclass->list_ipv6);
3588     MyFree(cidr);
3589     return;
3590     }
3591     }
3592     }
3593     }
3594     #endif
3595     }
3596    
3597     static void
3598     rebuild_cidr_list(int aftype, struct ConfItem *oldcl, struct ClassItem *newcl,
3599     dlink_list *old_list, dlink_list *new_list, int changed)
3600     {
3601     dlink_node *ptr;
3602     struct Client *client_p;
3603     struct ConfItem *conf;
3604     struct AccessItem *aconf;
3605    
3606     if (!changed)
3607     {
3608     *new_list = *old_list;
3609     old_list->head = old_list->tail = NULL;
3610     old_list->length = 0;
3611     return;
3612     }
3613    
3614     DLINK_FOREACH(ptr, local_client_list.head)
3615     {
3616     client_p = ptr->data;
3617     if (client_p->localClient->aftype != aftype)
3618     continue;
3619     if (dlink_list_length(&client_p->localClient->confs) == 0)
3620     continue;
3621    
3622     conf = client_p->localClient->confs.tail->data;
3623     if (conf->type == CLIENT_TYPE)
3624     {
3625     aconf = map_to_conf(conf);
3626     if (aconf->class_ptr == oldcl)
3627     cidr_limit_reached(1, &client_p->localClient->ip, newcl);
3628     }
3629     }
3630     }
3631    
3632     /*
3633     * rebuild_cidr_class
3634     *
3635     * inputs - pointer to old conf
3636     * - pointer to new_class
3637     * output - none
3638     * side effects - rebuilds the class link list of cidr blocks
3639     */
3640     void
3641     rebuild_cidr_class(struct ConfItem *conf, struct ClassItem *new_class)
3642     {
3643     struct ClassItem *old_class = map_to_conf(conf);
3644    
3645 michael 1377 if (old_class->number_per_cidr > 0 && new_class->number_per_cidr > 0)
3646 adx 30 {
3647 michael 1377 if (old_class->cidr_bitlen_ipv4 > 0 && new_class->cidr_bitlen_ipv4 > 0)
3648 adx 30 rebuild_cidr_list(AF_INET, conf, new_class,
3649     &old_class->list_ipv4, &new_class->list_ipv4,
3650 michael 1377 old_class->cidr_bitlen_ipv4 != new_class->cidr_bitlen_ipv4);
3651 adx 30
3652     #ifdef IPV6
3653 michael 1377 if (old_class->cidr_bitlen_ipv6 > 0 && new_class->cidr_bitlen_ipv6 > 0)
3654 adx 30 rebuild_cidr_list(AF_INET6, conf, new_class,
3655     &old_class->list_ipv6, &new_class->list_ipv6,
3656 michael 1377 old_class->cidr_bitlen_ipv6 != new_class->cidr_bitlen_ipv6);
3657 adx 30 #endif
3658     }
3659    
3660     destroy_cidr_class(old_class);
3661     }
3662    
3663     /*
3664     * destroy_cidr_list
3665     *
3666     * inputs - pointer to class dlink list of cidr blocks
3667     * output - none
3668     * side effects - completely destroys the class link list of cidr blocks
3669     */
3670     static void
3671     destroy_cidr_list(dlink_list *list)
3672     {
3673 michael 671 dlink_node *ptr = NULL, *next_ptr = NULL;
3674 adx 30
3675     DLINK_FOREACH_SAFE(ptr, next_ptr, list->head)
3676     {
3677     dlinkDelete(ptr, list);
3678 michael 671 MyFree(ptr->data);
3679 adx 30 }
3680     }
3681    
3682     /*
3683     * destroy_cidr_class
3684     *
3685     * inputs - pointer to class
3686     * output - none
3687     * side effects - completely destroys the class link list of cidr blocks
3688     */
3689     static void
3690     destroy_cidr_class(struct ClassItem *aclass)
3691     {
3692     destroy_cidr_list(&aclass->list_ipv4);
3693     destroy_cidr_list(&aclass->list_ipv6);
3694     }

Properties

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