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root/svn/ircd-hybrid/trunk/src/s_serv.c
Revision: 319
Committed: Sat Dec 24 15:06:49 2005 UTC (19 years, 8 months ago) by michael
Content type: text/x-csrc
Original Path: ircd-hybrid-7.2/src/s_serv.c
File size: 69275 byte(s)
Log Message:
- Fixed core in case aconf->cipher_preference and
  ConfigFileEntry.default_cipher_preference are both NULL pointers

  Reported by opteron-hani via Joan

File Contents

# User Rev Content
1 adx 30 /*
2     * ircd-hybrid: an advanced Internet Relay Chat Daemon(ircd).
3     * s_serv.c: Server related functions.
4     *
5     * Copyright (C) 2005 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     #ifdef HAVE_LIBCRYPTO
27     #include <openssl/rsa.h>
28     #include "rsa.h"
29     #endif
30     #include "tools.h"
31     #include "channel.h"
32     #include "channel_mode.h"
33     #include "client.h"
34     #include "common.h"
35     #include "dbuf.h"
36     #include "event.h"
37     #include "fdlist.h"
38     #include "hash.h"
39     #include "irc_string.h"
40     #include "inet_misc.h"
41     #include "sprintf_irc.h"
42     #include "ircd.h"
43     #include "ircd_defs.h"
44     #include "s_bsd.h"
45     #include "irc_getnameinfo.h"
46     #include "list.h"
47     #include "numeric.h"
48     #include "packet.h"
49     #include "irc_res.h"
50     #include "s_conf.h"
51     #include "s_serv.h"
52     #include "s_log.h"
53     #include "s_stats.h"
54     #include "s_user.h"
55     #include "send.h"
56     #include "memory.h"
57     #include "channel.h" /* chcap_usage_counts stuff...*/
58    
59     #define MIN_CONN_FREQ 300
60    
61     struct Client *uplink = NULL;
62    
63    
64     static dlink_list cap_list = { NULL, NULL, 0 };
65     static unsigned long freeMask;
66     static void server_burst(struct Client *);
67     static int fork_server(struct Client *);
68     static void burst_all(struct Client *);
69     static void cjoin_all(struct Client *);
70     static void send_tb(struct Client *client_p, struct Channel *chptr);
71    
72     static CNCB serv_connect_callback;
73    
74     static void start_io(struct Client *);
75     static void burst_members(struct Client *, struct Channel *);
76     static void burst_ll_members(struct Client *, struct Channel *);
77     static void add_lazylinkchannel(struct Client *, struct Channel *);
78    
79     static SlinkRplHnd slink_error;
80     static SlinkRplHnd slink_zipstats;
81    
82    
83     #ifdef HAVE_LIBCRYPTO
84     struct EncCapability CipherTable[] =
85     {
86     #ifdef HAVE_EVP_BF_CFB
87     { "BF/168", CAP_ENC_BF_168, 24, CIPHER_BF },
88     { "BF/128", CAP_ENC_BF_128, 16, CIPHER_BF },
89     #endif
90     #ifdef HAVE_EVP_CAST5_CFB
91     { "CAST/128", CAP_ENC_CAST_128, 16, CIPHER_CAST },
92     #endif
93     #ifdef HAVE_EVP_IDEA_CFB
94     { "IDEA/128", CAP_ENC_IDEA_128, 16, CIPHER_IDEA },
95     #endif
96     #ifdef HAVE_EVP_RC5_32_12_16_CFB
97     { "RC5.16/128", CAP_ENC_RC5_16_128, 16, CIPHER_RC5_16 },
98     { "RC5.12/128", CAP_ENC_RC5_12_128, 16, CIPHER_RC5_12 },
99     { "RC5.8/128", CAP_ENC_RC5_8_128, 16, CIPHER_RC5_8 },
100     #endif
101     #ifdef HAVE_EVP_DES_EDE3_CFB
102     { "3DES/168", CAP_ENC_3DES_168, 24, CIPHER_3DES },
103     #endif
104     #ifdef HAVE_EVP_DES_CFB
105     { "DES/56", CAP_ENC_DES_56, 8, CIPHER_DES },
106     #endif
107     { 0, 0, 0, 0 }
108     };
109     #endif
110    
111     struct SlinkRplDef slinkrpltab[] = {
112     { SLINKRPL_ERROR, slink_error, SLINKRPL_FLAG_DATA },
113     { SLINKRPL_ZIPSTATS, slink_zipstats, SLINKRPL_FLAG_DATA },
114     { 0, 0, 0 },
115     };
116    
117    
118     void
119     slink_error(unsigned int rpl, unsigned int len, unsigned char *data,
120     struct Client *server_p)
121     {
122     assert(rpl == SLINKRPL_ERROR);
123     assert(len < 256);
124    
125     data[len-1] = '\0';
126    
127     sendto_realops_flags(UMODE_ALL, L_ALL, "SlinkError for %s: %s",
128     server_p->name, data);
129     /* XXX should this be exit_client? */
130     exit_client(server_p, &me, "servlink error -- terminating link");
131     }
132    
133     void
134     slink_zipstats(unsigned int rpl, unsigned int len, unsigned char *data,
135     struct Client *server_p)
136     {
137     struct ZipStats zipstats;
138     unsigned long in = 0, in_wire = 0, out = 0, out_wire = 0;
139     int i = 0;
140    
141     assert(rpl == SLINKRPL_ZIPSTATS);
142     assert(len == 16);
143     assert(IsCapable(server_p, CAP_ZIP));
144    
145     /* Yes, it needs to be done this way, no we cannot let the compiler
146     * work with the pointer to the structure. This works around a GCC
147     * bug on SPARC that affects all versions at the time of this writing.
148     * I will feed you to the creatures living in RMS's beard if you do
149     * not leave this as is, without being sure that you are not causing
150     * regression for most of our installed SPARC base.
151     * -jmallett, 04/27/2002
152     */
153     memcpy(&zipstats, &server_p->localClient->zipstats, sizeof(struct ZipStats));
154    
155     in |= (data[i++] << 24);
156     in |= (data[i++] << 16);
157     in |= (data[i++] << 8);
158     in |= (data[i++] );
159    
160     in_wire |= (data[i++] << 24);
161     in_wire |= (data[i++] << 16);
162     in_wire |= (data[i++] << 8);
163     in_wire |= (data[i++] );
164    
165     out |= (data[i++] << 24);
166     out |= (data[i++] << 16);
167     out |= (data[i++] << 8);
168     out |= (data[i++] );
169    
170     out_wire |= (data[i++] << 24);
171     out_wire |= (data[i++] << 16);
172     out_wire |= (data[i++] << 8);
173     out_wire |= (data[i++] );
174    
175     /* This macro adds b to a if a plus b is not an overflow, and sets the
176     * value of a to b if it is.
177     * Add and Set if No Overflow.
178     */
179     #define ASNO(a, b) a = (a + b >= a ? a + b : b)
180    
181     ASNO(zipstats.in, in);
182     ASNO(zipstats.out, out);
183     ASNO(zipstats.in_wire, in_wire);
184     ASNO(zipstats.out_wire, out_wire);
185    
186     if (zipstats.in > 0)
187     zipstats.in_ratio = (((double)(zipstats.in - zipstats.in_wire) /
188     (double)zipstats.in) * 100.00);
189     else
190     zipstats.in_ratio = 0;
191    
192     if (zipstats.out > 0)
193     zipstats.out_ratio = (((double)(zipstats.out - zipstats.out_wire) /
194     (double)zipstats.out) * 100.00);
195     else
196     zipstats.out_ratio = 0;
197    
198     memcpy(&server_p->localClient->zipstats, &zipstats, sizeof (struct ZipStats));
199     }
200    
201     void
202     collect_zipstats(void *unused)
203     {
204     dlink_node *ptr;
205     struct Client *target_p;
206    
207     DLINK_FOREACH(ptr, serv_list.head)
208     {
209     target_p = ptr->data;
210    
211     if (IsCapable(target_p, CAP_ZIP))
212     {
213     /* only bother if we haven't already got something queued... */
214     if (!target_p->localClient->slinkq)
215     {
216     target_p->localClient->slinkq = MyMalloc(1); /* sigh.. */
217     target_p->localClient->slinkq[0] = SLINKCMD_ZIPSTATS;
218     target_p->localClient->slinkq_ofs = 0;
219     target_p->localClient->slinkq_len = 1;
220     send_queued_slink_write(target_p);
221     }
222     }
223     }
224     }
225    
226     #ifdef HAVE_LIBCRYPTO
227     struct EncCapability *
228     check_cipher(struct Client *client_p, struct AccessItem *aconf)
229     {
230 michael 319 struct EncCapability *epref = NULL;
231 adx 30
232     /* Use connect{} specific info if available */
233     if (aconf->cipher_preference)
234     epref = aconf->cipher_preference;
235 michael 319 else if (ConfigFileEntry.default_cipher_preference)
236 adx 30 epref = ConfigFileEntry.default_cipher_preference;
237    
238 michael 319 /*
239     * If the server supports the capability in hand, return the matching
240 adx 30 * conf struct. Otherwise, return NULL (an error).
241     */
242 michael 319 if (epref && IsCapableEnc(client_p, epref->cap))
243     return epref;
244 adx 30
245 michael 319 return NULL;
246 adx 30 }
247     #endif /* HAVE_LIBCRYPTO */
248    
249     /* my_name_for_link()
250     * return wildcard name of my server name
251     * according to given config entry --Jto
252     */
253     const char *
254     my_name_for_link(struct ConfItem *conf)
255     {
256     struct AccessItem *aconf;
257    
258     aconf = (struct AccessItem *)map_to_conf(conf);
259     if (aconf->fakename != NULL)
260     return(aconf->fakename);
261     else
262     return(me.name);
263     }
264    
265     /*
266     * write_links_file
267     *
268     * inputs - void pointer which is not used
269     * output - NONE
270     * side effects - called from an event, write out list of linked servers
271     * but in no particular order.
272     */
273     void
274     write_links_file(void* notused)
275     {
276     MessageFileLine *next_mptr = 0;
277     MessageFileLine *mptr = 0;
278     MessageFileLine *currentMessageLine = 0;
279     MessageFileLine *newMessageLine = 0;
280     MessageFile *MessageFileptr;
281     const char *p;
282     FBFILE *file;
283     char buff[512];
284     dlink_node *ptr;
285    
286     MessageFileptr = &ConfigFileEntry.linksfile;
287    
288     if ((file = fbopen(MessageFileptr->fileName, "w")) == NULL)
289     return;
290    
291     for (mptr = MessageFileptr->contentsOfFile; mptr; mptr = next_mptr)
292     {
293     next_mptr = mptr->next;
294     MyFree(mptr);
295     }
296    
297     MessageFileptr->contentsOfFile = NULL;
298     currentMessageLine = NULL;
299    
300     DLINK_FOREACH(ptr, global_serv_list.head)
301     {
302     size_t nbytes = 0;
303     struct Client *target_p = ptr->data;
304    
305     /* skip ourselves, we send ourselves in /links */
306     if (IsMe(target_p))
307     continue;
308    
309     /* skip hidden servers */
310     if (IsHidden(target_p) && !ConfigServerHide.disable_hidden)
311     continue;
312    
313     if (target_p->info[0])
314     p = target_p->info;
315     else
316     p = "(Unknown Location)";
317    
318     newMessageLine = MyMalloc(sizeof(MessageFileLine));
319    
320     /* Attempt to format the file in such a way it follows the usual links output
321     * ie "servername uplink :hops info"
322     * Mostly for aesthetic reasons - makes it look pretty in mIRC ;)
323     * - madmax
324     */
325    
326     /*
327     * For now, check this ircsprintf wont overflow - it shouldnt on a
328     * default config but it is configurable..
329     * This should be changed to an snprintf at some point, but I'm wanting to
330     * know if this is a cause of a bug - cryogen
331     */
332     assert(strlen(target_p->name) + strlen(me.name) + 6 + strlen(p) <=
333     MESSAGELINELEN);
334     ircsprintf(newMessageLine->line, "%s %s :1 %s",
335     target_p->name, me.name, p);
336     newMessageLine->next = NULL;
337    
338     if (MessageFileptr->contentsOfFile)
339     {
340     if (currentMessageLine)
341     currentMessageLine->next = newMessageLine;
342     currentMessageLine = newMessageLine;
343     }
344     else
345     {
346     MessageFileptr->contentsOfFile = newMessageLine;
347     currentMessageLine = newMessageLine;
348     }
349    
350     nbytes = ircsprintf(buff, "%s %s :1 %s\n", target_p->name, me.name, p);
351     fbputs(buff, file, nbytes);
352     }
353    
354     fbclose(file);
355     }
356    
357     /* hunt_server()
358     * Do the basic thing in delivering the message (command)
359     * across the relays to the specific server (server) for
360     * actions.
361     *
362     * Note: The command is a format string and *MUST* be
363     * of prefixed style (e.g. ":%s COMMAND %s ...").
364     * Command can have only max 8 parameters.
365     *
366     * server parv[server] is the parameter identifying the
367     * target server.
368     *
369     * *WARNING*
370     * parv[server] is replaced with the pointer to the
371     * real servername from the matched client (I'm lazy
372     * now --msa).
373     *
374     * returns: (see #defines)
375     */
376     int
377     hunt_server(struct Client *client_p, struct Client *source_p, const char *command,
378     int server, int parc, char *parv[])
379     {
380     struct Client *target_p = NULL;
381     struct Client *target_tmp = NULL;
382     dlink_node *ptr;
383     int wilds;
384    
385     /* Assume it's me, if no server
386     */
387     if (parc <= server || EmptyString(parv[server]) ||
388     match(me.name, parv[server]) ||
389     match(parv[server], me.name) ||
390     !strcmp(parv[server], me.id))
391     return(HUNTED_ISME);
392    
393     /* These are to pickup matches that would cause the following
394     * message to go in the wrong direction while doing quick fast
395     * non-matching lookups.
396     */
397     if (MyClient(source_p))
398     target_p = find_client(parv[server]);
399     else
400     target_p = find_person(client_p, parv[server]);
401    
402     if (target_p)
403     if (target_p->from == source_p->from && !MyConnect(target_p))
404     target_p = NULL;
405    
406     if (target_p == NULL && (target_p = find_server(parv[server])))
407     if (target_p->from == source_p->from && !MyConnect(target_p))
408     target_p = NULL;
409    
410     collapse(parv[server]);
411     wilds = (strchr(parv[server], '?') || strchr(parv[server], '*'));
412    
413     /* Again, if there are no wild cards involved in the server
414     * name, use the hash lookup
415     */
416     if (target_p == NULL)
417     {
418     if (!wilds)
419     {
420     if (!(target_p = find_server(parv[server])))
421     {
422     sendto_one(source_p, form_str(ERR_NOSUCHSERVER),
423     me.name, parv[0], parv[server]);
424     return(HUNTED_NOSUCH);
425     }
426     }
427     else
428     {
429     DLINK_FOREACH(ptr, global_client_list.head)
430     {
431     target_tmp = ptr->data;
432    
433     if (match(parv[server], target_tmp->name))
434     {
435     if (target_tmp->from == source_p->from && !MyConnect(target_tmp))
436     continue;
437     target_p = ptr->data;
438    
439     if (IsRegistered(target_p) && (target_p != client_p))
440     break;
441     }
442     }
443     }
444     }
445    
446     if (target_p != NULL)
447     {
448     if(!IsRegistered(target_p))
449     {
450     sendto_one(source_p, form_str(ERR_NOSUCHSERVER),
451     me.name, parv[0], parv[server]);
452     return HUNTED_NOSUCH;
453     }
454    
455     if (IsMe(target_p) || MyClient(target_p))
456     return HUNTED_ISME;
457    
458     if (!match(target_p->name, parv[server]))
459     parv[server] = target_p->name;
460    
461     /* Deal with lazylinks */
462     client_burst_if_needed(target_p, source_p);
463    
464     /* This is a little kludgy but should work... */
465     if (IsClient(source_p) &&
466     ((MyConnect(target_p) && IsCapable(target_p, CAP_TS6)) ||
467     (!MyConnect(target_p) && IsCapable(target_p->from, CAP_TS6))))
468     parv[0] = ID(source_p);
469    
470     sendto_one(target_p, command, parv[0],
471     parv[1], parv[2], parv[3], parv[4],
472     parv[5], parv[6], parv[7], parv[8]);
473     return(HUNTED_PASS);
474     }
475    
476     sendto_one(source_p, form_str(ERR_NOSUCHSERVER),
477     me.name, parv[0], parv[server]);
478     return(HUNTED_NOSUCH);
479     }
480    
481     /* try_connections()
482     *
483     * inputs - void pointer which is not used
484     * output - NONE
485     * side effects -
486     * scan through configuration and try new connections.
487     * Returns the calendar time when the next call to this
488     * function should be made latest. (No harm done if this
489     * is called earlier or later...)
490     */
491     void
492     try_connections(void *unused)
493     {
494     dlink_node *ptr;
495     struct ConfItem *conf;
496     struct AccessItem *aconf;
497     struct ClassItem *cltmp;
498     int confrq;
499    
500     /* TODO: change this to set active flag to 0 when added to event! --Habeeb */
501     if (GlobalSetOptions.autoconn == 0)
502     return;
503    
504     DLINK_FOREACH(ptr, server_items.head)
505     {
506     conf = ptr->data;
507     aconf = (struct AccessItem *)map_to_conf(conf);
508    
509     /* Also when already connecting! (update holdtimes) --SRB
510     */
511     if (!(aconf->status & CONF_SERVER) || aconf->port <= 0 ||
512     !(IsConfAllowAutoConn(aconf)))
513     continue;
514    
515     cltmp = (struct ClassItem *)map_to_conf(aconf->class_ptr);
516    
517     /* Skip this entry if the use of it is still on hold until
518     * future. Otherwise handle this entry (and set it on hold
519     * until next time). Will reset only hold times, if already
520     * made one successfull connection... [this algorithm is
521     * a bit fuzzy... -- msa >;) ]
522     */
523     if (aconf->hold > CurrentTime)
524     continue;
525    
526     if (cltmp == NULL)
527     confrq = DEFAULT_CONNECTFREQUENCY;
528     else
529     {
530     confrq = ConFreq(cltmp);
531     if (confrq < MIN_CONN_FREQ )
532     confrq = MIN_CONN_FREQ;
533     }
534    
535     aconf->hold = CurrentTime + confrq;
536    
537     /* Found a CONNECT config with port specified, scan clients
538     * and see if this server is already connected?
539     */
540     if (find_server(conf->name) != NULL)
541     continue;
542    
543     if (CurrUserCount(cltmp) < MaxTotal(cltmp))
544     {
545     /* Go to the end of the list, if not already last */
546     if (ptr->next != NULL)
547     {
548     dlinkDelete(ptr, &server_items);
549     dlinkAddTail(conf, &conf->node, &server_items);
550     }
551    
552     if (find_servconn_in_progress(conf->name))
553     return;
554    
555     /* We used to only print this if serv_connect() actually
556     * succeeded, but since comm_tcp_connect() can call the callback
557     * immediately if there is an error, we were getting error messages
558     * in the wrong order. SO, we just print out the activated line,
559     * and let serv_connect() / serv_connect_callback() print an
560     * error afterwards if it fails.
561     * -- adrian
562     */
563     if (ConfigServerHide.hide_server_ips)
564     sendto_realops_flags(UMODE_ALL, L_ALL, "Connection to %s activated.",
565     conf->name);
566     else
567     sendto_realops_flags(UMODE_ALL, L_ALL, "Connection to %s[%s] activated.",
568     conf->name, aconf->host);
569    
570     serv_connect(aconf, NULL);
571     /* We connect only one at time... */
572     return;
573     }
574     }
575     }
576    
577     int
578     check_server(const char *name, struct Client *client_p, int cryptlink)
579     {
580     dlink_node *ptr;
581     struct ConfItem *conf = NULL;
582     struct ConfItem *server_conf = NULL;
583     struct AccessItem *server_aconf = NULL;
584     struct AccessItem *aconf = NULL;
585     int error = -1;
586    
587     assert(client_p != NULL);
588    
589     if (client_p == NULL)
590     return(error);
591    
592     if (strlen(name) > HOSTLEN)
593     return(-4);
594    
595     /* loop through looking for all possible connect items that might work */
596     DLINK_FOREACH(ptr, server_items.head)
597     {
598     conf = ptr->data;
599     aconf = (struct AccessItem *)map_to_conf(conf);
600    
601     if (!match(name, conf->name))
602     continue;
603    
604     error = -3;
605    
606     /* XXX: Fix me for IPv6 */
607     /* XXX sockhost is the IPv4 ip as a string */
608     if (match(aconf->host, client_p->host) ||
609     match(aconf->host, client_p->sockhost))
610     {
611     error = -2;
612     #ifdef HAVE_LIBCRYPTO
613     if (cryptlink && IsConfCryptLink(aconf))
614     {
615     if (aconf->rsa_public_key)
616     server_conf = conf;
617     }
618     else if (!(cryptlink || IsConfCryptLink(aconf)))
619     #endif /* HAVE_LIBCRYPTO */
620     {
621     /* A NULL password is as good as a bad one */
622     if (EmptyString(client_p->localClient->passwd))
623     return(-2);
624    
625     /* code in s_conf.c should not have allowed this to be NULL */
626     if (aconf->passwd == NULL)
627     return(-2);
628    
629     if (IsConfEncrypted(aconf))
630     {
631     if (strcmp(aconf->passwd,
632     (const char *)crypt(client_p->localClient->passwd,
633     aconf->passwd)) == 0)
634     server_conf = conf;
635     }
636     else
637     {
638     if (strcmp(aconf->passwd, client_p->localClient->passwd) == 0)
639     server_conf = conf;
640     }
641     }
642     }
643     }
644    
645     if (server_conf == NULL)
646     return(error);
647    
648     attach_conf(client_p, server_conf);
649    
650     /* Now find all leaf or hub config items for this server */
651     DLINK_FOREACH(ptr, hub_items.head)
652     {
653     conf = ptr->data;
654    
655     if (!match(name, conf->name))
656     continue;
657     attach_conf(client_p, conf);
658     }
659    
660     DLINK_FOREACH(ptr, leaf_items.head)
661     {
662     conf = ptr->data;
663    
664     if (!match(name, conf->name))
665     continue;
666     attach_conf(client_p, conf);
667     }
668    
669     server_aconf = (struct AccessItem *)map_to_conf(server_conf);
670    
671     if (!IsConfLazyLink(server_aconf))
672     ClearCap(client_p, CAP_LL);
673     #ifdef HAVE_LIBZ /* otherwise, clear it unconditionally */
674     if (!IsConfCompressed(server_aconf))
675     #endif
676     ClearCap(client_p, CAP_ZIP);
677     if (!IsConfCryptLink(server_aconf))
678     ClearCap(client_p, CAP_ENC);
679     if (!IsConfTopicBurst(server_aconf))
680     ClearCap(client_p, CAP_TB);
681    
682     /* Don't unset CAP_HUB here even if the server isn't a hub,
683     * it only indicates if the server thinks it's lazylinks are
684     * leafs or not.. if you unset it, bad things will happen
685     */
686     if (aconf != NULL)
687     {
688     struct sockaddr_in *v4;
689     #ifdef IPV6
690     struct sockaddr_in6 *v6;
691     #endif
692     switch (aconf->aftype)
693     {
694     #ifdef IPV6
695     case AF_INET6:
696     v6 = (struct sockaddr_in6 *)&aconf->ipnum;
697    
698     if (IN6_IS_ADDR_UNSPECIFIED(&v6->sin6_addr))
699     memcpy(&aconf->ipnum, &client_p->localClient->ip, sizeof(struct irc_ssaddr));
700     break;
701     #endif
702     case AF_INET:
703     v4 = (struct sockaddr_in *)&aconf->ipnum;
704    
705     if (v4->sin_addr.s_addr == INADDR_NONE)
706     memcpy(&aconf->ipnum, &client_p->localClient->ip, sizeof(struct irc_ssaddr));
707     break;
708     }
709     }
710    
711     return(0);
712     }
713    
714     /* add_capability()
715     *
716     * inputs - string name of CAPAB
717     * - int flag of capability
718     * output - NONE
719     * side effects - Adds given capability name and bit mask to
720     * current supported capabilities. This allows
721     * modules to dynamically add or subtract their capability.
722     */
723     void
724     add_capability(const char *capab_name, int cap_flag, int add_to_default)
725     {
726     struct Capability *cap;
727    
728     cap = (struct Capability *)MyMalloc(sizeof(*cap));
729     DupString(cap->name, capab_name);
730     cap->cap = cap_flag;
731     dlinkAdd(cap, &cap->node, &cap_list);
732     if (add_to_default)
733     default_server_capabs |= cap_flag;
734     }
735    
736     /* delete_capability()
737     *
738     * inputs - string name of CAPAB
739     * output - NONE
740     * side effects - delete given capability from ones known.
741     */
742     int
743     delete_capability(const char *capab_name)
744     {
745     dlink_node *ptr;
746     dlink_node *next_ptr;
747     struct Capability *cap;
748    
749     DLINK_FOREACH_SAFE(ptr, next_ptr, cap_list.head)
750     {
751     cap = ptr->data;
752    
753     if (cap->cap != 0)
754     {
755     if (irccmp(cap->name, capab_name) == 0)
756     {
757     default_server_capabs &= ~(cap->cap);
758     dlinkDelete(ptr, &cap_list);
759     MyFree(cap->name);
760     cap->name = NULL;
761     MyFree(cap);
762     }
763     }
764     }
765    
766     return(0);
767     }
768    
769     /*
770     * find_capability()
771     *
772     * inputs - string name of capab to find
773     * output - 0 if not found CAPAB otherwise
774     * side effects - none
775     */
776     int
777     find_capability(const char *capab)
778     {
779     dlink_node *ptr;
780     struct Capability *cap;
781    
782     DLINK_FOREACH(ptr, cap_list.head)
783     {
784     cap = ptr->data;
785    
786     if (cap->cap != 0)
787     {
788     if (irccmp(cap->name, capab) == 0)
789     return(cap->cap);
790     }
791     }
792     return(0);
793     }
794    
795     /* send_capabilities()
796     *
797     * inputs - Client pointer to send to
798     * - Pointer to AccessItem (for crypt)
799     * - int flag of capabilities that this server can send
800     * - int flag of encryption capabilities
801     * output - NONE
802     * side effects - send the CAPAB line to a server -orabidoo
803     *
804     */
805     void
806     send_capabilities(struct Client *client_p, struct AccessItem *aconf,
807     int cap_can_send, int enc_can_send)
808     {
809     struct Capability *cap=NULL;
810     char msgbuf[IRCD_BUFSIZE];
811     char *t;
812     int tl;
813     dlink_node *ptr;
814     #ifdef HAVE_LIBCRYPTO
815 michael 319 const struct EncCapability *epref = NULL;
816 adx 30 char *capend;
817     int sent_cipher = 0;
818     #endif
819    
820     t = msgbuf;
821    
822     DLINK_FOREACH(ptr, cap_list.head)
823     {
824     cap = ptr->data;
825    
826     if (cap->cap & (cap_can_send|default_server_capabs))
827     {
828     tl = ircsprintf(t, "%s ", cap->name);
829     t += tl;
830     }
831     }
832     #ifdef HAVE_LIBCRYPTO
833     if (enc_can_send)
834     {
835     capend = t;
836     strcpy(t, "ENC:");
837     t += 4;
838    
839     /* use connect{} specific info if available */
840     if (aconf->cipher_preference)
841     epref = aconf->cipher_preference;
842 michael 319 else if (ConfigFileEntry.default_cipher_preference)
843 adx 30 epref = ConfigFileEntry.default_cipher_preference;
844    
845 michael 319 if (epref && (epref->cap & enc_can_send))
846 adx 30 {
847     /* Leave the space -- it is removed later. */
848     tl = ircsprintf(t, "%s ", epref->name);
849     t += tl;
850     sent_cipher = 1;
851     }
852    
853     if (!sent_cipher)
854     t = capend; /* truncate string before ENC:, below */
855     }
856     #endif
857 michael 319 *(t - 1) = '\0';
858 adx 30 sendto_one(client_p, "CAPAB :%s", msgbuf);
859     }
860    
861     /* sendnick_TS()
862     *
863     * inputs - client (server) to send nick towards
864     * - client to send nick for
865     * output - NONE
866     * side effects - NICK message is sent towards given client_p
867     */
868     void
869     sendnick_TS(struct Client *client_p, struct Client *target_p)
870     {
871     static char ubuf[12];
872    
873     if (!IsClient(target_p))
874     return;
875    
876     send_umode(NULL, target_p, 0, IsOperHiddenAdmin(target_p) ?
877     SEND_UMODES & ~UMODE_ADMIN : SEND_UMODES, ubuf);
878    
879     if (ubuf[0] == '\0')
880     {
881     ubuf[0] = '+';
882     ubuf[1] = '\0';
883     }
884    
885     /* XXX Both of these need to have a :me.name or :mySID!?!?! */
886     if (HasID(target_p) && IsCapable(client_p, CAP_TS6))
887     sendto_one(client_p, ":%s UID %s %d %lu %s %s %s %s %s :%s",
888     target_p->servptr->id,
889     target_p->name, target_p->hopcount + 1,
890     (unsigned long) target_p->tsinfo,
891     ubuf, target_p->username, target_p->host,
892     ((MyClient(target_p)&&!IsIPSpoof(target_p))?target_p->sockhost:"0"),
893     target_p->id, target_p->info);
894     else
895     sendto_one(client_p, "NICK %s %d %lu %s %s %s %s :%s",
896     target_p->name, target_p->hopcount + 1,
897     (unsigned long) target_p->tsinfo,
898     ubuf, target_p->username, target_p->host,
899     target_p->servptr->name, target_p->info);
900     if (IsConfAwayBurst((struct AccessItem *)map_to_conf(client_p->serv->sconf)))
901     if (!EmptyString(target_p->away))
902     sendto_one(client_p, ":%s AWAY :%s", target_p->name,
903     target_p->away);
904    
905     }
906    
907     /* client_burst_if_needed()
908     *
909     * inputs - pointer to server
910     * - pointer to client to add
911     * output - NONE
912     * side effects - If this client is not known by this lazyleaf, send it
913     */
914     void
915     client_burst_if_needed(struct Client *client_p, struct Client *target_p)
916     {
917     if (!ServerInfo.hub)
918     return;
919     if (!MyConnect(client_p))
920     return;
921     if (!IsCapable(client_p,CAP_LL))
922     return;
923    
924     if ((target_p->lazyLinkClientExists & client_p->localClient->serverMask) == 0)
925     {
926     sendnick_TS(client_p, target_p);
927     add_lazylinkclient(client_p,target_p);
928     }
929     }
930    
931     /*
932     * show_capabilities - show current server capabilities
933     *
934     * inputs - pointer to a struct Client
935     * output - pointer to static string
936     * side effects - build up string representing capabilities of server listed
937     */
938     const char *
939     show_capabilities(struct Client *target_p)
940     {
941     static char msgbuf[IRCD_BUFSIZE];
942     char *t = msgbuf;
943     dlink_node *ptr;
944    
945     t += ircsprintf(msgbuf, "TS ");
946    
947     DLINK_FOREACH(ptr, cap_list.head)
948     {
949     const struct Capability *cap = ptr->data;
950    
951     if (IsCapable(target_p, cap->cap))
952     t += ircsprintf(t, "%s ", cap->name);
953     }
954     #ifdef HAVE_LIBCRYPTO
955     if (IsCapable(target_p, CAP_ENC) &&
956     target_p->localClient->in_cipher &&
957     target_p->localClient->out_cipher)
958     t += ircsprintf(t, "ENC:%s ",
959     target_p->localClient->in_cipher->name);
960     #endif
961     *(t - 1) = '\0';
962    
963     return(msgbuf);
964     }
965    
966     /* make_server()
967     *
968     * inputs - pointer to client struct
969     * output - pointer to struct Server
970     * side effects - add's an Server information block to a client
971     * if it was not previously allocated.
972     */
973     struct Server *
974     make_server(struct Client *client_p)
975     {
976     if (client_p->serv == NULL)
977     {
978     client_p->serv = MyMalloc(sizeof(struct Server));
979     client_p->serv->dep_servers = 1;
980     }
981    
982     return client_p->serv;
983     }
984    
985     /* server_estab()
986     *
987     * inputs - pointer to a struct Client
988     * output -
989     * side effects -
990     */
991     void
992     server_estab(struct Client *client_p)
993     {
994     struct Client *target_p;
995     struct ConfItem *conf;
996     struct AccessItem *aconf=NULL;
997     char *host;
998     const char *inpath;
999     static char inpath_ip[HOSTLEN * 2 + USERLEN + 6];
1000     dlink_node *m;
1001     dlink_node *ptr;
1002    
1003     assert(client_p != NULL);
1004    
1005     strlcpy(inpath_ip, get_client_name(client_p, SHOW_IP), sizeof(inpath_ip));
1006    
1007     inpath = get_client_name(client_p, MASK_IP); /* "refresh" inpath with host */
1008     host = client_p->name;
1009    
1010     if ((conf = find_conf_name(&client_p->localClient->confs, host, SERVER_TYPE))
1011     == NULL)
1012     {
1013     /* This shouldn't happen, better tell the ops... -A1kmm */
1014     sendto_realops_flags(UMODE_ALL, L_ALL, "Warning: Lost connect{} block "
1015     "for server %s(this shouldn't happen)!", host);
1016     exit_client(client_p, &me, "Lost connect{} block!");
1017     return;
1018     }
1019    
1020     MyFree(client_p->localClient->passwd);
1021     client_p->localClient->passwd = NULL;
1022    
1023     /* Its got identd, since its a server */
1024     SetGotId(client_p);
1025    
1026     /* If there is something in the serv_list, it might be this
1027     * connecting server..
1028     */
1029     if (!ServerInfo.hub && serv_list.head)
1030     {
1031     if (client_p != serv_list.head->data || serv_list.head->next)
1032     {
1033     ServerStats->is_ref++;
1034     sendto_one(client_p, "ERROR :I'm a leaf not a hub");
1035     exit_client(client_p, &me, "I'm a leaf");
1036     return;
1037     }
1038     }
1039    
1040     aconf = (struct AccessItem *)map_to_conf(conf);
1041    
1042     if (IsUnknown(client_p) && !IsConfCryptLink(aconf))
1043     {
1044     /* jdc -- 1. Use EmptyString(), not [0] index reference.
1045     * 2. Check aconf->spasswd, not aconf->passwd.
1046     */
1047     if (!EmptyString(aconf->spasswd))
1048     {
1049     /* only send ts6 format PASS if we have ts6 enabled */
1050     if (me.id[0] != '\0') /* Send TS 6 form only if id */
1051     sendto_one(client_p, "PASS %s TS %d %s",
1052     aconf->spasswd, TS_CURRENT, me.id);
1053     else
1054     sendto_one(client_p, "PASS %s TS 5",
1055     aconf->spasswd);
1056     }
1057    
1058     /* Pass my info to the new server
1059     *
1060     * If trying to negotiate LazyLinks, pass on CAP_LL
1061     * If this is a HUB, pass on CAP_HUB
1062     * Pass on ZIP if supported
1063     * Pass on TB if supported.
1064     * - Dianora
1065     */
1066    
1067     send_capabilities(client_p, aconf,
1068     (IsConfLazyLink(aconf) ? find_capability("LL") : 0)
1069     | (IsConfCompressed(aconf) ? find_capability("ZIP") : 0)
1070     | (IsConfTopicBurst(aconf) ? find_capability("TB") : 0)
1071     , 0);
1072    
1073     /* SERVER is the last command sent before switching to ziplinks.
1074     * We set TCPNODELAY on the socket to make sure it gets sent out
1075     * on the wire immediately. Otherwise, it could be sitting in
1076     * a kernel buffer when we start sending zipped data, and the
1077     * parser on the receiving side can't hand both unzipped and zipped
1078     * data in one packet. --Rodder
1079     *
1080     * currently we only need to call send_queued_write,
1081     * Nagle is already disabled at this point --adx
1082     */
1083     sendto_one(client_p, "SERVER %s 1 :%s%s",
1084     my_name_for_link(conf),
1085     ConfigServerHide.hidden ? "(H) " : "",
1086     (me.info[0]) ? (me.info) : "IRCers United");
1087     send_queued_write(client_p);
1088     }
1089    
1090     /* Hand the server off to servlink now */
1091     if (IsCapable(client_p, CAP_ENC) || IsCapable(client_p, CAP_ZIP))
1092     {
1093     if (fork_server(client_p) < 0)
1094     {
1095     sendto_realops_flags(UMODE_ALL, L_ADMIN,
1096     "Warning: fork failed for server %s -- check servlink_path (%s)",
1097     get_client_name(client_p, HIDE_IP), ConfigFileEntry.servlink_path);
1098     sendto_realops_flags(UMODE_ALL, L_OPER, "Warning: fork failed for server "
1099     "%s -- check servlink_path (%s)",
1100     get_client_name(client_p, MASK_IP),
1101     ConfigFileEntry.servlink_path);
1102     exit_client(client_p, &me, "fork failed");
1103     return;
1104     }
1105    
1106     start_io(client_p);
1107     SetServlink(client_p);
1108     }
1109    
1110     /* only send ts6 format SVINFO if we have ts6 enabled */
1111     sendto_one(client_p, "SVINFO %d %d 0 :%lu",
1112     (me.id[0] ? TS_CURRENT : 5), TS_MIN,
1113     (unsigned long)CurrentTime);
1114    
1115     /* assumption here is if they passed the correct TS version, they also passed an SID */
1116     if (IsCapable(client_p, CAP_TS6))
1117     hash_add_id(client_p);
1118    
1119     /* XXX Does this ever happen? I don't think so -db */
1120     detach_conf(client_p, OPER_TYPE);
1121    
1122     /* *WARNING*
1123     ** In the following code in place of plain server's
1124     ** name we send what is returned by get_client_name
1125     ** which may add the "sockhost" after the name. It's
1126     ** *very* *important* that there is a SPACE between
1127     ** the name and sockhost (if present). The receiving
1128     ** server will start the information field from this
1129     ** first blank and thus puts the sockhost into info.
1130     ** ...a bit tricky, but you have been warned, besides
1131     ** code is more neat this way... --msa
1132     */
1133     client_p->servptr = &me;
1134    
1135     if (IsClosing(client_p))
1136     return;
1137    
1138     SetServer(client_p);
1139    
1140     /* Update the capability combination usage counts. -A1kmm */
1141     set_chcap_usage_counts(client_p);
1142    
1143     /* Some day, all these lists will be consolidated *sigh* */
1144     dlinkAdd(client_p, &client_p->lnode, &me.serv->servers);
1145    
1146     m = dlinkFind(&unknown_list, client_p);
1147     assert(NULL != m);
1148    
1149     dlinkDelete(m, &unknown_list);
1150     dlinkAdd(client_p, m, &serv_list);
1151    
1152     Count.myserver++;
1153    
1154     dlinkAdd(client_p, make_dlink_node(), &global_serv_list);
1155     hash_add_client(client_p);
1156    
1157     /* doesnt duplicate client_p->serv if allocated this struct already */
1158     make_server(client_p);
1159    
1160     /* fixing eob timings.. -gnp */
1161     client_p->firsttime = CurrentTime;
1162    
1163     /* Show the real host/IP to admins */
1164     sendto_realops_flags(UMODE_ALL, L_ADMIN,
1165     "Link with %s established: (%s) link",
1166     inpath_ip,show_capabilities(client_p));
1167     /* Now show the masked hostname/IP to opers */
1168     sendto_realops_flags(UMODE_ALL, L_OPER,
1169     "Link with %s established: (%s) link",
1170     inpath,show_capabilities(client_p));
1171     ilog(L_NOTICE, "Link with %s established: (%s) link",
1172     inpath_ip, show_capabilities(client_p));
1173    
1174     client_p->serv->sconf = conf;
1175    
1176     if (HasServlink(client_p))
1177     {
1178     /* we won't overflow FD_DESC_SZ here, as it can hold
1179     * client_p->name + 64
1180     */
1181     fd_note(&client_p->localClient->fd, "slink data: %s", client_p->name);
1182     fd_note(&client_p->localClient->ctrlfd, "slink ctrl: %s", client_p->name);
1183     }
1184     else
1185     fd_note(&client_p->localClient->fd, "Server: %s", client_p->name);
1186    
1187     /* Old sendto_serv_but_one() call removed because we now
1188     ** need to send different names to different servers
1189     ** (domain name matching) Send new server to other servers.
1190     */
1191     DLINK_FOREACH(ptr, serv_list.head)
1192     {
1193     target_p = ptr->data;
1194    
1195     if (target_p == client_p)
1196     continue;
1197    
1198     if ((conf = target_p->serv->sconf) &&
1199     match(my_name_for_link(conf), client_p->name))
1200     continue;
1201    
1202     if (IsCapable(target_p, CAP_TS6) && HasID(client_p))
1203     sendto_one(target_p, ":%s SID %s 2 %s :%s%s",
1204     me.id, client_p->name, client_p->id,
1205     IsHidden(client_p) ? "(H) " : "",
1206     client_p->info);
1207     else
1208     sendto_one(target_p,":%s SERVER %s 2 :%s%s",
1209     me.name, client_p->name,
1210     IsHidden(client_p) ? "(H) " : "",
1211     client_p->info);
1212     }
1213    
1214     /* Pass on my client information to the new server
1215     **
1216     ** First, pass only servers (idea is that if the link gets
1217     ** cancelled beacause the server was already there,
1218     ** there are no NICK's to be cancelled...). Of course,
1219     ** if cancellation occurs, all this info is sent anyway,
1220     ** and I guess the link dies when a read is attempted...? --msa
1221     **
1222     ** Note: Link cancellation to occur at this point means
1223     ** that at least two servers from my fragment are building
1224     ** up connection this other fragment at the same time, it's
1225     ** a race condition, not the normal way of operation...
1226     **
1227     ** ALSO NOTE: using the get_client_name for server names--
1228     ** see previous *WARNING*!!! (Also, original inpath
1229     ** is destroyed...)
1230     */
1231    
1232     conf = client_p->serv->sconf;
1233    
1234     DLINK_FOREACH_PREV(ptr, global_serv_list.tail)
1235     {
1236     target_p = ptr->data;
1237    
1238     /* target_p->from == target_p for target_p == client_p */
1239     if (target_p->from == client_p)
1240     continue;
1241    
1242     if (match(my_name_for_link(conf), target_p->name))
1243     continue;
1244    
1245     if (IsCapable(client_p, CAP_TS6))
1246     {
1247     if (HasID(target_p))
1248     sendto_one(client_p, ":%s SID %s %d %s :%s%s",
1249     ID(target_p->servptr), target_p->name, target_p->hopcount+1,
1250     target_p->id, IsHidden(target_p) ? "(H) " : "",
1251     target_p->info);
1252     else /* introducing non-ts6 server */
1253     sendto_one(client_p, ":%s SERVER %s %d :%s%s",
1254     ID(target_p->servptr), target_p->name, target_p->hopcount+1,
1255     IsHidden(target_p) ? "(H) " : "", target_p->info);
1256     }
1257     else
1258     sendto_one(client_p, ":%s SERVER %s %d :%s%s",
1259     target_p->servptr->name, target_p->name, target_p->hopcount+1,
1260     IsHidden(target_p) ? "(H) " : "", target_p->info);
1261     }
1262    
1263     if ((ServerInfo.hub == 0) && MyConnect(client_p))
1264     uplink = client_p;
1265    
1266     server_burst(client_p);
1267     }
1268    
1269     static void
1270     start_io(struct Client *server)
1271     {
1272     struct LocalUser *lserver = server->localClient;
1273     int alloclen = 1;
1274     char *buf;
1275     dlink_node *ptr;
1276     struct dbuf_block *block;
1277    
1278     /* calculate how many bytes to allocate */
1279     if (IsCapable(server, CAP_ZIP))
1280     alloclen += 6;
1281     #ifdef HAVE_LIBCRYPTO
1282     if (IsCapable(server, CAP_ENC))
1283     alloclen += 16 + lserver->in_cipher->keylen + lserver->out_cipher->keylen;
1284     #endif
1285     alloclen += dbuf_length(&lserver->buf_recvq);
1286     alloclen += dlink_list_length(&lserver->buf_recvq.blocks) * 3;
1287     alloclen += dbuf_length(&lserver->buf_sendq);
1288     alloclen += dlink_list_length(&lserver->buf_sendq.blocks) * 3;
1289    
1290     /* initialize servlink control sendq */
1291     lserver->slinkq = buf = MyMalloc(alloclen);
1292     lserver->slinkq_ofs = 0;
1293     lserver->slinkq_len = alloclen;
1294    
1295     if (IsCapable(server, CAP_ZIP))
1296     {
1297     /* ziplink */
1298     *buf++ = SLINKCMD_SET_ZIP_OUT_LEVEL;
1299     *buf++ = 0; /* | */
1300     *buf++ = 1; /* \ len is 1 */
1301     *buf++ = ConfigFileEntry.compression_level;
1302     *buf++ = SLINKCMD_START_ZIP_IN;
1303     *buf++ = SLINKCMD_START_ZIP_OUT;
1304     }
1305     #ifdef HAVE_LIBCRYPTO
1306     if (IsCapable(server, CAP_ENC))
1307     {
1308     /* Decryption settings */
1309     *buf++ = SLINKCMD_SET_CRYPT_IN_CIPHER;
1310     *buf++ = 0; /* / (upper 8-bits of len) */
1311     *buf++ = 1; /* \ cipher id is 1 byte (lower 8-bits of len) */
1312     *buf++ = lserver->in_cipher->cipherid;
1313     *buf++ = SLINKCMD_SET_CRYPT_IN_KEY;
1314     *buf++ = 0; /* keylen < 256 */
1315     *buf++ = lserver->in_cipher->keylen;
1316     memcpy(buf, lserver->in_key, lserver->in_cipher->keylen);
1317     buf += lserver->in_cipher->keylen;
1318     /* Encryption settings */
1319     *buf++ = SLINKCMD_SET_CRYPT_OUT_CIPHER;
1320     *buf++ = 0; /* / (upper 8-bits of len) */
1321     *buf++ = 1; /* \ cipher id is 1 byte (lower 8-bits of len) */
1322     *buf++ = lserver->out_cipher->cipherid;
1323     *buf++ = SLINKCMD_SET_CRYPT_OUT_KEY;
1324     *buf++ = 0; /* keylen < 256 */
1325     *buf++ = lserver->out_cipher->keylen;
1326     memcpy(buf, lserver->out_key, lserver->out_cipher->keylen);
1327     buf += lserver->out_cipher->keylen;
1328     *buf++ = SLINKCMD_START_CRYPT_IN;
1329     *buf++ = SLINKCMD_START_CRYPT_OUT;
1330     }
1331     #endif
1332    
1333     /* pass the whole recvq to servlink */
1334     DLINK_FOREACH (ptr, lserver->buf_recvq.blocks.head)
1335     {
1336     block = ptr->data;
1337     *buf++ = SLINKCMD_INJECT_RECVQ;
1338     *buf++ = (block->size >> 8);
1339     *buf++ = (block->size & 0xff);
1340     memcpy(buf, &block->data[0], block->size);
1341     buf += block->size;
1342     }
1343     dbuf_clear(&lserver->buf_recvq);
1344    
1345     /* pass the whole sendq to servlink */
1346     DLINK_FOREACH (ptr, lserver->buf_sendq.blocks.head)
1347     {
1348     block = ptr->data;
1349     *buf++ = SLINKCMD_INJECT_SENDQ;
1350     *buf++ = (block->size >> 8);
1351     *buf++ = (block->size & 0xff);
1352     memcpy(buf, &block->data[0], block->size);
1353     buf += block->size;
1354     }
1355     dbuf_clear(&lserver->buf_sendq);
1356    
1357     /* start io */
1358     *buf++ = SLINKCMD_INIT;
1359    
1360     /* schedule a write */
1361     send_queued_slink_write(server);
1362     }
1363    
1364     /* fork_server()
1365     *
1366     * inputs - struct Client *server
1367     * output - success: 0 / failure: -1
1368     * side effect - fork, and exec SERVLINK to handle this connection
1369     */
1370     static int
1371     fork_server(struct Client *server)
1372     {
1373     #ifndef HAVE_SOCKETPAIR
1374     return -1;
1375     #else
1376     int i;
1377     int slink_fds[2][2];
1378     /* 0? - ctrl | 1? - data
1379     * ?0 - child | ?1 - parent */
1380    
1381     if (socketpair(AF_UNIX, SOCK_STREAM, 0, slink_fds[0]) < 0)
1382     return -1;
1383     if (socketpair(AF_UNIX, SOCK_STREAM, 0, slink_fds[1]) < 0)
1384     goto free_ctrl_fds;
1385    
1386     if ((i = fork()) < 0)
1387     {
1388     close(slink_fds[1][0]); close(slink_fds[1][1]);
1389     free_ctrl_fds:
1390     close(slink_fds[0][0]); close(slink_fds[0][1]);
1391     return -1;
1392     }
1393    
1394     if (i == 0)
1395     {
1396     char fd_str[3][6]; /* store 3x sizeof("65535") */
1397     char *kid_argv[7];
1398    
1399     #ifdef O_ASYNC
1400     fcntl(server->localClient->fd.fd, F_SETFL,
1401     fcntl(server->localClient->fd.fd, F_GETFL, 0) & ~O_ASYNC);
1402     #endif
1403     close_fds(&server->localClient->fd);
1404     close(slink_fds[0][1]);
1405     close(slink_fds[1][1]);
1406    
1407     sprintf(fd_str[0], "%d", slink_fds[0][0]);
1408     sprintf(fd_str[1], "%d", slink_fds[1][0]);
1409     sprintf(fd_str[2], "%d", server->localClient->fd.fd);
1410    
1411     kid_argv[0] = "-slink";
1412     kid_argv[1] = kid_argv[2] = fd_str[0]; /* ctrl */
1413     kid_argv[3] = kid_argv[4] = fd_str[1]; /* data */
1414     kid_argv[5] = fd_str[2]; /* network */
1415     kid_argv[6] = NULL;
1416    
1417     execv(ConfigFileEntry.servlink_path, kid_argv);
1418    
1419     _exit(1);
1420     }
1421    
1422     /* close the network fd and the child ends of the pipes */
1423     fd_close(&server->localClient->fd);
1424     close(slink_fds[0][0]);
1425     close(slink_fds[1][0]);
1426    
1427     execute_callback(setup_socket_cb, slink_fds[0][1]);
1428     execute_callback(setup_socket_cb, slink_fds[1][1]);
1429    
1430     fd_open(&server->localClient->ctrlfd, slink_fds[0][1], 1, "slink ctrl");
1431     fd_open(&server->localClient->fd, slink_fds[1][1], 1, "slink data");
1432    
1433     read_ctrl_packet(&server->localClient->ctrlfd, server);
1434     read_packet(&server->localClient->fd, server);
1435    
1436     return 0;
1437     #endif
1438     }
1439    
1440     /* server_burst()
1441     *
1442     * inputs - struct Client pointer server
1443     * -
1444     * output - none
1445     * side effects - send a server burst
1446     * bugs - still too long
1447     */
1448     static void
1449     server_burst(struct Client *client_p)
1450     {
1451     /* Send it in the shortened format with the TS, if
1452     ** it's a TS server; walk the list of channels, sending
1453     ** all the nicks that haven't been sent yet for each
1454     ** channel, then send the channel itself -- it's less
1455     ** obvious than sending all nicks first, but on the
1456     ** receiving side memory will be allocated more nicely
1457     ** saving a few seconds in the handling of a split
1458     ** -orabidoo
1459     */
1460    
1461     /* On a "lazy link" hubs send nothing.
1462     * Leafs always have to send nicks plus channels
1463     */
1464     if (IsCapable(client_p, CAP_LL))
1465     {
1466     if (!ServerInfo.hub)
1467     {
1468     /* burst all our info */
1469     burst_all(client_p);
1470    
1471     /* Now, ask for channel info on all our current channels */
1472     cjoin_all(client_p);
1473     }
1474     }
1475     else
1476     {
1477     burst_all(client_p);
1478     }
1479    
1480     /* EOB stuff is now in burst_all */
1481     /* Always send a PING after connect burst is done */
1482     sendto_one(client_p, "PING :%s", ID_or_name(&me, client_p));
1483     }
1484    
1485     /* burst_all()
1486     *
1487     * inputs - pointer to server to send burst to
1488     * output - NONE
1489     * side effects - complete burst of channels/nicks is sent to client_p
1490     */
1491     static void
1492     burst_all(struct Client *client_p)
1493     {
1494     struct Client *target_p;
1495     struct Channel *chptr;
1496     dlink_node *gptr;
1497     dlink_node *ptr;
1498    
1499     DLINK_FOREACH(gptr, global_channel_list.head)
1500     {
1501     chptr = gptr->data;
1502    
1503     if (dlink_list_length(&chptr->members) != 0)
1504     {
1505     burst_members(client_p, chptr);
1506     send_channel_modes(client_p, chptr);
1507     if (IsCapable(client_p, CAP_TB))
1508     send_tb(client_p, chptr);
1509     }
1510     }
1511    
1512     /* also send out those that are not on any channel
1513     */
1514     DLINK_FOREACH(ptr, global_client_list.head)
1515     {
1516     target_p = ptr->data;
1517    
1518     if (!IsBursted(target_p) && target_p->from != client_p)
1519     sendnick_TS(client_p, target_p);
1520    
1521     ClearBursted(target_p);
1522     }
1523    
1524     /* We send the time we started the burst, and let the remote host determine an EOB time,
1525     ** as otherwise we end up sending a EOB of 0 Sending here means it gets sent last -- fl
1526     */
1527     /* Its simpler to just send EOB and use the time its been connected.. --fl_ */
1528     if (IsCapable(client_p, CAP_EOB))
1529     sendto_one(client_p, ":%s EOB", ID_or_name(&me, client_p));
1530     }
1531    
1532     /*
1533     * send_tb
1534     *
1535     * inputs - pointer to Client
1536     * - pointer to channel
1537     * output - NONE
1538     * side effects - Called on a server burst when
1539     * server is CAP_TB capable
1540     */
1541     static void
1542     send_tb(struct Client *client_p, struct Channel *chptr)
1543     {
1544     if (chptr->topic != NULL && IsCapable(client_p, CAP_TB))
1545     {
1546     if (ConfigChannel.burst_topicwho)
1547     {
1548     sendto_one(client_p, ":%s TB %s %lu %s :%s",
1549     me.name, chptr->chname,
1550     (unsigned long)chptr->topic_time,
1551     chptr->topic_info, chptr->topic);
1552     }
1553     else
1554     {
1555     sendto_one(client_p, ":%s TB %s %lu :%s",
1556     me.name, chptr->chname,
1557     (unsigned long)chptr->topic_time, chptr->topic);
1558     }
1559     }
1560     }
1561    
1562     /* cjoin_all()
1563     *
1564     * inputs - server to ask for channel info from
1565     * output - NONE
1566     * side effects - CJOINS for all the leafs known channels is sent
1567     */
1568     static void
1569     cjoin_all(struct Client *client_p)
1570     {
1571     const dlink_node *gptr = NULL;
1572    
1573     DLINK_FOREACH(gptr, global_channel_list.head)
1574     {
1575     const struct Channel *chptr = gptr->data;
1576     sendto_one(client_p, ":%s CBURST %s",
1577     me.name, chptr->chname);
1578     }
1579     }
1580    
1581     /* burst_channel()
1582     *
1583     * inputs - pointer to server to send sjoins to
1584     * - channel pointer
1585     * output - none
1586     * side effects - All sjoins for channel(s) given by chptr are sent
1587     * for all channel members. ONLY called by hub on
1588     * behalf of a lazylink so client_p is always guarunteed
1589     * to be a LL leaf.
1590     */
1591     void
1592     burst_channel(struct Client *client_p, struct Channel *chptr)
1593     {
1594     burst_ll_members(client_p, chptr);
1595    
1596     send_channel_modes(client_p, chptr);
1597     add_lazylinkchannel(client_p,chptr);
1598    
1599     if (chptr->topic != NULL && chptr->topic_info != NULL)
1600     {
1601     sendto_one(client_p, ":%s TOPIC %s %s %lu :%s",
1602     me.name, chptr->chname, chptr->topic_info,
1603     (unsigned long)chptr->topic_time, chptr->topic);
1604     }
1605     }
1606    
1607     /* add_lazlinkchannel()
1608     *
1609     * inputs - pointer to directly connected leaf server
1610     * being introduced to this hub
1611     * - pointer to channel structure being introduced
1612     * output - NONE
1613     * side effects - The channel pointed to by chptr is now known
1614     * to be on lazyleaf server given by local_server_p.
1615     * mark that in the bit map and add to the list
1616     * of channels to examine after this newly introduced
1617     * server is squit off.
1618     */
1619     static void
1620     add_lazylinkchannel(struct Client *local_server_p, struct Channel *chptr)
1621     {
1622     assert(MyConnect(local_server_p));
1623    
1624     chptr->lazyLinkChannelExists |= local_server_p->localClient->serverMask;
1625     dlinkAdd(chptr, make_dlink_node(), &lazylink_channels);
1626     }
1627    
1628     /* add_lazylinkclient()
1629     *
1630     * inputs - pointer to directly connected leaf server
1631     * being introduced to this hub
1632     * - pointer to client being introduced
1633     * output - NONE
1634     * side effects - The client pointed to by client_p is now known
1635     * to be on lazyleaf server given by local_server_p.
1636     * mark that in the bit map and add to the list
1637     * of clients to examine after this newly introduced
1638     * server is squit off.
1639     */
1640     void
1641     add_lazylinkclient(struct Client *local_server_p, struct Client *client_p)
1642     {
1643     assert(MyConnect(local_server_p));
1644     client_p->lazyLinkClientExists |= local_server_p->localClient->serverMask;
1645     }
1646    
1647     /* remove_lazylink_flags()
1648     *
1649     * inputs - pointer to server quitting
1650     * output - NONE
1651     * side effects - All the channels on the lazylink channel list are examined
1652     * If they hold a bit corresponding to the servermask
1653     * attached to client_p, clear that bit. If this bitmask
1654     * goes to 0, then the channel is no longer known to
1655     * be on any lazylink server, and can be removed from the
1656     * link list.
1657     *
1658     * Similar is done for lazylink clients
1659     *
1660     * This function must be run by the HUB on any exiting
1661     * lazylink leaf server, while the pointer is still valid.
1662     * Hence must be run from client.c in exit_one_client()
1663     *
1664     * The old code scanned all channels, this code only
1665     * scans channels/clients on the lazylink_channels
1666     * lazylink_clients lists.
1667     */
1668     void
1669     remove_lazylink_flags(unsigned long mask)
1670     {
1671     dlink_node *ptr;
1672     dlink_node *next_ptr;
1673     struct Channel *chptr;
1674     struct Client *target_p;
1675     unsigned long clear_mask;
1676    
1677     if (!mask) /* On 0 mask, don't do anything */
1678     return;
1679    
1680     clear_mask = ~mask;
1681     freeMask |= mask;
1682    
1683     DLINK_FOREACH_SAFE(ptr, next_ptr, lazylink_channels.head)
1684     {
1685     chptr = ptr->data;
1686    
1687     chptr->lazyLinkChannelExists &= clear_mask;
1688    
1689     if (chptr->lazyLinkChannelExists == 0)
1690     {
1691     dlinkDelete(ptr, &lazylink_channels);
1692     free_dlink_node(ptr);
1693     }
1694     }
1695    
1696     DLINK_FOREACH(ptr, global_client_list.head)
1697     {
1698     target_p = ptr->data;
1699     target_p->lazyLinkClientExists &= clear_mask;
1700     }
1701     }
1702    
1703     /* burst_members()
1704     *
1705     * inputs - pointer to server to send members to
1706     * - dlink_list pointer to membership list to send
1707     * output - NONE
1708     * side effects -
1709     */
1710     static void
1711     burst_members(struct Client *client_p, struct Channel *chptr)
1712     {
1713     struct Client *target_p;
1714     struct Membership *ms;
1715     dlink_node *ptr;
1716    
1717     DLINK_FOREACH(ptr, chptr->members.head)
1718     {
1719     ms = ptr->data;
1720     target_p = ms->client_p;
1721    
1722     if (!IsBursted(target_p))
1723     {
1724     SetBursted(target_p);
1725    
1726     if (target_p->from != client_p)
1727     sendnick_TS(client_p, target_p);
1728     }
1729     }
1730     }
1731    
1732     /* burst_ll_members()
1733     *
1734     * inputs - pointer to server to send members to
1735     * - dlink_list pointer to membership list to send
1736     * output - NONE
1737     * side effects - This version also has to check the bitmap for lazylink
1738     */
1739     static void
1740     burst_ll_members(struct Client *client_p, struct Channel *chptr)
1741     {
1742     struct Client *target_p;
1743     struct Membership *ms;
1744     dlink_node *ptr;
1745    
1746     DLINK_FOREACH(ptr, chptr->members.head)
1747     {
1748     ms = ptr->data;
1749     target_p = ms->client_p;
1750    
1751     if ((target_p->lazyLinkClientExists & client_p->localClient->serverMask) == 0)
1752     {
1753     if (target_p->from != client_p)
1754     {
1755     add_lazylinkclient(client_p,target_p);
1756     sendnick_TS(client_p, target_p);
1757     }
1758     }
1759     }
1760     }
1761    
1762     /* set_autoconn()
1763     *
1764     * inputs - struct Client pointer to oper requesting change
1765     * output - none
1766     * side effects - set autoconnect mode
1767     */
1768     void
1769     set_autoconn(struct Client *source_p, const char *name, int newval)
1770     {
1771     struct ConfItem *conf;
1772     struct AccessItem *aconf;
1773    
1774     if (name != NULL)
1775     {
1776     conf = find_exact_name_conf(SERVER_TYPE, name, NULL, NULL);
1777     if (conf != NULL)
1778     {
1779     aconf = (struct AccessItem *)map_to_conf(conf);
1780     if (newval)
1781     SetConfAllowAutoConn(aconf);
1782     else
1783     ClearConfAllowAutoConn(aconf);
1784    
1785     sendto_realops_flags(UMODE_ALL, L_ALL,
1786     "%s has changed AUTOCONN for %s to %i",
1787     source_p->name, name, newval);
1788     sendto_one(source_p,
1789     ":%s NOTICE %s :AUTOCONN for %s is now set to %i",
1790     me.name, source_p->name, name, newval);
1791     }
1792     else
1793     {
1794     sendto_one(source_p, ":%s NOTICE %s :Can't find %s",
1795     me.name, source_p->name, name);
1796     }
1797     }
1798     else
1799     {
1800     sendto_one(source_p, ":%s NOTICE %s :Please specify a server name!",
1801     me.name, source_p->name);
1802     }
1803     }
1804    
1805     void
1806     initServerMask(void)
1807     {
1808     freeMask = 0xFFFFFFFFUL;
1809     }
1810    
1811     /* nextFreeMask()
1812     *
1813     * inputs - NONE
1814     * output - unsigned long next unused mask for use in LL
1815     * side effects -
1816     */
1817     unsigned long
1818     nextFreeMask(void)
1819     {
1820     int i;
1821     unsigned long mask = 1;
1822    
1823     for (i = 0; i < 32; i++)
1824     {
1825     if (mask & freeMask)
1826     {
1827     freeMask &= ~mask;
1828     return(mask);
1829     }
1830    
1831     mask <<= 1;
1832     }
1833    
1834     return(0L); /* watch this special case ... */
1835     }
1836    
1837     /* New server connection code
1838     * Based upon the stuff floating about in s_bsd.c
1839     * -- adrian
1840     */
1841    
1842     /* serv_connect() - initiate a server connection
1843     *
1844     * inputs - pointer to conf
1845     * - pointer to client doing the connect
1846     * output -
1847     * side effects -
1848     *
1849     * This code initiates a connection to a server. It first checks to make
1850     * sure the given server exists. If this is the case, it creates a socket,
1851     * creates a client, saves the socket information in the client, and
1852     * initiates a connection to the server through comm_connect_tcp(). The
1853     * completion of this goes through serv_completed_connection().
1854     *
1855     * We return 1 if the connection is attempted, since we don't know whether
1856     * it suceeded or not, and 0 if it fails in here somewhere.
1857     */
1858     int
1859     serv_connect(struct AccessItem *aconf, struct Client *by)
1860     {
1861     struct ConfItem *conf;
1862     struct Client *client_p;
1863     char buf[HOSTIPLEN];
1864    
1865     /* conversion structs */
1866     struct sockaddr_in *v4;
1867     /* Make sure aconf is useful */
1868     assert(aconf != NULL);
1869    
1870     if(aconf == NULL)
1871     return (0);
1872    
1873     /* XXX should be passing struct ConfItem in the first place */
1874     conf = unmap_conf_item(aconf);
1875    
1876     /* log */
1877     irc_getnameinfo((struct sockaddr*)&aconf->ipnum, aconf->ipnum.ss_len,
1878     buf, HOSTIPLEN, NULL, 0, NI_NUMERICHOST);
1879     ilog(L_NOTICE, "Connect to %s[%s] @%s", aconf->user, aconf->host,
1880     buf);
1881    
1882     /* Still processing a DNS lookup? -> exit */
1883     if (aconf->dns_query != NULL)
1884     {
1885     sendto_realops_flags(UMODE_ALL, L_OPER,
1886     "Error connecting to %s: Error during DNS lookup", conf->name);
1887     return (0);
1888     }
1889    
1890     /* Make sure this server isn't already connected
1891     * Note: aconf should ALWAYS be a valid C: line
1892     */
1893     if ((client_p = find_server(conf->name)) != NULL)
1894     {
1895     sendto_realops_flags(UMODE_ALL, L_ADMIN,
1896     "Server %s already present from %s",
1897     conf->name, get_client_name(client_p, SHOW_IP));
1898     sendto_realops_flags(UMODE_ALL, L_OPER,
1899     "Server %s already present from %s",
1900     conf->name, get_client_name(client_p, MASK_IP));
1901     if (by && IsClient(by) && !MyClient(by))
1902     sendto_one(by, ":%s NOTICE %s :Server %s already present from %s",
1903     me.name, by->name, conf->name,
1904     get_client_name(client_p, MASK_IP));
1905     return (0);
1906     }
1907    
1908     /* Create a local client */
1909     client_p = make_client(NULL);
1910    
1911     /* Copy in the server, hostname, fd */
1912     strlcpy(client_p->name, conf->name, sizeof(client_p->name));
1913     strlcpy(client_p->host, aconf->host, sizeof(client_p->host));
1914    
1915     /* We already converted the ip once, so lets use it - stu */
1916     strlcpy(client_p->sockhost, buf, HOSTIPLEN);
1917    
1918     /* create a socket for the server connection */
1919     if (comm_open(&client_p->localClient->fd, aconf->ipnum.ss.ss_family,
1920     SOCK_STREAM, 0, NULL) < 0)
1921     {
1922     /* Eek, failure to create the socket */
1923     report_error(L_ALL,
1924     "opening stream socket to %s: %s", conf->name, errno);
1925     SetDead(client_p);
1926     exit_client(client_p, &me, "Connection failed");
1927     return (0);
1928     }
1929    
1930     /* servernames are always guaranteed under HOSTLEN chars */
1931     fd_note(&client_p->localClient->fd, "Server: %s", conf->name);
1932    
1933     /* Attach config entries to client here rather than in
1934     * serv_connect_callback(). This to avoid null pointer references.
1935     */
1936     if (!attach_connect_block(client_p, conf->name, aconf->host))
1937     {
1938     sendto_realops_flags(UMODE_ALL, L_ALL,
1939     "Host %s is not enabled for connecting:no C/N-line",
1940     conf->name);
1941     if (by && IsClient(by) && !MyClient(by))
1942     sendto_one(by, ":%s NOTICE %s :Connect to host %s failed.",
1943     me.name, by->name, client_p->name);
1944     SetDead(client_p);
1945     exit_client(client_p, client_p, "Connection failed");
1946     return (0);
1947     }
1948    
1949     /* at this point we have a connection in progress and C/N lines
1950     * attached to the client, the socket info should be saved in the
1951     * client and it should either be resolved or have a valid address.
1952     *
1953     * The socket has been connected or connect is in progress.
1954     */
1955     make_server(client_p);
1956    
1957     if (by && IsClient(by))
1958     strlcpy(client_p->serv->by, by->name, sizeof(client_p->serv->by));
1959     else
1960     strlcpy(client_p->serv->by, "AutoConn.", sizeof(client_p->serv->by));
1961    
1962     SetConnecting(client_p);
1963     dlinkAdd(client_p, &client_p->node, &global_client_list);
1964     /* from def_fam */
1965     client_p->localClient->aftype = aconf->aftype;
1966    
1967     /* Now, initiate the connection */
1968     /* XXX assume that a non 0 type means a specific bind address
1969     * for this connect.
1970     */
1971     switch (aconf->aftype)
1972     {
1973     case AF_INET:
1974     v4 = (struct sockaddr_in*)&aconf->my_ipnum;
1975     if (v4->sin_addr.s_addr != 0)
1976     {
1977     struct irc_ssaddr ipn;
1978     memset(&ipn, 0, sizeof(struct irc_ssaddr));
1979     ipn.ss.ss_family = AF_INET;
1980     ipn.ss_port = 0;
1981     memcpy(&ipn, &aconf->my_ipnum, sizeof(struct irc_ssaddr));
1982     comm_connect_tcp(&client_p->localClient->fd, aconf->host, aconf->port,
1983     (struct sockaddr *)&ipn, ipn.ss_len,
1984     serv_connect_callback, client_p, aconf->aftype,
1985     CONNECTTIMEOUT);
1986     }
1987     else if (ServerInfo.specific_ipv4_vhost)
1988     {
1989     struct irc_ssaddr ipn;
1990     memset(&ipn, 0, sizeof(struct irc_ssaddr));
1991     ipn.ss.ss_family = AF_INET;
1992     ipn.ss_port = 0;
1993     memcpy(&ipn, &ServerInfo.ip, sizeof(struct irc_ssaddr));
1994     comm_connect_tcp(&client_p->localClient->fd, aconf->host, aconf->port,
1995     (struct sockaddr *)&ipn, ipn.ss_len,
1996     serv_connect_callback, client_p, aconf->aftype,
1997     CONNECTTIMEOUT);
1998     }
1999     else
2000     comm_connect_tcp(&client_p->localClient->fd, aconf->host, aconf->port,
2001     NULL, 0, serv_connect_callback, client_p, aconf->aftype,
2002     CONNECTTIMEOUT);
2003     break;
2004     #ifdef IPV6
2005     case AF_INET6:
2006     {
2007     struct irc_ssaddr ipn;
2008     struct sockaddr_in6 *v6;
2009     struct sockaddr_in6 *v6conf;
2010    
2011     memset(&ipn, 0, sizeof(struct irc_ssaddr));
2012     v6conf = (struct sockaddr_in6 *)&aconf->my_ipnum;
2013     v6 = (struct sockaddr_in6 *)&ipn;
2014    
2015     if (memcmp(&v6conf->sin6_addr, &v6->sin6_addr,
2016     sizeof(struct in6_addr)) != 0)
2017     {
2018     memcpy(&ipn, &aconf->my_ipnum, sizeof(struct irc_ssaddr));
2019     ipn.ss.ss_family = AF_INET6;
2020     ipn.ss_port = 0;
2021     comm_connect_tcp(&client_p->localClient->fd,
2022     aconf->host, aconf->port,
2023     (struct sockaddr *)&ipn, ipn.ss_len,
2024     serv_connect_callback, client_p,
2025     aconf->aftype, CONNECTTIMEOUT);
2026     }
2027     else if (ServerInfo.specific_ipv6_vhost)
2028     {
2029     memcpy(&ipn, &ServerInfo.ip6, sizeof(struct irc_ssaddr));
2030     ipn.ss.ss_family = AF_INET6;
2031     ipn.ss_port = 0;
2032     comm_connect_tcp(&client_p->localClient->fd,
2033     aconf->host, aconf->port,
2034     (struct sockaddr *)&ipn, ipn.ss_len,
2035     serv_connect_callback, client_p,
2036     aconf->aftype, CONNECTTIMEOUT);
2037     }
2038     else
2039     comm_connect_tcp(&client_p->localClient->fd,
2040     aconf->host, aconf->port,
2041     NULL, 0, serv_connect_callback, client_p,
2042     aconf->aftype, CONNECTTIMEOUT);
2043     }
2044     #endif
2045     }
2046     return (1);
2047     }
2048    
2049     /* serv_connect_callback() - complete a server connection.
2050     *
2051     * This routine is called after the server connection attempt has
2052     * completed. If unsucessful, an error is sent to ops and the client
2053     * is closed. If sucessful, it goes through the initialisation/check
2054     * procedures, the capabilities are sent, and the socket is then
2055     * marked for reading.
2056     */
2057     static void
2058     serv_connect_callback(fde_t *fd, int status, void *data)
2059     {
2060     struct Client *client_p = data;
2061     struct ConfItem *conf=NULL;
2062     struct AccessItem *aconf=NULL;
2063    
2064     /* First, make sure its a real client! */
2065     assert(client_p != NULL);
2066     assert(&client_p->localClient->fd == fd);
2067    
2068     /* Next, for backward purposes, record the ip of the server */
2069     memcpy(&client_p->localClient->ip, &fd->connect.hostaddr,
2070     sizeof(struct irc_ssaddr));
2071     /* Check the status */
2072     if (status != COMM_OK)
2073     {
2074     /* We have an error, so report it and quit
2075     * Admins get to see any IP, mere opers don't *sigh*
2076     */
2077     if (ConfigServerHide.hide_server_ips)
2078     sendto_realops_flags(UMODE_ALL, L_ADMIN,
2079     "Error connecting to %s: %s",
2080     client_p->name, comm_errstr(status));
2081     else
2082     sendto_realops_flags(UMODE_ALL, L_ADMIN,
2083     "Error connecting to %s[%s]: %s", client_p->name,
2084     client_p->host, comm_errstr(status));
2085    
2086     sendto_realops_flags(UMODE_ALL, L_OPER,
2087     "Error connecting to %s: %s",
2088     client_p->name, comm_errstr(status));
2089    
2090     /* If a fd goes bad, call dead_link() the socket is no
2091     * longer valid for reading or writing.
2092     */
2093     dead_link_on_write(client_p, 0);
2094     return;
2095     }
2096    
2097     /* COMM_OK, so continue the connection procedure */
2098     /* Get the C/N lines */
2099     conf = find_conf_name(&client_p->localClient->confs,
2100     client_p->name, SERVER_TYPE);
2101     if (conf == NULL)
2102     {
2103     sendto_realops_flags(UMODE_ALL, L_ADMIN,
2104     "Lost connect{} block for %s", get_client_name(client_p, HIDE_IP));
2105     sendto_realops_flags(UMODE_ALL, L_OPER,
2106     "Lost connect{} block for %s", get_client_name(client_p, MASK_IP));
2107    
2108     exit_client(client_p, &me, "Lost connect{} block");
2109     return;
2110     }
2111    
2112     aconf = (struct AccessItem *)map_to_conf(conf);
2113     /* Next, send the initial handshake */
2114     SetHandshake(client_p);
2115    
2116     #ifdef HAVE_LIBCRYPTO
2117     /* Handle all CRYPTLINK links in cryptlink_init */
2118     if (IsConfCryptLink(aconf))
2119     {
2120     cryptlink_init(client_p, conf, fd);
2121     return;
2122     }
2123     #endif
2124    
2125     /* jdc -- Check and send spasswd, not passwd. */
2126     if (!EmptyString(aconf->spasswd) && (me.id[0] != '\0'))
2127     /* Send TS 6 form only if id */
2128     sendto_one(client_p, "PASS %s TS %d %s",
2129     aconf->spasswd, TS_CURRENT, me.id);
2130     else
2131     sendto_one(client_p, "PASS %s TS 5",
2132     aconf->spasswd);
2133    
2134     /* Pass my info to the new server
2135     *
2136     * If trying to negotiate LazyLinks, pass on CAP_LL
2137     * If this is a HUB, pass on CAP_HUB
2138     * Pass on ZIP if supported
2139     * Pass on TB if supported.
2140     * - Dianora
2141     */
2142     send_capabilities(client_p, aconf,
2143     (IsConfLazyLink(aconf) ? find_capability("LL") : 0)
2144     | (IsConfCompressed(aconf) ? find_capability("ZIP") : 0)
2145     | (IsConfTopicBurst(aconf) ? find_capability("TB") : 0)
2146     , 0);
2147    
2148     sendto_one(client_p, "SERVER %s 1 :%s%s",
2149     my_name_for_link(conf),
2150     ConfigServerHide.hidden ? "(H) " : "",
2151     me.info);
2152    
2153     /* If we've been marked dead because a send failed, just exit
2154     * here now and save everyone the trouble of us ever existing.
2155     */
2156     if (IsDead(client_p))
2157     {
2158     sendto_realops_flags(UMODE_ALL, L_ADMIN,
2159     "%s[%s] went dead during handshake",
2160     client_p->name,
2161     client_p->host);
2162     sendto_realops_flags(UMODE_ALL, L_OPER,
2163     "%s went dead during handshake", client_p->name);
2164     return;
2165     }
2166    
2167     /* don't move to serv_list yet -- we haven't sent a burst! */
2168     /* If we get here, we're ok, so lets start reading some data */
2169     comm_setselect(fd, COMM_SELECT_READ, read_packet, client_p, 0);
2170     }
2171    
2172     struct Client *
2173     find_servconn_in_progress(const char *name)
2174     {
2175     dlink_node *ptr;
2176     struct Client *cptr;
2177    
2178     DLINK_FOREACH(ptr, unknown_list.head)
2179     {
2180     cptr = ptr->data;
2181    
2182     if (cptr && cptr->name[0])
2183     if (match(cptr->name, name) || match(name, cptr->name))
2184     return cptr;
2185     }
2186    
2187     return NULL;
2188     }
2189    
2190     #ifdef HAVE_LIBCRYPTO
2191     /*
2192     * sends a CRYPTLINK SERV command.
2193     */
2194     void
2195     cryptlink_init(struct Client *client_p, struct ConfItem *conf, fde_t *fd)
2196     {
2197     struct AccessItem *aconf;
2198     char *encrypted;
2199     unsigned char *key_to_send;
2200     char randkey[CIPHERKEYLEN];
2201     int enc_len;
2202    
2203     /* get key */
2204     if ((!ServerInfo.rsa_private_key) ||
2205     (!RSA_check_key(ServerInfo.rsa_private_key)) )
2206     {
2207     cryptlink_error(client_p, "SERV", "Invalid RSA private key",
2208     "Invalid RSA private key");
2209     return;
2210     }
2211    
2212     aconf = (struct AccessItem *)map_to_conf(conf);
2213    
2214     if (aconf->rsa_public_key == NULL)
2215     {
2216     cryptlink_error(client_p, "SERV", "Invalid RSA public key",
2217     "Invalid RSA public key");
2218     return;
2219     }
2220    
2221     if (get_randomness((unsigned char *)randkey, CIPHERKEYLEN) != 1)
2222     {
2223     cryptlink_error(client_p, "SERV", "Couldn't generate keyphrase",
2224     "Couldn't generate keyphrase");
2225     return;
2226     }
2227    
2228     encrypted = MyMalloc(RSA_size(ServerInfo.rsa_private_key));
2229     enc_len = RSA_public_encrypt(CIPHERKEYLEN,
2230     (unsigned char *)randkey,
2231     (unsigned char *)encrypted,
2232     aconf->rsa_public_key,
2233     RSA_PKCS1_PADDING);
2234    
2235     memcpy(client_p->localClient->in_key, randkey, CIPHERKEYLEN);
2236    
2237     if (enc_len <= 0)
2238     {
2239     report_crypto_errors();
2240     MyFree(encrypted);
2241     cryptlink_error(client_p, "SERV", "Couldn't encrypt data",
2242     "Couldn't encrypt data");
2243     return;
2244     }
2245    
2246     if (!(base64_block(&key_to_send, encrypted, enc_len)))
2247     {
2248     MyFree(encrypted);
2249     cryptlink_error(client_p, "SERV", "Couldn't base64 encode key",
2250     "Couldn't base64 encode key");
2251     return;
2252     }
2253    
2254     send_capabilities(client_p, aconf,
2255     (IsConfLazyLink(aconf) ? find_capability("LL") : 0)
2256     | (IsConfCompressed(aconf) ? find_capability("ZIP") : 0)
2257     | (IsConfTopicBurst(aconf) ? find_capability("TB") : 0)
2258     , CAP_ENC_MASK);
2259    
2260 adx 42 if (me.id[0])
2261     sendto_one(client_p, "PASS . TS %d %s", TS_CURRENT, me.id);
2262    
2263 adx 30 sendto_one(client_p, "CRYPTLINK SERV %s %s :%s%s",
2264     my_name_for_link(conf), key_to_send,
2265     ConfigServerHide.hidden ? "(H) " : "", me.info);
2266    
2267     SetHandshake(client_p);
2268     SetWaitAuth(client_p);
2269    
2270     MyFree(encrypted);
2271     MyFree(key_to_send);
2272    
2273     if (IsDead(client_p))
2274     cryptlink_error(client_p, "SERV", "Went dead during handshake",
2275     "Went dead during handshake");
2276     else if (fd != NULL)
2277     /* If we get here, we're ok, so lets start reading some data */
2278     comm_setselect(fd, COMM_SELECT_READ, read_packet, client_p, 0);
2279     }
2280    
2281     void
2282     cryptlink_error(struct Client *client_p, const char *type,
2283     const char *reason, const char *client_reason)
2284     {
2285     sendto_realops_flags(UMODE_ALL, L_ADMIN, "%s: CRYPTLINK %s error - %s",
2286     get_client_name(client_p, SHOW_IP), type, reason);
2287     sendto_realops_flags(UMODE_ALL, L_OPER, "%s: CRYPTLINK %s error - %s",
2288     get_client_name(client_p, MASK_IP), type, reason);
2289     ilog(L_ERROR, "%s: CRYPTLINK %s error - %s",
2290     get_client_name(client_p, SHOW_IP), type, reason);
2291    
2292     /* If client_reason isn't NULL, then exit the client with the message
2293     * defined in the call.
2294     */
2295     if ((client_reason != NULL) && (!IsDead(client_p)))
2296     exit_client(client_p, &me, client_reason);
2297     }
2298    
2299     static char base64_chars[] =
2300     "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/=";
2301    
2302     static char base64_values[] =
2303     {
2304     /* 00-15 */ -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
2305     /* 16-31 */ -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
2306     /* 32-47 */ -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, 62, -1, -1, -1, 63,
2307     /* 48-63 */ 52, 53, 54, 55, 56, 57, 58, 59, 60, 61, -1, -1, -1, 0, -1, -1,
2308     /* 64-79 */ -1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14,
2309     /* 80-95 */ 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, -1, -1, -1, -1, -1,
2310     /* 96-111 */ -1, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40,
2311     /* 112-127 */ 41, 42, 43, 44, 45, 46, 47, 48, 49, 50, 51, -1, -1, -1, -1, -1,
2312     /* 128-143 */ -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
2313     /* 144-159 */ -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
2314     /* 160-175 */ -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
2315     /* 186-191 */ -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
2316     /* 192-207 */ -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
2317     /* 208-223 */ -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
2318     /* 224-239 */ -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
2319     /* 240-255 */ -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1
2320     };
2321    
2322     /*
2323     * base64_block will allocate and return a new block of memory
2324     * using MyMalloc(). It should be freed after use.
2325     */
2326     int
2327     base64_block(unsigned char **output, char *data, int len)
2328     {
2329     unsigned char *out;
2330     unsigned char *in = (unsigned char*)data;
2331     unsigned long int q_in;
2332     int i;
2333     int count = 0;
2334    
2335     out = MyMalloc(((((len + 2) - ((len + 2) % 3)) / 3) * 4) + 1);
2336    
2337     /* process 24 bits at a time */
2338     for( i = 0; i < len; i += 3)
2339     {
2340     q_in = 0;
2341    
2342     if ( i + 2 < len )
2343     {
2344     q_in = (in[i+2] & 0xc0) << 2;
2345     q_in |= in[i+2];
2346     }
2347    
2348     if ( i + 1 < len )
2349     {
2350     q_in |= (in[i+1] & 0x0f) << 10;
2351     q_in |= (in[i+1] & 0xf0) << 12;
2352     }
2353    
2354     q_in |= (in[i] & 0x03) << 20;
2355     q_in |= in[i] << 22;
2356    
2357     q_in &= 0x3f3f3f3f;
2358    
2359     out[count++] = base64_chars[((q_in >> 24) )];
2360     out[count++] = base64_chars[((q_in >> 16) & 0xff)];
2361     out[count++] = base64_chars[((q_in >> 8) & 0xff)];
2362     out[count++] = base64_chars[((q_in ) & 0xff)];
2363     }
2364     if ( (i - len) > 0 )
2365     {
2366     out[count-1] = '=';
2367     if ( (i - len) > 1 )
2368     out[count-2] = '=';
2369     }
2370    
2371     out[count] = '\0';
2372     *output = out;
2373     return (count);
2374     }
2375    
2376     /*
2377     * unbase64_block will allocate and return a new block of memory
2378     * using MyMalloc(). It should be freed after use.
2379     */
2380     int
2381     unbase64_block(unsigned char **output, char *data, int len)
2382     {
2383     unsigned char *out;
2384     unsigned char *in = (unsigned char*)data;
2385     unsigned long int q_in;
2386     int i;
2387     int count = 0;
2388    
2389     if ((len % 4) != 0)
2390     return (0);
2391    
2392     out = MyMalloc(((len / 4) * 3) + 1);
2393    
2394     /* process 32 bits at a time */
2395     for( i = 0; (i + 3) < len; i+=4)
2396     {
2397     /* compress input (chars a, b, c and d) as follows:
2398     * (after converting ascii -> base64 value)
2399     *
2400     * |00000000aaaaaabbbbbbccccccdddddd|
2401     * | 765432 107654 321076 543210|
2402     */
2403    
2404     q_in = 0;
2405    
2406     if (base64_values[in[i+3]] > -1)
2407     q_in |= base64_values[in[i+3]] ;
2408     if (base64_values[in[i+2]] > -1)
2409     q_in |= base64_values[in[i+2]] << 6;
2410     if (base64_values[in[i+1]] > -1)
2411     q_in |= base64_values[in[i+1]] << 12;
2412     if (base64_values[in[i ]] > -1)
2413     q_in |= base64_values[in[i ]] << 18;
2414    
2415     out[count++] = (q_in >> 16) & 0xff;
2416     out[count++] = (q_in >> 8) & 0xff;
2417     out[count++] = (q_in ) & 0xff;
2418     }
2419    
2420     if (in[i-1] == '=') count--;
2421     if (in[i-2] == '=') count--;
2422    
2423     out[count] = '\0';
2424     *output = out;
2425     return (count);
2426     }
2427    
2428     #endif /* HAVE_LIBCRYPTO */
2429    

Properties

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