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root/svn/ircd-hybrid/branches/8.2.x/src/s_bsd.c
Revision: 2632
Committed: Sun Dec 8 18:33:48 2013 UTC (12 years, 8 months ago) by michael
Content type: text/x-csrc
Original Path: ircd-hybrid/trunk/src/s_bsd.c
File size: 21727 byte(s)
Log Message:
- Removed setup_socket callback
- Removed init_comm() as init_netio() can be called directly

File Contents

# User Rev Content
1 adx 30 /*
2     * ircd-hybrid: an advanced Internet Relay Chat Daemon(ircd).
3     * s_bsd.c: Network functions.
4     *
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     #include <netinet/in_systm.h>
27     #include <netinet/ip.h>
28     #include <netinet/tcp.h>
29 michael 1011 #include "list.h"
30 adx 30 #include "fdlist.h"
31     #include "s_bsd.h"
32     #include "client.h"
33     #include "dbuf.h"
34     #include "event.h"
35     #include "irc_string.h"
36     #include "ircd.h"
37     #include "listener.h"
38     #include "numeric.h"
39     #include "packet.h"
40     #include "irc_res.h"
41     #include "restart.h"
42     #include "s_auth.h"
43 michael 1309 #include "conf.h"
44     #include "log.h"
45 adx 30 #include "s_serv.h"
46     #include "send.h"
47     #include "memory.h"
48     #include "s_user.h"
49     #include "hook.h"
50    
51     static const char *comm_err_str[] = { "Comm OK", "Error during bind()",
52     "Error during DNS lookup", "connect timeout", "Error during connect()",
53     "Comm Error" };
54    
55 michael 1013 static void comm_connect_callback(fde_t *, int);
56 adx 30 static PF comm_connect_timeout;
57 michael 992 static void comm_connect_dns_callback(void *, const struct irc_ssaddr *, const char *);
58 adx 30 static PF comm_connect_tryconnect;
59    
60    
61     /* check_can_use_v6()
62     * Check if the system can open AF_INET6 sockets
63     */
64     void
65     check_can_use_v6(void)
66     {
67     #ifdef IPV6
68     int v6;
69    
70     if ((v6 = socket(AF_INET6, SOCK_STREAM, 0)) < 0)
71     ServerInfo.can_use_v6 = 0;
72     else
73     {
74     ServerInfo.can_use_v6 = 1;
75     close(v6);
76     }
77     #else
78     ServerInfo.can_use_v6 = 0;
79     #endif
80     }
81    
82     /* get_sockerr - get the error value from the socket or the current errno
83     *
84     * Get the *real* error from the socket (well try to anyway..).
85     * This may only work when SO_DEBUG is enabled but its worth the
86     * gamble anyway.
87     */
88     int
89     get_sockerr(int fd)
90     {
91     int errtmp = errno;
92     #ifdef SO_ERROR
93     int err = 0;
94     socklen_t len = sizeof(err);
95    
96 michael 967 if (-1 < fd && !getsockopt(fd, SOL_SOCKET, SO_ERROR, &err, &len))
97 adx 30 {
98     if (err)
99     errtmp = err;
100     }
101     errno = errtmp;
102     #endif
103     return errtmp;
104     }
105    
106     /*
107     * report_error - report an error from an errno.
108     * Record error to log and also send a copy to all *LOCAL* opers online.
109     *
110     * text is a *format* string for outputing error. It must
111     * contain only two '%s', the first will be replaced
112     * by the sockhost from the client_p, and the latter will
113     * be taken from sys_errlist[errno].
114     *
115     * client_p if not NULL, is the *LOCAL* client associated with
116     * the error.
117     *
118     * Cannot use perror() within daemon. stderr is closed in
119     * ircd and cannot be used. And, worse yet, it might have
120     * been reassigned to a normal connection...
121     *
122     * Actually stderr is still there IFF ircd was run with -s --Rodder
123     */
124    
125     void
126     report_error(int level, const char* text, const char* who, int error)
127     {
128     who = (who) ? who : "";
129    
130 michael 1618 sendto_realops_flags(UMODE_DEBUG, level, SEND_NOTICE,
131     text, who, strerror(error));
132 michael 1247 ilog(LOG_TYPE_IRCD, text, who, strerror(error));
133 adx 30 }
134    
135     /*
136     * setup_socket()
137     *
138     * Set the socket non-blocking, and other wonderful bits.
139     */
140 michael 2632 static void
141     setup_socket(int fd)
142 adx 30 {
143     int opt = 1;
144    
145 michael 967 setsockopt(fd, IPPROTO_TCP, TCP_NODELAY, &opt, sizeof(opt));
146 adx 30
147     #ifdef IPTOS_LOWDELAY
148     opt = IPTOS_LOWDELAY;
149 michael 967 setsockopt(fd, IPPROTO_IP, IP_TOS, &opt, sizeof(opt));
150 adx 30 #endif
151    
152     fcntl(fd, F_SETFL, fcntl(fd, F_GETFL, 0) | O_NONBLOCK);
153     }
154    
155     /*
156     * close_connection
157     * Close the physical connection. This function must make
158     * MyConnect(client_p) == FALSE, and set client_p->from == NULL.
159     */
160     void
161     close_connection(struct Client *client_p)
162     {
163 michael 1391 dlink_node *ptr = NULL;
164 adx 30
165 michael 1391 assert(client_p);
166 adx 30
167 michael 683 if (!IsDead(client_p))
168     {
169     /* attempt to flush any pending dbufs. Evil, but .. -- adrian */
170     /* there is still a chance that we might send data to this socket
171     * even if it is marked as blocked (COMM_SELECT_READ handler is called
172     * before COMM_SELECT_WRITE). Let's try, nothing to lose.. -adx
173     */
174     ClearSendqBlocked(client_p);
175     send_queued_write(client_p);
176     }
177    
178 michael 1143 if (IsClient(client_p))
179 adx 30 {
180 michael 1143 ++ServerStats.is_cl;
181     ServerStats.is_cbs += client_p->localClient->send.bytes;
182     ServerStats.is_cbr += client_p->localClient->recv.bytes;
183 michael 1241 ServerStats.is_cti += CurrentTime - client_p->localClient->firsttime;
184 michael 1143 }
185     else if (IsServer(client_p))
186     {
187 michael 896 ++ServerStats.is_sv;
188     ServerStats.is_sbs += client_p->localClient->send.bytes;
189     ServerStats.is_sbr += client_p->localClient->recv.bytes;
190 michael 1241 ServerStats.is_sti += CurrentTime - client_p->localClient->firsttime;
191 adx 30
192 michael 1391 DLINK_FOREACH(ptr, server_items.head)
193 adx 30 {
194 michael 1632 struct MaskItem *conf = ptr->data;
195 michael 1391
196     if (irccmp(conf->name, client_p->name))
197     continue;
198    
199 adx 30 /*
200 michael 1391 * Reset next-connect cycle of all connect{} blocks that match
201     * this servername.
202 adx 30 */
203 michael 1649 conf->until = CurrentTime + conf->class->con_freq;
204 adx 30 }
205     }
206     else
207 michael 896 ++ServerStats.is_ni;
208 adx 30
209     #ifdef HAVE_LIBCRYPTO
210     if (client_p->localClient->fd.ssl)
211 michael 451 {
212     SSL_set_shutdown(client_p->localClient->fd.ssl, SSL_RECEIVED_SHUTDOWN);
213    
214     if (!SSL_shutdown(client_p->localClient->fd.ssl))
215     SSL_shutdown(client_p->localClient->fd.ssl);
216     }
217 adx 30 #endif
218     if (client_p->localClient->fd.flags.open)
219     fd_close(&client_p->localClient->fd);
220    
221     dbuf_clear(&client_p->localClient->buf_sendq);
222     dbuf_clear(&client_p->localClient->buf_recvq);
223    
224     MyFree(client_p->localClient->passwd);
225 michael 1632 detach_conf(client_p, CONF_CLIENT|CONF_OPER|CONF_SERVER);
226 adx 30 client_p->from = NULL; /* ...this should catch them! >:) --msa */
227     }
228    
229     #ifdef HAVE_LIBCRYPTO
230     /*
231     * ssl_handshake - let OpenSSL initialize the protocol. Register for
232     * read/write events if necessary.
233     */
234     static void
235     ssl_handshake(int fd, struct Client *client_p)
236     {
237 michael 2228 X509 *cert = NULL;
238 michael 2463 int ret = 0;
239 adx 30
240 michael 2463 if ((ret = SSL_accept(client_p->localClient->fd.ssl)) <= 0)
241     {
242     switch (SSL_get_error(client_p->localClient->fd.ssl, ret))
243     {
244     case SSL_ERROR_WANT_WRITE:
245     comm_setselect(&client_p->localClient->fd, COMM_SELECT_WRITE,
246     (PF *) ssl_handshake, client_p, 0);
247     return;
248    
249     case SSL_ERROR_WANT_READ:
250     comm_setselect(&client_p->localClient->fd, COMM_SELECT_READ,
251     (PF *) ssl_handshake, client_p, 0);
252     return;
253    
254     default:
255     exit_client(client_p, client_p, "Error during SSL handshake");
256     return;
257     }
258     }
259    
260 michael 2228 if ((cert = SSL_get_peer_certificate(client_p->localClient->fd.ssl)))
261     {
262     int res = SSL_get_verify_result(client_p->localClient->fd.ssl);
263 michael 2235 char buf[EVP_MAX_MD_SIZE * 2 + 1] = { '\0' };
264 michael 2287 unsigned char md[EVP_MAX_MD_SIZE] = { '\0' };
265 michael 2228
266     if (res == X509_V_OK || res == X509_V_ERR_SELF_SIGNED_CERT_IN_CHAIN ||
267     res == X509_V_ERR_UNABLE_TO_VERIFY_LEAF_SIGNATURE ||
268     res == X509_V_ERR_DEPTH_ZERO_SELF_SIGNED_CERT)
269 michael 2229 {
270 michael 2235 unsigned int i = 0, n = 0;
271    
272     if (X509_digest(cert, EVP_sha256(), md, &n))
273     {
274     for (; i < n; ++i)
275     snprintf(buf + 2 * i, 3, "%02X", md[i]);
276     client_p->certfp = xstrdup(buf);
277     }
278 michael 2229 }
279 michael 2228 else
280     ilog(LOG_TYPE_IRCD, "Client %s!%s@%s gave bad SSL client certificate: %d",
281     client_p->name, client_p->username, client_p->host, res);
282     X509_free(cert);
283     }
284    
285 michael 2181 start_auth(client_p);
286 adx 30 }
287     #endif
288    
289     /*
290     * add_connection - creates a client which has just connected to us on
291     * the given fd. The sockhost field is initialized with the ip# of the host.
292     * An unique id is calculated now, in case it is needed for auth.
293     * The client is sent to the auth module for verification, and not put in
294     * any client list yet.
295     */
296     void
297 michael 549 add_connection(struct Listener *listener, struct irc_ssaddr *irn, int fd)
298 adx 30 {
299 michael 1123 struct Client *new_client = make_client(NULL);
300 michael 549
301 adx 30 fd_open(&new_client->localClient->fd, fd, 1,
302     (listener->flags & LISTENER_SSL) ?
303     "Incoming SSL connection" : "Incoming connection");
304    
305 michael 1123 /*
306 adx 30 * copy address to 'sockhost' as a string, copy it to host too
307     * so we have something valid to put into error messages...
308     */
309 michael 549 memcpy(&new_client->localClient->ip, irn, sizeof(struct irc_ssaddr));
310 adx 30
311 michael 1123 getnameinfo((struct sockaddr *)&new_client->localClient->ip,
312     new_client->localClient->ip.ss_len, new_client->sockhost,
313     sizeof(new_client->sockhost), NULL, 0, NI_NUMERICHOST);
314 adx 30 new_client->localClient->aftype = new_client->localClient->ip.ss.ss_family;
315 michael 1072
316 michael 1858 #ifdef HAVE_LIBGEOIP
317     /* XXX IPV6 SUPPORT XXX */
318     if (irn->ss.ss_family == AF_INET && geoip_ctx)
319     {
320     const struct sockaddr_in *v4 = (const struct sockaddr_in *)&new_client->localClient->ip;
321     new_client->localClient->country_id = GeoIP_id_by_ipnum(geoip_ctx, (unsigned long)ntohl(v4->sin_addr.s_addr));
322     }
323     #endif
324    
325 michael 1123 if (new_client->sockhost[0] == ':' && new_client->sockhost[1] == ':')
326 adx 30 {
327 michael 1072 strlcpy(new_client->host, "0", sizeof(new_client->host));
328     strlcpy(new_client->host+1, new_client->sockhost, sizeof(new_client->host)-1);
329 michael 1123 memmove(new_client->sockhost+1, new_client->sockhost, sizeof(new_client->sockhost)-1);
330     new_client->sockhost[0] = '0';
331 michael 549 }
332     else
333 michael 1072 strlcpy(new_client->host, new_client->sockhost, sizeof(new_client->host));
334 adx 30
335     new_client->localClient->listener = listener;
336     ++listener->ref_count;
337    
338     #ifdef HAVE_LIBCRYPTO
339 michael 549 if (listener->flags & LISTENER_SSL)
340 adx 30 {
341 michael 967 if ((new_client->localClient->fd.ssl = SSL_new(ServerInfo.server_ctx)) == NULL)
342 adx 30 {
343 michael 1247 ilog(LOG_TYPE_IRCD, "SSL_new() ERROR! -- %s",
344 adx 30 ERR_error_string(ERR_get_error(), NULL));
345    
346     SetDead(new_client);
347     exit_client(new_client, new_client, "SSL_new failed");
348     return;
349     }
350    
351 michael 2246 AddFlag(new_client, FLAGS_SSL);
352 adx 30 SSL_set_fd(new_client->localClient->fd.ssl, fd);
353     ssl_handshake(0, new_client);
354     }
355     else
356     #endif
357 michael 2181 start_auth(new_client);
358 adx 30 }
359    
360     /*
361     * stolen from squid - its a neat (but overused! :) routine which we
362     * can use to see whether we can ignore this errno or not. It is
363     * generally useful for non-blocking network IO related errnos.
364     * -- adrian
365     */
366     int
367     ignoreErrno(int ierrno)
368     {
369     switch (ierrno)
370     {
371     case EINPROGRESS:
372     case EWOULDBLOCK:
373     #if EAGAIN != EWOULDBLOCK
374     case EAGAIN:
375     #endif
376     case EALREADY:
377     case EINTR:
378     #ifdef ERESTART
379     case ERESTART:
380     #endif
381     return 1;
382     default:
383     return 0;
384     }
385     }
386    
387     /*
388     * comm_settimeout() - set the socket timeout
389     *
390     * Set the timeout for the fd
391     */
392     void
393     comm_settimeout(fde_t *fd, time_t timeout, PF *callback, void *cbdata)
394     {
395     assert(fd->flags.open);
396    
397     fd->timeout = CurrentTime + (timeout / 1000);
398     fd->timeout_handler = callback;
399     fd->timeout_data = cbdata;
400     }
401    
402     /*
403     * comm_setflush() - set a flush function
404     *
405     * A flush function is simply a function called if found during
406     * comm_timeouts(). Its basically a second timeout, except in this case
407     * I'm too lazy to implement multiple timeout functions! :-)
408     * its kinda nice to have it separate, since this is designed for
409     * flush functions, and when comm_close() is implemented correctly
410     * with close functions, we _actually_ don't call comm_close() here ..
411     * -- originally Adrian's notes
412     * comm_close() is replaced with fd_close() in fdlist.c
413     */
414     void
415     comm_setflush(fde_t *fd, time_t timeout, PF *callback, void *cbdata)
416     {
417     assert(fd->flags.open);
418    
419     fd->flush_timeout = CurrentTime + (timeout / 1000);
420     fd->flush_handler = callback;
421     fd->flush_data = cbdata;
422     }
423    
424     /*
425     * comm_checktimeouts() - check the socket timeouts
426     *
427     * All this routine does is call the given callback/cbdata, without closing
428     * down the file descriptor. When close handlers have been implemented,
429     * this will happen.
430     */
431     void
432     comm_checktimeouts(void *notused)
433     {
434     int i;
435     fde_t *F;
436     PF *hdl;
437     void *data;
438    
439     for (i = 0; i < FD_HASH_SIZE; i++)
440     for (F = fd_hash[i]; F != NULL; F = fd_next_in_loop)
441     {
442     assert(F->flags.open);
443     fd_next_in_loop = F->hnext;
444    
445     /* check flush functions */
446     if (F->flush_handler && F->flush_timeout > 0 &&
447     F->flush_timeout < CurrentTime)
448     {
449     hdl = F->flush_handler;
450     data = F->flush_data;
451     comm_setflush(F, 0, NULL, NULL);
452     hdl(F, data);
453     }
454    
455     /* check timeouts */
456     if (F->timeout_handler && F->timeout > 0 &&
457     F->timeout < CurrentTime)
458     {
459     /* Call timeout handler */
460     hdl = F->timeout_handler;
461     data = F->timeout_data;
462     comm_settimeout(F, 0, NULL, NULL);
463     hdl(F, data);
464     }
465     }
466     }
467    
468     /*
469     * void comm_connect_tcp(int fd, const char *host, unsigned short port,
470     * struct sockaddr *clocal, int socklen,
471     * CNCB *callback, void *data, int aftype, int timeout)
472     * Input: An fd to connect with, a host and port to connect to,
473     * a local sockaddr to connect from + length(or NULL to use the
474     * default), a callback, the data to pass into the callback, the
475     * address family.
476     * Output: None.
477     * Side-effects: A non-blocking connection to the host is started, and
478     * if necessary, set up for selection. The callback given
479     * may be called now, or it may be called later.
480     */
481     void
482     comm_connect_tcp(fde_t *fd, const char *host, unsigned short port,
483     struct sockaddr *clocal, int socklen, CNCB *callback,
484     void *data, int aftype, int timeout)
485     {
486     struct addrinfo hints, *res;
487 michael 992 char portname[PORTNAMELEN + 1];
488 adx 30
489     assert(callback);
490     fd->connect.callback = callback;
491     fd->connect.data = data;
492    
493     fd->connect.hostaddr.ss.ss_family = aftype;
494     fd->connect.hostaddr.ss_port = htons(port);
495    
496     /* Note that we're using a passed sockaddr here. This is because
497     * generally you'll be bind()ing to a sockaddr grabbed from
498     * getsockname(), so this makes things easier.
499     * XXX If NULL is passed as local, we should later on bind() to the
500     * virtual host IP, for completeness.
501     * -- adrian
502     */
503     if ((clocal != NULL) && (bind(fd->fd, clocal, socklen) < 0))
504     {
505     /* Failure, call the callback with COMM_ERR_BIND */
506     comm_connect_callback(fd, COMM_ERR_BIND);
507     /* ... and quit */
508     return;
509     }
510    
511     /* Next, if we have been given an IP, get the addr and skip the
512     * DNS check (and head direct to comm_connect_tryconnect().
513     */
514     memset(&hints, 0, sizeof(hints));
515     hints.ai_family = AF_UNSPEC;
516     hints.ai_socktype = SOCK_STREAM;
517     hints.ai_flags = AI_PASSIVE | AI_NUMERICHOST;
518    
519 michael 992 snprintf(portname, sizeof(portname), "%d", port);
520 adx 30
521 michael 1123 if (getaddrinfo(host, portname, &hints, &res))
522 adx 30 {
523     /* Send the DNS request, for the next level */
524 db 871 if (aftype == AF_INET6)
525 michael 992 gethost_byname_type(comm_connect_dns_callback, fd, host, T_AAAA);
526 db 871 else
527 michael 992 gethost_byname_type(comm_connect_dns_callback, fd, host, T_A);
528 adx 30 }
529     else
530     {
531     /* We have a valid IP, so we just call tryconnect */
532     /* Make sure we actually set the timeout here .. */
533     assert(res != NULL);
534     memcpy(&fd->connect.hostaddr, res->ai_addr, res->ai_addrlen);
535     fd->connect.hostaddr.ss_len = res->ai_addrlen;
536     fd->connect.hostaddr.ss.ss_family = res->ai_family;
537 michael 1123 freeaddrinfo(res);
538 adx 30 comm_settimeout(fd, timeout*1000, comm_connect_timeout, NULL);
539     comm_connect_tryconnect(fd, NULL);
540     }
541     }
542    
543     /*
544     * comm_connect_callback() - call the callback, and continue with life
545     */
546     static void
547     comm_connect_callback(fde_t *fd, int status)
548     {
549     CNCB *hdl;
550    
551     /* This check is gross..but probably necessary */
552     if (fd->connect.callback == NULL)
553     return;
554    
555     /* Clear the connect flag + handler */
556     hdl = fd->connect.callback;
557     fd->connect.callback = NULL;
558    
559     /* Clear the timeout handler */
560     comm_settimeout(fd, 0, NULL, NULL);
561    
562     /* Call the handler */
563     hdl(fd, status, fd->connect.data);
564     }
565    
566     /*
567     * comm_connect_timeout() - this gets called when the socket connection
568     * times out. This *only* can be called once connect() is initially
569     * called ..
570     */
571     static void
572     comm_connect_timeout(fde_t *fd, void *notused)
573     {
574     /* error! */
575     comm_connect_callback(fd, COMM_ERR_TIMEOUT);
576     }
577    
578     /*
579     * comm_connect_dns_callback() - called at the completion of the DNS request
580     *
581     * The DNS request has completed, so if we've got an error, return it,
582     * otherwise we initiate the connect()
583     */
584     static void
585 michael 992 comm_connect_dns_callback(void *vptr, const struct irc_ssaddr *addr, const char *name)
586 adx 30 {
587     fde_t *F = vptr;
588    
589 michael 992 if (name == NULL)
590 adx 30 {
591     comm_connect_callback(F, COMM_ERR_DNS);
592     return;
593     }
594    
595     /* No error, set a 10 second timeout */
596     comm_settimeout(F, 30*1000, comm_connect_timeout, NULL);
597    
598     /* Copy over the DNS reply info so we can use it in the connect() */
599     /*
600     * Note we don't fudge the refcount here, because we aren't keeping
601     * the DNS record around, and the DNS cache is gone anyway..
602     * -- adrian
603     */
604 michael 992 memcpy(&F->connect.hostaddr, addr, addr->ss_len);
605 adx 30 /* The cast is hacky, but safe - port offset is same on v4 and v6 */
606     ((struct sockaddr_in *) &F->connect.hostaddr)->sin_port =
607     F->connect.hostaddr.ss_port;
608 michael 992 F->connect.hostaddr.ss_len = addr->ss_len;
609 adx 30
610     /* Now, call the tryconnect() routine to try a connect() */
611     comm_connect_tryconnect(F, NULL);
612     }
613    
614     /* static void comm_connect_tryconnect(int fd, void *notused)
615     * Input: The fd, the handler data(unused).
616     * Output: None.
617     * Side-effects: Try and connect with pending connect data for the FD. If
618     * we succeed or get a fatal error, call the callback.
619     * Otherwise, it is still blocking or something, so register
620     * to select for a write event on this FD.
621     */
622     static void
623     comm_connect_tryconnect(fde_t *fd, void *notused)
624     {
625     int retval;
626    
627     /* This check is needed or re-entrant s_bsd_* like sigio break it. */
628     if (fd->connect.callback == NULL)
629     return;
630    
631     /* Try the connect() */
632     retval = connect(fd->fd, (struct sockaddr *) &fd->connect.hostaddr,
633     fd->connect.hostaddr.ss_len);
634    
635     /* Error? */
636     if (retval < 0)
637     {
638     /*
639     * If we get EISCONN, then we've already connect()ed the socket,
640     * which is a good thing.
641     * -- adrian
642     */
643     if (errno == EISCONN)
644     comm_connect_callback(fd, COMM_OK);
645     else if (ignoreErrno(errno))
646     /* Ignore error? Reschedule */
647     comm_setselect(fd, COMM_SELECT_WRITE, comm_connect_tryconnect,
648     NULL, 0);
649     else
650     /* Error? Fail with COMM_ERR_CONNECT */
651     comm_connect_callback(fd, COMM_ERR_CONNECT);
652     return;
653     }
654    
655     /* If we get here, we've suceeded, so call with COMM_OK */
656     comm_connect_callback(fd, COMM_OK);
657     }
658    
659     /*
660     * comm_errorstr() - return an error string for the given error condition
661     */
662     const char *
663     comm_errstr(int error)
664     {
665     if (error < 0 || error >= COMM_ERR_MAX)
666     return "Invalid error number!";
667     return comm_err_str[error];
668     }
669    
670     /*
671     * comm_open() - open a socket
672     *
673     * This is a highly highly cut down version of squid's comm_open() which
674     * for the most part emulates socket(), *EXCEPT* it fails if we're about
675     * to run out of file descriptors.
676     */
677     int
678     comm_open(fde_t *F, int family, int sock_type, int proto, const char *note)
679     {
680     int fd;
681    
682     /* First, make sure we aren't going to run out of file descriptors */
683     if (number_fd >= hard_fdlimit)
684     {
685     errno = ENFILE;
686     return -1;
687     }
688    
689     /*
690     * Next, we try to open the socket. We *should* drop the reserved FD
691     * limit if/when we get an error, but we can deal with that later.
692     * XXX !!! -- adrian
693     */
694     fd = socket(family, sock_type, proto);
695     if (fd < 0)
696     return -1; /* errno will be passed through, yay.. */
697    
698 michael 2632 setup_socket(fd);
699 adx 30
700     /* update things in our fd tracking */
701     fd_open(F, fd, 1, note);
702     return 0;
703     }
704    
705     /*
706     * comm_accept() - accept an incoming connection
707     *
708     * This is a simple wrapper for accept() which enforces FD limits like
709     * comm_open() does. Returned fd must be either closed or tagged with
710     * fd_open (this function no longer does it).
711     */
712     int
713     comm_accept(struct Listener *lptr, struct irc_ssaddr *pn)
714     {
715     int newfd;
716     socklen_t addrlen = sizeof(struct irc_ssaddr);
717    
718     if (number_fd >= hard_fdlimit)
719     {
720     errno = ENFILE;
721     return -1;
722     }
723    
724     /*
725     * Next, do the accept(). if we get an error, we should drop the
726     * reserved fd limit, but we can deal with that when comm_open()
727     * also does it. XXX -- adrian
728     */
729 michael 1013 newfd = accept(lptr->fd.fd, (struct sockaddr *)pn, &addrlen);
730 adx 30 if (newfd < 0)
731     return -1;
732    
733     #ifdef IPV6
734     remove_ipv6_mapping(pn);
735     #else
736     pn->ss_len = addrlen;
737     #endif
738    
739 michael 2632 setup_socket(newfd);
740 adx 30
741     /* .. and return */
742     return newfd;
743     }
744    
745     /*
746     * remove_ipv6_mapping() - Removes IPv4-In-IPv6 mapping from an address
747 michael 1122 * OSes with IPv6 mapping listening on both
748 adx 30 * AF_INET and AF_INET6 map AF_INET connections inside AF_INET6 structures
749     *
750     */
751     #ifdef IPV6
752     void
753     remove_ipv6_mapping(struct irc_ssaddr *addr)
754     {
755     if (addr->ss.ss_family == AF_INET6)
756     {
757 michael 1122 if (IN6_IS_ADDR_V4MAPPED(&((struct sockaddr_in6 *)addr)->sin6_addr))
758     {
759     struct sockaddr_in6 v6;
760     struct sockaddr_in *v4 = (struct sockaddr_in *)addr;
761 adx 30
762 michael 1122 memcpy(&v6, addr, sizeof(v6));
763     memset(v4, 0, sizeof(struct sockaddr_in));
764     memcpy(&v4->sin_addr, &v6.sin6_addr.s6_addr[12], sizeof(v4->sin_addr));
765    
766 adx 30 addr->ss.ss_family = AF_INET;
767     addr->ss_len = sizeof(struct sockaddr_in);
768     }
769     else
770     addr->ss_len = sizeof(struct sockaddr_in6);
771     }
772     else
773     addr->ss_len = sizeof(struct sockaddr_in);
774     }
775     #endif

Properties

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svn:eol-style native
svn:keywords Id Revision