Dnsmasq 2.67rc4 + Simon's tweaks up & incl 21 Oct 2013 20:47
[tomato.git] / release / src / router / dnsmasq / src / forward.c
blob7ed88801b40ff8f23c7cc75b1e4c33fcd40aeba6
1 /* dnsmasq is Copyright (c) 2000-2013 Simon Kelley
3 This program is free software; you can redistribute it and/or modify
4 it under the terms of the GNU General Public License as published by
5 the Free Software Foundation; version 2 dated June, 1991, or
6 (at your option) version 3 dated 29 June, 2007.
8 This program is distributed in the hope that it will be useful,
9 but WITHOUT ANY WARRANTY; without even the implied warranty of
10 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
11 GNU General Public License for more details.
13 You should have received a copy of the GNU General Public License
14 along with this program. If not, see <http://www.gnu.org/licenses/>.
17 #include "dnsmasq.h"
19 static struct frec *lookup_frec(unsigned short id, unsigned int crc);
20 static struct frec *lookup_frec_by_sender(unsigned short id,
21 union mysockaddr *addr,
22 unsigned int crc);
23 static unsigned short get_id(unsigned int crc);
24 static void free_frec(struct frec *f);
25 static struct randfd *allocate_rfd(int family);
27 /* Send a UDP packet with its source address set as "source"
28 unless nowild is true, when we just send it with the kernel default */
29 int send_from(int fd, int nowild, char *packet, size_t len,
30 union mysockaddr *to, struct all_addr *source,
31 unsigned int iface)
33 struct msghdr msg;
34 struct iovec iov[1];
35 union {
36 struct cmsghdr align; /* this ensures alignment */
37 #if defined(HAVE_LINUX_NETWORK)
38 char control[CMSG_SPACE(sizeof(struct in_pktinfo))];
39 #elif defined(IP_SENDSRCADDR)
40 char control[CMSG_SPACE(sizeof(struct in_addr))];
41 #endif
42 #ifdef HAVE_IPV6
43 char control6[CMSG_SPACE(sizeof(struct in6_pktinfo))];
44 #endif
45 } control_u;
47 iov[0].iov_base = packet;
48 iov[0].iov_len = len;
50 msg.msg_control = NULL;
51 msg.msg_controllen = 0;
52 msg.msg_flags = 0;
53 msg.msg_name = to;
54 msg.msg_namelen = sa_len(to);
55 msg.msg_iov = iov;
56 msg.msg_iovlen = 1;
58 if (!nowild)
60 struct cmsghdr *cmptr;
61 msg.msg_control = &control_u;
62 msg.msg_controllen = sizeof(control_u);
63 cmptr = CMSG_FIRSTHDR(&msg);
65 if (to->sa.sa_family == AF_INET)
67 #if defined(HAVE_LINUX_NETWORK)
68 struct in_pktinfo p;
69 p.ipi_ifindex = 0;
70 p.ipi_spec_dst = source->addr.addr4;
71 memcpy(CMSG_DATA(cmptr), &p, sizeof(p));
72 msg.msg_controllen = cmptr->cmsg_len = CMSG_LEN(sizeof(struct in_pktinfo));
73 cmptr->cmsg_level = IPPROTO_IP;
74 cmptr->cmsg_type = IP_PKTINFO;
75 #elif defined(IP_SENDSRCADDR)
76 memcpy(CMSG_DATA(cmptr), &(source->addr.addr4), sizeof(source->addr.addr4));
77 msg.msg_controllen = cmptr->cmsg_len = CMSG_LEN(sizeof(struct in_addr));
78 cmptr->cmsg_level = IPPROTO_IP;
79 cmptr->cmsg_type = IP_SENDSRCADDR;
80 #endif
82 else
83 #ifdef HAVE_IPV6
85 struct in6_pktinfo p;
86 p.ipi6_ifindex = iface; /* Need iface for IPv6 to handle link-local addrs */
87 p.ipi6_addr = source->addr.addr6;
88 memcpy(CMSG_DATA(cmptr), &p, sizeof(p));
89 msg.msg_controllen = cmptr->cmsg_len = CMSG_LEN(sizeof(struct in6_pktinfo));
90 cmptr->cmsg_type = daemon->v6pktinfo;
91 cmptr->cmsg_level = IPPROTO_IPV6;
93 #else
94 (void)iface; /* eliminate warning */
95 #endif
98 while (sendmsg(fd, &msg, 0) == -1)
100 if (retry_send())
101 continue;
103 /* If interface is still in DAD, EINVAL results - ignore that. */
104 if (errno == EINVAL)
105 break;
107 my_syslog(LOG_ERR, _("failed to send packet: %s"), strerror(errno));
108 return 0;
111 return 1;
114 static unsigned int search_servers(time_t now, struct all_addr **addrpp,
115 unsigned int qtype, char *qdomain, int *type, char **domain, int *norebind)
118 /* If the query ends in the domain in one of our servers, set
119 domain to point to that name. We find the largest match to allow both
120 domain.org and sub.domain.org to exist. */
122 unsigned int namelen = strlen(qdomain);
123 unsigned int matchlen = 0;
124 struct server *serv;
125 unsigned int flags = 0;
127 for (serv = daemon->servers; serv; serv=serv->next)
128 /* domain matches take priority over NODOTS matches */
129 if ((serv->flags & SERV_FOR_NODOTS) && *type != SERV_HAS_DOMAIN && !strchr(qdomain, '.') && namelen != 0)
131 unsigned int sflag = serv->addr.sa.sa_family == AF_INET ? F_IPV4 : F_IPV6;
132 *type = SERV_FOR_NODOTS;
133 if (serv->flags & SERV_NO_ADDR)
134 flags = F_NXDOMAIN;
135 else if (serv->flags & SERV_LITERAL_ADDRESS)
137 if (sflag & qtype)
139 flags = sflag;
140 if (serv->addr.sa.sa_family == AF_INET)
141 *addrpp = (struct all_addr *)&serv->addr.in.sin_addr;
142 #ifdef HAVE_IPV6
143 else
144 *addrpp = (struct all_addr *)&serv->addr.in6.sin6_addr;
145 #endif
147 else if (!flags || (flags & F_NXDOMAIN))
148 flags = F_NOERR;
151 else if (serv->flags & SERV_HAS_DOMAIN)
153 unsigned int domainlen = strlen(serv->domain);
154 char *matchstart = qdomain + namelen - domainlen;
155 if (namelen >= domainlen &&
156 hostname_isequal(matchstart, serv->domain) &&
157 (domainlen == 0 || namelen == domainlen || *(matchstart-1) == '.' ))
159 if (serv->flags & SERV_NO_REBIND)
160 *norebind = 1;
161 else
163 unsigned int sflag = serv->addr.sa.sa_family == AF_INET ? F_IPV4 : F_IPV6;
164 /* implement priority rules for --address and --server for same domain.
165 --address wins if the address is for the correct AF
166 --server wins otherwise. */
167 if (domainlen != 0 && domainlen == matchlen)
169 if ((serv->flags & SERV_LITERAL_ADDRESS))
171 if (!(sflag & qtype) && flags == 0)
172 continue;
174 else
176 if (flags & (F_IPV4 | F_IPV6))
177 continue;
181 if (domainlen >= matchlen)
183 *type = serv->flags & (SERV_HAS_DOMAIN | SERV_USE_RESOLV | SERV_NO_REBIND);
184 *domain = serv->domain;
185 matchlen = domainlen;
186 if (serv->flags & SERV_NO_ADDR)
187 flags = F_NXDOMAIN;
188 else if (serv->flags & SERV_LITERAL_ADDRESS)
190 if (sflag & qtype)
192 flags = sflag;
193 if (serv->addr.sa.sa_family == AF_INET)
194 *addrpp = (struct all_addr *)&serv->addr.in.sin_addr;
195 #ifdef HAVE_IPV6
196 else
197 *addrpp = (struct all_addr *)&serv->addr.in6.sin6_addr;
198 #endif
200 else if (!flags || (flags & F_NXDOMAIN))
201 flags = F_NOERR;
203 else
204 flags = 0;
210 if (flags == 0 && !(qtype & F_QUERY) &&
211 option_bool(OPT_NODOTS_LOCAL) && !strchr(qdomain, '.') && namelen != 0)
212 /* don't forward A or AAAA queries for simple names, except the empty name */
213 flags = F_NOERR;
215 if (flags == F_NXDOMAIN && check_for_local_domain(qdomain, now))
216 flags = F_NOERR;
218 if (flags)
220 int logflags = 0;
222 if (flags == F_NXDOMAIN || flags == F_NOERR)
223 logflags = F_NEG | qtype;
225 log_query(logflags | flags | F_CONFIG | F_FORWARD, qdomain, *addrpp, NULL);
227 else if ((*type) & SERV_USE_RESOLV)
229 *type = 0; /* use normal servers for this domain */
230 *domain = NULL;
232 return flags;
235 static int forward_query(int udpfd, union mysockaddr *udpaddr,
236 struct all_addr *dst_addr, unsigned int dst_iface,
237 struct dns_header *header, size_t plen, time_t now, struct frec *forward)
239 char *domain = NULL;
240 int type = 0, norebind = 0;
241 struct all_addr *addrp = NULL;
242 unsigned int crc = questions_crc(header, plen, daemon->namebuff);
243 unsigned int flags = 0;
244 unsigned int gotname = extract_request(header, plen, daemon->namebuff, NULL);
245 struct server *start = NULL;
247 /* RFC 4035: sect 4.6 para 2 */
248 header->hb4 &= ~HB4_AD;
250 /* may be no servers available. */
251 if (!daemon->servers)
252 forward = NULL;
253 else if (forward || (forward = lookup_frec_by_sender(ntohs(header->id), udpaddr, crc)))
255 /* retry on existing query, send to all available servers */
256 domain = forward->sentto->domain;
257 forward->sentto->failed_queries++;
258 if (!option_bool(OPT_ORDER))
260 forward->forwardall = 1;
261 daemon->last_server = NULL;
263 type = forward->sentto->flags & SERV_TYPE;
264 if (!(start = forward->sentto->next))
265 start = daemon->servers; /* at end of list, recycle */
266 header->id = htons(forward->new_id);
268 else
270 if (gotname)
271 flags = search_servers(now, &addrp, gotname, daemon->namebuff, &type, &domain, &norebind);
273 if (!flags && !(forward = get_new_frec(now, NULL)))
274 /* table full - server failure. */
275 flags = F_NEG;
277 if (forward)
279 forward->source = *udpaddr;
280 forward->dest = *dst_addr;
281 forward->iface = dst_iface;
282 forward->orig_id = ntohs(header->id);
283 forward->new_id = get_id(crc);
284 forward->fd = udpfd;
285 forward->crc = crc;
286 forward->forwardall = 0;
287 forward->flags = 0;
288 if (norebind)
289 forward->flags |= FREC_NOREBIND;
290 if (header->hb4 & HB4_CD)
291 forward->flags |= FREC_CHECKING_DISABLED;
293 header->id = htons(forward->new_id);
295 /* In strict_order mode, always try servers in the order
296 specified in resolv.conf, if a domain is given
297 always try all the available servers,
298 otherwise, use the one last known to work. */
300 if (type == 0)
302 if (option_bool(OPT_ORDER))
303 start = daemon->servers;
304 else if (!(start = daemon->last_server) ||
305 daemon->forwardcount++ > FORWARD_TEST ||
306 difftime(now, daemon->forwardtime) > FORWARD_TIME)
308 start = daemon->servers;
309 forward->forwardall = 1;
310 daemon->forwardcount = 0;
311 daemon->forwardtime = now;
314 else
316 start = daemon->servers;
317 if (!option_bool(OPT_ORDER))
318 forward->forwardall = 1;
323 /* check for send errors here (no route to host)
324 if we fail to send to all nameservers, send back an error
325 packet straight away (helps modem users when offline) */
327 if (!flags && forward)
329 struct server *firstsentto = start;
330 int forwarded = 0;
332 if (option_bool(OPT_ADD_MAC))
333 plen = add_mac(header, plen, ((char *) header) + PACKETSZ, &forward->source);
335 if (option_bool(OPT_CLIENT_SUBNET))
337 size_t new = add_source_addr(header, plen, ((char *) header) + PACKETSZ, &forward->source);
338 if (new != plen)
340 plen = new;
341 forward->flags |= FREC_HAS_SUBNET;
345 while (1)
347 /* only send to servers dealing with our domain.
348 domain may be NULL, in which case server->domain
349 must be NULL also. */
351 if (type == (start->flags & SERV_TYPE) &&
352 (type != SERV_HAS_DOMAIN || hostname_isequal(domain, start->domain)) &&
353 !(start->flags & SERV_LITERAL_ADDRESS))
355 int fd;
357 /* find server socket to use, may need to get random one. */
358 if (start->sfd)
359 fd = start->sfd->fd;
360 else
362 #ifdef HAVE_IPV6
363 if (start->addr.sa.sa_family == AF_INET6)
365 if (!forward->rfd6 &&
366 !(forward->rfd6 = allocate_rfd(AF_INET6)))
367 break;
368 daemon->rfd_save = forward->rfd6;
369 fd = forward->rfd6->fd;
371 else
372 #endif
374 if (!forward->rfd4 &&
375 !(forward->rfd4 = allocate_rfd(AF_INET)))
376 break;
377 daemon->rfd_save = forward->rfd4;
378 fd = forward->rfd4->fd;
381 #ifdef HAVE_CONNTRACK
382 /* Copy connection mark of incoming query to outgoing connection. */
383 if (option_bool(OPT_CONNTRACK))
385 unsigned int mark;
386 if (get_incoming_mark(&forward->source, &forward->dest, 0, &mark))
387 setsockopt(fd, SOL_SOCKET, SO_MARK, &mark, sizeof(unsigned int));
389 #endif
392 if (sendto(fd, (char *)header, plen, 0,
393 &start->addr.sa,
394 sa_len(&start->addr)) == -1)
396 if (retry_send())
397 continue;
399 else
401 /* Keep info in case we want to re-send this packet */
402 daemon->srv_save = start;
403 daemon->packet_len = plen;
405 if (!gotname)
406 strcpy(daemon->namebuff, "query");
407 if (start->addr.sa.sa_family == AF_INET)
408 log_query(F_SERVER | F_IPV4 | F_FORWARD, daemon->namebuff,
409 (struct all_addr *)&start->addr.in.sin_addr, NULL);
410 #ifdef HAVE_IPV6
411 else
412 log_query(F_SERVER | F_IPV6 | F_FORWARD, daemon->namebuff,
413 (struct all_addr *)&start->addr.in6.sin6_addr, NULL);
414 #endif
415 start->queries++;
416 forwarded = 1;
417 forward->sentto = start;
418 if (!forward->forwardall)
419 break;
420 forward->forwardall++;
424 if (!(start = start->next))
425 start = daemon->servers;
427 if (start == firstsentto)
428 break;
431 if (forwarded)
432 return 1;
434 /* could not send on, prepare to return */
435 header->id = htons(forward->orig_id);
436 free_frec(forward); /* cancel */
439 /* could not send on, return empty answer or address if known for whole domain */
440 if (udpfd != -1)
442 plen = setup_reply(header, plen, addrp, flags, daemon->local_ttl);
443 send_from(udpfd, option_bool(OPT_NOWILD) || option_bool(OPT_CLEVERBIND), (char *)header, plen, udpaddr, dst_addr, dst_iface);
446 return 0;
449 static size_t process_reply(struct dns_header *header, time_t now, struct server *server, size_t n, int check_rebind,
450 int checking_disabled, int check_subnet, union mysockaddr *query_source)
452 unsigned char *pheader, *sizep;
453 char **sets = 0;
454 int munged = 0, is_sign;
455 size_t plen;
457 #ifdef HAVE_IPSET
458 /* Similar algorithm to search_servers. */
459 struct ipsets *ipset_pos;
460 unsigned int namelen = strlen(daemon->namebuff);
461 unsigned int matchlen = 0;
462 for (ipset_pos = daemon->ipsets; ipset_pos; ipset_pos = ipset_pos->next)
464 unsigned int domainlen = strlen(ipset_pos->domain);
465 char *matchstart = daemon->namebuff + namelen - domainlen;
466 if (namelen >= domainlen && hostname_isequal(matchstart, ipset_pos->domain) &&
467 (domainlen == 0 || namelen == domainlen || *(matchstart - 1) == '.' ) &&
468 domainlen >= matchlen) {
469 matchlen = domainlen;
470 sets = ipset_pos->sets;
473 #endif
475 /* If upstream is advertising a larger UDP packet size
476 than we allow, trim it so that we don't get overlarge
477 requests for the client. We can't do this for signed packets. */
479 if ((pheader = find_pseudoheader(header, n, &plen, &sizep, &is_sign)))
481 if (!is_sign)
483 unsigned short udpsz;
484 unsigned char *psave = sizep;
486 GETSHORT(udpsz, sizep);
487 if (udpsz > daemon->edns_pktsz)
488 PUTSHORT(daemon->edns_pktsz, psave);
491 if (check_subnet && !check_source(header, plen, pheader, query_source))
493 my_syslog(LOG_WARNING, _("discarding DNS reply: subnet option mismatch"));
494 return 0;
499 /* RFC 4035 sect 4.6 para 3 */
500 if (!is_sign && !option_bool(OPT_DNSSEC))
501 header->hb4 &= ~HB4_AD;
503 if (OPCODE(header) != QUERY || (RCODE(header) != NOERROR && RCODE(header) != NXDOMAIN))
504 return n;
506 /* Complain loudly if the upstream server is non-recursive. */
507 if (!(header->hb4 & HB4_RA) && RCODE(header) == NOERROR && ntohs(header->ancount) == 0 &&
508 server && !(server->flags & SERV_WARNED_RECURSIVE))
510 prettyprint_addr(&server->addr, daemon->namebuff);
511 my_syslog(LOG_WARNING, _("nameserver %s refused to do a recursive query"), daemon->namebuff);
512 if (!option_bool(OPT_LOG))
513 server->flags |= SERV_WARNED_RECURSIVE;
516 if (daemon->bogus_addr && RCODE(header) != NXDOMAIN &&
517 check_for_bogus_wildcard(header, n, daemon->namebuff, daemon->bogus_addr, now))
519 munged = 1;
520 SET_RCODE(header, NXDOMAIN);
521 header->hb3 &= ~HB3_AA;
523 else
525 if (RCODE(header) == NXDOMAIN &&
526 extract_request(header, n, daemon->namebuff, NULL) &&
527 check_for_local_domain(daemon->namebuff, now))
529 /* if we forwarded a query for a locally known name (because it was for
530 an unknown type) and the answer is NXDOMAIN, convert that to NODATA,
531 since we know that the domain exists, even if upstream doesn't */
532 munged = 1;
533 header->hb3 |= HB3_AA;
534 SET_RCODE(header, NOERROR);
537 if (extract_addresses(header, n, daemon->namebuff, now, sets, is_sign, check_rebind, checking_disabled))
539 my_syslog(LOG_WARNING, _("possible DNS-rebind attack detected: %s"), daemon->namebuff);
540 munged = 1;
544 /* do this after extract_addresses. Ensure NODATA reply and remove
545 nameserver info. */
547 if (munged)
549 header->ancount = htons(0);
550 header->nscount = htons(0);
551 header->arcount = htons(0);
554 /* the bogus-nxdomain stuff, doctor and NXDOMAIN->NODATA munging can all elide
555 sections of the packet. Find the new length here and put back pseudoheader
556 if it was removed. */
557 return resize_packet(header, n, pheader, plen);
560 /* sets new last_server */
561 void reply_query(int fd, int family, time_t now)
563 /* packet from peer server, extract data for cache, and send to
564 original requester */
565 struct dns_header *header;
566 union mysockaddr serveraddr;
567 struct frec *forward;
568 socklen_t addrlen = sizeof(serveraddr);
569 ssize_t n = recvfrom(fd, daemon->packet, daemon->edns_pktsz, 0, &serveraddr.sa, &addrlen);
570 size_t nn;
571 struct server *server;
573 /* packet buffer overwritten */
574 daemon->srv_save = NULL;
576 /* Determine the address of the server replying so that we can mark that as good */
577 serveraddr.sa.sa_family = family;
578 #ifdef HAVE_IPV6
579 if (serveraddr.sa.sa_family == AF_INET6)
580 serveraddr.in6.sin6_flowinfo = 0;
581 #endif
583 /* spoof check: answer must come from known server, */
584 for (server = daemon->servers; server; server = server->next)
585 if (!(server->flags & (SERV_LITERAL_ADDRESS | SERV_NO_ADDR)) &&
586 sockaddr_isequal(&server->addr, &serveraddr))
587 break;
589 header = (struct dns_header *)daemon->packet;
591 if (!server ||
592 n < (int)sizeof(struct dns_header) || !(header->hb3 & HB3_QR) ||
593 !(forward = lookup_frec(ntohs(header->id), questions_crc(header, n, daemon->namebuff))))
594 return;
596 server = forward->sentto;
598 if ((RCODE(header) == SERVFAIL || RCODE(header) == REFUSED) &&
599 !option_bool(OPT_ORDER) &&
600 forward->forwardall == 0)
601 /* for broken servers, attempt to send to another one. */
603 unsigned char *pheader;
604 size_t plen;
605 int is_sign;
607 /* recreate query from reply */
608 pheader = find_pseudoheader(header, (size_t)n, &plen, NULL, &is_sign);
609 if (!is_sign)
611 header->ancount = htons(0);
612 header->nscount = htons(0);
613 header->arcount = htons(0);
614 if ((nn = resize_packet(header, (size_t)n, pheader, plen)))
616 header->hb3 &= ~(HB3_QR | HB3_TC);
617 forward_query(-1, NULL, NULL, 0, header, nn, now, forward);
618 return;
623 if ((forward->sentto->flags & SERV_TYPE) == 0)
625 if (RCODE(header) == SERVFAIL || RCODE(header) == REFUSED)
626 server = NULL;
627 else
629 struct server *last_server;
631 /* find good server by address if possible, otherwise assume the last one we sent to */
632 for (last_server = daemon->servers; last_server; last_server = last_server->next)
633 if (!(last_server->flags & (SERV_LITERAL_ADDRESS | SERV_HAS_DOMAIN | SERV_FOR_NODOTS | SERV_NO_ADDR)) &&
634 sockaddr_isequal(&last_server->addr, &serveraddr))
636 server = last_server;
637 break;
640 if (!option_bool(OPT_ALL_SERVERS))
641 daemon->last_server = server;
644 /* If the answer is an error, keep the forward record in place in case
645 we get a good reply from another server. Kill it when we've
646 had replies from all to avoid filling the forwarding table when
647 everything is broken */
648 if (forward->forwardall == 0 || --forward->forwardall == 1 ||
649 (RCODE(header) != REFUSED && RCODE(header) != SERVFAIL))
651 int check_rebind = !(forward->flags & FREC_NOREBIND);
653 if (!option_bool(OPT_NO_REBIND))
654 check_rebind = 0;
656 if ((nn = process_reply(header, now, server, (size_t)n, check_rebind, forward->flags & FREC_CHECKING_DISABLED,
657 forward->flags & FREC_HAS_SUBNET, &forward->source)))
659 header->id = htons(forward->orig_id);
660 header->hb4 |= HB4_RA; /* recursion if available */
661 send_from(forward->fd, option_bool(OPT_NOWILD) || option_bool (OPT_CLEVERBIND), daemon->packet, nn,
662 &forward->source, &forward->dest, forward->iface);
664 free_frec(forward); /* cancel */
669 void receive_query(struct listener *listen, time_t now)
671 struct dns_header *header = (struct dns_header *)daemon->packet;
672 union mysockaddr source_addr;
673 unsigned short type;
674 struct all_addr dst_addr;
675 struct in_addr netmask, dst_addr_4;
676 size_t m;
677 ssize_t n;
678 int if_index = 0;
679 int local_auth = 0, auth_dns = 0;
680 struct iovec iov[1];
681 struct msghdr msg;
682 struct cmsghdr *cmptr;
683 union {
684 struct cmsghdr align; /* this ensures alignment */
685 #ifdef HAVE_IPV6
686 char control6[CMSG_SPACE(sizeof(struct in6_pktinfo))];
687 #endif
688 #if defined(HAVE_LINUX_NETWORK)
689 char control[CMSG_SPACE(sizeof(struct in_pktinfo))];
690 #elif defined(IP_RECVDSTADDR) && defined(HAVE_SOLARIS_NETWORK)
691 char control[CMSG_SPACE(sizeof(struct in_addr)) +
692 CMSG_SPACE(sizeof(unsigned int))];
693 #elif defined(IP_RECVDSTADDR)
694 char control[CMSG_SPACE(sizeof(struct in_addr)) +
695 CMSG_SPACE(sizeof(struct sockaddr_dl))];
696 #endif
697 } control_u;
699 /* packet buffer overwritten */
700 daemon->srv_save = NULL;
702 dst_addr_4.s_addr = 0;
703 netmask.s_addr = 0;
705 if (option_bool(OPT_NOWILD) && listen->iface)
707 auth_dns = listen->iface->dns_auth;
709 if (listen->family == AF_INET)
711 dst_addr_4 = listen->iface->addr.in.sin_addr;
712 netmask = listen->iface->netmask;
716 iov[0].iov_base = daemon->packet;
717 iov[0].iov_len = daemon->edns_pktsz;
719 msg.msg_control = control_u.control;
720 msg.msg_controllen = sizeof(control_u);
721 msg.msg_flags = 0;
722 msg.msg_name = &source_addr;
723 msg.msg_namelen = sizeof(source_addr);
724 msg.msg_iov = iov;
725 msg.msg_iovlen = 1;
727 if ((n = recvmsg(listen->fd, &msg, 0)) == -1)
728 return;
730 if (n < (int)sizeof(struct dns_header) ||
731 (msg.msg_flags & MSG_TRUNC) ||
732 (header->hb3 & HB3_QR))
733 return;
735 source_addr.sa.sa_family = listen->family;
736 #ifdef HAVE_IPV6
737 if (listen->family == AF_INET6)
738 source_addr.in6.sin6_flowinfo = 0;
739 #endif
741 if (!option_bool(OPT_NOWILD))
743 struct ifreq ifr;
745 if (msg.msg_controllen < sizeof(struct cmsghdr))
746 return;
748 #if defined(HAVE_LINUX_NETWORK)
749 if (listen->family == AF_INET)
750 for (cmptr = CMSG_FIRSTHDR(&msg); cmptr; cmptr = CMSG_NXTHDR(&msg, cmptr))
751 if (cmptr->cmsg_level == IPPROTO_IP && cmptr->cmsg_type == IP_PKTINFO)
753 union {
754 unsigned char *c;
755 struct in_pktinfo *p;
756 } p;
757 p.c = CMSG_DATA(cmptr);
758 dst_addr_4 = dst_addr.addr.addr4 = p.p->ipi_spec_dst;
759 if_index = p.p->ipi_ifindex;
761 #elif defined(IP_RECVDSTADDR) && defined(IP_RECVIF)
762 if (listen->family == AF_INET)
764 for (cmptr = CMSG_FIRSTHDR(&msg); cmptr; cmptr = CMSG_NXTHDR(&msg, cmptr))
766 union {
767 unsigned char *c;
768 unsigned int *i;
769 struct in_addr *a;
770 #ifndef HAVE_SOLARIS_NETWORK
771 struct sockaddr_dl *s;
772 #endif
773 } p;
774 p.c = CMSG_DATA(cmptr);
775 if (cmptr->cmsg_level == IPPROTO_IP && cmptr->cmsg_type == IP_RECVDSTADDR)
776 dst_addr_4 = dst_addr.addr.addr4 = *(p.a);
777 else if (cmptr->cmsg_level == IPPROTO_IP && cmptr->cmsg_type == IP_RECVIF)
778 #ifdef HAVE_SOLARIS_NETWORK
779 if_index = *(p.i);
780 #else
781 if_index = p.s->sdl_index;
782 #endif
785 #endif
787 #ifdef HAVE_IPV6
788 if (listen->family == AF_INET6)
790 for (cmptr = CMSG_FIRSTHDR(&msg); cmptr; cmptr = CMSG_NXTHDR(&msg, cmptr))
791 if (cmptr->cmsg_level == IPPROTO_IPV6 && cmptr->cmsg_type == daemon->v6pktinfo)
793 union {
794 unsigned char *c;
795 struct in6_pktinfo *p;
796 } p;
797 p.c = CMSG_DATA(cmptr);
799 dst_addr.addr.addr6 = p.p->ipi6_addr;
800 if_index = p.p->ipi6_ifindex;
803 #endif
805 /* enforce available interface configuration */
807 if (!indextoname(listen->fd, if_index, ifr.ifr_name))
808 return;
810 if (!iface_check(listen->family, &dst_addr, ifr.ifr_name, &auth_dns))
812 if (!option_bool(OPT_CLEVERBIND))
813 enumerate_interfaces(0);
814 if (!loopback_exception(listen->fd, listen->family, &dst_addr, ifr.ifr_name) &&
815 !label_exception(if_index, listen->family, &dst_addr))
816 return;
819 if (listen->family == AF_INET && option_bool(OPT_LOCALISE))
821 struct irec *iface;
823 /* get the netmask of the interface whch has the address we were sent to.
824 This is no neccessarily the interface we arrived on. */
826 for (iface = daemon->interfaces; iface; iface = iface->next)
827 if (iface->addr.sa.sa_family == AF_INET &&
828 iface->addr.in.sin_addr.s_addr == dst_addr_4.s_addr)
829 break;
831 /* interface may be new */
832 if (!iface && !option_bool(OPT_CLEVERBIND))
833 enumerate_interfaces(0);
835 for (iface = daemon->interfaces; iface; iface = iface->next)
836 if (iface->addr.sa.sa_family == AF_INET &&
837 iface->addr.in.sin_addr.s_addr == dst_addr_4.s_addr)
838 break;
840 /* If we failed, abandon localisation */
841 if (iface)
842 netmask = iface->netmask;
843 else
844 dst_addr_4.s_addr = 0;
848 if (extract_request(header, (size_t)n, daemon->namebuff, &type))
850 char types[20];
851 #ifdef HAVE_AUTH
852 struct auth_zone *zone;
853 #endif
855 querystr(auth_dns ? "auth" : "query", types, type);
857 if (listen->family == AF_INET)
858 log_query(F_QUERY | F_IPV4 | F_FORWARD, daemon->namebuff,
859 (struct all_addr *)&source_addr.in.sin_addr, types);
860 #ifdef HAVE_IPV6
861 else
862 log_query(F_QUERY | F_IPV6 | F_FORWARD, daemon->namebuff,
863 (struct all_addr *)&source_addr.in6.sin6_addr, types);
864 #endif
866 #ifdef HAVE_AUTH
867 /* find queries for zones we're authoritative for, and answer them directly */
868 if (!auth_dns)
869 for (zone = daemon->auth_zones; zone; zone = zone->next)
870 if (in_zone(zone, daemon->namebuff, NULL))
872 auth_dns = 1;
873 local_auth = 1;
874 break;
876 #endif
879 #ifdef HAVE_AUTH
880 if (auth_dns)
882 m = answer_auth(header, ((char *) header) + PACKETSZ, (size_t)n, now, &source_addr, local_auth);
883 if (m >= 1)
885 send_from(listen->fd, option_bool(OPT_NOWILD) || option_bool(OPT_CLEVERBIND),
886 (char *)header, m, &source_addr, &dst_addr, if_index);
887 daemon->auth_answer++;
890 else
891 #endif
893 m = answer_request(header, ((char *) header) + PACKETSZ, (size_t)n,
894 dst_addr_4, netmask, now);
896 if (m >= 1)
898 send_from(listen->fd, option_bool(OPT_NOWILD) || option_bool(OPT_CLEVERBIND),
899 (char *)header, m, &source_addr, &dst_addr, if_index);
900 daemon->local_answer++;
902 else if (forward_query(listen->fd, &source_addr, &dst_addr, if_index,
903 header, (size_t)n, now, NULL))
904 daemon->queries_forwarded++;
905 else
906 daemon->local_answer++;
910 /* The daemon forks before calling this: it should deal with one connection,
911 blocking as neccessary, and then return. Note, need to be a bit careful
912 about resources for debug mode, when the fork is suppressed: that's
913 done by the caller. */
914 unsigned char *tcp_request(int confd, time_t now,
915 union mysockaddr *local_addr, struct in_addr netmask, int auth_dns)
917 size_t size = 0;
918 int norebind = 0;
919 int local_auth = 0;
920 int checking_disabled, check_subnet;
921 size_t m;
922 unsigned short qtype;
923 unsigned int gotname;
924 unsigned char c1, c2;
925 /* Max TCP packet + slop + size */
926 unsigned char *packet = whine_malloc(65536 + MAXDNAME + RRFIXEDSZ + sizeof(u16));
927 unsigned char *payload = &packet[2];
928 /* largest field in header is 16-bits, so this is still sufficiently aligned */
929 struct dns_header *header = (struct dns_header *)payload;
930 u16 *length = (u16 *)packet;
931 struct server *last_server;
932 struct in_addr dst_addr_4;
933 union mysockaddr peer_addr;
934 socklen_t peer_len = sizeof(union mysockaddr);
936 if (getpeername(confd, (struct sockaddr *)&peer_addr, &peer_len) == -1)
937 return packet;
939 while (1)
941 if (!packet ||
942 !read_write(confd, &c1, 1, 1) || !read_write(confd, &c2, 1, 1) ||
943 !(size = c1 << 8 | c2) ||
944 !read_write(confd, payload, size, 1))
945 return packet;
947 if (size < (int)sizeof(struct dns_header))
948 continue;
950 check_subnet = 0;
952 /* save state of "cd" flag in query */
953 checking_disabled = header->hb4 & HB4_CD;
955 /* RFC 4035: sect 4.6 para 2 */
956 header->hb4 &= ~HB4_AD;
958 if ((gotname = extract_request(header, (unsigned int)size, daemon->namebuff, &qtype)))
960 char types[20];
961 #ifdef HAVE_AUTH
962 struct auth_zone *zone;
963 #endif
964 querystr(auth_dns ? "auth" : "query", types, qtype);
966 if (peer_addr.sa.sa_family == AF_INET)
967 log_query(F_QUERY | F_IPV4 | F_FORWARD, daemon->namebuff,
968 (struct all_addr *)&peer_addr.in.sin_addr, types);
969 #ifdef HAVE_IPV6
970 else
971 log_query(F_QUERY | F_IPV6 | F_FORWARD, daemon->namebuff,
972 (struct all_addr *)&peer_addr.in6.sin6_addr, types);
973 #endif
975 #ifdef HAVE_AUTH
976 /* find queries for zones we're authoritative for, and answer them directly */
977 if (!auth_dns)
978 for (zone = daemon->auth_zones; zone; zone = zone->next)
979 if (in_zone(zone, daemon->namebuff, NULL))
981 auth_dns = 1;
982 local_auth = 1;
983 break;
985 #endif
988 if (local_addr->sa.sa_family == AF_INET)
989 dst_addr_4 = local_addr->in.sin_addr;
990 else
991 dst_addr_4.s_addr = 0;
993 #ifdef HAVE_AUTH
994 if (auth_dns)
995 m = answer_auth(header, ((char *) header) + 65536, (size_t)size, now, &peer_addr, local_auth);
996 else
997 #endif
999 /* m > 0 if answered from cache */
1000 m = answer_request(header, ((char *) header) + 65536, (size_t)size,
1001 dst_addr_4, netmask, now);
1003 /* Do this by steam now we're not in the select() loop */
1004 check_log_writer(NULL);
1006 if (m == 0)
1008 unsigned int flags = 0;
1009 struct all_addr *addrp = NULL;
1010 int type = 0;
1011 char *domain = NULL;
1013 if (option_bool(OPT_ADD_MAC))
1014 size = add_mac(header, size, ((char *) header) + 65536, &peer_addr);
1016 if (option_bool(OPT_CLIENT_SUBNET))
1018 size_t new = add_source_addr(header, size, ((char *) header) + 65536, &peer_addr);
1019 if (size != new)
1021 size = new;
1022 check_subnet = 1;
1026 if (gotname)
1027 flags = search_servers(now, &addrp, gotname, daemon->namebuff, &type, &domain, &norebind);
1029 if (type != 0 || option_bool(OPT_ORDER) || !daemon->last_server)
1030 last_server = daemon->servers;
1031 else
1032 last_server = daemon->last_server;
1034 if (!flags && last_server)
1036 struct server *firstsendto = NULL;
1037 unsigned int crc = questions_crc(header, (unsigned int)size, daemon->namebuff);
1039 /* Loop round available servers until we succeed in connecting to one.
1040 Note that this code subtley ensures that consecutive queries on this connection
1041 which can go to the same server, do so. */
1042 while (1)
1044 if (!firstsendto)
1045 firstsendto = last_server;
1046 else
1048 if (!(last_server = last_server->next))
1049 last_server = daemon->servers;
1051 if (last_server == firstsendto)
1052 break;
1055 /* server for wrong domain */
1056 if (type != (last_server->flags & SERV_TYPE) ||
1057 (type == SERV_HAS_DOMAIN && !hostname_isequal(domain, last_server->domain)))
1058 continue;
1060 if (last_server->tcpfd == -1)
1062 if ((last_server->tcpfd = socket(last_server->addr.sa.sa_family, SOCK_STREAM, 0)) == -1)
1063 continue;
1065 if ((!local_bind(last_server->tcpfd, &last_server->source_addr, last_server->interface, 1) ||
1066 connect(last_server->tcpfd, &last_server->addr.sa, sa_len(&last_server->addr)) == -1))
1068 close(last_server->tcpfd);
1069 last_server->tcpfd = -1;
1070 continue;
1073 #ifdef HAVE_CONNTRACK
1074 /* Copy connection mark of incoming query to outgoing connection. */
1075 if (option_bool(OPT_CONNTRACK))
1077 unsigned int mark;
1078 struct all_addr local;
1079 #ifdef HAVE_IPV6
1080 if (local_addr->sa.sa_family == AF_INET6)
1081 local.addr.addr6 = local_addr->in6.sin6_addr;
1082 else
1083 #endif
1084 local.addr.addr4 = local_addr->in.sin_addr;
1086 if (get_incoming_mark(&peer_addr, &local, 1, &mark))
1087 setsockopt(last_server->tcpfd, SOL_SOCKET, SO_MARK, &mark, sizeof(unsigned int));
1089 #endif
1092 *length = htons(size);
1094 if (!read_write(last_server->tcpfd, packet, size + sizeof(u16), 0) ||
1095 !read_write(last_server->tcpfd, &c1, 1, 1) ||
1096 !read_write(last_server->tcpfd, &c2, 1, 1))
1098 close(last_server->tcpfd);
1099 last_server->tcpfd = -1;
1100 continue;
1103 m = (c1 << 8) | c2;
1104 if (!read_write(last_server->tcpfd, payload, m, 1))
1105 return packet;
1107 if (!gotname)
1108 strcpy(daemon->namebuff, "query");
1109 if (last_server->addr.sa.sa_family == AF_INET)
1110 log_query(F_SERVER | F_IPV4 | F_FORWARD, daemon->namebuff,
1111 (struct all_addr *)&last_server->addr.in.sin_addr, NULL);
1112 #ifdef HAVE_IPV6
1113 else
1114 log_query(F_SERVER | F_IPV6 | F_FORWARD, daemon->namebuff,
1115 (struct all_addr *)&last_server->addr.in6.sin6_addr, NULL);
1116 #endif
1118 /* There's no point in updating the cache, since this process will exit and
1119 lose the information after a few queries. We make this call for the alias and
1120 bogus-nxdomain side-effects. */
1121 /* If the crc of the question section doesn't match the crc we sent, then
1122 someone might be attempting to insert bogus values into the cache by
1123 sending replies containing questions and bogus answers. */
1124 if (crc == questions_crc(header, (unsigned int)m, daemon->namebuff))
1125 m = process_reply(header, now, last_server, (unsigned int)m,
1126 option_bool(OPT_NO_REBIND) && !norebind, checking_disabled,
1127 check_subnet, &peer_addr);
1129 break;
1133 /* In case of local answer or no connections made. */
1134 if (m == 0)
1135 m = setup_reply(header, (unsigned int)size, addrp, flags, daemon->local_ttl);
1139 check_log_writer(NULL);
1141 *length = htons(m);
1143 if (m == 0 || !read_write(confd, packet, m + sizeof(u16), 0))
1144 return packet;
1148 static struct frec *allocate_frec(time_t now)
1150 struct frec *f;
1152 if ((f = (struct frec *)whine_malloc(sizeof(struct frec))))
1154 f->next = daemon->frec_list;
1155 f->time = now;
1156 f->sentto = NULL;
1157 f->rfd4 = NULL;
1158 f->flags = 0;
1159 #ifdef HAVE_IPV6
1160 f->rfd6 = NULL;
1161 #endif
1162 daemon->frec_list = f;
1165 return f;
1168 static struct randfd *allocate_rfd(int family)
1170 static int finger = 0;
1171 int i;
1173 /* limit the number of sockets we have open to avoid starvation of
1174 (eg) TFTP. Once we have a reasonable number, randomness should be OK */
1176 for (i = 0; i < RANDOM_SOCKS; i++)
1177 if (daemon->randomsocks[i].refcount == 0)
1179 if ((daemon->randomsocks[i].fd = random_sock(family)) == -1)
1180 break;
1182 daemon->randomsocks[i].refcount = 1;
1183 daemon->randomsocks[i].family = family;
1184 return &daemon->randomsocks[i];
1187 /* No free ones or cannot get new socket, grab an existing one */
1188 for (i = 0; i < RANDOM_SOCKS; i++)
1190 int j = (i+finger) % RANDOM_SOCKS;
1191 if (daemon->randomsocks[j].refcount != 0 &&
1192 daemon->randomsocks[j].family == family &&
1193 daemon->randomsocks[j].refcount != 0xffff)
1195 finger = j;
1196 daemon->randomsocks[j].refcount++;
1197 return &daemon->randomsocks[j];
1201 return NULL; /* doom */
1204 static void free_frec(struct frec *f)
1206 if (f->rfd4 && --(f->rfd4->refcount) == 0)
1207 close(f->rfd4->fd);
1209 f->rfd4 = NULL;
1210 f->sentto = NULL;
1211 f->flags = 0;
1213 #ifdef HAVE_IPV6
1214 if (f->rfd6 && --(f->rfd6->refcount) == 0)
1215 close(f->rfd6->fd);
1217 f->rfd6 = NULL;
1218 #endif
1221 /* if wait==NULL return a free or older than TIMEOUT record.
1222 else return *wait zero if one available, or *wait is delay to
1223 when the oldest in-use record will expire. Impose an absolute
1224 limit of 4*TIMEOUT before we wipe things (for random sockets) */
1225 struct frec *get_new_frec(time_t now, int *wait)
1227 struct frec *f, *oldest, *target;
1228 int count;
1230 if (wait)
1231 *wait = 0;
1233 for (f = daemon->frec_list, oldest = NULL, target = NULL, count = 0; f; f = f->next, count++)
1234 if (!f->sentto)
1235 target = f;
1236 else
1238 if (difftime(now, f->time) >= 4*TIMEOUT)
1240 free_frec(f);
1241 target = f;
1244 if (!oldest || difftime(f->time, oldest->time) <= 0)
1245 oldest = f;
1248 if (target)
1250 target->time = now;
1251 return target;
1254 /* can't find empty one, use oldest if there is one
1255 and it's older than timeout */
1256 if (oldest && ((int)difftime(now, oldest->time)) >= TIMEOUT)
1258 /* keep stuff for twice timeout if we can by allocating a new
1259 record instead */
1260 if (difftime(now, oldest->time) < 2*TIMEOUT &&
1261 count <= daemon->ftabsize &&
1262 (f = allocate_frec(now)))
1263 return f;
1265 if (!wait)
1267 free_frec(oldest);
1268 oldest->time = now;
1270 return oldest;
1273 /* none available, calculate time 'till oldest record expires */
1274 if (count > daemon->ftabsize)
1276 static time_t last_log = 0;
1278 if (oldest && wait)
1279 *wait = oldest->time + (time_t)TIMEOUT - now;
1281 if ((int)difftime(now, last_log) > 5)
1283 last_log = now;
1284 my_syslog(LOG_WARNING, _("Maximum number of concurrent DNS queries reached (max: %d)"), daemon->ftabsize);
1287 return NULL;
1290 if (!(f = allocate_frec(now)) && wait)
1291 /* wait one second on malloc failure */
1292 *wait = 1;
1294 return f; /* OK if malloc fails and this is NULL */
1297 /* crc is all-ones if not known. */
1298 static struct frec *lookup_frec(unsigned short id, unsigned int crc)
1300 struct frec *f;
1302 for(f = daemon->frec_list; f; f = f->next)
1303 if (f->sentto && f->new_id == id &&
1304 (f->crc == crc || crc == 0xffffffff))
1305 return f;
1307 return NULL;
1310 static struct frec *lookup_frec_by_sender(unsigned short id,
1311 union mysockaddr *addr,
1312 unsigned int crc)
1314 struct frec *f;
1316 for(f = daemon->frec_list; f; f = f->next)
1317 if (f->sentto &&
1318 f->orig_id == id &&
1319 f->crc == crc &&
1320 sockaddr_isequal(&f->source, addr))
1321 return f;
1323 return NULL;
1326 /* A server record is going away, remove references to it */
1327 void server_gone(struct server *server)
1329 struct frec *f;
1331 for (f = daemon->frec_list; f; f = f->next)
1332 if (f->sentto && f->sentto == server)
1333 free_frec(f);
1335 if (daemon->last_server == server)
1336 daemon->last_server = NULL;
1338 if (daemon->srv_save == server)
1339 daemon->srv_save = NULL;
1342 /* return unique random ids. */
1343 static unsigned short get_id(unsigned int crc)
1345 unsigned short ret = 0;
1348 ret = rand16();
1349 while (lookup_frec(ret, crc));
1351 return ret;