2 Unix SMB/CIFS implementation.
4 Copyright (C) Gerald (Jerry) Carter 2006.
5 Copyright (C) Jeremy Allison 2007.
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 3 of the License, or
10 (at your option) any later version.
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.
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>.
22 #include "lib/util/util_net.h"
23 #include "lib/util/tsort.h"
26 /* AIX resolv.h uses 'class' in struct ns_rr */
34 /* resolver headers */
36 #include <sys/types.h>
37 #include <netinet/in.h>
38 #include <arpa/nameser.h>
42 #define MAX_DNS_PACKET_SIZE 0xffff
44 #ifdef NS_HFIXEDSZ /* Bind 8/9 interface */
45 #if !defined(C_IN) /* AIX 5.3 already defines C_IN */
48 #if !defined(T_A) /* AIX 5.3 already defines T_A */
52 #if defined(HAVE_IPV6)
54 # define T_AAAA ns_t_aaaa
58 # define T_SRV ns_t_srv
59 #if !defined(T_NS) /* AIX 5.3 already defines T_NS */
64 # define NS_HFIXEDSZ HFIXEDSZ
66 # define NS_HFIXEDSZ sizeof(HEADER)
67 # endif /* HFIXEDSZ */
69 # define NS_PACKETSZ PACKETSZ
70 # else /* 512 is usually the default */
71 # define NS_PACKETSZ 512
72 # endif /* PACKETSZ */
76 /*********************************************************************
77 *********************************************************************/
79 static bool ads_dns_parse_query( TALLOC_CTX
*ctx
, uint8_t *start
, uint8_t *end
,
80 uint8_t **ptr
, struct dns_query
*q
)
83 char hostname
[MAX_DNS_NAME_LENGTH
];
88 if ( !start
|| !end
|| !q
|| !*ptr
)
91 /* See RFC 1035 for details. If this fails, then return. */
93 namelen
= dn_expand( start
, end
, p
, hostname
, sizeof(hostname
) );
98 q
->hostname
= talloc_strdup( ctx
, hostname
);
100 /* check that we have space remaining */
102 if ( PTR_DIFF(p
+4, end
) > 0 )
105 q
->type
= RSVAL( p
, 0 );
106 q
->in_class
= RSVAL( p
, 2 );
114 /*********************************************************************
115 *********************************************************************/
117 static bool ads_dns_parse_rr( TALLOC_CTX
*ctx
, uint8_t *start
, uint8_t *end
,
118 uint8_t **ptr
, struct dns_rr
*rr
)
121 char hostname
[MAX_DNS_NAME_LENGTH
];
124 if ( !start
|| !end
|| !rr
|| !*ptr
)
128 /* pull the name from the answer */
130 namelen
= dn_expand( start
, end
, p
, hostname
, sizeof(hostname
) );
135 rr
->hostname
= talloc_strdup( ctx
, hostname
);
137 /* check that we have space remaining */
139 if ( PTR_DIFF(p
+10, end
) > 0 )
142 /* pull some values and then skip onto the string */
144 rr
->type
= RSVAL(p
, 0);
145 rr
->in_class
= RSVAL(p
, 2);
146 rr
->ttl
= RIVAL(p
, 4);
147 rr
->rdatalen
= RSVAL(p
, 8);
151 /* sanity check the available space */
153 if ( PTR_DIFF(p
+rr
->rdatalen
, end
) > 0 ) {
158 /* save a point to the rdata for this section */
168 /*********************************************************************
169 *********************************************************************/
171 static bool ads_dns_parse_rr_srv( TALLOC_CTX
*ctx
, uint8_t *start
, uint8_t *end
,
172 uint8_t **ptr
, struct dns_rr_srv
*srv
)
176 char dcname
[MAX_DNS_NAME_LENGTH
];
179 if ( !start
|| !end
|| !srv
|| !*ptr
)
182 /* Parse the RR entry. Coming out of the this, ptr is at the beginning
183 of the next record */
185 if ( !ads_dns_parse_rr( ctx
, start
, end
, ptr
, &rr
) ) {
186 DEBUG(1,("ads_dns_parse_rr_srv: Failed to parse RR record\n"));
190 if ( rr
.type
!= T_SRV
) {
191 DEBUG(1,("ads_dns_parse_rr_srv: Bad answer type (%d)\n",
198 srv
->priority
= RSVAL(p
, 0);
199 srv
->weight
= RSVAL(p
, 2);
200 srv
->port
= RSVAL(p
, 4);
204 namelen
= dn_expand( start
, end
, p
, dcname
, sizeof(dcname
) );
206 DEBUG(1,("ads_dns_parse_rr_srv: Failed to uncompress name!\n"));
210 srv
->hostname
= talloc_strdup( ctx
, dcname
);
212 DEBUG(10,("ads_dns_parse_rr_srv: Parsed %s [%u, %u, %u]\n",
221 /*********************************************************************
222 *********************************************************************/
224 static bool ads_dns_parse_rr_ns( TALLOC_CTX
*ctx
, uint8_t *start
, uint8_t *end
,
225 uint8_t **ptr
, struct dns_rr_ns
*nsrec
)
229 char nsname
[MAX_DNS_NAME_LENGTH
];
232 if ( !start
|| !end
|| !nsrec
|| !*ptr
)
235 /* Parse the RR entry. Coming out of the this, ptr is at the beginning
236 of the next record */
238 if ( !ads_dns_parse_rr( ctx
, start
, end
, ptr
, &rr
) ) {
239 DEBUG(1,("ads_dns_parse_rr_ns: Failed to parse RR record\n"));
243 if ( rr
.type
!= T_NS
) {
244 DEBUG(1,("ads_dns_parse_rr_ns: Bad answer type (%d)\n",
251 /* ame server hostname */
253 namelen
= dn_expand( start
, end
, p
, nsname
, sizeof(nsname
) );
255 DEBUG(1,("ads_dns_parse_rr_ns: Failed to uncompress name!\n"));
258 nsrec
->hostname
= talloc_strdup( ctx
, nsname
);
263 /*********************************************************************
264 Sort SRV record list based on weight and priority. See RFC 2782.
265 *********************************************************************/
267 static int dnssrvcmp( struct dns_rr_srv
*a
, struct dns_rr_srv
*b
)
269 if ( a
->priority
== b
->priority
) {
271 /* randomize entries with an equal weight and priority */
272 if ( a
->weight
== b
->weight
)
275 /* higher weights should be sorted lower */
276 if ( a
->weight
> b
->weight
)
282 if ( a
->priority
< b
->priority
)
288 /*********************************************************************
289 Simple wrapper for a DNS query
290 *********************************************************************/
292 #define DNS_FAILED_WAITTIME 30
294 static NTSTATUS
dns_send_req( TALLOC_CTX
*ctx
, const char *name
, int q_type
,
295 uint8_t **buf
, int *resp_length
)
297 uint8_t *buffer
= NULL
;
299 int resp_len
= NS_PACKETSZ
;
300 static time_t last_dns_check
= 0;
301 static NTSTATUS last_dns_status
= NT_STATUS_OK
;
302 time_t now
= time_mono(NULL
);
304 /* Try to prevent bursts of DNS lookups if the server is down */
306 /* Protect against large clock changes */
308 if ( last_dns_check
> now
)
311 /* IF we had a DNS timeout or a bad server and we are still
312 in the 30 second cache window, just return the previous
313 status and save the network timeout. */
315 if ( (NT_STATUS_EQUAL(last_dns_status
,NT_STATUS_IO_TIMEOUT
) ||
316 NT_STATUS_EQUAL(last_dns_status
,NT_STATUS_CONNECTION_REFUSED
)) &&
317 (last_dns_check
+DNS_FAILED_WAITTIME
) > now
)
319 DEBUG(10,("dns_send_req: last dns check returning cached status (%s)\n",
320 nt_errstr(last_dns_status
) ));
321 return last_dns_status
;
327 TALLOC_FREE( buffer
);
329 buf_len
= resp_len
* sizeof(uint8_t);
332 if ((buffer
= talloc_array(ctx
, uint8_t, buf_len
))
334 DEBUG(0,("dns_send_req: "
335 "talloc() failed!\n"));
336 last_dns_status
= NT_STATUS_NO_MEMORY
;
337 last_dns_check
= time_mono(NULL
);
338 return last_dns_status
;
342 if ((resp_len
= res_query(name
, C_IN
, q_type
, buffer
, buf_len
))
344 DEBUG(3,("dns_send_req: "
345 "Failed to resolve %s (%s)\n",
346 name
, strerror(errno
)));
347 TALLOC_FREE( buffer
);
348 last_dns_status
= NT_STATUS_UNSUCCESSFUL
;
350 if (errno
== ETIMEDOUT
) {
351 last_dns_status
= NT_STATUS_IO_TIMEOUT
;
353 if (errno
== ECONNREFUSED
) {
354 last_dns_status
= NT_STATUS_CONNECTION_REFUSED
;
356 last_dns_check
= time_mono(NULL
);
357 return last_dns_status
;
360 /* On AIX, Solaris, and possibly some older glibc systems (e.g. SLES8)
361 truncated replies never give back a resp_len > buflen
362 which ends up causing DNS resolve failures on large tcp DNS replies */
364 if (buf_len
== resp_len
) {
365 if (resp_len
== MAX_DNS_PACKET_SIZE
) {
366 DEBUG(1,("dns_send_req: DNS reply too large when resolving %s\n",
368 TALLOC_FREE( buffer
);
369 last_dns_status
= NT_STATUS_BUFFER_TOO_SMALL
;
370 last_dns_check
= time_mono(NULL
);
371 return last_dns_status
;
374 resp_len
= MIN(resp_len
*2, MAX_DNS_PACKET_SIZE
);
378 } while ( buf_len
< resp_len
&& resp_len
<= MAX_DNS_PACKET_SIZE
);
381 *resp_length
= resp_len
;
383 last_dns_check
= time_mono(NULL
);
384 last_dns_status
= NT_STATUS_OK
;
385 return last_dns_status
;
388 /*********************************************************************
389 Simple wrapper for a DNS SRV query
390 *********************************************************************/
392 NTSTATUS
ads_dns_lookup_srv(TALLOC_CTX
*ctx
,
394 struct dns_rr_srv
**dclist
,
397 uint8_t *buffer
= NULL
;
399 struct dns_rr_srv
*dcs
= NULL
;
400 int query_count
, answer_count
, auth_count
, additional_count
;
406 if ( !ctx
|| !name
|| !dclist
) {
407 return NT_STATUS_INVALID_PARAMETER
;
410 /* Send the request. May have to loop several times in case
413 status
= dns_send_req( ctx
, name
, T_SRV
, &buffer
, &resp_len
);
414 if ( !NT_STATUS_IS_OK(status
) ) {
415 DEBUG(3,("ads_dns_lookup_srv: Failed to send DNS query (%s)\n",
421 /* For some insane reason, the ns_initparse() et. al. routines are only
422 available in libresolv.a, and not the shared lib. Who knows why....
423 So we have to parse the DNS reply ourselves */
425 /* Pull the answer RR's count from the header.
426 * Use the NMB ordering macros */
428 query_count
= RSVAL( p
, 4 );
429 answer_count
= RSVAL( p
, 6 );
430 auth_count
= RSVAL( p
, 8 );
431 additional_count
= RSVAL( p
, 10 );
433 DEBUG(4,("ads_dns_lookup_srv: "
434 "%d records returned in the answer section.\n",
438 if ((dcs
= talloc_zero_array(ctx
, struct dns_rr_srv
,
439 answer_count
)) == NULL
) {
440 DEBUG(0,("ads_dns_lookup_srv: "
441 "talloc() failure for %d char*'s\n",
443 return NT_STATUS_NO_MEMORY
;
449 /* now skip the header */
453 /* parse the query section */
455 for ( rrnum
=0; rrnum
<query_count
; rrnum
++ ) {
458 if (!ads_dns_parse_query(ctx
, buffer
,
459 buffer
+resp_len
, &p
, &q
)) {
460 DEBUG(1,("ads_dns_lookup_srv: "
461 "Failed to parse query record [%d]!\n", rrnum
));
462 return NT_STATUS_UNSUCCESSFUL
;
466 /* now we are at the answer section */
468 for ( rrnum
=0; rrnum
<answer_count
; rrnum
++ ) {
469 if (!ads_dns_parse_rr_srv(ctx
, buffer
, buffer
+resp_len
,
471 DEBUG(1,("ads_dns_lookup_srv: "
472 "Failed to parse answer recordi [%d]!\n", rrnum
));
473 return NT_STATUS_UNSUCCESSFUL
;
478 /* Parse the authority section */
479 /* just skip these for now */
481 for ( rrnum
=0; rrnum
<auth_count
; rrnum
++ ) {
484 if (!ads_dns_parse_rr( ctx
, buffer
,
485 buffer
+resp_len
, &p
, &rr
)) {
486 DEBUG(1,("ads_dns_lookup_srv: "
487 "Failed to parse authority record! [%d]\n", rrnum
));
488 return NT_STATUS_UNSUCCESSFUL
;
492 /* Parse the additional records section */
494 for ( rrnum
=0; rrnum
<additional_count
; rrnum
++ ) {
498 if (!ads_dns_parse_rr(ctx
, buffer
, buffer
+resp_len
,
500 DEBUG(1,("ads_dns_lookup_srv: Failed "
501 "to parse additional records section! [%d]\n", rrnum
));
502 return NT_STATUS_UNSUCCESSFUL
;
505 /* Only interested in A or AAAA records as a shortcut for having
506 * to come back later and lookup the name. For multi-homed
507 * hosts, the number of additional records and exceed the
508 * number of answer records. */
510 if (rr
.type
!= T_A
|| rr
.rdatalen
!= 4) {
511 #if defined(HAVE_IPV6)
512 /* RFC2874 defines A6 records. This
513 * requires recusive and horribly complex lookups.
514 * Bastards. Ignore this for now.... JRA.
515 * Luckily RFC3363 reprecates A6 records.
517 if (rr
.type
!= T_AAAA
|| rr
.rdatalen
!= 16)
522 for ( i
=0; i
<idx
; i
++ ) {
523 if ( strcmp( rr
.hostname
, dcs
[i
].hostname
) == 0 ) {
524 int num_ips
= dcs
[i
].num_ips
;
525 struct sockaddr_storage
*tmp_ss_s
;
527 /* allocate new memory */
529 if (dcs
[i
].num_ips
== 0) {
530 if ((dcs
[i
].ss_s
= talloc_array(dcs
,
531 struct sockaddr_storage
, 1 ))
533 return NT_STATUS_NO_MEMORY
;
536 if ((tmp_ss_s
= talloc_realloc(dcs
,
538 struct sockaddr_storage
,
541 return NT_STATUS_NO_MEMORY
;
544 dcs
[i
].ss_s
= tmp_ss_s
;
548 /* copy the new IP address */
549 if (rr
.type
== T_A
) {
551 memcpy(&ip
, rr
.rdata
, 4);
552 in_addr_to_sockaddr_storage(
553 &dcs
[i
].ss_s
[num_ips
],
556 #if defined(HAVE_IPV6)
557 if (rr
.type
== T_AAAA
) {
559 memcpy(&ip6
, rr
.rdata
, rr
.rdatalen
);
560 in6_addr_to_sockaddr_storage(
561 &dcs
[i
].ss_s
[num_ips
],
569 TYPESAFE_QSORT(dcs
, idx
, dnssrvcmp
);
577 /*********************************************************************
578 Simple wrapper for a DNS NS query
579 *********************************************************************/
581 NTSTATUS
ads_dns_lookup_ns(TALLOC_CTX
*ctx
,
582 const char *dnsdomain
,
583 struct dns_rr_ns
**nslist
,
586 uint8_t *buffer
= NULL
;
588 struct dns_rr_ns
*nsarray
= NULL
;
589 int query_count
, answer_count
, auth_count
, additional_count
;
595 if ( !ctx
|| !dnsdomain
|| !nslist
) {
596 return NT_STATUS_INVALID_PARAMETER
;
599 /* Send the request. May have to loop several times in case
602 status
= dns_send_req( ctx
, dnsdomain
, T_NS
, &buffer
, &resp_len
);
603 if ( !NT_STATUS_IS_OK(status
) ) {
604 DEBUG(3,("ads_dns_lookup_ns: Failed to send DNS query (%s)\n",
610 /* For some insane reason, the ns_initparse() et. al. routines are only
611 available in libresolv.a, and not the shared lib. Who knows why....
612 So we have to parse the DNS reply ourselves */
614 /* Pull the answer RR's count from the header.
615 * Use the NMB ordering macros */
617 query_count
= RSVAL( p
, 4 );
618 answer_count
= RSVAL( p
, 6 );
619 auth_count
= RSVAL( p
, 8 );
620 additional_count
= RSVAL( p
, 10 );
622 DEBUG(4,("ads_dns_lookup_ns: "
623 "%d records returned in the answer section.\n",
627 if ((nsarray
= talloc_array(ctx
, struct dns_rr_ns
,
628 answer_count
)) == NULL
) {
629 DEBUG(0,("ads_dns_lookup_ns: "
630 "talloc() failure for %d char*'s\n",
632 return NT_STATUS_NO_MEMORY
;
638 /* now skip the header */
642 /* parse the query section */
644 for ( rrnum
=0; rrnum
<query_count
; rrnum
++ ) {
647 if (!ads_dns_parse_query(ctx
, buffer
, buffer
+resp_len
,
649 DEBUG(1,("ads_dns_lookup_ns: "
650 " Failed to parse query record!\n"));
651 return NT_STATUS_UNSUCCESSFUL
;
655 /* now we are at the answer section */
657 for ( rrnum
=0; rrnum
<answer_count
; rrnum
++ ) {
658 if (!ads_dns_parse_rr_ns(ctx
, buffer
, buffer
+resp_len
,
659 &p
, &nsarray
[rrnum
])) {
660 DEBUG(1,("ads_dns_lookup_ns: "
661 "Failed to parse answer record!\n"));
662 return NT_STATUS_UNSUCCESSFUL
;
667 /* Parse the authority section */
668 /* just skip these for now */
670 for ( rrnum
=0; rrnum
<auth_count
; rrnum
++ ) {
673 if ( !ads_dns_parse_rr(ctx
, buffer
, buffer
+resp_len
,
675 DEBUG(1,("ads_dns_lookup_ns: "
676 "Failed to parse authority record!\n"));
677 return NT_STATUS_UNSUCCESSFUL
;
681 /* Parse the additional records section */
683 for ( rrnum
=0; rrnum
<additional_count
; rrnum
++ ) {
687 if (!ads_dns_parse_rr(ctx
, buffer
, buffer
+resp_len
,
689 DEBUG(1,("ads_dns_lookup_ns: Failed "
690 "to parse additional records section!\n"));
691 return NT_STATUS_UNSUCCESSFUL
;
694 /* only interested in A records as a shortcut for having to come
695 back later and lookup the name */
697 if (rr
.type
!= T_A
|| rr
.rdatalen
!= 4) {
698 #if defined(HAVE_IPV6)
699 if (rr
.type
!= T_AAAA
|| rr
.rdatalen
!= 16)
704 for ( i
=0; i
<idx
; i
++ ) {
705 if (strcmp(rr
.hostname
, nsarray
[i
].hostname
) == 0) {
706 if (rr
.type
== T_A
) {
708 memcpy(&ip
, rr
.rdata
, 4);
709 in_addr_to_sockaddr_storage(
713 #if defined(HAVE_IPV6)
714 if (rr
.type
== T_AAAA
) {
716 memcpy(&ip6
, rr
.rdata
, rr
.rdatalen
);
717 in6_addr_to_sockaddr_storage(
732 /********************************************************************
733 Query with optional sitename.
734 ********************************************************************/
736 static NTSTATUS
ads_dns_query_internal(TALLOC_CTX
*ctx
,
737 const char *servicename
,
738 const char *dc_pdc_gc_domains
,
740 const char *sitename
,
741 struct dns_rr_srv
**dclist
,
745 if (sitename
&& strlen(sitename
)) {
746 name
= talloc_asprintf(ctx
, "%s._tcp.%s._sites.%s._msdcs.%s",
747 servicename
, sitename
,
748 dc_pdc_gc_domains
, realm
);
750 name
= talloc_asprintf(ctx
, "%s._tcp.%s._msdcs.%s",
751 servicename
, dc_pdc_gc_domains
, realm
);
754 return NT_STATUS_NO_MEMORY
;
756 return ads_dns_lookup_srv(ctx
, name
, dclist
, numdcs
);
759 /********************************************************************
761 ********************************************************************/
763 NTSTATUS
ads_dns_query_dcs(TALLOC_CTX
*ctx
,
765 const char *sitename
,
766 struct dns_rr_srv
**dclist
,
771 status
= ads_dns_query_internal(ctx
,
779 if (NT_STATUS_EQUAL(status
, NT_STATUS_IO_TIMEOUT
) ||
780 NT_STATUS_EQUAL(status
, NT_STATUS_CONNECTION_REFUSED
)) {
785 ((!NT_STATUS_IS_OK(status
)) ||
786 (NT_STATUS_IS_OK(status
) && (numdcs
== 0)))) {
787 /* Sitename DNS query may have failed. Try without. */
788 status
= ads_dns_query_internal(ctx
,
799 /********************************************************************
801 ********************************************************************/
803 NTSTATUS
ads_dns_query_gcs(TALLOC_CTX
*ctx
,
805 const char *sitename
,
806 struct dns_rr_srv
**dclist
,
811 status
= ads_dns_query_internal(ctx
,
819 if (NT_STATUS_EQUAL(status
, NT_STATUS_IO_TIMEOUT
) ||
820 NT_STATUS_EQUAL(status
, NT_STATUS_CONNECTION_REFUSED
)) {
825 ((!NT_STATUS_IS_OK(status
)) ||
826 (NT_STATUS_IS_OK(status
) && (numdcs
== 0)))) {
827 /* Sitename DNS query may have failed. Try without. */
828 status
= ads_dns_query_internal(ctx
,
839 /********************************************************************
841 Even if our underlying kerberos libraries are UDP only, this
842 is pretty safe as it's unlikely that a KDC supports TCP and not UDP.
843 ********************************************************************/
845 NTSTATUS
ads_dns_query_kdcs(TALLOC_CTX
*ctx
,
846 const char *dns_forest_name
,
847 const char *sitename
,
848 struct dns_rr_srv
**dclist
,
853 status
= ads_dns_query_internal(ctx
,
861 if (NT_STATUS_EQUAL(status
, NT_STATUS_IO_TIMEOUT
) ||
862 NT_STATUS_EQUAL(status
, NT_STATUS_CONNECTION_REFUSED
)) {
867 ((!NT_STATUS_IS_OK(status
)) ||
868 (NT_STATUS_IS_OK(status
) && (numdcs
== 0)))) {
869 /* Sitename DNS query may have failed. Try without. */
870 status
= ads_dns_query_internal(ctx
,
881 /********************************************************************
882 Query for AD PDC. Sitename is obsolete here.
883 ********************************************************************/
885 NTSTATUS
ads_dns_query_pdc(TALLOC_CTX
*ctx
,
886 const char *dns_domain_name
,
887 struct dns_rr_srv
**dclist
,
890 return ads_dns_query_internal(ctx
,
899 /********************************************************************
900 Query for AD DC by guid. Sitename is obsolete here.
901 ********************************************************************/
903 NTSTATUS
ads_dns_query_dcs_guid(TALLOC_CTX
*ctx
,
904 const char *dns_forest_name
,
905 const char *domain_guid
,
906 struct dns_rr_srv
**dclist
,
909 /*_ldap._tcp.DomainGuid.domains._msdcs.DnsForestName */
914 domains
= talloc_asprintf(ctx
, "%s.domains", domain_guid
);
916 return NT_STATUS_NO_MEMORY
;
919 return ads_dns_query_internal(ctx
,