/* Unix SMB/CIFS implementation. DNS utility library Copyright (C) Gerald (Jerry) Carter 2006. Copyright (C) Jeremy Allison 2007. This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 3 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program. If not, see . */ #include "includes.h" #include "lib/util/util_net.h" #include "lib/util/tsort.h" #include "dnsquery.h" /* AIX resolv.h uses 'class' in struct ns_rr */ #if defined(AIX) # if defined(class) # undef class # endif #endif /* AIX */ /* resolver headers */ #include #include #include #include #include #define MAX_DNS_PACKET_SIZE 0xffff #ifdef NS_HFIXEDSZ /* Bind 8/9 interface */ #if !defined(C_IN) /* AIX 5.3 already defines C_IN */ # define C_IN ns_c_in #endif #if !defined(T_A) /* AIX 5.3 already defines T_A */ # define T_A ns_t_a #endif #if defined(HAVE_IPV6) #if !defined(T_AAAA) # define T_AAAA ns_t_aaaa #endif #endif # define T_SRV ns_t_srv #if !defined(T_NS) /* AIX 5.3 already defines T_NS */ # define T_NS ns_t_ns #endif #else # ifdef HFIXEDSZ # define NS_HFIXEDSZ HFIXEDSZ # else # define NS_HFIXEDSZ sizeof(HEADER) # endif /* HFIXEDSZ */ # ifdef PACKETSZ # define NS_PACKETSZ PACKETSZ # else /* 512 is usually the default */ # define NS_PACKETSZ 512 # endif /* PACKETSZ */ # define T_SRV 33 #endif /********************************************************************* *********************************************************************/ static bool ads_dns_parse_query( TALLOC_CTX *ctx, uint8_t *start, uint8_t *end, uint8_t **ptr, struct dns_query *q ) { uint8_t *p = *ptr; char hostname[MAX_DNS_NAME_LENGTH]; int namelen; ZERO_STRUCTP( q ); if ( !start || !end || !q || !*ptr) return false; /* See RFC 1035 for details. If this fails, then return. */ namelen = dn_expand( start, end, p, hostname, sizeof(hostname) ); if ( namelen < 0 ) { return false; } p += namelen; q->hostname = talloc_strdup( ctx, hostname ); /* check that we have space remaining */ if ( PTR_DIFF(p+4, end) > 0 ) return false; q->type = RSVAL( p, 0 ); q->in_class = RSVAL( p, 2 ); p += 4; *ptr = p; return true; } /********************************************************************* *********************************************************************/ static bool ads_dns_parse_rr( TALLOC_CTX *ctx, uint8_t *start, uint8_t *end, uint8_t **ptr, struct dns_rr *rr ) { uint8_t *p = *ptr; char hostname[MAX_DNS_NAME_LENGTH]; int namelen; if ( !start || !end || !rr || !*ptr) return -1; ZERO_STRUCTP( rr ); /* pull the name from the answer */ namelen = dn_expand( start, end, p, hostname, sizeof(hostname) ); if ( namelen < 0 ) { return -1; } p += namelen; rr->hostname = talloc_strdup( ctx, hostname ); /* check that we have space remaining */ if ( PTR_DIFF(p+10, end) > 0 ) return false; /* pull some values and then skip onto the string */ rr->type = RSVAL(p, 0); rr->in_class = RSVAL(p, 2); rr->ttl = RIVAL(p, 4); rr->rdatalen = RSVAL(p, 8); p += 10; /* sanity check the available space */ if ( PTR_DIFF(p+rr->rdatalen, end ) > 0 ) { return false; } /* save a point to the rdata for this section */ rr->rdata = p; p += rr->rdatalen; *ptr = p; return true; } /********************************************************************* *********************************************************************/ static bool ads_dns_parse_rr_srv( TALLOC_CTX *ctx, uint8_t *start, uint8_t *end, uint8_t **ptr, struct dns_rr_srv *srv ) { struct dns_rr rr; uint8_t *p; char dcname[MAX_DNS_NAME_LENGTH]; int namelen; if ( !start || !end || !srv || !*ptr) return -1; /* Parse the RR entry. Coming out of the this, ptr is at the beginning of the next record */ if ( !ads_dns_parse_rr( ctx, start, end, ptr, &rr ) ) { DEBUG(1,("ads_dns_parse_rr_srv: Failed to parse RR record\n")); return false; } if ( rr.type != T_SRV ) { DEBUG(1,("ads_dns_parse_rr_srv: Bad answer type (%d)\n", rr.type)); return false; } p = rr.rdata; srv->priority = RSVAL(p, 0); srv->weight = RSVAL(p, 2); srv->port = RSVAL(p, 4); p += 6; namelen = dn_expand( start, end, p, dcname, sizeof(dcname) ); if ( namelen < 0 ) { DEBUG(1,("ads_dns_parse_rr_srv: Failed to uncompress name!\n")); return false; } srv->hostname = talloc_strdup( ctx, dcname ); DEBUG(10,("ads_dns_parse_rr_srv: Parsed %s [%u, %u, %u]\n", srv->hostname, srv->priority, srv->weight, srv->port)); return true; } /********************************************************************* *********************************************************************/ static bool ads_dns_parse_rr_ns( TALLOC_CTX *ctx, uint8_t *start, uint8_t *end, uint8_t **ptr, struct dns_rr_ns *nsrec ) { struct dns_rr rr; uint8_t *p; char nsname[MAX_DNS_NAME_LENGTH]; int namelen; if ( !start || !end || !nsrec || !*ptr) return -1; /* Parse the RR entry. Coming out of the this, ptr is at the beginning of the next record */ if ( !ads_dns_parse_rr( ctx, start, end, ptr, &rr ) ) { DEBUG(1,("ads_dns_parse_rr_ns: Failed to parse RR record\n")); return false; } if ( rr.type != T_NS ) { DEBUG(1,("ads_dns_parse_rr_ns: Bad answer type (%d)\n", rr.type)); return false; } p = rr.rdata; /* ame server hostname */ namelen = dn_expand( start, end, p, nsname, sizeof(nsname) ); if ( namelen < 0 ) { DEBUG(1,("ads_dns_parse_rr_ns: Failed to uncompress name!\n")); return false; } nsrec->hostname = talloc_strdup( ctx, nsname ); return true; } /********************************************************************* Sort SRV record list based on weight and priority. See RFC 2782. *********************************************************************/ static int dnssrvcmp( struct dns_rr_srv *a, struct dns_rr_srv *b ) { if ( a->priority == b->priority ) { /* randomize entries with an equal weight and priority */ if ( a->weight == b->weight ) return 0; /* higher weights should be sorted lower */ if ( a->weight > b->weight ) return -1; else return 1; } if ( a->priority < b->priority ) return -1; return 1; } /********************************************************************* Simple wrapper for a DNS query *********************************************************************/ #define DNS_FAILED_WAITTIME 30 static NTSTATUS dns_send_req( TALLOC_CTX *ctx, const char *name, int q_type, uint8_t **buf, int *resp_length ) { uint8_t *buffer = NULL; size_t buf_len = 0; int resp_len = NS_PACKETSZ; static time_t last_dns_check = 0; static NTSTATUS last_dns_status = NT_STATUS_OK; time_t now = time_mono(NULL); /* Try to prevent bursts of DNS lookups if the server is down */ /* Protect against large clock changes */ if ( last_dns_check > now ) last_dns_check = 0; /* IF we had a DNS timeout or a bad server and we are still in the 30 second cache window, just return the previous status and save the network timeout. */ if ( (NT_STATUS_EQUAL(last_dns_status,NT_STATUS_IO_TIMEOUT) || NT_STATUS_EQUAL(last_dns_status,NT_STATUS_CONNECTION_REFUSED)) && (last_dns_check+DNS_FAILED_WAITTIME) > now ) { DEBUG(10,("dns_send_req: last dns check returning cached status (%s)\n", nt_errstr(last_dns_status) )); return last_dns_status; } /* Send the Query */ do { if ( buffer ) TALLOC_FREE( buffer ); buf_len = resp_len * sizeof(uint8_t); if (buf_len) { if ((buffer = talloc_array(ctx, uint8_t, buf_len)) == NULL ) { DEBUG(0,("dns_send_req: " "talloc() failed!\n")); last_dns_status = NT_STATUS_NO_MEMORY; last_dns_check = time_mono(NULL); return last_dns_status; } } if ((resp_len = res_query(name, C_IN, q_type, buffer, buf_len)) < 0 ) { DEBUG(3,("dns_send_req: " "Failed to resolve %s (%s)\n", name, strerror(errno))); TALLOC_FREE( buffer ); last_dns_status = NT_STATUS_UNSUCCESSFUL; if (errno == ETIMEDOUT) { last_dns_status = NT_STATUS_IO_TIMEOUT; } if (errno == ECONNREFUSED) { last_dns_status = NT_STATUS_CONNECTION_REFUSED; } last_dns_check = time_mono(NULL); return last_dns_status; } /* On AIX, Solaris, and possibly some older glibc systems (e.g. SLES8) truncated replies never give back a resp_len > buflen which ends up causing DNS resolve failures on large tcp DNS replies */ if (buf_len == resp_len) { if (resp_len == MAX_DNS_PACKET_SIZE) { DEBUG(1,("dns_send_req: DNS reply too large when resolving %s\n", name)); TALLOC_FREE( buffer ); last_dns_status = NT_STATUS_BUFFER_TOO_SMALL; last_dns_check = time_mono(NULL); return last_dns_status; } resp_len = MIN(resp_len*2, MAX_DNS_PACKET_SIZE); } } while ( buf_len < resp_len && resp_len <= MAX_DNS_PACKET_SIZE ); *buf = buffer; *resp_length = resp_len; last_dns_check = time_mono(NULL); last_dns_status = NT_STATUS_OK; return last_dns_status; } /********************************************************************* Simple wrapper for a DNS SRV query *********************************************************************/ NTSTATUS ads_dns_lookup_srv(TALLOC_CTX *ctx, const char *dns_hosts_file, const char *name, struct dns_rr_srv **dclist, int *numdcs) { uint8_t *buffer = NULL; int resp_len = 0; struct dns_rr_srv *dcs = NULL; int query_count, answer_count, auth_count, additional_count; uint8_t *p = buffer; int rrnum; int idx = 0; NTSTATUS status; if ( !ctx || !name || !dclist ) { return NT_STATUS_INVALID_PARAMETER; } if (dns_hosts_file) { return resolve_dns_hosts_file_as_dns_rr(dns_hosts_file, name, true, ctx, dclist, numdcs); } /* Send the request. May have to loop several times in case of large replies */ status = dns_send_req( ctx, name, T_SRV, &buffer, &resp_len ); if ( !NT_STATUS_IS_OK(status) ) { DEBUG(3,("ads_dns_lookup_srv: Failed to send DNS query (%s)\n", nt_errstr(status))); return status; } p = buffer; /* For some insane reason, the ns_initparse() et. al. routines are only available in libresolv.a, and not the shared lib. Who knows why.... So we have to parse the DNS reply ourselves */ /* Pull the answer RR's count from the header. * Use the NMB ordering macros */ query_count = RSVAL( p, 4 ); answer_count = RSVAL( p, 6 ); auth_count = RSVAL( p, 8 ); additional_count = RSVAL( p, 10 ); DEBUG(4,("ads_dns_lookup_srv: " "%d records returned in the answer section.\n", answer_count)); if (answer_count) { if ((dcs = talloc_zero_array(ctx, struct dns_rr_srv, answer_count)) == NULL ) { DEBUG(0,("ads_dns_lookup_srv: " "talloc() failure for %d char*'s\n", answer_count)); return NT_STATUS_NO_MEMORY; } } else { dcs = NULL; } /* now skip the header */ p += NS_HFIXEDSZ; /* parse the query section */ for ( rrnum=0; rrnum