Testsuite: add missing output file.
[exim.git] / src / src / dns.c
CommitLineData
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1/*************************************************
2* Exim - an Internet mail transport agent *
3*************************************************/
4
80fea873 5/* Copyright (c) University of Cambridge 1995 - 2016 */
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6/* See the file NOTICE for conditions of use and distribution. */
7
8/* Functions for interfacing with the DNS. */
9
10#include "exim.h"
11
12
059ec3d9 13
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14/*************************************************
15* Fake DNS resolver *
16*************************************************/
17
18/* This function is called instead of res_search() when Exim is running in its
19test harness. It recognizes some special domain names, and uses them to force
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PH
20failure and retry responses (optionally with a delay). Otherwise, it calls an
21external utility that mocks-up a nameserver, if it can find the utility.
22If not, it passes its arguments on to res_search(). The fake nameserver may
23also return a code specifying that the name should be passed on.
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24
25Background: the original test suite required a real nameserver to carry the
8e013028 26test zones, whereas the new test suite has the fake server for portability. This
e7726cbf 27code supports both.
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28
29Arguments:
e7726cbf 30 domain the domain name
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31 type the DNS record type
32 answerptr where to put the answer
33 size size of the answer area
34
35Returns: length of returned data, or -1 on error (h_errno set)
36*/
37
38static int
1dc92d5a 39fakens_search(const uschar *domain, int type, uschar *answerptr, int size)
bef5a11f 40{
e7726cbf 41int len = Ustrlen(domain);
433a2980 42int asize = size; /* Locally modified */
e7726cbf 43uschar name[256];
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44uschar utilname[256];
45uschar *aptr = answerptr; /* Locally modified */
46struct stat statbuf;
47
48/* Remove terminating dot. */
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49
50if (domain[len - 1] == '.') len--;
51Ustrncpy(name, domain, len);
52name[len] = 0;
bef5a11f 53
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54/* Look for the fakens utility, and if it exists, call it. */
55
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HSHR
56(void)string_format(utilname, sizeof(utilname), "%s/bin/fakens",
57 config_main_directory);
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58
59if (stat(CS utilname, &statbuf) >= 0)
bef5a11f 60 {
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61 pid_t pid;
62 int infd, outfd, rc;
63 uschar *argv[5];
64
3735e326 65 DEBUG(D_dns) debug_printf("DNS lookup of %s (%s) using fakens\n", name, dns_text_type(type));
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66
67 argv[0] = utilname;
5f3d0983 68 argv[1] = config_main_directory;
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69 argv[2] = name;
70 argv[3] = dns_text_type(type);
71 argv[4] = NULL;
72
73 pid = child_open(argv, NULL, 0000, &infd, &outfd, FALSE);
74 if (pid < 0)
75 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "failed to run fakens: %s",
76 strerror(errno));
77
78 len = 0;
79 rc = -1;
80 while (asize > 0 && (rc = read(outfd, aptr, asize)) > 0)
81 {
82 len += rc;
83 aptr += rc; /* Don't modify the actual arguments, because they */
84 asize -= rc; /* may need to be passed on to res_search(). */
85 }
bef5a11f 86
aa7751be 87 /* If we ran out of output buffer before exhausting the return,
1fb7660f
JH
88 carry on reading and counting it. */
89
90 if (asize == 0)
91 while ((rc = read(outfd, name, sizeof(name))) > 0)
92 len += rc;
93
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PH
94 if (rc < 0)
95 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "read from fakens failed: %s",
96 strerror(errno));
bef5a11f 97
433a2980 98 switch(child_close(pid, 0))
bef5a11f 99 {
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100 case 0: return len;
101 case 1: h_errno = HOST_NOT_FOUND; return -1;
102 case 2: h_errno = TRY_AGAIN; return -1;
103 default:
104 case 3: h_errno = NO_RECOVERY; return -1;
105 case 4: h_errno = NO_DATA; return -1;
106 case 5: /* Pass on to res_search() */
107 DEBUG(D_dns) debug_printf("fakens returned PASS_ON\n");
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108 }
109 }
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HSHR
110else
111 {
4cea764f 112 DEBUG(D_dns) debug_printf("fakens (%s) not found\n", utilname);
8e013028 113 }
bef5a11f 114
433a2980 115/* fakens utility not found, or it returned "pass on" */
bef5a11f 116
433a2980 117DEBUG(D_dns) debug_printf("passing %s on to res_search()\n", domain);
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118
119return res_search(CS domain, C_IN, type, answerptr, size);
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120}
121
122
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123
124/*************************************************
125* Initialize and configure resolver *
126*************************************************/
127
128/* Initialize the resolver and the storage for holding DNS answers if this is
129the first time we have been here, and set the resolver options.
130
131Arguments:
132 qualify_single TRUE to set the RES_DEFNAMES option
133 search_parents TRUE to set the RES_DNSRCH option
8c51eead 134 use_dnssec TRUE to set the RES_USE_DNSSEC option
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135
136Returns: nothing
137*/
138
139void
8c51eead 140dns_init(BOOL qualify_single, BOOL search_parents, BOOL use_dnssec)
059ec3d9 141{
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142res_state resp = os_get_dns_resolver_res();
143
144if ((resp->options & RES_INIT) == 0)
059ec3d9 145 {
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146 DEBUG(D_resolver) resp->options |= RES_DEBUG; /* For Cygwin */
147 os_put_dns_resolver_res(resp);
059ec3d9 148 res_init();
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149 DEBUG(D_resolver) resp->options |= RES_DEBUG;
150 os_put_dns_resolver_res(resp);
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PH
151 }
152
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PP
153resp->options &= ~(RES_DNSRCH | RES_DEFNAMES);
154resp->options |= (qualify_single? RES_DEFNAMES : 0) |
059ec3d9 155 (search_parents? RES_DNSRCH : 0);
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PP
156if (dns_retrans > 0) resp->retrans = dns_retrans;
157if (dns_retry > 0) resp->retry = dns_retry;
e97d1f08
PP
158
159#ifdef RES_USE_EDNS0
160if (dns_use_edns0 >= 0)
161 {
162 if (dns_use_edns0)
5bfb4cdf 163 resp->options |= RES_USE_EDNS0;
e97d1f08 164 else
5bfb4cdf 165 resp->options &= ~RES_USE_EDNS0;
e97d1f08
PP
166 DEBUG(D_resolver)
167 debug_printf("Coerced resolver EDNS0 support %s.\n",
168 dns_use_edns0 ? "on" : "off");
169 }
170#else
171if (dns_use_edns0 >= 0)
172 DEBUG(D_resolver)
173 debug_printf("Unable to %sset EDNS0 without resolver support.\n",
174 dns_use_edns0 ? "" : "un");
175#endif
5bfb4cdf 176
1f4a55da
PP
177#ifndef DISABLE_DNSSEC
178# ifdef RES_USE_DNSSEC
179# ifndef RES_USE_EDNS0
180# error Have RES_USE_DNSSEC but not RES_USE_EDNS0? Something hinky ...
181# endif
8c51eead
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182if (use_dnssec)
183 resp->options |= RES_USE_DNSSEC;
0fbd9bff 184if (dns_dnssec_ok >= 0)
1f4a55da 185 {
0fbd9bff 186 if (dns_use_edns0 == 0 && dns_dnssec_ok != 0)
1f4a55da
PP
187 {
188 DEBUG(D_resolver)
0fbd9bff 189 debug_printf("CONFLICT: dns_use_edns0 forced false, dns_dnssec_ok forced true, ignoring latter!\n");
1f4a55da
PP
190 }
191 else
192 {
0fbd9bff 193 if (dns_dnssec_ok)
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PP
194 resp->options |= RES_USE_DNSSEC;
195 else
196 resp->options &= ~RES_USE_DNSSEC;
197 DEBUG(D_resolver) debug_printf("Coerced resolver DNSSEC support %s.\n",
0fbd9bff 198 dns_dnssec_ok ? "on" : "off");
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PP
199 }
200 }
201# else
0fbd9bff 202if (dns_dnssec_ok >= 0)
1f4a55da
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203 DEBUG(D_resolver)
204 debug_printf("Unable to %sset DNSSEC without resolver support.\n",
0fbd9bff 205 dns_dnssec_ok ? "" : "un");
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206if (use_dnssec)
207 DEBUG(D_resolver)
93d4b03a 208 debug_printf("Unable to set DNSSEC without resolver support.\n");
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209# endif
210#endif /* DISABLE_DNSSEC */
211
5bfb4cdf 212os_put_dns_resolver_res(resp);
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213}
214
215
216
217/*************************************************
218* Build key name for PTR records *
219*************************************************/
220
221/* This function inverts an IP address and adds the relevant domain, to produce
222a name that can be used to look up PTR records.
223
224Arguments:
225 string the IP address as a string
226 buffer a suitable buffer, long enough to hold the result
227
228Returns: nothing
229*/
230
231void
55414b25 232dns_build_reverse(const uschar *string, uschar *buffer)
059ec3d9 233{
55414b25 234const uschar *p = string + Ustrlen(string);
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235uschar *pp = buffer;
236
237/* Handle IPv4 address */
238
239#if HAVE_IPV6
240if (Ustrchr(string, ':') == NULL)
241#endif
242 {
243 int i;
244 for (i = 0; i < 4; i++)
245 {
55414b25 246 const uschar *ppp = p;
059ec3d9
PH
247 while (ppp > string && ppp[-1] != '.') ppp--;
248 Ustrncpy(pp, ppp, p - ppp);
249 pp += p - ppp;
250 *pp++ = '.';
251 p = ppp - 1;
252 }
253 Ustrcpy(pp, "in-addr.arpa");
254 }
255
256/* Handle IPv6 address; convert to binary so as to fill out any
257abbreviation in the textual form. */
258
259#if HAVE_IPV6
260else
261 {
262 int i;
263 int v6[4];
264 (void)host_aton(string, v6);
265
266 /* The original specification for IPv6 reverse lookup was to invert each
267 nibble, and look in the ip6.int domain. The domain was subsequently
268 changed to ip6.arpa. */
269
270 for (i = 3; i >= 0; i--)
271 {
272 int j;
273 for (j = 0; j < 32; j += 4)
274 {
275 sprintf(CS pp, "%x.", (v6[i] >> j) & 15);
276 pp += 2;
277 }
278 }
279 Ustrcpy(pp, "ip6.arpa.");
280
281 /* Another way of doing IPv6 reverse lookups was proposed in conjunction
282 with A6 records. However, it fell out of favour when they did. The
283 alternative was to construct a binary key, and look in ip6.arpa. I tried
284 to make this code do that, but I could not make it work on Solaris 8. The
285 resolver seems to lose the initial backslash somehow. However, now that
286 this style of reverse lookup has been dropped, it doesn't matter. These
287 lines are left here purely for historical interest. */
288
289 /**************************************************
290 Ustrcpy(pp, "\\[x");
291 pp += 3;
292
293 for (i = 0; i < 4; i++)
294 {
295 sprintf(pp, "%08X", v6[i]);
296 pp += 8;
297 }
298 Ustrcpy(pp, "].ip6.arpa.");
299 **************************************************/
300
301 }
302#endif
303}
304
305
306
307
2a407b17
JH
308/* Increment the aptr in dnss, checking against dnsa length.
309Return: TRUE for a bad result
310*/
311static BOOL
dd708fd7 312dnss_inc_aptr(const dns_answer * dnsa, dns_scan * dnss, unsigned delta)
2a407b17
JH
313{
314return (dnss->aptr += delta) >= dnsa->answer + dnsa->answerlen;
315}
316
059ec3d9
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317/*************************************************
318* Get next DNS record from answer block *
319*************************************************/
320
321/* Call this with reset == RESET_ANSWERS to scan the answer block, reset ==
e5a9dba6
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322RESET_AUTHORITY to scan the authority records, reset == RESET_ADDITIONAL to
323scan the additional records, and reset == RESET_NEXT to get the next record.
324The result is in static storage which must be copied if it is to be preserved.
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325
326Arguments:
327 dnsa pointer to dns answer block
328 dnss pointer to dns scan block
4c04137d 329 reset option specifying what portion to scan, as described above
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330
331Returns: next dns record, or NULL when no more
332*/
333
334dns_record *
dd708fd7 335dns_next_rr(const dns_answer *dnsa, dns_scan *dnss, int reset)
059ec3d9 336{
dd708fd7 337const HEADER * h = (const HEADER *)dnsa->answer;
059ec3d9
PH
338int namelen;
339
2a407b17
JH
340char * trace = NULL;
341#ifdef rr_trace
342# define TRACE DEBUG(D_dns)
343#else
344trace = trace;
345# define TRACE if (FALSE)
346#endif
347
059ec3d9
PH
348/* Reset the saved data when requested to, and skip to the first required RR */
349
350if (reset != RESET_NEXT)
351 {
352 dnss->rrcount = ntohs(h->qdcount);
d093f8e5 353 TRACE debug_printf("%s: reset (Q rrcount %d)\n", __FUNCTION__, dnss->rrcount);
059ec3d9
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354 dnss->aptr = dnsa->answer + sizeof(HEADER);
355
356 /* Skip over questions; failure to expand the name just gives up */
357
358 while (dnss->rrcount-- > 0)
359 {
2a407b17 360 TRACE trace = "Q-namelen";
059ec3d9 361 namelen = dn_expand(dnsa->answer, dnsa->answer + dnsa->answerlen,
2a407b17
JH
362 dnss->aptr, (DN_EXPAND_ARG4_TYPE) &dnss->srr.name, DNS_MAXNAME);
363 if (namelen < 0) goto null_return;
364 /* skip name & type & class */
365 TRACE trace = "Q-skip";
dd708fd7 366 if (dnss_inc_aptr(dnsa, dnss, namelen+4)) goto null_return;
059ec3d9
PH
367 }
368
369 /* Get the number of answer records. */
370
371 dnss->rrcount = ntohs(h->ancount);
d093f8e5 372 TRACE debug_printf("%s: reset (A rrcount %d)\n", __FUNCTION__, dnss->rrcount);
059ec3d9 373
e5a9dba6
PH
374 /* Skip over answers if we want to look at the authority section. Also skip
375 the NS records (i.e. authority section) if wanting to look at the additional
059ec3d9
PH
376 records. */
377
2a407b17
JH
378 if (reset == RESET_ADDITIONAL)
379 {
380 TRACE debug_printf("%s: additional\n", __FUNCTION__);
381 dnss->rrcount += ntohs(h->nscount);
d093f8e5 382 TRACE debug_printf("%s: reset (NS rrcount %d)\n", __FUNCTION__, dnss->rrcount);
2a407b17 383 }
e5a9dba6
PH
384
385 if (reset == RESET_AUTHORITY || reset == RESET_ADDITIONAL)
059ec3d9 386 {
2a407b17
JH
387 TRACE if (reset == RESET_AUTHORITY)
388 debug_printf("%s: authority\n", __FUNCTION__);
059ec3d9
PH
389 while (dnss->rrcount-- > 0)
390 {
2a407b17 391 TRACE trace = "A-namelen";
059ec3d9 392 namelen = dn_expand(dnsa->answer, dnsa->answer + dnsa->answerlen,
2a407b17
JH
393 dnss->aptr, (DN_EXPAND_ARG4_TYPE) &dnss->srr.name, DNS_MAXNAME);
394 if (namelen < 0) goto null_return;
395 /* skip name, type, class & TTL */
396 TRACE trace = "A-hdr";
dd708fd7 397 if (dnss_inc_aptr(dnsa, dnss, namelen+8)) goto null_return;
059ec3d9 398 GETSHORT(dnss->srr.size, dnss->aptr); /* size of data portion */
2a407b17
JH
399 /* skip over it */
400 TRACE trace = "A-skip";
dd708fd7 401 if (dnss_inc_aptr(dnsa, dnss, dnss->srr.size)) goto null_return;
059ec3d9 402 }
2a407b17 403 dnss->rrcount = reset == RESET_AUTHORITY
e5a9dba6 404 ? ntohs(h->nscount) : ntohs(h->arcount);
d093f8e5
JH
405 TRACE debug_printf("%s: reset (%s rrcount %d)\n", __FUNCTION__,
406 reset == RESET_AUTHORITY ? "NS" : "AR", dnss->rrcount);
059ec3d9 407 }
2a407b17 408 TRACE debug_printf("%s: %d RRs to read\n", __FUNCTION__, dnss->rrcount);
059ec3d9 409 }
2a407b17
JH
410else
411 TRACE debug_printf("%s: next (%d left)\n", __FUNCTION__, dnss->rrcount);
059ec3d9 412
059ec3d9
PH
413/* The variable dnss->aptr is now pointing at the next RR, and dnss->rrcount
414contains the number of RR records left. */
415
416if (dnss->rrcount-- <= 0) return NULL;
417
418/* If expanding the RR domain name fails, behave as if no more records
419(something safe). */
420
2a407b17 421TRACE trace = "R-namelen";
059ec3d9 422namelen = dn_expand(dnsa->answer, dnsa->answer + dnsa->answerlen, dnss->aptr,
2a407b17
JH
423 (DN_EXPAND_ARG4_TYPE) &dnss->srr.name, DNS_MAXNAME);
424if (namelen < 0) goto null_return;
059ec3d9
PH
425
426/* Move the pointer past the name and fill in the rest of the data structure
427from the following bytes. */
428
2a407b17 429TRACE trace = "R-name";
dd708fd7 430if (dnss_inc_aptr(dnsa, dnss, namelen)) goto null_return;
2a407b17
JH
431
432GETSHORT(dnss->srr.type, dnss->aptr); /* Record type */
433TRACE trace = "R-class";
dd708fd7 434if (dnss_inc_aptr(dnsa, dnss, 2)) goto null_return; /* Don't want class */
2a407b17
JH
435GETLONG(dnss->srr.ttl, dnss->aptr); /* TTL */
436GETSHORT(dnss->srr.size, dnss->aptr); /* Size of data portion */
437dnss->srr.data = dnss->aptr; /* The record's data follows */
438
439/* Unchecked increment ok here since no further access on this iteration;
440will be checked on next at "R-name". */
441
442dnss->aptr += dnss->srr.size; /* Advance to next RR */
059ec3d9
PH
443
444/* Return a pointer to the dns_record structure within the dns_answer. This is
445for convenience so that the scans can use nice-looking for loops. */
446
2a407b17
JH
447return &dnss->srr;
448
449null_return:
d093f8e5
JH
450 TRACE debug_printf("%s: terminate (%d RRs left). Last op: %s; errno %d %s\n",
451 __FUNCTION__, dnss->rrcount, trace, errno, strerror(errno));
2a407b17
JH
452 dnss->rrcount = 0;
453 return NULL;
059ec3d9
PH
454}
455
456
8688d177 457/* Extract the AUTHORITY information from the answer. If the answer isn't
4c04137d 458authoritative (AA not set), we do not extract anything.
8db90b31 459
4c04137d 460The AUTHORITY section contains NS records if the name in question was found,
8688d177
JH
461it contains a SOA record otherwise. (This is just from experience and some
462tests, is there some spec?)
8db90b31 463
8688d177
JH
464Scan the whole AUTHORITY section, since it may contain other records
465(e.g. NSEC3) too.
466
467Return: name for the authority, in an allocated string, or NULL if none found */
09b80b4e
JH
468
469static const uschar *
470dns_extract_auth_name(const dns_answer * dnsa) /* FIXME: const dns_answer */
9820a77f 471{
09b80b4e
JH
472dns_scan dnss;
473dns_record * rr;
dd708fd7 474const HEADER * h = (const HEADER *) dnsa->answer;
09b80b4e 475
8688d177
JH
476if (h->nscount && h->aa)
477 for (rr = dns_next_rr(dnsa, &dnss, RESET_AUTHORITY);
478 rr; rr = dns_next_rr(dnsa, &dnss, RESET_NEXT))
479 if (rr->type == (h->ancount ? T_NS : T_SOA))
480 return string_copy(rr->name);
09b80b4e 481return NULL;
9820a77f
HSHR
482}
483
484
059ec3d9
PH
485
486
1f4a55da
PP
487/*************************************************
488* Return whether AD bit set in DNS result *
489*************************************************/
490
491/* We do not perform DNSSEC work ourselves; if the administrator has installed
492a verifying resolver which sets AD as appropriate, though, we'll use that.
4c04137d 493(AD = Authentic Data, AA = Authoritative Answer)
1f4a55da
PP
494
495Argument: pointer to dns answer block
496Returns: bool indicating presence of AD bit
497*/
498
499BOOL
4a142059 500dns_is_secure(const dns_answer * dnsa)
1f4a55da
PP
501{
502#ifdef DISABLE_DNSSEC
503DEBUG(D_dns)
504 debug_printf("DNSSEC support disabled at build-time; dns_is_secure() false\n");
505return FALSE;
506#else
dd708fd7 507const HEADER * h = (const HEADER *) dnsa->answer;
09b80b4e
JH
508const uschar * auth_name;
509const uschar * trusted;
9820a77f
HSHR
510
511if (h->ad) return TRUE;
9820a77f 512
4c04137d 513/* If the resolver we ask is authoritative for the domain in question, it
09b80b4e
JH
514* may not set the AD but the AA bit. If we explicitly trust
515* the resolver for that domain (via a domainlist in dns_trust_aa),
516* we return TRUE to indicate a secure answer.
517*/
9820a77f 518
09b80b4e
JH
519if ( !h->aa
520 || !dns_trust_aa
25bf2076
HSHR
521 || !(trusted = expand_string(dns_trust_aa))
522 || !*trusted
09b80b4e
JH
523 || !(auth_name = dns_extract_auth_name(dnsa))
524 || OK != match_isinlist(auth_name, &trusted, 0, NULL, NULL,
94431adb 525 MCL_DOMAIN, TRUE, NULL)
09b80b4e
JH
526 )
527 return FALSE;
9820a77f 528
09b80b4e
JH
529DEBUG(D_dns) debug_printf("DNS faked the AD bit "
530 "(got AA and matched with dns_trust_aa (%s in %s))\n",
531 auth_name, dns_trust_aa);
9820a77f 532
09b80b4e 533return TRUE;
1f4a55da
PP
534#endif
535}
536
4a142059
JH
537static void
538dns_set_insecure(dns_answer * dnsa)
539{
e87c01c7 540#ifndef DISABLE_DNSSEC
4a142059 541HEADER * h = (HEADER *)dnsa->answer;
8688d177 542h->aa = h->ad = 0;
e87c01c7 543#endif
4a142059
JH
544}
545
221dff13
HSHR
546/************************************************
547 * Check whether the AA bit is set *
548 * We need this to warn if we requested AD *
4c04137d 549 * from an authoritative server *
221dff13
HSHR
550 ************************************************/
551
552BOOL
553dns_is_aa(const dns_answer *dnsa)
554{
e87c01c7
MH
555#ifdef DISABLE_DNSSEC
556return FALSE;
557#else
dd708fd7 558return ((const HEADER*)dnsa->answer)->aa;
e87c01c7 559#endif
221dff13 560}
1f4a55da
PP
561
562
563
059ec3d9
PH
564/*************************************************
565* Turn DNS type into text *
566*************************************************/
567
885ccd3e
PH
568/* Turn the coded record type into a string for printing. All those that Exim
569uses should be included here.
059ec3d9
PH
570
571Argument: record type
572Returns: pointer to string
573*/
574
575uschar *
576dns_text_type(int t)
577{
578switch(t)
579 {
33397d19
PH
580 case T_A: return US"A";
581 case T_MX: return US"MX";
582 case T_AAAA: return US"AAAA";
583 case T_A6: return US"A6";
584 case T_TXT: return US"TXT";
eae0036b 585 case T_SPF: return US"SPF";
33397d19 586 case T_PTR: return US"PTR";
885ccd3e 587 case T_SOA: return US"SOA";
33397d19
PH
588 case T_SRV: return US"SRV";
589 case T_NS: return US"NS";
8e669ac1 590 case T_CNAME: return US"CNAME";
1e06383a 591 case T_TLSA: return US"TLSA";
33397d19 592 default: return US"?";
059ec3d9
PH
593 }
594}
595
596
597
598/*************************************************
599* Cache a failed DNS lookup result *
600*************************************************/
601
602/* We cache failed lookup results so as not to experience timeouts many
603times for the same domain. We need to retain the resolver options because they
604may change. For successful lookups, we rely on resolver and/or name server
605caching.
606
607Arguments:
608 name the domain name
609 type the lookup type
610 rc the return code
611
612Returns: the return code
613*/
614
615static int
1dc92d5a 616dns_return(const uschar * name, int type, int rc)
059ec3d9 617{
5bfb4cdf 618res_state resp = os_get_dns_resolver_res();
059ec3d9
PH
619tree_node *node = store_get_perm(sizeof(tree_node) + 290);
620sprintf(CS node->name, "%.255s-%s-%lx", name, dns_text_type(type),
f794c12b 621 (unsigned long) resp->options);
059ec3d9
PH
622node->data.val = rc;
623(void)tree_insertnode(&tree_dns_fails, node);
624return rc;
625}
626
059ec3d9
PH
627/*************************************************
628* Do basic DNS lookup *
629*************************************************/
630
631/* Call the resolver to look up the given domain name, using the given type,
632and check the result. The error code TRY_AGAIN is documented as meaning "non-
4c04137d 633Authoritative Host not found, or SERVERFAIL". Sometimes there are badly set
059ec3d9
PH
634up nameservers that produce this error continually, so there is the option of
635providing a list of domains for which this is treated as a non-existent
636host.
637
638Arguments:
639 dnsa pointer to dns_answer structure
640 name name to look up
641 type type of DNS record required (T_A, T_MX, etc)
642
643Returns: DNS_SUCCEED successful lookup
644 DNS_NOMATCH name not found (NXDOMAIN)
645 or name contains illegal characters (if checking)
30e18802 646 or name is an IP address (for IP address lookup)
059ec3d9
PH
647 DNS_NODATA domain exists, but no data for this type (NODATA)
648 DNS_AGAIN soft failure, try again later
649 DNS_FAIL DNS failure
650*/
651
652int
1dc92d5a 653dns_basic_lookup(dns_answer *dnsa, const uschar *name, int type)
059ec3d9
PH
654{
655#ifndef STAND_ALONE
7156b1ef 656int rc = -1;
55414b25 657const uschar *save_domain;
059ec3d9 658#endif
5bfb4cdf 659res_state resp = os_get_dns_resolver_res();
059ec3d9
PH
660
661tree_node *previous;
662uschar node_name[290];
663
664/* DNS lookup failures of any kind are cached in a tree. This is mainly so that
665a timeout on one domain doesn't happen time and time again for messages that
666have many addresses in the same domain. We rely on the resolver and name server
667caching for successful lookups. */
668
669sprintf(CS node_name, "%.255s-%s-%lx", name, dns_text_type(type),
f794c12b 670 (unsigned long) resp->options);
4b0fe319 671if ((previous = tree_search(tree_dns_fails, node_name)))
059ec3d9
PH
672 {
673 DEBUG(D_dns) debug_printf("DNS lookup of %.255s-%s: using cached value %s\n",
674 name, dns_text_type(type),
675 (previous->data.val == DNS_NOMATCH)? "DNS_NOMATCH" :
676 (previous->data.val == DNS_NODATA)? "DNS_NODATA" :
677 (previous->data.val == DNS_AGAIN)? "DNS_AGAIN" :
678 (previous->data.val == DNS_FAIL)? "DNS_FAIL" : "??");
679 return previous->data.val;
680 }
681
8c5d388a 682#ifdef SUPPORT_I18N
9d4319df
JH
683/* Convert all names to a-label form before doing lookup */
684 {
685 uschar * alabel;
686 uschar * errstr = NULL;
766e7a65
JH
687 DEBUG(D_dns) if (string_is_utf8(name))
688 debug_printf("convert utf8 '%s' to alabel for for lookup\n", name);
9d4319df
JH
689 if ((alabel = string_domain_utf8_to_alabel(name, &errstr)), errstr)
690 {
691 DEBUG(D_dns)
37bf366e 692 debug_printf("DNS name '%s' utf8 conversion to alabel failed: %s\n", name,
9d4319df
JH
693 errstr);
694 host_find_failed_syntax = TRUE;
695 return DNS_NOMATCH;
696 }
697 name = alabel;
698 }
699#endif
700
4c04137d 701/* If configured, check the hygiene of the name passed to lookup. Otherwise,
059ec3d9
PH
702although DNS lookups may give REFUSED at the lower level, some resolvers
703turn this into TRY_AGAIN, which is silly. Give a NOMATCH return, since such
704domains cannot be in the DNS. The check is now done by a regular expression;
705give it space for substring storage to save it having to get its own if the
706regex has substrings that are used - the default uses a conditional.
707
708This test is omitted for PTR records. These occur only in calls from the dnsdb
709lookup, which constructs the names itself, so they should be OK. Besides,
710bitstring labels don't conform to normal name syntax. (But the aren't used any
711more.)
712
713For SRV records, we omit the initial _smtp._tcp. components at the start. */
714
715#ifndef STAND_ALONE /* Omit this for stand-alone tests */
716
482d1455 717if (check_dns_names_pattern[0] != 0 && type != T_PTR && type != T_TXT)
059ec3d9 718 {
1dc92d5a 719 const uschar *checkname = name;
059ec3d9
PH
720 int ovector[3*(EXPAND_MAXN+1)];
721
476be7e2 722 dns_pattern_init();
059ec3d9
PH
723
724 /* For an SRV lookup, skip over the first two components (the service and
725 protocol names, which both start with an underscore). */
726
b4161d10 727 if (type == T_SRV || type == T_TLSA)
059ec3d9
PH
728 {
729 while (*checkname++ != '.');
730 while (*checkname++ != '.');
731 }
732
1dc92d5a 733 if (pcre_exec(regex_check_dns_names, NULL, CCS checkname, Ustrlen(checkname),
d093f8e5 734 0, PCRE_EOPT, ovector, nelem(ovector)) < 0)
059ec3d9
PH
735 {
736 DEBUG(D_dns)
737 debug_printf("DNS name syntax check failed: %s (%s)\n", name,
738 dns_text_type(type));
739 host_find_failed_syntax = TRUE;
740 return DNS_NOMATCH;
741 }
742 }
743
744#endif /* STAND_ALONE */
745
746/* Call the resolver; for an overlong response, res_search() will return the
bef5a11f
PH
747number of bytes the message would need, so we need to check for this case. The
748effect is to truncate overlong data.
749
30e18802
PH
750On some systems, res_search() will recognize "A-for-A" queries and return
751the IP address instead of returning -1 with h_error=HOST_NOT_FOUND. Some
752nameservers are also believed to do this. It is, of course, contrary to the
753specification of the DNS, so we lock it out. */
754
cc00f4af 755if ((type == T_A || type == T_AAAA) && string_is_ip_address(name, NULL) != 0)
30e18802
PH
756 return DNS_NOMATCH;
757
758/* If we are running in the test harness, instead of calling the normal resolver
bef5a11f
PH
759(res_search), we call fakens_search(), which recognizes certain special
760domains, and interfaces to a fake nameserver for certain special zones. */
761
cc00f4af 762dnsa->answerlen = running_in_test_harness
d093f8e5
JH
763 ? fakens_search(name, type, dnsa->answer, sizeof(dnsa->answer))
764 : res_search(CCS name, C_IN, type, dnsa->answer, sizeof(dnsa->answer));
059ec3d9 765
d093f8e5 766if (dnsa->answerlen > (int) sizeof(dnsa->answer))
80a47a2c
TK
767 {
768 DEBUG(D_dns) debug_printf("DNS lookup of %s (%s) resulted in overlong packet (size %d), truncating to %d.\n",
d093f8e5
JH
769 name, dns_text_type(type), dnsa->answerlen, sizeof(dnsa->answer));
770 dnsa->answerlen = sizeof(dnsa->answer);
80a47a2c 771 }
059ec3d9
PH
772
773if (dnsa->answerlen < 0) switch (h_errno)
774 {
775 case HOST_NOT_FOUND:
4b0fe319
JH
776 DEBUG(D_dns) debug_printf("DNS lookup of %s (%s) gave HOST_NOT_FOUND\n"
777 "returning DNS_NOMATCH\n", name, dns_text_type(type));
778 return dns_return(name, type, DNS_NOMATCH);
059ec3d9
PH
779
780 case TRY_AGAIN:
4b0fe319
JH
781 DEBUG(D_dns) debug_printf("DNS lookup of %s (%s) gave TRY_AGAIN\n",
782 name, dns_text_type(type));
059ec3d9 783
4b0fe319 784 /* Cut this out for various test programs */
1dc92d5a 785#ifndef STAND_ALONE
4b0fe319
JH
786 save_domain = deliver_domain;
787 deliver_domain = string_copy(name); /* set $domain */
788 rc = match_isinlist(name, (const uschar **)&dns_again_means_nonexist, 0, NULL, NULL,
789 MCL_DOMAIN, TRUE, NULL);
790 deliver_domain = save_domain;
791 if (rc != OK)
792 {
793 DEBUG(D_dns) debug_printf("returning DNS_AGAIN\n");
794 return dns_return(name, type, DNS_AGAIN);
795 }
796 DEBUG(D_dns) debug_printf("%s is in dns_again_means_nonexist: returning "
797 "DNS_NOMATCH\n", name);
798 return dns_return(name, type, DNS_NOMATCH);
059ec3d9 799
1dc92d5a 800#else /* For stand-alone tests */
4b0fe319 801 return dns_return(name, type, DNS_AGAIN);
1dc92d5a 802#endif
059ec3d9
PH
803
804 case NO_RECOVERY:
4b0fe319
JH
805 DEBUG(D_dns) debug_printf("DNS lookup of %s (%s) gave NO_RECOVERY\n"
806 "returning DNS_FAIL\n", name, dns_text_type(type));
807 return dns_return(name, type, DNS_FAIL);
059ec3d9
PH
808
809 case NO_DATA:
4b0fe319
JH
810 DEBUG(D_dns) debug_printf("DNS lookup of %s (%s) gave NO_DATA\n"
811 "returning DNS_NODATA\n", name, dns_text_type(type));
812 return dns_return(name, type, DNS_NODATA);
059ec3d9
PH
813
814 default:
4b0fe319
JH
815 DEBUG(D_dns) debug_printf("DNS lookup of %s (%s) gave unknown DNS error %d\n"
816 "returning DNS_FAIL\n", name, dns_text_type(type), h_errno);
817 return dns_return(name, type, DNS_FAIL);
059ec3d9
PH
818 }
819
820DEBUG(D_dns) debug_printf("DNS lookup of %s (%s) succeeded\n",
821 name, dns_text_type(type));
822
823return DNS_SUCCEED;
824}
825
826
827
828
829/************************************************
830* Do a DNS lookup and handle CNAMES *
831************************************************/
832
833/* Look up the given domain name, using the given type. Follow CNAMEs if
834necessary, but only so many times. There aren't supposed to be CNAME chains in
835the DNS, but you are supposed to cope with them if you find them.
836
837The assumption is made that if the resolver gives back records of the
838requested type *and* a CNAME, we don't need to make another call to look up
839the CNAME. I can't see how it could return only some of the right records. If
840it's done a CNAME lookup in the past, it will have all of them; if not, it
841won't return any.
842
843If fully_qualified_name is not NULL, set it to point to the full name
844returned by the resolver, if this is different to what it is given, unless
845the returned name starts with "*" as some nameservers seem to be returning
766e7a65
JH
846wildcards in this form. In international mode "different" means "alabel
847forms are different".
059ec3d9
PH
848
849Arguments:
850 dnsa pointer to dns_answer structure
851 name domain name to look up
852 type DNS record type (T_A, T_MX, etc)
853 fully_qualified_name if not NULL, return the returned name here if its
854 contents are different (i.e. it must be preset)
855
856Returns: DNS_SUCCEED successful lookup
857 DNS_NOMATCH name not found
858 DNS_NODATA no data found
859 DNS_AGAIN soft failure, try again later
860 DNS_FAIL DNS failure
861*/
862
863int
1dc92d5a 864dns_lookup(dns_answer *dnsa, const uschar *name, int type,
55414b25 865 const uschar **fully_qualified_name)
059ec3d9
PH
866{
867int i;
1dc92d5a 868const uschar *orig_name = name;
c85b3043 869BOOL secure_so_far = TRUE;
059ec3d9
PH
870
871/* Loop to follow CNAME chains so far, but no further... */
872
873for (i = 0; i < 10; i++)
874 {
806c3df9 875 uschar * data;
059ec3d9
PH
876 dns_record *rr, cname_rr, type_rr;
877 dns_scan dnss;
878 int datalen, rc;
879
880 /* DNS lookup failures get passed straight back. */
881
dd708fd7
JH
882 if ((rc = dns_basic_lookup(dnsa, name, type)) != DNS_SUCCEED)
883 return rc;
059ec3d9
PH
884
885 /* We should have either records of the required type, or a CNAME record,
886 or both. We need to know whether both exist for getting the fully qualified
887 name, but avoid scanning more than necessary. Note that we must copy the
888 contents of any rr blocks returned by dns_next_rr() as they use the same
889 area in the dnsa block. */
890
891 cname_rr.data = type_rr.data = NULL;
892 for (rr = dns_next_rr(dnsa, &dnss, RESET_ANSWERS);
8688d177 893 rr; rr = dns_next_rr(dnsa, &dnss, RESET_NEXT))
059ec3d9
PH
894 if (rr->type == type)
895 {
896 if (type_rr.data == NULL) type_rr = *rr;
897 if (cname_rr.data != NULL) break;
898 }
dd708fd7
JH
899 else if (rr->type == T_CNAME)
900 cname_rr = *rr;
059ec3d9 901
a2042e78
PH
902 /* For the first time round this loop, if a CNAME was found, take the fully
903 qualified name from it; otherwise from the first data record, if present. */
059ec3d9 904
dd708fd7 905 if (i == 0 && fully_qualified_name)
059ec3d9 906 {
dd708fd7
JH
907 uschar * rr_name = cname_rr.data
908 ? cname_rr.name : type_rr.data ? type_rr.name : NULL;
766e7a65
JH
909 if ( rr_name
910 && Ustrcmp(rr_name, *fully_qualified_name) != 0
911 && rr_name[0] != '*'
8c5d388a 912#ifdef SUPPORT_I18N
766e7a65
JH
913 && ( !string_is_utf8(*fully_qualified_name)
914 || Ustrcmp(rr_name,
915 string_domain_utf8_to_alabel(*fully_qualified_name, NULL)) != 0
916 )
917#endif
918 )
919 *fully_qualified_name = string_copy_dnsdomain(rr_name);
059ec3d9
PH
920 }
921
922 /* If any data records of the correct type were found, we are done. */
923
806c3df9 924 if (type_rr.data)
c85b3043
JH
925 {
926 if (!secure_so_far) /* mark insecure if any element of CNAME chain was */
4a142059 927 dns_set_insecure(dnsa);
c85b3043
JH
928 return DNS_SUCCEED;
929 }
059ec3d9
PH
930
931 /* If there are no data records, we need to re-scan the DNS using the
932 domain given in the CNAME record, which should exist (otherwise we should
933 have had a failure from dns_lookup). However code against the possibility of
934 its not existing. */
935
806c3df9
JH
936 if (!cname_rr.data)
937 return DNS_FAIL;
938
939 data = store_get(256);
dd708fd7
JH
940 if ((datalen = dn_expand(dnsa->answer, dnsa->answer + dnsa->answerlen,
941 cname_rr.data, (DN_EXPAND_ARG4_TYPE)data, 256)) < 0)
806c3df9 942 return DNS_FAIL;
059ec3d9 943 name = data;
a2042e78 944
c85b3043
JH
945 if (!dns_is_secure(dnsa))
946 secure_so_far = FALSE;
947
a2042e78 948 DEBUG(D_dns) debug_printf("CNAME found: change to %s\n", name);
059ec3d9
PH
949 } /* Loop back to do another lookup */
950
951/*Control reaches here after 10 times round the CNAME loop. Something isn't
952right... */
953
954log_write(0, LOG_MAIN, "CNAME loop for %s encountered", orig_name);
955return DNS_FAIL;
956}
957
958
959
33397d19
PH
960
961
962
963/************************************************
964* Do a DNS lookup and handle virtual types *
965************************************************/
966
9820a77f 967/* This function handles some invented "lookup types" that synthesize features
8e669ac1 968not available in the basic types. The special types all have negative values.
33397d19
PH
969Positive type values are passed straight on to dns_lookup().
970
971Arguments:
972 dnsa pointer to dns_answer structure
973 name domain name to look up
974 type DNS record type (T_A, T_MX, etc or a "special")
975 fully_qualified_name if not NULL, return the returned name here if its
976 contents are different (i.e. it must be preset)
977
978Returns: DNS_SUCCEED successful lookup
979 DNS_NOMATCH name not found
980 DNS_NODATA no data found
981 DNS_AGAIN soft failure, try again later
982 DNS_FAIL DNS failure
983*/
984
985int
1dc92d5a 986dns_special_lookup(dns_answer *dnsa, const uschar *name, int type,
55414b25 987 const uschar **fully_qualified_name)
33397d19 988{
d2a2c69b 989switch (type)
e5a9dba6 990 {
d2a2c69b
JH
991 /* The "mx hosts only" type doesn't require any special action here */
992 case T_MXH:
1705dd20 993 return dns_lookup(dnsa, name, T_MX, fully_qualified_name);
d2a2c69b
JH
994
995 /* Find nameservers for the domain or the nearest enclosing zone, excluding
996 the root servers. */
997 case T_ZNS:
1705dd20
JH
998 type = T_NS;
999 /* FALLTHROUGH */
d2a2c69b 1000 case T_SOA:
1705dd20
JH
1001 {
1002 const uschar *d = name;
1003 while (d != 0)
1004 {
1005 int rc = dns_lookup(dnsa, d, type, fully_qualified_name);
1006 if (rc != DNS_NOMATCH && rc != DNS_NODATA) return rc;
1007 while (*d != 0 && *d != '.') d++;
1008 if (*d++ == 0) break;
1009 }
1010 return DNS_NOMATCH;
1011 }
d2a2c69b
JH
1012
1013 /* Try to look up the Client SMTP Authorization SRV record for the name. If
1014 there isn't one, search from the top downwards for a CSA record in a parent
1015 domain, which might be making assertions about subdomains. If we find a record
1016 we set fully_qualified_name to whichever lookup succeeded, so that the caller
1017 can tell whether to look at the explicit authorization field or the subdomain
1018 assertion field. */
1019 case T_CSA:
1705dd20
JH
1020 {
1021 uschar *srvname, *namesuff, *tld, *p;
1022 int priority, weight, port;
1023 int limit, rc, i;
1024 BOOL ipv6;
1025 dns_record *rr;
1026 dns_scan dnss;
1027
1028 DEBUG(D_dns) debug_printf("CSA lookup of %s\n", name);
1029
1030 srvname = string_sprintf("_client._smtp.%s", name);
1031 rc = dns_lookup(dnsa, srvname, T_SRV, NULL);
1032 if (rc == DNS_SUCCEED || rc == DNS_AGAIN)
1033 {
1034 if (rc == DNS_SUCCEED) *fully_qualified_name = string_copy(name);
1035 return rc;
1036 }
d2a2c69b 1037
1705dd20
JH
1038 /* Search for CSA subdomain assertion SRV records from the top downwards,
1039 starting with the 2nd level domain. This order maximizes cache-friendliness.
1040 We skip the top level domains to avoid loading their nameservers and because
1041 we know they'll never have CSA SRV records. */
d2a2c69b 1042
1705dd20
JH
1043 namesuff = Ustrrchr(name, '.');
1044 if (namesuff == NULL) return DNS_NOMATCH;
1045 tld = namesuff + 1;
1046 ipv6 = FALSE;
1047 limit = dns_csa_search_limit;
1048
1049 /* Use more appropriate search parameters if we are in the reverse DNS. */
1050
1051 if (strcmpic(namesuff, US".arpa") == 0)
1052 if (namesuff - 8 > name && strcmpic(namesuff - 8, US".in-addr.arpa") == 0)
1053 {
1054 namesuff -= 8;
d2a2c69b 1055 tld = namesuff + 1;
1705dd20
JH
1056 limit = 3;
1057 }
1058 else if (namesuff - 4 > name && strcmpic(namesuff - 4, US".ip6.arpa") == 0)
1059 {
1060 namesuff -= 4;
1061 tld = namesuff + 1;
1062 ipv6 = TRUE;
1063 limit = 3;
1064 }
d2a2c69b 1065
1705dd20 1066 DEBUG(D_dns) debug_printf("CSA TLD %s\n", tld);
d2a2c69b 1067
1705dd20
JH
1068 /* Do not perform the search if the top level or 2nd level domains do not
1069 exist. This is quite common, and when it occurs all the search queries would
1070 go to the root or TLD name servers, which is not friendly. So we check the
1071 AUTHORITY section; if it contains the root's SOA record or the TLD's SOA then
1072 the TLD or the 2LD (respectively) doesn't exist and we can skip the search.
1073 If the TLD and the 2LD exist but the explicit CSA record lookup failed, then
1074 the AUTHORITY SOA will be the 2LD's or a subdomain thereof. */
1075
1076 if (rc == DNS_NOMATCH)
1077 {
1078 /* This is really gross. The successful return value from res_search() is
1079 the packet length, which is stored in dnsa->answerlen. If we get a
1080 negative DNS reply then res_search() returns -1, which causes the bounds
1081 checks for name decompression to fail when it is treated as a packet
1082 length, which in turn causes the authority search to fail. The correct
1083 packet length has been lost inside libresolv, so we have to guess a
1084 replacement value. (The only way to fix this properly would be to
1085 re-implement res_search() and res_query() so that they don't muddle their
1086 success and packet length return values.) For added safety we only reset
1087 the packet length if the packet header looks plausible. */
1088
dd708fd7 1089 const HEADER * h = (const HEADER *)dnsa->answer;
1705dd20
JH
1090 if (h->qr == 1 && h->opcode == QUERY && h->tc == 0
1091 && (h->rcode == NOERROR || h->rcode == NXDOMAIN)
1092 && ntohs(h->qdcount) == 1 && ntohs(h->ancount) == 0
1093 && ntohs(h->nscount) >= 1)
1094 dnsa->answerlen = MAXPACKET;
1095
1096 for (rr = dns_next_rr(dnsa, &dnss, RESET_AUTHORITY);
8688d177 1097 rr; rr = dns_next_rr(dnsa, &dnss, RESET_NEXT)
1705dd20
JH
1098 )
1099 if (rr->type != T_SOA) continue;
1100 else if (strcmpic(rr->name, US"") == 0 ||
1101 strcmpic(rr->name, tld) == 0) return DNS_NOMATCH;
1102 else break;
1103 }
d2a2c69b 1104
1705dd20
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1105 for (i = 0; i < limit; i++)
1106 {
1107 if (ipv6)
1108 {
1109 /* Scan through the IPv6 reverse DNS in chunks of 16 bits worth of IP
1110 address, i.e. 4 hex chars and 4 dots, i.e. 8 chars. */
1111 namesuff -= 8;
1112 if (namesuff <= name) return DNS_NOMATCH;
1113 }
1114 else
1115 /* Find the start of the preceding domain name label. */
1116 do
1117 if (--namesuff <= name) return DNS_NOMATCH;
1118 while (*namesuff != '.');
1119
1120 DEBUG(D_dns) debug_printf("CSA parent search at %s\n", namesuff + 1);
1121
1122 srvname = string_sprintf("_client._smtp.%s", namesuff + 1);
1123 rc = dns_lookup(dnsa, srvname, T_SRV, NULL);
1124 if (rc == DNS_AGAIN) return rc;
1125 if (rc != DNS_SUCCEED) continue;
1126
1127 /* Check that the SRV record we have found is worth returning. We don't
1128 just return the first one we find, because some lower level SRV record
1129 might make stricter assertions than its parent domain. */
1130
1131 for (rr = dns_next_rr(dnsa, &dnss, RESET_ANSWERS);
8688d177 1132 rr; rr = dns_next_rr(dnsa, &dnss, RESET_NEXT)) if (rr->type == T_SRV)
1705dd20 1133 {
dd708fd7 1134 const uschar * p = rr->data;
d2a2c69b 1135
1705dd20 1136 /* Extract the numerical SRV fields (p is incremented) */
1705dd20
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1137 GETSHORT(priority, p);
1138 GETSHORT(weight, p); weight = weight; /* compiler quietening */
1139 GETSHORT(port, p);
d2a2c69b 1140
1705dd20
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1141 /* Check the CSA version number */
1142 if (priority != 1) continue;
d2a2c69b 1143
1705dd20
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1144 /* If it's making an interesting assertion, return this response. */
1145 if (port & 1)
d2a2c69b 1146 {
1705dd20
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1147 *fully_qualified_name = namesuff + 1;
1148 return DNS_SUCCEED;
d2a2c69b 1149 }
d2a2c69b 1150 }
1705dd20
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1151 }
1152 return DNS_NOMATCH;
1153 }
e5a9dba6 1154
d2a2c69b 1155 default:
1705dd20
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1156 if (type >= 0)
1157 return dns_lookup(dnsa, name, type, fully_qualified_name);
e5a9dba6
PH
1158 }
1159
33397d19
PH
1160/* Control should never reach here */
1161
1162return DNS_FAIL;
1163}
1164
1165
1166
059ec3d9
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1167
1168
1169/*************************************************
1170* Get address(es) from DNS record *
1171*************************************************/
1172
d57d474f 1173/* The record type is either T_A for an IPv4 address or T_AAAA for an IPv6 address.
059ec3d9
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1174
1175Argument:
1176 dnsa the DNS answer block
1177 rr the RR
1178
e1a3f32f 1179Returns: pointer to a chain of dns_address items; NULL when the dnsa was overrun
059ec3d9
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1180*/
1181
1182dns_address *
1183dns_address_from_rr(dns_answer *dnsa, dns_record *rr)
1184{
e1a3f32f
JH
1185dns_address * yield = NULL;
1186uschar * dnsa_lim = dnsa->answer + dnsa->answerlen;
059ec3d9
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1187
1188if (rr->type == T_A)
1189 {
d2a2c69b 1190 uschar *p = US rr->data;
e1a3f32f
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1191 if (p + 4 <= dnsa_lim)
1192 {
1193 yield = store_get(sizeof(dns_address) + 20);
1194 (void)sprintf(CS yield->address, "%d.%d.%d.%d", p[0], p[1], p[2], p[3]);
1195 yield->next = NULL;
1196 }
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1197 }
1198
1199#if HAVE_IPV6
1200
059ec3d9
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1201else
1202 {
e1a3f32f
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1203 if (rr->data + 16 <= dnsa_lim)
1204 {
d57d474f
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1205 struct in6_addr in6;
1206 int i;
f794c12b 1207 for (i = 0; i < 16; i++) in6.s6_addr[i] = rr->data[i];
e1a3f32f 1208 yield = store_get(sizeof(dns_address) + 50);
d57d474f 1209 inet_ntop(AF_INET6, &in6, CS yield->address, 50);
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JH
1210 yield->next = NULL;
1211 }
059ec3d9
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1212 }
1213#endif /* HAVE_IPV6 */
1214
1215return yield;
1216}
1217
476be7e2
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1218
1219
1220void
1221dns_pattern_init(void)
1222{
1223if (check_dns_names_pattern[0] != 0 && !regex_check_dns_names)
1224 regex_check_dns_names =
1225 regex_must_compile(check_dns_names_pattern, FALSE, TRUE);
1226}
1227
8c51eead
JH
1228/* vi: aw ai sw=2
1229*/
059ec3d9 1230/* End of dns.c */