Update copyright year to 2018
[exim.git] / src / src / lookups / dnsdb.c
CommitLineData
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1/*************************************************
2* Exim - an Internet mail transport agent *
3*************************************************/
4
f9ba5e22 5/* Copyright (c) University of Cambridge 1995 - 2018 */
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6/* See the file NOTICE for conditions of use and distribution. */
7
8#include "../exim.h"
9#include "lf_functions.h"
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10
11
12
13/* Ancient systems (e.g. SunOS4) don't appear to have T_TXT defined in their
14header files. */
15
16#ifndef T_TXT
acec9514 17# define T_TXT 16
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18#endif
19
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20/* Many systems do not have T_SPF. */
21#ifndef T_SPF
acec9514 22# define T_SPF 99
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23#endif
24
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25/* New TLSA record for DANE */
26#ifndef T_TLSA
acec9514 27# define T_TLSA 52
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28#endif
29
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30/* Table of recognized DNS record types and their integer values. */
31
1ba28e2b 32static const char *type_names[] = {
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33 "a",
34#if HAVE_IPV6
3a796370 35 "a+",
0756eb3c 36 "aaaa",
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37#endif
38 "cname",
e5a9dba6 39 "csa",
0756eb3c 40 "mx",
ea3bc19b 41 "mxh",
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42 "ns",
43 "ptr",
d2a2c69b 44 "soa",
eae0036b 45 "spf",
0756eb3c 46 "srv",
1e06383a 47 "tlsa",
33397d19 48 "txt",
8e669ac1 49 "zns"
33397d19 50};
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51
52static int type_values[] = {
53 T_A,
54#if HAVE_IPV6
66be95e0 55 T_ADDRESSES, /* Private type for AAAA + A */
0756eb3c 56 T_AAAA,
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57#endif
58 T_CNAME,
e5a9dba6 59 T_CSA, /* Private type for "Client SMTP Authorization". */
0756eb3c 60 T_MX,
ea3bc19b 61 T_MXH, /* Private type for "MX hostnames" */
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62 T_NS,
63 T_PTR,
d2a2c69b 64 T_SOA,
eae0036b 65 T_SPF,
0756eb3c 66 T_SRV,
1e06383a 67 T_TLSA,
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68 T_TXT,
69 T_ZNS /* Private type for "zone nameservers" */
70};
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71
72
73/*************************************************
74* Open entry point *
75*************************************************/
76
77/* See local README for interface description. */
78
e6d225ae 79static void *
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80dnsdb_open(uschar *filename, uschar **errmsg)
81{
82filename = filename; /* Keep picky compilers happy */
83errmsg = errmsg; /* Ditto */
84return (void *)(-1); /* Any non-0 value */
85}
86
87
88
89/*************************************************
90* Find entry point for dnsdb *
91*************************************************/
92
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93/* See local README for interface description. The query in the "keystring" may
94consist of a number of parts.
95
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96(a) If the first significant character is '>' then the next character is the
97separator character that is used when multiple records are found. The default
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98separator is newline.
99
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100(b) If the next character is ',' then the next character is the separator
101character used for multiple items of text in "TXT" records. Alternatively,
102if the next character is ';' then these multiple items are concatenated with
103no separator. With neither of these options specified, only the first item
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104is output. Similarly for "SPF" records, but the default for joining multiple
105items in one SPF record is the empty string, for direct concatenation.
0d0c6357 106
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107(c) Options, all comma-terminated, in any order. Any unrecognised option
108terminates option processing. Recognised options are:
109
110- 'defer_FOO': set the defer behaviour to FOO. The possible behaviours are:
111'strict', where any defer causes the whole lookup to defer; 'lax', where a defer
112causes the whole lookup to defer only if none of the DNS queries succeeds; and
113'never', where all defers are as if the lookup failed. The default is 'lax'.
114
115- 'dnssec_FOO', with 'strict', 'lax' and 'never' (default). The meanings are
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116require, try and don't-try dnssec respectively.
117
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118- 'retrans_VAL', set the timeout value. VAL is an Exim time specification
119(eg "5s"). The default is set by the main configuration option 'dns_retrans'.
120
121- 'retry_VAL', set the retry count on timeouts. VAL is an integer. The
122default is set by the main configuration option "dns_retry".
123
124(d) If the next sequence of characters is a sequence of letters and digits
8e669ac1 125followed by '=', it is interpreted as the name of the DNS record type. The
ff4dbb19 126default is "TXT".
7bb56e1f 127
fd7f7910 128(e) Then there follows list of domain names. This is a generalized Exim list,
8e669ac1 129which may start with '<' in order to set a specific separator. The default
7bb56e1f 130separator, as always, is colon. */
0756eb3c 131
e6d225ae 132static int
55414b25 133dnsdb_find(void *handle, uschar *filename, const uschar *keystring, int length,
14b3c5bc 134 uschar **result, uschar **errmsg, uint *do_cache)
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135{
136int rc;
7bb56e1f 137int sep = 0;
ff4dbb19 138int defer_mode = PASS;
fd3b6a4a 139int dnssec_mode = OK;
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140int save_retrans = dns_retrans;
141int save_retry = dns_retry;
542bc632 142int type;
c38d6da9 143int failrc = FAIL;
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144const uschar *outsep = CUS"\n";
145const uschar *outsep2 = NULL;
e5a9dba6 146uschar *equals, *domain, *found;
0756eb3c 147
acec9514 148/* Because we're working in the search pool, we try to reclaim as much
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149store as possible later, so we preallocate the result here */
150
acec9514 151gstring * yield = string_get(256);
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152
153dns_record *rr;
154dns_answer dnsa;
155dns_scan dnss;
156
157handle = handle; /* Keep picky compilers happy */
158filename = filename;
159length = length;
160do_cache = do_cache;
161
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162/* If the string starts with '>' we change the output separator.
163If it's followed by ';' or ',' we set the TXT output separator. */
0756eb3c 164
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165while (isspace(*keystring)) keystring++;
166if (*keystring == '>')
0756eb3c 167 {
7bb56e1f 168 outsep = keystring + 1;
8e669ac1 169 keystring += 2;
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170 if (*keystring == ',')
171 {
172 outsep2 = keystring + 1;
173 keystring += 2;
174 }
175 else if (*keystring == ';')
176 {
177 outsep2 = US"";
178 keystring++;
179 }
7bb56e1f 180 while (isspace(*keystring)) keystring++;
8e669ac1 181 }
7bb56e1f 182
fd3b6a4a 183/* Check for a modifier keyword. */
ff4dbb19 184
fd7f7910 185for (;;)
ff4dbb19 186 {
fd3b6a4a 187 if (strncmpic(keystring, US"defer_", 6) == 0)
ff4dbb19 188 {
ff4dbb19 189 keystring += 6;
fd3b6a4a 190 if (strncmpic(keystring, US"strict", 6) == 0)
fd7f7910 191 { defer_mode = DEFER; keystring += 6; }
fd3b6a4a 192 else if (strncmpic(keystring, US"lax", 3) == 0)
fd7f7910 193 { defer_mode = PASS; keystring += 3; }
fd3b6a4a 194 else if (strncmpic(keystring, US"never", 5) == 0)
fd7f7910 195 { defer_mode = OK; keystring += 5; }
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196 else
197 {
198 *errmsg = US"unsupported dnsdb defer behaviour";
199 return DEFER;
200 }
ff4dbb19 201 }
fd7f7910 202 else if (strncmpic(keystring, US"dnssec_", 7) == 0)
ff4dbb19 203 {
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204 keystring += 7;
205 if (strncmpic(keystring, US"strict", 6) == 0)
fd7f7910 206 { dnssec_mode = DEFER; keystring += 6; }
fd3b6a4a 207 else if (strncmpic(keystring, US"lax", 3) == 0)
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208 { dnssec_mode = PASS; keystring += 3; }
209 else if (strncmpic(keystring, US"never", 5) == 0)
210 { dnssec_mode = OK; keystring += 5; }
211 else
fd3b6a4a 212 {
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213 *errmsg = US"unsupported dnsdb dnssec behaviour";
214 return DEFER;
fd3b6a4a 215 }
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216 }
217 else if (strncmpic(keystring, US"retrans_", 8) == 0)
218 {
219 int timeout_sec;
220 if ((timeout_sec = readconf_readtime(keystring += 8, ',', FALSE)) <= 0)
fd3b6a4a 221 {
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222 *errmsg = US"unsupported dnsdb timeout value";
223 return DEFER;
fd3b6a4a 224 }
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225 dns_retrans = timeout_sec;
226 while (*keystring != ',') keystring++;
227 }
228 else if (strncmpic(keystring, US"retry_", 6) == 0)
229 {
230 int retries;
fc362fc5 231 if ((retries = (int)strtol(CCS keystring + 6, CSS &keystring, 0)) < 0)
fd3b6a4a 232 {
fd7f7910 233 *errmsg = US"unsupported dnsdb retry count";
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234 return DEFER;
235 }
fd7f7910 236 dns_retry = retries;
ff4dbb19 237 }
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238 else
239 break;
240
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241 while (isspace(*keystring)) keystring++;
242 if (*keystring++ != ',')
243 {
fd3b6a4a 244 *errmsg = US"dnsdb modifier syntax error";
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245 return DEFER;
246 }
247 while (isspace(*keystring)) keystring++;
248 }
249
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250/* Figure out the "type" value if it is not T_TXT.
251If the keystring contains an = this must be preceded by a valid type name. */
7bb56e1f 252
542bc632 253type = T_TXT;
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254if ((equals = Ustrchr(keystring, '=')) != NULL)
255 {
256 int i, len;
257 uschar *tend = equals;
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258
259 while (tend > keystring && isspace(tend[-1])) tend--;
260 len = tend - keystring;
261
9be4572b 262 for (i = 0; i < nelem(type_names); i++)
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263 if (len == Ustrlen(type_names[i]) &&
264 strncmpic(keystring, US type_names[i], len) == 0)
265 {
266 type = type_values[i];
267 break;
268 }
8e669ac1 269
9be4572b 270 if (i >= nelem(type_names))
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271 {
272 *errmsg = US"unsupported DNS record type";
273 return DEFER;
274 }
8e669ac1 275
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276 keystring = equals + 1;
277 while (isspace(*keystring)) keystring++;
0756eb3c 278 }
8e669ac1 279
7bb56e1f 280/* Initialize the resolver in case this is the first time it has been used. */
0756eb3c 281
fd3b6a4a 282dns_init(FALSE, FALSE, dnssec_mode != OK);
0756eb3c 283
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284/* The remainder of the string must be a list of domains. As long as the lookup
285for at least one of them succeeds, we return success. Failure means that none
286of them were found.
0756eb3c 287
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288The original implementation did not support a list of domains. Adding the list
289feature is compatible, except in one case: when PTR records are being looked up
290for a single IPv6 address. Fortunately, we can hack in a compatibility feature
291here: If the type is PTR and no list separator is specified, and the entire
292remaining string is valid as an IP address, set an impossible separator so that
7bb56e1f 293it is treated as one item. */
33397d19 294
7bb56e1f 295if (type == T_PTR && keystring[0] != '<' &&
7e66e54d 296 string_is_ip_address(keystring, NULL) != 0)
7bb56e1f 297 sep = -1;
0756eb3c 298
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299/* SPF strings should be concatenated without a separator, thus make
300it the default if not defined (see RFC 4408 section 3.1.3).
301Multiple SPF records are forbidden (section 3.1.2) but are currently
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302not handled specially, thus they are concatenated with \n by default.
303MX priority and value are space-separated by default.
304SRV and TLSA record parts are space-separated by default. */
542bc632 305
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306if (!outsep2) switch(type)
307 {
308 case T_SPF: outsep2 = US""; break;
309 case T_SRV: case T_MX: case T_TLSA: outsep2 = US" "; break;
310 }
542bc632 311
7bb56e1f 312/* Now scan the list and do a lookup for each item */
0756eb3c 313
fd7f7910 314while ((domain = string_nextinlist(&keystring, &sep, NULL, 0)))
8e669ac1 315 {
7bb56e1f 316 uschar rbuffer[256];
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317 int searchtype = (type == T_CSA)? T_SRV : /* record type we want */
318 (type == T_MXH)? T_MX :
319 (type == T_ZNS)? T_NS : type;
320
321 /* If the type is PTR or CSA, we have to construct the relevant magic lookup
322 key if the original is an IP address (some experimental protocols are using
323 PTR records for different purposes where the key string is a host name, and
324 Exim's extended CSA can be keyed by domains or IP addresses). This code for
325 doing the reversal is now in a separate function. */
326
327 if ((type == T_PTR || type == T_CSA) &&
7e66e54d 328 string_is_ip_address(domain, NULL) != 0)
0756eb3c 329 {
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330 dns_build_reverse(domain, rbuffer);
331 domain = rbuffer;
0756eb3c 332 }
8e669ac1 333
3a796370 334 do
c38d6da9 335 {
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336 DEBUG(D_lookup) debug_printf("dnsdb key: %s\n", domain);
337
338 /* Do the lookup and sort out the result. There are four special types that
66be95e0 339 are handled specially: T_CSA, T_ZNS, T_ADDRESSES and T_MXH.
3a796370 340 The first two are handled in a special lookup function so that the facility
66be95e0 341 could be used from other parts of the Exim code. T_ADDRESSES is handled by looping
3a796370
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342 over the types of A lookup. T_MXH affects only what happens later on in
343 this function, but for tidiness it is handled by the "special". If the
344 lookup fails, continue with the next domain. In the case of DEFER, adjust
345 the final "nothing found" result, but carry on to the next domain. */
346
347 found = domain;
6abc190a 348#if HAVE_IPV6
66be95e0 349 if (type == T_ADDRESSES) /* NB cannot happen unless HAVE_IPV6 */
3a796370 350 {
cc00f4af 351 if (searchtype == T_ADDRESSES) searchtype = T_AAAA;
3a796370 352 else if (searchtype == T_AAAA) searchtype = T_A;
55414b25 353 rc = dns_special_lookup(&dnsa, domain, searchtype, CUSS &found);
3a796370
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354 }
355 else
6abc190a 356#endif
55414b25 357 rc = dns_special_lookup(&dnsa, domain, type, CUSS &found);
ea3bc19b 358
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359 lookup_dnssec_authenticated = dnssec_mode==OK ? NULL
360 : dns_is_secure(&dnsa) ? US"yes" : US"no";
361
3a796370 362 if (rc == DNS_NOMATCH || rc == DNS_NODATA) continue;
91f40ccd 363 if ( rc != DNS_SUCCEED
9852336a 364 || (dnssec_mode == DEFER && !dns_is_secure(&dnsa))
91f40ccd 365 )
3a796370 366 {
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JH
367 if (defer_mode == DEFER)
368 {
fd7f7910
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369 dns_retrans = save_retrans;
370 dns_retry = save_retry;
9d9c3746 371 dns_init(FALSE, FALSE, FALSE); /* clr dnssec bit */
fd3b6a4a
JH
372 return DEFER; /* always defer */
373 }
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374 if (defer_mode == PASS) failrc = DEFER; /* defer only if all do */
375 continue; /* treat defer as fail */
376 }
fd3b6a4a 377
8e669ac1 378
3a796370 379 /* Search the returned records */
8e669ac1 380
acec9514
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381 for (rr = dns_next_rr(&dnsa, &dnss, RESET_ANSWERS); rr;
382 rr = dns_next_rr(&dnsa, &dnss, RESET_NEXT)) if (rr->type == searchtype)
0756eb3c 383 {
14b3c5bc
JH
384 if (*do_cache > rr->ttl)
385 *do_cache = rr->ttl;
386
cc00f4af 387 if (type == T_A || type == T_AAAA || type == T_ADDRESSES)
7bb56e1f 388 {
3a796370 389 dns_address *da;
e1a3f32f 390 for (da = dns_address_from_rr(&dnsa, rr); da; da = da->next)
3a796370 391 {
acec9514
JH
392 if (yield->ptr) yield = string_catn(yield, outsep, 1);
393 yield = string_cat(yield, da->address);
3a796370
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394 }
395 continue;
7bb56e1f 396 }
8e669ac1 397
3a796370
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398 /* Other kinds of record just have one piece of data each, but there may be
399 several of them, of course. */
8e669ac1 400
acec9514 401 if (yield->ptr) yield = string_catn(yield, outsep, 1);
8e669ac1 402
3a796370 403 if (type == T_TXT || type == T_SPF)
80a47a2c 404 {
acec9514
JH
405 if (outsep2 == NULL) /* output only the first item of data */
406 yield = string_catn(yield, US (rr->data+1), (rr->data)[0]);
3a796370
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407 else
408 {
409 /* output all items */
410 int data_offset = 0;
411 while (data_offset < rr->size)
412 {
413 uschar chunk_len = (rr->data)[data_offset++];
414 if (outsep2[0] != '\0' && data_offset != 1)
acec9514
JH
415 yield = string_catn(yield, outsep2, 1);
416 yield = string_catn(yield, US ((rr->data)+data_offset), chunk_len);
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417 data_offset += chunk_len;
418 }
0d0c6357 419 }
80a47a2c 420 }
1e06383a
TL
421 else if (type == T_TLSA)
422 {
423 uint8_t usage, selector, matching_type;
424 uint16_t i, payload_length;
425 uschar s[MAX_TLSA_EXPANDED_SIZE];
426 uschar * sp = s;
d2a2c69b 427 uschar * p = US rr->data;
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TL
428
429 usage = *p++;
430 selector = *p++;
431 matching_type = *p++;
432 /* What's left after removing the first 3 bytes above */
433 payload_length = rr->size - 3;
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434 sp += sprintf(CS s, "%d%c%d%c%d%c", usage, *outsep2,
435 selector, *outsep2, matching_type, *outsep2);
1e06383a
TL
436 /* Now append the cert/identifier, one hex char at a time */
437 for (i=0;
438 i < payload_length && sp-s < (MAX_TLSA_EXPANDED_SIZE - 4);
439 i++)
1e06383a 440 sp += sprintf(CS sp, "%02x", (unsigned char)p[i]);
d2a2c69b 441
acec9514 442 yield = string_cat(yield, s);
1e06383a 443 }
d2a2c69b 444 else /* T_CNAME, T_CSA, T_MX, T_MXH, T_NS, T_PTR, T_SOA, T_SRV */
e5a9dba6 445 {
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446 int priority, weight, port;
447 uschar s[264];
d2a2c69b
JH
448 uschar * p = US rr->data;
449
450 switch (type)
451 {
452 case T_MXH:
453 /* mxh ignores the priority number and includes only the hostnames */
454 GETSHORT(priority, p);
455 break;
456
457 case T_MX:
458 GETSHORT(priority, p);
459 sprintf(CS s, "%d%c", priority, *outsep2);
acec9514 460 yield = string_cat(yield, s);
d2a2c69b
JH
461 break;
462
463 case T_SRV:
464 GETSHORT(priority, p);
465 GETSHORT(weight, p);
466 GETSHORT(port, p);
467 sprintf(CS s, "%d%c%d%c%d%c", priority, *outsep2,
468 weight, *outsep2, port, *outsep2);
acec9514 469 yield = string_cat(yield, s);
d2a2c69b
JH
470 break;
471
472 case T_CSA:
473 /* See acl_verify_csa() for more comments about CSA. */
474 GETSHORT(priority, p);
475 GETSHORT(weight, p);
476 GETSHORT(port, p);
477
478 if (priority != 1) continue; /* CSA version must be 1 */
479
480 /* If the CSA record we found is not the one we asked for, analyse
481 the subdomain assertions in the port field, else analyse the direct
482 authorization status in the weight field. */
483
484 if (Ustrcmp(found, domain) != 0)
485 {
486 if (port & 1) *s = 'X'; /* explicit authorization required */
487 else *s = '?'; /* no subdomain assertions here */
488 }
489 else
490 {
491 if (weight < 2) *s = 'N'; /* not authorized */
492 else if (weight == 2) *s = 'Y'; /* authorized */
493 else if (weight == 3) *s = '?'; /* unauthorizable */
494 else continue; /* invalid */
495 }
496
497 s[1] = ' ';
acec9514 498 yield = string_catn(yield, s, 2);
d2a2c69b
JH
499 break;
500
501 default:
502 break;
503 }
e5a9dba6 504
3a796370 505 /* GETSHORT() has advanced the pointer to the target domain. */
8e669ac1 506
3a796370 507 rc = dn_expand(dnsa.answer, dnsa.answer + dnsa.answerlen, p,
d2a2c69b 508 (DN_EXPAND_ARG4_TYPE)s, sizeof(s));
8e669ac1 509
3a796370
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510 /* If an overlong response was received, the data will have been
511 truncated and dn_expand may fail. */
8e669ac1 512
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513 if (rc < 0)
514 {
515 log_write(0, LOG_MAIN, "host name alias list truncated: type=%s "
516 "domain=%s", dns_text_type(type), domain);
517 break;
518 }
acec9514 519 else yield = string_cat(yield, s);
d2a2c69b
JH
520
521 if (type == T_SOA && outsep2 != NULL)
522 {
523 unsigned long serial, refresh, retry, expire, minimum;
524
525 p += rc;
acec9514 526 yield = string_catn(yield, outsep2, 1);
d2a2c69b
JH
527
528 rc = dn_expand(dnsa.answer, dnsa.answer + dnsa.answerlen, p,
529 (DN_EXPAND_ARG4_TYPE)s, sizeof(s));
530 if (rc < 0)
531 {
532 log_write(0, LOG_MAIN, "responsible-mailbox truncated: type=%s "
533 "domain=%s", dns_text_type(type), domain);
534 break;
535 }
acec9514 536 else yield = string_cat(yield, s);
d2a2c69b
JH
537
538 p += rc;
539 GETLONG(serial, p); GETLONG(refresh, p);
540 GETLONG(retry, p); GETLONG(expire, p); GETLONG(minimum, p);
fc362fc5 541 sprintf(CS s, "%c%lu%c%lu%c%lu%c%lu%c%lu",
d2a2c69b
JH
542 *outsep2, serial, *outsep2, refresh,
543 *outsep2, retry, *outsep2, expire, *outsep2, minimum);
acec9514 544 yield = string_cat(yield, s);
d2a2c69b 545 }
7bb56e1f 546 }
3a796370
JH
547 } /* Loop for list of returned records */
548
4c04137d 549 /* Loop for set of A-lookup types */
66be95e0 550 } while (type == T_ADDRESSES && searchtype != T_A);
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551
552 } /* Loop for list of domains */
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553
554/* Reclaim unused memory */
0756eb3c 555
acec9514 556store_reset(yield->s + yield->ptr + 1);
7bb56e1f 557
acec9514 558/* If yield NULL we have not found anything. Otherwise, insert the terminating
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559zero and return the result. */
560
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561dns_retrans = save_retrans;
562dns_retry = save_retry;
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563dns_init(FALSE, FALSE, FALSE); /* clear the dnssec bit for getaddrbyname */
564
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565if (!yield || !yield->ptr) return failrc;
566
567*result = string_from_gstring(yield);
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568return OK;
569}
570
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571
572
573/*************************************************
574* Version reporting entry point *
575*************************************************/
576
577/* See local README for interface description. */
578
579#include "../version.h"
580
581void
582dnsdb_version_report(FILE *f)
583{
584#ifdef DYNLOOKUP
585fprintf(f, "Library version: DNSDB: Exim version %s\n", EXIM_VERSION_STR);
586#endif
587}
588
589
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590static lookup_info _lookup_info = {
591 US"dnsdb", /* lookup name */
592 lookup_querystyle, /* query style */
593 dnsdb_open, /* open function */
594 NULL, /* check function */
595 dnsdb_find, /* find function */
596 NULL, /* no close function */
597 NULL, /* no tidy function */
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598 NULL, /* no quoting function */
599 dnsdb_version_report /* version reporting */
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600};
601
602#ifdef DYNLOOKUP
603#define dnsdb_lookup_module_info _lookup_module_info
604#endif
605
606static lookup_info *_lookup_list[] = { &_lookup_info };
607lookup_module_info dnsdb_lookup_module_info = { LOOKUP_MODULE_INFO_MAGIC, _lookup_list, 1 };
608
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609/* vi: aw ai sw=2
610*/
0756eb3c 611/* End of lookups/dnsdb.c */