constification
[exim.git] / src / src / host.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/* Functions for finding hosts, either by gethostbyname(), gethostbyaddr(), or
9directly via the DNS. When IPv6 is supported, getipnodebyname() and
10getipnodebyaddr() may be used instead of gethostbyname() and gethostbyaddr(),
11if the newer functions are available. This module also contains various other
12functions concerned with hosts and addresses, and a random number function,
13used for randomizing hosts with equal MXs but available for use in other parts
14of Exim. */
15
16
17#include "exim.h"
18
19
20/* Static variable for preserving the list of interface addresses in case it is
21used more than once. */
22
23static ip_address_item *local_interface_data = NULL;
24
25
26#ifdef USE_INET_NTOA_FIX
27/*************************************************
28* Replacement for broken inet_ntoa() *
29*************************************************/
30
31/* On IRIX systems, gcc uses a different structure passing convention to the
32native libraries. This causes inet_ntoa() to always yield 0.0.0.0 or
33255.255.255.255. To get round this, we provide a private version of the
34function here. It is used only if USE_INET_NTOA_FIX is set, which should happen
35only when gcc is in use on an IRIX system. Code send to me by J.T. Breitner,
36with these comments:
37
38 code by Stuart Levy
39 as seen in comp.sys.sgi.admin
40
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41August 2005: Apparently this is also needed for AIX systems; USE_INET_NTOA_FIX
42should now be set for them as well.
43
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44Arguments: sa an in_addr structure
45Returns: pointer to static text string
46*/
47
48char *
49inet_ntoa(struct in_addr sa)
50{
51static uschar addr[20];
52sprintf(addr, "%d.%d.%d.%d",
53 (US &sa.s_addr)[0],
54 (US &sa.s_addr)[1],
55 (US &sa.s_addr)[2],
56 (US &sa.s_addr)[3]);
57 return addr;
58}
59#endif
60
61
62
63/*************************************************
64* Random number generator *
65*************************************************/
66
67/* This is a simple pseudo-random number generator. It does not have to be
68very good for the uses to which it is put. When running the regression tests,
69start with a fixed seed.
70
17c76198 71If you need better, see vaguely_random_number() which is potentially stronger,
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72if a crypto library is available, but might end up just calling this instead.
73
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74Arguments:
75 limit: one more than the largest number required
76
77Returns: a pseudo-random number in the range 0 to limit-1
78*/
79
80int
81random_number(int limit)
82{
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83if (limit < 1)
84 return 0;
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85if (random_seed == 0)
86 {
8768d548 87 if (f.running_in_test_harness) random_seed = 42; else
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88 {
89 int p = (int)getpid();
90 random_seed = (int)time(NULL) ^ ((p << 16) | p);
91 }
92 }
93random_seed = 1103515245 * random_seed + 12345;
94return (unsigned int)(random_seed >> 16) % limit;
95}
96
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97/*************************************************
98* Wrappers for logging lookup times *
99*************************************************/
100
101/* When the 'slow_lookup_log' variable is enabled, these wrappers will
102write to the log file all (potential) dns lookups that take more than
103slow_lookup_log milliseconds
104*/
105
106static void
107log_long_lookup(const uschar * type, const uschar * data, unsigned long msec)
108{
109log_write(0, LOG_MAIN, "Long %s lookup for '%s': %lu msec",
110 type, data, msec);
111}
112
113
114/* returns the current system epoch time in milliseconds. */
115static unsigned long
116get_time_in_ms()
117{
118struct timeval tmp_time;
119unsigned long seconds, microseconds;
120
121gettimeofday(&tmp_time, NULL);
122seconds = (unsigned long) tmp_time.tv_sec;
123microseconds = (unsigned long) tmp_time.tv_usec;
124return seconds*1000 + microseconds/1000;
125}
126
127
128static int
129dns_lookup_timerwrap(dns_answer *dnsa, const uschar *name, int type,
130 const uschar **fully_qualified_name)
131{
132int retval;
133unsigned long time_msec;
134
135if (!slow_lookup_log)
136 return dns_lookup(dnsa, name, type, fully_qualified_name);
137
138time_msec = get_time_in_ms();
139retval = dns_lookup(dnsa, name, type, fully_qualified_name);
140if ((time_msec = get_time_in_ms() - time_msec) > slow_lookup_log)
141 log_long_lookup(US"name", name, time_msec);
142return retval;
143}
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144
145
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146/*************************************************
147* Replace gethostbyname() when testing *
148*************************************************/
149
150/* This function is called instead of gethostbyname(), gethostbyname2(), or
1fb7660f 151getipnodebyname() when running in the test harness. . It also
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152recognizes an unqualified "localhost" and forces it to the appropriate loopback
153address. IP addresses are treated as literals. For other names, it uses the DNS
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154to find the host name. In the test harness, this means it will access only the
155fake DNS resolver.
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156
157Arguments:
158 name the host name or a textual IP address
159 af AF_INET or AF_INET6
160 error_num where to put an error code:
161 HOST_NOT_FOUND/TRY_AGAIN/NO_RECOVERY/NO_DATA
162
163Returns: a hostent structure or NULL for an error
164*/
165
166static struct hostent *
55414b25 167host_fake_gethostbyname(const uschar *name, int af, int *error_num)
e7726cbf 168{
70d67ad3 169#if HAVE_IPV6
e7726cbf 170int alen = (af == AF_INET)? sizeof(struct in_addr):sizeof(struct in6_addr);
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171#else
172int alen = sizeof(struct in_addr);
173#endif
174
175int ipa;
55414b25 176const uschar *lname = name;
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177uschar *adds;
178uschar **alist;
179struct hostent *yield;
180dns_answer dnsa;
181dns_scan dnss;
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182
183DEBUG(D_host_lookup)
184 debug_printf("using host_fake_gethostbyname for %s (%s)\n", name,
185 (af == AF_INET)? "IPv4" : "IPv6");
186
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187/* Handle unqualified "localhost" */
188
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189if (Ustrcmp(name, "localhost") == 0)
190 lname = (af == AF_INET)? US"127.0.0.1" : US"::1";
191
192/* Handle a literal IP address */
193
d7978c0f 194if ((ipa = string_is_ip_address(lname, NULL)) != 0)
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195 {
196 if ((ipa == 4 && af == AF_INET) ||
197 (ipa == 6 && af == AF_INET6))
198 {
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199 int x[4];
200 yield = store_get(sizeof(struct hostent));
201 alist = store_get(2 * sizeof(char *));
202 adds = store_get(alen);
203 yield->h_name = CS name;
204 yield->h_aliases = NULL;
205 yield->h_addrtype = af;
206 yield->h_length = alen;
207 yield->h_addr_list = CSS alist;
208 *alist++ = adds;
d7978c0f 209 for (int n = host_aton(lname, x), i = 0; i < n; i++)
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210 {
211 int y = x[i];
212 *adds++ = (y >> 24) & 255;
213 *adds++ = (y >> 16) & 255;
214 *adds++ = (y >> 8) & 255;
215 *adds++ = y & 255;
216 }
217 *alist = NULL;
218 }
219
220 /* Wrong kind of literal address */
221
222 else
223 {
224 *error_num = HOST_NOT_FOUND;
225 return NULL;
226 }
227 }
228
229/* Handle a host name */
230
231else
232 {
233 int type = (af == AF_INET)? T_A:T_AAAA;
846430d9 234 int rc = dns_lookup_timerwrap(&dnsa, lname, type, NULL);
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235 int count = 0;
236
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237 lookup_dnssec_authenticated = NULL;
238
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239 switch(rc)
240 {
241 case DNS_SUCCEED: break;
242 case DNS_NOMATCH: *error_num = HOST_NOT_FOUND; return NULL;
243 case DNS_NODATA: *error_num = NO_DATA; return NULL;
244 case DNS_AGAIN: *error_num = TRY_AGAIN; return NULL;
245 default:
246 case DNS_FAIL: *error_num = NO_RECOVERY; return NULL;
247 }
248
d7978c0f 249 for (dns_record * rr = dns_next_rr(&dnsa, &dnss, RESET_ANSWERS);
e1a3f32f 250 rr;
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251 rr = dns_next_rr(&dnsa, &dnss, RESET_NEXT)) if (rr->type == type)
252 count++;
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253
254 yield = store_get(sizeof(struct hostent));
96f5fe4c 255 alist = store_get((count + 1) * sizeof(char *));
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256 adds = store_get(count *alen);
257
258 yield->h_name = CS name;
259 yield->h_aliases = NULL;
260 yield->h_addrtype = af;
261 yield->h_length = alen;
262 yield->h_addr_list = CSS alist;
263
d7978c0f 264 for (dns_record * rr = dns_next_rr(&dnsa, &dnss, RESET_ANSWERS);
e1a3f32f 265 rr;
d7978c0f 266 rr = dns_next_rr(&dnsa, &dnss, RESET_NEXT)) if (rr->type == type)
e7726cbf 267 {
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268 int x[4];
269 dns_address *da;
e1a3f32f 270 if (!(da = dns_address_from_rr(&dnsa, rr))) break;
e7726cbf 271 *alist++ = adds;
d7978c0f 272 for (int n = host_aton(da->address, x), i = 0; i < n; i++)
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273 {
274 int y = x[i];
275 *adds++ = (y >> 24) & 255;
276 *adds++ = (y >> 16) & 255;
277 *adds++ = (y >> 8) & 255;
278 *adds++ = y & 255;
279 }
280 }
281 *alist = NULL;
282 }
283
284return yield;
285}
286
287
288
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289/*************************************************
290* Build chain of host items from list *
291*************************************************/
292
293/* This function builds a chain of host items from a textual list of host
294names. It does not do any lookups. If randomize is true, the chain is build in
295a randomized order. There may be multiple groups of independently randomized
296hosts; they are delimited by a host name consisting of just "+".
297
298Arguments:
299 anchor anchor for the chain
300 list text list
301 randomize TRUE for randomizing
302
303Returns: nothing
304*/
305
306void
55414b25 307host_build_hostlist(host_item **anchor, const uschar *list, BOOL randomize)
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308{
309int sep = 0;
310int fake_mx = MX_NONE; /* This value is actually -1 */
311uschar *name;
059ec3d9 312
8b455685 313if (!list) return;
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314if (randomize) fake_mx--; /* Start at -2 for randomizing */
315
316*anchor = NULL;
317
8b455685 318while ((name = string_nextinlist(&list, &sep, NULL, 0)))
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319 {
320 host_item *h;
321
322 if (name[0] == '+' && name[1] == 0) /* "+" delimits a randomized group */
323 { /* ignore if not randomizing */
324 if (randomize) fake_mx--;
325 continue;
326 }
327
328 h = store_get(sizeof(host_item));
55414b25 329 h->name = name;
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330 h->address = NULL;
331 h->port = PORT_NONE;
332 h->mx = fake_mx;
333 h->sort_key = randomize? (-fake_mx)*1000 + random_number(1000) : 0;
334 h->status = hstatus_unknown;
335 h->why = hwhy_unknown;
336 h->last_try = 0;
337
8b455685 338 if (!*anchor)
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339 {
340 h->next = NULL;
341 *anchor = h;
342 }
343 else
344 {
345 host_item *hh = *anchor;
346 if (h->sort_key < hh->sort_key)
347 {
348 h->next = hh;
349 *anchor = h;
350 }
351 else
352 {
8b455685 353 while (hh->next && h->sort_key >= hh->next->sort_key)
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354 hh = hh->next;
355 h->next = hh->next;
356 hh->next = h;
357 }
358 }
359 }
360}
361
362
363
364
365
366/*************************************************
367* Extract port from address string *
368*************************************************/
369
370/* In the spool file, and in the -oMa and -oMi options, a host plus port is
371given as an IP address followed by a dot and a port number. This function
372decodes this.
373
374An alternative format for the -oMa and -oMi options is [ip address]:port which
375is what Exim 4 uses for output, because it seems to becoming commonly used,
376whereas the dot form confuses some programs/people. So we recognize that form
377too.
378
379Argument:
380 address points to the string; if there is a port, the '.' in the string
381 is overwritten with zero to terminate the address; if the string
382 is in the [xxx]:ppp format, the address is shifted left and the
383 brackets are removed
384
385Returns: 0 if there is no port, else the port number. If there's a syntax
386 error, leave the incoming address alone, and return 0.
387*/
388
389int
7cd1141b 390host_address_extract_port(uschar *address)
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391{
392int port = 0;
393uschar *endptr;
394
395/* Handle the "bracketed with colon on the end" format */
396
397if (*address == '[')
398 {
399 uschar *rb = address + 1;
400 while (*rb != 0 && *rb != ']') rb++;
401 if (*rb++ == 0) return 0; /* Missing ]; leave invalid address */
402 if (*rb == ':')
403 {
404 port = Ustrtol(rb + 1, &endptr, 10);
405 if (*endptr != 0) return 0; /* Invalid port; leave invalid address */
406 }
407 else if (*rb != 0) return 0; /* Bad syntax; leave invalid address */
408 memmove(address, address + 1, rb - address - 2);
409 rb[-2] = 0;
410 }
411
412/* Handle the "dot on the end" format */
413
414else
415 {
416 int skip = -3; /* Skip 3 dots in IPv4 addresses */
417 address--;
418 while (*(++address) != 0)
419 {
420 int ch = *address;
421 if (ch == ':') skip = 0; /* Skip 0 dots in IPv6 addresses */
422 else if (ch == '.' && skip++ >= 0) break;
423 }
424 if (*address == 0) return 0;
425 port = Ustrtol(address + 1, &endptr, 10);
426 if (*endptr != 0) return 0; /* Invalid port; leave invalid address */
427 *address = 0;
428 }
429
430return port;
431}
432
433
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434/*************************************************
435* Get port from a host item's name *
436*************************************************/
437
438/* This function is called when finding the IP address for a host that is in a
439list of hosts explicitly configured, such as in the manualroute router, or in a
440fallback hosts list. We see if there is a port specification at the end of the
441host name, and if so, remove it. A minimum length of 3 is required for the
442original name; nothing shorter is recognized as having a port.
443
444We test for a name ending with a sequence of digits; if preceded by colon we
445have a port if the character before the colon is ] and the name starts with [
446or if there are no other colons in the name (i.e. it's not an IPv6 address).
447
448Arguments: pointer to the host item
449Returns: a port number or PORT_NONE
450*/
451
452int
453host_item_get_port(host_item *h)
454{
55414b25 455const uschar *p;
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456int port, x;
457int len = Ustrlen(h->name);
458
459if (len < 3 || (p = h->name + len - 1, !isdigit(*p))) return PORT_NONE;
460
461/* Extract potential port number */
462
463port = *p-- - '0';
464x = 10;
465
466while (p > h->name + 1 && isdigit(*p))
467 {
468 port += (*p-- - '0') * x;
469 x *= 10;
470 }
471
472/* The smallest value of p at this point is h->name + 1. */
473
474if (*p != ':') return PORT_NONE;
475
476if (p[-1] == ']' && h->name[0] == '[')
477 h->name = string_copyn(h->name + 1, p - h->name - 2);
478else if (Ustrchr(h->name, ':') == p)
479 h->name = string_copyn(h->name, p - h->name);
480else return PORT_NONE;
481
482DEBUG(D_route|D_host_lookup) debug_printf("host=%s port=%d\n", h->name, port);
483return port;
484}
485
486
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487
488#ifndef STAND_ALONE /* Omit when standalone testing */
489
490/*************************************************
491* Build sender_fullhost and sender_rcvhost *
492*************************************************/
493
494/* This function is called when sender_host_name and/or sender_helo_name
495have been set. Or might have been set - for a local message read off the spool
496they won't be. In that case, do nothing. Otherwise, set up the fullhost string
497as follows:
498
499(a) No sender_host_name or sender_helo_name: "[ip address]"
500(b) Just sender_host_name: "host_name [ip address]"
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501(c) Just sender_helo_name: "(helo_name) [ip address]" unless helo is IP
502 in which case: "[ip address}"
503(d) The two are identical: "host_name [ip address]" includes helo = IP
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504(e) The two are different: "host_name (helo_name) [ip address]"
505
506If log_incoming_port is set, the sending host's port number is added to the IP
507address.
508
509This function also builds sender_rcvhost for use in Received: lines, whose
510syntax is a bit different. This value also includes the RFC 1413 identity.
511There wouldn't be two different variables if I had got all this right in the
512first place.
513
514Because this data may survive over more than one incoming SMTP message, it has
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515to be in permanent store. However, STARTTLS has to be forgotten and redone
516on a multi-message conn, so this will be called once per message then. Hence
517we use malloc, so we can free.
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518
519Arguments: none
520Returns: nothing
521*/
522
523void
524host_build_sender_fullhost(void)
525{
82c19f95 526BOOL show_helo = TRUE;
a5c60e3c 527uschar * address, * fullhost, * rcvhost, * reset_point;
82c19f95 528int len;
059ec3d9 529
2d0dc929 530if (!sender_host_address) return;
059ec3d9 531
a5c60e3c 532reset_point = store_get(0);
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533
534/* Set up address, with or without the port. After discussion, it seems that
535the only format that doesn't cause trouble is [aaaa]:pppp. However, we can't
536use this directly as the first item for Received: because it ain't an RFC 2822
537domain. Sigh. */
538
539address = string_sprintf("[%s]:%d", sender_host_address, sender_host_port);
6c6d6e48 540if (!LOGGING(incoming_port) || sender_host_port <= 0)
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541 *(Ustrrchr(address, ':')) = 0;
542
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543/* If there's no EHLO/HELO data, we can't show it. */
544
2d0dc929 545if (!sender_helo_name) show_helo = FALSE;
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546
547/* If HELO/EHLO was followed by an IP literal, it's messy because of two
548features of IPv6. Firstly, there's the "IPv6:" prefix (Exim is liberal and
549doesn't require this, for historical reasons). Secondly, IPv6 addresses may not
4c04137d 550be given in canonical form, so we have to canonicalize them before comparing. As
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551it happens, the code works for both IPv4 and IPv6. */
552
553else if (sender_helo_name[0] == '[' &&
554 sender_helo_name[(len=Ustrlen(sender_helo_name))-1] == ']')
555 {
556 int offset = 1;
557 uschar *helo_ip;
558
559 if (strncmpic(sender_helo_name + 1, US"IPv6:", 5) == 0) offset += 5;
560 if (strncmpic(sender_helo_name + 1, US"IPv4:", 5) == 0) offset += 5;
561
562 helo_ip = string_copyn(sender_helo_name + offset, len - offset - 1);
563
564 if (string_is_ip_address(helo_ip, NULL) != 0)
565 {
566 int x[4], y[4];
567 int sizex, sizey;
568 uschar ipx[48], ipy[48]; /* large enough for full IPv6 */
569
570 sizex = host_aton(helo_ip, x);
571 sizey = host_aton(sender_host_address, y);
572
573 (void)host_nmtoa(sizex, x, -1, ipx, ':');
574 (void)host_nmtoa(sizey, y, -1, ipy, ':');
575
576 if (strcmpic(ipx, ipy) == 0) show_helo = FALSE;
577 }
578 }
579
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580/* Host name is not verified */
581
acec9514 582if (!sender_host_name)
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583 {
584 uschar *portptr = Ustrstr(address, "]:");
acec9514 585 gstring * g;
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586 int adlen; /* Sun compiler doesn't like ++ in initializers */
587
acec9514 588 adlen = portptr ? (++portptr - address) : Ustrlen(address);
a5c60e3c 589 fullhost = sender_helo_name
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590 ? string_sprintf("(%s) %s", sender_helo_name, address)
591 : address;
059ec3d9 592
acec9514 593 g = string_catn(NULL, address, adlen);
059ec3d9 594
2d0dc929 595 if (sender_ident || show_helo || portptr)
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596 {
597 int firstptr;
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598 g = string_catn(g, US" (", 2);
599 firstptr = g->ptr;
059ec3d9 600
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601 if (portptr)
602 g = string_append(g, 2, US"port=", portptr + 1);
059ec3d9 603
82c19f95 604 if (show_helo)
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605 g = string_append(g, 2,
606 firstptr == g->ptr ? US"helo=" : US" helo=", sender_helo_name);
059ec3d9 607
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608 if (sender_ident)
609 g = string_append(g, 2,
610 firstptr == g->ptr ? US"ident=" : US" ident=", sender_ident);
059ec3d9 611
acec9514 612 g = string_catn(g, US")", 1);
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613 }
614
a5c60e3c 615 rcvhost = string_from_gstring(g);
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616 }
617
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618/* Host name is known and verified. Unless we've already found that the HELO
619data matches the IP address, compare it with the name. */
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620
621else
622 {
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623 if (show_helo && strcmpic(sender_host_name, sender_helo_name) == 0)
624 show_helo = FALSE;
5dd9625b 625
82c19f95 626 if (show_helo)
059ec3d9 627 {
a5c60e3c 628 fullhost = string_sprintf("%s (%s) %s", sender_host_name,
059ec3d9 629 sender_helo_name, address);
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630 rcvhost = sender_ident
631 ? string_sprintf("%s\n\t(%s helo=%s ident=%s)", sender_host_name,
632 address, sender_helo_name, sender_ident)
633 : string_sprintf("%s (%s helo=%s)", sender_host_name,
634 address, sender_helo_name);
059ec3d9 635 }
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636 else
637 {
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638 fullhost = string_sprintf("%s %s", sender_host_name, address);
639 rcvhost = sender_ident
640 ? string_sprintf("%s (%s ident=%s)", sender_host_name, address,
641 sender_ident)
642 : string_sprintf("%s (%s)", sender_host_name, address);
82c19f95 643 }
059ec3d9
PH
644 }
645
a5c60e3c
JH
646if (sender_fullhost) store_free(sender_fullhost);
647sender_fullhost = string_copy_malloc(fullhost);
648if (sender_rcvhost) store_free(sender_rcvhost);
649sender_rcvhost = string_copy_malloc(rcvhost);
650
651store_reset(reset_point);
059ec3d9
PH
652
653DEBUG(D_host_lookup) debug_printf("sender_fullhost = %s\n", sender_fullhost);
654DEBUG(D_host_lookup) debug_printf("sender_rcvhost = %s\n", sender_rcvhost);
655}
656
657
658
659/*************************************************
660* Build host+ident message *
661*************************************************/
662
663/* Used when logging rejections and various ACL and SMTP incidents. The text
664return depends on whether sender_fullhost and sender_ident are set or not:
665
666 no ident, no host => U=unknown
667 no ident, host set => H=sender_fullhost
668 ident set, no host => U=ident
669 ident set, host set => H=sender_fullhost U=ident
670
671Arguments:
672 useflag TRUE if first item to be flagged (H= or U=); if there are two
673 items, the second is always flagged
674
675Returns: pointer to a string in big_buffer
676*/
677
678uschar *
679host_and_ident(BOOL useflag)
680{
8b455685
JH
681if (!sender_fullhost)
682 (void)string_format(big_buffer, big_buffer_size, "%s%s", useflag ? "U=" : "",
683 sender_ident ? sender_ident : US"unknown");
059ec3d9
PH
684else
685 {
8b455685
JH
686 uschar * flag = useflag ? US"H=" : US"";
687 uschar * iface = US"";
688 if (LOGGING(incoming_interface) && interface_address)
059ec3d9 689 iface = string_sprintf(" I=[%s]:%d", interface_address, interface_port);
8b455685 690 if (sender_ident)
059ec3d9
PH
691 (void)string_format(big_buffer, big_buffer_size, "%s%s%s U=%s",
692 flag, sender_fullhost, iface, sender_ident);
8b455685
JH
693 else
694 (void)string_format(big_buffer, big_buffer_size, "%s%s%s",
695 flag, sender_fullhost, iface);
059ec3d9
PH
696 }
697return big_buffer;
698}
699
700#endif /* STAND_ALONE */
701
702
703
704
705/*************************************************
706* Build list of local interfaces *
707*************************************************/
708
709/* This function interprets the contents of the local_interfaces or
710extra_local_interfaces options, and creates an ip_address_item block for each
711item on the list. There is no special interpretation of any IP addresses; in
712particular, 0.0.0.0 and ::0 are returned without modification. If any address
713includes a port, it is set in the block. Otherwise the port value is set to
714zero.
715
716Arguments:
717 list the list
718 name the name of the option being expanded
719
720Returns: a chain of ip_address_items, each containing to a textual
721 version of an IP address, and a port number (host order) or
722 zero if no port was given with the address
723*/
724
725ip_address_item *
55414b25 726host_build_ifacelist(const uschar *list, uschar *name)
059ec3d9
PH
727{
728int sep = 0;
729uschar *s;
b891534f 730ip_address_item * yield = NULL, * last = NULL, * next;
059ec3d9 731
b891534f 732while ((s = string_nextinlist(&list, &sep, NULL, 0)))
059ec3d9 733 {
7e66e54d 734 int ipv;
7cd1141b 735 int port = host_address_extract_port(s); /* Leaves just the IP address */
b891534f
JH
736
737 if (!(ipv = string_is_ip_address(s, NULL)))
059ec3d9
PH
738 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "Malformed IP address \"%s\" in %s",
739 s, name);
740
7e66e54d
PH
741 /* Skip IPv6 addresses if IPv6 is disabled. */
742
743 if (disable_ipv6 && ipv == 6) continue;
744
059ec3d9
PH
745 /* This use of strcpy() is OK because we have checked that s is a valid IP
746 address above. The field in the ip_address_item is large enough to hold an
747 IPv6 address. */
748
749 next = store_get(sizeof(ip_address_item));
750 next->next = NULL;
751 Ustrcpy(next->address, s);
752 next->port = port;
753 next->v6_include_v4 = FALSE;
754
b891534f
JH
755 if (!yield)
756 yield = last = next;
757 else
059ec3d9
PH
758 {
759 last->next = next;
760 last = next;
761 }
762 }
763
764return yield;
765}
766
767
768
769
770
771/*************************************************
772* Find addresses on local interfaces *
773*************************************************/
774
775/* This function finds the addresses of local IP interfaces. These are used
776when testing for routing to the local host. As the function may be called more
777than once, the list is preserved in permanent store, pointed to by a static
778variable, to save doing the work more than once per process.
779
780The generic list of interfaces is obtained by calling host_build_ifacelist()
781for local_interfaces and extra_local_interfaces. This list scanned to remove
782duplicates (which may exist with different ports - not relevant here). If
783either of the wildcard IP addresses (0.0.0.0 and ::0) are encountered, they are
784replaced by the appropriate (IPv4 or IPv6) list of actual local interfaces,
785obtained from os_find_running_interfaces().
786
787Arguments: none
788Returns: a chain of ip_address_items, each containing to a textual
789 version of an IP address; the port numbers are not relevant
790*/
791
792
793/* First, a local subfunction to add an interface to a list in permanent store,
794but only if there isn't a previous copy of that address on the list. */
795
796static ip_address_item *
797add_unique_interface(ip_address_item *list, ip_address_item *ipa)
798{
799ip_address_item *ipa2;
d7978c0f 800for (ipa2 = list; ipa2; ipa2 = ipa2->next)
059ec3d9
PH
801 if (Ustrcmp(ipa2->address, ipa->address) == 0) return list;
802ipa2 = store_get_perm(sizeof(ip_address_item));
803*ipa2 = *ipa;
804ipa2->next = list;
805return ipa2;
806}
807
808
809/* This is the globally visible function */
810
811ip_address_item *
812host_find_interfaces(void)
813{
814ip_address_item *running_interfaces = NULL;
815
816if (local_interface_data == NULL)
817 {
818 void *reset_item = store_get(0);
55414b25 819 ip_address_item *dlist = host_build_ifacelist(CUS local_interfaces,
059ec3d9 820 US"local_interfaces");
55414b25 821 ip_address_item *xlist = host_build_ifacelist(CUS extra_local_interfaces,
059ec3d9
PH
822 US"extra_local_interfaces");
823 ip_address_item *ipa;
824
d7978c0f
JH
825 if (!dlist) dlist = xlist;
826 else
059ec3d9 827 {
d7978c0f 828 for (ipa = dlist; ipa->next; ipa = ipa->next) ;
059ec3d9
PH
829 ipa->next = xlist;
830 }
831
d7978c0f 832 for (ipa = dlist; ipa; ipa = ipa->next)
059ec3d9
PH
833 {
834 if (Ustrcmp(ipa->address, "0.0.0.0") == 0 ||
835 Ustrcmp(ipa->address, "::0") == 0)
836 {
059ec3d9 837 BOOL ipv6 = ipa->address[0] == ':';
d7978c0f 838 if (!running_interfaces)
059ec3d9 839 running_interfaces = os_find_running_interfaces();
d7978c0f 840 for (ip_address_item * ipa2 = running_interfaces; ipa2; ipa2 = ipa2->next)
059ec3d9
PH
841 if ((Ustrchr(ipa2->address, ':') != NULL) == ipv6)
842 local_interface_data = add_unique_interface(local_interface_data,
d7978c0f 843 ipa2);
059ec3d9
PH
844 }
845 else
846 {
847 local_interface_data = add_unique_interface(local_interface_data, ipa);
848 DEBUG(D_interface)
849 {
850 debug_printf("Configured local interface: address=%s", ipa->address);
851 if (ipa->port != 0) debug_printf(" port=%d", ipa->port);
852 debug_printf("\n");
853 }
854 }
855 }
856 store_reset(reset_item);
857 }
858
859return local_interface_data;
860}
861
862
863
864
865
866/*************************************************
867* Convert network IP address to text *
868*************************************************/
869
870/* Given an IPv4 or IPv6 address in binary, convert it to a text
871string and return the result in a piece of new store. The address can
872either be given directly, or passed over in a sockaddr structure. Note
873that this isn't the converse of host_aton() because of byte ordering
874differences. See host_nmtoa() below.
875
876Arguments:
877 type if < 0 then arg points to a sockaddr, else
878 either AF_INET or AF_INET6
879 arg points to a sockaddr if type is < 0, or
880 points to an IPv4 address (32 bits), or
881 points to an IPv6 address (128 bits),
882 in both cases, in network byte order
883 buffer if NULL, the result is returned in gotten store;
884 else points to a buffer to hold the answer
885 portptr points to where to put the port number, if non NULL; only
886 used when type < 0
887
888Returns: pointer to character string
889*/
890
891uschar *
892host_ntoa(int type, const void *arg, uschar *buffer, int *portptr)
893{
894uschar *yield;
895
896/* The new world. It is annoying that we have to fish out the address from
897different places in the block, depending on what kind of address it is. It
898is also a pain that inet_ntop() returns a const uschar *, whereas the IPv4
899function inet_ntoa() returns just uschar *, and some picky compilers insist
900on warning if one assigns a const uschar * to a uschar *. Hence the casts. */
901
902#if HAVE_IPV6
903uschar addr_buffer[46];
904if (type < 0)
905 {
906 int family = ((struct sockaddr *)arg)->sa_family;
907 if (family == AF_INET6)
908 {
909 struct sockaddr_in6 *sk = (struct sockaddr_in6 *)arg;
5903c6ff 910 yield = US inet_ntop(family, &(sk->sin6_addr), CS addr_buffer,
059ec3d9
PH
911 sizeof(addr_buffer));
912 if (portptr != NULL) *portptr = ntohs(sk->sin6_port);
913 }
914 else
915 {
916 struct sockaddr_in *sk = (struct sockaddr_in *)arg;
5903c6ff 917 yield = US inet_ntop(family, &(sk->sin_addr), CS addr_buffer,
059ec3d9
PH
918 sizeof(addr_buffer));
919 if (portptr != NULL) *portptr = ntohs(sk->sin_port);
920 }
921 }
922else
923 {
5903c6ff 924 yield = US inet_ntop(type, arg, CS addr_buffer, sizeof(addr_buffer));
059ec3d9
PH
925 }
926
927/* If the result is a mapped IPv4 address, show it in V4 format. */
928
929if (Ustrncmp(yield, "::ffff:", 7) == 0) yield += 7;
930
931#else /* HAVE_IPV6 */
932
933/* The old world */
934
935if (type < 0)
936 {
937 yield = US inet_ntoa(((struct sockaddr_in *)arg)->sin_addr);
938 if (portptr != NULL) *portptr = ntohs(((struct sockaddr_in *)arg)->sin_port);
939 }
940else
941 yield = US inet_ntoa(*((struct in_addr *)arg));
942#endif
943
944/* If there is no buffer, put the string into some new store. */
945
946if (buffer == NULL) return string_copy(yield);
947
948/* Callers of this function with a non-NULL buffer must ensure that it is
949large enough to hold an IPv6 address, namely, at least 46 bytes. That's what
950makes this use of strcpy() OK. */
951
952Ustrcpy(buffer, yield);
953return buffer;
954}
955
956
957
958
959/*************************************************
960* Convert address text to binary *
961*************************************************/
962
963/* Given the textual form of an IP address, convert it to binary in an
964array of ints. IPv4 addresses occupy one int; IPv6 addresses occupy 4 ints.
965The result has the first byte in the most significant byte of the first int. In
966other words, the result is not in network byte order, but in host byte order.
967As a result, this is not the converse of host_ntoa(), which expects network
968byte order. See host_nmtoa() below.
969
970Arguments:
971 address points to the textual address, checked for syntax
972 bin points to an array of 4 ints
973
974Returns: the number of ints used
975*/
976
977int
55414b25 978host_aton(const uschar *address, int *bin)
059ec3d9
PH
979{
980int x[4];
981int v4offset = 0;
982
8e669ac1 983/* Handle IPv6 address, which may end with an IPv4 address. It may also end
7e634d24
PH
984with a "scope", introduced by a percent sign. This code is NOT enclosed in #if
985HAVE_IPV6 in order that IPv6 addresses are recognized even if IPv6 is not
986supported. */
059ec3d9
PH
987
988if (Ustrchr(address, ':') != NULL)
989 {
55414b25
JH
990 const uschar *p = address;
991 const uschar *component[8];
059ec3d9
PH
992 BOOL ipv4_ends = FALSE;
993 int ci = 0;
994 int nulloffset = 0;
995 int v6count = 8;
996 int i;
997
998 /* If the address starts with a colon, it will start with two colons.
999 Just lose the first one, which will leave a null first component. */
8e669ac1 1000
059ec3d9
PH
1001 if (*p == ':') p++;
1002
8e669ac1
PH
1003 /* Split the address into components separated by colons. The input address
1004 is supposed to be checked for syntax. There was a case where this was
1005 overlooked; to guard against that happening again, check here and crash if
7e634d24 1006 there are too many components. */
059ec3d9 1007
7e634d24 1008 while (*p != 0 && *p != '%')
059ec3d9 1009 {
7e634d24 1010 int len = Ustrcspn(p, ":%");
059ec3d9 1011 if (len == 0) nulloffset = ci;
8e669ac1 1012 if (ci > 7) log_write(0, LOG_MAIN|LOG_PANIC_DIE,
b975ba52 1013 "Internal error: invalid IPv6 address \"%s\" passed to host_aton()",
8e669ac1 1014 address);
059ec3d9
PH
1015 component[ci++] = p;
1016 p += len;
1017 if (*p == ':') p++;
1018 }
1019
1020 /* If the final component contains a dot, it is a trailing v4 address.
1021 As the syntax is known to be checked, just set up for a trailing
1022 v4 address and restrict the v6 part to 6 components. */
1023
1024 if (Ustrchr(component[ci-1], '.') != NULL)
1025 {
1026 address = component[--ci];
1027 ipv4_ends = TRUE;
1028 v4offset = 3;
1029 v6count = 6;
1030 }
1031
1032 /* If there are fewer than 6 or 8 components, we have to insert some
1033 more empty ones in the middle. */
1034
1035 if (ci < v6count)
1036 {
1037 int insert_count = v6count - ci;
1038 for (i = v6count-1; i > nulloffset + insert_count; i--)
1039 component[i] = component[i - insert_count];
1040 while (i > nulloffset) component[i--] = US"";
1041 }
1042
1043 /* Now turn the components into binary in pairs and bung them
1044 into the vector of ints. */
1045
1046 for (i = 0; i < v6count; i += 2)
1047 bin[i/2] = (Ustrtol(component[i], NULL, 16) << 16) +
1048 Ustrtol(component[i+1], NULL, 16);
1049
1050 /* If there was no terminating v4 component, we are done. */
1051
1052 if (!ipv4_ends) return 4;
1053 }
1054
1055/* Handle IPv4 address */
1056
ff790e47 1057(void)sscanf(CS address, "%d.%d.%d.%d", x, x+1, x+2, x+3);
13559da6 1058bin[v4offset] = ((uint)x[0] << 24) + (x[1] << 16) + (x[2] << 8) + x[3];
059ec3d9
PH
1059return v4offset+1;
1060}
1061
1062
1063/*************************************************
1064* Apply mask to an IP address *
1065*************************************************/
1066
1067/* Mask an address held in 1 or 4 ints, with the ms bit in the ms bit of the
1068first int, etc.
1069
1070Arguments:
1071 count the number of ints
1072 binary points to the ints to be masked
1073 mask the count of ms bits to leave, or -1 if no masking
1074
1075Returns: nothing
1076*/
1077
1078void
1079host_mask(int count, int *binary, int mask)
1080{
059ec3d9 1081if (mask < 0) mask = 99999;
d7978c0f 1082for (int i = 0; i < count; i++)
059ec3d9
PH
1083 {
1084 int wordmask;
1085 if (mask == 0) wordmask = 0;
1086 else if (mask < 32)
1087 {
13559da6 1088 wordmask = (uint)(-1) << (32 - mask);
059ec3d9
PH
1089 mask = 0;
1090 }
1091 else
1092 {
1093 wordmask = -1;
1094 mask -= 32;
1095 }
1096 binary[i] &= wordmask;
1097 }
1098}
1099
1100
1101
1102
1103/*************************************************
1104* Convert masked IP address in ints to text *
1105*************************************************/
1106
1107/* We can't use host_ntoa() because it assumes the binary values are in network
1108byte order, and these are the result of host_aton(), which puts them in ints in
1109host byte order. Also, we really want IPv6 addresses to be in a canonical
6f0c9a4f
PH
1110format, so we output them with no abbreviation. In a number of cases we can't
1111use the normal colon separator in them because it terminates keys in lsearch
8e669ac1 1112files, so we want to use dot instead. There's an argument that specifies what
6f0c9a4f 1113to use for IPv6 addresses.
059ec3d9
PH
1114
1115Arguments:
1116 count 1 or 4 (number of ints)
1117 binary points to the ints
1118 mask mask value; if < 0 don't add to result
1119 buffer big enough to hold the result
8e669ac1 1120 sep component separator character for IPv6 addresses
059ec3d9
PH
1121
1122Returns: the number of characters placed in buffer, not counting
1123 the final nul.
1124*/
1125
1126int
6f0c9a4f 1127host_nmtoa(int count, int *binary, int mask, uschar *buffer, int sep)
059ec3d9 1128{
d7978c0f 1129int j;
059ec3d9
PH
1130uschar *tt = buffer;
1131
1132if (count == 1)
1133 {
1134 j = binary[0];
d7978c0f 1135 for (int i = 24; i >= 0; i -= 8)
fc4a7f70 1136 tt += sprintf(CS tt, "%d.", (j >> i) & 255);
059ec3d9
PH
1137 }
1138else
d7978c0f 1139 for (int i = 0; i < 4; i++)
059ec3d9
PH
1140 {
1141 j = binary[i];
fc4a7f70 1142 tt += sprintf(CS tt, "%04x%c%04x%c", (j >> 16) & 0xffff, sep, j & 0xffff, sep);
059ec3d9 1143 }
059ec3d9 1144
6f0c9a4f 1145tt--; /* lose final separator */
059ec3d9
PH
1146
1147if (mask < 0)
1148 *tt = 0;
1149else
5976eb99 1150 tt += sprintf(CS tt, "/%d", mask);
059ec3d9
PH
1151
1152return tt - buffer;
1153}
1154
1155
fc4a7f70
JH
1156/* Like host_nmtoa() but: ipv6-only, canonical output, no mask
1157
1158Arguments:
1159 binary points to the ints
1160 buffer big enough to hold the result
1161
1162Returns: the number of characters placed in buffer, not counting
1163 the final nul.
1164*/
1165
1166int
1167ipv6_nmtoa(int * binary, uschar * buffer)
1168{
1169int i, j, k;
1170uschar * c = buffer;
39755c16 1171uschar * d = NULL; /* shut insufficiently "clever" compiler up */
fc4a7f70
JH
1172
1173for (i = 0; i < 4; i++)
1174 { /* expand to text */
1175 j = binary[i];
1176 c += sprintf(CS c, "%x:%x:", (j >> 16) & 0xffff, j & 0xffff);
1177 }
1178
1179for (c = buffer, k = -1, i = 0; i < 8; i++)
1180 { /* find longest 0-group sequence */
1181 if (*c == '0') /* must be "0:" */
1182 {
1183 uschar * s = c;
1184 j = i;
1185 while (c[2] == '0') i++, c += 2;
1186 if (i-j > k)
1187 {
1188 k = i-j; /* length of sequence */
1189 d = s; /* start of sequence */
1190 }
1191 }
1192 while (*++c != ':') ;
1193 c++;
1194 }
1195
1196c[-1] = '\0'; /* drop trailing colon */
1197
1198/* debug_printf("%s: D k %d <%s> <%s>\n", __FUNCTION__, k, d, d + 2*(k+1)); */
1199if (k >= 0)
1200 { /* collapse */
1201 c = d + 2*(k+1);
1202 if (d == buffer) c--; /* need extra colon */
1203 *d++ = ':'; /* 1st 0 */
39755c16 1204 while ((*d++ = *c++)) ;
fc4a7f70
JH
1205 }
1206else
1207 d = c;
1208
1209return d - buffer;
1210}
1211
1212
059ec3d9
PH
1213
1214/*************************************************
1215* Check port for tls_on_connect *
1216*************************************************/
1217
1218/* This function checks whether a given incoming port is configured for tls-
1219on-connect. It is called from the daemon and from inetd handling. If the global
1220option tls_on_connect is already set, all ports operate this way. Otherwise, we
1221check the tls_on_connect_ports option for a list of ports.
1222
1223Argument: a port number
1224Returns: TRUE or FALSE
1225*/
1226
1227BOOL
1228host_is_tls_on_connect_port(int port)
1229{
1230int sep = 0;
1231uschar buffer[32];
55414b25 1232const uschar *list = tls_in.on_connect_ports;
059ec3d9 1233uschar *s;
071c51f7 1234uschar *end;
059ec3d9 1235
817d9f57 1236if (tls_in.on_connect) return TRUE;
059ec3d9 1237
071c51f7
JH
1238while ((s = string_nextinlist(&list, &sep, buffer, sizeof(buffer))))
1239 if (Ustrtol(s, &end, 10) == port)
1240 return TRUE;
059ec3d9
PH
1241
1242return FALSE;
1243}
1244
1245
1246
1247/*************************************************
1248* Check whether host is in a network *
1249*************************************************/
1250
1251/* This function checks whether a given IP address matches a pattern that
1252represents either a single host, or a network (using CIDR notation). The caller
1253of this function must check the syntax of the arguments before calling it.
1254
1255Arguments:
1256 host string representation of the ip-address to check
1257 net string representation of the network, with optional CIDR mask
1258 maskoffset offset to the / that introduces the mask in the key
1259 zero if there is no mask
1260
1261Returns:
1262 TRUE the host is inside the network
1263 FALSE the host is NOT inside the network
1264*/
1265
1266BOOL
55414b25 1267host_is_in_net(const uschar *host, const uschar *net, int maskoffset)
059ec3d9 1268{
059ec3d9
PH
1269int address[4];
1270int incoming[4];
1271int mlen;
1272int size = host_aton(net, address);
1273int insize;
1274
1275/* No mask => all bits to be checked */
1276
1277if (maskoffset == 0) mlen = 99999; /* Big number */
1278 else mlen = Uatoi(net + maskoffset + 1);
1279
1280/* Convert the incoming address to binary. */
1281
1282insize = host_aton(host, incoming);
1283
1284/* Convert IPv4 addresses given in IPv6 compatible mode, which represent
1285 connections from IPv4 hosts to IPv6 hosts, that is, addresses of the form
1286 ::ffff:<v4address>, to IPv4 format. */
1287
1288if (insize == 4 && incoming[0] == 0 && incoming[1] == 0 &&
1289 incoming[2] == 0xffff)
1290 {
1291 insize = 1;
1292 incoming[0] = incoming[3];
1293 }
1294
1295/* No match if the sizes don't agree. */
1296
1297if (insize != size) return FALSE;
1298
1299/* Else do the masked comparison. */
1300
d7978c0f 1301for (int i = 0; i < size; i++)
059ec3d9
PH
1302 {
1303 int mask;
1304 if (mlen == 0) mask = 0;
1305 else if (mlen < 32)
1306 {
13559da6 1307 mask = (uint)(-1) << (32 - mlen);
059ec3d9
PH
1308 mlen = 0;
1309 }
1310 else
1311 {
1312 mask = -1;
1313 mlen -= 32;
1314 }
1315 if ((incoming[i] & mask) != (address[i] & mask)) return FALSE;
1316 }
1317
1318return TRUE;
1319}
1320
1321
1322
1323/*************************************************
1324* Scan host list for local hosts *
1325*************************************************/
1326
1327/* Scan through a chain of addresses and check whether any of them is the
1328address of an interface on the local machine. If so, remove that address and
1329any previous ones with the same MX value, and all subsequent ones (which will
1330have greater or equal MX values) from the chain. Note: marking them as unusable
1331is NOT the right thing to do because it causes the hosts not to be used for
1332other domains, for which they may well be correct.
1333
1334The hosts may be part of a longer chain; we only process those between the
1335initial pointer and the "last" pointer.
1336
1337There is also a list of "pseudo-local" host names which are checked against the
1338host names. Any match causes that host item to be treated the same as one which
1339matches a local IP address.
1340
1341If the very first host is a local host, then all MX records had a precedence
1342greater than or equal to that of the local host. Either there's a problem in
1343the DNS, or an apparently remote name turned out to be an abbreviation for the
1344local host. Give a specific return code, and let the caller decide what to do.
1345Otherwise, give a success code if at least one host address has been found.
1346
1347Arguments:
1348 host pointer to the first host in the chain
1349 lastptr pointer to pointer to the last host in the chain (may be updated)
1350 removed if not NULL, set TRUE if some local addresses were removed
1351 from the list
1352
1353Returns:
1354 HOST_FOUND if there is at least one host with an IP address on the chain
1355 and an MX value less than any MX value associated with the
1356 local host
1357 HOST_FOUND_LOCAL if a local host is among the lowest-numbered MX hosts; when
1358 the host addresses were obtained from A records or
1359 gethostbyname(), the MX values are set to -1.
1360 HOST_FIND_FAILED if no valid hosts with set IP addresses were found
1361*/
1362
1363int
1364host_scan_for_local_hosts(host_item *host, host_item **lastptr, BOOL *removed)
1365{
1366int yield = HOST_FIND_FAILED;
1367host_item *last = *lastptr;
1368host_item *prev = NULL;
1369host_item *h;
1370
1371if (removed != NULL) *removed = FALSE;
1372
1373if (local_interface_data == NULL) local_interface_data = host_find_interfaces();
1374
1375for (h = host; h != last->next; h = h->next)
1376 {
1377 #ifndef STAND_ALONE
1378 if (hosts_treat_as_local != NULL)
1379 {
1380 int rc;
55414b25 1381 const uschar *save = deliver_domain;
059ec3d9 1382 deliver_domain = h->name; /* set $domain */
55414b25 1383 rc = match_isinlist(string_copylc(h->name), CUSS &hosts_treat_as_local, 0,
059ec3d9
PH
1384 &domainlist_anchor, NULL, MCL_DOMAIN, TRUE, NULL);
1385 deliver_domain = save;
1386 if (rc == OK) goto FOUND_LOCAL;
1387 }
1388 #endif
1389
1390 /* It seems that on many operating systems, 0.0.0.0 is treated as a synonym
1391 for 127.0.0.1 and refers to the local host. We therefore force it always to
1392 be treated as local. */
1393
1394 if (h->address != NULL)
1395 {
059ec3d9 1396 if (Ustrcmp(h->address, "0.0.0.0") == 0) goto FOUND_LOCAL;
d7978c0f 1397 for (ip_address_item * ip = local_interface_data; ip; ip = ip->next)
059ec3d9
PH
1398 if (Ustrcmp(h->address, ip->address) == 0) goto FOUND_LOCAL;
1399 yield = HOST_FOUND; /* At least one remote address has been found */
1400 }
1401
1402 /* Update prev to point to the last host item before any that have
1403 the same MX value as the one we have just considered. */
1404
1405 if (h->next == NULL || h->next->mx != h->mx) prev = h;
1406 }
1407
1408return yield; /* No local hosts found: return HOST_FOUND or HOST_FIND_FAILED */
1409
1410/* A host whose IP address matches a local IP address, or whose name matches
1411something in hosts_treat_as_local has been found. */
1412
1413FOUND_LOCAL:
1414
1415if (prev == NULL)
1416 {
1417 HDEBUG(D_host_lookup) debug_printf((h->mx >= 0)?
1418 "local host has lowest MX\n" :
1419 "local host found for non-MX address\n");
1420 return HOST_FOUND_LOCAL;
1421 }
1422
1423HDEBUG(D_host_lookup)
1424 {
1425 debug_printf("local host in host list - removed hosts:\n");
1426 for (h = prev->next; h != last->next; h = h->next)
1427 debug_printf(" %s %s %d\n", h->name, h->address, h->mx);
1428 }
1429
1430if (removed != NULL) *removed = TRUE;
1431prev->next = last->next;
1432*lastptr = prev;
1433return yield;
1434}
1435
1436
1437
1438
1439/*************************************************
1440* Remove duplicate IPs in host list *
1441*************************************************/
1442
1443/* You would think that administrators could set up their DNS records so that
1444one ended up with a list of unique IP addresses after looking up A or MX
1445records, but apparently duplication is common. So we scan such lists and
1446remove the later duplicates. Note that we may get lists in which some host
1447addresses are not set.
1448
1449Arguments:
1450 host pointer to the first host in the chain
1451 lastptr pointer to pointer to the last host in the chain (may be updated)
1452
1453Returns: nothing
1454*/
1455
1456static void
1457host_remove_duplicates(host_item *host, host_item **lastptr)
1458{
1459while (host != *lastptr)
1460 {
1461 if (host->address != NULL)
1462 {
1463 host_item *h = host;
1464 while (h != *lastptr)
1465 {
1466 if (h->next->address != NULL &&
1467 Ustrcmp(h->next->address, host->address) == 0)
1468 {
1469 DEBUG(D_host_lookup) debug_printf("duplicate IP address %s (MX=%d) "
1470 "removed\n", host->address, h->next->mx);
1471 if (h->next == *lastptr) *lastptr = h;
1472 h->next = h->next->next;
1473 }
1474 else h = h->next;
1475 }
1476 }
1477 /* If the last item was removed, host may have become == *lastptr */
1478 if (host != *lastptr) host = host->next;
1479 }
1480}
1481
1482
1483
1484
1485/*************************************************
1486* Find sender host name by gethostbyaddr() *
1487*************************************************/
1488
1489/* This used to be the only way it was done, but it turns out that not all
1490systems give aliases for calls to gethostbyaddr() - or one of the modern
1491equivalents like getipnodebyaddr(). Fortunately, multiple PTR records are rare,
1492but they can still exist. This function is now used only when a DNS lookup of
1493the IP address fails, in order to give access to /etc/hosts.
1494
1495Arguments: none
1496Returns: OK, DEFER, FAIL
1497*/
1498
1499static int
1500host_name_lookup_byaddr(void)
1501{
1502int len;
1503uschar *s, *t;
1504struct hostent *hosts;
1505struct in_addr addr;
f2cb6292 1506unsigned long time_msec = 0; /* init to quieten dumb static analysis */
846430d9
JH
1507
1508if (slow_lookup_log) time_msec = get_time_in_ms();
059ec3d9
PH
1509
1510/* Lookup on IPv6 system */
1511
1512#if HAVE_IPV6
1513if (Ustrchr(sender_host_address, ':') != NULL)
1514 {
1515 struct in6_addr addr6;
1516 if (inet_pton(AF_INET6, CS sender_host_address, &addr6) != 1)
1517 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "unable to parse \"%s\" as an "
1518 "IPv6 address", sender_host_address);
1519 #if HAVE_GETIPNODEBYADDR
1520 hosts = getipnodebyaddr(CS &addr6, sizeof(addr6), AF_INET6, &h_errno);
1521 #else
1522 hosts = gethostbyaddr(CS &addr6, sizeof(addr6), AF_INET6);
1523 #endif
1524 }
1525else
1526 {
1527 if (inet_pton(AF_INET, CS sender_host_address, &addr) != 1)
1528 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "unable to parse \"%s\" as an "
1529 "IPv4 address", sender_host_address);
1530 #if HAVE_GETIPNODEBYADDR
1531 hosts = getipnodebyaddr(CS &addr, sizeof(addr), AF_INET, &h_errno);
1532 #else
1533 hosts = gethostbyaddr(CS &addr, sizeof(addr), AF_INET);
1534 #endif
1535 }
1536
1537/* Do lookup on IPv4 system */
1538
1539#else
1540addr.s_addr = (S_ADDR_TYPE)inet_addr(CS sender_host_address);
1541hosts = gethostbyaddr(CS(&addr), sizeof(addr), AF_INET);
1542#endif
1543
846430d9
JH
1544if ( slow_lookup_log
1545 && (time_msec = get_time_in_ms() - time_msec) > slow_lookup_log
1546 )
1547 log_long_lookup(US"name", sender_host_address, time_msec);
1548
059ec3d9
PH
1549/* Failed to look up the host. */
1550
1551if (hosts == NULL)
1552 {
1553 HDEBUG(D_host_lookup) debug_printf("IP address lookup failed: h_errno=%d\n",
1554 h_errno);
1555 return (h_errno == TRY_AGAIN || h_errno == NO_RECOVERY) ? DEFER : FAIL;
1556 }
1557
1558/* It seems there are some records in the DNS that yield an empty name. We
1559treat this as non-existent. In some operating systems, this is returned as an
1560empty string; in others as a single dot. */
1561
8ad076b2 1562if (hosts->h_name == NULL || hosts->h_name[0] == 0 || hosts->h_name[0] == '.')
059ec3d9
PH
1563 {
1564 HDEBUG(D_host_lookup) debug_printf("IP address lookup yielded an empty name: "
1565 "treated as non-existent host name\n");
1566 return FAIL;
1567 }
1568
1569/* Copy and lowercase the name, which is in static storage in many systems.
1570Put it in permanent memory. */
1571
5903c6ff 1572s = US hosts->h_name;
059ec3d9
PH
1573len = Ustrlen(s) + 1;
1574t = sender_host_name = store_get_perm(len);
1575while (*s != 0) *t++ = tolower(*s++);
1576*t = 0;
1577
1578/* If the host has aliases, build a copy of the alias list */
1579
d7978c0f 1580if (hosts->h_aliases)
059ec3d9
PH
1581 {
1582 int count = 1;
d7978c0f
JH
1583 uschar **ptr;
1584 for (uschar ** aliases = USS hosts->h_aliases; *aliases; aliases++) count++;
059ec3d9 1585 ptr = sender_host_aliases = store_get_perm(count * sizeof(uschar *));
d7978c0f 1586 for (uschar ** aliases = USS hosts->h_aliases; *aliases; aliases++)
059ec3d9
PH
1587 {
1588 uschar *s = *aliases;
1589 int len = Ustrlen(s) + 1;
1590 uschar *t = *ptr++ = store_get_perm(len);
1591 while (*s != 0) *t++ = tolower(*s++);
1592 *t = 0;
1593 }
1594 *ptr = NULL;
1595 }
1596
1597return OK;
1598}
1599
1600
1601
1602/*************************************************
1603* Find host name for incoming call *
1604*************************************************/
1605
1606/* Put the name in permanent store, pointed to by sender_host_name. We also set
1607up a list of alias names, pointed to by sender_host_alias. The list is
1608NULL-terminated. The incoming address is in sender_host_address, either in
1609dotted-quad form for IPv4 or in colon-separated form for IPv6.
1610
1611This function does a thorough check that the names it finds point back to the
1612incoming IP address. Any that do not are discarded. Note that this is relied on
1613by the ACL reverse_host_lookup check.
1614
1615On some systems, get{host,ipnode}byaddr() appears to do this internally, but
1616this it not universally true. Also, for release 4.30, this function was changed
1617to do a direct DNS lookup first, by default[1], because it turns out that that
1618is the only guaranteed way to find all the aliases on some systems. My
1619experiments indicate that Solaris gethostbyaddr() gives the aliases for but
1620Linux does not.
1621
1622[1] The actual order is controlled by the host_lookup_order option.
1623
1624Arguments: none
1625Returns: OK on success, the answer being placed in the global variable
1626 sender_host_name, with any aliases in a list hung off
1627 sender_host_aliases
1628 FAIL if no host name can be found
1629 DEFER if a temporary error was encountered
1630
4c04137d 1631The variable host_lookup_msg is set to an empty string on success, or to a
059ec3d9 1632reason for the failure otherwise, in a form suitable for tagging onto an error
8e669ac1 1633message, and also host_lookup_failed is set TRUE if the lookup failed. If there
b08b24c8
PH
1634was a defer, host_lookup_deferred is set TRUE.
1635
1636Any dynamically constructed string for host_lookup_msg must be in permanent
1637store, because it might be used for several incoming messages on the same SMTP
059ec3d9
PH
1638connection. */
1639
1640int
1641host_name_lookup(void)
1642{
1643int old_pool, rc;
1644int sep = 0;
d7978c0f 1645uschar *save_hostname;
059ec3d9
PH
1646uschar **aliases;
1647uschar buffer[256];
1648uschar *ordername;
55414b25 1649const uschar *list = host_lookup_order;
059ec3d9
PH
1650dns_answer dnsa;
1651dns_scan dnss;
1652
1f4a55da 1653sender_host_dnssec = host_lookup_deferred = host_lookup_failed = FALSE;
b08b24c8 1654
059ec3d9
PH
1655HDEBUG(D_host_lookup)
1656 debug_printf("looking up host name for %s\n", sender_host_address);
1657
1658/* For testing the case when a lookup does not complete, we have a special
1659reserved IP address. */
1660
8768d548 1661if (f.running_in_test_harness &&
059ec3d9
PH
1662 Ustrcmp(sender_host_address, "99.99.99.99") == 0)
1663 {
1664 HDEBUG(D_host_lookup)
1665 debug_printf("Test harness: host name lookup returns DEFER\n");
8e669ac1 1666 host_lookup_deferred = TRUE;
059ec3d9
PH
1667 return DEFER;
1668 }
1669
1670/* Do lookups directly in the DNS or via gethostbyaddr() (or equivalent), in
1671the order specified by the host_lookup_order option. */
1672
1f155f8e 1673while ((ordername = string_nextinlist(&list, &sep, buffer, sizeof(buffer))))
059ec3d9
PH
1674 {
1675 if (strcmpic(ordername, US"bydns") == 0)
1676 {
9d9c3746 1677 dns_init(FALSE, FALSE, FALSE); /* dnssec ctrl by dns_dnssec_ok glbl */
059ec3d9 1678 dns_build_reverse(sender_host_address, buffer);
846430d9 1679 rc = dns_lookup_timerwrap(&dnsa, buffer, T_PTR, NULL);
059ec3d9
PH
1680
1681 /* The first record we come across is used for the name; others are
1682 considered to be aliases. We have to scan twice, in order to find out the
1683 number of aliases. However, if all the names are empty, we will behave as
1684 if failure. (PTR records that yield empty names have been encountered in
1685 the DNS.) */
1686
1687 if (rc == DNS_SUCCEED)
1688 {
1689 uschar **aptr = NULL;
1690 int ssize = 264;
1691 int count = 0;
1692 int old_pool = store_pool;
1693
1f4a55da
PP
1694 sender_host_dnssec = dns_is_secure(&dnsa);
1695 DEBUG(D_dns)
1696 debug_printf("Reverse DNS security status: %s\n",
1697 sender_host_dnssec ? "DNSSEC verified (AD)" : "unverified");
1698
059ec3d9
PH
1699 store_pool = POOL_PERM; /* Save names in permanent storage */
1700
d7978c0f 1701 for (dns_record * rr = dns_next_rr(&dnsa, &dnss, RESET_ANSWERS);
1705dd20 1702 rr;
d7978c0f
JH
1703 rr = dns_next_rr(&dnsa, &dnss, RESET_NEXT)) if (rr->type == T_PTR)
1704 count++;
059ec3d9
PH
1705
1706 /* Get store for the list of aliases. For compatibility with
1707 gethostbyaddr, we make an empty list if there are none. */
1708
1709 aptr = sender_host_aliases = store_get(count * sizeof(uschar *));
1710
1711 /* Re-scan and extract the names */
1712
d7978c0f 1713 for (dns_record * rr = dns_next_rr(&dnsa, &dnss, RESET_ANSWERS);
1705dd20 1714 rr;
d7978c0f 1715 rr = dns_next_rr(&dnsa, &dnss, RESET_NEXT)) if (rr->type == T_PTR)
059ec3d9 1716 {
d7978c0f 1717 uschar * s = store_get(ssize);
059ec3d9
PH
1718
1719 /* If an overlong response was received, the data will have been
1720 truncated and dn_expand may fail. */
1721
1722 if (dn_expand(dnsa.answer, dnsa.answer + dnsa.answerlen,
5903c6ff 1723 US (rr->data), (DN_EXPAND_ARG4_TYPE)(s), ssize) < 0)
059ec3d9
PH
1724 {
1725 log_write(0, LOG_MAIN, "host name alias list truncated for %s",
1726 sender_host_address);
1727 break;
1728 }
1729
1730 store_reset(s + Ustrlen(s) + 1);
1731 if (s[0] == 0)
1732 {
1733 HDEBUG(D_host_lookup) debug_printf("IP address lookup yielded an "
1734 "empty name: treated as non-existent host name\n");
1735 continue;
1736 }
1f155f8e
JH
1737 if (!sender_host_name) sender_host_name = s;
1738 else *aptr++ = s;
059ec3d9
PH
1739 while (*s != 0) { *s = tolower(*s); s++; }
1740 }
1741
1742 *aptr = NULL; /* End of alias list */
1743 store_pool = old_pool; /* Reset store pool */
1744
1745 /* If we've found a names, break out of the "order" loop */
1746
1747 if (sender_host_name != NULL) break;
1748 }
1749
1750 /* If the DNS lookup deferred, we must also defer. */
1751
1752 if (rc == DNS_AGAIN)
1753 {
1754 HDEBUG(D_host_lookup)
1755 debug_printf("IP address PTR lookup gave temporary error\n");
8e669ac1 1756 host_lookup_deferred = TRUE;
059ec3d9
PH
1757 return DEFER;
1758 }
1759 }
1760
1761 /* Do a lookup using gethostbyaddr() - or equivalent */
1762
1763 else if (strcmpic(ordername, US"byaddr") == 0)
1764 {
1765 HDEBUG(D_host_lookup)
1766 debug_printf("IP address lookup using gethostbyaddr()\n");
059ec3d9 1767 rc = host_name_lookup_byaddr();
8e669ac1 1768 if (rc == DEFER)
b08b24c8 1769 {
8e669ac1 1770 host_lookup_deferred = TRUE;
b08b24c8 1771 return rc; /* Can't carry on */
8e669ac1 1772 }
059ec3d9
PH
1773 if (rc == OK) break; /* Found a name */
1774 }
1775 } /* Loop for bydns/byaddr scanning */
1776
1777/* If we have failed to find a name, return FAIL and log when required.
1778NB host_lookup_msg must be in permanent store. */
1779
94759fce 1780if (!sender_host_name)
059ec3d9 1781 {
8768d548 1782 if (host_checking || !f.log_testing_mode)
059ec3d9
PH
1783 log_write(L_host_lookup_failed, LOG_MAIN, "no host name found for IP "
1784 "address %s", sender_host_address);
1785 host_lookup_msg = US" (failed to find host name from IP address)";
b08b24c8 1786 host_lookup_failed = TRUE;
059ec3d9
PH
1787 return FAIL;
1788 }
1789
059ec3d9
PH
1790HDEBUG(D_host_lookup)
1791 {
1792 uschar **aliases = sender_host_aliases;
de11307f
JH
1793 debug_printf("IP address lookup yielded \"%s\"\n", sender_host_name);
1794 while (*aliases != NULL) debug_printf(" alias \"%s\"\n", *aliases++);
059ec3d9
PH
1795 }
1796
1797/* We need to verify that a forward lookup on the name we found does indeed
1798correspond to the address. This is for security: in principle a malefactor who
1799happened to own a reverse zone could set it to point to any names at all.
1800
1801This code was present in versions of Exim before 3.20. At that point I took it
1802out because I thought that gethostbyaddr() did the check anyway. It turns out
1803that this isn't always the case, so it's coming back in at 4.01. This version
1804is actually better, because it also checks aliases.
1805
1806The code was made more robust at release 4.21. Prior to that, it accepted all
1807the names if any of them had the correct IP address. Now the code checks all
1808the names, and accepts only those that have the correct IP address. */
1809
1810save_hostname = sender_host_name; /* Save for error messages */
1811aliases = sender_host_aliases;
d7978c0f 1812for (uschar * hname = sender_host_name; hname; hname = *aliases++)
059ec3d9
PH
1813 {
1814 int rc;
1815 BOOL ok = FALSE;
94759fce
JH
1816 host_item h = { .next = NULL, .name = hname, .mx = MX_NONE, .address = NULL };
1817 dnssec_domains d =
1818 { .request = sender_host_dnssec ? US"*" : NULL, .require = NULL };
059ec3d9 1819
66387a73 1820 if ( (rc = host_find_bydns(&h, NULL, HOST_FIND_BY_A | HOST_FIND_BY_AAAA,
1f155f8e
JH
1821 NULL, NULL, NULL, &d, NULL, NULL)) == HOST_FOUND
1822 || rc == HOST_FOUND_LOCAL
1823 )
059ec3d9 1824 {
059ec3d9 1825 HDEBUG(D_host_lookup) debug_printf("checking addresses for %s\n", hname);
1f155f8e
JH
1826
1827 /* If the forward lookup was not secure we cancel the is-secure variable */
1828
1829 DEBUG(D_dns) debug_printf("Forward DNS security status: %s\n",
1830 h.dnssec == DS_YES ? "DNSSEC verified (AD)" : "unverified");
1831 if (h.dnssec != DS_YES) sender_host_dnssec = FALSE;
1832
d7978c0f 1833 for (host_item * hh = &h; hh; hh = hh->next)
d27f1df3 1834 if (host_is_in_net(hh->address, sender_host_address, 0))
059ec3d9
PH
1835 {
1836 HDEBUG(D_host_lookup) debug_printf(" %s OK\n", hh->address);
1837 ok = TRUE;
1838 break;
1839 }
1840 else
059ec3d9 1841 HDEBUG(D_host_lookup) debug_printf(" %s\n", hh->address);
1f155f8e 1842
059ec3d9
PH
1843 if (!ok) HDEBUG(D_host_lookup)
1844 debug_printf("no IP address for %s matched %s\n", hname,
1845 sender_host_address);
1846 }
1847 else if (rc == HOST_FIND_AGAIN)
1848 {
1849 HDEBUG(D_host_lookup) debug_printf("temporary error for host name lookup\n");
8e669ac1 1850 host_lookup_deferred = TRUE;
55728a4f 1851 sender_host_name = NULL;
059ec3d9
PH
1852 return DEFER;
1853 }
1854 else
059ec3d9 1855 HDEBUG(D_host_lookup) debug_printf("no IP addresses found for %s\n", hname);
059ec3d9
PH
1856
1857 /* If this name is no good, and it's the sender name, set it null pro tem;
1858 if it's an alias, just remove it from the list. */
1859
1860 if (!ok)
1861 {
1862 if (hname == sender_host_name) sender_host_name = NULL; else
1863 {
1864 uschar **a; /* Don't amalgamate - some */
1865 a = --aliases; /* compilers grumble */
1866 while (*a != NULL) { *a = a[1]; a++; }
1867 }
1868 }
1869 }
1870
1871/* If sender_host_name == NULL, it means we didn't like the name. Replace
1872it with the first alias, if there is one. */
1873
1874if (sender_host_name == NULL && *sender_host_aliases != NULL)
1875 sender_host_name = *sender_host_aliases++;
1876
1877/* If we now have a main name, all is well. */
1878
1879if (sender_host_name != NULL) return OK;
1880
1881/* We have failed to find an address that matches. */
1882
1883HDEBUG(D_host_lookup)
1884 debug_printf("%s does not match any IP address for %s\n",
1885 sender_host_address, save_hostname);
1886
1887/* This message must be in permanent store */
1888
1889old_pool = store_pool;
1890store_pool = POOL_PERM;
1891host_lookup_msg = string_sprintf(" (%s does not match any IP address for %s)",
1892 sender_host_address, save_hostname);
1893store_pool = old_pool;
059ec3d9
PH
1894host_lookup_failed = TRUE;
1895return FAIL;
1896}
1897
1898
1899
1900
1901/*************************************************
1902* Find IP address(es) for host by name *
1903*************************************************/
1904
1905/* The input is a host_item structure with the name filled in and the address
322050c2
PH
1906field set to NULL. We use gethostbyname() or getipnodebyname() or
1907gethostbyname2(), as appropriate. Of course, these functions may use the DNS,
1908but they do not do MX processing. It appears, however, that in some systems the
1909current setting of resolver options is used when one of these functions calls
1910the resolver. For this reason, we call dns_init() at the start, with arguments
1911influenced by bits in "flags", just as we do for host_find_bydns().
059ec3d9
PH
1912
1913The second argument provides a host list (usually an IP list) of hosts to
1914ignore. This makes it possible to ignore IPv6 link-local addresses or loopback
1915addresses in unreasonable places.
1916
1917The lookup may result in a change of name. For compatibility with the dns
1918lookup, return this via fully_qualified_name as well as updating the host item.
1919The lookup may also yield more than one IP address, in which case chain on
1920subsequent host_item structures.
1921
1922Arguments:
1923 host a host item with the name and MX filled in;
1924 the address is to be filled in;
1925 multiple IP addresses cause other host items to be
1926 chained on.
1927 ignore_target_hosts a list of hosts to ignore
322050c2
PH
1928 flags HOST_FIND_QUALIFY_SINGLE ) passed to
1929 HOST_FIND_SEARCH_PARENTS ) dns_init()
059ec3d9
PH
1930 fully_qualified_name if not NULL, set to point to host name for
1931 compatibility with host_find_bydns
1932 local_host_check TRUE if a check for the local host is wanted
1933
1934Returns: HOST_FIND_FAILED Failed to find the host or domain
1935 HOST_FIND_AGAIN Try again later
1936 HOST_FOUND Host found - data filled in
1937 HOST_FOUND_LOCAL Host found and is the local host
1938*/
1939
1940int
55414b25
JH
1941host_find_byname(host_item *host, const uschar *ignore_target_hosts, int flags,
1942 const uschar **fully_qualified_name, BOOL local_host_check)
059ec3d9 1943{
d7978c0f 1944int yield, times;
059ec3d9
PH
1945host_item *last = NULL;
1946BOOL temp_error = FALSE;
b08b24c8
PH
1947#if HAVE_IPV6
1948int af;
1949#endif
1950
322050c2
PH
1951/* Make sure DNS options are set as required. This appears to be necessary in
1952some circumstances when the get..byname() function actually calls the DNS. */
1953
1954dns_init((flags & HOST_FIND_QUALIFY_SINGLE) != 0,
8c51eead 1955 (flags & HOST_FIND_SEARCH_PARENTS) != 0,
7cd171b7 1956 FALSE); /* Cannot retrieve dnssec status so do not request */
322050c2 1957
7e66e54d
PH
1958/* In an IPv6 world, unless IPv6 has been disabled, we need to scan for both
1959kinds of address, so go round the loop twice. Note that we have ensured that
1960AF_INET6 is defined even in an IPv4 world, which makes for slightly tidier
1961code. However, if dns_ipv4_lookup matches the domain, we also just do IPv4
1962lookups here (except when testing standalone). */
059ec3d9
PH
1963
1964#if HAVE_IPV6
322050c2
PH
1965 #ifdef STAND_ALONE
1966 if (disable_ipv6)
1967 #else
1968 if (disable_ipv6 ||
1969 (dns_ipv4_lookup != NULL &&
55414b25
JH
1970 match_isinlist(host->name, CUSS &dns_ipv4_lookup, 0, NULL, NULL,
1971 MCL_DOMAIN, TRUE, NULL) == OK))
322050c2
PH
1972 #endif
1973
059ec3d9
PH
1974 { af = AF_INET; times = 1; }
1975 else
059ec3d9
PH
1976 { af = AF_INET6; times = 2; }
1977
1978/* No IPv6 support */
1979
1980#else /* HAVE_IPV6 */
1981 times = 1;
1982#endif /* HAVE_IPV6 */
1983
1984/* Initialize the flag that gets set for DNS syntax check errors, so that the
1985interface to this function can be similar to host_find_bydns. */
1986
8768d548 1987f.host_find_failed_syntax = FALSE;
059ec3d9
PH
1988
1989/* Loop to look up both kinds of address in an IPv6 world */
1990
d7978c0f 1991for (int i = 1; i <= times;
059ec3d9
PH
1992 #if HAVE_IPV6
1993 af = AF_INET, /* If 2 passes, IPv4 on the second */
1994 #endif
1995 i++)
1996 {
1997 BOOL ipv4_addr;
91ecef39 1998 int error_num = 0;
059ec3d9 1999 struct hostent *hostdata;
0539a19d 2000 unsigned long time_msec = 0; /* compiler quietening */
059ec3d9 2001
322050c2
PH
2002 #ifdef STAND_ALONE
2003 printf("Looking up: %s\n", host->name);
2004 #endif
2005
846430d9
JH
2006 if (slow_lookup_log) time_msec = get_time_in_ms();
2007
059ec3d9 2008 #if HAVE_IPV6
8768d548 2009 if (f.running_in_test_harness)
e7726cbf
PH
2010 hostdata = host_fake_gethostbyname(host->name, af, &error_num);
2011 else
2012 {
059ec3d9
PH
2013 #if HAVE_GETIPNODEBYNAME
2014 hostdata = getipnodebyname(CS host->name, af, 0, &error_num);
2015 #else
2016 hostdata = gethostbyname2(CS host->name, af);
2017 error_num = h_errno;
2018 #endif
e7726cbf
PH
2019 }
2020
2021 #else /* not HAVE_IPV6 */
8768d548 2022 if (f.running_in_test_harness)
e7726cbf
PH
2023 hostdata = host_fake_gethostbyname(host->name, AF_INET, &error_num);
2024 else
2025 {
2026 hostdata = gethostbyname(CS host->name);
2027 error_num = h_errno;
2028 }
2029 #endif /* HAVE_IPV6 */
059ec3d9 2030
0539a19d 2031 if ( slow_lookup_log
abe1353e
HSHR
2032 && (time_msec = get_time_in_ms() - time_msec) > slow_lookup_log)
2033 log_long_lookup(US"name", host->name, time_msec);
846430d9 2034
059ec3d9
PH
2035 if (hostdata == NULL)
2036 {
2037 uschar *error;
2038 switch (error_num)
2039 {
2040 case HOST_NOT_FOUND: error = US"HOST_NOT_FOUND"; break;
4a452c43
JH
2041 case TRY_AGAIN: error = US"TRY_AGAIN"; break;
2042 case NO_RECOVERY: error = US"NO_RECOVERY"; break;
2043 case NO_DATA: error = US"NO_DATA"; break;
059ec3d9 2044 #if NO_DATA != NO_ADDRESS
4a452c43 2045 case NO_ADDRESS: error = US"NO_ADDRESS"; break;
059ec3d9
PH
2046 #endif
2047 default: error = US"?"; break;
2048 }
2049
2050 DEBUG(D_host_lookup) debug_printf("%s returned %d (%s)\n",
2051 #if HAVE_IPV6
2052 #if HAVE_GETIPNODEBYNAME
2053 (af == AF_INET6)? "getipnodebyname(af=inet6)" : "getipnodebyname(af=inet)",
2054 #else
2055 (af == AF_INET6)? "gethostbyname2(af=inet6)" : "gethostbyname2(af=inet)",
2056 #endif
2057 #else
2058 "gethostbyname",
2059 #endif
2060 error_num, error);
2061
2062 if (error_num == TRY_AGAIN || error_num == NO_RECOVERY) temp_error = TRUE;
2063 continue;
2064 }
2065 if ((hostdata->h_addr_list)[0] == NULL) continue;
2066
2067 /* Replace the name with the fully qualified one if necessary, and fill in
2068 the fully_qualified_name pointer. */
2069
2070 if (hostdata->h_name[0] != 0 &&
2071 Ustrcmp(host->name, hostdata->h_name) != 0)
5903c6ff 2072 host->name = string_copy_dnsdomain(US hostdata->h_name);
059ec3d9
PH
2073 if (fully_qualified_name != NULL) *fully_qualified_name = host->name;
2074
2075 /* Get the list of addresses. IPv4 and IPv6 addresses can be distinguished
2076 by their different lengths. Scan the list, ignoring any that are to be
2077 ignored, and build a chain from the rest. */
2078
2079 ipv4_addr = hostdata->h_length == sizeof(struct in_addr);
2080
d7978c0f 2081 for (uschar ** addrlist = USS hostdata->h_addr_list; *addrlist; addrlist++)
059ec3d9
PH
2082 {
2083 uschar *text_address =
2084 host_ntoa(ipv4_addr? AF_INET:AF_INET6, *addrlist, NULL, NULL);
2085
2086 #ifndef STAND_ALONE
2087 if (ignore_target_hosts != NULL &&
2088 verify_check_this_host(&ignore_target_hosts, NULL, host->name,
2089 text_address, NULL) == OK)
2090 {
2091 DEBUG(D_host_lookup)
2092 debug_printf("ignored host %s [%s]\n", host->name, text_address);
2093 continue;
2094 }
2095 #endif
2096
2097 /* If this is the first address, last == NULL and we put the data in the
2098 original block. */
2099
2100 if (last == NULL)
2101 {
2102 host->address = text_address;
2103 host->port = PORT_NONE;
2104 host->status = hstatus_unknown;
2105 host->why = hwhy_unknown;
783b385f 2106 host->dnssec = DS_UNK;
059ec3d9
PH
2107 last = host;
2108 }
2109
2110 /* Else add further host item blocks for any other addresses, keeping
2111 the order. */
2112
2113 else
2114 {
2115 host_item *next = store_get(sizeof(host_item));
2116 next->name = host->name;
2117 next->mx = host->mx;
2118 next->address = text_address;
2119 next->port = PORT_NONE;
2120 next->status = hstatus_unknown;
2121 next->why = hwhy_unknown;
783b385f 2122 next->dnssec = DS_UNK;
059ec3d9
PH
2123 next->last_try = 0;
2124 next->next = last->next;
2125 last->next = next;
2126 last = next;
2127 }
2128 }
2129 }
2130
2131/* If no hosts were found, the address field in the original host block will be
2132NULL. If temp_error is set, at least one of the lookups gave a temporary error,
2133so we pass that back. */
2134
2135if (host->address == NULL)
2136 {
2137 uschar *msg =
2138 #ifndef STAND_ALONE
2139 (message_id[0] == 0 && smtp_in != NULL)?
2140 string_sprintf("no IP address found for host %s (during %s)", host->name,
2141 smtp_get_connection_info()) :
2142 #endif
2143 string_sprintf("no IP address found for host %s", host->name);
2144
2145 HDEBUG(D_host_lookup) debug_printf("%s\n", msg);
9b8fadde 2146 if (temp_error) goto RETURN_AGAIN;
8768d548 2147 if (host_checking || !f.log_testing_mode)
059ec3d9
PH
2148 log_write(L_host_lookup_failed, LOG_MAIN, "%s", msg);
2149 return HOST_FIND_FAILED;
2150 }
2151
2152/* Remove any duplicate IP addresses, then check to see if this is the local
2153host if required. */
2154
2155host_remove_duplicates(host, &last);
2156yield = local_host_check?
2157 host_scan_for_local_hosts(host, &last, NULL) : HOST_FOUND;
2158
059ec3d9
PH
2159HDEBUG(D_host_lookup)
2160 {
d7978c0f 2161 if (fully_qualified_name)
059ec3d9
PH
2162 debug_printf("fully qualified name = %s\n", *fully_qualified_name);
2163 debug_printf("%s looked up these IP addresses:\n",
2164 #if HAVE_IPV6
2165 #if HAVE_GETIPNODEBYNAME
2166 "getipnodebyname"
2167 #else
2168 "gethostbyname2"
2169 #endif
2170 #else
2171 "gethostbyname"
2172 #endif
2173 );
d7978c0f 2174 for (const host_item * h = host; h != last->next; h = h->next)
059ec3d9 2175 debug_printf(" name=%s address=%s\n", h->name,
d7978c0f 2176 h->address ? h->address : US"<null>");
059ec3d9
PH
2177 }
2178
2179/* Return the found status. */
2180
2181return yield;
9b8fadde
PH
2182
2183/* Handle the case when there is a temporary error. If the name matches
2184dns_again_means_nonexist, return permanent rather than temporary failure. */
2185
2186RETURN_AGAIN:
2187 {
2188 #ifndef STAND_ALONE
2189 int rc;
55414b25 2190 const uschar *save = deliver_domain;
9b8fadde 2191 deliver_domain = host->name; /* set $domain */
55414b25 2192 rc = match_isinlist(host->name, CUSS &dns_again_means_nonexist, 0, NULL, NULL,
9b8fadde
PH
2193 MCL_DOMAIN, TRUE, NULL);
2194 deliver_domain = save;
2195 if (rc == OK)
2196 {
2197 DEBUG(D_host_lookup) debug_printf("%s is in dns_again_means_nonexist: "
2198 "returning HOST_FIND_FAILED\n", host->name);
2199 return HOST_FIND_FAILED;
2200 }
2201 #endif
2202 return HOST_FIND_AGAIN;
2203 }
059ec3d9
PH
2204}
2205
2206
2207
2208/*************************************************
2209* Fill in a host address from the DNS *
2210*************************************************/
2211
1349e1e5
PH
2212/* Given a host item, with its name, port and mx fields set, and its address
2213field set to NULL, fill in its IP address from the DNS. If it is multi-homed,
2214create additional host items for the additional addresses, copying all the
2215other fields, and randomizing the order.
059ec3d9 2216
66387a73 2217On IPv6 systems, AAAA records are sought first, then A records.
059ec3d9
PH
2218
2219The host name may be changed if the DNS returns a different name - e.g. fully
2220qualified or changed via CNAME. If fully_qualified_name is not NULL, dns_lookup
2221ensures that it points to the fully qualified name. However, this is the fully
2222qualified version of the original name; if a CNAME is involved, the actual
2223canonical host name may be different again, and so we get it directly from the
2224relevant RR. Note that we do NOT change the mx field of the host item in this
2225function as it may be called to set the addresses of hosts taken from MX
2226records.
2227
2228Arguments:
2229 host points to the host item we're filling in
2230 lastptr points to pointer to last host item in a chain of
2231 host items (may be updated if host is last and gets
2232 extended because multihomed)
2233 ignore_target_hosts list of hosts to ignore
2234 allow_ip if TRUE, recognize an IP address and return it
2235 fully_qualified_name if not NULL, return fully qualified name here if
2236 the contents are different (i.e. it must be preset
2237 to something)
221dff13
HSHR
2238 dnssec_request if TRUE request the AD bit
2239 dnssec_require if TRUE require the AD bit
66387a73 2240 whichrrs select ipv4, ipv6 results
059ec3d9
PH
2241
2242Returns: HOST_FIND_FAILED couldn't find A record
2243 HOST_FIND_AGAIN try again later
2546388c 2244 HOST_FIND_SECURITY dnssec required but not acheived
059ec3d9
PH
2245 HOST_FOUND found AAAA and/or A record(s)
2246 HOST_IGNORED found, but all IPs ignored
2247*/
2248
2249static int
2250set_address_from_dns(host_item *host, host_item **lastptr,
55414b25
JH
2251 const uschar *ignore_target_hosts, BOOL allow_ip,
2252 const uschar **fully_qualified_name,
66387a73 2253 BOOL dnssec_request, BOOL dnssec_require, int whichrrs)
059ec3d9 2254{
059ec3d9
PH
2255host_item *thishostlast = NULL; /* Indicates not yet filled in anything */
2256BOOL v6_find_again = FALSE;
2546388c 2257BOOL dnssec_fail = FALSE;
059ec3d9
PH
2258int i;
2259
2260/* If allow_ip is set, a name which is an IP address returns that value
2261as its address. This is used for MX records when allow_mx_to_ip is set, for
2262those sites that feel they have to flaunt the RFC rules. */
2263
2264if (allow_ip && string_is_ip_address(host->name, NULL) != 0)
2265 {
2266 #ifndef STAND_ALONE
66387a73
JH
2267 if ( ignore_target_hosts
2268 && verify_check_this_host(&ignore_target_hosts, NULL, host->name,
059ec3d9
PH
2269 host->name, NULL) == OK)
2270 return HOST_IGNORED;
2271 #endif
2272
2273 host->address = host->name;
059ec3d9
PH
2274 return HOST_FOUND;
2275 }
2276
0539a19d 2277/* On an IPv6 system, unless IPv6 is disabled, go round the loop up to twice,
66387a73
JH
2278looking for AAAA records the first time. However, unless doing standalone
2279testing, we force an IPv4 lookup if the domain matches dns_ipv4_lookup global.
2280On an IPv4 system, go round the loop once only, looking only for A records. */
059ec3d9
PH
2281
2282#if HAVE_IPV6
059ec3d9 2283 #ifndef STAND_ALONE
66387a73
JH
2284 if ( disable_ipv6
2285 || !(whichrrs & HOST_FIND_BY_AAAA)
2286 || (dns_ipv4_lookup
2287 && match_isinlist(host->name, CUSS &dns_ipv4_lookup, 0, NULL, NULL,
2288 MCL_DOMAIN, TRUE, NULL) == OK)
2289 )
059ec3d9
PH
2290 i = 0; /* look up A records only */
2291 else
2292 #endif /* STAND_ALONE */
2293
059ec3d9 2294 i = 1; /* look up AAAA and A records */
059ec3d9
PH
2295
2296/* The IPv4 world */
2297
2298#else /* HAVE_IPV6 */
2299 i = 0; /* look up A records only */
2300#endif /* HAVE_IPV6 */
2301
2302for (; i >= 0; i--)
2303 {
0539a19d 2304 static int types[] = { T_A, T_AAAA };
059ec3d9 2305 int type = types[i];
66387a73
JH
2306 int randoffset = i == (whichrrs & HOST_FIND_IPV4_FIRST ? 1 : 0)
2307 ? 500 : 0; /* Ensures v6/4 sort order */
059ec3d9
PH
2308 dns_answer dnsa;
2309 dns_scan dnss;
2310
846430d9 2311 int rc = dns_lookup_timerwrap(&dnsa, host->name, type, fully_qualified_name);
cf2b569e 2312 lookup_dnssec_authenticated = !dnssec_request ? NULL
4e0983dc 2313 : dns_is_secure(&dnsa) ? US"yes" : US"no";
059ec3d9 2314
221dff13 2315 DEBUG(D_dns)
0539a19d
JH
2316 if ( (dnssec_request || dnssec_require)
2317 && !dns_is_secure(&dnsa)
2318 && dns_is_aa(&dnsa)
2319 )
2320 debug_printf("DNS lookup of %.256s (A/AAAA) requested AD, but got AA\n", host->name);
221dff13 2321
0539a19d 2322 /* We want to return HOST_FIND_AGAIN if one of the A or AAAA lookups
059ec3d9
PH
2323 fails or times out, but not if another one succeeds. (In the early
2324 IPv6 days there are name servers that always fail on AAAA, but are happy
2325 to give out an A record. We want to proceed with that A record.) */
8e669ac1 2326
059ec3d9
PH
2327 if (rc != DNS_SUCCEED)
2328 {
2329 if (i == 0) /* Just tried for an A record, i.e. end of loop */
2330 {
0539a19d 2331 if (host->address != NULL) return HOST_FOUND; /* AAAA was found */
059ec3d9
PH
2332 if (rc == DNS_AGAIN || rc == DNS_FAIL || v6_find_again)
2333 return HOST_FIND_AGAIN;
2334 return HOST_FIND_FAILED; /* DNS_NOMATCH or DNS_NODATA */
2335 }
2336
0539a19d 2337 /* Tried for an AAAA record: remember if this was a temporary
059ec3d9
PH
2338 error, and look for the next record type. */
2339
2340 if (rc != DNS_NOMATCH && rc != DNS_NODATA) v6_find_again = TRUE;
2341 continue;
2342 }
cf2b569e
JH
2343
2344 if (dnssec_request)
8c51eead 2345 {
cf2b569e
JH
2346 if (dns_is_secure(&dnsa))
2347 {
2348 DEBUG(D_host_lookup) debug_printf("%s A DNSSEC\n", host->name);
2349 if (host->dnssec == DS_UNK) /* set in host_find_bydns() */
2350 host->dnssec = DS_YES;
2351 }
2352 else
2353 {
2354 if (dnssec_require)
2355 {
2546388c
JH
2356 dnssec_fail = TRUE;
2357 DEBUG(D_host_lookup) debug_printf("dnssec fail on %s for %.256s",
0539a19d 2358 i>0 ? "AAAA" : "A", host->name);
cf2b569e
JH
2359 continue;
2360 }
2361 if (host->dnssec == DS_YES) /* set in host_find_bydns() */
2362 {
2363 DEBUG(D_host_lookup) debug_printf("%s A cancel DNSSEC\n", host->name);
2364 host->dnssec = DS_NO;
2365 lookup_dnssec_authenticated = US"no";
2366 }
2367 }
8c51eead 2368 }
059ec3d9
PH
2369
2370 /* Lookup succeeded: fill in the given host item with the first non-ignored
2371 address found; create additional items for any others. A single A6 record
8241d8dd
JH
2372 may generate more than one address. The lookup had a chance to update the
2373 fqdn; we do not want any later times round the loop to do so. */
2374
2375 fully_qualified_name = NULL;
059ec3d9 2376
d7978c0f 2377 for (dns_record * rr = dns_next_rr(&dnsa, &dnss, RESET_ANSWERS);
e1a3f32f 2378 rr;
d7978c0f 2379 rr = dns_next_rr(&dnsa, &dnss, RESET_NEXT)) if (rr->type == type)
059ec3d9 2380 {
d7978c0f 2381 dns_address * da = dns_address_from_rr(&dnsa, rr);
059ec3d9 2382
d7978c0f
JH
2383 DEBUG(D_host_lookup)
2384 if (!da) debug_printf("no addresses extracted from A6 RR for %s\n",
2385 host->name);
059ec3d9 2386
d7978c0f
JH
2387 /* This loop runs only once for A and AAAA records, but may run
2388 several times for an A6 record that generated multiple addresses. */
059ec3d9 2389
d7978c0f
JH
2390 for (; da; da = da->next)
2391 {
2392 #ifndef STAND_ALONE
2393 if (ignore_target_hosts != NULL &&
2394 verify_check_this_host(&ignore_target_hosts, NULL,
2395 host->name, da->address, NULL) == OK)
2396 {
2397 DEBUG(D_host_lookup)
2398 debug_printf("ignored host %s [%s]\n", host->name, da->address);
2399 continue;
2400 }
2401 #endif
059ec3d9 2402
d7978c0f
JH
2403 /* If this is the first address, stick it in the given host block,
2404 and change the name if the returned RR has a different name. */
059ec3d9 2405
d7978c0f
JH
2406 if (thishostlast == NULL)
2407 {
2408 if (strcmpic(host->name, rr->name) != 0)
2409 host->name = string_copy_dnsdomain(rr->name);
2410 host->address = da->address;
2411 host->sort_key = host->mx * 1000 + random_number(500) + randoffset;
2412 host->status = hstatus_unknown;
2413 host->why = hwhy_unknown;
2414 thishostlast = host;
2415 }
059ec3d9 2416
d7978c0f
JH
2417 /* Not the first address. Check for, and ignore, duplicates. Then
2418 insert in the chain at a random point. */
059ec3d9 2419
d7978c0f
JH
2420 else
2421 {
2422 int new_sort_key;
2423 host_item *next;
2424
2425 /* End of our local chain is specified by "thishostlast". */
2426
2427 for (next = host;; next = next->next)
2428 {
2429 if (Ustrcmp(CS da->address, next->address) == 0) break;
2430 if (next == thishostlast) { next = NULL; break; }
2431 }
2432 if (next != NULL) continue; /* With loop for next address */
2433
2434 /* Not a duplicate */
2435
2436 new_sort_key = host->mx * 1000 + random_number(500) + randoffset;
2437 next = store_get(sizeof(host_item));
2438
2439 /* New address goes first: insert the new block after the first one
2440 (so as not to disturb the original pointer) but put the new address
2441 in the original block. */
2442
2443 if (new_sort_key < host->sort_key)
2444 {
2445 *next = *host; /* Copies port */
2446 host->next = next;
2447 host->address = da->address;
2448 host->sort_key = new_sort_key;
2449 if (thishostlast == host) thishostlast = next; /* Local last */
2450 if (*lastptr == host) *lastptr = next; /* Global last */
2451 }
2452
2453 /* Otherwise scan down the addresses for this host to find the
2454 one to insert after. */
2455
2456 else
2457 {
2458 host_item *h = host;
2459 while (h != thishostlast)
2460 {
2461 if (new_sort_key < h->next->sort_key) break;
2462 h = h->next;
2463 }
2464 *next = *h; /* Copies port */
2465 h->next = next;
2466 next->address = da->address;
2467 next->sort_key = new_sort_key;
2468 if (h == thishostlast) thishostlast = next; /* Local last */
2469 if (h == *lastptr) *lastptr = next; /* Global last */
2470 }
2471 }
059ec3d9
PH
2472 }
2473 }
2474 }
2475
2546388c 2476/* Control gets here only if the second lookup (the A record) succeeded.
059ec3d9
PH
2477However, the address may not be filled in if it was ignored. */
2478
2546388c
JH
2479return host->address
2480 ? HOST_FOUND
2481 : dnssec_fail
2482 ? HOST_FIND_SECURITY
2483 : HOST_IGNORED;
059ec3d9
PH
2484}
2485
2486
2487
2488
2489/*************************************************
1349e1e5 2490* Find IP addresses and host names via DNS *
059ec3d9
PH
2491*************************************************/
2492
1349e1e5
PH
2493/* The input is a host_item structure with the name field filled in and the
2494address field set to NULL. This may be in a chain of other host items. The
2495lookup may result in more than one IP address, in which case we must created
2496new host blocks for the additional addresses, and insert them into the chain.
2497The original name may not be fully qualified. Use the fully_qualified_name
2498argument to return the official name, as returned by the resolver.
059ec3d9
PH
2499
2500Arguments:
2501 host point to initial host item
2502 ignore_target_hosts a list of hosts to ignore
2503 whichrrs flags indicating which RRs to look for:
2504 HOST_FIND_BY_SRV => look for SRV
2505 HOST_FIND_BY_MX => look for MX
66387a73
JH
2506 HOST_FIND_BY_A => look for A
2507 HOST_FIND_BY_AAAA => look for AAAA
059ec3d9
PH
2508 also flags indicating how the lookup is done
2509 HOST_FIND_QUALIFY_SINGLE ) passed to the
2510 HOST_FIND_SEARCH_PARENTS ) resolver
66387a73
JH
2511 HOST_FIND_IPV4_FIRST => reverse usual result ordering
2512 HOST_FIND_IPV4_ONLY => MX results elide ipv6
059ec3d9
PH
2513 srv_service when SRV used, the service name
2514 srv_fail_domains DNS errors for these domains => assume nonexist
2515 mx_fail_domains DNS errors for these domains => assume nonexist
7cd171b7
JH
2516 dnssec_d.request => make dnssec request: domainlist
2517 dnssec_d.require => ditto and nonexist failures
059ec3d9
PH
2518 fully_qualified_name if not NULL, return fully-qualified name
2519 removed set TRUE if local host was removed from the list
2520
2521Returns: HOST_FIND_FAILED Failed to find the host or domain;
2522 if there was a syntax error,
2523 host_find_failed_syntax is set.
2524 HOST_FIND_AGAIN Could not resolve at this time
2546388c 2525 HOST_FIND_SECURITY dnsssec required but not acheived
059ec3d9
PH
2526 HOST_FOUND Host found
2527 HOST_FOUND_LOCAL The lowest MX record points to this
2528 machine, if MX records were found, or
2529 an A record that was found contains
2530 an address of the local host
2531*/
2532
2533int
55414b25 2534host_find_bydns(host_item *host, const uschar *ignore_target_hosts, int whichrrs,
059ec3d9 2535 uschar *srv_service, uschar *srv_fail_domains, uschar *mx_fail_domains,
7cd171b7 2536 const dnssec_domains *dnssec_d,
55414b25 2537 const uschar **fully_qualified_name, BOOL *removed)
059ec3d9
PH
2538{
2539host_item *h, *last;
059ec3d9
PH
2540int rc = DNS_FAIL;
2541int ind_type = 0;
2542int yield;
2543dns_answer dnsa;
2544dns_scan dnss;
7cd171b7
JH
2545BOOL dnssec_require = dnssec_d
2546 && match_isinlist(host->name, CUSS &dnssec_d->require,
8c51eead 2547 0, NULL, NULL, MCL_DOMAIN, TRUE, NULL) == OK;
783b385f 2548BOOL dnssec_request = dnssec_require
7cd171b7
JH
2549 || ( dnssec_d
2550 && match_isinlist(host->name, CUSS &dnssec_d->request,
2551 0, NULL, NULL, MCL_DOMAIN, TRUE, NULL) == OK);
783b385f 2552dnssec_status_t dnssec;
059ec3d9
PH
2553
2554/* Set the default fully qualified name to the incoming name, initialize the
2555resolver if necessary, set up the relevant options, and initialize the flag
2556that gets set for DNS syntax check errors. */
2557
2558if (fully_qualified_name != NULL) *fully_qualified_name = host->name;
2559dns_init((whichrrs & HOST_FIND_QUALIFY_SINGLE) != 0,
8c51eead 2560 (whichrrs & HOST_FIND_SEARCH_PARENTS) != 0,
1f155f8e 2561 dnssec_request);
8768d548 2562f.host_find_failed_syntax = FALSE;
059ec3d9
PH
2563
2564/* First, if requested, look for SRV records. The service name is given; we
221dff13 2565assume TCP protocol. DNS domain names are constrained to a maximum of 256
059ec3d9
PH
2566characters, so the code below should be safe. */
2567
94759fce 2568if (whichrrs & HOST_FIND_BY_SRV)
059ec3d9 2569 {
d12746bc
JH
2570 gstring * g;
2571 uschar * temp_fully_qualified_name;
059ec3d9
PH
2572 int prefix_length;
2573
d12746bc
JH
2574 g = string_fmt_append(NULL, "_%s._tcp.%n%.256s",
2575 srv_service, &prefix_length, host->name);
2576 temp_fully_qualified_name = string_from_gstring(g);
059ec3d9
PH
2577 ind_type = T_SRV;
2578
2579 /* Search for SRV records. If the fully qualified name is different to
2580 the input name, pass back the new original domain, without the prepended
2581 magic. */
2582
783b385f
JH
2583 dnssec = DS_UNK;
2584 lookup_dnssec_authenticated = NULL;
d12746bc
JH
2585 rc = dns_lookup_timerwrap(&dnsa, temp_fully_qualified_name, ind_type,
2586 CUSS &temp_fully_qualified_name);
783b385f 2587
221dff13
HSHR
2588 DEBUG(D_dns)
2589 if ((dnssec_request || dnssec_require)
8f07c250
JH
2590 && !dns_is_secure(&dnsa)
2591 && dns_is_aa(&dnsa))
221dff13
HSHR
2592 debug_printf("DNS lookup of %.256s (SRV) requested AD, but got AA\n", host->name);
2593
783b385f
JH
2594 if (dnssec_request)
2595 {
2596 if (dns_is_secure(&dnsa))
2597 { dnssec = DS_YES; lookup_dnssec_authenticated = US"yes"; }
2598 else
2599 { dnssec = DS_NO; lookup_dnssec_authenticated = US"no"; }
2600 }
4e0983dc 2601
d12746bc 2602 if (temp_fully_qualified_name != g->s && fully_qualified_name != NULL)
059ec3d9
PH
2603 *fully_qualified_name = temp_fully_qualified_name + prefix_length;
2604
2605 /* On DNS failures, we give the "try again" error unless the domain is
2606 listed as one for which we continue. */
2607
8c51eead
JH
2608 if (rc == DNS_SUCCEED && dnssec_require && !dns_is_secure(&dnsa))
2609 {
2610 log_write(L_host_lookup_failed, LOG_MAIN,
2611 "dnssec fail on SRV for %.256s", host->name);
2612 rc = DNS_FAIL;
2613 }
059ec3d9
PH
2614 if (rc == DNS_FAIL || rc == DNS_AGAIN)
2615 {
e7726cbf 2616 #ifndef STAND_ALONE
55414b25
JH
2617 if (match_isinlist(host->name, CUSS &srv_fail_domains, 0, NULL, NULL,
2618 MCL_DOMAIN, TRUE, NULL) != OK)
e7726cbf 2619 #endif
8c51eead 2620 { yield = HOST_FIND_AGAIN; goto out; }
059ec3d9
PH
2621 DEBUG(D_host_lookup) debug_printf("DNS_%s treated as DNS_NODATA "
2622 "(domain in srv_fail_domains)\n", (rc == DNS_FAIL)? "FAIL":"AGAIN");
2623 }
2624 }
2625
2626/* If we did not find any SRV records, search the DNS for MX records, if
2627requested to do so. If the result is DNS_NOMATCH, it means there is no such
2628domain, and there's no point in going on to look for address records with the
2629same domain. The result will be DNS_NODATA if the domain exists but has no MX
2630records. On DNS failures, we give the "try again" error unless the domain is
2631listed as one for which we continue. */
2632
2546388c 2633if (rc != DNS_SUCCEED && whichrrs & HOST_FIND_BY_MX)
059ec3d9
PH
2634 {
2635 ind_type = T_MX;
783b385f
JH
2636 dnssec = DS_UNK;
2637 lookup_dnssec_authenticated = NULL;
846430d9 2638 rc = dns_lookup_timerwrap(&dnsa, host->name, ind_type, fully_qualified_name);
783b385f 2639
221dff13 2640 DEBUG(D_dns)
2546388c
JH
2641 if ( (dnssec_request || dnssec_require)
2642 && !dns_is_secure(&dnsa)
2643 && dns_is_aa(&dnsa))
cf3d165f 2644 debug_printf("DNS lookup of %.256s (MX) requested AD, but got AA\n", host->name);
221dff13 2645
783b385f 2646 if (dnssec_request)
783b385f 2647 if (dns_is_secure(&dnsa))
94431adb 2648 {
cf2b569e
JH
2649 DEBUG(D_host_lookup) debug_printf("%s MX DNSSEC\n", host->name);
2650 dnssec = DS_YES; lookup_dnssec_authenticated = US"yes";
2651 }
783b385f 2652 else
cf2b569e
JH
2653 {
2654 dnssec = DS_NO; lookup_dnssec_authenticated = US"no";
2655 }
4e0983dc 2656
8c51eead
JH
2657 switch (rc)
2658 {
2659 case DNS_NOMATCH:
2660 yield = HOST_FIND_FAILED; goto out;
2661
2662 case DNS_SUCCEED:
2663 if (!dnssec_require || dns_is_secure(&dnsa))
2664 break;
2546388c
JH
2665 DEBUG(D_host_lookup)
2666 debug_printf("dnssec fail on MX for %.256s", host->name);
2667#ifndef STAND_ALONE
2668 if (match_isinlist(host->name, CUSS &mx_fail_domains, 0, NULL, NULL,
2669 MCL_DOMAIN, TRUE, NULL) != OK)
2670 { yield = HOST_FIND_SECURITY; goto out; }
2671#endif
8c51eead 2672 rc = DNS_FAIL;
cf2b569e 2673 /*FALLTHROUGH*/
8c51eead
JH
2674
2675 case DNS_FAIL:
2676 case DNS_AGAIN:
2546388c 2677#ifndef STAND_ALONE
55414b25
JH
2678 if (match_isinlist(host->name, CUSS &mx_fail_domains, 0, NULL, NULL,
2679 MCL_DOMAIN, TRUE, NULL) != OK)
2546388c 2680#endif
8c51eead
JH
2681 { yield = HOST_FIND_AGAIN; goto out; }
2682 DEBUG(D_host_lookup) debug_printf("DNS_%s treated as DNS_NODATA "
2683 "(domain in mx_fail_domains)\n", (rc == DNS_FAIL)? "FAIL":"AGAIN");
2684 break;
059ec3d9
PH
2685 }
2686 }
2687
2688/* If we haven't found anything yet, and we are requested to do so, try for an
2689A or AAAA record. If we find it (or them) check to see that it isn't the local
2690host. */
2691
2692if (rc != DNS_SUCCEED)
2693 {
66387a73 2694 if (!(whichrrs & (HOST_FIND_BY_A | HOST_FIND_BY_AAAA)))
059ec3d9
PH
2695 {
2696 DEBUG(D_host_lookup) debug_printf("Address records are not being sought\n");
8c51eead
JH
2697 yield = HOST_FIND_FAILED;
2698 goto out;
059ec3d9
PH
2699 }
2700
2701 last = host; /* End of local chainlet */
2702 host->mx = MX_NONE;
2703 host->port = PORT_NONE;
cf2b569e 2704 host->dnssec = DS_UNK;
783b385f 2705 lookup_dnssec_authenticated = NULL;
059ec3d9 2706 rc = set_address_from_dns(host, &last, ignore_target_hosts, FALSE,
66387a73 2707 fully_qualified_name, dnssec_request, dnssec_require, whichrrs);
059ec3d9
PH
2708
2709 /* If one or more address records have been found, check that none of them
2710 are local. Since we know the host items all have their IP addresses
2711 inserted, host_scan_for_local_hosts() can only return HOST_FOUND or
2712 HOST_FOUND_LOCAL. We do not need to scan for duplicate IP addresses here,
2713 because set_address_from_dns() removes them. */
2714
2715 if (rc == HOST_FOUND)
2716 rc = host_scan_for_local_hosts(host, &last, removed);
2717 else
2718 if (rc == HOST_IGNORED) rc = HOST_FIND_FAILED; /* No special action */
2719
2720 DEBUG(D_host_lookup)
d7978c0f 2721 if (host->address)
059ec3d9 2722 {
d7978c0f 2723 if (fully_qualified_name)
059ec3d9 2724 debug_printf("fully qualified name = %s\n", *fully_qualified_name);
d7978c0f 2725 for (host_item * h = host; h != last->next; h = h->next)
059ec3d9 2726 debug_printf("%s %s mx=%d sort=%d %s\n", h->name,
d7978c0f
JH
2727 h->address ? h->address : US"<null>", h->mx, h->sort_key,
2728 h->status >= hstatus_unusable ? US"*" : US"");
059ec3d9 2729 }
059ec3d9 2730
8c51eead
JH
2731 yield = rc;
2732 goto out;
059ec3d9
PH
2733 }
2734
2735/* We have found one or more MX or SRV records. Sort them according to
2736precedence. Put the data for the first one into the existing host block, and
2737insert new host_item blocks into the chain for the remainder. For equal
2738precedences one is supposed to randomize the order. To make this happen, the
2739sorting is actually done on the MX value * 1000 + a random number. This is put
2740into a host field called sort_key.
2741
2742In the case of hosts with both IPv6 and IPv4 addresses, we want to choose the
2743IPv6 address in preference. At this stage, we don't know what kind of address
2744the host has. We choose a random number < 500; if later we find an A record
2745first, we add 500 to the random number. Then for any other address records, we
2746use random numbers in the range 0-499 for AAAA records and 500-999 for A
2747records.
2748
2749At this point we remove any duplicates that point to the same host, retaining
2750only the one with the lowest precedence. We cannot yet check for precedence
2751greater than that of the local host, because that test cannot be properly done
2752until the addresses have been found - an MX record may point to a name for this
2753host which is not the primary hostname. */
2754
2755last = NULL; /* Indicates that not even the first item is filled yet */
2756
d7978c0f 2757for (dns_record * rr = dns_next_rr(&dnsa, &dnss, RESET_ANSWERS);
dd708fd7
JH
2758 rr;
2759 rr = dns_next_rr(&dnsa, &dnss, RESET_NEXT)) if (rr->type == ind_type)
059ec3d9 2760 {
8c513105 2761 int precedence, weight;
1349e1e5 2762 int port = PORT_NONE;
dd708fd7 2763 const uschar * s = rr->data; /* MUST be unsigned for GETSHORT */
059ec3d9
PH
2764 uschar data[256];
2765
059ec3d9
PH
2766 GETSHORT(precedence, s); /* Pointer s is advanced */
2767
2768 /* For MX records, we use a random "weight" which causes multiple records of
2769 the same precedence to sort randomly. */
2770
2771 if (ind_type == T_MX)
059ec3d9 2772 weight = random_number(500);
059ec3d9
PH
2773 else
2774 {
8c513105
JH
2775 /* SRV records are specified with a port and a weight. The weight is used
2776 in a special algorithm. However, to start with, we just use it to order the
2777 records of equal priority (precedence). */
059ec3d9
PH
2778 GETSHORT(weight, s);
2779 GETSHORT(port, s);
2780 }
2781
2782 /* Get the name of the host pointed to. */
2783
2784 (void)dn_expand(dnsa.answer, dnsa.answer + dnsa.answerlen, s,
2785 (DN_EXPAND_ARG4_TYPE)data, sizeof(data));
2786
2787 /* Check that we haven't already got this host on the chain; if we have,
2788 keep only the lower precedence. This situation shouldn't occur, but you
2789 never know what junk might get into the DNS (and this case has been seen on
2790 more than one occasion). */
2791
8c513105 2792 if (last) /* This is not the first record */
059ec3d9
PH
2793 {
2794 host_item *prev = NULL;
2795
2796 for (h = host; h != last->next; prev = h, h = h->next)
059ec3d9
PH
2797 if (strcmpic(h->name, data) == 0)
2798 {
2799 DEBUG(D_host_lookup)
2800 debug_printf("discarded duplicate host %s (MX=%d)\n", data,
8c513105 2801 precedence > h->mx ? precedence : h->mx);
059ec3d9
PH
2802 if (precedence >= h->mx) goto NEXT_MX_RR; /* Skip greater precedence */
2803 if (h == host) /* Override first item */
2804 {
2805 h->mx = precedence;
2806 host->sort_key = precedence * 1000 + weight;
2807 goto NEXT_MX_RR;
2808 }
2809
2810 /* Unwanted host item is not the first in the chain, so we can get
2811 get rid of it by cutting it out. */
2812
2813 prev->next = h->next;
2814 if (h == last) last = prev;
2815 break;
2816 }
059ec3d9
PH
2817 }
2818
2819 /* If this is the first MX or SRV record, put the data into the existing host
2820 block. Otherwise, add a new block in the correct place; if it has to be
2821 before the first block, copy the first block's data to a new second block. */
2822
8ac90765 2823 if (!last)
059ec3d9
PH
2824 {
2825 host->name = string_copy_dnsdomain(data);
2826 host->address = NULL;
2827 host->port = port;
2828 host->mx = precedence;
2829 host->sort_key = precedence * 1000 + weight;
2830 host->status = hstatus_unknown;
2831 host->why = hwhy_unknown;
783b385f 2832 host->dnssec = dnssec;
059ec3d9
PH
2833 last = host;
2834 }
8c513105 2835 else
059ec3d9
PH
2836
2837 /* Make a new host item and seek the correct insertion place */
059ec3d9
PH
2838 {
2839 int sort_key = precedence * 1000 + weight;
2840 host_item *next = store_get(sizeof(host_item));
2841 next->name = string_copy_dnsdomain(data);
2842 next->address = NULL;
2843 next->port = port;
2844 next->mx = precedence;
2845 next->sort_key = sort_key;
2846 next->status = hstatus_unknown;
2847 next->why = hwhy_unknown;
783b385f 2848 next->dnssec = dnssec;
059ec3d9
PH
2849 next->last_try = 0;
2850
2851 /* Handle the case when we have to insert before the first item. */
2852
2853 if (sort_key < host->sort_key)
2854 {
2855 host_item htemp;
2856 htemp = *host;
2857 *host = *next;
2858 *next = htemp;
2859 host->next = next;
2860 if (last == host) last = next;
2861 }
8c513105 2862 else
059ec3d9
PH
2863
2864 /* Else scan down the items we have inserted as part of this exercise;
2865 don't go further. */
059ec3d9
PH
2866 {
2867 for (h = host; h != last; h = h->next)
059ec3d9
PH
2868 if (sort_key < h->next->sort_key)
2869 {
2870 next->next = h->next;
2871 h->next = next;
2872 break;
2873 }
059ec3d9
PH
2874
2875 /* Join on after the last host item that's part of this
2876 processing if we haven't stopped sooner. */
2877
2878 if (h == last)
2879 {
2880 next->next = last->next;
2881 last->next = next;
2882 last = next;
2883 }
2884 }
2885 }
2886
2887 NEXT_MX_RR: continue;
2888 }
2889
dc8091e7
JH
2890if (!last) /* No rr of correct type; give up */
2891 {
2892 yield = HOST_FIND_FAILED;
2893 goto out;
2894 }
2895
059ec3d9
PH
2896/* If the list of hosts was obtained from SRV records, there are two things to
2897do. First, if there is only one host, and it's name is ".", it means there is
2898no SMTP service at this domain. Otherwise, we have to sort the hosts of equal
2899priority according to their weights, using an algorithm that is defined in RFC
29002782. The hosts are currently sorted by priority and weight. For each priority
2901group we have to pick off one host and put it first, and then repeat for any
2902remaining in the same priority group. */
2903
2904if (ind_type == T_SRV)
2905 {
d7978c0f 2906 host_item ** pptr;
059ec3d9
PH
2907
2908 if (host == last && host->name[0] == 0)
2909 {
2910 DEBUG(D_host_lookup) debug_printf("the single SRV record is \".\"\n");
8c51eead
JH
2911 yield = HOST_FIND_FAILED;
2912 goto out;
059ec3d9
PH
2913 }
2914
2915 DEBUG(D_host_lookup)
2916 {
2917 debug_printf("original ordering of hosts from SRV records:\n");
2918 for (h = host; h != last->next; h = h->next)
2919 debug_printf(" %s P=%d W=%d\n", h->name, h->mx, h->sort_key % 1000);
2920 }
2921
dc8091e7 2922 for (pptr = &host, h = host; h != last; pptr = &h->next, h = h->next)
059ec3d9
PH
2923 {
2924 int sum = 0;
2925 host_item *hh;
2926
2927 /* Find the last following host that has the same precedence. At the same
2928 time, compute the sum of the weights and the running totals. These can be
2929 stored in the sort_key field. */
2930
2931 for (hh = h; hh != last; hh = hh->next)
2932 {
2933 int weight = hh->sort_key % 1000; /* was precedence * 1000 + weight */
2934 sum += weight;
2935 hh->sort_key = sum;
2936 if (hh->mx != hh->next->mx) break;
2937 }
2938
2939 /* If there's more than one host at this precedence (priority), we need to
2940 pick one to go first. */
2941
2942 if (hh != h)
2943 {
2944 host_item *hhh;
2945 host_item **ppptr;
2946 int randomizer = random_number(sum + 1);
2947
2948 for (ppptr = pptr, hhh = h;
2949 hhh != hh;
8c513105
JH
2950 ppptr = &hhh->next, hhh = hhh->next)
2951 if (hhh->sort_key >= randomizer)
2952 break;
059ec3d9
PH
2953
2954 /* hhh now points to the host that should go first; ppptr points to the
2955 place that points to it. Unfortunately, if the start of the minilist is
2956 the start of the entire list, we can't just swap the items over, because
2957 we must not change the value of host, since it is passed in from outside.
2958 One day, this could perhaps be changed.
2959
2960 The special case is fudged by putting the new item *second* in the chain,
2961 and then transferring the data between the first and second items. We
2962 can't just swap the first and the chosen item, because that would mean
2963 that an item with zero weight might no longer be first. */
2964
2965 if (hhh != h)
2966 {
2967 *ppptr = hhh->next; /* Cuts it out of the chain */
2968
2969 if (h == host)
2970 {
2971 host_item temp = *h;
2972 *h = *hhh;
2973 *hhh = temp;
2974 hhh->next = temp.next;
2975 h->next = hhh;
2976 }
059ec3d9
PH
2977 else
2978 {
2979 hhh->next = h; /* The rest of the chain follows it */
2980 *pptr = hhh; /* It takes the place of h */
2981 h = hhh; /* It's now the start of this minilist */
2982 }
2983 }
2984 }
2985
2986 /* A host has been chosen to be first at this priority and h now points
2987 to this host. There may be others at the same priority, or others at a
2988 different priority. Before we leave this host, we need to put back a sort
2989 key of the traditional MX kind, in case this host is multihomed, because
2990 the sort key is used for ordering the multiple IP addresses. We do not need
2991 to ensure that these new sort keys actually reflect the order of the hosts,
2992 however. */
2993
2994 h->sort_key = h->mx * 1000 + random_number(500);
2995 } /* Move on to the next host */
2996 }
2997
1349e1e5
PH
2998/* Now we have to find IP addresses for all the hosts. We have ensured above
2999that the names in all the host items are unique. Before release 4.61 we used to
3000process records from the additional section in the DNS packet that returned the
3001MX or SRV records. However, a DNS name server is free to drop any resource
3002records from the additional section. In theory, this has always been a
3003potential problem, but it is exacerbated by the advent of IPv6. If a host had
3004several IPv4 addresses and some were not in the additional section, at least
3005Exim would try the others. However, if a host had both IPv4 and IPv6 addresses
3006and all the IPv4 (say) addresses were absent, Exim would try only for a IPv6
3007connection, and never try an IPv4 address. When there was only IPv4
3008connectivity, this was a disaster that did in practice occur.
3009
3010So, from release 4.61 onwards, we always search for A and AAAA records
3011explicitly. The names shouldn't point to CNAMES, but we use the general lookup
3012function that handles them, just in case. If any lookup gives a soft error,
3013change the default yield.
059ec3d9
PH
3014
3015For these DNS lookups, we must disable qualify_single and search_parents;
3016otherwise invalid host names obtained from MX or SRV records can cause trouble
3017if they happen to match something local. */
3018
1349e1e5 3019yield = HOST_FIND_FAILED; /* Default yield */
8c51eead
JH
3020dns_init(FALSE, FALSE, /* Disable qualify_single and search_parents */
3021 dnssec_request || dnssec_require);
059ec3d9
PH
3022
3023for (h = host; h != last->next; h = h->next)
3024 {
dc8091e7
JH
3025 if (h->address) continue; /* Inserted by a multihomed host */
3026
8c51eead 3027 rc = set_address_from_dns(h, &last, ignore_target_hosts, allow_mx_to_ip,
66387a73
JH
3028 NULL, dnssec_request, dnssec_require,
3029 whichrrs & HOST_FIND_IPV4_ONLY
3030 ? HOST_FIND_BY_A : HOST_FIND_BY_A | HOST_FIND_BY_AAAA);
059ec3d9
PH
3031 if (rc != HOST_FOUND)
3032 {
3033 h->status = hstatus_unusable;
2546388c 3034 switch (rc)
059ec3d9 3035 {
66387a73
JH
3036 case HOST_FIND_AGAIN: yield = rc; h->why = hwhy_deferred; break;
3037 case HOST_FIND_SECURITY: yield = rc; h->why = hwhy_insecure; break;
3038 case HOST_IGNORED: h->why = hwhy_ignored; break;
3039 default: h->why = hwhy_failed; break;
059ec3d9 3040 }
059ec3d9
PH
3041 }
3042 }
3043
3044/* Scan the list for any hosts that are marked unusable because they have
3045been explicitly ignored, and remove them from the list, as if they did not
3046exist. If we end up with just a single, ignored host, flatten its fields as if
3047nothing was found. */
3048
2546388c 3049if (ignore_target_hosts)
059ec3d9
PH
3050 {
3051 host_item *prev = NULL;
3052 for (h = host; h != last->next; h = h->next)
3053 {
3054 REDO:
3055 if (h->why != hwhy_ignored) /* Non ignored host, just continue */
3056 prev = h;
3057 else if (prev == NULL) /* First host is ignored */
3058 {
3059 if (h != last) /* First is not last */
3060 {
3061 if (h->next == last) last = h; /* Overwrite it with next */
3062 *h = *(h->next); /* and reprocess it. */
3063 goto REDO; /* C should have redo, like Perl */
3064 }
3065 }
3066 else /* Ignored host is not first - */
3067 { /* cut it out */
3068 prev->next = h->next;
3069 if (h == last) last = prev;
3070 }
3071 }
3072
3073 if (host->why == hwhy_ignored) host->address = NULL;
3074 }
3075
3076/* There is still one complication in the case of IPv6. Although the code above
3077arranges that IPv6 addresses take precedence over IPv4 addresses for multihomed
3078hosts, it doesn't do this for addresses that apply to different hosts with the
3079same MX precedence, because the sorting on MX precedence happens first. So we
3080have to make another pass to check for this case. We ensure that, within a
3081single MX preference value, IPv6 addresses come first. This can separate the
3082addresses of a multihomed host, but that should not matter. */
3083
3084#if HAVE_IPV6
2546388c 3085if (h != last && !disable_ipv6) for (h = host; h != last; h = h->next)
059ec3d9 3086 {
2546388c
JH
3087 host_item temp;
3088 host_item *next = h->next;
3089
66387a73
JH
3090 if ( h->mx != next->mx /* If next is different MX */
3091 || !h->address /* OR this one is unset */
3092 )
3093 continue; /* move on to next */
3094
3095 if ( whichrrs & HOST_FIND_IPV4_FIRST
3096 ? !Ustrchr(h->address, ':') /* OR this one is IPv4 */
3097 || next->address
3098 && Ustrchr(next->address, ':') /* OR next is IPv6 */
3099
3100 : Ustrchr(h->address, ':') /* OR this one is IPv6 */
3101 || next->address
3102 && !Ustrchr(next->address, ':') /* OR next is IPv4 */
3103 )
2546388c 3104 continue; /* move on to next */
66387a73 3105
2546388c
JH
3106 temp = *h; /* otherwise, swap */
3107 temp.next = next->next;
3108 *h = *next;
3109 h->next = next;
3110 *next = temp;
059ec3d9
PH
3111 }
3112#endif
3113
059ec3d9
PH
3114/* Remove any duplicate IP addresses and then scan the list of hosts for any
3115whose IP addresses are on the local host. If any are found, all hosts with the
3116same or higher MX values are removed. However, if the local host has the lowest
3117numbered MX, then HOST_FOUND_LOCAL is returned. Otherwise, if at least one host
3118with an IP address is on the list, HOST_FOUND is returned. Otherwise,
3119HOST_FIND_FAILED is returned, but in this case do not update the yield, as it
3120might have been set to HOST_FIND_AGAIN just above here. If not, it will already
3121be HOST_FIND_FAILED. */
3122
3123host_remove_duplicates(host, &last);
3124rc = host_scan_for_local_hosts(host, &last, removed);
3125if (rc != HOST_FIND_FAILED) yield = rc;
3126
3127DEBUG(D_host_lookup)
3128 {
d7978c0f 3129 if (fully_qualified_name)
059ec3d9
PH
3130 debug_printf("fully qualified name = %s\n", *fully_qualified_name);
3131 debug_printf("host_find_bydns yield = %s (%d); returned hosts:\n",
d7978c0f
JH
3132 yield == HOST_FOUND ? "HOST_FOUND" :
3133 yield == HOST_FOUND_LOCAL ? "HOST_FOUND_LOCAL" :
3134 yield == HOST_FIND_SECURITY ? "HOST_FIND_SECURITY" :
3135 yield == HOST_FIND_AGAIN ? "HOST_FIND_AGAIN" :
3136 yield == HOST_FIND_FAILED ? "HOST_FIND_FAILED" : "?",
059ec3d9
PH
3137 yield);
3138 for (h = host; h != last->next; h = h->next)
3139 {
805c9d53
JH
3140 debug_printf(" %s %s MX=%d %s", h->name,
3141 !h->address ? US"<null>" : h->address, h->mx,
3142 h->dnssec == DS_YES ? US"DNSSEC " : US"");
059ec3d9
PH
3143 if (h->port != PORT_NONE) debug_printf("port=%d ", h->port);
3144 if (h->status >= hstatus_unusable) debug_printf("*");
3145 debug_printf("\n");
3146 }
3147 }
3148
8c51eead
JH
3149out:
3150
3151dns_init(FALSE, FALSE, FALSE); /* clear the dnssec bit for getaddrbyname */
059ec3d9
PH
3152return yield;
3153}
3154
059ec3d9
PH
3155/*************************************************
3156**************************************************
3157* Stand-alone test program *
3158**************************************************
3159*************************************************/
3160
3161#ifdef STAND_ALONE
3162
059ec3d9
PH
3163int main(int argc, char **cargv)
3164{
3165host_item h;
66387a73 3166int whichrrs = HOST_FIND_BY_MX | HOST_FIND_BY_A | HOST_FIND_BY_AAAA;
059ec3d9
PH
3167BOOL byname = FALSE;
3168BOOL qualify_single = TRUE;
3169BOOL search_parents = FALSE;
8c51eead
JH
3170BOOL request_dnssec = FALSE;
3171BOOL require_dnssec = FALSE;
059ec3d9
PH
3172uschar **argv = USS cargv;
3173uschar buffer[256];
3174
322050c2 3175disable_ipv6 = FALSE;
059ec3d9
PH
3176primary_hostname = US"";
3177store_pool = POOL_MAIN;
3178debug_selector = D_host_lookup|D_interface;
3179debug_file = stdout;
3180debug_fd = fileno(debug_file);
3181
3182printf("Exim stand-alone host functions test\n");
3183
3184host_find_interfaces();
3185debug_selector = D_host_lookup | D_dns;
3186
3187if (argc > 1) primary_hostname = argv[1];
3188
3189/* So that debug level changes can be done first */
3190
8c51eead 3191dns_init(qualify_single, search_parents, FALSE);
059ec3d9
PH
3192
3193printf("Testing host lookup\n");
3194printf("> ");
3195while (Ufgets(buffer, 256, stdin) != NULL)
3196 {
3197 int rc;
3198 int len = Ustrlen(buffer);
3199 uschar *fully_qualified_name;
3200
3201 while (len > 0 && isspace(buffer[len-1])) len--;
3202 buffer[len] = 0;
3203
3204 if (Ustrcmp(buffer, "q") == 0) break;
3205
3206 if (Ustrcmp(buffer, "byname") == 0) byname = TRUE;
3207 else if (Ustrcmp(buffer, "no_byname") == 0) byname = FALSE;
66387a73 3208 else if (Ustrcmp(buffer, "a_only") == 0) whichrrs = HOST_FIND_BY_A | HOST_FIND_BY_AAAA;
059ec3d9
PH
3209 else if (Ustrcmp(buffer, "mx_only") == 0) whichrrs = HOST_FIND_BY_MX;
3210 else if (Ustrcmp(buffer, "srv_only") == 0) whichrrs = HOST_FIND_BY_SRV;
3211 else if (Ustrcmp(buffer, "srv+a") == 0)
66387a73 3212 whichrrs = HOST_FIND_BY_SRV | HOST_FIND_BY_A | HOST_FIND_BY_AAAA;
059ec3d9
PH
3213 else if (Ustrcmp(buffer, "srv+mx") == 0)
3214 whichrrs = HOST_FIND_BY_SRV | HOST_FIND_BY_MX;
3215 else if (Ustrcmp(buffer, "srv+mx+a") == 0)
66387a73 3216 whichrrs = HOST_FIND_BY_SRV | HOST_FIND_BY_MX | HOST_FIND_BY_A | HOST_FIND_BY_AAAA;
8c51eead 3217 else if (Ustrcmp(buffer, "qualify_single") == 0) qualify_single = TRUE;
059ec3d9 3218 else if (Ustrcmp(buffer, "no_qualify_single") == 0) qualify_single = FALSE;
8c51eead 3219 else if (Ustrcmp(buffer, "search_parents") == 0) search_parents = TRUE;
059ec3d9 3220 else if (Ustrcmp(buffer, "no_search_parents") == 0) search_parents = FALSE;
8c51eead
JH
3221 else if (Ustrcmp(buffer, "request_dnssec") == 0) request_dnssec = TRUE;
3222 else if (Ustrcmp(buffer, "no_request_dnssec") == 0) request_dnssec = FALSE;
3223 else if (Ustrcmp(buffer, "require_dnssec") == 0) require_dnssec = TRUE;
f988ce57 3224 else if (Ustrcmp(buffer, "no_require_dnssec") == 0) require_dnssec = FALSE;
e7726cbf 3225 else if (Ustrcmp(buffer, "test_harness") == 0)
8768d548 3226 f.running_in_test_harness = !f.running_in_test_harness;
322050c2 3227 else if (Ustrcmp(buffer, "ipv6") == 0) disable_ipv6 = !disable_ipv6;
e7726cbf
PH
3228 else if (Ustrcmp(buffer, "res_debug") == 0)
3229 {
3230 _res.options ^= RES_DEBUG;
3231 }
059ec3d9
PH
3232 else if (Ustrncmp(buffer, "retrans", 7) == 0)
3233 {
ff790e47 3234 (void)sscanf(CS(buffer+8), "%d", &dns_retrans);
059ec3d9
PH
3235 _res.retrans = dns_retrans;
3236 }
3237 else if (Ustrncmp(buffer, "retry", 5) == 0)
3238 {
ff790e47 3239 (void)sscanf(CS(buffer+6), "%d", &dns_retry);
059ec3d9
PH
3240 _res.retry = dns_retry;
3241 }
059ec3d9
PH
3242 else
3243 {
3244 int flags = whichrrs;
505d976a 3245 dnssec_domains d;
059ec3d9
PH
3246
3247 h.name = buffer;
3248 h.next = NULL;
3249 h.mx = MX_NONE;
3250 h.port = PORT_NONE;
3251 h.status = hstatus_unknown;
3252 h.why = hwhy_unknown;
3253 h.address = NULL;
3254
3255 if (qualify_single) flags |= HOST_FIND_QUALIFY_SINGLE;
3256 if (search_parents) flags |= HOST_FIND_SEARCH_PARENTS;
3257
7cd171b7
JH
3258 d.request = request_dnssec ? &h.name : NULL;
3259 d.require = require_dnssec ? &h.name : NULL;
3260
8c51eead
JH
3261 rc = byname
3262 ? host_find_byname(&h, NULL, flags, &fully_qualified_name, TRUE)
3263 : host_find_bydns(&h, NULL, flags, US"smtp", NULL, NULL,
7cd171b7 3264 &d, &fully_qualified_name, NULL);
059ec3d9 3265
2546388c
JH
3266 switch (rc)
3267 {
3268 case HOST_FIND_FAILED: printf("Failed\n"); break;
3269 case HOST_FIND_AGAIN: printf("Again\n"); break;
3270 case HOST_FIND_SECURITY: printf("Security\n"); break;
3271 case HOST_FOUND_LOCAL: printf("Local\n"); break;
3272 }
059ec3d9
PH
3273 }
3274
3275 printf("\n> ");
3276 }
3277
3278printf("Testing host_aton\n");
3279printf("> ");
3280while (Ufgets(buffer, 256, stdin) != NULL)
3281 {
059ec3d9
PH
3282 int x[4];
3283 int len = Ustrlen(buffer);
3284
3285 while (len > 0 && isspace(buffer[len-1])) len--;
3286 buffer[len] = 0;
3287
3288 if (Ustrcmp(buffer, "q") == 0) break;
3289
3290 len = host_aton(buffer, x);
3291 printf("length = %d ", len);
d7978c0f 3292 for (int i = 0; i < len; i++)
059ec3d9
PH
3293 {
3294 printf("%04x ", (x[i] >> 16) & 0xffff);
3295 printf("%04x ", x[i] & 0xffff);
3296 }
3297 printf("\n> ");
3298 }
3299
3300printf("\n");
3301
3302printf("Testing host_name_lookup\n");
3303printf("> ");
3304while (Ufgets(buffer, 256, stdin) != NULL)
3305 {
3306 int len = Ustrlen(buffer);
3307 while (len > 0 && isspace(buffer[len-1])) len--;
3308 buffer[len] = 0;
3309 if (Ustrcmp(buffer, "q") == 0) break;
3310 sender_host_address = buffer;
3311 sender_host_name = NULL;
3312 sender_host_aliases = NULL;
3313 host_lookup_msg = US"";
3314 host_lookup_failed = FALSE;
3315 if (host_name_lookup() == FAIL) /* Debug causes printing */
3316 printf("Lookup failed:%s\n", host_lookup_msg);
3317 printf("\n> ");
3318 }
3319
3320printf("\n");
3321
3322return 0;
3323}
3324#endif /* STAND_ALONE */
3325
8c51eead
JH
3326/* vi: aw ai sw=2
3327*/
059ec3d9 3328/* End of host.c */