Routing: fix $verify_mode to be usable in routers
[exim.git] / src / src / deliver.c
CommitLineData
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1/*************************************************
2* Exim - an Internet mail transport agent *
3*************************************************/
4
80fea873 5/* Copyright (c) University of Cambridge 1995 - 2016 */
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6/* See the file NOTICE for conditions of use and distribution. */
7
8/* The main code for delivering a message. */
9
10
11#include "exim.h"
dadff1d4 12#include <assert.h>
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13
14
15/* Data block for keeping track of subprocesses for parallel remote
16delivery. */
17
18typedef struct pardata {
19 address_item *addrlist; /* chain of addresses */
20 address_item *addr; /* next address data expected for */
21 pid_t pid; /* subprocess pid */
22 int fd; /* pipe fd for getting result from subprocess */
23 int transport_count; /* returned transport count value */
24 BOOL done; /* no more data needed */
25 uschar *msg; /* error message */
26 uschar *return_path; /* return_path for these addresses */
27} pardata;
28
29/* Values for the process_recipients variable */
30
31enum { RECIP_ACCEPT, RECIP_IGNORE, RECIP_DEFER,
32 RECIP_FAIL, RECIP_FAIL_FILTER, RECIP_FAIL_TIMEOUT,
33 RECIP_FAIL_LOOP};
34
35/* Mutually recursive functions for marking addresses done. */
36
37static void child_done(address_item *, uschar *);
38static void address_done(address_item *, uschar *);
39
40/* Table for turning base-62 numbers into binary */
41
42static uschar tab62[] =
43 {0,1,2,3,4,5,6,7,8,9,0,0,0,0,0,0, /* 0-9 */
44 0,10,11,12,13,14,15,16,17,18,19,20, /* A-K */
45 21,22,23,24,25,26,27,28,29,30,31,32, /* L-W */
46 33,34,35, 0, 0, 0, 0, 0, /* X-Z */
47 0,36,37,38,39,40,41,42,43,44,45,46, /* a-k */
48 47,48,49,50,51,52,53,54,55,56,57,58, /* l-w */
49 59,60,61}; /* x-z */
50
51
52/*************************************************
53* Local static variables *
54*************************************************/
55
56/* addr_duplicate is global because it needs to be seen from the Envelope-To
57writing code. */
58
59static address_item *addr_defer = NULL;
60static address_item *addr_failed = NULL;
61static address_item *addr_fallback = NULL;
62static address_item *addr_local = NULL;
63static address_item *addr_new = NULL;
64static address_item *addr_remote = NULL;
65static address_item *addr_route = NULL;
66static address_item *addr_succeed = NULL;
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67static address_item *addr_dsntmp = NULL;
68static address_item *addr_senddsn = NULL;
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69
70static FILE *message_log = NULL;
71static BOOL update_spool;
72static BOOL remove_journal;
73static int parcount = 0;
74static pardata *parlist = NULL;
75static int return_count;
76static uschar *frozen_info = US"";
77static uschar *used_return_path = NULL;
78
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79
80
81/*************************************************
82* Make a new address item *
83*************************************************/
84
85/* This function gets the store and initializes with default values. The
86transport_return value defaults to DEFER, so that any unexpected failure to
87deliver does not wipe out the message. The default unique string is set to a
88copy of the address, so that its domain can be lowercased.
89
90Argument:
91 address the RFC822 address string
92 copy force a copy of the address
93
94Returns: a pointer to an initialized address_item
95*/
96
97address_item *
98deliver_make_addr(uschar *address, BOOL copy)
99{
100address_item *addr = store_get(sizeof(address_item));
101*addr = address_defaults;
102if (copy) address = string_copy(address);
103addr->address = address;
104addr->unique = string_copy(address);
105return addr;
106}
107
108
109
110
111/*************************************************
112* Set expansion values for an address *
113*************************************************/
114
115/* Certain expansion variables are valid only when handling an address or
116address list. This function sets them up or clears the values, according to its
117argument.
118
119Arguments:
120 addr the address in question, or NULL to clear values
121Returns: nothing
122*/
123
124void
125deliver_set_expansions(address_item *addr)
126{
d6c82d7b 127if (!addr)
059ec3d9 128 {
55414b25 129 const uschar ***p = address_expansions;
d6c82d7b 130 while (*p) **p++ = NULL;
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131 return;
132 }
133
134/* Exactly what gets set depends on whether there is one or more addresses, and
135what they contain. These first ones are always set, taking their values from
136the first address. */
137
d6c82d7b 138if (!addr->host_list)
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139 {
140 deliver_host = deliver_host_address = US"";
a7538db1 141 deliver_host_port = 0;
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142 }
143else
144 {
145 deliver_host = addr->host_list->name;
146 deliver_host_address = addr->host_list->address;
a7538db1 147 deliver_host_port = addr->host_list->port;
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148 }
149
150deliver_recipients = addr;
d43cbe25
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151deliver_address_data = addr->prop.address_data;
152deliver_domain_data = addr->prop.domain_data;
153deliver_localpart_data = addr->prop.localpart_data;
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154
155/* These may be unset for multiple addresses */
156
157deliver_domain = addr->domain;
158self_hostname = addr->self_hostname;
159
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160#ifdef EXPERIMENTAL_BRIGHTMAIL
161bmi_deliver = 1; /* deliver by default */
162bmi_alt_location = NULL;
163bmi_base64_verdict = NULL;
164bmi_base64_tracker_verdict = NULL;
165#endif
166
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167/* If there's only one address we can set everything. */
168
d6c82d7b 169if (!addr->next)
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170 {
171 address_item *addr_orig;
172
173 deliver_localpart = addr->local_part;
174 deliver_localpart_prefix = addr->prefix;
175 deliver_localpart_suffix = addr->suffix;
176
d6c82d7b 177 for (addr_orig = addr; addr_orig->parent; addr_orig = addr_orig->parent) ;
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178 deliver_domain_orig = addr_orig->domain;
179
180 /* Re-instate any prefix and suffix in the original local part. In all
181 normal cases, the address will have a router associated with it, and we can
182 choose the caseful or caseless version accordingly. However, when a system
183 filter sets up a pipe, file, or autoreply delivery, no router is involved.
184 In this case, though, there won't be any prefix or suffix to worry about. */
185
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186 deliver_localpart_orig = !addr_orig->router
187 ? addr_orig->local_part
188 : addr_orig->router->caseful_local_part
189 ? addr_orig->cc_local_part
190 : addr_orig->lc_local_part;
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191
192 /* If there's a parent, make its domain and local part available, and if
193 delivering to a pipe or file, or sending an autoreply, get the local
194 part from the parent. For pipes and files, put the pipe or file string
195 into address_pipe and address_file. */
196
d6c82d7b 197 if (addr->parent)
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198 {
199 deliver_domain_parent = addr->parent->domain;
d6c82d7b
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200 deliver_localpart_parent = !addr->parent->router
201 ? addr->parent->local_part
202 : addr->parent->router->caseful_local_part
203 ? addr->parent->cc_local_part
204 : addr->parent->lc_local_part;
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205
206 /* File deliveries have their own flag because they need to be picked out
207 as special more often. */
208
209 if (testflag(addr, af_pfr))
210 {
d6c82d7b
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211 if (testflag(addr, af_file)) address_file = addr->local_part;
212 else if (deliver_localpart[0] == '|') address_pipe = addr->local_part;
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213 deliver_localpart = addr->parent->local_part;
214 deliver_localpart_prefix = addr->parent->prefix;
215 deliver_localpart_suffix = addr->parent->suffix;
216 }
217 }
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218
219#ifdef EXPERIMENTAL_BRIGHTMAIL
220 /* Set expansion variables related to Brightmail AntiSpam */
221 bmi_base64_verdict = bmi_get_base64_verdict(deliver_localpart_orig, deliver_domain_orig);
222 bmi_base64_tracker_verdict = bmi_get_base64_tracker_verdict(bmi_base64_verdict);
223 /* get message delivery status (0 - don't deliver | 1 - deliver) */
224 bmi_deliver = bmi_get_delivery_status(bmi_base64_verdict);
225 /* if message is to be delivered, get eventual alternate location */
d6c82d7b 226 if (bmi_deliver == 1)
8523533c 227 bmi_alt_location = bmi_get_alt_location(bmi_base64_verdict);
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228#endif
229
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230 }
231
232/* For multiple addresses, don't set local part, and leave the domain and
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233self_hostname set only if it is the same for all of them. It is possible to
234have multiple pipe and file addresses, but only when all addresses have routed
235to the same pipe or file. */
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236
237else
238 {
239 address_item *addr2;
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240 if (testflag(addr, af_pfr))
241 {
d6c82d7b
JH
242 if (testflag(addr, af_file)) address_file = addr->local_part;
243 else if (addr->local_part[0] == '|') address_pipe = addr->local_part;
f7fd3850 244 }
d6c82d7b 245 for (addr2 = addr->next; addr2; addr2 = addr2->next)
059ec3d9 246 {
d6c82d7b 247 if (deliver_domain && Ustrcmp(deliver_domain, addr2->domain) != 0)
059ec3d9 248 deliver_domain = NULL;
d6c82d7b
JH
249 if ( self_hostname
250 && ( !addr2->self_hostname
251 || Ustrcmp(self_hostname, addr2->self_hostname) != 0
252 ) )
059ec3d9 253 self_hostname = NULL;
d6c82d7b 254 if (!deliver_domain && !self_hostname) break;
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255 }
256 }
257}
258
259
260
261
262/*************************************************
263* Open a msglog file *
264*************************************************/
265
266/* This function is used both for normal message logs, and for files in the
267msglog directory that are used to catch output from pipes. Try to create the
268directory if it does not exist. From release 4.21, normal message logs should
269be created when the message is received.
270
271Argument:
272 filename the file name
273 mode the mode required
274 error used for saying what failed
275
276Returns: a file descriptor, or -1 (with errno set)
277*/
278
279static int
280open_msglog_file(uschar *filename, int mode, uschar **error)
281{
282int fd = Uopen(filename, O_WRONLY|O_APPEND|O_CREAT, mode);
283
284if (fd < 0 && errno == ENOENT)
285 {
41313d92
JH
286 (void)directory_make(spool_directory,
287 spool_sname(US"msglog", message_subdir),
288 MSGLOG_DIRECTORY_MODE, TRUE);
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289 fd = Uopen(filename, O_WRONLY|O_APPEND|O_CREAT, mode);
290 }
291
292/* Set the close-on-exec flag and change the owner to the exim uid/gid (this
293function is called as root). Double check the mode, because the group setting
294doesn't always get set automatically. */
295
296if (fd >= 0)
297 {
ff790e47 298 (void)fcntl(fd, F_SETFD, fcntl(fd, F_GETFD) | FD_CLOEXEC);
059ec3d9
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299 if (fchown(fd, exim_uid, exim_gid) < 0)
300 {
301 *error = US"chown";
302 return -1;
303 }
304 if (fchmod(fd, mode) < 0)
305 {
306 *error = US"chmod";
307 return -1;
308 }
309 }
310else *error = US"create";
311
312return fd;
313}
314
315
316
317
318/*************************************************
319* Write to msglog if required *
320*************************************************/
321
322/* Write to the message log, if configured. This function may also be called
323from transports.
324
325Arguments:
326 format a string format
327
328Returns: nothing
329*/
330
331void
332deliver_msglog(const char *format, ...)
333{
334va_list ap;
335if (!message_logs) return;
336va_start(ap, format);
337vfprintf(message_log, format, ap);
338fflush(message_log);
339va_end(ap);
340}
341
342
343
344
345/*************************************************
346* Replicate status for batch *
347*************************************************/
348
349/* When a transport handles a batch of addresses, it may treat them
350individually, or it may just put the status in the first one, and return FALSE,
351requesting that the status be copied to all the others externally. This is the
352replication function. As well as the status, it copies the transport pointer,
353which may have changed if appendfile passed the addresses on to a different
354transport.
355
356Argument: pointer to the first address in a chain
357Returns: nothing
358*/
359
360static void
361replicate_status(address_item *addr)
362{
363address_item *addr2;
d6c82d7b 364for (addr2 = addr->next; addr2; addr2 = addr2->next)
059ec3d9 365 {
d6c82d7b 366 addr2->transport = addr->transport;
059ec3d9 367 addr2->transport_return = addr->transport_return;
d6c82d7b
JH
368 addr2->basic_errno = addr->basic_errno;
369 addr2->more_errno = addr->more_errno;
370 addr2->special_action = addr->special_action;
371 addr2->message = addr->message;
372 addr2->user_message = addr->user_message;
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373 }
374}
375
376
377
378/*************************************************
379* Compare lists of hosts *
380*************************************************/
381
382/* This function is given two pointers to chains of host items, and it yields
383TRUE if the lists refer to the same hosts in the same order, except that
384
385(1) Multiple hosts with the same non-negative MX values are permitted to appear
386 in different orders. Round-robinning nameservers can cause this to happen.
387
388(2) Multiple hosts with the same negative MX values less than MX_NONE are also
389 permitted to appear in different orders. This is caused by randomizing
390 hosts lists.
391
392This enables Exim to use a single SMTP transaction for sending to two entirely
393different domains that happen to end up pointing at the same hosts.
394
395Arguments:
396 one points to the first host list
397 two points to the second host list
398
399Returns: TRUE if the lists refer to the same host set
400*/
401
402static BOOL
403same_hosts(host_item *one, host_item *two)
404{
d6c82d7b 405while (one && two)
059ec3d9
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406 {
407 if (Ustrcmp(one->name, two->name) != 0)
408 {
409 int mx = one->mx;
410 host_item *end_one = one;
411 host_item *end_two = two;
412
413 /* Batch up only if there was no MX and the list was not randomized */
414
415 if (mx == MX_NONE) return FALSE;
416
417 /* Find the ends of the shortest sequence of identical MX values */
418
d6c82d7b
JH
419 while ( end_one->next && end_one->next->mx == mx
420 && end_two->next && end_two->next->mx == mx)
059ec3d9
PH
421 {
422 end_one = end_one->next;
423 end_two = end_two->next;
424 }
425
426 /* If there aren't any duplicates, there's no match. */
427
428 if (end_one == one) return FALSE;
429
430 /* For each host in the 'one' sequence, check that it appears in the 'two'
431 sequence, returning FALSE if not. */
432
433 for (;;)
434 {
435 host_item *hi;
436 for (hi = two; hi != end_two->next; hi = hi->next)
437 if (Ustrcmp(one->name, hi->name) == 0) break;
438 if (hi == end_two->next) return FALSE;
439 if (one == end_one) break;
440 one = one->next;
441 }
442
443 /* All the hosts in the 'one' sequence were found in the 'two' sequence.
444 Ensure both are pointing at the last host, and carry on as for equality. */
445
446 two = end_two;
447 }
448
449 /* Hosts matched */
450
451 one = one->next;
452 two = two->next;
453 }
454
455/* True if both are NULL */
456
457return (one == two);
458}
459
460
461
462/*************************************************
463* Compare header lines *
464*************************************************/
465
466/* This function is given two pointers to chains of header items, and it yields
467TRUE if they are the same header texts in the same order.
468
469Arguments:
470 one points to the first header list
471 two points to the second header list
472
473Returns: TRUE if the lists refer to the same header set
474*/
475
476static BOOL
477same_headers(header_line *one, header_line *two)
478{
d6c82d7b 479for (;; one = one->next, two = two->next)
059ec3d9
PH
480 {
481 if (one == two) return TRUE; /* Includes the case where both NULL */
d6c82d7b 482 if (!one || !two) return FALSE;
059ec3d9 483 if (Ustrcmp(one->text, two->text) != 0) return FALSE;
059ec3d9
PH
484 }
485}
486
487
488
489/*************************************************
490* Compare string settings *
491*************************************************/
492
493/* This function is given two pointers to strings, and it returns
494TRUE if they are the same pointer, or if the two strings are the same.
495
496Arguments:
497 one points to the first string
498 two points to the second string
499
500Returns: TRUE or FALSE
501*/
502
503static BOOL
504same_strings(uschar *one, uschar *two)
505{
506if (one == two) return TRUE; /* Includes the case where both NULL */
d6c82d7b 507if (!one || !two) return FALSE;
059ec3d9
PH
508return (Ustrcmp(one, two) == 0);
509}
510
511
512
513/*************************************************
514* Compare uid/gid for addresses *
515*************************************************/
516
517/* This function is given a transport and two addresses. It yields TRUE if the
518uid/gid/initgroups settings for the two addresses are going to be the same when
519they are delivered.
520
521Arguments:
522 tp the transort
523 addr1 the first address
524 addr2 the second address
525
526Returns: TRUE or FALSE
527*/
528
529static BOOL
530same_ugid(transport_instance *tp, address_item *addr1, address_item *addr2)
531{
d6c82d7b
JH
532if ( !tp->uid_set && !tp->expand_uid
533 && !tp->deliver_as_creator
534 && ( testflag(addr1, af_uid_set) != testflag(addr2, af_gid_set)
535 || ( testflag(addr1, af_uid_set)
536 && ( addr1->uid != addr2->uid
537 || testflag(addr1, af_initgroups) != testflag(addr2, af_initgroups)
538 ) ) ) )
539 return FALSE;
059ec3d9 540
d6c82d7b
JH
541if ( !tp->gid_set && !tp->expand_gid
542 && ( testflag(addr1, af_gid_set) != testflag(addr2, af_gid_set)
543 || ( testflag(addr1, af_gid_set)
544 && addr1->gid != addr2->gid
545 ) ) )
546 return FALSE;
059ec3d9
PH
547
548return TRUE;
549}
550
551
552
553
554/*************************************************
555* Record that an address is complete *
556*************************************************/
557
558/* This function records that an address is complete. This is straightforward
559for most addresses, where the unique address is just the full address with the
560domain lower cased. For homonyms (addresses that are the same as one of their
561ancestors) their are complications. Their unique addresses have \x\ prepended
562(where x = 0, 1, 2...), so that de-duplication works correctly for siblings and
563cousins.
564
565Exim used to record the unique addresses of homonyms as "complete". This,
566however, fails when the pattern of redirection varies over time (e.g. if taking
567unseen copies at only some times of day) because the prepended numbers may vary
568from one delivery run to the next. This problem is solved by never recording
569prepended unique addresses as complete. Instead, when a homonymic address has
570actually been delivered via a transport, we record its basic unique address
571followed by the name of the transport. This is checked in subsequent delivery
572runs whenever an address is routed to a transport.
573
574If the completed address is a top-level one (has no parent, which means it
575cannot be homonymic) we also add the original address to the non-recipients
576tree, so that it gets recorded in the spool file and therefore appears as
577"done" in any spool listings. The original address may differ from the unique
578address in the case of the domain.
579
580Finally, this function scans the list of duplicates, marks as done any that
581match this address, and calls child_done() for their ancestors.
582
583Arguments:
584 addr address item that has been completed
585 now current time as a string
586
587Returns: nothing
588*/
589
590static void
591address_done(address_item *addr, uschar *now)
592{
593address_item *dup;
594
595update_spool = TRUE; /* Ensure spool gets updated */
596
597/* Top-level address */
598
d6c82d7b 599if (!addr->parent)
059ec3d9
PH
600 {
601 tree_add_nonrecipient(addr->unique);
602 tree_add_nonrecipient(addr->address);
603 }
604
605/* Homonymous child address */
606
607else if (testflag(addr, af_homonym))
608 {
d6c82d7b 609 if (addr->transport)
059ec3d9
PH
610 tree_add_nonrecipient(
611 string_sprintf("%s/%s", addr->unique + 3, addr->transport->name));
059ec3d9
PH
612 }
613
614/* Non-homonymous child address */
615
616else tree_add_nonrecipient(addr->unique);
617
618/* Check the list of duplicate addresses and ensure they are now marked
619done as well. */
620
d6c82d7b 621for (dup = addr_duplicate; dup; dup = dup->next)
059ec3d9
PH
622 if (Ustrcmp(addr->unique, dup->unique) == 0)
623 {
57730b52 624 tree_add_nonrecipient(dup->unique);
059ec3d9
PH
625 child_done(dup, now);
626 }
059ec3d9
PH
627}
628
629
630
631
632/*************************************************
633* Decrease counts in parents and mark done *
634*************************************************/
635
636/* This function is called when an address is complete. If there is a parent
637address, its count of children is decremented. If there are still other
638children outstanding, the function exits. Otherwise, if the count has become
639zero, address_done() is called to mark the parent and its duplicates complete.
640Then loop for any earlier ancestors.
641
642Arguments:
643 addr points to the completed address item
644 now the current time as a string, for writing to the message log
645
646Returns: nothing
647*/
648
649static void
650child_done(address_item *addr, uschar *now)
651{
652address_item *aa;
d6c82d7b 653while (addr->parent)
059ec3d9
PH
654 {
655 addr = addr->parent;
656 if ((addr->child_count -= 1) > 0) return; /* Incomplete parent */
657 address_done(addr, now);
658
659 /* Log the completion of all descendents only when there is no ancestor with
660 the same original address. */
661
d6c82d7b 662 for (aa = addr->parent; aa; aa = aa->parent)
059ec3d9 663 if (Ustrcmp(aa->address, addr->address) == 0) break;
d6c82d7b 664 if (aa) continue;
059ec3d9
PH
665
666 deliver_msglog("%s %s: children all complete\n", now, addr->address);
667 DEBUG(D_deliver) debug_printf("%s: children all complete\n", addr->address);
668 }
669}
670
671
672
ac881e27
TF
673/*************************************************
674* Delivery logging support functions *
675*************************************************/
676
677/* The LOGGING() checks in d_log_interface() are complicated for backwards
678compatibility. When outgoing interface logging was originally added, it was
679conditional on just incoming_interface (which is off by default). The
680outgoing_interface option is on by default to preserve this behaviour, but
681you can enable incoming_interface and disable outgoing_interface to get I=
682fields on incoming lines only.
683
684Arguments:
685 s The log line buffer
686 sizep Pointer to the buffer size
687 ptrp Pointer to current index into buffer
688 addr The address to be logged
689
690Returns: New value for s
691*/
059ec3d9 692
67d81c10 693static uschar *
ac881e27 694d_log_interface(uschar *s, int *sizep, int *ptrp)
67d81c10 695{
ac881e27 696if (LOGGING(incoming_interface) && LOGGING(outgoing_interface)
d6c82d7b 697 && sending_ip_address)
ac881e27
TF
698 {
699 s = string_append(s, sizep, ptrp, 2, US" I=[", sending_ip_address);
d6c82d7b
JH
700 s = LOGGING(outgoing_port)
701 ? string_append(s, sizep, ptrp, 2, US"]:",
702 string_sprintf("%d", sending_port))
c2f669a4 703 : string_catn(s, sizep, ptrp, US"]", 1);
ac881e27
TF
704 }
705return s;
67d81c10
JH
706}
707
ac881e27
TF
708
709
710static uschar *
fc16abb4 711d_hostlog(uschar * s, int * sp, int * pp, address_item * addr)
ac881e27 712{
fc16abb4
JH
713host_item * h = addr->host_used;
714
715s = string_append(s, sp, pp, 2, US" H=", h->name);
716
717if (LOGGING(dnssec) && h->dnssec == DS_YES)
718 s = string_cat(s, sp, pp, US" DS");
719
720s = string_append(s, sp, pp, 3, US" [", h->address, US"]");
721
ac881e27 722if (LOGGING(outgoing_port))
fc16abb4 723 s = string_append(s, sp, pp, 2, US":", string_sprintf("%d", h->port));
e6d2a989
JH
724
725#ifdef SUPPORT_SOCKS
726if (LOGGING(proxy) && proxy_local_address)
727 {
fc16abb4 728 s = string_append(s, sp, pp, 3, US" PRX=[", proxy_local_address, US"]");
e6d2a989 729 if (LOGGING(outgoing_port))
fc16abb4 730 s = string_append(s, sp, pp, 2, US":", string_sprintf("%d",
e6d2a989
JH
731 proxy_local_port));
732 }
733#endif
734
fc16abb4 735return d_log_interface(s, sp, pp);
ac881e27
TF
736}
737
738
739
e6d2a989
JH
740
741
67d81c10
JH
742#ifdef SUPPORT_TLS
743static uschar *
744d_tlslog(uschar * s, int * sizep, int * ptrp, address_item * addr)
745{
d6c82d7b 746if (LOGGING(tls_cipher) && addr->cipher)
ac881e27 747 s = string_append(s, sizep, ptrp, 2, US" X=", addr->cipher);
d6c82d7b 748if (LOGGING(tls_certificate_verified) && addr->cipher)
ac881e27
TF
749 s = string_append(s, sizep, ptrp, 2, US" CV=",
750 testflag(addr, af_cert_verified)
751 ?
53a7196b 752#ifdef EXPERIMENTAL_DANE
ac881e27
TF
753 testflag(addr, af_dane_verified)
754 ? "dane"
755 :
53a7196b 756#endif
ac881e27
TF
757 "yes"
758 : "no");
d6c82d7b 759if (LOGGING(tls_peerdn) && addr->peerdn)
ac881e27
TF
760 s = string_append(s, sizep, ptrp, 3, US" DN=\"",
761 string_printing(addr->peerdn), US"\"");
762return s;
67d81c10
JH
763}
764#endif
765
a7538db1 766
14a465c3
JH
767
768
0cbf2b82 769#ifndef DISABLE_EVENT
b30275b8 770uschar *
55414b25 771event_raise(uschar * action, const uschar * event, uschar * ev_data)
a7538db1
JH
772{
773uschar * s;
774if (action)
775 {
776 DEBUG(D_deliver)
774ef2d7 777 debug_printf("Event(%s): event_action=|%s| delivery_IP=%s\n",
a7538db1
JH
778 event,
779 action, deliver_host_address);
780
774ef2d7
JH
781 event_name = event;
782 event_data = ev_data;
a7538db1
JH
783
784 if (!(s = expand_string(action)) && *expand_string_message)
785 log_write(0, LOG_MAIN|LOG_PANIC,
774ef2d7 786 "failed to expand event_action %s in %s: %s\n",
a7538db1
JH
787 event, transport_name, expand_string_message);
788
774ef2d7 789 event_name = event_data = NULL;
a7538db1
JH
790
791 /* If the expansion returns anything but an empty string, flag for
792 the caller to modify his normal processing
793 */
794 if (s && *s)
795 {
796 DEBUG(D_deliver)
774ef2d7 797 debug_printf("Event(%s): event_action returned \"%s\"\n", event, s);
b30275b8 798 return s;
a7538db1
JH
799 }
800 }
b30275b8 801return NULL;
a7538db1 802}
14a465c3 803
5ef5dd52 804void
55414b25 805msg_event_raise(const uschar * event, const address_item * addr)
14a465c3 806{
55414b25 807const uschar * save_domain = deliver_domain;
14a465c3 808uschar * save_local = deliver_localpart;
55414b25 809const uschar * save_host = deliver_host;
5ef5dd52
JB
810const uschar * save_address = deliver_host_address;
811const int save_port = deliver_host_port;
14a465c3
JH
812
813if (!addr->transport)
814 return;
815
816router_name = addr->router ? addr->router->name : NULL;
817transport_name = addr->transport->name;
818deliver_domain = addr->domain;
819deliver_localpart = addr->local_part;
c562fd30 820deliver_host = addr->host_used ? addr->host_used->name : NULL;
14a465c3 821
774ef2d7 822(void) event_raise(addr->transport->event_action, event,
5ef5dd52
JB
823 addr->host_used
824 || Ustrcmp(addr->transport->driver_name, "smtp") == 0
825 || Ustrcmp(addr->transport->driver_name, "lmtp") == 0
826 ? addr->message : NULL);
14a465c3 827
5ef5dd52
JB
828deliver_host_port = save_port;
829deliver_host_address = save_address;
c562fd30 830deliver_host = save_host;
14a465c3
JH
831deliver_localpart = save_local;
832deliver_domain = save_domain;
833router_name = transport_name = NULL;
834}
0cbf2b82 835#endif /*DISABLE_EVENT*/
14a465c3
JH
836
837
a7538db1 838
817d9f57 839/* If msg is NULL this is a delivery log and logchar is used. Otherwise
67d81c10 840this is a nonstandard call; no two-character delivery flag is written
817d9f57
JH
841but sender-host and sender are prefixed and "msg" is inserted in the log line.
842
843Arguments:
844 flags passed to log_write()
845*/
e4bdf652 846void
817d9f57 847delivery_log(int flags, address_item * addr, int logchar, uschar * msg)
e4bdf652
JH
848{
849uschar *log_address;
850int size = 256; /* Used for a temporary, */
851int ptr = 0; /* expanding buffer, for */
852uschar *s; /* building log lines; */
853void *reset_point; /* released afterwards. */
854
e4bdf652
JH
855/* Log the delivery on the main log. We use an extensible string to build up
856the log line, and reset the store afterwards. Remote deliveries should always
857have a pointer to the host item that succeeded; local deliveries can have a
858pointer to a single host item in their host list, for use by the transport. */
859
0cbf2b82 860#ifndef DISABLE_EVENT
a7538db1 861 /* presume no successful remote delivery */
783b385f 862 lookup_dnssec_authenticated = NULL;
d68218c7
JH
863#endif
864
e4bdf652 865s = reset_point = store_get(size);
e4bdf652 866
6c6d6e48 867log_address = string_log_address(addr, LOGGING(all_parents), TRUE);
817d9f57
JH
868if (msg)
869 s = string_append(s, &size, &ptr, 3, host_and_ident(TRUE), US" ", log_address);
870else
871 {
872 s[ptr++] = logchar;
873 s = string_append(s, &size, &ptr, 2, US"> ", log_address);
874 }
e4bdf652 875
6c6d6e48 876if (LOGGING(sender_on_delivery) || msg)
3c8b3577 877 s = string_append(s, &size, &ptr, 3, US" F=<",
8c5d388a 878#ifdef SUPPORT_I18N
3c8b3577
JH
879 testflag(addr, af_utf8_downcvt)
880 ? string_address_utf8_to_alabel(sender_address, NULL)
881 :
882#endif
883 sender_address,
884 US">");
e4bdf652 885
afa6d3ad
JH
886if (*queue_name)
887 s = string_append(s, &size, &ptr, 2, US" Q=", queue_name);
888
e4bdf652 889#ifdef EXPERIMENTAL_SRS
d43cbe25
JH
890if(addr->prop.srs_sender)
891 s = string_append(s, &size, &ptr, 3, US" SRS=<", addr->prop.srs_sender, US">");
e4bdf652
JH
892#endif
893
894/* You might think that the return path must always be set for a successful
895delivery; indeed, I did for some time, until this statement crashed. The case
896when it is not set is for a delivery to /dev/null which is optimised by not
897being run at all. */
898
d6c82d7b 899if (used_return_path && LOGGING(return_path_on_delivery))
e4bdf652
JH
900 s = string_append(s, &size, &ptr, 3, US" P=<", used_return_path, US">");
901
817d9f57
JH
902if (msg)
903 s = string_append(s, &size, &ptr, 2, US" ", msg);
e4bdf652 904
817d9f57 905/* For a delivery from a system filter, there may not be a router */
d6c82d7b 906if (addr->router)
e4bdf652
JH
907 s = string_append(s, &size, &ptr, 2, US" R=", addr->router->name);
908
909s = string_append(s, &size, &ptr, 2, US" T=", addr->transport->name);
910
6c6d6e48 911if (LOGGING(delivery_size))
e4bdf652
JH
912 s = string_append(s, &size, &ptr, 2, US" S=",
913 string_sprintf("%d", transport_count));
914
915/* Local delivery */
916
917if (addr->transport->info->local)
918 {
a7538db1 919 if (addr->host_list)
e4bdf652 920 s = string_append(s, &size, &ptr, 2, US" H=", addr->host_list->name);
ac881e27 921 s = d_log_interface(s, &size, &ptr);
d6c82d7b 922 if (addr->shadow_message)
c2f669a4 923 s = string_cat(s, &size, &ptr, addr->shadow_message);
e4bdf652
JH
924 }
925
926/* Remote delivery */
927
928else
929 {
783b385f 930 if (addr->host_used)
e4bdf652 931 {
67d81c10 932 s = d_hostlog(s, &size, &ptr, addr);
e4bdf652 933 if (continue_sequence > 1)
c2f669a4 934 s = string_catn(s, &size, &ptr, US"*", 1);
d68218c7 935
0cbf2b82 936#ifndef DISABLE_EVENT
a7538db1
JH
937 deliver_host_address = addr->host_used->address;
938 deliver_host_port = addr->host_used->port;
029f4192 939 deliver_host = addr->host_used->name;
783b385f
JH
940
941 /* DNS lookup status */
942 lookup_dnssec_authenticated = addr->host_used->dnssec==DS_YES ? US"yes"
943 : addr->host_used->dnssec==DS_NO ? US"no"
944 : NULL;
a7538db1 945#endif
e4bdf652
JH
946 }
947
a7538db1 948#ifdef SUPPORT_TLS
67d81c10 949 s = d_tlslog(s, &size, &ptr, addr);
a7538db1 950#endif
e4bdf652 951
018c60d7 952 if (addr->authenticator)
6f123593 953 {
018c60d7
JH
954 s = string_append(s, &size, &ptr, 2, US" A=", addr->authenticator);
955 if (addr->auth_id)
c8e2fc1e 956 {
018c60d7 957 s = string_append(s, &size, &ptr, 2, US":", addr->auth_id);
6c6d6e48 958 if (LOGGING(smtp_mailauth) && addr->auth_sndr)
018c60d7 959 s = string_append(s, &size, &ptr, 2, US":", addr->auth_sndr);
c8e2fc1e 960 }
6f123593
JH
961 }
962
a7538db1 963#ifndef DISABLE_PRDR
fd98a5c6
JH
964 if (addr->flags & af_prdr_used)
965 s = string_append(s, &size, &ptr, 1, US" PRDR");
a7538db1 966#endif
76f44207
WB
967 }
968
969/* confirmation message (SMTP (host_used) and LMTP (driver_name)) */
fd98a5c6 970
d6c82d7b
JH
971if ( LOGGING(smtp_confirmation)
972 && addr->message
973 && (addr->host_used || Ustrcmp(addr->transport->driver_name, "lmtp") == 0)
974 )
76f44207 975 {
b980ed83 976 unsigned i;
1c5b1499 977 unsigned lim = big_buffer_size < 1024 ? big_buffer_size : 1024;
76f44207
WB
978 uschar *p = big_buffer;
979 uschar *ss = addr->message;
980 *p++ = '\"';
b980ed83 981 for (i = 0; i < lim && ss[i] != 0; i++) /* limit logged amount */
e4bdf652 982 {
27520a68 983 if (ss[i] == '\"' || ss[i] == '\\') *p++ = '\\'; /* quote \ and " */
76f44207 984 *p++ = ss[i];
e4bdf652 985 }
76f44207
WB
986 *p++ = '\"';
987 *p = 0;
988 s = string_append(s, &size, &ptr, 2, US" C=", big_buffer);
e4bdf652
JH
989 }
990
991/* Time on queue and actual time taken to deliver */
992
6c6d6e48 993if (LOGGING(queue_time))
e4bdf652 994 s = string_append(s, &size, &ptr, 2, US" QT=",
19050083 995 readconf_printtime( (int) ((long)time(NULL) - (long)received_time)) );
e4bdf652 996
6c6d6e48 997if (LOGGING(deliver_time))
e4bdf652
JH
998 s = string_append(s, &size, &ptr, 2, US" DT=",
999 readconf_printtime(addr->more_errno));
e4bdf652
JH
1000
1001/* string_cat() always leaves room for the terminator. Release the
1002store we used to build the line after writing it. */
1003
1004s[ptr] = 0;
817d9f57 1005log_write(0, flags, "%s", s);
d68218c7 1006
0cbf2b82 1007#ifndef DISABLE_EVENT
774ef2d7 1008if (!msg) msg_event_raise(US"msg:delivery", addr);
d68218c7 1009#endif
14a465c3 1010
e4bdf652
JH
1011store_reset(reset_point);
1012return;
1013}
1014
1015
1016
059ec3d9
PH
1017/*************************************************
1018* Actions at the end of handling an address *
1019*************************************************/
1020
1021/* This is a function for processing a single address when all that can be done
1022with it has been done.
1023
1024Arguments:
1025 addr points to the address block
1026 result the result of the delivery attempt
1027 logflags flags for log_write() (LOG_MAIN and/or LOG_PANIC)
1028 driver_type indicates which type of driver (transport, or router) was last
1029 to process the address
1030 logchar '=' or '-' for use when logging deliveries with => or ->
1031
1032Returns: nothing
1033*/
1034
1035static void
1036post_process_one(address_item *addr, int result, int logflags, int driver_type,
1037 int logchar)
1038{
1039uschar *now = tod_stamp(tod_log);
1040uschar *driver_kind = NULL;
1041uschar *driver_name = NULL;
1042uschar *log_address;
1043
1044int size = 256; /* Used for a temporary, */
1045int ptr = 0; /* expanding buffer, for */
1046uschar *s; /* building log lines; */
1047void *reset_point; /* released afterwards. */
1048
059ec3d9
PH
1049DEBUG(D_deliver) debug_printf("post-process %s (%d)\n", addr->address, result);
1050
1051/* Set up driver kind and name for logging. Disable logging if the router or
1052transport has disabled it. */
1053
1054if (driver_type == DTYPE_TRANSPORT)
1055 {
d6c82d7b 1056 if (addr->transport)
059ec3d9
PH
1057 {
1058 driver_name = addr->transport->name;
1059 driver_kind = US" transport";
1060 disable_logging = addr->transport->disable_logging;
1061 }
1062 else driver_kind = US"transporting";
1063 }
1064else if (driver_type == DTYPE_ROUTER)
1065 {
d6c82d7b 1066 if (addr->router)
059ec3d9
PH
1067 {
1068 driver_name = addr->router->name;
1069 driver_kind = US" router";
1070 disable_logging = addr->router->disable_logging;
1071 }
1072 else driver_kind = US"routing";
1073 }
1074
1075/* If there's an error message set, ensure that it contains only printing
1076characters - it should, but occasionally things slip in and this at least
49c2d5ea
PH
1077stops the log format from getting wrecked. We also scan the message for an LDAP
1078expansion item that has a password setting, and flatten the password. This is a
1079fudge, but I don't know a cleaner way of doing this. (If the item is badly
1080malformed, it won't ever have gone near LDAP.) */
059ec3d9 1081
d6c82d7b 1082if (addr->message)
49c2d5ea 1083 {
55414b25 1084 const uschar * s = string_printing(addr->message);
f42deca9
JH
1085
1086 /* deconst cast ok as string_printing known to have alloc'n'copied */
1087 addr->message = expand_hide_passwords(US s);
49c2d5ea 1088 }
059ec3d9
PH
1089
1090/* If we used a transport that has one of the "return_output" options set, and
1091if it did in fact generate some output, then for return_output we treat the
1092message as failed if it was not already set that way, so that the output gets
1093returned to the sender, provided there is a sender to send it to. For
1094return_fail_output, do this only if the delivery failed. Otherwise we just
1095unlink the file, and remove the name so that if the delivery failed, we don't
1096try to send back an empty or unwanted file. The log_output options operate only
1097on a non-empty file.
1098
1099In any case, we close the message file, because we cannot afford to leave a
1100file-descriptor for one address while processing (maybe very many) others. */
1101
d6c82d7b 1102if (addr->return_file >= 0 && addr->return_filename)
059ec3d9
PH
1103 {
1104 BOOL return_output = FALSE;
1105 struct stat statbuf;
54fc8428 1106 (void)EXIMfsync(addr->return_file);
059ec3d9
PH
1107
1108 /* If there is no output, do nothing. */
1109
1110 if (fstat(addr->return_file, &statbuf) == 0 && statbuf.st_size > 0)
1111 {
1112 transport_instance *tb = addr->transport;
1113
1114 /* Handle logging options */
1115
d6c82d7b
JH
1116 if ( tb->log_output
1117 || result == FAIL && tb->log_fail_output
1118 || result == DEFER && tb->log_defer_output
1119 )
059ec3d9
PH
1120 {
1121 uschar *s;
1122 FILE *f = Ufopen(addr->return_filename, "rb");
d6c82d7b 1123 if (!f)
059ec3d9
PH
1124 log_write(0, LOG_MAIN|LOG_PANIC, "failed to open %s to log output "
1125 "from %s transport: %s", addr->return_filename, tb->name,
1126 strerror(errno));
1127 else
d6c82d7b 1128 if ((s = US Ufgets(big_buffer, big_buffer_size, f)))
059ec3d9
PH
1129 {
1130 uschar *p = big_buffer + Ustrlen(big_buffer);
55414b25 1131 const uschar * sp;
059ec3d9
PH
1132 while (p > big_buffer && isspace(p[-1])) p--;
1133 *p = 0;
55414b25 1134 sp = string_printing(big_buffer);
059ec3d9 1135 log_write(0, LOG_MAIN, "<%s>: %s transport output: %s",
55414b25 1136 addr->address, tb->name, sp);
059ec3d9 1137 }
f1e894f3 1138 (void)fclose(f);
059ec3d9
PH
1139 }
1140
1141 /* Handle returning options, but only if there is an address to return
1142 the text to. */
1143
d6c82d7b 1144 if (sender_address[0] != 0 || addr->prop.errors_address)
059ec3d9
PH
1145 if (tb->return_output)
1146 {
1147 addr->transport_return = result = FAIL;
d6c82d7b 1148 if (addr->basic_errno == 0 && !addr->message)
059ec3d9
PH
1149 addr->message = US"return message generated";
1150 return_output = TRUE;
1151 }
1152 else
1153 if (tb->return_fail_output && result == FAIL) return_output = TRUE;
059ec3d9
PH
1154 }
1155
1156 /* Get rid of the file unless it might be returned, but close it in
1157 all cases. */
1158
1159 if (!return_output)
1160 {
1161 Uunlink(addr->return_filename);
1162 addr->return_filename = NULL;
1163 addr->return_file = -1;
1164 }
1165
f1e894f3 1166 (void)close(addr->return_file);
059ec3d9
PH
1167 }
1168
9d1c15ef 1169/* The success case happens only after delivery by a transport. */
059ec3d9
PH
1170
1171if (result == OK)
1172 {
1173 addr->next = addr_succeed;
1174 addr_succeed = addr;
1175
1176 /* Call address_done() to ensure that we don't deliver to this address again,
1177 and write appropriate things to the message log. If it is a child address, we
1178 call child_done() to scan the ancestors and mark them complete if this is the
1179 last child to complete. */
1180
1181 address_done(addr, now);
1182 DEBUG(D_deliver) debug_printf("%s delivered\n", addr->address);
1183
d6c82d7b 1184 if (!addr->parent)
059ec3d9
PH
1185 deliver_msglog("%s %s: %s%s succeeded\n", now, addr->address,
1186 driver_name, driver_kind);
059ec3d9
PH
1187 else
1188 {
1189 deliver_msglog("%s %s <%s>: %s%s succeeded\n", now, addr->address,
1190 addr->parent->address, driver_name, driver_kind);
1191 child_done(addr, now);
1192 }
1193
774ef2d7 1194 /* Certificates for logging (via events) */
a7538db1 1195#ifdef SUPPORT_TLS
9d1c15ef
JH
1196 tls_out.ourcert = addr->ourcert;
1197 addr->ourcert = NULL;
1198 tls_out.peercert = addr->peercert;
1199 addr->peercert = NULL;
018058b2 1200
018058b2
JH
1201 tls_out.cipher = addr->cipher;
1202 tls_out.peerdn = addr->peerdn;
1203 tls_out.ocsp = addr->ocsp;
83b27293
JH
1204# ifdef EXPERIMENTAL_DANE
1205 tls_out.dane_verified = testflag(addr, af_dane_verified);
1206# endif
a7538db1 1207#endif
9d1c15ef 1208
817d9f57 1209 delivery_log(LOG_MAIN, addr, logchar, NULL);
9d1c15ef 1210
a7538db1 1211#ifdef SUPPORT_TLS
790fbb71
JH
1212 tls_free_cert(&tls_out.ourcert);
1213 tls_free_cert(&tls_out.peercert);
018058b2
JH
1214 tls_out.cipher = NULL;
1215 tls_out.peerdn = NULL;
1216 tls_out.ocsp = OCSP_NOT_REQ;
83b27293
JH
1217# ifdef EXPERIMENTAL_DANE
1218 tls_out.dane_verified = FALSE;
1219# endif
a7538db1 1220#endif
059ec3d9
PH
1221 }
1222
1223
1224/* Soft failure, or local delivery process failed; freezing may be
1225requested. */
1226
1227else if (result == DEFER || result == PANIC)
1228 {
1229 if (result == PANIC) logflags |= LOG_PANIC;
1230
1231 /* This puts them on the chain in reverse order. Do not change this, because
1232 the code for handling retries assumes that the one with the retry
1233 information is last. */
1234
1235 addr->next = addr_defer;
1236 addr_defer = addr;
1237
1238 /* The only currently implemented special action is to freeze the
1239 message. Logging of this is done later, just before the -H file is
1240 updated. */
1241
1242 if (addr->special_action == SPECIAL_FREEZE)
1243 {
1244 deliver_freeze = TRUE;
1245 deliver_frozen_at = time(NULL);
1246 update_spool = TRUE;
1247 }
1248
1249 /* If doing a 2-stage queue run, we skip writing to either the message
1250 log or the main log for SMTP defers. */
1251
1252 if (!queue_2stage || addr->basic_errno != 0)
1253 {
1254 uschar ss[32];
1255
1256 /* For errors of the type "retry time not reached" (also remotes skipped
1257 on queue run), logging is controlled by L_retry_defer. Note that this kind
1258 of error number is negative, and all the retry ones are less than any
1259 others. */
1260
d6c82d7b
JH
1261 unsigned int use_log_selector = addr->basic_errno <= ERRNO_RETRY_BASE
1262 ? L_retry_defer : 0;
059ec3d9
PH
1263
1264 /* Build up the line that is used for both the message log and the main
1265 log. */
1266
1267 s = reset_point = store_get(size);
e4bdf652
JH
1268
1269 /* Create the address string for logging. Must not do this earlier, because
1270 an OK result may be changed to FAIL when a pipe returns text. */
1271
6c6d6e48 1272 log_address = string_log_address(addr, LOGGING(all_parents), result == OK);
e4bdf652 1273
c2f669a4 1274 s = string_cat(s, &size, &ptr, log_address);
059ec3d9 1275
afa6d3ad
JH
1276 if (*queue_name)
1277 s = string_append(s, &size, &ptr, 2, US" Q=", queue_name);
1278
059ec3d9
PH
1279 /* Either driver_name contains something and driver_kind contains
1280 " router" or " transport" (note the leading space), or driver_name is
1281 a null string and driver_kind contains "routing" without the leading
1282 space, if all routing has been deferred. When a domain has been held,
1283 so nothing has been done at all, both variables contain null strings. */
1284
d6c82d7b 1285 if (driver_name)
059ec3d9 1286 {
d6c82d7b 1287 if (driver_kind[1] == 't' && addr->router)
059ec3d9
PH
1288 s = string_append(s, &size, &ptr, 2, US" R=", addr->router->name);
1289 Ustrcpy(ss, " ?=");
1290 ss[1] = toupper(driver_kind[1]);
1291 s = string_append(s, &size, &ptr, 2, ss, driver_name);
1292 }
d6c82d7b
JH
1293 else if (driver_kind)
1294 s = string_append(s, &size, &ptr, 2, US" ", driver_kind);
059ec3d9
PH
1295
1296 sprintf(CS ss, " defer (%d)", addr->basic_errno);
c2f669a4 1297 s = string_cat(s, &size, &ptr, ss);
059ec3d9
PH
1298
1299 if (addr->basic_errno > 0)
1300 s = string_append(s, &size, &ptr, 2, US": ",
1301 US strerror(addr->basic_errno));
1302
c562fd30 1303 if (addr->host_used)
1a47b633 1304 {
c562fd30
JH
1305 s = string_append(s, &size, &ptr, 5,
1306 US" H=", addr->host_used->name,
1307 US" [", addr->host_used->address, US"]");
1a47b633
JH
1308 if (LOGGING(outgoing_port))
1309 {
1310 int port = addr->host_used->port;
1311 s = string_append(s, &size, &ptr, 2,
1312 US":", port == PORT_NONE ? US"25" : string_sprintf("%d", port));
1313 }
1314 }
c562fd30 1315
d6c82d7b 1316 if (addr->message)
059ec3d9
PH
1317 s = string_append(s, &size, &ptr, 2, US": ", addr->message);
1318
1319 s[ptr] = 0;
1320
1321 /* Log the deferment in the message log, but don't clutter it
1322 up with retry-time defers after the first delivery attempt. */
1323
1324 if (deliver_firsttime || addr->basic_errno > ERRNO_RETRY_BASE)
1325 deliver_msglog("%s %s\n", now, s);
1326
1327 /* Write the main log and reset the store */
1328
1329 log_write(use_log_selector, logflags, "== %s", s);
1330 store_reset(reset_point);
1331 }
1332 }
1333
1334
1335/* Hard failure. If there is an address to which an error message can be sent,
1336put this address on the failed list. If not, put it on the deferred list and
1337freeze the mail message for human attention. The latter action can also be
1338explicitly requested by a router or transport. */
1339
1340else
1341 {
1342 /* If this is a delivery error, or a message for which no replies are
1343 wanted, and the message's age is greater than ignore_bounce_errors_after,
1344 force the af_ignore_error flag. This will cause the address to be discarded
1345 later (with a log entry). */
1346
1347 if (sender_address[0] == 0 && message_age >= ignore_bounce_errors_after)
1348 setflag(addr, af_ignore_error);
1349
1350 /* Freeze the message if requested, or if this is a bounce message (or other
652e1b65
PH
1351 message with null sender) and this address does not have its own errors
1352 address. However, don't freeze if errors are being ignored. The actual code
1353 to ignore occurs later, instead of sending a message. Logging of freezing
1354 occurs later, just before writing the -H file. */
059ec3d9 1355
d6c82d7b
JH
1356 if ( !testflag(addr, af_ignore_error)
1357 && ( addr->special_action == SPECIAL_FREEZE
1358 || (sender_address[0] == 0 && !addr->prop.errors_address)
1359 ) )
059ec3d9 1360 {
d6c82d7b
JH
1361 frozen_info = addr->special_action == SPECIAL_FREEZE
1362 ? US""
1363 : sender_local && !local_error_message
1364 ? US" (message created with -f <>)"
1365 : US" (delivery error message)";
059ec3d9
PH
1366 deliver_freeze = TRUE;
1367 deliver_frozen_at = time(NULL);
1368 update_spool = TRUE;
1369
1370 /* The address is put on the defer rather than the failed queue, because
1371 the message is being retained. */
1372
1373 addr->next = addr_defer;
1374 addr_defer = addr;
1375 }
1376
1377 /* Don't put the address on the nonrecipients tree yet; wait until an
1378 error message has been successfully sent. */
1379
1380 else
1381 {
1382 addr->next = addr_failed;
1383 addr_failed = addr;
1384 }
1385
1386 /* Build up the log line for the message and main logs */
1387
1388 s = reset_point = store_get(size);
e4bdf652
JH
1389
1390 /* Create the address string for logging. Must not do this earlier, because
1391 an OK result may be changed to FAIL when a pipe returns text. */
1392
6c6d6e48 1393 log_address = string_log_address(addr, LOGGING(all_parents), result == OK);
e4bdf652 1394
c2f669a4 1395 s = string_cat(s, &size, &ptr, log_address);
059ec3d9 1396
6c6d6e48 1397 if (LOGGING(sender_on_delivery))
059ec3d9
PH
1398 s = string_append(s, &size, &ptr, 3, US" F=<", sender_address, US">");
1399
afa6d3ad
JH
1400 if (*queue_name)
1401 s = string_append(s, &size, &ptr, 2, US" Q=", queue_name);
1402
059ec3d9
PH
1403 /* Return path may not be set if no delivery actually happened */
1404
d6c82d7b 1405 if (used_return_path && LOGGING(return_path_on_delivery))
059ec3d9 1406 s = string_append(s, &size, &ptr, 3, US" P=<", used_return_path, US">");
059ec3d9 1407
d6c82d7b 1408 if (addr->router)
059ec3d9 1409 s = string_append(s, &size, &ptr, 2, US" R=", addr->router->name);
d6c82d7b 1410 if (addr->transport)
059ec3d9
PH
1411 s = string_append(s, &size, &ptr, 2, US" T=", addr->transport->name);
1412
d6c82d7b 1413 if (addr->host_used)
67d81c10
JH
1414 s = d_hostlog(s, &size, &ptr, addr);
1415
a7538db1 1416#ifdef SUPPORT_TLS
67d81c10 1417 s = d_tlslog(s, &size, &ptr, addr);
a7538db1 1418#endif
059ec3d9
PH
1419
1420 if (addr->basic_errno > 0)
1421 s = string_append(s, &size, &ptr, 2, US": ",
1422 US strerror(addr->basic_errno));
1423
d6c82d7b 1424 if (addr->message)
059ec3d9
PH
1425 s = string_append(s, &size, &ptr, 2, US": ", addr->message);
1426
1427 s[ptr] = 0;
1428
1429 /* Do the logging. For the message log, "routing failed" for those cases,
1430 just to make it clearer. */
1431
d6c82d7b 1432 if (driver_name)
059ec3d9 1433 deliver_msglog("%s %s\n", now, s);
d6c82d7b
JH
1434 else
1435 deliver_msglog("%s %s failed for %s\n", now, driver_kind, s);
059ec3d9
PH
1436
1437 log_write(0, LOG_MAIN, "** %s", s);
14a465c3 1438
0cbf2b82 1439#ifndef DISABLE_EVENT
774ef2d7 1440 msg_event_raise(US"msg:fail:delivery", addr);
14a465c3
JH
1441#endif
1442
059ec3d9
PH
1443 store_reset(reset_point);
1444 }
1445
1446/* Ensure logging is turned on again in all cases */
1447
1448disable_logging = FALSE;
1449}
1450
1451
1452
1453
1454/*************************************************
1455* Address-independent error *
1456*************************************************/
1457
1458/* This function is called when there's an error that is not dependent on a
1459particular address, such as an expansion string failure. It puts the error into
1460all the addresses in a batch, logs the incident on the main and panic logs, and
1461clears the expansions. It is mostly called from local_deliver(), but can be
1462called for a remote delivery via findugid().
1463
1464Arguments:
1465 logit TRUE if (MAIN+PANIC) logging required
1466 addr the first of the chain of addresses
1467 code the error code
1468 format format string for error message, or NULL if already set in addr
1469 ... arguments for the format
1470
1471Returns: nothing
1472*/
1473
1474static void
1475common_error(BOOL logit, address_item *addr, int code, uschar *format, ...)
1476{
1477address_item *addr2;
1478addr->basic_errno = code;
1479
d6c82d7b 1480if (format)
059ec3d9
PH
1481 {
1482 va_list ap;
1483 uschar buffer[512];
1484 va_start(ap, format);
1485 if (!string_vformat(buffer, sizeof(buffer), CS format, ap))
1486 log_write(0, LOG_MAIN|LOG_PANIC_DIE,
81f91683 1487 "common_error expansion was longer than " SIZE_T_FMT, sizeof(buffer));
059ec3d9
PH
1488 va_end(ap);
1489 addr->message = string_copy(buffer);
1490 }
1491
d6c82d7b 1492for (addr2 = addr->next; addr2; addr2 = addr2->next)
059ec3d9
PH
1493 {
1494 addr2->basic_errno = code;
1495 addr2->message = addr->message;
1496 }
1497
1498if (logit) log_write(0, LOG_MAIN|LOG_PANIC, "%s", addr->message);
1499deliver_set_expansions(NULL);
1500}
1501
1502
1503
1504
1505/*************************************************
1506* Check a "never users" list *
1507*************************************************/
1508
1509/* This function is called to check whether a uid is on one of the two "never
1510users" lists.
1511
1512Arguments:
1513 uid the uid to be checked
1514 nusers the list to be scanned; the first item in the list is the count
1515
1516Returns: TRUE if the uid is on the list
1517*/
1518
1519static BOOL
1520check_never_users(uid_t uid, uid_t *nusers)
1521{
1522int i;
d6c82d7b 1523if (!nusers) return FALSE;
059ec3d9
PH
1524for (i = 1; i <= (int)(nusers[0]); i++) if (nusers[i] == uid) return TRUE;
1525return FALSE;
1526}
1527
1528
1529
1530/*************************************************
1531* Find uid and gid for a transport *
1532*************************************************/
1533
1534/* This function is called for both local and remote deliveries, to find the
1535uid/gid under which to run the delivery. The values are taken preferentially
1536from the transport (either explicit or deliver_as_creator), then from the
1537address (i.e. the router), and if nothing is set, the exim uid/gid are used. If
1538the resulting uid is on the "never_users" or the "fixed_never_users" list, a
1539panic error is logged, and the function fails (which normally leads to delivery
1540deferral).
1541
1542Arguments:
1543 addr the address (possibly a chain)
1544 tp the transport
1545 uidp pointer to uid field
1546 gidp pointer to gid field
1547 igfp pointer to the use_initgroups field
1548
1549Returns: FALSE if failed - error has been set in address(es)
1550*/
1551
1552static BOOL
1553findugid(address_item *addr, transport_instance *tp, uid_t *uidp, gid_t *gidp,
1554 BOOL *igfp)
1555{
d6c82d7b 1556uschar *nuname;
059ec3d9
PH
1557BOOL gid_set = FALSE;
1558
1559/* Default initgroups flag comes from the transport */
1560
1561*igfp = tp->initgroups;
1562
1563/* First see if there's a gid on the transport, either fixed or expandable.
1564The expanding function always logs failure itself. */
1565
1566if (tp->gid_set)
1567 {
1568 *gidp = tp->gid;
1569 gid_set = TRUE;
1570 }
d6c82d7b 1571else if (tp->expand_gid)
059ec3d9 1572 {
d6c82d7b
JH
1573 if (!route_find_expanded_group(tp->expand_gid, tp->name, US"transport", gidp,
1574 &(addr->message)))
059ec3d9
PH
1575 {
1576 common_error(FALSE, addr, ERRNO_GIDFAIL, NULL);
1577 return FALSE;
1578 }
d6c82d7b 1579 gid_set = TRUE;
059ec3d9
PH
1580 }
1581
911f6fde
PH
1582/* If the transport did not set a group, see if the router did. */
1583
1584if (!gid_set && testflag(addr, af_gid_set))
1585 {
1586 *gidp = addr->gid;
1587 gid_set = TRUE;
1588 }
1589
059ec3d9
PH
1590/* Pick up a uid from the transport if one is set. */
1591
1592if (tp->uid_set) *uidp = tp->uid;
1593
1594/* Otherwise, try for an expandable uid field. If it ends up as a numeric id,
1595it does not provide a passwd value from which a gid can be taken. */
1596
d6c82d7b 1597else if (tp->expand_uid)
059ec3d9
PH
1598 {
1599 struct passwd *pw;
1600 if (!route_find_expanded_user(tp->expand_uid, tp->name, US"transport", &pw,
1601 uidp, &(addr->message)))
1602 {
1603 common_error(FALSE, addr, ERRNO_UIDFAIL, NULL);
1604 return FALSE;
1605 }
d6c82d7b 1606 if (!gid_set && pw)
059ec3d9
PH
1607 {
1608 *gidp = pw->pw_gid;
1609 gid_set = TRUE;
1610 }
1611 }
1612
1613/* If the transport doesn't set the uid, test the deliver_as_creator flag. */
1614
1615else if (tp->deliver_as_creator)
1616 {
1617 *uidp = originator_uid;
1618 if (!gid_set)
1619 {
1620 *gidp = originator_gid;
1621 gid_set = TRUE;
1622 }
1623 }
1624
911f6fde
PH
1625/* Otherwise see if the address specifies the uid and if so, take it and its
1626initgroups flag. */
059ec3d9
PH
1627
1628else if (testflag(addr, af_uid_set))
1629 {
1630 *uidp = addr->uid;
1631 *igfp = testflag(addr, af_initgroups);
059ec3d9
PH
1632 }
1633
1634/* Nothing has specified the uid - default to the Exim user, and group if the
1635gid is not set. */
1636
1637else
1638 {
1639 *uidp = exim_uid;
1640 if (!gid_set)
1641 {
1642 *gidp = exim_gid;
1643 gid_set = TRUE;
1644 }
1645 }
1646
911f6fde
PH
1647/* If no gid is set, it is a disaster. We default to the Exim gid only if
1648defaulting to the Exim uid. In other words, if the configuration has specified
1649a uid, it must also provide a gid. */
059ec3d9
PH
1650
1651if (!gid_set)
1652 {
1653 common_error(TRUE, addr, ERRNO_GIDFAIL, US"User set without group for "
1654 "%s transport", tp->name);
1655 return FALSE;
1656 }
1657
1658/* Check that the uid is not on the lists of banned uids that may not be used
1659for delivery processes. */
1660
d6c82d7b
JH
1661nuname = check_never_users(*uidp, never_users)
1662 ? US"never_users"
1663 : check_never_users(*uidp, fixed_never_users)
1664 ? US"fixed_never_users"
1665 : NULL;
1666if (nuname)
059ec3d9
PH
1667 {
1668 common_error(TRUE, addr, ERRNO_UIDFAIL, US"User %ld set for %s transport "
1669 "is on the %s list", (long int)(*uidp), tp->name, nuname);
1670 return FALSE;
1671 }
1672
1673/* All is well */
1674
1675return TRUE;
1676}
1677
1678
1679
1680
1681/*************************************************
1682* Check the size of a message for a transport *
1683*************************************************/
1684
1685/* Checks that the message isn't too big for the selected transport.
1686This is called only when it is known that the limit is set.
1687
1688Arguments:
1689 tp the transport
1690 addr the (first) address being delivered
1691
1692Returns: OK
1693 DEFER expansion failed or did not yield an integer
1694 FAIL message too big
1695*/
1696
1697int
1698check_message_size(transport_instance *tp, address_item *addr)
1699{
1700int rc = OK;
1701int size_limit;
1702
1703deliver_set_expansions(addr);
d45b1de8 1704size_limit = expand_string_integer(tp->message_size_limit, TRUE);
059ec3d9
PH
1705deliver_set_expansions(NULL);
1706
d6c82d7b 1707if (expand_string_message)
059ec3d9
PH
1708 {
1709 rc = DEFER;
d6c82d7b
JH
1710 addr->message = size_limit == -1
1711 ? string_sprintf("failed to expand message_size_limit "
1712 "in %s transport: %s", tp->name, expand_string_message)
1713 : string_sprintf("invalid message_size_limit "
059ec3d9
PH
1714 "in %s transport: %s", tp->name, expand_string_message);
1715 }
1716else if (size_limit > 0 && message_size > size_limit)
1717 {
1718 rc = FAIL;
1719 addr->message =
1720 string_sprintf("message is too big (transport limit = %d)",
1721 size_limit);
1722 }
1723
1724return rc;
1725}
1726
1727
1728
1729/*************************************************
1730* Transport-time check for a previous delivery *
1731*************************************************/
1732
1733/* Check that this base address hasn't previously been delivered to its routed
c2c19e9d
PH
1734transport. If it has been delivered, mark it done. The check is necessary at
1735delivery time in order to handle homonymic addresses correctly in cases where
1736the pattern of redirection changes between delivery attempts (so the unique
1737fields change). Non-homonymic previous delivery is detected earlier, at routing
1738time (which saves unnecessary routing).
1739
1740Arguments:
1741 addr the address item
1742 testing TRUE if testing wanted only, without side effects
059ec3d9 1743
059ec3d9
PH
1744Returns: TRUE if previously delivered by the transport
1745*/
1746
1747static BOOL
c2c19e9d 1748previously_transported(address_item *addr, BOOL testing)
059ec3d9
PH
1749{
1750(void)string_format(big_buffer, big_buffer_size, "%s/%s",
1751 addr->unique + (testflag(addr, af_homonym)? 3:0), addr->transport->name);
1752
1753if (tree_search(tree_nonrecipients, big_buffer) != 0)
1754 {
1755 DEBUG(D_deliver|D_route|D_transport)
1756 debug_printf("%s was previously delivered (%s transport): discarded\n",
1757 addr->address, addr->transport->name);
c2c19e9d 1758 if (!testing) child_done(addr, tod_stamp(tod_log));
059ec3d9
PH
1759 return TRUE;
1760 }
1761
1762return FALSE;
1763}
1764
1765
1766
064a94c9
PH
1767/******************************************************
1768* Check for a given header in a header string *
1769******************************************************/
1770
1771/* This function is used when generating quota warnings. The configuration may
1772specify any header lines it likes in quota_warn_message. If certain of them are
1773missing, defaults are inserted, so we need to be able to test for the presence
1774of a given header.
1775
1776Arguments:
1777 hdr the required header name
1778 hstring the header string
1779
1780Returns: TRUE the header is in the string
1781 FALSE the header is not in the string
1782*/
1783
1784static BOOL
1785contains_header(uschar *hdr, uschar *hstring)
1786{
1787int len = Ustrlen(hdr);
1788uschar *p = hstring;
1789while (*p != 0)
1790 {
1791 if (strncmpic(p, hdr, len) == 0)
1792 {
1793 p += len;
1794 while (*p == ' ' || *p == '\t') p++;
1795 if (*p == ':') return TRUE;
1796 }
1797 while (*p != 0 && *p != '\n') p++;
1798 if (*p == '\n') p++;
1799 }
1800return FALSE;
1801}
1802
1803
1804
059ec3d9
PH
1805
1806/*************************************************
1807* Perform a local delivery *
1808*************************************************/
1809
1810/* Each local delivery is performed in a separate process which sets its
1811uid and gid as specified. This is a safer way than simply changing and
1812restoring using seteuid(); there is a body of opinion that seteuid() cannot be
1813used safely. From release 4, Exim no longer makes any use of it. Besides, not
1814all systems have seteuid().
1815
1816If the uid/gid are specified in the transport_instance, they are used; the
1817transport initialization must ensure that either both or neither are set.
1818Otherwise, the values associated with the address are used. If neither are set,
1819it is a configuration error.
1820
1821The transport or the address may specify a home directory (transport over-
1822rides), and if they do, this is set as $home. If neither have set a working
1823directory, this value is used for that as well. Otherwise $home is left unset
1824and the cwd is set to "/" - a directory that should be accessible to all users.
1825
1826Using a separate process makes it more complicated to get error information
1827back. We use a pipe to pass the return code and also an error code and error
1828text string back to the parent process.
1829
1830Arguments:
1831 addr points to an address block for this delivery; for "normal" local
1832 deliveries this is the only address to be delivered, but for
1833 pseudo-remote deliveries (e.g. by batch SMTP to a file or pipe)
1834 a number of addresses can be handled simultaneously, and in this
1835 case addr will point to a chain of addresses with the same
1836 characteristics.
1837
1838 shadowing TRUE if running a shadow transport; this causes output from pipes
1839 to be ignored.
1840
1841Returns: nothing
1842*/
1843
1844static void
1845deliver_local(address_item *addr, BOOL shadowing)
1846{
1847BOOL use_initgroups;
1848uid_t uid;
1849gid_t gid;
1850int status, len, rc;
1851int pfd[2];
1852pid_t pid;
1853uschar *working_directory;
1854address_item *addr2;
1855transport_instance *tp = addr->transport;
1856
1857/* Set up the return path from the errors or sender address. If the transport
1858has its own return path setting, expand it and replace the existing value. */
1859
d6c82d7b 1860if(addr->prop.errors_address)
d43cbe25 1861 return_path = addr->prop.errors_address;
384152a6 1862#ifdef EXPERIMENTAL_SRS
d6c82d7b 1863else if (addr->prop.srs_sender)
d43cbe25 1864 return_path = addr->prop.srs_sender;
384152a6
TK
1865#endif
1866else
1867 return_path = sender_address;
059ec3d9 1868
d6c82d7b 1869if (tp->return_path)
059ec3d9
PH
1870 {
1871 uschar *new_return_path = expand_string(tp->return_path);
d6c82d7b 1872 if (!new_return_path)
059ec3d9
PH
1873 {
1874 if (!expand_string_forcedfail)
1875 {
1876 common_error(TRUE, addr, ERRNO_EXPANDFAIL,
1877 US"Failed to expand return path \"%s\" in %s transport: %s",
1878 tp->return_path, tp->name, expand_string_message);
1879 return;
1880 }
1881 }
1882 else return_path = new_return_path;
1883 }
1884
1885/* For local deliveries, one at a time, the value used for logging can just be
1886set directly, once and for all. */
1887
1888used_return_path = return_path;
1889
1890/* Sort out the uid, gid, and initgroups flag. If an error occurs, the message
1891gets put into the address(es), and the expansions are unset, so we can just
1892return. */
1893
1894if (!findugid(addr, tp, &uid, &gid, &use_initgroups)) return;
1895
5418e93b
PH
1896/* See if either the transport or the address specifies a home directory. A
1897home directory set in the address may already be expanded; a flag is set to
1898indicate that. In other cases we must expand it. */
059ec3d9 1899
d6c82d7b
JH
1900if ( (deliver_home = tp->home_dir) /* Set in transport, or */
1901 || ( (deliver_home = addr->home_dir) /* Set in address and */
1902 && !testflag(addr, af_home_expanded) /* not expanded */
1903 ) )
059ec3d9
PH
1904 {
1905 uschar *rawhome = deliver_home;
1906 deliver_home = NULL; /* in case it contains $home */
d6c82d7b 1907 if (!(deliver_home = expand_string(rawhome)))
059ec3d9
PH
1908 {
1909 common_error(TRUE, addr, ERRNO_EXPANDFAIL, US"home directory \"%s\" failed "
1910 "to expand for %s transport: %s", rawhome, tp->name,
1911 expand_string_message);
1912 return;
1913 }
1914 if (*deliver_home != '/')
1915 {
1916 common_error(TRUE, addr, ERRNO_NOTABSOLUTE, US"home directory path \"%s\" "
1917 "is not absolute for %s transport", deliver_home, tp->name);
1918 return;
1919 }
1920 }
1921
5418e93b
PH
1922/* See if either the transport or the address specifies a current directory,
1923and if so, expand it. If nothing is set, use the home directory, unless it is
1924also unset in which case use "/", which is assumed to be a directory to which
1925all users have access. It is necessary to be in a visible directory for some
1926operating systems when running pipes, as some commands (e.g. "rm" under Solaris
19272.5) require this. */
1928
d6c82d7b
JH
1929working_directory = tp->current_dir ? tp->current_dir : addr->current_dir;
1930if (working_directory)
059ec3d9
PH
1931 {
1932 uschar *raw = working_directory;
d6c82d7b 1933 if (!(working_directory = expand_string(raw)))
059ec3d9
PH
1934 {
1935 common_error(TRUE, addr, ERRNO_EXPANDFAIL, US"current directory \"%s\" "
1936 "failed to expand for %s transport: %s", raw, tp->name,
1937 expand_string_message);
1938 return;
1939 }
1940 if (*working_directory != '/')
1941 {
1942 common_error(TRUE, addr, ERRNO_NOTABSOLUTE, US"current directory path "
1943 "\"%s\" is not absolute for %s transport", working_directory, tp->name);
1944 return;
1945 }
1946 }
d6c82d7b 1947else working_directory = deliver_home ? deliver_home : US"/";
059ec3d9
PH
1948
1949/* If one of the return_output flags is set on the transport, create and open a
1950file in the message log directory for the transport to write its output onto.
1951This is mainly used by pipe transports. The file needs to be unique to the
1952address. This feature is not available for shadow transports. */
1953
d6c82d7b
JH
1954if ( !shadowing
1955 && ( tp->return_output || tp->return_fail_output
ec0eb1a3 1956 || tp->log_output || tp->log_fail_output || tp->log_defer_output
d6c82d7b 1957 ) )
059ec3d9 1958 {
41313d92
JH
1959 uschar * error;
1960
059ec3d9 1961 addr->return_filename =
41313d92
JH
1962 spool_fname(US"msglog", message_subdir, message_id,
1963 string_sprintf("-%d-%d", getpid(), return_count++));
1964
1965 if ((addr->return_file = open_msglog_file(addr->return_filename, 0400, &error)) < 0)
059ec3d9
PH
1966 {
1967 common_error(TRUE, addr, errno, US"Unable to %s file for %s transport "
1968 "to return message: %s", error, tp->name, strerror(errno));
1969 return;
1970 }
1971 }
1972
1973/* Create the pipe for inter-process communication. */
1974
1975if (pipe(pfd) != 0)
1976 {
1977 common_error(TRUE, addr, ERRNO_PIPEFAIL, US"Creation of pipe failed: %s",
1978 strerror(errno));
1979 return;
1980 }
1981
1982/* Now fork the process to do the real work in the subprocess, but first
1983ensure that all cached resources are freed so that the subprocess starts with
1984a clean slate and doesn't interfere with the parent process. */
1985
1986search_tidyup();
1987
1988if ((pid = fork()) == 0)
1989 {
1990 BOOL replicate = TRUE;
1991
1992 /* Prevent core dumps, as we don't want them in users' home directories.
1993 HP-UX doesn't have RLIMIT_CORE; I don't know how to do this in that
1994 system. Some experimental/developing systems (e.g. GNU/Hurd) may define
1995 RLIMIT_CORE but not support it in setrlimit(). For such systems, do not
a29e5231
PP
1996 complain if the error is "not supported".
1997
1998 There are two scenarios where changing the max limit has an effect. In one,
1999 the user is using a .forward and invoking a command of their choice via pipe;
2000 for these, we do need the max limit to be 0 unless the admin chooses to
2001 permit an increased limit. In the other, the command is invoked directly by
2002 the transport and is under administrator control, thus being able to raise
2003 the limit aids in debugging. So there's no general always-right answer.
2004
2005 Thus we inhibit core-dumps completely but let individual transports, while
2006 still root, re-raise the limits back up to aid debugging. We make the
2007 default be no core-dumps -- few enough people can use core dumps in
2008 diagnosis that it's reasonable to make them something that has to be explicitly requested.
2009 */
059ec3d9 2010
a7538db1 2011#ifdef RLIMIT_CORE
059ec3d9
PH
2012 struct rlimit rl;
2013 rl.rlim_cur = 0;
2014 rl.rlim_max = 0;
2015 if (setrlimit(RLIMIT_CORE, &rl) < 0)
2016 {
a7538db1 2017# ifdef SETRLIMIT_NOT_SUPPORTED
059ec3d9 2018 if (errno != ENOSYS && errno != ENOTSUP)
a7538db1 2019# endif
059ec3d9
PH
2020 log_write(0, LOG_MAIN|LOG_PANIC, "setrlimit(RLIMIT_CORE) failed: %s",
2021 strerror(errno));
2022 }
a7538db1 2023#endif
059ec3d9
PH
2024
2025 /* Reset the random number generator, so different processes don't all
2026 have the same sequence. */
2027
2028 random_seed = 0;
2029
2030 /* If the transport has a setup entry, call this first, while still
2031 privileged. (Appendfile uses this to expand quota, for example, while
2032 able to read private files.) */
2033
d6c82d7b 2034 if (addr->transport->setup)
929ba01c 2035 switch((addr->transport->setup)(addr->transport, addr, NULL, uid, gid,
059ec3d9
PH
2036 &(addr->message)))
2037 {
2038 case DEFER:
d6c82d7b
JH
2039 addr->transport_return = DEFER;
2040 goto PASS_BACK;
059ec3d9
PH
2041
2042 case FAIL:
d6c82d7b
JH
2043 addr->transport_return = PANIC;
2044 goto PASS_BACK;
059ec3d9 2045 }
059ec3d9
PH
2046
2047 /* Ignore SIGINT and SIGTERM during delivery. Also ignore SIGUSR1, as
2048 when the process becomes unprivileged, it won't be able to write to the
2049 process log. SIGHUP is ignored throughout exim, except when it is being
2050 run as a daemon. */
2051
2052 signal(SIGINT, SIG_IGN);
2053 signal(SIGTERM, SIG_IGN);
2054 signal(SIGUSR1, SIG_IGN);
2055
2056 /* Close the unwanted half of the pipe, and set close-on-exec for the other
2057 half - for transports that exec things (e.g. pipe). Then set the required
2058 gid/uid. */
2059
f1e894f3 2060 (void)close(pfd[pipe_read]);
ff790e47 2061 (void)fcntl(pfd[pipe_write], F_SETFD, fcntl(pfd[pipe_write], F_GETFD) |
059ec3d9
PH
2062 FD_CLOEXEC);
2063 exim_setugid(uid, gid, use_initgroups,
2064 string_sprintf("local delivery to %s <%s> transport=%s", addr->local_part,
2065 addr->address, addr->transport->name));
2066
2067 DEBUG(D_deliver)
2068 {
2069 address_item *batched;
2070 debug_printf(" home=%s current=%s\n", deliver_home, working_directory);
d6c82d7b 2071 for (batched = addr->next; batched; batched = batched->next)
059ec3d9
PH
2072 debug_printf("additional batched address: %s\n", batched->address);
2073 }
2074
2075 /* Set an appropriate working directory. */
2076
2077 if (Uchdir(working_directory) < 0)
2078 {
2079 addr->transport_return = DEFER;
2080 addr->basic_errno = errno;
2081 addr->message = string_sprintf("failed to chdir to %s", working_directory);
2082 }
2083
2084 /* If successful, call the transport */
2085
2086 else
2087 {
2088 BOOL ok = TRUE;
2089 set_process_info("delivering %s to %s using %s", message_id,
2090 addr->local_part, addr->transport->name);
2091
2a47f028
JH
2092 /* Setting this global in the subprocess means we need never clear it */
2093 transport_name = addr->transport->name;
2094
059ec3d9
PH
2095 /* If a transport filter has been specified, set up its argument list.
2096 Any errors will get put into the address, and FALSE yielded. */
2097
d6c82d7b 2098 if (addr->transport->filter_command)
059ec3d9
PH
2099 {
2100 ok = transport_set_up_command(&transport_filter_argv,
2101 addr->transport->filter_command,
2102 TRUE, PANIC, addr, US"transport filter", NULL);
2103 transport_filter_timeout = addr->transport->filter_timeout;
2104 }
2105 else transport_filter_argv = NULL;
2106
2107 if (ok)
2108 {
2109 debug_print_string(addr->transport->debug_string);
2110 replicate = !(addr->transport->info->code)(addr->transport, addr);
2111 }
2112 }
2113
2114 /* Pass the results back down the pipe. If necessary, first replicate the
2115 status in the top address to the others in the batch. The label is the
2116 subject of a goto when a call to the transport's setup function fails. We
2117 pass the pointer to the transport back in case it got changed as a result of
2118 file_format in appendfile. */
2119
2120 PASS_BACK:
2121
2122 if (replicate) replicate_status(addr);
d6c82d7b 2123 for (addr2 = addr; addr2; addr2 = addr2->next)
059ec3d9
PH
2124 {
2125 int i;
2126 int local_part_length = Ustrlen(addr2->local_part);
2127 uschar *s;
1ac6b2e7 2128 int ret;
059ec3d9 2129
d6c82d7b
JH
2130 if( (ret = write(pfd[pipe_write], &addr2->transport_return, sizeof(int))) != sizeof(int)
2131 || (ret = write(pfd[pipe_write], &transport_count, sizeof(transport_count))) != sizeof(transport_count)
2132 || (ret = write(pfd[pipe_write], &addr2->flags, sizeof(addr2->flags))) != sizeof(addr2->flags)
2133 || (ret = write(pfd[pipe_write], &addr2->basic_errno, sizeof(int))) != sizeof(int)
2134 || (ret = write(pfd[pipe_write], &addr2->more_errno, sizeof(int))) != sizeof(int)
2135 || (ret = write(pfd[pipe_write], &addr2->special_action, sizeof(int))) != sizeof(int)
2136 || (ret = write(pfd[pipe_write], &addr2->transport,
1ac6b2e7 2137 sizeof(transport_instance *))) != sizeof(transport_instance *)
059ec3d9
PH
2138
2139 /* For a file delivery, pass back the local part, in case the original
2140 was only part of the final delivery path. This gives more complete
2141 logging. */
2142
1ac6b2e7 2143 || (testflag(addr2, af_file)
d6c82d7b 2144 && ( (ret = write(pfd[pipe_write], &local_part_length, sizeof(int))) != sizeof(int)
1ac6b2e7
JH
2145 || (ret = write(pfd[pipe_write], addr2->local_part, local_part_length)) != local_part_length
2146 )
2147 )
2148 )
2149 log_write(0, LOG_MAIN|LOG_PANIC, "Failed writing transport results to pipe: %s\n",
2150 ret == -1 ? strerror(errno) : "short write");
059ec3d9
PH
2151
2152 /* Now any messages */
2153
2154 for (i = 0, s = addr2->message; i < 2; i++, s = addr2->user_message)
2155 {
d6c82d7b
JH
2156 int message_length = s ? Ustrlen(s) + 1 : 0;
2157 if( (ret = write(pfd[pipe_write], &message_length, sizeof(int))) != sizeof(int)
2158 || message_length > 0 && (ret = write(pfd[pipe_write], s, message_length)) != message_length
1ac6b2e7
JH
2159 )
2160 log_write(0, LOG_MAIN|LOG_PANIC, "Failed writing transport results to pipe: %s\n",
2161 ret == -1 ? strerror(errno) : "short write");
059ec3d9
PH
2162 }
2163 }
2164
2165 /* OK, this process is now done. Free any cached resources that it opened,
2166 and close the pipe we were writing down before exiting. */
2167
f1e894f3 2168 (void)close(pfd[pipe_write]);
059ec3d9
PH
2169 search_tidyup();
2170 exit(EXIT_SUCCESS);
2171 }
2172
2173/* Back in the main process: panic if the fork did not succeed. This seems
2174better than returning an error - if forking is failing it is probably best
2175not to try other deliveries for this message. */
2176
2177if (pid < 0)
2178 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "Fork failed for local delivery to %s",
2179 addr->address);
2180
2181/* Read the pipe to get the delivery status codes and error messages. Our copy
2182of the writing end must be closed first, as otherwise read() won't return zero
2183on an empty pipe. We check that a status exists for each address before
2184overwriting the address structure. If data is missing, the default DEFER status
2185will remain. Afterwards, close the reading end. */
2186
f1e894f3 2187(void)close(pfd[pipe_write]);
059ec3d9 2188
d6c82d7b 2189for (addr2 = addr; addr2; addr2 = addr2->next)
059ec3d9 2190 {
d6c82d7b 2191 len = read(pfd[pipe_read], &status, sizeof(int));
059ec3d9
PH
2192 if (len > 0)
2193 {
2194 int i;
2195 uschar **sptr;
2196
2197 addr2->transport_return = status;
d6c82d7b 2198 len = read(pfd[pipe_read], &transport_count,
059ec3d9 2199 sizeof(transport_count));
d6c82d7b
JH
2200 len = read(pfd[pipe_read], &addr2->flags, sizeof(addr2->flags));
2201 len = read(pfd[pipe_read], &addr2->basic_errno, sizeof(int));
2202 len = read(pfd[pipe_read], &addr2->more_errno, sizeof(int));
2203 len = read(pfd[pipe_read], &addr2->special_action, sizeof(int));
2204 len = read(pfd[pipe_read], &addr2->transport,
059ec3d9
PH
2205 sizeof(transport_instance *));
2206
2207 if (testflag(addr2, af_file))
2208 {
2209 int local_part_length;
d6c82d7b
JH
2210 len = read(pfd[pipe_read], &local_part_length, sizeof(int));
2211 len = read(pfd[pipe_read], big_buffer, local_part_length);
059ec3d9
PH
2212 big_buffer[local_part_length] = 0;
2213 addr2->local_part = string_copy(big_buffer);
2214 }
2215
d6c82d7b 2216 for (i = 0, sptr = &addr2->message; i < 2; i++, sptr = &addr2->user_message)
059ec3d9
PH
2217 {
2218 int message_length;
d6c82d7b 2219 len = read(pfd[pipe_read], &message_length, sizeof(int));
059ec3d9
PH
2220 if (message_length > 0)
2221 {
d6c82d7b 2222 len = read(pfd[pipe_read], big_buffer, message_length);
dc8091e7 2223 big_buffer[big_buffer_size-1] = '\0'; /* guard byte */
059ec3d9
PH
2224 if (len > 0) *sptr = string_copy(big_buffer);
2225 }
2226 }
2227 }
2228
2229 else
2230 {
2231 log_write(0, LOG_MAIN|LOG_PANIC, "failed to read delivery status for %s "
2232 "from delivery subprocess", addr2->unique);
2233 break;
2234 }
2235 }
2236
f1e894f3 2237(void)close(pfd[pipe_read]);
059ec3d9
PH
2238
2239/* Unless shadowing, write all successful addresses immediately to the journal
2240file, to ensure they are recorded asap. For homonymic addresses, use the base
2241address plus the transport name. Failure to write the journal is panic-worthy,
2242but don't stop, as it may prove possible subsequently to update the spool file
2243in order to record the delivery. */
2244
2245if (!shadowing)
2246 {
d6c82d7b
JH
2247 for (addr2 = addr; addr2; addr2 = addr2->next)
2248 if (addr2->transport_return == OK)
2249 {
2250 if (testflag(addr2, af_homonym))
2251 sprintf(CS big_buffer, "%.500s/%s\n", addr2->unique + 3, tp->name);
2252 else
2253 sprintf(CS big_buffer, "%.500s\n", addr2->unique);
059ec3d9 2254
d6c82d7b
JH
2255 /* In the test harness, wait just a bit to let the subprocess finish off
2256 any debug output etc first. */
059ec3d9 2257
d6c82d7b 2258 if (running_in_test_harness) millisleep(300);
059ec3d9 2259
d6c82d7b
JH
2260 DEBUG(D_deliver) debug_printf("journalling %s", big_buffer);
2261 len = Ustrlen(big_buffer);
2262 if (write(journal_fd, big_buffer, len) != len)
2263 log_write(0, LOG_MAIN|LOG_PANIC, "failed to update journal for %s: %s",
2264 big_buffer, strerror(errno));
2265 }
059ec3d9
PH
2266
2267 /* Ensure the journal file is pushed out to disk. */
2268
54fc8428 2269 if (EXIMfsync(journal_fd) < 0)
059ec3d9
PH
2270 log_write(0, LOG_MAIN|LOG_PANIC, "failed to fsync journal: %s",
2271 strerror(errno));
2272 }
2273
2274/* Wait for the process to finish. If it terminates with a non-zero code,
2275freeze the message (except for SIGTERM, SIGKILL and SIGQUIT), but leave the
2276status values of all the addresses as they are. Take care to handle the case
2277when the subprocess doesn't seem to exist. This has been seen on one system
2278when Exim was called from an MUA that set SIGCHLD to SIG_IGN. When that
2279happens, wait() doesn't recognize the termination of child processes. Exim now
2280resets SIGCHLD to SIG_DFL, but this code should still be robust. */
2281
2282while ((rc = wait(&status)) != pid)
059ec3d9
PH
2283 if (rc < 0 && errno == ECHILD) /* Process has vanished */
2284 {
2285 log_write(0, LOG_MAIN, "%s transport process vanished unexpectedly",
2286 addr->transport->driver_name);
2287 status = 0;
2288 break;
2289 }
059ec3d9
PH
2290
2291if ((status & 0xffff) != 0)
2292 {
2293 int msb = (status >> 8) & 255;
2294 int lsb = status & 255;
2295 int code = (msb == 0)? (lsb & 0x7f) : msb;
2296 if (msb != 0 || (code != SIGTERM && code != SIGKILL && code != SIGQUIT))
2297 addr->special_action = SPECIAL_FREEZE;
2298 log_write(0, LOG_MAIN|LOG_PANIC, "%s transport process returned non-zero "
2299 "status 0x%04x: %s %d",
2300 addr->transport->driver_name,
2301 status,
d6c82d7b 2302 msb == 0 ? "terminated by signal" : "exit code",
059ec3d9
PH
2303 code);
2304 }
2305
2306/* If SPECIAL_WARN is set in the top address, send a warning message. */
2307
d6c82d7b 2308if (addr->special_action == SPECIAL_WARN && addr->transport->warn_message)
059ec3d9
PH
2309 {
2310 int fd;
2311 uschar *warn_message;
d6c82d7b 2312 pid_t pid;
059ec3d9
PH
2313
2314 DEBUG(D_deliver) debug_printf("Warning message requested by transport\n");
2315
d6c82d7b 2316 if (!(warn_message = expand_string(addr->transport->warn_message)))
059ec3d9
PH
2317 log_write(0, LOG_MAIN|LOG_PANIC, "Failed to expand \"%s\" (warning "
2318 "message for %s transport): %s", addr->transport->warn_message,
2319 addr->transport->name, expand_string_message);
d6c82d7b
JH
2320
2321 else if ((pid = child_open_exim(&fd)) > 0)
059ec3d9 2322 {
d6c82d7b
JH
2323 FILE *f = fdopen(fd, "wb");
2324 if (errors_reply_to && !contains_header(US"Reply-To", warn_message))
2325 fprintf(f, "Reply-To: %s\n", errors_reply_to);
2326 fprintf(f, "Auto-Submitted: auto-replied\n");
2327 if (!contains_header(US"From", warn_message))
2328 moan_write_from(f);
2329 fprintf(f, "%s", CS warn_message);
059ec3d9 2330
d6c82d7b 2331 /* Close and wait for child process to complete, without a timeout. */
059ec3d9 2332
d6c82d7b
JH
2333 (void)fclose(f);
2334 (void)child_close(pid, 0);
059ec3d9
PH
2335 }
2336
2337 addr->special_action = SPECIAL_NONE;
2338 }
2339}
2340
2341
2342
fa41615d 2343
3070ceee
JH
2344/* Check transport for the given concurrency limit. Return TRUE if over
2345the limit (or an expansion failure), else FALSE and if there was a limit,
2346the key for the hints database used for the concurrency count. */
fa41615d 2347
3070ceee
JH
2348static BOOL
2349tpt_parallel_check(transport_instance * tp, address_item * addr, uschar ** key)
fa41615d 2350{
3070ceee
JH
2351unsigned max_parallel;
2352
2353if (!tp->max_parallel) return FALSE;
2354
2355max_parallel = (unsigned) expand_string_integer(tp->max_parallel, TRUE);
2356if (expand_string_message)
2357 {
2358 log_write(0, LOG_MAIN|LOG_PANIC, "Failed to expand max_parallel option "
2359 "in %s transport (%s): %s", tp->name, addr->address,
2360 expand_string_message);
2361 return TRUE;
2362 }
2363
2364if (max_parallel > 0)
2365 {
2366 uschar * serialize_key = string_sprintf("tpt-serialize-%s", tp->name);
2367 if (!enq_start(serialize_key, max_parallel))
2368 {
2369 address_item * next;
2370 DEBUG(D_transport)
2371 debug_printf("skipping tpt %s because concurrency limit %u reached\n",
2372 tp->name, max_parallel);
2373 do
2374 {
2375 next = addr->next;
2376 addr->message = US"concurrency limit reached for transport";
2377 addr->basic_errno = ERRNO_TRETRY;
2378 post_process_one(addr, DEFER, LOG_MAIN, DTYPE_TRANSPORT, 0);
2379 } while ((addr = next));
2380 return TRUE;
2381 }
2382 *key = serialize_key;
2383 }
2384return FALSE;
fa41615d
JH
2385}
2386
2387
2388
059ec3d9
PH
2389/*************************************************
2390* Do local deliveries *
2391*************************************************/
2392
2393/* This function processes the list of addresses in addr_local. True local
2394deliveries are always done one address at a time. However, local deliveries can
2395be batched up in some cases. Typically this is when writing batched SMTP output
2396files for use by some external transport mechanism, or when running local
2397deliveries over LMTP.
2398
2399Arguments: None
2400Returns: Nothing
2401*/
2402
2403static void
2404do_local_deliveries(void)
2405{
2406open_db dbblock;
2407open_db *dbm_file = NULL;
2408time_t now = time(NULL);
2409
2410/* Loop until we have exhausted the supply of local deliveries */
2411
d6c82d7b 2412while (addr_local)
059ec3d9
PH
2413 {
2414 time_t delivery_start;
2415 int deliver_time;
2416 address_item *addr2, *addr3, *nextaddr;
2417 int logflags = LOG_MAIN;
2418 int logchar = dont_deliver? '*' : '=';
2419 transport_instance *tp;
fa41615d 2420 uschar * serialize_key = NULL;
059ec3d9
PH
2421
2422 /* Pick the first undelivered address off the chain */
2423
2424 address_item *addr = addr_local;
2425 addr_local = addr->next;
2426 addr->next = NULL;
2427
2428 DEBUG(D_deliver|D_transport)
2429 debug_printf("--------> %s <--------\n", addr->address);
2430
2431 /* An internal disaster if there is no transport. Should not occur! */
2432
d6c82d7b 2433 if (!(tp = addr->transport))
059ec3d9
PH
2434 {
2435 logflags |= LOG_PANIC;
2436 disable_logging = FALSE; /* Jic */
d6c82d7b
JH
2437 addr->message = addr->router
2438 ? string_sprintf("No transport set by %s router", addr->router->name)
2439 : string_sprintf("No transport set by system filter");
059ec3d9
PH
2440 post_process_one(addr, DEFER, logflags, DTYPE_TRANSPORT, 0);
2441 continue;
2442 }
2443
2444 /* Check that this base address hasn't previously been delivered to this
2445 transport. The check is necessary at this point to handle homonymic addresses
2446 correctly in cases where the pattern of redirection changes between delivery
2447 attempts. Non-homonymic previous delivery is detected earlier, at routing
2448 time. */
2449
c2c19e9d 2450 if (previously_transported(addr, FALSE)) continue;
059ec3d9
PH
2451
2452 /* There are weird cases where logging is disabled */
2453
2454 disable_logging = tp->disable_logging;
2455
f7fd3850
PH
2456 /* Check for batched addresses and possible amalgamation. Skip all the work
2457 if either batch_max <= 1 or there aren't any other addresses for local
2458 delivery. */
059ec3d9 2459
d6c82d7b 2460 if (tp->batch_max > 1 && addr_local)
059ec3d9
PH
2461 {
2462 int batch_count = 1;
2463 BOOL uses_dom = readconf_depends((driver_instance *)tp, US"domain");
d6c82d7b
JH
2464 BOOL uses_lp = ( testflag(addr, af_pfr)
2465 && (testflag(addr, af_file) || addr->local_part[0] == '|')
2466 )
2467 || readconf_depends((driver_instance *)tp, US"local_part");
059ec3d9
PH
2468 uschar *batch_id = NULL;
2469 address_item **anchor = &addr_local;
2470 address_item *last = addr;
2471 address_item *next;
2472
2473 /* Expand the batch_id string for comparison with other addresses.
2474 Expansion failure suppresses batching. */
2475
d6c82d7b 2476 if (tp->batch_id)
059ec3d9
PH
2477 {
2478 deliver_set_expansions(addr);
2479 batch_id = expand_string(tp->batch_id);
2480 deliver_set_expansions(NULL);
d6c82d7b 2481 if (!batch_id)
059ec3d9
PH
2482 {
2483 log_write(0, LOG_MAIN|LOG_PANIC, "Failed to expand batch_id option "
2484 "in %s transport (%s): %s", tp->name, addr->address,
2485 expand_string_message);
2486 batch_count = tp->batch_max;
2487 }
2488 }
2489
2490 /* Until we reach the batch_max limit, pick off addresses which have the
2491 same characteristics. These are:
2492
2493 same transport
7816e254 2494 not previously delivered (see comment about 50 lines above)
059ec3d9 2495 same local part if the transport's configuration contains $local_part
f7fd3850 2496 or if this is a file or pipe delivery from a redirection
059ec3d9
PH
2497 same domain if the transport's configuration contains $domain
2498 same errors address
2499 same additional headers
2500 same headers to be removed
2501 same uid/gid for running the transport
2502 same first host if a host list is set
2503 */
2504
d6c82d7b 2505 while ((next = *anchor) && batch_count < tp->batch_max)
059ec3d9
PH
2506 {
2507 BOOL ok =
d6c82d7b
JH
2508 tp == next->transport
2509 && !previously_transported(next, TRUE)
2510 && (addr->flags & (af_pfr|af_file)) == (next->flags & (af_pfr|af_file))
2511 && (!uses_lp || Ustrcmp(next->local_part, addr->local_part) == 0)
2512 && (!uses_dom || Ustrcmp(next->domain, addr->domain) == 0)
2513 && same_strings(next->prop.errors_address, addr->prop.errors_address)
2514 && same_headers(next->prop.extra_headers, addr->prop.extra_headers)
2515 && same_strings(next->prop.remove_headers, addr->prop.remove_headers)
2516 && same_ugid(tp, addr, next)
2517 && ( !addr->host_list && !next->host_list
2518 || addr->host_list
2519 && next->host_list
2520 && Ustrcmp(addr->host_list->name, next->host_list->name) == 0
2521 );
059ec3d9
PH
2522
2523 /* If the transport has a batch_id setting, batch_id will be non-NULL
2524 from the expansion outside the loop. Expand for this address and compare.
2525 Expansion failure makes this address ineligible for batching. */
2526
d6c82d7b 2527 if (ok && batch_id)
059ec3d9
PH
2528 {
2529 uschar *bid;
2530 address_item *save_nextnext = next->next;
2531 next->next = NULL; /* Expansion for a single address */
2532 deliver_set_expansions(next);
2533 next->next = save_nextnext;
2534 bid = expand_string(tp->batch_id);
2535 deliver_set_expansions(NULL);
d6c82d7b 2536 if (!bid)
059ec3d9
PH
2537 {
2538 log_write(0, LOG_MAIN|LOG_PANIC, "Failed to expand batch_id option "
2539 "in %s transport (%s): %s", tp->name, next->address,
2540 expand_string_message);
2541 ok = FALSE;
2542 }
2543 else ok = (Ustrcmp(batch_id, bid) == 0);
2544 }
2545
2546 /* Take address into batch if OK. */
2547
2548 if (ok)
2549 {
2550 *anchor = next->next; /* Include the address */
2551 next->next = NULL;
2552 last->next = next;
2553 last = next;
2554 batch_count++;
2555 }
fa41615d 2556 else anchor = &next->next; /* Skip the address */
059ec3d9
PH
2557 }
2558 }
2559
2560 /* We now have one or more addresses that can be delivered in a batch. Check
2561 whether the transport is prepared to accept a message of this size. If not,
2562 fail them all forthwith. If the expansion fails, or does not yield an
2563 integer, defer delivery. */
2564
d6c82d7b 2565 if (tp->message_size_limit)
059ec3d9
PH
2566 {
2567 int rc = check_message_size(tp, addr);
2568 if (rc != OK)
2569 {
2570 replicate_status(addr);
d6c82d7b 2571 while (addr)
059ec3d9
PH
2572 {
2573 addr2 = addr->next;
2574 post_process_one(addr, rc, logflags, DTYPE_TRANSPORT, 0);
2575 addr = addr2;
2576 }
2577 continue; /* With next batch of addresses */
2578 }
2579 }
2580
2581 /* If we are not running the queue, or if forcing, all deliveries will be
2582 attempted. Otherwise, we must respect the retry times for each address. Even
2583 when not doing this, we need to set up the retry key string, and determine
2584 whether a retry record exists, because after a successful delivery, a delete
2585 retry item must be set up. Keep the retry database open only for the duration
2586 of these checks, rather than for all local deliveries, because some local
2587 deliveries (e.g. to pipes) can take a substantial time. */
2588
d6c82d7b 2589 if (!(dbm_file = dbfn_open(US"retry", O_RDONLY, &dbblock, FALSE)))
059ec3d9
PH
2590 {
2591 DEBUG(D_deliver|D_retry|D_hints_lookup)
2592 debug_printf("no retry data available\n");
2593 }
2594
2595 addr2 = addr;
2596 addr3 = NULL;
d6c82d7b 2597 while (addr2)
059ec3d9
PH
2598 {
2599 BOOL ok = TRUE; /* to deliver this address */
2600 uschar *retry_key;
2601
2602 /* Set up the retry key to include the domain or not, and change its
2603 leading character from "R" to "T". Must make a copy before doing this,
2604 because the old key may be pointed to from a "delete" retry item after
2605 a routing delay. */
2606
2607 retry_key = string_copy(
d6c82d7b 2608 tp->retry_use_local_part ? addr2->address_retry_key :
059ec3d9
PH
2609 addr2->domain_retry_key);
2610 *retry_key = 'T';
2611
2612 /* Inspect the retry data. If there is no hints file, delivery happens. */
2613
d6c82d7b 2614 if (dbm_file)
059ec3d9
PH
2615 {
2616 dbdata_retry *retry_record = dbfn_read(dbm_file, retry_key);
2617
2618 /* If there is no retry record, delivery happens. If there is,
2619 remember it exists so it can be deleted after a successful delivery. */
2620
d6c82d7b 2621 if (retry_record)
059ec3d9
PH
2622 {
2623 setflag(addr2, af_lt_retry_exists);
2624
2625 /* A retry record exists for this address. If queue running and not
2626 forcing, inspect its contents. If the record is too old, or if its
2627 retry time has come, or if it has passed its cutoff time, delivery
2628 will go ahead. */
2629
2630 DEBUG(D_retry)
2631 {
ea49d0e1
PH
2632 debug_printf("retry record exists: age=%s ",
2633 readconf_printtime(now - retry_record->time_stamp));
2634 debug_printf("(max %s)\n", readconf_printtime(retry_data_expire));
2635 debug_printf(" time to retry = %s expired = %d\n",
2636 readconf_printtime(retry_record->next_try - now),
2637 retry_record->expired);
059ec3d9
PH
2638 }
2639
2640 if (queue_running && !deliver_force)
2641 {
d6c82d7b
JH
2642 ok = (now - retry_record->time_stamp > retry_data_expire)
2643 || (now >= retry_record->next_try)
2644 || retry_record->expired;
059ec3d9
PH
2645
2646 /* If we haven't reached the retry time, there is one more check
1ddeb334 2647 to do, which is for the ultimate address timeout. */
059ec3d9
PH
2648
2649 if (!ok)
ba9af0af
TF
2650 ok = retry_ultimate_address_timeout(retry_key, addr2->domain,
2651 retry_record, now);
059ec3d9
PH
2652 }
2653 }
2654 else DEBUG(D_retry) debug_printf("no retry record exists\n");
2655 }
2656
2657 /* This address is to be delivered. Leave it on the chain. */
2658
2659 if (ok)
2660 {
2661 addr3 = addr2;
2662 addr2 = addr2->next;
2663 }
2664
2665 /* This address is to be deferred. Take it out of the chain, and
2666 post-process it as complete. Must take it out of the chain first,
2667 because post processing puts it on another chain. */
2668
2669 else
2670 {
2671 address_item *this = addr2;
2672 this->message = US"Retry time not yet reached";
2673 this->basic_errno = ERRNO_LRETRY;
d6c82d7b
JH
2674 addr2 = addr3 ? (addr3->next = addr2->next)
2675 : (addr = addr2->next);
059ec3d9
PH
2676 post_process_one(this, DEFER, logflags, DTYPE_TRANSPORT, 0);
2677 }
2678 }
2679
d6c82d7b 2680 if (dbm_file) dbfn_close(dbm_file);
059ec3d9
PH
2681
2682 /* If there are no addresses left on the chain, they all deferred. Loop
2683 for the next set of addresses. */
2684
d6c82d7b 2685 if (!addr) continue;
059ec3d9 2686
fa41615d
JH
2687 /* If the transport is limited for parallellism, enforce that here.
2688 We use a hints DB entry, incremented here and decremented after
2689 the transport (and any shadow transport) completes. */
2690
3070ceee 2691 if (tpt_parallel_check(tp, addr, &serialize_key))
fa41615d 2692 {
fa41615d
JH
2693 if (expand_string_message)
2694 {
2695 logflags |= LOG_PANIC;
3070ceee
JH
2696 do
2697 {
2698 addr = addr->next;
fa41615d 2699 post_process_one(addr, DEFER, logflags, DTYPE_TRANSPORT, 0);
3070ceee 2700 } while ((addr = addr2));
fa41615d 2701 }
3070ceee 2702 continue; /* Loop for the next set of addresses. */
fa41615d
JH
2703 }
2704
2705
059ec3d9
PH
2706 /* So, finally, we do have some addresses that can be passed to the
2707 transport. Before doing so, set up variables that are relevant to a
2708 single delivery. */
2709
2710 deliver_set_expansions(addr);
2711 delivery_start = time(NULL);
2712 deliver_local(addr, FALSE);
2713 deliver_time = (int)(time(NULL) - delivery_start);
2714
2715 /* If a shadow transport (which must perforce be another local transport), is
2716 defined, and its condition is met, we must pass the message to the shadow
2717 too, but only those addresses that succeeded. We do this by making a new
2718 chain of addresses - also to keep the original chain uncontaminated. We must
2719 use a chain rather than doing it one by one, because the shadow transport may
2720 batch.
2721
2722 NOTE: if the condition fails because of a lookup defer, there is nothing we
2723 can do! */
2724
d6c82d7b
JH
2725 if ( tp->shadow
2726 && ( !tp->shadow_condition
2727 || expand_check_condition(tp->shadow_condition, tp->name, US"transport")
2728 ) )
059ec3d9
PH
2729 {
2730 transport_instance *stp;
2731 address_item *shadow_addr = NULL;
2732 address_item **last = &shadow_addr;
2733
d6c82d7b 2734 for (stp = transports; stp; stp = stp->next)
059ec3d9
PH
2735 if (Ustrcmp(stp->name, tp->shadow) == 0) break;
2736
d6c82d7b 2737 if (!stp)
059ec3d9
PH
2738 log_write(0, LOG_MAIN|LOG_PANIC, "shadow transport \"%s\" not found ",
2739 tp->shadow);
2740
2741 /* Pick off the addresses that have succeeded, and make clones. Put into
2742 the shadow_message field a pointer to the shadow_message field of the real
2743 address. */
2744
d6c82d7b
JH
2745 else for (addr2 = addr; addr2; addr2 = addr2->next)
2746 if (addr2->transport_return == OK)
2747 {
2748 addr3 = store_get(sizeof(address_item));
2749 *addr3 = *addr2;
2750 addr3->next = NULL;
2751 addr3->shadow_message = (uschar *) &(addr2->shadow_message);
2752 addr3->transport = stp;
2753 addr3->transport_return = DEFER;
2754 addr3->return_filename = NULL;
2755 addr3->return_file = -1;
2756 *last = addr3;
2757 last = &(addr3->next);
2758 }
059ec3d9
PH
2759
2760 /* If we found any addresses to shadow, run the delivery, and stick any
2761 message back into the shadow_message field in the original. */
2762
d6c82d7b 2763 if (shadow_addr)
059ec3d9
PH
2764 {
2765 int save_count = transport_count;
2766
2767 DEBUG(D_deliver|D_transport)
2768 debug_printf(">>>>>>>>>>>>>>>> Shadow delivery >>>>>>>>>>>>>>>>\n");
2769 deliver_local(shadow_addr, TRUE);
2770
d6c82d7b 2771 for(; shadow_addr; shadow_addr = shadow_addr->next)
059ec3d9
PH
2772 {
2773 int sresult = shadow_addr->transport_return;
d6c82d7b
JH
2774 *(uschar **)shadow_addr->shadow_message =
2775 sresult == OK
2776 ? string_sprintf(" ST=%s", stp->name)
2777 : string_sprintf(" ST=%s (%s%s%s)", stp->name,
2778 shadow_addr->basic_errno <= 0
2779 ? US""
2780 : US strerror(shadow_addr->basic_errno),
2781 shadow_addr->basic_errno <= 0 || !shadow_addr->message
2782 ? US""
2783 : US": ",
2784 shadow_addr->message
2785 ? shadow_addr->message
2786 : shadow_addr->basic_errno <= 0
2787 ? US"unknown error"
2788 : US"");
059ec3d9
PH
2789
2790 DEBUG(D_deliver|D_transport)
2791 debug_printf("%s shadow transport returned %s for %s\n",
2792 stp->name,
d6c82d7b
JH
2793 sresult == OK ? "OK" :
2794 sresult == DEFER ? "DEFER" :
2795 sresult == FAIL ? "FAIL" :
2796 sresult == PANIC ? "PANIC" : "?",
059ec3d9
PH
2797 shadow_addr->address);
2798 }
2799
2800 DEBUG(D_deliver|D_transport)
2801 debug_printf(">>>>>>>>>>>>>>>> End shadow delivery >>>>>>>>>>>>>>>>\n");
2802
2803 transport_count = save_count; /* Restore original transport count */
2804 }
2805 }
2806
2807 /* Cancel the expansions that were set up for the delivery. */
2808
2809 deliver_set_expansions(NULL);
2810
fa41615d
JH
2811 /* If the transport was parallelism-limited, decrement the hints DB record. */
2812
2813 if (serialize_key) enq_end(serialize_key);
2814
059ec3d9
PH
2815 /* Now we can process the results of the real transport. We must take each
2816 address off the chain first, because post_process_one() puts it on another
2817 chain. */
2818
d6c82d7b 2819 for (addr2 = addr; addr2; addr2 = nextaddr)
059ec3d9
PH
2820 {
2821 int result = addr2->transport_return;
2822 nextaddr = addr2->next;
2823
2824 DEBUG(D_deliver|D_transport)
2825 debug_printf("%s transport returned %s for %s\n",
2826 tp->name,
d6c82d7b
JH
2827 result == OK ? "OK" :
2828 result == DEFER ? "DEFER" :
2829 result == FAIL ? "FAIL" :
2830 result == PANIC ? "PANIC" : "?",
059ec3d9
PH
2831 addr2->address);
2832
2833 /* If there is a retry_record, or if delivery is deferred, build a retry
2834 item for setting a new retry time or deleting the old retry record from
2835 the database. These items are handled all together after all addresses
2836 have been handled (so the database is open just for a short time for
2837 updating). */
2838
2839 if (result == DEFER || testflag(addr2, af_lt_retry_exists))
2840 {
d6c82d7b
JH
2841 int flags = result == DEFER ? 0 : rf_delete;
2842 uschar *retry_key = string_copy(tp->retry_use_local_part
2843 ? addr2->address_retry_key : addr2->domain_retry_key);
059ec3d9
PH
2844 *retry_key = 'T';
2845 retry_add_item(addr2, retry_key, flags);
2846 }
2847
2848 /* Done with this address */
2849
2850 if (result == OK) addr2->more_errno = deliver_time;
2851 post_process_one(addr2, result, logflags, DTYPE_TRANSPORT, logchar);
2852
2853 /* If a pipe delivery generated text to be sent back, the result may be
2854 changed to FAIL, and we must copy this for subsequent addresses in the
2855 batch. */
2856
2857 if (addr2->transport_return != result)
2858 {
d6c82d7b 2859 for (addr3 = nextaddr; addr3; addr3 = addr3->next)
059ec3d9
PH
2860 {
2861 addr3->transport_return = addr2->transport_return;
2862 addr3->basic_errno = addr2->basic_errno;
2863 addr3->message = addr2->message;
2864 }
2865 result = addr2->transport_return;
2866 }
2867
2868 /* Whether or not the result was changed to FAIL, we need to copy the
2869 return_file value from the first address into all the addresses of the
2870 batch, so they are all listed in the error message. */
2871
2872 addr2->return_file = addr->return_file;
2873
2874 /* Change log character for recording successful deliveries. */
2875
2876 if (result == OK) logchar = '-';
2877 }
2878 } /* Loop back for next batch of addresses */
2879}
2880
2881
2882
2883
2884/*************************************************
2885* Sort remote deliveries *
2886*************************************************/
2887
2888/* This function is called if remote_sort_domains is set. It arranges that the
2889chain of addresses for remote deliveries is ordered according to the strings
2890specified. Try to make this shuffling reasonably efficient by handling
2891sequences of addresses rather than just single ones.
2892
2893Arguments: None
2894Returns: Nothing
2895*/
2896
2897static void
2898sort_remote_deliveries(void)
2899{
2900int sep = 0;
2901address_item **aptr = &addr_remote;
55414b25 2902const uschar *listptr = remote_sort_domains;
059ec3d9
PH
2903uschar *pattern;
2904uschar patbuf[256];
2905
d6c82d7b
JH
2906while ( *aptr
2907 && (pattern = string_nextinlist(&listptr, &sep, patbuf, sizeof(patbuf)))
2908 )
059ec3d9
PH
2909 {
2910 address_item *moved = NULL;
2911 address_item **bptr = &moved;
2912
d6c82d7b 2913 while (*aptr)
059ec3d9
PH
2914 {
2915 address_item **next;
2916 deliver_domain = (*aptr)->domain; /* set $domain */
55414b25 2917 if (match_isinlist(deliver_domain, (const uschar **)&pattern, UCHAR_MAX+1,
059ec3d9
PH
2918 &domainlist_anchor, NULL, MCL_DOMAIN, TRUE, NULL) == OK)
2919 {
d6c82d7b 2920 aptr = &(*aptr)->next;
059ec3d9
PH
2921 continue;
2922 }
2923
d6c82d7b
JH
2924 next = &(*aptr)->next;
2925 while ( *next
2926 && (deliver_domain = (*next)->domain, /* Set $domain */
55414b25 2927 match_isinlist(deliver_domain, (const uschar **)&pattern, UCHAR_MAX+1,
d6c82d7b
JH
2928 &domainlist_anchor, NULL, MCL_DOMAIN, TRUE, NULL)) != OK
2929 )
2930 next = &(*next)->next;
059ec3d9
PH
2931
2932 /* If the batch of non-matchers is at the end, add on any that were
2933 extracted further up the chain, and end this iteration. Otherwise,
2934 extract them from the chain and hang on the moved chain. */
2935
d6c82d7b 2936 if (!*next)
059ec3d9
PH
2937 {
2938 *next = moved;
2939 break;
2940 }
2941
2942 *bptr = *aptr;
2943 *aptr = *next;
2944 *next = NULL;
2945 bptr = next;
d6c82d7b 2946 aptr = &(*aptr)->next;
059ec3d9
PH
2947 }
2948
2949 /* If the loop ended because the final address matched, *aptr will
2950 be NULL. Add on to the end any extracted non-matching addresses. If
2951 *aptr is not NULL, the loop ended via "break" when *next is null, that
2952 is, there was a string of non-matching addresses at the end. In this
2953 case the extracted addresses have already been added on the end. */
2954
d6c82d7b 2955 if (!*aptr) *aptr = moved;
059ec3d9
PH
2956 }
2957
2958DEBUG(D_deliver)
2959 {
2960 address_item *addr;
2961 debug_printf("remote addresses after sorting:\n");
d6c82d7b 2962 for (addr = addr_remote; addr; addr = addr->next)
059ec3d9
PH
2963 debug_printf(" %s\n", addr->address);
2964 }
2965}
2966
2967
2968
2969/*************************************************
2970* Read from pipe for remote delivery subprocess *
2971*************************************************/
2972
2973/* This function is called when the subprocess is complete, but can also be
2974called before it is complete, in order to empty a pipe that is full (to prevent
2975deadlock). It must therefore keep track of its progress in the parlist data
2976block.
2977
2978We read the pipe to get the delivery status codes and a possible error message
2979for each address, optionally preceded by unusability data for the hosts and
2980also by optional retry data.
2981
2982Read in large chunks into the big buffer and then scan through, interpreting
2983the data therein. In most cases, only a single read will be necessary. No
1c5466b9
PH
2984individual item will ever be anywhere near 2500 bytes in length, so by ensuring
2985that we read the next chunk when there is less than 2500 bytes left in the
2986non-final chunk, we can assume each item is complete in the buffer before
2987handling it. Each item is written using a single write(), which is atomic for
2988small items (less than PIPE_BUF, which seems to be at least 512 in any Unix and
2989often bigger) so even if we are reading while the subprocess is still going, we
2990should never have only a partial item in the buffer.
059ec3d9
PH
2991
2992Argument:
2993 poffset the offset of the parlist item
2994 eop TRUE if the process has completed
2995
2996Returns: TRUE if the terminating 'Z' item has been read,
2997 or there has been a disaster (i.e. no more data needed);
2998 FALSE otherwise
2999*/
3000
3001static BOOL
3002par_read_pipe(int poffset, BOOL eop)
3003{
3004host_item *h;
3005pardata *p = parlist + poffset;
3006address_item *addrlist = p->addrlist;
3007address_item *addr = p->addr;
3008pid_t pid = p->pid;
3009int fd = p->fd;
3010uschar *endptr = big_buffer;
3011uschar *ptr = endptr;
3012uschar *msg = p->msg;
3013BOOL done = p->done;
3014BOOL unfinished = TRUE;
bd21a787
WB
3015/* minimum size to read is header size including id, subid and length */
3016int required = PIPE_HEADER_SIZE;
059ec3d9
PH
3017
3018/* Loop through all items, reading from the pipe when necessary. The pipe
3019is set up to be non-blocking, but there are two different Unix mechanisms in
3020use. Exim uses O_NONBLOCK if it is defined. This returns 0 for end of file,
3021and EAGAIN for no more data. If O_NONBLOCK is not defined, Exim uses O_NDELAY,
3022which returns 0 for both end of file and no more data. We distinguish the
3023two cases by taking 0 as end of file only when we know the process has
3024completed.
3025
3026Each separate item is written to the pipe in a single write(), and as they are
3027all short items, the writes will all be atomic and we should never find
8e669ac1
PH
3028ourselves in the position of having read an incomplete item. "Short" in this
3029case can mean up to about 1K in the case when there is a long error message
1c5466b9 3030associated with an address. */
059ec3d9
PH
3031
3032DEBUG(D_deliver) debug_printf("reading pipe for subprocess %d (%s)\n",
3033 (int)p->pid, eop? "ended" : "not ended");
3034
3035while (!done)
3036 {
3037 retry_item *r, **rp;
3038 int remaining = endptr - ptr;
bd21a787
WB
3039 uschar header[PIPE_HEADER_SIZE + 1];
3040 uschar id, subid;
3041 uschar *endc;
059ec3d9
PH
3042
3043 /* Read (first time) or top up the chars in the buffer if necessary.
3044 There will be only one read if we get all the available data (i.e. don't
3045 fill the buffer completely). */
3046
bd21a787 3047 if (remaining < required && unfinished)
059ec3d9
PH
3048 {
3049 int len;
3050 int available = big_buffer_size - remaining;
3051
3052 if (remaining > 0) memmove(big_buffer, ptr, remaining);
3053
3054 ptr = big_buffer;
3055 endptr = big_buffer + remaining;
3056 len = read(fd, endptr, available);
3057
3058 DEBUG(D_deliver) debug_printf("read() yielded %d\n", len);
3059
3060 /* If the result is EAGAIN and the process is not complete, just
3061 stop reading any more and process what we have already. */
3062
3063 if (len < 0)
3064 {
3065 if (!eop && errno == EAGAIN) len = 0; else
3066 {
3067 msg = string_sprintf("failed to read pipe from transport process "
3068 "%d for transport %s: %s", pid, addr->transport->driver_name,
3069 strerror(errno));
3070 break;
3071 }
3072 }
3073
3074 /* If the length is zero (eof or no-more-data), just process what we
3075 already have. Note that if the process is still running and we have
3076 read all the data in the pipe (but less that "available") then we
3077 won't read any more, as "unfinished" will get set FALSE. */
3078
3079 endptr += len;
bd21a787 3080 remaining += len;
059ec3d9
PH
3081 unfinished = len == available;
3082 }
3083
3084 /* If we are at the end of the available data, exit the loop. */
059ec3d9
PH
3085 if (ptr >= endptr) break;
3086
bd21a787
WB
3087 /* copy and read header */
3088 memcpy(header, ptr, PIPE_HEADER_SIZE);
94431adb 3089 header[PIPE_HEADER_SIZE] = '\0';
bd21a787
WB
3090 id = header[0];
3091 subid = header[1];
3092 required = Ustrtol(header + 2, &endc, 10) + PIPE_HEADER_SIZE; /* header + data */
3093 if (*endc)
3094 {
3095 msg = string_sprintf("failed to read pipe from transport process "
3096 "%d for transport %s: error reading size from header", pid, addr->transport->driver_name);
3097 done = TRUE;
3098 break;
3099 }
3100
3101 DEBUG(D_deliver)
94431adb 3102 debug_printf("header read id:%c,subid:%c,size:%s,required:%d,remaining:%d,unfinished:%d\n",
bd21a787
WB
3103 id, subid, header+2, required, remaining, unfinished);
3104
3105 /* is there room for the dataset we want to read ? */
3106 if (required > big_buffer_size - PIPE_HEADER_SIZE)
3107 {
3108 msg = string_sprintf("failed to read pipe from transport process "
3109 "%d for transport %s: big_buffer too small! required size=%d buffer size=%d", pid, addr->transport->driver_name,
3110 required, big_buffer_size - PIPE_HEADER_SIZE);
3111 done = TRUE;
3112 break;
3113 }
3114
94431adb 3115 /* we wrote all datasets with atomic write() calls
bd21a787 3116 remaining < required only happens if big_buffer was too small
94431adb 3117 to get all available data from pipe. unfinished has to be true
bd21a787
WB
3118 as well. */
3119 if (remaining < required)
8fa0a4d4 3120 {
bd21a787
WB
3121 if (unfinished)
3122 continue;
8fa0a4d4 3123 msg = string_sprintf("failed to read pipe from transport process "
94431adb 3124 "%d for transport %s: required size=%d > remaining size=%d and unfinished=false",
8fa0a4d4
JH
3125 pid, addr->transport->driver_name, required, remaining);
3126 done = TRUE;
3127 break;
3128 }
bd21a787
WB
3129
3130 /* step behind the header */
3131 ptr += PIPE_HEADER_SIZE;
94431adb 3132
059ec3d9
PH
3133 /* Handle each possible type of item, assuming the complete item is
3134 available in store. */
3135
bd21a787 3136 switch (id)
059ec3d9
PH
3137 {
3138 /* Host items exist only if any hosts were marked unusable. Match
3139 up by checking the IP address. */
3140
3141 case 'H':
d6c82d7b 3142 for (h = addrlist->host_list; h; h = h->next)
059ec3d9 3143 {
d6c82d7b 3144 if (!h->address || Ustrcmp(h->address, ptr+2) != 0) continue;
059ec3d9
PH
3145 h->status = ptr[0];
3146 h->why = ptr[1];
3147 }
3148 ptr += 2;
3149 while (*ptr++);
3150 break;
3151
3152 /* Retry items are sent in a preceding R item for each address. This is
3153 kept separate to keep each message short enough to guarantee it won't
3154 be split in the pipe. Hopefully, in the majority of cases, there won't in
3155 fact be any retry items at all.
3156
3157 The complete set of retry items might include an item to delete a
3158 routing retry if there was a previous routing delay. However, routing
3159 retries are also used when a remote transport identifies an address error.
3160 In that case, there may also be an "add" item for the same key. Arrange
3161 that a "delete" item is dropped in favour of an "add" item. */
3162
3163 case 'R':
d6c82d7b 3164 if (!addr) goto ADDR_MISMATCH;
059ec3d9
PH
3165
3166 DEBUG(D_deliver|D_retry)
3167 debug_printf("reading retry information for %s from subprocess\n",
3168 ptr+1);
3169
3170 /* Cut out any "delete" items on the list. */
3171
d6c82d7b 3172 for (rp = &(addr->retries); (r = *rp); rp = &r->next)
059ec3d9
PH
3173 if (Ustrcmp(r->key, ptr+1) == 0) /* Found item with same key */
3174 {
3175 if ((r->flags & rf_delete) == 0) break; /* It was not "delete" */
3176 *rp = r->next; /* Excise a delete item */
3177 DEBUG(D_deliver|D_retry)
3178 debug_printf(" existing delete item dropped\n");
3179 }
059ec3d9
PH
3180
3181 /* We want to add a delete item only if there is no non-delete item;
3182 however we still have to step ptr through the data. */
3183
d6c82d7b 3184 if (!r || (*ptr & rf_delete) == 0)
059ec3d9
PH
3185 {
3186 r = store_get(sizeof(retry_item));
3187 r->next = addr->retries;
3188 addr->retries = r;
3189 r->flags = *ptr++;
3190 r->key = string_copy(ptr);
3191 while (*ptr++);
3192 memcpy(&(r->basic_errno), ptr, sizeof(r->basic_errno));
3193 ptr += sizeof(r->basic_errno);
3194 memcpy(&(r->more_errno), ptr, sizeof(r->more_errno));
3195 ptr += sizeof(r->more_errno);
3196 r->message = (*ptr)? string_copy(ptr) : NULL;
3197 DEBUG(D_deliver|D_retry)
3198 debug_printf(" added %s item\n",
3199 ((r->flags & rf_delete) == 0)? "retry" : "delete");
3200 }
3201
3202 else
3203 {
3204 DEBUG(D_deliver|D_retry)
3205 debug_printf(" delete item not added: non-delete item exists\n");
3206 ptr++;
3207 while(*ptr++);
3208 ptr += sizeof(r->basic_errno) + sizeof(r->more_errno);
3209 }
3210
3211 while(*ptr++);
3212 break;
3213
3214 /* Put the amount of data written into the parlist block */
3215
3216 case 'S':
3217 memcpy(&(p->transport_count), ptr, sizeof(transport_count));
3218 ptr += sizeof(transport_count);
3219 break;
3220
3221 /* Address items are in the order of items on the address chain. We
3222 remember the current address value in case this function is called
3223 several times to empty the pipe in stages. Information about delivery
3224 over TLS is sent in a preceding X item for each address. We don't put
3225 it in with the other info, in order to keep each message short enough to
3226 guarantee it won't be split in the pipe. */
3227
a7538db1 3228#ifdef SUPPORT_TLS
059ec3d9 3229 case 'X':
d6c82d7b 3230 if (!addr) goto ADDR_MISMATCH; /* Below, in 'A' handler */
bd21a787 3231 switch (subid)
9d1c15ef
JH
3232 {
3233 case '1':
3234 addr->cipher = NULL;
3235 addr->peerdn = NULL;
3236
3237 if (*ptr)
3238 addr->cipher = string_copy(ptr);
3239 while (*ptr++);
3240 if (*ptr)
9d1c15ef 3241 addr->peerdn = string_copy(ptr);
9d1c15ef
JH
3242 break;
3243
3244 case '2':
9d1c15ef
JH
3245 if (*ptr)
3246 (void) tls_import_cert(ptr, &addr->peercert);
152e7604
JH
3247 else
3248 addr->peercert = NULL;
9d1c15ef
JH
3249 break;
3250
3251 case '3':
9d1c15ef
JH
3252 if (*ptr)
3253 (void) tls_import_cert(ptr, &addr->ourcert);
152e7604
JH
3254 else
3255 addr->ourcert = NULL;
9d1c15ef 3256 break;
018058b2 3257
a7538db1 3258# ifndef DISABLE_OCSP
018058b2
JH
3259 case '4':
3260 addr->ocsp = OCSP_NOT_REQ;
3261 if (*ptr)
3262 addr->ocsp = *ptr - '0';
3263 break;
a7538db1 3264# endif
9d1c15ef 3265 }
059ec3d9
PH
3266 while (*ptr++);
3267 break;
a7538db1 3268#endif /*SUPPORT_TLS*/
059ec3d9 3269
6f123593 3270 case 'C': /* client authenticator information */
bd21a787 3271 switch (subid)
9d1c15ef
JH
3272 {
3273 case '1':
3274 addr->authenticator = (*ptr)? string_copy(ptr) : NULL;
3275 break;
3276 case '2':
3277 addr->auth_id = (*ptr)? string_copy(ptr) : NULL;
3278 break;
3279 case '3':
3280 addr->auth_sndr = (*ptr)? string_copy(ptr) : NULL;
3281 break;
3282 }
6f123593
JH
3283 while (*ptr++);
3284 break;
3285
8ccd00b1 3286#ifndef DISABLE_PRDR
fd98a5c6 3287 case 'P':
8ccd00b1
JH
3288 addr->flags |= af_prdr_used;
3289 break;
fd98a5c6
JH
3290#endif
3291
6c1c3d1d 3292 case 'D':
d6c82d7b 3293 if (!addr) goto ADDR_MISMATCH;
6c1c3d1d
WB
3294 memcpy(&(addr->dsn_aware), ptr, sizeof(addr->dsn_aware));
3295 ptr += sizeof(addr->dsn_aware);
3296 DEBUG(D_deliver) debug_printf("DSN read: addr->dsn_aware = %d\n", addr->dsn_aware);
3297 break;
6c1c3d1d 3298
059ec3d9 3299 case 'A':
d6c82d7b 3300 if (!addr)
059ec3d9
PH
3301 {
3302 ADDR_MISMATCH:
3303 msg = string_sprintf("address count mismatch for data read from pipe "
3304 "for transport process %d for transport %s", pid,
3305 addrlist->transport->driver_name);
3306 done = TRUE;
3307 break;
3308 }
3309
895fbaf2 3310 switch (subid)
059ec3d9 3311 {
e6d2a989
JH
3312#ifdef SUPPORT_SOCKS
3313 case '2': /* proxy information; must arrive before A0 and applies to that addr XXX oops*/
3314 proxy_session = TRUE; /*XXX shouod this be cleared somewhere? */
3315 if (*ptr == 0)
3316 ptr++;
3317 else
3318 {
3319 proxy_local_address = string_copy(ptr);
3320 while(*ptr++);
3321 memcpy(&proxy_local_port, ptr, sizeof(proxy_local_port));
3322 ptr += sizeof(proxy_local_port);
3323 }
3324 break;
3325#endif
3326
895fbaf2
JH
3327#ifdef EXPERIMENTAL_DSN_INFO
3328 case '1': /* must arrive before A0, and applies to that addr */
3329 /* Two strings: smtp_greeting and helo_response */
3330 addr->smtp_greeting = string_copy(ptr);
3331 while(*ptr++);
3332 addr->helo_response = string_copy(ptr);
3333 while(*ptr++);
3334 break;
3335#endif
059ec3d9 3336
895fbaf2
JH
3337 case '0':
3338 addr->transport_return = *ptr++;
3339 addr->special_action = *ptr++;
3340 memcpy(&(addr->basic_errno), ptr, sizeof(addr->basic_errno));
3341 ptr += sizeof(addr->basic_errno);
3342 memcpy(&(addr->more_errno), ptr, sizeof(addr->more_errno));
3343 ptr += sizeof(addr->more_errno);
3344 memcpy(&(addr->flags), ptr, sizeof(addr->flags));
3345 ptr += sizeof(addr->flags);
3346 addr->message = (*ptr)? string_copy(ptr) : NULL;
3347 while(*ptr++);
3348 addr->user_message = (*ptr)? string_copy(ptr) : NULL;
3349 while(*ptr++);
059ec3d9 3350
895fbaf2
JH
3351 /* Always two strings for host information, followed by the port number and DNSSEC mark */
3352
3353 if (*ptr != 0)
3354 {
3355 h = store_get(sizeof(host_item));
3356 h->name = string_copy(ptr);
3357 while (*ptr++);
3358 h->address = string_copy(ptr);
3359 while(*ptr++);
3360 memcpy(&(h->port), ptr, sizeof(h->port));
3361 ptr += sizeof(h->port);
3362 h->dnssec = *ptr == '2' ? DS_YES
3363 : *ptr == '1' ? DS_NO
3364 : DS_UNK;
3365 ptr++;
3366 addr->host_used = h;
3367 }
3368 else ptr++;
3369
3370 /* Finished with this address */
3371
3372 addr = addr->next;
3373 break;
3374 }
059ec3d9
PH
3375 break;
3376
aeaf5db3
JH
3377 /* Local interface address/port */
3378 case 'I':
3379 if (*ptr) sending_ip_address = string_copy(ptr);
3380 while (*ptr++) ;
93a6fce2 3381 if (*ptr) sending_port = atoi(CS ptr);
aeaf5db3
JH
3382 while (*ptr++) ;
3383 break;
3384
059ec3d9
PH
3385 /* Z marks the logical end of the data. It is followed by '0' if
3386 continue_transport was NULL at the end of transporting, otherwise '1'.
3387 We need to know when it becomes NULL during a delivery down a passed SMTP
3388 channel so that we don't try to pass anything more down it. Of course, for
3389 most normal messages it will remain NULL all the time. */
3390
3391 case 'Z':
3392 if (*ptr == '0')
3393 {
3394 continue_transport = NULL;
3395 continue_hostname = NULL;
3396 }
3397 done = TRUE;
bd21a787 3398 DEBUG(D_deliver) debug_printf("Z0%c item read\n", *ptr);
059ec3d9
PH
3399 break;
3400
3401 /* Anything else is a disaster. */
3402
3403 default:
3404 msg = string_sprintf("malformed data (%d) read from pipe for transport "
3405 "process %d for transport %s", ptr[-1], pid,
3406 addr->transport->driver_name);
3407 done = TRUE;
3408 break;
3409 }
3410 }
3411
3412/* The done flag is inspected externally, to determine whether or not to
3413call the function again when the process finishes. */
3414
3415p->done = done;
3416
3417/* If the process hadn't finished, and we haven't seen the end of the data
3418or suffered a disaster, update the rest of the state, and return FALSE to
3419indicate "not finished". */
3420
3421if (!eop && !done)
3422 {
3423 p->addr = addr;
3424 p->msg = msg;
3425 return FALSE;
3426 }
3427
3428/* Close our end of the pipe, to prevent deadlock if the far end is still
3429pushing stuff into it. */
3430
f1e894f3 3431(void)close(fd);
059ec3d9
PH
3432p->fd = -1;
3433
3434/* If we have finished without error, but haven't had data for every address,
3435something is wrong. */
3436
d6c82d7b 3437if (!msg && addr)
059ec3d9
PH
3438 msg = string_sprintf("insufficient address data read from pipe "
3439 "for transport process %d for transport %s", pid,
3440 addr->transport->driver_name);
3441
3442/* If an error message is set, something has gone wrong in getting back
3443the delivery data. Put the message into each address and freeze it. */
3444
d6c82d7b
JH
3445if (msg)
3446 for (addr = addrlist; addr; addr = addr->next)
059ec3d9
PH
3447 {
3448 addr->transport_return = DEFER;
3449 addr->special_action = SPECIAL_FREEZE;
3450 addr->message = msg;
3451 }
059ec3d9
PH
3452
3453/* Return TRUE to indicate we have got all we need from this process, even
3454if it hasn't actually finished yet. */
3455
3456return TRUE;
3457}
3458
3459
3460
3461/*************************************************
3462* Post-process a set of remote addresses *
3463*************************************************/
3464
3465/* Do what has to be done immediately after a remote delivery for each set of
3466addresses, then re-write the spool if necessary. Note that post_process_one
3467puts the address on an appropriate queue; hence we must fish off the next
3468one first. This function is also called if there is a problem with setting
3469up a subprocess to do a remote delivery in parallel. In this case, the final
3470argument contains a message, and the action must be forced to DEFER.
3471
3472Argument:
3473 addr pointer to chain of address items
3474 logflags flags for logging
3475 msg NULL for normal cases; -> error message for unexpected problems
3476 fallback TRUE if processing fallback hosts
3477
3478Returns: nothing
3479*/
3480
3481static void
3482remote_post_process(address_item *addr, int logflags, uschar *msg,
3483 BOOL fallback)
3484{
3485host_item *h;
3486
3487/* If any host addresses were found to be unusable, add them to the unusable
3488tree so that subsequent deliveries don't try them. */
3489
d6c82d7b
JH
3490for (h = addr->host_list; h; h = h->next)
3491 if (h->address)
3492 if (h->status >= hstatus_unusable) tree_add_unusable(h);
059ec3d9
PH
3493
3494/* Now handle each address on the chain. The transport has placed '=' or '-'
3495into the special_action field for each successful delivery. */
3496
d6c82d7b 3497while (addr)
059ec3d9
PH
3498 {
3499 address_item *next = addr->next;
3500
3501 /* If msg == NULL (normal processing) and the result is DEFER and we are
3502 processing the main hosts and there are fallback hosts available, put the
3503 address on the list for fallback delivery. */
3504
d6c82d7b
JH
3505 if ( addr->transport_return == DEFER
3506 && addr->fallback_hosts
3507 && !fallback
3508 && !msg
3509 )
059ec3d9
PH
3510 {
3511 addr->host_list = addr->fallback_hosts;
3512 addr->next = addr_fallback;
3513 addr_fallback = addr;
3514 DEBUG(D_deliver) debug_printf("%s queued for fallback host(s)\n", addr->address);
3515 }
3516
3517 /* If msg is set (=> unexpected problem), set it in the address before
3518 doing the ordinary post processing. */
3519
3520 else
3521 {
d6c82d7b 3522 if (msg)
059ec3d9
PH
3523 {
3524 addr->message = msg;
3525 addr->transport_return = DEFER;
3526 }
3527 (void)post_process_one(addr, addr->transport_return, logflags,
3528 DTYPE_TRANSPORT, addr->special_action);
3529 }
3530
3531 /* Next address */
3532
3533 addr = next;
3534 }
3535
3536/* If we have just delivered down a passed SMTP channel, and that was
3537the last address, the channel will have been closed down. Now that
3538we have logged that delivery, set continue_sequence to 1 so that
3539any subsequent deliveries don't get "*" incorrectly logged. */
3540
d6c82d7b 3541if (!continue_transport) continue_sequence = 1;
059ec3d9
PH
3542}
3543
3544
3545
3546/*************************************************
3547* Wait for one remote delivery subprocess *
3548*************************************************/
3549
3550/* This function is called while doing remote deliveries when either the
3551maximum number of processes exist and we need one to complete so that another
3552can be created, or when waiting for the last ones to complete. It must wait for
3553the completion of one subprocess, empty the control block slot, and return a
3554pointer to the address chain.
3555
3556Arguments: none
3557Returns: pointer to the chain of addresses handled by the process;
3558 NULL if no subprocess found - this is an unexpected error
3559*/
3560
3561static address_item *
3562par_wait(void)
3563{
3564int poffset, status;
3565address_item *addr, *addrlist;
3566pid_t pid;
3567
3568set_process_info("delivering %s: waiting for a remote delivery subprocess "
3569 "to finish", message_id);
3570
3571/* Loop until either a subprocess completes, or there are no subprocesses in
3572existence - in which case give an error return. We cannot proceed just by
3573waiting for a completion, because a subprocess may have filled up its pipe, and
3574be waiting for it to be emptied. Therefore, if no processes have finished, we
3575wait for one of the pipes to acquire some data by calling select(), with a
3576timeout just in case.
3577
3578The simple approach is just to iterate after reading data from a ready pipe.
3579This leads to non-ideal behaviour when the subprocess has written its final Z
3580item, closed the pipe, and is in the process of exiting (the common case). A
3581call to waitpid() yields nothing completed, but select() shows the pipe ready -
3582reading it yields EOF, so you end up with busy-waiting until the subprocess has
3583actually finished.
3584
3585To avoid this, if all the data that is needed has been read from a subprocess
3586after select(), an explicit wait() for it is done. We know that all it is doing
3587is writing to the pipe and then exiting, so the wait should not be long.
3588
3589The non-blocking waitpid() is to some extent just insurance; if we could
3590reliably detect end-of-file on the pipe, we could always know when to do a
3591blocking wait() for a completed process. However, because some systems use
3592NDELAY, which doesn't distinguish between EOF and pipe empty, it is easier to
3593use code that functions without the need to recognize EOF.
3594
3595There's a double loop here just in case we end up with a process that is not in
3596the list of remote delivery processes. Something has obviously gone wrong if
3597this is the case. (For example, a process that is incorrectly left over from
3598routing or local deliveries might be found.) The damage can be minimized by
3599looping back and looking for another process. If there aren't any, the error
3600return will happen. */
3601
3602for (;;) /* Normally we do not repeat this loop */
3603 {
3604 while ((pid = waitpid(-1, &status, WNOHANG)) <= 0)
3605 {
3606 struct timeval tv;
3607 fd_set select_pipes;
3608 int maxpipe, readycount;
3609
3610 /* A return value of -1 can mean several things. If errno != ECHILD, it
3611 either means invalid options (which we discount), or that this process was
3612 interrupted by a signal. Just loop to try the waitpid() again.
3613
3614 If errno == ECHILD, waitpid() is telling us that there are no subprocesses
3615 in existence. This should never happen, and is an unexpected error.
3616 However, there is a nasty complication when running under Linux. If "strace
3617 -f" is being used under Linux to trace this process and its children,
3618 subprocesses are "stolen" from their parents and become the children of the
3619 tracing process. A general wait such as the one we've just obeyed returns
3620 as if there are no children while subprocesses are running. Once a
3621 subprocess completes, it is restored to the parent, and waitpid(-1) finds
3622 it. Thanks to Joachim Wieland for finding all this out and suggesting a
3623 palliative.
3624
3625 This does not happen using "truss" on Solaris, nor (I think) with other
3626 tracing facilities on other OS. It seems to be specific to Linux.
3627
3628 What we do to get round this is to use kill() to see if any of our
3629 subprocesses are still in existence. If kill() gives an OK return, we know
3630 it must be for one of our processes - it can't be for a re-use of the pid,
3631 because if our process had finished, waitpid() would have found it. If any
3632 of our subprocesses are in existence, we proceed to use select() as if
3633 waitpid() had returned zero. I think this is safe. */
3634
3635 if (pid < 0)
3636 {
3637 if (errno != ECHILD) continue; /* Repeats the waitpid() */
3638
3639 DEBUG(D_deliver)
3640 debug_printf("waitpid() returned -1/ECHILD: checking explicitly "
3641 "for process existence\n");
3642
3643 for (poffset = 0; poffset < remote_max_parallel; poffset++)
3644 {
3645 if ((pid = parlist[poffset].pid) != 0 && kill(pid, 0) == 0)
3646 {
3647 DEBUG(D_deliver) debug_printf("process %d still exists: assume "
3648 "stolen by strace\n", (int)pid);
3649 break; /* With poffset set */
3650 }
3651 }
3652
3653 if (poffset >= remote_max_parallel)
3654 {
3655 DEBUG(D_deliver) debug_printf("*** no delivery children found\n");
3656 return NULL; /* This is the error return */
3657 }
3658 }
3659
3660 /* A pid value greater than 0 breaks the "while" loop. A negative value has
3661 been handled above. A return value of zero means that there is at least one
3662 subprocess, but there are no completed subprocesses. See if any pipes are
3663 ready with any data for reading. */
3664
3665 DEBUG(D_deliver) debug_printf("selecting on subprocess pipes\n");
3666
3667 maxpipe = 0;
3668 FD_ZERO(&select_pipes);
3669 for (poffset = 0; poffset < remote_max_parallel; poffset++)
3670 {
3671 if (parlist[poffset].pid != 0)
3672 {
3673 int fd = parlist[poffset].fd;
3674 FD_SET(fd, &select_pipes);
3675 if (fd > maxpipe) maxpipe = fd;
3676 }
3677 }
3678
3679 /* Stick in a 60-second timeout, just in case. */
3680
3681 tv.tv_sec = 60;
3682 tv.tv_usec = 0;
3683
3684 readycount = select(maxpipe + 1, (SELECT_ARG2_TYPE *)&select_pipes,
3685 NULL, NULL, &tv);
3686
3687 /* Scan through the pipes and read any that are ready; use the count
3688 returned by select() to stop when there are no more. Select() can return
3689 with no processes (e.g. if interrupted). This shouldn't matter.
3690
3691 If par_read_pipe() returns TRUE, it means that either the terminating Z was
3692 read, or there was a disaster. In either case, we are finished with this
3693 process. Do an explicit wait() for the process and break the main loop if
3694 it succeeds.
3695
3696 It turns out that we have to deal with the case of an interrupted system
3697 call, which can happen on some operating systems if the signal handling is
3698 set up to do that by default. */
3699
3700 for (poffset = 0;
3701 readycount > 0 && poffset < remote_max_parallel;
3702 poffset++)
3703 {
d6c82d7b
JH
3704 if ( (pid = parlist[poffset].pid) != 0
3705 && FD_ISSET(parlist[poffset].fd, &select_pipes)
3706 )
059ec3d9
PH
3707 {
3708 readycount--;
3709 if (par_read_pipe(poffset, FALSE)) /* Finished with this pipe */
3710 {
3711 for (;;) /* Loop for signals */
3712 {
3713 pid_t endedpid = waitpid(pid, &status, 0);
3714 if (endedpid == pid) goto PROCESS_DONE;
3715 if (endedpid != (pid_t)(-1) || errno != EINTR)
3716 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "Unexpected error return "
3717 "%d (errno = %d) from waitpid() for process %d",
3718 (int)endedpid, errno, (int)pid);
3719 }
3720 }
3721 }
3722 }
3723
3724 /* Now go back and look for a completed subprocess again. */
3725 }
3726
3727 /* A completed process was detected by the non-blocking waitpid(). Find the
3728 data block that corresponds to this subprocess. */
3729
3730 for (poffset = 0; poffset < remote_max_parallel; poffset++)
3731 if (pid == parlist[poffset].pid) break;
3732
3733 /* Found the data block; this is a known remote delivery process. We don't
3734 need to repeat the outer loop. This should be what normally happens. */
3735
3736 if (poffset < remote_max_parallel) break;
3737
3738 /* This situation is an error, but it's probably better to carry on looking
3739 for another process than to give up (as we used to do). */
3740
3741 log_write(0, LOG_MAIN|LOG_PANIC, "Process %d finished: not found in remote "
3742 "transport process list", pid);
3743 } /* End of the "for" loop */
3744
3745/* Come here when all the data was completely read after a select(), and
3746the process in pid has been wait()ed for. */
3747
3748PROCESS_DONE:
3749
3750DEBUG(D_deliver)
3751 {
3752 if (status == 0)
3753 debug_printf("remote delivery process %d ended\n", (int)pid);
3754 else
3755 debug_printf("remote delivery process %d ended: status=%04x\n", (int)pid,
3756 status);
3757 }
3758
3759set_process_info("delivering %s", message_id);
3760
3761/* Get the chain of processed addresses */
3762
3763addrlist = parlist[poffset].addrlist;
3764
3765/* If the process did not finish cleanly, record an error and freeze (except
3766for SIGTERM, SIGKILL and SIGQUIT), and also ensure the journal is not removed,
3767in case the delivery did actually happen. */
3768
3769if ((status & 0xffff) != 0)
3770 {
3771 uschar *msg;
3772 int msb = (status >> 8) & 255;
3773 int lsb = status & 255;
3774 int code = (msb == 0)? (lsb & 0x7f) : msb;
3775
3776 msg = string_sprintf("%s transport process returned non-zero status 0x%04x: "
3777 "%s %d",
3778 addrlist->transport->driver_name,
3779 status,
3780 (msb == 0)? "terminated by signal" : "exit code",
3781 code);
3782
3783 if (msb != 0 || (code != SIGTERM && code != SIGKILL && code != SIGQUIT))
3784 addrlist->special_action = SPECIAL_FREEZE;
3785
d6c82d7b 3786 for (addr = addrlist; addr; addr = addr->next)
059ec3d9
PH
3787 {
3788 addr->transport_return = DEFER;
3789 addr->message = msg;
3790 }
3791
3792 remove_journal = FALSE;
3793 }
3794
3795/* Else complete reading the pipe to get the result of the delivery, if all
3796the data has not yet been obtained. */
3797
3798else if (!parlist[poffset].done) (void)par_read_pipe(poffset, TRUE);
3799
3800/* Put the data count and return path into globals, mark the data slot unused,
3801decrement the count of subprocesses, and return the address chain. */
3802
3803transport_count = parlist[poffset].transport_count;
3804used_return_path = parlist[poffset].return_path;
3805parlist[poffset].pid = 0;
3806parcount--;
3807return addrlist;
3808}
3809
3810
3811
3812/*************************************************
3813* Wait for subprocesses and post-process *
3814*************************************************/
3815
3816/* This function waits for subprocesses until the number that are still running
3817is below a given threshold. For each complete subprocess, the addresses are
3818post-processed. If we can't find a running process, there is some shambles.
3819Better not bomb out, as that might lead to multiple copies of the message. Just
3820log and proceed as if all done.
3821
3822Arguments:
3823 max maximum number of subprocesses to leave running
3824 fallback TRUE if processing fallback hosts
3825
3826Returns: nothing
3827*/
3828
3829static void
3830par_reduce(int max, BOOL fallback)
3831{
3832while (parcount > max)
3833 {
3834 address_item *doneaddr = par_wait();
d6c82d7b 3835 if (!doneaddr)
059ec3d9
PH
3836 {
3837 log_write(0, LOG_MAIN|LOG_PANIC,
3838 "remote delivery process count got out of step");
3839 parcount = 0;
3840 }
fa41615d
JH
3841 else
3842 {
3843 transport_instance * tp = doneaddr->transport;
3844 if (tp->max_parallel)
3845 enq_end(string_sprintf("tpt-serialize-%s", tp->name));
3846
3847 remote_post_process(doneaddr, LOG_MAIN, NULL, fallback);
3848 }
059ec3d9
PH
3849 }
3850}
3851
3852
3853
3854
1ac6b2e7 3855static void
bd21a787 3856rmt_dlv_checked_write(int fd, char id, char subid, void * buf, int size)
1ac6b2e7 3857{
bd21a787 3858uschar writebuffer[PIPE_HEADER_SIZE + BIG_BUFFER_SIZE];
dc8091e7
JH
3859int header_length;
3860int ret;
bd21a787
WB
3861
3862/* we assume that size can't get larger then BIG_BUFFER_SIZE which currently is set to 16k */
3863/* complain to log if someone tries with buffer sizes we can't handle*/
3864
3865if (size > 99999)
d6c82d7b 3866 {
94431adb 3867 log_write(0, LOG_MAIN|LOG_PANIC_DIE,
bd21a787
WB
3868 "Failed writing transport result to pipe: can't handle buffers > 99999 bytes. truncating!\n");
3869 size = 99999;
d6c82d7b 3870 }
bd21a787
WB
3871
3872/* to keep the write() atomic we build header in writebuffer and copy buf behind */
3873/* two write() calls would increase the complexity of reading from pipe */
3874
3875/* convert size to human readable string prepended by id and subid */
b75960c8 3876header_length = snprintf(CS writebuffer, PIPE_HEADER_SIZE+1, "%c%c%05d", id, subid, size);
bd21a787 3877if (header_length != PIPE_HEADER_SIZE)
d6c82d7b 3878 {
bd21a787
WB
3879 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "header snprintf failed\n");
3880 writebuffer[0] = '\0';
d6c82d7b 3881 }
bd21a787 3882
94431adb 3883DEBUG(D_deliver) debug_printf("header write id:%c,subid:%c,size:%d,final:%s\n",
bd21a787
WB
3884 id, subid, size, writebuffer);
3885
3886if (buf && size > 0)
3887 memcpy(writebuffer + PIPE_HEADER_SIZE, buf, size);
3888
3889size += PIPE_HEADER_SIZE;
dc8091e7 3890if ((ret = write(fd, writebuffer, size)) != size)
1ac6b2e7
JH
3891 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "Failed writing transport result to pipe: %s\n",
3892 ret == -1 ? strerror(errno) : "short write");
3893}
3894
059ec3d9
PH
3895/*************************************************
3896* Do remote deliveries *
3897*************************************************/
3898
3899/* This function is called to process the addresses in addr_remote. We must
3900pick off the queue all addresses that have the same transport, remote
3901destination, and errors address, and hand them to the transport in one go,
3902subject to some configured limitations. If this is a run to continue delivering
3903to an existing delivery channel, skip all but those addresses that can go to
3904that channel. The skipped addresses just get deferred.
3905
3906If mua_wrapper is set, all addresses must be able to be sent in a single
3907transaction. If not, this function yields FALSE.
3908
3909In Exim 4, remote deliveries are always done in separate processes, even
3910if remote_max_parallel = 1 or if there's only one delivery to do. The reason
3911is so that the base process can retain privilege. This makes the
3912implementation of fallback transports feasible (though not initially done.)
3913
3914We create up to the configured number of subprocesses, each of which passes
3915back the delivery state via a pipe. (However, when sending down an existing
3916connection, remote_max_parallel is forced to 1.)
3917
3918Arguments:
3919 fallback TRUE if processing fallback hosts
3920
3921Returns: TRUE normally
3922 FALSE if mua_wrapper is set and the addresses cannot all be sent
3923 in one transaction
3924*/
3925
3926static BOOL
3927do_remote_deliveries(BOOL fallback)
3928{
3929int parmax;
3930int delivery_count;
3931int poffset;
3932
3933parcount = 0; /* Number of executing subprocesses */
3934
3935/* When sending down an existing channel, only do one delivery at a time.
3936We use a local variable (parmax) to hold the maximum number of processes;
3937this gets reduced from remote_max_parallel if we can't create enough pipes. */
3938
d6c82d7b 3939if (continue_transport) remote_max_parallel = 1;
059ec3d9
PH
3940parmax = remote_max_parallel;
3941
3942/* If the data for keeping a list of processes hasn't yet been
3943set up, do so. */
3944
d6c82d7b 3945if (!parlist)
059ec3d9
PH
3946 {
3947 parlist = store_get(remote_max_parallel * sizeof(pardata));
3948 for (poffset = 0; poffset < remote_max_parallel; poffset++)
3949 parlist[poffset].pid = 0;
3950 }
3951
3952/* Now loop for each remote delivery */
3953
d6c82d7b 3954for (delivery_count = 0; addr_remote; delivery_count++)
059ec3d9
PH
3955 {
3956 pid_t pid;
3957 uid_t uid;
3958 gid_t gid;
3959 int pfd[2];
3960 int address_count = 1;
3961 int address_count_max;
3962 BOOL multi_domain;
3963 BOOL use_initgroups;
3964 BOOL pipe_done = FALSE;
3965 transport_instance *tp;
3966 address_item **anchor = &addr_remote;
3967 address_item *addr = addr_remote;
3968 address_item *last = addr;
3969 address_item *next;
d6c82d7b 3970 uschar * panicmsg;
fa41615d 3971 uschar * serialize_key = NULL;
059ec3d9
PH
3972
3973 /* Pull the first address right off the list. */
3974
3975 addr_remote = addr->next;
3976 addr->next = NULL;
3977
3978 DEBUG(D_deliver|D_transport)
3979 debug_printf("--------> %s <--------\n", addr->address);
3980
3981 /* If no transport has been set, there has been a big screw-up somewhere. */
3982
d6c82d7b 3983 if (!(tp = addr->transport))
059ec3d9
PH
3984 {
3985 disable_logging = FALSE; /* Jic */
d6c82d7b
JH
3986 panicmsg = US"No transport set by router";
3987 goto panic_continue;
059ec3d9
PH
3988 }
3989
3990 /* Check that this base address hasn't previously been delivered to this
3991 transport. The check is necessary at this point to handle homonymic addresses
3992 correctly in cases where the pattern of redirection changes between delivery
3993 attempts. Non-homonymic previous delivery is detected earlier, at routing
3994 time. */
3995
c2c19e9d 3996 if (previously_transported(addr, FALSE)) continue;
059ec3d9
PH
3997
3998 /* Force failure if the message is too big. */
3999
d6c82d7b 4000 if (tp->message_size_limit)
059ec3d9
PH
4001 {
4002 int rc = check_message_size(tp, addr);
4003 if (rc != OK)
4004 {
4005 addr->transport_return = rc;
4006 remote_post_process(addr, LOG_MAIN, NULL, fallback);
4007 continue;
4008 }
4009 }
4010
4011 /* Get the flag which specifies whether the transport can handle different
506900af
JH
4012 domains that nevertheless resolve to the same set of hosts. If it needs
4013 expanding, get variables set: $address_data, $domain_data, $localpart_data,
4014 $host, $host_address, $host_port. */
4015 if (tp->expand_multi_domain)
4016 deliver_set_expansions(addr);
4017
4018 if (exp_bool(addr, US"transport", tp->name, D_transport,
4019 US"multi_domain", tp->multi_domain, tp->expand_multi_domain,
4020 &multi_domain) != OK)
4021 {
4022 deliver_set_expansions(NULL);
d6c82d7b
JH
4023 panicmsg = addr->message;
4024 goto panic_continue;
506900af 4025 }
059ec3d9
PH
4026
4027 /* Get the maximum it can handle in one envelope, with zero meaning
4028 unlimited, which is forced for the MUA wrapper case. */
4029
4030 address_count_max = tp->max_addresses;
4031 if (address_count_max == 0 || mua_wrapper) address_count_max = 999999;
4032
4033
4034 /************************************************************************/
4035 /***** This is slightly experimental code, but should be safe. *****/
4036
4037 /* The address_count_max value is the maximum number of addresses that the
4038 transport can send in one envelope. However, the transport must be capable of
4039 dealing with any number of addresses. If the number it gets exceeds its
4040 envelope limitation, it must send multiple copies of the message. This can be
4041 done over a single connection for SMTP, so uses less resources than making
4042 multiple connections. On the other hand, if remote_max_parallel is greater
4043 than one, it is perhaps a good idea to use parallel processing to move the
4044 message faster, even if that results in multiple simultaneous connections to
4045 the same host.
4046
4047 How can we come to some compromise between these two ideals? What we do is to
4048 limit the number of addresses passed to a single instance of a transport to
4049 the greater of (a) its address limit (rcpt_max for SMTP) and (b) the total
4050 number of addresses routed to remote transports divided by
4051 remote_max_parallel. For example, if the message has 100 remote recipients,
4052 remote max parallel is 2, and rcpt_max is 10, we'd never send more than 50 at
4053 once. But if rcpt_max is 100, we could send up to 100.
4054
4055 Of course, not all the remotely addresses in a message are going to go to the
4056 same set of hosts (except in smarthost configurations), so this is just a
4057 heuristic way of dividing up the work.
4058
4059 Furthermore (1), because this may not be wanted in some cases, and also to
4060 cope with really pathological cases, there is also a limit to the number of
4061 messages that are sent over one connection. This is the same limit that is
4062 used when sending several different messages over the same connection.
4063 Continue_sequence is set when in this situation, to the number sent so
4064 far, including this message.
4065
4066 Furthermore (2), when somebody explicitly sets the maximum value to 1, it
4067 is probably because they are using VERP, in which case they want to pass only
4068 one address at a time to the transport, in order to be able to use
4069 $local_part and $domain in constructing a new return path. We could test for
4070 the use of these variables, but as it is so likely they will be used when the
4071 maximum is 1, we don't bother. Just leave the value alone. */
4072
d6c82d7b
JH
4073 if ( address_count_max != 1
4074 && address_count_max < remote_delivery_count/remote_max_parallel
4075 )
059ec3d9
PH
4076 {
4077 int new_max = remote_delivery_count/remote_max_parallel;
4078 int message_max = tp->connection_max_messages;
4079 if (connection_max_messages >= 0) message_max = connection_max_messages;
4080 message_max -= continue_sequence - 1;
4081 if (message_max > 0 && new_max > address_count_max * message_max)
4082 new_max = address_count_max * message_max;
4083 address_count_max = new_max;
4084 }
4085
4086 /************************************************************************/
4087
4088
4089 /* Pick off all addresses which have the same transport, errors address,
4090 destination, and extra headers. In some cases they point to the same host
4091 list, but we also need to check for identical host lists generated from
4092 entirely different domains. The host list pointers can be NULL in the case
4093 where the hosts are defined in the transport. There is also a configured
4094 maximum limit of addresses that can be handled at once (see comments above
506900af
JH
4095 for how it is computed).
4096 If the transport does not handle multiple domains, enforce that also,
4097 and if it might need a per-address check for this, re-evaluate it.
4098 */
059ec3d9 4099
d6c82d7b 4100 while ((next = *anchor) && address_count < address_count_max)
059ec3d9 4101 {
506900af
JH
4102 BOOL md;
4103 if ( (multi_domain || Ustrcmp(next->domain, addr->domain) == 0)
4104 && tp == next->transport
4105 && same_hosts(next->host_list, addr->host_list)
d43cbe25
JH
4106 && same_strings(next->prop.errors_address, addr->prop.errors_address)
4107 && same_headers(next->prop.extra_headers, addr->prop.extra_headers)
506900af 4108 && same_ugid(tp, next, addr)
d43cbe25
JH
4109 && ( next->prop.remove_headers == addr->prop.remove_headers
4110 || ( next->prop.remove_headers
4111 && addr->prop.remove_headers
4112 && Ustrcmp(next->prop.remove_headers, addr->prop.remove_headers) == 0
506900af
JH
4113 ) )
4114 && ( !multi_domain
4115 || ( (
4116 !tp->expand_multi_domain || (deliver_set_expansions(next), 1),
4117 exp_bool(addr,
4118 US"transport", next->transport->name, D_transport,
4119 US"multi_domain", next->transport->multi_domain,
4120 next->transport->expand_multi_domain, &md) == OK
4121 )
4122 && md
4123 ) ) )
059ec3d9
PH
4124 {
4125 *anchor = next->next;
4126 next->next = NULL;
4127 next->first = addr; /* remember top one (for retry processing) */
4128 last->next = next;
4129 last = next;
4130 address_count++;
4131 }
4132 else anchor = &(next->next);
506900af 4133 deliver_set_expansions(NULL);
059ec3d9
PH
4134 }
4135
4136 /* If we are acting as an MUA wrapper, all addresses must go in a single
4137 transaction. If not, put them back on the chain and yield FALSE. */
4138
d6c82d7b 4139 if (mua_wrapper && addr_remote)
059ec3d9
PH
4140 {
4141 last->next = addr_remote;
4142 addr_remote = addr;
4143 return FALSE;
4144 }
4145
fa41615d
JH
4146 /* If the transport is limited for parallellism, enforce that here.
4147 The hints DB entry is decremented in par_reduce(), when we reap the
4148 transport process. */
4149
3070ceee
JH
4150 if (tpt_parallel_check(tp, addr, &serialize_key))
4151 if ((panicmsg = expand_string_message))
fa41615d 4152 goto panic_continue;
3070ceee
JH
4153 else
4154 continue; /* Loop for the next set of addresses. */
fa41615d 4155
059ec3d9
PH
4156 /* Set up the expansion variables for this set of addresses */
4157
4158 deliver_set_expansions(addr);
4159
018c60d7
JH
4160 /* Ensure any transport-set auth info is fresh */
4161 addr->authenticator = addr->auth_id = addr->auth_sndr = NULL;
4162
059ec3d9
PH
4163 /* Compute the return path, expanding a new one if required. The old one
4164 must be set first, as it might be referred to in the expansion. */
4165
d6c82d7b 4166 if(addr->prop.errors_address)
d43cbe25 4167 return_path = addr->prop.errors_address;
384152a6 4168#ifdef EXPERIMENTAL_SRS
d6c82d7b 4169 else if(addr->prop.srs_sender)
d43cbe25 4170 return_path = addr->prop.srs_sender;
384152a6
TK
4171#endif
4172 else
4173 return_path = sender_address;
059ec3d9 4174
d6c82d7b 4175 if (tp->return_path)
059ec3d9
PH
4176 {
4177 uschar *new_return_path = expand_string(tp->return_path);
d6c82d7b
JH
4178 if (new_return_path)
4179 return_path = new_return_path;
4180 else if (!expand_string_forcedfail)
059ec3d9 4181 {
d6c82d7b
JH
4182 panicmsg = string_sprintf("Failed to expand return path \"%s\": %s",
4183 tp->return_path, expand_string_message);
fa41615d 4184 goto enq_continue;
059ec3d9 4185 }
059ec3d9
PH
4186 }
4187
929ba01c
PH
4188 /* Find the uid, gid, and use_initgroups setting for this transport. Failure
4189 logs and sets up error messages, so we just post-process and continue with
4190 the next address. */
4191
4192 if (!findugid(addr, tp, &uid, &gid, &use_initgroups))
4193 {
d6c82d7b 4194 panicmsg = NULL;
fa41615d 4195 goto enq_continue;
929ba01c
PH
4196 }
4197
059ec3d9
PH
4198 /* If this transport has a setup function, call it now so that it gets
4199 run in this process and not in any subprocess. That way, the results of
929ba01c
PH
4200 any setup that are retained by the transport can be reusable. One of the
4201 things the setup does is to set the fallback host lists in the addresses.
4202 That is why it is called at this point, before the continue delivery
4203 processing, because that might use the fallback hosts. */
059ec3d9 4204
d6c82d7b 4205 if (tp->setup)
929ba01c 4206 (void)((tp->setup)(addr->transport, addr, NULL, uid, gid, NULL));
059ec3d9
PH
4207
4208 /* If this is a run to continue delivery down an already-established
4209 channel, check that this set of addresses matches the transport and
4210 the channel. If it does not, defer the addresses. If a host list exists,
4211 we must check that the continue host is on the list. Otherwise, the
4212 host is set in the transport. */
4213
4214 continue_more = FALSE; /* In case got set for the last lot */
d6c82d7b 4215 if (continue_transport)
059ec3d9
PH
4216 {
4217 BOOL ok = Ustrcmp(continue_transport, tp->name) == 0;
d6c82d7b 4218 if (ok && addr->host_list)
059ec3d9
PH
4219 {
4220 host_item *h;
4221 ok = FALSE;
d6c82d7b 4222 for (h = addr->host_list; h; h = h->next)
059ec3d9
PH
4223 if (Ustrcmp(h->name, continue_hostname) == 0)
4224 { ok = TRUE; break; }
059ec3d9
PH
4225 }
4226
4227 /* Addresses not suitable; defer or queue for fallback hosts (which
4228 might be the continue host) and skip to next address. */
4229
4230 if (!ok)
4231 {
4232 DEBUG(D_deliver) debug_printf("not suitable for continue_transport\n");
fa41615d 4233 if (serialize_key) enq_end(serialize_key);
059ec3d9 4234
d6c82d7b 4235 if (addr->fallback_hosts && !fallback)
059ec3d9 4236 {
fa41615d 4237 for (next = addr; ; next = next->next)
059ec3d9
PH
4238 {
4239 next->host_list = next->fallback_hosts;
4240 DEBUG(D_deliver) debug_printf("%s queued for fallback host(s)\n", next->address);
d6c82d7b 4241 if (!next->next) break;
059ec3d9
PH
4242 }
4243 next->next = addr_fallback;
4244 addr_fallback = addr;
4245 }
4246
77560253 4247 else if (next)
3070ceee
JH
4248 {
4249 while (next->next) next = next->next;
4250 next->next = addr_defer;
4251 addr_defer = addr;
4252 }
059ec3d9
PH
4253
4254 continue;
4255 }
4256
4257 /* Set a flag indicating whether there are further addresses that list
4258 the continued host. This tells the transport to leave the channel open,
4259 but not to pass it to another delivery process. */
4260
d6c82d7b 4261 for (next = addr_remote; next; next = next->next)
059ec3d9
PH
4262 {
4263 host_item *h;
d6c82d7b 4264 for (h = next->host_list; h; h = h->next)
059ec3d9
PH
4265 if (Ustrcmp(h->name, continue_hostname) == 0)
4266 { continue_more = TRUE; break; }
059ec3d9
PH
4267 }
4268 }
4269
4270 /* The transports set up the process info themselves as they may connect
4271 to more than one remote machine. They also have to set up the filter
4272 arguments, if required, so that the host name and address are available
4273 for expansion. */
4274
4275 transport_filter_argv = NULL;
4276
059ec3d9
PH
4277 /* Create the pipe for inter-process communication. If pipe creation
4278 fails, it is probably because the value of remote_max_parallel is so
4279 large that too many file descriptors for pipes have been created. Arrange
4280 to wait for a process to finish, and then try again. If we still can't
4281 create a pipe when all processes have finished, break the retry loop. */
4282
4283 while (!pipe_done)
4284 {
4285 if (pipe(pfd) == 0) pipe_done = TRUE;
4286 else if (parcount > 0) parmax = parcount;
4287 else break;
4288
4289 /* We need to make the reading end of the pipe non-blocking. There are
4290 two different options for this. Exim is cunningly (I hope!) coded so
4291 that it can use either of them, though it prefers O_NONBLOCK, which
4292 distinguishes between EOF and no-more-data. */
4293
a7538db1 4294#ifdef O_NONBLOCK
ff790e47 4295 (void)fcntl(pfd[pipe_read], F_SETFL, O_NONBLOCK);
a7538db1 4296#else
ff790e47 4297 (void)fcntl(pfd[pipe_read], F_SETFL, O_NDELAY);
a7538db1 4298#endif
059ec3d9
PH
4299
4300 /* If the maximum number of subprocesses already exist, wait for a process
4301 to finish. If we ran out of file descriptors, parmax will have been reduced
4302 from its initial value of remote_max_parallel. */
4303
4304 par_reduce(parmax - 1, fallback);
4305 }
4306
4307 /* If we failed to create a pipe and there were no processes to wait
4308 for, we have to give up on this one. Do this outside the above loop
4309 so that we can continue the main loop. */
4310
4311 if (!pipe_done)
4312 {
d6c82d7b 4313 panicmsg = string_sprintf("unable to create pipe: %s", strerror(errno));
fa41615d 4314 goto enq_continue;
059ec3d9
PH
4315 }
4316
4317 /* Find a free slot in the pardata list. Must do this after the possible
4318 waiting for processes to finish, because a terminating process will free
4319 up a slot. */
4320
4321 for (poffset = 0; poffset < remote_max_parallel; poffset++)
d6c82d7b
JH
4322 if (parlist[poffset].pid == 0)
4323 break;
059ec3d9
PH
4324
4325 /* If there isn't one, there has been a horrible disaster. */
4326
4327 if (poffset >= remote_max_parallel)
4328 {
f1e894f3
PH
4329 (void)close(pfd[pipe_write]);
4330 (void)close(pfd[pipe_read]);
d6c82d7b 4331 panicmsg = US"Unexpectedly no free subprocess slot";
fa41615d 4332 goto enq_continue;
059ec3d9
PH
4333 }
4334
4335 /* Now fork a subprocess to do the remote delivery, but before doing so,
4336 ensure that any cached resourses are released so as not to interfere with
4337 what happens in the subprocess. */
4338
4339 search_tidyup();
4340
4341 if ((pid = fork()) == 0)
4342 {
4343 int fd = pfd[pipe_write];
4344 host_item *h;
4345
2a47f028
JH
4346 /* Setting this global in the subprocess means we need never clear it */
4347 transport_name = tp->name;
059ec3d9 4348
2a47f028 4349 /* There are weird circumstances in which logging is disabled */
059ec3d9
PH
4350 disable_logging = tp->disable_logging;
4351
4352 /* Show pids on debug output if parallelism possible */
4353
d6c82d7b 4354 if (parmax > 1 && (parcount > 0 || addr_remote))
059ec3d9
PH
4355 {
4356 DEBUG(D_any|D_v) debug_selector |= D_pid;
4357 DEBUG(D_deliver) debug_printf("Remote delivery process started\n");
4358 }
4359
4360 /* Reset the random number generator, so different processes don't all
4361 have the same sequence. In the test harness we want different, but
4362 predictable settings for each delivery process, so do something explicit
4363 here rather they rely on the fixed reset in the random number function. */
4364
4365 random_seed = running_in_test_harness? 42 + 2*delivery_count : 0;
4366
4367 /* Set close-on-exec on the pipe so that it doesn't get passed on to
4368 a new process that may be forked to do another delivery down the same
4369 SMTP connection. */
4370
ff790e47 4371 (void)fcntl(fd, F_SETFD, fcntl(fd, F_GETFD) | FD_CLOEXEC);
059ec3d9
PH
4372
4373 /* Close open file descriptors for the pipes of other processes
4374 that are running in parallel. */
4375
4376 for (poffset = 0; poffset < remote_max_parallel; poffset++)
f1e894f3 4377 if (parlist[poffset].pid != 0) (void)close(parlist[poffset].fd);
059ec3d9
PH
4378
4379 /* This process has inherited a copy of the file descriptor
4380 for the data file, but its file pointer is shared with all the
4381 other processes running in parallel. Therefore, we have to re-open
4382 the file in order to get a new file descriptor with its own
4383 file pointer. We don't need to lock it, as the lock is held by
4384 the parent process. There doesn't seem to be any way of doing
4385 a dup-with-new-file-pointer. */
4386
f1e894f3 4387 (void)close(deliver_datafile);
41313d92
JH
4388 {
4389 uschar * fname = spool_fname(US"input", message_subdir, message_id, US"-D");
059ec3d9 4390
41313d92 4391 if ((deliver_datafile = Uopen(fname, O_RDWR | O_APPEND, 0)) < 0)
059ec3d9 4392 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "Failed to reopen %s for remote "
41313d92
JH
4393 "parallel delivery: %s", fname, strerror(errno));
4394 }
059ec3d9
PH
4395
4396 /* Set the close-on-exec flag */
4397
ff790e47 4398 (void)fcntl(deliver_datafile, F_SETFD, fcntl(deliver_datafile, F_GETFD) |
059ec3d9
PH
4399 FD_CLOEXEC);
4400
4401 /* Set the uid/gid of this process; bombs out on failure. */
4402
4403 exim_setugid(uid, gid, use_initgroups,
4404 string_sprintf("remote delivery to %s with transport=%s",
4405 addr->address, tp->name));
4406
4407 /* Close the unwanted half of this process' pipe, set the process state,
4408 and run the transport. Afterwards, transport_count will contain the number
4409 of bytes written. */
4410
f1e894f3 4411 (void)close(pfd[pipe_read]);
059ec3d9
PH
4412 set_process_info("delivering %s using %s", message_id, tp->name);
4413 debug_print_string(tp->debug_string);
4414 if (!(tp->info->code)(addr->transport, addr)) replicate_status(addr);
4415
4416 set_process_info("delivering %s (just run %s for %s%s in subprocess)",
d6c82d7b 4417 message_id, tp->name, addr->address, addr->next ? ", ..." : "");
059ec3d9
PH
4418
4419 /* Ensure any cached resources that we used are now released */
4420
4421 search_tidyup();
4422
4423 /* Pass the result back down the pipe. This is a lot more information
4424 than is needed for a local delivery. We have to send back the error
4425 status for each address, the usability status for each host that is
4426 flagged as unusable, and all the retry items. When TLS is in use, we
4427 send also the cipher and peerdn information. Each type of information
4428 is flagged by an identifying byte, and is then in a fixed format (with
4429 strings terminated by zeros), and there is a final terminator at the
4430 end. The host information and retry information is all attached to
4431 the first address, so that gets sent at the start. */
4432
4433 /* Host unusability information: for most success cases this will
4434 be null. */
4435
d6c82d7b 4436 for (h = addr->host_list; h; h = h->next)
059ec3d9 4437 {
d6c82d7b 4438 if (!h->address || h->status < hstatus_unusable) continue;
bd21a787
WB
4439 sprintf(CS big_buffer, "%c%c%s", h->status, h->why, h->address);
4440 rmt_dlv_checked_write(fd, 'H', '0', big_buffer, Ustrlen(big_buffer+2) + 3);
059ec3d9
PH
4441 }
4442
4443 /* The number of bytes written. This is the same for each address. Even
4444 if we sent several copies of the message down the same connection, the
4445 size of each one is the same, and it's that value we have got because
4446 transport_count gets reset before calling transport_write_message(). */
4447
bd21a787
WB
4448 memcpy(big_buffer, &transport_count, sizeof(transport_count));
4449 rmt_dlv_checked_write(fd, 'S', '0', big_buffer, sizeof(transport_count));
059ec3d9 4450
6f123593
JH
4451 /* Information about what happened to each address. Four item types are
4452 used: an optional 'X' item first, for TLS information, then an optional "C"
4453 item for any client-auth info followed by 'R' items for any retry settings,
4454 and finally an 'A' item for the remaining data. */
059ec3d9 4455
d6c82d7b 4456 for(; addr; addr = addr->next)
059ec3d9
PH
4457 {
4458 uschar *ptr;
4459 retry_item *r;
4460
4461 /* The certificate verification status goes into the flags */
817d9f57 4462 if (tls_out.certificate_verified) setflag(addr, af_cert_verified);
a0a2d1ee 4463#ifdef EXPERIMENTAL_DANE
53a7196b 4464 if (tls_out.dane_verified) setflag(addr, af_dane_verified);
a0a2d1ee 4465#endif
059ec3d9
PH
4466
4467 /* Use an X item only if there's something to send */
a7538db1 4468#ifdef SUPPORT_TLS
9d1c15ef 4469 if (addr->cipher)
059ec3d9 4470 {
e6d2a989 4471 ptr = big_buffer + sprintf(CS big_buffer, "%.128s", addr->cipher) + 1;
9d1c15ef
JH
4472 if (!addr->peerdn)
4473 *ptr++ = 0;
4474 else
059ec3d9 4475 {
e6d2a989
JH
4476 ptr += sprintf(CS ptr, "%.512s", addr->peerdn);
4477 ptr++;
059ec3d9 4478 }
9d1c15ef 4479
bd21a787 4480 rmt_dlv_checked_write(fd, 'X', '1', big_buffer, ptr - big_buffer);
059ec3d9 4481 }
9d1c15ef
JH
4482 if (addr->peercert)
4483 {
4484 ptr = big_buffer;
9d1c15ef
JH
4485 if (!tls_export_cert(ptr, big_buffer_size-2, addr->peercert))
4486 while(*ptr++);
4487 else
4488 *ptr++ = 0;
bd21a787 4489 rmt_dlv_checked_write(fd, 'X', '2', big_buffer, ptr - big_buffer);
9d1c15ef
JH
4490 }
4491 if (addr->ourcert)
4492 {
4493 ptr = big_buffer;
9d1c15ef
JH
4494 if (!tls_export_cert(ptr, big_buffer_size-2, addr->ourcert))
4495 while(*ptr++);
4496 else
4497 *ptr++ = 0;
bd21a787 4498 rmt_dlv_checked_write(fd, 'X', '3', big_buffer, ptr - big_buffer);
9d1c15ef 4499 }
a7538db1 4500# ifndef DISABLE_OCSP
018058b2
JH
4501 if (addr->ocsp > OCSP_NOT_REQ)
4502 {
e6d2a989 4503 ptr = big_buffer + sprintf(CS big_buffer, "%c", addr->ocsp + '0') + 1;
bd21a787 4504 rmt_dlv_checked_write(fd, 'X', '4', big_buffer, ptr - big_buffer);
018058b2 4505 }
a7538db1
JH
4506# endif
4507#endif /*SUPPORT_TLS*/
059ec3d9 4508
6f123593
JH
4509 if (client_authenticator)
4510 {
e6d2a989 4511 ptr = big_buffer + sprintf(CS big_buffer, "%.64s", client_authenticator) + 1;
bd21a787 4512 rmt_dlv_checked_write(fd, 'C', '1', big_buffer, ptr - big_buffer);
6f123593
JH
4513 }
4514 if (client_authenticated_id)
4515 {
e6d2a989 4516 ptr = big_buffer + sprintf(CS big_buffer, "%.64s", client_authenticated_id) + 1;
bd21a787 4517 rmt_dlv_checked_write(fd, 'C', '2', big_buffer, ptr - big_buffer);
6f123593 4518 }
c8e2fc1e
JH
4519 if (client_authenticated_sender)
4520 {
e6d2a989 4521 ptr = big_buffer + sprintf(CS big_buffer, "%.64s", client_authenticated_sender) + 1;
bd21a787 4522 rmt_dlv_checked_write(fd, 'C', '3', big_buffer, ptr - big_buffer);
c8e2fc1e 4523 }
6f123593 4524
a7538db1 4525#ifndef DISABLE_PRDR
783b385f 4526 if (addr->flags & af_prdr_used)
bd21a787 4527 rmt_dlv_checked_write(fd, 'P', '0', NULL, 0);
b75960c8 4528#endif
fd98a5c6 4529
bd21a787
WB
4530 memcpy(big_buffer, &addr->dsn_aware, sizeof(addr->dsn_aware));
4531 rmt_dlv_checked_write(fd, 'D', '0', big_buffer, sizeof(addr->dsn_aware));
6c1c3d1d 4532 DEBUG(D_deliver) debug_printf("DSN write: addr->dsn_aware = %d\n", addr->dsn_aware);
6c1c3d1d 4533
059ec3d9
PH
4534 /* Retry information: for most success cases this will be null. */
4535
d6c82d7b 4536 for (r = addr->retries; r; r = r->next)
059ec3d9 4537 {
bd21a787 4538 sprintf(CS big_buffer, "%c%.500s", r->flags, r->key);
059ec3d9
PH
4539 ptr = big_buffer + Ustrlen(big_buffer+2) + 3;
4540 memcpy(ptr, &(r->basic_errno), sizeof(r->basic_errno));
4541 ptr += sizeof(r->basic_errno);
4542 memcpy(ptr, &(r->more_errno), sizeof(r->more_errno));
4543 ptr += sizeof(r->more_errno);
d6c82d7b 4544 if (!r->message) *ptr++ = 0; else
059ec3d9
PH
4545 {
4546 sprintf(CS ptr, "%.512s", r->message);
4547 while(*ptr++);
4548 }
bd21a787 4549 rmt_dlv_checked_write(fd, 'R', '0', big_buffer, ptr - big_buffer);
059ec3d9
PH
4550 }
4551
e6d2a989
JH
4552#ifdef SUPPORT_SOCKS
4553 if (LOGGING(proxy) && proxy_session)
4554 {
4555 ptr = big_buffer;
4556 if (proxy_local_address)
4557 {
4558 DEBUG(D_deliver) debug_printf("proxy_local_address '%s'\n", proxy_local_address);
4559 ptr = big_buffer + sprintf(CS ptr, "%.128s", proxy_local_address) + 1;
4560 DEBUG(D_deliver) debug_printf("proxy_local_port %d\n", proxy_local_port);
4561 memcpy(ptr, &proxy_local_port, sizeof(proxy_local_port));
4562 ptr += sizeof(proxy_local_port);
4563 }
4564 else
4565 *ptr++ = '\0';
4566 rmt_dlv_checked_write(fd, 'A', '2', big_buffer, ptr - big_buffer);
4567 }
4568#endif
4569
895fbaf2
JH
4570#ifdef EXPERIMENTAL_DSN_INFO
4571/*um, are they really per-addr? Other per-conn stuff is not (auth, tls). But host_used is! */
4572 if (addr->smtp_greeting)
4573 {
895fbaf2 4574 DEBUG(D_deliver) debug_printf("smtp_greeting '%s'\n", addr->smtp_greeting);
e6d2a989 4575 ptr = big_buffer + sprintf(CS big_buffer, "%.128s", addr->smtp_greeting) + 1;
895fbaf2
JH
4576 if (addr->helo_response)
4577 {
4578 DEBUG(D_deliver) debug_printf("helo_response '%s'\n", addr->helo_response);
e6d2a989 4579 ptr += sprintf(CS ptr, "%.128s", addr->helo_response) + 1;
895fbaf2
JH
4580 }
4581 else
4582 *ptr++ = '\0';
4583 rmt_dlv_checked_write(fd, 'A', '1', big_buffer, ptr - big_buffer);
4584 }
4585#endif
4586
4587 /* The rest of the information goes in an 'A0' item. */
059ec3d9 4588
e6d2a989 4589 sprintf(CS big_buffer, "%c%c", addr->transport_return, addr->special_action);
895fbaf2 4590 ptr = big_buffer + 2;
059ec3d9
PH
4591 memcpy(ptr, &(addr->basic_errno), sizeof(addr->basic_errno));
4592 ptr += sizeof(addr->basic_errno);
4593 memcpy(ptr, &(addr->more_errno), sizeof(addr->more_errno));
4594 ptr += sizeof(addr->more_errno);
4595 memcpy(ptr, &(addr->flags), sizeof(addr->flags));
4596 ptr += sizeof(addr->flags);
4597
d6c82d7b 4598 if (!addr->message) *ptr++ = 0; else
e6d2a989 4599 ptr += sprintf(CS ptr, "%.1024s", addr->message) + 1;
059ec3d9 4600
d6c82d7b 4601 if (!addr->user_message) *ptr++ = 0; else
e6d2a989 4602 ptr += sprintf(CS ptr, "%.1024s", addr->user_message) + 1;
059ec3d9 4603
d6c82d7b 4604 if (!addr->host_used) *ptr++ = 0; else
059ec3d9 4605 {
e6d2a989
JH
4606 ptr += sprintf(CS ptr, "%.256s", addr->host_used->name) + 1;
4607 ptr += sprintf(CS ptr, "%.64s", addr->host_used->address) + 1;
059ec3d9
PH
4608 memcpy(ptr, &(addr->host_used->port), sizeof(addr->host_used->port));
4609 ptr += sizeof(addr->host_used->port);
783b385f
JH
4610
4611 /* DNS lookup status */
4612 *ptr++ = addr->host_used->dnssec==DS_YES ? '2'
4613 : addr->host_used->dnssec==DS_NO ? '1' : '0';
4614
059ec3d9 4615 }
bd21a787 4616 rmt_dlv_checked_write(fd, 'A', '0', big_buffer, ptr - big_buffer);
059ec3d9
PH
4617 }
4618
aeaf5db3 4619 /* Local interface address/port */
895fbaf2
JH
4620#ifdef EXPERIMENTAL_DSN_INFO
4621 if (sending_ip_address)
4622#else
6c6d6e48 4623 if (LOGGING(incoming_interface) && sending_ip_address)
895fbaf2 4624#endif
aeaf5db3 4625 {
e6d2a989
JH
4626 uschar * ptr;
4627 ptr = big_buffer + sprintf(CS big_buffer, "%.128s", sending_ip_address) + 1;
4628 ptr += sprintf(CS ptr, "%d", sending_port) + 1;
aeaf5db3
JH
4629 rmt_dlv_checked_write(fd, 'I', '0', big_buffer, ptr - big_buffer);
4630 }
4631
059ec3d9
PH
4632 /* Add termination flag, close the pipe, and that's it. The character
4633 after 'Z' indicates whether continue_transport is now NULL or not.
4634 A change from non-NULL to NULL indicates a problem with a continuing
4635 connection. */
4636
d6c82d7b 4637 big_buffer[0] = continue_transport ? '1' : '0';
bd21a787 4638 rmt_dlv_checked_write(fd, 'Z', '0', big_buffer, 1);
f1e894f3 4639 (void)close(fd);
059ec3d9
PH
4640 exit(EXIT_SUCCESS);
4641 }
4642
4643 /* Back in the mainline: close the unwanted half of the pipe. */
4644
f1e894f3 4645 (void)close(pfd[pipe_write]);
059ec3d9
PH
4646
4647 /* Fork failed; defer with error message */
4648
4649 if (pid < 0)
4650 {
f1e894f3 4651 (void)close(pfd[pipe_read]);
d6c82d7b
JH
4652 panicmsg = string_sprintf("fork failed for remote delivery to %s: %s",
4653 addr->domain, strerror(errno));
fa41615d 4654 goto enq_continue;
059ec3d9
PH
4655 }
4656
4657 /* Fork succeeded; increment the count, and remember relevant data for
4658 when the process finishes. */
4659
4660 parcount++;
4661 parlist[poffset].addrlist = parlist[poffset].addr = addr;
4662 parlist[poffset].pid = pid;
4663 parlist[poffset].fd = pfd[pipe_read];
4664 parlist[poffset].done = FALSE;
4665 parlist[poffset].msg = NULL;
4666 parlist[poffset].return_path = return_path;
4667
4668 /* If the process we've just started is sending a message down an existing
4669 channel, wait for it now. This ensures that only one such process runs at
4670 once, whatever the value of remote_max parallel. Otherwise, we might try to
4671 send two or more messages simultaneously down the same channel. This could
4672 happen if there are different domains that include the same host in otherwise
4673 different host lists.
4674
4675 Also, if the transport closes down the channel, this information gets back
4676 (continue_transport gets set to NULL) before we consider any other addresses
4677 in this message. */
4678
d6c82d7b 4679 if (continue_transport) par_reduce(0, fallback);
059ec3d9
PH
4680
4681 /* Otherwise, if we are running in the test harness, wait a bit, to let the
4682 newly created process get going before we create another process. This should
4683 ensure repeatability in the tests. We only need to wait a tad. */
4684
4685 else if (running_in_test_harness) millisleep(500);
d6c82d7b
JH
4686
4687 continue;
4688
fa41615d
JH
4689enq_continue:
4690 if (serialize_key) enq_end(serialize_key);
d6c82d7b
JH
4691panic_continue:
4692 remote_post_process(addr, LOG_MAIN|LOG_PANIC, panicmsg, fallback);
4693 continue;
059ec3d9
PH
4694 }
4695
4696/* Reached the end of the list of addresses. Wait for all the subprocesses that
4697are still running and post-process their addresses. */
4698
4699par_reduce(0, fallback);
4700return TRUE;
4701}
4702
4703
4704
4705
4706/*************************************************
4707* Split an address into local part and domain *
4708*************************************************/
4709
4710/* This function initializes an address for routing by splitting it up into a
4711local part and a domain. The local part is set up twice - once in its original
4712casing, and once in lower case, and it is dequoted. We also do the "percent
4713hack" for configured domains. This may lead to a DEFER result if a lookup
4714defers. When a percent-hacking takes place, we insert a copy of the original
4715address as a new parent of this address, as if we have had a redirection.
4716
4717Argument:
4718 addr points to an addr_item block containing the address
4719
4720Returns: OK
4721 DEFER - could not determine if domain is %-hackable
4722*/
4723
4724int
4725deliver_split_address(address_item *addr)
4726{
4727uschar *address = addr->address;
4728uschar *domain = Ustrrchr(address, '@');
4729uschar *t;
4730int len = domain - address;
4731
4732addr->domain = string_copylc(domain+1); /* Domains are always caseless */
4733
4734/* The implication in the RFCs (though I can't say I've seen it spelled out
4735explicitly) is that quoting should be removed from local parts at the point
4736where they are locally interpreted. [The new draft "821" is more explicit on
4737this, Jan 1999.] We know the syntax is valid, so this can be done by simply
4738removing quoting backslashes and any unquoted doublequotes. */
4739
4740t = addr->cc_local_part = store_get(len+1);
4741while(len-- > 0)
4742 {
4743 register int c = *address++;
4744 if (c == '\"') continue;
4745 if (c == '\\')
4746 {
4747 *t++ = *address++;
4748 len--;
4749 }
4750 else *t++ = c;
4751 }
4752*t = 0;
4753
4754/* We do the percent hack only for those domains that are listed in
4755percent_hack_domains. A loop is required, to copy with multiple %-hacks. */
4756
d6c82d7b 4757if (percent_hack_domains)
059ec3d9
PH
4758 {
4759 int rc;
4760 uschar *new_address = NULL;
4761 uschar *local_part = addr->cc_local_part;
4762
4763 deliver_domain = addr->domain; /* set $domain */
4764
d6c82d7b
JH
4765 while ( (rc = match_isinlist(deliver_domain, (const uschar **)&percent_hack_domains, 0,
4766 &domainlist_anchor, addr->domain_cache, MCL_DOMAIN, TRUE, NULL))
4767 == OK
4768 && (t = Ustrrchr(local_part, '%')) != NULL
4769 )
059ec3d9
PH
4770 {
4771 new_address = string_copy(local_part);
4772 new_address[t - local_part] = '@';
4773 deliver_domain = string_copylc(t+1);
4774 local_part = string_copyn(local_part, t - local_part);
4775 }
4776
4777 if (rc == DEFER) return DEFER; /* lookup deferred */
4778
4779 /* If hackery happened, set up new parent and alter the current address. */
4780
d6c82d7b 4781 if (new_address)
059ec3d9
PH
4782 {
4783 address_item *new_parent = store_get(sizeof(address_item));
4784 *new_parent = *addr;
4785 addr->parent = new_parent;
4786 addr->address = new_address;
4787 addr->unique = string_copy(new_address);
4788 addr->domain = deliver_domain;
4789 addr->cc_local_part = local_part;
4790 DEBUG(D_deliver) debug_printf("%%-hack changed address to: %s\n",
4791 addr->address);
4792 }
4793 }
4794
4795/* Create the lowercased version of the final local part, and make that the
4796default one to be used. */
4797
4798addr->local_part = addr->lc_local_part = string_copylc(addr->cc_local_part);
4799return OK;
4800}
4801
4802
4803
4804
4805/*************************************************
4806* Get next error message text *
4807*************************************************/
4808
4809/* If f is not NULL, read the next "paragraph", from a customized error message
4810text file, terminated by a line containing ****, and expand it.
4811
4812Arguments:
4813 f NULL or a file to read from
4814 which string indicating which string (for errors)
4815
4816Returns: NULL or an expanded string
4817*/
4818
4819static uschar *
4820next_emf(FILE *f, uschar *which)
4821{
4822int size = 256;
4823int ptr = 0;
4824uschar *para, *yield;
4825uschar buffer[256];
4826
d6c82d7b 4827if (!f) return NULL;
059ec3d9 4828
d6c82d7b
JH
4829if (!Ufgets(buffer, sizeof(buffer), f) || Ustrcmp(buffer, "****\n") == 0)
4830 return NULL;
059ec3d9
PH
4831
4832para = store_get(size);
4833for (;;)
4834 {
c2f669a4 4835 para = string_cat(para, &size, &ptr, buffer);
d6c82d7b
JH
4836 if (!Ufgets(buffer, sizeof(buffer), f) || Ustrcmp(buffer, "****\n") == 0)
4837 break;
059ec3d9
PH
4838 }
4839para[ptr] = 0;
4840
d6c82d7b
JH
4841if ((yield = expand_string(para)))
4842 return yield;
059ec3d9
PH
4843
4844log_write(0, LOG_MAIN|LOG_PANIC, "Failed to expand string from "
4845 "bounce_message_file or warn_message_file (%s): %s", which,
4846 expand_string_message);
4847return NULL;
4848}
4849
4850
4851
4852
4853/*************************************************
4854* Close down a passed transport channel *
4855*************************************************/
4856
4857/* This function is called when a passed transport channel cannot be used.
4858It attempts to close it down tidily. The yield is always DELIVER_NOT_ATTEMPTED
4859so that the function call can be the argument of a "return" statement.
4860
4861Arguments: None
4862Returns: DELIVER_NOT_ATTEMPTED
4863*/
4864
4865static int
4866continue_closedown(void)
4867{
d6c82d7b 4868if (continue_transport)
059ec3d9
PH
4869 {
4870 transport_instance *t;
d6c82d7b 4871 for (t = transports; t; t = t->next)
059ec3d9
PH
4872 if (Ustrcmp(t->name, continue_transport) == 0)
4873 {
d6c82d7b 4874 if (t->info->closedown) (t->info->closedown)(t);
059ec3d9
PH
4875 break;
4876 }
059ec3d9
PH
4877 }
4878return DELIVER_NOT_ATTEMPTED;
4879}
4880
4881
4882
4883
4884/*************************************************
4885* Print address information *
4886*************************************************/
4887
4888/* This function is called to output an address, or information about an
4889address, for bounce or defer messages. If the hide_child flag is set, all we
4890output is the original ancestor address.
4891
4892Arguments:
4893 addr points to the address
4894 f the FILE to print to
4895 si an initial string
4896 sc a continuation string for before "generated"
4897 se an end string
4898
4899Returns: TRUE if the address is not hidden
4900*/
4901
4902static BOOL
4903print_address_information(address_item *addr, FILE *f, uschar *si, uschar *sc,
4904 uschar *se)
4905{
4906BOOL yield = TRUE;
4907uschar *printed = US"";
4908address_item *ancestor = addr;
d6c82d7b 4909while (ancestor->parent) ancestor = ancestor->parent;
059ec3d9
PH
4910
4911fprintf(f, "%s", CS si);
4912
d6c82d7b 4913if (addr->parent && testflag(addr, af_hide_child))
059ec3d9
PH
4914 {
4915 printed = US"an undisclosed address";
4916 yield = FALSE;
4917 }
d6c82d7b 4918else if (!testflag(addr, af_pfr) || !addr->parent)
059ec3d9
PH
4919 printed = addr->address;
4920
4921else
4922 {
4923 uschar *s = addr->address;
4924 uschar *ss;
4925
4926 if (addr->address[0] == '>') { ss = US"mail"; s++; }
4927 else if (addr->address[0] == '|') ss = US"pipe";
4928 else ss = US"save";
4929
4930 fprintf(f, "%s to %s%sgenerated by ", ss, s, sc);
4931 printed = addr->parent->address;
4932 }
4933
4934fprintf(f, "%s", CS string_printing(printed));
4935
4936if (ancestor != addr)
4937 {
d6c82d7b
JH
4938 uschar *original = ancestor->onetime_parent;
4939 if (!original) original= ancestor->address;
059ec3d9
PH
4940 if (strcmpic(original, printed) != 0)
4941 fprintf(f, "%s(%sgenerated from %s)", sc,
d6c82d7b 4942 ancestor != addr->parent ? "ultimately " : "",
059ec3d9
PH
4943 string_printing(original));
4944 }
4945
c562fd30
JH
4946if (addr->host_used)
4947 fprintf(f, "\n host %s [%s]",
4948 addr->host_used->name, addr->host_used->address);
4949
059ec3d9
PH
4950fprintf(f, "%s", CS se);
4951return yield;
4952}
4953
4954
4955
4956
4957
059ec3d9
PH
4958/*************************************************
4959* Print error for an address *
4960*************************************************/
4961
4962/* This function is called to print the error information out of an address for
4963a bounce or a warning message. It tries to format the message reasonably by
4964introducing newlines. All lines are indented by 4; the initial printing
4965position must be set before calling.
4966
447d236c 4967This function used always to print the error. Nowadays we want to restrict it
75def545
PH
4968to cases such as LMTP/SMTP errors from a remote host, and errors from :fail:
4969and filter "fail". We no longer pass other information willy-nilly in bounce
4970and warning messages. Text in user_message is always output; text in message
4971only if the af_pass_message flag is set.
447d236c 4972
059ec3d9 4973Arguments:
447d236c 4974 addr the address
059ec3d9 4975 f the FILE to print on
75def545 4976 t some leading text
059ec3d9
PH
4977
4978Returns: nothing
4979*/
4980
4981static void
447d236c 4982print_address_error(address_item *addr, FILE *f, uschar *t)
059ec3d9 4983{
447d236c 4984int count = Ustrlen(t);
75def545 4985uschar *s = testflag(addr, af_pass_message)? addr->message : NULL;
447d236c 4986
0ba0ee97
JH
4987if (!s && !(s = addr->user_message))
4988 return;
447d236c
PH
4989
4990fprintf(f, "\n %s", t);
4991
0ba0ee97 4992while (*s)
447d236c
PH
4993 if (*s == '\\' && s[1] == 'n')
4994 {
4995 fprintf(f, "\n ");
4996 s += 2;
4997 count = 0;
4998 }
4999 else
059ec3d9 5000 {
447d236c
PH
5001 fputc(*s, f);
5002 count++;
5003 if (*s++ == ':' && isspace(*s) && count > 45)
059ec3d9 5004 {
447d236c 5005 fprintf(f, "\n "); /* sic (because space follows) */
059ec3d9
PH
5006 count = 0;
5007 }
059ec3d9 5008 }
059ec3d9
PH
5009}
5010
5011
21bc4865
WB
5012/***********************************************************
5013* Print Diagnostic-Code for an address *
5014************************************************************/
5015
5016/* This function is called to print the error information out of an address for
5017a bounce or a warning message. It tries to format the message reasonably as
5018required by RFC 3461 by adding a space after each newline
5019
ca410e79
WB
5020it uses the same logic as print_address_error() above. if af_pass_message is true
5021and addr->message is set it uses the remote host answer. if not addr->user_message
5022is used instead if available.
21bc4865
WB
5023
5024Arguments:
5025 addr the address
5026 f the FILE to print on
5027
5028Returns: nothing
5029*/
5030
5031static void
5032print_dsn_diagnostic_code(const address_item *addr, FILE *f)
5033{
ca410e79 5034uschar *s = testflag(addr, af_pass_message) ? addr->message : NULL;
21bc4865 5035
ca410e79
WB
5036/* af_pass_message and addr->message set ? print remote host answer */
5037if (s)
5038 {
5039 DEBUG(D_deliver)
5040 debug_printf("DSN Diagnostic-Code: addr->message = %s\n", addr->message);
447d236c 5041
ca410e79
WB
5042 /* search first ": ". we assume to find the remote-MTA answer there */
5043 if (!(s = Ustrstr(addr->message, ": ")))
5044 return; /* not found, bail out */
5045 s += 2; /* skip ": " */
5046 fprintf(f, "Diagnostic-Code: smtp; ");
5047 }
ca410e79 5048/* no message available. do nothing */
9031f51a 5049else return;
21bc4865 5050
21bc4865
WB
5051while (*s)
5052 if (*s == '\\' && s[1] == 'n')
5053 {
5054 fputs("\n ", f); /* as defined in RFC 3461 */
5055 s += 2;
5056 }
5057 else
5058 fputc(*s++, f);
5059
5060fputc('\n', f);
5061}
447d236c
PH
5062
5063
d7174846
PH
5064/*************************************************
5065* Check list of addresses for duplication *
5066*************************************************/
5067
5068/* This function was introduced when the test for duplicate addresses that are
5069not pipes, files, or autoreplies was moved from the middle of routing to when
5070routing was complete. That was to fix obscure cases when the routing history
dbcef0ea
PH
5071affects the subsequent routing of identical addresses. This function is called
5072after routing, to check that the final routed addresses are not duplicates.
d7174846 5073
dbcef0ea
PH
5074If we detect a duplicate, we remember what it is a duplicate of. Note that
5075pipe, file, and autoreply de-duplication is handled during routing, so we must
5076leave such "addresses" alone here, as otherwise they will incorrectly be
5077discarded.
d7174846
PH
5078
5079Argument: address of list anchor
5080Returns: nothing
5081*/
5082
5083static void
5084do_duplicate_check(address_item **anchor)
5085{
5086address_item *addr;
d6c82d7b 5087while ((addr = *anchor))
d7174846
PH
5088 {
5089 tree_node *tnode;
5090 if (testflag(addr, af_pfr))
5091 {
5092 anchor = &(addr->next);
5093 }
d6c82d7b 5094 else if ((tnode = tree_search(tree_duplicates, addr->unique)))
d7174846
PH
5095 {
5096 DEBUG(D_deliver|D_route)
5097 debug_printf("%s is a duplicate address: discarded\n", addr->unique);
5098 *anchor = addr->next;
5099 addr->dupof = tnode->data.ptr;
5100 addr->next = addr_duplicate;
5101 addr_duplicate = addr;
5102 }
5103 else
5104 {
5105 tree_add_duplicate(addr->unique, addr);
5106 anchor = &(addr->next);
5107 }
5108 }
5109}
5110
5111
5112
059ec3d9
PH
5113
5114/*************************************************
5115* Deliver one message *
5116*************************************************/
5117
5118/* This is the function which is called when a message is to be delivered. It
5119is passed the id of the message. It is possible that the message no longer
5120exists, if some other process has delivered it, and it is also possible that
5121the message is being worked on by another process, in which case the data file
5122will be locked.
5123
5124If no delivery is attempted for any of the above reasons, the function returns
5125DELIVER_NOT_ATTEMPTED.
5126
5127If the give_up flag is set true, do not attempt any deliveries, but instead
5128fail all outstanding addresses and return the message to the sender (or
5129whoever).
5130
5131A delivery operation has a process all to itself; we never deliver more than
5132one message in the same process. Therefore we needn't worry too much about
5133store leakage.
5134
5135Arguments:
5136 id the id of the message to be delivered
5137 forced TRUE if delivery was forced by an administrator; this overrides
5138 retry delays and causes a delivery to be tried regardless
5139 give_up TRUE if an administrator has requested that delivery attempts
5140 be abandoned
5141
5142Returns: When the global variable mua_wrapper is FALSE:
5143 DELIVER_ATTEMPTED_NORMAL if a delivery attempt was made
5144 DELIVER_NOT_ATTEMPTED otherwise (see comment above)
5145 When the global variable mua_wrapper is TRUE:
5146 DELIVER_MUA_SUCCEEDED if delivery succeeded
5147 DELIVER_MUA_FAILED if delivery failed
5148 DELIVER_NOT_ATTEMPTED if not attempted (should not occur)
5149*/
5150
5151int
5152deliver_message(uschar *id, BOOL forced, BOOL give_up)
5153{
5154int i, rc;
5155int final_yield = DELIVER_ATTEMPTED_NORMAL;
5156time_t now = time(NULL);
5157address_item *addr_last = NULL;
5158uschar *filter_message = NULL;
5159FILE *jread;
5160int process_recipients = RECIP_ACCEPT;
5161open_db dbblock;
5162open_db *dbm_file;
faa05a93 5163extern int acl_where;
059ec3d9 5164
d6c82d7b
JH
5165uschar *info = queue_run_pid == (pid_t)0
5166 ? string_sprintf("delivering %s", id)
5167 : string_sprintf("delivering %s (queue run pid %d)", id, queue_run_pid);
059ec3d9
PH
5168
5169/* If the D_process_info bit is on, set_process_info() will output debugging
5170information. If not, we want to show this initial information if D_deliver or
5171D_queue_run is set or in verbose mode. */
5172
5173set_process_info("%s", info);
5174
d6c82d7b
JH
5175if ( !(debug_selector & D_process_info)
5176 && (debug_selector & (D_deliver|D_queue_run|D_v))
5177 )
059ec3d9
PH
5178 debug_printf("%s\n", info);
5179
5180/* Ensure that we catch any subprocesses that are created. Although Exim
5181sets SIG_DFL as its initial default, some routes through the code end up
5182here with it set to SIG_IGN - cases where a non-synchronous delivery process
5183has been forked, but no re-exec has been done. We use sigaction rather than
5184plain signal() on those OS where SA_NOCLDWAIT exists, because we want to be
5185sure it is turned off. (There was a problem on AIX with this.) */
5186
5187#ifdef SA_NOCLDWAIT
5188 {
5189 struct sigaction act;
5190 act.sa_handler = SIG_DFL;
5191 sigemptyset(&(act.sa_mask));
5192 act.sa_flags = 0;
5193 sigaction(SIGCHLD, &act, NULL);
5194 }
5195#else
5196signal(SIGCHLD, SIG_DFL);
5197#endif
5198
5199/* Make the forcing flag available for routers and transports, set up the
5200global message id field, and initialize the count for returned files and the
5201message size. This use of strcpy() is OK because the length id is checked when
5202it is obtained from a command line (the -M or -q options), and otherwise it is
5203known to be a valid message id. */
5204
5205Ustrcpy(message_id, id);
5206deliver_force = forced;
5207return_count = 0;
5208message_size = 0;
5209
5210/* Initialize some flags */
5211
5212update_spool = FALSE;
5213remove_journal = TRUE;
5214
faa05a93
JH
5215/* Set a known context for any ACLs we call via expansions */
5216acl_where = ACL_WHERE_DELIVERY;
5217
059ec3d9
PH
5218/* Reset the random number generator, so that if several delivery processes are
5219started from a queue runner that has already used random numbers (for sorting),
5220they don't all get the same sequence. */
5221
5222random_seed = 0;
5223
5224/* Open and lock the message's data file. Exim locks on this one because the
5225header file may get replaced as it is re-written during the delivery process.
5226Any failures cause messages to be written to the log, except for missing files
5227while queue running - another process probably completed delivery. As part of
5228opening the data file, message_subdir gets set. */
5229
789f8a4f 5230if ((deliver_datafile = spool_open_datafile(id)) < 0)
059ec3d9
PH
5231 return continue_closedown(); /* yields DELIVER_NOT_ATTEMPTED */
5232
5233/* The value of message_size at this point has been set to the data length,
5234plus one for the blank line that notionally precedes the data. */
5235
5236/* Now read the contents of the header file, which will set up the headers in
5237store, and also the list of recipients and the tree of non-recipients and
5238assorted flags. It updates message_size. If there is a reading or format error,
5239give up; if the message has been around for sufficiently long, remove it. */
5240
059ec3d9 5241 {
41313d92
JH
5242 uschar * spoolname = string_sprintf("%s-H", id);
5243 if ((rc = spool_read_header(spoolname, TRUE, TRUE)) != spool_read_OK)
059ec3d9 5244 {
41313d92
JH
5245 if (errno == ERRNO_SPOOLFORMAT)
5246 {
5247 struct stat statbuf;
5248 if (Ustat(spool_fname(US"input", message_subdir, spoolname, US""),
5249 &statbuf) == 0)
5250 log_write(0, LOG_MAIN, "Format error in spool file %s: "
5251 "size=" OFF_T_FMT, spoolname, statbuf.st_size);
5252 else
5253 log_write(0, LOG_MAIN, "Format error in spool file %s", spoolname);
5254 }
5255 else
5256 log_write(0, LOG_MAIN, "Error reading spool file %s: %s", spoolname,
5257 strerror(errno));
059ec3d9 5258
41313d92
JH
5259 /* If we managed to read the envelope data, received_time contains the
5260 time the message was received. Otherwise, we can calculate it from the
5261 message id. */
059ec3d9 5262
41313d92
JH
5263 if (rc != spool_read_hdrerror)
5264 {
5265 received_time = 0;
5266 for (i = 0; i < 6; i++)
5267 received_time = received_time * BASE_62 + tab62[id[i] - '0'];
5268 }
059ec3d9 5269
41313d92 5270 /* If we've had this malformed message too long, sling it. */
059ec3d9 5271
41313d92
JH
5272 if (now - received_time > keep_malformed)
5273 {
5274 Uunlink(spool_fname(US"msglog", message_subdir, id, US""));
5275 Uunlink(spool_fname(US"input", message_subdir, id, US"-D"));
5276 Uunlink(spool_fname(US"input", message_subdir, id, US"-H"));
5277 Uunlink(spool_fname(US"input", message_subdir, id, US"-J"));
5278 log_write(0, LOG_MAIN, "Message removed because older than %s",
5279 readconf_printtime(keep_malformed));
5280 }
059ec3d9 5281
41313d92
JH
5282 (void)close(deliver_datafile);
5283 deliver_datafile = -1;
5284 return continue_closedown(); /* yields DELIVER_NOT_ATTEMPTED */
5285 }
059ec3d9
PH
5286 }
5287
5288/* The spool header file has been read. Look to see if there is an existing
5289journal file for this message. If there is, it means that a previous delivery
5290attempt crashed (program or host) before it could update the spool header file.
5291Read the list of delivered addresses from the journal and add them to the
5292nonrecipients tree. Then update the spool file. We can leave the journal in
5293existence, as it will get further successful deliveries added to it in this
5294run, and it will be deleted if this function gets to its end successfully.
5295Otherwise it might be needed again. */
5296
059ec3d9 5297 {
41313d92
JH
5298 uschar * fname = spool_fname(US"input", message_subdir, id, US"-J");
5299
5300 if ((jread = Ufopen(fname, "rb")))
059ec3d9 5301 {
41313d92
JH
5302 while (Ufgets(big_buffer, big_buffer_size, jread))
5303 {
5304 int n = Ustrlen(big_buffer);
5305 big_buffer[n-1] = 0;
5306 tree_add_nonrecipient(big_buffer);
5307 DEBUG(D_deliver) debug_printf("Previously delivered address %s taken from "
5308 "journal file\n", big_buffer);
5309 }
5310 (void)fclose(jread);
5311 /* Panic-dies on error */
5312 (void)spool_write_header(message_id, SW_DELIVERING, NULL);
5313 }
5314 else if (errno != ENOENT)
5315 {
5316 log_write(0, LOG_MAIN|LOG_PANIC, "attempt to open journal for reading gave: "
5317 "%s", strerror(errno));
5318 return continue_closedown(); /* yields DELIVER_NOT_ATTEMPTED */
059ec3d9 5319 }
059ec3d9 5320
41313d92 5321 /* A null recipients list indicates some kind of disaster. */
059ec3d9 5322
41313d92
JH
5323 if (!recipients_list)
5324 {
5325 (void)close(deliver_datafile);
5326 deliver_datafile = -1;
5327 log_write(0, LOG_MAIN, "Spool error: no recipients for %s", fname);
5328 return continue_closedown(); /* yields DELIVER_NOT_ATTEMPTED */
5329 }
059ec3d9
PH
5330 }
5331
5332
5333/* Handle a message that is frozen. There are a number of different things that
5334can happen, but in the default situation, unless forced, no delivery is
5335attempted. */
5336
5337if (deliver_freeze)
5338 {
a7538db1 5339#ifdef SUPPORT_MOVE_FROZEN_MESSAGES
059ec3d9
PH
5340 /* Moving to another directory removes the message from Exim's view. Other
5341 tools must be used to deal with it. Logging of this action happens in
5342 spool_move_message() and its subfunctions. */
5343
d6c82d7b
JH
5344 if ( move_frozen_messages
5345 && spool_move_message(id, message_subdir, US"", US"F")
5346 )
059ec3d9 5347 return continue_closedown(); /* yields DELIVER_NOT_ATTEMPTED */
a7538db1 5348#endif
059ec3d9
PH
5349
5350 /* For all frozen messages (bounces or not), timeout_frozen_after sets the
5351 maximum time to keep messages that are frozen. Thaw if we reach it, with a
5352 flag causing all recipients to be failed. The time is the age of the
5353 message, not the time since freezing. */
5354
5355 if (timeout_frozen_after > 0 && message_age >= timeout_frozen_after)
5356 {
5357 log_write(0, LOG_MAIN, "cancelled by timeout_frozen_after");
5358 process_recipients = RECIP_FAIL_TIMEOUT;
5359 }
5360
5361 /* For bounce messages (and others with no sender), thaw if the error message
5362 ignore timer is exceeded. The message will be discarded if this delivery
5363 fails. */
5364
5365 else if (sender_address[0] == 0 && message_age >= ignore_bounce_errors_after)
5366 {
5367 log_write(0, LOG_MAIN, "Unfrozen by errmsg timer");
5368 }
5369
ef213c3b
PH
5370 /* If this is a bounce message, or there's no auto thaw, or we haven't
5371 reached the auto thaw time yet, and this delivery is not forced by an admin
5372 user, do not attempt delivery of this message. Note that forced is set for
5373 continuing messages down the same channel, in order to skip load checking and
5374 ignore hold domains, but we don't want unfreezing in that case. */
059ec3d9
PH
5375
5376 else
5377 {
d6c82d7b
JH
5378 if ( ( sender_address[0] == 0
5379 || auto_thaw <= 0
5380 || now <= deliver_frozen_at + auto_thaw
5381 )
5382 && ( !forced || !deliver_force_thaw
5383 || !admin_user || continue_hostname
5384 ) )
059ec3d9 5385 {
f1e894f3 5386 (void)close(deliver_datafile);
059ec3d9
PH
5387 deliver_datafile = -1;
5388 log_write(L_skip_delivery, LOG_MAIN, "Message is frozen");
5389 return continue_closedown(); /* yields DELIVER_NOT_ATTEMPTED */
5390 }
5391
5392 /* If delivery was forced (by an admin user), assume a manual thaw.
5393 Otherwise it's an auto thaw. */
5394
5395 if (forced)
5396 {
5397 deliver_manual_thaw = TRUE;
5398 log_write(0, LOG_MAIN, "Unfrozen by forced delivery");
5399 }
5400 else log_write(0, LOG_MAIN, "Unfrozen by auto-thaw");
5401 }
5402
5403 /* We get here if any of the rules for unfreezing have triggered. */
5404
5405 deliver_freeze = FALSE;
5406 update_spool = TRUE;
5407 }
5408
5409
5410/* Open the message log file if we are using them. This records details of
5411deliveries, deferments, and failures for the benefit of the mail administrator.
5412The log is not used by exim itself to track the progress of a message; that is
5413done by rewriting the header spool file. */
5414
5415if (message_logs)
5416 {
41313d92
JH
5417 uschar * fname = spool_fname(US"msglog", message_subdir, id, US"");
5418 uschar * error;
059ec3d9
PH
5419 int fd;
5420
41313d92 5421 if ((fd = open_msglog_file(fname, SPOOL_MODE, &error)) < 0)
059ec3d9
PH
5422 {
5423 log_write(0, LOG_MAIN|LOG_PANIC, "Couldn't %s message log %s: %s", error,
41313d92 5424 fname, strerror(errno));
059ec3d9
PH
5425 return continue_closedown(); /* yields DELIVER_NOT_ATTEMPTED */
5426 }
5427
5428 /* Make a C stream out of it. */
5429
d6c82d7b 5430 if (!(message_log = fdopen(fd, "a")))
059ec3d9
PH
5431 {
5432 log_write(0, LOG_MAIN|LOG_PANIC, "Couldn't fdopen message log %s: %s",
41313d92 5433 fname, strerror(errno));
059ec3d9
PH
5434 return continue_closedown(); /* yields DELIVER_NOT_ATTEMPTED */
5435 }
5436 }
5437
5438
5439/* If asked to give up on a message, log who did it, and set the action for all
5440the addresses. */
5441
5442if (give_up)
5443 {
5444 struct passwd *pw = getpwuid(real_uid);
d6c82d7b
JH
5445 log_write(0, LOG_MAIN, "cancelled by %s",
5446 pw ? US pw->pw_name : string_sprintf("uid %ld", (long int)real_uid));
059ec3d9
PH
5447 process_recipients = RECIP_FAIL;
5448 }
5449
5450/* Otherwise, if there are too many Received: headers, fail all recipients. */
5451
5452else if (received_count > received_headers_max)
5453 process_recipients = RECIP_FAIL_LOOP;
5454
5455/* Otherwise, if a system-wide, address-independent message filter is
5456specified, run it now, except in the case when we are failing all recipients as
5457a result of timeout_frozen_after. If the system filter yields "delivered", then
5458ignore the true recipients of the message. Failure of the filter file is
5459logged, and the delivery attempt fails. */
5460
d6c82d7b 5461else if (system_filter && process_recipients != RECIP_FAIL_TIMEOUT)
059ec3d9
PH
5462 {
5463 int rc;
5464 int filtertype;
5465 ugid_block ugid;
5466 redirect_block redirect;
5467
5468 if (system_filter_uid_set)
5469 {
5470 ugid.uid = system_filter_uid;
5471 ugid.gid = system_filter_gid;
5472 ugid.uid_set = ugid.gid_set = TRUE;
5473 }
5474 else
5475 {
5476 ugid.uid_set = ugid.gid_set = FALSE;
5477 }
5478
5479 return_path = sender_address;
5480 enable_dollar_recipients = TRUE; /* Permit $recipients in system filter */
5481 system_filtering = TRUE;
5482
5483 /* Any error in the filter file causes a delivery to be abandoned. */
5484
5485 redirect.string = system_filter;
5486 redirect.isfile = TRUE;
5487 redirect.check_owner = redirect.check_group = FALSE;
5488 redirect.owners = NULL;
5489 redirect.owngroups = NULL;
5490 redirect.pw = NULL;
5491 redirect.modemask = 0;
5492
5493 DEBUG(D_deliver|D_filter) debug_printf("running system filter\n");
5494
5495 rc = rda_interpret(
5496 &redirect, /* Where the data is */
5497 RDO_DEFER | /* Turn on all the enabling options */
5498 RDO_FAIL | /* Leave off all the disabling options */
5499 RDO_FILTER |
5500 RDO_FREEZE |
5501 RDO_REALLOG |
5502 RDO_REWRITE,
5503 NULL, /* No :include: restriction (not used in filter) */
5504 NULL, /* No sieve vacation directory (not sieve!) */
efd9a422 5505 NULL, /* No sieve enotify mailto owner (not sieve!) */
e4a89c47
PH
5506 NULL, /* No sieve user address (not sieve!) */
5507 NULL, /* No sieve subaddress (not sieve!) */
059ec3d9
PH
5508 &ugid, /* uid/gid data */
5509 &addr_new, /* Where to hang generated addresses */
5510 &filter_message, /* Where to put error message */
5511 NULL, /* Don't skip syntax errors */
5512 &filtertype, /* Will always be set to FILTER_EXIM for this call */
5513 US"system filter"); /* For error messages */
5514
5515 DEBUG(D_deliver|D_filter) debug_printf("system filter returned %d\n", rc);
5516
5517 if (rc == FF_ERROR || rc == FF_NONEXIST)
5518 {
f1e894f3 5519 (void)close(deliver_datafile);
059ec3d9
PH
5520 deliver_datafile = -1;
5521 log_write(0, LOG_MAIN|LOG_PANIC, "Error in system filter: %s",
5522 string_printing(filter_message));
5523 return continue_closedown(); /* yields DELIVER_NOT_ATTEMPTED */
5524 }
5525
5526 /* Reset things. If the filter message is an empty string, which can happen
5527 for a filter "fail" or "freeze" command with no text, reset it to NULL. */
5528
5529 system_filtering = FALSE;
5530 enable_dollar_recipients = FALSE;
d6c82d7b 5531 if (filter_message && filter_message[0] == 0) filter_message = NULL;
059ec3d9
PH
5532
5533 /* Save the values of the system filter variables so that user filters
5534 can use them. */
5535
5536 memcpy(filter_sn, filter_n, sizeof(filter_sn));
5537
5538 /* The filter can request that delivery of the original addresses be
5539 deferred. */
5540
5541 if (rc == FF_DEFER)
5542 {
5543 process_recipients = RECIP_DEFER;
5544 deliver_msglog("Delivery deferred by system filter\n");
5545 log_write(0, LOG_MAIN, "Delivery deferred by system filter");
5546 }
5547
5548 /* The filter can request that a message be frozen, but this does not
5549 take place if the message has been manually thawed. In that case, we must
5550 unset "delivered", which is forced by the "freeze" command to make -bF
5551 work properly. */
5552
5553 else if (rc == FF_FREEZE && !deliver_manual_thaw)
5554 {
5555 deliver_freeze = TRUE;
5556 deliver_frozen_at = time(NULL);
5557 process_recipients = RECIP_DEFER;
5558 frozen_info = string_sprintf(" by the system filter%s%s",
d6c82d7b
JH
5559 filter_message ? US": " : US"",
5560 filter_message ? filter_message : US"");
059ec3d9
PH
5561 }
5562
5563 /* The filter can request that a message be failed. The error message may be
5564 quite long - it is sent back to the sender in the bounce - but we don't want
5565 to fill up the log with repetitions of it. If it starts with << then the text
5566 between << and >> is written to the log, with the rest left for the bounce
5567 message. */
5568
5569 else if (rc == FF_FAIL)
5570 {
5571 uschar *colon = US"";
5572 uschar *logmsg = US"";
5573 int loglen = 0;
5574
5575 process_recipients = RECIP_FAIL_FILTER;
5576
d6c82d7b 5577 if (filter_message)
059ec3d9
PH
5578 {
5579 uschar *logend;
5580 colon = US": ";
d6c82d7b
JH
5581 if ( filter_message[0] == '<'
5582 && filter_message[1] == '<'
5583 && (logend = Ustrstr(filter_message, ">>"))
5584 )
059ec3d9
PH
5585 {
5586 logmsg = filter_message + 2;
5587 loglen = logend - logmsg;
5588 filter_message = logend + 2;
5589 if (filter_message[0] == 0) filter_message = NULL;
5590 }
5591 else
5592 {
5593 logmsg = filter_message;
5594 loglen = Ustrlen(filter_message);
5595 }
5596 }
5597
5598 log_write(0, LOG_MAIN, "cancelled by system filter%s%.*s", colon, loglen,
5599 logmsg);
5600 }
5601
5602 /* Delivery can be restricted only to those recipients (if any) that the
5603 filter specified. */
5604
5605 else if (rc == FF_DELIVERED)
5606 {
5607 process_recipients = RECIP_IGNORE;
d6c82d7b 5608 if (addr_new)
059ec3d9 5609 log_write(0, LOG_MAIN, "original recipients ignored (system filter)");
d6c82d7b
JH
5610 else
5611 log_write(0, LOG_MAIN, "=> discarded (system filter)");
059ec3d9
PH
5612 }
5613
5614 /* If any new addresses were created by the filter, fake up a "parent"
5615 for them. This is necessary for pipes, etc., which are expected to have
5616 parents, and it also gives some sensible logging for others. Allow
5617 pipes, files, and autoreplies, and run them as the filter uid if set,
5618 otherwise as the current uid. */
5619
d6c82d7b 5620 if (addr_new)
059ec3d9
PH
5621 {
5622 int uid = (system_filter_uid_set)? system_filter_uid : geteuid();
5623 int gid = (system_filter_gid_set)? system_filter_gid : getegid();
5624
5625 /* The text "system-filter" is tested in transport_set_up_command() and in
5626 set_up_shell_command() in the pipe transport, to enable them to permit
5627 $recipients, so don't change it here without also changing it there. */
5628
5629 address_item *p = addr_new;
5630 address_item *parent = deliver_make_addr(US"system-filter", FALSE);
5631
5632 parent->domain = string_copylc(qualify_domain_recipient);
5633 parent->local_part = US"system-filter";
5634
5635 /* As part of this loop, we arrange for addr_last to end up pointing
5636 at the final address. This is used if we go on to add addresses for the
5637 original recipients. */
5638
d6c82d7b 5639 while (p)
059ec3d9 5640 {
4362ff0d
PH
5641 if (parent->child_count == SHRT_MAX)
5642 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "system filter generated more "
5643 "than %d delivery addresses", SHRT_MAX);
059ec3d9
PH
5644 parent->child_count++;
5645 p->parent = parent;
5646
5647 if (testflag(p, af_pfr))
5648 {
5649 uschar *tpname;
5650 uschar *type;
5651 p->uid = uid;
5652 p->gid = gid;
5653 setflag(p, af_uid_set |
5654 af_gid_set |
5655 af_allow_file |
5656 af_allow_pipe |
5657 af_allow_reply);
5658
5659 /* Find the name of the system filter's appropriate pfr transport */
5660
5661 if (p->address[0] == '|')
5662 {
5663 type = US"pipe";
5664 tpname = system_filter_pipe_transport;
5665 address_pipe = p->address;
5666 }
5667 else if (p->address[0] == '>')
5668 {
5669 type = US"reply";
5670 tpname = system_filter_reply_transport;
5671 }
5672 else
5673 {
5674 if (p->address[Ustrlen(p->address)-1] == '/')
5675 {
5676 type = US"directory";
5677 tpname = system_filter_directory_transport;
5678 }
5679 else
5680 {
5681 type = US"file";
5682 tpname = system_filter_file_transport;
5683 }
5684 address_file = p->address;
5685 }
5686
5687 /* Now find the actual transport, first expanding the name. We have
5688 set address_file or address_pipe above. */
5689
d6c82d7b 5690 if (tpname)
059ec3d9
PH
5691 {
5692 uschar *tmp = expand_string(tpname);
5693 address_file = address_pipe = NULL;
d6c82d7b 5694 if (!tmp)
059ec3d9
PH
5695 p->message = string_sprintf("failed to expand \"%s\" as a "
5696 "system filter transport name", tpname);
5697 tpname = tmp;
5698 }
5699 else
5700 {
5701 p->message = string_sprintf("system_filter_%s_transport is unset",
5702 type);
5703 }
5704
d6c82d7b 5705 if (tpname)
059ec3d9
PH
5706 {
5707 transport_instance *tp;
d6c82d7b 5708 for (tp = transports; tp; tp = tp->next)
059ec3d9
PH
5709 {
5710 if (Ustrcmp(tp->name, tpname) == 0)
5711 {
5712 p->transport = tp;
5713 break;
5714 }
5715 }
d6c82d7b 5716 if (!tp)
059ec3d9
PH
5717 p->message = string_sprintf("failed to find \"%s\" transport "
5718 "for system filter delivery", tpname);
5719 }
5720
5721 /* If we couldn't set up a transport, defer the delivery, putting the
5722 error on the panic log as well as the main log. */
5723
d6c82d7b 5724 if (!p->transport)
059ec3d9
PH
5725 {
5726 address_item *badp = p;
5727 p = p->next;
d6c82d7b 5728 if (!addr_last) addr_new = p; else addr_last->next = p;
059ec3d9
PH
5729 badp->local_part = badp->address; /* Needed for log line */
5730 post_process_one(badp, DEFER, LOG_MAIN|LOG_PANIC, DTYPE_ROUTER, 0);
5731 continue;
5732 }
5733 } /* End of pfr handling */
5734
5735 /* Either a non-pfr delivery, or we found a transport */
5736
5737 DEBUG(D_deliver|D_filter)
5738 debug_printf("system filter added %s\n", p->address);
5739
5740 addr_last = p;
5741 p = p->next;
5742 } /* Loop through all addr_new addresses */
5743 }
5744 }
5745
5746
5747/* Scan the recipients list, and for every one that is not in the non-
5748recipients tree, add an addr item to the chain of new addresses. If the pno
5749value is non-negative, we must set the onetime parent from it. This which
5750points to the relevant entry in the recipients list.
5751
5752This processing can be altered by the setting of the process_recipients
5753variable, which is changed if recipients are to be ignored, failed, or
5754deferred. This can happen as a result of system filter activity, or if the -Mg
5755option is used to fail all of them.
5756
5757Duplicate addresses are handled later by a different tree structure; we can't
5758just extend the non-recipients tree, because that will be re-written to the
5759spool if the message is deferred, and in any case there are casing
5760complications for local addresses. */
5761
5762if (process_recipients != RECIP_IGNORE)
5763 {
5764 for (i = 0; i < recipients_count; i++)
5765 {
d6c82d7b 5766 if (!tree_search(tree_nonrecipients, recipients_list[i].address))
059ec3d9
PH
5767 {
5768 recipient_item *r = recipients_list + i;
5769 address_item *new = deliver_make_addr(r->address, FALSE);
d43cbe25 5770 new->prop.errors_address = r->errors_to;
8c5d388a 5771#ifdef SUPPORT_I18N
3c8b3577
JH
5772 if ((new->prop.utf8_msg = message_smtputf8))
5773 {
5774 new->prop.utf8_downcvt = message_utf8_downconvert == 1;
5775 new->prop.utf8_downcvt_maybe = message_utf8_downconvert == -1;
0ec7e948
JH
5776 DEBUG(D_deliver) debug_printf("utf8, downconvert %s\n",
5777 new->prop.utf8_downcvt ? "yes"
5778 : new->prop.utf8_downcvt_maybe ? "ifneeded"
5779 : "no");
3c8b3577 5780 }
7ade712c 5781#endif
059ec3d9
PH
5782
5783 if (r->pno >= 0)
5784 new->onetime_parent = recipients_list[r->pno].address;
5785
94431adb 5786 /* If DSN support is enabled, set the dsn flags and the original receipt
6c1c3d1d
WB
5787 to be passed on to other DSN enabled MTAs */
5788 new->dsn_flags = r->dsn_flags & rf_dsnflags;
5789 new->dsn_orcpt = r->orcpt;
f923454a
JH
5790 DEBUG(D_deliver) debug_printf("DSN: set orcpt: %s flags: %d\n",
5791 new->dsn_orcpt, new->dsn_flags);
6c1c3d1d 5792
059ec3d9
PH
5793 switch (process_recipients)
5794 {
5795 /* RECIP_DEFER is set when a system filter freezes a message. */
5796
5797 case RECIP_DEFER:
5798 new->next = addr_defer;
5799 addr_defer = new;
5800 break;
5801
5802
5803 /* RECIP_FAIL_FILTER is set when a system filter has obeyed a "fail"
5804 command. */
5805
5806 case RECIP_FAIL_FILTER:
5807 new->message =
d6c82d7b 5808 filter_message ? filter_message : US"delivery cancelled";
447d236c 5809 setflag(new, af_pass_message);
059ec3d9
PH
5810 goto RECIP_QUEUE_FAILED; /* below */
5811
5812
5813 /* RECIP_FAIL_TIMEOUT is set when a message is frozen, but is older
5814 than the value in timeout_frozen_after. Treat non-bounce messages
5815 similarly to -Mg; for bounce messages we just want to discard, so
5816 don't put the address on the failed list. The timeout has already
5817 been logged. */
5818
5819 case RECIP_FAIL_TIMEOUT:
5820 new->message = US"delivery cancelled; message timed out";
5821 goto RECIP_QUEUE_FAILED; /* below */
5822
5823
5824 /* RECIP_FAIL is set when -Mg has been used. */
5825
5826 case RECIP_FAIL:
5827 new->message = US"delivery cancelled by administrator";
5828 /* Fall through */
5829
5830 /* Common code for the failure cases above. If this is not a bounce
5831 message, put the address on the failed list so that it is used to
5832 create a bounce. Otherwise do nothing - this just discards the address.
5833 The incident has already been logged. */
5834
5835 RECIP_QUEUE_FAILED:
5836 if (sender_address[0] != 0)
5837 {
5838 new->next = addr_failed;
5839 addr_failed = new;
5840 }
5841 break;
5842
5843
5844 /* RECIP_FAIL_LOOP is set when there are too many Received: headers
5845 in the message. Process each address as a routing failure; if this
5846 is a bounce message, it will get frozen. */
5847
5848 case RECIP_FAIL_LOOP:
5849 new->message = US"Too many \"Received\" headers - suspected mail loop";
5850 post_process_one(new, FAIL, LOG_MAIN, DTYPE_ROUTER, 0);
5851 break;
5852
5853
5854 /* Value should be RECIP_ACCEPT; take this as the safe default. */
5855
5856 default:
d6c82d7b 5857 if (!addr_new) addr_new = new; else addr_last->next = new;
059ec3d9
PH
5858 addr_last = new;
5859 break;
5860 }
14a465c3 5861
0cbf2b82 5862#ifndef DISABLE_EVENT
14a465c3
JH
5863 if (process_recipients != RECIP_ACCEPT)
5864 {
5865 uschar * save_local = deliver_localpart;
55414b25 5866 const uschar * save_domain = deliver_domain;
14a465c3
JH
5867
5868 deliver_localpart = expand_string(
5869 string_sprintf("${local_part:%s}", new->address));
5870 deliver_domain = expand_string(
5871 string_sprintf("${domain:%s}", new->address));
5872
774ef2d7 5873 (void) event_raise(event_action,
14a465c3
JH
5874 US"msg:fail:internal", new->message);
5875
5876 deliver_localpart = save_local;
5877 deliver_domain = save_domain;
5878 }
5879#endif
059ec3d9
PH
5880 }
5881 }
5882 }
5883
5884DEBUG(D_deliver)
5885 {
d6c82d7b 5886 address_item *p;
059ec3d9 5887 debug_printf("Delivery address list:\n");
d6c82d7b
JH
5888 for (p = addr_new; p; p = p->next)
5889 debug_printf(" %s %s\n", p->address,
5890 p->onetime_parent ? p->onetime_parent : US"");
059ec3d9
PH
5891 }
5892
5893/* Set up the buffers used for copying over the file when delivering. */
5894
5895deliver_in_buffer = store_malloc(DELIVER_IN_BUFFER_SIZE);
5896deliver_out_buffer = store_malloc(DELIVER_OUT_BUFFER_SIZE);
5897
5898
5899
5900/* Until there are no more new addresses, handle each one as follows:
5901
5902 . If this is a generated address (indicated by the presence of a parent
5903 pointer) then check to see whether it is a pipe, file, or autoreply, and
5904 if so, handle it directly here. The router that produced the address will
5905 have set the allow flags into the address, and also set the uid/gid required.
5906 Having the routers generate new addresses and then checking them here at
5907 the outer level is tidier than making each router do the checking, and
5908 means that routers don't need access to the failed address queue.
5909
5910 . Break up the address into local part and domain, and make lowercased
5911 versions of these strings. We also make unquoted versions of the local part.
5912
5913 . Handle the percent hack for those domains for which it is valid.
5914
5915 . For child addresses, determine if any of the parents have the same address.
5916 If so, generate a different string for previous delivery checking. Without
5917 this code, if the address spqr generates spqr via a forward or alias file,
5918 delivery of the generated spqr stops further attempts at the top level spqr,
5919 which is not what is wanted - it may have generated other addresses.
5920
5921 . Check on the retry database to see if routing was previously deferred, but
5922 only if in a queue run. Addresses that are to be routed are put on the
5923 addr_route chain. Addresses that are to be deferred are put on the
5924 addr_defer chain. We do all the checking first, so as not to keep the
5925 retry database open any longer than necessary.
5926
5927 . Now we run the addresses through the routers. A router may put the address
5928 on either the addr_local or the addr_remote chain for local or remote
5929 delivery, respectively, or put it on the addr_failed chain if it is
5930 undeliveable, or it may generate child addresses and put them on the
5931 addr_new chain, or it may defer an address. All the chain anchors are
5932 passed as arguments so that the routers can be called for verification
5933 purposes as well.
5934
5935 . If new addresses have been generated by the routers, da capo.
5936*/
5937
5938header_rewritten = FALSE; /* No headers rewritten yet */
d6c82d7b 5939while (addr_new) /* Loop until all addresses dealt with */
059ec3d9
PH
5940 {
5941 address_item *addr, *parent;
059ec3d9
PH
5942
5943 /* Failure to open the retry database is treated the same as if it does
5944 not exist. In both cases, dbm_file is NULL. */
5945
d6c82d7b 5946 if (!(dbm_file = dbfn_open(US"retry", O_RDONLY, &dbblock, FALSE)))
059ec3d9
PH
5947 {
5948 DEBUG(D_deliver|D_retry|D_route|D_hints_lookup)
5949 debug_printf("no retry data available\n");
5950 }
5951
5952 /* Scan the current batch of new addresses, to handle pipes, files and
5953 autoreplies, and determine which others are ready for routing. */
5954
d6c82d7b 5955 while (addr_new)
059ec3d9
PH
5956 {
5957 int rc;
5958 uschar *p;
5959 tree_node *tnode;
5960 dbdata_retry *domain_retry_record;
5961 dbdata_retry *address_retry_record;
5962
5963 addr = addr_new;
5964 addr_new = addr->next;
5965
5966 DEBUG(D_deliver|D_retry|D_route)
5967 {
5968 debug_printf(">>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>\n");
5969 debug_printf("Considering: %s\n", addr->address);
5970 }
5971
5972 /* Handle generated address that is a pipe or a file or an autoreply. */
5973
5974 if (testflag(addr, af_pfr))
5975 {
424a1c63
PH
5976 /* If an autoreply in a filter could not generate a syntactically valid
5977 address, give up forthwith. Set af_ignore_error so that we don't try to
5978 generate a bounce. */
5979
5980 if (testflag(addr, af_bad_reply))
5981 {
5982 addr->basic_errno = ERRNO_BADADDRESS2;
5983 addr->local_part = addr->address;
5984 addr->message =
5985 US"filter autoreply generated syntactically invalid recipient";
5986 setflag(addr, af_ignore_error);
5987 (void)post_process_one(addr, FAIL, LOG_MAIN, DTYPE_ROUTER, 0);
5988 continue; /* with the next new address */
5989 }
059ec3d9
PH
5990
5991 /* If two different users specify delivery to the same pipe or file or
5992 autoreply, there should be two different deliveries, so build a unique
5993 string that incorporates the original address, and use this for
5994 duplicate testing and recording delivery, and also for retrying. */
5995
5996 addr->unique =
424a1c63
PH
5997 string_sprintf("%s:%s", addr->address, addr->parent->unique +
5998 (testflag(addr->parent, af_homonym)? 3:0));
059ec3d9
PH
5999
6000 addr->address_retry_key = addr->domain_retry_key =
6001 string_sprintf("T:%s", addr->unique);
6002
6003 /* If a filter file specifies two deliveries to the same pipe or file,
6004 we want to de-duplicate, but this is probably not wanted for two mail
6005 commands to the same address, where probably both should be delivered.
6006 So, we have to invent a different unique string in that case. Just
6007 keep piling '>' characters on the front. */
6008
6009 if (addr->address[0] == '>')
6010 {
d6c82d7b 6011 while (tree_search(tree_duplicates, addr->unique))
059ec3d9
PH
6012 addr->unique = string_sprintf(">%s", addr->unique);
6013 }
6014
d6c82d7b 6015 else if ((tnode = tree_search(tree_duplicates, addr->unique)))
059ec3d9
PH
6016 {
6017 DEBUG(D_deliver|D_route)
6018 debug_printf("%s is a duplicate address: discarded\n", addr->address);
6019 addr->dupof = tnode->data.ptr;
6020 addr->next = addr_duplicate;
6021 addr_duplicate = addr;
6022 continue;
6023 }
6024
6025 DEBUG(D_deliver|D_route) debug_printf("unique = %s\n", addr->unique);
6026
6027 /* Check for previous delivery */
6028
d6c82d7b 6029 if (tree_search(tree_nonrecipients, addr->unique))
059ec3d9
PH
6030 {
6031 DEBUG(D_deliver|D_route)
6032 debug_printf("%s was previously delivered: discarded\n", addr->address);
6033 child_done(addr, tod_stamp(tod_log));
6034 continue;
6035 }
6036
6037 /* Save for checking future duplicates */
6038
6039 tree_add_duplicate(addr->unique, addr);
6040
6041 /* Set local part and domain */
6042
6043 addr->local_part = addr->address;
6044 addr->domain = addr->parent->domain;
6045
6046 /* Ensure that the delivery is permitted. */
6047
6048 if (testflag(addr, af_file))
6049 {
6050 if (!testflag(addr, af_allow_file))
6051 {
6052 addr->basic_errno = ERRNO_FORBIDFILE;
6053 addr->message = US"delivery to file forbidden";
6054 (void)post_process_one(addr, FAIL, LOG_MAIN, DTYPE_ROUTER, 0);
6055 continue; /* with the next new address */
6056 }
6057 }
6058 else if (addr->address[0] == '|')
6059 {
6060 if (!testflag(addr, af_allow_pipe))
6061 {
6062 addr->basic_errno = ERRNO_FORBIDPIPE;
6063 addr->message = US"delivery to pipe forbidden";
6064 (void)post_process_one(addr, FAIL, LOG_MAIN, DTYPE_ROUTER, 0);
6065 continue; /* with the next new address */
6066 }
6067 }
6068 else if (!testflag(addr, af_allow_reply))
6069 {
6070 addr->basic_errno = ERRNO_FORBIDREPLY;
6071 addr->message = US"autoreply forbidden";
6072 (void)post_process_one(addr, FAIL, LOG_MAIN, DTYPE_ROUTER, 0);
6073 continue; /* with the next new address */
6074 }
6075
6076 /* If the errno field is already set to BADTRANSPORT, it indicates
6077 failure to expand a transport string, or find the associated transport,
6078 or an unset transport when one is required. Leave this test till now so
6079 that the forbid errors are given in preference. */
6080
6081 if (addr->basic_errno == ERRNO_BADTRANSPORT)
6082 {
6083 (void)post_process_one(addr, DEFER, LOG_MAIN, DTYPE_ROUTER, 0);
6084 continue;
6085 }
6086
6087 /* Treat /dev/null as a special case and abandon the delivery. This
6088 avoids having to specify a uid on the transport just for this case.
6089 Arrange for the transport name to be logged as "**bypassed**". */
6090
6091 if (Ustrcmp(addr->address, "/dev/null") == 0)
6092 {
6093 uschar *save = addr->transport->name;
6094 addr->transport->name = US"**bypassed**";
6095 (void)post_process_one(addr, OK, LOG_MAIN, DTYPE_TRANSPORT, '=');
6096 addr->transport->name = save;
6097 continue; /* with the next new address */
6098 }
6099
6100 /* Pipe, file, or autoreply delivery is to go ahead as a normal local
6101 delivery. */
6102
6103 DEBUG(D_deliver|D_route)
6104 debug_printf("queued for %s transport\n", addr->transport->name);
6105 addr->next = addr_local;
6106 addr_local = addr;
6107 continue; /* with the next new address */
6108 }
6109
6110 /* Handle normal addresses. First, split up into local part and domain,
6111 handling the %-hack if necessary. There is the possibility of a defer from
6112 a lookup in percent_hack_domains. */
6113
6114 if ((rc = deliver_split_address(addr)) == DEFER)
6115 {
6116 addr->message = US"cannot check percent_hack_domains";
6117 addr->basic_errno = ERRNO_LISTDEFER;
6118 (void)post_process_one(addr, DEFER, LOG_MAIN, DTYPE_NONE, 0);
6119 continue;
6120 }
6121
6122 /* Check to see if the domain is held. If so, proceed only if the
6123 delivery was forced by hand. */
6124
6125 deliver_domain = addr->domain; /* set $domain */
d6c82d7b
JH
6126 if ( !forced && hold_domains
6127 && (rc = match_isinlist(addr->domain, (const uschar **)&hold_domains, 0,
059ec3d9 6128 &domainlist_anchor, addr->domain_cache, MCL_DOMAIN, TRUE,
d6c82d7b
JH
6129 NULL)) != FAIL
6130 )
059ec3d9
PH
6131 {
6132 if (rc == DEFER)
6133 {
6134 addr->message = US"hold_domains lookup deferred";
6135 addr->basic_errno = ERRNO_LISTDEFER;
6136 }
6137 else
6138 {
6139 addr->message = US"domain is held";
6140 addr->basic_errno = ERRNO_HELD;
6141 }
6142 (void)post_process_one(addr, DEFER, LOG_MAIN, DTYPE_NONE, 0);
6143 continue;
6144 }
6145
6146 /* Now we can check for duplicates and previously delivered addresses. In
6147 order to do this, we have to generate a "unique" value for each address,
6148 because there may be identical actual addresses in a line of descendents.
6149 The "unique" field is initialized to the same value as the "address" field,
6150 but gets changed here to cope with identically-named descendents. */
6151
d6c82d7b 6152 for (parent = addr->parent; parent; parent = parent->parent)
059ec3d9
PH
6153 if (strcmpic(addr->address, parent->address) == 0) break;
6154
6155 /* If there's an ancestor with the same name, set the homonym flag. This
6156 influences how deliveries are recorded. Then add a prefix on the front of
6157 the unique address. We use \n\ where n starts at 0 and increases each time.
6158 It is unlikely to pass 9, but if it does, it may look odd but will still
6159 work. This means that siblings or cousins with the same names are treated
6160 as duplicates, which is what we want. */
6161
d6c82d7b 6162 if (parent)
059ec3d9
PH
6163 {
6164 setflag(addr, af_homonym);
6165 if (parent->unique[0] != '\\')
6166 addr->unique = string_sprintf("\\0\\%s", addr->address);
6167 else
6168 addr->unique = string_sprintf("\\%c\\%s", parent->unique[1] + 1,
6169 addr->address);
6170 }
6171
6172 /* Ensure that the domain in the unique field is lower cased, because
6173 domains are always handled caselessly. */
6174
6175 p = Ustrrchr(addr->unique, '@');
6176 while (*p != 0) { *p = tolower(*p); p++; }
6177
6178 DEBUG(D_deliver|D_route) debug_printf("unique = %s\n", addr->unique);
6179
d6c82d7b 6180 if (tree_search(tree_nonrecipients, addr->unique))
059ec3d9
PH
6181 {
6182 DEBUG(D_deliver|D_route)
6183 debug_printf("%s was previously delivered: discarded\n", addr->unique);
6184 child_done(addr, tod_stamp(tod_log));
6185 continue;
6186 }
6187
059ec3d9 6188 /* Get the routing retry status, saving the two retry keys (with and
48c7f9e2
PH
6189 without the local part) for subsequent use. If there is no retry record for
6190 the standard address routing retry key, we look for the same key with the
6191 sender attached, because this form is used by the smtp transport after a
6192 4xx response to RCPT when address_retry_include_sender is true. */
059ec3d9
PH
6193
6194 addr->domain_retry_key = string_sprintf("R:%s", addr->domain);
6195 addr->address_retry_key = string_sprintf("R:%s@%s", addr->local_part,
6196 addr->domain);
6197
d6c82d7b 6198 if (dbm_file)
059ec3d9
PH
6199 {
6200 domain_retry_record = dbfn_read(dbm_file, addr->domain_retry_key);
d6c82d7b
JH
6201 if ( domain_retry_record
6202 && now - domain_retry_record->time_stamp > retry_data_expire
6203 )
48c7f9e2 6204 domain_retry_record = NULL; /* Ignore if too old */
059ec3d9
PH
6205
6206 address_retry_record = dbfn_read(dbm_file, addr->address_retry_key);
d6c82d7b
JH
6207 if ( address_retry_record
6208 && now - address_retry_record->time_stamp > retry_data_expire
6209 )
48c7f9e2
PH
6210 address_retry_record = NULL; /* Ignore if too old */
6211
d6c82d7b 6212 if (!address_retry_record)
48c7f9e2 6213 {
09945f1e 6214 uschar *altkey = string_sprintf("%s:<%s>", addr->address_retry_key,
48c7f9e2
PH
6215 sender_address);
6216 address_retry_record = dbfn_read(dbm_file, altkey);
d6c82d7b
JH
6217 if ( address_retry_record
6218 && now - address_retry_record->time_stamp > retry_data_expire)
48c7f9e2
PH
6219 address_retry_record = NULL; /* Ignore if too old */
6220 }
059ec3d9 6221 }
d6c82d7b
JH
6222 else
6223 domain_retry_record = address_retry_record = NULL;
059ec3d9
PH
6224
6225 DEBUG(D_deliver|D_retry)
6226 {
d6c82d7b 6227 if (!domain_retry_record)
059ec3d9 6228 debug_printf("no domain retry record\n");
d6c82d7b 6229 if (!address_retry_record)
059ec3d9
PH
6230 debug_printf("no address retry record\n");
6231 }
6232
6233 /* If we are sending a message down an existing SMTP connection, we must
6234 assume that the message which created the connection managed to route
6235 an address to that connection. We do not want to run the risk of taking
6236 a long time over routing here, because if we do, the server at the other
6237 end of the connection may time it out. This is especially true for messages
6238 with lots of addresses. For this kind of delivery, queue_running is not
6239 set, so we would normally route all addresses. We take a pragmatic approach
6240 and defer routing any addresses that have any kind of domain retry record.
6241 That is, we don't even look at their retry times. It doesn't matter if this
6242 doesn't work occasionally. This is all just an optimization, after all.
6243
6244 The reason for not doing the same for address retries is that they normally
6245 arise from 4xx responses, not DNS timeouts. */
6246
d6c82d7b 6247 if (continue_hostname && domain_retry_record)
059ec3d9
PH
6248 {
6249 addr->message = US"reusing SMTP connection skips previous routing defer";
6250 addr->basic_errno = ERRNO_RRETRY;
6251 (void)post_process_one(addr, DEFER, LOG_MAIN, DTYPE_ROUTER, 0);
6252 }
6253
f6c332bd
PH
6254 /* If we are in a queue run, defer routing unless there is no retry data or
6255 we've passed the next retry time, or this message is forced. In other
6256 words, ignore retry data when not in a queue run.
6257
6258 However, if the domain retry time has expired, always allow the routing
6259 attempt. If it fails again, the address will be failed. This ensures that
059ec3d9
PH
6260 each address is routed at least once, even after long-term routing
6261 failures.
6262
6263 If there is an address retry, check that too; just wait for the next
6264 retry time. This helps with the case when the temporary error on the
6265 address was really message-specific rather than address specific, since
f6c332bd
PH
6266 it allows other messages through.
6267
6268 We also wait for the next retry time if this is a message sent down an
6269 existing SMTP connection (even though that will be forced). Otherwise there
6270 will be far too many attempts for an address that gets a 4xx error. In
6271 fact, after such an error, we should not get here because, the host should
6272 not be remembered as one this message needs. However, there was a bug that
ba9af0af
TF
6273 used to cause this to happen, so it is best to be on the safe side.
6274
1ddeb334
TF
6275 Even if we haven't reached the retry time in the hints, there is one more
6276 check to do, which is for the ultimate address timeout. We only do this
6277 check if there is an address retry record and there is not a domain retry
6278 record; this implies that previous attempts to handle the address had the
6279 retry_use_local_parts option turned on. We use this as an approximation
6280 for the destination being like a local delivery, for example delivery over
6281 LMTP to an IMAP message store. In this situation users are liable to bump
6282 into their quota and thereby have intermittently successful deliveries,
6283 which keep the retry record fresh, which can lead to us perpetually
6284 deferring messages. */
059ec3d9 6285
d6c82d7b
JH
6286 else if ( ( queue_running && !deliver_force
6287 || continue_hostname
6288 )
6289 && ( ( domain_retry_record
6290 && now < domain_retry_record->next_try
6291 && !domain_retry_record->expired
6292 )
6293 || ( address_retry_record
6294 && now < address_retry_record->next_try
6295 ) )
6296 && ( domain_retry_record
6297 || !address_retry_record
6298 || !retry_ultimate_address_timeout(addr->address_retry_key,
6299 addr->domain, address_retry_record, now)
6300 ) )
059ec3d9
PH
6301 {
6302 addr->message = US"retry time not reached";
6303 addr->basic_errno = ERRNO_RRETRY;
6304 (void)post_process_one(addr, DEFER, LOG_MAIN, DTYPE_ROUTER, 0);
6305 }
6306
6307 /* The domain is OK for routing. Remember if retry data exists so it
6308 can be cleaned up after a successful delivery. */
6309
6310 else
6311 {
d6c82d7b 6312 if (domain_retry_record || address_retry_record)
059ec3d9
PH
6313 setflag(addr, af_dr_retry_exists);
6314 addr->next = addr_route;
6315 addr_route = addr;
6316 DEBUG(D_deliver|D_route)
6317 debug_printf("%s: queued for routing\n", addr->address);
6318 }
6319 }
6320
6321 /* The database is closed while routing is actually happening. Requests to
6322 update it are put on a chain and all processed together at the end. */
6323
d6c82d7b 6324 if (dbm_file) dbfn_close(dbm_file);
059ec3d9
PH
6325
6326 /* If queue_domains is set, we don't even want to try routing addresses in
6327 those domains. During queue runs, queue_domains is forced to be unset.
6328 Optimize by skipping this pass through the addresses if nothing is set. */
6329
d6c82d7b 6330 if (!deliver_force && queue_domains)
059ec3d9
PH
6331 {
6332 address_item *okaddr = NULL;
d6c82d7b 6333 while (addr_route)
059ec3d9
PH
6334 {
6335 address_item *addr = addr_route;
6336 addr_route = addr->next;
6337
6338 deliver_domain = addr->domain; /* set $domain */
55414b25 6339 if ((rc = match_isinlist(addr->domain, (const uschar **)&queue_domains, 0,
059ec3d9
PH
6340 &domainlist_anchor, addr->domain_cache, MCL_DOMAIN, TRUE, NULL))
6341 != OK)
6342 {
6343 if (rc == DEFER)
6344 {
6345 addr->basic_errno = ERRNO_LISTDEFER;
6346 addr->message = US"queue_domains lookup deferred";
6347 (void)post_process_one(addr, DEFER, LOG_MAIN, DTYPE_ROUTER, 0);
6348 }
6349 else
6350 {
6351 addr->next = okaddr;
6352 okaddr = addr;
6353 }
6354 }
6355 else
6356 {
6357 addr->basic_errno = ERRNO_QUEUE_DOMAIN;
6358 addr->message = US"domain is in queue_domains";
6359 (void)post_process_one(addr, DEFER, LOG_MAIN, DTYPE_ROUTER, 0);
6360 }
6361 }
6362
6363 addr_route = okaddr;
6364 }
6365
6366 /* Now route those addresses that are not deferred. */
6367
d6c82d7b 6368 while (addr_route)
059ec3d9
PH
6369 {
6370 int rc;
6371 address_item *addr = addr_route;
55414b25 6372 const uschar *old_domain = addr->domain;
059ec3d9
PH
6373 uschar *old_unique = addr->unique;
6374 addr_route = addr->next;
6375 addr->next = NULL;
6376
6377 /* Just in case some router parameter refers to it. */
6378
d6c82d7b
JH
6379 if (!(return_path = addr->prop.errors_address))
6380 return_path = sender_address;
059ec3d9
PH
6381
6382 /* If a router defers an address, add a retry item. Whether or not to
6383 use the local part in the key is a property of the router. */
6384
6385 if ((rc = route_address(addr, &addr_local, &addr_remote, &addr_new,
6386 &addr_succeed, v_none)) == DEFER)
d6c82d7b
JH
6387 retry_add_item(addr,
6388 addr->router->retry_use_local_part
6389 ? string_sprintf("R:%s@%s", addr->local_part, addr->domain)
6390 : string_sprintf("R:%s", addr->domain),
6391 0);
059ec3d9
PH
6392
6393 /* Otherwise, if there is an existing retry record in the database, add
09945f1e
PH
6394 retry items to delete both forms. We must also allow for the possibility
6395 of a routing retry that includes the sender address. Since the domain might
6396 have been rewritten (expanded to fully qualified) as a result of routing,
6397 ensure that the rewritten form is also deleted. */
059ec3d9
PH
6398
6399 else if (testflag(addr, af_dr_retry_exists))
6400 {
09945f1e
PH
6401 uschar *altkey = string_sprintf("%s:<%s>", addr->address_retry_key,
6402 sender_address);
6403 retry_add_item(addr, altkey, rf_delete);
059ec3d9
PH
6404 retry_add_item(addr, addr->address_retry_key, rf_delete);
6405 retry_add_item(addr, addr->domain_retry_key, rf_delete);
6406 if (Ustrcmp(addr->domain, old_domain) != 0)
6407 retry_add_item(addr, string_sprintf("R:%s", old_domain), rf_delete);
6408 }
6409
6410 /* DISCARD is given for :blackhole: and "seen finish". The event has been
6411 logged, but we need to ensure the address (and maybe parents) is marked
6412 done. */
6413
6414 if (rc == DISCARD)
6415 {
6416 address_done(addr, tod_stamp(tod_log));
6417 continue; /* route next address */
6418 }
6419
6420 /* The address is finished with (failed or deferred). */
6421
6422 if (rc != OK)
6423 {
6424 (void)post_process_one(addr, rc, LOG_MAIN, DTYPE_ROUTER, 0);
6425 continue; /* route next address */
6426 }
6427
6428 /* The address has been routed. If the router changed the domain, it will
6429 also have changed the unique address. We have to test whether this address
6430 has already been delivered, because it's the unique address that finally
6431 gets recorded. */
6432
d6c82d7b
JH
6433 if ( addr->unique != old_unique
6434 && tree_search(tree_nonrecipients, addr->unique) != 0
6435 )
059ec3d9
PH
6436 {
6437 DEBUG(D_deliver|D_route) debug_printf("%s was previously delivered: "
6438 "discarded\n", addr->address);
6439 if (addr_remote == addr) addr_remote = addr->next;
6440 else if (addr_local == addr) addr_local = addr->next;
6441 }
6442
6443 /* If the router has same_domain_copy_routing set, we are permitted to copy
6444 the routing for any other addresses with the same domain. This is an
6445 optimisation to save repeated DNS lookups for "standard" remote domain
6446 routing. The option is settable only on routers that generate host lists.
6447 We play it very safe, and do the optimization only if the address is routed
6448 to a remote transport, there are no header changes, and the domain was not
6449 modified by the router. */
6450
d6c82d7b
JH
6451 if ( addr_remote == addr
6452 && addr->router->same_domain_copy_routing
6453 && !addr->prop.extra_headers
6454 && !addr->prop.remove_headers
6455 && old_domain == addr->domain
6456 )
059ec3d9
PH
6457 {
6458 address_item **chain = &addr_route;
d6c82d7b 6459 while (*chain)
059ec3d9
PH
6460 {
6461 address_item *addr2 = *chain;
6462 if (Ustrcmp(addr2->domain, addr->domain) != 0)
6463 {
6464 chain = &(addr2->next);
6465 continue;
6466 }
6467
6468 /* Found a suitable address; take it off the routing list and add it to
6469 the remote delivery list. */
6470
6471 *chain = addr2->next;
6472 addr2->next = addr_remote;
6473 addr_remote = addr2;
6474
6475 /* Copy the routing data */
6476
6477 addr2->domain = addr->domain;
6478 addr2->router = addr->router;
6479 addr2->transport = addr->transport;
6480 addr2->host_list = addr->host_list;
6481 addr2->fallback_hosts = addr->fallback_hosts;
d43cbe25 6482 addr2->prop.errors_address = addr->prop.errors_address;
059ec3d9
PH
6483 copyflag(addr2, addr, af_hide_child | af_local_host_removed);
6484
6485 DEBUG(D_deliver|D_route)
6486 {
6487 debug_printf(">>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>\n"
6488 "routing %s\n"
6489 "Routing for %s copied from %s\n",
6490 addr2->address, addr2->address, addr->address);
6491 }
6492 }
6493 }
6494 } /* Continue with routing the next address. */
6495 } /* Loop to process any child addresses that the routers created, and
6496 any rerouted addresses that got put back on the new chain. */
6497
6498
6499/* Debugging: show the results of the routing */
6500
6501DEBUG(D_deliver|D_retry|D_route)
6502 {
d6c82d7b 6503 address_item *p;
059ec3d9
PH
6504 debug_printf(">>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>\n");
6505 debug_printf("After routing:\n Local deliveries:\n");
d6c82d7b 6506 for (p = addr_local; p; p = p->next)
059ec3d9 6507 debug_printf(" %s\n", p->address);
059ec3d9 6508
059ec3d9 6509 debug_printf(" Remote deliveries:\n");
d6c82d7b 6510 for (p = addr_remote; p; p = p->next)
059ec3d9 6511 debug_printf(" %s\n", p->address);
059ec3d9 6512
059ec3d9 6513 debug_printf(" Failed addresses:\n");
d6c82d7b 6514 for (p = addr_failed; p; p = p->next)
059ec3d9 6515 debug_printf(" %s\n", p->address);
059ec3d9 6516
059ec3d9 6517 debug_printf(" Deferred addresses:\n");
d6c82d7b 6518 for (p = addr_defer; p; p = p->next)
059ec3d9 6519 debug_printf(" %s\n", p->address);
059ec3d9
PH
6520 }
6521
6522/* Free any resources that were cached during routing. */
6523
6524search_tidyup();
6525route_tidyup();
6526
6527/* These two variables are set only during routing, after check_local_user.
6528Ensure they are not set in transports. */
6529
6530local_user_gid = (gid_t)(-1);
6531local_user_uid = (uid_t)(-1);
6532
d7174846
PH
6533/* Check for any duplicate addresses. This check is delayed until after
6534routing, because the flexibility of the routing configuration means that
6535identical addresses with different parentage may end up being redirected to
6536different addresses. Checking for duplicates too early (as we previously used
6537to) makes this kind of thing not work. */
6538
6539do_duplicate_check(&addr_local);
6540do_duplicate_check(&addr_remote);
6541
059ec3d9
PH
6542/* When acting as an MUA wrapper, we proceed only if all addresses route to a
6543remote transport. The check that they all end up in one transaction happens in
6544the do_remote_deliveries() function. */
6545
d6c82d7b
JH
6546if ( mua_wrapper
6547 && (addr_local || addr_failed || addr_defer)
6548 )
059ec3d9
PH
6549 {
6550 address_item *addr;
6551 uschar *which, *colon, *msg;
6552
d6c82d7b 6553 if (addr_local)
059ec3d9
PH
6554 {
6555 addr = addr_local;
6556 which = US"local";
6557 }
d6c82d7b 6558 else if (addr_defer)
059ec3d9
PH
6559 {
6560 addr = addr_defer;
6561 which = US"deferred";
6562 }
6563 else
6564 {
6565 addr = addr_failed;
6566 which = US"failed";
6567 }
6568
d6c82d7b 6569 while (addr->parent) addr = addr->parent;
059ec3d9 6570
d6c82d7b 6571 if (addr->message)
059ec3d9
PH
6572 {
6573 colon = US": ";
6574 msg = addr->message;
6575 }
6576 else colon = msg = US"";
6577
6578 /* We don't need to log here for a forced failure as it will already
6579 have been logged. Defer will also have been logged, but as a defer, so we do
6580 need to do the failure logging. */
6581
6582 if (addr != addr_failed)
6583 log_write(0, LOG_MAIN, "** %s routing yielded a %s delivery",
6584 addr->address, which);
6585
6586 /* Always write an error to the caller */
6587
6588 fprintf(stderr, "routing %s yielded a %s delivery%s%s\n", addr->address,
6589 which, colon, msg);
6590
6591 final_yield = DELIVER_MUA_FAILED;
6592 addr_failed = addr_defer = NULL; /* So that we remove the message */
6593 goto DELIVERY_TIDYUP;
6594 }
6595
6596
6597/* If this is a run to continue deliveries to an external channel that is
6598already set up, defer any local deliveries. */
6599
d6c82d7b 6600if (continue_transport)
059ec3d9 6601 {
d6c82d7b 6602 if (addr_defer)
059ec3d9
PH
6603 {
6604 address_item *addr = addr_defer;
d6c82d7b 6605 while (addr->next) addr = addr->next;
059ec3d9
PH
6606 addr->next = addr_local;
6607 }
d6c82d7b
JH
6608 else
6609 addr_defer = addr_local;
059ec3d9
PH
6610 addr_local = NULL;
6611 }
6612
6613
6614/* Because address rewriting can happen in the routers, we should not really do
6615ANY deliveries until all addresses have been routed, so that all recipients of
6616the message get the same headers. However, this is in practice not always
6617possible, since sometimes remote addresses give DNS timeouts for days on end.
6618The pragmatic approach is to deliver what we can now, saving any rewritten
6619headers so that at least the next lot of recipients benefit from the rewriting
6620that has already been done.
6621
6622If any headers have been rewritten during routing, update the spool file to
6623remember them for all subsequent deliveries. This can be delayed till later if
6624there is only address to be delivered - if it succeeds the spool write need not
6625happen. */
6626
d6c82d7b
JH
6627if ( header_rewritten
6628 && ( ( addr_local
6629 && (addr_local->next || addr_remote)
6630 )
6631 || (addr_remote && addr_remote->next)
6632 ) )
059ec3d9
PH
6633 {
6634 /* Panic-dies on error */
6635 (void)spool_write_header(message_id, SW_DELIVERING, NULL);
6636 header_rewritten = FALSE;
6637 }
6638
6639
6640/* If there are any deliveries to be done, open the journal file. This is used
6641to record successful deliveries as soon as possible after each delivery is
6642known to be complete. A file opened with O_APPEND is used so that several
6643processes can run simultaneously.
6644
6645The journal is just insurance against crashes. When the spool file is
6646ultimately updated at the end of processing, the journal is deleted. If a
6647journal is found to exist at the start of delivery, the addresses listed
6648therein are added to the non-recipients. */
6649
d6c82d7b 6650if (addr_local || addr_remote)
059ec3d9 6651 {
41313d92 6652 uschar * fname = spool_fname(US"input", message_subdir, id, US"-J");
a2da3176 6653
41313d92 6654 if ((journal_fd = Uopen(fname, O_WRONLY|O_APPEND|O_CREAT, SPOOL_MODE)) <0)
059ec3d9
PH
6655 {
6656 log_write(0, LOG_MAIN|LOG_PANIC, "Couldn't open journal file %s: %s",
41313d92 6657 fname, strerror(errno));
059ec3d9
PH
6658 return DELIVER_NOT_ATTEMPTED;
6659 }
6660
6661 /* Set the close-on-exec flag, make the file owned by Exim, and ensure
6662 that the mode is correct - the group setting doesn't always seem to get
6663 set automatically. */
6664
1ac6b2e7
JH
6665 if( fcntl(journal_fd, F_SETFD, fcntl(journal_fd, F_GETFD) | FD_CLOEXEC)
6666 || fchown(journal_fd, exim_uid, exim_gid)
6667 || fchmod(journal_fd, SPOOL_MODE)
6668 )
6669 {
41313d92 6670 int ret = Uunlink(fname);
1ac6b2e7 6671 log_write(0, LOG_MAIN|LOG_PANIC, "Couldn't set perms on journal file %s: %s",
41313d92 6672 fname, strerror(errno));
1ac6b2e7
JH
6673 if(ret && errno != ENOENT)
6674 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "failed to unlink %s: %s",
41313d92 6675 fname, strerror(errno));
1ac6b2e7
JH
6676 return DELIVER_NOT_ATTEMPTED;
6677 }
059ec3d9
PH
6678 }
6679
6680
1ac6b2e7 6681
059ec3d9
PH
6682/* Now we can get down to the business of actually doing deliveries. Local
6683deliveries are done first, then remote ones. If ever the problems of how to
6684handle fallback transports are figured out, this section can be put into a loop
6685for handling fallbacks, though the uid switching will have to be revised. */
6686
f1513293
PH
6687/* Precompile a regex that is used to recognize a parameter in response
6688to an LHLO command, if is isn't already compiled. This may be used on both
6689local and remote LMTP deliveries. */
6690
d6c82d7b
JH
6691if (!regex_IGNOREQUOTA)
6692 regex_IGNOREQUOTA =
6693 regex_must_compile(US"\\n250[\\s\\-]IGNOREQUOTA(\\s|\\n|$)", FALSE, TRUE);
f1513293
PH
6694
6695/* Handle local deliveries */
6696
d6c82d7b 6697if (addr_local)
059ec3d9
PH
6698 {
6699 DEBUG(D_deliver|D_transport)
6700 debug_printf(">>>>>>>>>>>>>>>> Local deliveries >>>>>>>>>>>>>>>>\n");
6701 do_local_deliveries();
6702 disable_logging = FALSE;
6703 }
6704
6705/* If queue_run_local is set, we do not want to attempt any remote deliveries,
6706so just queue them all. */
6707
6708if (queue_run_local)
d6c82d7b 6709 while (addr_remote)
059ec3d9
PH
6710 {
6711 address_item *addr = addr_remote;
6712 addr_remote = addr->next;
6713 addr->next = NULL;
6714 addr->basic_errno = ERRNO_LOCAL_ONLY;
6715 addr->message = US"remote deliveries suppressed";
6716 (void)post_process_one(addr, DEFER, LOG_MAIN, DTYPE_TRANSPORT, 0);
6717 }
059ec3d9
PH
6718
6719/* Handle remote deliveries */
6720
d6c82d7b 6721if (addr_remote)
059ec3d9
PH
6722 {
6723 DEBUG(D_deliver|D_transport)
6724 debug_printf(">>>>>>>>>>>>>>>> Remote deliveries >>>>>>>>>>>>>>>>\n");
6725
6726 /* Precompile some regex that are used to recognize parameters in response
6727 to an EHLO command, if they aren't already compiled. */
6728
476be7e2 6729 deliver_init();
6c1c3d1d 6730
059ec3d9
PH
6731 /* Now sort the addresses if required, and do the deliveries. The yield of
6732 do_remote_deliveries is FALSE when mua_wrapper is set and all addresses
6733 cannot be delivered in one transaction. */
6734
d6c82d7b 6735 if (remote_sort_domains) sort_remote_deliveries();
059ec3d9
PH
6736 if (!do_remote_deliveries(FALSE))
6737 {
6738 log_write(0, LOG_MAIN, "** mua_wrapper is set but recipients cannot all "
6739 "be delivered in one transaction");
6740 fprintf(stderr, "delivery to smarthost failed (configuration problem)\n");
6741
6742 final_yield = DELIVER_MUA_FAILED;
6743 addr_failed = addr_defer = NULL; /* So that we remove the message */
6744 goto DELIVERY_TIDYUP;
6745 }
6746
6747 /* See if any of the addresses that failed got put on the queue for delivery
6748 to their fallback hosts. We do it this way because often the same fallback
6749 host is used for many domains, so all can be sent in a single transaction
6750 (if appropriately configured). */
6751
d6c82d7b 6752 if (addr_fallback && !mua_wrapper)
059ec3d9
PH
6753 {
6754 DEBUG(D_deliver) debug_printf("Delivering to fallback hosts\n");
6755 addr_remote = addr_fallback;
6756 addr_fallback = NULL;
d6c82d7b 6757 if (remote_sort_domains) sort_remote_deliveries();
059ec3d9
PH
6758 do_remote_deliveries(TRUE);
6759 }
6760 disable_logging = FALSE;
6761 }
6762
6763
6764/* All deliveries are now complete. Ignore SIGTERM during this tidying up
6765phase, to minimize cases of half-done things. */
6766
6767DEBUG(D_deliver)
6768 debug_printf(">>>>>>>>>>>>>>>> deliveries are done >>>>>>>>>>>>>>>>\n");
6769
6770/* Root privilege is no longer needed */
6771
6772exim_setugid(exim_uid, exim_gid, FALSE, US"post-delivery tidying");
6773
6774set_process_info("tidying up after delivering %s", message_id);
6775signal(SIGTERM, SIG_IGN);
6776
6777/* When we are acting as an MUA wrapper, the smtp transport will either have
47c7a64a
PH
6778succeeded for all addresses, or failed them all in normal cases. However, there
6779are some setup situations (e.g. when a named port does not exist) that cause an
6780immediate exit with deferral of all addresses. Convert those into failures. We
6781do not ever want to retry, nor do we want to send a bounce message. */
059ec3d9
PH
6782
6783if (mua_wrapper)
6784 {
d6c82d7b 6785 if (addr_defer)
47c7a64a
PH
6786 {
6787 address_item *addr, *nextaddr;
d6c82d7b 6788 for (addr = addr_defer; addr; addr = nextaddr)
47c7a64a
PH
6789 {
6790 log_write(0, LOG_MAIN, "** %s mua_wrapper forced failure for deferred "
6791 "delivery", addr->address);
6792 nextaddr = addr->next;
6793 addr->next = addr_failed;
6794 addr_failed = addr;
6795 }
6796 addr_defer = NULL;
6797 }
6798
6799 /* Now all should either have succeeded or failed. */
6800
d6c82d7b
JH
6801 if (!addr_failed)
6802 final_yield = DELIVER_MUA_SUCCEEDED;
6803 else
059ec3d9 6804 {
c562fd30 6805 host_item * host;
d6c82d7b
JH
6806 uschar *s = addr_failed->user_message;
6807
6808 if (!s) s = addr_failed->message;
059ec3d9
PH
6809
6810 fprintf(stderr, "Delivery failed: ");
6811 if (addr_failed->basic_errno > 0)
6812 {
6813 fprintf(stderr, "%s", strerror(addr_failed->basic_errno));
d6c82d7b 6814 if (s) fprintf(stderr, ": ");
059ec3d9 6815 }
c562fd30
JH
6816 if ((host = addr_failed->host_used))
6817 fprintf(stderr, "H=%s [%s]: ", host->name, host->address);
d6c82d7b
JH
6818 if (s)
6819 fprintf(stderr, "%s", CS s);
6820 else if (addr_failed->basic_errno <= 0)
6821 fprintf(stderr, "unknown error");
059ec3d9
PH
6822 fprintf(stderr, "\n");
6823
6824 final_yield = DELIVER_MUA_FAILED;
6825 addr_failed = NULL;
6826 }
6827 }
6828
6829/* In a normal configuration, we now update the retry database. This is done in
6830one fell swoop at the end in order not to keep opening and closing (and
6831locking) the database. The code for handling retries is hived off into a
6832separate module for convenience. We pass it the addresses of the various
6833chains, because deferred addresses can get moved onto the failed chain if the
6834retry cutoff time has expired for all alternative destinations. Bypass the
6835updating of the database if the -N flag is set, which is a debugging thing that
6836prevents actual delivery. */
6837
d6c82d7b
JH
6838else if (!dont_deliver)
6839 retry_update(&addr_defer, &addr_failed, &addr_succeed);
059ec3d9 6840
f40d5be3 6841/* Send DSN for successful messages if requested */
6c1c3d1d
WB
6842addr_senddsn = NULL;
6843
f40d5be3 6844for (addr_dsntmp = addr_succeed; addr_dsntmp; addr_dsntmp = addr_dsntmp->next)
6c1c3d1d 6845 {
6c1c3d1d 6846 /* af_ignore_error not honored here. it's not an error */
f40d5be3 6847 DEBUG(D_deliver) debug_printf("DSN: processing router : %s\n"
9671784a
JH
6848 "DSN: processing successful delivery address: %s\n"
6849 "DSN: Sender_address: %s\n"
6850 "DSN: orcpt: %s flags: %d\n"
6851 "DSN: envid: %s ret: %d\n"
6852 "DSN: Final recipient: %s\n"
6853 "DSN: Remote SMTP server supports DSN: %d\n",
6854 addr_dsntmp->router->name,
6855 addr_dsntmp->address,
6856 sender_address,
6857 addr_dsntmp->dsn_orcpt, addr_dsntmp->dsn_flags,
6858 dsn_envid, dsn_ret,
6859 addr_dsntmp->address,
6860 addr_dsntmp->dsn_aware
6861 );
6c1c3d1d
WB
6862
6863 /* send report if next hop not DSN aware or a router flagged "last DSN hop"
6864 and a report was requested */
9671784a
JH
6865 if ( ( addr_dsntmp->dsn_aware != dsn_support_yes
6866 || addr_dsntmp->dsn_flags & rf_dsnlasthop
6867 )
6868 && addr_dsntmp->dsn_flags & rf_dsnflags
6869 && addr_dsntmp->dsn_flags & rf_notify_success
6870 )
6c1c3d1d
WB
6871 {
6872 /* copy and relink address_item and send report with all of them at once later */
6873 address_item *addr_next;
6874 addr_next = addr_senddsn;
6875 addr_senddsn = store_get(sizeof(address_item));
6876 memcpy(addr_senddsn, addr_dsntmp, sizeof(address_item));
6877 addr_senddsn->next = addr_next;
6878 }
6879 else
94431adb 6880 DEBUG(D_deliver) debug_printf("DSN: not sending DSN success message\n");
6c1c3d1d
WB
6881 }
6882
9671784a 6883if (addr_senddsn)
6c1c3d1d
WB
6884 {
6885 pid_t pid;
6886 int fd;
6887
94431adb 6888 /* create exim process to send message */
6c1c3d1d
WB
6889 pid = child_open_exim(&fd);
6890
6891 DEBUG(D_deliver) debug_printf("DSN: child_open_exim returns: %d\n", pid);
94431adb 6892
6c1c3d1d
WB
6893 if (pid < 0) /* Creation of child failed */
6894 {
6895 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "Process %d (parent %d) failed to "
6896 "create child process to send failure message: %s", getpid(),
6897 getppid(), strerror(errno));
6898
1c5b1499 6899 DEBUG(D_deliver) debug_printf("DSN: child_open_exim failed\n");
94431adb 6900 }
6c1c3d1d
WB
6901 else /* Creation of child succeeded */
6902 {
6903 FILE *f = fdopen(fd, "wb");
6904 /* header only as required by RFC. only failure DSN needs to honor RET=FULL */
6905 int topt = topt_add_return_path | topt_no_body;
45500060 6906 uschar * bound;
94431adb 6907
1c5b1499
JH
6908 DEBUG(D_deliver)
6909 debug_printf("sending error message to: %s\n", sender_address);
94431adb 6910
6c1c3d1d 6911 /* build unique id for MIME boundary */
45500060
JH
6912 bound = string_sprintf(TIME_T_FMT "-eximdsn-%d", time(NULL), rand());
6913 DEBUG(D_deliver) debug_printf("DSN: MIME boundary: %s\n", bound);
94431adb 6914
c007c974
JH
6915 if (errors_reply_to)
6916 fprintf(f, "Reply-To: %s\n", errors_reply_to);
94431adb 6917
c007c974
JH
6918 fprintf(f, "Auto-Submitted: auto-generated\n"
6919 "From: Mail Delivery System <Mailer-Daemon@%s>\n"
6920 "To: %s\n"
6921 "Subject: Delivery Status Notification\n"
6922 "Content-Type: multipart/report; report-type=delivery-status; boundary=%s\n"
6923 "MIME-Version: 1.0\n\n"
6924
6925 "--%s\n"
6926 "Content-type: text/plain; charset=us-ascii\n\n"
94431adb 6927
c007c974 6928 "This message was created automatically by mail delivery software.\n"
8864c2c4 6929 " ----- The following addresses had successful delivery notifications -----\n",
45500060 6930 qualify_domain_sender, sender_address, bound, bound);
6c1c3d1d 6931
1c5b1499
JH
6932 for (addr_dsntmp = addr_senddsn; addr_dsntmp;
6933 addr_dsntmp = addr_dsntmp->next)
c007c974
JH
6934 fprintf(f, "<%s> (relayed %s)\n\n",
6935 addr_dsntmp->address,
6936 (addr_dsntmp->dsn_flags & rf_dsnlasthop) == 1
6937 ? "via non DSN router"
6938 : addr_dsntmp->dsn_aware == dsn_support_no
6939 ? "to non-DSN-aware mailer"
6940 : "via non \"Remote SMTP\" router"
6941 );
1c5b1499 6942
c007c974
JH
6943 fprintf(f, "--%s\n"
6944 "Content-type: message/delivery-status\n\n"
6945 "Reporting-MTA: dns; %s\n",
45500060 6946 bound, smtp_active_hostname);
c007c974 6947
1c5b1499
JH
6948 if (dsn_envid)
6949 { /* must be decoded from xtext: see RFC 3461:6.3a */
6c1c3d1d
WB
6950 uschar *xdec_envid;
6951 if (auth_xtextdecode(dsn_envid, &xdec_envid) > 0)
c007c974 6952 fprintf(f, "Original-Envelope-ID: %s\n", dsn_envid);
6c1c3d1d 6953 else
968178ac 6954 fprintf(f, "X-Original-Envelope-ID: error decoding xtext formatted ENVID\n");
6c1c3d1d 6955 }
c007c974 6956 fputc('\n', f);
6c1c3d1d 6957
c007c974
JH
6958 for (addr_dsntmp = addr_senddsn;
6959 addr_dsntmp;
6960 addr_dsntmp = addr_dsntmp->next)
6c1c3d1d 6961 {
c007c974 6962 if (addr_dsntmp->dsn_orcpt)
6c1c3d1d 6963 fprintf(f,"Original-Recipient: %s\n", addr_dsntmp->dsn_orcpt);
c007c974
JH
6964
6965 fprintf(f, "Action: delivered\n"
6966 "Final-Recipient: rfc822;%s\n"
6967 "Status: 2.0.0\n",
6968 addr_dsntmp->address);
6969
6970 if (addr_dsntmp->host_used && addr_dsntmp->host_used->name)
1c5b1499 6971 fprintf(f, "Remote-MTA: dns; %s\nDiagnostic-Code: smtp; 250 Ok\n\n",
c007c974 6972 addr_dsntmp->host_used->name);
6c1c3d1d 6973 else
1c5b1499 6974 fprintf(f, "Diagnostic-Code: X-Exim; relayed via non %s router\n\n",
c007c974 6975 (addr_dsntmp->dsn_flags & rf_dsnlasthop) == 1 ? "DSN" : "SMTP");
6c1c3d1d
WB
6976 }
6977
45500060 6978 fprintf(f, "--%s\nContent-type: text/rfc822-headers\n\n", bound);
94431adb 6979
6c1c3d1d
WB
6980 fflush(f);
6981 transport_filter_argv = NULL; /* Just in case */
6982 return_path = sender_address; /* In case not previously set */
94431adb 6983
6c1c3d1d
WB
6984 /* Write the original email out */
6985 transport_write_message(NULL, fileno(f), topt, 0, NULL, NULL, NULL, NULL, NULL, 0);
6986 fflush(f);
6987
21bc4865 6988 fprintf(f,"\n--%s--\n", bound);
6c1c3d1d
WB
6989
6990 fflush(f);
6991 fclose(f);
6992 rc = child_close(pid, 0); /* Waits for child to close, no timeout */
6993 }
6994 }
6c1c3d1d 6995
059ec3d9
PH
6996/* If any addresses failed, we must send a message to somebody, unless
6997af_ignore_error is set, in which case no action is taken. It is possible for
6998several messages to get sent if there are addresses with different
6999requirements. */
7000
d6c82d7b 7001while (addr_failed)
059ec3d9
PH
7002 {
7003 pid_t pid;
7004 int fd;
7005 uschar *logtod = tod_stamp(tod_log);
7006 address_item *addr;
7007 address_item *handled_addr = NULL;
7008 address_item **paddr;
7009 address_item *msgchain = NULL;
7010 address_item **pmsgchain = &msgchain;
7011
7012 /* There are weird cases when logging is disabled in the transport. However,
7013 there may not be a transport (address failed by a router). */
7014
7015 disable_logging = FALSE;
d6c82d7b 7016 if (addr_failed->transport)
059ec3d9
PH
7017 disable_logging = addr_failed->transport->disable_logging;
7018
7019 DEBUG(D_deliver)
7020 debug_printf("processing failed address %s\n", addr_failed->address);
7021
7022 /* There are only two ways an address in a bounce message can get here:
7023
7024 (1) When delivery was initially deferred, but has now timed out (in the call
7025 to retry_update() above). We can detect this by testing for
7026 af_retry_timedout. If the address does not have its own errors address,
7027 we arrange to ignore the error.
7028
7029 (2) If delivery failures for bounce messages are being ignored. We can detect
7030 this by testing for af_ignore_error. This will also be set if a bounce
7031 message has been autothawed and the ignore_bounce_errors_after time has
7032 passed. It might also be set if a router was explicitly configured to
7033 ignore errors (errors_to = "").
7034
7035 If neither of these cases obtains, something has gone wrong. Log the
7036 incident, but then ignore the error. */
7037
d6c82d7b 7038 if (sender_address[0] == 0 && !addr_failed->prop.errors_address)
059ec3d9 7039 {
9671784a
JH
7040 if ( !testflag(addr_failed, af_retry_timedout)
7041 && !testflag(addr_failed, af_ignore_error))
059ec3d9
PH
7042 {
7043 log_write(0, LOG_MAIN|LOG_PANIC, "internal error: bounce message "
7044 "failure is neither frozen nor ignored (it's been ignored)");
7045 }
7046 setflag(addr_failed, af_ignore_error);
7047 }
7048
7049 /* If the first address on the list has af_ignore_error set, just remove
7050 it from the list, throw away any saved message file, log it, and
7051 mark the recipient done. */
7052
50dc7409 7053 if ( testflag(addr_failed, af_ignore_error)
9671784a 7054 || ( addr_failed->dsn_flags & rf_dsnflags
d6c82d7b
JH
7055 && (addr_failed->dsn_flags & rf_notify_failure) != rf_notify_failure
7056 ) )
1c5b1499 7057 {
059ec3d9
PH
7058 addr = addr_failed;
7059 addr_failed = addr->next;
d6c82d7b 7060 if (addr->return_filename) Uunlink(addr->return_filename);
059ec3d9
PH
7061
7062 log_write(0, LOG_MAIN, "%s%s%s%s: error ignored",
7063 addr->address,
1c5b1499
JH
7064 !addr->parent ? US"" : US" <",
7065 !addr->parent ? US"" : addr->parent->address,
7066 !addr->parent ? US"" : US">");
059ec3d9
PH
7067
7068 address_done(addr, logtod);
7069 child_done(addr, logtod);
7070 /* Panic-dies on error */
7071 (void)spool_write_header(message_id, SW_DELIVERING, NULL);
7072 }
7073
7074 /* Otherwise, handle the sending of a message. Find the error address for
7075 the first address, then send a message that includes all failed addresses
7076 that have the same error address. Note the bounce_recipient is a global so
7077 that it can be accesssed by $bounce_recipient while creating a customized
7078 error message. */
7079
7080 else
7081 {
d6c82d7b
JH
7082 if (!(bounce_recipient = addr_failed->prop.errors_address))
7083 bounce_recipient = sender_address;
059ec3d9
PH
7084
7085 /* Make a subprocess to send a message */
7086
1c5b1499 7087 if ((pid = child_open_exim(&fd)) < 0)
059ec3d9
PH
7088 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "Process %d (parent %d) failed to "
7089 "create child process to send failure message: %s", getpid(),
7090 getppid(), strerror(errno));
7091
7092 /* Creation of child succeeded */
7093
7094 else
7095 {
7096 int ch, rc;
7097 int filecount = 0;
7098 int rcount = 0;
7099 uschar *bcc, *emf_text;
7100 FILE *f = fdopen(fd, "wb");
7101 FILE *emf = NULL;
7102 BOOL to_sender = strcmpic(sender_address, bounce_recipient) == 0;
7103 int max = (bounce_return_size_limit/DELIVER_IN_BUFFER_SIZE + 1) *
7104 DELIVER_IN_BUFFER_SIZE;
45500060 7105 uschar * bound;
0f9d3aea
JH
7106 uschar *dsnlimitmsg;
7107 uschar *dsnnotifyhdr;
7108 int topt;
059ec3d9
PH
7109
7110 DEBUG(D_deliver)
7111 debug_printf("sending error message to: %s\n", bounce_recipient);
7112
7113 /* Scan the addresses for all that have the same errors address, removing
7114 them from the addr_failed chain, and putting them on msgchain. */
7115
7116 paddr = &addr_failed;
d6c82d7b 7117 for (addr = addr_failed; addr; addr = *paddr)
d43cbe25
JH
7118 if (Ustrcmp(bounce_recipient, addr->prop.errors_address
7119 ? addr->prop.errors_address : sender_address) == 0)
1c5b1499 7120 { /* The same - dechain */
059ec3d9
PH
7121 *paddr = addr->next;
7122 *pmsgchain = addr;
7123 addr->next = NULL;
7124 pmsgchain = &(addr->next);
7125 }
1c5b1499
JH
7126 else
7127 paddr = &addr->next; /* Not the same; skip */
059ec3d9
PH
7128
7129 /* Include X-Failed-Recipients: for automatic interpretation, but do
7130 not let any one header line get too long. We do this by starting a
7131 new header every 50 recipients. Omit any addresses for which the
7132 "hide_child" flag is set. */
7133
d6c82d7b 7134 for (addr = msgchain; addr; addr = addr->next)
059ec3d9
PH
7135 {
7136 if (testflag(addr, af_hide_child)) continue;
7137 if (rcount >= 50)
7138 {
7139 fprintf(f, "\n");
7140 rcount = 0;
7141 }
7142 fprintf(f, "%s%s",
d6c82d7b
JH
7143 rcount++ == 0
7144 ? "X-Failed-Recipients: "
7145 : ",\n ",
7146 testflag(addr, af_pfr) && addr->parent
7147 ? string_printing(addr->parent->address)
7148 : string_printing(addr->address));
059ec3d9
PH
7149 }
7150 if (rcount > 0) fprintf(f, "\n");
7151
7152 /* Output the standard headers */
7153
1c5b1499 7154 if (errors_reply_to)
059ec3d9 7155 fprintf(f, "Reply-To: %s\n", errors_reply_to);
456682f5 7156 fprintf(f, "Auto-Submitted: auto-replied\n");
0e22dfd1 7157 moan_write_from(f);
059ec3d9
PH
7158 fprintf(f, "To: %s\n", bounce_recipient);
7159
6c1c3d1d 7160 /* generate boundary string and output MIME-Headers */
45500060 7161 bound = string_sprintf(TIME_T_FMT "-eximdsn-%d", time(NULL), rand());
c007c974
JH
7162
7163 fprintf(f, "Content-Type: multipart/report;"
7164 " report-type=delivery-status; boundary=%s\n"
7165 "MIME-Version: 1.0\n",
45500060 7166 bound);
6c1c3d1d 7167
059ec3d9
PH
7168 /* Open a template file if one is provided. Log failure to open, but
7169 carry on - default texts will be used. */
7170
c007c974
JH
7171 if (bounce_message_file)
7172 if (!(emf = Ufopen(bounce_message_file, "rb")))
059ec3d9
PH
7173 log_write(0, LOG_MAIN|LOG_PANIC, "Failed to open %s for error "
7174 "message texts: %s", bounce_message_file, strerror(errno));
059ec3d9
PH
7175
7176 /* Quietly copy to configured additional addresses if required. */
7177
c007c974
JH
7178 if ((bcc = moan_check_errorcopy(bounce_recipient)))
7179 fprintf(f, "Bcc: %s\n", bcc);
059ec3d9
PH
7180
7181 /* The texts for the message can be read from a template file; if there
7182 isn't one, or if it is too short, built-in texts are used. The first
7183 emf text is a Subject: and any other headers. */
7184
c007c974
JH
7185 if ((emf_text = next_emf(emf, US"header")))
7186 fprintf(f, "%s\n", emf_text);
7187 else
059ec3d9
PH
7188 fprintf(f, "Subject: Mail delivery failed%s\n\n",
7189 to_sender? ": returning message to sender" : "");
059ec3d9 7190
6c1c3d1d 7191 /* output human readable part as text/plain section */
c007c974
JH
7192 fprintf(f, "--%s\n"
7193 "Content-type: text/plain; charset=us-ascii\n\n",
45500060 7194 bound);
6c1c3d1d 7195
c007c974
JH
7196 if ((emf_text = next_emf(emf, US"intro")))
7197 fprintf(f, "%s", CS emf_text);
7198 else
059ec3d9
PH
7199 {
7200 fprintf(f,
7201/* This message has been reworded several times. It seems to be confusing to
7202somebody, however it is worded. I have retreated to the original, simple
7203wording. */
7204"This message was created automatically by mail delivery software.\n");
c007c974
JH
7205
7206 if (bounce_message_text)
7207 fprintf(f, "%s", CS bounce_message_text);
059ec3d9 7208 if (to_sender)
059ec3d9
PH
7209 fprintf(f,
7210"\nA message that you sent could not be delivered to one or more of its\n"
7211"recipients. This is a permanent error. The following address(es) failed:\n");
059ec3d9 7212 else
059ec3d9
PH
7213 fprintf(f,
7214"\nA message sent by\n\n <%s>\n\n"
7215"could not be delivered to one or more of its recipients. The following\n"
7216"address(es) failed:\n", sender_address);
059ec3d9 7217 }
c007c974 7218 fputc('\n', f);
059ec3d9
PH
7219
7220 /* Process the addresses, leaving them on the msgchain if they have a
7221 file name for a return message. (There has already been a check in
447d236c
PH
7222 post_process_one() for the existence of data in the message file.) A TRUE
7223 return from print_address_information() means that the address is not
7224 hidden. */
059ec3d9
PH
7225
7226 paddr = &msgchain;
d6c82d7b 7227 for (addr = msgchain; addr; addr = *paddr)
059ec3d9
PH
7228 {
7229 if (print_address_information(addr, f, US" ", US"\n ", US""))
447d236c 7230 print_address_error(addr, f, US"");
059ec3d9
PH
7231
7232 /* End the final line for the address */
7233
7234 fputc('\n', f);
7235
7236 /* Leave on msgchain if there's a return file. */
7237
7238 if (addr->return_file >= 0)
7239 {
7240 paddr = &(addr->next);
7241 filecount++;
7242 }
7243
7244 /* Else save so that we can tick off the recipient when the
7245 message is sent. */
7246
7247 else
7248 {
7249 *paddr = addr->next;
7250 addr->next = handled_addr;
7251 handled_addr = addr;
7252 }
7253 }
7254
c007c974 7255 fputc('\n', f);
059ec3d9
PH
7256
7257 /* Get the next text, whether we need it or not, so as to be
7258 positioned for the one after. */
7259
7260 emf_text = next_emf(emf, US"generated text");
7261
7262 /* If there were any file messages passed by the local transports,
7263 include them in the message. Then put the address on the handled chain.
7264 In the case of a batch of addresses that were all sent to the same
7265 transport, the return_file field in all of them will contain the same
7266 fd, and the return_filename field in the *last* one will be set (to the
7267 name of the file). */
7268
c007c974 7269 if (msgchain)
059ec3d9
PH
7270 {
7271 address_item *nextaddr;
7272
c007c974
JH
7273 if (emf_text)
7274 fprintf(f, "%s", CS emf_text);
7275 else
059ec3d9
PH
7276 fprintf(f,
7277 "The following text was generated during the delivery "
7278 "attempt%s:\n", (filecount > 1)? "s" : "");
7279
d6c82d7b 7280 for (addr = msgchain; addr; addr = nextaddr)
059ec3d9
PH
7281 {
7282 FILE *fm;
7283 address_item *topaddr = addr;
7284
7285 /* List all the addresses that relate to this file */
7286
c007c974
JH
7287 fputc('\n', f);
7288 while(addr) /* Insurance */
059ec3d9
PH
7289 {
7290 print_address_information(addr, f, US"------ ", US"\n ",
7291 US" ------\n");
c007c974 7292 if (addr->return_filename) break;
059ec3d9
PH
7293 addr = addr->next;
7294 }
c007c974 7295 fputc('\n', f);
059ec3d9
PH
7296
7297 /* Now copy the file */
7298
d6c82d7b 7299 if (!(fm = Ufopen(addr->return_filename, "rb")))
059ec3d9
PH
7300 fprintf(f, " +++ Exim error... failed to open text file: %s\n",
7301 strerror(errno));
7302 else
7303 {
7304 while ((ch = fgetc(fm)) != EOF) fputc(ch, f);
f1e894f3 7305 (void)fclose(fm);
059ec3d9
PH
7306 }
7307 Uunlink(addr->return_filename);
7308
7309 /* Can now add to handled chain, first fishing off the next
7310 address on the msgchain. */
7311
7312 nextaddr = addr->next;
7313 addr->next = handled_addr;
7314 handled_addr = topaddr;
7315 }
c007c974 7316 fputc('\n', f);
059ec3d9
PH
7317 }
7318
6c1c3d1d 7319 /* output machine readable part */
8c5d388a 7320#ifdef SUPPORT_I18N
9671784a
JH
7321 if (message_smtputf8)
7322 fprintf(f, "--%s\n"
7323 "Content-type: message/global-delivery-status\n\n"
7324 "Reporting-MTA: dns; %s\n",
7325 bound, smtp_active_hostname);
7326 else
7327#endif
7328 fprintf(f, "--%s\n"
7329 "Content-type: message/delivery-status\n\n"
7330 "Reporting-MTA: dns; %s\n",
7331 bound, smtp_active_hostname);
c007c974
JH
7332
7333 if (dsn_envid)
7334 {
6c1c3d1d
WB
7335 /* must be decoded from xtext: see RFC 3461:6.3a */
7336 uschar *xdec_envid;
7337 if (auth_xtextdecode(dsn_envid, &xdec_envid) > 0)
c007c974 7338 fprintf(f, "Original-Envelope-ID: %s\n", dsn_envid);
6c1c3d1d 7339 else
968178ac 7340 fprintf(f, "X-Original-Envelope-ID: error decoding xtext formatted ENVID\n");
6c1c3d1d 7341 }
c007c974 7342 fputc('\n', f);
94431adb 7343
c007c974 7344 for (addr = handled_addr; addr; addr = addr->next)
6c1c3d1d 7345 {
895fbaf2 7346 host_item * hu;
c007c974 7347 fprintf(f, "Action: failed\n"
8864c2c4
JH
7348 "Final-Recipient: rfc822;%s\n"
7349 "Status: 5.0.0\n",
7350 addr->address);
895fbaf2
JH
7351 if ((hu = addr->host_used) && hu->name)
7352 {
7353 const uschar * s;
23f3dc67 7354 fprintf(f, "Remote-MTA: dns; %s\n", hu->name);
895fbaf2
JH
7355#ifdef EXPERIMENTAL_DSN_INFO
7356 if (hu->address)
7357 {
7358 uschar * p = hu->port == 25
7359 ? US"" : string_sprintf(":%d", hu->port);
7360 fprintf(f, "Remote-MTA: X-ip; [%s]%s\n", hu->address, p);
7361 }
7362 if ((s = addr->smtp_greeting) && *s)
7363 fprintf(f, "X-Remote-MTA-smtp-greeting: X-str; %s\n", s);
7364 if ((s = addr->helo_response) && *s)
7365 fprintf(f, "X-Remote-MTA-helo-response: X-str; %s\n", s);
7366 if ((s = addr->message) && *s)
7367 fprintf(f, "X-Exim-Diagnostic: X-str; %s\n", s);
7368#endif
7369 print_dsn_diagnostic_code(addr, f);
7370 }
1c5b1499 7371 fputc('\n', f);
6c1c3d1d 7372 }
6c1c3d1d 7373
059ec3d9
PH
7374 /* Now copy the message, trying to give an intelligible comment if
7375 it is too long for it all to be copied. The limit isn't strictly
7376 applied because of the buffering. There is, however, an option
7377 to suppress copying altogether. */
7378
7379 emf_text = next_emf(emf, US"copy");
7380
6c1c3d1d 7381 /* add message body
94431adb 7382 we ignore the intro text from template and add
6c1c3d1d 7383 the text for bounce_return_size_limit at the end.
94431adb 7384
6c1c3d1d
WB
7385 bounce_return_message is ignored
7386 in case RET= is defined we honor these values
7387 otherwise bounce_return_body is honored.
94431adb 7388
6c1c3d1d
WB
7389 bounce_return_size_limit is always honored.
7390 */
94431adb 7391
1c5b1499 7392 fprintf(f, "--%s\n", bound);
6c1c3d1d 7393
0f9d3aea
JH
7394 dsnlimitmsg = US"X-Exim-DSN-Information: Due to administrative limits only headers are returned";
7395 dsnnotifyhdr = NULL;
7396 topt = topt_add_return_path;
7397
6c1c3d1d
WB
7398 /* RET=HDRS? top priority */
7399 if (dsn_ret == dsn_ret_hdrs)
7400 topt |= topt_no_body;
7401 else
62b7cd08
JH
7402 {
7403 struct stat statbuf;
7404
6c1c3d1d
WB
7405 /* no full body return at all? */
7406 if (!bounce_return_body)
7407 {
7408 topt |= topt_no_body;
7409 /* add header if we overrule RET=FULL */
7410 if (dsn_ret == dsn_ret_full)
7411 dsnnotifyhdr = dsnlimitmsg;
7412 }
62b7cd08 7413 /* line length limited... return headers only if oversize */
6c1c3d1d 7414 /* size limited ... return headers only if limit reached */
62b7cd08
JH
7415 else if ( max_received_linelength > bounce_return_linesize_limit
7416 || ( bounce_return_size_limit > 0
7417 && fstat(deliver_datafile, &statbuf) == 0
7418 && statbuf.st_size > max
7419 ) )
7420 {
7421 topt |= topt_no_body;
7422 dsnnotifyhdr = dsnlimitmsg;
6c1c3d1d 7423 }
62b7cd08 7424 }
94431adb 7425
8c5d388a 7426#ifdef SUPPORT_I18N
9671784a
JH
7427 if (message_smtputf8)
7428 fputs(topt & topt_no_body ? "Content-type: message/global-headers\n\n"
7429 : "Content-type: message/global\n\n",
7430 f);
7431 else
7432#endif
7433 fputs(topt & topt_no_body ? "Content-type: text/rfc822-headers\n\n"
7434 : "Content-type: message/rfc822\n\n",
7435 f);
6c1c3d1d
WB
7436
7437 fflush(f);
7438 transport_filter_argv = NULL; /* Just in case */
7439 return_path = sender_address; /* In case not previously set */
7440 transport_write_message(NULL, fileno(f), topt,
7441 0, dsnnotifyhdr, NULL, NULL, NULL, NULL, 0);
7442 fflush(f);
94431adb 7443
6c1c3d1d 7444 /* we never add the final text. close the file */
c007c974 7445 if (emf)
6c1c3d1d 7446 (void)fclose(emf);
94431adb 7447
45500060 7448 fprintf(f, "\n--%s--\n", bound);
059ec3d9
PH
7449
7450 /* Close the file, which should send an EOF to the child process
7451 that is receiving the message. Wait for it to finish. */
7452
f1e894f3 7453 (void)fclose(f);
059ec3d9
PH
7454 rc = child_close(pid, 0); /* Waits for child to close, no timeout */
7455
7456 /* In the test harness, let the child do it's thing first. */
7457
7458 if (running_in_test_harness) millisleep(500);
7459
7460 /* If the process failed, there was some disaster in setting up the
7461 error message. Unless the message is very old, ensure that addr_defer
7462 is non-null, which will have the effect of leaving the message on the
7463 spool. The failed addresses will get tried again next time. However, we
7464 don't really want this to happen too often, so freeze the message unless
7465 there are some genuine deferred addresses to try. To do this we have
7466 to call spool_write_header() here, because with no genuine deferred
7467 addresses the normal code below doesn't get run. */
7468
7469 if (rc != 0)
7470 {
7471 uschar *s = US"";
d6c82d7b 7472 if (now - received_time < retry_maximum_timeout && !addr_defer)
059ec3d9
PH
7473 {
7474 addr_defer = (address_item *)(+1);
7475 deliver_freeze = TRUE;
7476 deliver_frozen_at = time(NULL);
7477 /* Panic-dies on error */
7478 (void)spool_write_header(message_id, SW_DELIVERING, NULL);
7479 s = US" (frozen)";
7480 }
7481 deliver_msglog("Process failed (%d) when writing error message "
7482 "to %s%s", rc, bounce_recipient, s);
7483 log_write(0, LOG_MAIN, "Process failed (%d) when writing error message "
7484 "to %s%s", rc, bounce_recipient, s);
7485 }
7486
7487 /* The message succeeded. Ensure that the recipients that failed are
7488 now marked finished with on the spool and their parents updated. */
7489
7490 else
7491 {
d6c82d7b 7492 for (addr = handled_addr; addr; addr = addr->next)
059ec3d9
PH
7493 {
7494 address_done(addr, logtod);
7495 child_done(addr, logtod);
7496 }
7497 /* Panic-dies on error */
7498 (void)spool_write_header(message_id, SW_DELIVERING, NULL);
7499 }
7500 }
7501 }
7502 }
7503
7504disable_logging = FALSE; /* In case left set */
7505
7506/* Come here from the mua_wrapper case if routing goes wrong */
7507
7508DELIVERY_TIDYUP:
7509
7510/* If there are now no deferred addresses, we are done. Preserve the
7511message log if so configured, and we are using them. Otherwise, sling it.
7512Then delete the message itself. */
7513
d6c82d7b 7514if (!addr_defer)
059ec3d9 7515 {
41313d92
JH
7516 uschar * fname;
7517
059ec3d9
PH
7518 if (message_logs)
7519 {
41313d92 7520 fname = spool_fname(US"msglog", message_subdir, id, US"");
059ec3d9
PH
7521 if (preserve_message_logs)
7522 {
7523 int rc;
41313d92
JH
7524 uschar * moname = spool_fname(US"msglog.OLD", US"", id, US"");
7525
7526 if ((rc = Urename(fname, moname)) < 0)
059ec3d9 7527 {
41313d92
JH
7528 (void)directory_make(spool_directory,
7529 spool_sname(US"msglog.OLD", US""),
7530 MSGLOG_DIRECTORY_MODE, TRUE);
7531 rc = Urename(fname, moname);
059ec3d9
PH
7532 }
7533 if (rc < 0)
7534 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "failed to move %s to the "
41313d92 7535 "msglog.OLD directory", fname);
059ec3d9
PH
7536 }
7537 else
41313d92 7538 if (Uunlink(fname) < 0)
0761d44e 7539 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "failed to unlink %s: %s",
41313d92 7540 fname, strerror(errno));
059ec3d9
PH
7541 }
7542
7543 /* Remove the two message files. */
8e669ac1 7544
41313d92
JH
7545 fname = spool_fname(US"input", message_subdir, id, US"-D");
7546 if (Uunlink(fname) < 0)
0ca0cf52 7547 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "failed to unlink %s: %s",
41313d92
JH
7548 fname, strerror(errno));
7549 fname = spool_fname(US"input", message_subdir, id, US"-H");
7550 if (Uunlink(fname) < 0)
0ca0cf52 7551 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "failed to unlink %s: %s",
41313d92 7552 fname, strerror(errno));
2ac0e484
PH
7553
7554 /* Log the end of this message, with queue time if requested. */
7555
6c6d6e48 7556 if (LOGGING(queue_time_overall))
8e669ac1 7557 log_write(0, LOG_MAIN, "Completed QT=%s",
19050083 7558 readconf_printtime( (int) ((long)time(NULL) - (long)received_time)) );
2ac0e484
PH
7559 else
7560 log_write(0, LOG_MAIN, "Completed");
0e8a9471
MH
7561
7562 /* Unset deliver_freeze so that we won't try to move the spool files further down */
7563 deliver_freeze = FALSE;
14a465c3 7564
0cbf2b82 7565#ifndef DISABLE_EVENT
774ef2d7 7566 (void) event_raise(event_action, US"msg:complete", NULL);
14a465c3 7567#endif
fa41615d 7568 }
059ec3d9
PH
7569
7570/* If there are deferred addresses, we are keeping this message because it is
7571not yet completed. Lose any temporary files that were catching output from
7572pipes for any of the deferred addresses, handle one-time aliases, and see if
7573the message has been on the queue for so long that it is time to send a warning
7574message to the sender, unless it is a mailer-daemon. If all deferred addresses
7575have the same domain, we can set deliver_domain for the expansion of
7576delay_warning_ condition - if any of them are pipes, files, or autoreplies, use
7577the parent's domain.
7578
7579If all the deferred addresses have an error number that indicates "retry time
7580not reached", skip sending the warning message, because it won't contain the
7581reason for the delay. It will get sent at the next real delivery attempt.
7582However, if at least one address has tried, we'd better include all of them in
7583the message.
7584
7585If we can't make a process to send the message, don't worry.
7586
7587For mailing list expansions we want to send the warning message to the
7588mailing list manager. We can't do a perfect job here, as some addresses may
7589have different errors addresses, but if we take the errors address from
7590each deferred address it will probably be right in most cases.
7591
7592If addr_defer == +1, it means there was a problem sending an error message
7593for failed addresses, and there were no "real" deferred addresses. The value
7594was set just to keep the message on the spool, so there is nothing to do here.
7595*/
7596
7597else if (addr_defer != (address_item *)(+1))
7598 {
7599 address_item *addr;
7600 uschar *recipients = US"";
7601 BOOL delivery_attempted = FALSE;
7602
d6c82d7b
JH
7603 deliver_domain = testflag(addr_defer, af_pfr)
7604 ? addr_defer->parent->domain : addr_defer->domain;
059ec3d9 7605
d6c82d7b 7606 for (addr = addr_defer; addr; addr = addr->next)
059ec3d9
PH
7607 {
7608 address_item *otaddr;
7609
7610 if (addr->basic_errno > ERRNO_RETRY_BASE) delivery_attempted = TRUE;
7611
d6c82d7b 7612 if (deliver_domain)
059ec3d9 7613 {
55414b25
JH
7614 const uschar *d = testflag(addr, af_pfr)
7615 ? addr->parent->domain : addr->domain;
059ec3d9
PH
7616
7617 /* The domain may be unset for an address that has never been routed
7618 because the system filter froze the message. */
7619
d6c82d7b
JH
7620 if (!d || Ustrcmp(d, deliver_domain) != 0)
7621 deliver_domain = NULL;
059ec3d9
PH
7622 }
7623
d6c82d7b 7624 if (addr->return_filename) Uunlink(addr->return_filename);
059ec3d9
PH
7625
7626 /* Handle the case of one-time aliases. If any address in the ancestry
7627 of this one is flagged, ensure it is in the recipients list, suitably
7628 flagged, and that its parent is marked delivered. */
7629
d6c82d7b
JH
7630 for (otaddr = addr; otaddr; otaddr = otaddr->parent)
7631 if (otaddr->onetime_parent) break;
059ec3d9 7632
d6c82d7b 7633 if (otaddr)
059ec3d9
PH
7634 {
7635 int i;
7636 int t = recipients_count;
7637
7638 for (i = 0; i < recipients_count; i++)
7639 {
7640 uschar *r = recipients_list[i].address;
7641 if (Ustrcmp(otaddr->onetime_parent, r) == 0) t = i;
7642 if (Ustrcmp(otaddr->address, r) == 0) break;
7643 }
7644
7645 /* Didn't find the address already in the list, and did find the
7646 ultimate parent's address in the list. After adding the recipient,
7647 update the errors address in the recipients list. */
7648
7649 if (i >= recipients_count && t < recipients_count)
7650 {
7651 DEBUG(D_deliver) debug_printf("one_time: adding %s in place of %s\n",
7652 otaddr->address, otaddr->parent->address);
7653 receive_add_recipient(otaddr->address, t);
d43cbe25 7654 recipients_list[recipients_count-1].errors_to = otaddr->prop.errors_address;
059ec3d9
PH
7655 tree_add_nonrecipient(otaddr->parent->address);
7656 update_spool = TRUE;
7657 }
7658 }
7659
7660 /* Except for error messages, ensure that either the errors address for
7661 this deferred address or, if there is none, the sender address, is on the
7662 list of recipients for a warning message. */
7663
7664 if (sender_address[0] != 0)
d6c82d7b 7665 if (addr->prop.errors_address)
059ec3d9 7666 {
d6c82d7b 7667 if (Ustrstr(recipients, addr->prop.errors_address) == NULL)
059ec3d9 7668 recipients = string_sprintf("%s%s%s", recipients,
d6c82d7b 7669 (recipients[0] == 0)? "" : ",", addr->prop.errors_address);
059ec3d9
PH
7670 }
7671 else
7672 {
d6c82d7b 7673 if (Ustrstr(recipients, sender_address) == NULL)
059ec3d9 7674 recipients = string_sprintf("%s%s%s", recipients,
d6c82d7b 7675 (recipients[0] == 0)? "" : ",", sender_address);
059ec3d9 7676 }
059ec3d9
PH
7677 }
7678
7679 /* Send a warning message if the conditions are right. If the condition check
7680 fails because of a lookup defer, there is nothing we can do. The warning
7681 is not sent. Another attempt will be made at the next delivery attempt (if
7682 it also defers). */
7683
50dc7409
JH
7684 if ( !queue_2stage
7685 && delivery_attempted
7686 && ( ((addr_defer->dsn_flags & rf_dsnflags) == 0)
7687 || (addr_defer->dsn_flags & rf_notify_delay) == rf_notify_delay
7688 )
7689 && delay_warning[1] > 0
7690 && sender_address[0] != 0
d6c82d7b 7691 && ( !delay_warning_condition
50dc7409
JH
7692 || expand_check_condition(delay_warning_condition,
7693 US"delay_warning", US"option")
7694 )
7695 )
059ec3d9
PH
7696 {
7697 int count;
7698 int show_time;
7699 int queue_time = time(NULL) - received_time;
7700
7701 /* When running in the test harness, there's an option that allows us to
7702 fudge this time so as to get repeatability of the tests. Take the first
7703 time off the list. In queue runs, the list pointer gets updated in the
7704 calling process. */
7705
7706 if (running_in_test_harness && fudged_queue_times[0] != 0)
7707 {
7708 int qt = readconf_readtime(fudged_queue_times, '/', FALSE);
7709 if (qt >= 0)
7710 {
7711 DEBUG(D_deliver) debug_printf("fudged queue_times = %s\n",
7712 fudged_queue_times);
7713 queue_time = qt;
7714 }
7715 }
7716
7717 /* See how many warnings we should have sent by now */
7718
7719 for (count = 0; count < delay_warning[1]; count++)
7720 if (queue_time < delay_warning[count+2]) break;
7721
7722 show_time = delay_warning[count+1];
7723
7724 if (count >= delay_warning[1])
7725 {
7726 int extra;
7727 int last_gap = show_time;
7728 if (count > 1) last_gap -= delay_warning[count];
7729 extra = (queue_time - delay_warning[count+1])/last_gap;
7730 show_time += last_gap * extra;
7731 count += extra;
7732 }
7733
7734 DEBUG(D_deliver)
7735 {
7736 debug_printf("time on queue = %s\n", readconf_printtime(queue_time));
7737 debug_printf("warning counts: required %d done %d\n", count,
7738 warning_count);
7739 }
7740
7741 /* We have computed the number of warnings there should have been by now.
7742 If there haven't been enough, send one, and up the count to what it should
7743 have been. */
7744
7745 if (warning_count < count)
7746 {
7747 header_line *h;
7748 int fd;
7749 pid_t pid = child_open_exim(&fd);
7750
7751 if (pid > 0)
7752 {
7753 uschar *wmf_text;
7754 FILE *wmf = NULL;
7755 FILE *f = fdopen(fd, "wb");
45500060 7756 uschar * bound;
62b7cd08 7757 int topt;
059ec3d9 7758
c007c974 7759 if (warn_message_file)
d6c82d7b 7760 if (!(wmf = Ufopen(warn_message_file, "rb")))
059ec3d9
PH
7761 log_write(0, LOG_MAIN|LOG_PANIC, "Failed to open %s for warning "
7762 "message texts: %s", warn_message_file, strerror(errno));
059ec3d9
PH
7763
7764 warnmsg_recipients = recipients;
d6c82d7b
JH
7765 warnmsg_delay = queue_time < 120*60
7766 ? string_sprintf("%d minutes", show_time/60)
7767 : string_sprintf("%d hours", show_time/3600);
059ec3d9 7768
c007c974 7769 if (errors_reply_to)
059ec3d9 7770 fprintf(f, "Reply-To: %s\n", errors_reply_to);
456682f5 7771 fprintf(f, "Auto-Submitted: auto-replied\n");
0e22dfd1 7772 moan_write_from(f);
059ec3d9
PH
7773 fprintf(f, "To: %s\n", recipients);
7774
6c1c3d1d 7775 /* generated boundary string and output MIME-Headers */
45500060 7776 bound = string_sprintf(TIME_T_FMT "-eximdsn-%d", time(NULL), rand());
c007c974
JH
7777
7778 fprintf(f, "Content-Type: multipart/report;"
7779 " report-type=delivery-status; boundary=%s\n"
7780 "MIME-Version: 1.0\n",
45500060 7781 bound);
6c1c3d1d 7782
c007c974 7783 if ((wmf_text = next_emf(wmf, US"header")))
059ec3d9
PH
7784 fprintf(f, "%s\n", wmf_text);
7785 else
7786 fprintf(f, "Subject: Warning: message %s delayed %s\n\n",
7787 message_id, warnmsg_delay);
7788
6c1c3d1d 7789 /* output human readable part as text/plain section */
c007c974
JH
7790 fprintf(f, "--%s\n"
7791 "Content-type: text/plain; charset=us-ascii\n\n",
45500060 7792 bound);
6c1c3d1d 7793
c007c974
JH
7794 if ((wmf_text = next_emf(wmf, US"intro")))
7795 fprintf(f, "%s", CS wmf_text);
7796 else
059ec3d9
PH
7797 {
7798 fprintf(f,
7799"This message was created automatically by mail delivery software.\n");
7800
7801 if (Ustrcmp(recipients, sender_address) == 0)
7802 fprintf(f,
7803"A message that you sent has not yet been delivered to one or more of its\n"
7804"recipients after more than ");
7805
c007c974
JH
7806 else
7807 fprintf(f,
059ec3d9
PH
7808"A message sent by\n\n <%s>\n\n"
7809"has not yet been delivered to one or more of its recipients after more than \n",
c007c974 7810 sender_address);
059ec3d9 7811
c007c974
JH
7812 fprintf(f, "%s on the queue on %s.\n\n"
7813 "The message identifier is: %s\n",
7814 warnmsg_delay, primary_hostname, message_id);
059ec3d9 7815
d6c82d7b 7816 for (h = header_list; h; h = h->next)
059ec3d9
PH
7817 if (strncmpic(h->text, US"Subject:", 8) == 0)
7818 fprintf(f, "The subject of the message is: %s", h->text + 9);
7819 else if (strncmpic(h->text, US"Date:", 5) == 0)
7820 fprintf(f, "The date of the message is: %s", h->text + 6);
c007c974 7821 fputc('\n', f);
059ec3d9
PH
7822
7823 fprintf(f, "The address%s to which the message has not yet been "
7824 "delivered %s:\n",
c007c974
JH
7825 !addr_defer->next ? "" : "es",
7826 !addr_defer->next ? "is": "are");
059ec3d9
PH
7827 }
7828
447d236c 7829 /* List the addresses, with error information if allowed */
059ec3d9 7830
6c1c3d1d
WB
7831 /* store addr_defer for machine readable part */
7832 address_item *addr_dsndefer = addr_defer;
c007c974
JH
7833 fputc('\n', f);
7834 while (addr_defer)
059ec3d9
PH
7835 {
7836 address_item *addr = addr_defer;
7837 addr_defer = addr->next;
447d236c
PH
7838 if (print_address_information(addr, f, US" ", US"\n ", US""))
7839 print_address_error(addr, f, US"Delay reason: ");
c007c974 7840 fputc('\n', f);
059ec3d9 7841 }
c007c974 7842 fputc('\n', f);
059ec3d9
PH
7843
7844 /* Final text */
7845
c007c974 7846 if (wmf)
059ec3d9 7847 {
c007c974
JH
7848 if ((wmf_text = next_emf(wmf, US"final")))
7849 fprintf(f, "%s", CS wmf_text);
f1e894f3 7850 (void)fclose(wmf);
059ec3d9
PH
7851 }
7852 else
7853 {
7854 fprintf(f,
7855"No action is required on your part. Delivery attempts will continue for\n"
7856"some time, and this warning may be repeated at intervals if the message\n"
7857"remains undelivered. Eventually the mail delivery software will give up,\n"
7858"and when that happens, the message will be returned to you.\n");
7859 }
7860
6c1c3d1d 7861 /* output machine readable part */
c007c974
JH
7862 fprintf(f, "\n--%s\n"
7863 "Content-type: message/delivery-status\n\n"
7864 "Reporting-MTA: dns; %s\n",
45500060 7865 bound,
c007c974 7866 smtp_active_hostname);
94431adb 7867
c007c974
JH
7868
7869 if (dsn_envid)
7870 {
6c1c3d1d
WB
7871 /* must be decoded from xtext: see RFC 3461:6.3a */
7872 uschar *xdec_envid;
7873 if (auth_xtextdecode(dsn_envid, &xdec_envid) > 0)
7874 fprintf(f,"Original-Envelope-ID: %s\n", dsn_envid);
7875 else
968178ac 7876 fprintf(f,"X-Original-Envelope-ID: error decoding xtext formatted ENVID\n");
6c1c3d1d 7877 }
c007c974 7878 fputc('\n', f);
6c1c3d1d 7879
1c5b1499 7880 for ( ; addr_dsndefer; addr_dsndefer = addr_dsndefer->next)
6c1c3d1d 7881 {
c007c974 7882 if (addr_dsndefer->dsn_orcpt)
1c5b1499 7883 fprintf(f, "Original-Recipient: %s\n", addr_dsndefer->dsn_orcpt);
c007c974 7884
1c5b1499
JH
7885 fprintf(f, "Action: delayed\n"
7886 "Final-Recipient: rfc822;%s\n"
7887 "Status: 4.0.0\n",
7888 addr_dsndefer->address);
c007c974 7889 if (addr_dsndefer->host_used && addr_dsndefer->host_used->name)
21bc4865 7890 {
94431adb 7891 fprintf(f, "Remote-MTA: dns; %s\n",
21bc4865
WB
7892 addr_dsndefer->host_used->name);
7893 print_dsn_diagnostic_code(addr_dsndefer, f);
7894 }
1c5b1499 7895 fputc('\n', f);
6c1c3d1d
WB
7896 }
7897
1c5b1499 7898 fprintf(f, "--%s\n"
c007c974 7899 "Content-type: text/rfc822-headers\n\n",
45500060 7900 bound);
6c1c3d1d
WB
7901
7902 fflush(f);
7903 /* header only as required by RFC. only failure DSN needs to honor RET=FULL */
62b7cd08 7904 topt = topt_add_return_path | topt_no_body;
6c1c3d1d
WB
7905 transport_filter_argv = NULL; /* Just in case */
7906 return_path = sender_address; /* In case not previously set */
7907 /* Write the original email out */
7908 transport_write_message(NULL, fileno(f), topt, 0, NULL, NULL, NULL, NULL, NULL, 0);
7909 fflush(f);
7910
45500060 7911 fprintf(f,"\n--%s--\n", bound);
6c1c3d1d
WB
7912
7913 fflush(f);
6c1c3d1d 7914
059ec3d9
PH
7915 /* Close and wait for child process to complete, without a timeout.
7916 If there's an error, don't update the count. */
7917
f1e894f3 7918 (void)fclose(f);
059ec3d9
PH
7919 if (child_close(pid, 0) == 0)
7920 {
7921 warning_count = count;
7922 update_spool = TRUE; /* Ensure spool rewritten */
7923 }
7924 }
7925 }
7926 }
7927
7928 /* Clear deliver_domain */
7929
7930 deliver_domain = NULL;
7931
7932 /* If this was a first delivery attempt, unset the first time flag, and
7933 ensure that the spool gets updated. */
7934
7935 if (deliver_firsttime)
7936 {
7937 deliver_firsttime = FALSE;
7938 update_spool = TRUE;
7939 }
7940
7941 /* If delivery was frozen and freeze_tell is set, generate an appropriate
7942 message, unless the message is a local error message (to avoid loops). Then
7943 log the freezing. If the text in "frozen_info" came from a system filter,
7944 it has been escaped into printing characters so as not to mess up log lines.
7945 For the "tell" message, we turn \n back into newline. Also, insert a newline
7946 near the start instead of the ": " string. */
7947
7948 if (deliver_freeze)
7949 {
d6c82d7b 7950 if (freeze_tell && freeze_tell[0] != 0 && !local_error_message)
059ec3d9
PH
7951 {
7952 uschar *s = string_copy(frozen_info);
7953 uschar *ss = Ustrstr(s, " by the system filter: ");
7954
7955 if (ss != NULL)
7956 {
7957 ss[21] = '.';
7958 ss[22] = '\n';
7959 }
7960
7961 ss = s;
7962 while (*ss != 0)
7963 {
7964 if (*ss == '\\' && ss[1] == 'n')
7965 {
7966 *ss++ = ' ';
7967 *ss++ = '\n';
7968 }
7969 else ss++;
7970 }
7971 moan_tell_someone(freeze_tell, addr_defer, US"Message frozen",
7972 "Message %s has been frozen%s.\nThe sender is <%s>.\n", message_id,
7973 s, sender_address);
7974 }
7975
7976 /* Log freezing just before we update the -H file, to minimize the chance
7977 of a race problem. */
7978
7979 deliver_msglog("*** Frozen%s\n", frozen_info);
7980 log_write(0, LOG_MAIN, "Frozen%s", frozen_info);
7981 }
7982
7983 /* If there have been any updates to the non-recipients list, or other things
7984 that get written to the spool, we must now update the spool header file so
7985 that it has the right information for the next delivery attempt. If there
7986 was more than one address being delivered, the header_change update is done
7987 earlier, in case one succeeds and then something crashes. */
7988
7989 DEBUG(D_deliver)
7990 debug_printf("delivery deferred: update_spool=%d header_rewritten=%d\n",
7991 update_spool, header_rewritten);
7992
7993 if (update_spool || header_rewritten)
7994 /* Panic-dies on error */
7995 (void)spool_write_header(message_id, SW_DELIVERING, NULL);
7996 }
7997
7998/* Finished with the message log. If the message is complete, it will have
7999been unlinked or renamed above. */
8000
f1e894f3 8001if (message_logs) (void)fclose(message_log);
059ec3d9
PH
8002
8003/* Now we can close and remove the journal file. Its only purpose is to record
8004successfully completed deliveries asap so that this information doesn't get
8005lost if Exim (or the machine) crashes. Forgetting about a failed delivery is
8006not serious, as trying it again is not harmful. The journal might not be open
8007if all addresses were deferred at routing or directing. Nevertheless, we must
8008remove it if it exists (may have been lying around from a crash during the
8009previous delivery attempt). We don't remove the journal if a delivery
8010subprocess failed to pass back delivery information; this is controlled by
8011the remove_journal flag. When the journal is left, we also don't move the
8012message off the main spool if frozen and the option is set. It should get moved
8013at the next attempt, after the journal has been inspected. */
8014
f1e894f3 8015if (journal_fd >= 0) (void)close(journal_fd);
059ec3d9
PH
8016
8017if (remove_journal)
8018 {
41313d92
JH
8019 uschar * fname = spool_fname(US"input", message_subdir, id, US"-J");
8020
8021 if (Uunlink(fname) < 0 && errno != ENOENT)
8022 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "failed to unlink %s: %s", fname,
059ec3d9
PH
8023 strerror(errno));
8024
8025 /* Move the message off the spool if reqested */
8026
a7538db1 8027#ifdef SUPPORT_MOVE_FROZEN_MESSAGES
059ec3d9
PH
8028 if (deliver_freeze && move_frozen_messages)
8029 (void)spool_move_message(id, message_subdir, US"", US"F");
a7538db1 8030#endif
059ec3d9
PH
8031 }
8032
8033/* Closing the data file frees the lock; if the file has been unlinked it
8034will go away. Otherwise the message becomes available for another process
8035to try delivery. */
8036
f1e894f3 8037(void)close(deliver_datafile);
059ec3d9
PH
8038deliver_datafile = -1;
8039DEBUG(D_deliver) debug_printf("end delivery of %s\n", id);
8040
8041/* It is unlikely that there will be any cached resources, since they are
8042released after routing, and in the delivery subprocesses. However, it's
8043possible for an expansion for something afterwards (for example,
8044expand_check_condition) to do a lookup. We must therefore be sure everything is
8045released. */
8046
8047search_tidyup();
faa05a93 8048acl_where = ACL_WHERE_UNKNOWN;
059ec3d9
PH
8049return final_yield;
8050}
8051
476be7e2
JH
8052
8053
8054void
8055deliver_init(void)
8056{
8057if (!regex_PIPELINING) regex_PIPELINING =
8058 regex_must_compile(US"\\n250[\\s\\-]PIPELINING(\\s|\\n|$)", FALSE, TRUE);
8059
8060if (!regex_SIZE) regex_SIZE =
8061 regex_must_compile(US"\\n250[\\s\\-]SIZE(\\s|\\n|$)", FALSE, TRUE);
8062
8063if (!regex_AUTH) regex_AUTH =
8064 regex_must_compile(US"\\n250[\\s\\-]AUTH\\s+([\\-\\w\\s]+)(?:\\n|$)",
8065 FALSE, TRUE);
8066
8067#ifdef SUPPORT_TLS
8068if (!regex_STARTTLS) regex_STARTTLS =
8069 regex_must_compile(US"\\n250[\\s\\-]STARTTLS(\\s|\\n|$)", FALSE, TRUE);
8070#endif
8071
8072#ifndef DISABLE_PRDR
8073if (!regex_PRDR) regex_PRDR =
8074 regex_must_compile(US"\\n250[\\s\\-]PRDR(\\s|\\n|$)", FALSE, TRUE);
8075#endif
8076
8c5d388a 8077#ifdef SUPPORT_I18N
7ade712c
JH
8078if (!regex_UTF8) regex_UTF8 =
8079 regex_must_compile(US"\\n250[\\s\\-]SMTPUTF8(\\s|\\n|$)", FALSE, TRUE);
8080#endif
8081
476be7e2
JH
8082if (!regex_DSN) regex_DSN =
8083 regex_must_compile(US"\\n250[\\s\\-]DSN(\\s|\\n|$)", FALSE, TRUE);
8084
8085if (!regex_IGNOREQUOTA) regex_IGNOREQUOTA =
8086 regex_must_compile(US"\\n250[\\s\\-]IGNOREQUOTA(\\s|\\n|$)", FALSE, TRUE);
8087}
8088
8089
a39bd74d
JB
8090uschar *
8091deliver_get_sender_address (uschar * id)
8092{
dadff1d4
HSHR
8093int rc;
8094uschar * new_sender_address,
8095 * save_sender_address;
789f8a4f 8096BOOL save_qr = queue_running;
41313d92 8097uschar * spoolname;
dadff1d4 8098
789f8a4f
JH
8099/* make spool_open_datafile non-noisy on fail */
8100
8101queue_running = TRUE;
8102
8103/* Side effect: message_subdir is set for the (possibly split) spool directory */
8104
8105deliver_datafile = spool_open_datafile(id);
8106queue_running = save_qr;
8107if (deliver_datafile < 0)
a39bd74d
JB
8108 return NULL;
8109
dadff1d4
HSHR
8110/* Save and restore the global sender_address. I'm not sure if we should
8111not save/restore all the other global variables too, because
8112spool_read_header() may change all of them. But OTOH, when this
8113deliver_get_sender_address() gets called, the current message is done
8114already and nobody needs the globals anymore. (HS12, 2015-08-21) */
8115
41313d92 8116spoolname = string_sprintf("%s-H", id);
dadff1d4
HSHR
8117save_sender_address = sender_address;
8118
8119rc = spool_read_header(spoolname, TRUE, TRUE);
8120
8121new_sender_address = sender_address;
8122sender_address = save_sender_address;
8123
8124if (rc != spool_read_OK)
a39bd74d
JB
8125 return NULL;
8126
dadff1d4
HSHR
8127assert(new_sender_address);
8128
a39bd74d
JB
8129(void)close(deliver_datafile);
8130deliver_datafile = -1;
8131
dadff1d4 8132return new_sender_address;
a39bd74d
JB
8133}
8134
67d81c10
JH
8135/* vi: aw ai sw=2
8136*/
059ec3d9 8137/* End of deliver.c */