Fix mariadb/mysql macro confusion
[exim.git] / src / src / receive.c
CommitLineData
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1/*************************************************
2* Exim - an Internet mail transport agent *
3*************************************************/
4
d4e5e70b 5/* Copyright (c) University of Cambridge 1995 - 2017 */
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6/* See the file NOTICE for conditions of use and distribution. */
7
8/* Code for receiving a message and setting up spool files. */
9
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10#include "exim.h"
11
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12#ifdef EXPERIMENTAL_DCC
13extern int dcc_ok;
14#endif
15
4840604e 16#ifdef EXPERIMENTAL_DMARC
c007c974 17# include "dmarc.h"
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18#endif /* EXPERIMENTAL_DMARC */
19
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20/*************************************************
21* Local static variables *
22*************************************************/
23
24static FILE *data_file = NULL;
25static int data_fd = -1;
41313d92 26static uschar *spool_name = US"";
059ec3d9 27
cff70eb1 28enum CH_STATE {LF_SEEN, MID_LINE, CR_SEEN};
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29
30
31/*************************************************
32* Non-SMTP character reading functions *
33*************************************************/
34
35/* These are the default functions that are set up in the variables such as
36receive_getc initially. They just call the standard functions, passing stdin as
37the file. (When SMTP input is occurring, different functions are used by
38changing the pointer variables.) */
39
40int
bd8fbe36 41stdin_getc(unsigned lim)
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42{
43return getc(stdin);
44}
45
46int
47stdin_ungetc(int c)
48{
49return ungetc(c, stdin);
50}
51
52int
53stdin_feof(void)
54{
55return feof(stdin);
56}
57
58int
59stdin_ferror(void)
60{
61return ferror(stdin);
62}
63
64
65
66
67/*************************************************
68* Check that a set sender is allowed *
69*************************************************/
70
71/* This function is called when a local caller sets an explicit sender address.
72It checks whether this is permitted, which it is for trusted callers.
73Otherwise, it must match the pattern(s) in untrusted_set_sender.
74
75Arguments: the proposed sender address
76Returns: TRUE for a trusted caller
77 TRUE if the address has been set, untrusted_set_sender has been
78 set, and the address matches something in the list
79 FALSE otherwise
80*/
81
82BOOL
83receive_check_set_sender(uschar *newsender)
84{
85uschar *qnewsender;
86if (trusted_caller) return TRUE;
36d295f1
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87if (!newsender || !untrusted_set_sender) return FALSE;
88qnewsender = Ustrchr(newsender, '@')
89 ? newsender : string_sprintf("%s@%s", newsender, qualify_domain_sender);
90return match_address_list_basic(qnewsender, CUSS &untrusted_set_sender, 0) == OK;
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91}
92
93
94
95
96/*************************************************
5cb8cbc6 97* Read space info for a partition *
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98*************************************************/
99
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100/* This function is called by receive_check_fs() below, and also by string
101expansion for variables such as $spool_space. The field names for the statvfs
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102structure are macros, because not all OS have F_FAVAIL and it seems tidier to
103have macros for F_BAVAIL and F_FILES as well. Some kinds of file system do not
104have inodes, and they return -1 for the number available.
059ec3d9 105
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106Later: It turns out that some file systems that do not have the concept of
107inodes return 0 rather than -1. Such systems should also return 0 for the total
8e669ac1 108number of inodes, so we require that to be greater than zero before returning
5cb8cbc6 109an inode count.
059ec3d9 110
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111Arguments:
112 isspool TRUE for spool partition, FALSE for log partition
113 inodeptr address of int to receive inode count; -1 if there isn't one
8e669ac1 114
5cb8cbc6 115Returns: available on-root space, in kilobytes
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116 -1 for log partition if there isn't one
117
118All values are -1 if the STATFS functions are not available.
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119*/
120
8e669ac1 121int
5cb8cbc6 122receive_statvfs(BOOL isspool, int *inodeptr)
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123{
124#ifdef HAVE_STATFS
059ec3d9 125struct STATVFS statbuf;
ddf1b11a 126struct stat dummy;
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127uschar *path;
128uschar *name;
129uschar buffer[1024];
059ec3d9 130
5cb8cbc6 131/* The spool directory must always exist. */
059ec3d9 132
5cb8cbc6 133if (isspool)
059ec3d9 134 {
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135 path = spool_directory;
136 name = US"spool";
137 }
138
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139/* Need to cut down the log file path to the directory, and to ignore any
140appearance of "syslog" in it. */
141
5cb8cbc6 142else
059ec3d9 143 {
059ec3d9 144 int sep = ':'; /* Not variable - outside scripts use */
55414b25 145 const uschar *p = log_file_path;
8e669ac1 146 name = US"log";
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147
148 /* An empty log_file_path means "use the default". This is the same as an
149 empty item in a list. */
150
151 if (*p == 0) p = US":";
55414b25
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152 while ((path = string_nextinlist(&p, &sep, buffer, sizeof(buffer))))
153 if (Ustrcmp(path, "syslog") != 0)
154 break;
059ec3d9 155
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156 if (path == NULL) /* No log files */
157 {
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158 *inodeptr = -1;
159 return -1;
160 }
059ec3d9 161
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162 /* An empty string means use the default, which is in the spool directory.
163 But don't just use the spool directory, as it is possible that the log
5cb8cbc6 164 subdirectory has been symbolically linked elsewhere. */
059ec3d9 165
8e669ac1 166 if (path[0] == 0)
059ec3d9 167 {
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168 sprintf(CS buffer, CS"%s/log", CS spool_directory);
169 path = buffer;
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170 }
171 else
059ec3d9 172 {
8e669ac1 173 uschar *cp;
5cb8cbc6 174 if ((cp = Ustrrchr(path, '/')) != NULL) *cp = 0;
8e669ac1 175 }
5cb8cbc6 176 }
8e669ac1 177
8f128379 178/* We now have the path; do the business */
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179
180memset(&statbuf, 0, sizeof(statbuf));
181
182if (STATVFS(CS path, &statbuf) != 0)
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183 if (stat(CS path, &dummy) == -1 && errno == ENOENT)
184 { /* Can happen on first run after installation */
185 *inodeptr = -1;
186 return -1;
187 }
188 else
189 {
190 log_write(0, LOG_MAIN|LOG_PANIC, "cannot accept message: failed to stat "
191 "%s directory %s: %s", name, path, strerror(errno));
192 smtp_closedown(US"spool or log directory problem");
193 exim_exit(EXIT_FAILURE);
194 }
8e669ac1 195
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196*inodeptr = (statbuf.F_FILES > 0)? statbuf.F_FAVAIL : -1;
197
198/* Disks are getting huge. Take care with computing the size in kilobytes. */
8e669ac1 199
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200return (int)(((double)statbuf.F_BAVAIL * (double)statbuf.F_FRSIZE)/1024.0);
201
ddf1b11a 202#else
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203/* Unable to find partition sizes in this environment. */
204
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205*inodeptr = -1;
206return -1;
207#endif
208}
209
059ec3d9 210
059ec3d9 211
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212
213/*************************************************
214* Check space on spool and log partitions *
215*************************************************/
216
217/* This function is called before accepting a message; if any thresholds are
218set, it checks them. If a message_size is supplied, it checks that there is
219enough space for that size plus the threshold - i.e. that the message won't
220reduce the space to the threshold. Not all OS have statvfs(); for those that
221don't, this function always returns TRUE. For some OS the old function and
222struct name statfs is used; that is handled by a macro, defined in exim.h.
223
224Arguments:
225 msg_size the (estimated) size of an incoming message
226
227Returns: FALSE if there isn't enough space, or if the information cannot
228 be obtained
229 TRUE if no check was done or there is enough space
230*/
231
232BOOL
233receive_check_fs(int msg_size)
234{
235int space, inodes;
236
237if (check_spool_space > 0 || msg_size > 0 || check_spool_inodes > 0)
238 {
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239 space = receive_statvfs(TRUE, &inodes);
240
059ec3d9 241 DEBUG(D_receive)
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242 debug_printf("spool directory space = %dK inodes = %d "
243 "check_space = %dK inodes = %d msg_size = %d\n",
244 space, inodes, check_spool_space, check_spool_inodes, msg_size);
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245
246 if ((space >= 0 && space < check_spool_space) ||
5cb8cbc6 247 (inodes >= 0 && inodes < check_spool_inodes))
8e669ac1 248 {
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249 log_write(0, LOG_MAIN, "spool directory space check failed: space=%d "
250 "inodes=%d", space, inodes);
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251 return FALSE;
252 }
253 }
254
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255if (check_log_space > 0 || check_log_inodes > 0)
256 {
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257 space = receive_statvfs(FALSE, &inodes);
258
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259 DEBUG(D_receive)
260 debug_printf("log directory space = %dK inodes = %d "
261 "check_space = %dK inodes = %d\n",
262 space, inodes, check_log_space, check_log_inodes);
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263
264 if ((space >= 0 && space < check_log_space) ||
5cb8cbc6 265 (inodes >= 0 && inodes < check_log_inodes))
8e669ac1 266 {
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267 log_write(0, LOG_MAIN, "log directory space check failed: space=%d "
268 "inodes=%d", space, inodes);
269 return FALSE;
270 }
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271 }
272
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273return TRUE;
274}
275
276
277
278/*************************************************
279* Bomb out while reading a message *
280*************************************************/
281
282/* The common case of wanting to bomb out is if a SIGTERM or SIGINT is
283received, or if there is a timeout. A rarer case might be if the log files are
284screwed up and Exim can't open them to record a message's arrival. Handling
285that case is done by setting a flag to cause the log functions to call this
286function if there is an ultimate disaster. That is why it is globally
287accessible.
288
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289Arguments:
290 reason text reason to pass to the not-quit ACL
291 msg default SMTP response to give if in an SMTP session
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292Returns: it doesn't
293*/
294
295void
8f128379 296receive_bomb_out(uschar *reason, uschar *msg)
059ec3d9 297{
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298 static BOOL already_bombing_out;
299/* The smtp_notquit_exit() below can call ACLs which can trigger recursive
300timeouts, if someone has something slow in their quit ACL. Since the only
301things we should be doing are to close down cleanly ASAP, on the second
302pass we also close down stuff that might be opened again, before bypassing
303the ACL call and exiting. */
304
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305/* If spool_name is set, it contains the name of the data file that is being
306written. Unlink it before closing so that it cannot be picked up by a delivery
307process. Ensure that any header file is also removed. */
308
ead37e6c 309if (spool_name[0] != '\0')
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310 {
311 Uunlink(spool_name);
312 spool_name[Ustrlen(spool_name) - 1] = 'H';
313 Uunlink(spool_name);
ead37e6c 314 spool_name[0] = '\0';
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315 }
316
317/* Now close the file if it is open, either as a fd or a stream. */
318
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319if (data_file != NULL)
320 {
321 (void)fclose(data_file);
322 data_file = NULL;
323} else if (data_fd >= 0) {
324 (void)close(data_fd);
325 data_fd = -1;
326 }
059ec3d9 327
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328/* Attempt to close down an SMTP connection tidily. For non-batched SMTP, call
329smtp_notquit_exit(), which runs the NOTQUIT ACL, if present, and handles the
330SMTP response. */
059ec3d9 331
ead37e6c 332if (!already_bombing_out)
059ec3d9 333 {
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PP
334 already_bombing_out = TRUE;
335 if (smtp_input)
336 {
337 if (smtp_batched_input)
338 moan_smtp_batch(NULL, "421 %s - message abandoned", msg); /* No return */
339 smtp_notquit_exit(reason, US"421", US"%s %s - closing connection.",
340 smtp_active_hostname, msg);
341 }
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342 }
343
344/* Exit from the program (non-BSMTP cases) */
345
346exim_exit(EXIT_FAILURE);
347}
348
349
350/*************************************************
351* Data read timeout *
352*************************************************/
353
354/* Handler function for timeouts that occur while reading the data that
355comprises a message.
356
357Argument: the signal number
358Returns: nothing
359*/
360
361static void
362data_timeout_handler(int sig)
363{
364uschar *msg = NULL;
365
366sig = sig; /* Keep picky compilers happy */
367
368if (smtp_input)
369 {
370 msg = US"SMTP incoming data timeout";
371 log_write(L_lost_incoming_connection,
372 LOG_MAIN, "SMTP data timeout (message abandoned) on connection "
fed77020
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373 "from %s F=<%s>",
374 (sender_fullhost != NULL)? sender_fullhost : US"local process",
375 sender_address);
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376 }
377else
378 {
379 fprintf(stderr, "exim: timed out while reading - message abandoned\n");
380 log_write(L_lost_incoming_connection,
381 LOG_MAIN, "timed out while reading local message");
382 }
383
8f128379 384receive_bomb_out(US"data-timeout", msg); /* Does not return */
059ec3d9
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385}
386
387
388
389/*************************************************
390* local_scan() timeout *
391*************************************************/
392
393/* Handler function for timeouts that occur while running a local_scan()
394function.
395
396Argument: the signal number
397Returns: nothing
398*/
399
400static void
401local_scan_timeout_handler(int sig)
402{
403sig = sig; /* Keep picky compilers happy */
404log_write(0, LOG_MAIN|LOG_REJECT, "local_scan() function timed out - "
405 "message temporarily rejected (size %d)", message_size);
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406/* Does not return */
407receive_bomb_out(US"local-scan-timeout", US"local verification problem");
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408}
409
410
411
412/*************************************************
413* local_scan() crashed *
414*************************************************/
415
416/* Handler function for signals that occur while running a local_scan()
417function.
418
419Argument: the signal number
420Returns: nothing
421*/
422
423static void
424local_scan_crash_handler(int sig)
425{
426log_write(0, LOG_MAIN|LOG_REJECT, "local_scan() function crashed with "
427 "signal %d - message temporarily rejected (size %d)", sig, message_size);
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428/* Does not return */
429receive_bomb_out(US"local-scan-error", US"local verification problem");
059ec3d9
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430}
431
432
433/*************************************************
434* SIGTERM or SIGINT received *
435*************************************************/
436
437/* Handler for SIGTERM or SIGINT signals that occur while reading the
438data that comprises a message.
439
440Argument: the signal number
441Returns: nothing
442*/
443
444static void
445data_sigterm_sigint_handler(int sig)
446{
447uschar *msg = NULL;
448
449if (smtp_input)
450 {
451 msg = US"Service not available - SIGTERM or SIGINT received";
452 log_write(0, LOG_MAIN, "%s closed after %s", smtp_get_connection_info(),
453 (sig == SIGTERM)? "SIGTERM" : "SIGINT");
454 }
455else
456 {
f05da2e8 457 if (filter_test == FTEST_NONE)
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458 {
459 fprintf(stderr, "\nexim: %s received - message abandoned\n",
460 (sig == SIGTERM)? "SIGTERM" : "SIGINT");
461 log_write(0, LOG_MAIN, "%s received while reading local message",
462 (sig == SIGTERM)? "SIGTERM" : "SIGINT");
463 }
464 }
465
8f128379 466receive_bomb_out(US"signal-exit", msg); /* Does not return */
059ec3d9
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467}
468
469
470
471/*************************************************
472* Add new recipient to list *
473*************************************************/
474
475/* This function builds a list of recipient addresses in argc/argv
476format.
477
478Arguments:
479 recipient the next address to add to recipients_list
480 pno parent number for fixed aliases; -1 otherwise
481
482Returns: nothing
483*/
484
485void
486receive_add_recipient(uschar *recipient, int pno)
487{
488if (recipients_count >= recipients_list_max)
489 {
490 recipient_item *oldlist = recipients_list;
491 int oldmax = recipients_list_max;
492 recipients_list_max = recipients_list_max? 2*recipients_list_max : 50;
493 recipients_list = store_get(recipients_list_max * sizeof(recipient_item));
494 if (oldlist != NULL)
495 memcpy(recipients_list, oldlist, oldmax * sizeof(recipient_item));
496 }
497
498recipients_list[recipients_count].address = recipient;
499recipients_list[recipients_count].pno = pno;
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500#ifdef EXPERIMENTAL_BRIGHTMAIL
501recipients_list[recipients_count].bmi_optin = bmi_current_optin;
502/* reset optin string pointer for next recipient */
503bmi_current_optin = NULL;
504#endif
6c1c3d1d
WB
505recipients_list[recipients_count].orcpt = NULL;
506recipients_list[recipients_count].dsn_flags = 0;
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507recipients_list[recipients_count++].errors_to = NULL;
508}
509
510
511
512
fd98a5c6
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513/*************************************************
514* Send user response message *
515*************************************************/
61147df4 516
fd98a5c6
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517/* This function is passed a default response code and a user message. It calls
518smtp_message_code() to check and possibly modify the response code, and then
519calls smtp_respond() to transmit the response. I put this into a function
520just to avoid a lot of repetition.
61147df4
PP
521
522Arguments:
fd98a5c6
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523 code the response code
524 user_msg the user message
525
526Returns: nothing
61147df4
PP
527*/
528
8ccd00b1 529#ifndef DISABLE_PRDR
61147df4 530static void
fd98a5c6 531smtp_user_msg(uschar *code, uschar *user_msg)
61147df4 532{
fd98a5c6 533int len = 3;
4f6ae5c3 534smtp_message_code(&code, &len, &user_msg, NULL, TRUE);
fd98a5c6 535smtp_respond(code, len, TRUE, user_msg);
61147df4
PP
536}
537#endif
538
539
540
541
fd98a5c6 542
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543/*************************************************
544* Remove a recipient from the list *
545*************************************************/
546
547/* This function is provided for local_scan() to use.
548
549Argument:
550 recipient address to remove
551
552Returns: TRUE if it did remove something; FALSE otherwise
553*/
554
555BOOL
556receive_remove_recipient(uschar *recipient)
557{
558int count;
559DEBUG(D_receive) debug_printf("receive_remove_recipient(\"%s\") called\n",
560 recipient);
561for (count = 0; count < recipients_count; count++)
562 {
563 if (Ustrcmp(recipients_list[count].address, recipient) == 0)
564 {
565 if ((--recipients_count - count) > 0)
566 memmove(recipients_list + count, recipients_list + count + 1,
54cdb463 567 (recipients_count - count)*sizeof(recipient_item));
059ec3d9
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568 return TRUE;
569 }
570 }
571return FALSE;
572}
573
574
575
576
577
578/*************************************************
579* Read data portion of a non-SMTP message *
580*************************************************/
581
582/* This function is called to read the remainder of a message (following the
583header) when the input is not from SMTP - we are receiving a local message on
584a standard input stream. The message is always terminated by EOF, and is also
585terminated by a dot on a line by itself if the flag dot_ends is TRUE. Split the
586two cases for maximum efficiency.
587
588Ensure that the body ends with a newline. This will naturally be the case when
589the termination is "\n.\n" but may not be otherwise. The RFC defines messages
590as "sequences of lines" - this of course strictly applies only to SMTP, but
591deliveries into BSD-type mailbox files also require it. Exim used to have a
592flag for doing this at delivery time, but as it was always set for all
593transports, I decided to simplify things by putting the check here instead.
594
595There is at least one MUA (dtmail) that sends CRLF via this interface, and
596other programs are known to do this as well. Exim used to have a option for
597dealing with this: in July 2003, after much discussion, the code has been
598changed to default to treat any of LF, CRLF, and bare CR as line terminators.
599
600However, for the case when a dot on a line by itself terminates a message, the
601only recognized terminating sequences before and after the dot are LF and CRLF.
602Otherwise, having read EOL . CR, you don't know whether to read another
603character or not.
604
605Internally, in messages stored in Exim's spool files, LF is used as the line
606terminator. Under the new regime, bare CRs will no longer appear in these
607files.
608
609Arguments:
610 fout a FILE to which to write the message
611
612Returns: One of the END_xxx values indicating why it stopped reading
613*/
614
615static int
616read_message_data(FILE *fout)
617{
618int ch_state;
619register int ch;
d677b2f2 620register int linelength = 0;
059ec3d9
PH
621
622/* Handle the case when only EOF terminates the message */
623
624if (!dot_ends)
625 {
626 register int last_ch = '\n';
627
bd8fbe36 628 for (; (ch = (receive_getc)(GETC_BUFFER_UNLIMITED)) != EOF; last_ch = ch)
059ec3d9
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629 {
630 if (ch == 0) body_zerocount++;
631 if (last_ch == '\r' && ch != '\n')
632 {
d677b2f2
PH
633 if (linelength > max_received_linelength)
634 max_received_linelength = linelength;
635 linelength = 0;
059ec3d9
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636 if (fputc('\n', fout) == EOF) return END_WERROR;
637 message_size++;
638 body_linecount++;
639 }
640 if (ch == '\r') continue;
641
642 if (fputc(ch, fout) == EOF) return END_WERROR;
d677b2f2
PH
643 if (ch == '\n')
644 {
645 if (linelength > max_received_linelength)
646 max_received_linelength = linelength;
647 linelength = 0;
648 body_linecount++;
649 }
650 else linelength++;
059ec3d9
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651 if (++message_size > thismessage_size_limit) return END_SIZE;
652 }
653
654 if (last_ch != '\n')
655 {
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656 if (linelength > max_received_linelength)
657 max_received_linelength = linelength;
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658 if (fputc('\n', fout) == EOF) return END_WERROR;
659 message_size++;
660 body_linecount++;
661 }
662
663 return END_EOF;
664 }
665
666/* Handle the case when a dot on a line on its own, or EOF, terminates. */
667
668ch_state = 1;
669
bd8fbe36 670while ((ch = (receive_getc)(GETC_BUFFER_UNLIMITED)) != EOF)
059ec3d9
PH
671 {
672 if (ch == 0) body_zerocount++;
673 switch (ch_state)
674 {
675 case 0: /* Normal state (previous char written) */
676 if (ch == '\n')
d677b2f2
PH
677 {
678 body_linecount++;
679 if (linelength > max_received_linelength)
680 max_received_linelength = linelength;
681 linelength = -1;
682 ch_state = 1;
683 }
059ec3d9
PH
684 else if (ch == '\r')
685 { ch_state = 2; continue; }
686 break;
687
688 case 1: /* After written "\n" */
689 if (ch == '.') { ch_state = 3; continue; }
6eb02f88 690 if (ch == '\r') { ch_state = 2; continue; }
3581f321
JH
691 if (ch == '\n') { body_linecount++; linelength = -1; }
692 else ch_state = 0;
059ec3d9
PH
693 break;
694
695 case 2:
696 body_linecount++; /* After unwritten "\r" */
d677b2f2
PH
697 if (linelength > max_received_linelength)
698 max_received_linelength = linelength;
059ec3d9 699 if (ch == '\n')
d677b2f2
PH
700 {
701 ch_state = 1;
702 linelength = -1;
703 }
059ec3d9
PH
704 else
705 {
706 if (message_size++, fputc('\n', fout) == EOF) return END_WERROR;
707 if (ch == '\r') continue;
708 ch_state = 0;
d677b2f2 709 linelength = 0;
059ec3d9
PH
710 }
711 break;
712
713 case 3: /* After "\n." (\n written, dot not) */
714 if (ch == '\n') return END_DOT;
715 if (ch == '\r') { ch_state = 4; continue; }
716 message_size++;
d677b2f2 717 linelength++;
059ec3d9
PH
718 if (fputc('.', fout) == EOF) return END_WERROR;
719 ch_state = 0;
720 break;
721
722 case 4: /* After "\n.\r" (\n written, rest not) */
723 if (ch == '\n') return END_DOT;
724 message_size += 2;
725 body_linecount++;
726 if (fputs(".\n", fout) == EOF) return END_WERROR;
727 if (ch == '\r') { ch_state = 2; continue; }
728 ch_state = 0;
729 break;
730 }
731
d677b2f2 732 linelength++;
059ec3d9
PH
733 if (fputc(ch, fout) == EOF) return END_WERROR;
734 if (++message_size > thismessage_size_limit) return END_SIZE;
735 }
736
737/* Get here if EOF read. Unless we have just written "\n", we need to ensure
738the message ends with a newline, and we must also write any characters that
739were saved up while testing for an ending dot. */
740
741if (ch_state != 1)
742 {
743 static uschar *ends[] = { US"\n", NULL, US"\n", US".\n", US".\n" };
744 if (fputs(CS ends[ch_state], fout) == EOF) return END_WERROR;
745 message_size += Ustrlen(ends[ch_state]);
746 body_linecount++;
747 }
748
749return END_EOF;
750}
751
752
753
754
755/*************************************************
756* Read data portion of an SMTP message *
757*************************************************/
758
759/* This function is called to read the remainder of an SMTP message (after the
760headers), or to skip over it when an error has occurred. In this case, the
761output file is passed as NULL.
762
763If any line begins with a dot, that character is skipped. The input should only
764be successfully terminated by CR LF . CR LF unless it is local (non-network)
765SMTP, in which case the CRs are optional, but...
766
767FUDGE: It seems that sites on the net send out messages with just LF
768terminators, despite the warnings in the RFCs, and other MTAs handle this. So
769we make the CRs optional in all cases.
770
771July 2003: Bare CRs cause trouble. We now treat them as line terminators as
772well, so that there are no CRs in spooled messages. However, the message
773terminating dot is not recognized between two bare CRs.
774
775Arguments:
776 fout a FILE to which to write the message; NULL if skipping
777
778Returns: One of the END_xxx values indicating why it stopped reading
779*/
780
781static int
782read_message_data_smtp(FILE *fout)
783{
784int ch_state = 0;
e4bdf652 785int ch;
7e3ce68e 786int linelength = 0;
059ec3d9 787
bd8fbe36 788while ((ch = (receive_getc)(GETC_BUFFER_UNLIMITED)) != EOF)
059ec3d9
PH
789 {
790 if (ch == 0) body_zerocount++;
791 switch (ch_state)
792 {
793 case 0: /* After LF or CRLF */
794 if (ch == '.')
795 {
796 ch_state = 3;
797 continue; /* Don't ever write . after LF */
798 }
799 ch_state = 1;
800
801 /* Else fall through to handle as normal uschar. */
802
803 case 1: /* Normal state */
804 if (ch == '\n')
805 {
806 ch_state = 0;
807 body_linecount++;
1f5497b2
PH
808 if (linelength > max_received_linelength)
809 max_received_linelength = linelength;
810 linelength = -1;
059ec3d9
PH
811 }
812 else if (ch == '\r')
813 {
814 ch_state = 2;
815 continue;
816 }
817 break;
818
819 case 2: /* After (unwritten) CR */
820 body_linecount++;
1f5497b2
PH
821 if (linelength > max_received_linelength)
822 max_received_linelength = linelength;
823 linelength = -1;
059ec3d9
PH
824 if (ch == '\n')
825 {
826 ch_state = 0;
827 }
828 else
829 {
830 message_size++;
831 if (fout != NULL && fputc('\n', fout) == EOF) return END_WERROR;
6851a9c5 832 cutthrough_data_put_nl();
059ec3d9
PH
833 if (ch != '\r') ch_state = 1; else continue;
834 }
835 break;
836
837 case 3: /* After [CR] LF . */
838 if (ch == '\n')
839 return END_DOT;
840 if (ch == '\r')
841 {
842 ch_state = 4;
843 continue;
844 }
1bc460a6
JH
845 /* The dot was removed at state 3. For a doubled dot, here, reinstate
846 it to cutthrough. The current ch, dot or not, is passed both to cutthrough
847 and to file below. */
848 if (ch == '.')
849 {
850 uschar c= ch;
6851a9c5 851 cutthrough_data_puts(&c, 1);
1bc460a6
JH
852 }
853 ch_state = 1;
059ec3d9
PH
854 break;
855
856 case 4: /* After [CR] LF . CR */
857 if (ch == '\n') return END_DOT;
858 message_size++;
859 body_linecount++;
860 if (fout != NULL && fputc('\n', fout) == EOF) return END_WERROR;
6851a9c5 861 cutthrough_data_put_nl();
059ec3d9
PH
862 if (ch == '\r')
863 {
864 ch_state = 2;
865 continue;
866 }
867 ch_state = 1;
868 break;
869 }
870
871 /* Add the character to the spool file, unless skipping; then loop for the
872 next. */
873
874 message_size++;
1f5497b2 875 linelength++;
7e3ce68e 876 if (fout)
059ec3d9
PH
877 {
878 if (fputc(ch, fout) == EOF) return END_WERROR;
879 if (message_size > thismessage_size_limit) return END_SIZE;
880 }
e4bdf652 881 if(ch == '\n')
6851a9c5 882 cutthrough_data_put_nl();
e4bdf652
JH
883 else
884 {
7e3ce68e 885 uschar c = ch;
6851a9c5 886 cutthrough_data_puts(&c, 1);
e4bdf652 887 }
059ec3d9
PH
888 }
889
890/* Fall through here if EOF encountered. This indicates some kind of error,
891since a correct message is terminated by [CR] LF . [CR] LF. */
892
893return END_EOF;
894}
895
896
897
898
7e3ce68e 899/* Variant of the above read_message_data_smtp() specialised for RFC 3030
1ebe15c3
JH
900CHUNKING. Accept input lines separated by either CRLF or CR or LF and write
901LF-delimited spoolfile. Until we have wireformat spoolfiles, we need the
902body_linecount accounting for proper re-expansion for the wire, so use
903a cut-down version of the state-machine above; we don't need to do leading-dot
904detection and unstuffing.
7e3ce68e
JH
905
906Arguments:
544dd905
PP
907 fout a FILE to which to write the message; NULL if skipping;
908 must be open for both writing and reading.
7e3ce68e
JH
909
910Returns: One of the END_xxx values indicating why it stopped reading
911*/
912
913static int
914read_message_bdat_smtp(FILE *fout)
915{
cff70eb1
HSHR
916int linelength = 0, ch;
917enum CH_STATE ch_state = LF_SEEN;
d953610f 918BOOL fix_nl = FALSE;
7e3ce68e 919
1ebe15c3 920for(;;)
7e3ce68e 921 {
7d758a6a 922 switch ((ch = bdat_getc(GETC_BUFFER_UNLIMITED)))
1ebe15c3
JH
923 {
924 case EOF: return END_EOF;
1ebe15c3 925 case ERR: return END_PROTOCOL;
d953610f
HSHR
926 case EOD:
927 /* Nothing to get from the sender anymore. We check the last
928 character written to the spool.
929
930 RFC 3030 states, that BDAT chunks are normal text, terminated by CRLF.
931 If we would be strict, we would refuse such broken messages.
932 But we are liberal, so we fix it. It would be easy just to append
933 the "\n" to the spool.
934
935 But there are some more things (line counting, message size calculation and such),
936 that would need to be duplicated here. So we simply do some ungetc
937 trickery.
938 */
59d98039
JH
939 if (fout)
940 {
941 if (fseek(fout, -1, SEEK_CUR) < 0) return END_PROTOCOL;
942 if (fgetc(fout) == '\n') return END_DOT;
943 }
d953610f
HSHR
944
945 if (linelength == -1) /* \r already seen (see below) */
946 {
947 DEBUG(D_receive) debug_printf("Add missing LF\n");
948 bdat_ungetc('\n');
949 continue;
950 }
951 DEBUG(D_receive) debug_printf("Add missing CRLF\n");
952 bdat_ungetc('\r'); /* not even \r was seen */
953 fix_nl = TRUE;
954
955 continue;
1ebe15c3
JH
956 case '\0': body_zerocount++; break;
957 }
958 switch (ch_state)
959 {
cff70eb1
HSHR
960 case LF_SEEN: /* After LF or CRLF */
961 ch_state = MID_LINE;
1ebe15c3 962 /* fall through to handle as normal uschar. */
7e3ce68e 963
cff70eb1 964 case MID_LINE: /* Mid-line state */
1ebe15c3
JH
965 if (ch == '\n')
966 {
cff70eb1 967 ch_state = LF_SEEN;
1ebe15c3
JH
968 body_linecount++;
969 if (linelength > max_received_linelength)
970 max_received_linelength = linelength;
971 linelength = -1;
972 }
973 else if (ch == '\r')
974 {
cff70eb1 975 ch_state = CR_SEEN;
d953610f 976 if (fix_nl) bdat_ungetc('\n');
1ebe15c3
JH
977 continue; /* don't write CR */
978 }
979 break;
7e3ce68e 980
cff70eb1 981 case CR_SEEN: /* After (unwritten) CR */
1ebe15c3
JH
982 body_linecount++;
983 if (linelength > max_received_linelength)
984 max_received_linelength = linelength;
985 linelength = -1;
986 if (ch == '\n')
cff70eb1 987 ch_state = LF_SEEN;
1ebe15c3
JH
988 else
989 {
990 message_size++;
59d98039 991 if (fout && fputc('\n', fout) == EOF) return END_WERROR;
6851a9c5 992 cutthrough_data_put_nl();
1ebe15c3 993 if (ch == '\r') continue; /* don't write CR */
cff70eb1 994 ch_state = MID_LINE;
1ebe15c3
JH
995 }
996 break;
997 }
998
999 /* Add the character to the spool file, unless skipping */
1000
1001 message_size++;
1002 linelength++;
1003 if (fout)
1004 {
1005 if (fputc(ch, fout) == EOF) return END_WERROR;
1006 if (message_size > thismessage_size_limit) return END_SIZE;
1007 }
1008 if(ch == '\n')
6851a9c5 1009 cutthrough_data_put_nl();
1ebe15c3
JH
1010 else
1011 {
1012 uschar c = ch;
6851a9c5 1013 cutthrough_data_puts(&c, 1);
1ebe15c3 1014 }
7e3ce68e
JH
1015 }
1016/*NOTREACHED*/
1017}
1018
328c5688
JH
1019static int
1020read_message_bdat_smtp_wire(FILE *fout)
1021{
1022int ch;
1023
1024/* Remember that this message uses wireformat. */
1025
1026DEBUG(D_receive) debug_printf("CHUNKING: writing spoolfile in wire format\n");
1027spool_file_wireformat = TRUE;
1028
0d81dabc 1029for (;;)
328c5688 1030 {
0d81dabc
JH
1031 if (chunking_data_left > 0)
1032 {
1033 unsigned len = MAX(chunking_data_left, thismessage_size_limit - message_size + 1);
1034 uschar * buf = bdat_getbuf(&len);
328c5688 1035
0d81dabc
JH
1036 message_size += len;
1037 if (fout && fwrite(buf, len, 1, fout) != 1) return END_WERROR;
1038 }
1039 else switch (ch = bdat_getc(GETC_BUFFER_UNLIMITED))
1040 {
1041 case EOF: return END_EOF;
1042 case EOD: return END_DOT;
1043 case ERR: return END_PROTOCOL;
1044
1045 default:
1046 message_size++;
1047 /*XXX not done:
1048 linelength
1049 max_received_linelength
1050 body_linecount
1051 body_zerocount
1052 */
1053 if (fout && fputc(ch, fout) == EOF) return END_WERROR;
1054 break;
1055 }
1056 if (message_size > thismessage_size_limit) return END_SIZE;
328c5688
JH
1057 }
1058/*NOTREACHED*/
1059}
1060
7e3ce68e
JH
1061
1062
1063
059ec3d9
PH
1064/*************************************************
1065* Swallow SMTP message *
1066*************************************************/
1067
1068/* This function is called when there has been some kind of error while reading
1069an SMTP message, and the remaining data may need to be swallowed. It is global
1070because it is called from smtp_closedown() to shut down an incoming call
1071tidily.
1072
1073Argument: a FILE from which to read the message
1074Returns: nothing
1075*/
1076
1077void
1078receive_swallow_smtp(void)
1079{
7e3ce68e 1080/*XXX CHUNKING: not enough. read chunks until RSET? */
059ec3d9
PH
1081if (message_ended >= END_NOTENDED)
1082 message_ended = read_message_data_smtp(NULL);
1083}
1084
1085
1086
1087/*************************************************
1088* Handle lost SMTP connection *
1089*************************************************/
1090
1091/* This function logs connection loss incidents and generates an appropriate
1092SMTP response.
1093
1094Argument: additional data for the message
1095Returns: the SMTP response
1096*/
1097
1098static uschar *
1099handle_lost_connection(uschar *s)
1100{
1101log_write(L_lost_incoming_connection | L_smtp_connection, LOG_MAIN,
1102 "%s lost while reading message data%s", smtp_get_connection_info(), s);
eea0defe 1103smtp_notquit_exit(US"connection-lost", NULL, NULL);
059ec3d9
PH
1104return US"421 Lost incoming connection";
1105}
1106
1107
1108
1109
1110/*************************************************
1111* Handle a non-smtp reception error *
1112*************************************************/
1113
1114/* This function is called for various errors during the reception of non-SMTP
1115messages. It either sends a message to the sender of the problem message, or it
1116writes to the standard error stream.
1117
1118Arguments:
1119 errcode code for moan_to_sender(), identifying the error
1120 text1 first message text, passed to moan_to_sender()
1121 text2 second message text, used only for stderrr
1122 error_rc code to pass to exim_exit if no problem
1123 f FILE containing body of message (may be stdin)
1124 hptr pointer to instore headers or NULL
1125
1126Returns: calls exim_exit(), which does not return
1127*/
1128
1129static void
1130give_local_error(int errcode, uschar *text1, uschar *text2, int error_rc,
1131 FILE *f, header_line *hptr)
1132{
1133if (error_handling == ERRORS_SENDER)
1134 {
1135 error_block eblock;
1136 eblock.next = NULL;
1137 eblock.text1 = text1;
37f3dc43 1138 eblock.text2 = US"";
059ec3d9
PH
1139 if (!moan_to_sender(errcode, &eblock, hptr, f, FALSE))
1140 error_rc = EXIT_FAILURE;
1141 }
37f3dc43
JH
1142else
1143 fprintf(stderr, "exim: %s%s\n", text2, text1); /* Sic */
f1e894f3 1144(void)fclose(f);
059ec3d9
PH
1145exim_exit(error_rc);
1146}
1147
1148
1149
1150/*************************************************
1151* Add header lines set up by ACL *
1152*************************************************/
1153
850635b6
PH
1154/* This function is called to add the header lines that were set up by
1155statements in an ACL to the list of headers in memory. It is done in two stages
1156like this, because when the ACL for RCPT is running, the other headers have not
1157yet been received. This function is called twice; once just before running the
1158DATA ACL, and once after. This is so that header lines added by MAIL or RCPT
1159are visible to the DATA ACL.
059ec3d9
PH
1160
1161Originally these header lines were added at the end. Now there is support for
1162three different places: top, bottom, and after the Received: header(s). There
1163will always be at least one Received: header, even if it is marked deleted, and
1164even if something else has been put in front of it.
1165
1166Arguments:
1167 acl_name text to identify which ACL
1168
1169Returns: nothing
1170*/
1171
1172static void
578d43dc 1173add_acl_headers(int where, uschar *acl_name)
059ec3d9
PH
1174{
1175header_line *h, *next;
1176header_line *last_received = NULL;
e7568d51 1177
578d43dc
JH
1178switch(where)
1179 {
1180 case ACL_WHERE_DKIM:
1181 case ACL_WHERE_MIME:
af4a1bca 1182 case ACL_WHERE_DATA:
57cc2785
JH
1183 if ( cutthrough.fd >= 0 && cutthrough.delivery
1184 && (acl_removed_headers || acl_added_headers))
578d43dc
JH
1185 {
1186 log_write(0, LOG_MAIN|LOG_PANIC, "Header modification in data ACLs"
af4a1bca 1187 " will not take effect on cutthrough deliveries");
578d43dc
JH
1188 return;
1189 }
1190 }
1191
57cc2785 1192if (acl_removed_headers)
e7568d51 1193 {
e1d04f48 1194 DEBUG(D_receive|D_acl) debug_printf_indent(">>Headers removed by %s ACL:\n", acl_name);
e7568d51 1195
57cc2785 1196 for (h = header_list; h; h = h->next) if (h->type != htype_old)
e7568d51 1197 {
55414b25 1198 const uschar * list = acl_removed_headers;
e7568d51
TL
1199 int sep = ':'; /* This is specified as a colon-separated list */
1200 uschar *s;
1201 uschar buffer[128];
4a142059
JH
1202
1203 while ((s = string_nextinlist(&list, &sep, buffer, sizeof(buffer))))
1204 if (header_testname(h, s, Ustrlen(s), FALSE))
e7568d51
TL
1205 {
1206 h->type = htype_old;
e1d04f48 1207 DEBUG(D_receive|D_acl) debug_printf_indent(" %s", h->text);
e7568d51 1208 }
e7568d51
TL
1209 }
1210 acl_removed_headers = NULL;
e1d04f48 1211 DEBUG(D_receive|D_acl) debug_printf_indent(">>\n");
e7568d51 1212 }
059ec3d9 1213
57cc2785 1214if (!acl_added_headers) return;
e1d04f48 1215DEBUG(D_receive|D_acl) debug_printf_indent(">>Headers added by %s ACL:\n", acl_name);
059ec3d9 1216
57cc2785 1217for (h = acl_added_headers; h; h = next)
059ec3d9
PH
1218 {
1219 next = h->next;
1220
1221 switch(h->type)
1222 {
1223 case htype_add_top:
1224 h->next = header_list;
1225 header_list = h;
e1d04f48 1226 DEBUG(D_receive|D_acl) debug_printf_indent(" (at top)");
059ec3d9
PH
1227 break;
1228
1229 case htype_add_rec:
1230 if (last_received == NULL)
1231 {
1232 last_received = header_list;
1233 while (!header_testname(last_received, US"Received", 8, FALSE))
1234 last_received = last_received->next;
1235 while (last_received->next != NULL &&
1236 header_testname(last_received->next, US"Received", 8, FALSE))
1237 last_received = last_received->next;
1238 }
1239 h->next = last_received->next;
1240 last_received->next = h;
e1d04f48 1241 DEBUG(D_receive|D_acl) debug_printf_indent(" (after Received:)");
059ec3d9
PH
1242 break;
1243
8523533c
TK
1244 case htype_add_rfc:
1245 /* add header before any header which is NOT Received: or Resent- */
1246 last_received = header_list;
1247 while ( (last_received->next != NULL) &&
1248 ( (header_testname(last_received->next, US"Received", 8, FALSE)) ||
1249 (header_testname_incomplete(last_received->next, US"Resent-", 7, FALSE)) ) )
1250 last_received = last_received->next;
1251 /* last_received now points to the last Received: or Resent-* header
1252 in an uninterrupted chain of those header types (seen from the beginning
1253 of all headers. Our current header must follow it. */
1254 h->next = last_received->next;
1255 last_received->next = h;
e1d04f48 1256 DEBUG(D_receive|D_acl) debug_printf_indent(" (before any non-Received: or Resent-*: header)");
8523533c
TK
1257 break;
1258
059ec3d9
PH
1259 default:
1260 h->next = NULL;
1261 header_last->next = h;
1262 break;
1263 }
1264
1265 if (h->next == NULL) header_last = h;
1266
1267 /* Check for one of the known header types (From:, To:, etc.) though in
1268 practice most added headers are going to be "other". Lower case
1269 identification letters are never stored with the header; they are used
1270 for existence tests when messages are received. So discard any lower case
1271 flag values. */
1272
1273 h->type = header_checkname(h, FALSE);
1274 if (h->type >= 'a') h->type = htype_other;
1275
e1d04f48 1276 DEBUG(D_receive|D_acl) debug_printf_indent(" %s", header_last->text);
059ec3d9
PH
1277 }
1278
71fafd95 1279acl_added_headers = NULL;
e1d04f48 1280DEBUG(D_receive|D_acl) debug_printf_indent(">>\n");
059ec3d9
PH
1281}
1282
1283
1284
1285/*************************************************
1286* Add host information for log line *
1287*************************************************/
1288
1289/* Called for acceptance and rejecting log lines. This adds information about
1290the calling host to a string that is being built dynamically.
1291
1292Arguments:
1293 s the dynamic string
1294 sizeptr points to the size variable
1295 ptrptr points to the pointer variable
1296
1297Returns: the extended string
1298*/
1299
1300static uschar *
fc16abb4 1301add_host_info_for_log(uschar * s, int * sizeptr, int * ptrptr)
059ec3d9 1302{
fc16abb4 1303if (sender_fullhost)
059ec3d9 1304 {
fc16abb4 1305 if (LOGGING(dnssec) && sender_host_dnssec) /*XXX sender_helo_dnssec? */
a2673768 1306 s = string_catn(s, sizeptr, ptrptr, US" DS", 3);
059ec3d9 1307 s = string_append(s, sizeptr, ptrptr, 2, US" H=", sender_fullhost);
6c6d6e48 1308 if (LOGGING(incoming_interface) && interface_address != NULL)
059ec3d9 1309 {
fc16abb4
JH
1310 s = string_cat(s, sizeptr, ptrptr,
1311 string_sprintf(" I=[%s]:%d", interface_address, interface_port));
059ec3d9
PH
1312 }
1313 }
a2673768
JH
1314if (tcp_in_fastopen && !tcp_in_fastopen_logged)
1315 {
1316 s = string_catn(s, sizeptr, ptrptr, US" TFO", 4);
1317 tcp_in_fastopen_logged = TRUE;
1318 }
1319if (sender_ident)
059ec3d9 1320 s = string_append(s, sizeptr, ptrptr, 2, US" U=", sender_ident);
a2673768 1321if (received_protocol)
059ec3d9
PH
1322 s = string_append(s, sizeptr, ptrptr, 2, US" P=", received_protocol);
1323return s;
1324}
1325
1326
1327
63955bf2 1328#ifdef WITH_CONTENT_SCAN
059ec3d9 1329
54cdb463
PH
1330/*************************************************
1331* Run the MIME ACL on a message *
1332*************************************************/
1333
1334/* This code is in a subroutine so that it can be used for both SMTP
1335and non-SMTP messages. It is called with a non-NULL ACL pointer.
1336
1337Arguments:
1338 acl The ACL to run (acl_smtp_mime or acl_not_smtp_mime)
1339 smtp_yield_ptr Set FALSE to kill messages after dropped connection
1340 smtp_reply_ptr Where SMTP reply is being built
1341 blackholed_by_ptr Where "blackholed by" message is being built
1342
1343Returns: TRUE to carry on; FALSE to abandon the message
1344*/
1345
1346static BOOL
1347run_mime_acl(uschar *acl, BOOL *smtp_yield_ptr, uschar **smtp_reply_ptr,
1348 uschar **blackholed_by_ptr)
1349{
1350FILE *mbox_file;
1351uschar rfc822_file_path[2048];
1352unsigned long mbox_size;
1353header_line *my_headerlist;
1354uschar *user_msg, *log_msg;
1355int mime_part_count_buffer = -1;
040721f2 1356uschar * mbox_filename;
7156b1ef 1357int rc = OK;
54cdb463
PH
1358
1359memset(CS rfc822_file_path,0,2048);
1360
1361/* check if it is a MIME message */
040721f2
JH
1362
1363for (my_headerlist = header_list; my_headerlist; my_headerlist = my_headerlist->next)
1364 if ( my_headerlist->type != '*' /* skip deleted headers */
1365 && strncmpic(my_headerlist->text, US"Content-Type:", 13) == 0
1366 )
4e88a19f 1367 {
54cdb463
PH
1368 DEBUG(D_receive) debug_printf("Found Content-Type: header - executing acl_smtp_mime.\n");
1369 goto DO_MIME_ACL;
4e88a19f 1370 }
54cdb463
PH
1371
1372DEBUG(D_receive) debug_printf("No Content-Type: header - presumably not a MIME message.\n");
1373return TRUE;
1374
1375DO_MIME_ACL:
040721f2 1376
54cdb463 1377/* make sure the eml mbox file is spooled up */
040721f2
JH
1378if (!(mbox_file = spool_mbox(&mbox_size, NULL, &mbox_filename)))
1379 { /* error while spooling */
54cdb463
PH
1380 log_write(0, LOG_MAIN|LOG_PANIC,
1381 "acl_smtp_mime: error while creating mbox spool file, message temporarily rejected.");
1382 Uunlink(spool_name);
1383 unspool_mbox();
6f0c431a
PP
1384#ifdef EXPERIMENTAL_DCC
1385 dcc_ok = 0;
1386#endif
a5bd321b 1387 smtp_respond(US"451", 3, TRUE, US"temporary local problem");
54cdb463
PH
1388 message_id[0] = 0; /* Indicate no message accepted */
1389 *smtp_reply_ptr = US""; /* Indicate reply already sent */
1390 return FALSE; /* Indicate skip to end of receive function */
040721f2 1391 }
54cdb463
PH
1392
1393mime_is_rfc822 = 0;
1394
1395MIME_ACL_CHECK:
1396mime_part_count = -1;
1397rc = mime_acl_check(acl, mbox_file, NULL, &user_msg, &log_msg);
f1e894f3 1398(void)fclose(mbox_file);
54cdb463 1399
4e88a19f
PH
1400if (Ustrlen(rfc822_file_path) > 0)
1401 {
54cdb463
PH
1402 mime_part_count = mime_part_count_buffer;
1403
4e88a19f
PH
1404 if (unlink(CS rfc822_file_path) == -1)
1405 {
54cdb463
PH
1406 log_write(0, LOG_PANIC,
1407 "acl_smtp_mime: can't unlink RFC822 spool file, skipping.");
1408 goto END_MIME_ACL;
4e88a19f
PH
1409 }
1410 }
54cdb463
PH
1411
1412/* check if we must check any message/rfc822 attachments */
4e88a19f
PH
1413if (rc == OK)
1414 {
040721f2 1415 uschar * scandir;
e8bc7fca
JH
1416 struct dirent * entry;
1417 DIR * tempdir;
54cdb463 1418
040721f2 1419 scandir = string_copyn(mbox_filename, Ustrrchr(mbox_filename, '/') - mbox_filename);
54cdb463 1420
040721f2 1421 tempdir = opendir(CS scandir);
e8bc7fca 1422 for (;;)
4e88a19f 1423 {
e8bc7fca
JH
1424 if (!(entry = readdir(tempdir)))
1425 break;
1426 if (strncmpic(US entry->d_name, US"__rfc822_", 9) == 0)
4e88a19f 1427 {
e8bc7fca 1428 (void) string_format(rfc822_file_path, sizeof(rfc822_file_path),
040721f2 1429 "%s/%s", scandir, entry->d_name);
e1d04f48 1430 DEBUG(D_receive) debug_printf("RFC822 attachment detected: running MIME ACL for '%s'\n",
e8bc7fca 1431 rfc822_file_path);
4e88a19f
PH
1432 break;
1433 }
e8bc7fca 1434 }
4e88a19f 1435 closedir(tempdir);
54cdb463 1436
e8bc7fca 1437 if (entry)
4e88a19f 1438 {
e8bc7fca 1439 if ((mbox_file = Ufopen(rfc822_file_path, "rb")))
4e88a19f 1440 {
e8bc7fca
JH
1441 /* set RFC822 expansion variable */
1442 mime_is_rfc822 = 1;
1443 mime_part_count_buffer = mime_part_count;
1444 goto MIME_ACL_CHECK;
4e88a19f 1445 }
e8bc7fca
JH
1446 log_write(0, LOG_PANIC,
1447 "acl_smtp_mime: can't open RFC822 spool file, skipping.");
1448 unlink(CS rfc822_file_path);
4e88a19f
PH
1449 }
1450 }
54cdb463
PH
1451
1452END_MIME_ACL:
578d43dc 1453add_acl_headers(ACL_WHERE_MIME, US"MIME");
54cdb463
PH
1454if (rc == DISCARD)
1455 {
1456 recipients_count = 0;
1457 *blackholed_by_ptr = US"MIME ACL";
1458 }
1459else if (rc != OK)
1460 {
1461 Uunlink(spool_name);
1462 unspool_mbox();
6f0c431a
PP
1463#ifdef EXPERIMENTAL_DCC
1464 dcc_ok = 0;
1465#endif
4f6ae5c3
JH
1466 if ( smtp_input
1467 && smtp_handle_acl_fail(ACL_WHERE_MIME, rc, user_msg, log_msg) != 0)
1468 {
85ffcba6 1469 *smtp_yield_ptr = FALSE; /* No more messages after dropped connection */
f4c1088b 1470 *smtp_reply_ptr = US""; /* Indicate reply already sent */
4f6ae5c3 1471 }
54cdb463
PH
1472 message_id[0] = 0; /* Indicate no message accepted */
1473 return FALSE; /* Cause skip to end of receive function */
4e88a19f 1474 }
54cdb463
PH
1475
1476return TRUE;
1477}
1478
63955bf2 1479#endif /* WITH_CONTENT_SCAN */
54cdb463
PH
1480
1481
e4bdf652
JH
1482
1483void
1484received_header_gen(void)
1485{
1486uschar *received;
1487uschar *timestamp;
1488header_line *received_header= header_list;
1489
1490timestamp = expand_string(US"${tod_full}");
1491if (recipients_count == 1) received_for = recipients_list[0].address;
1492received = expand_string(received_header_text);
1493received_for = NULL;
1494
d4ff61d1 1495if (!received)
e4bdf652
JH
1496 {
1497 if(spool_name[0] != 0)
1498 Uunlink(spool_name); /* Lose the data file */
1499 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "Expansion of \"%s\" "
1500 "(received_header_text) failed: %s", string_printing(received_header_text),
1501 expand_string_message);
1502 }
1503
1504/* The first element on the header chain is reserved for the Received header,
1505so all we have to do is fill in the text pointer, and set the type. However, if
1506the result of the expansion is an empty string, we leave the header marked as
1507"old" so as to refrain from adding a Received header. */
1508
1509if (received[0] == 0)
1510 {
1511 received_header->text = string_sprintf("Received: ; %s\n", timestamp);
1512 received_header->type = htype_old;
1513 }
1514else
1515 {
1516 received_header->text = string_sprintf("%s; %s\n", received, timestamp);
1517 received_header->type = htype_received;
1518 }
1519
1520received_header->slen = Ustrlen(received_header->text);
1521
1522DEBUG(D_receive) debug_printf(">>Generated Received: header line\n%c %s",
1523 received_header->type, received_header->text);
1524}
1525
1526
1527
059ec3d9
PH
1528/*************************************************
1529* Receive message *
1530*************************************************/
1531
1532/* Receive a message on the given input, and put it into a pair of spool files.
1533Either a non-null list of recipients, or the extract flag will be true, or
1534both. The flag sender_local is true for locally generated messages. The flag
1535submission_mode is true if an ACL has obeyed "control = submission". The flag
8800895a 1536suppress_local_fixups is true if an ACL has obeyed "control =
f4ee74ac
PP
1537suppress_local_fixups" or -G was passed on the command-line.
1538The flag smtp_input is true if the message is to be
8800895a
PH
1539handled using SMTP conventions about termination and lines starting with dots.
1540For non-SMTP messages, dot_ends is true for dot-terminated messages.
059ec3d9
PH
1541
1542If a message was successfully read, message_id[0] will be non-zero.
1543
1544The general actions of this function are:
1545
1546 . Read the headers of the message (if any) into a chain of store
1547 blocks.
1548
1549 . If there is a "sender:" header and the message is locally originated,
69358f02
PH
1550 throw it away, unless the caller is trusted, or unless
1551 active_local_sender_retain is set - which can only happen if
1552 active_local_from_check is false.
059ec3d9
PH
1553
1554 . If recipients are to be extracted from the message, build the
1555 recipients list from the headers, removing any that were on the
1556 original recipients list (unless extract_addresses_remove_arguments is
1557 false), and at the same time, remove any bcc header that may be present.
1558
1559 . Get the spool file for the data, sort out its unique name, open
1560 and lock it (but don't give it the name yet).
1561
1562 . Generate a "Message-Id" header if the message doesn't have one, for
1563 locally-originated messages.
1564
1565 . Generate a "Received" header.
1566
1567 . Ensure the recipients list is fully qualified and rewritten if necessary.
1568
1569 . If there are any rewriting rules, apply them to the sender address
1570 and also to the headers.
1571
1572 . If there is no from: header, generate one, for locally-generated messages
1573 and messages in "submission mode" only.
1574
1575 . If the sender is local, check that from: is correct, and if not, generate
1576 a Sender: header, unless message comes from a trusted caller, or this
69358f02 1577 feature is disabled by active_local_from_check being false.
059ec3d9
PH
1578
1579 . If there is no "date" header, generate one, for locally-originated
1580 or submission mode messages only.
1581
1582 . Copy the rest of the input, or up to a terminating "." if in SMTP or
1583 dot_ends mode, to the data file. Leave it open, to hold the lock.
1584
1585 . Write the envelope and the headers to a new file.
1586
1587 . Set the name for the header file; close it.
1588
1589 . Set the name for the data file; close it.
1590
1591Because this function can potentially be called many times in a single
1592SMTP connection, all store should be got by store_get(), so that it will be
1593automatically retrieved after the message is accepted.
1594
1595FUDGE: It seems that sites on the net send out messages with just LF
1596terminators, despite the warnings in the RFCs, and other MTAs handle this. So
1597we make the CRs optional in all cases.
1598
1599July 2003: Bare CRs in messages, especially in header lines, cause trouble. A
1600new regime is now in place in which bare CRs in header lines are turned into LF
1601followed by a space, so as not to terminate the header line.
1602
1603February 2004: A bare LF in a header line in a message whose first line was
1604terminated by CRLF is treated in the same way as a bare CR.
1605
1606Arguments:
1607 extract_recip TRUE if recipients are to be extracted from the message's
1608 headers
1609
1610Returns: TRUE there are more messages to be read (SMTP input)
1611 FALSE there are no more messages to be read (non-SMTP input
1612 or SMTP connection collapsed, or other failure)
1613
1614When reading a message for filter testing, the returned value indicates
1615whether the headers (which is all that is read) were terminated by '.' or
1616not. */
1617
1618BOOL
1619receive_msg(BOOL extract_recip)
1620{
7156b1ef
NM
1621int i;
1622int rc = FAIL;
059ec3d9
PH
1623int msg_size = 0;
1624int process_info_len = Ustrlen(process_info);
1625int error_rc = (error_handling == ERRORS_SENDER)?
1626 errors_sender_rc : EXIT_FAILURE;
1627int header_size = 256;
1628int start, end, domain, size, sptr;
1629int id_resolution;
1630int had_zero = 0;
d677b2f2 1631int prevlines_length = 0;
059ec3d9
PH
1632
1633register int ptr = 0;
1634
1635BOOL contains_resent_headers = FALSE;
1636BOOL extracted_ignored = FALSE;
1637BOOL first_line_ended_crlf = TRUE_UNSET;
1638BOOL smtp_yield = TRUE;
1639BOOL yield = FALSE;
1640
1641BOOL resents_exist = FALSE;
1642uschar *resent_prefix = US"";
1643uschar *blackholed_by = NULL;
04f7d5b9 1644uschar *blackhole_log_msg = US"";
c5430c20 1645enum {NOT_TRIED, TMP_REJ, PERM_REJ, ACCEPTED} cutthrough_done = NOT_TRIED;
059ec3d9
PH
1646
1647flock_t lock_data;
1648error_block *bad_addresses = NULL;
1649
1650uschar *frozen_by = NULL;
1651uschar *queued_by = NULL;
1652
1653uschar *errmsg, *s;
1654struct stat statbuf;
1655
4e88a19f 1656/* Final message to give to SMTP caller, and messages from ACLs */
059ec3d9
PH
1657
1658uschar *smtp_reply = NULL;
4e88a19f 1659uschar *user_msg, *log_msg;
059ec3d9
PH
1660
1661/* Working header pointers */
1662
1663header_line *h, *next;
1664
2cbb4081 1665/* Flags for noting the existence of certain headers (only one left) */
059ec3d9
PH
1666
1667BOOL date_header_exists = FALSE;
1668
1669/* Pointers to receive the addresses of headers whose contents we need. */
1670
1671header_line *from_header = NULL;
1672header_line *subject_header = NULL;
1673header_line *msgid_header = NULL;
1674header_line *received_header;
1675
4840604e
TL
1676#ifdef EXPERIMENTAL_DMARC
1677int dmarc_up = 0;
1678#endif /* EXPERIMENTAL_DMARC */
1679
059ec3d9
PH
1680/* Variables for use when building the Received: header. */
1681
059ec3d9
PH
1682uschar *timestamp;
1683int tslen;
1684
1685/* Release any open files that might have been cached while preparing to
1686accept the message - e.g. by verifying addresses - because reading a message
1687might take a fair bit of real time. */
1688
1689search_tidyup();
1690
e4bdf652
JH
1691/* Extracting the recipient list from an input file is incompatible with
1692cutthrough delivery with the no-spool option. It shouldn't be possible
817d9f57 1693to set up the combination, but just in case kill any ongoing connection. */
e4bdf652 1694if (extract_recip || !smtp_input)
57cc2785 1695 cancel_cutthrough_connection(TRUE, US"not smtp input");
e4bdf652 1696
059ec3d9
PH
1697/* Initialize the chain of headers by setting up a place-holder for Received:
1698header. Temporarily mark it as "old", i.e. not to be used. We keep header_last
1699pointing to the end of the chain to make adding headers simple. */
1700
1701received_header = header_list = header_last = store_get(sizeof(header_line));
1702header_list->next = NULL;
1703header_list->type = htype_old;
1704header_list->text = NULL;
1705header_list->slen = 0;
1706
1707/* Control block for the next header to be read. */
1708
1709next = store_get(sizeof(header_line));
1710next->text = store_get(header_size);
1711
1712/* Initialize message id to be null (indicating no message read), and the
1713header names list to be the normal list. Indicate there is no data file open
1714yet, initialize the size and warning count, and deal with no size limit. */
1715
1716message_id[0] = 0;
1717data_file = NULL;
1718data_fd = -1;
41313d92 1719spool_name = US"";
059ec3d9
PH
1720message_size = 0;
1721warning_count = 0;
d677b2f2 1722received_count = 1; /* For the one we will add */
059ec3d9
PH
1723
1724if (thismessage_size_limit <= 0) thismessage_size_limit = INT_MAX;
1725
2e0c1448 1726/* While reading the message, the following counts are computed. */
059ec3d9 1727
d677b2f2
PH
1728message_linecount = body_linecount = body_zerocount =
1729 max_received_linelength = 0;
059ec3d9 1730
80a47a2c 1731#ifndef DISABLE_DKIM
e983e85a
JH
1732/* Call into DKIM to set up the context. In CHUNKING mode
1733we clear the dot-stuffing flag */
1734if (smtp_input && !smtp_batched_input && !dkim_disable_verify)
1735 dkim_exim_verify_init(chunking_state <= CHUNKING_OFFERED);
fb2274d4
TK
1736#endif
1737
4840604e
TL
1738#ifdef EXPERIMENTAL_DMARC
1739/* initialize libopendmarc */
1740dmarc_up = dmarc_init();
1741#endif
1742
059ec3d9
PH
1743/* Remember the time of reception. Exim uses time+pid for uniqueness of message
1744ids, and fractions of a second are required. See the comments that precede the
1745message id creation below. */
1746
1747(void)gettimeofday(&message_id_tv, NULL);
1748
1749/* For other uses of the received time we can operate with granularity of one
1750second, and for that we use the global variable received_time. This is for
32dfdf8b 1751things like ultimate message timeouts.XXX */
059ec3d9 1752
32dfdf8b 1753received_time = message_id_tv;
059ec3d9
PH
1754
1755/* If SMTP input, set the special handler for timeouts. The alarm() calls
1756happen in the smtp_getc() function when it refills its buffer. */
1757
1758if (smtp_input) os_non_restarting_signal(SIGALRM, data_timeout_handler);
1759
1760/* If not SMTP input, timeout happens only if configured, and we just set a
1761single timeout for the whole message. */
1762
1763else if (receive_timeout > 0)
1764 {
1765 os_non_restarting_signal(SIGALRM, data_timeout_handler);
1766 alarm(receive_timeout);
1767 }
1768
1769/* SIGTERM and SIGINT are caught always. */
1770
1771signal(SIGTERM, data_sigterm_sigint_handler);
1772signal(SIGINT, data_sigterm_sigint_handler);
1773
1774/* Header lines in messages are not supposed to be very long, though when
1775unfolded, to: and cc: headers can take up a lot of store. We must also cope
1776with the possibility of junk being thrown at us. Start by getting 256 bytes for
1777storing the header, and extend this as necessary using string_cat().
1778
1779To cope with total lunacies, impose an upper limit on the length of the header
1780section of the message, as otherwise the store will fill up. We must also cope
1781with the possibility of binary zeros in the data. Hence we cannot use fgets().
1782Folded header lines are joined into one string, leaving the '\n' characters
1783inside them, so that writing them out reproduces the input.
1784
1785Loop for each character of each header; the next structure for chaining the
1786header is set up already, with ptr the offset of the next character in
1787next->text. */
1788
1789for (;;)
1790 {
bd8fbe36 1791 int ch = (receive_getc)(GETC_BUFFER_UNLIMITED);
059ec3d9
PH
1792
1793 /* If we hit EOF on a SMTP connection, it's an error, since incoming
1794 SMTP must have a correct "." terminator. */
1795
1796 if (ch == EOF && smtp_input /* && !smtp_batched_input */)
1797 {
1798 smtp_reply = handle_lost_connection(US" (header)");
1799 smtp_yield = FALSE;
1800 goto TIDYUP; /* Skip to end of function */
1801 }
1802
1803 /* See if we are at the current header's size limit - there must be at least
1804 four bytes left. This allows for the new character plus a zero, plus two for
1805 extra insertions when we are playing games with dots and carriage returns. If
1806 we are at the limit, extend the text buffer. This could have been done
1807 automatically using string_cat() but because this is a tightish loop storing
1808 only one character at a time, we choose to do it inline. Normally
1809 store_extend() will be able to extend the block; only at the end of a big
1810 store block will a copy be needed. To handle the case of very long headers
1811 (and sometimes lunatic messages can have ones that are 100s of K long) we
1812 call store_release() for strings that have been copied - if the string is at
1813 the start of a block (and therefore the only thing in it, because we aren't
1814 doing any other gets), the block gets freed. We can only do this because we
1815 know there are no other calls to store_get() going on. */
1816
1817 if (ptr >= header_size - 4)
1818 {
1819 int oldsize = header_size;
1820 /* header_size += 256; */
1821 header_size *= 2;
1822 if (!store_extend(next->text, oldsize, header_size))
1823 {
1824 uschar *newtext = store_get(header_size);
1825 memcpy(newtext, next->text, ptr);
1826 store_release(next->text);
1827 next->text = newtext;
1828 }
1829 }
1830
1831 /* Cope with receiving a binary zero. There is dispute about whether
1832 these should be allowed in RFC 822 messages. The middle view is that they
1833 should not be allowed in headers, at least. Exim takes this attitude at
1834 the moment. We can't just stomp on them here, because we don't know that
1835 this line is a header yet. Set a flag to cause scanning later. */
1836
1837 if (ch == 0) had_zero++;
1838
1839 /* Test for termination. Lines in remote SMTP are terminated by CRLF, while
1840 those from data files use just LF. Treat LF in local SMTP input as a
1841 terminator too. Treat EOF as a line terminator always. */
1842
1843 if (ch == EOF) goto EOL;
1844
1845 /* FUDGE: There are sites out there that don't send CRs before their LFs, and
1846 other MTAs accept this. We are therefore forced into this "liberalisation"
1847 too, so we accept LF as a line terminator whatever the source of the message.
1848 However, if the first line of the message ended with a CRLF, we treat a bare
1849 LF specially by inserting a white space after it to ensure that the header
1850 line is not terminated. */
1851
1852 if (ch == '\n')
1853 {
1854 if (first_line_ended_crlf == TRUE_UNSET) first_line_ended_crlf = FALSE;
80a47a2c 1855 else if (first_line_ended_crlf) receive_ungetc(' ');
059ec3d9
PH
1856 goto EOL;
1857 }
1858
1859 /* This is not the end of the line. If this is SMTP input and this is
1860 the first character in the line and it is a "." character, ignore it.
1861 This implements the dot-doubling rule, though header lines starting with
1862 dots aren't exactly common. They are legal in RFC 822, though. If the
1863 following is CRLF or LF, this is the line that that terminates the
1864 entire message. We set message_ended to indicate this has happened (to
1865 prevent further reading), and break out of the loop, having freed the
1866 empty header, and set next = NULL to indicate no data line. */
1867
1868 if (ptr == 0 && ch == '.' && (smtp_input || dot_ends))
1869 {
bd8fbe36 1870 ch = (receive_getc)(GETC_BUFFER_UNLIMITED);
059ec3d9
PH
1871 if (ch == '\r')
1872 {
bd8fbe36 1873 ch = (receive_getc)(GETC_BUFFER_UNLIMITED);
059ec3d9
PH
1874 if (ch != '\n')
1875 {
80a47a2c 1876 receive_ungetc(ch);
059ec3d9
PH
1877 ch = '\r'; /* Revert to CR */
1878 }
1879 }
1880 if (ch == '\n')
1881 {
1882 message_ended = END_DOT;
1883 store_reset(next);
1884 next = NULL;
1885 break; /* End character-reading loop */
1886 }
1887
1888 /* For non-SMTP input, the dot at the start of the line was really a data
1889 character. What is now in ch is the following character. We guaranteed
1890 enough space for this above. */
1891
1892 if (!smtp_input)
1893 {
1894 next->text[ptr++] = '.';
1895 message_size++;
1896 }
1897 }
1898
1899 /* If CR is immediately followed by LF, end the line, ignoring the CR, and
1900 remember this case if this is the first line ending. */
1901
1902 if (ch == '\r')
1903 {
bd8fbe36 1904 ch = (receive_getc)(GETC_BUFFER_UNLIMITED);
059ec3d9
PH
1905 if (ch == '\n')
1906 {
1907 if (first_line_ended_crlf == TRUE_UNSET) first_line_ended_crlf = TRUE;
1908 goto EOL;
1909 }
1910
1911 /* Otherwise, put back the character after CR, and turn the bare CR
1912 into LF SP. */
1913
80a47a2c 1914 ch = (receive_ungetc)(ch);
059ec3d9
PH
1915 next->text[ptr++] = '\n';
1916 message_size++;
1917 ch = ' ';
1918 }
1919
1920 /* We have a data character for the header line. */
1921
1922 next->text[ptr++] = ch; /* Add to buffer */
1923 message_size++; /* Total message size so far */
1924
1925 /* Handle failure due to a humungously long header section. The >= allows
1926 for the terminating \n. Add what we have so far onto the headers list so
1927 that it gets reflected in any error message, and back up the just-read
1928 character. */
1929
1930 if (message_size >= header_maxsize)
1931 {
1932 next->text[ptr] = 0;
1933 next->slen = ptr;
1934 next->type = htype_other;
1935 next->next = NULL;
1936 header_last->next = next;
1937 header_last = next;
1938
1939 log_write(0, LOG_MAIN, "ridiculously long message header received from "
1940 "%s (more than %d characters): message abandoned",
1941 sender_host_unknown? sender_ident : sender_fullhost, header_maxsize);
1942
1943 if (smtp_input)
1944 {
1945 smtp_reply = US"552 Message header is ridiculously long";
1946 receive_swallow_smtp();
1947 goto TIDYUP; /* Skip to end of function */
1948 }
1949
1950 else
1951 {
1952 give_local_error(ERRMESS_VLONGHEADER,
1953 string_sprintf("message header longer than %d characters received: "
1954 "message not accepted", header_maxsize), US"", error_rc, stdin,
1955 header_list->next);
1956 /* Does not return */
1957 }
1958 }
1959
1960 continue; /* With next input character */
1961
1962 /* End of header line reached */
1963
1964 EOL:
2e0c1448
PH
1965
1966 /* Keep track of lines for BSMTP errors and overall message_linecount. */
1967
1968 receive_linecount++;
1969 message_linecount++;
059ec3d9 1970
d677b2f2
PH
1971 /* Keep track of maximum line length */
1972
1973 if (ptr - prevlines_length > max_received_linelength)
1974 max_received_linelength = ptr - prevlines_length;
1975 prevlines_length = ptr + 1;
1976
059ec3d9
PH
1977 /* Now put in the terminating newline. There is always space for
1978 at least two more characters. */
1979
1980 next->text[ptr++] = '\n';
1981 message_size++;
1982
1983 /* A blank line signals the end of the headers; release the unwanted
1984 space and set next to NULL to indicate this. */
1985
1986 if (ptr == 1)
1987 {
1988 store_reset(next);
1989 next = NULL;
1990 break;
1991 }
1992
1993 /* There is data in the line; see if the next input character is a
1994 whitespace character. If it is, we have a continuation of this header line.
1995 There is always space for at least one character at this point. */
1996
1997 if (ch != EOF)
1998 {
bd8fbe36 1999 int nextch = (receive_getc)(GETC_BUFFER_UNLIMITED);
059ec3d9
PH
2000 if (nextch == ' ' || nextch == '\t')
2001 {
2002 next->text[ptr++] = nextch;
2003 message_size++;
2004 continue; /* Iterate the loop */
2005 }
80a47a2c 2006 else if (nextch != EOF) (receive_ungetc)(nextch); /* For next time */
059ec3d9
PH
2007 else ch = EOF; /* Cause main loop to exit at end */
2008 }
2009
2010 /* We have got to the real line end. Terminate the string and release store
2011 beyond it. If it turns out to be a real header, internal binary zeros will
2012 be squashed later. */
2013
2014 next->text[ptr] = 0;
2015 next->slen = ptr;
2016 store_reset(next->text + ptr + 1);
2017
2018 /* Check the running total size against the overall message size limit. We
2019 don't expect to fail here, but if the overall limit is set less than MESSAGE_
2020 MAXSIZE and a big header is sent, we want to catch it. Just stop reading
2021 headers - the code to read the body will then also hit the buffer. */
2022
2023 if (message_size > thismessage_size_limit) break;
2024
2025 /* A line that is not syntactically correct for a header also marks
2026 the end of the headers. In this case, we leave next containing the
2027 first data line. This might actually be several lines because of the
2028 continuation logic applied above, but that doesn't matter.
2029
2030 It turns out that smail, and presumably sendmail, accept leading lines
2031 of the form
2032
2033 From ph10 Fri Jan 5 12:35 GMT 1996
2034
2035 in messages. The "mail" command on Solaris 2 sends such lines. I cannot
2036 find any documentation of this, but for compatibility it had better be
2037 accepted. Exim restricts it to the case of non-smtp messages, and
2038 treats it as an alternative to the -f command line option. Thus it is
2039 ignored except for trusted users or filter testing. Otherwise it is taken
2040 as the sender address, unless -f was used (sendmail compatibility).
2041
2042 It further turns out that some UUCPs generate the From_line in a different
2043 format, e.g.
2044
2045 From ph10 Fri, 7 Jan 97 14:00:00 GMT
2046
2047 The regex for matching these things is now capable of recognizing both
2048 formats (including 2- and 4-digit years in the latter). In fact, the regex
2049 is now configurable, as is the expansion string to fish out the sender.
2050
2051 Even further on it has been discovered that some broken clients send
2052 these lines in SMTP messages. There is now an option to ignore them from
2053 specified hosts or networks. Sigh. */
2054
2055 if (header_last == header_list &&
2056 (!smtp_input
2057 ||
2058 (sender_host_address != NULL &&
2059 verify_check_host(&ignore_fromline_hosts) == OK)
2060 ||
2061 (sender_host_address == NULL && ignore_fromline_local)
2062 ) &&
2063 regex_match_and_setup(regex_From, next->text, 0, -1))
2064 {
2065 if (!sender_address_forced)
2066 {
2067 uschar *uucp_sender = expand_string(uucp_from_sender);
2068 if (uucp_sender == NULL)
2069 {
2070 log_write(0, LOG_MAIN|LOG_PANIC,
2071 "expansion of \"%s\" failed after matching "
2072 "\"From \" line: %s", uucp_from_sender, expand_string_message);
2073 }
2074 else
2075 {
2076 int start, end, domain;
2077 uschar *errmess;
2078 uschar *newsender = parse_extract_address(uucp_sender, &errmess,
2079 &start, &end, &domain, TRUE);
2080 if (newsender != NULL)
2081 {
2082 if (domain == 0 && newsender[0] != 0)
2083 newsender = rewrite_address_qualify(newsender, FALSE);
2084
f05da2e8 2085 if (filter_test != FTEST_NONE || receive_check_set_sender(newsender))
059ec3d9
PH
2086 {
2087 sender_address = newsender;
2088
f05da2e8 2089 if (trusted_caller || filter_test != FTEST_NONE)
059ec3d9
PH
2090 {
2091 authenticated_sender = NULL;
2092 originator_name = US"";
2093 sender_local = FALSE;
2094 }
2095
f05da2e8 2096 if (filter_test != FTEST_NONE)
059ec3d9
PH
2097 printf("Sender taken from \"From \" line\n");
2098 }
2099 }
2100 }
2101 }
2102 }
2103
2104 /* Not a leading "From " line. Check to see if it is a valid header line.
2105 Header names may contain any non-control characters except space and colon,
2106 amazingly. */
2107
2108 else
2109 {
2110 uschar *p = next->text;
2111
2112 /* If not a valid header line, break from the header reading loop, leaving
2113 next != NULL, indicating that it holds the first line of the body. */
2114
2115 if (isspace(*p)) break;
2116 while (mac_isgraph(*p) && *p != ':') p++;
2117 while (isspace(*p)) p++;
2118 if (*p != ':')
2119 {
2120 body_zerocount = had_zero;
2121 break;
2122 }
2123
2124 /* We have a valid header line. If there were any binary zeroes in
2125 the line, stomp on them here. */
2126
2127 if (had_zero > 0)
2128 for (p = next->text; p < next->text + ptr; p++) if (*p == 0) *p = '?';
2129
2130 /* It is perfectly legal to have an empty continuation line
2131 at the end of a header, but it is confusing to humans
2132 looking at such messages, since it looks like a blank line.
2133 Reduce confusion by removing redundant white space at the
2134 end. We know that there is at least one printing character
2135 (the ':' tested for above) so there is no danger of running
2136 off the end. */
2137
2138 p = next->text + ptr - 2;
2139 for (;;)
2140 {
2141 while (*p == ' ' || *p == '\t') p--;
2142 if (*p != '\n') break;
2143 ptr = (p--) - next->text + 1;
2144 message_size -= next->slen - ptr;
2145 next->text[ptr] = 0;
2146 next->slen = ptr;
2147 }
2148
2149 /* Add the header to the chain */
2150
2151 next->type = htype_other;
2152 next->next = NULL;
2153 header_last->next = next;
2154 header_last = next;
2155
2156 /* Check the limit for individual line lengths. This comes after adding to
2157 the chain so that the failing line is reflected if a bounce is generated
2158 (for a local message). */
2159
2160 if (header_line_maxsize > 0 && next->slen > header_line_maxsize)
2161 {
2162 log_write(0, LOG_MAIN, "overlong message header line received from "
2163 "%s (more than %d characters): message abandoned",
2164 sender_host_unknown? sender_ident : sender_fullhost,
2165 header_line_maxsize);
2166
2167 if (smtp_input)
2168 {
2169 smtp_reply = US"552 A message header line is too long";
2170 receive_swallow_smtp();
2171 goto TIDYUP; /* Skip to end of function */
2172 }
2173
2174 else
2175 {
2176 give_local_error(ERRMESS_VLONGHDRLINE,
2177 string_sprintf("message header line longer than %d characters "
2178 "received: message not accepted", header_line_maxsize), US"",
2179 error_rc, stdin, header_list->next);
2180 /* Does not return */
2181 }
2182 }
2183
2184 /* Note if any resent- fields exist. */
2185
2186 if (!resents_exist && strncmpic(next->text, US"resent-", 7) == 0)
2187 {
2188 resents_exist = TRUE;
2189 resent_prefix = US"Resent-";
2190 }
2191 }
2192
1ebe15c3
JH
2193 /* Reject CHUNKING messages that do not CRLF their first header line */
2194
2195 if (!first_line_ended_crlf && chunking_state > CHUNKING_OFFERED)
2196 {
2197 log_write(L_size_reject, LOG_MAIN|LOG_REJECT, "rejected from <%s>%s%s%s%s: "
2198 "Non-CRLF-terminated header, under CHUNKING: message abandoned",
2199 sender_address,
2200 sender_fullhost ? " H=" : "", sender_fullhost ? sender_fullhost : US"",
2201 sender_ident ? " U=" : "", sender_ident ? sender_ident : US"");
925ac8e4 2202 smtp_printf("552 Message header not CRLF terminated\r\n", FALSE);
1ebe15c3
JH
2203 bdat_flush_data();
2204 smtp_reply = US"";
2205 goto TIDYUP; /* Skip to end of function */
2206 }
2207
059ec3d9
PH
2208 /* The line has been handled. If we have hit EOF, break out of the loop,
2209 indicating no pending data line. */
2210
2211 if (ch == EOF) { next = NULL; break; }
2212
2213 /* Set up for the next header */
2214
2215 header_size = 256;
2216 next = store_get(sizeof(header_line));
2217 next->text = store_get(header_size);
2218 ptr = 0;
2219 had_zero = 0;
d677b2f2 2220 prevlines_length = 0;
059ec3d9
PH
2221 } /* Continue, starting to read the next header */
2222
2223/* At this point, we have read all the headers into a data structure in main
2224store. The first header is still the dummy placeholder for the Received: header
2225we are going to generate a bit later on. If next != NULL, it contains the first
2226data line - which terminated the headers before reaching a blank line (not the
2227normal case). */
2228
2229DEBUG(D_receive)
2230 {
2231 debug_printf(">>Headers received:\n");
1ebe15c3 2232 for (h = header_list->next; h; h = h->next)
059ec3d9
PH
2233 debug_printf("%s", h->text);
2234 debug_printf("\n");
2235 }
2236
2237/* End of file on any SMTP connection is an error. If an incoming SMTP call
2238is dropped immediately after valid headers, the next thing we will see is EOF.
2239We must test for this specially, as further down the reading of the data is
2240skipped if already at EOF. */
2241
2242if (smtp_input && (receive_feof)())
2243 {
2244 smtp_reply = handle_lost_connection(US" (after header)");
2245 smtp_yield = FALSE;
2246 goto TIDYUP; /* Skip to end of function */
2247 }
2248
2249/* If this is a filter test run and no headers were read, output a warning
2250in case there is a mistake in the test message. */
2251
f05da2e8 2252if (filter_test != FTEST_NONE && header_list->next == NULL)
059ec3d9
PH
2253 printf("Warning: no message headers read\n");
2254
2255
2256/* Scan the headers to identify them. Some are merely marked for later
2257processing; some are dealt with here. */
2258
1ebe15c3 2259for (h = header_list->next; h; h = h->next)
059ec3d9
PH
2260 {
2261 BOOL is_resent = strncmpic(h->text, US"resent-", 7) == 0;
2262 if (is_resent) contains_resent_headers = TRUE;
2263
2264 switch (header_checkname(h, is_resent))
2265 {
059ec3d9 2266 case htype_bcc:
2cbb4081 2267 h->type = htype_bcc; /* Both Bcc: and Resent-Bcc: */
059ec3d9
PH
2268 break;
2269
059ec3d9 2270 case htype_cc:
2cbb4081 2271 h->type = htype_cc; /* Both Cc: and Resent-Cc: */
059ec3d9
PH
2272 break;
2273
2274 /* Record whether a Date: or Resent-Date: header exists, as appropriate. */
2275
2276 case htype_date:
4c69d561 2277 if (!resents_exist || is_resent) date_header_exists = TRUE;
059ec3d9
PH
2278 break;
2279
2280 /* Same comments as about Return-Path: below. */
2281
2282 case htype_delivery_date:
2283 if (delivery_date_remove) h->type = htype_old;
2284 break;
2285
2286 /* Same comments as about Return-Path: below. */
2287
2288 case htype_envelope_to:
2289 if (envelope_to_remove) h->type = htype_old;
2290 break;
2291
2292 /* Mark all "From:" headers so they get rewritten. Save the one that is to
2293 be used for Sender: checking. For Sendmail compatibility, if the "From:"
2294 header consists of just the login id of the user who called Exim, rewrite
2295 it with the gecos field first. Apply this rule to Resent-From: if there
2296 are resent- fields. */
2297
2298 case htype_from:
2299 h->type = htype_from;
2300 if (!resents_exist || is_resent)
2301 {
2302 from_header = h;
2303 if (!smtp_input)
2304 {
5de8faa3 2305 int len;
059ec3d9
PH
2306 uschar *s = Ustrchr(h->text, ':') + 1;
2307 while (isspace(*s)) s++;
5de8faa3 2308 len = h->slen - (s - h->text) - 1;
e0fccd1d
TF
2309 if (Ustrlen(originator_login) == len &&
2310 strncmpic(s, originator_login, len) == 0)
059ec3d9
PH
2311 {
2312 uschar *name = is_resent? US"Resent-From" : US"From";
2313 header_add(htype_from, "%s: %s <%s@%s>\n", name, originator_name,
2314 originator_login, qualify_domain_sender);
2315 from_header = header_last;
2316 h->type = htype_old;
2317 DEBUG(D_receive|D_rewrite)
2318 debug_printf("rewrote \"%s:\" header using gecos\n", name);
2319 }
2320 }
2321 }
2322 break;
2323
2324 /* Identify the Message-id: header for generating "in-reply-to" in the
2325 autoreply transport. For incoming logging, save any resent- value. In both
2326 cases, take just the first of any multiples. */
2327
2328 case htype_id:
2329 if (msgid_header == NULL && (!resents_exist || is_resent))
2330 {
2331 msgid_header = h;
2332 h->type = htype_id;
2333 }
2334 break;
2335
2336 /* Flag all Received: headers */
2337
2338 case htype_received:
2339 h->type = htype_received;
2340 received_count++;
2341 break;
2342
2343 /* "Reply-to:" is just noted (there is no resent-reply-to field) */
2344
2345 case htype_reply_to:
2346 h->type = htype_reply_to;
2347 break;
2348
2349 /* The Return-path: header is supposed to be added to messages when
2350 they leave the SMTP system. We shouldn't receive messages that already
2351 contain Return-path. However, since Exim generates Return-path: on
2352 local delivery, resent messages may well contain it. We therefore
2353 provide an option (which defaults on) to remove any Return-path: headers
2354 on input. Removal actually means flagging as "old", which prevents the
2355 header being transmitted with the message. */
2356
2357 case htype_return_path:
2358 if (return_path_remove) h->type = htype_old;
2359
2360 /* If we are testing a mail filter file, use the value of the
2361 Return-Path: header to set up the return_path variable, which is not
2362 otherwise set. However, remove any <> that surround the address
2363 because the variable doesn't have these. */
2364
f05da2e8 2365 if (filter_test != FTEST_NONE)
059ec3d9
PH
2366 {
2367 uschar *start = h->text + 12;
2368 uschar *end = start + Ustrlen(start);
2369 while (isspace(*start)) start++;
2370 while (end > start && isspace(end[-1])) end--;
2371 if (*start == '<' && end[-1] == '>')
2372 {
2373 start++;
2374 end--;
2375 }
2376 return_path = string_copyn(start, end - start);
2377 printf("Return-path taken from \"Return-path:\" header line\n");
2378 }
2379 break;
2380
2381 /* If there is a "Sender:" header and the message is locally originated,
8800895a
PH
2382 and from an untrusted caller and suppress_local_fixups is not set, or if we
2383 are in submission mode for a remote message, mark it "old" so that it will
2384 not be transmitted with the message, unless active_local_sender_retain is
2385 set. (This can only be true if active_local_from_check is false.) If there
2386 are any resent- headers in the message, apply this rule to Resent-Sender:
2387 instead of Sender:. Messages with multiple resent- header sets cannot be
2388 tidily handled. (For this reason, at least one MUA - Pine - turns old
2389 resent- headers into X-resent- headers when resending, leaving just one
2390 set.) */
059ec3d9
PH
2391
2392 case htype_sender:
69358f02 2393 h->type = ((!active_local_sender_retain &&
8800895a
PH
2394 (
2395 (sender_local && !trusted_caller && !suppress_local_fixups)
2396 || submission_mode
2397 )
059ec3d9
PH
2398 ) &&
2399 (!resents_exist||is_resent))?
2400 htype_old : htype_sender;
2401 break;
2402
2403 /* Remember the Subject: header for logging. There is no Resent-Subject */
2404
2405 case htype_subject:
2406 subject_header = h;
2407 break;
2408
2409 /* "To:" gets flagged, and the existence of a recipient header is noted,
2410 whether it's resent- or not. */
2411
2412 case htype_to:
2413 h->type = htype_to;
2414 /****
2415 to_or_cc_header_exists = TRUE;
2416 ****/
2417 break;
2418 }
2419 }
2420
2421/* Extract recipients from the headers if that is required (the -t option).
2422Note that this is documented as being done *before* any address rewriting takes
2423place. There are two possibilities:
2424
2425(1) According to sendmail documentation for Solaris, IRIX, and HP-UX, any
2426recipients already listed are to be REMOVED from the message. Smail 3 works
2427like this. We need to build a non-recipients tree for that list, because in
2428subsequent processing this data is held in a tree and that's what the
2429spool_write_header() function expects. Make sure that non-recipient addresses
2430are fully qualified and rewritten if necessary.
2431
2432(2) According to other sendmail documentation, -t ADDS extracted recipients to
2433those in the command line arguments (and it is rumoured some other MTAs do
2434this). Therefore, there is an option to make Exim behave this way.
2435
2436*** Notes on "Resent-" header lines ***
2437
2438The presence of resent-headers in the message makes -t horribly ambiguous.
2439Experiments with sendmail showed that it uses recipients for all resent-
2440headers, totally ignoring the concept of "sets of resent- headers" as described
2441in RFC 2822 section 3.6.6. Sendmail also amalgamates them into a single set
2442with all the addresses in one instance of each header.
2443
2444This seems to me not to be at all sensible. Before release 4.20, Exim 4 gave an
2445error for -t if there were resent- headers in the message. However, after a
2446discussion on the mailing list, I've learned that there are MUAs that use
2447resent- headers with -t, and also that the stuff about sets of resent- headers
2448and their ordering in RFC 2822 is generally ignored. An MUA that submits a
2449message with -t and resent- header lines makes sure that only *its* resent-
2450headers are present; previous ones are often renamed as X-resent- for example.
2451
2452Consequently, Exim has been changed so that, if any resent- header lines are
2453present, the recipients are taken from all of the appropriate resent- lines,
2454and not from the ordinary To:, Cc:, etc. */
2455
2456if (extract_recip)
2457 {
2458 int rcount = 0;
2459 error_block **bnext = &bad_addresses;
2460
2461 if (extract_addresses_remove_arguments)
2462 {
2463 while (recipients_count-- > 0)
2464 {
2465 uschar *s = rewrite_address(recipients_list[recipients_count].address,
2466 TRUE, TRUE, global_rewrite_rules, rewrite_existflags);
2467 tree_add_nonrecipient(s);
2468 }
2469 recipients_list = NULL;
2470 recipients_count = recipients_list_max = 0;
2471 }
2472
059ec3d9
PH
2473 /* Now scan the headers */
2474
1ebe15c3 2475 for (h = header_list->next; h; h = h->next)
059ec3d9
PH
2476 {
2477 if ((h->type == htype_to || h->type == htype_cc || h->type == htype_bcc) &&
2478 (!contains_resent_headers || strncmpic(h->text, US"resent-", 7) == 0))
2479 {
2480 uschar *s = Ustrchr(h->text, ':') + 1;
2481 while (isspace(*s)) s++;
2482
1eccaa59
PH
2483 parse_allow_group = TRUE; /* Allow address group syntax */
2484
059ec3d9
PH
2485 while (*s != 0)
2486 {
2487 uschar *ss = parse_find_address_end(s, FALSE);
2488 uschar *recipient, *errmess, *p, *pp;
2489 int start, end, domain;
2490
2491 /* Check on maximum */
2492
2493 if (recipients_max > 0 && ++rcount > recipients_max)
2494 {
2495 give_local_error(ERRMESS_TOOMANYRECIP, US"too many recipients",
2496 US"message rejected: ", error_rc, stdin, NULL);
2497 /* Does not return */
2498 }
2499
2500 /* Make a copy of the address, and remove any internal newlines. These
2501 may be present as a result of continuations of the header line. The
2502 white space that follows the newline must not be removed - it is part
2503 of the header. */
2504
2505 pp = recipient = store_get(ss - s + 1);
2506 for (p = s; p < ss; p++) if (*p != '\n') *pp++ = *p;
2507 *pp = 0;
250b6871 2508
8c5d388a 2509#ifdef SUPPORT_I18N
250b6871
JH
2510 {
2511 BOOL b = allow_utf8_domains;
2512 allow_utf8_domains = TRUE;
2513#endif
059ec3d9
PH
2514 recipient = parse_extract_address(recipient, &errmess, &start, &end,
2515 &domain, FALSE);
2516
8c5d388a 2517#ifdef SUPPORT_I18N
250b6871
JH
2518 if (string_is_utf8(recipient))
2519 message_smtputf8 = TRUE;
2520 else
2521 allow_utf8_domains = b;
2522 }
2523#endif
2524
059ec3d9
PH
2525 /* Keep a list of all the bad addresses so we can send a single
2526 error message at the end. However, an empty address is not an error;
2527 just ignore it. This can come from an empty group list like
2528
2529 To: Recipients of list:;
2530
2531 If there are no recipients at all, an error will occur later. */
2532
2533 if (recipient == NULL && Ustrcmp(errmess, "empty address") != 0)
2534 {
2535 int len = Ustrlen(s);
2536 error_block *b = store_get(sizeof(error_block));
2537 while (len > 0 && isspace(s[len-1])) len--;
2538 b->next = NULL;
2539 b->text1 = string_printing(string_copyn(s, len));
2540 b->text2 = errmess;
2541 *bnext = b;
2542 bnext = &(b->next);
2543 }
2544
2545 /* If the recipient is already in the nonrecipients tree, it must
2546 have appeared on the command line with the option extract_addresses_
2547 remove_arguments set. Do not add it to the recipients, and keep a note
2548 that this has happened, in order to give a better error if there are
2549 no recipients left. */
2550
2551 else if (recipient != NULL)
2552 {
2553 if (tree_search(tree_nonrecipients, recipient) == NULL)
2554 receive_add_recipient(recipient, -1);
2555 else
2556 extracted_ignored = TRUE;
2557 }
2558
2559 /* Move on past this address */
2560
2561 s = ss + (*ss? 1:0);
2562 while (isspace(*s)) s++;
1eccaa59
PH
2563 } /* Next address */
2564
2565 parse_allow_group = FALSE; /* Reset group syntax flags */
2566 parse_found_group = FALSE;
059ec3d9
PH
2567
2568 /* If this was the bcc: header, mark it "old", which means it
2569 will be kept on the spool, but not transmitted as part of the
2570 message. */
2571
2cbb4081 2572 if (h->type == htype_bcc) h->type = htype_old;
059ec3d9
PH
2573 } /* For appropriate header line */
2574 } /* For each header line */
2575
059ec3d9
PH
2576 }
2577
2578/* Now build the unique message id. This has changed several times over the
2579lifetime of Exim. This description was rewritten for Exim 4.14 (February 2003).
2580Retaining all the history in the comment has become too unwieldy - read
2581previous release sources if you want it.
2582
2583The message ID has 3 parts: tttttt-pppppp-ss. Each part is a number in base 62.
2584The first part is the current time, in seconds. The second part is the current
2585pid. Both are large enough to hold 32-bit numbers in base 62. The third part
2586can hold a number in the range 0-3843. It used to be a computed sequence
2587number, but is now the fractional component of the current time in units of
25881/2000 of a second (i.e. a value in the range 0-1999). After a message has been
2589received, Exim ensures that the timer has ticked at the appropriate level
2590before proceeding, to avoid duplication if the pid happened to be re-used
2591within the same time period. It seems likely that most messages will take at
2592least half a millisecond to be received, so no delay will normally be
2593necessary. At least for some time...
2594
2595There is a modification when localhost_number is set. Formerly this was allowed
2596to be as large as 255. Now it is restricted to the range 0-16, and the final
2597component of the message id becomes (localhost_number * 200) + fractional time
2598in units of 1/200 of a second (i.e. a value in the range 0-3399).
2599
2600Some not-really-Unix operating systems use case-insensitive file names (Darwin,
2601Cygwin). For these, we have to use base 36 instead of base 62. Luckily, this
2602still allows the tttttt field to hold a large enough number to last for some
2603more decades, and the final two-digit field can hold numbers up to 1295, which
2604is enough for milliseconds (instead of 1/2000 of a second).
2605
2606However, the pppppp field cannot hold a 32-bit pid, but it can hold a 31-bit
2607pid, so it is probably safe because pids have to be positive. The
2608localhost_number is restricted to 0-10 for these hosts, and when it is set, the
2609final field becomes (localhost_number * 100) + fractional time in centiseconds.
2610
2611Note that string_base62() returns its data in a static storage block, so it
2612must be copied before calling string_base62() again. It always returns exactly
26136 characters.
2614
2615There doesn't seem to be anything in the RFC which requires a message id to
2616start with a letter, but Smail was changed to ensure this. The external form of
2617the message id (as supplied by string expansion) therefore starts with an
2618additional leading 'E'. The spool file names do not include this leading
2619letter and it is not used internally.
2620
2621NOTE: If ever the format of message ids is changed, the regular expression for
2622checking that a string is in this format must be updated in a corresponding
2623way. It appears in the initializing code in exim.c. The macro MESSAGE_ID_LENGTH
2540f2f8
JH
2624must also be changed to reflect the correct string length. The queue-sort code
2625needs to know the layout. Then, of course, other programs that rely on the
2626message id format will need updating too. */
059ec3d9
PH
2627
2628Ustrncpy(message_id, string_base62((long int)(message_id_tv.tv_sec)), 6);
2629message_id[6] = '-';
2630Ustrncpy(message_id + 7, string_base62((long int)getpid()), 6);
2631
2632/* Deal with the case where the host number is set. The value of the number was
2633checked when it was read, to ensure it isn't too big. The timing granularity is
2634left in id_resolution so that an appropriate wait can be done after receiving
2635the message, if necessary (we hope it won't be). */
2636
2637if (host_number_string != NULL)
2638 {
2639 id_resolution = (BASE_62 == 62)? 5000 : 10000;
2640 sprintf(CS(message_id + MESSAGE_ID_LENGTH - 3), "-%2s",
2641 string_base62((long int)(
2642 host_number * (1000000/id_resolution) +
2643 message_id_tv.tv_usec/id_resolution)) + 4);
2644 }
2645
2646/* Host number not set: final field is just the fractional time at an
2647appropriate resolution. */
2648
2649else
2650 {
2651 id_resolution = (BASE_62 == 62)? 500 : 1000;
2652 sprintf(CS(message_id + MESSAGE_ID_LENGTH - 3), "-%2s",
2653 string_base62((long int)(message_id_tv.tv_usec/id_resolution)) + 4);
2654 }
2655
2656/* Add the current message id onto the current process info string if
2657it will fit. */
2658
2659(void)string_format(process_info + process_info_len,
2660 PROCESS_INFO_SIZE - process_info_len, " id=%s", message_id);
2661
2662/* If we are using multiple input directories, set up the one for this message
2663to be the least significant base-62 digit of the time of arrival. Otherwise
2664ensure that it is an empty string. */
2665
a2da3176 2666message_subdir[0] = split_spool_directory ? message_id[5] : 0;
059ec3d9
PH
2667
2668/* Now that we have the message-id, if there is no message-id: header, generate
8800895a
PH
2669one, but only for local (without suppress_local_fixups) or submission mode
2670messages. This can be user-configured if required, but we had better flatten
2671any illegal characters therein. */
059ec3d9 2672
8800895a
PH
2673if (msgid_header == NULL &&
2674 ((sender_host_address == NULL && !suppress_local_fixups)
2675 || submission_mode))
059ec3d9
PH
2676 {
2677 uschar *p;
2678 uschar *id_text = US"";
2679 uschar *id_domain = primary_hostname;
2680
2681 /* Permit only letters, digits, dots, and hyphens in the domain */
2682
2683 if (message_id_domain != NULL)
2684 {
2685 uschar *new_id_domain = expand_string(message_id_domain);
2686 if (new_id_domain == NULL)
2687 {
2688 if (!expand_string_forcedfail)
2689 log_write(0, LOG_MAIN|LOG_PANIC,
2690 "expansion of \"%s\" (message_id_header_domain) "
2691 "failed: %s", message_id_domain, expand_string_message);
2692 }
2693 else if (*new_id_domain != 0)
2694 {
2695 id_domain = new_id_domain;
2696 for (p = id_domain; *p != 0; p++)
2697 if (!isalnum(*p) && *p != '.') *p = '-'; /* No need to test '-' ! */
2698 }
2699 }
2700
2701 /* Permit all characters except controls and RFC 2822 specials in the
2702 additional text part. */
2703
2704 if (message_id_text != NULL)
2705 {
2706 uschar *new_id_text = expand_string(message_id_text);
2707 if (new_id_text == NULL)
2708 {
2709 if (!expand_string_forcedfail)
2710 log_write(0, LOG_MAIN|LOG_PANIC,
2711 "expansion of \"%s\" (message_id_header_text) "
2712 "failed: %s", message_id_text, expand_string_message);
2713 }
2714 else if (*new_id_text != 0)
2715 {
2716 id_text = new_id_text;
2717 for (p = id_text; *p != 0; p++)
2718 if (mac_iscntrl_or_special(*p)) *p = '-';
2719 }
2720 }
2721
e7e680d6
PP
2722 /* Add the header line
2723 * Resent-* headers are prepended, per RFC 5322 3.6.6. Non-Resent-* are
2724 * appended, to preserve classical expectations of header ordering. */
059ec3d9 2725
e7e680d6 2726 header_add_at_position(!resents_exist, NULL, FALSE, htype_id,
5eb690a1
NM
2727 "%sMessage-Id: <%s%s%s@%s>\n", resent_prefix, message_id_external,
2728 (*id_text == 0)? "" : ".", id_text, id_domain);
059ec3d9
PH
2729 }
2730
2731/* If we are to log recipients, keep a copy of the raw ones before any possible
2732rewriting. Must copy the count, because later ACLs and the local_scan()
2733function may mess with the real recipients. */
2734
6c6d6e48 2735if (LOGGING(received_recipients))
059ec3d9
PH
2736 {
2737 raw_recipients = store_get(recipients_count * sizeof(uschar *));
2738 for (i = 0; i < recipients_count; i++)
2739 raw_recipients[i] = string_copy(recipients_list[i].address);
2740 raw_recipients_count = recipients_count;
2741 }
2742
2743/* Ensure the recipients list is fully qualified and rewritten. Unqualified
2744recipients will get here only if the conditions were right (allow_unqualified_
2745recipient is TRUE). */
2746
2747for (i = 0; i < recipients_count; i++)
2748 recipients_list[i].address =
2749 rewrite_address(recipients_list[i].address, TRUE, TRUE,
2750 global_rewrite_rules, rewrite_existflags);
2751
8800895a
PH
2752/* If there is no From: header, generate one for local (without
2753suppress_local_fixups) or submission_mode messages. If there is no sender
2754address, but the sender is local or this is a local delivery error, use the
2755originator login. This shouldn't happen for genuine bounces, but might happen
2756for autoreplies. The addition of From: must be done *before* checking for the
2757possible addition of a Sender: header, because untrusted_set_sender allows an
2758untrusted user to set anything in the envelope (which might then get info
2759From:) but we still want to ensure a valid Sender: if it is required. */
2760
2761if (from_header == NULL &&
2762 ((sender_host_address == NULL && !suppress_local_fixups)
2763 || submission_mode))
059ec3d9 2764 {
2fe1a124
PH
2765 uschar *oname = US"";
2766
2767 /* Use the originator_name if this is a locally submitted message and the
2768 caller is not trusted. For trusted callers, use it only if -F was used to
2769 force its value or if we have a non-SMTP message for which -f was not used
2770 to set the sender. */
2771
2772 if (sender_host_address == NULL)
2773 {
2774 if (!trusted_caller || sender_name_forced ||
2775 (!smtp_input && !sender_address_forced))
2776 oname = originator_name;
2777 }
2778
2779 /* For non-locally submitted messages, the only time we use the originator
2780 name is when it was forced by the /name= option on control=submission. */
2781
2782 else
2783 {
2784 if (submission_name != NULL) oname = submission_name;
2785 }
2786
059ec3d9
PH
2787 /* Envelope sender is empty */
2788
2789 if (sender_address[0] == 0)
2790 {
87ba3f5f
PH
2791 uschar *fromstart, *fromend;
2792
2793 fromstart = string_sprintf("%sFrom: %s%s", resent_prefix,
2fe1a124
PH
2794 oname, (oname[0] == 0)? "" : " <");
2795 fromend = (oname[0] == 0)? US"" : US">";
87ba3f5f 2796
059ec3d9
PH
2797 if (sender_local || local_error_message)
2798 {
87ba3f5f
PH
2799 header_add(htype_from, "%s%s@%s%s\n", fromstart,
2800 local_part_quote(originator_login), qualify_domain_sender,
2801 fromend);
059ec3d9
PH
2802 }
2803 else if (submission_mode && authenticated_id != NULL)
2804 {
2805 if (submission_domain == NULL)
2806 {
87ba3f5f
PH
2807 header_add(htype_from, "%s%s@%s%s\n", fromstart,
2808 local_part_quote(authenticated_id), qualify_domain_sender,
2809 fromend);
059ec3d9
PH
2810 }
2811 else if (submission_domain[0] == 0) /* empty => whole address set */
2812 {
87ba3f5f
PH
2813 header_add(htype_from, "%s%s%s\n", fromstart, authenticated_id,
2814 fromend);
059ec3d9
PH
2815 }
2816 else
2817 {
87ba3f5f
PH
2818 header_add(htype_from, "%s%s@%s%s\n", fromstart,
2819 local_part_quote(authenticated_id), submission_domain,
2820 fromend);
059ec3d9
PH
2821 }
2822 from_header = header_last; /* To get it checked for Sender: */
2823 }
2824 }
2825
2826 /* There is a non-null envelope sender. Build the header using the original
2827 sender address, before any rewriting that might have been done while
2828 verifying it. */
2829
2830 else
2831 {
87ba3f5f 2832 header_add(htype_from, "%sFrom: %s%s%s%s\n", resent_prefix,
2fe1a124
PH
2833 oname,
2834 (oname[0] == 0)? "" : " <",
87ba3f5f
PH
2835 (sender_address_unrewritten == NULL)?
2836 sender_address : sender_address_unrewritten,
2fe1a124 2837 (oname[0] == 0)? "" : ">");
059ec3d9
PH
2838
2839 from_header = header_last; /* To get it checked for Sender: */
2840 }
2841 }
2842
2843
8800895a
PH
2844/* If the sender is local (without suppress_local_fixups), or if we are in
2845submission mode and there is an authenticated_id, check that an existing From:
2846is correct, and if not, generate a Sender: header, unless disabled. Any
2847previously-existing Sender: header was removed above. Note that sender_local,
2848as well as being TRUE if the caller of exim is not trusted, is also true if a
2849trusted caller did not supply a -f argument for non-smtp input. To allow
2850trusted callers to forge From: without supplying -f, we have to test explicitly
2851here. If the From: header contains more than one address, then the call to
2852parse_extract_address fails, and a Sender: header is inserted, as required. */
059ec3d9
PH
2853
2854if (from_header != NULL &&
69358f02 2855 (active_local_from_check &&
8800895a 2856 ((sender_local && !trusted_caller && !suppress_local_fixups) ||
69358f02 2857 (submission_mode && authenticated_id != NULL))
059ec3d9
PH
2858 ))
2859 {
2860 BOOL make_sender = TRUE;
2861 int start, end, domain;
2862 uschar *errmess;
2863 uschar *from_address =
2864 parse_extract_address(Ustrchr(from_header->text, ':') + 1, &errmess,
2865 &start, &end, &domain, FALSE);
2866 uschar *generated_sender_address;
2867
2868 if (submission_mode)
2869 {
2870 if (submission_domain == NULL)
2871 {
2872 generated_sender_address = string_sprintf("%s@%s",
2873 local_part_quote(authenticated_id), qualify_domain_sender);
2874 }
2875 else if (submission_domain[0] == 0) /* empty => full address */
2876 {
2877 generated_sender_address = string_sprintf("%s",
2878 authenticated_id);
2879 }
2880 else
2881 {
2882 generated_sender_address = string_sprintf("%s@%s",
2883 local_part_quote(authenticated_id), submission_domain);
2884 }
2885 }
2886 else
2887 generated_sender_address = string_sprintf("%s@%s",
2888 local_part_quote(originator_login), qualify_domain_sender);
2889
2890 /* Remove permitted prefixes and suffixes from the local part of the From:
2891 address before doing the comparison with the generated sender. */
2892
2893 if (from_address != NULL)
2894 {
2895 int slen;
2896 uschar *at = (domain == 0)? NULL : from_address + domain - 1;
2897
2898 if (at != NULL) *at = 0;
2899 from_address += route_check_prefix(from_address, local_from_prefix);
2900 slen = route_check_suffix(from_address, local_from_suffix);
2901 if (slen > 0)
2902 {
2903 memmove(from_address+slen, from_address, Ustrlen(from_address)-slen);
2904 from_address += slen;
2905 }
2906 if (at != NULL) *at = '@';
2907
2908 if (strcmpic(generated_sender_address, from_address) == 0 ||
2909 (domain == 0 && strcmpic(from_address, originator_login) == 0))
2910 make_sender = FALSE;
2911 }
2912
2913 /* We have to cause the Sender header to be rewritten if there are
2914 appropriate rewriting rules. */
2915
2916 if (make_sender)
2917 {
2fe1a124 2918 if (submission_mode && submission_name == NULL)
059ec3d9
PH
2919 header_add(htype_sender, "%sSender: %s\n", resent_prefix,
2920 generated_sender_address);
2921 else
2922 header_add(htype_sender, "%sSender: %s <%s>\n",
2fe1a124
PH
2923 resent_prefix,
2924 submission_mode? submission_name : originator_name,
2925 generated_sender_address);
059ec3d9 2926 }
87ba3f5f
PH
2927
2928 /* Ensure that a non-null envelope sender address corresponds to the
2929 submission mode sender address. */
2930
2931 if (submission_mode && sender_address[0] != 0)
2932 {
2933 if (sender_address_unrewritten == NULL)
2934 sender_address_unrewritten = sender_address;
2935 sender_address = generated_sender_address;
089793a4
TF
2936 if (Ustrcmp(sender_address_unrewritten, generated_sender_address) != 0)
2937 log_write(L_address_rewrite, LOG_MAIN,
2938 "\"%s\" from env-from rewritten as \"%s\" by submission mode",
2939 sender_address_unrewritten, generated_sender_address);
87ba3f5f 2940 }
059ec3d9
PH
2941 }
2942
059ec3d9
PH
2943/* If there are any rewriting rules, apply them to the sender address, unless
2944it has already been rewritten as part of verification for SMTP input. */
2945
2946if (global_rewrite_rules != NULL && sender_address_unrewritten == NULL &&
2947 sender_address[0] != 0)
2948 {
2949 sender_address = rewrite_address(sender_address, FALSE, TRUE,
2950 global_rewrite_rules, rewrite_existflags);
2951 DEBUG(D_receive|D_rewrite)
2952 debug_printf("rewritten sender = %s\n", sender_address);
2953 }
2954
2955
2956/* The headers must be run through rewrite_header(), because it ensures that
2957addresses are fully qualified, as well as applying any rewriting rules that may
2958exist.
2959
2960Qualification of header addresses in a message from a remote host happens only
2961if the host is in sender_unqualified_hosts or recipient_unqualified hosts, as
2962appropriate. For local messages, qualification always happens, unless -bnq is
2963used to explicitly suppress it. No rewriting is done for an unqualified address
2964that is left untouched.
2965
2966We start at the second header, skipping our own Received:. This rewriting is
2967documented as happening *after* recipient addresses are taken from the headers
2968by the -t command line option. An added Sender: gets rewritten here. */
2969
1ebe15c3 2970for (h = header_list->next; h; h = h->next)
059ec3d9
PH
2971 {
2972 header_line *newh = rewrite_header(h, NULL, NULL, global_rewrite_rules,
2973 rewrite_existflags, TRUE);
1ebe15c3 2974 if (newh) h = newh;
059ec3d9
PH
2975 }
2976
2977
2978/* An RFC 822 (sic) message is not legal unless it has at least one of "to",
2cbb4081 2979"cc", or "bcc". Note that although the minimal examples in RFC 822 show just
059ec3d9
PH
2980"to" or "bcc", the full syntax spec allows "cc" as well. If any resent- header
2981exists, this applies to the set of resent- headers rather than the normal set.
2982
2cbb4081
PH
2983The requirement for a recipient header has been removed in RFC 2822. At this
2984point in the code, earlier versions of Exim added a To: header for locally
2985submitted messages, and an empty Bcc: header for others. In the light of the
2986changes in RFC 2822, this was dropped in November 2003. */
059ec3d9 2987
059ec3d9
PH
2988
2989/* If there is no date header, generate one if the message originates locally
8800895a
PH
2990(i.e. not over TCP/IP) and suppress_local_fixups is not set, or if the
2991submission mode flag is set. Messages without Date: are not valid, but it seems
e7e680d6
PP
2992to be more confusing if Exim adds one to all remotely-originated messages.
2993As per Message-Id, we prepend if resending, else append.
2994*/
059ec3d9 2995
8800895a
PH
2996if (!date_header_exists &&
2997 ((sender_host_address == NULL && !suppress_local_fixups)
2998 || submission_mode))
e7e680d6
PP
2999 header_add_at_position(!resents_exist, NULL, FALSE, htype_other,
3000 "%sDate: %s\n", resent_prefix, tod_stamp(tod_full));
059ec3d9
PH
3001
3002search_tidyup(); /* Free any cached resources */
3003
3004/* Show the complete set of headers if debugging. Note that the first one (the
3005new Received:) has not yet been set. */
3006
3007DEBUG(D_receive)
3008 {
3009 debug_printf(">>Headers after rewriting and local additions:\n");
3010 for (h = header_list->next; h != NULL; h = h->next)
3011 debug_printf("%c %s", h->type, h->text);
3012 debug_printf("\n");
3013 }
3014
3015/* The headers are now complete in store. If we are running in filter
3016testing mode, that is all this function does. Return TRUE if the message
3017ended with a dot. */
3018
f05da2e8 3019if (filter_test != FTEST_NONE)
059ec3d9
PH
3020 {
3021 process_info[process_info_len] = 0;
3022 return message_ended == END_DOT;
3023 }
3024
7e3ce68e
JH
3025/*XXX CHUNKING: need to cancel cutthrough under BDAT, for now. In future,
3026think more if it could be handled. Cannot do onward CHUNKING unless
3027inbound is, but inbound chunking ought to be ok with outbound plain.
3028Could we do onward CHUNKING given inbound CHUNKING?
3029*/
3030if (chunking_state > CHUNKING_OFFERED)
57cc2785 3031 cancel_cutthrough_connection(FALSE, US"chunking active");
7e3ce68e 3032
817d9f57 3033/* Cutthrough delivery:
5032d1cf
JH
3034We have to create the Received header now rather than at the end of reception,
3035so the timestamp behaviour is a change to the normal case.
5032d1cf 3036Having created it, send the headers to the destination. */
57cc2785
JH
3037
3038if (cutthrough.fd >= 0 && cutthrough.delivery)
e4bdf652 3039 {
817d9f57
JH
3040 if (received_count > received_headers_max)
3041 {
57cc2785 3042 cancel_cutthrough_connection(TRUE, US"too many headers");
817d9f57
JH
3043 if (smtp_input) receive_swallow_smtp(); /* Swallow incoming SMTP */
3044 log_write(0, LOG_MAIN|LOG_REJECT, "rejected from <%s>%s%s%s%s: "
3045 "Too many \"Received\" headers",
3046 sender_address,
57cc2785
JH
3047 sender_fullhost ? "H=" : "", sender_fullhost ? sender_fullhost : US"",
3048 sender_ident ? "U=" : "", sender_ident ? sender_ident : US"");
817d9f57
JH
3049 message_id[0] = 0; /* Indicate no message accepted */
3050 smtp_reply = US"550 Too many \"Received\" headers - suspected mail loop";
3051 goto TIDYUP; /* Skip to end of function */
3052 }
e4bdf652 3053 received_header_gen();
578d43dc 3054 add_acl_headers(ACL_WHERE_RCPT, US"MAIL or RCPT");
e4bdf652
JH
3055 (void) cutthrough_headers_send();
3056 }
61147df4 3057
e4bdf652 3058
059ec3d9
PH
3059/* Open a new spool file for the data portion of the message. We need
3060to access it both via a file descriptor and a stream. Try to make the
41313d92 3061directory if it isn't there. */
059ec3d9 3062
41313d92 3063spool_name = spool_fname(US"input", message_subdir, message_id, US"-D");
a2da3176
JH
3064DEBUG(D_receive) debug_printf("Data file name: %s\n", spool_name);
3065
3066if ((data_fd = Uopen(spool_name, O_RDWR|O_CREAT|O_EXCL, SPOOL_MODE)) < 0)
059ec3d9
PH
3067 {
3068 if (errno == ENOENT)
3069 {
0971ec06 3070 (void) directory_make(spool_directory,
41313d92
JH
3071 spool_sname(US"input", message_subdir),
3072 INPUT_DIRECTORY_MODE, TRUE);
059ec3d9
PH
3073 data_fd = Uopen(spool_name, O_RDWR|O_CREAT|O_EXCL, SPOOL_MODE);
3074 }
3075 if (data_fd < 0)
3076 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "Failed to create spool file %s: %s",
3077 spool_name, strerror(errno));
3078 }
3079
3080/* Make sure the file's group is the Exim gid, and double-check the mode
3081because the group setting doesn't always get set automatically. */
3082
1ac6b2e7
JH
3083if (fchown(data_fd, exim_uid, exim_gid))
3084 log_write(0, LOG_MAIN|LOG_PANIC_DIE,
3085 "Failed setting ownership on spool file %s: %s",
3086 spool_name, strerror(errno));
ff790e47 3087(void)fchmod(data_fd, SPOOL_MODE);
059ec3d9
PH
3088
3089/* We now have data file open. Build a stream for it and lock it. We lock only
3090the first line of the file (containing the message ID) because otherwise there
3091are problems when Exim is run under Cygwin (I'm told). See comments in
3092spool_in.c, where the same locking is done. */
3093
3094data_file = fdopen(data_fd, "w+");
3095lock_data.l_type = F_WRLCK;
3096lock_data.l_whence = SEEK_SET;
3097lock_data.l_start = 0;
3098lock_data.l_len = SPOOL_DATA_START_OFFSET;
3099
3100if (fcntl(data_fd, F_SETLK, &lock_data) < 0)
3101 log_write(0, LOG_MAIN|LOG_PANIC_DIE, "Cannot lock %s (%d): %s", spool_name,
3102 errno, strerror(errno));
3103
3104/* We have an open, locked data file. Write the message id to it to make it
3105self-identifying. Then read the remainder of the input of this message and
3106write it to the data file. If the variable next != NULL, it contains the first
3107data line (which was read as a header but then turned out not to have the right
3108format); write it (remembering that it might contain binary zeros). The result
3109of fwrite() isn't inspected; instead we call ferror() below. */
3110
3111fprintf(data_file, "%s-D\n", message_id);
3112if (next != NULL)
3113 {
3114 uschar *s = next->text;
3115 int len = next->slen;
1ac6b2e7 3116 len = fwrite(s, 1, len, data_file); len = len; /* compiler quietening */
059ec3d9
PH
3117 body_linecount++; /* Assumes only 1 line */
3118 }
3119
3120/* Note that we might already be at end of file, or the logical end of file
3121(indicated by '.'), or might have encountered an error while writing the
3122message id or "next" line. */
3123
3124if (!ferror(data_file) && !(receive_feof)() && message_ended != END_DOT)
3125 {
3126 if (smtp_input)
3127 {
328c5688
JH
3128 message_ended = chunking_state <= CHUNKING_OFFERED
3129 ? read_message_data_smtp(data_file)
3130 : spool_wireformat
3131 ? read_message_bdat_smtp_wire(data_file)
3132 : read_message_bdat_smtp(data_file);
059ec3d9
PH
3133 receive_linecount++; /* The terminating "." line */
3134 }
3135 else message_ended = read_message_data(data_file);
3136
3137 receive_linecount += body_linecount; /* For BSMTP errors mainly */
2e0c1448 3138 message_linecount += body_linecount;
059ec3d9 3139
7e3ce68e 3140 switch (message_ended)
059ec3d9 3141 {
7e3ce68e 3142 /* Handle premature termination of SMTP */
059ec3d9 3143
7e3ce68e
JH
3144 case END_EOF:
3145 if (smtp_input)
3146 {
3147 Uunlink(spool_name); /* Lose data file when closed */
57cc2785 3148 cancel_cutthrough_connection(TRUE, US"sender closed connection");
7e3ce68e
JH
3149 message_id[0] = 0; /* Indicate no message accepted */
3150 smtp_reply = handle_lost_connection(US"");
3151 smtp_yield = FALSE;
3152 goto TIDYUP; /* Skip to end of function */
3153 }
3154 break;
059ec3d9 3155
7e3ce68e
JH
3156 /* Handle message that is too big. Don't use host_or_ident() in the log
3157 message; we want to see the ident value even for non-remote messages. */
059ec3d9 3158
7e3ce68e
JH
3159 case END_SIZE:
3160 Uunlink(spool_name); /* Lose the data file when closed */
57cc2785 3161 cancel_cutthrough_connection(TRUE, US"mail too big");
7e3ce68e 3162 if (smtp_input) receive_swallow_smtp(); /* Swallow incoming SMTP */
059ec3d9 3163
7e3ce68e
JH
3164 log_write(L_size_reject, LOG_MAIN|LOG_REJECT, "rejected from <%s>%s%s%s%s: "
3165 "message too big: read=%d max=%d",
3166 sender_address,
3167 (sender_fullhost == NULL)? "" : " H=",
3168 (sender_fullhost == NULL)? US"" : sender_fullhost,
3169 (sender_ident == NULL)? "" : " U=",
3170 (sender_ident == NULL)? US"" : sender_ident,
3171 message_size,
3172 thismessage_size_limit);
3173
3174 if (smtp_input)
3175 {
3176 smtp_reply = US"552 Message size exceeds maximum permitted";
3177 message_id[0] = 0; /* Indicate no message accepted */
3178 goto TIDYUP; /* Skip to end of function */
3179 }
3180 else
3181 {
3182 fseek(data_file, (long int)SPOOL_DATA_START_OFFSET, SEEK_SET);
3183 give_local_error(ERRMESS_TOOBIG,
3184 string_sprintf("message too big (max=%d)", thismessage_size_limit),
3185 US"message rejected: ", error_rc, data_file, header_list);
3186 /* Does not return */
3187 }
3188 break;
3189
3190 /* Handle bad BDAT protocol sequence */
3191
3192 case END_PROTOCOL:
3193 Uunlink(spool_name); /* Lose the data file when closed */
57cc2785 3194 cancel_cutthrough_connection(TRUE, US"sender protocol error");
7e3ce68e
JH
3195 smtp_reply = US""; /* Response already sent */
3196 message_id[0] = 0; /* Indicate no message accepted */
3197 goto TIDYUP; /* Skip to end of function */
059ec3d9
PH
3198 }
3199 }
3200
3201/* Restore the standard SIGALRM handler for any subsequent processing. (For
3202example, there may be some expansion in an ACL that uses a timer.) */
3203
3204os_non_restarting_signal(SIGALRM, sigalrm_handler);
3205
3206/* The message body has now been read into the data file. Call fflush() to
3207empty the buffers in C, and then call fsync() to get the data written out onto
3208the disk, as fflush() doesn't do this (or at least, it isn't documented as
3209having to do this). If there was an I/O error on either input or output,
3210attempt to send an error message, and unlink the spool file. For non-SMTP input
3211we can then give up. Note that for SMTP input we must swallow the remainder of
3212the input in cases of output errors, since the far end doesn't expect to see
3213anything until the terminating dot line is sent. */
3214
3215if (fflush(data_file) == EOF || ferror(data_file) ||
54fc8428 3216 EXIMfsync(fileno(data_file)) < 0 || (receive_ferror)())
059ec3d9
PH
3217 {
3218 uschar *msg_errno = US strerror(errno);
3219 BOOL input_error = (receive_ferror)() != 0;
3220 uschar *msg = string_sprintf("%s error (%s) while receiving message from %s",
3221 input_error? "Input read" : "Spool write",
3222 msg_errno,
3223 (sender_fullhost != NULL)? sender_fullhost : sender_ident);
3224
3225 log_write(0, LOG_MAIN, "Message abandoned: %s", msg);
3226 Uunlink(spool_name); /* Lose the data file */
57cc2785 3227 cancel_cutthrough_connection(TRUE, US"error writing spoolfile");
059ec3d9
PH
3228
3229 if (smtp_input)
3230 {
3231 if (input_error)
3232 smtp_reply = US"451 Error while reading input data";
3233 else
3234 {
3235 smtp_reply = US"451 Error while writing spool file";
3236 receive_swallow_smtp();
3237 }
3238 message_id[0] = 0; /* Indicate no message accepted */
3239 goto TIDYUP; /* Skip to end of function */
3240 }
3241
3242 else
3243 {
3244 fseek(data_file, (long int)SPOOL_DATA_START_OFFSET, SEEK_SET);
3245 give_local_error(ERRMESS_IOERR, msg, US"", error_rc, data_file,
3246 header_list);
3247 /* Does not return */
3248 }
3249 }
3250
3251
3252/* No I/O errors were encountered while writing the data file. */
3253
3254DEBUG(D_receive) debug_printf("Data file written for message %s\n", message_id);
3255
3256
3257/* If there were any bad addresses extracted by -t, or there were no recipients
3258left after -t, send a message to the sender of this message, or write it to
3259stderr if the error handling option is set that way. Note that there may
3260legitimately be no recipients for an SMTP message if they have all been removed
3261by "discard".
3262
3263We need to rewind the data file in order to read it. In the case of no
3264recipients or stderr error writing, throw the data file away afterwards, and
3265exit. (This can't be SMTP, which always ensures there's at least one
3266syntactically good recipient address.) */
3267
3268if (extract_recip && (bad_addresses != NULL || recipients_count == 0))
3269 {
3270 DEBUG(D_receive)
3271 {
3272 if (recipients_count == 0) debug_printf("*** No recipients\n");
3273 if (bad_addresses != NULL)
3274 {
3275 error_block *eblock = bad_addresses;
3276 debug_printf("*** Bad address(es)\n");
3277 while (eblock != NULL)
3278 {
3279 debug_printf(" %s: %s\n", eblock->text1, eblock->text2);
3280 eblock = eblock->next;
3281 }
3282 }
3283 }
3284
3285 fseek(data_file, (long int)SPOOL_DATA_START_OFFSET, SEEK_SET);
3286
3287 /* If configured to send errors to the sender, but this fails, force
3288 a failure error code. We use a special one for no recipients so that it
3289 can be detected by the autoreply transport. Otherwise error_rc is set to
3290 errors_sender_rc, which is EXIT_FAILURE unless -oee was given, in which case
3291 it is EXIT_SUCCESS. */
3292
3293 if (error_handling == ERRORS_SENDER)
3294 {
3295 if (!moan_to_sender(
3296 (bad_addresses == NULL)?
3297 (extracted_ignored? ERRMESS_IGADDRESS : ERRMESS_NOADDRESS) :
3298 (recipients_list == NULL)? ERRMESS_BADNOADDRESS : ERRMESS_BADADDRESS,
3299 bad_addresses, header_list, data_file, FALSE))
3300 error_rc = (bad_addresses == NULL)? EXIT_NORECIPIENTS : EXIT_FAILURE;
3301 }
3302 else
3303 {
3304 if (bad_addresses == NULL)
3305 {
3306 if (extracted_ignored)
3307 fprintf(stderr, "exim: all -t recipients overridden by command line\n");
3308 else
3309 fprintf(stderr, "exim: no recipients in message\n");
3310 }
3311 else
3312 {
3313 fprintf(stderr, "exim: invalid address%s",
3314 (bad_addresses->next == NULL)? ":" : "es:\n");
3315 while (bad_addresses != NULL)
3316 {
3317 fprintf(stderr, " %s: %s\n", bad_addresses->text1,
3318 bad_addresses->text2);
3319 bad_addresses = bad_addresses->next;
3320 }
3321 }
3322 }
3323
3324 if (recipients_count == 0 || error_handling == ERRORS_STDERR)
3325 {
3326 Uunlink(spool_name);
f1e894f3 3327 (void)fclose(data_file);
059ec3d9
PH
3328 exim_exit(error_rc);
3329 }
3330 }
3331
3332/* Data file successfully written. Generate text for the Received: header by
3333expanding the configured string, and adding a timestamp. By leaving this
3334operation till now, we ensure that the timestamp is the time that message
3335reception was completed. However, this is deliberately done before calling the
3336data ACL and local_scan().
3337
3338This Received: header may therefore be inspected by the data ACL and by code in
3339the local_scan() function. When they have run, we update the timestamp to be
3340the final time of reception.
3341
3342If there is just one recipient, set up its value in the $received_for variable
3343for use when we generate the Received: header.
3344
3345Note: the checking for too many Received: headers is handled by the delivery
3346code. */
e4bdf652 3347/*XXX eventually add excess Received: check for cutthrough case back when classifying them */
059ec3d9 3348
e4bdf652 3349if (received_header->text == NULL) /* Non-cutthrough case */
059ec3d9 3350 {
e4bdf652 3351 received_header_gen();
059ec3d9 3352
e4bdf652 3353 /* Set the value of message_body_size for the DATA ACL and for local_scan() */
059ec3d9 3354
e4bdf652
JH
3355 message_body_size = (fstat(data_fd, &statbuf) == 0)?
3356 statbuf.st_size - SPOOL_DATA_START_OFFSET : -1;
059ec3d9 3357
e4bdf652
JH
3358 /* If an ACL from any RCPT commands set up any warning headers to add, do so
3359 now, before running the DATA ACL. */
059ec3d9 3360
578d43dc 3361 add_acl_headers(ACL_WHERE_RCPT, US"MAIL or RCPT");
e4bdf652 3362 }
817d9f57 3363else
e4bdf652
JH
3364 message_body_size = (fstat(data_fd, &statbuf) == 0)?
3365 statbuf.st_size - SPOOL_DATA_START_OFFSET : -1;
059ec3d9
PH
3366
3367/* If an ACL is specified for checking things at this stage of reception of a
3368message, run it, unless all the recipients were removed by "discard" in earlier
3369ACLs. That is the only case in which recipients_count can be zero at this
3370stage. Set deliver_datafile to point to the data file so that $message_body and
3371$message_body_end can be extracted if needed. Allow $recipients in expansions.
3372*/
3373
3374deliver_datafile = data_fd;
4e88a19f 3375user_msg = NULL;
059ec3d9 3376
0e20aff9
MH
3377enable_dollar_recipients = TRUE;
3378
059ec3d9 3379if (recipients_count == 0)
7e3ce68e
JH
3380 blackholed_by = recipients_discarded ? US"MAIL ACL" : US"RCPT ACL";
3381
059ec3d9
PH
3382else
3383 {
059ec3d9
PH
3384 /* Handle interactive SMTP messages */
3385
3386 if (smtp_input && !smtp_batched_input)
3387 {
8523533c 3388
80a47a2c
TK
3389#ifndef DISABLE_DKIM
3390 if (!dkim_disable_verify)
3391 {
3392 /* Finish verification, this will log individual signature results to
3393 the mainlog */
3394 dkim_exim_verify_finish();
3395
3396 /* Check if we must run the DKIM ACL */
7e3ce68e 3397 if (acl_smtp_dkim && dkim_verify_signers && *dkim_verify_signers)
80a47a2c
TK
3398 {
3399 uschar *dkim_verify_signers_expanded =
3400 expand_string(dkim_verify_signers);
7e3ce68e 3401 if (!dkim_verify_signers_expanded)
80a47a2c
TK
3402 log_write(0, LOG_MAIN|LOG_PANIC,
3403 "expansion of dkim_verify_signers option failed: %s",
3404 expand_string_message);
7e3ce68e 3405
80a47a2c
TK
3406 else
3407 {
3408 int sep = 0;
55414b25 3409 const uschar *ptr = dkim_verify_signers_expanded;
80a47a2c 3410 uschar *item = NULL;
9e5d6b55
TK
3411 uschar *seen_items = NULL;
3412 int seen_items_size = 0;
3413 int seen_items_offset = 0;
9122af94
TK
3414 /* Default to OK when no items are present */
3415 rc = OK;
7e3ce68e 3416 while ((item = string_nextinlist(&ptr, &sep, NULL, 0)))
80a47a2c 3417 {
6119d1ea 3418 /* Prevent running ACL for an empty item */
7e3ce68e 3419 if (!item || !*item) continue;
5032d1cf
JH
3420
3421 /* Only run ACL once for each domain or identity,
3422 no matter how often it appears in the expanded list. */
3423 if (seen_items)
6119d1ea 3424 {
ae9094bf 3425 uschar *seen_item = NULL;
55414b25 3426 const uschar *seen_items_list = seen_items;
5032d1cf 3427 BOOL seen_this_item = FALSE;
61147df4 3428
ae9094bf 3429 while ((seen_item = string_nextinlist(&seen_items_list, &sep,
7e3ce68e 3430 NULL, 0)))
5032d1cf
JH
3431 if (Ustrcmp(seen_item,item) == 0)
3432 {
3433 seen_this_item = TRUE;
3434 break;
3435 }
3436
3437 if (seen_this_item)
6119d1ea
TK
3438 {
3439 DEBUG(D_receive)
5032d1cf
JH
3440 debug_printf("acl_smtp_dkim: skipping signer %s, "
3441 "already seen\n", item);
6119d1ea
TK
3442 continue;
3443 }
61147df4 3444
5032d1cf
JH
3445 seen_items = string_append(seen_items, &seen_items_size,
3446 &seen_items_offset, 1, ":");
6119d1ea
TK
3447 }
3448
5032d1cf
JH
3449 seen_items = string_append(seen_items, &seen_items_size,
3450 &seen_items_offset, 1, item);
4a73449b 3451 seen_items[seen_items_offset] = '\0';
6119d1ea
TK
3452
3453 DEBUG(D_receive)
5032d1cf
JH
3454 debug_printf("calling acl_smtp_dkim for dkim_cur_signer=%s\n",
3455 item);
6119d1ea 3456
80a47a2c 3457 dkim_exim_acl_setup(item);
5032d1cf
JH
3458 rc = acl_check(ACL_WHERE_DKIM, NULL, acl_smtp_dkim,
3459 &user_msg, &log_msg);
6119d1ea
TK
3460
3461 if (rc != OK)
5032d1cf
JH
3462 {
3463 DEBUG(D_receive)
3464 debug_printf("acl_smtp_dkim: acl_check returned %d on %s, "
3465 "skipping remaining items\n", rc, item);
57cc2785 3466 cancel_cutthrough_connection(TRUE, US"dkim acl not ok");
5032d1cf
JH
3467 break;
3468 }
80a47a2c 3469 }
578d43dc 3470 add_acl_headers(ACL_WHERE_DKIM, US"DKIM");
80a47a2c
TK
3471 if (rc == DISCARD)
3472 {
3473 recipients_count = 0;
3474 blackholed_by = US"DKIM ACL";
3475 if (log_msg != NULL)
3476 blackhole_log_msg = string_sprintf(": %s", log_msg);
3477 }
3478 else if (rc != OK)
3479 {
3480 Uunlink(spool_name);
3481 if (smtp_handle_acl_fail(ACL_WHERE_DKIM, rc, user_msg, log_msg) != 0)
85ffcba6 3482 smtp_yield = FALSE; /* No more messages after dropped connection */
80a47a2c
TK
3483 smtp_reply = US""; /* Indicate reply already sent */
3484 message_id[0] = 0; /* Indicate no message accepted */
3485 goto TIDYUP; /* Skip to end of function */
3486 }
3487 }
3488 }
3489 }
4a8ce2d8 3490#endif /* DISABLE_DKIM */
fb2274d4 3491
8523533c 3492#ifdef WITH_CONTENT_SCAN
80a47a2c
TK
3493 if (recipients_count > 0 &&
3494 acl_smtp_mime != NULL &&
54cdb463
PH
3495 !run_mime_acl(acl_smtp_mime, &smtp_yield, &smtp_reply, &blackholed_by))
3496 goto TIDYUP;
8523533c
TK
3497#endif /* WITH_CONTENT_SCAN */
3498
4840604e
TL
3499#ifdef EXPERIMENTAL_DMARC
3500 dmarc_up = dmarc_store_data(from_header);
3501#endif /* EXPERIMENTAL_DMARC */
3502
8ccd00b1
JH
3503#ifndef DISABLE_PRDR
3504 if (prdr_requested && recipients_count > 1 && acl_smtp_data_prdr)
fd98a5c6
JH
3505 {
3506 unsigned int c;
3507 int all_pass = OK;
3508 int all_fail = FAIL;
3509
925ac8e4 3510 smtp_printf("353 PRDR content analysis beginning\r\n", TRUE);
fd98a5c6
JH
3511 /* Loop through recipients, responses must be in same order received */
3512 for (c = 0; recipients_count > c; c++)
3513 {
3514 uschar * addr= recipients_list[c].address;
3515 uschar * msg= US"PRDR R=<%s> %s";
3516 uschar * code;
3517 DEBUG(D_receive)
3518 debug_printf("PRDR processing recipient %s (%d of %d)\n",
3519 addr, c+1, recipients_count);
3520 rc = acl_check(ACL_WHERE_PRDR, addr,
3521 acl_smtp_data_prdr, &user_msg, &log_msg);
3522
3523 /* If any recipient rejected content, indicate it in final message */
3524 all_pass |= rc;
3525 /* If all recipients rejected, indicate in final message */
3526 all_fail &= rc;
3527
3528 switch (rc)
3529 {
3530 case OK: case DISCARD: code = US"250"; break;
3531 case DEFER: code = US"450"; break;
3532 default: code = US"550"; break;
3533 }
3534 if (user_msg != NULL)
3535 smtp_user_msg(code, user_msg);
3536 else
3537 {
3538 switch (rc)
3539 {
3540 case OK: case DISCARD:
3541 msg = string_sprintf(CS msg, addr, "acceptance"); break;
3542 case DEFER:
3543 msg = string_sprintf(CS msg, addr, "temporary refusal"); break;
3544 default:
3545 msg = string_sprintf(CS msg, addr, "refusal"); break;
3546 }
3547 smtp_user_msg(code, msg);
3548 }
3549 if (log_msg) log_write(0, LOG_MAIN, "PRDR %s %s", addr, log_msg);
3550 else if (user_msg) log_write(0, LOG_MAIN, "PRDR %s %s", addr, user_msg);
112b6a93 3551 else log_write(0, LOG_MAIN, "%s", CS msg);
fd98a5c6
JH
3552
3553 if (rc != OK) { receive_remove_recipient(addr); c--; }
3554 }
3555 /* Set up final message, used if data acl gives OK */
3556 smtp_reply = string_sprintf("%s id=%s message %s",
3557 all_fail == FAIL ? US"550" : US"250",
3558 message_id,
3559 all_fail == FAIL
3560 ? US"rejected for all recipients"
3561 : all_pass == OK
3562 ? US"accepted"
3563 : US"accepted for some recipients");
3564 if (recipients_count == 0)
3565 {
3566 message_id[0] = 0; /* Indicate no message accepted */
3567 goto TIDYUP;
3568 }
3569 }
3570 else
3571 prdr_requested = FALSE;
8ccd00b1 3572#endif /* !DISABLE_PRDR */
fd98a5c6 3573
54cdb463
PH
3574 /* Check the recipients count again, as the MIME ACL might have changed
3575 them. */
8523533c 3576
059ec3d9
PH
3577 if (acl_smtp_data != NULL && recipients_count > 0)
3578 {
059ec3d9 3579 rc = acl_check(ACL_WHERE_DATA, NULL, acl_smtp_data, &user_msg, &log_msg);
578d43dc 3580 add_acl_headers(ACL_WHERE_DATA, US"DATA");
059ec3d9
PH
3581 if (rc == DISCARD)
3582 {
3583 recipients_count = 0;
3584 blackholed_by = US"DATA ACL";
57cc2785 3585 if (log_msg)
8e669ac1 3586 blackhole_log_msg = string_sprintf(": %s", log_msg);
57cc2785 3587 cancel_cutthrough_connection(TRUE, US"data acl discard");
059ec3d9
PH
3588 }
3589 else if (rc != OK)
3590 {
3591 Uunlink(spool_name);
57cc2785 3592 cancel_cutthrough_connection(TRUE, US"data acl not ok");
8523533c
TK
3593#ifdef WITH_CONTENT_SCAN
3594 unspool_mbox();
6f0c431a
PP
3595#endif
3596#ifdef EXPERIMENTAL_DCC
3597 dcc_ok = 0;
8523533c 3598#endif
059ec3d9 3599 if (smtp_handle_acl_fail(ACL_WHERE_DATA, rc, user_msg, log_msg) != 0)
85ffcba6 3600 smtp_yield = FALSE; /* No more messages after dropped connection */
059ec3d9
PH
3601 smtp_reply = US""; /* Indicate reply already sent */
3602 message_id[0] = 0; /* Indicate no message accepted */
3603 goto TIDYUP; /* Skip to end of function */
3604 }
3605 }
3606 }
3607
3608 /* Handle non-SMTP and batch SMTP (i.e. non-interactive) messages. Note that
3609 we cannot take different actions for permanent and temporary rejections. */
3610
54cdb463 3611 else
059ec3d9 3612 {
54cdb463
PH
3613
3614#ifdef WITH_CONTENT_SCAN
3615 if (acl_not_smtp_mime != NULL &&
3616 !run_mime_acl(acl_not_smtp_mime, &smtp_yield, &smtp_reply,
3617 &blackholed_by))
3618 goto TIDYUP;
3619#endif /* WITH_CONTENT_SCAN */
3620
3621 if (acl_not_smtp != NULL)
059ec3d9 3622 {
54cdb463
PH
3623 uschar *user_msg, *log_msg;
3624 rc = acl_check(ACL_WHERE_NOTSMTP, NULL, acl_not_smtp, &user_msg, &log_msg);
3625 if (rc == DISCARD)
059ec3d9 3626 {
54cdb463
PH
3627 recipients_count = 0;
3628 blackholed_by = US"non-SMTP ACL";
3629 if (log_msg != NULL)
3630 blackhole_log_msg = string_sprintf(": %s", log_msg);
059ec3d9 3631 }
54cdb463 3632 else if (rc != OK)
059ec3d9 3633 {
54cdb463
PH
3634 Uunlink(spool_name);
3635#ifdef WITH_CONTENT_SCAN
3636 unspool_mbox();
6f0c431a
PP
3637#endif
3638#ifdef EXPERIMENTAL_DCC
3639 dcc_ok = 0;
54cdb463 3640#endif
6ea85e9a
PH
3641 /* The ACL can specify where rejections are to be logged, possibly
3642 nowhere. The default is main and reject logs. */
3643
3644 if (log_reject_target != 0)
3645 log_write(0, log_reject_target, "F=<%s> rejected by non-SMTP ACL: %s",
3646 sender_address, log_msg);
3647
54cdb463
PH
3648 if (user_msg == NULL) user_msg = US"local configuration problem";
3649 if (smtp_batched_input)
3650 {
3651 moan_smtp_batch(NULL, "%d %s", 550, user_msg);
3652 /* Does not return */
3653 }
3654 else
3655 {
3656 fseek(data_file, (long int)SPOOL_DATA_START_OFFSET, SEEK_SET);
3657 give_local_error(ERRMESS_LOCAL_ACL, user_msg,
3658 US"message rejected by non-SMTP ACL: ", error_rc, data_file,
3659 header_list);
3660 /* Does not return */
3661 }
059ec3d9 3662 }
578d43dc 3663 add_acl_headers(ACL_WHERE_NOTSMTP, US"non-SMTP");
059ec3d9 3664 }
059ec3d9
PH
3665 }
3666
54cdb463
PH
3667 /* The applicable ACLs have been run */
3668
059ec3d9
PH
3669 if (deliver_freeze) frozen_by = US"ACL"; /* for later logging */
3670 if (queue_only_policy) queued_by = US"ACL";
059ec3d9
PH
3671 }
3672
8523533c
TK
3673#ifdef WITH_CONTENT_SCAN
3674unspool_mbox();
3675#endif
3676
6a8f9482
TK
3677#ifdef EXPERIMENTAL_DCC
3678dcc_ok = 0;
3679#endif
3680
3681
059ec3d9
PH
3682/* The final check on the message is to run the scan_local() function. The
3683version supplied with Exim always accepts, but this is a hook for sysadmins to
3684supply their own checking code. The local_scan() function is run even when all
3685the recipients have been discarded. */
d315eda1 3686/*XXS could we avoid this for the standard case, given that few people will use it? */
059ec3d9
PH
3687
3688lseek(data_fd, (long int)SPOOL_DATA_START_OFFSET, SEEK_SET);
3689
3690/* Arrange to catch crashes in local_scan(), so that the -D file gets
3691deleted, and the incident gets logged. */
3692
3693os_non_restarting_signal(SIGSEGV, local_scan_crash_handler);
3694os_non_restarting_signal(SIGFPE, local_scan_crash_handler);
3695os_non_restarting_signal(SIGILL, local_scan_crash_handler);
3696os_non_restarting_signal(SIGBUS, local_scan_crash_handler);
3697
3698DEBUG(D_receive) debug_printf("calling local_scan(); timeout=%d\n",
3699 local_scan_timeout);
3700local_scan_data = NULL;
3701
3702os_non_restarting_signal(SIGALRM, local_scan_timeout_handler);
3703if (local_scan_timeout > 0) alarm(local_scan_timeout);
3704rc = local_scan(data_fd, &local_scan_data);
3705alarm(0);
3706os_non_restarting_signal(SIGALRM, sigalrm_handler);
3707
0e20aff9
MH
3708enable_dollar_recipients = FALSE;
3709
059ec3d9
PH
3710store_pool = POOL_MAIN; /* In case changed */
3711DEBUG(D_receive) debug_printf("local_scan() returned %d %s\n", rc,
3712 local_scan_data);
3713
3714os_non_restarting_signal(SIGSEGV, SIG_DFL);
3715os_non_restarting_signal(SIGFPE, SIG_DFL);
3716os_non_restarting_signal(SIGILL, SIG_DFL);
3717os_non_restarting_signal(SIGBUS, SIG_DFL);
3718
3719/* The length check is paranoia against some runaway code, and also because
3720(for a success return) lines in the spool file are read into big_buffer. */
3721
3722if (local_scan_data != NULL)
3723 {
3724 int len = Ustrlen(local_scan_data);
3725 if (len > LOCAL_SCAN_MAX_RETURN) len = LOCAL_SCAN_MAX_RETURN;
3726 local_scan_data = string_copyn(local_scan_data, len);
3727 }
3728
3729if (rc == LOCAL_SCAN_ACCEPT_FREEZE)
3730 {
58eb016e 3731 if (!deliver_freeze) /* ACL might have already frozen */
059ec3d9
PH
3732 {
3733 deliver_freeze = TRUE;
3734 deliver_frozen_at = time(NULL);
3735 frozen_by = US"local_scan()";
3736 }
3737 rc = LOCAL_SCAN_ACCEPT;
3738 }
3739else if (rc == LOCAL_SCAN_ACCEPT_QUEUE)
3740 {
3741 if (!queue_only_policy) /* ACL might have already queued */
3742 {
3743 queue_only_policy = TRUE;
3744 queued_by = US"local_scan()";
3745 }
3746 rc = LOCAL_SCAN_ACCEPT;
3747 }
3748
3749/* Message accepted: remove newlines in local_scan_data because otherwise
3750the spool file gets corrupted. Ensure that all recipients are qualified. */
3751
3752if (rc == LOCAL_SCAN_ACCEPT)
3753 {
3754 if (local_scan_data != NULL)
3755 {
3756 uschar *s;
3757 for (s = local_scan_data; *s != 0; s++) if (*s == '\n') *s = ' ';
3758 }
3759 for (i = 0; i < recipients_count; i++)
3760 {
3761 recipient_item *r = recipients_list + i;
3762 r->address = rewrite_address_qualify(r->address, TRUE);
3763 if (r->errors_to != NULL)
3764 r->errors_to = rewrite_address_qualify(r->errors_to, TRUE);
3765 }
3766 if (recipients_count == 0 && blackholed_by == NULL)
3767 blackholed_by = US"local_scan";
3768 }
3769
3770/* Message rejected: newlines permitted in local_scan_data to generate
3771multiline SMTP responses. */
3772
3773else
3774 {
3775 uschar *istemp = US"";
3776 uschar *s = NULL;
a5bd321b 3777 uschar *smtp_code;
059ec3d9
PH
3778 int size = 0;
3779 int sptr = 0;
059ec3d9
PH
3780
3781 errmsg = local_scan_data;
3782
3783 Uunlink(spool_name); /* Cancel this message */
3784 switch(rc)
3785 {
3786 default:
3787 log_write(0, LOG_MAIN, "invalid return %d from local_scan(). Temporary "
3788 "rejection given", rc);
3789 goto TEMPREJECT;
3790
3791 case LOCAL_SCAN_REJECT_NOLOGHDR:
6c6d6e48 3792 BIT_CLEAR(log_selector, log_selector_size, Li_rejected_header);
059ec3d9
PH
3793 /* Fall through */
3794
3795 case LOCAL_SCAN_REJECT:
a5bd321b 3796 smtp_code = US"550";
059ec3d9
PH
3797 if (errmsg == NULL) errmsg = US"Administrative prohibition";
3798 break;
3799
3800 case LOCAL_SCAN_TEMPREJECT_NOLOGHDR:
6c6d6e48 3801 BIT_CLEAR(log_selector, log_selector_size, Li_rejected_header);
059ec3d9
PH
3802 /* Fall through */
3803
3804 case LOCAL_SCAN_TEMPREJECT:
3805 TEMPREJECT:
a5bd321b 3806 smtp_code = US"451";
059ec3d9
PH
3807 if (errmsg == NULL) errmsg = US"Temporary local problem";
3808 istemp = US"temporarily ";
3809 break;
3810 }
3811
3812 s = string_append(s, &size, &sptr, 2, US"F=",
3813 (sender_address[0] == 0)? US"<>" : sender_address);
3814 s = add_host_info_for_log(s, &size, &sptr);
3815 s[sptr] = 0;
3816
3817 log_write(0, LOG_MAIN|LOG_REJECT, "%s %srejected by local_scan(): %.256s",
3818 s, istemp, string_printing(errmsg));
3819
3820 if (smtp_input)
3821 {
3822 if (!smtp_batched_input)
3823 {
a5bd321b 3824 smtp_respond(smtp_code, 3, TRUE, errmsg);
059ec3d9
PH
3825 message_id[0] = 0; /* Indicate no message accepted */
3826 smtp_reply = US""; /* Indicate reply already sent */
3827 goto TIDYUP; /* Skip to end of function */
3828 }
3829 else
3830 {
a5bd321b 3831 moan_smtp_batch(NULL, "%s %s", smtp_code, errmsg);
059ec3d9
PH
3832 /* Does not return */
3833 }
3834 }
3835 else
3836 {
3837 fseek(data_file, (long int)SPOOL_DATA_START_OFFSET, SEEK_SET);
3838 give_local_error(ERRMESS_LOCAL_SCAN, errmsg,
3839 US"message rejected by local scan code: ", error_rc, data_file,
3840 header_list);
3841 /* Does not return */
3842 }
3843 }
3844
3845/* Reset signal handlers to ignore signals that previously would have caused
3846the message to be abandoned. */
3847
3848signal(SIGTERM, SIG_IGN);
3849signal(SIGINT, SIG_IGN);
3850
e4bdf652 3851
059ec3d9
PH
3852/* Ensure the first time flag is set in the newly-received message. */
3853
3854deliver_firsttime = TRUE;
3855
8523533c 3856#ifdef EXPERIMENTAL_BRIGHTMAIL
a2da3176
JH
3857if (bmi_run == 1)
3858 { /* rewind data file */
8523533c
TK
3859 lseek(data_fd, (long int)SPOOL_DATA_START_OFFSET, SEEK_SET);
3860 bmi_verdicts = bmi_process_message(header_list, data_fd);
a2da3176 3861 }
8523533c
TK
3862#endif
3863
4c04137d 3864/* Update the timestamp in our Received: header to account for any time taken by
059ec3d9
PH
3865an ACL or by local_scan(). The new time is the time that all reception
3866processing is complete. */
3867
3868timestamp = expand_string(US"${tod_full}");
3869tslen = Ustrlen(timestamp);
3870
3871memcpy(received_header->text + received_header->slen - tslen - 1,
3872 timestamp, tslen);
3873
3874/* In MUA wrapper mode, ignore queueing actions set by ACL or local_scan() */
3875
3876if (mua_wrapper)
3877 {
3878 deliver_freeze = FALSE;
3879 queue_only_policy = FALSE;
3880 }
3881
3882/* Keep the data file open until we have written the header file, in order to
3883hold onto the lock. In a -bh run, or if the message is to be blackholed, we
3884don't write the header file, and we unlink the data file. If writing the header
3885file fails, we have failed to accept this message. */
3886
3887if (host_checking || blackholed_by != NULL)
3888 {
3889 header_line *h;
3890 Uunlink(spool_name);
3891 msg_size = 0; /* Compute size for log line */
3892 for (h = header_list; h != NULL; h = h->next)
3893 if (h->type != '*') msg_size += h->slen;
3894 }
3895
3896/* Write the -H file */
3897
3898else
059ec3d9
PH
3899 if ((msg_size = spool_write_header(message_id, SW_RECEIVING, &errmsg)) < 0)
3900 {
3901 log_write(0, LOG_MAIN, "Message abandoned: %s", errmsg);
3902 Uunlink(spool_name); /* Lose the data file */
3903
3904 if (smtp_input)
3905 {
3906 smtp_reply = US"451 Error in writing spool file";
3907 message_id[0] = 0; /* Indicate no message accepted */
3908 goto TIDYUP;
3909 }
3910 else
3911 {
3912 fseek(data_file, (long int)SPOOL_DATA_START_OFFSET, SEEK_SET);
3913 give_local_error(ERRMESS_IOERR, errmsg, US"", error_rc, data_file,
3914 header_list);
3915 /* Does not return */
3916 }
3917 }
059ec3d9
PH
3918
3919
3920/* The message has now been successfully received. */
3921
3922receive_messagecount++;
3923
3924/* In SMTP sessions we may receive several in one connection. After each one,
3925we wait for the clock to tick at the level of message-id granularity. This is
3926so that the combination of time+pid is unique, even on systems where the pid
3927can be re-used within our time interval. We can't shorten the interval without
3928re-designing the message-id. See comments above where the message id is
3929created. This is Something For The Future. */
3930
3931message_id_tv.tv_usec = (message_id_tv.tv_usec/id_resolution) * id_resolution;
3932exim_wait_tick(&message_id_tv, id_resolution);
3933
3934/* Add data size to written header size. We do not count the initial file name
3935that is in the file, but we do add one extra for the notional blank line that
3936precedes the data. This total differs from message_size in that it include the
3937added Received: header and any other headers that got created locally. */
3938
3939fflush(data_file);
3940fstat(data_fd, &statbuf);
3941
3942msg_size += statbuf.st_size - SPOOL_DATA_START_OFFSET + 1;
3943
3944/* Generate a "message received" log entry. We do this by building up a dynamic
3945string as required. Since we commonly want to add two items at a time, use a
3946macro to simplify the coding. We log the arrival of a new message while the
3947file is still locked, just in case the machine is *really* fast, and delivers
3948it first! Include any message id that is in the message - since the syntax of a
4c04137d 3949message id is actually an addr-spec, we can use the parse routine to canonicalize
059ec3d9
PH
3950it. */
3951
3952size = 256;
3953sptr = 0;
3954s = store_get(size);
3955
27b9e5f4
JH
3956s = string_append(s, &size, &sptr, 2,
3957 fake_response == FAIL ? US"(= " : US"<= ",
3958 sender_address[0] == 0 ? US"<>" : sender_address);
3959if (message_reference)
059ec3d9
PH
3960 s = string_append(s, &size, &sptr, 2, US" R=", message_reference);
3961
3962s = add_host_info_for_log(s, &size, &sptr);
3963
3964#ifdef SUPPORT_TLS
6c6d6e48 3965if (LOGGING(tls_cipher) && tls_in.cipher)
817d9f57 3966 s = string_append(s, &size, &sptr, 2, US" X=", tls_in.cipher);
6c6d6e48 3967if (LOGGING(tls_certificate_verified) && tls_in.cipher)
059ec3d9 3968 s = string_append(s, &size, &sptr, 2, US" CV=",
27b9e5f4 3969 tls_in.certificate_verified ? "yes":"no");
6c6d6e48 3970if (LOGGING(tls_peerdn) && tls_in.peerdn)
48ed62d9 3971 s = string_append(s, &size, &sptr, 3, US" DN=\"",
817d9f57 3972 string_printing(tls_in.peerdn), US"\"");
6c6d6e48 3973if (LOGGING(tls_sni) && tls_in.sni)
3f0945ff 3974 s = string_append(s, &size, &sptr, 3, US" SNI=\"",
817d9f57 3975 string_printing(tls_in.sni), US"\"");
3f0945ff 3976#endif
059ec3d9 3977
8ccd00b1 3978if (sender_host_authenticated)
059ec3d9
PH
3979 {
3980 s = string_append(s, &size, &sptr, 2, US" A=", sender_host_authenticated);
27b9e5f4 3981 if (authenticated_id)
c8e2fc1e 3982 {
059ec3d9 3983 s = string_append(s, &size, &sptr, 2, US":", authenticated_id);
27b9e5f4 3984 if (LOGGING(smtp_mailauth) && authenticated_sender)
c8e2fc1e
JH
3985 s = string_append(s, &size, &sptr, 2, US":", authenticated_sender);
3986 }
059ec3d9
PH
3987 }
3988
8ccd00b1 3989#ifndef DISABLE_PRDR
fd98a5c6 3990if (prdr_requested)
7e3ce68e 3991 s = string_catn(s, &size, &sptr, US" PRDR", 5);
fd98a5c6 3992#endif
8ccd00b1 3993
cee5f132 3994#ifdef SUPPORT_PROXY
6c6d6e48 3995if (proxy_session && LOGGING(proxy))
e6d2a989 3996 s = string_append(s, &size, &sptr, 2, US" PRX=", proxy_local_address);
a3c86431 3997#endif
fd98a5c6 3998
7e3ce68e
JH
3999if (chunking_state > CHUNKING_OFFERED)
4000 s = string_catn(s, &size, &sptr, US" K", 2);
4001
059ec3d9
PH
4002sprintf(CS big_buffer, "%d", msg_size);
4003s = string_append(s, &size, &sptr, 2, US" S=", big_buffer);
4004
3c0a92dc
JH
4005/* log 8BITMIME mode announced in MAIL_FROM
4006 0 ... no BODY= used
4007 7 ... 7BIT
4008 8 ... 8BITMIME */
6c6d6e48 4009if (LOGGING(8bitmime))
c8e2fc1e 4010 {
3c0a92dc
JH
4011 sprintf(CS big_buffer, "%d", body_8bitmime);
4012 s = string_append(s, &size, &sptr, 2, US" M8S=", big_buffer);
c8e2fc1e 4013 }
3c0a92dc 4014
afa6d3ad
JH
4015if (*queue_name)
4016 s = string_append(s, &size, &sptr, 2, US" Q=", queue_name);
4017
059ec3d9
PH
4018/* If an addr-spec in a message-id contains a quoted string, it can contain
4019any characters except " \ and CR and so in particular it can contain NL!
4020Therefore, make sure we use a printing-characters only version for the log.
4021Also, allow for domain literals in the message id. */
4022
27b9e5f4 4023if (msgid_header)
059ec3d9
PH
4024 {
4025 uschar *old_id;
4026 BOOL save_allow_domain_literals = allow_domain_literals;
4027 allow_domain_literals = TRUE;
4028 old_id = parse_extract_address(Ustrchr(msgid_header->text, ':') + 1,
4029 &errmsg, &start, &end, &domain, FALSE);
4030 allow_domain_literals = save_allow_domain_literals;
4031 if (old_id != NULL)
4032 s = string_append(s, &size, &sptr, 2, US" id=", string_printing(old_id));
4033 }
4034
4035/* If subject logging is turned on, create suitable printing-character
4036text. By expanding $h_subject: we make use of the MIME decoding. */
4037
6c6d6e48 4038if (LOGGING(subject) && subject_header != NULL)
059ec3d9
PH
4039 {
4040 int i;
4041 uschar *p = big_buffer;
4042 uschar *ss = expand_string(US"$h_subject:");
4043
4044 /* Backslash-quote any double quotes or backslashes so as to make a
4045 a C-like string, and turn any non-printers into escape sequences. */
4046
4047 *p++ = '\"';
4048 if (*ss != 0) for (i = 0; i < 100 && ss[i] != 0; i++)
4049 {
4050 if (ss[i] == '\"' || ss[i] == '\\') *p++ = '\\';
4051 *p++ = ss[i];
4052 }
4053 *p++ = '\"';
4054 *p = 0;
4055 s = string_append(s, &size, &sptr, 2, US" T=", string_printing(big_buffer));
4056 }
4057
4058/* Terminate the string: string_cat() and string_append() leave room, but do
4059not put the zero in. */
4060
4061s[sptr] = 0;
4062
059ec3d9
PH
4063/* Create a message log file if message logs are being used and this message is
4064not blackholed. Write the reception stuff to it. We used to leave message log
e4bdf652 4065creation until the first delivery, but this has proved confusing for some
059ec3d9
PH
4066people. */
4067
4068if (message_logs && blackholed_by == NULL)
4069 {
4070 int fd;
4071
41313d92 4072 spool_name = spool_fname(US"msglog", message_subdir, message_id, US"");
a2da3176
JH
4073
4074 if ( (fd = Uopen(spool_name, O_WRONLY|O_APPEND|O_CREAT, SPOOL_MODE)) < 0
4075 && errno == ENOENT
4076 )
059ec3d9 4077 {
41313d92
JH
4078 (void)directory_make(spool_directory,
4079 spool_sname(US"msglog", message_subdir),
4080 MSGLOG_DIRECTORY_MODE, TRUE);
059ec3d9
PH
4081 fd = Uopen(spool_name, O_WRONLY|O_APPEND|O_CREAT, SPOOL_MODE);
4082 }
4083
4084 if (fd < 0)
4085 {
4086 log_write(0, LOG_MAIN|LOG_PANIC, "Couldn't open message log %s: %s",
4087 spool_name, strerror(errno));
4088 }
4089
4090 else
4091 {
4092 FILE *message_log = fdopen(fd, "a");
4093 if (message_log == NULL)
4094 {
4095 log_write(0, LOG_MAIN|LOG_PANIC, "Couldn't fdopen message log %s: %s",
4096 spool_name, strerror(errno));
f1e894f3 4097 (void)close(fd);
059ec3d9
PH
4098 }
4099 else
4100 {
4101 uschar *now = tod_stamp(tod_log);
4102 fprintf(message_log, "%s Received from %s\n", now, s+3);
4103 if (deliver_freeze) fprintf(message_log, "%s frozen by %s\n", now,
4104 frozen_by);
4105 if (queue_only_policy) fprintf(message_log,
e8012beb
JH
4106 "%s no immediate delivery: queued%s%s by %s\n", now,
4107 *queue_name ? " in " : "", *queue_name ? CS queue_name : "",
4108 queued_by);
f1e894f3 4109 (void)fclose(message_log);
059ec3d9
PH
4110 }
4111 }
4112 }
4113
58eb016e
PH
4114/* Everything has now been done for a successful message except logging its
4115arrival, and outputting an SMTP response. While writing to the log, set a flag
4116to cause a call to receive_bomb_out() if the log cannot be opened. */
4117
4118receive_call_bombout = TRUE;
4119
563b63fa
PH
4120/* Before sending an SMTP response in a TCP/IP session, we check to see if the
4121connection has gone away. This can only be done if there is no unconsumed input
4122waiting in the local input buffer. We can test for this by calling
4123receive_smtp_buffered(). RFC 2920 (pipelining) explicitly allows for additional
4124input to be sent following the final dot, so the presence of following input is
4125not an error.
58eb016e 4126
563b63fa
PH
4127If the connection is still present, but there is no unread input for the
4128socket, the result of a select() call will be zero. If, however, the connection
4129has gone away, or if there is pending input, the result of select() will be
4130non-zero. The two cases can be distinguished by trying to read the next input
4131character. If we succeed, we can unread it so that it remains in the local
4132buffer for handling later. If not, the connection has been lost.
58eb016e 4133
563b63fa
PH
4134Of course, since TCP/IP is asynchronous, there is always a chance that the
4135connection will vanish between the time of this test and the sending of the
4136response, but the chance of this happening should be small. */
4137
4138if (smtp_input && sender_host_address != NULL && !sender_host_notsocket &&
4139 !receive_smtp_buffered())
58eb016e
PH
4140 {
4141 struct timeval tv;
4142 fd_set select_check;
4143 FD_ZERO(&select_check);
4144 FD_SET(fileno(smtp_in), &select_check);
4145 tv.tv_sec = 0;
4146 tv.tv_usec = 0;
4147
563b63fa 4148 if (select(fileno(smtp_in) + 1, &select_check, NULL, NULL, &tv) != 0)
58eb016e 4149 {
bd8fbe36 4150 int c = (receive_getc)(GETC_BUFFER_UNLIMITED);
80a47a2c 4151 if (c != EOF) (receive_ungetc)(c); else
58eb016e 4152 {
eea0defe 4153 smtp_notquit_exit(US"connection-lost", NULL, NULL);
563b63fa
PH
4154 smtp_reply = US""; /* No attempt to send a response */
4155 smtp_yield = FALSE; /* Nothing more on this connection */
58eb016e 4156
563b63fa 4157 /* Re-use the log line workspace */
58eb016e 4158
563b63fa 4159 sptr = 0;
eea0defe 4160 s = string_cat(s, &size, &sptr, US"SMTP connection lost after final dot");
563b63fa
PH
4161 s = add_host_info_for_log(s, &size, &sptr);
4162 s[sptr] = 0;
4163 log_write(0, LOG_MAIN, "%s", s);
58eb016e 4164
563b63fa 4165 /* Delete the files for this aborted message. */
58eb016e 4166
41313d92
JH
4167 Uunlink(spool_fname(US"input", message_subdir, message_id, US"-D"));
4168 Uunlink(spool_fname(US"input", message_subdir, message_id, US"-H"));
4169 Uunlink(spool_fname(US"msglog", message_subdir, message_id, US""));
58eb016e 4170
563b63fa
PH
4171 goto TIDYUP;
4172 }
58eb016e
PH
4173 }
4174 }
4175
4176/* The connection has not gone away; we really are going to take responsibility
4177for this message. */
4178
817d9f57 4179/* Cutthrough - had sender last-dot; assume we've sent (or bufferred) all
e4bdf652
JH
4180 data onward by now.
4181
817d9f57 4182 Send dot onward. If accepted, wipe the spooled files, log as delivered and accept
e4bdf652 4183 the sender's dot (below).
4c04137d 4184 If rejected: copy response to sender, wipe the spooled files, log appropriately.
ff5929e3
JH
4185 If temp-reject: normally accept to sender, keep the spooled file - unless defer=pass
4186 in which case pass temp-reject back to initiator and dump the files.
e4bdf652
JH
4187
4188 Having the normal spool files lets us do data-filtering, and store/forward on temp-reject.
817d9f57
JH
4189
4190 XXX We do not handle queue-only, freezing, or blackholes.
e4bdf652 4191*/
57cc2785 4192if(cutthrough.fd >= 0 && cutthrough.delivery)
e4bdf652 4193 {
57cc2785 4194 uschar * msg = cutthrough_finaldot(); /* Ask the target system to accept the message */
817d9f57 4195 /* Logging was done in finaldot() */
e4bdf652 4196 switch(msg[0])
817d9f57
JH
4197 {
4198 case '2': /* Accept. Do the same to the source; dump any spoolfiles. */
b784ce7f 4199 cutthrough_done = ACCEPTED;
817d9f57 4200 break; /* message_id needed for SMTP accept below */
61147df4 4201
ff5929e3
JH
4202 case '4': /* Temp-reject. Keep spoolfiles and accept, unless defer-pass mode.
4203 ... for which, pass back the exact error */
4204 if (cutthrough.defer_pass) smtp_reply = string_copy_malloc(msg);
4205 /*FALLTRHOUGH*/
4206
817d9f57 4207 default: /* Unknown response, or error. Treat as temp-reject. */
b784ce7f 4208 cutthrough_done = TMP_REJ; /* Avoid the usual immediate delivery attempt */
817d9f57 4209 break; /* message_id needed for SMTP accept below */
61147df4 4210
817d9f57 4211 case '5': /* Perm-reject. Do the same to the source. Dump any spoolfiles */
ff5929e3 4212 smtp_reply = string_copy_malloc(msg); /* Pass on the exact error */
b784ce7f 4213 cutthrough_done = PERM_REJ;
817d9f57
JH
4214 break;
4215 }
e4bdf652 4216 }
58eb016e 4217
8ccd00b1
JH
4218#ifndef DISABLE_PRDR
4219if(!smtp_reply || prdr_requested)
4220#else
4221if(!smtp_reply)
fd98a5c6 4222#endif
e4bdf652
JH
4223 {
4224 log_write(0, LOG_MAIN |
6c6d6e48
TF
4225 (LOGGING(received_recipients)? LOG_RECIPIENTS : 0) |
4226 (LOGGING(received_sender)? LOG_SENDER : 0),
e4bdf652
JH
4227 "%s", s);
4228
4229 /* Log any control actions taken by an ACL or local_scan(). */
58eb016e 4230
e4bdf652
JH
4231 if (deliver_freeze) log_write(0, LOG_MAIN, "frozen by %s", frozen_by);
4232 if (queue_only_policy) log_write(L_delay_delivery, LOG_MAIN,
e8012beb
JH
4233 "no immediate delivery: queued%s%s by %s",
4234 *queue_name ? " in " : "", *queue_name ? CS queue_name : "",
4235 queued_by);
e4bdf652
JH
4236 }
4237receive_call_bombout = FALSE;
58eb016e 4238
059ec3d9
PH
4239store_reset(s); /* The store for the main log message can be reused */
4240
4241/* If the message is frozen, and freeze_tell is set, do the telling. */
4242
4243if (deliver_freeze && freeze_tell != NULL && freeze_tell[0] != 0)
4244 {
4245 moan_tell_someone(freeze_tell, NULL, US"Message frozen on arrival",
4246 "Message %s was frozen on arrival by %s.\nThe sender is <%s>.\n",
4247 message_id, frozen_by, sender_address);
4248 }
4249
4250
4251/* Either a message has been successfully received and written to the two spool
4252files, or an error in writing the spool has occurred for an SMTP message, or
58eb016e
PH
4253an SMTP message has been rejected for policy reasons. (For a non-SMTP message
4254we will have already given up because there's no point in carrying on!) In
4255either event, we must now close (and thereby unlock) the data file. In the
059ec3d9
PH
4256successful case, this leaves the message on the spool, ready for delivery. In
4257the error case, the spool file will be deleted. Then tidy up store, interact
4258with an SMTP call if necessary, and return.
4259
4260A fflush() was done earlier in the expectation that any write errors on the
4261data file will be flushed(!) out thereby. Nevertheless, it is theoretically
4262possible for fclose() to fail - but what to do? What has happened to the lock
4263if this happens? */
4264
e4bdf652 4265
059ec3d9 4266TIDYUP:
f1e894f3
PH
4267process_info[process_info_len] = 0; /* Remove message id */
4268if (data_file != NULL) (void)fclose(data_file); /* Frees the lock */
059ec3d9
PH
4269
4270/* Now reset signal handlers to their defaults */
4271
4272signal(SIGTERM, SIG_DFL);
4273signal(SIGINT, SIG_DFL);
4274
4275/* Tell an SMTP caller the state of play, and arrange to return the SMTP return
4276value, which defaults TRUE - meaning there may be more incoming messages from
4277this connection. For non-SMTP callers (where there is only ever one message),
4278the default is FALSE. */
4279
4280if (smtp_input)
4281 {
4282 yield = smtp_yield;
4283
4284 /* Handle interactive SMTP callers. After several kinds of error, smtp_reply
58eb016e
PH
4285 is set to the response that should be sent. When it is NULL, we generate
4286 default responses. After an ACL error or local_scan() error, the response has
4287 already been sent, and smtp_reply is an empty string to indicate this. */
059ec3d9
PH
4288
4289 if (!smtp_batched_input)
4290 {
27b9e5f4 4291 if (!smtp_reply)
059ec3d9 4292 {
29aba418 4293 if (fake_response != OK)
27b9e5f4
JH
4294 smtp_respond(fake_response == DEFER ? US"450" : US"550",
4295 3, TRUE, fake_response_text);
4e88a19f
PH
4296
4297 /* An OK response is required; use "message" text if present. */
4298
27b9e5f4 4299 else if (user_msg)
4e88a19f
PH
4300 {
4301 uschar *code = US"250";
4302 int len = 3;
4f6ae5c3 4303 smtp_message_code(&code, &len, &user_msg, NULL, TRUE);
4e88a19f
PH
4304 smtp_respond(code, len, TRUE, user_msg);
4305 }
4306
4307 /* Default OK response */
4308
7e3ce68e
JH
4309 else if (chunking_state > CHUNKING_OFFERED)
4310 {
925ac8e4 4311 smtp_printf("250- %u byte chunk, total %d\r\n250 OK id=%s\r\n", FALSE,
7e3ce68e
JH
4312 chunking_datasize, message_size+message_linecount, message_id);
4313 chunking_state = CHUNKING_OFFERED;
4314 }
8e669ac1 4315 else
925ac8e4 4316 smtp_printf("250 OK id=%s\r\n", FALSE, message_id);
7e3ce68e 4317
059ec3d9
PH
4318 if (host_checking)
4319 fprintf(stdout,
4320 "\n**** SMTP testing: that is not a real message id!\n\n");
4321 }
4e88a19f 4322
58eb016e 4323 /* smtp_reply is set non-empty */
4e88a19f 4324
8523533c 4325 else if (smtp_reply[0] != 0)
29aba418 4326 if (fake_response != OK && (smtp_reply[0] == '2'))
a5bd321b
PH
4327 smtp_respond((fake_response == DEFER)? US"450" : US"550", 3, TRUE,
4328 fake_response_text);
8e669ac1 4329 else
925ac8e4 4330 smtp_printf("%.1024s\r\n", FALSE, smtp_reply);
e4bdf652 4331
817d9f57
JH
4332 switch (cutthrough_done)
4333 {
ff5929e3
JH
4334 case ACCEPTED:
4335 log_write(0, LOG_MAIN, "Completed");/* Delivery was done */
41313d92 4336 case PERM_REJ:
ff5929e3
JH
4337 /* Delete spool files */
4338 Uunlink(spool_fname(US"input", message_subdir, message_id, US"-D"));
4339 Uunlink(spool_fname(US"input", message_subdir, message_id, US"-H"));
4340 Uunlink(spool_fname(US"msglog", message_subdir, message_id, US""));
ff5929e3
JH
4341 break;
4342
4343 case TMP_REJ:
4344 if (cutthrough.defer_pass)
4345 {
4346 Uunlink(spool_fname(US"input", message_subdir, message_id, US"-D"));
4347 Uunlink(spool_fname(US"input", message_subdir, message_id, US"-H"));
4348 Uunlink(spool_fname(US"msglog", message_subdir, message_id, US""));
4349 }
ff5929e3
JH
4350 default:
4351 break;
e4bdf652 4352 }
57cc2785
JH
4353 if (cutthrough_done != NOT_TRIED)
4354 {
4355 message_id[0] = 0; /* Prevent a delivery from starting */
4356 cutthrough.delivery = cutthrough.callout_hold_only = FALSE;
4357 cutthrough.defer_pass = FALSE;
4358 }
059ec3d9
PH
4359 }
4360
4361 /* For batched SMTP, generate an error message on failure, and do
4362 nothing on success. The function moan_smtp_batch() does not return -
4363 it exits from the program with a non-zero return code. */
4364
27b9e5f4
JH
4365 else if (smtp_reply)
4366 moan_smtp_batch(NULL, "%s", smtp_reply);
059ec3d9
PH
4367 }
4368
4369
4370/* If blackholing, we can immediately log this message's sad fate. The data
4371file has already been unlinked, and the header file was never written to disk.
4372We must now indicate that nothing was received, to prevent a delivery from
4373starting. */
4374
27b9e5f4 4375if (blackholed_by)
059ec3d9 4376 {
55414b25
JH
4377 const uschar *detail = local_scan_data
4378 ? string_printing(local_scan_data)
4379 : string_sprintf("(%s discarded recipients)", blackholed_by);
04f7d5b9 4380 log_write(0, LOG_MAIN, "=> blackhole %s%s", detail, blackhole_log_msg);
059ec3d9
PH
4381 log_write(0, LOG_MAIN, "Completed");
4382 message_id[0] = 0;
4383 }
4384
4385/* Reset headers so that logging of rejects for a subsequent message doesn't
4386include them. It is also important to set header_last = NULL before exiting
4387from this function, as this prevents certain rewrites that might happen during
4388subsequent verifying (of another incoming message) from trying to add headers
4389when they shouldn't. */
4390
4391header_list = header_last = NULL;
4392
4393return yield; /* TRUE if more messages (SMTP only) */
4394}
4395
4396/* End of receive.c */