Provide readn() as a wrapper around read()
[exim.git] / src / src / tls-gnu.c
1 /*************************************************
2 * Exim - an Internet mail transport agent *
3 *************************************************/
4
5 /* Copyright (c) University of Cambridge 1995 - 2015 */
6 /* See the file NOTICE for conditions of use and distribution. */
7
8 /* Copyright (c) Phil Pennock 2012 */
9
10 /* This file provides TLS/SSL support for Exim using the GnuTLS library,
11 one of the available supported implementations. This file is #included into
12 tls.c when USE_GNUTLS has been set.
13
14 The code herein is a revamp of GnuTLS integration using the current APIs; the
15 original tls-gnu.c was based on a patch which was contributed by Nikos
16 Mavrogiannopoulos. The revamp is partially a rewrite, partially cut&paste as
17 appropriate.
18
19 APIs current as of GnuTLS 2.12.18; note that the GnuTLS manual is for GnuTLS 3,
20 which is not widely deployed by OS vendors. Will note issues below, which may
21 assist in updating the code in the future. Another sources of hints is
22 mod_gnutls for Apache (SNI callback registration and handling).
23
24 Keeping client and server variables more split than before and is currently
25 the norm, in anticipation of TLS in ACL callouts.
26
27 I wanted to switch to gnutls_certificate_set_verify_function() so that
28 certificate rejection could happen during handshake where it belongs, rather
29 than being dropped afterwards, but that was introduced in 2.10.0 and Debian
30 (6.0.5) is still on 2.8.6. So for now we have to stick with sub-par behaviour.
31
32 (I wasn't looking for libraries quite that old, when updating to get rid of
33 compiler warnings of deprecated APIs. If it turns out that a lot of the rest
34 require current GnuTLS, then we'll drop support for the ancient libraries).
35 */
36
37 #include <gnutls/gnutls.h>
38 /* needed for cert checks in verification and DN extraction: */
39 #include <gnutls/x509.h>
40 /* man-page is incorrect, gnutls_rnd() is not in gnutls.h: */
41 #include <gnutls/crypto.h>
42 /* needed to disable PKCS11 autoload unless requested */
43 #if GNUTLS_VERSION_NUMBER >= 0x020c00
44 # include <gnutls/pkcs11.h>
45 # define SUPPORT_PARAM_TO_PK_BITS
46 #endif
47 #if GNUTLS_VERSION_NUMBER < 0x030103 && !defined(DISABLE_OCSP)
48 # warning "GnuTLS library version too old; define DISABLE_OCSP in Makefile"
49 # define DISABLE_OCSP
50 #endif
51 #if GNUTLS_VERSION_NUMBER < 0x020a00 && !defined(DISABLE_EVENT)
52 # warning "GnuTLS library version too old; tls:cert event unsupported"
53 # define DISABLE_EVENT
54 #endif
55 #if GNUTLS_VERSION_NUMBER >= 0x030306
56 # define SUPPORT_CA_DIR
57 #else
58 # undef SUPPORT_CA_DIR
59 #endif
60 #if GNUTLS_VERSION_NUMBER >= 0x030014
61 # define SUPPORT_SYSDEFAULT_CABUNDLE
62 #endif
63 #if GNUTLS_VERSION_NUMBER >= 0x030109
64 # define SUPPORT_CORK
65 #endif
66
67 #ifndef DISABLE_OCSP
68 # include <gnutls/ocsp.h>
69 #endif
70
71 /* GnuTLS 2 vs 3
72
73 GnuTLS 3 only:
74 gnutls_global_set_audit_log_function()
75
76 Changes:
77 gnutls_certificate_verify_peers2(): is new, drop the 2 for old version
78 */
79
80 /* Local static variables for GnuTLS */
81
82 /* Values for verify_requirement */
83
84 enum peer_verify_requirement
85 { VERIFY_NONE, VERIFY_OPTIONAL, VERIFY_REQUIRED };
86
87 /* This holds most state for server or client; with this, we can set up an
88 outbound TLS-enabled connection in an ACL callout, while not stomping all
89 over the TLS variables available for expansion.
90
91 Some of these correspond to variables in globals.c; those variables will
92 be set to point to content in one of these instances, as appropriate for
93 the stage of the process lifetime.
94
95 Not handled here: global tls_channelbinding_b64.
96 */
97
98 typedef struct exim_gnutls_state {
99 gnutls_session_t session;
100 gnutls_certificate_credentials_t x509_cred;
101 gnutls_priority_t priority_cache;
102 enum peer_verify_requirement verify_requirement;
103 int fd_in;
104 int fd_out;
105 BOOL peer_cert_verified;
106 BOOL trigger_sni_changes;
107 BOOL have_set_peerdn;
108 const struct host_item *host;
109 gnutls_x509_crt_t peercert;
110 uschar *peerdn;
111 uschar *ciphersuite;
112 uschar *received_sni;
113
114 const uschar *tls_certificate;
115 const uschar *tls_privatekey;
116 const uschar *tls_sni; /* client send only, not received */
117 const uschar *tls_verify_certificates;
118 const uschar *tls_crl;
119 const uschar *tls_require_ciphers;
120
121 uschar *exp_tls_certificate;
122 uschar *exp_tls_privatekey;
123 uschar *exp_tls_verify_certificates;
124 uschar *exp_tls_crl;
125 uschar *exp_tls_require_ciphers;
126 uschar *exp_tls_ocsp_file;
127 const uschar *exp_tls_verify_cert_hostnames;
128 #ifndef DISABLE_EVENT
129 uschar *event_action;
130 #endif
131
132 tls_support *tlsp; /* set in tls_init() */
133
134 uschar *xfer_buffer;
135 int xfer_buffer_lwm;
136 int xfer_buffer_hwm;
137 int xfer_eof;
138 int xfer_error;
139 } exim_gnutls_state_st;
140
141 static const exim_gnutls_state_st exim_gnutls_state_init = {
142 .session = NULL,
143 .x509_cred = NULL,
144 .priority_cache = NULL,
145 .verify_requirement = VERIFY_NONE,
146 .fd_in = -1,
147 .fd_out = -1,
148 .peer_cert_verified = FALSE,
149 .trigger_sni_changes =FALSE,
150 .have_set_peerdn = FALSE,
151 .host = NULL,
152 .peercert = NULL,
153 .peerdn = NULL,
154 .ciphersuite = NULL,
155 .received_sni = NULL,
156
157 .tls_certificate = NULL,
158 .tls_privatekey = NULL,
159 .tls_sni = NULL,
160 .tls_verify_certificates = NULL,
161 .tls_crl = NULL,
162 .tls_require_ciphers =NULL,
163
164 .exp_tls_certificate = NULL,
165 .exp_tls_privatekey = NULL,
166 .exp_tls_verify_certificates = NULL,
167 .exp_tls_crl = NULL,
168 .exp_tls_require_ciphers = NULL,
169 .exp_tls_ocsp_file = NULL,
170 .exp_tls_verify_cert_hostnames = NULL,
171 #ifndef DISABLE_EVENT
172 .event_action = NULL,
173 #endif
174 .tlsp = NULL,
175
176 .xfer_buffer = NULL,
177 .xfer_buffer_lwm = 0,
178 .xfer_buffer_hwm = 0,
179 .xfer_eof = 0,
180 .xfer_error = 0,
181 };
182
183 /* Not only do we have our own APIs which don't pass around state, assuming
184 it's held in globals, GnuTLS doesn't appear to let us register callback data
185 for callbacks, or as part of the session, so we have to keep a "this is the
186 context we're currently dealing with" pointer and rely upon being
187 single-threaded to keep from processing data on an inbound TLS connection while
188 talking to another TLS connection for an outbound check. This does mean that
189 there's no way for heart-beats to be responded to, for the duration of the
190 second connection.
191 XXX But see gnutls_session_get_ptr()
192 */
193
194 static exim_gnutls_state_st state_server, state_client;
195
196 /* dh_params are initialised once within the lifetime of a process using TLS;
197 if we used TLS in a long-lived daemon, we'd have to reconsider this. But we
198 don't want to repeat this. */
199
200 static gnutls_dh_params_t dh_server_params = NULL;
201
202 /* No idea how this value was chosen; preserving it. Default is 3600. */
203
204 static const int ssl_session_timeout = 200;
205
206 static const char * const exim_default_gnutls_priority = "NORMAL";
207
208 /* Guard library core initialisation */
209
210 static BOOL exim_gnutls_base_init_done = FALSE;
211
212 #ifndef DISABLE_OCSP
213 static BOOL gnutls_buggy_ocsp = FALSE;
214 #endif
215
216
217 /* ------------------------------------------------------------------------ */
218 /* macros */
219
220 #define MAX_HOST_LEN 255
221
222 /* Set this to control gnutls_global_set_log_level(); values 0 to 9 will setup
223 the library logging; a value less than 0 disables the calls to set up logging
224 callbacks. */
225 #ifndef EXIM_GNUTLS_LIBRARY_LOG_LEVEL
226 # define EXIM_GNUTLS_LIBRARY_LOG_LEVEL -1
227 #endif
228
229 #ifndef EXIM_CLIENT_DH_MIN_BITS
230 # define EXIM_CLIENT_DH_MIN_BITS 1024
231 #endif
232
233 /* With GnuTLS 2.12.x+ we have gnutls_sec_param_to_pk_bits() with which we
234 can ask for a bit-strength. Without that, we stick to the constant we had
235 before, for now. */
236 #ifndef EXIM_SERVER_DH_BITS_PRE2_12
237 # define EXIM_SERVER_DH_BITS_PRE2_12 1024
238 #endif
239
240 #define exim_gnutls_err_check(Label) do { \
241 if (rc != GNUTLS_E_SUCCESS) \
242 return tls_error((Label), gnutls_strerror(rc), host, errstr); \
243 } while (0)
244
245 #define expand_check_tlsvar(Varname, errstr) \
246 expand_check(state->Varname, US #Varname, &state->exp_##Varname, errstr)
247
248 #if GNUTLS_VERSION_NUMBER >= 0x020c00
249 # define HAVE_GNUTLS_SESSION_CHANNEL_BINDING
250 # define HAVE_GNUTLS_SEC_PARAM_CONSTANTS
251 # define HAVE_GNUTLS_RND
252 /* The security fix we provide with the gnutls_allow_auto_pkcs11 option
253 * (4.82 PP/09) introduces a compatibility regression. The symbol simply
254 * isn't available sometimes, so this needs to become a conditional
255 * compilation; the sanest way to deal with this being a problem on
256 * older OSes is to block it in the Local/Makefile with this compiler
257 * definition */
258 # ifndef AVOID_GNUTLS_PKCS11
259 # define HAVE_GNUTLS_PKCS11
260 # endif /* AVOID_GNUTLS_PKCS11 */
261 #endif
262
263
264
265
266 /* ------------------------------------------------------------------------ */
267 /* Callback declarations */
268
269 #if EXIM_GNUTLS_LIBRARY_LOG_LEVEL >= 0
270 static void exim_gnutls_logger_cb(int level, const char *message);
271 #endif
272
273 static int exim_sni_handling_cb(gnutls_session_t session);
274
275 #ifndef DISABLE_OCSP
276 static int server_ocsp_stapling_cb(gnutls_session_t session, void * ptr,
277 gnutls_datum_t * ocsp_response);
278 #endif
279
280
281
282 /* ------------------------------------------------------------------------ */
283 /* Static functions */
284
285 /*************************************************
286 * Handle TLS error *
287 *************************************************/
288
289 /* Called from lots of places when errors occur before actually starting to do
290 the TLS handshake, that is, while the session is still in clear. Always returns
291 DEFER for a server and FAIL for a client so that most calls can use "return
292 tls_error(...)" to do this processing and then give an appropriate return. A
293 single function is used for both server and client, because it is called from
294 some shared functions.
295
296 Argument:
297 prefix text to include in the logged error
298 msg additional error string (may be NULL)
299 usually obtained from gnutls_strerror()
300 host NULL if setting up a server;
301 the connected host if setting up a client
302 errstr pointer to returned error string
303
304 Returns: OK/DEFER/FAIL
305 */
306
307 static int
308 tls_error(const uschar *prefix, const char *msg, const host_item *host,
309 uschar ** errstr)
310 {
311 if (errstr)
312 *errstr = string_sprintf("(%s)%s%s", prefix, msg ? ": " : "", msg ? msg : "");
313 return host ? FAIL : DEFER;
314 }
315
316
317
318
319 /*************************************************
320 * Deal with logging errors during I/O *
321 *************************************************/
322
323 /* We have to get the identity of the peer from saved data.
324
325 Argument:
326 state the current GnuTLS exim state container
327 rc the GnuTLS error code, or 0 if it's a local error
328 when text identifying read or write
329 text local error text when ec is 0
330
331 Returns: nothing
332 */
333
334 static void
335 record_io_error(exim_gnutls_state_st *state, int rc, uschar *when, uschar *text)
336 {
337 const char * msg;
338 uschar * errstr;
339
340 if (rc == GNUTLS_E_FATAL_ALERT_RECEIVED)
341 msg = CS string_sprintf("%s: %s", US gnutls_strerror(rc),
342 US gnutls_alert_get_name(gnutls_alert_get(state->session)));
343 else
344 msg = gnutls_strerror(rc);
345
346 (void) tls_error(when, msg, state->host, &errstr);
347
348 if (state->host)
349 log_write(0, LOG_MAIN, "H=%s [%s] TLS error on connection %s",
350 state->host->name, state->host->address, errstr);
351 else
352 {
353 uschar * conn_info = smtp_get_connection_info();
354 if (Ustrncmp(conn_info, US"SMTP ", 5) == 0) conn_info += 5;
355 /* I'd like to get separated H= here, but too hard for now */
356 log_write(0, LOG_MAIN, "TLS error on %s %s", conn_info, errstr);
357 }
358 }
359
360
361
362
363 /*************************************************
364 * Set various Exim expansion vars *
365 *************************************************/
366
367 #define exim_gnutls_cert_err(Label) \
368 do \
369 { \
370 if (rc != GNUTLS_E_SUCCESS) \
371 { \
372 DEBUG(D_tls) debug_printf("TLS: cert problem: %s: %s\n", \
373 (Label), gnutls_strerror(rc)); \
374 return rc; \
375 } \
376 } while (0)
377
378 static int
379 import_cert(const gnutls_datum_t * cert, gnutls_x509_crt_t * crtp)
380 {
381 int rc;
382
383 rc = gnutls_x509_crt_init(crtp);
384 exim_gnutls_cert_err(US"gnutls_x509_crt_init (crt)");
385
386 rc = gnutls_x509_crt_import(*crtp, cert, GNUTLS_X509_FMT_DER);
387 exim_gnutls_cert_err(US"failed to import certificate [gnutls_x509_crt_import(cert)]");
388
389 return rc;
390 }
391
392 #undef exim_gnutls_cert_err
393
394
395 /* We set various Exim global variables from the state, once a session has
396 been established. With TLS callouts, may need to change this to stack
397 variables, or just re-call it with the server state after client callout
398 has finished.
399
400 Make sure anything set here is unset in tls_getc().
401
402 Sets:
403 tls_active fd
404 tls_bits strength indicator
405 tls_certificate_verified bool indicator
406 tls_channelbinding_b64 for some SASL mechanisms
407 tls_cipher a string
408 tls_peercert pointer to library internal
409 tls_peerdn a string
410 tls_sni a (UTF-8) string
411 tls_ourcert pointer to library internal
412
413 Argument:
414 state the relevant exim_gnutls_state_st *
415 */
416
417 static void
418 extract_exim_vars_from_tls_state(exim_gnutls_state_st * state)
419 {
420 gnutls_cipher_algorithm_t cipher;
421 #ifdef HAVE_GNUTLS_SESSION_CHANNEL_BINDING
422 int old_pool;
423 int rc;
424 gnutls_datum_t channel;
425 #endif
426 tls_support * tlsp = state->tlsp;
427
428 tlsp->active = state->fd_out;
429
430 cipher = gnutls_cipher_get(state->session);
431 /* returns size in "bytes" */
432 tlsp->bits = gnutls_cipher_get_key_size(cipher) * 8;
433
434 tlsp->cipher = state->ciphersuite;
435
436 DEBUG(D_tls) debug_printf("cipher: %s\n", state->ciphersuite);
437
438 tlsp->certificate_verified = state->peer_cert_verified;
439
440 /* note that tls_channelbinding_b64 is not saved to the spool file, since it's
441 only available for use for authenticators while this TLS session is running. */
442
443 tls_channelbinding_b64 = NULL;
444 #ifdef HAVE_GNUTLS_SESSION_CHANNEL_BINDING
445 channel.data = NULL;
446 channel.size = 0;
447 rc = gnutls_session_channel_binding(state->session, GNUTLS_CB_TLS_UNIQUE, &channel);
448 if (rc) {
449 DEBUG(D_tls) debug_printf("Channel binding error: %s\n", gnutls_strerror(rc));
450 } else {
451 old_pool = store_pool;
452 store_pool = POOL_PERM;
453 tls_channelbinding_b64 = b64encode(channel.data, (int)channel.size);
454 store_pool = old_pool;
455 DEBUG(D_tls) debug_printf("Have channel bindings cached for possible auth usage.\n");
456 }
457 #endif
458
459 /* peercert is set in peer_status() */
460 tlsp->peerdn = state->peerdn;
461 tlsp->sni = state->received_sni;
462
463 /* record our certificate */
464 {
465 const gnutls_datum_t * cert = gnutls_certificate_get_ours(state->session);
466 gnutls_x509_crt_t crt;
467
468 tlsp->ourcert = cert && import_cert(cert, &crt)==0 ? crt : NULL;
469 }
470 }
471
472
473
474
475 /*************************************************
476 * Setup up DH parameters *
477 *************************************************/
478
479 /* Generating the D-H parameters may take a long time. They only need to
480 be re-generated every so often, depending on security policy. What we do is to
481 keep these parameters in a file in the spool directory. If the file does not
482 exist, we generate them. This means that it is easy to cause a regeneration.
483
484 The new file is written as a temporary file and renamed, so that an incomplete
485 file is never present. If two processes both compute some new parameters, you
486 waste a bit of effort, but it doesn't seem worth messing around with locking to
487 prevent this.
488
489 Returns: OK/DEFER/FAIL
490 */
491
492 static int
493 init_server_dh(uschar ** errstr)
494 {
495 int fd, rc;
496 unsigned int dh_bits;
497 gnutls_datum_t m;
498 uschar filename_buf[PATH_MAX];
499 uschar *filename = NULL;
500 size_t sz;
501 uschar *exp_tls_dhparam;
502 BOOL use_file_in_spool = FALSE;
503 BOOL use_fixed_file = FALSE;
504 host_item *host = NULL; /* dummy for macros */
505
506 DEBUG(D_tls) debug_printf("Initialising GnuTLS server params.\n");
507
508 rc = gnutls_dh_params_init(&dh_server_params);
509 exim_gnutls_err_check(US"gnutls_dh_params_init");
510
511 m.data = NULL;
512 m.size = 0;
513
514 if (!expand_check(tls_dhparam, US"tls_dhparam", &exp_tls_dhparam, errstr))
515 return DEFER;
516
517 if (!exp_tls_dhparam)
518 {
519 DEBUG(D_tls) debug_printf("Loading default hard-coded DH params\n");
520 m.data = US std_dh_prime_default();
521 m.size = Ustrlen(m.data);
522 }
523 else if (Ustrcmp(exp_tls_dhparam, "historic") == 0)
524 use_file_in_spool = TRUE;
525 else if (Ustrcmp(exp_tls_dhparam, "none") == 0)
526 {
527 DEBUG(D_tls) debug_printf("Requested no DH parameters.\n");
528 return OK;
529 }
530 else if (exp_tls_dhparam[0] != '/')
531 {
532 if (!(m.data = US std_dh_prime_named(exp_tls_dhparam)))
533 return tls_error(US"No standard prime named", CS exp_tls_dhparam, NULL, errstr);
534 m.size = Ustrlen(m.data);
535 }
536 else
537 {
538 use_fixed_file = TRUE;
539 filename = exp_tls_dhparam;
540 }
541
542 if (m.data)
543 {
544 rc = gnutls_dh_params_import_pkcs3(dh_server_params, &m, GNUTLS_X509_FMT_PEM);
545 exim_gnutls_err_check(US"gnutls_dh_params_import_pkcs3");
546 DEBUG(D_tls) debug_printf("Loaded fixed standard D-H parameters\n");
547 return OK;
548 }
549
550 #ifdef HAVE_GNUTLS_SEC_PARAM_CONSTANTS
551 /* If you change this constant, also change dh_param_fn_ext so that we can use a
552 different filename and ensure we have sufficient bits. */
553 dh_bits = gnutls_sec_param_to_pk_bits(GNUTLS_PK_DH, GNUTLS_SEC_PARAM_NORMAL);
554 if (!dh_bits)
555 return tls_error(US"gnutls_sec_param_to_pk_bits() failed", NULL, NULL, errstr);
556 DEBUG(D_tls)
557 debug_printf("GnuTLS tells us that for D-H PK, NORMAL is %d bits.\n",
558 dh_bits);
559 #else
560 dh_bits = EXIM_SERVER_DH_BITS_PRE2_12;
561 DEBUG(D_tls)
562 debug_printf("GnuTLS lacks gnutls_sec_param_to_pk_bits(), using %d bits.\n",
563 dh_bits);
564 #endif
565
566 /* Some clients have hard-coded limits. */
567 if (dh_bits > tls_dh_max_bits)
568 {
569 DEBUG(D_tls)
570 debug_printf("tls_dh_max_bits clamping override, using %d bits instead.\n",
571 tls_dh_max_bits);
572 dh_bits = tls_dh_max_bits;
573 }
574
575 if (use_file_in_spool)
576 {
577 if (!string_format(filename_buf, sizeof(filename_buf),
578 "%s/gnutls-params-%d", spool_directory, dh_bits))
579 return tls_error(US"overlong filename", NULL, NULL, errstr);
580 filename = filename_buf;
581 }
582
583 /* Open the cache file for reading and if successful, read it and set up the
584 parameters. */
585
586 if ((fd = Uopen(filename, O_RDONLY, 0)) >= 0)
587 {
588 struct stat statbuf;
589 FILE *fp;
590 int saved_errno;
591
592 if (fstat(fd, &statbuf) < 0) /* EIO */
593 {
594 saved_errno = errno;
595 (void)close(fd);
596 return tls_error(US"TLS cache stat failed", strerror(saved_errno), NULL, errstr);
597 }
598 if (!S_ISREG(statbuf.st_mode))
599 {
600 (void)close(fd);
601 return tls_error(US"TLS cache not a file", NULL, NULL, errstr);
602 }
603 if (!(fp = fdopen(fd, "rb")))
604 {
605 saved_errno = errno;
606 (void)close(fd);
607 return tls_error(US"fdopen(TLS cache stat fd) failed",
608 strerror(saved_errno), NULL, errstr);
609 }
610
611 m.size = statbuf.st_size;
612 if (!(m.data = malloc(m.size)))
613 {
614 fclose(fp);
615 return tls_error(US"malloc failed", strerror(errno), NULL, errstr);
616 }
617 if (!(sz = fread(m.data, m.size, 1, fp)))
618 {
619 saved_errno = errno;
620 fclose(fp);
621 free(m.data);
622 return tls_error(US"fread failed", strerror(saved_errno), NULL, errstr);
623 }
624 fclose(fp);
625
626 rc = gnutls_dh_params_import_pkcs3(dh_server_params, &m, GNUTLS_X509_FMT_PEM);
627 free(m.data);
628 exim_gnutls_err_check(US"gnutls_dh_params_import_pkcs3");
629 DEBUG(D_tls) debug_printf("read D-H parameters from file \"%s\"\n", filename);
630 }
631
632 /* If the file does not exist, fall through to compute new data and cache it.
633 If there was any other opening error, it is serious. */
634
635 else if (errno == ENOENT)
636 {
637 rc = -1;
638 DEBUG(D_tls)
639 debug_printf("D-H parameter cache file \"%s\" does not exist\n", filename);
640 }
641 else
642 return tls_error(string_open_failed(errno, "\"%s\" for reading", filename),
643 NULL, NULL, errstr);
644
645 /* If ret < 0, either the cache file does not exist, or the data it contains
646 is not useful. One particular case of this is when upgrading from an older
647 release of Exim in which the data was stored in a different format. We don't
648 try to be clever and support both formats; we just regenerate new data in this
649 case. */
650
651 if (rc < 0)
652 {
653 uschar *temp_fn;
654 unsigned int dh_bits_gen = dh_bits;
655
656 if ((PATH_MAX - Ustrlen(filename)) < 10)
657 return tls_error(US"Filename too long to generate replacement",
658 CS filename, NULL, errstr);
659
660 temp_fn = string_copy(US "%s.XXXXXXX");
661 if ((fd = mkstemp(CS temp_fn)) < 0) /* modifies temp_fn */
662 return tls_error(US"Unable to open temp file", strerror(errno), NULL, errstr);
663 (void)fchown(fd, exim_uid, exim_gid); /* Probably not necessary */
664
665 /* GnuTLS overshoots!
666 * If we ask for 2236, we might get 2237 or more.
667 * But there's no way to ask GnuTLS how many bits there really are.
668 * We can ask how many bits were used in a TLS session, but that's it!
669 * The prime itself is hidden behind too much abstraction.
670 * So we ask for less, and proceed on a wing and a prayer.
671 * First attempt, subtracted 3 for 2233 and got 2240.
672 */
673 if (dh_bits >= EXIM_CLIENT_DH_MIN_BITS + 10)
674 {
675 dh_bits_gen = dh_bits - 10;
676 DEBUG(D_tls)
677 debug_printf("being paranoid about DH generation, make it '%d' bits'\n",
678 dh_bits_gen);
679 }
680
681 DEBUG(D_tls)
682 debug_printf("requesting generation of %d bit Diffie-Hellman prime ...\n",
683 dh_bits_gen);
684 rc = gnutls_dh_params_generate2(dh_server_params, dh_bits_gen);
685 exim_gnutls_err_check(US"gnutls_dh_params_generate2");
686
687 /* gnutls_dh_params_export_pkcs3() will tell us the exact size, every time,
688 and I confirmed that a NULL call to get the size first is how the GnuTLS
689 sample apps handle this. */
690
691 sz = 0;
692 m.data = NULL;
693 rc = gnutls_dh_params_export_pkcs3(dh_server_params, GNUTLS_X509_FMT_PEM,
694 m.data, &sz);
695 if (rc != GNUTLS_E_SHORT_MEMORY_BUFFER)
696 exim_gnutls_err_check(US"gnutls_dh_params_export_pkcs3(NULL) sizing");
697 m.size = sz;
698 if (!(m.data = malloc(m.size)))
699 return tls_error(US"memory allocation failed", strerror(errno), NULL, errstr);
700
701 /* this will return a size 1 less than the allocation size above */
702 rc = gnutls_dh_params_export_pkcs3(dh_server_params, GNUTLS_X509_FMT_PEM,
703 m.data, &sz);
704 if (rc != GNUTLS_E_SUCCESS)
705 {
706 free(m.data);
707 exim_gnutls_err_check(US"gnutls_dh_params_export_pkcs3() real");
708 }
709 m.size = sz; /* shrink by 1, probably */
710
711 if ((sz = write_to_fd_buf(fd, m.data, (size_t) m.size)) != m.size)
712 {
713 free(m.data);
714 return tls_error(US"TLS cache write D-H params failed",
715 strerror(errno), NULL, errstr);
716 }
717 free(m.data);
718 if ((sz = write_to_fd_buf(fd, US"\n", 1)) != 1)
719 return tls_error(US"TLS cache write D-H params final newline failed",
720 strerror(errno), NULL, errstr);
721
722 if ((rc = close(fd)))
723 return tls_error(US"TLS cache write close() failed", strerror(errno), NULL, errstr);
724
725 if (Urename(temp_fn, filename) < 0)
726 return tls_error(string_sprintf("failed to rename \"%s\" as \"%s\"",
727 temp_fn, filename), strerror(errno), NULL, errstr);
728
729 DEBUG(D_tls) debug_printf("wrote D-H parameters to file \"%s\"\n", filename);
730 }
731
732 DEBUG(D_tls) debug_printf("initialized server D-H parameters\n");
733 return OK;
734 }
735
736
737
738
739 /* Create and install a selfsigned certificate, for use in server mode */
740
741 static int
742 tls_install_selfsign(exim_gnutls_state_st * state, uschar ** errstr)
743 {
744 gnutls_x509_crt_t cert = NULL;
745 time_t now;
746 gnutls_x509_privkey_t pkey = NULL;
747 const uschar * where;
748 int rc;
749
750 where = US"initialising pkey";
751 if ((rc = gnutls_x509_privkey_init(&pkey))) goto err;
752
753 where = US"initialising cert";
754 if ((rc = gnutls_x509_crt_init(&cert))) goto err;
755
756 where = US"generating pkey";
757 if ((rc = gnutls_x509_privkey_generate(pkey, GNUTLS_PK_RSA,
758 #ifdef SUPPORT_PARAM_TO_PK_BITS
759 gnutls_sec_param_to_pk_bits(GNUTLS_PK_RSA, GNUTLS_SEC_PARAM_LOW),
760 #else
761 1024,
762 #endif
763 0)))
764 goto err;
765
766 where = US"configuring cert";
767 now = 0;
768 if ( (rc = gnutls_x509_crt_set_version(cert, 3))
769 || (rc = gnutls_x509_crt_set_serial(cert, &now, sizeof(now)))
770 || (rc = gnutls_x509_crt_set_activation_time(cert, now = time(NULL)))
771 || (rc = gnutls_x509_crt_set_expiration_time(cert, now + 60 * 60)) /* 1 hr */
772 || (rc = gnutls_x509_crt_set_key(cert, pkey))
773
774 || (rc = gnutls_x509_crt_set_dn_by_oid(cert,
775 GNUTLS_OID_X520_COUNTRY_NAME, 0, "UK", 2))
776 || (rc = gnutls_x509_crt_set_dn_by_oid(cert,
777 GNUTLS_OID_X520_ORGANIZATION_NAME, 0, "Exim Developers", 15))
778 || (rc = gnutls_x509_crt_set_dn_by_oid(cert,
779 GNUTLS_OID_X520_COMMON_NAME, 0,
780 smtp_active_hostname, Ustrlen(smtp_active_hostname)))
781 )
782 goto err;
783
784 where = US"signing cert";
785 if ((rc = gnutls_x509_crt_sign(cert, cert, pkey))) goto err;
786
787 where = US"installing selfsign cert";
788 /* Since: 2.4.0 */
789 if ((rc = gnutls_certificate_set_x509_key(state->x509_cred, &cert, 1, pkey)))
790 goto err;
791
792 rc = OK;
793
794 out:
795 if (cert) gnutls_x509_crt_deinit(cert);
796 if (pkey) gnutls_x509_privkey_deinit(pkey);
797 return rc;
798
799 err:
800 rc = tls_error(where, gnutls_strerror(rc), NULL, errstr);
801 goto out;
802 }
803
804
805
806
807 /*************************************************
808 * Variables re-expanded post-SNI *
809 *************************************************/
810
811 /* Called from both server and client code, via tls_init(), and also from
812 the SNI callback after receiving an SNI, if tls_certificate includes "tls_sni".
813
814 We can tell the two apart by state->received_sni being non-NULL in callback.
815
816 The callback should not call us unless state->trigger_sni_changes is true,
817 which we are responsible for setting on the first pass through.
818
819 Arguments:
820 state exim_gnutls_state_st *
821 errstr error string pointer
822
823 Returns: OK/DEFER/FAIL
824 */
825
826 static int
827 tls_expand_session_files(exim_gnutls_state_st *state, uschar ** errstr)
828 {
829 struct stat statbuf;
830 int rc;
831 const host_item *host = state->host; /* macro should be reconsidered? */
832 uschar *saved_tls_certificate = NULL;
833 uschar *saved_tls_privatekey = NULL;
834 uschar *saved_tls_verify_certificates = NULL;
835 uschar *saved_tls_crl = NULL;
836 int cert_count;
837
838 /* We check for tls_sni *before* expansion. */
839 if (!host) /* server */
840 if (!state->received_sni)
841 {
842 if (state->tls_certificate &&
843 (Ustrstr(state->tls_certificate, US"tls_sni") ||
844 Ustrstr(state->tls_certificate, US"tls_in_sni") ||
845 Ustrstr(state->tls_certificate, US"tls_out_sni")
846 ))
847 {
848 DEBUG(D_tls) debug_printf("We will re-expand TLS session files if we receive SNI.\n");
849 state->trigger_sni_changes = TRUE;
850 }
851 }
852 else
853 {
854 /* useful for debugging */
855 saved_tls_certificate = state->exp_tls_certificate;
856 saved_tls_privatekey = state->exp_tls_privatekey;
857 saved_tls_verify_certificates = state->exp_tls_verify_certificates;
858 saved_tls_crl = state->exp_tls_crl;
859 }
860
861 rc = gnutls_certificate_allocate_credentials(&state->x509_cred);
862 exim_gnutls_err_check(US"gnutls_certificate_allocate_credentials");
863
864 /* remember: expand_check_tlsvar() is expand_check() but fiddling with
865 state members, assuming consistent naming; and expand_check() returns
866 false if expansion failed, unless expansion was forced to fail. */
867
868 /* check if we at least have a certificate, before doing expensive
869 D-H generation. */
870
871 if (!expand_check_tlsvar(tls_certificate, errstr))
872 return DEFER;
873
874 /* certificate is mandatory in server, optional in client */
875
876 if ( !state->exp_tls_certificate
877 || !*state->exp_tls_certificate
878 )
879 if (!host)
880 return tls_install_selfsign(state, errstr);
881 else
882 DEBUG(D_tls) debug_printf("TLS: no client certificate specified; okay\n");
883
884 if (state->tls_privatekey && !expand_check_tlsvar(tls_privatekey, errstr))
885 return DEFER;
886
887 /* tls_privatekey is optional, defaulting to same file as certificate */
888
889 if (state->tls_privatekey == NULL || *state->tls_privatekey == '\0')
890 {
891 state->tls_privatekey = state->tls_certificate;
892 state->exp_tls_privatekey = state->exp_tls_certificate;
893 }
894
895
896 if (state->exp_tls_certificate && *state->exp_tls_certificate)
897 {
898 DEBUG(D_tls) debug_printf("certificate file = %s\nkey file = %s\n",
899 state->exp_tls_certificate, state->exp_tls_privatekey);
900
901 if (state->received_sni)
902 if ( Ustrcmp(state->exp_tls_certificate, saved_tls_certificate) == 0
903 && Ustrcmp(state->exp_tls_privatekey, saved_tls_privatekey) == 0
904 )
905 {
906 DEBUG(D_tls) debug_printf("TLS SNI: cert and key unchanged\n");
907 }
908 else
909 {
910 DEBUG(D_tls) debug_printf("TLS SNI: have a changed cert/key pair.\n");
911 }
912
913 rc = gnutls_certificate_set_x509_key_file(state->x509_cred,
914 CS state->exp_tls_certificate, CS state->exp_tls_privatekey,
915 GNUTLS_X509_FMT_PEM);
916 exim_gnutls_err_check(
917 string_sprintf("cert/key setup: cert=%s key=%s",
918 state->exp_tls_certificate, state->exp_tls_privatekey));
919 DEBUG(D_tls) debug_printf("TLS: cert/key registered\n");
920 } /* tls_certificate */
921
922
923 /* Set the OCSP stapling server info */
924
925 #ifndef DISABLE_OCSP
926 if ( !host /* server */
927 && tls_ocsp_file
928 )
929 {
930 if (gnutls_buggy_ocsp)
931 {
932 DEBUG(D_tls) debug_printf("GnuTLS library is buggy for OCSP; avoiding\n");
933 }
934 else
935 {
936 if (!expand_check(tls_ocsp_file, US"tls_ocsp_file",
937 &state->exp_tls_ocsp_file, errstr))
938 return DEFER;
939
940 /* Use the full callback method for stapling just to get observability.
941 More efficient would be to read the file once only, if it never changed
942 (due to SNI). Would need restart on file update, or watch datestamp. */
943
944 gnutls_certificate_set_ocsp_status_request_function(state->x509_cred,
945 server_ocsp_stapling_cb, state->exp_tls_ocsp_file);
946
947 DEBUG(D_tls) debug_printf("OCSP response file = %s\n", state->exp_tls_ocsp_file);
948 }
949 }
950 #endif
951
952
953 /* Set the trusted CAs file if one is provided, and then add the CRL if one is
954 provided. Experiment shows that, if the certificate file is empty, an unhelpful
955 error message is provided. However, if we just refrain from setting anything up
956 in that case, certificate verification fails, which seems to be the correct
957 behaviour. */
958
959 if (state->tls_verify_certificates && *state->tls_verify_certificates)
960 {
961 if (!expand_check_tlsvar(tls_verify_certificates, errstr))
962 return DEFER;
963 #ifndef SUPPORT_SYSDEFAULT_CABUNDLE
964 if (Ustrcmp(state->exp_tls_verify_certificates, "system") == 0)
965 state->exp_tls_verify_certificates = NULL;
966 #endif
967 if (state->tls_crl && *state->tls_crl)
968 if (!expand_check_tlsvar(tls_crl, errstr))
969 return DEFER;
970
971 if (!(state->exp_tls_verify_certificates &&
972 *state->exp_tls_verify_certificates))
973 {
974 DEBUG(D_tls)
975 debug_printf("TLS: tls_verify_certificates expanded empty, ignoring\n");
976 /* With no tls_verify_certificates, we ignore tls_crl too */
977 return OK;
978 }
979 }
980 else
981 {
982 DEBUG(D_tls)
983 debug_printf("TLS: tls_verify_certificates not set or empty, ignoring\n");
984 return OK;
985 }
986
987 #ifdef SUPPORT_SYSDEFAULT_CABUNDLE
988 if (Ustrcmp(state->exp_tls_verify_certificates, "system") == 0)
989 cert_count = gnutls_certificate_set_x509_system_trust(state->x509_cred);
990 else
991 #endif
992 {
993 if (Ustat(state->exp_tls_verify_certificates, &statbuf) < 0)
994 {
995 log_write(0, LOG_MAIN|LOG_PANIC, "could not stat %s "
996 "(tls_verify_certificates): %s", state->exp_tls_verify_certificates,
997 strerror(errno));
998 return DEFER;
999 }
1000
1001 #ifndef SUPPORT_CA_DIR
1002 /* The test suite passes in /dev/null; we could check for that path explicitly,
1003 but who knows if someone has some weird FIFO which always dumps some certs, or
1004 other weirdness. The thing we really want to check is that it's not a
1005 directory, since while OpenSSL supports that, GnuTLS does not.
1006 So s/!S_ISREG/S_ISDIR/ and change some messaging ... */
1007 if (S_ISDIR(statbuf.st_mode))
1008 {
1009 DEBUG(D_tls)
1010 debug_printf("verify certificates path is a dir: \"%s\"\n",
1011 state->exp_tls_verify_certificates);
1012 log_write(0, LOG_MAIN|LOG_PANIC,
1013 "tls_verify_certificates \"%s\" is a directory",
1014 state->exp_tls_verify_certificates);
1015 return DEFER;
1016 }
1017 #endif
1018
1019 DEBUG(D_tls) debug_printf("verify certificates = %s size=" OFF_T_FMT "\n",
1020 state->exp_tls_verify_certificates, statbuf.st_size);
1021
1022 if (statbuf.st_size == 0)
1023 {
1024 DEBUG(D_tls)
1025 debug_printf("cert file empty, no certs, no verification, ignoring any CRL\n");
1026 return OK;
1027 }
1028
1029 cert_count =
1030
1031 #ifdef SUPPORT_CA_DIR
1032 (statbuf.st_mode & S_IFMT) == S_IFDIR
1033 ?
1034 gnutls_certificate_set_x509_trust_dir(state->x509_cred,
1035 CS state->exp_tls_verify_certificates, GNUTLS_X509_FMT_PEM)
1036 :
1037 #endif
1038 gnutls_certificate_set_x509_trust_file(state->x509_cred,
1039 CS state->exp_tls_verify_certificates, GNUTLS_X509_FMT_PEM);
1040 }
1041
1042 if (cert_count < 0)
1043 {
1044 rc = cert_count;
1045 exim_gnutls_err_check(US"setting certificate trust");
1046 }
1047 DEBUG(D_tls) debug_printf("Added %d certificate authorities.\n", cert_count);
1048
1049 if (state->tls_crl && *state->tls_crl &&
1050 state->exp_tls_crl && *state->exp_tls_crl)
1051 {
1052 DEBUG(D_tls) debug_printf("loading CRL file = %s\n", state->exp_tls_crl);
1053 cert_count = gnutls_certificate_set_x509_crl_file(state->x509_cred,
1054 CS state->exp_tls_crl, GNUTLS_X509_FMT_PEM);
1055 if (cert_count < 0)
1056 {
1057 rc = cert_count;
1058 exim_gnutls_err_check(US"gnutls_certificate_set_x509_crl_file");
1059 }
1060 DEBUG(D_tls) debug_printf("Processed %d CRLs.\n", cert_count);
1061 }
1062
1063 return OK;
1064 }
1065
1066
1067
1068
1069 /*************************************************
1070 * Set X.509 state variables *
1071 *************************************************/
1072
1073 /* In GnuTLS, the registered cert/key are not replaced by a later
1074 set of a cert/key, so for SNI support we need a whole new x509_cred
1075 structure. Which means various other non-re-expanded pieces of state
1076 need to be re-set in the new struct, so the setting logic is pulled
1077 out to this.
1078
1079 Arguments:
1080 state exim_gnutls_state_st *
1081 errstr error string pointer
1082
1083 Returns: OK/DEFER/FAIL
1084 */
1085
1086 static int
1087 tls_set_remaining_x509(exim_gnutls_state_st *state, uschar ** errstr)
1088 {
1089 int rc;
1090 const host_item *host = state->host; /* macro should be reconsidered? */
1091
1092 /* Create D-H parameters, or read them from the cache file. This function does
1093 its own SMTP error messaging. This only happens for the server, TLS D-H ignores
1094 client-side params. */
1095
1096 if (!state->host)
1097 {
1098 if (!dh_server_params)
1099 {
1100 rc = init_server_dh(errstr);
1101 if (rc != OK) return rc;
1102 }
1103 gnutls_certificate_set_dh_params(state->x509_cred, dh_server_params);
1104 }
1105
1106 /* Link the credentials to the session. */
1107
1108 rc = gnutls_credentials_set(state->session, GNUTLS_CRD_CERTIFICATE, state->x509_cred);
1109 exim_gnutls_err_check(US"gnutls_credentials_set");
1110
1111 return OK;
1112 }
1113
1114 /*************************************************
1115 * Initialize for GnuTLS *
1116 *************************************************/
1117
1118
1119 #ifndef DISABLE_OCSP
1120
1121 static BOOL
1122 tls_is_buggy_ocsp(void)
1123 {
1124 const uschar * s;
1125 uschar maj, mid, mic;
1126
1127 s = CUS gnutls_check_version(NULL);
1128 maj = atoi(CCS s);
1129 if (maj == 3)
1130 {
1131 while (*s && *s != '.') s++;
1132 mid = atoi(CCS ++s);
1133 if (mid <= 2)
1134 return TRUE;
1135 else if (mid >= 5)
1136 return FALSE;
1137 else
1138 {
1139 while (*s && *s != '.') s++;
1140 mic = atoi(CCS ++s);
1141 return mic <= (mid == 3 ? 16 : 3);
1142 }
1143 }
1144 return FALSE;
1145 }
1146
1147 #endif
1148
1149
1150 /* Called from both server and client code. In the case of a server, errors
1151 before actual TLS negotiation return DEFER.
1152
1153 Arguments:
1154 host connected host, if client; NULL if server
1155 certificate certificate file
1156 privatekey private key file
1157 sni TLS SNI to send, sometimes when client; else NULL
1158 cas CA certs file
1159 crl CRL file
1160 require_ciphers tls_require_ciphers setting
1161 caller_state returned state-info structure
1162 errstr error string pointer
1163
1164 Returns: OK/DEFER/FAIL
1165 */
1166
1167 static int
1168 tls_init(
1169 const host_item *host,
1170 const uschar *certificate,
1171 const uschar *privatekey,
1172 const uschar *sni,
1173 const uschar *cas,
1174 const uschar *crl,
1175 const uschar *require_ciphers,
1176 exim_gnutls_state_st **caller_state,
1177 uschar ** errstr)
1178 {
1179 exim_gnutls_state_st *state;
1180 int rc;
1181 size_t sz;
1182 const char *errpos;
1183 uschar *p;
1184 BOOL want_default_priorities;
1185
1186 if (!exim_gnutls_base_init_done)
1187 {
1188 DEBUG(D_tls) debug_printf("GnuTLS global init required.\n");
1189
1190 #ifdef HAVE_GNUTLS_PKCS11
1191 /* By default, gnutls_global_init will init PKCS11 support in auto mode,
1192 which loads modules from a config file, which sounds good and may be wanted
1193 by some sysadmin, but also means in common configurations that GNOME keyring
1194 environment variables are used and so breaks for users calling mailq.
1195 To prevent this, we init PKCS11 first, which is the documented approach. */
1196 if (!gnutls_allow_auto_pkcs11)
1197 {
1198 rc = gnutls_pkcs11_init(GNUTLS_PKCS11_FLAG_MANUAL, NULL);
1199 exim_gnutls_err_check(US"gnutls_pkcs11_init");
1200 }
1201 #endif
1202
1203 rc = gnutls_global_init();
1204 exim_gnutls_err_check(US"gnutls_global_init");
1205
1206 #if EXIM_GNUTLS_LIBRARY_LOG_LEVEL >= 0
1207 DEBUG(D_tls)
1208 {
1209 gnutls_global_set_log_function(exim_gnutls_logger_cb);
1210 /* arbitrarily chosen level; bump upto 9 for more */
1211 gnutls_global_set_log_level(EXIM_GNUTLS_LIBRARY_LOG_LEVEL);
1212 }
1213 #endif
1214
1215 #ifndef DISABLE_OCSP
1216 if (tls_ocsp_file && (gnutls_buggy_ocsp = tls_is_buggy_ocsp()))
1217 log_write(0, LOG_MAIN, "OCSP unusable with this GnuTLS library version");
1218 #endif
1219
1220 exim_gnutls_base_init_done = TRUE;
1221 }
1222
1223 if (host)
1224 {
1225 state = &state_client;
1226 memcpy(state, &exim_gnutls_state_init, sizeof(exim_gnutls_state_init));
1227 state->tlsp = &tls_out;
1228 DEBUG(D_tls) debug_printf("initialising GnuTLS client session\n");
1229 rc = gnutls_init(&state->session, GNUTLS_CLIENT);
1230 }
1231 else
1232 {
1233 state = &state_server;
1234 memcpy(state, &exim_gnutls_state_init, sizeof(exim_gnutls_state_init));
1235 state->tlsp = &tls_in;
1236 DEBUG(D_tls) debug_printf("initialising GnuTLS server session\n");
1237 rc = gnutls_init(&state->session, GNUTLS_SERVER);
1238 }
1239 exim_gnutls_err_check(US"gnutls_init");
1240
1241 state->host = host;
1242
1243 state->tls_certificate = certificate;
1244 state->tls_privatekey = privatekey;
1245 state->tls_require_ciphers = require_ciphers;
1246 state->tls_sni = sni;
1247 state->tls_verify_certificates = cas;
1248 state->tls_crl = crl;
1249
1250 /* This handles the variables that might get re-expanded after TLS SNI;
1251 that's tls_certificate, tls_privatekey, tls_verify_certificates, tls_crl */
1252
1253 DEBUG(D_tls)
1254 debug_printf("Expanding various TLS configuration options for session credentials.\n");
1255 if ((rc = tls_expand_session_files(state, errstr)) != OK) return rc;
1256
1257 /* These are all other parts of the x509_cred handling, since SNI in GnuTLS
1258 requires a new structure afterwards. */
1259
1260 if ((rc = tls_set_remaining_x509(state, errstr)) != OK) return rc;
1261
1262 /* set SNI in client, only */
1263 if (host)
1264 {
1265 if (!expand_check(sni, US"tls_out_sni", &state->tlsp->sni, errstr))
1266 return DEFER;
1267 if (state->tlsp->sni && *state->tlsp->sni)
1268 {
1269 DEBUG(D_tls)
1270 debug_printf("Setting TLS client SNI to \"%s\"\n", state->tlsp->sni);
1271 sz = Ustrlen(state->tlsp->sni);
1272 rc = gnutls_server_name_set(state->session,
1273 GNUTLS_NAME_DNS, state->tlsp->sni, sz);
1274 exim_gnutls_err_check(US"gnutls_server_name_set");
1275 }
1276 }
1277 else if (state->tls_sni)
1278 DEBUG(D_tls) debug_printf("*** PROBABLY A BUG *** " \
1279 "have an SNI set for a client [%s]\n", state->tls_sni);
1280
1281 /* This is the priority string support,
1282 http://www.gnutls.org/manual/html_node/Priority-Strings.html
1283 and replaces gnutls_require_kx, gnutls_require_mac & gnutls_require_protocols.
1284 This was backwards incompatible, but means Exim no longer needs to track
1285 all algorithms and provide string forms for them. */
1286
1287 want_default_priorities = TRUE;
1288
1289 if (state->tls_require_ciphers && *state->tls_require_ciphers)
1290 {
1291 if (!expand_check_tlsvar(tls_require_ciphers, errstr))
1292 return DEFER;
1293 if (state->exp_tls_require_ciphers && *state->exp_tls_require_ciphers)
1294 {
1295 DEBUG(D_tls) debug_printf("GnuTLS session cipher/priority \"%s\"\n",
1296 state->exp_tls_require_ciphers);
1297
1298 rc = gnutls_priority_init(&state->priority_cache,
1299 CS state->exp_tls_require_ciphers, &errpos);
1300 want_default_priorities = FALSE;
1301 p = state->exp_tls_require_ciphers;
1302 }
1303 }
1304 if (want_default_priorities)
1305 {
1306 DEBUG(D_tls)
1307 debug_printf("GnuTLS using default session cipher/priority \"%s\"\n",
1308 exim_default_gnutls_priority);
1309 rc = gnutls_priority_init(&state->priority_cache,
1310 exim_default_gnutls_priority, &errpos);
1311 p = US exim_default_gnutls_priority;
1312 }
1313
1314 exim_gnutls_err_check(string_sprintf(
1315 "gnutls_priority_init(%s) failed at offset %ld, \"%.6s..\"",
1316 p, errpos - CS p, errpos));
1317
1318 rc = gnutls_priority_set(state->session, state->priority_cache);
1319 exim_gnutls_err_check(US"gnutls_priority_set");
1320
1321 gnutls_db_set_cache_expiration(state->session, ssl_session_timeout);
1322
1323 /* Reduce security in favour of increased compatibility, if the admin
1324 decides to make that trade-off. */
1325 if (gnutls_compat_mode)
1326 {
1327 #if LIBGNUTLS_VERSION_NUMBER >= 0x020104
1328 DEBUG(D_tls) debug_printf("lowering GnuTLS security, compatibility mode\n");
1329 gnutls_session_enable_compatibility_mode(state->session);
1330 #else
1331 DEBUG(D_tls) debug_printf("Unable to set gnutls_compat_mode - GnuTLS version too old\n");
1332 #endif
1333 }
1334
1335 *caller_state = state;
1336 return OK;
1337 }
1338
1339
1340
1341 /*************************************************
1342 * Extract peer information *
1343 *************************************************/
1344
1345 /* Called from both server and client code.
1346 Only this is allowed to set state->peerdn and state->have_set_peerdn
1347 and we use that to detect double-calls.
1348
1349 NOTE: the state blocks last while the TLS connection is up, which is fine
1350 for logging in the server side, but for the client side, we log after teardown
1351 in src/deliver.c. While the session is up, we can twist about states and
1352 repoint tls_* globals, but those variables used for logging or other variable
1353 expansion that happens _after_ delivery need to have a longer life-time.
1354
1355 So for those, we get the data from POOL_PERM; the re-invoke guard keeps us from
1356 doing this more than once per generation of a state context. We set them in
1357 the state context, and repoint tls_* to them. After the state goes away, the
1358 tls_* copies of the pointers remain valid and client delivery logging is happy.
1359
1360 tls_certificate_verified is a BOOL, so the tls_peerdn and tls_cipher issues
1361 don't apply.
1362
1363 Arguments:
1364 state exim_gnutls_state_st *
1365 errstr pointer to error string
1366
1367 Returns: OK/DEFER/FAIL
1368 */
1369
1370 static int
1371 peer_status(exim_gnutls_state_st *state, uschar ** errstr)
1372 {
1373 uschar cipherbuf[256];
1374 const gnutls_datum_t *cert_list;
1375 int old_pool, rc;
1376 unsigned int cert_list_size = 0;
1377 gnutls_protocol_t protocol;
1378 gnutls_cipher_algorithm_t cipher;
1379 gnutls_kx_algorithm_t kx;
1380 gnutls_mac_algorithm_t mac;
1381 gnutls_certificate_type_t ct;
1382 gnutls_x509_crt_t crt;
1383 uschar *p, *dn_buf;
1384 size_t sz;
1385
1386 if (state->have_set_peerdn)
1387 return OK;
1388 state->have_set_peerdn = TRUE;
1389
1390 state->peerdn = NULL;
1391
1392 /* tls_cipher */
1393 cipher = gnutls_cipher_get(state->session);
1394 protocol = gnutls_protocol_get_version(state->session);
1395 mac = gnutls_mac_get(state->session);
1396 kx = gnutls_kx_get(state->session);
1397
1398 string_format(cipherbuf, sizeof(cipherbuf),
1399 "%s:%s:%d",
1400 gnutls_protocol_get_name(protocol),
1401 gnutls_cipher_suite_get_name(kx, cipher, mac),
1402 (int) gnutls_cipher_get_key_size(cipher) * 8);
1403
1404 /* I don't see a way that spaces could occur, in the current GnuTLS
1405 code base, but it was a concern in the old code and perhaps older GnuTLS
1406 releases did return "TLS 1.0"; play it safe, just in case. */
1407 for (p = cipherbuf; *p != '\0'; ++p)
1408 if (isspace(*p))
1409 *p = '-';
1410 old_pool = store_pool;
1411 store_pool = POOL_PERM;
1412 state->ciphersuite = string_copy(cipherbuf);
1413 store_pool = old_pool;
1414 state->tlsp->cipher = state->ciphersuite;
1415
1416 /* tls_peerdn */
1417 cert_list = gnutls_certificate_get_peers(state->session, &cert_list_size);
1418
1419 if (cert_list == NULL || cert_list_size == 0)
1420 {
1421 DEBUG(D_tls) debug_printf("TLS: no certificate from peer (%p & %d)\n",
1422 cert_list, cert_list_size);
1423 if (state->verify_requirement >= VERIFY_REQUIRED)
1424 return tls_error(US"certificate verification failed",
1425 "no certificate received from peer", state->host, errstr);
1426 return OK;
1427 }
1428
1429 ct = gnutls_certificate_type_get(state->session);
1430 if (ct != GNUTLS_CRT_X509)
1431 {
1432 const char *ctn = gnutls_certificate_type_get_name(ct);
1433 DEBUG(D_tls)
1434 debug_printf("TLS: peer cert not X.509 but instead \"%s\"\n", ctn);
1435 if (state->verify_requirement >= VERIFY_REQUIRED)
1436 return tls_error(US"certificate verification not possible, unhandled type",
1437 ctn, state->host, errstr);
1438 return OK;
1439 }
1440
1441 #define exim_gnutls_peer_err(Label) \
1442 do { \
1443 if (rc != GNUTLS_E_SUCCESS) \
1444 { \
1445 DEBUG(D_tls) debug_printf("TLS: peer cert problem: %s: %s\n", \
1446 (Label), gnutls_strerror(rc)); \
1447 if (state->verify_requirement >= VERIFY_REQUIRED) \
1448 return tls_error((Label), gnutls_strerror(rc), state->host, errstr); \
1449 return OK; \
1450 } \
1451 } while (0)
1452
1453 rc = import_cert(&cert_list[0], &crt);
1454 exim_gnutls_peer_err(US"cert 0");
1455
1456 state->tlsp->peercert = state->peercert = crt;
1457
1458 sz = 0;
1459 rc = gnutls_x509_crt_get_dn(crt, NULL, &sz);
1460 if (rc != GNUTLS_E_SHORT_MEMORY_BUFFER)
1461 {
1462 exim_gnutls_peer_err(US"getting size for cert DN failed");
1463 return FAIL; /* should not happen */
1464 }
1465 dn_buf = store_get_perm(sz);
1466 rc = gnutls_x509_crt_get_dn(crt, CS dn_buf, &sz);
1467 exim_gnutls_peer_err(US"failed to extract certificate DN [gnutls_x509_crt_get_dn(cert 0)]");
1468
1469 state->peerdn = dn_buf;
1470
1471 return OK;
1472 #undef exim_gnutls_peer_err
1473 }
1474
1475
1476
1477
1478 /*************************************************
1479 * Verify peer certificate *
1480 *************************************************/
1481
1482 /* Called from both server and client code.
1483 *Should* be using a callback registered with
1484 gnutls_certificate_set_verify_function() to fail the handshake if we dislike
1485 the peer information, but that's too new for some OSes.
1486
1487 Arguments:
1488 state exim_gnutls_state_st *
1489 errstr where to put an error message
1490
1491 Returns:
1492 FALSE if the session should be rejected
1493 TRUE if the cert is okay or we just don't care
1494 */
1495
1496 static BOOL
1497 verify_certificate(exim_gnutls_state_st *state, uschar ** errstr)
1498 {
1499 int rc;
1500 unsigned int verify;
1501
1502 *errstr = NULL;
1503
1504 if ((rc = peer_status(state, errstr)) != OK)
1505 {
1506 verify = GNUTLS_CERT_INVALID;
1507 *errstr = US"certificate not supplied";
1508 }
1509 else
1510 rc = gnutls_certificate_verify_peers2(state->session, &verify);
1511
1512 /* Handle the result of verification. INVALID seems to be set as well
1513 as REVOKED, but leave the test for both. */
1514
1515 if (rc < 0 ||
1516 verify & (GNUTLS_CERT_INVALID|GNUTLS_CERT_REVOKED)
1517 )
1518 {
1519 state->peer_cert_verified = FALSE;
1520 if (!*errstr)
1521 *errstr = verify & GNUTLS_CERT_REVOKED
1522 ? US"certificate revoked" : US"certificate invalid";
1523
1524 DEBUG(D_tls)
1525 debug_printf("TLS certificate verification failed (%s): peerdn=\"%s\"\n",
1526 *errstr, state->peerdn ? state->peerdn : US"<unset>");
1527
1528 if (state->verify_requirement >= VERIFY_REQUIRED)
1529 {
1530 gnutls_alert_send(state->session,
1531 GNUTLS_AL_FATAL, GNUTLS_A_BAD_CERTIFICATE);
1532 return FALSE;
1533 }
1534 DEBUG(D_tls)
1535 debug_printf("TLS verify failure overridden (host in tls_try_verify_hosts)\n");
1536 }
1537
1538 else
1539 {
1540 if (state->exp_tls_verify_cert_hostnames)
1541 {
1542 int sep = 0;
1543 const uschar * list = state->exp_tls_verify_cert_hostnames;
1544 uschar * name;
1545 while ((name = string_nextinlist(&list, &sep, NULL, 0)))
1546 if (gnutls_x509_crt_check_hostname(state->tlsp->peercert, CS name))
1547 break;
1548 if (!name)
1549 {
1550 DEBUG(D_tls)
1551 debug_printf("TLS certificate verification failed: cert name mismatch\n");
1552 if (state->verify_requirement >= VERIFY_REQUIRED)
1553 {
1554 gnutls_alert_send(state->session,
1555 GNUTLS_AL_FATAL, GNUTLS_A_BAD_CERTIFICATE);
1556 return FALSE;
1557 }
1558 return TRUE;
1559 }
1560 }
1561 state->peer_cert_verified = TRUE;
1562 DEBUG(D_tls) debug_printf("TLS certificate verified: peerdn=\"%s\"\n",
1563 state->peerdn ? state->peerdn : US"<unset>");
1564 }
1565
1566 state->tlsp->peerdn = state->peerdn;
1567
1568 return TRUE;
1569 }
1570
1571
1572
1573
1574 /* ------------------------------------------------------------------------ */
1575 /* Callbacks */
1576
1577 /* Logging function which can be registered with
1578 * gnutls_global_set_log_function()
1579 * gnutls_global_set_log_level() 0..9
1580 */
1581 #if EXIM_GNUTLS_LIBRARY_LOG_LEVEL >= 0
1582 static void
1583 exim_gnutls_logger_cb(int level, const char *message)
1584 {
1585 size_t len = strlen(message);
1586 if (len < 1)
1587 {
1588 DEBUG(D_tls) debug_printf("GnuTLS<%d> empty debug message\n", level);
1589 return;
1590 }
1591 DEBUG(D_tls) debug_printf("GnuTLS<%d>: %s%s", level, message,
1592 message[len-1] == '\n' ? "" : "\n");
1593 }
1594 #endif
1595
1596
1597 /* Called after client hello, should handle SNI work.
1598 This will always set tls_sni (state->received_sni) if available,
1599 and may trigger presenting different certificates,
1600 if state->trigger_sni_changes is TRUE.
1601
1602 Should be registered with
1603 gnutls_handshake_set_post_client_hello_function()
1604
1605 "This callback must return 0 on success or a gnutls error code to terminate the
1606 handshake.".
1607
1608 For inability to get SNI information, we return 0.
1609 We only return non-zero if re-setup failed.
1610 Only used for server-side TLS.
1611 */
1612
1613 static int
1614 exim_sni_handling_cb(gnutls_session_t session)
1615 {
1616 char sni_name[MAX_HOST_LEN];
1617 size_t data_len = MAX_HOST_LEN;
1618 exim_gnutls_state_st *state = &state_server;
1619 unsigned int sni_type;
1620 int rc, old_pool;
1621 uschar * dummy_errstr;
1622
1623 rc = gnutls_server_name_get(session, sni_name, &data_len, &sni_type, 0);
1624 if (rc != GNUTLS_E_SUCCESS)
1625 {
1626 DEBUG(D_tls) {
1627 if (rc == GNUTLS_E_REQUESTED_DATA_NOT_AVAILABLE)
1628 debug_printf("TLS: no SNI presented in handshake.\n");
1629 else
1630 debug_printf("TLS failure: gnutls_server_name_get(): %s [%d]\n",
1631 gnutls_strerror(rc), rc);
1632 }
1633 return 0;
1634 }
1635
1636 if (sni_type != GNUTLS_NAME_DNS)
1637 {
1638 DEBUG(D_tls) debug_printf("TLS: ignoring SNI of unhandled type %u\n", sni_type);
1639 return 0;
1640 }
1641
1642 /* We now have a UTF-8 string in sni_name */
1643 old_pool = store_pool;
1644 store_pool = POOL_PERM;
1645 state->received_sni = string_copyn(US sni_name, data_len);
1646 store_pool = old_pool;
1647
1648 /* We set this one now so that variable expansions below will work */
1649 state->tlsp->sni = state->received_sni;
1650
1651 DEBUG(D_tls) debug_printf("Received TLS SNI \"%s\"%s\n", sni_name,
1652 state->trigger_sni_changes ? "" : " (unused for certificate selection)");
1653
1654 if (!state->trigger_sni_changes)
1655 return 0;
1656
1657 if ((rc = tls_expand_session_files(state, &dummy_errstr)) != OK)
1658 {
1659 /* If the setup of certs/etc failed before handshake, TLS would not have
1660 been offered. The best we can do now is abort. */
1661 return GNUTLS_E_APPLICATION_ERROR_MIN;
1662 }
1663
1664 rc = tls_set_remaining_x509(state, &dummy_errstr);
1665 if (rc != OK) return GNUTLS_E_APPLICATION_ERROR_MIN;
1666
1667 return 0;
1668 }
1669
1670
1671
1672 #ifndef DISABLE_OCSP
1673
1674 static int
1675 server_ocsp_stapling_cb(gnutls_session_t session, void * ptr,
1676 gnutls_datum_t * ocsp_response)
1677 {
1678 int ret;
1679
1680 if ((ret = gnutls_load_file(ptr, ocsp_response)) < 0)
1681 {
1682 DEBUG(D_tls) debug_printf("Failed to load ocsp stapling file %s\n",
1683 CS ptr);
1684 tls_in.ocsp = OCSP_NOT_RESP;
1685 return GNUTLS_E_NO_CERTIFICATE_STATUS;
1686 }
1687
1688 tls_in.ocsp = OCSP_VFY_NOT_TRIED;
1689 return 0;
1690 }
1691
1692 #endif
1693
1694
1695 #ifndef DISABLE_EVENT
1696 /*
1697 We use this callback to get observability and detail-level control
1698 for an exim TLS connection (either direction), raising a tls:cert event
1699 for each cert in the chain presented by the peer. Any event
1700 can deny verification.
1701
1702 Return 0 for the handshake to continue or non-zero to terminate.
1703 */
1704
1705 static int
1706 verify_cb(gnutls_session_t session)
1707 {
1708 const gnutls_datum_t * cert_list;
1709 unsigned int cert_list_size = 0;
1710 gnutls_x509_crt_t crt;
1711 int rc;
1712 uschar * yield;
1713 exim_gnutls_state_st * state = gnutls_session_get_ptr(session);
1714
1715 cert_list = gnutls_certificate_get_peers(session, &cert_list_size);
1716 if (cert_list)
1717 while (cert_list_size--)
1718 {
1719 rc = import_cert(&cert_list[cert_list_size], &crt);
1720 if (rc != GNUTLS_E_SUCCESS)
1721 {
1722 DEBUG(D_tls) debug_printf("TLS: peer cert problem: depth %d: %s\n",
1723 cert_list_size, gnutls_strerror(rc));
1724 break;
1725 }
1726
1727 state->tlsp->peercert = crt;
1728 if ((yield = event_raise(state->event_action,
1729 US"tls:cert", string_sprintf("%d", cert_list_size))))
1730 {
1731 log_write(0, LOG_MAIN,
1732 "SSL verify denied by event-action: depth=%d: %s",
1733 cert_list_size, yield);
1734 return 1; /* reject */
1735 }
1736 state->tlsp->peercert = NULL;
1737 }
1738
1739 return 0;
1740 }
1741
1742 #endif
1743
1744
1745
1746 /* ------------------------------------------------------------------------ */
1747 /* Exported functions */
1748
1749
1750
1751
1752 /*************************************************
1753 * Start a TLS session in a server *
1754 *************************************************/
1755
1756 /* This is called when Exim is running as a server, after having received
1757 the STARTTLS command. It must respond to that command, and then negotiate
1758 a TLS session.
1759
1760 Arguments:
1761 require_ciphers list of allowed ciphers or NULL
1762 errstr pointer to error string
1763
1764 Returns: OK on success
1765 DEFER for errors before the start of the negotiation
1766 FAIL for errors during the negotiation; the server can't
1767 continue running.
1768 */
1769
1770 int
1771 tls_server_start(const uschar * require_ciphers, uschar ** errstr)
1772 {
1773 int rc;
1774 exim_gnutls_state_st * state = NULL;
1775
1776 /* Check for previous activation */
1777 if (tls_in.active >= 0)
1778 {
1779 tls_error(US"STARTTLS received after TLS started", "", NULL, errstr);
1780 smtp_printf("554 Already in TLS\r\n", FALSE);
1781 return FAIL;
1782 }
1783
1784 /* Initialize the library. If it fails, it will already have logged the error
1785 and sent an SMTP response. */
1786
1787 DEBUG(D_tls) debug_printf("initialising GnuTLS as a server\n");
1788
1789 if ((rc = tls_init(NULL, tls_certificate, tls_privatekey,
1790 NULL, tls_verify_certificates, tls_crl,
1791 require_ciphers, &state, errstr)) != OK) return rc;
1792
1793 /* If this is a host for which certificate verification is mandatory or
1794 optional, set up appropriately. */
1795
1796 if (verify_check_host(&tls_verify_hosts) == OK)
1797 {
1798 DEBUG(D_tls)
1799 debug_printf("TLS: a client certificate will be required.\n");
1800 state->verify_requirement = VERIFY_REQUIRED;
1801 gnutls_certificate_server_set_request(state->session, GNUTLS_CERT_REQUIRE);
1802 }
1803 else if (verify_check_host(&tls_try_verify_hosts) == OK)
1804 {
1805 DEBUG(D_tls)
1806 debug_printf("TLS: a client certificate will be requested but not required.\n");
1807 state->verify_requirement = VERIFY_OPTIONAL;
1808 gnutls_certificate_server_set_request(state->session, GNUTLS_CERT_REQUEST);
1809 }
1810 else
1811 {
1812 DEBUG(D_tls)
1813 debug_printf("TLS: a client certificate will not be requested.\n");
1814 state->verify_requirement = VERIFY_NONE;
1815 gnutls_certificate_server_set_request(state->session, GNUTLS_CERT_IGNORE);
1816 }
1817
1818 #ifndef DISABLE_EVENT
1819 if (event_action)
1820 {
1821 state->event_action = event_action;
1822 gnutls_session_set_ptr(state->session, state);
1823 gnutls_certificate_set_verify_function(state->x509_cred, verify_cb);
1824 }
1825 #endif
1826
1827 /* Register SNI handling; always, even if not in tls_certificate, so that the
1828 expansion variable $tls_sni is always available. */
1829
1830 gnutls_handshake_set_post_client_hello_function(state->session,
1831 exim_sni_handling_cb);
1832
1833 /* Set context and tell client to go ahead, except in the case of TLS startup
1834 on connection, where outputting anything now upsets the clients and tends to
1835 make them disconnect. We need to have an explicit fflush() here, to force out
1836 the response. Other smtp_printf() calls do not need it, because in non-TLS
1837 mode, the fflush() happens when smtp_getc() is called. */
1838
1839 if (!state->tlsp->on_connect)
1840 {
1841 smtp_printf("220 TLS go ahead\r\n", FALSE);
1842 fflush(smtp_out);
1843 }
1844
1845 /* Now negotiate the TLS session. We put our own timer on it, since it seems
1846 that the GnuTLS library doesn't. */
1847
1848 gnutls_transport_set_ptr2(state->session,
1849 (gnutls_transport_ptr_t)(long) fileno(smtp_in),
1850 (gnutls_transport_ptr_t)(long) fileno(smtp_out));
1851 state->fd_in = fileno(smtp_in);
1852 state->fd_out = fileno(smtp_out);
1853
1854 sigalrm_seen = FALSE;
1855 if (smtp_receive_timeout > 0) alarm(smtp_receive_timeout);
1856 do
1857 rc = gnutls_handshake(state->session);
1858 while (rc == GNUTLS_E_AGAIN || rc == GNUTLS_E_INTERRUPTED && !sigalrm_seen);
1859 alarm(0);
1860
1861 if (rc != GNUTLS_E_SUCCESS)
1862 {
1863 /* It seems that, except in the case of a timeout, we have to close the
1864 connection right here; otherwise if the other end is running OpenSSL it hangs
1865 until the server times out. */
1866
1867 if (sigalrm_seen)
1868 {
1869 tls_error(US"gnutls_handshake", "timed out", NULL, errstr);
1870 gnutls_db_remove_session(state->session);
1871 }
1872 else
1873 {
1874 tls_error(US"gnutls_handshake", gnutls_strerror(rc), NULL, errstr);
1875 (void) gnutls_alert_send_appropriate(state->session, rc);
1876 gnutls_deinit(state->session);
1877 gnutls_certificate_free_credentials(state->x509_cred);
1878 millisleep(500);
1879 shutdown(state->fd_out, SHUT_WR);
1880 for (rc = 1024; fgetc(smtp_in) != EOF && rc > 0; ) rc--; /* drain skt */
1881 (void)fclose(smtp_out);
1882 (void)fclose(smtp_in);
1883 smtp_out = smtp_in = NULL;
1884 }
1885
1886 return FAIL;
1887 }
1888
1889 DEBUG(D_tls) debug_printf("gnutls_handshake was successful\n");
1890
1891 /* Verify after the fact */
1892
1893 if ( state->verify_requirement != VERIFY_NONE
1894 && !verify_certificate(state, errstr))
1895 {
1896 if (state->verify_requirement != VERIFY_OPTIONAL)
1897 {
1898 (void) tls_error(US"certificate verification failed", *errstr, NULL, errstr);
1899 return FAIL;
1900 }
1901 DEBUG(D_tls)
1902 debug_printf("TLS: continuing on only because verification was optional, after: %s\n",
1903 *errstr);
1904 }
1905
1906 /* Figure out peer DN, and if authenticated, etc. */
1907
1908 if ((rc = peer_status(state, NULL)) != OK) return rc;
1909
1910 /* Sets various Exim expansion variables; always safe within server */
1911
1912 extract_exim_vars_from_tls_state(state);
1913
1914 /* TLS has been set up. Adjust the input functions to read via TLS,
1915 and initialize appropriately. */
1916
1917 state->xfer_buffer = store_malloc(ssl_xfer_buffer_size);
1918
1919 receive_getc = tls_getc;
1920 receive_getbuf = tls_getbuf;
1921 receive_get_cache = tls_get_cache;
1922 receive_ungetc = tls_ungetc;
1923 receive_feof = tls_feof;
1924 receive_ferror = tls_ferror;
1925 receive_smtp_buffered = tls_smtp_buffered;
1926
1927 return OK;
1928 }
1929
1930
1931
1932
1933 static void
1934 tls_client_setup_hostname_checks(host_item * host, exim_gnutls_state_st * state,
1935 smtp_transport_options_block * ob)
1936 {
1937 if (verify_check_given_host(&ob->tls_verify_cert_hostnames, host) == OK)
1938 {
1939 state->exp_tls_verify_cert_hostnames =
1940 #ifdef SUPPORT_I18N
1941 string_domain_utf8_to_alabel(host->name, NULL);
1942 #else
1943 host->name;
1944 #endif
1945 DEBUG(D_tls)
1946 debug_printf("TLS: server cert verification includes hostname: \"%s\".\n",
1947 state->exp_tls_verify_cert_hostnames);
1948 }
1949 }
1950
1951
1952 /*************************************************
1953 * Start a TLS session in a client *
1954 *************************************************/
1955
1956 /* Called from the smtp transport after STARTTLS has been accepted.
1957
1958 Arguments:
1959 fd the fd of the connection
1960 host connected host (for messages)
1961 addr the first address (not used)
1962 tb transport (always smtp)
1963
1964 errstr error string pointer
1965
1966 Returns: OK/DEFER/FAIL (because using common functions),
1967 but for a client, DEFER and FAIL have the same meaning
1968 */
1969
1970 int
1971 tls_client_start(int fd, host_item *host,
1972 address_item *addr ARG_UNUSED,
1973 transport_instance * tb,
1974 #ifdef EXPERIMENTAL_DANE
1975 dns_answer * tlsa_dnsa ARG_UNUSED,
1976 #endif
1977 uschar ** errstr)
1978 {
1979 smtp_transport_options_block *ob =
1980 (smtp_transport_options_block *)tb->options_block;
1981 int rc;
1982 exim_gnutls_state_st *state = NULL;
1983 #ifndef DISABLE_OCSP
1984 BOOL require_ocsp =
1985 verify_check_given_host(&ob->hosts_require_ocsp, host) == OK;
1986 BOOL request_ocsp = require_ocsp ? TRUE
1987 : verify_check_given_host(&ob->hosts_request_ocsp, host) == OK;
1988 #endif
1989
1990 DEBUG(D_tls) debug_printf("initialising GnuTLS as a client on fd %d\n", fd);
1991
1992 if ((rc = tls_init(host, ob->tls_certificate, ob->tls_privatekey,
1993 ob->tls_sni, ob->tls_verify_certificates, ob->tls_crl,
1994 ob->tls_require_ciphers, &state, errstr)) != OK)
1995 return rc;
1996
1997 {
1998 int dh_min_bits = ob->tls_dh_min_bits;
1999 if (dh_min_bits < EXIM_CLIENT_DH_MIN_MIN_BITS)
2000 {
2001 DEBUG(D_tls)
2002 debug_printf("WARNING: tls_dh_min_bits far too low,"
2003 " clamping %d up to %d\n",
2004 dh_min_bits, EXIM_CLIENT_DH_MIN_MIN_BITS);
2005 dh_min_bits = EXIM_CLIENT_DH_MIN_MIN_BITS;
2006 }
2007
2008 DEBUG(D_tls) debug_printf("Setting D-H prime minimum"
2009 " acceptable bits to %d\n",
2010 dh_min_bits);
2011 gnutls_dh_set_prime_bits(state->session, dh_min_bits);
2012 }
2013
2014 /* Stick to the old behaviour for compatibility if tls_verify_certificates is
2015 set but both tls_verify_hosts and tls_try_verify_hosts are unset. Check only
2016 the specified host patterns if one of them is defined */
2017
2018 if ( ( state->exp_tls_verify_certificates
2019 && !ob->tls_verify_hosts
2020 && (!ob->tls_try_verify_hosts || !*ob->tls_try_verify_hosts)
2021 )
2022 || verify_check_given_host(&ob->tls_verify_hosts, host) == OK
2023 )
2024 {
2025 tls_client_setup_hostname_checks(host, state, ob);
2026 DEBUG(D_tls)
2027 debug_printf("TLS: server certificate verification required.\n");
2028 state->verify_requirement = VERIFY_REQUIRED;
2029 gnutls_certificate_server_set_request(state->session, GNUTLS_CERT_REQUIRE);
2030 }
2031 else if (verify_check_given_host(&ob->tls_try_verify_hosts, host) == OK)
2032 {
2033 tls_client_setup_hostname_checks(host, state, ob);
2034 DEBUG(D_tls)
2035 debug_printf("TLS: server certificate verification optional.\n");
2036 state->verify_requirement = VERIFY_OPTIONAL;
2037 gnutls_certificate_server_set_request(state->session, GNUTLS_CERT_REQUEST);
2038 }
2039 else
2040 {
2041 DEBUG(D_tls)
2042 debug_printf("TLS: server certificate verification not required.\n");
2043 state->verify_requirement = VERIFY_NONE;
2044 gnutls_certificate_server_set_request(state->session, GNUTLS_CERT_IGNORE);
2045 }
2046
2047 #ifndef DISABLE_OCSP
2048 /* supported since GnuTLS 3.1.3 */
2049 if (request_ocsp)
2050 {
2051 DEBUG(D_tls) debug_printf("TLS: will request OCSP stapling\n");
2052 if ((rc = gnutls_ocsp_status_request_enable_client(state->session,
2053 NULL, 0, NULL)) != OK)
2054 return tls_error(US"cert-status-req",
2055 gnutls_strerror(rc), state->host, errstr);
2056 tls_out.ocsp = OCSP_NOT_RESP;
2057 }
2058 #endif
2059
2060 #ifndef DISABLE_EVENT
2061 if (tb->event_action)
2062 {
2063 state->event_action = tb->event_action;
2064 gnutls_session_set_ptr(state->session, state);
2065 gnutls_certificate_set_verify_function(state->x509_cred, verify_cb);
2066 }
2067 #endif
2068
2069 gnutls_transport_set_ptr(state->session, (gnutls_transport_ptr_t)(long) fd);
2070 state->fd_in = fd;
2071 state->fd_out = fd;
2072
2073 DEBUG(D_tls) debug_printf("about to gnutls_handshake\n");
2074 /* There doesn't seem to be a built-in timeout on connection. */
2075
2076 sigalrm_seen = FALSE;
2077 alarm(ob->command_timeout);
2078 do
2079 {
2080 rc = gnutls_handshake(state->session);
2081 } while ((rc == GNUTLS_E_AGAIN) ||
2082 (rc == GNUTLS_E_INTERRUPTED && !sigalrm_seen));
2083 alarm(0);
2084
2085 if (rc != GNUTLS_E_SUCCESS)
2086 if (sigalrm_seen)
2087 {
2088 gnutls_alert_send(state->session, GNUTLS_AL_FATAL, GNUTLS_A_USER_CANCELED);
2089 return tls_error(US"gnutls_handshake", "timed out", state->host, errstr);
2090 }
2091 else
2092 return tls_error(US"gnutls_handshake", gnutls_strerror(rc), state->host, errstr);
2093
2094 DEBUG(D_tls) debug_printf("gnutls_handshake was successful\n");
2095
2096 /* Verify late */
2097
2098 if (state->verify_requirement != VERIFY_NONE &&
2099 !verify_certificate(state, errstr))
2100 return tls_error(US"certificate verification failed", *errstr, state->host, errstr);
2101
2102 #ifndef DISABLE_OCSP
2103 if (require_ocsp)
2104 {
2105 DEBUG(D_tls)
2106 {
2107 gnutls_datum_t stapling;
2108 gnutls_ocsp_resp_t resp;
2109 gnutls_datum_t printed;
2110 if ( (rc= gnutls_ocsp_status_request_get(state->session, &stapling)) == 0
2111 && (rc= gnutls_ocsp_resp_init(&resp)) == 0
2112 && (rc= gnutls_ocsp_resp_import(resp, &stapling)) == 0
2113 && (rc= gnutls_ocsp_resp_print(resp, GNUTLS_OCSP_PRINT_FULL, &printed)) == 0
2114 )
2115 {
2116 debug_printf("%.4096s", printed.data);
2117 gnutls_free(printed.data);
2118 }
2119 else
2120 (void) tls_error(US"ocsp decode", gnutls_strerror(rc), state->host, errstr);
2121 }
2122
2123 if (gnutls_ocsp_status_request_is_checked(state->session, 0) == 0)
2124 {
2125 tls_out.ocsp = OCSP_FAILED;
2126 return tls_error(US"certificate status check failed", NULL, state->host, errstr);
2127 }
2128 DEBUG(D_tls) debug_printf("Passed OCSP checking\n");
2129 tls_out.ocsp = OCSP_VFIED;
2130 }
2131 #endif
2132
2133 /* Figure out peer DN, and if authenticated, etc. */
2134
2135 if ((rc = peer_status(state, errstr)) != OK)
2136 return rc;
2137
2138 /* Sets various Exim expansion variables; may need to adjust for ACL callouts */
2139
2140 extract_exim_vars_from_tls_state(state);
2141
2142 return OK;
2143 }
2144
2145
2146
2147
2148 /*************************************************
2149 * Close down a TLS session *
2150 *************************************************/
2151
2152 /* This is also called from within a delivery subprocess forked from the
2153 daemon, to shut down the TLS library, without actually doing a shutdown (which
2154 would tamper with the TLS session in the parent process).
2155
2156 Arguments: TRUE if gnutls_bye is to be called
2157 Returns: nothing
2158 */
2159
2160 void
2161 tls_close(BOOL is_server, BOOL shutdown)
2162 {
2163 exim_gnutls_state_st *state = is_server ? &state_server : &state_client;
2164
2165 if (!state->tlsp || state->tlsp->active < 0) return; /* TLS was not active */
2166
2167 if (shutdown)
2168 {
2169 DEBUG(D_tls) debug_printf("tls_close(): shutting down TLS\n");
2170 gnutls_bye(state->session, GNUTLS_SHUT_WR);
2171 }
2172
2173 gnutls_deinit(state->session);
2174 gnutls_certificate_free_credentials(state->x509_cred);
2175
2176
2177 state->tlsp->active = -1;
2178 memcpy(state, &exim_gnutls_state_init, sizeof(exim_gnutls_state_init));
2179
2180 if ((state_server.session == NULL) && (state_client.session == NULL))
2181 {
2182 gnutls_global_deinit();
2183 exim_gnutls_base_init_done = FALSE;
2184 }
2185 }
2186
2187
2188
2189
2190 static BOOL
2191 tls_refill(unsigned lim)
2192 {
2193 exim_gnutls_state_st * state = &state_server;
2194 ssize_t inbytes;
2195
2196 DEBUG(D_tls) debug_printf("Calling gnutls_record_recv(%p, %p, %u)\n",
2197 state->session, state->xfer_buffer, ssl_xfer_buffer_size);
2198
2199 if (smtp_receive_timeout > 0) alarm(smtp_receive_timeout);
2200 inbytes = gnutls_record_recv(state->session, state->xfer_buffer,
2201 MIN(ssl_xfer_buffer_size, lim));
2202 alarm(0);
2203
2204 /* Timeouts do not get this far; see command_timeout_handler().
2205 A zero-byte return appears to mean that the TLS session has been
2206 closed down, not that the socket itself has been closed down. Revert to
2207 non-TLS handling. */
2208
2209 if (sigalrm_seen)
2210 {
2211 DEBUG(D_tls) debug_printf("Got tls read timeout\n");
2212 state->xfer_error = 1;
2213 return FALSE;
2214 }
2215
2216 else if (inbytes == 0)
2217 {
2218 DEBUG(D_tls) debug_printf("Got TLS_EOF\n");
2219
2220 receive_getc = smtp_getc;
2221 receive_getbuf = smtp_getbuf;
2222 receive_get_cache = smtp_get_cache;
2223 receive_ungetc = smtp_ungetc;
2224 receive_feof = smtp_feof;
2225 receive_ferror = smtp_ferror;
2226 receive_smtp_buffered = smtp_buffered;
2227
2228 gnutls_deinit(state->session);
2229 gnutls_certificate_free_credentials(state->x509_cred);
2230
2231 state->session = NULL;
2232 state->tlsp->active = -1;
2233 state->tlsp->bits = 0;
2234 state->tlsp->certificate_verified = FALSE;
2235 tls_channelbinding_b64 = NULL;
2236 state->tlsp->cipher = NULL;
2237 state->tlsp->peercert = NULL;
2238 state->tlsp->peerdn = NULL;
2239
2240 return FALSE;
2241 }
2242
2243 /* Handle genuine errors */
2244
2245 else if (inbytes < 0)
2246 {
2247 record_io_error(state, (int) inbytes, US"recv", NULL);
2248 state->xfer_error = 1;
2249 return FALSE;
2250 }
2251 #ifndef DISABLE_DKIM
2252 dkim_exim_verify_feed(state->xfer_buffer, inbytes);
2253 #endif
2254 state->xfer_buffer_hwm = (int) inbytes;
2255 state->xfer_buffer_lwm = 0;
2256 return TRUE;
2257 }
2258
2259 /*************************************************
2260 * TLS version of getc *
2261 *************************************************/
2262
2263 /* This gets the next byte from the TLS input buffer. If the buffer is empty,
2264 it refills the buffer via the GnuTLS reading function.
2265 Only used by the server-side TLS.
2266
2267 This feeds DKIM and should be used for all message-body reads.
2268
2269 Arguments: lim Maximum amount to read/bufffer
2270 Returns: the next character or EOF
2271 */
2272
2273 int
2274 tls_getc(unsigned lim)
2275 {
2276 exim_gnutls_state_st * state = &state_server;
2277
2278 if (state->xfer_buffer_lwm >= state->xfer_buffer_hwm)
2279 if (!tls_refill(lim))
2280 return state->xfer_error ? EOF : smtp_getc(lim);
2281
2282 /* Something in the buffer; return next uschar */
2283
2284 return state->xfer_buffer[state->xfer_buffer_lwm++];
2285 }
2286
2287 uschar *
2288 tls_getbuf(unsigned * len)
2289 {
2290 exim_gnutls_state_st * state = &state_server;
2291 unsigned size;
2292 uschar * buf;
2293
2294 if (state->xfer_buffer_lwm >= state->xfer_buffer_hwm)
2295 if (!tls_refill(*len))
2296 {
2297 if (!state->xfer_error) return smtp_getbuf(len);
2298 *len = 0;
2299 return NULL;
2300 }
2301
2302 if ((size = state->xfer_buffer_hwm - state->xfer_buffer_lwm) > *len)
2303 size = *len;
2304 buf = &state->xfer_buffer[state->xfer_buffer_lwm];
2305 state->xfer_buffer_lwm += size;
2306 *len = size;
2307 return buf;
2308 }
2309
2310
2311 void
2312 tls_get_cache()
2313 {
2314 #ifndef DISABLE_DKIM
2315 exim_gnutls_state_st * state = &state_server;
2316 int n = state->xfer_buffer_hwm - state->xfer_buffer_lwm;
2317 if (n > 0)
2318 dkim_exim_verify_feed(state->xfer_buffer+state->xfer_buffer_lwm, n);
2319 #endif
2320 }
2321
2322
2323 BOOL
2324 tls_could_read(void)
2325 {
2326 return state_server.xfer_buffer_lwm < state_server.xfer_buffer_hwm
2327 || gnutls_record_check_pending(state_server.session) > 0;
2328 }
2329
2330
2331
2332
2333 /*************************************************
2334 * Read bytes from TLS channel *
2335 *************************************************/
2336
2337 /* This does not feed DKIM, so if the caller uses this for reading message body,
2338 then the caller must feed DKIM.
2339
2340 Arguments:
2341 buff buffer of data
2342 len size of buffer
2343
2344 Returns: the number of bytes read
2345 -1 after a failed read
2346 */
2347
2348 int
2349 tls_read(BOOL is_server, uschar *buff, size_t len)
2350 {
2351 exim_gnutls_state_st *state = is_server ? &state_server : &state_client;
2352 ssize_t inbytes;
2353
2354 if (len > INT_MAX)
2355 len = INT_MAX;
2356
2357 if (state->xfer_buffer_lwm < state->xfer_buffer_hwm)
2358 DEBUG(D_tls)
2359 debug_printf("*** PROBABLY A BUG *** " \
2360 "tls_read() called with data in the tls_getc() buffer, %d ignored\n",
2361 state->xfer_buffer_hwm - state->xfer_buffer_lwm);
2362
2363 DEBUG(D_tls)
2364 debug_printf("Calling gnutls_record_recv(%p, %p, " SIZE_T_FMT ")\n",
2365 state->session, buff, len);
2366
2367 inbytes = gnutls_record_recv(state->session, buff, len);
2368 if (inbytes > 0) return inbytes;
2369 if (inbytes == 0)
2370 {
2371 DEBUG(D_tls) debug_printf("Got TLS_EOF\n");
2372 }
2373 else record_io_error(state, (int)inbytes, US"recv", NULL);
2374
2375 return -1;
2376 }
2377
2378
2379
2380
2381 /*************************************************
2382 * Write bytes down TLS channel *
2383 *************************************************/
2384
2385 /*
2386 Arguments:
2387 is_server channel specifier
2388 buff buffer of data
2389 len number of bytes
2390 more more data expected soon
2391
2392 Returns: the number of bytes after a successful write,
2393 -1 after a failed write
2394 */
2395
2396 int
2397 tls_write(BOOL is_server, const uschar *buff, size_t len, BOOL more)
2398 {
2399 ssize_t outbytes;
2400 size_t left = len;
2401 exim_gnutls_state_st *state = is_server ? &state_server : &state_client;
2402 #ifdef SUPPORT_CORK
2403 static BOOL corked = FALSE;
2404
2405 if (more && !corked) gnutls_record_cork(state->session);
2406 #endif
2407
2408 DEBUG(D_tls) debug_printf("%s(%p, " SIZE_T_FMT "%s)\n", __FUNCTION__,
2409 buff, left, more ? ", more" : "");
2410
2411 while (left > 0)
2412 {
2413 DEBUG(D_tls) debug_printf("gnutls_record_send(SSL, %p, " SIZE_T_FMT ")\n",
2414 buff, left);
2415 outbytes = gnutls_record_send(state->session, buff, left);
2416
2417 DEBUG(D_tls) debug_printf("outbytes=" SSIZE_T_FMT "\n", outbytes);
2418 if (outbytes < 0)
2419 {
2420 record_io_error(state, outbytes, US"send", NULL);
2421 return -1;
2422 }
2423 if (outbytes == 0)
2424 {
2425 record_io_error(state, 0, US"send", US"TLS channel closed on write");
2426 return -1;
2427 }
2428
2429 left -= outbytes;
2430 buff += outbytes;
2431 }
2432
2433 if (len > INT_MAX)
2434 {
2435 DEBUG(D_tls)
2436 debug_printf("Whoops! Wrote more bytes (" SIZE_T_FMT ") than INT_MAX\n",
2437 len);
2438 len = INT_MAX;
2439 }
2440
2441 #ifdef SUPPORT_CORK
2442 if (more != corked)
2443 {
2444 if (!more) (void) gnutls_record_uncork(state->session, 0);
2445 corked = more;
2446 }
2447 #endif
2448
2449 return (int) len;
2450 }
2451
2452
2453
2454
2455 /*************************************************
2456 * Random number generation *
2457 *************************************************/
2458
2459 /* Pseudo-random number generation. The result is not expected to be
2460 cryptographically strong but not so weak that someone will shoot themselves
2461 in the foot using it as a nonce in input in some email header scheme or
2462 whatever weirdness they'll twist this into. The result should handle fork()
2463 and avoid repeating sequences. OpenSSL handles that for us.
2464
2465 Arguments:
2466 max range maximum
2467 Returns a random number in range [0, max-1]
2468 */
2469
2470 #ifdef HAVE_GNUTLS_RND
2471 int
2472 vaguely_random_number(int max)
2473 {
2474 unsigned int r;
2475 int i, needed_len;
2476 uschar *p;
2477 uschar smallbuf[sizeof(r)];
2478
2479 if (max <= 1)
2480 return 0;
2481
2482 needed_len = sizeof(r);
2483 /* Don't take 8 times more entropy than needed if int is 8 octets and we were
2484 * asked for a number less than 10. */
2485 for (r = max, i = 0; r; ++i)
2486 r >>= 1;
2487 i = (i + 7) / 8;
2488 if (i < needed_len)
2489 needed_len = i;
2490
2491 i = gnutls_rnd(GNUTLS_RND_NONCE, smallbuf, needed_len);
2492 if (i < 0)
2493 {
2494 DEBUG(D_all) debug_printf("gnutls_rnd() failed, using fallback.\n");
2495 return vaguely_random_number_fallback(max);
2496 }
2497 r = 0;
2498 for (p = smallbuf; needed_len; --needed_len, ++p)
2499 {
2500 r *= 256;
2501 r += *p;
2502 }
2503
2504 /* We don't particularly care about weighted results; if someone wants
2505 * smooth distribution and cares enough then they should submit a patch then. */
2506 return r % max;
2507 }
2508 #else /* HAVE_GNUTLS_RND */
2509 int
2510 vaguely_random_number(int max)
2511 {
2512 return vaguely_random_number_fallback(max);
2513 }
2514 #endif /* HAVE_GNUTLS_RND */
2515
2516
2517
2518
2519 /*************************************************
2520 * Let tls_require_ciphers be checked at startup *
2521 *************************************************/
2522
2523 /* The tls_require_ciphers option, if set, must be something which the
2524 library can parse.
2525
2526 Returns: NULL on success, or error message
2527 */
2528
2529 uschar *
2530 tls_validate_require_cipher(void)
2531 {
2532 int rc;
2533 uschar *expciphers = NULL;
2534 gnutls_priority_t priority_cache;
2535 const char *errpos;
2536 uschar * dummy_errstr;
2537
2538 #define validate_check_rc(Label) do { \
2539 if (rc != GNUTLS_E_SUCCESS) { if (exim_gnutls_base_init_done) gnutls_global_deinit(); \
2540 return string_sprintf("%s failed: %s", (Label), gnutls_strerror(rc)); } } while (0)
2541 #define return_deinit(Label) do { gnutls_global_deinit(); return (Label); } while (0)
2542
2543 if (exim_gnutls_base_init_done)
2544 log_write(0, LOG_MAIN|LOG_PANIC,
2545 "already initialised GnuTLS, Exim developer bug");
2546
2547 #ifdef HAVE_GNUTLS_PKCS11
2548 if (!gnutls_allow_auto_pkcs11)
2549 {
2550 rc = gnutls_pkcs11_init(GNUTLS_PKCS11_FLAG_MANUAL, NULL);
2551 validate_check_rc(US"gnutls_pkcs11_init");
2552 }
2553 #endif
2554 rc = gnutls_global_init();
2555 validate_check_rc(US"gnutls_global_init()");
2556 exim_gnutls_base_init_done = TRUE;
2557
2558 if (!(tls_require_ciphers && *tls_require_ciphers))
2559 return_deinit(NULL);
2560
2561 if (!expand_check(tls_require_ciphers, US"tls_require_ciphers", &expciphers,
2562 &dummy_errstr))
2563 return_deinit(US"failed to expand tls_require_ciphers");
2564
2565 if (!(expciphers && *expciphers))
2566 return_deinit(NULL);
2567
2568 DEBUG(D_tls)
2569 debug_printf("tls_require_ciphers expands to \"%s\"\n", expciphers);
2570
2571 rc = gnutls_priority_init(&priority_cache, CS expciphers, &errpos);
2572 validate_check_rc(string_sprintf(
2573 "gnutls_priority_init(%s) failed at offset %ld, \"%.8s..\"",
2574 expciphers, errpos - CS expciphers, errpos));
2575
2576 #undef return_deinit
2577 #undef validate_check_rc
2578 gnutls_global_deinit();
2579
2580 return NULL;
2581 }
2582
2583
2584
2585
2586 /*************************************************
2587 * Report the library versions. *
2588 *************************************************/
2589
2590 /* See a description in tls-openssl.c for an explanation of why this exists.
2591
2592 Arguments: a FILE* to print the results to
2593 Returns: nothing
2594 */
2595
2596 void
2597 tls_version_report(FILE *f)
2598 {
2599 fprintf(f, "Library version: GnuTLS: Compile: %s\n"
2600 " Runtime: %s\n",
2601 LIBGNUTLS_VERSION,
2602 gnutls_check_version(NULL));
2603 }
2604
2605 /* vi: aw ai sw=2
2606 */
2607 /* End of tls-gnu.c */