ARC: relax restriction on building without SPF
[exim.git] / src / src / arc.c
CommitLineData
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1/*************************************************
2* Exim - an Internet mail transport agent *
3*************************************************/
4/* Experimental ARC support for Exim
5 Copyright (c) Jeremy Harris 2018
6 License: GPL
7*/
8
9#include "exim.h"
2b2cfa83 10# if defined DISABLE_DKIM
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11# error DKIM must also be enabled for ARC
12# else
13
14# include "functions.h"
15# include "pdkim/pdkim.h"
16# include "pdkim/signing.h"
17
18extern pdkim_ctx * dkim_verify_ctx;
19extern pdkim_ctx dkim_sign_ctx;
20
a93dbf44 21#define ARC_SIGN_OPT_TSTAMP BIT(0)
0e83c148
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22#define ARC_SIGN_OPT_EXPIRE BIT(1)
23
24#define ARC_SIGN_DEFAULT_EXPIRE_DELTA (60 * 60 * 24 * 30) /* one month */
a93dbf44 25
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26/******************************************************************************/
27
28typedef struct hdr_rlist {
29 struct hdr_rlist * prev;
30 BOOL used;
31 header_line * h;
32} hdr_rlist;
33
34typedef struct arc_line {
35 header_line * complete; /* including the header name; nul-term */
36 uschar * relaxed;
37
38 /* identified tag contents */
39 /*XXX t= for AS? */
40 blob i;
41 blob cv;
42 blob a;
43 blob b;
44 blob bh;
45 blob d;
46 blob h;
47 blob s;
48 blob c;
49 blob l;
50
51 /* tag content sub-portions */
52 blob a_algo;
53 blob a_hash;
54
55 blob c_head;
56 blob c_body;
57
58 /* modified copy of b= field in line */
59 blob rawsig_no_b_val;
60} arc_line;
61
62typedef struct arc_set {
63 struct arc_set * next;
64 struct arc_set * prev;
65
66 unsigned instance;
67 arc_line * hdr_aar;
68 arc_line * hdr_ams;
69 arc_line * hdr_as;
70
93c931f8 71 const uschar * ams_verify_done;
617d3932
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72 BOOL ams_verify_passed;
73} arc_set;
74
75typedef struct arc_ctx {
76 arc_set * arcset_chain;
77 arc_set * arcset_chain_last;
78} arc_ctx;
79
80#define ARC_HDR_AAR US"ARC-Authentication-Results:"
81#define ARC_HDRLEN_AAR 27
82#define ARC_HDR_AMS US"ARC-Message-Signature:"
83#define ARC_HDRLEN_AMS 22
84#define ARC_HDR_AS US"ARC-Seal:"
85#define ARC_HDRLEN_AS 9
86#define HDR_AR US"Authentication-Results:"
87#define HDRLEN_AR 23
88
0e83c148
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89static time_t now;
90static time_t expire;
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91static hdr_rlist * headers_rlist;
92static arc_ctx arc_sign_ctx = { NULL };
9cffa436 93static arc_ctx arc_verify_ctx = { NULL };
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94
95
96/******************************************************************************/
97
98
99/* Get the instance number from the header.
100Return 0 on error */
101static unsigned
102arc_instance_from_hdr(const arc_line * al)
103{
978e78de 104const uschar * s = al->i.data;
617d3932 105if (!s || !al->i.len) return 0;
978e78de 106return (unsigned) atoi(CCS s);
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107}
108
109
110static uschar *
111skip_fws(uschar * s)
112{
113uschar c = *s;
114while (c && (c == ' ' || c == '\t' || c == '\n' || c == '\r')) c = *++s;
115return s;
116}
117
118
119/* Locate instance struct on chain, inserting a new one if
120needed. The chain is in increasing-instance-number order
121by the "next" link, and we have a "prev" link also.
122*/
123
124static arc_set *
125arc_find_set(arc_ctx * ctx, unsigned i)
126{
127arc_set ** pas, * as, * next, * prev;
128
129for (pas = &ctx->arcset_chain, prev = NULL, next = ctx->arcset_chain;
130 as = *pas; pas = &as->next)
131 {
132 if (as->instance > i) break;
133 if (as->instance == i)
134 {
135 DEBUG(D_acl) debug_printf("ARC: existing instance %u\n", i);
136 return as;
137 }
138 next = as->next;
139 prev = as;
140 }
141
142DEBUG(D_acl) debug_printf("ARC: new instance %u\n", i);
f3ebb786 143*pas = as = store_get(sizeof(arc_set), FALSE);
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144memset(as, 0, sizeof(arc_set));
145as->next = next;
146as->prev = prev;
147as->instance = i;
148if (next)
149 next->prev = as;
150else
151 ctx->arcset_chain_last = as;
152return as;
153}
154
155
156
157/* Insert a tag content into the line structure.
158Note this is a reference to existing data, not a copy.
159Check for already-seen tag.
160The string-pointer is on the '=' for entry. Update it past the
161content (to the ;) on return;
162*/
163
164static uschar *
165arc_insert_tagvalue(arc_line * al, unsigned loff, uschar ** ss)
166{
167uschar * s = *ss;
168uschar c = *++s;
169blob * b = (blob *)(US al + loff);
170size_t len = 0;
171
172/* [FWS] tag-value [FWS] */
173
174if (b->data) return US"fail";
175s = skip_fws(s); /* FWS */
176
177b->data = s;
178while ((c = *s) && c != ';') { len++; s++; }
179*ss = s;
180while (len && ((c = s[-1]) == ' ' || c == '\t' || c == '\n' || c == '\r'))
181 { s--; len--; } /* FWS */
182b->len = len;
183return NULL;
184}
185
186
187/* Inspect a header line, noting known tag fields.
188Check for duplicates. */
189
190static uschar *
191arc_parse_line(arc_line * al, header_line * h, unsigned off, BOOL instance_only)
192{
193uschar * s = h->text + off;
978e78de 194uschar * r = NULL; /* compiler-quietening */
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195uschar c;
196
197al->complete = h;
198
199if (!instance_only)
200 {
f3ebb786 201 al->rawsig_no_b_val.data = store_get(h->slen + 1, TRUE); /* tainted */
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202 memcpy(al->rawsig_no_b_val.data, h->text, off); /* copy the header name blind */
203 r = al->rawsig_no_b_val.data + off;
204 al->rawsig_no_b_val.len = off;
205 }
206
207/* tag-list = tag-spec *( ";" tag-spec ) [ ";" ] */
208
209while ((c = *s))
210 {
211 char tagchar;
212 uschar * t;
213 unsigned i = 0;
214 uschar * fieldstart = s;
215 uschar * bstart = NULL, * bend;
216
217 /* tag-spec = [FWS] tag-name [FWS] "=" [FWS] tag-value [FWS] */
218
219 s = skip_fws(s); /* FWS */
220 if (!*s) break;
221/* debug_printf("%s: consider '%s'\n", __FUNCTION__, s); */
222 tagchar = *s++;
223 s = skip_fws(s); /* FWS */
224 if (!*s) break;
225
226 if (!instance_only || tagchar == 'i') switch (tagchar)
227 {
228 case 'a': /* a= AMS algorithm */
229 {
230 if (*s != '=') return US"no 'a' value";
231 if (arc_insert_tagvalue(al, offsetof(arc_line, a), &s)) return US"a tag dup";
232
233 /* substructure: algo-hash (eg. rsa-sha256) */
234
235 t = al->a_algo.data = al->a.data;
236 while (*t != '-')
237 if (!*t++ || ++i > al->a.len) return US"no '-' in 'a' value";
238 al->a_algo.len = i;
239 if (*t++ != '-') return US"no '-' in 'a' value";
240 al->a_hash.data = t;
241 al->a_hash.len = al->a.len - i - 1;
242 }
243 break;
244 case 'b':
245 {
246 gstring * g = NULL;
247
248 switch (*s)
249 {
250 case '=': /* b= AMS signature */
251 if (al->b.data) return US"already b data";
252 bstart = s+1;
253
254 /* The signature can have FWS inserted in the content;
255 make a stripped copy */
256
257 while ((c = *++s) && c != ';')
258 if (c != ' ' && c != '\t' && c != '\n' && c != '\r')
259 g = string_catn(g, s, 1);
b4dd15a7 260 if (!g) return US"no b= value";
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261 al->b.data = string_from_gstring(g);
262 al->b.len = g->ptr;
e59797e3 263 gstring_release_unused(g);
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264 bend = s;
265 break;
266 case 'h': /* bh= AMS body hash */
267 s = skip_fws(++s); /* FWS */
268 if (*s != '=') return US"no bh value";
269 if (al->bh.data) return US"already bh data";
270
271 /* The bodyhash can have FWS inserted in the content;
272 make a stripped copy */
273
274 while ((c = *++s) && c != ';')
275 if (c != ' ' && c != '\t' && c != '\n' && c != '\r')
276 g = string_catn(g, s, 1);
b4dd15a7 277 if (!g) return US"no bh= value";
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278 al->bh.data = string_from_gstring(g);
279 al->bh.len = g->ptr;
e59797e3 280 gstring_release_unused(g);
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281 break;
282 default:
283 return US"b? tag";
284 }
285 }
286 break;
287 case 'c':
288 switch (*s)
289 {
290 case '=': /* c= AMS canonicalisation */
291 if (arc_insert_tagvalue(al, offsetof(arc_line, c), &s)) return US"c tag dup";
292
293 /* substructure: head/body (eg. relaxed/simple)) */
294
295 t = al->c_head.data = al->c.data;
296 while (isalpha(*t))
297 if (!*t++ || ++i > al->a.len) break;
298 al->c_head.len = i;
299 if (*t++ == '/') /* /body is optional */
300 {
301 al->c_body.data = t;
302 al->c_body.len = al->c.len - i - 1;
303 }
304 else
305 {
306 al->c_body.data = US"simple";
307 al->c_body.len = 6;
308 }
309 break;
310 case 'v': /* cv= AS validity */
311 if (*++s != '=') return US"cv tag val";
312 if (arc_insert_tagvalue(al, offsetof(arc_line, cv), &s)) return US"cv tag dup";
313 break;
314 default:
315 return US"c? tag";
316 }
317 break;
318 case 'd': /* d= AMS domain */
319 if (*s != '=') return US"d tag val";
320 if (arc_insert_tagvalue(al, offsetof(arc_line, d), &s)) return US"d tag dup";
321 break;
322 case 'h': /* h= AMS headers */
323 if (*s != '=') return US"h tag val";
324 if (arc_insert_tagvalue(al, offsetof(arc_line, h), &s)) return US"h tag dup";
325 break;
326 case 'i': /* i= ARC set instance */
327 if (*s != '=') return US"i tag val";
328 if (arc_insert_tagvalue(al, offsetof(arc_line, i), &s)) return US"i tag dup";
329 if (instance_only) goto done;
330 break;
331 case 'l': /* l= bodylength */
332 if (*s != '=') return US"l tag val";
333 if (arc_insert_tagvalue(al, offsetof(arc_line, l), &s)) return US"l tag dup";
334 break;
335 case 's': /* s= AMS selector */
336 if (*s != '=') return US"s tag val";
337 if (arc_insert_tagvalue(al, offsetof(arc_line, s), &s)) return US"s tag dup";
338 break;
339 }
340
341 while ((c = *s) && c != ';') s++;
342 if (c) s++; /* ; after tag-spec */
343
344 /* for all but the b= tag, copy the field including FWS. For the b=,
345 drop the tag content. */
346
347 if (!instance_only)
348 if (bstart)
349 {
350 size_t n = bstart - fieldstart;
351 memcpy(r, fieldstart, n); /* FWS "b=" */
352 r += n;
353 al->rawsig_no_b_val.len += n;
354 n = s - bend;
355 memcpy(r, bend, n); /* FWS ";" */
356 r += n;
357 al->rawsig_no_b_val.len += n;
358 }
359 else
360 {
361 size_t n = s - fieldstart;
362 memcpy(r, fieldstart, n);
363 r += n;
364 al->rawsig_no_b_val.len += n;
365 }
366 }
367
368if (!instance_only)
369 *r = '\0';
370
371done:
372/* debug_printf("%s: finshed\n", __FUNCTION__); */
373return NULL;
374}
375
376
377/* Insert one header line in the correct set of the chain,
378adding instances as needed and checking for duplicate lines.
379*/
380
381static uschar *
382arc_insert_hdr(arc_ctx * ctx, header_line * h, unsigned off, unsigned hoff,
383 BOOL instance_only)
384{
ef262e31 385unsigned i;
617d3932 386arc_set * as;
f3ebb786 387arc_line * al = store_get(sizeof(arc_line), FALSE), ** alp;
617d3932
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388uschar * e;
389
390memset(al, 0, sizeof(arc_line));
391
392if ((e = arc_parse_line(al, h, off, instance_only)))
393 {
394 DEBUG(D_acl) if (e) debug_printf("ARC: %s\n", e);
395 return US"line parse";
396 }
397if (!(i = arc_instance_from_hdr(al))) return US"instance find";
ef262e31 398if (i > 50) return US"overlarge instance number";
617d3932
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399if (!(as = arc_find_set(ctx, i))) return US"set find";
400if (*(alp = (arc_line **)(US as + hoff))) return US"dup hdr";
401
402*alp = al;
403return NULL;
404}
405
406
407
408
409static const uschar *
410arc_try_header(arc_ctx * ctx, header_line * h, BOOL instance_only)
411{
412const uschar * e;
413
414/*debug_printf("consider hdr '%s'\n", h->text);*/
415if (strncmpic(ARC_HDR_AAR, h->text, ARC_HDRLEN_AAR) == 0)
416 {
417 DEBUG(D_acl)
418 {
419 int len = h->slen;
420 uschar * s;
421 for (s = h->text + h->slen; s[-1] == '\r' || s[-1] == '\n'; )
422 s--, len--;
423 debug_printf("ARC: found AAR: %.*s\n", len, h->text);
424 }
425 if ((e = arc_insert_hdr(ctx, h, ARC_HDRLEN_AAR, offsetof(arc_set, hdr_aar),
426 TRUE)))
427 {
428 DEBUG(D_acl) debug_printf("inserting AAR: %s\n", e);
429 return US"inserting AAR";
430 }
431 }
432else if (strncmpic(ARC_HDR_AMS, h->text, ARC_HDRLEN_AMS) == 0)
433 {
434 arc_line * ams;
435
436 DEBUG(D_acl)
437 {
438 int len = h->slen;
439 uschar * s;
440 for (s = h->text + h->slen; s[-1] == '\r' || s[-1] == '\n'; )
441 s--, len--;
442 debug_printf("ARC: found AMS: %.*s\n", len, h->text);
443 }
444 if ((e = arc_insert_hdr(ctx, h, ARC_HDRLEN_AMS, offsetof(arc_set, hdr_ams),
445 instance_only)))
446 {
447 DEBUG(D_acl) debug_printf("inserting AMS: %s\n", e);
448 return US"inserting AMS";
449 }
450
451 /* defaults */
452 /*XXX dubious selection of ams here */
453 ams = ctx->arcset_chain->hdr_ams;
454 if (!ams->c.data)
455 {
456 ams->c_head.data = US"simple"; ams->c_head.len = 6;
457 ams->c_body = ams->c_head;
458 }
459 }
460else if (strncmpic(ARC_HDR_AS, h->text, ARC_HDRLEN_AS) == 0)
461 {
462 DEBUG(D_acl)
463 {
464 int len = h->slen;
465 uschar * s;
466 for (s = h->text + h->slen; s[-1] == '\r' || s[-1] == '\n'; )
467 s--, len--;
468 debug_printf("ARC: found AS: %.*s\n", len, h->text);
469 }
470 if ((e = arc_insert_hdr(ctx, h, ARC_HDRLEN_AS, offsetof(arc_set, hdr_as),
471 instance_only)))
472 {
473 DEBUG(D_acl) debug_printf("inserting AS: %s\n", e);
474 return US"inserting AS";
475 }
476 }
477return NULL;
478}
479
480
481
482/* Gather the chain of arc sets from the headers.
483Check for duplicates while that is done. Also build the
484reverse-order headers list;
485
486Return: ARC state if determined, eg. by lack of any ARC chain.
487*/
488
489static const uschar *
490arc_vfy_collect_hdrs(arc_ctx * ctx)
491{
492header_line * h;
978e78de 493hdr_rlist * r = NULL, * rprev = NULL;
617d3932
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494const uschar * e;
495
496DEBUG(D_acl) debug_printf("ARC: collecting arc sets\n");
497for (h = header_list; h; h = h->next)
498 {
f3ebb786 499 r = store_get(sizeof(hdr_rlist), FALSE);
617d3932
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500 r->prev = rprev;
501 r->used = FALSE;
502 r->h = h;
503 rprev = r;
504
505 if ((e = arc_try_header(ctx, h, FALSE)))
93c931f8
JH
506 {
507 arc_state_reason = string_sprintf("collecting headers: %s", e);
508 return US"fail";
509 }
617d3932
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510 }
511headers_rlist = r;
512
513if (!ctx->arcset_chain) return US"none";
514return NULL;
515}
516
517
518static BOOL
519arc_cv_match(arc_line * al, const uschar * s)
520{
521return Ustrncmp(s, al->cv.data, al->cv.len) == 0;
522}
523
524/******************************************************************************/
525
526/* Return the hash of headers from the message that the AMS claims it
527signed.
528*/
529
530static void
531arc_get_verify_hhash(arc_ctx * ctx, arc_line * ams, blob * hhash)
532{
533const uschar * headernames = string_copyn(ams->h.data, ams->h.len);
534const uschar * hn;
535int sep = ':';
536hdr_rlist * r;
537BOOL relaxed = Ustrncmp(US"relaxed", ams->c_head.data, ams->c_head.len) == 0;
538int hashtype = pdkim_hashname_to_hashtype(
539 ams->a_hash.data, ams->a_hash.len);
540hctx hhash_ctx;
541const uschar * s;
542int len;
543
6f47da8d
JH
544if ( hashtype == -1
545 || !exim_sha_init(&hhash_ctx, pdkim_hashes[hashtype].exim_hashmethod))
617d3932
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546 {
547 DEBUG(D_acl)
548 debug_printf("ARC: hash setup error, possibly nonhandled hashtype\n");
549 return;
550 }
551
552/* For each headername in the list from the AMS (walking in order)
553walk the message headers in reverse order, adding to the hash any
554found for the first time. For that last point, maintain used-marks
555on the list of message headers. */
556
557DEBUG(D_acl) debug_printf("ARC: AMS header data for verification:\n");
558
559for (r = headers_rlist; r; r = r->prev)
560 r->used = FALSE;
561while ((hn = string_nextinlist(&headernames, &sep, NULL, 0)))
562 for (r = headers_rlist; r; r = r->prev)
563 if ( !r->used
564 && strncasecmp(CCS (s = r->h->text), CCS hn, Ustrlen(hn)) == 0
565 )
566 {
567 if (relaxed) s = pdkim_relax_header_n(s, r->h->slen, TRUE);
568
569 len = Ustrlen(s);
570 DEBUG(D_acl) pdkim_quoteprint(s, len);
571 exim_sha_update(&hhash_ctx, s, Ustrlen(s));
572 r->used = TRUE;
573 break;
574 }
575
d9604f37 576/* Finally add in the signature header (with the b= tag stripped); no CRLF */
617d3932
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577
578s = ams->rawsig_no_b_val.data, len = ams->rawsig_no_b_val.len;
579if (relaxed)
d9604f37 580 len = Ustrlen(s = pdkim_relax_header_n(s, len, FALSE));
617d3932
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581DEBUG(D_acl) pdkim_quoteprint(s, len);
582exim_sha_update(&hhash_ctx, s, len);
583
584exim_sha_finish(&hhash_ctx, hhash);
585DEBUG(D_acl)
586 { debug_printf("ARC: header hash: "); pdkim_hexprint(hhash->data, hhash->len); }
587return;
588}
589
590
591
592
593static pdkim_pubkey *
594arc_line_to_pubkey(arc_line * al)
595{
596uschar * dns_txt;
597pdkim_pubkey * p;
598
599if (!(dns_txt = dkim_exim_query_dns_txt(string_sprintf("%.*s._domainkey.%.*s",
d70fc283 600 (int)al->s.len, al->s.data, (int)al->d.len, al->d.data))))
617d3932
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601 {
602 DEBUG(D_acl) debug_printf("pubkey dns lookup fail\n");
603 return NULL;
604 }
605
606if ( !(p = pdkim_parse_pubkey_record(dns_txt))
607 || (Ustrcmp(p->srvtype, "*") != 0 && Ustrcmp(p->srvtype, "email") != 0)
608 )
609 {
610 DEBUG(D_acl) debug_printf("pubkey dns lookup format error\n");
611 return NULL;
612 }
613
614/* If the pubkey limits use to specified hashes, reject unusable
615signatures. XXX should we have looked for multiple dns records? */
616
617if (p->hashes)
618 {
619 const uschar * list = p->hashes, * ele;
620 int sep = ':';
621
622 while ((ele = string_nextinlist(&list, &sep, NULL, 0)))
623 if (Ustrncmp(ele, al->a_hash.data, al->a_hash.len) == 0) break;
624 if (!ele)
625 {
626 DEBUG(D_acl) debug_printf("pubkey h=%s vs sig a=%.*s\n",
978e78de 627 p->hashes, (int)al->a.len, al->a.data);
617d3932
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628 return NULL;
629 }
630 }
631return p;
632}
633
634
635
636
637static pdkim_bodyhash *
638arc_ams_setup_vfy_bodyhash(arc_line * ams)
639{
6f47da8d 640int canon_head = -1, canon_body = -1;
617d3932
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641long bodylen;
642
b3d9ebf5 643if (!ams->c.data) ams->c.data = US"simple"; /* RFC 6376 (DKIM) default */
617d3932
JH
644pdkim_cstring_to_canons(ams->c.data, ams->c.len, &canon_head, &canon_body);
645bodylen = ams->l.data
646 ? strtol(CS string_copyn(ams->l.data, ams->l.len), NULL, 10) : -1;
647
648return pdkim_set_bodyhash(dkim_verify_ctx,
649 pdkim_hashname_to_hashtype(ams->a_hash.data, ams->a_hash.len),
650 canon_body,
651 bodylen);
652}
653
654
655
656/* Verify an AMS. This is a DKIM-sig header, but with an ARC i= tag
657and without a DKIM v= tag.
658*/
659
93c931f8 660static const uschar *
617d3932
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661arc_ams_verify(arc_ctx * ctx, arc_set * as)
662{
663arc_line * ams = as->hdr_ams;
664pdkim_bodyhash * b;
665pdkim_pubkey * p;
666blob sighash;
667blob hhash;
668ev_ctx vctx;
669int hashtype;
670const uschar * errstr;
671
93c931f8 672as->ams_verify_done = US"in-progress";
617d3932
JH
673
674/* Check the AMS has all the required tags:
675 "a=" algorithm
676 "b=" signature
677 "bh=" body hash
678 "d=" domain (for key lookup)
679 "h=" headers (included in signature)
680 "s=" key-selector (for key lookup)
681*/
682if ( !ams->a.data || !ams->b.data || !ams->bh.data || !ams->d.data
683 || !ams->h.data || !ams->s.data)
93c931f8
JH
684 {
685 as->ams_verify_done = arc_state_reason = US"required tag missing";
617d3932 686 return US"fail";
93c931f8 687 }
617d3932
JH
688
689
690/* The bodyhash should have been created earlier, and the dkim code should
691have managed calculating it during message input. Find the reference to it. */
692
693if (!(b = arc_ams_setup_vfy_bodyhash(ams)))
93c931f8
JH
694 {
695 as->ams_verify_done = arc_state_reason = US"internal hash setup error";
617d3932 696 return US"fail";
93c931f8 697 }
617d3932
JH
698
699DEBUG(D_acl)
700 {
701 debug_printf("ARC i=%d AMS Body bytes hashed: %lu\n"
702 " Body %.*s computed: ",
703 as->instance, b->signed_body_bytes,
978e78de 704 (int)ams->a_hash.len, ams->a_hash.data);
617d3932
JH
705 pdkim_hexprint(CUS b->bh.data, b->bh.len);
706 }
707
708/* We know the bh-tag blob is of a nul-term string, so safe as a string */
709
710if ( !ams->bh.data
711 || (pdkim_decode_base64(ams->bh.data, &sighash), sighash.len != b->bh.len)
712 || memcmp(sighash.data, b->bh.data, b->bh.len) != 0
713 )
714 {
715 DEBUG(D_acl)
716 {
717 debug_printf("ARC i=%d AMS Body hash from headers: ", as->instance);
718 pdkim_hexprint(sighash.data, sighash.len);
719 debug_printf("ARC i=%d AMS Body hash did NOT match\n", as->instance);
720 }
93c931f8 721 return as->ams_verify_done = arc_state_reason = US"AMS body hash miscompare";
617d3932
JH
722 }
723
724DEBUG(D_acl) debug_printf("ARC i=%d AMS Body hash compared OK\n", as->instance);
725
726/* Get the public key from DNS */
727
728if (!(p = arc_line_to_pubkey(ams)))
93c931f8 729 return as->ams_verify_done = arc_state_reason = US"pubkey problem";
617d3932
JH
730
731/* We know the b-tag blob is of a nul-term string, so safe as a string */
732pdkim_decode_base64(ams->b.data, &sighash);
733
734arc_get_verify_hhash(ctx, ams, &hhash);
735
736/* Setup the interface to the signing library */
737
738if ((errstr = exim_dkim_verify_init(&p->key, KEYFMT_DER, &vctx)))
739 {
740 DEBUG(D_acl) debug_printf("ARC verify init: %s\n", errstr);
93c931f8 741 as->ams_verify_done = arc_state_reason = US"internal sigverify init error";
617d3932
JH
742 return US"fail";
743 }
744
745hashtype = pdkim_hashname_to_hashtype(ams->a_hash.data, ams->a_hash.len);
6f47da8d
JH
746if (hashtype == -1)
747 {
748 DEBUG(D_acl) debug_printf("ARC i=%d AMS verify bad a_hash\n", as->instance);
749 return as->ams_verify_done = arc_state_reason = US"AMS sig nonverify";
750 }
617d3932
JH
751
752if ((errstr = exim_dkim_verify(&vctx,
753 pdkim_hashes[hashtype].exim_hashmethod, &hhash, &sighash)))
754 {
755 DEBUG(D_acl) debug_printf("ARC i=%d AMS verify %s\n", as->instance, errstr);
93c931f8 756 return as->ams_verify_done = arc_state_reason = US"AMS sig nonverify";
617d3932
JH
757 }
758
759DEBUG(D_acl) debug_printf("ARC i=%d AMS verify pass\n", as->instance);
760as->ams_verify_passed = TRUE;
761return NULL;
762}
763
764
765
766/* Check the sets are instance-continuous and that all
767members are present. Check that no arc_seals are "fail".
768Set the highest instance number global.
769Verify the latest AMS.
770*/
771static uschar *
772arc_headers_check(arc_ctx * ctx)
773{
774arc_set * as;
775int inst;
776BOOL ams_fail_found = FALSE;
617d3932 777
ea7b1f16 778if (!(as = ctx->arcset_chain_last))
617d3932
JH
779 return US"none";
780
ea7b1f16 781for(inst = as->instance; as; as = as->prev, inst--)
617d3932 782 {
ea7b1f16
JH
783 if (as->instance != inst)
784 arc_state_reason = string_sprintf("i=%d (sequence; expected %d)",
785 as->instance, inst);
786 else if (!as->hdr_aar || !as->hdr_ams || !as->hdr_as)
787 arc_state_reason = string_sprintf("i=%d (missing header)", as->instance);
788 else if (arc_cv_match(as->hdr_as, US"fail"))
789 arc_state_reason = string_sprintf("i=%d (cv)", as->instance);
790 else
791 goto good;
792
793 DEBUG(D_acl) debug_printf("ARC chain fail at %s\n", arc_state_reason);
794 return US"fail";
617d3932 795
ea7b1f16 796 good:
617d3932
JH
797 /* Evaluate the oldest-pass AMS validation while we're here.
798 It does not affect the AS chain validation but is reported as
799 auxilary info. */
800
801 if (!ams_fail_found)
802 if (arc_ams_verify(ctx, as))
803 ams_fail_found = TRUE;
804 else
805 arc_oldest_pass = inst;
93c931f8 806 arc_state_reason = NULL;
617d3932 807 }
ea7b1f16
JH
808if (inst != 0)
809 {
810 arc_state_reason = string_sprintf("(sequence; expected i=%d)", inst);
811 DEBUG(D_acl) debug_printf("ARC chain fail %s\n", arc_state_reason);
812 return US"fail";
813 }
617d3932
JH
814
815arc_received = ctx->arcset_chain_last;
ea7b1f16 816arc_received_instance = arc_received->instance;
617d3932
JH
817
818/* We can skip the latest-AMS validation, if we already did it. */
819
820as = ctx->arcset_chain_last;
3c676fa8 821if (!as->ams_verify_passed)
93c931f8 822 {
3c676fa8
JH
823 if (as->ams_verify_done)
824 {
825 arc_state_reason = as->ams_verify_done;
826 return US"fail";
827 }
828 if (!!arc_ams_verify(ctx, as))
829 return US"fail";
93c931f8 830 }
617d3932
JH
831return NULL;
832}
833
834
835/******************************************************************************/
836static const uschar *
837arc_seal_verify(arc_ctx * ctx, arc_set * as)
838{
839arc_line * hdr_as = as->hdr_as;
840arc_set * as2;
841int hashtype;
842hctx hhash_ctx;
843blob hhash_computed;
844blob sighash;
845ev_ctx vctx;
846pdkim_pubkey * p;
847const uschar * errstr;
848
849DEBUG(D_acl) debug_printf("ARC: AS vfy i=%d\n", as->instance);
850/*
851 1. If the value of the "cv" tag on that seal is "fail", the
852 chain state is "fail" and the algorithm stops here. (This
853 step SHOULD be skipped if the earlier step (2.1) was
854 performed) [it was]
855
856 2. In Boolean nomenclature: if ((i == 1 && cv != "none") or (cv
857 == "none" && i != 1)) then the chain state is "fail" and the
858 algorithm stops here (note that the ordering of the logic is
859 structured for short-circuit evaluation).
860*/
861
862if ( as->instance == 1 && !arc_cv_match(hdr_as, US"none")
863 || arc_cv_match(hdr_as, US"none") && as->instance != 1
864 )
93c931f8
JH
865 {
866 arc_state_reason = US"seal cv state";
617d3932 867 return US"fail";
93c931f8 868 }
617d3932
JH
869
870/*
871 3. Initialize a hash function corresponding to the "a" tag of
872 the ARC-Seal.
873*/
874
875hashtype = pdkim_hashname_to_hashtype(hdr_as->a_hash.data, hdr_as->a_hash.len);
876
6f47da8d
JH
877if ( hashtype == -1
878 || !exim_sha_init(&hhash_ctx, pdkim_hashes[hashtype].exim_hashmethod))
617d3932
JH
879 {
880 DEBUG(D_acl)
881 debug_printf("ARC: hash setup error, possibly nonhandled hashtype\n");
93c931f8 882 arc_state_reason = US"seal hash setup error";
617d3932
JH
883 return US"fail";
884 }
885
886/*
887 4. Compute the canonicalized form of the ARC header fields, in
888 the order described in Section 5.4.2, using the "relaxed"
889 header canonicalization defined in Section 3.4.2 of
890 [RFC6376]. Pass the canonicalized result to the hash
891 function.
d9604f37
JH
892
893Headers are CRLF-separated, but the last one is not crlf-terminated.
617d3932
JH
894*/
895
896DEBUG(D_acl) debug_printf("ARC: AS header data for verification:\n");
897for (as2 = ctx->arcset_chain;
898 as2 && as2->instance <= as->instance;
899 as2 = as2->next)
900 {
901 arc_line * al;
902 uschar * s;
903 int len;
904
905 al = as2->hdr_aar;
906 if (!(s = al->relaxed))
907 al->relaxed = s = pdkim_relax_header_n(al->complete->text,
908 al->complete->slen, TRUE);
909 len = Ustrlen(s);
910 DEBUG(D_acl) pdkim_quoteprint(s, len);
911 exim_sha_update(&hhash_ctx, s, len);
912
913 al = as2->hdr_ams;
914 if (!(s = al->relaxed))
915 al->relaxed = s = pdkim_relax_header_n(al->complete->text,
916 al->complete->slen, TRUE);
917 len = Ustrlen(s);
918 DEBUG(D_acl) pdkim_quoteprint(s, len);
919 exim_sha_update(&hhash_ctx, s, len);
920
921 al = as2->hdr_as;
922 if (as2->instance == as->instance)
923 s = pdkim_relax_header_n(al->rawsig_no_b_val.data,
d9604f37 924 al->rawsig_no_b_val.len, FALSE);
617d3932
JH
925 else if (!(s = al->relaxed))
926 al->relaxed = s = pdkim_relax_header_n(al->complete->text,
927 al->complete->slen, TRUE);
928 len = Ustrlen(s);
929 DEBUG(D_acl) pdkim_quoteprint(s, len);
930 exim_sha_update(&hhash_ctx, s, len);
931 }
932
933/*
934 5. Retrieve the final digest from the hash function.
935*/
936
937exim_sha_finish(&hhash_ctx, &hhash_computed);
938DEBUG(D_acl)
939 {
940 debug_printf("ARC i=%d AS Header %.*s computed: ",
978e78de 941 as->instance, (int)hdr_as->a_hash.len, hdr_as->a_hash.data);
617d3932
JH
942 pdkim_hexprint(hhash_computed.data, hhash_computed.len);
943 }
944
945
946/*
947 6. Retrieve the public key identified by the "s" and "d" tags in
948 the ARC-Seal, as described in Section 4.1.6.
949*/
950
951if (!(p = arc_line_to_pubkey(hdr_as)))
952 return US"pubkey problem";
953
954/*
955 7. Determine whether the signature portion ("b" tag) of the ARC-
956 Seal and the digest computed above are valid according to the
957 public key. (See also Section Section 8.4 for failure case
958 handling)
959
960 8. If the signature is not valid, the chain state is "fail" and
961 the algorithm stops here.
962*/
963
964/* We know the b-tag blob is of a nul-term string, so safe as a string */
965pdkim_decode_base64(hdr_as->b.data, &sighash);
966
967if ((errstr = exim_dkim_verify_init(&p->key, KEYFMT_DER, &vctx)))
968 {
969 DEBUG(D_acl) debug_printf("ARC verify init: %s\n", errstr);
970 return US"fail";
971 }
972
617d3932
JH
973if ((errstr = exim_dkim_verify(&vctx,
974 pdkim_hashes[hashtype].exim_hashmethod,
975 &hhash_computed, &sighash)))
976 {
977 DEBUG(D_acl)
978 debug_printf("ARC i=%d AS headers verify: %s\n", as->instance, errstr);
d9604f37 979 arc_state_reason = US"seal sigverify error";
617d3932
JH
980 return US"fail";
981 }
982
983DEBUG(D_acl) debug_printf("ARC: AS vfy i=%d pass\n", as->instance);
984return NULL;
985}
986
987
988static const uschar *
989arc_verify_seals(arc_ctx * ctx)
990{
5054c4fd 991arc_set * as = ctx->arcset_chain_last;
617d3932
JH
992
993if (!as)
994 return US"none";
995
5054c4fd
JH
996for ( ; as; as = as->prev) if (arc_seal_verify(ctx, as)) return US"fail";
997
617d3932
JH
998DEBUG(D_acl) debug_printf("ARC: AS vfy overall pass\n");
999return NULL;
1000}
1001/******************************************************************************/
1002
1003/* Do ARC verification. Called from DATA ACL, on a verify = arc
1004condition. No arguments; we are checking globals.
1005
1006Return: The ARC state, or NULL on error.
1007*/
1008
1009const uschar *
1010acl_verify_arc(void)
1011{
617d3932
JH
1012const uschar * res;
1013
9cffa436
JH
1014memset(&arc_verify_ctx, 0, sizeof(arc_verify_ctx));
1015
311fbe57
JH
1016if (!dkim_verify_ctx)
1017 {
1018 DEBUG(D_acl) debug_printf("ARC: no DKIM verify context\n");
1019 return NULL;
1020 }
1021
617d3932
JH
1022/* AS evaluation, per
1023https://tools.ietf.org/html/draft-ietf-dmarc-arc-protocol-10#section-6
1024*/
1025/* 1. Collect all ARC sets currently on the message. If there were
1026 none, the ARC state is "none" and the algorithm stops here.
1027*/
1028
9cffa436 1029if ((res = arc_vfy_collect_hdrs(&arc_verify_ctx)))
617d3932
JH
1030 goto out;
1031
1032/* 2. If the form of any ARC set is invalid (e.g., does not contain
1033 exactly one of each of the three ARC-specific header fields),
1034 then the chain state is "fail" and the algorithm stops here.
1035
1036 1. To avoid the overhead of unnecessary computation and delay
1037 from crypto and DNS operations, the cv value for all ARC-
1038 Seal(s) MAY be checked at this point. If any of the values
1039 are "fail", then the overall state of the chain is "fail" and
1040 the algorithm stops here.
1041
1042 3. Conduct verification of the ARC-Message-Signature header field
1043 bearing the highest instance number. If this verification fails,
1044 then the chain state is "fail" and the algorithm stops here.
1045*/
1046
9cffa436 1047if ((res = arc_headers_check(&arc_verify_ctx)))
617d3932
JH
1048 goto out;
1049
1050/* 4. For each ARC-Seal from the "N"th instance to the first, apply the
1051 following logic:
1052
1053 1. If the value of the "cv" tag on that seal is "fail", the
1054 chain state is "fail" and the algorithm stops here. (This
1055 step SHOULD be skipped if the earlier step (2.1) was
1056 performed)
1057
1058 2. In Boolean nomenclature: if ((i == 1 && cv != "none") or (cv
1059 == "none" && i != 1)) then the chain state is "fail" and the
1060 algorithm stops here (note that the ordering of the logic is
1061 structured for short-circuit evaluation).
1062
1063 3. Initialize a hash function corresponding to the "a" tag of
1064 the ARC-Seal.
1065
1066 4. Compute the canonicalized form of the ARC header fields, in
1067 the order described in Section 5.4.2, using the "relaxed"
1068 header canonicalization defined in Section 3.4.2 of
1069 [RFC6376]. Pass the canonicalized result to the hash
1070 function.
1071
1072 5. Retrieve the final digest from the hash function.
1073
1074 6. Retrieve the public key identified by the "s" and "d" tags in
1075 the ARC-Seal, as described in Section 4.1.6.
1076
1077 7. Determine whether the signature portion ("b" tag) of the ARC-
1078 Seal and the digest computed above are valid according to the
1079 public key. (See also Section Section 8.4 for failure case
1080 handling)
1081
1082 8. If the signature is not valid, the chain state is "fail" and
1083 the algorithm stops here.
1084
1085 5. If all seals pass validation, then the chain state is "pass", and
1086 the algorithm is complete.
1087*/
1088
9cffa436 1089if ((res = arc_verify_seals(&arc_verify_ctx)))
617d3932
JH
1090 goto out;
1091
1092res = US"pass";
1093
1094out:
1095 return res;
1096}
1097
1098/******************************************************************************/
1099
1100/* Prepend the header to the rlist */
1101
1102static hdr_rlist *
1103arc_rlist_entry(hdr_rlist * list, const uschar * s, int len)
1104{
f3ebb786 1105hdr_rlist * r = store_get(sizeof(hdr_rlist) + sizeof(header_line), FALSE);
617d3932
JH
1106header_line * h = r->h = (header_line *)(r+1);
1107
1108r->prev = list;
1109r->used = FALSE;
1110h->next = NULL;
1111h->type = 0;
1112h->slen = len;
1113h->text = US s;
1114
1115/* This works for either NL or CRLF lines; also nul-termination */
1116while (*++s)
1117 if (*s == '\n' && s[1] != '\t' && s[1] != ' ') break;
1118s++; /* move past end of line */
1119
1120return r;
1121}
1122
1123
1124/* Walk the given headers strings identifying each header, and construct
b3d9ebf5 1125a reverse-order list.
617d3932
JH
1126*/
1127
1128static hdr_rlist *
1129arc_sign_scan_headers(arc_ctx * ctx, gstring * sigheaders)
1130{
1131const uschar * s;
1132hdr_rlist * rheaders = NULL;
1133
1134s = sigheaders ? sigheaders->s : NULL;
1135if (s) while (*s)
1136 {
978e78de 1137 const uschar * s2 = s;
617d3932
JH
1138
1139 /* This works for either NL or CRLF lines; also nul-termination */
1140 while (*++s2)
1141 if (*s2 == '\n' && s2[1] != '\t' && s2[1] != ' ') break;
1142 s2++; /* move past end of line */
1143
1144 rheaders = arc_rlist_entry(rheaders, s, s2 - s);
1145 s = s2;
1146 }
1147return rheaders;
1148}
1149
1150
1151
1152/* Return the A-R content, without identity, with line-ending and
1153NUL termination. */
1154
1155static BOOL
1156arc_sign_find_ar(header_line * headers, const uschar * identity, blob * ret)
1157{
1158header_line * h;
1159int ilen = Ustrlen(identity);
1160
1161ret->data = NULL;
1162for(h = headers; h; h = h->next)
1163 {
1164 uschar * s = h->text, c;
1165 int len = h->slen;
1166
1167 if (Ustrncmp(s, HDR_AR, HDRLEN_AR) != 0) continue;
1168 s += HDRLEN_AR, len -= HDRLEN_AR; /* header name */
1169 while ( len > 0
1170 && (c = *s) && (c == ' ' || c == '\t' || c == '\r' || c == '\n'))
1171 s++, len--; /* FWS */
1172 if (Ustrncmp(s, identity, ilen) != 0) continue;
1173 s += ilen; len -= ilen; /* identity */
1174 if (len <= 0) continue;
1175 if ((c = *s) && c == ';') s++, len--; /* identity terminator */
1176 while ( len > 0
1177 && (c = *s) && (c == ' ' || c == '\t' || c == '\r' || c == '\n'))
1178 s++, len--; /* FWS */
1179 if (len <= 0) continue;
1180 ret->data = s;
1181 ret->len = len;
1182 return TRUE;
1183 }
1184return FALSE;
1185}
1186
1187
1188
1189/* Append a constructed AAR including CRLF. Add it to the arc_ctx too. */
1190
1191static gstring *
1192arc_sign_append_aar(gstring * g, arc_ctx * ctx,
1193 const uschar * identity, int instance, blob * ar)
1194{
1195int aar_off = g ? g->ptr : 0;
f3ebb786
JH
1196arc_set * as =
1197 store_get(sizeof(arc_set) + sizeof(arc_line) + sizeof(header_line), FALSE);
617d3932
JH
1198arc_line * al = (arc_line *)(as+1);
1199header_line * h = (header_line *)(al+1);
1200
1201g = string_catn(g, ARC_HDR_AAR, ARC_HDRLEN_AAR);
52f12a7c 1202g = string_fmt_append(g, " i=%d; %s;\r\n\t", instance, identity);
617d3932
JH
1203g = string_catn(g, US ar->data, ar->len);
1204
1205h->slen = g->ptr - aar_off;
1206h->text = g->s + aar_off;
1207al->complete = h;
1208as->next = NULL;
1209as->prev = ctx->arcset_chain_last;
1210as->instance = instance;
1211as->hdr_aar = al;
1212if (instance == 1)
1213 ctx->arcset_chain = as;
1214else
1215 ctx->arcset_chain_last->next = as;
1216ctx->arcset_chain_last = as;
1217
1218DEBUG(D_transport) debug_printf("ARC: AAR '%.*s'\n", h->slen - 2, h->text);
1219return g;
1220}
1221
1222
1223
1224static BOOL
1225arc_sig_from_pseudoheader(gstring * hdata, int hashtype, const uschar * privkey,
1226 blob * sig, const uschar * why)
1227{
1228hashmethod hm = /*sig->keytype == KEYTYPE_ED25519*/ FALSE
1229 ? HASH_SHA2_512 : pdkim_hashes[hashtype].exim_hashmethod;
1230blob hhash;
1231es_ctx sctx;
1232const uschar * errstr;
1233
1234DEBUG(D_transport)
1235 {
1236 hctx hhash_ctx;
1237 debug_printf("ARC: %s header data for signing:\n", why);
1238 pdkim_quoteprint(hdata->s, hdata->ptr);
1239
1240 (void) exim_sha_init(&hhash_ctx, pdkim_hashes[hashtype].exim_hashmethod);
1241 exim_sha_update(&hhash_ctx, hdata->s, hdata->ptr);
1242 exim_sha_finish(&hhash_ctx, &hhash);
1243 debug_printf("ARC: header hash: "); pdkim_hexprint(hhash.data, hhash.len);
1244 }
1245
1246if (FALSE /*need hash for Ed25519 or GCrypt signing*/ )
1247 {
1248 hctx hhash_ctx;
1249 (void) exim_sha_init(&hhash_ctx, pdkim_hashes[hashtype].exim_hashmethod);
1250 exim_sha_update(&hhash_ctx, hdata->s, hdata->ptr);
1251 exim_sha_finish(&hhash_ctx, &hhash);
1252 }
1253else
1254 {
1255 hhash.data = hdata->s;
1256 hhash.len = hdata->ptr;
1257 }
1258
1259if ( (errstr = exim_dkim_signing_init(privkey, &sctx))
1260 || (errstr = exim_dkim_sign(&sctx, hm, &hhash, sig)))
1261 {
c3d43245 1262 log_write(0, LOG_MAIN, "ARC: %s signing: %s\n", why, errstr);
c59b09dc
JH
1263 DEBUG(D_transport)
1264 debug_printf("private key, or private-key file content, was: '%s'\n",
1265 privkey);
617d3932
JH
1266 return FALSE;
1267 }
1268return TRUE;
1269}
1270
1271
1272
1273static gstring *
1274arc_sign_append_sig(gstring * g, blob * sig)
1275{
1276/*debug_printf("%s: raw sig ", __FUNCTION__); pdkim_hexprint(sig->data, sig->len);*/
1277sig->data = pdkim_encode_base64(sig);
1278sig->len = Ustrlen(sig->data);
1279for (;;)
1280 {
1281 int len = MIN(sig->len, 74);
1282 g = string_catn(g, sig->data, len);
1283 if ((sig->len -= len) == 0) break;
1284 sig->data += len;
1285 g = string_catn(g, US"\r\n\t ", 5);
1286 }
1287g = string_catn(g, US";\r\n", 3);
e59797e3 1288gstring_release_unused(g);
617d3932
JH
1289string_from_gstring(g);
1290return g;
1291}
1292
1293
1294/* Append a constructed AMS including CRLF. Add it to the arc_ctx too. */
1295
1296static gstring *
1297arc_sign_append_ams(gstring * g, arc_ctx * ctx, int instance,
1298 const uschar * identity, const uschar * selector, blob * bodyhash,
a93dbf44 1299 hdr_rlist * rheaders, const uschar * privkey, unsigned options)
617d3932
JH
1300{
1301uschar * s;
1302gstring * hdata = NULL;
1303int col;
1304int hashtype = pdkim_hashname_to_hashtype(US"sha256", 6); /*XXX hardwired */
1305blob sig;
1306int ams_off;
f3ebb786 1307arc_line * al = store_get(sizeof(header_line) + sizeof(arc_line), FALSE);
617d3932
JH
1308header_line * h = (header_line *)(al+1);
1309
1310/* debug_printf("%s\n", __FUNCTION__); */
1311
1312/* Construct the to-be-signed AMS pseudo-header: everything but the sig. */
1313
1314ams_off = g->ptr;
52f12a7c
JH
1315g = string_fmt_append(g, "%s i=%d; a=rsa-sha256; c=relaxed; d=%s; s=%s",
1316 ARC_HDR_AMS, instance, identity, selector); /*XXX hardwired a= */
a93dbf44 1317if (options & ARC_SIGN_OPT_TSTAMP)
52f12a7c 1318 g = string_fmt_append(g, "; t=%lu", (u_long)now);
0e83c148 1319if (options & ARC_SIGN_OPT_EXPIRE)
52f12a7c
JH
1320 g = string_fmt_append(g, "; x=%lu", (u_long)expire);
1321g = string_fmt_append(g, ";\r\n\tbh=%s;\r\n\th=",
1322 pdkim_encode_base64(bodyhash));
617d3932
JH
1323
1324for(col = 3; rheaders; rheaders = rheaders->prev)
1325 {
1326 const uschar * hnames = US"DKIM-Signature:" PDKIM_DEFAULT_SIGN_HEADERS;
1327 uschar * name, * htext = rheaders->h->text;
1328 int sep = ':';
1329
1330 /* Spot headers of interest */
1331
1332 while ((name = string_nextinlist(&hnames, &sep, NULL, 0)))
1333 {
1334 int len = Ustrlen(name);
1335 if (strncasecmp(CCS htext, CCS name, len) == 0)
1336 {
1337 /* If too long, fold line in h= field */
1338
1339 if (col + len > 78) g = string_catn(g, US"\r\n\t ", 5), col = 3;
1340
1341 /* Add name to h= list */
1342
1343 g = string_catn(g, name, len);
1344 g = string_catn(g, US":", 1);
1345 col += len + 1;
1346
1347 /* Accumulate header for hashing/signing */
1348
1349 hdata = string_cat(hdata,
1350 pdkim_relax_header_n(htext, rheaders->h->slen, TRUE)); /*XXX hardwired */
1351 break;
1352 }
1353 }
1354 }
1355
1356/* Lose the last colon from the h= list */
1357
1358if (g->s[g->ptr - 1] == ':') g->ptr--;
1359
1360g = string_catn(g, US";\r\n\tb=;", 7);
1361
1362/* Include the pseudo-header in the accumulation */
617d3932 1363
d9604f37 1364s = pdkim_relax_header_n(g->s + ams_off, g->ptr - ams_off, FALSE);
617d3932
JH
1365hdata = string_cat(hdata, s);
1366
1367/* Calculate the signature from the accumulation */
1368/*XXX does that need further relaxation? there are spaces embedded in the b= strings! */
1369
1370if (!arc_sig_from_pseudoheader(hdata, hashtype, privkey, &sig, US"AMS"))
1371 return NULL;
1372
1373/* Lose the trailing semicolon from the psuedo-header, and append the signature
1374(folded over lines) and termination to complete it. */
1375
1376g->ptr--;
1377g = arc_sign_append_sig(g, &sig);
1378
1379h->slen = g->ptr - ams_off;
1380h->text = g->s + ams_off;
1381al->complete = h;
1382ctx->arcset_chain_last->hdr_ams = al;
1383
1384DEBUG(D_transport) debug_printf("ARC: AMS '%.*s'\n", h->slen - 2, h->text);
1385return g;
1386}
1387
1388
1389
1390/* Look for an arc= result in an A-R header blob. We know that its data
1391happens to be a NUL-term string. */
1392
1393static uschar *
1394arc_ar_cv_status(blob * ar)
1395{
1396const uschar * resinfo = ar->data;
1397int sep = ';';
1398uschar * methodspec, * s;
1399
1400while ((methodspec = string_nextinlist(&resinfo, &sep, NULL, 0)))
1401 if (Ustrncmp(methodspec, US"arc=", 4) == 0)
1402 {
1403 uschar c;
1404 for (s = methodspec += 4;
1405 (c = *s) && c != ';' && c != ' ' && c != '\r' && c != '\n'; ) s++;
1406 return string_copyn(methodspec, s - methodspec);
1407 }
3d0a6e0f 1408return US"none";
617d3932
JH
1409}
1410
1411
1412
1413/* Build the AS header and prepend it */
1414
1415static gstring *
1416arc_sign_prepend_as(gstring * arcset_interim, arc_ctx * ctx,
1417 int instance, const uschar * identity, const uschar * selector, blob * ar,
a93dbf44 1418 const uschar * privkey, unsigned options)
617d3932
JH
1419{
1420gstring * arcset;
1421arc_set * as;
1422uschar * status = arc_ar_cv_status(ar);
f3ebb786 1423arc_line * al = store_get(sizeof(header_line) + sizeof(arc_line), FALSE);
617d3932 1424header_line * h = (header_line *)(al+1);
617d3932
JH
1425
1426gstring * hdata = NULL;
1427int hashtype = pdkim_hashname_to_hashtype(US"sha256", 6); /*XXX hardwired */
1428blob sig;
1429
1430/*
1431- Generate AS
1432 - no body coverage
1433 - no h= tag; implicit coverage
1434 - arc status from A-R
1435 - if fail:
1436 - coverage is just the new ARC set
1437 including self (but with an empty b= in self)
1438 - if non-fail:
1439 - all ARC set headers, set-number order, aar then ams then as,
1440 including self (but with an empty b= in self)
1441*/
1442
1443/* Construct the AS except for the signature */
1444
a93dbf44 1445arcset = string_append(NULL, 9,
617d3932
JH
1446 ARC_HDR_AS,
1447 US" i=", string_sprintf("%d", instance),
1448 US"; cv=", status,
d4772796 1449 US"; a=rsa-sha256; d=", identity, /*XXX hardwired */
a93dbf44
JH
1450 US"; s=", selector); /*XXX same as AMS */
1451if (options & ARC_SIGN_OPT_TSTAMP)
1452 arcset = string_append(arcset, 2,
0e83c148 1453 US"; t=", string_sprintf("%lu", (u_long)now));
a93dbf44 1454arcset = string_cat(arcset,
617d3932
JH
1455 US";\r\n\t b=;");
1456
1457h->slen = arcset->ptr;
1458h->text = arcset->s;
1459al->complete = h;
1460ctx->arcset_chain_last->hdr_as = al;
1461
1462/* For any but "fail" chain-verify status, walk the entire chain in order by
1463instance. For fail, only the new arc-set. Accumulate the elements walked. */
1464
1465for (as = Ustrcmp(status, US"fail") == 0
1466 ? ctx->arcset_chain_last : ctx->arcset_chain;
1467 as; as = as->next)
1468 {
1469 /* Accumulate AAR then AMS then AS. Relaxed canonicalisation
1470 is required per standard. */
1471
1472 h = as->hdr_aar->complete;
1473 hdata = string_cat(hdata, pdkim_relax_header_n(h->text, h->slen, TRUE));
1474 h = as->hdr_ams->complete;
1475 hdata = string_cat(hdata, pdkim_relax_header_n(h->text, h->slen, TRUE));
1476 h = as->hdr_as->complete;
d9604f37 1477 hdata = string_cat(hdata, pdkim_relax_header_n(h->text, h->slen, !!as->next));
617d3932
JH
1478 }
1479
1480/* Calculate the signature from the accumulation */
1481
1482if (!arc_sig_from_pseudoheader(hdata, hashtype, privkey, &sig, US"AS"))
1483 return NULL;
1484
1485/* Lose the trailing semicolon */
1486arcset->ptr--;
1487arcset = arc_sign_append_sig(arcset, &sig);
1488DEBUG(D_transport) debug_printf("ARC: AS '%.*s'\n", arcset->ptr - 2, arcset->s);
1489
1490/* Finally, append the AMS and AAR to the new AS */
1491
1492return string_catn(arcset, arcset_interim->s, arcset_interim->ptr);
1493}
1494
1495
1496/**************************************/
1497
1498/* Return pointer to pdkim_bodyhash for given hash method, creating new
1499method if needed.
1500*/
1501
1502void *
1503arc_ams_setup_sign_bodyhash(void)
1504{
1505int canon_head, canon_body;
1506
1507DEBUG(D_transport) debug_printf("ARC: requesting bodyhash\n");
1508pdkim_cstring_to_canons(US"relaxed", 7, &canon_head, &canon_body); /*XXX hardwired */
1509return pdkim_set_bodyhash(&dkim_sign_ctx,
1510 pdkim_hashname_to_hashtype(US"sha256", 6), /*XXX hardwired */
1511 canon_body,
1512 -1);
1513}
1514
1515
1516
b3d9ebf5
JH
1517void
1518arc_sign_init(void)
1519{
1520memset(&arc_sign_ctx, 0, sizeof(arc_sign_ctx));
1521}
1522
1523
1524
617d3932
JH
1525/* A "normal" header line, identified by DKIM processing. These arrive before
1526the call to arc_sign(), which carries any newly-created DKIM headers - and
1527those go textually before the normal ones in the message.
1528
1529We have to take the feed from DKIM as, in the transport-filter case, the
1530headers are not in memory at the time of the call to arc_sign().
1531
1532Take a copy of the header and construct a reverse-order list.
1533Also parse ARC-chain headers and build the chain struct, retaining pointers
1534into the copies.
1535*/
1536
1537static const uschar *
1538arc_header_sign_feed(gstring * g)
1539{
1540uschar * s = string_copyn(g->s, g->ptr);
1541headers_rlist = arc_rlist_entry(headers_rlist, s, g->ptr);
1542return arc_try_header(&arc_sign_ctx, headers_rlist->h, TRUE);
1543}
1544
1545
1546
1547/* ARC signing. Called from the smtp transport, if the arc_sign option is set.
1548The dkim_exim_sign() function has already been called, so will have hashed the
1549message body for us so long as we requested a hash previously.
1550
1551Arguments:
a93dbf44
JH
1552 signspec Three-element colon-sep list: identity, selector, privkey.
1553 Optional fourth element: comma-sep list of options.
617d3932
JH
1554 Already expanded
1555 sigheaders Any signature headers already generated, eg. by DKIM, or NULL
1556 errstr Error string
1557
1558Return value
1559 Set of headers to prepend to the message, including the supplied sigheaders
1560 but not the plainheaders.
1561*/
1562
1563gstring *
1564arc_sign(const uschar * signspec, gstring * sigheaders, uschar ** errstr)
1565{
a93dbf44
JH
1566const uschar * identity, * selector, * privkey, * opts, * s;
1567unsigned options = 0;
617d3932
JH
1568int sep = 0;
1569header_line * headers;
1570hdr_rlist * rheaders;
1571blob ar;
1572int instance;
1573gstring * g = NULL;
1574pdkim_bodyhash * b;
1575
0e83c148
JH
1576expire = now = 0;
1577
617d3932
JH
1578/* Parse the signing specification */
1579
1580identity = string_nextinlist(&signspec, &sep, NULL, 0);
1581selector = string_nextinlist(&signspec, &sep, NULL, 0);
69a82da3 1582if ( !*identity || !*selector
617d3932
JH
1583 || !(privkey = string_nextinlist(&signspec, &sep, NULL, 0)) || !*privkey)
1584 {
c3d43245 1585 log_write(0, LOG_MAIN, "ARC: bad signing-specification (%s)",
9f7d9fa1 1586 !*identity ? "identity" : !*selector ? "selector" : "private-key");
c3d43245 1587 return sigheaders ? sigheaders : string_get(0);
617d3932
JH
1588 }
1589if (*privkey == '/' && !(privkey = expand_file_big_buffer(privkey)))
c3d43245 1590 return sigheaders ? sigheaders : string_get(0);
617d3932 1591
a93dbf44
JH
1592if ((opts = string_nextinlist(&signspec, &sep, NULL, 0)))
1593 {
1594 int osep = ',';
1595 while ((s = string_nextinlist(&opts, &osep, NULL, 0)))
1596 if (Ustrcmp(s, "timestamps") == 0)
0e83c148 1597 {
a93dbf44 1598 options |= ARC_SIGN_OPT_TSTAMP;
0e83c148
JH
1599 if (!now) now = time(NULL);
1600 }
1601 else if (Ustrncmp(s, "expire", 6) == 0)
1602 {
1603 options |= ARC_SIGN_OPT_EXPIRE;
1604 if (*(s += 6) == '=')
1605 if (*++s == '+')
1606 {
48224640 1607 if (!(expire = (time_t)atoi(CS ++s)))
0e83c148
JH
1608 expire = ARC_SIGN_DEFAULT_EXPIRE_DELTA;
1609 if (!now) now = time(NULL);
1610 expire += now;
1611 }
1612 else
48224640 1613 expire = (time_t)atol(CS s);
0e83c148
JH
1614 else
1615 {
1616 if (!now) now = time(NULL);
1617 expire = now + ARC_SIGN_DEFAULT_EXPIRE_DELTA;
1618 }
1619 }
a93dbf44
JH
1620 }
1621
617d3932
JH
1622DEBUG(D_transport) debug_printf("ARC: sign for %s\n", identity);
1623
b3d9ebf5
JH
1624/* Make an rlist of any new DKIM headers, then add the "normals" rlist to it.
1625Then scan the list for an A-R header. */
617d3932
JH
1626
1627string_from_gstring(sigheaders);
1628if ((rheaders = arc_sign_scan_headers(&arc_sign_ctx, sigheaders)))
1629 {
1630 hdr_rlist ** rp;
0c2250d1
JH
1631 for (rp = &headers_rlist; *rp; ) rp = &(*rp)->prev;
1632 *rp = rheaders;
617d3932 1633 }
b3d9ebf5 1634
617d3932
JH
1635/* Finally, build a normal-order headers list */
1636/*XXX only needed for hunt-the-AR? */
0c2250d1 1637/*XXX also, we really should be accepting any number of ADMD-matching ARs */
b3d9ebf5
JH
1638 {
1639 header_line * hnext = NULL;
0c2250d1
JH
1640 for (rheaders = headers_rlist; rheaders;
1641 hnext = rheaders->h, rheaders = rheaders->prev)
b3d9ebf5
JH
1642 rheaders->h->next = hnext;
1643 headers = hnext;
1644 }
617d3932
JH
1645
1646if (!(arc_sign_find_ar(headers, identity, &ar)))
1647 {
c3d43245 1648 log_write(0, LOG_MAIN, "ARC: no Authentication-Results header for signing");
617d3932
JH
1649 return sigheaders ? sigheaders : string_get(0);
1650 }
1651
b3d9ebf5
JH
1652/* We previously built the data-struct for the existing ARC chain, if any, using a headers
1653feed from the DKIM module. Use that to give the instance number for the ARC set we are
1654about to build. */
1655
1656DEBUG(D_transport)
1657 if (arc_sign_ctx.arcset_chain_last)
1658 debug_printf("ARC: existing chain highest instance: %d\n",
1659 arc_sign_ctx.arcset_chain_last->instance);
1660 else
1661 debug_printf("ARC: no existing chain\n");
1662
1663instance = arc_sign_ctx.arcset_chain_last ? arc_sign_ctx.arcset_chain_last->instance + 1 : 1;
1664
617d3932
JH
1665/*
1666- Generate AAR
1667 - copy the A-R; prepend i= & identity
1668*/
1669
1670g = arc_sign_append_aar(g, &arc_sign_ctx, identity, instance, &ar);
1671
1672/*
1673- Generate AMS
1674 - Looks fairly like a DKIM sig
1675 - Cover all DKIM sig headers as well as the usuals
1676 - ? oversigning?
1677 - Covers the data
1678 - we must have requested a suitable bodyhash previously
1679*/
1680
1681b = arc_ams_setup_sign_bodyhash();
1682g = arc_sign_append_ams(g, &arc_sign_ctx, instance, identity, selector,
a93dbf44 1683 &b->bh, headers_rlist, privkey, options);
617d3932
JH
1684
1685/*
1686- Generate AS
1687 - no body coverage
1688 - no h= tag; implicit coverage
1689 - arc status from A-R
1690 - if fail:
1691 - coverage is just the new ARC set
1692 including self (but with an empty b= in self)
1693 - if non-fail:
1694 - all ARC set headers, set-number order, aar then ams then as,
1695 including self (but with an empty b= in self)
1696*/
1697
97e939df
JH
1698if (g)
1699 g = arc_sign_prepend_as(g, &arc_sign_ctx, instance, identity, selector, &ar,
a93dbf44 1700 privkey, options);
617d3932
JH
1701
1702/* Finally, append the dkim headers and return the lot. */
1703
7b9822bf 1704if (sigheaders) g = string_catn(g, sigheaders->s, sigheaders->ptr);
617d3932 1705(void) string_from_gstring(g);
e59797e3 1706gstring_release_unused(g);
617d3932
JH
1707return g;
1708}
1709
1710
1711/******************************************************************************/
1712
1713/* Check to see if the line is an AMS and if so, set up to validate it.
1714Called from the DKIM input processing. This must be done now as the message
1715body data is hashed during input.
1716
1717We call the DKIM code to request a body-hash; it has the facility already
1718and the hash parameters might be common with other requests.
1719*/
1720
1721static const uschar *
1722arc_header_vfy_feed(gstring * g)
1723{
1724header_line h;
1725arc_line al;
1726pdkim_bodyhash * b;
1727uschar * errstr;
1728
1729if (!dkim_verify_ctx) return US"no dkim context";
1730
1731if (strncmpic(ARC_HDR_AMS, g->s, ARC_HDRLEN_AMS) != 0) return US"not AMS";
1732
1733DEBUG(D_receive) debug_printf("ARC: spotted AMS header\n");
1734/* Parse the AMS header */
1735
1736h.next = NULL;
1737h.slen = g->size;
1738h.text = g->s;
1739memset(&al, 0, sizeof(arc_line));
1740if ((errstr = arc_parse_line(&al, &h, ARC_HDRLEN_AMS, FALSE)))
1741 {
1742 DEBUG(D_acl) if (errstr) debug_printf("ARC: %s\n", errstr);
6f47da8d
JH
1743 goto badline;
1744 }
1745
1746if (!al.a_hash.data)
1747 {
1748 DEBUG(D_acl) debug_printf("ARC: no a_hash from '%.*s'\n", h.slen, h.text);
1749 goto badline;
617d3932
JH
1750 }
1751
1752/* defaults */
1753if (!al.c.data)
1754 {
1755 al.c_body.data = US"simple"; al.c_body.len = 6;
1756 al.c_head = al.c_body;
1757 }
1758
1759/* Ask the dkim code to calc a bodyhash with those specs */
1760
1761if (!(b = arc_ams_setup_vfy_bodyhash(&al)))
1762 return US"dkim hash setup fail";
1763
1764/* Discard the reference; search again at verify time, knowing that one
1765should have been created here. */
1766
1767return NULL;
6f47da8d
JH
1768
1769badline:
1770 return US"line parsing error";
617d3932
JH
1771}
1772
1773
1774
1775/* A header line has been identified by DKIM processing.
1776
1777Arguments:
1778 g Header line
1779 is_vfy TRUE for verify mode or FALSE for signing mode
1780
1781Return:
1782 NULL for success, or an error string (probably unused)
1783*/
1784
1785const uschar *
1786arc_header_feed(gstring * g, BOOL is_vfy)
1787{
1788return is_vfy ? arc_header_vfy_feed(g) : arc_header_sign_feed(g);
1789}
1790
1791
1792
1793/******************************************************************************/
1794
9cffa436
JH
1795/* Construct the list of domains from the ARC chain after validation */
1796
1797uschar *
1798fn_arc_domains(void)
1799{
1800arc_set * as;
08bd2689 1801unsigned inst;
9cffa436
JH
1802gstring * g = NULL;
1803
08bd2689 1804for (as = arc_verify_ctx.arcset_chain, inst = 1; as; as = as->next, inst++)
9cffa436 1805 {
08bd2689
JH
1806 arc_line * hdr_as = as->hdr_as;
1807 if (hdr_as)
1808 {
1809 blob * d = &hdr_as->d;
1810
1811 for (; inst < as->instance; inst++)
c8599aad 1812 g = string_catn(g, US":", 1);
08bd2689
JH
1813
1814 g = d->data && d->len
1815 ? string_append_listele_n(g, ':', d->data, d->len)
c8599aad 1816 : string_catn(g, US":", 1);
08bd2689
JH
1817 }
1818 else
c8599aad 1819 g = string_catn(g, US":", 1);
9cffa436
JH
1820 }
1821return g ? g->s : US"";
1822}
1823
1824
c8599aad 1825/* Construct an Authentication-Results header portion, for the ARC module */
617d3932
JH
1826
1827gstring *
1828authres_arc(gstring * g)
1829{
1830if (arc_state)
1831 {
1832 arc_line * highest_ams;
978e78de 1833 int start = 0; /* Compiler quietening */
617d3932
JH
1834 DEBUG(D_acl) start = g->ptr;
1835
1836 g = string_append(g, 2, US";\n\tarc=", arc_state);
1837 if (arc_received_instance > 0)
1838 {
52f12a7c 1839 g = string_fmt_append(g, " (i=%d)", arc_received_instance);
93c931f8
JH
1840 if (arc_state_reason)
1841 g = string_append(g, 3, US"(", arc_state_reason, US")");
1842 g = string_catn(g, US" header.s=", 10);
617d3932
JH
1843 highest_ams = arc_received->hdr_ams;
1844 g = string_catn(g, highest_ams->s.data, highest_ams->s.len);
1845
52f12a7c 1846 g = string_fmt_append(g, " arc.oldest-pass=%d", arc_oldest_pass);
617d3932
JH
1847
1848 if (sender_host_address)
99efa4cf 1849 g = string_append(g, 2, US" smtp.remote-ip=", sender_host_address);
617d3932 1850 }
b3d9ebf5
JH
1851 else if (arc_state_reason)
1852 g = string_append(g, 3, US" (", arc_state_reason, US")");
617d3932
JH
1853 DEBUG(D_acl) debug_printf("ARC: authres '%.*s'\n",
1854 g->ptr - start - 3, g->s + start + 3);
1855 }
1856else
1857 DEBUG(D_acl) debug_printf("ARC: no authres\n");
1858return g;
1859}
1860
1861
2b2cfa83 1862# endif /* DISABLE_DKIM */
617d3932
JH
1863#endif /* EXPERIMENTAL_ARC */
1864/* vi: aw ai sw=2
1865 */