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1 /* crypto/ts/ts_resp_sign.c */
2 /*
3 * Written by Zoltan Glozik (zglozik@stones.com) for the OpenSSL project
4 * 2002.
5 */
6 /* ====================================================================
7 * Copyright (c) 2006 The OpenSSL Project. All rights reserved.
8 *
9 * Redistribution and use in source and binary forms, with or without
10 * modification, are permitted provided that the following conditions
11 * are met:
12 *
13 * 1. Redistributions of source code must retain the above copyright
14 * notice, this list of conditions and the following disclaimer.
15 *
16 * 2. Redistributions in binary form must reproduce the above copyright
17 * notice, this list of conditions and the following disclaimer in
18 * the documentation and/or other materials provided with the
19 * distribution.
20 *
21 * 3. All advertising materials mentioning features or use of this
22 * software must display the following acknowledgment:
23 * "This product includes software developed by the OpenSSL Project
24 * for use in the OpenSSL Toolkit. (http://www.OpenSSL.org/)"
25 *
26 * 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to
27 * endorse or promote products derived from this software without
28 * prior written permission. For written permission, please contact
29 * licensing@OpenSSL.org.
30 *
31 * 5. Products derived from this software may not be called "OpenSSL"
32 * nor may "OpenSSL" appear in their names without prior written
33 * permission of the OpenSSL Project.
34 *
35 * 6. Redistributions of any form whatsoever must retain the following
36 * acknowledgment:
37 * "This product includes software developed by the OpenSSL Project
38 * for use in the OpenSSL Toolkit (http://www.OpenSSL.org/)"
39 *
40 * THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY
41 * EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
42 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
43 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE OpenSSL PROJECT OR
44 * ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
45 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
46 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
47 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
48 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
49 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
50 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
51 * OF THE POSSIBILITY OF SUCH DAMAGE.
52 * ====================================================================
53 *
54 * This product includes cryptographic software written by Eric Young
55 * (eay@cryptsoft.com). This product includes software written by Tim
56 * Hudson (tjh@cryptsoft.com).
57 *
58 */
59
60 #include "cryptlib.h"
61
62 #if defined(OPENSSL_SYS_UNIX)
63 # include <sys/time.h>
64 #endif
65
66 #include <openssl/objects.h>
67 #include <openssl/ts.h>
68 #include <openssl/pkcs7.h>
69
70 /* Private function declarations. */
71
72 static ASN1_INTEGER *def_serial_cb(struct TS_resp_ctx *, void *);
73 static int def_time_cb(struct TS_resp_ctx *, void *, long *sec, long *usec);
74 static int def_extension_cb(struct TS_resp_ctx *, X509_EXTENSION *, void *);
75
76 static void TS_RESP_CTX_init(TS_RESP_CTX *ctx);
77 static void TS_RESP_CTX_cleanup(TS_RESP_CTX *ctx);
78 static int TS_RESP_check_request(TS_RESP_CTX *ctx);
79 static ASN1_OBJECT *TS_RESP_get_policy(TS_RESP_CTX *ctx);
80 static TS_TST_INFO *TS_RESP_create_tst_info(TS_RESP_CTX *ctx,
81 ASN1_OBJECT *policy);
82 static int TS_RESP_process_extensions(TS_RESP_CTX *ctx);
83 static int TS_RESP_sign(TS_RESP_CTX *ctx);
84
85 static ESS_SIGNING_CERT *ESS_SIGNING_CERT_new_init(X509 *signcert,
86 STACK_OF(X509) *certs);
87 static ESS_CERT_ID *ESS_CERT_ID_new_init(X509 *cert, int issuer_needed);
88 static int TS_TST_INFO_content_new(PKCS7 *p7);
89 static int ESS_add_signing_cert(PKCS7_SIGNER_INFO *si, ESS_SIGNING_CERT *sc);
90
91 static ASN1_GENERALIZEDTIME
92 *TS_RESP_set_genTime_with_precision(ASN1_GENERALIZEDTIME *, long, long,
93 unsigned);
94
95 /* Default callbacks for response generation. */
96
97 static ASN1_INTEGER *def_serial_cb(struct TS_resp_ctx *ctx, void *data)
98 {
99 ASN1_INTEGER *serial = ASN1_INTEGER_new();
100 if (!serial)
101 goto err;
102 if (!ASN1_INTEGER_set(serial, 1))
103 goto err;
104 return serial;
105 err:
106 TSerr(TS_F_DEF_SERIAL_CB, ERR_R_MALLOC_FAILURE);
107 TS_RESP_CTX_set_status_info(ctx, TS_STATUS_REJECTION,
108 "Error during serial number generation.");
109 return NULL;
110 }
111
112 #if defined(OPENSSL_SYS_UNIX)
113
114 /* Use the gettimeofday function call. */
115 static int def_time_cb(struct TS_resp_ctx *ctx, void *data,
116 long *sec, long *usec)
117 {
118 struct timeval tv;
119 if (gettimeofday(&tv, NULL) != 0) {
120 TSerr(TS_F_DEF_TIME_CB, TS_R_TIME_SYSCALL_ERROR);
121 TS_RESP_CTX_set_status_info(ctx, TS_STATUS_REJECTION,
122 "Time is not available.");
123 TS_RESP_CTX_add_failure_info(ctx, TS_INFO_TIME_NOT_AVAILABLE);
124 return 0;
125 }
126 /* Return time to caller. */
127 *sec = tv.tv_sec;
128 *usec = tv.tv_usec;
129
130 return 1;
131 }
132
133 #else
134
135 /* Use the time function call that provides only seconds precision. */
136 static int def_time_cb(struct TS_resp_ctx *ctx, void *data,
137 long *sec, long *usec)
138 {
139 time_t t;
140 if (time(&t) == (time_t)-1) {
141 TSerr(TS_F_DEF_TIME_CB, TS_R_TIME_SYSCALL_ERROR);
142 TS_RESP_CTX_set_status_info(ctx, TS_STATUS_REJECTION,
143 "Time is not available.");
144 TS_RESP_CTX_add_failure_info(ctx, TS_INFO_TIME_NOT_AVAILABLE);
145 return 0;
146 }
147 /* Return time to caller, only second precision. */
148 *sec = (long)t;
149 *usec = 0;
150
151 return 1;
152 }
153
154 #endif
155
156 static int def_extension_cb(struct TS_resp_ctx *ctx, X509_EXTENSION *ext,
157 void *data)
158 {
159 /* No extensions are processed here. */
160 TS_RESP_CTX_set_status_info(ctx, TS_STATUS_REJECTION,
161 "Unsupported extension.");
162 TS_RESP_CTX_add_failure_info(ctx, TS_INFO_UNACCEPTED_EXTENSION);
163 return 0;
164 }
165
166 /* TS_RESP_CTX management functions. */
167
168 TS_RESP_CTX *TS_RESP_CTX_new()
169 {
170 TS_RESP_CTX *ctx;
171
172 if ((ctx = OPENSSL_malloc(sizeof(*ctx))) == NULL) {
173 TSerr(TS_F_TS_RESP_CTX_NEW, ERR_R_MALLOC_FAILURE);
174 return NULL;
175 }
176 memset(ctx, 0, sizeof(*ctx));
177
178 /* Setting default callbacks. */
179 ctx->serial_cb = def_serial_cb;
180 ctx->time_cb = def_time_cb;
181 ctx->extension_cb = def_extension_cb;
182
183 return ctx;
184 }
185
186 void TS_RESP_CTX_free(TS_RESP_CTX *ctx)
187 {
188 if (!ctx)
189 return;
190
191 X509_free(ctx->signer_cert);
192 EVP_PKEY_free(ctx->signer_key);
193 sk_X509_pop_free(ctx->certs, X509_free);
194 sk_ASN1_OBJECT_pop_free(ctx->policies, ASN1_OBJECT_free);
195 ASN1_OBJECT_free(ctx->default_policy);
196 sk_EVP_MD_free(ctx->mds); /* No EVP_MD_free method exists. */
197 ASN1_INTEGER_free(ctx->seconds);
198 ASN1_INTEGER_free(ctx->millis);
199 ASN1_INTEGER_free(ctx->micros);
200 OPENSSL_free(ctx);
201 }
202
203 int TS_RESP_CTX_set_signer_cert(TS_RESP_CTX *ctx, X509 *signer)
204 {
205 if (X509_check_purpose(signer, X509_PURPOSE_TIMESTAMP_SIGN, 0) != 1) {
206 TSerr(TS_F_TS_RESP_CTX_SET_SIGNER_CERT,
207 TS_R_INVALID_SIGNER_CERTIFICATE_PURPOSE);
208 return 0;
209 }
210 X509_free(ctx->signer_cert);
211 ctx->signer_cert = signer;
212 CRYPTO_add(&ctx->signer_cert->references, +1, CRYPTO_LOCK_X509);
213 return 1;
214 }
215
216 int TS_RESP_CTX_set_signer_key(TS_RESP_CTX *ctx, EVP_PKEY *key)
217 {
218 EVP_PKEY_free(ctx->signer_key);
219 ctx->signer_key = key;
220 CRYPTO_add(&ctx->signer_key->references, +1, CRYPTO_LOCK_EVP_PKEY);
221
222 return 1;
223 }
224
225 int TS_RESP_CTX_set_def_policy(TS_RESP_CTX *ctx, ASN1_OBJECT *def_policy)
226 {
227 ASN1_OBJECT_free(ctx->default_policy);
228 if ((ctx->default_policy = OBJ_dup(def_policy)) == NULL)
229 goto err;
230 return 1;
231 err:
232 TSerr(TS_F_TS_RESP_CTX_SET_DEF_POLICY, ERR_R_MALLOC_FAILURE);
233 return 0;
234 }
235
236 int TS_RESP_CTX_set_certs(TS_RESP_CTX *ctx, STACK_OF(X509) *certs)
237 {
238
239 sk_X509_pop_free(ctx->certs, X509_free);
240 ctx->certs = NULL;
241 if (!certs)
242 return 1;
243 if ((ctx->certs = X509_chain_up_ref(certs)) == NULL) {
244 TSerr(TS_F_TS_RESP_CTX_SET_CERTS, ERR_R_MALLOC_FAILURE);
245 return 0;
246 }
247
248 return 1;
249 }
250
251 int TS_RESP_CTX_add_policy(TS_RESP_CTX *ctx, ASN1_OBJECT *policy)
252 {
253 ASN1_OBJECT *copy = NULL;
254
255 /* Create new policy stack if necessary. */
256 if (ctx->policies == NULL
257 && (ctx->policies = sk_ASN1_OBJECT_new_null()) == NULL)
258 goto err;
259 if ((copy = OBJ_dup(policy)) == NULL)
260 goto err;
261 if (!sk_ASN1_OBJECT_push(ctx->policies, copy))
262 goto err;
263
264 return 1;
265 err:
266 TSerr(TS_F_TS_RESP_CTX_ADD_POLICY, ERR_R_MALLOC_FAILURE);
267 ASN1_OBJECT_free(copy);
268 return 0;
269 }
270
271 int TS_RESP_CTX_add_md(TS_RESP_CTX *ctx, const EVP_MD *md)
272 {
273 /* Create new md stack if necessary. */
274 if (ctx->mds == NULL
275 && (ctx->mds = sk_EVP_MD_new_null()) == NULL)
276 goto err;
277 /* Add the shared md, no copy needed. */
278 if (!sk_EVP_MD_push(ctx->mds, (EVP_MD *)md))
279 goto err;
280
281 return 1;
282 err:
283 TSerr(TS_F_TS_RESP_CTX_ADD_MD, ERR_R_MALLOC_FAILURE);
284 return 0;
285 }
286
287 #define TS_RESP_CTX_accuracy_free(ctx) \
288 ASN1_INTEGER_free(ctx->seconds); \
289 ctx->seconds = NULL; \
290 ASN1_INTEGER_free(ctx->millis); \
291 ctx->millis = NULL; \
292 ASN1_INTEGER_free(ctx->micros); \
293 ctx->micros = NULL;
294
295 int TS_RESP_CTX_set_accuracy(TS_RESP_CTX *ctx,
296 int secs, int millis, int micros)
297 {
298
299 TS_RESP_CTX_accuracy_free(ctx);
300 if (secs
301 && ((ctx->seconds = ASN1_INTEGER_new()) == NULL
302 || !ASN1_INTEGER_set(ctx->seconds, secs)))
303 goto err;
304 if (millis
305 && ((ctx->millis = ASN1_INTEGER_new()) == NULL
306 || !ASN1_INTEGER_set(ctx->millis, millis)))
307 goto err;
308 if (micros
309 && ((ctx->micros = ASN1_INTEGER_new()) == NULL
310 || !ASN1_INTEGER_set(ctx->micros, micros)))
311 goto err;
312
313 return 1;
314 err:
315 TS_RESP_CTX_accuracy_free(ctx);
316 TSerr(TS_F_TS_RESP_CTX_SET_ACCURACY, ERR_R_MALLOC_FAILURE);
317 return 0;
318 }
319
320 void TS_RESP_CTX_add_flags(TS_RESP_CTX *ctx, int flags)
321 {
322 ctx->flags |= flags;
323 }
324
325 void TS_RESP_CTX_set_serial_cb(TS_RESP_CTX *ctx, TS_serial_cb cb, void *data)
326 {
327 ctx->serial_cb = cb;
328 ctx->serial_cb_data = data;
329 }
330
331 void TS_RESP_CTX_set_time_cb(TS_RESP_CTX *ctx, TS_time_cb cb, void *data)
332 {
333 ctx->time_cb = cb;
334 ctx->time_cb_data = data;
335 }
336
337 void TS_RESP_CTX_set_extension_cb(TS_RESP_CTX *ctx,
338 TS_extension_cb cb, void *data)
339 {
340 ctx->extension_cb = cb;
341 ctx->extension_cb_data = data;
342 }
343
344 int TS_RESP_CTX_set_status_info(TS_RESP_CTX *ctx,
345 int status, const char *text)
346 {
347 TS_STATUS_INFO *si = NULL;
348 ASN1_UTF8STRING *utf8_text = NULL;
349 int ret = 0;
350
351 if ((si = TS_STATUS_INFO_new()) == NULL)
352 goto err;
353 if (!ASN1_INTEGER_set(si->status, status))
354 goto err;
355 if (text) {
356 if ((utf8_text = ASN1_UTF8STRING_new()) == NULL
357 || !ASN1_STRING_set(utf8_text, text, strlen(text)))
358 goto err;
359 if (si->text == NULL
360 && (si->text = sk_ASN1_UTF8STRING_new_null()) == NULL)
361 goto err;
362 if (!sk_ASN1_UTF8STRING_push(si->text, utf8_text))
363 goto err;
364 utf8_text = NULL; /* Ownership is lost. */
365 }
366 if (!TS_RESP_set_status_info(ctx->response, si))
367 goto err;
368 ret = 1;
369 err:
370 if (!ret)
371 TSerr(TS_F_TS_RESP_CTX_SET_STATUS_INFO, ERR_R_MALLOC_FAILURE);
372 TS_STATUS_INFO_free(si);
373 ASN1_UTF8STRING_free(utf8_text);
374 return ret;
375 }
376
377 int TS_RESP_CTX_set_status_info_cond(TS_RESP_CTX *ctx,
378 int status, const char *text)
379 {
380 int ret = 1;
381 TS_STATUS_INFO *si = TS_RESP_get_status_info(ctx->response);
382
383 if (ASN1_INTEGER_get(si->status) == TS_STATUS_GRANTED) {
384 /* Status has not been set, set it now. */
385 ret = TS_RESP_CTX_set_status_info(ctx, status, text);
386 }
387 return ret;
388 }
389
390 int TS_RESP_CTX_add_failure_info(TS_RESP_CTX *ctx, int failure)
391 {
392 TS_STATUS_INFO *si = TS_RESP_get_status_info(ctx->response);
393 if (si->failure_info == NULL
394 && (si->failure_info = ASN1_BIT_STRING_new()) == NULL)
395 goto err;
396 if (!ASN1_BIT_STRING_set_bit(si->failure_info, failure, 1))
397 goto err;
398 return 1;
399 err:
400 TSerr(TS_F_TS_RESP_CTX_ADD_FAILURE_INFO, ERR_R_MALLOC_FAILURE);
401 return 0;
402 }
403
404 TS_REQ *TS_RESP_CTX_get_request(TS_RESP_CTX *ctx)
405 {
406 return ctx->request;
407 }
408
409 TS_TST_INFO *TS_RESP_CTX_get_tst_info(TS_RESP_CTX *ctx)
410 {
411 return ctx->tst_info;
412 }
413
414 int TS_RESP_CTX_set_clock_precision_digits(TS_RESP_CTX *ctx,
415 unsigned precision)
416 {
417 if (precision > TS_MAX_CLOCK_PRECISION_DIGITS)
418 return 0;
419 ctx->clock_precision_digits = precision;
420 return 1;
421 }
422
423 /* Main entry method of the response generation. */
424 TS_RESP *TS_RESP_create_response(TS_RESP_CTX *ctx, BIO *req_bio)
425 {
426 ASN1_OBJECT *policy;
427 TS_RESP *response;
428 int result = 0;
429
430 TS_RESP_CTX_init(ctx);
431
432 /* Creating the response object. */
433 if ((ctx->response = TS_RESP_new()) == NULL) {
434 TSerr(TS_F_TS_RESP_CREATE_RESPONSE, ERR_R_MALLOC_FAILURE);
435 goto end;
436 }
437
438 /* Parsing DER request. */
439 if ((ctx->request = d2i_TS_REQ_bio(req_bio, NULL)) == NULL) {
440 TS_RESP_CTX_set_status_info(ctx, TS_STATUS_REJECTION,
441 "Bad request format or " "system error.");
442 TS_RESP_CTX_add_failure_info(ctx, TS_INFO_BAD_DATA_FORMAT);
443 goto end;
444 }
445
446 /* Setting default status info. */
447 if (!TS_RESP_CTX_set_status_info(ctx, TS_STATUS_GRANTED, NULL))
448 goto end;
449
450 /* Checking the request format. */
451 if (!TS_RESP_check_request(ctx))
452 goto end;
453
454 /* Checking acceptable policies. */
455 if ((policy = TS_RESP_get_policy(ctx)) == NULL)
456 goto end;
457
458 /* Creating the TS_TST_INFO object. */
459 if ((ctx->tst_info = TS_RESP_create_tst_info(ctx, policy)) == NULL)
460 goto end;
461
462 /* Processing extensions. */
463 if (!TS_RESP_process_extensions(ctx))
464 goto end;
465
466 /* Generating the signature. */
467 if (!TS_RESP_sign(ctx))
468 goto end;
469
470 /* Everything was successful. */
471 result = 1;
472 end:
473 if (!result) {
474 TSerr(TS_F_TS_RESP_CREATE_RESPONSE, TS_R_RESPONSE_SETUP_ERROR);
475 if (ctx->response != NULL) {
476 if (TS_RESP_CTX_set_status_info_cond(ctx,
477 TS_STATUS_REJECTION,
478 "Error during response "
479 "generation.") == 0) {
480 TS_RESP_free(ctx->response);
481 ctx->response = NULL;
482 }
483 }
484 }
485 response = ctx->response;
486 ctx->response = NULL; /* Ownership will be returned to caller. */
487 TS_RESP_CTX_cleanup(ctx);
488 return response;
489 }
490
491 /* Initializes the variable part of the context. */
492 static void TS_RESP_CTX_init(TS_RESP_CTX *ctx)
493 {
494 ctx->request = NULL;
495 ctx->response = NULL;
496 ctx->tst_info = NULL;
497 }
498
499 /* Cleans up the variable part of the context. */
500 static void TS_RESP_CTX_cleanup(TS_RESP_CTX *ctx)
501 {
502 TS_REQ_free(ctx->request);
503 ctx->request = NULL;
504 TS_RESP_free(ctx->response);
505 ctx->response = NULL;
506 TS_TST_INFO_free(ctx->tst_info);
507 ctx->tst_info = NULL;
508 }
509
510 /* Checks the format and content of the request. */
511 static int TS_RESP_check_request(TS_RESP_CTX *ctx)
512 {
513 TS_REQ *request = ctx->request;
514 TS_MSG_IMPRINT *msg_imprint;
515 X509_ALGOR *md_alg;
516 int md_alg_id;
517 const ASN1_OCTET_STRING *digest;
518 EVP_MD *md = NULL;
519 int i;
520
521 /* Checking request version. */
522 if (TS_REQ_get_version(request) != 1) {
523 TS_RESP_CTX_set_status_info(ctx, TS_STATUS_REJECTION,
524 "Bad request version.");
525 TS_RESP_CTX_add_failure_info(ctx, TS_INFO_BAD_REQUEST);
526 return 0;
527 }
528
529 /* Checking message digest algorithm. */
530 msg_imprint = TS_REQ_get_msg_imprint(request);
531 md_alg = TS_MSG_IMPRINT_get_algo(msg_imprint);
532 md_alg_id = OBJ_obj2nid(md_alg->algorithm);
533 for (i = 0; !md && i < sk_EVP_MD_num(ctx->mds); ++i) {
534 EVP_MD *current_md = sk_EVP_MD_value(ctx->mds, i);
535 if (md_alg_id == EVP_MD_type(current_md))
536 md = current_md;
537 }
538 if (!md) {
539 TS_RESP_CTX_set_status_info(ctx, TS_STATUS_REJECTION,
540 "Message digest algorithm is "
541 "not supported.");
542 TS_RESP_CTX_add_failure_info(ctx, TS_INFO_BAD_ALG);
543 return 0;
544 }
545
546 /* No message digest takes parameter. */
547 if (md_alg->parameter && ASN1_TYPE_get(md_alg->parameter) != V_ASN1_NULL) {
548 TS_RESP_CTX_set_status_info(ctx, TS_STATUS_REJECTION,
549 "Superfluous message digest "
550 "parameter.");
551 TS_RESP_CTX_add_failure_info(ctx, TS_INFO_BAD_ALG);
552 return 0;
553 }
554 /* Checking message digest size. */
555 digest = TS_MSG_IMPRINT_get_msg(msg_imprint);
556 if (digest->length != EVP_MD_size(md)) {
557 TS_RESP_CTX_set_status_info(ctx, TS_STATUS_REJECTION,
558 "Bad message digest.");
559 TS_RESP_CTX_add_failure_info(ctx, TS_INFO_BAD_DATA_FORMAT);
560 return 0;
561 }
562
563 return 1;
564 }
565
566 /* Returns the TSA policy based on the requested and acceptable policies. */
567 static ASN1_OBJECT *TS_RESP_get_policy(TS_RESP_CTX *ctx)
568 {
569 ASN1_OBJECT *requested = TS_REQ_get_policy_id(ctx->request);
570 ASN1_OBJECT *policy = NULL;
571 int i;
572
573 if (ctx->default_policy == NULL) {
574 TSerr(TS_F_TS_RESP_GET_POLICY, TS_R_INVALID_NULL_POINTER);
575 return NULL;
576 }
577 /*
578 * Return the default policy if none is requested or the default is
579 * requested.
580 */
581 if (!requested || !OBJ_cmp(requested, ctx->default_policy))
582 policy = ctx->default_policy;
583
584 /* Check if the policy is acceptable. */
585 for (i = 0; !policy && i < sk_ASN1_OBJECT_num(ctx->policies); ++i) {
586 ASN1_OBJECT *current = sk_ASN1_OBJECT_value(ctx->policies, i);
587 if (!OBJ_cmp(requested, current))
588 policy = current;
589 }
590 if (!policy) {
591 TSerr(TS_F_TS_RESP_GET_POLICY, TS_R_UNACCEPTABLE_POLICY);
592 TS_RESP_CTX_set_status_info(ctx, TS_STATUS_REJECTION,
593 "Requested policy is not " "supported.");
594 TS_RESP_CTX_add_failure_info(ctx, TS_INFO_UNACCEPTED_POLICY);
595 }
596 return policy;
597 }
598
599 /* Creates the TS_TST_INFO object based on the settings of the context. */
600 static TS_TST_INFO *TS_RESP_create_tst_info(TS_RESP_CTX *ctx,
601 ASN1_OBJECT *policy)
602 {
603 int result = 0;
604 TS_TST_INFO *tst_info = NULL;
605 ASN1_INTEGER *serial = NULL;
606 ASN1_GENERALIZEDTIME *asn1_time = NULL;
607 long sec, usec;
608 TS_ACCURACY *accuracy = NULL;
609 const ASN1_INTEGER *nonce;
610 GENERAL_NAME *tsa_name = NULL;
611
612 if ((tst_info = TS_TST_INFO_new()) == NULL)
613 goto end;
614 if (!TS_TST_INFO_set_version(tst_info, 1))
615 goto end;
616 if (!TS_TST_INFO_set_policy_id(tst_info, policy))
617 goto end;
618 if (!TS_TST_INFO_set_msg_imprint(tst_info, ctx->request->msg_imprint))
619 goto end;
620 if ((serial = ctx->serial_cb(ctx, ctx->serial_cb_data)) == NULL
621 || !TS_TST_INFO_set_serial(tst_info, serial))
622 goto end;
623 if (!ctx->time_cb(ctx, ctx->time_cb_data, &sec, &usec)
624 || (asn1_time =
625 TS_RESP_set_genTime_with_precision(NULL, sec, usec,
626 ctx->clock_precision_digits)) == NULL
627 || !TS_TST_INFO_set_time(tst_info, asn1_time))
628 goto end;
629
630 /* Setting accuracy if needed. */
631 if ((ctx->seconds || ctx->millis || ctx->micros)
632 && (accuracy = TS_ACCURACY_new()) == NULL)
633 goto end;
634
635 if (ctx->seconds && !TS_ACCURACY_set_seconds(accuracy, ctx->seconds))
636 goto end;
637 if (ctx->millis && !TS_ACCURACY_set_millis(accuracy, ctx->millis))
638 goto end;
639 if (ctx->micros && !TS_ACCURACY_set_micros(accuracy, ctx->micros))
640 goto end;
641 if (accuracy && !TS_TST_INFO_set_accuracy(tst_info, accuracy))
642 goto end;
643
644 /* Setting ordering. */
645 if ((ctx->flags & TS_ORDERING)
646 && !TS_TST_INFO_set_ordering(tst_info, 1))
647 goto end;
648
649 /* Setting nonce if needed. */
650 if ((nonce = TS_REQ_get_nonce(ctx->request)) != NULL
651 && !TS_TST_INFO_set_nonce(tst_info, nonce))
652 goto end;
653
654 /* Setting TSA name to subject of signer certificate. */
655 if (ctx->flags & TS_TSA_NAME) {
656 if ((tsa_name = GENERAL_NAME_new()) == NULL)
657 goto end;
658 tsa_name->type = GEN_DIRNAME;
659 tsa_name->d.dirn =
660 X509_NAME_dup(ctx->signer_cert->cert_info->subject);
661 if (!tsa_name->d.dirn)
662 goto end;
663 if (!TS_TST_INFO_set_tsa(tst_info, tsa_name))
664 goto end;
665 }
666
667 result = 1;
668 end:
669 if (!result) {
670 TS_TST_INFO_free(tst_info);
671 tst_info = NULL;
672 TSerr(TS_F_TS_RESP_CREATE_TST_INFO, TS_R_TST_INFO_SETUP_ERROR);
673 TS_RESP_CTX_set_status_info_cond(ctx, TS_STATUS_REJECTION,
674 "Error during TSTInfo "
675 "generation.");
676 }
677 GENERAL_NAME_free(tsa_name);
678 TS_ACCURACY_free(accuracy);
679 ASN1_GENERALIZEDTIME_free(asn1_time);
680 ASN1_INTEGER_free(serial);
681
682 return tst_info;
683 }
684
685 /* Processing the extensions of the request. */
686 static int TS_RESP_process_extensions(TS_RESP_CTX *ctx)
687 {
688 STACK_OF(X509_EXTENSION) *exts = TS_REQ_get_exts(ctx->request);
689 int i;
690 int ok = 1;
691
692 for (i = 0; ok && i < sk_X509_EXTENSION_num(exts); ++i) {
693 X509_EXTENSION *ext = sk_X509_EXTENSION_value(exts, i);
694 /*
695 * XXXXX The last argument was previously (void *)ctx->extension_cb,
696 * but ISO C doesn't permit converting a function pointer to void *.
697 * For lack of better information, I'm placing a NULL there instead.
698 * The callback can pick its own address out from the ctx anyway...
699 */
700 ok = (*ctx->extension_cb) (ctx, ext, NULL);
701 }
702
703 return ok;
704 }
705
706 /* Functions for signing the TS_TST_INFO structure of the context. */
707 static int TS_RESP_sign(TS_RESP_CTX *ctx)
708 {
709 int ret = 0;
710 PKCS7 *p7 = NULL;
711 PKCS7_SIGNER_INFO *si;
712 STACK_OF(X509) *certs; /* Certificates to include in sc. */
713 ESS_SIGNING_CERT *sc = NULL;
714 ASN1_OBJECT *oid;
715 BIO *p7bio = NULL;
716 int i;
717
718 /* Check if signcert and pkey match. */
719 if (!X509_check_private_key(ctx->signer_cert, ctx->signer_key)) {
720 TSerr(TS_F_TS_RESP_SIGN, TS_R_PRIVATE_KEY_DOES_NOT_MATCH_CERTIFICATE);
721 goto err;
722 }
723
724 /* Create a new PKCS7 signed object. */
725 if ((p7 = PKCS7_new()) == NULL) {
726 TSerr(TS_F_TS_RESP_SIGN, ERR_R_MALLOC_FAILURE);
727 goto err;
728 }
729 if (!PKCS7_set_type(p7, NID_pkcs7_signed))
730 goto err;
731
732 /* Force SignedData version to be 3 instead of the default 1. */
733 if (!ASN1_INTEGER_set(p7->d.sign->version, 3))
734 goto err;
735
736 /* Add signer certificate and optional certificate chain. */
737 if (TS_REQ_get_cert_req(ctx->request)) {
738 PKCS7_add_certificate(p7, ctx->signer_cert);
739 if (ctx->certs) {
740 for (i = 0; i < sk_X509_num(ctx->certs); ++i) {
741 X509 *cert = sk_X509_value(ctx->certs, i);
742 PKCS7_add_certificate(p7, cert);
743 }
744 }
745 }
746
747 /* Add a new signer info. */
748 if ((si = PKCS7_add_signature(p7, ctx->signer_cert,
749 ctx->signer_key, EVP_sha1())) == NULL) {
750 TSerr(TS_F_TS_RESP_SIGN, TS_R_PKCS7_ADD_SIGNATURE_ERROR);
751 goto err;
752 }
753
754 /* Add content type signed attribute to the signer info. */
755 oid = OBJ_nid2obj(NID_id_smime_ct_TSTInfo);
756 if (!PKCS7_add_signed_attribute(si, NID_pkcs9_contentType,
757 V_ASN1_OBJECT, oid)) {
758 TSerr(TS_F_TS_RESP_SIGN, TS_R_PKCS7_ADD_SIGNED_ATTR_ERROR);
759 goto err;
760 }
761
762 /*
763 * Create the ESS SigningCertificate attribute which contains the signer
764 * certificate id and optionally the certificate chain.
765 */
766 certs = ctx->flags & TS_ESS_CERT_ID_CHAIN ? ctx->certs : NULL;
767 if ((sc = ESS_SIGNING_CERT_new_init(ctx->signer_cert, certs)) == NULL)
768 goto err;
769
770 /* Add SigningCertificate signed attribute to the signer info. */
771 if (!ESS_add_signing_cert(si, sc)) {
772 TSerr(TS_F_TS_RESP_SIGN, TS_R_ESS_ADD_SIGNING_CERT_ERROR);
773 goto err;
774 }
775
776 /* Add a new empty NID_id_smime_ct_TSTInfo encapsulated content. */
777 if (!TS_TST_INFO_content_new(p7))
778 goto err;
779
780 /* Add the DER encoded tst_info to the PKCS7 structure. */
781 if ((p7bio = PKCS7_dataInit(p7, NULL)) == NULL) {
782 TSerr(TS_F_TS_RESP_SIGN, ERR_R_MALLOC_FAILURE);
783 goto err;
784 }
785
786 /* Convert tst_info to DER. */
787 if (!i2d_TS_TST_INFO_bio(p7bio, ctx->tst_info)) {
788 TSerr(TS_F_TS_RESP_SIGN, TS_R_TS_DATASIGN);
789 goto err;
790 }
791
792 /* Create the signature and add it to the signer info. */
793 if (!PKCS7_dataFinal(p7, p7bio)) {
794 TSerr(TS_F_TS_RESP_SIGN, TS_R_TS_DATASIGN);
795 goto err;
796 }
797
798 /* Set new PKCS7 and TST_INFO objects. */
799 TS_RESP_set_tst_info(ctx->response, p7, ctx->tst_info);
800 p7 = NULL; /* Ownership is lost. */
801 ctx->tst_info = NULL; /* Ownership is lost. */
802
803 ret = 1;
804 err:
805 if (!ret)
806 TS_RESP_CTX_set_status_info_cond(ctx, TS_STATUS_REJECTION,
807 "Error during signature "
808 "generation.");
809 BIO_free_all(p7bio);
810 ESS_SIGNING_CERT_free(sc);
811 PKCS7_free(p7);
812 return ret;
813 }
814
815 static ESS_SIGNING_CERT *ESS_SIGNING_CERT_new_init(X509 *signcert,
816 STACK_OF(X509) *certs)
817 {
818 ESS_CERT_ID *cid;
819 ESS_SIGNING_CERT *sc = NULL;
820 int i;
821
822 /* Creating the ESS_CERT_ID stack. */
823 if ((sc = ESS_SIGNING_CERT_new()) == NULL)
824 goto err;
825 if (sc->cert_ids == NULL
826 && (sc->cert_ids = sk_ESS_CERT_ID_new_null()) == NULL)
827 goto err;
828
829 /* Adding the signing certificate id. */
830 if ((cid = ESS_CERT_ID_new_init(signcert, 0)) == NULL
831 || !sk_ESS_CERT_ID_push(sc->cert_ids, cid))
832 goto err;
833 /* Adding the certificate chain ids. */
834 for (i = 0; i < sk_X509_num(certs); ++i) {
835 X509 *cert = sk_X509_value(certs, i);
836 if ((cid = ESS_CERT_ID_new_init(cert, 1)) == NULL
837 || !sk_ESS_CERT_ID_push(sc->cert_ids, cid))
838 goto err;
839 }
840
841 return sc;
842 err:
843 ESS_SIGNING_CERT_free(sc);
844 TSerr(TS_F_ESS_SIGNING_CERT_NEW_INIT, ERR_R_MALLOC_FAILURE);
845 return NULL;
846 }
847
848 static ESS_CERT_ID *ESS_CERT_ID_new_init(X509 *cert, int issuer_needed)
849 {
850 ESS_CERT_ID *cid = NULL;
851 GENERAL_NAME *name = NULL;
852
853 /* Recompute SHA1 hash of certificate if necessary (side effect). */
854 X509_check_purpose(cert, -1, 0);
855
856 if ((cid = ESS_CERT_ID_new()) == NULL)
857 goto err;
858 if (!ASN1_OCTET_STRING_set(cid->hash, cert->sha1_hash,
859 sizeof(cert->sha1_hash)))
860 goto err;
861
862 /* Setting the issuer/serial if requested. */
863 if (issuer_needed) {
864 /* Creating issuer/serial structure. */
865 if (cid->issuer_serial == NULL
866 && (cid->issuer_serial = ESS_ISSUER_SERIAL_new()) == NULL)
867 goto err;
868 /* Creating general name from the certificate issuer. */
869 if ((name = GENERAL_NAME_new()) == NULL)
870 goto err;
871 name->type = GEN_DIRNAME;
872 if ((name->d.dirn = X509_NAME_dup(cert->cert_info->issuer)) == NULL)
873 goto err;
874 if (!sk_GENERAL_NAME_push(cid->issuer_serial->issuer, name))
875 goto err;
876 name = NULL; /* Ownership is lost. */
877 /* Setting the serial number. */
878 ASN1_INTEGER_free(cid->issuer_serial->serial);
879 if (!(cid->issuer_serial->serial =
880 ASN1_INTEGER_dup(cert->cert_info->serialNumber)))
881 goto err;
882 }
883
884 return cid;
885 err:
886 GENERAL_NAME_free(name);
887 ESS_CERT_ID_free(cid);
888 TSerr(TS_F_ESS_CERT_ID_NEW_INIT, ERR_R_MALLOC_FAILURE);
889 return NULL;
890 }
891
892 static int TS_TST_INFO_content_new(PKCS7 *p7)
893 {
894 PKCS7 *ret = NULL;
895 ASN1_OCTET_STRING *octet_string = NULL;
896
897 /* Create new encapsulated NID_id_smime_ct_TSTInfo content. */
898 if ((ret = PKCS7_new()) == NULL)
899 goto err;
900 if ((ret->d.other = ASN1_TYPE_new()) == NULL)
901 goto err;
902 ret->type = OBJ_nid2obj(NID_id_smime_ct_TSTInfo);
903 if ((octet_string = ASN1_OCTET_STRING_new()) == NULL)
904 goto err;
905 ASN1_TYPE_set(ret->d.other, V_ASN1_OCTET_STRING, octet_string);
906 octet_string = NULL;
907
908 /* Add encapsulated content to signed PKCS7 structure. */
909 if (!PKCS7_set_content(p7, ret))
910 goto err;
911
912 return 1;
913 err:
914 ASN1_OCTET_STRING_free(octet_string);
915 PKCS7_free(ret);
916 return 0;
917 }
918
919 static int ESS_add_signing_cert(PKCS7_SIGNER_INFO *si, ESS_SIGNING_CERT *sc)
920 {
921 ASN1_STRING *seq = NULL;
922 unsigned char *p, *pp = NULL;
923 int len;
924
925 len = i2d_ESS_SIGNING_CERT(sc, NULL);
926 if ((pp = OPENSSL_malloc(len)) == NULL) {
927 TSerr(TS_F_ESS_ADD_SIGNING_CERT, ERR_R_MALLOC_FAILURE);
928 goto err;
929 }
930 p = pp;
931 i2d_ESS_SIGNING_CERT(sc, &p);
932 if ((seq = ASN1_STRING_new()) == NULL || !ASN1_STRING_set(seq, pp, len)) {
933 TSerr(TS_F_ESS_ADD_SIGNING_CERT, ERR_R_MALLOC_FAILURE);
934 goto err;
935 }
936 OPENSSL_free(pp);
937 pp = NULL;
938 return PKCS7_add_signed_attribute(si,
939 NID_id_smime_aa_signingCertificate,
940 V_ASN1_SEQUENCE, seq);
941 err:
942 ASN1_STRING_free(seq);
943 OPENSSL_free(pp);
944
945 return 0;
946 }
947
948 static ASN1_GENERALIZEDTIME
949 *TS_RESP_set_genTime_with_precision(ASN1_GENERALIZEDTIME *asn1_time,
950 long sec, long usec, unsigned precision)
951 {
952 time_t time_sec = (time_t)sec;
953 struct tm *tm = NULL;
954 char genTime_str[17 + TS_MAX_CLOCK_PRECISION_DIGITS];
955 char *p = genTime_str;
956 char *p_end = genTime_str + sizeof(genTime_str);
957
958 if (precision > TS_MAX_CLOCK_PRECISION_DIGITS)
959 goto err;
960
961 if ((tm = gmtime(&time_sec)) == NULL)
962 goto err;
963
964 /*
965 * Put "genTime_str" in GeneralizedTime format. We work around the
966 * restrictions imposed by rfc3280 (i.e. "GeneralizedTime values MUST
967 * NOT include fractional seconds") and OpenSSL related functions to
968 * meet the rfc3161 requirement: "GeneralizedTime syntax can include
969 * fraction-of-second details".
970 */
971 p += BIO_snprintf(p, p_end - p,
972 "%04d%02d%02d%02d%02d%02d",
973 tm->tm_year + 1900, tm->tm_mon + 1, tm->tm_mday,
974 tm->tm_hour, tm->tm_min, tm->tm_sec);
975 if (precision > 0) {
976 /* Add fraction of seconds (leave space for dot and null). */
977 BIO_snprintf(p, 2 + precision, ".%06ld", usec);
978 /*
979 * We cannot use the snprintf return value, because it might have
980 * been truncated.
981 */
982 p += strlen(p);
983
984 /*
985 * To make things a bit harder, X.690 | ISO/IEC 8825-1 provides the
986 * following restrictions for a DER-encoding, which OpenSSL
987 * (specifically ASN1_GENERALIZEDTIME_check() function) doesn't
988 * support: "The encoding MUST terminate with a "Z" (which means
989 * "Zulu" time). The decimal point element, if present, MUST be the
990 * point option ".". The fractional-seconds elements, if present,
991 * MUST omit all trailing 0's; if the elements correspond to 0, they
992 * MUST be wholly omitted, and the decimal point element also MUST be
993 * omitted."
994 */
995 /*
996 * Remove trailing zeros. The dot guarantees the exit condition of
997 * this loop even if all the digits are zero.
998 */
999 while (*--p == '0')
1000 /*
1001 * empty
1002 */ ;
1003 /* p points to either the dot or the last non-zero digit. */
1004 if (*p != '.')
1005 ++p;
1006 }
1007 /* Add the trailing Z and the terminating null. */
1008 *p++ = 'Z';
1009 *p++ = '\0';
1010
1011 /* Now call OpenSSL to check and set our genTime value */
1012 if (asn1_time == NULL
1013 && (asn1_time = ASN1_GENERALIZEDTIME_new()) == NULL)
1014 goto err;
1015 if (!ASN1_GENERALIZEDTIME_set_string(asn1_time, genTime_str)) {
1016 ASN1_GENERALIZEDTIME_free(asn1_time);
1017 goto err;
1018 }
1019
1020 return asn1_time;
1021 err:
1022 TSerr(TS_F_TS_RESP_SET_GENTIME_WITH_PRECISION, TS_R_COULD_NOT_SET_TIME);
1023 return NULL;
1024 }