blob: 849fd760923ef5632a1d65423cde133d9a45332d [file] [log] [blame]
David Howellsc26fd692012-09-24 17:11:48 +01001/* X.509 certificate parser
2 *
3 * Copyright (C) 2012 Red Hat, Inc. All Rights Reserved.
4 * Written by David Howells (dhowells@redhat.com)
5 *
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public Licence
8 * as published by the Free Software Foundation; either version
9 * 2 of the Licence, or (at your option) any later version.
10 */
11
12#define pr_fmt(fmt) "X.509: "fmt
13#include <linux/kernel.h>
David Howellsace01072014-07-01 16:40:19 +010014#include <linux/export.h>
David Howellsc26fd692012-09-24 17:11:48 +010015#include <linux/slab.h>
16#include <linux/err.h>
17#include <linux/oid_registry.h>
18#include "public_key.h"
19#include "x509_parser.h"
20#include "x509-asn1.h"
David Howellsb92e6572015-07-20 21:16:26 +010021#include "x509_akid-asn1.h"
David Howellsc26fd692012-09-24 17:11:48 +010022#include "x509_rsakey-asn1.h"
23
24struct x509_parse_context {
25 struct x509_certificate *cert; /* Certificate being constructed */
26 unsigned long data; /* Start of data */
27 const void *cert_start; /* Start of cert content */
28 const void *key; /* Key data */
29 size_t key_size; /* Size of key data */
30 enum OID last_oid; /* Last OID encountered */
31 enum OID algo_oid; /* Algorithm OID */
32 unsigned char nr_mpi; /* Number of MPIs stored */
33 u8 o_size; /* Size of organizationName (O) */
34 u8 cn_size; /* Size of commonName (CN) */
35 u8 email_size; /* Size of emailAddress */
36 u16 o_offset; /* Offset of organizationName (O) */
37 u16 cn_offset; /* Offset of commonName (CN) */
38 u16 email_offset; /* Offset of emailAddress */
David Howellsb92e6572015-07-20 21:16:26 +010039 unsigned raw_akid_size;
40 const void *raw_akid; /* Raw authorityKeyId in ASN.1 */
41 const void *akid_raw_issuer; /* Raw directoryName in authorityKeyId */
42 unsigned akid_raw_issuer_size;
David Howellsc26fd692012-09-24 17:11:48 +010043};
44
45/*
46 * Free an X.509 certificate
47 */
48void x509_free_certificate(struct x509_certificate *cert)
49{
50 if (cert) {
51 public_key_destroy(cert->pub);
52 kfree(cert->issuer);
53 kfree(cert->subject);
David Howells46963b72014-09-16 17:36:13 +010054 kfree(cert->id);
55 kfree(cert->skid);
David Howellsb92e6572015-07-20 21:16:26 +010056 kfree(cert->akid_id);
57 kfree(cert->akid_skid);
David Howellsb426beb2013-08-30 16:18:02 +010058 kfree(cert->sig.digest);
59 mpi_free(cert->sig.rsa.s);
David Howellsc26fd692012-09-24 17:11:48 +010060 kfree(cert);
61 }
62}
David Howellsace01072014-07-01 16:40:19 +010063EXPORT_SYMBOL_GPL(x509_free_certificate);
David Howellsc26fd692012-09-24 17:11:48 +010064
65/*
66 * Parse an X.509 certificate
67 */
68struct x509_certificate *x509_cert_parse(const void *data, size_t datalen)
69{
70 struct x509_certificate *cert;
71 struct x509_parse_context *ctx;
David Howells46963b72014-09-16 17:36:13 +010072 struct asymmetric_key_id *kid;
David Howellsc26fd692012-09-24 17:11:48 +010073 long ret;
74
75 ret = -ENOMEM;
76 cert = kzalloc(sizeof(struct x509_certificate), GFP_KERNEL);
77 if (!cert)
78 goto error_no_cert;
79 cert->pub = kzalloc(sizeof(struct public_key), GFP_KERNEL);
80 if (!cert->pub)
81 goto error_no_ctx;
82 ctx = kzalloc(sizeof(struct x509_parse_context), GFP_KERNEL);
83 if (!ctx)
84 goto error_no_ctx;
85
86 ctx->cert = cert;
87 ctx->data = (unsigned long)data;
88
89 /* Attempt to decode the certificate */
90 ret = asn1_ber_decoder(&x509_decoder, ctx, data, datalen);
91 if (ret < 0)
92 goto error_decode;
93
David Howellsb92e6572015-07-20 21:16:26 +010094 /* Decode the AuthorityKeyIdentifier */
95 if (ctx->raw_akid) {
96 pr_devel("AKID: %u %*phN\n",
97 ctx->raw_akid_size, ctx->raw_akid_size, ctx->raw_akid);
98 ret = asn1_ber_decoder(&x509_akid_decoder, ctx,
99 ctx->raw_akid, ctx->raw_akid_size);
100 if (ret < 0) {
101 pr_warn("Couldn't decode AuthKeyIdentifier\n");
102 goto error_decode;
103 }
104 }
105
David Howellsc26fd692012-09-24 17:11:48 +0100106 /* Decode the public key */
107 ret = asn1_ber_decoder(&x509_rsakey_decoder, ctx,
108 ctx->key, ctx->key_size);
109 if (ret < 0)
110 goto error_decode;
111
David Howells46963b72014-09-16 17:36:13 +0100112 /* Generate cert issuer + serial number key ID */
113 kid = asymmetric_key_generate_id(cert->raw_serial,
114 cert->raw_serial_size,
115 cert->raw_issuer,
116 cert->raw_issuer_size);
117 if (IS_ERR(kid)) {
118 ret = PTR_ERR(kid);
119 goto error_decode;
120 }
121 cert->id = kid;
122
David Howellsc26fd692012-09-24 17:11:48 +0100123 kfree(ctx);
124 return cert;
125
126error_decode:
127 kfree(ctx);
128error_no_ctx:
129 x509_free_certificate(cert);
130error_no_cert:
131 return ERR_PTR(ret);
132}
David Howellsace01072014-07-01 16:40:19 +0100133EXPORT_SYMBOL_GPL(x509_cert_parse);
David Howellsc26fd692012-09-24 17:11:48 +0100134
135/*
136 * Note an OID when we find one for later processing when we know how
137 * to interpret it.
138 */
139int x509_note_OID(void *context, size_t hdrlen,
140 unsigned char tag,
141 const void *value, size_t vlen)
142{
143 struct x509_parse_context *ctx = context;
144
145 ctx->last_oid = look_up_OID(value, vlen);
146 if (ctx->last_oid == OID__NR) {
147 char buffer[50];
148 sprint_oid(value, vlen, buffer, sizeof(buffer));
Randy Dunlapcf754462012-10-03 16:04:46 -0700149 pr_debug("Unknown OID: [%lu] %s\n",
David Howellsc26fd692012-09-24 17:11:48 +0100150 (unsigned long)value - ctx->data, buffer);
151 }
152 return 0;
153}
154
155/*
156 * Save the position of the TBS data so that we can check the signature over it
157 * later.
158 */
159int x509_note_tbs_certificate(void *context, size_t hdrlen,
160 unsigned char tag,
161 const void *value, size_t vlen)
162{
163 struct x509_parse_context *ctx = context;
164
165 pr_debug("x509_note_tbs_certificate(,%zu,%02x,%ld,%zu)!\n",
166 hdrlen, tag, (unsigned long)value - ctx->data, vlen);
167
168 ctx->cert->tbs = value - hdrlen;
169 ctx->cert->tbs_size = vlen + hdrlen;
170 return 0;
171}
172
173/*
174 * Record the public key algorithm
175 */
176int x509_note_pkey_algo(void *context, size_t hdrlen,
177 unsigned char tag,
178 const void *value, size_t vlen)
179{
180 struct x509_parse_context *ctx = context;
181
182 pr_debug("PubKey Algo: %u\n", ctx->last_oid);
183
184 switch (ctx->last_oid) {
185 case OID_md2WithRSAEncryption:
186 case OID_md3WithRSAEncryption:
187 default:
188 return -ENOPKG; /* Unsupported combination */
189
190 case OID_md4WithRSAEncryption:
Dmitry Kasatkin3fe78ca2013-05-06 15:58:15 +0300191 ctx->cert->sig.pkey_hash_algo = HASH_ALGO_MD5;
David Howellsb426beb2013-08-30 16:18:02 +0100192 ctx->cert->sig.pkey_algo = PKEY_ALGO_RSA;
David Howellsc26fd692012-09-24 17:11:48 +0100193 break;
194
195 case OID_sha1WithRSAEncryption:
Dmitry Kasatkin3fe78ca2013-05-06 15:58:15 +0300196 ctx->cert->sig.pkey_hash_algo = HASH_ALGO_SHA1;
David Howellsb426beb2013-08-30 16:18:02 +0100197 ctx->cert->sig.pkey_algo = PKEY_ALGO_RSA;
David Howellsc26fd692012-09-24 17:11:48 +0100198 break;
199
200 case OID_sha256WithRSAEncryption:
Dmitry Kasatkin3fe78ca2013-05-06 15:58:15 +0300201 ctx->cert->sig.pkey_hash_algo = HASH_ALGO_SHA256;
David Howellsb426beb2013-08-30 16:18:02 +0100202 ctx->cert->sig.pkey_algo = PKEY_ALGO_RSA;
David Howellsc26fd692012-09-24 17:11:48 +0100203 break;
204
205 case OID_sha384WithRSAEncryption:
Dmitry Kasatkin3fe78ca2013-05-06 15:58:15 +0300206 ctx->cert->sig.pkey_hash_algo = HASH_ALGO_SHA384;
David Howellsb426beb2013-08-30 16:18:02 +0100207 ctx->cert->sig.pkey_algo = PKEY_ALGO_RSA;
David Howellsc26fd692012-09-24 17:11:48 +0100208 break;
209
210 case OID_sha512WithRSAEncryption:
Dmitry Kasatkin3fe78ca2013-05-06 15:58:15 +0300211 ctx->cert->sig.pkey_hash_algo = HASH_ALGO_SHA512;
David Howellsb426beb2013-08-30 16:18:02 +0100212 ctx->cert->sig.pkey_algo = PKEY_ALGO_RSA;
David Howellsc26fd692012-09-24 17:11:48 +0100213 break;
214
215 case OID_sha224WithRSAEncryption:
Dmitry Kasatkin3fe78ca2013-05-06 15:58:15 +0300216 ctx->cert->sig.pkey_hash_algo = HASH_ALGO_SHA224;
David Howellsb426beb2013-08-30 16:18:02 +0100217 ctx->cert->sig.pkey_algo = PKEY_ALGO_RSA;
David Howellsc26fd692012-09-24 17:11:48 +0100218 break;
219 }
220
221 ctx->algo_oid = ctx->last_oid;
222 return 0;
223}
224
225/*
226 * Note the whereabouts and type of the signature.
227 */
228int x509_note_signature(void *context, size_t hdrlen,
229 unsigned char tag,
230 const void *value, size_t vlen)
231{
232 struct x509_parse_context *ctx = context;
233
234 pr_debug("Signature type: %u size %zu\n", ctx->last_oid, vlen);
235
236 if (ctx->last_oid != ctx->algo_oid) {
237 pr_warn("Got cert with pkey (%u) and sig (%u) algorithm OIDs\n",
238 ctx->algo_oid, ctx->last_oid);
239 return -EINVAL;
240 }
241
David Howellsb426beb2013-08-30 16:18:02 +0100242 ctx->cert->raw_sig = value;
243 ctx->cert->raw_sig_size = vlen;
David Howellsc26fd692012-09-24 17:11:48 +0100244 return 0;
245}
246
247/*
David Howells84aabd42014-07-01 16:40:19 +0100248 * Note the certificate serial number
249 */
250int x509_note_serial(void *context, size_t hdrlen,
251 unsigned char tag,
252 const void *value, size_t vlen)
253{
254 struct x509_parse_context *ctx = context;
255 ctx->cert->raw_serial = value;
256 ctx->cert->raw_serial_size = vlen;
257 return 0;
258}
259
260/*
David Howellsc26fd692012-09-24 17:11:48 +0100261 * Note some of the name segments from which we'll fabricate a name.
262 */
263int x509_extract_name_segment(void *context, size_t hdrlen,
264 unsigned char tag,
265 const void *value, size_t vlen)
266{
267 struct x509_parse_context *ctx = context;
268
269 switch (ctx->last_oid) {
270 case OID_commonName:
271 ctx->cn_size = vlen;
272 ctx->cn_offset = (unsigned long)value - ctx->data;
273 break;
274 case OID_organizationName:
275 ctx->o_size = vlen;
276 ctx->o_offset = (unsigned long)value - ctx->data;
277 break;
278 case OID_email_address:
279 ctx->email_size = vlen;
280 ctx->email_offset = (unsigned long)value - ctx->data;
281 break;
282 default:
283 break;
284 }
285
286 return 0;
287}
288
289/*
290 * Fabricate and save the issuer and subject names
291 */
292static int x509_fabricate_name(struct x509_parse_context *ctx, size_t hdrlen,
293 unsigned char tag,
294 char **_name, size_t vlen)
295{
296 const void *name, *data = (const void *)ctx->data;
297 size_t namesize;
298 char *buffer;
299
300 if (*_name)
301 return -EINVAL;
302
303 /* Empty name string if no material */
304 if (!ctx->cn_size && !ctx->o_size && !ctx->email_size) {
305 buffer = kmalloc(1, GFP_KERNEL);
306 if (!buffer)
307 return -ENOMEM;
308 buffer[0] = 0;
309 goto done;
310 }
311
312 if (ctx->cn_size && ctx->o_size) {
313 /* Consider combining O and CN, but use only the CN if it is
314 * prefixed by the O, or a significant portion thereof.
315 */
316 namesize = ctx->cn_size;
317 name = data + ctx->cn_offset;
318 if (ctx->cn_size >= ctx->o_size &&
319 memcmp(data + ctx->cn_offset, data + ctx->o_offset,
320 ctx->o_size) == 0)
321 goto single_component;
322 if (ctx->cn_size >= 7 &&
323 ctx->o_size >= 7 &&
324 memcmp(data + ctx->cn_offset, data + ctx->o_offset, 7) == 0)
325 goto single_component;
326
327 buffer = kmalloc(ctx->o_size + 2 + ctx->cn_size + 1,
328 GFP_KERNEL);
329 if (!buffer)
330 return -ENOMEM;
331
332 memcpy(buffer,
333 data + ctx->o_offset, ctx->o_size);
334 buffer[ctx->o_size + 0] = ':';
335 buffer[ctx->o_size + 1] = ' ';
336 memcpy(buffer + ctx->o_size + 2,
337 data + ctx->cn_offset, ctx->cn_size);
338 buffer[ctx->o_size + 2 + ctx->cn_size] = 0;
339 goto done;
340
341 } else if (ctx->cn_size) {
342 namesize = ctx->cn_size;
343 name = data + ctx->cn_offset;
344 } else if (ctx->o_size) {
345 namesize = ctx->o_size;
346 name = data + ctx->o_offset;
347 } else {
348 namesize = ctx->email_size;
349 name = data + ctx->email_offset;
350 }
351
352single_component:
353 buffer = kmalloc(namesize + 1, GFP_KERNEL);
354 if (!buffer)
355 return -ENOMEM;
356 memcpy(buffer, name, namesize);
357 buffer[namesize] = 0;
358
359done:
360 *_name = buffer;
361 ctx->cn_size = 0;
362 ctx->o_size = 0;
363 ctx->email_size = 0;
364 return 0;
365}
366
367int x509_note_issuer(void *context, size_t hdrlen,
368 unsigned char tag,
369 const void *value, size_t vlen)
370{
371 struct x509_parse_context *ctx = context;
David Howells84aabd42014-07-01 16:40:19 +0100372 ctx->cert->raw_issuer = value;
373 ctx->cert->raw_issuer_size = vlen;
David Howellsc26fd692012-09-24 17:11:48 +0100374 return x509_fabricate_name(ctx, hdrlen, tag, &ctx->cert->issuer, vlen);
375}
376
377int x509_note_subject(void *context, size_t hdrlen,
378 unsigned char tag,
379 const void *value, size_t vlen)
380{
381 struct x509_parse_context *ctx = context;
David Howells84aabd42014-07-01 16:40:19 +0100382 ctx->cert->raw_subject = value;
383 ctx->cert->raw_subject_size = vlen;
David Howellsc26fd692012-09-24 17:11:48 +0100384 return x509_fabricate_name(ctx, hdrlen, tag, &ctx->cert->subject, vlen);
385}
386
387/*
388 * Extract the data for the public key algorithm
389 */
390int x509_extract_key_data(void *context, size_t hdrlen,
391 unsigned char tag,
392 const void *value, size_t vlen)
393{
394 struct x509_parse_context *ctx = context;
395
396 if (ctx->last_oid != OID_rsaEncryption)
397 return -ENOPKG;
398
David Howells67f7d60b2013-08-30 16:15:24 +0100399 ctx->cert->pub->pkey_algo = PKEY_ALGO_RSA;
400
401 /* Discard the BIT STRING metadata */
David Howellsc26fd692012-09-24 17:11:48 +0100402 ctx->key = value + 1;
403 ctx->key_size = vlen - 1;
404 return 0;
405}
406
407/*
408 * Extract a RSA public key value
409 */
410int rsa_extract_mpi(void *context, size_t hdrlen,
411 unsigned char tag,
412 const void *value, size_t vlen)
413{
414 struct x509_parse_context *ctx = context;
415 MPI mpi;
416
417 if (ctx->nr_mpi >= ARRAY_SIZE(ctx->cert->pub->mpi)) {
418 pr_err("Too many public key MPIs in certificate\n");
419 return -EBADMSG;
420 }
421
422 mpi = mpi_read_raw_data(value, vlen);
423 if (!mpi)
424 return -ENOMEM;
425
426 ctx->cert->pub->mpi[ctx->nr_mpi++] = mpi;
427 return 0;
428}
429
Chun-Yi Lee04b00bd2013-04-22 10:56:55 +0930430/* The keyIdentifier in AuthorityKeyIdentifier SEQUENCE is tag(CONT,PRIM,0) */
431#define SEQ_TAG_KEYID (ASN1_CONT << 6)
432
David Howellsc26fd692012-09-24 17:11:48 +0100433/*
434 * Process certificate extensions that are used to qualify the certificate.
435 */
436int x509_process_extension(void *context, size_t hdrlen,
437 unsigned char tag,
438 const void *value, size_t vlen)
439{
440 struct x509_parse_context *ctx = context;
David Howells46963b72014-09-16 17:36:13 +0100441 struct asymmetric_key_id *kid;
David Howellsc26fd692012-09-24 17:11:48 +0100442 const unsigned char *v = value;
David Howellsc26fd692012-09-24 17:11:48 +0100443
444 pr_debug("Extension: %u\n", ctx->last_oid);
445
446 if (ctx->last_oid == OID_subjectKeyIdentifier) {
447 /* Get hold of the key fingerprint */
David Howells46963b72014-09-16 17:36:13 +0100448 if (ctx->cert->skid || vlen < 3)
David Howellsc26fd692012-09-24 17:11:48 +0100449 return -EBADMSG;
450 if (v[0] != ASN1_OTS || v[1] != vlen - 2)
451 return -EBADMSG;
452 v += 2;
453 vlen -= 2;
454
David Howellsdd2f6c42014-10-03 16:17:02 +0100455 ctx->cert->raw_skid_size = vlen;
456 ctx->cert->raw_skid = v;
David Howellsa4c6e572015-07-20 21:16:32 +0100457 kid = asymmetric_key_generate_id(v, vlen, "", 0);
David Howells46963b72014-09-16 17:36:13 +0100458 if (IS_ERR(kid))
459 return PTR_ERR(kid);
460 ctx->cert->skid = kid;
461 pr_debug("subjkeyid %*phN\n", kid->len, kid->data);
David Howellsc26fd692012-09-24 17:11:48 +0100462 return 0;
463 }
464
465 if (ctx->last_oid == OID_authorityKeyIdentifier) {
466 /* Get hold of the CA key fingerprint */
David Howellsb92e6572015-07-20 21:16:26 +0100467 ctx->raw_akid = v;
468 ctx->raw_akid_size = vlen;
David Howellsc26fd692012-09-24 17:11:48 +0100469 return 0;
470 }
471
472 return 0;
473}
474
475/*
476 * Record a certificate time.
477 */
David Howellsa5752d12012-10-02 14:36:16 +0100478static int x509_note_time(struct tm *tm, size_t hdrlen,
David Howellsc26fd692012-09-24 17:11:48 +0100479 unsigned char tag,
480 const unsigned char *value, size_t vlen)
481{
David Howellsc26fd692012-09-24 17:11:48 +0100482 const unsigned char *p = value;
483
484#define dec2bin(X) ((X) - '0')
485#define DD2bin(P) ({ unsigned x = dec2bin(P[0]) * 10 + dec2bin(P[1]); P += 2; x; })
486
487 if (tag == ASN1_UNITIM) {
488 /* UTCTime: YYMMDDHHMMSSZ */
489 if (vlen != 13)
490 goto unsupported_time;
David Howellsa5752d12012-10-02 14:36:16 +0100491 tm->tm_year = DD2bin(p);
492 if (tm->tm_year >= 50)
493 tm->tm_year += 1900;
David Howellsc26fd692012-09-24 17:11:48 +0100494 else
David Howellsa5752d12012-10-02 14:36:16 +0100495 tm->tm_year += 2000;
David Howellsc26fd692012-09-24 17:11:48 +0100496 } else if (tag == ASN1_GENTIM) {
497 /* GenTime: YYYYMMDDHHMMSSZ */
498 if (vlen != 15)
499 goto unsupported_time;
David Howellsa5752d12012-10-02 14:36:16 +0100500 tm->tm_year = DD2bin(p) * 100 + DD2bin(p);
David Howellsc26fd692012-09-24 17:11:48 +0100501 } else {
502 goto unsupported_time;
503 }
504
David Howellsa5752d12012-10-02 14:36:16 +0100505 tm->tm_year -= 1900;
506 tm->tm_mon = DD2bin(p) - 1;
507 tm->tm_mday = DD2bin(p);
508 tm->tm_hour = DD2bin(p);
509 tm->tm_min = DD2bin(p);
510 tm->tm_sec = DD2bin(p);
David Howellsc26fd692012-09-24 17:11:48 +0100511
512 if (*p != 'Z')
513 goto unsupported_time;
514
David Howellsc26fd692012-09-24 17:11:48 +0100515 return 0;
516
517unsupported_time:
518 pr_debug("Got unsupported time [tag %02x]: '%*.*s'\n",
519 tag, (int)vlen, (int)vlen, value);
520 return -EBADMSG;
521}
522
523int x509_note_not_before(void *context, size_t hdrlen,
524 unsigned char tag,
525 const void *value, size_t vlen)
526{
527 struct x509_parse_context *ctx = context;
528 return x509_note_time(&ctx->cert->valid_from, hdrlen, tag, value, vlen);
529}
530
531int x509_note_not_after(void *context, size_t hdrlen,
532 unsigned char tag,
533 const void *value, size_t vlen)
534{
535 struct x509_parse_context *ctx = context;
536 return x509_note_time(&ctx->cert->valid_to, hdrlen, tag, value, vlen);
537}
David Howellsb92e6572015-07-20 21:16:26 +0100538
539/*
540 * Note a key identifier-based AuthorityKeyIdentifier
541 */
542int x509_akid_note_kid(void *context, size_t hdrlen,
543 unsigned char tag,
544 const void *value, size_t vlen)
545{
546 struct x509_parse_context *ctx = context;
547 struct asymmetric_key_id *kid;
548
549 pr_debug("AKID: keyid: %*phN\n", (int)vlen, value);
550
551 if (ctx->cert->akid_skid)
552 return 0;
553
David Howellsa4c6e572015-07-20 21:16:32 +0100554 kid = asymmetric_key_generate_id(value, vlen, "", 0);
David Howellsb92e6572015-07-20 21:16:26 +0100555 if (IS_ERR(kid))
556 return PTR_ERR(kid);
557 pr_debug("authkeyid %*phN\n", kid->len, kid->data);
558 ctx->cert->akid_skid = kid;
559 return 0;
560}
561
562/*
563 * Note a directoryName in an AuthorityKeyIdentifier
564 */
565int x509_akid_note_name(void *context, size_t hdrlen,
566 unsigned char tag,
567 const void *value, size_t vlen)
568{
569 struct x509_parse_context *ctx = context;
570
571 pr_debug("AKID: name: %*phN\n", (int)vlen, value);
572
573 ctx->akid_raw_issuer = value;
574 ctx->akid_raw_issuer_size = vlen;
575 return 0;
576}
577
578/*
579 * Note a serial number in an AuthorityKeyIdentifier
580 */
581int x509_akid_note_serial(void *context, size_t hdrlen,
582 unsigned char tag,
583 const void *value, size_t vlen)
584{
585 struct x509_parse_context *ctx = context;
586 struct asymmetric_key_id *kid;
587
588 pr_debug("AKID: serial: %*phN\n", (int)vlen, value);
589
590 if (!ctx->akid_raw_issuer || ctx->cert->akid_id)
591 return 0;
592
593 kid = asymmetric_key_generate_id(value,
594 vlen,
595 ctx->akid_raw_issuer,
596 ctx->akid_raw_issuer_size);
597 if (IS_ERR(kid))
598 return PTR_ERR(kid);
599
600 pr_debug("authkeyid %*phN\n", kid->len, kid->data);
601 ctx->cert->akid_id = kid;
602 return 0;
603}