blob: 4ae982234d783c42fd736a274f1242eb143c5863 [file] [log] [blame]
David Howellsc26fd692012-09-24 17:11:48 +01001/* Instantiate a public key crypto key from an X.509 Certificate
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/module.h>
14#include <linux/kernel.h>
15#include <linux/slab.h>
16#include <linux/err.h>
17#include <linux/mpi.h>
18#include <linux/asn1_decoder.h>
19#include <keys/asymmetric-subtype.h>
20#include <keys/asymmetric-parser.h>
Mimi Zohar3be4bea2013-08-20 14:36:27 -040021#include <keys/system_keyring.h>
David Howellsc26fd692012-09-24 17:11:48 +010022#include <crypto/hash.h>
23#include "asymmetric_keys.h"
24#include "public_key.h"
25#include "x509_parser.h"
26
Dmitry Kasatkin32c47412014-06-17 11:56:59 +030027static bool use_builtin_keys;
Dmitry Kasatkinffb70f62014-06-17 11:56:58 +030028static char *ca_keyid;
29
30#ifndef MODULE
31static int __init ca_keys_setup(char *str)
32{
33 if (!str) /* default system keyring */
34 return 1;
35
36 if (strncmp(str, "id:", 3) == 0)
37 ca_keyid = str; /* owner key 'id:xxxxxx' */
Dmitry Kasatkin32c47412014-06-17 11:56:59 +030038 else if (strcmp(str, "builtin") == 0)
39 use_builtin_keys = true;
Dmitry Kasatkinffb70f62014-06-17 11:56:58 +030040
41 return 1;
42}
43__setup("ca_keys=", ca_keys_setup);
44#endif
45
David Howellsc26fd692012-09-24 17:11:48 +010046/*
Mimi Zohar3be4bea2013-08-20 14:36:27 -040047 * Find a key in the given keyring by issuer and authority.
48 */
49static struct key *x509_request_asymmetric_key(struct key *keyring,
50 const char *signer,
David Howells185de092014-07-09 16:48:00 +010051 const char *authority)
Mimi Zohar3be4bea2013-08-20 14:36:27 -040052{
53 key_ref_t key;
David Howells185de092014-07-09 16:48:00 +010054 size_t signer_len = strlen(signer), auth_len = strlen(authority);
Mimi Zohar3be4bea2013-08-20 14:36:27 -040055 char *id;
56
57 /* Construct an identifier. */
58 id = kmalloc(signer_len + 2 + auth_len + 1, GFP_KERNEL);
59 if (!id)
60 return ERR_PTR(-ENOMEM);
61
62 memcpy(id, signer, signer_len);
63 id[signer_len + 0] = ':';
64 id[signer_len + 1] = ' ';
65 memcpy(id + signer_len + 2, authority, auth_len);
66 id[signer_len + 2 + auth_len] = 0;
67
68 pr_debug("Look up: \"%s\"\n", id);
69
70 key = keyring_search(make_key_ref(keyring, 1),
71 &key_type_asymmetric, id);
72 if (IS_ERR(key))
73 pr_debug("Request for module key '%s' err %ld\n",
74 id, PTR_ERR(key));
75 kfree(id);
76
77 if (IS_ERR(key)) {
78 switch (PTR_ERR(key)) {
79 /* Hide some search errors */
80 case -EACCES:
81 case -ENOTDIR:
82 case -EAGAIN:
83 return ERR_PTR(-ENOKEY);
84 default:
85 return ERR_CAST(key);
86 }
87 }
88
89 pr_devel("<==%s() = 0 [%x]\n", __func__,
90 key_serial(key_ref_to_ptr(key)));
91 return key_ref_to_ptr(key);
92}
93
David Howellsc26fd692012-09-24 17:11:48 +010094/*
David Howellsb426beb2013-08-30 16:18:02 +010095 * Set up the signature parameters in an X.509 certificate. This involves
96 * digesting the signed data and extracting the signature.
David Howellsc26fd692012-09-24 17:11:48 +010097 */
David Howellsb426beb2013-08-30 16:18:02 +010098int x509_get_sig_params(struct x509_certificate *cert)
David Howellsc26fd692012-09-24 17:11:48 +010099{
David Howellsc26fd692012-09-24 17:11:48 +0100100 struct crypto_shash *tfm;
101 struct shash_desc *desc;
102 size_t digest_size, desc_size;
David Howellsb426beb2013-08-30 16:18:02 +0100103 void *digest;
David Howellsc26fd692012-09-24 17:11:48 +0100104 int ret;
105
106 pr_devel("==>%s()\n", __func__);
David Howellsb426beb2013-08-30 16:18:02 +0100107
108 if (cert->sig.rsa.s)
109 return 0;
110
111 cert->sig.rsa.s = mpi_read_raw_data(cert->raw_sig, cert->raw_sig_size);
112 if (!cert->sig.rsa.s)
113 return -ENOMEM;
114 cert->sig.nr_mpi = 1;
115
David Howellsc26fd692012-09-24 17:11:48 +0100116 /* Allocate the hashing algorithm we're going to need and find out how
117 * big the hash operational data will be.
118 */
Dmitry Kasatkin3fe78ca2013-05-06 15:58:15 +0300119 tfm = crypto_alloc_shash(hash_algo_name[cert->sig.pkey_hash_algo], 0, 0);
David Howellsc26fd692012-09-24 17:11:48 +0100120 if (IS_ERR(tfm))
121 return (PTR_ERR(tfm) == -ENOENT) ? -ENOPKG : PTR_ERR(tfm);
122
123 desc_size = crypto_shash_descsize(tfm) + sizeof(*desc);
124 digest_size = crypto_shash_digestsize(tfm);
125
David Howellsb426beb2013-08-30 16:18:02 +0100126 /* We allocate the hash operational data storage on the end of the
127 * digest storage space.
David Howellsc26fd692012-09-24 17:11:48 +0100128 */
129 ret = -ENOMEM;
David Howellsb426beb2013-08-30 16:18:02 +0100130 digest = kzalloc(digest_size + desc_size, GFP_KERNEL);
131 if (!digest)
132 goto error;
David Howellsc26fd692012-09-24 17:11:48 +0100133
David Howellsb426beb2013-08-30 16:18:02 +0100134 cert->sig.digest = digest;
135 cert->sig.digest_size = digest_size;
David Howellsc26fd692012-09-24 17:11:48 +0100136
David Howellsb426beb2013-08-30 16:18:02 +0100137 desc = digest + digest_size;
138 desc->tfm = tfm;
139 desc->flags = CRYPTO_TFM_REQ_MAY_SLEEP;
David Howellsc26fd692012-09-24 17:11:48 +0100140
141 ret = crypto_shash_init(desc);
142 if (ret < 0)
143 goto error;
David Howellsb426beb2013-08-30 16:18:02 +0100144 might_sleep();
145 ret = crypto_shash_finup(desc, cert->tbs, cert->tbs_size, digest);
David Howellsc26fd692012-09-24 17:11:48 +0100146error:
David Howellsc26fd692012-09-24 17:11:48 +0100147 crypto_free_shash(tfm);
David Howellsc26fd692012-09-24 17:11:48 +0100148 pr_devel("<==%s() = %d\n", __func__, ret);
149 return ret;
150}
David Howellsb426beb2013-08-30 16:18:02 +0100151EXPORT_SYMBOL_GPL(x509_get_sig_params);
152
153/*
154 * Check the signature on a certificate using the provided public key
155 */
156int x509_check_signature(const struct public_key *pub,
157 struct x509_certificate *cert)
158{
159 int ret;
160
161 pr_devel("==>%s()\n", __func__);
162
163 ret = x509_get_sig_params(cert);
164 if (ret < 0)
165 return ret;
166
167 ret = public_key_verify_signature(pub, &cert->sig);
168 pr_debug("Cert Verification: %d\n", ret);
169 return ret;
170}
171EXPORT_SYMBOL_GPL(x509_check_signature);
David Howellsc26fd692012-09-24 17:11:48 +0100172
173/*
Mimi Zohar3be4bea2013-08-20 14:36:27 -0400174 * Check the new certificate against the ones in the trust keyring. If one of
175 * those is the signing key and validates the new certificate, then mark the
176 * new certificate as being trusted.
177 *
178 * Return 0 if the new certificate was successfully validated, 1 if we couldn't
179 * find a matching parent certificate in the trusted list and an error if there
180 * is a matching certificate but the signature check fails.
181 */
182static int x509_validate_trust(struct x509_certificate *cert,
183 struct key *trust_keyring)
184{
Mimi Zohar3be4bea2013-08-20 14:36:27 -0400185 struct key *key;
186 int ret = 1;
187
188 if (!trust_keyring)
189 return -EOPNOTSUPP;
190
Dmitry Kasatkinffb70f62014-06-17 11:56:58 +0300191 if (ca_keyid && !asymmetric_keyid_match(cert->authority, ca_keyid))
192 return -EPERM;
193
Mimi Zohar3be4bea2013-08-20 14:36:27 -0400194 key = x509_request_asymmetric_key(trust_keyring,
David Howells185de092014-07-09 16:48:00 +0100195 cert->issuer, cert->authority);
Mimi Zohar3be4bea2013-08-20 14:36:27 -0400196 if (!IS_ERR(key)) {
Dmitry Kasatkin32c47412014-06-17 11:56:59 +0300197 if (!use_builtin_keys
198 || test_bit(KEY_FLAG_BUILTIN, &key->flags))
199 ret = x509_check_signature(key->payload.data, cert);
Mimi Zohar3be4bea2013-08-20 14:36:27 -0400200 key_put(key);
201 }
202 return ret;
203}
204
205/*
David Howellsc26fd692012-09-24 17:11:48 +0100206 * Attempt to parse a data blob for a key as an X509 certificate.
207 */
208static int x509_key_preparse(struct key_preparsed_payload *prep)
209{
210 struct x509_certificate *cert;
David Howellsc26fd692012-09-24 17:11:48 +0100211 size_t srlen, sulen;
212 char *desc = NULL;
213 int ret;
214
215 cert = x509_cert_parse(prep->data, prep->datalen);
216 if (IS_ERR(cert))
217 return PTR_ERR(cert);
218
219 pr_devel("Cert Issuer: %s\n", cert->issuer);
220 pr_devel("Cert Subject: %s\n", cert->subject);
David Howells2ecdb232013-08-30 16:18:15 +0100221
222 if (cert->pub->pkey_algo >= PKEY_ALGO__LAST ||
223 cert->sig.pkey_algo >= PKEY_ALGO__LAST ||
224 cert->sig.pkey_hash_algo >= PKEY_HASH__LAST ||
225 !pkey_algo[cert->pub->pkey_algo] ||
226 !pkey_algo[cert->sig.pkey_algo] ||
Dmitry Kasatkin3fe78ca2013-05-06 15:58:15 +0300227 !hash_algo_name[cert->sig.pkey_hash_algo]) {
David Howells2ecdb232013-08-30 16:18:15 +0100228 ret = -ENOPKG;
229 goto error_free_cert;
230 }
231
David Howells67f7d60b2013-08-30 16:15:24 +0100232 pr_devel("Cert Key Algo: %s\n", pkey_algo_name[cert->pub->pkey_algo]);
David Howells2f1c4fe2012-10-04 14:21:23 +0100233 pr_devel("Cert Valid From: %04ld-%02d-%02d %02d:%02d:%02d\n",
David Howellsa5752d12012-10-02 14:36:16 +0100234 cert->valid_from.tm_year + 1900, cert->valid_from.tm_mon + 1,
235 cert->valid_from.tm_mday, cert->valid_from.tm_hour,
236 cert->valid_from.tm_min, cert->valid_from.tm_sec);
David Howells2f1c4fe2012-10-04 14:21:23 +0100237 pr_devel("Cert Valid To: %04ld-%02d-%02d %02d:%02d:%02d\n",
David Howellsa5752d12012-10-02 14:36:16 +0100238 cert->valid_to.tm_year + 1900, cert->valid_to.tm_mon + 1,
239 cert->valid_to.tm_mday, cert->valid_to.tm_hour,
240 cert->valid_to.tm_min, cert->valid_to.tm_sec);
Dmitry Kasatkinc7c8bb22013-04-25 10:43:56 +0300241 pr_devel("Cert Signature: %s + %s\n",
242 pkey_algo_name[cert->sig.pkey_algo],
Dmitry Kasatkin3fe78ca2013-05-06 15:58:15 +0300243 hash_algo_name[cert->sig.pkey_hash_algo]);
David Howellsc26fd692012-09-24 17:11:48 +0100244
David Howells17334ca2013-08-30 16:18:31 +0100245 if (!cert->fingerprint) {
246 pr_warn("Cert for '%s' must have a SubjKeyId extension\n",
David Howellsc26fd692012-09-24 17:11:48 +0100247 cert->subject);
248 ret = -EKEYREJECTED;
249 goto error_free_cert;
250 }
251
David Howells67f7d60b2013-08-30 16:15:24 +0100252 cert->pub->algo = pkey_algo[cert->pub->pkey_algo];
David Howellsc26fd692012-09-24 17:11:48 +0100253 cert->pub->id_type = PKEY_ID_X509;
254
David Howells17334ca2013-08-30 16:18:31 +0100255 /* Check the signature on the key if it appears to be self-signed */
256 if (!cert->authority ||
257 strcmp(cert->fingerprint, cert->authority) == 0) {
Mimi Zohar3be4bea2013-08-20 14:36:27 -0400258 ret = x509_check_signature(cert->pub, cert); /* self-signed */
David Howellsc26fd692012-09-24 17:11:48 +0100259 if (ret < 0)
260 goto error_free_cert;
Mimi Zohar3be4bea2013-08-20 14:36:27 -0400261 } else if (!prep->trusted) {
262 ret = x509_validate_trust(cert, get_system_trusted_keyring());
263 if (!ret)
264 prep->trusted = 1;
David Howellsc26fd692012-09-24 17:11:48 +0100265 }
266
267 /* Propose a description */
268 sulen = strlen(cert->subject);
269 srlen = strlen(cert->fingerprint);
270 ret = -ENOMEM;
271 desc = kmalloc(sulen + 2 + srlen + 1, GFP_KERNEL);
272 if (!desc)
273 goto error_free_cert;
274 memcpy(desc, cert->subject, sulen);
275 desc[sulen] = ':';
276 desc[sulen + 1] = ' ';
277 memcpy(desc + sulen + 2, cert->fingerprint, srlen);
278 desc[sulen + 2 + srlen] = 0;
279
280 /* We're pinning the module by being linked against it */
281 __module_get(public_key_subtype.owner);
282 prep->type_data[0] = &public_key_subtype;
283 prep->type_data[1] = cert->fingerprint;
David Howellsfc7c70e2014-07-18 18:56:34 +0100284 prep->payload[0] = cert->pub;
David Howellsc26fd692012-09-24 17:11:48 +0100285 prep->description = desc;
286 prep->quotalen = 100;
287
288 /* We've finished with the certificate */
289 cert->pub = NULL;
290 cert->fingerprint = NULL;
291 desc = NULL;
292 ret = 0;
293
294error_free_cert:
295 x509_free_certificate(cert);
296 return ret;
297}
298
299static struct asymmetric_key_parser x509_key_parser = {
300 .owner = THIS_MODULE,
301 .name = "x509",
302 .parse = x509_key_preparse,
303};
304
305/*
306 * Module stuff
307 */
308static int __init x509_key_init(void)
309{
310 return register_asymmetric_key_parser(&x509_key_parser);
311}
312
313static void __exit x509_key_exit(void)
314{
315 unregister_asymmetric_key_parser(&x509_key_parser);
316}
317
318module_init(x509_key_init);
319module_exit(x509_key_exit);
Konstantin Khlebnikove19aaa72013-09-17 15:14:55 +0400320
321MODULE_DESCRIPTION("X.509 certificate parser");
322MODULE_LICENSE("GPL");