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1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /* System trusted keyring for trusted public keys
3  *
4  * Copyright (C) 2012 Red Hat, Inc. All Rights Reserved.
5  * Written by David Howells (dhowells@redhat.com)
6  */
7 
8 #include <linux/export.h>
9 #include <linux/kernel.h>
10 #include <linux/sched.h>
11 #include <linux/cred.h>
12 #include <linux/err.h>
13 #include <linux/slab.h>
14 #include <linux/verification.h>
15 #include <keys/asymmetric-type.h>
16 #include <keys/system_keyring.h>
17 #include <crypto/pkcs7.h>
18 #include "common.h"
19 
20 static struct key *builtin_trusted_keys;
21 #ifdef CONFIG_SECONDARY_TRUSTED_KEYRING
22 static struct key *secondary_trusted_keys;
23 #endif
24 #ifdef CONFIG_INTEGRITY_PLATFORM_KEYRING
25 static struct key *platform_trusted_keys;
26 #endif
27 
28 extern __initconst const u8 system_certificate_list[];
29 extern __initconst const unsigned long system_certificate_list_size;
30 
31 /**
32  * restrict_link_to_builtin_trusted - Restrict keyring addition by built in CA
33  *
34  * Restrict the addition of keys into a keyring based on the key-to-be-added
35  * being vouched for by a key in the built in system keyring.
36  */
restrict_link_by_builtin_trusted(struct key * dest_keyring,const struct key_type * type,const union key_payload * payload,struct key * restriction_key)37 int restrict_link_by_builtin_trusted(struct key *dest_keyring,
38 				     const struct key_type *type,
39 				     const union key_payload *payload,
40 				     struct key *restriction_key)
41 {
42 	return restrict_link_by_signature(dest_keyring, type, payload,
43 					  builtin_trusted_keys);
44 }
45 
46 #ifdef CONFIG_SECONDARY_TRUSTED_KEYRING
47 /**
48  * restrict_link_by_builtin_and_secondary_trusted - Restrict keyring
49  *   addition by both builtin and secondary keyrings
50  *
51  * Restrict the addition of keys into a keyring based on the key-to-be-added
52  * being vouched for by a key in either the built-in or the secondary system
53  * keyrings.
54  */
restrict_link_by_builtin_and_secondary_trusted(struct key * dest_keyring,const struct key_type * type,const union key_payload * payload,struct key * restrict_key)55 int restrict_link_by_builtin_and_secondary_trusted(
56 	struct key *dest_keyring,
57 	const struct key_type *type,
58 	const union key_payload *payload,
59 	struct key *restrict_key)
60 {
61 	/* If we have a secondary trusted keyring, then that contains a link
62 	 * through to the builtin keyring and the search will follow that link.
63 	 */
64 	if (type == &key_type_keyring &&
65 	    dest_keyring == secondary_trusted_keys &&
66 	    payload == &builtin_trusted_keys->payload)
67 		/* Allow the builtin keyring to be added to the secondary */
68 		return 0;
69 
70 	return restrict_link_by_signature(dest_keyring, type, payload,
71 					  secondary_trusted_keys);
72 }
73 
74 /**
75  * Allocate a struct key_restriction for the "builtin and secondary trust"
76  * keyring. Only for use in system_trusted_keyring_init().
77  */
get_builtin_and_secondary_restriction(void)78 static __init struct key_restriction *get_builtin_and_secondary_restriction(void)
79 {
80 	struct key_restriction *restriction;
81 
82 	restriction = kzalloc(sizeof(struct key_restriction), GFP_KERNEL);
83 
84 	if (!restriction)
85 		panic("Can't allocate secondary trusted keyring restriction\n");
86 
87 	restriction->check = restrict_link_by_builtin_and_secondary_trusted;
88 
89 	return restriction;
90 }
91 #endif
92 
93 /*
94  * Create the trusted keyrings
95  */
system_trusted_keyring_init(void)96 static __init int system_trusted_keyring_init(void)
97 {
98 	pr_notice("Initialise system trusted keyrings\n");
99 
100 	builtin_trusted_keys =
101 		keyring_alloc(".builtin_trusted_keys",
102 			      KUIDT_INIT(0), KGIDT_INIT(0), current_cred(),
103 			      ((KEY_POS_ALL & ~KEY_POS_SETATTR) |
104 			      KEY_USR_VIEW | KEY_USR_READ | KEY_USR_SEARCH),
105 			      KEY_ALLOC_NOT_IN_QUOTA,
106 			      NULL, NULL);
107 	if (IS_ERR(builtin_trusted_keys))
108 		panic("Can't allocate builtin trusted keyring\n");
109 
110 #ifdef CONFIG_SECONDARY_TRUSTED_KEYRING
111 	secondary_trusted_keys =
112 		keyring_alloc(".secondary_trusted_keys",
113 			      KUIDT_INIT(0), KGIDT_INIT(0), current_cred(),
114 			      ((KEY_POS_ALL & ~KEY_POS_SETATTR) |
115 			       KEY_USR_VIEW | KEY_USR_READ | KEY_USR_SEARCH |
116 			       KEY_USR_WRITE),
117 			      KEY_ALLOC_NOT_IN_QUOTA,
118 			      get_builtin_and_secondary_restriction(),
119 			      NULL);
120 	if (IS_ERR(secondary_trusted_keys))
121 		panic("Can't allocate secondary trusted keyring\n");
122 
123 	if (key_link(secondary_trusted_keys, builtin_trusted_keys) < 0)
124 		panic("Can't link trusted keyrings\n");
125 #endif
126 
127 	return 0;
128 }
129 
130 /*
131  * Must be initialised before we try and load the keys into the keyring.
132  */
133 device_initcall(system_trusted_keyring_init);
134 
135 /*
136  * Load the compiled-in list of X.509 certificates.
137  */
load_system_certificate_list(void)138 static __init int load_system_certificate_list(void)
139 {
140 	pr_notice("Loading compiled-in X.509 certificates\n");
141 
142 	return load_certificate_list(system_certificate_list, system_certificate_list_size,
143 				     builtin_trusted_keys);
144 }
145 late_initcall(load_system_certificate_list);
146 
147 #ifdef CONFIG_SYSTEM_DATA_VERIFICATION
148 
149 /**
150  * verify_pkcs7_message_sig - Verify a PKCS#7-based signature on system data.
151  * @data: The data to be verified (NULL if expecting internal data).
152  * @len: Size of @data.
153  * @pkcs7: The PKCS#7 message that is the signature.
154  * @trusted_keys: Trusted keys to use (NULL for builtin trusted keys only,
155  *					(void *)1UL for all trusted keys).
156  * @usage: The use to which the key is being put.
157  * @view_content: Callback to gain access to content.
158  * @ctx: Context for callback.
159  */
verify_pkcs7_message_sig(const void * data,size_t len,struct pkcs7_message * pkcs7,struct key * trusted_keys,enum key_being_used_for usage,int (* view_content)(void * ctx,const void * data,size_t len,size_t asn1hdrlen),void * ctx)160 int verify_pkcs7_message_sig(const void *data, size_t len,
161 			     struct pkcs7_message *pkcs7,
162 			     struct key *trusted_keys,
163 			     enum key_being_used_for usage,
164 			     int (*view_content)(void *ctx,
165 						 const void *data, size_t len,
166 						 size_t asn1hdrlen),
167 			     void *ctx)
168 {
169 	int ret;
170 
171 	/* The data should be detached - so we need to supply it. */
172 	if (data && pkcs7_supply_detached_data(pkcs7, data, len) < 0) {
173 		pr_err("PKCS#7 signature with non-detached data\n");
174 		ret = -EBADMSG;
175 		goto error;
176 	}
177 
178 	ret = pkcs7_verify(pkcs7, usage);
179 	if (ret < 0)
180 		goto error;
181 
182 	if (!trusted_keys) {
183 		trusted_keys = builtin_trusted_keys;
184 	} else if (trusted_keys == VERIFY_USE_SECONDARY_KEYRING) {
185 #ifdef CONFIG_SECONDARY_TRUSTED_KEYRING
186 		trusted_keys = secondary_trusted_keys;
187 #else
188 		trusted_keys = builtin_trusted_keys;
189 #endif
190 	} else if (trusted_keys == VERIFY_USE_PLATFORM_KEYRING) {
191 #ifdef CONFIG_INTEGRITY_PLATFORM_KEYRING
192 		trusted_keys = platform_trusted_keys;
193 #else
194 		trusted_keys = NULL;
195 #endif
196 		if (!trusted_keys) {
197 			ret = -ENOKEY;
198 			pr_devel("PKCS#7 platform keyring is not available\n");
199 			goto error;
200 		}
201 
202 		ret = is_key_on_revocation_list(pkcs7);
203 		if (ret != -ENOKEY) {
204 			pr_devel("PKCS#7 platform key is on revocation list\n");
205 			goto error;
206 		}
207 	}
208 	ret = pkcs7_validate_trust(pkcs7, trusted_keys);
209 	if (ret < 0) {
210 		if (ret == -ENOKEY)
211 			pr_devel("PKCS#7 signature not signed with a trusted key\n");
212 		goto error;
213 	}
214 
215 	if (view_content) {
216 		size_t asn1hdrlen;
217 
218 		ret = pkcs7_get_content_data(pkcs7, &data, &len, &asn1hdrlen);
219 		if (ret < 0) {
220 			if (ret == -ENODATA)
221 				pr_devel("PKCS#7 message does not contain data\n");
222 			goto error;
223 		}
224 
225 		ret = view_content(ctx, data, len, asn1hdrlen);
226 	}
227 
228 error:
229 	pr_devel("<==%s() = %d\n", __func__, ret);
230 	return ret;
231 }
232 
233 /**
234  * verify_pkcs7_signature - Verify a PKCS#7-based signature on system data.
235  * @data: The data to be verified (NULL if expecting internal data).
236  * @len: Size of @data.
237  * @raw_pkcs7: The PKCS#7 message that is the signature.
238  * @pkcs7_len: The size of @raw_pkcs7.
239  * @trusted_keys: Trusted keys to use (NULL for builtin trusted keys only,
240  *					(void *)1UL for all trusted keys).
241  * @usage: The use to which the key is being put.
242  * @view_content: Callback to gain access to content.
243  * @ctx: Context for callback.
244  */
verify_pkcs7_signature(const void * data,size_t len,const void * raw_pkcs7,size_t pkcs7_len,struct key * trusted_keys,enum key_being_used_for usage,int (* view_content)(void * ctx,const void * data,size_t len,size_t asn1hdrlen),void * ctx)245 int verify_pkcs7_signature(const void *data, size_t len,
246 			   const void *raw_pkcs7, size_t pkcs7_len,
247 			   struct key *trusted_keys,
248 			   enum key_being_used_for usage,
249 			   int (*view_content)(void *ctx,
250 					       const void *data, size_t len,
251 					       size_t asn1hdrlen),
252 			   void *ctx)
253 {
254 	struct pkcs7_message *pkcs7;
255 	int ret;
256 
257 	pkcs7 = pkcs7_parse_message(raw_pkcs7, pkcs7_len);
258 	if (IS_ERR(pkcs7))
259 		return PTR_ERR(pkcs7);
260 
261 	ret = verify_pkcs7_message_sig(data, len, pkcs7, trusted_keys, usage,
262 				       view_content, ctx);
263 
264 	pkcs7_free_message(pkcs7);
265 	pr_devel("<==%s() = %d\n", __func__, ret);
266 	return ret;
267 }
268 EXPORT_SYMBOL_GPL(verify_pkcs7_signature);
269 
270 #endif /* CONFIG_SYSTEM_DATA_VERIFICATION */
271 
272 #ifdef CONFIG_INTEGRITY_PLATFORM_KEYRING
set_platform_trusted_keys(struct key * keyring)273 void __init set_platform_trusted_keys(struct key *keyring)
274 {
275 	platform_trusted_keys = keyring;
276 }
277 #endif
278