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Tamas Banf70ef8c2017-12-19 15:35:09 +00001/*
2 * Licensed to the Apache Software Foundation (ASF) under one
3 * or more contributor license agreements. See the NOTICE file
4 * distributed with this work for additional information
5 * regarding copyright ownership. The ASF licenses this file
6 * to you under the Apache License, Version 2.0 (the
7 * "License"); you may not use this file except in compliance
8 * with the License. You may obtain a copy of the License at
9 *
10 * http://www.apache.org/licenses/LICENSE-2.0
11 *
12 * Unless required by applicable law or agreed to in writing,
13 * software distributed under the License is distributed on an
14 * "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
15 * KIND, either express or implied. See the License for the
16 * specific language governing permissions and limitations
17 * under the License.
18 */
19
20#include <string.h>
21
Tamas Banf70ef8c2017-12-19 15:35:09 +000022#ifdef MCUBOOT_SIGN_RSA
23#include "bootutil/sign_key.h"
24#include "bootutil/sha256.h"
25
26#include "mbedtls/rsa.h"
27#include "mbedtls/asn1.h"
Jamie Foxa079ede2019-01-30 15:15:28 +000028#include "mbedtls/version.h"
Tamas Banf70ef8c2017-12-19 15:35:09 +000029
30#include "bootutil_priv.h"
31
32/*
33 * Constants for this particular constrained implementation of
34 * RSA-PSS. In particular, we support RSA 2048, with a SHA256 hash,
35 * and a 32-byte salt. A signature with different parameters will be
36 * rejected as invalid.
37 */
38
39/* The size, in octets, of the message. */
40#define PSS_EMLEN 256
41
42/* The size of the hash function. For SHA256, this is 32 bytes. */
43#define PSS_HLEN 32
44
45/* Size of the salt, should be fixed. */
46#define PSS_SLEN 32
47
48/* The length of the mask: emLen - hLen - 1. */
49#define PSS_MASK_LEN (256 - PSS_HLEN - 1)
50
51#define PSS_HASH_OFFSET PSS_MASK_LEN
52
53/* For the mask itself, how many bytes should be all zeros. */
54#define PSS_MASK_ZERO_COUNT (PSS_MASK_LEN - PSS_SLEN - 1)
55#define PSS_MASK_ONE_POS PSS_MASK_ZERO_COUNT
56
57/* Where the salt starts. */
58#define PSS_MASK_SALT_POS (PSS_MASK_ONE_POS + 1)
59
60static const uint8_t pss_zeros[8] = {0};
61
62/*
63 * Parse the public key used for signing. Simple RSA format.
64 */
65static int
66bootutil_parse_rsakey(mbedtls_rsa_context *ctx, uint8_t **p, uint8_t *end)
67{
Tamas Ban581034a2017-12-19 19:54:37 +000068 int rc, rc2;
Tamas Banf70ef8c2017-12-19 15:35:09 +000069 size_t len;
70
Tamas Ban581034a2017-12-19 19:54:37 +000071 rc = mbedtls_asn1_get_tag(p, end, &len,
72 MBEDTLS_ASN1_CONSTRUCTED | MBEDTLS_ASN1_SEQUENCE);
73 if (rc != 0) {
Tamas Banf70ef8c2017-12-19 15:35:09 +000074 return -1;
75 }
76
77 if (*p + len != end) {
78 return -2;
79 }
80
Tamas Ban581034a2017-12-19 19:54:37 +000081 rc = mbedtls_asn1_get_mpi(p, end, &ctx->N);
82 rc2 = mbedtls_asn1_get_mpi(p, end, &ctx->E);
83 if ((rc != 0) || (rc2 != 0)) {
Tamas Banf70ef8c2017-12-19 15:35:09 +000084 return -3;
85 }
86
Jamie Foxa079ede2019-01-30 15:15:28 +000087 ctx->len = mbedtls_mpi_size(&ctx->N);
88
Tamas Banf70ef8c2017-12-19 15:35:09 +000089 if (*p != end) {
90 return -4;
91 }
92
Jamie Foxa079ede2019-01-30 15:15:28 +000093 /* The mbedtls version is more than 2.6.1 */
94#if MBEDTLS_VERSION_NUMBER > 0x02060100
95 rc = mbedtls_rsa_import(ctx, &ctx->N, NULL, NULL, NULL, &ctx->E);
Tamas Ban581034a2017-12-19 19:54:37 +000096 if (rc != 0) {
Tamas Banf70ef8c2017-12-19 15:35:09 +000097 return -5;
98 }
Jamie Foxa079ede2019-01-30 15:15:28 +000099#endif
100
101 rc = mbedtls_rsa_check_pubkey(ctx);
102 if (rc != 0) {
103 return -6;
104 }
Tamas Banf70ef8c2017-12-19 15:35:09 +0000105
106 ctx->len = mbedtls_mpi_size(&ctx->N);
107
108 return 0;
109}
110
111/*
112 * Compute the RSA-PSS mask-generation function, MGF1. Assumptions
113 * are that the mask length will be less than 256 * PSS_HLEN, and
114 * therefore we never need to increment anything other than the low
115 * byte of the counter.
116 *
117 * This is described in PKCS#1, B.2.1.
118 */
119static void
120pss_mgf1(uint8_t *mask, const uint8_t *hash)
121{
122 bootutil_sha256_context ctx;
123 uint8_t counter[4] = { 0, 0, 0, 0 };
124 uint8_t htmp[PSS_HLEN];
125 int count = PSS_MASK_LEN;
126 int bytes;
127
128 while (count > 0) {
129 bootutil_sha256_init(&ctx);
130 bootutil_sha256_update(&ctx, hash, PSS_HLEN);
131 bootutil_sha256_update(&ctx, counter, 4);
132 bootutil_sha256_finish(&ctx, htmp);
133
134 counter[3]++;
135
136 bytes = PSS_HLEN;
137 if (bytes > count)
138 bytes = count;
139
140 memcpy(mask, htmp, bytes);
141 mask += bytes;
142 count -= bytes;
143 }
144}
145
146/*
147 * Validate an RSA signature, using RSA-PSS, as described in PKCS #1
148 * v2.2, section 9.1.2, with many parameters required to have fixed
149 * values.
150 */
151static int
152bootutil_cmp_rsasig(mbedtls_rsa_context *ctx, uint8_t *hash, uint32_t hlen,
153 uint8_t *sig)
154{
155 bootutil_sha256_context shactx;
156 uint8_t em[MBEDTLS_MPI_MAX_SIZE];
157 uint8_t db_mask[PSS_MASK_LEN];
158 uint8_t h2[PSS_HLEN];
159 int i;
160
161 if (ctx->len != PSS_EMLEN || PSS_EMLEN > MBEDTLS_MPI_MAX_SIZE) {
162 return -1;
163 }
164
165 if (hlen != PSS_HLEN) {
166 return -1;
167 }
168
169 if (mbedtls_rsa_public(ctx, sig, em)) {
170 return -1;
171 }
172
173 /*
174 * PKCS #1 v2.2, 9.1.2 EMSA-PSS-Verify
175 *
176 * emBits is 2048
177 * emLen = ceil(emBits/8) = 256
178 *
179 * The salt length is not known at the beginning.
180 */
181
182 /* Step 1. The message is constrained by the address space of a
183 * 32-bit processor, which is far less than the 2^61-1 limit of
184 * SHA-256.
185 */
186
187 /* Step 2. mHash is passed in as 'hash', with hLen the hlen
188 * argument. */
189
190 /* Step 3. if emLen < hLen + sLen + 2, inconsistent and stop.
191 * The salt length is not known at this point.
192 */
193
194 /* Step 4. If the rightmost octect of EM does have the value
195 * 0xbc, output inconsistent and stop.
196 */
197 if (em[PSS_EMLEN - 1] != 0xbc) {
198 return -1;
199 }
200
201 /* Step 5. Let maskedDB be the leftmost emLen - hLen - 1 octets
202 * of EM, and H be the next hLen octets.
203 *
204 * maskedDB is then the first 256 - 32 - 1 = 0-222
205 * H is 32 bytes 223-254
206 */
207
208 /* Step 6. If the leftmost 8emLen - emBits bits of the leftmost
209 * octet in maskedDB are not all equal to zero, output
210 * inconsistent and stop.
211 *
212 * 8emLen - emBits is zero, so there is nothing to test here.
213 */
214
215 /* Step 7. let dbMask = MGF(H, emLen - hLen - 1). */
216 pss_mgf1(db_mask, &em[PSS_HASH_OFFSET]);
217
218 /* Step 8. let DB = maskedDB xor dbMask.
219 * To avoid needing an additional buffer, store the 'db' in the
220 * same buffer as db_mask. From now, to the end of this function,
221 * db_mask refers to the unmasked 'db'. */
222 for (i = 0; i < PSS_MASK_LEN; i++) {
223 db_mask[i] ^= em[i];
224 }
225
226 /* Step 9. Set the leftmost 8emLen - emBits bits of the leftmost
227 * octet in DB to zero.
228 * pycrypto seems to always make the emBits 2047, so we need to
229 * clear the top bit. */
230 db_mask[0] &= 0x7F;
231
232 /* Step 10. If the emLen - hLen - sLen - 2 leftmost octets of DB
233 * are not zero or if the octet at position emLen - hLen - sLen -
234 * 1 (the leftmost position is "position 1") does not have
235 * hexadecimal value 0x01, output "inconsistent" and stop. */
236 for (i = 0; i < PSS_MASK_ZERO_COUNT; i++) {
237 if (db_mask[i] != 0) {
238 return -1;
239 }
240 }
241
242 if (db_mask[PSS_MASK_ONE_POS] != 1) {
243 return -1;
244 }
245
246 /* Step 11. Let salt be the last sLen octets of DB */
247
248 /* Step 12. Let M' = 0x00 00 00 00 00 00 00 00 || mHash || salt; */
249
250 /* Step 13. Let H' = Hash(M') */
251 bootutil_sha256_init(&shactx);
252 bootutil_sha256_update(&shactx, pss_zeros, 8);
253 bootutil_sha256_update(&shactx, hash, PSS_HLEN);
254 bootutil_sha256_update(&shactx, &db_mask[PSS_MASK_SALT_POS], PSS_SLEN);
255 bootutil_sha256_finish(&shactx, h2);
256
257 /* Step 14. If H = H', output "consistent". Otherwise, output
258 * "inconsistent". */
259 if (memcmp(h2, &em[PSS_HASH_OFFSET], PSS_HLEN) != 0) {
260 return -1;
261 }
262
263 return 0;
264}
265
266int
267bootutil_verify_sig(uint8_t *hash, uint32_t hlen, uint8_t *sig, int slen,
268 uint8_t key_id)
269{
270 mbedtls_rsa_context ctx;
271 int rc;
272 uint8_t *cp;
273 uint8_t *end;
274
275 mbedtls_rsa_init(&ctx, 0, 0);
276
277 cp = (uint8_t *)bootutil_keys[key_id].key;
278 end = cp + *bootutil_keys[key_id].len;
279
280 rc = bootutil_parse_rsakey(&ctx, &cp, end);
281 if (rc || slen != ctx.len) {
282 mbedtls_rsa_free(&ctx);
283 return rc;
284 }
285 rc = bootutil_cmp_rsasig(&ctx, hash, hlen, sig);
286 mbedtls_rsa_free(&ctx);
287
288 return rc;
289}
290#endif /* MCUBOOT_SIGN_RSA */