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The Android Open Source Projectc24a8e62009-03-03 19:28:42 -08001/*
2 * Copyright (C) 2008 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
Kenny Root7a4adb52013-10-09 10:14:35 -070017#include "asn1_decoder.h"
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -080018#include "common.h"
Doug Zongker28ce47c2011-10-28 10:33:05 -070019#include "ui.h"
Kenny Root7a4adb52013-10-09 10:14:35 -070020#include "verifier.h"
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -080021
Kenny Root7a4adb52013-10-09 10:14:35 -070022#include "mincrypt/dsa_sig.h"
23#include "mincrypt/p256.h"
24#include "mincrypt/p256_ecdsa.h"
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -080025#include "mincrypt/rsa.h"
26#include "mincrypt/sha.h"
Doug Zongkerbac7fba2013-04-10 11:32:17 -070027#include "mincrypt/sha256.h"
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -080028
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -080029#include <string.h>
Doug Zongker54e2e862009-08-17 13:21:04 -070030#include <stdio.h>
31#include <errno.h>
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -080032
Dees_Troy2673cec2013-04-02 20:22:16 +000033//extern RecoveryUI* ui;
34
35#define PUBLIC_KEYS_FILE "/res/keys"
36
Kenny Root7a4adb52013-10-09 10:14:35 -070037/*
38 * Simple version of PKCS#7 SignedData extraction. This extracts the
39 * signature OCTET STRING to be used for signature verification.
40 *
41 * For full details, see http://www.ietf.org/rfc/rfc3852.txt
42 *
43 * The PKCS#7 structure looks like:
44 *
45 * SEQUENCE (ContentInfo)
46 * OID (ContentType)
47 * [0] (content)
48 * SEQUENCE (SignedData)
49 * INTEGER (version CMSVersion)
50 * SET (DigestAlgorithmIdentifiers)
51 * SEQUENCE (EncapsulatedContentInfo)
52 * [0] (CertificateSet OPTIONAL)
53 * [1] (RevocationInfoChoices OPTIONAL)
54 * SET (SignerInfos)
55 * SEQUENCE (SignerInfo)
56 * INTEGER (CMSVersion)
57 * SEQUENCE (SignerIdentifier)
58 * SEQUENCE (DigestAlgorithmIdentifier)
59 * SEQUENCE (SignatureAlgorithmIdentifier)
60 * OCTET STRING (SignatureValue)
61 */
62static bool read_pkcs7(uint8_t* pkcs7_der, size_t pkcs7_der_len, uint8_t** sig_der,
63 size_t* sig_der_length) {
64 asn1_context_t* ctx = asn1_context_new(pkcs7_der, pkcs7_der_len);
65 if (ctx == NULL) {
66 return false;
67 }
68
69 asn1_context_t* pkcs7_seq = asn1_sequence_get(ctx);
70 if (pkcs7_seq != NULL && asn1_sequence_next(pkcs7_seq)) {
71 asn1_context_t *signed_data_app = asn1_constructed_get(pkcs7_seq);
72 if (signed_data_app != NULL) {
73 asn1_context_t* signed_data_seq = asn1_sequence_get(signed_data_app);
74 if (signed_data_seq != NULL
75 && asn1_sequence_next(signed_data_seq)
76 && asn1_sequence_next(signed_data_seq)
77 && asn1_sequence_next(signed_data_seq)
78 && asn1_constructed_skip_all(signed_data_seq)) {
79 asn1_context_t *sig_set = asn1_set_get(signed_data_seq);
80 if (sig_set != NULL) {
81 asn1_context_t* sig_seq = asn1_sequence_get(sig_set);
82 if (sig_seq != NULL
83 && asn1_sequence_next(sig_seq)
84 && asn1_sequence_next(sig_seq)
85 && asn1_sequence_next(sig_seq)
86 && asn1_sequence_next(sig_seq)) {
87 uint8_t* sig_der_ptr;
88 if (asn1_octet_string_get(sig_seq, &sig_der_ptr, sig_der_length)) {
89 *sig_der = (uint8_t*) malloc(*sig_der_length);
90 if (*sig_der != NULL) {
91 memcpy(*sig_der, sig_der_ptr, *sig_der_length);
92 }
93 }
94 asn1_context_free(sig_seq);
95 }
96 asn1_context_free(sig_set);
97 }
98 asn1_context_free(signed_data_seq);
99 }
100 asn1_context_free(signed_data_app);
101 }
102 asn1_context_free(pkcs7_seq);
103 }
104 asn1_context_free(ctx);
105
106 return *sig_der != NULL;
107}
108
Doug Zongker54e2e862009-08-17 13:21:04 -0700109// Look for an RSA signature embedded in the .ZIP file comment given
110// the path to the zip. Verify it matches one of the given public
111// keys.
112//
113// Return VERIFY_SUCCESS, VERIFY_FAILURE (if any error is encountered
114// or no key matches the signature).
Ethan Yonkera1674162014-11-06 08:35:10 -0600115int verify_file(unsigned char* addr, size_t length) {
Dees_Troy2673cec2013-04-02 20:22:16 +0000116 //ui->SetProgress(0.0);
Doug Zongker54e2e862009-08-17 13:21:04 -0700117
Dees Troybb4c0cb2013-11-02 20:25:14 +0000118 int numKeys;
119 Certificate* pKeys = load_keys(PUBLIC_KEYS_FILE, &numKeys);
120 if (pKeys == NULL) {
Dees_Troy2673cec2013-04-02 20:22:16 +0000121 LOGE("Failed to load keys\n");
Dees Troybb4c0cb2013-11-02 20:25:14 +0000122 return INSTALL_CORRUPT;
Dees_Troy2673cec2013-04-02 20:22:16 +0000123 }
Dees Troybb4c0cb2013-11-02 20:25:14 +0000124 LOGI("%d key(s) loaded from %s\n", numKeys, PUBLIC_KEYS_FILE);
Doug Zongker54e2e862009-08-17 13:21:04 -0700125
Doug Zongker54e2e862009-08-17 13:21:04 -0700126 // An archive with a whole-file signature will end in six bytes:
127 //
Doug Zongker73ae31c2009-12-09 17:01:45 -0800128 // (2-byte signature start) $ff $ff (2-byte comment size)
Doug Zongker54e2e862009-08-17 13:21:04 -0700129 //
130 // (As far as the ZIP format is concerned, these are part of the
131 // archive comment.) We start by reading this footer, this tells
132 // us how far back from the end we have to start reading to find
133 // the whole comment.
134
135#define FOOTER_SIZE 6
136
Doug Zongker99916f02014-01-13 14:16:58 -0800137 if (length < FOOTER_SIZE) {
138 LOGE("not big enough to contain footer\n");
Doug Zongker54e2e862009-08-17 13:21:04 -0700139 return VERIFY_FAILURE;
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800140 }
141
Doug Zongker99916f02014-01-13 14:16:58 -0800142 unsigned char* footer = addr + length - FOOTER_SIZE;
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800143
Doug Zongker54e2e862009-08-17 13:21:04 -0700144 if (footer[2] != 0xff || footer[3] != 0xff) {
Doug Zongkerbac7fba2013-04-10 11:32:17 -0700145 LOGE("footer is wrong\n");
Doug Zongker54e2e862009-08-17 13:21:04 -0700146 return VERIFY_FAILURE;
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800147 }
148
Doug Zongker28ce47c2011-10-28 10:33:05 -0700149 size_t comment_size = footer[4] + (footer[5] << 8);
150 size_t signature_start = footer[0] + (footer[1] << 8);
Mark Salyzynf3bb31c2014-03-14 09:39:48 -0700151 LOGI("comment is %zu bytes; signature %zu bytes from end\n",
Doug Zongker54e2e862009-08-17 13:21:04 -0700152 comment_size, signature_start);
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800153
Kenny Root7a4adb52013-10-09 10:14:35 -0700154 if (signature_start <= FOOTER_SIZE) {
155 LOGE("Signature start is in the footer");
Doug Zongker54e2e862009-08-17 13:21:04 -0700156 return VERIFY_FAILURE;
157 }
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800158
Doug Zongker54e2e862009-08-17 13:21:04 -0700159#define EOCD_HEADER_SIZE 22
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800160
Doug Zongker54e2e862009-08-17 13:21:04 -0700161 // The end-of-central-directory record is 22 bytes plus any
162 // comment length.
163 size_t eocd_size = comment_size + EOCD_HEADER_SIZE;
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800164
Doug Zongker99916f02014-01-13 14:16:58 -0800165 if (length < eocd_size) {
166 LOGE("not big enough to contain EOCD\n");
Doug Zongker54e2e862009-08-17 13:21:04 -0700167 return VERIFY_FAILURE;
168 }
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800169
Doug Zongker54e2e862009-08-17 13:21:04 -0700170 // Determine how much of the file is covered by the signature.
171 // This is everything except the signature data and length, which
172 // includes all of the EOCD except for the comment length field (2
173 // bytes) and the comment data.
Doug Zongker99916f02014-01-13 14:16:58 -0800174 size_t signed_len = length - eocd_size + EOCD_HEADER_SIZE - 2;
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800175
Doug Zongker99916f02014-01-13 14:16:58 -0800176 unsigned char* eocd = addr + length - eocd_size;
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800177
Doug Zongker54e2e862009-08-17 13:21:04 -0700178 // If this is really is the EOCD record, it will begin with the
179 // magic number $50 $4b $05 $06.
180 if (eocd[0] != 0x50 || eocd[1] != 0x4b ||
181 eocd[2] != 0x05 || eocd[3] != 0x06) {
182 LOGE("signature length doesn't match EOCD marker\n");
Doug Zongker54e2e862009-08-17 13:21:04 -0700183 return VERIFY_FAILURE;
184 }
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800185
Doug Zongker28ce47c2011-10-28 10:33:05 -0700186 size_t i;
Doug Zongker54e2e862009-08-17 13:21:04 -0700187 for (i = 4; i < eocd_size-3; ++i) {
188 if (eocd[i ] == 0x50 && eocd[i+1] == 0x4b &&
Doug Zongkerc652e412009-12-08 15:30:09 -0800189 eocd[i+2] == 0x05 && eocd[i+3] == 0x06) {
Doug Zongker54e2e862009-08-17 13:21:04 -0700190 // if the sequence $50 $4b $05 $06 appears anywhere after
191 // the real one, minzip will find the later (wrong) one,
192 // which could be exploitable. Fail verification if
193 // this sequence occurs anywhere after the real one.
194 LOGE("EOCD marker occurs after start of EOCD\n");
Doug Zongker54e2e862009-08-17 13:21:04 -0700195 return VERIFY_FAILURE;
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800196 }
197 }
198
Doug Zongker54e2e862009-08-17 13:21:04 -0700199#define BUFFER_SIZE 4096
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800200
Doug Zongkerbac7fba2013-04-10 11:32:17 -0700201 bool need_sha1 = false;
202 bool need_sha256 = false;
203 for (i = 0; i < numKeys; ++i) {
204 switch (pKeys[i].hash_len) {
205 case SHA_DIGEST_SIZE: need_sha1 = true; break;
206 case SHA256_DIGEST_SIZE: need_sha256 = true; break;
207 }
208 }
209
210 SHA_CTX sha1_ctx;
211 SHA256_CTX sha256_ctx;
212 SHA_init(&sha1_ctx);
213 SHA256_init(&sha256_ctx);
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800214
Doug Zongker54e2e862009-08-17 13:21:04 -0700215 double frac = -1.0;
216 size_t so_far = 0;
Doug Zongker54e2e862009-08-17 13:21:04 -0700217 while (so_far < signed_len) {
Doug Zongker99916f02014-01-13 14:16:58 -0800218 size_t size = signed_len - so_far;
219 if (size > BUFFER_SIZE) size = BUFFER_SIZE;
220
221 if (need_sha1) SHA_update(&sha1_ctx, addr + so_far, size);
222 if (need_sha256) SHA256_update(&sha256_ctx, addr + so_far, size);
Doug Zongker54e2e862009-08-17 13:21:04 -0700223 so_far += size;
Doug Zongker99916f02014-01-13 14:16:58 -0800224
Doug Zongker54e2e862009-08-17 13:21:04 -0700225 double f = so_far / (double)signed_len;
226 if (f > frac + 0.02 || size == so_far) {
Dees_Troy2673cec2013-04-02 20:22:16 +0000227 //ui->SetProgress(f);
Doug Zongker54e2e862009-08-17 13:21:04 -0700228 frac = f;
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800229 }
230 }
231
Doug Zongkerbac7fba2013-04-10 11:32:17 -0700232 const uint8_t* sha1 = SHA_final(&sha1_ctx);
233 const uint8_t* sha256 = SHA256_final(&sha256_ctx);
234
Kenny Root7a4adb52013-10-09 10:14:35 -0700235 uint8_t* sig_der = NULL;
236 size_t sig_der_length = 0;
237
238 size_t signature_size = signature_start - FOOTER_SIZE;
239 if (!read_pkcs7(eocd + eocd_size - signature_start, signature_size, &sig_der,
240 &sig_der_length)) {
241 LOGE("Could not find signature DER block\n");
Kenny Root7a4adb52013-10-09 10:14:35 -0700242 return VERIFY_FAILURE;
243 }
Kenny Root7a4adb52013-10-09 10:14:35 -0700244
245 /*
246 * Check to make sure at least one of the keys matches the signature. Since
247 * any key can match, we need to try each before determining a verification
248 * failure has happened.
249 */
Doug Zongker54e2e862009-08-17 13:21:04 -0700250 for (i = 0; i < numKeys; ++i) {
Doug Zongkerbac7fba2013-04-10 11:32:17 -0700251 const uint8_t* hash;
252 switch (pKeys[i].hash_len) {
253 case SHA_DIGEST_SIZE: hash = sha1; break;
254 case SHA256_DIGEST_SIZE: hash = sha256; break;
255 default: continue;
256 }
257
Doug Zongker73ae31c2009-12-09 17:01:45 -0800258 // The 6 bytes is the "(signature_start) $ff $ff (comment_size)" that
Doug Zongker54e2e862009-08-17 13:21:04 -0700259 // the signing tool appends after the signature itself.
Kenny Root7a4adb52013-10-09 10:14:35 -0700260 if (pKeys[i].key_type == Certificate::RSA) {
261 if (sig_der_length < RSANUMBYTES) {
262 // "signature" block isn't big enough to contain an RSA block.
Mark Salyzynf3bb31c2014-03-14 09:39:48 -0700263 LOGI("signature is too short for RSA key %zu\n", i);
Kenny Root7a4adb52013-10-09 10:14:35 -0700264 continue;
265 }
266
267 if (!RSA_verify(pKeys[i].rsa, sig_der, RSANUMBYTES,
268 hash, pKeys[i].hash_len)) {
Mark Salyzynf3bb31c2014-03-14 09:39:48 -0700269 LOGI("failed to verify against RSA key %zu\n", i);
Kenny Root7a4adb52013-10-09 10:14:35 -0700270 continue;
271 }
272
Mark Salyzynf3bb31c2014-03-14 09:39:48 -0700273 LOGI("whole-file signature verified against RSA key %zu\n", i);
Kenny Root7a4adb52013-10-09 10:14:35 -0700274 free(sig_der);
275 return VERIFY_SUCCESS;
276 } else if (pKeys[i].key_type == Certificate::EC
277 && pKeys[i].hash_len == SHA256_DIGEST_SIZE) {
278 p256_int r, s;
279 if (!dsa_sig_unpack(sig_der, sig_der_length, &r, &s)) {
Mark Salyzynf3bb31c2014-03-14 09:39:48 -0700280 LOGI("Not a DSA signature block for EC key %zu\n", i);
Kenny Root7a4adb52013-10-09 10:14:35 -0700281 continue;
282 }
283
284 p256_int p256_hash;
285 p256_from_bin(hash, &p256_hash);
286 if (!p256_ecdsa_verify(&(pKeys[i].ec->x), &(pKeys[i].ec->y),
287 &p256_hash, &r, &s)) {
Mark Salyzynf3bb31c2014-03-14 09:39:48 -0700288 LOGI("failed to verify against EC key %zu\n", i);
Kenny Root7a4adb52013-10-09 10:14:35 -0700289 continue;
290 }
291
Mark Salyzynf3bb31c2014-03-14 09:39:48 -0700292 LOGI("whole-file signature verified against EC key %zu\n", i);
Kenny Root7a4adb52013-10-09 10:14:35 -0700293 free(sig_der);
Doug Zongker54e2e862009-08-17 13:21:04 -0700294 return VERIFY_SUCCESS;
Doug Zongker6c249f72012-11-02 15:04:05 -0700295 } else {
Kenny Root7a4adb52013-10-09 10:14:35 -0700296 LOGI("Unknown key type %d\n", pKeys[i].key_type);
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800297 }
Dees Troybb4c0cb2013-11-02 20:25:14 +0000298 LOGI("i: %i, eocd_size: %i, RSANUMBYTES: %i\n", i, eocd_size, RSANUMBYTES);
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800299 }
Kenny Root7a4adb52013-10-09 10:14:35 -0700300 free(sig_der);
Doug Zongker54e2e862009-08-17 13:21:04 -0700301 LOGE("failed to verify whole-file signature\n");
302 return VERIFY_FAILURE;
The Android Open Source Projectc24a8e62009-03-03 19:28:42 -0800303}
Doug Zongker6c249f72012-11-02 15:04:05 -0700304
305// Reads a file containing one or more public keys as produced by
306// DumpPublicKey: this is an RSAPublicKey struct as it would appear
307// as a C source literal, eg:
308//
309// "{64,0xc926ad21,{1795090719,...,-695002876},{-857949815,...,1175080310}}"
310//
311// For key versions newer than the original 2048-bit e=3 keys
312// supported by Android, the string is preceded by a version
313// identifier, eg:
314//
315// "v2 {64,0xc926ad21,{1795090719,...,-695002876},{-857949815,...,1175080310}}"
316//
317// (Note that the braces and commas in this example are actual
318// characters the parser expects to find in the file; the ellipses
319// indicate more numbers omitted from this example.)
320//
321// The file may contain multiple keys in this format, separated by
322// commas. The last key must not be followed by a comma.
323//
Doug Zongkerbac7fba2013-04-10 11:32:17 -0700324// A Certificate is a pair of an RSAPublicKey and a particular hash
325// (we support SHA-1 and SHA-256; we store the hash length to signify
326// which is being used). The hash used is implied by the version number.
327//
328// 1: 2048-bit RSA key with e=3 and SHA-1 hash
329// 2: 2048-bit RSA key with e=65537 and SHA-1 hash
330// 3: 2048-bit RSA key with e=3 and SHA-256 hash
331// 4: 2048-bit RSA key with e=65537 and SHA-256 hash
Kenny Root7a4adb52013-10-09 10:14:35 -0700332// 5: 256-bit EC key using the NIST P-256 curve parameters and SHA-256 hash
Doug Zongkerbac7fba2013-04-10 11:32:17 -0700333//
Doug Zongker6c249f72012-11-02 15:04:05 -0700334// Returns NULL if the file failed to parse, or if it contain zero keys.
Doug Zongkerbac7fba2013-04-10 11:32:17 -0700335Certificate*
Doug Zongker6c249f72012-11-02 15:04:05 -0700336load_keys(const char* filename, int* numKeys) {
Doug Zongkerbac7fba2013-04-10 11:32:17 -0700337 Certificate* out = NULL;
Doug Zongker6c249f72012-11-02 15:04:05 -0700338 *numKeys = 0;
339
340 FILE* f = fopen(filename, "r");
341 if (f == NULL) {
342 LOGE("opening %s: %s\n", filename, strerror(errno));
343 goto exit;
344 }
345
346 {
347 int i;
348 bool done = false;
349 while (!done) {
350 ++*numKeys;
Doug Zongkerbac7fba2013-04-10 11:32:17 -0700351 out = (Certificate*)realloc(out, *numKeys * sizeof(Certificate));
352 Certificate* cert = out + (*numKeys - 1);
Kenny Root7a4adb52013-10-09 10:14:35 -0700353 memset(cert, '\0', sizeof(Certificate));
Doug Zongker6c249f72012-11-02 15:04:05 -0700354
355 char start_char;
356 if (fscanf(f, " %c", &start_char) != 1) goto exit;
357 if (start_char == '{') {
358 // a version 1 key has no version specifier.
Kenny Root7a4adb52013-10-09 10:14:35 -0700359 cert->key_type = Certificate::RSA;
360 cert->rsa = (RSAPublicKey*)malloc(sizeof(RSAPublicKey));
361 cert->rsa->exponent = 3;
Doug Zongkerbac7fba2013-04-10 11:32:17 -0700362 cert->hash_len = SHA_DIGEST_SIZE;
Doug Zongker6c249f72012-11-02 15:04:05 -0700363 } else if (start_char == 'v') {
364 int version;
365 if (fscanf(f, "%d {", &version) != 1) goto exit;
Doug Zongkerbac7fba2013-04-10 11:32:17 -0700366 switch (version) {
367 case 2:
Kenny Root7a4adb52013-10-09 10:14:35 -0700368 cert->key_type = Certificate::RSA;
369 cert->rsa = (RSAPublicKey*)malloc(sizeof(RSAPublicKey));
370 cert->rsa->exponent = 65537;
Doug Zongkerbac7fba2013-04-10 11:32:17 -0700371 cert->hash_len = SHA_DIGEST_SIZE;
372 break;
373 case 3:
Kenny Root7a4adb52013-10-09 10:14:35 -0700374 cert->key_type = Certificate::RSA;
375 cert->rsa = (RSAPublicKey*)malloc(sizeof(RSAPublicKey));
376 cert->rsa->exponent = 3;
Doug Zongkerbac7fba2013-04-10 11:32:17 -0700377 cert->hash_len = SHA256_DIGEST_SIZE;
378 break;
379 case 4:
Kenny Root7a4adb52013-10-09 10:14:35 -0700380 cert->key_type = Certificate::RSA;
381 cert->rsa = (RSAPublicKey*)malloc(sizeof(RSAPublicKey));
382 cert->rsa->exponent = 65537;
383 cert->hash_len = SHA256_DIGEST_SIZE;
384 break;
385 case 5:
386 cert->key_type = Certificate::EC;
387 cert->ec = (ECPublicKey*)calloc(1, sizeof(ECPublicKey));
Doug Zongkerbac7fba2013-04-10 11:32:17 -0700388 cert->hash_len = SHA256_DIGEST_SIZE;
389 break;
390 default:
391 goto exit;
Doug Zongker6c249f72012-11-02 15:04:05 -0700392 }
393 }
394
Kenny Root7a4adb52013-10-09 10:14:35 -0700395 if (cert->key_type == Certificate::RSA) {
396 RSAPublicKey* key = cert->rsa;
397 if (fscanf(f, " %i , 0x%x , { %u",
398 &(key->len), &(key->n0inv), &(key->n[0])) != 3) {
399 goto exit;
400 }
401 if (key->len != RSANUMWORDS) {
402 LOGE("key length (%d) does not match expected size\n", key->len);
403 goto exit;
404 }
405 for (i = 1; i < key->len; ++i) {
406 if (fscanf(f, " , %u", &(key->n[i])) != 1) goto exit;
407 }
408 if (fscanf(f, " } , { %u", &(key->rr[0])) != 1) goto exit;
409 for (i = 1; i < key->len; ++i) {
410 if (fscanf(f, " , %u", &(key->rr[i])) != 1) goto exit;
411 }
412 fscanf(f, " } } ");
413
414 LOGI("read key e=%d hash=%d\n", key->exponent, cert->hash_len);
415 } else if (cert->key_type == Certificate::EC) {
416 ECPublicKey* key = cert->ec;
417 int key_len;
418 unsigned int byte;
419 uint8_t x_bytes[P256_NBYTES];
420 uint8_t y_bytes[P256_NBYTES];
421 if (fscanf(f, " %i , { %u", &key_len, &byte) != 2) goto exit;
422 if (key_len != P256_NBYTES) {
423 LOGE("Key length (%d) does not match expected size %d\n", key_len, P256_NBYTES);
424 goto exit;
425 }
426 x_bytes[P256_NBYTES - 1] = byte;
427 for (i = P256_NBYTES - 2; i >= 0; --i) {
428 if (fscanf(f, " , %u", &byte) != 1) goto exit;
429 x_bytes[i] = byte;
430 }
431 if (fscanf(f, " } , { %u", &byte) != 1) goto exit;
432 y_bytes[P256_NBYTES - 1] = byte;
433 for (i = P256_NBYTES - 2; i >= 0; --i) {
434 if (fscanf(f, " , %u", &byte) != 1) goto exit;
435 y_bytes[i] = byte;
436 }
437 fscanf(f, " } } ");
438 p256_from_bin(x_bytes, &key->x);
439 p256_from_bin(y_bytes, &key->y);
440 } else {
441 LOGE("Unknown key type %d\n", cert->key_type);
Doug Zongker6c249f72012-11-02 15:04:05 -0700442 goto exit;
443 }
Doug Zongker6c249f72012-11-02 15:04:05 -0700444
445 // if the line ends in a comma, this file has more keys.
446 switch (fgetc(f)) {
447 case ',':
448 // more keys to come.
449 break;
450
451 case EOF:
452 done = true;
453 break;
454
455 default:
456 LOGE("unexpected character between keys\n");
457 goto exit;
458 }
Doug Zongker6c249f72012-11-02 15:04:05 -0700459 }
460 }
461
462 fclose(f);
463 return out;
464
465exit:
466 if (f) fclose(f);
467 free(out);
468 *numKeys = 0;
469 return NULL;
470}