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Shawn Willdenac398062015-05-20 16:36:24 -06001/*
2 * Copyright 2015 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
17#include "keymaster0_engine.h"
18
19#include <assert.h>
20
21#include <memory>
22
23#define LOG_TAG "Keymaster0Engine"
24#include <cutils/log.h>
25
26#include "keymaster/android_keymaster_utils.h"
27
28#include <openssl/ec_key.h>
29#include <openssl/ecdsa.h>
30
31#include "openssl_utils.h"
32
33using std::shared_ptr;
34using std::unique_ptr;
35
36namespace keymaster {
37
38// int Keymaster0Engine::rsa_index_ = -1;
39// int Keymaster0Engine::ec_key_index_ = -1;
40Keymaster0Engine* Keymaster0Engine::instance_ = nullptr;
41const RSA_METHOD Keymaster0Engine::rsa_method_ = {
Shawn Willden24bdfc22015-05-26 13:12:24 -060042 .common =
43 {
44 0, // references
45 1 // is_static
46 },
Shawn Willdenac398062015-05-20 16:36:24 -060047 .app_data = nullptr,
48 .init = nullptr,
49 .finish = nullptr,
50 .size = nullptr,
51 .sign = nullptr,
52 .verify = nullptr,
53
54 .encrypt = nullptr,
55 .sign_raw = nullptr,
56 .decrypt = nullptr,
57 .verify_raw = nullptr,
58
59 .private_transform = Keymaster0Engine::rsa_private_transform,
60
61 .mod_exp = nullptr,
62 .bn_mod_exp = BN_mod_exp_mont,
63
Shawn Willden24bdfc22015-05-26 13:12:24 -060064 .flags = RSA_FLAG_OPAQUE,
Shawn Willdenac398062015-05-20 16:36:24 -060065
66 .keygen = nullptr,
Adam Langley607b0e02015-09-02 15:33:52 -070067#if defined(BORINGSSL_201509)
68 .multi_prime_keygen = nullptr,
69#endif
Shawn Willdenac398062015-05-20 16:36:24 -060070 .supports_digest = nullptr,
71};
72
Shawn Willden24bdfc22015-05-26 13:12:24 -060073const ECDSA_METHOD Keymaster0Engine::ecdsa_method_ = {
74 .common =
75 {
76 0, // references
77 1 // is_static
78 },
79 .app_data = nullptr,
80 .init = nullptr,
81 .finish = nullptr,
82 .group_order_size = nullptr,
83 .sign = Keymaster0Engine::ecdsa_sign,
84 .verify = nullptr,
85 .flags = ECDSA_FLAG_OPAQUE,
86};
87
Shawn Willdenac398062015-05-20 16:36:24 -060088Keymaster0Engine::Keymaster0Engine(const keymaster0_device_t* keymaster0_device)
Shawn Willden24bdfc22015-05-26 13:12:24 -060089 : keymaster0_device_(keymaster0_device), engine_(ENGINE_new()), supports_ec_(false) {
Shawn Willdenac398062015-05-20 16:36:24 -060090 assert(!instance_);
91 instance_ = this;
92
93 rsa_index_ = RSA_get_ex_new_index(0 /* argl */, NULL /* argp */, NULL /* new_func */,
94 keyblob_dup, keyblob_free);
Shawn Willden24bdfc22015-05-26 13:12:24 -060095 ec_key_index_ = EC_KEY_get_ex_new_index(0 /* argl */, NULL /* argp */, NULL /* new_func */,
96 keyblob_dup, keyblob_free);
97
Shawn Willdenac398062015-05-20 16:36:24 -060098 ENGINE_set_RSA_method(engine_, &rsa_method_, sizeof(rsa_method_));
Shawn Willden24bdfc22015-05-26 13:12:24 -060099
100 if ((keymaster0_device_->flags & KEYMASTER_SUPPORTS_EC) != 0) {
101 supports_ec_ = true;
102 ENGINE_set_ECDSA_method(engine_, &ecdsa_method_, sizeof(ecdsa_method_));
103 }
Shawn Willdenac398062015-05-20 16:36:24 -0600104}
105
106Keymaster0Engine::~Keymaster0Engine() {
107 if (keymaster0_device_)
108 keymaster0_device_->common.close(
109 reinterpret_cast<hw_device_t*>(const_cast<keymaster0_device_t*>(keymaster0_device_)));
110 ENGINE_free(engine_);
111 instance_ = nullptr;
112}
113
114bool Keymaster0Engine::GenerateRsaKey(uint64_t public_exponent, uint32_t public_modulus,
115 KeymasterKeyBlob* key_material) const {
116 assert(key_material);
117 keymaster_rsa_keygen_params_t params;
118 params.public_exponent = public_exponent;
119 params.modulus_size = public_modulus;
120
121 uint8_t* key_blob = 0;
122 if (keymaster0_device_->generate_keypair(keymaster0_device_, TYPE_RSA, &params, &key_blob,
123 &key_material->key_material_size) < 0) {
124 ALOGE("Error generating RSA key pair with keymaster0 device");
125 return false;
126 }
127 unique_ptr<uint8_t, Malloc_Delete> key_blob_deleter(key_blob);
128 key_material->key_material = dup_buffer(key_blob, key_material->key_material_size);
129 return true;
130}
131
Shawn Willden24bdfc22015-05-26 13:12:24 -0600132bool Keymaster0Engine::GenerateEcKey(uint32_t key_size, KeymasterKeyBlob* key_material) const {
133 assert(key_material);
134 keymaster_ec_keygen_params_t params;
135 params.field_size = key_size;
136
137 uint8_t* key_blob = 0;
138 if (keymaster0_device_->generate_keypair(keymaster0_device_, TYPE_EC, &params, &key_blob,
139 &key_material->key_material_size) < 0) {
140 ALOGE("Error generating EC key pair with keymaster0 device");
141 return false;
142 }
143 unique_ptr<uint8_t, Malloc_Delete> key_blob_deleter(key_blob);
144 key_material->key_material = dup_buffer(key_blob, key_material->key_material_size);
145 return true;
146}
147
148bool Keymaster0Engine::ImportKey(keymaster_key_format_t key_format,
149 const KeymasterKeyBlob& to_import,
150 KeymasterKeyBlob* imported_key) const {
Shawn Willdenac398062015-05-20 16:36:24 -0600151 assert(imported_key);
152 if (key_format != KM_KEY_FORMAT_PKCS8)
153 return false;
154
155 uint8_t* key_blob = 0;
156 if (keymaster0_device_->import_keypair(keymaster0_device_, to_import.key_material,
157 to_import.key_material_size, &key_blob,
158 &imported_key->key_material_size) < 0) {
Shawn Willden24bdfc22015-05-26 13:12:24 -0600159 ALOGW("Error importing keypair with keymaster0 device");
Shawn Willdenac398062015-05-20 16:36:24 -0600160 return false;
161 }
162 unique_ptr<uint8_t, Malloc_Delete> key_blob_deleter(key_blob);
163 imported_key->key_material = dup_buffer(key_blob, imported_key->key_material_size);
164 return true;
165}
166
167static keymaster_key_blob_t* duplicate_blob(const uint8_t* key_data, size_t key_data_size) {
Shawn Willden661b2b12015-06-20 09:16:30 -0600168 unique_ptr<uint8_t[]> key_material_copy(dup_buffer(key_data, key_data_size));
Shawn Willdenac398062015-05-20 16:36:24 -0600169 if (!key_material_copy)
170 return nullptr;
171
Shawn Willden661b2b12015-06-20 09:16:30 -0600172 unique_ptr<keymaster_key_blob_t> blob_copy(new (std::nothrow) keymaster_key_blob_t);
173 if (!blob_copy.get())
174 return nullptr;
Shawn Willdenac398062015-05-20 16:36:24 -0600175 blob_copy->key_material_size = key_data_size;
176 blob_copy->key_material = key_material_copy.release();
177 return blob_copy.release();
178}
179
180inline keymaster_key_blob_t* duplicate_blob(const keymaster_key_blob_t& blob) {
181 return duplicate_blob(blob.key_material, blob.key_material_size);
182}
183
184RSA* Keymaster0Engine::BlobToRsaKey(const KeymasterKeyBlob& blob) const {
185 // Create new RSA key (with engine methods) and insert blob
186 unique_ptr<RSA, RSA_Delete> rsa(RSA_new_method(engine_));
187 if (!rsa)
188 return nullptr;
189
190 keymaster_key_blob_t* blob_copy = duplicate_blob(blob);
191 if (!blob_copy->key_material || !RSA_set_ex_data(rsa.get(), rsa_index_, blob_copy))
192 return nullptr;
193
194 // Copy public key into new RSA key
195 unique_ptr<EVP_PKEY, EVP_PKEY_Delete> pkey(GetKeymaster0PublicKey(blob));
196 if (!pkey)
197 return nullptr;
198 unique_ptr<RSA, RSA_Delete> public_rsa(EVP_PKEY_get1_RSA(pkey.get()));
199 if (!public_rsa)
200 return nullptr;
201 rsa->n = BN_dup(public_rsa->n);
202 rsa->e = BN_dup(public_rsa->e);
203 if (!rsa->n || !rsa->e)
204 return nullptr;
205
206 return rsa.release();
207}
208
Shawn Willden24bdfc22015-05-26 13:12:24 -0600209EC_KEY* Keymaster0Engine::BlobToEcKey(const KeymasterKeyBlob& blob) const {
210 // Create new EC key (with engine methods) and insert blob
211 unique_ptr<EC_KEY, EC_Delete> ec_key(EC_KEY_new_method(engine_));
212 if (!ec_key)
213 return nullptr;
214
215 keymaster_key_blob_t* blob_copy = duplicate_blob(blob);
216 if (!blob_copy->key_material || !EC_KEY_set_ex_data(ec_key.get(), ec_key_index_, blob_copy))
217 return nullptr;
218
219 // Copy public key into new EC key
220 unique_ptr<EVP_PKEY, EVP_PKEY_Delete> pkey(GetKeymaster0PublicKey(blob));
221 if (!pkey)
222 return nullptr;
223
224 unique_ptr<EC_KEY, EC_Delete> public_ec_key(EVP_PKEY_get1_EC_KEY(pkey.get()));
225 if (!public_ec_key)
226 return nullptr;
227
228 if (!EC_KEY_set_group(ec_key.get(), EC_KEY_get0_group(public_ec_key.get())) ||
229 !EC_KEY_set_public_key(ec_key.get(), EC_KEY_get0_public_key(public_ec_key.get())))
230 return nullptr;
231
232 return ec_key.release();
233}
234
235const keymaster_key_blob_t* Keymaster0Engine::RsaKeyToBlob(const RSA* rsa) const {
Shawn Willdenac398062015-05-20 16:36:24 -0600236 return reinterpret_cast<keymaster_key_blob_t*>(RSA_get_ex_data(rsa, rsa_index_));
237}
238
Shawn Willden24bdfc22015-05-26 13:12:24 -0600239const keymaster_key_blob_t* Keymaster0Engine::EcKeyToBlob(const EC_KEY* ec_key) const {
240 return reinterpret_cast<keymaster_key_blob_t*>(EC_KEY_get_ex_data(ec_key, ec_key_index_));
241}
242
Shawn Willdenac398062015-05-20 16:36:24 -0600243/* static */
244int Keymaster0Engine::keyblob_dup(CRYPTO_EX_DATA* /* to */, const CRYPTO_EX_DATA* /* from */,
245 void** from_d, int /* index */, long /* argl */,
246 void* /* argp */) {
247 keymaster_key_blob_t* blob = reinterpret_cast<keymaster_key_blob_t*>(*from_d);
Shawn Willden24bdfc22015-05-26 13:12:24 -0600248 if (!blob)
249 return 1;
Shawn Willdenac398062015-05-20 16:36:24 -0600250 *from_d = duplicate_blob(*blob);
251 if (*from_d)
252 return 1;
253 return 0;
254}
255
256/* static */
257void Keymaster0Engine::keyblob_free(void* /* parent */, void* ptr, CRYPTO_EX_DATA* /* data */,
258 int /* index*/, long /* argl */, void* /* argp */) {
259 keymaster_key_blob_t* blob = reinterpret_cast<keymaster_key_blob_t*>(ptr);
260 if (blob) {
261 delete[] blob->key_material;
262 delete blob;
263 }
264}
265
266/* static */
267int Keymaster0Engine::rsa_private_transform(RSA* rsa, uint8_t* out, const uint8_t* in, size_t len) {
268 ALOGV("rsa_private_transform(%p, %p, %p, %u)", rsa, out, in, (unsigned)len);
269
270 assert(instance_);
271 return instance_->RsaPrivateTransform(rsa, out, in, len);
272}
273
Shawn Willden24bdfc22015-05-26 13:12:24 -0600274/* static */
275int Keymaster0Engine::ecdsa_sign(const uint8_t* digest, size_t digest_len, uint8_t* sig,
276 unsigned int* sig_len, EC_KEY* ec_key) {
277 ALOGV("ecdsa_sign(%p, %u, %p)", digest, (unsigned)digest_len, ec_key);
278 assert(instance_);
279 return instance_->EcdsaSign(digest, digest_len, sig, sig_len, ec_key);
280}
281
Shawn Willdenac398062015-05-20 16:36:24 -0600282bool Keymaster0Engine::Keymaster0Sign(const void* signing_params, const keymaster_key_blob_t& blob,
283 const uint8_t* data, const size_t data_length,
284 unique_ptr<uint8_t[], Malloc_Delete>* signature,
285 size_t* signature_length) const {
286 uint8_t* signed_data;
287 int err = keymaster0_device_->sign_data(keymaster0_device_, signing_params, blob.key_material,
288 blob.key_material_size, data, data_length, &signed_data,
289 signature_length);
290 if (err < 0) {
291 ALOGE("Keymaster0 signing failed with error %d", err);
292 return false;
293 }
294
295 signature->reset(signed_data);
296 return true;
297}
298
299EVP_PKEY* Keymaster0Engine::GetKeymaster0PublicKey(const KeymasterKeyBlob& blob) const {
300 uint8_t* pub_key_data;
301 size_t pub_key_data_length;
302 int err = keymaster0_device_->get_keypair_public(keymaster0_device_, blob.key_material,
303 blob.key_material_size, &pub_key_data,
304 &pub_key_data_length);
305 if (err < 0) {
306 ALOGE("Error %d extracting public key", err);
307 return nullptr;
308 }
309 unique_ptr<uint8_t, Malloc_Delete> pub_key(pub_key_data);
310
311 const uint8_t* p = pub_key_data;
312 return d2i_PUBKEY(nullptr /* allocate new struct */, &p, pub_key_data_length);
313}
314
315int Keymaster0Engine::RsaPrivateTransform(RSA* rsa, uint8_t* out, const uint8_t* in,
316 size_t len) const {
Shawn Willden24bdfc22015-05-26 13:12:24 -0600317 const keymaster_key_blob_t* key_blob = RsaKeyToBlob(rsa);
Shawn Willdenac398062015-05-20 16:36:24 -0600318 if (key_blob == NULL) {
319 ALOGE("key had no key_blob!");
320 return 0;
321 }
322
323 keymaster_rsa_sign_params_t sign_params = {DIGEST_NONE, PADDING_NONE};
324 unique_ptr<uint8_t[], Malloc_Delete> signature;
325 size_t signature_length;
326 if (!Keymaster0Sign(&sign_params, *key_blob, in, len, &signature, &signature_length))
327 return 0;
328 Eraser eraser(signature.get(), signature_length);
329
330 if (signature_length > len) {
331 /* The result of the RSA operation can never be larger than the size of
332 * the modulus so we assume that the result has extra zeros on the
333 * left. This provides attackers with an oracle, but there's nothing
334 * that we can do about it here. */
335 memcpy(out, signature.get() + signature_length - len, len);
336 } else if (signature_length < len) {
337 /* If the keymaster0 implementation returns a short value we assume that
338 * it's because it removed leading zeros from the left side. This is
339 * bad because it provides attackers with an oracle but we cannot do
340 * anything about a broken keymaster0 implementation here. */
341 memset(out, 0, len);
342 memcpy(out + len - signature_length, signature.get(), signature_length);
343 } else {
344 memcpy(out, signature.get(), len);
345 }
346
347 ALOGV("rsa=%p keystore_rsa_priv_dec successful", rsa);
348 return 1;
349}
350
Shawn Willden24bdfc22015-05-26 13:12:24 -0600351int Keymaster0Engine::EcdsaSign(const uint8_t* digest, size_t digest_len, uint8_t* sig,
352 unsigned int* sig_len, EC_KEY* ec_key) const {
353 const keymaster_key_blob_t* key_blob = EcKeyToBlob(ec_key);
354 if (key_blob == NULL) {
355 ALOGE("key had no key_blob!");
356 return 0;
357 }
358
359 keymaster_ec_sign_params_t sign_params = {DIGEST_NONE};
360 unique_ptr<uint8_t[], Malloc_Delete> signature;
361 size_t signature_length;
362 if (!Keymaster0Sign(&sign_params, *key_blob, digest, digest_len, &signature, &signature_length))
363 return 0;
364 Eraser eraser(signature.get(), signature_length);
365
366 if (signature_length == 0) {
367 ALOGW("No valid signature returned");
368 return 0;
369 } else if (signature_length > ECDSA_size(ec_key)) {
370 ALOGW("Signature is too large");
371 return 0;
372 } else {
373 memcpy(sig, signature.get(), signature_length);
374 *sig_len = signature_length;
375 }
376
377 ALOGV("ecdsa_sign(%p, %u, %p) => success", digest, (unsigned)digest_len, ec_key);
378 return 1;
379}
380
Shawn Willdenac398062015-05-20 16:36:24 -0600381} // namespace keymaster