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Shawn Willden907c3012014-12-08 15:51:55 -07001/*
2 * Copyright 2014 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
Shawn Willden6dde87c2014-12-11 14:08:48 -070017#include <stdio.h>
18
Shawn Willden907c3012014-12-08 15:51:55 -070019#include <openssl/aes.h>
Shawn Willdenf0f68b92014-12-30 16:03:28 -070020#include <openssl/err.h>
Shawn Willden907c3012014-12-08 15:51:55 -070021#include <openssl/rand.h>
22
Shawn Willden567a4a02014-12-31 12:14:46 -070023#include <keymaster/logger.h>
24
Shawn Willden63ac0432014-12-29 14:07:08 -070025#include "aes_key.h"
Shawn Willden907c3012014-12-08 15:51:55 -070026#include "aes_operation.h"
Shawn Willdenf0f68b92014-12-30 16:03:28 -070027#include "openssl_err.h"
Shawn Willden907c3012014-12-08 15:51:55 -070028
29namespace keymaster {
30
Shawn Willden63ac0432014-12-29 14:07:08 -070031/**
Shawn Willdenf0f68b92014-12-30 16:03:28 -070032 * Abstract base for AES operation factories. This class does all of the work to create
33 * AES operations.
Shawn Willden63ac0432014-12-29 14:07:08 -070034 */
Shawn Willdenf0f68b92014-12-30 16:03:28 -070035class AesOperationFactory : public OperationFactory {
Shawn Willden63ac0432014-12-29 14:07:08 -070036 public:
37 virtual KeyType registry_key() const { return KeyType(KM_ALGORITHM_AES, purpose()); }
38
Shawn Willden567a4a02014-12-31 12:14:46 -070039 virtual Operation* CreateOperation(const Key& key, keymaster_error_t* error);
Shawn Willden63ac0432014-12-29 14:07:08 -070040 virtual const keymaster_block_mode_t* SupportedBlockModes(size_t* block_mode_count) const;
Shawn Willdenf0f68b92014-12-30 16:03:28 -070041 virtual const keymaster_padding_t* SupportedPaddingModes(size_t* padding_count) const;
Shawn Willden63ac0432014-12-29 14:07:08 -070042
43 virtual keymaster_purpose_t purpose() const = 0;
Shawn Willdenf0f68b92014-12-30 16:03:28 -070044
45 private:
46 virtual Operation* CreateOcbOperation(const SymmetricKey& key, keymaster_error_t* error);
47 virtual Operation* CreateEvpOperation(const SymmetricKey& key,
48 keymaster_block_mode_t block_mode,
49 keymaster_padding_t padding, keymaster_error_t* error);
Shawn Willden63ac0432014-12-29 14:07:08 -070050};
51
Shawn Willdenf0f68b92014-12-30 16:03:28 -070052Operation* AesOperationFactory::CreateOperation(const Key& key, keymaster_error_t* error) {
Shawn Willden63ac0432014-12-29 14:07:08 -070053 *error = KM_ERROR_OK;
54
Shawn Willdenf0f68b92014-12-30 16:03:28 -070055 const SymmetricKey* symmetric_key = static_cast<const SymmetricKey*>(&key);
56 if (!symmetric_key) {
57 *error = KM_ERROR_UNKNOWN_ERROR;
58 return NULL;
59 }
60
61 switch (symmetric_key->key_data_size()) {
62 case 16:
63 case 24:
64 case 32:
65 break;
66 default:
67 *error = KM_ERROR_UNSUPPORTED_KEY_SIZE;
68 return NULL;
69 }
70
Shawn Willden63ac0432014-12-29 14:07:08 -070071 keymaster_block_mode_t block_mode;
Shawn Willdenf0f68b92014-12-30 16:03:28 -070072 if (!key.authorizations().GetTagValue(TAG_BLOCK_MODE, &block_mode) || !supported(block_mode))
73 *error = KM_ERROR_UNSUPPORTED_BLOCK_MODE;
74
75 keymaster_padding_t padding = KM_PAD_NONE;
76 key.authorizations().GetTagValue(TAG_PADDING, &padding);
77
78 if (*error != KM_ERROR_OK)
79 return NULL;
80
81 switch (block_mode) {
82 case KM_MODE_OCB:
83 if (padding != KM_PAD_NONE) {
84 *error = KM_ERROR_UNSUPPORTED_PADDING_MODE;
85 return NULL;
86 }
87 return CreateOcbOperation(*symmetric_key, error);
88 case KM_MODE_ECB:
89 case KM_MODE_CBC:
Shawn Willdenf0f68b92014-12-30 16:03:28 -070090 return CreateEvpOperation(*symmetric_key, block_mode, padding, error);
91 default:
Shawn Willden63ac0432014-12-29 14:07:08 -070092 *error = KM_ERROR_UNSUPPORTED_BLOCK_MODE;
93 return NULL;
94 }
Shawn Willdenf0f68b92014-12-30 16:03:28 -070095}
96
97Operation* AesOperationFactory::CreateOcbOperation(const SymmetricKey& key,
98 keymaster_error_t* error) {
99 *error = KM_ERROR_OK;
Shawn Willden63ac0432014-12-29 14:07:08 -0700100
101 uint32_t chunk_length;
102 if (!key.authorizations().GetTagValue(TAG_CHUNK_LENGTH, &chunk_length) ||
103 chunk_length > AeadModeOperation::MAX_CHUNK_LENGTH)
104 // TODO(swillden): Create and use a better return code.
105 *error = KM_ERROR_INVALID_ARGUMENT;
106
107 uint32_t tag_length;
108 if (!key.authorizations().GetTagValue(TAG_MAC_LENGTH, &tag_length) ||
109 tag_length > AeadModeOperation::MAX_TAG_LENGTH)
110 // TODO(swillden): Create and use a better return code.
111 *error = KM_ERROR_INVALID_ARGUMENT;
112
113 keymaster_padding_t padding;
114 if (key.authorizations().GetTagValue(TAG_PADDING, &padding) && padding != KM_PAD_NONE)
115 *error = KM_ERROR_UNSUPPORTED_PADDING_MODE;
116
Shawn Willden63ac0432014-12-29 14:07:08 -0700117 if (*error != KM_ERROR_OK)
118 return NULL;
119
120 keymaster_blob_t additional_data = {0, 0};
Shawn Willdenf0f68b92014-12-30 16:03:28 -0700121 key.authorizations().GetTagValue(TAG_ASSOCIATED_DATA, &additional_data);
Shawn Willden63ac0432014-12-29 14:07:08 -0700122
Shawn Willdenf0f68b92014-12-30 16:03:28 -0700123 Operation* op = new AesOcbOperation(purpose(), key.key_data(), key.key_data_size(),
124 chunk_length, tag_length, additional_data);
Shawn Willden63ac0432014-12-29 14:07:08 -0700125 if (!op)
126 *error = KM_ERROR_MEMORY_ALLOCATION_FAILED;
127 return op;
128}
129
Shawn Willdenf0f68b92014-12-30 16:03:28 -0700130Operation* AesOperationFactory::CreateEvpOperation(const SymmetricKey& key,
131 keymaster_block_mode_t block_mode,
132 keymaster_padding_t padding,
133 keymaster_error_t* error) {
134 Operation* op = NULL;
135 switch (purpose()) {
136 case KM_PURPOSE_ENCRYPT:
137 op = new AesEvpEncryptOperation(block_mode, padding, key.key_data(), key.key_data_size());
138 break;
139 case KM_PURPOSE_DECRYPT:
140 op = new AesEvpDecryptOperation(block_mode, padding, key.key_data(), key.key_data_size());
141 break;
142 default:
143 *error = KM_ERROR_UNSUPPORTED_PURPOSE;
144 return NULL;
145 }
146
147 if (!op)
148 *error = KM_ERROR_MEMORY_ALLOCATION_FAILED;
149 return op;
150}
151
152static const keymaster_block_mode_t supported_block_modes[] = {
Shawn Willden498e0aa2015-03-04 15:35:45 -0700153 KM_MODE_OCB, KM_MODE_ECB, KM_MODE_CBC};
Shawn Willden63ac0432014-12-29 14:07:08 -0700154
155const keymaster_block_mode_t*
Shawn Willdenf0f68b92014-12-30 16:03:28 -0700156AesOperationFactory::SupportedBlockModes(size_t* block_mode_count) const {
Shawn Willden63ac0432014-12-29 14:07:08 -0700157 *block_mode_count = array_length(supported_block_modes);
158 return supported_block_modes;
159}
160
Shawn Willdenf0f68b92014-12-30 16:03:28 -0700161static const keymaster_padding_t supported_padding_modes[] = {KM_PAD_NONE, KM_PAD_PKCS7};
162const keymaster_padding_t*
163AesOperationFactory::SupportedPaddingModes(size_t* padding_mode_count) const {
164 *padding_mode_count = array_length(supported_padding_modes);
165 return supported_padding_modes;
166}
Shawn Willden63ac0432014-12-29 14:07:08 -0700167
168/**
Shawn Willdenf0f68b92014-12-30 16:03:28 -0700169 * Concrete factory for AES encryption operations.
Shawn Willden63ac0432014-12-29 14:07:08 -0700170 */
Shawn Willdenf0f68b92014-12-30 16:03:28 -0700171class AesEncryptionOperationFactory : public AesOperationFactory {
172 keymaster_purpose_t purpose() const { return KM_PURPOSE_ENCRYPT; }
173};
174static OperationFactoryRegistry::Registration<AesEncryptionOperationFactory> encrypt_registration;
175
176/**
177 * Concrete factory for AES decryption operations.
178 */
179class AesDecryptionOperationFactory : public AesOperationFactory {
Shawn Willden63ac0432014-12-29 14:07:08 -0700180 keymaster_purpose_t purpose() const { return KM_PURPOSE_DECRYPT; }
181};
Shawn Willdenf0f68b92014-12-30 16:03:28 -0700182static OperationFactoryRegistry::Registration<AesDecryptionOperationFactory> decrypt_registration;
Shawn Willden63ac0432014-12-29 14:07:08 -0700183
Shawn Willden6dde87c2014-12-11 14:08:48 -0700184keymaster_error_t AesOcbOperation::Initialize(uint8_t* key, size_t key_size, size_t nonce_length,
185 size_t tag_length) {
Shawn Willden63ac0432014-12-29 14:07:08 -0700186 if (tag_length > MAX_TAG_LENGTH || nonce_length > MAX_NONCE_LENGTH)
Shawn Willden6dde87c2014-12-11 14:08:48 -0700187 return KM_ERROR_INVALID_KEY_BLOB;
Shawn Willden907c3012014-12-08 15:51:55 -0700188
Shawn Willden6dde87c2014-12-11 14:08:48 -0700189 if (ae_init(ctx(), key, key_size, nonce_length, tag_length) != AE_SUCCESS) {
190 memset_s(ctx(), 0, ae_ctx_sizeof());
Shawn Willden907c3012014-12-08 15:51:55 -0700191 return KM_ERROR_UNKNOWN_ERROR;
192 }
Shawn Willden907c3012014-12-08 15:51:55 -0700193 return KM_ERROR_OK;
194}
195
Shawn Willden6dde87c2014-12-11 14:08:48 -0700196keymaster_error_t AesOcbOperation::EncryptChunk(const uint8_t* nonce, size_t /* nonce_length */,
197 size_t tag_length,
198 const keymaster_blob_t additional_data,
199 uint8_t* chunk, size_t chunk_size, Buffer* output) {
200 if (!ctx())
201 return KM_ERROR_UNKNOWN_ERROR;
202 uint8_t __attribute__((aligned(16))) tag[MAX_TAG_LENGTH];
Shawn Willden907c3012014-12-08 15:51:55 -0700203
Shawn Willden6dde87c2014-12-11 14:08:48 -0700204 // Encrypt chunk in place.
205 int ae_err = ae_encrypt(ctx(), nonce, chunk, chunk_size, additional_data.data,
206 additional_data.data_length, chunk, tag, AE_FINALIZE);
Shawn Willden907c3012014-12-08 15:51:55 -0700207
Shawn Willden907c3012014-12-08 15:51:55 -0700208 if (ae_err < 0)
209 return KM_ERROR_UNKNOWN_ERROR;
Shawn Willden6dde87c2014-12-11 14:08:48 -0700210 assert(ae_err == (int)buffered_data_length());
Shawn Willden907c3012014-12-08 15:51:55 -0700211
Shawn Willden6dde87c2014-12-11 14:08:48 -0700212 output->write(chunk, buffered_data_length());
213 output->write(tag, tag_length);
Shawn Willden907c3012014-12-08 15:51:55 -0700214
215 return KM_ERROR_OK;
216}
217
Shawn Willden6dde87c2014-12-11 14:08:48 -0700218keymaster_error_t AesOcbOperation::DecryptChunk(const uint8_t* nonce, size_t /* nonce_length */,
219 const uint8_t* tag, size_t /* tag_length */,
220 const keymaster_blob_t additional_data,
221 uint8_t* chunk, size_t chunk_size, Buffer* output) {
222 if (!ctx())
223 return KM_ERROR_UNKNOWN_ERROR;
224
225 // Decrypt chunk in place
226 int ae_err = ae_decrypt(ctx(), nonce, chunk, chunk_size, additional_data.data,
227 additional_data.data_length, chunk, tag, AE_FINALIZE);
228 if (ae_err == AE_INVALID)
229 return KM_ERROR_VERIFICATION_FAILED;
230 else if (ae_err < 0)
231 return KM_ERROR_UNKNOWN_ERROR;
232 assert(ae_err == (int)buffered_data_length());
233 output->write(chunk, chunk_size);
234
235 return KM_ERROR_OK;
Shawn Willden907c3012014-12-08 15:51:55 -0700236}
237
Shawn Willdenf0f68b92014-12-30 16:03:28 -0700238AesEvpOperation::AesEvpOperation(keymaster_purpose_t purpose, keymaster_block_mode_t block_mode,
239 keymaster_padding_t padding, const uint8_t* key, size_t key_size)
240 : Operation(purpose), key_size_(key_size), block_mode_(block_mode), padding_(padding),
241 cipher_initialized_(false), iv_buffered_(0) {
242 memcpy(key_, key, key_size_);
243 EVP_CIPHER_CTX_init(&ctx_);
244}
245
246AesEvpOperation::~AesEvpOperation() {
247 EVP_CIPHER_CTX_cleanup(&ctx_);
248}
249
250keymaster_error_t AesEvpOperation::InitializeCipher() {
251 const EVP_CIPHER* cipher;
252 switch (block_mode_) {
253 case KM_MODE_ECB:
254 switch (key_size_) {
255 case 16:
256 cipher = EVP_aes_128_ecb();
257 break;
258 case 24:
259 cipher = EVP_aes_192_ecb();
260 break;
261 case 32:
262 cipher = EVP_aes_256_ecb();
263 break;
264 default:
265 return KM_ERROR_UNSUPPORTED_KEY_SIZE;
266 }
267 break;
268 case KM_MODE_CBC:
269 switch (key_size_) {
270 case 16:
271 cipher = EVP_aes_128_cbc();
272 break;
273 case 24:
274 cipher = EVP_aes_192_cbc();
275 break;
276 case 32:
277 cipher = EVP_aes_256_cbc();
278 break;
279 default:
280 return KM_ERROR_UNSUPPORTED_KEY_SIZE;
281 }
282 break;
Shawn Willdenf0f68b92014-12-30 16:03:28 -0700283 default:
284 return KM_ERROR_UNSUPPORTED_BLOCK_MODE;
285 }
286
287 int init_result =
288 EVP_CipherInit_ex(&ctx_, cipher, NULL /* engine */, key_, iv_, evp_encrypt_mode());
289
290 if (!init_result)
291 return KM_ERROR_UNKNOWN_ERROR;
292
293 switch (padding_) {
294 case KM_PAD_NONE:
295 EVP_CIPHER_CTX_set_padding(&ctx_, 0 /* disable padding */);
296 break;
297 case KM_PAD_PKCS7:
298 // This is the default for OpenSSL EVP cipher operations.
299 break;
300 default:
301 return KM_ERROR_UNSUPPORTED_PADDING_MODE;
302 }
303
304 cipher_initialized_ = true;
305 return KM_ERROR_OK;
306}
307
308bool AesEvpOperation::need_iv() const {
309 switch (block_mode_) {
310 case KM_MODE_CBC:
Shawn Willdenf0f68b92014-12-30 16:03:28 -0700311 return true;
312 case KM_MODE_ECB:
313 return false;
314 default:
315 // Shouldn't get here.
316 assert(false);
317 return false;
318 }
319}
320
321keymaster_error_t AesEvpOperation::Begin(const AuthorizationSet& /* input_params */,
322 AuthorizationSet* /* output_params */) {
323 return KM_ERROR_OK;
324}
325
326inline size_t min(size_t a, size_t b) {
327 if (a < b)
328 return a;
329 return b;
330}
331
332keymaster_error_t AesEvpOperation::Update(const AuthorizationSet& /* additional_params */,
333 const Buffer& input, Buffer* output,
334 size_t* input_consumed) {
335 output->reserve(input.available_read() + AES_BLOCK_SIZE);
336
337 const uint8_t* input_pos = input.peek_read();
338 const uint8_t* input_end = input_pos + input.available_read();
339
340 if (!cipher_initialized_) {
341 if (need_iv()) {
342 switch (purpose()) {
343 case KM_PURPOSE_DECRYPT: {
344 size_t iv_bytes_to_copy = min(input_end - input_pos, AES_BLOCK_SIZE - iv_buffered_);
345 memcpy(iv_ + iv_buffered_, input_pos, iv_bytes_to_copy);
346 input_pos += iv_bytes_to_copy;
347 iv_buffered_ += iv_bytes_to_copy;
348
349 if (iv_buffered_ < AES_BLOCK_SIZE) {
350 // Don't yet have enough IV bytes. Wait for another update.
351 return KM_ERROR_OK;
352 }
353 } break;
354 case KM_PURPOSE_ENCRYPT:
355 if (!RAND_bytes(iv_, AES_BLOCK_SIZE))
356 return TranslateLastOpenSslError();
357 output->write(iv_, AES_BLOCK_SIZE);
358 break;
359 default:
360 return KM_ERROR_UNSUPPORTED_BLOCK_MODE;
361 }
362 }
363
364 keymaster_error_t error = InitializeCipher();
365 if (error != KM_ERROR_OK)
366 return error;
367 }
368
369 int output_written = -1;
370 if (!EVP_CipherUpdate(&ctx_, output->peek_write(), &output_written, input_pos,
371 input_end - input_pos))
372 return TranslateLastOpenSslError();
373
374 assert(output_written >= 0);
375 assert(output_written <= (int)output->available_write());
376 output->advance_write(output_written);
377 *input_consumed = input.available_read();
378 return KM_ERROR_OK;
379}
380
381keymaster_error_t AesEvpOperation::Finish(const AuthorizationSet& /* additional_params */,
382 const Buffer& /* signature */, Buffer* output) {
383 output->reserve(AES_BLOCK_SIZE);
384
385 int output_written = -1;
386 if (!EVP_CipherFinal_ex(&ctx_, output->peek_write(), &output_written)) {
387 LOG_E("Error encrypting final block: %s", ERR_error_string(ERR_peek_last_error(), NULL));
388 return TranslateLastOpenSslError();
389 }
390
391 assert(output_written <= AES_BLOCK_SIZE);
392 output->advance_write(output_written);
393 return KM_ERROR_OK;
394}
395
396keymaster_error_t AesEvpOperation::Abort() {
397 return KM_ERROR_OK;
398}
399
Shawn Willden907c3012014-12-08 15:51:55 -0700400} // namespace keymaster