blob: 0dcb442d02f070a41685682d4ef8f6ba1d9ca884 [file] [log] [blame]
Janis Danisevskisa68669b2017-02-06 11:46:54 +00001/*
2 **
3 ** Copyright 2016, The Android Open Source Project
4 **
5 ** Licensed under the Apache License, Version 2.0 (the "License");
6 ** you may not use this file except in compliance with the License.
7 ** You may obtain a copy of the License at
8 **
9 ** http://www.apache.org/licenses/LICENSE-2.0
10 **
11 ** Unless required by applicable law or agreed to in writing, software
12 ** distributed under the License is distributed on an "AS IS" BASIS,
13 ** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14 ** See the License for the specific language governing permissions and
15 ** limitations under the License.
16 */
17
18#define LOG_TAG "android.hardware.keymaster@3.0-impl"
19
20#include "include/AndroidKeymaster3Device.h"
21
22#include <cutils/log.h>
23
24#include "include/authorization_set.h"
25
26#include <keymaster/android_keymaster.h>
27#include <keymaster/android_keymaster_messages.h>
28#include <keymaster/contexts/soft_keymaster_context.h>
29#include <keymaster/contexts/pure_soft_keymaster_context.h>
30#include <keymaster/keymaster_configuration.h>
31#include <keymaster/keymaster_enforcement.h>
32#include <keymaster/km_openssl/soft_keymaster_enforcement.h>
33
34using ::keymaster::AddEntropyRequest;
35using ::keymaster::AddEntropyResponse;
36using ::keymaster::AttestKeyRequest;
37using ::keymaster::AttestKeyResponse;
38using ::keymaster::AuthorizationSet;
39using ::keymaster::ExportKeyRequest;
40using ::keymaster::ExportKeyResponse;
41using ::keymaster::GenerateKeyRequest;
42using ::keymaster::GenerateKeyResponse;
43using ::keymaster::GetKeyCharacteristicsRequest;
44using ::keymaster::GetKeyCharacteristicsResponse;
45using ::keymaster::ImportKeyRequest;
46using ::keymaster::ImportKeyResponse;
47using ::keymaster::BeginOperationRequest;
48using ::keymaster::BeginOperationResponse;
49using ::keymaster::UpdateOperationRequest;
50using ::keymaster::UpdateOperationResponse;
51using ::keymaster::FinishOperationRequest;
52using ::keymaster::FinishOperationResponse;
53using ::keymaster::AbortOperationRequest;
54using ::keymaster::AbortOperationResponse;
55
56namespace keymaster {
57namespace ng {
58
59namespace {
60
61constexpr size_t kOperationTableSize = 16;
62
63inline keymaster_tag_t legacy_enum_conversion(const Tag value) {
64 return keymaster_tag_t(value);
65}
66inline Tag legacy_enum_conversion(const keymaster_tag_t value) {
67 return Tag(value);
68}
69inline keymaster_purpose_t legacy_enum_conversion(const KeyPurpose value) {
70 return keymaster_purpose_t(value);
71}
72inline keymaster_key_format_t legacy_enum_conversion(const KeyFormat value) {
73 return keymaster_key_format_t(value);
74}
75inline ErrorCode legacy_enum_conversion(const keymaster_error_t value) {
76 return ErrorCode(value);
77}
78
79inline keymaster_tag_type_t typeFromTag(const keymaster_tag_t tag) {
80 return keymaster_tag_get_type(tag);
81}
82
83class KmParamSet : public keymaster_key_param_set_t {
84 public:
85 KmParamSet(const hidl_vec<KeyParameter>& keyParams) {
86 params = new keymaster_key_param_t[keyParams.size()];
87 length = keyParams.size();
88 for (size_t i = 0; i < keyParams.size(); ++i) {
89 auto tag = legacy_enum_conversion(keyParams[i].tag);
90 switch (typeFromTag(tag)) {
91 case KM_ENUM:
92 case KM_ENUM_REP:
93 params[i] = keymaster_param_enum(tag, keyParams[i].f.integer);
94 break;
95 case KM_UINT:
96 case KM_UINT_REP:
97 params[i] = keymaster_param_int(tag, keyParams[i].f.integer);
98 break;
99 case KM_ULONG:
100 case KM_ULONG_REP:
101 params[i] = keymaster_param_long(tag, keyParams[i].f.longInteger);
102 break;
103 case KM_DATE:
104 params[i] = keymaster_param_date(tag, keyParams[i].f.dateTime);
105 break;
106 case KM_BOOL:
107 if (keyParams[i].f.boolValue)
108 params[i] = keymaster_param_bool(tag);
109 else
110 params[i].tag = KM_TAG_INVALID;
111 break;
112 case KM_BIGNUM:
113 case KM_BYTES:
114 params[i] =
115 keymaster_param_blob(tag, &keyParams[i].blob[0], keyParams[i].blob.size());
116 break;
117 case KM_INVALID:
118 default:
119 params[i].tag = KM_TAG_INVALID;
120 /* just skip */
121 break;
122 }
123 }
124 }
125 KmParamSet(KmParamSet&& other) : keymaster_key_param_set_t{other.params, other.length} {
126 other.length = 0;
127 other.params = nullptr;
128 }
129 KmParamSet(const KmParamSet&) = delete;
130 ~KmParamSet() { delete[] params; }
131};
132
133inline hidl_vec<uint8_t> kmBlob2hidlVec(const keymaster_key_blob_t& blob) {
134 hidl_vec<uint8_t> result;
135 result.setToExternal(const_cast<unsigned char*>(blob.key_material), blob.key_material_size);
136 return result;
137}
138
139inline hidl_vec<uint8_t> kmBlob2hidlVec(const keymaster_blob_t& blob) {
140 hidl_vec<uint8_t> result;
141 result.setToExternal(const_cast<unsigned char*>(blob.data), blob.data_length);
142 return result;
143}
144
145inline hidl_vec<uint8_t> kmBuffer2hidlVec(const ::keymaster::Buffer& buf) {
146 hidl_vec<uint8_t> result;
147 result.setToExternal(const_cast<unsigned char*>(buf.peek_read()), buf.available_read());
148 return result;
149}
150
151inline static hidl_vec<hidl_vec<uint8_t>>
152kmCertChain2Hidl(const keymaster_cert_chain_t& cert_chain) {
153 hidl_vec<hidl_vec<uint8_t>> result;
154 if (!cert_chain.entry_count || !cert_chain.entries) return result;
155
156 result.resize(cert_chain.entry_count);
157 for (size_t i = 0; i < cert_chain.entry_count; ++i) {
158 result[i] = kmBlob2hidlVec(cert_chain.entries[i]);
159 }
160
161 return result;
162}
163
164static inline hidl_vec<KeyParameter> kmParamSet2Hidl(const keymaster_key_param_set_t& set) {
165 hidl_vec<KeyParameter> result;
166 if (set.length == 0 || set.params == nullptr) return result;
167
168 result.resize(set.length);
169 keymaster_key_param_t* params = set.params;
170 for (size_t i = 0; i < set.length; ++i) {
171 auto tag = params[i].tag;
172 result[i].tag = legacy_enum_conversion(tag);
173 switch (typeFromTag(tag)) {
174 case KM_ENUM:
175 case KM_ENUM_REP:
176 result[i].f.integer = params[i].enumerated;
177 break;
178 case KM_UINT:
179 case KM_UINT_REP:
180 result[i].f.integer = params[i].integer;
181 break;
182 case KM_ULONG:
183 case KM_ULONG_REP:
184 result[i].f.longInteger = params[i].long_integer;
185 break;
186 case KM_DATE:
187 result[i].f.dateTime = params[i].date_time;
188 break;
189 case KM_BOOL:
190 result[i].f.boolValue = params[i].boolean;
191 break;
192 case KM_BIGNUM:
193 case KM_BYTES:
194 result[i].blob.setToExternal(const_cast<unsigned char*>(params[i].blob.data),
195 params[i].blob.data_length);
196 break;
197 case KM_INVALID:
198 default:
199 params[i].tag = KM_TAG_INVALID;
200 /* just skip */
201 break;
202 }
203 }
204 return result;
205}
206
207void addClientAndAppData(const hidl_vec<uint8_t>& clientId, const hidl_vec<uint8_t>& appData,
208 ::keymaster::AuthorizationSet* params) {
209 params->Clear();
210 if (clientId.size()) {
211 params->push_back(::keymaster::TAG_APPLICATION_ID, clientId.data(), clientId.size());
212 }
213 if (appData.size()) {
214 params->push_back(::keymaster::TAG_APPLICATION_DATA, appData.data(), appData.size());
215 }
216}
217
218} // anonymous namespace
219
220AndroidKeymaster3Device::AndroidKeymaster3Device()
221 : impl_(new ::keymaster::AndroidKeymaster(
222 [] () -> auto {
223 auto context = new PureSoftKeymasterContext();
224 context->SetSystemVersion(GetOsVersion(), GetOsPatchlevel());
225 return context;
226 } (), kOperationTableSize)), profile_(KeymasterHardwareProfile::SW) {}
227
228
229AndroidKeymaster3Device::AndroidKeymaster3Device(KeymasterContext* context, KeymasterHardwareProfile profile)
230 : impl_(new ::keymaster::AndroidKeymaster(context, kOperationTableSize)), profile_(profile) {}
231
232AndroidKeymaster3Device::~AndroidKeymaster3Device() {}
233
234// Methods from ::android::hardware::keymaster::V3_0::IKeymasterDevice follow.
235Return<void> AndroidKeymaster3Device::getHardwareFeatures(getHardwareFeatures_cb _hidl_cb) {
236 switch(profile_) {
237 case KeymasterHardwareProfile::KM0:
238 _hidl_cb(true /* is_secure */, false /* supports_ec */,
239 false /* supports_symmetric_cryptography */, false /* supports_attestation */,
240 false /* supportsAllDigests */, "SoftwareWrappedKeymaster0Device", "Google");
241 break;
242 case KeymasterHardwareProfile::KM1:
243 _hidl_cb(true /* is_secure */, true /* supports_ec */,
244 true /* supports_symmetric_cryptography */, false /* supports_attestation */,
245 false /* supportsAllDigests */, "SoftwareWrappedKeymaster1Device", "Google");
246 break;
247 case KeymasterHardwareProfile::KM2:
248 _hidl_cb(true /* is_secure */, true /* supports_ec */,
249 true /* supports_symmetric_cryptography */, true /* supports_attestation */,
250 true /* supportsAllDigests */, "SoftwareWrappedKeymaster2Device", "Google");
251 break;
252 case KeymasterHardwareProfile::SW:
253 default:
254 _hidl_cb(false /* is_secure */, false /* supports_ec */,
255 false /* supports_symmetric_cryptography */, false /* supports_attestation */,
256 false /* supportsAllDigests */, "SoftwareKeymasterDevice", "Google");
257 break;
258 }
259 return Void();
260}
261
262Return<ErrorCode> AndroidKeymaster3Device::addRngEntropy(const hidl_vec<uint8_t>& data) {
263 if (data.size() == 0) return ErrorCode::OK;
264 AddEntropyRequest request;
265 request.random_data.Reinitialize(data.data(), data.size());
266
267 AddEntropyResponse response;
268 impl_->AddRngEntropy(request, &response);
269
270 return legacy_enum_conversion(response.error);
271}
272
273Return<void> AndroidKeymaster3Device::generateKey(const hidl_vec<KeyParameter>& keyParams,
274 generateKey_cb _hidl_cb) {
275 GenerateKeyRequest request;
276 request.key_description.Reinitialize(KmParamSet(keyParams));
277
278 GenerateKeyResponse response;
279 impl_->GenerateKey(request, &response);
280
281 KeyCharacteristics resultCharacteristics;
282 hidl_vec<uint8_t> resultKeyBlob;
283 if (response.error == KM_ERROR_OK) {
284 resultKeyBlob = kmBlob2hidlVec(response.key_blob);
285 resultCharacteristics.teeEnforced = kmParamSet2Hidl(response.enforced);
286 resultCharacteristics.softwareEnforced = kmParamSet2Hidl(response.unenforced);
287 }
288 _hidl_cb(legacy_enum_conversion(response.error), resultKeyBlob, resultCharacteristics);
289 return Void();
290}
291
292Return<void> AndroidKeymaster3Device::getKeyCharacteristics(const hidl_vec<uint8_t>& keyBlob,
293 const hidl_vec<uint8_t>& clientId,
294 const hidl_vec<uint8_t>& appData,
295 getKeyCharacteristics_cb _hidl_cb) {
296 GetKeyCharacteristicsRequest request;
297 request.SetKeyMaterial(keyBlob.data(), keyBlob.size());
298 addClientAndAppData(clientId, appData, &request.additional_params);
299
300 GetKeyCharacteristicsResponse response;
301 impl_->GetKeyCharacteristics(request, &response);
302
303 KeyCharacteristics resultCharacteristics;
304 if (response.error == KM_ERROR_OK) {
305 resultCharacteristics.teeEnforced = kmParamSet2Hidl(response.enforced);
306 resultCharacteristics.softwareEnforced = kmParamSet2Hidl(response.unenforced);
307 }
308 _hidl_cb(legacy_enum_conversion(response.error), resultCharacteristics);
309 return Void();
310}
311
312Return<void> AndroidKeymaster3Device::importKey(const hidl_vec<KeyParameter>& params,
313 KeyFormat keyFormat, const hidl_vec<uint8_t>& keyData,
314 importKey_cb _hidl_cb) {
315 ImportKeyRequest request;
316 request.key_description.Reinitialize(KmParamSet(params));
317 request.key_format = legacy_enum_conversion(keyFormat);
318 request.SetKeyMaterial(keyData.data(), keyData.size());
319
320 ImportKeyResponse response;
321 impl_->ImportKey(request, &response);
322
323 KeyCharacteristics resultCharacteristics;
324 hidl_vec<uint8_t> resultKeyBlob;
325 if (response.error == KM_ERROR_OK) {
326 resultKeyBlob = kmBlob2hidlVec(response.key_blob);
327 resultCharacteristics.teeEnforced = kmParamSet2Hidl(response.enforced);
328 resultCharacteristics.softwareEnforced = kmParamSet2Hidl(response.unenforced);
329 }
330 _hidl_cb(legacy_enum_conversion(response.error), resultKeyBlob, resultCharacteristics);
331 return Void();
332}
333
334Return<void> AndroidKeymaster3Device::exportKey(KeyFormat exportFormat,
335 const hidl_vec<uint8_t>& keyBlob,
336 const hidl_vec<uint8_t>& clientId,
337 const hidl_vec<uint8_t>& appData,
338 exportKey_cb _hidl_cb) {
339 ExportKeyRequest request;
340 request.key_format = legacy_enum_conversion(exportFormat);
341 request.SetKeyMaterial(keyBlob.data(), keyBlob.size());
342 addClientAndAppData(clientId, appData, &request.additional_params);
343
344 ExportKeyResponse response;
345 impl_->ExportKey(request, &response);
346
347 hidl_vec<uint8_t> resultKeyBlob;
348 if (response.error == KM_ERROR_OK) {
349 resultKeyBlob.setToExternal(response.key_data, response.key_data_length);
350 }
351 _hidl_cb(legacy_enum_conversion(response.error), resultKeyBlob);
352 return Void();
353}
354
355Return<void> AndroidKeymaster3Device::attestKey(const hidl_vec<uint8_t>& keyToAttest,
356 const hidl_vec<KeyParameter>& attestParams,
357 attestKey_cb _hidl_cb) {
358 AttestKeyRequest request;
359 request.SetKeyMaterial(keyToAttest.data(), keyToAttest.size());
360 request.attest_params.Reinitialize(KmParamSet(attestParams));
361
362 AttestKeyResponse response;
363 impl_->AttestKey(request, &response);
364
365 hidl_vec<hidl_vec<uint8_t>> resultCertChain;
366 if (response.error == KM_ERROR_OK) {
367 resultCertChain = kmCertChain2Hidl(response.certificate_chain);
368 }
369 _hidl_cb(legacy_enum_conversion(response.error), resultCertChain);
370 return Void();
371}
372
373Return<void> AndroidKeymaster3Device::upgradeKey(const hidl_vec<uint8_t>& keyBlobToUpgrade,
374 const hidl_vec<KeyParameter>& upgradeParams,
375 upgradeKey_cb _hidl_cb) {
376 // There's nothing to be done to upgrade software key blobs. Further, the software
377 // implementation never returns ErrorCode::KEY_REQUIRES_UPGRADE, so this should never be called.
378 UpgradeKeyRequest request;
379 request.SetKeyMaterial(keyBlobToUpgrade.data(), keyBlobToUpgrade.size());
380 request.upgrade_params.Reinitialize(KmParamSet(upgradeParams));
381
382 UpgradeKeyResponse response;
383 impl_->UpgradeKey(request, &response);
384
385 if (response.error == KM_ERROR_OK){
386 _hidl_cb(ErrorCode::OK, kmBlob2hidlVec(response.upgraded_key));
387 } else {
388 _hidl_cb(legacy_enum_conversion(response.error), hidl_vec<uint8_t>());
389 }
390 return Void();
391}
392
393Return<ErrorCode> AndroidKeymaster3Device::deleteKey(const hidl_vec<uint8_t>& keyBlob) {
394 // There's nothing to be done to delete software key blobs.
395 DeleteKeyRequest request;
396 request.SetKeyMaterial(keyBlob.data(), keyBlob.size());
397
398 DeleteKeyResponse response;
399 impl_->DeleteKey(request, &response);
400
401 return legacy_enum_conversion(response.error);
402}
403
404Return<ErrorCode> AndroidKeymaster3Device::deleteAllKeys() {
405 // There's nothing to be done to delete software key blobs.
406 DeleteAllKeysRequest request;
407 DeleteAllKeysResponse response;
408 impl_->DeleteAllKeys(request, &response);
409
410 return legacy_enum_conversion(response.error);
411}
412
413Return<ErrorCode> AndroidKeymaster3Device::destroyAttestationIds() {
414 return ErrorCode::UNIMPLEMENTED;
415}
416
417Return<void> AndroidKeymaster3Device::begin(KeyPurpose purpose, const hidl_vec<uint8_t>& key,
418 const hidl_vec<KeyParameter>& inParams, begin_cb _hidl_cb) {
419
420 BeginOperationRequest request;
421 request.purpose = legacy_enum_conversion(purpose);
422 request.SetKeyMaterial(key.data(), key.size());
423 request.additional_params.Reinitialize(KmParamSet(inParams));
424
425 BeginOperationResponse response;
426 impl_->BeginOperation(request, &response);
427
428 hidl_vec<KeyParameter> resultParams;
429 if (response.error == KM_ERROR_OK) {
430 resultParams = kmParamSet2Hidl(response.output_params);
431 }
432
433 _hidl_cb(legacy_enum_conversion(response.error), resultParams, response.op_handle);
434 return Void();
435}
436
437Return<void> AndroidKeymaster3Device::update(uint64_t operationHandle,
438 const hidl_vec<KeyParameter>& inParams,
439 const hidl_vec<uint8_t>& input, update_cb _hidl_cb) {
440 UpdateOperationRequest request;
441 request.op_handle = operationHandle;
442 request.input.Reinitialize(input.data(), input.size());
443 request.additional_params.Reinitialize(KmParamSet(inParams));
444
445 UpdateOperationResponse response;
446 impl_->UpdateOperation(request, &response);
447
448 uint32_t resultConsumed = 0;
449 hidl_vec<KeyParameter> resultParams;
450 hidl_vec<uint8_t> resultBlob;
451 if (response.error == KM_ERROR_OK) {
452 resultConsumed = response.input_consumed;
453 resultParams = kmParamSet2Hidl(response.output_params);
454 resultBlob = kmBuffer2hidlVec(response.output);
455 }
456 _hidl_cb(legacy_enum_conversion(response.error), resultConsumed, resultParams, resultBlob);
457 return Void();
458}
459
460Return<void> AndroidKeymaster3Device::finish(uint64_t operationHandle,
461 const hidl_vec<KeyParameter>& inParams,
462 const hidl_vec<uint8_t>& input,
463 const hidl_vec<uint8_t>& signature, finish_cb _hidl_cb) {
464 FinishOperationRequest request;
465 request.op_handle = operationHandle;
466 request.input.Reinitialize(input.data(), input.size());
467 request.signature.Reinitialize(signature.data(), signature.size());
468 request.additional_params.Reinitialize(KmParamSet(inParams));
469
470 FinishOperationResponse response;
471 impl_->FinishOperation(request, &response);
472
473 hidl_vec<KeyParameter> resultParams;
474 hidl_vec<uint8_t> resultBlob;
475 if (response.error == KM_ERROR_OK) {
476 resultParams = kmParamSet2Hidl(response.output_params);
477 resultBlob = kmBuffer2hidlVec(response.output);
478 }
479 _hidl_cb(legacy_enum_conversion(response.error), resultParams, resultBlob);
480 return Void();
481}
482
483Return<ErrorCode> AndroidKeymaster3Device::abort(uint64_t operationHandle) {
484 AbortOperationRequest request;
485 request.op_handle = operationHandle;
486
487 AbortOperationResponse response;
488 impl_->AbortOperation(request, &response);
489
490 return legacy_enum_conversion(response.error);
491}
492
493IKeymasterDevice* CreateKeymasterDevice() {
494 return new AndroidKeymaster3Device();
495}
496
497} // namespace ng
498} // namespace keymaster