blob: 563ff8451d735a96440581edf511e8af8e08167d [file] [log] [blame]
Janis Danisevskis0f35e5a2016-10-12 11:33:13 +01001/*
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 "KeymasterDevice.h"
21
22#include <cutils/log.h>
23
24#include <hardware/keymaster_defs.h>
25#include <keymaster/keymaster_configuration.h>
26#include <keymaster/soft_keymaster_device.h>
27
28namespace android {
29namespace hardware {
30namespace keymaster {
31namespace V3_0 {
32namespace implementation {
33
34using ::keymaster::SoftKeymasterDevice;
35
36class SoftwareOnlyHidlKeymasterEnforcement : public ::keymaster::KeymasterEnforcement {
37 public:
38 SoftwareOnlyHidlKeymasterEnforcement() : KeymasterEnforcement(64, 64) {}
39
40 uint32_t get_current_time() const override {
41 struct timespec tp;
42 int err = clock_gettime(CLOCK_MONOTONIC, &tp);
43 if (err || tp.tv_sec < 0) return 0;
44 return static_cast<uint32_t>(tp.tv_sec);
45 }
46
47 bool activation_date_valid(uint64_t) const override { return true; }
48 bool expiration_date_passed(uint64_t) const override { return false; }
49 bool auth_token_timed_out(const hw_auth_token_t&, uint32_t) const override { return false; }
50 bool ValidateTokenSignature(const hw_auth_token_t&) const override { return true; }
51};
52
53class SoftwareOnlyHidlKeymasterContext : public ::keymaster::SoftKeymasterContext {
54 public:
55 SoftwareOnlyHidlKeymasterContext() : enforcement_(new SoftwareOnlyHidlKeymasterEnforcement) {}
56
57 ::keymaster::KeymasterEnforcement* enforcement_policy() override { return enforcement_.get(); }
58
59 private:
60 std::unique_ptr<::keymaster::KeymasterEnforcement> enforcement_;
61};
62
63static int keymaster0_device_initialize(const hw_module_t* mod, keymaster2_device_t** dev) {
64 assert(mod->module_api_version < KEYMASTER_MODULE_API_VERSION_1_0);
65 ALOGI("Found keymaster0 module %s, version %x", mod->name, mod->module_api_version);
66
67 UniquePtr<SoftKeymasterDevice> soft_keymaster(new SoftKeymasterDevice);
68 keymaster0_device_t* km0_device = NULL;
69 keymaster_error_t error = KM_ERROR_OK;
70
71 int rc = keymaster0_open(mod, &km0_device);
72 if (rc) {
73 ALOGE("Error opening keystore keymaster0 device.");
74 goto err;
75 }
76
77 if (km0_device->flags & KEYMASTER_SOFTWARE_ONLY) {
78 ALOGI("Keymaster0 module is software-only. Using SoftKeymasterDevice instead.");
79 km0_device->common.close(&km0_device->common);
80 km0_device = NULL;
81 // SoftKeymasterDevice will be deleted by keymaster_device_release()
82 *dev = soft_keymaster.release()->keymaster2_device();
83 return 0;
84 }
85
86 ALOGD("Wrapping keymaster0 module %s with SoftKeymasterDevice", mod->name);
87 error = soft_keymaster->SetHardwareDevice(km0_device);
88 km0_device = NULL; // SoftKeymasterDevice has taken ownership.
89 if (error != KM_ERROR_OK) {
90 ALOGE("Got error %d from SetHardwareDevice", error);
91 rc = error;
92 goto err;
93 }
94
95 // SoftKeymasterDevice will be deleted by keymaster_device_release()
96 *dev = soft_keymaster.release()->keymaster2_device();
97 return 0;
98
99err:
100 if (km0_device) km0_device->common.close(&km0_device->common);
101 *dev = NULL;
102 return rc;
103}
104
105static int keymaster1_device_initialize(const hw_module_t* mod, keymaster2_device_t** dev) {
106 assert(mod->module_api_version >= KEYMASTER_MODULE_API_VERSION_1_0);
107 ALOGI("Found keymaster1 module %s, version %x", mod->name, mod->module_api_version);
108
109 UniquePtr<SoftKeymasterDevice> soft_keymaster(new SoftKeymasterDevice);
110 keymaster1_device_t* km1_device = nullptr;
111 keymaster_error_t error = KM_ERROR_OK;
112
113 int rc = keymaster1_open(mod, &km1_device);
114 if (rc) {
115 ALOGE("Error %d opening keystore keymaster1 device", rc);
116 goto err;
117 }
118
119 ALOGD("Wrapping keymaster1 module %s with SofKeymasterDevice", mod->name);
120 error = soft_keymaster->SetHardwareDevice(km1_device);
121 km1_device = nullptr; // SoftKeymasterDevice has taken ownership.
122 if (error != KM_ERROR_OK) {
123 ALOGE("Got error %d from SetHardwareDevice", error);
124 rc = error;
125 goto err;
126 }
127
128 // SoftKeymasterDevice will be deleted by keymaster_device_release()
129 *dev = soft_keymaster.release()->keymaster2_device();
130 return 0;
131
132err:
133 if (km1_device) km1_device->common.close(&km1_device->common);
134 *dev = NULL;
135 return rc;
136}
137
138static int keymaster2_device_initialize(const hw_module_t* mod, keymaster2_device_t** dev) {
139 assert(mod->module_api_version >= KEYMASTER_MODULE_API_VERSION_2_0);
140 ALOGI("Found keymaster2 module %s, version %x", mod->name, mod->module_api_version);
141
142 keymaster2_device_t* km2_device = nullptr;
143
144 int rc = keymaster2_open(mod, &km2_device);
145 if (rc) {
146 ALOGE("Error %d opening keystore keymaster2 device", rc);
147 goto err;
148 }
149
150 *dev = km2_device;
151 return 0;
152
153err:
154 if (km2_device) km2_device->common.close(&km2_device->common);
155 *dev = nullptr;
156 return rc;
157}
158
159static int keymaster_device_initialize(keymaster2_device_t** dev, uint32_t* version,
160 bool* supports_ec) {
161 const hw_module_t* mod;
162
163 *supports_ec = true;
164
165 int rc = hw_get_module_by_class(KEYSTORE_HARDWARE_MODULE_ID, NULL, &mod);
166 if (rc) {
167 ALOGI("Could not find any keystore module, using software-only implementation.");
168 // SoftKeymasterDevice will be deleted by keymaster_device_release()
169 *dev = (new SoftKeymasterDevice(new SoftwareOnlyHidlKeymasterContext))->keymaster2_device();
170 *version = -1;
171 return 0;
172 }
173
174 if (mod->module_api_version < KEYMASTER_MODULE_API_VERSION_1_0) {
175 *version = 0;
176 int rc = keymaster0_device_initialize(mod, dev);
177 if (rc == 0 && ((*dev)->flags & KEYMASTER_SUPPORTS_EC) == 0) {
178 *supports_ec = false;
179 }
180 return rc;
181 } else if (mod->module_api_version == KEYMASTER_MODULE_API_VERSION_1_0) {
182 *version = 1;
183 return keymaster1_device_initialize(mod, dev);
184 } else {
185 *version = 2;
186 return keymaster2_device_initialize(mod, dev);
187 }
188}
189
190KeymasterDevice::~KeymasterDevice() {
191 if (keymaster_device_) keymaster_device_->common.close(&keymaster_device_->common);
192}
193
194static inline keymaster_tag_type_t typeFromTag(const keymaster_tag_t tag) {
195 return keymaster_tag_get_type(tag);
196}
197
198/**
199 * legacy_enum_conversion converts enums from hidl to keymaster and back. Currently, this is just a
200 * cast to make the compiler happy. One of two thigs should happen though:
201 * TODO The keymaster enums should become aliases for the hidl generated enums so that we have a
202 * single point of truth. Then this cast function can go away.
203 */
204inline static keymaster_tag_t legacy_enum_conversion(const Tag value) {
205 return keymaster_tag_t(value);
206}
207inline static Tag legacy_enum_conversion(const keymaster_tag_t value) {
208 return Tag(value);
209}
210inline static keymaster_purpose_t legacy_enum_conversion(const KeyPurpose value) {
211 return keymaster_purpose_t(value);
212}
213inline static keymaster_key_format_t legacy_enum_conversion(const KeyFormat value) {
214 return keymaster_key_format_t(value);
215}
216inline static ErrorCode legacy_enum_conversion(const keymaster_error_t value) {
217 return ErrorCode(value);
218}
219
220class KmParamSet : public keymaster_key_param_set_t {
221 public:
222 KmParamSet(const hidl_vec<KeyParameter>& keyParams) {
223 params = new keymaster_key_param_t[keyParams.size()];
224 length = keyParams.size();
225 for (size_t i = 0; i < keyParams.size(); ++i) {
226 auto tag = legacy_enum_conversion(keyParams[i].tag);
227 switch (typeFromTag(tag)) {
228 case KM_ENUM:
229 case KM_ENUM_REP:
230 params[i] = keymaster_param_enum(tag, keyParams[i].f.integer);
231 break;
232 case KM_UINT:
233 case KM_UINT_REP:
234 params[i] = keymaster_param_int(tag, keyParams[i].f.integer);
235 break;
236 case KM_ULONG:
237 case KM_ULONG_REP:
238 params[i] = keymaster_param_long(tag, keyParams[i].f.longInteger);
239 break;
240 case KM_DATE:
241 params[i] = keymaster_param_date(tag, keyParams[i].f.dateTime);
242 break;
243 case KM_BOOL:
244 if (keyParams[i].f.boolValue)
245 params[i] = keymaster_param_bool(tag);
246 else
247 params[i].tag = KM_TAG_INVALID;
248 break;
249 case KM_BIGNUM:
250 case KM_BYTES:
251 params[i] =
252 keymaster_param_blob(tag, &keyParams[i].blob[0], keyParams[i].blob.size());
253 break;
254 case KM_INVALID:
255 default:
256 params[i].tag = KM_TAG_INVALID;
257 /* just skip */
258 break;
259 }
260 }
261 }
262 KmParamSet(KmParamSet&& other) : keymaster_key_param_set_t{other.params, other.length} {
263 other.length = 0;
264 other.params = nullptr;
265 }
266 KmParamSet(const KmParamSet&) = delete;
267 ~KmParamSet() { delete[] params; }
268};
269
270inline static KmParamSet hidlParams2KmParamSet(const hidl_vec<KeyParameter>& params) {
271 return KmParamSet(params);
272}
273
274inline static keymaster_blob_t hidlVec2KmBlob(const hidl_vec<uint8_t>& blob) {
275 /* hidl unmarshals funny pointers if the the blob is empty */
276 if (blob.size()) return {&blob[0], blob.size()};
277 return {nullptr, 0};
278}
279
280inline static keymaster_key_blob_t hidlVec2KmKeyBlob(const hidl_vec<uint8_t>& blob) {
281 /* hidl unmarshals funny pointers if the the blob is empty */
282 if (blob.size()) return {&blob[0], blob.size()};
283 return {nullptr, 0};
284}
285
286inline static hidl_vec<uint8_t> kmBlob2hidlVec(const keymaster_key_blob_t& blob) {
287 hidl_vec<uint8_t> result;
288 result.setToExternal(const_cast<unsigned char*>(blob.key_material), blob.key_material_size);
289 return result;
290}
291inline static hidl_vec<uint8_t> kmBlob2hidlVec(const keymaster_blob_t& blob) {
292 hidl_vec<uint8_t> result;
293 result.setToExternal(const_cast<unsigned char*>(blob.data), blob.data_length);
294 return result;
295}
296
297inline static hidl_vec<hidl_vec<uint8_t>>
298kmCertChain2Hidl(const keymaster_cert_chain_t* cert_chain) {
299 hidl_vec<hidl_vec<uint8_t>> result;
300 if (!cert_chain || cert_chain->entry_count == 0 || !cert_chain->entries) return result;
301
302 result.resize(cert_chain->entry_count);
303 for (size_t i = 0; i < cert_chain->entry_count; ++i) {
304 auto& entry = cert_chain->entries[i];
305 result[i] = kmBlob2hidlVec(entry);
306 }
307
308 return result;
309}
310
311static inline hidl_vec<KeyParameter> kmParamSet2Hidl(const keymaster_key_param_set_t& set) {
312 hidl_vec<KeyParameter> result;
313 if (set.length == 0 || set.params == nullptr) return result;
314
315 result.resize(set.length);
316 keymaster_key_param_t* params = set.params;
317 for (size_t i = 0; i < set.length; ++i) {
318 auto tag = params[i].tag;
319 result[i].tag = legacy_enum_conversion(tag);
320 switch (typeFromTag(tag)) {
321 case KM_ENUM:
322 case KM_ENUM_REP:
323 result[i].f.integer = params[i].enumerated;
324 break;
325 case KM_UINT:
326 case KM_UINT_REP:
327 result[i].f.integer = params[i].integer;
328 break;
329 case KM_ULONG:
330 case KM_ULONG_REP:
331 result[i].f.longInteger = params[i].long_integer;
332 break;
333 case KM_DATE:
334 result[i].f.dateTime = params[i].date_time;
335 break;
336 case KM_BOOL:
337 result[i].f.boolValue = params[i].boolean;
338 break;
339 case KM_BIGNUM:
340 case KM_BYTES:
341 result[i].blob.setToExternal(const_cast<unsigned char*>(params[i].blob.data),
342 params[i].blob.data_length);
343 break;
344 case KM_INVALID:
345 default:
346 params[i].tag = KM_TAG_INVALID;
347 /* just skip */
348 break;
349 }
350 }
351 return result;
352}
353
354// Methods from ::android::hardware::keymaster::V3_0::IKeymasterDevice follow.
355Return<void> KeymasterDevice::getHardwareFeatures(getHardwareFeatures_cb _hidl_cb) {
356 bool is_secure = false;
357 bool supports_symmetric_cryptography = false;
358 bool supports_attestation = false;
359
360 switch (hardware_version_) {
361 case 2:
362 supports_attestation = true;
363 /* Falls through */
364 case 1:
365 supports_symmetric_cryptography = true;
366 /* Falls through */
367 case 0:
368 is_secure = true;
369 break;
370 };
371
372 _hidl_cb(is_secure, hardware_supports_ec_, supports_symmetric_cryptography,
373 supports_attestation);
374 return Void();
375}
376
377Return<ErrorCode> KeymasterDevice::addRngEntropy(const hidl_vec<uint8_t>& data) {
378 return legacy_enum_conversion(
379 keymaster_device_->add_rng_entropy(keymaster_device_, &data[0], data.size()));
380}
381
382Return<void> KeymasterDevice::generateKey(const hidl_vec<KeyParameter>& keyParams,
383 generateKey_cb _hidl_cb) {
384 // result variables for the wire
385 KeyCharacteristics resultCharacteristics;
386 hidl_vec<uint8_t> resultKeyBlob;
387
388 // result variables the backend understands
389 keymaster_key_blob_t key_blob{nullptr, 0};
390 keymaster_key_characteristics_t key_characteristics{{nullptr, 0}, {nullptr, 0}};
391
392 // convert the parameter set to something our backend understands
393 auto kmParams = hidlParams2KmParamSet(keyParams);
394
395 auto rc = keymaster_device_->generate_key(keymaster_device_, &kmParams, &key_blob,
396 &key_characteristics);
397
398 if (rc == KM_ERROR_OK) {
399 // on success convert the result to wire format
400 resultKeyBlob = kmBlob2hidlVec(key_blob);
401 resultCharacteristics.softwareEnforced = kmParamSet2Hidl(key_characteristics.sw_enforced);
402 resultCharacteristics.teeEnforced = kmParamSet2Hidl(key_characteristics.hw_enforced);
403 }
404
405 // send results off to the client
406 _hidl_cb(legacy_enum_conversion(rc), resultKeyBlob, resultCharacteristics);
407
408 // free buffers that we are responsible for
409 if (key_blob.key_material) free(const_cast<uint8_t*>(key_blob.key_material));
410 keymaster_free_characteristics(&key_characteristics);
411
412 return Void();
413}
414
415Return<void> KeymasterDevice::getKeyCharacteristics(const hidl_vec<uint8_t>& keyBlob,
416 const hidl_vec<uint8_t>& clientId,
417 const hidl_vec<uint8_t>& appData,
418 getKeyCharacteristics_cb _hidl_cb) {
419 // result variables for the wire
420 KeyCharacteristics resultCharacteristics;
421
422 // result variables the backend understands
423 keymaster_key_characteristics_t key_characteristics{{nullptr, 0}, {nullptr, 0}};
424
425 auto kmKeyBlob = hidlVec2KmKeyBlob(keyBlob);
426 auto kmClientId = hidlVec2KmBlob(clientId);
427 auto kmAppData = hidlVec2KmBlob(appData);
428
429 auto rc = keymaster_device_->get_key_characteristics(
430 keymaster_device_, keyBlob.size() ? &kmKeyBlob : nullptr,
431 clientId.size() ? &kmClientId : nullptr, appData.size() ? &kmAppData : nullptr,
432 &key_characteristics);
433
434 if (rc == KM_ERROR_OK) {
435 resultCharacteristics.softwareEnforced = kmParamSet2Hidl(key_characteristics.sw_enforced);
436 resultCharacteristics.teeEnforced = kmParamSet2Hidl(key_characteristics.hw_enforced);
437 }
438
439 _hidl_cb(legacy_enum_conversion(rc), resultCharacteristics);
440
441 keymaster_free_characteristics(&key_characteristics);
442
443 return Void();
444}
445
446Return<void> KeymasterDevice::importKey(const hidl_vec<KeyParameter>& params, KeyFormat keyFormat,
447 const hidl_vec<uint8_t>& keyData, importKey_cb _hidl_cb) {
448 // result variables for the wire
449 KeyCharacteristics resultCharacteristics;
450 hidl_vec<uint8_t> resultKeyBlob;
451
452 // result variables the backend understands
453 keymaster_key_blob_t key_blob{nullptr, 0};
454 keymaster_key_characteristics_t key_characteristics{{nullptr, 0}, {nullptr, 0}};
455
456 auto kmParams = hidlParams2KmParamSet(params);
457 auto kmKeyData = hidlVec2KmBlob(keyData);
458
459 auto rc = keymaster_device_->import_key(keymaster_device_, &kmParams,
460 legacy_enum_conversion(keyFormat), &kmKeyData,
461 &key_blob, &key_characteristics);
462
463 if (rc == KM_ERROR_OK) {
464 // on success convert the result to wire format
465 // (Can we assume that key_blob is {nullptr, 0} or a valid buffer description?)
466 resultKeyBlob = kmBlob2hidlVec(key_blob);
467 resultCharacteristics.softwareEnforced = kmParamSet2Hidl(key_characteristics.sw_enforced);
468 resultCharacteristics.teeEnforced = kmParamSet2Hidl(key_characteristics.hw_enforced);
469 }
470
471 _hidl_cb(legacy_enum_conversion(rc), resultKeyBlob, resultCharacteristics);
472
473 // free buffers that we are responsible for
474 if (key_blob.key_material) free(const_cast<uint8_t*>(key_blob.key_material));
475 keymaster_free_characteristics(&key_characteristics);
476
477 return Void();
478}
479
480Return<void> KeymasterDevice::exportKey(KeyFormat exportFormat, const hidl_vec<uint8_t>& keyBlob,
481 const hidl_vec<uint8_t>& clientId,
482 const hidl_vec<uint8_t>& appData, exportKey_cb _hidl_cb) {
483
484 // result variables for the wire
485 hidl_vec<uint8_t> resultKeyBlob;
486
487 // result variables the backend understands
488 keymaster_blob_t out_blob{nullptr, 0};
489
490 auto kmKeyBlob = hidlVec2KmKeyBlob(keyBlob);
491 auto kmClientId = hidlVec2KmBlob(clientId);
492 auto kmAppData = hidlVec2KmBlob(appData);
493
494 auto rc = keymaster_device_->export_key(keymaster_device_, legacy_enum_conversion(exportFormat),
495 keyBlob.size() ? &kmKeyBlob : nullptr,
496 clientId.size() ? &kmClientId : nullptr,
497 appData.size() ? &kmAppData : nullptr, &out_blob);
498
499 if (rc == KM_ERROR_OK) {
500 // on success convert the result to wire format
501 // (Can we assume that key_blob is {nullptr, 0} or a valid buffer description?)
502 resultKeyBlob = kmBlob2hidlVec(out_blob);
503 }
504
505 _hidl_cb(legacy_enum_conversion(rc), resultKeyBlob);
506
507 // free buffers that we are responsible for
508 if (out_blob.data) free(const_cast<uint8_t*>(out_blob.data));
509
510 return Void();
511}
512
513Return<void> KeymasterDevice::attestKey(const hidl_vec<uint8_t>& keyToAttest,
514 const hidl_vec<KeyParameter>& attestParams,
515 attestKey_cb _hidl_cb) {
516
517 hidl_vec<hidl_vec<uint8_t>> resultCertChain;
518
Bartosz Fabianowskiaac0fc72017-01-23 13:51:10 +0100519 for (size_t i = 0; i < attestParams.size(); ++i) {
520 switch (attestParams[i].tag) {
521 case Tag::ATTESTATION_ID_BRAND:
522 case Tag::ATTESTATION_ID_DEVICE:
523 case Tag::ATTESTATION_ID_PRODUCT:
524 case Tag::ATTESTATION_ID_SERIAL:
525 case Tag::ATTESTATION_ID_IMEI:
526 case Tag::ATTESTATION_ID_MEID:
527 // Device id attestation may only be supported if the device is able to permanently
528 // destroy its knowledge of the ids. This device is unable to do this, so it must
529 // never perform any device id attestation.
530 _hidl_cb(ErrorCode::CANNOT_ATTEST_IDS, resultCertChain);
531 return Void();
532 default:
533 break;
534 }
535 }
536
Janis Danisevskis0f35e5a2016-10-12 11:33:13 +0100537 keymaster_cert_chain_t cert_chain{nullptr, 0};
538
539 auto kmKeyToAttest = hidlVec2KmKeyBlob(keyToAttest);
540 auto kmAttestParams = hidlParams2KmParamSet(attestParams);
541
542 auto rc = keymaster_device_->attest_key(keymaster_device_, &kmKeyToAttest, &kmAttestParams,
543 &cert_chain);
544
545 if (rc == KM_ERROR_OK) {
546 resultCertChain = kmCertChain2Hidl(&cert_chain);
547 }
548
549 _hidl_cb(legacy_enum_conversion(rc), resultCertChain);
550
551 keymaster_free_cert_chain(&cert_chain);
552
553 return Void();
554}
555
556Return<void> KeymasterDevice::upgradeKey(const hidl_vec<uint8_t>& keyBlobToUpgrade,
557 const hidl_vec<KeyParameter>& upgradeParams,
558 upgradeKey_cb _hidl_cb) {
559
560 // result variables for the wire
561 hidl_vec<uint8_t> resultKeyBlob;
562
563 // result variables the backend understands
564 keymaster_key_blob_t key_blob{nullptr, 0};
565
566 auto kmKeyBlobToUpgrade = hidlVec2KmKeyBlob(keyBlobToUpgrade);
567 auto kmUpgradeParams = hidlParams2KmParamSet(upgradeParams);
568
569 auto rc = keymaster_device_->upgrade_key(keymaster_device_, &kmKeyBlobToUpgrade,
570 &kmUpgradeParams, &key_blob);
571
572 if (rc == KM_ERROR_OK) {
573 // on success convert the result to wire format
574 resultKeyBlob = kmBlob2hidlVec(key_blob);
575 }
576
577 _hidl_cb(legacy_enum_conversion(rc), resultKeyBlob);
578
579 if (key_blob.key_material) free(const_cast<uint8_t*>(key_blob.key_material));
580
581 return Void();
582}
583
584Return<ErrorCode> KeymasterDevice::deleteKey(const hidl_vec<uint8_t>& keyBlob) {
585 auto kmKeyBlob = hidlVec2KmKeyBlob(keyBlob);
586 return legacy_enum_conversion(keymaster_device_->delete_key(keymaster_device_, &kmKeyBlob));
587}
588
589Return<ErrorCode> KeymasterDevice::deleteAllKeys() {
Bartosz Fabianowskiaac0fc72017-01-23 13:51:10 +0100590 if (keymaster_device_->delete_all_keys == nullptr) {
591 return ErrorCode::UNIMPLEMENTED;
592 }
Janis Danisevskis0f35e5a2016-10-12 11:33:13 +0100593 return legacy_enum_conversion(keymaster_device_->delete_all_keys(keymaster_device_));
594}
595
Bartosz Fabianowskiaac0fc72017-01-23 13:51:10 +0100596Return<ErrorCode> KeymasterDevice::destroyAttestationIds() {
597 return ErrorCode::UNIMPLEMENTED;
598}
599
Janis Danisevskis0f35e5a2016-10-12 11:33:13 +0100600Return<void> KeymasterDevice::begin(KeyPurpose purpose, const hidl_vec<uint8_t>& key,
601 const hidl_vec<KeyParameter>& inParams, begin_cb _hidl_cb) {
602
603 // result variables for the wire
604 hidl_vec<KeyParameter> resultParams;
605 uint64_t resultOpHandle = 0;
606
607 // result variables the backend understands
608 keymaster_key_param_set_t out_params{nullptr, 0};
609 keymaster_operation_handle_t& operation_handle = resultOpHandle;
610
611 auto kmKey = hidlVec2KmKeyBlob(key);
612 auto kmInParams = hidlParams2KmParamSet(inParams);
613
614 auto rc = keymaster_device_->begin(keymaster_device_, legacy_enum_conversion(purpose), &kmKey,
615 &kmInParams, &out_params, &operation_handle);
616
617 if (rc == KM_ERROR_OK) resultParams = kmParamSet2Hidl(out_params);
618
619 _hidl_cb(legacy_enum_conversion(rc), resultParams, resultOpHandle);
620
621 keymaster_free_param_set(&out_params);
622
623 return Void();
624}
625
626Return<void> KeymasterDevice::update(uint64_t operationHandle,
627 const hidl_vec<KeyParameter>& inParams,
628 const hidl_vec<uint8_t>& input, update_cb _hidl_cb) {
629 // result variables for the wire
630 uint32_t resultConsumed = 0;
631 hidl_vec<KeyParameter> resultParams;
632 hidl_vec<uint8_t> resultBlob;
633
634 // result variables the backend understands
635 size_t consumed = 0;
636 keymaster_key_param_set_t out_params{nullptr, 0};
637 keymaster_blob_t out_blob{nullptr, 0};
638
639 auto kmInParams = hidlParams2KmParamSet(inParams);
640 auto kmInput = hidlVec2KmBlob(input);
641
642 auto rc = keymaster_device_->update(keymaster_device_, operationHandle, &kmInParams, &kmInput,
643 &consumed, &out_params, &out_blob);
644
645 if (rc == KM_ERROR_OK) {
646 resultConsumed = consumed;
647 resultParams = kmParamSet2Hidl(out_params);
648 resultBlob = kmBlob2hidlVec(out_blob);
649 }
650
651 _hidl_cb(legacy_enum_conversion(rc), resultConsumed, resultParams, resultBlob);
652
653 keymaster_free_param_set(&out_params);
654 if (out_blob.data) free(const_cast<uint8_t*>(out_blob.data));
655
656 return Void();
657}
658
659Return<void> KeymasterDevice::finish(uint64_t operationHandle,
660 const hidl_vec<KeyParameter>& inParams,
661 const hidl_vec<uint8_t>& input,
662 const hidl_vec<uint8_t>& signature, finish_cb _hidl_cb) {
663 // result variables for the wire
664 hidl_vec<KeyParameter> resultParams;
665 hidl_vec<uint8_t> resultBlob;
666
667 // result variables the backend understands
668 keymaster_key_param_set_t out_params{nullptr, 0};
669 keymaster_blob_t out_blob{nullptr, 0};
670
671 auto kmInParams = hidlParams2KmParamSet(inParams);
672 auto kmInput = hidlVec2KmBlob(input);
673 auto kmSignature = hidlVec2KmBlob(signature);
674
675 auto rc = keymaster_device_->finish(keymaster_device_, operationHandle, &kmInParams, &kmInput,
676 &kmSignature, &out_params, &out_blob);
677
678 if (rc == KM_ERROR_OK) {
679 resultParams = kmParamSet2Hidl(out_params);
680 resultBlob = kmBlob2hidlVec(out_blob);
681 }
682
683 _hidl_cb(legacy_enum_conversion(rc), resultParams, resultBlob);
684
685 keymaster_free_param_set(&out_params);
686 if (out_blob.data) free(const_cast<uint8_t*>(out_blob.data));
687
688 return Void();
689}
690
691Return<ErrorCode> KeymasterDevice::abort(uint64_t operationHandle) {
692 return legacy_enum_conversion(keymaster_device_->abort(keymaster_device_, operationHandle));
693}
694
695IKeymasterDevice* HIDL_FETCH_IKeymasterDevice(const char* /* name */) {
696 keymaster2_device_t* dev = nullptr;
697
698 uint32_t version;
699 bool supports_ec;
700 auto rc = keymaster_device_initialize(&dev, &version, &supports_ec);
701 if (rc) return nullptr;
702
703 auto kmrc = ::keymaster::ConfigureDevice(dev);
704 if (kmrc != KM_ERROR_OK) {
705 dev->common.close(&dev->common);
706 return nullptr;
707 }
708
709 return new KeymasterDevice(dev, version, supports_ec);
710}
711
712} // namespace implementation
713} // namespace V3_0
714} // namespace keymaster
715} // namespace hardware
716} // namespace android