blob: 3cc11f6548eebff40890d541df9c2525a250eb71 [file] [log] [blame]
Shawn Willden274bb552020-09-30 22:39:22 -06001/*
2 * Copyright (C) 2020 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#define LOG_TAG "VtsRemotelyProvisionableComponentTests"
18
Max Bires261a0492021-04-19 18:55:56 -070019#include <AndroidRemotelyProvisionedComponentDevice.h>
Shawn Willden274bb552020-09-30 22:39:22 -060020#include <aidl/android/hardware/security/keymint/IRemotelyProvisionedComponent.h>
21#include <aidl/android/hardware/security/keymint/SecurityLevel.h>
22#include <android/binder_manager.h>
Seth Moorefc86bf42021-12-09 14:07:04 -080023#include <binder/IServiceManager.h>
Shawn Willden274bb552020-09-30 22:39:22 -060024#include <cppbor_parse.h>
Shawn Willden274bb552020-09-30 22:39:22 -060025#include <gmock/gmock.h>
Max Bires9704ff62021-04-07 11:12:01 -070026#include <keymaster/cppcose/cppcose.h>
Shawn Willden274bb552020-09-30 22:39:22 -060027#include <keymaster/keymaster_configuration.h>
David Drysdalef0d516d2021-03-22 07:51:43 +000028#include <keymint_support/authorization_set.h>
29#include <openssl/ec.h>
30#include <openssl/ec_key.h>
31#include <openssl/x509.h>
Shawn Willden274bb552020-09-30 22:39:22 -060032#include <remote_prov/remote_prov_utils.h>
Seth Moorefc86bf42021-12-09 14:07:04 -080033#include <set>
Seth Moore42c11332021-07-02 15:38:17 -070034#include <vector>
Shawn Willden274bb552020-09-30 22:39:22 -060035
David Drysdalef0d516d2021-03-22 07:51:43 +000036#include "KeyMintAidlTestBase.h"
37
Shawn Willden274bb552020-09-30 22:39:22 -060038namespace aidl::android::hardware::security::keymint::test {
39
40using ::std::string;
41using ::std::vector;
42
43namespace {
44
Seth Moorefc86bf42021-12-09 14:07:04 -080045constexpr int32_t VERSION_WITH_UNIQUE_ID_SUPPORT = 2;
46
Shawn Willden274bb552020-09-30 22:39:22 -060047#define INSTANTIATE_REM_PROV_AIDL_TEST(name) \
Seth Moore6305e232021-07-27 14:20:17 -070048 GTEST_ALLOW_UNINSTANTIATED_PARAMETERIZED_TEST(name); \
Shawn Willden274bb552020-09-30 22:39:22 -060049 INSTANTIATE_TEST_SUITE_P( \
50 PerInstance, name, \
51 testing::ValuesIn(VtsRemotelyProvisionedComponentTests::build_params()), \
52 ::android::PrintInstanceNameToString)
53
Seth Moorefc86bf42021-12-09 14:07:04 -080054using ::android::sp;
Shawn Willden274bb552020-09-30 22:39:22 -060055using bytevec = std::vector<uint8_t>;
56using testing::MatchesRegex;
57using namespace remote_prov;
58using namespace keymaster;
59
Max Bires8b09c502022-01-30 20:03:16 -080060std::set<std::string> getAllowedVbStates() {
61 return {"green", "yellow", "orange"};
62}
63
64std::set<std::string> getAllowedBootloaderStates() {
65 return {"locked", "unlocked"};
66}
67
68std::set<std::string> getAllowedSecurityLevels() {
69 return {"tee", "strongbox"};
70}
71
72std::set<std::string> getAllowedAttIdStates() {
73 return {"locked", "open"};
74}
75
Shawn Willden274bb552020-09-30 22:39:22 -060076bytevec string_to_bytevec(const char* s) {
77 const uint8_t* p = reinterpret_cast<const uint8_t*>(s);
78 return bytevec(p, p + strlen(s));
79}
80
David Drysdalee99ed862021-03-15 16:43:06 +000081ErrMsgOr<MacedPublicKey> corrupt_maced_key(const MacedPublicKey& macedPubKey) {
82 auto [coseMac0, _, mac0ParseErr] = cppbor::parse(macedPubKey.macedKey);
83 if (!coseMac0 || coseMac0->asArray()->size() != kCoseMac0EntryCount) {
84 return "COSE Mac0 parse failed";
85 }
86 auto protParams = coseMac0->asArray()->get(kCoseMac0ProtectedParams)->asBstr();
87 auto unprotParams = coseMac0->asArray()->get(kCoseMac0UnprotectedParams)->asMap();
88 auto payload = coseMac0->asArray()->get(kCoseMac0Payload)->asBstr();
89 auto tag = coseMac0->asArray()->get(kCoseMac0Tag)->asBstr();
90 if (!protParams || !unprotParams || !payload || !tag) {
91 return "Invalid COSE_Sign1: missing content";
92 }
93 auto corruptMac0 = cppbor::Array();
94 corruptMac0.add(protParams->clone());
95 corruptMac0.add(unprotParams->clone());
96 corruptMac0.add(payload->clone());
97 vector<uint8_t> tagData = tag->value();
98 tagData[0] ^= 0x08;
99 tagData[tagData.size() - 1] ^= 0x80;
100 corruptMac0.add(cppbor::Bstr(tagData));
101
102 return MacedPublicKey{corruptMac0.encode()};
103}
104
David Drysdalecceca9f2021-03-12 15:49:47 +0000105ErrMsgOr<cppbor::Array> corrupt_sig(const cppbor::Array* coseSign1) {
106 if (coseSign1->size() != kCoseSign1EntryCount) {
107 return "Invalid COSE_Sign1, wrong entry count";
108 }
109 const cppbor::Bstr* protectedParams = coseSign1->get(kCoseSign1ProtectedParams)->asBstr();
110 const cppbor::Map* unprotectedParams = coseSign1->get(kCoseSign1UnprotectedParams)->asMap();
111 const cppbor::Bstr* payload = coseSign1->get(kCoseSign1Payload)->asBstr();
112 const cppbor::Bstr* signature = coseSign1->get(kCoseSign1Signature)->asBstr();
113 if (!protectedParams || !unprotectedParams || !payload || !signature) {
114 return "Invalid COSE_Sign1: missing content";
115 }
116
117 auto corruptSig = cppbor::Array();
118 corruptSig.add(protectedParams->clone());
119 corruptSig.add(unprotectedParams->clone());
120 corruptSig.add(payload->clone());
121 vector<uint8_t> sigData = signature->value();
122 sigData[0] ^= 0x08;
123 corruptSig.add(cppbor::Bstr(sigData));
124
125 return std::move(corruptSig);
126}
127
Seth Moore19acbe92021-06-23 15:15:52 -0700128ErrMsgOr<bytevec> corrupt_sig_chain(const bytevec& encodedEekChain, int which) {
129 auto [chain, _, parseErr] = cppbor::parse(encodedEekChain);
David Drysdalecceca9f2021-03-12 15:49:47 +0000130 if (!chain || !chain->asArray()) {
131 return "EekChain parse failed";
132 }
133
134 cppbor::Array* eekChain = chain->asArray();
135 if (which >= eekChain->size()) {
136 return "selected sig out of range";
137 }
138 auto corruptChain = cppbor::Array();
139
140 for (int ii = 0; ii < eekChain->size(); ++ii) {
141 if (ii == which) {
142 auto sig = corrupt_sig(eekChain->get(which)->asArray());
143 if (!sig) {
144 return "Failed to build corrupted signature" + sig.moveMessage();
145 }
146 corruptChain.add(sig.moveValue());
147 } else {
148 corruptChain.add(eekChain->get(ii)->clone());
149 }
150 }
Seth Moore19acbe92021-06-23 15:15:52 -0700151 return corruptChain.encode();
David Drysdalecceca9f2021-03-12 15:49:47 +0000152}
153
David Drysdale4d3c2982021-03-31 18:21:40 +0100154string device_suffix(const string& name) {
155 size_t pos = name.find('/');
156 if (pos == string::npos) {
157 return name;
158 }
159 return name.substr(pos + 1);
160}
161
162bool matching_keymint_device(const string& rp_name, std::shared_ptr<IKeyMintDevice>* keyMint) {
163 string rp_suffix = device_suffix(rp_name);
164
165 vector<string> km_names = ::android::getAidlHalInstanceNames(IKeyMintDevice::descriptor);
166 for (const string& km_name : km_names) {
167 // If the suffix of the KeyMint instance equals the suffix of the
168 // RemotelyProvisionedComponent instance, assume they match.
169 if (device_suffix(km_name) == rp_suffix && AServiceManager_isDeclared(km_name.c_str())) {
170 ::ndk::SpAIBinder binder(AServiceManager_waitForService(km_name.c_str()));
171 *keyMint = IKeyMintDevice::fromBinder(binder);
172 return true;
173 }
174 }
175 return false;
176}
177
Shawn Willden274bb552020-09-30 22:39:22 -0600178} // namespace
179
180class VtsRemotelyProvisionedComponentTests : public testing::TestWithParam<std::string> {
181 public:
182 virtual void SetUp() override {
183 if (AServiceManager_isDeclared(GetParam().c_str())) {
184 ::ndk::SpAIBinder binder(AServiceManager_waitForService(GetParam().c_str()));
185 provisionable_ = IRemotelyProvisionedComponent::fromBinder(binder);
186 }
187 ASSERT_NE(provisionable_, nullptr);
subrahmanyamanfb213d62022-02-02 23:10:55 +0000188 ASSERT_TRUE(provisionable_->getHardwareInfo(&rpcHardwareInfo).isOk());
Shawn Willden274bb552020-09-30 22:39:22 -0600189 }
190
191 static vector<string> build_params() {
192 auto params = ::android::getAidlHalInstanceNames(IRemotelyProvisionedComponent::descriptor);
193 return params;
194 }
195
196 protected:
197 std::shared_ptr<IRemotelyProvisionedComponent> provisionable_;
subrahmanyamanfb213d62022-02-02 23:10:55 +0000198 RpcHardwareInfo rpcHardwareInfo;
Shawn Willden274bb552020-09-30 22:39:22 -0600199};
200
Seth Moorefc86bf42021-12-09 14:07:04 -0800201/**
202 * Verify that every implementation reports a different unique id.
203 */
204TEST(NonParameterizedTests, eachRpcHasAUniqueId) {
205 std::set<std::string> uniqueIds;
206 for (auto hal : ::android::getAidlHalInstanceNames(IRemotelyProvisionedComponent::descriptor)) {
207 ASSERT_TRUE(AServiceManager_isDeclared(hal.c_str()));
208 ::ndk::SpAIBinder binder(AServiceManager_waitForService(hal.c_str()));
209 std::shared_ptr<IRemotelyProvisionedComponent> rpc =
210 IRemotelyProvisionedComponent::fromBinder(binder);
211 ASSERT_NE(rpc, nullptr);
212
213 RpcHardwareInfo hwInfo;
214 ASSERT_TRUE(rpc->getHardwareInfo(&hwInfo).isOk());
215
216 int32_t version;
217 ASSERT_TRUE(rpc->getInterfaceVersion(&version).isOk());
218 if (version >= VERSION_WITH_UNIQUE_ID_SUPPORT) {
219 ASSERT_TRUE(hwInfo.uniqueId);
220 auto [_, wasInserted] = uniqueIds.insert(*hwInfo.uniqueId);
221 EXPECT_TRUE(wasInserted);
222 } else {
223 ASSERT_FALSE(hwInfo.uniqueId);
224 }
225 }
226}
227
228using GetHardwareInfoTests = VtsRemotelyProvisionedComponentTests;
229
230INSTANTIATE_REM_PROV_AIDL_TEST(GetHardwareInfoTests);
231
232/**
233 * Verify that a valid curve is reported by the implementation.
234 */
235TEST_P(GetHardwareInfoTests, supportsValidCurve) {
236 RpcHardwareInfo hwInfo;
237 ASSERT_TRUE(provisionable_->getHardwareInfo(&hwInfo).isOk());
238
239 const std::set<int> validCurves = {RpcHardwareInfo::CURVE_P256, RpcHardwareInfo::CURVE_25519};
240 ASSERT_EQ(validCurves.count(hwInfo.supportedEekCurve), 1)
241 << "Invalid curve: " << hwInfo.supportedEekCurve;
242}
243
244/**
245 * Verify that the unique id is within the length limits as described in RpcHardwareInfo.aidl.
246 */
247TEST_P(GetHardwareInfoTests, uniqueId) {
248 int32_t version;
249 ASSERT_TRUE(provisionable_->getInterfaceVersion(&version).isOk());
250
251 if (version < VERSION_WITH_UNIQUE_ID_SUPPORT) {
252 return;
253 }
254
255 RpcHardwareInfo hwInfo;
256 ASSERT_TRUE(provisionable_->getHardwareInfo(&hwInfo).isOk());
257 ASSERT_TRUE(hwInfo.uniqueId);
258 EXPECT_GE(hwInfo.uniqueId->size(), 1);
259 EXPECT_LE(hwInfo.uniqueId->size(), 32);
260}
261
Shawn Willden274bb552020-09-30 22:39:22 -0600262using GenerateKeyTests = VtsRemotelyProvisionedComponentTests;
263
264INSTANTIATE_REM_PROV_AIDL_TEST(GenerateKeyTests);
265
266/**
David Drysdalef0d516d2021-03-22 07:51:43 +0000267 * Generate and validate a production-mode key. MAC tag can't be verified, but
268 * the private key blob should be usable in KeyMint operations.
Shawn Willden274bb552020-09-30 22:39:22 -0600269 */
Max Bires126869a2021-02-21 18:32:59 -0800270TEST_P(GenerateKeyTests, generateEcdsaP256Key_prodMode) {
Shawn Willden274bb552020-09-30 22:39:22 -0600271 MacedPublicKey macedPubKey;
272 bytevec privateKeyBlob;
273 bool testMode = false;
274 auto status = provisionable_->generateEcdsaP256KeyPair(testMode, &macedPubKey, &privateKeyBlob);
275 ASSERT_TRUE(status.isOk());
David Drysdalef0d516d2021-03-22 07:51:43 +0000276 vector<uint8_t> coseKeyData;
277 check_maced_pubkey(macedPubKey, testMode, &coseKeyData);
David Drysdale4d3c2982021-03-31 18:21:40 +0100278}
279
280/**
281 * Generate and validate a production-mode key, then use it as a KeyMint attestation key.
282 */
283TEST_P(GenerateKeyTests, generateAndUseEcdsaP256Key_prodMode) {
284 // See if there is a matching IKeyMintDevice for this IRemotelyProvisionedComponent.
285 std::shared_ptr<IKeyMintDevice> keyMint;
286 if (!matching_keymint_device(GetParam(), &keyMint)) {
287 // No matching IKeyMintDevice.
288 GTEST_SKIP() << "Skipping key use test as no matching KeyMint device found";
289 return;
290 }
291 KeyMintHardwareInfo info;
292 ASSERT_TRUE(keyMint->getHardwareInfo(&info).isOk());
293
294 MacedPublicKey macedPubKey;
295 bytevec privateKeyBlob;
296 bool testMode = false;
297 auto status = provisionable_->generateEcdsaP256KeyPair(testMode, &macedPubKey, &privateKeyBlob);
298 ASSERT_TRUE(status.isOk());
299 vector<uint8_t> coseKeyData;
300 check_maced_pubkey(macedPubKey, testMode, &coseKeyData);
301
David Drysdalef0d516d2021-03-22 07:51:43 +0000302 AttestationKey attestKey;
303 attestKey.keyBlob = std::move(privateKeyBlob);
304 attestKey.issuerSubjectName = make_name_from_str("Android Keystore Key");
Shawn Willden274bb552020-09-30 22:39:22 -0600305
David Drysdalef0d516d2021-03-22 07:51:43 +0000306 // Generate an ECDSA key that is attested by the generated P256 keypair.
307 AuthorizationSet keyDesc = AuthorizationSetBuilder()
308 .Authorization(TAG_NO_AUTH_REQUIRED)
David Drysdale915ce252021-10-14 15:17:36 +0100309 .EcdsaSigningKey(EcCurve::P_256)
David Drysdalef0d516d2021-03-22 07:51:43 +0000310 .AttestationChallenge("foo")
311 .AttestationApplicationId("bar")
312 .Digest(Digest::NONE)
313 .SetDefaultValidity();
314 KeyCreationResult creationResult;
315 auto result = keyMint->generateKey(keyDesc.vector_data(), attestKey, &creationResult);
316 ASSERT_TRUE(result.isOk());
317 vector<uint8_t> attested_key_blob = std::move(creationResult.keyBlob);
318 vector<KeyCharacteristics> attested_key_characteristics =
319 std::move(creationResult.keyCharacteristics);
320 vector<Certificate> attested_key_cert_chain = std::move(creationResult.certificateChain);
321 EXPECT_EQ(attested_key_cert_chain.size(), 1);
322
David Drysdale7dff4fc2021-12-10 10:10:52 +0000323 int32_t aidl_version = 0;
324 ASSERT_TRUE(keyMint->getInterfaceVersion(&aidl_version).isOk());
David Drysdalef0d516d2021-03-22 07:51:43 +0000325 AuthorizationSet hw_enforced = HwEnforcedAuthorizations(attested_key_characteristics);
326 AuthorizationSet sw_enforced = SwEnforcedAuthorizations(attested_key_characteristics);
David Drysdale7dff4fc2021-12-10 10:10:52 +0000327 EXPECT_TRUE(verify_attestation_record(aidl_version, "foo", "bar", sw_enforced, hw_enforced,
David Drysdalef0d516d2021-03-22 07:51:43 +0000328 info.securityLevel,
329 attested_key_cert_chain[0].encodedCertificate));
330
331 // Attestation by itself is not valid (last entry is not self-signed).
332 EXPECT_FALSE(ChainSignaturesAreValid(attested_key_cert_chain));
333
334 // The signature over the attested key should correspond to the P256 public key.
335 X509_Ptr key_cert(parse_cert_blob(attested_key_cert_chain[0].encodedCertificate));
336 ASSERT_TRUE(key_cert.get());
337 EVP_PKEY_Ptr signing_pubkey;
338 p256_pub_key(coseKeyData, &signing_pubkey);
339 ASSERT_TRUE(signing_pubkey.get());
340
341 ASSERT_TRUE(X509_verify(key_cert.get(), signing_pubkey.get()))
342 << "Verification of attested certificate failed "
343 << "OpenSSL error string: " << ERR_error_string(ERR_get_error(), NULL);
Shawn Willden274bb552020-09-30 22:39:22 -0600344}
345
346/**
347 * Generate and validate a test-mode key.
348 */
Max Bires126869a2021-02-21 18:32:59 -0800349TEST_P(GenerateKeyTests, generateEcdsaP256Key_testMode) {
Shawn Willden274bb552020-09-30 22:39:22 -0600350 MacedPublicKey macedPubKey;
351 bytevec privateKeyBlob;
352 bool testMode = true;
353 auto status = provisionable_->generateEcdsaP256KeyPair(testMode, &macedPubKey, &privateKeyBlob);
354 ASSERT_TRUE(status.isOk());
355
David Drysdalec8400772021-03-11 12:35:11 +0000356 check_maced_pubkey(macedPubKey, testMode, nullptr);
Shawn Willden274bb552020-09-30 22:39:22 -0600357}
358
359class CertificateRequestTest : public VtsRemotelyProvisionedComponentTests {
360 protected:
David Drysdalec8400772021-03-11 12:35:11 +0000361 CertificateRequestTest() : eekId_(string_to_bytevec("eekid")), challenge_(randomBytes(32)) {
David Drysdalecceca9f2021-03-12 15:49:47 +0000362 }
363
Seth Moore19acbe92021-06-23 15:15:52 -0700364 void generateTestEekChain(size_t eekLength) {
subrahmanyamanfb213d62022-02-02 23:10:55 +0000365 auto chain = generateEekChain(rpcHardwareInfo.supportedEekCurve, eekLength, eekId_);
David Drysdale08696a72022-03-10 10:43:25 +0000366 ASSERT_TRUE(chain) << chain.message();
Seth Moore19acbe92021-06-23 15:15:52 -0700367 if (chain) testEekChain_ = chain.moveValue();
368 testEekLength_ = eekLength;
Shawn Willden274bb552020-09-30 22:39:22 -0600369 }
370
371 void generateKeys(bool testMode, size_t numKeys) {
372 keysToSign_ = std::vector<MacedPublicKey>(numKeys);
373 cborKeysToSign_ = cppbor::Array();
374
375 for (auto& key : keysToSign_) {
376 bytevec privateKeyBlob;
377 auto status = provisionable_->generateEcdsaP256KeyPair(testMode, &key, &privateKeyBlob);
378 ASSERT_TRUE(status.isOk()) << status.getMessage();
379
David Drysdalec8400772021-03-11 12:35:11 +0000380 vector<uint8_t> payload_value;
381 check_maced_pubkey(key, testMode, &payload_value);
382 cborKeysToSign_.add(cppbor::EncodedItem(payload_value));
Shawn Willden274bb552020-09-30 22:39:22 -0600383 }
384 }
385
subrahmanyamanfb213d62022-02-02 23:10:55 +0000386 ErrMsgOr<bytevec> getSessionKey(ErrMsgOr<std::pair<bytevec, bytevec>>& senderPubkey) {
387 if (rpcHardwareInfo.supportedEekCurve == RpcHardwareInfo::CURVE_25519 ||
388 rpcHardwareInfo.supportedEekCurve == RpcHardwareInfo::CURVE_NONE) {
389 return x25519_HKDF_DeriveKey(testEekChain_.last_pubkey, testEekChain_.last_privkey,
390 senderPubkey->first, false /* senderIsA */);
391 } else {
392 return ECDH_HKDF_DeriveKey(testEekChain_.last_pubkey, testEekChain_.last_privkey,
393 senderPubkey->first, false /* senderIsA */);
394 }
395 }
396
David Drysdalef6fc5a62021-03-31 16:14:31 +0100397 void checkProtectedData(const DeviceInfo& deviceInfo, const cppbor::Array& keysToSign,
Seth Moore42c11332021-07-02 15:38:17 -0700398 const bytevec& keysToSignMac, const ProtectedData& protectedData,
399 std::vector<BccEntryData>* bccOutput = nullptr) {
David Drysdalec8400772021-03-11 12:35:11 +0000400 auto [parsedProtectedData, _, protDataErrMsg] = cppbor::parse(protectedData.protectedData);
401 ASSERT_TRUE(parsedProtectedData) << protDataErrMsg;
402 ASSERT_TRUE(parsedProtectedData->asArray());
403 ASSERT_EQ(parsedProtectedData->asArray()->size(), kCoseEncryptEntryCount);
404
405 auto senderPubkey = getSenderPubKeyFromCoseEncrypt(parsedProtectedData);
406 ASSERT_TRUE(senderPubkey) << senderPubkey.message();
407 EXPECT_EQ(senderPubkey->second, eekId_);
408
subrahmanyamanfb213d62022-02-02 23:10:55 +0000409 auto sessionKey = getSessionKey(senderPubkey);
David Drysdalec8400772021-03-11 12:35:11 +0000410 ASSERT_TRUE(sessionKey) << sessionKey.message();
411
412 auto protectedDataPayload =
413 decryptCoseEncrypt(*sessionKey, parsedProtectedData.get(), bytevec{} /* aad */);
414 ASSERT_TRUE(protectedDataPayload) << protectedDataPayload.message();
415
416 auto [parsedPayload, __, payloadErrMsg] = cppbor::parse(*protectedDataPayload);
417 ASSERT_TRUE(parsedPayload) << "Failed to parse payload: " << payloadErrMsg;
418 ASSERT_TRUE(parsedPayload->asArray());
subrahmanyamanfb213d62022-02-02 23:10:55 +0000419 // Strongbox may contain additional certificate chain.
420 EXPECT_LE(parsedPayload->asArray()->size(), 3U);
David Drysdalec8400772021-03-11 12:35:11 +0000421
422 auto& signedMac = parsedPayload->asArray()->get(0);
423 auto& bcc = parsedPayload->asArray()->get(1);
424 ASSERT_TRUE(signedMac && signedMac->asArray());
425 ASSERT_TRUE(bcc && bcc->asArray());
426
427 // BCC is [ pubkey, + BccEntry]
428 auto bccContents = validateBcc(bcc->asArray());
429 ASSERT_TRUE(bccContents) << "\n" << bccContents.message() << "\n" << prettyPrint(bcc.get());
430 ASSERT_GT(bccContents->size(), 0U);
431
David Drysdalef6fc5a62021-03-31 16:14:31 +0100432 auto [deviceInfoMap, __2, deviceInfoErrMsg] = cppbor::parse(deviceInfo.deviceInfo);
433 ASSERT_TRUE(deviceInfoMap) << "Failed to parse deviceInfo: " << deviceInfoErrMsg;
434 ASSERT_TRUE(deviceInfoMap->asMap());
Max Bires8c255e62022-02-02 12:03:28 -0800435 checkDeviceInfo(deviceInfoMap->asMap(), deviceInfo.deviceInfo);
David Drysdalec8400772021-03-11 12:35:11 +0000436 auto& signingKey = bccContents->back().pubKey;
Max Birese74f0bc2022-03-16 13:58:27 -0700437 deviceInfoMap->asMap()->canonicalize();
Seth Moore798188a2021-06-17 10:58:27 -0700438 auto macKey = verifyAndParseCoseSign1(signedMac->asArray(), signingKey,
David Drysdalef6fc5a62021-03-31 16:14:31 +0100439 cppbor::Array() // SignedMacAad
David Drysdalec8400772021-03-11 12:35:11 +0000440 .add(challenge_)
David Drysdalef6fc5a62021-03-31 16:14:31 +0100441 .add(std::move(deviceInfoMap))
Max Bires8dff0b32021-05-26 13:05:09 -0700442 .add(keysToSignMac)
David Drysdalec8400772021-03-11 12:35:11 +0000443 .encode());
444 ASSERT_TRUE(macKey) << macKey.message();
445
446 auto coseMac0 = cppbor::Array()
447 .add(cppbor::Map() // protected
448 .add(ALGORITHM, HMAC_256)
449 .canonicalize()
450 .encode())
451 .add(cppbor::Map()) // unprotected
452 .add(keysToSign.encode()) // payload (keysToSign)
453 .add(keysToSignMac); // tag
454
455 auto macPayload = verifyAndParseCoseMac0(&coseMac0, *macKey);
456 ASSERT_TRUE(macPayload) << macPayload.message();
Seth Moore42c11332021-07-02 15:38:17 -0700457
458 if (bccOutput) {
459 *bccOutput = std::move(*bccContents);
460 }
David Drysdalec8400772021-03-11 12:35:11 +0000461 }
462
Max Bires8b09c502022-01-30 20:03:16 -0800463 void checkType(const cppbor::Map* devInfo, uint8_t majorType, std::string entryName) {
464 const auto& val = devInfo->get(entryName);
465 ASSERT_TRUE(val) << entryName << " does not exist";
466 ASSERT_EQ(val->type(), majorType) << entryName << " has the wrong type.";
467 switch (majorType) {
468 case cppbor::TSTR:
Max Birese74f0bc2022-03-16 13:58:27 -0700469 EXPECT_GT(val->asTstr()->value().size(), 0);
Max Bires8b09c502022-01-30 20:03:16 -0800470 break;
471 case cppbor::BSTR:
Max Birese74f0bc2022-03-16 13:58:27 -0700472 EXPECT_GT(val->asBstr()->value().size(), 0);
Max Bires8b09c502022-01-30 20:03:16 -0800473 break;
474 default:
475 break;
476 }
477 }
478
Max Bires8c255e62022-02-02 12:03:28 -0800479 void checkDeviceInfo(const cppbor::Map* deviceInfo, bytevec deviceInfoBytes) {
Max Birese74f0bc2022-03-16 13:58:27 -0700480 EXPECT_EQ(deviceInfo->clone()->asMap()->canonicalize().encode(), deviceInfoBytes)
481 << "DeviceInfo ordering is non-canonical.";
Max Bires8b09c502022-01-30 20:03:16 -0800482 const auto& version = deviceInfo->get("version");
483 ASSERT_TRUE(version);
484 ASSERT_TRUE(version->asUint());
485 RpcHardwareInfo info;
486 provisionable_->getHardwareInfo(&info);
487 ASSERT_EQ(version->asUint()->value(), info.versionNumber);
488 std::set<std::string> allowList;
489 switch (version->asUint()->value()) {
490 // These fields became mandated in version 2.
491 case 2:
492 checkType(deviceInfo, cppbor::TSTR, "brand");
493 checkType(deviceInfo, cppbor::TSTR, "manufacturer");
494 checkType(deviceInfo, cppbor::TSTR, "product");
495 checkType(deviceInfo, cppbor::TSTR, "model");
496 checkType(deviceInfo, cppbor::TSTR, "device");
497 // TODO: Refactor the KeyMint code that validates these fields and include it here.
498 checkType(deviceInfo, cppbor::TSTR, "vb_state");
499 allowList = getAllowedVbStates();
Max Birese74f0bc2022-03-16 13:58:27 -0700500 EXPECT_NE(allowList.find(deviceInfo->get("vb_state")->asTstr()->value()),
Max Bires8b09c502022-01-30 20:03:16 -0800501 allowList.end());
502 checkType(deviceInfo, cppbor::TSTR, "bootloader_state");
503 allowList = getAllowedBootloaderStates();
Max Birese74f0bc2022-03-16 13:58:27 -0700504 EXPECT_NE(allowList.find(deviceInfo->get("bootloader_state")->asTstr()->value()),
Max Bires8b09c502022-01-30 20:03:16 -0800505 allowList.end());
506 checkType(deviceInfo, cppbor::BSTR, "vbmeta_digest");
Max Bires8b09c502022-01-30 20:03:16 -0800507 checkType(deviceInfo, cppbor::UINT, "system_patch_level");
508 checkType(deviceInfo, cppbor::UINT, "boot_patch_level");
509 checkType(deviceInfo, cppbor::UINT, "vendor_patch_level");
510 checkType(deviceInfo, cppbor::UINT, "fused");
Max Birese74f0bc2022-03-16 13:58:27 -0700511 EXPECT_LT(deviceInfo->get("fused")->asUint()->value(), 2); // Must be 0 or 1.
Max Bires8b09c502022-01-30 20:03:16 -0800512 checkType(deviceInfo, cppbor::TSTR, "security_level");
513 allowList = getAllowedSecurityLevels();
Max Birese74f0bc2022-03-16 13:58:27 -0700514 EXPECT_NE(allowList.find(deviceInfo->get("security_level")->asTstr()->value()),
Max Bires8b09c502022-01-30 20:03:16 -0800515 allowList.end());
Max Bires9c28a1e2022-02-03 19:14:06 -0800516 if (deviceInfo->get("security_level")->asTstr()->value() == "tee") {
517 checkType(deviceInfo, cppbor::TSTR, "os_version");
518 }
Max Bires8b09c502022-01-30 20:03:16 -0800519 break;
520 case 1:
521 checkType(deviceInfo, cppbor::TSTR, "security_level");
522 allowList = getAllowedSecurityLevels();
Max Birese74f0bc2022-03-16 13:58:27 -0700523 EXPECT_NE(allowList.find(deviceInfo->get("security_level")->asTstr()->value()),
Max Bires8b09c502022-01-30 20:03:16 -0800524 allowList.end());
525 if (version->asUint()->value() == 1) {
526 checkType(deviceInfo, cppbor::TSTR, "att_id_state");
527 allowList = getAllowedAttIdStates();
Max Birese74f0bc2022-03-16 13:58:27 -0700528 EXPECT_NE(allowList.find(deviceInfo->get("att_id_state")->asTstr()->value()),
Max Bires8b09c502022-01-30 20:03:16 -0800529 allowList.end());
530 }
531 break;
532 default:
533 FAIL() << "Unrecognized version: " << version->asUint()->value();
534 }
535 }
536
Shawn Willden274bb552020-09-30 22:39:22 -0600537 bytevec eekId_;
Seth Moore19acbe92021-06-23 15:15:52 -0700538 size_t testEekLength_;
539 EekChain testEekChain_;
David Drysdalec8400772021-03-11 12:35:11 +0000540 bytevec challenge_;
Shawn Willden274bb552020-09-30 22:39:22 -0600541 std::vector<MacedPublicKey> keysToSign_;
542 cppbor::Array cborKeysToSign_;
543};
544
545/**
546 * Generate an empty certificate request in test mode, and decrypt and verify the structure and
547 * content.
548 */
Max Bires126869a2021-02-21 18:32:59 -0800549TEST_P(CertificateRequestTest, EmptyRequest_testMode) {
Shawn Willden274bb552020-09-30 22:39:22 -0600550 bool testMode = true;
David Drysdalecceca9f2021-03-12 15:49:47 +0000551 for (size_t eekLength : {2, 3, 7}) {
552 SCOPED_TRACE(testing::Message() << "EEK of length " << eekLength);
Seth Moore19acbe92021-06-23 15:15:52 -0700553 generateTestEekChain(eekLength);
Shawn Willden274bb552020-09-30 22:39:22 -0600554
David Drysdalecceca9f2021-03-12 15:49:47 +0000555 bytevec keysToSignMac;
556 DeviceInfo deviceInfo;
557 ProtectedData protectedData;
558 auto status = provisionable_->generateCertificateRequest(
Seth Moore19acbe92021-06-23 15:15:52 -0700559 testMode, {} /* keysToSign */, testEekChain_.chain, challenge_, &deviceInfo,
David Drysdalecceca9f2021-03-12 15:49:47 +0000560 &protectedData, &keysToSignMac);
561 ASSERT_TRUE(status.isOk()) << status.getMessage();
562
David Drysdalef6fc5a62021-03-31 16:14:31 +0100563 checkProtectedData(deviceInfo, cppbor::Array(), keysToSignMac, protectedData);
David Drysdalecceca9f2021-03-12 15:49:47 +0000564 }
Shawn Willden274bb552020-09-30 22:39:22 -0600565}
566
567/**
Seth Moore42c11332021-07-02 15:38:17 -0700568 * Ensure that test mode outputs a unique BCC root key every time we request a
569 * certificate request. Else, it's possible that the test mode API could be used
570 * to fingerprint devices. Only the GEEK should be allowed to decrypt the same
571 * device public key multiple times.
572 */
573TEST_P(CertificateRequestTest, NewKeyPerCallInTestMode) {
574 constexpr bool testMode = true;
Seth Moore42c11332021-07-02 15:38:17 -0700575
576 bytevec keysToSignMac;
577 DeviceInfo deviceInfo;
578 ProtectedData protectedData;
subrahmanyamanfb213d62022-02-02 23:10:55 +0000579 generateTestEekChain(3);
Seth Moore42c11332021-07-02 15:38:17 -0700580 auto status = provisionable_->generateCertificateRequest(
Seth Moore19acbe92021-06-23 15:15:52 -0700581 testMode, {} /* keysToSign */, testEekChain_.chain, challenge_, &deviceInfo,
582 &protectedData, &keysToSignMac);
Seth Moore42c11332021-07-02 15:38:17 -0700583 ASSERT_TRUE(status.isOk()) << status.getMessage();
584
585 std::vector<BccEntryData> firstBcc;
586 checkProtectedData(deviceInfo, /*keysToSign=*/cppbor::Array(), keysToSignMac, protectedData,
587 &firstBcc);
588
Seth Moore19acbe92021-06-23 15:15:52 -0700589 status = provisionable_->generateCertificateRequest(
590 testMode, {} /* keysToSign */, testEekChain_.chain, challenge_, &deviceInfo,
591 &protectedData, &keysToSignMac);
Seth Moore42c11332021-07-02 15:38:17 -0700592 ASSERT_TRUE(status.isOk()) << status.getMessage();
593
594 std::vector<BccEntryData> secondBcc;
595 checkProtectedData(deviceInfo, /*keysToSign=*/cppbor::Array(), keysToSignMac, protectedData,
596 &secondBcc);
597
598 // Verify that none of the keys in the first BCC are repeated in the second one.
599 for (const auto& i : firstBcc) {
600 for (auto& j : secondBcc) {
601 ASSERT_THAT(i.pubKey, testing::Not(testing::ElementsAreArray(j.pubKey)))
602 << "Found a repeated pubkey in two generateCertificateRequest test mode calls";
603 }
604 }
605}
606
607/**
Seth Moore19acbe92021-06-23 15:15:52 -0700608 * Generate an empty certificate request in prod mode. This test must be run explicitly, and
609 * is not run by default. Not all devices are GMS devices, and therefore they do not all
610 * trust the Google EEK root.
Shawn Willden274bb552020-09-30 22:39:22 -0600611 */
Seth Moore19acbe92021-06-23 15:15:52 -0700612TEST_P(CertificateRequestTest, DISABLED_EmptyRequest_prodMode) {
Shawn Willden274bb552020-09-30 22:39:22 -0600613 bool testMode = false;
David Drysdalecceca9f2021-03-12 15:49:47 +0000614
Seth Moore19acbe92021-06-23 15:15:52 -0700615 bytevec keysToSignMac;
616 DeviceInfo deviceInfo;
617 ProtectedData protectedData;
618 auto status = provisionable_->generateCertificateRequest(
subrahmanyamanfb213d62022-02-02 23:10:55 +0000619 testMode, {} /* keysToSign */, getProdEekChain(rpcHardwareInfo.supportedEekCurve),
620 challenge_, &deviceInfo, &protectedData, &keysToSignMac);
Seth Moore19acbe92021-06-23 15:15:52 -0700621 EXPECT_TRUE(status.isOk());
Shawn Willden274bb552020-09-30 22:39:22 -0600622}
623
624/**
625 * Generate a non-empty certificate request in test mode. Decrypt, parse and validate the contents.
626 */
Max Bires126869a2021-02-21 18:32:59 -0800627TEST_P(CertificateRequestTest, NonEmptyRequest_testMode) {
Shawn Willden274bb552020-09-30 22:39:22 -0600628 bool testMode = true;
629 generateKeys(testMode, 4 /* numKeys */);
630
David Drysdalecceca9f2021-03-12 15:49:47 +0000631 for (size_t eekLength : {2, 3, 7}) {
632 SCOPED_TRACE(testing::Message() << "EEK of length " << eekLength);
Seth Moore19acbe92021-06-23 15:15:52 -0700633 generateTestEekChain(eekLength);
Shawn Willden274bb552020-09-30 22:39:22 -0600634
David Drysdalecceca9f2021-03-12 15:49:47 +0000635 bytevec keysToSignMac;
636 DeviceInfo deviceInfo;
637 ProtectedData protectedData;
638 auto status = provisionable_->generateCertificateRequest(
Seth Moore19acbe92021-06-23 15:15:52 -0700639 testMode, keysToSign_, testEekChain_.chain, challenge_, &deviceInfo, &protectedData,
David Drysdalecceca9f2021-03-12 15:49:47 +0000640 &keysToSignMac);
641 ASSERT_TRUE(status.isOk()) << status.getMessage();
642
David Drysdalef6fc5a62021-03-31 16:14:31 +0100643 checkProtectedData(deviceInfo, cborKeysToSign_, keysToSignMac, protectedData);
David Drysdalecceca9f2021-03-12 15:49:47 +0000644 }
Shawn Willden274bb552020-09-30 22:39:22 -0600645}
646
647/**
Seth Moore19acbe92021-06-23 15:15:52 -0700648 * Generate a non-empty certificate request in prod mode. This test must be run explicitly, and
649 * is not run by default. Not all devices are GMS devices, and therefore they do not all
650 * trust the Google EEK root.
Shawn Willden274bb552020-09-30 22:39:22 -0600651 */
Seth Moore19acbe92021-06-23 15:15:52 -0700652TEST_P(CertificateRequestTest, DISABLED_NonEmptyRequest_prodMode) {
Shawn Willden274bb552020-09-30 22:39:22 -0600653 bool testMode = false;
654 generateKeys(testMode, 4 /* numKeys */);
655
Seth Moore19acbe92021-06-23 15:15:52 -0700656 bytevec keysToSignMac;
657 DeviceInfo deviceInfo;
658 ProtectedData protectedData;
659 auto status = provisionable_->generateCertificateRequest(
subrahmanyamanfb213d62022-02-02 23:10:55 +0000660 testMode, keysToSign_, getProdEekChain(rpcHardwareInfo.supportedEekCurve), challenge_,
661 &deviceInfo, &protectedData, &keysToSignMac);
Seth Moore19acbe92021-06-23 15:15:52 -0700662 EXPECT_TRUE(status.isOk());
David Drysdalecceca9f2021-03-12 15:49:47 +0000663}
664
665/**
David Drysdalee99ed862021-03-15 16:43:06 +0000666 * Generate a non-empty certificate request in test mode, but with the MAC corrupted on the keypair.
667 */
668TEST_P(CertificateRequestTest, NonEmptyRequestCorruptMac_testMode) {
669 bool testMode = true;
670 generateKeys(testMode, 1 /* numKeys */);
David Drysdale08696a72022-03-10 10:43:25 +0000671 auto result = corrupt_maced_key(keysToSign_[0]);
672 ASSERT_TRUE(result) << result.moveMessage();
673 MacedPublicKey keyWithCorruptMac = result.moveValue();
David Drysdalee99ed862021-03-15 16:43:06 +0000674
675 bytevec keysToSignMac;
676 DeviceInfo deviceInfo;
677 ProtectedData protectedData;
subrahmanyamanfb213d62022-02-02 23:10:55 +0000678 generateTestEekChain(3);
David Drysdalee99ed862021-03-15 16:43:06 +0000679 auto status = provisionable_->generateCertificateRequest(
Seth Moore19acbe92021-06-23 15:15:52 -0700680 testMode, {keyWithCorruptMac}, testEekChain_.chain, challenge_, &deviceInfo,
681 &protectedData, &keysToSignMac);
David Drysdalee99ed862021-03-15 16:43:06 +0000682 ASSERT_FALSE(status.isOk()) << status.getMessage();
683 EXPECT_EQ(status.getServiceSpecificError(), BnRemotelyProvisionedComponent::STATUS_INVALID_MAC);
684}
685
686/**
687 * Generate a non-empty certificate request in prod mode, but with the MAC corrupted on the keypair.
688 */
689TEST_P(CertificateRequestTest, NonEmptyRequestCorruptMac_prodMode) {
Seth Moore19acbe92021-06-23 15:15:52 -0700690 bool testMode = false;
David Drysdalee99ed862021-03-15 16:43:06 +0000691 generateKeys(testMode, 1 /* numKeys */);
David Drysdale08696a72022-03-10 10:43:25 +0000692 auto result = corrupt_maced_key(keysToSign_[0]);
693 ASSERT_TRUE(result) << result.moveMessage();
694 MacedPublicKey keyWithCorruptMac = result.moveValue();
David Drysdalee99ed862021-03-15 16:43:06 +0000695
696 bytevec keysToSignMac;
697 DeviceInfo deviceInfo;
698 ProtectedData protectedData;
699 auto status = provisionable_->generateCertificateRequest(
subrahmanyamanfb213d62022-02-02 23:10:55 +0000700 testMode, {keyWithCorruptMac}, getProdEekChain(rpcHardwareInfo.supportedEekCurve),
701 challenge_, &deviceInfo, &protectedData, &keysToSignMac);
David Drysdalee99ed862021-03-15 16:43:06 +0000702 ASSERT_FALSE(status.isOk()) << status.getMessage();
Seth Moore19acbe92021-06-23 15:15:52 -0700703 EXPECT_EQ(status.getServiceSpecificError(), BnRemotelyProvisionedComponent::STATUS_INVALID_MAC);
David Drysdalee99ed862021-03-15 16:43:06 +0000704}
705
706/**
David Drysdalecceca9f2021-03-12 15:49:47 +0000707 * Generate a non-empty certificate request in prod mode that has a corrupt EEK chain.
708 * Confirm that the request is rejected.
David Drysdalecceca9f2021-03-12 15:49:47 +0000709 */
710TEST_P(CertificateRequestTest, NonEmptyCorruptEekRequest_prodMode) {
711 bool testMode = false;
712 generateKeys(testMode, 4 /* numKeys */);
713
subrahmanyamanfb213d62022-02-02 23:10:55 +0000714 auto prodEekChain = getProdEekChain(rpcHardwareInfo.supportedEekCurve);
Seth Moore19acbe92021-06-23 15:15:52 -0700715 auto [parsedChain, _, parseErr] = cppbor::parse(prodEekChain);
716 ASSERT_NE(parsedChain, nullptr) << parseErr;
717 ASSERT_NE(parsedChain->asArray(), nullptr);
718
719 for (int ii = 0; ii < parsedChain->asArray()->size(); ++ii) {
720 auto chain = corrupt_sig_chain(prodEekChain, ii);
David Drysdalecceca9f2021-03-12 15:49:47 +0000721 ASSERT_TRUE(chain) << chain.message();
David Drysdalecceca9f2021-03-12 15:49:47 +0000722
723 bytevec keysToSignMac;
724 DeviceInfo deviceInfo;
725 ProtectedData protectedData;
Seth Moore19acbe92021-06-23 15:15:52 -0700726 auto status = provisionable_->generateCertificateRequest(testMode, keysToSign_, *chain,
727 challenge_, &deviceInfo,
728 &protectedData, &keysToSignMac);
David Drysdalecceca9f2021-03-12 15:49:47 +0000729 ASSERT_FALSE(status.isOk());
730 ASSERT_EQ(status.getServiceSpecificError(),
731 BnRemotelyProvisionedComponent::STATUS_INVALID_EEK);
732 }
733}
734
735/**
736 * Generate a non-empty certificate request in prod mode that has an incomplete EEK chain.
737 * Confirm that the request is rejected.
David Drysdalecceca9f2021-03-12 15:49:47 +0000738 */
739TEST_P(CertificateRequestTest, NonEmptyIncompleteEekRequest_prodMode) {
740 bool testMode = false;
741 generateKeys(testMode, 4 /* numKeys */);
742
743 // Build an EEK chain that omits the first self-signed cert.
744 auto truncatedChain = cppbor::Array();
subrahmanyamanfb213d62022-02-02 23:10:55 +0000745 auto [chain, _, parseErr] = cppbor::parse(getProdEekChain(rpcHardwareInfo.supportedEekCurve));
David Drysdalecceca9f2021-03-12 15:49:47 +0000746 ASSERT_TRUE(chain);
747 auto eekChain = chain->asArray();
748 ASSERT_NE(eekChain, nullptr);
749 for (size_t ii = 1; ii < eekChain->size(); ii++) {
750 truncatedChain.add(eekChain->get(ii)->clone());
751 }
752
Shawn Willden274bb552020-09-30 22:39:22 -0600753 bytevec keysToSignMac;
Max Biresfdbb9042021-03-23 12:43:38 -0700754 DeviceInfo deviceInfo;
Shawn Willden274bb552020-09-30 22:39:22 -0600755 ProtectedData protectedData;
David Drysdalecceca9f2021-03-12 15:49:47 +0000756 auto status = provisionable_->generateCertificateRequest(
757 testMode, keysToSign_, truncatedChain.encode(), challenge_, &deviceInfo, &protectedData,
758 &keysToSignMac);
Shawn Willden274bb552020-09-30 22:39:22 -0600759 ASSERT_FALSE(status.isOk());
760 ASSERT_EQ(status.getServiceSpecificError(), BnRemotelyProvisionedComponent::STATUS_INVALID_EEK);
761}
762
763/**
764 * Generate a non-empty certificate request in test mode, with prod keys. Must fail with
765 * STATUS_PRODUCTION_KEY_IN_TEST_REQUEST.
766 */
Max Bires126869a2021-02-21 18:32:59 -0800767TEST_P(CertificateRequestTest, NonEmptyRequest_prodKeyInTestCert) {
Shawn Willden274bb552020-09-30 22:39:22 -0600768 generateKeys(false /* testMode */, 2 /* numKeys */);
769
770 bytevec keysToSignMac;
Max Biresfdbb9042021-03-23 12:43:38 -0700771 DeviceInfo deviceInfo;
Shawn Willden274bb552020-09-30 22:39:22 -0600772 ProtectedData protectedData;
subrahmanyamanfb213d62022-02-02 23:10:55 +0000773 generateTestEekChain(3);
Max Biresfdbb9042021-03-23 12:43:38 -0700774 auto status = provisionable_->generateCertificateRequest(
Seth Moore19acbe92021-06-23 15:15:52 -0700775 true /* testMode */, keysToSign_, testEekChain_.chain, challenge_, &deviceInfo,
Max Biresfdbb9042021-03-23 12:43:38 -0700776 &protectedData, &keysToSignMac);
Shawn Willden274bb552020-09-30 22:39:22 -0600777 ASSERT_FALSE(status.isOk());
778 ASSERT_EQ(status.getServiceSpecificError(),
779 BnRemotelyProvisionedComponent::STATUS_PRODUCTION_KEY_IN_TEST_REQUEST);
780}
781
782/**
783 * Generate a non-empty certificate request in prod mode, with test keys. Must fail with
784 * STATUS_TEST_KEY_IN_PRODUCTION_REQUEST.
785 */
Max Bires126869a2021-02-21 18:32:59 -0800786TEST_P(CertificateRequestTest, NonEmptyRequest_testKeyInProdCert) {
Shawn Willden274bb552020-09-30 22:39:22 -0600787 generateKeys(true /* testMode */, 2 /* numKeys */);
788
789 bytevec keysToSignMac;
Max Biresfdbb9042021-03-23 12:43:38 -0700790 DeviceInfo deviceInfo;
Shawn Willden274bb552020-09-30 22:39:22 -0600791 ProtectedData protectedData;
subrahmanyamanfb213d62022-02-02 23:10:55 +0000792 generateTestEekChain(3);
Shawn Willden274bb552020-09-30 22:39:22 -0600793 auto status = provisionable_->generateCertificateRequest(
Seth Moore19acbe92021-06-23 15:15:52 -0700794 false /* testMode */, keysToSign_, testEekChain_.chain, challenge_, &deviceInfo,
David Drysdalec8400772021-03-11 12:35:11 +0000795 &protectedData, &keysToSignMac);
Shawn Willden274bb552020-09-30 22:39:22 -0600796 ASSERT_FALSE(status.isOk());
797 ASSERT_EQ(status.getServiceSpecificError(),
798 BnRemotelyProvisionedComponent::STATUS_TEST_KEY_IN_PRODUCTION_REQUEST);
799}
800
801INSTANTIATE_REM_PROV_AIDL_TEST(CertificateRequestTest);
802
803} // namespace aidl::android::hardware::security::keymint::test