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1 /*
2  * Copyright 2019, 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 "VtsIdentityTestUtils"
18 
19 #include "VtsIdentityTestUtils.h"
20 
21 #include <aidl/Gtest.h>
22 #include <android-base/logging.h>
23 #include <keymaster/km_openssl/openssl_utils.h>
24 #include <keymasterV4_1/attestation_record.h>
25 #include <charconv>
26 #include <map>
27 
28 namespace android::hardware::identity::test_utils {
29 
30 using std::endl;
31 using std::map;
32 using std::optional;
33 using std::string;
34 using std::vector;
35 
36 using ::android::sp;
37 using ::android::String16;
38 using ::android::binder::Status;
39 using ::keymaster::X509_Ptr;
40 
setupWritableCredential(sp<IWritableIdentityCredential> & writableCredential,sp<IIdentityCredentialStore> & credentialStore,bool testCredential)41 bool setupWritableCredential(sp<IWritableIdentityCredential>& writableCredential,
42                              sp<IIdentityCredentialStore>& credentialStore, bool testCredential) {
43     if (credentialStore == nullptr) {
44         return false;
45     }
46 
47     string docType = "org.iso.18013-5.2019.mdl";
48     Status result = credentialStore->createCredential(docType, testCredential, &writableCredential);
49 
50     if (result.isOk() && writableCredential != nullptr) {
51         return true;
52     } else {
53         return false;
54     }
55 }
56 
generateReaderCertificate(string serialDecimal)57 optional<vector<uint8_t>> generateReaderCertificate(string serialDecimal) {
58     vector<uint8_t> privKey;
59     return generateReaderCertificate(serialDecimal, &privKey);
60 }
61 
generateReaderCertificate(string serialDecimal,vector<uint8_t> * outReaderPrivateKey)62 optional<vector<uint8_t>> generateReaderCertificate(string serialDecimal,
63                                                     vector<uint8_t>* outReaderPrivateKey) {
64     optional<vector<uint8_t>> readerKeyPKCS8 = support::createEcKeyPair();
65     if (!readerKeyPKCS8) {
66         return {};
67     }
68 
69     optional<vector<uint8_t>> readerPublicKey =
70             support::ecKeyPairGetPublicKey(readerKeyPKCS8.value());
71     optional<vector<uint8_t>> readerKey = support::ecKeyPairGetPrivateKey(readerKeyPKCS8.value());
72     if (!readerPublicKey || !readerKey) {
73         return {};
74     }
75 
76     if (outReaderPrivateKey == nullptr) {
77         return {};
78     }
79 
80     *outReaderPrivateKey = readerKey.value();
81 
82     string issuer = "Android Open Source Project";
83     string subject = "Android IdentityCredential VTS Test";
84     time_t validityNotBefore = time(nullptr);
85     time_t validityNotAfter = validityNotBefore + 365 * 24 * 3600;
86 
87     return support::ecPublicKeyGenerateCertificate(readerPublicKey.value(), readerKey.value(),
88                                                    serialDecimal, issuer, subject,
89                                                    validityNotBefore, validityNotAfter);
90 }
91 
addAccessControlProfiles(sp<IWritableIdentityCredential> & writableCredential,const vector<TestProfile> & testProfiles)92 optional<vector<SecureAccessControlProfile>> addAccessControlProfiles(
93         sp<IWritableIdentityCredential>& writableCredential,
94         const vector<TestProfile>& testProfiles) {
95     Status result;
96 
97     vector<SecureAccessControlProfile> secureProfiles;
98 
99     for (const auto& testProfile : testProfiles) {
100         SecureAccessControlProfile profile;
101         Certificate cert;
102         cert.encodedCertificate = testProfile.readerCertificate;
103         int64_t secureUserId = testProfile.userAuthenticationRequired ? 66 : 0;
104         result = writableCredential->addAccessControlProfile(
105                 testProfile.id, cert, testProfile.userAuthenticationRequired,
106                 testProfile.timeoutMillis, secureUserId, &profile);
107 
108         // Don't use assert so all errors can be outputed.  Then return
109         // instead of exit even on errors so caller can decide.
110         EXPECT_TRUE(result.isOk()) << result.exceptionCode() << "; " << result.exceptionMessage()
111                                    << "test profile id = " << testProfile.id << endl;
112         EXPECT_EQ(testProfile.id, profile.id);
113         EXPECT_EQ(testProfile.readerCertificate, profile.readerCertificate.encodedCertificate);
114         EXPECT_EQ(testProfile.userAuthenticationRequired, profile.userAuthenticationRequired);
115         EXPECT_EQ(testProfile.timeoutMillis, profile.timeoutMillis);
116         EXPECT_EQ(support::kAesGcmTagSize + support::kAesGcmIvSize, profile.mac.size());
117 
118         if (!result.isOk() || testProfile.id != profile.id ||
119             testProfile.readerCertificate != profile.readerCertificate.encodedCertificate ||
120             testProfile.userAuthenticationRequired != profile.userAuthenticationRequired ||
121             testProfile.timeoutMillis != profile.timeoutMillis ||
122             support::kAesGcmTagSize + support::kAesGcmIvSize != profile.mac.size()) {
123             return {};
124         }
125 
126         secureProfiles.push_back(profile);
127     }
128 
129     return secureProfiles;
130 }
131 
132 // Most test expects this function to pass. So we will print out additional
133 // value if failed so more debug data can be provided.
addEntry(sp<IWritableIdentityCredential> & writableCredential,const TestEntryData & entry,int dataChunkSize,map<const TestEntryData *,vector<vector<uint8_t>>> & encryptedBlobs,bool expectSuccess)134 bool addEntry(sp<IWritableIdentityCredential>& writableCredential, const TestEntryData& entry,
135               int dataChunkSize, map<const TestEntryData*, vector<vector<uint8_t>>>& encryptedBlobs,
136               bool expectSuccess) {
137     Status result;
138     vector<vector<uint8_t>> chunks = support::chunkVector(entry.valueCbor, dataChunkSize);
139 
140     result = writableCredential->beginAddEntry(entry.profileIds, entry.nameSpace, entry.name,
141                                                entry.valueCbor.size());
142 
143     if (expectSuccess) {
144         EXPECT_TRUE(result.isOk())
145                 << result.exceptionCode() << "; " << result.exceptionMessage() << endl
146                 << "entry name = " << entry.name << ", name space=" << entry.nameSpace << endl;
147     }
148 
149     if (!result.isOk()) {
150         return false;
151     }
152 
153     vector<vector<uint8_t>> encryptedChunks;
154     for (const auto& chunk : chunks) {
155         vector<uint8_t> encryptedContent;
156         result = writableCredential->addEntryValue(chunk, &encryptedContent);
157         if (expectSuccess) {
158             EXPECT_TRUE(result.isOk())
159                     << result.exceptionCode() << "; " << result.exceptionMessage() << endl
160                     << "entry name = " << entry.name << ", name space = " << entry.nameSpace
161                     << endl;
162 
163             EXPECT_GT(encryptedContent.size(), 0u) << "entry name = " << entry.name
164                                                    << ", name space = " << entry.nameSpace << endl;
165         }
166 
167         if (!result.isOk() || encryptedContent.size() <= 0u) {
168             return false;
169         }
170 
171         encryptedChunks.push_back(encryptedContent);
172     }
173 
174     encryptedBlobs[&entry] = encryptedChunks;
175     return true;
176 }
177 
setImageData(vector<uint8_t> & image)178 void setImageData(vector<uint8_t>& image) {
179     image.resize(256 * 1024 - 10);
180     for (size_t n = 0; n < image.size(); n++) {
181         image[n] = (uint8_t)n;
182     }
183 }
184 
x509NameToRfc2253String(X509_NAME * name)185 string x509NameToRfc2253String(X509_NAME* name) {
186     char* buf;
187     size_t bufSize;
188     BIO* bio;
189 
190     bio = BIO_new(BIO_s_mem());
191     X509_NAME_print_ex(bio, name, 0, XN_FLAG_RFC2253);
192     bufSize = BIO_get_mem_data(bio, &buf);
193     string ret = string(buf, bufSize);
194     BIO_free(bio);
195 
196     return ret;
197 }
198 
parseDigits(const char ** s,int numDigits)199 int parseDigits(const char** s, int numDigits) {
200     int result;
201     auto [_, ec] = std::from_chars(*s, *s + numDigits, result);
202     if (ec != std::errc()) {
203         LOG(ERROR) << "Error parsing " << numDigits << " digits "
204                    << " from " << s;
205         return 0;
206     }
207     *s += numDigits;
208     return result;
209 }
210 
parseAsn1Time(const ASN1_TIME * asn1Time,time_t * outTime)211 bool parseAsn1Time(const ASN1_TIME* asn1Time, time_t* outTime) {
212     struct tm tm;
213 
214     memset(&tm, '\0', sizeof(tm));
215     const char* timeStr = (const char*)asn1Time->data;
216     const char* s = timeStr;
217     if (asn1Time->type == V_ASN1_UTCTIME) {
218         tm.tm_year = parseDigits(&s, 2);
219         if (tm.tm_year < 70) {
220             tm.tm_year += 100;
221         }
222     } else if (asn1Time->type == V_ASN1_GENERALIZEDTIME) {
223         tm.tm_year = parseDigits(&s, 4) - 1900;
224         tm.tm_year -= 1900;
225     } else {
226         LOG(ERROR) << "Unsupported ASN1_TIME type " << asn1Time->type;
227         return false;
228     }
229     tm.tm_mon = parseDigits(&s, 2) - 1;
230     tm.tm_mday = parseDigits(&s, 2);
231     tm.tm_hour = parseDigits(&s, 2);
232     tm.tm_min = parseDigits(&s, 2);
233     tm.tm_sec = parseDigits(&s, 2);
234     // This may need to be updated if someone create certificates using +/- instead of Z.
235     //
236     if (*s != 'Z') {
237         LOG(ERROR) << "Expected Z in string '" << timeStr << "' at offset " << (s - timeStr);
238         return false;
239     }
240 
241     time_t t = timegm(&tm);
242     if (t == -1) {
243         LOG(ERROR) << "Error converting broken-down time to time_t";
244         return false;
245     }
246     *outTime = t;
247     return true;
248 }
249 
validateAttestationCertificate(const vector<Certificate> & credentialKeyCertChain,const vector<uint8_t> & expectedChallenge,const vector<uint8_t> & expectedAppId,bool isTestCredential)250 void validateAttestationCertificate(const vector<Certificate>& credentialKeyCertChain,
251                                     const vector<uint8_t>& expectedChallenge,
252                                     const vector<uint8_t>& expectedAppId, bool isTestCredential) {
253     ASSERT_GE(credentialKeyCertChain.size(), 2);
254 
255     vector<uint8_t> certBytes = credentialKeyCertChain[0].encodedCertificate;
256     const uint8_t* certData = certBytes.data();
257     X509_Ptr cert = X509_Ptr(d2i_X509(nullptr, &certData, certBytes.size()));
258 
259     vector<uint8_t> batchCertBytes = credentialKeyCertChain[1].encodedCertificate;
260     const uint8_t* batchCertData = batchCertBytes.data();
261     X509_Ptr batchCert = X509_Ptr(d2i_X509(nullptr, &batchCertData, batchCertBytes.size()));
262 
263     // First get some values from the batch certificate which is checked
264     // against the top-level certificate (subject, notAfter)
265     //
266 
267     X509_NAME* batchSubject = X509_get_subject_name(batchCert.get());
268     ASSERT_NE(nullptr, batchSubject);
269     time_t batchNotAfter;
270     ASSERT_TRUE(parseAsn1Time(X509_get0_notAfter(batchCert.get()), &batchNotAfter));
271 
272     // Check all the requirements from IWritableIdentityCredential::getAttestationCertificate()...
273     //
274 
275     //  - version: INTEGER 2 (means v3 certificate).
276     EXPECT_EQ(2, X509_get_version(cert.get()));
277 
278     //  - serialNumber: INTEGER 1 (fixed value: same on all certs).
279     EXPECT_EQ(1, ASN1_INTEGER_get(X509_get_serialNumber(cert.get())));
280 
281     //  - signature: must be set to ECDSA.
282     EXPECT_EQ(NID_ecdsa_with_SHA256, X509_get_signature_nid(cert.get()));
283 
284     //  - subject: CN shall be set to "Android Identity Credential Key". (fixed value:
285     //    same on all certs)
286     X509_NAME* subject = X509_get_subject_name(cert.get());
287     ASSERT_NE(nullptr, subject);
288     EXPECT_EQ("CN=Android Identity Credential Key", x509NameToRfc2253String(subject));
289 
290     //  - issuer: Same as the subject field of the batch attestation key.
291     X509_NAME* issuer = X509_get_issuer_name(cert.get());
292     ASSERT_NE(nullptr, issuer);
293     EXPECT_EQ(x509NameToRfc2253String(batchSubject), x509NameToRfc2253String(issuer));
294 
295     //  - validity: Should be from current time and expire at the same time as the
296     //    attestation batch certificate used.
297     //
298     //  Allow for 10 seconds drift to account for the time drift between Secure HW
299     //  and this environment plus the difference between when the certificate was
300     //  created and until now
301     //
302     time_t notBefore;
303     ASSERT_TRUE(parseAsn1Time(X509_get0_notBefore(cert.get()), &notBefore));
304     uint64_t now = time(nullptr);
305     int64_t diffSecs = now - notBefore;
306     int64_t allowDriftSecs = 10;
307     EXPECT_LE(-allowDriftSecs, diffSecs);
308     EXPECT_GE(allowDriftSecs, diffSecs);
309 
310     time_t notAfter;
311     ASSERT_TRUE(parseAsn1Time(X509_get0_notAfter(cert.get()), &notAfter));
312     EXPECT_EQ(notAfter, batchNotAfter);
313 
314     auto [err, attRec] = keymaster::V4_1::parse_attestation_record(certBytes);
315     ASSERT_EQ(keymaster::V4_1::ErrorCode::OK, err);
316 
317     //  - subjectPublicKeyInfo: must contain attested public key.
318 
319     //  - The attestationVersion field in the attestation extension must be at least 3.
320     EXPECT_GE(attRec.attestation_version, 3);
321 
322     //  - The attestationSecurityLevel field must be set to either Software (0),
323     //    TrustedEnvironment (1), or StrongBox (2) depending on how attestation is
324     //    implemented.
325     EXPECT_GE(attRec.attestation_security_level,
326               keymaster::V4_0::SecurityLevel::TRUSTED_ENVIRONMENT);
327 
328     //  - The keymasterVersion field in the attestation extension must be set to the.
329     //    same value as used for Android Keystore keys.
330     //
331     // Nothing to check here...
332 
333     //  - The keymasterSecurityLevel field in the attestation extension must be set to
334     //    either Software (0), TrustedEnvironment (1), or StrongBox (2) depending on how
335     //    the Trusted Application backing the HAL implementation is implemented.
336     EXPECT_GE(attRec.keymaster_security_level, keymaster::V4_0::SecurityLevel::TRUSTED_ENVIRONMENT);
337 
338     //  - The attestationChallenge field must be set to the passed-in challenge.
339     EXPECT_EQ(expectedChallenge.size(), attRec.attestation_challenge.size());
340     EXPECT_TRUE(memcmp(expectedChallenge.data(), attRec.attestation_challenge.data(),
341                        attRec.attestation_challenge.size()) == 0);
342 
343     //  - The uniqueId field must be empty.
344     EXPECT_EQ(attRec.unique_id.size(), 0);
345 
346     //  - The softwareEnforced field in the attestation extension must include
347     //    Tag::ATTESTATION_APPLICATION_ID which must be set to the bytes of the passed-in
348     //    attestationApplicationId.
349     EXPECT_TRUE(attRec.software_enforced.Contains(keymaster::V4_0::TAG_ATTESTATION_APPLICATION_ID,
350                                                   expectedAppId));
351 
352     //  - The teeEnforced field in the attestation extension must include
353     //
354     //    - Tag::IDENTITY_CREDENTIAL_KEY which indicates that the key is an Identity
355     //      Credential key (which can only sign/MAC very specific messages) and not an Android
356     //      Keystore key (which can be used to sign/MAC anything). This must not be set
357     //      for test credentials.
358     bool hasIcKeyTag =
359             attRec.hardware_enforced.Contains(static_cast<android::hardware::keymaster::V4_0::Tag>(
360                     keymaster::V4_1::Tag::IDENTITY_CREDENTIAL_KEY));
361     if (isTestCredential) {
362         EXPECT_FALSE(hasIcKeyTag);
363     } else {
364         EXPECT_TRUE(hasIcKeyTag);
365     }
366 
367     //    - Tag::PURPOSE must be set to SIGN
368     EXPECT_TRUE(attRec.hardware_enforced.Contains(keymaster::V4_0::TAG_PURPOSE,
369                                                   keymaster::V4_0::KeyPurpose::SIGN));
370 
371     //    - Tag::KEY_SIZE must be set to the appropriate key size, in bits (e.g. 256)
372     EXPECT_TRUE(attRec.hardware_enforced.Contains(keymaster::V4_0::TAG_KEY_SIZE, 256));
373 
374     //    - Tag::ALGORITHM must be set to EC
375     EXPECT_TRUE(attRec.hardware_enforced.Contains(keymaster::V4_0::TAG_ALGORITHM,
376                                                   keymaster::V4_0::Algorithm::EC));
377 
378     //    - Tag::NO_AUTH_REQUIRED must be set
379     EXPECT_TRUE(attRec.hardware_enforced.Contains(keymaster::V4_0::TAG_NO_AUTH_REQUIRED));
380 
381     //    - Tag::DIGEST must be include SHA_2_256
382     EXPECT_TRUE(attRec.hardware_enforced.Contains(keymaster::V4_0::TAG_DIGEST,
383                                                   keymaster::V4_0::Digest::SHA_2_256));
384 
385     //    - Tag::EC_CURVE must be set to P_256
386     EXPECT_TRUE(attRec.hardware_enforced.Contains(keymaster::V4_0::TAG_EC_CURVE,
387                                                   keymaster::V4_0::EcCurve::P_256));
388 
389     //    - Tag::ROOT_OF_TRUST must be set
390     //
391     EXPECT_GE(attRec.root_of_trust.security_level,
392               keymaster::V4_0::SecurityLevel::TRUSTED_ENVIRONMENT);
393 
394     //    - Tag::OS_VERSION and Tag::OS_PATCHLEVEL must be set
395     EXPECT_TRUE(attRec.hardware_enforced.Contains(keymaster::V4_0::TAG_OS_VERSION));
396     EXPECT_TRUE(attRec.hardware_enforced.Contains(keymaster::V4_0::TAG_OS_PATCHLEVEL));
397 
398     // TODO: we could retrieve osVersion and osPatchLevel from Android itself and compare it
399     // with what was reported in the certificate.
400 }
401 
verifyAuthKeyCertificate(const vector<uint8_t> & authKeyCertChain)402 void verifyAuthKeyCertificate(const vector<uint8_t>& authKeyCertChain) {
403     const uint8_t* data = authKeyCertChain.data();
404     auto cert = X509_Ptr(d2i_X509(nullptr, &data, authKeyCertChain.size()));
405 
406     //  - version: INTEGER 2 (means v3 certificate).
407     EXPECT_EQ(X509_get_version(cert.get()), 2);
408 
409     //  - serialNumber: INTEGER 1 (fixed value: same on all certs).
410     EXPECT_EQ(ASN1_INTEGER_get(X509_get_serialNumber(cert.get())), 1);
411 
412     //  - signature: must be set to ECDSA.
413     EXPECT_EQ(X509_get_signature_nid(cert.get()), NID_ecdsa_with_SHA256);
414 
415     //  - subject: CN shall be set to "Android Identity Credential Authentication Key". (fixed
416     //    value: same on all certs)
417     X509_NAME* subject = X509_get_subject_name(cert.get());
418     ASSERT_NE(subject, nullptr);
419     EXPECT_EQ(x509NameToRfc2253String(subject),
420               "CN=Android Identity Credential Authentication Key");
421 
422     //  - issuer: CN shall be set to "Android Identity Credential Key". (fixed value:
423     //    same on all certs)
424     X509_NAME* issuer = X509_get_issuer_name(cert.get());
425     ASSERT_NE(issuer, nullptr);
426     EXPECT_EQ(x509NameToRfc2253String(issuer), "CN=Android Identity Credential Key");
427 
428     //  - subjectPublicKeyInfo: must contain attested public key.
429 
430     //  - validity: should be from current time and one year in the future (365 days).
431     time_t notBefore, notAfter;
432     ASSERT_TRUE(parseAsn1Time(X509_get0_notAfter(cert.get()), &notAfter));
433     ASSERT_TRUE(parseAsn1Time(X509_get0_notBefore(cert.get()), &notBefore));
434 
435     //  Allow for 10 seconds drift to account for the time drift between Secure HW
436     //  and this environment plus the difference between when the certificate was
437     //  created and until now
438     //
439     uint64_t now = time(nullptr);
440     int64_t diffSecs = now - notBefore;
441     int64_t allowDriftSecs = 10;
442     EXPECT_LE(-allowDriftSecs, diffSecs);
443     EXPECT_GE(allowDriftSecs, diffSecs);
444     constexpr uint64_t kSecsInOneYear = 365 * 24 * 60 * 60;
445     EXPECT_EQ(notBefore + kSecsInOneYear, notAfter);
446 }
447 
buildRequestNamespaces(const vector<TestEntryData> entries)448 vector<RequestNamespace> buildRequestNamespaces(const vector<TestEntryData> entries) {
449     vector<RequestNamespace> ret;
450     RequestNamespace curNs;
451     for (const TestEntryData& testEntry : entries) {
452         if (testEntry.nameSpace != curNs.namespaceName) {
453             if (curNs.namespaceName.size() > 0) {
454                 ret.push_back(curNs);
455             }
456             curNs.namespaceName = testEntry.nameSpace;
457             curNs.items.clear();
458         }
459 
460         RequestDataItem item;
461         item.name = testEntry.name;
462         item.size = testEntry.valueCbor.size();
463         item.accessControlProfileIds = testEntry.profileIds;
464         curNs.items.push_back(item);
465     }
466     if (curNs.namespaceName.size() > 0) {
467         ret.push_back(curNs);
468     }
469     return ret;
470 }
471 
472 }  // namespace android::hardware::identity::test_utils
473