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randombit / botan / 15219918242

23 May 2025 09:27PM UTC coverage: 90.979% (+0.1%) from 90.882%
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Merge pull request #4699 from arckoor/rfc-3779

Add IPAddrBlock and ASIdentifiers extensions (RFC 3779)

98003 of 107721 relevant lines covered (90.98%)

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93.82
/src/tests/unit_x509.cpp
1
/*
2
* (C) 2009,2019 Jack Lloyd
3
* (C) 2016 René Korthaus, Rohde & Schwarz Cybersecurity
4
*
5
* Botan is released under the Simplified BSD License (see license.txt)
6
*/
7

8
#include "tests.h"
9

10
#if defined(BOTAN_HAS_X509_CERTIFICATES)
11
   #include <botan/ber_dec.h>
12
   #include <botan/der_enc.h>
13
   #include <botan/pk_algs.h>
14
   #include <botan/pkcs10.h>
15
   #include <botan/pkcs8.h>
16
   #include <botan/x509_ca.h>
17
   #include <botan/x509_ext.h>
18
   #include <botan/x509path.h>
19
   #include <botan/x509self.h>
20
   #include <botan/internal/calendar.h>
21

22
   #if defined(BOTAN_HAS_ECC_GROUP)
23
      #include <botan/ec_group.h>
24
   #endif
25
#endif
26

27
namespace Botan_Tests {
28

29
namespace {
30

31
#if defined(BOTAN_HAS_X509_CERTIFICATES)
32

33
Botan::X509_Time from_date(const int y, const int m, const int d) {
346✔
34
   const size_t this_year = Botan::calendar_point(std::chrono::system_clock::now()).year();
346✔
35

36
   Botan::calendar_point t(static_cast<uint32_t>(this_year + y), m, d, 0, 0, 0);
346✔
37
   return Botan::X509_Time(t.to_std_timepoint());
346✔
38
}
39

40
/* Return some option sets */
41
Botan::X509_Cert_Options ca_opts(const std::string& sig_padding = "") {
121✔
42
   Botan::X509_Cert_Options opts("Test CA/US/Botan Project/Testing");
121✔
43

44
   opts.uri = "https://botan.randombit.net";
121✔
45
   opts.dns = "botan.randombit.net";
121✔
46
   opts.email = "testing@randombit.net";
121✔
47
   opts.set_padding_scheme(sig_padding);
121✔
48

49
   opts.CA_key(1);
121✔
50

51
   return opts;
121✔
52
}
×
53

54
Botan::X509_Cert_Options req_opts1(const std::string& algo, const std::string& sig_padding = "") {
39✔
55
   Botan::X509_Cert_Options opts("Test User 1/US/Botan Project/Testing");
39✔
56

57
   opts.uri = "https://botan.randombit.net";
39✔
58
   opts.dns = "botan.randombit.net";
39✔
59
   opts.email = "testing@randombit.net";
39✔
60
   opts.set_padding_scheme(sig_padding);
39✔
61

62
   opts.not_before("160101200000Z");
39✔
63
   opts.not_after("300101200000Z");
39✔
64

65
   opts.challenge = "zoom";
39✔
66

67
   if(algo == "RSA") {
39✔
68
      opts.constraints = Botan::Key_Constraints::KeyEncipherment;
9✔
69
   } else if(algo == "DSA" || algo == "ECDSA" || algo == "ECGDSA" || algo == "ECKCDSA") {
30✔
70
      opts.constraints = Botan::Key_Constraints::DigitalSignature;
12✔
71
   }
72

73
   return opts;
39✔
74
}
×
75

76
Botan::X509_Cert_Options req_opts2(const std::string& sig_padding = "") {
12✔
77
   Botan::X509_Cert_Options opts("Test User 2/US/Botan Project/Testing");
12✔
78

79
   opts.uri = "https://botan.randombit.net";
12✔
80
   opts.dns = "botan.randombit.net";
12✔
81
   opts.email = "testing@randombit.net";
12✔
82
   opts.set_padding_scheme(sig_padding);
12✔
83

84
   opts.add_ex_constraint("PKIX.EmailProtection");
12✔
85

86
   return opts;
12✔
87
}
×
88

89
Botan::X509_Cert_Options req_opts3(const std::string& sig_padding = "") {
60✔
90
   Botan::X509_Cert_Options opts("Test User 2/US/Botan Project/Testing");
60✔
91

92
   opts.uri = "https://botan.randombit.net";
60✔
93
   opts.dns = "botan.randombit.net";
60✔
94
   opts.email = "testing@randombit.net";
60✔
95
   opts.set_padding_scheme(sig_padding);
60✔
96

97
   opts.more_org_units.push_back("IT");
120✔
98
   opts.more_org_units.push_back("Security");
120✔
99
   opts.more_dns.push_back("www.botan.randombit.net");
120✔
100

101
   return opts;
60✔
102
}
×
103

104
std::unique_ptr<Botan::Private_Key> make_a_private_key(const std::string& algo, Botan::RandomNumberGenerator& rng) {
105✔
105
   const std::string params = [&] {
210✔
106
      // Here we override defaults as needed
107
      if(algo == "RSA") {
105✔
108
         return "1024";
109
      }
110
      if(algo == "GOST-34.10") {
89✔
111
   #if defined(BOTAN_HAS_ECC_GROUP)
112
         if(Botan::EC_Group::supports_named_group("gost_256A")) {
8✔
113
            return "gost_256A";
114
         }
115
   #endif
116
         return "secp256r1";
×
117
      }
118
      if(algo == "ECKCDSA" || algo == "ECGDSA") {
81✔
119
         return "brainpool256r1";
120
      }
121
      if(algo == "HSS-LMS") {
65✔
122
         return "SHA-256,HW(5,4),HW(5,4)";
123
      }
124
      if(algo == "SLH-DSA") {
57✔
125
         return "SLH-DSA-SHA2-128f";
2✔
126
      }
127
      return "";  // default "" means choose acceptable algo-specific params
128
   }();
105✔
129

130
   try {
105✔
131
      return Botan::create_private_key(algo, rng, params);
105✔
132
   } catch(Botan::Not_Implemented&) {
×
133
      return {};
×
134
   }
×
135
}
105✔
136

137
Test::Result test_cert_status_strings() {
1✔
138
   Test::Result result("Certificate_Status_Code to_string");
1✔
139

140
   std::set<std::string> seen;
1✔
141

142
   result.test_eq("Same string",
1✔
143
                  Botan::to_string(Botan::Certificate_Status_Code::OK),
144
                  Botan::to_string(Botan::Certificate_Status_Code::VERIFIED));
145

146
   const Botan::Certificate_Status_Code codes[]{
1✔
147
      Botan::Certificate_Status_Code::OCSP_RESPONSE_GOOD,
148
      Botan::Certificate_Status_Code::OCSP_SIGNATURE_OK,
149
      Botan::Certificate_Status_Code::VALID_CRL_CHECKED,
150
      Botan::Certificate_Status_Code::OCSP_NO_HTTP,
151

152
      Botan::Certificate_Status_Code::CERT_SERIAL_NEGATIVE,
153
      Botan::Certificate_Status_Code::DN_TOO_LONG,
154

155
      Botan::Certificate_Status_Code::SIGNATURE_METHOD_TOO_WEAK,
156
      Botan::Certificate_Status_Code::NO_MATCHING_CRLDP,
157
      Botan::Certificate_Status_Code::UNTRUSTED_HASH,
158
      Botan::Certificate_Status_Code::NO_REVOCATION_DATA,
159
      Botan::Certificate_Status_Code::CERT_NOT_YET_VALID,
160
      Botan::Certificate_Status_Code::CERT_HAS_EXPIRED,
161
      Botan::Certificate_Status_Code::OCSP_NOT_YET_VALID,
162
      Botan::Certificate_Status_Code::OCSP_HAS_EXPIRED,
163
      Botan::Certificate_Status_Code::CRL_NOT_YET_VALID,
164
      Botan::Certificate_Status_Code::CRL_HAS_EXPIRED,
165
      Botan::Certificate_Status_Code::CERT_ISSUER_NOT_FOUND,
166
      Botan::Certificate_Status_Code::CANNOT_ESTABLISH_TRUST,
167
      Botan::Certificate_Status_Code::CERT_CHAIN_LOOP,
168
      Botan::Certificate_Status_Code::CHAIN_LACKS_TRUST_ROOT,
169
      Botan::Certificate_Status_Code::CHAIN_NAME_MISMATCH,
170
      Botan::Certificate_Status_Code::POLICY_ERROR,
171
      Botan::Certificate_Status_Code::DUPLICATE_CERT_POLICY,
172
      Botan::Certificate_Status_Code::INVALID_USAGE,
173
      Botan::Certificate_Status_Code::CERT_CHAIN_TOO_LONG,
174
      Botan::Certificate_Status_Code::CA_CERT_NOT_FOR_CERT_ISSUER,
175
      Botan::Certificate_Status_Code::NAME_CONSTRAINT_ERROR,
176
      Botan::Certificate_Status_Code::IPADDR_BLOCKS_ERROR,
177
      Botan::Certificate_Status_Code::AS_BLOCKS_ERROR,
178
      Botan::Certificate_Status_Code::CA_CERT_NOT_FOR_CRL_ISSUER,
179
      Botan::Certificate_Status_Code::OCSP_CERT_NOT_LISTED,
180
      Botan::Certificate_Status_Code::OCSP_BAD_STATUS,
181
      Botan::Certificate_Status_Code::CERT_NAME_NOMATCH,
182
      Botan::Certificate_Status_Code::UNKNOWN_CRITICAL_EXTENSION,
183
      Botan::Certificate_Status_Code::DUPLICATE_CERT_EXTENSION,
184
      Botan::Certificate_Status_Code::EXT_IN_V1_V2_CERT,
185
      Botan::Certificate_Status_Code::OCSP_SIGNATURE_ERROR,
186
      Botan::Certificate_Status_Code::OCSP_ISSUER_NOT_FOUND,
187
      Botan::Certificate_Status_Code::OCSP_RESPONSE_MISSING_KEYUSAGE,
188
      Botan::Certificate_Status_Code::OCSP_RESPONSE_INVALID,
189
      Botan::Certificate_Status_Code::CERT_IS_REVOKED,
190
      Botan::Certificate_Status_Code::CRL_BAD_SIGNATURE,
191
      Botan::Certificate_Status_Code::SIGNATURE_ERROR,
192
      Botan::Certificate_Status_Code::CERT_PUBKEY_INVALID,
193
      Botan::Certificate_Status_Code::SIGNATURE_ALGO_UNKNOWN,
194
      Botan::Certificate_Status_Code::SIGNATURE_ALGO_BAD_PARAMS,
195
   };
196

197
   for(const auto code : codes) {
47✔
198
      const std::string s = Botan::to_string(code);
46✔
199
      result.confirm("String is long enough to be informative", s.size() > 12);
92✔
200
      result.test_eq("No duplicates", seen.count(s), 0);
46✔
201
      seen.insert(s);
46✔
202
   }
46✔
203

204
   return result;
1✔
205
}
1✔
206

207
Test::Result test_x509_extension() {
1✔
208
   Test::Result result("X509 Extensions API");
1✔
209

210
   Botan::Extensions extn;
1✔
211

212
   const auto oid_bc = Botan::OID::from_string("X509v3.BasicConstraints");
1✔
213
   const auto oid_skid = Botan::OID::from_string("X509v3.SubjectKeyIdentifier");
1✔
214

215
   extn.add(std::make_unique<Botan::Cert_Extension::Basic_Constraints>(true), true);
2✔
216

217
   result.confirm("Basic constraints is set", extn.extension_set(oid_bc));
2✔
218
   result.confirm("Basic constraints is critical", extn.critical_extension_set(oid_bc));
2✔
219
   result.confirm("SKID is not set", !extn.extension_set(oid_skid));
2✔
220
   result.confirm("SKID is not critical", !extn.critical_extension_set(oid_skid));
2✔
221

222
   result.test_eq("Extension::get_extension_bits", extn.get_extension_bits(oid_bc), "30060101FF020100");
2✔
223

224
   result.test_throws("Extension::get_extension_bits throws if not set", [&]() { extn.get_extension_bits(oid_skid); });
3✔
225

226
   result.test_throws("Extension::add throws on second add",
2✔
227
                      [&]() { extn.add(std::make_unique<Botan::Cert_Extension::Basic_Constraints>(false), false); });
2✔
228

229
   result.test_eq("Extension::get_extension_bits", extn.get_extension_bits(oid_bc), "30060101FF020100");
2✔
230

231
   result.confirm("Returns false since extension already existed",
1✔
232
                  !extn.add_new(std::make_unique<Botan::Cert_Extension::Basic_Constraints>(false), false));
2✔
233

234
   result.confirm("Basic constraints is still critical", extn.critical_extension_set(oid_bc));
2✔
235

236
   extn.replace(std::make_unique<Botan::Cert_Extension::Basic_Constraints>(false), false);
2✔
237
   result.confirm("Replaced basic constraints is not critical", !extn.critical_extension_set(oid_bc));
2✔
238
   result.test_eq("Extension::get_extension_bits", extn.get_extension_bits(oid_bc), "3000");
2✔
239

240
   result.confirm("Delete returns false if extn not set", !extn.remove(oid_skid));
2✔
241
   result.confirm("Delete returns true if extn was set", extn.remove(oid_bc));
2✔
242
   result.confirm("Basic constraints is not set", !extn.extension_set(oid_bc));
2✔
243
   result.confirm("Basic constraints is not critical", !extn.critical_extension_set(oid_bc));
2✔
244

245
   return result;
2✔
246
}
2✔
247

248
Test::Result test_x509_dates() {
1✔
249
   Test::Result result("X509 Time");
1✔
250

251
   Botan::X509_Time time;
1✔
252
   result.confirm("unset time not set", !time.time_is_set());
2✔
253
   time = Botan::X509_Time("080201182200Z", Botan::ASN1_Type::UtcTime);
1✔
254
   result.confirm("time set after construction", time.time_is_set());
2✔
255
   result.test_eq("time readable_string", time.readable_string(), "2008/02/01 18:22:00 UTC");
2✔
256

257
   time = Botan::X509_Time("200305100350Z", Botan::ASN1_Type::UtcTime);
1✔
258
   result.test_eq("UTC_TIME readable_string", time.readable_string(), "2020/03/05 10:03:50 UTC");
2✔
259

260
   time = Botan::X509_Time("200305100350Z");
1✔
261
   result.test_eq(
3✔
262
      "UTC_OR_GENERALIZED_TIME from UTC_TIME readable_string", time.readable_string(), "2020/03/05 10:03:50 UTC");
2✔
263

264
   time = Botan::X509_Time("20200305100350Z");
1✔
265
   result.test_eq("UTC_OR_GENERALIZED_TIME from GENERALIZED_TIME readable_string",
3✔
266
                  time.readable_string(),
2✔
267
                  "2020/03/05 10:03:50 UTC");
268

269
   time = Botan::X509_Time("20200305100350Z", Botan::ASN1_Type::GeneralizedTime);
1✔
270
   result.test_eq("GENERALIZED_TIME readable_string", time.readable_string(), "2020/03/05 10:03:50 UTC");
2✔
271

272
   // Dates that are valid per X.500 but rejected as unsupported
273
   const std::string valid_but_unsup[]{
1✔
274
      "0802010000-0000",
275
      "0802011724+0000",
276
      "0406142334-0500",
277
      "9906142334+0500",
278
      "0006142334-0530",
279
      "0006142334+0530",
280

281
      "080201000000-0000",
282
      "080201172412+0000",
283
      "040614233433-0500",
284
      "990614233444+0500",
285
      "000614233455-0530",
286
      "000614233455+0530",
287
   };
13✔
288

289
   // valid length 13
290
   const std::string valid_utc[]{
1✔
291
      "080201000000Z",
292
      "080201172412Z",
293
      "040614233433Z",
294
      "990614233444Z",
295
      "000614233455Z",
296
   };
6✔
297

298
   const std::string invalid_utc[]{
1✔
299
      "",
300
      " ",
301
      "2008`02-01",
302
      "9999-02-01",
303
      "2000-02-01 17",
304
      "999921",
305

306
      // No seconds
307
      "0802010000Z",
308
      "0802011724Z",
309
      "0406142334Z",
310
      "9906142334Z",
311
      "0006142334Z",
312

313
      // valid length 13 -> range check
314
      "080201000061Z",  // seconds too big (61)
315
      "080201000060Z",  // seconds too big (60, leap seconds not covered by the standard)
316
      "0802010000-1Z",  // seconds too small (-1)
317
      "080201006000Z",  // minutes too big (60)
318
      "080201240000Z",  // hours too big (24:00)
319

320
      // valid length 13 -> invalid numbers
321
      "08020123112 Z",
322
      "08020123112!Z",
323
      "08020123112,Z",
324
      "08020123112\nZ",
325
      "080201232 33Z",
326
      "080201232!33Z",
327
      "080201232,33Z",
328
      "080201232\n33Z",
329
      "0802012 3344Z",
330
      "0802012!3344Z",
331
      "0802012,3344Z",
332
      "08022\n334455Z",
333
      "08022 334455Z",
334
      "08022!334455Z",
335
      "08022,334455Z",
336
      "08022\n334455Z",
337
      "082 33445511Z",
338
      "082!33445511Z",
339
      "082,33445511Z",
340
      "082\n33445511Z",
341
      "2 2211221122Z",
342
      "2!2211221122Z",
343
      "2,2211221122Z",
344
      "2\n2211221122Z",
345

346
      // wrong time zone
347
      "080201000000",
348
      "080201000000z",
349

350
      // Fractional seconds
351
      "170217180154.001Z",
352

353
      // Timezone offset
354
      "170217180154+0100",
355

356
      // Extra digits
357
      "17021718015400Z",
358

359
      // Non-digits
360
      "17021718015aZ",
361

362
      // Trailing garbage
363
      "170217180154Zlongtrailinggarbage",
364

365
      // Swapped type
366
      "20170217180154Z",
367
   };
49✔
368

369
   // valid length 15
370
   const std::string valid_generalized_time[]{
1✔
371
      "20000305100350Z",
372
   };
2✔
373

374
   const std::string invalid_generalized[]{
1✔
375
      // No trailing Z
376
      "20000305100350",
377

378
      // No seconds
379
      "200003051003Z",
380

381
      // Fractional seconds
382
      "20000305100350.001Z",
383

384
      // Timezone offset
385
      "20170217180154+0100",
386

387
      // Extra digits
388
      "2017021718015400Z",
389

390
      // Non-digits
391
      "2017021718015aZ",
392

393
      // Trailing garbage
394
      "20170217180154Zlongtrailinggarbage",
395

396
      // Swapped type
397
      "170217180154Z",
398
   };
9✔
399

400
   for(const auto& v : valid_but_unsup) {
13✔
401
      result.test_throws("valid but unsupported", [v]() { Botan::X509_Time t(v, Botan::ASN1_Type::UtcTime); });
108✔
402
   }
403

404
   for(const auto& v : valid_utc) {
6✔
405
      Botan::X509_Time t(v, Botan::ASN1_Type::UtcTime);
5✔
406
   }
5✔
407

408
   for(const auto& v : valid_generalized_time) {
2✔
409
      Botan::X509_Time t(v, Botan::ASN1_Type::GeneralizedTime);
1✔
410
   }
1✔
411

412
   for(const auto& v : invalid_utc) {
49✔
413
      result.test_throws("invalid", [v]() { Botan::X509_Time t(v, Botan::ASN1_Type::UtcTime); });
432✔
414
   }
415

416
   for(const auto& v : invalid_generalized) {
9✔
417
      result.test_throws("invalid", [v]() { Botan::X509_Time t(v, Botan::ASN1_Type::GeneralizedTime); });
72✔
418
   }
419

420
   return result;
1✔
421
}
80✔
422

423
Test::Result test_x509_encode_authority_info_access_extension() {
1✔
424
   Test::Result result("X509 with encoded PKIX.AuthorityInformationAccess extension");
1✔
425

426
   #if defined(BOTAN_HAS_RSA)
427
   auto rng = Test::new_rng(__func__);
1✔
428

429
   const std::string sig_algo{"RSA"};
1✔
430
   const std::string hash_fn{"SHA-256"};
1✔
431
   const std::string padding_method{"EMSA3(SHA-256)"};
1✔
432

433
   // CA Issuer information
434
   const std::vector<std::string> ca_issuers = {
1✔
435
      "http://www.d-trust.net/cgi-bin/Bdrive_Test_CA_1-2_2017.crt",
436
      "ldap://directory.d-trust.net/CN=Bdrive%20Test%20CA%201-2%202017,O=Bundesdruckerei%20GmbH,C=DE?cACertificate?base?"};
1✔
437

438
   // OCSP
439
   const std::string_view ocsp_uri{"http://staging.ocsp.d-trust.net"};
1✔
440

441
   // create a CA
442
   auto ca_key = make_a_private_key(sig_algo, *rng);
1✔
443
   result.require("CA key", ca_key != nullptr);
1✔
444
   const auto ca_cert = Botan::X509::create_self_signed_cert(ca_opts(), *ca_key, hash_fn, *rng);
1✔
445
   Botan::X509_CA ca(ca_cert, *ca_key, hash_fn, padding_method, *rng);
1✔
446

447
   // create a certificate with only caIssuer information
448
   auto key = make_a_private_key(sig_algo, *rng);
1✔
449

450
   Botan::X509_Cert_Options opts1 = req_opts1(sig_algo);
1✔
451
   opts1.extensions.add(std::make_unique<Botan::Cert_Extension::Authority_Information_Access>("", ca_issuers));
2✔
452

453
   Botan::PKCS10_Request req = Botan::X509::create_cert_req(opts1, *key, hash_fn, *rng);
1✔
454

455
   Botan::X509_Certificate cert = ca.sign_request(req, *rng, from_date(-1, 01, 01), from_date(2, 01, 01));
1✔
456

457
   if(!result.test_eq("number of ca_issuers URIs", cert.ca_issuers().size(), 2)) {
1✔
458
      return result;
459
   }
460

461
   for(const auto& ca_issuer : cert.ca_issuers()) {
3✔
462
      result.confirm("CA issuer URI present in certificate",
4✔
463
                     std::ranges::find(ca_issuers, ca_issuer) != ca_issuers.end());
4✔
464
   }
1✔
465

466
   result.confirm("no OCSP url available", cert.ocsp_responder().empty());
2✔
467

468
   // create a certificate with only OCSP URI information
469
   Botan::X509_Cert_Options opts2 = req_opts1(sig_algo);
1✔
470
   opts2.extensions.add(std::make_unique<Botan::Cert_Extension::Authority_Information_Access>(ocsp_uri));
2✔
471

472
   req = Botan::X509::create_cert_req(opts2, *key, hash_fn, *rng);
1✔
473

474
   cert = ca.sign_request(req, *rng, from_date(-1, 01, 01), from_date(2, 01, 01));
2✔
475

476
   result.confirm("OCSP URI available", !cert.ocsp_responder().empty());
2✔
477
   result.confirm("no CA Issuer URI available", cert.ca_issuers().empty());
2✔
478
   result.test_eq("OCSP responder URI matches", cert.ocsp_responder(), std::string(ocsp_uri));
3✔
479

480
   // create a certificate with OCSP URI and CA Issuer information
481
   Botan::X509_Cert_Options opts3 = req_opts1(sig_algo);
1✔
482
   opts3.extensions.add(std::make_unique<Botan::Cert_Extension::Authority_Information_Access>(ocsp_uri, ca_issuers));
2✔
483

484
   req = Botan::X509::create_cert_req(opts3, *key, hash_fn, *rng);
1✔
485

486
   cert = ca.sign_request(req, *rng, from_date(-1, 01, 01), from_date(2, 01, 01));
2✔
487

488
   result.confirm("OCSP URI available", !cert.ocsp_responder().empty());
2✔
489
   result.confirm("CA Issuer URI available", !cert.ca_issuers().empty());
2✔
490
   #endif
491

492
   return result;
1✔
493
}
4✔
494

495
   #if defined(BOTAN_TARGET_OS_HAS_FILESYSTEM)
496

497
Test::Result test_crl_dn_name() {
1✔
498
   Test::Result result("CRL DN name");
1✔
499

500
      // See GH #1252
501

502
      #if defined(BOTAN_HAS_RSA) && defined(BOTAN_HAS_EMSA_PKCS1)
503
   auto rng = Test::new_rng(__func__);
1✔
504

505
   const Botan::OID dc_oid("0.9.2342.19200300.100.1.25");
1✔
506

507
   Botan::X509_Certificate cert(Test::data_file("x509/misc/opcuactt_ca.der"));
2✔
508

509
   Botan::DataSource_Stream key_input(Test::data_file("x509/misc/opcuactt_ca.pem"));
2✔
510
   auto key = Botan::PKCS8::load_key(key_input);
1✔
511
   Botan::X509_CA ca(cert, *key, "SHA-256", *rng);
1✔
512

513
   Botan::X509_CRL crl = ca.new_crl(*rng);
1✔
514

515
   result.confirm("matches issuer cert", crl.issuer_dn() == cert.subject_dn());
2✔
516

517
   result.confirm("contains DC component", crl.issuer_dn().get_attributes().count(dc_oid) == 1);
3✔
518
      #endif
519

520
   return result;
2✔
521
}
3✔
522

523
Test::Result test_rdn_multielement_set_name() {
1✔
524
   Test::Result result("DN with multiple elements in RDN");
1✔
525

526
   // GH #2611
527

528
   Botan::X509_Certificate cert(Test::data_file("x509/misc/rdn_set.crt"));
2✔
529

530
   result.confirm("issuer DN contains expected name components", cert.issuer_dn().get_attributes().size() == 4);
2✔
531
   result.confirm("subject DN contains expected name components", cert.subject_dn().get_attributes().size() == 4);
2✔
532

533
   return result;
1✔
534
}
1✔
535

536
Test::Result test_rsa_oaep() {
1✔
537
   Test::Result result("RSA OAEP decoding");
1✔
538

539
      #if defined(BOTAN_HAS_RSA)
540
   Botan::X509_Certificate cert(Test::data_file("x509/misc/rsa_oaep.pem"));
2✔
541

542
   auto public_key = cert.subject_public_key();
1✔
543
   result.test_not_null("Decoding RSA-OAEP worked", public_key.get());
1✔
544
   const auto& pk_info = cert.subject_public_key_algo();
1✔
545

546
   result.test_eq("RSA-OAEP OID", pk_info.oid().to_string(), Botan::OID::from_string("RSA/OAEP").to_string());
2✔
547
      #endif
548

549
   return result;
2✔
550
}
1✔
551

552
Test::Result test_x509_decode_list() {
1✔
553
   Test::Result result("X509_Certificate list decode");
1✔
554

555
   Botan::DataSource_Stream input(Test::data_file("x509/misc/cert_seq.der"), true);
2✔
556

557
   Botan::BER_Decoder dec(input);
1✔
558
   std::vector<Botan::X509_Certificate> certs;
1✔
559
   dec.decode_list(certs);
1✔
560

561
   result.test_eq("Expected number of certs in list", certs.size(), 2);
1✔
562

563
   result.test_eq("Expected cert 1 CN", certs[0].subject_dn().get_first_attribute("CN"), "CA1-PP.01.02");
2✔
564
   result.test_eq("Expected cert 2 CN", certs[1].subject_dn().get_first_attribute("CN"), "User1-PP.01.02");
2✔
565

566
   return result;
1✔
567
}
1✔
568

569
Test::Result test_x509_utf8() {
1✔
570
   Test::Result result("X509 with UTF-8 encoded fields");
1✔
571

572
   try {
1✔
573
      Botan::X509_Certificate utf8_cert(Test::data_file("x509/misc/contains_utf8string.pem"));
2✔
574

575
      // UTF-8 encoded fields of test certificate (contains cyrillic letters)
576
      const std::string organization =
1✔
577
         "\xD0\x9C\xD0\xBE\xD1\x8F\x20\xD0\xBA\xD0\xBE\xD0"
578
         "\xBC\xD0\xBF\xD0\xB0\xD0\xBD\xD0\xB8\xD1\x8F";
1✔
579
      const std::string organization_unit =
1✔
580
         "\xD0\x9C\xD0\xBE\xD1\x91\x20\xD0\xBF\xD0\xBE\xD0\xB4\xD1\x80\xD0\xB0"
581
         "\xD0\xB7\xD0\xB4\xD0\xB5\xD0\xBB\xD0\xB5\xD0\xBD\xD0\xB8\xD0\xB5";
1✔
582
      const std::string common_name =
1✔
583
         "\xD0\x9E\xD0\xBF\xD0\xB8\xD1\x81\xD0\xB0\xD0\xBD\xD0\xB8"
584
         "\xD0\xB5\x20\xD1\x81\xD0\xB0\xD0\xB9\xD1\x82\xD0\xB0";
1✔
585
      const std::string location = "\xD0\x9C\xD0\xBE\xD1\x81\xD0\xBA\xD0\xB2\xD0\xB0";
1✔
586

587
      const Botan::X509_DN& issuer_dn = utf8_cert.issuer_dn();
1✔
588

589
      result.test_eq("O", issuer_dn.get_first_attribute("O"), organization);
2✔
590
      result.test_eq("OU", issuer_dn.get_first_attribute("OU"), organization_unit);
2✔
591
      result.test_eq("CN", issuer_dn.get_first_attribute("CN"), common_name);
2✔
592
      result.test_eq("L", issuer_dn.get_first_attribute("L"), location);
2✔
593
   } catch(const Botan::Decoding_Error& ex) {
1✔
594
      result.test_failure(ex.what());
×
595
   }
×
596

597
   return result;
1✔
598
}
×
599

600
Test::Result test_x509_bmpstring() {
1✔
601
   Test::Result result("X509 with UCS-2 (BMPString) encoded fields");
1✔
602

603
   try {
1✔
604
      Botan::X509_Certificate ucs2_cert(Test::data_file("x509/misc/contains_bmpstring.pem"));
2✔
605

606
      // UTF-8 encoded fields of test certificate (contains cyrillic and greek letters)
607
      const std::string organization = "\x6E\x65\xCF\x87\xCF\xB5\x6E\x69\xCF\x89";
1✔
608
      const std::string common_name =
1✔
609
         "\xC3\xA8\x6E\xC7\x9D\xD0\xAF\x20\xD0\x9C\xC7\x9D\xD0\xB9\xD0\xB7\xD1\x8D\xD0\xBB";
1✔
610

611
      // UTF-8 encoded fields of test certificate (contains only ASCII characters)
612
      const std::string location = "Berlin";
1✔
613

614
      const Botan::X509_DN& issuer_dn = ucs2_cert.issuer_dn();
1✔
615

616
      result.test_eq("O", issuer_dn.get_first_attribute("O"), organization);
2✔
617
      result.test_eq("CN", issuer_dn.get_first_attribute("CN"), common_name);
2✔
618
      result.test_eq("L", issuer_dn.get_first_attribute("L"), location);
2✔
619
   } catch(const Botan::Decoding_Error& ex) {
1✔
620
      result.test_failure(ex.what());
×
621
   }
×
622

623
   return result;
1✔
624
}
×
625

626
Test::Result test_x509_teletex() {
1✔
627
   Test::Result result("X509 with TeletexString encoded fields");
1✔
628

629
   try {
1✔
630
      Botan::X509_Certificate teletex_cert(Test::data_file("x509/misc/teletex_dn.der"));
2✔
631

632
      const Botan::X509_DN& issuer_dn = teletex_cert.issuer_dn();
1✔
633

634
      const std::string common_name = "neam Gesellschaft f\xc3\xbcr Kommunikationsl\xc3\xb6sungen mbH";
1✔
635

636
      result.test_eq("O", issuer_dn.get_first_attribute("O"), "neam CA");
2✔
637
      result.test_eq("CN", issuer_dn.get_first_attribute("CN"), common_name);
2✔
638
   } catch(const Botan::Decoding_Error& ex) {
1✔
639
      result.test_failure(ex.what());
×
640
   }
×
641

642
   return result;
1✔
643
}
×
644

645
Test::Result test_x509_authority_info_access_extension() {
1✔
646
   Test::Result result("X509 with PKIX.AuthorityInformationAccess extension");
1✔
647

648
   // contains no AIA extension
649
   Botan::X509_Certificate no_aia_cert(Test::data_file("x509/misc/contains_utf8string.pem"));
2✔
650

651
   result.test_eq("number of ca_issuers URLs", no_aia_cert.ca_issuers().size(), 0);
2✔
652
   result.test_eq("CA issuer URL matches", no_aia_cert.ocsp_responder(), "");
2✔
653

654
   // contains AIA extension with 1 CA issuer URL and 1 OCSP responder
655
   Botan::X509_Certificate aia_cert(Test::data_file("x509/misc/contains_authority_info_access.pem"));
2✔
656

657
   const auto ca_issuers = aia_cert.ca_issuers();
1✔
658

659
   result.test_eq("number of ca_issuers URLs", ca_issuers.size(), 1);
1✔
660
   if(result.tests_failed()) {
1✔
661
      return result;
662
   }
663

664
   result.test_eq("CA issuer URL matches", ca_issuers[0], "http://gp.symcb.com/gp.crt");
2✔
665
   result.test_eq("OCSP responder URL matches", aia_cert.ocsp_responder(), "http://gp.symcd.com");
2✔
666

667
   // contains AIA extension with 2 CA issuer URL and 1 OCSP responder
668
   Botan::X509_Certificate aia_cert_2ca(
1✔
669
      Test::data_file("x509/misc/contains_authority_info_access_with_two_ca_issuers.pem"));
2✔
670

671
   const auto ca_issuers2 = aia_cert_2ca.ca_issuers();
1✔
672

673
   result.test_eq("number of ca_issuers URLs", ca_issuers2.size(), 2);
1✔
674
   if(result.tests_failed()) {
1✔
675
      return result;
676
   }
677

678
   result.test_eq(
2✔
679
      "CA issuer URL matches", ca_issuers2[0], "http://www.d-trust.net/cgi-bin/Bdrive_Test_CA_1-2_2017.crt");
1✔
680
   result.test_eq(
2✔
681
      "CA issuer URL matches",
682
      ca_issuers2[1],
1✔
683
      "ldap://directory.d-trust.net/CN=Bdrive%20Test%20CA%201-2%202017,O=Bundesdruckerei%20GmbH,C=DE?cACertificate?base?");
684
   result.test_eq("OCSP responder URL matches", aia_cert_2ca.ocsp_responder(), "http://staging.ocsp.d-trust.net");
2✔
685

686
   return result;
1✔
687
}
1✔
688

689
Test::Result test_parse_rsa_pss_cert() {
1✔
690
   Test::Result result("X509 RSA-PSS certificate");
1✔
691

692
   // See https://github.com/randombit/botan/issues/3019 for background
693

694
   try {
1✔
695
      Botan::X509_Certificate rsa_pss(Test::data_file("x509/misc/rsa_pss.pem"));
2✔
696
      result.test_success("Was able to parse RSA-PSS certificate signed with ECDSA");
1✔
697
   } catch(Botan::Exception& e) {
1✔
698
      result.test_failure("Parsing failed", e.what());
×
699
   }
×
700

701
   return result;
1✔
702
}
×
703

704
Test::Result test_verify_gost2012_cert() {
1✔
705
   Test::Result result("X509 GOST-2012 certificates");
1✔
706

707
      #if defined(BOTAN_HAS_GOST_34_10_2012) && defined(BOTAN_HAS_STREEBOG)
708
   try {
1✔
709
      if(Botan::EC_Group::supports_named_group("gost_256A")) {
1✔
710
         Botan::X509_Certificate root_cert(Test::data_file("x509/gost/gost_root.pem"));
2✔
711
         Botan::X509_Certificate root_int(Test::data_file("x509/gost/gost_int.pem"));
2✔
712

713
         Botan::Certificate_Store_In_Memory trusted;
1✔
714
         trusted.add_certificate(root_cert);
1✔
715

716
         const Botan::Path_Validation_Restrictions restrictions(false, 128, false, {"Streebog-256"});
2✔
717
         const Botan::Path_Validation_Result validation_result =
1✔
718
            Botan::x509_path_validate(root_int, restrictions, trusted);
1✔
719

720
         result.confirm("GOST certificate validates", validation_result.successful_validation());
2✔
721
      }
1✔
722
   } catch(const Botan::Decoding_Error& e) {
×
723
      result.test_failure(e.what());
×
724
   }
×
725
      #endif
726

727
   return result;
1✔
728
}
×
729

730
      /*
731
 * @brief checks the configurability of the EMSA4(RSA-PSS) signature scheme
732
 *
733
 * For the other algorithms than RSA, only one padding is supported right now.
734
 */
735
      #if defined(BOTAN_HAS_EMSA_PKCS1) && defined(BOTAN_HAS_EMSA_PSSR) && defined(BOTAN_HAS_RSA)
736
Test::Result test_padding_config() {
1✔
737
   // Throughout the test, some synonyms for EMSA4 are used, e.g. PSSR, EMSA-PSS
738
   Test::Result test_result("X509 Padding Config");
1✔
739

740
   auto rng = Test::new_rng(__func__);
1✔
741

742
   Botan::DataSource_Stream key_stream(Test::data_file("x509/misc/rsa_key.pem"));
2✔
743
   auto sk = Botan::PKCS8::load_key(key_stream);
1✔
744

745
   // Create X509 CA certificate; EMSA3 is used for signing by default
746
   Botan::X509_Cert_Options opt("TESTCA");
1✔
747
   opt.CA_key();
1✔
748

749
   Botan::X509_Certificate ca_cert_def = Botan::X509::create_self_signed_cert(opt, (*sk), "SHA-512", *rng);
1✔
750
   test_result.test_eq("CA certificate signature algorithm (default)",
3✔
751
                       ca_cert_def.signature_algorithm().oid().to_formatted_string(),
2✔
752
                       "RSA/PKCS1v15(SHA-512)");
753

754
   // Create X509 CA certificate; RSA-PSS is explicitly set
755
   opt.set_padding_scheme("PSSR");
1✔
756
   Botan::X509_Certificate ca_cert_exp = Botan::X509::create_self_signed_cert(opt, (*sk), "SHA-512", *rng);
1✔
757
   test_result.test_eq("CA certificate signature algorithm (explicit)",
3✔
758
                       ca_cert_exp.signature_algorithm().oid().to_formatted_string(),
2✔
759
                       "RSA/PSS");
760

761
         #if defined(BOTAN_HAS_EMSA_X931)
762
   // Try to set a padding scheme that is not supported for signing with the given key type
763
   opt.set_padding_scheme("EMSA2");
1✔
764
   try {
1✔
765
      Botan::X509_Certificate ca_cert_wrong = Botan::X509::create_self_signed_cert(opt, (*sk), "SHA-512", *rng);
1✔
766
      test_result.test_failure("Could build CA cert with invalid encoding scheme X9.31 for key type " +
×
767
                               sk->algo_name());
×
768
   } catch(const Botan::Invalid_Argument& e) {
1✔
769
      test_result.test_eq("Build CA certificate with invalid encoding scheme X9.31 for key type " + sk->algo_name(),
3✔
770
                          e.what(),
1✔
771
                          "Signatures using RSA/X9.31(SHA-512) are not supported");
772
   }
1✔
773
         #endif
774

775
   test_result.test_eq("CA certificate signature algorithm (explicit)",
3✔
776
                       ca_cert_exp.signature_algorithm().oid().to_formatted_string(),
2✔
777
                       "RSA/PSS");
778

779
   const Botan::X509_Time not_before = from_date(-1, 1, 1);
1✔
780
   const Botan::X509_Time not_after = from_date(2, 1, 2);
1✔
781

782
   // Prepare a signing request for the end certificate
783
   Botan::X509_Cert_Options req_opt("endpoint");
1✔
784
   req_opt.set_padding_scheme("EMSA4(SHA-512,MGF1,64)");
1✔
785
   Botan::PKCS10_Request end_req = Botan::X509::create_cert_req(req_opt, (*sk), "SHA-512", *rng);
1✔
786
   test_result.test_eq(
3✔
787
      "Certificate request signature algorithm", end_req.signature_algorithm().oid().to_formatted_string(), "RSA/PSS");
2✔
788

789
   // Create X509 CA object: will fail as the chosen hash functions differ
790
   try {
1✔
791
      Botan::X509_CA ca_fail(ca_cert_exp, (*sk), "SHA-512", "EMSA4(SHA-256)", *rng);
1✔
792
      test_result.test_failure("Configured conflicting hash functions for CA");
×
793
   } catch(const Botan::Invalid_Argument& e) {
1✔
794
      test_result.test_eq(
1✔
795
         "Configured conflicting hash functions for CA",
796
         e.what(),
1✔
797
         "Specified hash function SHA-512 is incompatible with RSA chose hash function SHA-256 with user specified padding EMSA4(SHA-256)");
798
   }
1✔
799

800
   // Create X509 CA object: its signer will use the padding scheme from the CA certificate, i.e. EMSA3
801
   Botan::X509_CA ca_def(ca_cert_def, (*sk), "SHA-512", *rng);
1✔
802
   Botan::X509_Certificate end_cert_emsa3 = ca_def.sign_request(end_req, *rng, not_before, not_after);
1✔
803
   test_result.test_eq("End certificate signature algorithm",
4✔
804
                       end_cert_emsa3.signature_algorithm().oid().to_formatted_string(),
2✔
805
                       "RSA/PKCS1v15(SHA-512)");
806

807
   // Create X509 CA object: its signer will use the explicitly configured padding scheme, which is different from the CA certificate's scheme
808
   Botan::X509_CA ca_diff(ca_cert_def, (*sk), "SHA-512", "EMSA-PSS", *rng);
1✔
809
   Botan::X509_Certificate end_cert_diff_emsa4 = ca_diff.sign_request(end_req, *rng, not_before, not_after);
1✔
810
   test_result.test_eq("End certificate signature algorithm",
3✔
811
                       end_cert_diff_emsa4.signature_algorithm().oid().to_formatted_string(),
2✔
812
                       "RSA/PSS");
813

814
   // Create X509 CA object: its signer will use the explicitly configured padding scheme, which is identical to the CA certificate's scheme
815
   Botan::X509_CA ca_exp(ca_cert_exp, (*sk), "SHA-512", "EMSA4(SHA-512,MGF1,64)", *rng);
1✔
816
   Botan::X509_Certificate end_cert_emsa4 = ca_exp.sign_request(end_req, *rng, not_before, not_after);
1✔
817
   test_result.test_eq("End certificate signature algorithm",
3✔
818
                       end_cert_emsa4.signature_algorithm().oid().to_formatted_string(),
2✔
819
                       "RSA/PSS");
820

821
   // Check CRL signature algorithm
822
   Botan::X509_CRL crl = ca_exp.new_crl(*rng);
1✔
823
   test_result.test_eq("CRL signature algorithm", crl.signature_algorithm().oid().to_formatted_string(), "RSA/PSS");
2✔
824

825
   // sanity check for verification, the heavy lifting is done in the other unit tests
826
   const Botan::Certificate_Store_In_Memory trusted(ca_exp.ca_certificate());
1✔
827
   const Botan::Path_Validation_Restrictions restrictions(false, 80);
2✔
828
   const Botan::Path_Validation_Result validation_result =
1✔
829
      Botan::x509_path_validate(end_cert_emsa4, restrictions, trusted);
1✔
830
   test_result.confirm("EMSA4-signed certificate validates", validation_result.successful_validation());
2✔
831

832
   return test_result;
2✔
833
}
3✔
834
      #endif
835

836
   #endif
837

838
Test::Result test_pkcs10_ext(const Botan::Private_Key& key,
12✔
839
                             const std::string& sig_padding,
840
                             const std::string& hash_fn,
841
                             Botan::RandomNumberGenerator& rng) {
842
   Test::Result result("PKCS10 extensions");
12✔
843

844
   Botan::X509_Cert_Options opts;
12✔
845

846
   opts.dns = "main.example.org";
12✔
847
   opts.more_dns.push_back("more1.example.org");
24✔
848
   opts.more_dns.push_back("more2.example.org");
24✔
849

850
   opts.padding_scheme = sig_padding;
12✔
851

852
   Botan::AlternativeName alt_name;
12✔
853
   alt_name.add_attribute("DNS", "bonus.example.org");
12✔
854

855
   Botan::X509_DN alt_dn;
12✔
856
   alt_dn.add_attribute("X520.CommonName", "alt_cn");
12✔
857
   alt_dn.add_attribute("X520.Organization", "testing");
12✔
858
   alt_name.add_dn(alt_dn);
12✔
859

860
   opts.extensions.add(std::make_unique<Botan::Cert_Extension::Subject_Alternative_Name>(alt_name));
24✔
861

862
   const auto req = Botan::X509::create_cert_req(opts, key, hash_fn, rng);
12✔
863

864
   const auto alt_dns_names = req.subject_alt_name().get_attribute("DNS");
12✔
865

866
   result.test_eq("Expected number of DNS names", alt_dns_names.size(), 4);
12✔
867

868
   if(alt_dns_names.size() == 4) {
12✔
869
      result.test_eq("Expected DNS name 1", alt_dns_names.at(0), "bonus.example.org");
36✔
870
      result.test_eq("Expected DNS name 2", alt_dns_names.at(1), "main.example.org");
36✔
871
      result.test_eq("Expected DNS name 3", alt_dns_names.at(2), "more1.example.org");
36✔
872
      result.test_eq("Expected DNS name 3", alt_dns_names.at(3), "more2.example.org");
36✔
873
   }
874

875
   result.test_eq("Expected number of alt DNs", req.subject_alt_name().directory_names().size(), 1);
12✔
876
   result.confirm("Alt DN is correct", *req.subject_alt_name().directory_names().begin() == alt_dn);
24✔
877

878
   return result;
12✔
879
}
12✔
880

881
Test::Result test_x509_cert(const Botan::Private_Key& ca_key,
12✔
882
                            const std::string& sig_algo,
883
                            const std::string& sig_padding,
884
                            const std::string& hash_fn,
885
                            Botan::RandomNumberGenerator& rng) {
886
   Test::Result result("X509 Unit");
12✔
887

888
   /* Create the self-signed cert */
889
   const auto ca_cert = Botan::X509::create_self_signed_cert(ca_opts(sig_padding), ca_key, hash_fn, rng);
12✔
890

891
   {
12✔
892
      result.confirm("ca key usage cert", ca_cert.constraints().includes(Botan::Key_Constraints::KeyCertSign));
24✔
893
      result.confirm("ca key usage crl", ca_cert.constraints().includes(Botan::Key_Constraints::CrlSign));
24✔
894
   }
895

896
   /* Create user #1's key and cert request */
897
   auto user1_key = make_a_private_key(sig_algo, rng);
12✔
898

899
   Botan::PKCS10_Request user1_req =
12✔
900
      Botan::X509::create_cert_req(req_opts1(sig_algo, sig_padding), *user1_key, hash_fn, rng);
12✔
901

902
   result.test_eq("PKCS10 challenge password parsed", user1_req.challenge_password(), "zoom");
24✔
903

904
   /* Create user #2's key and cert request */
905
   auto user2_key = make_a_private_key(sig_algo, rng);
12✔
906

907
   Botan::PKCS10_Request user2_req = Botan::X509::create_cert_req(req_opts2(sig_padding), *user2_key, hash_fn, rng);
12✔
908

909
   // /* Create user #3's key and cert request */
910
   auto user3_key = make_a_private_key(sig_algo, rng);
12✔
911

912
   Botan::PKCS10_Request user3_req = Botan::X509::create_cert_req(req_opts3(sig_padding), *user3_key, hash_fn, rng);
12✔
913

914
   /* Create the CA object */
915
   Botan::X509_CA ca(ca_cert, ca_key, hash_fn, sig_padding, rng);
12✔
916

917
   const BigInt user1_serial = 99;
12✔
918

919
   /* Sign the requests to create the certs */
920
   Botan::X509_Certificate user1_cert =
12✔
921
      ca.sign_request(user1_req, rng, user1_serial, from_date(-1, 01, 01), from_date(2, 01, 01));
12✔
922

923
   result.test_eq("User1 serial size matches expected", user1_cert.serial_number().size(), 1);
12✔
924
   result.test_eq("User1 serial matches expected", user1_cert.serial_number().at(0), size_t(99));
12✔
925

926
   Botan::X509_Certificate user2_cert = ca.sign_request(user2_req, rng, from_date(-1, 01, 01), from_date(2, 01, 01));
12✔
927
   result.test_eq("extended key usage is set", user2_cert.has_ex_constraint("PKIX.EmailProtection"), true);
12✔
928

929
   Botan::X509_Certificate user3_cert = ca.sign_request(user3_req, rng, from_date(-1, 01, 01), from_date(2, 01, 01));
12✔
930

931
   // user#1 creates a self-signed cert on the side
932
   const auto user1_ss_cert =
12✔
933
      Botan::X509::create_self_signed_cert(req_opts1(sig_algo, sig_padding), *user1_key, hash_fn, rng);
12✔
934

935
   {
12✔
936
      auto constraints = req_opts1(sig_algo).constraints;
12✔
937
      result.confirm("user1 key usage", user1_cert.constraints().includes(constraints));
24✔
938
   }
939

940
   /* Copy, assign and compare */
941
   Botan::X509_Certificate user1_cert_copy(user1_cert);
12✔
942
   result.test_eq("certificate copy", user1_cert == user1_cert_copy, true);
12✔
943

944
   user1_cert_copy = user2_cert;
12✔
945
   result.test_eq("certificate assignment", user2_cert == user1_cert_copy, true);
12✔
946

947
   Botan::X509_Certificate user1_cert_differ =
12✔
948
      ca.sign_request(user1_req, rng, from_date(-1, 01, 01), from_date(2, 01, 01));
12✔
949

950
   result.test_eq("certificate differs", user1_cert == user1_cert_differ, false);
12✔
951

952
   /* Get cert data */
953
   result.test_eq("x509 version", user1_cert.x509_version(), size_t(3));
12✔
954

955
   const Botan::X509_DN& user1_issuer_dn = user1_cert.issuer_dn();
12✔
956
   result.test_eq("issuer info CN", user1_issuer_dn.get_first_attribute("CN"), ca_opts().common_name);
24✔
957
   result.test_eq("issuer info Country", user1_issuer_dn.get_first_attribute("C"), ca_opts().country);
24✔
958
   result.test_eq("issuer info Orga", user1_issuer_dn.get_first_attribute("O"), ca_opts().organization);
24✔
959
   result.test_eq("issuer info OrgaUnit", user1_issuer_dn.get_first_attribute("OU"), ca_opts().org_unit);
24✔
960

961
   const Botan::X509_DN& user3_subject_dn = user3_cert.subject_dn();
12✔
962
   result.test_eq("subject OrgaUnit count",
12✔
963
                  user3_subject_dn.get_attribute("OU").size(),
24✔
964
                  req_opts3(sig_algo).more_org_units.size() + 1);
24✔
965
   result.test_eq(
12✔
966
      "subject OrgaUnit #2", user3_subject_dn.get_attribute("OU").at(1), req_opts3(sig_algo).more_org_units.at(0));
48✔
967

968
   const Botan::AlternativeName& user1_altname = user1_cert.subject_alt_name();
12✔
969
   result.test_eq("subject alt email", user1_altname.get_first_attribute("RFC822"), "testing@randombit.net");
24✔
970
   result.test_eq("subject alt dns", user1_altname.get_first_attribute("DNS"), "botan.randombit.net");
24✔
971
   result.test_eq("subject alt uri", user1_altname.get_first_attribute("URI"), "https://botan.randombit.net");
24✔
972

973
   const Botan::AlternativeName& user3_altname = user3_cert.subject_alt_name();
12✔
974
   result.test_eq(
12✔
975
      "subject alt dns count", user3_altname.get_attribute("DNS").size(), req_opts3(sig_algo).more_dns.size() + 1);
24✔
976
   result.test_eq("subject alt dns #2", user3_altname.get_attribute("DNS").at(1), req_opts3(sig_algo).more_dns.at(0));
48✔
977

978
   const Botan::X509_CRL crl1 = ca.new_crl(rng);
12✔
979

980
   /* Verify the certs */
981
   Botan::Path_Validation_Restrictions restrictions(false, 80);
24✔
982
   Botan::Certificate_Store_In_Memory store;
12✔
983

984
   // First try with an empty store
985
   Botan::Path_Validation_Result result_no_issuer = Botan::x509_path_validate(user1_cert, restrictions, store);
12✔
986
   result.test_eq("user 1 issuer not found",
36✔
987
                  result_no_issuer.result_string(),
24✔
988
                  Botan::Path_Validation_Result::status_string(Botan::Certificate_Status_Code::CERT_ISSUER_NOT_FOUND));
989

990
   store.add_certificate(ca.ca_certificate());
12✔
991

992
   Botan::Path_Validation_Result result_u1 = Botan::x509_path_validate(user1_cert, restrictions, store);
12✔
993
   if(!result.confirm("user 1 validates", result_u1.successful_validation())) {
24✔
994
      result.test_note("user 1 validation result was " + result_u1.result_string());
×
995
   }
996

997
   Botan::Path_Validation_Result result_u2 = Botan::x509_path_validate(user2_cert, restrictions, store);
12✔
998
   if(!result.confirm("user 2 validates", result_u2.successful_validation())) {
24✔
999
      result.test_note("user 2 validation result was " + result_u2.result_string());
×
1000
   }
1001

1002
   Botan::Path_Validation_Result result_self_signed = Botan::x509_path_validate(user1_ss_cert, restrictions, store);
12✔
1003
   result.test_eq("user 1 issuer not found",
36✔
1004
                  result_no_issuer.result_string(),
24✔
1005
                  Botan::Path_Validation_Result::status_string(Botan::Certificate_Status_Code::CERT_ISSUER_NOT_FOUND));
1006
   store.add_crl(crl1);
12✔
1007

1008
   std::vector<Botan::CRL_Entry> revoked;
12✔
1009
   revoked.push_back(Botan::CRL_Entry(user1_cert, Botan::CRL_Code::CessationOfOperation));
24✔
1010
   revoked.push_back(user2_cert);
24✔
1011

1012
   const Botan::X509_CRL crl2 = ca.update_crl(crl1, revoked, rng);
12✔
1013

1014
   store.add_crl(crl2);
12✔
1015

1016
   const std::string revoked_str =
12✔
1017
      Botan::Path_Validation_Result::status_string(Botan::Certificate_Status_Code::CERT_IS_REVOKED);
12✔
1018

1019
   result_u1 = Botan::x509_path_validate(user1_cert, restrictions, store);
12✔
1020
   result.test_eq("user 1 revoked", result_u1.result_string(), revoked_str);
24✔
1021

1022
   result_u2 = Botan::x509_path_validate(user2_cert, restrictions, store);
12✔
1023
   result.test_eq("user 1 revoked", result_u2.result_string(), revoked_str);
24✔
1024

1025
   revoked.clear();
12✔
1026
   revoked.push_back(Botan::CRL_Entry(user1_cert, Botan::CRL_Code::RemoveFromCrl));
24✔
1027
   Botan::X509_CRL crl3 = ca.update_crl(crl2, revoked, rng);
12✔
1028

1029
   store.add_crl(crl3);
12✔
1030

1031
   result_u1 = Botan::x509_path_validate(user1_cert, restrictions, store);
12✔
1032
   if(!result.confirm("user 1 validates", result_u1.successful_validation())) {
24✔
1033
      result.test_note("user 1 validation result was " + result_u1.result_string());
×
1034
   }
1035

1036
   result_u2 = Botan::x509_path_validate(user2_cert, restrictions, store);
12✔
1037
   result.test_eq("user 2 still revoked", result_u2.result_string(), revoked_str);
24✔
1038

1039
   return result;
12✔
1040
}
48✔
1041

1042
Test::Result test_usage(const Botan::Private_Key& ca_key,
12✔
1043
                        const std::string& sig_algo,
1044
                        const std::string& hash_fn,
1045
                        Botan::RandomNumberGenerator& rng) {
1046
   using Botan::Key_Constraints;
12✔
1047
   using Botan::Usage_Type;
12✔
1048

1049
   Test::Result result("X509 Usage");
12✔
1050

1051
   /* Create the self-signed cert */
1052
   const Botan::X509_Certificate ca_cert = Botan::X509::create_self_signed_cert(ca_opts(), ca_key, hash_fn, rng);
12✔
1053

1054
   /* Create the CA object */
1055
   const Botan::X509_CA ca(ca_cert, ca_key, hash_fn, rng);
12✔
1056

1057
   auto user1_key = make_a_private_key(sig_algo, rng);
12✔
1058

1059
   Botan::X509_Cert_Options opts("Test User 1/US/Botan Project/Testing");
12✔
1060
   opts.constraints = Key_Constraints::DigitalSignature;
12✔
1061

1062
   const Botan::PKCS10_Request user1_req = Botan::X509::create_cert_req(opts, *user1_key, hash_fn, rng);
12✔
1063

1064
   const Botan::X509_Certificate user1_cert =
12✔
1065
      ca.sign_request(user1_req, rng, from_date(-1, 01, 01), from_date(2, 01, 01));
12✔
1066

1067
   // cert only allows digitalSignature, but we check for both digitalSignature and cRLSign
1068
   result.test_eq(
12✔
1069
      "key usage cRLSign not allowed",
1070
      user1_cert.allowed_usage(Key_Constraints(Key_Constraints::DigitalSignature | Key_Constraints::CrlSign)),
12✔
1071
      false);
1072
   result.test_eq("encryption is not allowed", user1_cert.allowed_usage(Usage_Type::ENCRYPTION), false);
12✔
1073

1074
   // cert only allows digitalSignature, so checking for only that should be ok
1075
   result.confirm("key usage digitalSignature allowed", user1_cert.allowed_usage(Key_Constraints::DigitalSignature));
24✔
1076

1077
   opts.constraints = Key_Constraints(Key_Constraints::DigitalSignature | Key_Constraints::CrlSign);
12✔
1078

1079
   const Botan::PKCS10_Request mult_usage_req = Botan::X509::create_cert_req(opts, *user1_key, hash_fn, rng);
12✔
1080

1081
   const Botan::X509_Certificate mult_usage_cert =
12✔
1082
      ca.sign_request(mult_usage_req, rng, from_date(-1, 01, 01), from_date(2, 01, 01));
12✔
1083

1084
   // cert allows multiple usages, so each one of them as well as both together should be allowed
1085
   result.confirm("key usage multiple digitalSignature allowed",
24✔
1086
                  mult_usage_cert.allowed_usage(Key_Constraints::DigitalSignature));
12✔
1087
   result.confirm("key usage multiple cRLSign allowed", mult_usage_cert.allowed_usage(Key_Constraints::CrlSign));
24✔
1088
   result.confirm(
24✔
1089
      "key usage multiple digitalSignature and cRLSign allowed",
1090
      mult_usage_cert.allowed_usage(Key_Constraints(Key_Constraints::DigitalSignature | Key_Constraints::CrlSign)));
12✔
1091
   result.test_eq("encryption is not allowed", mult_usage_cert.allowed_usage(Usage_Type::ENCRYPTION), false);
12✔
1092

1093
   opts.constraints = Key_Constraints();
12✔
1094

1095
   const Botan::PKCS10_Request no_usage_req = Botan::X509::create_cert_req(opts, *user1_key, hash_fn, rng);
12✔
1096

1097
   const Botan::X509_Certificate no_usage_cert =
12✔
1098
      ca.sign_request(no_usage_req, rng, from_date(-1, 01, 01), from_date(2, 01, 01));
12✔
1099

1100
   // cert allows every usage
1101
   result.confirm("key usage digitalSignature allowed", no_usage_cert.allowed_usage(Key_Constraints::DigitalSignature));
24✔
1102
   result.confirm("key usage cRLSign allowed", no_usage_cert.allowed_usage(Key_Constraints::CrlSign));
24✔
1103
   result.confirm("key usage encryption allowed", no_usage_cert.allowed_usage(Usage_Type::ENCRYPTION));
24✔
1104

1105
   if(sig_algo == "RSA") {
12✔
1106
      // cert allows data encryption
1107
      opts.constraints = Key_Constraints(Key_Constraints::KeyEncipherment | Key_Constraints::DataEncipherment);
1✔
1108

1109
      const Botan::PKCS10_Request enc_req = Botan::X509::create_cert_req(opts, *user1_key, hash_fn, rng);
1✔
1110

1111
      const Botan::X509_Certificate enc_cert =
1✔
1112
         ca.sign_request(enc_req, rng, from_date(-1, 01, 01), from_date(2, 01, 01));
1✔
1113

1114
      result.confirm("cert allows encryption", enc_cert.allowed_usage(Usage_Type::ENCRYPTION));
2✔
1115
      result.confirm("cert does not allow TLS client auth", !enc_cert.allowed_usage(Usage_Type::TLS_CLIENT_AUTH));
2✔
1116
   }
1✔
1117

1118
   return result;
12✔
1119
}
24✔
1120

1121
Test::Result test_self_issued(const Botan::Private_Key& ca_key,
12✔
1122
                              const std::string& sig_algo,
1123
                              const std::string& sig_padding,
1124
                              const std::string& hash_fn,
1125
                              Botan::RandomNumberGenerator& rng) {
1126
   using Botan::Key_Constraints;
12✔
1127

1128
   Test::Result result("X509 Self Issued");
12✔
1129

1130
   // create the self-signed cert
1131
   const Botan::X509_Certificate ca_cert =
12✔
1132
      Botan::X509::create_self_signed_cert(ca_opts(sig_padding), ca_key, hash_fn, rng);
12✔
1133

1134
   /* Create the CA object */
1135
   const Botan::X509_CA ca(ca_cert, ca_key, hash_fn, sig_padding, rng);
12✔
1136

1137
   auto user_key = make_a_private_key(sig_algo, rng);
12✔
1138

1139
   // create a self-issued certificate, that is, a certificate with subject dn == issuer dn,
1140
   // but signed by a CA, not signed by it's own private key
1141
   Botan::X509_Cert_Options opts = ca_opts();
12✔
1142
   opts.constraints = Key_Constraints::DigitalSignature;
12✔
1143
   opts.set_padding_scheme(sig_padding);
12✔
1144

1145
   const Botan::PKCS10_Request self_issued_req = Botan::X509::create_cert_req(opts, *user_key, hash_fn, rng);
12✔
1146

1147
   const Botan::X509_Certificate self_issued_cert =
12✔
1148
      ca.sign_request(self_issued_req, rng, from_date(-1, 01, 01), from_date(2, 01, 01));
12✔
1149

1150
   // check that this chain can can be verified successfully
1151
   const Botan::Certificate_Store_In_Memory trusted(ca.ca_certificate());
12✔
1152

1153
   const Botan::Path_Validation_Restrictions restrictions(false, 80);
24✔
1154

1155
   const Botan::Path_Validation_Result validation_result =
12✔
1156
      Botan::x509_path_validate(self_issued_cert, restrictions, trusted);
12✔
1157

1158
   result.confirm("chain with self-issued cert validates", validation_result.successful_validation());
24✔
1159

1160
   return result;
12✔
1161
}
24✔
1162

1163
Test::Result test_x509_uninit() {
1✔
1164
   Test::Result result("X509 object uninitialized access");
1✔
1165

1166
   Botan::X509_Certificate cert;
1✔
1167
   result.test_throws("uninitialized cert access causes exception", "X509_Certificate uninitialized", [&cert]() {
2✔
1168
      cert.x509_version();
1✔
1169
   });
1170

1171
   Botan::X509_CRL crl;
1✔
1172
   result.test_throws(
2✔
1173
      "uninitialized crl access causes exception", "X509_CRL uninitialized", [&crl]() { crl.crl_number(); });
2✔
1174

1175
   return result;
1✔
1176
}
1✔
1177

1178
Test::Result test_valid_constraints(const Botan::Private_Key& key, const std::string& pk_algo) {
19✔
1179
   using Botan::Key_Constraints;
19✔
1180

1181
   Test::Result result("X509 Valid Constraints " + pk_algo);
19✔
1182

1183
   result.confirm("empty constraints always acceptable", Key_Constraints().compatible_with(key));
38✔
1184

1185
   // Now check some typical usage scenarios for the given key type
1186
   // Taken from RFC 5280, sec. 4.2.1.3
1187
   // ALL constraints are not typical at all, but we use them for a negative test
1188
   const auto all = Key_Constraints(
19✔
1189
      Key_Constraints::DigitalSignature | Key_Constraints::NonRepudiation | Key_Constraints::KeyEncipherment |
1190
      Key_Constraints::DataEncipherment | Key_Constraints::KeyAgreement | Key_Constraints::KeyCertSign |
1191
      Key_Constraints::CrlSign | Key_Constraints::EncipherOnly | Key_Constraints::DecipherOnly);
19✔
1192

1193
   const auto ca = Key_Constraints(Key_Constraints::KeyCertSign);
19✔
1194
   const auto sign_data = Key_Constraints(Key_Constraints::DigitalSignature);
19✔
1195
   const auto non_repudiation = Key_Constraints(Key_Constraints::NonRepudiation | Key_Constraints::DigitalSignature);
19✔
1196
   const auto key_encipherment = Key_Constraints(Key_Constraints::KeyEncipherment);
19✔
1197
   const auto data_encipherment = Key_Constraints(Key_Constraints::DataEncipherment);
19✔
1198
   const auto key_agreement = Key_Constraints(Key_Constraints::KeyAgreement);
19✔
1199
   const auto key_agreement_encipher_only =
19✔
1200
      Key_Constraints(Key_Constraints::KeyAgreement | Key_Constraints::EncipherOnly);
19✔
1201
   const auto key_agreement_decipher_only =
19✔
1202
      Key_Constraints(Key_Constraints::KeyAgreement | Key_Constraints::DecipherOnly);
19✔
1203
   const auto crl_sign = Key_Constraints(Key_Constraints::CrlSign);
19✔
1204
   const auto sign_everything =
19✔
1205
      Key_Constraints(Key_Constraints::DigitalSignature | Key_Constraints::KeyCertSign | Key_Constraints::CrlSign);
19✔
1206

1207
   if(pk_algo == "DH" || pk_algo == "ECDH") {
19✔
1208
      // DH and ECDH only for key agreement
1209
      result.test_eq("all constraints not permitted", all.compatible_with(key), false);
2✔
1210
      result.test_eq("cert sign not permitted", ca.compatible_with(key), false);
2✔
1211
      result.test_eq("signature not permitted", sign_data.compatible_with(key), false);
2✔
1212
      result.test_eq("non repudiation not permitted", non_repudiation.compatible_with(key), false);
2✔
1213
      result.test_eq("key encipherment not permitted", key_encipherment.compatible_with(key), false);
2✔
1214
      result.test_eq("data encipherment not permitted", data_encipherment.compatible_with(key), false);
2✔
1215
      result.test_eq("usage acceptable", key_agreement.compatible_with(key), true);
2✔
1216
      result.test_eq("usage acceptable", key_agreement_encipher_only.compatible_with(key), true);
2✔
1217
      result.test_eq("usage acceptable", key_agreement_decipher_only.compatible_with(key), true);
2✔
1218
      result.test_eq("crl sign not permitted", crl_sign.compatible_with(key), false);
2✔
1219
      result.test_eq("sign", sign_everything.compatible_with(key), false);
4✔
1220
   } else if(pk_algo == "Kyber" || pk_algo == "FrodoKEM" || pk_algo == "ML-KEM" || pk_algo == "ClassicMcEliece") {
17✔
1221
      // KEMs can encrypt and agree
1222
      result.test_eq("all constraints not permitted", all.compatible_with(key), false);
4✔
1223
      result.test_eq("cert sign not permitted", ca.compatible_with(key), false);
4✔
1224
      result.test_eq("signature not permitted", sign_data.compatible_with(key), false);
4✔
1225
      result.test_eq("non repudiation not permitted", non_repudiation.compatible_with(key), false);
4✔
1226
      result.test_eq("crl sign not permitted", crl_sign.compatible_with(key), false);
4✔
1227
      result.test_eq("sign", sign_everything.compatible_with(key), false);
4✔
1228
      result.test_eq("key agreement not permitted", key_agreement.compatible_with(key), false);
4✔
1229
      result.test_eq("usage acceptable", data_encipherment.compatible_with(key), false);
4✔
1230
      result.test_eq("usage acceptable", key_encipherment.compatible_with(key), true);
8✔
1231
   } else if(pk_algo == "RSA") {
13✔
1232
      // RSA can do everything except key agreement
1233
      result.test_eq("all constraints not permitted", all.compatible_with(key), false);
1✔
1234

1235
      result.test_eq("usage acceptable", ca.compatible_with(key), true);
1✔
1236
      result.test_eq("usage acceptable", sign_data.compatible_with(key), true);
1✔
1237
      result.test_eq("usage acceptable", non_repudiation.compatible_with(key), true);
1✔
1238
      result.test_eq("usage acceptable", key_encipherment.compatible_with(key), true);
1✔
1239
      result.test_eq("usage acceptable", data_encipherment.compatible_with(key), true);
1✔
1240
      result.test_eq("key agreement not permitted", key_agreement.compatible_with(key), false);
1✔
1241
      result.test_eq("key agreement", key_agreement_encipher_only.compatible_with(key), false);
1✔
1242
      result.test_eq("key agreement", key_agreement_decipher_only.compatible_with(key), false);
1✔
1243
      result.test_eq("usage acceptable", crl_sign.compatible_with(key), true);
1✔
1244
      result.test_eq("usage acceptable", sign_everything.compatible_with(key), true);
2✔
1245
   } else if(pk_algo == "ElGamal") {
12✔
1246
      // only ElGamal encryption is currently implemented
1247
      result.test_eq("all constraints not permitted", all.compatible_with(key), false);
1✔
1248
      result.test_eq("cert sign not permitted", ca.compatible_with(key), false);
1✔
1249
      result.test_eq("data encipherment permitted", data_encipherment.compatible_with(key), true);
1✔
1250
      result.test_eq("key encipherment permitted", key_encipherment.compatible_with(key), true);
1✔
1251
      result.test_eq("key agreement not permitted", key_agreement.compatible_with(key), false);
1✔
1252
      result.test_eq("key agreement", key_agreement_encipher_only.compatible_with(key), false);
1✔
1253
      result.test_eq("key agreement", key_agreement_decipher_only.compatible_with(key), false);
1✔
1254
      result.test_eq("crl sign not permitted", crl_sign.compatible_with(key), false);
1✔
1255
      result.test_eq("sign", sign_everything.compatible_with(key), false);
2✔
1256
   } else if(pk_algo == "DSA" || pk_algo == "ECDSA" || pk_algo == "ECGDSA" || pk_algo == "ECKCDSA" ||
10✔
1257
             pk_algo == "GOST-34.10" || pk_algo == "Dilithium" || pk_algo == "ML-DSA" || pk_algo == "SLH-DSA" ||
18✔
1258
             pk_algo == "HSS-LMS") {
3✔
1259
      // these are signature algorithms only
1260
      result.test_eq("all constraints not permitted", all.compatible_with(key), false);
9✔
1261

1262
      result.test_eq("ca allowed", ca.compatible_with(key), true);
9✔
1263
      result.test_eq("sign allowed", sign_data.compatible_with(key), true);
9✔
1264
      result.test_eq("non-repudiation allowed", non_repudiation.compatible_with(key), true);
9✔
1265
      result.test_eq("key encipherment not permitted", key_encipherment.compatible_with(key), false);
9✔
1266
      result.test_eq("data encipherment not permitted", data_encipherment.compatible_with(key), false);
9✔
1267
      result.test_eq("key agreement not permitted", key_agreement.compatible_with(key), false);
9✔
1268
      result.test_eq("key agreement", key_agreement_encipher_only.compatible_with(key), false);
9✔
1269
      result.test_eq("key agreement", key_agreement_decipher_only.compatible_with(key), false);
9✔
1270
      result.test_eq("crl sign allowed", crl_sign.compatible_with(key), true);
9✔
1271
      result.test_eq("sign allowed", sign_everything.compatible_with(key), true);
18✔
1272
   }
1273

1274
   return result;
19✔
1275
}
×
1276

1277
/**
1278
 * @brief X.509v3 extension that encodes a given string
1279
 */
1280
class String_Extension final : public Botan::Certificate_Extension {
24✔
1281
   public:
1282
      String_Extension() = default;
24✔
1283

1284
      explicit String_Extension(const std::string& val) : m_contents(val) {}
12✔
1285

1286
      std::string value() const { return m_contents; }
48✔
1287

1288
      std::unique_ptr<Certificate_Extension> copy() const override {
×
1289
         return std::make_unique<String_Extension>(m_contents);
×
1290
      }
1291

1292
      Botan::OID oid_of() const override { return Botan::OID("1.2.3.4.5.6.7.8.9.1"); }
24✔
1293

1294
      bool should_encode() const override { return true; }
24✔
1295

1296
      std::string oid_name() const override { return "String Extension"; }
×
1297

1298
      std::vector<uint8_t> encode_inner() const override {
12✔
1299
         std::vector<uint8_t> bits;
12✔
1300
         Botan::DER_Encoder(bits).encode(Botan::ASN1_String(m_contents, Botan::ASN1_Type::Utf8String));
12✔
1301
         return bits;
12✔
1302
      }
×
1303

1304
      void decode_inner(const std::vector<uint8_t>& in) override {
24✔
1305
         Botan::ASN1_String str;
24✔
1306
         Botan::BER_Decoder(in).decode(str, Botan::ASN1_Type::Utf8String).verify_end();
24✔
1307
         m_contents = str.value();
24✔
1308
      }
24✔
1309

1310
   private:
1311
      std::string m_contents;
1312
};
1313

1314
Test::Result test_custom_dn_attr(const Botan::Private_Key& ca_key,
12✔
1315
                                 const std::string& sig_algo,
1316
                                 const std::string& sig_padding,
1317
                                 const std::string& hash_fn,
1318
                                 Botan::RandomNumberGenerator& rng) {
1319
   Test::Result result("X509 Custom DN");
12✔
1320

1321
   /* Create the self-signed cert */
1322
   Botan::X509_Certificate ca_cert = Botan::X509::create_self_signed_cert(ca_opts(sig_padding), ca_key, hash_fn, rng);
12✔
1323

1324
   /* Create the CA object */
1325
   Botan::X509_CA ca(ca_cert, ca_key, hash_fn, sig_padding, rng);
12✔
1326

1327
   auto user_key = make_a_private_key(sig_algo, rng);
12✔
1328

1329
   Botan::X509_DN subject_dn;
12✔
1330

1331
   const Botan::OID attr1(Botan::OID("1.3.6.1.4.1.25258.9.1.1"));
12✔
1332
   const Botan::OID attr2(Botan::OID("1.3.6.1.4.1.25258.9.1.2"));
12✔
1333
   const Botan::ASN1_String val1("Custom Attr 1", Botan::ASN1_Type::PrintableString);
12✔
1334
   const Botan::ASN1_String val2("12345", Botan::ASN1_Type::Utf8String);
12✔
1335

1336
   subject_dn.add_attribute(attr1, val1);
12✔
1337
   subject_dn.add_attribute(attr2, val2);
12✔
1338

1339
   Botan::Extensions extensions;
12✔
1340

1341
   Botan::PKCS10_Request req =
12✔
1342
      Botan::PKCS10_Request::create(*user_key, subject_dn, extensions, hash_fn, rng, sig_padding);
12✔
1343

1344
   const Botan::X509_DN& req_dn = req.subject_dn();
12✔
1345

1346
   result.test_eq("Expected number of DN entries", req_dn.dn_info().size(), 2);
12✔
1347

1348
   Botan::ASN1_String req_val1 = req_dn.get_first_attribute(attr1);
12✔
1349
   Botan::ASN1_String req_val2 = req_dn.get_first_attribute(attr2);
12✔
1350
   result.confirm("Attr1 matches encoded", req_val1 == val1);
24✔
1351
   result.confirm("Attr2 matches encoded", req_val2 == val2);
24✔
1352
   result.confirm("Attr1 tag matches encoded", req_val1.tagging() == val1.tagging());
24✔
1353
   result.confirm("Attr2 tag matches encoded", req_val2.tagging() == val2.tagging());
24✔
1354

1355
   Botan::X509_Time not_before("100301123001Z", Botan::ASN1_Type::UtcTime);
12✔
1356
   Botan::X509_Time not_after("300301123001Z", Botan::ASN1_Type::UtcTime);
12✔
1357

1358
   auto cert = ca.sign_request(req, rng, not_before, not_after);
12✔
1359

1360
   const Botan::X509_DN& cert_dn = cert.subject_dn();
12✔
1361

1362
   result.test_eq("Expected number of DN entries", cert_dn.dn_info().size(), 2);
12✔
1363

1364
   Botan::ASN1_String cert_val1 = cert_dn.get_first_attribute(attr1);
12✔
1365
   Botan::ASN1_String cert_val2 = cert_dn.get_first_attribute(attr2);
12✔
1366
   result.confirm("Attr1 matches encoded", cert_val1 == val1);
24✔
1367
   result.confirm("Attr2 matches encoded", cert_val2 == val2);
24✔
1368
   result.confirm("Attr1 tag matches encoded", cert_val1.tagging() == val1.tagging());
24✔
1369
   result.confirm("Attr2 tag matches encoded", cert_val2.tagging() == val2.tagging());
24✔
1370

1371
   return result;
12✔
1372
}
36✔
1373

1374
Test::Result test_x509_extensions(const Botan::Private_Key& ca_key,
12✔
1375
                                  const std::string& sig_algo,
1376
                                  const std::string& sig_padding,
1377
                                  const std::string& hash_fn,
1378
                                  Botan::RandomNumberGenerator& rng) {
1379
   using Botan::Key_Constraints;
12✔
1380

1381
   Test::Result result("X509 Extensions");
12✔
1382

1383
   /* Create the self-signed cert */
1384
   Botan::X509_Certificate ca_cert = Botan::X509::create_self_signed_cert(ca_opts(sig_padding), ca_key, hash_fn, rng);
12✔
1385

1386
   /* Create the CA object */
1387
   Botan::X509_CA ca(ca_cert, ca_key, hash_fn, sig_padding, rng);
12✔
1388

1389
   /* Prepare CDP extension */
1390
   std::vector<std::string> cdp_urls = {
12✔
1391
      "http://example.com/crl1.pem",
1392
      "ldap://ldap.example.com/cn=crl1,dc=example,dc=com?certificateRevocationList;binary"};
12✔
1393

1394
   std::vector<Botan::Cert_Extension::CRL_Distribution_Points::Distribution_Point> dps;
12✔
1395

1396
   for(const auto& uri : cdp_urls) {
36✔
1397
      Botan::AlternativeName cdp_alt_name;
24✔
1398
      cdp_alt_name.add_uri(uri);
24✔
1399
      Botan::Cert_Extension::CRL_Distribution_Points::Distribution_Point dp(cdp_alt_name);
24✔
1400

1401
      dps.emplace_back(dp);
24✔
1402
   }
24✔
1403

1404
   auto user_key = make_a_private_key(sig_algo, rng);
12✔
1405

1406
   Botan::X509_Cert_Options opts("Test User 1/US/Botan Project/Testing");
12✔
1407
   opts.constraints = Key_Constraints::DigitalSignature;
12✔
1408

1409
   // include a custom extension in the request
1410
   Botan::Extensions req_extensions;
12✔
1411
   const Botan::OID oid("1.2.3.4.5.6.7.8.9.1");
12✔
1412
   const Botan::OID ku_oid = Botan::OID::from_string("X509v3.KeyUsage");
12✔
1413
   req_extensions.add(std::make_unique<String_Extension>("AAAAAAAAAAAAAABCDEF"), false);
24✔
1414
   req_extensions.add(std::make_unique<Botan::Cert_Extension::CRL_Distribution_Points>(dps));
24✔
1415
   opts.extensions = req_extensions;
12✔
1416
   opts.set_padding_scheme(sig_padding);
12✔
1417

1418
   /* Create a self-signed certificate */
1419
   const Botan::X509_Certificate self_signed_cert = Botan::X509::create_self_signed_cert(opts, *user_key, hash_fn, rng);
12✔
1420

1421
   result.confirm("Extensions::extension_set true for Key_Usage",
24✔
1422
                  self_signed_cert.v3_extensions().extension_set(ku_oid));
12✔
1423

1424
   // check if known Key_Usage extension is present in self-signed cert
1425
   auto key_usage_ext = self_signed_cert.v3_extensions().get(ku_oid);
12✔
1426
   if(result.confirm("Key_Usage extension present in self-signed certificate", key_usage_ext != nullptr)) {
24✔
1427
      result.confirm(
24✔
1428
         "Key_Usage extension value matches in self-signed certificate",
1429
         dynamic_cast<Botan::Cert_Extension::Key_Usage&>(*key_usage_ext).get_constraints() == opts.constraints);
12✔
1430
   }
1431

1432
   // check if custom extension is present in self-signed cert
1433
   auto string_ext = self_signed_cert.v3_extensions().get_raw<String_Extension>(oid);
12✔
1434
   if(result.confirm("Custom extension present in self-signed certificate", string_ext != nullptr)) {
24✔
1435
      result.test_eq(
48✔
1436
         "Custom extension value matches in self-signed certificate", string_ext->value(), "AAAAAAAAAAAAAABCDEF");
36✔
1437
   }
1438

1439
   // check if CDPs are present in the self-signed cert
1440
   auto cert_cdps =
12✔
1441
      self_signed_cert.v3_extensions().get_extension_object_as<Botan::Cert_Extension::CRL_Distribution_Points>();
24✔
1442

1443
   if(result.confirm("CRL Distribution Points extension present in self-signed certificate",
24✔
1444
                     !cert_cdps->crl_distribution_urls().empty())) {
12✔
1445
      for(const auto& cdp : cert_cdps->distribution_points()) {
36✔
1446
         result.confirm("CDP URI present in self-signed certificate",
48✔
1447
                        std::ranges::find(cdp_urls, cdp.point().get_first_attribute("URI")) != cdp_urls.end());
72✔
1448
      }
1449
   }
1450

1451
   const Botan::PKCS10_Request user_req = Botan::X509::create_cert_req(opts, *user_key, hash_fn, rng);
12✔
1452

1453
   /* Create a CA-signed certificate */
1454
   const Botan::X509_Certificate ca_signed_cert =
12✔
1455
      ca.sign_request(user_req, rng, from_date(-1, 01, 01), from_date(2, 01, 01));
12✔
1456

1457
   // check if known Key_Usage extension is present in CA-signed cert
1458
   result.confirm("Extensions::extension_set true for Key_Usage", ca_signed_cert.v3_extensions().extension_set(ku_oid));
24✔
1459

1460
   key_usage_ext = ca_signed_cert.v3_extensions().get(ku_oid);
24✔
1461
   if(result.confirm("Key_Usage extension present in CA-signed certificate", key_usage_ext != nullptr)) {
24✔
1462
      auto constraints = dynamic_cast<Botan::Cert_Extension::Key_Usage&>(*key_usage_ext).get_constraints();
12✔
1463
      result.confirm("Key_Usage extension value matches in user certificate",
24✔
1464
                     constraints == Botan::Key_Constraints::DigitalSignature);
12✔
1465
   }
1466

1467
   // check if custom extension is present in CA-signed cert
1468
   result.confirm("Extensions::extension_set true for String_Extension",
24✔
1469
                  ca_signed_cert.v3_extensions().extension_set(oid));
12✔
1470
   string_ext = ca_signed_cert.v3_extensions().get_raw<String_Extension>(oid);
24✔
1471
   if(result.confirm("Custom extension present in CA-signed certificate", string_ext != nullptr)) {
24✔
1472
      result.test_eq(
48✔
1473
         "Custom extension value matches in CA-signed certificate", string_ext->value(), "AAAAAAAAAAAAAABCDEF");
36✔
1474
   }
1475

1476
   // check if CDPs are present in the CA-signed cert
1477
   cert_cdps = ca_signed_cert.v3_extensions().get_extension_object_as<Botan::Cert_Extension::CRL_Distribution_Points>();
24✔
1478

1479
   if(result.confirm("CRL Distribution Points extension present in self-signed certificate",
24✔
1480
                     !cert_cdps->crl_distribution_urls().empty())) {
12✔
1481
      for(const auto& cdp : cert_cdps->distribution_points()) {
36✔
1482
         result.confirm("CDP URI present in self-signed certificate",
48✔
1483
                        std::ranges::find(cdp_urls, cdp.point().get_first_attribute("URI")) != cdp_urls.end());
72✔
1484
      }
1485
   }
1486

1487
   return result;
12✔
1488
}
60✔
1489

1490
Test::Result test_hashes(const Botan::Private_Key& key, const std::string& hash_fn, Botan::RandomNumberGenerator& rng) {
12✔
1491
   Test::Result result("X509 Hashes");
12✔
1492

1493
   struct TestData {
12✔
1494
         const std::string issuer, subject, issuer_hash, subject_hash;
1495
   } const cases[]{{"",
12✔
1496
                    "",
1497
                    "E4F60D0AA6D7F3D3B6A6494B1C861B99F649C6F9EC51ABAF201B20F297327C95",
1498
                    "E4F60D0AA6D7F3D3B6A6494B1C861B99F649C6F9EC51ABAF201B20F297327C95"},
1499
                   {"a",
1500
                    "b",
1501
                    "BC2E013472F39AC579964880E422737C82BA812CB8BC2FD17E013060D71E6E19",
1502
                    "5E31CFAA3FAFB1A5BA296A0D2BAB9CA44D7936E9BF0BBC54637D0C53DBC4A432"},
1503
                   {"A",
1504
                    "B",
1505
                    "4B3206201C4BC9B6CD6C36532A97687DF9238155D99ADB60C66BF2B2220643D8",
1506
                    "FFF635A52A16618B4A0E9CD26B5E5A2FA573D343C051E6DE8B0811B1ACC89B86"},
1507
                   {
1508
                      "Test Issuer/US/Botan Project/Testing",
1509
                      "Test Subject/US/Botan Project/Testing",
1510
                      "ACB4F373004A56A983A23EB8F60FA4706312B5DB90FD978574FE7ACC84E093A5",
1511
                      "87039231C2205B74B6F1F3830A66272C0B41F71894B03AC3150221766D95267B",
1512
                   },
1513
                   {
1514
                      "Test Subject/US/Botan Project/Testing",
1515
                      "Test Issuer/US/Botan Project/Testing",
1516
                      "87039231C2205B74B6F1F3830A66272C0B41F71894B03AC3150221766D95267B",
1517
                      "ACB4F373004A56A983A23EB8F60FA4706312B5DB90FD978574FE7ACC84E093A5",
1518
                   }};
72✔
1519

1520
   for(const auto& a : cases) {
72✔
1521
      Botan::X509_Cert_Options opts{a.issuer};
60✔
1522
      opts.CA_key();
60✔
1523

1524
      const Botan::X509_Certificate issuer_cert = Botan::X509::create_self_signed_cert(opts, key, hash_fn, rng);
60✔
1525

1526
      result.test_eq(a.issuer, Botan::hex_encode(issuer_cert.raw_issuer_dn_sha256()), a.issuer_hash);
120✔
1527
      result.test_eq(a.issuer, Botan::hex_encode(issuer_cert.raw_subject_dn_sha256()), a.issuer_hash);
120✔
1528

1529
      const Botan::X509_CA ca(issuer_cert, key, hash_fn, rng);
60✔
1530
      const Botan::PKCS10_Request req =
60✔
1531
         Botan::X509::create_cert_req(Botan::X509_Cert_Options(a.subject), key, hash_fn, rng);
60✔
1532
      const Botan::X509_Certificate subject_cert =
60✔
1533
         ca.sign_request(req, rng, from_date(-1, 01, 01), from_date(2, 01, 01));
60✔
1534

1535
      result.test_eq(a.subject, Botan::hex_encode(subject_cert.raw_issuer_dn_sha256()), a.issuer_hash);
120✔
1536
      result.test_eq(a.subject, Botan::hex_encode(subject_cert.raw_subject_dn_sha256()), a.subject_hash);
120✔
1537
   }
60✔
1538
   return result;
12✔
1539
}
72✔
1540

1541
   #if defined(BOTAN_TARGET_OS_HAS_FILESYSTEM)
1542

1543
Test::Result test_x509_tn_auth_list_extension_decode() {
1✔
1544
   /* cert with TNAuthList extension data was generated by asn1parse cfg:
1545

1546
      asn1=SEQUENCE:tn_auth_list
1547

1548
      [tn_auth_list]
1549
      spc=EXP:0,IA5:1001
1550
      range=EXP:1,SEQUENCE:TelephoneNumberRange
1551
      one=EXP:2,IA5:333
1552

1553
      [TelephoneNumberRange]
1554
      start1=IA5:111
1555
      count1=INT:128
1556
      start2=IA5:222
1557
      count2=INT:256
1558
    */
1559
   const std::string filename("TNAuthList.pem");
1✔
1560
   Test::Result result("X509 TNAuthList decode");
1✔
1561
   result.start_timer();
1✔
1562

1563
   Botan::X509_Certificate cert(Test::data_file("x509/x509test/" + filename));
2✔
1564

1565
   using Botan::Cert_Extension::TNAuthList;
1✔
1566

1567
   auto tn_auth_list = cert.v3_extensions().get_extension_object_as<TNAuthList>();
1✔
1568

1569
   auto& tn_entries = tn_auth_list->entries();
1✔
1570

1571
   result.confirm("cert has TNAuthList extension", tn_auth_list != nullptr, true);
2✔
1572

1573
   result.test_throws("wrong telephone_number_range() accessor for spc",
2✔
1574
                      [&tn_entries] { tn_entries[0].telephone_number_range(); });
2✔
1575
   result.test_throws("wrong telephone_number() accessor for range",
2✔
1576
                      [&tn_entries] { tn_entries[1].telephone_number(); });
2✔
1577
   result.test_throws("wrong service_provider_code() accessor for one",
2✔
1578
                      [&tn_entries] { tn_entries[2].service_provider_code(); });
2✔
1579

1580
   result.test_eq("spc entry type", tn_entries[0].type() == TNAuthList::Entry::ServiceProviderCode, true);
1✔
1581
   result.test_eq("spc entry data", tn_entries[0].service_provider_code(), "1001");
2✔
1582

1583
   result.test_eq("range entry type", tn_entries[1].type() == TNAuthList::Entry::TelephoneNumberRange, true);
1✔
1584
   auto& range = tn_entries[1].telephone_number_range();
1✔
1585
   result.test_eq("range entries count", range.size(), 2);
1✔
1586
   result.test_eq("range entry 0 start data", range[0].start.value(), "111");
2✔
1587
   result.test_eq("range entry 0 count data", range[0].count, 128);
1✔
1588
   result.test_eq("range entry 1 start data", range[1].start.value(), "222");
2✔
1589
   result.test_eq("range entry 1 count data", range[1].count, 256);
1✔
1590

1591
   result.test_eq("one entry type", tn_entries[2].type() == TNAuthList::Entry::TelephoneNumber, true);
1✔
1592
   result.test_eq("one entry data", tn_entries[2].telephone_number(), "333");
2✔
1593

1594
   result.end_timer();
1✔
1595
   return result;
2✔
1596
}
1✔
1597

1598
   #endif
1599

1600
std::vector<std::string> get_sig_paddings(const std::string& sig_algo, const std::string& hash) {
12✔
1601
   if(sig_algo == "RSA") {
12✔
1602
      return {"EMSA3(" + hash + ")", "EMSA4(" + hash + ")"};
5✔
1603
   } else if(sig_algo == "DSA" || sig_algo == "ECDSA" || sig_algo == "ECGDSA" || sig_algo == "ECKCDSA" ||
11✔
1604
             sig_algo == "GOST-34.10") {
7✔
1605
      return {hash};
10✔
1606
   } else if(sig_algo == "Ed25519" || sig_algo == "Ed448") {
6✔
1607
      return {"Pure"};
2✔
1608
   } else if(sig_algo == "Dilithium" || sig_algo == "ML-DSA") {
4✔
1609
      return {"Randomized"};
2✔
1610
   } else if(sig_algo == "HSS-LMS") {
2✔
1611
      return {""};
1✔
1612
   } else {
1613
      return {};
1✔
1614
   }
1615
}
7✔
1616

1617
class X509_Cert_Unit_Tests final : public Test {
×
1618
   public:
1619
      std::vector<Test::Result> run() override {
1✔
1620
         std::vector<Test::Result> results;
1✔
1621

1622
         auto& rng = this->rng();
1✔
1623

1624
         const std::string sig_algos[]{"RSA",
1✔
1625
                                       "DSA",
1626
                                       "ECDSA",
1627
                                       "ECGDSA",
1628
                                       "ECKCDSA",
1629
                                       "GOST-34.10",
1630
                                       "Ed25519",
1631
                                       "Ed448",
1632
                                       "Dilithium",
1633
                                       "ML-DSA",
1634
                                       "SLH-DSA",
1635
                                       "HSS-LMS"};
13✔
1636

1637
         for(const std::string& algo : sig_algos) {
13✔
1638
   #if !defined(BOTAN_HAS_EMSA_PKCS1)
1639
            if(algo == "RSA")
1640
               continue;
1641
   #endif
1642

1643
            std::string hash = "SHA-256";
12✔
1644

1645
            if(algo == "Ed25519") {
12✔
1646
               hash = "SHA-512";
1✔
1647
            }
1648
            if(algo == "Ed448") {
12✔
1649
               hash = "SHAKE-256(912)";
1✔
1650
            }
1651
            if(algo == "Dilithium" || algo == "ML-DSA") {
12✔
1652
               hash = "SHAKE-256(512)";
2✔
1653
            }
1654

1655
            auto key = make_a_private_key(algo, rng);
12✔
1656

1657
            if(key == nullptr) {
12✔
1658
               continue;
×
1659
            }
1660

1661
            results.push_back(test_hashes(*key, hash, rng));
24✔
1662
            results.push_back(test_valid_constraints(*key, algo));
24✔
1663

1664
            Test::Result usage_result("X509 Usage");
12✔
1665
            try {
12✔
1666
               usage_result.merge(test_usage(*key, algo, hash, rng));
12✔
1667
            } catch(std::exception& e) {
×
1668
               usage_result.test_failure("test_usage " + algo, e.what());
×
1669
            }
×
1670
            results.push_back(usage_result);
12✔
1671

1672
            for(const auto& padding_scheme : get_sig_paddings(algo, hash)) {
24✔
1673
               Test::Result cert_result("X509 Unit");
12✔
1674

1675
               try {
12✔
1676
                  cert_result.merge(test_x509_cert(*key, algo, padding_scheme, hash, rng));
12✔
1677
               } catch(std::exception& e) {
×
1678
                  cert_result.test_failure("test_x509_cert " + algo, e.what());
×
1679
               }
×
1680
               results.push_back(cert_result);
12✔
1681

1682
               Test::Result pkcs10_result("PKCS10 extensions");
12✔
1683
               try {
12✔
1684
                  pkcs10_result.merge(test_pkcs10_ext(*key, padding_scheme, hash, rng));
12✔
1685
               } catch(std::exception& e) {
×
1686
                  pkcs10_result.test_failure("test_pkcs10_ext " + algo, e.what());
×
1687
               }
×
1688
               results.push_back(pkcs10_result);
12✔
1689

1690
               Test::Result self_issued_result("X509 Self Issued");
12✔
1691
               try {
12✔
1692
                  self_issued_result.merge(test_self_issued(*key, algo, padding_scheme, hash, rng));
12✔
1693
               } catch(std::exception& e) {
×
1694
                  self_issued_result.test_failure("test_self_issued " + algo, e.what());
×
1695
               }
×
1696
               results.push_back(self_issued_result);
12✔
1697

1698
               Test::Result extensions_result("X509 Extensions");
12✔
1699
               try {
12✔
1700
                  extensions_result.merge(test_x509_extensions(*key, algo, padding_scheme, hash, rng));
12✔
1701
               } catch(std::exception& e) {
×
1702
                  extensions_result.test_failure("test_extensions " + algo, e.what());
×
1703
               }
×
1704
               results.push_back(extensions_result);
12✔
1705

1706
               Test::Result custom_dn_result("X509 Custom DN");
12✔
1707
               try {
12✔
1708
                  custom_dn_result.merge(test_custom_dn_attr(*key, algo, padding_scheme, hash, rng));
12✔
1709
               } catch(std::exception& e) {
×
1710
                  custom_dn_result.test_failure("test_custom_dn_attr " + algo, e.what());
×
1711
               }
×
1712
               results.push_back(custom_dn_result);
12✔
1713
            }
24✔
1714
         }
24✔
1715

1716
         /*
1717
         These are algos which cannot sign but can be included in certs
1718
         */
1719
         const std::vector<std::string> enc_algos = {
1✔
1720
            "DH", "ECDH", "ElGamal", "Kyber", "ML-KEM", "FrodoKEM", "ClassicMcEliece"};
1✔
1721

1722
         for(const std::string& algo : enc_algos) {
8✔
1723
            auto key = make_a_private_key(algo, rng);
7✔
1724

1725
            if(key) {
7✔
1726
               results.push_back(test_valid_constraints(*key, algo));
14✔
1727
            }
1728
         }
7✔
1729

1730
   #if defined(BOTAN_TARGET_OS_HAS_FILESYSTEM) && defined(BOTAN_HAS_EMSA_PKCS1) && defined(BOTAN_HAS_EMSA_PSSR) && \
1731
      defined(BOTAN_HAS_RSA)
1732
         Test::Result pad_config_result("X509 Padding Config");
1✔
1733
         try {
1✔
1734
            pad_config_result.merge(test_padding_config());
1✔
1735
         } catch(const std::exception& e) {
×
1736
            pad_config_result.test_failure("test_padding_config", e.what());
×
1737
         }
×
1738
         results.push_back(pad_config_result);
1✔
1739
   #endif
1740

1741
   #if defined(BOTAN_TARGET_OS_HAS_FILESYSTEM)
1742
         results.push_back(test_x509_utf8());
2✔
1743
         results.push_back(test_x509_bmpstring());
2✔
1744
         results.push_back(test_x509_teletex());
2✔
1745
         results.push_back(test_crl_dn_name());
2✔
1746
         results.push_back(test_rdn_multielement_set_name());
2✔
1747
         results.push_back(test_x509_decode_list());
2✔
1748
         results.push_back(test_rsa_oaep());
2✔
1749
         results.push_back(test_x509_authority_info_access_extension());
2✔
1750
         results.push_back(test_verify_gost2012_cert());
2✔
1751
         results.push_back(test_parse_rsa_pss_cert());
2✔
1752
         results.push_back(test_x509_tn_auth_list_extension_decode());
2✔
1753
   #endif
1754

1755
         results.push_back(test_x509_encode_authority_info_access_extension());
2✔
1756
         results.push_back(test_x509_extension());
2✔
1757
         results.push_back(test_x509_dates());
2✔
1758
         results.push_back(test_cert_status_strings());
2✔
1759
         results.push_back(test_x509_uninit());
2✔
1760

1761
         return results;
1✔
1762
      }
13✔
1763
};
1764

1765
BOTAN_REGISTER_TEST("x509", "x509_unit", X509_Cert_Unit_Tests);
1766

1767
#endif
1768

1769
}  // namespace
1770

1771
}  // namespace Botan_Tests
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