• Home
  • Features
  • Pricing
  • Docs
  • Announcements
  • Sign In

randombit / botan / 30877393968

03 Aug 2026 09:14PM UTC coverage: 89.662% (+0.03%) from 89.631%
30877393968

push

github

web-flow
Merge pull request #5787 from randombit/jack/dtls-test-refactor

Refactor DTLS test code

118818 of 132518 relevant lines covered (89.66%)

10493152.19 hits per line

Source File
Press 'n' to go to next uncovered line, 'b' for previous

91.56
/src/tests/unit_tls.cpp
1
/*
2
* (C) 2014,2015,2018 Jack Lloyd
3
*     2016 Matthias Gierlings
4
*     2017 René Korthaus, Rohde & Schwarz Cybersecurity
5
*     2017 Harry Reimann, Rohde & Schwarz Cybersecurity
6
*     2023 René Meusel, Rohde & Schwarz Cybersecurity
7
*     2026 René Meusel, Rohde & Schwarz Networks and Cybersecurity
8
*     2025 Lars Dürkop, CARIAD SE
9
*
10
* Botan is released under the Simplified BSD License (see license.txt)
11
*/
12

13
#include "tests.h"
14
#include <chrono>
15
#include <memory>
16
#include <vector>
17

18
#if defined(BOTAN_HAS_TLS) && defined(BOTAN_HAS_RSA)
19

20
   #include <botan/certstor.h>
21
   #include <botan/dl_group.h>
22
   #include <botan/rng.h>
23
   #include <botan/tls_callbacks.h>
24
   #include <botan/tls_client.h>
25
   #include <botan/tls_exceptn.h>
26
   #include <botan/tls_extensions.h>
27
   #include <botan/tls_external_psk.h>
28
   #include <botan/tls_policy.h>
29
   #include <botan/tls_server.h>
30
   #include <botan/tls_session_manager_memory.h>
31
   #include <botan/tls_session_manager_noop.h>
32
   #include <botan/internal/stl_util.h>
33
   #include <botan/internal/tls_reader.h>
34

35
   #include <botan/ec_group.h>
36
   #include <botan/ecdh.h>
37
   #include <botan/ecdsa.h>
38
   #include <botan/hex.h>
39
   #include <botan/pk_ops.h>
40
   #include <botan/pkcs10.h>
41
   #include <botan/rsa.h>
42
   #include <botan/x509_ca.h>
43
   #include <botan/x509self.h>
44

45
   #if defined(BOTAN_HAS_TLS_SQLITE3_SESSION_MANAGER)
46
      #include <botan/tls_session_manager_sqlite.h>
47
   #endif
48

49
#endif
50

51
namespace Botan_Tests {
52

53
namespace {
54

55
#if defined(BOTAN_HAS_TLS) && defined(BOTAN_HAS_RSA)
56

57
class Credentials_Manager_Test final : public Botan::Credentials_Manager {
58
   public:
59
      Credentials_Manager_Test(bool with_client_certs,
2✔
60
                               const Botan::X509_Certificate& rsa_cert,
61
                               Botan::Private_Key* rsa_key,
62
                               const Botan::X509_Certificate& rsa_ca,
63
                               const Botan::X509_CRL& rsa_crl,
64
                               const Botan::X509_Certificate& ecdsa_cert,
65
                               Botan::Private_Key* ecdsa_key,
66
                               const Botan::X509_Certificate& ecdsa_ca,
67
                               const Botan::X509_CRL& ecdsa_crl) :
2✔
68
            m_rsa_cert(rsa_cert),
2✔
69
            m_rsa_ca(rsa_ca),
2✔
70
            m_rsa_key(rsa_key),
2✔
71
            m_ecdsa_cert(ecdsa_cert),
2✔
72
            m_ecdsa_ca(ecdsa_ca),
2✔
73
            m_ecdsa_key(ecdsa_key),
2✔
74
            m_provides_client_certs(with_client_certs) {
4✔
75
         auto store = std::make_unique<Botan::Certificate_Store_In_Memory>();
2✔
76
         store->add_certificate(m_rsa_ca);
2✔
77
         store->add_certificate(m_ecdsa_ca);
2✔
78
         store->add_crl(rsa_crl);
2✔
79
         store->add_crl(ecdsa_crl);
2✔
80

81
         m_stores.push_back(std::move(store));
2✔
82
      }
2✔
83

84
      std::vector<Botan::Certificate_Store*> trusted_certificate_authorities(const std::string& /*type*/,
203✔
85
                                                                             const std::string& /*context*/) override {
86
         std::vector<Botan::Certificate_Store*> v;
203✔
87
         v.reserve(m_stores.size());
203✔
88
         for(const auto& store : m_stores) {
406✔
89
            v.push_back(store.get());
203✔
90
         }
91
         return v;
203✔
92
      }
×
93

94
      std::vector<Botan::X509_Certificate> find_cert_chain(const std::vector<std::string>& cert_key_types,
267✔
95
                                                           const std::vector<Botan::AlgorithmIdentifier>& /*unused*/,
96
                                                           const std::vector<Botan::X509_DN>& acceptable_CAs,
97
                                                           const std::string& type,
98
                                                           const std::string& context) override {
99
         BOTAN_UNUSED(context);
267✔
100
         std::vector<Botan::X509_Certificate> chain;
267✔
101

102
         if(m_acceptable_cas.empty()) {
267✔
103
            m_acceptable_cas = acceptable_CAs;
10✔
104
         }
105

106
         if(type == "tls-server" || (type == "tls-client" && m_provides_client_certs)) {
267✔
107
            for(const auto& key_type : cert_key_types) {
188✔
108
               if(key_type == "RSA") {
188✔
109
                  chain.push_back(m_rsa_cert);
83✔
110
                  chain.push_back(m_rsa_ca);
83✔
111
                  break;
112
               } else if(key_type == "ECDSA") {
105✔
113
                  chain.push_back(m_ecdsa_cert);
105✔
114
                  chain.push_back(m_ecdsa_ca);
105✔
115
                  break;
116
               }
117
            }
118
         }
119

120
         return chain;
267✔
121
      }
×
122

123
      std::shared_ptr<Botan::Private_Key> private_key_for(const Botan::X509_Certificate& crt,
98✔
124
                                                          const std::string& /*type*/,
125
                                                          const std::string& /*context*/) override {
126
         if(crt == m_rsa_cert) {
98✔
127
            return m_rsa_key;
19✔
128
         }
129
         if(crt == m_ecdsa_cert) {
79✔
130
            return m_ecdsa_key;
79✔
131
         }
132
         return nullptr;
×
133
      }
134

135
      Botan::secure_vector<uint8_t> session_ticket_key() override {
×
136
         return Botan::hex_decode_locked("AABBCCDDEEFF012345678012345678");
×
137
      }
138

139
      Botan::secure_vector<uint8_t> dtls_cookie_secret() override {
138✔
140
         return Botan::hex_decode_locked("4AEA5EAD279CADEB537A594DA0E9DE3A");
276✔
141
      }
142

143
      std::vector<Botan::TLS::ExternalPSK> find_preshared_keys(
61✔
144
         std::string_view host,
145
         Botan::TLS::Connection_Side whoami,
146
         const std::vector<std::string>& identities = {},
147
         const std::optional<std::string>& prf = std::nullopt) override {
148
         if(identities.empty()) {
61✔
149
            return Botan::Credentials_Manager::find_preshared_keys(host, whoami, identities, prf);
41✔
150
         }
151

152
         std::vector<Botan::TLS::ExternalPSK> psks;
20✔
153

154
         if(host == "server.example.com") {
20✔
155
            // PSKs for server and client are equal. For the sake of clarity,
156
            // we're not simplifying this code further
157
            if(whoami == Botan::TLS::Connection_Side::Client) {
20✔
158
               psks.emplace_back(
10✔
159
                  std::string{}, "SHA-256", Botan::hex_decode_locked("20B602D1475F2DF888FCB60D2AE03AFD"));
20✔
160
            }
161

162
            if(whoami == Botan::TLS::Connection_Side::Server) {
20✔
163
               psks.emplace_back(
10✔
164
                  std::string{}, "SHA-256", Botan::hex_decode_locked("20B602D1475F2DF888FCB60D2AE03AFD"));
20✔
165
            }
166
         }
167

168
         return psks;
20✔
169
      }
20✔
170

171
      const std::vector<Botan::X509_DN>& get_acceptable_cas() const { return m_acceptable_cas; }
6✔
172

173
   private:
174
      Botan::X509_Certificate m_rsa_cert, m_rsa_ca;
175
      std::shared_ptr<Botan::Private_Key> m_rsa_key;
176

177
      Botan::X509_Certificate m_ecdsa_cert, m_ecdsa_ca;
178
      std::shared_ptr<Botan::Private_Key> m_ecdsa_key;
179

180
      std::vector<std::unique_ptr<Botan::Certificate_Store>> m_stores;
181
      bool m_provides_client_certs;
182
      std::vector<Botan::X509_DN> m_acceptable_cas;
183
};
184

185
std::shared_ptr<Credentials_Manager_Test> create_creds(Botan::RandomNumberGenerator& rng,
2✔
186
                                                       bool with_client_certs = false) {
187
   // RSA and ECDSA are required for the TLS module, but we need to find an
188
   // ECC group that is supported in this build or skip this test.
189
   //
190
   // secp256r1 is excluded because the Strict_Policy requires at least SHA-384
191
   // and TLS 1.3 enforces that hash lengths match the key strength.
192
   const auto ec_group = Test::supported_ec_group_name({"secp384r1", "secp521r1"});
2✔
193
   if(!ec_group) {
2✔
194
      return nullptr;
×
195
   }
196

197
   const auto ecdsa_params = Botan::EC_Group::from_name(*ec_group);
2✔
198
   const size_t rsa_params = 1024;
2✔
199

200
   auto rsa_ca_key = std::make_unique<Botan::RSA_PrivateKey>(rng, rsa_params);
2✔
201
   auto rsa_srv_key = std::make_unique<Botan::RSA_PrivateKey>(rng, rsa_params);
2✔
202

203
   auto ecdsa_ca_key = std::make_unique<Botan::ECDSA_PrivateKey>(rng, ecdsa_params);
2✔
204
   auto ecdsa_srv_key = std::make_unique<Botan::ECDSA_PrivateKey>(rng, ecdsa_params);
2✔
205

206
   Botan::X509_Cert_Options rsa_ca_opts("RSA Test CA/VT");
2✔
207
   Botan::X509_Cert_Options ecdsa_ca_opts("ECDSA Test CA/VT");
2✔
208
   rsa_ca_opts.CA_key(1);
2✔
209
   ecdsa_ca_opts.CA_key(1);
2✔
210

211
   const Botan::X509_Certificate rsa_ca_cert =
2✔
212
      Botan::X509::create_self_signed_cert(rsa_ca_opts, *rsa_ca_key, "SHA-256", rng);
2✔
213
   const Botan::X509_Certificate ecdsa_ca_cert =
2✔
214
      Botan::X509::create_self_signed_cert(ecdsa_ca_opts, *ecdsa_ca_key, "SHA-256", rng);
2✔
215

216
   const Botan::X509_Cert_Options server_opts("server.example.com");
2✔
217

218
   const Botan::PKCS10_Request rsa_req = Botan::X509::create_cert_req(server_opts, *rsa_srv_key, "SHA-256", rng);
2✔
219
   const Botan::PKCS10_Request ecdsa_req = Botan::X509::create_cert_req(server_opts, *ecdsa_srv_key, "SHA-256", rng);
2✔
220

221
   const Botan::X509_CA rsa_ca(rsa_ca_cert, *rsa_ca_key, "SHA-256", rng);
2✔
222
   const Botan::X509_CA ecdsa_ca(ecdsa_ca_cert, *ecdsa_ca_key, "SHA-256", rng);
2✔
223

224
   typedef std::chrono::duration<int, std::ratio<31556926>> years;
2✔
225
   auto now = std::chrono::system_clock::now();
2✔
226

227
   const Botan::X509_Time start_time(now);
2✔
228
   const Botan::X509_Time end_time(now + years(1));
2✔
229

230
   const Botan::X509_Certificate rsa_srv_cert = rsa_ca.sign_request(rsa_req, rng, start_time, end_time);
2✔
231
   const Botan::X509_Certificate ecdsa_srv_cert = ecdsa_ca.sign_request(ecdsa_req, rng, start_time, end_time);
2✔
232

233
   const Botan::X509_CRL rsa_crl = rsa_ca.new_crl(rng);
2✔
234
   const Botan::X509_CRL ecdsa_crl = ecdsa_ca.new_crl(rng);
2✔
235

236
   return std::make_shared<Credentials_Manager_Test>(with_client_certs,
2✔
237
                                                     rsa_srv_cert,
238
                                                     rsa_srv_key.release(),
4✔
239
                                                     rsa_ca_cert,
240
                                                     rsa_crl,
241
                                                     ecdsa_srv_cert,
242
                                                     ecdsa_srv_key.release(),
2✔
243
                                                     ecdsa_ca_cert,
244
                                                     ecdsa_crl);
2✔
245
}
6✔
246

247
class TLS_Handshake_Test final {
248
   private:
249
      using generate_ephemeral_ecdh_key_clbk = std::function<std::unique_ptr<Botan::PK_Key_Agreement_Key>(
250
         Botan::TLS::Group_Params, Botan::RandomNumberGenerator&, Botan::EC_Point_Format)>;
251
      using ephemeral_key_agreement_clbk =
252
         std::function<Botan::secure_vector<uint8_t>(const std::variant<Botan::TLS::Group_Params, Botan::DL_Group>&,
253
                                                     const Botan::PK_Key_Agreement_Key&,
254
                                                     const std::vector<uint8_t>&,
255
                                                     Botan::RandomNumberGenerator&,
256
                                                     const Botan::TLS::Policy&)>;
257
      using custom_kdf_clbk = std::function<std::unique_ptr<Botan::KDF>(std::string_view)>;
258

259
   public:
260
      TLS_Handshake_Test(const std::string& test_descr,
182✔
261
                         Botan::TLS::Protocol_Version offer_version,
262
                         const std::shared_ptr<Credentials_Manager_Test>& creds,
263
                         const std::shared_ptr<const Botan::TLS::Policy>& client_policy,
264
                         const std::shared_ptr<const Botan::TLS::Policy>& server_policy,
265
                         const std::shared_ptr<Botan::RandomNumberGenerator>& rng,
266
                         const std::shared_ptr<Botan::TLS::Session_Manager>& client_sessions,
267
                         const std::shared_ptr<Botan::TLS::Session_Manager>& server_sessions,
268
                         bool expect_client_auth) :
182✔
269
            m_offer_version(offer_version),
182✔
270
            m_results(test_descr),
182✔
271
            m_creds(creds),
182✔
272
            m_client_policy(client_policy),
182✔
273
            m_client_sessions(client_sessions),
182✔
274
            m_rng(rng),
182✔
275
            m_client_auth(expect_client_auth) {
182✔
276
         m_server_cb = std::make_shared<Test_Callbacks>(m_results, offer_version, m_s2c, m_server_recv);
182✔
277
         m_client_cb = std::make_shared<Test_Callbacks>(m_results, offer_version, m_c2s, m_client_recv);
182✔
278

279
         const bool is_dtls = offer_version.is_datagram_protocol();
182✔
280

281
         m_server =
182✔
282
            std::make_unique<Botan::TLS::Server>(m_server_cb, server_sessions, m_creds, server_policy, m_rng, is_dtls);
182✔
283
      }
182✔
284

285
      void go();
286

287
      const Test::Result& results() const { return m_results; }
288

289
      Test::Result& results() { return m_results; }
211✔
290

291
      void set_custom_client_tls_session_established_callback(
9✔
292
         std::function<void(const Botan::TLS::Session_Summary&)> clbk) {
293
         BOTAN_ASSERT_NONNULL(m_client_cb);
9✔
294
         m_client_cb->set_custom_tls_session_established_callback(std::move(clbk));
18✔
295
      }
9✔
296

297
      void set_custom_server_tls_session_established_callback(
9✔
298
         std::function<void(const Botan::TLS::Session_Summary&)> clbk) {
299
         BOTAN_ASSERT_NONNULL(m_server_cb);
9✔
300
         m_server_cb->set_custom_tls_session_established_callback(std::move(clbk));
18✔
301
      }
9✔
302

303
      void set_custom_client_tls_generate_ephemeral_ecdh_key_callback(generate_ephemeral_ecdh_key_clbk clbk) {
9✔
304
         BOTAN_ASSERT_NONNULL(m_client_cb);
9✔
305
         m_client_cb->set_custom_client_tls_generate_ephemeral_ecdh_key_callback(std::move(clbk));
18✔
306
      }
9✔
307

308
      void set_custom_client_tls_ephemeral_key_agreement_callback(ephemeral_key_agreement_clbk clbk) {
9✔
309
         BOTAN_ASSERT_NONNULL(m_client_cb);
9✔
310
         m_client_cb->set_custom_client_tls_ephemeral_key_agreement_callback(std::move(clbk));
18✔
311
      }
9✔
312

313
      void set_client_expected_handshake_alert(Botan::TLS::Alert alert) {
9✔
314
         BOTAN_ASSERT_NONNULL(m_client_cb);
9✔
315
         m_client_cb->set_expected_handshake_alert(alert);
9✔
316
      }
9✔
317

318
      void set_server_expected_handshake_alert(Botan::TLS::Alert alert) {
9✔
319
         BOTAN_ASSERT_NONNULL(m_server_cb);
9✔
320
         m_server_cb->set_expected_handshake_alert(alert);
9✔
321
      }
9✔
322

323
      // Tests that drive an intentional handshake abort (eg via a throwing
324
      // tls_session_established callback) call this so the end-of-test
325
      // completion assertion in go() is suppressed.
326
      void expect_handshake_failure() { m_expect_handshake_completion = false; }
18✔
327

328
      void expect_session_resumption() { m_expect_session_resumption = true; }
77✔
329

330
      void set_client_custom_kdf_callback(custom_kdf_clbk clbk) {
1✔
331
         BOTAN_ASSERT_NONNULL(m_client_cb);
1✔
332
         m_client_cb->set_custom_kdf_callback(std::move(clbk));
2✔
333
      }
1✔
334

335
      void set_server_custom_kdf_callback(custom_kdf_clbk clbk) {
1✔
336
         BOTAN_ASSERT_NONNULL(m_server_cb);
1✔
337
         m_server_cb->set_custom_kdf_callback(std::move(clbk));
2✔
338
      }
1✔
339

340
   private:
341
      class Test_Extension : public Botan::TLS::Extension {
342
         public:
343
            static Botan::TLS::Extension_Code static_type() {
344
               // NOLINTNEXTLINE(clang-analyzer-optin.core.EnumCastOutOfRange)
345
               return static_cast<Botan::TLS::Extension_Code>(666);
346
            }
347

348
            Botan::TLS::Extension_Code type() const override { return static_type(); }
473✔
349

350
            std::vector<uint8_t> serialize(Botan::TLS::Connection_Side /*whoami*/) const override { return m_buf; }
600✔
351

352
            const std::vector<uint8_t>& value() const { return m_buf; }
353

354
            bool empty() const override { return false; }
900✔
355

356
            explicit Test_Extension(Botan::TLS::Connection_Side side) {
473✔
357
               const uint8_t client_extn[6] = {'c', 'l', 'i', 'e', 'n', 't'};
473✔
358
               const uint8_t server_extn[6] = {'s', 'e', 'r', 'v', 'e', 'r'};
473✔
359

360
               Botan::TLS::append_tls_length_value(
473✔
361
                  m_buf, (side == Botan::TLS::Connection_Side::Client) ? client_extn : server_extn, 6, 1);
473✔
362
            }
473✔
363

364
         private:
365
            std::vector<uint8_t> m_buf;
366
      };
367

368
      class Test_Callbacks final : public Botan::TLS::Callbacks {
369
         public:
370
            Test_Callbacks(Test::Result& results,
364✔
371
                           Botan::TLS::Protocol_Version expected_version,
372
                           std::vector<uint8_t>& outbound,
373
                           std::vector<uint8_t>& recv_buf) :
364✔
374
                  m_results(results), m_expected_version(expected_version), m_outbound(outbound), m_recv(recv_buf) {}
364✔
375

376
            Test_Callbacks(Test_Callbacks&&) = delete;
377
            Test_Callbacks(const Test_Callbacks&) = delete;
378
            Test_Callbacks& operator=(const Test_Callbacks&) = delete;
379
            Test_Callbacks& operator=(Test_Callbacks&&) = delete;
380

381
            ~Test_Callbacks() override {
364✔
382
               if(m_expected_handshake_alert.has_value()) {
364✔
383
                  m_results.test_failure("Expected: " + m_expected_handshake_alert->type_string() +
×
384
                                         " during handshake");
385
               }
386
            }
721✔
387

388
            void tls_emit_data(std::span<const uint8_t> bits) override {
2,927✔
389
               m_outbound.insert(m_outbound.end(), bits.begin(), bits.end());
2,927✔
390
            }
2,927✔
391

392
            void tls_record_received(uint64_t /*seq*/, std::span<const uint8_t> bits) override {
575✔
393
               m_recv.insert(m_recv.end(), bits.begin(), bits.end());
575✔
394
            }
575✔
395

396
            void tls_alert(Botan::TLS::Alert alert) override {
604✔
397
               // TODO test that it is a no_renegotiation alert
398

399
               if(m_expected_handshake_alert.has_value()) {
604✔
400
                  if(m_expected_handshake_alert->type() != alert.type()) {
18✔
401
                     m_results.test_failure("Got unexpected alert: " + alert.type_string() +
×
402
                                            " expected: " + m_expected_handshake_alert->type_string());
×
403
                  } else {
404
                     // acknowledge that the expected Alert was detected
405
                     m_results.test_note("saw expected alert", m_expected_handshake_alert->type_string());
18✔
406
                     m_expected_handshake_alert.reset();
18✔
407
                  }
408
               }
409
            }
604✔
410

411
            void tls_modify_extensions(Botan::TLS::Extensions& extn,
574✔
412
                                       Botan::TLS::Connection_Side which_side,
413
                                       Botan::TLS::Handshake_Type msg_type) override {
414
               // We don't alter any TLS 1.3 ServerHellos (including the special
415
               // HelloRetryRequest), as Botan explicitly rejects any custom
416
               // extensions in those messages. Even though RFC 9846 doesn't
417
               // explicitly forbid them.
418
               if(m_expected_version.is_tls_13_or_later() &&
574✔
419
                  (msg_type == Botan::TLS::Handshake_Type::HelloRetryRequest ||
292✔
420
                   msg_type == Botan::TLS::Handshake_Type::ServerHello)) {
292✔
421
                  return;
422
               }
423

424
               // When updating a previously-sent ClientHello after having received
425
               // a HelloRetryRequest, we don't want to re-add the test extension.
426
               if(!extn.has<Test_Extension>()) {
503✔
427
                  extn.add(new Test_Extension(which_side));  // NOLINT(*-owning-memory)
473✔
428
               }
429

430
               // Insert an unsupported signature scheme as highest prio, to ensure we are tolerant of this
431
               if(auto* sig_algs = extn.get<Botan::TLS::Signature_Algorithms>()) {
503✔
432
                  std::vector<Botan::TLS::Signature_Scheme> schemes = sig_algs->supported_schemes();
237✔
433
                  // 0x0301 is RSA PKCS1/SHA-224, which is not supported anymore
434
                  // NOLINTNEXTLINE(*.EnumCastOutOfRange)
435
                  constexpr auto unsupported_sig_scheme = Botan::TLS::Signature_Scheme::Code(0x0301);
237✔
436

437
                  // Don't inadvertently add the unsupported signature scheme
438
                  // multiple times, e.g. when updating a ClientHello after
439
                  // receiving a HelloRetryRequest.
440
                  if(!Botan::value_exists(schemes, unsupported_sig_scheme)) {
237✔
441
                     schemes.insert(schemes.begin(), unsupported_sig_scheme);
207✔
442

443
                     // This replaces the previous extension value
444
                     extn.remove_extension(Botan::TLS::Extension_Code::SignatureAlgorithms);
207✔
445
                     extn.add(new Botan::TLS::Signature_Algorithms(schemes));  // NOLINT(*-owning-memory)
207✔
446
                  }
447
               }
237✔
448

449
               // In TLS 1.3 ClientHellos the PSK extension must always be the
450
               // very last extension.
451
               extn.reorder(std::array{Botan::TLS::Extension_Code::PresharedKey});
503✔
452
            }
453

454
            void tls_examine_extensions(const Botan::TLS::Extensions& extn,
574✔
455
                                        Botan::TLS::Connection_Side which_side,
456
                                        Botan::TLS::Handshake_Type msg_type) override {
457
               // NOLINTNEXTLINE(clang-analyzer-optin.core.EnumCastOutOfRange)
458
               const auto extn_id = static_cast<Botan::TLS::Extension_Code>(666);
574✔
459
               Botan::TLS::Extension* test_extn = extn.get(extn_id);
574✔
460

461
               if(test_extn == nullptr) {
574✔
462
                  // The test extension won't be added to any TLS 1.3 ServerHello
463
                  // or HelloRetryRequest messages, so we don't expect it.
464
                  if(!m_expected_version.is_tls_13_or_later() ||
71✔
465
                     (msg_type != Botan::TLS::Handshake_Type::HelloRetryRequest &&
71✔
466
                      msg_type != Botan::TLS::Handshake_Type::ServerHello)) {
71✔
467
                     m_results.test_failure("Did not receive test extension from peer");
×
468
                  }
469
               } else {
470
                  Botan::TLS::Unknown_Extension* unknown_ext = dynamic_cast<Botan::TLS::Unknown_Extension*>(test_extn);
503✔
471

472
                  if(unknown_ext != nullptr) {
503✔
473
                     const std::vector<uint8_t> val = unknown_ext->value();
503✔
474

475
                     if(m_results.test_sz_eq("Expected size for test extn", val.size(), 7)) {
503✔
476
                        if(which_side == Botan::TLS::Connection_Side::Client) {
503✔
477
                           m_results.test_bin_eq("Expected extension value", val, "06636C69656E74");
214✔
478
                        } else {
479
                           m_results.test_bin_eq("Expected extension value", val, "06736572766572");
289✔
480
                        }
481
                     }
482
                  } else {
503✔
483
                     m_results.test_failure("Unknown extension type had unexpected type at runtime");
×
484
                  }
485
               }
486
            }
574✔
487

488
            void tls_session_established(const Botan::TLS::Session_Summary& session) override {
355✔
489
               const std::string session_report = "Session established " + session.version().to_string() + " " +
1,065✔
490
                                                  session.ciphersuite().to_string() + " " +
1,065✔
491
                                                  Botan::hex_encode(session.session_id().get());
710✔
492

493
               m_results.test_note(session_report);
355✔
494

495
               if(m_session_established_callback) {
355✔
496
                  m_session_established_callback(session);
18✔
497
               }
498

499
               if(session.version() != m_expected_version) {
337✔
500
                  m_results.test_failure("Expected " + m_expected_version.to_string() + " negotiated " +
×
501
                                         session.version().to_string());
18✔
502
               }
503

504
               if(m_summary.has_value()) {
337✔
505
                  m_results.test_failure("Session established callback called multiple times");
×
506
               }
507

508
               m_summary.emplace(session);
337✔
509
            }
337✔
510

511
            std::string tls_server_choose_app_protocol(const std::vector<std::string>& protos) override {
182✔
512
               m_results.test_sz_eq("ALPN protocol count", protos.size(), 2);
182✔
513
               m_results.test_str_eq("ALPN protocol 1", protos[0], "test/1");
182✔
514
               m_results.test_str_eq("ALPN protocol 2", protos[1], "test/2");
182✔
515
               return "test/1";
182✔
516
            }
517

518
            std::unique_ptr<Botan::PK_Key_Agreement_Key> tls_generate_ephemeral_key(
170✔
519
               const std::variant<Botan::TLS::Group_Params, Botan::DL_Group>& group,
520
               Botan::RandomNumberGenerator& rng) override {
521
               const bool is_group = std::holds_alternative<Botan::TLS::Group_Params>(group);
170✔
522

523
               if(is_group && std::get<Botan::TLS::Group_Params>(group).wire_code() == 0xFEE1) {
170✔
524
                  const auto ec_group = Botan::EC_Group::from_name("numsp256d1");
×
525
                  return std::make_unique<Botan::ECDH_PrivateKey>(rng, ec_group);
×
526
               }
×
527

528
               if(is_group && m_generate_ephemeral_ecdh_key_callback) {
170✔
529
                  return m_generate_ephemeral_ecdh_key_callback(
3✔
530
                     std::get<Botan::TLS::Group_Params>(group), rng, Botan::EC_Point_Format::Uncompressed);
3✔
531
               }
532

533
               return Botan::TLS::Callbacks::tls_generate_ephemeral_key(group, rng);
167✔
534
            }
535

536
            std::unique_ptr<Botan::PK_Key_Agreement_Key> tls12_generate_ephemeral_ecdh_key(
22✔
537
               Botan::TLS::Group_Params group,
538
               Botan::RandomNumberGenerator& rng,
539
               Botan::EC_Point_Format tls12_ecc_pubkey_encoding_format) override {
540
               if(m_generate_ephemeral_ecdh_key_callback) {
22✔
541
                  return m_generate_ephemeral_ecdh_key_callback(group, rng, tls12_ecc_pubkey_encoding_format);
6✔
542
               }
543

544
               return Botan::TLS::Callbacks::tls12_generate_ephemeral_ecdh_key(
16✔
545
                  group, rng, tls12_ecc_pubkey_encoding_format);
16✔
546
            }
547

548
            Botan::secure_vector<uint8_t> tls_ephemeral_key_agreement(
146✔
549
               const std::variant<Botan::TLS::Group_Params, Botan::DL_Group>& group,
550
               const Botan::PK_Key_Agreement_Key& private_key,
551
               const std::vector<uint8_t>& public_value,
552
               Botan::RandomNumberGenerator& rng,
553
               const Botan::TLS::Policy& policy) override {
554
               if(m_ephemeral_key_agreement_callback) {
146✔
555
                  return m_ephemeral_key_agreement_callback(group, private_key, public_value, rng, policy);
9✔
556
               }
557

558
               if(std::holds_alternative<Botan::TLS::Group_Params>(group) &&
137✔
559
                  std::get<Botan::TLS::Group_Params>(group).wire_code() == 0xFEE1) {
133✔
560
                  const auto ec_group = Botan::EC_Group::from_name("numsp256d1");
×
561
                  const auto ec_point = Botan::EC_AffinePoint(ec_group, public_value);
×
562
                  const Botan::ECDH_PublicKey peer_key(ec_group, ec_point);
×
563
                  const Botan::PK_Key_Agreement ka(private_key, rng, "Raw");
×
564
                  return ka.derive_key(0, peer_key.public_value()).bits_of();
×
565
               }
×
566

567
               return Botan::TLS::Callbacks::tls_ephemeral_key_agreement(group, private_key, public_value, rng, policy);
137✔
568
            }
569

570
            std::unique_ptr<Botan::KDF> tls12_protocol_specific_kdf(std::string_view prf_algo) const override {
1,092✔
571
               if(m_custom_kdf_callback) {
1,092✔
572
                  return m_custom_kdf_callback(prf_algo);
8✔
573
               } else {
574
                  return Botan::TLS::Callbacks::tls12_protocol_specific_kdf(prf_algo);
1,084✔
575
               }
576
            }
577

578
            void set_custom_tls_session_established_callback(
18✔
579
               std::function<void(const Botan::TLS::Session_Summary&)> clbk) {
580
               m_session_established_callback = std::move(clbk);
18✔
581
            }
582

583
            void set_custom_client_tls_generate_ephemeral_ecdh_key_callback(generate_ephemeral_ecdh_key_clbk clbk) {
9✔
584
               m_generate_ephemeral_ecdh_key_callback = std::move(clbk);
9✔
585
            }
586

587
            void set_custom_client_tls_ephemeral_key_agreement_callback(ephemeral_key_agreement_clbk clbk) {
9✔
588
               m_ephemeral_key_agreement_callback = std::move(clbk);
9✔
589
            }
590

591
            void set_expected_handshake_alert(Botan::TLS::Alert alert) { m_expected_handshake_alert = alert; }
18✔
592

593
            void set_custom_kdf_callback(custom_kdf_clbk clbk) { m_custom_kdf_callback = std::move(clbk); }
2✔
594

595
            const std::optional<Botan::TLS::Session_Summary>& summary() const { return m_summary; }
337✔
596

597
         private:
598
            Test::Result& m_results;
599
            const Botan::TLS::Protocol_Version m_expected_version;
600
            std::vector<uint8_t>& m_outbound;
601
            std::vector<uint8_t>& m_recv;
602

603
            std::function<void(const Botan::TLS::Session_Summary&)> m_session_established_callback;
604
            generate_ephemeral_ecdh_key_clbk m_generate_ephemeral_ecdh_key_callback;
605
            ephemeral_key_agreement_clbk m_ephemeral_key_agreement_callback;
606
            custom_kdf_clbk m_custom_kdf_callback;
607
            std::optional<Botan::TLS::Alert> m_expected_handshake_alert;
608
            std::optional<Botan::TLS::Session_Summary> m_summary;
609
      };
610

611
      const Botan::TLS::Protocol_Version m_offer_version;
612
      Test::Result m_results;
613

614
      std::shared_ptr<Credentials_Manager_Test> m_creds;
615
      std::shared_ptr<const Botan::TLS::Policy> m_client_policy;
616
      std::shared_ptr<Botan::TLS::Session_Manager> m_client_sessions;
617
      std::shared_ptr<Botan::RandomNumberGenerator> m_rng;
618

619
      std::shared_ptr<Test_Callbacks> m_client_cb;
620

621
      std::shared_ptr<Test_Callbacks> m_server_cb;
622
      std::unique_ptr<Botan::TLS::Server> m_server;
623

624
      const bool m_client_auth;
625
      bool m_expect_handshake_completion = true;
626
      bool m_expect_session_resumption = false;
627

628
      std::vector<uint8_t> m_c2s, m_s2c, m_client_recv, m_server_recv;
629
      std::vector<std::string> m_caught_tls_exceptions;
630
};
631

632
void TLS_Handshake_Test::go() {
182✔
633
   m_results.start_timer();
182✔
634

635
   const std::vector<std::string> protocols_offered = {"test/1", "test/2"};
182✔
636

637
   // Choose random application data to send
638
   const size_t c_len = 1 + ((static_cast<size_t>(m_rng->next_byte()) << 4) ^ m_rng->next_byte());
182✔
639
   std::vector<uint8_t> client_msg(c_len);
182✔
640
   m_rng->randomize(client_msg.data(), client_msg.size());
182✔
641
   bool client_has_written = false;
182✔
642

643
   const size_t s_len = 1 + ((static_cast<size_t>(m_rng->next_byte()) << 4) ^ m_rng->next_byte());
182✔
644
   std::vector<uint8_t> server_msg(s_len);
182✔
645
   m_rng->randomize(server_msg.data(), server_msg.size());
182✔
646
   bool server_has_written = false;
182✔
647

648
   std::unique_ptr<Botan::TLS::Client> client;
182✔
649
   client = std::make_unique<Botan::TLS::Client>(m_client_cb,
182✔
650
                                                 m_client_sessions,
182✔
651
                                                 m_creds,
182✔
652
                                                 m_client_policy,
182✔
653
                                                 m_rng,
182✔
654
                                                 Botan::TLS::Server_Information("server.example.com"),
182✔
655
                                                 m_offer_version,
182✔
656
                                                 protocols_offered);
182✔
657

658
   size_t rounds = 0;
182✔
659

660
   bool client_handshake_completed = false;
182✔
661
   bool server_handshake_completed = false;
182✔
662

663
   while(true) {
1,671✔
664
      ++rounds;
1,671✔
665

666
      if(rounds > 25) {
1,671✔
667
         m_results.test_failure("Still here after many rounds, deadlock?");
×
668
         break;
669
      }
670

671
      if(!client_handshake_completed && client->is_handshake_complete()) {
1,671✔
672
         client_handshake_completed = true;
673
      }
674

675
      if(!server_handshake_completed && m_server->is_handshake_complete()) {
1,671✔
676
         server_handshake_completed = true;
677
      }
678

679
      if(client->is_handshake_complete() && client->is_active() && !client_has_written) {
1,671✔
680
         m_results.test_str_eq("client ALPN protocol", client->application_protocol(), "test/1");
167✔
681

682
         size_t sent_so_far = 0;
167✔
683
         while(sent_so_far != client_msg.size()) {
464✔
684
            const size_t left = client_msg.size() - sent_so_far;
297✔
685
            const size_t rnd12 = (m_rng->next_byte() << 4) ^ m_rng->next_byte();
297✔
686
            const size_t sending = std::min(left, rnd12);
297✔
687

688
            client->send(&client_msg[sent_so_far], sending);
297✔
689
            sent_so_far += sending;
297✔
690
         }
691

692
         if(m_client_cb->summary()->version().is_pre_tls_13()) {
167✔
693
            client->send_warning_alert(Botan::TLS::Alert::NoRenegotiation);
129✔
694
         }
695
         client_has_written = true;
696
      }
697

698
      if(m_server && m_server->is_handshake_complete() && m_server->is_active() && !server_has_written) {
1,671✔
699
         m_results.test_str_eq("server ALPN protocol", m_server->application_protocol(), "test/1");
170✔
700

701
         size_t sent_so_far = 0;
170✔
702
         while(sent_so_far != server_msg.size()) {
461✔
703
            const size_t left = server_msg.size() - sent_so_far;
291✔
704
            const size_t rnd12 = (m_rng->next_byte() << 4) ^ m_rng->next_byte();
291✔
705
            const size_t sending = std::min(left, rnd12);
291✔
706

707
            m_server->send(&server_msg[sent_so_far], sending);
291✔
708
            sent_so_far += sending;
291✔
709
         }
710

711
         if(m_server_cb->summary()->version().is_pre_tls_13()) {
170✔
712
            m_server->send_warning_alert(Botan::TLS::Alert::NoRenegotiation);
135✔
713
         }
714
         server_has_written = true;
715
      }
716

717
      if(!m_c2s.empty()) {
1,671✔
718
         /*
719
         * Use this as a temp value to hold the queues as otherwise they
720
         * might end up appending more in response to messages during the
721
         * handshake.
722
         */
723
         std::vector<uint8_t> input;
701✔
724
         std::swap(m_c2s, input);
701✔
725

726
         try {
701✔
727
            const size_t needed = m_server->received_data(input.data(), input.size());
701✔
728
            m_results.test_sz_eq("full packet received (server)", needed, 0);
692✔
729
         } catch(const std::exception& e) {
9✔
730
            m_caught_tls_exceptions.push_back(e.what());
18✔
731
         }
9✔
732

733
         continue;
701✔
734
      }
701✔
735

736
      if(!m_s2c.empty()) {
970✔
737
         std::vector<uint8_t> input;
624✔
738
         std::swap(m_s2c, input);
624✔
739

740
         try {
624✔
741
            const size_t needed = client->received_data(input.data(), input.size());
624✔
742
            m_results.test_sz_eq("full packet received (client)", needed, 0);
615✔
743
         } catch(const std::exception& e) {
9✔
744
            m_caught_tls_exceptions.push_back(e.what());
18✔
745
         }
9✔
746

747
         continue;
624✔
748
      }
624✔
749

750
      if(!m_client_recv.empty()) {
346✔
751
         m_results.test_bin_eq("client recv", m_client_recv, server_msg);
328✔
752
      }
753

754
      if(!m_server_recv.empty()) {
346✔
755
         m_results.test_bin_eq("server recv", m_server_recv, client_msg);
328✔
756
      }
757

758
      if(client->is_closed() && m_server->is_closed()) {
346✔
759
         break;
760
      }
761

762
      if(m_server->is_active()) {
164✔
763
         const std::vector<Botan::X509_Certificate> certs = m_server->peer_cert_chain();
164✔
764
         if(m_client_auth) {
164✔
765
            m_results.test_sz_eq("got client certs", certs.size(), 2);
6✔
766

767
            const std::vector<Botan::X509_DN> acceptable_CAs = m_creds->get_acceptable_cas();
6✔
768

769
            m_results.test_sz_eq("client got CA list", acceptable_CAs.size(), 2);  // RSA + ECDSA
6✔
770

771
            for(const Botan::X509_DN& dn : acceptable_CAs) {
18✔
772
               m_results.test_str_eq("Expected CA country field", dn.get_first_attribute("C"), "VT");
12✔
773
            }
774
         } else {
6✔
775
            m_results.test_sz_eq("no client certs", certs.size(), 0);
158✔
776
         }
777
      }
164✔
778

779
      if(!m_server_recv.empty() && !m_client_recv.empty()) {
164✔
780
         const Botan::SymmetricKey client_key = client->key_material_export("label", "context", 32);
164✔
781
         const Botan::SymmetricKey server_key = m_server->key_material_export("label", "context", 32);
164✔
782

783
         m_results.test_bin_eq("TLS key material export", client_key.bits_of(), server_key.bits_of());
328✔
784

785
         m_results.test_is_true("Client is active", client->is_active());
164✔
786
         m_results.test_is_false("Client is not closed", client->is_closed());
164✔
787
         client->close();
164✔
788
         m_results.test_is_false("Client is no longer active", client->is_active());
164✔
789
         m_results.test_is_true("Client is closed", client->is_closed_for_writing());
164✔
790
      }
328✔
791
   }
792

793
   // The receive loop above swallows exceptions raised during received_data().
794
   // Without an explicit completion assertion, a handshake that aborts via
795
   // exception still reports "all ok" because the server alert + close path
796
   // unwinds cleanly. Assert that both sides reached is_active() unless the
797
   // test was deliberately set up to drive a handshake abort.
798
   if(m_expect_handshake_completion) {
182✔
799
      if(!m_caught_tls_exceptions.empty()) {
164✔
800
         for(const auto& e : m_caught_tls_exceptions) {
×
801
            m_results.test_note("TLS exception", e);
×
802
         }
803
      }
804

805
      m_results.test_is_true("client handshake completed", client_handshake_completed);
164✔
806
      m_results.test_is_true("server handshake completed", server_handshake_completed);
164✔
807

808
      const auto& client_summary = m_client_cb->summary();
164✔
809
      const auto& server_summary = m_server_cb->summary();
164✔
810

811
      if(m_results.test_is_true("client finished handshake", client_summary.has_value())) {
164✔
812
         m_results.test_bool_eq(
164✔
813
            "client session resumption", client_summary->was_resumption(), m_expect_session_resumption);
164✔
814
      }
815

816
      if(m_results.test_is_true("server finished handshake", server_summary.has_value())) {
164✔
817
         m_results.test_bool_eq(
164✔
818
            "server session resumption", server_summary->was_resumption(), m_expect_session_resumption);
164✔
819
      }
820
   }
821

822
   m_results.end_timer();
182✔
823
}
546✔
824

825
class Test_Policy final : public Botan::TLS::Text_Policy {
40✔
826
   public:
827
      Test_Policy() : Text_Policy("") {}
40✔
828

829
      size_t dtls_initial_timeout() const override { return 1; }
134✔
830

831
      size_t dtls_maximum_timeout() const override { return 8; }
134✔
832

833
      size_t minimum_rsa_bits() const override { return 1024; }
9✔
834

835
      size_t minimum_signature_strength() const override { return 80; }
94✔
836
};
837

838
/**
839
 * This mocks a custom ECDH adapter class that essentially just wraps an
840
 * ordinary ECDH key to mimic a typical hardware-based ECDH key.
841
 */
842
class HardwareEcdhKey final : public Botan::PK_Key_Agreement_Key {
843
   public:
844
      HardwareEcdhKey(Botan::EC_Group group,
9✔
845
                      Botan::RandomNumberGenerator& rng,
846
                      Botan::EC_Point_Format public_key_format) :
9✔
847
            m_group(std::move(group)),
9✔
848
            m_public_key_format(public_key_format),
9✔
849
            m_key(std::make_unique<Botan::ECDH_PrivateKey>(rng, m_group)) {}
9✔
850

851
      std::string algo_name() const override { return m_key->algo_name(); }
×
852

853
      size_t estimated_strength() const override { return m_key->estimated_strength(); }
×
854

855
      bool supports_operation(Botan::PublicKeyOperation op) const override {
×
856
         return op == Botan::PublicKeyOperation::KeyAgreement;
×
857
      }
858

859
      bool check_key(Botan::RandomNumberGenerator& rng, bool strong) const override {
×
860
         return m_key->check_key(rng, strong);
×
861
      }
862

863
      size_t key_length() const override { return m_key->key_length(); }
×
864

865
      Botan::AlgorithmIdentifier algorithm_identifier() const override {
×
866
         throw Botan::Not_Implemented("TLS should never call Public_Key::algorithm_identifier()");
×
867
      }
868

869
      std::vector<uint8_t> raw_public_key_bits() const override { return m_key->public_value(m_public_key_format); }
9✔
870

871
      std::vector<uint8_t> public_key_bits() const override {
×
872
         throw Botan::Not_Implemented("TLS should never call Public_Key::public_key_bits()");
×
873
         // ... instead it should always call raw_public_key_bits() to get the public value
874
         // in the format required by TLS.
875
      }
876

877
      std::vector<uint8_t> public_value() const override {
×
878
         throw Botan::Not_Implemented("TLS should never call Public_Key::public_value()");
×
879
         // ... instead it should always call raw_public_key_bits() to get the public value
880
         // in the format required by TLS.
881
      }
882

883
      Botan::secure_vector<uint8_t> private_key_bits() const override {
×
884
         throw Botan::Not_Implemented("This mocks a hardware key and thus hides its private bits");
×
885
      }
886

887
      std::unique_ptr<Botan::Public_Key> public_key() const override { return m_key->public_key(); }
×
888

889
      std::unique_ptr<Botan::Private_Key> generate_another(Botan::RandomNumberGenerator& rng) const override {
×
890
         return std::make_unique<HardwareEcdhKey>(m_group, rng, m_public_key_format);
×
891
      }
892

893
      std::unique_ptr<Botan::PK_Ops::Key_Agreement> create_key_agreement_op(Botan::RandomNumberGenerator& rng,
9✔
894
                                                                            std::string_view params,
895
                                                                            std::string_view provider) const override {
896
         return m_key->create_key_agreement_op(rng, params, provider);
9✔
897
      }
898

899
   private:
900
      Botan::EC_Group m_group;
901
      Botan::EC_Point_Format m_public_key_format;
902
      std::unique_ptr<Botan::ECDH_PrivateKey> m_key;
903
};
904

905
class TLS_Unit_Tests final : public Test {
1✔
906
   private:
907
      static std::vector<Botan::TLS::Protocol_Version> legacy_versions() {
28✔
908
         return {
28✔
909
   #if defined(BOTAN_HAS_TLS_12)
910
            Botan::TLS::Protocol_Version::TLS_V12, Botan::TLS::Protocol_Version::DTLS_V12,
911
   #endif
912
         };
14✔
913
      }
914

915
      static std::vector<Botan::TLS::Protocol_Version> available_versions() {
38✔
916
         return {
38✔
917
   #if defined(BOTAN_HAS_TLS_12)
918
            Botan::TLS::Protocol_Version::TLS_V12, Botan::TLS::Protocol_Version::DTLS_V12,
919
   #endif
920

921
   #if defined(BOTAN_HAS_TLS_13)
922
               Botan::TLS::Protocol_Version::TLS_V13,
923
   #endif
924
         };
16✔
925
      }
926

927
      static void enable_versions([[maybe_unused]] const std::shared_ptr<Test_Policy>& policy,
29✔
928
                                  [[maybe_unused]] std::span<const Botan::TLS::Protocol_Version> versions) {
929
         for(const auto& version : versions) {
102✔
930
            if(version == Botan::TLS::Protocol_Version::TLS_V12) {
73✔
931
               policy->set("allow_tls12", "true");
58✔
932
            } else if(version == Botan::TLS::Protocol_Version::DTLS_V12) {
44✔
933
               policy->set("allow_dtls12", "true");
58✔
934
            } else if(version == Botan::TLS::Protocol_Version::TLS_V13) {
15✔
935
               policy->set("allow_tls13", "true");
30✔
936
            }
937
         }
938
      }
29✔
939

940
      static std::shared_ptr<Botan::TLS::Session_Manager> make_session_manager(
154✔
941
         const std::shared_ptr<Botan::RandomNumberGenerator>& rng) {
942
   #if defined(BOTAN_HAS_TLS_SQLITE3_SESSION_MANAGER)
943
         return std::make_shared<Botan::TLS::Session_Manager_SQLite>("geheimes passwort", rng, ":memory:", 5);
154✔
944
   #else
945
         return std::make_shared<Botan::TLS::Session_Manager_In_Memory>(rng);
946
   #endif
947
      }
948

949
      static void test_with_policy(const std::string& test_descr,
31✔
950
                                   std::vector<Test::Result>& results,
951
                                   const std::shared_ptr<Credentials_Manager_Test>& creds,
952
                                   const std::vector<Botan::TLS::Protocol_Version>& versions,
953
                                   const std::shared_ptr<const Botan::TLS::Policy>& policy,
954
                                   std::shared_ptr<Botan::RandomNumberGenerator>& rng,
955
                                   bool client_auth = false) {
956
         try {
31✔
957
            for(const auto& version : versions) {
108✔
958
               auto client_ses = make_session_manager(rng);
77✔
959
               auto server_ses = make_session_manager(rng);
77✔
960

961
               TLS_Handshake_Test test(version.to_string() + " " + test_descr,
154✔
962
                                       version,
963
                                       creds,
964
                                       policy,
965
                                       policy,
966
                                       rng,
967
                                       client_ses,
968
                                       server_ses,
969
                                       client_auth);
154✔
970
               test.go();
77✔
971
               results.push_back(test.results());
77✔
972

973
               TLS_Handshake_Test test_resumption(version.to_string() + " " + test_descr,
231✔
974
                                                  version,
975
                                                  creds,
976
                                                  policy,
977
                                                  policy,
978
                                                  rng,
979
                                                  client_ses,
980
                                                  server_ses,
981
                                                  client_auth);
77✔
982
               test_resumption.expect_session_resumption();
77✔
983
               test_resumption.go();
77✔
984
               results.push_back(test_resumption.results());
77✔
985
            }
231✔
986
         } catch(std::exception& e) {
×
987
            results.push_back(Test::Result::Failure(test_descr, e.what()));
×
988
         }
×
989
      }
31✔
990

991
      /**
992
       * Legacy versions are TLS 1.2 and DTLS 1.2, which allow combinations of
993
       * various ciphers, MACs and key exchange methods that aren't supported
994
       * in TLS 1.3 anymore.
995
       */
996
      static void test_legacy_versions(const std::string& test_descr,
14✔
997
                                       std::vector<Test::Result>& results,
998
                                       const std::shared_ptr<Credentials_Manager_Test>& creds,
999
                                       std::shared_ptr<Botan::RandomNumberGenerator>& rng,
1000
                                       const std::string& kex_policy,
1001
                                       const std::string& cipher_policy,
1002
                                       const std::string& mac_policy = "AEAD",
1003
                                       bool etm_policy = true,
1004
                                       bool client_auth = false) {
1005
         auto policy = std::make_shared<Test_Policy>();
14✔
1006
         policy->set("ciphers", cipher_policy);
14✔
1007
         policy->set("macs", mac_policy);
14✔
1008
         policy->set("key_exchange_methods", kex_policy);
14✔
1009
         policy->set("negotiate_encrypt_then_mac", etm_policy ? "true" : "false");
32✔
1010

1011
         enable_versions(policy, legacy_versions());
14✔
1012

1013
         if(kex_policy.find("RSA") != std::string::npos) {
14✔
1014
            policy->set("signature_methods", "IMPLICIT");
10✔
1015
         }
1016

1017
         return test_with_policy(test_descr, results, creds, legacy_versions(), policy, rng, client_auth);
28✔
1018
      }
14✔
1019

1020
      /**
1021
       * Modern versions are both TLS 1.2 and 1.3, as well as their DTLS
1022
       * counterparts, but with the restrictions that TLS 1.3 imposes on
1023
       * ciphers, MACs and key exchange methods.
1024
       */
1025
      static void test_modern_versions(const std::string& test_descr,
7✔
1026
                                       std::vector<Test::Result>& results,
1027
                                       const std::shared_ptr<Credentials_Manager_Test>& creds,
1028
                                       std::shared_ptr<Botan::RandomNumberGenerator>& rng,
1029
                                       const std::string& kex_policy,
1030
                                       const std::string& cipher_policy,
1031
                                       const std::string& mac_policy = "AEAD",
1032
                                       bool client_auth = false) {
1033
         const std::map<std::string, std::string> no_extra_policies;
7✔
1034
         return test_modern_versions(
7✔
1035
            test_descr, results, creds, rng, kex_policy, cipher_policy, mac_policy, no_extra_policies, client_auth);
7✔
1036
      }
7✔
1037

1038
      static void test_modern_versions(const std::string& test_descr,
15✔
1039
                                       std::vector<Test::Result>& results,
1040
                                       const std::shared_ptr<Credentials_Manager_Test>& creds,
1041
                                       std::shared_ptr<Botan::RandomNumberGenerator>& rng,
1042
                                       const std::string& kex_policy,
1043
                                       const std::string& cipher_policy,
1044
                                       const std::string& mac_policy,
1045
                                       const std::map<std::string, std::string>& extra_policies,
1046
                                       bool client_auth = false) {
1047
         auto policy = std::make_shared<Test_Policy>();
15✔
1048
         policy->set("ciphers", cipher_policy);
15✔
1049
         policy->set("macs", mac_policy);
15✔
1050
         policy->set("key_exchange_methods", kex_policy);
15✔
1051

1052
         enable_versions(policy, available_versions());
15✔
1053

1054
         if(kex_policy.find("RSA") != std::string::npos) {
15✔
1055
            policy->set("signature_methods", "IMPLICIT");
×
1056
         }
1057

1058
         for(const auto& kv : extra_policies) {
23✔
1059
            policy->set(kv.first, kv.second);
8✔
1060
         }
1061

1062
         return test_with_policy(test_descr, results, creds, available_versions(), policy, rng, client_auth);
30✔
1063
      }
15✔
1064

1065
      void test_session_established_abort(std::vector<Test::Result>& results,
1✔
1066
                                          std::shared_ptr<Credentials_Manager_Test> creds,
1067
                                          std::shared_ptr<Botan::RandomNumberGenerator> rng) {
1068
         auto policy = std::make_shared<Test_Policy>();
1✔
1069
         auto noop_session_manager = std::make_shared<Botan::TLS::Session_Manager_Noop>();
1✔
1070

1071
         auto client_aborts = [&](const std::exception_ptr& ex, Botan::TLS::Alert expected_server_alert) {
4✔
1072
            for(const auto version : available_versions()) {
12✔
1073
               TLS_Handshake_Test test("Client aborts in tls_session_established with " +
18✔
1074
                                          expected_server_alert.type_string() + ": " + version.to_string(),
36✔
1075
                                       version,
1076
                                       creds,
1077
                                       policy,
1078
                                       policy,
1079
                                       rng,
1080
                                       noop_session_manager,
1081
                                       noop_session_manager,
1082
                                       false);
45✔
1083
               test.set_custom_client_tls_session_established_callback(
18✔
1084
                  [=](const auto&) { std::rethrow_exception(ex); });
63✔
1085
               test.set_server_expected_handshake_alert(expected_server_alert);
9✔
1086
               test.expect_handshake_failure();
9✔
1087

1088
               test.go();
9✔
1089
               results.push_back(test.results());
9✔
1090
            }
12✔
1091
         };
3✔
1092

1093
         auto server_aborts = [&](const std::exception_ptr& ex, Botan::TLS::Alert expected_server_alert) {
4✔
1094
            for(const auto version : available_versions()) {
12✔
1095
               TLS_Handshake_Test test("Server aborts in tls_session_established with " +
18✔
1096
                                          expected_server_alert.type_string() + ": " + version.to_string(),
36✔
1097
                                       version,
1098
                                       creds,
1099
                                       policy,
1100
                                       policy,
1101
                                       rng,
1102
                                       noop_session_manager,
1103
                                       noop_session_manager,
1104
                                       false);
45✔
1105
               test.set_custom_server_tls_session_established_callback(
18✔
1106
                  [=](const auto&) { std::rethrow_exception(ex); });
63✔
1107
               test.set_client_expected_handshake_alert(expected_server_alert);
9✔
1108
               test.expect_handshake_failure();
9✔
1109

1110
               test.go();
9✔
1111
               results.push_back(test.results());
9✔
1112
            }
12✔
1113
         };
3✔
1114

1115
         client_aborts(std::make_exception_ptr(
3✔
1116
                          Botan::TLS::TLS_Exception(Botan::TLS::Alert::AccessDenied, "some test TLS exception")),
1✔
1117
                       Botan::TLS::Alert::AccessDenied);
1118
         client_aborts(std::make_exception_ptr(Botan::Invalid_Authentication_Tag("some symmetric crypto failed :o)")),
2✔
1119
                       Botan::TLS::Alert::BadRecordMac);
1120
         client_aborts(std::make_exception_ptr(std::runtime_error("something strange happened")),
2✔
1121
                       Botan::TLS::Alert::InternalError);
1122

1123
         server_aborts(std::make_exception_ptr(
3✔
1124
                          Botan::TLS::TLS_Exception(Botan::TLS::Alert::AccessDenied, "some server test TLS exception")),
1✔
1125
                       Botan::TLS::Alert::AccessDenied);
1126
         server_aborts(std::make_exception_ptr(
2✔
1127
                          Botan::Invalid_Authentication_Tag("some symmetric crypto failed in the server :o)")),
1✔
1128
                       Botan::TLS::Alert::BadRecordMac);
1129
         server_aborts(std::make_exception_ptr(std::runtime_error("something strange happened in the server")),
2✔
1130
                       Botan::TLS::Alert::InternalError);
1131
      }
2✔
1132

1133
      void test_custom_ecdh_provider(std::vector<Test::Result>& results,
1✔
1134
                                     const std::shared_ptr<Credentials_Manager_Test>& creds,
1135
                                     const std::shared_ptr<Botan::RandomNumberGenerator>& rng) {
1136
         auto noop_session_manager = std::make_shared<Botan::TLS::Session_Manager_Noop>();
1✔
1137

1138
         const auto groups = {
1✔
1139
            Botan::TLS::Group_Params::SECP256R1,
1140
            Botan::TLS::Group_Params::BRAINPOOL256R1,
1141
            Botan::TLS::Group_Params::BRAINPOOL512R1,
1142
         };
1✔
1143

1144
         const auto versions = available_versions();
1✔
1145

1146
         const auto groups_and_versions = [&]() {
2✔
1147
            std::vector<std::pair<Botan::TLS::Group_Params, Botan::TLS::Protocol_Version>> out;
1✔
1148
            for(const auto& group : groups) {
4✔
1149
               for(const auto& version : versions) {
12✔
1150
                  out.emplace_back(group, version);
9✔
1151
               }
1152
            }
1153
            return out;
1✔
1154
         };
×
1155

1156
         for(const auto& [ecdh_group, version] : groups_and_versions()) {
10✔
1157
            if(!Botan::EC_Group::supports_named_group(ecdh_group.to_string().value())) {
27✔
1158
               continue;
×
1159
            }
1160

1161
            auto policy = std::make_shared<Test_Policy>();
9✔
1162
            policy->set("groups", "0x" + Botan::hex_encode(Botan::store_be(ecdh_group.wire_code())));
27✔
1163

1164
            TLS_Handshake_Test test("Client uses a custom ECDH provider for " + ecdh_group.to_string().value() +
54✔
1165
                                       " in " + version.to_string(),
27✔
1166
                                    version,
1167
                                    creds,
1168
                                    policy,
1169
                                    policy,
1170
                                    rng,
1171
                                    noop_session_manager,
1172
                                    noop_session_manager,
1173
                                    false);
45✔
1174

1175
            auto& test_results = test.results();
9✔
1176

1177
            bool generator_called = false;
9✔
1178
            bool agreement_called = false;
9✔
1179

1180
            test.set_custom_client_tls_generate_ephemeral_ecdh_key_callback(
×
1181
               [&](const Botan::TLS::Group_Params& group,
9✔
1182
                   Botan::RandomNumberGenerator& clbk_rng,
1183
                   Botan::EC_Point_Format format) -> std::unique_ptr<Botan::PK_Key_Agreement_Key> {
1184
                  generator_called = true;
9✔
1185
                  test_results.require("tls_generate_ephemeral_ecdh_key_callback called for ECDH",
9✔
1186
                                       group.is_ecdh_named_curve());
9✔
1187
                  const auto ec_group = Botan::EC_Group::from_name(group.to_string().value());
18✔
1188
                  return std::make_unique<HardwareEcdhKey>(ec_group, clbk_rng, format);
9✔
1189
               });
9✔
1190

1191
            test.set_custom_client_tls_ephemeral_key_agreement_callback(
×
1192
               [&](const std::variant<Botan::TLS::Group_Params, Botan::DL_Group>& group,
9✔
1193
                   const Botan::PK_Key_Agreement_Key& private_key,
1194
                   const std::vector<uint8_t>& peer_public_value,
1195
                   Botan::RandomNumberGenerator& clbk_rng,
1196
                   const Botan::TLS::Policy&) -> Botan::secure_vector<uint8_t> {
1197
                  agreement_called = true;
9✔
1198

1199
                  const auto* group_params = std::get_if<Botan::TLS::Group_Params>(&group);
9✔
1200
                  test_results.require("tls_ephemeral_key_agreement_callback called with a TLS group",
9✔
1201
                                       group_params != nullptr);
1202
                  test_results.require("tls_ephemeral_key_agreement_callback called with an ECDH group",
9✔
1203
                                       group_params->is_ecdh_named_curve());
9✔
1204

1205
                  const auto* hwkey = dynamic_cast<const HardwareEcdhKey*>(&private_key);
9✔
1206
                  test_results.require("tls_ephemeral_key_agreement_callback called with a HardwareEcdhKey",
9✔
1207
                                       hwkey != nullptr);
1208

1209
                  const Botan::PK_Key_Agreement ka(private_key, clbk_rng, "Raw");
9✔
1210
                  return ka.derive_key(0 /* no KDF */, peer_public_value).bits_of();
27✔
1211
               });
9✔
1212

1213
            test.go();
9✔
1214
            test.results().test_is_true("custom generation was used", generator_called);
9✔
1215
            test.results().test_is_true("custom agreement was used", agreement_called);
9✔
1216
            results.push_back(test.results());
9✔
1217
         }
19✔
1218
      }
2✔
1219

1220
      class CustomKDF : public Botan::KDF {
8✔
1221
         public:
1222
            std::string name() const override { return "CustomKDF"; }
×
1223

1224
            std::unique_ptr<KDF> new_object() const override { return std::make_unique<CustomKDF>(); }
×
1225

1226
            // always returns a static master secret
1227
            void perform_kdf(std::span<uint8_t> key,
10✔
1228
                             std::span<const uint8_t> /*secret*/,
1229
                             std::span<const uint8_t> /*salt*/,
1230
                             std::span<const uint8_t> /*label*/) const override {
1231
               std::fill(key.begin(), key.end(), 0xAA);
10✔
1232
            }
10✔
1233
      };
1234

1235
      void test_custom_kdf_provider(std::vector<Test::Result>& results,
1✔
1236
                                    const std::shared_ptr<Credentials_Manager_Test>& creds,
1237
                                    const std::shared_ptr<Botan::RandomNumberGenerator>& rng) {
1238
         auto noop_session_manager = std::make_shared<Botan::TLS::Session_Manager_Noop>();
1✔
1239

1240
         auto policy = std::make_shared<Test_Policy>();
1✔
1241

1242
         TLS_Handshake_Test test("Client and Server use a custom KDF provider in TLS 1.2",
1✔
1243
                                 Botan::TLS::Protocol_Version::TLS_V12,
1244
                                 creds,
1245
                                 policy,
1246
                                 policy,
1247
                                 rng,
1248
                                 noop_session_manager,
1249
                                 noop_session_manager,
1250
                                 false);
5✔
1251

1252
         bool client_custom_kdf_called = false;
1✔
1253
         bool server_custom_kdf_called = false;
1✔
1254

1255
         test.set_client_custom_kdf_callback([&](std::string_view) -> std::unique_ptr<Botan::KDF> {
1✔
1256
            client_custom_kdf_called = true;
4✔
1257
            return std::make_unique<CustomKDF>();
4✔
1258
         });
1259

1260
         test.set_server_custom_kdf_callback([&](std::string_view) -> std::unique_ptr<Botan::KDF> {
1✔
1261
            server_custom_kdf_called = true;
4✔
1262
            return std::make_unique<CustomKDF>();
4✔
1263
         });
1264

1265
         test.go();
1✔
1266

1267
         test.results().test_is_true("custom KDF was used on client side", client_custom_kdf_called);
1✔
1268
         test.results().test_is_true("custom KDF was used on server side", server_custom_kdf_called);
1✔
1269
         results.push_back(test.results());
1✔
1270
      }
3✔
1271

1272
   public:
1273
      std::vector<Test::Result> run() override {
1✔
1274
         std::vector<Test::Result> results;
1✔
1275

1276
         auto rng = Test::new_shared_rng(this->test_name());
1✔
1277

1278
         auto creds = create_creds(*rng);
1✔
1279
         if(!creds) {
1✔
1280
            // Credentials manager creation failed, likely no EC group available
1281
            // Skip this test entirely
1282
            return {Test::Result::Note("TLS unit tests", "Skipping due to missing credentials")};
×
1283
         }
1284

1285
   #if defined(BOTAN_HAS_TLS_CBC)
1286
         for(const bool etm_setting : {false, true}) {
3✔
1287
            test_legacy_versions("AES-128 RSA", results, creds, rng, "RSA", "AES-128", "SHA-256 SHA-1", etm_setting);
4✔
1288
            test_legacy_versions("AES-128 ECDH", results, creds, rng, "ECDH", "AES-128", "SHA-256 SHA-1", etm_setting);
4✔
1289

1290
      #if defined(BOTAN_HAS_DES)
1291
            test_legacy_versions("3DES RSA", results, creds, rng, "RSA", "3DES", "SHA-1", etm_setting);
4✔
1292
            test_legacy_versions("3DES ECDH", results, creds, rng, "ECDH", "3DES", "SHA-1", etm_setting);
4✔
1293
      #endif
1294
         }
1295

1296
         test_legacy_versions("AES-128 DH", results, creds, rng, "DH", "AES-128", "SHA-256");
2✔
1297

1298
   #endif
1299

1300
   #if defined(BOTAN_HAS_TLS_NULL)
1301
         test_legacy_versions("NULL PSK", results, creds, rng, "PSK", "NULL", "SHA-256");
2✔
1302
   #endif
1303

1304
         auto strict_policy = std::make_shared<Botan::TLS::Strict_Policy>();
1✔
1305
         test_with_policy("Strict policy", results, creds, available_versions(), strict_policy, rng);
2✔
1306

1307
   #if defined(BOTAN_HAS_TLS_12)
1308
         auto suiteb_128 = std::make_shared<Botan::TLS::NSA_Suite_B_128>();
1✔
1309
         test_with_policy("Suite B", results, creds, {Botan::TLS::Protocol_Version::TLS_V12}, suiteb_128, rng);
2✔
1310
   #endif
1311

1312
         test_legacy_versions("AES-128/GCM RSA", results, creds, rng, "RSA", "AES-128/GCM");
2✔
1313
         test_modern_versions("AES-128/GCM ECDH", results, creds, rng, "ECDH", "AES-128/GCM");
2✔
1314

1315
         test_modern_versions(
3✔
1316
            "AES-128/GCM ECDH RSA", results, creds, rng, "ECDH", "AES-128/GCM", "AEAD", {{"signature_methods", "RSA"}});
1317

1318
         test_modern_versions("AES-128/GCM ECDH no OCSP",
3✔
1319
                              results,
1320
                              creds,
1321
                              rng,
1322
                              "ECDH",
1323
                              "AES-128/GCM",
1324
                              "AEAD",
1325
                              {{"support_cert_status_message", "false"}});
1326

1327
   #if defined(BOTAN_HAS_CAMELLIA) && defined(BOTAN_HAS_AEAD_GCM)
1328
         test_legacy_versions("Camellia-128/GCM ECDH", results, creds, rng, "ECDH", "Camellia-128/GCM", "AEAD");
2✔
1329
   #endif
1330

1331
   #if defined(BOTAN_HAS_ARIA)
1332
         test_legacy_versions("ARIA/GCM ECDH", results, creds, rng, "ECDH", "ARIA-128/GCM", "AEAD");
2✔
1333
   #endif
1334

1335
         // Note: TLS 1.3 actually does not support point compression and will
1336
         //       simply ignore this policy configuration. Nevertheless, the
1337
         //       handshake should complete successfully.
1338
         test_modern_versions("AES-128/GCM point compression",
3✔
1339
                              results,
1340
                              creds,
1341
                              rng,
1342
                              "ECDH",
1343
                              "AES-128/GCM",
1344
                              "AEAD",
1345
                              {{"use_ecc_point_compression", "true"}});
1346
         test_modern_versions(
3✔
1347
            "AES-256/GCM p521", results, creds, rng, "ECDH", "AES-256/GCM", "AEAD", {{"groups", "secp521r1"}});
1348

1349
         if(Botan::EC_Group::supports_named_group("brainpool256r1")) {
1✔
1350
            test_modern_versions("AES-128/GCM bp256r1",
3✔
1351
                                 results,
1352
                                 creds,
1353
                                 rng,
1354
                                 "ECDH",
1355
                                 "AES-128/GCM",
1356
                                 "AEAD",
1357
                                 {{"groups", "brainpool256r1"}});
1358
         }
1359

1360
   #if defined(BOTAN_HAS_X25519)
1361
         test_modern_versions("AES-128/GCM x25519", results, creds, rng, "ECDH", "AES-128/GCM", "AEAD", {{
3✔
1362
                                 "groups",
1363
                                 "x25519"
1364
                              }});
1365
   #endif
1366

1367
         test_modern_versions("AES-128/GCM FFDHE-2048",
3✔
1368
                              results,
1369
                              creds,
1370
                              rng,
1371
                              "DH",
1372
                              "AES-128/GCM",
1373
                              "AEAD",
1374
                              {{"groups", "ffdhe/ietf/2048"}});
1375

1376
         test_modern_versions("AES-128/GCM with record padding",
3✔
1377
                              results,
1378
                              creds,
1379
                              rng,
1380
                              "ECDH",
1381
                              "AES-128/GCM",
1382
                              "AEAD",
1383
                              {{"minimum_record_size", "2048"}});
1384

1385
         auto creds_with_client_cert = create_creds(*rng, true);
1✔
1386
         if(creds_with_client_cert) {
1✔
1387
            test_modern_versions(
2✔
1388
               "AES-256/GCM client certs", results, creds_with_client_cert, rng, "ECDH", "AES-256/GCM", "AEAD", true);
1389
         }
1390

1391
   #if defined(BOTAN_HAS_AEAD_OCB)
1392
         test_legacy_versions("AES-256/OCB ECDH", results, creds, rng, "ECDH", "AES-256/OCB(12)");
2✔
1393
   #endif
1394

1395
   #if defined(BOTAN_HAS_AEAD_CHACHA20_POLY1305)
1396
         test_modern_versions("ChaCha20Poly1305 ECDH", results, creds, rng, "ECDH", "ChaCha20Poly1305");
2✔
1397
   #endif
1398

1399
         test_modern_versions("AES-128/GCM PSK", results, creds, rng, "PSK", "AES-128/GCM");
2✔
1400

1401
   #if defined(BOTAN_HAS_AEAD_CCM)
1402
         test_modern_versions("AES-128/CCM PSK", results, creds, rng, "PSK", "AES-128/CCM");
2✔
1403
         test_modern_versions("AES-128/CCM-8 PSK", results, creds, rng, "PSK", "AES-128/CCM(8)");
2✔
1404
   #endif
1405

1406
         test_modern_versions("AES-128/GCM ECDHE_PSK", results, creds, rng, "ECDHE_PSK", "AES-128/GCM");
2✔
1407

1408
         // Test with a custom curve
1409

1410
         /*
1411
         * Disabled, currently broken.
1412
         *
1413
         * TLS 1.2 server side currently can't negotiate application-specific group codes.
1414
         *
1415
         * The current flow is that choose_ciphersuite computes have_shared_ecc_curve via
1416
         * Client_Hello::supported_ecc_curves(), which goes through Supported_Groups::ec_groups()
1417
         * and filters by Group_Params::is_pure_ecc_group(). That predicate only accepts a hardcoded
1418
         * set of known groups, so a custom code such as 0xFEE1 is silently dropped and the server
1419
         * throws "Can't agree on a ciphersuite with client".
1420
         */
1421
         const bool disabled = true;
1✔
1422
         if(Botan::EC_Group::supports_application_specific_group() && !disabled) {
1✔
1423
            /*
1424
            * First register a curve, in this case numsp256d1
1425
            */
1426
            const Botan::BigInt p("0xFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF43");
1427
            const Botan::BigInt a("0xFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF40");
1428
            const Botan::BigInt b("0x25581");
1429
            const Botan::BigInt order("0xFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFE43C8275EA265C6020AB20294751A825");
1430

1431
            const Botan::BigInt g_x("0x01");
1432
            const Botan::BigInt g_y("0x696F1853C1E466D7FC82C96CCEEEDD6BD02C2F9375894EC10BF46306C2B56C77");
1433

1434
            const Botan::OID oid("1.3.6.1.4.1.25258.4.1");
1435

1436
            Botan::OID::register_oid(oid, "numsp256d1");
1437

1438
            // Creating this object implicitly registers the curve for future use ...
1439
            const Botan::EC_Group reg_numsp256d1(oid, p, a, b, g_x, g_y, order);
1440

1441
            test_modern_versions("AES-256/GCM numsp256d1",
1442
                                 results,
1443
                                 creds,
1444
                                 rng,
1445
                                 "ECDH",
1446
                                 "AES-256/GCM",
1447
                                 "AEAD",
1448
                                 {{"groups", "0xFEE1"}, {"minimum_ecdh_group_size", "112"}});
1449
         }
1450

1451
         // Test connection abort by the application
1452
         // by throwing in Callbacks::tls_session_established()
1453

1454
         test_session_established_abort(results, creds, rng);
2✔
1455

1456
         // Use tls12_generate_ephemeral_ecdh_key() / tls_generate_ephemeral_key() to
1457
         // establish a custom ECDH provider mocking some hardware adapter for key
1458
         // generation and tls_ephemeral_key_agreement() for performing the key agreement.
1459

1460
         test_custom_ecdh_provider(results, creds, rng);
1✔
1461

1462
         // Test using a custom KDF instead of the original TLS 1.2 KDF
1463
         // (this is a TLS 1.2 specific feature)
1464

1465
   #if defined(BOTAN_HAS_TLS_12)
1466
         test_custom_kdf_provider(results, creds, rng);
1✔
1467
   #endif
1468

1469
         return results;
1✔
1470
      }
13✔
1471
};
1472

1473
BOTAN_REGISTER_TEST("tls", "unit_tls", TLS_Unit_Tests);
1474

1475
#endif
1476

1477
}  // namespace
1478

1479
}  // namespace Botan_Tests
STATUS · Troubleshooting · Open an Issue · Sales · Support · CAREERS · ENTERPRISE · START FREE TRIAL · SCHEDULE DEMO
ANNOUNCEMENTS · TWITTER · TOS & SLA · Supported CI Services · What's a CI service? · Automated Testing

© 2026 Coveralls, Inc