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randombit / botan / 11844561993

14 Nov 2024 07:58PM UTC coverage: 91.178% (+0.1%) from 91.072%
11844561993

Pull #4435

github

web-flow
Merge 81dcb29da into e430f157a
Pull Request #4435: Test duration values ​​are now presented in seconds with six digits of precision. Tests without time measurements have been edited.

91856 of 100744 relevant lines covered (91.18%)

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89.51
/src/tests/test_tls_messages.cpp
1
/*
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* (C) 2016 Juraj Somorovsky
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* (C) 2021 Elektrobit Automotive GmbH
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* (C) 2022 Hannes Rantzsch, René Meusel - neXenio GmbH
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* (C) 2022 René Meusel - Rohde & Schwarz Cybersecurity
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*
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* Botan is released under the Simplified BSD License (see license.txt)
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*/
9

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#include "tests.h"
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12
#if defined(BOTAN_HAS_TLS)
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   #include <botan/hex.h>
14
   #include <botan/mac.h>
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   #include <botan/ocsp.h>
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   #include <botan/tls_alert.h>
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   #include <botan/tls_callbacks.h>
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   #include <botan/tls_ciphersuite.h>
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   #include <botan/tls_handshake_msg.h>
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   #include <botan/tls_messages.h>
21
   #include <botan/tls_version.h>
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   #include <botan/internal/loadstor.h>
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   #include <exception>
24
   #if defined(BOTAN_HAS_TLS_13)
25
      #include "test_rng.h"
26

27
      #include <botan/internal/tls_reader.h>
28
   #endif
29
#endif
30

31
namespace Botan_Tests {
32

33
namespace {
34

35
#if defined(BOTAN_HAS_TLS)
36
Test::Result test_hello_verify_request() {
2✔
37
   Test::Result result("hello_verify_request construction");
2✔
38
   result.start_timer();
2✔
39

40
   std::vector<uint8_t> test_data;
2✔
41
   std::vector<uint8_t> key_data(32);
2✔
42
   Botan::SymmetricKey sk(key_data);
2✔
43

44
   // Compute cookie over an empty string with an empty test data
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   Botan::TLS::Hello_Verify_Request hfr(test_data, "", sk);
2✔
46

47
   // Compute HMAC
48
   auto hmac = Botan::MessageAuthenticationCode::create("HMAC(SHA-256)");
2✔
49
   hmac->set_key(sk);
2✔
50
   hmac->update_be(uint64_t(0));  // length of client hello
2✔
51
   hmac->update_be(uint64_t(0));  // length of client identity
2✔
52
   std::vector<uint8_t> test = unlock(hmac->final());
4✔
53

54
   result.test_eq("Cookie comparison", hfr.cookie(), test);
2✔
55
   result.end_timer();
2✔
56
   return result;
2✔
57
}
10✔
58

59
class Test_Callbacks : public Botan::TLS::Callbacks {
11✔
60
   public:
61
      Test_Callbacks(Test::Result& result) : m_result(result) {}
11✔
62

63
   public:
64
      void tls_emit_data(std::span<const uint8_t>) override {
×
65
         m_result.test_failure("unsolicited call to tls_emit_data");
×
66
      }
×
67

68
      void tls_record_received(uint64_t, std::span<const uint8_t>) override {
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         m_result.test_failure("unsolicited call to tls_record_received");
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      }
×
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72
      void tls_alert(Botan::TLS::Alert) override { m_result.test_failure("unsolicited call to tls_alert"); }
×
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74
      void tls_session_established(const Botan::TLS::Session_Summary&) override {
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         m_result.test_failure("unsolicited call to tls_session_established");
×
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      }
×
77

78
   private:
79
      Test::Result& m_result;
80
};
81

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class TLS_Message_Parsing_Test final : public Text_Based_Test {
×
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   public:
84
      TLS_Message_Parsing_Test() :
1✔
85
            Text_Based_Test("tls", "Buffer,Exception", "Protocol,AdditionalData,Ciphersuite,Name") {}
2✔
86

87
      Test::Result run_one_test(const std::string& algo, const VarMap& vars) override {
46✔
88
         const std::vector<uint8_t> buffer = vars.get_req_bin("Buffer");
46✔
89
         const std::vector<uint8_t> protocol = vars.get_opt_bin("Protocol");
46✔
90
         const std::vector<uint8_t> ciphersuite = vars.get_opt_bin("Ciphersuite");
46✔
91
         const std::string exception = vars.get_req_str("Exception");
46✔
92
         const std::string expected_name = vars.get_opt_str("Name", "");
92✔
93
         const bool is_positive_test = exception.empty();
46✔
94

95
         Test::Result result(algo + " parsing");
46✔
96
         result.start_timer();
46✔
97

98
         if(is_positive_test) {
46✔
99
            try {
17✔
100
               if(algo == "cert_verify") {
17✔
101
                  Botan::TLS::Certificate_Verify message(buffer);
2✔
102
               } else if(algo == "client_hello") {
17✔
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                  const std::string extensions = vars.get_req_str("AdditionalData");
4✔
104
                  Botan::TLS::Protocol_Version pv(protocol[0], protocol[1]);
4✔
105
                  Botan::TLS::Client_Hello_12 message(buffer);
4✔
106
                  result.test_eq("Protocol version", message.legacy_version().to_string(), pv.to_string());
8✔
107
                  std::vector<uint8_t> buf;
4✔
108
                  for(const Botan::TLS::Extension_Code& type : message.extension_types()) {
28✔
109
                     uint16_t u16type = static_cast<uint16_t>(type);
24✔
110
                     buf.push_back(Botan::get_byte<0>(u16type));
24✔
111
                     buf.push_back(Botan::get_byte<1>(u16type));
24✔
112
                  }
×
113
                  result.test_eq("Hello extensions", Botan::hex_encode(buf), extensions);
8✔
114
               } else if(algo == "hello_verify") {
15✔
115
                  Botan::TLS::Hello_Verify_Request message(buffer);
1✔
116
               } else if(algo == "hello_request") {
11✔
117
                  Botan::TLS::Hello_Request message(buffer);
1✔
118
               } else if(algo == "new_session_ticket") {
10✔
119
                  Botan::TLS::New_Session_Ticket_12 message(buffer);
3✔
120
               } else if(algo == "server_hello") {
9✔
121
                  const std::string extensions = vars.get_req_str("AdditionalData");
2✔
122
                  Botan::TLS::Protocol_Version pv(protocol[0], protocol[1]);
2✔
123
                  Botan::TLS::Ciphersuite cs =
2✔
124
                     Botan::TLS::Ciphersuite::by_id(Botan::make_uint16(ciphersuite[0], ciphersuite[1])).value();
2✔
125
                  Botan::TLS::Server_Hello_12 message(buffer);
2✔
126
                  result.test_eq("Protocol version", message.legacy_version().to_string(), pv.to_string());
4✔
127
                  result.confirm("Ciphersuite", (message.ciphersuite() == cs.ciphersuite_code()));
4✔
128
                  std::vector<uint8_t> buf;
2✔
129
                  for(const Botan::TLS::Extension_Code& type : message.extension_types()) {
11✔
130
                     uint16_t u16type = static_cast<uint16_t>(type);
9✔
131
                     buf.push_back(Botan::get_byte<0>(u16type));
9✔
132
                     buf.push_back(Botan::get_byte<1>(u16type));
9✔
133
                  }
×
134
                  result.test_eq("Hello extensions", Botan::hex_encode(buf), extensions);
4✔
135
               } else if(algo == "alert") {
6✔
136
                  Botan::secure_vector<uint8_t> sb(buffer.begin(), buffer.end());
3✔
137
                  Botan::TLS::Alert message(sb);
3✔
138
                  result.test_lt("Alert type vectors result to UNKNOWN_CA or ACCESS_DENIED, which is shorter than 15",
6✔
139
                                 message.type_string().size(),
6✔
140
                                 15);
141
               } else if(algo == "cert_status") {
4✔
142
                  Botan::TLS::Certificate_Status message(buffer, Botan::TLS::Connection_Side::Server);
1✔
143

144
                  Botan::OCSP::Response resp(message.response());
1✔
145

146
                  const std::vector<std::string> CNs = resp.signer_name().get_attribute("CN");
1✔
147

148
                  // This is not requird by OCSP protocol, we are just using it as a test here
149
                  if(result.test_eq("OCSP response has signer name", CNs.size(), 1)) {
1✔
150
                     result.test_eq("Expected name", CNs[0], expected_name);
2✔
151
                  }
152
               } else {
2✔
153
                  throw Test_Error("Unknown message type " + algo + " in TLS parsing tests");
×
154
               }
155
               result.test_success("Correct parsing");
34✔
156
            } catch(std::exception& e) {
×
157
               result.test_failure(e.what());
×
158
            }
×
159
         } else {
160
            if(algo == "cert_verify") {
29✔
161
               result.test_throws("invalid cert_verify input", exception, [&buffer]() {
6✔
162
                  Botan::TLS::Certificate_Verify message(buffer);
2✔
163
               });
×
164
            } else if(algo == "client_hello") {
27✔
165
               result.test_throws("invalid client_hello input", exception, [&buffer]() {
27✔
166
                  Botan::TLS::Client_Hello_12 message(buffer);
9✔
167
               });
×
168
            } else if(algo == "hello_verify") {
18✔
169
               result.test_throws("invalid hello_verify input", exception, [&buffer]() {
12✔
170
                  Botan::TLS::Hello_Verify_Request message(buffer);
4✔
171
               });
×
172
            } else if(algo == "hello_request") {
14✔
173
               result.test_throws(
3✔
174
                  "invalid hello_request input", exception, [&buffer]() { Botan::TLS::Hello_Request message(buffer); });
2✔
175
            } else if(algo == "cert_status") {
13✔
176
               result.test_throws("invalid cert_status input", exception, [&buffer]() {
12✔
177
                  Botan::TLS::Certificate_Status message(buffer, Botan::TLS::Connection_Side::Server);
4✔
178
               });
×
179
            } else if(algo == "new_session_ticket") {
9✔
180
               result.test_throws("invalid new_session_ticket input", exception, [&buffer]() {
6✔
181
                  Botan::TLS::New_Session_Ticket_12 message(buffer);
2✔
182
               });
×
183
            } else if(algo == "server_hello") {
7✔
184
               result.test_throws("invalid server_hello input", exception, [&buffer]() {
8✔
185
                  Botan::TLS::Server_Hello_12 message(buffer);
4✔
186
               });
×
187
            } else if(algo == "alert") {
3✔
188
               result.test_throws("invalid alert input", exception, [&buffer]() {
9✔
189
                  Botan::secure_vector<uint8_t> sb(buffer.begin(), buffer.end());
3✔
190
                  Botan::TLS::Alert message(sb);
3✔
191
               });
×
192
            } else {
193
               throw Test_Error("Unknown message type " + algo + " in TLS parsing tests");
×
194
            }
195
         }
196

197
         result.end_timer();
46✔
198
         return result;
46✔
199
      }
118✔
200

201
      std::vector<Test::Result> run_final_tests() override {
1✔
202
         std::vector<Test::Result> results;
1✔
203

204
         results.push_back(test_hello_verify_request());
2✔
205

206
         return results;
1✔
207
      }
×
208
};
209

210
BOTAN_REGISTER_TEST("tls", "tls_messages", TLS_Message_Parsing_Test);
211

212
   #if defined(BOTAN_HAS_TLS_13)
213
      #if defined(BOTAN_HAS_X25519)
214
class TLS_Key_Share_CH_Generation_Test final : public Text_Based_Test {
×
215
   public:
216
      TLS_Key_Share_CH_Generation_Test() :
1✔
217
            Text_Based_Test("tls_extensions/generation/key_share_CH_offers.vec",
218
                            "Groups,Rng_Data,Expected_Content",
219
                            "Offered_Groups") {}
2✔
220

221
      Test::Result run_one_test(const std::string& extension, const VarMap& vars) override {
11✔
222
         Test::Result result(extension + " generation");
11✔
223

224
         const auto rng_data = vars.get_req_bin("Rng_Data");
11✔
225
         const auto groups = vars.get_req_str("Groups");
11✔
226
         const auto offered_groups = vars.get_opt_str("Offered_Groups", groups);
11✔
227
         const auto expected_key_share = vars.get_req_bin("Expected_Content");
11✔
228

229
         Test_Callbacks cb(result);
11✔
230
         Botan::TLS::Text_Policy policy("key_exchange_groups = " + groups +
22✔
231
                                        "\n"
232
                                        "key_exchange_groups_to_offer = " +
22✔
233
                                        offered_groups);
11✔
234
         Fixed_Output_RNG rng;
11✔
235
         rng.add_entropy(rng_data.data(), rng_data.size());
11✔
236

237
         Botan::TLS::Key_Share share(policy, cb, rng);
11✔
238
         const auto serialized_buffer = share.serialize(Botan::TLS::Connection_Side::Client);
11✔
239

240
         result.test_eq("key_share_CH_offers test", serialized_buffer, expected_key_share);
11✔
241

242
         return result;
11✔
243
      }
44✔
244
};
245

246
BOTAN_REGISTER_TEST("tls_extensions", "tls_extensions_key_share_client_hello", TLS_Key_Share_CH_Generation_Test);
247

248
      #endif
249

250
class TLS_Extension_Parsing_Test final : public Text_Based_Test {
×
251
   public:
252
      TLS_Extension_Parsing_Test() :
1✔
253
            Text_Based_Test("tls_extensions/parsing",
254
                            "Buffer,Exception",
255
                            "Protocol,Ciphersuite,AdditionalData,Name,Expected_Content") {}
2✔
256

257
      Test::Result run_one_test(const std::string& extension, const VarMap& vars) override {
23✔
258
         const std::vector<uint8_t> buffer = vars.get_req_bin("Buffer");
23✔
259
         const std::vector<uint8_t> protocol = vars.get_opt_bin("Protocol");
23✔
260
         const std::vector<uint8_t> ciphersuite = vars.get_opt_bin("Ciphersuite");
23✔
261
         const std::string exception = vars.get_req_str("Exception");
23✔
262
         const bool is_positive_test = exception.empty();
23✔
263

264
         Test::Result result(extension + " parsing");
23✔
265

266
         if(is_positive_test) {
23✔
267
            try {
12✔
268
               if(extension == "supported_version") {
12✔
269
                  const std::string expected_buffer = Botan::hex_encode(buffer);
2✔
270
                  Botan::TLS::TLS_Data_Reader tls_data_reader("ClientHello", buffer);
2✔
271
                  Botan::TLS::Supported_Versions supported_versions(
2✔
272
                     tls_data_reader, static_cast<uint16_t>(buffer.size()), Botan::TLS::Connection_Side::Client);
2✔
273
                  const auto serialized_buffer = supported_versions.serialize(Botan::TLS::Connection_Side::Client);
2✔
274

275
                  const std::vector<std::vector<uint8_t>> expected_versions = vars.get_req_bin_list("Expected_Content");
2✔
276
                  for(const auto& expected_version : expected_versions) {
5✔
277
                     result.confirm("Expected_Content",
6✔
278
                                    supported_versions.supports(
3✔
279
                                       Botan::TLS::Protocol_Version(expected_version[0], expected_version[1])));
3✔
280
                  }
281

282
                  result.test_eq("supported_version test 1", Botan::hex_encode(serialized_buffer), expected_buffer);
4✔
283
               } else if(extension == "supported_groups") {
14✔
284
                  Botan::TLS::TLS_Data_Reader tls_data_reader("ClientHello", buffer);
2✔
285
                  Botan::TLS::Supported_Groups supp_groups_ext(tls_data_reader, static_cast<uint16_t>(buffer.size()));
2✔
286

287
                  const auto serialized_buffer = supp_groups_ext.serialize(Botan::TLS::Connection_Side::Client);
2✔
288
                  const auto expected_content = vars.get_req_bin("Expected_Content");
2✔
289

290
                  const auto dh_groups = supp_groups_ext.dh_groups();
2✔
291
                  const auto ec_groups = supp_groups_ext.ec_groups();
2✔
292

293
                  std::vector<Botan::TLS::Named_Group> named_groupes;
2✔
294
                  std::merge(dh_groups.begin(),
2✔
295
                             dh_groups.end(),
296
                             ec_groups.begin(),
297
                             ec_groups.end(),
298
                             std::back_inserter(named_groupes));
299

300
                  result.confirm("supported_groups extension - size check",
4✔
301
                                 (named_groupes.size() * 2) == expected_content.size());
2✔
302

303
                  for(size_t i = 0; i < expected_content.size(); i += 2) {
12✔
304
                     const auto expected_named_group =
10✔
305
                        Botan::make_uint16(expected_content.at(i), expected_content.at(i + 1));
10✔
306

307
                     result.confirm("signature_algorithms_cert extension - named group check",
10✔
308
                                    std::any_of(named_groupes.cbegin(),
10✔
309
                                                named_groupes.cend(),
310
                                                [&expected_named_group](const Botan::TLS::Named_Group& named_group) {
46✔
311
                                                   return static_cast<Botan::TLS::Named_Group>(expected_named_group) ==
16✔
312
                                                          named_group;
313
                                                }));
314
                  }
315

316
                  result.test_eq("supported_groups extension - serialization test", serialized_buffer, buffer);
4✔
317
               } else if(extension == "signature_algorithms_cert") {
17✔
318
                  Botan::TLS::TLS_Data_Reader tls_data_reader("ClientHello", buffer);
2✔
319
                  Botan::TLS::Signature_Algorithms_Cert sig_algo_cert(tls_data_reader,
2✔
320
                                                                      static_cast<uint16_t>(buffer.size()));
2✔
321

322
                  const auto serialized_buffer = sig_algo_cert.serialize(Botan::TLS::Connection_Side::Client);
2✔
323
                  const auto expected_content = vars.get_req_bin("Expected_Content");
2✔
324

325
                  result.confirm("signature_algorithms_cert extension - size check",
2✔
326
                                 sig_algo_cert.supported_schemes().size() * 2 == expected_content.size());
2✔
327

328
                  size_t offset = 0;
2✔
329
                  for(const auto& sig_scheme : sig_algo_cert.supported_schemes()) {
10✔
330
                     const auto expected_sig_scheme =
8✔
331
                        Botan::make_uint16(expected_content.at(offset), expected_content.at(offset + 1));
8✔
332

333
                     result.confirm("signature_algorithms_cert extension - sig scheme check",
8✔
334
                                    Botan::TLS::Signature_Scheme(expected_sig_scheme) == sig_scheme);
8✔
335

336
                     offset += 2;
8✔
337
                  }
338

339
                  result.test_eq("signature_algorithms_cert extension - serialization test", serialized_buffer, buffer);
4✔
340
               } else if(extension == "cookie") {
10✔
341
                  Botan::TLS::TLS_Data_Reader tls_data_reader("HelloRetryRequest", buffer);
2✔
342
                  Botan::TLS::Cookie cookie(tls_data_reader, static_cast<uint16_t>(buffer.size()));
2✔
343

344
                  const auto serialized_buffer = cookie.serialize(Botan::TLS::Connection_Side::Server);
2✔
345
                  const auto expected_cookie = vars.get_req_bin("Expected_Content");
2✔
346

347
                  result.test_eq("Cookie extension test",
4✔
348
                                 Botan::hex_encode(expected_cookie),
4✔
349
                                 Botan::hex_encode(cookie.get_cookie()));
4✔
350
               } else if(extension == "key_share_HRR") {
10✔
351
                  Botan::TLS::TLS_Data_Reader tls_data_reader("HelloRetryRequest", buffer);
1✔
352
                  Botan::TLS::Key_Share key_share(tls_data_reader,
1✔
353
                                                  static_cast<uint16_t>(buffer.size()),
1✔
354
                                                  Botan::TLS::Handshake_Type::HelloRetryRequest);
1✔
355

356
                  const auto serialized_buffer = key_share.serialize(Botan::TLS::Connection_Side::Client);
1✔
357
                  const auto expected_key_share = vars.get_req_bin("Expected_Content");
1✔
358

359
                  result.test_eq(
3✔
360
                     "key_share_HRR test", Botan::hex_encode(serialized_buffer), Botan::hex_encode(expected_key_share));
2✔
361
               } else if(extension == "key_share_SH") {
5✔
362
                  Botan::TLS::TLS_Data_Reader tls_data_reader("ServerHello", buffer);
1✔
363
                  Botan::TLS::Key_Share key_share(
1✔
364
                     tls_data_reader, static_cast<uint16_t>(buffer.size()), Botan::TLS::Handshake_Type::ServerHello);
1✔
365

366
                  const auto serialized_buffer = key_share.serialize(Botan::TLS::Connection_Side::Client);
1✔
367
                  const auto expected_key_share = vars.get_req_bin("Expected_Content");
1✔
368

369
                  result.test_eq(
3✔
370
                     "key_share_SH test", Botan::hex_encode(serialized_buffer), Botan::hex_encode(expected_key_share));
2✔
371
               } else if(extension == "key_share_CH") {
4✔
372
                  Botan::TLS::TLS_Data_Reader tls_data_reader("ClientHello", buffer);
2✔
373
                  Botan::TLS::Key_Share key_share(
2✔
374
                     tls_data_reader, static_cast<uint16_t>(buffer.size()), Botan::TLS::Handshake_Type::ClientHello);
2✔
375

376
                  const auto serialized_buffer = key_share.serialize(Botan::TLS::Connection_Side::Server);
2✔
377
                  const auto expected_key_share = vars.get_req_bin("Expected_Content");
2✔
378

379
                  result.test_eq(
6✔
380
                     "key_share_CH test", Botan::hex_encode(serialized_buffer), Botan::hex_encode(expected_key_share));
4✔
381
               } else {
4✔
382
                  throw Test_Error("Unknown extension type " + extension + " in TLS parsing tests");
×
383
               }
384
               result.test_success("Correct parsing");
24✔
385
            } catch(std::exception& e) {
×
386
               result.test_failure(e.what());
×
387
            }
×
388
         } else {
389
         }
390

391
         return result;
23✔
392
      }
46✔
393

394
      std::vector<Test::Result> run_final_tests() override {
1✔
395
         std::vector<Test::Result> results;
1✔
396

397
         results.push_back(test_hello_verify_request());
2✔
398

399
         return results;
1✔
400
      }
×
401
};
402

403
BOTAN_REGISTER_TEST("tls_extensions", "tls_extensions_parsing", TLS_Extension_Parsing_Test);
404

405
class TLS_13_Message_Parsing_Test final : public Text_Based_Test {
×
406
   public:
407
      TLS_13_Message_Parsing_Test() :
1✔
408
            Text_Based_Test("tls_13", "Buffer,Exception", "Protocol,Message_Type,AdditionalData,Ciphersuite,Name") {}
2✔
409

410
      Test::Result run_one_test(const std::string& algo, const VarMap& vars) override {
24✔
411
         const std::vector<uint8_t> buffer = vars.get_req_bin("Buffer");
24✔
412
         const std::vector<uint8_t> protocol = vars.get_opt_bin("Protocol");
24✔
413
         const std::string msg_type = vars.get_opt_str("Message_Type", "");
48✔
414
         const std::vector<uint8_t> ciphersuite = vars.get_opt_bin("Ciphersuite");
24✔
415
         const std::string exception = vars.get_req_str("Exception");
24✔
416
         const bool is_positive_test = exception.empty();
24✔
417

418
         Test::Result result("TLS 1.3 " + algo + " parsing");
48✔
419

420
         if(algo == "client_hello") {
24✔
421
            try {
16✔
422
               std::visit(
20✔
423
                  [&](auto ch) {
8✔
424
                     if constexpr(std::is_same_v<Botan::TLS::Client_Hello_12, decltype(ch)>) {
425
                        result.confirm("expected Client_Hello_12", msg_type == "client_hello_12");
6✔
426
                     }
427
                     if constexpr(std::is_same_v<Botan::TLS::Client_Hello_13, decltype(ch)>) {
428
                        result.confirm("expected Client_Hello_13", msg_type == "client_hello_13");
2✔
429
                     }
430

431
                     const std::string extensions = vars.get_req_str("AdditionalData");
4✔
432
                     std::vector<uint8_t> exts_buffer;
4✔
433
                     for(Botan::TLS::Extension_Code const& type : ch.extensions().extension_types()) {
28✔
434
                        uint16_t u16type = static_cast<uint16_t>(type);
24✔
435
                        exts_buffer.push_back(Botan::get_byte<0>(u16type));
24✔
436
                        exts_buffer.push_back(Botan::get_byte<1>(u16type));
24✔
437
                     }
438
                     result.test_eq("Hello extensions", Botan::hex_encode(exts_buffer), extensions);
8✔
439

440
                     std::vector<uint8_t> ciphersuites_buffer;
4✔
441
                     for(const auto& cs : ch.ciphersuites()) {
290✔
442
                        ciphersuites_buffer.push_back(Botan::get_byte<0>(cs));
286✔
443
                        ciphersuites_buffer.push_back(Botan::get_byte<1>(cs));
286✔
444
                     }
445
                     result.test_eq("Supported ciphersuites", ciphersuites_buffer, ciphersuite);
4✔
446

447
                     result.confirm("this is a positive test that should not have failed yet", is_positive_test);
8✔
448
                  },
8✔
449
                  Botan::TLS::Client_Hello_13::parse(buffer));
20✔
450
            } catch(const std::exception& ex) {
12✔
451
               result.test_eq("correct error produced", ex.what(), exception);
24✔
452
               result.confirm("negative test", !is_positive_test);
24✔
453
            }
12✔
454
         }
455

456
         if(algo == "server_hello") {
24✔
457
            const std::string extensions = vars.get_req_str("AdditionalData");
8✔
458
            const Botan::TLS::Ciphersuite cs =
8✔
459
               Botan::TLS::Ciphersuite::by_id(Botan::make_uint16(ciphersuite[0], ciphersuite[1])).value();
8✔
460
            const Botan::TLS::Protocol_Version pv(protocol[0], protocol[1]);
8✔
461

462
            try {
8✔
463
               std::visit(
12✔
464
                  [&](auto msg) {
8✔
465
                     if constexpr(std::is_same_v<Botan::TLS::Server_Hello_12, decltype(msg)>) {
466
                        result.confirm("expected Server_Hello_12", msg_type == "server_hello_12");
4✔
467
                        result.confirm("expected pre TLS 1.3 message", pv == msg.legacy_version());
4✔
468
                     } else if constexpr(std::is_same_v<Botan::TLS::Server_Hello_13, decltype(msg)>) {
469
                        result.confirm("expected Server_Hello_13", msg_type == "server_hello_13");
2✔
470
                     } else if constexpr(std::is_same_v<Botan::TLS::Hello_Retry_Request, decltype(msg)>) {
471
                        result.confirm("expected Hello_Retry_Request", msg_type == "hello_retry_request");
2✔
472
                     }
473

474
                     result.confirm("Ciphersuite", (msg.ciphersuite() == cs.ciphersuite_code()));
8✔
475

476
                     std::vector<uint8_t> buf;
4✔
477
                     for(Botan::TLS::Extension_Code const& type : msg.extensions().extension_types()) {
18✔
478
                        uint16_t u16type = static_cast<uint16_t>(type);
14✔
479
                        buf.push_back(Botan::get_byte<0>(u16type));
14✔
480
                        buf.push_back(Botan::get_byte<1>(u16type));
14✔
481
                     }
482
                     result.test_eq("Hello extensions", Botan::hex_encode(buf), extensions);
8✔
483
                  },
4✔
484
                  Botan::TLS::Server_Hello_13::parse(buffer));
12✔
485
            } catch(const std::exception& ex) {
4✔
486
               result.test_eq("correct error produced", ex.what(), exception);
8✔
487
               result.confirm("negative test", !is_positive_test);
8✔
488
            }
4✔
489
         }
8✔
490

491
         return result;
24✔
492
      }
87✔
493
};
494

495
BOTAN_REGISTER_TEST("tls", "tls_13_messages", TLS_13_Message_Parsing_Test);
496

497
   #endif
498

499
#endif
500

501
}  // namespace
502

503
}  // namespace Botan_Tests
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