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randombit / botan / 25476046290

07 May 2026 01:38AM UTC coverage: 89.331%. Remained the same
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Update for 3.12.0 release

107574 of 120422 relevant lines covered (89.33%)

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93.62
/src/lib/tls/tls_session.cpp
1
/*
2
* TLS Session State
3
* (C) 2011-2012,2015,2019 Jack Lloyd
4
*
5
* Botan is released under the Simplified BSD License (see license.txt)
6
*/
7

8
#include <botan/tls_session.h>
9

10
#include <botan/aead.h>
11
#include <botan/asn1_obj.h>
12
#include <botan/ber_dec.h>
13
#include <botan/der_enc.h>
14
#include <botan/mac.h>
15
#include <botan/pem.h>
16
#include <botan/rng.h>
17
#include <botan/tls_callbacks.h>
18
#include <botan/x509_key.h>
19
#include <botan/x509cert.h>
20
#include <botan/internal/buffer_slicer.h>
21
#include <botan/internal/ct_utils.h>
22
#include <botan/internal/loadstor.h>
23
#include <botan/internal/stl_util.h>
24

25
#if defined(BOTAN_HAS_TLS_13)
26
   #include <botan/tls_extensions_13.h>
27
   #include <botan/tls_messages_13.h>
28
#endif
29

30
#include <utility>
31

32
namespace Botan::TLS {
33

34
void Session_Handle::validate_constraints() const {
4,209✔
35
   std::visit(overloaded{
8,418✔
36
                 [](const Session_ID& id) {
737✔
37
                    // RFC 5246 7.4.1.2
38
                    //    opaque SessionID<0..32>;
39
                    BOTAN_ARG_CHECK(!id.empty(), "Session ID must not be empty");
737✔
40
                    BOTAN_ARG_CHECK(id.size() <= 32, "Session ID cannot be longer than 32 bytes");
737✔
41
                 },
737✔
42
                 [](const Session_Ticket& ticket) {
2,512✔
43
                    BOTAN_ARG_CHECK(!ticket.empty(), "Ticket most not be empty");
2,512✔
44
                    BOTAN_ARG_CHECK(ticket.size() <= std::numeric_limits<uint16_t>::max(),
2,512✔
45
                                    "Ticket cannot be longer than 64kB");
46
                 },
2,512✔
47
                 [](const Opaque_Session_Handle& handle) {
960✔
48
                    // RFC 8446 4.6.1
49
                    //    opaque ticket<1..2^16-1>;
50
                    BOTAN_ARG_CHECK(!handle.empty(), "Opaque session handle must not be empty");
960✔
51
                    BOTAN_ARG_CHECK(handle.size() <= std::numeric_limits<uint16_t>::max(),
960✔
52
                                    "Opaque session handle cannot be longer than 64kB");
53
                 },
960✔
54
              },
55
              m_handle);
4,209✔
56
}
4,209✔
57

58
Opaque_Session_Handle Session_Handle::opaque_handle() const {
525✔
59
   // both a Session_ID and a Session_Ticket could be an Opaque_Session_Handle
60
   return Opaque_Session_Handle(std::visit([](const auto& handle) { return handle.get(); }, m_handle));
525✔
61
}
62

63
std::optional<Session_ID> Session_Handle::id() const {
2,861✔
64
   if(is_id()) {
2,861✔
65
      return std::get<Session_ID>(m_handle);
672✔
66
   }
67

68
   // Opaque handles can mimic as a Session_ID if they are short enough
69
   if(is_opaque_handle()) {
2,189✔
70
      const auto& handle = std::get<Opaque_Session_Handle>(m_handle);
921✔
71
      if(handle.size() <= 32) {
921✔
72
         return Session_ID(handle.get());
80✔
73
      }
74
   }
75

76
   return std::nullopt;
2,109✔
77
}
78

79
std::optional<Session_Ticket> Session_Handle::ticket() const {
2,111✔
80
   if(is_ticket()) {
2,111✔
81
      return std::get<Session_Ticket>(m_handle);
1,380✔
82
   }
83

84
   // Opaque handles can mimic 'normal' Session_Tickets at any time
85
   if(is_opaque_handle()) {
731✔
86
      return Session_Ticket(std::get<Opaque_Session_Handle>(m_handle).get());
349✔
87
   }
88

89
   return std::nullopt;
382✔
90
}
91

92
Session_Base::Session_Base() = default;
544✔
93

94
Session_Base::~Session_Base() = default;
32,574✔
95

96
Session_Base::Session_Base(const Session_Base& other) = default;
4,783✔
97
Session_Base& Session_Base::operator=(const Session_Base& other) = default;
×
98

99
Session_Base::Session_Base(Session_Base&& other) noexcept = default;
7,190✔
100
Session_Base& Session_Base::operator=(Session_Base&& other) noexcept = default;
×
101

102
Session_Base::Session_Base(std::chrono::system_clock::time_point start_time,
3,734✔
103
                           Protocol_Version version,
104
                           uint16_t ciphersuite,
105
                           Connection_Side connection_side,
106
                           uint16_t srtp_profile,
107
                           bool extended_master_secret,
108
                           bool encrypt_then_mac,
109
                           const std::vector<X509_Certificate>& peer_certs,
110
                           std::shared_ptr<const Public_Key> peer_raw_public_key,
111
                           Server_Information server_info) :
3,734✔
112
      m_start_time(start_time),
3,734✔
113
      m_version(version),
3,734✔
114
      m_ciphersuite(ciphersuite),
3,734✔
115
      m_connection_side(connection_side),
3,734✔
116
      m_srtp_profile(srtp_profile),
3,734✔
117
      m_extended_master_secret(extended_master_secret),
3,734✔
118
      m_encrypt_then_mac(encrypt_then_mac),
3,734✔
119
      m_peer_certs(peer_certs),
3,734✔
120
      m_peer_raw_public_key(std::move(peer_raw_public_key)),
3,734✔
121
      m_server_info(std::move(server_info)) {}
3,734✔
122

123
Ciphersuite Session_Base::ciphersuite() const {
5,573✔
124
   auto suite = Ciphersuite::by_id(m_ciphersuite);
5,573✔
125
   if(!suite.has_value()) {
5,573✔
126
      throw Decoding_Error("Failed to find cipher suite for ID " + std::to_string(m_ciphersuite));
×
127
   }
128
   return suite.value();
5,573✔
129
}
130

131
Session_Summary::Session_Summary(const Session_Base& base,
1,912✔
132
                                 bool was_resumption,
133
                                 std::optional<std::string> psk_identity) :
1,912✔
134
      Session_Base(base), m_external_psk_identity(std::move(psk_identity)), m_was_resumption(was_resumption) {
2,031✔
135
   BOTAN_ARG_CHECK(version().is_pre_tls_13(), "Instantiated a TLS 1.2 session summary with an newer TLS version");
1,912✔
136

137
   const auto cs = ciphersuite();
1,912✔
138
   m_kex_algo = cs.kex_algo();
1,912✔
139
}
1,912✔
140

141
#if defined(BOTAN_HAS_TLS_13)
142

143
namespace {
144

145
std::string tls13_kex_to_string(bool psk, std::optional<Named_Group> group) {
822✔
146
   if(psk && group) {
822✔
147
      if(group->is_dh_named_group()) {
268✔
148
         return kex_method_to_string(Kex_Algo::DHE_PSK);
×
149
      } else if(group->is_ecdh_named_curve() || group->is_x25519() || group->is_x448()) {
268✔
150
         return kex_method_to_string(Kex_Algo::ECDHE_PSK);
266✔
151
      } else if(group->is_pure_ml_kem() || group->is_pure_frodokem()) {
2✔
152
         return kex_method_to_string(Kex_Algo::KEM_PSK);
×
153
      } else if(group->is_pqc_hybrid()) {
2✔
154
         return kex_method_to_string(Kex_Algo::HYBRID_PSK);
2✔
155
      } else if(auto s = group->to_string()) {
×
156
         return *s;
×
157
      }
×
158
   } else if(psk) {
554✔
159
      return kex_method_to_string(Kex_Algo::PSK);
×
160
   } else {
161
      BOTAN_ASSERT_NOMSG(group.has_value());
554✔
162
      if(group->is_dh_named_group()) {
554✔
163
         return kex_method_to_string(Kex_Algo::DH);
×
164
      } else if(group->is_ecdh_named_curve() || group->is_x25519() || group->is_x448()) {
554✔
165
         return kex_method_to_string(Kex_Algo::ECDH);
515✔
166
      } else if(group->is_pure_ml_kem() || group->is_pure_frodokem()) {
39✔
167
         return kex_method_to_string(Kex_Algo::KEM);
8✔
168
      } else if(group->is_pqc_hybrid()) {
31✔
169
         return kex_method_to_string(Kex_Algo::HYBRID);
31✔
170
      } else if(auto s = group->to_string()) {
×
171
         return *s;
×
172
      }
×
173
   }
174

175
   return kex_method_to_string(Kex_Algo::UNDEFINED);
×
176
}
177

178
}  // namespace
179

180
Session_Summary::Session_Summary(const Server_Hello_13& server_hello,
822✔
181
                                 Connection_Side side,
182
                                 const std::vector<X509_Certificate>& peer_certs,
183
                                 std::shared_ptr<const Public_Key> peer_raw_public_key,
184
                                 std::optional<std::string> psk_identity,
185
                                 bool session_was_resumed,
186
                                 Server_Information server_info,
187
                                 std::chrono::system_clock::time_point current_timestamp) :
822✔
188
      Session_Base(current_timestamp,
189
                   server_hello.selected_version(),
190
                   server_hello.ciphersuite(),
822✔
191
                   side,
192

193
                   // TODO: SRTP might become necessary when DTLS 1.3 is being implemented
194
                   0,
195

196
                   // RFC 8446 Appendix D
197
                   //    Because TLS 1.3 always hashes in the transcript up to the server
198
                   //    Finished, implementations which support both TLS 1.3 and earlier
199
                   //    versions SHOULD indicate the use of the Extended Master Secret
200
                   //    extension in their APIs whenever TLS 1.3 is used.
201
                   true,
202

203
                   // TLS 1.3 uses AEADs, so technically encrypt-then-MAC is not applicable.
204
                   false,
205
                   peer_certs,
206
                   std::move(peer_raw_public_key),
207
                   std::move(server_info)),
208
      m_external_psk_identity(std::move(psk_identity)),
822✔
209
      m_was_resumption(session_was_resumed) {
3,318✔
210
   BOTAN_ARG_CHECK(version().is_tls_13_or_later(), "Instantiated a TLS 1.3 session summary with an older TLS version");
822✔
211
   set_session_id(server_hello.session_id());
1,644✔
212

213
   // In TLS 1.3 the key exchange algorithm is not negotiated in the ciphersuite
214
   // anymore. This provides a compatible identifier for applications to use.
215

216
   std::optional<Named_Group> group = [&]() -> std::optional<Named_Group> {
2,466✔
217
      if(psk_used() || was_resumption()) {
822✔
218
         if(auto* const keyshare = server_hello.extensions().get<Key_Share>()) {
268✔
219
            return keyshare->selected_group();
268✔
220
         } else {
221
            return {};
×
222
         }
223
      } else {
224
         auto* const keyshare = server_hello.extensions().get<Key_Share>();
554✔
225
         BOTAN_ASSERT_NONNULL(keyshare);
554✔
226
         return keyshare->selected_group();
554✔
227
      }
228
   }();
822✔
229

230
   if(group.has_value()) {
822✔
231
      m_kex_parameters = group->to_string();
1,644✔
232
   }
233

234
   m_kex_algo = tls13_kex_to_string(psk_used() || was_resumption(), group);
822✔
235
}
822✔
236

237
#endif
238

239
Session::Session(const secure_vector<uint8_t>& master_secret,
1,760✔
240
                 Protocol_Version version,
241
                 uint16_t ciphersuite,
242
                 Connection_Side side,
243
                 bool extended_master_secret,
244
                 bool encrypt_then_mac,
245
                 const std::vector<X509_Certificate>& certs,
246
                 const Server_Information& server_info,
247
                 uint16_t srtp_profile,
248
                 std::chrono::system_clock::time_point current_timestamp,
249
                 std::chrono::seconds lifetime_hint) :
1,760✔
250
      Session_Base(current_timestamp,
251
                   version,
252
                   ciphersuite,
253
                   side,
254
                   srtp_profile,
255
                   extended_master_secret,
256
                   encrypt_then_mac,
257
                   certs,
258
                   nullptr,  // RFC 7250 (raw public keys) is NYI for TLS 1.2
259
                   server_info),
260
      m_master_secret(master_secret),
1,760✔
261
      m_early_data_allowed(false),
1,760✔
262
      m_max_early_data_bytes(0),
1,760✔
263
      m_ticket_age_add(0),
1,760✔
264
      m_lifetime_hint(lifetime_hint) {
5,280✔
265
   BOTAN_ARG_CHECK(version.is_pre_tls_13(), "Instantiated a TLS 1.2 session object with a TLS version newer than 1.2");
1,760✔
266
}
1,760✔
267

268
#if defined(BOTAN_HAS_TLS_13)
269

270
Session::Session(const secure_vector<uint8_t>& session_psk,
1,152✔
271
                 const std::optional<uint32_t>& max_early_data_bytes,
272
                 uint32_t ticket_age_add,
273
                 std::chrono::seconds lifetime_hint,
274
                 Protocol_Version version,
275
                 uint16_t ciphersuite,
276
                 Connection_Side side,
277
                 const std::vector<X509_Certificate>& peer_certs,
278
                 std::shared_ptr<const Public_Key> peer_raw_public_key,
279
                 const Server_Information& server_info,
280
                 std::chrono::system_clock::time_point current_timestamp) :
1,152✔
281
      Session_Base(current_timestamp,
282
                   version,
283
                   ciphersuite,
284
                   side,
285

286
                   // TODO: SRTP might become necessary when DTLS 1.3 is being implemented
287
                   0,
288

289
                   // RFC 8446 Appendix D
290
                   //    Because TLS 1.3 always hashes in the transcript up to the server
291
                   //    Finished, implementations which support both TLS 1.3 and earlier
292
                   //    versions SHOULD indicate the use of the Extended Master Secret
293
                   //    extension in their APIs whenever TLS 1.3 is used.
294
                   true,
295

296
                   // TLS 1.3 uses AEADs, so technically encrypt-then-MAC is not applicable.
297
                   false,
298
                   peer_certs,
299
                   std::move(peer_raw_public_key),
300
                   server_info),
301
      m_master_secret(session_psk),
1,152✔
302
      m_early_data_allowed(max_early_data_bytes.has_value()),
1,152✔
303
      m_max_early_data_bytes(max_early_data_bytes.value_or(0)),
1,152✔
304
      m_ticket_age_add(ticket_age_add),
1,152✔
305
      m_lifetime_hint(lifetime_hint) {
3,456✔
306
   BOTAN_ARG_CHECK(!version.is_pre_tls_13(), "Instantiated a TLS 1.3 session object with a TLS version older than 1.3");
1,152✔
307
}
1,152✔
308

309
#endif
310

311
Session::Session(std::string_view pem) : Session(PEM_Code::decode_check_label(pem, "TLS SESSION")) {}
3✔
312

313
Session::Session(std::span<const uint8_t> ber_data) /* NOLINT(*-member-init) */ {
544✔
314
   uint8_t side_code = 0;
544✔
315

316
   std::vector<uint8_t> raw_pubkey_or_empty;
544✔
317

318
   ASN1_String server_hostname;
544✔
319
   ASN1_String server_service;
545✔
320
   size_t server_port = 0;
544✔
321

322
   uint8_t major_version = 0;
544✔
323
   uint8_t minor_version = 0;
544✔
324

325
   size_t start_time = 0;
544✔
326
   size_t srtp_profile = 0;
544✔
327
   uint16_t ciphersuite_code = 0;
544✔
328
   uint64_t lifetime_hint = 0;
544✔
329

330
   BER_Decoder(ber_data, BER_Decoder::Limits::DER())
1,088✔
331
      .start_sequence()
544✔
332
      .decode_and_check(TLS_SESSION_PARAM_STRUCT_VERSION, "Unknown version in serialized TLS session")
1,088✔
333
      .decode_integer_type(start_time)
544✔
334
      .decode_integer_type(major_version)
544✔
335
      .decode_integer_type(minor_version)
544✔
336
      .decode_integer_type(ciphersuite_code)
544✔
337
      .decode_integer_type(side_code)
544✔
338
      .decode(m_extended_master_secret)
544✔
339
      .decode(m_encrypt_then_mac)
544✔
340
      .decode(m_master_secret, ASN1_Type::OctetString)
544✔
341
      .decode_list<X509_Certificate>(m_peer_certs)
544✔
342
      .decode(raw_pubkey_or_empty, ASN1_Type::OctetString)
544✔
343
      .decode(server_hostname)
544✔
344
      .decode(server_service)
544✔
345
      .decode(server_port)
544✔
346
      .decode(srtp_profile)
544✔
347
      .decode(m_early_data_allowed)
544✔
348
      .decode_integer_type(m_max_early_data_bytes)
544✔
349
      .decode_integer_type(m_ticket_age_add)
544✔
350
      .decode_integer_type(lifetime_hint)
544✔
351
      .end_cons()
544✔
352
      .verify_end();
544✔
353

354
   if(!Ciphersuite::by_id(ciphersuite_code)) {
544✔
355
      throw Decoding_Error(
1✔
356
         "Serialized TLS session contains unknown cipher suite "
357
         "(" +
2✔
358
         std::to_string(ciphersuite_code) + ")");
4✔
359
   }
360

361
   m_ciphersuite = ciphersuite_code;
543✔
362
   m_version = Protocol_Version(major_version, minor_version);
543✔
363
   m_start_time = std::chrono::system_clock::from_time_t(start_time);
543✔
364
   if(side_code != static_cast<uint8_t>(Connection_Side::Client) &&
543✔
365
      side_code != static_cast<uint8_t>(Connection_Side::Server)) {
366
      throw Decoding_Error("Serialized TLS session contains unknown connection side " + std::to_string(side_code));
×
367
   }
368
   m_connection_side = static_cast<Connection_Side>(side_code);
543✔
369

370
   const bool valid_secret_size = m_version.is_pre_tls_13()
543✔
371
                                     ? (m_master_secret.size() == 48)
543✔
372
                                     : (m_master_secret.size() == 32 || m_master_secret.size() == 48);
167✔
373
   if(!valid_secret_size) {
376✔
374
      throw Decoding_Error("Serialized TLS session has master_secret of unexpected length");
×
375
   }
376
   m_srtp_profile = static_cast<uint16_t>(srtp_profile);
543✔
377

378
   m_server_info =
543✔
379
      Server_Information(server_hostname.value(), server_service.value(), static_cast<uint16_t>(server_port));
1,086✔
380

381
   if(!raw_pubkey_or_empty.empty()) {
543✔
382
      m_peer_raw_public_key = X509::load_key(raw_pubkey_or_empty);
25✔
383
   }
384

385
   m_lifetime_hint = std::chrono::seconds(lifetime_hint);
543✔
386
}
1,090✔
387

388
secure_vector<uint8_t> Session::DER_encode() const {
1,362✔
389
   const auto raw_pubkey_or_empty =
1,362✔
390
      m_peer_raw_public_key ? m_peer_raw_public_key->subject_public_key() : std::vector<uint8_t>{};
1,362✔
391

392
   return DER_Encoder()
1,362✔
393
      .start_sequence()
1,362✔
394
      .encode(TLS_SESSION_PARAM_STRUCT_VERSION)
1,362✔
395
      .encode(static_cast<size_t>(std::chrono::system_clock::to_time_t(m_start_time)))
1,362✔
396
      .encode(static_cast<size_t>(m_version.major_version()))
1,362✔
397
      .encode(static_cast<size_t>(m_version.minor_version()))
1,362✔
398
      .encode(static_cast<size_t>(m_ciphersuite))
1,362✔
399
      .encode(static_cast<size_t>(m_connection_side))
1,362✔
400
      .encode(m_extended_master_secret)
1,362✔
401
      .encode(m_encrypt_then_mac)
1,362✔
402
      .encode(m_master_secret, ASN1_Type::OctetString)
1,362✔
403
      .start_sequence()
1,852✔
404
      .encode_list(m_peer_certs)
1,362✔
405
      .end_cons()
1,362✔
406
      .encode(raw_pubkey_or_empty, ASN1_Type::OctetString)
1,362✔
407
      .encode(ASN1_String(m_server_info.hostname(), ASN1_Type::Utf8String))
4,086✔
408
      .encode(ASN1_String(m_server_info.service(), ASN1_Type::Utf8String))
4,086✔
409
      .encode(static_cast<size_t>(m_server_info.port()))
1,362✔
410
      .encode(static_cast<size_t>(m_srtp_profile))
1,362✔
411

412
      // the fields below were introduced for TLS 1.3 session tickets
413
      .encode(m_early_data_allowed)
1,362✔
414
      .encode(static_cast<size_t>(m_max_early_data_bytes))
1,362✔
415
      .encode(static_cast<size_t>(m_ticket_age_add))
1,362✔
416
      .encode(static_cast<size_t>(m_lifetime_hint.count()))
1,362✔
417
      .end_cons()
1,362✔
418
      .get_contents();
2,724✔
419
}
1,362✔
420

421
std::string Session::PEM_encode() const {
2✔
422
   return PEM_Code::encode(this->DER_encode(), "TLS SESSION");
6✔
423
}
424

425
secure_vector<uint8_t> Session::extract_master_secret() {
257✔
426
   BOTAN_STATE_CHECK(!m_master_secret.empty());
257✔
427
   return std::exchange(m_master_secret, {});
257✔
428
}
429

430
namespace {
431

432
// The output length of the HMAC must be a valid keylength for the AEAD
433
const char* const TLS_SESSION_CRYPT_HMAC = "HMAC(SHA-512-256)";
434
// SIV would be better, but we can't assume it is available
435
const char* const TLS_SESSION_CRYPT_AEAD = "AES-256/GCM";
436
const char* const TLS_SESSION_CRYPT_KEY_NAME = "BOTAN TLS SESSION KEY NAME";
437
const uint64_t TLS_SESSION_CRYPT_MAGIC = 0x068B5A9D396C0000;
438
const size_t TLS_SESSION_CRYPT_MAGIC_LEN = 8;
439
const size_t TLS_SESSION_CRYPT_KEY_NAME_LEN = 4;
440
const size_t TLS_SESSION_CRYPT_AEAD_NONCE_LEN = 12;
441
const size_t TLS_SESSION_CRYPT_AEAD_KEY_SEED_LEN = 16;
442
const size_t TLS_SESSION_CRYPT_AEAD_TAG_SIZE = 16;
443

444
const size_t TLS_SESSION_CRYPT_HDR_LEN = TLS_SESSION_CRYPT_MAGIC_LEN + TLS_SESSION_CRYPT_KEY_NAME_LEN +
445
                                         TLS_SESSION_CRYPT_AEAD_NONCE_LEN + TLS_SESSION_CRYPT_AEAD_KEY_SEED_LEN;
446

447
const size_t TLS_SESSION_CRYPT_OVERHEAD = TLS_SESSION_CRYPT_HDR_LEN + TLS_SESSION_CRYPT_AEAD_TAG_SIZE;
448

449
}  // namespace
450

451
std::vector<uint8_t> Session::encrypt(const SymmetricKey& key, RandomNumberGenerator& rng) const {
1,354✔
452
   auto hmac = MessageAuthenticationCode::create_or_throw(TLS_SESSION_CRYPT_HMAC);
1,354✔
453
   hmac->set_key(key);
1,354✔
454

455
   // First derive the "key name"
456
   std::vector<uint8_t> key_name(hmac->output_length());
1,354✔
457
   hmac->update(TLS_SESSION_CRYPT_KEY_NAME);
1,354✔
458
   hmac->final(key_name.data());
1,354✔
459
   key_name.resize(TLS_SESSION_CRYPT_KEY_NAME_LEN);
1,354✔
460

461
   std::vector<uint8_t> aead_nonce;
1,354✔
462
   std::vector<uint8_t> key_seed;
1,354✔
463

464
   rng.random_vec(aead_nonce, TLS_SESSION_CRYPT_AEAD_NONCE_LEN);
1,354✔
465
   rng.random_vec(key_seed, TLS_SESSION_CRYPT_AEAD_KEY_SEED_LEN);
1,354✔
466

467
   hmac->update(key_seed);
1,354✔
468
   const secure_vector<uint8_t> aead_key = hmac->final();
1,354✔
469

470
   secure_vector<uint8_t> bits = this->DER_encode();
1,354✔
471

472
   // create the header
473
   std::vector<uint8_t> buf;
1,354✔
474
   buf.reserve(TLS_SESSION_CRYPT_OVERHEAD + bits.size());
1,354✔
475
   buf.resize(TLS_SESSION_CRYPT_MAGIC_LEN);
1,354✔
476
   store_be(TLS_SESSION_CRYPT_MAGIC, &buf[0]);  // NOLINT(*container-data-pointer)
1,354✔
477
   buf += key_name;
1,354✔
478
   buf += key_seed;
1,354✔
479
   buf += aead_nonce;
1,354✔
480

481
   auto aead = AEAD_Mode::create_or_throw(TLS_SESSION_CRYPT_AEAD, Cipher_Dir::Encryption);
1,354✔
482
   BOTAN_ASSERT_NOMSG(aead->valid_nonce_length(TLS_SESSION_CRYPT_AEAD_NONCE_LEN));
1,354✔
483
   BOTAN_ASSERT_NOMSG(aead->tag_size() == TLS_SESSION_CRYPT_AEAD_TAG_SIZE);
1,354✔
484
   aead->set_key(aead_key);
1,354✔
485
   aead->set_associated_data(buf);
1,354✔
486
   aead->start(aead_nonce);
1,354✔
487
   aead->finish(bits, 0);
1,354✔
488

489
   // append the ciphertext
490
   buf += bits;
1,354✔
491
   return buf;
1,354✔
492
}
5,416✔
493

494
Session Session::decrypt(std::span<const uint8_t> in, const SymmetricKey& key) {
598✔
495
   try {
598✔
496
      const size_t min_session_size = 48 + 4;  // serious under-estimate
598✔
497
      if(in.size() < TLS_SESSION_CRYPT_OVERHEAD + min_session_size) {
598✔
498
         throw Decoding_Error("Encrypted session too short to be valid");
56✔
499
      }
500

501
      BufferSlicer sub(in);
542✔
502
      const auto* const magic = sub.take(TLS_SESSION_CRYPT_MAGIC_LEN).data();
542✔
503
      const auto* const key_name = sub.take(TLS_SESSION_CRYPT_KEY_NAME_LEN).data();
542✔
504
      const auto* const key_seed = sub.take(TLS_SESSION_CRYPT_AEAD_KEY_SEED_LEN).data();
542✔
505
      const auto* const aead_nonce = sub.take(TLS_SESSION_CRYPT_AEAD_NONCE_LEN).data();
542✔
506
      auto ctext = sub.copy_as_secure_vector(sub.remaining());
542✔
507

508
      if(load_be<uint64_t>(magic, 0) != TLS_SESSION_CRYPT_MAGIC) {
542✔
509
         throw Decoding_Error("Missing expected magic numbers");
×
510
      }
511

512
      auto hmac = MessageAuthenticationCode::create_or_throw(TLS_SESSION_CRYPT_HMAC);
546✔
513
      hmac->set_key(key);
542✔
514

515
      // First derive and check the "key name"
516
      std::vector<uint8_t> cmp_key_name(hmac->output_length());
546✔
517
      hmac->update(TLS_SESSION_CRYPT_KEY_NAME);
542✔
518
      hmac->final(cmp_key_name.data());
542✔
519

520
      if(CT::is_equal(cmp_key_name.data(), key_name, TLS_SESSION_CRYPT_KEY_NAME_LEN).as_bool() == false) {
542✔
521
         throw Decoding_Error("Wrong key name for encrypted session");
1✔
522
      }
523

524
      hmac->update(key_seed, TLS_SESSION_CRYPT_AEAD_KEY_SEED_LEN);
541✔
525
      const secure_vector<uint8_t> aead_key = hmac->final();
541✔
526

527
      auto aead = AEAD_Mode::create_or_throw(TLS_SESSION_CRYPT_AEAD, Cipher_Dir::Decryption);
544✔
528
      aead->set_key(aead_key);
541✔
529
      aead->set_associated_data(in.data(), TLS_SESSION_CRYPT_HDR_LEN);
541✔
530
      aead->start(aead_nonce, TLS_SESSION_CRYPT_AEAD_NONCE_LEN);
541✔
531
      aead->finish(ctext, 0);
541✔
532
      return Session(ctext);
541✔
533
   } catch(std::exception& e) {
2,223✔
534
      throw Decoding_Error("Failed to decrypt serialized TLS session: " + std::string(e.what()));
180✔
535
   }
60✔
536
}
537

538
}  // namespace Botan::TLS
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