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randombit / botan / 5111374265

29 May 2023 11:19AM UTC coverage: 92.227% (+0.5%) from 91.723%
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75588 of 81959 relevant lines covered (92.23%)

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92.04
/src/lib/tls/msg_client_hello.cpp
1
/*
2
* TLS Hello Request and Client Hello Messages
3
* (C) 2004-2011,2015,2016 Jack Lloyd
4
*     2016 Matthias Gierlings
5
*     2017 Harry Reimann, Rohde & Schwarz Cybersecurity
6
*     2021 Elektrobit Automotive GmbH
7
*     2022 René Meusel, Hannes Rantzsch - neXenio GmbH
8
*
9
* Botan is released under the Simplified BSD License (see license.txt)
10
*/
11

12
#include <botan/tls_messages.h>
13

14
#include <botan/credentials_manager.h>
15
#include <botan/hash.h>
16
#include <botan/rng.h>
17
#include <botan/tls_callbacks.h>
18
#include <botan/tls_exceptn.h>
19
#include <botan/tls_version.h>
20

21
#include <botan/internal/stl_util.h>
22
#include <botan/internal/tls_handshake_hash.h>
23
#include <botan/internal/tls_handshake_io.h>
24
#include <botan/internal/tls_reader.h>
25
#include <botan/internal/tls_session_key.h>
26

27
#ifdef BOTAN_HAS_TLS_13
28
   #include <botan/internal/tls_handshake_layer_13.h>
29
   #include <botan/internal/tls_transcript_hash_13.h>
30
#endif
31

32
#include <chrono>
33
#include <iterator>
34

35
namespace Botan::TLS {
36

37
enum {
38
   TLS_EMPTY_RENEGOTIATION_INFO_SCSV = 0x00FF,
39
};
40

41
std::vector<uint8_t> make_hello_random(RandomNumberGenerator& rng, Callbacks& cb, const Policy& policy) {
6,684✔
42
   auto buf = rng.random_vec<std::vector<uint8_t>>(32);
6,684✔
43

44
   if(policy.hash_hello_random()) {
6,684✔
45
      auto sha256 = HashFunction::create_or_throw("SHA-256");
6,673✔
46
      sha256->update(buf);
6,673✔
47
      sha256->final(buf);
6,673✔
48
   }
6,673✔
49

50
   // TLS 1.3 does not require the insertion of a timestamp in the client hello
51
   // random. When offering both TLS 1.2 and 1.3 we nevertheless comply with the
52
   // legacy specification.
53
   if(policy.include_time_in_hello_random() && (policy.allow_tls12() || policy.allow_dtls12())) {
6,684✔
54
      const uint32_t time32 = static_cast<uint32_t>(std::chrono::system_clock::to_time_t(cb.tls_current_timestamp()));
6,665✔
55

56
      store_be(time32, buf.data());
6,665✔
57
   }
58

59
   return buf;
6,684✔
60
}
×
61

62
/**
63
 * Version-agnostic internal client hello data container that allows
64
 * parsing Client_Hello messages without prior knowledge of the contained
65
 * protocol version.
66
 */
67
class Client_Hello_Internal {
68
   public:
69
      Client_Hello_Internal() : m_comp_methods({0}) {}
3,588✔
70

71
      Client_Hello_Internal(const std::vector<uint8_t>& buf) {
3,714✔
72
         if(buf.size() < 41) {
3,714✔
73
            throw Decoding_Error("Client_Hello: Packet corrupted");
45✔
74
         }
75

76
         TLS_Data_Reader reader("ClientHello", buf);
3,669✔
77

78
         const uint8_t major_version = reader.get_byte();
3,669✔
79
         const uint8_t minor_version = reader.get_byte();
3,669✔
80

81
         m_legacy_version = Protocol_Version(major_version, minor_version);
3,669✔
82
         m_random = reader.get_fixed<uint8_t>(32);
3,669✔
83
         m_session_id = Session_ID(reader.get_range<uint8_t>(1, 0, 32));
3,669✔
84

85
         if(m_legacy_version.is_datagram_protocol()) {
2,836✔
86
            auto sha256 = HashFunction::create_or_throw("SHA-256");
742✔
87
            sha256->update(reader.get_data_read_so_far());
742✔
88

89
            m_hello_cookie = reader.get_range<uint8_t>(1, 0, 255);
742✔
90

91
            sha256->update(reader.get_remaining());
742✔
92
            m_cookie_input_bits = sha256->final_stdvec();
742✔
93
         }
742✔
94

95
         m_suites = reader.get_range_vector<uint16_t>(2, 1, 32767);
2,836✔
96
         m_comp_methods = reader.get_range_vector<uint8_t>(1, 1, 255);
2,706✔
97

98
         m_extensions.deserialize(reader, Connection_Side::Client, Handshake_Type::ClientHello);
2,705✔
99
      }
4,778✔
100

101
      /**
102
       * This distinguishes between a TLS 1.3 compliant Client Hello (containing
103
       * the "supported_version" extension) and legacy Client Hello messages.
104
       *
105
       * @return TLS 1.3 if the Client Hello contains "supported_versions", or
106
       *         the content of the "legacy_version" version field if it
107
       *         indicates (D)TLS 1.2 or older, or
108
       *         (D)TLS 1.2 if the "legacy_version" was some other odd value.
109
       */
110
      Protocol_Version version() const {
921✔
111
         // RFC 8446 4.2.1
112
         //    If [the "supported_versions"] extension is not present, servers
113
         //    which are compliant with this specification and which also support
114
         //    TLS 1.2 MUST negotiate TLS 1.2 or prior as specified in [RFC5246],
115
         //    even if ClientHello.legacy_version is 0x0304 or later.
116
         //
117
         // RFC 8446 4.2.1
118
         //    Servers MUST be prepared to receive ClientHellos that include
119
         //    [the supported_versions] extension but do not include 0x0304 in
120
         //    the list of versions.
121
         //
122
         // RFC 8446 4.1.2
123
         //    TLS 1.3 ClientHellos are identified as having a legacy_version of
124
         //    0x0303 and a supported_versions extension present with 0x0304 as
125
         //    the highest version indicated therein.
126
         if(!extensions().has<Supported_Versions>() ||
1,378✔
127
            !extensions().get<Supported_Versions>()->supports(Protocol_Version::TLS_V13)) {
457✔
128
            // The exact legacy_version is ignored we just inspect it to
129
            // distinguish TLS and DTLS.
130
            return (m_legacy_version.is_datagram_protocol()) ? Protocol_Version::DTLS_V12 : Protocol_Version::TLS_V12;
958✔
131
         }
132

133
         // Note: The Client_Hello_13 class will make sure that legacy_version
134
         //       is exactly 0x0303 (aka ossified TLS 1.2)
135
         return Protocol_Version::TLS_V13;
442✔
136
      }
137

138
      Protocol_Version legacy_version() const { return m_legacy_version; }
14,223✔
139

140
      const Session_ID& session_id() const { return m_session_id; }
30✔
141

142
      const std::vector<uint8_t>& random() const { return m_random; }
4,178✔
143

144
      const std::vector<uint16_t>& ciphersuites() const { return m_suites; }
4,361✔
145

146
      const std::vector<uint8_t>& comp_methods() const { return m_comp_methods; }
4,589✔
147

148
      const std::vector<uint8_t>& hello_cookie() const { return m_hello_cookie; }
861✔
149

150
      const std::vector<uint8_t>& hello_cookie_input_bits() const { return m_cookie_input_bits; }
734✔
151

152
      const Extensions& extensions() const { return m_extensions; }
921✔
153

154
      Extensions& extensions() { return m_extensions; }
73,639✔
155

156
   public:
157
      Protocol_Version m_legacy_version;
158
      Session_ID m_session_id;
159
      std::vector<uint8_t> m_random;
160
      std::vector<uint16_t> m_suites;
161
      std::vector<uint8_t> m_comp_methods;
162
      Extensions m_extensions;
163

164
      std::vector<uint8_t> m_hello_cookie;       // DTLS only
165
      std::vector<uint8_t> m_cookie_input_bits;  // DTLS only
166
};
167

168
Client_Hello::Client_Hello(Client_Hello&&) noexcept = default;
9,933✔
169
Client_Hello& Client_Hello::operator=(Client_Hello&&) noexcept = default;
29✔
170

171
Client_Hello::~Client_Hello() = default;
16,179✔
172

173
Client_Hello::Client_Hello() : m_data(std::make_unique<Client_Hello_Internal>()) {}
3,588✔
174

175
/*
176
* Read a counterparty client hello
177
*/
178
Client_Hello::Client_Hello(std::unique_ptr<Client_Hello_Internal> data) : m_data(std::move(data)) {
2,675✔
179
   BOTAN_ASSERT_NONNULL(m_data);
2,675✔
180
}
2,675✔
181

182
Handshake_Type Client_Hello::type() const { return Handshake_Type::ClientHello; }
15,486✔
183

184
Protocol_Version Client_Hello::legacy_version() const { return m_data->legacy_version(); }
4,784✔
185

186
const std::vector<uint8_t>& Client_Hello::random() const { return m_data->random(); }
3,499✔
187

188
const Session_ID& Client_Hello::session_id() const { return m_data->session_id(); }
3,059✔
189

190
const std::vector<uint8_t>& Client_Hello::compression_methods() const { return m_data->comp_methods(); }
1,289✔
191

192
const std::vector<uint16_t>& Client_Hello::ciphersuites() const { return m_data->ciphersuites(); }
1,343✔
193

194
std::set<Extension_Code> Client_Hello::extension_types() const { return m_data->extensions().extension_types(); }
1,960✔
195

196
const Extensions& Client_Hello::extensions() const { return m_data->extensions(); }
8,529✔
197

198
void Client_Hello_12::update_hello_cookie(const Hello_Verify_Request& hello_verify) {
422✔
199
   BOTAN_STATE_CHECK(m_data->legacy_version().is_datagram_protocol());
422✔
200

201
   m_data->m_hello_cookie = hello_verify.cookie();
422✔
202
}
422✔
203

204
/*
205
* Serialize a Client Hello message
206
*/
207
std::vector<uint8_t> Client_Hello::serialize() const {
4,148✔
208
   std::vector<uint8_t> buf;
4,148✔
209
   buf.reserve(1024);  // working around GCC warning
4,148✔
210

211
   buf.push_back(m_data->legacy_version().major_version());
4,148✔
212
   buf.push_back(m_data->legacy_version().minor_version());
4,148✔
213
   buf += m_data->random();
4,148✔
214

215
   append_tls_length_value(buf, m_data->session_id().get(), 1);
4,148✔
216

217
   if(m_data->legacy_version().is_datagram_protocol()) {
4,148✔
218
      append_tls_length_value(buf, m_data->hello_cookie(), 1);
861✔
219
   }
220

221
   append_tls_length_value(buf, m_data->ciphersuites(), 2);
4,148✔
222
   append_tls_length_value(buf, m_data->comp_methods(), 1);
4,148✔
223

224
   /*
225
   * May not want to send extensions at all in some cases. If so,
226
   * should include SCSV value (if reneg info is empty, if not we are
227
   * renegotiating with a modern server)
228
   */
229

230
   buf += m_data->extensions().serialize(Connection_Side::Client);
4,148✔
231

232
   return buf;
4,148✔
233
}
×
234

235
std::vector<uint8_t> Client_Hello::cookie_input_data() const {
734✔
236
   BOTAN_STATE_CHECK(!m_data->hello_cookie_input_bits().empty());
734✔
237

238
   return m_data->hello_cookie_input_bits();
734✔
239
}
240

241
/*
242
* Check if we offered this ciphersuite
243
*/
244
bool Client_Hello::offered_suite(uint16_t ciphersuite) const {
5,009✔
245
   return std::find(m_data->ciphersuites().cbegin(), m_data->ciphersuites().cend(), ciphersuite) !=
5,009✔
246
          m_data->ciphersuites().cend();
5,009✔
247
}
248

249
std::vector<Signature_Scheme> Client_Hello::signature_schemes() const {
3,681✔
250
   if(Signature_Algorithms* sigs = m_data->extensions().get<Signature_Algorithms>()) {
3,681✔
251
      return sigs->supported_schemes();
3,679✔
252
   }
253
   return {};
2✔
254
}
255

256
std::vector<Signature_Scheme> Client_Hello::certificate_signature_schemes() const {
949✔
257
   // RFC 8446 4.2.3
258
   //   If no "signature_algorithms_cert" extension is present, then the
259
   //   "signature_algorithms" extension also applies to signatures appearing
260
   //   in certificates.
261
   if(Signature_Algorithms_Cert* sigs = m_data->extensions().get<Signature_Algorithms_Cert>()) {
949✔
262
      return sigs->supported_schemes();
×
263
   } else {
264
      return signature_schemes();
949✔
265
   }
266
}
267

268
std::vector<Group_Params> Client_Hello::supported_ecc_curves() const {
1,256✔
269
   if(Supported_Groups* groups = m_data->extensions().get<Supported_Groups>()) {
1,256✔
270
      return groups->ec_groups();
1,253✔
271
   }
272
   return {};
3✔
273
}
274

275
std::vector<Group_Params> Client_Hello::supported_dh_groups() const {
4✔
276
   if(Supported_Groups* groups = m_data->extensions().get<Supported_Groups>()) {
4✔
277
      return groups->dh_groups();
4✔
278
   }
279
   return std::vector<Group_Params>();
×
280
}
281

282
bool Client_Hello_12::prefers_compressed_ec_points() const {
69✔
283
   if(Supported_Point_Formats* ecc_formats = m_data->extensions().get<Supported_Point_Formats>()) {
69✔
284
      return ecc_formats->prefers_compressed();
69✔
285
   }
286
   return false;
287
}
288

289
std::string Client_Hello::sni_hostname() const {
3,900✔
290
   if(Server_Name_Indicator* sni = m_data->extensions().get<Server_Name_Indicator>()) {
3,900✔
291
      return sni->host_name();
3,770✔
292
   }
293
   return "";
130✔
294
}
295

296
bool Client_Hello_12::secure_renegotiation() const { return m_data->extensions().has<Renegotiation_Extension>(); }
4,955✔
297

298
std::vector<uint8_t> Client_Hello_12::renegotiation_info() const {
4,011✔
299
   if(Renegotiation_Extension* reneg = m_data->extensions().get<Renegotiation_Extension>()) {
4,011✔
300
      return reneg->renegotiation_info();
4,011✔
301
   }
302
   return {};
×
303
}
304

305
std::vector<Protocol_Version> Client_Hello::supported_versions() const {
1,291✔
306
   if(Supported_Versions* versions = m_data->extensions().get<Supported_Versions>()) {
1,291✔
307
      return versions->versions();
208✔
308
   }
309
   return {};
1,083✔
310
}
311

312
bool Client_Hello_12::supports_session_ticket() const { return m_data->extensions().has<Session_Ticket_Extension>(); }
1,138✔
313

314
Session_Ticket Client_Hello_12::session_ticket() const {
1,835✔
315
   if(auto* ticket = m_data->extensions().get<Session_Ticket_Extension>()) {
1,835✔
316
      return ticket->contents();
1,694✔
317
   }
318
   return {};
141✔
319
}
320

321
std::optional<Session_Handle> Client_Hello_12::session_handle() const {
921✔
322
   // RFC 5077 3.4
323
   //    If a ticket is presented by the client, the server MUST NOT attempt
324
   //    to use the Session ID in the ClientHello for stateful session
325
   //    resumption.
326
   if(auto ticket = session_ticket(); !ticket.empty()) {
921✔
327
      return ticket;
200✔
328
   } else if(const auto& id = session_id(); !id.empty()) {
721✔
329
      return id;
976✔
330
   } else {
331
      return std::nullopt;
666✔
332
   }
921✔
333
}
334

335
bool Client_Hello::supports_alpn() const { return m_data->extensions().has<Application_Layer_Protocol_Notification>(); }
1,057✔
336

337
bool Client_Hello_12::supports_extended_master_secret() const {
1,140✔
338
   return m_data->extensions().has<Extended_Master_Secret>();
1,140✔
339
}
340

341
bool Client_Hello_12::supports_cert_status_message() const {
1,314✔
342
   return m_data->extensions().has<Certificate_Status_Request>();
1,314✔
343
}
344

345
bool Client_Hello_12::supports_encrypt_then_mac() const { return m_data->extensions().has<Encrypt_then_MAC>(); }
537✔
346

347
bool Client_Hello::sent_signature_algorithms() const { return m_data->extensions().has<Signature_Algorithms>(); }
×
348

349
std::vector<std::string> Client_Hello::next_protocols() const {
142✔
350
   if(auto alpn = m_data->extensions().get<Application_Layer_Protocol_Notification>()) {
142✔
351
      return alpn->protocols();
142✔
352
   }
353
   return {};
×
354
}
355

356
std::vector<uint16_t> Client_Hello::srtp_profiles() const {
267✔
357
   if(SRTP_Protection_Profiles* srtp = m_data->extensions().get<SRTP_Protection_Profiles>()) {
267✔
358
      return srtp->profiles();
4✔
359
   }
360
   return {};
263✔
361
}
362

363
const std::vector<uint8_t>& Client_Hello::cookie() const { return m_data->hello_cookie(); }
734✔
364

365
/*
366
* Create a new Hello Request message
367
*/
368
Hello_Request::Hello_Request(Handshake_IO& io) { io.send(*this); }
×
369

370
/*
371
* Deserialize a Hello Request message
372
*/
373
Hello_Request::Hello_Request(const std::vector<uint8_t>& buf) {
42✔
374
   if(!buf.empty()) {
42✔
375
      throw Decoding_Error("Bad Hello_Request, has non-zero size");
2✔
376
   }
377
}
40✔
378

379
/*
380
* Serialize a Hello Request message
381
*/
382
std::vector<uint8_t> Hello_Request::serialize() const { return std::vector<uint8_t>(); }
×
383

384
Client_Hello_12::Client_Hello_12(std::unique_ptr<Client_Hello_Internal> data) : Client_Hello(std::move(data)) {
2,233✔
385
   if(offered_suite(static_cast<uint16_t>(TLS_EMPTY_RENEGOTIATION_INFO_SCSV))) {
2,233✔
386
      if(Renegotiation_Extension* reneg = m_data->extensions().get<Renegotiation_Extension>()) {
12✔
387
         if(!reneg->renegotiation_info().empty())
×
388
            throw TLS_Exception(Alert::HandshakeFailure, "Client sent renegotiation SCSV and non-empty extension");
×
389
      } else {
390
         // add fake extension
391
         m_data->extensions().add(new Renegotiation_Extension());
12✔
392
      }
393
   }
394
}
2,233✔
395

396
// Note: This delegates to the Client_Hello_12 constructor to take advantage
397
//       of the sanity checks there.
398
Client_Hello_12::Client_Hello_12(const std::vector<uint8_t>& buf) :
2,767✔
399
      Client_Hello_12(std::make_unique<Client_Hello_Internal>(buf)) {}
2,767✔
400

401
/*
402
* Create a new Client Hello message
403
*/
404
Client_Hello_12::Client_Hello_12(Handshake_IO& io,
2,425✔
405
                                 Handshake_Hash& hash,
406
                                 const Policy& policy,
407
                                 Callbacks& cb,
408
                                 RandomNumberGenerator& rng,
409
                                 const std::vector<uint8_t>& reneg_info,
410
                                 const Client_Hello_12::Settings& client_settings,
411
                                 const std::vector<std::string>& next_protocols) {
2,425✔
412
   m_data->m_legacy_version = client_settings.protocol_version();
2,425✔
413
   m_data->m_random = make_hello_random(rng, cb, policy);
2,425✔
414
   m_data->m_suites = policy.ciphersuite_list(client_settings.protocol_version());
2,425✔
415

416
   if(!policy.acceptable_protocol_version(m_data->legacy_version()))
2,425✔
417
      throw Internal_Error("Offering " + m_data->legacy_version().to_string() +
×
418
                           " but our own policy does not accept it");
×
419

420
   /*
421
   * Place all empty extensions in front to avoid a bug in some systems
422
   * which reject hellos when the last extension in the list is empty.
423
   */
424

425
   // EMS must always be used with TLS 1.2, regardless of the policy used.
426
   m_data->extensions().add(new Extended_Master_Secret);
2,425✔
427

428
   if(policy.negotiate_encrypt_then_mac()) {
2,425✔
429
      m_data->extensions().add(new Encrypt_then_MAC);
2,412✔
430
   }
431

432
   m_data->extensions().add(new Session_Ticket_Extension());
2,425✔
433

434
   m_data->extensions().add(new Renegotiation_Extension(reneg_info));
2,425✔
435

436
   m_data->extensions().add(new Supported_Versions(m_data->legacy_version(), policy));
2,425✔
437

438
   if(!client_settings.hostname().empty()) {
4,961✔
439
      m_data->extensions().add(new Server_Name_Indicator(client_settings.hostname()));
7,329✔
440
   }
441

442
   if(policy.support_cert_status_message())
2,425✔
443
      m_data->extensions().add(new Certificate_Status_Request({}, {}));
2,126✔
444

445
   auto supported_groups = std::make_unique<Supported_Groups>(policy.key_exchange_groups());
2,425✔
446
   if(!supported_groups->ec_groups().empty()) {
4,848✔
447
      m_data->extensions().add(new Supported_Point_Formats(policy.use_ecc_point_compression()));
2,423✔
448
   }
449
   m_data->extensions().add(supported_groups.release());
2,425✔
450

451
   m_data->extensions().add(new Signature_Algorithms(policy.acceptable_signature_schemes()));
2,425✔
452
   if(auto cert_signing_prefs = policy.acceptable_certificate_signature_schemes()) {
2,425✔
453
      // RFC 8446 4.2.3
454
      //    TLS 1.2 implementations SHOULD also process this extension.
455
      //    Implementations which have the same policy in both cases MAY omit
456
      //    the "signature_algorithms_cert" extension.
457
      m_data->extensions().add(new Signature_Algorithms_Cert(std::move(cert_signing_prefs.value())));
×
458
   }
×
459

460
   if(reneg_info.empty() && !next_protocols.empty()) {
2,425✔
461
      m_data->extensions().add(new Application_Layer_Protocol_Notification(next_protocols));
115✔
462
   }
463

464
   if(m_data->legacy_version().is_datagram_protocol()) {
2,425✔
465
      m_data->extensions().add(new SRTP_Protection_Profiles(policy.srtp_profiles()));
708✔
466
   }
467

468
   cb.tls_modify_extensions(m_data->extensions(), Connection_Side::Client, type());
2,425✔
469

470
   hash.update(io.send(*this));
4,850✔
471
}
2,425✔
472

473
/*
474
* Create a new Client Hello message (session resumption case)
475
*/
476
Client_Hello_12::Client_Hello_12(Handshake_IO& io,
213✔
477
                                 Handshake_Hash& hash,
478
                                 const Policy& policy,
479
                                 Callbacks& cb,
480
                                 RandomNumberGenerator& rng,
481
                                 const std::vector<uint8_t>& reneg_info,
482
                                 const Session_with_Handle& session,
483
                                 const std::vector<std::string>& next_protocols) {
213✔
484
   m_data->m_legacy_version = session.session.version();
213✔
485
   m_data->m_random = make_hello_random(rng, cb, policy);
213✔
486

487
   // RFC 5077 3.4
488
   //    When presenting a ticket, the client MAY generate and include a
489
   //    Session ID in the TLS ClientHello. [...] If a ticket is presented by
490
   //    the client, the server MUST NOT attempt to use the Session ID in the
491
   //    ClientHello for stateful session resumption.
492
   m_data->m_session_id = session.handle.id().value_or(Session_ID(make_hello_random(rng, cb, policy)));
461✔
493
   m_data->m_suites = policy.ciphersuite_list(m_data->legacy_version());
213✔
494

495
   if(!policy.acceptable_protocol_version(session.session.version()))
213✔
496
      throw Internal_Error("Offering " + m_data->legacy_version().to_string() +
×
497
                           " but our own policy does not accept it");
×
498

499
   if(!value_exists(m_data->ciphersuites(), session.session.ciphersuite_code())) {
426✔
500
      m_data->m_suites.push_back(session.session.ciphersuite_code());
4✔
501
   }
502

503
   /*
504
   * As EMS must always be used with TLS 1.2, add it even if it wasn't used
505
   * in the original session. If the server understands it and follows the
506
   * RFC it should reject our resume attempt and upgrade us to a new session
507
   * with the EMS protection.
508
   */
509
   m_data->extensions().add(new Extended_Master_Secret);
213✔
510

511
   if(session.session.supports_encrypt_then_mac()) {
213✔
512
      m_data->extensions().add(new Encrypt_then_MAC);
2✔
513
   }
514

515
   if(session.handle.is_ticket()) {
213✔
516
      m_data->extensions().add(new Session_Ticket_Extension(session.handle.ticket().value()));
534✔
517
   }
518

519
   m_data->extensions().add(new Renegotiation_Extension(reneg_info));
213✔
520

521
   m_data->extensions().add(new Server_Name_Indicator(session.session.server_info().hostname()));
639✔
522

523
   if(policy.support_cert_status_message())
213✔
524
      m_data->extensions().add(new Certificate_Status_Request({}, {}));
34✔
525

526
   auto supported_groups = std::make_unique<Supported_Groups>(policy.key_exchange_groups());
213✔
527

528
   if(!supported_groups->ec_groups().empty()) {
424✔
529
      m_data->extensions().add(new Supported_Point_Formats(policy.use_ecc_point_compression()));
211✔
530
   }
531

532
   m_data->extensions().add(supported_groups.release());
213✔
533

534
   m_data->extensions().add(new Signature_Algorithms(policy.acceptable_signature_schemes()));
213✔
535
   if(auto cert_signing_prefs = policy.acceptable_certificate_signature_schemes()) {
213✔
536
      // RFC 8446 4.2.3
537
      //    TLS 1.2 implementations SHOULD also process this extension.
538
      //    Implementations which have the same policy in both cases MAY omit
539
      //    the "signature_algorithms_cert" extension.
540
      m_data->extensions().add(new Signature_Algorithms_Cert(std::move(cert_signing_prefs.value())));
×
541
   }
×
542

543
   if(reneg_info.empty() && !next_protocols.empty()) {
213✔
544
      m_data->extensions().add(new Application_Layer_Protocol_Notification(next_protocols));
19✔
545
   }
546

547
   cb.tls_modify_extensions(m_data->extensions(), Connection_Side::Client, type());
213✔
548

549
   hash.update(io.send(*this));
426✔
550
}
213✔
551

552
#if defined(BOTAN_HAS_TLS_13)
553

554
Client_Hello_13::Client_Hello_13(std::unique_ptr<Client_Hello_Internal> data) : Client_Hello(std::move(data)) {
442✔
555
   const auto& exts = m_data->extensions();
442✔
556

557
   // RFC 8446 4.1.2
558
   //    TLS 1.3 ClientHellos are identified as having a legacy_version of
559
   //    0x0303 and a "supported_versions" extension present with 0x0304 as the
560
   //    highest version indicated therein.
561
   //
562
   // Note that we already checked for "supported_versions" before entering this
563
   // c'tor in `Client_Hello_13::parse()`. This is just to be doubly sure.
564
   BOTAN_ASSERT_NOMSG(exts.has<Supported_Versions>());
442✔
565

566
   // RFC 8446 4.2.1
567
   //    Servers MAY abort the handshake upon receiving a ClientHello with
568
   //    legacy_version 0x0304 or later.
569
   if(m_data->legacy_version().is_tls_13_or_later()) {
442✔
570
      throw TLS_Exception(Alert::DecodeError, "TLS 1.3 Client Hello has invalid legacy_version");
1✔
571
   }
572

573
   // RFC 8446 4.1.2
574
   //    For every TLS 1.3 ClientHello, [the compression method] MUST contain
575
   //    exactly one byte, set to zero, [...].  If a TLS 1.3 ClientHello is
576
   //    received with any other value in this field, the server MUST abort the
577
   //    handshake with an "illegal_parameter" alert.
578
   if(m_data->comp_methods().size() != 1 || m_data->comp_methods().front() != 0) {
441✔
579
      throw TLS_Exception(Alert::IllegalParameter, "Client did not offer NULL compression");
4✔
580
   }
581

582
   // RFC 8446 4.2.9
583
   //    A client MUST provide a "psk_key_exchange_modes" extension if it
584
   //    offers a "pre_shared_key" extension. If clients offer "pre_shared_key"
585
   //    without a "psk_key_exchange_modes" extension, servers MUST abort
586
   //    the handshake.
587
   if(exts.has<PSK>()) {
437✔
588
      if(!exts.has<PSK_Key_Exchange_Modes>()) {
116✔
589
         throw TLS_Exception(Alert::MissingExtension,
1✔
590
                             "Client Hello offered a PSK without a psk_key_exchange_modes extension");
2✔
591
      }
592

593
      // RFC 8446 4.2.11
594
      //     The "pre_shared_key" extension MUST be the last extension in the
595
      //     ClientHello [...]. Servers MUST check that it is the last extension
596
      //     and otherwise fail the handshake with an "illegal_parameter" alert.
597
      if(exts.all().back()->type() != Extension_Code::PresharedKey) {
115✔
598
         throw TLS_Exception(Alert::IllegalParameter, "PSK extension was not at the very end of the Client Hello");
2✔
599
      }
600
   }
601

602
   // RFC 8446 9.2
603
   //    [A TLS 1.3 ClientHello] message MUST meet the following requirements:
604
   //
605
   //     -  If not containing a "pre_shared_key" extension, it MUST contain
606
   //        both a "signature_algorithms" extension and a "supported_groups"
607
   //        extension.
608
   //
609
   //     -  If containing a "supported_groups" extension, it MUST also contain
610
   //        a "key_share" extension, and vice versa.  An empty
611
   //        KeyShare.client_shares vector is permitted.
612
   //
613
   //    Servers receiving a ClientHello which does not conform to these
614
   //    requirements MUST abort the handshake with a "missing_extension"
615
   //    alert.
616
   if(!exts.has<PSK>()) {
434✔
617
      if(!exts.has<Supported_Groups>() || !exts.has<Signature_Algorithms>()) {
641✔
618
         throw TLS_Exception(
2✔
619
            Alert::MissingExtension,
620
            "Non-PSK Client Hello did not contain supported_groups and signature_algorithms extensions");
4✔
621
      }
622
   }
623
   if(exts.has<Supported_Groups>() != exts.has<Key_Share>()) {
432✔
624
      throw TLS_Exception(Alert::MissingExtension,
2✔
625
                          "Client Hello must either contain both key_share and supported_groups extensions or neither");
4✔
626
   }
627

628
   if(exts.has<Key_Share>()) {
430✔
629
      const auto supported_ext = exts.get<Supported_Groups>();
430✔
630
      BOTAN_ASSERT_NONNULL(supported_ext);
430✔
631
      const auto supports = supported_ext->groups();
430✔
632
      const auto offers = exts.get<Key_Share>()->offered_groups();
430✔
633

634
      // RFC 8446 4.2.8
635
      //    Each KeyShareEntry value MUST correspond to a group offered in the
636
      //    "supported_groups" extension and MUST appear in the same order.
637
      //    [...]
638
      //    Clients MUST NOT offer any KeyShareEntry values for groups not
639
      //    listed in the client's "supported_groups" extension.
640
      //
641
      // Note: We can assume that both `offers` and `supports` are unique lists
642
      //       as this is ensured in the parsing code of the extensions.
643
      auto found_in_supported_groups = [&supports, support_offset = -1](auto group) mutable {
1,672✔
644
         const auto i = std::find(supports.begin(), supports.end(), group);
1,672✔
645
         if(i == supports.end()) {
1,672✔
646
            return false;
647
         }
648

649
         const auto found_at = std::distance(supports.begin(), i);
1,672✔
650
         if(found_at <= support_offset) {
1,672✔
651
            return false;  // The order that groups appear in "key_share" and
652
                           // "supported_groups" must be the same
653
         }
654

655
         support_offset = static_cast<decltype(support_offset)>(found_at);
1,672✔
656
         return true;
1,672✔
657
      };
430✔
658

659
      for(const auto offered : offers) {
2,102✔
660
         // RFC 8446 4.2.8
661
         //    Servers MAY check for violations of these rules and abort the
662
         //    handshake with an "illegal_parameter" alert if one is violated.
663
         if(!found_in_supported_groups(offered)) {
1,672✔
664
            throw TLS_Exception(Alert::IllegalParameter,
×
665
                                "Offered key exchange groups do not align with claimed supported groups");
×
666
         }
667
      }
668
   }
860✔
669

670
   // TODO: Reject oid_filters extension if found (which is the only known extension that
671
   //       must not occur in the TLS 1.3 client hello.
672
   // RFC 8446 4.2.5
673
   //    [The oid_filters extension] MUST only be sent in the CertificateRequest message.
674
}
442✔
675

676
/*
677
* Create a new Client Hello message
678
*/
679
Client_Hello_13::Client_Hello_13(const Policy& policy,
950✔
680
                                 Callbacks& cb,
681
                                 RandomNumberGenerator& rng,
682
                                 std::string_view hostname,
683
                                 const std::vector<std::string>& next_protocols,
684
                                 std::optional<Session_with_Handle>& session) {
950✔
685
   // RFC 8446 4.1.2
686
   //    In TLS 1.3, the client indicates its version preferences in the
687
   //    "supported_versions" extension (Section 4.2.1) and the
688
   //    legacy_version field MUST be set to 0x0303, which is the version
689
   //    number for TLS 1.2.
690
   m_data->m_legacy_version = Protocol_Version::TLS_V12;
950✔
691
   m_data->m_random = make_hello_random(rng, cb, policy);
950✔
692
   m_data->m_suites = policy.ciphersuite_list(Protocol_Version::TLS_V13);
950✔
693

694
   if(policy.allow_tls12())  // Note: DTLS 1.3 is NYI, hence dtls_12 is not checked
950✔
695
   {
696
      const auto legacy_suites = policy.ciphersuite_list(Protocol_Version::TLS_V12);
930✔
697
      m_data->m_suites.insert(m_data->m_suites.end(), legacy_suites.cbegin(), legacy_suites.cend());
930✔
698
   }
930✔
699

700
   if(policy.tls_13_middlebox_compatibility_mode()) {
950✔
701
      // RFC 8446 4.1.2
702
      //    In compatibility mode (see Appendix D.4), this field MUST be non-empty,
703
      //    so a client not offering a pre-TLS 1.3 session MUST generate a new
704
      //    32-byte value.
705
      //
706
      // Note: we won't ever offer a TLS 1.2 session. In such a case we would
707
      //       have instantiated a TLS 1.2 client in the first place.
708
      m_data->m_session_id = Session_ID(make_hello_random(rng, cb, policy));
939✔
709
   }
710

711
   if(!hostname.empty())
950✔
712
      m_data->extensions().add(new Server_Name_Indicator(hostname));
1,860✔
713

714
   m_data->extensions().add(new Supported_Groups(policy.key_exchange_groups()));
950✔
715

716
   m_data->extensions().add(new Key_Share(policy, cb, rng));
950✔
717

718
   m_data->extensions().add(new Supported_Versions(Protocol_Version::TLS_V13, policy));
950✔
719

720
   m_data->extensions().add(new Signature_Algorithms(policy.acceptable_signature_schemes()));
950✔
721
   if(auto cert_signing_prefs = policy.acceptable_certificate_signature_schemes()) {
950✔
722
      // RFC 8446 4.2.3
723
      //    Implementations which have the same policy in both cases MAY omit
724
      //    the "signature_algorithms_cert" extension.
725
      m_data->extensions().add(new Signature_Algorithms_Cert(std::move(cert_signing_prefs.value())));
×
726
   }
×
727

728
   // TODO: Support for PSK-only mode without a key exchange.
729
   //       This should be configurable in TLS::Policy and should allow no PSK
730
   //       support at all (e.g. to disable support for session resumption).
731
   m_data->extensions().add(new PSK_Key_Exchange_Modes({PSK_Key_Exchange_Mode::PSK_DHE_KE}));
950✔
732

733
   if(policy.support_cert_status_message())
950✔
734
      m_data->extensions().add(new Certificate_Status_Request({}, {}));
97✔
735

736
   // We currently support "record_size_limit" for TLS 1.3 exclusively. Hence,
737
   // when TLS 1.2 is advertised as a supported protocol, we must not offer this
738
   // extension.
739
   if(policy.record_size_limit().has_value() && !policy.allow_tls12())
950✔
740
      m_data->extensions().add(new Record_Size_Limit(policy.record_size_limit().value()));
12✔
741

742
   if(!next_protocols.empty())
950✔
743
      m_data->extensions().add(new Application_Layer_Protocol_Notification(next_protocols));
11✔
744

745
   if(policy.allow_tls12()) {
950✔
746
      m_data->extensions().add(new Renegotiation_Extension());
930✔
747
      m_data->extensions().add(new Session_Ticket_Extension());
930✔
748

749
      // EMS must always be used with TLS 1.2, regardless of the policy
750
      m_data->extensions().add(new Extended_Master_Secret);
930✔
751

752
      if(policy.negotiate_encrypt_then_mac())
930✔
753
         m_data->extensions().add(new Encrypt_then_MAC);
930✔
754

755
      if(m_data->extensions().has<Supported_Groups>() &&
1,860✔
756
         !m_data->extensions().get<Supported_Groups>()->ec_groups().empty())
1,860✔
757
         m_data->extensions().add(new Supported_Point_Formats(policy.use_ecc_point_compression()));
930✔
758
   }
759

760
   if(session.has_value()) {
950✔
761
      m_data->extensions().add(new PSK(session.value(), cb));
82✔
762
   }
763

764
   cb.tls_modify_extensions(m_data->extensions(), Connection_Side::Client, type());
950✔
765

766
   if(m_data->extensions().has<PSK>()) {
950✔
767
      // RFC 8446 4.2.11
768
      //    The "pre_shared_key" extension MUST be the last extension in the
769
      //    ClientHello (this facilitates implementation [...]).
770
      if(m_data->extensions().all().back()->type() != Extension_Code::PresharedKey) {
82✔
771
         throw TLS_Exception(Alert::InternalError,
×
772
                             "Application modified extensions of Client Hello, PSK is not last anymore");
×
773
      }
774
      calculate_psk_binders({});
82✔
775
   }
776
}
950✔
777

778
std::variant<Client_Hello_13, Client_Hello_12> Client_Hello_13::parse(const std::vector<uint8_t>& buf) {
947✔
779
   auto data = std::make_unique<Client_Hello_Internal>(buf);
947✔
780
   const auto version = data->version();
921✔
781

782
   if(version.is_pre_tls_13())
921✔
783
      return Client_Hello_12(std::move(data));
958✔
784
   else
785
      return Client_Hello_13(std::move(data));
872✔
786
}
921✔
787

788
void Client_Hello_13::retry(const Hello_Retry_Request& hrr,
34✔
789
                            const Transcript_Hash_State& transcript_hash_state,
790
                            Callbacks& cb,
791
                            RandomNumberGenerator& rng) {
792
   BOTAN_STATE_CHECK(m_data->extensions().has<Supported_Groups>());
34✔
793
   BOTAN_STATE_CHECK(m_data->extensions().has<Key_Share>());
34✔
794

795
   auto hrr_ks = hrr.extensions().get<Key_Share>();
34✔
796
   const auto& supported_groups = m_data->extensions().get<Supported_Groups>()->groups();
34✔
797

798
   if(hrr.extensions().has<Key_Share>())
34✔
799
      m_data->extensions().get<Key_Share>()->retry_offer(*hrr_ks, supported_groups, cb, rng);
33✔
800

801
   // RFC 8446 4.2.2
802
   //    When sending the new ClientHello, the client MUST copy
803
   //    the contents of the extension received in the HelloRetryRequest into
804
   //    a "cookie" extension in the new ClientHello.
805
   //
806
   // RFC 8446 4.2.2
807
   //    Clients MUST NOT use cookies in their initial ClientHello in subsequent
808
   //    connections.
809
   if(hrr.extensions().has<Cookie>()) {
31✔
810
      BOTAN_STATE_CHECK(!m_data->extensions().has<Cookie>());
3✔
811
      m_data->extensions().add(new Cookie(hrr.extensions().get<Cookie>()->get_cookie()));
3✔
812
   }
813

814
   // Note: the consumer of the TLS implementation won't be able to distinguish
815
   //       invocations to this callback due to the first Client_Hello or the
816
   //       retried Client_Hello after receiving a Hello_Retry_Request. We assume
817
   //       that the user keeps and detects this state themselves.
818
   cb.tls_modify_extensions(m_data->extensions(), Connection_Side::Client, type());
31✔
819

820
   auto psk = m_data->extensions().get<PSK>();
31✔
821
   if(psk) {
31✔
822
      // Cipher suite should always be a known suite as this is checked upstream
823
      const auto cipher = Ciphersuite::by_id(hrr.ciphersuite());
10✔
824
      BOTAN_ASSERT_NOMSG(cipher.has_value());
10✔
825

826
      // RFC 8446 4.1.4
827
      //    In [...] its updated ClientHello, the client SHOULD NOT offer
828
      //    any pre-shared keys associated with a hash other than that of the
829
      //    selected cipher suite.
830
      psk->filter(cipher.value());
10✔
831

832
      // RFC 8446 4.2.11.2
833
      //    If the server responds with a HelloRetryRequest and the client
834
      //    then sends ClientHello2, its binder will be computed over: [...].
835
      calculate_psk_binders(transcript_hash_state.clone());
10✔
836
   }
837
}
31✔
838

839
void Client_Hello_13::validate_updates(const Client_Hello_13& new_ch) {
30✔
840
   // RFC 8446 4.1.2
841
   //    The client will also send a ClientHello when the server has responded
842
   //    to its ClientHello with a HelloRetryRequest. In that case, the client
843
   //    MUST send the same ClientHello without modification, except as follows:
844

845
   if(m_data->session_id() != new_ch.m_data->session_id() || m_data->random() != new_ch.m_data->random() ||
30✔
846
      m_data->ciphersuites() != new_ch.m_data->ciphersuites() ||
60✔
847
      m_data->comp_methods() != new_ch.m_data->comp_methods()) {
30✔
848
      throw TLS_Exception(Alert::IllegalParameter, "Client Hello core values changed after Hello Retry Request");
×
849
   }
850

851
   const auto oldexts = extension_types();
30✔
852
   const auto newexts = new_ch.extension_types();
30✔
853

854
   // Check that extension omissions are justified
855
   for(const auto oldext : oldexts) {
421✔
856
      if(!newexts.contains(oldext)) {
784✔
857
         const auto ext = extensions().get(oldext);
1✔
858

859
         // We don't make any assumptions about unimplemented extensions.
860
         if(!ext->is_implemented())
1✔
861
            continue;
×
862

863
         // RFC 8446 4.1.2
864
         //    Removing the "early_data" extension (Section 4.2.10) if one was
865
         //    present.  Early data is not permitted after a HelloRetryRequest.
866
         if(oldext == EarlyDataIndication::static_type())
1✔
867
            continue;
×
868

869
         // RFC 8446 4.1.2
870
         //    Optionally adding, removing, or changing the length of the
871
         //    "padding" extension.
872
         //
873
         // TODO: implement the Padding extension
874
         // if(oldext == Padding::static_type())
875
         //    continue;
876

877
         throw TLS_Exception(Alert::IllegalParameter, "Extension removed in updated Client Hello");
1✔
878
      }
879
   }
880

881
   // Check that extension additions are justified
882
   for(const auto newext : newexts) {
413✔
883
      if(!oldexts.contains(newext)) {
768✔
884
         const auto ext = new_ch.extensions().get(newext);
2✔
885

886
         // We don't make any assumptions about unimplemented extensions.
887
         if(!ext->is_implemented())
2✔
888
            continue;
1✔
889

890
         // RFC 8446 4.1.2
891
         //    Including a "cookie" extension if one was provided in the
892
         //    HelloRetryRequest.
893
         if(newext == Cookie::static_type())
1✔
894
            continue;
1✔
895

896
         // RFC 8446 4.1.2
897
         //    Optionally adding, removing, or changing the length of the
898
         //    "padding" extension.
899
         //
900
         // TODO: implement the Padding extension
901
         // if(newext == Padding::static_type())
902
         //    continue;
903

904
         throw TLS_Exception(Alert::UnsupportedExtension, "Added an extension in updated Client Hello");
×
905
      }
906
   }
907

908
   // RFC 8446 4.1.2
909
   //    Removing the "early_data" extension (Section 4.2.10) if one was
910
   //    present.  Early data is not permitted after a HelloRetryRequest.
911
   if(new_ch.extensions().has<EarlyDataIndication>()) {
29✔
912
      throw TLS_Exception(Alert::IllegalParameter, "Updated Client Hello indicates early data");
×
913
   }
914

915
   // TODO: Contents of extensions are not checked for update compatibility, see:
916
   //
917
   // RFC 8446 4.1.2
918
   //    If a "key_share" extension was supplied in the HelloRetryRequest,
919
   //    replacing the list of shares with a list containing a single
920
   //    KeyShareEntry from the indicated group.
921
   //
922
   //    Updating the "pre_shared_key" extension if present by recomputing
923
   //    the "obfuscated_ticket_age" and binder values and (optionally)
924
   //    removing any PSKs which are incompatible with the server's
925
   //    indicated cipher suite.
926
   //
927
   //    Optionally adding, removing, or changing the length of the
928
   //    "padding" extension.
929
}
30✔
930

931
void Client_Hello_13::calculate_psk_binders(Transcript_Hash_State ths) {
92✔
932
   auto psk = m_data->extensions().get<PSK>();
92✔
933
   if(!psk || psk->empty())
92✔
934
      return;
1✔
935

936
   // RFC 8446 4.2.11.2
937
   //    Each entry in the binders list is computed as an HMAC over a
938
   //    transcript hash (see Section 4.4.1) containing a partial ClientHello
939
   //    [...].
940
   //
941
   // Therefore we marshal the entire message prematurely to obtain the
942
   // (truncated) transcript hash, calculate the PSK binders with it, update
943
   // the Client Hello thus finalizing the message. Down the road, it will be
944
   // re-marshalled with the correct binders and sent over the wire.
945
   Handshake_Layer::prepare_message(*this, ths);
91✔
946
   psk->calculate_binders(ths);
91✔
947
}
948

949
std::optional<Protocol_Version> Client_Hello_13::highest_supported_version(const Policy& policy) const {
384✔
950
   // RFC 8446 4.2.1
951
   //    The "supported_versions" extension is used by the client to indicate
952
   //    which versions of TLS it supports and by the server to indicate which
953
   //    version it is using. The extension contains a list of supported
954
   //    versions in preference order, with the most preferred version first.
955
   const auto supvers = m_data->extensions().get<Supported_Versions>();
384✔
956
   BOTAN_ASSERT_NONNULL(supvers);
384✔
957

958
   std::optional<Protocol_Version> result;
384✔
959

960
   for(const auto& v : supvers->versions()) {
1,873✔
961
      // RFC 8446 4.2.1
962
      //    Servers MUST only select a version of TLS present in that extension
963
      //    and MUST ignore any unknown versions that are present in that
964
      //    extension.
965
      if(!v.known_version() || !policy.acceptable_protocol_version(v)) {
1,489✔
966
         continue;
830✔
967
      }
968

969
      result = (result.has_value()) ? std::optional(std::max(result.value(), v)) : std::optional(v);
934✔
970
   }
971

972
   return result;
384✔
973
}
974

975
#endif  // BOTAN_HAS_TLS_13
976

977
}  // namespace Botan::TLS
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