github.com/ooni/psiphon/tunnel-core@v0.0.0-20230105123940-fe12a24c96ee/oovendor/qtls-go1-18/handshake_server.go (about) 1 // Copyright 2009 The Go Authors. All rights reserved. 2 // Use of this source code is governed by a BSD-style 3 // license that can be found in the LICENSE file. 4 5 package qtls 6 7 import ( 8 "context" 9 "crypto" 10 "crypto/ecdsa" 11 "crypto/ed25519" 12 "crypto/rsa" 13 "crypto/subtle" 14 "crypto/x509" 15 "errors" 16 "fmt" 17 "hash" 18 "io" 19 "sync/atomic" 20 "time" 21 ) 22 23 // serverHandshakeState contains details of a server handshake in progress. 24 // It's discarded once the handshake has completed. 25 type serverHandshakeState struct { 26 c *Conn 27 ctx context.Context 28 clientHello *clientHelloMsg 29 hello *serverHelloMsg 30 suite *cipherSuite 31 ecdheOk bool 32 ecSignOk bool 33 rsaDecryptOk bool 34 rsaSignOk bool 35 sessionState *sessionState 36 finishedHash finishedHash 37 masterSecret []byte 38 cert *Certificate 39 } 40 41 // serverHandshake performs a TLS handshake as a server. 42 func (c *Conn) serverHandshake(ctx context.Context) error { 43 c.setAlternativeRecordLayer() 44 45 clientHello, err := c.readClientHello(ctx) 46 if err != nil { 47 return err 48 } 49 50 if c.vers == VersionTLS13 { 51 hs := serverHandshakeStateTLS13{ 52 c: c, 53 ctx: ctx, 54 clientHello: clientHello, 55 } 56 return hs.handshake() 57 } else if c.extraConfig.usesAlternativeRecordLayer() { 58 // This should already have been caught by the check that the ClientHello doesn't 59 // offer any (supported) versions older than TLS 1.3. 60 // Check again to make sure we can't be tricked into using an older version. 61 c.sendAlert(alertProtocolVersion) 62 return errors.New("tls: negotiated TLS < 1.3 when using QUIC") 63 } 64 65 hs := serverHandshakeState{ 66 c: c, 67 ctx: ctx, 68 clientHello: clientHello, 69 } 70 return hs.handshake() 71 } 72 73 func (hs *serverHandshakeState) handshake() error { 74 c := hs.c 75 76 if err := hs.processClientHello(); err != nil { 77 return err 78 } 79 80 // For an overview of TLS handshaking, see RFC 5246, Section 7.3. 81 c.buffering = true 82 if hs.checkForResumption() { 83 // The client has included a session ticket and so we do an abbreviated handshake. 84 c.didResume = true 85 if err := hs.doResumeHandshake(); err != nil { 86 return err 87 } 88 if err := hs.establishKeys(); err != nil { 89 return err 90 } 91 if err := hs.sendSessionTicket(); err != nil { 92 return err 93 } 94 if err := hs.sendFinished(c.serverFinished[:]); err != nil { 95 return err 96 } 97 if _, err := c.flush(); err != nil { 98 return err 99 } 100 c.clientFinishedIsFirst = false 101 if err := hs.readFinished(nil); err != nil { 102 return err 103 } 104 } else { 105 // The client didn't include a session ticket, or it wasn't 106 // valid so we do a full handshake. 107 if err := hs.pickCipherSuite(); err != nil { 108 return err 109 } 110 if err := hs.doFullHandshake(); err != nil { 111 return err 112 } 113 if err := hs.establishKeys(); err != nil { 114 return err 115 } 116 if err := hs.readFinished(c.clientFinished[:]); err != nil { 117 return err 118 } 119 c.clientFinishedIsFirst = true 120 c.buffering = true 121 if err := hs.sendSessionTicket(); err != nil { 122 return err 123 } 124 if err := hs.sendFinished(nil); err != nil { 125 return err 126 } 127 if _, err := c.flush(); err != nil { 128 return err 129 } 130 } 131 132 c.ekm = ekmFromMasterSecret(c.vers, hs.suite, hs.masterSecret, hs.clientHello.random, hs.hello.random) 133 atomic.StoreUint32(&c.handshakeStatus, 1) 134 135 return nil 136 } 137 138 // readClientHello reads a ClientHello message and selects the protocol version. 139 func (c *Conn) readClientHello(ctx context.Context) (*clientHelloMsg, error) { 140 msg, err := c.readHandshake() 141 if err != nil { 142 return nil, err 143 } 144 clientHello, ok := msg.(*clientHelloMsg) 145 if !ok { 146 c.sendAlert(alertUnexpectedMessage) 147 return nil, unexpectedMessageError(clientHello, msg) 148 } 149 150 var configForClient *config 151 originalConfig := c.config 152 if c.config.GetConfigForClient != nil { 153 chi := newClientHelloInfo(ctx, c, clientHello) 154 if cfc, err := c.config.GetConfigForClient(chi); err != nil { 155 c.sendAlert(alertInternalError) 156 return nil, err 157 } else if cfc != nil { 158 configForClient = fromConfig(cfc) 159 c.config = configForClient 160 } 161 } 162 c.ticketKeys = originalConfig.ticketKeys(configForClient) 163 164 clientVersions := clientHello.supportedVersions 165 if len(clientHello.supportedVersions) == 0 { 166 clientVersions = supportedVersionsFromMax(clientHello.vers) 167 } 168 if c.extraConfig.usesAlternativeRecordLayer() { 169 // In QUIC, the client MUST NOT offer any old TLS versions. 170 // Here, we can only check that none of the other supported versions of this library 171 // (TLS 1.0 - TLS 1.2) is offered. We don't check for any SSL versions here. 172 for _, ver := range clientVersions { 173 if ver == VersionTLS13 { 174 continue 175 } 176 for _, v := range supportedVersions { 177 if ver == v { 178 c.sendAlert(alertProtocolVersion) 179 return nil, fmt.Errorf("tls: client offered old TLS version %#x", ver) 180 } 181 } 182 } 183 // Make the config we're using allows us to use TLS 1.3. 184 if c.config.maxSupportedVersion(roleServer) < VersionTLS13 { 185 c.sendAlert(alertInternalError) 186 return nil, errors.New("tls: MaxVersion prevents QUIC from using TLS 1.3") 187 } 188 } 189 c.vers, ok = c.config.mutualVersion(roleServer, clientVersions) 190 if !ok { 191 c.sendAlert(alertProtocolVersion) 192 return nil, fmt.Errorf("tls: client offered only unsupported versions: %x", clientVersions) 193 } 194 c.haveVers = true 195 c.in.version = c.vers 196 c.out.version = c.vers 197 198 return clientHello, nil 199 } 200 201 func (hs *serverHandshakeState) processClientHello() error { 202 c := hs.c 203 204 hs.hello = new(serverHelloMsg) 205 hs.hello.vers = c.vers 206 207 foundCompression := false 208 // We only support null compression, so check that the client offered it. 209 for _, compression := range hs.clientHello.compressionMethods { 210 if compression == compressionNone { 211 foundCompression = true 212 break 213 } 214 } 215 216 if !foundCompression { 217 c.sendAlert(alertHandshakeFailure) 218 return errors.New("tls: client does not support uncompressed connections") 219 } 220 221 hs.hello.random = make([]byte, 32) 222 serverRandom := hs.hello.random 223 // Downgrade protection canaries. See RFC 8446, Section 4.1.3. 224 maxVers := c.config.maxSupportedVersion(roleServer) 225 if maxVers >= VersionTLS12 && c.vers < maxVers || testingOnlyForceDowngradeCanary { 226 if c.vers == VersionTLS12 { 227 copy(serverRandom[24:], downgradeCanaryTLS12) 228 } else { 229 copy(serverRandom[24:], downgradeCanaryTLS11) 230 } 231 serverRandom = serverRandom[:24] 232 } 233 _, err := io.ReadFull(c.config.rand(), serverRandom) 234 if err != nil { 235 c.sendAlert(alertInternalError) 236 return err 237 } 238 239 if len(hs.clientHello.secureRenegotiation) != 0 { 240 c.sendAlert(alertHandshakeFailure) 241 return errors.New("tls: initial handshake had non-empty renegotiation extension") 242 } 243 244 hs.hello.secureRenegotiationSupported = hs.clientHello.secureRenegotiationSupported 245 hs.hello.compressionMethod = compressionNone 246 if len(hs.clientHello.serverName) > 0 { 247 c.serverName = hs.clientHello.serverName 248 } 249 250 selectedProto, err := negotiateALPN(c.config.NextProtos, hs.clientHello.alpnProtocols) 251 if err != nil { 252 c.sendAlert(alertNoApplicationProtocol) 253 return err 254 } 255 hs.hello.alpnProtocol = selectedProto 256 c.clientProtocol = selectedProto 257 258 hs.cert, err = c.config.getCertificate(newClientHelloInfo(hs.ctx, c, hs.clientHello)) 259 if err != nil { 260 if err == errNoCertificates { 261 c.sendAlert(alertUnrecognizedName) 262 } else { 263 c.sendAlert(alertInternalError) 264 } 265 return err 266 } 267 if hs.clientHello.scts { 268 hs.hello.scts = hs.cert.SignedCertificateTimestamps 269 } 270 271 hs.ecdheOk = supportsECDHE(c.config, hs.clientHello.supportedCurves, hs.clientHello.supportedPoints) 272 273 if hs.ecdheOk { 274 // Although omitting the ec_point_formats extension is permitted, some 275 // old OpenSSL version will refuse to handshake if not present. 276 // 277 // Per RFC 4492, section 5.1.2, implementations MUST support the 278 // uncompressed point format. See golang.org/issue/31943. 279 hs.hello.supportedPoints = []uint8{pointFormatUncompressed} 280 } 281 282 if priv, ok := hs.cert.PrivateKey.(crypto.Signer); ok { 283 switch priv.Public().(type) { 284 case *ecdsa.PublicKey: 285 hs.ecSignOk = true 286 case ed25519.PublicKey: 287 hs.ecSignOk = true 288 case *rsa.PublicKey: 289 hs.rsaSignOk = true 290 default: 291 c.sendAlert(alertInternalError) 292 return fmt.Errorf("tls: unsupported signing key type (%T)", priv.Public()) 293 } 294 } 295 if priv, ok := hs.cert.PrivateKey.(crypto.Decrypter); ok { 296 switch priv.Public().(type) { 297 case *rsa.PublicKey: 298 hs.rsaDecryptOk = true 299 default: 300 c.sendAlert(alertInternalError) 301 return fmt.Errorf("tls: unsupported decryption key type (%T)", priv.Public()) 302 } 303 } 304 305 return nil 306 } 307 308 // negotiateALPN picks a shared ALPN protocol that both sides support in server 309 // preference order. If ALPN is not configured or the peer doesn't support it, 310 // it returns "" and no error. 311 func negotiateALPN(serverProtos, clientProtos []string) (string, error) { 312 if len(serverProtos) == 0 || len(clientProtos) == 0 { 313 return "", nil 314 } 315 var http11fallback bool 316 for _, s := range serverProtos { 317 for _, c := range clientProtos { 318 if s == c { 319 return s, nil 320 } 321 if s == "h2" && c == "http/1.1" { 322 http11fallback = true 323 } 324 } 325 } 326 // As a special case, let http/1.1 clients connect to h2 servers as if they 327 // didn't support ALPN. We used not to enforce protocol overlap, so over 328 // time a number of HTTP servers were configured with only "h2", but 329 // expected to accept connections from "http/1.1" clients. See Issue 46310. 330 if http11fallback { 331 return "", nil 332 } 333 return "", fmt.Errorf("tls: client requested unsupported application protocols (%s)", clientProtos) 334 } 335 336 // supportsECDHE returns whether ECDHE key exchanges can be used with this 337 // pre-TLS 1.3 client. 338 func supportsECDHE(c *config, supportedCurves []CurveID, supportedPoints []uint8) bool { 339 supportsCurve := false 340 for _, curve := range supportedCurves { 341 if c.supportsCurve(curve) { 342 supportsCurve = true 343 break 344 } 345 } 346 347 supportsPointFormat := false 348 for _, pointFormat := range supportedPoints { 349 if pointFormat == pointFormatUncompressed { 350 supportsPointFormat = true 351 break 352 } 353 } 354 355 return supportsCurve && supportsPointFormat 356 } 357 358 func (hs *serverHandshakeState) pickCipherSuite() error { 359 c := hs.c 360 361 preferenceOrder := cipherSuitesPreferenceOrder 362 if !hasAESGCMHardwareSupport || !aesgcmPreferred(hs.clientHello.cipherSuites) { 363 preferenceOrder = cipherSuitesPreferenceOrderNoAES 364 } 365 366 configCipherSuites := c.config.cipherSuites() 367 preferenceList := make([]uint16, 0, len(configCipherSuites)) 368 for _, suiteID := range preferenceOrder { 369 for _, id := range configCipherSuites { 370 if id == suiteID { 371 preferenceList = append(preferenceList, id) 372 break 373 } 374 } 375 } 376 377 hs.suite = selectCipherSuite(preferenceList, hs.clientHello.cipherSuites, hs.cipherSuiteOk) 378 if hs.suite == nil { 379 c.sendAlert(alertHandshakeFailure) 380 return errors.New("tls: no cipher suite supported by both client and server") 381 } 382 c.cipherSuite = hs.suite.id 383 384 for _, id := range hs.clientHello.cipherSuites { 385 if id == TLS_FALLBACK_SCSV { 386 // The client is doing a fallback connection. See RFC 7507. 387 if hs.clientHello.vers < c.config.maxSupportedVersion(roleServer) { 388 c.sendAlert(alertInappropriateFallback) 389 return errors.New("tls: client using inappropriate protocol fallback") 390 } 391 break 392 } 393 } 394 395 return nil 396 } 397 398 func (hs *serverHandshakeState) cipherSuiteOk(c *cipherSuite) bool { 399 if c.flags&suiteECDHE != 0 { 400 if !hs.ecdheOk { 401 return false 402 } 403 if c.flags&suiteECSign != 0 { 404 if !hs.ecSignOk { 405 return false 406 } 407 } else if !hs.rsaSignOk { 408 return false 409 } 410 } else if !hs.rsaDecryptOk { 411 return false 412 } 413 if hs.c.vers < VersionTLS12 && c.flags&suiteTLS12 != 0 { 414 return false 415 } 416 return true 417 } 418 419 // checkForResumption reports whether we should perform resumption on this connection. 420 func (hs *serverHandshakeState) checkForResumption() bool { 421 c := hs.c 422 423 if c.config.SessionTicketsDisabled { 424 return false 425 } 426 427 plaintext, usedOldKey := c.decryptTicket(hs.clientHello.sessionTicket) 428 if plaintext == nil { 429 return false 430 } 431 hs.sessionState = &sessionState{usedOldKey: usedOldKey} 432 ok := hs.sessionState.unmarshal(plaintext) 433 if !ok { 434 return false 435 } 436 437 createdAt := time.Unix(int64(hs.sessionState.createdAt), 0) 438 if c.config.time().Sub(createdAt) > maxSessionTicketLifetime { 439 return false 440 } 441 442 // Never resume a session for a different TLS version. 443 if c.vers != hs.sessionState.vers { 444 return false 445 } 446 447 cipherSuiteOk := false 448 // Check that the client is still offering the ciphersuite in the session. 449 for _, id := range hs.clientHello.cipherSuites { 450 if id == hs.sessionState.cipherSuite { 451 cipherSuiteOk = true 452 break 453 } 454 } 455 if !cipherSuiteOk { 456 return false 457 } 458 459 // Check that we also support the ciphersuite from the session. 460 hs.suite = selectCipherSuite([]uint16{hs.sessionState.cipherSuite}, 461 c.config.cipherSuites(), hs.cipherSuiteOk) 462 if hs.suite == nil { 463 return false 464 } 465 466 sessionHasClientCerts := len(hs.sessionState.certificates) != 0 467 needClientCerts := requiresClientCert(c.config.ClientAuth) 468 if needClientCerts && !sessionHasClientCerts { 469 return false 470 } 471 if sessionHasClientCerts && c.config.ClientAuth == NoClientCert { 472 return false 473 } 474 475 return true 476 } 477 478 func (hs *serverHandshakeState) doResumeHandshake() error { 479 c := hs.c 480 481 hs.hello.cipherSuite = hs.suite.id 482 c.cipherSuite = hs.suite.id 483 // We echo the client's session ID in the ServerHello to let it know 484 // that we're doing a resumption. 485 hs.hello.sessionId = hs.clientHello.sessionId 486 hs.hello.ticketSupported = hs.sessionState.usedOldKey 487 hs.finishedHash = newFinishedHash(c.vers, hs.suite) 488 hs.finishedHash.discardHandshakeBuffer() 489 hs.finishedHash.Write(hs.clientHello.marshal()) 490 hs.finishedHash.Write(hs.hello.marshal()) 491 if _, err := c.writeRecord(recordTypeHandshake, hs.hello.marshal()); err != nil { 492 return err 493 } 494 495 if err := c.processCertsFromClient(Certificate{ 496 Certificate: hs.sessionState.certificates, 497 }); err != nil { 498 return err 499 } 500 501 if c.config.VerifyConnection != nil { 502 if err := c.config.VerifyConnection(c.connectionStateLocked()); err != nil { 503 c.sendAlert(alertBadCertificate) 504 return err 505 } 506 } 507 508 hs.masterSecret = hs.sessionState.masterSecret 509 510 return nil 511 } 512 513 func (hs *serverHandshakeState) doFullHandshake() error { 514 c := hs.c 515 516 if hs.clientHello.ocspStapling && len(hs.cert.OCSPStaple) > 0 { 517 hs.hello.ocspStapling = true 518 } 519 520 hs.hello.ticketSupported = hs.clientHello.ticketSupported && !c.config.SessionTicketsDisabled 521 hs.hello.cipherSuite = hs.suite.id 522 523 hs.finishedHash = newFinishedHash(hs.c.vers, hs.suite) 524 if c.config.ClientAuth == NoClientCert { 525 // No need to keep a full record of the handshake if client 526 // certificates won't be used. 527 hs.finishedHash.discardHandshakeBuffer() 528 } 529 hs.finishedHash.Write(hs.clientHello.marshal()) 530 hs.finishedHash.Write(hs.hello.marshal()) 531 if _, err := c.writeRecord(recordTypeHandshake, hs.hello.marshal()); err != nil { 532 return err 533 } 534 535 certMsg := new(certificateMsg) 536 certMsg.certificates = hs.cert.Certificate 537 hs.finishedHash.Write(certMsg.marshal()) 538 if _, err := c.writeRecord(recordTypeHandshake, certMsg.marshal()); err != nil { 539 return err 540 } 541 542 if hs.hello.ocspStapling { 543 certStatus := new(certificateStatusMsg) 544 certStatus.response = hs.cert.OCSPStaple 545 hs.finishedHash.Write(certStatus.marshal()) 546 if _, err := c.writeRecord(recordTypeHandshake, certStatus.marshal()); err != nil { 547 return err 548 } 549 } 550 551 keyAgreement := hs.suite.ka(c.vers) 552 skx, err := keyAgreement.generateServerKeyExchange(c.config, hs.cert, hs.clientHello, hs.hello) 553 if err != nil { 554 c.sendAlert(alertHandshakeFailure) 555 return err 556 } 557 if skx != nil { 558 hs.finishedHash.Write(skx.marshal()) 559 if _, err := c.writeRecord(recordTypeHandshake, skx.marshal()); err != nil { 560 return err 561 } 562 } 563 564 var certReq *certificateRequestMsg 565 if c.config.ClientAuth >= RequestClientCert { 566 // Request a client certificate 567 certReq = new(certificateRequestMsg) 568 certReq.certificateTypes = []byte{ 569 byte(certTypeRSASign), 570 byte(certTypeECDSASign), 571 } 572 if c.vers >= VersionTLS12 { 573 certReq.hasSignatureAlgorithm = true 574 certReq.supportedSignatureAlgorithms = supportedSignatureAlgorithms 575 } 576 577 // An empty list of certificateAuthorities signals to 578 // the client that it may send any certificate in response 579 // to our request. When we know the CAs we trust, then 580 // we can send them down, so that the client can choose 581 // an appropriate certificate to give to us. 582 if c.config.ClientCAs != nil { 583 certReq.certificateAuthorities = c.config.ClientCAs.Subjects() 584 } 585 hs.finishedHash.Write(certReq.marshal()) 586 if _, err := c.writeRecord(recordTypeHandshake, certReq.marshal()); err != nil { 587 return err 588 } 589 } 590 591 helloDone := new(serverHelloDoneMsg) 592 hs.finishedHash.Write(helloDone.marshal()) 593 if _, err := c.writeRecord(recordTypeHandshake, helloDone.marshal()); err != nil { 594 return err 595 } 596 597 if _, err := c.flush(); err != nil { 598 return err 599 } 600 601 var pub crypto.PublicKey // public key for client auth, if any 602 603 msg, err := c.readHandshake() 604 if err != nil { 605 return err 606 } 607 608 // If we requested a client certificate, then the client must send a 609 // certificate message, even if it's empty. 610 if c.config.ClientAuth >= RequestClientCert { 611 certMsg, ok := msg.(*certificateMsg) 612 if !ok { 613 c.sendAlert(alertUnexpectedMessage) 614 return unexpectedMessageError(certMsg, msg) 615 } 616 hs.finishedHash.Write(certMsg.marshal()) 617 618 if err := c.processCertsFromClient(Certificate{ 619 Certificate: certMsg.certificates, 620 }); err != nil { 621 return err 622 } 623 if len(certMsg.certificates) != 0 { 624 pub = c.peerCertificates[0].PublicKey 625 } 626 627 msg, err = c.readHandshake() 628 if err != nil { 629 return err 630 } 631 } 632 if c.config.VerifyConnection != nil { 633 if err := c.config.VerifyConnection(c.connectionStateLocked()); err != nil { 634 c.sendAlert(alertBadCertificate) 635 return err 636 } 637 } 638 639 // Get client key exchange 640 ckx, ok := msg.(*clientKeyExchangeMsg) 641 if !ok { 642 c.sendAlert(alertUnexpectedMessage) 643 return unexpectedMessageError(ckx, msg) 644 } 645 hs.finishedHash.Write(ckx.marshal()) 646 647 preMasterSecret, err := keyAgreement.processClientKeyExchange(c.config, hs.cert, ckx, c.vers) 648 if err != nil { 649 c.sendAlert(alertHandshakeFailure) 650 return err 651 } 652 hs.masterSecret = masterFromPreMasterSecret(c.vers, hs.suite, preMasterSecret, hs.clientHello.random, hs.hello.random) 653 if err := c.config.writeKeyLog(keyLogLabelTLS12, hs.clientHello.random, hs.masterSecret); err != nil { 654 c.sendAlert(alertInternalError) 655 return err 656 } 657 658 // If we received a client cert in response to our certificate request message, 659 // the client will send us a certificateVerifyMsg immediately after the 660 // clientKeyExchangeMsg. This message is a digest of all preceding 661 // handshake-layer messages that is signed using the private key corresponding 662 // to the client's certificate. This allows us to verify that the client is in 663 // possession of the private key of the certificate. 664 if len(c.peerCertificates) > 0 { 665 msg, err = c.readHandshake() 666 if err != nil { 667 return err 668 } 669 certVerify, ok := msg.(*certificateVerifyMsg) 670 if !ok { 671 c.sendAlert(alertUnexpectedMessage) 672 return unexpectedMessageError(certVerify, msg) 673 } 674 675 var sigType uint8 676 var sigHash crypto.Hash 677 if c.vers >= VersionTLS12 { 678 if !isSupportedSignatureAlgorithm(certVerify.signatureAlgorithm, certReq.supportedSignatureAlgorithms) { 679 c.sendAlert(alertIllegalParameter) 680 return errors.New("tls: client certificate used with invalid signature algorithm") 681 } 682 sigType, sigHash, err = typeAndHashFromSignatureScheme(certVerify.signatureAlgorithm) 683 if err != nil { 684 return c.sendAlert(alertInternalError) 685 } 686 } else { 687 sigType, sigHash, err = legacyTypeAndHashFromPublicKey(pub) 688 if err != nil { 689 c.sendAlert(alertIllegalParameter) 690 return err 691 } 692 } 693 694 signed := hs.finishedHash.hashForClientCertificate(sigType, sigHash, hs.masterSecret) 695 if err := verifyHandshakeSignature(sigType, pub, sigHash, signed, certVerify.signature); err != nil { 696 c.sendAlert(alertDecryptError) 697 return errors.New("tls: invalid signature by the client certificate: " + err.Error()) 698 } 699 700 hs.finishedHash.Write(certVerify.marshal()) 701 } 702 703 hs.finishedHash.discardHandshakeBuffer() 704 705 return nil 706 } 707 708 func (hs *serverHandshakeState) establishKeys() error { 709 c := hs.c 710 711 clientMAC, serverMAC, clientKey, serverKey, clientIV, serverIV := 712 keysFromMasterSecret(c.vers, hs.suite, hs.masterSecret, hs.clientHello.random, hs.hello.random, hs.suite.macLen, hs.suite.keyLen, hs.suite.ivLen) 713 714 var clientCipher, serverCipher any 715 var clientHash, serverHash hash.Hash 716 717 if hs.suite.aead == nil { 718 clientCipher = hs.suite.cipher(clientKey, clientIV, true /* for reading */) 719 clientHash = hs.suite.mac(clientMAC) 720 serverCipher = hs.suite.cipher(serverKey, serverIV, false /* not for reading */) 721 serverHash = hs.suite.mac(serverMAC) 722 } else { 723 clientCipher = hs.suite.aead(clientKey, clientIV) 724 serverCipher = hs.suite.aead(serverKey, serverIV) 725 } 726 727 c.in.prepareCipherSpec(c.vers, clientCipher, clientHash) 728 c.out.prepareCipherSpec(c.vers, serverCipher, serverHash) 729 730 return nil 731 } 732 733 func (hs *serverHandshakeState) readFinished(out []byte) error { 734 c := hs.c 735 736 if err := c.readChangeCipherSpec(); err != nil { 737 return err 738 } 739 740 msg, err := c.readHandshake() 741 if err != nil { 742 return err 743 } 744 clientFinished, ok := msg.(*finishedMsg) 745 if !ok { 746 c.sendAlert(alertUnexpectedMessage) 747 return unexpectedMessageError(clientFinished, msg) 748 } 749 750 verify := hs.finishedHash.clientSum(hs.masterSecret) 751 if len(verify) != len(clientFinished.verifyData) || 752 subtle.ConstantTimeCompare(verify, clientFinished.verifyData) != 1 { 753 c.sendAlert(alertHandshakeFailure) 754 return errors.New("tls: client's Finished message is incorrect") 755 } 756 757 hs.finishedHash.Write(clientFinished.marshal()) 758 copy(out, verify) 759 return nil 760 } 761 762 func (hs *serverHandshakeState) sendSessionTicket() error { 763 // ticketSupported is set in a resumption handshake if the 764 // ticket from the client was encrypted with an old session 765 // ticket key and thus a refreshed ticket should be sent. 766 if !hs.hello.ticketSupported { 767 return nil 768 } 769 770 c := hs.c 771 m := new(newSessionTicketMsg) 772 773 createdAt := uint64(c.config.time().Unix()) 774 if hs.sessionState != nil { 775 // If this is re-wrapping an old key, then keep 776 // the original time it was created. 777 createdAt = hs.sessionState.createdAt 778 } 779 780 var certsFromClient [][]byte 781 for _, cert := range c.peerCertificates { 782 certsFromClient = append(certsFromClient, cert.Raw) 783 } 784 state := sessionState{ 785 vers: c.vers, 786 cipherSuite: hs.suite.id, 787 createdAt: createdAt, 788 masterSecret: hs.masterSecret, 789 certificates: certsFromClient, 790 } 791 var err error 792 m.ticket, err = c.encryptTicket(state.marshal()) 793 if err != nil { 794 return err 795 } 796 797 hs.finishedHash.Write(m.marshal()) 798 if _, err := c.writeRecord(recordTypeHandshake, m.marshal()); err != nil { 799 return err 800 } 801 802 return nil 803 } 804 805 func (hs *serverHandshakeState) sendFinished(out []byte) error { 806 c := hs.c 807 808 if _, err := c.writeRecord(recordTypeChangeCipherSpec, []byte{1}); err != nil { 809 return err 810 } 811 812 finished := new(finishedMsg) 813 finished.verifyData = hs.finishedHash.serverSum(hs.masterSecret) 814 hs.finishedHash.Write(finished.marshal()) 815 if _, err := c.writeRecord(recordTypeHandshake, finished.marshal()); err != nil { 816 return err 817 } 818 819 copy(out, finished.verifyData) 820 821 return nil 822 } 823 824 // processCertsFromClient takes a chain of client certificates either from a 825 // Certificates message or from a sessionState and verifies them. It returns 826 // the public key of the leaf certificate. 827 func (c *Conn) processCertsFromClient(certificate Certificate) error { 828 certificates := certificate.Certificate 829 certs := make([]*x509.Certificate, len(certificates)) 830 var err error 831 for i, asn1Data := range certificates { 832 if certs[i], err = x509.ParseCertificate(asn1Data); err != nil { 833 c.sendAlert(alertBadCertificate) 834 return errors.New("tls: failed to parse client certificate: " + err.Error()) 835 } 836 } 837 838 if len(certs) == 0 && requiresClientCert(c.config.ClientAuth) { 839 c.sendAlert(alertBadCertificate) 840 return errors.New("tls: client didn't provide a certificate") 841 } 842 843 if c.config.ClientAuth >= VerifyClientCertIfGiven && len(certs) > 0 { 844 opts := x509.VerifyOptions{ 845 Roots: c.config.ClientCAs, 846 CurrentTime: c.config.time(), 847 Intermediates: x509.NewCertPool(), 848 KeyUsages: []x509.ExtKeyUsage{x509.ExtKeyUsageClientAuth}, 849 } 850 851 for _, cert := range certs[1:] { 852 opts.Intermediates.AddCert(cert) 853 } 854 855 chains, err := certs[0].Verify(opts) 856 if err != nil { 857 c.sendAlert(alertBadCertificate) 858 return errors.New("tls: failed to verify client certificate: " + err.Error()) 859 } 860 861 c.verifiedChains = chains 862 } 863 864 c.peerCertificates = certs 865 c.ocspResponse = certificate.OCSPStaple 866 c.scts = certificate.SignedCertificateTimestamps 867 868 if len(certs) > 0 { 869 switch certs[0].PublicKey.(type) { 870 case *ecdsa.PublicKey, *rsa.PublicKey, ed25519.PublicKey: 871 default: 872 c.sendAlert(alertUnsupportedCertificate) 873 return fmt.Errorf("tls: client certificate contains an unsupported public key of type %T", certs[0].PublicKey) 874 } 875 } 876 877 if c.config.VerifyPeerCertificate != nil { 878 if err := c.config.VerifyPeerCertificate(certificates, c.verifiedChains); err != nil { 879 c.sendAlert(alertBadCertificate) 880 return err 881 } 882 } 883 884 return nil 885 } 886 887 func newClientHelloInfo(ctx context.Context, c *Conn, clientHello *clientHelloMsg) *ClientHelloInfo { 888 supportedVersions := clientHello.supportedVersions 889 if len(clientHello.supportedVersions) == 0 { 890 supportedVersions = supportedVersionsFromMax(clientHello.vers) 891 } 892 893 return toClientHelloInfo(&clientHelloInfo{ 894 CipherSuites: clientHello.cipherSuites, 895 ServerName: clientHello.serverName, 896 SupportedCurves: clientHello.supportedCurves, 897 SupportedPoints: clientHello.supportedPoints, 898 SignatureSchemes: clientHello.supportedSignatureAlgorithms, 899 SupportedProtos: clientHello.alpnProtocols, 900 SupportedVersions: supportedVersions, 901 Conn: c.conn, 902 config: toConfig(c.config), 903 ctx: ctx, 904 }) 905 }