github.com/varialus/godfly@v0.0.0-20130904042352-1934f9f095ab/src/pkg/crypto/tls/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 tls 6 7 import ( 8 "crypto" 9 "crypto/ecdsa" 10 "crypto/rsa" 11 "crypto/subtle" 12 "crypto/x509" 13 "encoding/asn1" 14 "errors" 15 "io" 16 ) 17 18 // serverHandshakeState contains details of a server handshake in progress. 19 // It's discarded once the handshake has completed. 20 type serverHandshakeState struct { 21 c *Conn 22 clientHello *clientHelloMsg 23 hello *serverHelloMsg 24 suite *cipherSuite 25 ellipticOk bool 26 sessionState *sessionState 27 finishedHash finishedHash 28 masterSecret []byte 29 certsFromClient [][]byte 30 } 31 32 // serverHandshake performs a TLS handshake as a server. 33 func (c *Conn) serverHandshake() error { 34 config := c.config 35 36 // If this is the first server handshake, we generate a random key to 37 // encrypt the tickets with. 38 config.serverInitOnce.Do(config.serverInit) 39 40 hs := serverHandshakeState{ 41 c: c, 42 } 43 isResume, err := hs.readClientHello() 44 if err != nil { 45 return err 46 } 47 48 // For an overview of TLS handshaking, see https://tools.ietf.org/html/rfc5246#section-7.3 49 if isResume { 50 // The client has included a session ticket and so we do an abbreviated handshake. 51 if err := hs.doResumeHandshake(); err != nil { 52 return err 53 } 54 if err := hs.establishKeys(); err != nil { 55 return err 56 } 57 if err := hs.sendFinished(); err != nil { 58 return err 59 } 60 if err := hs.readFinished(); err != nil { 61 return err 62 } 63 c.didResume = true 64 } else { 65 // The client didn't include a session ticket, or it wasn't 66 // valid so we do a full handshake. 67 if err := hs.doFullHandshake(); err != nil { 68 return err 69 } 70 if err := hs.establishKeys(); err != nil { 71 return err 72 } 73 if err := hs.readFinished(); err != nil { 74 return err 75 } 76 if err := hs.sendSessionTicket(); err != nil { 77 return err 78 } 79 if err := hs.sendFinished(); err != nil { 80 return err 81 } 82 } 83 c.handshakeComplete = true 84 85 return nil 86 } 87 88 // readClientHello reads a ClientHello message from the client and decides 89 // whether we will perform session resumption. 90 func (hs *serverHandshakeState) readClientHello() (isResume bool, err error) { 91 config := hs.c.config 92 c := hs.c 93 94 msg, err := c.readHandshake() 95 if err != nil { 96 return false, err 97 } 98 var ok bool 99 hs.clientHello, ok = msg.(*clientHelloMsg) 100 if !ok { 101 return false, c.sendAlert(alertUnexpectedMessage) 102 } 103 c.vers, ok = config.mutualVersion(hs.clientHello.vers) 104 if !ok { 105 return false, c.sendAlert(alertProtocolVersion) 106 } 107 c.haveVers = true 108 109 hs.finishedHash = newFinishedHash(c.vers) 110 hs.finishedHash.Write(hs.clientHello.marshal()) 111 112 hs.hello = new(serverHelloMsg) 113 114 supportedCurve := false 115 Curves: 116 for _, curve := range hs.clientHello.supportedCurves { 117 switch curve { 118 case curveP256, curveP384, curveP521: 119 supportedCurve = true 120 break Curves 121 } 122 } 123 124 supportedPointFormat := false 125 for _, pointFormat := range hs.clientHello.supportedPoints { 126 if pointFormat == pointFormatUncompressed { 127 supportedPointFormat = true 128 break 129 } 130 } 131 hs.ellipticOk = supportedCurve && supportedPointFormat 132 133 foundCompression := false 134 // We only support null compression, so check that the client offered it. 135 for _, compression := range hs.clientHello.compressionMethods { 136 if compression == compressionNone { 137 foundCompression = true 138 break 139 } 140 } 141 142 if !foundCompression { 143 return false, c.sendAlert(alertHandshakeFailure) 144 } 145 146 hs.hello.vers = c.vers 147 t := uint32(config.time().Unix()) 148 hs.hello.random = make([]byte, 32) 149 hs.hello.random[0] = byte(t >> 24) 150 hs.hello.random[1] = byte(t >> 16) 151 hs.hello.random[2] = byte(t >> 8) 152 hs.hello.random[3] = byte(t) 153 _, err = io.ReadFull(config.rand(), hs.hello.random[4:]) 154 if err != nil { 155 return false, c.sendAlert(alertInternalError) 156 } 157 hs.hello.compressionMethod = compressionNone 158 if len(hs.clientHello.serverName) > 0 { 159 c.serverName = hs.clientHello.serverName 160 } 161 // Although sending an empty NPN extension is reasonable, Firefox has 162 // had a bug around this. Best to send nothing at all if 163 // config.NextProtos is empty. See 164 // https://code.google.com/p/go/issues/detail?id=5445. 165 if hs.clientHello.nextProtoNeg && len(config.NextProtos) > 0 { 166 hs.hello.nextProtoNeg = true 167 hs.hello.nextProtos = config.NextProtos 168 } 169 170 if hs.checkForResumption() { 171 return true, nil 172 } 173 174 var preferenceList, supportedList []uint16 175 if c.config.PreferServerCipherSuites { 176 preferenceList = c.config.cipherSuites() 177 supportedList = hs.clientHello.cipherSuites 178 } else { 179 preferenceList = hs.clientHello.cipherSuites 180 supportedList = c.config.cipherSuites() 181 } 182 183 for _, id := range preferenceList { 184 if hs.suite = c.tryCipherSuite(id, supportedList, hs.ellipticOk); hs.suite != nil { 185 break 186 } 187 } 188 189 if hs.suite == nil { 190 return false, c.sendAlert(alertHandshakeFailure) 191 } 192 193 return false, nil 194 } 195 196 // checkForResumption returns true if we should perform resumption on this connection. 197 func (hs *serverHandshakeState) checkForResumption() bool { 198 c := hs.c 199 200 var ok bool 201 if hs.sessionState, ok = c.decryptTicket(hs.clientHello.sessionTicket); !ok { 202 return false 203 } 204 205 if hs.sessionState.vers > hs.clientHello.vers { 206 return false 207 } 208 if vers, ok := c.config.mutualVersion(hs.sessionState.vers); !ok || vers != hs.sessionState.vers { 209 return false 210 } 211 212 cipherSuiteOk := false 213 // Check that the client is still offering the ciphersuite in the session. 214 for _, id := range hs.clientHello.cipherSuites { 215 if id == hs.sessionState.cipherSuite { 216 cipherSuiteOk = true 217 break 218 } 219 } 220 if !cipherSuiteOk { 221 return false 222 } 223 224 // Check that we also support the ciphersuite from the session. 225 hs.suite = c.tryCipherSuite(hs.sessionState.cipherSuite, c.config.cipherSuites(), hs.ellipticOk) 226 if hs.suite == nil { 227 return false 228 } 229 230 sessionHasClientCerts := len(hs.sessionState.certificates) != 0 231 needClientCerts := c.config.ClientAuth == RequireAnyClientCert || c.config.ClientAuth == RequireAndVerifyClientCert 232 if needClientCerts && !sessionHasClientCerts { 233 return false 234 } 235 if sessionHasClientCerts && c.config.ClientAuth == NoClientCert { 236 return false 237 } 238 239 return true 240 } 241 242 func (hs *serverHandshakeState) doResumeHandshake() error { 243 c := hs.c 244 245 hs.hello.cipherSuite = hs.suite.id 246 // We echo the client's session ID in the ServerHello to let it know 247 // that we're doing a resumption. 248 hs.hello.sessionId = hs.clientHello.sessionId 249 hs.finishedHash.Write(hs.hello.marshal()) 250 c.writeRecord(recordTypeHandshake, hs.hello.marshal()) 251 252 if len(hs.sessionState.certificates) > 0 { 253 if _, err := hs.processCertsFromClient(hs.sessionState.certificates); err != nil { 254 return err 255 } 256 } 257 258 hs.masterSecret = hs.sessionState.masterSecret 259 260 return nil 261 } 262 263 func (hs *serverHandshakeState) doFullHandshake() error { 264 config := hs.c.config 265 c := hs.c 266 267 if len(config.Certificates) == 0 { 268 return c.sendAlert(alertInternalError) 269 } 270 cert := &config.Certificates[0] 271 if len(hs.clientHello.serverName) > 0 { 272 cert = config.getCertificateForName(hs.clientHello.serverName) 273 } 274 275 if hs.clientHello.ocspStapling && len(cert.OCSPStaple) > 0 { 276 hs.hello.ocspStapling = true 277 } 278 279 hs.hello.ticketSupported = hs.clientHello.ticketSupported && !config.SessionTicketsDisabled 280 hs.hello.cipherSuite = hs.suite.id 281 hs.finishedHash.Write(hs.hello.marshal()) 282 c.writeRecord(recordTypeHandshake, hs.hello.marshal()) 283 284 certMsg := new(certificateMsg) 285 certMsg.certificates = cert.Certificate 286 hs.finishedHash.Write(certMsg.marshal()) 287 c.writeRecord(recordTypeHandshake, certMsg.marshal()) 288 289 if hs.hello.ocspStapling { 290 certStatus := new(certificateStatusMsg) 291 certStatus.statusType = statusTypeOCSP 292 certStatus.response = cert.OCSPStaple 293 hs.finishedHash.Write(certStatus.marshal()) 294 c.writeRecord(recordTypeHandshake, certStatus.marshal()) 295 } 296 297 keyAgreement := hs.suite.ka(c.vers) 298 skx, err := keyAgreement.generateServerKeyExchange(config, cert, hs.clientHello, hs.hello) 299 if err != nil { 300 c.sendAlert(alertHandshakeFailure) 301 return err 302 } 303 if skx != nil { 304 hs.finishedHash.Write(skx.marshal()) 305 c.writeRecord(recordTypeHandshake, skx.marshal()) 306 } 307 308 if config.ClientAuth >= RequestClientCert { 309 // Request a client certificate 310 certReq := new(certificateRequestMsg) 311 certReq.certificateTypes = []byte{ 312 byte(certTypeRSASign), 313 byte(certTypeECDSASign), 314 } 315 if c.vers >= VersionTLS12 { 316 certReq.hasSignatureAndHash = true 317 certReq.signatureAndHashes = supportedSignatureAlgorithms 318 } 319 320 // An empty list of certificateAuthorities signals to 321 // the client that it may send any certificate in response 322 // to our request. When we know the CAs we trust, then 323 // we can send them down, so that the client can choose 324 // an appropriate certificate to give to us. 325 if config.ClientCAs != nil { 326 certReq.certificateAuthorities = config.ClientCAs.Subjects() 327 } 328 hs.finishedHash.Write(certReq.marshal()) 329 c.writeRecord(recordTypeHandshake, certReq.marshal()) 330 } 331 332 helloDone := new(serverHelloDoneMsg) 333 hs.finishedHash.Write(helloDone.marshal()) 334 c.writeRecord(recordTypeHandshake, helloDone.marshal()) 335 336 var pub crypto.PublicKey // public key for client auth, if any 337 338 msg, err := c.readHandshake() 339 if err != nil { 340 return err 341 } 342 343 var ok bool 344 // If we requested a client certificate, then the client must send a 345 // certificate message, even if it's empty. 346 if config.ClientAuth >= RequestClientCert { 347 if certMsg, ok = msg.(*certificateMsg); !ok { 348 return c.sendAlert(alertHandshakeFailure) 349 } 350 hs.finishedHash.Write(certMsg.marshal()) 351 352 if len(certMsg.certificates) == 0 { 353 // The client didn't actually send a certificate 354 switch config.ClientAuth { 355 case RequireAnyClientCert, RequireAndVerifyClientCert: 356 c.sendAlert(alertBadCertificate) 357 return errors.New("tls: client didn't provide a certificate") 358 } 359 } 360 361 pub, err = hs.processCertsFromClient(certMsg.certificates) 362 if err != nil { 363 return err 364 } 365 366 msg, err = c.readHandshake() 367 if err != nil { 368 return err 369 } 370 } 371 372 // Get client key exchange 373 ckx, ok := msg.(*clientKeyExchangeMsg) 374 if !ok { 375 return c.sendAlert(alertUnexpectedMessage) 376 } 377 hs.finishedHash.Write(ckx.marshal()) 378 379 // If we received a client cert in response to our certificate request message, 380 // the client will send us a certificateVerifyMsg immediately after the 381 // clientKeyExchangeMsg. This message is a digest of all preceding 382 // handshake-layer messages that is signed using the private key corresponding 383 // to the client's certificate. This allows us to verify that the client is in 384 // possession of the private key of the certificate. 385 if len(c.peerCertificates) > 0 { 386 msg, err = c.readHandshake() 387 if err != nil { 388 return err 389 } 390 certVerify, ok := msg.(*certificateVerifyMsg) 391 if !ok { 392 return c.sendAlert(alertUnexpectedMessage) 393 } 394 395 switch key := pub.(type) { 396 case *ecdsa.PublicKey: 397 ecdsaSig := new(ecdsaSignature) 398 if _, err = asn1.Unmarshal(certVerify.signature, ecdsaSig); err != nil { 399 break 400 } 401 if ecdsaSig.R.Sign() <= 0 || ecdsaSig.S.Sign() <= 0 { 402 err = errors.New("ECDSA signature contained zero or negative values") 403 break 404 } 405 digest, _ := hs.finishedHash.hashForClientCertificate(signatureECDSA) 406 if !ecdsa.Verify(key, digest, ecdsaSig.R, ecdsaSig.S) { 407 err = errors.New("ECDSA verification failure") 408 break 409 } 410 case *rsa.PublicKey: 411 digest, hashFunc := hs.finishedHash.hashForClientCertificate(signatureRSA) 412 err = rsa.VerifyPKCS1v15(key, hashFunc, digest, certVerify.signature) 413 } 414 if err != nil { 415 c.sendAlert(alertBadCertificate) 416 return errors.New("could not validate signature of connection nonces: " + err.Error()) 417 } 418 419 hs.finishedHash.Write(certVerify.marshal()) 420 } 421 422 preMasterSecret, err := keyAgreement.processClientKeyExchange(config, cert, ckx, c.vers) 423 if err != nil { 424 c.sendAlert(alertHandshakeFailure) 425 return err 426 } 427 hs.masterSecret = masterFromPreMasterSecret(c.vers, preMasterSecret, hs.clientHello.random, hs.hello.random) 428 429 return nil 430 } 431 432 func (hs *serverHandshakeState) establishKeys() error { 433 c := hs.c 434 435 clientMAC, serverMAC, clientKey, serverKey, clientIV, serverIV := 436 keysFromMasterSecret(c.vers, hs.masterSecret, hs.clientHello.random, hs.hello.random, hs.suite.macLen, hs.suite.keyLen, hs.suite.ivLen) 437 438 var clientCipher, serverCipher interface{} 439 var clientHash, serverHash macFunction 440 441 if hs.suite.aead == nil { 442 clientCipher = hs.suite.cipher(clientKey, clientIV, true /* for reading */) 443 clientHash = hs.suite.mac(c.vers, clientMAC) 444 serverCipher = hs.suite.cipher(serverKey, serverIV, false /* not for reading */) 445 serverHash = hs.suite.mac(c.vers, serverMAC) 446 } else { 447 clientCipher = hs.suite.aead(clientKey, clientIV) 448 serverCipher = hs.suite.aead(serverKey, serverIV) 449 } 450 451 c.in.prepareCipherSpec(c.vers, clientCipher, clientHash) 452 c.out.prepareCipherSpec(c.vers, serverCipher, serverHash) 453 454 return nil 455 } 456 457 func (hs *serverHandshakeState) readFinished() error { 458 c := hs.c 459 460 c.readRecord(recordTypeChangeCipherSpec) 461 if err := c.error(); err != nil { 462 return err 463 } 464 465 if hs.hello.nextProtoNeg { 466 msg, err := c.readHandshake() 467 if err != nil { 468 return err 469 } 470 nextProto, ok := msg.(*nextProtoMsg) 471 if !ok { 472 return c.sendAlert(alertUnexpectedMessage) 473 } 474 hs.finishedHash.Write(nextProto.marshal()) 475 c.clientProtocol = nextProto.proto 476 } 477 478 msg, err := c.readHandshake() 479 if err != nil { 480 return err 481 } 482 clientFinished, ok := msg.(*finishedMsg) 483 if !ok { 484 return c.sendAlert(alertUnexpectedMessage) 485 } 486 487 verify := hs.finishedHash.clientSum(hs.masterSecret) 488 if len(verify) != len(clientFinished.verifyData) || 489 subtle.ConstantTimeCompare(verify, clientFinished.verifyData) != 1 { 490 return c.sendAlert(alertHandshakeFailure) 491 } 492 493 hs.finishedHash.Write(clientFinished.marshal()) 494 return nil 495 } 496 497 func (hs *serverHandshakeState) sendSessionTicket() error { 498 if !hs.hello.ticketSupported { 499 return nil 500 } 501 502 c := hs.c 503 m := new(newSessionTicketMsg) 504 505 var err error 506 state := sessionState{ 507 vers: c.vers, 508 cipherSuite: hs.suite.id, 509 masterSecret: hs.masterSecret, 510 certificates: hs.certsFromClient, 511 } 512 m.ticket, err = c.encryptTicket(&state) 513 if err != nil { 514 return err 515 } 516 517 hs.finishedHash.Write(m.marshal()) 518 c.writeRecord(recordTypeHandshake, m.marshal()) 519 520 return nil 521 } 522 523 func (hs *serverHandshakeState) sendFinished() error { 524 c := hs.c 525 526 c.writeRecord(recordTypeChangeCipherSpec, []byte{1}) 527 528 finished := new(finishedMsg) 529 finished.verifyData = hs.finishedHash.serverSum(hs.masterSecret) 530 hs.finishedHash.Write(finished.marshal()) 531 c.writeRecord(recordTypeHandshake, finished.marshal()) 532 533 c.cipherSuite = hs.suite.id 534 535 return nil 536 } 537 538 // processCertsFromClient takes a chain of client certificates either from a 539 // Certificates message or from a sessionState and verifies them. It returns 540 // the public key of the leaf certificate. 541 func (hs *serverHandshakeState) processCertsFromClient(certificates [][]byte) (crypto.PublicKey, error) { 542 c := hs.c 543 544 hs.certsFromClient = certificates 545 certs := make([]*x509.Certificate, len(certificates)) 546 var err error 547 for i, asn1Data := range certificates { 548 if certs[i], err = x509.ParseCertificate(asn1Data); err != nil { 549 c.sendAlert(alertBadCertificate) 550 return nil, errors.New("tls: failed to parse client certificate: " + err.Error()) 551 } 552 } 553 554 if c.config.ClientAuth >= VerifyClientCertIfGiven && len(certs) > 0 { 555 opts := x509.VerifyOptions{ 556 Roots: c.config.ClientCAs, 557 CurrentTime: c.config.time(), 558 Intermediates: x509.NewCertPool(), 559 KeyUsages: []x509.ExtKeyUsage{x509.ExtKeyUsageClientAuth}, 560 } 561 562 for _, cert := range certs[1:] { 563 opts.Intermediates.AddCert(cert) 564 } 565 566 chains, err := certs[0].Verify(opts) 567 if err != nil { 568 c.sendAlert(alertBadCertificate) 569 return nil, errors.New("tls: failed to verify client's certificate: " + err.Error()) 570 } 571 572 ok := false 573 for _, ku := range certs[0].ExtKeyUsage { 574 if ku == x509.ExtKeyUsageClientAuth { 575 ok = true 576 break 577 } 578 } 579 if !ok { 580 c.sendAlert(alertHandshakeFailure) 581 return nil, errors.New("tls: client's certificate's extended key usage doesn't permit it to be used for client authentication") 582 } 583 584 c.verifiedChains = chains 585 } 586 587 if len(certs) > 0 { 588 var pub crypto.PublicKey 589 switch key := certs[0].PublicKey.(type) { 590 case *ecdsa.PublicKey, *rsa.PublicKey: 591 pub = key 592 default: 593 return nil, c.sendAlert(alertUnsupportedCertificate) 594 } 595 c.peerCertificates = certs 596 return pub, nil 597 } 598 599 return nil, nil 600 } 601 602 // tryCipherSuite returns a cipherSuite with the given id if that cipher suite 603 // is acceptable to use. 604 func (c *Conn) tryCipherSuite(id uint16, supportedCipherSuites []uint16, ellipticOk bool) *cipherSuite { 605 for _, supported := range supportedCipherSuites { 606 if id == supported { 607 var candidate *cipherSuite 608 609 for _, s := range cipherSuites { 610 if s.id == id { 611 candidate = s 612 break 613 } 614 } 615 if candidate == nil { 616 continue 617 } 618 // Don't select a ciphersuite which we can't 619 // support for this client. 620 if candidate.elliptic && !ellipticOk { 621 continue 622 } 623 return candidate 624 } 625 } 626 627 return nil 628 }