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  }