github.com/ooni/psiphon/tunnel-core@v0.0.0-20230105123940-fe12a24c96ee/oovendor/qtls-go1-17/key_agreement.go (about)

     1  // Copyright 2010 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  	"crypto"
     9  	"crypto/md5"
    10  	"crypto/rsa"
    11  	"crypto/sha1"
    12  	"crypto/x509"
    13  	"errors"
    14  	"fmt"
    15  	"io"
    16  )
    17  
    18  // a keyAgreement implements the client and server side of a TLS key agreement
    19  // protocol by generating and processing key exchange messages.
    20  type keyAgreement interface {
    21  	// On the server side, the first two methods are called in order.
    22  
    23  	// In the case that the key agreement protocol doesn't use a
    24  	// ServerKeyExchange message, generateServerKeyExchange can return nil,
    25  	// nil.
    26  	generateServerKeyExchange(*config, *Certificate, *clientHelloMsg, *serverHelloMsg) (*serverKeyExchangeMsg, error)
    27  	processClientKeyExchange(*config, *Certificate, *clientKeyExchangeMsg, uint16) ([]byte, error)
    28  
    29  	// On the client side, the next two methods are called in order.
    30  
    31  	// This method may not be called if the server doesn't send a
    32  	// ServerKeyExchange message.
    33  	processServerKeyExchange(*config, *clientHelloMsg, *serverHelloMsg, *x509.Certificate, *serverKeyExchangeMsg) error
    34  	generateClientKeyExchange(*config, *clientHelloMsg, *x509.Certificate) ([]byte, *clientKeyExchangeMsg, error)
    35  }
    36  
    37  var errClientKeyExchange = errors.New("tls: invalid ClientKeyExchange message")
    38  var errServerKeyExchange = errors.New("tls: invalid ServerKeyExchange message")
    39  
    40  // rsaKeyAgreement implements the standard TLS key agreement where the client
    41  // encrypts the pre-master secret to the server's public key.
    42  type rsaKeyAgreement struct{}
    43  
    44  func (ka rsaKeyAgreement) generateServerKeyExchange(config *config, cert *Certificate, clientHello *clientHelloMsg, hello *serverHelloMsg) (*serverKeyExchangeMsg, error) {
    45  	return nil, nil
    46  }
    47  
    48  func (ka rsaKeyAgreement) processClientKeyExchange(config *config, cert *Certificate, ckx *clientKeyExchangeMsg, version uint16) ([]byte, error) {
    49  	if len(ckx.ciphertext) < 2 {
    50  		return nil, errClientKeyExchange
    51  	}
    52  	ciphertextLen := int(ckx.ciphertext[0])<<8 | int(ckx.ciphertext[1])
    53  	if ciphertextLen != len(ckx.ciphertext)-2 {
    54  		return nil, errClientKeyExchange
    55  	}
    56  	ciphertext := ckx.ciphertext[2:]
    57  
    58  	priv, ok := cert.PrivateKey.(crypto.Decrypter)
    59  	if !ok {
    60  		return nil, errors.New("tls: certificate private key does not implement crypto.Decrypter")
    61  	}
    62  	// Perform constant time RSA PKCS #1 v1.5 decryption
    63  	preMasterSecret, err := priv.Decrypt(config.rand(), ciphertext, &rsa.PKCS1v15DecryptOptions{SessionKeyLen: 48})
    64  	if err != nil {
    65  		return nil, err
    66  	}
    67  	// We don't check the version number in the premaster secret. For one,
    68  	// by checking it, we would leak information about the validity of the
    69  	// encrypted pre-master secret. Secondly, it provides only a small
    70  	// benefit against a downgrade attack and some implementations send the
    71  	// wrong version anyway. See the discussion at the end of section
    72  	// 7.4.7.1 of RFC 4346.
    73  	return preMasterSecret, nil
    74  }
    75  
    76  func (ka rsaKeyAgreement) processServerKeyExchange(config *config, clientHello *clientHelloMsg, serverHello *serverHelloMsg, cert *x509.Certificate, skx *serverKeyExchangeMsg) error {
    77  	return errors.New("tls: unexpected ServerKeyExchange")
    78  }
    79  
    80  func (ka rsaKeyAgreement) generateClientKeyExchange(config *config, clientHello *clientHelloMsg, cert *x509.Certificate) ([]byte, *clientKeyExchangeMsg, error) {
    81  	preMasterSecret := make([]byte, 48)
    82  	preMasterSecret[0] = byte(clientHello.vers >> 8)
    83  	preMasterSecret[1] = byte(clientHello.vers)
    84  	_, err := io.ReadFull(config.rand(), preMasterSecret[2:])
    85  	if err != nil {
    86  		return nil, nil, err
    87  	}
    88  
    89  	encrypted, err := rsa.EncryptPKCS1v15(config.rand(), cert.PublicKey.(*rsa.PublicKey), preMasterSecret)
    90  	if err != nil {
    91  		return nil, nil, err
    92  	}
    93  	ckx := new(clientKeyExchangeMsg)
    94  	ckx.ciphertext = make([]byte, len(encrypted)+2)
    95  	ckx.ciphertext[0] = byte(len(encrypted) >> 8)
    96  	ckx.ciphertext[1] = byte(len(encrypted))
    97  	copy(ckx.ciphertext[2:], encrypted)
    98  	return preMasterSecret, ckx, nil
    99  }
   100  
   101  // sha1Hash calculates a SHA1 hash over the given byte slices.
   102  func sha1Hash(slices [][]byte) []byte {
   103  	hsha1 := sha1.New()
   104  	for _, slice := range slices {
   105  		hsha1.Write(slice)
   106  	}
   107  	return hsha1.Sum(nil)
   108  }
   109  
   110  // md5SHA1Hash implements TLS 1.0's hybrid hash function which consists of the
   111  // concatenation of an MD5 and SHA1 hash.
   112  func md5SHA1Hash(slices [][]byte) []byte {
   113  	md5sha1 := make([]byte, md5.Size+sha1.Size)
   114  	hmd5 := md5.New()
   115  	for _, slice := range slices {
   116  		hmd5.Write(slice)
   117  	}
   118  	copy(md5sha1, hmd5.Sum(nil))
   119  	copy(md5sha1[md5.Size:], sha1Hash(slices))
   120  	return md5sha1
   121  }
   122  
   123  // hashForServerKeyExchange hashes the given slices and returns their digest
   124  // using the given hash function (for >= TLS 1.2) or using a default based on
   125  // the sigType (for earlier TLS versions). For Ed25519 signatures, which don't
   126  // do pre-hashing, it returns the concatenation of the slices.
   127  func hashForServerKeyExchange(sigType uint8, hashFunc crypto.Hash, version uint16, slices ...[]byte) []byte {
   128  	if sigType == signatureEd25519 {
   129  		var signed []byte
   130  		for _, slice := range slices {
   131  			signed = append(signed, slice...)
   132  		}
   133  		return signed
   134  	}
   135  	if version >= VersionTLS12 {
   136  		h := hashFunc.New()
   137  		for _, slice := range slices {
   138  			h.Write(slice)
   139  		}
   140  		digest := h.Sum(nil)
   141  		return digest
   142  	}
   143  	if sigType == signatureECDSA {
   144  		return sha1Hash(slices)
   145  	}
   146  	return md5SHA1Hash(slices)
   147  }
   148  
   149  // ecdheKeyAgreement implements a TLS key agreement where the server
   150  // generates an ephemeral EC public/private key pair and signs it. The
   151  // pre-master secret is then calculated using ECDH. The signature may
   152  // be ECDSA, Ed25519 or RSA.
   153  type ecdheKeyAgreement struct {
   154  	version uint16
   155  	isRSA   bool
   156  	params  ecdheParameters
   157  
   158  	// ckx and preMasterSecret are generated in processServerKeyExchange
   159  	// and returned in generateClientKeyExchange.
   160  	ckx             *clientKeyExchangeMsg
   161  	preMasterSecret []byte
   162  }
   163  
   164  func (ka *ecdheKeyAgreement) generateServerKeyExchange(config *config, cert *Certificate, clientHello *clientHelloMsg, hello *serverHelloMsg) (*serverKeyExchangeMsg, error) {
   165  	var curveID CurveID
   166  	for _, c := range clientHello.supportedCurves {
   167  		if config.supportsCurve(c) {
   168  			curveID = c
   169  			break
   170  		}
   171  	}
   172  
   173  	if curveID == 0 {
   174  		return nil, errors.New("tls: no supported elliptic curves offered")
   175  	}
   176  	if _, ok := curveForCurveID(curveID); curveID != X25519 && !ok {
   177  		return nil, errors.New("tls: CurvePreferences includes unsupported curve")
   178  	}
   179  
   180  	params, err := generateECDHEParameters(config.rand(), curveID)
   181  	if err != nil {
   182  		return nil, err
   183  	}
   184  	ka.params = params
   185  
   186  	// See RFC 4492, Section 5.4.
   187  	ecdhePublic := params.PublicKey()
   188  	serverECDHEParams := make([]byte, 1+2+1+len(ecdhePublic))
   189  	serverECDHEParams[0] = 3 // named curve
   190  	serverECDHEParams[1] = byte(curveID >> 8)
   191  	serverECDHEParams[2] = byte(curveID)
   192  	serverECDHEParams[3] = byte(len(ecdhePublic))
   193  	copy(serverECDHEParams[4:], ecdhePublic)
   194  
   195  	priv, ok := cert.PrivateKey.(crypto.Signer)
   196  	if !ok {
   197  		return nil, fmt.Errorf("tls: certificate private key of type %T does not implement crypto.Signer", cert.PrivateKey)
   198  	}
   199  
   200  	var signatureAlgorithm SignatureScheme
   201  	var sigType uint8
   202  	var sigHash crypto.Hash
   203  	if ka.version >= VersionTLS12 {
   204  		signatureAlgorithm, err = selectSignatureScheme(ka.version, cert, clientHello.supportedSignatureAlgorithms)
   205  		if err != nil {
   206  			return nil, err
   207  		}
   208  		sigType, sigHash, err = typeAndHashFromSignatureScheme(signatureAlgorithm)
   209  		if err != nil {
   210  			return nil, err
   211  		}
   212  	} else {
   213  		sigType, sigHash, err = legacyTypeAndHashFromPublicKey(priv.Public())
   214  		if err != nil {
   215  			return nil, err
   216  		}
   217  	}
   218  	if (sigType == signaturePKCS1v15 || sigType == signatureRSAPSS) != ka.isRSA {
   219  		return nil, errors.New("tls: certificate cannot be used with the selected cipher suite")
   220  	}
   221  
   222  	signed := hashForServerKeyExchange(sigType, sigHash, ka.version, clientHello.random, hello.random, serverECDHEParams)
   223  
   224  	signOpts := crypto.SignerOpts(sigHash)
   225  	if sigType == signatureRSAPSS {
   226  		signOpts = &rsa.PSSOptions{SaltLength: rsa.PSSSaltLengthEqualsHash, Hash: sigHash}
   227  	}
   228  	sig, err := priv.Sign(config.rand(), signed, signOpts)
   229  	if err != nil {
   230  		return nil, errors.New("tls: failed to sign ECDHE parameters: " + err.Error())
   231  	}
   232  
   233  	skx := new(serverKeyExchangeMsg)
   234  	sigAndHashLen := 0
   235  	if ka.version >= VersionTLS12 {
   236  		sigAndHashLen = 2
   237  	}
   238  	skx.key = make([]byte, len(serverECDHEParams)+sigAndHashLen+2+len(sig))
   239  	copy(skx.key, serverECDHEParams)
   240  	k := skx.key[len(serverECDHEParams):]
   241  	if ka.version >= VersionTLS12 {
   242  		k[0] = byte(signatureAlgorithm >> 8)
   243  		k[1] = byte(signatureAlgorithm)
   244  		k = k[2:]
   245  	}
   246  	k[0] = byte(len(sig) >> 8)
   247  	k[1] = byte(len(sig))
   248  	copy(k[2:], sig)
   249  
   250  	return skx, nil
   251  }
   252  
   253  func (ka *ecdheKeyAgreement) processClientKeyExchange(config *config, cert *Certificate, ckx *clientKeyExchangeMsg, version uint16) ([]byte, error) {
   254  	if len(ckx.ciphertext) == 0 || int(ckx.ciphertext[0]) != len(ckx.ciphertext)-1 {
   255  		return nil, errClientKeyExchange
   256  	}
   257  
   258  	preMasterSecret := ka.params.SharedKey(ckx.ciphertext[1:])
   259  	if preMasterSecret == nil {
   260  		return nil, errClientKeyExchange
   261  	}
   262  
   263  	return preMasterSecret, nil
   264  }
   265  
   266  func (ka *ecdheKeyAgreement) processServerKeyExchange(config *config, clientHello *clientHelloMsg, serverHello *serverHelloMsg, cert *x509.Certificate, skx *serverKeyExchangeMsg) error {
   267  	if len(skx.key) < 4 {
   268  		return errServerKeyExchange
   269  	}
   270  	if skx.key[0] != 3 { // named curve
   271  		return errors.New("tls: server selected unsupported curve")
   272  	}
   273  	curveID := CurveID(skx.key[1])<<8 | CurveID(skx.key[2])
   274  
   275  	publicLen := int(skx.key[3])
   276  	if publicLen+4 > len(skx.key) {
   277  		return errServerKeyExchange
   278  	}
   279  	serverECDHEParams := skx.key[:4+publicLen]
   280  	publicKey := serverECDHEParams[4:]
   281  
   282  	sig := skx.key[4+publicLen:]
   283  	if len(sig) < 2 {
   284  		return errServerKeyExchange
   285  	}
   286  
   287  	if _, ok := curveForCurveID(curveID); curveID != X25519 && !ok {
   288  		return errors.New("tls: server selected unsupported curve")
   289  	}
   290  
   291  	params, err := generateECDHEParameters(config.rand(), curveID)
   292  	if err != nil {
   293  		return err
   294  	}
   295  	ka.params = params
   296  
   297  	ka.preMasterSecret = params.SharedKey(publicKey)
   298  	if ka.preMasterSecret == nil {
   299  		return errServerKeyExchange
   300  	}
   301  
   302  	ourPublicKey := params.PublicKey()
   303  	ka.ckx = new(clientKeyExchangeMsg)
   304  	ka.ckx.ciphertext = make([]byte, 1+len(ourPublicKey))
   305  	ka.ckx.ciphertext[0] = byte(len(ourPublicKey))
   306  	copy(ka.ckx.ciphertext[1:], ourPublicKey)
   307  
   308  	var sigType uint8
   309  	var sigHash crypto.Hash
   310  	if ka.version >= VersionTLS12 {
   311  		signatureAlgorithm := SignatureScheme(sig[0])<<8 | SignatureScheme(sig[1])
   312  		sig = sig[2:]
   313  		if len(sig) < 2 {
   314  			return errServerKeyExchange
   315  		}
   316  
   317  		if !isSupportedSignatureAlgorithm(signatureAlgorithm, clientHello.supportedSignatureAlgorithms) {
   318  			return errors.New("tls: certificate used with invalid signature algorithm")
   319  		}
   320  		sigType, sigHash, err = typeAndHashFromSignatureScheme(signatureAlgorithm)
   321  		if err != nil {
   322  			return err
   323  		}
   324  	} else {
   325  		sigType, sigHash, err = legacyTypeAndHashFromPublicKey(cert.PublicKey)
   326  		if err != nil {
   327  			return err
   328  		}
   329  	}
   330  	if (sigType == signaturePKCS1v15 || sigType == signatureRSAPSS) != ka.isRSA {
   331  		return errServerKeyExchange
   332  	}
   333  
   334  	sigLen := int(sig[0])<<8 | int(sig[1])
   335  	if sigLen+2 != len(sig) {
   336  		return errServerKeyExchange
   337  	}
   338  	sig = sig[2:]
   339  
   340  	signed := hashForServerKeyExchange(sigType, sigHash, ka.version, clientHello.random, serverHello.random, serverECDHEParams)
   341  	if err := verifyHandshakeSignature(sigType, cert.PublicKey, sigHash, signed, sig); err != nil {
   342  		return errors.New("tls: invalid signature by the server certificate: " + err.Error())
   343  	}
   344  	return nil
   345  }
   346  
   347  func (ka *ecdheKeyAgreement) generateClientKeyExchange(config *config, clientHello *clientHelloMsg, cert *x509.Certificate) ([]byte, *clientKeyExchangeMsg, error) {
   348  	if ka.ckx == nil {
   349  		return nil, nil, errors.New("tls: missing ServerKeyExchange message")
   350  	}
   351  
   352  	return ka.preMasterSecret, ka.ckx, nil
   353  }