gitee.com/lh-her-team/common@v1.5.1/crypto/tls/prf.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/hmac"
    10  	"crypto/md5"
    11  	"crypto/sha1"
    12  	"crypto/sha256"
    13  	"crypto/sha512"
    14  	"errors"
    15  	"fmt"
    16  	"hash"
    17  
    18  	bccrypto "gitee.com/lh-her-team/common/crypto"
    19  
    20  	"github.com/tjfoc/gmsm/sm3"
    21  )
    22  
    23  // Split a premaster secret in two as specified in RFC 4346, Section 5.
    24  func splitPreMasterSecret(secret []byte) (s1, s2 []byte) {
    25  	s1 = secret[0 : (len(secret)+1)/2]
    26  	s2 = secret[len(secret)/2:]
    27  	return
    28  }
    29  
    30  // pHash implements the P_hash function, as defined in RFC 4346, Section 5.
    31  func pHash(result, secret, seed []byte, hash func() hash.Hash) {
    32  	h := hmac.New(hash, secret)
    33  	h.Write(seed)
    34  	a := h.Sum(nil)
    35  	j := 0
    36  	for j < len(result) {
    37  		h.Reset()
    38  		h.Write(a)
    39  		h.Write(seed)
    40  		b := h.Sum(nil)
    41  		copy(result[j:], b)
    42  		j += len(b)
    43  		h.Reset()
    44  		h.Write(a)
    45  		a = h.Sum(nil)
    46  	}
    47  }
    48  
    49  // prf10 implements the TLS 1.0 pseudo-random function, as defined in RFC 2246, Section 5.
    50  func prf10(result, secret, label, seed []byte) {
    51  	hashSHA1 := sha1.New
    52  	hashMD5 := md5.New
    53  	labelAndSeed := make([]byte, len(label)+len(seed))
    54  	copy(labelAndSeed, label)
    55  	copy(labelAndSeed[len(label):], seed)
    56  	s1, s2 := splitPreMasterSecret(secret)
    57  	pHash(result, s1, labelAndSeed, hashMD5)
    58  	result2 := make([]byte, len(result))
    59  	pHash(result2, s2, labelAndSeed, hashSHA1)
    60  	for i, b := range result2 {
    61  		result[i] ^= b
    62  	}
    63  }
    64  
    65  // prf12 implements the TLS 1.2 pseudo-random function, as defined in RFC 5246, Section 5.
    66  func prf12(hashFunc func() hash.Hash) func(result, secret, label, seed []byte) {
    67  	return func(result, secret, label, seed []byte) {
    68  		labelAndSeed := make([]byte, len(label)+len(seed))
    69  		copy(labelAndSeed, label)
    70  		copy(labelAndSeed[len(label):], seed)
    71  		pHash(result, secret, labelAndSeed, hashFunc)
    72  	}
    73  }
    74  
    75  const (
    76  	masterSecretLength   = 48 // Length of a master secret in TLS 1.1.
    77  	finishedVerifyLength = 12 // Length of verify_data in a Finished message.
    78  )
    79  
    80  var masterSecretLabel = []byte("master secret")
    81  var keyExpansionLabel = []byte("key expansion")
    82  var clientFinishedLabel = []byte("client finished")
    83  var serverFinishedLabel = []byte("server finished")
    84  
    85  func prfAndHashForGM() func(result, secret, label, seed []byte) {
    86  	return prf12(sm3.New)
    87  }
    88  
    89  func prfAndHashForVersion(version uint16, suite *cipherSuite) (func(result, secret, label, seed []byte), crypto.Hash) {
    90  	switch version {
    91  	case VersionTLS10, VersionTLS11:
    92  		return prf10, crypto.Hash(0)
    93  	case VersionTLS12:
    94  		if suite.flags&suiteSHA384 != 0 {
    95  			return prf12(sha512.New384), crypto.SHA384
    96  		}
    97  		return prf12(sha256.New), crypto.SHA256
    98  	default:
    99  		panic("unknown version")
   100  	}
   101  }
   102  
   103  func prfForVersion(version uint16, suite *cipherSuite) func(result, secret, label, seed []byte) {
   104  	var prf func(result, secret, label, seed []byte)
   105  	if version == VersionGMSSL {
   106  		prf = prfAndHashForGM()
   107  	} else {
   108  		prf, _ = prfAndHashForVersion(version, suite)
   109  	}
   110  	return prf
   111  }
   112  
   113  // masterFromPreMasterSecret generates the master secret from the pre-master
   114  // secret. See RFC 5246, Section 8.1.
   115  func masterFromPreMasterSecret(version uint16, suite *cipherSuite, preMasterSecret, clientRandom, serverRandom []byte) []byte {
   116  	seed := make([]byte, 0, len(clientRandom)+len(serverRandom))
   117  	seed = append(seed, clientRandom...)
   118  	seed = append(seed, serverRandom...)
   119  	masterSecret := make([]byte, masterSecretLength)
   120  	prfForVersion(version, suite)(masterSecret, preMasterSecret, masterSecretLabel, seed)
   121  	return masterSecret
   122  }
   123  
   124  // keysFromMasterSecret generates the connection keys from the master
   125  // secret, given the lengths of the MAC key, cipher key and IV, as defined in
   126  // RFC 2246, Section 6.3.
   127  func keysFromMasterSecret(version uint16, suite *cipherSuite, masterSecret, clientRandom, serverRandom []byte, macLen, keyLen, ivLen int) (clientMAC, serverMAC, clientKey, serverKey, clientIV, serverIV []byte) {
   128  	seed := make([]byte, 0, len(serverRandom)+len(clientRandom))
   129  	seed = append(seed, serverRandom...)
   130  	seed = append(seed, clientRandom...)
   131  	n := 2*macLen + 2*keyLen + 2*ivLen
   132  	keyMaterial := make([]byte, n)
   133  	prfForVersion(version, suite)(keyMaterial, masterSecret, keyExpansionLabel, seed)
   134  	clientMAC = keyMaterial[:macLen]
   135  	keyMaterial = keyMaterial[macLen:]
   136  	serverMAC = keyMaterial[:macLen]
   137  	keyMaterial = keyMaterial[macLen:]
   138  	clientKey = keyMaterial[:keyLen]
   139  	keyMaterial = keyMaterial[keyLen:]
   140  	serverKey = keyMaterial[:keyLen]
   141  	keyMaterial = keyMaterial[keyLen:]
   142  	clientIV = keyMaterial[:ivLen]
   143  	keyMaterial = keyMaterial[ivLen:]
   144  	serverIV = keyMaterial[:ivLen]
   145  	return
   146  }
   147  
   148  func newFinishedHash(version uint16, cipherSuite *cipherSuite) finishedHash {
   149  	var buffer []byte
   150  	if version >= VersionTLS12 {
   151  		buffer = []byte{}
   152  	}
   153  	var prf func(result, secret, label, seed []byte)
   154  	if version == VersionGMSSL {
   155  		prf = prfAndHashForGM()
   156  		return finishedHash{sm3.New(), sm3.New(), nil, nil, buffer, version, prf}
   157  	} else {
   158  		prf, hash := prfAndHashForVersion(version, cipherSuite)
   159  		if hash != 0 {
   160  			return finishedHash{hash.New(), hash.New(), nil, nil, buffer, version, prf}
   161  		}
   162  	}
   163  	return finishedHash{sha1.New(), sha1.New(), md5.New(), md5.New(), buffer, version, prf}
   164  }
   165  
   166  // A finishedHash calculates the hash of a set of handshake messages suitable
   167  // for including in a Finished message.
   168  type finishedHash struct {
   169  	client hash.Hash
   170  	server hash.Hash
   171  	// Prior to TLS 1.2, an additional MD5 hash is required.
   172  	clientMD5 hash.Hash
   173  	serverMD5 hash.Hash
   174  	// In TLS 1.2, a full buffer is sadly required.
   175  	buffer  []byte
   176  	version uint16
   177  	prf     func(result, secret, label, seed []byte)
   178  }
   179  
   180  func (h *finishedHash) Write(msg []byte) (n int, err error) {
   181  	h.client.Write(msg)
   182  	h.server.Write(msg)
   183  	if h.version < VersionTLS12 {
   184  		h.clientMD5.Write(msg)
   185  		h.serverMD5.Write(msg)
   186  	}
   187  	if h.buffer != nil {
   188  		h.buffer = append(h.buffer, msg...)
   189  	}
   190  	return len(msg), nil
   191  }
   192  
   193  func (h finishedHash) Sum() []byte {
   194  	if h.version >= VersionTLS12 || h.version == VersionGMSSL {
   195  		return h.client.Sum(nil)
   196  	}
   197  	out := make([]byte, 0, md5.Size+sha1.Size)
   198  	out = h.clientMD5.Sum(out)
   199  	return h.client.Sum(out)
   200  }
   201  
   202  // clientSum returns the contents of the verify_data member of a client's
   203  // Finished message.
   204  func (h finishedHash) clientSum(masterSecret []byte) []byte {
   205  	out := make([]byte, finishedVerifyLength)
   206  	h.prf(out, masterSecret, clientFinishedLabel, h.Sum())
   207  	return out
   208  }
   209  
   210  // serverSum returns the contents of the verify_data member of a server's
   211  // Finished message.
   212  func (h finishedHash) serverSum(masterSecret []byte) []byte {
   213  	out := make([]byte, finishedVerifyLength)
   214  	h.prf(out, masterSecret, serverFinishedLabel, h.Sum())
   215  	return out
   216  }
   217  
   218  // hashForClientCertificate returns the handshake messages so far, pre-hashed if
   219  // necessary, suitable for signing by a TLS client certificate.
   220  func (h finishedHash) hashForClientCertificate(sigType uint8, hashAlg crypto.Hash, masterSecret []byte) []byte {
   221  	if (h.version >= VersionTLS12 || sigType == signatureEd25519) && h.buffer == nil {
   222  		panic("tls: handshake hash for a client certificate requested after discarding the handshake buffer")
   223  	}
   224  	//if sigType == signatureSM2 {
   225  	//	return h.buffer
   226  	//}
   227  	if sigType == signatureEd25519 {
   228  		return h.buffer
   229  	}
   230  	if h.version >= VersionTLS12 {
   231  		var hash hash.Hash
   232  		if hashAlg == bccrypto.SM3 {
   233  			hash = sm3.New()
   234  		} else {
   235  			hash = hashAlg.New()
   236  		}
   237  		hash.Write(h.buffer)
   238  		return hash.Sum(nil)
   239  	}
   240  	if sigType == signatureECDSA {
   241  		return h.server.Sum(nil)
   242  	}
   243  	return h.Sum()
   244  }
   245  
   246  // discardHandshakeBuffer is called when there is no more need to
   247  // buffer the entirety of the handshake messages.
   248  func (h *finishedHash) discardHandshakeBuffer() {
   249  	h.buffer = nil
   250  }
   251  
   252  // noExportedKeyingMaterial is used as a value of
   253  // ConnectionState.ekm when renegotiation is enabled and thus
   254  // we wish to fail all key-material export requests.
   255  func noExportedKeyingMaterial(label string, context []byte, length int) ([]byte, error) {
   256  	return nil, errors.New("crypto/tls: ExportKeyingMaterial is unavailable when renegotiation is enabled")
   257  }
   258  
   259  // ekmFromMasterSecret generates exported keying material as defined in RFC 5705.
   260  func ekmFromMasterSecret(version uint16, suite *cipherSuite, masterSecret, clientRandom, serverRandom []byte) func(string, []byte, int) ([]byte, error) {
   261  	return func(label string, context []byte, length int) ([]byte, error) {
   262  		switch label {
   263  		case "client finished", "server finished", "master secret", "key expansion":
   264  			// These values are reserved and may not be used.
   265  			return nil, fmt.Errorf("crypto/tls: reserved ExportKeyingMaterial label: %s", label)
   266  		}
   267  		seedLen := len(serverRandom) + len(clientRandom)
   268  		if context != nil {
   269  			seedLen += 2 + len(context)
   270  		}
   271  		seed := make([]byte, 0, seedLen)
   272  		seed = append(seed, clientRandom...)
   273  		seed = append(seed, serverRandom...)
   274  		if context != nil {
   275  			if len(context) >= 1<<16 {
   276  				return nil, fmt.Errorf("crypto/tls: ExportKeyingMaterial context too long")
   277  			}
   278  			seed = append(seed, byte(len(context)>>8), byte(len(context)))
   279  			seed = append(seed, context...)
   280  		}
   281  		keyMaterial := make([]byte, length)
   282  		prfForVersion(version, suite)(keyMaterial, masterSecret, []byte(label), seed)
   283  		return keyMaterial, nil
   284  	}
   285  }