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 }