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 }