key_agreement.go 12 KB

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