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  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. package tls
  5. import (
  6. "bytes"
  7. "crypto"
  8. "crypto/ecdsa"
  9. "crypto/rsa"
  10. "crypto/subtle"
  11. "crypto/x509"
  12. "errors"
  13. "fmt"
  14. "io"
  15. "net"
  16. "strconv"
  17. "strings"
  18. "sync/atomic"
  19. )
  20. type clientHandshakeState struct {
  21. c *Conn
  22. serverHello *serverHelloMsg
  23. hello *clientHelloMsg
  24. suite *cipherSuite
  25. finishedHash finishedHash
  26. masterSecret []byte
  27. session *ClientSessionState
  28. }
  29. // c.out.Mutex <= L; c.handshakeMutex <= L.
  30. func (c *Conn) clientHandshake() error {
  31. if c.config == nil {
  32. c.config = defaultConfig()
  33. }
  34. // This may be a renegotiation handshake, in which case some fields
  35. // need to be reset.
  36. c.didResume = false
  37. if len(c.config.ServerName) == 0 && !c.config.InsecureSkipVerify {
  38. return errors.New("tls: either ServerName or InsecureSkipVerify must be specified in the tls.Config")
  39. }
  40. nextProtosLength := 0
  41. for _, proto := range c.config.NextProtos {
  42. if l := len(proto); l == 0 || l > 255 {
  43. return errors.New("tls: invalid NextProtos value")
  44. } else {
  45. nextProtosLength += 1 + l
  46. }
  47. }
  48. if nextProtosLength > 0xffff {
  49. return errors.New("tls: NextProtos values too large")
  50. }
  51. hello := &clientHelloMsg{
  52. vers: c.config.maxVersion(),
  53. compressionMethods: []uint8{compressionNone},
  54. random: make([]byte, 32),
  55. ocspStapling: true,
  56. scts: true,
  57. serverName: hostnameInSNI(c.config.ServerName),
  58. supportedCurves: c.config.curvePreferences(),
  59. supportedPoints: []uint8{pointFormatUncompressed},
  60. nextProtoNeg: len(c.config.NextProtos) > 0,
  61. secureRenegotiationSupported: true,
  62. alpnProtocols: c.config.NextProtos,
  63. }
  64. if c.handshakes > 0 {
  65. hello.secureRenegotiation = c.clientFinished[:]
  66. }
  67. possibleCipherSuites := c.config.cipherSuites(c.vers)
  68. hello.cipherSuites = make([]uint16, 0, len(possibleCipherSuites))
  69. NextCipherSuite:
  70. for _, suiteId := range possibleCipherSuites {
  71. for _, suite := range cipherSuites {
  72. if suite.id != suiteId {
  73. continue
  74. }
  75. // Don't advertise TLS 1.2-only cipher suites unless
  76. // we're attempting TLS 1.2.
  77. if hello.vers < VersionTLS12 && suite.flags&suiteTLS12 != 0 {
  78. continue
  79. }
  80. hello.cipherSuites = append(hello.cipherSuites, suiteId)
  81. continue NextCipherSuite
  82. }
  83. }
  84. _, err := io.ReadFull(c.config.rand(), hello.random)
  85. if err != nil {
  86. c.sendAlert(alertInternalError)
  87. return errors.New("tls: short read from Rand: " + err.Error())
  88. }
  89. if hello.vers >= VersionTLS12 {
  90. hello.signatureAndHashes = supportedSignatureAlgorithms
  91. }
  92. var session *ClientSessionState
  93. var cacheKey string
  94. sessionCache := c.config.ClientSessionCache
  95. if c.config.SessionTicketsDisabled {
  96. sessionCache = nil
  97. }
  98. if sessionCache != nil {
  99. hello.ticketSupported = true
  100. }
  101. // Session resumption is not allowed if renegotiating because
  102. // renegotiation is primarily used to allow a client to send a client
  103. // certificate, which would be skipped if session resumption occurred.
  104. if sessionCache != nil && c.handshakes == 0 {
  105. // Try to resume a previously negotiated TLS session, if
  106. // available.
  107. cacheKey = clientSessionCacheKey(c.conn.RemoteAddr(), c.config)
  108. candidateSession, ok := sessionCache.Get(cacheKey)
  109. if ok {
  110. // Check that the ciphersuite/version used for the
  111. // previous session are still valid.
  112. cipherSuiteOk := false
  113. for _, id := range hello.cipherSuites {
  114. if id == candidateSession.cipherSuite {
  115. cipherSuiteOk = true
  116. break
  117. }
  118. }
  119. versOk := candidateSession.vers >= c.config.minVersion() &&
  120. candidateSession.vers <= c.config.maxVersion()
  121. if versOk && cipherSuiteOk {
  122. session = candidateSession
  123. }
  124. }
  125. }
  126. if session != nil {
  127. hello.sessionTicket = session.sessionTicket
  128. // A random session ID is used to detect when the
  129. // server accepted the ticket and is resuming a session
  130. // (see RFC 5077).
  131. hello.sessionId = make([]byte, 16)
  132. if _, err := io.ReadFull(c.config.rand(), hello.sessionId); err != nil {
  133. c.sendAlert(alertInternalError)
  134. return errors.New("tls: short read from Rand: " + err.Error())
  135. }
  136. }
  137. if _, err := c.writeRecord(recordTypeHandshake, hello.marshal()); err != nil {
  138. return err
  139. }
  140. msg, err := c.readHandshake()
  141. if err != nil {
  142. return err
  143. }
  144. serverHello, ok := msg.(*serverHelloMsg)
  145. if !ok {
  146. c.sendAlert(alertUnexpectedMessage)
  147. return unexpectedMessageError(serverHello, msg)
  148. }
  149. vers, ok := c.config.mutualVersion(serverHello.vers)
  150. if !ok || vers < VersionTLS10 {
  151. // TLS 1.0 is the minimum version supported as a client.
  152. c.sendAlert(alertProtocolVersion)
  153. return fmt.Errorf("tls: server selected unsupported protocol version %x", serverHello.vers)
  154. }
  155. c.vers = vers
  156. c.haveVers = true
  157. suite := mutualCipherSuite(hello.cipherSuites, serverHello.cipherSuite)
  158. if suite == nil {
  159. c.sendAlert(alertHandshakeFailure)
  160. return errors.New("tls: server chose an unconfigured cipher suite")
  161. }
  162. hs := &clientHandshakeState{
  163. c: c,
  164. serverHello: serverHello,
  165. hello: hello,
  166. suite: suite,
  167. finishedHash: newFinishedHash(c.vers, suite),
  168. session: session,
  169. }
  170. isResume, err := hs.processServerHello()
  171. if err != nil {
  172. return err
  173. }
  174. // No signatures of the handshake are needed in a resumption.
  175. // Otherwise, in a full handshake, if we don't have any certificates
  176. // configured then we will never send a CertificateVerify message and
  177. // thus no signatures are needed in that case either.
  178. if isResume || (len(c.config.Certificates) == 0 && c.config.GetClientCertificate == nil) {
  179. hs.finishedHash.discardHandshakeBuffer()
  180. }
  181. hs.finishedHash.Write(hs.hello.marshal())
  182. hs.finishedHash.Write(hs.serverHello.marshal())
  183. c.buffering = true
  184. if isResume {
  185. if err := hs.establishKeys(); err != nil {
  186. return err
  187. }
  188. if err := hs.readSessionTicket(); err != nil {
  189. return err
  190. }
  191. if err := hs.readFinished(c.serverFinished[:]); err != nil {
  192. return err
  193. }
  194. c.clientFinishedIsFirst = false
  195. if err := hs.sendFinished(c.clientFinished[:]); err != nil {
  196. return err
  197. }
  198. if _, err := c.flush(); err != nil {
  199. return err
  200. }
  201. } else {
  202. if err := hs.doFullHandshake(); err != nil {
  203. return err
  204. }
  205. if err := hs.establishKeys(); err != nil {
  206. return err
  207. }
  208. if err := hs.sendFinished(c.clientFinished[:]); err != nil {
  209. return err
  210. }
  211. if _, err := c.flush(); err != nil {
  212. return err
  213. }
  214. c.clientFinishedIsFirst = true
  215. if err := hs.readSessionTicket(); err != nil {
  216. return err
  217. }
  218. if err := hs.readFinished(c.serverFinished[:]); err != nil {
  219. return err
  220. }
  221. }
  222. if sessionCache != nil && hs.session != nil && session != hs.session {
  223. sessionCache.Put(cacheKey, hs.session)
  224. }
  225. c.didResume = isResume
  226. c.phase = handshakeConfirmed
  227. atomic.StoreInt32(&c.handshakeConfirmed, 1)
  228. c.handshakeComplete = true
  229. c.cipherSuite = suite.id
  230. return nil
  231. }
  232. func (hs *clientHandshakeState) doFullHandshake() error {
  233. c := hs.c
  234. msg, err := c.readHandshake()
  235. if err != nil {
  236. return err
  237. }
  238. certMsg, ok := msg.(*certificateMsg)
  239. if !ok || len(certMsg.certificates) == 0 {
  240. c.sendAlert(alertUnexpectedMessage)
  241. return unexpectedMessageError(certMsg, msg)
  242. }
  243. hs.finishedHash.Write(certMsg.marshal())
  244. if c.handshakes == 0 {
  245. // If this is the first handshake on a connection, process and
  246. // (optionally) verify the server's certificates.
  247. certs := make([]*x509.Certificate, len(certMsg.certificates))
  248. for i, asn1Data := range certMsg.certificates {
  249. cert, err := x509.ParseCertificate(asn1Data)
  250. if err != nil {
  251. c.sendAlert(alertBadCertificate)
  252. return errors.New("tls: failed to parse certificate from server: " + err.Error())
  253. }
  254. certs[i] = cert
  255. }
  256. if !c.config.InsecureSkipVerify {
  257. opts := x509.VerifyOptions{
  258. Roots: c.config.RootCAs,
  259. CurrentTime: c.config.time(),
  260. DNSName: c.config.ServerName,
  261. Intermediates: x509.NewCertPool(),
  262. }
  263. for i, cert := range certs {
  264. if i == 0 {
  265. continue
  266. }
  267. opts.Intermediates.AddCert(cert)
  268. }
  269. c.verifiedChains, err = certs[0].Verify(opts)
  270. if err != nil {
  271. c.sendAlert(alertBadCertificate)
  272. return err
  273. }
  274. }
  275. if c.config.VerifyPeerCertificate != nil {
  276. if err := c.config.VerifyPeerCertificate(certMsg.certificates, c.verifiedChains); err != nil {
  277. c.sendAlert(alertBadCertificate)
  278. return err
  279. }
  280. }
  281. switch certs[0].PublicKey.(type) {
  282. case *rsa.PublicKey, *ecdsa.PublicKey:
  283. break
  284. default:
  285. c.sendAlert(alertUnsupportedCertificate)
  286. return fmt.Errorf("tls: server's certificate contains an unsupported type of public key: %T", certs[0].PublicKey)
  287. }
  288. c.peerCertificates = certs
  289. } else {
  290. // This is a renegotiation handshake. We require that the
  291. // server's identity (i.e. leaf certificate) is unchanged and
  292. // thus any previous trust decision is still valid.
  293. //
  294. // See https://mitls.org/pages/attacks/3SHAKE for the
  295. // motivation behind this requirement.
  296. if !bytes.Equal(c.peerCertificates[0].Raw, certMsg.certificates[0]) {
  297. c.sendAlert(alertBadCertificate)
  298. return errors.New("tls: server's identity changed during renegotiation")
  299. }
  300. }
  301. if hs.serverHello.ocspStapling {
  302. msg, err = c.readHandshake()
  303. if err != nil {
  304. return err
  305. }
  306. cs, ok := msg.(*certificateStatusMsg)
  307. if !ok {
  308. c.sendAlert(alertUnexpectedMessage)
  309. return unexpectedMessageError(cs, msg)
  310. }
  311. hs.finishedHash.Write(cs.marshal())
  312. if cs.statusType == statusTypeOCSP {
  313. c.ocspResponse = cs.response
  314. }
  315. }
  316. msg, err = c.readHandshake()
  317. if err != nil {
  318. return err
  319. }
  320. keyAgreement := hs.suite.ka(c.vers)
  321. skx, ok := msg.(*serverKeyExchangeMsg)
  322. if ok {
  323. hs.finishedHash.Write(skx.marshal())
  324. err = keyAgreement.processServerKeyExchange(c.config, hs.hello, hs.serverHello, c.peerCertificates[0], skx)
  325. if err != nil {
  326. c.sendAlert(alertUnexpectedMessage)
  327. return err
  328. }
  329. msg, err = c.readHandshake()
  330. if err != nil {
  331. return err
  332. }
  333. }
  334. var chainToSend *Certificate
  335. var certRequested bool
  336. certReq, ok := msg.(*certificateRequestMsg)
  337. if ok {
  338. certRequested = true
  339. hs.finishedHash.Write(certReq.marshal())
  340. if chainToSend, err = hs.getCertificate(certReq); err != nil {
  341. c.sendAlert(alertInternalError)
  342. return err
  343. }
  344. msg, err = c.readHandshake()
  345. if err != nil {
  346. return err
  347. }
  348. }
  349. shd, ok := msg.(*serverHelloDoneMsg)
  350. if !ok {
  351. c.sendAlert(alertUnexpectedMessage)
  352. return unexpectedMessageError(shd, msg)
  353. }
  354. hs.finishedHash.Write(shd.marshal())
  355. // If the server requested a certificate then we have to send a
  356. // Certificate message, even if it's empty because we don't have a
  357. // certificate to send.
  358. if certRequested {
  359. certMsg = new(certificateMsg)
  360. certMsg.certificates = chainToSend.Certificate
  361. hs.finishedHash.Write(certMsg.marshal())
  362. if _, err := c.writeRecord(recordTypeHandshake, certMsg.marshal()); err != nil {
  363. return err
  364. }
  365. }
  366. preMasterSecret, ckx, err := keyAgreement.generateClientKeyExchange(c.config, hs.hello, c.peerCertificates[0])
  367. if err != nil {
  368. c.sendAlert(alertInternalError)
  369. return err
  370. }
  371. if ckx != nil {
  372. hs.finishedHash.Write(ckx.marshal())
  373. if _, err := c.writeRecord(recordTypeHandshake, ckx.marshal()); err != nil {
  374. return err
  375. }
  376. }
  377. if chainToSend != nil && len(chainToSend.Certificate) > 0 {
  378. certVerify := &certificateVerifyMsg{
  379. hasSignatureAndHash: c.vers >= VersionTLS12,
  380. }
  381. key, ok := chainToSend.PrivateKey.(crypto.Signer)
  382. if !ok {
  383. c.sendAlert(alertInternalError)
  384. return fmt.Errorf("tls: client certificate private key of type %T does not implement crypto.Signer", chainToSend.PrivateKey)
  385. }
  386. var signatureType uint8
  387. switch key.Public().(type) {
  388. case *ecdsa.PublicKey:
  389. signatureType = signatureECDSA
  390. case *rsa.PublicKey:
  391. signatureType = signatureRSA
  392. default:
  393. c.sendAlert(alertInternalError)
  394. return fmt.Errorf("tls: failed to sign handshake with client certificate: unknown client certificate key type: %T", key)
  395. }
  396. certVerify.signatureAndHash, err = hs.finishedHash.selectClientCertSignatureAlgorithm(certReq.signatureAndHashes, signatureType)
  397. if err != nil {
  398. c.sendAlert(alertInternalError)
  399. return err
  400. }
  401. digest, hashFunc, err := hs.finishedHash.hashForClientCertificate(certVerify.signatureAndHash, hs.masterSecret)
  402. if err != nil {
  403. c.sendAlert(alertInternalError)
  404. return err
  405. }
  406. certVerify.signature, err = key.Sign(c.config.rand(), digest, hashFunc)
  407. if err != nil {
  408. c.sendAlert(alertInternalError)
  409. return err
  410. }
  411. hs.finishedHash.Write(certVerify.marshal())
  412. if _, err := c.writeRecord(recordTypeHandshake, certVerify.marshal()); err != nil {
  413. return err
  414. }
  415. }
  416. hs.masterSecret = masterFromPreMasterSecret(c.vers, hs.suite, preMasterSecret, hs.hello.random, hs.serverHello.random)
  417. if err := c.config.writeKeyLog(hs.hello.random, hs.masterSecret); err != nil {
  418. c.sendAlert(alertInternalError)
  419. return errors.New("tls: failed to write to key log: " + err.Error())
  420. }
  421. hs.finishedHash.discardHandshakeBuffer()
  422. return nil
  423. }
  424. func (hs *clientHandshakeState) establishKeys() error {
  425. c := hs.c
  426. clientMAC, serverMAC, clientKey, serverKey, clientIV, serverIV :=
  427. keysFromMasterSecret(c.vers, hs.suite, hs.masterSecret, hs.hello.random, hs.serverHello.random, hs.suite.macLen, hs.suite.keyLen, hs.suite.ivLen)
  428. var clientCipher, serverCipher interface{}
  429. var clientHash, serverHash macFunction
  430. if hs.suite.cipher != nil {
  431. clientCipher = hs.suite.cipher(clientKey, clientIV, false /* not for reading */)
  432. clientHash = hs.suite.mac(c.vers, clientMAC)
  433. serverCipher = hs.suite.cipher(serverKey, serverIV, true /* for reading */)
  434. serverHash = hs.suite.mac(c.vers, serverMAC)
  435. } else {
  436. clientCipher = hs.suite.aead(clientKey, clientIV)
  437. serverCipher = hs.suite.aead(serverKey, serverIV)
  438. }
  439. c.in.prepareCipherSpec(c.vers, serverCipher, serverHash)
  440. c.out.prepareCipherSpec(c.vers, clientCipher, clientHash)
  441. return nil
  442. }
  443. func (hs *clientHandshakeState) serverResumedSession() bool {
  444. // If the server responded with the same sessionId then it means the
  445. // sessionTicket is being used to resume a TLS session.
  446. return hs.session != nil && hs.hello.sessionId != nil &&
  447. bytes.Equal(hs.serverHello.sessionId, hs.hello.sessionId)
  448. }
  449. func (hs *clientHandshakeState) processServerHello() (bool, error) {
  450. c := hs.c
  451. if hs.serverHello.compressionMethod != compressionNone {
  452. c.sendAlert(alertUnexpectedMessage)
  453. return false, errors.New("tls: server selected unsupported compression format")
  454. }
  455. if c.handshakes == 0 && hs.serverHello.secureRenegotiationSupported {
  456. c.secureRenegotiation = true
  457. if len(hs.serverHello.secureRenegotiation) != 0 {
  458. c.sendAlert(alertHandshakeFailure)
  459. return false, errors.New("tls: initial handshake had non-empty renegotiation extension")
  460. }
  461. }
  462. if c.handshakes > 0 && c.secureRenegotiation {
  463. var expectedSecureRenegotiation [24]byte
  464. copy(expectedSecureRenegotiation[:], c.clientFinished[:])
  465. copy(expectedSecureRenegotiation[12:], c.serverFinished[:])
  466. if !bytes.Equal(hs.serverHello.secureRenegotiation, expectedSecureRenegotiation[:]) {
  467. c.sendAlert(alertHandshakeFailure)
  468. return false, errors.New("tls: incorrect renegotiation extension contents")
  469. }
  470. }
  471. clientDidNPN := hs.hello.nextProtoNeg
  472. clientDidALPN := len(hs.hello.alpnProtocols) > 0
  473. serverHasNPN := hs.serverHello.nextProtoNeg
  474. serverHasALPN := len(hs.serverHello.alpnProtocol) > 0
  475. if !clientDidNPN && serverHasNPN {
  476. c.sendAlert(alertHandshakeFailure)
  477. return false, errors.New("tls: server advertised unrequested NPN extension")
  478. }
  479. if !clientDidALPN && serverHasALPN {
  480. c.sendAlert(alertHandshakeFailure)
  481. return false, errors.New("tls: server advertised unrequested ALPN extension")
  482. }
  483. if serverHasNPN && serverHasALPN {
  484. c.sendAlert(alertHandshakeFailure)
  485. return false, errors.New("tls: server advertised both NPN and ALPN extensions")
  486. }
  487. if serverHasALPN {
  488. c.clientProtocol = hs.serverHello.alpnProtocol
  489. c.clientProtocolFallback = false
  490. }
  491. c.scts = hs.serverHello.scts
  492. if !hs.serverResumedSession() {
  493. return false, nil
  494. }
  495. if hs.session.vers != c.vers {
  496. c.sendAlert(alertHandshakeFailure)
  497. return false, errors.New("tls: server resumed a session with a different version")
  498. }
  499. if hs.session.cipherSuite != hs.suite.id {
  500. c.sendAlert(alertHandshakeFailure)
  501. return false, errors.New("tls: server resumed a session with a different cipher suite")
  502. }
  503. // Restore masterSecret and peerCerts from previous state
  504. hs.masterSecret = hs.session.masterSecret
  505. c.peerCertificates = hs.session.serverCertificates
  506. c.verifiedChains = hs.session.verifiedChains
  507. return true, nil
  508. }
  509. func (hs *clientHandshakeState) readFinished(out []byte) error {
  510. c := hs.c
  511. c.readRecord(recordTypeChangeCipherSpec)
  512. if c.in.err != nil {
  513. return c.in.err
  514. }
  515. msg, err := c.readHandshake()
  516. if err != nil {
  517. return err
  518. }
  519. serverFinished, ok := msg.(*finishedMsg)
  520. if !ok {
  521. c.sendAlert(alertUnexpectedMessage)
  522. return unexpectedMessageError(serverFinished, msg)
  523. }
  524. verify := hs.finishedHash.serverSum(hs.masterSecret)
  525. if len(verify) != len(serverFinished.verifyData) ||
  526. subtle.ConstantTimeCompare(verify, serverFinished.verifyData) != 1 {
  527. c.sendAlert(alertDecryptError)
  528. return errors.New("tls: server's Finished message was incorrect")
  529. }
  530. hs.finishedHash.Write(serverFinished.marshal())
  531. copy(out, verify)
  532. return nil
  533. }
  534. func (hs *clientHandshakeState) readSessionTicket() error {
  535. if !hs.serverHello.ticketSupported {
  536. return nil
  537. }
  538. c := hs.c
  539. msg, err := c.readHandshake()
  540. if err != nil {
  541. return err
  542. }
  543. sessionTicketMsg, ok := msg.(*newSessionTicketMsg)
  544. if !ok {
  545. c.sendAlert(alertUnexpectedMessage)
  546. return unexpectedMessageError(sessionTicketMsg, msg)
  547. }
  548. hs.finishedHash.Write(sessionTicketMsg.marshal())
  549. hs.session = &ClientSessionState{
  550. sessionTicket: sessionTicketMsg.ticket,
  551. vers: c.vers,
  552. cipherSuite: hs.suite.id,
  553. masterSecret: hs.masterSecret,
  554. serverCertificates: c.peerCertificates,
  555. verifiedChains: c.verifiedChains,
  556. }
  557. return nil
  558. }
  559. func (hs *clientHandshakeState) sendFinished(out []byte) error {
  560. c := hs.c
  561. if _, err := c.writeRecord(recordTypeChangeCipherSpec, []byte{1}); err != nil {
  562. return err
  563. }
  564. if hs.serverHello.nextProtoNeg {
  565. nextProto := new(nextProtoMsg)
  566. proto, fallback := mutualProtocol(c.config.NextProtos, hs.serverHello.nextProtos)
  567. nextProto.proto = proto
  568. c.clientProtocol = proto
  569. c.clientProtocolFallback = fallback
  570. hs.finishedHash.Write(nextProto.marshal())
  571. if _, err := c.writeRecord(recordTypeHandshake, nextProto.marshal()); err != nil {
  572. return err
  573. }
  574. }
  575. finished := new(finishedMsg)
  576. finished.verifyData = hs.finishedHash.clientSum(hs.masterSecret)
  577. hs.finishedHash.Write(finished.marshal())
  578. if _, err := c.writeRecord(recordTypeHandshake, finished.marshal()); err != nil {
  579. return err
  580. }
  581. copy(out, finished.verifyData)
  582. return nil
  583. }
  584. // tls11SignatureSchemes contains the signature schemes that we synthesise for
  585. // a TLS <= 1.1 connection, based on the supported certificate types.
  586. var tls11SignatureSchemes = []SignatureScheme{ECDSAWithP256AndSHA256, ECDSAWithP384AndSHA384, ECDSAWithP521AndSHA512, PKCS1WithSHA256, PKCS1WithSHA384, PKCS1WithSHA512, PKCS1WithSHA1}
  587. const (
  588. // tls11SignatureSchemesNumECDSA is the number of initial elements of
  589. // tls11SignatureSchemes that use ECDSA.
  590. tls11SignatureSchemesNumECDSA = 3
  591. // tls11SignatureSchemesNumRSA is the number of trailing elements of
  592. // tls11SignatureSchemes that use RSA.
  593. tls11SignatureSchemesNumRSA = 4
  594. )
  595. func (hs *clientHandshakeState) getCertificate(certReq *certificateRequestMsg) (*Certificate, error) {
  596. c := hs.c
  597. var rsaAvail, ecdsaAvail bool
  598. for _, certType := range certReq.certificateTypes {
  599. switch certType {
  600. case certTypeRSASign:
  601. rsaAvail = true
  602. case certTypeECDSASign:
  603. ecdsaAvail = true
  604. }
  605. }
  606. if c.config.GetClientCertificate != nil {
  607. var signatureSchemes []SignatureScheme
  608. if !certReq.hasSignatureAndHash {
  609. // Prior to TLS 1.2, the signature schemes were not
  610. // included in the certificate request message. In this
  611. // case we use a plausible list based on the acceptable
  612. // certificate types.
  613. signatureSchemes = tls11SignatureSchemes
  614. if !ecdsaAvail {
  615. signatureSchemes = signatureSchemes[tls11SignatureSchemesNumECDSA:]
  616. }
  617. if !rsaAvail {
  618. signatureSchemes = signatureSchemes[:len(signatureSchemes)-tls11SignatureSchemesNumRSA]
  619. }
  620. } else {
  621. signatureSchemes = make([]SignatureScheme, 0, len(certReq.signatureAndHashes))
  622. for _, sah := range certReq.signatureAndHashes {
  623. signatureSchemes = append(signatureSchemes, SignatureScheme(sah.hash)<<8+SignatureScheme(sah.signature))
  624. }
  625. }
  626. return c.config.GetClientCertificate(&CertificateRequestInfo{
  627. AcceptableCAs: certReq.certificateAuthorities,
  628. SignatureSchemes: signatureSchemes,
  629. })
  630. }
  631. // RFC 4346 on the certificateAuthorities field: A list of the
  632. // distinguished names of acceptable certificate authorities.
  633. // These distinguished names may specify a desired
  634. // distinguished name for a root CA or for a subordinate CA;
  635. // thus, this message can be used to describe both known roots
  636. // and a desired authorization space. If the
  637. // certificate_authorities list is empty then the client MAY
  638. // send any certificate of the appropriate
  639. // ClientCertificateType, unless there is some external
  640. // arrangement to the contrary.
  641. // We need to search our list of client certs for one
  642. // where SignatureAlgorithm is acceptable to the server and the
  643. // Issuer is in certReq.certificateAuthorities
  644. findCert:
  645. for i, chain := range c.config.Certificates {
  646. if !rsaAvail && !ecdsaAvail {
  647. continue
  648. }
  649. for j, cert := range chain.Certificate {
  650. x509Cert := chain.Leaf
  651. // parse the certificate if this isn't the leaf
  652. // node, or if chain.Leaf was nil
  653. if j != 0 || x509Cert == nil {
  654. var err error
  655. if x509Cert, err = x509.ParseCertificate(cert); err != nil {
  656. c.sendAlert(alertInternalError)
  657. return nil, errors.New("tls: failed to parse client certificate #" + strconv.Itoa(i) + ": " + err.Error())
  658. }
  659. }
  660. switch {
  661. case rsaAvail && x509Cert.PublicKeyAlgorithm == x509.RSA:
  662. case ecdsaAvail && x509Cert.PublicKeyAlgorithm == x509.ECDSA:
  663. default:
  664. continue findCert
  665. }
  666. if len(certReq.certificateAuthorities) == 0 {
  667. // they gave us an empty list, so just take the
  668. // first cert from c.config.Certificates
  669. return &chain, nil
  670. }
  671. for _, ca := range certReq.certificateAuthorities {
  672. if bytes.Equal(x509Cert.RawIssuer, ca) {
  673. return &chain, nil
  674. }
  675. }
  676. }
  677. }
  678. // No acceptable certificate found. Don't send a certificate.
  679. return new(Certificate), nil
  680. }
  681. // clientSessionCacheKey returns a key used to cache sessionTickets that could
  682. // be used to resume previously negotiated TLS sessions with a server.
  683. func clientSessionCacheKey(serverAddr net.Addr, config *Config) string {
  684. if len(config.ServerName) > 0 {
  685. return config.ServerName
  686. }
  687. return serverAddr.String()
  688. }
  689. // mutualProtocol finds the mutual Next Protocol Negotiation or ALPN protocol
  690. // given list of possible protocols and a list of the preference order. The
  691. // first list must not be empty. It returns the resulting protocol and flag
  692. // indicating if the fallback case was reached.
  693. func mutualProtocol(protos, preferenceProtos []string) (string, bool) {
  694. for _, s := range preferenceProtos {
  695. for _, c := range protos {
  696. if s == c {
  697. return s, false
  698. }
  699. }
  700. }
  701. return protos[0], true
  702. }
  703. // hostnameInSNI converts name into an appropriate hostname for SNI.
  704. // Literal IP addresses and absolute FQDNs are not permitted as SNI values.
  705. // See https://tools.ietf.org/html/rfc6066#section-3.
  706. func hostnameInSNI(name string) string {
  707. host := name
  708. if len(host) > 0 && host[0] == '[' && host[len(host)-1] == ']' {
  709. host = host[1 : len(host)-1]
  710. }
  711. if i := strings.LastIndex(host, "%"); i > 0 {
  712. host = host[:i]
  713. }
  714. if net.ParseIP(host) != nil {
  715. return ""
  716. }
  717. for len(name) > 0 && name[len(name)-1] == '.' {
  718. name = name[:len(name)-1]
  719. }
  720. return name
  721. }