blob: 220e489b44dd7ead4401ac8f0dff8618f88bbbc9 [file] [log] [blame]
Adam Langley95c29f32014-06-20 12:00:00 -07001// 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
5package main
6
7import (
8 "bytes"
9 "crypto/ecdsa"
10 "crypto/rsa"
11 "crypto/subtle"
12 "crypto/x509"
13 "encoding/asn1"
14 "errors"
15 "fmt"
16 "io"
17 "net"
18 "strconv"
19)
20
21type clientHandshakeState struct {
22 c *Conn
23 serverHello *serverHelloMsg
24 hello *clientHelloMsg
25 suite *cipherSuite
26 finishedHash finishedHash
27 masterSecret []byte
28 session *ClientSessionState
29}
30
31func (c *Conn) clientHandshake() error {
32 if c.config == nil {
33 c.config = defaultConfig()
34 }
35
36 if len(c.config.ServerName) == 0 && !c.config.InsecureSkipVerify {
37 return errors.New("tls: either ServerName or InsecureSkipVerify must be specified in the tls.Config")
38 }
39
40 hello := &clientHelloMsg{
41 vers: c.config.maxVersion(),
42 compressionMethods: []uint8{compressionNone},
43 random: make([]byte, 32),
44 ocspStapling: true,
45 serverName: c.config.ServerName,
46 supportedCurves: c.config.curvePreferences(),
47 supportedPoints: []uint8{pointFormatUncompressed},
48 nextProtoNeg: len(c.config.NextProtos) > 0,
49 secureRenegotiation: true,
David Benjamin35a7a442014-07-05 00:23:20 -040050 duplicateExtension: c.config.Bugs.DuplicateExtension,
Adam Langley95c29f32014-06-20 12:00:00 -070051 }
52
53 possibleCipherSuites := c.config.cipherSuites()
54 hello.cipherSuites = make([]uint16, 0, len(possibleCipherSuites))
55
56NextCipherSuite:
57 for _, suiteId := range possibleCipherSuites {
58 for _, suite := range cipherSuites {
59 if suite.id != suiteId {
60 continue
61 }
62 // Don't advertise TLS 1.2-only cipher suites unless
63 // we're attempting TLS 1.2.
64 if hello.vers < VersionTLS12 && suite.flags&suiteTLS12 != 0 {
65 continue
66 }
67 hello.cipherSuites = append(hello.cipherSuites, suiteId)
68 continue NextCipherSuite
69 }
70 }
71
72 _, err := io.ReadFull(c.config.rand(), hello.random)
73 if err != nil {
74 c.sendAlert(alertInternalError)
75 return errors.New("tls: short read from Rand: " + err.Error())
76 }
77
78 if hello.vers >= VersionTLS12 {
79 hello.signatureAndHashes = supportedSKXSignatureAlgorithms
80 }
81
82 var session *ClientSessionState
83 var cacheKey string
84 sessionCache := c.config.ClientSessionCache
85 if c.config.SessionTicketsDisabled {
86 sessionCache = nil
87 }
88
89 if sessionCache != nil {
90 hello.ticketSupported = true
91
92 // Try to resume a previously negotiated TLS session, if
93 // available.
94 cacheKey = clientSessionCacheKey(c.conn.RemoteAddr(), c.config)
95 candidateSession, ok := sessionCache.Get(cacheKey)
96 if ok {
97 // Check that the ciphersuite/version used for the
98 // previous session are still valid.
99 cipherSuiteOk := false
100 for _, id := range hello.cipherSuites {
101 if id == candidateSession.cipherSuite {
102 cipherSuiteOk = true
103 break
104 }
105 }
106
107 versOk := candidateSession.vers >= c.config.minVersion() &&
108 candidateSession.vers <= c.config.maxVersion()
109 if versOk && cipherSuiteOk {
110 session = candidateSession
111 }
112 }
113 }
114
115 if session != nil {
116 hello.sessionTicket = session.sessionTicket
117 // A random session ID is used to detect when the
118 // server accepted the ticket and is resuming a session
119 // (see RFC 5077).
120 hello.sessionId = make([]byte, 16)
121 if _, err := io.ReadFull(c.config.rand(), hello.sessionId); err != nil {
122 c.sendAlert(alertInternalError)
123 return errors.New("tls: short read from Rand: " + err.Error())
124 }
125 }
126
127 c.writeRecord(recordTypeHandshake, hello.marshal())
128
129 msg, err := c.readHandshake()
130 if err != nil {
131 return err
132 }
133 serverHello, ok := msg.(*serverHelloMsg)
134 if !ok {
135 c.sendAlert(alertUnexpectedMessage)
136 return unexpectedMessageError(serverHello, msg)
137 }
138
139 vers, ok := c.config.mutualVersion(serverHello.vers)
140 if !ok || vers < VersionTLS10 {
141 // TLS 1.0 is the minimum version supported as a client.
142 c.sendAlert(alertProtocolVersion)
143 return fmt.Errorf("tls: server selected unsupported protocol version %x", serverHello.vers)
144 }
145 c.vers = vers
146 c.haveVers = true
147
148 suite := mutualCipherSuite(c.config.cipherSuites(), serverHello.cipherSuite)
149 if suite == nil {
150 c.sendAlert(alertHandshakeFailure)
151 return fmt.Errorf("tls: server selected an unsupported cipher suite")
152 }
153
154 hs := &clientHandshakeState{
155 c: c,
156 serverHello: serverHello,
157 hello: hello,
158 suite: suite,
159 finishedHash: newFinishedHash(c.vers, suite),
160 session: session,
161 }
162
163 hs.finishedHash.Write(hs.hello.marshal())
164 hs.finishedHash.Write(hs.serverHello.marshal())
165
166 isResume, err := hs.processServerHello()
167 if err != nil {
168 return err
169 }
170
171 if isResume {
172 if err := hs.establishKeys(); err != nil {
173 return err
174 }
175 if err := hs.readSessionTicket(); err != nil {
176 return err
177 }
178 if err := hs.readFinished(); err != nil {
179 return err
180 }
181 if err := hs.sendFinished(); err != nil {
182 return err
183 }
184 } else {
185 if err := hs.doFullHandshake(); err != nil {
186 return err
187 }
188 if err := hs.establishKeys(); err != nil {
189 return err
190 }
191 if err := hs.sendFinished(); err != nil {
192 return err
193 }
194 if err := hs.readSessionTicket(); err != nil {
195 return err
196 }
197 if err := hs.readFinished(); err != nil {
198 return err
199 }
200 }
201
202 if sessionCache != nil && hs.session != nil && session != hs.session {
203 sessionCache.Put(cacheKey, hs.session)
204 }
205
206 c.didResume = isResume
207 c.handshakeComplete = true
208 c.cipherSuite = suite.id
209 return nil
210}
211
212func (hs *clientHandshakeState) doFullHandshake() error {
213 c := hs.c
214
215 msg, err := c.readHandshake()
216 if err != nil {
217 return err
218 }
219 certMsg, ok := msg.(*certificateMsg)
220 if !ok || len(certMsg.certificates) == 0 {
221 c.sendAlert(alertUnexpectedMessage)
222 return unexpectedMessageError(certMsg, msg)
223 }
224 hs.finishedHash.Write(certMsg.marshal())
225
226 certs := make([]*x509.Certificate, len(certMsg.certificates))
227 for i, asn1Data := range certMsg.certificates {
228 cert, err := x509.ParseCertificate(asn1Data)
229 if err != nil {
230 c.sendAlert(alertBadCertificate)
231 return errors.New("tls: failed to parse certificate from server: " + err.Error())
232 }
233 certs[i] = cert
234 }
235
236 if !c.config.InsecureSkipVerify {
237 opts := x509.VerifyOptions{
238 Roots: c.config.RootCAs,
239 CurrentTime: c.config.time(),
240 DNSName: c.config.ServerName,
241 Intermediates: x509.NewCertPool(),
242 }
243
244 for i, cert := range certs {
245 if i == 0 {
246 continue
247 }
248 opts.Intermediates.AddCert(cert)
249 }
250 c.verifiedChains, err = certs[0].Verify(opts)
251 if err != nil {
252 c.sendAlert(alertBadCertificate)
253 return err
254 }
255 }
256
257 switch certs[0].PublicKey.(type) {
258 case *rsa.PublicKey, *ecdsa.PublicKey:
259 break
260 default:
261 c.sendAlert(alertUnsupportedCertificate)
262 return fmt.Errorf("tls: server's certificate contains an unsupported type of public key: %T", certs[0].PublicKey)
263 }
264
265 c.peerCertificates = certs
266
267 if hs.serverHello.ocspStapling {
268 msg, err = c.readHandshake()
269 if err != nil {
270 return err
271 }
272 cs, ok := msg.(*certificateStatusMsg)
273 if !ok {
274 c.sendAlert(alertUnexpectedMessage)
275 return unexpectedMessageError(cs, msg)
276 }
277 hs.finishedHash.Write(cs.marshal())
278
279 if cs.statusType == statusTypeOCSP {
280 c.ocspResponse = cs.response
281 }
282 }
283
284 msg, err = c.readHandshake()
285 if err != nil {
286 return err
287 }
288
289 keyAgreement := hs.suite.ka(c.vers)
290
291 skx, ok := msg.(*serverKeyExchangeMsg)
292 if ok {
293 hs.finishedHash.Write(skx.marshal())
294 err = keyAgreement.processServerKeyExchange(c.config, hs.hello, hs.serverHello, certs[0], skx)
295 if err != nil {
296 c.sendAlert(alertUnexpectedMessage)
297 return err
298 }
299
300 msg, err = c.readHandshake()
301 if err != nil {
302 return err
303 }
304 }
305
306 var chainToSend *Certificate
307 var certRequested bool
308 certReq, ok := msg.(*certificateRequestMsg)
309 if ok {
310 certRequested = true
311
312 // RFC 4346 on the certificateAuthorities field:
313 // A list of the distinguished names of acceptable certificate
314 // authorities. These distinguished names may specify a desired
315 // distinguished name for a root CA or for a subordinate CA;
316 // thus, this message can be used to describe both known roots
317 // and a desired authorization space. If the
318 // certificate_authorities list is empty then the client MAY
319 // send any certificate of the appropriate
320 // ClientCertificateType, unless there is some external
321 // arrangement to the contrary.
322
323 hs.finishedHash.Write(certReq.marshal())
324
325 var rsaAvail, ecdsaAvail bool
326 for _, certType := range certReq.certificateTypes {
327 switch certType {
328 case certTypeRSASign:
329 rsaAvail = true
330 case certTypeECDSASign:
331 ecdsaAvail = true
332 }
333 }
334
335 // We need to search our list of client certs for one
336 // where SignatureAlgorithm is RSA and the Issuer is in
337 // certReq.certificateAuthorities
338 findCert:
339 for i, chain := range c.config.Certificates {
340 if !rsaAvail && !ecdsaAvail {
341 continue
342 }
343
344 for j, cert := range chain.Certificate {
345 x509Cert := chain.Leaf
346 // parse the certificate if this isn't the leaf
347 // node, or if chain.Leaf was nil
348 if j != 0 || x509Cert == nil {
349 if x509Cert, err = x509.ParseCertificate(cert); err != nil {
350 c.sendAlert(alertInternalError)
351 return errors.New("tls: failed to parse client certificate #" + strconv.Itoa(i) + ": " + err.Error())
352 }
353 }
354
355 switch {
356 case rsaAvail && x509Cert.PublicKeyAlgorithm == x509.RSA:
357 case ecdsaAvail && x509Cert.PublicKeyAlgorithm == x509.ECDSA:
358 default:
359 continue findCert
360 }
361
362 if len(certReq.certificateAuthorities) == 0 {
363 // they gave us an empty list, so just take the
364 // first RSA cert from c.config.Certificates
365 chainToSend = &chain
366 break findCert
367 }
368
369 for _, ca := range certReq.certificateAuthorities {
370 if bytes.Equal(x509Cert.RawIssuer, ca) {
371 chainToSend = &chain
372 break findCert
373 }
374 }
375 }
376 }
377
378 msg, err = c.readHandshake()
379 if err != nil {
380 return err
381 }
382 }
383
384 shd, ok := msg.(*serverHelloDoneMsg)
385 if !ok {
386 c.sendAlert(alertUnexpectedMessage)
387 return unexpectedMessageError(shd, msg)
388 }
389 hs.finishedHash.Write(shd.marshal())
390
391 // If the server requested a certificate then we have to send a
392 // Certificate message, even if it's empty because we don't have a
393 // certificate to send.
394 if certRequested {
395 certMsg = new(certificateMsg)
396 if chainToSend != nil {
397 certMsg.certificates = chainToSend.Certificate
398 }
399 hs.finishedHash.Write(certMsg.marshal())
400 c.writeRecord(recordTypeHandshake, certMsg.marshal())
401 }
402
403 preMasterSecret, ckx, err := keyAgreement.generateClientKeyExchange(c.config, hs.hello, certs[0])
404 if err != nil {
405 c.sendAlert(alertInternalError)
406 return err
407 }
408 if ckx != nil {
409 hs.finishedHash.Write(ckx.marshal())
410 c.writeRecord(recordTypeHandshake, ckx.marshal())
411 }
412
413 if chainToSend != nil {
414 var signed []byte
415 certVerify := &certificateVerifyMsg{
416 hasSignatureAndHash: c.vers >= VersionTLS12,
417 }
418
419 switch key := c.config.Certificates[0].PrivateKey.(type) {
420 case *ecdsa.PrivateKey:
421 digest, _, hashId := hs.finishedHash.hashForClientCertificate(signatureECDSA)
422 r, s, err := ecdsa.Sign(c.config.rand(), key, digest)
423 if err == nil {
424 signed, err = asn1.Marshal(ecdsaSignature{r, s})
425 }
426 certVerify.signatureAndHash.signature = signatureECDSA
427 certVerify.signatureAndHash.hash = hashId
428 case *rsa.PrivateKey:
429 digest, hashFunc, hashId := hs.finishedHash.hashForClientCertificate(signatureRSA)
430 signed, err = rsa.SignPKCS1v15(c.config.rand(), key, hashFunc, digest)
431 certVerify.signatureAndHash.signature = signatureRSA
432 certVerify.signatureAndHash.hash = hashId
433 default:
434 err = errors.New("unknown private key type")
435 }
436 if err != nil {
437 c.sendAlert(alertInternalError)
438 return errors.New("tls: failed to sign handshake with client certificate: " + err.Error())
439 }
440 certVerify.signature = signed
441
442 hs.finishedHash.Write(certVerify.marshal())
443 c.writeRecord(recordTypeHandshake, certVerify.marshal())
444 }
445
446 hs.masterSecret = masterFromPreMasterSecret(c.vers, hs.suite, preMasterSecret, hs.hello.random, hs.serverHello.random)
447 return nil
448}
449
450func (hs *clientHandshakeState) establishKeys() error {
451 c := hs.c
452
453 clientMAC, serverMAC, clientKey, serverKey, clientIV, serverIV :=
454 keysFromMasterSecret(c.vers, hs.suite, hs.masterSecret, hs.hello.random, hs.serverHello.random, hs.suite.macLen, hs.suite.keyLen, hs.suite.ivLen)
455 var clientCipher, serverCipher interface{}
456 var clientHash, serverHash macFunction
457 if hs.suite.cipher != nil {
458 clientCipher = hs.suite.cipher(clientKey, clientIV, false /* not for reading */)
459 clientHash = hs.suite.mac(c.vers, clientMAC)
460 serverCipher = hs.suite.cipher(serverKey, serverIV, true /* for reading */)
461 serverHash = hs.suite.mac(c.vers, serverMAC)
462 } else {
463 clientCipher = hs.suite.aead(clientKey, clientIV)
464 serverCipher = hs.suite.aead(serverKey, serverIV)
465 }
466
467 c.in.prepareCipherSpec(c.vers, serverCipher, serverHash)
468 c.out.prepareCipherSpec(c.vers, clientCipher, clientHash)
469 return nil
470}
471
472func (hs *clientHandshakeState) serverResumedSession() bool {
473 // If the server responded with the same sessionId then it means the
474 // sessionTicket is being used to resume a TLS session.
475 return hs.session != nil && hs.hello.sessionId != nil &&
476 bytes.Equal(hs.serverHello.sessionId, hs.hello.sessionId)
477}
478
479func (hs *clientHandshakeState) processServerHello() (bool, error) {
480 c := hs.c
481
482 if hs.serverHello.compressionMethod != compressionNone {
483 c.sendAlert(alertUnexpectedMessage)
484 return false, errors.New("tls: server selected unsupported compression format")
485 }
486
487 if !hs.hello.nextProtoNeg && hs.serverHello.nextProtoNeg {
488 c.sendAlert(alertHandshakeFailure)
489 return false, errors.New("server advertised unrequested NPN extension")
490 }
491
492 if hs.serverResumedSession() {
493 // Restore masterSecret and peerCerts from previous state
494 hs.masterSecret = hs.session.masterSecret
495 c.peerCertificates = hs.session.serverCertificates
496 return true, nil
497 }
498 return false, nil
499}
500
501func (hs *clientHandshakeState) readFinished() error {
502 c := hs.c
503
504 c.readRecord(recordTypeChangeCipherSpec)
505 if err := c.in.error(); err != nil {
506 return err
507 }
508
509 msg, err := c.readHandshake()
510 if err != nil {
511 return err
512 }
513 serverFinished, ok := msg.(*finishedMsg)
514 if !ok {
515 c.sendAlert(alertUnexpectedMessage)
516 return unexpectedMessageError(serverFinished, msg)
517 }
518
519 verify := hs.finishedHash.serverSum(hs.masterSecret)
520 if len(verify) != len(serverFinished.verifyData) ||
521 subtle.ConstantTimeCompare(verify, serverFinished.verifyData) != 1 {
522 c.sendAlert(alertHandshakeFailure)
523 return errors.New("tls: server's Finished message was incorrect")
524 }
525 hs.finishedHash.Write(serverFinished.marshal())
526 return nil
527}
528
529func (hs *clientHandshakeState) readSessionTicket() error {
530 if !hs.serverHello.ticketSupported {
531 return nil
532 }
533
534 c := hs.c
535 msg, err := c.readHandshake()
536 if err != nil {
537 return err
538 }
539 sessionTicketMsg, ok := msg.(*newSessionTicketMsg)
540 if !ok {
541 c.sendAlert(alertUnexpectedMessage)
542 return unexpectedMessageError(sessionTicketMsg, msg)
543 }
544 hs.finishedHash.Write(sessionTicketMsg.marshal())
545
546 hs.session = &ClientSessionState{
547 sessionTicket: sessionTicketMsg.ticket,
548 vers: c.vers,
549 cipherSuite: hs.suite.id,
550 masterSecret: hs.masterSecret,
551 serverCertificates: c.peerCertificates,
552 }
553
554 return nil
555}
556
557func (hs *clientHandshakeState) sendFinished() error {
558 c := hs.c
559
560 c.writeRecord(recordTypeChangeCipherSpec, []byte{1})
561 if hs.serverHello.nextProtoNeg {
562 nextProto := new(nextProtoMsg)
563 proto, fallback := mutualProtocol(c.config.NextProtos, hs.serverHello.nextProtos)
564 nextProto.proto = proto
565 c.clientProtocol = proto
566 c.clientProtocolFallback = fallback
567
568 hs.finishedHash.Write(nextProto.marshal())
569 c.writeRecord(recordTypeHandshake, nextProto.marshal())
570 }
571
572 finished := new(finishedMsg)
573 finished.verifyData = hs.finishedHash.clientSum(hs.masterSecret)
574 hs.finishedHash.Write(finished.marshal())
575 c.writeRecord(recordTypeHandshake, finished.marshal())
576 return nil
577}
578
579// clientSessionCacheKey returns a key used to cache sessionTickets that could
580// be used to resume previously negotiated TLS sessions with a server.
581func clientSessionCacheKey(serverAddr net.Addr, config *Config) string {
582 if len(config.ServerName) > 0 {
583 return config.ServerName
584 }
585 return serverAddr.String()
586}
587
588// mutualProtocol finds the mutual Next Protocol Negotiation protocol given the
589// set of client and server supported protocols. The set of client supported
590// protocols must not be empty. It returns the resulting protocol and flag
591// indicating if the fallback case was reached.
592func mutualProtocol(clientProtos, serverProtos []string) (string, bool) {
593 for _, s := range serverProtos {
594 for _, c := range clientProtos {
595 if s == c {
596 return s, false
597 }
598 }
599 }
600
601 return clientProtos[0], true
602}