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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
Adam Langleydc7e9c42015-09-29 15:21:04 -07005package runner
Adam Langley95c29f32014-06-20 12:00:00 -07006
7import (
8 "container/list"
9 "crypto"
David Benjamind30a9902014-08-24 01:44:23 -040010 "crypto/ecdsa"
Adam Langley95c29f32014-06-20 12:00:00 -070011 "crypto/rand"
12 "crypto/x509"
13 "fmt"
14 "io"
15 "math/big"
16 "strings"
17 "sync"
18 "time"
19)
20
Nick Harperb41d2e42016-07-01 17:50:32 -040021// TODO(davidben): Flip this to true when the C code lands.
22const enableTLS13Handshake = false
23
Adam Langley95c29f32014-06-20 12:00:00 -070024const (
25 VersionSSL30 = 0x0300
26 VersionTLS10 = 0x0301
27 VersionTLS11 = 0x0302
28 VersionTLS12 = 0x0303
Nick Harper1fd39d82016-06-14 18:14:35 -070029 VersionTLS13 = 0x0304
Adam Langley95c29f32014-06-20 12:00:00 -070030)
31
32const (
David Benjamin83c0bc92014-08-04 01:23:53 -040033 maxPlaintext = 16384 // maximum plaintext payload length
34 maxCiphertext = 16384 + 2048 // maximum ciphertext payload length
35 tlsRecordHeaderLen = 5 // record header length
36 dtlsRecordHeaderLen = 13
37 maxHandshake = 65536 // maximum handshake we support (protocol max is 16 MB)
Adam Langley95c29f32014-06-20 12:00:00 -070038
39 minVersion = VersionSSL30
Nick Harper1fd39d82016-06-14 18:14:35 -070040 maxVersion = VersionTLS13
Adam Langley95c29f32014-06-20 12:00:00 -070041)
42
43// TLS record types.
44type recordType uint8
45
46const (
47 recordTypeChangeCipherSpec recordType = 20
48 recordTypeAlert recordType = 21
49 recordTypeHandshake recordType = 22
50 recordTypeApplicationData recordType = 23
51)
52
53// TLS handshake message types.
54const (
David Benjamincedff872016-06-30 18:55:18 -040055 typeHelloRequest uint8 = 0
56 typeClientHello uint8 = 1
57 typeServerHello uint8 = 2
58 typeHelloVerifyRequest uint8 = 3
59 typeNewSessionTicket uint8 = 4
60 typeHelloRetryRequest uint8 = 6 // draft-ietf-tls-tls13-13
61 typeEncryptedExtensions uint8 = 8 // draft-ietf-tls-tls13-13
62 typeCertificate uint8 = 11
63 typeServerKeyExchange uint8 = 12
64 typeCertificateRequest uint8 = 13
65 typeServerHelloDone uint8 = 14
66 typeCertificateVerify uint8 = 15
67 typeClientKeyExchange uint8 = 16
68 typeFinished uint8 = 20
69 typeCertificateStatus uint8 = 22
70 typeNextProtocol uint8 = 67 // Not IANA assigned
71 typeChannelID uint8 = 203 // Not IANA assigned
Adam Langley95c29f32014-06-20 12:00:00 -070072)
73
74// TLS compression types.
75const (
76 compressionNone uint8 = 0
77)
78
79// TLS extension numbers
80const (
David Benjamin61f95272014-11-25 01:55:35 -050081 extensionServerName uint16 = 0
82 extensionStatusRequest uint16 = 5
83 extensionSupportedCurves uint16 = 10
84 extensionSupportedPoints uint16 = 11
85 extensionSignatureAlgorithms uint16 = 13
86 extensionUseSRTP uint16 = 14
87 extensionALPN uint16 = 16
88 extensionSignedCertificateTimestamp uint16 = 18
89 extensionExtendedMasterSecret uint16 = 23
90 extensionSessionTicket uint16 = 35
David Benjamincedff872016-06-30 18:55:18 -040091 extensionKeyShare uint16 = 40 // draft-ietf-tls-tls13-13
92 extensionPreSharedKey uint16 = 41 // draft-ietf-tls-tls13-13
93 extensionEarlyData uint16 = 42 // draft-ietf-tls-tls13-13
94 extensionCookie uint16 = 44 // draft-ietf-tls-tls13-13
David Benjamin399e7c92015-07-30 23:01:27 -040095 extensionCustom uint16 = 1234 // not IANA assigned
David Benjamin61f95272014-11-25 01:55:35 -050096 extensionNextProtoNeg uint16 = 13172 // not IANA assigned
97 extensionRenegotiationInfo uint16 = 0xff01
98 extensionChannelID uint16 = 30032 // not IANA assigned
Adam Langley95c29f32014-06-20 12:00:00 -070099)
100
101// TLS signaling cipher suite values
102const (
103 scsvRenegotiation uint16 = 0x00ff
104)
105
106// CurveID is the type of a TLS identifier for an elliptic curve. See
107// http://www.iana.org/assignments/tls-parameters/tls-parameters.xml#tls-parameters-8
108type CurveID uint16
109
110const (
David Benjamincba2b622015-12-18 22:13:41 -0500111 CurveP224 CurveID = 21
112 CurveP256 CurveID = 23
113 CurveP384 CurveID = 24
114 CurveP521 CurveID = 25
115 CurveX25519 CurveID = 29
Adam Langley95c29f32014-06-20 12:00:00 -0700116)
117
118// TLS Elliptic Curve Point Formats
119// http://www.iana.org/assignments/tls-parameters/tls-parameters.xml#tls-parameters-9
120const (
121 pointFormatUncompressed uint8 = 0
122)
123
124// TLS CertificateStatusType (RFC 3546)
125const (
126 statusTypeOCSP uint8 = 1
127)
128
129// Certificate types (for certificateRequestMsg)
130const (
David Benjamin7b030512014-07-08 17:30:11 -0400131 CertTypeRSASign = 1 // A certificate containing an RSA key
132 CertTypeDSSSign = 2 // A certificate containing a DSA key
133 CertTypeRSAFixedDH = 3 // A certificate containing a static DH key
134 CertTypeDSSFixedDH = 4 // A certificate containing a static DH key
Adam Langley95c29f32014-06-20 12:00:00 -0700135
136 // See RFC4492 sections 3 and 5.5.
David Benjamin7b030512014-07-08 17:30:11 -0400137 CertTypeECDSASign = 64 // A certificate containing an ECDSA-capable public key, signed with ECDSA.
138 CertTypeRSAFixedECDH = 65 // A certificate containing an ECDH-capable public key, signed with RSA.
139 CertTypeECDSAFixedECDH = 66 // A certificate containing an ECDH-capable public key, signed with ECDSA.
Adam Langley95c29f32014-06-20 12:00:00 -0700140
141 // Rest of these are reserved by the TLS spec
142)
143
Nick Harper60edffd2016-06-21 15:19:24 -0700144// signatureAlgorithm corresponds to a SignatureScheme value from TLS 1.3. Note
145// that TLS 1.3 names the production 'SignatureScheme' to avoid colliding with
146// TLS 1.2's SignatureAlgorithm but otherwise refers to them as 'signature
147// algorithms' throughout. We match the latter.
148type signatureAlgorithm uint16
Adam Langley95c29f32014-06-20 12:00:00 -0700149
Adam Langley95c29f32014-06-20 12:00:00 -0700150const (
Nick Harper60edffd2016-06-21 15:19:24 -0700151 // RSASSA-PKCS1-v1_5 algorithms
152 signatureRSAPKCS1WithMD5 signatureAlgorithm = 0x0101
153 signatureRSAPKCS1WithSHA1 signatureAlgorithm = 0x0201
154 signatureRSAPKCS1WithSHA256 signatureAlgorithm = 0x0401
155 signatureRSAPKCS1WithSHA384 signatureAlgorithm = 0x0501
156 signatureRSAPKCS1WithSHA512 signatureAlgorithm = 0x0601
Adam Langley95c29f32014-06-20 12:00:00 -0700157
Nick Harper60edffd2016-06-21 15:19:24 -0700158 // ECDSA algorithms
159 signatureECDSAWithSHA1 signatureAlgorithm = 0x0203
160 signatureECDSAWithP256AndSHA256 signatureAlgorithm = 0x0403
161 signatureECDSAWithP384AndSHA384 signatureAlgorithm = 0x0503
162 signatureECDSAWithP521AndSHA512 signatureAlgorithm = 0x0603
163
164 // RSASSA-PSS algorithms
165 signatureRSAPSSWithSHA256 signatureAlgorithm = 0x0700
166 signatureRSAPSSWithSHA384 signatureAlgorithm = 0x0701
167 signatureRSAPSSWithSHA512 signatureAlgorithm = 0x0702
168
169 // EdDSA algorithms
170 signatureEd25519 signatureAlgorithm = 0x0703
171 signatureEd448 signatureAlgorithm = 0x0704
172)
Adam Langley95c29f32014-06-20 12:00:00 -0700173
David Benjamin7a41d372016-07-09 11:21:54 -0700174// supportedSignatureAlgorithms contains the default supported signature
175// algorithms.
176var supportedSignatureAlgorithms = []signatureAlgorithm{
177 signatureRSAPSSWithSHA256,
Nick Harper60edffd2016-06-21 15:19:24 -0700178 signatureRSAPKCS1WithSHA256,
179 signatureECDSAWithP256AndSHA256,
180 signatureRSAPKCS1WithSHA1,
181 signatureECDSAWithSHA1,
Adam Langley95c29f32014-06-20 12:00:00 -0700182}
183
David Benjaminca6c8262014-11-15 19:06:08 -0500184// SRTP protection profiles (See RFC 5764, section 4.1.2)
185const (
186 SRTP_AES128_CM_HMAC_SHA1_80 uint16 = 0x0001
187 SRTP_AES128_CM_HMAC_SHA1_32 = 0x0002
188)
189
Adam Langley95c29f32014-06-20 12:00:00 -0700190// ConnectionState records basic TLS details about the connection.
191type ConnectionState struct {
192 Version uint16 // TLS version used by the connection (e.g. VersionTLS12)
193 HandshakeComplete bool // TLS handshake is complete
194 DidResume bool // connection resumes a previous TLS connection
195 CipherSuite uint16 // cipher suite in use (TLS_RSA_WITH_RC4_128_SHA, ...)
196 NegotiatedProtocol string // negotiated next protocol (from Config.NextProtos)
197 NegotiatedProtocolIsMutual bool // negotiated protocol was advertised by server
David Benjaminfc7b0862014-09-06 13:21:53 -0400198 NegotiatedProtocolFromALPN bool // protocol negotiated with ALPN
Adam Langley95c29f32014-06-20 12:00:00 -0700199 ServerName string // server name requested by client, if any (server side only)
200 PeerCertificates []*x509.Certificate // certificate chain presented by remote peer
201 VerifiedChains [][]*x509.Certificate // verified chains built from PeerCertificates
David Benjamind30a9902014-08-24 01:44:23 -0400202 ChannelID *ecdsa.PublicKey // the channel ID for this connection
David Benjaminca6c8262014-11-15 19:06:08 -0500203 SRTPProtectionProfile uint16 // the negotiated DTLS-SRTP protection profile
David Benjaminc0577622015-09-12 18:28:38 -0400204 TLSUnique []byte // the tls-unique channel binding
Paul Lietar4fac72e2015-09-09 13:44:55 +0100205 SCTList []byte // signed certificate timestamp list
Nick Harper60edffd2016-06-21 15:19:24 -0700206 PeerSignatureAlgorithm signatureAlgorithm // algorithm used by the peer in the handshake
Adam Langley95c29f32014-06-20 12:00:00 -0700207}
208
209// ClientAuthType declares the policy the server will follow for
210// TLS Client Authentication.
211type ClientAuthType int
212
213const (
214 NoClientCert ClientAuthType = iota
215 RequestClientCert
216 RequireAnyClientCert
217 VerifyClientCertIfGiven
218 RequireAndVerifyClientCert
219)
220
221// ClientSessionState contains the state needed by clients to resume TLS
222// sessions.
223type ClientSessionState struct {
David Benjaminfe8eb9a2014-11-17 03:19:02 -0500224 sessionId []uint8 // Session ID supplied by the server. nil if the session has a ticket.
Adam Langley75712922014-10-10 16:23:43 -0700225 sessionTicket []uint8 // Encrypted ticket used for session resumption with server
226 vers uint16 // SSL/TLS version negotiated for the session
227 cipherSuite uint16 // Ciphersuite negotiated for the session
228 masterSecret []byte // MasterSecret generated by client on a full handshake
229 handshakeHash []byte // Handshake hash for Channel ID purposes.
230 serverCertificates []*x509.Certificate // Certificate chain presented by the server
231 extendedMasterSecret bool // Whether an extended master secret was used to generate the session
Paul Lietar62be8ac2015-09-16 10:03:30 +0100232 sctList []byte
233 ocspResponse []byte
Adam Langley95c29f32014-06-20 12:00:00 -0700234}
235
236// ClientSessionCache is a cache of ClientSessionState objects that can be used
237// by a client to resume a TLS session with a given server. ClientSessionCache
238// implementations should expect to be called concurrently from different
239// goroutines.
240type ClientSessionCache interface {
241 // Get searches for a ClientSessionState associated with the given key.
242 // On return, ok is true if one was found.
243 Get(sessionKey string) (session *ClientSessionState, ok bool)
244
245 // Put adds the ClientSessionState to the cache with the given key.
246 Put(sessionKey string, cs *ClientSessionState)
247}
248
David Benjaminfe8eb9a2014-11-17 03:19:02 -0500249// ServerSessionCache is a cache of sessionState objects that can be used by a
250// client to resume a TLS session with a given server. ServerSessionCache
251// implementations should expect to be called concurrently from different
252// goroutines.
253type ServerSessionCache interface {
254 // Get searches for a sessionState associated with the given session
255 // ID. On return, ok is true if one was found.
256 Get(sessionId string) (session *sessionState, ok bool)
257
258 // Put adds the sessionState to the cache with the given session ID.
259 Put(sessionId string, session *sessionState)
260}
261
Adam Langley95c29f32014-06-20 12:00:00 -0700262// A Config structure is used to configure a TLS client or server.
263// After one has been passed to a TLS function it must not be
264// modified. A Config may be reused; the tls package will also not
265// modify it.
266type Config struct {
267 // Rand provides the source of entropy for nonces and RSA blinding.
268 // If Rand is nil, TLS uses the cryptographic random reader in package
269 // crypto/rand.
270 // The Reader must be safe for use by multiple goroutines.
271 Rand io.Reader
272
273 // Time returns the current time as the number of seconds since the epoch.
274 // If Time is nil, TLS uses time.Now.
275 Time func() time.Time
276
277 // Certificates contains one or more certificate chains
278 // to present to the other side of the connection.
279 // Server configurations must include at least one certificate.
280 Certificates []Certificate
281
282 // NameToCertificate maps from a certificate name to an element of
283 // Certificates. Note that a certificate name can be of the form
284 // '*.example.com' and so doesn't have to be a domain name as such.
285 // See Config.BuildNameToCertificate
286 // The nil value causes the first element of Certificates to be used
287 // for all connections.
288 NameToCertificate map[string]*Certificate
289
290 // RootCAs defines the set of root certificate authorities
291 // that clients use when verifying server certificates.
292 // If RootCAs is nil, TLS uses the host's root CA set.
293 RootCAs *x509.CertPool
294
295 // NextProtos is a list of supported, application level protocols.
296 NextProtos []string
297
298 // ServerName is used to verify the hostname on the returned
299 // certificates unless InsecureSkipVerify is given. It is also included
300 // in the client's handshake to support virtual hosting.
301 ServerName string
302
303 // ClientAuth determines the server's policy for
304 // TLS Client Authentication. The default is NoClientCert.
305 ClientAuth ClientAuthType
306
307 // ClientCAs defines the set of root certificate authorities
308 // that servers use if required to verify a client certificate
309 // by the policy in ClientAuth.
310 ClientCAs *x509.CertPool
311
David Benjamin7b030512014-07-08 17:30:11 -0400312 // ClientCertificateTypes defines the set of allowed client certificate
313 // types. The default is CertTypeRSASign and CertTypeECDSASign.
314 ClientCertificateTypes []byte
315
Adam Langley95c29f32014-06-20 12:00:00 -0700316 // InsecureSkipVerify controls whether a client verifies the
317 // server's certificate chain and host name.
318 // If InsecureSkipVerify is true, TLS accepts any certificate
319 // presented by the server and any host name in that certificate.
320 // In this mode, TLS is susceptible to man-in-the-middle attacks.
321 // This should be used only for testing.
322 InsecureSkipVerify bool
323
324 // CipherSuites is a list of supported cipher suites. If CipherSuites
325 // is nil, TLS uses a list of suites supported by the implementation.
326 CipherSuites []uint16
327
328 // PreferServerCipherSuites controls whether the server selects the
329 // client's most preferred ciphersuite, or the server's most preferred
330 // ciphersuite. If true then the server's preference, as expressed in
331 // the order of elements in CipherSuites, is used.
332 PreferServerCipherSuites bool
333
334 // SessionTicketsDisabled may be set to true to disable session ticket
335 // (resumption) support.
336 SessionTicketsDisabled bool
337
338 // SessionTicketKey is used by TLS servers to provide session
339 // resumption. See RFC 5077. If zero, it will be filled with
340 // random data before the first server handshake.
341 //
342 // If multiple servers are terminating connections for the same host
343 // they should all have the same SessionTicketKey. If the
344 // SessionTicketKey leaks, previously recorded and future TLS
345 // connections using that key are compromised.
346 SessionTicketKey [32]byte
347
David Benjaminfe8eb9a2014-11-17 03:19:02 -0500348 // ClientSessionCache is a cache of ClientSessionState entries
349 // for TLS session resumption.
Adam Langley95c29f32014-06-20 12:00:00 -0700350 ClientSessionCache ClientSessionCache
351
David Benjaminfe8eb9a2014-11-17 03:19:02 -0500352 // ServerSessionCache is a cache of sessionState entries for TLS session
353 // resumption.
354 ServerSessionCache ServerSessionCache
355
Adam Langley95c29f32014-06-20 12:00:00 -0700356 // MinVersion contains the minimum SSL/TLS version that is acceptable.
357 // If zero, then SSLv3 is taken as the minimum.
358 MinVersion uint16
359
360 // MaxVersion contains the maximum SSL/TLS version that is acceptable.
361 // If zero, then the maximum version supported by this package is used,
362 // which is currently TLS 1.2.
363 MaxVersion uint16
364
365 // CurvePreferences contains the elliptic curves that will be used in
366 // an ECDHE handshake, in preference order. If empty, the default will
367 // be used.
368 CurvePreferences []CurveID
369
David Benjamind30a9902014-08-24 01:44:23 -0400370 // ChannelID contains the ECDSA key for the client to use as
371 // its TLS Channel ID.
372 ChannelID *ecdsa.PrivateKey
373
374 // RequestChannelID controls whether the server requests a TLS
375 // Channel ID. If negotiated, the client's public key is
376 // returned in the ConnectionState.
377 RequestChannelID bool
378
David Benjamin48cae082014-10-27 01:06:24 -0400379 // PreSharedKey, if not nil, is the pre-shared key to use with
380 // the PSK cipher suites.
381 PreSharedKey []byte
382
383 // PreSharedKeyIdentity, if not empty, is the identity to use
384 // with the PSK cipher suites.
385 PreSharedKeyIdentity string
386
David Benjaminca6c8262014-11-15 19:06:08 -0500387 // SRTPProtectionProfiles, if not nil, is the list of SRTP
388 // protection profiles to offer in DTLS-SRTP.
389 SRTPProtectionProfiles []uint16
390
David Benjamin7a41d372016-07-09 11:21:54 -0700391 // SignSignatureAlgorithms, if not nil, overrides the default set of
392 // supported signature algorithms to sign with.
393 SignSignatureAlgorithms []signatureAlgorithm
394
395 // VerifySignatureAlgorithms, if not nil, overrides the default set of
396 // supported signature algorithms that are accepted.
397 VerifySignatureAlgorithms []signatureAlgorithm
David Benjamin000800a2014-11-14 01:43:59 -0500398
Adam Langley95c29f32014-06-20 12:00:00 -0700399 // Bugs specifies optional misbehaviour to be used for testing other
400 // implementations.
401 Bugs ProtocolBugs
402
403 serverInitOnce sync.Once // guards calling (*Config).serverInit
404}
405
406type BadValue int
407
408const (
409 BadValueNone BadValue = iota
410 BadValueNegative
411 BadValueZero
412 BadValueLimit
413 BadValueLarge
414 NumBadValues
415)
416
David Benjaminb36a3952015-12-01 18:53:13 -0500417type RSABadValue int
418
419const (
420 RSABadValueNone RSABadValue = iota
421 RSABadValueCorrupt
422 RSABadValueTooLong
423 RSABadValueTooShort
424 RSABadValueWrongVersion
425 NumRSABadValues
426)
427
Adam Langley95c29f32014-06-20 12:00:00 -0700428type ProtocolBugs struct {
429 // InvalidSKXSignature specifies that the signature in a
430 // ServerKeyExchange message should be invalid.
431 InvalidSKXSignature bool
432
David Benjamin6de0e532015-07-28 22:43:19 -0400433 // InvalidCertVerifySignature specifies that the signature in a
434 // CertificateVerify message should be invalid.
435 InvalidCertVerifySignature bool
436
David Benjamin4c3ddf72016-06-29 18:13:53 -0400437 // SendCurve, if non-zero, causes the ServerKeyExchange message to use
438 // the specified curve ID rather than the negotiated one.
439 SendCurve CurveID
Adam Langley95c29f32014-06-20 12:00:00 -0700440
David Benjamin2b07fa42016-03-02 00:23:57 -0500441 // InvalidECDHPoint, if true, causes the ECC points in
442 // ServerKeyExchange or ClientKeyExchange messages to be invalid.
443 InvalidECDHPoint bool
444
Adam Langley95c29f32014-06-20 12:00:00 -0700445 // BadECDSAR controls ways in which the 'r' value of an ECDSA signature
446 // can be invalid.
447 BadECDSAR BadValue
448 BadECDSAS BadValue
Adam Langley80842bd2014-06-20 12:00:00 -0700449
450 // MaxPadding causes CBC records to have the maximum possible padding.
451 MaxPadding bool
452 // PaddingFirstByteBad causes the first byte of the padding to be
453 // incorrect.
454 PaddingFirstByteBad bool
455 // PaddingFirstByteBadIf255 causes the first byte of padding to be
456 // incorrect if there's a maximum amount of padding (i.e. 255 bytes).
457 PaddingFirstByteBadIf255 bool
Adam Langleyac61fa32014-06-23 12:03:11 -0700458
459 // FailIfNotFallbackSCSV causes a server handshake to fail if the
460 // client doesn't send the fallback SCSV value.
461 FailIfNotFallbackSCSV bool
David Benjamin35a7a442014-07-05 00:23:20 -0400462
463 // DuplicateExtension causes an extra empty extension of bogus type to
464 // be emitted in either the ClientHello or the ServerHello.
465 DuplicateExtension bool
David Benjamin1c375dd2014-07-12 00:48:23 -0400466
467 // UnauthenticatedECDH causes the server to pretend ECDHE_RSA
468 // and ECDHE_ECDSA cipher suites are actually ECDH_anon. No
469 // Certificate message is sent and no signature is added to
470 // ServerKeyExchange.
471 UnauthenticatedECDH bool
David Benjamin9c651c92014-07-12 13:27:45 -0400472
David Benjaminb80168e2015-02-08 18:30:14 -0500473 // SkipHelloVerifyRequest causes a DTLS server to skip the
474 // HelloVerifyRequest message.
475 SkipHelloVerifyRequest bool
476
David Benjamindcd979f2015-04-20 18:26:52 -0400477 // SkipCertificateStatus, if true, causes the server to skip the
478 // CertificateStatus message. This is legal because CertificateStatus is
479 // optional, even with a status_request in ServerHello.
480 SkipCertificateStatus bool
481
David Benjamin9c651c92014-07-12 13:27:45 -0400482 // SkipServerKeyExchange causes the server to skip sending
483 // ServerKeyExchange messages.
484 SkipServerKeyExchange bool
David Benjamina0e52232014-07-19 17:39:58 -0400485
David Benjaminb80168e2015-02-08 18:30:14 -0500486 // SkipNewSessionTicket causes the server to skip sending the
487 // NewSessionTicket message despite promising to in ServerHello.
488 SkipNewSessionTicket bool
489
David Benjamin0b7ca7d2016-03-10 15:44:22 -0500490 // SkipClientCertificate causes the client to skip the Certificate
491 // message.
492 SkipClientCertificate bool
493
David Benjamina0e52232014-07-19 17:39:58 -0400494 // SkipChangeCipherSpec causes the implementation to skip
495 // sending the ChangeCipherSpec message (and adjusting cipher
496 // state accordingly for the Finished message).
497 SkipChangeCipherSpec bool
David Benjaminf3ec83d2014-07-21 22:42:34 -0400498
David Benjaminb80168e2015-02-08 18:30:14 -0500499 // SkipFinished causes the implementation to skip sending the Finished
500 // message.
501 SkipFinished bool
502
David Benjaminf3ec83d2014-07-21 22:42:34 -0400503 // EarlyChangeCipherSpec causes the client to send an early
504 // ChangeCipherSpec message before the ClientKeyExchange. A value of
505 // zero disables this behavior. One and two configure variants for 0.9.8
506 // and 1.0.1 modes, respectively.
507 EarlyChangeCipherSpec int
David Benjamind23f4122014-07-23 15:09:48 -0400508
David Benjamin8144f992016-06-22 17:05:13 -0400509 // StrayChangeCipherSpec causes every pre-ChangeCipherSpec handshake
510 // message in DTLS to be prefaced by stray ChangeCipherSpec record. This
511 // may be used to test DTLS's handling of reordered ChangeCipherSpec.
512 StrayChangeCipherSpec bool
513
David Benjamin86271ee2014-07-21 16:14:03 -0400514 // FragmentAcrossChangeCipherSpec causes the implementation to fragment
515 // the Finished (or NextProto) message around the ChangeCipherSpec
516 // messages.
517 FragmentAcrossChangeCipherSpec bool
518
David Benjamind86c7672014-08-02 04:07:12 -0400519 // SendV2ClientHello causes the client to send a V2ClientHello
520 // instead of a normal ClientHello.
521 SendV2ClientHello bool
David Benjaminbef270a2014-08-02 04:22:02 -0400522
523 // SendFallbackSCSV causes the client to include
524 // TLS_FALLBACK_SCSV in the ClientHello.
525 SendFallbackSCSV bool
David Benjamin43ec06f2014-08-05 02:28:57 -0400526
Adam Langley5021b222015-06-12 18:27:58 -0700527 // SendRenegotiationSCSV causes the client to include the renegotiation
528 // SCSV in the ClientHello.
529 SendRenegotiationSCSV bool
530
David Benjamin43ec06f2014-08-05 02:28:57 -0400531 // MaxHandshakeRecordLength, if non-zero, is the maximum size of a
David Benjamin98214542014-08-07 18:02:39 -0400532 // handshake record. Handshake messages will be split into multiple
533 // records at the specified size, except that the client_version will
David Benjaminbd15a8e2015-05-29 18:48:16 -0400534 // never be fragmented. For DTLS, it is the maximum handshake fragment
535 // size, not record size; DTLS allows multiple handshake fragments in a
536 // single handshake record. See |PackHandshakeFragments|.
David Benjamin43ec06f2014-08-05 02:28:57 -0400537 MaxHandshakeRecordLength int
David Benjamina8e3e0e2014-08-06 22:11:10 -0400538
David Benjamin98214542014-08-07 18:02:39 -0400539 // FragmentClientVersion will allow MaxHandshakeRecordLength to apply to
540 // the first 6 bytes of the ClientHello.
541 FragmentClientVersion bool
542
Alex Chernyakhovsky4cd8c432014-11-01 19:39:08 -0400543 // FragmentAlert will cause all alerts to be fragmented across
544 // two records.
545 FragmentAlert bool
546
David Benjamin0d3a8c62016-03-11 22:25:18 -0500547 // DoubleAlert will cause all alerts to be sent as two copies packed
548 // within one record.
549 DoubleAlert bool
550
David Benjamin3fd1fbd2015-02-03 16:07:32 -0500551 // SendSpuriousAlert, if non-zero, will cause an spurious, unwanted
552 // alert to be sent.
553 SendSpuriousAlert alert
Alex Chernyakhovsky4cd8c432014-11-01 19:39:08 -0400554
David Benjaminb36a3952015-12-01 18:53:13 -0500555 // BadRSAClientKeyExchange causes the client to send a corrupted RSA
556 // ClientKeyExchange which would not pass padding checks.
557 BadRSAClientKeyExchange RSABadValue
David Benjaminbed9aae2014-08-07 19:13:38 -0400558
559 // RenewTicketOnResume causes the server to renew the session ticket and
560 // send a NewSessionTicket message during an abbreviated handshake.
561 RenewTicketOnResume bool
David Benjamin98e882e2014-08-08 13:24:34 -0400562
563 // SendClientVersion, if non-zero, causes the client to send a different
564 // TLS version in the ClientHello than the maximum supported version.
565 SendClientVersion uint16
David Benjamin83c0bc92014-08-04 01:23:53 -0400566
David Benjamin1f61f0d2016-07-10 12:20:35 -0400567 // NegotiateVersion, if non-zero, causes the server to negotiate the
568 // specifed TLS version rather than the version supported by either
569 // peer.
570 NegotiateVersion uint16
571
David Benjamine58c4f52014-08-24 03:47:07 -0400572 // ExpectFalseStart causes the server to, on full handshakes,
573 // expect the peer to False Start; the server Finished message
574 // isn't sent until we receive an application data record
575 // from the peer.
576 ExpectFalseStart bool
David Benjamin5c24a1d2014-08-31 00:59:27 -0400577
David Benjamin1c633152015-04-02 20:19:11 -0400578 // AlertBeforeFalseStartTest, if non-zero, causes the server to, on full
579 // handshakes, send an alert just before reading the application data
580 // record to test False Start. This can be used in a negative False
581 // Start test to determine whether the peer processed the alert (and
582 // closed the connection) before or after sending app data.
583 AlertBeforeFalseStartTest alert
584
David Benjamine78bfde2014-09-06 12:45:15 -0400585 // ExpectServerName, if not empty, is the hostname the client
586 // must specify in the server_name extension.
587 ExpectServerName string
David Benjaminfc7b0862014-09-06 13:21:53 -0400588
David Benjamin76c2efc2015-08-31 14:24:29 -0400589 // SwapNPNAndALPN switches the relative order between NPN and ALPN in
590 // both ClientHello and ServerHello.
David Benjaminfc7b0862014-09-06 13:21:53 -0400591 SwapNPNAndALPN bool
David Benjamin01fe8202014-09-24 15:21:44 -0400592
Adam Langleyefb0e162015-07-09 11:35:04 -0700593 // ALPNProtocol, if not nil, sets the ALPN protocol that a server will
594 // return.
595 ALPNProtocol *string
596
David Benjamin01fe8202014-09-24 15:21:44 -0400597 // AllowSessionVersionMismatch causes the server to resume sessions
598 // regardless of the version associated with the session.
599 AllowSessionVersionMismatch bool
Adam Langley38311732014-10-16 19:04:35 -0700600
601 // CorruptTicket causes a client to corrupt a session ticket before
602 // sending it in a resume handshake.
603 CorruptTicket bool
604
605 // OversizedSessionId causes the session id that is sent with a ticket
606 // resumption attempt to be too large (33 bytes).
607 OversizedSessionId bool
Adam Langley75712922014-10-10 16:23:43 -0700608
609 // RequireExtendedMasterSecret, if true, requires that the peer support
610 // the extended master secret option.
611 RequireExtendedMasterSecret bool
612
David Benjaminca6554b2014-11-08 12:31:52 -0500613 // NoExtendedMasterSecret causes the client and server to behave as if
Adam Langley75712922014-10-10 16:23:43 -0700614 // they didn't support an extended master secret.
615 NoExtendedMasterSecret bool
Adam Langley2ae77d22014-10-28 17:29:33 -0700616
617 // EmptyRenegotiationInfo causes the renegotiation extension to be
618 // empty in a renegotiation handshake.
619 EmptyRenegotiationInfo bool
620
621 // BadRenegotiationInfo causes the renegotiation extension value in a
622 // renegotiation handshake to be incorrect.
623 BadRenegotiationInfo bool
David Benjamin5e961c12014-11-07 01:48:35 -0500624
David Benjamin3e052de2015-11-25 20:10:31 -0500625 // NoRenegotiationInfo disables renegotiation info support in all
626 // handshakes.
David Benjaminca6554b2014-11-08 12:31:52 -0500627 NoRenegotiationInfo bool
628
David Benjamin3e052de2015-11-25 20:10:31 -0500629 // NoRenegotiationInfoInInitial disables renegotiation info support in
630 // the initial handshake.
631 NoRenegotiationInfoInInitial bool
632
633 // NoRenegotiationInfoAfterInitial disables renegotiation info support
634 // in renegotiation handshakes.
635 NoRenegotiationInfoAfterInitial bool
636
Adam Langley5021b222015-06-12 18:27:58 -0700637 // RequireRenegotiationInfo, if true, causes the client to return an
638 // error if the server doesn't reply with the renegotiation extension.
639 RequireRenegotiationInfo bool
640
David Benjamin8e6db492015-07-25 18:29:23 -0400641 // SequenceNumberMapping, if non-nil, is the mapping function to apply
642 // to the sequence number of outgoing packets. For both TLS and DTLS,
643 // the two most-significant bytes in the resulting sequence number are
644 // ignored so that the DTLS epoch cannot be changed.
645 SequenceNumberMapping func(uint64) uint64
David Benjamin9114fae2014-11-08 11:41:14 -0500646
David Benjamina3e89492015-02-26 15:16:22 -0500647 // RSAEphemeralKey, if true, causes the server to send a
648 // ServerKeyExchange message containing an ephemeral key (as in
649 // RSA_EXPORT) in the plain RSA key exchange.
650 RSAEphemeralKey bool
David Benjaminca6c8262014-11-15 19:06:08 -0500651
652 // SRTPMasterKeyIdentifer, if not empty, is the SRTP MKI value that the
653 // client offers when negotiating SRTP. MKI support is still missing so
654 // the peer must still send none.
655 SRTPMasterKeyIdentifer string
656
657 // SendSRTPProtectionProfile, if non-zero, is the SRTP profile that the
658 // server sends in the ServerHello instead of the negotiated one.
659 SendSRTPProtectionProfile uint16
David Benjamin000800a2014-11-14 01:43:59 -0500660
Nick Harper60edffd2016-06-21 15:19:24 -0700661 // NoSignatureAlgorithms, if true, causes the client to omit the
David Benjamin000800a2014-11-14 01:43:59 -0500662 // signature and hashes extension.
663 //
664 // For a server, it will cause an empty list to be sent in the
665 // CertificateRequest message. None the less, the configured set will
666 // still be enforced.
Nick Harper60edffd2016-06-21 15:19:24 -0700667 NoSignatureAlgorithms bool
David Benjaminc44b1df2014-11-23 12:11:01 -0500668
David Benjamin55a43642015-04-20 14:45:55 -0400669 // NoSupportedCurves, if true, causes the client to omit the
670 // supported_curves extension.
671 NoSupportedCurves bool
672
David Benjaminc44b1df2014-11-23 12:11:01 -0500673 // RequireSameRenegoClientVersion, if true, causes the server
674 // to require that all ClientHellos match in offered version
675 // across a renego.
676 RequireSameRenegoClientVersion bool
Feng Lu41aa3252014-11-21 22:47:56 -0800677
David Benjamin1e29a6b2014-12-10 02:27:24 -0500678 // ExpectInitialRecordVersion, if non-zero, is the expected
679 // version of the records before the version is determined.
680 ExpectInitialRecordVersion uint16
David Benjamin13be1de2015-01-11 16:29:36 -0500681
682 // MaxPacketLength, if non-zero, is the maximum acceptable size for a
683 // packet.
684 MaxPacketLength int
David Benjamin6095de82014-12-27 01:50:38 -0500685
686 // SendCipherSuite, if non-zero, is the cipher suite value that the
687 // server will send in the ServerHello. This does not affect the cipher
688 // the server believes it has actually negotiated.
689 SendCipherSuite uint16
David Benjamin4189bd92015-01-25 23:52:39 -0500690
David Benjamin4cf369b2015-08-22 01:35:43 -0400691 // AppDataBeforeHandshake, if not nil, causes application data to be
692 // sent immediately before the first handshake message.
693 AppDataBeforeHandshake []byte
694
695 // AppDataAfterChangeCipherSpec, if not nil, causes application data to
David Benjamin4189bd92015-01-25 23:52:39 -0500696 // be sent immediately after ChangeCipherSpec.
697 AppDataAfterChangeCipherSpec []byte
David Benjamin83f90402015-01-27 01:09:43 -0500698
David Benjamindc3da932015-03-12 15:09:02 -0400699 // AlertAfterChangeCipherSpec, if non-zero, causes an alert to be sent
700 // immediately after ChangeCipherSpec.
701 AlertAfterChangeCipherSpec alert
702
David Benjamin83f90402015-01-27 01:09:43 -0500703 // TimeoutSchedule is the schedule of packet drops and simulated
704 // timeouts for before each handshake leg from the peer.
705 TimeoutSchedule []time.Duration
706
707 // PacketAdaptor is the packetAdaptor to use to simulate timeouts.
708 PacketAdaptor *packetAdaptor
David Benjaminb3774b92015-01-31 17:16:01 -0500709
710 // ReorderHandshakeFragments, if true, causes handshake fragments in
711 // DTLS to overlap and be sent in the wrong order. It also causes
712 // pre-CCS flights to be sent twice. (Post-CCS flights consist of
713 // Finished and will trigger a spurious retransmit.)
714 ReorderHandshakeFragments bool
David Benjaminddb9f152015-02-03 15:44:39 -0500715
David Benjamin75381222015-03-02 19:30:30 -0500716 // MixCompleteMessageWithFragments, if true, causes handshake
717 // messages in DTLS to redundantly both fragment the message
718 // and include a copy of the full one.
719 MixCompleteMessageWithFragments bool
720
David Benjaminddb9f152015-02-03 15:44:39 -0500721 // SendInvalidRecordType, if true, causes a record with an invalid
722 // content type to be sent immediately following the handshake.
723 SendInvalidRecordType bool
David Benjaminbcb2d912015-02-24 23:45:43 -0500724
725 // WrongCertificateMessageType, if true, causes Certificate message to
726 // be sent with the wrong message type.
727 WrongCertificateMessageType bool
David Benjamin75381222015-03-02 19:30:30 -0500728
729 // FragmentMessageTypeMismatch, if true, causes all non-initial
730 // handshake fragments in DTLS to have the wrong message type.
731 FragmentMessageTypeMismatch bool
732
733 // FragmentMessageLengthMismatch, if true, causes all non-initial
734 // handshake fragments in DTLS to have the wrong message length.
735 FragmentMessageLengthMismatch bool
736
David Benjamin11fc66a2015-06-16 11:40:24 -0400737 // SplitFragments, if non-zero, causes the handshake fragments in DTLS
738 // to be split across two records. The value of |SplitFragments| is the
739 // number of bytes in the first fragment.
740 SplitFragments int
David Benjamin75381222015-03-02 19:30:30 -0500741
742 // SendEmptyFragments, if true, causes handshakes to include empty
743 // fragments in DTLS.
744 SendEmptyFragments bool
David Benjamincdea40c2015-03-19 14:09:43 -0400745
David Benjamin9a41d1b2015-05-16 01:30:09 -0400746 // SendSplitAlert, if true, causes an alert to be sent with the header
747 // and record body split across multiple packets. The peer should
748 // discard these packets rather than process it.
749 SendSplitAlert bool
750
David Benjamin4b27d9f2015-05-12 22:42:52 -0400751 // FailIfResumeOnRenego, if true, causes renegotiations to fail if the
752 // client offers a resumption or the server accepts one.
753 FailIfResumeOnRenego bool
David Benjamin3c9746a2015-03-19 15:00:10 -0400754
David Benjamin67d1fb52015-03-16 15:16:23 -0400755 // IgnorePeerCipherPreferences, if true, causes the peer's cipher
756 // preferences to be ignored.
757 IgnorePeerCipherPreferences bool
David Benjamin72dc7832015-03-16 17:49:43 -0400758
759 // IgnorePeerSignatureAlgorithmPreferences, if true, causes the peer's
760 // signature algorithm preferences to be ignored.
761 IgnorePeerSignatureAlgorithmPreferences bool
David Benjamin340d5ed2015-03-21 02:21:37 -0400762
David Benjaminc574f412015-04-20 11:13:01 -0400763 // IgnorePeerCurvePreferences, if true, causes the peer's curve
764 // preferences to be ignored.
765 IgnorePeerCurvePreferences bool
766
David Benjamin513f0ea2015-04-02 19:33:31 -0400767 // BadFinished, if true, causes the Finished hash to be broken.
768 BadFinished bool
Adam Langleya7997f12015-05-14 17:38:50 -0700769
770 // DHGroupPrime, if not nil, is used to define the (finite field)
771 // Diffie-Hellman group. The generator used is always two.
772 DHGroupPrime *big.Int
David Benjaminbd15a8e2015-05-29 18:48:16 -0400773
David Benjamin582ba042016-07-07 12:33:25 -0700774 // PackHandshakeFragments, if true, causes handshake fragments in DTLS
775 // to be packed into individual handshake records, up to the specified
776 // record size.
David Benjaminbd15a8e2015-05-29 18:48:16 -0400777 PackHandshakeFragments int
778
David Benjamin582ba042016-07-07 12:33:25 -0700779 // PackHandshakeRecords, if true, causes handshake records in DTLS to be
780 // packed into individual packets, up to the specified packet size.
David Benjaminbd15a8e2015-05-29 18:48:16 -0400781 PackHandshakeRecords int
David Benjamin0fa40122015-05-30 17:13:12 -0400782
David Benjamin582ba042016-07-07 12:33:25 -0700783 // PackHandshakeFlight, if true, causes each handshake flight in TLS to
784 // be packed into records, up to the largest size record available.
785 PackHandshakeFlight bool
786
David Benjamin0407e762016-06-17 16:41:18 -0400787 // EnableAllCiphers, if true, causes all configured ciphers to be
788 // enabled.
789 EnableAllCiphers bool
David Benjamin8923c0b2015-06-07 11:42:34 -0400790
791 // EmptyCertificateList, if true, causes the server to send an empty
792 // certificate list in the Certificate message.
793 EmptyCertificateList bool
David Benjamind98452d2015-06-16 14:16:23 -0400794
795 // ExpectNewTicket, if true, causes the client to abort if it does not
796 // receive a new ticket.
797 ExpectNewTicket bool
Adam Langley33ad2b52015-07-20 17:43:53 -0700798
799 // RequireClientHelloSize, if not zero, is the required length in bytes
800 // of the ClientHello /record/. This is checked by the server.
801 RequireClientHelloSize int
Adam Langley09505632015-07-30 18:10:13 -0700802
803 // CustomExtension, if not empty, contains the contents of an extension
804 // that will be added to client/server hellos.
805 CustomExtension string
806
807 // ExpectedCustomExtension, if not nil, contains the expected contents
808 // of a custom extension.
809 ExpectedCustomExtension *string
David Benjamin30789da2015-08-29 22:56:45 -0400810
811 // NoCloseNotify, if true, causes the close_notify alert to be skipped
812 // on connection shutdown.
813 NoCloseNotify bool
814
David Benjaminfa214e42016-05-10 17:03:10 -0400815 // SendAlertOnShutdown, if non-zero, is the alert to send instead of
816 // close_notify on shutdown.
817 SendAlertOnShutdown alert
818
David Benjamin30789da2015-08-29 22:56:45 -0400819 // ExpectCloseNotify, if true, requires a close_notify from the peer on
820 // shutdown. Records from the peer received after close_notify is sent
821 // are not discard.
822 ExpectCloseNotify bool
David Benjamin2c99d282015-09-01 10:23:00 -0400823
824 // SendLargeRecords, if true, allows outgoing records to be sent
825 // arbitrarily large.
826 SendLargeRecords bool
David Benjamin76c2efc2015-08-31 14:24:29 -0400827
828 // NegotiateALPNAndNPN, if true, causes the server to negotiate both
829 // ALPN and NPN in the same connetion.
830 NegotiateALPNAndNPN bool
David Benjamindd6fed92015-10-23 17:41:12 -0400831
832 // SendEmptySessionTicket, if true, causes the server to send an empty
833 // session ticket.
834 SendEmptySessionTicket bool
835
836 // FailIfSessionOffered, if true, causes the server to fail any
837 // connections where the client offers a non-empty session ID or session
838 // ticket.
839 FailIfSessionOffered bool
Adam Langley27a0d082015-11-03 13:34:10 -0800840
841 // SendHelloRequestBeforeEveryAppDataRecord, if true, causes a
842 // HelloRequest handshake message to be sent before each application
843 // data record. This only makes sense for a server.
844 SendHelloRequestBeforeEveryAppDataRecord bool
Adam Langleyc4f25ce2015-11-26 16:39:08 -0800845
David Benjamin71dd6662016-07-08 14:10:48 -0700846 // SendHelloRequestBeforeEveryHandshakeMessage, if true, causes a
847 // HelloRequest handshake message to be sent before each handshake
848 // message. This only makes sense for a server.
849 SendHelloRequestBeforeEveryHandshakeMessage bool
850
Adam Langleyc4f25ce2015-11-26 16:39:08 -0800851 // RequireDHPublicValueLen causes a fatal error if the length (in
852 // bytes) of the server's Diffie-Hellman public value is not equal to
853 // this.
854 RequireDHPublicValueLen int
David Benjamin8411b242015-11-26 12:07:28 -0500855
856 // BadChangeCipherSpec, if not nil, is the body to be sent in
857 // ChangeCipherSpec records instead of {1}.
858 BadChangeCipherSpec []byte
David Benjaminef5dfd22015-12-06 13:17:07 -0500859
860 // BadHelloRequest, if not nil, is what to send instead of a
861 // HelloRequest.
862 BadHelloRequest []byte
David Benjaminef1b0092015-11-21 14:05:44 -0500863
864 // RequireSessionTickets, if true, causes the client to require new
865 // sessions use session tickets instead of session IDs.
866 RequireSessionTickets bool
David Benjaminf2b83632016-03-01 22:57:46 -0500867
868 // NullAllCiphers, if true, causes every cipher to behave like the null
869 // cipher.
870 NullAllCiphers bool
David Benjamin80d1b352016-05-04 19:19:06 -0400871
872 // SendSCTListOnResume, if not nil, causes the server to send the
873 // supplied SCT list in resumption handshakes.
874 SendSCTListOnResume []byte
Matt Braithwaite54217e42016-06-13 13:03:47 -0700875
876 // CECPQ1BadX25519Part corrupts the X25519 part of a CECPQ1 key exchange, as
877 // a trivial proof that it is actually used.
878 CECPQ1BadX25519Part bool
879
880 // CECPQ1BadNewhopePart corrupts the Newhope part of a CECPQ1 key exchange,
881 // as a trivial proof that it is actually used.
882 CECPQ1BadNewhopePart bool
David Benjaminc9ae27c2016-06-24 22:56:37 -0400883
884 // RecordPadding is the number of bytes of padding to add to each
885 // encrypted record in TLS 1.3.
886 RecordPadding int
887
888 // OmitRecordContents, if true, causes encrypted records in TLS 1.3 to
889 // be missing their body and content type. Padding, if configured, is
890 // still added.
891 OmitRecordContents bool
892
893 // OuterRecordType, if non-zero, is the outer record type to use instead
894 // of application data.
895 OuterRecordType recordType
David Benjamina95e9f32016-07-08 16:28:04 -0700896
897 // SendSignatureAlgorithm, if non-zero, causes all signatures to be sent
898 // with the given signature algorithm rather than the one negotiated.
899 SendSignatureAlgorithm signatureAlgorithm
David Benjamin1fb125c2016-07-08 18:52:12 -0700900
901 // SkipECDSACurveCheck, if true, causes all ECDSA curve checks to be
902 // skipped.
903 SkipECDSACurveCheck bool
David Benjaminfd5c45f2016-06-30 18:30:40 -0400904
905 // IgnoreSignatureVersionChecks, if true, causes all signature
906 // algorithms to be enabled at all TLS versions.
907 IgnoreSignatureVersionChecks bool
Adam Langley95c29f32014-06-20 12:00:00 -0700908}
909
910func (c *Config) serverInit() {
911 if c.SessionTicketsDisabled {
912 return
913 }
914
915 // If the key has already been set then we have nothing to do.
916 for _, b := range c.SessionTicketKey {
917 if b != 0 {
918 return
919 }
920 }
921
922 if _, err := io.ReadFull(c.rand(), c.SessionTicketKey[:]); err != nil {
923 c.SessionTicketsDisabled = true
924 }
925}
926
927func (c *Config) rand() io.Reader {
928 r := c.Rand
929 if r == nil {
930 return rand.Reader
931 }
932 return r
933}
934
935func (c *Config) time() time.Time {
936 t := c.Time
937 if t == nil {
938 t = time.Now
939 }
940 return t()
941}
942
943func (c *Config) cipherSuites() []uint16 {
944 s := c.CipherSuites
945 if s == nil {
946 s = defaultCipherSuites()
947 }
948 return s
949}
950
David Benjamincecee272016-06-30 13:33:47 -0400951func (c *Config) minVersion(isDTLS bool) uint16 {
952 ret := uint16(minVersion)
953 if c != nil && c.MinVersion != 0 {
954 ret = c.MinVersion
Adam Langley95c29f32014-06-20 12:00:00 -0700955 }
David Benjamincecee272016-06-30 13:33:47 -0400956 if isDTLS {
957 // The lowest version of DTLS is 1.0. There is no DSSL 3.0.
958 if ret < VersionTLS10 {
959 return VersionTLS10
960 }
961 // There is no such thing as DTLS 1.1.
962 if ret == VersionTLS11 {
963 return VersionTLS12
964 }
965 }
966 return ret
Adam Langley95c29f32014-06-20 12:00:00 -0700967}
968
David Benjamincecee272016-06-30 13:33:47 -0400969func (c *Config) maxVersion(isDTLS bool) uint16 {
970 ret := uint16(maxVersion)
971 if c != nil && c.MaxVersion != 0 {
972 ret = c.MaxVersion
Adam Langley95c29f32014-06-20 12:00:00 -0700973 }
David Benjamincecee272016-06-30 13:33:47 -0400974 if isDTLS {
975 // We only implement up to DTLS 1.2.
976 if ret > VersionTLS12 {
977 return VersionTLS12
978 }
979 // There is no such thing as DTLS 1.1.
980 if ret == VersionTLS11 {
981 return VersionTLS10
982 }
983 }
984 return ret
Adam Langley95c29f32014-06-20 12:00:00 -0700985}
986
David Benjamincba2b622015-12-18 22:13:41 -0500987var defaultCurvePreferences = []CurveID{CurveX25519, CurveP256, CurveP384, CurveP521}
Adam Langley95c29f32014-06-20 12:00:00 -0700988
989func (c *Config) curvePreferences() []CurveID {
990 if c == nil || len(c.CurvePreferences) == 0 {
991 return defaultCurvePreferences
992 }
993 return c.CurvePreferences
994}
995
996// mutualVersion returns the protocol version to use given the advertised
997// version of the peer.
David Benjamincecee272016-06-30 13:33:47 -0400998func (c *Config) mutualVersion(vers uint16, isDTLS bool) (uint16, bool) {
999 // There is no such thing as DTLS 1.1.
1000 if isDTLS && vers == VersionTLS11 {
1001 vers = VersionTLS10
1002 }
1003
1004 minVersion := c.minVersion(isDTLS)
1005 maxVersion := c.maxVersion(isDTLS)
Adam Langley95c29f32014-06-20 12:00:00 -07001006
1007 if vers < minVersion {
1008 return 0, false
1009 }
1010 if vers > maxVersion {
1011 vers = maxVersion
1012 }
1013 return vers, true
1014}
1015
1016// getCertificateForName returns the best certificate for the given name,
1017// defaulting to the first element of c.Certificates if there are no good
1018// options.
1019func (c *Config) getCertificateForName(name string) *Certificate {
1020 if len(c.Certificates) == 1 || c.NameToCertificate == nil {
1021 // There's only one choice, so no point doing any work.
1022 return &c.Certificates[0]
1023 }
1024
1025 name = strings.ToLower(name)
1026 for len(name) > 0 && name[len(name)-1] == '.' {
1027 name = name[:len(name)-1]
1028 }
1029
1030 if cert, ok := c.NameToCertificate[name]; ok {
1031 return cert
1032 }
1033
1034 // try replacing labels in the name with wildcards until we get a
1035 // match.
1036 labels := strings.Split(name, ".")
1037 for i := range labels {
1038 labels[i] = "*"
1039 candidate := strings.Join(labels, ".")
1040 if cert, ok := c.NameToCertificate[candidate]; ok {
1041 return cert
1042 }
1043 }
1044
1045 // If nothing matches, return the first certificate.
1046 return &c.Certificates[0]
1047}
1048
David Benjamin7a41d372016-07-09 11:21:54 -07001049func (c *Config) signSignatureAlgorithms() []signatureAlgorithm {
1050 if c != nil && c.SignSignatureAlgorithms != nil {
1051 return c.SignSignatureAlgorithms
David Benjamin000800a2014-11-14 01:43:59 -05001052 }
David Benjamin7a41d372016-07-09 11:21:54 -07001053 return supportedSignatureAlgorithms
David Benjamin000800a2014-11-14 01:43:59 -05001054}
1055
David Benjamin7a41d372016-07-09 11:21:54 -07001056func (c *Config) verifySignatureAlgorithms() []signatureAlgorithm {
1057 if c != nil && c.VerifySignatureAlgorithms != nil {
1058 return c.VerifySignatureAlgorithms
David Benjamin000800a2014-11-14 01:43:59 -05001059 }
David Benjamin7a41d372016-07-09 11:21:54 -07001060 return supportedSignatureAlgorithms
David Benjamin000800a2014-11-14 01:43:59 -05001061}
1062
Adam Langley95c29f32014-06-20 12:00:00 -07001063// BuildNameToCertificate parses c.Certificates and builds c.NameToCertificate
1064// from the CommonName and SubjectAlternateName fields of each of the leaf
1065// certificates.
1066func (c *Config) BuildNameToCertificate() {
1067 c.NameToCertificate = make(map[string]*Certificate)
1068 for i := range c.Certificates {
1069 cert := &c.Certificates[i]
1070 x509Cert, err := x509.ParseCertificate(cert.Certificate[0])
1071 if err != nil {
1072 continue
1073 }
1074 if len(x509Cert.Subject.CommonName) > 0 {
1075 c.NameToCertificate[x509Cert.Subject.CommonName] = cert
1076 }
1077 for _, san := range x509Cert.DNSNames {
1078 c.NameToCertificate[san] = cert
1079 }
1080 }
1081}
1082
1083// A Certificate is a chain of one or more certificates, leaf first.
1084type Certificate struct {
1085 Certificate [][]byte
1086 PrivateKey crypto.PrivateKey // supported types: *rsa.PrivateKey, *ecdsa.PrivateKey
1087 // OCSPStaple contains an optional OCSP response which will be served
1088 // to clients that request it.
1089 OCSPStaple []byte
David Benjamin61f95272014-11-25 01:55:35 -05001090 // SignedCertificateTimestampList contains an optional encoded
1091 // SignedCertificateTimestampList structure which will be
1092 // served to clients that request it.
1093 SignedCertificateTimestampList []byte
Adam Langley95c29f32014-06-20 12:00:00 -07001094 // Leaf is the parsed form of the leaf certificate, which may be
1095 // initialized using x509.ParseCertificate to reduce per-handshake
1096 // processing for TLS clients doing client authentication. If nil, the
1097 // leaf certificate will be parsed as needed.
1098 Leaf *x509.Certificate
1099}
1100
1101// A TLS record.
1102type record struct {
1103 contentType recordType
1104 major, minor uint8
1105 payload []byte
1106}
1107
1108type handshakeMessage interface {
1109 marshal() []byte
1110 unmarshal([]byte) bool
1111}
1112
David Benjaminfe8eb9a2014-11-17 03:19:02 -05001113// lruSessionCache is a client or server session cache implementation
1114// that uses an LRU caching strategy.
Adam Langley95c29f32014-06-20 12:00:00 -07001115type lruSessionCache struct {
1116 sync.Mutex
1117
1118 m map[string]*list.Element
1119 q *list.List
1120 capacity int
1121}
1122
1123type lruSessionCacheEntry struct {
1124 sessionKey string
David Benjaminfe8eb9a2014-11-17 03:19:02 -05001125 state interface{}
Adam Langley95c29f32014-06-20 12:00:00 -07001126}
1127
1128// Put adds the provided (sessionKey, cs) pair to the cache.
David Benjaminfe8eb9a2014-11-17 03:19:02 -05001129func (c *lruSessionCache) Put(sessionKey string, cs interface{}) {
Adam Langley95c29f32014-06-20 12:00:00 -07001130 c.Lock()
1131 defer c.Unlock()
1132
1133 if elem, ok := c.m[sessionKey]; ok {
1134 entry := elem.Value.(*lruSessionCacheEntry)
1135 entry.state = cs
1136 c.q.MoveToFront(elem)
1137 return
1138 }
1139
1140 if c.q.Len() < c.capacity {
1141 entry := &lruSessionCacheEntry{sessionKey, cs}
1142 c.m[sessionKey] = c.q.PushFront(entry)
1143 return
1144 }
1145
1146 elem := c.q.Back()
1147 entry := elem.Value.(*lruSessionCacheEntry)
1148 delete(c.m, entry.sessionKey)
1149 entry.sessionKey = sessionKey
1150 entry.state = cs
1151 c.q.MoveToFront(elem)
1152 c.m[sessionKey] = elem
1153}
1154
David Benjaminfe8eb9a2014-11-17 03:19:02 -05001155// Get returns the value associated with a given key. It returns (nil,
1156// false) if no value is found.
1157func (c *lruSessionCache) Get(sessionKey string) (interface{}, bool) {
Adam Langley95c29f32014-06-20 12:00:00 -07001158 c.Lock()
1159 defer c.Unlock()
1160
1161 if elem, ok := c.m[sessionKey]; ok {
1162 c.q.MoveToFront(elem)
1163 return elem.Value.(*lruSessionCacheEntry).state, true
1164 }
1165 return nil, false
1166}
1167
David Benjaminfe8eb9a2014-11-17 03:19:02 -05001168// lruClientSessionCache is a ClientSessionCache implementation that
1169// uses an LRU caching strategy.
1170type lruClientSessionCache struct {
1171 lruSessionCache
1172}
1173
1174func (c *lruClientSessionCache) Put(sessionKey string, cs *ClientSessionState) {
1175 c.lruSessionCache.Put(sessionKey, cs)
1176}
1177
1178func (c *lruClientSessionCache) Get(sessionKey string) (*ClientSessionState, bool) {
1179 cs, ok := c.lruSessionCache.Get(sessionKey)
1180 if !ok {
1181 return nil, false
1182 }
1183 return cs.(*ClientSessionState), true
1184}
1185
1186// lruServerSessionCache is a ServerSessionCache implementation that
1187// uses an LRU caching strategy.
1188type lruServerSessionCache struct {
1189 lruSessionCache
1190}
1191
1192func (c *lruServerSessionCache) Put(sessionId string, session *sessionState) {
1193 c.lruSessionCache.Put(sessionId, session)
1194}
1195
1196func (c *lruServerSessionCache) Get(sessionId string) (*sessionState, bool) {
1197 cs, ok := c.lruSessionCache.Get(sessionId)
1198 if !ok {
1199 return nil, false
1200 }
1201 return cs.(*sessionState), true
1202}
1203
1204// NewLRUClientSessionCache returns a ClientSessionCache with the given
1205// capacity that uses an LRU strategy. If capacity is < 1, a default capacity
1206// is used instead.
1207func NewLRUClientSessionCache(capacity int) ClientSessionCache {
1208 const defaultSessionCacheCapacity = 64
1209
1210 if capacity < 1 {
1211 capacity = defaultSessionCacheCapacity
1212 }
1213 return &lruClientSessionCache{
1214 lruSessionCache{
1215 m: make(map[string]*list.Element),
1216 q: list.New(),
1217 capacity: capacity,
1218 },
1219 }
1220}
1221
1222// NewLRUServerSessionCache returns a ServerSessionCache with the given
1223// capacity that uses an LRU strategy. If capacity is < 1, a default capacity
1224// is used instead.
1225func NewLRUServerSessionCache(capacity int) ServerSessionCache {
1226 const defaultSessionCacheCapacity = 64
1227
1228 if capacity < 1 {
1229 capacity = defaultSessionCacheCapacity
1230 }
1231 return &lruServerSessionCache{
1232 lruSessionCache{
1233 m: make(map[string]*list.Element),
1234 q: list.New(),
1235 capacity: capacity,
1236 },
1237 }
1238}
1239
Adam Langley95c29f32014-06-20 12:00:00 -07001240// TODO(jsing): Make these available to both crypto/x509 and crypto/tls.
1241type dsaSignature struct {
1242 R, S *big.Int
1243}
1244
1245type ecdsaSignature dsaSignature
1246
1247var emptyConfig Config
1248
1249func defaultConfig() *Config {
1250 return &emptyConfig
1251}
1252
1253var (
1254 once sync.Once
1255 varDefaultCipherSuites []uint16
1256)
1257
1258func defaultCipherSuites() []uint16 {
1259 once.Do(initDefaultCipherSuites)
1260 return varDefaultCipherSuites
1261}
1262
1263func initDefaultCipherSuites() {
David Benjamin48cae082014-10-27 01:06:24 -04001264 for _, suite := range cipherSuites {
1265 if suite.flags&suitePSK == 0 {
1266 varDefaultCipherSuites = append(varDefaultCipherSuites, suite.id)
1267 }
Adam Langley95c29f32014-06-20 12:00:00 -07001268 }
1269}
1270
1271func unexpectedMessageError(wanted, got interface{}) error {
1272 return fmt.Errorf("tls: received unexpected handshake message of type %T when waiting for %T", got, wanted)
1273}
David Benjamin000800a2014-11-14 01:43:59 -05001274
Nick Harper60edffd2016-06-21 15:19:24 -07001275func isSupportedSignatureAlgorithm(sigAlg signatureAlgorithm, sigAlgs []signatureAlgorithm) bool {
1276 for _, s := range sigAlgs {
1277 if s == sigAlg {
David Benjamin000800a2014-11-14 01:43:59 -05001278 return true
1279 }
1280 }
1281 return false
1282}
Nick Harper85f20c22016-07-04 10:11:59 -07001283
1284var (
1285 // See draft-ietf-tls-tls13-13, section 6.3.1.2.
1286 downgradeTLS13 = []byte{0x44, 0x4f, 0x57, 0x4e, 0x47, 0x52, 0x44, 0x01}
1287 downgradeTLS12 = []byte{0x44, 0x4f, 0x57, 0x4e, 0x47, 0x52, 0x44, 0x00}
1288)