ticket.go 18 KB

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  1. // Copyright 2012 The Go Authors. All rights reserved.
  2. // Use of this source code is governed by a BSD-style
  3. // license that can be found in the LICENSE file.
  4. package tls
  5. import (
  6. "crypto/aes"
  7. "crypto/cipher"
  8. "crypto/hmac"
  9. "crypto/rand"
  10. "crypto/sha256"
  11. "crypto/subtle"
  12. "crypto/x509"
  13. "encoding/binary"
  14. "errors"
  15. "io"
  16. "math/big"
  17. math_rand "math/rand"
  18. "golang.org/x/crypto/cryptobyte"
  19. )
  20. // [Psiphon]
  21. var obfuscateSessionTickets = true
  22. // A SessionState is a resumable session.
  23. type SessionState struct {
  24. // Encoded as a SessionState (in the language of RFC 8446, Section 3).
  25. //
  26. // enum { server(1), client(2) } SessionStateType;
  27. //
  28. // opaque Certificate<1..2^24-1>;
  29. //
  30. // Certificate CertificateChain<0..2^24-1>;
  31. //
  32. // opaque Extra<0..2^24-1>;
  33. //
  34. // struct {
  35. // uint16 version;
  36. // SessionStateType type;
  37. // uint16 cipher_suite;
  38. // uint64 created_at;
  39. // opaque secret<1..2^8-1>;
  40. // Extra extra<0..2^24-1>;
  41. // uint8 ext_master_secret = { 0, 1 };
  42. // uint8 early_data = { 0, 1 };
  43. // CertificateEntry certificate_list<0..2^24-1>;
  44. // CertificateChain verified_chains<0..2^24-1>; /* excluding leaf */
  45. // select (SessionState.early_data) {
  46. // case 0: Empty;
  47. // case 1: opaque alpn<1..2^8-1>;
  48. // };
  49. // select (SessionState.type) {
  50. // case server: Empty;
  51. // case client: struct {
  52. // select (SessionState.version) {
  53. // case VersionTLS10..VersionTLS12: Empty;
  54. // case VersionTLS13: struct {
  55. // uint64 use_by;
  56. // uint32 age_add;
  57. // };
  58. // };
  59. // };
  60. // };
  61. // } SessionState;
  62. //
  63. // Extra is ignored by crypto/tls, but is encoded by [SessionState.Bytes]
  64. // and parsed by [ParseSessionState].
  65. //
  66. // This allows [Config.UnwrapSession]/[Config.WrapSession] and
  67. // [ClientSessionCache] implementations to store and retrieve additional
  68. // data alongside this session.
  69. //
  70. // To allow different layers in a protocol stack to share this field,
  71. // applications must only append to it, not replace it, and must use entries
  72. // that can be recognized even if out of order (for example, by starting
  73. // with a id and version prefix).
  74. Extra [][]byte
  75. // EarlyData indicates whether the ticket can be used for 0-RTT in a QUIC
  76. // connection. The application may set this to false if it is true to
  77. // decline to offer 0-RTT even if supported.
  78. EarlyData bool
  79. version uint16
  80. isClient bool
  81. cipherSuite uint16
  82. // createdAt is the generation time of the secret on the sever (which for
  83. // TLS 1.0–1.2 might be earlier than the current session) and the time at
  84. // which the ticket was received on the client.
  85. createdAt uint64 // seconds since UNIX epoch
  86. secret []byte // master secret for TLS 1.2, or the PSK for TLS 1.3
  87. extMasterSecret bool
  88. peerCertificates []*x509.Certificate
  89. activeCertHandles []*activeCert
  90. ocspResponse []byte
  91. scts [][]byte
  92. verifiedChains [][]*x509.Certificate
  93. alpnProtocol string // only set if EarlyData is true
  94. // Client-side TLS 1.3-only fields.
  95. useBy uint64 // seconds since UNIX epoch
  96. ageAdd uint32
  97. }
  98. // Bytes encodes the session, including any private fields, so that it can be
  99. // parsed by [ParseSessionState]. The encoding contains secret values critical
  100. // to the security of future and possibly past sessions.
  101. //
  102. // The specific encoding should be considered opaque and may change incompatibly
  103. // between Go versions.
  104. func (s *SessionState) Bytes() ([]byte, error) {
  105. var b cryptobyte.Builder
  106. b.AddUint16(s.version)
  107. if s.isClient {
  108. b.AddUint8(2) // client
  109. } else {
  110. b.AddUint8(1) // server
  111. }
  112. b.AddUint16(s.cipherSuite)
  113. addUint64(&b, s.createdAt)
  114. b.AddUint8LengthPrefixed(func(b *cryptobyte.Builder) {
  115. b.AddBytes(s.secret)
  116. })
  117. b.AddUint24LengthPrefixed(func(b *cryptobyte.Builder) {
  118. for _, extra := range s.Extra {
  119. b.AddUint24LengthPrefixed(func(b *cryptobyte.Builder) {
  120. b.AddBytes(extra)
  121. })
  122. }
  123. })
  124. if s.extMasterSecret {
  125. b.AddUint8(1)
  126. } else {
  127. b.AddUint8(0)
  128. }
  129. if s.EarlyData {
  130. b.AddUint8(1)
  131. } else {
  132. b.AddUint8(0)
  133. }
  134. marshalCertificate(&b, Certificate{
  135. Certificate: certificatesToBytesSlice(s.peerCertificates),
  136. OCSPStaple: s.ocspResponse,
  137. SignedCertificateTimestamps: s.scts,
  138. })
  139. b.AddUint24LengthPrefixed(func(b *cryptobyte.Builder) {
  140. for _, chain := range s.verifiedChains {
  141. b.AddUint24LengthPrefixed(func(b *cryptobyte.Builder) {
  142. // We elide the first certificate because it's always the leaf.
  143. if len(chain) == 0 {
  144. b.SetError(errors.New("tls: internal error: empty verified chain"))
  145. return
  146. }
  147. for _, cert := range chain[1:] {
  148. b.AddUint24LengthPrefixed(func(b *cryptobyte.Builder) {
  149. b.AddBytes(cert.Raw)
  150. })
  151. }
  152. })
  153. }
  154. })
  155. if s.EarlyData {
  156. b.AddUint8LengthPrefixed(func(b *cryptobyte.Builder) {
  157. b.AddBytes([]byte(s.alpnProtocol))
  158. })
  159. }
  160. if s.isClient {
  161. if s.version >= VersionTLS13 {
  162. addUint64(&b, s.useBy)
  163. b.AddUint32(s.ageAdd)
  164. }
  165. }
  166. // [Psiphon]
  167. bytes, err := b.Bytes()
  168. if err != nil {
  169. return nil, err
  170. }
  171. // [Psiphon]
  172. // Pad golang TLS session ticket to a more typical size.
  173. if obfuscateSessionTickets {
  174. paddedSizes := []int{160, 176, 192, 208, 218, 224, 240, 255}
  175. initialSize := 120
  176. randomInt, err := rand.Int(rand.Reader, big.NewInt(int64(len(paddedSizes))))
  177. index := 0
  178. if err == nil {
  179. index = int(randomInt.Int64())
  180. } else {
  181. index = math_rand.Intn(len(paddedSizes))
  182. }
  183. paddingSize := paddedSizes[index] - initialSize
  184. ret := make([]byte, len(bytes)+paddingSize)
  185. copy(ret, bytes)
  186. return ret, nil
  187. }
  188. return bytes, nil
  189. }
  190. func certificatesToBytesSlice(certs []*x509.Certificate) [][]byte {
  191. s := make([][]byte, 0, len(certs))
  192. for _, c := range certs {
  193. s = append(s, c.Raw)
  194. }
  195. return s
  196. }
  197. // ParseSessionState parses a [SessionState] encoded by [SessionState.Bytes].
  198. func ParseSessionState(data []byte) (*SessionState, error) {
  199. ss := &SessionState{}
  200. s := cryptobyte.String(data)
  201. var typ, extMasterSecret, earlyData uint8
  202. var cert Certificate
  203. var extra cryptobyte.String
  204. if !s.ReadUint16(&ss.version) ||
  205. !s.ReadUint8(&typ) ||
  206. (typ != 1 && typ != 2) ||
  207. !s.ReadUint16(&ss.cipherSuite) ||
  208. !readUint64(&s, &ss.createdAt) ||
  209. !readUint8LengthPrefixed(&s, &ss.secret) ||
  210. !s.ReadUint24LengthPrefixed(&extra) ||
  211. !s.ReadUint8(&extMasterSecret) ||
  212. !s.ReadUint8(&earlyData) ||
  213. len(ss.secret) == 0 ||
  214. !unmarshalCertificate(&s, &cert) {
  215. return nil, errors.New("tls: invalid session encoding")
  216. }
  217. for !extra.Empty() {
  218. var e []byte
  219. if !readUint24LengthPrefixed(&extra, &e) {
  220. return nil, errors.New("tls: invalid session encoding")
  221. }
  222. ss.Extra = append(ss.Extra, e)
  223. }
  224. switch extMasterSecret {
  225. case 0:
  226. ss.extMasterSecret = false
  227. case 1:
  228. ss.extMasterSecret = true
  229. default:
  230. return nil, errors.New("tls: invalid session encoding")
  231. }
  232. switch earlyData {
  233. case 0:
  234. ss.EarlyData = false
  235. case 1:
  236. ss.EarlyData = true
  237. default:
  238. return nil, errors.New("tls: invalid session encoding")
  239. }
  240. for _, cert := range cert.Certificate {
  241. c, err := globalCertCache.newCert(cert)
  242. if err != nil {
  243. return nil, err
  244. }
  245. ss.activeCertHandles = append(ss.activeCertHandles, c)
  246. ss.peerCertificates = append(ss.peerCertificates, c.cert)
  247. }
  248. ss.ocspResponse = cert.OCSPStaple
  249. ss.scts = cert.SignedCertificateTimestamps
  250. var chainList cryptobyte.String
  251. if !s.ReadUint24LengthPrefixed(&chainList) {
  252. return nil, errors.New("tls: invalid session encoding")
  253. }
  254. for !chainList.Empty() {
  255. var certList cryptobyte.String
  256. if !chainList.ReadUint24LengthPrefixed(&certList) {
  257. return nil, errors.New("tls: invalid session encoding")
  258. }
  259. var chain []*x509.Certificate
  260. if len(ss.peerCertificates) == 0 {
  261. return nil, errors.New("tls: invalid session encoding")
  262. }
  263. chain = append(chain, ss.peerCertificates[0])
  264. for !certList.Empty() {
  265. var cert []byte
  266. if !readUint24LengthPrefixed(&certList, &cert) {
  267. return nil, errors.New("tls: invalid session encoding")
  268. }
  269. c, err := globalCertCache.newCert(cert)
  270. if err != nil {
  271. return nil, err
  272. }
  273. ss.activeCertHandles = append(ss.activeCertHandles, c)
  274. chain = append(chain, c.cert)
  275. }
  276. ss.verifiedChains = append(ss.verifiedChains, chain)
  277. }
  278. if ss.EarlyData {
  279. var alpn []byte
  280. if !readUint8LengthPrefixed(&s, &alpn) {
  281. return nil, errors.New("tls: invalid session encoding")
  282. }
  283. ss.alpnProtocol = string(alpn)
  284. }
  285. if isClient := typ == 2; !isClient {
  286. // [Psiphon]
  287. // Ignore padding for obfuscated session tickets.
  288. if !s.Empty() && !allZeros(s) {
  289. return nil, errors.New("tls: invalid session encoding")
  290. }
  291. return ss, nil
  292. }
  293. ss.isClient = true
  294. if len(ss.peerCertificates) == 0 {
  295. return nil, errors.New("tls: no server certificates in client session")
  296. }
  297. if ss.version < VersionTLS13 {
  298. if !s.Empty() {
  299. return nil, errors.New("tls: invalid session encoding")
  300. }
  301. return ss, nil
  302. }
  303. if !s.ReadUint64(&ss.useBy) || !s.ReadUint32(&ss.ageAdd) || !s.Empty() {
  304. return nil, errors.New("tls: invalid session encoding")
  305. }
  306. return ss, nil
  307. }
  308. // sessionState returns a partially filled-out [SessionState] with information
  309. // from the current connection.
  310. func (c *Conn) sessionState() (*SessionState, error) {
  311. return &SessionState{
  312. version: c.vers,
  313. cipherSuite: c.cipherSuite,
  314. createdAt: uint64(c.config.time().Unix()),
  315. alpnProtocol: c.clientProtocol,
  316. peerCertificates: c.peerCertificates,
  317. activeCertHandles: c.activeCertHandles,
  318. ocspResponse: c.ocspResponse,
  319. scts: c.scts,
  320. isClient: c.isClient,
  321. extMasterSecret: c.extMasterSecret,
  322. verifiedChains: c.verifiedChains,
  323. }, nil
  324. }
  325. // EncryptTicket encrypts a ticket with the Config's configured (or default)
  326. // session ticket keys. It can be used as a [Config.WrapSession] implementation.
  327. func (c *Config) EncryptTicket(cs ConnectionState, ss *SessionState) ([]byte, error) {
  328. ticketKeys := c.ticketKeys(nil)
  329. stateBytes, err := ss.Bytes()
  330. if err != nil {
  331. return nil, err
  332. }
  333. return c.encryptTicket(stateBytes, ticketKeys)
  334. }
  335. func (c *Config) encryptTicket(state []byte, ticketKeys []ticketKey) ([]byte, error) {
  336. if len(ticketKeys) == 0 {
  337. return nil, errors.New("tls: internal error: session ticket keys unavailable")
  338. }
  339. encrypted := make([]byte, aes.BlockSize+len(state)+sha256.Size)
  340. iv := encrypted[:aes.BlockSize]
  341. ciphertext := encrypted[aes.BlockSize : len(encrypted)-sha256.Size]
  342. authenticated := encrypted[:len(encrypted)-sha256.Size]
  343. macBytes := encrypted[len(encrypted)-sha256.Size:]
  344. if _, err := io.ReadFull(c.rand(), iv); err != nil {
  345. return nil, err
  346. }
  347. key := ticketKeys[0]
  348. block, err := aes.NewCipher(key.aesKey[:])
  349. if err != nil {
  350. return nil, errors.New("tls: failed to create cipher while encrypting ticket: " + err.Error())
  351. }
  352. cipher.NewCTR(block, iv).XORKeyStream(ciphertext, state)
  353. mac := hmac.New(sha256.New, key.hmacKey[:])
  354. mac.Write(authenticated)
  355. mac.Sum(macBytes[:0])
  356. return encrypted, nil
  357. }
  358. // DecryptTicket decrypts a ticket encrypted by [Config.EncryptTicket]. It can
  359. // be used as a [Config.UnwrapSession] implementation.
  360. //
  361. // If the ticket can't be decrypted or parsed, DecryptTicket returns (nil, nil).
  362. func (c *Config) DecryptTicket(identity []byte, cs ConnectionState) (*SessionState, error) {
  363. ticketKeys := c.ticketKeys(nil)
  364. stateBytes := c.decryptTicket(identity, ticketKeys)
  365. if stateBytes == nil {
  366. return nil, nil
  367. }
  368. s, err := ParseSessionState(stateBytes)
  369. if err != nil {
  370. return nil, nil // drop unparsable tickets on the floor
  371. }
  372. return s, nil
  373. }
  374. func (c *Config) decryptTicket(encrypted []byte, ticketKeys []ticketKey) []byte {
  375. if len(encrypted) < aes.BlockSize+sha256.Size {
  376. return nil
  377. }
  378. iv := encrypted[:aes.BlockSize]
  379. ciphertext := encrypted[aes.BlockSize : len(encrypted)-sha256.Size]
  380. authenticated := encrypted[:len(encrypted)-sha256.Size]
  381. macBytes := encrypted[len(encrypted)-sha256.Size:]
  382. for _, key := range ticketKeys {
  383. mac := hmac.New(sha256.New, key.hmacKey[:])
  384. mac.Write(authenticated)
  385. expected := mac.Sum(nil)
  386. if subtle.ConstantTimeCompare(macBytes, expected) != 1 {
  387. continue
  388. }
  389. block, err := aes.NewCipher(key.aesKey[:])
  390. if err != nil {
  391. return nil
  392. }
  393. plaintext := make([]byte, len(ciphertext))
  394. cipher.NewCTR(block, iv).XORKeyStream(plaintext, ciphertext)
  395. return plaintext
  396. }
  397. return nil
  398. }
  399. // ClientSessionState contains the state needed by a client to
  400. // resume a previous TLS session.
  401. type ClientSessionState struct {
  402. ticket []byte
  403. session *SessionState
  404. }
  405. // ResumptionState returns the session ticket sent by the server (also known as
  406. // the session's identity) and the state necessary to resume this session.
  407. //
  408. // It can be called by [ClientSessionCache.Put] to serialize (with
  409. // [SessionState.Bytes]) and store the session.
  410. func (cs *ClientSessionState) ResumptionState() (ticket []byte, state *SessionState, err error) {
  411. return cs.ticket, cs.session, nil
  412. }
  413. // NewResumptionState returns a state value that can be returned by
  414. // [ClientSessionCache.Get] to resume a previous session.
  415. //
  416. // state needs to be returned by [ParseSessionState], and the ticket and session
  417. // state must have been returned by [ClientSessionState.ResumptionState].
  418. func NewResumptionState(ticket []byte, state *SessionState) (*ClientSessionState, error) {
  419. return &ClientSessionState{
  420. ticket: ticket, session: state,
  421. }, nil
  422. }
  423. // [Psiphon]
  424. type ObfuscatedClientSessionState struct {
  425. SessionTicket []uint8
  426. Vers uint16
  427. CipherSuite uint16
  428. CreatedAt uint64 // seconds since UNIX epoch
  429. MasterSecret []byte
  430. ServerCertificates []*x509.Certificate
  431. VerifiedChains [][]*x509.Certificate
  432. ExtMasterSecret bool
  433. // Client-side TLS 1.3-only fields.
  434. UseBy uint64 // seconds since UNIX epoch
  435. AgeAdd uint32
  436. }
  437. var obfuscatedSessionTicketCipherSuite_TLS12 = TLS_ECDHE_RSA_WITH_AES_128_GCM_SHA256
  438. var obfuscatedSessionTicketCipherSuite_TLS13 = TLS_AES_128_GCM_SHA256
  439. // [Psiphon]
  440. // NewObfuscatedClientSessionState produces obfuscated session tickets or PSK.
  441. //
  442. // # Obfuscated Session Tickets
  443. //
  444. // Obfuscated session tickets is a network traffic obfuscation protocol that appears
  445. // to be valid TLS using session tickets. The client actually generates the session
  446. // ticket and encrypts it with a shared secret, enabling a TLS session that entirely
  447. // skips the most fingerprintable aspects of TLS.
  448. // The scheme is described here:
  449. // https://lists.torproject.org/pipermail/tor-dev/2016-September/011354.html
  450. //
  451. // Circumvention notes:
  452. // - TLS session ticket implementations are widespread:
  453. // https://istlsfastyet.com/#cdn-paas.
  454. // - An adversary cannot easily block session ticket capability, as this requires
  455. // a downgrade attack against TLS.
  456. // - Anti-probing defence is provided, as the adversary must use the correct obfuscation
  457. // shared secret to form valid obfuscation session ticket; otherwise server offers
  458. // standard session tickets.
  459. // - Limitation: an adversary with the obfuscation shared secret can decrypt the session
  460. // ticket and observe the plaintext traffic. It's assumed that the adversary will not
  461. // learn the obfuscated shared secret without also learning the address of the TLS
  462. // server and blocking it anyway; it's also assumed that the TLS payload is not
  463. // plaintext but is protected with some other security layer (e.g., SSH).
  464. //
  465. // Implementation notes:
  466. // - The TLS ClientHello includes an SNI field, even when using session tickets, so
  467. // the client should populate the ServerName.
  468. // - Server should set its SetSessionTicketKeys with first a standard key, followed by
  469. // the obfuscation shared secret.
  470. // - Since the client creates the session ticket, it selects parameters that were not
  471. // negotiated with the server, such as the cipher suite. It's implicitly assumed that
  472. // the server can support the selected parameters.
  473. func NewObfuscatedClientSessionState(
  474. sharedSecret [32]byte, isTLS13 bool, extMasterSecret bool) (*ObfuscatedClientSessionState, error) {
  475. // Create a session ticket that wasn't actually issued by the server.
  476. vers := uint16(VersionTLS12)
  477. cipherSuite := obfuscatedSessionTicketCipherSuite_TLS12
  478. if isTLS13 {
  479. vers = VersionTLS13
  480. cipherSuite = obfuscatedSessionTicketCipherSuite_TLS13
  481. }
  482. masterSecret := make([]byte, masterSecretLength)
  483. _, err := rand.Read(masterSecret)
  484. if err != nil {
  485. return nil, err
  486. }
  487. config := &Config{}
  488. ageAdd := make([]byte, 4)
  489. _, err = config.rand().Read(ageAdd)
  490. if err != nil {
  491. return nil, err
  492. }
  493. lifetime := maxSessionTicketLifetime
  494. serverState := &SessionState{
  495. version: vers,
  496. isClient: false,
  497. cipherSuite: cipherSuite,
  498. createdAt: uint64(config.time().Unix()),
  499. secret: masterSecret,
  500. peerCertificates: nil,
  501. extMasterSecret: extMasterSecret,
  502. // TLS 1.3 fields
  503. useBy: uint64(config.time().Add(lifetime).Unix()),
  504. ageAdd: binary.LittleEndian.Uint32(ageAdd),
  505. }
  506. sessionTicketKeys := []ticketKey{config.ticketKeyFromBytes(sharedSecret)}
  507. ssBytes, err := serverState.Bytes()
  508. if err != nil {
  509. return nil, err
  510. }
  511. sessionTicket, err := config.encryptTicket(ssBytes, sessionTicketKeys)
  512. if err != nil {
  513. return nil, err
  514. }
  515. // ObfuscatedClientSessionState fields are used to construct
  516. // ClientSessionState objects for use in ClientSessionCaches. The client will
  517. // use this cache to pretend it got that session ticket from the server.
  518. clientState := &ObfuscatedClientSessionState{
  519. SessionTicket: sessionTicket,
  520. Vers: vers,
  521. CipherSuite: cipherSuite,
  522. MasterSecret: masterSecret,
  523. ExtMasterSecret: extMasterSecret,
  524. UseBy: serverState.useBy,
  525. AgeAdd: serverState.ageAdd,
  526. CreatedAt: serverState.createdAt,
  527. }
  528. return clientState, nil
  529. }
  530. func ContainsObfuscatedSessionTicketCipherSuite(cipherSuites []uint16) bool {
  531. for _, cipherSuite := range cipherSuites {
  532. if cipherSuite == obfuscatedSessionTicketCipherSuite_TLS12 {
  533. return true
  534. }
  535. }
  536. return false
  537. }
  538. func ContainsObfuscatedPSKCipherSuite(cipherSuites []uint16) bool {
  539. for _, cipherSuite := range cipherSuites {
  540. if cipherSuite == obfuscatedSessionTicketCipherSuite_TLS13 {
  541. return true
  542. }
  543. }
  544. return false
  545. }
  546. // allZeros returns true if remaining bytes are all zero.
  547. func allZeros(s cryptobyte.String) bool {
  548. b := []byte(s)
  549. for _, v := range b {
  550. if v != 0x0 {
  551. return false
  552. }
  553. }
  554. return true
  555. }