handshake_test.go 27 KB

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  1. // Copyright 2013 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 ssh
  5. import (
  6. "bytes"
  7. "crypto/rand"
  8. "errors"
  9. "fmt"
  10. "io"
  11. "net"
  12. "reflect"
  13. "runtime"
  14. "strings"
  15. "sync"
  16. "testing"
  17. )
  18. type testChecker struct {
  19. calls []string
  20. }
  21. func (t *testChecker) Check(dialAddr string, addr net.Addr, key PublicKey) error {
  22. if dialAddr == "bad" {
  23. return fmt.Errorf("dialAddr is bad")
  24. }
  25. if tcpAddr, ok := addr.(*net.TCPAddr); !ok || tcpAddr == nil {
  26. return fmt.Errorf("testChecker: got %T want *net.TCPAddr", addr)
  27. }
  28. t.calls = append(t.calls, fmt.Sprintf("%s %v %s %x", dialAddr, addr, key.Type(), key.Marshal()))
  29. return nil
  30. }
  31. // netPipe is analogous to net.Pipe, but it uses a real net.Conn, and
  32. // therefore is buffered (net.Pipe deadlocks if both sides start with
  33. // a write.)
  34. func netPipe() (net.Conn, net.Conn, error) {
  35. listener, err := net.Listen("tcp", "127.0.0.1:0")
  36. if err != nil {
  37. listener, err = net.Listen("tcp", "[::1]:0")
  38. if err != nil {
  39. return nil, nil, err
  40. }
  41. }
  42. defer listener.Close()
  43. c1, err := net.Dial("tcp", listener.Addr().String())
  44. if err != nil {
  45. return nil, nil, err
  46. }
  47. c2, err := listener.Accept()
  48. if err != nil {
  49. c1.Close()
  50. return nil, nil, err
  51. }
  52. return c1, c2, nil
  53. }
  54. // noiseTransport inserts ignore messages to check that the read loop
  55. // and the key exchange filters out these messages.
  56. type noiseTransport struct {
  57. keyingTransport
  58. }
  59. func (t *noiseTransport) writePacket(p []byte) error {
  60. ignore := []byte{msgIgnore}
  61. if err := t.keyingTransport.writePacket(ignore); err != nil {
  62. return err
  63. }
  64. debug := []byte{msgDebug, 1, 2, 3}
  65. if err := t.keyingTransport.writePacket(debug); err != nil {
  66. return err
  67. }
  68. return t.keyingTransport.writePacket(p)
  69. }
  70. func addNoiseTransport(t keyingTransport) keyingTransport {
  71. return &noiseTransport{t}
  72. }
  73. // handshakePair creates two handshakeTransports connected with each
  74. // other. If the noise argument is true, both transports will try to
  75. // confuse the other side by sending ignore and debug messages.
  76. func handshakePair(clientConf *ClientConfig, addr string, noise bool) (client *handshakeTransport, server *handshakeTransport, err error) {
  77. a, b, err := netPipe()
  78. if err != nil {
  79. return nil, nil, err
  80. }
  81. var trC, trS keyingTransport
  82. trC = newTransport(a, rand.Reader, true)
  83. trS = newTransport(b, rand.Reader, false)
  84. if noise {
  85. trC = addNoiseTransport(trC)
  86. trS = addNoiseTransport(trS)
  87. }
  88. clientConf.SetDefaults()
  89. v := []byte("version")
  90. client = newClientTransport(trC, v, v, clientConf, addr, a.RemoteAddr())
  91. serverConf := &ServerConfig{}
  92. serverConf.AddHostKey(testSigners["ecdsa"])
  93. serverConf.AddHostKey(testSigners["rsa"])
  94. serverConf.SetDefaults()
  95. server = newServerTransport(trS, v, v, serverConf)
  96. if err := server.waitSession(); err != nil {
  97. return nil, nil, fmt.Errorf("server.waitSession: %v", err)
  98. }
  99. if err := client.waitSession(); err != nil {
  100. return nil, nil, fmt.Errorf("client.waitSession: %v", err)
  101. }
  102. return client, server, nil
  103. }
  104. func TestHandshakeBasic(t *testing.T) {
  105. if runtime.GOOS == "plan9" {
  106. t.Skip("see golang.org/issue/7237")
  107. }
  108. checker := &syncChecker{
  109. waitCall: make(chan int, 10),
  110. called: make(chan int, 10),
  111. }
  112. checker.waitCall <- 1
  113. trC, trS, err := handshakePair(&ClientConfig{HostKeyCallback: checker.Check}, "addr", false)
  114. if err != nil {
  115. t.Fatalf("handshakePair: %v", err)
  116. }
  117. defer trC.Close()
  118. defer trS.Close()
  119. // Let first kex complete normally.
  120. <-checker.called
  121. clientDone := make(chan int, 0)
  122. gotHalf := make(chan int, 0)
  123. const N = 20
  124. errorCh := make(chan error, 1)
  125. go func() {
  126. defer close(clientDone)
  127. // Client writes a bunch of stuff, and does a key
  128. // change in the middle. This should not confuse the
  129. // handshake in progress. We do this twice, so we test
  130. // that the packet buffer is reset correctly.
  131. for i := 0; i < N; i++ {
  132. p := []byte{msgRequestSuccess, byte(i)}
  133. if err := trC.writePacket(p); err != nil {
  134. errorCh <- err
  135. trC.Close()
  136. return
  137. }
  138. if (i % 10) == 5 {
  139. <-gotHalf
  140. // halfway through, we request a key change.
  141. trC.requestKeyExchange()
  142. // Wait until we can be sure the key
  143. // change has really started before we
  144. // write more.
  145. <-checker.called
  146. }
  147. if (i % 10) == 7 {
  148. // write some packets until the kex
  149. // completes, to test buffering of
  150. // packets.
  151. checker.waitCall <- 1
  152. }
  153. }
  154. errorCh <- nil
  155. }()
  156. // Server checks that client messages come in cleanly
  157. i := 0
  158. for ; i < N; i++ {
  159. p, err := trS.readPacket()
  160. if err != nil && err != io.EOF {
  161. t.Fatalf("server error: %v", err)
  162. }
  163. if (i % 10) == 5 {
  164. gotHalf <- 1
  165. }
  166. want := []byte{msgRequestSuccess, byte(i)}
  167. if bytes.Compare(p, want) != 0 {
  168. t.Errorf("message %d: got %v, want %v", i, p, want)
  169. }
  170. }
  171. <-clientDone
  172. if err := <-errorCh; err != nil {
  173. t.Fatalf("sendPacket: %v", err)
  174. }
  175. if i != N {
  176. t.Errorf("received %d messages, want 10.", i)
  177. }
  178. close(checker.called)
  179. if _, ok := <-checker.called; ok {
  180. // If all went well, we registered exactly 2 key changes: one
  181. // that establishes the session, and one that we requested
  182. // additionally.
  183. t.Fatalf("got another host key checks after 2 handshakes")
  184. }
  185. }
  186. func TestForceFirstKex(t *testing.T) {
  187. // like handshakePair, but must access the keyingTransport.
  188. checker := &testChecker{}
  189. clientConf := &ClientConfig{HostKeyCallback: checker.Check}
  190. a, b, err := netPipe()
  191. if err != nil {
  192. t.Fatalf("netPipe: %v", err)
  193. }
  194. var trC, trS keyingTransport
  195. trC = newTransport(a, rand.Reader, true)
  196. // This is the disallowed packet:
  197. trC.writePacket(Marshal(&serviceRequestMsg{serviceUserAuth}))
  198. // Rest of the setup.
  199. trS = newTransport(b, rand.Reader, false)
  200. clientConf.SetDefaults()
  201. v := []byte("version")
  202. client := newClientTransport(trC, v, v, clientConf, "addr", a.RemoteAddr())
  203. serverConf := &ServerConfig{}
  204. serverConf.AddHostKey(testSigners["ecdsa"])
  205. serverConf.AddHostKey(testSigners["rsa"])
  206. serverConf.SetDefaults()
  207. server := newServerTransport(trS, v, v, serverConf)
  208. defer client.Close()
  209. defer server.Close()
  210. // We setup the initial key exchange, but the remote side
  211. // tries to send serviceRequestMsg in cleartext, which is
  212. // disallowed.
  213. if err := server.waitSession(); err == nil {
  214. t.Errorf("server first kex init should reject unexpected packet")
  215. }
  216. }
  217. func TestHandshakeAutoRekeyWrite(t *testing.T) {
  218. checker := &syncChecker{
  219. called: make(chan int, 10),
  220. waitCall: nil,
  221. }
  222. clientConf := &ClientConfig{HostKeyCallback: checker.Check}
  223. clientConf.RekeyThreshold = 500
  224. trC, trS, err := handshakePair(clientConf, "addr", false)
  225. if err != nil {
  226. t.Fatalf("handshakePair: %v", err)
  227. }
  228. defer trC.Close()
  229. defer trS.Close()
  230. input := make([]byte, 251)
  231. input[0] = msgRequestSuccess
  232. done := make(chan int, 1)
  233. const numPacket = 5
  234. go func() {
  235. defer close(done)
  236. j := 0
  237. for ; j < numPacket; j++ {
  238. if p, err := trS.readPacket(); err != nil {
  239. break
  240. } else if !bytes.Equal(input, p) {
  241. t.Errorf("got packet type %d, want %d", p[0], input[0])
  242. }
  243. }
  244. if j != numPacket {
  245. t.Errorf("got %d, want 5 messages", j)
  246. }
  247. }()
  248. <-checker.called
  249. for i := 0; i < numPacket; i++ {
  250. p := make([]byte, len(input))
  251. copy(p, input)
  252. if err := trC.writePacket(p); err != nil {
  253. t.Errorf("writePacket: %v", err)
  254. }
  255. if i == 2 {
  256. // Make sure the kex is in progress.
  257. <-checker.called
  258. }
  259. }
  260. <-done
  261. }
  262. type syncChecker struct {
  263. waitCall chan int
  264. called chan int
  265. }
  266. func (c *syncChecker) Check(dialAddr string, addr net.Addr, key PublicKey) error {
  267. c.called <- 1
  268. if c.waitCall != nil {
  269. <-c.waitCall
  270. }
  271. return nil
  272. }
  273. func TestHandshakeAutoRekeyRead(t *testing.T) {
  274. sync := &syncChecker{
  275. called: make(chan int, 2),
  276. waitCall: nil,
  277. }
  278. clientConf := &ClientConfig{
  279. HostKeyCallback: sync.Check,
  280. }
  281. clientConf.RekeyThreshold = 500
  282. trC, trS, err := handshakePair(clientConf, "addr", false)
  283. if err != nil {
  284. t.Fatalf("handshakePair: %v", err)
  285. }
  286. defer trC.Close()
  287. defer trS.Close()
  288. packet := make([]byte, 501)
  289. packet[0] = msgRequestSuccess
  290. if err := trS.writePacket(packet); err != nil {
  291. t.Fatalf("writePacket: %v", err)
  292. }
  293. // While we read out the packet, a key change will be
  294. // initiated.
  295. errorCh := make(chan error, 1)
  296. go func() {
  297. _, err := trC.readPacket()
  298. errorCh <- err
  299. }()
  300. if err := <-errorCh; err != nil {
  301. t.Fatalf("readPacket(client): %v", err)
  302. }
  303. <-sync.called
  304. }
  305. // errorKeyingTransport generates errors after a given number of
  306. // read/write operations.
  307. type errorKeyingTransport struct {
  308. packetConn
  309. readLeft, writeLeft int
  310. }
  311. func (n *errorKeyingTransport) prepareKeyChange(*algorithms, *kexResult) error {
  312. return nil
  313. }
  314. func (n *errorKeyingTransport) getSessionID() []byte {
  315. return nil
  316. }
  317. func (n *errorKeyingTransport) writePacket(packet []byte) error {
  318. if n.writeLeft == 0 {
  319. n.Close()
  320. return errors.New("barf")
  321. }
  322. n.writeLeft--
  323. return n.packetConn.writePacket(packet)
  324. }
  325. func (n *errorKeyingTransport) readPacket() ([]byte, error) {
  326. if n.readLeft == 0 {
  327. n.Close()
  328. return nil, errors.New("barf")
  329. }
  330. n.readLeft--
  331. return n.packetConn.readPacket()
  332. }
  333. func (n *errorKeyingTransport) setStrictMode() error { return nil }
  334. func (n *errorKeyingTransport) setInitialKEXDone() {}
  335. func TestHandshakeErrorHandlingRead(t *testing.T) {
  336. for i := 0; i < 20; i++ {
  337. testHandshakeErrorHandlingN(t, i, -1, false)
  338. }
  339. }
  340. func TestHandshakeErrorHandlingWrite(t *testing.T) {
  341. for i := 0; i < 20; i++ {
  342. testHandshakeErrorHandlingN(t, -1, i, false)
  343. }
  344. }
  345. func TestHandshakeErrorHandlingReadCoupled(t *testing.T) {
  346. for i := 0; i < 20; i++ {
  347. testHandshakeErrorHandlingN(t, i, -1, true)
  348. }
  349. }
  350. func TestHandshakeErrorHandlingWriteCoupled(t *testing.T) {
  351. for i := 0; i < 20; i++ {
  352. testHandshakeErrorHandlingN(t, -1, i, true)
  353. }
  354. }
  355. // testHandshakeErrorHandlingN runs handshakes, injecting errors. If
  356. // handshakeTransport deadlocks, the go runtime will detect it and
  357. // panic.
  358. func testHandshakeErrorHandlingN(t *testing.T, readLimit, writeLimit int, coupled bool) {
  359. if (runtime.GOOS == "js" || runtime.GOOS == "wasip1") && runtime.GOARCH == "wasm" {
  360. t.Skipf("skipping on %s/wasm; see golang.org/issue/32840", runtime.GOOS)
  361. }
  362. msg := Marshal(&serviceRequestMsg{strings.Repeat("x", int(minRekeyThreshold)/4)})
  363. a, b := memPipe()
  364. defer a.Close()
  365. defer b.Close()
  366. key := testSigners["ecdsa"]
  367. serverConf := Config{RekeyThreshold: minRekeyThreshold}
  368. serverConf.SetDefaults()
  369. serverConn := newHandshakeTransport(&errorKeyingTransport{a, readLimit, writeLimit}, &serverConf, []byte{'a'}, []byte{'b'})
  370. serverConn.hostKeys = []Signer{key}
  371. go serverConn.readLoop()
  372. go serverConn.kexLoop()
  373. clientConf := Config{RekeyThreshold: 10 * minRekeyThreshold}
  374. clientConf.SetDefaults()
  375. clientConn := newHandshakeTransport(&errorKeyingTransport{b, -1, -1}, &clientConf, []byte{'a'}, []byte{'b'})
  376. clientConn.hostKeyAlgorithms = []string{key.PublicKey().Type()}
  377. clientConn.hostKeyCallback = InsecureIgnoreHostKey()
  378. go clientConn.readLoop()
  379. go clientConn.kexLoop()
  380. var wg sync.WaitGroup
  381. for _, hs := range []packetConn{serverConn, clientConn} {
  382. if !coupled {
  383. wg.Add(2)
  384. go func(c packetConn) {
  385. for i := 0; ; i++ {
  386. str := fmt.Sprintf("%08x", i) + strings.Repeat("x", int(minRekeyThreshold)/4-8)
  387. err := c.writePacket(Marshal(&serviceRequestMsg{str}))
  388. if err != nil {
  389. break
  390. }
  391. }
  392. wg.Done()
  393. c.Close()
  394. }(hs)
  395. go func(c packetConn) {
  396. for {
  397. _, err := c.readPacket()
  398. if err != nil {
  399. break
  400. }
  401. }
  402. wg.Done()
  403. }(hs)
  404. } else {
  405. wg.Add(1)
  406. go func(c packetConn) {
  407. for {
  408. _, err := c.readPacket()
  409. if err != nil {
  410. break
  411. }
  412. if err := c.writePacket(msg); err != nil {
  413. break
  414. }
  415. }
  416. wg.Done()
  417. }(hs)
  418. }
  419. }
  420. wg.Wait()
  421. }
  422. func TestDisconnect(t *testing.T) {
  423. if runtime.GOOS == "plan9" {
  424. t.Skip("see golang.org/issue/7237")
  425. }
  426. checker := &testChecker{}
  427. trC, trS, err := handshakePair(&ClientConfig{HostKeyCallback: checker.Check}, "addr", false)
  428. if err != nil {
  429. t.Fatalf("handshakePair: %v", err)
  430. }
  431. defer trC.Close()
  432. defer trS.Close()
  433. trC.writePacket([]byte{msgRequestSuccess, 0, 0})
  434. errMsg := &disconnectMsg{
  435. Reason: 42,
  436. Message: "such is life",
  437. }
  438. trC.writePacket(Marshal(errMsg))
  439. trC.writePacket([]byte{msgRequestSuccess, 0, 0})
  440. packet, err := trS.readPacket()
  441. if err != nil {
  442. t.Fatalf("readPacket 1: %v", err)
  443. }
  444. if packet[0] != msgRequestSuccess {
  445. t.Errorf("got packet %v, want packet type %d", packet, msgRequestSuccess)
  446. }
  447. _, err = trS.readPacket()
  448. if err == nil {
  449. t.Errorf("readPacket 2 succeeded")
  450. } else if !reflect.DeepEqual(err, errMsg) {
  451. t.Errorf("got error %#v, want %#v", err, errMsg)
  452. }
  453. _, err = trS.readPacket()
  454. if err == nil {
  455. t.Errorf("readPacket 3 succeeded")
  456. }
  457. }
  458. func TestHandshakeRekeyDefault(t *testing.T) {
  459. clientConf := &ClientConfig{
  460. Config: Config{
  461. Ciphers: []string{"aes128-ctr"},
  462. },
  463. HostKeyCallback: InsecureIgnoreHostKey(),
  464. }
  465. trC, trS, err := handshakePair(clientConf, "addr", false)
  466. if err != nil {
  467. t.Fatalf("handshakePair: %v", err)
  468. }
  469. defer trC.Close()
  470. defer trS.Close()
  471. trC.writePacket([]byte{msgRequestSuccess, 0, 0})
  472. trC.Close()
  473. rgb := (1024 + trC.readBytesLeft) >> 30
  474. wgb := (1024 + trC.writeBytesLeft) >> 30
  475. if rgb != 64 {
  476. t.Errorf("got rekey after %dG read, want 64G", rgb)
  477. }
  478. if wgb != 64 {
  479. t.Errorf("got rekey after %dG write, want 64G", wgb)
  480. }
  481. }
  482. func TestHandshakeAEADCipherNoMAC(t *testing.T) {
  483. for _, cipher := range []string{chacha20Poly1305ID, gcm128CipherID} {
  484. checker := &syncChecker{
  485. called: make(chan int, 1),
  486. }
  487. clientConf := &ClientConfig{
  488. Config: Config{
  489. Ciphers: []string{cipher},
  490. MACs: []string{},
  491. },
  492. HostKeyCallback: checker.Check,
  493. }
  494. trC, trS, err := handshakePair(clientConf, "addr", false)
  495. if err != nil {
  496. t.Fatalf("handshakePair: %v", err)
  497. }
  498. defer trC.Close()
  499. defer trS.Close()
  500. <-checker.called
  501. }
  502. }
  503. // TestNoSHA2Support tests a host key Signer that is not an AlgorithmSigner and
  504. // therefore can't do SHA-2 signatures. Ensures the server does not advertise
  505. // support for them in this case.
  506. func TestNoSHA2Support(t *testing.T) {
  507. c1, c2, err := netPipe()
  508. if err != nil {
  509. t.Fatalf("netPipe: %v", err)
  510. }
  511. defer c1.Close()
  512. defer c2.Close()
  513. serverConf := &ServerConfig{
  514. PasswordCallback: func(conn ConnMetadata, password []byte) (*Permissions, error) {
  515. return &Permissions{}, nil
  516. },
  517. }
  518. serverConf.AddHostKey(&legacyRSASigner{testSigners["rsa"]})
  519. go func() {
  520. _, _, _, err := NewServerConn(c1, serverConf)
  521. if err != nil {
  522. t.Error(err)
  523. }
  524. }()
  525. clientConf := &ClientConfig{
  526. User: "test",
  527. Auth: []AuthMethod{Password("testpw")},
  528. HostKeyCallback: FixedHostKey(testSigners["rsa"].PublicKey()),
  529. }
  530. if _, _, _, err := NewClientConn(c2, "", clientConf); err != nil {
  531. t.Fatal(err)
  532. }
  533. }
  534. func TestMultiAlgoSignerHandshake(t *testing.T) {
  535. algorithmSigner, ok := testSigners["rsa"].(AlgorithmSigner)
  536. if !ok {
  537. t.Fatal("rsa test signer does not implement the AlgorithmSigner interface")
  538. }
  539. multiAlgoSigner, err := NewSignerWithAlgorithms(algorithmSigner, []string{KeyAlgoRSASHA256, KeyAlgoRSASHA512})
  540. if err != nil {
  541. t.Fatalf("unable to create multi algorithm signer: %v", err)
  542. }
  543. c1, c2, err := netPipe()
  544. if err != nil {
  545. t.Fatalf("netPipe: %v", err)
  546. }
  547. defer c1.Close()
  548. defer c2.Close()
  549. serverConf := &ServerConfig{
  550. PasswordCallback: func(conn ConnMetadata, password []byte) (*Permissions, error) {
  551. return &Permissions{}, nil
  552. },
  553. }
  554. serverConf.AddHostKey(multiAlgoSigner)
  555. go NewServerConn(c1, serverConf)
  556. clientConf := &ClientConfig{
  557. User: "test",
  558. Auth: []AuthMethod{Password("testpw")},
  559. HostKeyCallback: FixedHostKey(testSigners["rsa"].PublicKey()),
  560. HostKeyAlgorithms: []string{KeyAlgoRSASHA512},
  561. }
  562. if _, _, _, err := NewClientConn(c2, "", clientConf); err != nil {
  563. t.Fatal(err)
  564. }
  565. }
  566. func TestMultiAlgoSignerNoCommonHostKeyAlgo(t *testing.T) {
  567. algorithmSigner, ok := testSigners["rsa"].(AlgorithmSigner)
  568. if !ok {
  569. t.Fatal("rsa test signer does not implement the AlgorithmSigner interface")
  570. }
  571. multiAlgoSigner, err := NewSignerWithAlgorithms(algorithmSigner, []string{KeyAlgoRSASHA256, KeyAlgoRSASHA512})
  572. if err != nil {
  573. t.Fatalf("unable to create multi algorithm signer: %v", err)
  574. }
  575. c1, c2, err := netPipe()
  576. if err != nil {
  577. t.Fatalf("netPipe: %v", err)
  578. }
  579. defer c1.Close()
  580. defer c2.Close()
  581. // ssh-rsa is disabled server side
  582. serverConf := &ServerConfig{
  583. PasswordCallback: func(conn ConnMetadata, password []byte) (*Permissions, error) {
  584. return &Permissions{}, nil
  585. },
  586. }
  587. serverConf.AddHostKey(multiAlgoSigner)
  588. go NewServerConn(c1, serverConf)
  589. // the client only supports ssh-rsa
  590. clientConf := &ClientConfig{
  591. User: "test",
  592. Auth: []AuthMethod{Password("testpw")},
  593. HostKeyCallback: FixedHostKey(testSigners["rsa"].PublicKey()),
  594. HostKeyAlgorithms: []string{KeyAlgoRSA},
  595. }
  596. _, _, _, err = NewClientConn(c2, "", clientConf)
  597. if err == nil {
  598. t.Fatal("succeeded connecting with no common hostkey algorithm")
  599. }
  600. }
  601. func TestPickIncompatibleHostKeyAlgo(t *testing.T) {
  602. algorithmSigner, ok := testSigners["rsa"].(AlgorithmSigner)
  603. if !ok {
  604. t.Fatal("rsa test signer does not implement the AlgorithmSigner interface")
  605. }
  606. multiAlgoSigner, err := NewSignerWithAlgorithms(algorithmSigner, []string{KeyAlgoRSASHA256, KeyAlgoRSASHA512})
  607. if err != nil {
  608. t.Fatalf("unable to create multi algorithm signer: %v", err)
  609. }
  610. signer := pickHostKey([]Signer{multiAlgoSigner}, KeyAlgoRSA)
  611. if signer != nil {
  612. t.Fatal("incompatible signer returned")
  613. }
  614. }
  615. func TestStrictKEXResetSeqFirstKEX(t *testing.T) {
  616. if runtime.GOOS == "plan9" {
  617. t.Skip("see golang.org/issue/7237")
  618. }
  619. checker := &syncChecker{
  620. waitCall: make(chan int, 10),
  621. called: make(chan int, 10),
  622. }
  623. checker.waitCall <- 1
  624. trC, trS, err := handshakePair(&ClientConfig{HostKeyCallback: checker.Check}, "addr", false)
  625. if err != nil {
  626. t.Fatalf("handshakePair: %v", err)
  627. }
  628. <-checker.called
  629. t.Cleanup(func() {
  630. trC.Close()
  631. trS.Close()
  632. })
  633. // Throw away the msgExtInfo packet sent during the handshake by the server
  634. _, err = trC.readPacket()
  635. if err != nil {
  636. t.Fatalf("readPacket failed: %s", err)
  637. }
  638. // close the handshake transports before checking the sequence number to
  639. // avoid races.
  640. trC.Close()
  641. trS.Close()
  642. // check that the sequence number counters. We reset after msgNewKeys, but
  643. // then the server immediately writes msgExtInfo, and we close the
  644. // transports so we expect read 2, write 0 on the client and read 1, write 1
  645. // on the server.
  646. if trC.conn.(*transport).reader.seqNum != 2 || trC.conn.(*transport).writer.seqNum != 0 ||
  647. trS.conn.(*transport).reader.seqNum != 1 || trS.conn.(*transport).writer.seqNum != 1 {
  648. t.Errorf(
  649. "unexpected sequence counters:\nclient: reader %d (expected 2), writer %d (expected 0)\nserver: reader %d (expected 1), writer %d (expected 1)",
  650. trC.conn.(*transport).reader.seqNum,
  651. trC.conn.(*transport).writer.seqNum,
  652. trS.conn.(*transport).reader.seqNum,
  653. trS.conn.(*transport).writer.seqNum,
  654. )
  655. }
  656. }
  657. func TestStrictKEXResetSeqSuccessiveKEX(t *testing.T) {
  658. if runtime.GOOS == "plan9" {
  659. t.Skip("see golang.org/issue/7237")
  660. }
  661. checker := &syncChecker{
  662. waitCall: make(chan int, 10),
  663. called: make(chan int, 10),
  664. }
  665. checker.waitCall <- 1
  666. trC, trS, err := handshakePair(&ClientConfig{HostKeyCallback: checker.Check}, "addr", false)
  667. if err != nil {
  668. t.Fatalf("handshakePair: %v", err)
  669. }
  670. <-checker.called
  671. t.Cleanup(func() {
  672. trC.Close()
  673. trS.Close()
  674. })
  675. // Throw away the msgExtInfo packet sent during the handshake by the server
  676. _, err = trC.readPacket()
  677. if err != nil {
  678. t.Fatalf("readPacket failed: %s", err)
  679. }
  680. // write and read five packets on either side to bump the sequence numbers
  681. for i := 0; i < 5; i++ {
  682. if err := trC.writePacket([]byte{msgRequestSuccess}); err != nil {
  683. t.Fatalf("writePacket failed: %s", err)
  684. }
  685. if _, err := trS.readPacket(); err != nil {
  686. t.Fatalf("readPacket failed: %s", err)
  687. }
  688. if err := trS.writePacket([]byte{msgRequestSuccess}); err != nil {
  689. t.Fatalf("writePacket failed: %s", err)
  690. }
  691. if _, err := trC.readPacket(); err != nil {
  692. t.Fatalf("readPacket failed: %s", err)
  693. }
  694. }
  695. // Request a key exchange, which should cause the sequence numbers to reset
  696. checker.waitCall <- 1
  697. trC.requestKeyExchange()
  698. <-checker.called
  699. // write a packet on the client, and then read it, to verify the key change has actually happened, since
  700. // the HostKeyCallback is called _during_ the handshake, so isn't actually indicative of the handshake
  701. // finishing.
  702. dummyPacket := []byte{99}
  703. if err := trS.writePacket(dummyPacket); err != nil {
  704. t.Fatalf("writePacket failed: %s", err)
  705. }
  706. if p, err := trC.readPacket(); err != nil {
  707. t.Fatalf("readPacket failed: %s", err)
  708. } else if !bytes.Equal(p, dummyPacket) {
  709. t.Fatalf("unexpected packet: got %x, want %x", p, dummyPacket)
  710. }
  711. // close the handshake transports before checking the sequence number to
  712. // avoid races.
  713. trC.Close()
  714. trS.Close()
  715. if trC.conn.(*transport).reader.seqNum != 2 || trC.conn.(*transport).writer.seqNum != 0 ||
  716. trS.conn.(*transport).reader.seqNum != 1 || trS.conn.(*transport).writer.seqNum != 1 {
  717. t.Errorf(
  718. "unexpected sequence counters:\nclient: reader %d (expected 2), writer %d (expected 0)\nserver: reader %d (expected 1), writer %d (expected 1)",
  719. trC.conn.(*transport).reader.seqNum,
  720. trC.conn.(*transport).writer.seqNum,
  721. trS.conn.(*transport).reader.seqNum,
  722. trS.conn.(*transport).writer.seqNum,
  723. )
  724. }
  725. }
  726. func TestSeqNumIncrease(t *testing.T) {
  727. if runtime.GOOS == "plan9" {
  728. t.Skip("see golang.org/issue/7237")
  729. }
  730. checker := &syncChecker{
  731. waitCall: make(chan int, 10),
  732. called: make(chan int, 10),
  733. }
  734. checker.waitCall <- 1
  735. trC, trS, err := handshakePair(&ClientConfig{HostKeyCallback: checker.Check}, "addr", false)
  736. if err != nil {
  737. t.Fatalf("handshakePair: %v", err)
  738. }
  739. <-checker.called
  740. t.Cleanup(func() {
  741. trC.Close()
  742. trS.Close()
  743. })
  744. // Throw away the msgExtInfo packet sent during the handshake by the server
  745. _, err = trC.readPacket()
  746. if err != nil {
  747. t.Fatalf("readPacket failed: %s", err)
  748. }
  749. // write and read five packets on either side to bump the sequence numbers
  750. for i := 0; i < 5; i++ {
  751. if err := trC.writePacket([]byte{msgRequestSuccess}); err != nil {
  752. t.Fatalf("writePacket failed: %s", err)
  753. }
  754. if _, err := trS.readPacket(); err != nil {
  755. t.Fatalf("readPacket failed: %s", err)
  756. }
  757. if err := trS.writePacket([]byte{msgRequestSuccess}); err != nil {
  758. t.Fatalf("writePacket failed: %s", err)
  759. }
  760. if _, err := trC.readPacket(); err != nil {
  761. t.Fatalf("readPacket failed: %s", err)
  762. }
  763. }
  764. // close the handshake transports before checking the sequence number to
  765. // avoid races.
  766. trC.Close()
  767. trS.Close()
  768. if trC.conn.(*transport).reader.seqNum != 7 || trC.conn.(*transport).writer.seqNum != 5 ||
  769. trS.conn.(*transport).reader.seqNum != 6 || trS.conn.(*transport).writer.seqNum != 6 {
  770. t.Errorf(
  771. "unexpected sequence counters:\nclient: reader %d (expected 7), writer %d (expected 5)\nserver: reader %d (expected 6), writer %d (expected 6)",
  772. trC.conn.(*transport).reader.seqNum,
  773. trC.conn.(*transport).writer.seqNum,
  774. trS.conn.(*transport).reader.seqNum,
  775. trS.conn.(*transport).writer.seqNum,
  776. )
  777. }
  778. }
  779. func TestStrictKEXUnexpectedMsg(t *testing.T) {
  780. if runtime.GOOS == "plan9" {
  781. t.Skip("see golang.org/issue/7237")
  782. }
  783. // Check that unexpected messages during the handshake cause failure
  784. _, _, err := handshakePair(&ClientConfig{HostKeyCallback: func(hostname string, remote net.Addr, key PublicKey) error { return nil }}, "addr", true)
  785. if err == nil {
  786. t.Fatal("handshake should fail when there are unexpected messages during the handshake")
  787. }
  788. trC, trS, err := handshakePair(&ClientConfig{HostKeyCallback: func(hostname string, remote net.Addr, key PublicKey) error { return nil }}, "addr", false)
  789. if err != nil {
  790. t.Fatalf("handshake failed: %s", err)
  791. }
  792. // Check that ignore/debug pacekts are still ignored outside of the handshake
  793. if err := trC.writePacket([]byte{msgIgnore}); err != nil {
  794. t.Fatalf("writePacket failed: %s", err)
  795. }
  796. if err := trC.writePacket([]byte{msgDebug}); err != nil {
  797. t.Fatalf("writePacket failed: %s", err)
  798. }
  799. dummyPacket := []byte{99}
  800. if err := trC.writePacket(dummyPacket); err != nil {
  801. t.Fatalf("writePacket failed: %s", err)
  802. }
  803. if p, err := trS.readPacket(); err != nil {
  804. t.Fatalf("readPacket failed: %s", err)
  805. } else if !bytes.Equal(p, dummyPacket) {
  806. t.Fatalf("unexpected packet: got %x, want %x", p, dummyPacket)
  807. }
  808. }
  809. func TestStrictKEXMixed(t *testing.T) {
  810. // Test that we still support a mixed connection, where one side sends kex-strict but the other
  811. // side doesn't.
  812. a, b, err := netPipe()
  813. if err != nil {
  814. t.Fatalf("netPipe failed: %s", err)
  815. }
  816. var trC, trS keyingTransport
  817. trC = newTransport(a, rand.Reader, true)
  818. trS = newTransport(b, rand.Reader, false)
  819. trS = addNoiseTransport(trS)
  820. clientConf := &ClientConfig{HostKeyCallback: func(hostname string, remote net.Addr, key PublicKey) error { return nil }}
  821. clientConf.SetDefaults()
  822. v := []byte("version")
  823. client := newClientTransport(trC, v, v, clientConf, "addr", a.RemoteAddr())
  824. serverConf := &ServerConfig{}
  825. serverConf.AddHostKey(testSigners["ecdsa"])
  826. serverConf.AddHostKey(testSigners["rsa"])
  827. serverConf.SetDefaults()
  828. transport := newHandshakeTransport(trS, &serverConf.Config, []byte("version"), []byte("version"))
  829. transport.hostKeys = serverConf.hostKeys
  830. transport.publicKeyAuthAlgorithms = serverConf.PublicKeyAuthAlgorithms
  831. readOneFailure := make(chan error, 1)
  832. go func() {
  833. if _, err := transport.readOnePacket(true); err != nil {
  834. readOneFailure <- err
  835. }
  836. }()
  837. // Basically sendKexInit, but without the kex-strict extension algorithm
  838. msg := &kexInitMsg{
  839. KexAlgos: transport.config.KeyExchanges,
  840. CiphersClientServer: transport.config.Ciphers,
  841. CiphersServerClient: transport.config.Ciphers,
  842. MACsClientServer: transport.config.MACs,
  843. MACsServerClient: transport.config.MACs,
  844. CompressionClientServer: supportedCompressions,
  845. CompressionServerClient: supportedCompressions,
  846. ServerHostKeyAlgos: []string{KeyAlgoRSASHA256, KeyAlgoRSASHA512, KeyAlgoRSA},
  847. }
  848. packet := Marshal(msg)
  849. // writePacket destroys the contents, so save a copy.
  850. packetCopy := make([]byte, len(packet))
  851. copy(packetCopy, packet)
  852. if err := transport.pushPacket(packetCopy); err != nil {
  853. t.Fatalf("pushPacket: %s", err)
  854. }
  855. transport.sentInitMsg = msg
  856. transport.sentInitPacket = packet
  857. if err := transport.getWriteError(); err != nil {
  858. t.Fatalf("getWriteError failed: %s", err)
  859. }
  860. var request *pendingKex
  861. select {
  862. case err = <-readOneFailure:
  863. t.Fatalf("server readOnePacket failed: %s", err)
  864. case request = <-transport.startKex:
  865. break
  866. }
  867. // We expect the following calls to fail if the side which does not support
  868. // kex-strict sends unexpected/ignored packets during the handshake, even if
  869. // the other side does support kex-strict.
  870. if err := transport.enterKeyExchange(request.otherInit); err != nil {
  871. t.Fatalf("enterKeyExchange failed: %s", err)
  872. }
  873. if err := client.waitSession(); err != nil {
  874. t.Fatalf("client.waitSession: %v", err)
  875. }
  876. }