Alternative TLS implementation in Go
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  1. // Copyright 2009 The Go Authors. All rights reserved.
  2. // Use of this source code is governed by a BSD-style
  3. // license that can be found in the LICENSE file.
  4. package tls
  5. import (
  6. "bytes"
  7. "crypto/ecdsa"
  8. "crypto/elliptic"
  9. "crypto/rsa"
  10. "encoding/hex"
  11. "encoding/pem"
  12. "errors"
  13. "fmt"
  14. "io"
  15. "math/big"
  16. "net"
  17. "os"
  18. "os/exec"
  19. "path/filepath"
  20. "strings"
  21. "testing"
  22. "time"
  23. )
  24. // zeroSource is an io.Reader that returns an unlimited number of zero bytes.
  25. type zeroSource struct{}
  26. func (zeroSource) Read(b []byte) (n int, err error) {
  27. for i := range b {
  28. b[i] = 0
  29. }
  30. return len(b), nil
  31. }
  32. var testConfig *Config
  33. func allCipherSuites() []uint16 {
  34. ids := make([]uint16, len(cipherSuites))
  35. for i, suite := range cipherSuites {
  36. ids[i] = suite.id
  37. }
  38. return ids
  39. }
  40. func init() {
  41. testConfig = &Config{
  42. Time: func() time.Time { return time.Unix(0, 0) },
  43. Rand: zeroSource{},
  44. Certificates: make([]Certificate, 2),
  45. InsecureSkipVerify: true,
  46. MinVersion: VersionSSL30,
  47. MaxVersion: VersionTLS12,
  48. CipherSuites: allCipherSuites(),
  49. }
  50. testConfig.Certificates[0].Certificate = [][]byte{testRSACertificate}
  51. testConfig.Certificates[0].PrivateKey = testRSAPrivateKey
  52. testConfig.Certificates[1].Certificate = [][]byte{testSNICertificate}
  53. testConfig.Certificates[1].PrivateKey = testRSAPrivateKey
  54. testConfig.BuildNameToCertificate()
  55. }
  56. func testClientHello(t *testing.T, serverConfig *Config, m handshakeMessage) {
  57. testClientHelloFailure(t, serverConfig, m, "")
  58. }
  59. func testClientHelloFailure(t *testing.T, serverConfig *Config, m handshakeMessage, expectedSubStr string) {
  60. // Create in-memory network connection,
  61. // send message to server. Should return
  62. // expected error.
  63. c, s := net.Pipe()
  64. go func() {
  65. cli := Client(c, testConfig)
  66. if ch, ok := m.(*clientHelloMsg); ok {
  67. cli.vers = ch.vers
  68. }
  69. cli.writeRecord(recordTypeHandshake, m.marshal())
  70. c.Close()
  71. }()
  72. err := Server(s, serverConfig).Handshake()
  73. s.Close()
  74. if len(expectedSubStr) == 0 {
  75. if err != nil && err != io.EOF {
  76. t.Errorf("Got error: %s; expected to succeed", err)
  77. }
  78. } else if err == nil || !strings.Contains(err.Error(), expectedSubStr) {
  79. t.Errorf("Got error: %s; expected to match substring '%s'", err, expectedSubStr)
  80. }
  81. }
  82. func TestSimpleError(t *testing.T) {
  83. testClientHelloFailure(t, testConfig, &serverHelloDoneMsg{}, "unexpected handshake message")
  84. }
  85. var badProtocolVersions = []uint16{0x0000, 0x0005, 0x0100, 0x0105, 0x0200, 0x0205}
  86. func TestRejectBadProtocolVersion(t *testing.T) {
  87. for _, v := range badProtocolVersions {
  88. testClientHelloFailure(t, testConfig, &clientHelloMsg{vers: v}, "unsupported, maximum protocol version")
  89. }
  90. }
  91. func TestNoSuiteOverlap(t *testing.T) {
  92. clientHello := &clientHelloMsg{
  93. vers: 0x0301,
  94. cipherSuites: []uint16{0xff00},
  95. compressionMethods: []uint8{0},
  96. }
  97. testClientHelloFailure(t, testConfig, clientHello, "no cipher suite supported by both client and server")
  98. }
  99. func TestNoCompressionOverlap(t *testing.T) {
  100. clientHello := &clientHelloMsg{
  101. vers: 0x0301,
  102. cipherSuites: []uint16{TLS_RSA_WITH_RC4_128_SHA},
  103. compressionMethods: []uint8{0xff},
  104. }
  105. testClientHelloFailure(t, testConfig, clientHello, "client does not support uncompressed connections")
  106. }
  107. func TestNoRC4ByDefault(t *testing.T) {
  108. clientHello := &clientHelloMsg{
  109. vers: 0x0301,
  110. cipherSuites: []uint16{TLS_RSA_WITH_RC4_128_SHA},
  111. compressionMethods: []uint8{0},
  112. }
  113. serverConfig := *testConfig
  114. // Reset the enabled cipher suites to nil in order to test the
  115. // defaults.
  116. serverConfig.CipherSuites = nil
  117. testClientHelloFailure(t, &serverConfig, clientHello, "no cipher suite supported by both client and server")
  118. }
  119. func TestDontSelectECDSAWithRSAKey(t *testing.T) {
  120. // Test that, even when both sides support an ECDSA cipher suite, it
  121. // won't be selected if the server's private key doesn't support it.
  122. clientHello := &clientHelloMsg{
  123. vers: 0x0301,
  124. cipherSuites: []uint16{TLS_ECDHE_ECDSA_WITH_AES_256_CBC_SHA},
  125. compressionMethods: []uint8{0},
  126. supportedCurves: []CurveID{CurveP256},
  127. supportedPoints: []uint8{pointFormatUncompressed},
  128. }
  129. serverConfig := *testConfig
  130. serverConfig.CipherSuites = clientHello.cipherSuites
  131. serverConfig.Certificates = make([]Certificate, 1)
  132. serverConfig.Certificates[0].Certificate = [][]byte{testECDSACertificate}
  133. serverConfig.Certificates[0].PrivateKey = testECDSAPrivateKey
  134. serverConfig.BuildNameToCertificate()
  135. // First test that it *does* work when the server's key is ECDSA.
  136. testClientHello(t, &serverConfig, clientHello)
  137. // Now test that switching to an RSA key causes the expected error (and
  138. // not an internal error about a signing failure).
  139. serverConfig.Certificates = testConfig.Certificates
  140. testClientHelloFailure(t, &serverConfig, clientHello, "no cipher suite supported by both client and server")
  141. }
  142. func TestDontSelectRSAWithECDSAKey(t *testing.T) {
  143. // Test that, even when both sides support an RSA cipher suite, it
  144. // won't be selected if the server's private key doesn't support it.
  145. clientHello := &clientHelloMsg{
  146. vers: 0x0301,
  147. cipherSuites: []uint16{TLS_ECDHE_RSA_WITH_AES_256_CBC_SHA},
  148. compressionMethods: []uint8{0},
  149. supportedCurves: []CurveID{CurveP256},
  150. supportedPoints: []uint8{pointFormatUncompressed},
  151. }
  152. serverConfig := *testConfig
  153. serverConfig.CipherSuites = clientHello.cipherSuites
  154. // First test that it *does* work when the server's key is RSA.
  155. testClientHello(t, &serverConfig, clientHello)
  156. // Now test that switching to an ECDSA key causes the expected error
  157. // (and not an internal error about a signing failure).
  158. serverConfig.Certificates = make([]Certificate, 1)
  159. serverConfig.Certificates[0].Certificate = [][]byte{testECDSACertificate}
  160. serverConfig.Certificates[0].PrivateKey = testECDSAPrivateKey
  161. serverConfig.BuildNameToCertificate()
  162. testClientHelloFailure(t, &serverConfig, clientHello, "no cipher suite supported by both client and server")
  163. }
  164. func TestRenegotiationExtension(t *testing.T) {
  165. clientHello := &clientHelloMsg{
  166. vers: VersionTLS12,
  167. compressionMethods: []uint8{compressionNone},
  168. random: make([]byte, 32),
  169. secureRenegotiation: true,
  170. cipherSuites: []uint16{TLS_RSA_WITH_RC4_128_SHA},
  171. }
  172. var buf []byte
  173. c, s := net.Pipe()
  174. go func() {
  175. cli := Client(c, testConfig)
  176. cli.vers = clientHello.vers
  177. cli.writeRecord(recordTypeHandshake, clientHello.marshal())
  178. buf = make([]byte, 1024)
  179. n, err := c.Read(buf)
  180. if err != nil {
  181. t.Fatalf("Server read returned error: %s", err)
  182. }
  183. buf = buf[:n]
  184. c.Close()
  185. }()
  186. Server(s, testConfig).Handshake()
  187. if len(buf) < 5+4 {
  188. t.Fatalf("Server returned short message of length %d", len(buf))
  189. }
  190. // buf contains a TLS record, with a 5 byte record header and a 4 byte
  191. // handshake header. The length of the ServerHello is taken from the
  192. // handshake header.
  193. serverHelloLen := int(buf[6])<<16 | int(buf[7])<<8 | int(buf[8])
  194. var serverHello serverHelloMsg
  195. // unmarshal expects to be given the handshake header, but
  196. // serverHelloLen doesn't include it.
  197. if !serverHello.unmarshal(buf[5 : 9+serverHelloLen]) {
  198. t.Fatalf("Failed to parse ServerHello")
  199. }
  200. if !serverHello.secureRenegotiation {
  201. t.Errorf("Secure renegotiation extension was not echoed.")
  202. }
  203. }
  204. func TestTLS12OnlyCipherSuites(t *testing.T) {
  205. // Test that a Server doesn't select a TLS 1.2-only cipher suite when
  206. // the client negotiates TLS 1.1.
  207. var zeros [32]byte
  208. clientHello := &clientHelloMsg{
  209. vers: VersionTLS11,
  210. random: zeros[:],
  211. cipherSuites: []uint16{
  212. // The Server, by default, will use the client's
  213. // preference order. So the GCM cipher suite
  214. // will be selected unless it's excluded because
  215. // of the version in this ClientHello.
  216. TLS_ECDHE_RSA_WITH_AES_128_GCM_SHA256,
  217. TLS_RSA_WITH_RC4_128_SHA,
  218. },
  219. compressionMethods: []uint8{compressionNone},
  220. supportedCurves: []CurveID{CurveP256, CurveP384, CurveP521},
  221. supportedPoints: []uint8{pointFormatUncompressed},
  222. }
  223. c, s := net.Pipe()
  224. var reply interface{}
  225. var clientErr error
  226. go func() {
  227. cli := Client(c, testConfig)
  228. cli.vers = clientHello.vers
  229. cli.writeRecord(recordTypeHandshake, clientHello.marshal())
  230. reply, clientErr = cli.readHandshake()
  231. c.Close()
  232. }()
  233. config := *testConfig
  234. config.CipherSuites = clientHello.cipherSuites
  235. Server(s, &config).Handshake()
  236. s.Close()
  237. if clientErr != nil {
  238. t.Fatal(clientErr)
  239. }
  240. serverHello, ok := reply.(*serverHelloMsg)
  241. if !ok {
  242. t.Fatalf("didn't get ServerHello message in reply. Got %v\n", reply)
  243. }
  244. if s := serverHello.cipherSuite; s != TLS_RSA_WITH_RC4_128_SHA {
  245. t.Fatalf("bad cipher suite from server: %x", s)
  246. }
  247. }
  248. func TestAlertForwarding(t *testing.T) {
  249. c, s := net.Pipe()
  250. go func() {
  251. Client(c, testConfig).sendAlert(alertUnknownCA)
  252. c.Close()
  253. }()
  254. err := Server(s, testConfig).Handshake()
  255. s.Close()
  256. if e, ok := err.(*net.OpError); !ok || e.Err != error(alertUnknownCA) {
  257. t.Errorf("Got error: %s; expected: %s", err, error(alertUnknownCA))
  258. }
  259. }
  260. func TestClose(t *testing.T) {
  261. c, s := net.Pipe()
  262. go c.Close()
  263. err := Server(s, testConfig).Handshake()
  264. s.Close()
  265. if err != io.EOF {
  266. t.Errorf("Got error: %s; expected: %s", err, io.EOF)
  267. }
  268. }
  269. func testHandshake(clientConfig, serverConfig *Config) (serverState, clientState ConnectionState, err error) {
  270. c, s := net.Pipe()
  271. done := make(chan bool)
  272. go func() {
  273. cli := Client(c, clientConfig)
  274. cli.Handshake()
  275. clientState = cli.ConnectionState()
  276. c.Close()
  277. done <- true
  278. }()
  279. server := Server(s, serverConfig)
  280. err = server.Handshake()
  281. if err == nil {
  282. serverState = server.ConnectionState()
  283. }
  284. s.Close()
  285. <-done
  286. return
  287. }
  288. func TestVersion(t *testing.T) {
  289. serverConfig := &Config{
  290. Certificates: testConfig.Certificates,
  291. MaxVersion: VersionTLS11,
  292. }
  293. clientConfig := &Config{
  294. InsecureSkipVerify: true,
  295. }
  296. state, _, err := testHandshake(clientConfig, serverConfig)
  297. if err != nil {
  298. t.Fatalf("handshake failed: %s", err)
  299. }
  300. if state.Version != VersionTLS11 {
  301. t.Fatalf("Incorrect version %x, should be %x", state.Version, VersionTLS11)
  302. }
  303. }
  304. func TestCipherSuitePreference(t *testing.T) {
  305. serverConfig := &Config{
  306. CipherSuites: []uint16{TLS_RSA_WITH_RC4_128_SHA, TLS_RSA_WITH_AES_128_CBC_SHA, TLS_ECDHE_RSA_WITH_RC4_128_SHA},
  307. Certificates: testConfig.Certificates,
  308. MaxVersion: VersionTLS11,
  309. }
  310. clientConfig := &Config{
  311. CipherSuites: []uint16{TLS_RSA_WITH_AES_128_CBC_SHA, TLS_RSA_WITH_RC4_128_SHA},
  312. InsecureSkipVerify: true,
  313. }
  314. state, _, err := testHandshake(clientConfig, serverConfig)
  315. if err != nil {
  316. t.Fatalf("handshake failed: %s", err)
  317. }
  318. if state.CipherSuite != TLS_RSA_WITH_AES_128_CBC_SHA {
  319. // By default the server should use the client's preference.
  320. t.Fatalf("Client's preference was not used, got %x", state.CipherSuite)
  321. }
  322. serverConfig.PreferServerCipherSuites = true
  323. state, _, err = testHandshake(clientConfig, serverConfig)
  324. if err != nil {
  325. t.Fatalf("handshake failed: %s", err)
  326. }
  327. if state.CipherSuite != TLS_RSA_WITH_RC4_128_SHA {
  328. t.Fatalf("Server's preference was not used, got %x", state.CipherSuite)
  329. }
  330. }
  331. func TestSCTHandshake(t *testing.T) {
  332. expected := [][]byte{[]byte("certificate"), []byte("transparency")}
  333. serverConfig := &Config{
  334. Certificates: []Certificate{{
  335. Certificate: [][]byte{testRSACertificate},
  336. PrivateKey: testRSAPrivateKey,
  337. SignedCertificateTimestamps: expected,
  338. }},
  339. }
  340. clientConfig := &Config{
  341. InsecureSkipVerify: true,
  342. }
  343. _, state, err := testHandshake(clientConfig, serverConfig)
  344. if err != nil {
  345. t.Fatalf("handshake failed: %s", err)
  346. }
  347. actual := state.SignedCertificateTimestamps
  348. if len(actual) != len(expected) {
  349. t.Fatalf("got %d scts, want %d", len(actual), len(expected))
  350. }
  351. for i, sct := range expected {
  352. if !bytes.Equal(sct, actual[i]) {
  353. t.Fatalf("SCT #%d was %x, but expected %x", i, actual[i], sct)
  354. }
  355. }
  356. }
  357. // Note: see comment in handshake_test.go for details of how the reference
  358. // tests work.
  359. // serverTest represents a test of the TLS server handshake against a reference
  360. // implementation.
  361. type serverTest struct {
  362. // name is a freeform string identifying the test and the file in which
  363. // the expected results will be stored.
  364. name string
  365. // command, if not empty, contains a series of arguments for the
  366. // command to run for the reference server.
  367. command []string
  368. // expectedPeerCerts contains a list of PEM blocks of expected
  369. // certificates from the client.
  370. expectedPeerCerts []string
  371. // config, if not nil, contains a custom Config to use for this test.
  372. config *Config
  373. // expectHandshakeErrorIncluding, when not empty, contains a string
  374. // that must be a substring of the error resulting from the handshake.
  375. expectHandshakeErrorIncluding string
  376. // validate, if not nil, is a function that will be called with the
  377. // ConnectionState of the resulting connection. It returns false if the
  378. // ConnectionState is unacceptable.
  379. validate func(ConnectionState) error
  380. }
  381. var defaultClientCommand = []string{"openssl", "s_client", "-no_ticket"}
  382. // connFromCommand starts opens a listening socket and starts the reference
  383. // client to connect to it. It returns a recordingConn that wraps the resulting
  384. // connection.
  385. func (test *serverTest) connFromCommand() (conn *recordingConn, child *exec.Cmd, err error) {
  386. l, err := net.ListenTCP("tcp", &net.TCPAddr{
  387. IP: net.IPv4(127, 0, 0, 1),
  388. Port: 0,
  389. })
  390. if err != nil {
  391. return nil, nil, err
  392. }
  393. defer l.Close()
  394. port := l.Addr().(*net.TCPAddr).Port
  395. var command []string
  396. command = append(command, test.command...)
  397. if len(command) == 0 {
  398. command = defaultClientCommand
  399. }
  400. command = append(command, "-connect")
  401. command = append(command, fmt.Sprintf("127.0.0.1:%d", port))
  402. cmd := exec.Command(command[0], command[1:]...)
  403. cmd.Stdin = nil
  404. var output bytes.Buffer
  405. cmd.Stdout = &output
  406. cmd.Stderr = &output
  407. if err := cmd.Start(); err != nil {
  408. return nil, nil, err
  409. }
  410. connChan := make(chan interface{})
  411. go func() {
  412. tcpConn, err := l.Accept()
  413. if err != nil {
  414. connChan <- err
  415. }
  416. connChan <- tcpConn
  417. }()
  418. var tcpConn net.Conn
  419. select {
  420. case connOrError := <-connChan:
  421. if err, ok := connOrError.(error); ok {
  422. return nil, nil, err
  423. }
  424. tcpConn = connOrError.(net.Conn)
  425. case <-time.After(2 * time.Second):
  426. output.WriteTo(os.Stdout)
  427. return nil, nil, errors.New("timed out waiting for connection from child process")
  428. }
  429. record := &recordingConn{
  430. Conn: tcpConn,
  431. }
  432. return record, cmd, nil
  433. }
  434. func (test *serverTest) dataPath() string {
  435. return filepath.Join("testdata", "Server-"+test.name)
  436. }
  437. func (test *serverTest) loadData() (flows [][]byte, err error) {
  438. in, err := os.Open(test.dataPath())
  439. if err != nil {
  440. return nil, err
  441. }
  442. defer in.Close()
  443. return parseTestData(in)
  444. }
  445. func (test *serverTest) run(t *testing.T, write bool) {
  446. var clientConn, serverConn net.Conn
  447. var recordingConn *recordingConn
  448. var childProcess *exec.Cmd
  449. if write {
  450. var err error
  451. recordingConn, childProcess, err = test.connFromCommand()
  452. if err != nil {
  453. t.Fatalf("Failed to start subcommand: %s", err)
  454. }
  455. serverConn = recordingConn
  456. } else {
  457. clientConn, serverConn = net.Pipe()
  458. }
  459. config := test.config
  460. if config == nil {
  461. config = testConfig
  462. }
  463. server := Server(serverConn, config)
  464. connStateChan := make(chan ConnectionState, 1)
  465. go func() {
  466. var err error
  467. if _, err = server.Write([]byte("hello, world\n")); err != nil {
  468. t.Logf("Error from Server.Write: %s", err)
  469. }
  470. if len(test.expectHandshakeErrorIncluding) > 0 {
  471. if err == nil {
  472. t.Errorf("Error expected, but no error returned")
  473. } else if s := err.Error(); !strings.Contains(s, test.expectHandshakeErrorIncluding) {
  474. t.Errorf("Error expected containing '%s' but got '%s'", test.expectHandshakeErrorIncluding, s)
  475. }
  476. }
  477. server.Close()
  478. serverConn.Close()
  479. connStateChan <- server.ConnectionState()
  480. }()
  481. if !write {
  482. flows, err := test.loadData()
  483. if err != nil {
  484. t.Fatalf("%s: failed to load data from %s", test.name, test.dataPath())
  485. }
  486. for i, b := range flows {
  487. if i%2 == 0 {
  488. clientConn.Write(b)
  489. continue
  490. }
  491. bb := make([]byte, len(b))
  492. n, err := io.ReadFull(clientConn, bb)
  493. if err != nil {
  494. t.Fatalf("%s #%d: %s\nRead %d, wanted %d, got %x, wanted %x\n", test.name, i+1, err, n, len(bb), bb[:n], b)
  495. }
  496. if !bytes.Equal(b, bb) {
  497. t.Fatalf("%s #%d: mismatch on read: got:%x want:%x", test.name, i+1, bb, b)
  498. }
  499. }
  500. clientConn.Close()
  501. }
  502. connState := <-connStateChan
  503. peerCerts := connState.PeerCertificates
  504. if len(peerCerts) == len(test.expectedPeerCerts) {
  505. for i, peerCert := range peerCerts {
  506. block, _ := pem.Decode([]byte(test.expectedPeerCerts[i]))
  507. if !bytes.Equal(block.Bytes, peerCert.Raw) {
  508. t.Fatalf("%s: mismatch on peer cert %d", test.name, i+1)
  509. }
  510. }
  511. } else {
  512. t.Fatalf("%s: mismatch on peer list length: %d (wanted) != %d (got)", test.name, len(test.expectedPeerCerts), len(peerCerts))
  513. }
  514. if test.validate != nil {
  515. if err := test.validate(connState); err != nil {
  516. t.Fatalf("validate callback returned error: %s", err)
  517. }
  518. }
  519. if write {
  520. path := test.dataPath()
  521. out, err := os.OpenFile(path, os.O_WRONLY|os.O_CREATE|os.O_TRUNC, 0644)
  522. if err != nil {
  523. t.Fatalf("Failed to create output file: %s", err)
  524. }
  525. defer out.Close()
  526. recordingConn.Close()
  527. if len(recordingConn.flows) < 3 {
  528. childProcess.Stdout.(*bytes.Buffer).WriteTo(os.Stdout)
  529. if len(test.expectHandshakeErrorIncluding) == 0 {
  530. t.Fatalf("Handshake failed")
  531. }
  532. }
  533. recordingConn.WriteTo(out)
  534. fmt.Printf("Wrote %s\n", path)
  535. childProcess.Wait()
  536. }
  537. }
  538. func runServerTestForVersion(t *testing.T, template *serverTest, prefix, option string) {
  539. test := *template
  540. test.name = prefix + test.name
  541. if len(test.command) == 0 {
  542. test.command = defaultClientCommand
  543. }
  544. test.command = append([]string(nil), test.command...)
  545. test.command = append(test.command, option)
  546. test.run(t, *update)
  547. }
  548. func runServerTestSSLv3(t *testing.T, template *serverTest) {
  549. runServerTestForVersion(t, template, "SSLv3-", "-ssl3")
  550. }
  551. func runServerTestTLS10(t *testing.T, template *serverTest) {
  552. runServerTestForVersion(t, template, "TLSv10-", "-tls1")
  553. }
  554. func runServerTestTLS11(t *testing.T, template *serverTest) {
  555. runServerTestForVersion(t, template, "TLSv11-", "-tls1_1")
  556. }
  557. func runServerTestTLS12(t *testing.T, template *serverTest) {
  558. runServerTestForVersion(t, template, "TLSv12-", "-tls1_2")
  559. }
  560. func TestHandshakeServerRSARC4(t *testing.T) {
  561. test := &serverTest{
  562. name: "RSA-RC4",
  563. command: []string{"openssl", "s_client", "-no_ticket", "-cipher", "RC4-SHA"},
  564. }
  565. runServerTestSSLv3(t, test)
  566. runServerTestTLS10(t, test)
  567. runServerTestTLS11(t, test)
  568. runServerTestTLS12(t, test)
  569. }
  570. func TestHandshakeServerRSA3DES(t *testing.T) {
  571. test := &serverTest{
  572. name: "RSA-3DES",
  573. command: []string{"openssl", "s_client", "-no_ticket", "-cipher", "DES-CBC3-SHA"},
  574. }
  575. runServerTestSSLv3(t, test)
  576. runServerTestTLS10(t, test)
  577. runServerTestTLS12(t, test)
  578. }
  579. func TestHandshakeServerRSAAES(t *testing.T) {
  580. test := &serverTest{
  581. name: "RSA-AES",
  582. command: []string{"openssl", "s_client", "-no_ticket", "-cipher", "AES128-SHA"},
  583. }
  584. runServerTestSSLv3(t, test)
  585. runServerTestTLS10(t, test)
  586. runServerTestTLS12(t, test)
  587. }
  588. func TestHandshakeServerAESGCM(t *testing.T) {
  589. test := &serverTest{
  590. name: "RSA-AES-GCM",
  591. command: []string{"openssl", "s_client", "-no_ticket", "-cipher", "ECDHE-RSA-AES128-GCM-SHA256"},
  592. }
  593. runServerTestTLS12(t, test)
  594. }
  595. func TestHandshakeServerAES256GCMSHA384(t *testing.T) {
  596. test := &serverTest{
  597. name: "RSA-AES256-GCM-SHA384",
  598. command: []string{"openssl", "s_client", "-no_ticket", "-cipher", "ECDHE-RSA-AES256-GCM-SHA384"},
  599. }
  600. runServerTestTLS12(t, test)
  601. }
  602. func TestHandshakeServerECDHEECDSAAES(t *testing.T) {
  603. config := *testConfig
  604. config.Certificates = make([]Certificate, 1)
  605. config.Certificates[0].Certificate = [][]byte{testECDSACertificate}
  606. config.Certificates[0].PrivateKey = testECDSAPrivateKey
  607. config.BuildNameToCertificate()
  608. test := &serverTest{
  609. name: "ECDHE-ECDSA-AES",
  610. command: []string{"openssl", "s_client", "-no_ticket", "-cipher", "ECDHE-ECDSA-AES256-SHA"},
  611. config: &config,
  612. }
  613. runServerTestTLS10(t, test)
  614. runServerTestTLS12(t, test)
  615. }
  616. func TestHandshakeServerALPN(t *testing.T) {
  617. config := *testConfig
  618. config.NextProtos = []string{"proto1", "proto2"}
  619. test := &serverTest{
  620. name: "ALPN",
  621. // Note that this needs OpenSSL 1.0.2 because that is the first
  622. // version that supports the -alpn flag.
  623. command: []string{"openssl", "s_client", "-alpn", "proto2,proto1"},
  624. config: &config,
  625. validate: func(state ConnectionState) error {
  626. // The server's preferences should override the client.
  627. if state.NegotiatedProtocol != "proto1" {
  628. return fmt.Errorf("Got protocol %q, wanted proto1", state.NegotiatedProtocol)
  629. }
  630. return nil
  631. },
  632. }
  633. runServerTestTLS12(t, test)
  634. }
  635. func TestHandshakeServerALPNNoMatch(t *testing.T) {
  636. config := *testConfig
  637. config.NextProtos = []string{"proto3"}
  638. test := &serverTest{
  639. name: "ALPN-NoMatch",
  640. // Note that this needs OpenSSL 1.0.2 because that is the first
  641. // version that supports the -alpn flag.
  642. command: []string{"openssl", "s_client", "-alpn", "proto2,proto1"},
  643. config: &config,
  644. validate: func(state ConnectionState) error {
  645. // Rather than reject the connection, Go doesn't select
  646. // a protocol when there is no overlap.
  647. if state.NegotiatedProtocol != "" {
  648. return fmt.Errorf("Got protocol %q, wanted ''", state.NegotiatedProtocol)
  649. }
  650. return nil
  651. },
  652. }
  653. runServerTestTLS12(t, test)
  654. }
  655. // TestHandshakeServerSNI involves a client sending an SNI extension of
  656. // "snitest.com", which happens to match the CN of testSNICertificate. The test
  657. // verifies that the server correctly selects that certificate.
  658. func TestHandshakeServerSNI(t *testing.T) {
  659. test := &serverTest{
  660. name: "SNI",
  661. command: []string{"openssl", "s_client", "-no_ticket", "-cipher", "AES128-SHA", "-servername", "snitest.com"},
  662. }
  663. runServerTestTLS12(t, test)
  664. }
  665. // TestHandshakeServerSNICertForName is similar to TestHandshakeServerSNI, but
  666. // tests the dynamic GetCertificate method
  667. func TestHandshakeServerSNIGetCertificate(t *testing.T) {
  668. config := *testConfig
  669. // Replace the NameToCertificate map with a GetCertificate function
  670. nameToCert := config.NameToCertificate
  671. config.NameToCertificate = nil
  672. config.GetCertificate = func(clientHello *ClientHelloInfo) (*Certificate, error) {
  673. cert, _ := nameToCert[clientHello.ServerName]
  674. return cert, nil
  675. }
  676. test := &serverTest{
  677. name: "SNI-GetCertificate",
  678. command: []string{"openssl", "s_client", "-no_ticket", "-cipher", "AES128-SHA", "-servername", "snitest.com"},
  679. config: &config,
  680. }
  681. runServerTestTLS12(t, test)
  682. }
  683. // TestHandshakeServerSNICertForNameNotFound is similar to
  684. // TestHandshakeServerSNICertForName, but tests to make sure that when the
  685. // GetCertificate method doesn't return a cert, we fall back to what's in
  686. // the NameToCertificate map.
  687. func TestHandshakeServerSNIGetCertificateNotFound(t *testing.T) {
  688. config := *testConfig
  689. config.GetCertificate = func(clientHello *ClientHelloInfo) (*Certificate, error) {
  690. return nil, nil
  691. }
  692. test := &serverTest{
  693. name: "SNI-GetCertificateNotFound",
  694. command: []string{"openssl", "s_client", "-no_ticket", "-cipher", "AES128-SHA", "-servername", "snitest.com"},
  695. config: &config,
  696. }
  697. runServerTestTLS12(t, test)
  698. }
  699. // TestHandshakeServerSNICertForNameError tests to make sure that errors in
  700. // GetCertificate result in a tls alert.
  701. func TestHandshakeServerSNIGetCertificateError(t *testing.T) {
  702. const errMsg = "TestHandshakeServerSNIGetCertificateError error"
  703. serverConfig := *testConfig
  704. serverConfig.GetCertificate = func(clientHello *ClientHelloInfo) (*Certificate, error) {
  705. return nil, errors.New(errMsg)
  706. }
  707. clientHello := &clientHelloMsg{
  708. vers: 0x0301,
  709. cipherSuites: []uint16{TLS_RSA_WITH_RC4_128_SHA},
  710. compressionMethods: []uint8{0},
  711. serverName: "test",
  712. }
  713. testClientHelloFailure(t, &serverConfig, clientHello, errMsg)
  714. }
  715. // TestHandshakeServerEmptyCertificates tests that GetCertificates is called in
  716. // the case that Certificates is empty, even without SNI.
  717. func TestHandshakeServerEmptyCertificates(t *testing.T) {
  718. const errMsg = "TestHandshakeServerEmptyCertificates error"
  719. serverConfig := *testConfig
  720. serverConfig.GetCertificate = func(clientHello *ClientHelloInfo) (*Certificate, error) {
  721. return nil, errors.New(errMsg)
  722. }
  723. serverConfig.Certificates = nil
  724. clientHello := &clientHelloMsg{
  725. vers: 0x0301,
  726. cipherSuites: []uint16{TLS_RSA_WITH_RC4_128_SHA},
  727. compressionMethods: []uint8{0},
  728. }
  729. testClientHelloFailure(t, &serverConfig, clientHello, errMsg)
  730. // With an empty Certificates and a nil GetCertificate, the server
  731. // should always return a “no certificates” error.
  732. serverConfig.GetCertificate = nil
  733. clientHello = &clientHelloMsg{
  734. vers: 0x0301,
  735. cipherSuites: []uint16{TLS_RSA_WITH_RC4_128_SHA},
  736. compressionMethods: []uint8{0},
  737. }
  738. testClientHelloFailure(t, &serverConfig, clientHello, "no certificates")
  739. }
  740. // TestCipherSuiteCertPreferance ensures that we select an RSA ciphersuite with
  741. // an RSA certificate and an ECDSA ciphersuite with an ECDSA certificate.
  742. func TestCipherSuiteCertPreferenceECDSA(t *testing.T) {
  743. config := *testConfig
  744. config.CipherSuites = []uint16{TLS_ECDHE_ECDSA_WITH_AES_256_CBC_SHA, TLS_ECDHE_RSA_WITH_AES_256_CBC_SHA}
  745. config.PreferServerCipherSuites = true
  746. test := &serverTest{
  747. name: "CipherSuiteCertPreferenceRSA",
  748. config: &config,
  749. }
  750. runServerTestTLS12(t, test)
  751. config = *testConfig
  752. config.CipherSuites = []uint16{TLS_ECDHE_RSA_WITH_AES_256_CBC_SHA, TLS_ECDHE_ECDSA_WITH_AES_256_CBC_SHA}
  753. config.Certificates = []Certificate{
  754. {
  755. Certificate: [][]byte{testECDSACertificate},
  756. PrivateKey: testECDSAPrivateKey,
  757. },
  758. }
  759. config.BuildNameToCertificate()
  760. config.PreferServerCipherSuites = true
  761. test = &serverTest{
  762. name: "CipherSuiteCertPreferenceECDSA",
  763. config: &config,
  764. }
  765. runServerTestTLS12(t, test)
  766. }
  767. func TestResumption(t *testing.T) {
  768. sessionFilePath := tempFile("")
  769. defer os.Remove(sessionFilePath)
  770. test := &serverTest{
  771. name: "IssueTicket",
  772. command: []string{"openssl", "s_client", "-cipher", "RC4-SHA", "-sess_out", sessionFilePath},
  773. }
  774. runServerTestTLS12(t, test)
  775. test = &serverTest{
  776. name: "Resume",
  777. command: []string{"openssl", "s_client", "-cipher", "RC4-SHA", "-sess_in", sessionFilePath},
  778. }
  779. runServerTestTLS12(t, test)
  780. }
  781. func TestResumptionDisabled(t *testing.T) {
  782. sessionFilePath := tempFile("")
  783. defer os.Remove(sessionFilePath)
  784. config := *testConfig
  785. test := &serverTest{
  786. name: "IssueTicketPreDisable",
  787. command: []string{"openssl", "s_client", "-cipher", "RC4-SHA", "-sess_out", sessionFilePath},
  788. config: &config,
  789. }
  790. runServerTestTLS12(t, test)
  791. config.SessionTicketsDisabled = true
  792. test = &serverTest{
  793. name: "ResumeDisabled",
  794. command: []string{"openssl", "s_client", "-cipher", "RC4-SHA", "-sess_in", sessionFilePath},
  795. config: &config,
  796. }
  797. runServerTestTLS12(t, test)
  798. // One needs to manually confirm that the handshake in the golden data
  799. // file for ResumeDisabled does not include a resumption handshake.
  800. }
  801. func TestFallbackSCSV(t *testing.T) {
  802. serverConfig := &Config{
  803. Certificates: testConfig.Certificates,
  804. }
  805. test := &serverTest{
  806. name: "FallbackSCSV",
  807. config: serverConfig,
  808. // OpenSSL 1.0.1j is needed for the -fallback_scsv option.
  809. command: []string{"openssl", "s_client", "-fallback_scsv"},
  810. expectHandshakeErrorIncluding: "inappropriate protocol fallback",
  811. }
  812. runServerTestTLS11(t, test)
  813. }
  814. // cert.pem and key.pem were generated with generate_cert.go
  815. // Thus, they have no ExtKeyUsage fields and trigger an error
  816. // when verification is turned on.
  817. const clientCertificatePEM = `
  818. -----BEGIN CERTIFICATE-----
  819. MIIB7TCCAVigAwIBAgIBADALBgkqhkiG9w0BAQUwJjEQMA4GA1UEChMHQWNtZSBD
  820. bzESMBAGA1UEAxMJMTI3LjAuMC4xMB4XDTExMTIwODA3NTUxMloXDTEyMTIwNzA4
  821. MDAxMlowJjEQMA4GA1UEChMHQWNtZSBDbzESMBAGA1UEAxMJMTI3LjAuMC4xMIGc
  822. MAsGCSqGSIb3DQEBAQOBjAAwgYgCgYBO0Hsx44Jk2VnAwoekXh6LczPHY1PfZpIG
  823. hPZk1Y/kNqcdK+izIDZFI7Xjla7t4PUgnI2V339aEu+H5Fto5OkOdOwEin/ekyfE
  824. ARl6vfLcPRSr0FTKIQzQTW6HLlzF0rtNS0/Otiz3fojsfNcCkXSmHgwa2uNKWi7e
  825. E5xMQIhZkwIDAQABozIwMDAOBgNVHQ8BAf8EBAMCAKAwDQYDVR0OBAYEBAECAwQw
  826. DwYDVR0jBAgwBoAEAQIDBDALBgkqhkiG9w0BAQUDgYEANh+zegx1yW43RmEr1b3A
  827. p0vMRpqBWHyFeSnIyMZn3TJWRSt1tukkqVCavh9a+hoV2cxVlXIWg7nCto/9iIw4
  828. hB2rXZIxE0/9gzvGnfERYraL7KtnvshksBFQRlgXa5kc0x38BvEO5ZaoDPl4ILdE
  829. GFGNEH5PlGffo05wc46QkYU=
  830. -----END CERTIFICATE-----`
  831. const clientKeyPEM = `
  832. -----BEGIN RSA PRIVATE KEY-----
  833. MIICWgIBAAKBgE7QezHjgmTZWcDCh6ReHotzM8djU99mkgaE9mTVj+Q2px0r6LMg
  834. NkUjteOVru3g9SCcjZXff1oS74fkW2jk6Q507ASKf96TJ8QBGXq98tw9FKvQVMoh
  835. DNBNbocuXMXSu01LT862LPd+iOx81wKRdKYeDBra40paLt4TnExAiFmTAgMBAAEC
  836. gYBxvXd8yNteFTns8A/2yomEMC4yeosJJSpp1CsN3BJ7g8/qTnrVPxBy+RU+qr63
  837. t2WquaOu/cr5P8iEsa6lk20tf8pjKLNXeX0b1RTzK8rJLbS7nGzP3tvOhL096VtQ
  838. dAo4ROEaro0TzYpHmpciSvxVIeEIAAdFDObDJPKqcJAxyQJBAJizfYgK8Gzx9fsx
  839. hxp+VteCbVPg2euASH5Yv3K5LukRdKoSzHE2grUVQgN/LafC0eZibRanxHegYSr7
  840. 7qaswKUCQQCEIWor/X4XTMdVj3Oj+vpiw75y/S9gh682+myZL+d/02IEkwnB098P
  841. RkKVpenBHyrGg0oeN5La7URILWKj7CPXAkBKo6F+d+phNjwIFoN1Xb/RA32w/D1I
  842. saG9sF+UEhRt9AxUfW/U/tIQ9V0ZHHcSg1XaCM5Nvp934brdKdvTOKnJAkBD5h/3
  843. Rybatlvg/fzBEaJFyq09zhngkxlZOUtBVTqzl17RVvY2orgH02U4HbCHy4phxOn7
  844. qTdQRYlHRftgnWK1AkANibn9PRYJ7mJyJ9Dyj2QeNcSkSTzrt0tPvUMf4+meJymN
  845. 1Ntu5+S1DLLzfxlaljWG6ylW6DNxujCyuXIV2rvA
  846. -----END RSA PRIVATE KEY-----`
  847. const clientECDSACertificatePEM = `
  848. -----BEGIN CERTIFICATE-----
  849. MIIB/DCCAV4CCQCaMIRsJjXZFzAJBgcqhkjOPQQBMEUxCzAJBgNVBAYTAkFVMRMw
  850. EQYDVQQIEwpTb21lLVN0YXRlMSEwHwYDVQQKExhJbnRlcm5ldCBXaWRnaXRzIFB0
  851. eSBMdGQwHhcNMTIxMTE0MTMyNTUzWhcNMjIxMTEyMTMyNTUzWjBBMQswCQYDVQQG
  852. EwJBVTEMMAoGA1UECBMDTlNXMRAwDgYDVQQHEwdQeXJtb250MRIwEAYDVQQDEwlK
  853. b2VsIFNpbmcwgZswEAYHKoZIzj0CAQYFK4EEACMDgYYABACVjJF1FMBexFe01MNv
  854. ja5oHt1vzobhfm6ySD6B5U7ixohLZNz1MLvT/2XMW/TdtWo+PtAd3kfDdq0Z9kUs
  855. jLzYHQFMH3CQRnZIi4+DzEpcj0B22uCJ7B0rxE4wdihBsmKo+1vx+U56jb0JuK7q
  856. ixgnTy5w/hOWusPTQBbNZU6sER7m8TAJBgcqhkjOPQQBA4GMADCBiAJCAOAUxGBg
  857. C3JosDJdYUoCdFzCgbkWqD8pyDbHgf9stlvZcPE4O1BIKJTLCRpS8V3ujfK58PDa
  858. 2RU6+b0DeoeiIzXsAkIBo9SKeDUcSpoj0gq+KxAxnZxfvuiRs9oa9V2jI/Umi0Vw
  859. jWVim34BmT0Y9hCaOGGbLlfk+syxis7iI6CH8OFnUes=
  860. -----END CERTIFICATE-----`
  861. const clientECDSAKeyPEM = `
  862. -----BEGIN EC PARAMETERS-----
  863. BgUrgQQAIw==
  864. -----END EC PARAMETERS-----
  865. -----BEGIN EC PRIVATE KEY-----
  866. MIHcAgEBBEIBkJN9X4IqZIguiEVKMqeBUP5xtRsEv4HJEtOpOGLELwO53SD78Ew8
  867. k+wLWoqizS3NpQyMtrU8JFdWfj+C57UNkOugBwYFK4EEACOhgYkDgYYABACVjJF1
  868. FMBexFe01MNvja5oHt1vzobhfm6ySD6B5U7ixohLZNz1MLvT/2XMW/TdtWo+PtAd
  869. 3kfDdq0Z9kUsjLzYHQFMH3CQRnZIi4+DzEpcj0B22uCJ7B0rxE4wdihBsmKo+1vx
  870. +U56jb0JuK7qixgnTy5w/hOWusPTQBbNZU6sER7m8Q==
  871. -----END EC PRIVATE KEY-----`
  872. func TestClientAuth(t *testing.T) {
  873. var certPath, keyPath, ecdsaCertPath, ecdsaKeyPath string
  874. if *update {
  875. certPath = tempFile(clientCertificatePEM)
  876. defer os.Remove(certPath)
  877. keyPath = tempFile(clientKeyPEM)
  878. defer os.Remove(keyPath)
  879. ecdsaCertPath = tempFile(clientECDSACertificatePEM)
  880. defer os.Remove(ecdsaCertPath)
  881. ecdsaKeyPath = tempFile(clientECDSAKeyPEM)
  882. defer os.Remove(ecdsaKeyPath)
  883. }
  884. config := *testConfig
  885. config.ClientAuth = RequestClientCert
  886. test := &serverTest{
  887. name: "ClientAuthRequestedNotGiven",
  888. command: []string{"openssl", "s_client", "-no_ticket", "-cipher", "RC4-SHA"},
  889. config: &config,
  890. }
  891. runServerTestTLS12(t, test)
  892. test = &serverTest{
  893. name: "ClientAuthRequestedAndGiven",
  894. command: []string{"openssl", "s_client", "-no_ticket", "-cipher", "RC4-SHA", "-cert", certPath, "-key", keyPath},
  895. config: &config,
  896. expectedPeerCerts: []string{clientCertificatePEM},
  897. }
  898. runServerTestTLS12(t, test)
  899. test = &serverTest{
  900. name: "ClientAuthRequestedAndECDSAGiven",
  901. command: []string{"openssl", "s_client", "-no_ticket", "-cipher", "RC4-SHA", "-cert", ecdsaCertPath, "-key", ecdsaKeyPath},
  902. config: &config,
  903. expectedPeerCerts: []string{clientECDSACertificatePEM},
  904. }
  905. runServerTestTLS12(t, test)
  906. }
  907. func bigFromString(s string) *big.Int {
  908. ret := new(big.Int)
  909. ret.SetString(s, 10)
  910. return ret
  911. }
  912. func fromHex(s string) []byte {
  913. b, _ := hex.DecodeString(s)
  914. return b
  915. }
  916. var testRSACertificate = fromHex("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")
  917. var testRSACertificateIssuer = fromHex("3082024d308201b6a003020102020827326bd913b7c43d300d06092a864886f70d01010b0500302b31173015060355040a130e476f6f676c652054455354494e473110300e06035504031307476f20526f6f74301e170d3135303130313030303030305a170d3235303130313030303030305a302b31173015060355040a130e476f6f676c652054455354494e473110300e06035504031307476f20526f6f7430819f300d06092a864886f70d010101050003818d0030818902818100f0429a7b9f66a222c8453800452db355b34c4409fee09af2510a6589bfa35bdb4d453200d1de24338d6d5e5a91cc8301628445d6eb4e675927b9c1ea5c0f676acfb0f708ce4f19827e321c1898bf86df9823d5f0b05df2b6779888eff8abbc7f41c6e7d2667386a579b8cbaad3f6fd597cd7c4b187911a425aed1b555c1965190203010001a37a3078300e0603551d0f0101ff040403020204301d0603551d250416301406082b0601050507030106082b06010505070302300f0603551d130101ff040530030101ff30190603551d0e04120410bf3db6a966f2b840cfeab40378481a41301b0603551d23041430128010bf3db6a966f2b840cfeab40378481a41300d06092a864886f70d01010b050003818100586e68c1219ed4f5782b7cfd53cf1a55750a98781b2023f8694bb831fff6d7d4aad1f0ac782b1ec787f00a8956bdd06b4a1063444fcafe955c07d679163a730802c568886a2cf8a3c2ab41176957131c4b9e077ebd7ffbb91fdad8b08b932e9aeefac04923ffdc0aa145563f7f061995317400203578f350e3e566deb29dec5e")
  918. var testECDSACertificate = fromHex("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")
  919. var testSNICertificate = fromHex("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")
  920. var testRSAPrivateKey = &rsa.PrivateKey{
  921. PublicKey: rsa.PublicKey{
  922. N: bigFromString("123260960069105588390096594560395120585636206567569540256061833976822892593755073841963170165000086278069699238754008398039246547214989242849418349143232951701395321381739566687846006911427966669790845430647688107009232778985142860108863460556510585049041936029324503323373417214453307648498561956908810892027L"),
  923. E: 65537,
  924. },
  925. D: bigFromString("73196363031103823625826315929954946106043759818067219550565550066527203472294428548476778865091068522665312037075674791871635825938217363523103946045078950060973913307430314113074463630778799389010335923241901501086246276485964417618981733827707048660375428006201525399194575538037883519254056917253456403553L"),
  926. Primes: []*big.Int{
  927. bigFromString("11157426355495284553529769521954035649776033703833034489026848970480272318436419662860715175517581249375929775774910501512841707465207184924996975125010787L"),
  928. bigFromString("11047436580963564307160117670964629323534448585520694947919342920137706075617545637058809770319843170934495909554506529982972972247390145716507031692656521L"),
  929. },
  930. }
  931. var testECDSAPrivateKey = &ecdsa.PrivateKey{
  932. PublicKey: ecdsa.PublicKey{
  933. Curve: elliptic.P521(),
  934. X: bigFromString("2636411247892461147287360222306590634450676461695221912739908880441342231985950069527906976759812296359387337367668045707086543273113073382714101597903639351"),
  935. Y: bigFromString("3204695818431246682253994090650952614555094516658732116404513121125038617915183037601737180082382202488628239201196033284060130040574800684774115478859677243"),
  936. },
  937. D: bigFromString("5477294338614160138026852784385529180817726002953041720191098180813046231640184669647735805135001309477695746518160084669446643325196003346204701381388769751"),
  938. }