keys_test.go 5.5 KB

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  1. package ssh
  2. import (
  3. "crypto/dsa"
  4. "crypto/ecdsa"
  5. "crypto/elliptic"
  6. "crypto/rand"
  7. "crypto/rsa"
  8. "reflect"
  9. "strings"
  10. "testing"
  11. "time"
  12. )
  13. var (
  14. ecdsaKey Signer
  15. ecdsa384Key Signer
  16. ecdsa521Key Signer
  17. testCertKey Signer
  18. )
  19. type testSigner struct {
  20. Signer
  21. pub PublicKey
  22. }
  23. func (ts *testSigner) PublicKey() PublicKey {
  24. if ts.pub != nil {
  25. return ts.pub
  26. }
  27. return ts.Signer.PublicKey()
  28. }
  29. func init() {
  30. raw256, _ := ecdsa.GenerateKey(elliptic.P256(), rand.Reader)
  31. ecdsaKey, _ = NewSignerFromKey(raw256)
  32. raw384, _ := ecdsa.GenerateKey(elliptic.P384(), rand.Reader)
  33. ecdsa384Key, _ = NewSignerFromKey(raw384)
  34. raw521, _ := ecdsa.GenerateKey(elliptic.P521(), rand.Reader)
  35. ecdsa521Key, _ = NewSignerFromKey(raw521)
  36. // Create a cert and sign it for use in tests.
  37. testCert := &OpenSSHCertV01{
  38. Nonce: []byte{}, // To pass reflect.DeepEqual after marshal & parse, this must be non-nil
  39. Key: ecdsaKey.PublicKey(),
  40. ValidPrincipals: []string{"gopher1", "gopher2"}, // increases test coverage
  41. ValidAfter: time.Now().Truncate(time.Second),
  42. ValidBefore: time.Now().Truncate(time.Second).Add(time.Hour),
  43. Reserved: []byte{}, // To pass reflect.DeepEqual after marshal & parse, this must be non-nil
  44. SignatureKey: rsaKey.PublicKey(),
  45. }
  46. sigBytes, _ := rsaKey.Sign(rand.Reader, testCert.BytesForSigning())
  47. testCert.Signature = &signature{
  48. Format: testCert.SignatureKey.PublicKeyAlgo(),
  49. Blob: sigBytes,
  50. }
  51. testCertKey = &testSigner{
  52. Signer: ecdsaKey,
  53. pub: testCert,
  54. }
  55. }
  56. func rawKey(pub PublicKey) interface{} {
  57. switch k := pub.(type) {
  58. case *rsaPublicKey:
  59. return (*rsa.PublicKey)(k)
  60. case *dsaPublicKey:
  61. return (*dsa.PublicKey)(k)
  62. case *ecdsaPublicKey:
  63. return (*ecdsa.PublicKey)(k)
  64. case *OpenSSHCertV01:
  65. return k
  66. }
  67. panic("unknown key type")
  68. }
  69. func TestKeyMarshalParse(t *testing.T) {
  70. keys := []Signer{rsaKey, dsaKey, ecdsaKey, ecdsa384Key, ecdsa521Key, testCertKey}
  71. for _, priv := range keys {
  72. pub := priv.PublicKey()
  73. roundtrip, rest, ok := ParsePublicKey(MarshalPublicKey(pub))
  74. if !ok {
  75. t.Errorf("ParsePublicKey(%T) failed", pub)
  76. }
  77. if len(rest) > 0 {
  78. t.Errorf("ParsePublicKey(%T): trailing junk", pub)
  79. }
  80. k1 := rawKey(pub)
  81. k2 := rawKey(roundtrip)
  82. if !reflect.DeepEqual(k1, k2) {
  83. t.Errorf("got %#v in roundtrip, want %#v", k2, k1)
  84. }
  85. }
  86. }
  87. func TestUnsupportedCurves(t *testing.T) {
  88. raw, err := ecdsa.GenerateKey(elliptic.P224(), rand.Reader)
  89. if err != nil {
  90. t.Fatalf("GenerateKey: %v", err)
  91. }
  92. if _, err = NewSignerFromKey(raw); err == nil || !strings.Contains(err.Error(), "only P256") {
  93. t.Fatalf("NewPrivateKey should not succeed with P224, got: %v", err)
  94. }
  95. if _, err = NewPublicKey(&raw.PublicKey); err == nil || !strings.Contains(err.Error(), "only P256") {
  96. t.Fatalf("NewPublicKey should not succeed with P224, got: %v", err)
  97. }
  98. }
  99. func TestNewPublicKey(t *testing.T) {
  100. keys := []Signer{rsaKey, dsaKey, ecdsaKey}
  101. for _, k := range keys {
  102. raw := rawKey(k.PublicKey())
  103. pub, err := NewPublicKey(raw)
  104. if err != nil {
  105. t.Errorf("NewPublicKey(%#v): %v", raw, err)
  106. }
  107. if !reflect.DeepEqual(k.PublicKey(), pub) {
  108. t.Errorf("NewPublicKey(%#v) = %#v, want %#v", raw, pub, k.PublicKey())
  109. }
  110. }
  111. }
  112. func TestKeySignVerify(t *testing.T) {
  113. keys := []Signer{rsaKey, dsaKey, ecdsaKey, testCertKey}
  114. for _, priv := range keys {
  115. pub := priv.PublicKey()
  116. data := []byte("sign me")
  117. sig, err := priv.Sign(rand.Reader, data)
  118. if err != nil {
  119. t.Fatalf("Sign(%T): %v", priv, err)
  120. }
  121. if !pub.Verify(data, sig) {
  122. t.Errorf("publicKey.Verify(%T) failed", priv)
  123. }
  124. }
  125. }
  126. func TestParseRSAPrivateKey(t *testing.T) {
  127. key, err := ParsePrivateKey([]byte(testServerPrivateKey))
  128. if err != nil {
  129. t.Fatalf("ParsePrivateKey: %v", err)
  130. }
  131. rsa, ok := key.(*rsaPrivateKey)
  132. if !ok {
  133. t.Fatalf("got %T, want *rsa.PrivateKey", rsa)
  134. }
  135. if err := rsa.Validate(); err != nil {
  136. t.Errorf("Validate: %v", err)
  137. }
  138. }
  139. func TestParseECPrivateKey(t *testing.T) {
  140. // Taken from the data in test/ .
  141. pem := []byte(`-----BEGIN EC PRIVATE KEY-----
  142. MHcCAQEEINGWx0zo6fhJ/0EAfrPzVFyFC9s18lBt3cRoEDhS3ARooAoGCCqGSM49
  143. AwEHoUQDQgAEi9Hdw6KvZcWxfg2IDhA7UkpDtzzt6ZqJXSsFdLd+Kx4S3Sx4cVO+
  144. 6/ZOXRnPmNAlLUqjShUsUBBngG0u2fqEqA==
  145. -----END EC PRIVATE KEY-----`)
  146. key, err := ParsePrivateKey(pem)
  147. if err != nil {
  148. t.Fatalf("ParsePrivateKey: %v", err)
  149. }
  150. ecKey, ok := key.(*ecdsaPrivateKey)
  151. if !ok {
  152. t.Fatalf("got %T, want *ecdsaPrivateKey", ecKey)
  153. }
  154. if !validateECPublicKey(ecKey.Curve, ecKey.X, ecKey.Y) {
  155. t.Fatalf("public key does not validate.")
  156. }
  157. }
  158. // ssh-keygen -t dsa -f /tmp/idsa.pem
  159. var dsaPEM = `-----BEGIN DSA PRIVATE KEY-----
  160. MIIBuwIBAAKBgQD6PDSEyXiI9jfNs97WuM46MSDCYlOqWw80ajN16AohtBncs1YB
  161. lHk//dQOvCYOsYaE+gNix2jtoRjwXhDsc25/IqQbU1ahb7mB8/rsaILRGIbA5WH3
  162. EgFtJmXFovDz3if6F6TzvhFpHgJRmLYVR8cqsezL3hEZOvvs2iH7MorkxwIVAJHD
  163. nD82+lxh2fb4PMsIiaXudAsBAoGAQRf7Q/iaPRn43ZquUhd6WwvirqUj+tkIu6eV
  164. 2nZWYmXLlqFQKEy4Tejl7Wkyzr2OSYvbXLzo7TNxLKoWor6ips0phYPPMyXld14r
  165. juhT24CrhOzuLMhDduMDi032wDIZG4Y+K7ElU8Oufn8Sj5Wge8r6ANmmVgmFfynr
  166. FhdYCngCgYEA3ucGJ93/Mx4q4eKRDxcWD3QzWyqpbRVRRV1Vmih9Ha/qC994nJFz
  167. DQIdjxDIT2Rk2AGzMqFEB68Zc3O+Wcsmz5eWWzEwFxaTwOGWTyDqsDRLm3fD+QYj
  168. nOwuxb0Kce+gWI8voWcqC9cyRm09jGzu2Ab3Bhtpg8JJ8L7gS3MRZK4CFEx4UAfY
  169. Fmsr0W6fHB9nhS4/UXM8
  170. -----END DSA PRIVATE KEY-----`
  171. func TestParseDSA(t *testing.T) {
  172. s, err := ParsePrivateKey([]byte(dsaPEM))
  173. if err != nil {
  174. t.Fatalf("ParsePrivateKey returned error: %s", err)
  175. }
  176. data := []byte("sign me")
  177. sig, err := s.Sign(rand.Reader, data)
  178. if err != nil {
  179. t.Fatalf("dsa.Sign: %v", err)
  180. }
  181. if !s.PublicKey().Verify(data, sig) {
  182. t.Error("Verify failed.")
  183. }
  184. }