cert_v2_test.go 11 KB

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  1. package cert
  2. import (
  3. "crypto/ed25519"
  4. "crypto/rand"
  5. "encoding/hex"
  6. "net/netip"
  7. "slices"
  8. "testing"
  9. "time"
  10. "github.com/slackhq/nebula/test"
  11. "github.com/stretchr/testify/assert"
  12. "github.com/stretchr/testify/require"
  13. )
  14. func TestCertificateV2_Marshal(t *testing.T) {
  15. t.Parallel()
  16. before := time.Now().Add(time.Second * -60).Round(time.Second)
  17. after := time.Now().Add(time.Second * 60).Round(time.Second)
  18. pubKey := []byte("1234567890abcedfghij1234567890ab")
  19. nc := certificateV2{
  20. details: detailsV2{
  21. name: "testing",
  22. networks: []netip.Prefix{
  23. mustParsePrefixUnmapped("10.1.1.2/16"),
  24. mustParsePrefixUnmapped("10.1.1.1/24"),
  25. },
  26. unsafeNetworks: []netip.Prefix{
  27. mustParsePrefixUnmapped("9.1.1.3/16"),
  28. mustParsePrefixUnmapped("9.1.1.2/24"),
  29. },
  30. groups: []string{"test-group1", "test-group2", "test-group3"},
  31. notBefore: before,
  32. notAfter: after,
  33. isCA: false,
  34. issuer: "1234567890abcdef1234567890abcdef",
  35. },
  36. signature: []byte("1234567890abcdef1234567890abcdef"),
  37. publicKey: pubKey,
  38. }
  39. db, err := nc.details.Marshal()
  40. require.NoError(t, err)
  41. nc.rawDetails = db
  42. b, err := nc.Marshal()
  43. require.NoError(t, err)
  44. //t.Log("Cert size:", len(b))
  45. nc2, err := unmarshalCertificateV2(b, nil, Curve_CURVE25519)
  46. require.NoError(t, err)
  47. assert.Equal(t, Version2, nc.Version())
  48. assert.Equal(t, Curve_CURVE25519, nc.Curve())
  49. assert.Equal(t, nc.Signature(), nc2.Signature())
  50. assert.Equal(t, nc.Name(), nc2.Name())
  51. assert.Equal(t, nc.NotBefore(), nc2.NotBefore())
  52. assert.Equal(t, nc.NotAfter(), nc2.NotAfter())
  53. assert.Equal(t, nc.PublicKey(), nc2.PublicKey())
  54. assert.Equal(t, nc.IsCA(), nc2.IsCA())
  55. assert.Equal(t, nc.Issuer(), nc2.Issuer())
  56. // unmarshalling will sort networks and unsafeNetworks, we need to do the same
  57. // but first make sure it fails
  58. assert.NotEqual(t, nc.Networks(), nc2.Networks())
  59. assert.NotEqual(t, nc.UnsafeNetworks(), nc2.UnsafeNetworks())
  60. slices.SortFunc(nc.details.networks, comparePrefix)
  61. slices.SortFunc(nc.details.unsafeNetworks, comparePrefix)
  62. assert.Equal(t, nc.Networks(), nc2.Networks())
  63. assert.Equal(t, nc.UnsafeNetworks(), nc2.UnsafeNetworks())
  64. assert.Equal(t, nc.Groups(), nc2.Groups())
  65. }
  66. func TestCertificateV2_PublicKeyPem(t *testing.T) {
  67. t.Parallel()
  68. before := time.Now().Add(time.Second * -60).Round(time.Second)
  69. after := time.Now().Add(time.Second * 60).Round(time.Second)
  70. pubKey := ed25519.PublicKey("1234567890abcedfghij1234567890ab")
  71. nc := certificateV2{
  72. details: detailsV2{
  73. name: "testing",
  74. networks: []netip.Prefix{},
  75. unsafeNetworks: []netip.Prefix{},
  76. groups: []string{"test-group1", "test-group2", "test-group3"},
  77. notBefore: before,
  78. notAfter: after,
  79. isCA: false,
  80. issuer: "1234567890abcedfghij1234567890ab",
  81. },
  82. publicKey: pubKey,
  83. signature: []byte("1234567890abcedfghij1234567890ab"),
  84. }
  85. assert.Equal(t, Version2, nc.Version())
  86. assert.Equal(t, Curve_CURVE25519, nc.Curve())
  87. pubPem := "-----BEGIN NEBULA X25519 PUBLIC KEY-----\nMTIzNDU2Nzg5MGFiY2VkZmdoaWoxMjM0NTY3ODkwYWI=\n-----END NEBULA X25519 PUBLIC KEY-----\n"
  88. assert.Equal(t, string(nc.MarshalPublicKeyPEM()), pubPem)
  89. assert.False(t, nc.IsCA())
  90. nc.details.isCA = true
  91. assert.Equal(t, Curve_CURVE25519, nc.Curve())
  92. pubPem = "-----BEGIN NEBULA ED25519 PUBLIC KEY-----\nMTIzNDU2Nzg5MGFiY2VkZmdoaWoxMjM0NTY3ODkwYWI=\n-----END NEBULA ED25519 PUBLIC KEY-----\n"
  93. assert.Equal(t, string(nc.MarshalPublicKeyPEM()), pubPem)
  94. assert.True(t, nc.IsCA())
  95. pubP256KeyPem := []byte(`-----BEGIN NEBULA P256 PUBLIC KEY-----
  96. AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA
  97. AAAAAAAAAAAAAAAAAAAAAAA=
  98. -----END NEBULA P256 PUBLIC KEY-----
  99. `)
  100. pubP256Key, _, _, err := UnmarshalPublicKeyFromPEM(pubP256KeyPem)
  101. require.NoError(t, err)
  102. nc.curve = Curve_P256
  103. nc.publicKey = pubP256Key
  104. assert.Equal(t, Curve_P256, nc.Curve())
  105. assert.Equal(t, string(nc.MarshalPublicKeyPEM()), string(pubP256KeyPem))
  106. assert.True(t, nc.IsCA())
  107. nc.details.isCA = false
  108. assert.Equal(t, Curve_P256, nc.Curve())
  109. assert.Equal(t, string(nc.MarshalPublicKeyPEM()), string(pubP256KeyPem))
  110. assert.False(t, nc.IsCA())
  111. }
  112. func TestCertificateV2_Expired(t *testing.T) {
  113. nc := certificateV2{
  114. details: detailsV2{
  115. notBefore: time.Now().Add(time.Second * -60).Round(time.Second),
  116. notAfter: time.Now().Add(time.Second * 60).Round(time.Second),
  117. },
  118. }
  119. assert.True(t, nc.Expired(time.Now().Add(time.Hour)))
  120. assert.True(t, nc.Expired(time.Now().Add(-time.Hour)))
  121. assert.False(t, nc.Expired(time.Now()))
  122. }
  123. func TestCertificateV2_MarshalJSON(t *testing.T) {
  124. time.Local = time.UTC
  125. pubKey := []byte("1234567890abcedf1234567890abcedf")
  126. nc := certificateV2{
  127. details: detailsV2{
  128. name: "testing",
  129. networks: []netip.Prefix{
  130. mustParsePrefixUnmapped("10.1.1.1/24"),
  131. mustParsePrefixUnmapped("10.1.1.2/16"),
  132. },
  133. unsafeNetworks: []netip.Prefix{
  134. mustParsePrefixUnmapped("9.1.1.2/24"),
  135. mustParsePrefixUnmapped("9.1.1.3/16"),
  136. },
  137. groups: []string{"test-group1", "test-group2", "test-group3"},
  138. notBefore: time.Date(1, 0, 0, 1, 0, 0, 0, time.UTC),
  139. notAfter: time.Date(1, 0, 0, 2, 0, 0, 0, time.UTC),
  140. isCA: false,
  141. issuer: "1234567890abcedf1234567890abcedf",
  142. },
  143. publicKey: pubKey,
  144. signature: []byte("1234567890abcedf1234567890abcedf1234567890abcedf1234567890abcedf"),
  145. }
  146. b, err := nc.MarshalJSON()
  147. require.ErrorIs(t, err, ErrMissingDetails)
  148. rd, err := nc.details.Marshal()
  149. require.NoError(t, err)
  150. nc.rawDetails = rd
  151. b, err = nc.MarshalJSON()
  152. require.NoError(t, err)
  153. assert.JSONEq(
  154. t,
  155. "{\"curve\":\"CURVE25519\",\"details\":{\"groups\":[\"test-group1\",\"test-group2\",\"test-group3\"],\"isCa\":false,\"issuer\":\"1234567890abcedf1234567890abcedf\",\"name\":\"testing\",\"networks\":[\"10.1.1.1/24\",\"10.1.1.2/16\"],\"notAfter\":\"0000-11-30T02:00:00Z\",\"notBefore\":\"0000-11-30T01:00:00Z\",\"unsafeNetworks\":[\"9.1.1.2/24\",\"9.1.1.3/16\"]},\"fingerprint\":\"152d9a7400c1e001cb76cffd035215ebb351f69eeb797f7f847dd086e15e56dd\",\"publicKey\":\"3132333435363738393061626365646631323334353637383930616263656466\",\"signature\":\"31323334353637383930616263656466313233343536373839306162636564663132333435363738393061626365646631323334353637383930616263656466\",\"version\":2}",
  156. string(b),
  157. )
  158. }
  159. func TestCertificateV2_VerifyPrivateKey(t *testing.T) {
  160. ca, _, caKey, _ := NewTestCaCert(Version2, Curve_CURVE25519, time.Time{}, time.Time{}, nil, nil, nil)
  161. err := ca.VerifyPrivateKey(Curve_CURVE25519, caKey)
  162. require.NoError(t, err)
  163. err = ca.VerifyPrivateKey(Curve_CURVE25519, caKey[:16])
  164. require.ErrorIs(t, err, ErrInvalidPrivateKey)
  165. _, caKey2, err := ed25519.GenerateKey(rand.Reader)
  166. require.NoError(t, err)
  167. err = ca.VerifyPrivateKey(Curve_CURVE25519, caKey2)
  168. require.ErrorIs(t, err, ErrPublicPrivateKeyMismatch)
  169. c, _, priv, _ := NewTestCert(Version2, Curve_CURVE25519, ca, caKey, "test", time.Time{}, time.Time{}, nil, nil, nil)
  170. rawPriv, b, curve, err := UnmarshalPrivateKeyFromPEM(priv)
  171. require.NoError(t, err)
  172. assert.Empty(t, b)
  173. assert.Equal(t, Curve_CURVE25519, curve)
  174. err = c.VerifyPrivateKey(Curve_CURVE25519, rawPriv)
  175. require.NoError(t, err)
  176. _, priv2 := X25519Keypair()
  177. err = c.VerifyPrivateKey(Curve_P256, priv2)
  178. require.ErrorIs(t, err, ErrPublicPrivateCurveMismatch)
  179. err = c.VerifyPrivateKey(Curve_CURVE25519, priv2)
  180. require.ErrorIs(t, err, ErrPublicPrivateKeyMismatch)
  181. err = c.VerifyPrivateKey(Curve_CURVE25519, priv2[:16])
  182. require.ErrorIs(t, err, ErrInvalidPrivateKey)
  183. ac, ok := c.(*certificateV2)
  184. require.True(t, ok)
  185. ac.curve = Curve(99)
  186. err = c.VerifyPrivateKey(Curve(99), priv2)
  187. require.EqualError(t, err, "invalid curve: 99")
  188. ca2, _, caKey2, _ := NewTestCaCert(Version2, Curve_P256, time.Time{}, time.Time{}, nil, nil, nil)
  189. err = ca.VerifyPrivateKey(Curve_CURVE25519, caKey)
  190. require.NoError(t, err)
  191. err = ca2.VerifyPrivateKey(Curve_P256, caKey2[:16])
  192. require.ErrorIs(t, err, ErrInvalidPrivateKey)
  193. c, _, priv, _ = NewTestCert(Version2, Curve_P256, ca2, caKey2, "test", time.Time{}, time.Time{}, nil, nil, nil)
  194. rawPriv, b, curve, err = UnmarshalPrivateKeyFromPEM(priv)
  195. err = c.VerifyPrivateKey(Curve_P256, priv[:16])
  196. require.ErrorIs(t, err, ErrInvalidPrivateKey)
  197. err = c.VerifyPrivateKey(Curve_P256, priv)
  198. require.ErrorIs(t, err, ErrInvalidPrivateKey)
  199. aCa, ok := ca2.(*certificateV2)
  200. require.True(t, ok)
  201. aCa.curve = Curve(99)
  202. err = aCa.VerifyPrivateKey(Curve(99), priv2)
  203. require.EqualError(t, err, "invalid curve: 99")
  204. }
  205. func TestCertificateV2_VerifyPrivateKeyP256(t *testing.T) {
  206. ca, _, caKey, _ := NewTestCaCert(Version2, Curve_P256, time.Time{}, time.Time{}, nil, nil, nil)
  207. err := ca.VerifyPrivateKey(Curve_P256, caKey)
  208. require.NoError(t, err)
  209. _, _, caKey2, _ := NewTestCaCert(Version2, Curve_P256, time.Time{}, time.Time{}, nil, nil, nil)
  210. require.NoError(t, err)
  211. err = ca.VerifyPrivateKey(Curve_P256, caKey2)
  212. require.Error(t, err)
  213. c, _, priv, _ := NewTestCert(Version2, Curve_P256, ca, caKey, "test", time.Time{}, time.Time{}, nil, nil, nil)
  214. rawPriv, b, curve, err := UnmarshalPrivateKeyFromPEM(priv)
  215. require.NoError(t, err)
  216. assert.Empty(t, b)
  217. assert.Equal(t, Curve_P256, curve)
  218. err = c.VerifyPrivateKey(Curve_P256, rawPriv)
  219. require.NoError(t, err)
  220. _, priv2 := P256Keypair()
  221. err = c.VerifyPrivateKey(Curve_P256, priv2)
  222. require.Error(t, err)
  223. }
  224. func TestCertificateV2_Copy(t *testing.T) {
  225. ca, _, caKey, _ := NewTestCaCert(Version2, Curve_CURVE25519, time.Now(), time.Now().Add(10*time.Minute), nil, nil, nil)
  226. c, _, _, _ := NewTestCert(Version2, Curve_CURVE25519, ca, caKey, "test", time.Now(), time.Now().Add(5*time.Minute), nil, nil, nil)
  227. cc := c.Copy()
  228. test.AssertDeepCopyEqual(t, c, cc)
  229. }
  230. func TestUnmarshalCertificateV2(t *testing.T) {
  231. data := []byte("\x98\x00\x00")
  232. _, err := unmarshalCertificateV2(data, nil, Curve_CURVE25519)
  233. require.EqualError(t, err, "bad wire format")
  234. }
  235. func TestCertificateV2_marshalForSigningStability(t *testing.T) {
  236. before := time.Date(1996, time.May, 5, 0, 0, 0, 0, time.UTC)
  237. after := before.Add(time.Second * 60).Round(time.Second)
  238. pubKey := []byte("1234567890abcedfghij1234567890ab")
  239. nc := certificateV2{
  240. details: detailsV2{
  241. name: "testing",
  242. networks: []netip.Prefix{
  243. mustParsePrefixUnmapped("10.1.1.2/16"),
  244. mustParsePrefixUnmapped("10.1.1.1/24"),
  245. },
  246. unsafeNetworks: []netip.Prefix{
  247. mustParsePrefixUnmapped("9.1.1.3/16"),
  248. mustParsePrefixUnmapped("9.1.1.2/24"),
  249. },
  250. groups: []string{"test-group1", "test-group2", "test-group3"},
  251. notBefore: before,
  252. notAfter: after,
  253. isCA: false,
  254. issuer: "1234567890abcdef1234567890abcdef",
  255. },
  256. signature: []byte("1234567890abcdef1234567890abcdef"),
  257. publicKey: pubKey,
  258. }
  259. const expectedRawDetailsStr = "a070800774657374696e67a10e04050a0101021004050a01010118a20e0405090101031004050901010218a3270c0b746573742d67726f7570310c0b746573742d67726f7570320c0b746573742d67726f7570338504318bef808604318befbc87101234567890abcdef1234567890abcdef"
  260. expectedRawDetails, err := hex.DecodeString(expectedRawDetailsStr)
  261. require.NoError(t, err)
  262. db, err := nc.details.Marshal()
  263. require.NoError(t, err)
  264. assert.Equal(t, expectedRawDetails, db)
  265. expectedForSigning, err := hex.DecodeString(expectedRawDetailsStr + "00313233343536373839306162636564666768696a313233343536373839306162")
  266. b, err := nc.marshalForSigning()
  267. require.NoError(t, err)
  268. assert.Equal(t, expectedForSigning, b)
  269. }