gitea

Development moved to Codeberg

  1. 1
  2. 2
  3. 3
  4. 4
  5. 5
  6. 6
  7. 7
  8. 8
  9. 9
  10. 10
  11. 11
  12. 12
  13. 13
  14. 14
  15. 15
  16. 16
  17. 17
  18. 18
  19. 19
  20. 20
  21. 21
  22. 22
  23. 23
  24. 24
  25. 25
  26. 26
  27. 27
  28. 28
  29. 29
  30. 30
  31. 31
  32. 32
  33. 33
  34. 34
  35. 35
  36. 36
  37. 37
  38. 38
  39. 39
  40. 40
  41. 41
  42. 42
  43. 43
  44. 44
  45. 45
  46. 46
  47. 47
  48. 48
  49. 49
  50. 50
  51. 51
  52. 52
  53. 53
  54. 54
  55. 55
  56. 56
  57. 57
  58. 58
  59. 59
  60. 60
  61. 61
  62. 62
  63. 63
  64. 64
  65. 65
  66. 66
  67. 67
  68. 68
  69. 69
  70. 70
  71. 71
  72. 72
  73. 73
  74. 74
  75. 75
  76. 76
  77. 77
  78. 78
  79. 79
  80. 80
  81. 81
  82. 82
  83. 83
  84. 84
  85. 85
  86. 86
  87. 87
  88. 88
  89. 89
  90. 90
  91. 91
  92. 92
  93. 93
  94. 94
  95. 95
  96. 96
  97. 97
  98. 98
  99. 99
  100. 100
  101. 101
  102. 102
  103. 103
  104. 104
  105. 105
  106. 106
  107. 107
  108. 108
  109. 109
  110. 110
  111. 111
  112. 112
  113. 113
  114. 114
  115. 115
  116. 116
  117. 117
  118. 118
  119. 119
  120. 120
  121. 121
  122. 122
  123. 123
  124. 124
  125. 125
  126. 126
  127. 127
  128. 128
  129. 129
  130. 130
  131. 131
  132. 132
  133. 133
  134. 134
  135. 135
  136. 136
  137. 137
  138. 138
  139. 139
  140. 140
  141. 141
  142. 142
  143. 143
  144. 144
  145. 145
  146. 146
  147. 147
  148. 148
  149. 149
  150. 150
  151. 151
  152. 152
  153. 153
  154. 154
  155. 155
  156. 156
  157. 157
  158. 158
  159. 159
  160. 160
  161. 161
  162. 162
  163. 163
  164. 164
  165. 165
  166. 166
  167. 167
  168. 168
  169. 169
  170. 170
  171. 171
  172. 172
  173. 173
  174. 174
  175. 175
  176. 176
  177. 177
  178. 178
  179. 179
  180. 180
  181. 181
  182. 182
  183. 183
  184. 184
  185. 185
  186. 186
  187. 187
  188. 188
  189. 189
  190. 190
  191. 191
  192. 192
  193. 193
  194. 194
  195. 195
  196. 196
  197. 197
  198. 198
  199. 199
  200. 200
  201. 201
  202. 202
  203. 203
  204. 204
  205. 205
  206. 206
  207. 207
  208. 208
  209. 209
  210. 210
  211. 211
  212. 212
  213. 213
  214. 214
  215. 215
  216. 216
  217. 217
  218. 218
  219. 219
  220. 220
  221. 221
  222. 222
  223. 223
  224. 224
  225. 225
  226. 226
  227. 227
  228. 228
  229. 229
  230. 230
  231. 231
  232. 232
  233. 233
  234. 234
  235. 235
  236. 236
  237. 237
  238. 238
  239. 239
  240. 240
  241. 241
  242. 242
  243. 243
  244. 244
  245. 245
  246. 246
  247. 247
  248. 248
  249. 249
  250. 250
  251. 251
  252. 252
  253. 253
  254. 254
  255. 255
  256. 256
  257. 257
  258. 258
  259. 259
  260. 260
  261. 261
  262. 262
  263. 263
  264. 264
  265. 265
  266. 266
  267. 267
  268. 268
  269. 269
  270. 270
  271. 271
  272. 272
  273. 273
  274. 274
  275. 275
  276. 276
  277. 277
  278. 278
  279. 279
  280. 280
  281. 281
  282. 282
  283. 283
  284. 284
  285. 285
  286. 286
  287. 287
  288. 288
  289. 289
  290. 290
  291. 291
  292. 292
  293. 293
  294. 294
  295. 295
  296. 296
  297. 297
  298. 298
  299. 299
  300. 300
  301. 301
  302. 302
  303. 303
  304. 304
  305. 305
  306. 306
  307. 307
  308. 308
  309. 309
  310. 310
  311. 311
  312. 312
  313. 313
  314. 314
  315. 315
  316. 316
  317. 317
  318. 318
  319. 319
  320. 320
  321. 321
  322. 322
  323. 323
  324. 324
  325. 325
  326. 326
  327. 327
  328. 328
  329. 329
  330. 330
  331. 331
  332. 332
  333. 333
  334. 334
  335. 335
  336. 336
  337. 337
  338. 338
  339. 339
  340. 340
  341. 341
  342. 342
  343. 343
  344. 344
  345. 345
  346. 346
  347. 347
// Copyright 2015 Google Inc. All Rights Reserved.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
//     http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.

package ct

import (
	"crypto"
	"crypto/sha256"
	"encoding/json"
	"fmt"
	"strings"
	"time"

	"github.com/google/certificate-transparency-go/tls"
	"github.com/google/certificate-transparency-go/x509"
)

// SerializeSCTSignatureInput serializes the passed in sct and log entry into
// the correct format for signing.
func SerializeSCTSignatureInput(sct SignedCertificateTimestamp, entry LogEntry) ([]byte, error) {
	switch sct.SCTVersion {
	case V1:
		input := CertificateTimestamp{
			SCTVersion:    sct.SCTVersion,
			SignatureType: CertificateTimestampSignatureType,
			Timestamp:     sct.Timestamp,
			EntryType:     entry.Leaf.TimestampedEntry.EntryType,
			Extensions:    sct.Extensions,
		}
		switch entry.Leaf.TimestampedEntry.EntryType {
		case X509LogEntryType:
			input.X509Entry = entry.Leaf.TimestampedEntry.X509Entry
		case PrecertLogEntryType:
			input.PrecertEntry = &PreCert{
				IssuerKeyHash:  entry.Leaf.TimestampedEntry.PrecertEntry.IssuerKeyHash,
				TBSCertificate: entry.Leaf.TimestampedEntry.PrecertEntry.TBSCertificate,
			}
		case XJSONLogEntryType:
			input.JSONEntry = entry.Leaf.TimestampedEntry.JSONEntry
		default:
			return nil, fmt.Errorf("unsupported entry type %s", entry.Leaf.TimestampedEntry.EntryType)
		}
		return tls.Marshal(input)
	default:
		return nil, fmt.Errorf("unknown SCT version %d", sct.SCTVersion)
	}
}

// SerializeSTHSignatureInput serializes the passed in STH into the correct
// format for signing.
func SerializeSTHSignatureInput(sth SignedTreeHead) ([]byte, error) {
	switch sth.Version {
	case V1:
		if len(sth.SHA256RootHash) != crypto.SHA256.Size() {
			return nil, fmt.Errorf("invalid TreeHash length, got %d expected %d", len(sth.SHA256RootHash), crypto.SHA256.Size())
		}

		input := TreeHeadSignature{
			Version:        sth.Version,
			SignatureType:  TreeHashSignatureType,
			Timestamp:      sth.Timestamp,
			TreeSize:       sth.TreeSize,
			SHA256RootHash: sth.SHA256RootHash,
		}
		return tls.Marshal(input)
	default:
		return nil, fmt.Errorf("unsupported STH version %d", sth.Version)
	}
}

// CreateX509MerkleTreeLeaf generates a MerkleTreeLeaf for an X509 cert
func CreateX509MerkleTreeLeaf(cert ASN1Cert, timestamp uint64) *MerkleTreeLeaf {
	return &MerkleTreeLeaf{
		Version:  V1,
		LeafType: TimestampedEntryLeafType,
		TimestampedEntry: &TimestampedEntry{
			Timestamp: timestamp,
			EntryType: X509LogEntryType,
			X509Entry: &cert,
		},
	}
}

// CreateJSONMerkleTreeLeaf creates the merkle tree leaf for json data.
func CreateJSONMerkleTreeLeaf(data interface{}, timestamp uint64) *MerkleTreeLeaf {
	jsonData, err := json.Marshal(AddJSONRequest{Data: data})
	if err != nil {
		return nil
	}
	// Match the JSON serialization implemented by json-c
	jsonStr := strings.Replace(string(jsonData), ":", ": ", -1)
	jsonStr = strings.Replace(jsonStr, ",", ", ", -1)
	jsonStr = strings.Replace(jsonStr, "{", "{ ", -1)
	jsonStr = strings.Replace(jsonStr, "}", " }", -1)
	jsonStr = strings.Replace(jsonStr, "/", `\/`, -1)
	// TODO: Pending google/certificate-transparency#1243, replace with
	// ObjectHash once supported by CT server.

	return &MerkleTreeLeaf{
		Version:  V1,
		LeafType: TimestampedEntryLeafType,
		TimestampedEntry: &TimestampedEntry{
			Timestamp: timestamp,
			EntryType: XJSONLogEntryType,
			JSONEntry: &JSONDataEntry{Data: []byte(jsonStr)},
		},
	}
}

// MerkleTreeLeafFromRawChain generates a MerkleTreeLeaf from a chain (in DER-encoded form) and timestamp.
func MerkleTreeLeafFromRawChain(rawChain []ASN1Cert, etype LogEntryType, timestamp uint64) (*MerkleTreeLeaf, error) {
	// Need at most 3 of the chain
	count := 3
	if count > len(rawChain) {
		count = len(rawChain)
	}
	chain := make([]*x509.Certificate, count)
	for i := range chain {
		cert, err := x509.ParseCertificate(rawChain[i].Data)
		if x509.IsFatal(err) {
			return nil, fmt.Errorf("failed to parse chain[%d] cert: %v", i, err)
		}
		chain[i] = cert
	}
	return MerkleTreeLeafFromChain(chain, etype, timestamp)
}

// MerkleTreeLeafFromChain generates a MerkleTreeLeaf from a chain and timestamp.
func MerkleTreeLeafFromChain(chain []*x509.Certificate, etype LogEntryType, timestamp uint64) (*MerkleTreeLeaf, error) {
	leaf := MerkleTreeLeaf{
		Version:  V1,
		LeafType: TimestampedEntryLeafType,
		TimestampedEntry: &TimestampedEntry{
			EntryType: etype,
			Timestamp: timestamp,
		},
	}
	if etype == X509LogEntryType {
		leaf.TimestampedEntry.X509Entry = &ASN1Cert{Data: chain[0].Raw}
		return &leaf, nil
	}
	if etype != PrecertLogEntryType {
		return nil, fmt.Errorf("unknown LogEntryType %d", etype)
	}

	// Pre-certs are more complicated. First, parse the leaf pre-cert and its
	// putative issuer.
	if len(chain) < 2 {
		return nil, fmt.Errorf("no issuer cert available for precert leaf building")
	}
	issuer := chain[1]
	cert := chain[0]

	var preIssuer *x509.Certificate
	if IsPreIssuer(issuer) {
		// Replace the cert's issuance information with details from the pre-issuer.
		preIssuer = issuer

		// The issuer of the pre-cert is not going to be the issuer of the final
		// cert.  Change to use the final issuer's key hash.
		if len(chain) < 3 {
			return nil, fmt.Errorf("no issuer cert available for pre-issuer")
		}
		issuer = chain[2]
	}

	// Next, post-process the DER-encoded TBSCertificate, to remove the CT poison
	// extension and possibly update the issuer field.
	defangedTBS, err := x509.BuildPrecertTBS(cert.RawTBSCertificate, preIssuer)
	if err != nil {
		return nil, fmt.Errorf("failed to remove poison extension: %v", err)
	}

	leaf.TimestampedEntry.EntryType = PrecertLogEntryType
	leaf.TimestampedEntry.PrecertEntry = &PreCert{
		IssuerKeyHash:  sha256.Sum256(issuer.RawSubjectPublicKeyInfo),
		TBSCertificate: defangedTBS,
	}
	return &leaf, nil
}

// MerkleTreeLeafForEmbeddedSCT generates a MerkleTreeLeaf from a chain and an
// SCT timestamp, where the leaf certificate at chain[0] is a certificate that
// contains embedded SCTs.  It is assumed that the timestamp provided is from
// one of the SCTs embedded within the leaf certificate.
func MerkleTreeLeafForEmbeddedSCT(chain []*x509.Certificate, timestamp uint64) (*MerkleTreeLeaf, error) {
	// For building the leaf for a certificate and SCT where the SCT is embedded
	// in the certificate, we need to build the original precertificate TBS
	// data.  First, parse the leaf cert and its issuer.
	if len(chain) < 2 {
		return nil, fmt.Errorf("no issuer cert available for precert leaf building")
	}
	issuer := chain[1]
	cert := chain[0]

	// Next, post-process the DER-encoded TBSCertificate, to remove the SCTList
	// extension.
	tbs, err := x509.RemoveSCTList(cert.RawTBSCertificate)
	if err != nil {
		return nil, fmt.Errorf("failed to remove SCT List extension: %v", err)
	}

	return &MerkleTreeLeaf{
		Version:  V1,
		LeafType: TimestampedEntryLeafType,
		TimestampedEntry: &TimestampedEntry{
			EntryType: PrecertLogEntryType,
			Timestamp: timestamp,
			PrecertEntry: &PreCert{
				IssuerKeyHash:  sha256.Sum256(issuer.RawSubjectPublicKeyInfo),
				TBSCertificate: tbs,
			},
		},
	}, nil
}

// LeafHashForLeaf returns the leaf hash for a Merkle tree leaf.
func LeafHashForLeaf(leaf *MerkleTreeLeaf) ([sha256.Size]byte, error) {
	leafData, err := tls.Marshal(*leaf)
	if err != nil {
		return [sha256.Size]byte{}, fmt.Errorf("failed to tls-encode MerkleTreeLeaf: %s", err)
	}

	data := append([]byte{TreeLeafPrefix}, leafData...)
	leafHash := sha256.Sum256(data)
	return leafHash, nil
}

// IsPreIssuer indicates whether a certificate is a pre-cert issuer with the specific
// certificate transparency extended key usage.
func IsPreIssuer(issuer *x509.Certificate) bool {
	for _, eku := range issuer.ExtKeyUsage {
		if eku == x509.ExtKeyUsageCertificateTransparency {
			return true
		}
	}
	return false
}

// RawLogEntryFromLeaf converts a LeafEntry object (which has the raw leaf data
// after JSON parsing) into a RawLogEntry object (i.e. a TLS-parsed structure).
func RawLogEntryFromLeaf(index int64, entry *LeafEntry) (*RawLogEntry, error) {
	ret := RawLogEntry{Index: index}
	if rest, err := tls.Unmarshal(entry.LeafInput, &ret.Leaf); err != nil {
		return nil, fmt.Errorf("failed to unmarshal MerkleTreeLeaf: %v", err)
	} else if len(rest) > 0 {
		return nil, fmt.Errorf("MerkleTreeLeaf: trailing data %d bytes", len(rest))
	}

	switch eType := ret.Leaf.TimestampedEntry.EntryType; eType {
	case X509LogEntryType:
		var certChain CertificateChain
		if rest, err := tls.Unmarshal(entry.ExtraData, &certChain); err != nil {
			return nil, fmt.Errorf("failed to unmarshal CertificateChain: %v", err)
		} else if len(rest) > 0 {
			return nil, fmt.Errorf("CertificateChain: trailing data %d bytes", len(rest))
		}
		ret.Cert = *ret.Leaf.TimestampedEntry.X509Entry
		ret.Chain = certChain.Entries

	case PrecertLogEntryType:
		var precertChain PrecertChainEntry
		if rest, err := tls.Unmarshal(entry.ExtraData, &precertChain); err != nil {
			return nil, fmt.Errorf("failed to unmarshal PrecertChainEntry: %v", err)
		} else if len(rest) > 0 {
			return nil, fmt.Errorf("PrecertChainEntry: trailing data %d bytes", len(rest))
		}
		ret.Cert = precertChain.PreCertificate
		ret.Chain = precertChain.CertificateChain

	default:
		// TODO(pavelkalinnikov): Section 4.6 of RFC6962 implies that unknown types
		// are not errors. We should revisit how we process this case.
		return nil, fmt.Errorf("unknown entry type: %v", eType)
	}

	return &ret, nil
}

// ToLogEntry converts RawLogEntry to a LogEntry, which includes an x509-parsed
// (pre-)certificate.
//
// Note that this function may return a valid LogEntry object and a non-nil
// error value, when the error indicates a non-fatal parsing error.
func (rle *RawLogEntry) ToLogEntry() (*LogEntry, error) {
	var err error
	entry := LogEntry{Index: rle.Index, Leaf: rle.Leaf, Chain: rle.Chain}

	switch eType := rle.Leaf.TimestampedEntry.EntryType; eType {
	case X509LogEntryType:
		entry.X509Cert, err = rle.Leaf.X509Certificate()
		if x509.IsFatal(err) {
			return nil, fmt.Errorf("failed to parse certificate: %v", err)
		}

	case PrecertLogEntryType:
		var tbsCert *x509.Certificate
		tbsCert, err = rle.Leaf.Precertificate()
		if x509.IsFatal(err) {
			return nil, fmt.Errorf("failed to parse precertificate: %v", err)
		}
		entry.Precert = &Precertificate{
			Submitted:      rle.Cert,
			IssuerKeyHash:  rle.Leaf.TimestampedEntry.PrecertEntry.IssuerKeyHash,
			TBSCertificate: tbsCert,
		}

	default:
		return nil, fmt.Errorf("unknown entry type: %v", eType)
	}

	// err may be non-nil for a non-fatal error.
	return &entry, err
}

// LogEntryFromLeaf converts a LeafEntry object (which has the raw leaf data
// after JSON parsing) into a LogEntry object (which includes x509.Certificate
// objects, after TLS and ASN.1 parsing).
//
// Note that this function may return a valid LogEntry object and a non-nil
// error value, when the error indicates a non-fatal parsing error.
func LogEntryFromLeaf(index int64, leaf *LeafEntry) (*LogEntry, error) {
	rle, err := RawLogEntryFromLeaf(index, leaf)
	if err != nil {
		return nil, err
	}
	return rle.ToLogEntry()
}

// TimestampToTime converts a timestamp in the style of RFC 6962 (milliseconds
// since UNIX epoch) to a Go Time.
func TimestampToTime(ts uint64) time.Time {
	secs := int64(ts / 1000)
	msecs := int64(ts % 1000)
	return time.Unix(secs, msecs*1000000)
}