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1 // Copyright 2013 The Chromium Authors. All rights reserved. | 1 // Copyright 2013 The Chromium Authors. All rights reserved. |
2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
4 | 4 |
5 #include "net/cert/ct_serialization.h" | 5 #include "net/cert/ct_serialization.h" |
6 | 6 |
7 #include <string> | 7 #include <string> |
8 | 8 |
9 #include "base/files/file_path.h" | 9 #include "base/files/file_path.h" |
10 #include "base/files/file_util.h" | 10 #include "base/files/file_util.h" |
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72 digitally_signed.hash_algorithm = ct::DigitallySigned::HASH_ALGO_SHA256; | 72 digitally_signed.hash_algorithm = ct::DigitallySigned::HASH_ALGO_SHA256; |
73 digitally_signed.signature_algorithm = ct::DigitallySigned::SIG_ALGO_ECDSA; | 73 digitally_signed.signature_algorithm = ct::DigitallySigned::SIG_ALGO_ECDSA; |
74 digitally_signed.signature_data = test_digitally_signed_.substr(4); | 74 digitally_signed.signature_data = test_digitally_signed_.substr(4); |
75 | 75 |
76 std::string encoded; | 76 std::string encoded; |
77 | 77 |
78 ASSERT_TRUE(ct::EncodeDigitallySigned(digitally_signed, &encoded)); | 78 ASSERT_TRUE(ct::EncodeDigitallySigned(digitally_signed, &encoded)); |
79 EXPECT_EQ(test_digitally_signed_, encoded); | 79 EXPECT_EQ(test_digitally_signed_, encoded); |
80 } | 80 } |
81 | 81 |
82 | 82 TEST_F(CtSerializationTest, EncodesSignedEntryForX509Cert) { |
83 TEST_F(CtSerializationTest, EncodesLogEntryForX509Cert) { | 83 ct::SignedEntryData entry; |
84 ct::LogEntry entry; | 84 ct::GetX509CertSignedEntry(&entry); |
85 ct::GetX509CertLogEntry(&entry); | |
86 | 85 |
87 std::string encoded; | 86 std::string encoded; |
88 ASSERT_TRUE(ct::EncodeLogEntry(entry, &encoded)); | 87 ASSERT_TRUE(ct::EncodeSignedEntry(entry, &encoded)); |
89 EXPECT_EQ((718U + 5U), encoded.size()); | 88 EXPECT_EQ((718U + 5U), encoded.size()); |
90 // First two bytes are log entry type. Next, length: | 89 // First two bytes are log entry type. Next, length: |
91 // Length is 718 which is 512 + 206, which is 0x2ce | 90 // Length is 718 which is 512 + 206, which is 0x2ce |
92 std::string expected_prefix("\0\0\0\x2\xCE", 5); | 91 std::string expected_prefix("\0\0\0\x2\xCE", 5); |
93 // Note we use std::string comparison rather than ASSERT_STREQ due | 92 // Note we use std::string comparison rather than ASSERT_STREQ due |
94 // to null characters in the buffer. | 93 // to null characters in the buffer. |
95 EXPECT_EQ(expected_prefix, encoded.substr(0, 5)); | 94 EXPECT_EQ(expected_prefix, encoded.substr(0, 5)); |
96 } | 95 } |
97 | 96 |
98 TEST_F(CtSerializationTest, EncodesLogEntryForPrecert) { | 97 TEST_F(CtSerializationTest, EncodesSignedEntryForPrecert) { |
99 ct::LogEntry entry; | 98 ct::SignedEntryData entry; |
100 ct::GetPrecertLogEntry(&entry); | 99 ct::GetPrecertSignedEntry(&entry); |
101 | 100 |
102 std::string encoded; | 101 std::string encoded; |
103 ASSERT_TRUE(ct::EncodeLogEntry(entry, &encoded)); | 102 ASSERT_TRUE(ct::EncodeSignedEntry(entry, &encoded)); |
104 EXPECT_EQ(604u, encoded.size()); | 103 EXPECT_EQ(604u, encoded.size()); |
105 // First two bytes are the log entry type. | 104 // First two bytes are the log entry type. |
106 EXPECT_EQ(std::string("\x00\x01", 2), encoded.substr(0, 2)); | 105 EXPECT_EQ(std::string("\x00\x01", 2), encoded.substr(0, 2)); |
107 // Next comes the 32-byte issuer key hash | 106 // Next comes the 32-byte issuer key hash |
108 EXPECT_THAT(encoded.substr(2, 32), | 107 EXPECT_THAT(encoded.substr(2, 32), |
109 ElementsAreArray(entry.issuer_key_hash.data)); | 108 ElementsAreArray(entry.issuer_key_hash.data)); |
110 // Then the length of the TBS cert (604 bytes = 0x237) | 109 // Then the length of the TBS cert (604 bytes = 0x237) |
111 EXPECT_EQ(std::string("\x00\x02\x37", 3), encoded.substr(34, 3)); | 110 EXPECT_EQ(std::string("\x00\x02\x37", 3), encoded.substr(34, 3)); |
112 // Then the TBS cert itself | 111 // Then the TBS cert itself |
113 EXPECT_EQ(entry.tbs_certificate, encoded.substr(37)); | 112 EXPECT_EQ(entry.tbs_certificate, encoded.substr(37)); |
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196 "Version encoded incorrectly"; | 195 "Version encoded incorrectly"; |
197 EXPECT_EQ(std::string("\x00", 1), encoded.substr(1, 1)) << | 196 EXPECT_EQ(std::string("\x00", 1), encoded.substr(1, 1)) << |
198 "Merkle tree leaf type encoded incorrectly"; | 197 "Merkle tree leaf type encoded incorrectly"; |
199 EXPECT_EQ(std::string("\x00\x00\x01\x45\x3c\x5f\xb8\x35", 8), | 198 EXPECT_EQ(std::string("\x00\x00\x01\x45\x3c\x5f\xb8\x35", 8), |
200 encoded.substr(2, 8)) << | 199 encoded.substr(2, 8)) << |
201 "Timestamp encoded incorrectly"; | 200 "Timestamp encoded incorrectly"; |
202 EXPECT_EQ(std::string("\x00\x00", 2), encoded.substr(10, 2)) << | 201 EXPECT_EQ(std::string("\x00\x00", 2), encoded.substr(10, 2)) << |
203 "Log entry type encoded incorrectly"; | 202 "Log entry type encoded incorrectly"; |
204 EXPECT_EQ(std::string("\x00\x02\xce", 3), encoded.substr(12, 3)) << | 203 EXPECT_EQ(std::string("\x00\x02\xce", 3), encoded.substr(12, 3)) << |
205 "Certificate length encoded incorrectly"; | 204 "Certificate length encoded incorrectly"; |
206 EXPECT_EQ(tree_leaf.log_entry.leaf_certificate, encoded.substr(15, 718)) << | 205 EXPECT_EQ(tree_leaf.signed_entry.leaf_certificate, encoded.substr(15, 718)) |
207 "Certificate encoded incorrectly"; | 206 << "Certificate encoded incorrectly"; |
208 EXPECT_EQ(std::string("\x00\x06", 2), encoded.substr(733, 2)) << | 207 EXPECT_EQ(std::string("\x00\x06", 2), encoded.substr(733, 2)) << |
209 "CT extensions length encoded incorrectly"; | 208 "CT extensions length encoded incorrectly"; |
210 EXPECT_EQ(tree_leaf.extensions, encoded.substr(735, 6)) << | 209 EXPECT_EQ(tree_leaf.extensions, encoded.substr(735, 6)) << |
211 "CT extensions encoded incorrectly"; | 210 "CT extensions encoded incorrectly"; |
212 } | 211 } |
213 | 212 |
214 TEST_F(CtSerializationTest, EncodesMerkleTreeLeafForPrecert) { | 213 TEST_F(CtSerializationTest, EncodesMerkleTreeLeafForPrecert) { |
215 ct::MerkleTreeLeaf tree_leaf; | 214 ct::MerkleTreeLeaf tree_leaf; |
216 ct::GetPrecertTreeLeaf(&tree_leaf); | 215 ct::GetPrecertTreeLeaf(&tree_leaf); |
217 | 216 |
218 std::string encoded; | 217 std::string encoded; |
219 ASSERT_TRUE(ct::EncodeTreeLeaf(tree_leaf, &encoded)); | 218 ASSERT_TRUE(ct::EncodeTreeLeaf(tree_leaf, &encoded)); |
220 EXPECT_EQ(622u, encoded.size()) << "Merkle tree leaf encoded incorrectly"; | 219 EXPECT_EQ(622u, encoded.size()) << "Merkle tree leaf encoded incorrectly"; |
221 EXPECT_EQ(std::string("\x00", 1), encoded.substr(0, 1)) << | 220 EXPECT_EQ(std::string("\x00", 1), encoded.substr(0, 1)) << |
222 "Version encoded incorrectly"; | 221 "Version encoded incorrectly"; |
223 EXPECT_EQ(std::string("\x00", 1), encoded.substr(1, 1)) << | 222 EXPECT_EQ(std::string("\x00", 1), encoded.substr(1, 1)) << |
224 "Merkle tree leaf type encoded incorrectly"; | 223 "Merkle tree leaf type encoded incorrectly"; |
225 EXPECT_EQ(std::string("\x00\x00\x01\x45\x3c\x5f\xb8\x35", 8), | 224 EXPECT_EQ(std::string("\x00\x00\x01\x45\x3c\x5f\xb8\x35", 8), |
226 encoded.substr(2, 8)) << | 225 encoded.substr(2, 8)) << |
227 "Timestamp encoded incorrectly"; | 226 "Timestamp encoded incorrectly"; |
228 EXPECT_EQ(std::string("\x00\x01", 2), encoded.substr(10, 2)) << | 227 EXPECT_EQ(std::string("\x00\x01", 2), encoded.substr(10, 2)) << |
229 "Log entry type encoded incorrectly"; | 228 "Log entry type encoded incorrectly"; |
230 EXPECT_THAT(encoded.substr(12, 32), | 229 EXPECT_THAT(encoded.substr(12, 32), |
231 ElementsAreArray(tree_leaf.log_entry.issuer_key_hash.data)) << | 230 ElementsAreArray(tree_leaf.signed_entry.issuer_key_hash.data)) |
232 "Issuer key hash encoded incorrectly"; | 231 << "Issuer key hash encoded incorrectly"; |
233 EXPECT_EQ(std::string("\x00\x02\x37", 3), encoded.substr(44, 3)) << | 232 EXPECT_EQ(std::string("\x00\x02\x37", 3), encoded.substr(44, 3)) << |
234 "TBS certificate length encoded incorrectly"; | 233 "TBS certificate length encoded incorrectly"; |
235 EXPECT_EQ(tree_leaf.log_entry.tbs_certificate, encoded.substr(47, 567)) << | 234 EXPECT_EQ(tree_leaf.signed_entry.tbs_certificate, encoded.substr(47, 567)) |
236 "TBS certificate encoded incorrectly"; | 235 << "TBS certificate encoded incorrectly"; |
237 EXPECT_EQ(std::string("\x00\x06", 2), encoded.substr(614, 2)) << | 236 EXPECT_EQ(std::string("\x00\x06", 2), encoded.substr(614, 2)) << |
238 "CT extensions length encoded incorrectly"; | 237 "CT extensions length encoded incorrectly"; |
239 EXPECT_EQ(tree_leaf.extensions, encoded.substr(616, 6)) << | 238 EXPECT_EQ(tree_leaf.extensions, encoded.substr(616, 6)) << |
240 "CT extensions encoded incorrectly"; | 239 "CT extensions encoded incorrectly"; |
241 } | 240 } |
242 | 241 |
243 TEST_F(CtSerializationTest, EncodesValidSignedTreeHead) { | 242 TEST_F(CtSerializationTest, EncodesValidSignedTreeHead) { |
244 ct::SignedTreeHead signed_tree_head; | 243 ct::SignedTreeHead signed_tree_head; |
245 ASSERT_TRUE(GetSampleSignedTreeHead(&signed_tree_head)); | 244 ASSERT_TRUE(GetSampleSignedTreeHead(&signed_tree_head)); |
246 | 245 |
247 std::string encoded; | 246 std::string encoded; |
248 ct::EncodeTreeHeadSignature(signed_tree_head, &encoded); | 247 ct::EncodeTreeHeadSignature(signed_tree_head, &encoded); |
249 // Expected size is 50 bytes: | 248 // Expected size is 50 bytes: |
250 // Byte 0 is version, byte 1 is signature type | 249 // Byte 0 is version, byte 1 is signature type |
251 // Bytes 2-9 are timestamp | 250 // Bytes 2-9 are timestamp |
252 // Bytes 10-17 are tree size | 251 // Bytes 10-17 are tree size |
253 // Bytes 18-49 are sha256 root hash | 252 // Bytes 18-49 are sha256 root hash |
254 ASSERT_EQ(50u, encoded.length()); | 253 ASSERT_EQ(50u, encoded.length()); |
255 std::string expected_buffer( | 254 std::string expected_buffer( |
256 "\x0\x1\x0\x0\x1\x45\x3c\x5f\xb8\x35\x0\x0\x0\x0\x0\x0\x0\x15", 18); | 255 "\x0\x1\x0\x0\x1\x45\x3c\x5f\xb8\x35\x0\x0\x0\x0\x0\x0\x0\x15", 18); |
257 expected_buffer.append(ct::GetSampleSTHSHA256RootHash()); | 256 expected_buffer.append(ct::GetSampleSTHSHA256RootHash()); |
258 ASSERT_EQ(expected_buffer, encoded); | 257 ASSERT_EQ(expected_buffer, encoded); |
259 } | 258 } |
260 | 259 |
261 } // namespace net | 260 } // namespace net |
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