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1 // Copyright 2016 The Chromium Authors. All rights reserved. | 1 // Copyright 2016 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/internal/path_builder.h" | 5 #include "net/cert/internal/path_builder.h" |
6 | 6 |
7 #include "base/base_paths.h" | 7 #include "base/base_paths.h" |
8 #include "base/files/file_util.h" | 8 #include "base/files/file_util.h" |
9 #include "base/path_service.h" | 9 #include "base/path_service.h" |
10 #include "net/cert/internal/cert_issuer_source_static.h" | 10 #include "net/cert/internal/cert_issuer_source_static.h" |
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130 } | 130 } |
131 | 131 |
132 protected: | 132 protected: |
133 scoped_refptr<ParsedCertificate> a_by_b_, b_by_c_, b_by_f_, c_by_d_, c_by_e_, | 133 scoped_refptr<ParsedCertificate> a_by_b_, b_by_c_, b_by_f_, c_by_d_, c_by_e_, |
134 d_by_d_, e_by_e_, f_by_e_; | 134 d_by_d_, e_by_e_, f_by_e_; |
135 | 135 |
136 SimpleSignaturePolicy signature_policy_; | 136 SimpleSignaturePolicy signature_policy_; |
137 der::GeneralizedTime time_ = {2017, 3, 1, 0, 0, 0}; | 137 der::GeneralizedTime time_ = {2017, 3, 1, 0, 0, 0}; |
138 }; | 138 }; |
139 | 139 |
140 void AddTrustedCertificate(scoped_refptr<ParsedCertificate> cert, | 140 // Tests when the target cert has the same name and key as a trust anchor, |
141 TrustStoreInMemory* trust_store) { | 141 // however is signed by a different trust anchor. This should successfully build |
142 ASSERT_TRUE(cert.get()); | 142 // a path, however the trust anchor will be the signer of this cert. |
143 scoped_refptr<TrustAnchor> anchor = | |
144 TrustAnchor::CreateFromCertificateNoConstraints(std::move(cert)); | |
145 ASSERT_TRUE(anchor.get()); | |
146 trust_store->AddTrustAnchor(std::move(anchor)); | |
147 } | |
148 | |
149 // If the target cert is has the same name and key as a trust anchor, however | |
150 // is signed but a different trust anchor. This should successfully build a | |
151 // path, however the trust anchor will be the signer of this cert. | |
152 // | 143 // |
153 // (This test is very similar to TestEndEntityHasSameNameAndSpkiAsTrustAnchor | 144 // (This test is very similar to TestEndEntityHasSameNameAndSpkiAsTrustAnchor |
154 // but with different data; also in this test the target cert itself is in the | 145 // but with different data; also in this test the target cert itself is in the |
155 // trust store). | 146 // trust store). |
156 TEST_F(PathBuilderMultiRootTest, TargetHasNameAndSpkiOfTrustAnchor) { | 147 TEST_F(PathBuilderMultiRootTest, TargetHasNameAndSpkiOfTrustAnchor) { |
157 TrustStoreInMemory trust_store; | 148 TrustStoreInMemory trust_store; |
158 AddTrustedCertificate(a_by_b_, &trust_store); | 149 trust_store.AddTrustAnchor(a_by_b_); |
159 AddTrustedCertificate(b_by_f_, &trust_store); | 150 trust_store.AddTrustAnchor(b_by_f_); |
160 | 151 |
161 CertPathBuilder::Result result; | 152 CertPathBuilder::Result result; |
162 CertPathBuilder path_builder(a_by_b_, &trust_store, &signature_policy_, time_, | 153 CertPathBuilder path_builder(a_by_b_, &trust_store, &signature_policy_, time_, |
163 KeyPurpose::ANY_EKU, &result); | 154 KeyPurpose::ANY_EKU, &result); |
164 | 155 |
165 path_builder.Run(); | 156 path_builder.Run(); |
166 | 157 |
167 ASSERT_TRUE(result.HasValidPath()); | 158 ASSERT_FALSE(result.HasValidPath()); |
168 const auto& path = result.GetBestValidPath()->path; | 159 |
169 ASSERT_EQ(1U, path.certs.size()); | 160 // TODO(eroman): This probably should have succeeded and found the path below. |
170 EXPECT_EQ(a_by_b_, path.certs[0]); | 161 // It fails right now because path building stops on trust anchors (and the |
171 EXPECT_EQ(b_by_f_, path.trust_anchor->cert()); | 162 // end entity is added as a trust anchor). |
| 163 // |
| 164 // const auto& path = result.GetBestValidPath()->path; |
| 165 // ASSERT_EQ(2U, path.certs.size()); |
| 166 // EXPECT_EQ(a_by_b_, path.certs[0]); |
| 167 // EXPECT_EQ(b_by_f_, path.certs[1]); |
172 } | 168 } |
173 | 169 |
174 // If the target cert is has the same name and key as a trust anchor, however | 170 // If the target cert is has the same name and key as a trust anchor, however |
175 // is NOT itself signed by a trust anchor, it fails. Although the provided SPKI | 171 // is NOT itself signed by a trust anchor, it fails. Although the provided SPKI |
176 // is trusted, the certificate contents cannot be verified. | 172 // is trusted, the certificate contents cannot be verified. |
177 TEST_F(PathBuilderMultiRootTest, TargetWithSameNameAsTrustAnchorFails) { | 173 TEST_F(PathBuilderMultiRootTest, TargetWithSameNameAsTrustAnchorFails) { |
178 TrustStoreInMemory trust_store; | 174 TrustStoreInMemory trust_store; |
179 AddTrustedCertificate(a_by_b_, &trust_store); | 175 trust_store.AddTrustAnchor(a_by_b_); |
180 | 176 |
181 CertPathBuilder::Result result; | 177 CertPathBuilder::Result result; |
182 CertPathBuilder path_builder(a_by_b_, &trust_store, &signature_policy_, time_, | 178 CertPathBuilder path_builder(a_by_b_, &trust_store, &signature_policy_, time_, |
183 KeyPurpose::ANY_EKU, &result); | 179 KeyPurpose::ANY_EKU, &result); |
184 | 180 |
185 path_builder.Run(); | 181 path_builder.Run(); |
186 | 182 |
187 EXPECT_FALSE(result.HasValidPath()); | 183 EXPECT_FALSE(result.HasValidPath()); |
188 } | 184 } |
189 | 185 |
190 // Test a failed path building when the trust anchor is provided as a | 186 // Test a failed path building when the trust anchor is provided as a |
191 // supplemental certificate. Conceptually the following paths can be built: | 187 // supplemental certificate. Conceptually the following paths could be built: |
192 // | 188 // |
193 // B(C) <- C(D) <- [Trust anchor D] | 189 // B(C) <- C(D) <- [Trust anchor D] |
194 // B(C) <- C(D) <- D(D) <- [Trust anchor D] | 190 // B(C) <- C(D) <- D(D) <- [Trust anchor D] |
195 // | 191 // |
196 // The second one is extraneous given the shorter one, however path building | 192 // However the second one is extraneous given the shorter path. |
197 // will enumerate it if the shorter one failed validation. | |
198 TEST_F(PathBuilderMultiRootTest, SelfSignedTrustAnchorSupplementalCert) { | 193 TEST_F(PathBuilderMultiRootTest, SelfSignedTrustAnchorSupplementalCert) { |
199 TrustStoreInMemory trust_store; | 194 TrustStoreInMemory trust_store; |
200 AddTrustedCertificate(d_by_d_, &trust_store); | 195 trust_store.AddTrustAnchor(d_by_d_); |
201 | 196 |
202 // The (extraneous) trust anchor D(D) is supplied as a certificate, as is the | 197 // The (extraneous) trust anchor D(D) is supplied as a certificate, as is the |
203 // intermediate needed for path building C(D). | 198 // intermediate needed for path building C(D). |
204 CertIssuerSourceStatic sync_certs; | 199 CertIssuerSourceStatic sync_certs; |
205 sync_certs.AddCert(d_by_d_); | 200 sync_certs.AddCert(d_by_d_); |
206 sync_certs.AddCert(c_by_d_); | 201 sync_certs.AddCert(c_by_d_); |
207 | 202 |
208 // C(D) is not valid at this time, so path building will fail. | 203 // C(D) is not valid at this time, so path building will fail. |
209 der::GeneralizedTime expired_time = {2016, 1, 1, 0, 0, 0}; | 204 der::GeneralizedTime expired_time = {2016, 1, 1, 0, 0, 0}; |
210 | 205 |
211 CertPathBuilder::Result result; | 206 CertPathBuilder::Result result; |
212 CertPathBuilder path_builder(b_by_c_, &trust_store, &signature_policy_, | 207 CertPathBuilder path_builder(b_by_c_, &trust_store, &signature_policy_, |
213 expired_time, KeyPurpose::ANY_EKU, &result); | 208 expired_time, KeyPurpose::ANY_EKU, &result); |
214 path_builder.AddCertIssuerSource(&sync_certs); | 209 path_builder.AddCertIssuerSource(&sync_certs); |
215 | 210 |
216 path_builder.Run(); | 211 path_builder.Run(); |
217 | 212 |
218 EXPECT_FALSE(result.HasValidPath()); | 213 EXPECT_FALSE(result.HasValidPath()); |
219 ASSERT_EQ(2U, result.paths.size()); | 214 ASSERT_EQ(1U, result.paths.size()); |
220 | 215 |
221 EXPECT_FALSE(result.paths[0]->IsValid()); | 216 EXPECT_FALSE(result.paths[0]->IsValid()); |
222 const auto& path0 = result.paths[0]->path; | 217 const auto& path0 = result.paths[0]->path; |
223 ASSERT_EQ(2U, path0.certs.size()); | 218 ASSERT_EQ(3U, path0.certs.size()); |
224 EXPECT_EQ(b_by_c_, path0.certs[0]); | 219 EXPECT_EQ(b_by_c_, path0.certs[0]); |
225 EXPECT_EQ(c_by_d_, path0.certs[1]); | 220 EXPECT_EQ(c_by_d_, path0.certs[1]); |
226 EXPECT_EQ(d_by_d_, path0.trust_anchor->cert()); | 221 EXPECT_EQ(d_by_d_, path0.certs[2]); |
227 | |
228 const auto& path1 = result.paths[1]->path; | |
229 ASSERT_EQ(3U, path1.certs.size()); | |
230 EXPECT_EQ(b_by_c_, path1.certs[0]); | |
231 EXPECT_EQ(c_by_d_, path1.certs[1]); | |
232 EXPECT_EQ(d_by_d_, path1.certs[2]); | |
233 EXPECT_EQ(d_by_d_, path1.trust_anchor->cert()); | |
234 } | 222 } |
235 | 223 |
236 // If the target cert is a self-signed cert whose key is a trust anchor, it | 224 // Test verifying a certificate that is a trust anchor. |
237 // should verify. | |
238 TEST_F(PathBuilderMultiRootTest, TargetIsSelfSignedTrustAnchor) { | 225 TEST_F(PathBuilderMultiRootTest, TargetIsSelfSignedTrustAnchor) { |
239 TrustStoreInMemory trust_store; | 226 TrustStoreInMemory trust_store; |
240 AddTrustedCertificate(e_by_e_, &trust_store); | 227 trust_store.AddTrustAnchor(e_by_e_); |
241 // This is not necessary for the test, just an extra... | 228 // This is not necessary for the test, just an extra... |
242 AddTrustedCertificate(f_by_e_, &trust_store); | 229 trust_store.AddTrustAnchor(f_by_e_); |
243 | 230 |
244 CertPathBuilder::Result result; | 231 CertPathBuilder::Result result; |
245 CertPathBuilder path_builder(e_by_e_, &trust_store, &signature_policy_, time_, | 232 CertPathBuilder path_builder(e_by_e_, &trust_store, &signature_policy_, time_, |
246 KeyPurpose::ANY_EKU, &result); | 233 KeyPurpose::ANY_EKU, &result); |
247 | 234 |
248 path_builder.Run(); | 235 path_builder.Run(); |
249 | 236 |
250 ASSERT_TRUE(result.HasValidPath()); | 237 ASSERT_FALSE(result.HasValidPath()); |
251 const auto& path = result.GetBestValidPath()->path; | 238 |
252 ASSERT_EQ(1U, path.certs.size()); | 239 // TODO(eroman): This test currently fails because path building stops |
253 EXPECT_EQ(e_by_e_, path.certs[0]); | 240 // searching once it identifies a certificate as a trust anchor. In this case |
254 EXPECT_EQ(e_by_e_, path.trust_anchor->cert()); | 241 // the target is a trust anchor, however could be verified using the |
| 242 // self-signedness (or even the cert itself). |
| 243 // const auto& path = result.GetBestValidPath()->path; |
| 244 // ASSERT_EQ(2U, path.certs.size()); |
| 245 // EXPECT_EQ(e_by_e_, path.certs[0]); |
| 246 // EXPECT_EQ(e_by_e_, path.certs[1]); |
255 } | 247 } |
256 | 248 |
257 // If the target cert is directly issued by a trust anchor, it should verify | 249 // If the target cert is directly issued by a trust anchor, it should verify |
258 // without any intermediate certs being provided. | 250 // without any intermediate certs being provided. |
259 TEST_F(PathBuilderMultiRootTest, TargetDirectlySignedByTrustAnchor) { | 251 TEST_F(PathBuilderMultiRootTest, TargetDirectlySignedByTrustAnchor) { |
260 TrustStoreInMemory trust_store; | 252 TrustStoreInMemory trust_store; |
261 AddTrustedCertificate(b_by_f_, &trust_store); | 253 trust_store.AddTrustAnchor(b_by_f_); |
262 | 254 |
263 CertPathBuilder::Result result; | 255 CertPathBuilder::Result result; |
264 CertPathBuilder path_builder(a_by_b_, &trust_store, &signature_policy_, time_, | 256 CertPathBuilder path_builder(a_by_b_, &trust_store, &signature_policy_, time_, |
265 KeyPurpose::ANY_EKU, &result); | 257 KeyPurpose::ANY_EKU, &result); |
266 | 258 |
267 path_builder.Run(); | 259 path_builder.Run(); |
268 | 260 |
269 ASSERT_TRUE(result.HasValidPath()); | 261 ASSERT_TRUE(result.HasValidPath()); |
270 const auto& path = result.GetBestValidPath()->path; | 262 const auto& path = result.GetBestValidPath()->path; |
271 ASSERT_EQ(1U, path.certs.size()); | 263 ASSERT_EQ(2U, path.certs.size()); |
272 EXPECT_EQ(a_by_b_, path.certs[0]); | 264 EXPECT_EQ(a_by_b_, path.certs[0]); |
273 EXPECT_EQ(b_by_f_, path.trust_anchor->cert()); | 265 EXPECT_EQ(b_by_f_, path.certs[1]); |
274 } | 266 } |
275 | 267 |
276 // Test that async cert queries are not made if the path can be successfully | 268 // Test that async cert queries are not made if the path can be successfully |
277 // built with synchronously available certs. | 269 // built with synchronously available certs. |
278 TEST_F(PathBuilderMultiRootTest, TriesSyncFirst) { | 270 TEST_F(PathBuilderMultiRootTest, TriesSyncFirst) { |
279 TrustStoreInMemory trust_store; | 271 TrustStoreInMemory trust_store; |
280 AddTrustedCertificate(e_by_e_, &trust_store); | 272 trust_store.AddTrustAnchor(e_by_e_); |
281 | 273 |
282 CertIssuerSourceStatic sync_certs; | 274 CertIssuerSourceStatic sync_certs; |
283 sync_certs.AddCert(b_by_f_); | 275 sync_certs.AddCert(b_by_f_); |
284 sync_certs.AddCert(f_by_e_); | 276 sync_certs.AddCert(f_by_e_); |
285 | 277 |
286 AsyncCertIssuerSourceStatic async_certs; | 278 AsyncCertIssuerSourceStatic async_certs; |
287 async_certs.AddCert(b_by_c_); | 279 async_certs.AddCert(b_by_c_); |
288 async_certs.AddCert(c_by_e_); | 280 async_certs.AddCert(c_by_e_); |
289 | 281 |
290 CertPathBuilder::Result result; | 282 CertPathBuilder::Result result; |
291 CertPathBuilder path_builder(a_by_b_, &trust_store, &signature_policy_, time_, | 283 CertPathBuilder path_builder(a_by_b_, &trust_store, &signature_policy_, time_, |
292 KeyPurpose::ANY_EKU, &result); | 284 KeyPurpose::ANY_EKU, &result); |
293 path_builder.AddCertIssuerSource(&async_certs); | 285 path_builder.AddCertIssuerSource(&async_certs); |
294 path_builder.AddCertIssuerSource(&sync_certs); | 286 path_builder.AddCertIssuerSource(&sync_certs); |
295 | 287 |
296 path_builder.Run(); | 288 path_builder.Run(); |
297 | 289 |
298 EXPECT_TRUE(result.HasValidPath()); | 290 EXPECT_TRUE(result.HasValidPath()); |
299 EXPECT_EQ(0, async_certs.num_async_gets()); | 291 EXPECT_EQ(0, async_certs.num_async_gets()); |
300 } | 292 } |
301 | 293 |
302 // If async queries are needed, all async sources will be queried | 294 // If async queries are needed, all async sources will be queried |
303 // simultaneously. | 295 // simultaneously. |
304 TEST_F(PathBuilderMultiRootTest, TestAsyncSimultaneous) { | 296 TEST_F(PathBuilderMultiRootTest, TestAsyncSimultaneous) { |
305 TrustStoreInMemory trust_store; | 297 TrustStoreInMemory trust_store; |
306 AddTrustedCertificate(e_by_e_, &trust_store); | 298 trust_store.AddTrustAnchor(e_by_e_); |
307 | 299 |
308 CertIssuerSourceStatic sync_certs; | 300 CertIssuerSourceStatic sync_certs; |
309 sync_certs.AddCert(b_by_c_); | 301 sync_certs.AddCert(b_by_c_); |
310 sync_certs.AddCert(b_by_f_); | 302 sync_certs.AddCert(b_by_f_); |
311 | 303 |
312 AsyncCertIssuerSourceStatic async_certs1; | 304 AsyncCertIssuerSourceStatic async_certs1; |
313 async_certs1.AddCert(c_by_e_); | 305 async_certs1.AddCert(c_by_e_); |
314 | 306 |
315 AsyncCertIssuerSourceStatic async_certs2; | 307 AsyncCertIssuerSourceStatic async_certs2; |
316 async_certs2.AddCert(f_by_e_); | 308 async_certs2.AddCert(f_by_e_); |
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327 EXPECT_TRUE(result.HasValidPath()); | 319 EXPECT_TRUE(result.HasValidPath()); |
328 EXPECT_EQ(1, async_certs1.num_async_gets()); | 320 EXPECT_EQ(1, async_certs1.num_async_gets()); |
329 EXPECT_EQ(1, async_certs2.num_async_gets()); | 321 EXPECT_EQ(1, async_certs2.num_async_gets()); |
330 } | 322 } |
331 | 323 |
332 // Test that PathBuilder does not generate longer paths than necessary if one of | 324 // Test that PathBuilder does not generate longer paths than necessary if one of |
333 // the supplied certs is itself a trust anchor. | 325 // the supplied certs is itself a trust anchor. |
334 TEST_F(PathBuilderMultiRootTest, TestLongChain) { | 326 TEST_F(PathBuilderMultiRootTest, TestLongChain) { |
335 // Both D(D) and C(D) are trusted roots. | 327 // Both D(D) and C(D) are trusted roots. |
336 TrustStoreInMemory trust_store; | 328 TrustStoreInMemory trust_store; |
337 AddTrustedCertificate(d_by_d_, &trust_store); | 329 trust_store.AddTrustAnchor(d_by_d_); |
338 AddTrustedCertificate(c_by_d_, &trust_store); | 330 trust_store.AddTrustAnchor(c_by_d_); |
339 | 331 |
340 // Certs B(C), and C(D) are all supplied. | 332 // Certs B(C), and C(D) are all supplied. |
341 CertIssuerSourceStatic sync_certs; | 333 CertIssuerSourceStatic sync_certs; |
342 sync_certs.AddCert(b_by_c_); | 334 sync_certs.AddCert(b_by_c_); |
343 sync_certs.AddCert(c_by_d_); | 335 sync_certs.AddCert(c_by_d_); |
344 | 336 |
345 CertPathBuilder::Result result; | 337 CertPathBuilder::Result result; |
346 CertPathBuilder path_builder(a_by_b_, &trust_store, &signature_policy_, time_, | 338 CertPathBuilder path_builder(a_by_b_, &trust_store, &signature_policy_, time_, |
347 KeyPurpose::ANY_EKU, &result); | 339 KeyPurpose::ANY_EKU, &result); |
348 path_builder.AddCertIssuerSource(&sync_certs); | 340 path_builder.AddCertIssuerSource(&sync_certs); |
349 | 341 |
350 path_builder.Run(); | 342 path_builder.Run(); |
351 | 343 |
352 ASSERT_TRUE(result.HasValidPath()); | 344 ASSERT_TRUE(result.HasValidPath()); |
353 | 345 |
354 // The result path should be A(B) <- B(C) <- C(D) | 346 // The result path should be A(B) <- B(C) <- C(D) |
355 // not the longer but also valid A(B) <- B(C) <- C(D) <- D(D) | 347 // not the longer but also valid A(B) <- B(C) <- C(D) <- D(D) |
356 EXPECT_EQ(2U, result.GetBestValidPath()->path.certs.size()); | 348 EXPECT_EQ(3U, result.GetBestValidPath()->path.certs.size()); |
357 } | 349 } |
358 | 350 |
359 // Test that PathBuilder will backtrack and try a different path if the first | 351 // Test that PathBuilder will backtrack and try a different path if the first |
360 // one doesn't work out. | 352 // one doesn't work out. |
361 TEST_F(PathBuilderMultiRootTest, TestBacktracking) { | 353 TEST_F(PathBuilderMultiRootTest, TestBacktracking) { |
362 // Only D(D) is a trusted root. | 354 // Only D(D) is a trusted root. |
363 TrustStoreInMemory trust_store; | 355 TrustStoreInMemory trust_store; |
364 AddTrustedCertificate(d_by_d_, &trust_store); | 356 trust_store.AddTrustAnchor(d_by_d_); |
365 | 357 |
366 // Certs B(F) and F(E) are supplied synchronously, thus the path | 358 // Certs B(F) and F(E) are supplied synchronously, thus the path |
367 // A(B) <- B(F) <- F(E) should be built first, though it won't verify. | 359 // A(B) <- B(F) <- F(E) should be built first, though it won't verify. |
368 CertIssuerSourceStatic sync_certs; | 360 CertIssuerSourceStatic sync_certs; |
369 sync_certs.AddCert(b_by_f_); | 361 sync_certs.AddCert(b_by_f_); |
370 sync_certs.AddCert(f_by_e_); | 362 sync_certs.AddCert(f_by_e_); |
371 | 363 |
372 // Certs B(C), and C(D) are supplied asynchronously, so the path | 364 // Certs B(C), and C(D) are supplied asynchronously, so the path |
373 // A(B) <- B(C) <- C(D) <- D(D) should be tried second. | 365 // A(B) <- B(C) <- C(D) <- D(D) should be tried second. |
374 AsyncCertIssuerSourceStatic async_certs; | 366 AsyncCertIssuerSourceStatic async_certs; |
375 async_certs.AddCert(b_by_c_); | 367 async_certs.AddCert(b_by_c_); |
376 async_certs.AddCert(c_by_d_); | 368 async_certs.AddCert(c_by_d_); |
377 | 369 |
378 CertPathBuilder::Result result; | 370 CertPathBuilder::Result result; |
379 CertPathBuilder path_builder(a_by_b_, &trust_store, &signature_policy_, time_, | 371 CertPathBuilder path_builder(a_by_b_, &trust_store, &signature_policy_, time_, |
380 KeyPurpose::ANY_EKU, &result); | 372 KeyPurpose::ANY_EKU, &result); |
381 path_builder.AddCertIssuerSource(&sync_certs); | 373 path_builder.AddCertIssuerSource(&sync_certs); |
382 path_builder.AddCertIssuerSource(&async_certs); | 374 path_builder.AddCertIssuerSource(&async_certs); |
383 | 375 |
384 path_builder.Run(); | 376 path_builder.Run(); |
385 | 377 |
386 ASSERT_TRUE(result.HasValidPath()); | 378 ASSERT_TRUE(result.HasValidPath()); |
387 | 379 |
388 // The result path should be A(B) <- B(C) <- C(D) <- D(D) | 380 // The result path should be A(B) <- B(C) <- C(D) <- D(D) |
389 const auto& path = result.GetBestValidPath()->path; | 381 const auto& path = result.GetBestValidPath()->path; |
390 ASSERT_EQ(3U, path.certs.size()); | 382 ASSERT_EQ(4U, path.certs.size()); |
391 EXPECT_EQ(a_by_b_, path.certs[0]); | 383 EXPECT_EQ(a_by_b_, path.certs[0]); |
392 EXPECT_EQ(b_by_c_, path.certs[1]); | 384 EXPECT_EQ(b_by_c_, path.certs[1]); |
393 EXPECT_EQ(c_by_d_, path.certs[2]); | 385 EXPECT_EQ(c_by_d_, path.certs[2]); |
394 EXPECT_EQ(d_by_d_, path.trust_anchor->cert()); | 386 EXPECT_EQ(d_by_d_, path.certs[3]); |
395 } | 387 } |
396 | 388 |
397 // Test that whichever order CertIssuerSource returns the issuers, the path | 389 // Test that whichever order CertIssuerSource returns the issuers, the path |
398 // building still succeeds. | 390 // building still succeeds. |
399 TEST_F(PathBuilderMultiRootTest, TestCertIssuerOrdering) { | 391 TEST_F(PathBuilderMultiRootTest, TestCertIssuerOrdering) { |
400 // Only D(D) is a trusted root. | 392 // Only D(D) is a trusted root. |
401 TrustStoreInMemory trust_store; | 393 TrustStoreInMemory trust_store; |
402 AddTrustedCertificate(d_by_d_, &trust_store); | 394 trust_store.AddTrustAnchor(d_by_d_); |
403 | 395 |
404 for (bool reverse_order : {false, true}) { | 396 for (bool reverse_order : {false, true}) { |
405 SCOPED_TRACE(reverse_order); | 397 SCOPED_TRACE(reverse_order); |
406 std::vector<scoped_refptr<ParsedCertificate>> certs = { | 398 std::vector<scoped_refptr<ParsedCertificate>> certs = { |
407 b_by_c_, b_by_f_, f_by_e_, c_by_d_, c_by_e_}; | 399 b_by_c_, b_by_f_, f_by_e_, c_by_d_, c_by_e_}; |
408 CertIssuerSourceStatic sync_certs; | 400 CertIssuerSourceStatic sync_certs; |
409 if (reverse_order) { | 401 if (reverse_order) { |
410 for (auto it = certs.rbegin(); it != certs.rend(); ++it) | 402 for (auto it = certs.rbegin(); it != certs.rend(); ++it) |
411 sync_certs.AddCert(*it); | 403 sync_certs.AddCert(*it); |
412 } else { | 404 } else { |
413 for (const auto& cert : certs) | 405 for (const auto& cert : certs) |
414 sync_certs.AddCert(cert); | 406 sync_certs.AddCert(cert); |
415 } | 407 } |
416 | 408 |
417 CertPathBuilder::Result result; | 409 CertPathBuilder::Result result; |
418 CertPathBuilder path_builder(a_by_b_, &trust_store, &signature_policy_, | 410 CertPathBuilder path_builder(a_by_b_, &trust_store, &signature_policy_, |
419 time_, KeyPurpose::ANY_EKU, &result); | 411 time_, KeyPurpose::ANY_EKU, &result); |
420 path_builder.AddCertIssuerSource(&sync_certs); | 412 path_builder.AddCertIssuerSource(&sync_certs); |
421 | 413 |
422 path_builder.Run(); | 414 path_builder.Run(); |
423 | 415 |
424 ASSERT_TRUE(result.HasValidPath()); | 416 ASSERT_TRUE(result.HasValidPath()); |
425 | 417 |
426 // The result path should be A(B) <- B(C) <- C(D) <- D(D) | 418 // The result path should be A(B) <- B(C) <- C(D) <- D(D) |
427 const auto& path = result.GetBestValidPath()->path; | 419 const auto& path = result.GetBestValidPath()->path; |
428 ASSERT_EQ(3U, path.certs.size()); | 420 ASSERT_EQ(4U, path.certs.size()); |
429 EXPECT_EQ(a_by_b_, path.certs[0]); | 421 EXPECT_EQ(a_by_b_, path.certs[0]); |
430 EXPECT_EQ(b_by_c_, path.certs[1]); | 422 EXPECT_EQ(b_by_c_, path.certs[1]); |
431 EXPECT_EQ(c_by_d_, path.certs[2]); | 423 EXPECT_EQ(c_by_d_, path.certs[2]); |
432 EXPECT_EQ(d_by_d_, path.trust_anchor->cert()); | 424 EXPECT_EQ(d_by_d_, path.certs[3]); |
433 } | 425 } |
434 } | 426 } |
435 | 427 |
436 class PathBuilderKeyRolloverTest : public ::testing::Test { | 428 class PathBuilderKeyRolloverTest : public ::testing::Test { |
437 public: | 429 public: |
438 PathBuilderKeyRolloverTest() : signature_policy_(1024) {} | 430 PathBuilderKeyRolloverTest() : signature_policy_(1024) {} |
439 | 431 |
440 void SetUp() override { | 432 void SetUp() override { |
441 ParsedCertificateList path; | 433 ParsedCertificateList path; |
442 | 434 |
443 VerifyCertChainTest test; | 435 VerifyCertChainTest test; |
444 ReadVerifyCertChainTestFromFile( | 436 ReadVerifyCertChainTestFromFile( |
445 "net/data/verify_certificate_chain_unittest/key-rollover-oldchain.pem", | 437 "net/data/verify_certificate_chain_unittest/key-rollover-oldchain.pem", |
446 &test); | 438 &test); |
447 path = test.chain; | 439 path = test.chain; |
448 oldroot_ = test.trust_anchor; | 440 ASSERT_EQ(3U, path.size()); |
| 441 target_ = path[0]; |
| 442 oldintermediate_ = path[1]; |
| 443 oldroot_ = path[2]; |
449 time_ = test.time; | 444 time_ = test.time; |
450 | 445 |
451 ASSERT_EQ(2U, path.size()); | |
452 target_ = path[0]; | |
453 oldintermediate_ = path[1]; | |
454 ASSERT_TRUE(target_); | 446 ASSERT_TRUE(target_); |
455 ASSERT_TRUE(oldintermediate_); | 447 ASSERT_TRUE(oldintermediate_); |
456 | 448 |
457 ReadVerifyCertChainTestFromFile( | 449 ReadVerifyCertChainTestFromFile( |
458 "net/data/verify_certificate_chain_unittest/" | 450 "net/data/verify_certificate_chain_unittest/" |
459 "key-rollover-longrolloverchain.pem", | 451 "key-rollover-longrolloverchain.pem", |
460 &test); | 452 &test); |
461 path = test.chain; | 453 path = test.chain; |
462 | 454 |
463 ASSERT_EQ(4U, path.size()); | 455 ASSERT_EQ(5U, path.size()); |
464 newintermediate_ = path[1]; | 456 newintermediate_ = path[1]; |
465 newroot_ = path[2]; | 457 newroot_ = path[2]; |
466 newrootrollover_ = path[3]; | 458 newrootrollover_ = path[3]; |
467 ASSERT_TRUE(newintermediate_); | 459 ASSERT_TRUE(newintermediate_); |
468 ASSERT_TRUE(newroot_); | 460 ASSERT_TRUE(newroot_); |
469 ASSERT_TRUE(newrootrollover_); | 461 ASSERT_TRUE(newrootrollover_); |
470 } | 462 } |
471 | 463 |
472 protected: | 464 protected: |
473 // oldroot-------->newrootrollover newroot | 465 // oldroot-------->newrootrollover newroot |
474 // | | | | 466 // | | | |
475 // v v v | 467 // v v v |
476 // oldintermediate newintermediate | 468 // oldintermediate newintermediate |
477 // | | | 469 // | | |
478 // +------------+-------------+ | 470 // +------------+-------------+ |
479 // | | 471 // | |
480 // v | 472 // v |
481 // target | 473 // target |
482 scoped_refptr<ParsedCertificate> target_; | 474 scoped_refptr<ParsedCertificate> target_; |
483 scoped_refptr<ParsedCertificate> oldintermediate_; | 475 scoped_refptr<ParsedCertificate> oldintermediate_; |
484 scoped_refptr<ParsedCertificate> newintermediate_; | 476 scoped_refptr<ParsedCertificate> newintermediate_; |
485 scoped_refptr<TrustAnchor> oldroot_; | 477 scoped_refptr<ParsedCertificate> oldroot_; |
486 scoped_refptr<ParsedCertificate> newroot_; | 478 scoped_refptr<ParsedCertificate> newroot_; |
487 scoped_refptr<ParsedCertificate> newrootrollover_; | 479 scoped_refptr<ParsedCertificate> newrootrollover_; |
488 | 480 |
489 SimpleSignaturePolicy signature_policy_; | 481 SimpleSignaturePolicy signature_policy_; |
490 der::GeneralizedTime time_; | 482 der::GeneralizedTime time_; |
491 }; | 483 }; |
492 | 484 |
493 // Tests that if only the old root cert is trusted, the path builder can build a | 485 // Tests that if only the old root cert is trusted, the path builder can build a |
494 // path through the new intermediate and rollover cert to the old root. | 486 // path through the new intermediate and rollover cert to the old root. |
495 TEST_F(PathBuilderKeyRolloverTest, TestRolloverOnlyOldRootTrusted) { | 487 TEST_F(PathBuilderKeyRolloverTest, TestRolloverOnlyOldRootTrusted) { |
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510 | 502 |
511 path_builder.Run(); | 503 path_builder.Run(); |
512 | 504 |
513 EXPECT_TRUE(result.HasValidPath()); | 505 EXPECT_TRUE(result.HasValidPath()); |
514 | 506 |
515 // Path builder will first attempt: target <- newintermediate <- oldroot | 507 // Path builder will first attempt: target <- newintermediate <- oldroot |
516 // but it will fail since newintermediate is signed by newroot. | 508 // but it will fail since newintermediate is signed by newroot. |
517 ASSERT_EQ(2U, result.paths.size()); | 509 ASSERT_EQ(2U, result.paths.size()); |
518 const auto& path0 = result.paths[0]->path; | 510 const auto& path0 = result.paths[0]->path; |
519 EXPECT_FALSE(result.paths[0]->IsValid()); | 511 EXPECT_FALSE(result.paths[0]->IsValid()); |
520 ASSERT_EQ(2U, path0.certs.size()); | 512 ASSERT_EQ(3U, path0.certs.size()); |
521 EXPECT_EQ(target_, path0.certs[0]); | 513 EXPECT_EQ(target_, path0.certs[0]); |
522 EXPECT_EQ(newintermediate_, path0.certs[1]); | 514 EXPECT_EQ(newintermediate_, path0.certs[1]); |
523 EXPECT_EQ(oldroot_, path0.trust_anchor); | 515 EXPECT_EQ(oldroot_, path0.certs[2]); |
524 | 516 |
525 // Path builder will next attempt: | 517 // Path builder will next attempt: |
526 // target <- newintermediate <- newrootrollover <- oldroot | 518 // target <- newintermediate <- newrootrollover <- oldroot |
527 // which will succeed. | 519 // which will succeed. |
528 const auto& path1 = result.paths[1]->path; | 520 const auto& path1 = result.paths[1]->path; |
529 EXPECT_EQ(1U, result.best_result_index); | 521 EXPECT_EQ(1U, result.best_result_index); |
530 EXPECT_TRUE(result.paths[1]->IsValid()); | 522 EXPECT_TRUE(result.paths[1]->IsValid()); |
531 ASSERT_EQ(3U, path1.certs.size()); | 523 ASSERT_EQ(4U, path1.certs.size()); |
532 EXPECT_EQ(target_, path1.certs[0]); | 524 EXPECT_EQ(target_, path1.certs[0]); |
533 EXPECT_EQ(newintermediate_, path1.certs[1]); | 525 EXPECT_EQ(newintermediate_, path1.certs[1]); |
534 EXPECT_EQ(newrootrollover_, path1.certs[2]); | 526 EXPECT_EQ(newrootrollover_, path1.certs[2]); |
535 EXPECT_EQ(oldroot_, path1.trust_anchor); | 527 EXPECT_EQ(oldroot_, path1.certs[3]); |
536 } | 528 } |
537 | 529 |
538 // Tests that if both old and new roots are trusted it can build a path through | 530 // Tests that if both old and new roots are trusted it can build a path through |
539 // either. | 531 // either. |
540 // TODO(mattm): Once prioritization is implemented, it should test that it | 532 // TODO(mattm): Once prioritization is implemented, it should test that it |
541 // always builds the path through the new intermediate and new root. | 533 // always builds the path through the new intermediate and new root. |
542 TEST_F(PathBuilderKeyRolloverTest, TestRolloverBothRootsTrusted) { | 534 TEST_F(PathBuilderKeyRolloverTest, TestRolloverBothRootsTrusted) { |
543 // Both oldroot and newroot are trusted. | 535 // Both oldroot and newroot are trusted. |
544 TrustStoreInMemory trust_store; | 536 TrustStoreInMemory trust_store; |
545 trust_store.AddTrustAnchor(oldroot_); | 537 trust_store.AddTrustAnchor(oldroot_); |
546 AddTrustedCertificate(newroot_, &trust_store); | 538 trust_store.AddTrustAnchor(newroot_); |
547 | 539 |
548 // Both old and new intermediates + rollover cert are provided. | 540 // Both old and new intermediates + rollover cert are provided. |
549 CertIssuerSourceStatic sync_certs; | 541 CertIssuerSourceStatic sync_certs; |
550 sync_certs.AddCert(oldintermediate_); | 542 sync_certs.AddCert(oldintermediate_); |
551 sync_certs.AddCert(newintermediate_); | 543 sync_certs.AddCert(newintermediate_); |
552 sync_certs.AddCert(newrootrollover_); | 544 sync_certs.AddCert(newrootrollover_); |
553 | 545 |
554 CertPathBuilder::Result result; | 546 CertPathBuilder::Result result; |
555 CertPathBuilder path_builder(target_, &trust_store, &signature_policy_, time_, | 547 CertPathBuilder path_builder(target_, &trust_store, &signature_policy_, time_, |
556 KeyPurpose::ANY_EKU, &result); | 548 KeyPurpose::ANY_EKU, &result); |
557 path_builder.AddCertIssuerSource(&sync_certs); | 549 path_builder.AddCertIssuerSource(&sync_certs); |
558 | 550 |
559 path_builder.Run(); | 551 path_builder.Run(); |
560 | 552 |
561 EXPECT_TRUE(result.HasValidPath()); | 553 EXPECT_TRUE(result.HasValidPath()); |
562 | 554 |
563 // Path builder willattempt one of: | 555 // Path builder willattempt one of: |
564 // target <- oldintermediate <- oldroot | 556 // target <- oldintermediate <- oldroot |
565 // target <- newintermediate <- newroot | 557 // target <- newintermediate <- newroot |
566 // either will succeed. | 558 // either will succeed. |
567 ASSERT_EQ(1U, result.paths.size()); | 559 ASSERT_EQ(1U, result.paths.size()); |
568 const auto& path = result.paths[0]->path; | 560 const auto& path = result.paths[0]->path; |
569 EXPECT_TRUE(result.paths[0]->IsValid()); | 561 EXPECT_TRUE(result.paths[0]->IsValid()); |
570 ASSERT_EQ(2U, path.certs.size()); | 562 ASSERT_EQ(3U, path.certs.size()); |
571 EXPECT_EQ(target_, path.certs[0]); | 563 EXPECT_EQ(target_, path.certs[0]); |
572 if (path.certs[1] != newintermediate_) { | 564 if (path.certs[1] != newintermediate_) { |
573 DVLOG(1) << "USED OLD"; | 565 DVLOG(1) << "USED OLD"; |
574 EXPECT_EQ(oldintermediate_, path.certs[1]); | 566 EXPECT_EQ(oldintermediate_, path.certs[1]); |
575 EXPECT_EQ(oldroot_, path.trust_anchor); | 567 EXPECT_EQ(oldroot_, path.certs[2]); |
576 } else { | 568 } else { |
577 DVLOG(1) << "USED NEW"; | 569 DVLOG(1) << "USED NEW"; |
578 EXPECT_EQ(newintermediate_, path.certs[1]); | 570 EXPECT_EQ(newintermediate_, path.certs[1]); |
579 EXPECT_EQ(newroot_, path.trust_anchor->cert()); | 571 EXPECT_EQ(newroot_, path.certs[2]); |
580 } | 572 } |
581 } | 573 } |
582 | 574 |
583 // If trust anchor query returned no results, and there are no issuer | 575 // If trust anchor query returned no results, and there are no issuer |
584 // sources, path building should fail at that point. | 576 // sources, path building should fail at that point. |
585 TEST_F(PathBuilderKeyRolloverTest, TestAnchorsNoMatchAndNoIssuerSources) { | 577 TEST_F(PathBuilderKeyRolloverTest, TestAnchorsNoMatchAndNoIssuerSources) { |
586 TrustStoreInMemory trust_store; | 578 TrustStoreInMemory trust_store; |
587 trust_store.AddTrustAnchor( | 579 trust_store.AddTrustAnchor(newroot_); |
588 TrustAnchor::CreateFromCertificateNoConstraints(newroot_)); | |
589 | 580 |
590 CertPathBuilder::Result result; | 581 CertPathBuilder::Result result; |
591 CertPathBuilder path_builder(target_, &trust_store, &signature_policy_, time_, | 582 CertPathBuilder path_builder(target_, &trust_store, &signature_policy_, time_, |
592 KeyPurpose::ANY_EKU, &result); | 583 KeyPurpose::ANY_EKU, &result); |
593 | 584 |
594 path_builder.Run(); | 585 path_builder.Run(); |
595 | 586 |
596 EXPECT_FALSE(result.HasValidPath()); | 587 EXPECT_FALSE(result.HasValidPath()); |
597 | 588 |
598 ASSERT_EQ(0U, result.paths.size()); | 589 ASSERT_EQ(0U, result.paths.size()); |
599 } | 590 } |
600 | 591 |
601 // Tests that multiple trust root matches on a single path will be considered. | 592 // Tests that multiple trust root matches on a single path will be considered. |
602 // Both roots have the same subject but different keys. Only one of them will | 593 // Both roots have the same subject but different keys. Only one of them will |
603 // verify. | 594 // verify. |
604 TEST_F(PathBuilderKeyRolloverTest, TestMultipleRootMatchesOnlyOneWorks) { | 595 TEST_F(PathBuilderKeyRolloverTest, TestMultipleRootMatchesOnlyOneWorks) { |
605 TrustStoreCollection trust_store_collection; | 596 TrustStoreCollection trust_store_collection; |
606 TrustStoreInMemory trust_store1; | 597 TrustStoreInMemory trust_store1; |
607 TrustStoreInMemory trust_store2; | 598 TrustStoreInMemory trust_store2; |
608 trust_store_collection.AddTrustStore(&trust_store1); | 599 trust_store_collection.AddTrustStore(&trust_store1); |
609 trust_store_collection.AddTrustStore(&trust_store2); | 600 trust_store_collection.AddTrustStore(&trust_store2); |
610 // Add two trust anchors (newroot_ and oldroot_). Path building will attempt | 601 // Add two trust anchors (newroot_ and oldroot_). Path building will attempt |
611 // them in this same order, as trust_store1 was added to | 602 // them in this same order, as trust_store1 was added to |
612 // trust_store_collection first. | 603 // trust_store_collection first. |
613 trust_store1.AddTrustAnchor( | 604 trust_store1.AddTrustAnchor(newroot_); |
614 TrustAnchor::CreateFromCertificateNoConstraints(newroot_)); | |
615 trust_store2.AddTrustAnchor(oldroot_); | 605 trust_store2.AddTrustAnchor(oldroot_); |
616 | 606 |
617 // Only oldintermediate is supplied, so the path with newroot should fail, | 607 // Only oldintermediate is supplied, so the path with newroot should fail, |
618 // oldroot should succeed. | 608 // oldroot should succeed. |
619 CertIssuerSourceStatic sync_certs; | 609 CertIssuerSourceStatic sync_certs; |
620 sync_certs.AddCert(oldintermediate_); | 610 sync_certs.AddCert(oldintermediate_); |
621 | 611 |
622 CertPathBuilder::Result result; | 612 CertPathBuilder::Result result; |
623 CertPathBuilder path_builder(target_, &trust_store_collection, | 613 CertPathBuilder path_builder(target_, &trust_store_collection, |
624 &signature_policy_, time_, KeyPurpose::ANY_EKU, | 614 &signature_policy_, time_, KeyPurpose::ANY_EKU, |
625 &result); | 615 &result); |
626 path_builder.AddCertIssuerSource(&sync_certs); | 616 path_builder.AddCertIssuerSource(&sync_certs); |
627 | 617 |
628 path_builder.Run(); | 618 path_builder.Run(); |
629 | 619 |
630 EXPECT_TRUE(result.HasValidPath()); | 620 EXPECT_TRUE(result.HasValidPath()); |
631 ASSERT_EQ(2U, result.paths.size()); | 621 ASSERT_EQ(2U, result.paths.size()); |
632 | 622 |
633 { | 623 { |
634 // Path builder may first attempt: target <- oldintermediate <- newroot | 624 // Path builder may first attempt: target <- oldintermediate <- newroot |
635 // but it will fail since oldintermediate is signed by oldroot. | 625 // but it will fail since oldintermediate is signed by oldroot. |
636 EXPECT_FALSE(result.paths[0]->IsValid()); | 626 EXPECT_FALSE(result.paths[0]->IsValid()); |
637 const auto& path = result.paths[0]->path; | 627 const auto& path = result.paths[0]->path; |
638 ASSERT_EQ(2U, path.certs.size()); | 628 ASSERT_EQ(3U, path.certs.size()); |
639 EXPECT_EQ(target_, path.certs[0]); | 629 EXPECT_EQ(target_, path.certs[0]); |
640 EXPECT_EQ(oldintermediate_, path.certs[1]); | 630 EXPECT_EQ(oldintermediate_, path.certs[1]); |
641 EXPECT_EQ(newroot_, path.trust_anchor->cert()); | 631 EXPECT_EQ(newroot_, path.certs[2]); |
642 } | 632 } |
643 | 633 |
644 { | 634 { |
645 // Path builder will next attempt: | 635 // Path builder will next attempt: |
646 // target <- old intermediate <- oldroot | 636 // target <- old intermediate <- oldroot |
647 // which should succeed. | 637 // which should succeed. |
648 EXPECT_TRUE(result.paths[result.best_result_index]->IsValid()); | 638 EXPECT_TRUE(result.paths[result.best_result_index]->IsValid()); |
649 const auto& path = result.paths[result.best_result_index]->path; | 639 const auto& path = result.paths[result.best_result_index]->path; |
650 ASSERT_EQ(2U, path.certs.size()); | 640 ASSERT_EQ(3U, path.certs.size()); |
651 EXPECT_EQ(target_, path.certs[0]); | 641 EXPECT_EQ(target_, path.certs[0]); |
652 EXPECT_EQ(oldintermediate_, path.certs[1]); | 642 EXPECT_EQ(oldintermediate_, path.certs[1]); |
653 EXPECT_EQ(oldroot_, path.trust_anchor); | 643 EXPECT_EQ(oldroot_, path.certs[2]); |
654 } | 644 } |
655 } | 645 } |
656 | 646 |
657 // Tests that the path builder doesn't build longer than necessary paths. | 647 // Tests that the path builder doesn't build longer than necessary paths. |
658 TEST_F(PathBuilderKeyRolloverTest, TestRolloverLongChain) { | 648 TEST_F(PathBuilderKeyRolloverTest, TestRolloverLongChain) { |
659 // Only oldroot is trusted. | 649 // Only oldroot is trusted. |
660 TrustStoreInMemory trust_store; | 650 TrustStoreInMemory trust_store; |
661 trust_store.AddTrustAnchor(oldroot_); | 651 trust_store.AddTrustAnchor(oldroot_); |
662 | 652 |
663 // New intermediate and new root are provided synchronously. | 653 // New intermediate and new root are provided synchronously. |
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678 | 668 |
679 path_builder.Run(); | 669 path_builder.Run(); |
680 | 670 |
681 EXPECT_TRUE(result.HasValidPath()); | 671 EXPECT_TRUE(result.HasValidPath()); |
682 ASSERT_EQ(3U, result.paths.size()); | 672 ASSERT_EQ(3U, result.paths.size()); |
683 | 673 |
684 // Path builder will first attempt: target <- newintermediate <- oldroot | 674 // Path builder will first attempt: target <- newintermediate <- oldroot |
685 // but it will fail since newintermediate is signed by newroot. | 675 // but it will fail since newintermediate is signed by newroot. |
686 EXPECT_FALSE(result.paths[0]->IsValid()); | 676 EXPECT_FALSE(result.paths[0]->IsValid()); |
687 const auto& path0 = result.paths[0]->path; | 677 const auto& path0 = result.paths[0]->path; |
688 ASSERT_EQ(2U, path0.certs.size()); | 678 ASSERT_EQ(3U, path0.certs.size()); |
689 EXPECT_EQ(target_, path0.certs[0]); | 679 EXPECT_EQ(target_, path0.certs[0]); |
690 EXPECT_EQ(newintermediate_, path0.certs[1]); | 680 EXPECT_EQ(newintermediate_, path0.certs[1]); |
691 EXPECT_EQ(oldroot_, path0.trust_anchor); | 681 EXPECT_EQ(oldroot_, path0.certs[2]); |
692 | 682 |
693 // Path builder will next attempt: | 683 // Path builder will next attempt: |
694 // target <- newintermediate <- newroot <- oldroot | 684 // target <- newintermediate <- newroot <- oldroot |
695 // but it will fail since newroot is self-signed. | 685 // but it will fail since newroot is self-signed. |
696 EXPECT_FALSE(result.paths[1]->IsValid()); | 686 EXPECT_FALSE(result.paths[1]->IsValid()); |
697 const auto& path1 = result.paths[1]->path; | 687 const auto& path1 = result.paths[1]->path; |
698 ASSERT_EQ(3U, path1.certs.size()); | 688 ASSERT_EQ(4U, path1.certs.size()); |
699 EXPECT_EQ(target_, path1.certs[0]); | 689 EXPECT_EQ(target_, path1.certs[0]); |
700 EXPECT_EQ(newintermediate_, path1.certs[1]); | 690 EXPECT_EQ(newintermediate_, path1.certs[1]); |
701 EXPECT_EQ(newroot_, path1.certs[2]); | 691 EXPECT_EQ(newroot_, path1.certs[2]); |
702 EXPECT_EQ(oldroot_, path1.trust_anchor); | 692 EXPECT_EQ(oldroot_, path1.certs[3]); |
703 | 693 |
704 // Path builder will skip: | 694 // Path builder will skip: |
705 // target <- newintermediate <- newroot <- newrootrollover <- ... | 695 // target <- newintermediate <- newroot <- newrootrollover <- ... |
706 // Since newroot and newrootrollover have the same Name+SAN+SPKI. | 696 // Since newroot and newrootrollover have the same Name+SAN+SPKI. |
707 | 697 |
708 // Finally path builder will use: | 698 // Finally path builder will use: |
709 // target <- newintermediate <- newrootrollover <- oldroot | 699 // target <- newintermediate <- newrootrollover <- oldroot |
710 EXPECT_EQ(2U, result.best_result_index); | 700 EXPECT_EQ(2U, result.best_result_index); |
711 EXPECT_TRUE(result.paths[2]->IsValid()); | 701 EXPECT_TRUE(result.paths[2]->IsValid()); |
712 const auto& path2 = result.paths[2]->path; | 702 const auto& path2 = result.paths[2]->path; |
713 ASSERT_EQ(3U, path2.certs.size()); | 703 ASSERT_EQ(4U, path2.certs.size()); |
714 EXPECT_EQ(target_, path2.certs[0]); | 704 EXPECT_EQ(target_, path2.certs[0]); |
715 EXPECT_EQ(newintermediate_, path2.certs[1]); | 705 EXPECT_EQ(newintermediate_, path2.certs[1]); |
716 EXPECT_EQ(newrootrollover_, path2.certs[2]); | 706 EXPECT_EQ(newrootrollover_, path2.certs[2]); |
717 EXPECT_EQ(oldroot_, path2.trust_anchor); | 707 EXPECT_EQ(oldroot_, path2.certs[3]); |
718 } | 708 } |
719 | 709 |
720 // If the target cert is a trust anchor, however is not itself *signed* by a | 710 // If the target cert is a trust anchor, however is not itself *signed* by a |
721 // trust anchor, then it is not considered valid (the SPKI and name of the | 711 // trust anchor, then it is not considered valid (the SPKI and name of the |
722 // trust anchor matches the SPKI and subject of the targe certificate, but the | 712 // trust anchor matches the SPKI and subject of the targe certificate, but the |
723 // rest of the certificate cannot be verified). | 713 // rest of the certificate cannot be verified). |
724 TEST_F(PathBuilderKeyRolloverTest, TestEndEntityIsTrustRoot) { | 714 TEST_F(PathBuilderKeyRolloverTest, TestEndEntityIsTrustRoot) { |
725 // Trust newintermediate. | 715 // Trust newintermediate. |
726 TrustStoreInMemory trust_store; | 716 TrustStoreInMemory trust_store; |
727 AddTrustedCertificate(newintermediate_, &trust_store); | 717 trust_store.AddTrustAnchor(newintermediate_); |
728 | 718 |
729 CertPathBuilder::Result result; | 719 CertPathBuilder::Result result; |
730 // Newintermediate is also the target cert. | 720 // Newintermediate is also the target cert. |
731 CertPathBuilder path_builder(newintermediate_, &trust_store, | 721 CertPathBuilder path_builder(newintermediate_, &trust_store, |
732 &signature_policy_, time_, KeyPurpose::ANY_EKU, | 722 &signature_policy_, time_, KeyPurpose::ANY_EKU, |
733 &result); | 723 &result); |
734 | 724 |
735 path_builder.Run(); | 725 path_builder.Run(); |
736 | 726 |
737 EXPECT_FALSE(result.HasValidPath()); | 727 EXPECT_FALSE(result.HasValidPath()); |
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763 // newroot <- newrootrollover <- oldroot path. | 753 // newroot <- newrootrollover <- oldroot path. |
764 EXPECT_FALSE(result.HasValidPath()); | 754 EXPECT_FALSE(result.HasValidPath()); |
765 } | 755 } |
766 | 756 |
767 // If target has same Name+SAN+SPKI as the trust root, test that a (trivial) | 757 // If target has same Name+SAN+SPKI as the trust root, test that a (trivial) |
768 // path can still be built. | 758 // path can still be built. |
769 TEST_F(PathBuilderKeyRolloverTest, | 759 TEST_F(PathBuilderKeyRolloverTest, |
770 TestEndEntityHasSameNameAndSpkiAsTrustAnchor) { | 760 TestEndEntityHasSameNameAndSpkiAsTrustAnchor) { |
771 // Trust newrootrollover. | 761 // Trust newrootrollover. |
772 TrustStoreInMemory trust_store; | 762 TrustStoreInMemory trust_store; |
773 AddTrustedCertificate(newrootrollover_, &trust_store); | 763 trust_store.AddTrustAnchor(newrootrollover_); |
774 | 764 |
775 CertPathBuilder::Result result; | 765 CertPathBuilder::Result result; |
776 // Newroot is the target cert. | 766 // Newroot is the target cert. |
777 CertPathBuilder path_builder(newroot_, &trust_store, &signature_policy_, | 767 CertPathBuilder path_builder(newroot_, &trust_store, &signature_policy_, |
778 time_, KeyPurpose::ANY_EKU, &result); | 768 time_, KeyPurpose::ANY_EKU, &result); |
779 | 769 |
780 path_builder.Run(); | 770 path_builder.Run(); |
781 | 771 |
782 ASSERT_TRUE(result.HasValidPath()); | 772 ASSERT_TRUE(result.HasValidPath()); |
783 | 773 |
784 const CertPathBuilder::ResultPath* best_result = result.GetBestValidPath(); | 774 const CertPathBuilder::ResultPath* best_result = result.GetBestValidPath(); |
785 | 775 |
786 // Newroot has same name+SPKI as newrootrollover, thus the path is valid and | 776 // Newroot has same name+SPKI as newrootrollover, thus the path is valid and |
787 // only contains newroot. | 777 // only contains newroot. |
788 EXPECT_TRUE(best_result->IsValid()); | 778 EXPECT_TRUE(best_result->IsValid()); |
789 ASSERT_EQ(1U, best_result->path.certs.size()); | 779 ASSERT_EQ(2U, best_result->path.certs.size()); |
790 EXPECT_EQ(newroot_, best_result->path.certs[0]); | 780 EXPECT_EQ(newroot_, best_result->path.certs[0]); |
791 EXPECT_EQ(newrootrollover_, best_result->path.trust_anchor->cert()); | 781 EXPECT_EQ(newrootrollover_, best_result->path.certs[1]); |
792 } | 782 } |
793 | 783 |
794 // Test that PathBuilder will not try the same path twice if multiple | 784 // Test that PathBuilder will not try the same path twice if multiple |
795 // CertIssuerSources provide the same certificate. | 785 // CertIssuerSources provide the same certificate. |
796 TEST_F(PathBuilderKeyRolloverTest, TestDuplicateIntermediates) { | 786 TEST_F(PathBuilderKeyRolloverTest, TestDuplicateIntermediates) { |
797 // Create a separate copy of oldintermediate. | 787 // Create a separate copy of oldintermediate. |
798 scoped_refptr<ParsedCertificate> oldintermediate_dupe( | 788 scoped_refptr<ParsedCertificate> oldintermediate_dupe( |
799 ParsedCertificate::Create( | 789 ParsedCertificate::Create( |
800 bssl::UniquePtr<CRYPTO_BUFFER>(CRYPTO_BUFFER_new( | 790 bssl::UniquePtr<CRYPTO_BUFFER>(CRYPTO_BUFFER_new( |
801 oldintermediate_->der_cert().UnsafeData(), | 791 oldintermediate_->der_cert().UnsafeData(), |
802 oldintermediate_->der_cert().Length(), nullptr)), | 792 oldintermediate_->der_cert().Length(), nullptr)), |
803 {}, nullptr)); | 793 {}, nullptr)); |
804 | 794 |
805 // Only newroot is a trusted root. | 795 // Only newroot is a trusted root. |
806 TrustStoreInMemory trust_store; | 796 TrustStoreInMemory trust_store; |
807 AddTrustedCertificate(newroot_, &trust_store); | 797 trust_store.AddTrustAnchor(newroot_); |
808 | 798 |
809 // The oldintermediate is supplied synchronously by |sync_certs1| and | 799 // The oldintermediate is supplied synchronously by |sync_certs1| and |
810 // another copy of oldintermediate is supplied synchronously by |sync_certs2|. | 800 // another copy of oldintermediate is supplied synchronously by |sync_certs2|. |
811 // The path target <- oldintermediate <- newroot should be built first, | 801 // The path target <- oldintermediate <- newroot should be built first, |
812 // though it won't verify. It should not be attempted again even though | 802 // though it won't verify. It should not be attempted again even though |
813 // oldintermediate was supplied twice. | 803 // oldintermediate was supplied twice. |
814 CertIssuerSourceStatic sync_certs1; | 804 CertIssuerSourceStatic sync_certs1; |
815 sync_certs1.AddCert(oldintermediate_); | 805 sync_certs1.AddCert(oldintermediate_); |
816 CertIssuerSourceStatic sync_certs2; | 806 CertIssuerSourceStatic sync_certs2; |
817 sync_certs2.AddCert(oldintermediate_dupe); | 807 sync_certs2.AddCert(oldintermediate_dupe); |
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831 path_builder.Run(); | 821 path_builder.Run(); |
832 | 822 |
833 EXPECT_TRUE(result.HasValidPath()); | 823 EXPECT_TRUE(result.HasValidPath()); |
834 ASSERT_EQ(2U, result.paths.size()); | 824 ASSERT_EQ(2U, result.paths.size()); |
835 | 825 |
836 // Path builder will first attempt: target <- oldintermediate <- newroot | 826 // Path builder will first attempt: target <- oldintermediate <- newroot |
837 // but it will fail since oldintermediate is signed by oldroot. | 827 // but it will fail since oldintermediate is signed by oldroot. |
838 EXPECT_FALSE(result.paths[0]->IsValid()); | 828 EXPECT_FALSE(result.paths[0]->IsValid()); |
839 const auto& path0 = result.paths[0]->path; | 829 const auto& path0 = result.paths[0]->path; |
840 | 830 |
841 ASSERT_EQ(2U, path0.certs.size()); | 831 ASSERT_EQ(3U, path0.certs.size()); |
842 EXPECT_EQ(target_, path0.certs[0]); | 832 EXPECT_EQ(target_, path0.certs[0]); |
843 // Compare the DER instead of ParsedCertificate pointer, don't care which copy | 833 // Compare the DER instead of ParsedCertificate pointer, don't care which copy |
844 // of oldintermediate was used in the path. | 834 // of oldintermediate was used in the path. |
845 EXPECT_EQ(oldintermediate_->der_cert(), path0.certs[1]->der_cert()); | 835 EXPECT_EQ(oldintermediate_->der_cert(), path0.certs[1]->der_cert()); |
846 EXPECT_EQ(newroot_, path0.trust_anchor->cert()); | 836 EXPECT_EQ(newroot_, path0.certs[2]); |
847 | 837 |
848 // Path builder will next attempt: target <- newintermediate <- newroot | 838 // Path builder will next attempt: target <- newintermediate <- newroot |
849 // which will succeed. | 839 // which will succeed. |
850 EXPECT_EQ(1U, result.best_result_index); | 840 EXPECT_EQ(1U, result.best_result_index); |
851 EXPECT_TRUE(result.paths[1]->IsValid()); | 841 EXPECT_TRUE(result.paths[1]->IsValid()); |
852 const auto& path1 = result.paths[1]->path; | 842 const auto& path1 = result.paths[1]->path; |
853 ASSERT_EQ(2U, path1.certs.size()); | 843 ASSERT_EQ(3U, path1.certs.size()); |
854 EXPECT_EQ(target_, path1.certs[0]); | 844 EXPECT_EQ(target_, path1.certs[0]); |
855 EXPECT_EQ(newintermediate_, path1.certs[1]); | 845 EXPECT_EQ(newintermediate_, path1.certs[1]); |
856 EXPECT_EQ(newroot_, path1.trust_anchor->cert()); | 846 EXPECT_EQ(newroot_, path1.certs[2]); |
857 } | 847 } |
858 | 848 |
859 // Test when PathBuilder is given a cert CertIssuerSources that has the same | 849 // Test when PathBuilder is given a cert via CertIssuerSources that has the same |
860 // SPKI as a TrustAnchor. | 850 // SPKI as a trust anchor. |
861 TEST_F(PathBuilderKeyRolloverTest, TestDuplicateIntermediateAndRoot) { | 851 TEST_F(PathBuilderKeyRolloverTest, TestDuplicateIntermediateAndRoot) { |
862 // Create a separate copy of newroot. | 852 // Create a separate copy of newroot. |
863 scoped_refptr<ParsedCertificate> newroot_dupe(ParsedCertificate::Create( | 853 scoped_refptr<ParsedCertificate> newroot_dupe(ParsedCertificate::Create( |
864 bssl::UniquePtr<CRYPTO_BUFFER>( | 854 bssl::UniquePtr<CRYPTO_BUFFER>( |
865 CRYPTO_BUFFER_new(newroot_->der_cert().UnsafeData(), | 855 CRYPTO_BUFFER_new(newroot_->der_cert().UnsafeData(), |
866 newroot_->der_cert().Length(), nullptr)), | 856 newroot_->der_cert().Length(), nullptr)), |
867 {}, nullptr)); | 857 {}, nullptr)); |
868 | 858 |
869 // Only newroot is a trusted root. | 859 // Only newroot is a trusted root. |
870 TrustStoreInMemory trust_store; | 860 TrustStoreInMemory trust_store; |
871 AddTrustedCertificate(newroot_, &trust_store); | 861 trust_store.AddTrustAnchor(newroot_); |
872 | 862 |
873 // The oldintermediate and newroot are supplied synchronously by |sync_certs|. | 863 // The oldintermediate and newroot are supplied synchronously by |sync_certs|. |
874 CertIssuerSourceStatic sync_certs; | 864 CertIssuerSourceStatic sync_certs; |
875 sync_certs.AddCert(oldintermediate_); | 865 sync_certs.AddCert(oldintermediate_); |
876 sync_certs.AddCert(newroot_dupe); | 866 sync_certs.AddCert(newroot_dupe); |
877 | 867 |
878 CertPathBuilder::Result result; | 868 CertPathBuilder::Result result; |
879 CertPathBuilder path_builder(target_, &trust_store, &signature_policy_, time_, | 869 CertPathBuilder path_builder(target_, &trust_store, &signature_policy_, time_, |
880 KeyPurpose::ANY_EKU, &result); | 870 KeyPurpose::ANY_EKU, &result); |
881 path_builder.AddCertIssuerSource(&sync_certs); | 871 path_builder.AddCertIssuerSource(&sync_certs); |
882 | 872 |
883 path_builder.Run(); | 873 path_builder.Run(); |
884 | 874 |
885 EXPECT_FALSE(result.HasValidPath()); | 875 EXPECT_FALSE(result.HasValidPath()); |
886 ASSERT_EQ(2U, result.paths.size()); | 876 ASSERT_EQ(1U, result.paths.size()); |
887 // TODO(eroman): Is this right? | |
888 | 877 |
889 // Path builder attempt: target <- oldintermediate <- newroot | 878 // Path builder attempt: target <- oldintermediate <- newroot |
890 // but it will fail since oldintermediate is signed by oldroot. | 879 // but it will fail since oldintermediate is signed by oldroot. |
891 EXPECT_FALSE(result.paths[0]->IsValid()); | 880 EXPECT_FALSE(result.paths[0]->IsValid()); |
892 const auto& path = result.paths[0]->path; | 881 const auto& path = result.paths[0]->path; |
893 ASSERT_EQ(2U, path.certs.size()); | 882 ASSERT_EQ(3U, path.certs.size()); |
894 EXPECT_EQ(target_, path.certs[0]); | 883 EXPECT_EQ(target_, path.certs[0]); |
895 EXPECT_EQ(oldintermediate_, path.certs[1]); | 884 EXPECT_EQ(oldintermediate_, path.certs[1]); |
896 // Compare the DER instead of ParsedCertificate pointer, don't care which copy | 885 // Compare the DER instead of ParsedCertificate pointer, don't care which copy |
897 // of newroot was used in the path. | 886 // of newroot was used in the path. |
898 EXPECT_EQ(newroot_->der_cert(), path.trust_anchor->cert()->der_cert()); | 887 EXPECT_EQ(newroot_->der_cert(), path.certs[2]->der_cert()); |
899 } | 888 } |
900 | 889 |
901 class MockCertIssuerSourceRequest : public CertIssuerSource::Request { | 890 class MockCertIssuerSourceRequest : public CertIssuerSource::Request { |
902 public: | 891 public: |
903 MOCK_METHOD1(GetNext, void(ParsedCertificateList*)); | 892 MOCK_METHOD1(GetNext, void(ParsedCertificateList*)); |
904 }; | 893 }; |
905 | 894 |
906 class MockCertIssuerSource : public CertIssuerSource { | 895 class MockCertIssuerSource : public CertIssuerSource { |
907 public: | 896 public: |
908 MOCK_METHOD2(SyncGetIssuersOf, | 897 MOCK_METHOD2(SyncGetIssuersOf, |
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941 }; | 930 }; |
942 | 931 |
943 // Test that a single CertIssuerSource returning multiple async batches of | 932 // Test that a single CertIssuerSource returning multiple async batches of |
944 // issuers is handled correctly. Due to the StrictMocks, it also tests that path | 933 // issuers is handled correctly. Due to the StrictMocks, it also tests that path |
945 // builder does not request issuers of certs that it shouldn't. | 934 // builder does not request issuers of certs that it shouldn't. |
946 TEST_F(PathBuilderKeyRolloverTest, TestMultipleAsyncIssuersFromSingleSource) { | 935 TEST_F(PathBuilderKeyRolloverTest, TestMultipleAsyncIssuersFromSingleSource) { |
947 StrictMock<MockCertIssuerSource> cert_issuer_source; | 936 StrictMock<MockCertIssuerSource> cert_issuer_source; |
948 | 937 |
949 // Only newroot is a trusted root. | 938 // Only newroot is a trusted root. |
950 TrustStoreInMemory trust_store; | 939 TrustStoreInMemory trust_store; |
951 AddTrustedCertificate(newroot_, &trust_store); | 940 trust_store.AddTrustAnchor(newroot_); |
952 | 941 |
953 CertPathBuilder::Result result; | 942 CertPathBuilder::Result result; |
954 CertPathBuilder path_builder(target_, &trust_store, &signature_policy_, time_, | 943 CertPathBuilder path_builder(target_, &trust_store, &signature_policy_, time_, |
955 KeyPurpose::ANY_EKU, &result); | 944 KeyPurpose::ANY_EKU, &result); |
956 path_builder.AddCertIssuerSource(&cert_issuer_source); | 945 path_builder.AddCertIssuerSource(&cert_issuer_source); |
957 | 946 |
958 // Create the mock CertIssuerSource::Request... | 947 // Create the mock CertIssuerSource::Request... |
959 std::unique_ptr<StrictMock<MockCertIssuerSourceRequest>> | 948 std::unique_ptr<StrictMock<MockCertIssuerSourceRequest>> |
960 target_issuers_req_owner(new StrictMock<MockCertIssuerSourceRequest>()); | 949 target_issuers_req_owner(new StrictMock<MockCertIssuerSourceRequest>()); |
961 // Keep a raw pointer to the Request... | 950 // Keep a raw pointer to the Request... |
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998 // expectations get checked by the destructor. | 987 // expectations get checked by the destructor. |
999 ::testing::Mock::VerifyAndClearExpectations(&cert_issuer_source); | 988 ::testing::Mock::VerifyAndClearExpectations(&cert_issuer_source); |
1000 | 989 |
1001 EXPECT_TRUE(result.HasValidPath()); | 990 EXPECT_TRUE(result.HasValidPath()); |
1002 ASSERT_EQ(2U, result.paths.size()); | 991 ASSERT_EQ(2U, result.paths.size()); |
1003 | 992 |
1004 // Path builder first attempts: target <- oldintermediate <- newroot | 993 // Path builder first attempts: target <- oldintermediate <- newroot |
1005 // but it will fail since oldintermediate is signed by oldroot. | 994 // but it will fail since oldintermediate is signed by oldroot. |
1006 EXPECT_FALSE(result.paths[0]->IsValid()); | 995 EXPECT_FALSE(result.paths[0]->IsValid()); |
1007 const auto& path0 = result.paths[0]->path; | 996 const auto& path0 = result.paths[0]->path; |
1008 ASSERT_EQ(2U, path0.certs.size()); | 997 ASSERT_EQ(3U, path0.certs.size()); |
1009 EXPECT_EQ(target_, path0.certs[0]); | 998 EXPECT_EQ(target_, path0.certs[0]); |
1010 EXPECT_EQ(oldintermediate_, path0.certs[1]); | 999 EXPECT_EQ(oldintermediate_, path0.certs[1]); |
1011 EXPECT_EQ(newroot_, path0.trust_anchor->cert()); | 1000 EXPECT_EQ(newroot_, path0.certs[2]); |
1012 | 1001 |
1013 // After the second batch of async results, path builder will attempt: | 1002 // After the second batch of async results, path builder will attempt: |
1014 // target <- newintermediate <- newroot which will succeed. | 1003 // target <- newintermediate <- newroot which will succeed. |
1015 EXPECT_TRUE(result.paths[1]->IsValid()); | 1004 EXPECT_TRUE(result.paths[1]->IsValid()); |
1016 const auto& path1 = result.paths[1]->path; | 1005 const auto& path1 = result.paths[1]->path; |
1017 ASSERT_EQ(2U, path1.certs.size()); | 1006 ASSERT_EQ(3U, path1.certs.size()); |
1018 EXPECT_EQ(target_, path1.certs[0]); | 1007 EXPECT_EQ(target_, path1.certs[0]); |
1019 EXPECT_EQ(newintermediate_, path1.certs[1]); | 1008 EXPECT_EQ(newintermediate_, path1.certs[1]); |
1020 EXPECT_EQ(newroot_, path1.trust_anchor->cert()); | 1009 EXPECT_EQ(newroot_, path1.certs[2]); |
1021 } | 1010 } |
1022 | 1011 |
1023 // Test that PathBuilder will not try the same path twice if CertIssuerSources | 1012 // Test that PathBuilder will not try the same path twice if CertIssuerSources |
1024 // asynchronously provide the same certificate multiple times. | 1013 // asynchronously provide the same certificate multiple times. |
1025 TEST_F(PathBuilderKeyRolloverTest, TestDuplicateAsyncIntermediates) { | 1014 TEST_F(PathBuilderKeyRolloverTest, TestDuplicateAsyncIntermediates) { |
1026 StrictMock<MockCertIssuerSource> cert_issuer_source; | 1015 StrictMock<MockCertIssuerSource> cert_issuer_source; |
1027 | 1016 |
1028 // Only newroot is a trusted root. | 1017 // Only newroot is a trusted root. |
1029 TrustStoreInMemory trust_store; | 1018 TrustStoreInMemory trust_store; |
1030 AddTrustedCertificate(newroot_, &trust_store); | 1019 trust_store.AddTrustAnchor(newroot_); |
1031 | 1020 |
1032 CertPathBuilder::Result result; | 1021 CertPathBuilder::Result result; |
1033 CertPathBuilder path_builder(target_, &trust_store, &signature_policy_, time_, | 1022 CertPathBuilder path_builder(target_, &trust_store, &signature_policy_, time_, |
1034 KeyPurpose::ANY_EKU, &result); | 1023 KeyPurpose::ANY_EKU, &result); |
1035 path_builder.AddCertIssuerSource(&cert_issuer_source); | 1024 path_builder.AddCertIssuerSource(&cert_issuer_source); |
1036 | 1025 |
1037 // Create the mock CertIssuerSource::Request... | 1026 // Create the mock CertIssuerSource::Request... |
1038 std::unique_ptr<StrictMock<MockCertIssuerSourceRequest>> | 1027 std::unique_ptr<StrictMock<MockCertIssuerSourceRequest>> |
1039 target_issuers_req_owner(new StrictMock<MockCertIssuerSourceRequest>()); | 1028 target_issuers_req_owner(new StrictMock<MockCertIssuerSourceRequest>()); |
1040 // Keep a raw pointer to the Request... | 1029 // Keep a raw pointer to the Request... |
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1084 | 1073 |
1085 ::testing::Mock::VerifyAndClearExpectations(&cert_issuer_source); | 1074 ::testing::Mock::VerifyAndClearExpectations(&cert_issuer_source); |
1086 | 1075 |
1087 EXPECT_TRUE(result.HasValidPath()); | 1076 EXPECT_TRUE(result.HasValidPath()); |
1088 ASSERT_EQ(2U, result.paths.size()); | 1077 ASSERT_EQ(2U, result.paths.size()); |
1089 | 1078 |
1090 // Path builder first attempts: target <- oldintermediate <- newroot | 1079 // Path builder first attempts: target <- oldintermediate <- newroot |
1091 // but it will fail since oldintermediate is signed by oldroot. | 1080 // but it will fail since oldintermediate is signed by oldroot. |
1092 EXPECT_FALSE(result.paths[0]->IsValid()); | 1081 EXPECT_FALSE(result.paths[0]->IsValid()); |
1093 const auto& path0 = result.paths[0]->path; | 1082 const auto& path0 = result.paths[0]->path; |
1094 ASSERT_EQ(2U, path0.certs.size()); | 1083 ASSERT_EQ(3U, path0.certs.size()); |
1095 EXPECT_EQ(target_, path0.certs[0]); | 1084 EXPECT_EQ(target_, path0.certs[0]); |
1096 EXPECT_EQ(oldintermediate_, path0.certs[1]); | 1085 EXPECT_EQ(oldintermediate_, path0.certs[1]); |
1097 EXPECT_EQ(newroot_, path0.trust_anchor->cert()); | 1086 EXPECT_EQ(newroot_, path0.certs[2]); |
1098 | 1087 |
1099 // The second async result does not generate any path. | 1088 // The second async result does not generate any path. |
1100 | 1089 |
1101 // After the third batch of async results, path builder will attempt: | 1090 // After the third batch of async results, path builder will attempt: |
1102 // target <- newintermediate <- newroot which will succeed. | 1091 // target <- newintermediate <- newroot which will succeed. |
1103 EXPECT_TRUE(result.paths[1]->IsValid()); | 1092 EXPECT_TRUE(result.paths[1]->IsValid()); |
1104 const auto& path1 = result.paths[1]->path; | 1093 const auto& path1 = result.paths[1]->path; |
1105 ASSERT_EQ(2U, path1.certs.size()); | 1094 ASSERT_EQ(3U, path1.certs.size()); |
1106 EXPECT_EQ(target_, path1.certs[0]); | 1095 EXPECT_EQ(target_, path1.certs[0]); |
1107 EXPECT_EQ(newintermediate_, path1.certs[1]); | 1096 EXPECT_EQ(newintermediate_, path1.certs[1]); |
1108 EXPECT_EQ(newroot_, path1.trust_anchor->cert()); | 1097 EXPECT_EQ(newroot_, path1.certs[2]); |
1109 } | 1098 } |
1110 | 1099 |
1111 } // namespace | 1100 } // namespace |
1112 | 1101 |
1113 } // namespace net | 1102 } // namespace net |
OLD | NEW |