blob: c483488ad5f99d4722a960cdeb20b6cd758f72b2 [file] [log] [blame]
Sen Jianga4365d62015-09-25 10:52:25 -07001//
2// Copyright (C) 2012 The Android Open Source Project
3//
4// Licensed under the Apache License, Version 2.0 (the "License");
5// you may not use this file except in compliance with the License.
6// You may obtain a copy of the License at
7//
8// http://www.apache.org/licenses/LICENSE-2.0
9//
10// Unless required by applicable law or agreed to in writing, software
11// distributed under the License is distributed on an "AS IS" BASIS,
12// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13// See the License for the specific language governing permissions and
14// limitations under the License.
15//
16
17#include "update_engine/delta_performer.h"
18
19#include <inttypes.h>
20#include <sys/mount.h>
21
22#include <algorithm>
23#include <string>
24#include <vector>
25
26#include <base/files/file_path.h>
27#include <base/files/file_util.h>
Sen Jianga4365d62015-09-25 10:52:25 -070028#include <base/strings/string_util.h>
Alex Deymoe5e5fe92015-10-05 09:28:19 -070029#include <base/strings/stringprintf.h>
Sen Jianga4365d62015-09-25 10:52:25 -070030#include <google/protobuf/repeated_field.h>
31#include <gtest/gtest.h>
32
33#include "update_engine/constants.h"
34#include "update_engine/fake_hardware.h"
35#include "update_engine/fake_system_state.h"
36#include "update_engine/mock_prefs.h"
37#include "update_engine/payload_constants.h"
38#include "update_engine/payload_generator/delta_diff_generator.h"
39#include "update_engine/payload_generator/payload_signer.h"
40#include "update_engine/payload_verifier.h"
41#include "update_engine/test_utils.h"
42#include "update_engine/update_metadata.pb.h"
43#include "update_engine/utils.h"
44
45namespace chromeos_update_engine {
46
47using std::string;
48using std::vector;
Sen Jianga4365d62015-09-25 10:52:25 -070049using test_utils::ScopedLoopMounter;
50using test_utils::System;
Alex Deymoe5e5fe92015-10-05 09:28:19 -070051using test_utils::kRandomString;
52using testing::Return;
53using testing::_;
Sen Jianga4365d62015-09-25 10:52:25 -070054
55extern const char* kUnittestPrivateKeyPath;
56extern const char* kUnittestPublicKeyPath;
57extern const char* kUnittestPrivateKey2Path;
58extern const char* kUnittestPublicKey2Path;
59
60static const int kDefaultKernelSize = 4096; // Something small for a test
61static const uint8_t kNewData[] = {'T', 'h', 'i', 's', ' ', 'i', 's', ' ',
62 'n', 'e', 'w', ' ', 'd', 'a', 't', 'a', '.'};
63
64namespace {
65struct DeltaState {
66 string a_img;
67 string b_img;
68 string result_img;
69 size_t image_size;
70
71 string delta_path;
72 uint64_t metadata_size;
73
74 string old_kernel;
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -070075 brillo::Blob old_kernel_data;
Sen Jianga4365d62015-09-25 10:52:25 -070076
77 string new_kernel;
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -070078 brillo::Blob new_kernel_data;
Sen Jianga4365d62015-09-25 10:52:25 -070079
80 string result_kernel;
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -070081 brillo::Blob result_kernel_data;
Sen Jianga4365d62015-09-25 10:52:25 -070082 size_t kernel_size;
83
Alex Deymoe5e5fe92015-10-05 09:28:19 -070084 // The InstallPlan referenced by the DeltaPerformer. This needs to outlive
85 // the DeltaPerformer.
86 InstallPlan install_plan;
87
Sen Jianga4365d62015-09-25 10:52:25 -070088 // The in-memory copy of delta file.
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -070089 brillo::Blob delta;
Sen Jianga4365d62015-09-25 10:52:25 -070090
91 // The mock system state object with which we initialize the
92 // delta performer.
93 FakeSystemState fake_system_state;
94};
95
96enum SignatureTest {
97 kSignatureNone, // No payload signing.
98 kSignatureGenerator, // Sign the payload at generation time.
99 kSignatureGenerated, // Sign the payload after it's generated.
100 kSignatureGeneratedPlaceholder, // Insert placeholder signatures, then real.
101 kSignatureGeneratedPlaceholderMismatch, // Insert a wrong sized placeholder.
102 kSignatureGeneratedShell, // Sign the generated payload through shell cmds.
103 kSignatureGeneratedShellBadKey, // Sign with a bad key through shell cmds.
104 kSignatureGeneratedShellRotateCl1, // Rotate key, test client v1
105 kSignatureGeneratedShellRotateCl2, // Rotate key, test client v2
106};
107
108enum OperationHashTest {
109 kInvalidOperationData,
110 kValidOperationData,
111};
112
113} // namespace
114
115class DeltaPerformerIntegrationTest : public ::testing::Test {
116 public:
117 static void SetSupportedVersion(DeltaPerformer* performer,
118 uint64_t minor_version) {
119 performer->supported_minor_version_ = minor_version;
120 }
121};
122
123static void CompareFilesByBlock(const string& a_file, const string& b_file,
124 size_t image_size) {
125 EXPECT_EQ(0, image_size % kBlockSize);
126
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700127 brillo::Blob a_data, b_data;
Sen Jianga4365d62015-09-25 10:52:25 -0700128 EXPECT_TRUE(utils::ReadFile(a_file, &a_data)) << "file failed: " << a_file;
129 EXPECT_TRUE(utils::ReadFile(b_file, &b_data)) << "file failed: " << b_file;
130
131 EXPECT_GE(a_data.size(), image_size);
132 EXPECT_GE(b_data.size(), image_size);
133 for (size_t i = 0; i < image_size; i += kBlockSize) {
134 EXPECT_EQ(0, i % kBlockSize);
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700135 brillo::Blob a_sub(&a_data[i], &a_data[i + kBlockSize]);
136 brillo::Blob b_sub(&b_data[i], &b_data[i + kBlockSize]);
Sen Jianga4365d62015-09-25 10:52:25 -0700137 EXPECT_TRUE(a_sub == b_sub) << "Block " << (i/kBlockSize) << " differs";
138 }
139 if (::testing::Test::HasNonfatalFailure()) {
140 LOG(INFO) << "Compared filesystems with size " << image_size
141 << ", partition A " << a_file << " size: " << a_data.size()
142 << ", partition B " << b_file << " size: " << b_data.size();
143 }
144}
145
146static bool WriteSparseFile(const string& path, off_t size) {
147 int fd = open(path.c_str(), O_CREAT | O_TRUNC | O_WRONLY, 0644);
148 TEST_AND_RETURN_FALSE_ERRNO(fd >= 0);
149 ScopedFdCloser fd_closer(&fd);
150 off_t rc = lseek(fd, size + 1, SEEK_SET);
151 TEST_AND_RETURN_FALSE_ERRNO(rc != static_cast<off_t>(-1));
152 int return_code = ftruncate(fd, size);
153 TEST_AND_RETURN_FALSE_ERRNO(return_code == 0);
154 return true;
155}
156
157static size_t GetSignatureSize(const string& private_key_path) {
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700158 const brillo::Blob data(1, 'x');
159 brillo::Blob hash;
Sen Jianga4365d62015-09-25 10:52:25 -0700160 EXPECT_TRUE(OmahaHashCalculator::RawHashOfData(data, &hash));
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700161 brillo::Blob signature;
Sen Jianga4365d62015-09-25 10:52:25 -0700162 EXPECT_TRUE(PayloadSigner::SignHash(hash,
163 private_key_path,
164 &signature));
165 return signature.size();
166}
167
168static bool InsertSignaturePlaceholder(int signature_size,
169 const string& payload_path,
170 uint64_t* out_metadata_size) {
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700171 vector<brillo::Blob> signatures;
172 signatures.push_back(brillo::Blob(signature_size, 0));
Sen Jianga4365d62015-09-25 10:52:25 -0700173
174 return PayloadSigner::AddSignatureToPayload(
175 payload_path,
176 signatures,
Sen Jiang644f6182015-10-06 16:45:57 -0700177 {},
Sen Jianga4365d62015-09-25 10:52:25 -0700178 payload_path,
179 out_metadata_size);
180}
181
182static void SignGeneratedPayload(const string& payload_path,
183 uint64_t* out_metadata_size) {
184 int signature_size = GetSignatureSize(kUnittestPrivateKeyPath);
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700185 brillo::Blob hash;
Sen Jianga4365d62015-09-25 10:52:25 -0700186 ASSERT_TRUE(PayloadSigner::HashPayloadForSigning(
187 payload_path,
188 vector<int>(1, signature_size),
Sen Jiang720df3e2015-10-01 13:10:44 -0700189 &hash,
190 nullptr));
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700191 brillo::Blob signature;
Sen Jianga4365d62015-09-25 10:52:25 -0700192 ASSERT_TRUE(PayloadSigner::SignHash(hash,
193 kUnittestPrivateKeyPath,
194 &signature));
195 ASSERT_TRUE(PayloadSigner::AddSignatureToPayload(
196 payload_path,
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700197 vector<brillo::Blob>(1, signature),
Sen Jiang644f6182015-10-06 16:45:57 -0700198 {},
Sen Jianga4365d62015-09-25 10:52:25 -0700199 payload_path,
200 out_metadata_size));
Sen Jiangaef1c6f2015-10-07 10:05:32 -0700201 EXPECT_TRUE(PayloadSigner::VerifySignedPayload(
Sen Jianga4365d62015-09-25 10:52:25 -0700202 payload_path,
Alex Deymob552a682015-09-30 09:36:49 -0700203 kUnittestPublicKeyPath));
Sen Jianga4365d62015-09-25 10:52:25 -0700204}
205
206static void SignGeneratedShellPayload(SignatureTest signature_test,
207 const string& payload_path) {
208 string private_key_path = kUnittestPrivateKeyPath;
209 if (signature_test == kSignatureGeneratedShellBadKey) {
210 ASSERT_TRUE(utils::MakeTempFile("key.XXXXXX",
211 &private_key_path,
212 nullptr));
213 } else {
214 ASSERT_TRUE(signature_test == kSignatureGeneratedShell ||
215 signature_test == kSignatureGeneratedShellRotateCl1 ||
216 signature_test == kSignatureGeneratedShellRotateCl2);
217 }
218 ScopedPathUnlinker key_unlinker(private_key_path);
219 key_unlinker.set_should_remove(signature_test ==
220 kSignatureGeneratedShellBadKey);
221 // Generates a new private key that will not match the public key.
222 if (signature_test == kSignatureGeneratedShellBadKey) {
223 LOG(INFO) << "Generating a mismatched private key.";
224 ASSERT_EQ(0, System(base::StringPrintf(
225 "openssl genrsa -out %s 2048", private_key_path.c_str())));
226 }
227 int signature_size = GetSignatureSize(private_key_path);
228 string hash_file;
229 ASSERT_TRUE(utils::MakeTempFile("hash.XXXXXX", &hash_file, nullptr));
230 ScopedPathUnlinker hash_unlinker(hash_file);
231 string signature_size_string;
232 if (signature_test == kSignatureGeneratedShellRotateCl1 ||
233 signature_test == kSignatureGeneratedShellRotateCl2)
234 signature_size_string = base::StringPrintf("%d:%d",
235 signature_size, signature_size);
236 else
237 signature_size_string = base::StringPrintf("%d", signature_size);
238 ASSERT_EQ(0,
239 System(base::StringPrintf(
240 "./delta_generator -in_file=%s -signature_size=%s "
241 "-out_hash_file=%s",
242 payload_path.c_str(),
243 signature_size_string.c_str(),
244 hash_file.c_str())));
245
246 // Pad the hash
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700247 brillo::Blob hash;
Sen Jianga4365d62015-09-25 10:52:25 -0700248 ASSERT_TRUE(utils::ReadFile(hash_file, &hash));
249 ASSERT_TRUE(PayloadVerifier::PadRSA2048SHA256Hash(&hash));
250 ASSERT_TRUE(test_utils::WriteFileVector(hash_file, hash));
251
252 string sig_file;
253 ASSERT_TRUE(utils::MakeTempFile("signature.XXXXXX", &sig_file, nullptr));
254 ScopedPathUnlinker sig_unlinker(sig_file);
255 ASSERT_EQ(0,
256 System(base::StringPrintf(
257 "openssl rsautl -raw -sign -inkey %s -in %s -out %s",
258 private_key_path.c_str(),
259 hash_file.c_str(),
260 sig_file.c_str())));
261 string sig_file2;
262 ASSERT_TRUE(utils::MakeTempFile("signature.XXXXXX", &sig_file2, nullptr));
263 ScopedPathUnlinker sig2_unlinker(sig_file2);
264 if (signature_test == kSignatureGeneratedShellRotateCl1 ||
265 signature_test == kSignatureGeneratedShellRotateCl2) {
266 ASSERT_EQ(0,
267 System(base::StringPrintf(
268 "openssl rsautl -raw -sign -inkey %s -in %s -out %s",
269 kUnittestPrivateKey2Path,
270 hash_file.c_str(),
271 sig_file2.c_str())));
272 // Append second sig file to first path
273 sig_file += ":" + sig_file2;
274 }
275
276 ASSERT_EQ(0,
277 System(base::StringPrintf(
278 "./delta_generator -in_file=%s -signature_file=%s "
279 "-out_file=%s",
280 payload_path.c_str(),
281 sig_file.c_str(),
282 payload_path.c_str())));
283 int verify_result =
284 System(base::StringPrintf(
285 "./delta_generator -in_file=%s -public_key=%s -public_key_version=%d",
286 payload_path.c_str(),
287 signature_test == kSignatureGeneratedShellRotateCl2 ?
288 kUnittestPublicKey2Path : kUnittestPublicKeyPath,
289 signature_test == kSignatureGeneratedShellRotateCl2 ? 2 : 1));
290 if (signature_test == kSignatureGeneratedShellBadKey) {
291 ASSERT_NE(0, verify_result);
292 } else {
293 ASSERT_EQ(0, verify_result);
294 }
295}
296
297static void GenerateDeltaFile(bool full_kernel,
298 bool full_rootfs,
299 bool noop,
300 ssize_t chunk_size,
301 SignatureTest signature_test,
302 DeltaState *state,
303 uint32_t minor_version) {
304 EXPECT_TRUE(utils::MakeTempFile("a_img.XXXXXX", &state->a_img, nullptr));
305 EXPECT_TRUE(utils::MakeTempFile("b_img.XXXXXX", &state->b_img, nullptr));
306
307 // result_img is used in minor version 2. Instead of applying the update
308 // in-place on A, we apply it to a new image, result_img.
309 EXPECT_TRUE(
310 utils::MakeTempFile("result_img.XXXXXX", &state->result_img, nullptr));
311 test_utils::CreateExtImageAtPath(state->a_img, nullptr);
312
313 state->image_size = utils::FileSize(state->a_img);
314
Sen Jianga4365d62015-09-25 10:52:25 -0700315 // Create ImageInfo A & B
316 ImageInfo old_image_info;
317 ImageInfo new_image_info;
318
319 if (!full_rootfs) {
320 old_image_info.set_channel("src-channel");
321 old_image_info.set_board("src-board");
322 old_image_info.set_version("src-version");
323 old_image_info.set_key("src-key");
324 old_image_info.set_build_channel("src-build-channel");
325 old_image_info.set_build_version("src-build-version");
326 }
327
328 new_image_info.set_channel("test-channel");
329 new_image_info.set_board("test-board");
330 new_image_info.set_version("test-version");
331 new_image_info.set_key("test-key");
332 new_image_info.set_build_channel("test-build-channel");
333 new_image_info.set_build_version("test-build-version");
334
335 // Make some changes to the A image.
336 {
337 string a_mnt;
338 ScopedLoopMounter b_mounter(state->a_img, &a_mnt, 0);
339
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700340 brillo::Blob hardtocompress;
Sen Jianga4365d62015-09-25 10:52:25 -0700341 while (hardtocompress.size() < 3 * kBlockSize) {
342 hardtocompress.insert(hardtocompress.end(),
343 std::begin(kRandomString), std::end(kRandomString));
344 }
345 EXPECT_TRUE(utils::WriteFile(base::StringPrintf("%s/hardtocompress",
346 a_mnt.c_str()).c_str(),
347 hardtocompress.data(),
348 hardtocompress.size()));
349
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700350 brillo::Blob zeros(16 * 1024, 0);
Sen Jianga4365d62015-09-25 10:52:25 -0700351 EXPECT_EQ(zeros.size(),
352 base::WriteFile(base::FilePath(base::StringPrintf(
353 "%s/move-to-sparse", a_mnt.c_str())),
354 reinterpret_cast<const char*>(zeros.data()),
355 zeros.size()));
356
357 EXPECT_TRUE(
358 WriteSparseFile(base::StringPrintf("%s/move-from-sparse",
359 a_mnt.c_str()), 16 * 1024));
360
361 EXPECT_EQ(0,
362 System(base::StringPrintf("dd if=/dev/zero of=%s/move-semi-sparse"
363 " bs=1 seek=4096 count=1 status=none",
364 a_mnt.c_str()).c_str()));
365
366 // Write 1 MiB of 0xff to try to catch the case where writing a bsdiff
367 // patch fails to zero out the final block.
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700368 brillo::Blob ones(1024 * 1024, 0xff);
Sen Jianga4365d62015-09-25 10:52:25 -0700369 EXPECT_TRUE(utils::WriteFile(base::StringPrintf("%s/ones",
370 a_mnt.c_str()).c_str(),
371 ones.data(),
372 ones.size()));
373 }
374
375 if (noop) {
376 EXPECT_TRUE(base::CopyFile(base::FilePath(state->a_img),
377 base::FilePath(state->b_img)));
378 old_image_info = new_image_info;
379 } else {
380 if (minor_version == kSourceMinorPayloadVersion) {
Sen Jiangf2af4c62015-09-30 16:38:09 -0700381 // Create a result image with image_size bytes of garbage.
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700382 brillo::Blob ones(state->image_size, 0xff);
Sen Jianga4365d62015-09-25 10:52:25 -0700383 EXPECT_TRUE(utils::WriteFile(state->result_img.c_str(),
384 ones.data(),
385 ones.size()));
386 EXPECT_EQ(utils::FileSize(state->a_img),
387 utils::FileSize(state->result_img));
388 }
389
390 test_utils::CreateExtImageAtPath(state->b_img, nullptr);
Sen Jianga4365d62015-09-25 10:52:25 -0700391
392 // Make some changes to the B image.
393 string b_mnt;
394 ScopedLoopMounter b_mounter(state->b_img, &b_mnt, 0);
395
396 EXPECT_EQ(0, System(base::StringPrintf("cp %s/hello %s/hello2",
397 b_mnt.c_str(),
398 b_mnt.c_str()).c_str()));
399 EXPECT_EQ(0, System(base::StringPrintf("rm %s/hello",
400 b_mnt.c_str()).c_str()));
401 EXPECT_EQ(0, System(base::StringPrintf("mv %s/hello2 %s/hello",
402 b_mnt.c_str(),
403 b_mnt.c_str()).c_str()));
404 EXPECT_EQ(0, System(base::StringPrintf("echo foo > %s/foo",
405 b_mnt.c_str()).c_str()));
406 EXPECT_EQ(0, System(base::StringPrintf("touch %s/emptyfile",
407 b_mnt.c_str()).c_str()));
408 EXPECT_TRUE(WriteSparseFile(base::StringPrintf("%s/fullsparse",
409 b_mnt.c_str()),
410 1024 * 1024));
411
412 EXPECT_TRUE(
413 WriteSparseFile(base::StringPrintf("%s/move-to-sparse", b_mnt.c_str()),
414 16 * 1024));
415
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700416 brillo::Blob zeros(16 * 1024, 0);
Sen Jianga4365d62015-09-25 10:52:25 -0700417 EXPECT_EQ(zeros.size(),
418 base::WriteFile(base::FilePath(base::StringPrintf(
419 "%s/move-from-sparse", b_mnt.c_str())),
420 reinterpret_cast<const char*>(zeros.data()),
421 zeros.size()));
422
423 EXPECT_EQ(0, System(base::StringPrintf("dd if=/dev/zero "
424 "of=%s/move-semi-sparse "
425 "bs=1 seek=4096 count=1 status=none",
426 b_mnt.c_str()).c_str()));
427
428 EXPECT_EQ(0, System(base::StringPrintf("dd if=/dev/zero "
429 "of=%s/partsparse bs=1 "
430 "seek=4096 count=1 status=none",
431 b_mnt.c_str()).c_str()));
432 EXPECT_EQ(0, System(base::StringPrintf("cp %s/srchardlink0 %s/tmp && "
433 "mv %s/tmp %s/srchardlink1",
434 b_mnt.c_str(),
435 b_mnt.c_str(),
436 b_mnt.c_str(),
437 b_mnt.c_str()).c_str()));
438 EXPECT_EQ(0, System(
439 base::StringPrintf("rm %s/boguslink && echo foobar > %s/boguslink",
440 b_mnt.c_str(), b_mnt.c_str()).c_str()));
441
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700442 brillo::Blob hardtocompress;
Sen Jianga4365d62015-09-25 10:52:25 -0700443 while (hardtocompress.size() < 3 * kBlockSize) {
444 hardtocompress.insert(hardtocompress.end(),
445 std::begin(kRandomString), std::end(kRandomString));
446 }
447 EXPECT_TRUE(utils::WriteFile(base::StringPrintf("%s/hardtocompress",
448 b_mnt.c_str()).c_str(),
449 hardtocompress.data(),
450 hardtocompress.size()));
451 }
452
453 string old_kernel;
454 EXPECT_TRUE(utils::MakeTempFile("old_kernel.XXXXXX",
455 &state->old_kernel,
456 nullptr));
457
458 string new_kernel;
459 EXPECT_TRUE(utils::MakeTempFile("new_kernel.XXXXXX",
460 &state->new_kernel,
461 nullptr));
462
463 string result_kernel;
464 EXPECT_TRUE(utils::MakeTempFile("result_kernel.XXXXXX",
465 &state->result_kernel,
466 nullptr));
467
468 state->kernel_size = kDefaultKernelSize;
469 state->old_kernel_data.resize(kDefaultKernelSize);
470 state->new_kernel_data.resize(state->old_kernel_data.size());
471 state->result_kernel_data.resize(state->old_kernel_data.size());
472 test_utils::FillWithData(&state->old_kernel_data);
473 test_utils::FillWithData(&state->new_kernel_data);
474 test_utils::FillWithData(&state->result_kernel_data);
475
476 // change the new kernel data
477 std::copy(std::begin(kNewData), std::end(kNewData),
478 state->new_kernel_data.begin());
479
480 if (noop) {
481 state->old_kernel_data = state->new_kernel_data;
482 }
483
484 // Write kernels to disk
485 EXPECT_TRUE(utils::WriteFile(state->old_kernel.c_str(),
486 state->old_kernel_data.data(),
487 state->old_kernel_data.size()));
488 EXPECT_TRUE(utils::WriteFile(state->new_kernel.c_str(),
489 state->new_kernel_data.data(),
490 state->new_kernel_data.size()));
491 EXPECT_TRUE(utils::WriteFile(state->result_kernel.c_str(),
492 state->result_kernel_data.data(),
493 state->result_kernel_data.size()));
494
495 EXPECT_TRUE(utils::MakeTempFile("delta.XXXXXX",
496 &state->delta_path,
497 nullptr));
498 LOG(INFO) << "delta path: " << state->delta_path;
499 {
500 const string private_key =
501 signature_test == kSignatureGenerator ? kUnittestPrivateKeyPath : "";
502
503 PayloadGenerationConfig payload_config;
504 payload_config.is_delta = !full_rootfs;
505 payload_config.hard_chunk_size = chunk_size;
506 payload_config.rootfs_partition_size = kRootFSPartitionSize;
507 payload_config.major_version = kChromeOSMajorPayloadVersion;
508 payload_config.minor_version = minor_version;
509 if (!full_rootfs) {
Sen Jiang981eb112015-08-25 17:03:18 -0700510 payload_config.source.partitions.emplace_back(kLegacyPartitionNameRoot);
511 payload_config.source.partitions.emplace_back(kLegacyPartitionNameKernel);
512 payload_config.source.partitions.front().path = state->a_img;
Sen Jianga4365d62015-09-25 10:52:25 -0700513 if (!full_kernel)
Sen Jiang981eb112015-08-25 17:03:18 -0700514 payload_config.source.partitions.back().path = state->old_kernel;
Sen Jianga4365d62015-09-25 10:52:25 -0700515 payload_config.source.image_info = old_image_info;
516 EXPECT_TRUE(payload_config.source.LoadImageSize());
Sen Jiang981eb112015-08-25 17:03:18 -0700517 for (PartitionConfig& part : payload_config.source.partitions)
518 EXPECT_TRUE(part.OpenFilesystem());
Sen Jianga4365d62015-09-25 10:52:25 -0700519 } else {
520 if (payload_config.hard_chunk_size == -1)
521 // Use 1 MiB chunk size for the full unittests.
522 payload_config.hard_chunk_size = 1024 * 1024;
523 }
Sen Jiang981eb112015-08-25 17:03:18 -0700524 payload_config.target.partitions.emplace_back(kLegacyPartitionNameRoot);
525 payload_config.target.partitions.back().path = state->b_img;
526 payload_config.target.partitions.emplace_back(kLegacyPartitionNameKernel);
527 payload_config.target.partitions.back().path = state->new_kernel;
Sen Jianga4365d62015-09-25 10:52:25 -0700528 payload_config.target.image_info = new_image_info;
529 EXPECT_TRUE(payload_config.target.LoadImageSize());
Sen Jiang981eb112015-08-25 17:03:18 -0700530 for (PartitionConfig& part : payload_config.target.partitions)
531 EXPECT_TRUE(part.OpenFilesystem());
Sen Jianga4365d62015-09-25 10:52:25 -0700532
533 EXPECT_TRUE(payload_config.Validate());
534 EXPECT_TRUE(
535 GenerateUpdatePayloadFile(
536 payload_config,
537 state->delta_path,
538 private_key,
539 &state->metadata_size));
540 }
Sen Jiangf2af4c62015-09-30 16:38:09 -0700541 // Extend the "partitions" holding the file system a bit.
542 EXPECT_EQ(0, HANDLE_EINTR(truncate(state->a_img.c_str(),
543 state->image_size + 1024 * 1024)));
544 EXPECT_EQ(state->image_size + 1024 * 1024, utils::FileSize(state->a_img));
545 EXPECT_EQ(0, HANDLE_EINTR(truncate(state->b_img.c_str(),
546 state->image_size + 1024 * 1024)));
547 EXPECT_EQ(state->image_size + 1024 * 1024, utils::FileSize(state->b_img));
Sen Jianga4365d62015-09-25 10:52:25 -0700548
549 if (signature_test == kSignatureGeneratedPlaceholder ||
550 signature_test == kSignatureGeneratedPlaceholderMismatch) {
551 int signature_size = GetSignatureSize(kUnittestPrivateKeyPath);
552 LOG(INFO) << "Inserting placeholder signature.";
553 ASSERT_TRUE(InsertSignaturePlaceholder(signature_size, state->delta_path,
554 &state->metadata_size));
555
556 if (signature_test == kSignatureGeneratedPlaceholderMismatch) {
557 signature_size -= 1;
558 LOG(INFO) << "Inserting mismatched placeholder signature.";
559 ASSERT_FALSE(InsertSignaturePlaceholder(signature_size, state->delta_path,
560 &state->metadata_size));
561 return;
562 }
563 }
564
565 if (signature_test == kSignatureGenerated ||
566 signature_test == kSignatureGeneratedPlaceholder ||
567 signature_test == kSignatureGeneratedPlaceholderMismatch) {
568 // Generate the signed payload and update the metadata size in state to
569 // reflect the new size after adding the signature operation to the
570 // manifest.
571 LOG(INFO) << "Signing payload.";
572 SignGeneratedPayload(state->delta_path, &state->metadata_size);
573 } else if (signature_test == kSignatureGeneratedShell ||
574 signature_test == kSignatureGeneratedShellBadKey ||
575 signature_test == kSignatureGeneratedShellRotateCl1 ||
576 signature_test == kSignatureGeneratedShellRotateCl2) {
577 SignGeneratedShellPayload(signature_test, state->delta_path);
578 }
579}
580
581static void ApplyDeltaFile(bool full_kernel, bool full_rootfs, bool noop,
582 SignatureTest signature_test, DeltaState* state,
583 bool hash_checks_mandatory,
584 OperationHashTest op_hash_test,
585 DeltaPerformer** performer,
586 uint32_t minor_version) {
587 // Check the metadata.
588 {
589 DeltaArchiveManifest manifest;
Sen Jiangaef1c6f2015-10-07 10:05:32 -0700590 EXPECT_TRUE(PayloadSigner::LoadPayload(state->delta_path,
591 &state->delta,
592 &manifest,
593 nullptr,
594 &state->metadata_size,
595 nullptr));
Sen Jianga4365d62015-09-25 10:52:25 -0700596 LOG(INFO) << "Metadata size: " << state->metadata_size;
597
598
599
600 if (signature_test == kSignatureNone) {
601 EXPECT_FALSE(manifest.has_signatures_offset());
602 EXPECT_FALSE(manifest.has_signatures_size());
603 } else {
604 EXPECT_TRUE(manifest.has_signatures_offset());
605 EXPECT_TRUE(manifest.has_signatures_size());
606 Signatures sigs_message;
607 EXPECT_TRUE(sigs_message.ParseFromArray(
608 &state->delta[state->metadata_size + manifest.signatures_offset()],
609 manifest.signatures_size()));
610 if (signature_test == kSignatureGeneratedShellRotateCl1 ||
611 signature_test == kSignatureGeneratedShellRotateCl2)
612 EXPECT_EQ(2, sigs_message.signatures_size());
613 else
614 EXPECT_EQ(1, sigs_message.signatures_size());
615 const Signatures_Signature& signature = sigs_message.signatures(0);
616 EXPECT_EQ(1, signature.version());
617
618 uint64_t expected_sig_data_length = 0;
619 vector<string> key_paths{kUnittestPrivateKeyPath};
620 if (signature_test == kSignatureGeneratedShellRotateCl1 ||
621 signature_test == kSignatureGeneratedShellRotateCl2) {
622 key_paths.push_back(kUnittestPrivateKey2Path);
623 }
624 EXPECT_TRUE(PayloadSigner::SignatureBlobLength(
625 key_paths,
626 &expected_sig_data_length));
627 EXPECT_EQ(expected_sig_data_length, manifest.signatures_size());
628 EXPECT_FALSE(signature.data().empty());
629 }
630
631 if (noop) {
632 EXPECT_EQ(0, manifest.install_operations_size());
633 EXPECT_EQ(1, manifest.kernel_install_operations_size());
634 }
635
636 if (full_kernel) {
637 EXPECT_FALSE(manifest.has_old_kernel_info());
638 } else {
639 EXPECT_EQ(state->old_kernel_data.size(),
640 manifest.old_kernel_info().size());
641 EXPECT_FALSE(manifest.old_kernel_info().hash().empty());
642 }
643
644 EXPECT_EQ(manifest.new_image_info().channel(), "test-channel");
645 EXPECT_EQ(manifest.new_image_info().board(), "test-board");
646 EXPECT_EQ(manifest.new_image_info().version(), "test-version");
647 EXPECT_EQ(manifest.new_image_info().key(), "test-key");
648 EXPECT_EQ(manifest.new_image_info().build_channel(), "test-build-channel");
649 EXPECT_EQ(manifest.new_image_info().build_version(), "test-build-version");
650
651 if (!full_rootfs) {
652 if (noop) {
653 EXPECT_EQ(manifest.old_image_info().channel(), "test-channel");
654 EXPECT_EQ(manifest.old_image_info().board(), "test-board");
655 EXPECT_EQ(manifest.old_image_info().version(), "test-version");
656 EXPECT_EQ(manifest.old_image_info().key(), "test-key");
657 EXPECT_EQ(manifest.old_image_info().build_channel(),
658 "test-build-channel");
659 EXPECT_EQ(manifest.old_image_info().build_version(),
660 "test-build-version");
661 } else {
662 EXPECT_EQ(manifest.old_image_info().channel(), "src-channel");
663 EXPECT_EQ(manifest.old_image_info().board(), "src-board");
664 EXPECT_EQ(manifest.old_image_info().version(), "src-version");
665 EXPECT_EQ(manifest.old_image_info().key(), "src-key");
666 EXPECT_EQ(manifest.old_image_info().build_channel(),
667 "src-build-channel");
668 EXPECT_EQ(manifest.old_image_info().build_version(),
669 "src-build-version");
670 }
671 }
672
673
674 if (full_rootfs) {
675 EXPECT_FALSE(manifest.has_old_rootfs_info());
676 EXPECT_FALSE(manifest.has_old_image_info());
677 EXPECT_TRUE(manifest.has_new_image_info());
678 } else {
679 EXPECT_EQ(state->image_size, manifest.old_rootfs_info().size());
680 EXPECT_FALSE(manifest.old_rootfs_info().hash().empty());
681 }
682
683 EXPECT_EQ(state->new_kernel_data.size(), manifest.new_kernel_info().size());
684 EXPECT_EQ(state->image_size, manifest.new_rootfs_info().size());
685
686 EXPECT_FALSE(manifest.new_kernel_info().hash().empty());
687 EXPECT_FALSE(manifest.new_rootfs_info().hash().empty());
688 }
689
690 MockPrefs prefs;
691 EXPECT_CALL(prefs, SetInt64(kPrefsManifestMetadataSize,
692 state->metadata_size)).WillOnce(Return(true));
693 EXPECT_CALL(prefs, SetInt64(kPrefsUpdateStateNextOperation, _))
694 .WillRepeatedly(Return(true));
695 EXPECT_CALL(prefs, GetInt64(kPrefsUpdateStateNextOperation, _))
696 .WillOnce(Return(false));
697 EXPECT_CALL(prefs, SetInt64(kPrefsUpdateStateNextDataOffset, _))
698 .WillRepeatedly(Return(true));
699 EXPECT_CALL(prefs, SetInt64(kPrefsUpdateStateNextDataLength, _))
700 .WillRepeatedly(Return(true));
701 EXPECT_CALL(prefs, SetString(kPrefsUpdateStateSHA256Context, _))
702 .WillRepeatedly(Return(true));
703 if (op_hash_test == kValidOperationData && signature_test != kSignatureNone) {
704 EXPECT_CALL(prefs, SetString(kPrefsUpdateStateSignedSHA256Context, _))
705 .WillOnce(Return(true));
706 EXPECT_CALL(prefs, SetString(kPrefsUpdateStateSignatureBlob, _))
707 .WillOnce(Return(true));
708 }
709
710 // Update the A image in place.
Alex Deymoe5e5fe92015-10-05 09:28:19 -0700711 InstallPlan* install_plan = &state->install_plan;
712 install_plan->hash_checks_mandatory = hash_checks_mandatory;
713 install_plan->metadata_size = state->metadata_size;
714 install_plan->is_full_update = full_kernel && full_rootfs;
715 install_plan->source_slot = 0;
716 install_plan->target_slot = 1;
717
718 InstallPlan::Partition root_part;
719 root_part.name = kLegacyPartitionNameRoot;
720
721 InstallPlan::Partition kernel_part;
722 kernel_part.name = kLegacyPartitionNameKernel;
Sen Jianga4365d62015-09-25 10:52:25 -0700723
724 LOG(INFO) << "Setting payload metadata size in Omaha = "
725 << state->metadata_size;
726 ASSERT_TRUE(PayloadSigner::GetMetadataSignature(
727 state->delta.data(),
728 state->metadata_size,
729 kUnittestPrivateKeyPath,
Alex Deymoe5e5fe92015-10-05 09:28:19 -0700730 &install_plan->metadata_signature));
731 EXPECT_FALSE(install_plan->metadata_signature.empty());
Sen Jianga4365d62015-09-25 10:52:25 -0700732
733 *performer = new DeltaPerformer(&prefs,
734 &state->fake_system_state,
Alex Deymoe5e5fe92015-10-05 09:28:19 -0700735 install_plan);
Sen Jianga4365d62015-09-25 10:52:25 -0700736 EXPECT_TRUE(utils::FileExists(kUnittestPublicKeyPath));
737 (*performer)->set_public_key_path(kUnittestPublicKeyPath);
738 DeltaPerformerIntegrationTest::SetSupportedVersion(*performer, minor_version);
739
740 EXPECT_EQ(state->image_size,
741 OmahaHashCalculator::RawHashOfFile(
742 state->a_img,
743 state->image_size,
Alex Deymoe5e5fe92015-10-05 09:28:19 -0700744 &root_part.source_hash));
Sen Jianga4365d62015-09-25 10:52:25 -0700745 EXPECT_TRUE(OmahaHashCalculator::RawHashOfData(
746 state->old_kernel_data,
Alex Deymoe5e5fe92015-10-05 09:28:19 -0700747 &kernel_part.source_hash));
748
749 // This partitions are normally filed by the FilesystemVerifierAction with
750 // the source hashes used for deltas.
751 install_plan->partitions = {root_part, kernel_part};
Sen Jianga4365d62015-09-25 10:52:25 -0700752
753 // With minor version 2, we want the target to be the new image, result_img,
754 // but with version 1, we want to update A in place.
Alex Deymoe5e5fe92015-10-05 09:28:19 -0700755 string target_root, target_kernel;
Sen Jianga4365d62015-09-25 10:52:25 -0700756 if (minor_version == kSourceMinorPayloadVersion) {
Alex Deymoe5e5fe92015-10-05 09:28:19 -0700757 target_root = state->result_img;
758 target_kernel = state->result_kernel;
Sen Jianga4365d62015-09-25 10:52:25 -0700759 } else {
Alex Deymoe5e5fe92015-10-05 09:28:19 -0700760 target_root = state->a_img;
761 target_kernel = state->old_kernel;
Sen Jianga4365d62015-09-25 10:52:25 -0700762 }
763
Alex Deymoe5e5fe92015-10-05 09:28:19 -0700764 state->fake_system_state.fake_boot_control()->SetPartitionDevice(
765 kLegacyPartitionNameRoot, install_plan->source_slot, state->a_img);
766 state->fake_system_state.fake_boot_control()->SetPartitionDevice(
767 kLegacyPartitionNameKernel, install_plan->source_slot, state->old_kernel);
768 state->fake_system_state.fake_boot_control()->SetPartitionDevice(
769 kLegacyPartitionNameRoot, install_plan->target_slot, target_root);
770 state->fake_system_state.fake_boot_control()->SetPartitionDevice(
771 kLegacyPartitionNameKernel, install_plan->target_slot, target_kernel);
Sen Jianga4365d62015-09-25 10:52:25 -0700772
773 ErrorCode expected_error, actual_error;
774 bool continue_writing;
775 switch (op_hash_test) {
776 case kInvalidOperationData: {
777 // Muck with some random offset post the metadata size so that
778 // some operation hash will result in a mismatch.
779 int some_offset = state->metadata_size + 300;
780 LOG(INFO) << "Tampered value at offset: " << some_offset;
781 state->delta[some_offset]++;
782 expected_error = ErrorCode::kDownloadOperationHashMismatch;
783 continue_writing = false;
784 break;
785 }
786
787 case kValidOperationData:
788 default:
789 // no change.
790 expected_error = ErrorCode::kSuccess;
791 continue_writing = true;
792 break;
793 }
794
795 // Write at some number of bytes per operation. Arbitrarily chose 5.
796 const size_t kBytesPerWrite = 5;
797 for (size_t i = 0; i < state->delta.size(); i += kBytesPerWrite) {
798 size_t count = std::min(state->delta.size() - i, kBytesPerWrite);
799 bool write_succeeded = ((*performer)->Write(&state->delta[i],
800 count,
801 &actual_error));
802 // Normally write_succeeded should be true every time and
803 // actual_error should be ErrorCode::kSuccess. If so, continue the loop.
804 // But if we seeded an operation hash error above, then write_succeeded
805 // will be false. The failure may happen at any operation n. So, all
806 // Writes until n-1 should succeed and the nth operation will fail with
807 // actual_error. In this case, we should bail out of the loop because
808 // we cannot proceed applying the delta.
809 if (!write_succeeded) {
810 LOG(INFO) << "Write failed. Checking if it failed with expected error";
811 EXPECT_EQ(expected_error, actual_error);
812 if (!continue_writing) {
813 LOG(INFO) << "Cannot continue writing. Bailing out.";
814 break;
815 }
816 }
817
818 EXPECT_EQ(ErrorCode::kSuccess, actual_error);
819 }
820
821 // If we had continued all the way through, Close should succeed.
822 // Otherwise, it should fail. Check appropriately.
823 bool close_result = (*performer)->Close();
824 if (continue_writing)
825 EXPECT_EQ(0, close_result);
826 else
827 EXPECT_LE(0, close_result);
828}
829
830void VerifyPayloadResult(DeltaPerformer* performer,
831 DeltaState* state,
832 ErrorCode expected_result,
833 uint32_t minor_version) {
834 if (!performer) {
835 EXPECT_TRUE(!"Skipping payload verification since performer is null.");
836 return;
837 }
838
839 int expected_times = (expected_result == ErrorCode::kSuccess) ? 1 : 0;
840 EXPECT_CALL(*(state->fake_system_state.mock_payload_state()),
841 DownloadComplete()).Times(expected_times);
842
843 LOG(INFO) << "Verifying payload for expected result "
844 << expected_result;
845 EXPECT_EQ(expected_result, performer->VerifyPayload(
846 OmahaHashCalculator::OmahaHashOfData(state->delta),
847 state->delta.size()));
848 LOG(INFO) << "Verified payload.";
849
850 if (expected_result != ErrorCode::kSuccess) {
851 // no need to verify new partition if VerifyPayload failed.
852 return;
853 }
854
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700855 brillo::Blob updated_kernel_partition;
Sen Jianga4365d62015-09-25 10:52:25 -0700856 if (minor_version == kSourceMinorPayloadVersion) {
857 CompareFilesByBlock(state->result_kernel, state->new_kernel,
858 state->kernel_size);
859 CompareFilesByBlock(state->result_img, state->b_img,
860 state->image_size);
861 EXPECT_TRUE(utils::ReadFile(state->result_kernel,
862 &updated_kernel_partition));
863 } else {
864 CompareFilesByBlock(state->old_kernel, state->new_kernel,
865 state->kernel_size);
866 CompareFilesByBlock(state->a_img, state->b_img,
867 state->image_size);
868 EXPECT_TRUE(utils::ReadFile(state->old_kernel, &updated_kernel_partition));
869 }
870
871 ASSERT_GE(updated_kernel_partition.size(), arraysize(kNewData));
872 EXPECT_TRUE(std::equal(std::begin(kNewData), std::end(kNewData),
873 updated_kernel_partition.begin()));
874
Alex Deymoe5e5fe92015-10-05 09:28:19 -0700875 const auto& partitions = state->install_plan.partitions;
876 EXPECT_EQ(2, partitions.size());
877 EXPECT_EQ(kLegacyPartitionNameRoot, partitions[0].name);
878 EXPECT_EQ(kLegacyPartitionNameKernel, partitions[1].name);
879
880 EXPECT_EQ(kDefaultKernelSize, partitions[1].target_size);
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700881 brillo::Blob expected_new_kernel_hash;
Sen Jianga4365d62015-09-25 10:52:25 -0700882 EXPECT_TRUE(OmahaHashCalculator::RawHashOfData(state->new_kernel_data,
883 &expected_new_kernel_hash));
Alex Deymoe5e5fe92015-10-05 09:28:19 -0700884 EXPECT_EQ(expected_new_kernel_hash, partitions[1].target_hash);
885
886 EXPECT_EQ(state->image_size, partitions[0].target_size);
Alex Vakulenko3f39d5c2015-10-13 09:27:13 -0700887 brillo::Blob expected_new_rootfs_hash;
Sen Jianga4365d62015-09-25 10:52:25 -0700888 EXPECT_EQ(state->image_size,
889 OmahaHashCalculator::RawHashOfFile(state->b_img,
890 state->image_size,
891 &expected_new_rootfs_hash));
Alex Deymoe5e5fe92015-10-05 09:28:19 -0700892 EXPECT_EQ(expected_new_rootfs_hash, partitions[0].target_hash);
Sen Jianga4365d62015-09-25 10:52:25 -0700893}
894
895void VerifyPayload(DeltaPerformer* performer,
896 DeltaState* state,
897 SignatureTest signature_test,
898 uint32_t minor_version) {
899 ErrorCode expected_result = ErrorCode::kSuccess;
900 switch (signature_test) {
901 case kSignatureNone:
902 expected_result = ErrorCode::kSignedDeltaPayloadExpectedError;
903 break;
904 case kSignatureGeneratedShellBadKey:
905 expected_result = ErrorCode::kDownloadPayloadPubKeyVerificationError;
906 break;
907 default: break; // appease gcc
908 }
909
910 VerifyPayloadResult(performer, state, expected_result, minor_version);
911}
912
913void DoSmallImageTest(bool full_kernel, bool full_rootfs, bool noop,
914 ssize_t chunk_size,
915 SignatureTest signature_test,
916 bool hash_checks_mandatory, uint32_t minor_version) {
917 DeltaState state;
918 DeltaPerformer *performer = nullptr;
919 GenerateDeltaFile(full_kernel, full_rootfs, noop, chunk_size,
920 signature_test, &state, minor_version);
921
922 ScopedPathUnlinker a_img_unlinker(state.a_img);
923 ScopedPathUnlinker b_img_unlinker(state.b_img);
924 ScopedPathUnlinker new_img_unlinker(state.result_img);
925 ScopedPathUnlinker delta_unlinker(state.delta_path);
926 ScopedPathUnlinker old_kernel_unlinker(state.old_kernel);
927 ScopedPathUnlinker new_kernel_unlinker(state.new_kernel);
928 ScopedPathUnlinker result_kernel_unlinker(state.result_kernel);
929 ApplyDeltaFile(full_kernel, full_rootfs, noop, signature_test,
930 &state, hash_checks_mandatory, kValidOperationData,
931 &performer, minor_version);
932 VerifyPayload(performer, &state, signature_test, minor_version);
933 delete performer;
934}
935
936void DoOperationHashMismatchTest(OperationHashTest op_hash_test,
937 bool hash_checks_mandatory) {
938 DeltaState state;
Alex Deymocbf09892015-09-11 16:13:16 -0700939 uint64_t minor_version = kFullPayloadMinorVersion;
Sen Jianga4365d62015-09-25 10:52:25 -0700940 GenerateDeltaFile(true, true, false, -1, kSignatureGenerated, &state,
941 minor_version);
942 ScopedPathUnlinker a_img_unlinker(state.a_img);
943 ScopedPathUnlinker b_img_unlinker(state.b_img);
944 ScopedPathUnlinker delta_unlinker(state.delta_path);
945 ScopedPathUnlinker old_kernel_unlinker(state.old_kernel);
946 ScopedPathUnlinker new_kernel_unlinker(state.new_kernel);
947 DeltaPerformer *performer = nullptr;
948 ApplyDeltaFile(true, true, false, kSignatureGenerated, &state,
949 hash_checks_mandatory, op_hash_test, &performer,
950 minor_version);
951 delete performer;
952}
953
954
955TEST(DeltaPerformerIntegrationTest, RunAsRootSmallImageTest) {
956 DoSmallImageTest(false, false, false, -1, kSignatureGenerator,
957 false, kInPlaceMinorPayloadVersion);
958}
959
960TEST(DeltaPerformerIntegrationTest, RunAsRootSmallImageSignaturePlaceholderTest) {
961 DoSmallImageTest(false, false, false, -1, kSignatureGeneratedPlaceholder,
962 false, kInPlaceMinorPayloadVersion);
963}
964
965TEST(DeltaPerformerIntegrationTest, RunAsRootSmallImageSignaturePlaceholderMismatchTest) {
966 DeltaState state;
967 GenerateDeltaFile(false, false, false, -1,
968 kSignatureGeneratedPlaceholderMismatch, &state,
969 kInPlaceMinorPayloadVersion);
970}
971
972TEST(DeltaPerformerIntegrationTest, RunAsRootSmallImageChunksTest) {
973 DoSmallImageTest(false, false, false, kBlockSize, kSignatureGenerator,
974 false, kInPlaceMinorPayloadVersion);
975}
976
977TEST(DeltaPerformerIntegrationTest, RunAsRootFullKernelSmallImageTest) {
978 DoSmallImageTest(true, false, false, -1, kSignatureGenerator,
979 false, kInPlaceMinorPayloadVersion);
980}
981
982TEST(DeltaPerformerIntegrationTest, RunAsRootFullSmallImageTest) {
983 DoSmallImageTest(true, true, false, -1, kSignatureGenerator,
Alex Deymocbf09892015-09-11 16:13:16 -0700984 true, kFullPayloadMinorVersion);
Sen Jianga4365d62015-09-25 10:52:25 -0700985}
986
987TEST(DeltaPerformerIntegrationTest, RunAsRootNoopSmallImageTest) {
988 DoSmallImageTest(false, false, true, -1, kSignatureGenerator,
989 false, kInPlaceMinorPayloadVersion);
990}
991
992TEST(DeltaPerformerIntegrationTest, RunAsRootSmallImageSignNoneTest) {
993 DoSmallImageTest(false, false, false, -1, kSignatureNone,
994 false, kInPlaceMinorPayloadVersion);
995}
996
997TEST(DeltaPerformerIntegrationTest, RunAsRootSmallImageSignGeneratedTest) {
998 DoSmallImageTest(false, false, false, -1, kSignatureGenerated,
999 true, kInPlaceMinorPayloadVersion);
1000}
1001
1002TEST(DeltaPerformerIntegrationTest, RunAsRootSmallImageSignGeneratedShellTest) {
1003 DoSmallImageTest(false, false, false, -1, kSignatureGeneratedShell,
1004 false, kInPlaceMinorPayloadVersion);
1005}
1006
1007TEST(DeltaPerformerIntegrationTest, RunAsRootSmallImageSignGeneratedShellBadKeyTest) {
1008 DoSmallImageTest(false, false, false, -1, kSignatureGeneratedShellBadKey,
1009 false, kInPlaceMinorPayloadVersion);
1010}
1011
1012TEST(DeltaPerformerIntegrationTest, RunAsRootSmallImageSignGeneratedShellRotateCl1Test) {
1013 DoSmallImageTest(false, false, false, -1, kSignatureGeneratedShellRotateCl1,
1014 false, kInPlaceMinorPayloadVersion);
1015}
1016
1017TEST(DeltaPerformerIntegrationTest, RunAsRootSmallImageSignGeneratedShellRotateCl2Test) {
1018 DoSmallImageTest(false, false, false, -1, kSignatureGeneratedShellRotateCl2,
1019 false, kInPlaceMinorPayloadVersion);
1020}
1021
1022TEST(DeltaPerformerIntegrationTest, RunAsRootSmallImageSourceOpsTest) {
1023 DoSmallImageTest(false, false, false, -1, kSignatureGenerator,
1024 false, kSourceMinorPayloadVersion);
1025}
1026
1027TEST(DeltaPerformerIntegrationTest, RunAsRootMandatoryOperationHashMismatchTest) {
1028 DoOperationHashMismatchTest(kInvalidOperationData, true);
1029}
1030
1031} // namespace chromeos_update_engine