xref: /aosp_15_r20/system/update_engine/payload_consumer/partition_writer_unittest.cc (revision 5a9231315b4521097b8dc3750bc806fcafe0c72f)
1 //
2 // Copyright (C) 2020 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 <memory>
18 #include <vector>
19 
20 #include <brillo/secure_blob.h>
21 #include <gtest/gtest.h>
22 
23 #include "update_engine/common/dynamic_partition_control_stub.h"
24 #include "update_engine/common/error_code.h"
25 #include "update_engine/common/fake_prefs.h"
26 #include "update_engine/common/hash_calculator.h"
27 #include "update_engine/common/test_utils.h"
28 #include "update_engine/common/utils.h"
29 #include "update_engine/payload_consumer/extent_writer.h"
30 #include "update_engine/payload_consumer/fake_file_descriptor.h"
31 #include "update_engine/payload_consumer/file_descriptor.h"
32 #include "update_engine/payload_consumer/install_plan.h"
33 #include "update_engine/payload_consumer/partition_writer.h"
34 #include "update_engine/payload_consumer/payload_constants.h"
35 #include "update_engine/payload_generator/annotated_operation.h"
36 #include "update_engine/payload_generator/delta_diff_generator.h"
37 #include "update_engine/payload_generator/extent_ranges.h"
38 #include "update_engine/payload_generator/payload_generation_config.h"
39 #include "update_engine/update_metadata.pb.h"
40 
41 namespace chromeos_update_engine {
42 
43 class PartitionWriterTest : public testing::Test {
44  public:
45   // Helper function to pretend that the ECC file descriptor was already opened.
46   // Returns a pointer to the created file descriptor.
SetFakeECCFile(size_t size)47   FakeFileDescriptor* SetFakeECCFile(size_t size) {
48     EXPECT_FALSE(writer_.verified_source_fd_.source_ecc_fd_)
49         << "source_ecc_fdb already open.";
50     FakeFileDescriptor* ret = new FakeFileDescriptor();
51     fake_ecc_fd_.reset(ret);
52     // Call open to simulate it was already opened.
53     ret->Open("", 0);
54     ret->SetFileSize(size);
55     writer_.verified_source_fd_.source_ecc_fd_ = fake_ecc_fd_;
56     return ret;
57   }
58 
GetSourceEccRecoveredFailures() const59   uint64_t GetSourceEccRecoveredFailures() const {
60     return writer_.verified_source_fd_.source_ecc_recovered_failures_;
61   }
62 
GenerateSourceCopyOp(const brillo::Blob & copied_data,bool add_hash,PartitionConfig * old_part=nullptr)63   AnnotatedOperation GenerateSourceCopyOp(const brillo::Blob& copied_data,
64                                           bool add_hash,
65                                           PartitionConfig* old_part = nullptr) {
66     PayloadGenerationConfig config;
67     const uint64_t kDefaultBlockSize = config.block_size;
68     EXPECT_EQ(0U, copied_data.size() % kDefaultBlockSize);
69     uint64_t num_blocks = copied_data.size() / kDefaultBlockSize;
70     AnnotatedOperation aop;
71     *(aop.op.add_src_extents()) = ExtentForRange(0, num_blocks);
72     *(aop.op.add_dst_extents()) = ExtentForRange(0, num_blocks);
73     aop.op.set_type(InstallOperation::SOURCE_COPY);
74     brillo::Blob src_hash;
75     EXPECT_TRUE(HashCalculator::RawHashOfData(copied_data, &src_hash));
76     if (add_hash)
77       aop.op.set_src_sha256_hash(src_hash.data(), src_hash.size());
78 
79     return aop;
80   }
81 
PerformSourceCopyOp(const InstallOperation & op,const brillo::Blob blob_data)82   brillo::Blob PerformSourceCopyOp(const InstallOperation& op,
83                                    const brillo::Blob blob_data) {
84     LOG(INFO) << "Using source part " << source_partition.path();
85     FileDescriptorPtr fd(new EintrSafeFileDescriptor());
86     DirectExtentWriter extent_writer{fd};
87     EXPECT_TRUE(fd->Open(source_partition.path().c_str(), O_RDWR));
88     if (HasFailure()) {
89       return {};
90     }
91     EXPECT_TRUE(extent_writer.Init(op.src_extents(), kBlockSize));
92     if (HasFailure()) {
93       return {};
94     }
95     EXPECT_TRUE(extent_writer.Write(blob_data.data(), blob_data.size()));
96     if (HasFailure()) {
97       return {};
98     }
99     fd->Flush();
100 
101     install_part_.source_size = blob_data.size();
102     install_part_.target_size = blob_data.size();
103 
104     ErrorCode error;
105     EXPECT_TRUE(writer_.Init(&install_plan_, true, 0));
106     if (HasFailure()) {
107       return {};
108     }
109     EXPECT_TRUE(writer_.PerformSourceCopyOperation(op, &error));
110     writer_.CheckpointUpdateProgress(1);
111 
112     brillo::Blob output_data;
113     EXPECT_TRUE(utils::ReadFile(target_partition.path(), &output_data));
114     return output_data;
115   }
116 
117   FakePrefs prefs_{};
118   InstallPlan install_plan_{};
119   InstallPlan::Payload payload_{};
120   DynamicPartitionControlStub dynamic_control_{};
121   FileDescriptorPtr fake_ecc_fd_{};
122   DeltaArchiveManifest manifest_{};
123   ScopedTempFile source_partition{"source-part-XXXXXX"};
124   ScopedTempFile target_partition{"target-part-XXXXXX"};
125   InstallPlan::Partition install_part_{.source_path = source_partition.path(),
126                                        .target_path = target_partition.path()};
127   PartitionUpdate partition_update_{};
128   PartitionWriter writer_{
129       partition_update_, install_part_, &dynamic_control_, kBlockSize, false};
130 };
131 // Test that the plain file descriptor is used to read a partition
132 // when no hash is available for SOURCE_COPY but it falls back to the normal
133 // file descriptor when the size of the error corrected one is too small.
TEST_F(PartitionWriterTest,ErrorCorrectionSourceCopyWhenNoHashFallbackTest)134 TEST_F(PartitionWriterTest, ErrorCorrectionSourceCopyWhenNoHashFallbackTest) {
135   constexpr size_t kCopyOperationSize = 4 * 4096;
136   ScopedTempFile source("Source-XXXXXX");
137   // Setup the source path with the right expected data.
138   brillo::Blob expected_data = FakeFileDescriptorData(kCopyOperationSize);
139   ASSERT_TRUE(test_utils::WriteFileVector(source.path(), expected_data));
140 
141   // Setup the fec file descriptor as the fake stream, with smaller data than
142   // the expected.
143   FakeFileDescriptor* fake_fec = SetFakeECCFile(kCopyOperationSize / 2);
144 
145   PartitionConfig old_part(kPartitionNameRoot);
146   old_part.path = source.path();
147   old_part.size = expected_data.size();
148 
149   // The payload operation doesn't include an operation hash.
150   auto source_copy_op = GenerateSourceCopyOp(expected_data, false, &old_part);
151   ASSERT_NO_FATAL_FAILURE();
152   auto output_data = PerformSourceCopyOp(source_copy_op.op, expected_data);
153   ASSERT_NO_FATAL_FAILURE();
154   ASSERT_EQ(output_data, expected_data);
155 
156   // Verify that the fake_fec was not used
157   ASSERT_LE(0U, fake_fec->GetReadOps().size());
158 }
159 
160 // Test that the error-corrected file descriptor is used to read the partition
161 // since the source partition doesn't match the operation hash.
TEST_F(PartitionWriterTest,ErrorCorrectionSourceCopyFallbackTest)162 TEST_F(PartitionWriterTest, ErrorCorrectionSourceCopyFallbackTest) {
163   constexpr size_t kCopyOperationSize = 4 * 4096;
164   // Write invalid data to the source image, which doesn't match the expected
165   // hash.
166   brillo::Blob invalid_data(kCopyOperationSize, 0x55);
167 
168   // Setup the fec file descriptor as the fake stream, which matches
169   // |expected_data|.
170   FakeFileDescriptor* fake_fec = SetFakeECCFile(kCopyOperationSize);
171   brillo::Blob expected_data = FakeFileDescriptorData(kCopyOperationSize);
172 
173   auto source_copy_op = GenerateSourceCopyOp(expected_data, true);
174   ASSERT_NO_FATAL_FAILURE();
175   auto output_data = PerformSourceCopyOp(source_copy_op.op, invalid_data);
176   ASSERT_NO_FATAL_FAILURE();
177   ASSERT_EQ(output_data, expected_data);
178 
179   // Verify that the fake_fec was actually used.
180   EXPECT_GE(fake_fec->GetReadOps().size(), 1U);
181   EXPECT_EQ(1U, GetSourceEccRecoveredFailures());
182 }
183 
TEST_F(PartitionWriterTest,ChooseSourceFDTest)184 TEST_F(PartitionWriterTest, ChooseSourceFDTest) {
185   constexpr size_t kSourceSize = 4 * 4096;
186   ScopedTempFile source("Source-XXXXXX");
187   // Write invalid data to the source image, which doesn't match the expected
188   // hash.
189   brillo::Blob invalid_data(kSourceSize, 0x55);
190   ASSERT_TRUE(test_utils::WriteFileVector(source.path(), invalid_data));
191 
192   writer_.verified_source_fd_.source_fd_ =
193       std::make_shared<EintrSafeFileDescriptor>();
194   writer_.verified_source_fd_.source_fd_->Open(source.path().c_str(), O_RDONLY);
195 
196   // Setup the fec file descriptor as the fake stream, which matches
197   // |expected_data|.
198   FakeFileDescriptor* fake_fec = SetFakeECCFile(kSourceSize);
199   brillo::Blob expected_data = FakeFileDescriptorData(kSourceSize);
200 
201   InstallOperation op;
202   *(op.add_src_extents()) = ExtentForRange(0, kSourceSize / 4096);
203   brillo::Blob src_hash;
204   ASSERT_TRUE(HashCalculator::RawHashOfData(expected_data, &src_hash));
205   op.set_src_sha256_hash(src_hash.data(), src_hash.size());
206 
207   ErrorCode error = ErrorCode::kSuccess;
208   ASSERT_NE(writer_.ChooseSourceFD(op, &error), nullptr);
209   ASSERT_EQ(ErrorCode::kSuccess, error);
210   // Verify that the fake_fec was actually used.
211   ASSERT_EQ(1U, fake_fec->GetReadOps().size());
212   ASSERT_EQ(1U, GetSourceEccRecoveredFailures());
213 }
214 
215 }  // namespace chromeos_update_engine
216