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Side by Side Diff: content/browser/blob_storage/blob_async_builder_host_unittest.cc

Issue 2055053003: [BlobAsync] Disk support for blob storage (Closed) Base URL: https://chromium.googlesource.com/chromium/src.git@master
Patch Set: Fixed layout tests, cleaned up test visibility Created 4 years, 5 months ago
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1 // Copyright 2015 The Chromium Authors. All rights reserved. 1 // Copyright 2015 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 "storage/browser/blob/blob_async_builder_host.h" 5 #include "storage/browser/blob/blob_async_builder_host.h"
6 6
7 #include <stddef.h> 7 #include <stddef.h>
8 #include <stdint.h> 8 #include <stdint.h>
9 #include <string.h> 9 #include <string.h>
10 10
(...skipping 11 matching lines...) Expand all
22 namespace storage { 22 namespace storage {
23 namespace { 23 namespace {
24 const std::string kBlobUUID = "blobUUIDYAY"; 24 const std::string kBlobUUID = "blobUUIDYAY";
25 const std::string kContentType = "content_type"; 25 const std::string kContentType = "content_type";
26 const std::string kContentDisposition = "content_disposition"; 26 const std::string kContentDisposition = "content_disposition";
27 const std::string kCompletedBlobUUID = "completedBlob"; 27 const std::string kCompletedBlobUUID = "completedBlob";
28 const std::string kCompletedBlobData = "completedBlobData"; 28 const std::string kCompletedBlobData = "completedBlobData";
29 29
30 const size_t kTestBlobStorageIPCThresholdBytes = 5; 30 const size_t kTestBlobStorageIPCThresholdBytes = 5;
31 const size_t kTestBlobStorageMaxSharedMemoryBytes = 20; 31 const size_t kTestBlobStorageMaxSharedMemoryBytes = 20;
32
33 const size_t kTestBlobStorageMaxBlobMemorySize = 400;
34 const uint64_t kTestBlobStorageMaxDiskSpace = 4000;
35 const size_t kTestBlobStorageInFlightMemory = 10;
36 const uint64_t kTestBlobStorageMinFileSizeBytes = 10;
32 const uint64_t kTestBlobStorageMaxFileSizeBytes = 100; 37 const uint64_t kTestBlobStorageMaxFileSizeBytes = 100;
33 38
34 void PopulateBytes(char* bytes, size_t length) { 39 void PopulateBytes(char* bytes, size_t length) {
35 for (size_t i = 0; i < length; i++) { 40 for (size_t i = 0; i < length; i++) {
36 bytes[i] = static_cast<char>(i); 41 bytes[i] = static_cast<char>(i);
37 } 42 }
38 } 43 }
39 44
40 void AddMemoryItem(size_t length, std::vector<DataElement>* out) { 45 void AddMemoryItem(size_t length, std::vector<DataElement>* out) {
41 DataElement bytes; 46 DataElement bytes;
(...skipping 18 matching lines...) Expand all
60 void AddBlobItem(std::vector<DataElement>* out) { 65 void AddBlobItem(std::vector<DataElement>* out) {
61 DataElement blob; 66 DataElement blob;
62 blob.SetToBlob(kCompletedBlobUUID); 67 blob.SetToBlob(kCompletedBlobUUID);
63 out->push_back(blob); 68 out->push_back(blob);
64 } 69 }
65 } // namespace 70 } // namespace
66 71
67 class BlobAsyncBuilderHostTest : public testing::Test { 72 class BlobAsyncBuilderHostTest : public testing::Test {
68 public: 73 public:
69 BlobAsyncBuilderHostTest() 74 BlobAsyncBuilderHostTest()
70 : cancel_code_(IPCBlobCreationCancelCode::UNKNOWN), 75 : status_code_(BlobStatus::ERR_INVALID_CONSTRUCTION_ARGUMENTS),
71 request_called_(false) {} 76 request_called_(false) {}
72 ~BlobAsyncBuilderHostTest() override {} 77 ~BlobAsyncBuilderHostTest() override {}
73 78
74 void SetUp() override { 79 void SetUp() override {
75 cancel_code_ = IPCBlobCreationCancelCode::UNKNOWN; 80 status_code_ = BlobStatus::ERR_INVALID_CONSTRUCTION_ARGUMENTS;
76 request_called_ = false; 81 request_called_ = false;
77 requests_.clear(); 82 requests_.clear();
78 memory_handles_.clear(); 83 memory_handles_.clear();
79 host_.SetMemoryConstantsForTesting(kTestBlobStorageIPCThresholdBytes, 84 context_.mutable_memory_controller()->SetMemoryConstantsForTesting(
80 kTestBlobStorageMaxSharedMemoryBytes, 85 kTestBlobStorageIPCThresholdBytes, kTestBlobStorageMaxSharedMemoryBytes,
81 kTestBlobStorageMaxFileSizeBytes); 86 kTestBlobStorageMaxBlobMemorySize, kTestBlobStorageMaxDiskSpace,
87 kTestBlobStorageInFlightMemory, kTestBlobStorageMinFileSizeBytes,
88 kTestBlobStorageMaxFileSizeBytes);
82 BlobDataBuilder builder(kCompletedBlobUUID); 89 BlobDataBuilder builder(kCompletedBlobUUID);
83 builder.AppendData(kCompletedBlobData); 90 builder.AppendData(kCompletedBlobData);
84 completed_blob_handle_ = context_.AddFinishedBlob(builder); 91 completed_blob_handle_ = context_.AddFinishedBlob(builder);
85 completed_blob_uuid_set_ = {kCompletedBlobUUID}; 92 EXPECT_EQ(BlobStatus::DONE, completed_blob_handle_->GetBlobStatus());
86 } 93 }
87 94
95 void StatusCallback(BlobStatus status) { status_code_ = status; }
96
88 void RequestMemoryCallback( 97 void RequestMemoryCallback(
89 std::unique_ptr<std::vector<storage::BlobItemBytesRequest>> requests, 98 std::unique_ptr<std::vector<storage::BlobItemBytesRequest>> requests,
90 std::unique_ptr<std::vector<base::SharedMemoryHandle>> 99 std::unique_ptr<std::vector<base::SharedMemoryHandle>>
91 shared_memory_handles, 100 shared_memory_handles,
92 std::unique_ptr<std::vector<base::File>> files) { 101 std::unique_ptr<std::vector<base::File>> files) {
93 requests_ = std::move(*requests); 102 requests_ = std::move(*requests);
94 memory_handles_ = std::move(*shared_memory_handles); 103 memory_handles_ = std::move(*shared_memory_handles);
95 request_called_ = true; 104 request_called_ = true;
96 } 105 }
97 106
98 BlobTransportResult BuildBlobAsync( 107 BlobStatus BuildBlobAsync(const std::string& uuid,
99 const std::vector<DataElement>& descriptions, 108 const std::vector<DataElement>& descriptions) {
100 const std::set<std::string>& referenced_blob_uuids,
101 size_t memory_available) {
102 request_called_ = false; 109 request_called_ = false;
103 BlobTransportResult register_result = 110 return host_.RegisterBlob(
104 host_.RegisterBlobUUID(kBlobUUID, kContentType, kContentDisposition, 111 uuid, kContentType, kContentDisposition, descriptions, &context_,
105 referenced_blob_uuids, &context_);
106 if (register_result != BlobTransportResult::DONE) {
107 return register_result;
108 }
109 return host_.StartBuildingBlob(
110 kBlobUUID, descriptions, memory_available, &context_,
111 base::Bind(&BlobAsyncBuilderHostTest::RequestMemoryCallback, 112 base::Bind(&BlobAsyncBuilderHostTest::RequestMemoryCallback,
113 base::Unretained(this)),
114 base::Bind(&BlobAsyncBuilderHostTest::StatusCallback,
112 base::Unretained(this))); 115 base::Unretained(this)));
113 } 116 }
114 117
115 void DecrementBlobRefCount(const std::string& uuid) { 118 void DecrementBlobRefCount(const std::string& uuid) {
116 context_.DecrementBlobRefCount(uuid); 119 context_.DecrementBlobRefCount(uuid);
117 } 120 }
118 121
119 bool IsBeingBuiltInContext(const std::string& uuid) { 122 bool IsBeingBuiltInContext(const std::string& uuid) {
120 return context_.IsBeingBuilt(uuid); 123 return context_.GetBlobStatus(uuid) == BlobStatus::PENDING_DATA_POPULATION;
121 } 124 }
122 125
123 content::TestBrowserThreadBundle browser_thread_bundle_; 126 content::TestBrowserThreadBundle browser_thread_bundle_;
124 BlobStorageContext context_; 127 BlobStorageContext context_;
125 BlobAsyncBuilderHost host_; 128 BlobAsyncBuilderHost host_;
126 IPCBlobCreationCancelCode cancel_code_; 129 BlobStatus status_code_;
127 130
128 bool request_called_; 131 bool request_called_;
129 std::vector<storage::BlobItemBytesRequest> requests_; 132 std::vector<storage::BlobItemBytesRequest> requests_;
130 std::vector<base::SharedMemoryHandle> memory_handles_; 133 std::vector<base::SharedMemoryHandle> memory_handles_;
131 std::set<std::string> completed_blob_uuid_set_;
132
133 std::unique_ptr<BlobDataHandle> completed_blob_handle_; 134 std::unique_ptr<BlobDataHandle> completed_blob_handle_;
134 }; 135 };
135 136
136 // The 'shortcut' method is when the data is included in the initial IPCs and 137 // The 'shortcut' method is when the data is included in the initial IPCs and
137 // the browser uses that instead of requesting the memory. 138 // the browser uses that instead of requesting the memory.
138 TEST_F(BlobAsyncBuilderHostTest, TestShortcut) { 139 TEST_F(BlobAsyncBuilderHostTest, TestShortcut) {
139 std::vector<DataElement> descriptions; 140 std::vector<DataElement> descriptions;
140 141
141 AddShortcutMemoryItem(10, &descriptions); 142 AddShortcutMemoryItem(10, &descriptions);
142 AddBlobItem(&descriptions); 143 AddBlobItem(&descriptions);
143 AddShortcutMemoryItem(5000, &descriptions); 144 AddShortcutMemoryItem(300, &descriptions);
144 145
145 BlobDataBuilder expected(kBlobUUID); 146 BlobDataBuilder expected(kBlobUUID);
146 expected.set_content_type(kContentType); 147 expected.set_content_type(kContentType);
147 expected.set_content_disposition(kContentDisposition); 148 expected.set_content_disposition(kContentDisposition);
148 AddShortcutMemoryItem(10, &expected); 149 AddShortcutMemoryItem(10, &expected);
149 expected.AppendData(kCompletedBlobData); 150 expected.AppendData(kCompletedBlobData);
150 AddShortcutMemoryItem(5000, &expected); 151 AddShortcutMemoryItem(300, &expected);
151 152
152 EXPECT_EQ(BlobTransportResult::DONE, 153 EXPECT_EQ(BlobStatus::DONE, BuildBlobAsync(kBlobUUID, descriptions));
153 BuildBlobAsync(descriptions, completed_blob_uuid_set_, 5010));
154 154
155 EXPECT_FALSE(request_called_); 155 EXPECT_FALSE(request_called_);
156 EXPECT_EQ(0u, host_.blob_building_count()); 156 EXPECT_EQ(0u, host_.blob_building_count());
157 std::unique_ptr<BlobDataHandle> handle = 157 std::unique_ptr<BlobDataHandle> handle =
158 context_.GetBlobDataFromUUID(kBlobUUID); 158 context_.GetBlobDataFromUUID(kBlobUUID);
159 EXPECT_FALSE(handle->IsBeingBuilt()); 159 EXPECT_FALSE(handle->IsBeingBuilt());
160 EXPECT_FALSE(handle->IsBroken()); 160 ASSERT_FALSE(handle->IsBroken());
161 std::unique_ptr<BlobDataSnapshot> data = handle->CreateSnapshot(); 161 std::unique_ptr<BlobDataSnapshot> data = handle->CreateSnapshot();
162 EXPECT_EQ(expected, *data); 162 EXPECT_EQ(expected, *data);
163 data.reset(); 163 data.reset();
164 handle.reset(); 164 handle.reset();
165 base::RunLoop().RunUntilIdle(); 165 base::RunLoop().RunUntilIdle();
166 }; 166 };
167 167
168 TEST_F(BlobAsyncBuilderHostTest, TestShortcutNoRoom) { 168 TEST_F(BlobAsyncBuilderHostTest, TestShortcutNoRoom) {
169 std::vector<DataElement> descriptions; 169 std::vector<DataElement> descriptions;
170 170
171 AddShortcutMemoryItem(10, &descriptions); 171 AddShortcutMemoryItem(10, &descriptions);
172 AddBlobItem(&descriptions); 172 AddBlobItem(&descriptions);
173 AddShortcutMemoryItem(5000, &descriptions); 173 AddShortcutMemoryItem(5000, &descriptions);
174 174
175 EXPECT_EQ(BlobTransportResult::CANCEL_MEMORY_FULL, 175 EXPECT_EQ(BlobStatus::ERR_OUT_OF_MEMORY,
176 BuildBlobAsync(descriptions, completed_blob_uuid_set_, 5000)); 176 BuildBlobAsync(kBlobUUID, descriptions));
177 177
178 EXPECT_FALSE(request_called_); 178 EXPECT_FALSE(request_called_);
179 EXPECT_EQ(0u, host_.blob_building_count()); 179 EXPECT_EQ(0u, host_.blob_building_count());
180 }; 180 };
181 181
182 TEST_F(BlobAsyncBuilderHostTest, TestSingleSharedMemRequest) { 182 TEST_F(BlobAsyncBuilderHostTest, TestSingleSharedMemRequest) {
183 std::vector<DataElement> descriptions; 183 std::vector<DataElement> descriptions;
184 const size_t kSize = kTestBlobStorageIPCThresholdBytes + 1; 184 const size_t kSize = kTestBlobStorageIPCThresholdBytes + 1;
185 AddMemoryItem(kSize, &descriptions); 185 AddMemoryItem(kSize, &descriptions);
186 186
187 EXPECT_EQ(BlobTransportResult::PENDING_RESPONSES, 187 EXPECT_EQ(BlobStatus::PENDING_DATA_POPULATION,
188 BuildBlobAsync(descriptions, std::set<std::string>(), 188 BuildBlobAsync(kBlobUUID, descriptions));
189 kTestBlobStorageIPCThresholdBytes + 1));
190 189
191 EXPECT_TRUE(request_called_); 190 EXPECT_TRUE(request_called_);
192 EXPECT_EQ(1u, host_.blob_building_count()); 191 EXPECT_EQ(1u, host_.blob_building_count());
193 ASSERT_EQ(1u, requests_.size()); 192 ASSERT_EQ(1u, requests_.size());
194 request_called_ = false; 193 request_called_ = false;
195 194
196 EXPECT_EQ( 195 EXPECT_EQ(
197 BlobItemBytesRequest::CreateSharedMemoryRequest(0, 0, 0, kSize, 0, 0), 196 BlobItemBytesRequest::CreateSharedMemoryRequest(0, 0, 0, kSize, 0, 0),
198 requests_.at(0)); 197 requests_.at(0));
199 }; 198 };
200 199
201 TEST_F(BlobAsyncBuilderHostTest, TestMultipleSharedMemRequests) { 200 TEST_F(BlobAsyncBuilderHostTest, TestMultipleSharedMemRequests) {
202 std::vector<DataElement> descriptions; 201 std::vector<DataElement> descriptions;
203 const size_t kSize = kTestBlobStorageMaxSharedMemoryBytes + 1; 202 const size_t kSize = kTestBlobStorageMaxSharedMemoryBytes + 1;
204 const char kFirstBlockByte = 7; 203 const char kFirstBlockByte = 7;
205 const char kSecondBlockByte = 19; 204 const char kSecondBlockByte = 19;
206 AddMemoryItem(kSize, &descriptions); 205 AddMemoryItem(kSize, &descriptions);
207 206
208 BlobDataBuilder expected(kBlobUUID); 207 BlobDataBuilder expected(kBlobUUID);
209 expected.set_content_type(kContentType); 208 expected.set_content_type(kContentType);
210 expected.set_content_disposition(kContentDisposition); 209 expected.set_content_disposition(kContentDisposition);
211 char data[kSize]; 210 char data[kSize];
212 memset(data, kFirstBlockByte, kTestBlobStorageMaxSharedMemoryBytes); 211 memset(data, kFirstBlockByte, kTestBlobStorageMaxSharedMemoryBytes);
213 expected.AppendData(data, kTestBlobStorageMaxSharedMemoryBytes); 212 expected.AppendData(data, kTestBlobStorageMaxSharedMemoryBytes);
214 expected.AppendData(&kSecondBlockByte, 1); 213 expected.AppendData(&kSecondBlockByte, 1);
215 214
216 EXPECT_EQ(BlobTransportResult::PENDING_RESPONSES, 215 EXPECT_EQ(BlobStatus::PENDING_DATA_POPULATION,
217 BuildBlobAsync(descriptions, std::set<std::string>(), 216 BuildBlobAsync(kBlobUUID, descriptions));
218 kTestBlobStorageMaxSharedMemoryBytes + 1));
219 217
220 EXPECT_TRUE(request_called_); 218 EXPECT_TRUE(request_called_);
221 EXPECT_EQ(1u, host_.blob_building_count()); 219 EXPECT_EQ(1u, host_.blob_building_count());
222 ASSERT_EQ(1u, requests_.size()); 220 ASSERT_EQ(1u, requests_.size());
223 request_called_ = false; 221 request_called_ = false;
224 222
225 // We need to grab a duplicate handle so we can have two blocks open at the 223 // We need to grab a duplicate handle so we can have two blocks open at the
226 // same time. 224 // same time.
227 base::SharedMemoryHandle handle = 225 base::SharedMemoryHandle handle =
228 base::SharedMemory::DuplicateHandle(memory_handles_.at(0)); 226 base::SharedMemory::DuplicateHandle(memory_handles_.at(0));
229 EXPECT_TRUE(base::SharedMemory::IsHandleValid(handle)); 227 EXPECT_TRUE(base::SharedMemory::IsHandleValid(handle));
230 base::SharedMemory shared_memory(handle, false); 228 base::SharedMemory shared_memory(handle, false);
231 EXPECT_TRUE(shared_memory.Map(kTestBlobStorageMaxSharedMemoryBytes)); 229 EXPECT_TRUE(shared_memory.Map(kTestBlobStorageMaxSharedMemoryBytes));
232 230
233 EXPECT_EQ(BlobItemBytesRequest::CreateSharedMemoryRequest( 231 EXPECT_EQ(BlobItemBytesRequest::CreateSharedMemoryRequest(
234 0, 0, 0, kTestBlobStorageMaxSharedMemoryBytes, 0, 0), 232 0, 0, 0, kTestBlobStorageMaxSharedMemoryBytes, 0, 0),
235 requests_.at(0)); 233 requests_.at(0));
236 234
237 memset(shared_memory.memory(), kFirstBlockByte, 235 memset(shared_memory.memory(), kFirstBlockByte,
238 kTestBlobStorageMaxSharedMemoryBytes); 236 kTestBlobStorageMaxSharedMemoryBytes);
239 237
240 BlobItemBytesResponse response(0); 238 BlobItemBytesResponse response(0);
241 std::vector<BlobItemBytesResponse> responses = {response}; 239 std::vector<BlobItemBytesResponse> responses = {response};
242 EXPECT_EQ(BlobTransportResult::PENDING_RESPONSES, 240 EXPECT_EQ(BlobStatus::PENDING_DATA_POPULATION,
243 host_.OnMemoryResponses(kBlobUUID, responses, &context_)); 241 host_.OnMemoryResponses(kBlobUUID, responses, &context_));
244 242
245 EXPECT_TRUE(request_called_); 243 EXPECT_TRUE(request_called_);
246 EXPECT_EQ(1u, host_.blob_building_count()); 244 EXPECT_EQ(1u, host_.blob_building_count());
247 ASSERT_EQ(1u, requests_.size()); 245 ASSERT_EQ(1u, requests_.size());
248 request_called_ = false; 246 request_called_ = false;
249 247
250 EXPECT_EQ(BlobItemBytesRequest::CreateSharedMemoryRequest( 248 EXPECT_EQ(BlobItemBytesRequest::CreateSharedMemoryRequest(
251 1, 0, kTestBlobStorageMaxSharedMemoryBytes, 1, 0, 0), 249 1, 0, kTestBlobStorageMaxSharedMemoryBytes, 1, 0, 0),
252 requests_.at(0)); 250 requests_.at(0));
253 251
254 memset(shared_memory.memory(), kSecondBlockByte, 1); 252 memset(shared_memory.memory(), kSecondBlockByte, 1);
255 253
256 response.request_number = 1; 254 response.request_number = 1;
257 responses[0] = response; 255 responses[0] = response;
258 EXPECT_EQ(BlobTransportResult::DONE, 256 EXPECT_EQ(BlobStatus::DONE,
259 host_.OnMemoryResponses(kBlobUUID, responses, &context_)); 257 host_.OnMemoryResponses(kBlobUUID, responses, &context_));
260 EXPECT_FALSE(request_called_); 258 EXPECT_FALSE(request_called_);
261 EXPECT_EQ(0u, host_.blob_building_count()); 259 EXPECT_EQ(0u, host_.blob_building_count());
262 std::unique_ptr<BlobDataHandle> blob_handle = 260 std::unique_ptr<BlobDataHandle> blob_handle =
263 context_.GetBlobDataFromUUID(kBlobUUID); 261 context_.GetBlobDataFromUUID(kBlobUUID);
264 EXPECT_FALSE(blob_handle->IsBeingBuilt()); 262 EXPECT_FALSE(blob_handle->IsBeingBuilt());
265 EXPECT_FALSE(blob_handle->IsBroken()); 263 EXPECT_FALSE(blob_handle->IsBroken());
266 std::unique_ptr<BlobDataSnapshot> blob_data = blob_handle->CreateSnapshot(); 264 std::unique_ptr<BlobDataSnapshot> blob_data = blob_handle->CreateSnapshot();
267 EXPECT_EQ(expected, *blob_data); 265 EXPECT_EQ(expected, *blob_data);
268 }; 266 };
269 267
270 TEST_F(BlobAsyncBuilderHostTest, TestBasicIPCAndStopBuilding) { 268 TEST_F(BlobAsyncBuilderHostTest, TestBasicIPCAndStopBuilding) {
271 std::vector<DataElement> descriptions; 269 std::vector<DataElement> descriptions;
272 270
273 AddMemoryItem(2, &descriptions); 271 AddMemoryItem(2, &descriptions);
274 AddBlobItem(&descriptions); 272 AddBlobItem(&descriptions);
275 AddMemoryItem(2, &descriptions); 273 AddMemoryItem(2, &descriptions);
276 274
277 BlobDataBuilder expected(kBlobUUID); 275 BlobDataBuilder expected(kBlobUUID);
278 expected.set_content_type(kContentType); 276 expected.set_content_type(kContentType);
279 expected.set_content_disposition(kContentDisposition); 277 expected.set_content_disposition(kContentDisposition);
280 AddShortcutMemoryItem(2, &expected); 278 AddShortcutMemoryItem(2, &expected);
281 expected.AppendData(kCompletedBlobData); 279 expected.AppendData(kCompletedBlobData);
282 AddShortcutMemoryItem(2, &expected); 280 AddShortcutMemoryItem(2, &expected);
283 281
284 EXPECT_EQ(BlobTransportResult::PENDING_RESPONSES, 282 EXPECT_EQ(BlobStatus::PENDING_DATA_POPULATION,
285 BuildBlobAsync(descriptions, completed_blob_uuid_set_, 5010)); 283 BuildBlobAsync(kBlobUUID, descriptions));
286 host_.CancelBuildingBlob(kBlobUUID, IPCBlobCreationCancelCode::UNKNOWN, 284 host_.CancelBuildingBlob(kBlobUUID, BlobStatus::ERR_OUT_OF_MEMORY, &context_);
287 &context_);
288 285
289 // Check that we're broken, and then remove the blob. 286 // Check that we're broken, and then remove the blob.
290 std::unique_ptr<BlobDataHandle> blob_handle = 287 std::unique_ptr<BlobDataHandle> blob_handle =
291 context_.GetBlobDataFromUUID(kBlobUUID); 288 context_.GetBlobDataFromUUID(kBlobUUID);
292 EXPECT_FALSE(blob_handle->IsBeingBuilt()); 289 EXPECT_FALSE(blob_handle->IsBeingBuilt());
293 EXPECT_TRUE(blob_handle->IsBroken()); 290 EXPECT_TRUE(blob_handle->IsBroken());
294 blob_handle.reset(); 291 blob_handle.reset();
295 DecrementBlobRefCount(kBlobUUID); 292 DecrementBlobRefCount(kBlobUUID);
296 base::RunLoop().RunUntilIdle(); 293 base::RunLoop().RunUntilIdle();
297 blob_handle = context_.GetBlobDataFromUUID(kBlobUUID); 294 blob_handle = context_.GetBlobDataFromUUID(kBlobUUID);
298 EXPECT_FALSE(blob_handle.get()); 295 EXPECT_FALSE(blob_handle.get());
299 296
300 // This should succeed because we've removed all references to the blob. 297 // This should succeed because we've removed all references to the blob.
301 EXPECT_EQ(BlobTransportResult::PENDING_RESPONSES, 298 EXPECT_EQ(BlobStatus::PENDING_DATA_POPULATION,
302 BuildBlobAsync(descriptions, completed_blob_uuid_set_, 5010)); 299 BuildBlobAsync(kBlobUUID, descriptions));
303 300
304 EXPECT_TRUE(request_called_); 301 EXPECT_TRUE(request_called_);
305 EXPECT_EQ(1u, host_.blob_building_count()); 302 EXPECT_EQ(1u, host_.blob_building_count());
306 request_called_ = false; 303 request_called_ = false;
307 304
308 BlobItemBytesResponse response1(0); 305 BlobItemBytesResponse response1(0);
309 PopulateBytes(response1.allocate_mutable_data(2), 2); 306 PopulateBytes(response1.allocate_mutable_data(2), 2);
310 BlobItemBytesResponse response2(1); 307 BlobItemBytesResponse response2(1);
311 PopulateBytes(response2.allocate_mutable_data(2), 2); 308 PopulateBytes(response2.allocate_mutable_data(2), 2);
312 std::vector<BlobItemBytesResponse> responses = {response1, response2}; 309 std::vector<BlobItemBytesResponse> responses = {response1, response2};
313 310
314 EXPECT_EQ(BlobTransportResult::DONE, 311 EXPECT_EQ(BlobStatus::DONE,
315 host_.OnMemoryResponses(kBlobUUID, responses, &context_)); 312 host_.OnMemoryResponses(kBlobUUID, responses, &context_));
316 EXPECT_FALSE(request_called_); 313 EXPECT_FALSE(request_called_);
317 EXPECT_EQ(0u, host_.blob_building_count()); 314 EXPECT_EQ(0u, host_.blob_building_count());
318 blob_handle = context_.GetBlobDataFromUUID(kBlobUUID); 315 blob_handle = context_.GetBlobDataFromUUID(kBlobUUID);
319 EXPECT_FALSE(blob_handle->IsBeingBuilt()); 316 EXPECT_FALSE(blob_handle->IsBeingBuilt());
320 EXPECT_FALSE(blob_handle->IsBroken()); 317 EXPECT_FALSE(blob_handle->IsBroken());
321 std::unique_ptr<BlobDataSnapshot> blob_data = blob_handle->CreateSnapshot(); 318 std::unique_ptr<BlobDataSnapshot> blob_data = blob_handle->CreateSnapshot();
322 EXPECT_EQ(expected, *blob_data); 319 EXPECT_EQ(expected, *blob_data);
323 }; 320 };
324 321
325 TEST_F(BlobAsyncBuilderHostTest, TestBreakingAllBuilding) { 322 TEST_F(BlobAsyncBuilderHostTest, TestBreakingAllBuilding) {
326 const std::string& kBlob1 = "blob1"; 323 const std::string& kBlob1 = "blob1";
327 const std::string& kBlob2 = "blob2"; 324 const std::string& kBlob2 = "blob2";
328 const std::string& kBlob3 = "blob3"; 325 const std::string& kBlob3 = "blob3";
329 326
330 // Register blobs.
331 EXPECT_EQ(BlobTransportResult::DONE,
332 host_.RegisterBlobUUID(kBlob1, kContentType, kContentDisposition,
333 std::set<std::string>(), &context_));
334 EXPECT_EQ(BlobTransportResult::DONE,
335 host_.RegisterBlobUUID(kBlob2, kContentType, kContentDisposition,
336 std::set<std::string>(), &context_));
337 EXPECT_EQ(BlobTransportResult::DONE,
338 host_.RegisterBlobUUID(kBlob3, kContentType, kContentDisposition,
339 std::set<std::string>(), &context_));
340
341 // Start building one of them.
342 std::vector<DataElement> descriptions; 327 std::vector<DataElement> descriptions;
343 AddMemoryItem(2, &descriptions); 328 AddMemoryItem(2, &descriptions);
344 EXPECT_EQ(BlobTransportResult::PENDING_RESPONSES, 329
345 host_.StartBuildingBlob( 330 // Register blobs.
346 kBlob1, descriptions, 2, &context_, 331 EXPECT_EQ(BlobStatus::PENDING_DATA_POPULATION,
347 base::Bind(&BlobAsyncBuilderHostTest::RequestMemoryCallback, 332 BuildBlobAsync(kBlob1, descriptions));
348 base::Unretained(this)))); 333 EXPECT_EQ(BlobStatus::PENDING_DATA_POPULATION,
334 BuildBlobAsync(kBlob2, descriptions));
335 EXPECT_EQ(BlobStatus::PENDING_DATA_POPULATION,
336 BuildBlobAsync(kBlob3, descriptions));
337
349 EXPECT_TRUE(request_called_); 338 EXPECT_TRUE(request_called_);
350 339
351 std::unique_ptr<BlobDataHandle> blob_handle1 = 340 std::unique_ptr<BlobDataHandle> blob_handle1 =
352 context_.GetBlobDataFromUUID(kBlob1); 341 context_.GetBlobDataFromUUID(kBlob1);
353 std::unique_ptr<BlobDataHandle> blob_handle2 = 342 std::unique_ptr<BlobDataHandle> blob_handle2 =
354 context_.GetBlobDataFromUUID(kBlob2); 343 context_.GetBlobDataFromUUID(kBlob2);
355 std::unique_ptr<BlobDataHandle> blob_handle3 = 344 std::unique_ptr<BlobDataHandle> blob_handle3 =
356 context_.GetBlobDataFromUUID(kBlob2); 345 context_.GetBlobDataFromUUID(kBlob2);
357 EXPECT_TRUE(blob_handle1->IsBeingBuilt() && blob_handle2->IsBeingBuilt() && 346 EXPECT_TRUE(blob_handle1->IsBeingBuilt() && blob_handle2->IsBeingBuilt() &&
358 blob_handle3->IsBeingBuilt()); 347 blob_handle3->IsBeingBuilt());
(...skipping 11 matching lines...) Expand all
370 blob_handle3.reset(); 359 blob_handle3.reset();
371 base::RunLoop().RunUntilIdle(); 360 base::RunLoop().RunUntilIdle();
372 }; 361 };
373 362
374 TEST_F(BlobAsyncBuilderHostTest, TestBadIPCs) { 363 TEST_F(BlobAsyncBuilderHostTest, TestBadIPCs) {
375 std::vector<DataElement> descriptions; 364 std::vector<DataElement> descriptions;
376 365
377 // Test reusing same blob uuid. 366 // Test reusing same blob uuid.
378 AddMemoryItem(10, &descriptions); 367 AddMemoryItem(10, &descriptions);
379 AddBlobItem(&descriptions); 368 AddBlobItem(&descriptions);
380 AddMemoryItem(5000, &descriptions); 369 AddMemoryItem(300, &descriptions);
381 EXPECT_EQ(BlobTransportResult::PENDING_RESPONSES, 370 EXPECT_EQ(BlobStatus::PENDING_DATA_POPULATION,
382 BuildBlobAsync(descriptions, completed_blob_uuid_set_, 5010)); 371 BuildBlobAsync(kBlobUUID, descriptions));
383 EXPECT_EQ(BlobTransportResult::BAD_IPC, 372 EXPECT_EQ(BlobStatus::ERR_INVALID_CONSTRUCTION_ARGUMENTS,
384 BuildBlobAsync(descriptions, completed_blob_uuid_set_, 5010)); 373 BuildBlobAsync(kBlobUUID, descriptions));
385 EXPECT_FALSE(request_called_); 374 EXPECT_FALSE(request_called_);
386 host_.CancelBuildingBlob(kBlobUUID, IPCBlobCreationCancelCode::UNKNOWN, 375 host_.CancelBuildingBlob(kBlobUUID, BlobStatus::ERR_REFERENCED_BLOB_BROKEN,
387 &context_); 376 &context_);
388 base::RunLoop().RunUntilIdle(); 377 base::RunLoop().RunUntilIdle();
389 DecrementBlobRefCount(kBlobUUID); 378 DecrementBlobRefCount(kBlobUUID);
390 EXPECT_FALSE(context_.GetBlobDataFromUUID(kBlobUUID).get()); 379 EXPECT_FALSE(context_.GetBlobDataFromUUID(kBlobUUID).get());
391 380
392 // Test we're an error if we get a bad uuid for responses. 381 // Test we're an error if we get a bad uuid for responses.
393 BlobItemBytesResponse response(0); 382 BlobItemBytesResponse response(0);
394 std::vector<BlobItemBytesResponse> responses = {response}; 383 std::vector<BlobItemBytesResponse> responses = {response};
395 EXPECT_EQ(BlobTransportResult::BAD_IPC, 384 EXPECT_EQ(BlobStatus::ERR_INVALID_CONSTRUCTION_ARGUMENTS,
396 host_.OnMemoryResponses(kBlobUUID, responses, &context_)); 385 host_.OnMemoryResponses(kBlobUUID, responses, &context_));
397 386
398 // Test empty responses. 387 // Test empty responses.
399 responses.clear(); 388 responses.clear();
400 EXPECT_EQ(BlobTransportResult::BAD_IPC, 389 EXPECT_EQ(BlobStatus::ERR_INVALID_CONSTRUCTION_ARGUMENTS,
401 host_.OnMemoryResponses(kBlobUUID, responses, &context_)); 390 host_.OnMemoryResponses(kBlobUUID, responses, &context_));
402 391
403 // Test response problems below here. 392 // Test response problems below here.
404 descriptions.clear(); 393 descriptions.clear();
405 AddMemoryItem(2, &descriptions); 394 AddMemoryItem(2, &descriptions);
406 AddBlobItem(&descriptions); 395 AddBlobItem(&descriptions);
407 AddMemoryItem(2, &descriptions); 396 AddMemoryItem(2, &descriptions);
408 EXPECT_EQ(BlobTransportResult::PENDING_RESPONSES, 397 EXPECT_EQ(BlobStatus::PENDING_DATA_POPULATION,
409 BuildBlobAsync(descriptions, completed_blob_uuid_set_, 5010)); 398 BuildBlobAsync(kBlobUUID, descriptions));
410 399
411 // Invalid request number. 400 // Invalid request number.
412 BlobItemBytesResponse response1(3); 401 BlobItemBytesResponse response1(3);
413 PopulateBytes(response1.allocate_mutable_data(2), 2); 402 PopulateBytes(response1.allocate_mutable_data(2), 2);
414 responses = {response1}; 403 responses = {response1};
415 EXPECT_EQ(BlobTransportResult::BAD_IPC, 404 EXPECT_EQ(BlobStatus::ERR_INVALID_CONSTRUCTION_ARGUMENTS,
416 host_.OnMemoryResponses(kBlobUUID, responses, &context_)); 405 host_.OnMemoryResponses(kBlobUUID, responses, &context_));
417 EXPECT_TRUE(context_.GetBlobDataFromUUID(kBlobUUID)->IsBroken()); 406 EXPECT_TRUE(context_.GetBlobDataFromUUID(kBlobUUID)->IsBroken());
418 DecrementBlobRefCount(kBlobUUID); 407 DecrementBlobRefCount(kBlobUUID);
419 base::RunLoop().RunUntilIdle(); 408 base::RunLoop().RunUntilIdle();
420 409
421 // Duplicate request number responses. 410 // Duplicate request number responses.
422 EXPECT_EQ(BlobTransportResult::PENDING_RESPONSES, 411 EXPECT_EQ(BlobStatus::PENDING_DATA_POPULATION,
423 BuildBlobAsync(descriptions, completed_blob_uuid_set_, 5010)); 412 BuildBlobAsync(kBlobUUID, descriptions));
424 response1.request_number = 0; 413 response1.request_number = 0;
425 BlobItemBytesResponse response2(0); 414 BlobItemBytesResponse response2(0);
426 PopulateBytes(response2.allocate_mutable_data(2), 2); 415 PopulateBytes(response2.allocate_mutable_data(2), 2);
427 responses = {response1, response2}; 416 responses = {response1, response2};
428 EXPECT_EQ(BlobTransportResult::BAD_IPC, 417 EXPECT_EQ(BlobStatus::ERR_INVALID_CONSTRUCTION_ARGUMENTS,
429 host_.OnMemoryResponses(kBlobUUID, responses, &context_)); 418 host_.OnMemoryResponses(kBlobUUID, responses, &context_));
430 EXPECT_TRUE(context_.GetBlobDataFromUUID(kBlobUUID)->IsBroken()); 419 EXPECT_TRUE(context_.GetBlobDataFromUUID(kBlobUUID)->IsBroken());
431 DecrementBlobRefCount(kBlobUUID); 420 DecrementBlobRefCount(kBlobUUID);
432 base::RunLoop().RunUntilIdle(); 421 base::RunLoop().RunUntilIdle();
433 }; 422 };
434 423
435 TEST_F(BlobAsyncBuilderHostTest, WaitOnReferencedBlob) { 424 TEST_F(BlobAsyncBuilderHostTest, WaitOnReferencedBlob) {
436 const std::string& kBlob1 = "blob1"; 425 const std::string& kBlob1 = "blob1";
437 const std::string& kBlob2 = "blob2"; 426 const std::string& kBlob2 = "blob2";
438 const std::string& kBlob3 = "blob3"; 427 const std::string& kBlob3 = "blob3";
439 428
429 std::vector<DataElement> descriptions;
430 AddMemoryItem(2, &descriptions);
431
440 // Register blobs. 432 // Register blobs.
441 EXPECT_EQ(BlobTransportResult::DONE, 433 EXPECT_EQ(BlobStatus::PENDING_DATA_POPULATION,
442 host_.RegisterBlobUUID(kBlob1, kContentType, kContentDisposition, 434 BuildBlobAsync(kBlob1, descriptions));
443 std::set<std::string>(), &context_)); 435 EXPECT_EQ(BlobStatus::PENDING_DATA_POPULATION,
444 EXPECT_EQ(BlobTransportResult::DONE, 436 BuildBlobAsync(kBlob2, descriptions));
445 host_.RegisterBlobUUID(kBlob2, kContentType, kContentDisposition, 437 EXPECT_TRUE(request_called_);
446 std::set<std::string>(), &context_)); 438 request_called_ = false;
447 EXPECT_EQ(BlobTransportResult::DONE,
448 host_.RegisterBlobUUID(kBlob3, kContentType, kContentDisposition,
449 {kBlob1, kBlob2}, &context_));
450 439
451 // Finish the third one, with a reference to the first and second blob. 440 // Finish the third one, with a reference to the first and second blob.
452 std::vector<DataElement> descriptions;
453 AddShortcutMemoryItem(2, &descriptions);
454 DataElement element; 441 DataElement element;
455 element.SetToBlob(kBlob1); 442 element.SetToBlob(kBlob1);
456 descriptions.push_back(element); 443 descriptions.push_back(element);
457 element.SetToBlob(kBlob2); 444 element.SetToBlob(kBlob2);
458 descriptions.push_back(element); 445 descriptions.push_back(element);
459 446
447 EXPECT_EQ(BlobStatus::PENDING_DATA_POPULATION,
448 BuildBlobAsync(kBlob3, descriptions));
449 EXPECT_TRUE(request_called_);
450 request_called_ = false;
451
460 // Finish the third, but we should still be 'building' it. 452 // Finish the third, but we should still be 'building' it.
461 EXPECT_EQ(BlobTransportResult::DONE, 453 BlobItemBytesResponse response1(0);
462 host_.StartBuildingBlob( 454 PopulateBytes(response1.allocate_mutable_data(2), 2);
463 kBlob3, descriptions, 2, &context_, 455 std::vector<BlobItemBytesResponse> responses = {response1};
464 base::Bind(&BlobAsyncBuilderHostTest::RequestMemoryCallback, 456 EXPECT_EQ(BlobStatus::DONE,
465 base::Unretained(this)))); 457 host_.OnMemoryResponses(kBlob3, responses, &context_));
466 EXPECT_FALSE(request_called_); 458 EXPECT_FALSE(request_called_);
467 EXPECT_TRUE(host_.IsBeingBuilt(kBlob3)); 459 EXPECT_FALSE(host_.IsBeingBuilt(kBlob3));
468 EXPECT_TRUE(IsBeingBuiltInContext(kBlob3)); 460 EXPECT_TRUE(IsBeingBuiltInContext(kBlob3));
469 461
470 // Finish the first. 462 // Finish the first.
471 descriptions.clear(); 463 descriptions.clear();
472 AddShortcutMemoryItem(2, &descriptions); 464 AddShortcutMemoryItem(2, &descriptions);
473 EXPECT_EQ(BlobTransportResult::DONE, 465 EXPECT_EQ(BlobStatus::DONE,
474 host_.StartBuildingBlob( 466 host_.OnMemoryResponses(kBlob1, responses, &context_));
475 kBlob1, descriptions, 2, &context_,
476 base::Bind(&BlobAsyncBuilderHostTest::RequestMemoryCallback,
477 base::Unretained(this))));
478 EXPECT_FALSE(request_called_); 467 EXPECT_FALSE(request_called_);
479 EXPECT_FALSE(host_.IsBeingBuilt(kBlob1)); 468 EXPECT_FALSE(host_.IsBeingBuilt(kBlob1));
480 EXPECT_FALSE(IsBeingBuiltInContext(kBlob1)); 469 EXPECT_FALSE(IsBeingBuiltInContext(kBlob1));
481 EXPECT_TRUE(context_.GetBlobDataFromUUID(kBlob1)); 470 EXPECT_TRUE(context_.GetBlobDataFromUUID(kBlob1));
482 471
483 // Run the message loop so we propogate the construction complete callbacks. 472 // Run the message loop so we propogate the construction complete callbacks.
484 base::RunLoop().RunUntilIdle(); 473 base::RunLoop().RunUntilIdle();
485 // Verify we're not done. 474 // Verify we're not done.
486 EXPECT_TRUE(host_.IsBeingBuilt(kBlob3));
487 EXPECT_TRUE(IsBeingBuiltInContext(kBlob3)); 475 EXPECT_TRUE(IsBeingBuiltInContext(kBlob3));
488 476
489 // Finish the second. 477 // Finish the second.
490 EXPECT_EQ(BlobTransportResult::DONE, 478 EXPECT_EQ(BlobStatus::DONE,
491 host_.StartBuildingBlob( 479 host_.OnMemoryResponses(kBlob2, responses, &context_));
492 kBlob2, descriptions, 2, &context_,
493 base::Bind(&BlobAsyncBuilderHostTest::RequestMemoryCallback,
494 base::Unretained(this))));
495 EXPECT_FALSE(request_called_); 480 EXPECT_FALSE(request_called_);
496 EXPECT_FALSE(host_.IsBeingBuilt(kBlob2)); 481 EXPECT_FALSE(host_.IsBeingBuilt(kBlob2));
497 EXPECT_FALSE(IsBeingBuiltInContext(kBlob2)); 482 EXPECT_FALSE(IsBeingBuiltInContext(kBlob2));
498 EXPECT_TRUE(context_.GetBlobDataFromUUID(kBlob2)); 483 EXPECT_TRUE(context_.GetBlobDataFromUUID(kBlob2));
499 484
500 // Run the message loop so we propogate the construction complete callbacks. 485 // Run the message loop so we propogate the construction complete callbacks.
501 base::RunLoop().RunUntilIdle(); 486 base::RunLoop().RunUntilIdle();
502 // Finally, we should be finished with third blob. 487 // Finally, we should be finished with third blob.
503 EXPECT_FALSE(host_.IsBeingBuilt(kBlob3)); 488 EXPECT_FALSE(host_.IsBeingBuilt(kBlob3));
504 EXPECT_FALSE(IsBeingBuiltInContext(kBlob3)); 489 EXPECT_FALSE(IsBeingBuiltInContext(kBlob3));
505 EXPECT_TRUE(context_.GetBlobDataFromUUID(kBlob3)); 490 EXPECT_TRUE(context_.GetBlobDataFromUUID(kBlob3));
506 }; 491 };
507 492
508 TEST_F(BlobAsyncBuilderHostTest, IncorrectBlobDependencies) {
509 const std::string& kGoodBlob = "goodBlob";
510 const std::string& kBlob1 = "blob1";
511 const std::string& kBlob2 = "blob2";
512 const std::string& kBlob3 = "blob3";
513
514 // Register blobs. Blob 1 has a reference to itself, Blob 2 has a reference
515 // but doesn't use it, and blob 3 doesn't list it's reference.
516 EXPECT_EQ(BlobTransportResult::DONE,
517 host_.RegisterBlobUUID(kGoodBlob, kContentType, kContentDisposition,
518 std::set<std::string>(), &context_));
519 EXPECT_EQ(BlobTransportResult::BAD_IPC,
520 host_.RegisterBlobUUID(kBlob1, kContentType, kContentDisposition,
521 {kBlob1}, &context_));
522 EXPECT_EQ(BlobTransportResult::DONE,
523 host_.RegisterBlobUUID(kBlob2, kContentType, kContentDisposition,
524 {kGoodBlob}, &context_));
525 EXPECT_EQ(BlobTransportResult::DONE,
526 host_.RegisterBlobUUID(kBlob3, kContentType, kContentDisposition,
527 std::set<std::string>(), &context_));
528
529 // The first blob shouldn't be building anymore.
530 EXPECT_FALSE(host_.IsBeingBuilt(kBlob1));
531
532 // Try to finish the second one, without a reference to the first.
533 std::vector<DataElement> descriptions;
534 AddShortcutMemoryItem(2, &descriptions);
535 EXPECT_EQ(BlobTransportResult::BAD_IPC,
536 host_.StartBuildingBlob(
537 kBlob2, descriptions, 2, &context_,
538 base::Bind(&BlobAsyncBuilderHostTest::RequestMemoryCallback,
539 base::Unretained(this))));
540 EXPECT_FALSE(host_.IsBeingBuilt(kBlob2));
541
542 // Try to finish the third one with the reference we didn't declare earlier.
543 descriptions.clear();
544 AddShortcutMemoryItem(2, &descriptions);
545 DataElement element;
546 element.SetToBlob(kGoodBlob);
547 descriptions.push_back(element);
548 EXPECT_EQ(BlobTransportResult::BAD_IPC,
549 host_.StartBuildingBlob(
550 kBlob3, descriptions, 2, &context_,
551 base::Bind(&BlobAsyncBuilderHostTest::RequestMemoryCallback,
552 base::Unretained(this))));
553 EXPECT_FALSE(host_.IsBeingBuilt(kBlob3));
554 };
555
556 TEST_F(BlobAsyncBuilderHostTest, BlobBreaksWhenReferenceBreaks) {
557 const std::string& kBlob1 = "blob1";
558 const std::string& kBlob2 = "blob2";
559
560 // Register blobs.
561 EXPECT_EQ(BlobTransportResult::DONE,
562 host_.RegisterBlobUUID(kBlob1, kContentType, kContentDisposition,
563 std::set<std::string>(), &context_));
564 EXPECT_EQ(BlobTransportResult::DONE,
565 host_.RegisterBlobUUID(kBlob2, kContentType, kContentDisposition,
566 {kBlob1}, &context_));
567
568 // Finish the second one, with a reference to the first.
569 std::vector<DataElement> descriptions;
570 AddShortcutMemoryItem(2, &descriptions);
571 DataElement element;
572 element.SetToBlob(kBlob1);
573 descriptions.push_back(element);
574 EXPECT_EQ(BlobTransportResult::DONE,
575 host_.StartBuildingBlob(
576 kBlob2, descriptions, 2, &context_,
577 base::Bind(&BlobAsyncBuilderHostTest::RequestMemoryCallback,
578 base::Unretained(this))));
579 EXPECT_FALSE(request_called_);
580 EXPECT_TRUE(host_.IsBeingBuilt(kBlob2));
581 EXPECT_TRUE(IsBeingBuiltInContext(kBlob2));
582
583 // Break the first.
584 descriptions.clear();
585 host_.CancelBuildingBlob(kBlob1, IPCBlobCreationCancelCode::UNKNOWN,
586 &context_);
587 EXPECT_FALSE(host_.IsBeingBuilt(kBlob1));
588 EXPECT_FALSE(IsBeingBuiltInContext(kBlob1));
589 EXPECT_TRUE(context_.GetBlobDataFromUUID(kBlob1)->IsBroken());
590
591 // Run the message loop so we propogate the construction complete callbacks.
592 base::RunLoop().RunUntilIdle();
593 // We should be finished with third blob, and it should be broken.
594 EXPECT_FALSE(host_.IsBeingBuilt(kBlob2));
595 EXPECT_FALSE(IsBeingBuiltInContext(kBlob2));
596 EXPECT_TRUE(context_.GetBlobDataFromUUID(kBlob2)->IsBroken());
597 };
598
599 TEST_F(BlobAsyncBuilderHostTest, BlobBreaksWhenReferenceBroken) {
600 const std::string& kBlob1 = "blob1";
601 const std::string& kBlob2 = "blob2";
602
603 // Register blobs.
604 EXPECT_EQ(BlobTransportResult::DONE,
605 host_.RegisterBlobUUID(kBlob1, kContentType, kContentDisposition,
606 std::set<std::string>(), &context_));
607 host_.CancelBuildingBlob(kBlob1, IPCBlobCreationCancelCode::UNKNOWN,
608 &context_);
609 EXPECT_EQ(BlobTransportResult::CANCEL_REFERENCED_BLOB_BROKEN,
610 host_.RegisterBlobUUID(kBlob2, kContentType, kContentDisposition,
611 {kBlob1}, &context_));
612 EXPECT_FALSE(host_.IsBeingBuilt(kBlob2));
613 EXPECT_FALSE(IsBeingBuiltInContext(kBlob2));
614 EXPECT_TRUE(context_.GetBlobDataFromUUID(kBlob2)->IsBroken());
615 };
616
617 } // namespace storage 493 } // namespace storage
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