fault_injection_test.cc 21 KB

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  1. // Copyright (c) 2011-present, Facebook, Inc. All rights reserved.
  2. // This source code is licensed under both the GPLv2 (found in the
  3. // COPYING file in the root directory) and Apache 2.0 License
  4. // (found in the LICENSE.Apache file in the root directory).
  5. //
  6. // Copyright 2014 The LevelDB Authors. All rights reserved.
  7. // Use of this source code is governed by a BSD-style license that can be
  8. // found in the LICENSE file. See the AUTHORS file for names of contributors.
  9. // This test uses a custom Env to keep track of the state of a filesystem as of
  10. // the last "sync". It then checks for data loss errors by purposely dropping
  11. // file data (or entire files) not protected by a "sync".
  12. #include "db/db_impl/db_impl.h"
  13. #include "db/db_test_util.h"
  14. #include "db/log_format.h"
  15. #include "db/version_set.h"
  16. #include "env/mock_env.h"
  17. #include "file/filename.h"
  18. #include "rocksdb/cache.h"
  19. #include "rocksdb/convenience.h"
  20. #include "rocksdb/db.h"
  21. #include "rocksdb/env.h"
  22. #include "rocksdb/table.h"
  23. #include "rocksdb/write_batch.h"
  24. #include "test_util/sync_point.h"
  25. #include "test_util/testharness.h"
  26. #include "test_util/testutil.h"
  27. #include "util/mutexlock.h"
  28. #include "util/random.h"
  29. #include "utilities/fault_injection_env.h"
  30. #ifndef NDEBUG
  31. #include "utilities/fault_injection_fs.h"
  32. #endif
  33. namespace ROCKSDB_NAMESPACE {
  34. static const int kValueSize = 1000;
  35. static const int kMaxNumValues = 2000;
  36. static const size_t kNumIterations = 3;
  37. enum FaultInjectionOptionConfig {
  38. kDefault,
  39. kDifferentDataDir,
  40. kWalDir,
  41. kSyncWal,
  42. kWalDirSyncWal,
  43. kMultiLevels,
  44. kEnd,
  45. };
  46. class FaultInjectionTest
  47. : public testing::Test,
  48. public testing::WithParamInterface<std::tuple<
  49. bool, FaultInjectionOptionConfig, FaultInjectionOptionConfig>> {
  50. protected:
  51. int option_config_;
  52. int non_inclusive_end_range_; // kEnd or equivalent to that
  53. // When need to make sure data is persistent, sync WAL
  54. bool sync_use_wal_;
  55. // When need to make sure data is persistent, call DB::CompactRange()
  56. bool sync_use_compact_;
  57. bool sequential_order_;
  58. public:
  59. enum ExpectedVerifResult { kValExpectFound, kValExpectNoError };
  60. enum ResetMethod {
  61. kResetDropUnsyncedData,
  62. kResetDropRandomUnsyncedData,
  63. kResetDeleteUnsyncedFiles,
  64. kResetDropAndDeleteUnsynced
  65. };
  66. std::unique_ptr<Env> base_env_;
  67. FaultInjectionTestEnv* env_;
  68. std::string dbname_;
  69. std::shared_ptr<Cache> tiny_cache_;
  70. Options options_;
  71. DB* db_;
  72. FaultInjectionTest()
  73. : option_config_(std::get<1>(GetParam())),
  74. non_inclusive_end_range_(std::get<2>(GetParam())),
  75. sync_use_wal_(false),
  76. sync_use_compact_(true),
  77. base_env_(nullptr),
  78. env_(nullptr),
  79. db_(nullptr) {
  80. EXPECT_OK(
  81. test::CreateEnvFromSystem(ConfigOptions(), &system_env_, &env_guard_));
  82. EXPECT_NE(system_env_, nullptr);
  83. }
  84. ~FaultInjectionTest() override {
  85. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->DisableProcessing();
  86. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->ClearAllCallBacks();
  87. }
  88. bool ChangeOptions() {
  89. option_config_++;
  90. if (option_config_ >= non_inclusive_end_range_) {
  91. return false;
  92. } else {
  93. if (option_config_ == kMultiLevels) {
  94. base_env_.reset(MockEnv::Create(system_env_));
  95. }
  96. return true;
  97. }
  98. }
  99. // Return the current option configuration.
  100. Options CurrentOptions() {
  101. sync_use_wal_ = false;
  102. sync_use_compact_ = true;
  103. Options options;
  104. switch (option_config_) {
  105. case kWalDir:
  106. options.wal_dir = test::PerThreadDBPath(env_, "fault_test_wal");
  107. break;
  108. case kDifferentDataDir:
  109. options.db_paths.emplace_back(
  110. test::PerThreadDBPath(env_, "fault_test_data"), 1000000U);
  111. break;
  112. case kSyncWal:
  113. sync_use_wal_ = true;
  114. sync_use_compact_ = false;
  115. break;
  116. case kWalDirSyncWal:
  117. options.wal_dir = test::PerThreadDBPath(env_, "/fault_test_wal");
  118. sync_use_wal_ = true;
  119. sync_use_compact_ = false;
  120. break;
  121. case kMultiLevels:
  122. options.write_buffer_size = 64 * 1024;
  123. options.target_file_size_base = 64 * 1024;
  124. options.level0_file_num_compaction_trigger = 2;
  125. options.level0_slowdown_writes_trigger = 2;
  126. options.level0_stop_writes_trigger = 4;
  127. options.max_bytes_for_level_base = 128 * 1024;
  128. options.max_write_buffer_number = 2;
  129. options.max_background_compactions = 8;
  130. options.max_background_flushes = 8;
  131. sync_use_wal_ = true;
  132. sync_use_compact_ = false;
  133. break;
  134. default:
  135. break;
  136. }
  137. return options;
  138. }
  139. Status NewDB() {
  140. assert(db_ == nullptr);
  141. assert(tiny_cache_ == nullptr);
  142. assert(env_ == nullptr);
  143. env_ = new FaultInjectionTestEnv(base_env_ ? base_env_.get() : system_env_);
  144. options_ = CurrentOptions();
  145. options_.env = env_;
  146. options_.paranoid_checks = true;
  147. BlockBasedTableOptions table_options;
  148. tiny_cache_ = NewLRUCache(100);
  149. table_options.block_cache = tiny_cache_;
  150. options_.table_factory.reset(NewBlockBasedTableFactory(table_options));
  151. dbname_ = test::PerThreadDBPath("fault_test");
  152. EXPECT_OK(DestroyDB(dbname_, options_));
  153. options_.create_if_missing = true;
  154. Status s = OpenDB();
  155. options_.create_if_missing = false;
  156. return s;
  157. }
  158. void SetUp() override {
  159. sequential_order_ = std::get<0>(GetParam());
  160. ASSERT_OK(NewDB());
  161. }
  162. void TearDown() override {
  163. CloseDB();
  164. Status s = DestroyDB(dbname_, options_);
  165. delete env_;
  166. env_ = nullptr;
  167. tiny_cache_.reset();
  168. ASSERT_OK(s);
  169. }
  170. void Build(const WriteOptions& write_options, int start_idx, int num_vals) {
  171. std::string key_space, value_space;
  172. WriteBatch batch;
  173. for (int i = start_idx; i < start_idx + num_vals; i++) {
  174. Slice key = Key(i, &key_space);
  175. batch.Clear();
  176. ASSERT_OK(batch.Put(key, Value(i, &value_space)));
  177. ASSERT_OK(db_->Write(write_options, &batch));
  178. }
  179. }
  180. Status ReadValue(int i, std::string* val) const {
  181. std::string key_space, value_space;
  182. Slice key = Key(i, &key_space);
  183. Value(i, &value_space);
  184. ReadOptions options;
  185. return db_->Get(options, key, val);
  186. }
  187. Status Verify(int start_idx, int num_vals,
  188. ExpectedVerifResult expected) const {
  189. std::string val;
  190. std::string value_space;
  191. Status s;
  192. for (int i = start_idx; i < start_idx + num_vals && s.ok(); i++) {
  193. Value(i, &value_space);
  194. s = ReadValue(i, &val);
  195. if (s.ok()) {
  196. EXPECT_EQ(value_space, val);
  197. }
  198. if (expected == kValExpectFound) {
  199. if (!s.ok()) {
  200. fprintf(stderr, "Error when read %dth record (expect found): %s\n", i,
  201. s.ToString().c_str());
  202. return s;
  203. }
  204. } else if (!s.ok() && !s.IsNotFound()) {
  205. fprintf(stderr, "Error when read %dth record: %s\n", i,
  206. s.ToString().c_str());
  207. return s;
  208. }
  209. }
  210. return Status::OK();
  211. }
  212. // Return the ith key
  213. Slice Key(int i, std::string* storage) const {
  214. unsigned long long num = i;
  215. if (!sequential_order_) {
  216. // random transfer
  217. const int m = 0x5bd1e995;
  218. num *= m;
  219. num ^= num << 24;
  220. }
  221. char buf[100];
  222. snprintf(buf, sizeof(buf), "%016d", static_cast<int>(num));
  223. storage->assign(buf, strlen(buf));
  224. return Slice(*storage);
  225. }
  226. // Return the value to associate with the specified key
  227. Slice Value(int k, std::string* storage) const {
  228. Random r(k);
  229. *storage = r.RandomString(kValueSize);
  230. return Slice(*storage);
  231. }
  232. void CloseDB() {
  233. delete db_;
  234. db_ = nullptr;
  235. }
  236. Status OpenDB() {
  237. CloseDB();
  238. env_->ResetState();
  239. Status s = DB::Open(options_, dbname_, &db_);
  240. assert(db_ != nullptr);
  241. return s;
  242. }
  243. void DeleteAllData() {
  244. Iterator* iter = db_->NewIterator(ReadOptions());
  245. WriteOptions options;
  246. for (iter->SeekToFirst(); iter->Valid(); iter->Next()) {
  247. ASSERT_OK(db_->Delete(WriteOptions(), iter->key()));
  248. }
  249. ASSERT_OK(iter->status());
  250. delete iter;
  251. FlushOptions flush_options;
  252. flush_options.wait = true;
  253. ASSERT_OK(db_->Flush(flush_options));
  254. }
  255. // rnd cannot be null for kResetDropRandomUnsyncedData
  256. void ResetDBState(ResetMethod reset_method, Random* rnd = nullptr) {
  257. env_->AssertNoOpenFile();
  258. switch (reset_method) {
  259. case kResetDropUnsyncedData:
  260. ASSERT_OK(env_->DropUnsyncedFileData());
  261. break;
  262. case kResetDropRandomUnsyncedData:
  263. ASSERT_OK(env_->DropRandomUnsyncedFileData(rnd));
  264. break;
  265. case kResetDeleteUnsyncedFiles:
  266. ASSERT_OK(env_->DeleteFilesCreatedAfterLastDirSync());
  267. break;
  268. case kResetDropAndDeleteUnsynced:
  269. ASSERT_OK(env_->DropUnsyncedFileData());
  270. ASSERT_OK(env_->DeleteFilesCreatedAfterLastDirSync());
  271. break;
  272. default:
  273. assert(false);
  274. }
  275. }
  276. void PartialCompactTestPreFault(int num_pre_sync, int num_post_sync) {
  277. DeleteAllData();
  278. WriteOptions write_options;
  279. write_options.sync = sync_use_wal_;
  280. Build(write_options, 0, num_pre_sync);
  281. if (sync_use_compact_) {
  282. ASSERT_OK(db_->CompactRange(CompactRangeOptions(), nullptr, nullptr));
  283. }
  284. write_options.sync = false;
  285. Build(write_options, num_pre_sync, num_post_sync);
  286. }
  287. void PartialCompactTestReopenWithFault(ResetMethod reset_method,
  288. int num_pre_sync, int num_post_sync,
  289. Random* rnd = nullptr) {
  290. env_->SetFilesystemActive(false);
  291. CloseDB();
  292. ResetDBState(reset_method, rnd);
  293. ASSERT_OK(OpenDB());
  294. ASSERT_OK(Verify(0, num_pre_sync, FaultInjectionTest::kValExpectFound));
  295. ASSERT_OK(Verify(num_pre_sync, num_post_sync,
  296. FaultInjectionTest::kValExpectNoError));
  297. WaitCompactionFinish();
  298. ASSERT_OK(Verify(0, num_pre_sync, FaultInjectionTest::kValExpectFound));
  299. ASSERT_OK(Verify(num_pre_sync, num_post_sync,
  300. FaultInjectionTest::kValExpectNoError));
  301. }
  302. void NoWriteTestPreFault() {}
  303. void NoWriteTestReopenWithFault(ResetMethod reset_method) {
  304. CloseDB();
  305. ResetDBState(reset_method);
  306. ASSERT_OK(OpenDB());
  307. }
  308. void WaitCompactionFinish() {
  309. ASSERT_OK(static_cast<DBImpl*>(db_->GetRootDB())->TEST_WaitForCompact());
  310. ASSERT_OK(db_->Put(WriteOptions(), "", ""));
  311. }
  312. private:
  313. Env* system_env_;
  314. std::shared_ptr<Env> env_guard_;
  315. };
  316. class FaultInjectionTestSplitted : public FaultInjectionTest {};
  317. TEST_P(FaultInjectionTestSplitted, FaultTest) {
  318. do {
  319. Random rnd(301);
  320. for (size_t idx = 0; idx < kNumIterations; idx++) {
  321. int num_pre_sync = rnd.Uniform(kMaxNumValues);
  322. int num_post_sync = rnd.Uniform(kMaxNumValues);
  323. PartialCompactTestPreFault(num_pre_sync, num_post_sync);
  324. PartialCompactTestReopenWithFault(kResetDropUnsyncedData, num_pre_sync,
  325. num_post_sync);
  326. NoWriteTestPreFault();
  327. NoWriteTestReopenWithFault(kResetDropUnsyncedData);
  328. PartialCompactTestPreFault(num_pre_sync, num_post_sync);
  329. PartialCompactTestReopenWithFault(kResetDropRandomUnsyncedData,
  330. num_pre_sync, num_post_sync, &rnd);
  331. NoWriteTestPreFault();
  332. NoWriteTestReopenWithFault(kResetDropUnsyncedData);
  333. // Setting a separate data path won't pass the test as we don't sync
  334. // it after creating new files,
  335. PartialCompactTestPreFault(num_pre_sync, num_post_sync);
  336. PartialCompactTestReopenWithFault(kResetDropAndDeleteUnsynced,
  337. num_pre_sync, num_post_sync);
  338. NoWriteTestPreFault();
  339. NoWriteTestReopenWithFault(kResetDropAndDeleteUnsynced);
  340. PartialCompactTestPreFault(num_pre_sync, num_post_sync);
  341. // No new files created so we expect all values since no files will be
  342. // dropped.
  343. PartialCompactTestReopenWithFault(kResetDeleteUnsyncedFiles, num_pre_sync,
  344. num_post_sync);
  345. NoWriteTestPreFault();
  346. NoWriteTestReopenWithFault(kResetDeleteUnsyncedFiles);
  347. }
  348. } while (ChangeOptions());
  349. }
  350. // Previous log file is not fsynced if sync is forced after log rolling.
  351. TEST_P(FaultInjectionTest, WriteOptionSyncTest) {
  352. test::SleepingBackgroundTask sleeping_task_low;
  353. env_->SetBackgroundThreads(1, Env::HIGH);
  354. // Block the job queue to prevent flush job from running.
  355. env_->Schedule(&test::SleepingBackgroundTask::DoSleepTask, &sleeping_task_low,
  356. Env::Priority::HIGH);
  357. sleeping_task_low.WaitUntilSleeping();
  358. WriteOptions write_options;
  359. write_options.sync = false;
  360. std::string key_space, value_space;
  361. ASSERT_OK(
  362. db_->Put(write_options, Key(1, &key_space), Value(1, &value_space)));
  363. FlushOptions flush_options;
  364. flush_options.wait = false;
  365. ASSERT_OK(db_->Flush(flush_options));
  366. write_options.sync = true;
  367. ASSERT_OK(
  368. db_->Put(write_options, Key(2, &key_space), Value(2, &value_space)));
  369. ASSERT_OK(db_->FlushWAL(false));
  370. env_->SetFilesystemActive(false);
  371. NoWriteTestReopenWithFault(kResetDropAndDeleteUnsynced);
  372. sleeping_task_low.WakeUp();
  373. sleeping_task_low.WaitUntilDone();
  374. ASSERT_OK(OpenDB());
  375. std::string val;
  376. Value(2, &value_space);
  377. ASSERT_OK(ReadValue(2, &val));
  378. ASSERT_EQ(value_space, val);
  379. Value(1, &value_space);
  380. ASSERT_OK(ReadValue(1, &val));
  381. ASSERT_EQ(value_space, val);
  382. }
  383. TEST_P(FaultInjectionTest, UninstalledCompaction) {
  384. options_.target_file_size_base = 32 * 1024;
  385. options_.write_buffer_size = 100 << 10; // 100KB
  386. options_.level0_file_num_compaction_trigger = 6;
  387. options_.level0_stop_writes_trigger = 1 << 10;
  388. options_.level0_slowdown_writes_trigger = 1 << 10;
  389. options_.max_background_compactions = 1;
  390. ASSERT_OK(OpenDB());
  391. if (!sequential_order_) {
  392. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->LoadDependency({
  393. {"FaultInjectionTest::FaultTest:0", "DBImpl::BGWorkCompaction"},
  394. {"CompactionJob::Run():End", "FaultInjectionTest::FaultTest:1"},
  395. {"FaultInjectionTest::FaultTest:2",
  396. "DBImpl::BackgroundCompaction:NonTrivial:AfterRun"},
  397. });
  398. }
  399. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->EnableProcessing();
  400. int kNumKeys = 1000;
  401. Build(WriteOptions(), 0, kNumKeys);
  402. FlushOptions flush_options;
  403. flush_options.wait = true;
  404. ASSERT_OK(db_->Flush(flush_options));
  405. ASSERT_OK(db_->Put(WriteOptions(), "", ""));
  406. TEST_SYNC_POINT("FaultInjectionTest::FaultTest:0");
  407. TEST_SYNC_POINT("FaultInjectionTest::FaultTest:1");
  408. env_->SetFilesystemActive(false);
  409. TEST_SYNC_POINT("FaultInjectionTest::FaultTest:2");
  410. CloseDB();
  411. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->DisableProcessing();
  412. ResetDBState(kResetDropUnsyncedData);
  413. std::atomic<bool> opened(false);
  414. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->SetCallBack(
  415. "DBImpl::Open:Opened", [&](void* /*arg*/) { opened.store(true); });
  416. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->SetCallBack(
  417. "DBImpl::BGWorkCompaction",
  418. [&](void* /*arg*/) { ASSERT_TRUE(opened.load()); });
  419. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->EnableProcessing();
  420. ASSERT_OK(OpenDB());
  421. ASSERT_OK(Verify(0, kNumKeys, FaultInjectionTest::kValExpectFound));
  422. WaitCompactionFinish();
  423. ASSERT_OK(Verify(0, kNumKeys, FaultInjectionTest::kValExpectFound));
  424. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->DisableProcessing();
  425. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->ClearAllCallBacks();
  426. }
  427. TEST_P(FaultInjectionTest, ManualLogSyncTest) {
  428. test::SleepingBackgroundTask sleeping_task_low;
  429. env_->SetBackgroundThreads(1, Env::HIGH);
  430. // Block the job queue to prevent flush job from running.
  431. env_->Schedule(&test::SleepingBackgroundTask::DoSleepTask, &sleeping_task_low,
  432. Env::Priority::HIGH);
  433. sleeping_task_low.WaitUntilSleeping();
  434. WriteOptions write_options;
  435. write_options.sync = false;
  436. std::string key_space, value_space;
  437. ASSERT_OK(
  438. db_->Put(write_options, Key(1, &key_space), Value(1, &value_space)));
  439. FlushOptions flush_options;
  440. flush_options.wait = false;
  441. ASSERT_OK(db_->Flush(flush_options));
  442. ASSERT_OK(
  443. db_->Put(write_options, Key(2, &key_space), Value(2, &value_space)));
  444. ASSERT_OK(db_->FlushWAL(true));
  445. env_->SetFilesystemActive(false);
  446. NoWriteTestReopenWithFault(kResetDropAndDeleteUnsynced);
  447. sleeping_task_low.WakeUp();
  448. sleeping_task_low.WaitUntilDone();
  449. ASSERT_OK(OpenDB());
  450. std::string val;
  451. Value(2, &value_space);
  452. ASSERT_OK(ReadValue(2, &val));
  453. ASSERT_EQ(value_space, val);
  454. Value(1, &value_space);
  455. ASSERT_OK(ReadValue(1, &val));
  456. ASSERT_EQ(value_space, val);
  457. }
  458. TEST_P(FaultInjectionTest, WriteBatchWalTerminationTest) {
  459. ReadOptions ro;
  460. Options options = CurrentOptions();
  461. options.env = env_;
  462. WriteOptions wo;
  463. wo.sync = true;
  464. wo.disableWAL = false;
  465. WriteBatch batch;
  466. ASSERT_OK(batch.Put("cats", "dogs"));
  467. batch.MarkWalTerminationPoint();
  468. ASSERT_OK(batch.Put("boys", "girls"));
  469. ASSERT_OK(db_->Write(wo, &batch));
  470. env_->SetFilesystemActive(false);
  471. NoWriteTestReopenWithFault(kResetDropAndDeleteUnsynced);
  472. ASSERT_OK(OpenDB());
  473. std::string val;
  474. ASSERT_OK(db_->Get(ro, "cats", &val));
  475. ASSERT_EQ("dogs", val);
  476. ASSERT_EQ(db_->Get(ro, "boys", &val), Status::NotFound());
  477. }
  478. INSTANTIATE_TEST_CASE_P(
  479. FaultTest, FaultInjectionTest,
  480. ::testing::Values(std::make_tuple(false, kDefault, kEnd),
  481. std::make_tuple(true, kDefault, kEnd)));
  482. INSTANTIATE_TEST_CASE_P(
  483. FaultTest, FaultInjectionTestSplitted,
  484. ::testing::Values(std::make_tuple(false, kDefault, kSyncWal),
  485. std::make_tuple(true, kDefault, kSyncWal),
  486. std::make_tuple(false, kSyncWal, kEnd),
  487. std::make_tuple(true, kSyncWal, kEnd)));
  488. class FaultInjectionDBTest : public DBTestBase {
  489. public:
  490. FaultInjectionDBTest()
  491. : DBTestBase("fault_injection_fs_test", /*env_do_fsync=*/false) {}
  492. };
  493. TEST(FaultInjectionFSTest, ReadUnsyncedData) {
  494. std::shared_ptr<FaultInjectionTestFS> fault_fs =
  495. std::make_shared<FaultInjectionTestFS>(FileSystem::Default());
  496. fault_fs->SetInjectUnsyncedDataLoss(true);
  497. ASSERT_TRUE(fault_fs->ReadUnsyncedData());
  498. ASSERT_TRUE(fault_fs->InjectUnsyncedDataLoss());
  499. // This is a randomized mini-stress test, to reduce the chances of bugs in
  500. // FaultInjectionTestFS being caught only in db_stress, where they are
  501. // difficult to debug. ~1000 iterations might be needed to debug relevant
  502. // code changes. Limiting to 10 for each regular unit test run.
  503. auto seed = Random::GetTLSInstance()->Next();
  504. for (int i = 0; i < 10; i++, seed++) {
  505. Random rnd(seed);
  506. uint32_t len = rnd.Uniform(10000) + 1;
  507. std::string f =
  508. test::PerThreadDBPath("read_unsynced." + std::to_string(seed));
  509. std::string data = rnd.RandomString(len);
  510. // Create partially synced file
  511. std::unique_ptr<FSWritableFile> w;
  512. ASSERT_OK(fault_fs->NewWritableFile(f, {}, &w, nullptr));
  513. uint32_t synced_len = rnd.Uniform(len + 1);
  514. ASSERT_OK(w->Append(Slice(data.data(), synced_len), {}, nullptr));
  515. if (synced_len > 0) {
  516. ASSERT_OK(w->Sync({}, nullptr));
  517. }
  518. ASSERT_OK(w->Append(Slice(data.data() + synced_len, len - synced_len), {},
  519. nullptr));
  520. // Test file size includes unsynced data
  521. {
  522. uint64_t file_size;
  523. ASSERT_OK(fault_fs->GetFileSize(f, {}, &file_size, nullptr));
  524. ASSERT_EQ(len, file_size);
  525. }
  526. // Test read file contents, with two reads that probably don't
  527. // align with the unsynced split. And maybe a sync or write between
  528. // the two reads.
  529. std::unique_ptr<FSSequentialFile> r;
  530. ASSERT_OK(fault_fs->NewSequentialFile(f, {}, &r, nullptr));
  531. uint32_t first_read_len = rnd.Uniform(len + 1);
  532. Slice sl;
  533. std::unique_ptr<char[]> scratch(new char[first_read_len]);
  534. ASSERT_OK(r->Read(first_read_len, {}, &sl, scratch.get(), nullptr));
  535. ASSERT_EQ(first_read_len, sl.size());
  536. ASSERT_EQ(0, sl.compare(Slice(data.data(), first_read_len)));
  537. // Maybe a sync and/or write and/or close between the two reads.
  538. if (rnd.OneIn(2)) {
  539. ASSERT_OK(w->Sync({}, nullptr));
  540. }
  541. if (rnd.OneIn(2)) {
  542. uint32_t more_len = rnd.Uniform(1000) + 1;
  543. std::string more_data = rnd.RandomString(more_len);
  544. ASSERT_OK(w->Append(more_data, {}, nullptr));
  545. data += more_data;
  546. len += more_len;
  547. }
  548. if (rnd.OneIn(2)) {
  549. ASSERT_OK(w->Sync({}, nullptr));
  550. }
  551. if (rnd.OneIn(2)) {
  552. ASSERT_OK(w->Close({}, nullptr));
  553. w.reset();
  554. }
  555. // Second read some of, all of, or more than rest of file
  556. uint32_t second_read_len = rnd.Uniform(len + 1);
  557. scratch.reset(new char[second_read_len]);
  558. ASSERT_OK(r->Read(second_read_len, {}, &sl, scratch.get(), nullptr));
  559. if (len - first_read_len < second_read_len) {
  560. ASSERT_EQ(len - first_read_len, sl.size());
  561. } else {
  562. ASSERT_EQ(second_read_len, sl.size());
  563. }
  564. ASSERT_EQ(0, sl.compare(Slice(data.data() + first_read_len, sl.size())));
  565. }
  566. }
  567. } // namespace ROCKSDB_NAMESPACE
  568. int main(int argc, char** argv) {
  569. ROCKSDB_NAMESPACE::port::InstallStackTraceHandler();
  570. ::testing::InitGoogleTest(&argc, argv);
  571. RegisterCustomObjects(argc, argv);
  572. return RUN_ALL_TESTS();
  573. }