error_handler_test.cc 27 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 (c) 2011 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. #ifndef ROCKSDB_LITE
  10. #include "db/db_test_util.h"
  11. #include "port/stack_trace.h"
  12. #include "rocksdb/perf_context.h"
  13. #include "rocksdb/sst_file_manager.h"
  14. #include "test_util/fault_injection_test_env.h"
  15. #if !defined(ROCKSDB_LITE)
  16. #include "test_util/sync_point.h"
  17. #endif
  18. namespace ROCKSDB_NAMESPACE {
  19. class DBErrorHandlingTest : public DBTestBase {
  20. public:
  21. DBErrorHandlingTest() : DBTestBase("/db_error_handling_test") {}
  22. std::string GetManifestNameFromLiveFiles() {
  23. std::vector<std::string> live_files;
  24. uint64_t manifest_size;
  25. dbfull()->GetLiveFiles(live_files, &manifest_size, false);
  26. for (auto& file : live_files) {
  27. uint64_t num = 0;
  28. FileType type;
  29. if (ParseFileName(file, &num, &type) && type == kDescriptorFile) {
  30. return file;
  31. }
  32. }
  33. return "";
  34. }
  35. };
  36. class DBErrorHandlingEnv : public EnvWrapper {
  37. public:
  38. DBErrorHandlingEnv() : EnvWrapper(Env::Default()),
  39. trig_no_space(false), trig_io_error(false) {}
  40. void SetTrigNoSpace() {trig_no_space = true;}
  41. void SetTrigIoError() {trig_io_error = true;}
  42. private:
  43. bool trig_no_space;
  44. bool trig_io_error;
  45. };
  46. class ErrorHandlerListener : public EventListener {
  47. public:
  48. ErrorHandlerListener()
  49. : mutex_(),
  50. cv_(&mutex_),
  51. no_auto_recovery_(false),
  52. recovery_complete_(false),
  53. file_creation_started_(false),
  54. override_bg_error_(false),
  55. file_count_(0),
  56. fault_env_(nullptr) {}
  57. void OnTableFileCreationStarted(
  58. const TableFileCreationBriefInfo& /*ti*/) override {
  59. InstrumentedMutexLock l(&mutex_);
  60. file_creation_started_ = true;
  61. if (file_count_ > 0) {
  62. if (--file_count_ == 0) {
  63. fault_env_->SetFilesystemActive(false, file_creation_error_);
  64. file_creation_error_ = Status::OK();
  65. }
  66. }
  67. cv_.SignalAll();
  68. }
  69. void OnErrorRecoveryBegin(BackgroundErrorReason /*reason*/,
  70. Status /*bg_error*/,
  71. bool* auto_recovery) override {
  72. if (*auto_recovery && no_auto_recovery_) {
  73. *auto_recovery = false;
  74. }
  75. }
  76. void OnErrorRecoveryCompleted(Status /*old_bg_error*/) override {
  77. InstrumentedMutexLock l(&mutex_);
  78. recovery_complete_ = true;
  79. cv_.SignalAll();
  80. }
  81. bool WaitForRecovery(uint64_t /*abs_time_us*/) {
  82. InstrumentedMutexLock l(&mutex_);
  83. while (!recovery_complete_) {
  84. cv_.Wait(/*abs_time_us*/);
  85. }
  86. if (recovery_complete_) {
  87. recovery_complete_ = false;
  88. return true;
  89. }
  90. return false;
  91. }
  92. void WaitForTableFileCreationStarted(uint64_t /*abs_time_us*/) {
  93. InstrumentedMutexLock l(&mutex_);
  94. while (!file_creation_started_) {
  95. cv_.Wait(/*abs_time_us*/);
  96. }
  97. file_creation_started_ = false;
  98. }
  99. void OnBackgroundError(BackgroundErrorReason /*reason*/,
  100. Status* bg_error) override {
  101. if (override_bg_error_) {
  102. *bg_error = bg_error_;
  103. override_bg_error_ = false;
  104. }
  105. }
  106. void EnableAutoRecovery(bool enable = true) { no_auto_recovery_ = !enable; }
  107. void OverrideBGError(Status bg_err) {
  108. bg_error_ = bg_err;
  109. override_bg_error_ = true;
  110. }
  111. void InjectFileCreationError(FaultInjectionTestEnv* env, int file_count,
  112. Status s) {
  113. fault_env_ = env;
  114. file_count_ = file_count;
  115. file_creation_error_ = s;
  116. }
  117. private:
  118. InstrumentedMutex mutex_;
  119. InstrumentedCondVar cv_;
  120. bool no_auto_recovery_;
  121. bool recovery_complete_;
  122. bool file_creation_started_;
  123. bool override_bg_error_;
  124. int file_count_;
  125. Status file_creation_error_;
  126. Status bg_error_;
  127. FaultInjectionTestEnv* fault_env_;
  128. };
  129. TEST_F(DBErrorHandlingTest, FLushWriteError) {
  130. std::unique_ptr<FaultInjectionTestEnv> fault_env(
  131. new FaultInjectionTestEnv(Env::Default()));
  132. std::shared_ptr<ErrorHandlerListener> listener(new ErrorHandlerListener());
  133. Options options = GetDefaultOptions();
  134. options.create_if_missing = true;
  135. options.env = fault_env.get();
  136. options.listeners.emplace_back(listener);
  137. Status s;
  138. listener->EnableAutoRecovery(false);
  139. DestroyAndReopen(options);
  140. Put(Key(0), "val");
  141. SyncPoint::GetInstance()->SetCallBack(
  142. "FlushJob::Start", [&](void *) {
  143. fault_env->SetFilesystemActive(false, Status::NoSpace("Out of space"));
  144. });
  145. SyncPoint::GetInstance()->EnableProcessing();
  146. s = Flush();
  147. ASSERT_EQ(s.severity(), ROCKSDB_NAMESPACE::Status::Severity::kHardError);
  148. SyncPoint::GetInstance()->DisableProcessing();
  149. fault_env->SetFilesystemActive(true);
  150. s = dbfull()->Resume();
  151. ASSERT_EQ(s, Status::OK());
  152. Reopen(options);
  153. ASSERT_EQ("val", Get(Key(0)));
  154. Destroy(options);
  155. }
  156. TEST_F(DBErrorHandlingTest, ManifestWriteError) {
  157. std::unique_ptr<FaultInjectionTestEnv> fault_env(
  158. new FaultInjectionTestEnv(Env::Default()));
  159. std::shared_ptr<ErrorHandlerListener> listener(new ErrorHandlerListener());
  160. Options options = GetDefaultOptions();
  161. options.create_if_missing = true;
  162. options.env = fault_env.get();
  163. options.listeners.emplace_back(listener);
  164. Status s;
  165. std::string old_manifest;
  166. std::string new_manifest;
  167. listener->EnableAutoRecovery(false);
  168. DestroyAndReopen(options);
  169. old_manifest = GetManifestNameFromLiveFiles();
  170. Put(Key(0), "val");
  171. Flush();
  172. Put(Key(1), "val");
  173. SyncPoint::GetInstance()->SetCallBack(
  174. "VersionSet::LogAndApply:WriteManifest", [&](void *) {
  175. fault_env->SetFilesystemActive(false, Status::NoSpace("Out of space"));
  176. });
  177. SyncPoint::GetInstance()->EnableProcessing();
  178. s = Flush();
  179. ASSERT_EQ(s.severity(), ROCKSDB_NAMESPACE::Status::Severity::kHardError);
  180. SyncPoint::GetInstance()->ClearAllCallBacks();
  181. SyncPoint::GetInstance()->DisableProcessing();
  182. fault_env->SetFilesystemActive(true);
  183. s = dbfull()->Resume();
  184. ASSERT_EQ(s, Status::OK());
  185. new_manifest = GetManifestNameFromLiveFiles();
  186. ASSERT_NE(new_manifest, old_manifest);
  187. Reopen(options);
  188. ASSERT_EQ("val", Get(Key(0)));
  189. ASSERT_EQ("val", Get(Key(1)));
  190. Close();
  191. }
  192. TEST_F(DBErrorHandlingTest, DoubleManifestWriteError) {
  193. std::unique_ptr<FaultInjectionTestEnv> fault_env(
  194. new FaultInjectionTestEnv(Env::Default()));
  195. std::shared_ptr<ErrorHandlerListener> listener(new ErrorHandlerListener());
  196. Options options = GetDefaultOptions();
  197. options.create_if_missing = true;
  198. options.env = fault_env.get();
  199. options.listeners.emplace_back(listener);
  200. Status s;
  201. std::string old_manifest;
  202. std::string new_manifest;
  203. listener->EnableAutoRecovery(false);
  204. DestroyAndReopen(options);
  205. old_manifest = GetManifestNameFromLiveFiles();
  206. Put(Key(0), "val");
  207. Flush();
  208. Put(Key(1), "val");
  209. SyncPoint::GetInstance()->SetCallBack(
  210. "VersionSet::LogAndApply:WriteManifest", [&](void *) {
  211. fault_env->SetFilesystemActive(false, Status::NoSpace("Out of space"));
  212. });
  213. SyncPoint::GetInstance()->EnableProcessing();
  214. s = Flush();
  215. ASSERT_EQ(s.severity(), ROCKSDB_NAMESPACE::Status::Severity::kHardError);
  216. fault_env->SetFilesystemActive(true);
  217. // This Resume() will attempt to create a new manifest file and fail again
  218. s = dbfull()->Resume();
  219. ASSERT_EQ(s.severity(), ROCKSDB_NAMESPACE::Status::Severity::kHardError);
  220. fault_env->SetFilesystemActive(true);
  221. SyncPoint::GetInstance()->ClearAllCallBacks();
  222. SyncPoint::GetInstance()->DisableProcessing();
  223. // A successful Resume() will create a new manifest file
  224. s = dbfull()->Resume();
  225. ASSERT_EQ(s, Status::OK());
  226. new_manifest = GetManifestNameFromLiveFiles();
  227. ASSERT_NE(new_manifest, old_manifest);
  228. Reopen(options);
  229. ASSERT_EQ("val", Get(Key(0)));
  230. ASSERT_EQ("val", Get(Key(1)));
  231. Close();
  232. }
  233. TEST_F(DBErrorHandlingTest, CompactionManifestWriteError) {
  234. std::unique_ptr<FaultInjectionTestEnv> fault_env(
  235. new FaultInjectionTestEnv(Env::Default()));
  236. std::shared_ptr<ErrorHandlerListener> listener(new ErrorHandlerListener());
  237. Options options = GetDefaultOptions();
  238. options.create_if_missing = true;
  239. options.level0_file_num_compaction_trigger = 2;
  240. options.listeners.emplace_back(listener);
  241. options.env = fault_env.get();
  242. Status s;
  243. std::string old_manifest;
  244. std::string new_manifest;
  245. std::atomic<bool> fail_manifest(false);
  246. DestroyAndReopen(options);
  247. old_manifest = GetManifestNameFromLiveFiles();
  248. Put(Key(0), "val");
  249. Put(Key(2), "val");
  250. s = Flush();
  251. ASSERT_EQ(s, Status::OK());
  252. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->LoadDependency(
  253. // Wait for flush of 2nd L0 file before starting compaction
  254. {{"DBImpl::FlushMemTable:FlushMemTableFinished",
  255. "BackgroundCallCompaction:0"},
  256. // Wait for compaction to detect manifest write error
  257. {"BackgroundCallCompaction:1", "CompactionManifestWriteError:0"},
  258. // Make compaction thread wait for error to be cleared
  259. {"CompactionManifestWriteError:1",
  260. "DBImpl::BackgroundCallCompaction:FoundObsoleteFiles"},
  261. // Wait for DB instance to clear bg_error before calling
  262. // TEST_WaitForCompact
  263. {"SstFileManagerImpl::ErrorCleared", "CompactionManifestWriteError:2"}});
  264. // trigger manifest write failure in compaction thread
  265. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->SetCallBack(
  266. "BackgroundCallCompaction:0", [&](void*) { fail_manifest.store(true); });
  267. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->SetCallBack(
  268. "VersionSet::LogAndApply:WriteManifest", [&](void*) {
  269. if (fail_manifest.load()) {
  270. fault_env->SetFilesystemActive(false,
  271. Status::NoSpace("Out of space"));
  272. }
  273. });
  274. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->EnableProcessing();
  275. Put(Key(1), "val");
  276. // This Flush will trigger a compaction, which will fail when appending to
  277. // the manifest
  278. s = Flush();
  279. ASSERT_EQ(s, Status::OK());
  280. TEST_SYNC_POINT("CompactionManifestWriteError:0");
  281. // Clear all errors so when the compaction is retried, it will succeed
  282. fault_env->SetFilesystemActive(true);
  283. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->ClearAllCallBacks();
  284. TEST_SYNC_POINT("CompactionManifestWriteError:1");
  285. TEST_SYNC_POINT("CompactionManifestWriteError:2");
  286. s = dbfull()->TEST_WaitForCompact();
  287. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->DisableProcessing();
  288. ASSERT_EQ(s, Status::OK());
  289. new_manifest = GetManifestNameFromLiveFiles();
  290. ASSERT_NE(new_manifest, old_manifest);
  291. Reopen(options);
  292. ASSERT_EQ("val", Get(Key(0)));
  293. ASSERT_EQ("val", Get(Key(1)));
  294. ASSERT_EQ("val", Get(Key(2)));
  295. Close();
  296. }
  297. TEST_F(DBErrorHandlingTest, CompactionWriteError) {
  298. std::unique_ptr<FaultInjectionTestEnv> fault_env(
  299. new FaultInjectionTestEnv(Env::Default()));
  300. std::shared_ptr<ErrorHandlerListener> listener(new ErrorHandlerListener());
  301. Options options = GetDefaultOptions();
  302. options.create_if_missing = true;
  303. options.level0_file_num_compaction_trigger = 2;
  304. options.listeners.emplace_back(listener);
  305. options.env = fault_env.get();
  306. Status s;
  307. DestroyAndReopen(options);
  308. Put(Key(0), "va;");
  309. Put(Key(2), "va;");
  310. s = Flush();
  311. ASSERT_EQ(s, Status::OK());
  312. listener->OverrideBGError(
  313. Status(Status::NoSpace(), Status::Severity::kHardError)
  314. );
  315. listener->EnableAutoRecovery(false);
  316. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->LoadDependency(
  317. {{"DBImpl::FlushMemTable:FlushMemTableFinished",
  318. "BackgroundCallCompaction:0"}});
  319. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->SetCallBack(
  320. "BackgroundCallCompaction:0", [&](void*) {
  321. fault_env->SetFilesystemActive(false, Status::NoSpace("Out of space"));
  322. });
  323. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->EnableProcessing();
  324. Put(Key(1), "val");
  325. s = Flush();
  326. ASSERT_EQ(s, Status::OK());
  327. s = dbfull()->TEST_WaitForCompact();
  328. ASSERT_EQ(s.severity(), ROCKSDB_NAMESPACE::Status::Severity::kHardError);
  329. fault_env->SetFilesystemActive(true);
  330. s = dbfull()->Resume();
  331. ASSERT_EQ(s, Status::OK());
  332. Destroy(options);
  333. }
  334. TEST_F(DBErrorHandlingTest, CorruptionError) {
  335. std::unique_ptr<FaultInjectionTestEnv> fault_env(
  336. new FaultInjectionTestEnv(Env::Default()));
  337. Options options = GetDefaultOptions();
  338. options.create_if_missing = true;
  339. options.level0_file_num_compaction_trigger = 2;
  340. options.env = fault_env.get();
  341. Status s;
  342. DestroyAndReopen(options);
  343. Put(Key(0), "va;");
  344. Put(Key(2), "va;");
  345. s = Flush();
  346. ASSERT_EQ(s, Status::OK());
  347. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->LoadDependency(
  348. {{"DBImpl::FlushMemTable:FlushMemTableFinished",
  349. "BackgroundCallCompaction:0"}});
  350. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->SetCallBack(
  351. "BackgroundCallCompaction:0", [&](void*) {
  352. fault_env->SetFilesystemActive(false, Status::Corruption("Corruption"));
  353. });
  354. ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->EnableProcessing();
  355. Put(Key(1), "val");
  356. s = Flush();
  357. ASSERT_EQ(s, Status::OK());
  358. s = dbfull()->TEST_WaitForCompact();
  359. ASSERT_EQ(s.severity(),
  360. ROCKSDB_NAMESPACE::Status::Severity::kUnrecoverableError);
  361. fault_env->SetFilesystemActive(true);
  362. s = dbfull()->Resume();
  363. ASSERT_NE(s, Status::OK());
  364. Destroy(options);
  365. }
  366. TEST_F(DBErrorHandlingTest, AutoRecoverFlushError) {
  367. std::unique_ptr<FaultInjectionTestEnv> fault_env(
  368. new FaultInjectionTestEnv(Env::Default()));
  369. std::shared_ptr<ErrorHandlerListener> listener(new ErrorHandlerListener());
  370. Options options = GetDefaultOptions();
  371. options.create_if_missing = true;
  372. options.env = fault_env.get();
  373. options.listeners.emplace_back(listener);
  374. Status s;
  375. listener->EnableAutoRecovery();
  376. DestroyAndReopen(options);
  377. Put(Key(0), "val");
  378. SyncPoint::GetInstance()->SetCallBack("FlushJob::Start", [&](void*) {
  379. fault_env->SetFilesystemActive(false, Status::NoSpace("Out of space"));
  380. });
  381. SyncPoint::GetInstance()->EnableProcessing();
  382. s = Flush();
  383. ASSERT_EQ(s.severity(), ROCKSDB_NAMESPACE::Status::Severity::kHardError);
  384. SyncPoint::GetInstance()->DisableProcessing();
  385. fault_env->SetFilesystemActive(true);
  386. ASSERT_EQ(listener->WaitForRecovery(5000000), true);
  387. s = Put(Key(1), "val");
  388. ASSERT_EQ(s, Status::OK());
  389. Reopen(options);
  390. ASSERT_EQ("val", Get(Key(0)));
  391. ASSERT_EQ("val", Get(Key(1)));
  392. Destroy(options);
  393. }
  394. TEST_F(DBErrorHandlingTest, FailRecoverFlushError) {
  395. std::unique_ptr<FaultInjectionTestEnv> fault_env(
  396. new FaultInjectionTestEnv(Env::Default()));
  397. std::shared_ptr<ErrorHandlerListener> listener(new ErrorHandlerListener());
  398. Options options = GetDefaultOptions();
  399. options.create_if_missing = true;
  400. options.env = fault_env.get();
  401. options.listeners.emplace_back(listener);
  402. Status s;
  403. listener->EnableAutoRecovery();
  404. DestroyAndReopen(options);
  405. Put(Key(0), "val");
  406. SyncPoint::GetInstance()->SetCallBack("FlushJob::Start", [&](void*) {
  407. fault_env->SetFilesystemActive(false, Status::NoSpace("Out of space"));
  408. });
  409. SyncPoint::GetInstance()->EnableProcessing();
  410. s = Flush();
  411. ASSERT_EQ(s.severity(), ROCKSDB_NAMESPACE::Status::Severity::kHardError);
  412. // We should be able to shutdown the database while auto recovery is going
  413. // on in the background
  414. Close();
  415. DestroyDB(dbname_, options);
  416. }
  417. TEST_F(DBErrorHandlingTest, WALWriteError) {
  418. std::unique_ptr<FaultInjectionTestEnv> fault_env(
  419. new FaultInjectionTestEnv(Env::Default()));
  420. std::shared_ptr<ErrorHandlerListener> listener(new ErrorHandlerListener());
  421. Options options = GetDefaultOptions();
  422. options.create_if_missing = true;
  423. options.writable_file_max_buffer_size = 32768;
  424. options.env = fault_env.get();
  425. options.listeners.emplace_back(listener);
  426. Status s;
  427. Random rnd(301);
  428. listener->EnableAutoRecovery();
  429. DestroyAndReopen(options);
  430. {
  431. WriteBatch batch;
  432. for (auto i = 0; i<100; ++i) {
  433. batch.Put(Key(i), RandomString(&rnd, 1024));
  434. }
  435. WriteOptions wopts;
  436. wopts.sync = true;
  437. ASSERT_EQ(dbfull()->Write(wopts, &batch), Status::OK());
  438. };
  439. {
  440. WriteBatch batch;
  441. int write_error = 0;
  442. for (auto i = 100; i<199; ++i) {
  443. batch.Put(Key(i), RandomString(&rnd, 1024));
  444. }
  445. SyncPoint::GetInstance()->SetCallBack("WritableFileWriter::Append:BeforePrepareWrite", [&](void*) {
  446. write_error++;
  447. if (write_error > 2) {
  448. fault_env->SetFilesystemActive(false, Status::NoSpace("Out of space"));
  449. }
  450. });
  451. SyncPoint::GetInstance()->EnableProcessing();
  452. WriteOptions wopts;
  453. wopts.sync = true;
  454. s = dbfull()->Write(wopts, &batch);
  455. ASSERT_EQ(s, s.NoSpace());
  456. }
  457. SyncPoint::GetInstance()->DisableProcessing();
  458. fault_env->SetFilesystemActive(true);
  459. ASSERT_EQ(listener->WaitForRecovery(5000000), true);
  460. for (auto i=0; i<199; ++i) {
  461. if (i < 100) {
  462. ASSERT_NE(Get(Key(i)), "NOT_FOUND");
  463. } else {
  464. ASSERT_EQ(Get(Key(i)), "NOT_FOUND");
  465. }
  466. }
  467. Reopen(options);
  468. for (auto i=0; i<199; ++i) {
  469. if (i < 100) {
  470. ASSERT_NE(Get(Key(i)), "NOT_FOUND");
  471. } else {
  472. ASSERT_EQ(Get(Key(i)), "NOT_FOUND");
  473. }
  474. }
  475. Close();
  476. }
  477. TEST_F(DBErrorHandlingTest, MultiCFWALWriteError) {
  478. std::unique_ptr<FaultInjectionTestEnv> fault_env(
  479. new FaultInjectionTestEnv(Env::Default()));
  480. std::shared_ptr<ErrorHandlerListener> listener(new ErrorHandlerListener());
  481. Options options = GetDefaultOptions();
  482. options.create_if_missing = true;
  483. options.writable_file_max_buffer_size = 32768;
  484. options.env = fault_env.get();
  485. options.listeners.emplace_back(listener);
  486. Status s;
  487. Random rnd(301);
  488. listener->EnableAutoRecovery();
  489. CreateAndReopenWithCF({"one", "two", "three"}, options);
  490. {
  491. WriteBatch batch;
  492. for (auto i = 1; i < 4; ++i) {
  493. for (auto j = 0; j < 100; ++j) {
  494. batch.Put(handles_[i], Key(j), RandomString(&rnd, 1024));
  495. }
  496. }
  497. WriteOptions wopts;
  498. wopts.sync = true;
  499. ASSERT_EQ(dbfull()->Write(wopts, &batch), Status::OK());
  500. };
  501. {
  502. WriteBatch batch;
  503. int write_error = 0;
  504. // Write to one CF
  505. for (auto i = 100; i < 199; ++i) {
  506. batch.Put(handles_[2], Key(i), RandomString(&rnd, 1024));
  507. }
  508. SyncPoint::GetInstance()->SetCallBack(
  509. "WritableFileWriter::Append:BeforePrepareWrite", [&](void*) {
  510. write_error++;
  511. if (write_error > 2) {
  512. fault_env->SetFilesystemActive(false,
  513. Status::NoSpace("Out of space"));
  514. }
  515. });
  516. SyncPoint::GetInstance()->EnableProcessing();
  517. WriteOptions wopts;
  518. wopts.sync = true;
  519. s = dbfull()->Write(wopts, &batch);
  520. ASSERT_EQ(s, s.NoSpace());
  521. }
  522. SyncPoint::GetInstance()->DisableProcessing();
  523. fault_env->SetFilesystemActive(true);
  524. ASSERT_EQ(listener->WaitForRecovery(5000000), true);
  525. for (auto i = 1; i < 4; ++i) {
  526. // Every CF should have been flushed
  527. ASSERT_EQ(NumTableFilesAtLevel(0, i), 1);
  528. }
  529. for (auto i = 1; i < 4; ++i) {
  530. for (auto j = 0; j < 199; ++j) {
  531. if (j < 100) {
  532. ASSERT_NE(Get(i, Key(j)), "NOT_FOUND");
  533. } else {
  534. ASSERT_EQ(Get(i, Key(j)), "NOT_FOUND");
  535. }
  536. }
  537. }
  538. ReopenWithColumnFamilies({"default", "one", "two", "three"}, options);
  539. for (auto i = 1; i < 4; ++i) {
  540. for (auto j = 0; j < 199; ++j) {
  541. if (j < 100) {
  542. ASSERT_NE(Get(i, Key(j)), "NOT_FOUND");
  543. } else {
  544. ASSERT_EQ(Get(i, Key(j)), "NOT_FOUND");
  545. }
  546. }
  547. }
  548. Close();
  549. }
  550. TEST_F(DBErrorHandlingTest, MultiDBCompactionError) {
  551. FaultInjectionTestEnv* def_env = new FaultInjectionTestEnv(Env::Default());
  552. std::vector<std::unique_ptr<FaultInjectionTestEnv>> fault_env;
  553. std::vector<Options> options;
  554. std::vector<std::shared_ptr<ErrorHandlerListener>> listener;
  555. std::vector<DB*> db;
  556. std::shared_ptr<SstFileManager> sfm(NewSstFileManager(def_env));
  557. int kNumDbInstances = 3;
  558. Random rnd(301);
  559. for (auto i = 0; i < kNumDbInstances; ++i) {
  560. listener.emplace_back(new ErrorHandlerListener());
  561. options.emplace_back(GetDefaultOptions());
  562. fault_env.emplace_back(new FaultInjectionTestEnv(Env::Default()));
  563. options[i].create_if_missing = true;
  564. options[i].level0_file_num_compaction_trigger = 2;
  565. options[i].writable_file_max_buffer_size = 32768;
  566. options[i].env = fault_env[i].get();
  567. options[i].listeners.emplace_back(listener[i]);
  568. options[i].sst_file_manager = sfm;
  569. DB* dbptr;
  570. char buf[16];
  571. listener[i]->EnableAutoRecovery();
  572. // Setup for returning error for the 3rd SST, which would be level 1
  573. listener[i]->InjectFileCreationError(fault_env[i].get(), 3,
  574. Status::NoSpace("Out of space"));
  575. snprintf(buf, sizeof(buf), "_%d", i);
  576. DestroyDB(dbname_ + std::string(buf), options[i]);
  577. ASSERT_EQ(DB::Open(options[i], dbname_ + std::string(buf), &dbptr),
  578. Status::OK());
  579. db.emplace_back(dbptr);
  580. }
  581. for (auto i = 0; i < kNumDbInstances; ++i) {
  582. WriteBatch batch;
  583. for (auto j = 0; j <= 100; ++j) {
  584. batch.Put(Key(j), RandomString(&rnd, 1024));
  585. }
  586. WriteOptions wopts;
  587. wopts.sync = true;
  588. ASSERT_EQ(db[i]->Write(wopts, &batch), Status::OK());
  589. ASSERT_EQ(db[i]->Flush(FlushOptions()), Status::OK());
  590. }
  591. def_env->SetFilesystemActive(false, Status::NoSpace("Out of space"));
  592. for (auto i = 0; i < kNumDbInstances; ++i) {
  593. WriteBatch batch;
  594. // Write to one CF
  595. for (auto j = 100; j < 199; ++j) {
  596. batch.Put(Key(j), RandomString(&rnd, 1024));
  597. }
  598. WriteOptions wopts;
  599. wopts.sync = true;
  600. ASSERT_EQ(db[i]->Write(wopts, &batch), Status::OK());
  601. ASSERT_EQ(db[i]->Flush(FlushOptions()), Status::OK());
  602. }
  603. for (auto i = 0; i < kNumDbInstances; ++i) {
  604. Status s = static_cast<DBImpl*>(db[i])->TEST_WaitForCompact(true);
  605. ASSERT_EQ(s.severity(), Status::Severity::kSoftError);
  606. fault_env[i]->SetFilesystemActive(true);
  607. }
  608. def_env->SetFilesystemActive(true);
  609. for (auto i = 0; i < kNumDbInstances; ++i) {
  610. std::string prop;
  611. ASSERT_EQ(listener[i]->WaitForRecovery(5000000), true);
  612. ASSERT_EQ(static_cast<DBImpl*>(db[i])->TEST_WaitForCompact(true),
  613. Status::OK());
  614. EXPECT_TRUE(db[i]->GetProperty(
  615. "rocksdb.num-files-at-level" + NumberToString(0), &prop));
  616. EXPECT_EQ(atoi(prop.c_str()), 0);
  617. EXPECT_TRUE(db[i]->GetProperty(
  618. "rocksdb.num-files-at-level" + NumberToString(1), &prop));
  619. EXPECT_EQ(atoi(prop.c_str()), 1);
  620. }
  621. for (auto i = 0; i < kNumDbInstances; ++i) {
  622. char buf[16];
  623. snprintf(buf, sizeof(buf), "_%d", i);
  624. delete db[i];
  625. fault_env[i]->SetFilesystemActive(true);
  626. if (getenv("KEEP_DB")) {
  627. printf("DB is still at %s%s\n", dbname_.c_str(), buf);
  628. } else {
  629. Status s = DestroyDB(dbname_ + std::string(buf), options[i]);
  630. }
  631. }
  632. options.clear();
  633. sfm.reset();
  634. delete def_env;
  635. }
  636. TEST_F(DBErrorHandlingTest, MultiDBVariousErrors) {
  637. FaultInjectionTestEnv* def_env = new FaultInjectionTestEnv(Env::Default());
  638. std::vector<std::unique_ptr<FaultInjectionTestEnv>> fault_env;
  639. std::vector<Options> options;
  640. std::vector<std::shared_ptr<ErrorHandlerListener>> listener;
  641. std::vector<DB*> db;
  642. std::shared_ptr<SstFileManager> sfm(NewSstFileManager(def_env));
  643. int kNumDbInstances = 3;
  644. Random rnd(301);
  645. for (auto i = 0; i < kNumDbInstances; ++i) {
  646. listener.emplace_back(new ErrorHandlerListener());
  647. options.emplace_back(GetDefaultOptions());
  648. fault_env.emplace_back(new FaultInjectionTestEnv(Env::Default()));
  649. options[i].create_if_missing = true;
  650. options[i].level0_file_num_compaction_trigger = 2;
  651. options[i].writable_file_max_buffer_size = 32768;
  652. options[i].env = fault_env[i].get();
  653. options[i].listeners.emplace_back(listener[i]);
  654. options[i].sst_file_manager = sfm;
  655. DB* dbptr;
  656. char buf[16];
  657. listener[i]->EnableAutoRecovery();
  658. switch (i) {
  659. case 0:
  660. // Setup for returning error for the 3rd SST, which would be level 1
  661. listener[i]->InjectFileCreationError(fault_env[i].get(), 3,
  662. Status::NoSpace("Out of space"));
  663. break;
  664. case 1:
  665. // Setup for returning error after the 1st SST, which would result
  666. // in a hard error
  667. listener[i]->InjectFileCreationError(fault_env[i].get(), 2,
  668. Status::NoSpace("Out of space"));
  669. break;
  670. default:
  671. break;
  672. }
  673. snprintf(buf, sizeof(buf), "_%d", i);
  674. DestroyDB(dbname_ + std::string(buf), options[i]);
  675. ASSERT_EQ(DB::Open(options[i], dbname_ + std::string(buf), &dbptr),
  676. Status::OK());
  677. db.emplace_back(dbptr);
  678. }
  679. for (auto i = 0; i < kNumDbInstances; ++i) {
  680. WriteBatch batch;
  681. for (auto j = 0; j <= 100; ++j) {
  682. batch.Put(Key(j), RandomString(&rnd, 1024));
  683. }
  684. WriteOptions wopts;
  685. wopts.sync = true;
  686. ASSERT_EQ(db[i]->Write(wopts, &batch), Status::OK());
  687. ASSERT_EQ(db[i]->Flush(FlushOptions()), Status::OK());
  688. }
  689. def_env->SetFilesystemActive(false, Status::NoSpace("Out of space"));
  690. for (auto i = 0; i < kNumDbInstances; ++i) {
  691. WriteBatch batch;
  692. // Write to one CF
  693. for (auto j = 100; j < 199; ++j) {
  694. batch.Put(Key(j), RandomString(&rnd, 1024));
  695. }
  696. WriteOptions wopts;
  697. wopts.sync = true;
  698. ASSERT_EQ(db[i]->Write(wopts, &batch), Status::OK());
  699. if (i != 1) {
  700. ASSERT_EQ(db[i]->Flush(FlushOptions()), Status::OK());
  701. } else {
  702. ASSERT_EQ(db[i]->Flush(FlushOptions()), Status::NoSpace());
  703. }
  704. }
  705. for (auto i = 0; i < kNumDbInstances; ++i) {
  706. Status s = static_cast<DBImpl*>(db[i])->TEST_WaitForCompact(true);
  707. switch (i) {
  708. case 0:
  709. ASSERT_EQ(s.severity(), Status::Severity::kSoftError);
  710. break;
  711. case 1:
  712. ASSERT_EQ(s.severity(), Status::Severity::kHardError);
  713. break;
  714. case 2:
  715. ASSERT_EQ(s, Status::OK());
  716. break;
  717. }
  718. fault_env[i]->SetFilesystemActive(true);
  719. }
  720. def_env->SetFilesystemActive(true);
  721. for (auto i = 0; i < kNumDbInstances; ++i) {
  722. std::string prop;
  723. if (i < 2) {
  724. ASSERT_EQ(listener[i]->WaitForRecovery(5000000), true);
  725. }
  726. if (i == 1) {
  727. ASSERT_EQ(static_cast<DBImpl*>(db[i])->TEST_WaitForCompact(true),
  728. Status::OK());
  729. }
  730. EXPECT_TRUE(db[i]->GetProperty(
  731. "rocksdb.num-files-at-level" + NumberToString(0), &prop));
  732. EXPECT_EQ(atoi(prop.c_str()), 0);
  733. EXPECT_TRUE(db[i]->GetProperty(
  734. "rocksdb.num-files-at-level" + NumberToString(1), &prop));
  735. EXPECT_EQ(atoi(prop.c_str()), 1);
  736. }
  737. for (auto i = 0; i < kNumDbInstances; ++i) {
  738. char buf[16];
  739. snprintf(buf, sizeof(buf), "_%d", i);
  740. fault_env[i]->SetFilesystemActive(true);
  741. delete db[i];
  742. if (getenv("KEEP_DB")) {
  743. printf("DB is still at %s%s\n", dbname_.c_str(), buf);
  744. } else {
  745. DestroyDB(dbname_ + std::string(buf), options[i]);
  746. }
  747. }
  748. options.clear();
  749. delete def_env;
  750. }
  751. } // namespace ROCKSDB_NAMESPACE
  752. int main(int argc, char** argv) {
  753. ROCKSDB_NAMESPACE::port::InstallStackTraceHandler();
  754. ::testing::InitGoogleTest(&argc, argv);
  755. return RUN_ALL_TESTS();
  756. }
  757. #else
  758. #include <stdio.h>
  759. int main(int /*argc*/, char** /*argv*/) {
  760. fprintf(stderr, "SKIPPED as Cuckoo table is not supported in ROCKSDB_LITE\n");
  761. return 0;
  762. }
  763. #endif // ROCKSDB_LITE