mirror of https://github.com/facebook/rocksdb.git
FaultInjectionTestFS::DeleteFilesCreatedAfterLastDirSync() to recover… (#8501)
Summary: … small overwritten files. If a file is overwritten with renamed and the parent path is not synced, FaultInjectionTestFS::DeleteFilesCreatedAfterLastDirSync() will delete the file. However, RocksDB relies on file renaming to be atomic no matter whether the parent directory is synced or not, and the current behavior breaks the assumption and caused some false positive: https://github.com/facebook/rocksdb/pull/8489 Since the atomic renaming is used in CURRENT files, to fix the problem, in FaultInjectionTestFS::DeleteFilesCreatedAfterLastDirSync(), we recover the state of overwritten file if the file is small. Pull Request resolved: https://github.com/facebook/rocksdb/pull/8501 Test Plan: Run stress test for a while and see it doesn't break. Reviewed By: anand1976 Differential Revision: D29594384 fbshipit-source-id: 589b5c2f0a9d2aca53752d7bdb0231efa5b3ae92
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@ -2558,16 +2558,10 @@ void StressTest::Open() {
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ingest_read_error = false;
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Random rand(static_cast<uint32_t>(FLAGS_seed));
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// TODO: This is disabled for now as deleting the CURRENT file after open
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// failure causes the DB to not be reopened again due to the presence of
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// WAL files, which DB::Open considers to be a corruption. Re-enable once
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// we figure out a proper fix
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#if 0
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if (rand.OneIn(2)) {
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fault_fs_guard->DeleteFilesCreatedAfterLastDirSync(IOOptions(),
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nullptr);
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}
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#endif
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if (rand.OneIn(3)) {
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fault_fs_guard->DropUnsyncedFileData();
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} else if (rand.OneIn(2)) {
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@ -30,6 +30,8 @@
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namespace ROCKSDB_NAMESPACE {
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const std::string kNewFileNoOverwrite = "";
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// Assume a filename, and not a directory name like "/foo/bar/"
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std::string TestFSGetDirName(const std::string filename) {
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size_t found = filename.find_last_of("/\\");
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@ -415,7 +417,10 @@ IOStatus FaultInjectionTestFS::NewWritableFile(
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open_files_.insert(fname);
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auto dir_and_name = TestFSGetDirAndName(fname);
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auto& list = dir_to_new_files_since_last_sync_[dir_and_name.first];
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list.insert(dir_and_name.second);
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// The new file could overwrite an old one. Here we simplify
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// the implementation by assuming no file of this name after
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// dropping unsynced files.
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list[dir_and_name.second] = kNewFileNoOverwrite;
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}
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{
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IOStatus in_s = InjectMetadataWriteError();
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@ -454,7 +459,7 @@ IOStatus FaultInjectionTestFS::ReopenWritableFile(
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open_files_.insert(fname);
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auto dir_and_name = TestFSGetDirAndName(fname);
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auto& list = dir_to_new_files_since_last_sync_[dir_and_name.first];
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list.insert(dir_and_name.second);
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list[dir_and_name.second] = kNewFileNoOverwrite;
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}
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{
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IOStatus in_s = InjectMetadataWriteError();
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@ -492,7 +497,9 @@ IOStatus FaultInjectionTestFS::NewRandomRWFile(
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open_files_.insert(fname);
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auto dir_and_name = TestFSGetDirAndName(fname);
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auto& list = dir_to_new_files_since_last_sync_[dir_and_name.first];
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list.insert(dir_and_name.second);
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// It could be overwriting an old file, but we simplify the
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// implementation by ignoring it.
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list[dir_and_name.second] = kNewFileNoOverwrite;
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}
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{
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IOStatus in_s = InjectMetadataWriteError();
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@ -579,6 +586,19 @@ IOStatus FaultInjectionTestFS::RenameFile(const std::string& s,
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return in_s;
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}
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}
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// We preserve contents of overwritten files up to a size threshold.
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// We could keep previous file in another name, but we need to worry about
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// garbage collect the those files. We do it if it is needed later.
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// We ignore I/O errors here for simplicity.
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std::string previous_contents = kNewFileNoOverwrite;
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if (target()->FileExists(t, IOOptions(), nullptr).ok()) {
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uint64_t file_size;
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if (target()->GetFileSize(t, IOOptions(), &file_size, nullptr).ok() &&
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file_size < 1024) {
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ReadFileToString(target(), t, &previous_contents).PermitUncheckedError();
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}
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}
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IOStatus io_s = FileSystemWrapper::RenameFile(s, t, options, dbg);
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if (io_s.ok()) {
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@ -594,7 +614,7 @@ IOStatus FaultInjectionTestFS::RenameFile(const std::string& s,
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if (dir_to_new_files_since_last_sync_[sdn.first].erase(sdn.second) != 0) {
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auto& tlist = dir_to_new_files_since_last_sync_[tdn.first];
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assert(tlist.find(tdn.second) == tlist.end());
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tlist.insert(tdn.second);
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tlist[tdn.second] = previous_contents;
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}
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}
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IOStatus in_s = InjectMetadataWriteError();
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@ -665,7 +685,7 @@ IOStatus FaultInjectionTestFS::DropRandomUnsyncedFileData(Random* rnd) {
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IOStatus FaultInjectionTestFS::DeleteFilesCreatedAfterLastDirSync(
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const IOOptions& options, IODebugContext* dbg) {
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// Because DeleteFile access this container make a copy to avoid deadlock
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std::map<std::string, std::set<std::string>> map_copy;
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std::map<std::string, std::map<std::string, std::string>> map_copy;
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{
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MutexLock l(&mutex_);
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map_copy.insert(dir_to_new_files_since_last_sync_.begin(),
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@ -673,10 +693,20 @@ IOStatus FaultInjectionTestFS::DeleteFilesCreatedAfterLastDirSync(
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}
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for (auto& pair : map_copy) {
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for (std::string name : pair.second) {
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IOStatus io_s = DeleteFile(pair.first + "/" + name, options, dbg);
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if (!io_s.ok()) {
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return io_s;
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for (auto& file_pair : pair.second) {
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if (file_pair.second == kNewFileNoOverwrite) {
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IOStatus io_s =
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DeleteFile(pair.first + "/" + file_pair.first, options, dbg);
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if (!io_s.ok()) {
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return io_s;
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}
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} else {
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IOStatus io_s =
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WriteStringToFile(target(), file_pair.second,
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pair.first + "/" + file_pair.first, true);
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if (!io_s.ok()) {
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return io_s;
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}
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}
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}
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}
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@ -480,7 +480,11 @@ class FaultInjectionTestFS : public FileSystemWrapper {
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port::Mutex mutex_;
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std::map<std::string, FSFileState> db_file_state_;
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std::set<std::string> open_files_;
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std::unordered_map<std::string, std::set<std::string>>
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// directory -> (file name -> file contents to recover)
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// When data is recovered from unsyned parent directory, the files with
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// empty file contents to recover is deleted. Those with non-empty ones
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// will be recovered to content accordingly.
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std::unordered_map<std::string, std::map<std::string, std::string>>
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dir_to_new_files_since_last_sync_;
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bool filesystem_active_; // Record flushes, syncs, writes
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bool filesystem_writable_; // Bypass FaultInjectionTestFS and go directly
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