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41e5cf2392
Summary: added a new option to BackupEngine: if share_files_with_checksum is set to true, sst files are stored in shared_checksum/ and are identified by the triple (file name, checksum, file size) instead of just the file name. This option is targeted at distributed databases that want to backup their primary replica. Test Plan: unit tests and tested backup and restore on a distributed rocksdb Reviewers: igor Reviewed By: igor Differential Revision: https://reviews.facebook.net/D18393
252 lines
9.7 KiB
C++
252 lines
9.7 KiB
C++
// Copyright (c) 2013, Facebook, Inc. All rights reserved.
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// This source code is licensed under the BSD-style license found in the
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// LICENSE file in the root directory of this source tree. An additional grant
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// of patent rights can be found in the PATENTS file in the same directory.
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//
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// Copyright (c) 2011 The LevelDB Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file. See the AUTHORS file for names of contributors.
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#pragma once
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#ifndef ROCKSDB_LITE
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#define __STDC_FORMAT_MACROS
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#include <inttypes.h>
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#include <string>
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#include <map>
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#include <vector>
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#include "utilities/stackable_db.h"
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#include "rocksdb/env.h"
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#include "rocksdb/status.h"
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namespace rocksdb {
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struct BackupableDBOptions {
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// Where to keep the backup files. Has to be different than dbname_
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// Best to set this to dbname_ + "/backups"
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// Required
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std::string backup_dir;
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// Backup Env object. It will be used for backup file I/O. If it's
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// nullptr, backups will be written out using DBs Env. If it's
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// non-nullptr, backup's I/O will be performed using this object.
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// If you want to have backups on HDFS, use HDFS Env here!
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// Default: nullptr
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Env* backup_env;
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// If share_table_files == true, backup will assume that table files with
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// same name have the same contents. This enables incremental backups and
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// avoids unnecessary data copies.
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// If share_table_files == false, each backup will be on its own and will
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// not share any data with other backups.
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// default: true
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bool share_table_files;
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// Backup info and error messages will be written to info_log
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// if non-nullptr.
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// Default: nullptr
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Logger* info_log;
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// If sync == true, we can guarantee you'll get consistent backup even
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// on a machine crash/reboot. Backup process is slower with sync enabled.
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// If sync == false, we don't guarantee anything on machine reboot. However,
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// chances are some of the backups are consistent.
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// Default: true
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bool sync;
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// If true, it will delete whatever backups there are already
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// Default: false
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bool destroy_old_data;
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// If false, we won't backup log files. This option can be useful for backing
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// up in-memory databases where log file are persisted, but table files are in
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// memory.
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// Default: true
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bool backup_log_files;
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// Max bytes that can be transferred in a second during backup.
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// If 0, go as fast as you can
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// Default: 0
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uint64_t backup_rate_limit;
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// Max bytes that can be transferred in a second during restore.
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// If 0, go as fast as you can
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// Default: 0
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uint64_t restore_rate_limit;
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// Only used if share_table_files is set to true. If true, will consider that
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// backups can come from different databases, hence a sst is not uniquely
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// identifed by its name, but by the triple (file name, crc32, file length)
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// Default: false
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// Note: this is an experimental option, and you'll need to set it manually
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// *turn it on only if you know what you're doing*
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bool share_files_with_checksum;
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void Dump(Logger* logger) const;
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explicit BackupableDBOptions(const std::string& _backup_dir,
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Env* _backup_env = nullptr,
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bool _share_table_files = true,
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Logger* _info_log = nullptr, bool _sync = true,
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bool _destroy_old_data = false,
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bool _backup_log_files = true,
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uint64_t _backup_rate_limit = 0,
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uint64_t _restore_rate_limit = 0)
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: backup_dir(_backup_dir),
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backup_env(_backup_env),
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share_table_files(_share_table_files),
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info_log(_info_log),
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sync(_sync),
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destroy_old_data(_destroy_old_data),
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backup_log_files(_backup_log_files),
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backup_rate_limit(_backup_rate_limit),
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restore_rate_limit(_restore_rate_limit),
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share_files_with_checksum(false) {
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assert(share_table_files || !share_files_with_checksum);
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}
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};
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struct RestoreOptions {
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// If true, restore won't overwrite the existing log files in wal_dir. It will
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// also move all log files from archive directory to wal_dir. Use this option
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// in combination with BackupableDBOptions::backup_log_files = false for
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// persisting in-memory databases.
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// Default: false
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bool keep_log_files;
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explicit RestoreOptions(bool _keep_log_files = false)
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: keep_log_files(_keep_log_files) {}
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};
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typedef uint32_t BackupID;
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struct BackupInfo {
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BackupID backup_id;
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int64_t timestamp;
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uint64_t size;
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BackupInfo() {}
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BackupInfo(BackupID _backup_id, int64_t _timestamp, uint64_t _size)
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: backup_id(_backup_id), timestamp(_timestamp), size(_size) {}
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};
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class BackupEngineReadOnly {
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public:
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virtual ~BackupEngineReadOnly() {}
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static BackupEngineReadOnly* NewReadOnlyBackupEngine(
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Env* db_env, const BackupableDBOptions& options);
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// You can GetBackupInfo safely, even with other BackupEngine performing
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// backups on the same directory
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virtual void GetBackupInfo(std::vector<BackupInfo>* backup_info) = 0;
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// Restoring DB from backup is NOT safe when there is another BackupEngine
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// running that might call DeleteBackup() or PurgeOldBackups(). It is caller's
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// responsibility to synchronize the operation, i.e. don't delete the backup
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// when you're restoring from it
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virtual Status RestoreDBFromBackup(
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BackupID backup_id, const std::string& db_dir, const std::string& wal_dir,
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const RestoreOptions& restore_options = RestoreOptions()) = 0;
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virtual Status RestoreDBFromLatestBackup(
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const std::string& db_dir, const std::string& wal_dir,
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const RestoreOptions& restore_options = RestoreOptions()) = 0;
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};
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// Please see the documentation in BackupableDB and RestoreBackupableDB
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class BackupEngine {
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public:
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virtual ~BackupEngine() {}
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static BackupEngine* NewBackupEngine(Env* db_env,
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const BackupableDBOptions& options);
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virtual Status CreateNewBackup(DB* db, bool flush_before_backup = false) = 0;
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virtual Status PurgeOldBackups(uint32_t num_backups_to_keep) = 0;
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virtual Status DeleteBackup(BackupID backup_id) = 0;
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virtual void StopBackup() = 0;
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virtual void GetBackupInfo(std::vector<BackupInfo>* backup_info) = 0;
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virtual Status RestoreDBFromBackup(
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BackupID backup_id, const std::string& db_dir, const std::string& wal_dir,
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const RestoreOptions& restore_options = RestoreOptions()) = 0;
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virtual Status RestoreDBFromLatestBackup(
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const std::string& db_dir, const std::string& wal_dir,
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const RestoreOptions& restore_options = RestoreOptions()) = 0;
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};
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// Stack your DB with BackupableDB to be able to backup the DB
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class BackupableDB : public StackableDB {
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public:
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// BackupableDBOptions have to be the same as the ones used in a previous
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// incarnation of the DB
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//
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// BackupableDB ownes the pointer `DB* db` now. You should not delete it or
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// use it after the invocation of BackupableDB
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BackupableDB(DB* db, const BackupableDBOptions& options);
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virtual ~BackupableDB();
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// Captures the state of the database in the latest backup
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// NOT a thread safe call
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Status CreateNewBackup(bool flush_before_backup = false);
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// Returns info about backups in backup_info
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void GetBackupInfo(std::vector<BackupInfo>* backup_info);
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// deletes old backups, keeping latest num_backups_to_keep alive
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Status PurgeOldBackups(uint32_t num_backups_to_keep);
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// deletes a specific backup
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Status DeleteBackup(BackupID backup_id);
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// Call this from another thread if you want to stop the backup
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// that is currently happening. It will return immediatelly, will
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// not wait for the backup to stop.
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// The backup will stop ASAP and the call to CreateNewBackup will
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// return Status::Incomplete(). It will not clean up after itself, but
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// the state will remain consistent. The state will be cleaned up
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// next time you create BackupableDB or RestoreBackupableDB.
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void StopBackup();
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private:
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BackupEngine* backup_engine_;
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};
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// Use this class to access information about backups and restore from them
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class RestoreBackupableDB {
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public:
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RestoreBackupableDB(Env* db_env, const BackupableDBOptions& options);
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~RestoreBackupableDB();
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// Returns info about backups in backup_info
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void GetBackupInfo(std::vector<BackupInfo>* backup_info);
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// restore from backup with backup_id
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// IMPORTANT -- if options_.share_table_files == true and you restore DB
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// from some backup that is not the latest, and you start creating new
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// backups from the new DB, they will probably fail
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//
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// Example: Let's say you have backups 1, 2, 3, 4, 5 and you restore 3.
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// If you add new data to the DB and try creating a new backup now, the
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// database will diverge from backups 4 and 5 and the new backup will fail.
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// If you want to create new backup, you will first have to delete backups 4
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// and 5.
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Status RestoreDBFromBackup(BackupID backup_id, const std::string& db_dir,
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const std::string& wal_dir,
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const RestoreOptions& restore_options =
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RestoreOptions());
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// restore from the latest backup
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Status RestoreDBFromLatestBackup(const std::string& db_dir,
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const std::string& wal_dir,
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const RestoreOptions& restore_options =
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RestoreOptions());
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// deletes old backups, keeping latest num_backups_to_keep alive
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Status PurgeOldBackups(uint32_t num_backups_to_keep);
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// deletes a specific backup
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Status DeleteBackup(BackupID backup_id);
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private:
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BackupEngine* backup_engine_;
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};
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} // namespace rocksdb
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#endif // ROCKSDB_LITE
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