304 lines
12 KiB
C++
304 lines
12 KiB
C++
/*
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* BackupContainer.h
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*
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* This source file is part of the FoundationDB open source project
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*
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* Copyright 2013-2018 Apple Inc. and the FoundationDB project authors
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef FDBCLIENT_BACKUP_CONTAINER_H
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#define FDBCLIENT_BACKUP_CONTAINER_H
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#pragma once
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#include "flow/flow.h"
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#include "fdbrpc/IAsyncFile.h"
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#include "fdbclient/FDBTypes.h"
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#include "fdbclient/NativeAPI.actor.h"
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#include "fdbclient/ReadYourWrites.h"
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#include <vector>
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class ReadYourWritesTransaction;
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Future<Optional<int64_t>> timeKeeperEpochsFromVersion(Version const &v, Reference<ReadYourWritesTransaction> const &tr);
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Future<Version> timeKeeperVersionFromDatetime(std::string const &datetime, Database const &db);
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// Append-only file interface for writing backup data
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// Once finish() is called the file cannot be further written to.
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// Backup containers should not attempt to use files for which finish was not called or did not complete.
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// TODO: Move the log file and range file format encoding/decoding stuff to this file and behind interfaces.
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class IBackupFile {
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public:
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IBackupFile(const std::string& fileName) : m_fileName(fileName) {}
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virtual ~IBackupFile() {}
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// Backup files are append-only and cannot have more than 1 append outstanding at once.
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virtual Future<Void> append(const void *data, int len) = 0;
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virtual Future<Void> finish() = 0;
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inline std::string getFileName() const {
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return m_fileName;
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}
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virtual int64_t size() const = 0;
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virtual void addref() = 0;
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virtual void delref() = 0;
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Future<Void> appendStringRefWithLen(Standalone<StringRef> s);
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protected:
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std::string m_fileName;
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};
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// Structures for various backup components
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// Mutation log version written by old FileBackupAgent
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static const uint32_t BACKUP_AGENT_MLOG_VERSION = 2001;
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// Mutation log version written by BackupWorker
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static const uint32_t PARTITIONED_MLOG_VERSION = 4110;
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// Snapshot file version written by FileBackupAgent
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static const uint32_t BACKUP_AGENT_SNAPSHOT_FILE_VERSION = 1001;
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struct LogFile {
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Version beginVersion;
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Version endVersion;
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uint32_t blockSize;
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std::string fileName;
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int64_t fileSize;
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int tagId = -1; // Log router tag. Non-negative for new backup format.
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int totalTags = -1; // Total number of log router tags.
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// Order by beginVersion, break ties with endVersion
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bool operator< (const LogFile &rhs) const {
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return beginVersion == rhs.beginVersion ? endVersion < rhs.endVersion : beginVersion < rhs.beginVersion;
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}
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// Returns if this log file contains a subset of content of the given file
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// by comparing version range and tag ID.
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bool isSubset(const LogFile& rhs) const {
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return beginVersion >= rhs.beginVersion && endVersion <= rhs.endVersion && tagId == rhs.tagId;
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}
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bool isPartitionedLog() const {
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return tagId >= 0 && tagId < totalTags;
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}
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std::string toString() const {
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std::stringstream ss;
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ss << "beginVersion:" << std::to_string(beginVersion) << " endVersion:" << std::to_string(endVersion)
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<< " blockSize:" << std::to_string(blockSize) << " filename:" << fileName
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<< " fileSize:" << std::to_string(fileSize)
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<< " tagId: " << (tagId >= 0 ? std::to_string(tagId) : std::string("(None)"));
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return ss.str();
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}
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};
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struct RangeFile {
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Version version;
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uint32_t blockSize;
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std::string fileName;
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int64_t fileSize;
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// Order by version, break ties with name
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bool operator< (const RangeFile &rhs) const {
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return version == rhs.version ? fileName < rhs.fileName : version < rhs.version;
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}
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std::string toString() const {
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std::stringstream ss;
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ss << "version:" << std::to_string(version) << " blockSize:" << std::to_string(blockSize) <<
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" fileName:" << fileName << " fileSize:" << std::to_string(fileSize);
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return ss.str();
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}
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};
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struct KeyspaceSnapshotFile {
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Version beginVersion;
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Version endVersion;
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std::string fileName;
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int64_t totalSize;
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Optional<bool> restorable; // Whether or not the snapshot can be used in a restore, if known
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bool isSingleVersion() const {
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return beginVersion == endVersion;
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}
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double expiredPct(Optional<Version> expiredEnd) const {
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double pctExpired = 0;
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if(expiredEnd.present() && expiredEnd.get() > beginVersion) {
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if(isSingleVersion()) {
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pctExpired = 1;
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}
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else {
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pctExpired = double(std::min(endVersion, expiredEnd.get()) - beginVersion) / (endVersion - beginVersion);
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}
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}
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return pctExpired * 100;
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}
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// Order by beginVersion, break ties with endVersion
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bool operator< (const KeyspaceSnapshotFile &rhs) const {
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return beginVersion == rhs.beginVersion ? endVersion < rhs.endVersion : beginVersion < rhs.beginVersion;
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}
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};
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struct BackupFileList {
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std::vector<RangeFile> ranges;
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std::vector<LogFile> logs;
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std::vector<KeyspaceSnapshotFile> snapshots;
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void toStream(FILE *fout) const;
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};
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// The byte counts here only include usable log files and byte counts from kvrange manifests
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struct BackupDescription {
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BackupDescription() : snapshotBytes(0) {}
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std::string url;
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std::vector<KeyspaceSnapshotFile> snapshots;
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int64_t snapshotBytes;
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// The version before which everything has been deleted by an expire
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Optional<Version> expiredEndVersion;
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// The latest version before which at least some data has been deleted by an expire
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Optional<Version> unreliableEndVersion;
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// The minimum log version in the backup
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Optional<Version> minLogBegin;
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// The maximum log version in the backup
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Optional<Version> maxLogEnd;
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// The maximum log version for which there is contiguous log version coverage extending back to minLogBegin
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Optional<Version> contiguousLogEnd;
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// The maximum version which this backup can be used to restore to
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Optional<Version> maxRestorableVersion;
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// The minimum version which this backup can be used to restore to
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Optional<Version> minRestorableVersion;
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std::string extendedDetail; // Freeform container-specific info.
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bool partitioned; // If this backup contains partitioned mutation logs.
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// Resolves the versions above to timestamps using a given database's TimeKeeper data.
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// toString will use this information if present.
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Future<Void> resolveVersionTimes(Database cx);
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std::map<Version, int64_t> versionTimeMap;
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std::string toString() const;
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std::string toJSON() const;
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};
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struct RestorableFileSet {
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Version targetVersion;
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std::vector<LogFile> logs;
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std::vector<RangeFile> ranges;
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// Range file's key ranges. Can be empty for backups generated before 6.3.
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std::map<std::string, KeyRange> keyRanges;
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// Mutation logs continuous range [begin, end). Both can be invalidVersion
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// when the entire key space snapshot is at the target version.
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Version continuousBeginVersion, continuousEndVersion;
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KeyspaceSnapshotFile snapshot; // Info. for debug purposes
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};
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/* IBackupContainer is an interface to a set of backup data, which contains
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* - backup metadata
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* - log files
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* - range files
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* - keyspace snapshot files defining a complete non overlapping key space snapshot
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*
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* Files in a container are identified by a name. This can be any string, whatever
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* makes sense for the underlying storage system.
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*
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* Reading files is done by file name. File names are discovered by getting a RestorableFileSet.
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*
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* For remote data stores that are filesystem-like, it's probably best to inherit BackupContainerFileSystem.
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*/
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class IBackupContainer {
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public:
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virtual void addref() = 0;
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virtual void delref() = 0;
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IBackupContainer() {}
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virtual ~IBackupContainer() {}
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// Create the container
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virtual Future<Void> create() = 0;
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virtual Future<bool> exists() = 0;
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// Open a log file or range file for writing
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virtual Future<Reference<IBackupFile>> writeLogFile(Version beginVersion, Version endVersion, int blockSize) = 0;
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virtual Future<Reference<IBackupFile>> writeRangeFile(Version snapshotBeginVersion, int snapshotFileCount, Version fileVersion, int blockSize) = 0;
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// Open a tagged log file for writing, where tagId is the log router tag's id.
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virtual Future<Reference<IBackupFile>> writeTaggedLogFile(Version beginVersion, Version endVersion, int blockSize,
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uint16_t tagId, int totalTags) = 0;
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// Write a KeyspaceSnapshotFile of range file names representing a full non overlapping
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// snapshot of the key ranges this backup is targeting.
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virtual Future<Void> writeKeyspaceSnapshotFile(const std::vector<std::string>& fileNames,
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const std::vector<std::pair<Key, Key>>& beginEndKeys,
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int64_t totalBytes) = 0;
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// Open a file for read by name
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virtual Future<Reference<IAsyncFile>> readFile(const std::string& name) = 0;
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// Returns the key ranges in the snapshot file. This is an expensive function
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// and should only be used in simulation for sanity check.
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virtual Future<KeyRange> getSnapshotFileKeyRange(const RangeFile& file) = 0;
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struct ExpireProgress {
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std::string step;
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int total;
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int done;
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std::string toString() const;
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};
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// Delete backup files which do not contain any data at or after (more recent than) expireEndVersion.
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// If force is false, then nothing will be deleted unless there is a restorable snapshot which
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// - begins at or after expireEndVersion
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// - ends at or before restorableBeginVersion
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// If force is true, data is deleted unconditionally which could leave the backup in an unusable state. This is not recommended.
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// Returns true if expiration was done.
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virtual Future<Void> expireData(Version expireEndVersion, bool force = false, ExpireProgress *progress = nullptr, Version restorableBeginVersion = std::numeric_limits<Version>::max()) = 0;
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// Delete entire container. During the process, if pNumDeleted is not null it will be
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// updated with the count of deleted files so that progress can be seen.
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virtual Future<Void> deleteContainer(int *pNumDeleted = nullptr) = 0;
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// Return key details about a backup's contents.
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// Unless deepScan is true, use cached metadata, if present, as initial contiguous available log range.
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// If logStartVersionOverride is given, log data prior to that version will be ignored for the purposes
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// of this describe operation. This can be used to calculate what the restorability of a backup would
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// be after deleting all data prior to logStartVersionOverride.
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virtual Future<BackupDescription> describeBackup(bool deepScan = false, Version logStartVersionOverride = invalidVersion) = 0;
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virtual Future<BackupFileList> dumpFileList(Version begin = 0, Version end = std::numeric_limits<Version>::max()) = 0;
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// Get exactly the files necessary to restore the key space filtered by the specified key ranges to targetVersion.
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// If targetVersion is 'latestVersion', use the minimum restorable version in a snapshot.
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// If logsOnly is set, only use log files in [beginVersion, targetVervions) in restore set.
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// Returns non-present if restoring to the given version is not possible.
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virtual Future<Optional<RestorableFileSet>> getRestoreSet(Version targetVersion,
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VectorRef<KeyRangeRef> keyRangesFilter = {},
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bool logsOnly = false, Version beginVersion = -1) = 0;
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// Get an IBackupContainer based on a container spec string
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static Reference<IBackupContainer> openContainer(const std::string& url);
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static std::vector<std::string> getURLFormats();
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static Future<std::vector<std::string>> listContainers(const std::string& baseURL);
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std::string getURL() const {
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return URL;
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}
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static std::string lastOpenError;
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private:
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std::string URL;
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};
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#endif
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