ad19eb8686
Summary: Blob db rely on base db returning sequence number through write batch after DB::Write(). However after recent changes to the write path, DB::Writ()e no longer return sequence number in some cases. Fixing it by have WriteBatchInternal::InsertInto() always encode sequence number into write batch. Stacking on #2375. Closes https://github.com/facebook/rocksdb/pull/2385 Differential Revision: D5148358 Pulled By: yiwu-arbug fbshipit-source-id: 8bda0aa07b9334ed03ed381548b39d167dc20c33
663 lines
20 KiB
C++
663 lines
20 KiB
C++
// Copyright (c) 2011-present, 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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#pragma once
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#ifndef ROCKSDB_LITE
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#include <atomic>
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#include <condition_variable>
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#include <ctime>
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#include <list>
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#include <memory>
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#include <set>
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#include <string>
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#include <thread>
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#include <utility>
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#include <vector>
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#include "rocksdb/compaction_filter.h"
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#include "rocksdb/db.h"
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#include "rocksdb/listener.h"
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#include "rocksdb/options.h"
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#include "rocksdb/wal_filter.h"
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#include "util/file_reader_writer.h"
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#include "util/mpsc.h"
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#include "util/mutexlock.h"
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#include "util/timer_queue.h"
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#include "utilities/blob_db/blob_db.h"
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#include "utilities/blob_db/blob_db_options_impl.h"
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#include "utilities/blob_db/blob_log_format.h"
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#include "utilities/blob_db/blob_log_reader.h"
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#include "utilities/blob_db/blob_log_writer.h"
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namespace rocksdb {
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class DBImpl;
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class ColumnFamilyHandle;
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class ColumnFamilyData;
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class OptimisticTransactionDBImpl;
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struct FlushJobInfo;
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namespace blob_db {
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class BlobFile;
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class BlobDBImpl;
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struct GCStats;
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class BlobDBFlushBeginListener : public EventListener {
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public:
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explicit BlobDBFlushBeginListener() : impl_(nullptr) {}
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void OnFlushBegin(DB* db, const FlushJobInfo& info) override;
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void SetImplPtr(BlobDBImpl* p) { impl_ = p; }
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protected:
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BlobDBImpl* impl_;
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};
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// this implements the callback from the WAL which ensures that the
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// blob record is present in the blob log. If fsync/fdatasync in not
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// happening on every write, there is the probability that keys in the
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// blob log can lag the keys in blobs
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class BlobReconcileWalFilter : public WalFilter {
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public:
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virtual WalFilter::WalProcessingOption LogRecordFound(
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unsigned long long log_number, const std::string& log_file_name,
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const WriteBatch& batch, WriteBatch* new_batch,
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bool* batch_changed) override;
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virtual const char* Name() const override { return "BlobDBWalReconciler"; }
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void SetImplPtr(BlobDBImpl* p) { impl_ = p; }
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protected:
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BlobDBImpl* impl_;
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};
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class EvictAllVersionsCompactionListener : public EventListener {
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public:
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class InternalListener : public CompactionEventListener {
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friend class BlobDBImpl;
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public:
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virtual void OnCompaction(int level, const Slice& key,
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CompactionListenerValueType value_type,
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const Slice& existing_value,
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const SequenceNumber& sn, bool is_new) override;
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void SetImplPtr(BlobDBImpl* p) { impl_ = p; }
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private:
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BlobDBImpl* impl_;
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};
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explicit EvictAllVersionsCompactionListener()
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: internal_listener_(new InternalListener()) {}
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virtual CompactionEventListener* GetCompactionEventListener() override {
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return internal_listener_.get();
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}
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void SetImplPtr(BlobDBImpl* p) { internal_listener_->SetImplPtr(p); }
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private:
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std::unique_ptr<InternalListener> internal_listener_;
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};
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#if 0
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class EvictAllVersionsFilterFactory : public CompactionFilterFactory {
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private:
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BlobDBImpl* impl_;
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public:
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EvictAllVersionsFilterFactory() : impl_(nullptr) {}
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void SetImplPtr(BlobDBImpl* p) { impl_ = p; }
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virtual std::unique_ptr<CompactionFilter> CreateCompactionFilter(
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const CompactionFilter::Context& context) override;
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virtual const char* Name() const override {
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return "EvictAllVersionsFilterFactory";
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}
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};
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#endif
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// Comparator to sort "TTL" aware Blob files based on the lower value of
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// TTL range.
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struct blobf_compare_ttl {
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bool operator()(const std::shared_ptr<BlobFile>& lhs,
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const std::shared_ptr<BlobFile>& rhs) const;
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};
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/**
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* The implementation class for BlobDB. This manages the value
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* part in TTL aware sequentially written files. These files are
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* Garbage Collected.
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*/
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class BlobDBImpl : public BlobDB {
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friend class BlobDBFlushBeginListener;
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friend class EvictAllVersionsCompactionListener;
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friend class BlobDB;
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friend class BlobFile;
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friend class BlobDBIterator;
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public:
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using rocksdb::StackableDB::Put;
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Status Put(const WriteOptions& options, ColumnFamilyHandle* column_family,
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const Slice& key, const Slice& value) override;
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using rocksdb::StackableDB::Delete;
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Status Delete(const WriteOptions& options, ColumnFamilyHandle* column_family,
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const Slice& key) override;
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using rocksdb::StackableDB::SingleDelete;
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virtual Status SingleDelete(const WriteOptions& wopts,
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ColumnFamilyHandle* column_family,
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const Slice& key) override;
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using rocksdb::StackableDB::Get;
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Status Get(const ReadOptions& options, ColumnFamilyHandle* column_family,
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const Slice& key, std::string* value) override;
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using rocksdb::StackableDB::NewIterator;
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virtual Iterator* NewIterator(const ReadOptions& opts,
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ColumnFamilyHandle* column_family) override;
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using rocksdb::StackableDB::MultiGet;
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virtual std::vector<Status> MultiGet(
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const ReadOptions& options,
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const std::vector<ColumnFamilyHandle*>& column_family,
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const std::vector<Slice>& keys,
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std::vector<std::string>* values) override;
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virtual Status Write(const WriteOptions& opts, WriteBatch* updates) override;
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using BlobDB::PutWithTTL;
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Status PutWithTTL(const WriteOptions& options,
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ColumnFamilyHandle* column_family, const Slice& key,
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const Slice& value, int32_t ttl) override;
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using BlobDB::PutUntil;
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Status PutUntil(const WriteOptions& options,
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ColumnFamilyHandle* column_family, const Slice& key,
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const Slice& value_unc, int32_t expiration) override;
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Status LinkToBaseDB(DB* db) override;
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BlobDBImpl(DB* db, const BlobDBOptions& bdb_options);
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BlobDBImpl(const std::string& dbname, const BlobDBOptions& bdb_options,
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const DBOptions& db_options);
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~BlobDBImpl();
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#ifndef NDEBUG
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Status TEST_GetSequenceNumber(const Slice& key, SequenceNumber* sequence);
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#endif // !NDEBUG
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private:
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static bool ExtractTTLFromBlob(const Slice& value, Slice* newval,
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int32_t* ttl_val);
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Status OpenPhase1();
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Status CommonGet(const ColumnFamilyData* cfd, const Slice& key,
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const std::string& index_entry, std::string* value,
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SequenceNumber* sequence = nullptr);
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// Just before flush starts acting on memtable files,
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// this handler is called.
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void OnFlushBeginHandler(DB* db, const FlushJobInfo& info);
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// timer queue callback to close a file by appending a footer
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// removes file from open files list
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std::pair<bool, int64_t> CloseSeqWrite(std::shared_ptr<BlobFile> bfile,
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bool aborted);
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// is this file ready for Garbage collection. if the TTL of the file
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// has expired or if threshold of the file has been evicted
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// tt - current time
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// last_id - the id of the non-TTL file to evict
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bool ShouldGCFile(std::shared_ptr<BlobFile> bfile, std::time_t tt,
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uint64_t last_id, std::string* reason);
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// collect all the blob log files from the blob directory
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Status GetAllLogFiles(std::set<std::pair<uint64_t, std::string>>* file_nums);
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// appends a task into timer queue to close the file
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void CloseIf(const std::shared_ptr<BlobFile>& bfile);
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Status AppendBlob(const std::shared_ptr<BlobFile>& bfile,
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const std::string& headerbuf, const Slice& key,
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const Slice& value, std::string* index_entry);
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Status AppendSN(const std::shared_ptr<BlobFile>& bfile,
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const SequenceNumber& sn);
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// find an existing blob log file based on the expiration unix epoch
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// if such a file does not exist, return nullptr
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std::shared_ptr<BlobFile> SelectBlobFileTTL(uint32_t expiration);
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// find an existing blob log file to append the value to
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std::shared_ptr<BlobFile> SelectBlobFile();
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std::shared_ptr<BlobFile> FindBlobFileLocked(uint32_t expiration) const;
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void UpdateWriteOptions(const WriteOptions& options);
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void Shutdown();
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// periodic sanity check. Bunch of checks
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std::pair<bool, int64_t> SanityCheck(bool aborted);
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// delete files which have been garbage collected and marked
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// obsolete. Check whether any snapshots exist which refer to
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// the same
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std::pair<bool, int64_t> DeleteObsFiles(bool aborted);
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// Major task to garbage collect expired and deleted blobs
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std::pair<bool, int64_t> RunGC(bool aborted);
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// asynchronous task to fsync/fdatasync the open blob files
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std::pair<bool, int64_t> FsyncFiles(bool aborted);
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// periodically check if open blob files and their TTL's has expired
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// if expired, close the sequential writer and make the file immutable
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std::pair<bool, int64_t> CheckSeqFiles(bool aborted);
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// if the number of open files, approaches ULIMIT's this
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// task will close random readers, which are kept around for
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// efficiency
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std::pair<bool, int64_t> ReclaimOpenFiles(bool aborted);
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// periodically print write amplification statistics
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std::pair<bool, int64_t> WaStats(bool aborted);
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// background task to do book-keeping of deleted keys
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std::pair<bool, int64_t> EvictDeletions(bool aborted);
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std::pair<bool, int64_t> EvictCompacted(bool aborted);
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bool CallbackEvictsImpl(std::shared_ptr<BlobFile> bfile);
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std::pair<bool, int64_t> RemoveTimerQ(TimerQueue* tq, bool aborted);
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std::pair<bool, int64_t> CallbackEvicts(TimerQueue* tq,
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std::shared_ptr<BlobFile> bfile,
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bool aborted);
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// Adds the background tasks to the timer queue
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void StartBackgroundTasks();
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// add a new Blob File
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std::shared_ptr<BlobFile> NewBlobFile(const std::string& reason);
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Status OpenAllFiles();
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// hold write mutex on file and call
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// creates a Random Access reader for GET call
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std::shared_ptr<RandomAccessFileReader> GetOrOpenRandomAccessReader(
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const std::shared_ptr<BlobFile>& bfile, Env* env,
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const EnvOptions& env_options);
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// hold write mutex on file and call.
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// Close the above Random Access reader
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void CloseRandomAccessLocked(const std::shared_ptr<BlobFile>& bfile);
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// hold write mutex on file and call
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// creates a sequential (append) writer for this blobfile
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Status CreateWriterLocked(const std::shared_ptr<BlobFile>& bfile);
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// returns a Writer object for the file. If writer is not
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// already present, creates one. Needs Write Mutex to be held
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std::shared_ptr<Writer> CheckOrCreateWriterLocked(
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const std::shared_ptr<BlobFile>& bfile);
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// Iterate through keys and values on Blob and write into
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// separate file the remaining blobs and delete/update pointers
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// in LSM atomically
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Status GCFileAndUpdateLSM(const std::shared_ptr<BlobFile>& bfptr,
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GCStats* gcstats);
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// checks if there is no snapshot which is referencing the
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// blobs
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bool FileDeleteOk_SnapshotCheckLocked(const std::shared_ptr<BlobFile>& bfile);
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bool MarkBlobDeleted(const Slice& key, const Slice& lsmValue);
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bool FindFileAndEvictABlob(uint64_t file_number, uint64_t key_size,
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uint64_t blob_offset, uint64_t blob_size);
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void CopyBlobFiles(std::vector<std::shared_ptr<BlobFile>>* bfiles_copy,
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uint64_t* last_id);
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void FilterSubsetOfFiles(
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const std::vector<std::shared_ptr<BlobFile>>& blob_files,
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std::vector<std::shared_ptr<BlobFile>>* to_process, uint64_t epoch,
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uint64_t last_id, size_t files_to_collect);
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private:
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// the base DB
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DBImpl* db_impl_;
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Env* myenv_;
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// Optimistic Transaction DB used during Garbage collection
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// for atomicity
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std::unique_ptr<OptimisticTransactionDBImpl> opt_db_;
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// a boolean to capture whether write_options has been set
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std::atomic<bool> wo_set_;
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WriteOptions write_options_;
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// the options that govern the behavior of Blob Storage
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BlobDBOptionsImpl bdb_options_;
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DBOptions db_options_;
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EnvOptions env_options_;
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// name of the database directory
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std::string dbname_;
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// by default this is "blob_dir" under dbname_
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// but can be configured
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std::string blob_dir_;
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// pointer to directory
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std::unique_ptr<Directory> dir_ent_;
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std::atomic<bool> dir_change_;
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// Read Write Mutex, which protects all the data structures
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// HEAVILY TRAFFICKED
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port::RWMutex mutex_;
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// counter for blob file number
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std::atomic<uint64_t> next_file_number_;
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// entire metadata of all the BLOB files memory
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std::unordered_map<uint64_t, std::shared_ptr<BlobFile>> blob_files_;
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// epoch or version of the open files.
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std::atomic<uint64_t> epoch_of_;
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// typically we keep 4 open blob files (simple i.e. no TTL)
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std::vector<std::shared_ptr<BlobFile>> open_simple_files_;
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// all the blob files which are currently being appended to based
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// on variety of incoming TTL's
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std::multiset<std::shared_ptr<BlobFile>, blobf_compare_ttl> open_blob_files_;
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// packet of information to put in lockess delete(s) queue
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struct delete_packet_t {
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ColumnFamilyHandle* cfh_;
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std::string key_;
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SequenceNumber dsn_;
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};
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struct override_packet_t {
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uint64_t file_number_;
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uint64_t key_size_;
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uint64_t blob_offset_;
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uint64_t blob_size_;
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SequenceNumber dsn_;
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};
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// LOCKLESS multiple producer single consumer queue to quickly append
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// deletes without taking lock. Can rapidly grow in size!!
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// deletes happen in LSM, but minor book-keeping needs to happen on
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// BLOB side (for triggering eviction)
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mpsc_queue_t<delete_packet_t> delete_keys_q_;
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// LOCKLESS multiple producer single consumer queue for values
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// that are being compacted
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mpsc_queue_t<override_packet_t> override_vals_q_;
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// atomic bool to represent shutdown
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std::atomic<bool> shutdown_;
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// timer based queue to execute tasks
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TimerQueue tqueue_;
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// timer queues to call eviction callbacks.
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std::vector<std::shared_ptr<TimerQueue>> cb_threads_;
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// only accessed in GC thread, hence not atomic. The epoch of the
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// GC task. Each execution is one epoch. Helps us in allocating
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// files to one execution
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uint64_t current_epoch_;
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// number of files opened for random access/GET
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// counter is used to monitor and close excess RA files.
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std::atomic<uint32_t> open_file_count_;
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// should hold mutex to modify
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// STATISTICS for WA of Blob Files due to GC
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// collect by default 24 hourly periods
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std::list<uint64_t> all_periods_write_;
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std::list<uint64_t> all_periods_ampl_;
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std::atomic<uint64_t> last_period_write_;
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std::atomic<uint64_t> last_period_ampl_;
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uint64_t total_periods_write_;
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uint64_t total_periods_ampl_;
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// total size of all blob files at a given time
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std::atomic<uint64_t> total_blob_space_;
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std::list<std::shared_ptr<BlobFile>> obsolete_files_;
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bool open_p1_done_;
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uint32_t debug_level_;
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};
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class BlobFile {
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friend class BlobDBImpl;
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friend struct blobf_compare_ttl;
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private:
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// access to parent
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const BlobDBImpl* parent_;
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// path to blob directory
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std::string path_to_dir_;
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// the id of the file.
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// the above 2 are created during file creation and never changed
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// after that
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uint64_t file_number_;
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// number of blobs in the file
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std::atomic<uint64_t> blob_count_;
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// the file will be selected for GC in this future epoch
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std::atomic<int64_t> gc_epoch_;
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// size of the file
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std::atomic<uint64_t> file_size_;
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// number of blobs in this particular file which have been evicted
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uint64_t deleted_count_;
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// size of deleted blobs (used by heuristic to select file for GC)
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uint64_t deleted_size_;
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BlobLogHeader header_;
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// closed_ = true implies the file is no more mutable
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// no more blobs will be appended and the footer has been written out
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std::atomic<bool> closed_;
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// has a pass of garbage collection successfully finished on this file
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// can_be_deleted_ still needs to do iterator/snapshot checks
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std::atomic<bool> can_be_deleted_;
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// should this file been gc'd once to reconcile lost deletes/compactions
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std::atomic<bool> gc_once_after_open_;
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// et - lt of the blobs
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ttlrange_t ttl_range_;
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// et - lt of the timestamp of the KV pairs.
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tsrange_t time_range_;
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// ESN - LSN of the blobs
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snrange_t sn_range_;
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// Sequential/Append writer for blobs
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std::shared_ptr<Writer> log_writer_;
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// random access file reader for GET calls
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std::shared_ptr<RandomAccessFileReader> ra_file_reader_;
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// This Read-Write mutex is per file specific and protects
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// all the datastructures
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port::RWMutex mutex_;
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// time when the random access reader was last created.
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std::atomic<std::time_t> last_access_;
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// last time file was fsync'd/fdatasyncd
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std::atomic<uint64_t> last_fsync_;
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bool header_valid_;
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public:
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BlobFile();
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BlobFile(const BlobDBImpl* parent, const std::string& bdir, uint64_t fnum);
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~BlobFile();
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ColumnFamilyHandle* GetColumnFamily(DB* db);
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// Returns log file's pathname relative to the main db dir
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// Eg. For a live-log-file = blob_dir/000003.blob
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std::string PathName() const;
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// Primary identifier for blob file.
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// once the file is created, this never changes
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uint64_t BlobFileNumber() const { return file_number_; }
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// the following functions are atomic, and don't need
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// read lock
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uint64_t BlobCount() const {
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return blob_count_.load(std::memory_order_acquire);
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}
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std::string DumpState() const;
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// if the file has gone through GC and blobs have been relocated
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bool Obsolete() const { return can_be_deleted_.load(); }
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// if the file is not taking any more appends.
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bool Immutable() const { return closed_.load(); }
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// we will assume this is atomic
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bool NeedsFsync(bool hard, uint64_t bytes_per_sync) const;
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uint64_t GetFileSize() const {
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return file_size_.load(std::memory_order_acquire);
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}
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// All Get functions which are not atomic, will need ReadLock on the mutex
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tsrange_t GetTimeRange() const {
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assert(HasTimestamp());
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return time_range_;
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}
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ttlrange_t GetTTLRange() const { return ttl_range_; }
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snrange_t GetSNRange() const { return sn_range_; }
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bool HasTTL() const {
|
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assert(header_valid_);
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return header_.HasTTL();
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}
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bool HasTimestamp() const {
|
|
assert(header_valid_);
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return header_.HasTimestamp();
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}
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std::shared_ptr<Writer> GetWriter() const { return log_writer_; }
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|
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void Fsync();
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|
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private:
|
|
std::shared_ptr<Reader> OpenSequentialReader(
|
|
Env* env, const DBOptions& db_options,
|
|
const EnvOptions& env_options) const;
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|
|
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Status ReadFooter(BlobLogFooter* footer);
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|
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Status WriteFooterAndCloseLocked();
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|
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std::shared_ptr<RandomAccessFileReader> GetOrOpenRandomAccessReader(
|
|
Env* env, const EnvOptions& env_options, bool* fresh_open);
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|
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void CloseRandomAccessLocked();
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|
|
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// this is used, when you are reading only the footer of a
|
|
// previously closed file
|
|
Status SetFromFooterLocked(const BlobLogFooter& footer);
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|
|
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void set_time_range(const tsrange_t& tr) { time_range_ = tr; }
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|
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void set_ttl_range(const ttlrange_t& ttl) { ttl_range_ = ttl; }
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|
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void SetSNRange(const snrange_t& snr) { sn_range_ = snr; }
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|
|
// The following functions are atomic, and don't need locks
|
|
void SetFileSize(uint64_t fs) { file_size_ = fs; }
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|
|
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void SetBlobCount(uint64_t bc) { blob_count_ = bc; }
|
|
|
|
void SetCanBeDeleted() { can_be_deleted_ = true; }
|
|
};
|
|
|
|
class BlobDBIterator : public Iterator {
|
|
public:
|
|
explicit BlobDBIterator(Iterator* iter, ColumnFamilyHandle* column_family,
|
|
BlobDBImpl* impl)
|
|
: iter_(iter), cfh_(column_family), db_impl_(impl) {
|
|
assert(iter_);
|
|
}
|
|
|
|
~BlobDBIterator() { delete iter_; }
|
|
|
|
bool Valid() const override { return iter_->Valid(); }
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|
|
|
void SeekToFirst() override { iter_->SeekToFirst(); }
|
|
|
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void SeekToLast() override { iter_->SeekToLast(); }
|
|
|
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void Seek(const Slice& target) override { iter_->Seek(target); }
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|
|
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void SeekForPrev(const Slice& target) override { iter_->SeekForPrev(target); }
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|
|
void Next() override { iter_->Next(); }
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|
|
|
void Prev() override { iter_->Prev(); }
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|
|
|
Slice key() const override { return iter_->key(); }
|
|
|
|
Slice value() const override;
|
|
|
|
Status status() const override { return iter_->status(); }
|
|
|
|
private:
|
|
Iterator* iter_;
|
|
ColumnFamilyHandle* cfh_;
|
|
BlobDBImpl* db_impl_;
|
|
mutable std::string vpart_;
|
|
};
|
|
|
|
} // namespace blob_db
|
|
} // namespace rocksdb
|
|
#endif // ROCKSDB_LITE
|