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213 lines
9.1 KiB
C++
213 lines
9.1 KiB
C++
#pragma once
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#include <Interpreters/MergeTreeTransaction.h>
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#include <Interpreters/MergeTreeTransactionHolder.h>
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#include <Common/ZooKeeper/ZooKeeper.h>
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#include <Common/ThreadPool.h>
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#include <boost/noncopyable.hpp>
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#include <mutex>
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#include <unordered_map>
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namespace DB
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{
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/// We want to create a TransactionLog object lazily and avoid creation if it's not needed.
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/// But we also want to call shutdown() in a specific place to avoid race conditions.
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/// We cannot simply use return-static-variable pattern,
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/// because a call to shutdown() may construct unnecessary object in this case.
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template <typename Derived>
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class SingletonHelper : private boost::noncopyable
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{
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public:
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static Derived & instance()
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{
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Derived * ptr = instance_raw_ptr.load();
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if (likely(ptr))
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return *ptr;
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return createInstanceOrThrow();
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}
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static void shutdownIfAny()
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{
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std::lock_guard lock{instance_mutex};
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if (instance_holder)
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instance_holder->shutdown();
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}
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private:
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static Derived & createInstanceOrThrow();
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static inline std::atomic<Derived *> instance_raw_ptr;
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/// It was supposed to be std::optional, but gcc fails to compile it for some reason
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static inline std::shared_ptr<Derived> instance_holder;
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static inline std::mutex instance_mutex;
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};
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class TransactionsInfoLog;
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using TransactionsInfoLogPtr = std::shared_ptr<TransactionsInfoLog>;
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using ZooKeeperPtr = std::shared_ptr<zkutil::ZooKeeper>;
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/// This class maintains transaction log in ZooKeeper and a list of currently running transactions in memory.
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///
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/// Each transaction has unique ID (TID, see details below).
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/// TransactionID is allocated when transaction begins.
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///
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/// We use TransactionID to associate changes (created/removed data parts) with transaction that has made/is going to make these changes.
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/// To commit a transaction we create sequential node "/path_to_log/log/csn-" in ZK and write TID into this node.
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/// Allocated sequential number is a commit timestamp or Commit Sequence Number (CSN). It indicates a (logical) point in time
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/// when transaction is committed and all its changes became visible. So we have total order of all changes.
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///
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/// Also CSNs are used as snapshots: all changes that were made by a transaction that was committed with a CSN less or equal than some_csn
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/// are visible in some_csn snapshot.
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///
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/// TransactionID consists of three parts: (start_csn, local_tid, host_id)
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/// - start_csn is the newest CSN that existed when the transaction was started and also it's snapshot that is visible for this transaction
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/// - local_tid is local sequential number of the transaction, each server allocates local_tids independently without requests to ZK
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/// - host_id is persistent UUID of host that has started the transaction, it's kind of tie-breaker that makes ID unique across all servers
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///
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/// To check if some transaction is committed or not we fetch "csn-xxxxxx" nodes from ZK and construct TID -> CSN mapping,
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/// so for committed transactions we know commit timestamps.
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/// However, if we did not find a mapping for some TID, it means one of the following cases:
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/// 1. Transaction is not committed (yet)
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/// 2. Transaction is rolled back (quite similar to the first case, but it will never be committed)
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/// 3. Transactions was committed a long time ago and we removed its entry from the log
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/// To distinguish the third case we store a "tail pointer" in "/path_to_log/tail_ptr". It's a CSN such that it's safe to remove from log
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/// entries with tid.start_csn < tail_ptr, because CSNs for those TIDs are already written into data parts
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/// and we will not do a CSN lookup for those TIDs anymore.
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///
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/// (however, transactions involving multiple hosts and/or ReplicatedMergeTree tables are currently not supported)
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class TransactionLog final : public SingletonHelper<TransactionLog>
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{
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public:
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TransactionLog();
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~TransactionLog();
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void shutdown();
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/// Returns the newest snapshot available for reading
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CSN getLatestSnapshot() const;
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/// Returns the oldest snapshot that is visible for some running transaction
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CSN getOldestSnapshot() const;
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/// Allocates TID, returns new transaction object
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MergeTreeTransactionPtr beginTransaction();
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/// Tries to commit transaction. Returns Commit Sequence Number.
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/// Throw if transaction was concurrently killed or if some precommit check failed.
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/// May throw if ZK connection is lost. Transaction status is unknown in this case.
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/// Returns CommittingCSN if throw_on_unknown_status is false and connection was lost.
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CSN commitTransaction(const MergeTreeTransactionPtr & txn, bool throw_on_unknown_status);
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/// Releases locks that that were acquired by transaction, releases snapshot, removes transaction from the list of active transactions.
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/// Normally it should not throw, but if it does for some reason (global memory limit exceeded, disk failure, etc)
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/// then we should terminate server and reinitialize it to avoid corruption of data structures. That's why it's noexcept.
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void rollbackTransaction(const MergeTreeTransactionPtr & txn) noexcept;
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/// Returns CSN if transaction with specified ID was committed and UnknownCSN if it was not.
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/// Returns PrehistoricCSN for PrehistoricTID without creating a TransactionLog instance as a special case.
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static CSN getCSN(const TransactionID & tid);
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static CSN getCSN(const TIDHash & tid);
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/// Ensures that getCSN returned UnknownCSN because transaction is not committed and not because entry was removed from the log.
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static void assertTIDIsNotOutdated(const TransactionID & tid);
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/// Returns a pointer to transaction object if it's running or nullptr.
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MergeTreeTransactionPtr tryGetRunningTransaction(const TIDHash & tid);
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using TransactionsList = std::unordered_map<TIDHash, MergeTreeTransactionPtr>;
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/// Returns copy of list of running transactions.
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TransactionsList getTransactionsList() const;
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/// Waits for provided CSN (and all previous ones) to be loaded from the log.
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/// Returns false if waiting was interrupted (e.g. by shutdown)
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bool waitForCSNLoaded(CSN csn) const;
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bool isShuttingDown() const { return stop_flag.load(); }
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void sync() const;
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private:
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void loadLogFromZooKeeper() TSA_REQUIRES(mutex);
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void runUpdatingThread();
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void loadEntries(Strings::const_iterator beg, Strings::const_iterator end);
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void loadNewEntries();
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void removeOldEntries();
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CSN finalizeCommittedTransaction(MergeTreeTransaction * txn, CSN allocated_csn, scope_guard & state_guard) noexcept;
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void tryFinalizeUnknownStateTransactions();
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static UInt64 deserializeCSN(const String & csn_node_name);
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static String serializeCSN(CSN csn);
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static TransactionID deserializeTID(const String & csn_node_content);
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static String serializeTID(const TransactionID & tid);
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ZooKeeperPtr getZooKeeper() const;
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CSN getCSNImpl(const TIDHash & tid_hash) const;
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const ContextPtr global_context;
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Poco::Logger * const log;
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/// The newest snapshot available for reading
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std::atomic<CSN> latest_snapshot;
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/// Local part of TransactionID number. We reset this counter for each new snapshot.
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std::atomic<LocalTID> local_tid_counter;
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mutable std::mutex mutex;
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/// Mapping from TransactionID to CSN for recently committed transactions.
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/// Allows to check if some transactions is committed.
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struct CSNEntry
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{
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CSN csn;
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TransactionID tid;
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};
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using TIDMap = std::unordered_map<TIDHash, CSNEntry>;
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TIDMap tid_to_csn TSA_GUARDED_BY(mutex);
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mutable std::mutex running_list_mutex;
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/// Transactions that are currently processed
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TransactionsList running_list TSA_GUARDED_BY(running_list_mutex);
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/// If we lost connection on attempt to create csn- node then we don't know transaction's state.
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using UnknownStateList = std::vector<std::pair<MergeTreeTransaction *, scope_guard>>;
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UnknownStateList unknown_state_list TSA_GUARDED_BY(running_list_mutex);
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UnknownStateList unknown_state_list_loaded TSA_GUARDED_BY(running_list_mutex);
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/// Ordered list of snapshots that are currently used by some transactions. Needed for background cleanup.
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std::list<CSN> snapshots_in_use TSA_GUARDED_BY(running_list_mutex);
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ZooKeeperPtr zookeeper TSA_GUARDED_BY(mutex);
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const String zookeeper_path;
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const String zookeeper_path_log;
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/// Name of the newest entry that was loaded from log in ZK
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String last_loaded_entry TSA_GUARDED_BY(mutex);
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/// The oldest CSN such that we store in log entries with TransactionIDs containing this CSN.
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std::atomic<CSN> tail_ptr = Tx::UnknownCSN;
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zkutil::EventPtr log_updated_event = std::make_shared<Poco::Event>();
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std::atomic_bool stop_flag = false;
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ThreadFromGlobalPool updating_thread;
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const Float64 fault_probability_before_commit = 0;
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const Float64 fault_probability_after_commit = 0;
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};
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template <typename Derived>
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Derived & SingletonHelper<Derived>::createInstanceOrThrow()
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{
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std::lock_guard lock{instance_mutex};
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if (!instance_holder)
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{
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instance_holder = std::make_shared<Derived>();
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instance_raw_ptr = instance_holder.get();
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}
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return *instance_holder;
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}
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}
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