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/*
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* Copyright (C) 2008-2016 TrinityCore <http://www.trinitycore.org/>
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*
* This program is free software; you can redistribute it and/or modify it
* under the terms of the GNU General Public License as published by the
* Free Software Foundation; either version 2 of the License, or (at your
* option) any later version.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
* more details.
*
* You should have received a copy of the GNU General Public License along
* with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
#ifndef _DATABASEWORKERPOOL_H
#define _DATABASEWORKERPOOL_H
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#include "Common.h"
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#include "Callback.h"
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#include "MySQLConnection.h"
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#include "Transaction.h"
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#include "DatabaseWorker.h"
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#include "PreparedStatement.h"
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#include "Log.h"
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#include "QueryResult.h"
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#include "QueryHolder.h"
#include "AdhocStatement.h"
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#include "StringFormat.h"
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#include <mysqld_error.h>
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#include <memory>
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#include <array>
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class PingOperation : public SQLOperation
{
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//! Operation for idle delaythreads
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bool Execute () override
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{
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m_conn -> Ping ();
return true ;
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}
};
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template < class T >
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class DatabaseWorkerPool
{
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private :
enum InternalIndex
{
IDX_ASYNC ,
IDX_SYNCH ,
IDX_SIZE
};
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public :
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/* Activity state */
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DatabaseWorkerPool ();
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~ DatabaseWorkerPool ()
{
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_queue -> Cancel ();
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}
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void SetConnectionInfo ( std :: string const & infoString , uint8 const asyncThreads , uint8 const synchThreads );
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uint32 Open ();
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void Close ();
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//! Prepares all prepared statements
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bool PrepareStatements ();
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inline MySQLConnectionInfo const * GetConnectionInfo () const
{
return _connectionInfo . get ();
}
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/**
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Delayed one-way statement methods.
*/
//! Enqueues a one-way SQL operation in string format that will be executed asynchronously.
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//! This method should only be used for queries that are only executed once, e.g during startup.
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void Execute ( const char * sql )
{
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if ( Trinity :: IsFormatEmptyOrNull ( sql ))
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return ;
BasicStatementTask * task = new BasicStatementTask ( sql );
Enqueue ( task );
}
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//! Enqueues a one-way SQL operation in string format -with variable args- that will be executed asynchronously.
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//! This method should only be used for queries that are only executed once, e.g during startup.
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template < typename Format , typename ... Args >
void PExecute ( Format && sql , Args && ... args )
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{
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if ( Trinity :: IsFormatEmptyOrNull ( sql ))
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return ;
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Execute ( Trinity :: StringFormat ( std :: forward < Format > ( sql ), std :: forward < Args > ( args )...). c_str ());
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}
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//! Enqueues a one-way SQL operation in prepared statement format that will be executed asynchronously.
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//! Statement must be prepared with CONNECTION_ASYNC flag.
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void Execute ( PreparedStatement * stmt )
{
PreparedStatementTask * task = new PreparedStatementTask ( stmt );
Enqueue ( task );
}
/**
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Direct synchronous one-way statement methods.
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*/
//! Directly executes a one-way SQL operation in string format, that will block the calling thread until finished.
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//! This method should only be used for queries that are only executed once, e.g during startup.
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void DirectExecute ( const char * sql )
{
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if ( Trinity :: IsFormatEmptyOrNull ( sql ))
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return ;
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T * connection = GetFreeConnection ();
connection -> Execute ( sql );
connection -> Unlock ();
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}
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//! Directly executes a one-way SQL operation in string format -with variable args-, that will block the calling thread until finished.
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//! This method should only be used for queries that are only executed once, e.g during startup.
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template < typename Format , typename ... Args >
void DirectPExecute ( Format && sql , Args && ... args )
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{
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if ( Trinity :: IsFormatEmptyOrNull ( sql ))
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return ;
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DirectExecute ( Trinity :: StringFormat ( std :: forward < Format > ( sql ), std :: forward < Args > ( args )...). c_str ());
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}
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//! Directly executes a one-way SQL operation in prepared statement format, that will block the calling thread until finished.
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//! Statement must be prepared with the CONNECTION_SYNCH flag.
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void DirectExecute ( PreparedStatement * stmt )
{
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T * connection = GetFreeConnection ();
connection -> Execute ( stmt );
connection -> Unlock ();
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//! Delete proxy-class. Not needed anymore
delete stmt ;
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}
/**
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Synchronous query (with resultset) methods.
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*/
//! Directly executes an SQL query in string format that will block the calling thread until finished.
//! Returns reference counted auto pointer, no need for manual memory management in upper level code.
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QueryResult Query ( const char * sql , T * connection = nullptr );
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//! Directly executes an SQL query in string format -with variable args- that will block the calling thread until finished.
//! Returns reference counted auto pointer, no need for manual memory management in upper level code.
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template < typename Format , typename ... Args >
QueryResult PQuery ( Format && sql , T * conn , Args && ... args )
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{
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if ( Trinity :: IsFormatEmptyOrNull ( sql ))
return QueryResult ( nullptr );
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return Query ( Trinity :: StringFormat ( std :: forward < Format > ( sql ), std :: forward < Args > ( args )...). c_str (), conn );
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}
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//! Directly executes an SQL query in string format -with variable args- that will block the calling thread until finished.
//! Returns reference counted auto pointer, no need for manual memory management in upper level code.
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template < typename Format , typename ... Args >
QueryResult PQuery ( Format && sql , Args && ... args )
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{
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if ( Trinity :: IsFormatEmptyOrNull ( sql ))
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return QueryResult ( nullptr );
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return Query ( Trinity :: StringFormat ( std :: forward < Format > ( sql ), std :: forward < Args > ( args )...). c_str ());
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}
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//! Directly executes an SQL query in prepared format that will block the calling thread until finished.
//! Returns reference counted auto pointer, no need for manual memory management in upper level code.
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//! Statement must be prepared with CONNECTION_SYNCH flag.
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PreparedQueryResult Query ( PreparedStatement * stmt );
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/**
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Asynchronous query (with resultset) methods.
*/
//! Enqueues a query in string format that will set the value of the QueryResultFuture return object as soon as the query is executed.
//! The return value is then processed in ProcessQueryCallback methods.
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QueryResultFuture AsyncQuery ( const char * sql );
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//! Enqueues a query in string format -with variable args- that will set the value of the QueryResultFuture return object as soon as the query is executed.
//! The return value is then processed in ProcessQueryCallback methods.
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template < typename Format , typename ... Args >
QueryResultFuture AsyncPQuery ( Format && sql , Args && ... args )
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{
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return AsyncQuery ( Trinity :: StringFormat ( std :: forward < Format > ( sql ), std :: forward < Args > ( args )...). c_str ());
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}
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//! Enqueues a query in prepared format that will set the value of the PreparedQueryResultFuture return object as soon as the query is executed.
//! The return value is then processed in ProcessQueryCallback methods.
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//! Statement must be prepared with CONNECTION_ASYNC flag.
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PreparedQueryResultFuture AsyncQuery ( PreparedStatement * stmt );
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//! Enqueues a vector of SQL operations (can be both adhoc and prepared) that will set the value of the QueryResultHolderFuture
//! return object as soon as the query is executed.
//! The return value is then processed in ProcessQueryCallback methods.
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//! Any prepared statements added to this holder need to be prepared with the CONNECTION_ASYNC flag.
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QueryResultHolderFuture DelayQueryHolder ( SQLQueryHolder * holder );
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/**
Transaction context methods.
*/
//! Begins an automanaged transaction pointer that will automatically rollback if not commited. (Autocommit=0)
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SQLTransaction BeginTransaction ()
{
return SQLTransaction ( new Transaction );
}
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//! Enqueues a collection of one-way SQL operations (can be both adhoc and prepared). The order in which these operations
//! were appended to the transaction will be respected during execution.
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void CommitTransaction ( SQLTransaction transaction );
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//! Directly executes a collection of one-way SQL operations (can be both adhoc and prepared). The order in which these operations
//! were appended to the transaction will be respected during execution.
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void DirectCommitTransaction ( SQLTransaction & transaction );
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//! Method used to execute prepared statements in a diverse context.
//! Will be wrapped in a transaction if valid object is present, otherwise executed standalone.
void ExecuteOrAppend ( SQLTransaction & trans , PreparedStatement * stmt )
{
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if ( ! trans )
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Execute ( stmt );
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else
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trans -> Append ( stmt );
}
//! Method used to execute ad-hoc statements in a diverse context.
//! Will be wrapped in a transaction if valid object is present, otherwise executed standalone.
void ExecuteOrAppend ( SQLTransaction & trans , const char * sql )
{
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if ( ! trans )
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Execute ( sql );
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else
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trans -> Append ( sql );
}
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/**
Other
*/
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typedef typename T :: Statements PreparedStatementIndex ;
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//! Automanaged (internally) pointer to a prepared statement object for usage in upper level code.
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//! Pointer is deleted in this->DirectExecute(PreparedStatement*), this->Query(PreparedStatement*) or PreparedStatementTask::~PreparedStatementTask.
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//! This object is not tied to the prepared statement on the MySQL context yet until execution.
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PreparedStatement * GetPreparedStatement ( PreparedStatementIndex index )
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{
return new PreparedStatement ( index );
}
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//! Apply escape string'ing for current collation. (utf8)
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void EscapeString ( std :: string & str );
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//! Keeps all our MySQL connections alive, prevent the server from disconnecting us.
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void KeepAlive ();
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private :
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uint32 OpenConnections ( InternalIndex type , uint8 numConnections );
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unsigned long EscapeString ( char * to , const char * from , unsigned long length )
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{
if ( ! to || ! from || ! length )
return 0 ;
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return mysql_real_escape_string (
_connections [ IDX_SYNCH ]. front () -> GetHandle (), to , from , length );
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}
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void Enqueue ( SQLOperation * op )
{
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_queue -> Push ( op );
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}
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//! Gets a free connection in the synchronous connection pool.
//! Caller MUST call t->Unlock() after touching the MySQL context to prevent deadlocks.
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T * GetFreeConnection ();
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char const * GetDatabaseName () const
{
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return _connectionInfo -> database . c_str ();
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}
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//! Queue shared by async worker threads.
std :: unique_ptr < ProducerConsumerQueue < SQLOperation *>> _queue ;
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std :: array < std :: vector < std :: unique_ptr < T >> , IDX_SIZE > _connections ;
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std :: unique_ptr < MySQLConnectionInfo > _connectionInfo ;
uint8 _async_threads , _synch_threads ;
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};
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#endif