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+1,403
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#include <QQueue>
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#include <QQueue>
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#include <QThreadPool>
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#include <QThreadPool>
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#include <QRunnable>
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#include <QRunnable>
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#include <QObject>
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#include <QObject>
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#include <QDataStream>
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#include <QDataStream>
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#include "Variable/VariableController2.h"
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#include "Variable/VariableController2.h"
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#include "Variable/VariableSynchronizationGroup2.h"
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#include "Variable/VariableSynchronizationGroup2.h"
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#include <Common/containers.h>
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#include <Common/containers.h>
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#include <Common/debug.h>
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#include <Common/debug.h>
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#include <Data/DataProviderParameters.h>
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#include <Data/DataProviderParameters.h>
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#include <Data/DateTimeRangeHelper.h>
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#include <Data/DateTimeRangeHelper.h>
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#include <Data/DateTimeRange.h>
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#include <Data/DateTimeRange.h>
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#include <Variable/VariableCacheStrategyFactory.h>
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#include <Variable/VariableCacheStrategyFactory.h>
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#include <Variable/private/VCTransaction.h>
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#include <Variable/private/VCTransaction.h>
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#include <QCoreApplication>
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#include <QCoreApplication>
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class VariableController2::VariableController2Private
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class VariableController2::VariableController2Private
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{
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{
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struct threadSafeVaraiblesMaps
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struct threadSafeVaraiblesMaps
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{
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{
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inline void addVariable(const std::shared_ptr<Variable>& variable, const std::shared_ptr<IDataProvider>& provider, const std::shared_ptr<VariableSynchronizationGroup2>& synchronizationGroup)
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inline void addVariable(const std::shared_ptr<Variable>& variable, const std::shared_ptr<IDataProvider>& provider, const std::shared_ptr<VariableSynchronizationGroup2>& synchronizationGroup)
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{
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{
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QWriteLocker lock{&_lock};
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QWriteLocker lock{&_lock};
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_variables[*variable] = variable;
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_variables[*variable] = variable;
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_providers[*variable] = provider;
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_providers[*variable] = provider;
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_synchronizationGroups[*variable] = synchronizationGroup;
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_synchronizationGroups[*variable] = synchronizationGroup;
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}
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}
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inline void removeVariable(const std::shared_ptr<Variable>& variable)
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inline void removeVariable(const std::shared_ptr<Variable>& variable)
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{
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{
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QWriteLocker lock{&_lock};
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QWriteLocker lock{&_lock};
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_variables.remove(*variable);
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_variables.remove(*variable);
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_providers.remove(*variable);
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_providers.remove(*variable);
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_synchronizationGroups.remove(*variable);
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_synchronizationGroups.remove(*variable);
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}
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}
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inline void synchronize(const std::shared_ptr<Variable>& variable, const std::optional<std::shared_ptr<Variable>>& with)
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inline void synchronize(const std::shared_ptr<Variable>& variable, const std::optional<std::shared_ptr<Variable>>& with)
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{
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{
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QWriteLocker lock{&_lock};
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QWriteLocker lock{&_lock};
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if(with.has_value())
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if(with.has_value())
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{
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{
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auto newGroup = _synchronizationGroups[*with.value()];
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auto newGroup = _synchronizationGroups[*with.value()];
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newGroup->addVariable(*variable);
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newGroup->addVariable(*variable);
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_synchronizationGroups[*variable] = newGroup;
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_synchronizationGroups[*variable] = newGroup;
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}
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}
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else
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else
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{
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{
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_synchronizationGroups[*variable] = std::make_shared<VariableSynchronizationGroup2>(*variable);
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_synchronizationGroups[*variable] = std::make_shared<VariableSynchronizationGroup2>(*variable);
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}
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}
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}
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}
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inline std::shared_ptr<Variable> variable(QUuid variable)
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inline std::shared_ptr<Variable> variable(QUuid variable)
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{
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{
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QReadLocker lock{&_lock};
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QReadLocker lock{&_lock};
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[[unlikely]]
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[[unlikely]]
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if(!_variables.contains(variable))
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if(!_variables.contains(variable))
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SCIQLOP_ERROR(threadSafeVaraiblesMaps,"Unknown Variable");
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SCIQLOP_ERROR(threadSafeVaraiblesMaps,"Unknown Variable");
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return _variables[variable];
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return _variables[variable];
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}
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}
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inline std::shared_ptr<Variable> variable(int index)
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{
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QReadLocker lock{&_lock};
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[[unlikely]]
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if(!_variables.size() > index)
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SCIQLOP_ERROR(threadSafeVaraiblesMaps,"Index is out of bounds");
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return _variables.values()[index];
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}
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inline const std::vector<std::shared_ptr<Variable>> variables()
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inline const std::vector<std::shared_ptr<Variable>> variables()
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{
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{
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std::vector<std::shared_ptr<Variable>> vars;
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std::vector<std::shared_ptr<Variable>> vars;
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QReadLocker lock{&_lock};
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QReadLocker lock{&_lock};
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for(const auto &var:_variables)
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for(const auto &var:_variables)
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{
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{
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vars.push_back(var);
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vars.push_back(var);
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}
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}
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return vars;
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return vars;
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}
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}
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inline std::shared_ptr<IDataProvider> provider(QUuid variable)
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inline std::shared_ptr<IDataProvider> provider(QUuid variable)
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{
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{
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QReadLocker lock{&_lock};
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QReadLocker lock{&_lock};
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[[unlikely]]
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[[unlikely]]
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if(!_providers.contains(variable))
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if(!_providers.contains(variable))
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SCIQLOP_ERROR(threadSafeVaraiblesMaps,"Unknown Variable");
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SCIQLOP_ERROR(threadSafeVaraiblesMaps,"Unknown Variable");
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return _providers[variable];
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return _providers[variable];
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}
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}
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inline std::shared_ptr<VariableSynchronizationGroup2> group(QUuid variable)
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inline std::shared_ptr<VariableSynchronizationGroup2> group(QUuid variable)
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{
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{
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QReadLocker lock{&_lock};
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QReadLocker lock{&_lock};
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[[unlikely]]
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[[unlikely]]
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if(!_synchronizationGroups.contains(variable))
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if(!_synchronizationGroups.contains(variable))
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SCIQLOP_ERROR(threadSafeVaraiblesMaps,"Unknown Variable");
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SCIQLOP_ERROR(threadSafeVaraiblesMaps,"Unknown Variable");
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return _synchronizationGroups[variable];
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return _synchronizationGroups[variable];
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}
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}
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inline bool has(const std::shared_ptr<Variable>& variable)
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inline bool has(const std::shared_ptr<Variable>& variable)
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{
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{
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QReadLocker lock{&_lock};
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QReadLocker lock{&_lock};
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return _variables.contains(*variable);
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return _variables.contains(*variable);
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}
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}
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private:
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private:
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QMap<QUuid,std::shared_ptr<Variable>> _variables;
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QMap<QUuid,std::shared_ptr<Variable>> _variables;
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QMap<QUuid,std::shared_ptr<IDataProvider>> _providers;
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QMap<QUuid,std::shared_ptr<IDataProvider>> _providers;
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QMap<QUuid,std::shared_ptr<VariableSynchronizationGroup2>> _synchronizationGroups;
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QMap<QUuid,std::shared_ptr<VariableSynchronizationGroup2>> _synchronizationGroups;
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QReadWriteLock _lock{QReadWriteLock::Recursive};
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QReadWriteLock _lock{QReadWriteLock::Recursive};
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}_maps;
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}_maps;
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QThreadPool _ThreadPool;
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QThreadPool _ThreadPool;
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VCTransactionsQueues _transactions;
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VCTransactionsQueues _transactions;
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std::unique_ptr<VariableCacheStrategy> _cacheStrategy;
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std::unique_ptr<VariableCacheStrategy> _cacheStrategy;
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void _transactionComplete(QUuid group, std::shared_ptr<VCTransaction> transaction)
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void _transactionComplete(QUuid group, std::shared_ptr<VCTransaction> transaction)
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{
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{
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if(transaction->done())
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if(transaction->done())
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{
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{
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_transactions.complete(group);
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_transactions.complete(group);
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}
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}
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this->_processTransactions();
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this->_processTransactions();
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}
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}
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void _processTransactions()
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void _processTransactions()
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{
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{
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auto nextTransactions = _transactions.nextTransactions();
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auto nextTransactions = _transactions.nextTransactions();
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auto pendingTransactions = _transactions.pendingTransactions();
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auto pendingTransactions = _transactions.pendingTransactions();
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for( auto [groupID, newTransaction] : nextTransactions)
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for( auto [groupID, newTransaction] : nextTransactions)
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{
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{
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if(newTransaction.has_value() && !pendingTransactions[groupID].has_value())
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if(newTransaction.has_value() && !pendingTransactions[groupID].has_value())
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{
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{
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_transactions.start(groupID);
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_transactions.start(groupID);
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auto refVar = _maps.variable(newTransaction.value()->refVar);
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auto refVar = _maps.variable(newTransaction.value()->refVar);
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auto ranges = _computeAllRangesInGroup(refVar,newTransaction.value()->range);
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auto ranges = _computeAllRangesInGroup(refVar,newTransaction.value()->range);
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for( auto const& [ID, range] : ranges)
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for( auto const& [ID, range] : ranges)
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{
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{
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auto provider = _maps.provider(ID);
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auto provider = _maps.provider(ID);
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auto variable = _maps.variable(ID);
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auto variable = _maps.variable(ID);
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auto [missingRanges, newCacheRange] = _computeMissingRanges(variable,range);
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auto [missingRanges, newCacheRange] = _computeMissingRanges(variable,range);
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auto exe = new TransactionExe(variable, provider, missingRanges, range, newCacheRange);
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auto exe = new TransactionExe(variable, provider, missingRanges, range, newCacheRange);
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QObject::connect(exe,
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QObject::connect(exe,
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&TransactionExe::transactionComplete,
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&TransactionExe::transactionComplete,
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[groupID=groupID,transaction=newTransaction.value(),this]()
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[groupID=groupID,transaction=newTransaction.value(),this]()
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{
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{
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this->_transactionComplete(groupID, transaction);
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this->_transactionComplete(groupID, transaction);
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}
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}
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);
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);
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_ThreadPool.start(exe);
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_ThreadPool.start(exe);
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}
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}
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}
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}
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}
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}
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}
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}
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std::map<QUuid,DateTimeRange> _computeAllRangesInGroup(const std::shared_ptr<Variable>& refVar, DateTimeRange r)
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std::map<QUuid,DateTimeRange> _computeAllRangesInGroup(const std::shared_ptr<Variable>& refVar, DateTimeRange r)
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{
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{
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std::map<QUuid,DateTimeRange> ranges;
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std::map<QUuid,DateTimeRange> ranges;
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if(!DateTimeRangeHelper::hasnan(r))
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if(!DateTimeRangeHelper::hasnan(r))
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{
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{
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auto group = _maps.group(*refVar);
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auto group = _maps.group(*refVar);
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if(auto transformation = DateTimeRangeHelper::computeTransformation(refVar->range(),r);
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if(auto transformation = DateTimeRangeHelper::computeTransformation(refVar->range(),r);
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transformation.has_value())
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transformation.has_value())
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{
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{
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for(auto varId:group->variables())
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for(auto varId:group->variables())
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{
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{
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auto var = _maps.variable(varId);
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auto var = _maps.variable(varId);
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auto newRange = var->range().transform(transformation.value());
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auto newRange = var->range().transform(transformation.value());
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ranges[varId] = newRange;
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ranges[varId] = newRange;
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}
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}
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}
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}
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else // force new range to all variables -> may be weird if more than one var in the group
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else // force new range to all variables -> may be weird if more than one var in the group
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// @TODO ensure that there is no side effects
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// @TODO ensure that there is no side effects
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{
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{
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for(auto varId:group->variables())
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for(auto varId:group->variables())
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167
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{
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{
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auto var = _maps.variable(varId);
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auto var = _maps.variable(varId);
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ranges[varId] = r;
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ranges[varId] = r;
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}
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}
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}
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}
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}
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}
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else
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else
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{
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183
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{
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SCIQLOP_ERROR(VariableController2Private, "Invalid range containing NaN");
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SCIQLOP_ERROR(VariableController2Private, "Invalid range containing NaN");
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176
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}
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}
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return ranges;
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return ranges;
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}
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}
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180
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std::pair<std::vector<DateTimeRange>,DateTimeRange> _computeMissingRanges(const std::shared_ptr<Variable>& var, DateTimeRange r)
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std::pair<std::vector<DateTimeRange>,DateTimeRange> _computeMissingRanges(const std::shared_ptr<Variable>& var, DateTimeRange r)
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181
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{
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190
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{
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182
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DateTimeRange newCacheRange;
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191
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DateTimeRange newCacheRange;
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183
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std::vector<DateTimeRange> missingRanges;
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192
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std::vector<DateTimeRange> missingRanges;
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184
|
if(DateTimeRangeHelper::hasnan(var->cacheRange()))
|
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193
|
if(DateTimeRangeHelper::hasnan(var->cacheRange()))
|
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185
|
{
|
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194
|
{
|
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186
|
newCacheRange = _cacheStrategy->computeRange(r,r);
|
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195
|
newCacheRange = _cacheStrategy->computeRange(r,r);
|
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187
|
missingRanges = {newCacheRange};
|
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196
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missingRanges = {newCacheRange};
|
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188
|
}
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197
|
}
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else
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198
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else
|
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190
|
{
|
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199
|
{
|
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191
|
newCacheRange = _cacheStrategy->computeRange(var->cacheRange(),r);
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200
|
newCacheRange = _cacheStrategy->computeRange(var->cacheRange(),r);
|
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192
|
missingRanges = newCacheRange - var->cacheRange();
|
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201
|
missingRanges = newCacheRange - var->cacheRange();
|
|
193
|
}
|
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202
|
}
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194
|
return {missingRanges,newCacheRange};
|
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203
|
return {missingRanges,newCacheRange};
|
|
195
|
}
|
|
204
|
}
|
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196
|
|
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205
|
|
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197
|
void _changeRange(QUuid id, DateTimeRange r)
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206
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void _changeRange(QUuid id, DateTimeRange r)
|
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198
|
{
|
|
207
|
{
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199
|
_changeRange(_maps.variable(id) ,r);
|
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208
|
_changeRange(_maps.variable(id) ,r);
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200
|
}
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209
|
}
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201
|
void _changeRange(const std::shared_ptr<Variable>& var, DateTimeRange r)
|
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210
|
void _changeRange(const std::shared_ptr<Variable>& var, DateTimeRange r)
|
|
202
|
{
|
|
211
|
{
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203
|
auto provider = _maps.provider(*var);
|
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212
|
auto provider = _maps.provider(*var);
|
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204
|
auto [missingRanges, newCacheRange] = _computeMissingRanges(var,r);
|
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213
|
auto [missingRanges, newCacheRange] = _computeMissingRanges(var,r);
|
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205
|
std::vector<IDataSeries*> data;
|
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214
|
std::vector<IDataSeries*> data;
|
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206
|
for(auto range:missingRanges)
|
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215
|
for(auto range:missingRanges)
|
|
207
|
{
|
|
216
|
{
|
|
208
|
data.push_back(provider->getData(DataProviderParameters{{range}, var->metadata()}));
|
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217
|
data.push_back(provider->getData(DataProviderParameters{{range}, var->metadata()}));
|
|
209
|
}
|
|
218
|
}
|
|
210
|
var->updateData(data, r, newCacheRange, true);
|
|
219
|
var->updateData(data, r, newCacheRange, true);
|
|
211
|
}
|
|
220
|
}
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212
|
public:
|
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221
|
public:
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213
|
VariableController2Private(QObject* parent=Q_NULLPTR)
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222
|
VariableController2Private(QObject* parent=Q_NULLPTR)
|
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214
|
:_cacheStrategy(VariableCacheStrategyFactory::createCacheStrategy(CacheStrategy::SingleThreshold))
|
|
223
|
:_cacheStrategy(VariableCacheStrategyFactory::createCacheStrategy(CacheStrategy::SingleThreshold))
|
|
215
|
{
|
|
224
|
{
|
|
216
|
Q_UNUSED(parent);
|
|
225
|
Q_UNUSED(parent);
|
|
217
|
this->_ThreadPool.setMaxThreadCount(32);
|
|
226
|
this->_ThreadPool.setMaxThreadCount(32);
|
|
218
|
}
|
|
227
|
}
|
|
219
|
|
|
228
|
|
|
220
|
/*
|
|
229
|
/*
|
|
221
|
* This dtor has to like this even if this is ugly, because default dtor would rely on
|
|
230
|
* This dtor has to like this even if this is ugly, because default dtor would rely on
|
|
222
|
* declaration order to destruct members and that would always lead to regressions when
|
|
231
|
* declaration order to destruct members and that would always lead to regressions when
|
|
223
|
* modifying class members
|
|
232
|
* modifying class members
|
|
224
|
*/
|
|
233
|
*/
|
|
225
|
~VariableController2Private()
|
|
234
|
~VariableController2Private()
|
|
226
|
{
|
|
235
|
{
|
|
227
|
while (this->_ThreadPool.activeThreadCount())
|
|
236
|
while (this->_ThreadPool.activeThreadCount())
|
|
228
|
{
|
|
237
|
{
|
|
229
|
this->_ThreadPool.waitForDone(100);
|
|
238
|
this->_ThreadPool.waitForDone(100);
|
|
230
|
}
|
|
239
|
}
|
|
231
|
}
|
|
240
|
}
|
|
232
|
|
|
241
|
|
|
233
|
std::shared_ptr<Variable> createVariable(const QString &name, const QVariantHash &metadata, std::shared_ptr<IDataProvider> provider)
|
|
242
|
std::shared_ptr<Variable> createVariable(const QString &name, const QVariantHash &metadata, std::shared_ptr<IDataProvider> provider)
|
|
234
|
{
|
|
243
|
{
|
|
235
|
auto newVar = std::make_shared<Variable>(name,metadata);
|
|
244
|
auto newVar = std::make_shared<Variable>(name,metadata);
|
|
236
|
auto group = std::make_shared<VariableSynchronizationGroup2>(newVar->ID());
|
|
245
|
auto group = std::make_shared<VariableSynchronizationGroup2>(newVar->ID());
|
|
237
|
_maps.addVariable(newVar,std::move(provider),group);
|
|
246
|
_maps.addVariable(newVar,std::move(provider),group);
|
|
238
|
this->_transactions.addEntry(*group);
|
|
247
|
this->_transactions.addEntry(*group);
|
|
239
|
return newVar;
|
|
248
|
return newVar;
|
|
240
|
}
|
|
249
|
}
|
|
241
|
|
|
250
|
|
|
|
|
|
251
|
std::shared_ptr<Variable> variable(QUuid ID)
|
|
|
|
|
252
|
{
|
|
|
|
|
253
|
return _maps.variable(ID);
|
|
|
|
|
254
|
}
|
|
|
|
|
255
|
|
|
|
|
|
256
|
std::shared_ptr<Variable> variable(int index)
|
|
|
|
|
257
|
{
|
|
|
|
|
258
|
return _maps.variable(index);
|
|
|
|
|
259
|
}
|
|
|
|
|
260
|
|
|
242
|
std::shared_ptr<Variable> cloneVariable(const std::shared_ptr<Variable>& variable)
|
|
261
|
std::shared_ptr<Variable> cloneVariable(const std::shared_ptr<Variable>& variable)
|
|
243
|
{
|
|
262
|
{
|
|
244
|
auto newVar = variable->clone();
|
|
263
|
auto newVar = variable->clone();
|
|
245
|
_maps.synchronize(newVar,std::nullopt);
|
|
264
|
_maps.synchronize(newVar,std::nullopt);
|
|
246
|
_maps.addVariable(newVar,_maps.provider(*variable),_maps.group(*newVar));
|
|
265
|
_maps.addVariable(newVar,_maps.provider(*variable),_maps.group(*newVar));
|
|
247
|
this->_transactions.addEntry(*_maps.group(*newVar));
|
|
266
|
this->_transactions.addEntry(*_maps.group(*newVar));
|
|
248
|
return newVar;
|
|
267
|
return newVar;
|
|
249
|
}
|
|
268
|
}
|
|
250
|
|
|
269
|
|
|
251
|
bool hasPendingTransactions(const std::shared_ptr<Variable>& variable)
|
|
270
|
bool hasPendingTransactions(const std::shared_ptr<Variable>& variable)
|
|
252
|
{
|
|
271
|
{
|
|
253
|
return _transactions.active(*_maps.group(*variable));
|
|
272
|
return _transactions.active(*_maps.group(*variable));
|
|
254
|
}
|
|
273
|
}
|
|
255
|
|
|
274
|
|
|
256
|
void deleteVariable(const std::shared_ptr<Variable>& variable)
|
|
275
|
void deleteVariable(const std::shared_ptr<Variable>& variable)
|
|
257
|
{
|
|
276
|
{
|
|
258
|
_maps.removeVariable(variable);
|
|
277
|
_maps.removeVariable(variable);
|
|
259
|
}
|
|
278
|
}
|
|
260
|
|
|
279
|
|
|
261
|
void asyncChangeRange(const std::shared_ptr<Variable>& variable, const DateTimeRange& r)
|
|
280
|
void asyncChangeRange(const std::shared_ptr<Variable>& variable, const DateTimeRange& r)
|
|
262
|
{
|
|
281
|
{
|
|
263
|
if(!DateTimeRangeHelper::hasnan(r))
|
|
282
|
if(!DateTimeRangeHelper::hasnan(r))
|
|
264
|
{
|
|
283
|
{
|
|
265
|
auto group = _maps.group(*variable);
|
|
284
|
auto group = _maps.group(*variable);
|
|
266
|
// Just overwrite next transaction
|
|
285
|
// Just overwrite next transaction
|
|
267
|
{
|
|
286
|
{
|
|
268
|
_transactions.enqueue(*group,std::make_shared<VCTransaction>(variable->ID(), r, static_cast<int>(group->variables().size())));
|
|
287
|
_transactions.enqueue(*group,std::make_shared<VCTransaction>(variable->ID(), r, static_cast<int>(group->variables().size())));
|
|
269
|
}
|
|
288
|
}
|
|
270
|
_processTransactions();
|
|
289
|
_processTransactions();
|
|
271
|
}
|
|
290
|
}
|
|
272
|
else
|
|
291
|
else
|
|
273
|
{
|
|
292
|
{
|
|
274
|
SCIQLOP_ERROR(VariableController2Private, "Invalid range containing NaN");
|
|
293
|
SCIQLOP_ERROR(VariableController2Private, "Invalid range containing NaN");
|
|
275
|
}
|
|
294
|
}
|
|
276
|
}
|
|
295
|
}
|
|
277
|
|
|
296
|
|
|
278
|
void changeRange(const std::shared_ptr<Variable>& variable, DateTimeRange r)
|
|
297
|
void changeRange(const std::shared_ptr<Variable>& variable, DateTimeRange r)
|
|
279
|
{
|
|
298
|
{
|
|
280
|
asyncChangeRange(variable,r);
|
|
299
|
asyncChangeRange(variable,r);
|
|
281
|
while (hasPendingTransactions(variable))
|
|
300
|
while (hasPendingTransactions(variable))
|
|
282
|
{
|
|
301
|
{
|
|
283
|
QCoreApplication::processEvents();
|
|
302
|
QCoreApplication::processEvents();
|
|
284
|
}
|
|
303
|
}
|
|
285
|
}
|
|
304
|
}
|
|
286
|
|
|
305
|
|
|
287
|
inline void synchronize(const std::shared_ptr<Variable>& var, const std::shared_ptr<Variable>& with)
|
|
306
|
inline void synchronize(const std::shared_ptr<Variable>& var, const std::shared_ptr<Variable>& with)
|
|
288
|
{
|
|
307
|
{
|
|
289
|
_maps.synchronize(var, with);
|
|
308
|
_maps.synchronize(var, with);
|
|
290
|
}
|
|
309
|
}
|
|
291
|
|
|
310
|
|
|
292
|
inline const std::vector<std::shared_ptr<Variable>> variables()
|
|
311
|
inline const std::vector<std::shared_ptr<Variable>> variables()
|
|
293
|
{
|
|
312
|
{
|
|
294
|
return _maps.variables();
|
|
313
|
return _maps.variables();
|
|
295
|
}
|
|
314
|
}
|
|
296
|
|
|
315
|
|
|
297
|
};
|
|
316
|
};
|
|
298
|
|
|
317
|
|
|
299
|
VariableController2::VariableController2()
|
|
318
|
VariableController2::VariableController2()
|
|
300
|
:impl{spimpl::make_unique_impl<VariableController2Private>()}
|
|
319
|
:impl{spimpl::make_unique_impl<VariableController2Private>()}
|
|
301
|
{}
|
|
320
|
{}
|
|
302
|
|
|
321
|
|
|
303
|
std::shared_ptr<Variable> VariableController2::createVariable(const QString &name, const QVariantHash &metadata, const std::shared_ptr<IDataProvider>& provider, const DateTimeRange &range)
|
|
322
|
std::shared_ptr<Variable> VariableController2::createVariable(const QString &name, const QVariantHash &metadata, const std::shared_ptr<IDataProvider>& provider, const DateTimeRange &range)
|
|
304
|
{
|
|
323
|
{
|
|
305
|
auto var = impl->createVariable(name, metadata, provider);
|
|
324
|
auto var = impl->createVariable(name, metadata, provider);
|
|
306
|
emit variableAdded(var);
|
|
325
|
emit variableAdded(var);
|
|
307
|
if(!DateTimeRangeHelper::hasnan(range))
|
|
326
|
if(!DateTimeRangeHelper::hasnan(range))
|
|
308
|
impl->changeRange(var,range);
|
|
327
|
impl->changeRange(var,range);
|
|
309
|
else
|
|
328
|
else
|
|
310
|
SCIQLOP_ERROR(VariableController2, "Creating a variable with default constructed DateTimeRange is an error");
|
|
329
|
SCIQLOP_ERROR(VariableController2, "Creating a variable with default constructed DateTimeRange is an error");
|
|
311
|
return var;
|
|
330
|
return var;
|
|
312
|
}
|
|
331
|
}
|
|
313
|
|
|
332
|
|
|
314
|
std::shared_ptr<Variable> VariableController2::cloneVariable(const std::shared_ptr<Variable> &variable)
|
|
333
|
std::shared_ptr<Variable> VariableController2::cloneVariable(const std::shared_ptr<Variable> &variable)
|
|
315
|
{
|
|
334
|
{
|
|
316
|
return impl->cloneVariable(variable);
|
|
335
|
return impl->cloneVariable(variable);
|
|
317
|
}
|
|
336
|
}
|
|
318
|
|
|
337
|
|
|
319
|
void VariableController2::deleteVariable(const std::shared_ptr<Variable>& variable)
|
|
338
|
void VariableController2::deleteVariable(const std::shared_ptr<Variable>& variable)
|
|
320
|
{
|
|
339
|
{
|
|
321
|
impl->deleteVariable(variable);
|
|
340
|
impl->deleteVariable(variable);
|
|
322
|
emit variableDeleted(variable);
|
|
341
|
emit variableDeleted(variable);
|
|
323
|
}
|
|
342
|
}
|
|
324
|
|
|
343
|
|
|
325
|
void VariableController2::changeRange(const std::shared_ptr<Variable>& variable, const DateTimeRange& r)
|
|
344
|
void VariableController2::changeRange(const std::shared_ptr<Variable>& variable, const DateTimeRange& r)
|
|
326
|
{
|
|
345
|
{
|
|
327
|
impl->changeRange(variable, r);
|
|
346
|
impl->changeRange(variable, r);
|
|
328
|
}
|
|
347
|
}
|
|
329
|
|
|
348
|
|
|
330
|
void VariableController2::asyncChangeRange(const std::shared_ptr<Variable> &variable, const DateTimeRange &r)
|
|
349
|
void VariableController2::asyncChangeRange(const std::shared_ptr<Variable> &variable, const DateTimeRange &r)
|
|
331
|
{
|
|
350
|
{
|
|
332
|
impl->asyncChangeRange(variable, r);
|
|
351
|
impl->asyncChangeRange(variable, r);
|
|
333
|
}
|
|
352
|
}
|
|
334
|
|
|
353
|
|
|
335
|
const std::vector<std::shared_ptr<Variable> > VariableController2::variables()
|
|
354
|
const std::vector<std::shared_ptr<Variable> > VariableController2::variables()
|
|
336
|
{
|
|
355
|
{
|
|
337
|
return impl->variables();
|
|
356
|
return impl->variables();
|
|
338
|
}
|
|
357
|
}
|
|
339
|
|
|
358
|
|
|
340
|
bool VariableController2::isReady(const std::shared_ptr<Variable> &variable)
|
|
359
|
bool VariableController2::isReady(const std::shared_ptr<Variable> &variable)
|
|
341
|
{
|
|
360
|
{
|
|
342
|
return impl->hasPendingTransactions(variable);
|
|
361
|
return impl->hasPendingTransactions(variable);
|
|
343
|
}
|
|
362
|
}
|
|
344
|
|
|
363
|
|
|
345
|
void VariableController2::synchronize(const std::shared_ptr<Variable> &var, const std::shared_ptr<Variable> &with)
|
|
364
|
void VariableController2::synchronize(const std::shared_ptr<Variable> &var, const std::shared_ptr<Variable> &with)
|
|
346
|
{
|
|
365
|
{
|
|
347
|
impl->synchronize(var, with);
|
|
366
|
impl->synchronize(var, with);
|
|
348
|
}
|
|
367
|
}
|
|
349
|
|
|
368
|
|
|
350
|
QByteArray VariableController2::mimeData(const std::vector<std::shared_ptr<Variable> > &variables) const
|
|
369
|
QByteArray VariableController2::mimeData(const std::vector<std::shared_ptr<Variable> > &variables) const
|
|
351
|
{
|
|
370
|
{
|
|
352
|
auto encodedData = QByteArray{};
|
|
371
|
auto encodedData = QByteArray{};
|
|
353
|
QDataStream stream{&encodedData, QIODevice::WriteOnly};
|
|
372
|
QDataStream stream{&encodedData, QIODevice::WriteOnly};
|
|
354
|
for (auto &var : variables) {
|
|
373
|
for (auto &var : variables) {
|
|
355
|
stream << var->ID().toByteArray();
|
|
374
|
stream << var->ID().toByteArray();
|
|
356
|
}
|
|
375
|
}
|
|
357
|
return encodedData;
|
|
376
|
return encodedData;
|
|
358
|
}
|
|
377
|
}
|
|
|
|
|
378
|
|
|
|
|
|
379
|
const std::vector<std::shared_ptr<Variable>> VariableController2::variables(QByteArray mimeData)
|
|
|
|
|
380
|
{
|
|
|
|
|
381
|
std::vector<std::shared_ptr<Variable>> variables;
|
|
|
|
|
382
|
QDataStream stream{mimeData};
|
|
|
|
|
383
|
|
|
|
|
|
384
|
QVariantList ids;
|
|
|
|
|
385
|
stream >> ids;
|
|
|
|
|
386
|
|
|
|
|
|
387
|
for (const auto& id : ids) {
|
|
|
|
|
388
|
auto uuid = QUuid{id.toByteArray()};
|
|
|
|
|
389
|
variables.push_back (impl->variable(uuid));
|
|
|
|
|
390
|
}
|
|
|
|
|
391
|
|
|
|
|
|
392
|
return variables;
|
|
|
|
|
393
|
}
|
|
|
|
|
394
|
|
|
|
|
|
395
|
const std::shared_ptr<Variable> &VariableController2::operator[](int index) const
|
|
|
|
|
396
|
{
|
|
|
|
|
397
|
return impl->variable (index);
|
|
|
|
|
398
|
}
|
|
|
|
|
399
|
|
|
|
|
|
400
|
std::shared_ptr<Variable> VariableController2::operator[](int index)
|
|
|
|
|
401
|
{
|
|
|
|
|
402
|
return impl->variable (index);
|
|
|
|
|
403
|
}
|