opm-simulators/opm/simulators/utils/ParallelRestart.hpp

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/*
Copyright 2019 Equinor AS.
This file is part of the Open Porous Media project (OPM).
OPM 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 3 of the License, or
(at your option) any later version.
OPM 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 OPM. If not, see <http://www.gnu.org/licenses/>.
*/
#ifndef PARALLEL_RESTART_HPP
#define PARALLEL_RESTART_HPP
#if HAVE_MPI
#include <mpi.h>
#endif
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#include <opm/material/common/Tabulated1DFunction.hpp>
#include <opm/material/common/IntervalTabulated2DFunction.hpp>
#include <opm/material/common/UniformXTabulated2DFunction.hpp>
#include <opm/material/fluidsystems/blackoilpvt/ConstantCompressibilityOilPvt.hpp>
#include <opm/material/fluidsystems/blackoilpvt/ConstantCompressibilityWaterPvt.hpp>
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#include <opm/material/fluidsystems/blackoilpvt/DeadOilPvt.hpp>
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#include <opm/material/fluidsystems/blackoilpvt/DryGasPvt.hpp>
#include <opm/material/fluidsystems/blackoilpvt/GasPvtMultiplexer.hpp>
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#include <opm/material/fluidsystems/blackoilpvt/LiveOilPvt.hpp>
#include <opm/material/fluidsystems/blackoilpvt/OilPvtMultiplexer.hpp>
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#include <opm/material/fluidsystems/blackoilpvt/SolventPvt.hpp>
#include <opm/material/fluidsystems/blackoilpvt/WaterPvtMultiplexer.hpp>
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#include <opm/material/fluidsystems/blackoilpvt/WetGasPvt.hpp>
#include <opm/output/eclipse/RestartValue.hpp>
#include <opm/output/eclipse/EclipseIO.hpp>
#include <opm/output/eclipse/Summary.hpp>
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#include <opm/parser/eclipse/EclipseState/Schedule/DynamicState.hpp>
#include <opm/parser/eclipse/EclipseState/Schedule/DynamicVector.hpp>
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#include <opm/parser/eclipse/EclipseState/Schedule/Group/GConSale.hpp>
#include <opm/parser/eclipse/EclipseState/Schedule/Group/Group.hpp>
#include <opm/parser/eclipse/EclipseState/Schedule/Group/GuideRateConfig.hpp>
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#include <opm/parser/eclipse/EclipseState/Schedule/TimeMap.hpp>
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#include <opm/parser/eclipse/EclipseState/Schedule/UDQ/UDQAssign.hpp>
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#include <opm/parser/eclipse/EclipseState/Schedule/UDQ/UDQActive.hpp>
#include <opm/parser/eclipse/EclipseState/Schedule/Well/Well.hpp>
#include <opm/parser/eclipse/EclipseState/Schedule/Well/WellTestConfig.hpp>
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#include <opm/parser/eclipse/EclipseState/Util/OrderedMap.hpp>
#include <dune/common/parallel/mpihelper.hh>
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#include <tuple>
#include <vector>
#include <map>
#include <unordered_map>
namespace Opm
{
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class Actdims;
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class Aqudims;
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class ColumnSchema;
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class Connection;
class DENSITYRecord;
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class DensityTable;
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class Dimension;
class EclHysterConfig;
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class Eqldims;
class EDITNNC;
class EndpointScaling;
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class Equil;
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class EquilRecord;
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class Events;
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class FoamConfig;
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class FoamData;
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class InitConfig;
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class IOConfig;
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template<class T> class IOrderSet;
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class JFunc;
class MessageLimits;
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class MLimits;
class NNC;
struct NNCdata;
class OilVaporizationProperties;
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class Phases;
class PlymwinjTable;
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class PolyInjTable;
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class PVCDORecord;
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class PvcdoTable;
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class PvtgTable;
class PvtoTable;
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class PVTWRecord;
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class PvtwTable;
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class Regdims;
class RestartConfig;
class RestartSchedule;
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class ROCKRecord;
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class RockTable;
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class Rock2dTable;
class Rock2dtrTable;
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class Runspec;
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class Segment;
class SimulationConfig;
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class SimpleTable;
class SkprpolyTable;
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class SkprwatTable;
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class SpiralICD;
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class Tabdims;
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class TableColumn;
class TableContainer;
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class TableManager;
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class TableSchema;
class ThresholdPressure;
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class UDAValue;
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class UDQASTNode;
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class UDQConfig;
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class UDQDefine;
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class UDQFunction;
class UDQFunctionTable;
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class UDQIndex;
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class UDQParams;
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class UnitSystem;
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class Valve;
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class VFPInjTable;
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class VFPProdTable;
class VISCREFRecord;
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class ViscrefTable;
class WATDENTRecord;
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class WatdentTable;
class WellConnections;
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class Welldims;
class WellEconProductionLimits;
class WellFoamProperties;
class WellPolymerProperties;
class WellSegmentDims;
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class WellSegments;
class WellTracerProperties;
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class WList;
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class WListManager;
namespace Mpi
{
template<class T>
std::size_t packSize(const T*, std::size_t, Dune::MPIHelper::MPICommunicator,
std::integral_constant<bool, false>);
template<class T>
std::size_t packSize(const T*, std::size_t l, Dune::MPIHelper::MPICommunicator comm,
std::integral_constant<bool, true>);
template<class T>
std::size_t packSize(const T* data, std::size_t l, Dune::MPIHelper::MPICommunicator comm);
template<class T>
std::size_t packSize(const T&, Dune::MPIHelper::MPICommunicator,
std::integral_constant<bool, false>);
template<class T>
std::size_t packSize(const T&, Dune::MPIHelper::MPICommunicator comm,
std::integral_constant<bool, true>);
template<class T>
std::size_t packSize(const T& data, Dune::MPIHelper::MPICommunicator comm);
template<class T1, class T2>
std::size_t packSize(const std::pair<T1,T2>& data, Dune::MPIHelper::MPICommunicator comm);
template<class T, class A>
std::size_t packSize(const std::vector<T,A>& data, Dune::MPIHelper::MPICommunicator comm);
template<class T, class H, class KE, class A>
std::size_t packSize(const std::unordered_set<T,H,KE,A>& data,
Dune::MPIHelper::MPICommunicator comm);
template<class A>
std::size_t packSize(const std::vector<bool,A>& data, Dune::MPIHelper::MPICommunicator comm);
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template<class... Ts>
std::size_t packSize(const std::tuple<Ts...>& data, Dune::MPIHelper::MPICommunicator comm);
template<class T>
std::size_t packSize(const std::shared_ptr<T>& data,
Dune::MPIHelper::MPICommunicator comm);
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template<class T, std::size_t N>
std::size_t packSize(const std::array<T,N>& data, Dune::MPIHelper::MPICommunicator comm);
std::size_t packSize(const char* str, Dune::MPIHelper::MPICommunicator comm);
std::size_t packSize(const std::string& str, Dune::MPIHelper::MPICommunicator comm);
template<class T1, class T2, class C, class A>
std::size_t packSize(const std::map<T1,T2,C,A>& data, Dune::MPIHelper::MPICommunicator comm);
template<class T1, class T2, class H, class P, class A>
std::size_t packSize(const std::unordered_map<T1,T2,H,P,A>& data, Dune::MPIHelper::MPICommunicator comm);
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template<class Key, class Value>
std::size_t packSize(const OrderedMap<Key,Value>& data, Dune::MPIHelper::MPICommunicator comm);
template<class T>
std::size_t packSize(const DynamicVector<T>& data, Dune::MPIHelper::MPICommunicator comm);
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template<class T>
std::size_t packSize(const DynamicState<T>& data, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
std::size_t packSize(const Tabulated1DFunction<Scalar>& data, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
std::size_t packSize(const IntervalTabulated2DFunction<Scalar>& data, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
std::size_t packSize(const UniformXTabulated2DFunction<Scalar>& data, Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar>
std::size_t packSize(const SolventPvt<Scalar>& data, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar, bool enableThermal>
std::size_t packSize(const GasPvtMultiplexer<Scalar,enableThermal>& data,
Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar>
std::size_t packSize(const DryGasPvt<Scalar>& data, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
std::size_t packSize(const GasPvtThermal<Scalar>& data, Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar>
std::size_t packSize(const WetGasPvt<Scalar>& data, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar, bool enableThermal>
std::size_t packSize(const OilPvtMultiplexer<Scalar,enableThermal>& data,
Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
std::size_t packSize(const ConstantCompressibilityOilPvt<Scalar>& data,
Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar>
std::size_t packSize(const DeadOilPvt<Scalar>& data,
Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar>
std::size_t packSize(const LiveOilPvt<Scalar>& data,
Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
std::size_t packSize(const OilPvtThermal<Scalar>& data, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar, bool enableThermal>
std::size_t packSize(const WaterPvtMultiplexer<Scalar,enableThermal>& data,
Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
std::size_t packSize(const ConstantCompressibilityWaterPvt<Scalar>& data,
Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
std::size_t packSize(const WaterPvtThermal<Scalar>& data, Dune::MPIHelper::MPICommunicator comm);
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template<class T>
std::size_t packSize(const IOrderSet<T>& data, Dune::MPIHelper::MPICommunicator comm);
////// pack routines
template<class T>
void pack(const T*, std::size_t, std::vector<char>&, int&,
Dune::MPIHelper::MPICommunicator, std::integral_constant<bool, false>);
template<class T>
void pack(const T* data, std::size_t l, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm, std::integral_constant<bool, true>);
template<class T>
void pack(const T* data, std::size_t l, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class T>
void pack(const T&, std::vector<char>&, int&,
Dune::MPIHelper::MPICommunicator, std::integral_constant<bool, false>);
template<class T>
void pack(const T& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm, std::integral_constant<bool, true>);
template<class T>
void pack(const T& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class T1, class T2>
void pack(const std::pair<T1,T2>& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class T, class A>
void pack(const std::vector<T,A>& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class A>
void pack(const std::vector<bool,A>& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
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template<class... Ts>
void pack(const std::tuple<Ts...>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
template<class T, class H, class KE, class A>
void pack(const std::unordered_set<T,H,KE,A>& data,
std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class T>
void pack(const std::shared_ptr<T>& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
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template<class T, size_t N>
void pack(const std::array<T,N>& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class T1, class T2, class C, class A>
void pack(const std::map<T1,T2,C,A>& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class T1, class T2, class H, class P, class A>
void pack(const std::unordered_map<T1,T2,H,P,A>& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
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template<class Key, class Value>
void pack(const OrderedMap<Key,Value>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
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template<class T>
void pack(const DynamicState<T>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
template<class T>
void pack(const DynamicVector<T>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
void pack(const Tabulated1DFunction<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
void pack(const IntervalTabulated2DFunction<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
void pack(const UniformXTabulated2DFunction<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar>
void pack(const SolventPvt<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar, bool enableThermal>
void pack(const GasPvtMultiplexer<Scalar,enableThermal>& data,
const std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar>
void pack(const DryGasPvt<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
void pack(const GasPvtThermal<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar>
void pack(const WetGasPvt<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar, bool enableThermal>
void pack(const OilPvtMultiplexer<Scalar,enableThermal>& data,
const std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
void pack(const ConstantCompressibilityOilPvt<Scalar>& data,
std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar>
void pack(const DeadOilPvt<Scalar>& data,
std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar>
void pack(const LiveOilPvt<Scalar>& data,
std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
void pack(const OilPvtThermal<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar, bool enableThermal>
void pack(const WaterPvtMultiplexer<Scalar,enableThermal>& data,
const std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
void pack(const ConstantCompressibilityWaterPvt<Scalar>& data,
std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
void pack(const WaterPvtThermal<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
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template<class T>
void pack(const IOrderSet<T>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
void pack(const char* str, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
/// unpack routines
template<class T>
void unpack(T*, const std::size_t&, std::vector<char>&, int&,
Dune::MPIHelper::MPICommunicator, std::integral_constant<bool, false>);
template<class T>
void unpack(T* data, const std::size_t& l, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm,
std::integral_constant<bool, true>);
template<class T>
void unpack(T* data, const std::size_t& l, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class T>
void unpack(T&, std::vector<char>&, int&,
Dune::MPIHelper::MPICommunicator, std::integral_constant<bool, false>);
template<class T>
void unpack(T& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm, std::integral_constant<bool, true>);
template<class T>
void unpack(T& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class T1, class T2>
void unpack(std::pair<T1,T2>& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class T, class A>
void unpack(std::vector<T,A>& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class A>
void unpack(std::vector<bool,A>& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
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template<class... Ts>
void unpack(std::tuple<Ts...>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
template<class T, class H, class KE, class A>
void unpack(std::unordered_set<T,H,KE,A>& data,
std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class T>
void unpack(std::shared_ptr<T>& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
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template<class T, size_t N>
void unpack(std::array<T,N>& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class T1, class T2, class C, class A>
void unpack(std::map<T1,T2,C,A>& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class T1, class T2, class H, class P, class A>
void unpack(std::unordered_map<T1,T2,H,P,A>& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
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template<class Key, class Value>
void unpack(OrderedMap<Key,Value>& data, std::vector<char>& buffer, int& position,
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Dune::MPIHelper::MPICommunicator comm);
template<class T>
void unpack(DynamicState<T>& data, std::vector<char>& buffer, int& position,
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Dune::MPIHelper::MPICommunicator comm);
template<class T>
void unpack(DynamicVector<T>& data, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
void unpack(Tabulated1DFunction<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar>
void unpack(IntervalTabulated2DFunction<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
void unpack(UniformXTabulated2DFunction<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar>
void unpack(SolventPvt<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar, bool enableThermal>
void unpack(GasPvtMultiplexer<Scalar,enableThermal>& data,
const std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar>
void unpack(DryGasPvt<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar>
void unpack(GasPvtThermal<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar>
void unpack(WetGasPvt<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar, bool enableThermal>
void unpack(OilPvtMultiplexer<Scalar,enableThermal>& data,
const std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
void unpack(ConstantCompressibilityOilPvt<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar>
void unpack(DeadOilPvt<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
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template<class Scalar>
void unpack(LiveOilPvt<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
void unpack(OilPvtThermal<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar, bool enableThermal>
void unpack(WaterPvtMultiplexer<Scalar,enableThermal>& data,
const std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
void unpack(WaterPvtThermal<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
template<class Scalar>
void unpack(ConstantCompressibilityWaterPvt<Scalar>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
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template<class T>
void unpack(IOrderSet<T>& data, std::vector<char>& buffer,
int& position, Dune::MPIHelper::MPICommunicator comm);
void unpack(char* str, std::size_t length, std::vector<char>& buffer, int& position,
Dune::MPIHelper::MPICommunicator comm);
/// prototypes for complex types
#define ADD_PACK_PROTOTYPES(T) \
std::size_t packSize(const T& data, Dune::MPIHelper::MPICommunicator comm); \
void pack(const T& data, std::vector<char>& buffer, int& position, \
Dune::MPIHelper::MPICommunicator comm); \
void unpack(T& data, std::vector<char>& buffer, int& position, \
Dune::MPIHelper::MPICommunicator comm);
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ADD_PACK_PROTOTYPES(Actdims)
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ADD_PACK_PROTOTYPES(Aqudims)
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ADD_PACK_PROTOTYPES(ColumnSchema)
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ADD_PACK_PROTOTYPES(Connection)
ADD_PACK_PROTOTYPES(data::CellData)
ADD_PACK_PROTOTYPES(data::Connection)
ADD_PACK_PROTOTYPES(data::Rates)
ADD_PACK_PROTOTYPES(data::Segment)
ADD_PACK_PROTOTYPES(data::Solution)
ADD_PACK_PROTOTYPES(data::Well)
ADD_PACK_PROTOTYPES(data::WellRates)
ADD_PACK_PROTOTYPES(DENSITYRecord)
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ADD_PACK_PROTOTYPES(DensityTable)
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ADD_PACK_PROTOTYPES(Dimension)
ADD_PACK_PROTOTYPES(EclHysterConfig)
ADD_PACK_PROTOTYPES(EDITNNC)
ADD_PACK_PROTOTYPES(EndpointScaling)
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ADD_PACK_PROTOTYPES(Equil)
ADD_PACK_PROTOTYPES(Eqldims)
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ADD_PACK_PROTOTYPES(EquilRecord)
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ADD_PACK_PROTOTYPES(Events)
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ADD_PACK_PROTOTYPES(FoamConfig)
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ADD_PACK_PROTOTYPES(FoamData)
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ADD_PACK_PROTOTYPES(GConSale)
ADD_PACK_PROTOTYPES(GConSale::GCONSALEGroup)
ADD_PACK_PROTOTYPES(GuideRateConfig)
ADD_PACK_PROTOTYPES(GuideRateConfig::GroupTarget)
ADD_PACK_PROTOTYPES(GuideRateConfig::WellTarget)
ADD_PACK_PROTOTYPES(GuideRateModel)
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ADD_PACK_PROTOTYPES(Group)
ADD_PACK_PROTOTYPES(Group::GroupInjectionProperties)
ADD_PACK_PROTOTYPES(Group::GroupProductionProperties)
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ADD_PACK_PROTOTYPES(InitConfig)
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ADD_PACK_PROTOTYPES(IOConfig)
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ADD_PACK_PROTOTYPES(JFunc)
ADD_PACK_PROTOTYPES(MessageLimits)
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ADD_PACK_PROTOTYPES(MLimits)
ADD_PACK_PROTOTYPES(NNC)
ADD_PACK_PROTOTYPES(NNCdata)
ADD_PACK_PROTOTYPES(OilVaporizationProperties)
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ADD_PACK_PROTOTYPES(Phases)
ADD_PACK_PROTOTYPES(PlymwinjTable)
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ADD_PACK_PROTOTYPES(PolyInjTable)
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ADD_PACK_PROTOTYPES(PVCDORecord)
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ADD_PACK_PROTOTYPES(PvcdoTable)
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ADD_PACK_PROTOTYPES(PvtgTable)
ADD_PACK_PROTOTYPES(PvtoTable)
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ADD_PACK_PROTOTYPES(PVTWRecord)
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ADD_PACK_PROTOTYPES(PvtwTable)
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ADD_PACK_PROTOTYPES(Regdims)
ADD_PACK_PROTOTYPES(RestartConfig)
ADD_PACK_PROTOTYPES(RestartKey)
ADD_PACK_PROTOTYPES(RestartSchedule)
ADD_PACK_PROTOTYPES(RestartValue)
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ADD_PACK_PROTOTYPES(ROCKRecord)
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ADD_PACK_PROTOTYPES(RockTable)
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ADD_PACK_PROTOTYPES(Rock2dTable)
ADD_PACK_PROTOTYPES(Rock2dtrTable)
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ADD_PACK_PROTOTYPES(Runspec)
ADD_PACK_PROTOTYPES(std::string)
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ADD_PACK_PROTOTYPES(Segment)
ADD_PACK_PROTOTYPES(SimulationConfig)
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ADD_PACK_PROTOTYPES(SimpleTable)
ADD_PACK_PROTOTYPES(SkprpolyTable)
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ADD_PACK_PROTOTYPES(SkprwatTable)
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ADD_PACK_PROTOTYPES(SpiralICD)
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ADD_PACK_PROTOTYPES(Tabdims)
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ADD_PACK_PROTOTYPES(TableColumn)
ADD_PACK_PROTOTYPES(TableContainer)
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ADD_PACK_PROTOTYPES(TableManager)
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ADD_PACK_PROTOTYPES(TableSchema)
ADD_PACK_PROTOTYPES(ThresholdPressure)
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ADD_PACK_PROTOTYPES(TimeMap)
ADD_PACK_PROTOTYPES(TimeMap::StepData)
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ADD_PACK_PROTOTYPES(UDAValue)
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ADD_PACK_PROTOTYPES(UDQActive)
ADD_PACK_PROTOTYPES(UDQActive::InputRecord)
ADD_PACK_PROTOTYPES(UDQActive::Record)
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ADD_PACK_PROTOTYPES(UDQAssign)
ADD_PACK_PROTOTYPES(UDQAssign::AssignRecord)
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ADD_PACK_PROTOTYPES(UDQASTNode)
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ADD_PACK_PROTOTYPES(UDQConfig)
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ADD_PACK_PROTOTYPES(UDQDefine)
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ADD_PACK_PROTOTYPES(UDQFunction)
ADD_PACK_PROTOTYPES(UDQFunctionTable)
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ADD_PACK_PROTOTYPES(UDQIndex)
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ADD_PACK_PROTOTYPES(UDQParams)
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ADD_PACK_PROTOTYPES(UnitSystem)
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ADD_PACK_PROTOTYPES(Valve)
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ADD_PACK_PROTOTYPES(VFPInjTable)
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ADD_PACK_PROTOTYPES(VFPProdTable)
ADD_PACK_PROTOTYPES(VISCREFRecord)
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ADD_PACK_PROTOTYPES(ViscrefTable)
ADD_PACK_PROTOTYPES(WATDENTRecord)
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ADD_PACK_PROTOTYPES(WatdentTable)
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ADD_PACK_PROTOTYPES(Well)
ADD_PACK_PROTOTYPES(Well::WellGuideRate)
ADD_PACK_PROTOTYPES(Well::WellInjectionProperties)
ADD_PACK_PROTOTYPES(Well::WellProductionProperties)
ADD_PACK_PROTOTYPES(WellConnections)
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ADD_PACK_PROTOTYPES(Welldims)
ADD_PACK_PROTOTYPES(WellEconProductionLimits)
ADD_PACK_PROTOTYPES(WellFoamProperties)
ADD_PACK_PROTOTYPES(WellPolymerProperties)
ADD_PACK_PROTOTYPES(WellSegmentDims)
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ADD_PACK_PROTOTYPES(WellSegments)
ADD_PACK_PROTOTYPES(WellTestConfig)
ADD_PACK_PROTOTYPES(WellTestConfig::WTESTWell)
ADD_PACK_PROTOTYPES(WellTracerProperties)
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ADD_PACK_PROTOTYPES(WList)
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ADD_PACK_PROTOTYPES(WListManager)
} // end namespace Mpi
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RestartValue loadParallelRestart(const EclipseIO* eclIO, SummaryState& summaryState,
const std::vector<Opm::RestartKey>& solutionKeys,
const std::vector<Opm::RestartKey>& extraKeys,
Dune::CollectiveCommunication<Dune::MPIHelper::MPICommunicator> comm);
} // end namespace Opm
#endif // PARALLEL_RESTART_HPP