mirror of
https://github.com/OPM/opm-simulators.git
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91ac3a2a32
Adds some methods that enables Opm::Schedule to be dynamically modified from Python. A test case in test_schedule.py illustrates the use case.
195 lines
5.8 KiB
C++
195 lines
5.8 KiB
C++
/*
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Copyright 2020 Equinor ASA.
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This file is part of the Open Porous Media project (OPM).
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OPM is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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OPM is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with OPM. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "config.h"
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#include <opm/input/eclipse/Deck/Deck.hpp>
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#include <opm/input/eclipse/EclipseState/EclipseState.hpp>
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#include <opm/input/eclipse/Schedule/Schedule.hpp>
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#include <opm/input/eclipse/EclipseState/SummaryConfig/SummaryConfig.hpp>
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#include <opm/simulators/flow/Main.hpp>
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#include <opm/simulators/flow/FlowMainEbos.hpp>
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// NOTE: EXIT_SUCCESS, EXIT_FAILURE is defined in cstdlib
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#include <cstdlib>
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#include <iostream>
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#include <stdexcept>
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#include <string>
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#include <opm/simulators/flow/python/PyBlackOilSimulator.hpp>
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namespace py = pybind11;
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namespace Opm::Pybind {
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PyBlackOilSimulator::PyBlackOilSimulator( const std::string &deckFilename)
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: deckFilename_{deckFilename}
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{
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}
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PyBlackOilSimulator::PyBlackOilSimulator(
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std::shared_ptr<Opm::Deck> deck,
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std::shared_ptr<Opm::EclipseState> state,
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std::shared_ptr<Opm::Schedule> schedule,
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std::shared_ptr<Opm::SummaryConfig> summary_config
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)
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: deck_{std::move(deck)}
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, eclipse_state_{std::move(state)}
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, schedule_{std::move(schedule)}
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, summary_config_{std::move(summary_config)}
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{
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}
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bool PyBlackOilSimulator::checkSimulationFinished()
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{
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return this->mainEbos_->getSimTimer()->done();
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}
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const Opm::FlowMainEbos<typename Opm::Pybind::PyBlackOilSimulator::TypeTag>&
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PyBlackOilSimulator::getFlowMainEbos() const
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{
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if (this->mainEbos_) {
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return *this->mainEbos_;
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}
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else {
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throw std::runtime_error("BlackOilSimulator not initialized: "
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"Cannot get reference to FlowMainEbos object" );
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}
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}
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py::array_t<double> PyBlackOilSimulator::getPorosity()
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{
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std::size_t len;
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auto array = materialState_->getPorosity(&len);
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return py::array(len, array.get());
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}
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int PyBlackOilSimulator::run()
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{
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auto mainObject = Opm::Main( deckFilename_ );
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return mainObject.runStatic<Opm::Properties::TTag::EclFlowProblem>();
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}
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void PyBlackOilSimulator::setPorosity( py::array_t<double,
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py::array::c_style | py::array::forcecast> array)
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{
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std::size_t size_ = array.size();
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const double *poro = array.data();
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materialState_->setPorosity(poro, size_);
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}
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void PyBlackOilSimulator::advance(int report_step)
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{
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while (currentStep() < report_step) {
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step();
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}
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}
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int PyBlackOilSimulator::step()
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{
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if (!hasRunInit_) {
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throw std::logic_error("step() called before step_init()");
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}
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if (hasRunCleanup_) {
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throw std::logic_error("step() called after step_cleanup()");
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}
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if(checkSimulationFinished()) {
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throw std::logic_error("step() called, but simulation is done");
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}
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//if (this->debug_)
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// this->mainEbos_->getSimTimer()->report(std::cout);
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auto result = mainEbos_->executeStep();
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return result;
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}
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// This returns the report step number that will be executed next time step()
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// is called.
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int PyBlackOilSimulator::currentStep()
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{
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return this->mainEbos_->getSimTimer()->currentStepNum();
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// NOTE: this->ebosSimulator_->episodeIndex() would also return the current
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// report step number, but this number is always delayed by 1 step relative
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// to this->mainEbos_->getSimTimer()->currentStepNum()
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// See details in runStep() in file SimulatorFullyImplicitBlackoilEbos.hpp
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}
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int PyBlackOilSimulator::stepCleanup()
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{
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hasRunCleanup_ = true;
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return mainEbos_->executeStepsCleanup();
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}
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int PyBlackOilSimulator::stepInit()
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{
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if (hasRunInit_) {
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// Running step_init() multiple times is not implemented yet,
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if (hasRunCleanup_) {
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throw std::logic_error("step_init() called again");
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}
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else {
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return EXIT_SUCCESS;
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}
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}
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if (this->deck_) {
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main_ = std::make_unique<Opm::Main>(
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this->deck_,
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this->eclipse_state_,
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this->schedule_,
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this->summary_config_
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);
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}
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else {
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main_ = std::make_unique<Opm::Main>( deckFilename_ );
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}
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int exitCode = EXIT_SUCCESS;
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mainEbos_ = main_->initFlowEbosBlackoil(exitCode);
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if (mainEbos_) {
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int result = mainEbos_->executeInitStep();
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hasRunInit_ = true;
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ebosSimulator_ = mainEbos_->getSimulatorPtr();
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materialState_ = std::make_unique<PyMaterialState<TypeTag>>(
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ebosSimulator_);
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return result;
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}
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else {
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return exitCode;
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}
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}
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void export_PyBlackOilSimulator(py::module& m)
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{
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py::class_<PyBlackOilSimulator>(m, "BlackOilSimulator")
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.def(py::init< const std::string& >())
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.def(py::init<
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std::shared_ptr<Opm::Deck>,
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std::shared_ptr<Opm::EclipseState>,
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std::shared_ptr<Opm::Schedule>,
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std::shared_ptr<Opm::SummaryConfig> >())
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.def("get_porosity", &PyBlackOilSimulator::getPorosity,
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py::return_value_policy::copy)
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.def("run", &PyBlackOilSimulator::run)
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.def("set_porosity", &PyBlackOilSimulator::setPorosity)
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.def("current_step", &PyBlackOilSimulator::currentStep)
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.def("step", &PyBlackOilSimulator::step)
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.def("advance", &PyBlackOilSimulator::advance, py::arg("report_step"))
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.def("step_init", &PyBlackOilSimulator::stepInit)
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.def("step_cleanup", &PyBlackOilSimulator::stepCleanup);
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}
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} // namespace Opm::Pybind
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