2019-09-02 18:27:22 +02:00
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/*
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Copyright 2019 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 <stdexcept>
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#include <iostream>
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#include <memory>
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#define BOOST_TEST_MODULE EMBEDDED_PYTHON
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#include <boost/test/unit_test.hpp>
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2021-12-14 08:06:42 +01:00
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#include <opm/input/eclipse/Python/Python.hpp>
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#include <opm/input/eclipse/Parser/Parser.hpp>
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#include <opm/input/eclipse/Deck/Deck.hpp>
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#include <opm/input/eclipse/Parser/ParserKeywords/P.hpp>
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2021-12-14 08:13:41 +01:00
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#include <opm/input/eclipse/Schedule/SummaryState.hpp>
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#include <opm/input/eclipse/Schedule/Schedule.hpp>
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2021-02-28 17:04:35 +01:00
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#include <opm/common/utility/TimeService.hpp>
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2022-01-28 09:28:07 +01:00
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#include <opm/input/eclipse/Schedule/Action/State.hpp>
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2019-09-02 18:27:22 +02:00
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2019-11-07 14:48:49 +01:00
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using namespace Opm;
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2019-09-02 18:27:22 +02:00
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#ifndef EMBEDDED_PYTHON
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BOOST_AUTO_TEST_CASE(INSTANTIATE) {
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2020-03-31 16:56:44 +02:00
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Python python;
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2020-03-26 16:58:00 +01:00
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BOOST_CHECK(!python.enabled());
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BOOST_CHECK_THROW(python.exec("print('Hello world')"), std::logic_error);
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BOOST_CHECK(! Python::supported() );
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2020-03-26 12:00:59 +01:00
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2020-03-27 10:08:36 +01:00
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BOOST_CHECK_THROW( Python{Python::Enable::ON}, std::logic_error );
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2020-03-26 16:58:00 +01:00
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Python python_cond(Python::Enable::TRY);
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BOOST_CHECK(!python_cond.enabled());
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2020-03-26 12:00:59 +01:00
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Python python_off(Python::Enable::OFF);
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2020-03-26 16:58:00 +01:00
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BOOST_CHECK(!python_off.enabled());
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2019-09-02 18:27:22 +02:00
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}
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#else
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BOOST_AUTO_TEST_CASE(INSTANTIATE) {
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2020-03-31 10:26:55 +02:00
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auto python = std::make_shared<Python>();
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BOOST_CHECK(Python::supported());
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BOOST_CHECK(python->enabled());
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2020-03-22 21:02:32 +01:00
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BOOST_CHECK_NO_THROW(python->exec("import sys"));
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2019-09-12 16:34:37 +02:00
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2019-11-07 14:48:49 +01:00
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Parser parser;
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Deck deck;
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2019-09-12 16:34:37 +02:00
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std::string python_code = R"(
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print('Parser: {}'.format(context.parser))
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print('Deck: {}'.format(context.deck))
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2019-10-25 17:15:56 +02:00
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kw = context.DeckKeyword( context.parser['FIELD'] )
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context.deck.add(kw)
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)";
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BOOST_CHECK_NO_THROW( python->exec(python_code, parser, deck));
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BOOST_CHECK( deck.hasKeyword("FIELD") );
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}
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2020-03-22 21:02:32 +01:00
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2019-11-07 14:48:49 +01:00
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BOOST_AUTO_TEST_CASE(PYINPUT_BASIC) {
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Parser parser;
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std::string input = R"(
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START -- 0
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31 AUG 1993 /
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RUNSPEC
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PYINPUT
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kw = context.DeckKeyword( context.parser['FIELD'] )
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context.deck.add(kw)
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PYEND
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DIMENS
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2 2 1 /
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PYINPUT
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import numpy as np
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dx = np.array([0.25, 0.25, 0.25, 0.25])
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active_unit_system = context.deck.active_unit_system()
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default_unit_system = context.deck.default_unit_system()
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kw = context.DeckKeyword( context.parser['DX'], dx, active_unit_system, default_unit_system )
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context.deck.add(kw)
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PYEND
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2019-11-07 14:48:49 +01:00
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DY
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4*0.25 /
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)";
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Deck deck = parser.parseString(input);
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BOOST_CHECK( deck.hasKeyword("START") );
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BOOST_CHECK( deck.hasKeyword("FIELD") );
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BOOST_CHECK( deck.hasKeyword("DIMENS") );
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BOOST_CHECK( deck.hasKeyword("DX") );
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auto DX = deck["DX"].back();
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std::vector<double> dx_data = DX.getSIDoubleData();
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BOOST_CHECK_EQUAL( dx_data.size(), 4 );
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BOOST_CHECK_EQUAL( dx_data[2], 0.25 * 0.3048 );
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BOOST_CHECK( deck.hasKeyword("DY") );
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}
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2020-03-22 21:02:32 +01:00
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2020-01-08 10:35:39 +01:00
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BOOST_AUTO_TEST_CASE(PYACTION) {
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Parser parser;
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2020-03-22 21:02:32 +01:00
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auto python = std::make_shared<Python>(Python::Enable::ON);
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2020-03-16 11:34:12 +01:00
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auto deck = parser.parseFile("EMBEDDED_PYTHON.DATA");
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auto ecl_state = EclipseState(deck);
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auto schedule = Schedule(deck, ecl_state, python);
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2021-02-28 17:04:35 +01:00
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SummaryState st(TimeService::now());
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const auto& pyaction_kw = deck.get<ParserKeywords::PYACTION>().front();
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const std::string& fname = pyaction_kw.getRecord(1).getItem(0).get<std::string>(0);
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2020-03-22 21:02:32 +01:00
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Action::PyAction py_action(python, "WCLOSE", Action::PyAction::RunCount::unlimited, deck.makeDeckPath(fname));
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auto actionx_callback = [] (const std::string&, const std::vector<std::string>&) { ;};
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Action::State action_state;
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2020-01-08 10:35:39 +01:00
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st.update_well_var("PROD1", "WWCT", 0);
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py_action.run(ecl_state, schedule, 10, st, actionx_callback);
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st.update("FOPR", 0);
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py_action.run(ecl_state, schedule, 10, st, actionx_callback);
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st.update("FOPR", 100);
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st.update_well_var("PROD1", "WWCT", 0.90);
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2022-01-24 13:47:05 +01:00
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py_action.run(ecl_state, schedule, 10, st, actionx_callback);
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2020-01-08 10:35:39 +01:00
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const auto& well1 = schedule.getWell("PROD1", 10);
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const auto& well2 = schedule.getWell("PROD2", 10);
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BOOST_CHECK( well1.getStatus() == Well::Status::SHUT );
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BOOST_CHECK( well2.getStatus() == Well::Status::OPEN );
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BOOST_CHECK( st.has("RUN_COUNT") );
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2022-01-28 09:28:07 +01:00
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std::map<std::string, Action::PyAction> action_map;
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for (const auto * p : schedule[0].actions().pending_python(action_state))
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action_map.emplace( p->name(), *p );
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const auto& pyaction_unlimited = action_map.at("UNLIMITED");
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const auto& pyaction_single = action_map.at("SINGLE");
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const auto& pyaction_first_true = action_map.at("FIRST_TRUE");
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auto actions = schedule[0].actions();
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BOOST_CHECK( actions.pending_python(action_state).size() == 4);
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action_state.add_run( py_action, true);
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BOOST_CHECK( actions.pending_python(action_state).size() == 4);
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action_state.add_run( pyaction_unlimited, true);
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BOOST_CHECK( actions.pending_python(action_state).size() == 4);
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action_state.add_run( pyaction_single, false);
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BOOST_CHECK( actions.pending_python(action_state).size() == 3);
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action_state.add_run( pyaction_first_true, false);
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BOOST_CHECK( actions.pending_python(action_state).size() == 3);
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action_state.add_run( pyaction_first_true, true);
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BOOST_CHECK( actions.pending_python(action_state).size() == 2);
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2020-01-08 10:35:39 +01:00
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}
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2020-03-26 12:00:59 +01:00
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BOOST_AUTO_TEST_CASE(Python_Constructor) {
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Python python_off(Python::Enable::OFF);
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2020-03-26 16:58:00 +01:00
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BOOST_CHECK(!python_off.enabled());
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2020-03-26 12:00:59 +01:00
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Python python_on(Python::Enable::ON);
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2020-03-26 16:58:00 +01:00
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BOOST_CHECK(python_on.enabled());
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2020-03-26 12:00:59 +01:00
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2020-03-26 16:58:00 +01:00
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//.enabled() Can only have one Python interpreter active at any time
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2020-03-26 12:00:59 +01:00
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BOOST_CHECK_THROW(Python(Python::Enable::ON), std::logic_error);
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}
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BOOST_AUTO_TEST_CASE(Python_Constructor2) {
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2020-03-26 16:58:00 +01:00
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Python python_cond1(Python::Enable::TRY);
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BOOST_CHECK(python_cond1.enabled());
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2020-03-26 12:00:59 +01:00
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2020-03-26 16:58:00 +01:00
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Python python_cond2(Python::Enable::TRY);
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BOOST_CHECK(!python_cond2.enabled());
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2020-03-26 12:00:59 +01:00
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}
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2019-09-02 18:27:22 +02:00
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#endif
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2020-03-26 12:00:59 +01:00
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