13 #include "Tempus_config.hpp"
14 #include "Tempus_IntegratorPseudoTransientForwardSensitivity.hpp"
15 #include "Tempus_IntegratorPseudoTransientAdjointSensitivity.hpp"
17 #include "Thyra_VectorStdOps.hpp"
18 #include "Thyra_MultiVectorStdOps.hpp"
20 #include "../TestModels/SteadyQuadraticModel.hpp"
22 #include "Thyra_DefaultMultiVectorProductVector.hpp"
23 #include "Thyra_DefaultProductVector.hpp"
28 namespace Tempus_Test {
32 using Teuchos::sublist;
33 using Teuchos::getParametersFromXmlFile;
41 RCP<ParameterList> pList =
42 getParametersFromXmlFile(
"Tempus_ExplicitRK_SteadyQuadratic.xml");
45 RCP<ParameterList> scm_pl = sublist(pList,
"SteadyQuadraticModel",
true);
46 scm_pl->set(
"Use DfDp as Tangent", use_dfdp_as_tangent);
47 RCP<SteadyQuadraticModel<double> > model =
51 RCP<ParameterList> pl = sublist(pList,
"Tempus",
true);
52 ParameterList& sens_pl = pl->sublist(
"Sensitivities");
53 sens_pl.set(
"Use DfDp as Tangent", use_dfdp_as_tangent);
56 RCP<Tempus::IntegratorPseudoTransientForwardSensitivity<double> > integrator =
57 Tempus::integratorPseudoTransientForwardSensitivity<double>(pl, model);
60 bool integratorStatus = integrator->advanceTime();
64 double time = integrator->getTime();
65 double timeFinal = pl->sublist(
"Demo Integrator")
66 .sublist(
"Time Step Control").get<
double>(
"Final Time");
70 RCP<const Thyra::VectorBase<double> > x_vec = integrator->getX();
71 RCP<const Thyra::MultiVectorBase<double> > DxDp_vec = integrator->getDxDp();
72 const double x = Thyra::get_ele(*x_vec, 0);
73 const double dxdb = Thyra::get_ele(*(DxDp_vec->col(0)), 0);
74 const double x_exact = model->getSteadyStateSolution();
75 const double dxdb_exact = model->getSteadyStateSolutionSensitivity();
98 getParametersFromXmlFile(
"Tempus_ExplicitRK_SteadyQuadratic.xml");
111 Tempus::integratorPseudoTransientAdjointSensitivity<double>(pl, model);
114 bool integratorStatus = integrator->advanceTime();
118 double time = integrator->getTime();
119 double timeFinal =pl->sublist(
"Demo Integrator")
120 .sublist(
"Time Step Control").
get<
double>(
"Final Time");
126 const double x = Thyra::get_ele(*x_vec, 0);
127 const double dxdb = Thyra::get_ele(*(DxDp_vec->col(0)), 0);
128 const double x_exact = model->getSteadyStateSolution();
129 const double dxdb_exact = model->getSteadyStateSolutionSensitivity();
131 TEST_FLOATING_EQUALITY( x, x_exact, 1.0e-6 );
132 TEST_FLOATING_EQUALITY( dxdb, dxdb_exact, 1.0e-6 );
void test_pseudotransient_fsa(const bool use_dfdp_as_tangent, Teuchos::FancyOStream &out, bool &success)
#define TEST_FLOATING_EQUALITY(v1, v2, tol)
TEUCHOS_UNIT_TEST(BackwardEuler, SinCos_ASA)
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