9#ifndef Tempus_StepperTrapezoidal_impl_hpp
10#define Tempus_StepperTrapezoidal_impl_hpp
13#include "Tempus_WrapperModelEvaluatorBasic.hpp"
37 const Teuchos::RCP<Thyra::NonlinearSolverBase<Scalar> >& solver,
39 std::string ICConsistency,
40 bool ICConsistencyCheck,
41 bool zeroInitialGuess,
54 if (appModel != Teuchos::null) {
65 if (appAction == Teuchos::null) {
82 RCP<SolutionState<Scalar> > initialState = solutionHistory->getCurrentState();
85 if (initialState->getXDot() == Teuchos::null)
92 TEUCHOS_TEST_FOR_EXCEPTION( !(this->
getUseFSAL()), std::logic_error,
93 "Error - The First-Same-As-Last (FSAL) principle is required\n"
94 " for the Trapezoidal Stepper (i.e., useFSAL=true)!\n");
105template<
class Scalar>
113 TEMPUS_FUNC_TIME_MONITOR(
"Tempus::StepperTrapezoidal::takeStep()");
115 TEUCHOS_TEST_FOR_EXCEPTION(solutionHistory->getNumStates() < 2,
117 "Error - StepperTrapezoidal<Scalar>::takeStep(...)\n"
118 "Need at least two SolutionStates for Trapezoidal.\n"
119 " Number of States = " << solutionHistory->getNumStates() <<
"\n"
120 "Try setting in \"Solution History\" \"Storage Type\" = \"Undo\"\n"
121 " or \"Storage Type\" = \"Static\" and \"Storage Limit\" = \"2\"\n");
122 RCP<StepperTrapezoidal<Scalar> > thisStepper = Teuchos::rcpFromRef(*
this);
126 RCP<SolutionState<Scalar> > workingState=solutionHistory->getWorkingState();
127 RCP<SolutionState<Scalar> > currentState=solutionHistory->getCurrentState();
129 RCP<const Thyra::VectorBase<Scalar> > xOld = currentState->getX();
130 RCP<const Thyra::VectorBase<Scalar> > xDotOld = currentState->getXDot();
131 RCP<Thyra::VectorBase<Scalar> > x = workingState->getX();
132 if (workingState->getXDot() != Teuchos::null)
136 const Scalar time = workingState->getTime();
137 const Scalar dt = workingState->getTimeStep();
139 const Scalar beta =
getBeta (dt);
142 Teuchos::RCP<TimeDerivative<Scalar> > timeDer =
144 alpha, xOld, xDotOld));
147 timeDer, dt, alpha, beta));
151 const Thyra::SolveStatus<Scalar> sStatus =
156 if (workingState->getXDot() != Teuchos::null)
157 timeDer->compute(x, xDot);
159 workingState->setSolutionStatus(sStatus);
160 workingState->setOrder(this->
getOrder());
161 workingState->computeNorms(currentState);
175template<
class Scalar>
176Teuchos::RCP<Tempus::StepperState<Scalar> >
180 Teuchos::RCP<Tempus::StepperState<Scalar> > stepperState =
186template<
class Scalar>
188 Teuchos::FancyOStream &out,
189 const Teuchos::EVerbosityLevel verbLevel)
const
191 out.setOutputToRootOnly(0);
196 out <<
"--- StepperTrapezoidal ---\n";
198 out <<
"--------------------------" << std::endl;
202template<
class Scalar>
205 out.setOutputToRootOnly(0);
213 out <<
"The Trapezoidal AppAction is not set!\n";
222template<
class Scalar>
223Teuchos::RCP<StepperTrapezoidal<Scalar> >
226 Teuchos::RCP<Teuchos::ParameterList> pl)
229 stepper->setStepperImplicitValues(pl);
231 if (model != Teuchos::null) {
232 stepper->setModel(model);
233 stepper->initialize();
SolutionHistory is basically a container of SolutionStates. SolutionHistory maintains a collection of...
virtual void setInitialConditions(const Teuchos::RCP< SolutionHistory< Scalar > > &solutionHistory) override
Set the initial conditions and make them consistent.
virtual void setDefaultSolver()
virtual void setSolver(Teuchos::RCP< Thyra::NonlinearSolverBase< Scalar > > solver) override
Set solver.
virtual void describe(Teuchos::FancyOStream &out, const Teuchos::EVerbosityLevel verbLevel) const override
virtual void setModel(const Teuchos::RCP< const Thyra::ModelEvaluator< Scalar > > &appModel) override
Set the model.
const Thyra::SolveStatus< Scalar > solveImplicitODE(const Teuchos::RCP< Thyra::VectorBase< Scalar > > &x, const Teuchos::RCP< Thyra::VectorBase< Scalar > > &xDot, const Scalar time, const Teuchos::RCP< ImplicitODEParameters< Scalar > > &p, const Teuchos::RCP< Thyra::VectorBase< Scalar > > &y=Teuchos::null, const int index=0)
Solve implicit ODE, f(x, xDot, t, p) = 0.
virtual bool isValidSetup(Teuchos::FancyOStream &out) const override
virtual void setZeroInitialGuess(bool zIG)
Set parameter so that the initial guess is set to zero (=True) or use last timestep (=False).
StepperState is a simple class to hold state information about the stepper.
Application Action for StepperTrapezoidal.
@ AFTER_SOLVE
After then solve.
@ BEFORE_SOLVE
Before the solve.
@ BEGIN_STEP
At the beginning of the step.
@ END_STEP
At the end of the step.
Default modifier for StepperTrapezoidal.
Time-derivative interface for Trapezoidal method.
Trapezoidal method time stepper.
virtual void takeStep(const Teuchos::RCP< SolutionHistory< Scalar > > &solutionHistory)
Take the specified timestep, dt, and return true if successful.
virtual Scalar getAlpha(const Scalar dt) const
Return alpha = d(xDot)/dx.
virtual void setInitialConditions(const Teuchos::RCP< SolutionHistory< Scalar > > &solutionHistory)
Set the initial conditions and make them consistent.
virtual bool isValidSetup(Teuchos::FancyOStream &out) const
virtual void setAppAction(Teuchos::RCP< StepperTrapezoidalAppAction< Scalar > > appAction)
virtual void setUseFSAL(bool a)
StepperTrapezoidal()
Default constructor.
virtual Scalar getOrder() const
virtual void describe(Teuchos::FancyOStream &out, const Teuchos::EVerbosityLevel verbLevel) const
virtual Teuchos::RCP< Tempus::StepperState< Scalar > > getDefaultStepperState()
Get a default (initial) StepperState.
virtual Scalar getBeta(const Scalar) const
Return beta = d(x)/dx.
Teuchos::RCP< StepperTrapezoidalAppAction< Scalar > > stepperTrapAppAction_
bool isInitialized_
True if stepper's member data is initialized.
void setICConsistencyCheck(bool c)
virtual void setStepperXDot(Teuchos::RCP< Thyra::VectorBase< Scalar > > xDot)
Set xDot for Stepper storage.
virtual Teuchos::RCP< Thyra::VectorBase< Scalar > > getStepperXDot()
Get Stepper xDot.
void setStepperName(std::string s)
Set the stepper name.
virtual void initialize()
Initialize after construction and changing input parameters.
std::string getStepperType() const
Get the stepper type. The stepper type is used as an identifier for the stepper, and can only be set ...
virtual bool isValidSetup(Teuchos::FancyOStream &out) const
virtual void checkInitialized()
Check initialization, and error out on failure.
void setStepperType(std::string s)
Set the stepper type.
void setICConsistency(std::string s)
virtual void describe(Teuchos::FancyOStream &out, const Teuchos::EVerbosityLevel verbLevel) const
Teuchos::RCP< StepperTrapezoidal< Scalar > > createStepperTrapezoidal(const Teuchos::RCP< const Thyra::ModelEvaluator< Scalar > > &model, Teuchos::RCP< Teuchos::ParameterList > pl)
Nonmember constructor - ModelEvaluator and ParameterList.