44 #ifndef ROL_AUGMENTEDLAGRANGIAN_SIMOPT_H 45 #define ROL_AUGMENTEDLAGRANGIAN_SIMOPT_H 52 #include "Teuchos_RCP.hpp" 100 const Teuchos::RCP<Objective_SimOpt<Real> >
obj_;
101 Teuchos::RCP<QuadraticPenalty_SimOpt<Real> >
pen_;
129 const Real penaltyParameter,
133 Teuchos::ParameterList &parlist)
134 : obj_(obj), penaltyParameter_(penaltyParameter),
135 fval_(0), nfval_(0), ngval_(0), isValueComputed_(false),
136 isGradient1Computed_(false), isGradient2Computed_(false) {
138 gradient1_ = simVec.
dual().clone();
139 gradient2_ = optVec.
dual().clone();
140 dualSimVector_ = simVec.
dual().clone();
141 dualOptVector_ = optVec.
dual().clone();
143 Teuchos::ParameterList& sublist = parlist.sublist(
"Step").sublist(
"Augmented Lagrangian");
144 scaleLagrangian_ = sublist.get(
"Use Scaled Augmented Lagrangian",
false);
145 int HessianApprox = sublist.get(
"Level of Hessian Approximation", 0);
151 obj_->update(u,z,flag,iter);
152 pen_->update(u,z,flag,iter);
160 if ( !isValueComputed_ ) {
161 fval_ = obj_->value(u,z,tol); nfval_++;
162 isValueComputed_ =
true;
165 Real pval = pen_->value(u,z,tol);
168 if (scaleLagrangian_) {
176 if ( !isGradient1Computed_ ) {
177 obj_->gradient_1(*gradient1_,u,z,tol); ngval_++;
178 isGradient1Computed_ =
true;
182 pen_->gradient_1(*dualSimVector_,u,z,tol);
184 if ( scaleLagrangian_ ) {
185 g.
scale(static_cast<Real>(1)/penaltyParameter_);
187 g.
plus(*dualSimVector_);
192 if ( !isGradient2Computed_ ) {
193 obj_->gradient_2(*gradient2_,u,z,tol); ngval_++;
194 isGradient2Computed_ =
true;
198 pen_->gradient_2(*dualOptVector_,u,z,tol);
200 if ( scaleLagrangian_ ) {
201 g.
scale(static_cast<Real>(1)/penaltyParameter_);
203 g.
plus(*dualOptVector_);
209 obj_->hessVec_11(hv,v,u,z,tol);
211 pen_->hessVec_11(*dualSimVector_,v,u,z,tol);
213 if ( scaleLagrangian_ ) {
214 hv.
scale(static_cast<Real>(1)/penaltyParameter_);
216 hv.
plus(*dualSimVector_);
222 obj_->hessVec_12(hv,v,u,z,tol);
224 pen_->hessVec_12(*dualSimVector_,v,u,z,tol);
226 if ( scaleLagrangian_ ) {
227 hv.
scale(static_cast<Real>(1)/penaltyParameter_);
229 hv.
plus(*dualSimVector_);
235 obj_->hessVec_21(hv,v,u,z,tol);
237 pen_->hessVec_21(*dualOptVector_,v,u,z,tol);
239 if ( scaleLagrangian_ ) {
240 hv.
scale(static_cast<Real>(1)/penaltyParameter_);
242 hv.
plus(*dualOptVector_);
248 obj_->hessVec_22(hv,v,u,z,tol);
250 pen_->hessVec_22(*dualOptVector_,v,u,z,tol);
252 if ( scaleLagrangian_ ) {
253 hv.
scale(static_cast<Real>(1)/penaltyParameter_);
255 hv.
plus(*dualOptVector_);
260 Real tol = std::sqrt(ROL_EPSILON<Real>());
262 if ( !isValueComputed_ ) {
263 fval_ = obj_->value(u,z,tol); nfval_++;
264 isValueComputed_ =
true;
271 pen_->getConstraintVec(c,u,z);
276 return pen_->getNumberConstraintEvaluations();
291 nfval_ = 0; ngval_ = 0;
292 pen_->reset(multiplier,penaltyParameter);
Provides the interface to evaluate simulation-based objective functions.
virtual void hessVec_22(Vector< Real > &hv, const Vector< Real > &v, const Vector< Real > &u, const Vector< Real > &z, Real &tol)
virtual void scale(const Real alpha)=0
Compute where .
Teuchos::RCP< Vector< Real > > dualSimVector_
virtual void plus(const Vector &x)=0
Compute , where .
virtual int getNumberConstraintEvaluations(void) const
virtual void hessVec_12(Vector< Real > &hv, const Vector< Real > &v, const Vector< Real > &u, const Vector< Real > &z, Real &tol)
Contains definitions of custom data types in ROL.
virtual void hessVec_21(Vector< Real > &hv, const Vector< Real > &v, const Vector< Real > &u, const Vector< Real > &z, Real &tol)
Teuchos::RCP< Vector< Real > > dualOptVector_
virtual void update(const Vector< Real > &u, const Vector< Real > &z, bool flag=true, int iter=-1)
Update objective function. u is an iterate, z is an iterate, flag = true if the iterate has changed...
Provides the interface to evaluate the quadratic SimOpt constraint penalty.
virtual Real value(const Vector< Real > &u, const Vector< Real > &z, Real &tol)
Compute value.
Provides the interface to evaluate the SimOpt augmented Lagrangian.
Defines the linear algebra or vector space interface.
Teuchos::RCP< QuadraticPenalty_SimOpt< Real > > pen_
Defines the equality constraint operator interface for simulation-based optimization.
Teuchos::RCP< Vector< Real > > gradient1_
Teuchos::RCP< Vector< Real > > gradient2_
bool isGradient1Computed_
virtual void hessVec_11(Vector< Real > &hv, const Vector< Real > &v, const Vector< Real > &u, const Vector< Real > &z, Real &tol)
Apply Hessian approximation to vector.
virtual const Vector & dual() const
Return dual representation of , for example, the result of applying a Riesz map, or change of basis...
virtual void gradient_2(Vector< Real > &g, const Vector< Real > &u, const Vector< Real > &z, Real &tol)
Compute gradient with respect to second component.
virtual void gradient_1(Vector< Real > &g, const Vector< Real > &u, const Vector< Real > &z, Real &tol)
Compute gradient with respect to first component.
virtual int getNumberFunctionEvaluations(void) const
virtual void reset(const Vector< Real > &multiplier, const Real penaltyParameter)
const Teuchos::RCP< Objective_SimOpt< Real > > obj_
virtual Real getObjectiveValue(const Vector< Real > &u, const Vector< Real > &z)
virtual void set(const Vector &x)
Set where .
AugmentedLagrangian_SimOpt(const Teuchos::RCP< Objective_SimOpt< Real > > &obj, const Teuchos::RCP< EqualityConstraint_SimOpt< Real > > &con, const Vector< Real > &multiplier, const Real penaltyParameter, const Vector< Real > &simVec, const Vector< Real > &optVec, const Vector< Real > &conVec, Teuchos::ParameterList &parlist)
virtual int getNumberGradientEvaluations(void) const
bool isGradient2Computed_
virtual void getConstraintVec(Vector< Real > &c, const Vector< Real > &u, const Vector< Real > &z)