44#ifndef ROL_PD_BPOE_HPP
45#define ROL_PD_BPOE_HPP
82 values_ = makePtr<ScalarController<Real>>();
83 gradvecs_ = makePtr<ScalarController<Real>>();
84 gradients_ = makePtr<VectorController<Real>>();
85 hessvecs_ = makePtr<VectorController<Real>>();
127 const std::vector<Real> &xstat,
132 Real val = computeValue(obj, x, tol);
133 Real arg = xstat[0] * (val -
thresh_) + one;
135 val_ += weight_ * pf;
140 const std::vector<Real> &xstat,
143 sampler.
sumAll(&val_, &ev, 1);
149 const std::vector<Real> &xstat,
151 const Real
zero(0), one(1);
154 Real val = computeValue(obj, x, tol);
155 Real arg = xstat[0] * (val -
thresh_) + one;
158 computeGradient(*dualVector_, obj, x, tol);
159 val_ += weight_ * pf * (val -
thresh_);
160 g_->axpy(weight_ * pf * xstat[0], *dualVector_);
165 std::vector<Real> &gstat,
167 const std::vector<Real> &xstat,
170 sampler.
sumAll(&val_, &ev, 1);
177 const std::vector<Real> &vstat,
179 const std::vector<Real> &xstat,
181 const Real
zero(0), one(1);
184 Real val = computeValue(obj, x, tol);
185 Real arg = xstat[0] * (val -
thresh_) + one;
189 Real gv = computeGradVec(*dualVector_, obj, v, x, tol);
190 val_ += weight_ * pf1 * gv;
191 hv_->axpy(weight_ * pf1 * vstat[0], *dualVector_);
192 computeHessVec(*dualVector_, obj, v, x, tol);
193 hv_->axpy(weight_ * pf1 * xstat[0], *dualVector_);
196 Real gv = computeGradVec(*dualVector_, obj, v, x, tol);
197 Real c1 = pf2 * (val -
thresh_) * xstat[0];
199 Real c3 = pf2 * xstat[0] * xstat[0];
200 val_ += weight_ * (c1 * gv + c2 * vstat[0]);
201 hv_->axpy(weight_ * (c3 * gv + c1 * vstat[0]), *dualVector_);
206 std::vector<Real> &hvstat,
208 const std::vector<Real> &vstat,
210 const std::vector<Real> &xstat,
213 sampler.
sumAll(&val_, &ev, 1);
Objective_SerialSimOpt(const Ptr< Obj > &obj, const V &ui) z0 zero)()
Contains definitions of custom data types in ROL.
Provides the interface to evaluate objective functions.
Ptr< VectorController< Real > > hessvecs_
void initializeStorage(void)
Real getValue(const Vector< Real > &x, const std::vector< Real > &xstat, SampleGenerator< Real > &sampler)
void updateHessVec(Objective< Real > &obj, const Vector< Real > &v, const std::vector< Real > &vstat, const Vector< Real > &x, const std::vector< Real > &xstat, Real &tol)
Ptr< VectorController< Real > > gradients_
PD_BPOE(const Real thresh)
void updateValue(Objective< Real > &obj, const Vector< Real > &x, const std::vector< Real > &xstat, Real &tol)
void setStorage(const Ptr< ScalarController< Real > > &value_storage, const Ptr< VectorController< Real > > &gradient_storage)
void getGradient(Vector< Real > &g, std::vector< Real > &gstat, const Vector< Real > &x, const std::vector< Real > &xstat, SampleGenerator< Real > &sampler)
void setHessVecStorage(const Ptr< ScalarController< Real > > &gradvec_storage, const Ptr< VectorController< Real > > &hessvec_storage)
void updateGradient(Objective< Real > &obj, const Vector< Real > &x, const std::vector< Real > &xstat, Real &tol)
Ptr< ScalarController< Real > > gradvecs_
void getHessVec(Vector< Real > &hv, std::vector< Real > &hvstat, const Vector< Real > &v, const std::vector< Real > &vstat, const Vector< Real > &x, const std::vector< Real > &xstat, SampleGenerator< Real > &sampler)
void initialize(const Vector< Real > &x)
Ptr< ScalarController< Real > > values_
void getMultiplier(Real &lam, const std::vector< Real > &pt) const
PD_RandVarFunctional(void)
Real getPenaltyParameter(void) const
Real ppf(const Real x, const Real t, const Real r, const int deriv=0) const
virtual void setHessVecStorage(const Ptr< ScalarController< Real > > &gradvec_storage, const Ptr< VectorController< Real > > &hessvec_storage)
void setValue(const Real val, const std::vector< Real > &pt)
virtual void initialize(const Vector< Real > &x)
virtual void setStorage(const Ptr< ScalarController< Real > > &value_storage, const Ptr< VectorController< Real > > &gradient_storage)
Provides the interface to implement any functional that maps a random variable to a (extended) real n...
void sumAll(Real *input, Real *output, int dim) const
Defines the linear algebra or vector space interface.