ROL
ROL_HS38.hpp
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1// @HEADER
2// *****************************************************************************
3// Rapid Optimization Library (ROL) Package
4//
5// Copyright 2014 NTESS and the ROL contributors.
6// SPDX-License-Identifier: BSD-3-Clause
7// *****************************************************************************
8// @HEADER
9
14
15#ifndef USE_HESSVEC
16#define USE_HESSVEC 1
17#endif
18
19#ifndef ROL_HS38_HPP
20#define ROL_HS38_HPP
21
22#include "ROL_StdVector.hpp"
23#include "ROL_TestProblem.hpp"
24#include "ROL_Bounds.hpp"
25#include "ROL_Types.hpp"
26
27namespace ROL {
28namespace ZOO {
29
32 template<class Real>
33 class Objective_HS38 : public Objective<Real> {
34
35 typedef std::vector<Real> vector;
36 typedef Vector<Real> V;
38
39 private:
40
41 ROL::Ptr<const vector> getVector( const V& x ) {
42
43 return dynamic_cast<const SV&>(x).getVector();
44 }
45
46 ROL::Ptr<vector> getVector( V& x ) {
47
48 return dynamic_cast<SV&>(x).getVector();
49 }
50
51 public:
53
54 Real value( const Vector<Real> &x, Real &tol ) {
55
56
57 ROL::Ptr<const vector> ex = getVector(x);
58 return 100.0 * std::pow((*ex)[1] - std::pow((*ex)[0],2.0),2.0) + std::pow(1.0-(*ex)[0],2.0) +
59 90.0 * std::pow((*ex)[3] - std::pow((*ex)[2],2.0),2.0) + std::pow(1.0-(*ex)[2],2.0) +
60 10.1 * (std::pow((*ex)[1] - 1.0,2.0) + std::pow((*ex)[3]-1.0,2.0)) +
61 19.8 * ((*ex)[1] - 1.0) * ((*ex)[3] - 1.0);
62 }
63
64 void gradient( Vector<Real> &g, const Vector<Real> &x, Real &tol ) {
65
66
67 ROL::Ptr<const vector> ex = getVector(x);
68 ROL::Ptr<vector> eg = getVector(g);
69
70 (*eg)[0] = -4.0 * 100.0 * ((*ex)[1] - std::pow((*ex)[0],2.0)) * (*ex)[0] - 2.0 * (1.0-(*ex)[0]);
71 (*eg)[1] = 2.0 * 100.0 * ((*ex)[1] - std::pow((*ex)[0],2.0)) +
72 2.0 * 10.1 * ((*ex)[1] - 1.0) + 19.8*((*ex)[3] - 1.0);
73 (*eg)[2] = -4.0 * 90.0 * ((*ex)[3] - std::pow((*ex)[2],2.0)) * (*ex)[2] - 2.0 * (1.0-(*ex)[2]);
74 (*eg)[3] = 2.0 * 90.0 * ((*ex)[3] - std::pow((*ex)[2],2.0)) +
75 2.0 * 10.1 * ((*ex)[3] - 1.0) + 19.8*((*ex)[1] - 1.0);
76 }
77#if USE_HESSVEC
78 void hessVec( Vector<Real> &hv, const Vector<Real> &v, const Vector<Real> &x, Real &tol ) {
79
80
81 ROL::Ptr<const vector> ex = getVector(x);
82 ROL::Ptr<const vector> ev = getVector(v);
83 ROL::Ptr<vector> ehv = getVector(hv);
84
85 Real h11 = -4.0 * 100.0 * (*ex)[1] + 12.0 * 100.0 * std::pow((*ex)[0],2.0) + 2.0;
86 Real h12 = -4.0 * 100.0 * (*ex)[0];
87 Real h13 = 0.0;
88 Real h14 = 0.0;
89 Real h21 = -4.0 * 100.0 * (*ex)[0];
90 Real h22 = 2.0 * 100.0 + 2.0 * 10.1;
91 Real h23 = 0.0;
92 Real h24 = 19.8;
93 Real h31 = 0.0;
94 Real h32 = 0.0;
95 Real h33 = -4.0 * 90.0 * (*ex)[3] + 12.0 * 90.0 * std::pow((*ex)[2],2.0) + 2.0;
96 Real h34 = -4.0 * 90.0 * (*ex)[2];
97 Real h41 = 0.0;
98 Real h42 = 19.8;
99 Real h43 = -4.0 * 90.0 * (*ex)[2];
100 Real h44 = 2.0 * 90.0 + 2.0 * 10.1;
101
102 (*ehv)[0] = h11 * (*ev)[0] + h12 * (*ev)[1] + h13 * (*ev)[2] + h14 * (*ev)[3];
103 (*ehv)[1] = h21 * (*ev)[0] + h22 * (*ev)[1] + h23 * (*ev)[2] + h24 * (*ev)[3];
104 (*ehv)[2] = h31 * (*ev)[0] + h32 * (*ev)[1] + h33 * (*ev)[2] + h34 * (*ev)[3];
105 (*ehv)[3] = h41 * (*ev)[0] + h42 * (*ev)[1] + h43 * (*ev)[2] + h44 * (*ev)[3];
106 }
107#endif
108 };
109
110template<class Real>
111class getHS38 : public TestProblem<Real> {
112public:
113 getHS38(void) {}
114
115 Ptr<Objective<Real>> getObjective(void) const {
116 // Instantiate Objective Function
117 return ROL::makePtr<Objective_HS38<Real>>();
118 }
119
120 Ptr<Vector<Real>> getInitialGuess(void) const {
121 // Problem dimension
122 int n = 4;
123 // Get Initial Guess
124 ROL::Ptr<std::vector<Real> > x0p = ROL::makePtr<std::vector<Real>>(n,0.0);
125 (*x0p)[0] = -3.0; (*x0p)[1] = -1.0;
126 (*x0p)[2] = -3.0; (*x0p)[3] = -1.0;
127 return ROL::makePtr<StdVector<Real>>(x0p);
128 }
129
130 Ptr<Vector<Real>> getSolution(const int i = 0) const {
131 // Problem dimension
132 int n = 4;
133 // Get Solution
134 ROL::Ptr<std::vector<Real> > xp = ROL::makePtr<std::vector<Real>>(n,0.0);
135 (*xp)[0] = 1.0; (*xp)[1] = 1.0;
136 (*xp)[2] = 1.0; (*xp)[3] = 1.0;
137 return ROL::makePtr<StdVector<Real>>(xp);
138 }
139
140 Ptr<BoundConstraint<Real>> getBoundConstraint(void) const {
141 // Problem dimension
142 int n = 4;
143 // Instantiate BoundConstraint
144 ROL::Ptr<std::vector<Real> > lp = ROL::makePtr<std::vector<Real>>(n,-10.0);
145 ROL::Ptr<Vector<Real> > l = ROL::makePtr<StdVector<Real>>(lp);
146 ROL::Ptr<std::vector<Real> > up = ROL::makePtr<std::vector<Real>>(n, 10.0);
147 ROL::Ptr<Vector<Real> > u = ROL::makePtr<StdVector<Real>>(up);
148 return ROL::makePtr<Bounds<Real>>(l,u);
149 }
150};
151
152
153} // End ZOO Namespace
154} // End ROL Namespace
155
156#endif
Contains definitions of test objective functions.
Contains definitions of custom data types in ROL.
virtual void hessVec(Vector< Real > &hv, const Vector< Real > &v, const Vector< Real > &x, Real &tol)
Apply Hessian approximation to vector.
Provides the ROL::Vector interface for scalar values, to be used, for example, with scalar constraint...
Defines the linear algebra or vector space interface.
Real value(const Vector< Real > &x, Real &tol)
Definition ROL_HS38.hpp:54
ROL::Ptr< const vector > getVector(const V &x)
Definition ROL_HS38.hpp:41
StdVector< Real > SV
Definition ROL_HS38.hpp:37
std::vector< Real > vector
Definition ROL_HS38.hpp:35
void gradient(Vector< Real > &g, const Vector< Real > &x, Real &tol)
Definition ROL_HS38.hpp:64
ROL::Ptr< vector > getVector(V &x)
Definition ROL_HS38.hpp:46
Ptr< Vector< Real > > getInitialGuess(void) const
Definition ROL_HS38.hpp:120
Ptr< Vector< Real > > getSolution(const int i=0) const
Definition ROL_HS38.hpp:130
Ptr< Objective< Real > > getObjective(void) const
Definition ROL_HS38.hpp:115
Ptr< BoundConstraint< Real > > getBoundConstraint(void) const
Definition ROL_HS38.hpp:140