| 1 | //
 | 
|---|
| 2 | // newton.cc
 | 
|---|
| 3 | //
 | 
|---|
| 4 | // Copyright (C) 1996 Limit Point Systems, Inc.
 | 
|---|
| 5 | //
 | 
|---|
| 6 | // Author: Curtis Janssen <cljanss@limitpt.com>
 | 
|---|
| 7 | // Maintainer: LPS
 | 
|---|
| 8 | //
 | 
|---|
| 9 | // This file is part of the SC Toolkit.
 | 
|---|
| 10 | //
 | 
|---|
| 11 | // The SC Toolkit is free software; you can redistribute it and/or modify
 | 
|---|
| 12 | // it under the terms of the GNU Library General Public License as published by
 | 
|---|
| 13 | // the Free Software Foundation; either version 2, or (at your option)
 | 
|---|
| 14 | // any later version.
 | 
|---|
| 15 | //
 | 
|---|
| 16 | // The SC Toolkit is distributed in the hope that it will be useful,
 | 
|---|
| 17 | // but WITHOUT ANY WARRANTY; without even the implied warranty of
 | 
|---|
| 18 | // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 | 
|---|
| 19 | // GNU Library General Public License for more details.
 | 
|---|
| 20 | //
 | 
|---|
| 21 | // You should have received a copy of the GNU Library General Public License
 | 
|---|
| 22 | // along with the SC Toolkit; see the file COPYING.LIB.  If not, write to
 | 
|---|
| 23 | // the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
 | 
|---|
| 24 | //
 | 
|---|
| 25 | // The U.S. Government is granted a limited license as per AL 91-7.
 | 
|---|
| 26 | //
 | 
|---|
| 27 | 
 | 
|---|
| 28 | #ifdef __GNUC__
 | 
|---|
| 29 | #pragma implementation
 | 
|---|
| 30 | #endif
 | 
|---|
| 31 | 
 | 
|---|
| 32 | #include <math.h>
 | 
|---|
| 33 | #include <float.h>
 | 
|---|
| 34 | 
 | 
|---|
| 35 | #include <math/optimize/newton.h>
 | 
|---|
| 36 | #include <util/keyval/keyval.h>
 | 
|---|
| 37 | #include <util/misc/formio.h>
 | 
|---|
| 38 | #include <util/state/stateio.h>
 | 
|---|
| 39 | 
 | 
|---|
| 40 | using namespace std;
 | 
|---|
| 41 | using namespace sc;
 | 
|---|
| 42 | 
 | 
|---|
| 43 | /////////////////////////////////////////////////////////////////////////
 | 
|---|
| 44 | // NewtonOpt
 | 
|---|
| 45 | 
 | 
|---|
| 46 | static ClassDesc NewtonOpt_cd(
 | 
|---|
| 47 |   typeid(NewtonOpt),"NewtonOpt",1,"public Optimize",
 | 
|---|
| 48 |   0, create<NewtonOpt>, create<NewtonOpt>);
 | 
|---|
| 49 | 
 | 
|---|
| 50 | NewtonOpt::NewtonOpt(const Ref<KeyVal>&keyval):
 | 
|---|
| 51 |   Optimize(keyval)
 | 
|---|
| 52 | {
 | 
|---|
| 53 |   init();
 | 
|---|
| 54 | 
 | 
|---|
| 55 |   accuracy_ = keyval->doublevalue("accuracy",KeyValValuedouble(0.0001));
 | 
|---|
| 56 |   print_x_ = keyval->booleanvalue("print_x");
 | 
|---|
| 57 |   print_hessian_ = keyval->booleanvalue("print_hessian");
 | 
|---|
| 58 |   print_gradient_ = keyval->booleanvalue("print_gradient");
 | 
|---|
| 59 | }
 | 
|---|
| 60 | 
 | 
|---|
| 61 | NewtonOpt::NewtonOpt(StateIn&s):
 | 
|---|
| 62 |   SavableState(s),
 | 
|---|
| 63 |   Optimize(s)
 | 
|---|
| 64 | {
 | 
|---|
| 65 |   s.get(accuracy_);
 | 
|---|
| 66 |   s.get(maxabs_gradient);
 | 
|---|
| 67 |   s.get(print_hessian_);
 | 
|---|
| 68 |   s.get(print_x_);
 | 
|---|
| 69 |   s.get(print_gradient_);
 | 
|---|
| 70 | }
 | 
|---|
| 71 | 
 | 
|---|
| 72 | NewtonOpt::~NewtonOpt()
 | 
|---|
| 73 | {
 | 
|---|
| 74 | }
 | 
|---|
| 75 | 
 | 
|---|
| 76 | void
 | 
|---|
| 77 | NewtonOpt::save_data_state(StateOut&s)
 | 
|---|
| 78 | {
 | 
|---|
| 79 |   Optimize::save_data_state(s);
 | 
|---|
| 80 |   s.put(accuracy_);
 | 
|---|
| 81 |   s.put(maxabs_gradient);
 | 
|---|
| 82 |   s.put(print_hessian_);
 | 
|---|
| 83 |   s.put(print_x_);
 | 
|---|
| 84 |   s.put(print_gradient_);
 | 
|---|
| 85 | }
 | 
|---|
| 86 | 
 | 
|---|
| 87 | void
 | 
|---|
| 88 | NewtonOpt::init()
 | 
|---|
| 89 | {
 | 
|---|
| 90 |   Optimize::init();
 | 
|---|
| 91 |   maxabs_gradient = -1.0;
 | 
|---|
| 92 | }
 | 
|---|
| 93 | 
 | 
|---|
| 94 | int
 | 
|---|
| 95 | NewtonOpt::update()
 | 
|---|
| 96 | {
 | 
|---|
| 97 |   // these are good candidates to be input options
 | 
|---|
| 98 |   const double maxabs_gradient_to_desired_accuracy = 0.05;
 | 
|---|
| 99 |   const double maxabs_gradient_to_next_desired_accuracy = 0.005;
 | 
|---|
| 100 |   const double roundoff_error_factor = 1.1;
 | 
|---|
| 101 | 
 | 
|---|
| 102 |   // the gradient convergence criterion.
 | 
|---|
| 103 |   double old_maxabs_gradient = maxabs_gradient;
 | 
|---|
| 104 |   RefSCVector xcurrent;
 | 
|---|
| 105 |   RefSCVector gcurrent;
 | 
|---|
| 106 |     
 | 
|---|
| 107 |   // get the next gradient at the required level of accuracy.
 | 
|---|
| 108 |   // usually only one pass is needed, unless we happen to find
 | 
|---|
| 109 |   // that the accuracy was set too low.
 | 
|---|
| 110 |   int accurate_enough;
 | 
|---|
| 111 |   do {
 | 
|---|
| 112 |       // compute the current point
 | 
|---|
| 113 |       function()->set_desired_gradient_accuracy(accuracy_);
 | 
|---|
| 114 | 
 | 
|---|
| 115 |       xcurrent = function()->get_x();
 | 
|---|
| 116 |       gcurrent = function()->gradient().copy();
 | 
|---|
| 117 | 
 | 
|---|
| 118 |       // compute the gradient convergence criterion now so i can see if
 | 
|---|
| 119 |       // the accuracy needs to be tighter
 | 
|---|
| 120 |       maxabs_gradient = gcurrent.maxabs();
 | 
|---|
| 121 |       // compute the required accuracy
 | 
|---|
| 122 |       accuracy_ = maxabs_gradient * maxabs_gradient_to_desired_accuracy;
 | 
|---|
| 123 | 
 | 
|---|
| 124 |       if (accuracy_ < DBL_EPSILON) accuracy_ = DBL_EPSILON;
 | 
|---|
| 125 | 
 | 
|---|
| 126 |       // The roundoff_error_factor is thrown in to allow for round off making
 | 
|---|
| 127 |       // the current gcurrent.maxabs() a bit smaller than the previous,
 | 
|---|
| 128 |       // which would make the current required accuracy less than the
 | 
|---|
| 129 |       // gradient's actual accuracy and cause everything to be recomputed.
 | 
|---|
| 130 |       accurate_enough = (
 | 
|---|
| 131 |           function()->actual_gradient_accuracy()
 | 
|---|
| 132 |           <= accuracy_*roundoff_error_factor);
 | 
|---|
| 133 | 
 | 
|---|
| 134 |       if (!accurate_enough) {
 | 
|---|
| 135 |         ExEnv::out0().unsetf(ios::fixed);
 | 
|---|
| 136 |         ExEnv::out0() << indent
 | 
|---|
| 137 |              << "NOTICE: function()->actual_gradient_accuracy() > accuracy_:\n"
 | 
|---|
| 138 |              << indent
 | 
|---|
| 139 |              << scprintf(
 | 
|---|
| 140 |                "        function()->actual_gradient_accuracy() = %15.8e",
 | 
|---|
| 141 |                function()->actual_gradient_accuracy()) << endl << indent
 | 
|---|
| 142 |              << scprintf(
 | 
|---|
| 143 |                "                                     accuracy_ = %15.8e",
 | 
|---|
| 144 |                accuracy_) << endl;
 | 
|---|
| 145 |       }
 | 
|---|
| 146 |     } while(!accurate_enough);
 | 
|---|
| 147 | 
 | 
|---|
| 148 |   if (old_maxabs_gradient >= 0.0 && old_maxabs_gradient < maxabs_gradient) {
 | 
|---|
| 149 |     ExEnv::out0() << indent
 | 
|---|
| 150 |          << scprintf("NOTICE: maxabs_gradient increased from %8.4e to %8.4e",
 | 
|---|
| 151 |                      old_maxabs_gradient, maxabs_gradient) << endl;
 | 
|---|
| 152 |   }
 | 
|---|
| 153 | 
 | 
|---|
| 154 |   RefSymmSCMatrix hessian = function()->hessian();
 | 
|---|
| 155 |   RefSymmSCMatrix ihessian = function()->inverse_hessian(hessian);
 | 
|---|
| 156 | 
 | 
|---|
| 157 |   if (print_hessian_) {
 | 
|---|
| 158 |     hessian.print("hessian");
 | 
|---|
| 159 |   }
 | 
|---|
| 160 |   if (print_x_) {
 | 
|---|
| 161 |     int n = xcurrent.n();
 | 
|---|
| 162 |     ExEnv::out0() << indent << "x = [";
 | 
|---|
| 163 |     for (int i=0; i<n; i++) {
 | 
|---|
| 164 |       ExEnv::out0() << scprintf(" % 16.12f",double(xcurrent(i)));
 | 
|---|
| 165 |     }
 | 
|---|
| 166 |     ExEnv::out0() << " ]" << endl;
 | 
|---|
| 167 |   }
 | 
|---|
| 168 |   if (print_gradient_) {
 | 
|---|
| 169 |     int n = gcurrent.n();
 | 
|---|
| 170 |     ExEnv::out0() << indent << "gradient = [";
 | 
|---|
| 171 |     for (int i=0; i<n; i++) {
 | 
|---|
| 172 |       ExEnv::out0() << scprintf(" % 16.12f",double(gcurrent(i)));
 | 
|---|
| 173 |     }
 | 
|---|
| 174 |     ExEnv::out0() << " ]" << endl;
 | 
|---|
| 175 |   }
 | 
|---|
| 176 | 
 | 
|---|
| 177 |   // take the step
 | 
|---|
| 178 |   RefSCVector xdisp = -1.0*(ihessian * gcurrent);
 | 
|---|
| 179 |   // scale the displacement vector if it's too large
 | 
|---|
| 180 |   double tot = sqrt(xdisp.scalar_product(xdisp));
 | 
|---|
| 181 |   if (tot > max_stepsize_) {
 | 
|---|
| 182 |     double scal = max_stepsize_/tot;
 | 
|---|
| 183 |     ExEnv::out0() << endl << indent
 | 
|---|
| 184 |          << scprintf("stepsize of %f is too big, scaling by %f",tot,scal)
 | 
|---|
| 185 |          << endl;
 | 
|---|
| 186 |     xdisp.scale(scal);
 | 
|---|
| 187 |     tot *= scal;
 | 
|---|
| 188 |   }
 | 
|---|
| 189 | 
 | 
|---|
| 190 |   RefSCVector xnext = xcurrent + xdisp;
 | 
|---|
| 191 | 
 | 
|---|
| 192 |   conv_->reset();
 | 
|---|
| 193 |   conv_->get_grad(function());
 | 
|---|
| 194 |   conv_->get_x(function());
 | 
|---|
| 195 |   conv_->set_nextx(xnext);
 | 
|---|
| 196 | 
 | 
|---|
| 197 |   // check for convergence before resetting the geometry
 | 
|---|
| 198 |   int converged = conv_->converged();
 | 
|---|
| 199 |   if (converged)
 | 
|---|
| 200 |     return converged;
 | 
|---|
| 201 | 
 | 
|---|
| 202 |   ExEnv::out0() << endl << indent
 | 
|---|
| 203 |        << scprintf("taking step of size %f", tot) << endl;
 | 
|---|
| 204 |   
 | 
|---|
| 205 |   function()->set_x(xnext);
 | 
|---|
| 206 | 
 | 
|---|
| 207 |   // make the next gradient computed more accurate, since it will
 | 
|---|
| 208 |   // be smaller
 | 
|---|
| 209 |   accuracy_ = maxabs_gradient * maxabs_gradient_to_next_desired_accuracy;
 | 
|---|
| 210 |   
 | 
|---|
| 211 |   return converged;
 | 
|---|
| 212 | }
 | 
|---|
| 213 | 
 | 
|---|
| 214 | /////////////////////////////////////////////////////////////////////////////
 | 
|---|
| 215 | 
 | 
|---|
| 216 | // Local Variables:
 | 
|---|
| 217 | // mode: c++
 | 
|---|
| 218 | // c-file-style: "ETS"
 | 
|---|
| 219 | // End:
 | 
|---|