00001 /* 00002 * This file is part of ACADO Toolkit. 00003 * 00004 * ACADO Toolkit -- A Toolkit for Automatic Control and Dynamic Optimization. 00005 * Copyright (C) 2008-2014 by Boris Houska, Hans Joachim Ferreau, 00006 * Milan Vukov, Rien Quirynen, KU Leuven. 00007 * Developed within the Optimization in Engineering Center (OPTEC) 00008 * under supervision of Moritz Diehl. All rights reserved. 00009 * 00010 * ACADO Toolkit is free software; you can redistribute it and/or 00011 * modify it under the terms of the GNU Lesser General Public 00012 * License as published by the Free Software Foundation; either 00013 * version 3 of the License, or (at your option) any later version. 00014 * 00015 * ACADO Toolkit is distributed in the hope that it will be useful, 00016 * but WITHOUT ANY WARRANTY; without even the implied warranty of 00017 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 00018 * Lesser General Public License for more details. 00019 * 00020 * You should have received a copy of the GNU Lesser General Public 00021 * License along with ACADO Toolkit; if not, write to the Free Software 00022 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA 00023 * 00024 */ 00025 00026 00027 00035 #include <acado/utils/acado_utils.hpp> 00036 #include <acado/symbolic_operator/symbolic_operator.hpp> 00037 00038 00039 double dLogarithm(double x){ 00040 return 1/x; 00041 } 00042 00043 00044 double ddLogarithm(double x){ 00045 return -1/x/x; 00046 } 00047 00048 BEGIN_NAMESPACE_ACADO 00049 00050 00051 Logarithm::Logarithm():UnaryOperator(){ 00052 cName = "log"; 00053 00054 fcn = &log; 00055 dfcn = &dLogarithm; 00056 ddfcn = &ddLogarithm; 00057 00058 operatorName = ON_LOGARITHM; 00059 00060 } 00061 00062 Logarithm::Logarithm( Operator *_argument ):UnaryOperator(_argument){ 00063 cName = "log"; 00064 00065 fcn = &log; 00066 dfcn = &dLogarithm; 00067 ddfcn = &ddLogarithm; 00068 00069 operatorName = ON_LOGARITHM; 00070 } 00071 00072 00073 Logarithm::Logarithm( const Logarithm &arg ):UnaryOperator(arg){ 00074 cName = "log"; 00075 00076 fcn = &log; 00077 dfcn = &dLogarithm; 00078 ddfcn = &ddLogarithm; 00079 00080 operatorName = ON_LOGARITHM; 00081 } 00082 00083 00084 Logarithm::~Logarithm(){ 00085 00086 } 00087 00088 00089 Logarithm& Logarithm::operator=( const Logarithm &arg ){ 00090 00091 UnaryOperator::operator=(arg); 00092 00093 return *this; 00094 } 00095 00096 00097 returnValue Logarithm::evaluate( EvaluationBase *x ){ 00098 00099 x->Log(*argument); 00100 return SUCCESSFUL_RETURN; 00101 } 00102 00103 00104 00105 Operator* Logarithm::substitute( int index, const Operator *sub ){ 00106 00107 return new Logarithm( argument->substitute( index , sub ) ); 00108 00109 } 00110 00111 Operator* Logarithm::clone() const{ 00112 00113 return new Logarithm(*this); 00114 } 00115 00116 00117 CurvatureType Logarithm::getCurvature( ){ 00118 00119 if( curvature != CT_UNKNOWN ) return curvature; 00120 00121 const CurvatureType cc = argument->getCurvature(); 00122 00123 if( cc == CT_CONSTANT ) return CT_CONSTANT; 00124 if( cc == CT_AFFINE ) return CT_CONCAVE ; 00125 if( cc == CT_CONCAVE ) return CT_CONCAVE ; 00126 00127 return CT_NEITHER_CONVEX_NOR_CONCAVE; 00128 } 00129 00130 returnValue Logarithm::initDerivative() { 00131 00132 if( initialized ) return SUCCESSFUL_RETURN; 00133 initialized = BT_TRUE; 00134 00135 derivative = convert2TreeProjection(new Power_Int( argument->clone(), -1 )); 00136 derivative2 = convert2TreeProjection(new Product( new DoubleConstant( -1.0 , NE_NEITHER_ONE_NOR_ZERO ), new Power_Int( argument->clone(), -2 ) )); 00137 00138 return argument->initDerivative(); 00139 } 00140 00141 00142 CLOSE_NAMESPACE_ACADO 00143 00144 // end of file.