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IterationPack: General framework for building iterative algorithms
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00001 // @HEADER 00002 // *********************************************************************** 00003 // 00004 // Moocho: Multi-functional Object-Oriented arCHitecture for Optimization 00005 // Copyright (2003) Sandia Corporation 00006 // 00007 // Under terms of Contract DE-AC04-94AL85000, there is a non-exclusive 00008 // license for use of this work by or on behalf of the U.S. Government. 00009 // 00010 // Redistribution and use in source and binary forms, with or without 00011 // modification, are permitted provided that the following conditions are 00012 // met: 00013 // 00014 // 1. Redistributions of source code must retain the above copyright 00015 // notice, this list of conditions and the following disclaimer. 00016 // 00017 // 2. Redistributions in binary form must reproduce the above copyright 00018 // notice, this list of conditions and the following disclaimer in the 00019 // documentation and/or other materials provided with the distribution. 00020 // 00021 // 3. 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Bartlett (rabartl@sandia.gov) 00038 // 00039 // *********************************************************************** 00040 // @HEADER 00041 00042 #ifndef GIP_CAST_IQ_H 00043 #define GIP_CAST_IQ_H 00044 00045 #include <stdexcept> 00046 #include <typeinfo> 00047 00048 #include "IterationPack_AlgorithmState.hpp" 00049 #include "IterationPack_IterQuantityAccess.hpp" 00050 00051 namespace IterationPack { 00052 00066 template<class T> 00067 IterQuantityAccess<T>& cast_iq( 00068 AlgorithmState& state, const std::string& iq_name ); 00069 00071 template<class T> 00072 const IterQuantityAccess<T>& cast_iq( 00073 const AlgorithmState& state, const std::string& iq_name ); 00074 00090 template<class T> 00091 IterQuantityAccess<T>& cast_iq( 00092 AlgorithmState& state, const AlgorithmState::iq_id_type iq_id, const std::string& iq_name ); 00093 00095 template<class T> 00096 const IterQuantityAccess<T>& cast_iq( 00097 const AlgorithmState& state, const AlgorithmState::iq_id_type iq_id, const std::string& iq_name ); 00098 00099 // Helper function 00100 00101 void imp_cast_iq_throw_error( 00102 const std::string& iq_name 00103 ,const std::string& iq_is_type_name 00104 ,const std::string& iq_want_type_name 00105 ); 00106 00107 void imp_cast_iq_throw_error( 00108 const AlgorithmState::iq_id_type iq_id 00109 ,const std::string& iq_name 00110 ,const std::string& iq_is_type_name 00111 ,const std::string& iq_want_type_name 00112 ); 00113 00114 // /////////////////// 00115 // Inline definitions 00116 00117 template<class T> 00118 //inline 00119 IterQuantityAccess<T>& cast_iq( 00120 AlgorithmState& state, const std::string& iq_name ) 00121 { 00122 IterQuantity 00123 &iq = state.iter_quant( iq_name ); 00124 IterQuantityAccess<T> 00125 *p = dynamic_cast<IterQuantityAccess<T>*>( &iq ); 00126 // will throw exception if iq_name does not exist 00127 if( !p ) 00128 imp_cast_iq_throw_error( iq_name, typeName(iq), TypeNameTraits<T>::name() ); 00129 return *p; 00130 } 00131 00132 template<class T> 00133 //inline 00134 const IterQuantityAccess<T>& cast_iq( 00135 const AlgorithmState& state, const std::string& iq_name ) 00136 { 00137 const IterQuantity 00138 &iq = state.iter_quant( iq_name ); 00139 const IterQuantityAccess<T> 00140 *p = dynamic_cast<const IterQuantityAccess<T>*>( &iq ); 00141 // will throw exception if iq_name does not exist 00142 if( !p ) 00143 imp_cast_iq_throw_error( iq_name, typeName(iq), TypeNameTraits<T>::name() ); 00144 return *p; 00145 } 00146 00147 template<class T> 00148 //inline 00149 IterQuantityAccess<T>& cast_iq( 00150 AlgorithmState& state, const AlgorithmState::iq_id_type iq_id, const std::string& iq_name ) 00151 { 00152 IterQuantity 00153 &iq = state.iter_quant( iq_id ); 00154 IterQuantityAccess<T> 00155 *p = dynamic_cast<IterQuantityAccess<T>*>( &iq ); 00156 // will throw exception if iq_name does not exist 00157 if( !p ) 00158 imp_cast_iq_throw_error( iq_id, iq_name, typeName(iq), TypeNameTraits<T>::name() ); 00159 return *p; 00160 } 00161 00162 template<class T> 00163 //inline 00164 const IterQuantityAccess<T>& cast_iq( 00165 const AlgorithmState& state, const AlgorithmState::iq_id_type iq_id, const std::string& iq_name ) 00166 { 00167 const IterQuantity 00168 &iq = state.iter_quant( iq_id ); 00169 const IterQuantityAccess<T> 00170 *p = dynamic_cast<const IterQuantityAccess<T>*>( &iq ); 00171 // will throw exception if iq_name does not exist 00172 if( !p ) 00173 imp_cast_iq_throw_error( iq_id, iq_name, typeName(iq), TypeNameTraits<T>::name() ); 00174 return *p; 00175 } 00176 00177 } // namespace IterationPack 00178 00179 #endif // GIP_CAST_IQ_H
1.7.6.1