| 1 | /* | 
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| 2 | * Project: MoleCuilder | 
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| 3 | * Description: creates and alters molecular systems | 
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| 4 | * Copyright (C)  2010 University of Bonn. All rights reserved. | 
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| 5 | * Please see the LICENSE file or "Copyright notice" in builder.cpp for details. | 
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| 6 | */ | 
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| 7 |  | 
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| 8 | /* | 
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| 9 | * SubspaceFactorizer.cpp | 
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| 10 | * | 
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| 11 | *  Created on: Nov 23, 2010 | 
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| 12 | *      Author: heber | 
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| 13 | */ | 
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| 14 |  | 
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| 15 | // include config.h | 
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| 16 | #ifdef HAVE_CONFIG_H | 
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| 17 | #include <config.h> | 
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| 18 | #endif | 
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| 19 |  | 
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| 20 | #include <cmath> | 
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| 21 |  | 
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| 22 | #include <gsl/gsl_eigen.h> | 
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| 23 | #include <gsl/gsl_matrix.h> | 
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| 24 | #include <gsl/gsl_vector.h> | 
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| 25 | #include <boost/foreach.hpp> | 
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| 26 | #include <boost/shared_ptr.hpp> | 
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| 27 | #include <boost/timer.hpp> | 
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| 28 |  | 
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| 29 | #include "CodePatterns/Assert.hpp" | 
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| 30 | #include "Helpers/defs.hpp" | 
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| 31 | #include "CodePatterns/Log.hpp" | 
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| 32 | #include "CodePatterns/toString.hpp" | 
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| 33 | #include "CodePatterns/Verbose.hpp" | 
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| 34 | #include "LinearAlgebra/Eigenspace.hpp" | 
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| 35 | #include "LinearAlgebra/MatrixContent.hpp" | 
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| 36 | #include "LinearAlgebra/Subspace.hpp" | 
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| 37 | #include "LinearAlgebra/VectorContent.hpp" | 
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| 38 |  | 
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| 39 | #include "RandomNumbers/RandomNumberGeneratorFactory.hpp" | 
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| 40 | #include "RandomNumbers/RandomNumberGenerator.hpp" | 
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| 41 |  | 
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| 42 | typedef std::set<std::set<size_t> > SetofIndexSets; | 
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| 43 | typedef std::set<size_t> IndexSet; | 
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| 44 | typedef std::multimap< size_t, boost::shared_ptr<Subspace> > SubspaceMap; | 
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| 45 | typedef std::multimap< size_t, boost::shared_ptr<IndexSet> > IndexMap; | 
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| 46 | typedef std::list< boost::shared_ptr<VectorContent> > VectorList; | 
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| 47 | typedef std::list< std::pair<boost::shared_ptr<VectorContent>, double> > VectorValueList; | 
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| 48 | typedef std::vector< boost::shared_ptr<VectorContent> > VectorArray; | 
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| 49 | typedef std::vector< double > ValueArray; | 
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| 50 |  | 
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| 51 |  | 
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| 52 | /** Iterative function to generate all power sets of indices of size \a maxelements. | 
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| 53 | * | 
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| 54 | * @param SetofSets Container for all sets | 
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| 55 | * @param CurrentSet pointer to current set in this container | 
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| 56 | * @param Indices Source set of indices | 
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| 57 | * @param maxelements number of elements of each set in final SetofSets | 
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| 58 | * @return true - generation continued, false - current set already had | 
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| 59 | *         \a maxelements elements | 
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| 60 | */ | 
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| 61 | bool generatePowerSet( | 
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| 62 | SetofIndexSets &SetofSets, | 
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| 63 | SetofIndexSets::iterator &CurrentSet, | 
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| 64 | IndexSet &Indices, | 
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| 65 | const size_t maxelements) | 
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| 66 | { | 
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| 67 | if (CurrentSet->size() < maxelements) { | 
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| 68 | // allocate the needed sets | 
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| 69 | const size_t size = Indices.size() - CurrentSet->size(); | 
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| 70 | std::vector<std::set<size_t> > SetExpanded; | 
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| 71 | SetExpanded.reserve(size); | 
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| 72 |  | 
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| 73 | // copy the current set into each | 
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| 74 | for (size_t i=0;i<size;++i) | 
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| 75 | SetExpanded.push_back(*CurrentSet); | 
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| 76 |  | 
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| 77 | // expand each set by one index | 
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| 78 | size_t localindex=0; | 
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| 79 | BOOST_FOREACH(size_t iter, Indices) { | 
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| 80 | if (CurrentSet->count(iter) == 0) { | 
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| 81 | SetExpanded[localindex].insert(iter); | 
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| 82 | ++localindex; | 
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| 83 | } | 
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| 84 | } | 
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| 85 |  | 
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| 86 | // insert set at position of CurrentSet | 
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| 87 | for (size_t i=0;i<size;++i) { | 
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| 88 | //DoLog(1) && (Log() << Verbose(1) << "Inserting set #" << i << ": " << SetExpanded[i] << std::endl); | 
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| 89 | SetofSets.insert(CurrentSet, SetExpanded[i]); | 
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| 90 | } | 
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| 91 | SetExpanded.clear(); | 
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| 92 |  | 
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| 93 | // and remove the current set | 
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| 94 | //SetofSets.erase(CurrentSet); | 
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| 95 | //CurrentSet = SetofSets.begin(); | 
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| 96 |  | 
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| 97 | // set iterator to a valid position again | 
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| 98 | ++CurrentSet; | 
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| 99 | return true; | 
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| 100 | } else { | 
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| 101 | return false; | 
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| 102 | } | 
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| 103 | } | 
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| 104 |  | 
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| 105 |  | 
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| 106 |  | 
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| 107 | /** Prints the scalar product of each possible pair that is not orthonormal. | 
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| 108 | * We use class logger for printing. | 
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| 109 | * @param AllIndices set of all possible indices of the eigenvectors | 
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| 110 | * @param CurrentEigenvectors array of eigenvectors | 
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| 111 | * @return true - all are orthonormal to each other, | 
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| 112 | *        false - some are not orthogonal or not normalized. | 
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| 113 | */ | 
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| 114 | bool checkOrthogonality(const IndexSet &AllIndices, const VectorArray &CurrentEigenvectors) | 
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| 115 | { | 
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| 116 | size_t nonnormalized = 0; | 
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| 117 | size_t nonorthogonal = 0; | 
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| 118 | // check orthogonality | 
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| 119 | BOOST_FOREACH( size_t firstindex, AllIndices) { | 
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| 120 | BOOST_FOREACH( size_t secondindex, AllIndices) { | 
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| 121 | const double scp = (*CurrentEigenvectors[firstindex])*(*CurrentEigenvectors[secondindex]); | 
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| 122 | if (firstindex == secondindex) { | 
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| 123 | if (fabs(scp - 1.) > MYEPSILON) { | 
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| 124 | nonnormalized++; | 
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| 125 | Log() << Verbose(2) << "Vector " << firstindex << " is not normalized, off by " | 
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| 126 | << fabs(1.-(*CurrentEigenvectors[firstindex])*(*CurrentEigenvectors[secondindex])) << std::endl; | 
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| 127 | } | 
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| 128 | } else { | 
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| 129 | if (fabs(scp) > MYEPSILON) { | 
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| 130 | nonorthogonal++; | 
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| 131 | Log() << Verbose(2) << "Scalar product between " << firstindex << " and " << secondindex | 
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| 132 | << " is " << (*CurrentEigenvectors[firstindex])*(*CurrentEigenvectors[secondindex]) << std::endl; | 
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| 133 | } | 
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| 134 | } | 
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| 135 | } | 
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| 136 | } | 
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| 137 |  | 
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| 138 | if ((nonnormalized == 0) && (nonorthogonal == 0)) { | 
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| 139 | DoLog(1) && (DoLog(1) && (Log() << Verbose(1) << "All vectors are orthonormal to each other." << std::endl)); | 
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| 140 | return true; | 
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| 141 | } | 
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| 142 | if ((nonnormalized == 0) && (nonorthogonal != 0)) | 
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| 143 | DoLog(1) && (DoLog(1) && (Log() << Verbose(1) << "All vectors are normalized." << std::endl)); | 
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| 144 | if ((nonnormalized != 0) && (nonorthogonal == 0)) | 
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| 145 | DoLog(1) && (DoLog(1) && (Log() << Verbose(1) << "All vectors are orthogonal to each other." << std::endl)); | 
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| 146 | return false; | 
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| 147 | } | 
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| 148 |  | 
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| 149 | /** Calculate the sum of the scalar product of each possible pair. | 
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| 150 | * @param AllIndices set of all possible indices of the eigenvectors | 
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| 151 | * @param CurrentEigenvectors array of eigenvectors | 
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| 152 | * @return sum of scalar products between all possible pairs | 
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| 153 | */ | 
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| 154 | double calculateOrthogonalityThreshold(const IndexSet &AllIndices, const VectorArray &CurrentEigenvectors) | 
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| 155 | { | 
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| 156 | double threshold = 0.; | 
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| 157 | // check orthogonality | 
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| 158 | BOOST_FOREACH( size_t firstindex, AllIndices) { | 
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| 159 | BOOST_FOREACH( size_t secondindex, AllIndices) { | 
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| 160 | const double scp = (*CurrentEigenvectors[firstindex])*(*CurrentEigenvectors[secondindex]); | 
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| 161 | if (firstindex == secondindex) { | 
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| 162 | threshold += fabs(scp - 1.); | 
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| 163 | } else { | 
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| 164 | threshold += fabs(scp); | 
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| 165 | } | 
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| 166 | } | 
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| 167 | } | 
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| 168 | return threshold; | 
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| 169 | } | 
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| 170 |  | 
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| 171 |  | 
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| 172 | /** Operator for output to std::ostream operator of an IndexSet. | 
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| 173 | * @param ost output stream | 
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| 174 | * @param indexset index set to output | 
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| 175 | * @return ost output stream | 
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| 176 | */ | 
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| 177 | std::ostream & operator<<(std::ostream &ost, const IndexSet &indexset) | 
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| 178 | { | 
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| 179 | ost << "{ "; | 
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| 180 | for (IndexSet::const_iterator iter = indexset.begin(); | 
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| 181 | iter != indexset.end(); | 
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| 182 | ++iter) | 
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| 183 | ost << *iter << " "; | 
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| 184 | ost << "}"; | 
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| 185 | return ost; | 
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| 186 | } | 
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| 187 |  | 
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| 188 |  | 
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| 189 | int main(int argc, char **argv) | 
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| 190 | { | 
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| 191 | size_t matrixdimension = 8; | 
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| 192 | size_t subspacelimit = 4; | 
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| 193 |  | 
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| 194 | if (argc < 2) { | 
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| 195 | std::cerr << "Usage: " << argv[0] << " <matrixdim> <subspacelimit>" << std::endl; | 
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| 196 | return 255; | 
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| 197 | } else { | 
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| 198 | { | 
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| 199 | std::stringstream s(toString(argv[1]));; | 
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| 200 | s >> matrixdimension; | 
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| 201 | } | 
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| 202 | { | 
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| 203 | std::stringstream s(toString(argv[2]));; | 
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| 204 | s >> subspacelimit; | 
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| 205 | } | 
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| 206 | } | 
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| 207 |  | 
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| 208 | //  RandomNumberGenerator &random = RandomNumberGeneratorFactory::getInstance().makeRandomNumberGenerator(); | 
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| 209 | //  const double rng_min = rng->min(); | 
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| 210 | //  const double rng_max = rng->max(); | 
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| 211 | MatrixContent *matrix = new MatrixContent(matrixdimension,matrixdimension); | 
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| 212 | matrix->setZero(); | 
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| 213 | for (size_t i=0; i<matrixdimension ; i++) { | 
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| 214 | for (size_t j=0; j<= i; ++j) { | 
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| 215 | //const double value = 10. * random() / (rng_max-rng_min); | 
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| 216 | //const double value = i==j ? 2. : 1.; | 
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| 217 | if (i==j) | 
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| 218 | matrix->set(i,i, 2.); | 
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| 219 | else if (j+1 == i) { | 
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| 220 | matrix->set(i,j, 1.); | 
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| 221 | matrix->set(j,i, 1.); | 
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| 222 | } else { | 
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| 223 | matrix->set(i,j, 0.); | 
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| 224 | matrix->set(j,i, 0.); | 
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| 225 | } | 
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| 226 | } | 
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| 227 | } | 
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| 228 |  | 
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| 229 | Eigenspace::eigenvectorset CurrentEigenvectors; | 
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| 230 | Eigenspace::eigenvalueset CurrentEigenvalues; | 
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| 231 |  | 
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| 232 | setVerbosity(3); | 
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| 233 |  | 
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| 234 | boost::timer Time_generatingfullspace; | 
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| 235 | DoLog(0) && (Log() << Verbose(0) << std::endl << std::endl); | 
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| 236 | // create the total index set | 
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| 237 | IndexSet AllIndices; | 
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| 238 | for (size_t i=0;i<matrixdimension;++i) | 
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| 239 | AllIndices.insert(i); | 
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| 240 | Eigenspace FullSpace(AllIndices, *matrix); | 
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| 241 | DoLog(1) && (Log() << Verbose(1) << "Generated full space: " << FullSpace << std::endl); | 
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| 242 | DoLog(0) && (Log() << Verbose(0) << "Full space generation took " << Time_generatingfullspace.elapsed() << " seconds." << std::endl); | 
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| 243 |  | 
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| 244 | // generate first set of eigenvectors | 
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| 245 | // set to first guess, i.e. the unit vectors of R^matrixdimension | 
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| 246 | BOOST_FOREACH( size_t index, AllIndices) { | 
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| 247 | boost::shared_ptr<VectorContent> EV(new VectorContent(matrixdimension)); | 
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| 248 | EV->setZero(); | 
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| 249 | EV->at(index) = 1.; | 
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| 250 | CurrentEigenvectors.push_back(EV); | 
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| 251 | CurrentEigenvalues.push_back(0.); | 
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| 252 | } | 
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| 253 |  | 
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| 254 | boost::timer Time_generatingsubsets; | 
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| 255 | DoLog(0) && (Log() << Verbose(0) << "Generating sub sets ..." << std::endl); | 
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| 256 | SetofIndexSets SetofSets; | 
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| 257 | // note that starting off empty set is unstable | 
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| 258 | IndexSet singleset; | 
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| 259 | BOOST_FOREACH(size_t iter, AllIndices) { | 
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| 260 | singleset.insert(iter); | 
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| 261 | SetofSets.insert(singleset); | 
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| 262 | singleset.clear(); | 
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| 263 | } | 
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| 264 | SetofIndexSets::iterator CurrentSet = SetofSets.begin(); | 
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| 265 | while (CurrentSet != SetofSets.end()) { | 
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| 266 | //DoLog(2) && (Log() << Verbose(2) << "Current set is " << *CurrentSet << std::endl); | 
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| 267 | if (!generatePowerSet(SetofSets, CurrentSet, AllIndices, subspacelimit)) { | 
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| 268 | // go to next set | 
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| 269 | ++CurrentSet; | 
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| 270 | } | 
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| 271 | } | 
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| 272 | DoLog(0) && (Log() << Verbose(0) << "Sub set generation took " << Time_generatingsubsets.elapsed() << " seconds." << std::endl); | 
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| 273 |  | 
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| 274 | // create a subspace to each set and and to respective level | 
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| 275 | boost::timer Time_generatingsubspaces; | 
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| 276 | DoLog(0) && (Log() << Verbose(0) << "Generating sub spaces ..." << std::endl); | 
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| 277 | SubspaceMap Dimension_to_Indexset; | 
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| 278 | BOOST_FOREACH(std::set<size_t> iter, SetofSets) { | 
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| 279 | boost::shared_ptr<Subspace> subspace(new Subspace(iter, FullSpace)); | 
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| 280 | DoLog(1) && (Log() << Verbose(1) << "Current subspace is " << *subspace << std::endl); | 
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| 281 | Dimension_to_Indexset.insert( make_pair(iter.size(), boost::shared_ptr<Subspace>(subspace)) ); | 
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| 282 | } | 
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| 283 |  | 
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| 284 | for (size_t dim = 1; dim<=subspacelimit;++dim) { | 
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| 285 | BOOST_FOREACH( SubspaceMap::value_type subspace, Dimension_to_Indexset.equal_range(dim)) { | 
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| 286 | if (dim != 0) { // from level 1 and onward | 
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| 287 | BOOST_FOREACH( SubspaceMap::value_type entry, Dimension_to_Indexset.equal_range(dim-1)) { | 
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| 288 | if (subspace.second->contains(*entry.second)) { | 
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| 289 | // if contained then add ... | 
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| 290 | subspace.second->addSubset(entry.second); | 
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| 291 | // ... and also its containees as they are all automatically contained as well | 
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| 292 | BOOST_FOREACH(boost::shared_ptr<Subspace> iter, entry.second->getSubIndices()) { | 
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| 293 | subspace.second->addSubset(iter); | 
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| 294 | } | 
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| 295 | } | 
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| 296 | } | 
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| 297 | } | 
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| 298 | } | 
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| 299 | } | 
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| 300 | DoLog(0) && (Log() << Verbose(0) << "Sub space generation took " << Time_generatingsubspaces.elapsed() << " seconds." << std::endl); | 
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| 301 |  | 
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| 302 | // create a file handle for the eigenvalues | 
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| 303 | std::ofstream outputvalues("eigenvalues.dat", std::ios_base::trunc); | 
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| 304 | ASSERT(outputvalues.good(), | 
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| 305 | "SubspaceFactorizerUnittest::EigenvectorTest() - failed to open eigenvalue file!"); | 
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| 306 | outputvalues << "# iteration "; | 
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| 307 | BOOST_FOREACH(size_t iter, AllIndices) { | 
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| 308 | outputvalues << "\teigenvalue" << iter; | 
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| 309 | } | 
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| 310 | outputvalues << std::endl; | 
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| 311 |  | 
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| 312 | DoLog(0) && (Log() << Verbose(0) << "Solving ..." << std::endl); | 
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| 313 | boost::timer Time_solving; | 
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| 314 | size_t run=1; // counting iterations | 
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| 315 | double threshold = 1.;  // containing threshold value | 
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| 316 | while ((threshold > MYEPSILON) && (run < 20)) { | 
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| 317 | // for every dimension | 
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| 318 | for (size_t dim = 1; dim <= subspacelimit;++dim) { | 
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| 319 | // for every index set of this dimension | 
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| 320 | DoLog(1) && (Log() << Verbose(1) << std::endl << std::endl); | 
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| 321 | DoLog(1) && (Log() << Verbose(1) << "Current dimension is " << dim << std::endl); | 
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| 322 | std::pair<SubspaceMap::const_iterator,SubspaceMap::const_iterator> Bounds = Dimension_to_Indexset.equal_range(dim); | 
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| 323 | for (SubspaceMap::const_iterator IndexsetIter = Bounds.first; | 
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| 324 | IndexsetIter != Bounds.second; | 
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| 325 | ++IndexsetIter) { | 
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| 326 | Subspace& subspace = *(IndexsetIter->second); | 
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| 327 | // show the index set | 
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| 328 | DoLog(2) && (Log() << Verbose(2) << std::endl); | 
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| 329 | DoLog(2) && (Log() << Verbose(2) << "Current subspace is " << subspace << std::endl); | 
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| 330 |  | 
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| 331 | // solve | 
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| 332 | subspace.calculateEigenSubspace(); | 
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| 333 |  | 
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| 334 | // note that assignment to global eigenvectors all remains within subspace | 
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| 335 | } | 
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| 336 | } | 
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| 337 |  | 
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| 338 | // print list of similar eigenvectors | 
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| 339 | DoLog(2) && (Log() << Verbose(2) << std::endl); | 
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| 340 | BOOST_FOREACH( size_t index, AllIndices) { | 
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| 341 | DoLog(2) && (Log() << Verbose(2) << "Similar to " << index << "th current eigenvector " << *(CurrentEigenvectors[index]) << " are:" << std::endl); | 
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| 342 | BOOST_FOREACH( SubspaceMap::value_type iter, Dimension_to_Indexset) { | 
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| 343 | const VectorContent & CurrentEV = (iter.second)->getEigenvectorParallelToFullOne(index); | 
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| 344 | if (!CurrentEV.IsZero()) | 
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| 345 | Log() << Verbose(2) | 
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| 346 | << "dim" << iter.first | 
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| 347 | << ", subspace{" << (iter.second)->getIndices() | 
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| 348 | << "}: "<< CurrentEV << std::endl; | 
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| 349 | } | 
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| 350 | DoLog(2) && (Log() << Verbose(2) << std::endl); | 
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| 351 | } | 
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| 352 |  | 
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| 353 | // create new CurrentEigenvectors from averaging parallel ones. | 
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| 354 | BOOST_FOREACH(size_t index, AllIndices) { | 
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| 355 | CurrentEigenvectors[index]->setZero(); | 
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| 356 | CurrentEigenvalues[index] = 0.; | 
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| 357 | size_t count = 0; | 
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| 358 | BOOST_FOREACH( SubspaceMap::value_type iter, Dimension_to_Indexset) { | 
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| 359 | const VectorContent CurrentEV = (iter.second)->getEigenvectorParallelToFullOne(index); | 
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| 360 | *CurrentEigenvectors[index] += CurrentEV; // * (iter.second)->getEigenvalueOfEigenvectorParallelToFullOne(index); | 
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| 361 | CurrentEigenvalues[index] += (iter.second)->getEigenvalueOfEigenvectorParallelToFullOne(index); | 
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| 362 | if (!CurrentEV.IsZero()) | 
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| 363 | count++; | 
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| 364 | } | 
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| 365 | *CurrentEigenvectors[index] *= 1./CurrentEigenvalues[index]; | 
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| 366 | //CurrentEigenvalues[index] /= (double)count; | 
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| 367 | } | 
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| 368 |  | 
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| 369 | // check orthonormality | 
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| 370 | threshold = calculateOrthogonalityThreshold(AllIndices, CurrentEigenvectors); | 
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| 371 | bool dontOrthonormalization = checkOrthogonality(AllIndices, CurrentEigenvectors); | 
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| 372 |  | 
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| 373 | // orthonormalize | 
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| 374 | if (!dontOrthonormalization) { | 
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| 375 | DoLog(1) && (Log() << Verbose(1) << "Orthonormalizing ... " << std::endl); | 
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| 376 | for (IndexSet::const_iterator firstindex = AllIndices.begin(); | 
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| 377 | firstindex != AllIndices.end(); | 
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| 378 | ++firstindex) { | 
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| 379 | for (IndexSet::const_iterator secondindex = firstindex; | 
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| 380 | secondindex != AllIndices.end(); | 
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| 381 | ++secondindex) { | 
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| 382 | if (*firstindex == *secondindex) { | 
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| 383 | (*CurrentEigenvectors[*secondindex]) *= 1./(*CurrentEigenvectors[*secondindex]).Norm(); | 
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| 384 | } else { | 
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| 385 | (*CurrentEigenvectors[*secondindex]) -= | 
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| 386 | ((*CurrentEigenvectors[*firstindex])*(*CurrentEigenvectors[*secondindex])) | 
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| 387 | *(*CurrentEigenvectors[*firstindex]); | 
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| 388 | } | 
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| 389 | } | 
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| 390 | } | 
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| 391 | } | 
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| 392 |  | 
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| 393 | //    // check orthonormality again | 
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| 394 | //    checkOrthogonality(AllIndices, CurrentEigenvectors); | 
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| 395 |  | 
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| 396 | // put obtained eigenvectors into full space | 
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| 397 | FullSpace.setEigenpairs(CurrentEigenvectors, CurrentEigenvalues); | 
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| 398 |  | 
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| 399 | // show new ones | 
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| 400 | DoLog(1) && (Log() << Verbose(1) << "Resulting new eigenvectors and -values, run " << run << " are:" << std::endl); | 
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| 401 | outputvalues << run; | 
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| 402 | BOOST_FOREACH( size_t index, AllIndices) { | 
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| 403 | DoLog(1) && (Log() << Verbose(1) << *CurrentEigenvectors[index] << " with " << CurrentEigenvalues[index] << std::endl); | 
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| 404 | outputvalues << "\t" << CurrentEigenvalues[index]; | 
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| 405 | } | 
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| 406 | outputvalues << std::endl; | 
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| 407 |  | 
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| 408 | // and next iteration | 
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| 409 | DoLog(0) && (Log() << Verbose(0) << "\titeration #" << run << std::endl); | 
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| 410 | run++; | 
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| 411 | } | 
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| 412 | DoLog(0) && (Log() << Verbose(0) << "Solving took " << Time_solving.elapsed() << " seconds." << std::endl); | 
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| 413 | // show final ones | 
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| 414 | DoLog(0) && (Log() << Verbose(0) << "Resulting new eigenvectors and -values, run " << run << " are:" << std::endl); | 
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| 415 | outputvalues << run; | 
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| 416 | BOOST_FOREACH( size_t index, AllIndices) { | 
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| 417 | DoLog(0) && (Log() << Verbose(0) << *CurrentEigenvectors[index] << " with " << CurrentEigenvalues[index] << std::endl); | 
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| 418 | outputvalues << "\t" << CurrentEigenvalues[index]; | 
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| 419 | } | 
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| 420 | outputvalues << std::endl; | 
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| 421 | outputvalues.close(); | 
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| 422 |  | 
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| 423 | setVerbosity(2); | 
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| 424 |  | 
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| 425 | DoLog(0) && (Log() << Verbose(0) << "Solving full space ..." << std::endl); | 
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| 426 | boost::timer Time_comparison; | 
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| 427 | MatrixContent tempFullspaceMatrix = FullSpace.getEigenspaceMatrix(); | 
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| 428 | gsl_vector *eigenvalues = tempFullspaceMatrix.transformToEigenbasis(); | 
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| 429 | tempFullspaceMatrix.sortEigenbasis(eigenvalues); | 
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| 430 | DoLog(0) && (Log() << Verbose(0) << "full space solution took " << Time_comparison.elapsed() << " seconds." << std::endl); | 
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| 431 |  | 
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| 432 | delete matrix; | 
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| 433 |  | 
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| 434 | return 0; | 
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| 435 | } | 
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