| 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 |  * SubspaceFactorizerUnitTest.cpp
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| 10 |  *
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| 11 |  *  Created on: Nov 13, 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 <cppunit/CompilerOutputter.h>
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| 21 | #include <cppunit/extensions/TestFactoryRegistry.h>
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| 22 | #include <cppunit/ui/text/TestRunner.h>
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| 23 | 
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| 24 | #include <cmath>
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| 25 | 
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| 26 | #include <gsl/gsl_vector.h>
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| 27 | #include <boost/foreach.hpp>
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| 28 | #include <boost/shared_ptr.hpp>
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| 29 | #include <boost/timer.hpp>
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| 30 | 
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| 31 | #include "CodePatterns/Assert.hpp"
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| 32 | #include "Helpers/defs.hpp"
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| 33 | #include "CodePatterns/Log.hpp"
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| 34 | #include "CodePatterns/toString.hpp"
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| 35 | #include "CodePatterns/Verbose.hpp"
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| 36 | #include "LinearAlgebra/Eigenspace.hpp"
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| 37 | #include "LinearAlgebra/MatrixContent.hpp"
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| 38 | #include "LinearAlgebra/Subspace.hpp"
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| 39 | #include "LinearAlgebra/VectorContent.hpp"
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| 40 | 
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| 41 | #include "SubspaceFactorizerUnitTest.hpp"
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| 42 | 
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| 43 | #ifdef HAVE_TESTRUNNER
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| 44 | #include "UnitTestMain.hpp"
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| 45 | #endif /*HAVE_TESTRUNNER*/
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| 46 | 
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| 47 | // Registers the fixture into the 'registry'
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| 48 | CPPUNIT_TEST_SUITE_REGISTRATION( SubspaceFactorizerUnittest );
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| 49 | 
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| 50 | void SubspaceFactorizerUnittest::setUp(){
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| 51 |   matrix = new MatrixContent(matrixdimension,matrixdimension);
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| 52 |   matrix->setZero();
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| 53 |   for (size_t i=0; i<matrixdimension ; i++) {
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| 54 |     for (size_t j=0; j<= i; ++j) {
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| 55 |       //const double value = 10. * rand() / (double)RAND_MAX;
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| 56 |       //const double value = i==j ? 2. : 1.;
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| 57 |       if (i==j)
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| 58 |         matrix->set(i,i, 2.);
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| 59 |       else if (j+1 == i) {
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| 60 |         matrix->set(i,j, 1.);
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| 61 |         matrix->set(j,i, 1.);
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| 62 |       } else {
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| 63 |         matrix->set(i,j, 0.);
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| 64 |         matrix->set(j,i, 0.);
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| 65 |       }
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| 66 |     }
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| 67 |   }
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| 68 | }
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| 69 | 
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| 70 | void SubspaceFactorizerUnittest::tearDown(){
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| 71 |   // delete test matrix
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| 72 |   delete matrix;
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| 73 | }
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| 74 | 
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| 75 | void SubspaceFactorizerUnittest::BlockTest()
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| 76 | {
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| 77 |   MatrixContent *transformation = new MatrixContent(matrixdimension,matrixdimension);
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| 78 |   transformation->setZero();
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| 79 |   for (size_t j=0; j<1; ++j)
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| 80 |     transformation->set(j,j, 1.);
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| 81 | 
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| 82 |   MatrixContent temp((*matrix)&(*transformation));
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| 83 |   std::cout << "Our matrix is " << *matrix << "." << std::endl;
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| 84 | 
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| 85 |   std::cout << "Hadamard product of " << *matrix << " with " << *transformation << " is: " << std::endl;
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| 86 |   std::cout << temp << std::endl;
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| 87 | 
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| 88 |   gsl_vector *eigenvalues = temp.transformToEigenbasis();
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| 89 |   VectorContent *eigenvaluesView = new VectorViewContent(gsl_vector_subvector(eigenvalues, 0, eigenvalues->size));
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| 90 |   std::cout << "The resulting eigenbasis is " << temp
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| 91 |       << "\n\t with eigenvalues " << *eigenvaluesView << std::endl;
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| 92 |   delete eigenvaluesView;
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| 93 |   gsl_vector_free(eigenvalues);
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| 94 |   delete (transformation);
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| 95 | 
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| 96 | 
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| 97 |   CPPUNIT_ASSERT_EQUAL(0,0);
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| 98 | }
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| 99 | 
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| 100 | /** For given set of row and column indices, we extract the small block matrix.
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| 101 |  * @param bigmatrix big matrix to extract from
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| 102 |  * @param Eigenvectors eigenvectors of the subspaces to obtain matrix in
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| 103 |  * @param columnindexset index set to pick out of all indices
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| 104 |  * @return small matrix with dimension equal to the number of indices for row and column.
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| 105 |  */
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| 106 | MatrixContent * getSubspaceMatrix(
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| 107 |     MatrixContent &bigmatrix,
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| 108 |     VectorArray &Eigenvectors,
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| 109 |     const IndexSet &indexset)
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| 110 | {
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| 111 |   // check whether subsystem is big enough for both index sets
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| 112 |   ASSERT(indexset.size() <= bigmatrix.getRows(),
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| 113 |       "embedSubspaceMatrix() - bigmatrix has less rows "+toString(bigmatrix.getRows())
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| 114 |       +" than needed by index set "
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| 115 |       +toString(indexset.size())+"!");
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| 116 |   ASSERT(indexset.size() <= bigmatrix.getColumns(),
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| 117 |       "embedSubspaceMatrix() - bigmatrix has less columns "+toString(bigmatrix.getColumns())
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| 118 |       +" than needed by index set "
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| 119 |       +toString(indexset.size())+"!");
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| 120 | 
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| 121 |   // construct small matrix
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| 122 |   MatrixContent *subsystem =  new MatrixContent(indexset.size(), indexset.size());
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| 123 |   size_t localrow = 0; // local row indices for the subsystem
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| 124 |   size_t localcolumn = 0;
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| 125 |   BOOST_FOREACH( size_t rowindex, indexset) {
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| 126 |     localcolumn = 0;
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| 127 |     BOOST_FOREACH( size_t columnindex, indexset) {
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| 128 |       ASSERT((rowindex < bigmatrix.getRows()) && (columnindex < bigmatrix.getColumns()),
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| 129 |           "current index pair ("
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| 130 |           +toString(rowindex)+","+toString(columnindex)
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| 131 |           +") is out of bounds of bigmatrix ("
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| 132 |           +toString(bigmatrix.getRows())+","+toString(bigmatrix.getColumns())
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| 133 |           +")");
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| 134 |       subsystem->at(localrow,localcolumn) = (*Eigenvectors[rowindex]) * (bigmatrix * (*Eigenvectors[columnindex]));
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| 135 |       localcolumn++;
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| 136 |     }
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| 137 |     localrow++;
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| 138 |   }
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| 139 |   return subsystem;
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| 140 | }
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| 141 | 
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| 142 | /** For a given set of row and columns indices, we embed a small block matrix into a bigger space.
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| 143 |  *
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| 144 |  * @param eigenvectors current eigenvectors
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| 145 |  * @param rowindexset row index set
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| 146 |  * @param columnindexset column index set
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| 147 |  * @return bigmatrix with eigenvectors contained
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| 148 |  */
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| 149 | MatrixContent * embedSubspaceMatrix(
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| 150 |     VectorArray &Eigenvectors,
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| 151 |     MatrixContent &subsystem,
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| 152 |     const IndexSet &columnindexset)
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| 153 | {
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| 154 |   // check whether bigmatrix is at least as big as subsystem
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| 155 |   ASSERT(Eigenvectors.size() > 0,
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| 156 |       "embedSubspaceMatrix() - no Eigenvectors given!");
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| 157 |   ASSERT(subsystem.getRows() <= Eigenvectors[0]->getDimension(),
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| 158 |       "embedSubspaceMatrix() - subsystem has more rows "
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| 159 |       +toString(subsystem.getRows())+" than eigenvectors "
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| 160 |       +toString(Eigenvectors[0]->getDimension())+"!");
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| 161 |   ASSERT(subsystem.getColumns() <= Eigenvectors.size(),
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| 162 |       "embedSubspaceMatrix() - subsystem has more columns "
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| 163 |       +toString(subsystem.getColumns())+" than eigenvectors "
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| 164 |       +toString(Eigenvectors.size())+"!");
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| 165 |   // check whether subsystem is big enough for both index sets
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| 166 |   ASSERT(subsystem.getColumns() == subsystem.getRows(),
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| 167 |       "embedSubspaceMatrix() - subsystem is not square "
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| 168 |       +toString(subsystem.getRows())+" than needed by index set "
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| 169 |       +toString(subsystem.getColumns())+"!");
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| 170 |   ASSERT(columnindexset.size() == subsystem.getColumns(),
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| 171 |       "embedSubspaceMatrix() - subsystem has not the same number of columns "
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| 172 |       +toString(subsystem.getColumns())+" compared to the index set "
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| 173 |       +toString(columnindexset.size())+"!");
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| 174 | 
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| 175 |   // construct intermediate matrix
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| 176 |   MatrixContent *intermediatematrix = new MatrixContent(Eigenvectors[0]->getDimension(), columnindexset.size());
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| 177 |   size_t localcolumn = 0;
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| 178 |   BOOST_FOREACH(size_t columnindex, columnindexset) {
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| 179 |     // create two vectors from each row and copy assign them
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| 180 |     boost::shared_ptr<VectorContent> srceigenvector(Eigenvectors[columnindex]);
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| 181 |     boost::shared_ptr<VectorContent> desteigenvector(intermediatematrix->getColumnVector(localcolumn));
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| 182 |     *desteigenvector = *srceigenvector;
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| 183 |     localcolumn++;
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| 184 |   }
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| 185 |   // matrix product with eigenbasis subsystem matrix
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| 186 |   *intermediatematrix *= subsystem;
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| 187 | 
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| 188 |   // and place at right columns into bigmatrix
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| 189 |   MatrixContent *bigmatrix = new MatrixContent(Eigenvectors[0]->getDimension(), Eigenvectors.size());
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| 190 |   bigmatrix->setZero();
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| 191 |   localcolumn = 0;
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| 192 |   BOOST_FOREACH(size_t columnindex, columnindexset) {
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| 193 |     // create two vectors from each row and copy assign them
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| 194 |     boost::shared_ptr<VectorContent> srceigenvector(intermediatematrix->getColumnVector(localcolumn));
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| 195 |     boost::shared_ptr<VectorContent> desteigenvector(bigmatrix->getColumnVector(columnindex));
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| 196 |     *desteigenvector = *srceigenvector;
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| 197 |     localcolumn++;
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| 198 |   }
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| 199 | 
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| 200 |   return bigmatrix;
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| 201 | }
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| 202 | 
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| 203 | /** Prints the scalar product of each possible pair that is not orthonormal.
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| 204 |  * We use class logger for printing.
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| 205 |  * @param AllIndices set of all possible indices of the eigenvectors
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| 206 |  * @param CurrentEigenvectors array of eigenvectors
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| 207 |  * @return true - all are orthonormal to each other,
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| 208 |  *        false - some are not orthogonal or not normalized.
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| 209 |  */
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| 210 | bool checkOrthogonality(const IndexSet &AllIndices, const VectorArray &CurrentEigenvectors)
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| 211 | {
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| 212 |   size_t nonnormalized = 0;
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| 213 |   size_t nonorthogonal = 0;
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| 214 |   // check orthogonality
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| 215 |   BOOST_FOREACH( size_t firstindex, AllIndices) {
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| 216 |     BOOST_FOREACH( size_t secondindex, AllIndices) {
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| 217 |       const double scp = (*CurrentEigenvectors[firstindex])*(*CurrentEigenvectors[secondindex]);
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| 218 |       if (firstindex == secondindex) {
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| 219 |         if (fabs(scp - 1.) > MYEPSILON) {
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| 220 |           nonnormalized++;
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| 221 |           Log() << Verbose(2) << "Vector " << firstindex << " is not normalized, off by "
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| 222 |               << fabs(1.-(*CurrentEigenvectors[firstindex])*(*CurrentEigenvectors[secondindex])) << std::endl;
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| 223 |         }
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| 224 |       } else {
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| 225 |         if (fabs(scp) > MYEPSILON) {
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| 226 |           nonorthogonal++;
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| 227 |           Log() << Verbose(2) << "Scalar product between " << firstindex << " and " << secondindex
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| 228 |               << " is " << (*CurrentEigenvectors[firstindex])*(*CurrentEigenvectors[secondindex]) << std::endl;
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| 229 |         }
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| 230 |       }
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| 231 |     }
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| 232 |   }
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| 233 | 
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| 234 |   if ((nonnormalized == 0) && (nonorthogonal == 0)) {
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| 235 |     DoLog(1) && (DoLog(1) && (Log() << Verbose(1) << "All vectors are orthonormal to each other." << std::endl));
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| 236 |     return true;
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| 237 |   }
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| 238 |   if ((nonnormalized == 0) && (nonorthogonal != 0))
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| 239 |     DoLog(1) && (DoLog(1) && (Log() << Verbose(1) << "All vectors are normalized." << std::endl));
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| 240 |   if ((nonnormalized != 0) && (nonorthogonal == 0))
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| 241 |     DoLog(1) && (DoLog(1) && (Log() << Verbose(1) << "All vectors are orthogonal to each other." << std::endl));
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| 242 |   return false;
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| 243 | }
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| 244 | 
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| 245 | /** Calculate the sum of the scalar product of each possible pair.
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| 246 |  * @param AllIndices set of all possible indices of the eigenvectors
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| 247 |  * @param CurrentEigenvectors array of eigenvectors
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| 248 |  * @return sum of scalar products between all possible pairs
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| 249 |  */
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| 250 | double calculateOrthogonalityThreshold(const IndexSet &AllIndices, const VectorArray &CurrentEigenvectors)
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| 251 | {
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| 252 |   double threshold = 0.;
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| 253 |   // check orthogonality
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| 254 |   BOOST_FOREACH( size_t firstindex, AllIndices) {
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| 255 |     BOOST_FOREACH( size_t secondindex, AllIndices) {
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| 256 |       const double scp = (*CurrentEigenvectors[firstindex])*(*CurrentEigenvectors[secondindex]);
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| 257 |       if (firstindex == secondindex) {
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| 258 |         threshold += fabs(scp - 1.);
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| 259 |       } else {
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| 260 |         threshold += fabs(scp);
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| 261 |       }
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| 262 |     }
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| 263 |   }
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| 264 |   return threshold;
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| 265 | }
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| 266 | 
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| 267 | /** Operator for output to std::ostream operator of an IndexSet.
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| 268 |  * @param ost output stream
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| 269 |  * @param indexset index set to output
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| 270 |  * @return ost output stream
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| 271 |  */
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| 272 | std::ostream & operator<<(std::ostream &ost, const IndexSet &indexset)
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| 273 | {
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| 274 |   ost << "{ ";
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| 275 |   for (IndexSet::const_iterator iter = indexset.begin();
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| 276 |       iter != indexset.end();
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| 277 |       ++iter)
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| 278 |     ost << *iter << " ";
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| 279 |   ost << "}";
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| 280 |   return ost;
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| 281 | }
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| 282 | 
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| 283 | /** Assign eigenvectors of subspace to full eigenvectors.
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| 284 |  * We use parallelity as relation measure.
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| 285 |  * @param eigenvalue eigenvalue to assign along with
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| 286 |  * @param CurrentEigenvector eigenvector to assign, is taken over within
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| 287 |  *        boost::shared_ptr
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| 288 |  * @param CurrentEigenvectors full eigenvectors
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| 289 |  * @param CorrespondenceList list to make sure that each subspace eigenvector
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| 290 |  *        is assigned to a unique full eigenvector
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| 291 |  * @param ParallelEigenvectorList list of "similar" subspace eigenvectors per
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| 292 |  *        full eigenvector, allocated
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| 293 |  */
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| 294 | void AssignSubspaceEigenvectors(
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| 295 |     double eigenvalue,
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| 296 |     VectorContent *CurrentEigenvector,
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| 297 |     VectorArray &CurrentEigenvectors,
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| 298 |     IndexSet &CorrespondenceList,
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| 299 |     VectorValueList *&ParallelEigenvectorList)
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| 300 | {
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| 301 |   DoLog(1) && (DoLog(1) && (Log() << Verbose(1) << "Current Eigenvector is " << *CurrentEigenvector << std::endl));
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| 302 | 
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| 303 |   // (for now settle with the one we are most parallel to)
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| 304 |   size_t mostparallel_index = SubspaceFactorizerUnittest::matrixdimension;
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| 305 |   double mostparallel_scalarproduct = 0.;
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| 306 |   BOOST_FOREACH( size_t indexiter, CorrespondenceList) {
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| 307 |     DoLog(2) && (DoLog(2) && (Log() << Verbose(2) << "Comparing to old " << indexiter << "th eigenvector " << *(CurrentEigenvectors[indexiter]) << std::endl));
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| 308 |     const double scalarproduct = (*(CurrentEigenvectors[indexiter])) * (*CurrentEigenvector);
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| 309 |     DoLog(2) && (DoLog(2) && (Log() << Verbose(2) << "SKP is " << scalarproduct << std::endl));
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| 310 |     if (fabs(scalarproduct) > mostparallel_scalarproduct) {
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| 311 |       mostparallel_scalarproduct = fabs(scalarproduct);
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| 312 |       mostparallel_index = indexiter;
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| 313 |     }
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| 314 |   }
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| 315 |   if (mostparallel_index != SubspaceFactorizerUnittest::matrixdimension) {
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| 316 |     // put into std::list for later use
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| 317 |     // invert if pointing in negative direction
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| 318 |     if ((*(CurrentEigenvectors[mostparallel_index])) * (*CurrentEigenvector) < 0) {
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| 319 |       *CurrentEigenvector *= -1.;
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| 320 |       DoLog(1) && (Log() << Verbose(1) << "Pushing (inverted) " << *CurrentEigenvector << " into parallel list [" << mostparallel_index << "]" << std::endl);
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| 321 |     } else {
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| 322 |       DoLog(1) && (Log() << Verbose(1) << "Pushing " << *CurrentEigenvector << " into parallel list [" << mostparallel_index << "]" << std::endl);
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| 323 |     }
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| 324 |     ParallelEigenvectorList[mostparallel_index].push_back(make_pair(boost::shared_ptr<VectorContent>(CurrentEigenvector), eigenvalue));
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| 325 |     CorrespondenceList.erase(mostparallel_index);
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| 326 |   }
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| 327 | }
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| 328 | 
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| 329 | void SubspaceFactorizerUnittest::EigenvectorTest()
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| 330 | {
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| 331 |   VectorArray CurrentEigenvectors;
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| 332 |   ValueArray CurrentEigenvalues;
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| 333 |   VectorValueList *ParallelEigenvectorList = new VectorValueList[matrixdimension];
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| 334 |   IndexSet AllIndices;
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| 335 | 
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| 336 |   // create the total index set
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| 337 |   for (size_t i=0;i<matrixdimension;++i)
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| 338 |     AllIndices.insert(i);
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| 339 | 
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| 340 |   // create all consecutive index subsets for dim 1 to 3
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| 341 |   IndexMap Dimension_to_Indexset;
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| 342 |   for (size_t dim = 0; dim<3;++dim) {
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| 343 |     for (size_t i=0;i<matrixdimension;++i) {
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| 344 |       IndexSet *indexset = new IndexSet;
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| 345 |       for (size_t j=0;j<dim+1;++j) {
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| 346 |         const int value = (i+j) % matrixdimension;
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| 347 |         //std::cout << "Putting " << value << " into " << i << "th map " << dim << std::endl;
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| 348 |         CPPUNIT_ASSERT_MESSAGE("index "+toString(value)+" already present in "+toString(dim)+"-dim "+toString(i)+"th indexset.", indexset->count(value) == 0);
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| 349 |         indexset->insert(value);
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| 350 |       }
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| 351 |       Dimension_to_Indexset.insert( make_pair(dim, boost::shared_ptr<IndexSet>(indexset)) );
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| 352 |       // no need to free indexset, is stored in shared_ptr and
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| 353 |       // will get released when Dimension_to_Indexset is destroyed
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| 354 |     }
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| 355 |   }
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| 356 | 
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| 357 |   // set to first guess, i.e. the unit vectors of R^matrixdimension
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| 358 |   BOOST_FOREACH( size_t index, AllIndices) {
 | 
|---|
| 359 |     boost::shared_ptr<VectorContent> EV(new VectorContent(matrixdimension));
 | 
|---|
| 360 |     EV->setZero();
 | 
|---|
| 361 |     EV->at(index) = 1.;
 | 
|---|
| 362 |     CurrentEigenvectors.push_back(EV);
 | 
|---|
| 363 |     CurrentEigenvalues.push_back(0.);
 | 
|---|
| 364 |   }
 | 
|---|
| 365 | 
 | 
|---|
| 366 |   size_t run=1; // counting iterations
 | 
|---|
| 367 |   double threshold = 1.;  // containing threshold value
 | 
|---|
| 368 |   while ((threshold > 1e-10) && (run < 10)) {
 | 
|---|
| 369 |     // for every dimension
 | 
|---|
| 370 |     for (size_t dim = 0; dim<subspacelimit;++dim) {
 | 
|---|
| 371 |       // for every index set of this dimension
 | 
|---|
| 372 |       DoLog(0) && (Log() << Verbose(0) << std::endl << std::endl);
 | 
|---|
| 373 |       DoLog(0) && (Log() << Verbose(0) << "Current dimension is " << dim << std::endl);
 | 
|---|
| 374 |       std::pair<IndexMap::const_iterator,IndexMap::const_iterator> Bounds = Dimension_to_Indexset.equal_range(dim);
 | 
|---|
| 375 |       for (IndexMap::const_iterator IndexsetIter = Bounds.first;
 | 
|---|
| 376 |           IndexsetIter != Bounds.second;
 | 
|---|
| 377 |           ++IndexsetIter) {
 | 
|---|
| 378 |         // show the index set
 | 
|---|
| 379 |         DoLog(0) && (Log() << Verbose(0) << std::endl);
 | 
|---|
| 380 |         DoLog(1) && (Log() << Verbose(1) << "Current index set is " << *(IndexsetIter->second) << std::endl);
 | 
|---|
| 381 | 
 | 
|---|
| 382 |         // create transformation matrices from these
 | 
|---|
| 383 |         MatrixContent *subsystem = getSubspaceMatrix(*matrix, CurrentEigenvectors, *(IndexsetIter->second));
 | 
|---|
| 384 |         DoLog(2) && (Log() << Verbose(2) << "Subsystem matrix is " << *subsystem << std::endl);
 | 
|---|
| 385 | 
 | 
|---|
| 386 |         // solve _small_ systems for eigenvalues
 | 
|---|
| 387 |         VectorContent *Eigenvalues = new VectorContent(subsystem->transformToEigenbasis());
 | 
|---|
| 388 |         DoLog(2) && (Log() << Verbose(2) << "Eigenvector matrix is " << *subsystem << std::endl);
 | 
|---|
| 389 |         DoLog(2) && (Log() << Verbose(2) << "Eigenvalues are " << *Eigenvalues << std::endl);
 | 
|---|
| 390 | 
 | 
|---|
| 391 |         // blow up eigenvectors to matrixdimensiondim column vector again
 | 
|---|
| 392 |         MatrixContent *Eigenvectors = embedSubspaceMatrix(CurrentEigenvectors, *subsystem, *(IndexsetIter->second));
 | 
|---|
| 393 |         DoLog(1) && (Log() << Verbose(1) << matrixdimension << "x" << matrixdimension << " Eigenvector matrix is " << *Eigenvectors << std::endl);
 | 
|---|
| 394 | 
 | 
|---|
| 395 |         // we don't need the subsystem anymore
 | 
|---|
| 396 |         delete subsystem;
 | 
|---|
| 397 | 
 | 
|---|
| 398 |         // go through all eigenvectors in this subspace
 | 
|---|
| 399 |         IndexSet CorrespondenceList((*IndexsetIter->second)); // assure one-to-one and onto assignment
 | 
|---|
| 400 |         size_t localindex = 0;
 | 
|---|
| 401 |         BOOST_FOREACH( size_t iter, (*IndexsetIter->second)) {
 | 
|---|
| 402 |           // recognize eigenvectors parallel to existing ones
 | 
|---|
| 403 |           AssignSubspaceEigenvectors(
 | 
|---|
| 404 |               Eigenvalues->at(localindex),
 | 
|---|
| 405 |               new VectorContent(Eigenvectors->getColumnVector(iter)),
 | 
|---|
| 406 |               CurrentEigenvectors,
 | 
|---|
| 407 |               CorrespondenceList,
 | 
|---|
| 408 |               ParallelEigenvectorList);
 | 
|---|
| 409 |           localindex++;
 | 
|---|
| 410 |         }
 | 
|---|
| 411 | 
 | 
|---|
| 412 |         // free eigenvectors
 | 
|---|
| 413 |         delete Eigenvectors;
 | 
|---|
| 414 |         delete Eigenvalues;
 | 
|---|
| 415 |       }
 | 
|---|
| 416 |     }
 | 
|---|
| 417 | 
 | 
|---|
| 418 |     // print list of similar eigenvectors
 | 
|---|
| 419 |     BOOST_FOREACH( size_t index, AllIndices) {
 | 
|---|
| 420 |       DoLog(2) && (Log() << Verbose(2) << "Similar to " << index << "th current eigenvector " << *(CurrentEigenvectors[index]) << " are:" << std::endl);
 | 
|---|
| 421 |       BOOST_FOREACH( VectorValueList::value_type &iter, ParallelEigenvectorList[index] ) {
 | 
|---|
| 422 |         DoLog(2) && (Log() << Verbose(2) << *(iter.first) << std::endl);
 | 
|---|
| 423 |       }
 | 
|---|
| 424 |       DoLog(2) && (Log() << Verbose(2) << std::endl);
 | 
|---|
| 425 |     }
 | 
|---|
| 426 | 
 | 
|---|
| 427 |     // create new CurrentEigenvectors from averaging parallel ones.
 | 
|---|
| 428 |     BOOST_FOREACH(size_t index, AllIndices) {
 | 
|---|
| 429 |       CurrentEigenvectors[index]->setZero();
 | 
|---|
| 430 |       CurrentEigenvalues[index] = 0.;
 | 
|---|
| 431 |       BOOST_FOREACH( VectorValueList::value_type &iter, ParallelEigenvectorList[index] ) {
 | 
|---|
| 432 |         *CurrentEigenvectors[index] += (*iter.first) * (iter.second);
 | 
|---|
| 433 |         CurrentEigenvalues[index] += (iter.second);
 | 
|---|
| 434 |       }
 | 
|---|
| 435 |       *CurrentEigenvectors[index] *= 1./CurrentEigenvalues[index];
 | 
|---|
| 436 |       CurrentEigenvalues[index] /= (double)ParallelEigenvectorList[index].size();
 | 
|---|
| 437 |       ParallelEigenvectorList[index].clear();
 | 
|---|
| 438 |     }
 | 
|---|
| 439 | 
 | 
|---|
| 440 |     // check orthonormality
 | 
|---|
| 441 |     threshold = calculateOrthogonalityThreshold(AllIndices, CurrentEigenvectors);
 | 
|---|
| 442 |     bool dontOrthonormalization = checkOrthogonality(AllIndices, CurrentEigenvectors);
 | 
|---|
| 443 | 
 | 
|---|
| 444 |     // orthonormalize
 | 
|---|
| 445 |     if (!dontOrthonormalization) {
 | 
|---|
| 446 |       DoLog(0) && (Log() << Verbose(0) << "Orthonormalizing ... " << std::endl);
 | 
|---|
| 447 |       for (IndexSet::const_iterator firstindex = AllIndices.begin();
 | 
|---|
| 448 |           firstindex != AllIndices.end();
 | 
|---|
| 449 |           ++firstindex) {
 | 
|---|
| 450 |         for (IndexSet::const_iterator secondindex = firstindex;
 | 
|---|
| 451 |             secondindex != AllIndices.end();
 | 
|---|
| 452 |             ++secondindex) {
 | 
|---|
| 453 |           if (*firstindex == *secondindex) {
 | 
|---|
| 454 |             (*CurrentEigenvectors[*secondindex]) *= 1./(*CurrentEigenvectors[*secondindex]).Norm();
 | 
|---|
| 455 |           } else {
 | 
|---|
| 456 |             (*CurrentEigenvectors[*secondindex]) -=
 | 
|---|
| 457 |                 ((*CurrentEigenvectors[*firstindex])*(*CurrentEigenvectors[*secondindex]))
 | 
|---|
| 458 |                 *(*CurrentEigenvectors[*firstindex]);
 | 
|---|
| 459 |           }
 | 
|---|
| 460 |         }
 | 
|---|
| 461 |       }
 | 
|---|
| 462 |     }
 | 
|---|
| 463 | 
 | 
|---|
| 464 | //    // check orthonormality again
 | 
|---|
| 465 | //    checkOrthogonality(AllIndices, CurrentEigenvectors);
 | 
|---|
| 466 | 
 | 
|---|
| 467 |     // show new ones
 | 
|---|
| 468 |     DoLog(0) && (Log() << Verbose(0) << "Resulting new eigenvectors and -values, run " << run << " are:" << std::endl);
 | 
|---|
| 469 |     BOOST_FOREACH( size_t index, AllIndices) {
 | 
|---|
| 470 |       DoLog(0) && (Log() << Verbose(0) << *CurrentEigenvectors[index] << " with " << CurrentEigenvalues[index] << std::endl);
 | 
|---|
| 471 |     }
 | 
|---|
| 472 |     run++;
 | 
|---|
| 473 |   }
 | 
|---|
| 474 | 
 | 
|---|
| 475 |   delete[] ParallelEigenvectorList;
 | 
|---|
| 476 | 
 | 
|---|
| 477 |   CPPUNIT_ASSERT_EQUAL(0,0);
 | 
|---|
| 478 | }
 | 
|---|
| 479 | 
 | 
|---|
| 480 | 
 | 
|---|
| 481 | /** Iterative function to generate all power sets of indices of size \a maxelements.
 | 
|---|
| 482 |  *
 | 
|---|
| 483 |  * @param SetofSets Container for all sets
 | 
|---|
| 484 |  * @param CurrentSet pointer to current set in this container
 | 
|---|
| 485 |  * @param Indices Source set of indices
 | 
|---|
| 486 |  * @param maxelements number of elements of each set in final SetofSets
 | 
|---|
| 487 |  * @return true - generation continued, false - current set already had
 | 
|---|
| 488 |  *         \a maxelements elements
 | 
|---|
| 489 |  */
 | 
|---|
| 490 | bool generatePowerSet(
 | 
|---|
| 491 |     SetofIndexSets &SetofSets,
 | 
|---|
| 492 |     SetofIndexSets::iterator &CurrentSet,
 | 
|---|
| 493 |     IndexSet &Indices,
 | 
|---|
| 494 |     const size_t maxelements)
 | 
|---|
| 495 | {
 | 
|---|
| 496 |   if (CurrentSet->size() < maxelements) {
 | 
|---|
| 497 |     // allocate the needed sets
 | 
|---|
| 498 |     const size_t size = Indices.size() - CurrentSet->size();
 | 
|---|
| 499 |     std::vector<std::set<size_t> > SetExpanded;
 | 
|---|
| 500 |     SetExpanded.reserve(size);
 | 
|---|
| 501 | 
 | 
|---|
| 502 |     // copy the current set into each
 | 
|---|
| 503 |     for (size_t i=0;i<size;++i)
 | 
|---|
| 504 |       SetExpanded.push_back(*CurrentSet);
 | 
|---|
| 505 | 
 | 
|---|
| 506 |     // expand each set by one index
 | 
|---|
| 507 |     size_t localindex=0;
 | 
|---|
| 508 |     BOOST_FOREACH(size_t iter, Indices) {
 | 
|---|
| 509 |       if (CurrentSet->count(iter) == 0) {
 | 
|---|
| 510 |         SetExpanded[localindex].insert(iter);
 | 
|---|
| 511 |         ++localindex;
 | 
|---|
| 512 |       }
 | 
|---|
| 513 |     }
 | 
|---|
| 514 | 
 | 
|---|
| 515 |     // insert set at position of CurrentSet
 | 
|---|
| 516 |     for (size_t i=0;i<size;++i) {
 | 
|---|
| 517 |       //DoLog(1) && (Log() << Verbose(1) << "Inserting set #" << i << ": " << SetExpanded[i] << std::endl);
 | 
|---|
| 518 |       SetofSets.insert(CurrentSet, SetExpanded[i]);
 | 
|---|
| 519 |     }
 | 
|---|
| 520 |     SetExpanded.clear();
 | 
|---|
| 521 | 
 | 
|---|
| 522 |     // and remove the current set
 | 
|---|
| 523 |     //SetofSets.erase(CurrentSet);
 | 
|---|
| 524 |     //CurrentSet = SetofSets.begin();
 | 
|---|
| 525 | 
 | 
|---|
| 526 |     // set iterator to a valid position again
 | 
|---|
| 527 |     ++CurrentSet;
 | 
|---|
| 528 |     return true;
 | 
|---|
| 529 |   } else {
 | 
|---|
| 530 |     return false;
 | 
|---|
| 531 |   }
 | 
|---|
| 532 | }
 | 
|---|
| 533 | 
 | 
|---|
| 534 | void SubspaceFactorizerUnittest::generatePowerSetTest()
 | 
|---|
| 535 | {
 | 
|---|
| 536 |   IndexSet AllIndices;
 | 
|---|
| 537 |   for (size_t i=0;i<4;++i)
 | 
|---|
| 538 |     AllIndices.insert(i);
 | 
|---|
| 539 | 
 | 
|---|
| 540 |   SetofIndexSets SetofSets;
 | 
|---|
| 541 |   // note that starting off empty set is unstable
 | 
|---|
| 542 |   IndexSet singleset;
 | 
|---|
| 543 |   BOOST_FOREACH(size_t iter, AllIndices) {
 | 
|---|
| 544 |     singleset.insert(iter);
 | 
|---|
| 545 |     SetofSets.insert(singleset);
 | 
|---|
| 546 |     singleset.clear();
 | 
|---|
| 547 |   }
 | 
|---|
| 548 |   SetofIndexSets::iterator CurrentSet = SetofSets.begin();
 | 
|---|
| 549 |   while (CurrentSet != SetofSets.end()) {
 | 
|---|
| 550 |     //DoLog(0) && (Log() << Verbose(0) << "Current set is " << *CurrentSet << std::endl);
 | 
|---|
| 551 |     if (!generatePowerSet(SetofSets, CurrentSet, AllIndices, 2)) {
 | 
|---|
| 552 |       // go to next set
 | 
|---|
| 553 |       ++CurrentSet;
 | 
|---|
| 554 |     }
 | 
|---|
| 555 |   }
 | 
|---|
| 556 | 
 | 
|---|
| 557 |   SetofIndexSets ComparisonSet;
 | 
|---|
| 558 |   // now follows a very stupid construction
 | 
|---|
| 559 |   // because we can't use const arrays of some type meaningfully ...
 | 
|---|
| 560 |   { IndexSet tempSet; tempSet.insert(0); ComparisonSet.insert(tempSet); }
 | 
|---|
| 561 |   { IndexSet tempSet; tempSet.insert(1); ComparisonSet.insert(tempSet); }
 | 
|---|
| 562 |   { IndexSet tempSet; tempSet.insert(2); ComparisonSet.insert(tempSet); }
 | 
|---|
| 563 |   { IndexSet tempSet; tempSet.insert(3); ComparisonSet.insert(tempSet); }
 | 
|---|
| 564 | 
 | 
|---|
| 565 |   { IndexSet tempSet; tempSet.insert(0); tempSet.insert(1); ComparisonSet.insert(tempSet); }
 | 
|---|
| 566 |   { IndexSet tempSet; tempSet.insert(0); tempSet.insert(2); ComparisonSet.insert(tempSet); }
 | 
|---|
| 567 |   { IndexSet tempSet; tempSet.insert(0); tempSet.insert(3); ComparisonSet.insert(tempSet); }
 | 
|---|
| 568 | 
 | 
|---|
| 569 |   { IndexSet tempSet; tempSet.insert(1); tempSet.insert(2); ComparisonSet.insert(tempSet); }
 | 
|---|
| 570 |   { IndexSet tempSet; tempSet.insert(1); tempSet.insert(3); ComparisonSet.insert(tempSet); }
 | 
|---|
| 571 | 
 | 
|---|
| 572 |   { IndexSet tempSet; tempSet.insert(2); tempSet.insert(3); ComparisonSet.insert(tempSet); }
 | 
|---|
| 573 | 
 | 
|---|
| 574 |   CPPUNIT_ASSERT_EQUAL(SetofSets, ComparisonSet);
 | 
|---|
| 575 | }
 | 
|---|
| 576 | 
 | 
|---|
| 577 | bool cmd(double a, double b)
 | 
|---|
| 578 | {
 | 
|---|
| 579 |   return a > b;
 | 
|---|
| 580 | }
 | 
|---|
| 581 | 
 | 
|---|
| 582 | void SubspaceFactorizerUnittest::SubspaceTest()
 | 
|---|
| 583 | {
 | 
|---|
| 584 |   Eigenspace::eigenvectorset CurrentEigenvectors;
 | 
|---|
| 585 |   Eigenspace::eigenvalueset CurrentEigenvalues;
 | 
|---|
| 586 | 
 | 
|---|
| 587 |   setVerbosity(0);
 | 
|---|
| 588 | 
 | 
|---|
| 589 |   boost::timer Time_generatingfullspace;
 | 
|---|
| 590 |   DoLog(0) && (Log() << Verbose(0) << std::endl << std::endl);
 | 
|---|
| 591 |   // create the total index set
 | 
|---|
| 592 |   IndexSet AllIndices;
 | 
|---|
| 593 |   for (size_t i=0;i<matrixdimension;++i)
 | 
|---|
| 594 |     AllIndices.insert(i);
 | 
|---|
| 595 |   Eigenspace FullSpace(AllIndices, *matrix);
 | 
|---|
| 596 |   DoLog(1) && (Log() << Verbose(1) << "Generated full space: " << FullSpace << std::endl);
 | 
|---|
| 597 |   DoLog(0) && (Log() << Verbose(0) << "Full space generation took " << Time_generatingfullspace.elapsed() << " seconds." << std::endl);
 | 
|---|
| 598 | 
 | 
|---|
| 599 |   // generate first set of eigenvectors
 | 
|---|
| 600 |   // set to first guess, i.e. the unit vectors of R^matrixdimension
 | 
|---|
| 601 |   BOOST_FOREACH( size_t index, AllIndices) {
 | 
|---|
| 602 |     boost::shared_ptr<VectorContent> EV(new VectorContent(matrixdimension));
 | 
|---|
| 603 |     EV->setZero();
 | 
|---|
| 604 |     EV->at(index) = 1.;
 | 
|---|
| 605 |     CurrentEigenvectors.push_back(EV);
 | 
|---|
| 606 |     CurrentEigenvalues.push_back(0.);
 | 
|---|
| 607 |   }
 | 
|---|
| 608 | 
 | 
|---|
| 609 |   boost::timer Time_generatingsubsets;
 | 
|---|
| 610 |   DoLog(0) && (Log() << Verbose(0) << "Generating sub sets ..." << std::endl);
 | 
|---|
| 611 |   SetofIndexSets SetofSets;
 | 
|---|
| 612 |   // note that starting off empty set is unstable
 | 
|---|
| 613 |   IndexSet singleset;
 | 
|---|
| 614 |   BOOST_FOREACH(size_t iter, AllIndices) {
 | 
|---|
| 615 |     singleset.insert(iter);
 | 
|---|
| 616 |     SetofSets.insert(singleset);
 | 
|---|
| 617 |     singleset.clear();
 | 
|---|
| 618 |   }
 | 
|---|
| 619 |   SetofIndexSets::iterator CurrentSet = SetofSets.begin();
 | 
|---|
| 620 |   while (CurrentSet != SetofSets.end()) {
 | 
|---|
| 621 |     //DoLog(2) && (Log() << Verbose(2) << "Current set is " << *CurrentSet << std::endl);
 | 
|---|
| 622 |     if (!generatePowerSet(SetofSets, CurrentSet, AllIndices, subspacelimit)) {
 | 
|---|
| 623 |       // go to next set
 | 
|---|
| 624 |       ++CurrentSet;
 | 
|---|
| 625 |     }
 | 
|---|
| 626 |   }
 | 
|---|
| 627 |   DoLog(0) && (Log() << Verbose(0) << "Sub set generation took " << Time_generatingsubsets.elapsed() << " seconds." << std::endl);
 | 
|---|
| 628 | 
 | 
|---|
| 629 |   // create a subspace to each set and and to respective level
 | 
|---|
| 630 |   boost::timer Time_generatingsubspaces;
 | 
|---|
| 631 |   DoLog(0) && (Log() << Verbose(0) << "Generating sub spaces ..." << std::endl);
 | 
|---|
| 632 |   SubspaceMap Dimension_to_Indexset;
 | 
|---|
| 633 |   BOOST_FOREACH(std::set<size_t> iter, SetofSets) {
 | 
|---|
| 634 |     boost::shared_ptr<Subspace> subspace(new Subspace(iter, FullSpace));
 | 
|---|
| 635 |     DoLog(1) && (Log() << Verbose(1) << "Current subspace is " << *subspace << std::endl);
 | 
|---|
| 636 |     Dimension_to_Indexset.insert( make_pair(iter.size(), boost::shared_ptr<Subspace>(subspace)) );
 | 
|---|
| 637 |   }
 | 
|---|
| 638 | 
 | 
|---|
| 639 |   for (size_t dim = 1; dim<=subspacelimit;++dim) {
 | 
|---|
| 640 |     BOOST_FOREACH( SubspaceMap::value_type subspace, Dimension_to_Indexset.equal_range(dim)) {
 | 
|---|
| 641 |       if (dim != 0) { // from level 1 and onward
 | 
|---|
| 642 |         BOOST_FOREACH( SubspaceMap::value_type entry, Dimension_to_Indexset.equal_range(dim-1)) {
 | 
|---|
| 643 |           if (subspace.second->contains(*entry.second)) {
 | 
|---|
| 644 |             // if contained then add ...
 | 
|---|
| 645 |             subspace.second->addSubset(entry.second);
 | 
|---|
| 646 |             // ... and also its containees as they are all automatically contained as well
 | 
|---|
| 647 |             BOOST_FOREACH(boost::shared_ptr<Subspace> iter, entry.second->SubIndices) {
 | 
|---|
| 648 |               subspace.second->addSubset(iter);
 | 
|---|
| 649 |             }
 | 
|---|
| 650 |           }
 | 
|---|
| 651 |         }
 | 
|---|
| 652 |       }
 | 
|---|
| 653 |     }
 | 
|---|
| 654 |   }
 | 
|---|
| 655 |   DoLog(0) && (Log() << Verbose(0) << "Sub space generation took " << Time_generatingsubspaces.elapsed() << " seconds." << std::endl);
 | 
|---|
| 656 | 
 | 
|---|
| 657 |   // create a file handle for the eigenvalues
 | 
|---|
| 658 |   std::ofstream outputvalues("eigenvalues.dat", std::ios_base::trunc);
 | 
|---|
| 659 |   ASSERT(outputvalues.good(),
 | 
|---|
| 660 |       "SubspaceFactorizerUnittest::EigenvectorTest() - failed to open eigenvalue file!");
 | 
|---|
| 661 |   outputvalues << "# iteration ";
 | 
|---|
| 662 |   BOOST_FOREACH(size_t iter, AllIndices) {
 | 
|---|
| 663 |     outputvalues << "\teigenvalue" << iter;
 | 
|---|
| 664 |   }
 | 
|---|
| 665 |   outputvalues << std::endl;
 | 
|---|
| 666 | 
 | 
|---|
| 667 |   DoLog(0) && (Log() << Verbose(0) << "Solving ..." << std::endl);
 | 
|---|
| 668 |   boost::timer Time_solving;
 | 
|---|
| 669 |   size_t run=1; // counting iterations
 | 
|---|
| 670 |   double threshold = 1.;  // containing threshold value
 | 
|---|
| 671 |   while ((threshold > MYEPSILON) && (run < 20)) {
 | 
|---|
| 672 |     // for every dimension
 | 
|---|
| 673 |     for (size_t dim = 1; dim <= subspacelimit;++dim) {
 | 
|---|
| 674 |       // for every index set of this dimension
 | 
|---|
| 675 |       DoLog(1) && (Log() << Verbose(1) << std::endl << std::endl);
 | 
|---|
| 676 |       DoLog(1) && (Log() << Verbose(1) << "Current dimension is " << dim << std::endl);
 | 
|---|
| 677 |       std::pair<SubspaceMap::const_iterator,SubspaceMap::const_iterator> Bounds = Dimension_to_Indexset.equal_range(dim);
 | 
|---|
| 678 |       for (SubspaceMap::const_iterator IndexsetIter = Bounds.first;
 | 
|---|
| 679 |           IndexsetIter != Bounds.second;
 | 
|---|
| 680 |           ++IndexsetIter) {
 | 
|---|
| 681 |         Subspace& subspace = *(IndexsetIter->second);
 | 
|---|
| 682 |         // show the index set
 | 
|---|
| 683 |         DoLog(2) && (Log() << Verbose(2) << std::endl);
 | 
|---|
| 684 |         DoLog(2) && (Log() << Verbose(2) << "Current subspace is " << subspace << std::endl);
 | 
|---|
| 685 | 
 | 
|---|
| 686 |         // solve
 | 
|---|
| 687 |         subspace.calculateEigenSubspace();
 | 
|---|
| 688 | 
 | 
|---|
| 689 |         // note that assignment to global eigenvectors all remains within subspace
 | 
|---|
| 690 |       }
 | 
|---|
| 691 |     }
 | 
|---|
| 692 | 
 | 
|---|
| 693 |     // print list of similar eigenvectors
 | 
|---|
| 694 |     DoLog(2) && (Log() << Verbose(2) << std::endl);
 | 
|---|
| 695 |     BOOST_FOREACH( size_t index, AllIndices) {
 | 
|---|
| 696 |       DoLog(2) && (Log() << Verbose(2) << "Similar to " << index << "th current eigenvector " << *(CurrentEigenvectors[index]) << " are:" << std::endl);
 | 
|---|
| 697 |       BOOST_FOREACH( SubspaceMap::value_type iter, Dimension_to_Indexset) {
 | 
|---|
| 698 |         const VectorContent & CurrentEV = (iter.second)->getEigenvectorParallelToFullOne(index);
 | 
|---|
| 699 |         if (!CurrentEV.IsZero())
 | 
|---|
| 700 |           Log() << Verbose(2)
 | 
|---|
| 701 |           << "dim" << iter.first
 | 
|---|
| 702 |           << ", subspace{" << (iter.second)->getIndices()
 | 
|---|
| 703 |           << "}: "<<CurrentEV << std::endl;
 | 
|---|
| 704 |       }
 | 
|---|
| 705 |       DoLog(2) && (Log() << Verbose(2) << std::endl);
 | 
|---|
| 706 |     }
 | 
|---|
| 707 | 
 | 
|---|
| 708 |     // create new CurrentEigenvectors from averaging parallel ones.
 | 
|---|
| 709 |     BOOST_FOREACH(size_t index, AllIndices) {
 | 
|---|
| 710 |       CurrentEigenvectors[index]->setZero();
 | 
|---|
| 711 |       CurrentEigenvalues[index] = 0.;
 | 
|---|
| 712 |       size_t count = 0;
 | 
|---|
| 713 |       BOOST_FOREACH( SubspaceMap::value_type iter, Dimension_to_Indexset) {
 | 
|---|
| 714 |         const VectorContent CurrentEV = (iter.second)->getEigenvectorParallelToFullOne(index);
 | 
|---|
| 715 |         *CurrentEigenvectors[index] += CurrentEV; // * (iter.second)->getEigenvalueOfEigenvectorParallelToFullOne(index);
 | 
|---|
| 716 |         CurrentEigenvalues[index] += (iter.second)->getEigenvalueOfEigenvectorParallelToFullOne(index);
 | 
|---|
| 717 |         if (!CurrentEV.IsZero())
 | 
|---|
| 718 |           count++;
 | 
|---|
| 719 |       }
 | 
|---|
| 720 |       *CurrentEigenvectors[index] *= 1./CurrentEigenvalues[index];
 | 
|---|
| 721 |       //CurrentEigenvalues[index] /= (double)count;
 | 
|---|
| 722 |     }
 | 
|---|
| 723 | 
 | 
|---|
| 724 |     // check orthonormality
 | 
|---|
| 725 |     threshold = calculateOrthogonalityThreshold(AllIndices, CurrentEigenvectors);
 | 
|---|
| 726 |     bool dontOrthonormalization = checkOrthogonality(AllIndices, CurrentEigenvectors);
 | 
|---|
| 727 | 
 | 
|---|
| 728 |     // orthonormalize
 | 
|---|
| 729 |     if (!dontOrthonormalization) {
 | 
|---|
| 730 |       DoLog(1) && (Log() << Verbose(1) << "Orthonormalizing ... " << std::endl);
 | 
|---|
| 731 |       for (IndexSet::const_iterator firstindex = AllIndices.begin();
 | 
|---|
| 732 |           firstindex != AllIndices.end();
 | 
|---|
| 733 |           ++firstindex) {
 | 
|---|
| 734 |         for (IndexSet::const_iterator secondindex = firstindex;
 | 
|---|
| 735 |             secondindex != AllIndices.end();
 | 
|---|
| 736 |             ++secondindex) {
 | 
|---|
| 737 |           if (*firstindex == *secondindex) {
 | 
|---|
| 738 |             (*CurrentEigenvectors[*secondindex]) *= 1./(*CurrentEigenvectors[*secondindex]).Norm();
 | 
|---|
| 739 |           } else {
 | 
|---|
| 740 |             (*CurrentEigenvectors[*secondindex]) -=
 | 
|---|
| 741 |                 ((*CurrentEigenvectors[*firstindex])*(*CurrentEigenvectors[*secondindex]))
 | 
|---|
| 742 |                 *(*CurrentEigenvectors[*firstindex]);
 | 
|---|
| 743 |           }
 | 
|---|
| 744 |         }
 | 
|---|
| 745 |       }
 | 
|---|
| 746 |     }
 | 
|---|
| 747 | 
 | 
|---|
| 748 | //    // check orthonormality again
 | 
|---|
| 749 | //    checkOrthogonality(AllIndices, CurrentEigenvectors);
 | 
|---|
| 750 | 
 | 
|---|
| 751 |     // put obtained eigenvectors into full space
 | 
|---|
| 752 |     FullSpace.setEigenpairs(CurrentEigenvectors, CurrentEigenvalues);
 | 
|---|
| 753 | 
 | 
|---|
| 754 |     // show new ones
 | 
|---|
| 755 |     DoLog(1) && (Log() << Verbose(1) << "Resulting new eigenvectors and -values, run " << run << " are:" << std::endl);
 | 
|---|
| 756 |     outputvalues << run;
 | 
|---|
| 757 |     BOOST_FOREACH( size_t index, AllIndices) {
 | 
|---|
| 758 |       DoLog(1) && (Log() << Verbose(1) << *CurrentEigenvectors[index] << " with " << CurrentEigenvalues[index] << std::endl);
 | 
|---|
| 759 |       outputvalues << "\t" << CurrentEigenvalues[index];
 | 
|---|
| 760 |     }
 | 
|---|
| 761 |     outputvalues << std::endl;
 | 
|---|
| 762 | 
 | 
|---|
| 763 |     // and next iteration
 | 
|---|
| 764 |     DoLog(0) && (Log() << Verbose(0) << "\titeration #" << run << std::endl);
 | 
|---|
| 765 |     run++;
 | 
|---|
| 766 |   }
 | 
|---|
| 767 |   DoLog(0) && (Log() << Verbose(0) << "Solving took " << Time_solving.elapsed() << " seconds." << std::endl);
 | 
|---|
| 768 |   // show final ones
 | 
|---|
| 769 |   DoLog(0) && (Log() << Verbose(0) << "Resulting new eigenvectors and -values, run " << run << " are:" << std::endl);
 | 
|---|
| 770 |   outputvalues << run;
 | 
|---|
| 771 |   BOOST_FOREACH( size_t index, AllIndices) {
 | 
|---|
| 772 |     DoLog(0) && (Log() << Verbose(0) << *CurrentEigenvectors[index] << " with " << CurrentEigenvalues[index] << std::endl);
 | 
|---|
| 773 |     outputvalues << "\t" << CurrentEigenvalues[index];
 | 
|---|
| 774 |   }
 | 
|---|
| 775 |   outputvalues << std::endl;
 | 
|---|
| 776 |   outputvalues.close();
 | 
|---|
| 777 | 
 | 
|---|
| 778 |   setVerbosity(2);
 | 
|---|
| 779 | 
 | 
|---|
| 780 |   DoLog(0) && (Log() << Verbose(0) << "Solving full space ..." << std::endl);
 | 
|---|
| 781 |   boost::timer Time_comparison;
 | 
|---|
| 782 |   MatrixContent tempFullspaceMatrix = FullSpace.getEigenspaceMatrix();
 | 
|---|
| 783 |   gsl_vector *eigenvalues = tempFullspaceMatrix.transformToEigenbasis();
 | 
|---|
| 784 |   tempFullspaceMatrix.sortEigenbasis(eigenvalues);
 | 
|---|
| 785 |   DoLog(0) && (Log() << Verbose(0) << "full space solution took " << Time_comparison.elapsed() << " seconds." << std::endl);
 | 
|---|
| 786 | 
 | 
|---|
| 787 |   // compare all
 | 
|---|
| 788 |   sort(CurrentEigenvalues.begin(),CurrentEigenvalues.end()); //, cmd);
 | 
|---|
| 789 |   for (size_t i=0;i<eigenvalues->size; ++i) {
 | 
|---|
| 790 |     CPPUNIT_ASSERT_MESSAGE(toString(i)+"ths eigenvalue differs:"
 | 
|---|
| 791 |         +toString(CurrentEigenvalues[i])+" != "+toString(gsl_vector_get(eigenvalues,i)),
 | 
|---|
| 792 |         fabs((CurrentEigenvalues[i] - gsl_vector_get(eigenvalues,i))/CurrentEigenvalues[i]) < 1e-3);
 | 
|---|
| 793 |   }
 | 
|---|
| 794 | 
 | 
|---|
| 795 |   CPPUNIT_ASSERT_EQUAL(0,0);
 | 
|---|
| 796 | }
 | 
|---|