| 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 |  * VectorContent.cpp
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| 10 |  *
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| 11 |  *  Created on: Nov 15, 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 "Helpers/MemDebug.hpp"
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| 21 | 
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| 22 | #include <gsl/gsl_vector.h>
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| 23 | #include <cmath>
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| 24 | #include <iostream>
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| 25 | 
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| 26 | #include "Helpers/Assert.hpp"
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| 27 | #include "LinearAlgebra/Vector.hpp"
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| 28 | #include "LinearAlgebra/VectorContent.hpp"
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| 29 | 
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| 30 | /** Constructor of class VectorContent.
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| 31 |  * Allocates GSL structures
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| 32 |  * \param _dim number of components
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| 33 |  */
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| 34 | VectorContent::VectorContent(size_t _dim) :
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| 35 |     dimension(_dim)
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| 36 | {
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| 37 |   content = gsl_vector_calloc(dimension);
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| 38 | }
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| 39 | 
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| 40 | /** Constructor of class VectorContent.
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| 41 |  * We need this VectorBaseCase for the VectorContentView class.
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| 42 |  * There no content should be allocated, as it is just a view with an internal
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| 43 |  * gsl_vector_view. Hence, VectorBaseCase is just dummy class to give the
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| 44 |  * constructor a unique signature.
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| 45 |  * \param VectorBaseCase
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| 46 |  */
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| 47 | VectorContent::VectorContent(VectorBaseCase)
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| 48 | {}
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| 49 | 
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| 50 | /** Copy constructor of class VectorContent.
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| 51 |  * Allocates GSL structures and copies components from \a *src.
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| 52 |  * \param *src source vector
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| 53 |  */
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| 54 | VectorContent::VectorContent(const VectorContent * const src) :
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| 55 |     dimension(src->dimension)
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| 56 | {
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| 57 |   content = gsl_vector_alloc(dimension);
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| 58 |   gsl_vector_memcpy (content, src->content);
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| 59 | };
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| 60 | 
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| 61 | /** Copy constructor of class VectorContent.
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| 62 |  * Allocates GSL structures and copies components from \a *src.
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| 63 |  * \param *src source vector
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| 64 |  */
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| 65 | VectorContent::VectorContent(const VectorContent & src) :
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| 66 |     dimension(src.dimension)
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| 67 | {
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| 68 |   content = gsl_vector_alloc(dimension);
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| 69 |   gsl_vector_memcpy (content, src.content);
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| 70 | };
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| 71 | 
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| 72 | /** Destructor of class VectorContent.
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| 73 |  * Frees GSL structures
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| 74 |  */
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| 75 | VectorContent::~VectorContent()
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| 76 | {
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| 77 |   if(content != NULL){
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| 78 |     gsl_vector_free(content);
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| 79 |     content = NULL;
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| 80 |   }
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| 81 | }
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| 82 | 
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| 83 | /* ============================ Accessing =============================== */
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| 84 | /** Accessor for manipulating component (i).
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| 85 |  * \param i component number
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| 86 |  * \return reference to component (i)
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| 87 |  */
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| 88 | double &VectorContent::at(size_t i)
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| 89 | {
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| 90 |   ASSERT((i>=0) && (i<dimension),
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| 91 |       "VectorContent::at() - Index i="+toString(i)+" for Matrix access out of range [0,"+toString(dimension)+"]");
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| 92 |   return *gsl_vector_ptr (content, i);
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| 93 | }
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| 94 | 
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| 95 | /** Constant accessor for (value of) component (i).
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| 96 |  * \param i component number
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| 97 |  * \return const component (i)
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| 98 |  */
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| 99 | const double VectorContent::at(size_t i) const
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| 100 | {
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| 101 |   ASSERT((i>=0) && (i<dimension),
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| 102 |       "VectorContent::at() - Index i="+toString(i)+" for Matrix access out of range [0,"+toString(dimension)+"]");
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| 103 |   return gsl_vector_get(content, i);
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| 104 | }
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| 105 | 
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| 106 | /** These functions return a pointer to the \a m-th element of a vector.
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| 107 |  *  If \a m lies outside the allowed range of 0 to VectorContent::dimension-1 then the error handler is invoked and a null pointer is returned.
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| 108 |  * \param m m-th element
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| 109 |  * \return pointer to \a m-th element
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| 110 |  */
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| 111 | double *VectorContent::Pointer(size_t m) const
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| 112 | {
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| 113 |   return gsl_vector_ptr (content, m);
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| 114 | };
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| 115 | 
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| 116 | /** These functions return a constant pointer to the \a m-th element of a vector.
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| 117 |  *  If \a m lies outside the allowed range of 0 to VectorContent::dimension-1 then the error handler is invoked and a null pointer is returned.
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| 118 |  * \param m m-th element
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| 119 |  * \return const pointer to \a m-th element
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| 120 |  */
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| 121 | const double *VectorContent::const_Pointer(size_t m) const
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| 122 | {
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| 123 |   return gsl_vector_const_ptr (content, m);
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| 124 | };
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| 125 | 
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| 126 | /** Assignment operator.
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| 127 |  * \param &src source vector to assign \a *this to
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| 128 |  * \return reference to \a *this
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| 129 |  */
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| 130 | VectorContent& VectorContent::operator=(const VectorContent& src)
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| 131 | {
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| 132 |   ASSERT(dimension == src.dimension, "Dimensions have to be the same to assign VectorContent onto another!");
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| 133 |   // check for self assignment
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| 134 |   if(&src!=this){
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| 135 |     gsl_vector_memcpy(content, src.content);
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| 136 |   }
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| 137 |   return *this;
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| 138 | }
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| 139 | 
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| 140 | /* ========================== Initializing =============================== */
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| 141 | /** This function sets all the elements of the vector to the value \a x.
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| 142 |  * \param x value to set to
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| 143 |  */
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| 144 | void VectorContent::setValue(double x)
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| 145 | {
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| 146 |   gsl_vector_set_all (content, x);
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| 147 | };
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| 148 | 
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| 149 | /** This function sets the vector from a double array.
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| 150 |  * Creates a vector view of the array and performs a memcopy.
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| 151 |  * \param *x array of values (no dimension check is performed)
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| 152 |  */
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| 153 | void VectorContent::setFromDoubleArray(double * x)
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| 154 | {
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| 155 |   gsl_vector_view m = gsl_vector_view_array (x, dimension);
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| 156 |   gsl_vector_memcpy (content, &m.vector);
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| 157 | };
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| 158 | 
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| 159 | /**
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| 160 |  * This function sets the GSLvector from an ordinary vector.
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| 161 |  *
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| 162 |  * Takes access to the internal gsl_vector and copies it
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| 163 |  */
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| 164 | void VectorContent::setFromVector(Vector &v)
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| 165 | {
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| 166 |   gsl_vector_memcpy (content, v.get()->content);
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| 167 | }
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| 168 | 
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| 169 | /** This function sets all the elements of the vector to zero.
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| 170 |  */
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| 171 | void VectorContent::setZero()
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| 172 | {
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| 173 |   gsl_vector_set_zero (content);
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| 174 | };
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| 175 | 
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| 176 | /** This function makes a basis vector by setting all the elements of the vector to zero except for the i-th element which is set to one.
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| 177 |  * \param i i-th component to set to unity (all other to zero)
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| 178 |  * \return vector set
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| 179 |  */
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| 180 | int VectorContent::setBasis(size_t i)
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| 181 | {
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| 182 |   return gsl_vector_set_basis (content, i);
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| 183 | };
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| 184 | 
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| 185 | /* ====================== Exchanging elements ============================ */
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| 186 | /** This function exchanges the \a i-th and \a j-th elements of the vector in-place.
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| 187 |  * \param i i-th element to swap with ...
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| 188 |  * \param j ... j-th element to swap against
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| 189 |  */
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| 190 | int VectorContent::SwapElements(size_t i, size_t j)
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| 191 | {
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| 192 |   return gsl_vector_swap_elements (content, i, j);
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| 193 | };
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| 194 | 
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| 195 | /** This function reverses the order of the elements of the vector.
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| 196 |  */
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| 197 | int VectorContent::Reverse()
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| 198 | {
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| 199 |   return gsl_vector_reverse (content);
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| 200 | };
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| 201 | 
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| 202 | 
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| 203 | /* ========================== Operators =============================== */
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| 204 | /** Accessor for manipulating component (i).
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| 205 |  * \param i component number
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| 206 |  * \return reference to component (i)
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| 207 |  */
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| 208 | double &VectorContent::operator[](size_t i)
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| 209 | {
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| 210 |   ASSERT((i>=0) && (i<dimension),
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| 211 |       "VectorContent::operator[]() - Index i="+toString(i)+" for Matrix access out of range [0,"+toString(dimension)+"]");
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| 212 |   return *gsl_vector_ptr (content, i);
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| 213 | }
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| 214 | 
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| 215 | /** Constant accessor for (value of) component (i).
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| 216 |  * \param i component number
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| 217 |  * \return const component (i)
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| 218 |  */
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| 219 | const double VectorContent::operator[](size_t i) const
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| 220 | {
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| 221 |   ASSERT((i>=0) && (i<dimension),
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| 222 |       "VectorContent::operator[]() - Index i="+toString(i)+" for Matrix access out of range [0,"+toString(dimension)+"]");
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| 223 |   return gsl_vector_get(content, i);
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| 224 | }
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| 225 | 
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| 226 | 
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| 227 | /** Compares VectorContent \a to VectorContent \a b component-wise.
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| 228 |  * \param a base VectorContent
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| 229 |  * \param b VectorContent components to add
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| 230 |  * \return a == b
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| 231 |  */
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| 232 | bool VectorContent::operator==(const VectorContent& b) const
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| 233 | {
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| 234 |   bool status = true;
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| 235 |   ASSERT(dimension == b.dimension, "Dimenions of VectorContents to compare differ");
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| 236 |   for (size_t i=0;i<dimension;i++)
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| 237 |     status = status && (fabs(at(i) - b.at(i)) < MYEPSILON);
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| 238 |   return status;
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| 239 | };
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| 240 | 
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| 241 | /** Sums VectorContent \a to this lhs component-wise.
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| 242 |  * \param a base VectorContent
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| 243 |  * \param b VectorContent components to add
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| 244 |  * \return lhs + a
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| 245 |  */
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| 246 | const VectorContent& VectorContent::operator+=(const VectorContent& b)
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| 247 | {
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| 248 |   ASSERT(dimension == b.dimension, "Dimenions of VectorContents to compare differ");
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| 249 |   for (size_t i=0;i<dimension;i++)
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| 250 |     at(i) = at(i)+b.at(i);
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| 251 |   return *this;
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| 252 | };
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| 253 | 
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| 254 | /** Subtracts VectorContent \a from this lhs component-wise.
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| 255 |  * \param a base VectorContent
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| 256 |  * \param b VectorContent components to add
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| 257 |  * \return lhs - a
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| 258 |  */
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| 259 | const VectorContent& VectorContent::operator-=(const VectorContent& b)
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| 260 | {
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| 261 |   ASSERT(dimension == b.dimension, "Dimenions of VectorContents to compare differ");
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| 262 |   for (size_t i=0;i<dimension;i++)
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| 263 |     at(i) = at(i)-b.at(i);
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| 264 |   return *this;
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| 265 | };
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| 266 | 
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| 267 | /** factor each component of \a a times a double \a m.
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| 268 |  * \param a base VectorContent
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| 269 |  * \param m factor
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| 270 |  * \return lhs.Get(i) * m
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| 271 |  */
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| 272 | const VectorContent& VectorContent::operator*=(const double m)
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| 273 | {
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| 274 |   for (size_t i=0;i<dimension;i++)
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| 275 |     at(i) = at(i)*m;
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| 276 |   return *this;
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| 277 | };
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| 278 | 
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| 279 | /** Sums two VectorContents \a  and \b component-wise.
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| 280 |  * \param a first VectorContent
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| 281 |  * \param b second VectorContent
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| 282 |  * \return a + b
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| 283 |  */
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| 284 | VectorContent const operator+(const VectorContent& a, const VectorContent& b)
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| 285 | {
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| 286 |   ASSERT(a.dimension == b.dimension, "VectorContent::operator+() - dimensions have to match: "+toString(a.dimension)+" != "+toString(b.dimension)+"!");
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| 287 |   VectorContent x(a);
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| 288 |   for (size_t i=0;i<a.dimension;i++)
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| 289 |     x.at(i) = a.at(i)+b.at(i);
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| 290 |   return x;
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| 291 | };
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| 292 | 
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| 293 | /** Subtracts VectorContent \a from \b component-wise.
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| 294 |  * \param a first VectorContent
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| 295 |  * \param b second VectorContent
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| 296 |  * \return a - b
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| 297 |  */
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| 298 | VectorContent const operator-(const VectorContent& a, const VectorContent& b)
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| 299 | {
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| 300 |   ASSERT(a.dimension == b.dimension, "VectorContent::operator-() - dimensions have to match: "+toString(a.dimension)+" != "+toString(b.dimension)+"!");
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| 301 |   VectorContent x(a);
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| 302 |   for (size_t i=0;i<a.dimension;i++)
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| 303 |     x.at(i) = a.at(i)-b.at(i);
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| 304 |   return x;
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| 305 | };
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| 306 | 
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| 307 | /** Factors given VectorContent \a a times \a m.
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| 308 |  * \param a VectorContent
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| 309 |  * \param m factor
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| 310 |  * \return m * a
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| 311 |  */
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| 312 | VectorContent const operator*(const VectorContent& a, const double m)
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| 313 | {
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| 314 |   VectorContent x(a);
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| 315 |   for (size_t i=0;i<a.dimension;i++)
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| 316 |     x.at(i) = a.at(i)*m;
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| 317 |   return x;
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| 318 | };
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| 319 | 
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| 320 | /** Factors given VectorContent \a a times \a m.
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| 321 |  * \param m factor
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| 322 |  * \param a VectorContent
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| 323 |  * \return m * a
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| 324 |  */
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| 325 | VectorContent const operator*(const double m, const VectorContent& a )
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| 326 | {
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| 327 |   VectorContent x(a);
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| 328 |   for (size_t i=0;i<a.dimension;i++)
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| 329 |     x.at(i) = a.at(i)*m;
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| 330 |   return x;
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| 331 | };
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| 332 | 
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| 333 | ostream& operator<<(ostream& ost, const VectorContent& m)
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| 334 | {
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| 335 |   ost << "(";
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| 336 |   for (size_t i=0;i<m.dimension;i++) {
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| 337 |     ost << m.at(i);
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| 338 |     if (i != 2)
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| 339 |       ost << ",";
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| 340 |   }
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| 341 |   ost << ")";
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| 342 |   return ost;
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| 343 | };
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| 344 | 
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| 345 | /* ====================== Checking State ============================ */
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| 346 | /** Checks whether vector has all components zero.
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| 347 |  * TODO: This might see some numerical instabilities for huge dimension and small number.
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| 348 |  * For stability one should sort the order of summing!
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| 349 |  * @return true - vector is zero, false - vector is not
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| 350 |  */
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| 351 | bool VectorContent::IsZero() const
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| 352 | {
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| 353 |   double result = 0.;
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| 354 |   for (size_t i = dimension; i--; )
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| 355 |     result += fabs(at(i));
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| 356 |   return (result < MYEPSILON);
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| 357 | };
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| 358 | 
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| 359 | /** Checks whether vector has length of 1.
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| 360 |  * @return true - vector is normalized, false - vector is not
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| 361 |  */
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| 362 | bool VectorContent::IsOne() const
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| 363 | {
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| 364 |   double NormValue = 0.;
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| 365 |   for (size_t i=dimension;--i;)
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| 366 |     NormValue += at(i)*at(i);
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| 367 |   return (fabs(NormValue - 1.) < MYEPSILON);
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| 368 | };
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| 369 | 
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