| [bcf653] | 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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| [edb93c] | 8 | /** \file linkedcell.cpp
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 | 9 |  *
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 | 10 |  * Function implementations for the class LinkedCell.
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 | 11 |  *
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 | 12 |  */
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 | 13 | 
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| [bf3817] | 14 | // include config.h
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 | 15 | #ifdef HAVE_CONFIG_H
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 | 16 | #include <config.h>
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 | 17 | #endif
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 | 18 | 
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| [112b09] | 19 | #include "Helpers/MemDebug.hpp"
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| [edb93c] | 20 | 
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| [f66195] | 21 | #include "atom.hpp"
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| [952f38] | 22 | #include "Helpers/helpers.hpp"
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| [e1bc68] | 23 | #include "linkedcell.hpp"
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| [952f38] | 24 | #include "Helpers/Verbose.hpp"
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 | 25 | #include "Helpers/Log.hpp"
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| [cee0b57] | 26 | #include "molecule.hpp"
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| [af2c424] | 27 | #include "PointCloud.hpp"
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| [357fba] | 28 | #include "tesselation.hpp"
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| [57f243] | 29 | #include "LinearAlgebra/Vector.hpp"
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| [357fba] | 30 | 
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 | 31 | // ========================================================= class LinkedCell ===========================================
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 | 32 | 
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| [af2c424] | 33 | /** Constructor for class LinkedCell::LinkedNodes.
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 | 34 |  */
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 | 35 | LinkedCell::LinkedNodes::LinkedNodes()
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 | 36 | {}
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 | 37 | 
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 | 38 | /** Destructor for class LinkedCell::LinkedNodes.
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 | 39 |  */
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 | 40 | LinkedCell::LinkedNodes::~LinkedNodes()
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 | 41 | {}
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 | 42 | 
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 | 43 | TesselPoint * LinkedCell::LinkedNodes::getValue (const_iterator &rhs) const
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 | 44 | {
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 | 45 |   return *rhs;
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 | 46 | }
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 | 47 | 
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 | 48 | TesselPoint * LinkedCell::LinkedNodes::getValue (iterator &rhs) const
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 | 49 | {
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 | 50 |   return *rhs;
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 | 51 | }
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| [e1bc68] | 52 | 
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 | 53 | /** Constructor for class LinkedCell.
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 | 54 |  */
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| [97b825] | 55 | LinkedCell::LinkedCell() :
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 | 56 |   LC(NULL),
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| [ff58f1] | 57 |   RADIUS(0.),
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 | 58 |   index(-1)
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| [e1bc68] | 59 | {
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| [042f82] | 60 |   for(int i=0;i<NDIM;i++)
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 | 61 |     N[i] = 0;
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 | 62 |   max.Zero();
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 | 63 |   min.Zero();
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| [e1bc68] | 64 | };
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 | 65 | 
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 | 66 | /** Puts all atoms in \a *mol into a linked cell list with cell's lengths of \a RADIUS
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| [357fba] | 67 |  * \param *set LCNodeSet class with all LCNode's
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| [e1bc68] | 68 |  * \param RADIUS edge length of cells
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 | 69 |  */
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| [af2c424] | 70 | LinkedCell::LinkedCell(const PointCloud & set, const double radius) :
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| [97b825] | 71 |   LC(NULL),
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| [ff58f1] | 72 |   RADIUS(radius),
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| [97b825] | 73 |   index(-1)
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| [e1bc68] | 74 | {
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| [357fba] | 75 |   TesselPoint *Walker = NULL;
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| [e1bc68] | 76 | 
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| [042f82] | 77 |   for(int i=0;i<NDIM;i++)
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 | 78 |     N[i] = 0;
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 | 79 |   max.Zero();
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 | 80 |   min.Zero();
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| [a67d19] | 81 |   DoLog(1) && (Log() << Verbose(1) << "Begin of LinkedCell" << endl);
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| [af2c424] | 82 |   if (set.IsEmpty()) {
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| [58ed4a] | 83 |     DoeLog(1) && (eLog()<< Verbose(1) << "set is NULL or contains no linked cell nodes!" << endl);
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| [042f82] | 84 |     return;
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 | 85 |   }
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 | 86 |   // 1. find max and min per axis of atoms
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| [af2c424] | 87 |   set.GoToFirst();
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 | 88 |   Walker = set.GetPoint();
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| [042f82] | 89 |   for (int i=0;i<NDIM;i++) {
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| [d74077] | 90 |     max[i] = Walker->at(i);
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 | 91 |     min[i] = Walker->at(i);
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| [042f82] | 92 |   }
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| [af2c424] | 93 |   set.GoToFirst();
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 | 94 |   while (!set.IsEnd()) {
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 | 95 |     Walker = set.GetPoint();
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| [042f82] | 96 |     for (int i=0;i<NDIM;i++) {
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| [d74077] | 97 |       if (max[i] < Walker->at(i))
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 | 98 |         max[i] = Walker->at(i);
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 | 99 |       if (min[i] > Walker->at(i))
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 | 100 |         min[i] = Walker->at(i);
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| [042f82] | 101 |     }
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| [af2c424] | 102 |     set.GoToNext();
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| [042f82] | 103 |   }
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| [a67d19] | 104 |   DoLog(2) && (Log() << Verbose(2) << "Bounding box is " << min << " and " << max << "." << endl);
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| [6ac7ee] | 105 | 
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| [357fba] | 106 |   // 2. find then number of cells per axis
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| [042f82] | 107 |   for (int i=0;i<NDIM;i++) {
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| [0a4f7f] | 108 |     N[i] = static_cast<int>(floor((max[i] - min[i])/RADIUS)+1);
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| [042f82] | 109 |   }
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| [a67d19] | 110 |   DoLog(2) && (Log() << Verbose(2) << "Number of cells per axis are " << N[0] << ", " << N[1] << " and " << N[2] << "." << endl);
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| [6ac7ee] | 111 | 
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| [042f82] | 112 |   // 3. allocate the lists
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| [a67d19] | 113 |   DoLog(2) && (Log() << Verbose(2) << "Allocating cells ... ");
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| [042f82] | 114 |   if (LC != NULL) {
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| [58ed4a] | 115 |     DoeLog(1) && (eLog()<< Verbose(1) << "Linked Cell list is already allocated, I do nothing." << endl);
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| [042f82] | 116 |     return;
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 | 117 |   }
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| [c66537] | 118 |   ASSERT(N[0]*N[1]*N[2] < MAX_LINKEDCELLNODES, "Number linked of linked cell nodes exceded hard-coded limit, use greater edge length!");
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| [357fba] | 119 |   LC = new LinkedNodes[N[0]*N[1]*N[2]];
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| [042f82] | 120 |   for (index=0;index<N[0]*N[1]*N[2];index++) {
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 | 121 |     LC [index].clear();
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 | 122 |   }
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| [a67d19] | 123 |   DoLog(0) && (Log() << Verbose(0) << "done."  << endl);
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| [6ac7ee] | 124 | 
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| [042f82] | 125 |   // 4. put each atom into its respective cell
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| [a67d19] | 126 |   DoLog(2) && (Log() << Verbose(2) << "Filling cells ... ");
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| [af2c424] | 127 |   set.GoToFirst();
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 | 128 |   while (!set.IsEnd()) {
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 | 129 |     Walker = set.GetPoint();
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| [042f82] | 130 |     for (int i=0;i<NDIM;i++) {
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| [d74077] | 131 |       n[i] = static_cast<int>(floor((Walker->at(i) - min[i])/RADIUS));
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| [042f82] | 132 |     }
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 | 133 |     index = n[0] * N[1] * N[2] + n[1] * N[2] + n[2];
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 | 134 |     LC[index].push_back(Walker);
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| [e138de] | 135 |     //Log() << Verbose(2) << *Walker << " goes into cell " << n[0] << ", " << n[1] << ", " << n[2] << " with No. " << index << "." << endl;
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| [af2c424] | 136 |     set.GoToNext();
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| [042f82] | 137 |   }
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| [a67d19] | 138 |   DoLog(0) && (Log() << Verbose(0) << "done."  << endl);
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 | 139 |   DoLog(1) && (Log() << Verbose(1) << "End of LinkedCell" << endl);
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| [e1bc68] | 140 | };
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 | 141 | 
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| [8cd903] | 142 | 
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| [e1bc68] | 143 | /** Destructor for class LinkedCell.
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 | 144 |  */
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 | 145 | LinkedCell::~LinkedCell()
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 | 146 | {
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| [042f82] | 147 |   if (LC != NULL)
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 | 148 |   for (index=0;index<N[0]*N[1]*N[2];index++)
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 | 149 |     LC[index].clear();
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 | 150 |   delete[](LC);
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 | 151 |   for(int i=0;i<NDIM;i++)
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 | 152 |     N[i] = 0;
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 | 153 |   index = -1;
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| [e1bc68] | 154 | };
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 | 155 | 
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 | 156 | /** Checks whether LinkedCell::n[] is each within [0,N[]].
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 | 157 |  * \return if all in intervals - true, else -false
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 | 158 |  */
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| [776b64] | 159 | bool LinkedCell::CheckBounds() const
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| [e1bc68] | 160 | {
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| [042f82] | 161 |   bool status = true;
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 | 162 |   for(int i=0;i<NDIM;i++)
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 | 163 |     status = status && ((n[i] >=0) && (n[i] < N[i]));
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| [bdc91e] | 164 | //  if (!status)
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 | 165 | //    DoeLog(1) && (eLog()<< Verbose(1) << "indices are out of bounds!" << endl);
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| [042f82] | 166 |   return status;
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| [e1bc68] | 167 | };
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 | 168 | 
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| [07051c] | 169 | /** Checks whether LinkedCell::n[] plus relative offset is each within [0,N[]].
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| [266237] | 170 |  * Note that for this check we don't admonish if out of bounds.
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| [07051c] | 171 |  * \param relative[NDIM] relative offset to current cell
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 | 172 |  * \return if all in intervals - true, else -false
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 | 173 |  */
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| [776b64] | 174 | bool LinkedCell::CheckBounds(const int relative[NDIM]) const
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| [07051c] | 175 | {
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 | 176 |   bool status = true;
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 | 177 |   for(int i=0;i<NDIM;i++)
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 | 178 |     status = status && ((n[i]+relative[i] >=0) && (n[i]+relative[i] < N[i]));
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 | 179 |   return status;
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 | 180 | };
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 | 181 | 
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| [e1bc68] | 182 | 
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 | 183 | /** Returns a pointer to the current cell.
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 | 184 |  * \return LinkedAtoms pointer to current cell, NULL if LinkedCell::n[] are out of bounds.
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 | 185 |  */
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| [734816] | 186 | const LinkedCell::LinkedNodes* LinkedCell::GetCurrentCell() const
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| [e1bc68] | 187 | {
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| [042f82] | 188 |   if (CheckBounds()) {
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 | 189 |     index = n[0] * N[1] * N[2] + n[1] * N[2] + n[2];
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 | 190 |     return (&(LC[index]));
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 | 191 |   } else {
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 | 192 |     return NULL;
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 | 193 |   }
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| [e1bc68] | 194 | };
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 | 195 | 
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| [07051c] | 196 | /** Returns a pointer to the current cell.
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 | 197 |  * \param relative[NDIM] offset for each axis with respect to the current cell LinkedCell::n[NDIM]
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 | 198 |  * \return LinkedAtoms pointer to current cell, NULL if LinkedCell::n[]+relative[] are out of bounds.
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 | 199 |  */
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| [734816] | 200 | const LinkedCell::LinkedNodes* LinkedCell::GetRelativeToCurrentCell(const int relative[NDIM]) const
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| [07051c] | 201 | {
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 | 202 |   if (CheckBounds(relative)) {
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 | 203 |     index = (n[0]+relative[0]) * N[1] * N[2] + (n[1]+relative[1]) * N[2] + (n[2]+relative[2]);
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 | 204 |     return (&(LC[index]));
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 | 205 |   } else {
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 | 206 |     return NULL;
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 | 207 |   }
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 | 208 | };
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 | 209 | 
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| [893bea] | 210 | /** Set the index to the cell containing a given Vector *x.
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 | 211 |  * \param *x Vector with coordinates
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 | 212 |  * \return Vector is inside bounding box - true, else - false
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 | 213 |  */
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| [d74077] | 214 | bool LinkedCell::SetIndexToVector(const Vector & x) const
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| [893bea] | 215 | {
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 | 216 |   for (int i=0;i<NDIM;i++)
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| [d74077] | 217 |     n[i] = (int)floor((x.at(i) - min[i])/RADIUS);
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| [893bea] | 218 | 
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 | 219 |   return CheckBounds();
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 | 220 | };
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 | 221 | 
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| [357fba] | 222 | /** Calculates the index for a given LCNode *Walker.
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 | 223 |  * \param *Walker LCNode to set index tos
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| [e1bc68] | 224 |  * \return if the atom is also found in this cell - true, else - false
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 | 225 |  */
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| [776b64] | 226 | bool LinkedCell::SetIndexToNode(const TesselPoint * const Walker) const
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| [e1bc68] | 227 | {
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| [042f82] | 228 |   bool status = false;
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 | 229 |   for (int i=0;i<NDIM;i++) {
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| [d74077] | 230 |     n[i] = static_cast<int>(floor((Walker->at(i) - min[i])/RADIUS));
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| [042f82] | 231 |   }
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 | 232 |   index = n[0] * N[1] * N[2] + n[1] * N[2] + n[2];
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 | 233 |   if (CheckBounds()) {
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| [357fba] | 234 |     for (LinkedNodes::iterator Runner = LC[index].begin(); Runner != LC[index].end(); Runner++)
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| [042f82] | 235 |       status = status || ((*Runner) == Walker);
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 | 236 |     return status;
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 | 237 |   } else {
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| [58ed4a] | 238 |     DoeLog(1) && (eLog()<< Verbose(1) << "Node at " << *Walker << " is out of bounds." << endl);
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| [042f82] | 239 |     return false;
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 | 240 |   }
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| [e1bc68] | 241 | };
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 | 242 | 
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| [0f4538] | 243 | /** Calculates the interval bounds of the linked cell grid.
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| [bdc91e] | 244 |  * \param lower lower bounds
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 | 245 |  * \param upper upper bounds
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| [061b06] | 246 |  * \param step how deep to check the neighbouring cells (i.e. number of layers to check)
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| [0f4538] | 247 |  */
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| [893bea] | 248 | void LinkedCell::GetNeighbourBounds(int lower[NDIM], int upper[NDIM], int step) const
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| [0f4538] | 249 | {
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 | 250 |   for (int i=0;i<NDIM;i++) {
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| [bdc91e] | 251 |     lower[i] = n[i]-step;
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 | 252 |     if (lower[i] < 0)
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 | 253 |       lower[i] = 0;
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 | 254 |     if (lower[i] >= N[i])
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 | 255 |       lower[i] = N[i]-1;
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 | 256 |     upper[i] = n[i]+step;
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 | 257 |     if (upper[i] >= N[i])
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 | 258 |       upper[i] = N[i]-1;
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 | 259 |     if (upper[i] < 0)
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 | 260 |       upper[i] = 0;
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| [e138de] | 261 |     //Log() << Verbose(0) << "axis " << i << " has bounds [" << lower[i] << "," << upper[i] << "]" << endl;
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| [0f4538] | 262 |   }
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 | 263 | };
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 | 264 | 
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| [734816] | 265 | /** Returns a list with all neighbours from the current LinkedCell::index.
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 | 266 |  * \param distance (if no distance, then adjacent cells are taken)
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 | 267 |  * \return list of tesselpoints
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 | 268 |  */
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| [893bea] | 269 | LinkedCell::LinkedNodes* LinkedCell::GetallNeighbours(const double distance) const
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| [734816] | 270 | {
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| [893bea] | 271 |   int Nlower[NDIM], Nupper[NDIM];
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| [734816] | 272 |   TesselPoint *Walker = NULL;
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 | 273 |   LinkedNodes *TesselList = new LinkedNodes;
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 | 274 | 
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 | 275 |   // then go through the current and all neighbouring cells and check the contained points for possible candidates
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| [893bea] | 276 |   const int step = (distance == 0) ? 1 : (int)floor(distance/RADIUS + 1.);
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 | 277 |   GetNeighbourBounds(Nlower, Nupper, step);
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 | 278 | 
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| [734816] | 279 |   //Log() << Verbose(0) << endl;
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 | 280 |   for (n[0] = Nlower[0]; n[0] <= Nupper[0]; n[0]++)
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 | 281 |     for (n[1] = Nlower[1]; n[1] <= Nupper[1]; n[1]++)
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 | 282 |       for (n[2] = Nlower[2]; n[2] <= Nupper[2]; n[2]++) {
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 | 283 |         const LinkedNodes *List = GetCurrentCell();
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 | 284 |         //Log() << Verbose(1) << "Current cell is " << n[0] << ", " << n[1] << ", " << n[2] << " with No. " << index << "." << endl;
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 | 285 |         if (List != NULL) {
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 | 286 |           for (LinkedNodes::const_iterator Runner = List->begin(); Runner != List->end(); Runner++) {
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 | 287 |             Walker = *Runner;
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 | 288 |             TesselList->push_back(Walker);
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 | 289 |           }
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 | 290 |         }
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 | 291 |       }
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 | 292 |   return TesselList;
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 | 293 | };
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 | 294 | 
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| [ffe885] | 295 | /** Set the index to the cell containing a given Vector *x, which is not inside the LinkedCell's domain
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 | 296 |  * Note that as we have to check distance from every corner of the closest cell, this function is faw more
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 | 297 |  * expensive and if Vector is known to be inside LinkedCell's domain, then SetIndexToVector() should be used.
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 | 298 |  * \param *x Vector with coordinates
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 | 299 |  * \return minimum squared distance of cell to given vector (if inside of domain, distance is 0)
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 | 300 |  */
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 | 301 | double LinkedCell::SetClosestIndexToOutsideVector(const Vector * const x) const
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 | 302 | {
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 | 303 |   for (int i=0;i<NDIM;i++) {
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| [8cbb97] | 304 |     n[i] = (int)floor((x->at(i) - min[i])/RADIUS);
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| [ffe885] | 305 |     if (n[i] < 0)
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 | 306 |       n[i] = 0;
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 | 307 |     if (n[i] >= N[i])
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 | 308 |       n[i] = N[i]-1;
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 | 309 |   }
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 | 310 | 
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 | 311 |   // calculate distance of cell to vector
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 | 312 |   double distanceSquared = 0.;
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 | 313 |   bool outside = true;  // flag whether x is found in- or outside of LinkedCell's domain/closest cell
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 | 314 |   Vector corner; // current corner of closest cell
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 | 315 |   Vector tester; // Vector pointing from corner to center of closest cell
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 | 316 |   Vector Distance;  // Vector from corner of closest cell to x
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 | 317 | 
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 | 318 |   Vector center;  // center of the closest cell
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 | 319 |   for (int i=0;i<NDIM;i++)
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| [8cbb97] | 320 |     center[i] = min[i]+((double)n[i]+.5)*RADIUS;
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| [ffe885] | 321 | 
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 | 322 |   int c[NDIM];
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 | 323 |   for (c[0]=0;c[0]<=1;c[0]++)
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 | 324 |     for (c[1]=0; c[1]<=1;c[1]++)
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 | 325 |       for (c[2]=0; c[2]<=1;c[2]++) {
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 | 326 |         // set up corner
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 | 327 |         for (int i=0;i<NDIM;i++)
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| [8cbb97] | 328 |           corner[i] = min[i]+RADIUS*((double)n[i]+c[i]);
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| [ffe885] | 329 |         // set up distance vector
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| [8cbb97] | 330 |         Distance = (*x) - corner;
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| [ffe885] | 331 |         const double dist = Distance.NormSquared();
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 | 332 |         // check whether distance is smaller
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 | 333 |         if (dist< distanceSquared)
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 | 334 |           distanceSquared = dist;
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 | 335 |         // check whether distance vector goes inside or outside
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| [8cbb97] | 336 |         tester = center -corner;
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 | 337 |         if (tester.ScalarProduct(Distance) < 0)
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| [ffe885] | 338 |           outside = false;
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 | 339 |       }
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 | 340 |   return (outside ? distanceSquared : 0.);
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 | 341 | };
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| [734816] | 342 | 
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 | 343 | /** Returns a list of all TesselPoint with distance less than \a radius to \a *Center.
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 | 344 |  * \param radius radius of sphere
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 | 345 |  * \param *center center of sphere
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 | 346 |  * \return list of all points inside sphere
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 | 347 |  */
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 | 348 | LinkedCell::LinkedNodes* LinkedCell::GetPointsInsideSphere(const double radius, const Vector * const center) const
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 | 349 | {
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 | 350 |   const double radiusSquared = radius*radius;
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 | 351 |   TesselPoint *Walker = NULL;
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 | 352 |   LinkedNodes *TesselList = new LinkedNodes;
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| [893bea] | 353 |   LinkedNodes *NeighbourList = NULL;
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| [734816] | 354 | 
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| [893bea] | 355 |   // set index of LC to center of sphere
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| [ffe885] | 356 |   const double dist = SetClosestIndexToOutsideVector(center);
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| [061b06] | 357 |   if (dist > 2.*radius) {
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| [ffe885] | 358 |     DoeLog(1) && (eLog()<< Verbose(1) << "Vector " << *center << " is too far away from any atom in LinkedCell's bounding box." << endl);
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| [734816] | 359 |     return TesselList;
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| [061b06] | 360 |   } else
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| [a67d19] | 361 |     DoLog(1) && (Log() << Verbose(1) << "Distance of closest cell to center of sphere with radius " << radius << " is " << dist << "." << endl);
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| [893bea] | 362 | 
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 | 363 |   // gather all neighbours first, then look who fulfills distance criteria
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| [061b06] | 364 |   NeighbourList = GetallNeighbours(2.*radius-dist);
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 | 365 |   //Log() << Verbose(1) << "I found " << NeighbourList->size() << " neighbours to check." << endl;
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| [893bea] | 366 |   if (NeighbourList != NULL) {
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 | 367 |     for (LinkedNodes::const_iterator Runner = NeighbourList->begin(); Runner != NeighbourList->end(); Runner++) {
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 | 368 |       Walker = *Runner;
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| [061b06] | 369 |       //Log() << Verbose(1) << "Current neighbour is at " << *Walker->node << "." << endl;
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| [d74077] | 370 |       if ((Walker->DistanceSquared(*center) - radiusSquared) < MYEPSILON) {
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| [893bea] | 371 |         TesselList->push_back(Walker);
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| [734816] | 372 |       }
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| [893bea] | 373 |     }
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 | 374 |     delete(NeighbourList);
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 | 375 |   } else
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 | 376 |     DoeLog(2) && (eLog()<< Verbose(2) << "Around vector " << *center << " there are no atoms." << endl);
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| [734816] | 377 |   return TesselList;
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 | 378 | };
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