| 1 | #include "linkedcell.hpp"
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| 2 | #include "molecules.hpp"
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| 3 | 
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| 4 | /** Constructor for class LinkedCell.
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| 5 |  */
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| 6 | LinkedCell::LinkedCell()
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| 7 | {
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| 8 |         LC = NULL;
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| 9 |         for(int i=0;i<NDIM;i++)
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| 10 |                 N[i] = 0;
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| 11 |         index = -1;
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| 12 |         RADIUS = 0.;
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| 13 |         max.Zero();
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| 14 |         min.Zero();
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| 15 | };
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| 16 | 
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| 17 | /** Puts all atoms in \a *mol into a linked cell list with cell's lengths of \a RADIUS
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| 18 |  * \param *mol molecule structure with all Atom's
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| 19 |  * \param RADIUS edge length of cells
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| 20 |  */
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| 21 | LinkedCell::LinkedCell(molecule *mol, double radius)
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| 22 | {
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| 23 |         atom *Walker = NULL;
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| 24 | 
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| 25 |         RADIUS = radius;
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| 26 |         LC = NULL;
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| 27 |         for(int i=0;i<NDIM;i++)
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| 28 |                 N[i] = 0;
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| 29 |         index = -1;
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| 30 |         max.Zero();
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| 31 |         min.Zero();
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| 32 |         cout << Verbose(1) << "Begin of LinkedCell" << endl;
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| 33 |         if (mol->start->next == mol->end) {
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| 34 |                 cerr << "ERROR: molecule contains no atoms!" << endl;
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| 35 |                 return;
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| 36 |         }
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| 37 |         // 1. find max and min per axis of atoms
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| 38 |         Walker = mol->start->next;
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| 39 |         for (int i=0;i<NDIM;i++) {
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| 40 |                 max.x[i] = Walker->x.x[i];
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| 41 |                 min.x[i] = Walker->x.x[i];
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| 42 |         }
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| 43 |         while (Walker != mol->end) {
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| 44 |                 for (int i=0;i<NDIM;i++) {
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| 45 |                         if (max.x[i] < Walker->x.x[i])
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| 46 |                                 max.x[i] = Walker->x.x[i];
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| 47 |                         if (min.x[i] > Walker->x.x[i])
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| 48 |                                 min.x[i] = Walker->x.x[i];
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| 49 |                 }
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| 50 |                 Walker = Walker->next;
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| 51 |         }
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| 52 |         cout << Verbose(2) << "Bounding box is " << min << " and " << max << "." << endl;
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| 53 | 
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| 54 |         // 2. find then umber of cells per axis
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| 55 |         for (int i=0;i<NDIM;i++) {
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| 56 |                 N[i] = (int)floor((max.x[i] - min.x[i])/RADIUS)+1;
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| 57 |         }
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| 58 |         cout << Verbose(2) << "Number of cells per axis are " << N[0] << ", " << N[1] << " and " << N[2] << "." << endl;
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| 59 | 
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| 60 |         // 3. allocate the lists
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| 61 |         cout << Verbose(2) << "Allocating cells ... " << endl;
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| 62 |         if (LC != NULL) {
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| 63 |                 cout << Verbose(1) << "ERROR: Linked Cell list is already allocated, I do nothing." << endl;
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| 64 |                 return;
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| 65 |         }
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| 66 |         LC = new LinkedAtoms[N[0]*N[1]*N[2]];
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| 67 |         for (index=0;index<N[0]*N[1]*N[2];index++) {
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| 68 |                 LC [index].clear();
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| 69 |         }
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| 70 | 
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| 71 |         // 4. put each atom into its respective cell
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| 72 |         Walker = mol->start;
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| 73 |         while (Walker->next != mol->end) {
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| 74 |                 Walker = Walker->next;
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| 75 |                 for (int i=0;i<NDIM;i++) {
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| 76 |                         n[i] = (int)floor((Walker->x.x[i] - min.x[i])/RADIUS);
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| 77 |                 }
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| 78 |                 index = n[0] * N[1] * N[2] + n[1] * N[2] + n[2];
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| 79 |                 LC[index].push_back(Walker);
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| 80 |                 cout << Verbose(2) << *Walker << " goes into cell " << n[0] << ", " << n[1] << ", " << n[2] << " with No. " << index << "." << endl;
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| 81 |         }
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| 82 |         cout << Verbose(1) << "End of LinkedCell" << endl;
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| 83 | };
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| 84 | 
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| 85 | /** Destructor for class LinkedCell.
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| 86 |  */
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| 87 | LinkedCell::~LinkedCell()
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| 88 | {
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| 89 |         if (LC != NULL)
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| 90 |         for (index=0;index<N[0]*N[1]*N[2];index++)
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| 91 |                 LC[index].clear();
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| 92 |         delete[](LC);
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| 93 |         for(int i=0;i<NDIM;i++)
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| 94 |                 N[i] = 0;
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| 95 |         index = -1;
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| 96 |         max.Zero();
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| 97 |         min.Zero();
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| 98 | };
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| 99 | 
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| 100 | /** Checks whether LinkedCell::n[] is each within [0,N[]].
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| 101 |  * \return if all in intervals - true, else -false
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| 102 |  */
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| 103 | bool LinkedCell::CheckBounds()
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| 104 | {
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| 105 |         bool status = true;
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| 106 |         for(int i=0;i<NDIM;i++)
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| 107 |                 status = status && ((n[i] >=0) && (n[i] < N[i]));
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| 108 |         if (!status)
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| 109 |         cerr << "ERROR: indices are out of bounds!" << endl;
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| 110 |         return status;
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| 111 | };
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| 112 | 
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| 113 | 
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| 114 | /** Returns a pointer to the current cell.
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| 115 |  * \return LinkedAtoms pointer to current cell, NULL if LinkedCell::n[] are out of bounds.
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| 116 |  */
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| 117 | LinkedAtoms* LinkedCell::GetCurrentCell()
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| 118 | {
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| 119 |         if (CheckBounds()) {
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| 120 |                 index = n[0] * N[1] * N[2] + n[1] * N[2] + n[2];
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| 121 |                 return (&(LC[index]));
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| 122 |         } else {
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| 123 |                 return NULL;
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| 124 |         }
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| 125 | };
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| 126 | 
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| 127 | /** Calculates the index for a given atom *Walker.
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| 128 |  * \param *Walker atom to set index to
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| 129 |  * \return if the atom is also found in this cell - true, else - false
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| 130 |  */
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| 131 | bool LinkedCell::SetIndexToAtom(atom *Walker)
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| 132 | {
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| 133 |         bool status = false;
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| 134 |         for (int i=0;i<NDIM;i++) {
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| 135 |                 n[i] = (int)floor((Walker->x.x[i] - min.x[i])/RADIUS);
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| 136 |         }
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| 137 |         index = n[0] * N[1] * N[2] + n[1] * N[2] + n[2];
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| 138 |         if (CheckBounds()) {
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| 139 |                 for (LinkedAtoms::iterator Runner = LC[index].begin(); Runner != LC[index].end(); Runner++)
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| 140 |                         status = status || ((*Runner) == Walker);
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| 141 |                 return status;
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| 142 |         } else {
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| 143 |                 cerr << Verbose(1) << "ERROR: Atom "<< *Walker << " at " << Walker->x << " is out of bounds." << endl;
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| 144 |                 return false;
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| 145 |         }
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| 146 | };
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| 147 | 
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| 148 | /** Calculates the index for a given Vector *x.
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| 149 |  * \param *x Vector with coordinates
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| 150 |  * \return Vector is inside bounding box - true, else - false
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| 151 |  */
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| 152 | bool LinkedCell::SetIndexToVector(Vector *x)
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| 153 | {
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| 154 |         bool status = true;
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| 155 |         for (int i=0;i<NDIM;i++) {
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| 156 |                 n[i] = (int)floor((x->x[i] - min.x[i])/RADIUS);
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| 157 |                 if (max.x[i] < x->x[i])
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| 158 |                         status = false;
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| 159 |                 if (min.x[i] > x->x[i])
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| 160 |                         status = false;
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| 161 |         }
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| 162 |         return status;
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| 163 | };
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| 164 | 
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