55 |
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56 |
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class ForceMatrixDecomposition : public ForceDecomposition { |
57 |
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public: |
58 |
< |
ForceMatrixDecomposition(SimInfo* info) : ForceDecomposition(info) {}; |
58 |
> |
ForceMatrixDecomposition(SimInfo* info, InteractionManager* iMan) : ForceDecomposition(info, iMan) {}; |
59 |
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60 |
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void distributeInitialData(); |
61 |
+ |
void zeroWorkArrays(); |
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void distributeData(); |
63 |
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void collectIntermediateData(); |
64 |
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void distributeIntermediateData(); |
68 |
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vector<pair<int, int> > buildNeighborList(); |
69 |
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70 |
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// group bookkeeping |
71 |
< |
pair<int, int> getGroupTypes(int cg1, int cg2); |
71 |
> |
groupCutoffs getGroupCutoffs(int cg1, int cg2); |
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73 |
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// Group->atom bookkeeping |
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vector<int> getAtomsInGroupRow(int cg1); |
83 |
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Vector3d getInteratomicVector(int atom1, int atom2); |
84 |
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85 |
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// atom bookkeeping |
86 |
< |
vector<int> getAtomList(); |
87 |
< |
vector<int> getSkipsForAtom(int atom1); |
86 |
> |
int getNAtomsInRow(); |
87 |
> |
int getTopologicalDistance(int atom1, int atom2); |
88 |
> |
vector<int> getSkipsForAtom(int atom1); |
89 |
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bool skipAtomPair(int atom1, int atom2); |
90 |
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void addForceToAtomRow(int atom1, Vector3d fg); |
91 |
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void addForceToAtomColumn(int atom2, Vector3d fg); |
92 |
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|
93 |
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// filling interaction blocks with pointers |
94 |
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InteractionData fillInteractionData(int atom1, int atom2); |
95 |
+ |
void unpackInteractionData(InteractionData idat, int atom1, int atom2); |
96 |
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InteractionData fillSkipData(int atom1, int atom2); |
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98 |
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private: |
99 |
+ |
void createGtypeCutoffMap(); |
100 |
+ |
|
101 |
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int nLocal_; |
102 |
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int nGroups_; |
103 |
+ |
vector<int> identsLocal; |
104 |
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vector<int> AtomLocalToGlobal; |
105 |
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vector<int> cgLocalToGlobal; |
100 |
– |
vector<RealType> pot_local; |
106 |
|
vector<RealType> massFactorsLocal; |
107 |
+ |
vector<RealType> groupCutoff; |
108 |
+ |
vector<int> groupToGtype; |
109 |
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|
110 |
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#ifdef IS_MPI |
111 |
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DataStorage atomRowData; |
122 |
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Communicator<Row, RealType>* AtomCommRealRow; |
123 |
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Communicator<Row, Vector3d>* AtomCommVectorRow; |
124 |
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Communicator<Row, Mat3x3d>* AtomCommMatrixRow; |
125 |
+ |
Communicator<Row, potVec>* AtomCommPotRow; |
126 |
|
|
127 |
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Communicator<Column, int>* AtomCommIntColumn; |
128 |
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Communicator<Column, RealType>* AtomCommRealColumn; |
129 |
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Communicator<Column, Vector3d>* AtomCommVectorColumn; |
130 |
< |
Communicator<Column, Mat3x3d>* AtomCommMatrixColumn; |
130 |
> |
Communicator<Column, Mat3x3d>* AtomCommMatrixColumn; |
131 |
> |
Communicator<Column, potVec>* AtomCommPotColumn; |
132 |
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|
133 |
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Communicator<Row, int>* cgCommIntRow; |
134 |
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Communicator<Row, Vector3d>* cgCommVectorRow; |
135 |
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Communicator<Column, int>* cgCommIntColumn; |
136 |
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Communicator<Column, Vector3d>* cgCommVectorColumn; |
137 |
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|
138 |
< |
vector<vector<RealType> > pot_row; |
139 |
< |
vector<vector<RealType> > pot_col; |
138 |
> |
// work arrays for assembling potential energy |
139 |
> |
vector<potVec> pot_row; |
140 |
> |
vector<potVec> pot_col; |
141 |
> |
potVec pot_local; |
142 |
|
|
143 |
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vector<int> identsRow; |
144 |
|
vector<int> identsCol; |
145 |
|
|
146 |
+ |
vector<AtomType*> atypesRow; |
147 |
+ |
vector<AtomType*> atypesCol; |
148 |
+ |
|
149 |
|
vector<int> AtomRowToGlobal; |
150 |
|
vector<int> AtomColToGlobal; |
151 |
|
|
152 |
|
vector<int> cgRowToGlobal; |
153 |
|
vector<int> cgColToGlobal; |
154 |
|
|
155 |
+ |
vector<RealType> groupCutoffRow; |
156 |
+ |
vector<RealType> groupCutoffCol; |
157 |
+ |
vector<int> groupColToGtype; |
158 |
+ |
vector<int> groupRowToGtype; |
159 |
+ |
|
160 |
|
vector<vector<int> > cellListRow_; |
161 |
|
vector<vector<int> > cellListCol_; |
162 |
|
|
165 |
|
|
166 |
|
vector<RealType> massFactorsRow; |
167 |
|
vector<RealType> massFactorsCol; |
149 |
– |
|
168 |
|
#endif |
169 |
|
|
170 |
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}; |