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root/OpenMD/branches/devel_omp/src/parallel/ForceMatrixDecomposition.hpp
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Comparing:
branches/development/src/parallel/ForceMatrixDecomposition.hpp (file contents), Revision 1583 by gezelter, Thu Jun 16 22:00:08 2011 UTC vs.
branches/devel_omp/src/parallel/ForceMatrixDecomposition.hpp (file contents), Revision 1598 by mciznick, Wed Jul 27 14:26:53 2011 UTC

# Line 55 | Line 55 | namespace OpenMD {
55    
56    class ForceMatrixDecomposition : public ForceDecomposition {
57    public:
58 <    ForceMatrixDecomposition(SimInfo* info, InteractionManager* iMan) : ForceDecomposition(info, iMan) {};
58 >    ForceMatrixDecomposition(SimInfo* info, InteractionManager* iMan);
59  
60      void distributeInitialData();
61      void zeroWorkArrays();
# Line 66 | Line 66 | namespace OpenMD {
66  
67      // neighbor list routines
68      vector<pair<int, int> >  buildNeighborList();
69 +    // neighbor list routines based on Rapaport
70 +    vector<vector<CutoffGroup *> > buildLayerBasedNeighborList();
71  
72      // group bookkeeping
73      groupCutoffs getGroupCutoffs(int cg1, int cg2);
# Line 80 | Line 82 | namespace OpenMD {
82  
83      // spatial data
84      Vector3d getIntergroupVector(int cg1, int cg2);
85 +    Vector3d getIntergroupVector(CutoffGroup *cg1, CutoffGroup *cg2);
86      Vector3d getInteratomicVector(int atom1, int atom2);
87        
88      // atom bookkeeping
89      int getNAtomsInRow();
90      int getTopologicalDistance(int atom1, int atom2);
91 <    vector<int> getSkipsForAtom(int atom1);
91 >    vector<int> getExcludesForAtom(int atom1);
92      bool skipAtomPair(int atom1, int atom2);
93 +    bool excludeAtomPair(int atom1, int atom2);
94      void addForceToAtomRow(int atom1, Vector3d fg);
95      void addForceToAtomColumn(int atom2, Vector3d fg);
96  
97      // filling interaction blocks with pointers
98      void fillInteractionData(InteractionData &idat, int atom1, int atom2);
99      void unpackInteractionData(InteractionData &idat, int atom1, int atom2);
96    void fillSkipData(InteractionData &idat, int atom1, int atom2);
97    void unpackSkipData(InteractionData &idat, int atom1, int atom2);
100  
101 +    // memory reordering
102 +    void reorderGroupCutoffs(vector<int> &order);
103 +    void reorderPosition(vector<int> &order);
104 +    void reorderGroupList(vector<int> &order);
105 +    void reorderMemory(vector<vector<CutoffGroup *> > &H_c_l);
106 +
107    private:
108      void createGtypeCutoffMap();
109  
# Line 117 | Line 125 | namespace OpenMD {
125      int nGroupsInRow_;
126      int nGroupsInCol_;
127  
128 <    Communicator<Row, int>* AtomCommIntRow;
129 <    Communicator<Row, RealType>* AtomCommRealRow;
122 <    Communicator<Row, Vector3d>* AtomCommVectorRow;
123 <    Communicator<Row, Mat3x3d>*  AtomCommMatrixRow;
124 <    Communicator<Row, potVec>* AtomCommPotRow;
128 >    Communicator<Row> rowComm;
129 >    Communicator<Column> colComm;
130  
131 <    Communicator<Column, int>* AtomCommIntColumn;
132 <    Communicator<Column, RealType>* AtomCommRealColumn;
133 <    Communicator<Column, Vector3d>* AtomCommVectorColumn;
134 <    Communicator<Column, Mat3x3d>*  AtomCommMatrixColumn;
135 <    Communicator<Column, potVec>* AtomCommPotColumn;
131 >    Plan<int>* AtomPlanIntRow;
132 >    Plan<RealType>* AtomPlanRealRow;
133 >    Plan<Vector3d>* AtomPlanVectorRow;
134 >    Plan<Mat3x3d>*  AtomPlanMatrixRow;
135 >    Plan<potVec>* AtomPlanPotRow;
136  
137 <    Communicator<Row, int>* cgCommIntRow;
138 <    Communicator<Row, Vector3d>* cgCommVectorRow;
139 <    Communicator<Column, int>* cgCommIntColumn;
140 <    Communicator<Column, Vector3d>* cgCommVectorColumn;
137 >    Plan<int>* AtomPlanIntColumn;
138 >    Plan<RealType>* AtomPlanRealColumn;
139 >    Plan<Vector3d>* AtomPlanVectorColumn;
140 >    Plan<Mat3x3d>*  AtomPlanMatrixColumn;
141 >    Plan<potVec>* AtomPlanPotColumn;
142  
143 +    Plan<int>* cgPlanIntRow;
144 +    Plan<Vector3d>* cgPlanVectorRow;
145 +    Plan<int>* cgPlanIntColumn;
146 +    Plan<Vector3d>* cgPlanVectorColumn;
147 +
148      // work arrays for assembling potential energy
149      vector<potVec> pot_row;
150      vector<potVec> pot_col;

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