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root/OpenMD/trunk/src/parallel/ForceMatrixDecomposition.hpp
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Comparing:
branches/development/src/parallel/ForceDecomposition.hpp (file contents), Revision 1539 by gezelter, Fri Jan 14 22:31:31 2011 UTC vs.
branches/development/src/parallel/ForceMatrixDecomposition.hpp (file contents), Revision 1612 by gezelter, Fri Aug 12 19:59:56 2011 UTC

# Line 39 | Line 39
39   * [4]  Vardeman & Gezelter, in progress (2009).                        
40   */
41  
42 < #ifndef PARALLEL_FORCEDECOMPOSITION_HPP
43 < #define PARALLEL_FORCEDECOMPOSITION_HPP
42 > #ifndef PARALLEL_FORCEMATRIXDECOMPOSITION_HPP
43 > #define PARALLEL_FORCEMATRIXDECOMPOSITION_HPP
44  
45 < #include "Parallel/Decomposition.hpp"
46 < #include "Parallel/Communicator.hpp"
45 > #include "parallel/ForceDecomposition.hpp"
46   #include "math/SquareMatrix3.hpp"
47 + #include "brains/Snapshot.hpp"
48  
49 + #ifdef IS_MPI
50 + #include "parallel/Communicator.hpp"
51 + #endif
52 +
53 + using namespace std;
54   namespace OpenMD {
55    
56 <  class ForceDecomposition : public Decomposition {
56 >  class ForceMatrixDecomposition : public ForceDecomposition {
57    public:
58 <    ForceDecomposition(Snapshot* sman);
58 >    ForceMatrixDecomposition(SimInfo* info, InteractionManager* iMan);
59 >
60      void distributeInitialData();
61 +    void zeroWorkArrays();
62      void distributeData();
63      void collectIntermediateData();
64      void distributeIntermediateData();
65      void collectData();
66  
67 <    unsigned int getNcutoffGroupsI();
68 <    unsigned int getNcutoffGroupsJ();
67 >    // neighbor list routines
68 >    vector<pair<int, int> >  buildNeighborList();
69  
70 <    vector<int> getAtomsInGroupI(int whichCGI);
71 <    vector<int> getAtomsInGroupJ(int whichCGJ);
70 >    // group bookkeeping
71 >    groupCutoffs getGroupCutoffs(int cg1, int cg2);
72  
73 <    AtomType* getAtomTypeI(int whichAtomI);
74 <    AtomType* getAtomTypeJ(int whichAtomJ);  
73 >    // Group->atom bookkeeping
74 >    vector<int> getAtomsInGroupRow(int cg1);
75 >    vector<int> getAtomsInGroupColumn(int cg2);
76 >    Vector3d getAtomToGroupVectorRow(int atom1, int cg1);
77 >    Vector3d getAtomToGroupVectorColumn(int atom2, int cg2);
78 >    RealType getMassFactorRow(int atom1);
79 >    RealType getMassFactorColumn(int atom2);
80  
81 < #ifdef IS_MPI
82 <    
83 <    Comm<I, RealType>* AtomCommRealI;
84 <    Comm<I, Vector3d>* AtomCommVectorI;
85 <    Comm<I, Mat3x3d>*  AtomCommMatrixI;
81 >    // spatial data
82 >    Vector3d getIntergroupVector(int cg1, int cg2);
83 >    Vector3d getInteratomicVector(int atom1, int atom2);
84 >      
85 >    // atom bookkeeping
86 >    int getNAtomsInRow();
87 >    int getTopologicalDistance(int atom1, int atom2);
88 >    vector<int> getExcludesForAtom(int atom1);
89 >    bool skipAtomPair(int atom1, int atom2);
90 >    bool excludeAtomPair(int atom1, int atom2);
91 >    void addForceToAtomRow(int atom1, Vector3d fg);
92 >    void addForceToAtomColumn(int atom2, Vector3d fg);
93  
94 <    Comm<J, RealType>* AtomCommRealJ;
95 <    Comm<J, Vector3d>* AtomCommVectorJ;
96 <    Comm<J, Mat3x3d>*  AtomCommMatrixJ;
94 >    // filling interaction blocks with pointers
95 >    void fillInteractionData(InteractionData &idat, int atom1, int atom2);
96 >    void unpackInteractionData(InteractionData &idat, int atom1, int atom2);
97  
98 <    Comm<I, Vector3d>* cgCommVectorI;
99 <    Comm<J, Vector3d>* cgCommVectorJ;
100 <    
98 >  private:
99 >    void createGtypeCutoffMap();
100 >
101 >    int nLocal_;
102 >    int nGroups_;
103 >    vector<int> AtomLocalToGlobal;
104 >    vector<int> cgLocalToGlobal;
105 >    vector<RealType> groupCutoff;
106 >    vector<int> groupToGtype;
107 >
108 > #ifdef IS_MPI    
109 >    DataStorage atomRowData;
110 >    DataStorage atomColData;
111 >    DataStorage cgRowData;
112 >    DataStorage cgColData;
113 >
114 >    int nAtomsInRow_;
115 >    int nAtomsInCol_;
116 >    int nGroupsInRow_;
117 >    int nGroupsInCol_;
118 >
119 >    Communicator<Row> rowComm;
120 >    Communicator<Column> colComm;
121 >
122 >    Plan<int>* AtomPlanIntRow;
123 >    Plan<RealType>* AtomPlanRealRow;
124 >    Plan<Vector3d>* AtomPlanVectorRow;
125 >    Plan<Mat3x3d>*  AtomPlanMatrixRow;
126 >    Plan<potVec>* AtomPlanPotRow;
127 >
128 >    Plan<int>* AtomPlanIntColumn;
129 >    Plan<RealType>* AtomPlanRealColumn;
130 >    Plan<Vector3d>* AtomPlanVectorColumn;
131 >    Plan<Mat3x3d>*  AtomPlanMatrixColumn;
132 >    Plan<potVec>* AtomPlanPotColumn;
133 >
134 >    Plan<int>* cgPlanIntRow;
135 >    Plan<Vector3d>* cgPlanVectorRow;
136 >    Plan<int>* cgPlanIntColumn;
137 >    Plan<Vector3d>* cgPlanVectorColumn;
138 >
139 >    // work arrays for assembling potential energy
140 >    vector<potVec> pot_row;
141 >    vector<potVec> pot_col;
142 >
143 >    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 > public:
153 >    vector<int> cgRowToGlobal;
154 >    vector<int> cgColToGlobal;
155 >
156 > private:
157 >    vector<RealType> groupCutoffRow;
158 >    vector<RealType> groupCutoffCol;
159 >    vector<int> groupColToGtype;
160 >    vector<int> groupRowToGtype;
161 >
162 >    vector<vector<int> > cellListRow_;
163 >    vector<vector<int> > cellListCol_;
164 >
165 >    vector<vector<int> > groupListRow_;
166 >    vector<vector<int> > groupListCol_;
167 >
168 >    vector<RealType> massFactorsRow;
169 >    vector<RealType> massFactorsCol;
170   #endif
171 +
172    };
173  
174   }

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