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Please see the license in the file LICENSE and URL above * 16 // * for the full disclaimer and the limitatio 16 // * for the full disclaimer and the limitation of liability. * 17 // * 17 // * * 18 // * This code implementation is the result 18 // * This code implementation is the result of the scientific and * 19 // * technical work of the GEANT4 collaboratio 19 // * technical work of the GEANT4 collaboration. * 20 // * By using, copying, modifying or distri 20 // * By using, copying, modifying or distributing the software (or * 21 // * any work based on the software) you ag 21 // * any work based on the software) you agree to acknowledge its * 22 // * use in resulting scientific publicati 22 // * use in resulting scientific publications, and indicate your * 23 // * acceptance of all terms of the Geant4 Sof 23 // * acceptance of all terms of the Geant4 Software license. * 24 // ******************************************* 24 // ******************************************************************** 25 // 25 // >> 26 // $Id: G4PenelopeSamplingData.hh,v 1.1 2010-03-17 14:19:04 pandola Exp $ >> 27 // GEANT4 tag $Name: geant4-09-04-patch-02 $ 26 // 28 // 27 // Author: Luciano Pandola 29 // Author: Luciano Pandola 28 // 30 // 29 // History: 31 // History: 30 // ----------- 32 // ----------- 31 // 09 Dec 2009 L. Pandola 1st implementati 33 // 09 Dec 2009 L. Pandola 1st implementation. 32 // 34 // 33 // ------------------------------------------- 35 // ------------------------------------------------------------------- 34 // 36 // 35 // Class description: 37 // Class description: 36 // This is a container of data that are used f 38 // This is a container of data that are used for sampling algorithm 37 // of Penelope08 Rayleigh scattering 39 // of Penelope08 Rayleigh scattering 38 // ------------------------------------------- 40 // ------------------------------------------------------------------- 39 41 40 #ifndef G4PENELOPESAMPLINGDATA_HH 42 #ifndef G4PENELOPESAMPLINGDATA_HH 41 #define G4PENELOPESAMPLINGDATA_HH 1 43 #define G4PENELOPESAMPLINGDATA_HH 1 42 44 43 #include "globals.hh" 45 #include "globals.hh" 44 #include "G4DataVector.hh" 46 #include "G4DataVector.hh" 45 // 47 // 46 //This is a container of data that are used fo 48 //This is a container of data that are used for sampling algoritm 47 // 49 // 48 class G4PenelopeSamplingData 50 class G4PenelopeSamplingData 49 { 51 { >> 52 50 public: 53 public: 51 explicit G4PenelopeSamplingData(G4int npoint << 54 G4PenelopeSamplingData(G4int npoints=150); 52 ~G4PenelopeSamplingData(); 55 ~G4PenelopeSamplingData(); 53 56 54 void AddPoint(G4double x0,G4double pac0,G4do 57 void AddPoint(G4double x0,G4double pac0,G4double a0,G4double b0,size_t ITTL0, 55 size_t ITTU0); 58 size_t ITTU0); 56 size_t GetNumberOfStoredPoints(); 59 size_t GetNumberOfStoredPoints(); 57 void Clear(); 60 void Clear(); 58 void DumpTable(); 61 void DumpTable(); 59 62 60 G4double GetX(size_t index); 63 G4double GetX(size_t index); 61 G4double GetPAC(size_t index); 64 G4double GetPAC(size_t index); 62 G4double GetA(size_t index); 65 G4double GetA(size_t index); 63 G4double GetB(size_t index); 66 G4double GetB(size_t index); 64 67 65 G4double SampleValue(G4double rndm); 68 G4double SampleValue(G4double rndm); 66 69 67 G4PenelopeSamplingData & operator=(const G4P << 70 private: 68 G4PenelopeSamplingData(const G4PenelopeSampl << 71 G4PenelopeSamplingData & operator=(const G4PenelopeSamplingData &right); >> 72 G4PenelopeSamplingData(const G4PenelopeSamplingData&); >> 73 >> 74 //G4double xlow; >> 75 //G4double xhigh; >> 76 >> 77 G4DataVector* x; //grid points, in increasing order >> 78 G4DataVector* pac; //value of the cumulative pdf at x_i >> 79 G4DataVector* a; // rational inverse cumulative inverse distribution parameters >> 80 G4DataVector* b; 69 81 70 private: << 82 std::vector<size_t> *ITTL; //largest j for which pac(j) < (i-1)/(np-1) 71 G4DataVector* fX; //grid points, in increasi << 83 std::vector<size_t> *ITTU; //smallest k for which pac(k) > i/(np-1) 72 G4DataVector* fPAC; //value of the cumulativ << 84 73 G4DataVector* fA; // rational inverse cumula << 85 G4int np; //number of grid points 74 G4DataVector* fB; << 86 75 87 76 std::vector<size_t> *fITTL; //largest j for << 77 std::vector<size_t> *fITTU; //smallest k for << 78 88 79 G4int fNP; //number of grid points << 80 }; 89 }; 81 90 82 #endif 91 #endif 83 92 84 93