// This code implementation is the intellectual property of // the GEANT4 collaboration. // // By copying, distributing or modifying the Program (or any work // based on the Program) you indicate your acceptance of this statement, // and all its terms. // // $Id: G4ElectronOccupancy.hh,v 1.3.4.1 1999/12/07 20:49:50 gunter Exp $ // GEANT4 tag $Name: geant4-01-00 $ // // // ------------------------------------------------------------ // GEANT 4 class header file // // For information related to this code contact: // CERN, CN Division, ASD group // History: first implementation, based on object model of // Hisaya Kurashige, 17 Aug 1999 // ---------------------------------------------------------------- // Class Description // This class has information of occupation of electrons // in atomic orbits // - // GetOccupancy(N) gives the number of electron // in N-th orbit // For example : Carbon atom should be // GetOccupancy(0) --> 2 // GetOccupancy(1) --> 4 // GetOccupancy(2..7) --> 0 // - // GetTotalOccupancy() gives the total number of electrons // // --------------------------------------------------------------- #ifndef G4ElectronOccupancy_h #define G4ElectronOccupancy_h 1 #include "globals.hh" #include "G4Allocator.hh" #include "G4ios.hh" class G4ElectronOccupancy { public: enum { MaxSizeOfOrbit = 7}; public: // With Description G4ElectronOccupancy( G4int sizeOrbit = MaxSizeOfOrbit ); G4ElectronOccupancy( const G4ElectronOccupancy& right ); public: virtual ~G4ElectronOccupancy(); // new/delete operators are oberloded to use G4Allocator inline void *operator new(size_t); inline void operator delete(void *aElectronOccupancy); //- operators G4ElectronOccupancy & operator=(const G4ElectronOccupancy &right); G4int operator==(const G4ElectronOccupancy &right) const; G4int operator!=(const G4ElectronOccupancy &right) const; public: // With Description // The following methods returns // 0: if the orbit(atom) is vacant // >0: number of electrons in orbit G4int GetTotalOccupancy() const; G4int GetOccupancy(G4int orbit) const; // G4int AddElectron(G4int orbit, G4int number = 1); G4int RemoveElectron(G4int orbit, G4int number = 1); G4int GetSizeOfOrbit() const; void DumpInfo() const; private: G4int theSizeOfOrbit; G4int theTotalOccupancy; G4int* theOccupancies; }; extern G4Allocator aElectronOccupancyAllocator; // ------------------------ // Inlined operators // ------------------------ inline void * G4ElectronOccupancy::operator new(size_t) { void * aElectronOccupancy; aElectronOccupancy = (void *) aElectronOccupancyAllocator.MallocSingle(); return aElectronOccupancy; } inline void G4ElectronOccupancy::operator delete(void * aElectronOccupancy) { aElectronOccupancyAllocator.FreeSingle((G4ElectronOccupancy *) aElectronOccupancy); } inline G4int G4ElectronOccupancy::GetSizeOfOrbit() const { return theSizeOfOrbit; } inline G4int G4ElectronOccupancy::GetTotalOccupancy() const { return theTotalOccupancy; } inline G4int G4ElectronOccupancy::GetOccupancy(G4int orbit) const { G4int value = 0; if ((orbit >=0)&&(orbit=0)&&(orbit=0)&&(orbit