// 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: G4Event.hh,v 1.3 1999/12/15 14:49:38 gunter Exp $ // GEANT4 tag $Name: geant4-03-00 $ // #ifndef G4Event_h #define G4Event_h 1 #include "globals.hh" #include "G4Allocator.hh" #include "G4PrimaryVertex.hh" #include "G4HCofThisEvent.hh" #include "G4DCofThisEvent.hh" #include "G4TrajectoryContainer.hh" // class description: // // This is the class which represents an event. This class is constructed and // deleted by G4RunManager (or its derived class). When G4Event object is passed // to G4EventManager, G4Event must have one or more primary vertexes and primary // particle(s) associated to the vertex(es) as an input of simulating an event. // As the consequences of simulating an event, G4Event has trajectories, hits // collections, and/or digi collections. class G4VHitsCollection; class G4Event { public: G4Event(); G4Event(G4int evID); ~G4Event(); inline void *operator new(size_t); inline void operator delete(void* anEvent); int operator==(const G4Event &right) const; int operator!=(const G4Event &right) const; public: // with description void Print() const; // Print the event ID (starts with zero and increments by one) to G4cout. void Draw() const; // Invoke Draw() methods of all stored trajectories, hits, and digits. // For hits and digits, Draw() methods of the concrete classes must be // implemented. Otherwise nothing will be drawn. private: // event ID G4int eventID; // PrimaryVertex G4PrimaryVertex* thePrimaryVertex; G4int numberOfPrimaryVertex; // HitsCollection G4HCofThisEvent* HC; // DigiCollection G4DCofThisEvent* DC; // TrajectoryContainer G4TrajectoryContainer * trajectoryContainer; public: inline void SetEventID(G4int i) { eventID = i; } inline void SetHCofThisEvent(G4HCofThisEvent*value) { HC = value; } inline void SetDCofThisEvent(G4DCofThisEvent*value) { DC = value; } inline void SetTrajectoryContainer(G4TrajectoryContainer*value) { trajectoryContainer = value; } public: // with description inline G4int GetEventID() const { return eventID; } // Returns the event ID inline void AddPrimaryVertex(G4PrimaryVertex* aPrimaryVertex) { if( thePrimaryVertex == NULL ) { thePrimaryVertex = aPrimaryVertex; } else { thePrimaryVertex->SetNext( aPrimaryVertex ); } numberOfPrimaryVertex++; } // This method sets a new primary vertex. This method must be invoked // exclusively by G4VPrimaryGenerator concrete class. inline G4int GetNumberOfPrimaryVertex() const { return numberOfPrimaryVertex; } // Returns number of primary vertexes the G4Event object has. inline G4PrimaryVertex* GetPrimaryVertex(G4int i=0) const { if( i == 0 ) { return thePrimaryVertex; } else if( i > 0 && i < numberOfPrimaryVertex ) { G4PrimaryVertex* primaryVertex = thePrimaryVertex; for( int j=0; jGetNext(); } return primaryVertex; } else { return NULL; } } // Returns i-th primary vertex of the event. inline G4HCofThisEvent* GetHCofThisEvent() const { return HC; } inline G4DCofThisEvent* GetDCofThisEvent() const { return DC; } inline G4TrajectoryContainer* GetTrajectoryContainer() const { return trajectoryContainer; } // These three methods returns the pointers to the G4HCofThisEvent // (hits collections of this event), G4DCofThisEvent (digi collections // of this event), and G4TrajectoryContainer (trajectory coonainer), // respectively. }; extern G4Allocator anEventAllocator; inline void* G4Event::operator new(size_t) { void* anEvent; anEvent = (void*)anEventAllocator.MallocSingle(); return anEvent; } inline void G4Event::operator delete(void* anEvent) { anEventAllocator.FreeSingle((G4Event*)anEvent); } #endif