Import Geant4 10.7.0 source tree
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@@ -23,21 +23,16 @@
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// * acceptance of all terms of the Geant4 Software license. *
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// ********************************************************************
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//
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//
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//
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//
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// class G4GDMLWriteStructure
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// G4GDMLWriteStructure
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//
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// Class description:
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//
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// GDML class for export of structures.
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// History:
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// - Created. Zoltan Torzsok, November 2007
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// -------------------------------------------------------------------------
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#ifndef _G4GDMLWRITESTRUCTURE_INCLUDED_
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#define _G4GDMLWRITESTRUCTURE_INCLUDED_
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// Author: Zoltan Torzsok, November 2007
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// --------------------------------------------------------------------
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#ifndef G4GDMLWRITESTRUCTURE_HH
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#define G4GDMLWRITESTRUCTURE_HH 1
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#include "G4Types.hh"
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#include "G4Transform3D.hh"
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@@ -55,58 +50,70 @@ class G4AssemblyTriplet;
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class G4GDMLWriteStructure : public G4GDMLWriteParamvol
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{
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public:
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public:
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G4GDMLWriteStructure();
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virtual ~G4GDMLWriteStructure();
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G4GDMLWriteStructure();
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virtual ~G4GDMLWriteStructure();
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virtual void StructureWrite(xercesc::DOMElement*);
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void AddVolumeAuxiliary(G4GDMLAuxStructType myaux,
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const G4LogicalVolume* const);
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virtual void StructureWrite(xercesc::DOMElement*);
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void AddVolumeAuxiliary(G4GDMLAuxStructType myaux, const G4LogicalVolume* const);
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void SetEnergyCutsExport(G4bool);
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void SetSDExport(G4bool);
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void SetEnergyCutsExport(G4bool);
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void SetSDExport(G4bool);
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G4int GetMaxExportLevel() const;
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void SetMaxExportLevel(G4int);
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G4int GetMaxExportLevel() const;
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void SetMaxExportLevel(G4int);
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protected:
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protected:
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void DivisionvolWrite(xercesc::DOMElement*, const G4PVDivision* const);
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void PhysvolWrite(xercesc::DOMElement*,
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const G4VPhysicalVolume* const topVol,
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const G4Transform3D& transform,
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const G4String& moduleName);
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void ReplicavolWrite(xercesc::DOMElement*, const G4VPhysicalVolume* const);
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void AssemblyWrite(xercesc::DOMElement*, const int assemblyID);
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G4Transform3D TraverseVolumeTree(const G4LogicalVolume* const topVol,
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const G4int depth);
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void SurfacesWrite();
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void BorderSurfaceCache(const G4LogicalBorderSurface* const);
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void SkinSurfaceCache(const G4LogicalSkinSurface* const);
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const G4LogicalBorderSurface* GetBorderSurface(
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const G4VPhysicalVolume* const);
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const G4LogicalSkinSurface* GetSkinSurface(const G4LogicalVolume* const);
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G4bool FindOpticalSurface(const G4SurfaceProperty*);
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void ExportEnergyCuts(const G4LogicalVolume* const);
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void ExportSD(const G4LogicalVolume* const);
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void DivisionvolWrite(xercesc::DOMElement*, const G4PVDivision* const);
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void PhysvolWrite(xercesc::DOMElement*,const G4VPhysicalVolume* const topVol,
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const G4Transform3D& transform, const G4String& moduleName);
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void ReplicavolWrite(xercesc::DOMElement*, const G4VPhysicalVolume* const);
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void AssemblyWrite(xercesc::DOMElement*, const int assemblyID);
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G4Transform3D TraverseVolumeTree(const G4LogicalVolume* const topVol,
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const G4int depth);
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void SurfacesWrite();
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void BorderSurfaceCache(const G4LogicalBorderSurface* const);
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void SkinSurfaceCache(const G4LogicalSkinSurface* const);
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const G4LogicalBorderSurface* GetBorderSurface(const G4VPhysicalVolume* const);
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const G4LogicalSkinSurface* GetSkinSurface(const G4LogicalVolume* const);
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G4bool FindOpticalSurface(const G4SurfaceProperty*);
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void ExportEnergyCuts(const G4LogicalVolume* const);
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void ExportSD(const G4LogicalVolume* const);
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protected:
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protected:
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xercesc::DOMElement* structureElement = nullptr;
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std::vector<xercesc::DOMElement*> borderElementVec;
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std::vector<xercesc::DOMElement*> skinElementVec;
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std::map<const G4LogicalVolume*, G4GDMLAuxListType> auxmap;
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xercesc::DOMElement* structureElement;
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std::vector<xercesc::DOMElement*> borderElementVec;
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std::vector<xercesc::DOMElement*> skinElementVec;
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std::map<const G4LogicalVolume*, G4GDMLAuxListType> auxmap;
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private: // cache for optical surfaces...
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private: // cache for optical surfaces...
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std::vector<const G4OpticalSurface*> opt_vec;
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std::vector<const G4OpticalSurface*> opt_vec;
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G4ReflectionFactory* reflFactory;
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G4bool cexport; // Flag for optional export of energy cuts per volume
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G4bool sdexport; // Flag for optional export of SD per volume
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G4int maxLevel; // Maximum number of levels to export
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static G4int levelNo; // Counter for level being exported
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std::map<const G4VPhysicalVolume*, G4int> assemblyVolMap; // Map of phys volumes to assembly IDs
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std::map<const G4VPhysicalVolume*, G4int> imprintsMap; // Map of phys volumes to imprints IDs
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std::vector<int> addedAssemblies; // vector of assemblies IDs already added to the structure
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G4ReflectionFactory* reflFactory = nullptr;
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G4bool cexport = false;
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// Flag for optional export of energy cuts per volume
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G4bool sdexport= false;
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// Flag for optional export of SD per volume
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G4int maxLevel = 0;
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// Maximum number of levels to export
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static G4int levelNo;
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// Counter for level being exported
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std::map<const G4VPhysicalVolume*, G4int> assemblyVolMap;
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// Map of phys volumes to assembly IDs
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std::map<const G4VPhysicalVolume*, G4int> imprintsMap;
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// Map of phys volumes to imprints IDs
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std::vector<G4int> addedAssemblies;
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// Vector of assemblies IDs already added to the structure
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};
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#endif
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