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geant4/source/run/include/G4VUserPhysicsList.hh
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2016-06-09 11:11:55 +02:00

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//
// ********************************************************************
// * DISCLAIMER *
// * *
// * The following disclaimer summarizes all the specific disclaimers *
// * of contributors to this software. The specific disclaimers,which *
// * govern, are listed with their locations in: *
// * http://cern.ch/geant4/license *
// * *
// * Neither the authors of this software system, nor their employing *
// * institutes,nor the agencies providing financial support for this *
// * work make any representation or warranty, express or implied, *
// * regarding this software system or assume any liability for its *
// * use. *
// * *
// * 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: G4VUserPhysicsList.hh,v 1.29 2004/11/29 06:13:11 kurasige Exp $
// GEANT4 tag $Name: geant4-07-00-cand-01 $
//
//
// ------------------------------------------------------------
// GEANT 4 class header file
// Class Description:
// This class is an abstruct class for
// constructing particles and processes.
// User must implement following four virtual methods
// in his own concrete class derived from this class.
// G4VUserPhysicsList::ConstructParticle()
// Construct particles
// G4VUserPhysicsList::constructPhysics()
// Construct procesess and register them to particles
// G4VUserPhysicsList::SetCuts()
// set cut values in range to all particles
// (and rebuilding physics table will be invoked )
//
// -------------------------------------------
// History
// first version 09 Jan. 1998 by H.Kurashige
// modified 24 Jan. 1998 by H.Kurashige
// rename DumpCutValues/DumpCutValuesTable
// change SetCuts method
// add SetCutsWithDefault method
// modified 06 June 1998 by H.Kurashige
// add AddProcessManager
// add BuildPhysicsTable
// modified 29 June 1998 by H.Kurashige
// add AddProcessManager
// modified 05 Dec. 1998 by H.Kurashige
// add ConstructAllParticles()
// modified 14, Apr 1999 by H.Kurashige
// change BuildPhysicsTable as public
// removed ConstructAllParticles() and related methods
// changed SetCuts method argument
// modified 08, Nov 2000 by H.Kurashige
// added Retrieve/StorePhysicsTable and related methods
// modified 08, Mar 2001 by H.Kurashige
// added binary mode for Retrieve/StorePhysicsTable
// added RetrieveCutValues and related
// added Set/ResetStoredInAscii() to switch on ascii mode
// for Retrieve/StorePhysicsTable
// modified for CUTS per REGION 10, Oct 2002 by H.Kurashige
// removed following methods
// void ReCalcCutValue()
// void SetCutValueForOthers()
// void SetCutValueForOtherThan()
// void ReCalcCutValueForOthers()
// virtual G4bool StoreMaterialInfo()
// virtual G4bool StoreCutValues()
// virtual G4bool RetrieveCutValues()
// virtual G4bool CheckForRetrievePhysicsTable()
// virtual G4bool CheckMaterialInfo()
// added void BuildPhysicsTable()
// ------------------------------------------------------------
#ifndef G4VUserPhysicsList_h
#define G4VUserPhysicsList_h 1
#include "globals.hh"
#include "G4ios.hh"
#include "G4ParticleTable.hh"
#include "G4ParticleDefinition.hh"
#include "G4ProductionCutsTable.hh"
class G4UserPhysicsListMessenger;
class G4VProcess;
class G4VUserPhysicsList
{
public:
G4VUserPhysicsList();
virtual ~G4VUserPhysicsList();
public: // with description
// Each particle type will be instantiated
// This method is invoked by the RunManger
virtual void ConstructParticle() = 0;
// By calling the "Construct" method,
// process manager and processes are created.
void Construct();
// Each physics process will be instantiated and
// registered to the process manager of each particle type
// This method is invoked in Construct" method
virtual void ConstructProcess() = 0;
protected: // with description
// User must invoke this method in his ConstructProcess()
// implementation in order to insures particle transportation.
// !! Caution: this class must not be overriden !!
void AddTransportation();
/////////////////////////////////////////////////////////////////
public: // with description
// "SetCuts" method sets a cut value for all particle types
// in the particle table
virtual void SetCuts() = 0;
public: // with description
// set/get the default cut value
// Calling SetDefaultCutValue causes re-calcuration of cut values
// and physics tables just before the next event loop
void SetDefaultCutValue(G4double newCutValue);
G4double GetDefaultCutValue() const;
/////////////////////////////////////////////////////////////////////
public: // with description
// Invoke BuildPhysicsTable for all processes for all particles
// In case of "Retrieve" flag is ON, PhysicsTable will be
// retrieved from files
void BuildPhysicsTable();
// do PreparePhysicsTable for specified particle type
void PreparePhysicsTable(G4ParticleDefinition* );
// do BuildPhysicsTable for specified particle type
void BuildPhysicsTable(G4ParticleDefinition* );
// Store PhysicsTable together with both material and cut value
// information in files under the specified directory.
// (return true if files are sucessfully created)
G4bool StorePhysicsTable(const G4String& directory = ".");
// Return true if "Retrieve" flag is ON.
// (i.e. PhysicsTable will be retrieved from files)
G4bool IsPhysicsTableRetrieved() const;
G4bool IsStoredInAscii() const;
// Get directory path for physics table files.
const G4String& GetPhysicsTableDirectory() const;
// Set "Retrieve" flag
// Directory path can be set together.
// Null string (default) means directory is not changed
// from the current value
void SetPhysicsTableRetrieved(const G4String& directory = "");
void SetStoredInAscii();
// Reset "Retrieve" flag
void ResetPhysicsTableRetrieved();
void ResetStoredInAscii();
///////////////////////////////////////////////////////////////////////
public: // with description
// Print out the List of registered particles types
void DumpList() const;
public: // with description
// Request to print out information of cut values
// Printing will be performed when all tables are made
void DumpCutValuesTable(G4int nParticles=3);
// The following method actually trigger the print-out requested
// by the above method. This method must be invoked by RunManager
// at the proper moment.
void DumpCutValuesTableIfRequested();
void DumpCutValues(const G4String &particle_name = "ALL");
void DumpCutValues(G4ParticleDefinition* );
public: // with description
void SetVerboseLevel(G4int value);
G4int GetVerboseLevel() const;
// set/get controle flag for output message
// 0: Silent
// 1: Warning message
// 2: More
///////////////////////////////////////////////////////////////////////////
public: // with description
// "SetCutsWithDefault" method sets the default cut value
// for all particles for the default region.
void SetCutsWithDefault();
// Following are utility methods for SetCuts
// SetCutValue sets a cut value for a particle type for the default region
void SetCutValue(G4double aCut, const G4String& pname);
// SetCutValue sets a cut value for a particle type for a region
void SetCutValue(G4double aCut, const G4String& pname, const G4String& rname);
// Invoke SetCuts for specified particle for a region
// If the pointer to the region is NULL, the default region is used
// In case of "Retrieve" flag is ON,
// Cut values will be retrieved from files
void SetParticleCuts(G4double cut,G4ParticleDefinition* particle,G4Region* region=0);
// Invoke SetCuts for all particles in a region
void SetCutsForRegion(G4double aCut, const G4String& rname);
// Following are utility methods are obsolete
void ResetCuts();
///////////////////////////////////////////////////////////////////
public:
// Get/SetApplyCuts gets/sets the flag for ApplyCuts
void SetApplyCuts(G4bool value, const G4String& name);
G4bool GetApplyCuts(const G4String& name) const;
///////////////////////////////////////////////////////////////////////////////
protected:
// do BuildPhysicsTable for make the integral schema
void BuildIntegralPhysicsTable(G4VProcess* ,G4ParticleDefinition* );
protected:
// Retrieve PhysicsTable from files for proccess belongng the particle.
// Normal BuildPhysics procedure of processes will be invoked,
// if it fails (in case of Process's RetrievePhysicsTable returns false)
virtual void RetrievePhysicsTable(G4ParticleDefinition* ,
const G4String& directory,
G4bool ascii = false);
/////////////////////////////////////////////////////////////////
protected:
// adds new ProcessManager to all particles in the Particle Table
// this routine is used in Construct()
void InitializeProcessManager();
public: // with description
// remove and delete ProcessManagers for all particles in tha Particle Table
// this routine is invoked from RunManager
void RemoveProcessManager();
public: // with description
// add process manager for particles created on-the-fly
void AddProcessManager(G4ParticleDefinition* newParticle,
G4ProcessManager* newManager = 0 );
////////////////////////////////////////////////////////////////////////
protected:
// the particle table has the complete List of existing particle types
G4ParticleTable* theParticleTable;
G4ParticleTable::G4PTblDicIterator* theParticleIterator;
protected:
// pointer to G4UserPhysicsListMessenger
G4UserPhysicsListMessenger* theMessenger;
protected:
G4int verboseLevel;
protected:
// this is the default cut value for all particles
G4double defaultCutValue;
protected:
// pointer to ProductionCutsTable
G4ProductionCutsTable* fCutsTable;
// flag to determine physics table will be build from file or not
G4bool fRetrievePhysicsTable;
G4bool fStoredInAscii;
G4bool fIsCheckedForRetrievePhysicsTable;
G4bool fIsRestoredCutValues;
// directory name for physics table files
G4String directoryPhysicsTable;
// flag for displaying the range cuts & energy thresholds
G4int fDisplayThreshold;
private:
enum { FixedStringLengthForStore = 32 };
////////////////////////////////////////////////////////////////////////////
// Following method is for backward compatibility and removed soon
////////////////////////////////////////////////////////////////////////////
protected:
void SetCutValueForOthers(G4double) const;
};
inline
void G4VUserPhysicsList::SetCutValueForOthers(G4double) const
{
G4cerr << "WARNING !" << G4endl;
G4cerr << " SetCutValueForOthers became obsolete." << G4endl;
G4cerr << " It is harmless to remove this invokation without any side effects." << G4endl;
G4cerr << " This dummy method implementation will be removed soon." << G4endl;
}
inline void G4VUserPhysicsList::Construct()
{
#ifdef G4VERBOSE
if (verboseLevel >1) G4cout << "G4VUserPhysicsList::Construct()" << G4endl;
#endif
InitializeProcessManager();
#ifdef G4VERBOSE
if (verboseLevel >1) G4cout << "Construct processes " << G4endl;
#endif
ConstructProcess();
}
inline G4double G4VUserPhysicsList::GetDefaultCutValue() const
{
return defaultCutValue;
}
inline G4int G4VUserPhysicsList::GetVerboseLevel() const
{
return verboseLevel;
}
inline
G4bool G4VUserPhysicsList::IsPhysicsTableRetrieved() const
{
return fRetrievePhysicsTable;
}
inline
G4bool G4VUserPhysicsList::IsStoredInAscii() const
{
return fStoredInAscii;
}
inline
const G4String& G4VUserPhysicsList::GetPhysicsTableDirectory() const
{
return directoryPhysicsTable;
}
inline
void G4VUserPhysicsList::SetStoredInAscii()
{
fStoredInAscii = true;
}
inline
void G4VUserPhysicsList::ResetPhysicsTableRetrieved()
{
fRetrievePhysicsTable = false;
fIsRestoredCutValues = false;
fIsCheckedForRetrievePhysicsTable=false;
}
inline
void G4VUserPhysicsList::ResetStoredInAscii()
{
fStoredInAscii = false;
}
#endif