source: trunk/source/geometry/management/include/G4Region.hh@ 1310

Last change on this file since 1310 was 1228, checked in by garnier, 16 years ago

update geant4.9.3 tag

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[831]1//
2// ********************************************************************
3// * License and Disclaimer *
4// * *
5// * The Geant4 software is copyright of the Copyright Holders of *
6// * the Geant4 Collaboration. It is provided under the terms and *
7// * conditions of the Geant4 Software License, included in the file *
8// * LICENSE and available at http://cern.ch/geant4/license . These *
9// * include a list of copyright holders. *
10// * *
11// * Neither the authors of this software system, nor their employing *
12// * institutes,nor the agencies providing financial support for this *
13// * work make any representation or warranty, express or implied, *
14// * regarding this software system or assume any liability for its *
15// * use. Please see the license in the file LICENSE and URL above *
16// * for the full disclaimer and the limitation of liability. *
17// * *
18// * This code implementation is the result of the scientific and *
19// * technical work of the GEANT4 collaboration. *
20// * By using, copying, modifying or distributing the software (or *
21// * any work based on the software) you agree to acknowledge its *
22// * use in resulting scientific publications, and indicate your *
23// * acceptance of all terms of the Geant4 Software license. *
24// ********************************************************************
25//
26//
[1228]27// $Id: G4Region.hh,v 1.21 2009/11/27 16:34:37 gcosmo Exp $
28// GEANT4 tag $Name: geant4-09-03 $
[831]29//
30// class G4Region
31//
32// Class description:
33//
34// Defines a region or a group of regions in the detector geometry
35// setup, sharing properties associated to materials or production
36// cuts which may affect or bias specific physics processes.
37
38// History:
39// 18.09.02 G.Cosmo Initial version
40// --------------------------------------------------------------------
41#ifndef G4REGION_HH
42#define G4REGION_HH
43
44class G4ProductionCuts;
45class G4LogicalVolume;
46class G4Material;
47class G4VUserRegionInformation;
48class G4MaterialCutsCouple;
49class G4UserLimits;
[1228]50class G4FieldManager;
[831]51class G4FastSimulationManager;
52class G4VPhysicalVolume;
53class G4UserSteppingAction;
54
55#include <vector>
56#include <map>
57#include <algorithm>
58
59#include "G4Types.hh"
60#include "G4String.hh"
61
62class G4Region
63{
64 typedef std::vector<G4LogicalVolume*> G4RootLVList;
65 typedef std::vector<G4Material*> G4MaterialList;
66 typedef std::pair<G4Material*,G4MaterialCutsCouple*> G4MaterialCouplePair;
67 typedef std::map<G4Material*,G4MaterialCutsCouple*> G4MaterialCoupleMap;
68
69 public: // with description
70
71 G4Region(const G4String& name);
72 virtual ~G4Region();
73
74 inline G4bool operator==(const G4Region& rg) const;
75 // Equality defined by address only.
76
77 void AddRootLogicalVolume(G4LogicalVolume* lv);
[850]78 void RemoveRootLogicalVolume(G4LogicalVolume* lv, G4bool scan=true);
[831]79 // Add/remove root logical volumes and set/reset their
80 // daughters flags as regions. They also recompute the
81 // materials list for the region.
82
83 inline void SetName(const G4String& name);
84 inline const G4String& GetName() const;
85 // Set/get region's name.
86
87 inline void RegionModified(G4bool flag);
88 inline G4bool IsModified() const;
89 // Accessors to flag identifying if a region has been modified
90 // (and still cuts needs to be computed) or not.
91
92 inline void SetProductionCuts(G4ProductionCuts* cut);
93 inline G4ProductionCuts* GetProductionCuts() const;
94
95 inline std::vector<G4LogicalVolume*>::iterator
96 GetRootLogicalVolumeIterator();
97 inline std::vector<G4Material*>::const_iterator
98 GetMaterialIterator() const;
99 // Return iterators to lists of root logical volumes and materials.
100
101 inline size_t GetNumberOfMaterials() const;
102 inline size_t GetNumberOfRootVolumes() const;
103 // Return the number of elements in the lists of materials and
104 // root logical volumes.
105
106 void UpdateMaterialList();
107 // Clears material list and recomputes it looping through
108 // each root logical volume in the region.
109
110 void ClearMaterialList();
111 // Clears the material list.
112
113 void ScanVolumeTree(G4LogicalVolume* lv, G4bool region);
114 // Scans recursively the 'lv' logical volume tree, retrieves
115 // and places all materials in the list if becoming a region.
116
117 inline void SetUserInformation(G4VUserRegionInformation* ui);
118 inline G4VUserRegionInformation* GetUserInformation() const;
119 // Set and Get methods for user information.
120
121 inline void SetUserLimits(G4UserLimits* ul);
122 inline G4UserLimits* GetUserLimits() const;
123 // Set and Get methods for userL-limits associated to a region.
124 // Once user-limits are set, it will propagate to daughter volumes.
125
126 inline void ClearMap();
127 // Reset G4MaterialCoupleMap
128
129 inline void RegisterMaterialCouplePair(G4Material* mat,
130 G4MaterialCutsCouple* couple);
131 // Method invoked by G4ProductionCutsTable to register the pair.
132
133 inline G4MaterialCutsCouple* FindCouple(G4Material* mat);
134 // Find a G4MaterialCutsCouple which corresponds to the material
135 // in this region.
136
137 inline void SetFastSimulationManager(G4FastSimulationManager* fsm);
138 inline G4FastSimulationManager* GetFastSimulationManager() const;
139 // Set and Get methods for G4FastSimulationManager.
140 // The root logical volume that has the region with G4FastSimulationManager
141 // becomes an envelope of fast simulation.
142
143 void ClearFastSimulationManager();
144 // Set G4FastSimulationManager pointer to the one for the parent region
145 // if it exists. Otherwise set to null.
146
[1228]147 inline void SetFieldManager(G4FieldManager* fm);
148 inline G4FieldManager* GetFieldManager() const;
149 // Set and Get methods for G4FieldManager.
150 // The region with assigned field-manager sets the field to the
151 // geometrical area associated with it; priority is anyhow given
152 // to local fields eventually set to logical volumes.
153
[831]154 inline G4VPhysicalVolume* GetWorldPhysical() const;
155 // Get method for the world physical volume which this region
156 // belongs to. A valid pointer will be assigned by G4RunManagerKernel
157 // through G4RegionStore when the geometry is to be closed. Thus, this
158 // pointer may be incorrect at PreInit and Idle state. If the pointer
159 // is null at the proper state, this particular region does not belong
160 // to any world (maybe not assigned to any volume, etc.).
161
162 void SetWorld(G4VPhysicalVolume* wp);
163 // Set the world physical volume if this region belongs to this world.
164 // If wp is null, reset the pointer.
165
166 G4bool BelongsTo(G4VPhysicalVolume* thePhys) const;
167 // Returns whether this region belongs to the given physical volume
168 // (recursively scanned to the bottom of the hierarchy).
169
170 G4Region* GetParentRegion(G4bool& unique) const;
171 // Returns a region that contains this region. Otherwise null returned.
172 // Flag 'unique' is true if there is only one parent region containing
173 // the current region.
174
175 inline void SetRegionalSteppingAction(G4UserSteppingAction* rusa);
176 inline G4UserSteppingAction* GetRegionalSteppingAction() const;
177 // Set/Get method of the regional user stepping action
178
179 public: // without description
180
181 G4Region(__void__&);
182 // Fake default constructor for usage restricted to direct object
183 // persistency for clients requiring preallocation of memory for
184 // persistifiable objects.
185
186 private:
187
188 G4Region(const G4Region&);
189 G4Region& operator=(const G4Region&);
190 // Private copy constructor and assignment operator.
191
192 inline void AddMaterial (G4Material* aMaterial);
193 // Searchs the specified material in the material table and
194 // if not present adds it.
195
196 private:
197
198 G4String fName;
199
200 G4RootLVList fRootVolumes;
201 G4MaterialList fMaterials;
202 G4MaterialCoupleMap fMaterialCoupleMap;
203
204 G4bool fRegionMod;
205 G4ProductionCuts* fCut;
206
207 G4VUserRegionInformation* fUserInfo;
208 G4UserLimits* fUserLimits;
[1228]209 G4FieldManager* fFieldManager;
[831]210
211 G4FastSimulationManager* fFastSimulationManager;
212
213 G4VPhysicalVolume* fWorldPhys;
214
215 G4UserSteppingAction* fRegionalSteppingAction;
216};
217
218#include "G4Region.icc"
219
220#endif
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