Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4gsdvn.cc
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25//
26//
27// $Id$
28//
29// by I.Hrivnacova, V.Berejnoi, 29 Oct 99
30
31#include "G3G4Interface.hh"
32#include "G3Division.hh"
33#include "G3VolTableEntry.hh"
34#include "G3VolTable.hh"
35#include "globals.hh"
36#include "G3toG4.hh"
37
38void PG4gsdvn(G4String *tokens)
39{
40 // fill the parameter containers
41 G3fillParams(tokens,PTgsdvn);
42
43 // interpret the parameters
44 G4String vname = Spar[0];
45 G4String vmoth = Spar[1];
46 G4int ndiv = Ipar[0];
47 G4int iaxis = Ipar[1];
48
49 G4gsdvn(vname, vmoth, ndiv, iaxis);
50}
51
53 G3DivType divType, G4int nofDivisions, G4int iaxis, G4int,
54 G4double c0, G4double step)
55{
56 G3VolTableEntry* vte=0;
57
58 // loop over all mothers
59 for (G4int i=0; i<mvte->GetNoClones(); i++) {
60 G3VolTableEntry* mvteClone = mvte->GetClone(i);
61 G4String shape = mvteClone->GetShape();
62 G4int nmed = mvteClone->GetNmed();
63 G4String mvteName = mvteClone->GetName();
64
65 G4String newName = vname;
66 if (i>0) {
67 char index[5]; sprintf(index, "%d", i);
68 newName.append(gSeparator); newName = newName + index;
69 }
70
71 // create new VTE with 0 solid
72 // and let vol table know about it
73 G3VolTableEntry* vteClone
74 = new G3VolTableEntry(newName, shape, 0, 0, nmed, 0, true);
75 G3Vol.PutVTE(vteClone);
76
77 // set mother <-> daughter
78 // (mother/daughter are reset in case an envelope
79 // needs to be created in G3Division::UpdateVTE)
80 mvteClone->AddDaughter(vteClone);
81 vteClone->AddMother(mvteClone);
82
83 // create new G3Division
84 G3Division* division
85 = new G3Division(divType, vteClone, mvteClone,
86 nofDivisions, iaxis, nmed, c0, step);
87
88 // set division to vte and update it
89 vteClone->SetDivision(division);
90 division->UpdateVTE();
91
92 if (i == 0) {
93 // keep the first clone copy
94 vte = vteClone;
95 }
96 else {
97 // let vte know about this clone copy
98 vte->AddClone(vteClone);
99 }
100 }
101}
102
103void G4gsdvn(G4String vname, G4String vmoth, G4int ndiv, G4int iaxis)
104{
105 // find mother VTE
106 G3VolTableEntry* mvte = G3Vol.GetVTE(vmoth);
107
108 if (mvte == 0) {
109 G4String text = "G4gsdvn:'" + vmoth + "' has no VolTableEntry";
110 G4Exception("G4gsdvn()", "G3toG40013", FatalException, text);
111 return;
112 }
113 else {
114 // a new vte clone copy with division is created
115 // for each mother (clone copy)
116
117 G4CreateCloneVTEWithDivision(vname, mvte, kDvn, ndiv, iaxis, 0, 0., 0.);
118 }
119}
G3DivType
Definition: G3Division.hh:53
@ kDvn
Definition: G3Division.hh:53
G3G4DLL_API G3VolTable G3Vol
Definition: clparse.cc:54
G3G4DLL_API G4int Ipar[1000]
Definition: clparse.cc:66
void G3fillParams(G4String *tokens, const char *ptypes)
Definition: clparse.cc:219
G3G4DLL_API G4String Spar[1000]
Definition: clparse.cc:68
#define PTgsdvn
Definition: G3toG4.hh:57
G3G4DLL_API char gSeparator
@ FatalException
double G4double
Definition: G4Types.hh:64
int G4int
Definition: G4Types.hh:66
void G4CreateCloneVTEWithDivision(G4String vname, G3VolTableEntry *mvte, G3DivType divType, G4int nofDivisions, G4int iaxis, G4int, G4double c0, G4double step)
Definition: G4gsdvn.cc:52
void G4gsdvn(G4String vname, G4String vmoth, G4int ndiv, G4int iaxis)
Definition: G4gsdvn.cc:103
void PG4gsdvn(G4String *tokens)
Definition: G4gsdvn.cc:38
void UpdateVTE()
Definition: G3Division.cc:95
void AddClone(G3VolTableEntry *aDaughter)
void AddMother(G3VolTableEntry *aDaughter)
void SetDivision(G3Division *division)
G3VolTableEntry * GetClone(G4int i)
void AddDaughter(G3VolTableEntry *aDaughter)
G3VolTableEntry * PutVTE(G3VolTableEntry *aVTE)
Definition: G3VolTable.cc:76
G3VolTableEntry * GetVTE(const G4String &Vname)
Definition: G3VolTable.cc:54
G4String & append(const G4String &)
void G4Exception(const char *originOfException, const char *exceptionCode, G4ExceptionSeverity severity, const char *comments)
Definition: G4Exception.cc:41