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G4gsvolu.cc
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25 //
26 //
27 //
28 // by I.Hrivnacova, 13.10.99
29 
30 #include <iomanip>
31 #include "G3VolTable.hh"
32 #include "globals.hh"
33 #include "G3toG4.hh"
34 #include "G3toG4MakeSolid.hh"
35 
36 void PG4gsvolu(G4String *tokens) {
37  // fill the parameter containers
38  G3fillParams(tokens,PTgsvolu);
39 
40  // interpret the parameters
41  G4String vname = Spar[0];
42  G4String shape = Spar[1];
43  G4int nmed = Ipar[0];
44  G4int npar = Ipar[1];
45  G4double *pars = Rpar;
46 
47  G4gsvolu(vname, shape, nmed, pars, npar);
48 }
49 
51  G4double rpar[], G4int npar)
52 {
53  // create the solid
54  G4bool hasNegPars;
55  G4bool deferred;
56  G4bool okAxis[3];
57  G4VSolid* solid
58  = G3toG4MakeSolid(vname, shape, rpar, npar, hasNegPars, deferred, okAxis);
59 
60  // if solid has been deferred
61  // VTE is created with hasNegPars = true
62  if (deferred) hasNegPars = true;
63 
64  // create VTE
65  G3VolTableEntry* vte
66  = new G3VolTableEntry(vname, shape, rpar, npar, nmed, solid, hasNegPars);
67  G3Vol.PutVTE(vte);
68 
69  return vte;
70 }
71 
72 void G4gsvolu(G4String vname, G4String shape, G4int nmed, G4double* rpar,
73  G4int npar)
74 {
75  /*
76  G4cout << "Creating logical volume " << vname << " shape " << shape
77  << " nmed " << nmed << " #pars "<< npar << " parameters (cm): ";
78  for (int ipar=0; ipar< npar; ipar++) G4cout << std::setw(8) << rpar[ipar];
79  G4cout << G4endl;
80  */
81  if (G3Vol.GetVTE(vname)) {
82  // abort if VTE with given name exists
83  G4String text = "G4gsvolu: Attempt to create volume " + vname + " twice.";
84  G4Exception("G4gsvolu()", "G3toG40024", FatalException, text);
85  return;
86  }
87  else {
88  G4CreateVTE(vname, shape, nmed, rpar, npar);
89  }
90 }