Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4gstmed.cc
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27// $Id$
28//
29// The last G4int argument of G4gstmed(..) is used for sending
30// info whether the Geant3 tracking medium parameters should
31// be set (the max step, later: G3 default cut values).
32//
33// by I.Hrivnacova, 27 Sep 99
34
35#include "G4SystemOfUnits.hh"
36#include "G4LogicalVolume.hh"
37#include "G3toG4.hh"
38#include "G3MatTable.hh"
39#include "G3MedTable.hh"
40#include "G4UserLimits.hh"
41#include "G4MagneticField.hh"
42#include "G4Material.hh"
43
44void PG4gstmed(G4String *tokens)
45{
46 // fill the parameter containers
47 G3fillParams(tokens,PTgstmed);
48
49 // interpret the parameters
50 G4String name = Spar[0];
51 G4int itmed = Ipar[0];
52 G4int nmat = Ipar[1];
53 G4int isvol = Ipar[2];
54 G4int ifield = Ipar[3];
55 G4int nwbuf = Ipar[4];
56 G4double fieldm = Rpar[0];
57 G4double tmaxfd = Rpar[1];
58 G4double stemax = Rpar[2];
59 G4double deemax = Rpar[3];
60 G4double epsil = Rpar[4];
61 G4double stmin = Rpar[5];
62 G4double *ubuf = &Rpar[6];
63
64 G4gstmed(itmed,name,nmat,isvol,ifield,fieldm,tmaxfd,stemax,
65 deemax,epsil,stmin,ubuf,nwbuf);
66}
67
68void G4gstmed(G4int itmed, G4String, G4int nmat, G4int isvol,
70 G4double stemax, G4double, G4double,
71 G4double, G4double*, G4int useG3TMLimits)
72{
73 // get the pointer to material nmat
74 G4Material* material = G3Mat.get(nmat);
75
76 // NB. there is the possibility for redundancy in the mag field
77 // and user limits objects. Who cares.
78 // Generate the mag field object
79 // $$$ G4MagneticField* field = new G4MagneticField(ifield, fieldm, tmaxfd);
80 G4MagneticField* field = 0;
81
82 // Generate the user limits object
83 // !!! only "stemax" has its equivalent in G4
84
85 G4UserLimits* limits = 0;
86 if (useG3TMLimits) {
87 limits = new G4UserLimits();
88 limits->SetMaxAllowedStep(stemax*cm);
89 // limits->SetG3DefaultCuts();
90 // this is arranged globally by physics manager
91 }
92
93 // Store this medium in the G3Med structure
94 G3Med.put(itmed, material, field, limits, isvol);
95}
G3G4DLL_API G3MatTable G3Mat
Definition: clparse.cc:55
G3G4DLL_API G3MedTable G3Med
Definition: clparse.cc:56
#define PTgstmed
Definition: G3toG4.hh:65
G3G4DLL_API G4int Ipar[1000]
Definition: clparse.cc:66
void G3fillParams(G4String *tokens, const char *ptypes)
Definition: clparse.cc:219
G3G4DLL_API G4double Rpar[1000]
Definition: clparse.cc:67
G3G4DLL_API G4String Spar[1000]
Definition: clparse.cc:68
double G4double
Definition: G4Types.hh:64
int G4int
Definition: G4Types.hh:66
void PG4gstmed(G4String *tokens)
Definition: G4gstmed.cc:44
void G4gstmed(G4int itmed, G4String, G4int nmat, G4int isvol, G4int, G4double, G4double, G4double stemax, G4double, G4double, G4double, G4double *, G4int useG3TMLimits)
Definition: G4gstmed.cc:68
G4Material * get(G4int id) const
Definition: G3MatTable.cc:44
void put(G4int id, G4Material *material, G4MagneticField *field, G4UserLimits *limits, G4int isvol)
Definition: G3MedTable.cc:53
virtual void SetMaxAllowedStep(G4double ustepMax)