Geant4 11.2.2
Toolkit for the simulation of the passage of particles through matter
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G4tgrSolidBoolean.cc
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1//
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25//
26// G4tgrSolidBoolean implementation
27//
28// Author: P.Arce, CIEMAT (November 2007)
29// --------------------------------------------------------------------
30
31#include "G4tgrSolidBoolean.hh"
32#include "G4tgrUtils.hh"
33#include "G4tgrVolume.hh"
34#include "G4tgrVolumeMgr.hh"
35#include "G4tgrMessenger.hh"
36#include "G4tgrFileReader.hh"
37
38// --------------------------------------------------------------------
39G4tgrSolidBoolean::G4tgrSolidBoolean(const std::vector<G4String>& wl)
40{
41 // :SOLID/:VOLU VOLU UNION/SUBS/INTERS VOLU1 VOLU2 ROTM POSX POSY POSZ
42
43 if(wl.size() != 9)
44 {
45 G4tgrUtils::DumpVS(wl, "G4tgrSolidBoolean::G4tgrSolidBoolean()");
46 G4Exception("G4tgrSolidBoolean::G4tgrSolidBoolean()", "InvalidInput",
47 FatalException, "Line read with less or more than 9 words.");
48 }
49
50 //---------- Set name
52
54 const G4tgrSolid* sol1 = volmgr->FindSolid(G4tgrUtils::GetString(wl[3]));
55 if(sol1 == nullptr)
56 {
57 sol1 = volmgr->FindVolume(G4tgrUtils::GetString(wl[3]), 1)->GetSolid();
58 }
59 const G4tgrSolid* sol2 = volmgr->FindSolid(G4tgrUtils::GetString(wl[4]));
60 if(sol2 == nullptr)
61 {
62 sol2 = volmgr->FindVolume(G4tgrUtils::GetString(wl[4]), 1)->GetSolid();
63 }
64 theSolids.push_back(sol1);
65 theSolids.push_back(sol2);
66
67 //---------- Set relative placement and rotation matrix
68 theRelativeRotMatName = G4tgrUtils::GetString(wl[5]);
69 theRelativePlace =
72 //---------- Set solid type
73 G4String wl2 = wl[2];
74 for(G4int ii = 0; ii < (G4int)wl2.length(); ++ii)
75 {
76 wl2[ii] = (char)std::toupper(wl2[ii]);
77 }
78 theType = "Boolean_" + wl2;
79
80#ifdef G4VERBOSE
82 {
83 G4cout << " Created " << *this << G4endl;
84 }
85#endif
86
88}
89
90// --------------------------------------------------------------------
94
95// --------------------------------------------------------------------
97{
98 return theRelativeRotMatName;
99}
100
101// --------------------------------------------------------------------
103{
104 return theRelativePlace;
105}
106
107// --------------------------------------------------------------------
108std::ostream& operator<<(std::ostream& os, const G4tgrSolidBoolean& sol)
109{
110 os << "G4tgrSolidBoolean= " << sol.theName << " of type " << sol.theType
111 << " PARAMS: ";
112 if(sol.theSolidParams.size() != 0)
113 {
114 std::vector<G4double> solpar = *(sol.theSolidParams[0]);
115 for(std::size_t ii = 0; ii < solpar.size(); ++ii)
116 {
117 os << solpar[ii] << " ";
118 }
119 }
120 os << G4endl;
121
122 return os;
123}
@ FatalException
void G4Exception(const char *originOfException, const char *exceptionCode, G4ExceptionSeverity severity, const char *description)
CLHEP::Hep3Vector G4ThreeVector
int G4int
Definition G4Types.hh:85
#define G4endl
Definition G4ios.hh:67
G4GLOB_DLL std::ostream G4cout
std::ostream & operator<<(std::ostream &os, const G4tgrSolidBoolean &sol)
static G4int GetVerboseLevel()
G4tgrSolidBoolean(const std::vector< G4String > &wl)
G4ThreeVector GetRelativePlace() const
const G4String & GetRelativeRotMatName() const
G4String theType
Definition G4tgrSolid.hh:68
G4String theName
Definition G4tgrSolid.hh:66
static G4String GetString(const G4String &str)
static void DumpVS(const std::vector< G4String > &wl, const char *msg)
static G4double GetDouble(const G4String &str, G4double unitval=1.)
G4tgrVolume * FindVolume(const G4String &volname, G4bool exists=false)
G4tgrSolid * FindSolid(const G4String &name, G4bool exists=false)
void RegisterMe(G4tgrSolid *vol)
static G4tgrVolumeMgr * GetInstance()
G4tgrSolid * GetSolid() const