Geant4 Cross Reference

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Geant4/persistency/ascii/src/G4tgbPlaceParamLinear.cc

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 25 //
 26 // G4tgbPlaceParamLinear implementation
 27 //
 28 // Author: P.Arce, CIEMAT (November 2007)
 29 // --------------------------------------------------------------------
 30 
 31 #include "G4tgbPlaceParamLinear.hh"
 32 #include "G4RotationMatrix.hh"
 33 #include "G4VPhysicalVolume.hh"
 34 #include "G4tgrMessenger.hh"
 35 #include "G4tgrPlaceParameterisation.hh"
 36 
 37 // --------------------------------------------------------------------
 38 G4tgbPlaceParamLinear::~G4tgbPlaceParamLinear()
 39 {
 40 }
 41 
 42 // --------------------------------------------------------------------
 43 G4tgbPlaceParamLinear::
 44 G4tgbPlaceParamLinear(G4tgrPlaceParameterisation* tgrParam)
 45   : G4tgbPlaceParameterisation(tgrParam)
 46 {
 47   //---- Get translation and rotation
 48   if(tgrParam->GetParamType() == "LINEAR")
 49   {
 50     CheckNExtraData(tgrParam, 6, WLSIZE_EQ, "G4tgbPlaceParamLinear:");
 51     theDirection =
 52       G4ThreeVector(tgrParam->GetExtraData()[3], tgrParam->GetExtraData()[4],
 53                     tgrParam->GetExtraData()[5]);
 54     theAxis = kZAxis;
 55   }
 56   else
 57   {
 58     CheckNExtraData(tgrParam, 3, WLSIZE_EQ, "G4tgbPlaceParamLinear:");
 59     if(tgrParam->GetParamType() == "LINEAR_X")
 60     {
 61       theDirection = G4ThreeVector(1., 0., 0.);
 62       theAxis      = kXAxis;
 63     }
 64     else if(tgrParam->GetParamType() == "LINEAR_Y")
 65     {
 66       theDirection = G4ThreeVector(0., 1., 0.);
 67       theAxis      = kYAxis;
 68     }
 69     else if(tgrParam->GetParamType() == "LINEAR_Z")
 70     {
 71       theDirection = G4ThreeVector(0., 0., 1.);
 72       theAxis      = kZAxis;
 73     }
 74   }
 75 
 76   if(theDirection.mag() == 0.)
 77   {
 78     G4Exception("G4tgbPlaceParamLinear::G4tgbPlaceParamLinear()",
 79                 "InvalidSetup", FatalException, "Direction is zero !");
 80   }
 81   else
 82   {
 83     theDirection /= theDirection.mag();
 84   }
 85 
 86   theNCopies = G4int(tgrParam->GetExtraData()[0]);
 87   theStep    = tgrParam->GetExtraData()[1];
 88   theOffset  = tgrParam->GetExtraData()[2];
 89 
 90   theTranslation = G4ThreeVector(0., 0., 0.) + theOffset * theDirection;
 91 
 92 #ifdef G4VERBOSE
 93   if(G4tgrMessenger::GetVerboseLevel() >= 2)
 94   {
 95     G4cout << " G4tgbPlaceParamLinear::G4tgbPlaceParamLinear(): "
 96            << " param type " << tgrParam->GetParamType() << G4endl
 97            << "   N copies " << theNCopies << G4endl << "   step " << theStep
 98            << G4endl << "   offset " << theOffset << G4endl << "   translation "
 99            << theTranslation << G4endl << "   direction " << theDirection
100            << G4endl << "   axis " << theAxis << G4endl;
101   }
102 #endif
103 }
104 
105 // --------------------------------------------------------------------
106 void G4tgbPlaceParamLinear::
107 ComputeTransformation(const G4int copyNo, G4VPhysicalVolume* physVol) const
108 {
109   G4ThreeVector origin = theTranslation + copyNo * theStep * theDirection;
110 
111 #ifdef G4VERBOSE
112   if(G4tgrMessenger::GetVerboseLevel() >= 3)
113   {
114     G4cout << " G4tgbPlaceParamLinear::ComputeTransformation() -"
115            << physVol->GetName() << G4endl << " copyNo " << copyNo << " pos "
116            << origin << G4endl;
117   }
118 #endif
119   //----- Set traslation and rotation
120   physVol->SetTranslation(origin);
121   physVol->SetCopyNo(copyNo);
122   physVol->SetRotation(theRotationMatrix);
123 }
124