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AlignableDTStation.h
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1 #ifndef Alignment_MuonAlignment_AlignableDTStation_H
2 #define Alignment_MuonAlignment_AlignableDTStation_H
3 
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18 
19 
20 #include <vector>
21 
22 class GeomDet;
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28 
30 {
31 
32  public:
33 
34  AlignableDTStation( const std::vector<AlignableDTChamber*>& dtChambers );
35 
37 
38  virtual std::vector<Alignable*> components() const
39  {
40 
41  std::vector<Alignable*> result;
42  result.insert( result.end(), theDTChambers.begin(), theDTChambers.end() );
43  return result;
44 
45  }
46 
47  // gets the global position as the average over all positions of the layers
49  // get the global orientation
50  RotationType computeOrientation() ; //see explanation for "theOrientation"
51  // get the Surface
53 
55 
57  friend std::ostream& operator << ( std::ostream&, const AlignableDTStation& );
58 
60  void dump( void ) const;
61 
62 
63 private:
64 
65  std::vector<AlignableDTChamber*> theDTChambers;
66 
67 
68 };
69 
70 #endif
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72 
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74 
A muon DT Chamber( an AlignableDet )
AlignableSurface computeSurface()
RotationType computeOrientation()
Just initialize to default given by default constructor of a RotationType.
~AlignableDTStation()
Clean delete of the vector and its elements.
AlignableDTChamber & chamber(int i)
Return Alignable DT Chamber at given index.
friend std::ostream & operator<<(std::ostream &, const AlignableDTStation &)
Printout muon DT Station information (not recursive)
std::vector< AlignableDTChamber * > theDTChambers
AlignableDTStation(const std::vector< AlignableDTChamber * > &dtChambers)
The constructor simply copies the vector of DT Chambers and computes the surface from them...
PositionType computePosition()
Compute average z position from all components (x and y forced to 0)
virtual std::vector< Alignable * > components() const
Return vector of direct components.
void dump(void) const
Recursive printout of the muon DT Station structure.