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Macro to compare cluster and hits coordinates
[u/mrichter/AliRoot.git] / ITS / UPGRADE / AliITSURecoLayer.h
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a11ef2e4 1#ifndef ALIITSURECOLAYER
2#define ALIITSURECOLAYER
3
4#include <TNamed.h>
5#include <TObjArray.h>
c61e50c3 6#include <TClonesArray.h>
32d38de2 7#include "AliITSURecoSens.h"
8b16dbae 8
a11ef2e4 9class AliITSUGeomTGeo;
10class AliITSsegmentation;
c61e50c3 11class AliCluster;
32d38de2 12
a11ef2e4 13
14///////////////////////////////////////////////////////////////////////
15// //
16// Class AliITSURecoLayer //
17// Interface between the framework and reconstruction for ITS layer //
18// //
19///////////////////////////////////////////////////////////////////////
20
21
22class AliITSURecoLayer : public TNamed
23{
24 public:
25 //
ee52e7b5 26 enum {kPassive=BIT(14) // layer is passive
27 ,kOwnsClusterArray=BIT(15) // owner of cluster array, delete in destructor
28 };
a11ef2e4 29 AliITSURecoLayer(const char* name);
32d38de2 30 AliITSURecoLayer(const char* name, Int_t activeID,AliITSUGeomTGeo* gm);
a11ef2e4 31 virtual ~AliITSURecoLayer();
32 //
32d38de2 33 void ProcessClusters(Int_t mode=0);
a11ef2e4 34 //
35 Int_t GetID() const {return (int)GetUniqueID();}
36 Int_t GetActiveID() const {return fActiveID;}
37 Int_t GetNSensors() const {return fNSensors;}
0091e9f0 38 Int_t GetNLadders() const {return fNLadders;}
39 Int_t GetNSensInLadder() const {return fNSensInLadder;}
a11ef2e4 40 Double_t GetRMin() const {return fRMin;}
41 Double_t GetRMax() const {return fRMax;}
32d38de2 42 Double_t GetDR() const {return fRMax-fRMin;}
a11ef2e4 43 Double_t GetR() const {return fR;}
c51c3124 44 Double_t GetR(Int_t dir) const {return dir==0 ? fR : (dir<0 ? fRMin : fRMax);}
173b3073 45 Double_t GetZMin() const {return fZMin;}
46 Double_t GetZMax() const {return fZMax;}
32d38de2 47 Double_t GetMaxStep() const {return fMaxStep;}
a11ef2e4 48 Bool_t IsActive() const {return !TestBit(kPassive);}
49 Bool_t IsPassive() const {return TestBit(kPassive);}
ee52e7b5 50 Bool_t GetOwnsClusterArray() const {return TestBit(kOwnsClusterArray);}
a11ef2e4 51 //
52 void SetID(Int_t i) {SetUniqueID(i);}
53 void SetActiveID(Int_t i) {fActiveID = i;}
54 void SetRMin(Double_t r) {fRMin = r;}
55 void SetRMax(Double_t r) {fRMax = r;}
56 void SetR(Double_t r) {fR = r;}
173b3073 57 void SetZMin(Double_t z) {fZMin = z;}
58 void SetZMax(Double_t z) {fZMax = z;}
a11ef2e4 59 void SetPassive(Bool_t v=kTRUE) {SetBit(kPassive,v);}
ee52e7b5 60 void SetOwnsClusterArray(Bool_t v=kTRUE) {SetBit(kOwnsClusterArray,v);}
32d38de2 61 void SetMaxStep(Double_t st) {fMaxStep = st>0 ? st : 0.1;}
a11ef2e4 62 //
0091e9f0 63 AliITSURecoSens* GetSensor(Int_t i) const {return i<0 ? 0:(AliITSURecoSens*)fSensors[i];}
a11ef2e4 64 AliITSURecoSens* GetSensor(Int_t ld,Int_t is) const {return GetSensor(ld*fNSensInLadder+is);}
8b16dbae 65 AliITSURecoSens* GetSensorFromID(Int_t i) const;
32d38de2 66 TClonesArray* GetClusters() const {return (TClonesArray*)fClusters;}
ee52e7b5 67 TClonesArray** GetClustersAddress() {return (TClonesArray**)&fClusters;}
0091e9f0 68 Int_t GetNClusters() const {return fClusters ? fClusters->GetEntriesFast() : 0;}
c61e50c3 69 AliCluster* GetCluster(Int_t icl) const {return (AliCluster*)fClusters->UncheckedAt(icl);}
32d38de2 70 void SetClusters(TClonesArray* cl) {fClusters = cl;}
a11ef2e4 71 //
32d38de2 72 Int_t FindSensors(const double* impPar, AliITSURecoSens *sensors[AliITSURecoSens::kNNeighbors]);
a11ef2e4 73 //
74 virtual void Print(Option_t* option = "") const;
dde91d5d 75 virtual Bool_t IsSortable() const {return kTRUE;}
76 virtual Bool_t IsEqual(const TObject* obj) const;
77 virtual Int_t Compare(const TObject* obj) const;
32d38de2 78 //
79 protected:
80 void Build();
81 //
a11ef2e4 82 protected:
83 Int_t fActiveID; // ID within active layers
84 Int_t fNSensors; // N of modules
85 Int_t fNSensInLadder; // N sensors in the ladder
86 Int_t fNLadders; // N ladder
87 Double_t fR; // mean R
88 Double_t fRMax; // max R
89 Double_t fRMin; // min R
90 Double_t fZMax; // max Z
91 Double_t fZMin; // min Z
92 Double_t* fPhiLadMax; // max lab phi of the ladder
93 Double_t* fPhiLadMin; // min lab phi of the ladder
94 Double_t fPhiOffs; // offset in phi for 1st ladder
95 Double_t fSensDZInv; // inverse mean sensor Z span
96 Double_t fDPhiLadInv;// inverse mean ladder dphi
32d38de2 97 Double_t fMaxStep; // max step in tracking X allowed within layer
98 AliITSURecoSens** fSensors; // sensors
a11ef2e4 99 AliITSUGeomTGeo* fITSGeom; // geometry interface
32d38de2 100 TClonesArray* fClusters; // clusters of the layer
a11ef2e4 101 //
102 private:
103 AliITSURecoLayer(const AliITSURecoLayer &source);
104 AliITSURecoLayer& operator=(const AliITSURecoLayer &source);
105 //
106
107 ClassDef(AliITSURecoLayer,1); // helper for layer data used in reco
108};
109
110#endif