]> git.uio.no Git - u/mrichter/AliRoot.git/blame - TPC/AliTPCRecoParam.h
- Possibility to dasable time dependent calibration
[u/mrichter/AliRoot.git] / TPC / AliTPCRecoParam.h
CommitLineData
669ce3c3 1#ifndef ALITPCRECOPARAM_H
2#define ALITPCRECOPARAM_H
3/* Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
4 * See cxx source for full Copyright notice */
5
6///////////////////////////////////////////////////////////////////////////////
7// //
8// Class with TPC reconstruction parameters //
9// //
10///////////////////////////////////////////////////////////////////////////////
11
12
b1c50d5c 13#include "AliDetectorRecoParam.h"
669ce3c3 14
b1c50d5c 15class AliTPCRecoParam : public AliDetectorRecoParam
669ce3c3 16{
17 public:
18 AliTPCRecoParam();
19 virtual ~AliTPCRecoParam();
502d13b5 20 static Bool_t GetUseTimeCalibration(){ return fgUseTimeCalibration;}
21 static void SetUseTimeCalibration(Bool_t useTimeCalibration) {fgUseTimeCalibration = useTimeCalibration;}
22
018e4f8a 23 void SetClusterSharing(Bool_t sharing){fBClusterSharing=sharing;}
24 Bool_t GetClusterSharing() const {return fBClusterSharing;}
669ce3c3 25 Double_t GetCtgRange() const { return fCtgRange;}
26 Double_t GetMaxSnpTracker() const{ return fMaxSnpTracker;}
27 Double_t GetMaxSnpTrack() const { return fMaxSnpTrack;}
eba5bca1 28 Bool_t GetUseOuterDetectors() const { return fUseOuterDetectors;}
29 void SetUseOuterDetectors(Bool_t flag) { fUseOuterDetectors=flag;}
6fbe1e5c 30 Double_t GetCutSharedClusters(Int_t index)const { return fCutSharedClusters[index];}
31 void SetCutSharedClusters(Int_t index, Float_t value){ fCutSharedClusters[index]=value;}
32 Int_t GetClusterMaxRange(Int_t index)const { return fClusterMaxRange[index];}
33 void SetClusterMaxRange(Int_t index, Int_t value){ fClusterMaxRange[index]=value;}
669ce3c3 34 //
b127a65f 35 Bool_t DumpSignal() const { return fDumpSignal;}
34694cd5 36 void SetTimeInterval(Int_t first, Int_t last) { fFirstBin=first, fLastBin =last;}
669ce3c3 37 Int_t GetFirstBin() const { return fFirstBin;}
38 Int_t GetLastBin() const { return fLastBin;}
39 void SetTimeBinRange(Int_t first, Int_t last){ fFirstBin = first; fLastBin = last;}
940ed1f0 40 Bool_t GetCalcPedestal() const { return fBCalcPedestal;}
41 Bool_t GetDoUnfold() const { return fBDoUnfold;}
d7a66797 42 void SetDoUnfold(Bool_t unfold) { fBDoUnfold = unfold;}
940ed1f0 43 Float_t GetDumpAmplitudeMin() const { return fDumpAmplitudeMin;}
44 Float_t GetMaxNoise() const { return fMaxNoise;}
ec214961 45 //
940ed1f0 46 Float_t GetMinMaxCutAbs() const { return fMinMaxCutAbs; }
47 Float_t GetMinLeftRightCutAbs() const { return fMinLeftRightCutAbs;} // minimal amplitude left right - PRF
48 Float_t GetMinUpDownCutAbs() const { return fMinUpDownCutAbs;} // minimal amplitude up-down - TRF
49 Float_t GetMinMaxCutSigma() const { return fMinMaxCutSigma; }
50 Float_t GetMinLeftRightCutSigma() const { return fMinLeftRightCutSigma;} // minimal amplitude left right - PRF
51 Float_t GetMinUpDownCutSigma() const { return fMinUpDownCutSigma;} // minimal amplitude up-down - TRF
669ce3c3 52 //
ec214961 53 void SetMinMaxCutAbs(Float_t th) { fMinMaxCutAbs=th; }
54 void SetMinLeftRightCutAbs(Float_t th) { fMinLeftRightCutAbs=th;} // minimal amplitude left right - PRF
55 void SetMinUpDownCutAbs(Float_t th) { fMinUpDownCutAbs=th;} // minimal amplitude up-down - TRF
56 void SetMinMaxCutSigma(Float_t th) { fMinMaxCutSigma=th; }
57 void SetMinLeftRightCutSigma(Float_t th) { fMinLeftRightCutSigma=th;} // minimal amplitude left right - PRF
58 void SetMinUpDownCutSigma(Float_t th) { fMinUpDownCutSigma=th;} // minimal amplitude up-down - TRF
59 //
60 Int_t GetLastSeedRowSec() const { return fLastSeedRowSec;}
812e76e7 61 void SetDoKinks(Bool_t on) { fBKinkFinder=on; }
669ce3c3 62 Bool_t GetDoKinks() const { return fBKinkFinder;}
eba5bca1 63 Double_t GetKinkAngleCutChi2(Int_t index) const {return fKinkAngleCutChi2[index];}
64 void SetKinkAngleCutChi2(Int_t index,Double_t value) {fKinkAngleCutChi2[index]=value;}
b9cc16e4 65 Float_t GetMaxC() const { return fMaxC;}
66 Bool_t GetSpecialSeeding() const { return fBSpecialSeeding;}
6fbe1e5c 67 //
68 //
69
1cafd6f4 70 //
9430b11a 71 // Correction setup
72 //
25617779 73 void SetUseFieldCorrection(Int_t flag){fUseFieldCorrection=flag;}
74 void SetUseRPHICorrection(Int_t flag){fUseRPHICorrection=flag;}
75 void SetUseRadialCorrection(Int_t flag){fUseRadialCorrection=flag;}
76 void SetUseQuadrantAlignment(Int_t flag){fUseQuadrantAlignment=flag;}
77 void SetUseSectorAlignment(Int_t flag){fUseSectorAlignment=flag;}
78 void SetUseDriftCorrectionTime(Int_t flag){fUseDriftCorrectionTime=flag;}
79 void SetUseDriftCorrectionGY(Int_t flag){fUseDriftCorrectionGY=flag;}
80 void SetUseGainCorrectionTime(Int_t flag){fUseGainCorrectionTime=flag;}
07c43acb 81 void SetUseExBCorrection(Int_t flag){fUseExBCorrection=flag;}
82 void SetUseTOFCorrection(Bool_t flag) {fUseTOFCorrection = flag;}
25617779 83 //
84 Int_t GetUseFieldCorrection() const {return fUseFieldCorrection;}
85 Int_t GetUseRPHICorrection() const {return fUseRPHICorrection;}
86 Int_t GetUseRadialCorrection() const {return fUseRadialCorrection;}
87 Int_t GetUseQuadrantAlignment() const {return fUseQuadrantAlignment;}
88 Int_t GetUseSectorAlignment() const {return fUseSectorAlignment;}
89 Int_t GetUseDriftCorrectionTime() const {return fUseDriftCorrectionTime;}
90 Int_t GetUseDriftCorrectionGY() const {return fUseDriftCorrectionGY;}
91 Int_t GetUseGainCorrectionTime() const {return fUseGainCorrectionTime;}
07c43acb 92 Int_t GetUseExBCorrection() const {return fUseExBCorrection;}
8f4188a7 93 //
44a6a09e 94 Bool_t GetUseTotCharge() const {return fUseTotCharge;} // switch use total or max charge
95 Float_t GetMinFraction() const {return fMinFraction;} // truncated mean - lower threshold
96 Float_t GetMaxFraction() const {return fMaxFaction;} // truncated mean - upper threshold
8f4188a7 97
9430b11a 98 Bool_t GetUseTOFCorrection() {return fUseTOFCorrection;}
07c43acb 99
25617779 100 //
1cafd6f4 101 void SetSystematicError(Double_t *systematic){ for (Int_t i=0; i<5;i++) fSystematicErrors[i]=systematic[i];}
102 const Double_t * GetSystematicError() const { return fSystematicErrors;}
103
669ce3c3 104 static AliTPCRecoParam *GetLowFluxParam(); // make reco parameters for low flux env.
105 static AliTPCRecoParam *GetHighFluxParam(); // make reco parameters for high flux env.
b447cbf9 106 static AliTPCRecoParam *GetHLTParam(); // special setting for HLT
669ce3c3 107 static AliTPCRecoParam *GetLaserTestParam(Bool_t bPedestal); // special setting for laser
108 static AliTPCRecoParam *GetCosmicTestParam(Bool_t bPedestal); // special setting for cosmic
109 //
110 protected:
018e4f8a 111 Bool_t fBClusterSharing; // allows or disable cluster sharing during tracking
669ce3c3 112 Double_t fCtgRange; // +-fCtgRange is the ctg(Theta) window used for clusterization and tracking (MI)
113 Double_t fMaxSnpTracker; // max sin of local angle - for TPC tracker
114 Double_t fMaxSnpTrack; // max sin of local angle - for track
eba5bca1 115 Bool_t fUseOuterDetectors; // switch - to use the outer detectors
669ce3c3 116 //
6fbe1e5c 117 //
118 Double_t fCutSharedClusters[2]; // cut value - maximal amount of shared clusters
119 Int_t fClusterMaxRange[2]; // neighborhood - to define local maxima for cluster
120 //
669ce3c3 121 // clusterer parameters
122 //
b127a65f 123 Bool_t fDumpSignal; // Dump Signal information flag
669ce3c3 124 Int_t fFirstBin; // first time bin used by cluster finder
125 Int_t fLastBin; // last time bin used by cluster finder
126 Bool_t fBCalcPedestal; // calculate Pedestal
127 Bool_t fBDoUnfold; // do unfolding of clusters
128 Float_t fDumpAmplitudeMin; // minimal amplitude of signal to be dumped
129 Float_t fMaxNoise; // maximal noise sigma on pad to be used in cluster finder
940ed1f0 130 Float_t fMinMaxCutAbs; // minimal amplitude at cluster maxima
131 Float_t fMinLeftRightCutAbs; // minimal amplitude left right - PRF
132 Float_t fMinUpDownCutAbs; // minimal amplitude up-down - TRF
133 Float_t fMinMaxCutSigma; // minimal amplitude at cluster maxima
134 Float_t fMinLeftRightCutSigma; // minimal amplitude left right - PRF
135 Float_t fMinUpDownCutSigma; // minimal amplitude up-down - TRF
669ce3c3 136 //
137 //
b9cc16e4 138 Float_t fMaxC; // maximal curvature for tracking
139 Bool_t fBSpecialSeeding; // special seeding with big inclination angles allowed (for Cosmic and laser)
eba5bca1 140 Bool_t fBKinkFinder; // do kink finder reconstruction
141 Double_t fKinkAngleCutChi2[2]; // angular cut for kinks
7d27c1df 142 Int_t fLastSeedRowSec; // Most Inner Row to make seeding for secondaries
1cafd6f4 143 //
9430b11a 144 // Correction switches
145 //
07c43acb 146 Int_t fUseFieldCorrection; // use field correction
25617779 147 Int_t fUseRPHICorrection; // use rphi correction
148 Int_t fUseRadialCorrection; // use radial correction
149 Int_t fUseQuadrantAlignment; // use quadrant alignment
150 Int_t fUseSectorAlignment; // use sector alignment
151 Int_t fUseDriftCorrectionTime; // use drift correction time
152 Int_t fUseDriftCorrectionGY; // use drif correction global y
153 Int_t fUseGainCorrectionTime; // use gain correction time
07c43acb 154 Int_t fUseExBCorrection; // use ExB correction
25617779 155 //
8f4188a7 156 // dEdx switches
157 //
158 Bool_t fUseTotCharge; // switch use total or max charge
159 Float_t fMinFraction; // truncated mean - lower threshold
160 Float_t fMaxFaction; // truncated mean - upper threshold
25617779 161
9430b11a 162 Bool_t fUseTOFCorrection; // switch - kTRUE use TOF correction kFALSE - do not use
163 //
eba5bca1 164 // misscalibration
1cafd6f4 165 //
166 Double_t fSystematicErrors[5]; //systematic errors in the track parameters - to be added to TPC covariance matrix
502d13b5 167 static Bool_t fgUseTimeCalibration; // flag usage the time dependent calibration
168 // to be switched off for pass 0 reconstruction
169 // Use static function, other option will be to use
170 // additional specific storage ?
eba5bca1 171 ClassDef(AliTPCRecoParam, 9)
669ce3c3 172};
173
174
175#endif