]> git.uio.no Git - u/mrichter/AliRoot.git/blobdiff - TRD/AliTRDrecoParam.h
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[u/mrichter/AliRoot.git] / TRD / AliTRDrecoParam.h
index a01ae40092f3c885fb449568fb3befecca01bb3d..b3cc9e567bd96971c61479a81ea5b63a71eb2615 100644 (file)
@@ -1,7 +1,7 @@
 #ifndef ALITRDRECOPARAM_H
 #define ALITRDRECOPARAM_H
 /* Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
- * See cxx source for full Copyright notice                               */
+* See cxx source for full Copyright notice                               */
 
 /* $Id$ */
 
 #ifndef ALIDETECTORRECOPARAM_H
 #include "AliDetectorRecoParam.h"
 #endif
+#ifndef ALITRDCALPID_H
+#include "Cal/AliTRDCalPID.h"
+#endif
 
 class AliTRDrecoParam : public AliDetectorRecoParam
 {
-  public:
-       enum{
-         kNNslices = 8,
-         kLQslices = 3
-       };
-       
-       AliTRDrecoParam();
-       ~AliTRDrecoParam() { }
-
-       Double_t GetChi2Y() const                 { return fkChi2Y;    }
-       Double_t GetChi2Z() const                 { return fkChi2Z;    }
-       Bool_t   GetClusterSharing() const        { return fkClusterSharing;}
-       Double_t GetFindableClusters() const      { return fkFindable; }
-       Double_t GetMaxTheta() const              { return fkMaxTheta; }
-       Double_t GetMaxPhi() const                { return fkMaxPhi;   }
-       Int_t    GetNdEdxSlices() const           { return fkPIDMethod ? kNNslices : kLQslices;}
-       Int_t    GetPIDMethod() const             { return fkPIDMethod;}
-       Double_t GetRoad0y() const                { return fkRoad0y;   }
-       Double_t GetRoad0z() const                { return fkRoad0z;   }
-
-       Double_t GetRoad1y() const                { return fkRoad1y;   }
-       Double_t GetRoad1z() const                { return fkRoad1z;   }
-
-       Double_t GetRoad2y() const                { return fkRoad2y;   }
-       Double_t GetRoad2z() const                { return fkRoad2z;   }
-
-       Double_t GetPlaneQualityThreshold() const { return fkPlaneQualityThreshold; }
-
-       Double_t GetTrackLikelihood() const       { return fkTrackLikelihood;       }
-
-        Double_t GetClusMaxThresh() const         { return fClusMaxThresh;   };
-        Double_t GetClusSigThresh() const         { return fClusSigThresh;   };
-        Int_t    GetTCnexp() const                { return fTCnexp;          };
-        Bool_t   LUTOn() const                    { return fLUTOn;           };
-        Bool_t   TCOn() const                     { return fTCOn;            };
-
-        Double_t GetADCbaseline() const           { return fADCbaseline;     };
-
-       static   AliTRDrecoParam *GetLowFluxParam();
-        static   AliTRDrecoParam *GetHighFluxParam();
-        static   AliTRDrecoParam *GetCosmicTestParam();
-
-       void     SetClusterSharing(Bool_t share = kTRUE) { fkClusterSharing = share;  };
-       void     SetPIDMethod(Int_t pid = 1)             { fkPIDMethod = pid ? 1 : 0; };
-        void     SetLUT(Int_t lutOn = 1)                 { fLUTOn           = lutOn;  };
-        void     SetClusMaxThresh(Float_t thresh)        { fClusMaxThresh   = thresh; };
-        void     SetClusSigThresh(Float_t thresh)        { fClusSigThresh   = thresh; };
-        void     SetTailCancelation(Int_t tcOn = 1)      { fTCOn            = tcOn;   };
-        void     SetNexponential(Int_t nexp)             { fTCnexp          = nexp;   };
-        void     SetADCbaseline(Double_t base)           { fADCbaseline     = base;   };
-
- private:
-
-       // Tracking parameters
-       Bool_t    fkClusterSharing;        // Toggle cluster sharing
-       Int_t     fkPIDMethod;             // PID method selector 0(LQ) 1(NN)
-       Double_t  fkMaxTheta;              // Maximum theta
-       Double_t  fkMaxPhi;                // Maximum phi
-
-       Double_t  fkRoad0y;                // Road for middle cluster
-       Double_t  fkRoad0z;                // Road for middle cluster
-
-       Double_t  fkRoad1y;                // Road in y for seeded cluster
-       Double_t  fkRoad1z;                // Road in z for seeded cluster
-
-       Double_t  fkRoad2y;                // Road in y for extrapolated cluster
-       Double_t  fkRoad2z;                // Road in z for extrapolated cluster
-       
-       Double_t  fkPlaneQualityThreshold; // Quality threshold
-       Double_t  fkFindable;              // Ratio of clusters from a track in one chamber which are at minimum supposed to be found.
-       Double_t  fkChi2Z;                 // Max chi2 on the z direction for seeding clusters fit
-       Double_t  fkChi2Y;                 // Max chi2 on the y direction for seeding clusters Rieman fit
-       Double_t  fkTrackLikelihood;       // Track likelihood for tracklets Rieman fit
-
-        // Clusterization parameter
-        Double_t  fClusMaxThresh;          // Threshold value for cluster maximum
-        Double_t  fClusSigThresh;          // Threshold value for cluster signal
-        Int_t     fLUTOn;                  // Switch for the lookup table method  
-        Int_t     fTCOn;                   // Switch for the tail cancelation
-        Int_t     fTCnexp;                 // Number of exponentials, digital filter
+public:
+  AliTRDrecoParam();
+  AliTRDrecoParam(const AliTRDrecoParam &rec);
+  ~AliTRDrecoParam() { }
+
+  Double_t GetChi2Y() const                 { return fkChi2Y;    }
+  Double_t GetChi2Z() const                 { return fkChi2Z;    }
+  Double_t GetChi2YSlope() const            { return fkChi2YSlope; }
+  Double_t GetChi2ZSlope() const            { return fkChi2ZSlope; }
+       Double_t GetChi2YCut() const              { return fkChi2YCut; }
+  Double_t GetPhiSlope() const              { return fkPhiSlope;   }
+  Float_t  GetNClusters() const;
+  Double_t GetNMeanClusters() const         { return fkNMeanClusters; }
+  Double_t GetNSigmaClusters() const        { return fkNSigmaClusters; }
+  Double_t GetFindableClusters() const      { return fkFindable; }
+  Double_t GetMaxTheta() const              { return fkMaxTheta; }
+  Double_t GetMaxPhi() const                { return fkMaxPhi;   }
+  Double_t GetPlaneQualityThreshold() const { return fkPlaneQualityThreshold; }
+  Double_t GetPIDThreshold(Float_t /*p*/) const { return 0.;}
+  Double_t GetRoad0y() const                { return fkRoad0y;   }
+  Double_t GetRoad0z() const                { return fkRoad0z;   }
+  Double_t GetRoad1y() const                { return fkRoad1y;   }
+  Double_t GetRoad1z() const                { return fkRoad1z;   }
+  Double_t GetRoad2y() const                { return fkRoad2y;   }
+  Double_t GetRoad2z() const                { return fkRoad2z;   }
+  Double_t GetTrackLikelihood() const       { return fkTrackLikelihood;       }
+  inline void GetSysCovMatrix(Double_t *sys) const;  
+  Double_t GetMinMaxCutSigma() const        { return fMinMaxCutSigma;     };
+  Double_t GetMinLeftRightCutSigma() const  { return fMinLeftRightCutSigma;  };
+  Double_t GetClusMaxThresh() const         { return fClusMaxThresh;   };
+  Double_t GetClusSigThresh() const         { return fClusSigThresh;   };
+  Int_t    GetTCnexp() const                { return fTCnexp;          };
+  Int_t     GetNumberOfPresamples()  const {return fNumberOfPresamples;}
+  Int_t    GetNumberOfPostsamples() const {return fNumberOfPostsamples;}
+
+        
+  static   AliTRDrecoParam *GetLowFluxParam();
+  static   AliTRDrecoParam *GetHighFluxParam();
+  static   AliTRDrecoParam *GetCosmicTestParam();
+
+  void     SetMaxTheta(Double_t maxTheta) {fkMaxTheta = maxTheta;}
+  void     SetMaxPhi(Double_t maxPhi) {fkMaxPhi = maxPhi;}
+  void     SetFindableClusters(Double_t r) {fkFindable = r;}
+  void     SetChi2Y(Double_t chi2) {fkChi2Y = chi2;}
+  void     SetChi2Z(Double_t chi2) {fkChi2Z = chi2;}
+  void     SetChi2YSlope(Double_t chi2YSlope) {fkChi2YSlope = chi2YSlope;}
+  void     SetChi2ZSlope(Double_t chi2ZSlope) {fkChi2ZSlope = chi2ZSlope;}
+       void       SetChi2YCut(Double_t chi2Cut) {fkChi2YCut = chi2Cut; }
+  void     SetPhiSlope(Double_t phiSlope) {fkPhiSlope = phiSlope;}
+  void     SetNMeanClusters(Double_t meanNclusters) {fkNMeanClusters = meanNclusters;}
+  void     SetNSigmaClusters(Double_t sigmaNclusters) {fkNSigmaClusters = sigmaNclusters;} 
+  void     SetMinMaxCutSigma(Float_t minMaxCutSigma)          { fMinMaxCutSigma   = minMaxCutSigma; }
+  void     SetMinLeftRightCutSigma(Float_t minLeftRightCutSigma) { fMinLeftRightCutSigma   = minLeftRightCutSigma; };
+  void     SetClusMaxThresh(Float_t thresh)                   { fClusMaxThresh   = thresh; };
+  void     SetClusSigThresh(Float_t thresh)                   { fClusSigThresh   = thresh; };
+  inline void SetPIDThreshold(Double_t *pid);
+  void     SetNexponential(Int_t nexp)                        { fTCnexp          = nexp;   };
+  inline void SetSysCovMatrix(Double_t *sys);
+  void     SetNumberOfPresamples(Int_t n)                     { fNumberOfPresamples = n;}
+  void     SetNumberOfPostsamples(Int_t n)                    { fNumberOfPostsamples = n;}
+
+private:
+  // Physics reference values for TRD
+  Double_t  fkdNchdy;                // dNch/dy
+  Double_t  fkMaxTheta;              // Maximum theta
+  Double_t  fkMaxPhi;                // Maximum phi - momentum cut
+
+  Double_t  fkRoad0y;                // Road for middle cluster
+  Double_t  fkRoad0z;                // Road for middle cluster
+
+  Double_t  fkRoad1y;                // Road in y for seeded cluster
+  Double_t  fkRoad1z;                // Road in z for seeded cluster
+
+  Double_t  fkRoad2y;                // Road in y for extrapolated cluster
+  Double_t  fkRoad2z;                // Road in z for extrapolated cluster
+  
+  Double_t  fkPlaneQualityThreshold; // Quality threshold
+  Double_t  fkFindable;              // minimum ratio of clusters per tracklet supposed to be attached.
+  Double_t  fkChi2Z;                 // Max chi2 on the z direction for seeding clusters fit
+  Double_t  fkChi2Y;                 // Max chi2 on the y direction for seeding clusters Rieman fit
+  Double_t  fkChi2YSlope;            // Slope of the chi2-distribution in y-direction
+  Double_t  fkChi2ZSlope;            // Slope of the chi2-distribution in z-direction
+       Double_t  fkChi2YCut;                                                    // Cut on the Chi2 in y-direction in the likelihood filter
+  Double_t  fkPhiSlope;              // Slope of the distribution of the deviation between track angle and tracklet angle
+  Double_t  fkNMeanClusters;         // Mean number of clusters per tracklet
+  Double_t  fkNSigmaClusters;        // Sigma of the number of clusters per tracklet
+  Double_t  fkNClusterNoise;         // ratio of noisy clusters to the true one
+  Double_t  fkNMeanTracklets;        // Mean number of tracklets per track
+  Double_t  fkTrackLikelihood;       // Track likelihood for tracklets Rieman fit
+  
+  Double_t  fSysCovMatrix[5];        // Systematic uncertainty from calibration and alignment for each tracklet
+  Double_t  fPIDThreshold[AliTRDCalPID::kNMom];
+
+  // Clusterization parameter
+  Double_t  fMinMaxCutSigma;         // Threshold sigma noise pad middle
+  Double_t  fMinLeftRightCutSigma;   // Threshold sigma noise sum pad
+  Double_t  fClusMaxThresh;          // Threshold value for cluster maximum
+  Double_t  fClusSigThresh;          // Threshold value for cluster signal
+  Int_t     fTCnexp;                 // Number of exponentials, digital filter
   
-       // ADC parameter
-        Double_t  fADCbaseline;            // ADC baseline to be subtracted
+  // ADC parameter
+  Int_t     fNumberOfPresamples;     // number of presamples 
+  Int_t     fNumberOfPostsamples;     // number of postsamples 
 
-       ClassDef(AliTRDrecoParam, 3)       // Reconstruction parameters for TRD detector
+  ClassDef(AliTRDrecoParam, 7)       // Reconstruction parameters for TRD detector
 
 };
+
+//___________________________________________________
+inline void AliTRDrecoParam::GetSysCovMatrix(Double_t *sys) const
+{
+  if(!sys) return;
+  memcpy(sys, fSysCovMatrix, 5*sizeof(Double_t));
+}
+
+//___________________________________________________
+inline void AliTRDrecoParam::SetSysCovMatrix(Double_t *sys)
+{
+  if(!sys) return;
+  memcpy(fSysCovMatrix, sys, 5*sizeof(Double_t));
+}
+
+//___________________________________________________
+inline void AliTRDrecoParam::SetPIDThreshold(Double_t *pid)
+{
+  if(!pid) return;
+  memcpy(fPIDThreshold, pid, AliTRDCalPID::kNMom*sizeof(Double_t));
+}
+
+
 #endif