// $Id: hrichcuttracklet.h,v 1.1 2003-01-24 16:19:19 eberl Exp $ // Last update by Thomas Eberl: 03/01/17 15:01:13 // #ifndef HRICHCUTTRACKLET_H #define HRICHCUTTRACKLET_H #include "hrichcuto.h" class HHitMatch; class HRichCutTracklet : public HRichCutO { public: HRichCutTracklet(); HRichCutTracklet(Text_t *name, Text_t *title); ~HRichCutTracklet() {} void printCutList(char *); void reset(); void setStandardCuts(); void switchTo(char*); Bool_t check(HHitMatch*); void setState(Int_t*,Float_t*); // void setRingAmplCut(Int_t n){nRingAmpl=n;}; // void setRingAmplStatus(Int_t c){kRingAmpl=c;}; void setRingPadNrCut(Float_t n){nRingPadNr=n;}; void setRingPadNrStatus(Int_t c){kRingPadNr=c;}; void setRingAvChrgCut(Float_t n){nRingAvChrg=n;}; void setRingAvChrgStatus(Int_t c){kRingAvChrg=c;}; void setRingCentroidCut(Float_t n){nRingCentroid=n;}; void setRingCentroidStatus(Int_t c){kRingCentroid=c;}; void setRingPatMatCut(Float_t n){nRingPatMat=n;}; void setRingPatMatStatus(Int_t c){kRingPatMat=c;}; void setRichMdcThetaCut(Float_t n){nRichMdcTheta=n;}; void setRichMdcThetaStatus(Int_t c){kRichMdcTheta=c;}; void setRichMdcPhiCut(Float_t n){nRichMdcPhi=n;}; void setRichMdcPhiStatus(Int_t c){kRichMdcPhi=c;}; // // // Int_t getRingAmplCut(){return nRingAmpl;}; // Int_t getRingAmplStatus(){return kRingAmpl;}; Float_t getRingPadNrCut(){return nRingPadNr;}; Int_t getRingPadNrStatus(){return kRingPadNr;}; Float_t getRingAvChrgCut(){return nRingAvChrg;}; Int_t getRingAvChrgStatus(){return kRingAvChrg;}; Float_t getRingCentroidCut(){return nRingCentroid;}; Int_t getRingCentroidStatus(){return kRingCentroid;}; Float_t getRingPatMatCut(){return nRingPatMat;}; Int_t getRingPatMatStatus(){return kRingPatMat;}; Float_t getRichMdcThetaCut(){return nRichMdcTheta;}; Int_t getRichMdcThetaStatus(){return kRichMdcTheta;}; Float_t getRichMdcPhiCut(){return nRichMdcPhi;}; Int_t getRichMdcPhiStatus(){return kRichMdcPhi;}; Bool_t isAngMatch(HHitMatch *h); Bool_t isGoodRing(HHitMatch *h); protected: // meta info on cut // values Float_t nRingPadNr; Float_t nRingAvChrg; Float_t nRingCentroid; Float_t nRingPatMat; Float_t nRichMdcTheta; Float_t nRichMdcPhi; // log whether active Int_t kAngularMatch; Int_t kGoodRing; Int_t kRingPadNr; Int_t kRingAvChrg; Int_t kRingCentroid; Int_t kRingPatMat; Int_t kRichMdcTheta; Int_t kRichMdcPhi; ClassDef(HRichCutTracklet,1) // Single particle cuts }; #endif