3 /* Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
4 * See cxx source for full Copyright notice */
10 /// \brief Implementation of the pedestal and gain computing
12 // Author: Alberto Baldisseri, JL Charvet (05/05/2009)
14 #include "AliMUONPedestal.h"
16 class AliMUONGain : public AliMUONPedestal
20 virtual ~AliMUONGain();
22 TString WriteGainData(Int_t bp, Int_t manu, Int_t ch, Double_t p1, Double_t p2, Int_t threshold, Int_t q);
23 TString WriteGainHeader(Int_t nInit, Int_t nEntries, Int_t nbpf2, Int_t *numrun, Double_t *injCharge);
24 /// Store Pedmean and sigma in pedestal-like ascii file
25 void MakePedStoreForGain(TString flatfile);
26 /// Computes gain parameters and store in an ascii file
27 void MakeGainStore(TString flatfile);
28 /// Set filename of root file containing pedmean and sigma values for each DAC value
29 void SetAliRootDataFileName(const char* name="MUONTRKGAINda_data.root") { fRootDataFileName=name; }
30 /// Get filename of root file containing pedmean and sigma values
31 const char* GetRootDataFileName() const {return fRootDataFileName.Data();}
32 /// Write Header in Dummy ascii file
33 TString WriteDummyHeader();
34 /// Set InjCharge = DAC value
35 void SetAliInjCharge(Int_t charge) {fInjCharge = charge;}
37 void SetAliPrintLevel(Int_t pri) {fPrintLevel = pri;}
38 /// Set fnInit (=1: first DAC=0 removed to compute the fit)
39 void SetAliInit(Int_t ini) {fnInit = ini;}
40 /// Set nEntries = Nb of DAC values
41 void SetAliEntries(Int_t ent) {fnEntries = ent;}
42 /// Set Nbpf1 = nb of DAC values for the linear fit
43 void SetAliNbpf1(Int_t nf1) {fnbpf1 = nf1;}
45 void SetAliPlotLevel(Int_t plo) {fPlotLevel = plo;}
48 Int_t fInjCharge; ///< DAC value
49 TString fRootDataFileName; ///< Root data file name
50 Int_t fnInit; ///< fnInit (for expert)
51 Int_t fnEntries; ///< Nb of DAC values
52 Int_t fnbpf1; ///< nb of DAC values for linear fit (for expert)
53 Int_t fPrintLevel; ///< Print level
54 Int_t fPlotLevel; ///< Plot level
56 ClassDef(AliMUONGain,2) //