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bd83f412 1#ifndef ALICALOCALIBSIGNAL_H
2#define ALICALOCALIBSIGNAL_H
3
4/* Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
5 * See cxx source for full Copyright notice */
6
7/* $Id: AliCaloCalibSignal.h $ */
8
9// \file AliCaloCalibSignal.h
10// \brief Description:
11// A help class for monitoring and calibration tools: MOOD, AMORE etc.,
32cd4c24 12// that can process events from a standard AliCaloRawStreamV3,
bd83f412 13// most usually from LED/pulser runs. It stores signal info as
14// typical (highest) amplitude vs time in TGraphs (one per channel)
15// or TProfiles if we decide to just store the averages (and not all points)
16// for the detectors (EMCAL and PHOS).
17
18// \author: Josh Hamblen (UTenn), original version.
19// [Consultant: D. Silvermyr (ORNL)]
20// Partly based on AliCaloCalibPedestal.
21//
22// \version $Revision: $
23// \date $Date: $
24
8bcca84c 25#include "TString.h"
26#include "TTree.h"
bd3cd9c2 27#include "AliEMCALGeoParams.h"
32cd4c24 28class AliCaloRawStreamV3;
f4fc542c 29class AliCaloAltroMapping;
30class AliRawReader;
bd83f412 31
32class AliCaloCalibSignal : public TObject {
33
34 public:
35
36 enum kDetType {kPhos, kEmCal, kNone};//The detector types
37
38 AliCaloCalibSignal(kDetType detectorType = kPhos); //ctor
39 virtual ~AliCaloCalibSignal(); //dtor
40
41 // copy ctor, and '=' operator, are not fully tested/debugged yet
42 AliCaloCalibSignal(const AliCaloCalibSignal &sig); // copy ctor
43 AliCaloCalibSignal& operator = (const AliCaloCalibSignal &source); //!
44
f4fc542c 45 // Event processing methods:
46 Bool_t ProcessEvent(AliRawReader *rawReader);
b07ee441 47 Bool_t ProcessEvent(AliCaloRawStreamV3 *in, UInt_t Timestamp); // added header for time info
ab962f7b 48 Bool_t CheckFractionAboveAmp(const int *AmpVal, int resultArray[]); // check fraction of signals to check for LED events
bd83f412 49
f4fc542c 50 // Mapping handling
ab962f7b 51 AliCaloAltroMapping **GetAltroMapping() const { return fMapping; };
f4fc542c 52 void SetAltroMapping(AliCaloAltroMapping **mapp) { fMapping = mapp; };
53
b07ee441 54 // Parameter/cut handling
55 void SetParametersFromFile(const char *parameterFile);
56 void WriteParametersToFile(const char *parameterFile);
57
bd83f412 58 ////////////////////////////
59 //Simple getters
8bcca84c 60 // for TTree
61 TTree * GetTreeAmpVsTime() const { return fTreeAmpVsTime; } //!
62 TTree * GetTreeAvgAmpVsTime() const {return fTreeAvgAmpVsTime; } //!
5e99faca 63 TTree * GetTreeLEDAmpVsTime() const {return fTreeLEDAmpVsTime; } //!
64 TTree * GetTreeLEDAvgAmpVsTime() const {return fTreeLEDAvgAmpVsTime; } //!
8bcca84c 65
66 // how many points do we have for each tower&gain
bd83f412 67 int GetNHighGain(int imod, int icol, int irow) const //!
68 { int towId = GetTowerNum(imod, icol, irow); return fNHighGain[towId];}; //!
69 int GetNLowGain(int imod, int icol, int irow) const //!
70 { int towId = GetTowerNum(imod, icol, irow); return fNLowGain[towId];}; //!
71 int GetNHighGain(int towId) const { return fNHighGain[towId];}; //!
72 int GetNLowGain(int towId) const { return fNLowGain[towId];}; //!
73
5e99faca 74 // also for LED reference
ab962f7b 75 int GetNRef(const int imod, const int istripMod, const int igain) //!
5e99faca 76 { int refId = GetRefNum(imod, istripMod, igain); return fNRef[refId];}; //!
77 int GetNRef(int refId) const { return fNRef[refId];}; //!
78
bd83f412 79 // Basic info: getters
80 kDetType GetDetectorType() const {return fDetType;};//Returns if this is a PHOS or EMCAL object
f4fc542c 81 TString GetCaloString() const {return fCaloString;}; //Returns if this is a PHOS or EMCAL object
82
bd83f412 83 int GetColumns() const {return fColumns;}; //The number of columns per module
84 int GetRows() const {return fRows;}; //The number of rows per module
5e99faca 85 int GetLEDRefs() const {return fLEDRefs;}; //The number of LED references/monitors per module
bd83f412 86 int GetModules() const {return fModules;}; //The number of modules
8bcca84c 87
ab962f7b 88 int GetTowerNum(const int imod, const int icol, const int irow) const { return (imod*fColumns*fRows + icol*fRows + irow);}; // help index
8bcca84c 89
ab962f7b 90 int GetChannelNum(const int imod, const int icol, const int irow, const int igain) const { return (igain*fModules*fColumns*fRows + imod*fColumns*fRows + icol*fRows + irow);}; // channel number with gain included
91
92 Bool_t DecodeChannelNum(const int chanId,
93 int *imod, int *icol, int *irow, int *igain) const; // return the module, column, row, and gain for a given channel number
bd83f412 94
5e99faca 95 // LED reference indexing
ab962f7b 96 int GetRefNum(const int imod, const int istripMod, const int igain) const { return (igain*fModules*fLEDRefs + imod*fLEDRefs + istripMod);}; // channel number with gain included
97
98 Bool_t DecodeRefNum(const int refId,
99 int *imod, int *istripMod, int *igain) const; // return the module, stripModule, and gain for a given reference number
5e99faca 100
bd83f412 101 // Basic Counters
102 int GetNEvents() const {return fNEvents;};
103 int GetNAcceptedEvents() const {return fNAcceptedEvents;};
104
105 ///////////////////////////////
106 // Get and Set Cuts
107 // Section for if we should help with the event selection of what is likely LED events
108 void SetAmpCut(double d) { fAmpCut = d; } //!
109 double GetAmpCut() const { return fAmpCut; }; //!
110 void SetReqFractionAboveAmpCutVal(double d) { fReqFractionAboveAmpCutVal = d; } //!
111 double GetReqFractionAboveAmpCutVal() const { return fReqFractionAboveAmpCutVal; }; //!
112 void SetReqFractionAboveAmp(bool b) { fReqFractionAboveAmp = b; } //!
8bcca84c 113 bool GetReqFractionAboveAmp() const { return fReqFractionAboveAmp; }; //!
bd83f412 114
8bcca84c 115 // We may select to get averaged info
bd83f412 116 void SetUseAverage(bool b) { fUseAverage = b; } //!
8bcca84c 117 bool GetUseAverage() const { return fUseAverage; }; //!
bd83f412 118 void SetSecInAverage(int secInAverage) {fSecInAverage = secInAverage;}; // length of the interval that should be used for the average calculation (determines number of bins in TProfile)
119 int GetSecInAverage() const {return fSecInAverage;}; //!
120
121 // Info on time since start of run
122 double GetHour() const { return fHour; }; // time info for current event
123 double GetCurrentHour() const { return fHour; }; // time info for current event (same as GetHour(), just more explicitly named)
124 double GetLatestHour() const { return fLatestHour; }; // the latest time encountered
125 // These times are typically the same, but not necessarily if the events do not come in order
126 void SetLatestHour(double d) { fLatestHour = d; }; // could be useful when we know the length of the run (i.e. after it is over), e.g. for PreProcessor
127
128 // RunNumbers : setters and getters
129 void SetRunNumber(int runNo) {fRunNumber = runNo;}; //!
130 int GetRunNumber() const {return fRunNumber;}; //!
131
132 // Start-of-run timestamp : set and get
133 void SetStartTime(int startTime) {fStartTime = startTime;}; //!
134 int GetStartTime() const {return fStartTime;}; //!
135
136 /////////////////////////////
137 //Analysis functions
8bcca84c 138 void ResetInfo();// trees and counters.
bd83f412 139 Bool_t AddInfo(const AliCaloCalibSignal *sig);//picks up new info from supplied argument
140
141 //Saving functions
8bcca84c 142 Bool_t Save(TString fileName); //Saves the objects to a .root file
143 Bool_t Analyze(); // makes average tree and summary tree
bd83f412 144
145 private:
8bcca84c 146
147 void DeleteTrees(); // delete old objects and set pointers
bd83f412 148 void Zero(); // set all counters to 0
8bcca84c 149 void CreateTrees(); //! create/setup the TTrees
bd83f412 150
151 private:
152
153 kDetType fDetType; //The detector type for this object
154 int fColumns; //The number of columns per module
155 int fRows; //The number of rows per module
5e99faca 156 int fLEDRefs; //The number of LED references/monitors per module
bd83f412 157 int fModules; //The number of modules
f4fc542c 158 TString fCaloString; // id for which detector type we have
159 AliCaloAltroMapping **fMapping; //! Altro Mapping object
bd83f412 160 int fRunNumber; //The run number. Needs to be set by the user.
161 int fStartTime; // Time of first event
162
163 double fAmpCut; // amplitude cut value
164 double fReqFractionAboveAmpCutVal; // required fraction that should be above cut
165 bool fReqFractionAboveAmp; // flag to select if we should do some event selection based on amplitudes
166
167 double fHour; // fraction of hour since beginning of run, for amp vs. time graphs, for current event
168 double fLatestHour; // largest fraction of hour since beginning of run, for amp vs. time graphs
169 bool fUseAverage; // flag to average graph points into over a time interval
170 int fSecInAverage; // time interval for the graph averaging
171
172 // status counters
173 int fNEvents; // # events processed
174 int fNAcceptedEvents; // # events accepted
175
bd3cd9c2 176 //Constants needed by the class: EMCAL ones are kept in AliEMCALGeoParams.h
bd83f412 177 static const int fgkPhosRows = 64; // number of rows per module for PHOS
178 static const int fgkPhosCols = 56; // number of columns per module for PHOS
5e99faca 179 static const int fgkPhosLEDRefs = 0; // no LED monitor channels for PHOS
bd83f412 180 static const int fgkPhosModules = 5; // number of modules for PHOS
181
bd83f412 182 // From numbers above: PHOS has more possible towers (17920) than EMCAL (13824)
183 // so use PHOS numbers to set max. array sizes
184 static const int fgkMaxTowers = 17920; // fgkPhosModules * fgkPhosCols * fgkPhosRows;
5e99faca 185 // for LED references; maximum from EMCAL
bd3cd9c2 186 static const int fgkMaxRefs = 288; // AliEMCALGeoParams::fgkEMCALModules * AliEMCALGeoParams::fgkEMCALLEDRefs
5e99faca 187
bd83f412 188 static const int fgkNumSecInHr = 3600; // number of seconds in an hour, for the fractional hour conversion on the time graph
189
8bcca84c 190 // trees
191 TTree *fTreeAmpVsTime; // stores channel, gain, amp, and time info
5e99faca 192 TTree *fTreeAvgAmpVsTime; // same, for averages
193 TTree *fTreeLEDAmpVsTime; // same, for LED reference
194 TTree *fTreeLEDAvgAmpVsTime; // same, for LED reference - averages
8bcca84c 195
196 // counters
5e99faca 197 int fNHighGain[fgkMaxTowers]; // Number of Amp. vs. Time readings per tower
198 int fNLowGain[fgkMaxTowers]; // same, for low gain
199 int fNRef[fgkMaxRefs * 2]; // same, for LED refs; *2 for both gains
bd83f412 200
b07ee441 201 ClassDef(AliCaloCalibSignal, 5) // don't forget to change version if you change class member list..
bd83f412 202
203};
204
205#endif