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467a4b25 | 1 | #ifndef ALITPCCALIBPULSER_H |
2 | #define ALITPCCALIBPULSER_H | |
3 | /* Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. * | |
4 | * See cxx source for full Copyright notice */ | |
5 | ||
3cd27a08 | 6 | ///////////////////////////////////////////////////////////////////////////////////////// |
7 | // // | |
8 | // Implementation of the TPC pulser calibration // | |
9 | // // | |
10 | ///////////////////////////////////////////////////////////////////////////////////////// | |
e47beb2b | 11 | |
3cd27a08 | 12 | #include <TVectorT.h> |
08205ed7 | 13 | class TObjArray; |
467a4b25 | 14 | class TH2S; |
15 | class TTreeSRedirector; | |
16 | class AliTPCCalPad; | |
17 | class AliTPCROC; | |
18 | class AliTPCCalROC; | |
19 | class AliTPCParam; | |
20 | class AliRawReader; | |
21 | class AliTPCRawStream; | |
08205ed7 | 22 | class AliTPCRawStreamFast; |
04049c81 | 23 | class AliTPCAltroMapping; |
24 | ||
467a4b25 | 25 | struct eventHeaderStruct; |
26 | ||
27 | class AliTPCCalibPulser : public TObject { | |
28 | ||
29 | public: | |
30 | AliTPCCalibPulser(); | |
31 | AliTPCCalibPulser(const AliTPCCalibPulser &sig); | |
32 | virtual ~AliTPCCalibPulser(); | |
33 | ||
d8faeea7 | 34 | void Reset(); |
35 | ||
467a4b25 | 36 | AliTPCCalibPulser& operator = (const AliTPCCalibPulser &source); |
37 | ||
08205ed7 | 38 | Bool_t ProcessEventFast(AliTPCRawStreamFast *rawStreamFast); |
39 | Bool_t ProcessEventFast(AliRawReader *rawReader); | |
40 | ||
467a4b25 | 41 | |
42 | Bool_t ProcessEvent(AliTPCRawStream *rawStream); | |
43 | Bool_t ProcessEvent(AliRawReader *rawReader); | |
44 | Bool_t ProcessEvent(eventHeaderStruct *event); | |
45 | ||
46 | Int_t Update(const Int_t isector, const Int_t iRow, const Int_t iPad, | |
47 | const Int_t iTimeBin, const Float_t signal); | |
48 | void Analyse(); | |
04049c81 | 49 | // |
50 | AliTPCAltroMapping **GetAltroMapping() { return fMapping; }; | |
51 | void SetAltroMapping(AliTPCAltroMapping **mapp) { fMapping = mapp; }; | |
467a4b25 | 52 | // |
53 | AliTPCCalROC* GetCalRocT0 (Int_t sector, Bool_t force=kFALSE); // get calibration object - sector | |
54 | AliTPCCalROC* GetCalRocQ (Int_t sector, Bool_t force=kFALSE); // get calibration object - sector | |
55 | AliTPCCalROC* GetCalRocRMS(Int_t sector, Bool_t force=kFALSE); // get calibration object - sector | |
56 | AliTPCCalROC* GetCalRocOutliers(Int_t sector, Bool_t force=kFALSE); // get calibration object - sector | |
57 | ||
3cd27a08 | 58 | const TObjArray* GetCalPadT0() const { return &fCalRocArrayT0; } // get calibration object |
59 | const TObjArray* GetCalPadQ() const { return &fCalRocArrayQ; } // get calibration object | |
60 | const TObjArray* GetCalPadRMS() const{ return &fCalRocArrayRMS;} // get calibration object | |
61 | const TObjArray* GetCalPadOutliers() const { return &fCalRocArrayOutliers;} // get calibration object | |
467a4b25 | 62 | |
63 | TH2S* GetHistoQ (Int_t sector, Bool_t force=kFALSE); // get refernce histogram | |
64 | TH2S* GetHistoT0 (Int_t sector, Bool_t force=kFALSE); // get refernce histogram | |
65 | TH2S* GetHistoRMS(Int_t sector, Bool_t force=kFALSE); // get refernce histogram | |
66 | ||
67 | Short_t GetDebugLevel() const { return fDebugLevel; } | |
68 | // | |
69 | void SetRangeTime (Int_t firstTimeBin, Int_t lastTimeBin) { fFirstTimeBin=firstTimeBin; fLastTimeBin=lastTimeBin; } //Set range in which the pulser signal is expected | |
70 | // | |
71 | void SetRangeRefQ (Int_t nBins, Float_t xMin, Float_t xMax){ fNbinsQ = nBins; fXminQ = xMin; fXmaxQ = xMax; } //Set range for Q reference histograms | |
72 | void SetRangeRefT0 (Int_t nBins, Float_t xMin, Float_t xMax){ fNbinsT0 = nBins; fXminT0 = xMin; fXmaxT0 = xMax; } //Set range for T0 reference histograms | |
73 | void SetRangeRefRMS(Int_t nBins, Float_t xMin, Float_t xMax){ fNbinsRMS = nBins; fXminRMS = xMin; fXmaxRMS = xMax; } //Set range for T0 reference histograms | |
74 | ||
467a4b25 | 75 | void SetDebugLevel(Short_t debug=1){ fDebugLevel = debug;} |
76 | ||
4c6d06dc | 77 | void SetIsZeroSuppressed(Bool_t zs=kTRUE){ fIsZeroSuppressed=zs;} |
78 | ||
467a4b25 | 79 | void SetPedestalDatabase(AliTPCCalPad *pedestalTPC, AliTPCCalPad *padNoiseTPC) {fPedestalTPC = pedestalTPC; fPadNoiseTPC = padNoiseTPC;} |
d8faeea7 | 80 | void SetOutliers(AliTPCCalPad *outliers) {fOutliers = outliers;} |
467a4b25 | 81 | |
82 | Int_t GetFirstTimeBin() const { return fFirstTimeBin; } | |
83 | Int_t GetLastTimeBin() const { return fLastTimeBin; } | |
84 | ||
4c6d06dc | 85 | Bool_t GetIsZeroSupperssed() const { return fIsZeroSuppressed; } |
86 | ||
467a4b25 | 87 | void Merge(AliTPCCalibPulser *sig); |
88 | ||
89 | void DumpToFile(const Char_t *filename, const Char_t *dir="", Bool_t append=kFALSE); | |
90 | // | |
91 | // Test functions | |
92 | TObjArray* TestBinning(); | |
93 | ||
94 | private: | |
95 | Int_t fFirstTimeBin; // First Time bin needed for analysis | |
96 | Int_t fLastTimeBin; // Last Time bin needed for analysis | |
97 | ||
98 | // reference histogram ranges | |
99 | Int_t fNbinsT0; // Number of bins for T0 reference histogram | |
100 | Float_t fXminT0; // xmin of T0 reference histogram | |
101 | Float_t fXmaxT0; // xmax of T0 reference histogram | |
102 | Int_t fNbinsQ; // Number of bins for T0 reference histogram | |
103 | Float_t fXminQ; // xmin of T0 reference histogram | |
104 | Float_t fXmaxQ; // xmax of T0 reference histogram | |
105 | Int_t fNbinsRMS; // Number of bins for T0 reference histogram | |
106 | Float_t fXminRMS; // xmin of T0 reference histogram | |
107 | Float_t fXmaxRMS; // xmax of T0 reference histogram | |
108 | ||
4c6d06dc | 109 | Bool_t fIsZeroSuppressed; // if data is zero suppressed |
110 | ||
467a4b25 | 111 | Int_t fLastSector; //! Last sector processed |
112 | ||
467a4b25 | 113 | |
04049c81 | 114 | AliTPCROC *fROC; //! ROC information |
115 | AliTPCAltroMapping **fMapping; //! Altro Mapping object | |
467a4b25 | 116 | AliTPCParam *fParam; //! TPC information |
117 | ||
118 | AliTPCCalPad *fPedestalTPC; //! Pedestal Information | |
119 | AliTPCCalPad *fPadNoiseTPC; //! Pad noise Information whole TPC | |
d8faeea7 | 120 | AliTPCCalPad *fOutliers; //! Outlier information. Those will not be used for calculating the T0 |
467a4b25 | 121 | AliTPCCalROC *fPedestalROC; //! Pedestal Information for current ROC |
122 | AliTPCCalROC *fPadNoiseROC; //! Pad noise Information for current ROC | |
123 | // Bool_t fBpedestal; //! are we running with pedestal substraction | |
124 | ||
125 | ||
126 | TObjArray fCalRocArrayT0; // Array of AliTPCCalROC class for Time0 calibration | |
127 | TObjArray fCalRocArrayQ; // Array of AliTPCCalROC class for Charge calibration | |
128 | TObjArray fCalRocArrayRMS; // Array of AliTPCCalROC class for signal width calibration | |
129 | TObjArray fCalRocArrayOutliers; // Array of AliTPCCalROC class for signal outliers | |
130 | ||
131 | TObjArray fHistoQArray; // Calibration histograms for Charge distribution | |
132 | TObjArray fHistoT0Array; // Calibration histograms for Time0 distribution | |
133 | TObjArray fHistoRMSArray; // Calibration histograms for signal width distribution | |
134 | ||
135 | TObjArray fPadTimesArrayEvent; //! Pad Times for the event, before mean Time0 corrections | |
136 | TObjArray fPadQArrayEvent; //! Charge for the event, only needed for debugging streamer | |
137 | TObjArray fPadRMSArrayEvent; //! Signal width for the event, only needed for debugging streamer | |
138 | TObjArray fPadPedestalArrayEvent; //! Signal width for the event, only needed for debugging streamer | |
139 | ||
140 | Int_t fCurrentChannel; //! current channel processed | |
141 | Int_t fCurrentSector; //! current sector processed | |
142 | Int_t fCurrentRow; //! current row processed | |
143 | Float_t fMaxPadSignal; //! maximum bin of current pad | |
144 | Int_t fMaxTimeBin; //! time bin with maximum value | |
145 | TVectorF fPadSignal; //! signal of current Pad | |
146 | Float_t fPadPedestal; //! Pedestal Value of current pad | |
147 | Float_t fPadNoise; //! Noise Value of current pad | |
148 | ||
149 | TVectorF fVTime0Offset; //! Time0 Offset from preprocessing for each sector; | |
150 | TVectorF fVTime0OffsetCounter; //! Time0 Offset from preprocessing for each sector; | |
151 | ||
152 | //debugging | |
3cd27a08 | 153 | // Int_t fEvent; // Number of events processed |
467a4b25 | 154 | TTreeSRedirector *fDebugStreamer; //! debug streamer |
155 | ||
3cd27a08 | 156 | Short_t fDebugLevel; // debug Level |
467a4b25 | 157 | //! debugging |
158 | ||
159 | void FindPedestal(Float_t part=.6); | |
160 | void FindPulserSignal(TVectorD ¶m, Float_t &qSum); | |
161 | ||
162 | TH2S* GetHisto(Int_t sector, TObjArray *arr, | |
163 | Int_t nbinsY, Float_t ymin, Float_t ymax, | |
164 | Char_t *type, Bool_t force); | |
165 | ||
166 | ||
3cd27a08 | 167 | AliTPCCalROC* GetCalRoc(Int_t sector, TObjArray* arr, Bool_t force) const; |
467a4b25 | 168 | |
169 | TVectorF* GetPadTimesEvent(Int_t sector, Bool_t force=kFALSE); | |
170 | ||
171 | void ResetEvent(); | |
172 | void ResetPad(); | |
173 | void ProcessPad(); | |
174 | void EndEvent(); | |
175 | ||
176 | ||
177 | //debug | |
178 | TVectorF* GetPadInfoEvent(Int_t sector, TObjArray *arr, Bool_t force=kFALSE); | |
179 | TVectorF* GetPadQEvent(Int_t sector, Bool_t force=kFALSE); | |
180 | TVectorF* GetPadRMSEvent(Int_t sector, Bool_t force=kFALSE); | |
181 | TVectorF* GetPadPedestalEvent(Int_t sector, Bool_t force=kFALSE); | |
182 | ||
183 | ||
4c6d06dc | 184 | ClassDef(AliTPCCalibPulser,3) //Implementation of the TPC pulser calibration |
467a4b25 | 185 | }; |
186 | ||
187 | ||
188 | ||
189 | #endif | |
190 |