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Take automaticaly the gain factors used during the reconstruction
[u/mrichter/AliRoot.git] / TRD / AliTRDCalibraFillHisto.h
1 #ifndef ALITRDCALIBRAFILLHISTO_H
2 #define ALITRDCALIBRAFILLHISTO_H
3 /* Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
4  * See cxx source for full Copyright notice                               */
5
6 /* $Id$ */
7
8 ///////////////////////////////////////////////////////////////////////////////
9 //                                                                           //
10 //  TRD calibration class for the HLT parameters                             //
11 //                                                                           //
12 ///////////////////////////////////////////////////////////////////////////////
13
14 #ifndef ROOT_TObject
15 #  include <TObject.h>
16 #endif
17 #ifndef ROOT_TProfile2D
18 #  include <TProfile2D.h> 
19 #endif
20
21
22 class TProfile2D;
23 class TObjArray;
24 class TH1F;
25 class TH2I;
26 class TH2F;
27 class TH2;
28 class TLinearFitter;
29 class TTreeSRedirector;
30
31 class AliLog;
32 class AliRawReader;
33
34 class AliTRDCalibraMode;
35 class AliTRDCalibraVector;
36 class AliTRDCalibraVdriftLinearFit;
37 class AliTRDrawStreamBase;
38 class AliTRDcluster;
39 class AliTRDtrackV1;
40 class AliTRDtrack;
41 class AliTRDseedV1;
42 class AliTRDgeometry;
43 class AliTRDCalDet;
44 class AliTRDCalROC;
45 class AliTRDcalibDB;
46
47 class AliTRDrawFastStream;
48 class AliTRDdigitsManager;
49 class AliTRDSignalIndex;
50
51 struct eventHeaderStruct;
52
53 class AliTRDCalibraFillHisto : public TObject {
54
55  public: 
56
57   // Instance
58   static AliTRDCalibraFillHisto *Instance();
59   static void Terminate();
60   static void Destroy();
61   void DestroyDebugStreamer();
62
63
64   AliTRDCalibraFillHisto(const AliTRDCalibraFillHisto &c);
65   AliTRDCalibraFillHisto &operator=(const AliTRDCalibraFillHisto &) { return *this; }
66
67   // Functions for initialising and filling with AliTRDtrackV1
68           Bool_t  Init2Dhistos(Int_t nboftimebin = -1);
69           Bool_t  InitCalDet();
70           Bool_t  UpdateHistograms(const AliTRDtrack *t);
71           Bool_t  UpdateHistogramsV1(const AliTRDtrackV1 *t);
72  
73   // Process events DAQ
74           Int_t   ProcessEventDAQ(AliTRDrawStreamBase *rawStream, Bool_t nocheck = kFALSE);
75           Int_t   ProcessEventDAQ(AliRawReader *rawReader, Bool_t nocheck = kFALSE);
76           Int_t   ProcessEventDAQ(const eventHeaderStruct *event, Bool_t nocheck = kFALSE);
77           Int_t   ProcessEventDAQ2(AliRawReader *rawReader);
78           Int_t   ProcessEventDAQ3(AliRawReader *rawReader);
79
80   // Is Pad on
81           Bool_t   IsPadOn(Int_t detector, Int_t row, Int_t col) const;
82
83   // Functions for write
84           void     Write2d(const Char_t *filename = "TRD.calibration.root", Bool_t append = kFALSE);
85
86   //For the statistics
87           Double_t *StatH(TH2 *ch, Int_t i);
88           Double_t *GetMeanMedianRMSNumberCH();
89           Double_t *GetMeanMedianRMSNumberLinearFitter() const;
90  // LinearFitter
91           void     AnalyseLinearFitter();
92        
93          
94   //
95   // Set of Get the variables
96   //
97
98           void     SetIsHLT(Bool_t isHLT = kTRUE)                            { fIsHLT = isHLT;                       }  
99           Bool_t   IsHLT() const                                             { return fIsHLT;                        }  
100
101   // Choice to fill or not the 2D
102           void     SetPH2dOn(Bool_t ph2don = kTRUE)                          { fPH2dOn          = ph2don;            }
103           void     SetCH2dOn(Bool_t ch2don = kTRUE)                          { fCH2dOn          = ch2don;            }
104           void     SetPRF2dOn(Bool_t prf2don = kTRUE)                        { fPRF2dOn         = prf2don;           }
105           void     SetHisto2d(Bool_t histo2d = kTRUE)                        { fHisto2d         = histo2d;           }
106           void     SetVector2d(Bool_t vector2d = kTRUE)                      { fVector2d        = vector2d;          }
107           void     SetLinearFitterOn(Bool_t linearfitteron = kTRUE)          { fLinearFitterOn      = linearfitteron;}
108           void     SetLinearFitterDebugOn(Bool_t debug = kTRUE)              { fLinearFitterDebugOn = debug;         }
109           void     SetVersionGainUsed(Int_t versionGainUsed)                 { fVersionGainUsed = versionGainUsed;   }
110           void     SetSubVersionGainUsed(Int_t subVersionGainUsed)           { fSubVersionGainUsed = subVersionGainUsed;   }
111           void     SetVersionGainLocalUsed(Int_t versionGainLocalUsed)       { fVersionGainLocalUsed = versionGainLocalUsed;   }
112           void     SetSubVersionGainLocalUsed(Int_t subVersionGainLocalUsed) { fSubVersionGainLocalUsed = subVersionGainLocalUsed;   }
113           void     SetVersionVdriftUsed(Int_t versionVdriftUsed)             { fVersionVdriftUsed = versionVdriftUsed;   }
114           void     SetSubVersionVdriftUsed(Int_t subVersionVdriftUsed)       { fSubVersionVdriftUsed = subVersionVdriftUsed;   }
115         
116   
117           Bool_t   GetPH2dOn() const                                         { return fPH2dOn;                 }
118           Bool_t   GetCH2dOn() const                                         { return fCH2dOn;                 }
119           Bool_t   GetPRF2dOn() const                                        { return fPRF2dOn;                }
120           Bool_t   GetHisto2d() const                                        { return fHisto2d;                }
121           Bool_t   GetVector2d() const                                       { return fVector2d;               }
122           Bool_t   GetLinearFitterOn() const                                 { return fLinearFitterOn;         }
123           Bool_t   GetLinearFitterDebugOn() const                            { return fLinearFitterDebugOn;    }
124           Int_t    GetVersionGainUsed() const                                { return fVersionGainUsed;        }
125           Int_t    GetSubVersionGainUsed() const                             { return fSubVersionGainUsed;     }
126           Int_t    GetVersionVdriftUsed() const                              { return fVersionVdriftUsed;      }
127           Int_t    GetSubVersionVdriftUsed() const                           { return fSubVersionVdriftUsed;   }
128
129
130   // Get stuff that are filled
131   TH2I            *GetCH2d();
132   TProfile2D      *GetPH2d(Int_t nbtimebin=24, Float_t samplefrequency= 10.0);
133   TProfile2D      *GetPRF2d() const                                          { return fPRF2d;                  } 
134   TObjArray        GetLinearFitterArray() const                              { return fLinearFitterArray;      }
135   TLinearFitter   *GetLinearFitter(Int_t detector, Bool_t force=kFALSE);
136   AliTRDCalibraVdriftLinearFit *GetVdriftLinearFit() const                   { return fLinearVdriftFit;        }
137   
138  
139   // How to fill the 2D
140           void     SetRelativeScale(Float_t relativeScale);                      
141           void     SetThresholdClusterPRF2(Float_t thresholdClusterPRF2)     { fThresholdClusterPRF2 = thresholdClusterPRF2; }
142           void     SetLimitChargeIntegration(Bool_t limitChargeIntegration)  { fLimitChargeIntegration = limitChargeIntegration; }
143           void     SetFillWithZero(Bool_t fillWithZero)                      { fFillWithZero = fillWithZero;   }
144           void     SetNormalizeNbOfCluster(Bool_t normalizeNbOfCluster)      { fNormalizeNbOfCluster = normalizeNbOfCluster; }
145           void     SetMaxCluster(Float_t maxCluster)                         { fMaxCluster = maxCluster; }
146           void     SetNbMaxCluster(Short_t nbMaxCluster)                     { fNbMaxCluster = nbMaxCluster; }
147           void     SetNz(Int_t i, Short_t nz);
148           void     SetNrphi(Int_t i, Short_t nrphi);
149           void     SetAllTogether(Int_t i);
150           void     SetPerSuperModule(Int_t i);
151           void     SetProcent(Float_t procent)                               { fProcent              = procent;              }
152           void     SetDifference(Short_t difference)                         { fDifference           = difference;           }
153           void     SetNumberClusters(Short_t numberClusters)                 { if(numberClusters >= 0) fNumberClusters       = numberClusters;       }
154           void     SetNumberClustersf(Short_t numberClustersf)               { fNumberClustersf      = numberClustersf;      }
155           void     SetNumberClustersProcent(Float_t numberClustersProcent)   { fNumberClustersProcent = numberClustersProcent;                       }
156           void     SetThresholdClustersDAQ(Float_t thresholdClustersDAQ)     { fThresholdClustersDAQ = thresholdClustersDAQ;                         }
157           void     SetNumberRowDAQ(Short_t numberRowDAQ)                     { fNumberRowDAQ         = numberRowDAQ;         }
158           void     SetNumberColDAQ(Short_t numberColDAQ)                     { fNumberColDAQ         = numberColDAQ;         }
159           void     SetNumberBinCharge(Short_t numberBinCharge)               { fNumberBinCharge      = numberBinCharge;      }
160           void     SetNumberBinPRF(Short_t numberBinPRF)                     { fNumberBinPRF         = numberBinPRF;         }
161           void     SetNumberGroupsPRF(Short_t numberGroupsPRF);
162   
163           Float_t  GetRelativeScale() const                                  { return fRelativeScale;          }
164           Float_t  GetThresholdClusterPRF2() const                           { return fThresholdClusterPRF2;   }
165           Bool_t   GetLimitChargeIntegration() const                         { return fLimitChargeIntegration; }
166           Bool_t   GetFillWithZero() const                                   { return fFillWithZero;           }
167           Bool_t   GetNormalizeNbOfCluster() const                           { return fNormalizeNbOfCluster;   }
168           Float_t  GetMaxCluster() const                                     { return fMaxCluster;             }
169           Short_t  GetNbMaxCluster() const                                   { return fNbMaxCluster;           }
170           Float_t  GetProcent() const                                        { return fProcent;                }
171           Short_t  GetDifference() const                                     { return fDifference;             }
172           Short_t  GetNumberClusters() const                                 { return fNumberClusters;         }
173           Short_t  GetNumberClustersf() const                                { return fNumberClustersf;        }
174           Short_t  GetNumberBinCharge() const                                { return fNumberBinCharge;        }
175           Short_t  GetNumberBinPRF() const                                   { return fNumberBinPRF;           }
176           Short_t  GetNumberGroupsPRF() const                                { return fNgroupprf;              }
177           Int_t    *GetEntriesLinearFitter() const                           { return fEntriesLinearFitter;    }
178
179  // Debug
180           void     SetDebugLevel(Short_t level)                              { fDebugLevel = level;           }
181
182   // Vector method
183 AliTRDCalibraVector *GetCalibraVector() const                                { return fCalibraVector;          }   
184   
185  protected:
186
187   // Geometry
188   AliTRDgeometry  *fGeo;                    //! The TRD geometry
189   // calibration DB
190   AliTRDcalibDB   *fCalibDB;                //! The pointer to the TRDcalibDB instance
191
192   // Is HLT
193           Bool_t   fIsHLT;                  // Now if HLT, the per detector
194
195   // Choice to fill or not the 2D
196           Bool_t   fCH2dOn;                 // Chose to fill the 2D histos or vectors for the relative gain calibration 
197           Bool_t   fPH2dOn;                 // Chose to fill the 2D histos or vectors for the drift velocity and T0
198           Bool_t   fPRF2dOn;                // Chose to fill the 2D histos or vectors for the pad response function calibration
199           Bool_t   fHisto2d;                // Chose to fill the 2D histos
200           Bool_t   fVector2d;               // Chose to fill vectors
201           Bool_t   fLinearFitterOn;         // Method with linear fit for drift velocity
202           Bool_t   fLinearFitterDebugOn;    // Method with linear fit for drift velocity
203
204   // How to fill the 2D
205           Float_t  fRelativeScale;          // Scale of the deposited charge
206           Float_t  fThresholdClusterPRF2;   // Threshold on cluster pad signals
207           Bool_t   fLimitChargeIntegration; // Integration range for the gain calibration
208           Bool_t   fFillWithZero;           // Fill with zero or not the average pulse height
209           Bool_t   fNormalizeNbOfCluster;   // Normalize with the number of cluster for the gain
210           Float_t  fMaxCluster;             // Max amplitude of one cluster
211           Short_t  fNbMaxCluster;           // Number of tb at the end
212   // Back correction
213           Int_t    fVersionGainUsed;        // VersionGainUsed 
214           Int_t    fSubVersionGainUsed;     // SubVersionGainUsed
215           Int_t    fVersionGainLocalUsed;   // VersionGainUsed 
216           Int_t    fSubVersionGainLocalUsed;// SubVersionGainUsed
217           Int_t    fVersionVdriftUsed;      // VersionVdriftUsed 
218           Int_t    fSubVersionVdriftUsed;   // SubVersionVdriftUsed
219   // Calibration mode
220           AliTRDCalibraMode *fCalibraMode;  // Calibration mode
221
222   //For debugging
223           TTreeSRedirector          *fDebugStreamer;                 //!Debug streamer
224           Short_t     fDebugLevel;                                   // Flag for debugging
225   //
226   // Internal variables
227   //
228
229   // Fill the 2D histos in the offline tracking
230           Int_t    fDetectorPreviousTrack;  // Change of detector
231           Int_t    fMCMPrevious;            // Change of MCM
232           Int_t    fROBPrevious;            // Change of ROB
233           Short_t  fNumberClusters;         // Minimum number of clusters in the tracklets
234           Short_t  fNumberClustersf;        // Maximum number of clusters in the tracklets
235           Float_t  fNumberClustersProcent;  // Procent of number of time bins for fNumberClusters
236           Float_t  fThresholdClustersDAQ;   // Threshold clusters for DAQ algorithm
237           Short_t  fNumberRowDAQ;           // Size of the spot for DAQ algorithm
238           Short_t  fNumberColDAQ;           // Size of the spot for DAQ algorithm
239           Float_t  fProcent;                // Limit to take the info of the most important calibration group if the track goes through 2 groups (CH)
240           Short_t  fDifference;             // Limit to take the info of the most important calibration group if the track goes through 2 groups (CH)
241           Int_t    fNumberTrack;            // How many tracks could be used (Debug for the moment)
242           Int_t    fNumberUsedCh[2];        // How many tracks have been really used for the gain (0, strict; 1 with fProcent)
243           Int_t    fNumberUsedPh[2];        // How many tracks have been really used for the drift velocity (0, strict; 1 with fDifference)
244           Int_t    fTimeMax;                // Number of time bins
245           Float_t  fSf;                     // Sampling frequence
246           Short_t  fNumberBinCharge;        // Number of bins for the gain factor
247           Short_t  fNumberBinPRF;           // Number of bin for the PRF
248           Short_t  fNgroupprf;              // Number of groups in tnp bins for PRF /2.0
249
250   // Variables per tracklet
251           Float_t       *fAmpTotal;                  // Energy deposited in the calibration group by the track
252           Short_t       *fPHPlace;                   // Calibration group of PH
253           Float_t       *fPHValue;                   // PH
254           Bool_t         fGoodTracklet;              // Good tracklet
255           TLinearFitter *fLinearFitterTracklet;      // linear fitter tracklet  
256   //Statistics
257           Int_t         *fEntriesCH;                 // Number of entries CH
258           Int_t         *fEntriesLinearFitter;       // Number of entries LinearFitter
259
260
261   //
262   // Vector method
263   //
264           
265           AliTRDCalibraVector *fCalibraVector; // The vector object
266  
267  
268   // Histograms to store the info from the digits, from the tracklets or from the tracks
269           TProfile2D      *fPH2d;                         // 2D average pulse height
270           TProfile2D      *fPRF2d;                        // 2D PRF
271           TH2I            *fCH2d;                         // 2D deposited charge
272           TObjArray       fLinearFitterArray;             // TObjArray of Linear Fitters for the detectors 
273           AliTRDCalibraVdriftLinearFit *fLinearVdriftFit; // Info Linear Fit
274           
275  // Current calib object: to correct for the database used
276           AliTRDCalDet *fCalDetGain;                      // Current calib object gain
277           AliTRDCalROC *fCalROCGain;                      // Current calib object gain
278            
279   //
280   // A lot of internal functions......
281   // Init
282           Bool_t   InitCalPad(Int_t detector);
283   //
284   // Create the 2D histo to be filled Online
285           void     CreateCH2d(Int_t nn);
286           void     CreatePH2d(Int_t nn);
287           void     CreatePRF2d(Int_t nn);
288   
289   // Calibration with AliTRDtrackV1
290           void     FillTheInfoOfTheTrackPH();
291           void     FillTheInfoOfTheTrackCH(Int_t nbclusters);
292           Bool_t   FindP1TrackPHtracklet(const AliTRDtrack *t, Int_t index0, Int_t index1);
293           Bool_t   FindP1TrackPHtrackletV1(const AliTRDseedV1 *tracklet, Int_t nbclusters);
294           Bool_t   HandlePRFtracklet(const AliTRDtrack *t, Int_t index0, Int_t index1);
295           Bool_t   HandlePRFtrackletV1(const AliTRDseedV1 *tracklet, Int_t nbclusters);
296           void     ResetfVariablestracklet();
297           void     StoreInfoCHPHtrack(const AliTRDcluster *cl,const Double_t dqdl,const Int_t *group,const Int_t row,const Int_t col,const AliTRDcluster *cls=0x0);
298           void     FillCH2d(Int_t x, Float_t y);
299
300   // Calibration on DAQ
301
302           Int_t    FillDAQ(Double_t phvalue[16][144][36]);
303           Bool_t   UpdateDAQ(Int_t det, Int_t /*row*/, Int_t /*col*/, Int_t timebin, Float_t signal, Int_t nbtimebins);
304           
305  // row col calibration groups stuff
306           Bool_t   LocalisationDetectorXbins(Int_t detector);
307           Int_t    CalculateTotalNumberOfBins(Int_t i);
308           void     CheckGoodTrackletV0(const Int_t detector,const Int_t row,const Int_t col);
309           void     CheckGoodTrackletV1(const AliTRDcluster *cl);
310           Int_t    CalculateCalibrationGroup(Int_t i, Int_t row, Int_t col) const;
311           
312   // Clear
313           void     ClearHistos();
314       
315   // Some basic geometry function
316   virtual Int_t    GetLayer(Int_t d) const;
317   virtual Int_t    GetStack(Int_t d) const;
318   virtual Int_t    GetSector(Int_t d) const;
319           
320           
321   // Instance of this class and so on
322   static  AliTRDCalibraFillHisto *fgInstance;                // Instance
323   static  Bool_t   fgTerminated;                             // If terminated
324
325  private:
326   
327   // This is a singleton, contructor is private!
328   AliTRDCalibraFillHisto();
329   virtual ~AliTRDCalibraFillHisto(); 
330     
331   ClassDef(AliTRDCalibraFillHisto,4)                         // TRD Calibration class
332
333 };
334   
335 #endif
336