/[PAMELA software]/DarthVader/ToFLevel2/inc/ToFLevel2.h
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revision 1.14 by pam-de, Thu Mar 1 10:48:25 2007 UTC revision 1.18 by mocchiut, Fri Oct 19 08:39:30 2007 UTC
# Line 11  Line 11 
11  #include <TArrayF.h>  #include <TArrayF.h>
12  #include <TClonesArray.h>  #include <TClonesArray.h>
13    
14    #include <math.h> // EMILIANO
15    
16  #include <ToFStruct.h>  #include <ToFStruct.h>
17    
18    
# Line 28  Line 30 
30  /**  /**
31   * \brief  Class which contains the PMT data   * \brief  Class which contains the PMT data
32   *   *
33     * If there is a valid ADC or a TDC value (value<4095) for a PMT, both ADC and TDC data
34     * are stored in the PMT class.
35     * Look in the ToFLevel2Ex.cxx example in the repository how to read the PMT class.
36   */   */
37  class ToFPMT : public TObject {  class ToFPMT : public TObject {
38    
# Line 35  class ToFPMT : public TObject { Line 40  class ToFPMT : public TObject {
40    
41   public:   public:
42      Int_t pmt_id;     ///<the identification number of the PMT from 0 to 47      Int_t pmt_id;     ///<the identification number of the PMT from 0 to 47
43      Float_t adc;      ///<raw ADC values adc[4,12]      Float_t adc;      ///<raw ADC value for this PMT
44      Float_t tdc_tw;   ///<time-walk corrected TDC values tdc_tw[4,12]      Float_t tdc;      ///<raw TDC value for this PMT
45        Float_t tdc_tw;   ///<time-walk corrected TDC value for this PMT
46      //      //
47      ToFPMT();      ToFPMT();
48      ToFPMT(const ToFPMT&);      ToFPMT(const ToFPMT&);
# Line 46  class ToFPMT : public TObject { Line 52  class ToFPMT : public TObject {
52    
53    
54    
55      ClassDef(ToFPMT,1);      ClassDef(ToFPMT,2);
56  };  };
57    
58    
59  /**  /**
60   * \brief Class which contains the tracker realated variables   * \brief Class which contains the tracker related variables
61   *   *
62     * We can use the ToF standalone to find hitted paddles, calculate beta, etc..
63     * These results are then stored with the "trkseqno" = -1.
64     * If we use the track from the tracker, then the penetration points in the
65     * scintillators are calculated, which defines the hitted paddles. For these paddles
66     * we calculate then all the output.
67     * Note: The artificial ADC values are stored as dEdx in the output, the dEdx will be
68     * by definition = 1. However, the artificial TDC values are just used internally
69     * and not stored in the output. But one can see in both cases which PMT has artificial
70     * values using "adcflag" and "tdcflag".
71     * Look in the ToFLevel2Ex.cxx example in the repository how to read the tracker related
72     * variables.
73   */   */
74  class ToFTrkVar : public TObject {  class ToFTrkVar : public TObject {
75    
# Line 62  class ToFTrkVar : public TObject { Line 79  class ToFTrkVar : public TObject {
79    //    //
80    Int_t trkseqno; ///< tracker sequ. number: -1=ToF standalone, 0=first Tracker track, ...    Int_t trkseqno; ///< tracker sequ. number: -1=ToF standalone, 0=first Tracker track, ...
81    //    //
82    Int_t npmttdc;  ///<number of TDC used to evaluate beta    Int_t npmttdc;  ///<number of the TDC measurements used to evaluate beta
83    TArrayI pmttdc;  ///<contains the PMT ID for the tdc used to evaluate beta    TArrayI pmttdc;  ///<contains the ID (0..47) for the PMT used to evaluate beta
84    TArrayI tdcflag; ///<array  flagging the artificial TDCs, "0" if normal TDC value    TArrayI tdcflag; ///<flag for artificial TDC, "0" if normal TDC value
   Float_t beta[13]; ///<beta, 12 measurements for the 12  combinations, beta[13] is weighted mean  
   //  
   Int_t npmtadc;  ///<number of ADCs used for dEdx evaluation  
   TArrayI pmtadc; ///<contains the PMT ID for the adc used in evaluate dedx=adc_c  
   TArrayI adcflag; ///<array flagging the artificial ADCs, "0" if normal ADC value  
   TArrayF dedx;    ///<energy loss in mip  
   //  
   Float_t xtofpos[3];  ///<x-measurement using the TDC values and the calibration  
   Float_t ytofpos[3];  ///<x-measurement using the TDC values and the calibration  
85    
86    /**
87     * \brief beta, 12 measurements for the 12  combinations, beta[13] is weighted mean
88     *
89     * The 12 measurements are S11-S31, S11-S32, S12-S31, S12-S32, and then analogue for
90     * S2-S3 and S1-S2.
91     * In the moment all measurements are taken and the weighted mean is calculated.
92     * Note that the weights are just simple overall results for S1-S3, S2-S3, and S1-S2.
93     * Artificial measurments are not treated correct, (since there is only one real
94     * measurment the weight should be different then for two meassurments).
95     * The beta calculation will be improved in the next release.    
96     */
97      Float_t beta[13];
98      //
99      Int_t npmtadc;  ///<number of the ADC measurements used for dEdx evaluation
100      TArrayI pmtadc; ///<contains the ID (0..47) for the PMT used to evaluate dEdx
101      TArrayI adcflag; ///<flag for artificial ADCs, "0" if normal ADC value
102      TArrayF dedx;    ///<energy loss for this PMT in mip
103      //
104      Float_t xtofpos[3];  ///<x-measurement using the TDC values and the calibration from S12, S21, S32
105      Float_t ytofpos[3];  ///<x-measurement using the TDC values and the calibration from S11, S22, S31
106      //
107      Float_t xtr_tof[6];  ///<x-measurement in the ToF layers from tracker
108      Float_t ytr_tof[6];  ///<x-measurement in the ToF layers from tracker
109    //    //
110    ToFTrkVar();    ToFTrkVar();
111    ToFTrkVar(const ToFTrkVar&);    ToFTrkVar(const ToFTrkVar&);
# Line 99  class ToFLevel2 : public TObject { Line 130  class ToFLevel2 : public TObject {
130    TClonesArray *PMT; ///<class needed to store PMT hit informations    TClonesArray *PMT; ///<class needed to store PMT hit informations
131    TClonesArray *ToFTrk; ///<track related variable class    TClonesArray *ToFTrk; ///<track related variable class
132    Int_t tof_j_flag[6];  ///<number of hitted paddle(s) for each ToF layer: flag = flag + 2**(paddlenumber-1)    Int_t tof_j_flag[6];  ///<number of hitted paddle(s) for each ToF layer: flag = flag + 2**(paddlenumber-1)
   
   Int_t unpackError;  
133    //    //
134    Float_t GetdEdx(Int_t notrack, Int_t plane);    Int_t unpackError;///< zero if no error presente
135      Int_t default_calib; ///< one if the default calibration has been used to process the data, zero otherwise
136      //
137      Float_t GetdEdx(Int_t notrack, Int_t plane, Int_t adcfl); // gf Apr 07
138    //    //
139    // methods to make life simplier during the analysis, returns a pointer to the ToFTrkVar class containing track related variables    // methods to make life simplier during the analysis, returns a pointer to the ToFTrkVar class containing track related variables
140    //    //
# Line 116  class ToFLevel2 : public TObject { Line 148  class ToFLevel2 : public TObject {
148    ToFPMT *GetToFPMT(Int_t nohit);    ToFPMT *GetToFPMT(Int_t nohit);
149    Int_t GetPMTid(Int_t gg, Int_t hh);    Int_t GetPMTid(Int_t gg, Int_t hh);
150    TString GetPMTName(Int_t ind);    TString GetPMTName(Int_t ind);
151      
152    Int_t GetPlaneIndex(Int_t pmt_id);    Int_t GetPlaneIndex(Int_t pmt_id);
153    void GetMatrix(Int_t notrack, Float_t adc[4][12], Float_t tdc[4][12]);    void GetMatrix(Int_t notrack, Float_t adc[4][12], Float_t tdc[4][12]);
154    void GetPMTIndex(Int_t pmt_id, Int_t &gg, Int_t &hh);    void GetPMTIndex(Int_t pmt_id, Int_t &gg, Int_t &hh);
155    
156      // gf Apr 07
157      void GetdEdxPaddle(Int_t notrack, Int_t paddleid, Int_t adcfl, Float_t &PadEdx, Int_t &SatWarning); // gf Apr 07
158      TString GetPMTName(Int_t ind, Int_t &iplane, Int_t &ipaddle,Int_t &ipmt);
159      Int_t GetPaddleIdOfTrack(Float_t xtr, Float_t ytr, Int_t plane); // gf Apr 07
160      void GetPMTPaddle(Int_t pmt_id, Int_t &plane, Int_t &paddle); // gf Apr 07
161      void GetPaddlePMT(Int_t paddle, Int_t &pmtleft, Int_t &pmtright); // gf Apr 07
162      void GetPaddleGeometry(Int_t plane, Int_t paddle, Float_t &xleft, Float_t &xright, Float_t &yleft, Float_t &yright); // gf Apr 07
163      Int_t GetPaddleid(Int_t plane, Int_t paddle);
164      void GetPaddlePlane(Int_t padid, Int_t &plane, Int_t &paddle);
165      Int_t GetNPaddle(Int_t plane);
166      //
167      
168    //    //
169    // constructor    // constructor
170    //    //
# Line 131  class ToFLevel2 : public TObject { Line 177  class ToFLevel2 : public TObject {
177    ToFLevel2*   GetToFLevel2(){return this;};    ToFLevel2*   GetToFLevel2(){return this;};
178    
179  /**  /**
180   * Method to get the z-position of the 6 TOF layers from th plane ID   * Method to get the z-position of the 6 TOF layers from the plane ID
181   * @param plane_id Plane ID (11 12 21 22 31 32)   * @param plane_id Plane ID (11 12 21 22 31 32)
182   */   */
183    Float_t      GetZTOF(Int_t plane_id){    Float_t      GetZTOF(Int_t plane_id){
# Line 164  class ToFLevel2 : public TObject { Line 210  class ToFLevel2 : public TObject {
210      Int_t  GetNHitPaddles(Int_t plane);      Int_t  GetNHitPaddles(Int_t plane);
211      void Clear();      void Clear();
212      //      //
213      ClassDef(ToFLevel2,2);      ClassDef(ToFLevel2,3);
214  };  };
215    
216  #endif  #endif

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