/[PAMELA software]/DarthVader/TrackerLevel2/inc/TrkLevel2.h
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Diff of /DarthVader/TrackerLevel2/inc/TrkLevel2.h

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revision 1.14 by pam-fi, Wed Nov 15 15:18:49 2006 UTC revision 1.23 by pam-fi, Thu Mar 29 17:06:39 2007 UTC
# Line 11  Line 11 
11  #include <TRefArray.h>  #include <TRefArray.h>
12  #include <TRef.h>  #include <TRef.h>
13    
14  #include <TrkStruct.h>  //#include <TrkStruct.h>
15    #include <TrkParams.h>
16  #include <TrkLevel1.h>  #include <TrkLevel1.h>
17    
18  // z-coordinate of track state-vector reference-plane  // z-coordinate of track state-vector reference-plane
# Line 55  class Trajectory : public TObject{ Line 56  class Trajectory : public TObject{
56      Trajectory();      Trajectory();
57      Trajectory(int n);      Trajectory(int n);
58      Trajectory(int n, float* pz);      Trajectory(int n, float* pz);
59        ~Trajectory(){Delete();};
60      void Dump();      void Dump();
61        void Delete();
62    
63      int DoTrack2(float* al);      int DoTrack2(float* al);
64      float GetLength(){float l=0; for(int i=0; i<npoint;i++)l=l+tl[i]; return l;};      float GetLength(){float l=0; for(int i=0; i<npoint;i++)l=l+tl[i]; return l;};
# Line 82  private: Line 85  private:
85                    
86  public:  public:
87    
 //      TRef clx[6];  
 //      TRef cly[6];  
88      TRefArray *clx;      TRefArray *clx;
89      TRefArray *cly;      TRefArray *cly;
90    
91    /*     float al[5];           ///<TRACK STATE VECTOR  */
92      float al[5];           ///<TRACK STATE VECTOR      float al[5];           ///<TRACK STATE VECTOR
93      float coval[5][5];     ///<covariance matrix      float coval[5][5];     ///<covariance matrix
94      int   xgood[6];        ///<mask of included x planes      int   xgood[6];        ///<mask of included x planes
# Line 103  public: Line 105  public:
105      float zv[6];           ///<calculated z coordinates      float zv[6];           ///<calculated z coordinates
106      float axv[6];          ///<calculated angles (deg) on x view      float axv[6];          ///<calculated angles (deg) on x view
107      float ayv[6];          ///<calculated angles (deg) on y view      float ayv[6];          ///<calculated angles (deg) on y view
108      float dedx_x[6];       ///<signal in MIP (scaled to 300 micrometer)      float dedx_x[6];       ///<dE/dx in MIP
109      float dedx_y[6];       ///<signal in MIP (scaled to 300 micrometer)      float dedx_y[6];       ///<dE/dx in MIP
   
110    
111      TrkTrack();      TrkTrack();
112      TrkTrack(const TrkTrack&);      TrkTrack(const TrkTrack&);
113    
114      ~TrkTrack(){Delete();};      ~TrkTrack(){ Delete(); };
115                    
116      void Dump();      void Dump();
117      void Clear();      void Clear();
118        void Clear(Option_t *option){Clear();};
119      void Delete();      void Delete();
120                void Copy(TrkTrack&);
121    //    void Set();
122    
123      Int_t  GetSeqNo(){return seqno;}        ///< Returns the track sequential number      Int_t  GetSeqNo(){return seqno;}        ///< Returns the track sequential number
124      Int_t  GetImageSeqNo(){return image;}   ///< Returns the track image sequential number      Int_t  GetImageSeqNo(){return image;}   ///< Returns the track image sequential number
125      Bool_t HasImage(){return !(image==-1);} ///< Returns true if the track has an image      Bool_t HasImage(){return !(image==-1);} ///< Returns true if the track has an image
126      int DoTrack(Trajectory* t);                         ///< Evaluates the trajectory in the apparatus.      int DoTrack(Trajectory* t);                         ///< Evaluates the trajectory in the apparatus.
127      int DoTrack2(Trajectory* t);                        ///< Evaluates the trajectory in the apparatus.      int DoTrack2(Trajectory* t);                        ///< Evaluates the trajectory in the apparatus.
128      float BdL(){return 0;};                                     ///< Evaluates the integral of B*dL along the track.      float BdL(){return 0;};                                     ///< Evaluates the integral of B*dL along the track.
129      Int_t GetNX(){Int_t n=0; for(Int_t i=0; i<6; i++)n+=xgood[i]; return n;};      Int_t GetNX(){Int_t n=0; for(Int_t i=0; i<6; i++)n+=XGood(i); return n;};
130      Int_t GetNY(){Int_t n=0; for(Int_t i=0; i<6; i++)n+=ygood[i]; return n;};      Int_t GetNY(){Int_t n=0; for(Int_t i=0; i<6; i++)n+=YGood(i); return n;};
131      Int_t GetNtot(){return GetNX()+GetNY();};      Int_t GetNtot(){return GetNX()+GetNY();};
132      Float_t GetRigidity();      Float_t GetRigidity();
133      Float_t GetDeflection();      Float_t GetDeflection();
134      Float_t GetDEDX();      Float_t GetDEDX();
135      Float_t GetDEDX(Int_t ip){if( !(xgood[ip]+ygood[ip]) ) return 0; return (dedx_x[ip]+dedx_y[ip])/(xgood[ip]+ygood[ip]);};      Float_t GetDEDX(Int_t ip){if( !(XGood(ip)+YGood(ip)) ) return 0; return (dedx_x[ip]+dedx_y[ip])/(XGood(ip)+YGood(ip));};
136      // sono un'imbecille... assegno xm e ym anche quando si tratta di un singolo      // sono un'imbecille... assegno xm e ym anche quando si tratta di un singolo
137      // non posso quindi usare xm e ym per dire se una vista e` inclusa nel fit o no      // non posso quindi usare xm e ym per dire se una vista e` inclusa nel fit o no
138  /*      Bool_t XGood(int ip){ return xm[ip] != -100.;};  /*      Bool_t XGood(int ip){ return xm[ip] != -100.;};
139          Bool_t YGood(int ip){ return ym[ip] != -100.;};*/          Bool_t YGood(int ip){ return ym[ip] != -100.;};*/
140      Bool_t XGood(int ip){ return xgood[ip]==1;};      Bool_t XGood(int ip){ return xgood[ip]> 0;};
141      Bool_t YGood(int ip){ return ygood[ip]==1;};      Bool_t YGood(int ip){ return ygood[ip]> 0;};
142        
143    
144      void SetMeasure(double *xmeas, double *ymeas, double *zmeas);      void SetMeasure(double *xmeas, double *ymeas, double *zmeas);
145      void SetResolution(double *rx, double *ry);      void SetResolution(double *rx, double *ry);
# Line 142  public: Line 147  public:
147      void LoadField(TString s);      void LoadField(TString s);
148      void Fit(double pfixed, int& fail, int iprint);      void Fit(double pfixed, int& fail, int iprint);
149      void FitReset();      void FitReset();
150        void SetTrackingMode(int trackmode);
151        void SetPrecisionFactor(double fact);
152        void SetStepMin(int istepmin);
153    
154      void FillMiniStruct(cMini2track&);      void FillMiniStruct(cMini2track&);
155      void SetFromMiniStruct(cMini2track*);      void SetFromMiniStruct(cMini2track*);
156            
157      TrkCluster *GetClusterX(int ip){TrkCluster *pt = (TrkCluster*)(clx->At(ip)); return pt;};      TrkCluster *GetClusterX(int ip);
158      TrkCluster *GetClusterY(int ip){TrkCluster *pt = (TrkCluster*)(cly->At(ip)); return pt;};      TrkCluster *GetClusterY(int ip);
159    
160        Int_t GetClusterX_ID(int ip){return xgood[ip];};
161        Int_t GetClusterY_ID(int ip){return ygood[ip];};
162            
163      TrkTrack* GetTrkTrack(){return this;};      TrkTrack* GetTrkTrack(){return this;};
164    
# Line 168  private: Line 179  private:
179    
180  public:  public:
181                    
182          TRef cls;      TRef cls;
183    
184      int plane;       ///<plane      int plane;       ///<plane
185      float coord[2];  ///<coordinate (on sensor 1 and 2)      float coord[2];  ///<coordinate (on sensor 1 and 2)
# Line 176  public: Line 187  public:
187    
188      TrkSinglet();      TrkSinglet();
189      TrkSinglet(const TrkSinglet&);      TrkSinglet(const TrkSinglet&);
190        ~TrkSinglet(){Delete();};
191    
192      void Dump();      void Dump();
193        void Clear();
194        void Clear(Option_t *option){Clear();};
195        void Delete(){Clear();};
196                    
197      TrkCluster *GetCluster(){TrkCluster *pt = (TrkCluster*)cls.GetObject(); return pt;};      TrkCluster *GetCluster(){TrkCluster *pt = (TrkCluster*)cls.GetObject(); return pt;};
198    
# Line 201  public: Line 216  public:
216  class TrkLevel2 : public TObject {  class TrkLevel2 : public TObject {
217    
218   private:   private:
219            
 //      TRefArray    *PhysicalTrack;  ///< physical tracks (no image) -  
           
220   public:   public:
221    
222          Int_t         good[12];       ///< event status      Int_t         good[12];       ///< event status
 //      Int_t good2;  
 //    Int_t crc[12];  
223    
224      TClonesArray *Track;        ///< fitted tracks      TClonesArray *Track;        ///< fitted tracks
225      TClonesArray *SingletX;     ///< x singlets      TClonesArray *SingletX;     ///< x singlets
# Line 219  class TrkLevel2 : public TObject { Line 230  class TrkLevel2 : public TObject {
230      ~TrkLevel2(){Delete();};      ~TrkLevel2(){Delete();};
231                    
232      void Clear();      void Clear();
233        void Clear(Option_t *option){Clear();};
234      void Delete();      void Delete();
235        void Set();
236            
237      int ntrk() {return Track->GetEntries();}    ///< number of stored track      int ntrk() {return Track->GetEntries();}    ///< number of stored track
238      int nclsx(){return SingletX->GetEntries();} ///< number of x singlets      int nclsx(){return SingletX->GetEntries();} ///< number of x singlets
239      int nclsy(){return SingletY->GetEntries();} ///< number of y singlets      int nclsy(){return SingletY->GetEntries();} ///< number of y singlets
240    
241      void Dump();      void Dump();
     void SetFromLevel2Struct(cTrkLevel2 *);  
242      void SetFromLevel2Struct(cTrkLevel2 *, TrkLevel1 *);      void SetFromLevel2Struct(cTrkLevel2 *, TrkLevel1 *);
243        void SetFromLevel2Struct(cTrkLevel2 *s2){ SetFromLevel2Struct(s2, NULL);          };
244        void SetFromLevel2Struct(TrkLevel1 *l1) { SetFromLevel2Struct(&level2event_, l1); };    
245        void SetFromLevel2Struct()              { SetFromLevel2Struct(&level2event_);     };    
246      void GetLevel2Struct(cTrkLevel2 *) const;      void GetLevel2Struct(cTrkLevel2 *) const;
247      void LoadField(TString);      void LoadField(TString);
248        float GetBX(float*);
249        float GetBY(float*);
250        float GetBZ(float*);
251      Float_t GetZTrk(Int_t);      Float_t GetZTrk(Int_t);
252      Float_t GetXTrkLeft(){return XTRKL;};      Float_t GetXTrkLeft(){return XTRKL;};
253      Float_t GetXTrkRight(){return XTRKR;};      Float_t GetXTrkRight(){return XTRKR;};

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