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mocchiut |
1.1 |
/** |
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* \file TrkLevel2.h |
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* \author Elena Vannuccini |
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*/ |
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#ifndef trklevel2_h |
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#define trklevel2_h |
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#include <TObject.h> |
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#include <TObjArray.h> |
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#include <TClonesArray.h> |
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pam-fi |
1.7 |
#include <TRefArray.h> |
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pam-fi |
1.8 |
#include <TRef.h> |
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pam-fi |
1.3 |
|
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pam-fi |
1.18 |
#include <TrkParams.h> |
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pam-fi |
1.8 |
#include <TrkLevel1.h> |
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mocchiut |
1.1 |
|
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pam-fi |
1.2 |
// z-coordinate of track state-vector reference-plane |
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pam-fi |
1.43 |
#define ZINI 23.5 ///< z-coordinate of track state-vector reference-plane. |
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pam-fi |
1.5 |
// (mechanical) z-coordinate of the tracker planes |
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pam-fi |
1.27 |
#define ZTRK6 -22.22 |
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#define ZTRK5 -13.31 |
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#define ZTRK4 -4.41 |
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#define ZTRK3 4.49 |
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#define ZTRK2 13.39 |
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#define ZTRK1 22.29 |
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// magnet cavity dimensions |
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#define ZMAGNHIGH 21.83 |
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#define ZMAGNLOW -21.83 |
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#define XMAGNHIGH 8.07 |
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#define XMAGNLOW -8.07 |
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#define YMAGNHIGH 6.57 |
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#define YMAGNLOW -6.57 |
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pam-fi |
1.35 |
// tof planes |
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#define ZS11 53.74 |
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#define ZS12 53.04 |
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#define ZS21 23.94 |
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#define ZS22 23.44 |
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#define ZS31 -23.49 |
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#define ZS32 -24.34 |
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pam-fi |
1.5 |
// (mechanical) x/y-coordinates of magnet cavity |
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pam-fi |
1.34 |
/* #define XTRKL -8.1 */ |
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/* #define XTRKR 8.1 */ |
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/* #define YTRKL -6.6 */ |
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/* #define YTRKR 6.6 */ |
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pam-fi |
1.2 |
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mocchiut |
1.1 |
/** |
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* \brief Class to describe, by points, a particle trajectory in the apparatus. |
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* |
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* The idea is to create it by integrating the equations of motion, given the |
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* track state vector and the z coordinates where to evaluate track position. |
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*/ |
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// ================================================================== |
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class Trajectory : public TObject{ |
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private: |
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public: |
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int npoint; ///< number of evaluated points along the trajectory |
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pam-fi |
1.35 |
float* x; //[npoint] |
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float* y; //[npoint] |
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float* z; //[npoint] |
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float* thx; //[npoint] |
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float* thy; //[npoint] |
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float* tl; //[npoint] |
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mocchiut |
1.1 |
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pam-fi |
1.2 |
Trajectory(); |
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mocchiut |
1.1 |
Trajectory(int n); |
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Trajectory(int n, float* pz); |
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pam-fi |
1.15 |
~Trajectory(){Delete();}; |
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mocchiut |
1.1 |
void Dump(); |
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pam-fi |
1.15 |
void Delete(); |
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mocchiut |
1.1 |
|
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pam-fi |
1.41 |
int DoTrack(float* al, float zini); |
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int DoTrack(float* al){ return DoTrack(al,23.5); }; |
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int DoTrack2(float* al, float zini); |
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int DoTrack2(float* al){ return DoTrack2(al,23.5); }; |
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pam-fi |
1.2 |
float GetLength(){float l=0; for(int i=0; i<npoint;i++)l=l+tl[i]; return l;}; |
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float GetLength(int,int); |
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pam-fi |
1.35 |
ClassDef(Trajectory,3); |
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mocchiut |
1.1 |
|
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}; |
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/** |
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* \brief Class to describe fitted tracks. |
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* |
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* A track is defined by the measured coordinates associated to it, the |
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* track status vector, plus other quantities. |
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* A track may have an "image", due to the ambiguity in the y view. |
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pam-fi |
1.24 |
* |
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* Cluster flags: xgood[6], ygood[6] |
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* |
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* xgood/ygood = +/- 0lsccccccc |
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pam-fi |
1.35 |
* ccccccc ID (1-7483647) of the included cluster |
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* s sensor number (1,2 - increasing y) |
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* l ladder number (1,2,3 - increasing x) |
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* +/- does-not/does include bad strips |
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* |
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mocchiut |
1.1 |
*/ |
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// ================================================================== |
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class TrkTrack : public TObject { |
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private: |
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pam-fi |
1.32 |
public: |
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pam-fi |
1.3 |
int seqno; ///<stored track sequential number |
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int image; ///<sequential number of track-image |
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pam-fi |
1.8 |
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pam-fi |
1.43 |
/*! @brief Track state vector. |
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* |
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* This is the track state vector on reference plane defined by #ZINI. |
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* |
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* al[0]: X coordinate [cm] |
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* al[1]: Y coordinate [cm] |
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* al[2]: sin theta (altitude; theta = 0 is normal incidence) |
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* al[3]: phi (azimuth; phi = 0 is negative X axis) |
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* al[4]: deflection (with sign) [1/GV] |
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* |
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*/ |
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float al[5]; |
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mocchiut |
1.1 |
float coval[5][5]; ///<covariance matrix |
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pam-fi |
1.31 |
int xgood[6]; ///<cluster id for x-view (0 = view not included in the fit) |
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int ygood[6]; ///<cluster id for y-view (0 = view not included in the fit) |
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mocchiut |
1.1 |
float xm[6]; ///<measured x coordinates |
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float ym[6]; ///<measured y coordinates |
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float zm[6]; ///<measured z coordinates |
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float resx[6]; ///<spatial resolution on X view |
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float resy[6]; ///<spatial resolution on y view |
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pam-fi |
1.24 |
float tailx[6]; ///<spatial resolution tail on X view |
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float taily[6]; ///<spatial resolution tail on y view |
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mocchiut |
1.1 |
float chi2; ///<chi2 |
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pam-fi |
1.31 |
int nstep; ///<n.step |
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pam-fi |
1.12 |
float xv[6]; ///<calculated x coordinates |
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mocchiut |
1.1 |
float yv[6]; ///<calculated y coordinates |
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float zv[6]; ///<calculated z coordinates |
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float axv[6]; ///<calculated angles (deg) on x view |
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float ayv[6]; ///<calculated angles (deg) on y view |
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pam-fi |
1.24 |
float dedx_x[6]; ///<dE/dx in MIP (<0 if saturated) |
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float dedx_y[6]; ///<dE/dx in MIP (<0 if saturated) |
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pam-fi |
1.31 |
int multmaxx[6]; ///<cluster multiplicity and strip of maximum on x view |
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int multmaxy[6]; ///<cluster multiplicity and strip of maximum on y view |
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float seedx[6]; ///< seed of the cluster x |
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float seedy[6]; ///< seed of the cluster y |
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float xpu[6]; ///< x coordinate in pitch units |
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float ypu[6]; ///< y coordinate in pitch units |
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pam-fi |
1.3 |
|
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pam-fi |
1.35 |
float xGF[14]; ///<calculated x coordinates on GF reference planes |
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float yGF[14]; ///<calculated y coordinates on GF reference planes |
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mocchiut |
1.1 |
TrkTrack(); |
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TrkTrack(const TrkTrack&); |
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pam-fi |
1.15 |
~TrkTrack(){ Delete(); }; |
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pam-fi |
1.10 |
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mocchiut |
1.1 |
void Dump(); |
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pam-fi |
1.12 |
void Clear(); |
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pam-fi |
1.15 |
void Clear(Option_t *option){Clear();}; |
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pam-fi |
1.12 |
void Delete(); |
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pam-fi |
1.15 |
void Copy(TrkTrack&); |
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pam-fi |
1.16 |
// void Set(); |
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pam-fi |
1.3 |
Int_t GetSeqNo(){return seqno;} ///< Returns the track sequential number |
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Int_t GetImageSeqNo(){return image;} ///< Returns the track image sequential number |
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mocchiut |
1.1 |
Bool_t HasImage(){return !(image==-1);} ///< Returns true if the track has an image |
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pam-fi |
1.35 |
int DoTrack(Trajectory* t); ///< Evaluates the trajectory in the apparatus. |
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int DoTrack2(Trajectory* t); ///< Evaluates the trajectory in the apparatus. |
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pam-fi |
1.43 |
float BdL(){return 0;} ///< Evaluates the integral of B*dL along the track. |
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pam-fi |
1.24 |
Int_t GetNX(){Int_t n=0; for(Int_t i=0; i<6; i++)n+=(Int_t)XGood(i); return n;}; |
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Int_t GetNY(){Int_t n=0; for(Int_t i=0; i<6; i++)n+=(Int_t)YGood(i); return n;}; |
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pam-fi |
1.39 |
Int_t GetNXY(){Int_t n=0; for(Int_t i=0; i<6; i++)n+=(Int_t)YGood(i)*XGood(i); return n;}; |
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pam-fi |
1.3 |
Int_t GetNtot(){return GetNX()+GetNY();}; |
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mocchiut |
1.1 |
Float_t GetRigidity(); |
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Float_t GetDeflection(); |
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pam-fi |
1.24 |
Bool_t IsSaturated(int,int); |
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Bool_t IsSaturated(int); |
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Bool_t IsSaturated(); |
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Bool_t IsBad(int,int); |
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mocchiut |
1.1 |
Float_t GetDEDX(); |
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pam-fi |
1.28 |
Float_t GetDEDX(int ip); |
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Float_t GetDEDX(int ip,int iv); |
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pam-fi |
1.39 |
Int_t GetLeverArmXY(); |
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pam-fi |
1.24 |
Int_t GetLeverArmX(); |
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Int_t GetLeverArmY(); |
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pam-fi |
1.29 |
Float_t GetChi2X(); |
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Float_t GetChi2Y(); |
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Float_t GetLnLX(); |
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Float_t GetLnLY(); |
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pam-fi |
1.12 |
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pam-fi |
1.30 |
Float_t GetEffectiveAngle(int ip, int iv); |
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pam-fi |
1.12 |
void SetMeasure(double *xmeas, double *ymeas, double *zmeas); |
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void SetResolution(double *rx, double *ry); |
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pam-fi |
1.26 |
void SetTail(double *tx, double *ty, double factor); |
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void SetStudentParam(int flag); |
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pam-fi |
1.12 |
void SetGood(int *xg, int *yg); |
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void LoadField(TString s); |
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pam-fi |
1.25 |
void Fit(double pfixed, int& fail, int iprint, int froml1); |
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void Fit(double pfixed, int& fail, int iprint){ Fit(pfixed,fail,iprint,0); }; |
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pam-fi |
1.12 |
void FitReset(); |
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pam-fi |
1.19 |
void SetTrackingMode(int trackmode); |
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pam-fi |
1.21 |
void SetPrecisionFactor(double fact); |
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void SetStepMin(int istepmin); |
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pam-fi |
1.33 |
void SetDeltaB(int id, double db); |
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pam-fi |
1.35 |
Bool_t IsInsideCavity(float); |
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Bool_t IsInsideCavity(){ return IsInsideCavity(0.); }; |
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pam-fi |
1.42 |
Bool_t IsInsideAcceptance(float); |
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Bool_t IsInsideAcceptance(){ return IsInsideAcceptance(0.); }; |
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Bool_t IsInsideGFSurface(const char*,float); |
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Bool_t IsInsideGFSurface(const char* surf){ return IsInsideGFSurface(surf,0.); }; |
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pam-fi |
1.14 |
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pam-fi |
1.28 |
Bool_t EvaluateClusterPositions(); |
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pam-fi |
1.25 |
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pam-fi |
1.14 |
void FillMiniStruct(cMini2track&); |
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void SetFromMiniStruct(cMini2track*); |
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pam-fi |
1.12 |
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pam-fi |
1.24 |
Int_t GetClusterX_ID(int ip); |
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Int_t GetClusterY_ID(int ip); |
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Int_t GetLadder(int ip); |
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Int_t GetSensor(int ip); |
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Bool_t XGood(int ip){ return GetClusterX_ID(ip)!=-1; }; |
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Bool_t YGood(int ip){ return GetClusterY_ID(ip)!=-1; }; |
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pam-fi |
1.39 |
void ResetXGood(int ip){ xgood[ip]=0; }; |
| 227 |
pam-fi |
1.25 |
void ResetYGood(int ip){ ygood[ip]=0; }; |
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pam-fi |
1.36 |
/* void SetXGood(int ip, int clid, int is); */ |
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/* void SetYGood(int ip, int clid, int is); */ |
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void SetXGood(int ip, int clid, int il, int is, bool bad); |
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void SetYGood(int ip, int clid, int il, int is, bool bad); |
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void SetXGood(int ip, int clid, int il, int is){ SetXGood(ip,clid,il,is,false); }; |
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void SetYGood(int ip, int clid, int il, int is){ SetYGood(ip,clid,il,is,false); }; |
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pam-fi |
1.24 |
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Bool_t BadClusterX(int ip){ return IsBad(ip,0); }; |
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Bool_t BadClusterY(int ip){ return IsBad(ip,1); }; |
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Bool_t SaturatedClusterX(int ip){ return IsSaturated(ip,0); }; |
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Bool_t SaturatedClusterY(int ip){ return IsSaturated(ip,1); }; |
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pam-fi |
1.20 |
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pam-fi |
1.31 |
Int_t GetClusterX_Multiplicity(int ip){ return (Int_t)(multmaxx[ip]/10000); }; |
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Int_t GetClusterY_Multiplicity(int ip){ return (Int_t)(multmaxy[ip]/10000); }; |
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Int_t GetClusterX_MaxStrip(int ip){ return (Int_t)(multmaxx[ip]%10000); }; |
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Int_t GetClusterY_MaxStrip(int ip){ return (Int_t)(multmaxy[ip]%10000); }; |
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Float_t GetClusterX_Seed(int ip){ return seedx[ip]; }; |
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Float_t GetClusterY_Seed(int ip){ return seedy[ip]; }; |
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pam-fi |
1.36 |
/* Float_t GetClusterX_oordinatePU(int ip); */ |
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pam-fi |
1.31 |
/* Float_t GetClusterY_CoordinatePU(int ip); */ |
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pam-fi |
1.34 |
Float_t GetYav(); |
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Float_t GetXav(); |
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Float_t GetZav(); |
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| 255 |
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Int_t GetNColumns(); |
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Float_t GetDEDX_max(int ip, int iv); |
| 258 |
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Float_t GetDEDX_max(int iv){ return GetDEDX_max(-1,iv); }; |
| 259 |
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Float_t GetDEDX_max(){ return GetDEDX_max(-1,-1); }; |
| 260 |
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Float_t GetDEDX_min(int ip, int iv); |
| 261 |
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Float_t GetDEDX_min(int iv){ return GetDEDX_min(-1,iv); }; |
| 262 |
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Float_t GetDEDX_min(){ return GetDEDX_min(-1,-1); }; |
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| 264 |
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Float_t GetResidual_max(int ip, int iv); |
| 265 |
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Float_t GetResidual_max(int iv){ return GetResidual_max(-1,iv); }; |
| 266 |
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Float_t GetResidual_max(){ return GetResidual_max(-1,-1); }; |
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pam-fi |
1.37 |
Float_t GetResidual_av(int ip, int iv); |
| 268 |
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Float_t GetResidual_av(int iv){ return GetResidual_av(-1,iv); }; |
| 269 |
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Float_t GetResidual_av(){ return GetResidual_av(-1,-1); }; |
| 270 |
pam-fi |
1.34 |
|
| 271 |
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Int_t GetClusterX_Multiplicity_max(); |
| 272 |
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Int_t GetClusterX_Multiplicity_min(); |
| 273 |
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Int_t GetClusterY_Multiplicity_max(); |
| 274 |
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Int_t GetClusterY_Multiplicity_min(); |
| 275 |
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| 276 |
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Float_t GetClusterX_Seed_min(); |
| 277 |
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Float_t GetClusterY_Seed_min(); |
| 278 |
pam-fi |
1.31 |
|
| 279 |
mocchiut |
1.1 |
TrkTrack* GetTrkTrack(){return this;}; |
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| 281 |
pam-fi |
1.3 |
friend class TrkLevel2; |
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| 283 |
pam-fi |
1.35 |
ClassDef(TrkTrack,5); |
| 284 |
mocchiut |
1.1 |
|
| 285 |
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}; |
| 286 |
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/** |
| 287 |
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* \brief Class to describe single clusters ("singlets"). |
| 288 |
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* |
| 289 |
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* Single clusters are clusters not associated to any track. |
| 290 |
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*/ |
| 291 |
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class TrkSinglet : public TObject { |
| 292 |
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private: |
| 294 |
pam-fi |
1.8 |
|
| 295 |
mocchiut |
1.1 |
|
| 296 |
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public: |
| 297 |
pam-fi |
1.8 |
|
| 298 |
mocchiut |
1.1 |
int plane; ///<plane |
| 299 |
|
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float coord[2]; ///<coordinate (on sensor 1 and 2) |
| 300 |
pam-fi |
1.24 |
float sgnl; ///<cluster signal in MIP (<0 if saturated) |
| 301 |
pam-fi |
1.35 |
int multmax; ///<cluster multiplicity and strip of maximum |
| 302 |
mocchiut |
1.1 |
|
| 303 |
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TrkSinglet(); |
| 304 |
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TrkSinglet(const TrkSinglet&); |
| 305 |
pam-fi |
1.15 |
~TrkSinglet(){Delete();}; |
| 306 |
mocchiut |
1.1 |
|
| 307 |
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void Dump(); |
| 308 |
pam-fi |
1.15 |
void Clear(); |
| 309 |
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void Clear(Option_t *option){Clear();}; |
| 310 |
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void Delete(){Clear();}; |
| 311 |
pam-fi |
1.24 |
Float_t GetSignal(){return fabs(sgnl);} |
| 312 |
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Bool_t IsSaturated(){return (sgnl<0); }; |
| 313 |
pam-fi |
1.35 |
|
| 314 |
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Bool_t IsBad() { return multmax<=0; }; |
| 315 |
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Int_t GetCluster_Multiplicity(){ return (Int_t)(abs(multmax)/10000); }; |
| 316 |
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Int_t GetCluster_MaxStrip() { return (Int_t)(abs(multmax)%10000); }; |
| 317 |
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| 318 |
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| 319 |
pam-fi |
1.3 |
friend class TrkLevel2; |
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| 321 |
pam-fi |
1.35 |
ClassDef(TrkSinglet,4); |
| 322 |
mocchiut |
1.1 |
|
| 323 |
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}; |
| 324 |
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| 325 |
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/** |
| 326 |
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* \brief Class to describe tracker LEVEL2 data. |
| 327 |
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* |
| 328 |
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* A tracker events is defined by some general variables, plus the collection of all the fitted tracks and all |
| 329 |
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* single clusters on X and Y views. |
| 330 |
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* Tracks and single clusters ("singlets") are described by the classes TrkTrack and TrkSinglet respectivelly. |
| 331 |
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* |
| 332 |
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* Each track may have an "image", due to the ambiguity on the Y view, which is stored also. |
| 333 |
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* Thus, the number of stored tracks ( ntrk() ) differs from the number of "physical" tracks ( GetNTracks() ). |
| 334 |
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* Proper methods allow to sort tracks and select the physical ones ( GetTracks() ). |
| 335 |
pam-fi |
1.28 |
* |
| 336 |
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* The event status indicates the processing status of data from each DSP, according to the following |
| 337 |
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* notation: |
| 338 |
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* |
| 339 |
pam-fi |
1.35 |
* LSB --> 0 missing packet |
| 340 |
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* 1 CRC error |
| 341 |
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* 2 on-line software alarm (latch-up, timeout ecc...) |
| 342 |
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* 3 jump in the trigger counter |
| 343 |
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* 4 decode error |
| 344 |
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* 5 n.clusters > maximum number (level1 processing) |
| 345 |
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* 6 |
| 346 |
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* 7 |
| 347 |
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* 8 n.clusters > maximum value (level2 processing) |
| 348 |
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* 9 n.couples per plane > maximum values (vector dimention) |
| 349 |
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* 10 n.doublets > maximum values |
| 350 |
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* 11 n.triplets > maximum values |
| 351 |
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* 12 n.yz-clouds > maximum values |
| 352 |
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* 13 n.xz-clouds > maximum values |
| 353 |
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* 14 n.candidate-tracks > maximum values |
| 354 |
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* 15 n.couples per plane > maximum values (for Hough transform) |
| 355 |
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* MSB --> 16 |
| 356 |
pam-fi |
1.28 |
* |
| 357 |
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* |
| 358 |
pam-fi |
1.39 |
* For all data processed before June 2007 the event status was coded according to |
| 359 |
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* a different rule: |
| 360 |
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* |
| 361 |
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* Status of level1 processing |
| 362 |
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* 0 -- OK |
| 363 |
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* 1 -- missing packet |
| 364 |
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* 2 -- 1 CRC error |
| 365 |
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* 3 -- 2 on-line software alarm (latch-up flags asserted or n.transmitted-words = 0) |
| 366 |
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* 4 -- 3 jump in the trigger counter |
| 367 |
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* 10 -- 4 decode error |
| 368 |
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* 11 -- 5 n.clusters > maximum number (for level1 processing) |
| 369 |
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* Status of level2 processing |
| 370 |
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* 21 -- 0 n.clusters > maximum value (for level2 processing) |
| 371 |
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* 22 -- 1 n.couples per plane > maximum values (vector dimention) |
| 372 |
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* 23 -- 2 n.doublets > maximum values |
| 373 |
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* 24 -- 3 n.triplets > maximum values |
| 374 |
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* 25 -- 4 n.yz-clouds > maximum values |
| 375 |
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* 26 -- 5 n.xz-clouds > maximum values |
| 376 |
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* 27 -- 6 n.candidate-tracks > maximum values |
| 377 |
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* 28 -- 7 n.couples per plane > maximum values (for Hough transform) |
| 378 |
pam-fi |
1.28 |
* |
| 379 |
|
|
* |
| 380 |
mocchiut |
1.1 |
*/ |
| 381 |
|
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class TrkLevel2 : public TObject { |
| 382 |
|
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|
| 383 |
|
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private: |
| 384 |
pam-fi |
1.15 |
|
| 385 |
mocchiut |
1.1 |
public: |
| 386 |
|
|
|
| 387 |
pam-fi |
1.15 |
Int_t good[12]; ///< event status |
| 388 |
pam-fi |
1.24 |
UInt_t VKmask[12]; ///< Viking-chip mask |
| 389 |
|
|
UInt_t VKflag[12]; ///< Viking-chip flag |
| 390 |
mocchiut |
1.1 |
|
| 391 |
|
|
TClonesArray *Track; ///< fitted tracks |
| 392 |
|
|
TClonesArray *SingletX; ///< x singlets |
| 393 |
|
|
TClonesArray *SingletY; ///< y singlets |
| 394 |
|
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|
| 395 |
|
|
TrkLevel2(); |
| 396 |
|
|
// TrkLevel2(cTrkLevel2 *); |
| 397 |
pam-fi |
1.11 |
~TrkLevel2(){Delete();}; |
| 398 |
pam-fi |
1.10 |
|
| 399 |
pam-fi |
1.11 |
void Clear(); |
| 400 |
pam-fi |
1.15 |
void Clear(Option_t *option){Clear();}; |
| 401 |
pam-fi |
1.11 |
void Delete(); |
| 402 |
pam-fi |
1.16 |
void Set(); |
| 403 |
pam-fi |
1.40 |
int UnpackError(){ for(int i=0; i<12; i++)if(!StatusCheck(i,0x12))return 1; return 0;}; |
| 404 |
pam-fi |
1.11 |
|
| 405 |
|
|
int ntrk() {return Track->GetEntries();} ///< number of stored track |
| 406 |
mocchiut |
1.1 |
int nclsx(){return SingletX->GetEntries();} ///< number of x singlets |
| 407 |
|
|
int nclsy(){return SingletY->GetEntries();} ///< number of y singlets |
| 408 |
|
|
|
| 409 |
|
|
void Dump(); |
| 410 |
pam-fi |
1.11 |
void SetFromLevel2Struct(cTrkLevel2 *, TrkLevel1 *); |
| 411 |
pam-fi |
1.18 |
void SetFromLevel2Struct(cTrkLevel2 *s2){ SetFromLevel2Struct(s2, NULL); }; |
| 412 |
|
|
void SetFromLevel2Struct(TrkLevel1 *l1) { SetFromLevel2Struct(&level2event_, l1); }; |
| 413 |
|
|
void SetFromLevel2Struct() { SetFromLevel2Struct(&level2event_); }; |
| 414 |
pam-fi |
1.11 |
void GetLevel2Struct(cTrkLevel2 *) const; |
| 415 |
pam-fi |
1.3 |
void LoadField(TString); |
| 416 |
pam-fi |
1.25 |
float GetBX(float* v){return TrkParams::GetBX(v);};///< Bx (kGauss) |
| 417 |
|
|
float GetBY(float* v){return TrkParams::GetBY(v);};///< By (kGauss) |
| 418 |
|
|
float GetBZ(float* v){return TrkParams::GetBZ(v);};///< Bz (kGauss) |
| 419 |
pam-fi |
1.6 |
Float_t GetZTrk(Int_t); |
| 420 |
pam-fi |
1.34 |
Float_t GetXTrkLeft(){return XMAGNLOW;}; |
| 421 |
|
|
Float_t GetXTrkRight(){return XMAGNHIGH;}; |
| 422 |
|
|
Float_t GetYTrkLeft(){return YMAGNLOW;}; |
| 423 |
|
|
Float_t GetYTrkRight(){return YMAGNHIGH;}; |
| 424 |
pam-fi |
1.6 |
|
| 425 |
pam-fi |
1.24 |
Bool_t IsMaskedVK(int,int); |
| 426 |
|
|
Bool_t GetVKMask(int,int); |
| 427 |
|
|
Bool_t GetVKFlag(int,int); |
| 428 |
|
|
|
| 429 |
pam-fi |
1.6 |
TrkSinglet *GetSingletX(int); |
| 430 |
|
|
TrkSinglet *GetSingletY(int); |
| 431 |
|
|
|
| 432 |
|
|
TrkTrack *GetStoredTrack(int i); |
| 433 |
pam-fi |
1.3 |
Int_t GetSeqNo(Int_t i) {return (((TrkTrack *)Track->At(i))->seqno);}; ///< Returns track sequential number |
| 434 |
pam-fi |
1.24 |
|
| 435 |
pam-fi |
1.11 |
TRefArray *GetTracks_NFitSorted(); |
| 436 |
|
|
TRefArray *GetTracks(){return this->GetTracks_NFitSorted();}; |
| 437 |
|
|
|
| 438 |
|
|
Int_t GetNTracks(); |
| 439 |
|
|
TrkTrack* GetTrack(int i); |
| 440 |
mocchiut |
1.1 |
TrkTrack* GetTrackImage(int i); |
| 441 |
pam-fi |
1.11 |
|
| 442 |
pam-fi |
1.3 |
TrkLevel2* GetTrkLevel2(){return this;} |
| 443 |
|
|
TClonesArray* GetTrackArray(){return Track;};///< returns pointer to the track array |
| 444 |
|
|
|
| 445 |
pam-fi |
1.28 |
void StatusDump(int view); |
| 446 |
|
|
Bool_t StatusCheck(int view, int flagmask); |
| 447 |
|
|
|
| 448 |
pam-fi |
1.24 |
ClassDef(TrkLevel2,3); |
| 449 |
mocchiut |
1.1 |
|
| 450 |
|
|
}; |
| 451 |
|
|
|
| 452 |
|
|
#endif |