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#define NANGMAX 21 |
#define NANGMAX 21 |
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#define NETAVALMAX 500 |
#define NETAVALMAX 500 |
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#define NTRACKSMAX (NCLOYZ_MAX*NCLOXZ_MAX) |
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#include <CalibTrk1Event.h> |
#include <CalibTrk1Event.h> |
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#include <CalibTrk2Event.h> |
#include <CalibTrk2Event.h> |
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#include <TTree.h> |
#include <TTree.h> |
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#include <fstream> |
#include <fstream> |
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#include <iostream> |
#include <iostream> |
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/** |
/** |
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float sigma_t[128][24][12]; |
float sigma_t[128][24][12]; |
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int bad[128][24][12]; |
int bad[128][24][12]; |
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void Reset(){ |
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for(int is=0; is<128; is++){ |
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for(int ivk=0; ivk<24; ivk++){ |
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for(int iv=0; iv<12; iv++){ |
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pedestal[is][ivk][iv]=0.; |
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pedestal_t[is][ivk][iv]=0.; |
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sigma[is][ivk][iv]=0.; |
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sigma_t[is][ivk][iv]=0.; |
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bad[is][ivk][iv]=1; |
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} |
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} |
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} |
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} |
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/* void FillACalibFrom(TFile* , Int_t , Int_t ); */ |
/* void FillACalibFrom(TFile* , Int_t , Int_t ); */ |
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/* void FillFCalibFrom(TFile* , Int_t , Int_t ); */ |
/* void FillFCalibFrom(TFile* , Int_t , Int_t ); */ |
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/* void FillTCalibFrom(TFile* , Int_t , Int_t ); */ |
/* void FillTCalibFrom(TFile* , Int_t , Int_t ); */ |
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float xs[NSINGMAX][2]; |
float xs[NSINGMAX][2]; |
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float signlxs[NSINGMAX]; |
float signlxs[NSINGMAX]; |
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int clsx[NSINGMAX]; |
int clsx[NSINGMAX]; |
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int sxbad[NSINGMAX]; |
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int multmaxsx[NSINGMAX]; |
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// ---------------------------- |
// ---------------------------- |
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int nclsy; |
int nclsy; |
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int planey[NSINGMAX]; |
int planey[NSINGMAX]; |
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float ys[NSINGMAX][2]; |
float ys[NSINGMAX][2]; |
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float signlys[NSINGMAX]; |
float signlys[NSINGMAX]; |
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int clsy[NSINGMAX]; |
int clsy[NSINGMAX]; |
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int sybad[NSINGMAX]; |
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int multmaxsy[NSINGMAX]; |
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// ---------------------------- |
// ---------------------------- |
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int ntrk; |
int ntrk; |
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int image[NTRKMAX]; |
int image[NTRKMAX]; |
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float dedx_y[NTRKMAX][6]; |
float dedx_y[NTRKMAX][6]; |
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int cltrx[NTRKMAX][6]; |
int cltrx[NTRKMAX][6]; |
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int cltry[NTRKMAX][6]; |
int cltry[NTRKMAX][6]; |
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int multmaxx[NTRKMAX][6]; |
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int multmaxy[NTRKMAX][6]; |
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float seedx[NTRKMAX][6]; |
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float seedy[NTRKMAX][6]; |
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float xpu[NTRKMAX][6]; |
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float ypu[NTRKMAX][6]; |
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// float bdl[NTRKMAX]; |
// float bdl[NTRKMAX]; |
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void InitcTrkLevel2(){ |
void InitcTrkLevel2(){ |
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xs[i][0] = 0; |
xs[i][0] = 0; |
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xs[i][1] = 0; |
xs[i][1] = 0; |
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signlxs[i] = 0; |
signlxs[i] = 0; |
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clsx[i] = 0; |
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sxbad[i] = 0; |
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planey[i] = 0; |
planey[i] = 0; |
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ys[i][0] = 0; |
ys[i][0] = 0; |
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ys[i][1] = 0; |
ys[i][1] = 0; |
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signlys[i] = 0; |
signlys[i] = 0; |
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clsy[i] = 0; |
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sybad[i] = 0; |
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} |
} |
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// ---------------------------- |
// ---------------------------- |
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ntrk =0 ; |
ntrk =0 ; |
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ayv_nt[i][ii] = 0; |
ayv_nt[i][ii] = 0; |
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dedx_x[i][ii] = 0; |
dedx_x[i][ii] = 0; |
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dedx_y[i][ii] = 0; |
dedx_y[i][ii] = 0; |
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multmaxx[i][ii] = 0; |
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multmaxy[i][ii] = 0; |
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seedx[i][ii] = 0; |
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seedy[i][ii] = 0; |
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xpu[i][ii] = 0; |
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ypu[i][ii] = 0; |
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} |
} |
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} |
} |
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} |
} |
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double xm_a[NPLANE],ym_a[NPLANE]; |
double xm_a[NPLANE],ym_a[NPLANE]; |
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double xm_b[NPLANE],ym_b[NPLANE]; |
double xm_b[NPLANE],ym_b[NPLANE]; |
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double resx[NPLANE],resy[NPLANE]; |
double resx[NPLANE],resy[NPLANE]; |
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double tailx[NPLANE],taily[NPLANE]; |
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double xgood[NPLANE],ygood[NPLANE]; |
double xgood[NPLANE],ygood[NPLANE]; |
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double dedxtrk_x[NPLANE]; |
double dedxtrk_x[NPLANE]; |
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double dedxtrk_y[NPLANE]; |
double dedxtrk_y[NPLANE]; |
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int idcand; |
int idcand; |
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int trackmode; |
int trackmode; |
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int istepmin; |
int istepmin; |
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/* cMini2track(){ */ |
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/* // -------------------------- */ |
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/* // fitting routine parameters */ |
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/* // -------------------------- */ |
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/* zini = 23.5; */ |
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/* trackmode = 0; */ |
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/* istepmin = 3; */ |
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/* // -------------------------- */ |
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/* pfixed = 0.; */ |
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/* chi2 = 0; */ |
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/* nstep = 0; */ |
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/* for(int it1=0;it1<5;it1++){ */ |
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/* al[it1] = 0; */ |
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/* for(int it2=0;it2<5;it2++)cov[it1][it2] = 0; */ |
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/* }; */ |
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/* for(int ip=0;ip<6;ip++){ */ |
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/* xgood[ip] = 0; */ |
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/* ygood[ip] = 0; */ |
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/* xm[ip] = 0; */ |
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/* ym[ip] = 0; */ |
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/* xm_a[ip] = 0; */ |
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/* ym_a[ip] = 0; */ |
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/* xm_b[ip] = 0; */ |
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/* ym_b[ip] = 0; */ |
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/* zm[ip] = 0; */ |
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/* resx[ip] = 0; */ |
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/* resy[ip] = 0; */ |
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/* xv[ip] = 0; */ |
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/* yv[ip] = 0; */ |
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/* zv[ip] = 0; */ |
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/* axv[ip] = 0; */ |
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/* ayv[ip] = 0; */ |
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/* dedxtrk_x[ip] = 0; */ |
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/* dedxtrk_y[ip] = 0; */ |
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/* }; */ |
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/* } */ |
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}; |
}; |
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// ================================================================== |
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/** |
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* \brief Struct to pass DELTAB parameters to F77 routines |
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*/ |
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struct cDeltaB { |
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double delta0; |
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double delta1; |
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double dlt; |
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}; |
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// |
// |
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/** |
/** |
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* \Struct for the hough transform variables |
* \Struct for the hough transform variables |
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}; |
}; |
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/** |
/** |
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* \Struct for track candidates after hough transform |
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*/ |
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struct cTrkCandidates { |
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int ntracks; |
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float al[NTRACKSMAX][5]; |
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float xm[NTRACKSMAX][NPLANE]; |
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float ym[NTRACKSMAX][NPLANE]; |
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float zm[NTRACKSMAX][NPLANE]; |
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float resx[NTRACKSMAX][NPLANE]; |
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float resy[NTRACKSMAX][NPLANE]; |
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float xv[NTRACKSMAX][NPLANE]; |
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float yv[NTRACKSMAX][NPLANE]; |
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float zv[NTRACKSMAX][NPLANE]; |
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float axv[NTRACKSMAX][NPLANE]; |
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float ayv[NTRACKSMAX][NPLANE]; |
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float xgood[NTRACKSMAX][NPLANE]; |
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float ygood[NTRACKSMAX][NPLANE]; |
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int cp[NTRACKSMAX][NPLANE]; |
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int cls[NTRACKSMAX][NPLANE]; |
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int sensor[NTRACKSMAX][NPLANE]; |
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int ladder[NTRACKSMAX][NPLANE]; |
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float bx[NTRACKSMAX][NPLANE]; |
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float by[NTRACKSMAX][NPLANE]; |
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float chi2[NTRACKSMAX]; |
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void Init(){ |
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ntracks=0; |
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for(int i=0; i<NTRACKSMAX; i++){ |
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for(int ii=0; ii<5; ii++)al[i][ii]=0; |
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chi2[i]=0; |
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for(int ip=0; ip<NPLANE; ip++){ |
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xm[i][ip]=0; |
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ym[i][ip]=0; |
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zm[i][ip]=0; |
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resx[i][ip]=0; |
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resy[i][ip]=0; |
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xv[i][ip]=0; |
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yv[i][ip]=0; |
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zv[i][ip]=0; |
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axv[i][ip]=0; |
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ayv[i][ip]=0; |
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xgood[i][ip]=0; |
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ygood[i][ip]=0; |
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cp[i][ip]=0; |
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cls[i][ip]=0; |
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sensor[i][ip]=0; |
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ladder[i][ip]=0; |
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bx[i][ip]=0; |
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by[i][ip]=0; |
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} |
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} |
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}; |
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}; |
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/** |
526 |
* \brief Struct to pass VA1-mask to F77 routines |
* \brief Struct to pass VA1-mask to F77 routines |
527 |
*/ |
*/ |
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struct cTrkMask { |
struct cTrkMask { |
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533 |
// void Set(TFile* , Int_t , Int_t ); |
// void Set(TFile* , Int_t , Int_t ); |
534 |
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535 |
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void Reset(){ |
536 |
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for(int ivk=0; ivk<NVK; ivk++){ |
537 |
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for(int iv=0; iv<NVIEW; iv++){ |
538 |
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// mask_vk[ivk][iv]=0; |
539 |
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mask_vk_run[ivk][iv]=0; |
540 |
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} |
541 |
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} |
542 |
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} |
543 |
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544 |
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void Dump(){ |
545 |
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} |
546 |
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547 |
}; |
}; |
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/** |
/** |
560 |
float feta3[NANGMAX][NLADDER][NVIEW][NETAVALMAX]; |
float feta3[NANGMAX][NLADDER][NVIEW][NETAVALMAX]; |
561 |
float eta4[NANGMAX][NETAVALMAX]; |
float eta4[NANGMAX][NETAVALMAX]; |
562 |
float feta4[NANGMAX][NLADDER][NVIEW][NETAVALMAX]; |
float feta4[NANGMAX][NLADDER][NVIEW][NETAVALMAX]; |
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float fcorr[NANGMAX][NLADDER][NVIEW]; |
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float e234ax[6];//F77: e2fax,e2tax,e3fax,e3tax,e4fax,e4tax |
565 |
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float e234ay[6];//F77: e2fay,e2tay,e3fay,e3tay,e4fay,e4tay |
566 |
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567 |
}; |
}; |
568 |
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/** |
569 |
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* \brief Struct to configure data reduction |
570 |
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*/ |
571 |
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struct cTrkSW{ |
572 |
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int pfaid; |
573 |
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}; |
574 |
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575 |
extern "C" { |
extern "C" { |
576 |
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582 |
extern struct cPath path_; |
extern struct cPath path_; |
583 |
extern struct cDbg dbg_; |
extern struct cDbg dbg_; |
584 |
extern struct cTrkHough houghevent_; |
extern struct cTrkHough houghevent_; |
585 |
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extern struct cTrkCandidates trackcandidates_; |
586 |
extern struct cMini2track track_; |
extern struct cMini2track track_; |
587 |
extern struct cTrkETA pfa_; |
extern struct cTrkETA pfa_; |
588 |
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extern struct cTrkSW sw_; |
589 |
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extern struct cDeltaB deltab_; |
590 |
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591 |
void fillpedsigfromdefault_(); |
void fillpedsigfromdefault_(); |
592 |
int readmipparam_(); |
int readmipparam_(); |
595 |
int readalignparam_(); |
int readalignparam_(); |
596 |
int readetaparam_(); |
int readetaparam_(); |
597 |
void reductionflight_(int*); |
void reductionflight_(int*); |
598 |
int analysisflight_(int*); |
int analysisflight_(); |
599 |
int readb_(); |
int readb_(); |
600 |
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void gufld_(float*, float*); |
601 |
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void xyzpam_(int*,int*,int*,int*,int*,float*,float*,float*,float*); |
602 |
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float riseta_(int*,float*); |
603 |
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void chisq_(int*, int*); |
604 |
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605 |
} |
} |
606 |
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