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#ifndef trkstruct_h |
#ifndef trkstruct_h |
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#define trkstruct_h |
#define trkstruct_h |
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#define NPLANE 6 |
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#define NVIEW 12 |
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#define NVK 24 |
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#define NLADDER 3 |
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#define NCLMAX_VIEW 200 //max n.clusters per view |
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#define NCLSTR 20 //max n.strip per cluster |
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#define NCLMAX (NCLMAX_VIEW*12) //max n.clusters total |
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#define NCLBUFF (NCLMAX*NCLSTR) |
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#define NDBLT_MAX_NT 1000 // 0.2*ndblt_max |
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#define NTRPT_MAX_NT 10000 // 0.2*ntrpt_max |
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#define NCLOYZ_MAX 200 |
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#define NCLOXZ_MAX 200 |
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#define NTRKMAX 10 |
#define NTRKMAX 10 |
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#define NSINGMAX 100 |
#define NSINGMAX NCLMAX //100 |
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#define NANGMAX 21 |
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#define NETAVALMAX 500 |
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#include <CalibTrk1Event.h> |
#include <CalibTrk1Event.h> |
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#include <CalibTrk2Event.h> |
#include <CalibTrk2Event.h> |
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using namespace pamela; |
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//#include <TrkCalib.h> |
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#include <TString.h> |
#include <TString.h> |
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#include <TFile.h> |
#include <TFile.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 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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void FillTCalibFrom(TString); |
/* void FillTCalibFrom(TString); */ |
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}; |
}; |
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// ================================================================== |
// ================================================================== |
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* \brief Struct to pass tracker LEVEL1 data to F77 routines |
* \brief Struct to pass tracker LEVEL1 data to F77 routines |
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*/ |
*/ |
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struct cTrkLevel1 { |
struct cTrkLevel1 { |
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int good1; |
// int good1; |
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int good[12]; |
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int nclstr1; |
int nclstr1; |
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int view[500]; |
int view[NCLMAX]; |
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int ladder[500]; |
int ladder[NCLMAX]; |
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int maxs[500]; |
int maxs[NCLMAX]; |
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int mult[500]; |
int mult[NCLMAX]; |
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float dedx[500]; |
float dedx[NCLMAX]; |
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int indstart[500]; |
int indstart[NCLMAX]; |
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int indmax[500]; |
int indmax[NCLMAX]; |
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int totCLlength; |
int totCLlength; |
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float clsignal[8500]; |
float clsignal[NCLBUFF]; |
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float cnev[24][12]; |
float clsigma[NCLBUFF]; |
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int cladc[NCLBUFF]; |
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int clbad[NCLBUFF]; |
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float cnev[24][12]; |
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int cnnev[24][12]; |
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float cnrmsev[24][12]; |
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int fshower[12]; |
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int whichtrack[NCLMAX]; |
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}; |
}; |
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// ================================================================== |
// ================================================================== |
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/** |
/** |
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* \brief Struct to pass tracker LEVEL2 data to F77 routines |
* \brief Struct to pass tracker LEVEL2 data to F77 routines |
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*/ |
*/ |
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struct cTrkLevel2 { |
struct cTrkLevel2 { |
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int good2; |
// int good2; |
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int crc[12]; |
// int crc[12]; |
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int good[12]; |
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int vkflag[24][12]; |
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// ---------------------------- |
// ---------------------------- |
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int nclsx; |
int nclsx; |
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int planex[NSINGMAX]; |
int planex[NSINGMAX]; |
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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]; |
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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]; |
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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 zm_nt[NTRKMAX][6]; |
float zm_nt[NTRKMAX][6]; |
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float resx_nt[NTRKMAX][6]; |
float resx_nt[NTRKMAX][6]; |
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float resy_nt[NTRKMAX][6]; |
float resy_nt[NTRKMAX][6]; |
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float tailx[NTRKMAX][6]; |
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float taily[NTRKMAX][6]; |
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float al_nt[NTRKMAX][5]; |
float al_nt[NTRKMAX][5]; |
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float coval[NTRKMAX][5][5]; |
float coval[NTRKMAX][5][5]; |
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float chi2_nt[NTRKMAX]; |
float chi2_nt[NTRKMAX]; |
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int nstep_nt[NTRKMAX]; |
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int xgood_nt[NTRKMAX][6]; |
int xgood_nt[NTRKMAX][6]; |
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int ygood_nt[NTRKMAX][6]; |
int ygood_nt[NTRKMAX][6]; |
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int ls[NTRKMAX][6]; |
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int xbad[NTRKMAX][6]; |
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int ybad[NTRKMAX][6]; |
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float xv_nt[NTRKMAX][6]; |
float xv_nt[NTRKMAX][6]; |
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float yv_nt[NTRKMAX][6]; |
float yv_nt[NTRKMAX][6]; |
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float zv_nt[NTRKMAX][6]; |
float zv_nt[NTRKMAX][6]; |
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float ayv_nt[NTRKMAX][6]; |
float ayv_nt[NTRKMAX][6]; |
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float dedx_x[NTRKMAX][6]; |
float dedx_x[NTRKMAX][6]; |
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float dedx_y[NTRKMAX][6]; |
float dedx_y[NTRKMAX][6]; |
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float bdl[NTRKMAX]; |
int cltrx[NTRKMAX][6]; |
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int cltry[NTRKMAX][6]; |
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// float bdl[NTRKMAX]; |
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void InitcTrkLevel2(){ |
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// good2 = 0; |
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for(Int_t i=0; i<12 ; i++){ |
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good[i] = 0; |
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for(Int_t ii=0; ii<24 ; ii++)vkflag[ii][i]=0; |
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} |
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// ---------------------------- |
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nclsx = 0; |
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nclsy = 0; |
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for(Int_t i=0; i<NSINGMAX ; i++){ |
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planex[i] = 0; |
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xs[i][0] = 0; |
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xs[i][1] = 0; |
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signlxs[i] = 0; |
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planey[i] = 0; |
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ys[i][0] = 0; |
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ys[i][1] = 0; |
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signlys[i] = 0; |
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} |
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// ---------------------------- |
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ntrk =0 ; |
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for(Int_t i=0; i<NTRKMAX ; i++){ |
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image[i] = 0; |
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chi2_nt[i] = 0; |
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// bdl[i] = 0; |
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for(Int_t ii=0; ii<5 ; ii++){ |
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al_nt[i][ii] = 0; |
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for(Int_t iii=0; iii<5 ; iii++) |
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coval[i][ii][iii] = 0; |
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} |
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for(Int_t ii=0; ii<6 ; ii++){ |
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xm_nt[i][ii] = 0; |
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ym_nt[i][ii] = 0; |
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zm_nt[i][ii] = 0; |
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resx_nt[i][ii] = 0; |
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resy_nt[i][ii] = 0; |
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xgood_nt[i][ii] = 0; |
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ygood_nt[i][ii] = 0; |
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xv_nt[i][ii] = 0; |
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yv_nt[i][ii] = 0; |
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zv_nt[i][ii] = 0; |
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axv_nt[i][ii] = 0; |
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ayv_nt[i][ii] = 0; |
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dedx_x[i][ii] = 0; |
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dedx_y[i][ii] = 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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/** |
/** |
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* \brief Struct to pass calibration/parameter file paths to F77 routines |
* \brief Struct to pass calibration/parameter file paths to F77 routines |
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*/ |
*/ |
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struct cPath { |
struct cPath { |
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char path[80]; |
char path[256]; |
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int pathlen; |
int pathlen; |
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int error; |
int error; |
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/** |
/** |
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const char *pc = s.Data(); |
const char *pc = s.Data(); |
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for(Int_t i=0; i<=pathlen; i++) path[i] = *pc++; |
for(Int_t i=0; i<=pathlen; i++) path[i] = *pc++; |
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}; |
}; |
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}; |
}; |
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// ================================================================== |
// ================================================================== |
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/** |
/* /\** */ |
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* \brief Struct to pass magnetic-field file paths to F77 routines |
/* * \brief Struct to pass magnetic-field file paths to F77 routines */ |
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*/ |
/* *\/ */ |
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struct cBPath { |
/* struct cBPath { */ |
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char b_path[80]; |
/* char b_path[256]; */ |
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int b_pathlen; |
/* int b_pathlen; */ |
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int b_error; |
/* int b_error; */ |
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int b_loaded; |
/* int b_loaded; */ |
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/** |
/* /\** */ |
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* Fill the struct variables from a TString object and set |
/* * Fill the struct variables from a TString object and set */ |
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* the load flag to FALSE. |
/* * the load flag to FALSE. */ |
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*/ |
/* *\/ */ |
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void FillWith(TString s){ |
/* void FillWith(TString s){ */ |
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b_loaded = 0; |
/* b_loaded = 0; */ |
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b_pathlen = s.Length(); |
/* b_pathlen = s.Length(); */ |
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const char *pc = s.Data(); |
/* const char *pc = s.Data(); */ |
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for(Int_t i=0; i<=b_pathlen; i++) b_path[i] = *pc++; |
/* for(Int_t i=0; i<=b_pathlen; i++) b_path[i] = *pc++; */ |
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}; |
/* }; */ |
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/** |
/* /\** */ |
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* Fill the struct variables from a TString object |
/* * Fill the struct variables from a TString object */ |
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*/ |
/* *\/ */ |
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int BIsLoaded(){ return b_loaded; }; |
/* int BIsLoaded(){ return b_loaded; }; */ |
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}; |
/* }; */ |
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// ================================================================== |
// ================================================================== |
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/** |
/** |
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void SetDebug() {debug=1; verbose=1; warning=1;}; |
void SetDebug() {debug=1; verbose=1; warning=1;}; |
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}; |
}; |
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// ================================================================== |
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/** |
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* \brief Struct to pass mini2 track parameters to F77 routines |
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*/ |
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struct cMini2track { |
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double al[5]; |
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double xm[NPLANE],ym[NPLANE],zm[NPLANE]; |
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double xm_a[NPLANE],ym_a[NPLANE]; |
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double xm_b[NPLANE],ym_b[NPLANE]; |
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double resx[NPLANE],resy[NPLANE]; |
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double xgood[NPLANE],ygood[NPLANE]; |
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double dedxtrk_x[NPLANE]; |
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double dedxtrk_y[NPLANE]; |
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double zini; |
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double pfixed; |
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double chi2; |
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double xv[NPLANE],yv[NPLANE],zv[NPLANE]; |
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double axv[NPLANE],ayv[NPLANE]; |
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double cov[5][5]; |
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double fact; |
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int nstep; |
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int idcand; |
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int trackmode; |
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int istepmin; |
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}; |
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// |
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/** |
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* \Struct for the hough transform variables |
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*/ |
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struct cTrkHough { |
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int ndblt_nt; |
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float alfayz1_nt[NDBLT_MAX_NT]; |
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float alfayz2_nt[NDBLT_MAX_NT]; |
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int db_cloud_nt[NDBLT_MAX_NT]; |
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int ntrpt_nt; |
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float alfaxz1_nt[NTRPT_MAX_NT]; |
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float alfaxz2_nt[NTRPT_MAX_NT]; |
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float alfaxz3_nt[NTRPT_MAX_NT]; |
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int tr_cloud_nt[NTRPT_MAX_NT]; |
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int nclouds_yz_nt; |
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float alfayz1_av_nt[NCLOYZ_MAX]; |
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float alfayz2_av_nt[NCLOYZ_MAX]; |
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int ptcloud_yz_nt[NCLOYZ_MAX]; |
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int nclouds_xz_nt; |
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float alfaxz1_av_nt[NCLOXZ_MAX]; |
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float alfaxz2_av_nt[NCLOXZ_MAX]; |
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float alfaxz3_av_nt[NCLOXZ_MAX]; |
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int ptcloud_xz_nt[NCLOXZ_MAX]; |
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int nclstr; |
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float totaltime; |
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float houghtime; |
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float fittime; |
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void InitcTrkHough(){ |
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ndblt_nt = 0; |
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ntrpt_nt = 0; |
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nclouds_yz_nt = 0; |
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nclouds_xz_nt = 0; |
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nclstr = 0; |
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totaltime = 0; |
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houghtime = 0; |
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fittime = 0; |
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for(int i=0;i<NDBLT_MAX_NT ;i++){ |
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alfayz1_nt[i] = 0; |
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alfayz2_nt[i] = 0; |
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db_cloud_nt[i] = 0; |
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} |
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for(int i=0;i<NTRPT_MAX_NT ;i++){ |
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alfaxz1_nt[i] = 0; |
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alfaxz2_nt[i] = 0; |
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alfaxz3_nt[i] = 0; |
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tr_cloud_nt[i] = 0; |
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} |
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for(int i=0;i<NCLOYZ_MAX ;i++){ |
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alfayz1_av_nt[i] = 0; |
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alfayz2_av_nt[i] = 0; |
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ptcloud_yz_nt[i] = 0; |
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} |
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for(int i=0;i<NCLOXZ_MAX ;i++){ |
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ptcloud_xz_nt[i] = 0; |
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alfaxz1_av_nt[i] = 0; |
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alfaxz2_av_nt[i] = 0; |
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alfaxz3_av_nt[i] = 0; |
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} |
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} |
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}; |
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/** |
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* \brief Struct to pass VA1-mask to F77 routines |
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*/ |
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struct cTrkMask { |
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int mask_vk[NVK][NVIEW]; |
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int mask_vk_run[NVK][NVIEW]; |
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// void Set(TFile* , Int_t , Int_t ); |
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}; |
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/** |
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* \brief Struct for pfa parameters |
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*/ |
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struct cTrkETA { |
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int nangbin; |
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float angL[NANGMAX],angR[NANGMAX]; |
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int netaval; |
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float eta2[NANGMAX][NETAVALMAX]; |
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float feta2[NANGMAX][NLADDER][NVIEW][NETAVALMAX]; |
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float eta3[NANGMAX][NETAVALMAX]; |
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float feta3[NANGMAX][NLADDER][NVIEW][NETAVALMAX]; |
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float eta4[NANGMAX][NETAVALMAX]; |
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float feta4[NANGMAX][NLADDER][NVIEW][NETAVALMAX]; |
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}; |
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extern "C" { |
extern "C" { |
409 |
extern struct cTrkCalib pedsigbad_; |
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extern struct cTrkLevel0 level0event_; |
extern struct cTrkCalib pedsigbad_; |
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extern struct cTrkLevel1 level1event_; |
extern struct cTrkMask mask_; |
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extern struct cTrkLevel2 level2event_; |
extern struct cTrkLevel0 level0event_; |
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extern struct cPath path_; |
extern struct cTrkLevel1 level1event_; |
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extern struct cBPath bpath_; |
extern struct cTrkLevel2 level2event_; |
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extern struct cDbg dbg_; |
extern struct cPath path_; |
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extern struct cDbg dbg_; |
417 |
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extern struct cTrkHough houghevent_; |
418 |
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extern struct cMini2track track_; |
419 |
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extern struct cTrkETA pfa_; |
420 |
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void fillpedsigfromdefault_(); |
void fillpedsigfromdefault_(); |
422 |
int readmipparam_(); |
int readmipparam_(); |
423 |
int readchargeparam_(); |
int readchargeparam_(); |
425 |
int readalignparam_(); |
int readalignparam_(); |
426 |
int readetaparam_(); |
int readetaparam_(); |
427 |
void reductionflight_(int*); |
void reductionflight_(int*); |
428 |
int analysisflight_(); |
int analysisflight_(int*); |
429 |
} |
int readb_(); |
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} |
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#endif |
#endif |
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