/[PAMELA software]/DarthVader/TrackerLevel2/src/TrkLevel2.cpp
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Annotation of /DarthVader/TrackerLevel2/src/TrkLevel2.cpp

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Revision 1.28 - (hide annotations) (download)
Wed Feb 21 10:40:38 2007 UTC (17 years, 11 months ago) by pam-fi
Branch: MAIN
Changes since 1.27: +2 -0 lines
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1 mocchiut 1.1 /**
2     * \file TrkLevel2.cpp
3     * \author Elena Vannuccini
4     */
5     #include <TrkLevel2.h>
6     #include <iostream>
7 pam-fi 1.14 #include <math.h>
8 mocchiut 1.1 using namespace std;
9     //......................................
10     // F77 routines
11     //......................................
12     extern "C" {
13     void dotrack_(int*, double*, double*, double*, double*, int*);
14 pam-fi 1.2 void dotrack2_(int*, double*, double*, double*, double*,double*, double*, double*,int*);
15 pam-fi 1.16 // int readb_(const char*);
16 pam-fi 1.26 // int readb_();
17     void mini2_(int*,int*,int*);
18     void guess_();
19     void gufld_(float*, float*);
20 mocchiut 1.1 }
21 pam-fi 1.26
22 mocchiut 1.1 //--------------------------------------
23     //
24     //
25     //--------------------------------------
26     TrkTrack::TrkTrack(){
27 pam-fi 1.21 // cout << "TrkTrack::TrkTrack()" << endl;
28 pam-fi 1.3 seqno = -1;
29     image = -1;
30 mocchiut 1.1 chi2 = 0;
31 pam-fi 1.14 nstep = 0;
32     for(int it1=0;it1<5;it1++){
33     al[it1] = 0;
34     for(int it2=0;it2<5;it2++)coval[it1][it2] = 0;
35 mocchiut 1.1 };
36     for(int ip=0;ip<6;ip++){
37 pam-fi 1.21 xgood[ip] = 0;
38     ygood[ip] = 0;
39     xm[ip] = 0;
40     ym[ip] = 0;
41     zm[ip] = 0;
42     resx[ip] = 0;
43     resy[ip] = 0;
44     xv[ip] = 0;
45     yv[ip] = 0;
46     zv[ip] = 0;
47     axv[ip] = 0;
48     ayv[ip] = 0;
49     dedx_x[ip] = 0;
50     dedx_y[ip] = 0;
51     };
52     clx = 0;
53     cly = 0;
54 pam-fi 1.23 // clx = new TRefArray(6,0);
55     // cly = new TRefArray(6,0);
56 mocchiut 1.1 };
57     //--------------------------------------
58     //
59     //
60     //--------------------------------------
61     TrkTrack::TrkTrack(const TrkTrack& t){
62 pam-fi 1.3 seqno = t.seqno;
63 mocchiut 1.1 image = t.image;
64     chi2 = t.chi2;
65 pam-fi 1.14 nstep = t.nstep;
66     for(int it1=0;it1<5;it1++){
67     al[it1] = t.al[it1];
68     for(int it2=0;it2<5;it2++)coval[it1][it2] = t.coval[it1][it2];
69 mocchiut 1.1 };
70     for(int ip=0;ip<6;ip++){
71 pam-fi 1.21 xgood[ip] = t.xgood[ip];
72     ygood[ip] = t.ygood[ip];
73     xm[ip] = t.xm[ip];
74     ym[ip] = t.ym[ip];
75     zm[ip] = t.zm[ip];
76     resx[ip] = t.resx[ip];
77     resy[ip] = t.resy[ip];
78     xv[ip] = t.xv[ip];
79     yv[ip] = t.yv[ip];
80     zv[ip] = t.zv[ip];
81     axv[ip] = t.axv[ip];
82     ayv[ip] = t.ayv[ip];
83     dedx_x[ip] = t.dedx_x[ip];
84     dedx_y[ip] = t.dedx_y[ip];
85     };
86 pam-fi 1.22 clx = 0;
87     cly = 0;
88     if(t.clx)clx = new TRefArray(*(t.clx));
89     if(t.cly)cly = new TRefArray(*(t.cly));
90 pam-fi 1.9
91 mocchiut 1.1 };
92     //--------------------------------------
93     //
94     //
95     //--------------------------------------
96 pam-fi 1.21 void TrkTrack::Copy(TrkTrack& t){
97    
98     t.seqno = seqno;
99     t.image = image;
100     t.chi2 = chi2;
101     t.nstep = nstep;
102     for(int it1=0;it1<5;it1++){
103     t.al[it1] = al[it1];
104     for(int it2=0;it2<5;it2++)t.coval[it1][it2] = coval[it1][it2];
105     };
106     for(int ip=0;ip<6;ip++){
107     t.xgood[ip] = xgood[ip];
108     t.ygood[ip] = ygood[ip];
109     t.xm[ip] = xm[ip];
110     t.ym[ip] = ym[ip];
111     t.zm[ip] = zm[ip];
112     t.resx[ip] = resx[ip];
113     t.resy[ip] = resy[ip];
114     t.xv[ip] = xv[ip];
115     t.yv[ip] = yv[ip];
116     t.zv[ip] = zv[ip];
117     t.axv[ip] = axv[ip];
118     t.ayv[ip] = ayv[ip];
119     t.dedx_x[ip] = dedx_x[ip];
120     t.dedx_y[ip] = dedx_y[ip];
121    
122     };
123    
124     };
125     //--------------------------------------
126     //
127     //
128     //--------------------------------------
129 mocchiut 1.1 /**
130     * Evaluates the trajectory in the apparatus associated to the track.
131     * It integrates the equations of motion in the magnetic field. The magnetic field should be previously loaded ( by calling TrkLevel2::LoadField() ), otherwise an error message is returned.
132     * @param t pointer to an object of the class Trajectory,
133     * which z coordinates should be previously initialized by calling the proper constructor ( Trajectory::Trajectory(int n, float* zin) ).
134     * @return error flag.
135     */
136     int TrkTrack::DoTrack(Trajectory* t){
137    
138     double *dxout = new double[t->npoint];
139     double *dyout = new double[t->npoint];
140     double *dzin = new double[t->npoint];
141     double dal[5];
142    
143     int ifail = 0;
144    
145     for (int i=0; i<5; i++) dal[i] = (double)al[i];
146     for (int i=0; i<t->npoint; i++) dzin[i] = (double)t->z[i];
147    
148 pam-fi 1.26 TrkParams::Load(1);
149     if( !TrkParams::IsLoaded(1) ){
150     cout << "int TrkTrack::DoTrack(Trajectory* t) --- ERROR --- m.field not loaded"<<endl;
151     return 0;
152     }
153 mocchiut 1.1 dotrack_(&(t->npoint),dzin,dxout,dyout,dal,&ifail);
154    
155     for (int i=0; i<t->npoint; i++){
156     t->x[i] = (float)*dxout++;
157     t->y[i] = (float)*dyout++;
158     }
159    
160     // delete [] dxout;
161     // delete [] dyout;
162     // delete [] dzin;
163    
164     return ifail;
165     };
166     //--------------------------------------
167     //
168     //
169     //--------------------------------------
170 pam-fi 1.2 /**
171     * Evaluates the trajectory in the apparatus associated to the track.
172     * It integrates the equations of motion in the magnetic field. The magnetic field should be previously loaded ( by calling TrkLevel2::LoadField() ), otherwise an error message is returned.
173     * @param t pointer to an object of the class Trajectory,
174     * which z coordinates should be previously initialized by calling the proper constructor ( Trajectory::Trajectory(int n, float* zin) ).
175     * @return error flag.
176     */
177     int TrkTrack::DoTrack2(Trajectory* t){
178    
179     double *dxout = new double[t->npoint];
180     double *dyout = new double[t->npoint];
181     double *dthxout = new double[t->npoint];
182     double *dthyout = new double[t->npoint];
183     double *dtlout = new double[t->npoint];
184     double *dzin = new double[t->npoint];
185     double dal[5];
186    
187     int ifail = 0;
188    
189     for (int i=0; i<5; i++) dal[i] = (double)al[i];
190     for (int i=0; i<t->npoint; i++) dzin[i] = (double)t->z[i];
191    
192 pam-fi 1.26 TrkParams::Load(1);
193     if( !TrkParams::IsLoaded(1) ){
194     cout << "int TrkTrack::DoTrack2(Trajectory* t) --- ERROR --- m.field not loaded"<<endl;
195     return 0;
196     }
197 pam-fi 1.2 dotrack2_(&(t->npoint),dzin,dxout,dyout,dthxout,dthyout,dtlout,dal,&ifail);
198    
199     for (int i=0; i<t->npoint; i++){
200     t->x[i] = (float)*dxout++;
201     t->y[i] = (float)*dyout++;
202     t->thx[i] = (float)*dthxout++;
203     t->thy[i] = (float)*dthyout++;
204     t->tl[i] = (float)*dtlout++;
205     }
206    
207     // delete [] dxout;
208     // delete [] dyout;
209     // delete [] dzin;
210    
211     return ifail;
212     };
213     //--------------------------------------
214     //
215     //
216     //--------------------------------------
217 mocchiut 1.1 //float TrkTrack::BdL(){
218     //};
219     //--------------------------------------
220     //
221     //
222     //--------------------------------------
223     Float_t TrkTrack::GetRigidity(){
224     Float_t rig=0;
225     if(chi2>0)rig=1./al[4];
226     if(rig<0) rig=-rig;
227     return rig;
228     };
229     //
230     Float_t TrkTrack::GetDeflection(){
231     Float_t def=0;
232     if(chi2>0)def=al[4];
233     return def;
234     };
235     //
236     Float_t TrkTrack::GetDEDX(){
237     Float_t dedx=0;
238     for(Int_t i=0; i<6; i++)dedx+=dedx_x[i]*xgood[i]+dedx_y[i]*ygood[i];
239     dedx = dedx/(this->GetNX()+this->GetNY());
240     return dedx;
241     };
242    
243     //--------------------------------------
244     //
245     //
246     //--------------------------------------
247     void TrkTrack::Dump(){
248     cout << endl << "========== Track " ;
249 pam-fi 1.13 cout << endl << "seq. n. : "<< seqno;
250     cout << endl << "image n. : "<< image;
251     cout << endl << "al : "; for(int i=0; i<5; i++)cout << al[i] << " ";
252 mocchiut 1.1 cout << endl << "chi^2 : "<< chi2;
253 pam-fi 1.13 cout << endl << "n.step : "<< nstep;
254     cout << endl << "xgood : "; for(int i=0; i<6; i++)cout << xgood[i] ;
255 mocchiut 1.1 cout << endl << "ygood : "; for(int i=0; i<6; i++)cout << ygood[i] ;
256     cout << endl << "xm : "; for(int i=0; i<6; i++)cout << xm[i] << " ";
257     cout << endl << "ym : "; for(int i=0; i<6; i++)cout << ym[i] << " ";
258     cout << endl << "zm : "; for(int i=0; i<6; i++)cout << zm[i] << " ";
259 pam-fi 1.13 cout << endl << "xv : "; for(int i=0; i<6; i++)cout << xv[i] << " ";
260     cout << endl << "yv : "; for(int i=0; i<6; i++)cout << yv[i] << " ";
261     cout << endl << "zv : "; for(int i=0; i<6; i++)cout << zv[i] << " ";
262     cout << endl << "resx : "; for(int i=0; i<6; i++)cout << resx[i] << " ";
263     cout << endl << "resy : "; for(int i=0; i<6; i++)cout << resy[i] << " ";
264     cout << endl << "coval : "; for(int i=0; i<5; i++)cout << coval[0][i]<<" ";
265     cout << endl << " "; for(int i=0; i<5; i++)cout << coval[1][i]<<" ";
266     cout << endl << " "; for(int i=0; i<5; i++)cout << coval[2][i]<<" ";
267     cout << endl << " "; for(int i=0; i<5; i++)cout << coval[3][i]<<" ";
268     cout << endl << " "; for(int i=0; i<5; i++)cout << coval[4][i]<<" ";
269 mocchiut 1.1 cout << endl << "dedx_x : "; for(int i=0; i<6; i++)cout << dedx_x[i] << " ";
270     cout << endl << "dedx_y : "; for(int i=0; i<6; i++)cout << dedx_y[i] << " ";
271 pam-fi 1.14 cout << endl;
272 mocchiut 1.1 }
273 pam-fi 1.13 /**
274     * Set the TrkTrack position measurements
275     */
276     void TrkTrack::SetMeasure(double *xmeas, double *ymeas, double *zmeas){
277     for(int i=0; i<6; i++) xm[i]=*xmeas++;
278     for(int i=0; i<6; i++) ym[i]=*ymeas++;
279     for(int i=0; i<6; i++) zm[i]=*zmeas++;
280     }
281     /**
282     * Set the TrkTrack position resolution
283     */
284     void TrkTrack::SetResolution(double *rx, double *ry){
285     for(int i=0; i<6; i++) resx[i]=*rx++;
286     for(int i=0; i<6; i++) resy[i]=*ry++;
287     }
288     /**
289     * Set the TrkTrack good measurement
290     */
291     void TrkTrack::SetGood(int *xg, int *yg){
292     for(int i=0; i<6; i++) xgood[i]=*xg++;
293     for(int i=0; i<6; i++) ygood[i]=*yg++;
294     }
295    
296     /**
297     * Load the magnetic field
298     */
299 pam-fi 1.16 void TrkTrack::LoadField(TString path){
300    
301 pam-fi 1.26 // strcpy(path_.path,path.Data());
302     // path_.pathlen = path.Length();
303     // path_.error = 0;
304     // readb_();
305    
306     TrkParams::Set(path,1);
307 pam-fi 1.28 TrkParams::Load(1);
308 pam-fi 1.16
309 pam-fi 1.13 };
310 pam-fi 1.19
311 pam-fi 1.25
312 pam-fi 1.19 /**
313     * Method to fill minimization-routine common
314     */
315     void TrkTrack::FillMiniStruct(cMini2track& track){
316    
317     for(int i=0; i<6; i++){
318    
319     track.xgood[i]=xgood[i];
320     track.ygood[i]=ygood[i];
321    
322     track.xm[i]=xm[i];
323     track.ym[i]=ym[i];
324     track.zm[i]=zm[i];
325    
326     // --- temporaneo ----------------------------
327     // andrebbe inserita la dimensione del sensore
328     float segment = 100.;
329     track.xm_a[i]=xm[i];
330     track.xm_b[i]=xm[i];
331     track.ym_a[i]=ym[i];
332     track.ym_b[i]=ym[i];
333     if( xgood[i] && !ygood[i] ){
334     track.ym_a[i] = track.ym_a[i]+segment;
335     track.ym_b[i] = track.ym_b[i]-segment;
336     }else if( !xgood[i] && ygood[i]){
337     track.xm_a[i] = track.xm_a[i]+segment;
338     track.xm_b[i] = track.xm_b[i]-segment;
339     }
340     // --- temporaneo ----------------------------
341    
342     track.resx[i]=resx[i];
343     track.resy[i]=resy[i];
344     }
345    
346     for(int i=0; i<5; i++) track.al[i]=al[i];
347     track.zini = 23.5;
348     // ZINI = 23.5 !!! it should be the same parameter in all codes
349    
350     }
351     /**
352     * Method to set values from minimization-routine common
353     */
354     void TrkTrack::SetFromMiniStruct(cMini2track *track){
355    
356     for(int i=0; i<5; i++) {
357     al[i]=track->al[i];
358     for(int j=0; j<5; j++) coval[i][j]=track->cov[i][j];
359     }
360     chi2 = track->chi2;
361     nstep = track->nstep;
362     for(int i=0; i<6; i++){
363     xv[i] = track->xv[i];
364     yv[i] = track->yv[i];
365     zv[i] = track->zv[i];
366     xm[i] = track->xm[i];
367     ym[i] = track->ym[i];
368     zm[i] = track->zm[i];
369     axv[i] = track->axv[i];
370     ayv[i] = track->ayv[i];
371     }
372    
373     }
374 pam-fi 1.13 /**
375     * Tracking method. It calls F77 mini routine.
376     */
377     void TrkTrack::Fit(double pfixed, int& fail, int iprint){
378 pam-fi 1.15
379     float al_ini[] = {0.,0.,0.,0.,0.};
380    
381 pam-fi 1.13 extern cMini2track track_;
382     fail = 0;
383 pam-fi 1.19 FillMiniStruct(track_);
384 pam-fi 1.15
385 pam-fi 1.19 // if fit variables have been reset, evaluate the initial guess
386 pam-fi 1.15 if(al[0]==-9999.&&al[1]==-9999.&&al[2]==-9999.&&al[3]==-9999.&&al[4]==-9999.)guess_();
387    
388 pam-fi 1.16 // --------------------- free momentum
389 pam-fi 1.14 if(pfixed==0.) {
390 pam-fi 1.19 track_.pfixed=0.;
391 pam-fi 1.14 }
392 pam-fi 1.16 // --------------------- fixed momentum
393 pam-fi 1.13 if(pfixed!=0.) {
394 pam-fi 1.19 al[4]=1./pfixed;
395     track_.pfixed=pfixed;
396 pam-fi 1.13 }
397 pam-fi 1.15
398 pam-fi 1.19 // store temporarily the initial guess
399 pam-fi 1.15 for(int i=0; i<5; i++) al_ini[i]=track_.al[i];
400    
401 pam-fi 1.19 // ------------------------------------------
402     // call mini routine
403 pam-fi 1.26 TrkParams::Load(1);
404     if( !TrkParams::IsLoaded(1) ){
405     cout << "void TrkTrack::Fit(double pfixed, int& fail, int iprint) --- ERROR --- m.field not loaded"<<endl;
406     return;
407     }
408 pam-fi 1.13 int istep=0;
409     int ifail=0;
410     mini2_(&istep,&ifail, &iprint);
411     if(ifail!=0) {
412 pam-fi 1.19 if(iprint)cout << "ERROR: ifail= " << ifail << endl;
413 pam-fi 1.13 fail = 1;
414     }
415 pam-fi 1.19 // ------------------------------------------
416 pam-fi 1.15
417 pam-fi 1.19 SetFromMiniStruct(&track_);
418 pam-fi 1.13 // cout << endl << "eta ===> " << track_.al[4] << endl;
419    
420 pam-fi 1.19 // for(int i=0; i<5; i++) al[i]=track_.al[i];
421     // chi2=track_.chi2;
422     // nstep=track_.nstep;
423     // for(int i=0; i<6; i++) xv[i]=track_.xv[i];
424     // for(int i=0; i<6; i++) yv[i]=track_.yv[i];
425     // for(int i=0; i<6; i++) zv[i]=track_.zv[i];
426     // for(int i=0; i<6; i++) axv[i]=track_.axv[i];
427     // for(int i=0; i<6; i++) ayv[i]=track_.ayv[i];
428     // for(int i=0; i<5; i++) {
429     // for(int j=0; j<5; j++) coval[i][j]=track_.cov[i][j];
430     // }
431 pam-fi 1.15
432 pam-fi 1.20 if(fail){
433     if(iprint)cout << " >>>> fit failed >>>> drawing initial par"<<endl;
434     for(int i=0; i<5; i++) al[i]=al_ini[i];
435     }
436 pam-fi 1.15
437 pam-fi 1.13 };
438     /*
439 pam-fi 1.15 * Reset the fit parameters
440 pam-fi 1.13 */
441     void TrkTrack::FitReset(){
442     for(int i=0; i<5; i++) al[i]=-9999.;
443     chi2=0.;
444     nstep=0;
445     for(int i=0; i<6; i++) xv[i]=0.;
446     for(int i=0; i<6; i++) yv[i]=0.;
447     for(int i=0; i<6; i++) zv[i]=0.;
448     for(int i=0; i<6; i++) axv[i]=0.;
449     for(int i=0; i<6; i++) ayv[i]=0.;
450     for(int i=0; i<5; i++) {
451     for(int j=0; j<5; j++) coval[i][j]=0.;
452     }
453     }
454 pam-fi 1.27 void TrkTrack::SetTrackingMode(int trackmode){
455     extern cMini2track track_;
456     track_.trackmode = trackmode;
457     }
458 pam-fi 1.13
459 mocchiut 1.1 //--------------------------------------
460     //
461     //
462     //--------------------------------------
463 pam-fi 1.10 void TrkTrack::Clear(){
464 pam-fi 1.21 // cout << "TrkTrack::Clear()"<<endl;
465     seqno = -1;
466     image = -1;
467     chi2 = 0;
468     nstep = 0;
469     for(int it1=0;it1<5;it1++){
470     al[it1] = 0;
471     for(int it2=0;it2<5;it2++)coval[it1][it2] = 0;
472     };
473     for(int ip=0;ip<6;ip++){
474     xgood[ip] = 0;
475     ygood[ip] = 0;
476     xm[ip] = 0;
477     ym[ip] = 0;
478     zm[ip] = 0;
479     resx[ip] = 0;
480     resy[ip] = 0;
481     xv[ip] = 0;
482     yv[ip] = 0;
483     zv[ip] = 0;
484     axv[ip] = 0;
485     ayv[ip] = 0;
486     dedx_x[ip] = 0;
487     dedx_y[ip] = 0;
488    
489     };
490     if(clx)clx->Clear();
491     if(cly)cly->Clear();
492 pam-fi 1.10 };
493     //--------------------------------------
494     //
495     //
496     //--------------------------------------
497 pam-fi 1.11 void TrkTrack::Delete(){
498 pam-fi 1.21 // cout << "TrkTrack::Delete()"<<endl;
499     // Clear();
500     if(clx)delete clx;
501     if(cly)delete cly;
502 pam-fi 1.11 };
503 pam-fi 1.21 //--------------------------------------
504 pam-fi 1.11 //
505     //
506     //--------------------------------------
507 pam-fi 1.10
508     //--------------------------------------
509     //
510     //
511     //--------------------------------------
512 mocchiut 1.1 TrkSinglet::TrkSinglet(){
513 pam-fi 1.21 // cout << "TrkSinglet::TrkSinglet() " << GetUniqueID()<<endl;
514 mocchiut 1.1 plane = 0;
515     coord[0] = 0;
516     coord[1] = 0;
517     sgnl = 0;
518 pam-fi 1.21 // cls = 0;
519 mocchiut 1.1 };
520     //--------------------------------------
521     //
522     //
523     //--------------------------------------
524     TrkSinglet::TrkSinglet(const TrkSinglet& s){
525 pam-fi 1.21 // cout << "TrkSinglet::TrkSinglet(const TrkSinglet& s) " << GetUniqueID()<<endl;
526 mocchiut 1.1 plane = s.plane;
527     coord[0] = s.coord[0];
528     coord[1] = s.coord[1];
529     sgnl = s.sgnl;
530 pam-fi 1.9 // cls = 0;//<<<<pointer
531 pam-fi 1.21 cls = TRef(s.cls);
532 mocchiut 1.1 };
533     //--------------------------------------
534     //
535     //
536     //--------------------------------------
537     void TrkSinglet::Dump(){
538     int i=0;
539     cout << endl << "========== Singlet " ;
540     cout << endl << "plane : " << plane;
541     cout << endl << "coord[2] : "; while( i<2 && cout << coord[i] << " ") i++;
542     cout << endl << "sgnl : " << sgnl;
543     }
544     //--------------------------------------
545     //
546     //
547     //--------------------------------------
548 pam-fi 1.21 void TrkSinglet::Clear(){
549     // cout << "TrkSinglet::Clear() " << GetUniqueID()<<endl;
550     // cls=0;
551     plane=-1;
552     coord[0]=-999;
553     coord[1]=-999;
554     sgnl=0;
555    
556     }
557     //--------------------------------------
558     //
559     //
560     //--------------------------------------
561 mocchiut 1.1 TrkLevel2::TrkLevel2(){
562 mocchiut 1.24 // cout <<"TrkLevel2::TrkLevel2()"<<endl;
563 mocchiut 1.1 for(Int_t i=0; i<12 ; i++){
564 pam-fi 1.10 good[i] = -1;
565     };
566 pam-fi 1.23 // okkio!! memory-leak
567     // Track = new TClonesArray("TrkTrack");
568     // SingletX = new TClonesArray("TrkSinglet");
569     // SingletY = new TClonesArray("TrkSinglet");
570 pam-fi 1.21 Track = 0;
571     SingletX = 0;
572     SingletY = 0;
573 pam-fi 1.6
574 mocchiut 1.1 }
575     //--------------------------------------
576     //
577     //
578     //--------------------------------------
579 pam-fi 1.23 void TrkLevel2::Set(){
580     if(!Track)Track = new TClonesArray("TrkTrack");
581     if(!SingletX)SingletX = new TClonesArray("TrkSinglet");
582     if(!SingletY)SingletY = new TClonesArray("TrkSinglet");
583     }
584     //--------------------------------------
585     //
586     //
587     //--------------------------------------
588 mocchiut 1.1 void TrkLevel2::Dump(){
589 pam-fi 1.10
590     //
591 mocchiut 1.1 cout << endl << endl << "=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-";
592 pam-fi 1.10 cout << endl << "good : "; for(int i=0; i<12; i++) cout << good[i]<<" ";
593 mocchiut 1.1 cout << endl << "ntrk() : " << this->ntrk() ;
594     cout << endl << "nclsx() : " << this->nclsx();
595     cout << endl << "nclsy() : " << this->nclsy();
596 pam-fi 1.21 // TClonesArray &t = *Track;
597     // TClonesArray &sx = *SingletX;
598     // TClonesArray &sy = *SingletY;
599     // for(int i=0; i<ntrk(); i++) ((TrkTrack *)t[i])->Dump();
600     // for(int i=0; i<nclsx(); i++) ((TrkSinglet *)sx[i])->Dump();
601     // for(int i=0; i<nclsy(); i++) ((TrkSinglet *)sy[i])->Dump();
602     if(Track){
603     TClonesArray &t = *Track;
604     for(int i=0; i<ntrk(); i++) ((TrkTrack *)t[i])->Dump();
605     }
606     if(SingletX){
607     TClonesArray &sx = *SingletX;
608     for(int i=0; i<nclsx(); i++) ((TrkSinglet *)sx[i])->Dump();
609     }
610     if(SingletY){
611     TClonesArray &sy = *SingletY;
612     for(int i=0; i<nclsy(); i++) ((TrkSinglet *)sy[i])->Dump();
613     }
614 mocchiut 1.1 }
615     //--------------------------------------
616     //
617     //
618     //--------------------------------------
619     /**
620     * Fills a TrkLevel2 object with values from a struct cTrkLevel2 (to get data from F77 common).
621     */
622 pam-fi 1.26 // void TrkLevel2::SetFromLevel2Struct(cTrkLevel2 *l2){
623 pam-fi 1.10
624 pam-fi 1.26 // // temporary objects:
625     // TrkSinglet* t_singlet = new TrkSinglet();
626     // TrkTrack* t_track = new TrkTrack();
627    
628     // // **** general variables ****
629     // // good2 = l2->good2;
630     // for(Int_t i=0; i<12 ; i++){
631     // // crc[i] = l2->crc[i];
632     // good[i] = l2->good[i];
633     // };
634     // // *** TRACKS ***
635     // if(!Track) Track = new TClonesArray("TrkTrack");
636     // TClonesArray &t = *Track;
637     // for(int i=0; i<l2->ntrk; i++){
638     // t_track->seqno = i;// NBNBNBNB deve sempre essere = i
639     // t_track->image = l2->image[i]-1;
640     // // cout << "track "<<i<<t_track->seqno << t_track->image<<endl;
641     // t_track->chi2 = l2->chi2_nt[i];
642     // t_track->nstep = l2->nstep_nt[i];
643     // for(int it1=0;it1<5;it1++){
644     // t_track->al[it1] = l2->al_nt[i][it1];
645     // for(int it2=0;it2<5;it2++)
646     // t_track->coval[it1][it2] = l2->coval[i][it2][it1];
647     // };
648     // for(int ip=0;ip<6;ip++){
649     // t_track->xgood[ip] = l2->xgood_nt[i][ip];
650     // t_track->ygood[ip] = l2->ygood_nt[i][ip];
651     // t_track->xm[ip] = l2->xm_nt[i][ip];
652     // t_track->ym[ip] = l2->ym_nt[i][ip];
653     // t_track->zm[ip] = l2->zm_nt[i][ip];
654     // t_track->resx[ip] = l2->resx_nt[i][ip];
655     // t_track->resy[ip] = l2->resy_nt[i][ip];
656     // t_track->xv[ip] = l2->xv_nt[i][ip];
657     // t_track->yv[ip] = l2->yv_nt[i][ip];
658     // t_track->zv[ip] = l2->zv_nt[i][ip];
659     // t_track->axv[ip] = l2->axv_nt[i][ip];
660     // t_track->ayv[ip] = l2->ayv_nt[i][ip];
661     // t_track->dedx_x[ip] = l2->dedx_x[i][ip];
662     // t_track->dedx_y[ip] = l2->dedx_y[i][ip];
663     // // t_track->clx[ip] = 0;
664     // // t_track->cly[ip] = 0;
665     // };
666     // new(t[i]) TrkTrack(*t_track);
667     // t_track->Clear();
668     // };
669     // // *** SINGLETS ***
670     // if(!SingletX)SingletX = new TClonesArray("TrkSinglet");
671     // TClonesArray &sx = *SingletX;
672     // for(int i=0; i<l2->nclsx; i++){
673     // t_singlet->plane = l2->planex[i];
674     // t_singlet->coord[0] = l2->xs[i][0];
675     // t_singlet->coord[1] = l2->xs[i][1];
676     // t_singlet->sgnl = l2->signlxs[i];
677     // // t_singlet->cls = 0;
678     // new(sx[i]) TrkSinglet(*t_singlet);
679     // t_singlet->Clear();
680     // }
681     // if(!SingletY)SingletY = new TClonesArray("TrkSinglet");
682     // TClonesArray &sy = *SingletY;
683     // for(int i=0; i<l2->nclsy; i++){
684     // t_singlet->plane = l2->planey[i];
685     // t_singlet->coord[0] = l2->ys[i][0];
686     // t_singlet->coord[1] = l2->ys[i][1];
687     // t_singlet->sgnl = l2->signlys[i];
688     // // t_singlet->cls = 0;
689     // new(sy[i]) TrkSinglet(*t_singlet);
690     // t_singlet->Clear();
691     // };
692 pam-fi 1.9
693 pam-fi 1.26 // delete t_track;
694     // delete t_singlet;
695     // }
696 pam-fi 1.9 //--------------------------------------
697     //
698     //
699     //--------------------------------------
700     /**
701     * Fills a TrkLevel2 object with values from a struct cTrkLevel2 (to get data from F77 common).
702     * Ref to Level1 data (clusters) is also set.
703     */
704     void TrkLevel2::SetFromLevel2Struct(cTrkLevel2 *l2, TrkLevel1 *l1){
705    
706     // temporary objects:
707     TrkSinglet* t_singlet = new TrkSinglet();
708     TrkTrack* t_track = new TrkTrack();
709     // general variables
710 pam-fi 1.10 // good2 = l2->good2;
711 pam-fi 1.9 for(Int_t i=0; i<12 ; i++){
712 pam-fi 1.10 // crc[i] = l2->crc[i];
713     good[i] = l2->good[i];
714 pam-fi 1.9 };
715     // *** TRACKS ***
716 pam-fi 1.21 if(!Track) Track = new TClonesArray("TrkTrack");
717 pam-fi 1.9 TClonesArray &t = *Track;
718 pam-fi 1.26 //-----------------------------------------------------
719     if(l1 && !t_track->clx)t_track->clx = new TRefArray(6,0);
720     if(l1 && !t_track->cly)t_track->cly = new TRefArray(6,0);
721     //-----------------------------------------------------
722 pam-fi 1.9 for(int i=0; i<l2->ntrk; i++){
723     t_track->seqno = i;// NBNBNBNB deve sempre essere = i
724     t_track->image = l2->image[i]-1;
725     // cout << "track "<<i<<t_track->seqno << t_track->image<<endl;
726     t_track->chi2 = l2->chi2_nt[i];
727 pam-fi 1.10 t_track->nstep = l2->nstep_nt[i];
728 pam-fi 1.9 for(int it1=0;it1<5;it1++){
729     t_track->al[it1] = l2->al_nt[i][it1];
730     for(int it2=0;it2<5;it2++)
731     t_track->coval[it1][it2] = l2->coval[i][it2][it1];
732     };
733     for(int ip=0;ip<6;ip++){
734     t_track->xgood[ip] = l2->xgood_nt[i][ip];
735     t_track->ygood[ip] = l2->ygood_nt[i][ip];
736     t_track->xm[ip] = l2->xm_nt[i][ip];
737     t_track->ym[ip] = l2->ym_nt[i][ip];
738     t_track->zm[ip] = l2->zm_nt[i][ip];
739     t_track->resx[ip] = l2->resx_nt[i][ip];
740     t_track->resy[ip] = l2->resy_nt[i][ip];
741     t_track->xv[ip] = l2->xv_nt[i][ip];
742     t_track->yv[ip] = l2->yv_nt[i][ip];
743     t_track->zv[ip] = l2->zv_nt[i][ip];
744     t_track->axv[ip] = l2->axv_nt[i][ip];
745     t_track->ayv[ip] = l2->ayv_nt[i][ip];
746     t_track->dedx_x[ip] = l2->dedx_x[i][ip];
747     t_track->dedx_y[ip] = l2->dedx_y[i][ip];
748     //-----------------------------------------------------
749 pam-fi 1.21 //-----------------------------------------------------
750 pam-fi 1.26 if(l1 && t_track->xgood[ip])t_track->clx->AddAt(l1->GetCluster(l2->cltrx[i][ip]-1),ip);
751     if(l1 && t_track->ygood[ip])t_track->cly->AddAt(l1->GetCluster(l2->cltry[i][ip]-1),ip);
752 pam-fi 1.9 //-----------------------------------------------------
753 pam-fi 1.21 //-----------------------------------------------------
754 pam-fi 1.9 };
755     new(t[i]) TrkTrack(*t_track);
756     t_track->Clear();
757     };
758     // *** SINGLETS ***
759 pam-fi 1.21 if(!SingletX)SingletX = new TClonesArray("TrkSinglet");
760 pam-fi 1.9 TClonesArray &sx = *SingletX;
761     for(int i=0; i<l2->nclsx; i++){
762     t_singlet->plane = l2->planex[i];
763     t_singlet->coord[0] = l2->xs[i][0];
764     t_singlet->coord[1] = l2->xs[i][1];
765     t_singlet->sgnl = l2->signlxs[i];
766     //-----------------------------------------------------
767 pam-fi 1.26 if(l1) t_singlet->cls = l1->GetCluster(l2->clsx[i]-1);
768 pam-fi 1.9 //-----------------------------------------------------
769     new(sx[i]) TrkSinglet(*t_singlet);
770     t_singlet->Clear();
771     }
772 pam-fi 1.21 if(!SingletY)SingletY = new TClonesArray("TrkSinglet");
773 pam-fi 1.9 TClonesArray &sy = *SingletY;
774     for(int i=0; i<l2->nclsy; i++){
775     t_singlet->plane = l2->planey[i];
776     t_singlet->coord[0] = l2->ys[i][0];
777     t_singlet->coord[1] = l2->ys[i][1];
778     t_singlet->sgnl = l2->signlys[i];
779     //-----------------------------------------------------
780 pam-fi 1.26 if(l1) t_singlet->cls = l1->GetCluster(l2->clsy[i]-1);
781 pam-fi 1.9 //-----------------------------------------------------
782     new(sy[i]) TrkSinglet(*t_singlet);
783     t_singlet->Clear();
784 mocchiut 1.1 };
785 pam-fi 1.5
786     delete t_track;
787     delete t_singlet;
788 mocchiut 1.1 }
789 pam-fi 1.7 /**
790     * Fills a struct cTrkLevel2 with values from a TrkLevel2 object (to put data into a F77 common).
791     */
792    
793     void TrkLevel2::GetLevel2Struct(cTrkLevel2 *l2) const {
794    
795     // general variables
796 pam-fi 1.10 // l2->good2 = good2 ;
797 pam-fi 1.7 for(Int_t i=0; i<12 ; i++){
798 pam-fi 1.10 // l2->crc[i] = crc[i];
799     l2->good[i] = good[i];
800 pam-fi 1.7 };
801     // *** TRACKS ***
802    
803 pam-fi 1.21 if(Track){
804     l2->ntrk = Track->GetEntries();
805     for(Int_t i=0;i<l2->ntrk;i++){
806     l2->image[i] = 1 + ((TrkTrack *)Track->At(i))->image;
807     l2->chi2_nt[i] = ((TrkTrack *)Track->At(i))->chi2;
808     l2->nstep_nt[i] = ((TrkTrack *)Track->At(i))->nstep;
809     for(int it1=0;it1<5;it1++){
810     l2->al_nt[i][it1] = ((TrkTrack *)Track->At(i))->al[it1];
811     for(int it2=0;it2<5;it2++)
812     l2->coval[i][it2][it1] = ((TrkTrack *)Track->At(i))->coval[it1][it2];
813     };
814     for(int ip=0;ip<6;ip++){
815     l2->xgood_nt[i][ip] = ((TrkTrack *)Track->At(i))->xgood[ip];
816     l2->ygood_nt[i][ip] = ((TrkTrack *)Track->At(i))->ygood[ip];
817     l2->xm_nt[i][ip] = ((TrkTrack *)Track->At(i))->xm[ip];
818     l2->ym_nt[i][ip] = ((TrkTrack *)Track->At(i))->ym[ip];
819     l2->zm_nt[i][ip] = ((TrkTrack *)Track->At(i))->zm[ip];
820     l2->resx_nt[i][ip] = ((TrkTrack *)Track->At(i))->resx[ip];
821     l2->resy_nt[i][ip] = ((TrkTrack *)Track->At(i))->resy[ip];
822     l2->xv_nt[i][ip] = ((TrkTrack *)Track->At(i))->xv[ip];
823     l2->yv_nt[i][ip] = ((TrkTrack *)Track->At(i))->yv[ip];
824     l2->zv_nt[i][ip] = ((TrkTrack *)Track->At(i))->zv[ip];
825     l2->axv_nt[i][ip] = ((TrkTrack *)Track->At(i))->axv[ip];
826     l2->ayv_nt[i][ip] = ((TrkTrack *)Track->At(i))->ayv[ip];
827     l2->dedx_x[i][ip] = ((TrkTrack *)Track->At(i))->dedx_x[ip];
828     l2->dedx_y[i][ip] = ((TrkTrack *)Track->At(i))->dedx_y[ip];
829     };
830     }
831     }
832     // *** SINGLETS ***
833     if(SingletX){
834     l2->nclsx = SingletX->GetEntries();
835     for(Int_t i=0;i<l2->nclsx;i++){
836     l2->planex[i] = ((TrkSinglet *)SingletX->At(i))->plane;
837     l2->xs[i][0] = ((TrkSinglet *)SingletX->At(i))->coord[0];
838     l2->xs[i][1] = ((TrkSinglet *)SingletX->At(i))->coord[1];
839     l2->signlxs[i] = ((TrkSinglet *)SingletX->At(i))->sgnl;
840     }
841 pam-fi 1.7 }
842    
843 pam-fi 1.21 if(SingletY){
844     l2->nclsy = SingletY->GetEntries();
845     for(Int_t i=0;i<l2->nclsy;i++){
846     l2->planey[i] = ((TrkSinglet *)SingletY->At(i))->plane;
847     l2->ys[i][0] = ((TrkSinglet *)SingletY->At(i))->coord[0];
848     l2->ys[i][1] = ((TrkSinglet *)SingletY->At(i))->coord[1];
849     l2->signlys[i] = ((TrkSinglet *)SingletY->At(i))->sgnl;
850     }
851 pam-fi 1.7 }
852     }
853 mocchiut 1.1 //--------------------------------------
854     //
855     //
856     //--------------------------------------
857     void TrkLevel2::Clear(){
858     for(Int_t i=0; i<12 ; i++){
859 pam-fi 1.21 good[i] = -1;
860     };
861     // if(Track)Track->Clear("C");
862     // if(SingletX)SingletX->Clear("C");
863     // if(SingletY)SingletY->Clear("C");
864     if(Track)Track->Delete();
865     if(SingletX)SingletX->Delete();
866     if(SingletY)SingletY->Delete();
867     }
868     // //--------------------------------------
869     // //
870     // //
871     // //--------------------------------------
872 pam-fi 1.11 void TrkLevel2::Delete(){
873    
874 pam-fi 1.21 // cout << "void TrkLevel2::Delete()"<<endl;
875     Clear();
876     if(Track)delete Track;
877     if(SingletX)delete SingletX;
878     if(SingletY)delete SingletY;
879    
880 pam-fi 1.11 }
881     //--------------------------------------
882     //
883     //
884     //--------------------------------------
885 mocchiut 1.1 /**
886     * Sort physical tracks and stores them in a TObjectArray, ordering by increasing chi**2 value (in case of track image, it selects the one with lower chi**2). The total number of physical tracks is given by GetNTracks() and the it-th physical track can be retrieved by means of the method GetTrack(int it).
887     * This method is overridden by PamLevel2::GetTracks(), where calorimeter and TOF information is used.
888     */
889 pam-fi 1.8 TRefArray *TrkLevel2::GetTracks_NFitSorted(){
890 pam-fi 1.3
891 pam-fi 1.21 if(!Track)return 0;
892    
893     TRefArray *sorted = new TRefArray();
894 pam-fi 1.8
895 pam-fi 1.21 TClonesArray &t = *Track;
896 pam-fi 1.8 // TClonesArray &ts = *PhysicalTrack;
897 pam-fi 1.21 int N = ntrk();
898     vector<int> m(N); for(int i=0; i<N; i++)m[i]=1;
899 pam-fi 1.8 // int m[50]; for(int i=0; i<N; i++)m[i]=1;
900    
901 pam-fi 1.21 int indo=0;
902     int indi=0;
903 pam-fi 1.26 while(N > 0){
904     // while(N != 0){
905 pam-fi 1.21 int nfit =0;
906     float chi2ref = numeric_limits<float>::max();
907 pam-fi 1.9
908 pam-fi 1.21 // first loop to search maximum num. of fit points
909     for(int i=0; i < ntrk(); i++){
910     if( ((TrkTrack *)t[i])->GetNtot() >= nfit && m[i]==1){
911     nfit = ((TrkTrack *)t[i])->GetNtot();
912     }
913     }
914     //second loop to search minimum chi2 among selected
915 pam-fi 1.26 for(int i=0; i<ntrk(); i++){
916 pam-fi 1.21 Float_t chi2 = ((TrkTrack *)t[i])->chi2;
917 pam-fi 1.26 if(chi2 < 0) chi2 = -chi2*1000;
918 pam-fi 1.21 if( chi2 < chi2ref
919     && ((TrkTrack *)t[i])->GetNtot() == nfit
920     && m[i]==1){
921     chi2ref = ((TrkTrack *)t[i])->chi2;
922     indi = i;
923     };
924     };
925     if( ((TrkTrack *)t[indi])->HasImage() ){
926     m[((TrkTrack *)t[indi])->image] = 0;
927     N--;
928 pam-fi 1.8
929 pam-fi 1.26 // cout << "i** "<< ((TrkTrack *)t[indi])->image << " " << nfiti <<" "<<chi2i<<endl;
930 pam-fi 1.21 };
931     sorted->Add( (TrkTrack*)t[indi] );
932 pam-fi 1.3
933 pam-fi 1.21 m[indi] = 0;
934 pam-fi 1.26 // cout << "SORTED "<< indo << " "<< indi << " "<< N << " "<<((TrkTrack *)t[indi])->image<<" "<<chi2ref<<endl;
935 pam-fi 1.21 N--;
936     indo++;
937     }
938     m.clear();
939 pam-fi 1.26 // cout << "GetTracks_NFitSorted(it): Done"<< endl;
940 pam-fi 1.8
941 pam-fi 1.21 return sorted;
942 pam-fi 1.6 // return PhysicalTrack;
943 pam-fi 1.3 }
944 mocchiut 1.1 //--------------------------------------
945     //
946     //
947     //--------------------------------------
948     /**
949     * Retrieves the is-th stored track.
950     * @param it Track number, ranging from 0 to ntrk().
951     * Fitted tracks ( images included ) are stored in a TObjectArray ( TrkLevel2::Track ) in the same order they are returned by the F77 fitting routine.
952     */
953     TrkTrack *TrkLevel2::GetStoredTrack(int is){
954    
955     if(is >= this->ntrk()){
956     cout << "** TrkLevel2 ** Track "<< is << "doen not exits! " << endl;
957     cout << " Stored tracks ntrk() = "<< this->ntrk() << endl;
958     return 0;
959     }
960 pam-fi 1.21 if(!Track){
961     cout << "TrkTrack *TrkLevel2::GetStoredTrack(int is) >> (TClonesArray*) Track ==0 "<<endl;
962     };
963 mocchiut 1.1 TClonesArray &t = *(Track);
964     TrkTrack *track = (TrkTrack*)t[is];
965     return track;
966     }
967     //--------------------------------------
968     //
969     //
970     //--------------------------------------
971     /**
972 pam-fi 1.6 * Retrieves the is-th stored X singlet.
973     * @param it Singlet number, ranging from 0 to nclsx().
974     */
975     TrkSinglet *TrkLevel2::GetSingletX(int is){
976    
977     if(is >= this->nclsx()){
978     cout << "** TrkLevel2 ** Singlet "<< is << "doen not exits! " << endl;
979     cout << " Stored x-singlets nclsx() = "<< this->nclsx() << endl;
980     return 0;
981     }
982 pam-fi 1.21 if(!SingletX)return 0;
983 pam-fi 1.6 TClonesArray &t = *(SingletX);
984     TrkSinglet *singlet = (TrkSinglet*)t[is];
985     return singlet;
986     }
987     //--------------------------------------
988     //
989     //
990     //--------------------------------------
991     /**
992     * Retrieves the is-th stored Y singlet.
993     * @param it Singlet number, ranging from 0 to nclsx().
994     */
995     TrkSinglet *TrkLevel2::GetSingletY(int is){
996    
997     if(is >= this->nclsy()){
998     cout << "** TrkLevel2 ** Singlet "<< is << "doen not exits! " << endl;
999     cout << " Stored y-singlets nclsy() = "<< this->nclsx() << endl;
1000     return 0;
1001     }
1002 pam-fi 1.21 if(!SingletY)return 0;
1003 pam-fi 1.6 TClonesArray &t = *(SingletY);
1004     TrkSinglet *singlet = (TrkSinglet*)t[is];
1005     return singlet;
1006     }
1007     //--------------------------------------
1008     //
1009     //
1010     //--------------------------------------
1011     /**
1012 mocchiut 1.1 * Retrieves the it-th "physical" track, sorted by the method GetNTracks().
1013     * @param it Track number, ranging from 0 to GetNTracks().
1014     */
1015 pam-fi 1.10
1016 pam-fi 1.8 TrkTrack *TrkLevel2::GetTrack(int it){
1017    
1018     if(it >= this->GetNTracks()){
1019     cout << "** TrkLevel2 ** Track "<< it << "does not exits! " << endl;
1020     cout << " Physical tracks GetNTracks() = "<< this->ntrk() << endl;
1021     return 0;
1022     }
1023    
1024     TRefArray *sorted = GetTracks(); //TEMPORANEO
1025 pam-fi 1.21 if(!sorted)return 0;
1026 pam-fi 1.8 TrkTrack *track = (TrkTrack*)sorted->At(it);
1027 pam-fi 1.21 sorted->Clear();
1028     delete sorted;
1029 pam-fi 1.8 return track;
1030 mocchiut 1.1 }
1031 pam-fi 1.6 /**
1032     * Give the number of "physical" tracks, sorted by the method GetTracks().
1033     */
1034 pam-fi 1.5 Int_t TrkLevel2::GetNTracks(){
1035 pam-fi 1.8
1036     Float_t ntot=0;
1037 pam-fi 1.21 if(!Track)return 0;
1038 pam-fi 1.8 TClonesArray &t = *Track;
1039 mocchiut 1.12 for(int i=0; i<ntrk(); i++) {
1040 pam-fi 1.8 if( ((TrkTrack *)t[i])->GetImageSeqNo() == -1 ) ntot+=1.;
1041     else ntot+=0.5;
1042     }
1043     return (Int_t)ntot;
1044    
1045 pam-fi 1.5 };
1046 mocchiut 1.1 //--------------------------------------
1047     //
1048     //
1049     //--------------------------------------
1050     /**
1051     * Retrieves (if present) the image of the it-th "physical" track, sorted by the method GetNTracks().
1052     * @param it Track number, ranging from 0 to GetNTracks().
1053     */
1054 pam-fi 1.8 TrkTrack *TrkLevel2::GetTrackImage(int it){
1055    
1056 pam-fi 1.21 if(it >= this->GetNTracks()){
1057     cout << "** TrkLevel2 ** Track "<< it << "does not exits! " << endl;
1058     cout << " Physical tracks GetNTracks() = "<< this->ntrk() << endl;
1059     return 0;
1060     }
1061 pam-fi 1.8
1062 pam-fi 1.21 TRefArray* sorted = GetTracks(); //TEMPORANEO
1063     if(!sorted)return 0;
1064     TrkTrack *track = (TrkTrack*)sorted->At(it);
1065 pam-fi 1.8
1066 pam-fi 1.21 if(!track->HasImage()){
1067     cout << "** TrkLevel2 ** Track "<< it << "does not have image! " << endl;
1068     return 0;
1069     }
1070     if(!Track)return 0;
1071     TrkTrack *image = (TrkTrack*)(*Track)[track->image];
1072    
1073     sorted->Delete();
1074     delete sorted;
1075 pam-fi 1.8
1076 pam-fi 1.21 return image;
1077 pam-fi 1.8
1078 mocchiut 1.1 }
1079     //--------------------------------------
1080     //
1081     //
1082     //--------------------------------------
1083     /**
1084     * Loads the magnetic field.
1085     * @param s Path of the magnetic-field files.
1086     */
1087 pam-fi 1.16 void TrkLevel2::LoadField(TString path){
1088     //
1089 pam-fi 1.26 // strcpy(path_.path,path.Data());
1090     // path_.pathlen = path.Length();
1091     // path_.error = 0;
1092     // readb_();
1093    
1094     TrkParams::Set(path,1);
1095 pam-fi 1.28 TrkParams::Load(1);
1096 pam-fi 1.26
1097 pam-fi 1.16 //
1098 mocchiut 1.1 };
1099 pam-fi 1.25 /**
1100     * Get BY (kGauss)
1101     * @param v (x,y,z) coordinates in cm
1102     */
1103     float TrkLevel2::GetBX(float* v){
1104     float b[3];
1105     gufld_(v,b);
1106     return b[0]/10.;
1107     }
1108     /**
1109     * Get BY (kGauss)
1110     * @param v (x,y,z) coordinates in cm
1111     */
1112     float TrkLevel2::GetBY(float* v){
1113     float b[3];
1114     gufld_(v,b);
1115     return b[1]/10.;
1116     }
1117     /**
1118     * Get BY (kGauss)
1119     * @param v (x,y,z) coordinates in cm
1120     */
1121     float TrkLevel2::GetBZ(float* v){
1122     float b[3];
1123     gufld_(v,b);
1124     return b[2]/10.;
1125     }
1126 mocchiut 1.1 //--------------------------------------
1127     //
1128     //
1129     //--------------------------------------
1130     /**
1131 pam-fi 1.6 * Get tracker-plane (mechanical) z-coordinate
1132     * @param plane_id plane index (1=TOP,2,3,4,5,6=BOTTOM)
1133     */
1134     Float_t TrkLevel2::GetZTrk(Int_t plane_id){
1135     switch(plane_id){
1136     case 1: return ZTRK1;
1137     case 2: return ZTRK2;
1138     case 3: return ZTRK3;
1139     case 4: return ZTRK4;
1140     case 5: return ZTRK5;
1141     case 6: return ZTRK6;
1142     default: return 0.;
1143     };
1144     };
1145     //--------------------------------------
1146     //
1147     //
1148     //--------------------------------------
1149     /**
1150 pam-fi 1.2 * Trajectory default constructor.
1151     * (By default is created with z-coordinates inside the tracking volume)
1152     */
1153     Trajectory::Trajectory(){
1154     npoint = 10;
1155     x = new float[npoint];
1156     y = new float[npoint];
1157     z = new float[npoint];
1158     thx = new float[npoint];
1159     thy = new float[npoint];
1160     tl = new float[npoint];
1161 pam-fi 1.6 float dz = ((ZTRK1)-(ZTRK6))/(npoint-1);
1162 pam-fi 1.2 for(int i=0; i<npoint; i++){
1163     x[i] = 0;
1164     y[i] = 0;
1165 pam-fi 1.6 z[i] = (ZTRK1) - i*dz;
1166 pam-fi 1.2 thx[i] = 0;
1167     thy[i] = 0;
1168     tl[i] = 0;
1169     }
1170     }
1171     //--------------------------------------
1172     //
1173     //
1174     //--------------------------------------
1175     /**
1176 mocchiut 1.1 * Trajectory constructor.
1177 pam-fi 1.2 * (By default is created with z-coordinates inside the tracking volume)
1178 mocchiut 1.1 * \param n Number of points
1179     */
1180     Trajectory::Trajectory(int n){
1181 pam-fi 1.2 if(n<=0){
1182     cout << "NB! Trajectory must have at least 1 point >>> created with 10 points" << endl;
1183     n=10;
1184     }
1185 mocchiut 1.1 npoint = n;
1186     x = new float[npoint];
1187     y = new float[npoint];
1188     z = new float[npoint];
1189 pam-fi 1.2 thx = new float[npoint];
1190     thy = new float[npoint];
1191     tl = new float[npoint];
1192 pam-fi 1.6 float dz = ((ZTRK1)-(ZTRK6))/(npoint-1);
1193 mocchiut 1.1 for(int i=0; i<npoint; i++){
1194 pam-fi 1.2 x[i] = 0;
1195 mocchiut 1.1 y[i] = 0;
1196 pam-fi 1.6 z[i] = (ZTRK1) - i*dz;
1197 pam-fi 1.2 thx[i] = 0;
1198     thy[i] = 0;
1199     tl[i] = 0;
1200 mocchiut 1.1 }
1201     }
1202     //--------------------------------------
1203     //
1204     //
1205     //--------------------------------------
1206     /**
1207     * Trajectory constructor.
1208     * \param n Number of points
1209     * \param pz Pointer to float array, defining z coordinates
1210     */
1211     Trajectory::Trajectory(int n, float* zin){
1212 pam-fi 1.2 npoint = 10;
1213     if(n>0)npoint = n;
1214 mocchiut 1.1 x = new float[npoint];
1215     y = new float[npoint];
1216     z = new float[npoint];
1217 pam-fi 1.2 thx = new float[npoint];
1218     thy = new float[npoint];
1219     tl = new float[npoint];
1220     int i=0;
1221     do{
1222 pam-fi 1.21 x[i] = 0;
1223     y[i] = 0;
1224     z[i] = zin[i];
1225     thx[i] = 0;
1226     thy[i] = 0;
1227     tl[i] = 0;
1228     i++;
1229 pam-fi 1.2 }while(zin[i-1] > zin[i] && i < npoint);
1230     npoint=i;
1231     if(npoint != n)cout << "NB! Trajectory created with "<<npoint<<" points"<<endl;
1232 mocchiut 1.1 }
1233 pam-fi 1.21 void Trajectory::Delete(){
1234    
1235     if(x) delete [] x;
1236     if(y) delete [] y;
1237     if(z) delete [] z;
1238     if(thx) delete [] thx;
1239     if(thy) delete [] thy;
1240     if(tl) delete [] tl;
1241    
1242     }
1243 mocchiut 1.1 //--------------------------------------
1244     //
1245     //
1246     //--------------------------------------
1247     /**
1248     * Dump the trajectory coordinates.
1249     */
1250     void Trajectory::Dump(){
1251     cout <<endl<< "Trajectory ========== "<<endl;
1252     for (int i=0; i<npoint; i++){
1253 pam-fi 1.2 cout << i <<" >> " << x[i] <<" "<< y[i] <<" "<< z[i] ;
1254     cout <<" -- " << thx[i] <<" "<< thy[i] ;
1255     cout <<" -- " << tl[i] << endl;
1256 mocchiut 1.1 };
1257     }
1258 pam-fi 1.2 //--------------------------------------
1259     //
1260     //
1261     //--------------------------------------
1262     /**
1263     * Get trajectory length between two points
1264     * @param ifirst first point (default 0)
1265     * @param ilast last point (default npoint)
1266     */
1267     float Trajectory::GetLength(int ifirst, int ilast){
1268     if( ifirst<0 ) ifirst = 0;
1269     if( ilast>=npoint) ilast = npoint-1;
1270     float l=0;
1271     for(int i=ifirst;i<=ilast;i++){
1272     l=l+tl[i];
1273     };
1274     if(z[ilast] > ZINI)l=l-tl[ilast];
1275     if(z[ifirst] < ZINI) l=l-tl[ifirst];
1276    
1277     return l;
1278 mocchiut 1.1
1279 pam-fi 1.2 }
1280 pam-fi 1.6
1281 pam-fi 1.19 /**
1282     * Evaluates the trajectory in the apparatus associated to the track.
1283     * It integrates the equations of motion in the magnetic field. The magnetic field should be previously loaded ( by calling TrkLevel2::LoadField() ), otherwise an error message is returned.
1284     * @param t pointer to an object of the class Trajectory,
1285     * which z coordinates should be previously initialized by calling the proper constructor ( Trajectory::Trajectory(int n, float* zin) ).
1286     * @return error flag.
1287     */
1288     int Trajectory::DoTrack2(float* al){
1289    
1290     double *dxout = new double[npoint];
1291     double *dyout = new double[npoint];
1292     double *dthxout = new double[npoint];
1293     double *dthyout = new double[npoint];
1294     double *dtlout = new double[npoint];
1295     double *dzin = new double[npoint];
1296     double dal[5];
1297    
1298     int ifail = 0;
1299    
1300     for (int i=0; i<5; i++) dal[i] = (double)al[i];
1301     for (int i=0; i<npoint; i++) dzin[i] = (double)z[i];
1302    
1303 pam-fi 1.26 TrkParams::Load(1);
1304     if( !TrkParams::IsLoaded(1) ){
1305     cout << "int Trajectory::DoTrack2(float* al) --- ERROR --- m.field not loaded"<<endl;
1306     return 0;
1307     }
1308 pam-fi 1.19 dotrack2_(&(npoint),dzin,dxout,dyout,dthxout,dthyout,dtlout,dal,&ifail);
1309    
1310     for (int i=0; i<npoint; i++){
1311     x[i] = (float)*dxout++;
1312     y[i] = (float)*dyout++;
1313     thx[i] = (float)*dthxout++;
1314     thy[i] = (float)*dthyout++;
1315     tl[i] = (float)*dtlout++;
1316     }
1317    
1318     return ifail;
1319     };
1320 pam-fi 1.10
1321 mocchiut 1.1 ClassImp(TrkLevel2);
1322     ClassImp(TrkSinglet);
1323     ClassImp(TrkTrack);
1324     ClassImp(Trajectory);

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