/[PAMELA software]/calo/flight/CaloPreSampler/src/CaloPreSampler.cpp
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Annotation of /calo/flight/CaloPreSampler/src/CaloPreSampler.cpp

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Revision 1.17 - (hide annotations) (download)
Wed Mar 10 12:11:11 2010 UTC (14 years, 10 months ago) by mocchiut
Branch: MAIN
Changes since 1.16: +5 -0 lines
SetCaloLevel2Pointer method added

1 mocchiut 1.1 /**
2     * \file CaloPreSampler.cpp
3     * \author Emiliano Mocchiutti (2007/07/18)
4     */
5     //
6     // headers
7     //
8     #include <CaloPreSampler.h>
9     //--------------------------------------
10     /**
11     * Default constructor
12     */
13     CaloPreSampler::CaloPreSampler(){
14     Clear();
15 mocchiut 1.6 }
16 mocchiut 1.1
17 mocchiut 1.17 void CaloPreSampler::SetCaloLevel2Pointer(CaloLevel2 *cl2p){
18     if ( pcalo ) delete pcalo;
19     pcalo = cl2p;
20     }
21    
22 mocchiut 1.1 CaloPreSampler::CaloPreSampler(PamLevel2 *l2p){
23     //
24     L2 = l2p;
25     //
26     if ( !L2->IsORB() ) printf(" WARNING: OrbitalInfo Tree is needed, the plugin could not work properly without it \n");
27     //
28     OBT = 0;
29     PKT = 0;
30     atime = 0;
31     //
32     // Default variables
33     //
34     event = new CaloLevel0();
35     cstrip = new CaloStrip(false);
36     // c1 = new CaloLevel1();
37     pcalo = new CaloLevel2();
38 mocchiut 1.6 N = 4;
39     NC = 22-N;
40 mocchiut 1.1 debug = false;
41     sel = true;
42     cont = false;
43     emulate18 = true;
44 mocchiut 1.16 usepl18x = false;
45 mocchiut 1.1 simulation = false;
46 mocchiut 1.4 withtrk = true;
47     rigdefault = 50.;
48 mocchiut 1.5 nox = false;
49     noy = false;
50 mocchiut 1.8 forcecalo = false;
51 mocchiut 1.13 forcefitmode = -1;
52 mocchiut 1.9 memset(mask,0,2*22*sizeof(Int_t));
53 mocchiut 1.1 //
54     Clear();
55     //
56     // loading magnetic field...
57     //
58     TrkLevel2 *trk = new TrkLevel2();
59     GL_PARAM *q4 = new GL_PARAM();
60     TSQLServer *dbc = 0;
61     TString host = "mysql://localhost/pamelaprod";
62     TString user = "anonymous";
63     TString psw = "";
64     const char *pamdbhost=gSystem->Getenv("PAM_DBHOST");
65     const char *pamdbuser=gSystem->Getenv("PAM_DBUSER");
66     const char *pamdbpsw=gSystem->Getenv("PAM_DBPSW");
67     if ( !pamdbhost ) pamdbhost = "";
68     if ( !pamdbuser ) pamdbuser = "";
69     if ( !pamdbpsw ) pamdbpsw = "";
70     if ( strcmp(pamdbhost,"") ) host = pamdbhost;
71     if ( strcmp(pamdbuser,"") ) user = pamdbuser;
72     if ( strcmp(pamdbpsw,"") ) psw = pamdbpsw;
73     dbc = TSQLServer::Connect(host.Data(),user.Data(),psw.Data());
74     //
75     q4->Query_GL_PARAM(1,1,dbc);
76     printf(" Reading magnetic field maps at %s\n",(q4->PATH+q4->NAME).Data());
77     trk->LoadField(q4->PATH+q4->NAME);
78     //
79 mocchiut 1.6 }
80    
81 mocchiut 1.15 CaloTrkVar* CaloPreSampler::GetCaloTrack(Int_t t){
82     this->Process();
83     if ( t < 0 ) return pcalo->GetCaloStoredTrack(t);
84     if ( L2->GetTrack(t) ){
85     return pcalo->GetCaloStoredTrack(L2->GetTrack(t)->GetTrkTrack()->GetSeqNo());
86     };
87     return NULL;
88     }
89    
90 mocchiut 1.6 void CaloPreSampler::SetNoWpreSampler(Int_t n){
91     if ( NC+n < 23 ){
92     N = n;
93     } else {
94     printf(" ERROR! Calorimeter is made of 22 W planes\n");
95     printf(" you are giving N presampler = %i and N calo = %i \n",n,NC);
96     printf(" WARNING: using default values NWpre = 4, NWcalo = 18\n");
97     NC = 18;
98     N = 4;
99     };
100     }
101    
102     void CaloPreSampler::SetNoWcalo(Int_t n){
103     if ( N+n < 23 ){
104     NC = n;
105     } else {
106     printf(" ERROR! Calorimeter is made of 22 W planes\n");
107     printf(" you are giving N W presampler = %i and N W calo = %i \n",N,n);
108     printf(" WARNING: using default values NWpre = 4, NWcalo = 18\n");
109     NC = 18;
110     N = 4;
111     };
112     }
113 mocchiut 1.1
114 mocchiut 1.11 void CaloPreSampler::SplitInto(Int_t NoWpreSampler, Int_t NoWcalo){
115     this->SetNoWcalo(0);
116     this->SetNoWpreSampler(0);
117     if ( NoWpreSampler < NoWcalo ){
118     this->SetNoWpreSampler(NoWpreSampler);
119     this->SetNoWcalo(NoWcalo);
120     } else {
121     this->SetNoWcalo(NoWcalo);
122     this->SetNoWpreSampler(NoWpreSampler);
123     };
124     }
125    
126 mocchiut 1.1 void CaloPreSampler::Clear(){
127     //
128     pcalo->Clear();
129     //
130 mocchiut 1.6 }
131 mocchiut 1.1
132     void CaloPreSampler::Print(){
133     //
134     Process();
135     //
136     printf("========================================================================\n");
137     printf(" OBT: %u PKT: %u ATIME: %u \n",OBT,PKT,atime);
138     printf(" debug [debug flag]:.. %i\n",debug);
139     printf(" simulation [simulation flag]:.. %i\n",simulation);
140     printf(" emulate18 [emulate dead plane 18]:.. %i\n",emulate18);
141     printf(" selection mode :.. %i\n",sel);
142     printf(" contamination mode :.. %i\n",cont);
143     printf(" pre-sampler planes :.. %i\n",N);
144     printf(" pcalo->qtot :.. %f\n",pcalo->qtot);
145     printf(" pcalo->nstrip :.. %i\n",pcalo->nstrip);
146 mocchiut 1.2 if ( pcalo->ntrk() > 0 ){
147     printf(" pcalo->track0->qtrack :.. %f\n",pcalo->GetCaloTrkVar(0)->qtrack);
148     printf(" pcalo->track0->dX0l :.. %f\n",pcalo->GetCaloTrkVar(0)->dX0l);
149     };
150 mocchiut 1.1 printf("========================================================================\n");
151     //
152 mocchiut 1.6 }
153 mocchiut 1.1
154     void CaloPreSampler::Delete(){
155     Clear();
156     delete pcalo;
157     //delete this;
158 mocchiut 1.6 }
159 mocchiut 1.1
160    
161     void CaloPreSampler::Process(){
162     //
163     if ( !L2 ){
164     printf(" ERROR: cannot find PamLevel2 object, use the correct constructor or check your program!\n");
165     printf(" ERROR: CaloPreSampler variables _NOT_ filled \n");
166     return;
167     };
168     //
169 pam-fi 1.12 // Clear structures used to communicate with fortran
170     //
171     event->ClearStructs();//ELENA
172 mocchiut 1.13 if ( forcefitmode > 0 ){
173     if ( forcefitmode != 1000 && forcefitmode != 1001 && forcefitmode != 1002 ){
174     printf(" ERROR! forcefitmode=%i \n Use forcefitmode = 1000 for fit mode 0, 1001 fit mode 1, 1002 fit mode 3\n",forcefitmode);
175     forcefitmode = -1;
176     } else {
177     event->clevel2->fmode[0] = forcefitmode;
178     event->clevel2->fmode[1] = forcefitmode;
179     };
180     };
181 pam-fi 1.12 //
182 mocchiut 1.1 Bool_t newentry = false;
183     //
184     if ( L2->IsORB() ){
185 mocchiut 1.14 if ( debug ) printf(" I am here, we have orbital infos \n");
186 mocchiut 1.1 if ( L2->GetOrbitalInfo()->pkt_num != PKT || L2->GetOrbitalInfo()->OBT != OBT || L2->GetOrbitalInfo()->absTime != atime || sel != ssel ){
187     newentry = true;
188     OBT = L2->GetOrbitalInfo()->OBT;
189     PKT = L2->GetOrbitalInfo()->pkt_num;
190     atime = L2->GetOrbitalInfo()->absTime;
191     ssel = sel;
192     };
193     } else {
194     newentry = true;
195     };
196     //
197     if ( !newentry ) return;
198     //
199     // Some variables
200     //
201     Int_t S3 = 0;
202     Int_t S2 = 0;
203     Int_t S12 = 0;
204     Int_t S11 = 0;
205     Float_t tmptrigty = -1.;
206     Bool_t trackanyway = true;
207 mocchiut 1.4 // Float_t rigdefault = 50.;
208 mocchiut 1.1 Bool_t hZn = true;
209 mocchiut 1.4 // Bool_t withtrk = true;
210 mocchiut 1.1 Bool_t st = true;
211     Int_t ntrkentry = 0;
212     TrkLevel2 *trk = L2->GetTrkLevel2();
213     Bool_t filled = false;
214     //
215     if ( debug ) printf(" Processing event at OBT %u PKT %u time %u \n",OBT,PKT,atime);
216     //
217     this->Clear();
218     //
219     // find out if we have trkseqno = -1, -2 or -3
220     //
221     Bool_t m1 = false;
222     Bool_t m2 = false;
223     Bool_t m3 = false;
224     for (Int_t mm=0; mm < L2->GetCaloLevel2()->ntrk(); mm++ ){
225     if ( L2->GetCaloLevel2()->GetCaloTrkVar(mm)->trkseqno == -1 ) m1 = true;
226     if ( L2->GetCaloLevel2()->GetCaloTrkVar(mm)->trkseqno == -2 ) m2 = true;
227     if ( L2->GetCaloLevel2()->GetCaloTrkVar(mm)->trkseqno == -3 ) m3 = true;
228     };
229 mocchiut 1.4 if ( !withtrk ) m3 = true;
230 mocchiut 1.1 //
231     if ( debug ) printf(" Fill estrip matrix needed to calculate variables \n");
232     //
233     // Fill the estrip matrix
234     //
235     memset(event->clevel1->estrip, 0, 2*22*96*sizeof(Float_t));
236     Int_t view = 0;
237     Int_t plane = 0;
238     Int_t strip = 0;
239     Float_t mip = 0.;
240     for ( Int_t i=0; i<L2->GetCaloLevel1()->istrip; i++ ){
241     //
242     mip = L2->GetCaloLevel1()->DecodeEstrip(i,view,plane,strip);
243     //
244 mocchiut 1.16 if ( !usepl18x && view==0 && plane==18 ) mip = 0.;
245     //
246 mocchiut 1.5 // Mask x or y view if nox and/or noy are true (default false)
247     //
248 mocchiut 1.9 if ( mask[view][plane] ) mip = 0.;
249 mocchiut 1.5 if ( nox && view == 0 ) mip = 0.;
250     if ( noy && view == 1 ) mip = 0.;
251     //
252 mocchiut 1.10 if ( emulate18 && view == 0 && plane == 18 ) mip = 0.;
253     //
254 mocchiut 1.1 // Selection mode: fill the matrix only for plane < (22 - N) REMEMBER N = number of W planes to be used as presampler, ie if N = 2 then we want to use planes from 0 to 19
255     // included so plane < (22 - 2)
256     //
257     if ( sel ){
258     if ( plane < (22 - N) ){
259     //
260 mocchiut 1.8 if ( emulate18 && plane == (18 - N) && view == 0 ) mip = 0.;
261 mocchiut 1.6 if ( plane >= NC ) mip = 0.;
262 mocchiut 1.1 event->clevel1->estrip[strip][plane][view] = mip;
263     //
264     };
265     };
266     //
267     // Contamination mode: fill the matrix only for planes from N to 22 but shift all planes up to the first one
268     //
269     if ( cont ){
270     if ( plane >= N ){
271     //
272 mocchiut 1.8 if ( emulate18 && plane == (18 + N) && view == 0 ) mip = 0.;
273 mocchiut 1.6 if ( (plane-N) >= NC ) mip = 0.;
274 mocchiut 1.1 event->clevel1->estrip[strip][(plane-N)][view] = mip;
275     //
276     };
277     };
278     //
279     };
280     //
281     // if data comes from the simulation we must use mechanical alignment parameters (default is flight parameters)
282     //
283     if ( simulation ){
284     cstrip->UseMechanicalAlig();
285     };
286     //
287     // Set alignment parameter
288     //
289     event->clevel1->xalig = cstrip->GetXalig();
290     event->clevel1->yalig = cstrip->GetYalig();
291     event->clevel1->zalig = cstrip->GetZalig();
292     //
293     event->clevel1->emin = 0.7;
294     //
295     // in case of the contamination mode we must play with the Z alignment in order to have the correct track in the calo since we have moved the planes up...
296     //
297     if ( cont ){
298     if ( !(N%2) ){
299     event->clevel1->reverse = 0; // if the number of planes is even we have taken away a full module no need to do anything strange...
300     event->clevel1->zalig -= (N/2) * (8.09 + 10.09);
301     } else {
302     event->clevel1->reverse = 1; // if the number of planes is odd we have taken away half a module, we need to reverse silicon planes shifting
303     event->clevel1->zalig -= ((N+1)/2) * 8.09 + ((N-1)/2) * 10.09;
304     };
305     };
306     if ( debug ) printf(" xalig = %f \n",event->clevel1->xalig);
307     if ( debug ) printf(" yalig = %f \n",event->clevel1->yalig);
308     if ( debug ) printf(" zalig = %f \n",event->clevel1->zalig);
309     //
310     if ( debug ) printf(" Calculate variables as done in CaloCore, N = %i \n",N);
311     //
312     // Calculate variables
313     //
314     //
315     // use only N W planes
316     //
317 mocchiut 1.7 // event->clevel1->npla = 22-N;
318     event->clevel1->npla = NC;
319 mocchiut 1.1 //
320     S3 = 0;
321     S2 = 0;
322     S12 = 0;
323     S11 = 0;
324     S3 = L2->GetTrigLevel2()->patterntrig[2];
325     S2 = L2->GetTrigLevel2()->patterntrig[3];
326     S12 = L2->GetTrigLevel2()->patterntrig[4];
327     S11 = L2->GetTrigLevel2()->patterntrig[5];
328     if ( L2->GetTrigLevel2()->patterntrig[1] & (1<<0) ) tmptrigty = 1.;
329     if ( L2->GetTrigLevel2()->patterntrig[0] ) tmptrigty = 2.;
330     if ( S3 || S2 || S12 || S11 ) tmptrigty = 0.;
331     if ( !(L2->GetTrigLevel2()->patterntrig[1] & (1<<0)) && !L2->GetTrigLevel2()->patterntrig[0] && !S3 && !S2 && !S12 && !S11 ) tmptrigty = 1.;
332     event->clevel2->trigty = tmptrigty;
333     //
334     // do we have at least one track from the tracker? this check has been disabled
335     //
336     event->clevel1->good2 = 1;
337     //
338 mocchiut 1.3 // copy variables calculated during calibration process which is skipped here...
339     //
340     event->clevel2->good = L2->GetCaloLevel2()->good;
341     memcpy(event->clevel2->perr,L2->GetCaloLevel2()->perr,sizeof(L2->GetCaloLevel2()->perr));
342     memcpy(event->clevel2->swerr,L2->GetCaloLevel2()->swerr,sizeof(L2->GetCaloLevel2()->swerr));
343     memcpy(event->clevel2->crc,L2->GetCaloLevel2()->crc,sizeof(L2->GetCaloLevel2()->crc));
344     event->clevel2->selftrigger = L2->GetCaloLevel2()->selftrigger;
345     //
346 mocchiut 1.1 // Calculate variables common to all tracks (qtot, nstrip, etc.)
347     //
348     if ( debug ) printf("1 Call GetCommonVar() \n");
349     event->GetCommonVar();
350     //
351     // Fill common variables
352     //
353     if ( debug ) printf("1 Call FillCommonVar() \n");
354     event->FillCommonVar(NULL,pcalo);
355     //
356     // Calculate variables related to tracks only if we have at least one track (from selftrigger and/or tracker)
357     //
358     ntrkentry = 0;
359     //
360     filled = false;
361     //
362     // Run over tracks (tracker or calorimeter )
363     //
364     if ( withtrk ){
365     //
366     for (Int_t nt=0; nt < trk->ntrk(); nt++){
367     //
368     event->clevel1->good2 = 1;
369     //
370     TrkTrack *ptt = trk->GetStoredTrack(nt);
371     //
372     event->clevel1->trkchi2 = 0;
373     //
374     // Copy the alpha vector in the input structure
375     //
376     for (Int_t e = 0; e < 5 ; e++){
377     event->clevel1->al_p[e][0] = ptt->al[e];
378     };
379     //
380     // Get tracker related variables for this track
381     //
382     if ( debug ) printf("track %i Call GetTrkVar() \n",nt);
383     event->GetTrkVar();
384     if ( debug ) printf(" event->clevel2->dX0l %f \n",event->clevel2->dX0l);
385     //
386     // Save tracker track sequence number
387     //
388     event->trkseqno = nt;
389     //
390     // Copy values in the class ca from the structure clevel2
391     //
392     if ( debug ) printf("track %i Call FillTrkVar() \n",nt);
393     event->FillTrkVar(pcalo,ntrkentry);
394    
395    
396     ntrkentry++;
397     filled = true;
398     //
399     }; // loop on all the tracks
400     };
401     //
402     // if no tracks found but there is the possibility to have a good track we should try to calculate anyway the track related variables using the calorimeter
403     // fit of the track (to be used for example when TRK is off due to any reason like IPM3/5 off).
404     // here we make an event selection so it must be done very carefully...
405     //
406     // conditions are: 0) no track from the tracker 1) we have a track fit both in x and y 2) no problems with calo for this event 3) no selftrigger event
407     //
408     // if ( trackanyway && !filled && event->clevel2->npcfit[0] >= 2 && event->clevel2->npcfit[1] >= 2 && event->clevel2->good != 0 && event->clevel2->trigty < 2. ){
409 mocchiut 1.8 if ( (trackanyway && m3) || forcecalo ){
410 mocchiut 1.1 if ( debug ) printf(" Event with a track not fitted by the tracker \n");
411     //
412     // Disable "track mode" in the fortran routine
413     //
414     event->clevel1->good2 = 0;
415     event->clevel1->riginput = rigdefault;
416     if ( debug ) printf(" Using as default rigidity: %f \n",event->clevel1->riginput);
417     //
418     // We have a selftrigger event to analyze.
419     //
420     for (Int_t e = 0; e < 5 ; e++){
421     event->clevel1->al_p[e][0] = 0.;
422     event->clevel1->al_p[e][1] = 0.;
423     };
424     event->clevel1->trkchi2 = 0;
425     //
426     if ( debug ) printf("-3 a Call GetTrkVar() \n");
427     event->GetTrkVar();
428     //
429     // if we had no problem (clevel1->good2 = 0, NOTICE zero, not one in this mode!), fill and go on
430     //
431     if ( event->clevel1->good2 == 0 ) {
432     //
433     // In selftrigger mode the trkentry variable is set to -1
434     //
435     event->trkseqno = -3;
436     //
437     // Copy values in the class ca from the structure clevel2
438     //
439     if ( debug ) printf("-3 a Call FillTrkVar() \n");
440     event->FillTrkVar(pcalo,ntrkentry);
441     ntrkentry++;
442     filled = true;
443     //
444     } else {
445     if ( debug ) printf(" Selftrigger: problems with event \n");
446     };
447     //
448     };
449     //
450     // Call high energy nuclei routine
451     //
452     // if ( hZn && event->clevel2->trigty >= 2. ){
453     if ( hZn && m2 ){
454     if ( debug ) printf(" Calling selftrigger high energy nuclei routine \n");
455     //
456     // Disable "track mode" in the fortran routine
457     //
458     event->clevel1->good2 = 0;
459     //
460     // Set high energy nuclei flag to one
461     //
462     event->clevel1->hzn = 1;
463     event->clevel1->riginput = rigdefault;
464     //
465     // We have a selftrigger event to analyze.
466     //
467     for (Int_t e = 0; e < 5 ; e++){
468     event->clevel1->al_p[e][0] = 0.;
469     event->clevel1->al_p[e][1] = 0.;
470     };
471     event->clevel1->trkchi2 = 0;
472     //
473     if ( debug ) printf("-2 a Call GetTrkVar() \n");
474     event->GetTrkVar();
475     //
476     // if we had no problem (clevel1->good2 = 0, NOTICE zero, not one in this mode!), fill and go on
477     //
478     if ( event->clevel1->good2 == 0 ) {
479     //
480     // In selftrigger mode the trkentry variable is set to -1
481     //
482     event->trkseqno = -2;
483     //
484     // Copy values in the class ca from the structure clevel2
485     //
486     if ( debug ) printf("-2 a Call FillTrkVar() \n");
487     event->FillTrkVar(pcalo,ntrkentry);
488     ntrkentry++;
489     filled = true;
490     //
491     } else {
492     if ( debug ) printf(" Selftrigger: problems with event \n");
493     };
494     //
495     };
496     //
497     // self trigger event
498     //
499     // if ( st && event->clevel2->trigty >= 2. ){
500     if ( st && m1 ){
501     if ( debug ) printf(" Selftrigger event \n");
502     //
503     // Disable "track mode" in the fortran routine
504     //
505     event->clevel1->good2 = 0;
506     //
507     // disable high enery nuclei flag;
508     //
509     event->clevel1->hzn = 0;
510     //
511     // We have a selftrigger event to analyze.
512     //
513     for (Int_t e = 0; e < 5 ; e++){
514     event->clevel1->al_p[e][0] = 0.;
515     event->clevel1->al_p[e][1] = 0.;
516     };
517     event->clevel1->trkchi2 = 0;
518     //
519     if ( debug ) printf("-1 a Call GetTrkVar() \n");
520     event->GetTrkVar();
521     //
522     // if we had no problem (clevel2->good = 0, NOTICE zero, not one in selftrigger mode!), fill and go on
523     //
524     if ( event->clevel1->good2 == 0 ) {
525     //
526     // In selftrigger mode the trkentry variable is set to -1
527     //
528     event->trkseqno = -1;
529     //
530     // Copy values in the class ca from the structure clevel2
531     //
532     if ( debug ) printf("-1 a Call FillTrkVar() \n");
533     event->FillTrkVar(pcalo,ntrkentry);
534     ntrkentry++;
535     filled = true;
536     //
537     } else {
538     if ( debug ) printf(" Selftrigger: problems with event \n");
539     };
540     };
541 pam-fi 1.12 // //
542     // // Clear structures used to communicate with fortran
543     // //
544     // event->ClearStructs();
545     // ELENA: moved @ beginning
546 mocchiut 1.1 //
547     //
548     //
549     if ( debug ) this->Print();
550     if ( debug ) printf(" exit \n");
551     //
552 mocchiut 1.6 }
553 pam-fi 1.12
554     //
555     // Method to add a calorimeter track, evaluated around a tracker track defined by a status vector.
556     // (can be used to evaluate the calorimeter track around an arbitrary axis, by setting the status vector with zero deflection )
557     //
558     //
559     CaloTrkVar* CaloPreSampler::AddCaloTrkVar(float *al,int trktag){
560    
561     int ntrkentry = pcalo->ntrk();
562     //
563     for (Int_t nt=0; nt < ntrkentry; nt++){
564     if( pcalo->GetCaloTrkVar(nt)->trkseqno == trktag){
565     cout << " CaloTrkVar* CaloPreSampler::AddCaloTrkVar(float *al,int trktag)"<<endl;
566     cout << " --> trktag = "<<trktag<<" already defined "<<endl;
567     return NULL;
568     }
569     }
570     //
571     event->clevel1->good2 = 1; //is a trk track
572     event->clevel1->trkchi2 = 0;
573     event->clevel1->hzn = 0;
574     //
575     // Copy the alpha vector in the input structure
576     //
577     for (Int_t e = 0; e < 5 ; e++){
578     event->clevel1->al_p[e][0] = al[e];
579     };
580     //
581     // Get tracker related variables for this track
582     //
583     if ( debug ) printf("track %i Call GetTrkVar() \n",trktag);
584     event->GetTrkVar();
585     if ( debug ) printf(" event->clevel2->dX0l %f \n",event->clevel2->dX0l);
586     //
587     // Save tracker track sequence number
588     //
589     event->trkseqno = trktag;
590     //
591     // Copy values in the class ca from the structure clevel2
592     //
593     if ( debug ) printf("track %i Call FillTrkVar() \n",trktag);
594     event->FillTrkVar(pcalo,ntrkentry);
595    
596     return pcalo->GetCaloTrkVar(ntrkentry);
597    
598    
599     };//ELENA

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