/[PAMELA software]/DarthVader/TrackerLevel2/src/TrkLevel1.cpp
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Annotation of /DarthVader/TrackerLevel2/src/TrkLevel1.cpp

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Revision 1.21 - (hide annotations) (download)
Wed Aug 22 07:03:45 2007 UTC (17 years, 3 months ago) by pam-fi
Branch: MAIN
Changes since 1.20: +37 -8 lines
added several methods to get PFA info

1 pam-fi 1.1 /**
2     * \file TrkLevel1.cpp
3     * \author Elena Vannuccini
4     */
5     #include <TrkLevel1.h>
6     #include <iostream>
7     using namespace std;
8 pam-fi 1.3 //......................................
9     // F77 routines
10     //......................................
11     extern "C" {
12    
13     // int readetaparam_();
14 pam-fi 1.11 float cog_(int*,int*);
15     float pfaeta_(int*,float*);
16     float pfaeta2_(int*,float*);
17     float pfaeta3_(int*,float*);
18     float pfaeta4_(int*,float*);
19 pam-fi 1.21 float pfaetal_(int*,float*);
20 pam-fi 1.3
21     }
22 pam-fi 1.1 //--------------------------------------
23     //
24     //
25     //--------------------------------------
26     TrkCluster::TrkCluster(){
27    
28 pam-fi 1.11 // cout << "TrkCluster::TrkCluster()"<<endl;
29     view = -1;
30     maxs = -1;
31     indmax = -1;
32    
33     CLlength = 0;
34     clsignal = 0;
35     clsigma = 0;
36     cladc = 0;
37     clbad = 0;
38 pam-fi 1.1
39     };
40     //--------------------------------------
41     //
42     //
43     //--------------------------------------
44     TrkCluster::TrkCluster(const TrkCluster& t){
45    
46 pam-fi 1.11 view = t.view;
47     maxs = t.maxs;
48     indmax = t.indmax;
49    
50     CLlength = t.CLlength;
51     if(CLlength){
52     clsignal = new Float_t[CLlength];
53     clsigma = new Float_t[CLlength];
54     cladc = new Int_t[CLlength];
55     clbad = new Bool_t[CLlength];
56     for(Int_t i=0; i<CLlength;i++){
57     clsignal[i] = t.clsignal[i];
58     clsigma[i] = t.clsigma[i];
59     cladc[i] = t.cladc[i];
60     clbad[i] = t.clbad[i];
61 pam-fi 1.1 };
62 pam-fi 1.11 };
63 pam-fi 1.10 };
64     //--------------------------------------
65     //
66     //
67     //--------------------------------------
68     void TrkCluster::Clear(){
69 pam-fi 1.11
70     // cout << "void TrkCluster::Clear()"<<endl;
71     if(CLlength){
72     delete [] clsignal;
73     delete [] clsigma;
74     delete [] cladc;
75     delete [] clbad;
76     }
77    
78     view = 0;
79     maxs = 0;
80     indmax = 0;
81    
82     CLlength = 0;
83     clsignal = 0;
84     clsigma = 0;
85     cladc = 0;
86     clbad = 0;
87 pam-fi 1.1
88     };
89     //--------------------------------------
90     //
91     //
92     //--------------------------------------
93 pam-fi 1.2 /**
94 pam-fi 1.5 * Evaluate the cluster signal including a maximum number of adjacent
95     * strips, around maxs, having a significant signal.
96     * @param nstrip Maximum number of strips.
97     * @param cut Inclusion cut ( s > cut*sigma ).
98     * If nstrip<=0 only the inclusion cut is used to determine the cluster size.
99 pam-fi 1.2 */
100 pam-fi 1.5 Float_t TrkCluster::GetSignal(Int_t nstrip, Float_t cut){
101 pam-fi 1.11
102     if(CLlength<=0)return 0;
103    
104 pam-fi 1.5 Float_t s = 0;
105    
106     if( nstrip<=0 ){
107     // for(Int_t is = 0; is < CLlength; is++){
108     // Float_t scut = cut*clsigma[is];
109     // if(clsignal[is] > scut) s += clsignal[is];
110     // };
111     for(Int_t is = indmax+1; is < CLlength; is++){
112     Float_t scut = cut*clsigma[is];
113     if(clsignal[is] > scut) s += clsignal[is];
114     else break;
115     };
116     for(Int_t is = indmax; is >=0; is--){
117     Float_t scut = cut*clsigma[is];
118     if(clsignal[is] > scut) s += clsignal[is];
119     else break;
120 pam-fi 1.2 };
121     return s;
122 pam-fi 1.5 };
123    
124    
125     Int_t il = indmax;
126     Int_t ir = indmax;
127     Int_t inc = 0;
128    
129     if( clsignal[indmax] < cut*clsigma[indmax] ) return 0;
130    
131     while ( inc < nstrip ){
132     Float_t sl = -100000;
133     Float_t sr = -100000;
134     if( il >= 0 ) sl = clsignal[il];
135     if( ir < CLlength ) sr = clsignal[ir];
136     if( sl == sr && inc == 0 ){
137     s += clsignal[il]; //cout << inc<<" - "<< clsignal[il]<<" "<<s<<endl;
138     il--;
139     ir++;
140     }else if ( sl >= sr && sl > cut*clsigma[il] && inc !=0 ){
141     s += sl;//cout << inc<<" - "<< clsignal[il]<<" "<<s<<endl;
142     il--;
143     }else if ( sl < sr && sr > cut*clsigma[ir] ){
144     s += sr;//cout << inc<<" - " << clsignal[ir]<<" "<<s<<endl;
145     ir++;
146     }else break;
147    
148     inc++;
149     }
150     return s;
151 pam-fi 1.2 };
152 pam-fi 1.5
153 pam-fi 1.11
154 pam-fi 1.2 /**
155 pam-fi 1.11 * Evaluate the cluster signal-to-noise, as defined by Turchetta, including a
156     * maximum number of adjacent strips, around maxs, having a significant signal.
157 pam-fi 1.5 * @param nstrip Maximum number of strips.
158     * @param cut Inclusion cut ( s > cut*sigma ).
159     * If nstrip<=0 only the inclusion cut is used to determine the cluster size.
160 pam-fi 1.3 */
161 pam-fi 1.5 Float_t TrkCluster::GetSignalToNoise(Int_t nstrip, Float_t cut){
162 pam-fi 1.3
163 pam-fi 1.11 if(CLlength<=0)return 0;
164    
165 pam-fi 1.5 Float_t sn = 0;
166    
167     if( nstrip<=0 ){
168     for(Int_t is = indmax+1; is < CLlength; is++){
169     Float_t scut = cut*clsigma[is];
170     if(clsignal[is] > scut) sn += clsignal[is]/clsigma[is];
171     else break;
172     };
173     for(Int_t is = indmax; is >=0; is--){
174     Float_t scut = cut*clsigma[is];
175     if(clsignal[is] > scut) sn += clsignal[is]/clsigma[is];
176     else break;
177     };
178 pam-fi 1.3 return sn;
179 pam-fi 1.5 };
180    
181    
182     Int_t il = indmax;
183     Int_t ir = indmax;
184     Int_t inc = 0;
185    
186     if( clsignal[indmax] < cut*clsigma[indmax] ) return 0;
187    
188     while ( inc < nstrip ){
189     Float_t sl = -100000;
190     Float_t sr = -100000;
191     if( il >= 0 ) sl = clsignal[il];
192     if( ir < CLlength ) sr = clsignal[ir];
193     if( sl == sr && inc == 0 ){
194     sn += clsignal[il]/clsigma[il];
195     il--;
196     ir++;
197     }else if ( sl >= sr && sl > cut*clsigma[il] && inc !=0 ){
198     sn += sl/clsigma[il];
199     il--;
200     }else if ( sl < sr && sr > cut*clsigma[ir] ){
201     sn += sr/clsigma[ir];
202     ir++;
203     }else break;
204    
205     inc++;
206     }
207     return sn;
208 pam-fi 1.3 };
209     /**
210 pam-fi 1.2 * Evaluate the cluster multiplicity.
211     * @param cut Inclusion cut.
212     */
213     Int_t TrkCluster::GetMultiplicity(Float_t cut){
214 pam-fi 1.11
215     if(CLlength<=0)return 0;
216    
217     Int_t m = 0;
218    
219     for(Int_t is = indmax+1; is < CLlength; is++){
220     Float_t scut = cut*clsigma[is];
221     if(clsignal[is] > scut) m++;
222     else break;
223     };
224     for(Int_t is = indmax; is >=0; is--){
225     Float_t scut = cut*clsigma[is];
226     if(clsignal[is] > scut) m++;
227     else break;
228     };
229     return m;
230 pam-fi 1.2 };
231     /**
232     * True if the cluster contains bad strips.
233     * @param nbad Number of strips around the maximum.
234     */
235     Bool_t TrkCluster::IsBad(Int_t nbad){
236 pam-fi 1.11
237     if(CLlength<=0)return 0;
238    
239     Int_t il,ir;
240     il = indmax;
241     ir = indmax;
242     for(Int_t i=1; i<nbad; i++){
243 pam-fi 1.18 if (ir == CLlength-1 && il == 0)break;
244     else if (ir == CLlength-1 && il != 0)il--;
245     else if (ir != CLlength-1 && il == 0)ir++;
246 pam-fi 1.11 else{
247     if(clsignal[il-1] > clsignal[ir+1])il--;
248     else ir++;
249 pam-fi 1.2 }
250 pam-fi 1.11 }
251     Int_t isbad = 0;
252     for(Int_t i=il; i<=ir; i++)isbad += clbad[i];
253    
254     return ( isbad != nbad );
255 pam-fi 1.2 };
256 pam-fi 1.11 /**
257     * True if the cluster contains saturated strips.
258     * @param nbad Number of strips around the maximum.
259     */
260     Bool_t TrkCluster::IsSaturated(Int_t nbad){
261    
262     if(CLlength<=0)return 0;
263    
264     Int_t il,ir;
265     il = indmax;
266     ir = indmax;
267     for(Int_t i=1; i<nbad; i++){
268 pam-fi 1.18 if (ir == CLlength-1 && il == 0)break;
269     else if (ir == CLlength-1 && il != 0)il--;
270     else if (ir != CLlength-1 && il == 0)ir++;
271 pam-fi 1.11 else{
272     if(clsignal[il-1] > clsignal[ir+1])il--;
273     else ir++;
274     }
275     }
276     Int_t isbad = 0;
277     for(Int_t i=il; i<=ir; i++){
278     if( IsX() && cladc[i] > 2980 )isbad++;
279     if( IsY() && cladc[i] < 80 )isbad++;
280     }
281     return ( isbad != 0 );
282    
283     }
284 pam-fi 1.2 //--------------------------------------
285     //
286     //
287     //--------------------------------------
288 pam-fi 1.1 void TrkCluster::Dump(){
289    
290 pam-fi 1.11 cout << "----- Cluster" << endl;
291     cout << "View "<<view << " - Ladder "<<GetLadder()<<endl;
292     cout << "Position of maximun "<< maxs <<endl;
293     cout << "Multiplicity "<< GetMultiplicity() <<endl;
294     cout << "Tot signal "<< GetSignal() << " (ADC channels)"<<endl ;
295 pam-fi 1.18 cout << "Signal/Noise "<< GetSignalToNoise()<<endl;
296     cout << "COG "<< GetCOG(0)<<endl;;
297     cout << "Strip signals ";
298 pam-fi 1.11 for(Int_t i =0; i<CLlength; i++)cout << " " <<clsignal[i];
299     cout <<endl<< "Strip sigmas ";
300     for(Int_t i =0; i<CLlength; i++)cout << " " <<clsigma[i];
301     cout <<endl<< "Strip ADC ";
302     for(Int_t i =0; i<CLlength; i++)cout << " " <<cladc[i];
303     cout <<endl<< "Strip BAD ";
304     for(Int_t i =0; i<CLlength; i++){
305     if(i==indmax)cout << " *" <<clbad[i]<<"*";
306     else cout << " " <<clbad[i];
307     }
308     cout << endl;
309 pam-fi 1.1
310     }
311     //--------------------------------------
312     //
313     //
314     //--------------------------------------
315 pam-fi 1.3 /**
316     * Method to fill a level1 struct with only one cluster (done to use F77 p.f.a. routines on a cluster basis).
317     */
318 pam-fi 1.14 void TrkCluster::GetLevel1Struct(cTrkLevel1* l1){
319 pam-fi 1.3
320 pam-fi 1.6 // cTrkLevel1* l1 = new cTrkLevel1;
321    
322 pam-fi 1.14 // cTrkLevel1* l1 = &level1event_ ;
323 pam-fi 1.3
324 pam-fi 1.6 l1->nclstr1 = 1;
325     l1->view[0] = view;
326     l1->ladder[0] = GetLadder();
327     l1->maxs[0] = maxs;
328     l1->mult[0] = GetMultiplicity();
329     l1->dedx[0] = GetSignal();
330     l1->indstart[0] = 1;
331     l1->indmax[0] = indmax+1;
332     l1->totCLlength = CLlength;
333     for(Int_t i=0; i<CLlength; i++){
334     l1->clsignal[i] = clsignal[i];
335     l1->clsigma[i] = clsigma[i];
336     l1->cladc[i] = cladc[i];
337     l1->clbad[i] = clbad[i];
338     };
339    
340 pam-fi 1.14 // return l1;
341 pam-fi 1.3 };
342     //--------------------------------------
343     //
344     //
345     //--------------------------------------
346     /**
347     * Evaluates the Center-Of-Gravity (COG) of the cluster, in strips, relative to the strip with the maximum signal (TrkCluster::maxs).
348     * @param ncog Number of strips to evaluate COG.
349     * If ncog=0, the COG of the cluster is evaluated according to the cluster multiplicity (defined by the inclusion cut).
350     * If ncog>0, the COG is evaluated using ncog strips, even if they have a negative signal (according to G.Landi)
351     */
352     Float_t TrkCluster::GetCOG(Int_t ncog){
353    
354 pam-fi 1.6 int ic = 1;
355     GetLevel1Struct();
356     return cog_(&ncog,&ic);
357    
358     };
359     /**
360     * Evaluates the Center-Of-Gravity (COG) of the cluster, in strips, relative to the strip with the maximum signal (TrkCluster::maxs),
361     * choosing the number of strips according to the angle, as implemented for the eta-algorythm .
362     * @param angle Projected angle in degree.
363     */
364     Float_t TrkCluster::GetCOG(Float_t angle){
365    
366     Int_t neta = 0;
367    
368     // Float_t eta = GetETA(0,angle);
369     // for(neta=2; neta<10; neta++) if( eta == GetETA(neta,angle) ) break;
370     // if(eta != GetETA(neta,angle) )cout << "Attenzione!! pasticcio "<<endl;
371    
372     if( view%2 ){ //Y
373     neta=2;
374     }else{ //X
375 pam-fi 1.7 if( fabs(angle) <= 10. ){
376 pam-fi 1.6 neta = 2;
377 pam-fi 1.7 }else if( fabs(angle) > 10. && fabs(angle) <= 15. ){
378 pam-fi 1.6 neta = 3;
379     }else{
380     neta = 4;
381     };
382     };
383    
384     return GetCOG(neta);
385 pam-fi 1.3
386     };
387     //--------------------------------------
388     //
389     //
390     //--------------------------------------
391     /**
392 pam-fi 1.21 * Evaluates the cluster position, in pitch units, relative to the strip with the maximum signal (TrkCluster::maxs), by applying the non-linear ETA-algorythm.
393 pam-fi 1.3 * @param neta Number of strips to evaluate ETA.
394 pam-fi 1.21 * @param angle Projected (effective) angle between particle track and detector plane.
395 pam-fi 1.3 * Implemented values of neta are 2,3,4. If neta=0, ETA2, ETA3 and ETA4 are applied according to the angle.
396     */
397 pam-fi 1.21 Float_t TrkCluster::GetETA(Int_t neta, float angle, bool landi){
398 pam-fi 1.3
399 pam-fi 1.6 // cout << "GetETA(neta,angle) "<< neta << " "<< angle;
400 pam-fi 1.3 // LoadPfaParam();
401 pam-fi 1.6
402 pam-fi 1.14 TrkParams::Load(4);
403     if( !TrkParams::IsLoaded(4) ){
404     cout << "int Trajectory::DoTrack2(float* al) --- ERROR --- p.f.a. parameters not loaded"<<endl;
405     return 0;
406     }
407    
408 pam-fi 1.6 float ax = angle;
409     int ic = 1;
410     GetLevel1Struct();
411 pam-fi 1.21 if( neta == 0 && !landi) return pfaeta_(&ic,&ax);
412     else if(neta == 0 && landi ) return pfaetal_(&ic,&ax);
413     else if(neta == 2 ) return pfaeta2_(&ic,&ax);
414     else if(neta == 3 ) return pfaeta3_(&ic,&ax);
415     else if(neta == 4 ) return pfaeta4_(&ic,&ax);
416 pam-fi 1.6 else cout << "ETA"<<neta<<" not implemented\n";
417     return 0;
418    
419 pam-fi 1.3 };
420 pam-fi 1.21
421     /**
422     * Evaluates the cluster position, in pitch units, relative to the strip with
423     * the maximum signal (TrkCluster::maxs), by applying the PFA set as default (see TrkParams).
424     * @param angle Projected (effective) angle between particle track and detector plane.
425     */
426     Float_t TrkCluster::GetPositionPU(float angle){
427    
428     if( TrkParams::GetPFA() == 0 )return GetETA(0,angle,false);
429     if( TrkParams::GetPFA() == 1 )return 0.;
430     if( TrkParams::GetPFA() == 2 )return GetETA(2,angle,false);
431     if( TrkParams::GetPFA() == 3 )return GetETA(3,angle,false);
432     if( TrkParams::GetPFA() == 4 )return GetETA(4,angle,false);
433     if( TrkParams::GetPFA() == 5 )return GetETA(0,angle,true);
434     if( TrkParams::GetPFA() == 6 )return 0.;
435     if( TrkParams::GetPFA() == 7 )return 0.;
436     if( TrkParams::GetPFA() == 8 )return 0.;
437     if( TrkParams::GetPFA() == 9 )return 0.;
438     if( TrkParams::GetPFA() == 10 )return GetCOG(0);
439     if( TrkParams::GetPFA() == 11 )return GetCOG(1);
440     if( TrkParams::GetPFA() == 12 )return GetCOG(2);
441     if( TrkParams::GetPFA() == 13 )return GetCOG(3);
442     if( TrkParams::GetPFA() == 14 )return GetCOG(4);
443    
444     return 0.;
445    
446     }
447    
448 pam-fi 1.3 //--------------------------------------
449     //
450     //
451     //--------------------------------------
452 pam-fi 1.1 TrkLevel1::TrkLevel1(){
453 pam-fi 1.6
454 pam-fi 1.11 // cout << "TrkLevel1::TrkLevel1()"<<endl;
455     // Cluster = new TClonesArray("TrkCluster");
456     Cluster = 0;
457 pam-fi 1.6 for(Int_t i=0; i<12 ; i++){
458     good[i] = -1;
459     for(Int_t j=0; j<24 ; j++){
460     cn[j][i]=0;
461     cnn[j][i]=0;
462 pam-fi 1.1 };
463 pam-fi 1.6 };
464 pam-fi 1.17 TrkParams::SetTrackingMode();
465     TrkParams::SetPrecisionFactor();
466     TrkParams::SetStepMin();
467     TrkParams::SetPFA();
468 pam-fi 1.1 }
469     //--------------------------------------
470     //
471     //
472     //--------------------------------------
473 pam-fi 1.12 void TrkLevel1::Set(){
474     if(!Cluster)Cluster = new TClonesArray("TrkCluster");
475     }
476     //--------------------------------------
477     //
478     //
479     //--------------------------------------
480 pam-fi 1.1 void TrkLevel1::Dump(){
481    
482 pam-fi 1.6 cout<<"DSP status: ";
483     for(Int_t i=0; i<12 ; i++)cout<<good[i]<<" ";
484     cout<<endl;
485 pam-fi 1.9 cout<<"VA1 mask : "<<endl;
486     for(Int_t i=0; i<12 ; i++){
487     for(Int_t ii=0; ii<24 ; ii++){
488     Int_t mask = cnn[ii][i];
489     if(mask>0)mask=1;
490     cout<<mask<<" ";
491     }
492     cout <<endl;
493     }
494 pam-fi 1.6
495 pam-fi 1.11 if(!Cluster)return;
496 pam-fi 1.6 TClonesArray &t = *Cluster;
497     for(int i=0; i<this->nclstr(); i++) ((TrkCluster *)t[i])->Dump();
498    
499 pam-fi 1.1 }
500 pam-fi 1.18 /**
501     * \brief Dump processing status
502     */
503     void TrkLevel1::StatusDump(int view){
504     cout << "DSP n. "<<view+1<<" (level1-)status: "<<hex<<showbase<<good[view]<<dec<<endl;
505     };
506     /**
507     * \brief Check event status
508     *
509     * Check the event status, according to a flag-mask given as input.
510     * Return true if the view passes the check.
511     *
512     * @param view View number (0-11)
513     * @param flagmask Mask of flags to check (eg. flagmask=0x111 no missing packet,
514     * no crc error, no software alarm)
515     *
516     * @see TrkLevel2 class definition to know how the status flag is defined
517     *
518     */
519     Bool_t TrkLevel1::StatusCheck(int view, int flagmask){
520    
521     if( view<0 || view >= 12)return false;
522     return !(good[view]&flagmask);
523    
524     };
525    
526    
527 pam-fi 1.1 //--------------------------------------
528     //
529     //
530     //--------------------------------------
531     /**
532     * Fills a TrkLevel1 object with values from a struct cTrkLevel1 (to get data from F77 common).
533     */
534 pam-fi 1.10 void TrkLevel1::SetFromLevel1Struct(cTrkLevel1 *l1, Bool_t full){
535 pam-fi 1.1
536 pam-fi 1.15 // cout << "void TrkLevel1::SetFromLevel1Struct(cTrkLevel1 *l1, Bool_t full)"<<endl;
537    
538     Clear();
539 pam-fi 1.10 // ---------------
540 pam-fi 1.6 // *** CLUSTER ***
541 pam-fi 1.10 // ---------------
542 pam-fi 1.6 TrkCluster* t_cl = new TrkCluster();
543 pam-fi 1.11 if(!Cluster)Cluster = new TClonesArray("TrkCluster");
544 pam-fi 1.6 TClonesArray &t = *Cluster;
545     for(int i=0; i<l1->nclstr1; i++){
546 pam-fi 1.10
547     t_cl->Clear();
548 pam-fi 1.11 // if( full || (!full && l1->whichtrack[i]) ){
549    
550     t_cl->view = l1->view[i];
551     t_cl->maxs = l1->maxs[i];
552    
553 pam-fi 1.10 if( full || (!full && l1->whichtrack[i]) ){
554 pam-fi 1.11 t_cl->indmax = l1->indmax[i] - l1->indstart[i];
555 pam-fi 1.10 Int_t from = l1->indstart[i] -1;
556     Int_t to = l1->totCLlength ;
557     if(i != l1->nclstr1-1)to = l1->indstart[i+1] -1 ;
558     t_cl->CLlength = to - from ;
559    
560     t_cl->clsignal = new Float_t[t_cl->CLlength];
561     t_cl->clsigma = new Float_t[t_cl->CLlength];
562     t_cl->cladc = new Int_t[t_cl->CLlength];
563     t_cl->clbad = new Bool_t[t_cl->CLlength];
564 pam-fi 1.19
565 pam-fi 1.10 Int_t index = 0;
566     for(Int_t is = from; is < to; is++ ){
567     t_cl->clsignal[index] = (Float_t) l1->clsignal[is];
568     t_cl->clsigma[index] = (Float_t) l1->clsigma[is];
569     t_cl->cladc[index] = (Int_t) l1->cladc[is];
570     t_cl->clbad[index] = (Bool_t) l1->clbad[is];
571     index++;
572     };
573     }
574     new(t[i]) TrkCluster(*t_cl); // <<< store cluster
575 pam-fi 1.6 };
576    
577     delete t_cl;
578    
579 pam-fi 1.10 // -------------------------
580 pam-fi 1.6 // ****general variables****
581 pam-fi 1.10 // -------------------------
582 pam-fi 1.6 for(Int_t i=0; i<12 ; i++){
583     good[i] = l1->good[i];
584     for(Int_t j=0; j<24 ; j++){
585     cn[j][i] = l1->cnev[j][i];
586     // cnrms[j][i] = l1->cnrmsev[j][i];
587     cnn[j][i] = l1->cnnev[j][i];
588 pam-fi 1.1 };
589 pam-fi 1.6 };
590    
591 pam-fi 1.1 }
592     /**
593     * Fills a struct cTrkLevel1 with values from a TrkLevel1 object (to put data into a F77 common).
594     */
595    
596 pam-fi 1.14 void TrkLevel1::GetLevel1Struct(cTrkLevel1* l1) {
597    
598     // cTrkLevel1* l1 = &level1event_ ;
599    
600 pam-fi 1.6 for(Int_t i=0; i<12 ; i++){
601     l1->good[i] = good[i];
602     for(Int_t j=0; j<24 ; j++){
603 pam-fi 1.14 l1->cnev[j][i] = cn[j][i] ;
604     l1->cnnev[j][i] = cnn[j][i] ;
605     l1->cnrmsev[j][i] = 0. ;
606 pam-fi 1.1 };
607 pam-fi 1.14 l1->fshower[i] = 0;
608 pam-fi 1.6 };
609 pam-fi 1.14
610     l1->nclstr1=0;
611     l1->totCLlength=0;
612     Int_t index=0;
613 pam-fi 1.11 if(Cluster){
614 pam-fi 1.14 Int_t i=0;
615     for(Int_t ii=0;ii<Cluster->GetEntries();ii++){
616     TrkCluster *clu = GetCluster(ii);
617     // ----------------------------------------
618     // attenzione!!
619     // se il cluster non e` salvato (view = 0)
620     // DEVE essere escluso dal common F77
621     // ----------------------------------------
622     if(clu->view != 0 ){
623     l1->view[i] = clu->view;
624     l1->ladder[i] = clu->GetLadder();
625     l1->maxs[i] = clu->maxs;
626     l1->mult[i] = clu->GetMultiplicity();
627     l1->dedx[i] = clu->GetSignal();
628     l1->indstart[i] = index+1;
629     l1->indmax[i] = l1->indstart[i] + clu->indmax;
630     l1->totCLlength += clu->CLlength;
631     for(Int_t iw=0; iw < clu->CLlength; iw++){
632     l1->clsignal[index] = clu->clsignal[iw];
633     l1->clsigma[index] = clu->clsigma[iw];
634     l1->cladc[index] = clu->cladc[iw];
635     l1->clbad[index] = clu->clbad[iw];
636     index++;
637     }
638     i++;
639     }
640 pam-fi 1.11 }
641 pam-fi 1.14 l1->nclstr1 = i;
642 pam-fi 1.6 }
643 pam-fi 1.14
644     // return l1;
645 pam-fi 1.3 }
646     //--------------------------------------
647     //
648     //
649     //--------------------------------------
650     void TrkLevel1::Clear(){
651 pam-fi 1.6
652     for(Int_t i=0; i<12 ; i++){
653     good[i] = -1;
654     for(Int_t j=0; j<24 ; j++){
655     cn[j][i] = 0;
656     cnn[j][i] = 0;
657 pam-fi 1.3 };
658 pam-fi 1.6 };
659 pam-fi 1.11 // if(Cluster)Cluster->Clear("C");
660     if(Cluster)Cluster->Delete();
661 pam-fi 1.6
662 pam-fi 1.1 }
663     //--------------------------------------
664     //
665     //
666     //--------------------------------------
667 pam-fi 1.3 void TrkLevel1::Delete(){
668 pam-fi 1.11
669     // Clear();
670     if(Cluster)Cluster->Delete();
671     if(Cluster)delete Cluster;
672 pam-fi 1.6
673 pam-fi 1.1 }
674     //--------------------------------------
675     //
676     //
677     //--------------------------------------
678     TrkCluster *TrkLevel1::GetCluster(int is){
679    
680 pam-fi 1.11 if(!Cluster)return 0;
681     if(is >= nclstr()){
682     cout << "** TrkLevel1::GetCluster(int) ** Cluster "<< is << " does not exits! " << endl;
683     cout << "( Stored clusters nclstr() = "<< this->nclstr()<<" )" << endl;
684     return 0;
685     }
686    
687     TClonesArray &t = *(Cluster);
688     TrkCluster *cluster = (TrkCluster*)t[is];
689     return cluster;
690 pam-fi 1.1 }
691 pam-fi 1.3 //--------------------------------------
692     //
693     //
694     //--------------------------------------
695 pam-fi 1.14 // /**
696     // * Load Position-Finding-Algorythm parameters (call the F77 routine).
697     // *
698     // */
699     // int TrkLevel1::LoadPfaParam(TString path){
700    
701     // if( path.IsNull() ){
702     // path = gSystem->Getenv("PAM_CALIB");
703     // if(path.IsNull()){
704     // cout << " TrkLevel1::LoadPfaParam() ==> No PAMELA environment variables defined "<<endl;
705     // return 0;
706     // }
707     // path.Append("/trk-param/eta_param-0/");
708     // }
709    
710     // strcpy(path_.path,path.Data());
711     // path_.pathlen = path.Length();
712     // path_.error = 0;
713     // cout <<"Loading p.f.a. parameters: "<<path<<endl;
714     // return readetaparam_();
715     // }
716    
717     // /**
718     // * Load magnetic field parameters (call the F77 routine).
719     // *
720     // */
721     // int TrkLevel1::LoadFieldParam(TString path){
722    
723     // // if( strcmp(path_.path,path.Data()) ){
724     // if( path.IsNull() ){
725     // path = gSystem->Getenv("PAM_CALIB");
726     // if(path.IsNull()){
727     // cout << " TrkLevel1::LoadFieldParam() ==> No PAMELA environment variables defined "<<endl;
728     // return 0;
729     // }
730     // path.Append("/trk-param/field_param-0/");
731     // }
732     // cout <<"Loading magnetic field "<<path<<endl;
733     // strcpy(path_.path,path.Data());
734     // path_.pathlen = path.Length();
735     // path_.error = 0;
736     // return readb_();
737     // // }
738     // // return 0;
739     // }
740     // /**
741     // * Load magnetic field parameters (call the F77 routine).
742     // *
743     // */
744     // int TrkLevel1::LoadChargeParam(TString path){
745    
746     // // if( strcmp(path_.path,path.Data()) ){
747     // if( path.IsNull() ){
748     // path = gSystem->Getenv("PAM_CALIB");
749     // if(path.IsNull()){
750     // cout << " TrkLevel1::LoadChargeParam() ==> No PAMELA environment variables defined "<<endl;
751     // return 0;
752     // }
753     // path.Append("/trk-param/charge_param-1/");
754     // }
755     // cout <<"Loading charge-correlation parameters: "<<path<<endl;
756     // strcpy(path_.path,path.Data());
757     // path_.pathlen = path.Length();
758     // path_.error = 0;
759     // return readchargeparam_();
760     // // }
761     // // return 0;
762     // }
763     // /**
764     // * Load magnetic field parameters (call the F77 routine).
765     // *
766     // */
767     // int TrkLevel1::LoadAlignmentParam(TString path){
768    
769     // // if( strcmp(path_.path,path.Data()) ){
770     // if( path.IsNull() ){
771     // path = gSystem->Getenv("PAM_CALIB");
772     // if(path.IsNull()){
773     // cout << " TrkLevel1::LoadAlignmentParam() ==> No PAMELA environment variables defined "<<endl;
774     // return 0;
775     // }
776     // path.Append("/trk-param/align_param-0/");
777     // }
778     // cout <<"Loading alignment parameters: "<<path<<endl;
779     // strcpy(path_.path,path.Data());
780     // path_.pathlen = path.Length();
781     // path_.error = 0;
782     // return readalignparam_();
783     // // }
784     // // return 0;
785     // }
786     // /**
787     // * Load magnetic field parameters (call the F77 routine).
788     // *
789     // */
790     // int TrkLevel1::LoadMipParam(TString path){
791    
792     // // if( strcmp(path_.path,path.Data()) ){
793     // if( path.IsNull() ){
794     // path = gSystem->Getenv("PAM_CALIB");
795     // if(path.IsNull()){
796     // cout << " TrkLevel1::LoadMipParam() ==> No PAMELA environment variables defined "<<endl;
797     // return 0;
798     // }
799     // path.Append("/trk-param/mip_param-0/");
800     // }
801     // cout <<"Loading ADC-to-MIP conversion parameters: "<<path<<endl;
802     // strcpy(path_.path,path.Data());
803     // path_.pathlen = path.Length();
804     // path_.error = 0;
805     // return readmipparam_();
806     // // }
807     // // return 0;
808     // }
809     // /**
810     // * Load magnetic field parameters (call the F77 routine).
811     // *
812     // */
813     // int TrkLevel1::LoadVKMaskParam(TString path){
814 pam-fi 1.3
815 pam-fi 1.14 // // if( strcmp(path_.path,path.Data()) ){
816     // if( path.IsNull() ){
817     // path = gSystem->Getenv("PAM_CALIB");
818     // if(path.IsNull()){
819     // cout << " TrkLevel1::LoadVKMaskParam() ==> No PAMELA environment variables defined "<<endl;
820     // return 0;
821     // }
822     // path.Append("/trk-param/mask_param-1/");
823     // }
824     // cout <<"Loading VK-mask parameters: "<<path<<endl;
825     // strcpy(path_.path,path.Data());
826     // path_.pathlen = path.Length();
827     // path_.error = 0;
828     // return readvkmask_();
829     // // }
830     // // return 0;
831     // }
832    
833     // /**
834     // * Load all (default) parameters. Environment variable must be defined.
835     // *
836     // */
837     // int TrkLevel1::LoadParams(){
838    
839     // int result=0;
840    
841     // result = result * LoadFieldParam();
842     // result = result * LoadPfaParam();
843     // result = result * LoadChargeParam();
844     // result = result * LoadAlignmentParam();
845     // result = result * LoadMipParam();
846     // result = result * LoadVKMaskParam();
847    
848     // return result;
849     // }
850    
851    
852    
853     int TrkLevel1::GetPfaNbinsAngle(){
854     TrkParams::Load(4);
855     if( !TrkParams::IsLoaded(4) ){
856     cout << "int TrkLevel1::GetPfaNbinsAngle() --- ERROR --- p.f.a. parameters not loaded"<<endl;
857     return 0;
858     }
859     return pfa_.nangbin;
860     };
861    
862     int TrkLevel1::GetPfaNbinsETA(){
863     TrkParams::Load(4);
864     if( !TrkParams::IsLoaded(4) ){
865     cout << "int TrkLevel1::GetPfaNbinsETA() --- ERROR --- p.f.a. parameters not loaded"<<endl;
866     return 0;
867     }
868     return pfa_.netaval;
869     };
870 pam-fi 1.1
871 pam-fi 1.13 /**
872     *
873     *
874     */
875     float* TrkLevel1::GetPfaCoord(TString pfa, int nview, int nladder, int nang){
876 pam-fi 1.14
877     TrkParams::Load(4);
878     if( !TrkParams::IsLoaded(4) ){
879     cout << "float* TrkLevel1::GetPfaCoord(TString pfa, int nview, int nladder, int nang) --- ERROR --- p.f.a. parameters not loaded"<<endl;
880     return 0;
881     }
882 pam-fi 1.13
883     int nbins = GetPfaNbinsETA();
884     if(!nbins)return 0;
885    
886     float *fcorr = new float [nbins];
887    
888     if(!pfa.CompareTo("ETA2",TString::kIgnoreCase)){
889     for(int ib=0; ib<nbins; ib++){
890     fcorr[ib] = pfa_.feta2[nang][nladder][nview][ib];
891     cout << pfa_.eta2[nang][ib] << " - " << pfa_.feta2[nang][nladder][nview][ib]<<endl;;
892     }
893     }else if (!pfa.CompareTo("ETA3",TString::kIgnoreCase)){
894     for(int ib=0; ib<nbins; ib++)fcorr[ib] = pfa_.feta3[nang][nladder][nview][ib];
895     }else if (!pfa.CompareTo("ETA4",TString::kIgnoreCase)){
896     for(int ib=0; ib<nbins; ib++)fcorr[ib] = pfa_.feta4[nang][nladder][nview][ib];
897     }else{
898     cout << pfa<<" pfa parameters not implemented "<<endl;
899     return 0;
900     }
901    
902     return fcorr;
903    
904     };
905    
906     float* TrkLevel1::GetPfaAbs(TString pfa, int nang){
907    
908 pam-fi 1.14 TrkParams::Load(4);
909     if( !TrkParams::IsLoaded(4) ){
910     cout << "float* TrkLevel1::GetPfaAbs(TString pfa, int nang) --- ERROR --- p.f.a. parameters not loaded"<<endl;
911     return 0;
912     }
913    
914 pam-fi 1.13 int nbins = GetPfaNbinsETA();
915     if(!nbins)return 0;
916    
917     float *fcorr = new float [nbins];
918    
919     if(!pfa.CompareTo("ETA2",TString::kIgnoreCase)){
920     for(int ib=0; ib<nbins; ib++)fcorr[ib] = pfa_.eta2[nang][ib];
921     }else if (!pfa.CompareTo("ETA3",TString::kIgnoreCase)){
922     for(int ib=0; ib<nbins; ib++)fcorr[ib] = pfa_.eta3[nang][ib];
923     }else if (!pfa.CompareTo("ETA4",TString::kIgnoreCase)){
924     for(int ib=0; ib<nbins; ib++)fcorr[ib] = pfa_.eta4[nang][ib];
925     }else{
926     cout << pfa<<" pfa parameters not implemented "<<endl;
927     return 0;
928     }
929    
930     return fcorr;
931    
932 pam-fi 1.14 };
933    
934     /**
935     * Method to call the F77 routine that performs level1->level2 processing.
936     * The level2 output is stored in a common block, which can be retrieved
937     * by mean of the method TrkLevel2::SetFromLevel2Struct().
938     * NB If the TrkLevel1 object is readout from a tree, and the
939     * TrkLevel1::ProcessEvent(int pfa) is used to reprocess the event, attention
940     * should be payed to the fact that single clusters (clusters not associated
941 pam-fi 1.20 * with any track) might not be stored. Full reprocessing should be done starting
942     * from level0 data.
943 pam-fi 1.14 */
944 pam-fi 1.20 //int TrkLevel1::ProcessEvent(int pfa){
945     int TrkLevel1::ProcessEvent(){
946 pam-fi 1.14
947     // cout << "int TrkLevel1::ProcessEvent()" << endl;
948     TrkParams::Load( );
949     if( !TrkParams::IsLoaded() )return 0;
950 pam-fi 1.13
951 pam-fi 1.14 GetLevel1Struct();
952    
953 pam-fi 1.17 // analysisflight_(&pfa);
954 pam-fi 1.20 // TrkParams::SetPFA(pfa);
955 pam-fi 1.17 analysisflight_();
956 pam-fi 1.14
957     return 1;
958 pam-fi 1.13
959 pam-fi 1.14 }
960 pam-fi 1.13
961 pam-fi 1.1
962     ClassImp(TrkLevel1);
963     ClassImp(TrkCluster);

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