/[PAMELA software]/calo/flight/CaloEnergy/src/CaloEnergy.cpp
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Contents of /calo/flight/CaloEnergy/src/CaloEnergy.cpp

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Revision 1.10 - (show annotations) (download)
Mon Aug 17 08:36:29 2009 UTC (15 years, 3 months ago) by mocchiut
Branch: MAIN
Changes since 1.9: +3 -1 lines
Small bug fixed

1 #include <CaloEnergy.h>
2 #include <PamLevel2.h>
3
4 //--------------------------------------
5 /**
6 * Default constructor
7 */
8 CaloEnergy::CaloEnergy(){
9 Clear();
10 }
11
12 CaloEnergy::CaloEnergy(PamLevel2 *l2p){
13 //
14 Clear();
15 //
16 L2 = l2p;
17 //
18 if ( !L2->IsORB() ) printf(" WARNING: OrbitalInfo Tree is needed, the plugin could not work properly without it \n");
19 //
20 fSimu = false;
21 this->Set();
22 //
23 }
24
25 CaloEnergy::CaloEnergy(PamLevel2 *l2p, Bool_t simulation){
26 //
27 Clear();
28 //
29 L2 = l2p;
30 //
31 if ( !L2->IsORB() ) printf(" WARNING: OrbitalInfo Tree is needed, the plugin could not work properly without it \n");
32 //
33 fSimu = simulation;
34 this->Set();
35 //
36 }
37
38 void CaloEnergy::UseCaloPreSampler(){
39 //
40 // use the presampler setting forcefitmode to 1000 means to force the DV routine to find the track inside the calorimeter using the "shower" approach developed for electrons
41 //
42 if ( !cp ) cp = new CaloPreSampler(L2);
43 cp->SplitInto(0,22);
44 cp->SetForceFitMode(1000);
45 // cp->UseTracker(false);
46 // cp->ForceCaloFit();
47 // cp->SetDebug(true);
48 // cp->Process();
49 if ( clong ) clong->SetCaloLevel2Pointer(cp->GetLevel2Pointer());
50 }
51
52
53 void CaloEnergy::UseLongFit(){
54 fPl = 0;
55 fLong = true;
56 if ( !clong ){
57 clong = new CaloLong(L2);
58 if ( cp ) clong->SetCaloLevel2Pointer(cp->GetLevel2Pointer());
59 clong->SplitInto(0,22);
60 };
61 //
62 }
63
64 void CaloEnergy::Set(){
65 //
66 // set default values, NB default conversion factor for energy is just very approximated!
67 //
68 OBT = 0;
69 PKT = 0;
70 atime = 0;
71 sntr = "start";
72 //
73 AOBT = 0;
74 APKT = 0;
75 aatime = 0;
76 asntr = "start";
77 //
78 debug = false;
79 //
80 indep = false;
81 //
82 fLong = false;
83 fPl = 1;
84 fRad = -1;
85 cp = NULL;
86 clong = NULL;
87 x0max = -1.;
88 //
89 this->DefineGeometry();
90 fXosel =true;
91 fXesel = true;
92 fYosel = true;
93 fYesel = true;
94 fConv_rxe = 44.4;
95 fConv_rxo = 44.4;
96 fConv_ryo = 44.4;
97 fConv_rye = 44.4;
98 fXomin = 1000;
99 fXemin = 1000;
100 fYomin = 1000;
101 fYemin = 1000;
102 }
103
104 void CaloEnergy::SetMinimumContainment(TString section, Int_t plane){
105 section.ToUpper();
106 if ( section.Contains("XO") ) fXomin = plane;
107 if ( section.Contains("XE") ) fXemin = plane;
108 if ( section.Contains("YO") ) fYomin = plane;
109 if ( section.Contains("YE") ) fYemin = plane;
110 }
111
112 void CaloEnergy::SetMinimumContainment(Int_t plane){
113 this->SetMinimumContainment("XEXOYEYO",plane);
114 }
115
116 Int_t CaloEnergy::GetMinimumContainment(TString section){
117 section.ToUpper();
118 if ( section.Contains("XO") ) return(fXomin);
119 if ( section.Contains("XE") ) return(fXemin);
120 if ( section.Contains("YE") ) return(fYemin);
121 if ( section.Contains("YO") ) return(fYomin);
122 printf(" ERROR: section not recognized \n");
123 return(-1000);
124 }
125
126 void CaloEnergy::SetConversionFactor(TString section, Float_t conv){
127 section.ToUpper();
128 if ( section.Contains("XO") ) fConv_rxo = conv;
129 if ( section.Contains("XE") ) fConv_rxe = conv;
130 if ( section.Contains("YO") ) fConv_ryo = conv;
131 if ( section.Contains("YE") ) fConv_rye = conv;
132 }
133
134 void CaloEnergy::SetConversionFactor(Float_t conv){
135 this->SetConversionFactor("XEXOYEYO",conv);
136 }
137
138 Float_t CaloEnergy::GetConversionFactor(TString section){
139 section.ToUpper();
140 if ( section.Contains("XO") ) return(fConv_rxo);
141 if ( section.Contains("XE") ) return(fConv_rxe);
142 if ( section.Contains("YO") ) return(fConv_ryo);
143 if ( section.Contains("YE") ) return(fConv_rye);
144 printf(" ERROR: section not recognized \n");
145 return(-1000.);
146 }
147
148 Int_t CaloEnergy::GetMaxplane(TString section){
149 section.ToUpper();
150 if ( section.Contains("XO") ) return fMax_planexo;
151 if ( section.Contains("XE") ) return fMax_planexe;
152 if ( section.Contains("YO") ) return fMax_planeyo;
153 if ( section.Contains("YE") ) return fMax_planeye;
154 return(-1);
155 }
156
157 Float_t CaloEnergy::GetEnergyAtMaxplane(TString section){
158 section.ToUpper();
159 if ( section.Contains("XO") ) return xomax_en;
160 if ( section.Contains("XE") ) return xemax_en;
161 if ( section.Contains("YO") ) return yomax_en;
162 if ( section.Contains("YE") ) return yemax_en;
163 return(-1);
164 }
165
166 Float_t CaloEnergy::GetMaxEnergy(TString section){
167 section.ToUpper();
168 if ( fLong ){
169 this->Process(section);
170 return fXOen_maxplane;
171 } else {
172 if ( section.Contains("XO") ) return fXOen_maxplane;
173 if ( section.Contains("XE") ) return fXEen_maxplane;
174 if ( section.Contains("YO") ) return fYOen_maxplane;
175 if ( section.Contains("YE") ) return fYEen_maxplane;
176 };
177 return(-1);
178 }
179
180 Float_t CaloEnergy::GetMaxEnergy(){
181 if ( fLong ){
182 if ( debug ) printf(" oh! call process! with asntr %s and sntr %s \n",asntr.Data(),sntr.Data());
183 this->Process(asntr);
184 };
185 return((fXEen_maxplane+fYOen_maxplane+fYEen_maxplane+fXOen_maxplane));
186 }
187
188 void CaloEnergy::DefineGeometry(){
189 //
190 // Use CaloStrip to determine once the position of border strips for each section
191 //
192 //
193 fM = 2. + 0.096; // real position from cbar
194 // fM1 = 2. - 0.122 - 0.096; // due to calculation of xe1 etc.
195 fM1 = 2. - 0.122 + 0.096; // due to calculation of xe1 etc.
196 if ( fM1 < 0. ) fM1 = 0.;
197 //
198 CaloStrip *cs = new CaloStrip(fSimu);
199 //
200 // view y plane 0 strip 0
201 cs->Set(1,0,0);
202 xe1= cs->GetY();
203 // z1= cs->GetZ();
204 // view y plane 0 strip 31
205 cs->Set(1,0,31);
206 xe2= cs->GetY();
207 // view y plane 0 strip 32
208 cs->Set(1,0,32);
209 xe3= cs->GetY();
210 // view y plane 0 strip 63
211 cs->Set(1,0,63);
212 xe4= cs->GetY();
213 // view y plane 0 strip 64
214 cs->Set(1,0,64);
215 xe5= cs->GetY();
216 // view y plane 0 strip 95
217 cs->Set(1,0,95);
218 xe6= cs->GetY();
219
220 // view x plane 0 strip 0
221 cs->Set(0,0,0);
222 yo1= cs->GetX();
223 // z2= cs->GetZ();
224 // view x plane 0 strip 31
225 cs->Set(0,0,31);
226 yo2= cs->GetX();
227 // view x plane 0 strip 32
228 cs->Set(0,0,32);
229 yo3= cs->GetX();
230 // view x plane 0 strip 63
231 cs->Set(0,0,63);
232 yo4= cs->GetX();
233 // view x plane 0 strip 64
234 cs->Set(0,0,64);
235 yo5= cs->GetX();
236 // view x plane 0 strip 95
237 cs->Set(0,0,95);
238 yo6= cs->GetX();
239
240
241 // view y plane 1 strip 0
242 cs->Set(1,1,0);
243 xo1= cs->GetY();
244 // z3= cs->GetZ();
245 // view y plane 1 strip 31
246 cs->Set(1,1,31);
247 xo2= cs->GetY();
248 // view y plane 1 strip 32
249 cs->Set(1,1,32);
250 xo3= cs->GetY();
251 // view y plane 1 strip 63
252 cs->Set(1,1,63);
253 xo4= cs->GetY();
254 // view y plane 1 strip 64
255 cs->Set(1,1,64);
256 xo5= cs->GetY();
257 // view y plane 1 strip 95
258 cs->Set(1,1,95);
259 xo6= cs->GetY();
260
261 // view x plane 1 strip 0
262 cs->Set(0,1,0);
263 ye1= cs->GetX();
264 // z4= cs->GetZ();
265 // view x plane 1 strip 31
266 cs->Set(0,1,31);
267 ye2= cs->GetX();
268 // view x plane 1 strip 32
269 cs->Set(0,1,32);
270 ye3= cs->GetX();
271 // view x plane 1 strip 63
272 cs->Set(0,1,63);
273 ye4= cs->GetX();
274 // view x plane 1 strip 64
275 cs->Set(0,1,64);
276 ye5= cs->GetX();
277 // view x plane 1 strip 95
278 cs->Set(0,1,95);
279 ye6= cs->GetX();
280
281 //
282 for (Int_t p = 0; p<22; p ++){
283 for (Int_t v = 0; v<2; v++ ){
284 cs->Set(v,p,0);
285 trk_z[p][v]= cs->GetZ(); // Z coord for each plane
286 };
287 };
288 //
289 delete cs;
290 //
291 }
292
293 void CaloEnergy::Clear(){
294 //
295 // clear variables
296 //
297 fPartsel = false;
298 fSel = false;
299 fXosel = false;
300 fXesel = false;
301 fYosel = false;
302 fYesel = false;
303 fCount = 0.;
304 fEnergy = 0.;
305 fEnergyxe = 0.;
306 fEnergyxo = 0.;
307 fEnergyye = 0.;
308 fEnergyyo = 0.;
309 fMax_plane = 0;
310 fMax_planexo = 0;
311 fMax_planexe = 0;
312 fMax_planeyo = 0;
313 fMax_planeye = 0;
314 xomax_en= 0.;
315 xemax_en= 0.;
316 yomax_en= 0.;
317 yemax_en= 0.;
318 //
319 memset(enstrip,0,2*22*96*(sizeof(Float_t)));
320 en = 0.;
321 view = 0;
322 plane = 0;
323 strip = 0;
324 energyxe = 0.;
325 energyyo = 0.;
326 energyxo = 0.;
327 energyye = 0.;
328 fYoout = 0;
329 fYeout = 0;
330 fXoout = 0;
331 fXeout = 0;
332 fXEen_maxplane = 0.;
333 fXOen_maxplane = 0.;
334 fYEen_maxplane = 0.;
335 fYOen_maxplane = 0.;
336 memset(en_xep,0,11*sizeof(Float_t));
337 memset(en_yep,0,11*sizeof(Float_t));
338 memset(en_xop,0,11*sizeof(Float_t));
339 memset(en_yop,0,11*sizeof(Float_t));
340 //
341 }
342
343 void CaloEnergy::Print(){
344 //
345 printf("========================================================================\n");
346 printf(" OBT: %u PKT: %u ATIME: %u \n",OBT,PKT,atime);
347 printf(" fEnergy :.............. %f \n",fEnergy);
348 printf(" fMax_plane :........... %f \n",fMax_plane);
349 printf(" fMax_planexo :......... %i \n",fMax_planexo);
350 printf(" fMax_planexe :......... %i \n",fMax_planexe);
351 printf(" fMax_planeyo :......... %i \n",fMax_planeyo);
352 printf(" fMax_planeye :......... %i \n",fMax_planeye);
353 printf(" fCount :.............. %f \n",fCount);
354 printf(" fSel :.............. %i \n",fSel);
355 printf(" fPartsel:.............. %i \n",fPartsel);
356 printf(" fXesel :.............. %i \n",fXesel);
357 printf(" fXosel :.............. %i \n",fXosel);
358 printf(" fYesel :.............. %i \n",fYesel);
359 printf(" fYosel :.............. %i \n",fYosel);
360 printf(" fXemin :.............. %i \n",fXemin);
361 printf(" fXomin :.............. %i \n",fXomin);
362 printf(" fYemin :.............. %i \n",fYemin);
363 printf(" fYomin :.............. %i \n",fYomin);
364 printf(" fXeout :.............. %i \n",fXeout);
365 printf(" fXoout :.............. %i \n",fXoout);
366 printf(" fYeout :.............. %i \n",fYeout);
367 printf(" fYoout :.............. %i \n",fYoout);
368 printf(" fSimu :.............. %i \n",fSimu);
369 printf(" fM :.............. %f \n",fM);
370 printf(" fM1 :.............. %f \n",fM1);
371 printf(" fRad :.............. %i \n",fRad);
372 printf(" fPl :.............. %i \n",fPl);
373 printf(" fConv_rxe ............. %f \n",fConv_rxe);
374 printf(" fConv_rxo ............. %f \n",fConv_rxo);
375 printf(" fConv_ryo ............. %f \n",fConv_ryo);
376 printf(" fConv_rye ............. %f \n",fConv_rye);
377 printf(" fLong :.............. %i \n",fLong);
378 printf(" energyxe:.............. %f \n",energyxe);
379 printf(" energyxo:.............. %f \n",energyxo);
380 printf(" energyye:.............. %f \n",energyye);
381 printf(" energyyo:.............. %f \n",energyyo);
382 printf(" fXEen_maxplane:........ %f \n",fXEen_maxplane);
383 printf(" fXOen_maxplane:........ %f \n",fXOen_maxplane);
384 printf(" fYEen_maxplane:........ %f \n",fYEen_maxplane);
385 printf(" fYOen_maxplane:........ %f \n",fYOen_maxplane);
386 printf(" x0max :.............. %f \n",x0max);
387 printf(" debug :.............. %i \n",debug);
388
389 printf("========================================================================\n");
390 //
391 }
392
393 void CaloEnergy::Delete(){
394 Clear();
395 delete this;
396 }
397
398
399 Bool_t CaloEnergy::IsInsideAcceptance(TString section){
400 //
401 // check if the event is inside the acceptance of the given section(s)
402 //
403 TString ntr = section;
404 if ( !L2 ){
405 printf(" ERROR: cannot find PamLevel2 object, use the correct constructor or check your program!\n");
406 printf(" ERROR: CaloEnergy variables not filled \n");
407 return false;
408 };
409 //
410 Bool_t newentry = false;
411 //
412 if ( L2->IsORB() ){
413 if ( L2->GetOrbitalInfo()->pkt_num != APKT || L2->GetOrbitalInfo()->OBT != AOBT || L2->GetOrbitalInfo()->absTime != aatime || strcmp(ntr.Data(),asntr.Data()) ){
414 newentry = true;
415 AOBT = L2->GetOrbitalInfo()->OBT;
416 APKT = L2->GetOrbitalInfo()->pkt_num;
417 aatime = L2->GetOrbitalInfo()->absTime;
418 asntr = ntr;
419 };
420 } else {
421 newentry = true;
422 };
423 //
424 // if we have already called this method for this event and no input changed then return fSel and exit
425 //
426 if ( !newentry ) return fSel;
427 //
428 // process the event
429 //
430 if ( debug ) printf(" ########## IsInsideAcceptance ######### \n");
431 //
432 // clear variables
433 //
434 this->Clear();
435 //
436 section.ToUpper();
437 //
438 // Count the number of section(s) given as input
439 //
440 Int_t fNumSec = Int_t(section.Contains("XO"))+Int_t(section.Contains("XE"))+Int_t(section.Contains("YO"))+Int_t(section.Contains("YE"));
441 if ( !fNumSec ){
442 printf(" ERROR: section must be XO or XE or YO or YE while it is %s \n",section.Data());
443 return false;
444 };
445 //
446 // If the presampler object exists then use the presampler output instead of the level2 output
447 //
448 CaloLevel2 *cl2 = NULL;
449 if ( cp ){
450 cl2 = cp->GetCaloLevel2();
451 } else {
452 cl2 = L2->GetCaloLevel2();
453 };
454 //
455 // get the energy for every strip of the calorimeter
456 //
457 for (Int_t ch=0; ch< L2->GetCaloLevel1()->istrip; ch++){
458 en = L2->GetCaloLevel1()->DecodeEstrip(ch,view,plane,strip);
459 enstrip[view][plane][strip]=en;
460 };
461 //
462 // sum energy plane by plane for each sections
463 //
464 for (Int_t i=0;i<11;i++){
465 for(strip=0; strip<96; strip++) {
466 if ( fRad < 0 ){
467 //
468 // run over all the strips of the plane
469 //
470 en_xep[i] += enstrip[1][2*i][strip];
471 en_yop[i] += enstrip[0][2*i][strip];
472 en_xop[i] += enstrip[1][(2*i)+1][strip];
473 en_yep[i] += enstrip[0][(2*i)+1][strip];
474 } else {
475 //
476 // use only the strips inside a cylinder of given radius fRad
477 //
478 if ( strip >= cl2->cibar[2*i][1]-1-fRad && strip <= cl2->cibar[2*i][1]-1+fRad ) en_xep[i] += enstrip[1][2*i][strip];
479 if ( strip >= cl2->cibar[2*i][0]-1-fRad && strip <= cl2->cibar[2*i][0]-1+fRad ) en_yop[i] += enstrip[0][2*i][strip];
480 if ( strip >= cl2->cibar[(2*i)+1][1]-1-fRad && strip <= cl2->cibar[(2*i)+1][1]-1+fRad ) en_xop[i] += enstrip[1][(2*i)+1][strip];
481 if ( strip >= cl2->cibar[(2*i)+1][0]-1-fRad && strip <= cl2->cibar[(2*i)+1][0]-1+fRad ) en_yep[i] += enstrip[0][(2*i)+1][strip];
482 };
483 };
484 energyxe += en_xep[i];
485 energyyo += en_yop[i];
486 energyxo += en_xop[i];
487 energyye += en_yep[i];
488 };
489 //
490 // Find the plane of maximum for each section
491 //
492 //
493 Int_t xen = 0;
494 Int_t yon = 0;
495 Int_t xon = 0;
496 Int_t yen = 0;
497 //
498 if ( section.Contains("XE") ){
499 yon++;
500 xon++;
501 yen++;
502 for (Int_t ipl =0; ipl < 11; ipl ++) {
503 if(en_xep[ipl] > xemax_en) {
504 xemax_en = en_xep[ipl];
505 fMax_planexe = ipl;
506 };
507 };
508 };
509 //
510 if ( section.Contains("YO") ){
511 xon++;
512 yen++;
513 for (Int_t ipl =0; ipl < 11; ipl ++) {
514 if(en_yop[ipl] > yomax_en) {
515 yomax_en = en_yop[ipl];
516 fMax_planeyo = ipl;
517 };
518 };
519 };
520 //
521 if ( section.Contains("XO") ){
522 yen++;
523 for (Int_t ipl =0; ipl < 11; ipl ++) {
524 if(en_xop[ipl] > xomax_en) {
525 xomax_en = en_xop[ipl];
526 fMax_planexo = ipl;
527 };
528 };
529 };
530 //
531 if ( section.Contains("YE") ){
532 for (Int_t ipl =0; ipl < 11; ipl ++) {
533 if(en_yep[ipl] > yemax_en) {
534 yemax_en = en_yep[ipl];
535 fMax_planeye = ipl;
536 };
537 };
538 };
539 //
540 // the maximum is given externally as X0, convert it to plane and section
541 //
542 if ( x0max > 0. ){
543 if ( debug ) printf(" CALCULATE MAX PLANE GIVEN X0 ASSUMING PERPENDICULAR TRACK \n");
544 Int_t wpl = (Int_t)roundf(x0max/0.76);
545 Bool_t isY = false;
546 if ( ((x0max/0.76)-(Float_t)wpl) > 0. ) isY = true;
547 xomax_en = 0.;
548 yemax_en = 0.;
549 xemax_en = 0.;
550 yomax_en = 0.;
551 //
552 if ( !(wpl%2) ){
553 // 0, 2, 4, ...
554 if ( isY ){
555 if ( section.Contains("YO") ) yomax_en = 1000.;
556 if ( section.Contains("XE") ) xemax_en = 500.;
557 fMax_planeyo=wpl/2;
558 fMax_planexe=wpl/2;
559 if ( section.Contains("XO") ) xomax_en = 10.;
560 if ( section.Contains("YE") ) yemax_en = 5.;
561 } else {
562 if ( section.Contains("YO") ) yomax_en = 500.;
563 if ( section.Contains("XE") ) xemax_en = 1000.;
564 fMax_planeyo=wpl/2;
565 fMax_planexe=wpl/2;
566 if ( section.Contains("XO") ) xomax_en = 5.;
567 if ( section.Contains("YE") ) yemax_en = 10.;
568 };
569 } else {
570 // 1, 3, 5, ...
571 if ( isY ){
572 if ( section.Contains("YE") ) yemax_en = 1000.;
573 if ( section.Contains("XO") ) xomax_en = 500.;
574 fMax_planeye=(wpl-1)/2;
575 fMax_planexo=(wpl-1)/2;
576 if ( section.Contains("XE") ) xemax_en = 10.;
577 if ( section.Contains("YO") ) yomax_en = 5.;
578 } else {
579 if ( section.Contains("YE") ) yemax_en = 500.;
580 if ( section.Contains("XO") ) xomax_en = 1000.;
581 fMax_planeye=(wpl-1)/2;
582 fMax_planexo=(wpl-1)/2;
583 if ( section.Contains("XE") ) xemax_en = 5.;
584 if ( section.Contains("YO") ) yomax_en = 10.;
585 };
586 };
587 if ( debug ) printf(" x0max %f x0max/0.76 %f wpl %i isY %i yomax_en %f xemax_en %f yemax_en %f xomax_en %f fMaxplane %i %i %i %i\n",x0max,(x0max/0.76),wpl,isY,yomax_en,xemax_en,yemax_en,xomax_en,fMax_planeyo,fMax_planexe,fMax_planeye,fMax_planexo);
588 };
589 //
590 Int_t nPl = fPl;
591 //
592 // Set the maximum in case of coherent mode was selected
593 //
594 if ( !indep ){
595 nPl = 0;
596 if ( debug ) printf(" A: Check maximum, coherent mode: xoen %f yoen %f xeen %f yeen %f xomax %i yomax %i xemax %i yemax %i\n",xomax_en,yomax_en,xemax_en,yemax_en,fMax_planexo,fMax_planeyo,fMax_planexe,fMax_planeye);
597 Int_t nummod = 0;
598 Int_t numexpl = 0;
599 if ( xomax_en > xemax_en && xomax_en > yemax_en && xomax_en > yomax_en ){
600 //
601 // Section XO contains the maximum energy release per plane of the whole calorimeter
602 //
603 if ( debug ) printf(" XO is MAX %i %i %i %i\n",xen,yon,xon,yen);
604 //
605 // fMax_plane is the plane of maximum + number of additional dE/dx measurement counting planes from 0 to 43
606 //
607 fMax_plane = (fNumSec * fMax_planexo) +(Float_t)xon + fPl;
608 //
609 // nummod is the integer part of the number of modules in which the maximum is contained
610 //
611 nummod = (Int_t)(((Float_t)fMax_plane)/(Float_t)fNumSec);
612 //
613 // numexpl is the number of additional planes (0,1,2) inside the module
614 //
615 numexpl = (Int_t)((Float_t)fMax_plane-(Float_t)fNumSec*(Float_t)nummod);
616 //
617 };
618 if ( xemax_en > xomax_en && xemax_en > yemax_en && xemax_en > yomax_en ){
619 if ( debug ) printf(" XE is MAX %i %i %i %i\n",xen,yon,xon,yen);
620 fMax_plane = (fNumSec * fMax_planexe) +(Float_t)xen + fPl;
621 nummod = (Int_t)(((Float_t)fMax_plane)/(Float_t)fNumSec);
622 numexpl = (Int_t)((Float_t)fMax_plane-(Float_t)fNumSec*(Float_t)nummod);
623 //
624 };
625
626 if ( yemax_en > xomax_en && yemax_en > xemax_en && yemax_en > yomax_en ){
627 if ( debug ) printf(" YE is MAX %i %i %i %i\n",xen,yon,xon,yen);
628 fMax_plane = (fNumSec * fMax_planeye) +(Float_t)yen + fPl;
629 nummod = (Int_t)(((Float_t)fMax_plane)/(Float_t)fNumSec);
630 numexpl = (Int_t)((Float_t)fMax_plane-(Float_t)fNumSec*(Float_t)nummod);
631 //
632 };
633 if ( yomax_en > xemax_en && yomax_en > yemax_en && yomax_en > xomax_en ){
634 if ( debug ) printf(" YO is MAX %i %i %i %i\n",xen,yon,xon,yen);
635 fMax_plane = (fNumSec * fMax_planeyo) +(Float_t)yon + fPl;
636 nummod = (Int_t)(((Float_t)fMax_plane)/(Float_t)fNumSec);
637 numexpl = (Int_t)((Float_t)fMax_plane-(Float_t)fNumSec*(Float_t)nummod);
638 //
639 };
640 //
641 // find the plane up to which is necessary to integrate the energy for each section
642 //
643 Int_t a = 0;
644 Int_t b = 0;
645 Int_t c = 0;
646 if ( numexpl > xen ) a = 1;
647 if ( numexpl > yon ) b = 1;
648 if ( numexpl > xon ) c = 1;
649 fMax_planexe = nummod;
650 fMax_planeyo = nummod - 1 + a;
651 fMax_planexo = nummod - 1 + b;
652 fMax_planeye = nummod - 1 + c;
653 if ( debug ) printf(" fMax_plane %f nummod %i numexpl %i a %i b %i c %i \n",fMax_plane,nummod,numexpl,a,b,c);
654 if ( debug ) printf(" DONE: Check maximum, coherent mode: xoen %f yoen %f xeen %f yeen %f xomax %i yomax %i xemax %i yemax %i\n",xomax_en,yomax_en,xemax_en,yemax_en,fMax_planexo,fMax_planeyo,fMax_planexe,fMax_planeye);
655 };
656 //
657 // for each plane of the calorimeter find the position of the track in the direction along the strip (where we do not have a measurement from the selected plane) by looking at the plane above/below of the other view and extrapolating the trajectory to the given plane
658 //
659 Float_t track_coordx[22][2];
660 Float_t track_coordy[22][2];
661 //
662 Float_t tgx_cl2;
663 Float_t tgy_cl2;
664 tgx_cl2 = cl2->tanx[0];
665 tgy_cl2 = cl2->tany[0];
666 //
667 for (Int_t p=0; p<22; p++){
668 track_coordy[p][1] = cl2->cbar[p][1];
669 track_coordx[p][1] = cl2->cbar[p][0] - fabs(trk_z[p][1]-trk_z[p][0])*tgx_cl2;
670 track_coordx[p][0] = cl2->cbar[p][0];
671 track_coordy[p][0] = cl2->cbar[p][1] - fabs(trk_z[p][1]-trk_z[p][0])*tgy_cl2;
672 if ( debug ) printf(" p %i track_coordy[p][1] %f track_coordx[p][1] %f track_coordx[p][0] %f track_coordy[p][0] %f \n",p,track_coordy[p][1],track_coordx[p][1],track_coordx[p][0],track_coordy[p][0]);
673 };
674 //
675 if ( debug ) printf(" acceptance fNumSec %i tgx %f tgy %f\n",fNumSec,tgx_cl2,tgy_cl2);
676 //
677 if ( section.Contains("XO") ){
678 //
679 // check event is inside XO acceptance
680 //
681 for (Int_t i=0; i<11; i++) {
682 if
683 (
684 (((track_coordx[(2*i)+1][1]>=(-12.054+fM))&&
685 (track_coordx[(2*i)+1][1]<=(-4.246-fM)))&&
686 (((cl2->cbar[(2*i)+1][1]>=xo1 + fM1)&&
687 (cl2->cbar[(2*i)+1][1]<=xo2 - fM1 ))||
688 ((cl2->cbar[(2*i)+1][1]>=xo3 + fM1)&&
689 (cl2->cbar[(2*i)+1][1]<=xo4 - fM1 ))||
690 ((cl2->cbar[(2*i)+1][1]>=xo5 + fM1)&&
691 (cl2->cbar[(2*i)+1][1]<=xo6 - fM1 ))))||
692
693 (((track_coordx[(2*i)+1][1]>=(-4.004+fM))&&
694 (track_coordx[(2*i)+1][1]<=(3.804-fM)))&&
695 (((cl2->cbar[(2*i)+1][1]>=xo1 + fM1)&&
696 (cl2->cbar[(2*i)+1][1]<=xo2 - fM1 ))||
697 ((cl2->cbar[(2*i)+1][1]>=xo3 + fM1)&&
698 (cl2->cbar[(2*i)+1][1]<=xo4 - fM1))||
699 ((cl2->cbar[(2*i)+1][1]>=xo5 + fM1)&&
700 (cl2->cbar[(2*i)+1][1]<=xo6 - fM1 ))))||
701
702 (((track_coordx[(2*i)+1][1]>=(4.046+fM))&&
703 (track_coordx[(2*i)+1][1]<=(11.854-fM)))&&
704 (((cl2->cbar[(2*i)+1][1]>=xo1 + fM1)&&
705 (cl2->cbar[(2*i)+1][1]<=xo2 - fM1))||
706 ((cl2->cbar[(2*i)+1][1]>=xo3 + fM1)&&
707 (cl2->cbar[(2*i)+1][1]<=xo4 - fM1 ))||
708 ((cl2->cbar[(2*i)+1][1]>=xo5 + fM1)&&
709 (cl2->cbar[(2*i)+1][1]<=xo6 - fM1 ))))
710 ){
711 fXosel = true;
712 fXoout = i;
713 } else {
714 fXosel = false;
715 break;
716 };
717 };
718 //
719 // if it goes out of the acceptance BUT the plane up to which we are integrating the energy is contained then the event is "partially" contained
720 //
721 if ( !fXosel && fXoout >= fXomin && fXoout >= (Int_t)(fMax_planexo+nPl) ){
722 if ( debug ) printf(" XO: this event is only partially contained: fXoout %i fXomin %i fMax_planexo + nPl %i \n",fXoout,fXomin,(Int_t)(fMax_planexo+nPl));
723 fPartsel = true;
724 fXosel = true;
725 };
726 //
727 // event is contained (or partially contained) hence we can integrate energy up to the maximum and calculate the energy as measured by this section
728 //
729 if ( fXosel ){
730 for (Int_t iplm=0;iplm<=TMath::Min(10,(Int_t)(fMax_planexo+nPl)) ;iplm++){
731 fXOen_maxplane += en_xop[iplm];
732 if ( debug ) printf(" XO iplm %i fXOen_maxplane %f en_xop[iplm] %f\n",iplm,fXOen_maxplane,en_xop[iplm]);
733 };
734 fEnergyxo = fXOen_maxplane/fConv_rxo;
735 };
736 };
737 //
738 if ( section.Contains("XE") ){
739 for (Int_t i=0; i<11; i++) {
740 if
741 (
742 (((track_coordx[2*i][1]>=(-11.854+fM))&&
743 (track_coordx[2*i][1]<=(-4.046-fM)))&&
744 (((cl2->cbar[2*i][1]>=xe1 + fM1)&&
745 (cl2->cbar[2*i][1]<=xe2 - fM1 ))||
746 ((cl2->cbar[2*i][1]>=xe3 + fM1)&&
747 (cl2->cbar[2*i][1]<=xe4 - fM1 ))||
748 ((cl2->cbar[2*i][1]>=xe5 + fM1)&&
749 (cl2->cbar[2*i][1]<=xe6 - fM1 ))))||
750
751 (((track_coordx[2*i][1]>=(-3.804+fM))&&
752 (track_coordx[2*i][1]<=(4.004-fM)))&&
753 (((cl2->cbar[2*i][1]>=xe1 + fM1)&&
754 (cl2->cbar[2*i][1]<=xe2 - fM1 ))||
755 ((cl2->cbar[2*i][1]>=xe3 + fM1)&&
756 (cl2->cbar[2*i][1]<=xe4 - fM1))||
757 ((cl2->cbar[2*i][1]>=xe5 + fM1)&&
758 (cl2->cbar[2*i][1]<=xe6 - fM1 ))))||
759
760 (((track_coordx[2*i][1]>=(4.246+fM))&&
761 (track_coordx[2*i][1]<=(12.054-fM)))&&
762 (((cl2->cbar[2*i][1]>=xe1 + fM1)&&
763 (cl2->cbar[2*i][1]<=xe2 - fM1))||
764 ((cl2->cbar[2*i][1]>=xe3 + fM1)&&
765 (cl2->cbar[2*i][1]<=xe4 - fM1 ))||
766 ((cl2->cbar[2*i][1]>=xe5 + fM1)&&
767 (cl2->cbar[2*i][1]<=xe6 - fM1 ))))
768 ){
769 fXesel = true;
770 fXeout = i;
771 } else {
772 fXesel = false;
773 break;
774 };
775 };
776 if ( !fXesel && fXeout >= fXemin && fXeout >= (Int_t)(fMax_planexe+nPl) ){
777 if ( debug ) printf(" XE: this event is only partially contained: fXeout %i fXemin %i fMax_planexe + nPl %i \n",fXeout,fXemin,(Int_t)(fMax_planexe+nPl));
778 fPartsel = true;
779 fXesel = true;
780 };
781 if ( fXesel ){
782 for (Int_t iplm=0;iplm<=TMath::Min(10,(Int_t)(fMax_planexe+nPl)) ;iplm++){
783 fXEen_maxplane += en_xep[iplm];
784 if ( debug ) printf(" XE iplm %i fXOen_maxplane %f en_xop[iplm] %f\n",iplm,fXEen_maxplane,en_xep[iplm]);
785 };
786 fEnergyxe = fXEen_maxplane/fConv_rxe;
787 };
788 };
789 //
790 if ( section.Contains("YE") ){
791 for (Int_t i=0; i<11; i++) {
792 if
793 (
794 (((track_coordy[(2*i)+1][0]>=(-12.154+fM))&&
795 (track_coordy[(2*i)+1][0]<=(-4.346-fM)))&&
796 (((cl2->cbar[(2*i)+1][0]>=ye1 + fM1)&&
797 (cl2->cbar[(2*i)+1][0]<=ye2 - fM1 ))||
798 ((cl2->cbar[(2*i)+1][0]>=ye3 + fM1)&&
799 (cl2->cbar[(2*i)+1][0]<=ye4 - fM1 ))||
800 ((cl2->cbar[(2*i)+1][0]>=ye5 + fM1)&&
801 (cl2->cbar[(2*i)+1][0]<=ye6 - fM1 ))))||
802
803 (((track_coordy[(2*i)+1][0]>=(-4.104+fM))&&
804 (track_coordy[(2*i)+1][0]<=(3.704-fM)))&&
805 (((cl2->cbar[(2*i)+1][0]>=ye1 + fM1)&&
806 (cl2->cbar[(2*i)+1][0]<=ye2 - fM1 ))||
807 ((cl2->cbar[(2*i)+1][0]>=ye3 + fM1)&&
808 (cl2->cbar[(2*i)+1][0]<=ye4 - fM1))||
809 ((cl2->cbar[(2*i)+1][0]>=ye5 + fM1)&&
810 (cl2->cbar[(2*i)+1][0]<=ye6 - fM1 ))))||
811
812 (((track_coordy[(2*i)+1][0]>=(3.946+fM))&&
813 (track_coordy[(2*i)+1][0]<=(11.754-fM)))&&
814 (((cl2->cbar[(2*i)+1][0]>=ye1 + fM1)&&
815 (cl2->cbar[(2*i)+1][0]<=ye2 - fM1))||
816 ((cl2->cbar[(2*i)+1][0]>=ye3 + fM1)&&
817 (cl2->cbar[(2*i)+1][0]<=ye4 - fM1 ))||
818 ((cl2->cbar[(2*i)+1][0]>=ye5 + fM1)&&
819 (cl2->cbar[(2*i)+1][0]<=ye6 - fM1 ))))
820 ){
821 fYesel = true;
822 fYeout = i;
823 } else {
824 fYesel = false;
825 break;
826 };
827 };
828 if ( !fYesel && fYeout >= fYemin && fYeout >= (Int_t)(fMax_planeye+nPl) ){
829 if ( debug ) printf(" YE: this event is only partially contained: fYeout %i fYemin %i fMax_planeye + nPl %i \n",fYeout,fYemin,(Int_t)(fMax_planeye+nPl));
830 fPartsel = true;
831 fYesel = true;
832 };
833 if ( fYesel ){
834 for (Int_t iplm=0;iplm<=TMath::Min(10,(Int_t)(fMax_planeye+nPl)) ;iplm++) fYEen_maxplane += en_yep[iplm];
835 fEnergyye = fYEen_maxplane/fConv_rye;
836 };
837 };
838 //
839 if ( section.Contains("YO") ){
840 for (Int_t i=0; i<11; i++) {
841 if ( debug ) printf(" i %i track_coordy[2*i][0] %f cl2->cbar[2*i][0] %f \n",i,track_coordy[2*i][0],cl2->cbar[2*i][0]);
842 if ( debug ) printf(" i %i fm %f fm1 %f yo1 %g yo2 %f yo3 %f yo4 %f yo5 %f yo6 %f \n",i,fM,fM1,yo1,yo2,yo3,yo4,yo5,yo6);
843 if
844 (
845 (((track_coordy[2*i][0]>=(-11.954+fM))&&
846 (track_coordy[2*i][0]<=(-4.146-fM)))&&
847 (((cl2->cbar[2*i][0]>=yo1 + fM1)&&
848 (cl2->cbar[2*i][0]<=yo2 - fM1 ))||
849 ((cl2->cbar[2*i][0]>=yo3 + fM1)&&
850 (cl2->cbar[2*i][0]<=yo4 - fM1 ))||
851 ((cl2->cbar[2*i][0]>=yo5 + fM1)&&
852 (cl2->cbar[2*i][0]<=yo6 - fM1 ))))||
853
854 (((track_coordy[2*i][0]>=(-3.904+fM))&&
855 (track_coordy[2*i][0]<=(+3.904-fM)))&&
856 (((cl2->cbar[2*i][0]>=yo1 + fM1)&&
857 (cl2->cbar[2*i][0]<=yo2 - fM1 ))||
858 ((cl2->cbar[2*i][0]>=yo3 + fM1)&&
859 (cl2->cbar[2*i][0]<=yo4 - fM1))||
860 ((cl2->cbar[2*i][0]>=yo5 + fM1)&&
861 (cl2->cbar[2*i][0]<=yo6 - fM1 ))))||
862
863 (((track_coordy[2*i][0]>=(4.146+fM))&&
864 (track_coordy[2*i][0]<=(11.954-fM)))&&
865 (((cl2->cbar[2*i][0]>=yo1 + fM1)&&
866 (cl2->cbar[2*i][0]<=yo2 - fM1))||
867 ((cl2->cbar[2*i][0]>=yo3 + fM1)&&
868 (cl2->cbar[2*i][0]<=yo4 - fM1 ))||
869 ((cl2->cbar[2*i][0]>=yo5 + fM1)&&
870 (cl2->cbar[2*i][0]<=yo6 - fM1 ))))
871 ){
872 fYosel = true;
873 fYoout = i;
874 } else {
875 fYosel = false;
876 break;
877 };
878 };
879 if ( !fYosel && fYoout >= fYomin && fYoout >= (Int_t)(fMax_planeyo+nPl) ){
880 if ( debug ) printf(" YO: this event is only partially contained: fYoout %i fYomin %i fMax_planeyo + nPl %i \n",fYoout,fYomin,(Int_t)(fMax_planeyo+nPl));
881 fPartsel = true;
882 fYosel = true;
883 };
884 if ( fYosel ){
885 for (Int_t iplm=0;iplm<=TMath::Min(10,(Int_t)(fMax_planeyo+nPl)) ;iplm++) fYOen_maxplane += en_yop[iplm];
886 fEnergyyo = fYOen_maxplane/fConv_ryo;
887 };
888 };
889 //
890 // Count the number of sections in which the event is contained
891 //
892 fCount = (Float_t)((Int_t)fXesel+(Int_t)fXosel+(Int_t)fYesel+(Int_t)fYosel);
893 //
894 if ( indep ){
895 //
896 // independent mode, average the energy measurement and max plane of the contained sections
897 //
898 fSel = ( fXesel || fYesel || fXosel || fYosel );
899 fMax_plane = (Float_t)(fMax_planeyo+fMax_planeye+fMax_planexo+fMax_planexe)/fCount;
900 fEnergy = (fEnergyxe+fEnergyyo+fEnergyye+fEnergyxo)/fCount;
901 //
902 } else {
903 //
904 // coherent mode, sum the energy [MIP] of the given sections and convert using fConv_rxo. **** NB: it is assumed that the conversion factor is unique and the method SetConvertionFactor(Float_t) has been used**** The event is selected only if it is contained in all the given sections
905 //
906 if ( fCount != fNumSec ){
907 fSel = false;
908 } else {
909 fSel = true;
910 };
911 fEnergy = (fXEen_maxplane+fYOen_maxplane+fYEen_maxplane+fXOen_maxplane)/fConv_rxo;
912 };
913 //
914 if ( debug ) printf("sel %i indep %i fMax_plane %f conv_r %f en_maxplane %f encalo %f \n",fSel,indep,fMax_plane,fConv_rxo,fXOen_maxplane,fEnergy);
915 if ( debug ) printf(" IsInside XE %i XO %i YE %i YO %i => SEL %i \n",fXesel,fXosel,fYesel,fYosel,fSel);
916 //
917 // finish exit
918 //
919 return fSel;
920 //
921 }
922
923 void CaloEnergy::Process(){
924 TString xo = "XO";
925 this->Process(xo);
926 }
927
928
929 void CaloEnergy::Process(TString section){
930 //
931 // process the event
932 //
933 TString ntr = section;
934 if ( !L2 ){
935 printf(" ERROR: cannot find PamLevel2 object, use the correct constructor or check your program!\n");
936 printf(" ERROR: CaloEnergy variables not filled \n");
937 return;
938 };
939 //
940 Bool_t newentry = false;
941 //
942 if ( L2->IsORB() ){
943 if ( L2->GetOrbitalInfo()->pkt_num != PKT || L2->GetOrbitalInfo()->OBT != OBT || L2->GetOrbitalInfo()->absTime != atime || strcmp(ntr.Data(),sntr.Data()) ){
944 newentry = true;
945 OBT = L2->GetOrbitalInfo()->OBT;
946 PKT = L2->GetOrbitalInfo()->pkt_num;
947 atime = L2->GetOrbitalInfo()->absTime;
948 sntr = ntr;
949 };
950 } else {
951 newentry = true;
952 };
953 //
954 // if we have already called this method for this event and no input changed then return fSel and exit
955 //
956 if ( !newentry ) return;
957 //
958 // process the event
959 //
960 if ( debug ) printf(" Processing event at OBT %u PKT %u time %u section %s\n",OBT,PKT,atime,section.Data());
961 //
962 // check if the cylinder of integration can go out of the sensor given the frame which has been set (if we use all the calorimeter fRad is < 0 and the printout is suppressed)
963 //
964 if ( (fM1+0.122-0.244*(Float_t)fRad) < 0. ) printf("Error: (fM1+0.122-0.244*(Float_t)fRad) < 0. fM1 %f fRad %i %f \n",fM1,fRad,(fM1+0.122-0.244*(Float_t)fRad));
965 //
966 if ( fLong ){
967 if ( debug ) printf(" ==================================================================> LONGITUDINAL FIT! \n");
968 //
969 // use long fit to measure energy
970 //
971 if ( this->IsInsideAcceptance(section) ){
972 //
973 if ( debug ) printf(" ==================================================================> LONG INSIDE! \n");
974 //
975 Float_t myene[2][22];
976 memset(myene,0,(sizeof(Float_t))*2*22);
977 for (Int_t j=0; j<11; j++){
978 if ( section.Contains("XE") ) myene[1][2*j] = en_xep[j];
979 if ( section.Contains("YO") ) myene[0][2*j] = en_yop[j];
980 if ( section.Contains("XO") ) myene[1][(2*j)+1] = en_xop[j];
981 if ( section.Contains("YE") ) myene[0][(2*j)+1] = en_yep[j];
982 };
983 clong->UnMaskSections();
984 if ( !(section.Contains("YE")) ) clong->MaskSection("YE");
985 if ( !(section.Contains("YO")) ) clong->MaskSection("YO");
986 if ( !(section.Contains("XO")) ) clong->MaskSection("XO");
987 if ( !(section.Contains("XE")) ) clong->MaskSection("XE");
988 clong->ForceNextFit();
989 clong->SetEnergies(myene);
990 if ( debug ){
991 clong->Fit(true);
992 } else {
993 clong->Fit();
994 };
995 if ( clong->GetLowerLimit() != 0. || clong->GetUpperLimit() != 0. ){
996 fXOen_maxplane = clong->Get_defE0();
997 } else {
998 fXOen_maxplane = clong->Get_E0();
999 };
1000 fMax_plane = clong->Get_tmax();
1001 fYOen_maxplane = 0.;
1002 fYEen_maxplane = 0.;
1003 fXEen_maxplane = 0.;
1004 fEnergy=fXOen_maxplane/fConv_rxo;
1005 if ( fEnergy != fEnergy || clong->Get_fitresult() != 0 ) fEnergy = -1.;
1006 // if ( fEnergy != fEnergy ) fEnergy = 1.;
1007 //
1008 } else {
1009 //
1010 // if the event is not in the acceptance, return a negative energy.
1011 //
1012 if ( debug ) printf(" Outside acceptance \n");
1013 fEnergy *= -1.;
1014 //
1015 };
1016 //
1017 } else {
1018 //
1019 // use the energy measurement
1020 //
1021 if ( this->IsInsideAcceptance(section) ){
1022 //
1023 // the event is good
1024 //
1025 if ( debug ) printf(" XE %i XO %i YE %i YO %i \n",fXesel,fXosel,fYesel,fYosel);
1026 //
1027 } else {
1028 //
1029 // if the event is not in the acceptance, return a negative energy.
1030 //
1031 if ( debug ) printf(" Outside acceptance \n");
1032 fEnergy *= -1.;
1033 //
1034 };
1035 };
1036 //
1037 }

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