/[PAMELA software]/DarthVader/TrackerLevel2/src/F77/reductionflight.f
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Contents of /DarthVader/TrackerLevel2/src/F77/reductionflight.f

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Revision 1.9 - (show annotations) (download)
Mon Oct 16 12:36:52 2006 UTC (18 years, 2 months ago) by pam-fi
Branch: MAIN
Changes since 1.8: +6 -3 lines
filladc bug fixed

1 *************************************************************************
2 *
3 * Program reductionflight.f
4 *
5 * - reads readraw.f output files: LEVEL0 ntuple, and ped, sig and bad histograms
6 * - decodes raw data (DATATRACKER) using DSP ped, sig and bad values
7 * - looks for clusters information using ped, sig and bad values from
8 * DSP histograms
9 * - fills LEVEL1 ntuple
10 *
11 *************************************************************************
12
13 subroutine reductionflight(ierror)
14
15 include 'commontracker.f'
16 include 'level0.f'
17 include 'level1.f'
18 include 'common_reduction.f'
19 include 'calib.f'
20
21 data eventn_old/nviews*0/
22
23 integer ierror
24 ierror = 0
25
26 * -------------------------------------------------------
27 * STRIP MASK
28 * -------------------------------------------------------
29
30 c call stripmask !called later, after CN computation
31 call init_level1
32
33 c good1 = good0
34 c--------------------------------------------------
35 c check the LEVEL0 event status for missing
36 c sections or DSP alarms
37 c ==> set the variable GOOD1(12)
38 c--------------------------------------------------
39 do iv=1,nviews
40 if(DSPnumber(iv).gt.0.and.DSPnumber(iv).le.12)then
41 c ------------------------
42 c GOOD
43 c ------------------------
44 GOOD1(DSPnumber(iv))=0 !OK
45 c ------------------------
46 c CRC error
47 c ------------------------
48 if(crc(iv).eq.1) then
49 GOOD1(DSPnumber(iv)) = 2
50 goto 18 !next view
51 endif
52 c ------------------------
53 c online-software alarm
54 c ------------------------
55 if(
56 $ fl1(iv).ne.0.or.
57 $ fl2(iv).ne.0.or.
58 $ fl3(iv).ne.0.or.
59 $ fl4(iv).ne.0.or.
60 $ fl5(iv).ne.0.or.
61 $ fl6(iv).ne.0.or.
62 $ fc(iv).ne.0.or.
63 $ DATAlength(iv).eq.0.or.
64 $ .false.)then
65 GOOD1(DSPnumber(iv))=3
66 goto 18
67 endif
68 c ------------------------
69 c DSP-counter jump
70 c ------------------------
71 if(
72 $ eventn_old(iv).ne.0.and. !first event in this file
73 $ eventn(iv).ne.1.and. !first event in run
74 $ good_old(DSPnumber(iv)).ne.0.and. !previous event corrupted
75 $ .true.)then
76
77 if(eventn(iv).ne.(eventn_old(iv)+1))then
78 GOOD1(DSPnumber(iv))=4
79 goto 18
80 endif
81
82 endif
83 c ------------------------
84 18 continue
85 endif
86 enddo
87
88 ngood = 0
89 do iv = 1,nviews
90 eventn_old(iv) = eventn(iv)
91 good_old(iv) = good1(iv)
92 ngood = ngood + good1(iv)
93 enddo
94 c if(ngood.ne.0)print*,'* WARNING * LEVEL0 event status: '
95 c $ ,(good1(i),i=1,nviews)
96 c--------------------------------------------------
97 c read the variable DATATRACKER from LEVEL0
98 c and fill the variable ADC (invertin view 11)
99 c--------------------------------------------------
100 call filladc(iflag)
101 if(iflag.ne.0)then
102 c good1=0!<<<<<<<<<<<<<<<
103 c if(DEBUG)print*,'event ',eventn(1),' >>>>> decode ERROR'
104 ierror = 220
105 c goto 200
106 c print*,'filladc error'
107 endif
108
109 c--------------------------------------------------
110 c computes common noise for each VA1
111 c (excluding strips affected by signal,
112 c tagged with the flag CLSTR)
113 c--------------------------------------------------
114 do iv=1,nviews
115 ima=0
116 do ik=1,nva1_view
117 cn(iv,ik) = 0
118 cnn(iv,ik) = -1
119 mask_vk_ev(iv,ik)=1
120 iflag=0
121 if(mask_vk(iv,ik).eq.1)call cncomp(iv,ik,iflag)
122 c if(iflag.ne.0)good1=0
123 if(iflag.ne.0)then
124 ima=ima+1
125 mask_vk_ev(iv,ik)=0
126 ierror = 220
127 c$$$ if(verbose)
128 c$$$ $ print*,' * WARNING * Event ',eventn(1)
129 c$$$ $ ,': masked vk ',ik,' on view',iv
130 endif
131 enddo
132 100 format(' * WARNING * Event ',i7,' view',i3,': VK MASK ',24i1)
133 c if(ima.ne.0.and.verbose)print*,' * WARNING * Event ',eventn(1)
134 c $ ,' view',iv,': VK MASK '
135 c $ ,(mask_vk_ev(iv,ik),ik=1,nva1_view)
136 if(ima.ne.0.and.verbose)write(*,100)eventn(1),iv
137 $ ,(mask_vk_ev(iv,ik),ik=1,nva1_view)
138 enddo
139 c if(good1.eq.0)then
140 c ierror = 220
141 c endif
142
143 call stripmask !compute mask(i,j,k), combining mask_vk_ev and mask_vk
144 c---------------------------------------------
145 c loops on views, VA1 and strips,
146 c and computes strips signals using
147 c badstrip, pedestals, and
148 c sigma informations from histograms
149 c---------------------------------------------
150 flag_shower = .false.
151 ind=1 !clsignal array index
152
153 do iv=1,nviews !loop on views
154 do is=1,nstrips_view !loop on strips (1)
155 if(mod(iv,2).eq.1) then
156 C=== > Y view
157 value(is)= -(DBLE(adc(iv,nvk(is),nst(is)))
158 $ -cn(iv,nvk(is))-pedestal(iv,nvk(is),nst(is)))
159 $ *mask(iv,nvk(is),nst(is))
160 clseedcut(is)=clcuty*sigma(iv,nvk(is),nst(is))
161 $ *mask(iv,nvk(is),nst(is))
162 clinclcut(is)=incuty*sigma(iv,nvk(is),nst(is))
163 $ *mask(iv,nvk(is),nst(is))
164 ccc print*,"value(",is,")(reduction)= ",value(is)
165 else
166 C=== > X view
167 value(is)= (DBLE(adc(iv,nvk(is),nst(is)))
168 $ -cn(iv,nvk(is))-pedestal(iv,nvk(is),nst(is)))
169 $ *mask(iv,nvk(is),nst(is))
170 clseedcut(is)=clcutx*sigma(iv,nvk(is),nst(is))
171 $ *mask(iv,nvk(is),nst(is))
172 clinclcut(is)=incutx*sigma(iv,nvk(is),nst(is))
173 $ *mask(iv,nvk(is),nst(is))
174 endif
175 c$$$ print*,iv,is,' --- ',adc(iv,nvk(is),nst(is)),cn(iv,nvk(is))
176 c$$$ $ ,pedestal(iv,nvk(is),nst(is)),value(is)
177 c$$$ $ ,sigma(iv,nvk(is),nst(is))
178 c if(value(is).gt.clseedcut(is))
179 c $ print*,iv,is,' --- (ADC_PED_CN) ',value(is),clseedcut(is)
180 enddo !end loop on strips (1)
181 call search_cluster(iv)
182 c$$$ if(flag_shower.eqv..true.)then
183 c$$$ call init_level1
184 c$$$ good1=0
185 c$$$ goto 200 !jump to next event
186 c$$$ endif
187 ccc
188 ccc modified by Elena (08/2006)
189 ccc
190 if(.not.flag_shower)then
191 call save_cluster(iv)
192 else
193 fshower(iv) = 1
194 GOOD1(DSPn) = 11
195 endif
196 enddo ! end loop on views
197 do iv=1,nviews
198 do ik=1,nva1_view
199 cnev(iv,ik) = cn(iv,ik) !assigns computed CN to ntuple variables
200 cnnev(iv,ik) = cnn(iv,ik) !assigns computed CN to ntuple variables
201 ccc print*,"cnev(",iv,",",ik,")(reduction)= ",cnev(iv,ik)
202 enddo
203 enddo
204 C---------------------------------------------
205 C come here if GOOD1=0
206 C or the event has too many clusters
207 C---------------------------------------------
208 200 continue
209
210 ngood = 0
211 do iv = 1,nviews
212 ngood = ngood + good1(iv)
213 enddo
214 if(ngood.ne.0)print*,'* WARNING * Event ',eventn(1)
215 $ ,':LEVEL1 event status: '
216 $ ,(good1(i),i=1,nviews)
217 c------------------------------------------------------------------------
218 c
219 c closes files and exits
220 c
221 c------------------------------------------------------------------------
222 RETURN
223 END
224
225 ***...***...***...***...***...***...***...***...***...***...***...***...***...***...***...***
226 *
227 *
228 *
229 *
230 *
231 *
232 *
233 *
234 *
235 ***...***...***...***...***...***...***...***...***...***...***...***...***...***...***...***
236
237
238 subroutine init_level1
239
240 include 'commontracker.f'
241 include 'level1.f'
242 include 'level0.f'
243
244 c good1 = 0
245 do iv=1,12
246 good1(iv) = 1 !missing packet
247 enddo
248 nclstr1 = 0
249 totCLlength = 0
250 do ic=1,nclstrmax
251 view(ic) = 0
252 ladder(ic) = 0
253 indstart(ic) = 0
254 indmax(ic) = 0
255 maxs(ic) = 0
256 mult(ic) = 0
257 dedx(ic) = 0
258 whichtrack(ic) = 0
259
260 enddo
261 do id=1,maxlength !???
262 clsignal(id) = 0.
263 clsigma(id) = 0.
264 cladc(id) = 0.
265 clbad(id) = 0.
266 enddo
267 do iv=1,nviews
268 c crc1(iv)=0
269 do ik=1,nva1_view
270 cnev(iv,ik) = 0
271 cnnev(iv,ik) = 0
272 enddo
273 fshower(iv) = 0
274 enddo
275
276 return
277 end
278 *---***---***---***---***---***---***---***---***
279 *
280 *
281 *
282 *
283 *
284 *---***---***---***---***---***---***---***---***
285
286 subroutine search_cluster(iv)
287
288 include 'commontracker.f'
289 include 'level0.f'
290 include 'level1.f'
291 include 'calib.f'
292
293 include 'common_reduction.f'
294
295
296 c local variables
297 integer rmax,lmax !estremi del cluster
298 integer rstop,lstop !per decidere quali strip includere nel cluster
299 ! oltre il seed
300 integer first,last,diff !per includere le strip giuste... !???
301
302 integer multtemp !temporary multiplicity variable
303
304 external nst
305
306 c------------------------------------------------------------------------
307 c looks for clusters on each view
308 C : CERCO STRIP SOPRA CLSEEDCUT, POI SCORRO A DX FINCHE'
309 c NON TROVO
310 C STRIP PIU' BASSA (in segnale/rumore)
311 C => L'ULTIMA DELLA SERIE CRESCENTE
312 C (LA PIU' ALTA) E' IL
313 C CLUSTER SEED. POI SCORRO A SX E DX INCLUDENDO TUTTE
314 C LE STRIP (FINO A 17 AL
315 C MAX) CHE SUPERANO CLINCLCUT.
316 C QUANDO CERCO IL CLUSTER SEED SUCCESSIVO SALTO LA STRIP
317 C ADIACENTE A DESTRA
318 C DELL'ULTIMO CLUSTER SEED (CHE SARA' NECESSARIAMENTE
319 C PIU' BASSA) E PRENDO
320 C COME SEED UNA STRIP SOLO SE IL SUO SEGNALE E'
321 C MAGGIORE DI QUELLO DELLA STRIP
322 C PRECEDENTE (PRATICAMENTE PER EVITARE CHE L'ULTIMA
323 C STRIP DI UN GRUPPO DI STRIP
324 C TUTTE SOPRA IL CLSEEDCUT VENGA AUTOMATICAMENTE PRESA
325 C COME SEED... DEVE ESSERE
326 C PRESA SOLO SE IL CLUSTER E' DOUBLE PEAKED...)
327 c------------------------------------------------------------------------
328 c 6 ottobre 2003
329 c Elena: CLSEEDCUT = 7 (old value 10)
330 c Elena: CLINCLCUT = 4 (old value 5)
331
332 iseed=-999 !cluster seed index initialization
333
334 nclstr_view=0
335
336 do jl=1,nladders_view !1..3 !loops on ladders
337 first=1+nstrips_ladder*(jl-1) !1,1025,2049
338 last=nstrips_ladder*jl !1024,2048,3072
339 c X views have 1018 strips instead of 1024
340 if(mod(iv,2).eq.0) then
341 first=first+3
342 last=last-3
343 endif
344
345 do is=first,last !loop on strips in each ladder
346
347 if(is.le.iseed+1) goto 220
348 *******************************************************
349 * Elena 08/2006
350 * QUESTA PARTE NON E` ADEGUATA per cluster con grossi rilasci di carica
351 * perche` salva molte volte lo stesso cluster
352 * (salvo il cluster rispetto al primo massimo e basta...)
353 *******************************************************
354 c$$$c-----------------------------------------
355 c$$$c after a cluster seed as been found,
356 c$$$c look for next one skipping one strip on the right
357 c$$$c (i.e. look for double peak cluster)
358 c$$$c-----------------------------------------
359 c$$$ if(is.ne.first) then
360 c$$$ if(value(is).le.value(is-1)) goto 220
361 c$$$ endif
362 c$$$c-----------------------------------------
363 c$$$c skips cluster seed
364 c$$$c finding if strips values are descreasing (a strip
365 c$$$c can be a cluster seed only if previous strip value
366 c$$$c is lower)
367 c$$$c-----------------------------------------
368 *******************************************************
369 * LA RICERCA PARTE DALL'ULTIMA STRIP SALVATA (***TEMPORANEO****)
370 *******************************************************
371 if(is.le.iseed+rmax+1) goto 220
372 *******************************************************
373
374 if(value(is).gt.clseedcut(is)) then
375 ccc print*,"value(",is,")=",value(is),
376 ccc $ " .gt.clseedcut(",is,")=",clseedcut(is)
377 c-----------------------------------------
378 c possible SEED...
379 c-----------------------------------------
380 itemp=is
381 if(itemp.eq.last) goto 230 !estremo...
382 ****************************************************
383 * modificato da Elena (08/2006) per salvare
384 * il cluster intorno al massimo assoluto
385 ****************************************************
386 c$$$ do while(value(itemp)
387 c$$$ $ /sigma(iv,nvk(itemp),nst(itemp))
388 c$$$ $ .le.value(itemp+1)
389 c$$$ $ /sigma(iv,nvk(itemp+1),nst(itemp+1))) !BIAS: aggiustare il caso uguale!???
390 c$$$ itemp=itemp+1
391 c$$$ if(itemp.eq.last) goto 230 !stops if reaches last strip
392 c$$$ enddo ! of the ladder
393 do while(
394 $ value(itemp).le.value(itemp+1)
395 $ .and.value(itemp+1).gt.clseedcut(itemp+1))
396 itemp=itemp+1
397 if(itemp.eq.last) goto 230 !stops if reaches last strip
398 enddo ! of the ladder
399 230 continue
400 c-----------------------------------------
401 c fownd SEED!!!
402 c-----------------------------------------
403 iseed=itemp
404 c----------------------------------------------------------
405 c after finding a cluster seed, checks also adjacent strips,
406 C and marks the ones exceeding clinclcut
407 c----------------------------------------------------------
408 ir=iseed !indici destro
409 il=iseed ! e sinistro
410
411 rmax=ir !estremo destro del cluster
412 lmax=il ! e sinistro
413
414 rstop=0 !initialize flags used to exit from
415 lstop=0 ! inclusion loop
416
417 do while(lstop.eq.0.or.rstop.eq.0) !shifts left and right from
418 ir=ir+1 !position index for strips on right side of
419 ! cluster seed
420 il=il-1 !and for left side
421 c------------------------------------------------------------------------
422 c checks for last or first strip of the ladder
423 c------------------------------------------------------------------------
424 if(ir.gt.last) then !when index goes beyond last strip
425 rstop=1 ! of the ladder, change rstop flag in order
426 ! to "help" exiting from loop
427 endif
428
429 if(il.lt.first) then !idem when index goes beyond
430 lstop=1 ! first strip of the ladder
431 endif
432
433 c------------------------------------------------------------------------
434 c check for clusters including more than nclstrp strips
435 c------------------------------------------------------------------------
436 if((rmax-lmax+1).ge.nclstrp) then
437 goto 210 !exits inclusion loop:
438 ! lmax and rmax maintain last value
439 ! NB .ge.!???
440 endif
441 c------------------------------------------------------------------------
442 c marks strips exceeding inclusion cut
443 c------------------------------------------------------------------------
444 if(rstop.eq.0) then !if last strip of the ladder or last
445 ! over-cut strip has not been reached
446 if(value(ir).gt.clinclcut(ir)) then !puts in rmax the
447 rmax=ir ! last right over-cut strip
448 else
449 rstop=1 !otherwise cluster ends on right and rstop
450 endif ! flag=1 signals it
451 endif
452 if(lstop.eq.0) then
453 if(value(il).gt.clinclcut(il)) then
454 lmax=il
455 else
456 lstop=1
457 endif
458 endif
459
460 enddo !ends strip inclusion loop
461 210 continue !jumps here if more than nclstrp have been included
462
463 multtemp=rmax-lmax+1 !stores multiplicity in temp
464 ! variable. NB rmax and lmax can change later in
465 ! order to include enough strips to calculate eta3
466 ! and eta4. so mult is not always equal to cllength
467 c------------------------------------------------------------------------
468 c NB per essere sicuro di poter calcolare eta3 e eta4 devo includere
469 c sempre e comunque le 2 strip adiacenti al cluster seed e quella
470 c adiacente ulteriore dalla parte della piu' alta fra queste due
471 c (vedi oltre...)!???
472 c------------------------------------------------------------------------
473
474 c nel caso di estremi del ladder...!???
475
476 c ho meno di 4 strip nel cluster --> se sono sui bordi o quasi del ladder
477 c costruisco il cluster ad hoc e poi esco, se non sono sui bordi o quasi
478 c vado oltre (aggiungero' quindi strip a sx e dx in modo da poter calcolare
479 c eta3e4)
480 if((rmax-lmax+1).lt.4) then
481
482 if(iseed.eq.first) then !estremi...
483 rmax=iseed+2 !NB in questo modo puo' anche capitare di
484 lmax=iseed ! includere strip sotto taglio di inclusione
485 goto 250 ! che non serviranno per eta3e4!???
486 endif
487
488 if(iseed.eq.last) then !estremi...
489 rmax=iseed
490 lmax=iseed-2 !NB 2 e non 3, perche' altrimenti sarei in
491 goto 250 ! ((rmax-lmax+1).lt.4).eq.false. !???
492 endif !NMB questo e' l'unico caso di cllength=3!???
493
494 if(iseed.eq.first+1) then !quasi estremi...
495 rmax=iseed+2
496 lmax=iseed-1
497 goto 250
498 endif
499 if(iseed.eq.last-1) then
500 rmax=iseed+1
501 lmax=iseed-2
502 goto 250
503 endif
504 c se ho 4 o piu' strip --> se sono sui bordi esco, se sono sui quasi bordi
505 c includo la strip del bordo
506 else
507
508 if(iseed.eq.first) goto 250 !estremi... non includo altro
509 if(iseed.eq.last) goto 250
510 if(iseed.eq.first+1) then !quasi estremi... mi assicuro di
511 lmax=first ! avere le strip adiacenti al seed
512 if((rmax-lmax+1).gt.nclstrp) rmax=rmax-1 !NB effetto
513 goto 250 ! coperta: se la lunghezza del cluster era gia'
514 endif ! al limite (nclstrp), per poter aggiungere questa
515 ! strip a sinistra devo toglierne una a destra...!???
516 if(iseed.eq.last-1) then
517 rmax=last
518 if((rmax-lmax+1).gt.nclstrp) lmax=lmax+1
519 goto 250
520 endif
521 endif
522 c------------------------------------------------------------------------
523 c be sure to include in the cluster the cluster seed with its 2 adjacent
524 c strips, and the one adjacent to the greatest between this two strip, as the
525 c fourth one. if the strips have the same value (!) the fourth one is chosen
526 c as the one having the greatest value between the second neighbors
527 c------------------------------------------------------------------------
528 if(value(iseed+1).eq.value(iseed-1)) then
529 if(value(iseed+2).ge.value(iseed-2)) then !??? qui cmq c'e'
530 diff=(iseed+2)-rmax
531 if(diff.gt.0) then
532 rmax=rmax+diff
533 if((rmax-lmax+1).gt.nclstrp) then
534 lmax=rmax-nclstrp+1
535 endif
536 endif
537 diff=(iseed-1)-lmax
538 if(diff.lt.0) then
539 lmax=lmax+diff
540 if((rmax-lmax+1).gt.nclstrp) then
541 rmax=lmax+nclstrp-1
542 endif
543 endif
544 else
545 diff=(iseed-2)-lmax
546 if(diff.lt.0) then
547 lmax=lmax+diff
548 if((rmax-lmax+1).gt.nclstrp) then
549 rmax=lmax+nclstrp-1
550 endif
551 endif
552 diff=(iseed+1)-rmax
553 if(diff.gt.0) then
554 rmax=rmax+diff
555 if((rmax-lmax+1).gt.nclstrp) then
556 lmax=rmax-nclstrp+1
557 endif
558 endif
559 endif
560 elseif(value(iseed+1).gt.value(iseed-1)) then
561 c !??? sposto il limite del cluster a destra per includere sempre le strip
562 c necessarie al calcolo di eta-i
563 c se il cluster diventa troppo lungo lo accorcio a sinistra per avere non piu'
564 c di nclstrp (in questo caso sono sicuro di aver gia' incluso le strip
565 c necessarie al calcolo di eta-i a sinistra, quindi se voglio posso uscire)
566 diff=(iseed+2)-rmax
567 if(diff.gt.0) then
568 rmax=rmax+diff
569 if((rmax-lmax+1).gt.nclstrp) then
570 lmax=rmax-nclstrp+1
571 c goto 250
572 endif
573 endif
574 diff=(iseed-1)-lmax
575 if(diff.lt.0) then
576 lmax=lmax+diff
577 if((rmax-lmax+1).gt.nclstrp) then
578 rmax=lmax+nclstrp-1
579 c goto 250 !inutile!???
580 endif
581 endif
582 else
583 diff=(iseed-2)-lmax
584 if(diff.lt.0) then
585 lmax=lmax+diff
586 if((rmax-lmax+1).gt.nclstrp) then
587 rmax=lmax+nclstrp-1
588 c goto 250
589 endif
590 endif
591 diff=(iseed+1)-rmax
592 if(diff.gt.0) then
593 rmax=rmax+diff
594 if((rmax-lmax+1).gt.nclstrp) then
595 lmax=rmax-nclstrp+1
596 c goto 250 !inutile!???
597 endif
598 endif
599 endif
600 250 continue
601
602 c--------------------------------------------------------
603 c fills cluster variables
604 c--------------------------------------------------------
605 c$$$ nclstr1=nclstr1+1 !cluster number
606 c$$$ccc print*,nclstr1,multtemp
607 c$$$ if(nclstr1.gt.nclstrmax) then !too many clusters for the event:
608 c$$$ if(verbose)print*,'Event ',eventn(1),
609 c$$$ $ ': more than ',nclstrmax,' clusters'
610 c$$$ good1=0 ! event
611 c$$$ nclstr1=0
612 c$$$ totCLlength=0
613 c$$$ flag_shower = .true.
614 c$$$ goto 2000
615 c$$$ endif
616 c$$$ view(nclstr1) = iv !vista del cluster
617 c$$$ ladder(nclstr1) = nld(iseed,iv) !ladder a cui appartiene il cluster seed
618 c$$$ maxs(nclstr1) = iseed !strip del cluster seed
619 c$$$ mult(nclstr1) = multtemp !molteplicita'
620 c$$$
621 c$$$ indstart(nclstr1) = ind !posizione dell'inizio del cluster nell'
622 c$$$c ! array clsignal
623 c$$$ indmax(nclstr1) = indstart(nclstr1)+(iseed-lmax) !posizione del
624 c$$$c ! cluster seed nell'array clsignal
625 c$$$
626 c$$$ CLlength = rmax-lmax+1 !numero di strip del cluster
627 c$$$ totCLlength = totCLlength+CLlength
628 c$$$ dedx(nclstr1) = 0
629 c$$$ do j=lmax,rmax !stores sequentially cluter strip values in
630 c$$$ clsignal(ind) = value(j) ! clsignal array
631 c$$$ ind=ind+1
632 c$$$c if(value(j).gt.0)
633 c$$$ if(value(j).gt.clinclcut(j))
634 c$$$ $ dedx(nclstr1) = dedx(nclstr1) + value(j) !cluster charge
635 c$$$ enddo
636 ccc
637 ccc *** Modified by Elena (08/2006) ***
638 ccc
639 nclstr_view = nclstr_view + 1 !cluster number
640 c print*,'view ',iv,' -- search_cluster -- nclstr_view: '
641 c $ ,nclstr_view
642 if(nclstr_view.gt.nclstrmax_view) then !too many clusters for the view:
643 if(verbose) print*,'Event ',eventn(1),
644 $ ': more than ',nclstrmax_view
645 $ ,' clusters on view ',iv
646 c good1=0 ! event
647 c nclstr1=0
648 c totCLlength=0
649 flag_shower = .true.
650 goto 2000
651 endif
652
653 c view(nclstr1) = iv !vista del cluster
654 ladder_view(nclstr_view) = nld(iseed,iv) !ladder a cui appartiene il cluster seed
655 maxs_view(nclstr_view) = iseed !strip del cluster seed
656 mult_view(nclstr_view) = multtemp !molteplicita'
657 rmax_view(nclstr_view) = rmax
658 lmax_view(nclstr_view) = lmax
659
660 c--------------------------------------------------------
661 c
662 c--------------------------------------------------------
663 endif !end possible seed conditio
664 220 continue !jumps here to skip strips left of last seed
665
666 enddo ! end loop on strips
667 enddo !end loop on ladders
668 2000 continue
669 return
670 end
671
672
673 *---***---***---***---***---***---***---***---***
674 *
675 *
676 *
677 *
678 *
679 *---***---***---***---***---***---***---***---***
680
681 subroutine save_cluster(iv)
682 *
683 * (080/2006 Elena Vannuccini)
684 * Save the clusters view by view
685
686 include 'commontracker.f'
687 include 'level1.f'
688 include 'calib.f'
689 include 'common_reduction.f'
690
691 integer CLlength !lunghezza in strip del cluster
692
693 do ic=1,nclstr_view
694
695 nclstr1 = nclstr1+1
696 view(nclstr1) = iv
697 ladder(nclstr1) = ladder_view(ic)
698 maxs(nclstr1) = maxs_view(ic)
699 mult(nclstr1) = mult_view(ic)
700
701 c posizione dell'inizio del cluster nell' array clsignal
702 indstart(nclstr1) = ind
703 c posizione del cluster seed nell'array clsignal
704 indmax(nclstr1) = indstart(nclstr1)
705 $ +( maxs_view(ic) - lmax_view(ic) )
706
707 CLlength = rmax_view(ic) - lmax_view(ic) + 1 !numero di strip salvate
708 totCLlength = totCLlength + CLlength
709 dedx(nclstr1) = 0
710 do j=lmax_view(ic),rmax_view(ic) !stores sequentially cluter strip values in
711
712 clsignal(ind) = value(j) ! clsignal array
713
714 ivk=nvk(j)
715 ist=nst(j)
716
717 clsigma(ind) = sigma(iv,ivk,ist)
718 cladc(ind) = adc(iv,ivk,ist)
719 clbad(ind) = bad(iv,ivk,ist)
720 c clped(ind) = pedestal(iv,ivk,ist)
721
722 ind=ind+1
723 c if(value(j).gt.0)
724 if(value(j).gt.clinclcut(j))
725 $ dedx(nclstr1) = dedx(nclstr1) + value(j) !cluster charge
726 enddo
727
728 c print*,'view ',iv,' -- save_cluster -- nclstr1: '
729 c $ ,nclstr1,maxs(nclstr1),mult(nclstr1),dedx(nclstr1)
730
731 enddo
732
733 return
734 end
735 *---***---***---***---***---***---***---***---***
736 *
737 *
738 *
739 *
740 *
741 *---***---***---***---***---***---***---***---***
742
743
744 subroutine stripmask
745
746 * this routine set va1 and single-strip masks,
747 * on the basis of the VA1 mask saved in the DB
748 *
749 * mask(nviews,nva1_view,nstrips_va1) !strip mask
750 * mask_vk(nviews,nva1_view) !VA1 mask
751 *
752 include 'commontracker.f'
753 include 'level1.f'
754 include 'common_reduction.f'
755 include 'calib.f'
756
757 * init mask
758 do iv=1,nviews
759 do ivk=1,nva1_view
760 do is=1,nstrips_va1
761 c mask(iv,ivk,is) = mask_vk(iv,ivk)
762 mask(iv,ivk,is) = mask_vk(iv,ivk) * mask_vk_ev(iv,ivk)
763 enddo
764 enddo
765 enddo
766
767
768 return
769 end
770

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