23 |
integer ierror |
integer ierror |
24 |
ierror = 0 |
ierror = 0 |
25 |
|
|
26 |
* ------------------------------------------------------- |
c$$$ debug = .true. |
27 |
* STRIP MASK |
c$$$ verbose = .true. |
28 |
* ------------------------------------------------------- |
c$$$ warning = .true. |
29 |
|
|
|
c call stripmask !called later, after CN computation |
|
30 |
call init_level1 |
call init_level1 |
31 |
|
|
32 |
|
if(debug)print*,'-- check LEVEL0 status' |
33 |
|
|
34 |
c good1 = good0 |
c good1 = good0 |
35 |
c-------------------------------------------------- |
c-------------------------------------------------- |
36 |
c check the LEVEL0 event status for missing |
c check the LEVEL0 event status for missing |
42 |
c ------------------------ |
c ------------------------ |
43 |
c GOOD |
c GOOD |
44 |
c ------------------------ |
c ------------------------ |
45 |
GOOD1(DSPnumber(iv))=0 !OK |
GOOD1(DSPnumber(iv))=0 !OK |
46 |
c ------------------------ |
c ------------------------ |
47 |
c CRC error |
c CRC error |
48 |
c ------------------------ |
c ------------------------ |
92 |
good_old(iv) = good1(iv) |
good_old(iv) = good1(iv) |
93 |
ngood = ngood + good1(iv) |
ngood = ngood + good1(iv) |
94 |
enddo |
enddo |
95 |
c if(ngood.ne.0)print*,'* WARNING * LEVEL0 event status: ' |
if(debug.and.ngood.ne.0)print*,'* WARNING * LEVEL0 event status: ' |
96 |
c $ ,(good1(i),i=1,nviews) |
$ ,(good1(i),i=1,nviews) |
97 |
c-------------------------------------------------- |
c-------------------------------------------------- |
98 |
c read the variable DATATRACKER from LEVEL0 |
c read the variable DATATRACKER from LEVEL0 |
99 |
c and fill the variable ADC (invertin view 11) |
c and fill the variable ADC (invertin view 11) |
100 |
c-------------------------------------------------- |
c-------------------------------------------------- |
101 |
|
|
102 |
|
if(debug)print*,'-- fill ADC vectors' |
103 |
|
|
104 |
call filladc(iflag) |
call filladc(iflag) |
105 |
if(iflag.ne.0)then |
if(iflag.ne.0)then |
|
c good1=0!<<<<<<<<<<<<<<< |
|
|
c if(DEBUG)print*,'event ',eventn(1),' >>>>> decode ERROR' |
|
106 |
ierror = 220 |
ierror = 220 |
|
c goto 200 |
|
|
c print*,'filladc error' |
|
107 |
endif |
endif |
108 |
|
|
109 |
c-------------------------------------------------- |
c-------------------------------------------------- |
110 |
c computes common noise for each VA1 |
c computes common noise for each VA1 |
111 |
c (excluding strips affected by signal, |
c (excluding strips with signal, |
112 |
c tagged with the flag CLSTR) |
c tagged with the flag CLSTR) |
113 |
c-------------------------------------------------- |
c-------------------------------------------------- |
114 |
|
if(debug)print*,'-- compute CN' |
115 |
|
|
116 |
do iv=1,nviews |
do iv=1,nviews |
117 |
ima=0 |
ima=0 |
118 |
do ik=1,nva1_view |
do ik=1,nva1_view |
119 |
cn(iv,ik) = 0 |
cn(iv,ik) = 0 |
120 |
|
cnrms(iv,ik) = 0 |
121 |
cnn(iv,ik) = -1 |
cnn(iv,ik) = -1 |
|
mask_vk_ev(iv,ik)=1 |
|
122 |
iflag=0 |
iflag=0 |
123 |
if(mask_vk(iv,ik).eq.1)call cncomp(iv,ik,iflag) |
mask_vk_ev(iv,ik)=1 |
124 |
c if(iflag.ne.0)good1=0 |
call stripmask(iv,ik) !compute mask(i,j,k), combining VA1-masks |
125 |
|
c NBNBNBNBNB mask per la striscia 1 !!!!!!!! |
126 |
|
if(mask(iv,ik,1).eq.1)call cncomp(iv,ik,iflag) |
127 |
if(iflag.ne.0)then |
if(iflag.ne.0)then |
128 |
ima=ima+1 |
ima=ima+1 |
129 |
mask_vk_ev(iv,ik)=0 |
mask_vk_ev(iv,ik)=0 |
130 |
ierror = 220 |
ierror = 220 |
|
c$$$ if(verbose) |
|
|
c$$$ $ print*,' * WARNING * Event ',eventn(1) |
|
|
c$$$ $ ,': masked vk ',ik,' on view',iv |
|
131 |
endif |
endif |
132 |
|
call stripmask(iv,ik) !compute mask(i,j,k), combining VA1-masks |
133 |
|
|
134 |
enddo |
enddo |
135 |
if(ima.ne.0.and.verbose)print*,' * WARNING * Event ',eventn(1) |
100 format(' * WARNING * Event ',i7,' view',i3,': VK MASK ',24i1) |
136 |
$ ,' view',iv,': VK MASK ' |
if(ima.ne.0.and.debug)write(*,100)eventn(1),iv |
137 |
$ ,(mask_vk_ev(iv,ik),ik=1,nva1_view) |
$ ,(mask_vk_ev(iv,ik),ik=1,nva1_view) |
138 |
enddo |
enddo |
|
c if(good1.eq.0)then |
|
|
c ierror = 220 |
|
|
c endif |
|
139 |
|
|
140 |
call stripmask !compute mask(i,j,k), combining mask_vk_ev and mask_vk |
cc call stripmask !compute mask(i,j,k), combining mask_vk_ev and mask_vk |
141 |
|
|
142 |
c--------------------------------------------- |
c--------------------------------------------- |
143 |
c loops on views, VA1 and strips, |
c loops on views, VA1 and strips, |
144 |
c and computes strips signals using |
c and computes strips signals using |
145 |
c badstrip, pedestals, and |
c badstrip, pedestals, and |
146 |
c sigma informations from histograms |
c sigma informations from histograms |
147 |
c--------------------------------------------- |
c--------------------------------------------- |
|
flag_shower = .false. |
|
148 |
ind=1 !clsignal array index |
ind=1 !clsignal array index |
149 |
|
|
150 |
|
if(debug)print*,'-- search clusters' |
151 |
do iv=1,nviews !loop on views |
do iv=1,nviews !loop on views |
152 |
do is=1,nstrips_view !loop on strips (1) |
do is=1,nstrips_view !loop on strips (1) |
153 |
if(mod(iv,2).eq.1) then |
if(mod(iv,2).eq.1) then |
159 |
$ *mask(iv,nvk(is),nst(is)) |
$ *mask(iv,nvk(is),nst(is)) |
160 |
clinclcut(is)=incuty*sigma(iv,nvk(is),nst(is)) |
clinclcut(is)=incuty*sigma(iv,nvk(is),nst(is)) |
161 |
$ *mask(iv,nvk(is),nst(is)) |
$ *mask(iv,nvk(is),nst(is)) |
162 |
ccc print*,"value(",is,")(reduction)= ",value(is) |
sat(is)=0 |
163 |
|
if( adc(iv,nvk(is),nst(is)).lt.adc_saty )sat(is)=1 |
164 |
else |
else |
165 |
C=== > X view |
C=== > X view |
166 |
value(is)= (DBLE(adc(iv,nvk(is),nst(is))) |
value(is)= (DBLE(adc(iv,nvk(is),nst(is))) |
170 |
$ *mask(iv,nvk(is),nst(is)) |
$ *mask(iv,nvk(is),nst(is)) |
171 |
clinclcut(is)=incutx*sigma(iv,nvk(is),nst(is)) |
clinclcut(is)=incutx*sigma(iv,nvk(is),nst(is)) |
172 |
$ *mask(iv,nvk(is),nst(is)) |
$ *mask(iv,nvk(is),nst(is)) |
173 |
|
sat(is)=0 |
174 |
|
if( adc(iv,nvk(is),nst(is)).gt.adc_satx )sat(is)=1 |
175 |
endif |
endif |
|
c$$$ print*,iv,is,' --- ',adc(iv,nvk(is),nst(is)),cn(iv,nvk(is)) |
|
|
c$$$ $ ,pedestal(iv,nvk(is),nst(is)),value(is) |
|
|
c$$$ $ ,sigma(iv,nvk(is),nst(is)) |
|
|
c if(value(is).gt.clseedcut(is)) |
|
|
c $ print*,iv,is,' --- (ADC_PED_CN) ',value(is),clseedcut(is) |
|
176 |
enddo !end loop on strips (1) |
enddo !end loop on strips (1) |
177 |
call search_cluster(iv) |
call search_cluster(iv) |
178 |
c$$$ if(flag_shower.eqv..true.)then |
|
|
c$$$ call init_level1 |
|
|
c$$$ good1=0 |
|
|
c$$$ goto 200 !jump to next event |
|
|
c$$$ endif |
|
|
ccc |
|
|
ccc modified by Elena (08/2006) |
|
|
ccc |
|
179 |
if(.not.flag_shower)then |
if(.not.flag_shower)then |
180 |
call save_cluster(iv) |
call save_cluster(iv) |
181 |
|
if(debug)print*,'view ',iv,' #clusters ', nclstr_view |
182 |
else |
else |
183 |
fshower(iv) = 1 |
fshower(iv) = 1 |
184 |
GOOD1(DSPn) = 11 |
c GOOD1(DSPnumber(iv)) = 11 !AHAHAHAHA ORRORE!! |
185 |
|
GOOD1(iv) = 11 |
186 |
|
101 format(' * WARNING * Event ',i7,' view',i3 |
187 |
|
$ ,' #clusters > ',i5,' --> MASKED') |
188 |
|
if(debug)write(*,101)eventn(1),iv,nclstrmax_view |
189 |
endif |
endif |
190 |
enddo ! end loop on views |
enddo ! end loop on views |
191 |
do iv=1,nviews |
do iv=1,nviews |
192 |
do ik=1,nva1_view |
do ik=1,nva1_view |
193 |
cnev(iv,ik) = cn(iv,ik) !assigns computed CN to ntuple variables |
cnev(iv,ik) = cn(iv,ik) !assigns computed CN to ntuple variables |
194 |
cnnev(iv,ik) = cnn(iv,ik) !assigns computed CN to ntuple variables |
cnrmsev(iv,ik) = cnrms(iv,ik) !assigns computed CN to ntuple variables |
195 |
ccc print*,"cnev(",iv,",",ik,")(reduction)= ",cnev(iv,ik) |
cnnev(iv,ik) = cnn(iv,ik) !assigns computed CN to ntuple variables |
196 |
enddo |
enddo |
197 |
enddo |
enddo |
198 |
C--------------------------------------------- |
C--------------------------------------------- |
205 |
do iv = 1,nviews |
do iv = 1,nviews |
206 |
ngood = ngood + good1(iv) |
ngood = ngood + good1(iv) |
207 |
enddo |
enddo |
208 |
if(ngood.ne.0)print*,'* WARNING * Event ',eventn(1) |
if(debug.and.ngood.ne.0)print*,'* WARNING * Event ',eventn(1) |
209 |
$ ,':LEVEL1 event status: ' |
$ ,':LEVEL1 event status: ' |
210 |
$ ,(good1(i),i=1,nviews) |
$ ,(good1(i),i=1,nviews) |
211 |
c------------------------------------------------------------------------ |
c------------------------------------------------------------------------ |
248 |
indmax(ic) = 0 |
indmax(ic) = 0 |
249 |
maxs(ic) = 0 |
maxs(ic) = 0 |
250 |
mult(ic) = 0 |
mult(ic) = 0 |
251 |
dedx(ic) = 0 |
sgnl(ic) = 0 |
252 |
whichtrack(ic) = 0 |
whichtrack(ic) = 0 !assigned @ level2 |
253 |
|
|
254 |
enddo |
enddo |
255 |
do id=1,maxlength !??? |
do id=1,maxlength !??? |
269 |
|
|
270 |
return |
return |
271 |
end |
end |
272 |
|
|
273 |
*---***---***---***---***---***---***---***---*** |
*---***---***---***---***---***---***---***---*** |
274 |
* |
* |
275 |
* |
* |
290 |
|
|
291 |
c local variables |
c local variables |
292 |
integer rmax,lmax !estremi del cluster |
integer rmax,lmax !estremi del cluster |
293 |
integer rstop,lstop !per decidere quali strip includere nel cluster |
integer rstop,lstop |
294 |
! oltre il seed |
integer first,last |
295 |
integer first,last,diff !per includere le strip giuste... !??? |
integer fsat,lsat |
|
|
|
|
integer multtemp !temporary multiplicity variable |
|
296 |
|
|
297 |
external nst |
external nst |
298 |
|
|
|
c------------------------------------------------------------------------ |
|
|
c looks for clusters on each view |
|
|
C : CERCO STRIP SOPRA CLSEEDCUT, POI SCORRO A DX FINCHE' |
|
|
c NON TROVO |
|
|
C STRIP PIU' BASSA (in segnale/rumore) |
|
|
C => L'ULTIMA DELLA SERIE CRESCENTE |
|
|
C (LA PIU' ALTA) E' IL |
|
|
C CLUSTER SEED. POI SCORRO A SX E DX INCLUDENDO TUTTE |
|
|
C LE STRIP (FINO A 17 AL |
|
|
C MAX) CHE SUPERANO CLINCLCUT. |
|
|
C QUANDO CERCO IL CLUSTER SEED SUCCESSIVO SALTO LA STRIP |
|
|
C ADIACENTE A DESTRA |
|
|
C DELL'ULTIMO CLUSTER SEED (CHE SARA' NECESSARIAMENTE |
|
|
C PIU' BASSA) E PRENDO |
|
|
C COME SEED UNA STRIP SOLO SE IL SUO SEGNALE E' |
|
|
C MAGGIORE DI QUELLO DELLA STRIP |
|
|
C PRECEDENTE (PRATICAMENTE PER EVITARE CHE L'ULTIMA |
|
|
C STRIP DI UN GRUPPO DI STRIP |
|
|
C TUTTE SOPRA IL CLSEEDCUT VENGA AUTOMATICAMENTE PRESA |
|
|
C COME SEED... DEVE ESSERE |
|
|
C PRESA SOLO SE IL CLUSTER E' DOUBLE PEAKED...) |
|
|
c------------------------------------------------------------------------ |
|
|
c 6 ottobre 2003 |
|
|
c Elena: CLSEEDCUT = 7 (old value 10) |
|
|
c Elena: CLINCLCUT = 4 (old value 5) |
|
|
|
|
299 |
iseed=-999 !cluster seed index initialization |
iseed=-999 !cluster seed index initialization |
300 |
|
|
301 |
|
inext=-999 !index where to start new cluster search |
302 |
|
|
303 |
|
flag_shower = .false. |
304 |
nclstr_view=0 |
nclstr_view=0 |
305 |
|
|
306 |
do jl=1,nladders_view !1..3 !loops on ladders |
do jl=1,nladders_view !1..3 !loops on ladders |
307 |
first=1+nstrips_ladder*(jl-1) !1,1025,2049 |
|
308 |
last=nstrips_ladder*jl !1024,2048,3072 |
first = 1+nstrips_ladder*(jl-1) !1,1025,2049 |
309 |
c X views have 1018 strips instead of 1024 |
last = nstrips_ladder*jl !1024,2048,3072 |
310 |
|
|
311 |
|
* X views have 1018 strips instead of 1024 |
312 |
if(mod(iv,2).eq.0) then |
if(mod(iv,2).eq.0) then |
313 |
first=first+3 |
first=first+3 |
314 |
last=last-3 |
last=last-3 |
316 |
|
|
317 |
do is=first,last !loop on strips in each ladder |
do is=first,last !loop on strips in each ladder |
318 |
|
|
319 |
if(is.le.iseed+1) goto 220 |
c--------------------------------------------- |
320 |
******************************************************* |
c new-cluster search starts at index inext |
321 |
* Elena 08/2006 |
c--------------------------------------------- |
322 |
* QUESTA PARTE NON E` ADEGUATA per cluster con grossi rilasci di carica |
if(is.lt.inext) goto 220 ! next strip |
|
* perche` salva molte volte lo stesso cluster |
|
|
* (salvo il cluster rispetto al primo massimo e basta...) |
|
|
******************************************************* |
|
|
c$$$c----------------------------------------- |
|
|
c$$$c after a cluster seed as been found, |
|
|
c$$$c look for next one skipping one strip on the right |
|
|
c$$$c (i.e. look for double peak cluster) |
|
|
c$$$c----------------------------------------- |
|
|
c$$$ if(is.ne.first) then |
|
|
c$$$ if(value(is).le.value(is-1)) goto 220 |
|
|
c$$$ endif |
|
|
c$$$c----------------------------------------- |
|
|
c$$$c skips cluster seed |
|
|
c$$$c finding if strips values are descreasing (a strip |
|
|
c$$$c can be a cluster seed only if previous strip value |
|
|
c$$$c is lower) |
|
|
c$$$c----------------------------------------- |
|
|
******************************************************* |
|
|
* LA RICERCA PARTE DALL'ULTIMA STRIP SALVATA (***TEMPORANEO****) |
|
|
******************************************************* |
|
|
if(is.le.iseed+rmax+1) goto 220 |
|
|
******************************************************* |
|
323 |
|
|
324 |
if(value(is).gt.clseedcut(is)) then |
if(value(is).gt.clseedcut(is)) then |
|
ccc print*,"value(",is,")=",value(is), |
|
|
ccc $ " .gt.clseedcut(",is,")=",clseedcut(is) |
|
325 |
c----------------------------------------- |
c----------------------------------------- |
326 |
c possible SEED... |
c possible SEED... |
327 |
c----------------------------------------- |
c----------------------------------------- |
328 |
itemp=is |
itemp = is |
329 |
|
fsat = 0 ! first saturated strip |
330 |
|
lsat = 0 ! last saturated strip |
331 |
if(itemp.eq.last) goto 230 !estremo... |
if(itemp.eq.last) goto 230 !estremo... |
332 |
**************************************************** |
c ------------------------ |
333 |
* modificato da Elena (08/2006) per salvare |
c search for first maximum |
334 |
* il cluster intorno al massimo assoluto |
c ------------------------ |
|
**************************************************** |
|
|
c$$$ do while(value(itemp) |
|
|
c$$$ $ /sigma(iv,nvk(itemp),nst(itemp)) |
|
|
c$$$ $ .le.value(itemp+1) |
|
|
c$$$ $ /sigma(iv,nvk(itemp+1),nst(itemp+1))) !BIAS: aggiustare il caso uguale!??? |
|
|
c$$$ itemp=itemp+1 |
|
|
c$$$ if(itemp.eq.last) goto 230 !stops if reaches last strip |
|
|
c$$$ enddo ! of the ladder |
|
335 |
do while( |
do while( |
336 |
$ value(itemp).le.value(itemp+1) |
$ value(itemp).le.value(itemp+1) |
337 |
$ .and.value(itemp+1).gt.clseedcut(itemp+1)) |
$ .and.value(itemp+1).gt.clseedcut(itemp+1)) |
338 |
itemp=itemp+1 |
itemp = itemp+1 |
339 |
if(itemp.eq.last) goto 230 !stops if reaches last strip |
if(itemp.eq.last) goto 230 !stops if reaches last strip |
340 |
|
if(sat(itemp).eq.1) goto 230 !stop if reaches a saturated strip |
341 |
enddo ! of the ladder |
enddo ! of the ladder |
342 |
230 continue |
230 continue |
343 |
c----------------------------------------- |
c ----------------------------- |
344 |
|
c check if strips are saturated |
345 |
|
c ----------------------------- |
346 |
|
if( sat(itemp).eq.1 )then |
347 |
|
fsat = itemp |
348 |
|
lsat = itemp |
349 |
|
if(itemp.eq.last) goto 231 !estremo... |
350 |
|
do while( sat(itemp+1).eq.1 ) |
351 |
|
itemp = itemp+1 |
352 |
|
lsat = itemp |
353 |
|
if(itemp.eq.last) goto 231 !stops if reaches last strip |
354 |
|
enddo |
355 |
|
endif |
356 |
|
231 continue |
357 |
|
c--------------------------------------------------------------------------- |
358 |
c fownd SEED!!! |
c fownd SEED!!! |
359 |
c----------------------------------------- |
c (if there are saturated strips, the cluster is centered in the middle) |
360 |
iseed=itemp |
c--------------------------------------------------------------------------- |
361 |
c---------------------------------------------------------- |
if(fsat.eq.0.and.lsat.eq.0)then |
362 |
|
iseed = itemp ! <<< SEED |
363 |
|
else |
364 |
|
iseed = int((lsat+fsat)/2) ! <<< SEED |
365 |
|
c$$$ print*,'saturated strips ',fsat,lsat,iseed |
366 |
|
c$$$ print*,'--> ',(value(ii),ii=fsat,lsat) |
367 |
|
endif |
368 |
|
c--------------------------------------------------------------- |
369 |
c after finding a cluster seed, checks also adjacent strips, |
c after finding a cluster seed, checks also adjacent strips, |
370 |
C and marks the ones exceeding clinclcut |
C and tags the ones exceeding clinclcut |
371 |
c---------------------------------------------------------- |
c--------------------------------------------------------------- |
372 |
ir=iseed !indici destro |
ir=iseed !indici destro |
373 |
il=iseed ! e sinistro |
il=iseed ! e sinistro |
374 |
|
|
379 |
lstop=0 ! inclusion loop |
lstop=0 ! inclusion loop |
380 |
|
|
381 |
do while(lstop.eq.0.or.rstop.eq.0) !shifts left and right from |
do while(lstop.eq.0.or.rstop.eq.0) !shifts left and right from |
382 |
ir=ir+1 !position index for strips on right side of |
|
383 |
! cluster seed |
|
384 |
il=il-1 !and for left side |
ir=ir+1 !index for right side |
385 |
|
il=il-1 !index for left side |
386 |
c------------------------------------------------------------------------ |
c------------------------------------------------------------------------ |
387 |
c checks for last or first strip of the ladder |
c checks for last or first strip of the ladder |
388 |
c------------------------------------------------------------------------ |
c------------------------------------------------------------------------ |
389 |
if(ir.gt.last) then !when index goes beyond last strip |
if( ir.gt.last ) rstop = 1 |
390 |
rstop=1 ! of the ladder, change rstop flag in order |
if( il.lt.first ) lstop = 1 |
|
! to "help" exiting from loop |
|
|
endif |
|
|
|
|
|
if(il.lt.first) then !idem when index goes beyond |
|
|
lstop=1 ! first strip of the ladder |
|
|
endif |
|
391 |
|
|
392 |
c------------------------------------------------------------------------ |
c------------------------------------------------------------------------ |
393 |
c check for clusters including more than nclstrp strips |
c add strips exceeding inclusion cut |
394 |
c------------------------------------------------------------------------ |
c------------------------------------------------------------------------ |
395 |
if((rmax-lmax+1).ge.nclstrp) then |
if( (rmax-lmax+1).ge.nclstrp )goto 210 !exits inclusion loop |
396 |
goto 210 !exits inclusion loop: |
|
397 |
! lmax and rmax maintain last value |
if(rstop.eq.0) then !if right cluster morder has not been reached |
398 |
! NB .ge.!??? |
if(value(ir).gt.clinclcut(ir)) then |
399 |
endif |
rmax=ir !include a strip on the right |
|
c------------------------------------------------------------------------ |
|
|
c marks strips exceeding inclusion cut |
|
|
c------------------------------------------------------------------------ |
|
|
if(rstop.eq.0) then !if last strip of the ladder or last |
|
|
! over-cut strip has not been reached |
|
|
if(value(ir).gt.clinclcut(ir)) then !puts in rmax the |
|
|
rmax=ir ! last right over-cut strip |
|
400 |
else |
else |
401 |
rstop=1 !otherwise cluster ends on right and rstop |
rstop=1 !cluster right end |
402 |
endif ! flag=1 signals it |
endif |
403 |
endif |
endif |
404 |
if(lstop.eq.0) then |
|
405 |
|
if( (rmax-lmax+1).ge.nclstrp )goto 210 !exits inclusion loop |
406 |
|
|
407 |
|
if(lstop.eq.0) then !if left cluster morder has not been reached |
408 |
if(value(il).gt.clinclcut(il)) then |
if(value(il).gt.clinclcut(il)) then |
409 |
lmax=il |
lmax=il !include a strip on the left |
410 |
else |
else |
411 |
lstop=1 |
lstop=1 !cluster left end |
412 |
endif |
endif |
413 |
endif |
endif |
414 |
|
|
415 |
enddo !ends strip inclusion loop |
enddo !ends strip inclusion loop |
416 |
|
goto 211 |
417 |
210 continue !jumps here if more than nclstrp have been included |
210 continue !jumps here if more than nclstrp have been included |
418 |
|
c print*,'>>> nclstrp! ' |
419 |
multtemp=rmax-lmax+1 !stores multiplicity in temp |
211 continue |
420 |
! variable. NB rmax and lmax can change later in |
c----------------------------------------- |
421 |
! order to include enough strips to calculate eta3 |
c end of inclusion loop! |
422 |
! and eta4. so mult is not always equal to cllength |
c----------------------------------------- |
423 |
c------------------------------------------------------------------------ |
|
424 |
c NB per essere sicuro di poter calcolare eta3 e eta4 devo includere |
c------------------------------------------------------------------------ |
425 |
c sempre e comunque le 2 strip adiacenti al cluster seed e quella |
c adjust the cluster in order to have at least a strip around the seed |
426 |
c adiacente ulteriore dalla parte della piu' alta fra queste due |
c------------------------------------------------------------------------ |
427 |
c (vedi oltre...)!??? |
if(iseed.eq.lmax.and.lmax.ne.first)then |
428 |
c------------------------------------------------------------------------ |
lmax = lmax-1 |
429 |
|
if( (rmax-lmax+1).gt.nclstrp )rmax=rmax-1 |
430 |
c nel caso di estremi del ladder...!??? |
endif |
431 |
|
if(iseed.eq.rmax.and.rmax.ne.last )then |
432 |
c ho meno di 4 strip nel cluster --> se sono sui bordi o quasi del ladder |
rmax = rmax+1 |
433 |
c costruisco il cluster ad hoc e poi esco, se non sono sui bordi o quasi |
if( (rmax-lmax+1).gt.nclstrp )lmax=lmax+1 |
|
c vado oltre (aggiungero' quindi strip a sx e dx in modo da poter calcolare |
|
|
c eta3e4) |
|
|
if((rmax-lmax+1).lt.4) then |
|
|
|
|
|
if(iseed.eq.first) then !estremi... |
|
|
rmax=iseed+2 !NB in questo modo puo' anche capitare di |
|
|
lmax=iseed ! includere strip sotto taglio di inclusione |
|
|
goto 250 ! che non serviranno per eta3e4!??? |
|
|
endif |
|
|
|
|
|
if(iseed.eq.last) then !estremi... |
|
|
rmax=iseed |
|
|
lmax=iseed-2 !NB 2 e non 3, perche' altrimenti sarei in |
|
|
goto 250 ! ((rmax-lmax+1).lt.4).eq.false. !??? |
|
|
endif !NMB questo e' l'unico caso di cllength=3!??? |
|
|
|
|
|
if(iseed.eq.first+1) then !quasi estremi... |
|
|
rmax=iseed+2 |
|
|
lmax=iseed-1 |
|
|
goto 250 |
|
|
endif |
|
|
if(iseed.eq.last-1) then |
|
|
rmax=iseed+1 |
|
|
lmax=iseed-2 |
|
|
goto 250 |
|
|
endif |
|
|
c se ho 4 o piu' strip --> se sono sui bordi esco, se sono sui quasi bordi |
|
|
c includo la strip del bordo |
|
|
else |
|
|
|
|
|
if(iseed.eq.first) goto 250 !estremi... non includo altro |
|
|
if(iseed.eq.last) goto 250 |
|
|
if(iseed.eq.first+1) then !quasi estremi... mi assicuro di |
|
|
lmax=first ! avere le strip adiacenti al seed |
|
|
if((rmax-lmax+1).gt.nclstrp) rmax=rmax-1 !NB effetto |
|
|
goto 250 ! coperta: se la lunghezza del cluster era gia' |
|
|
endif ! al limite (nclstrp), per poter aggiungere questa |
|
|
! strip a sinistra devo toglierne una a destra...!??? |
|
|
if(iseed.eq.last-1) then |
|
|
rmax=last |
|
|
if((rmax-lmax+1).gt.nclstrp) lmax=lmax+1 |
|
|
goto 250 |
|
|
endif |
|
434 |
endif |
endif |
435 |
|
|
436 |
c------------------------------------------------------------------------ |
c------------------------------------------------------------------------ |
437 |
c be sure to include in the cluster the cluster seed with its 2 adjacent |
c adjust the cluster in order to store a minimum number of strips |
438 |
c strips, and the one adjacent to the greatest between this two strip, as the |
c------------------------------------------------------------------------ |
439 |
c fourth one. if the strips have the same value (!) the fourth one is chosen |
do while( (rmax-lmax+1).lt.nclstrpmin ) |
440 |
c as the one having the greatest value between the second neighbors |
|
441 |
c------------------------------------------------------------------------ |
vl = -99999 |
442 |
if(value(iseed+1).eq.value(iseed-1)) then |
vr = -99999 |
443 |
if(value(iseed+2).ge.value(iseed-2)) then !??? qui cmq c'e' |
if(lmax-1.ge.first) vl = value(lmax-1) |
444 |
diff=(iseed+2)-rmax |
if(rmax+1.le.last ) vr = value(rmax+1) |
445 |
if(diff.gt.0) then |
if(vr.ge.vl) then |
446 |
rmax=rmax+diff |
rmax = rmax+1 |
447 |
if((rmax-lmax+1).gt.nclstrp) then |
else |
448 |
lmax=rmax-nclstrp+1 |
lmax = lmax-1 |
|
endif |
|
|
endif |
|
|
diff=(iseed-1)-lmax |
|
|
if(diff.lt.0) then |
|
|
lmax=lmax+diff |
|
|
if((rmax-lmax+1).gt.nclstrp) then |
|
|
rmax=lmax+nclstrp-1 |
|
|
endif |
|
|
endif |
|
|
else |
|
|
diff=(iseed-2)-lmax |
|
|
if(diff.lt.0) then |
|
|
lmax=lmax+diff |
|
|
if((rmax-lmax+1).gt.nclstrp) then |
|
|
rmax=lmax+nclstrp-1 |
|
|
endif |
|
|
endif |
|
|
diff=(iseed+1)-rmax |
|
|
if(diff.gt.0) then |
|
|
rmax=rmax+diff |
|
|
if((rmax-lmax+1).gt.nclstrp) then |
|
|
lmax=rmax-nclstrp+1 |
|
|
endif |
|
|
endif |
|
|
endif |
|
|
elseif(value(iseed+1).gt.value(iseed-1)) then |
|
|
c !??? sposto il limite del cluster a destra per includere sempre le strip |
|
|
c necessarie al calcolo di eta-i |
|
|
c se il cluster diventa troppo lungo lo accorcio a sinistra per avere non piu' |
|
|
c di nclstrp (in questo caso sono sicuro di aver gia' incluso le strip |
|
|
c necessarie al calcolo di eta-i a sinistra, quindi se voglio posso uscire) |
|
|
diff=(iseed+2)-rmax |
|
|
if(diff.gt.0) then |
|
|
rmax=rmax+diff |
|
|
if((rmax-lmax+1).gt.nclstrp) then |
|
|
lmax=rmax-nclstrp+1 |
|
|
c goto 250 |
|
|
endif |
|
|
endif |
|
|
diff=(iseed-1)-lmax |
|
|
if(diff.lt.0) then |
|
|
lmax=lmax+diff |
|
|
if((rmax-lmax+1).gt.nclstrp) then |
|
|
rmax=lmax+nclstrp-1 |
|
|
c goto 250 !inutile!??? |
|
|
endif |
|
|
endif |
|
|
else |
|
|
diff=(iseed-2)-lmax |
|
|
if(diff.lt.0) then |
|
|
lmax=lmax+diff |
|
|
if((rmax-lmax+1).gt.nclstrp) then |
|
|
rmax=lmax+nclstrp-1 |
|
|
c goto 250 |
|
|
endif |
|
|
endif |
|
|
diff=(iseed+1)-rmax |
|
|
if(diff.gt.0) then |
|
|
rmax=rmax+diff |
|
|
if((rmax-lmax+1).gt.nclstrp) then |
|
|
lmax=rmax-nclstrp+1 |
|
|
c goto 250 !inutile!??? |
|
|
endif |
|
449 |
endif |
endif |
450 |
endif |
|
451 |
250 continue |
enddo |
452 |
|
|
453 |
c-------------------------------------------------------- |
c-------------------------------------------------------- |
454 |
c fills cluster variables |
c store cluster info |
455 |
c-------------------------------------------------------- |
c-------------------------------------------------------- |
|
c$$$ nclstr1=nclstr1+1 !cluster number |
|
|
c$$$ccc print*,nclstr1,multtemp |
|
|
c$$$ if(nclstr1.gt.nclstrmax) then !too many clusters for the event: |
|
|
c$$$ if(verbose)print*,'Event ',eventn(1), |
|
|
c$$$ $ ': more than ',nclstrmax,' clusters' |
|
|
c$$$ good1=0 ! event |
|
|
c$$$ nclstr1=0 |
|
|
c$$$ totCLlength=0 |
|
|
c$$$ flag_shower = .true. |
|
|
c$$$ goto 2000 |
|
|
c$$$ endif |
|
|
c$$$ view(nclstr1) = iv !vista del cluster |
|
|
c$$$ ladder(nclstr1) = nld(iseed,iv) !ladder a cui appartiene il cluster seed |
|
|
c$$$ maxs(nclstr1) = iseed !strip del cluster seed |
|
|
c$$$ mult(nclstr1) = multtemp !molteplicita' |
|
|
c$$$ |
|
|
c$$$ indstart(nclstr1) = ind !posizione dell'inizio del cluster nell' |
|
|
c$$$c ! array clsignal |
|
|
c$$$ indmax(nclstr1) = indstart(nclstr1)+(iseed-lmax) !posizione del |
|
|
c$$$c ! cluster seed nell'array clsignal |
|
|
c$$$ |
|
|
c$$$ CLlength = rmax-lmax+1 !numero di strip del cluster |
|
|
c$$$ totCLlength = totCLlength+CLlength |
|
|
c$$$ dedx(nclstr1) = 0 |
|
|
c$$$ do j=lmax,rmax !stores sequentially cluter strip values in |
|
|
c$$$ clsignal(ind) = value(j) ! clsignal array |
|
|
c$$$ ind=ind+1 |
|
|
c$$$c if(value(j).gt.0) |
|
|
c$$$ if(value(j).gt.clinclcut(j)) |
|
|
c$$$ $ dedx(nclstr1) = dedx(nclstr1) + value(j) !cluster charge |
|
|
c$$$ enddo |
|
|
ccc |
|
|
ccc *** Modified by Elena (08/2006) *** |
|
|
ccc |
|
456 |
nclstr_view = nclstr_view + 1 !cluster number |
nclstr_view = nclstr_view + 1 !cluster number |
457 |
c print*,'view ',iv,' -- search_cluster -- nclstr_view: ' |
|
|
c $ ,nclstr_view |
|
458 |
if(nclstr_view.gt.nclstrmax_view) then !too many clusters for the view: |
if(nclstr_view.gt.nclstrmax_view) then !too many clusters for the view: |
459 |
if(verbose) print*,'Event ',eventn(1), |
c$$$ if(verbose) print*,'Event ',eventn(1), |
460 |
$ ': more than ',nclstrmax_view |
c$$$ $ ': more than ',nclstrmax_view |
461 |
$ ,' clusters on view ',iv |
c$$$ $ ,' clusters on view ',iv |
|
c good1=0 ! event |
|
|
c nclstr1=0 |
|
|
c totCLlength=0 |
|
462 |
flag_shower = .true. |
flag_shower = .true. |
463 |
goto 2000 |
goto 2000 |
464 |
endif |
endif |
465 |
|
|
466 |
c view(nclstr1) = iv !vista del cluster |
ladder_view(nclstr_view) = nld(iseed,iv) |
467 |
ladder_view(nclstr_view) = nld(iseed,iv) !ladder a cui appartiene il cluster seed |
maxs_view(nclstr_view) = iseed |
468 |
maxs_view(nclstr_view) = iseed !strip del cluster seed |
mult_view(nclstr_view) = rmax-lmax+1 |
|
mult_view(nclstr_view) = multtemp !molteplicita' |
|
469 |
rmax_view(nclstr_view) = rmax |
rmax_view(nclstr_view) = rmax |
470 |
lmax_view(nclstr_view) = lmax |
lmax_view(nclstr_view) = lmax |
471 |
|
|
472 |
|
c$$$ if(rmax-lmax+1.gt.25) |
473 |
|
c$$$ $ print*,'view ',iv |
474 |
|
c$$$ $ ,' cl ',nclstr_view,' mult ',rmax-lmax+1 |
475 |
|
c------------------------------------------------------------------------ |
476 |
|
c search for a double peak inside the cluster |
477 |
|
c------------------------------------------------------------------------ |
478 |
|
inext = rmax+1 !<< index where to start new-cluster search |
479 |
|
|
480 |
|
vmax = 0 |
481 |
|
vmin = value(iseed) |
482 |
|
imax = iseed |
483 |
|
imin = iseed |
484 |
|
do iss = max(iseed+1,lsat+1),rmax |
485 |
|
if( value(iss).lt.vmin )then |
486 |
|
if( imax.ne.iseed )goto 221 !found dowble peek |
487 |
|
imin = iss |
488 |
|
vmin = value(iss) |
489 |
|
else |
490 |
|
delta = value(iss) - value(imin) |
491 |
|
cut = sqrt(clinclcut(iss)**2 + clinclcut(imin)**2) |
492 |
|
if( |
493 |
|
$ delta.gt.cut .and. |
494 |
|
$ value(iss).gt.clseedcut(iss).and. |
495 |
|
$ .true.)then |
496 |
|
if( value(iss).gt.vmax )then |
497 |
|
imax = iss |
498 |
|
vmax = value(iss) |
499 |
|
else |
500 |
|
goto 221 !found dowble peek |
501 |
|
endif |
502 |
|
endif |
503 |
|
endif |
504 |
|
enddo |
505 |
|
221 continue |
506 |
|
|
507 |
|
if(imax.gt.iseed)then |
508 |
|
inext = imax !<< index where to start new-cluster search |
509 |
|
c$$$ print*,'--- double peek ---' |
510 |
|
c$$$ print*,(value(ii),ii=lmax,rmax) |
511 |
|
c$$$ print*,'seed ',iseed,' imin ',imin,' imax ',imax |
512 |
|
endif |
513 |
c-------------------------------------------------------- |
c-------------------------------------------------------- |
514 |
c |
c |
515 |
c-------------------------------------------------------- |
c-------------------------------------------------------- |
559 |
|
|
560 |
CLlength = rmax_view(ic) - lmax_view(ic) + 1 !numero di strip salvate |
CLlength = rmax_view(ic) - lmax_view(ic) + 1 !numero di strip salvate |
561 |
totCLlength = totCLlength + CLlength |
totCLlength = totCLlength + CLlength |
562 |
dedx(nclstr1) = 0 |
sgnl(nclstr1) = 0 |
563 |
do j=lmax_view(ic),rmax_view(ic) !stores sequentially cluter strip values in |
do j=lmax_view(ic),rmax_view(ic) !stores sequentially cluter strip values in |
564 |
|
|
565 |
clsignal(ind) = value(j) ! clsignal array |
clsignal(ind) = value(j) ! clsignal array |
575 |
ind=ind+1 |
ind=ind+1 |
576 |
c if(value(j).gt.0) |
c if(value(j).gt.0) |
577 |
if(value(j).gt.clinclcut(j)) |
if(value(j).gt.clinclcut(j)) |
578 |
$ dedx(nclstr1) = dedx(nclstr1) + value(j) !cluster charge |
$ sgnl(nclstr1) = sgnl(nclstr1) + value(j) !cluster charge |
579 |
enddo |
enddo |
580 |
|
|
581 |
c print*,'view ',iv,' -- save_cluster -- nclstr1: ' |
c print*,'view ',iv,' -- save_cluster -- nclstr1: ' |
582 |
c $ ,nclstr1,maxs(nclstr1),mult(nclstr1),dedx(nclstr1) |
c $ ,nclstr1,maxs(nclstr1),mult(nclstr1),sgnl(nclstr1) |
583 |
|
|
584 |
enddo |
enddo |
585 |
|
|
594 |
*---***---***---***---***---***---***---***---*** |
*---***---***---***---***---***---***---***---*** |
595 |
|
|
596 |
|
|
597 |
subroutine stripmask |
c$$$ subroutine stripmask |
598 |
|
c$$$ |
599 |
|
c$$$* this routine set va1 and single-strip masks, |
600 |
|
c$$$* on the basis of the VA1 mask saved in the DB |
601 |
|
c$$$* |
602 |
|
c$$$* mask(nviews,nva1_view,nstrips_va1) !strip mask |
603 |
|
c$$$* mask_vk(nviews,nva1_view) !VA1 mask |
604 |
|
c$$$* |
605 |
|
c$$$ include 'commontracker.f' |
606 |
|
c$$$ include 'level1.f' |
607 |
|
c$$$ include 'common_reduction.f' |
608 |
|
c$$$ include 'calib.f' |
609 |
|
c$$$ |
610 |
|
c$$$* init mask |
611 |
|
c$$$ do iv=1,nviews |
612 |
|
c$$$ do ivk=1,nva1_view |
613 |
|
c$$$ do is=1,nstrips_va1 |
614 |
|
c$$$c mask(iv,ivk,is) = mask_vk(iv,ivk) |
615 |
|
c$$$ if( mask_vk(iv,ivk) .ne. -1)then |
616 |
|
c$$$ mask(iv,ivk,is) = 1 |
617 |
|
c$$$ $ * mask_vk(iv,ivk) !from DB |
618 |
|
c$$$ $ * mask_vk_ev(iv,ivk) !from <SIG> |
619 |
|
c$$$ $ * mask_vk_run(iv,ivk) !from CN |
620 |
|
c$$$ else |
621 |
|
c$$$ mask(iv,ivk,is) = -1 |
622 |
|
c$$$ $ * mask_vk(iv,ivk) !from DB |
623 |
|
c$$$ $ * mask_vk_ev(iv,ivk) !from CN |
624 |
|
c$$$ endif |
625 |
|
c$$$ enddo |
626 |
|
c$$$ enddo |
627 |
|
c$$$ enddo |
628 |
|
c$$$ |
629 |
|
c$$$ |
630 |
|
c$$$ return |
631 |
|
c$$$ end |
632 |
|
|
633 |
|
subroutine stripmask(iv,ivk) |
634 |
|
|
635 |
* this routine set va1 and single-strip masks, |
* this routine set va1 and single-strip masks, |
636 |
* on the basis of the VA1 mask saved in the DB |
* on the basis of the VA1 mask saved in the DB |
644 |
include 'calib.f' |
include 'calib.f' |
645 |
|
|
646 |
* init mask |
* init mask |
647 |
do iv=1,nviews |
do is=1,nstrips_va1 |
648 |
do ivk=1,nva1_view |
if( mask_vk(iv,ivk) .ne. -1)then |
649 |
do is=1,nstrips_va1 |
mask(iv,ivk,is) = 1 |
650 |
c mask(iv,ivk,is) = mask_vk(iv,ivk) |
$ * mask_vk(iv,ivk) !from DB |
651 |
mask(iv,ivk,is) = mask_vk(iv,ivk) * mask_vk_ev(iv,ivk) |
$ * mask_vk_ev(iv,ivk) !from <SIG> |
652 |
enddo |
$ * mask_vk_run(iv,ivk) !from CN |
653 |
enddo |
else |
654 |
|
mask(iv,ivk,is) = -1 |
655 |
|
$ * mask_vk(iv,ivk) !from DB |
656 |
|
$ * mask_vk_ev(iv,ivk) !from CN |
657 |
|
endif |
658 |
enddo |
enddo |
659 |
|
|
660 |
|
|
661 |
return |
return |
662 |
end |
end |
|
|
|