1 |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
2 |
* this file contains all subroutines and functions |
* this file contains all subroutines and functions |
3 |
* that are needed for position finding algorithms |
* that are needed for position finding algorithms: |
4 |
* |
* |
5 |
|
* subroutine idtoc(ipfa,cpfa) |
6 |
|
* |
7 |
|
* subroutine applypfa(PFAtt,ic,ang,corr,res) |
8 |
|
* |
9 |
|
* integer function npfastrips(ic,angle) |
10 |
|
* |
11 |
|
* real function pfaeta(ic,angle) |
12 |
|
* real function pfaetal(ic,angle) |
13 |
|
* real function pfaeta2(ic,angle) |
14 |
|
* real function pfaeta3(ic,angle) |
15 |
|
* real function pfaeta4(ic,angle) |
16 |
|
* real function cog(ncog,ic) |
17 |
|
* |
18 |
|
* real function fbad_cog(ncog,ic) |
19 |
|
* real function fbad_eta(ic,angle) |
20 |
* |
* |
21 |
|
* real function riseta(iview,angle) |
22 |
|
* FUNCTION risxeta2(x) |
23 |
|
* FUNCTION risxeta3(x) |
24 |
|
* FUNCTION risxeta4(x) |
25 |
|
* FUNCTION risyeta2(x) |
26 |
|
* FUNCTION risy_cog(x) |
27 |
|
* FUNCTION risx_cog(x) |
28 |
|
* |
29 |
|
* real function pfacorr(ic,angle) |
30 |
|
* |
31 |
|
* real function effectiveangle(ang,iview,bbb) |
32 |
|
* real function fieldcorr(iview,bbb) |
33 |
|
* |
34 |
|
* NB - The angle is the "effective angle", which is relative |
35 |
|
* to the sensor and it takes into account the magnetic field |
36 |
|
* |
37 |
|
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
38 |
|
|
39 |
|
subroutine idtoc(ipfa,cpfa) |
40 |
|
|
41 |
|
integer ipfa |
42 |
|
character*10 cpfa |
43 |
|
|
44 |
|
CPFA='COG4' |
45 |
|
if(ipfa.eq.0)CPFA='ETA' |
46 |
|
if(ipfa.eq.2)CPFA='ETA2' |
47 |
|
if(ipfa.eq.3)CPFA='ETA3' |
48 |
|
if(ipfa.eq.4)CPFA='ETA4' |
49 |
|
if(ipfa.eq.5)CPFA='ETAL' |
50 |
|
if(ipfa.eq.10)CPFA='COG' |
51 |
|
if(ipfa.eq.11)CPFA='COG1' |
52 |
|
if(ipfa.eq.12)CPFA='COG2' |
53 |
|
if(ipfa.eq.13)CPFA='COG3' |
54 |
|
if(ipfa.eq.14)CPFA='COG4' |
55 |
|
|
56 |
|
end |
57 |
|
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
58 |
|
real function effectiveangle(ang,iview,bbb) |
59 |
|
|
60 |
|
include 'commontracker.f' |
61 |
|
|
62 |
|
effectiveangle = 0. |
63 |
|
|
64 |
|
if(mod(iview,2).eq.0)then |
65 |
|
c ================================================= |
66 |
|
c X view |
67 |
|
c ================================================= |
68 |
|
c here bbb is the y component of the m.field |
69 |
|
angx = ang |
70 |
|
by = bbb |
71 |
|
if(iview.eq.12) angx = -1. * ang |
72 |
|
if(iview.eq.12) by = -1. * bbb |
73 |
|
cc tgtemp = tan(ang*acos(-1.)/180.) + pmuH_h*by*0.00001 !ORRORE!! |
74 |
|
tgtemp = tan(angx*acos(-1.)/180.) + pmuH_h*by*0.00001 |
75 |
|
|
76 |
|
elseif(mod(iview,2).eq.1)then |
77 |
|
c ================================================= |
78 |
|
c Y view |
79 |
|
c ================================================= |
80 |
|
c here bbb is the x component of the m.filed |
81 |
|
angy = ang |
82 |
|
bx = bbb |
83 |
|
tgtemp = tan(angy*acos(-1.)/180.)+pmuH_e*bx*0.00001 |
84 |
|
|
85 |
|
endif |
86 |
|
effectiveangle = 180.*atan(tgtemp)/acos(-1.) |
87 |
|
|
88 |
|
return |
89 |
|
end |
90 |
|
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
91 |
|
real function fieldcorr(iview,bbb) |
92 |
|
|
93 |
|
include 'commontracker.f' |
94 |
|
|
95 |
|
fieldcorr = 0. |
96 |
|
|
97 |
|
if(mod(iview,2).eq.0)then |
98 |
|
|
99 |
|
c ================================================= |
100 |
|
c X view |
101 |
|
c ================================================= |
102 |
|
c here bbb is the y component of the m.field |
103 |
|
by = bbb |
104 |
|
if(iview.eq.12) by = -1. * bbb |
105 |
|
fieldcorr = -1. * 0.5*pmuH_h*by*0.00001*SiDimZ/pitchX |
106 |
|
|
107 |
|
elseif(mod(iview,2).eq.1)then |
108 |
|
c ================================================= |
109 |
|
c Y view |
110 |
|
c ================================================= |
111 |
|
c here bbb is the x component of the m.filed |
112 |
|
bx = bbb |
113 |
|
fieldcorr = 0.5*pmuH_e*bx*0.00001*SiDimZ/pitchY |
114 |
|
|
115 |
|
endif |
116 |
|
|
117 |
|
return |
118 |
|
end |
119 |
|
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
120 |
|
|
121 |
|
subroutine applypfa(PFAtt,ic,ang,corr,res) |
122 |
|
*--------------------------------------------------------------- |
123 |
|
* this subroutine calculate the coordinate of cluster ic (in |
124 |
|
* strip units), relative to the strip with the maximum signal, |
125 |
|
* and its spatial resolution (in cm), applying PFAtt. |
126 |
|
* ang is the effective angle, relative to the sensor |
127 |
|
*--------------------------------------------------------------- |
128 |
|
|
129 |
|
character*4 PFAtt |
130 |
|
include 'commontracker.f' |
131 |
|
include 'level1.f' |
132 |
|
|
133 |
|
corr = 0 |
134 |
|
res = 0 |
135 |
|
|
136 |
|
if(ic.le.0)return |
137 |
|
|
138 |
|
iview = VIEW(ic) |
139 |
|
|
140 |
|
if(mod(iview,2).eq.0)then |
141 |
|
c ================================================= |
142 |
|
c X view |
143 |
|
c ================================================= |
144 |
|
|
145 |
|
res = RESXAV |
146 |
|
|
147 |
|
if(PFAtt.eq.'COG1')then |
148 |
|
|
149 |
|
corr = 0 |
150 |
|
res = 1e-4*pitchX/sqrt(12.)!!res |
151 |
|
|
152 |
|
elseif(PFAtt.eq.'COG2')then |
153 |
|
|
154 |
|
corr = cog(2,ic) |
155 |
|
res = risx_cog(abs(ang))!TEMPORANEO |
156 |
|
res = res*fbad_cog(2,ic) |
157 |
|
|
158 |
|
elseif(PFAtt.eq.'COG3')then |
159 |
|
|
160 |
|
corr = cog(3,ic) |
161 |
|
res = risx_cog(abs(ang))!TEMPORANEO |
162 |
|
res = res*fbad_cog(3,ic) |
163 |
|
|
164 |
|
elseif(PFAtt.eq.'COG4')then |
165 |
|
|
166 |
|
corr = cog(4,ic) |
167 |
|
res = risx_cog(abs(ang))!TEMPORANEO |
168 |
|
res = res*fbad_cog(4,ic) |
169 |
|
|
170 |
|
elseif(PFAtt.eq.'ETA2')then |
171 |
|
|
172 |
|
corr = pfaeta2(ic,ang) |
173 |
|
res = risxeta2(abs(ang)) |
174 |
|
res = res*fbad_cog(2,ic) |
175 |
|
|
176 |
|
elseif(PFAtt.eq.'ETA3')then |
177 |
|
|
178 |
|
corr = pfaeta3(ic,ang) |
179 |
|
res = risxeta3(abs(ang)) |
180 |
|
res = res*fbad_cog(3,ic) |
181 |
|
|
182 |
|
elseif(PFAtt.eq.'ETA4')then |
183 |
|
|
184 |
|
corr = pfaeta4(ic,ang) |
185 |
|
res = risxeta4(abs(ang)) |
186 |
|
res = res*fbad_cog(4,ic) |
187 |
|
|
188 |
|
elseif(PFAtt.eq.'ETA')then |
189 |
|
|
190 |
|
corr = pfaeta(ic,ang) |
191 |
|
c res = riseta(ic,ang) |
192 |
|
res = riseta(iview,ang) |
193 |
|
res = res*fbad_eta(ic,ang) |
194 |
|
|
195 |
|
elseif(PFAtt.eq.'ETAL')then |
196 |
|
|
197 |
|
corr = pfaetal(ic,ang) |
198 |
|
res = riseta(iview,ang) |
199 |
|
res = res*fbad_eta(ic,ang) |
200 |
|
|
201 |
|
elseif(PFAtt.eq.'COG')then |
202 |
|
|
203 |
|
corr = cog(0,ic) |
204 |
|
res = risx_cog(abs(ang)) |
205 |
|
res = res*fbad_cog(0,ic) |
206 |
|
|
207 |
|
else |
208 |
|
if(DEBUG.EQ.1) print*,'*** Non valid p.f.a. (x) --> ',PFAtt |
209 |
|
endif |
210 |
|
|
211 |
|
|
212 |
|
* ====================================== |
213 |
|
* temporary patch for saturated clusters |
214 |
|
* ====================================== |
215 |
|
if( nsatstrips(ic).gt.0 )then |
216 |
|
corr = cog(4,ic) |
217 |
|
res = pitchX*1e-4/sqrt(12.) |
218 |
|
cc cc=cog(4,ic) |
219 |
|
c$$$ print*,ic,' *** ',cc |
220 |
|
c$$$ print*,ic,' *** ',res |
221 |
|
endif |
222 |
|
|
223 |
|
|
224 |
|
elseif(mod(iview,2).eq.1)then |
225 |
|
c ================================================= |
226 |
|
c Y view |
227 |
|
c ================================================= |
228 |
|
|
229 |
|
res = RESYAV |
230 |
|
|
231 |
|
if(PFAtt.eq.'COG1')then |
232 |
|
|
233 |
|
corr = 0 |
234 |
|
res = 1e-4*pitchY/sqrt(12.)!res |
235 |
|
|
236 |
|
elseif(PFAtt.eq.'COG2')then |
237 |
|
|
238 |
|
corr = cog(2,ic) |
239 |
|
res = risy_cog(abs(ang))!TEMPORANEO |
240 |
|
res = res*fbad_cog(2,ic) |
241 |
|
|
242 |
|
elseif(PFAtt.eq.'COG3')then |
243 |
|
|
244 |
|
corr = cog(3,ic) |
245 |
|
res = risy_cog(abs(ang))!TEMPORANEO |
246 |
|
res = res*fbad_cog(3,ic) |
247 |
|
|
248 |
|
elseif(PFAtt.eq.'COG4')then |
249 |
|
|
250 |
|
corr = cog(4,ic) |
251 |
|
res = risy_cog(abs(ang))!TEMPORANEO |
252 |
|
res = res*fbad_cog(4,ic) |
253 |
|
|
254 |
|
elseif(PFAtt.eq.'ETA2')then |
255 |
|
|
256 |
|
corr = pfaeta2(ic,ang) |
257 |
|
res = risyeta2(abs(ang)) |
258 |
|
res = res*fbad_cog(2,ic) |
259 |
|
|
260 |
|
elseif(PFAtt.eq.'ETA3')then |
261 |
|
|
262 |
|
corr = pfaeta3(ic,ang) |
263 |
|
res = res*fbad_cog(3,ic) |
264 |
|
|
265 |
|
elseif(PFAtt.eq.'ETA4')then |
266 |
|
|
267 |
|
corr = pfaeta4(ic,ang) |
268 |
|
res = res*fbad_cog(4,ic) |
269 |
|
|
270 |
|
elseif(PFAtt.eq.'ETA')then |
271 |
|
|
272 |
|
corr = pfaeta(ic,ang) |
273 |
|
c res = riseta(ic,ang) |
274 |
|
res = riseta(iview,ang) |
275 |
|
res = res*fbad_eta(ic,ang) |
276 |
|
|
277 |
|
elseif(PFAtt.eq.'ETAL')then |
278 |
|
|
279 |
|
corr = pfaetal(ic,ang) |
280 |
|
res = riseta(iview,ang) |
281 |
|
res = res*fbad_eta(ic,ang) |
282 |
|
|
283 |
|
elseif(PFAtt.eq.'COG')then |
284 |
|
|
285 |
|
corr = cog(0,ic) |
286 |
|
res = risy_cog(abs(ang)) |
287 |
|
res = res*fbad_cog(0,ic) |
288 |
|
|
289 |
|
else |
290 |
|
if(DEBUG.EQ.1) print*,'*** Non valid p.f.a. (y) --> ',PFAtt |
291 |
|
endif |
292 |
|
|
293 |
|
|
294 |
|
* ====================================== |
295 |
|
* temporary patch for saturated clusters |
296 |
|
* ====================================== |
297 |
|
if( nsatstrips(ic).gt.0 )then |
298 |
|
corr = cog(4,ic) |
299 |
|
res = pitchY*1e-4/sqrt(12.) |
300 |
|
cc cc=cog(4,ic) |
301 |
|
c$$$ print*,ic,' *** ',cc |
302 |
|
c$$$ print*,ic,' *** ',res |
303 |
|
endif |
304 |
|
|
305 |
|
endif |
306 |
|
end |
307 |
|
|
308 |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
309 |
|
integer function npfastrips(ic,angle) |
310 |
|
*-------------------------------------------------------------- |
311 |
|
* thid function returns the number of strips used |
312 |
|
* to evaluate the position of a cluster, according to the p.f.a. |
313 |
|
*-------------------------------------------------------------- |
314 |
|
include 'commontracker.f' |
315 |
|
include 'level1.f' |
316 |
|
include 'calib.f' |
317 |
|
|
318 |
|
character*4 usedPFA |
319 |
|
|
320 |
|
|
321 |
|
|
322 |
|
call idtoc(pfaid,usedPFA) |
323 |
|
|
324 |
|
npfastrips=-1 |
325 |
|
|
326 |
|
if(usedPFA.eq.'COG1')npfastrips=1 |
327 |
|
if(usedPFA.eq.'COG2')npfastrips=2 |
328 |
|
if(usedPFA.eq.'COG3')npfastrips=3 |
329 |
|
if(usedPFA.eq.'COG4')npfastrips=4 |
330 |
|
if(usedPFA.eq.'ETA2')npfastrips=2 |
331 |
|
if(usedPFA.eq.'ETA3')npfastrips=3 |
332 |
|
if(usedPFA.eq.'ETA4')npfastrips=4 |
333 |
|
* ---------------------------------------------------------------- |
334 |
|
if(usedPFA.eq.'ETA'.or.usedPFA.eq.'ETAL')then |
335 |
|
c print*,VIEW(ic),angle |
336 |
|
if(mod(int(VIEW(ic)),2).eq.1)then !Y-view |
337 |
|
if( abs(angle).ge.e2fay.and.abs(angle).lt.e2tay )then |
338 |
|
npfastrips=2 |
339 |
|
elseif( abs(angle).ge.e3fay.and.abs(angle).lt.e3tay )then |
340 |
|
npfastrips=3 |
341 |
|
elseif( abs(angle).ge.e4fay.and.abs(angle).lt.e4tay )then |
342 |
|
npfastrips=4 |
343 |
|
else |
344 |
|
npfastrips=4 !COG4 |
345 |
|
endif |
346 |
|
else !X-view |
347 |
|
if( abs(angle).ge.e2fax.and.abs(angle).lt.e2tax )then |
348 |
|
npfastrips=2 |
349 |
|
elseif( abs(angle).ge.e3fax.and.abs(angle).lt.e3tax )then |
350 |
|
npfastrips=3 |
351 |
|
elseif( abs(angle).ge.e4fax.and.abs(angle).lt.e4tax )then |
352 |
|
npfastrips=4 |
353 |
|
else |
354 |
|
npfastrips=4 !COG4 |
355 |
|
endif |
356 |
|
endif |
357 |
|
endif |
358 |
|
* ---------------------------------------------------------------- |
359 |
|
if(usedPFA.eq.'COG')then |
360 |
|
|
361 |
|
npfastrips=0 |
362 |
|
|
363 |
|
c$$$ iv=VIEW(ic) |
364 |
|
c$$$ if(mod(iv,2).eq.1)incut=incuty |
365 |
|
c$$$ if(mod(iv,2).eq.0)incut=incutx |
366 |
|
c$$$ istart = INDSTART(IC) |
367 |
|
c$$$ istop = TOTCLLENGTH |
368 |
|
c$$$ if(ic.lt.NCLSTR1)istop=INDSTART(IC+1)-1 |
369 |
|
c$$$ mu = 0 |
370 |
|
c$$$ do i = INDMAX(IC),istart,-1 |
371 |
|
c$$$ ipos = i-INDMAX(ic) |
372 |
|
c$$$ cut = incut*CLSIGMA(i) |
373 |
|
c$$$ if(CLSIGNAL(i).ge.cut)then |
374 |
|
c$$$ mu = mu + 1 |
375 |
|
c$$$ print*,i,mu |
376 |
|
c$$$ else |
377 |
|
c$$$ goto 10 |
378 |
|
c$$$ endif |
379 |
|
c$$$ enddo |
380 |
|
c$$$ 10 continue |
381 |
|
c$$$ do i = INDMAX(IC)+1,istop |
382 |
|
c$$$ ipos = i-INDMAX(ic) |
383 |
|
c$$$ cut = incut*CLSIGMA(i) |
384 |
|
c$$$ if(CLSIGNAL(i).ge.cut)then |
385 |
|
c$$$ mu = mu + 1 |
386 |
|
c$$$ print*,i,mu |
387 |
|
c$$$ else |
388 |
|
c$$$ goto 20 |
389 |
|
c$$$ endif |
390 |
|
c$$$ enddo |
391 |
|
c$$$ 20 continue |
392 |
|
c$$$ npfastrips=mu |
393 |
|
|
394 |
|
endif |
395 |
|
* ---------------------------------------------------------------- |
396 |
|
|
397 |
|
c print*,pfaid,usedPFA,angle,npfastrips |
398 |
|
|
399 |
|
return |
400 |
|
end |
401 |
|
|
402 |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
403 |
real function pfa_eta(ic,angle) |
real function pfaeta(ic,angle) |
404 |
*-------------------------------------------------------------- |
*-------------------------------------------------------------- |
405 |
* this function returns the position (in strip units) |
* this function returns the position (in strip units) |
406 |
* it calls: |
* it calls: |
407 |
* - pfa_eta2(ic,angle) |
* - pfaeta2(ic,angle) |
408 |
* - pfa_eta3(ic,angle) |
* - pfaeta3(ic,angle) |
409 |
* - pfa_eta4(ic,angle) |
* - pfaeta4(ic,angle) |
410 |
* according to the angle |
* according to the angle |
411 |
*-------------------------------------------------------------- |
*-------------------------------------------------------------- |
412 |
include 'commontracker.f' |
include 'commontracker.f' |
|
c include 'calib.f' |
|
413 |
include 'level1.f' |
include 'level1.f' |
414 |
|
include 'calib.f' |
415 |
|
|
416 |
pfa_eta = 0 |
pfaeta = 0 |
417 |
|
|
418 |
if(mod(int(VIEW(ic)),2).eq.1)then !Y-view |
if(mod(int(VIEW(ic)),2).eq.1)then !Y-view |
419 |
|
|
420 |
pfa_eta = pfa_eta2(ic,angle) |
if( abs(angle).ge.e2fay.and.abs(angle).lt.e2tay )then |
421 |
|
pfaeta = pfaeta2(ic,angle) |
422 |
|
cc print*,pfaeta2(ic,angle) |
423 |
|
elseif( abs(angle).ge.e3fay.and.abs(angle).lt.e3tay )then |
424 |
|
pfaeta = pfaeta3(ic,angle) |
425 |
|
elseif( abs(angle).ge.e4fay.and.abs(angle).lt.e4tay )then |
426 |
|
pfaeta = pfaeta4(ic,angle) |
427 |
|
else |
428 |
|
pfaeta = cog(4,ic) |
429 |
|
endif |
430 |
|
|
431 |
else !X-view |
else !X-view |
432 |
|
|
433 |
if(abs(angle).le.10.)then |
if( abs(angle).ge.e2fax.and.abs(angle).lt.e2tax )then |
434 |
pfa_eta = pfa_eta2(ic,angle) |
pfaeta = pfaeta2(ic,angle) |
435 |
elseif(abs(angle).gt.10..and.abs(angle).le.15.)then |
elseif( abs(angle).ge.e3fax.and.abs(angle).lt.e3tax )then |
436 |
pfa_eta = pfa_eta3(ic,angle) |
pfaeta = pfaeta3(ic,angle) |
437 |
elseif(abs(angle).gt.15.)then |
elseif( abs(angle).ge.e4fax.and.abs(angle).lt.e4tax )then |
438 |
pfa_eta = pfa_eta4(ic,angle) |
pfaeta = pfaeta4(ic,angle) |
439 |
endif |
else |
440 |
|
pfaeta = cog(4,ic) |
441 |
|
endif |
442 |
|
|
443 |
endif |
endif |
444 |
|
|
|
|
|
445 |
100 return |
100 return |
446 |
end |
end |
447 |
|
|
448 |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
449 |
real function ris_eta(ic,angle) |
real function pfaetal(ic,angle) |
450 |
*-------------------------------------------------------------- |
*-------------------------------------------------------------- |
451 |
* this function returns the average spatial resolution |
* this function returns the position (in strip units) |
|
* (in cm) for the ETA algorithm (function pfa_eta(ic,angle)) |
|
452 |
* it calls: |
* it calls: |
453 |
* - risx_eta2(angle) |
* - pfaeta2(ic,angle)+pfcorr(ic,angle) |
454 |
* - risy_eta2(angle) |
* - pfaeta3(ic,angle)+pfcorr(ic,angle) |
455 |
* - risx_eta3(angle) |
* - pfaeta4(ic,angle)+pfcorr(ic,angle) |
|
* - risx_eta4(angle) |
|
456 |
* according to the angle |
* according to the angle |
457 |
*-------------------------------------------------------------- |
*-------------------------------------------------------------- |
458 |
include 'commontracker.f' |
include 'commontracker.f' |
|
c include 'calib.f' |
|
459 |
include 'level1.f' |
include 'level1.f' |
460 |
|
include 'calib.f' |
|
c$$$ logical DEBUG |
|
|
c$$$ common/dbg/DEBUG |
|
461 |
|
|
462 |
ris_eta = 0 |
pfaetal = 0 |
463 |
|
|
464 |
if(mod(int(VIEW(ic)),2).eq.1)then !Y-view |
if(mod(int(VIEW(ic)),2).eq.1)then !Y-view |
465 |
|
|
466 |
ris_eta = risy_eta2(angle) |
if( abs(angle).ge.e2fay.and.abs(angle).lt.e2tay )then |
467 |
if(abs(angle).gt.21.)ris_eta = risy_eta2(21.) |
pfaetal = pfaeta2(ic,angle)+pfacorr(ic,angle) |
468 |
|
cc print*,VIEW(ic),angle,pfaeta2(ic,angle),pfacorr(ic,angle) |
469 |
|
elseif( abs(angle).ge.e3fay.and.abs(angle).lt.e3tay )then |
470 |
|
pfaetal = pfaeta3(ic,angle)+pfacorr(ic,angle) |
471 |
|
elseif( abs(angle).ge.e4fay.and.abs(angle).lt.e4tay )then |
472 |
|
pfaetal = pfaeta4(ic,angle)+pfacorr(ic,angle) |
473 |
|
else |
474 |
|
pfaetal = cog(4,ic) |
475 |
|
endif |
476 |
|
|
477 |
else !X-view |
else !X-view |
478 |
|
|
479 |
if(abs(angle).le.10.)then |
if( abs(angle).ge.e2fax.and.abs(angle).lt.e2tax )then |
480 |
ris_eta = risx_eta2(angle) |
pfaetal = pfaeta2(ic,angle)+pfacorr(ic,angle) |
481 |
elseif(abs(angle).gt.10..and.abs(angle).le.15.)then |
cc print*,VIEW(ic),angle,pfaeta2(ic,angle),pfacorr(ic,angle) |
482 |
ris_eta = risx_eta3(angle) |
elseif( abs(angle).ge.e3fax.and.abs(angle).lt.e3tax )then |
483 |
elseif(abs(angle).gt.15..and.abs(angle).le.21.)then |
pfaetal = pfaeta3(ic,angle)+pfacorr(ic,angle) |
484 |
ris_eta = risx_eta4(angle) |
elseif( abs(angle).ge.e4fax.and.abs(angle).lt.e4tax )then |
485 |
elseif(abs(angle).gt.21.)then |
pfaetal = pfaeta4(ic,angle)+pfacorr(ic,angle) |
486 |
ris_eta = risx_eta4(21.) |
else |
487 |
endif |
pfaetal = cog(4,ic) |
488 |
|
endif |
489 |
|
|
490 |
endif |
endif |
491 |
|
|
492 |
|
100 return |
493 |
|
end |
494 |
|
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
495 |
|
c real function riseta(ic,angle) |
496 |
|
real function riseta(iview,angle) |
497 |
|
*-------------------------------------------------------------- |
498 |
|
* this function returns the average spatial resolution |
499 |
|
* (in cm) for the ETA algorithm (function pfaeta(ic,angle)) |
500 |
|
* it calls: |
501 |
|
* - risxeta2(angle) |
502 |
|
* - risyeta2(angle) |
503 |
|
* - risxeta3(angle) |
504 |
|
* - risxeta4(angle) |
505 |
|
* according to the angle |
506 |
|
*-------------------------------------------------------------- |
507 |
|
include 'commontracker.f' |
508 |
|
include 'level1.f' |
509 |
|
include 'calib.f' |
510 |
|
|
511 |
c$$$ if(DEBUG)print*,'ris (ic ',ic,' ang',angle,')' |
riseta = 0 |
512 |
c$$$ $ ,' -->',ris_eta |
|
513 |
|
c if(mod(int(VIEW(ic)),2).eq.1)then !Y-view |
514 |
|
if(mod(iview,2).eq.1)then !Y-view |
515 |
|
|
516 |
|
|
517 |
|
if( abs(angle).ge.e2fay.and.abs(angle).le.e2tay )then |
518 |
|
riseta = risyeta2(angle) |
519 |
|
elseif( abs(angle).ge.e3fay.and.abs(angle).le.e3tay )then |
520 |
|
riseta = risy_cog(angle) !ATTENZIONE!! |
521 |
|
elseif( abs(angle).ge.e4fay.and.abs(angle).le.e4tay )then |
522 |
|
riseta = risy_cog(angle) !ATTENZIONE!! |
523 |
|
else |
524 |
|
riseta = risy_cog(angle) |
525 |
|
endif |
526 |
|
|
527 |
|
else !X-view |
528 |
|
|
529 |
|
if( abs(angle).ge.e2fax.and.abs(angle).le.e2tax )then |
530 |
|
riseta = risxeta2(angle) |
531 |
|
elseif( abs(angle).ge.e3fax.and.abs(angle).le.e3tax )then |
532 |
|
riseta = risxeta3(angle) |
533 |
|
elseif( abs(angle).ge.e4fax.and.abs(angle).le.e4tax )then |
534 |
|
riseta = risxeta4(angle) |
535 |
|
else |
536 |
|
riseta = risx_cog(angle) |
537 |
|
endif |
538 |
|
|
539 |
|
endif |
540 |
|
|
541 |
|
|
542 |
100 return |
100 return |
556 |
|
|
557 |
include 'commontracker.f' |
include 'commontracker.f' |
558 |
include 'level1.f' |
include 'level1.f' |
559 |
* include 'calib.f' |
include 'calib.f' |
560 |
fbad_eta = 0 |
fbad_eta = 0 |
561 |
|
|
562 |
if(mod(int(VIEW(ic)),2).eq.1)then !Y-view |
if(mod(int(VIEW(ic)),2).eq.1)then !Y-view |
563 |
|
|
564 |
fbad_eta = fbad_cog(2,ic) |
if( abs(angle).ge.e2fay.and.abs(angle).le.e2tay )then |
565 |
|
fbad_eta = fbad_cog(2,ic) |
566 |
|
elseif( abs(angle).ge.e3fay.and.abs(angle).le.e3tay )then |
567 |
|
fbad_eta = fbad_cog(3,ic) |
568 |
|
elseif( abs(angle).ge.e4fay.and.abs(angle).le.e4tay )then |
569 |
|
fbad_eta = fbad_cog(4,ic) |
570 |
|
else |
571 |
|
fbad_eta = fbad_cog(4,ic) |
572 |
|
endif |
573 |
|
|
574 |
else !X-view |
else !X-view |
575 |
|
|
576 |
if(abs(angle).le.10.)then |
if( abs(angle).ge.e2fax.and.abs(angle).le.e2tax )then |
577 |
fbad_eta = fbad_cog(2,ic) |
fbad_eta = fbad_cog(2,ic) |
578 |
elseif(abs(angle).gt.10..and.abs(angle).le.15.)then |
elseif( abs(angle).ge.e3fax.and.abs(angle).le.e3tax )then |
579 |
fbad_eta = fbad_cog(3,ic) |
fbad_eta = fbad_cog(3,ic) |
580 |
elseif(abs(angle).gt.15.)then |
elseif( abs(angle).ge.e4fax.and.abs(angle).le.e4tax )then |
581 |
fbad_eta = fbad_cog(4,ic) |
fbad_eta = fbad_cog(4,ic) |
582 |
endif |
else |
583 |
|
fbad_eta = fbad_cog(4,ic) |
584 |
|
endif |
585 |
|
|
586 |
endif |
endif |
587 |
|
|
589 |
end |
end |
590 |
|
|
591 |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
592 |
c***************************************************** |
real function pfaeta2(ic,angle) !(1) |
|
cccccc 02/02/2006 modified by Elena Vannuccini --> (1) |
|
|
c***************************************************** |
|
|
c real function pfa_eta2(cog2,view,lad,angle) |
|
|
real function pfa_eta2(ic,angle) !(1) |
|
593 |
*-------------------------------------------------------------- |
*-------------------------------------------------------------- |
594 |
* this function returns |
* this function returns |
595 |
* |
* |
608 |
real cog2,angle |
real cog2,angle |
609 |
integer iview,lad |
integer iview,lad |
610 |
|
|
611 |
logical DEBUG |
iview = VIEW(ic) |
612 |
common/dbg/DEBUG |
lad = nld(MAXS(ic),VIEW(ic)) |
613 |
|
cog2 = cog(2,ic) |
614 |
iview = VIEW(ic) !(1) |
pfaeta2=cog2 |
|
lad = nld(MAXS(ic),VIEW(ic)) !(1) |
|
|
cog2 = cog(2,ic) !(1) |
|
|
pfa_eta2=cog2 |
|
615 |
|
|
616 |
|
* ---------------- |
617 |
* find angular bin |
* find angular bin |
618 |
|
* ---------------- |
619 |
* (in futuro possiamo pensare di interpolare anche sull'angolo) |
* (in futuro possiamo pensare di interpolare anche sull'angolo) |
620 |
do iang=1,nangbin |
do iang=1,nangbin |
|
c print*,'~~~~~~~~~~~~ ',iang,angL(iang),angR(iang),angle |
|
621 |
if(angL(iang).lt.angle.and.angR(iang).ge.angle)then |
if(angL(iang).lt.angle.and.angR(iang).ge.angle)then |
622 |
iangle=iang |
iangle=iang |
623 |
goto 98 |
goto 98 |
624 |
endif |
endif |
625 |
enddo |
enddo |
626 |
if(DEBUG) |
if(DEBUG.EQ.1) |
627 |
$ print*,'pfa_eta2 *** warning *** angle out of range: ',angle |
$ print*,'pfaeta2 *** warning *** angle out of range: ',angle |
628 |
if(angle.lt.angL(1))iang=1 |
if(angle.le.angL(1))iang=1 |
629 |
if(angle.gt.angR(nangbin))iang=nangbin |
if(angle.ge.angR(nangbin))iang=nangbin |
630 |
98 continue !jump here if ok |
98 continue !jump here if ok |
631 |
|
|
632 |
|
* ------------- |
633 |
|
* within +/-0.5 |
634 |
|
* ------------- |
635 |
|
|
636 |
c$$$* find extremes of interpolation |
iaddmax=10 |
|
c$$$ iflag=0 |
|
|
c$$$* -------------------------------- |
|
|
c$$$ if(cog2.lt.eta2(1,iang).or.cog2.gt.eta2(netaval,iang))then |
|
|
c$$$c print*,'pfa_eta2 *** warning *** argument out of range: ',cog2 |
|
|
c$$$* goto 100 |
|
|
c$$$* ---------------------------------------------- |
|
|
c$$$* non salto piu`, ma scalo di 1 o -1 |
|
|
c$$$* nel caso si tratti di un cluster |
|
|
c$$$* in cui la strip con il segnale massimo non coincide |
|
|
c$$$* con la strip con il rapposto s/n massimo!!! |
|
|
c$$$* ---------------------------------------------- |
|
|
c$$$ if(cog2.lt.eta2(1,iang))then !temp |
|
|
c$$$ cog2=cog2+1. !temp |
|
|
c$$$ iflag=1 !temp |
|
|
c$$$ else !temp |
|
|
c$$$ cog2=cog2-1. !temp |
|
|
c$$$ iflag=-1 !temp |
|
|
c$$$ endif !temp |
|
|
c$$$c print*,'shifted >>> ',cog2 |
|
|
c$$$ endif |
|
|
|
|
637 |
iadd=0 |
iadd=0 |
638 |
10 continue |
10 continue |
639 |
if(cog2.lt.eta2(1,iang))then |
if(cog2.lt.eta2(1,iang))then |
640 |
cog2 = cog2 + 1 |
cog2 = cog2 + 1 |
641 |
iadd = iadd + 1 |
iadd = iadd + 1 |
642 |
|
if(iadd>iaddmax)goto 111 |
643 |
goto 10 |
goto 10 |
644 |
endif |
endif |
645 |
20 continue |
20 continue |
646 |
if(cog2.gt.eta2(netaval,iang))then |
if(cog2.gt.eta2(netaval,iang))then |
647 |
cog2 = cog2 - 1 |
cog2 = cog2 - 1 |
648 |
iadd = iadd - 1 |
iadd = iadd - 1 |
649 |
|
if(iadd<-1*iaddmax)goto 111 |
650 |
goto 20 |
goto 20 |
651 |
endif |
endif |
652 |
|
goto 1111 |
653 |
|
111 continue |
654 |
|
if(DEBUG.eq.1)print*,'pfaeta2 *** warning *** anomalous cluster' |
655 |
|
if(DEBUG.eq.1)print*,'--> COG(2) = ',cog2-iadd,' (set to zero)' |
656 |
|
cog2=0 |
657 |
|
1111 continue |
658 |
|
|
659 |
* -------------------------------- |
* -------------------------------- |
660 |
c print*,'*****',i,view,lad,iang,'------> cog2 ',cog2 |
c print*,'*****',i,view,lad,iang,'------> cog2 ',cog2 |
677 |
AA=(y2-y1)/(x2-x1) |
AA=(y2-y1)/(x2-x1) |
678 |
BB=y1-AA*x1 |
BB=y1-AA*x1 |
679 |
|
|
680 |
pfa_eta2 = AA*cog2+BB |
pfaeta2 = AA*cog2+BB |
681 |
pfa_eta2 = pfa_eta2 - iadd |
pfaeta2 = pfaeta2 - iadd |
682 |
|
|
683 |
c$$$ if(iflag.eq.1)then |
c$$$ if(iflag.eq.1)then |
684 |
c$$$ pfa_eta2=pfa_eta2-1. !temp |
c$$$ pfaeta2=pfaeta2-1. !temp |
685 |
c$$$ cog2=cog2-1. !temp |
c$$$ cog2=cog2-1. !temp |
686 |
c$$$ endif |
c$$$ endif |
687 |
c$$$ if(iflag.eq.-1)then |
c$$$ if(iflag.eq.-1)then |
688 |
c$$$ pfa_eta2=pfa_eta2+1. !temp |
c$$$ pfaeta2=pfaeta2+1. !temp |
689 |
c$$$ cog2=cog2+1. !temp |
c$$$ cog2=cog2+1. !temp |
690 |
c$$$ endif |
c$$$ endif |
691 |
|
|
692 |
if(DEBUG)print*,'ETA2 (ic ',ic,' ang',angle,')' |
if(DEBUG.EQ.1)print*,'ETA2 (ic ',ic,' ang',angle,')' |
693 |
$ ,cog2-iadd,' -->',pfa_eta2 |
$ ,cog2-iadd,' -->',pfaeta2 |
694 |
|
|
695 |
|
|
696 |
100 return |
100 return |
697 |
end |
end |
698 |
|
|
699 |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
700 |
c***************************************************** |
real function pfaeta3(ic,angle) !(1) |
|
cccccc 02/02/2006 modified by Elena Vannuccini --> (1) |
|
|
c***************************************************** |
|
|
c real function pfa_eta3(cog3,view,lad,angle) |
|
|
real function pfa_eta3(ic,angle) !(1) |
|
701 |
*-------------------------------------------------------------- |
*-------------------------------------------------------------- |
702 |
* this function returns |
* this function returns |
703 |
* |
* |
716 |
real cog3,angle |
real cog3,angle |
717 |
integer iview,lad |
integer iview,lad |
718 |
|
|
|
logical DEBUG |
|
|
common/dbg/DEBUG |
|
|
|
|
719 |
|
|
720 |
iview = VIEW(ic) !(1) |
iview = VIEW(ic) |
721 |
lad = nld(MAXS(ic),VIEW(ic)) !(1) |
lad = nld(MAXS(ic),VIEW(ic)) |
722 |
cog3 = cog(3,ic) !(1) |
cog3 = cog(3,ic) |
723 |
pfa_eta3=cog3 |
cc = cog3 |
724 |
|
cog3 = cc |
725 |
|
pfaeta3=cog3 |
726 |
|
|
727 |
|
* ---------------- |
728 |
* find angular bin |
* find angular bin |
729 |
|
* ---------------- |
730 |
* (in futuro possiamo pensare di interpolare anche sull'angolo) |
* (in futuro possiamo pensare di interpolare anche sull'angolo) |
731 |
do iang=1,nangbin |
do iang=1,nangbin |
732 |
c print*,'~~~~~~~~~~~~ ',iang,angL(iang),angR(iang),angle |
c print*,'~~~~~~~~~~~~ ',iang,angL(iang),angR(iang),angle |
735 |
goto 98 |
goto 98 |
736 |
endif |
endif |
737 |
enddo |
enddo |
738 |
if(DEBUG) |
if(DEBUG.EQ.1) |
739 |
$ print*,'pfa_eta3 *** warning *** angle out of range: ',angle |
$ print*,'pfaeta3 *** warning *** angle out of range: ',angle |
740 |
if(angle.lt.angL(1))iang=1 |
if(angle.le.angL(1))iang=1 |
741 |
if(angle.gt.angR(nangbin))iang=nangbin |
if(angle.ge.angR(nangbin))iang=nangbin |
742 |
98 continue !jump here if ok |
98 continue !jump here if ok |
743 |
|
|
744 |
|
* ------------- |
745 |
|
* within +/-0.5 |
746 |
|
* ------------- |
747 |
|
|
748 |
c$$$* find extremes of interpolation |
iaddmax=10 |
|
c$$$ iflag=0 |
|
|
c$$$* -------------------------------- |
|
|
c$$$ if(cog3.lt.eta3(1,iang).or.cog3.gt.eta3(netaval,iang))then |
|
|
c$$$* ---------------------------------------------- |
|
|
c$$$* non salto piu`, ma scalo di 1 o -1 |
|
|
c$$$* nel caso si tratti di un cluster |
|
|
c$$$* in cui la strip con il segnale massimo non coincide |
|
|
c$$$* con la strip con il rapposto s/n massimo!!! |
|
|
c$$$* ---------------------------------------------- |
|
|
c$$$ if(cog2.lt.eta2(1,iang))then !temp |
|
|
c$$$ cog2=cog2+1. !temp |
|
|
c$$$ iflag=1 !temp |
|
|
c$$$ else !temp |
|
|
c$$$ cog2=cog2-1. !temp |
|
|
c$$$ iflag=-1 !temp |
|
|
c$$$ endif !temp |
|
|
c$$$c print*,'shifted >>> ',cog2 |
|
|
c$$$ endif |
|
|
|
|
|
|
|
749 |
iadd=0 |
iadd=0 |
750 |
10 continue |
10 continue |
751 |
if(cog3.lt.eta3(1,iang))then |
if(cog3.lt.eta3(1,iang))then |
752 |
cog3 = cog3 + 1 |
cog3 = cog3 + 1. |
753 |
iadd = iadd + 1 |
iadd = iadd + 1 |
754 |
|
if(iadd>iaddmax) goto 111 |
755 |
goto 10 |
goto 10 |
756 |
endif |
endif |
757 |
20 continue |
20 continue |
758 |
if(cog3.gt.eta3(netaval,iang))then |
if(cog3.gt.eta3(netaval,iang))then |
759 |
cog3 = cog3 - 1 |
cog3 = cog3 - 1. |
760 |
iadd = iadd - 1 |
iadd = iadd - 1 |
761 |
|
if(iadd<-1*iaddmax) goto 111 |
762 |
goto 20 |
goto 20 |
763 |
endif |
endif |
764 |
|
goto 1111 |
765 |
|
111 continue |
766 |
|
if(DEBUG.eq.1)print*,'pfaeta3 *** warning *** anomalous cluster' |
767 |
|
if(DEBUG.eq.1)print*,'--> COG(3) = ',cog3-iadd,' (set to zero)' |
768 |
|
cog3=0 |
769 |
|
1111 continue |
770 |
|
|
771 |
* -------------------------------- |
* -------------------------------- |
772 |
c print*,'*****',i,view,lad,iang,'------> cog2 ',cog2 |
c print*,'*****',i,view,lad,iang,'------> cog2 ',cog2 |
789 |
AA=(y2-y1)/(x2-x1) |
AA=(y2-y1)/(x2-x1) |
790 |
BB=y1-AA*x1 |
BB=y1-AA*x1 |
791 |
|
|
792 |
pfa_eta3 = AA*cog3+BB |
pfaeta3 = AA*cog3+BB |
793 |
pfa_eta3 = pfa_eta3 - iadd |
pfaeta3 = pfaeta3 - iadd |
794 |
|
|
|
c$$$ if(iflag.eq.1)then |
|
|
c$$$ pfa_eta2=pfa_eta2-1. !temp |
|
|
c$$$ cog2=cog2-1. !temp |
|
|
c$$$ endif |
|
|
c$$$ if(iflag.eq.-1)then |
|
|
c$$$ pfa_eta2=pfa_eta2+1. !temp |
|
|
c$$$ cog2=cog2+1. !temp |
|
|
c$$$ endif |
|
795 |
|
|
796 |
if(DEBUG)print*,'ETA3 (ic ',ic,' ang',angle,')' |
if(DEBUG.EQ.1)print*,'ETA3 (ic ',ic,' ang',angle,')' |
797 |
$ ,cog3-iadd,' -->',pfa_eta3 |
$ ,cog3-iadd,' -->',pfaeta3 |
798 |
|
|
799 |
100 return |
100 return |
800 |
end |
end |
801 |
|
|
802 |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
803 |
c***************************************************** |
real function pfaeta4(ic,angle) |
|
cccccc 02/02/2006 modified by Elena Vannuccini --> (1) |
|
|
c***************************************************** |
|
|
c real function pfa_eta4(cog4,view,lad,angle) |
|
|
real function pfa_eta4(ic,angle) !(1) |
|
804 |
*-------------------------------------------------------------- |
*-------------------------------------------------------------- |
805 |
* this function returns |
* this function returns |
806 |
* |
* |
819 |
real cog4,angle |
real cog4,angle |
820 |
integer iview,lad |
integer iview,lad |
821 |
|
|
|
logical DEBUG |
|
|
common/dbg/DEBUG |
|
822 |
|
|
823 |
iview = VIEW(ic) !(1) |
iview = VIEW(ic) |
824 |
lad = nld(MAXS(ic),VIEW(ic)) !(1) |
lad = nld(MAXS(ic),VIEW(ic)) |
825 |
cog4=cog(4,ic) !(1) |
cog4=cog(4,ic) |
826 |
pfa_eta4=cog4 |
pfaeta4=cog4 |
827 |
|
|
828 |
|
* ---------------- |
829 |
* find angular bin |
* find angular bin |
830 |
|
* ---------------- |
831 |
* (in futuro possiamo pensare di interpolare anche sull'angolo) |
* (in futuro possiamo pensare di interpolare anche sull'angolo) |
832 |
do iang=1,nangbin |
do iang=1,nangbin |
833 |
c print*,'~~~~~~~~~~~~ ',iang,angL(iang),angR(iang),angle |
c print*,'~~~~~~~~~~~~ ',iang,angL(iang),angR(iang),angle |
836 |
goto 98 |
goto 98 |
837 |
endif |
endif |
838 |
enddo |
enddo |
839 |
if(DEBUG) |
if(DEBUG.EQ.1) |
840 |
$ print*,'pfa_eta4 *** warning *** angle out of range: ',angle |
$ print*,'pfaeta4 *** warning *** angle out of range: ',angle |
841 |
if(angle.lt.angL(1))iang=1 |
if(angle.le.angL(1))iang=1 |
842 |
if(angle.gt.angR(nangbin))iang=nangbin |
if(angle.ge.angR(nangbin))iang=nangbin |
843 |
98 continue !jump here if ok |
98 continue !jump here if ok |
844 |
|
|
845 |
|
* ------------- |
846 |
|
* within +/-0.5 |
847 |
|
* ------------- |
848 |
|
|
849 |
c$$$* find extremes of interpolation |
iaddmax=10 |
|
c$$$ iflag=0 |
|
|
c$$$* -------------------------------- |
|
|
c$$$ if(cog3.lt.eta3(1,iang).or.cog3.gt.eta3(netaval,iang))then |
|
|
c$$$* ---------------------------------------------- |
|
|
c$$$* non salto piu`, ma scalo di 1 o -1 |
|
|
c$$$* nel caso si tratti di un cluster |
|
|
c$$$* in cui la strip con il segnale massimo non coincide |
|
|
c$$$* con la strip con il rapposto s/n massimo!!! |
|
|
c$$$* ---------------------------------------------- |
|
|
c$$$ if(cog2.lt.eta2(1,iang))then !temp |
|
|
c$$$ cog2=cog2+1. !temp |
|
|
c$$$ iflag=1 !temp |
|
|
c$$$ else !temp |
|
|
c$$$ cog2=cog2-1. !temp |
|
|
c$$$ iflag=-1 !temp |
|
|
c$$$ endif !temp |
|
|
c$$$c print*,'shifted >>> ',cog2 |
|
|
c$$$ endif |
|
|
|
|
|
|
|
850 |
iadd=0 |
iadd=0 |
851 |
10 continue |
10 continue |
852 |
if(cog4.lt.eta4(1,iang))then |
if(cog4.lt.eta4(1,iang))then |
853 |
cog4 = cog4 + 1 |
cog4 = cog4 + 1 |
854 |
iadd = iadd + 1 |
iadd = iadd + 1 |
855 |
|
if(iadd>iaddmax)goto 111 |
856 |
goto 10 |
goto 10 |
857 |
endif |
endif |
858 |
20 continue |
20 continue |
859 |
if(cog4.gt.eta4(netaval,iang))then |
if(cog4.gt.eta4(netaval,iang))then |
860 |
cog4 = cog4 - 1 |
cog4 = cog4 - 1 |
861 |
iadd = iadd - 1 |
iadd = iadd - 1 |
862 |
|
if(iadd<-1*iaddmax)goto 111 |
863 |
goto 20 |
goto 20 |
864 |
endif |
endif |
865 |
|
goto 1111 |
866 |
|
111 continue |
867 |
|
if(DEBUG.eq.1)print*,'pfaeta4 *** warning *** anomalous cluster' |
868 |
|
if(DEBUG.eq.1)print*,'--> COG(4) = ',cog4-iadd,' (set to zero)' |
869 |
|
cog4=0 |
870 |
|
1111 continue |
871 |
|
|
872 |
* -------------------------------- |
* -------------------------------- |
873 |
c print*,'*****',i,view,lad,iang,'------> cog2 ',cog2 |
c print*,'*****',i,view,lad,iang,'------> cog2 ',cog2 |
890 |
AA=(y2-y1)/(x2-x1) |
AA=(y2-y1)/(x2-x1) |
891 |
BB=y1-AA*x1 |
BB=y1-AA*x1 |
892 |
|
|
893 |
pfa_eta4 = AA*cog4+BB |
pfaeta4 = AA*cog4+BB |
894 |
pfa_eta4 = pfa_eta4 - iadd |
pfaeta4 = pfaeta4 - iadd |
895 |
|
|
896 |
c$$$ if(iflag.eq.1)then |
c$$$ if(iflag.eq.1)then |
897 |
c$$$ pfa_eta2=pfa_eta2-1. !temp |
c$$$ pfaeta2=pfaeta2-1. !temp |
898 |
c$$$ cog2=cog2-1. !temp |
c$$$ cog2=cog2-1. !temp |
899 |
c$$$ endif |
c$$$ endif |
900 |
c$$$ if(iflag.eq.-1)then |
c$$$ if(iflag.eq.-1)then |
901 |
c$$$ pfa_eta2=pfa_eta2+1. !temp |
c$$$ pfaeta2=pfaeta2+1. !temp |
902 |
c$$$ cog2=cog2+1. !temp |
c$$$ cog2=cog2+1. !temp |
903 |
c$$$ endif |
c$$$ endif |
904 |
|
|
905 |
if(DEBUG)print*,'ETA4 (ic ',ic,' ang',angle,')' |
if(DEBUG.EQ.1)print*,'ETA4 (ic ',ic,' ang',angle,')' |
906 |
$ ,cog4-iadd,' -->',pfa_eta4 |
$ ,cog4-iadd,' -->',pfaeta4 |
907 |
|
|
908 |
100 return |
100 return |
909 |
end |
end |
911 |
|
|
912 |
|
|
913 |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
|
real function cog0(ncog,ic) |
|
|
*------------------------------------------------- |
|
|
* this function returns |
|
|
* |
|
|
* - the Center-Of-Gravity of the cluster IC |
|
|
* evaluated using NCOG strips, |
|
|
* calculated relative to MAXS(IC) |
|
|
* |
|
|
* - zero in case that not enough strips |
|
|
* have a positive signal |
|
|
* |
|
|
* NOTE: |
|
|
* This is the old definition, used by Straulino. |
|
|
* The new routine, according to Landi, |
|
|
* is COG(NCOG,IC) |
|
|
*------------------------------------------------- |
|
|
|
|
|
|
|
|
include 'commontracker.f' |
|
|
include 'level1.f' |
|
|
|
|
|
* --> signal of the central strip |
|
|
sc = CLSIGNAL(INDMAX(ic)) !center |
|
|
|
|
|
* signal of adjacent strips |
|
|
* --> left |
|
|
sl1 = 0 !left 1 |
|
|
if( |
|
|
$ (INDMAX(ic)-1).ge.INDSTART(ic) |
|
|
$ ) |
|
|
$ sl1 = max(0.,CLSIGNAL(INDMAX(ic)-1)) |
|
|
|
|
|
sl2 = 0 !left 2 |
|
|
if( |
|
|
$ (INDMAX(ic)-2).ge.INDSTART(ic) |
|
|
$ ) |
|
|
$ sl2 = max(0.,CLSIGNAL(INDMAX(ic)-2)) |
|
|
|
|
|
* --> right |
|
|
sr1 = 0 !right 1 |
|
|
if( |
|
|
$ (ic.ne.NCLSTR1.and.(INDMAX(ic)+1).lt.INDSTART(ic+1)) |
|
|
$ .or. |
|
|
$ (ic.eq.NCLSTR1.and.(INDMAX(ic)+1).le.TOTCLLENGTH) |
|
|
$ ) |
|
|
$ sr1 = max(0.,CLSIGNAL(INDMAX(ic)+1)) |
|
|
|
|
|
sr2 = 0 !right 2 |
|
|
if( |
|
|
$ (ic.ne.NCLSTR1.and.(INDMAX(ic)+2).lt.INDSTART(ic+1)) |
|
|
$ .or. |
|
|
$ (ic.eq.NCLSTR1.and.(INDMAX(ic)+2).le.TOTCLLENGTH) |
|
|
$ ) |
|
|
$ sr2 = max(0.,CLSIGNAL(INDMAX(ic)+2)) |
|
|
|
|
|
************************************************************ |
|
|
* COG computation |
|
|
************************************************************ |
|
|
|
|
|
c print*,sl2,sl1,sc,sr1,sr2 |
|
|
|
|
|
COG = 0. |
|
|
|
|
|
if(sl1.gt.sr1.and.sl1.gt.0.)then |
|
|
|
|
|
if(ncog.eq.2.and.sl1.ne.0)then |
|
|
COG = -sl1/(sl1+sc) |
|
|
elseif(ncog.eq.3.and.sl1.ne.0.and.sr1.ne.0)then |
|
|
COG = (sr1-sl1)/(sl1+sc+sr1) |
|
|
elseif(ncog.eq.4.and.sl1.ne.0.and.sr1.ne.0.and.sl2.ne.0)then |
|
|
COG = (sr1-sl1-2*sl2)/(sl2+sl1+sc+sr1) |
|
|
else |
|
|
COG = 0. |
|
|
endif |
|
|
|
|
|
elseif(sl1.le.sr1.and.sr1.gt.0.)then |
|
|
|
|
|
if(ncog.eq.2.and.sr1.ne.0)then |
|
|
COG = sr1/(sc+sr1) |
|
|
elseif(ncog.eq.3.and.sr1.ne.0.and.sl1.ne.0)then |
|
|
COG = (sr1-sl1)/(sl1+sc+sr1) |
|
|
elseif(ncog.eq.4.and.sr1.ne.0.and.sl1.ne.0.and.sr2.ne.0)then |
|
|
COG = (2*sr2+sr1-sl1)/(sl2+sl1+sc+sr1) |
|
|
else |
|
|
COG = 0. |
|
|
endif |
|
|
|
|
|
endif |
|
|
|
|
|
COG0 = COG |
|
|
|
|
|
c print *,ncog,ic,cog,'/////////////' |
|
|
|
|
|
return |
|
|
end |
|
|
|
|
|
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
|
914 |
real function cog(ncog,ic) |
real function cog(ncog,ic) |
915 |
*------------------------------------------------- |
*------------------------------------------------- |
916 |
* this function returns |
* this function returns |
930 |
include 'calib.f' |
include 'calib.f' |
931 |
include 'level1.f' |
include 'level1.f' |
932 |
|
|
|
logical DEBUG |
|
|
common/dbg/DEBUG |
|
933 |
|
|
934 |
|
|
935 |
if (ncog.gt.0) then |
if (ncog.gt.0) then |
940 |
* --> signal of the central strip |
* --> signal of the central strip |
941 |
sc = CLSIGNAL(INDMAX(ic)) !center |
sc = CLSIGNAL(INDMAX(ic)) !center |
942 |
* signal of adjacent strips |
* signal of adjacent strips |
943 |
sl1 = 0 !left 1 |
sl1 = -9999. !left 1 |
944 |
if( |
if( |
945 |
$ (INDMAX(ic)-1).ge.INDSTART(ic) |
$ (INDMAX(ic)-1).ge.INDSTART(ic) |
946 |
$ ) |
$ ) |
947 |
$ sl1 = CLSIGNAL(INDMAX(ic)-1) |
$ sl1 = CLSIGNAL(INDMAX(ic)-1) |
948 |
|
|
949 |
sl2 = 0 !left 2 |
sl2 = -9999. !left 2 |
950 |
if( |
if( |
951 |
$ (INDMAX(ic)-2).ge.INDSTART(ic) |
$ (INDMAX(ic)-2).ge.INDSTART(ic) |
952 |
$ ) |
$ ) |
953 |
$ sl2 = CLSIGNAL(INDMAX(ic)-2) |
$ sl2 = CLSIGNAL(INDMAX(ic)-2) |
954 |
|
|
955 |
sr1 = 0 !right 1 |
sr1 = -9999. !right 1 |
956 |
if( |
if( |
957 |
$ (ic.ne.NCLSTR1.and.(INDMAX(ic)+1).lt.INDSTART(ic+1)) |
$ (ic.ne.NCLSTR1.and.(INDMAX(ic)+1).lt.INDSTART(ic+1)) |
958 |
$ .or. |
$ .or. |
960 |
$ ) |
$ ) |
961 |
$ sr1 = CLSIGNAL(INDMAX(ic)+1) |
$ sr1 = CLSIGNAL(INDMAX(ic)+1) |
962 |
|
|
963 |
sr2 = 0 !right 2 |
sr2 = -9999. !right 2 |
964 |
if( |
if( |
965 |
$ (ic.ne.NCLSTR1.and.(INDMAX(ic)+2).lt.INDSTART(ic+1)) |
$ (ic.ne.NCLSTR1.and.(INDMAX(ic)+2).lt.INDSTART(ic+1)) |
966 |
$ .or. |
$ .or. |
970 |
|
|
971 |
COG = 0. |
COG = 0. |
972 |
|
|
973 |
if(ncog.eq.2)then |
c print *,'## ',sl2,sl1,sc,sr1,sr2 |
974 |
|
|
975 |
|
c ============================================================== |
976 |
|
if(ncog.eq.1)then |
977 |
|
COG = 0. |
978 |
|
if(sr1.gt.sc)cog=1. |
979 |
|
if(sl1.gt.sc.and.sl1.gt.sr1)cog=-1. |
980 |
|
c ============================================================== |
981 |
|
elseif(ncog.eq.2)then |
982 |
|
COG = 0. |
983 |
if(sl1.gt.sr1)then |
if(sl1.gt.sr1)then |
984 |
COG = -sl1/(sl1+sc) |
if((sl1+sc).ne.0)COG = -sl1/(sl1+sc) |
985 |
elseif(sl1.le.sr1)then |
elseif(sl1.lt.sr1)then |
986 |
COG = sr1/(sc+sr1) |
if((sc+sr1).ne.0)COG = sr1/(sc+sr1) |
987 |
endif |
elseif( sl1.eq.sr1.and.sl1.ne.-9999.)then |
988 |
|
if( clsigma(indmax(ic)-1).lt.clsigma(indmax(ic)+1) |
989 |
|
$ .and.(sl1+sc).ne.0 )cog = -sl1/(sl1+sc) |
990 |
|
if( clsigma(indmax(ic)-1).gt.clsigma(indmax(ic)+1) |
991 |
|
$ .and.(sc+sr1).ne.0 )cog = sr1/(sc+sr1) |
992 |
|
endif |
993 |
|
c if(cog==0)print*,'Strange cluster (2) - @maxs ',MAXS(ic) |
994 |
|
c $ ,' : ',sl2,sl1,sc,sr1,sr2 |
995 |
|
c ============================================================== |
996 |
elseif(ncog.eq.3)then |
elseif(ncog.eq.3)then |
997 |
COG = (sr1-sl1)/(sl1+sc+sr1) |
COG = 0 |
998 |
|
sss = sc |
999 |
|
if( sl1.ne.-9999. )COG = COG-sl1 |
1000 |
|
if( sl1.ne.-9999. )sss = sss+sl1 |
1001 |
|
if( sr1.ne.-9999. )COG = COG+sr1 |
1002 |
|
if( sr1.ne.-9999. )sss = sss+sr1 |
1003 |
|
if(sss.ne.0)COG=COG/sss |
1004 |
|
|
1005 |
|
c if( (sl1+sc+sr1).ne.0 )COG = (sr1-sl1)/(sl1+sc+sr1) |
1006 |
|
c if(cog==0)print*,'Strange cluster (3) - @maxs ',MAXS(ic) |
1007 |
|
c $ ,' : ',sl2,sl1,sc,sr1,sr2 |
1008 |
|
c ============================================================== |
1009 |
elseif(ncog.eq.4)then |
elseif(ncog.eq.4)then |
1010 |
|
|
1011 |
|
COG = 0 |
1012 |
|
sss = sc |
1013 |
|
if( sl1.ne.-9999. )COG = COG-sl1 |
1014 |
|
if( sl1.ne.-9999. )sss = sss+sl1 |
1015 |
|
if( sr1.ne.-9999. )COG = COG+sr1 |
1016 |
|
if( sr1.ne.-9999. )sss = sss+sr1 |
1017 |
if(sl2.gt.sr2)then |
if(sl2.gt.sr2)then |
1018 |
COG = (sr1-sl1-2*sl2)/(sl2+sl1+sc+sr1) |
if((sl2+sss).ne.0) |
1019 |
elseif(sl2.le.sr2)then |
$ COG = (COG-2*sl2)/(sl2+sss) |
1020 |
COG = (2*sr2+sr1-sl1)/(sl2+sl1+sc+sr1) |
elseif(sl2.lt.sr2)then |
1021 |
|
if((sr2+sss).ne.0) |
1022 |
|
$ COG = (2*sr2+COG)/(sr2+sss) |
1023 |
|
elseif(sl2.eq.sr2.and.sl2.ne.-9999.)then |
1024 |
|
if( clsigma(indmax(ic)-2).lt.clsigma(indmax(ic)+2) |
1025 |
|
$ .and.(sl2+sss).ne.0 ) |
1026 |
|
$ cog = (cog-2*sl2)/(sl2+sss) |
1027 |
|
if( clsigma(indmax(ic)-2).gt.clsigma(indmax(ic)+2) |
1028 |
|
$ .and.(sr2+sss).ne.0 ) |
1029 |
|
$ cog = (2*sr2+cog)/(sr2+sss) |
1030 |
endif |
endif |
1031 |
|
c ============================================================== |
1032 |
|
elseif(ncog.eq.5)then |
1033 |
|
COG = 0 |
1034 |
|
sss = sc |
1035 |
|
if( sl1.ne.-9999. )COG = COG-sl1 |
1036 |
|
if( sl1.ne.-9999. )sss = sss+sl1 |
1037 |
|
if( sr1.ne.-9999. )COG = COG+sr1 |
1038 |
|
if( sr1.ne.-9999. )sss = sss+sr1 |
1039 |
|
if( sl2.ne.-9999. )COG = COG-2*sl2 |
1040 |
|
if( sl2.ne.-9999. )sss = sss+sl2 |
1041 |
|
if( sr2.ne.-9999. )COG = COG+2*sr2 |
1042 |
|
if( sr2.ne.-9999. )sss = sss+sr2 |
1043 |
|
if(sss.ne.0)COG=COG/sss |
1044 |
else |
else |
1045 |
print*,'function COG(NCOG,IC) ==> WARNING!! NCOG=',NCOG |
print*,'function COG(NCOG,IC) ==> WARNING!! NCOG=',NCOG |
1046 |
print*,' (NCOG must be <= 4)' |
$ ,' not implemented' |
1047 |
COG = 0. |
COG = 0. |
1048 |
endif |
endif |
1049 |
|
|
1057 |
iv=VIEW(ic) |
iv=VIEW(ic) |
1058 |
if(mod(iv,2).eq.1)incut=incuty |
if(mod(iv,2).eq.1)incut=incuty |
1059 |
if(mod(iv,2).eq.0)incut=incutx |
if(mod(iv,2).eq.0)incut=incutx |
1060 |
|
istart = INDSTART(IC) |
1061 |
istart=INDSTART(IC) |
istop = TOTCLLENGTH |
|
istop=TOTCLLENGTH |
|
1062 |
if(ic.lt.NCLSTR1)istop=INDSTART(IC+1)-1 |
if(ic.lt.NCLSTR1)istop=INDSTART(IC+1)-1 |
1063 |
COG=0 |
COG = 0 |
1064 |
mu=0 |
SGN = 0. |
1065 |
do i=istart,istop |
mu = 0 |
1066 |
ipos=i-INDMAX(ic) |
c print*,'-------' |
1067 |
ivk=nvk(MAXS(ic)+ipos) |
do i = INDMAX(IC),istart,-1 |
1068 |
is=nst(MAXS(ic)+ipos) |
ipos = i-INDMAX(ic) |
1069 |
* print*,'******************',istart,istop,ipos |
cut = incut*CLSIGMA(i) |
1070 |
* $ ,MAXS(ic)+ipos,iv,ivk,is |
if(CLSIGNAL(i).ge.cut)then |
1071 |
cut=incut*SIGMA(iv,ivk,is) |
COG = COG + ipos*CLSIGNAL(i) |
1072 |
|
SGN = SGN + CLSIGNAL(i) |
1073 |
|
mu = mu + 1 |
1074 |
|
c print*,ipos,CLSIGNAL(i) |
1075 |
|
else |
1076 |
|
goto 10 |
1077 |
|
endif |
1078 |
|
enddo |
1079 |
|
10 continue |
1080 |
|
do i = INDMAX(IC)+1,istop |
1081 |
|
ipos = i-INDMAX(ic) |
1082 |
|
cut = incut*CLSIGMA(i) |
1083 |
if(CLSIGNAL(i).ge.cut)then |
if(CLSIGNAL(i).ge.cut)then |
1084 |
COG = COG + ipos*CLSIGNAL(i) |
COG = COG + ipos*CLSIGNAL(i) |
1085 |
|
SGN = SGN + CLSIGNAL(i) |
1086 |
mu = mu + 1 |
mu = mu + 1 |
1087 |
c print*,ipos,CLSIGNAL(i),incut,cut |
c print*,ipos,CLSIGNAL(i) |
1088 |
|
else |
1089 |
|
goto 20 |
1090 |
endif |
endif |
1091 |
enddo |
enddo |
1092 |
COG=COG/DEDX(ic) |
20 continue |
1093 |
c if(DEBUG)print*,'COG (ic ',ic,' m',mu,')' |
if(SGN.le.0)then |
1094 |
c $ ,cog |
print*,'cog(0,ic) --> ic, dedx ',ic,SGN |
1095 |
|
print*,(CLSIGNAL(i)/CLSIGMA(i),i=istart,istop) |
1096 |
|
print*,(CLSIGNAL(i),i=istart,istop) |
1097 |
|
c print*,'cog(0,ic) --> NOT EVALUATED ' |
1098 |
|
else |
1099 |
|
COG=COG/SGN |
1100 |
|
endif |
1101 |
|
c print*,'-------' |
1102 |
|
|
1103 |
else |
else |
1104 |
|
|
1109 |
|
|
1110 |
endif |
endif |
1111 |
|
|
1112 |
c print *,ncog,ic,cog,'/////////////' |
c print *,'## cog ',ncog,ic,cog,'/////////////' |
1113 |
|
|
1114 |
|
if(COG.lt.-0.75.or.COG.gt.+0.75)then |
1115 |
|
if(DEBUG.eq.1) |
1116 |
|
$ print*,'cog *** warning *** anomalous cluster ??? --> ' |
1117 |
|
if(DEBUG.eq.1) |
1118 |
|
$ print*,sl2,sl1,sc,sr1,sr2,' --> COG(',ncog,') = ',COG |
1119 |
|
endif |
1120 |
|
|
1121 |
|
|
1122 |
return |
return |
1123 |
end |
end |
1124 |
|
|
1125 |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
1126 |
|
|
1127 |
real function fbad_cog(ncog,ic) |
real function fbad_cog(ncog,ic) |
1128 |
*------------------------------------------------------- |
*------------------------------------------------------- |
1129 |
* this function returns a factor that takes into |
* this function returns a factor that takes into |
1139 |
include 'calib.f' |
include 'calib.f' |
1140 |
|
|
1141 |
if(mod(int(VIEW(ic)),2).eq.1)then !Y-view |
if(mod(int(VIEW(ic)),2).eq.1)then !Y-view |
1142 |
f = 4. |
si = 8.4 !average good-strip noise |
1143 |
si = 8.4 |
f = 4. !average bad-strip noise: f*si |
1144 |
incut=incuty |
incut=incuty |
1145 |
else !X-view |
else !X-view |
1146 |
f = 6. |
si = 3.9 !average good-strip noise |
1147 |
si = 3.9 |
f = 6. !average bad-strip noise: f*si |
1148 |
incut=incutx |
incut=incutx |
1149 |
endif |
endif |
1150 |
|
|
1155 |
* --> signal of the central strip |
* --> signal of the central strip |
1156 |
sc = CLSIGNAL(INDMAX(ic)) !center |
sc = CLSIGNAL(INDMAX(ic)) !center |
1157 |
fsc = 1 |
fsc = 1 |
1158 |
if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)) ).eq.0)fsc=f |
c if( CLBAD(INDMAX(ic)).eq.0 )fsc=f |
1159 |
|
fsc = clsigma(INDMAX(ic))/si |
1160 |
* --> signal of adjacent strips |
* --> signal of adjacent strips |
1161 |
sl1 = 0 !left 1 |
sl1 = 0 !left 1 |
1162 |
fsl1 = 1 !left 1 |
fsl1 = 1 !left 1 |
1164 |
$ (INDMAX(ic)-1).ge.INDSTART(ic) |
$ (INDMAX(ic)-1).ge.INDSTART(ic) |
1165 |
$ )then |
$ )then |
1166 |
sl1 = CLSIGNAL(INDMAX(ic)-1) |
sl1 = CLSIGNAL(INDMAX(ic)-1) |
1167 |
if(BAD(VIEW(ic),nvk(MAXS(ic)-1),nst(MAXS(ic)-1)).eq.0)fsl1=f |
c if( CLBAD(INDMAX(ic)-1).eq.0)fsl1=f |
1168 |
c else |
fsl1 = clsigma(INDMAX(ic)-1)/si |
|
c fsl1 = 0 |
|
1169 |
endif |
endif |
1170 |
|
|
1171 |
sl2 = 0 !left 2 |
sl2 = 0 !left 2 |
1174 |
$ (INDMAX(ic)-2).ge.INDSTART(ic) |
$ (INDMAX(ic)-2).ge.INDSTART(ic) |
1175 |
$ )then |
$ )then |
1176 |
sl2 = CLSIGNAL(INDMAX(ic)-2) |
sl2 = CLSIGNAL(INDMAX(ic)-2) |
1177 |
if(BAD(VIEW(ic),nvk(MAXS(ic)-2),nst(MAXS(ic)-2)).eq.0)fsl2=f |
c if(CLBAD(INDMAX(ic)-2).eq.0)fsl2=f |
1178 |
c else |
fsl2 = clsigma(INDMAX(ic)-2)/si |
|
c fsl2 = 0 |
|
1179 |
endif |
endif |
1180 |
sr1 = 0 !right 1 |
sr1 = 0 !right 1 |
1181 |
fsr1 = 1 !right 1 |
fsr1 = 1 !right 1 |
1185 |
$ (ic.eq.NCLSTR1.and.(INDMAX(ic)+1).le.TOTCLLENGTH) |
$ (ic.eq.NCLSTR1.and.(INDMAX(ic)+1).le.TOTCLLENGTH) |
1186 |
$ )then |
$ )then |
1187 |
sr1 = CLSIGNAL(INDMAX(ic)+1) |
sr1 = CLSIGNAL(INDMAX(ic)+1) |
1188 |
if(BAD(VIEW(ic),nvk(MAXS(ic)+1),nst(MAXS(ic)+1)).eq.0)fsr1=f |
c if(CLBAD(INDMAX(ic)+1).eq.0)fsr1=f |
1189 |
c else |
fsr1 = clsigma(INDMAX(ic)+1)/si |
|
c fsr1 = 0 |
|
1190 |
endif |
endif |
1191 |
sr2 = 0 !right 2 |
sr2 = 0 !right 2 |
1192 |
fsr2 = 1 !right 2 |
fsr2 = 1 !right 2 |
1196 |
$ (ic.eq.NCLSTR1.and.(INDMAX(ic)+2).le.TOTCLLENGTH) |
$ (ic.eq.NCLSTR1.and.(INDMAX(ic)+2).le.TOTCLLENGTH) |
1197 |
$ )then |
$ )then |
1198 |
sr2 = CLSIGNAL(INDMAX(ic)+2) |
sr2 = CLSIGNAL(INDMAX(ic)+2) |
1199 |
if(BAD(VIEW(ic),nvk(MAXS(ic)+2),nst(MAXS(ic)+2)).eq.0)fsr2=f |
c if(CLBAD(INDMAX(ic)+2).eq.0)fsr2=f |
1200 |
c else |
fsr2 = clsigma(INDMAX(ic)+2)/si |
|
c fsr2 = 0 |
|
1201 |
endif |
endif |
1202 |
|
|
1203 |
|
|
1204 |
|
|
1205 |
************************************************************ |
************************************************************ |
1206 |
* COG computation |
* COG2-3-4 computation |
1207 |
************************************************************ |
************************************************************ |
1208 |
|
|
1209 |
c print*,sl2,sl1,sc,sr1,sr2 |
c print*,sl2,sl1,sc,sr1,sr2 |
1210 |
|
|
1211 |
COG = 0. |
vCOG = cog(ncog,ic)!0. |
1212 |
|
|
1213 |
if(ncog.eq.2)then |
if(ncog.eq.2)then |
1214 |
if(sl1.gt.sr1)then |
if(sl1.gt.sr1)then |
1215 |
COG = -sl1/(sl1+sc) |
c COG = -sl1/(sl1+sc) |
1216 |
fbad_cog = (fsl1*(-1-COG)**2+fsc*(-COG)**2) |
fbad_cog = (fsl1*(-1-vCOG)**2+fsc*(-vCOG)**2) |
1217 |
fbad_cog = fbad_cog / ((-1-COG)**2+(-COG)**2) |
fbad_cog = fbad_cog / ((-1-vCOG)**2+(-vCOG)**2) |
1218 |
elseif(sl1.le.sr1)then |
elseif(sl1.le.sr1)then |
1219 |
COG = sr1/(sc+sr1) |
c COG = sr1/(sc+sr1) |
1220 |
fbad_cog = (fsc*(-COG)**2+fsr1*(1-COG)**2) |
fbad_cog = (fsc*(-vCOG)**2+fsr1*(1-vCOG)**2) |
1221 |
fbad_cog = fbad_cog / ((-COG)**2+(1-COG)**2) |
fbad_cog = fbad_cog / ((-vCOG)**2+(1-vCOG)**2) |
1222 |
endif |
endif |
1223 |
elseif(ncog.eq.3)then |
elseif(ncog.eq.3)then |
1224 |
COG = (sr1-sl1)/(sl1+sc+sr1) |
c COG = (sr1-sl1)/(sl1+sc+sr1) |
1225 |
fbad_cog = |
fbad_cog = |
1226 |
$ (fsl1*(-1-COG)**2+fsc*(-COG)**2+fsr1*(1-COG)**2) |
$ (fsl1*(-1-vCOG)**2+fsc*(-vCOG)**2+fsr1*(1-vCOG)**2) |
1227 |
fbad_cog = |
fbad_cog = |
1228 |
$ fbad_cog / ((-1-COG)**2+(-COG)**2+(1-COG)**2) |
$ fbad_cog / ((-1-vCOG)**2+(-vCOG)**2+(1-vCOG)**2) |
1229 |
elseif(ncog.eq.4)then |
elseif(ncog.eq.4)then |
1230 |
if(sl2.gt.sr2)then |
if(sl2.gt.sr2)then |
1231 |
COG = (sr1-sl1-2*sl2)/(sl2+sl1+sc+sr1) |
c COG = (sr1-sl1-2*sl2)/(sl2+sl1+sc+sr1) |
1232 |
fbad_cog = |
fbad_cog = |
1233 |
$ (fsl2*(-2-COG)**2+fsl1*(-1-COG)**2 |
$ (fsl2*(-2-vCOG)**2+fsl1*(-1-vCOG)**2 |
1234 |
$ +fsc*(-COG)**2+fsr1*(1-COG)**2) |
$ +fsc*(-vCOG)**2+fsr1*(1-vCOG)**2) |
1235 |
fbad_cog = |
fbad_cog = |
1236 |
$ fbad_cog / ((-2-COG)**2+(-1-COG)**2 |
$ fbad_cog / ((-2-vCOG)**2+(-1-vCOG)**2 |
1237 |
$ +(-COG)**2+(1-COG)**2) |
$ +(-vCOG)**2+(1-vCOG)**2) |
1238 |
elseif(sl2.le.sr2)then |
elseif(sl2.le.sr2)then |
1239 |
COG = (2*sr2+sr1-sl1)/(sl2+sl1+sc+sr1) |
c COG = (2*sr2+sr1-sl1)/(sl2+sl1+sc+sr1) |
1240 |
fbad_cog = |
fbad_cog = |
1241 |
$ (fsl1*(-1-COG)**2 |
$ (fsl1*(-1-vCOG)**2 |
1242 |
$ +fsc*(-COG)**2+fsr1*(1-COG)**2+fsr2*(2-COG)**2) |
$ +fsc*(-vCOG)**2+fsr1*(1-vCOG)**2+fsr2*(2-vCOG)**2) |
1243 |
fbad_cog = |
fbad_cog = |
1244 |
$ fbad_cog / ((-1-COG)**2 |
$ fbad_cog / ((-1-vCOG)**2 |
1245 |
$ +(-COG)**2+(1-COG)**2+(2-COG)**2) |
$ +(-vCOG)**2+(1-vCOG)**2+(2-vCOG)**2) |
1246 |
endif |
endif |
1247 |
else |
else |
1248 |
print*,'function FBAD_COG(NCOG,IC) ==> WARNING!! NCOG=',NCOG |
print*,'function FBAD_COG(NCOG,IC) ==> WARNING!! NCOG=',NCOG |
1249 |
print*,' (NCOG must be <= 4)' |
print*,' (NCOG must be <= 4)' |
1250 |
COG = 0. |
c COG = 0. |
1251 |
endif |
endif |
1252 |
|
|
1253 |
elseif(ncog.eq.0)then |
elseif(ncog.eq.0)then |
1254 |
|
* ========================= |
1255 |
|
* COG computation |
1256 |
|
* ========================= |
1257 |
|
|
1258 |
iv=VIEW(ic) |
vCOG = cog(0,ic) |
1259 |
istart=INDSTART(IC) |
|
1260 |
istop=TOTCLLENGTH |
iv = VIEW(ic) |
1261 |
if(ic.lt.NCLSTR1)istop=INDSTART(IC+1)-1 |
istart = INDSTART(IC) |
1262 |
COG=0. |
istop = TOTCLLENGTH |
1263 |
SNU=0. |
if(ic.lt.NCLSTR1)istop = INDSTART(IC+1)-1 |
1264 |
SDE=0. |
SGN = 0. |
1265 |
do i=istart,istop |
SNU = 0. |
1266 |
ipos=i-INDMAX(ic) |
SDE = 0. |
1267 |
il=nvk(MAXS(ic)+ipos) |
|
1268 |
is=nst(MAXS(ic)+ipos) |
do i=INDMAX(IC),istart,-1 |
1269 |
cut=incut*SIGMA(iv,il,is) |
ipos = i-INDMAX(ic) |
1270 |
|
cut = incut*CLSIGMA(i) |
1271 |
if(CLSIGNAL(i).gt.cut)then |
if(CLSIGNAL(i).gt.cut)then |
1272 |
COG = COG + ipos*CLSIGNAL(i) |
fs = clsigma(i)/si |
1273 |
endif |
SNU = SNU + fs*(ipos-vCOG)**2 |
1274 |
|
SDE = SDE + (ipos-vCOG)**2 |
1275 |
|
else |
1276 |
|
goto 10 |
1277 |
|
endif |
1278 |
enddo |
enddo |
1279 |
COG=COG/DEDX(ic) |
10 continue |
1280 |
do i=istart,istop |
do i=INDMAX(IC)+1,istop |
1281 |
ipos=i-INDMAX(ic) |
ipos = i-INDMAX(ic) |
1282 |
il=nvk(MAXS(ic)+ipos) |
cut = incut*CLSIGMA(i) |
|
is=nst(MAXS(ic)+ipos) |
|
|
cut=incut*SIGMA(iv,il,is) |
|
1283 |
if(CLSIGNAL(i).gt.cut)then |
if(CLSIGNAL(i).gt.cut)then |
1284 |
fs=1 |
fs = clsigma(i)/si |
1285 |
if(BAD(iv,il,is).eq.0)fs=f |
SNU = SNU + fs*(ipos-vCOG)**2 |
1286 |
SNU = SNU + fs*(ipos-COG)**2 |
SDE = SDE + (ipos-vCOG)**2 |
1287 |
SDE = SDE + (ipos-COG)**2 |
else |
1288 |
|
goto 20 |
1289 |
endif |
endif |
1290 |
enddo |
enddo |
1291 |
if(SDE.ne.0)FBAD_COG=SNU/SDE |
20 continue |
1292 |
|
if(SDE.ne.0)then |
1293 |
|
FBAD_COG=SNU/SDE |
1294 |
|
else |
1295 |
|
|
1296 |
|
endif |
1297 |
|
|
1298 |
else |
else |
1299 |
|
|
1311 |
end |
end |
1312 |
|
|
1313 |
|
|
1314 |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
c$$$*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
1315 |
real function fbad_cog0(ncog,ic) |
c$$$ real function fbad_cog0(ncog,ic) |
1316 |
*------------------------------------------------------- |
c$$$*------------------------------------------------------- |
1317 |
* this function returns a factor that takes into |
c$$$* this function returns a factor that takes into |
1318 |
* account deterioration of the spatial resolution |
c$$$* account deterioration of the spatial resolution |
1319 |
* in the case BAD strips are included in the cluster. |
c$$$* in the case BAD strips are included in the cluster. |
1320 |
* This factor should multiply the nominal spatial |
c$$$* This factor should multiply the nominal spatial |
1321 |
* resolution. |
c$$$* resolution. |
1322 |
* |
c$$$* |
1323 |
* NB!!! |
c$$$* NB!!! |
1324 |
* (this is the old version. It consider only the two |
c$$$* (this is the old version. It consider only the two |
1325 |
* strips with the greatest signal. The new one is |
c$$$* strips with the greatest signal. The new one is |
1326 |
* fbad_cog(ncog,ic) ) |
c$$$* fbad_cog(ncog,ic) ) |
1327 |
* |
c$$$* |
1328 |
*------------------------------------------------------- |
c$$$*------------------------------------------------------- |
1329 |
|
c$$$ |
1330 |
include 'commontracker.f' |
c$$$ include 'commontracker.f' |
1331 |
include 'level1.f' |
c$$$ include 'level1.f' |
1332 |
include 'calib.f' |
c$$$ include 'calib.f' |
1333 |
|
c$$$ |
1334 |
* --> signal of the central strip |
c$$$* --> signal of the central strip |
1335 |
sc = CLSIGNAL(INDMAX(ic)) !center |
c$$$ sc = CLSIGNAL(INDMAX(ic)) !center |
1336 |
|
c$$$ |
1337 |
* signal of adjacent strips |
c$$$* signal of adjacent strips |
1338 |
* --> left |
c$$$* --> left |
1339 |
sl1 = 0 !left 1 |
c$$$ sl1 = 0 !left 1 |
1340 |
if( |
c$$$ if( |
1341 |
$ (INDMAX(ic)-1).ge.INDSTART(ic) |
c$$$ $ (INDMAX(ic)-1).ge.INDSTART(ic) |
1342 |
$ ) |
c$$$ $ ) |
1343 |
$ sl1 = max(0.,CLSIGNAL(INDMAX(ic)-1)) |
c$$$ $ sl1 = max(0.,CLSIGNAL(INDMAX(ic)-1)) |
1344 |
|
c$$$ |
1345 |
sl2 = 0 !left 2 |
c$$$ sl2 = 0 !left 2 |
1346 |
if( |
c$$$ if( |
1347 |
$ (INDMAX(ic)-2).ge.INDSTART(ic) |
c$$$ $ (INDMAX(ic)-2).ge.INDSTART(ic) |
1348 |
$ ) |
c$$$ $ ) |
1349 |
$ sl2 = max(0.,CLSIGNAL(INDMAX(ic)-2)) |
c$$$ $ sl2 = max(0.,CLSIGNAL(INDMAX(ic)-2)) |
1350 |
|
c$$$ |
1351 |
* --> right |
c$$$* --> right |
1352 |
sr1 = 0 !right 1 |
c$$$ sr1 = 0 !right 1 |
1353 |
if( |
c$$$ if( |
1354 |
$ (ic.ne.NCLSTR1.and.(INDMAX(ic)+1).lt.INDSTART(ic+1)) |
c$$$ $ (ic.ne.NCLSTR1.and.(INDMAX(ic)+1).lt.INDSTART(ic+1)) |
1355 |
$ .or. |
c$$$ $ .or. |
1356 |
$ (ic.eq.NCLSTR1.and.(INDMAX(ic)+1).le.TOTCLLENGTH) |
c$$$ $ (ic.eq.NCLSTR1.and.(INDMAX(ic)+1).le.TOTCLLENGTH) |
1357 |
$ ) |
c$$$ $ ) |
1358 |
$ sr1 = max(0.,CLSIGNAL(INDMAX(ic)+1)) |
c$$$ $ sr1 = max(0.,CLSIGNAL(INDMAX(ic)+1)) |
1359 |
|
c$$$ |
1360 |
sr2 = 0 !right 2 |
c$$$ sr2 = 0 !right 2 |
1361 |
if( |
c$$$ if( |
1362 |
$ (ic.ne.NCLSTR1.and.(INDMAX(ic)+2).lt.INDSTART(ic+1)) |
c$$$ $ (ic.ne.NCLSTR1.and.(INDMAX(ic)+2).lt.INDSTART(ic+1)) |
1363 |
$ .or. |
c$$$ $ .or. |
1364 |
$ (ic.eq.NCLSTR1.and.(INDMAX(ic)+2).le.TOTCLLENGTH) |
c$$$ $ (ic.eq.NCLSTR1.and.(INDMAX(ic)+2).le.TOTCLLENGTH) |
1365 |
$ ) |
c$$$ $ ) |
1366 |
$ sr2 = max(0.,CLSIGNAL(INDMAX(ic)+2)) |
c$$$ $ sr2 = max(0.,CLSIGNAL(INDMAX(ic)+2)) |
1367 |
|
c$$$ |
1368 |
|
c$$$ |
1369 |
if(mod(int(VIEW(ic)),2).eq.1)then !Y-view |
c$$$ if(mod(int(VIEW(ic)),2).eq.1)then !Y-view |
1370 |
f = 4. |
c$$$ f = 4. |
1371 |
si = 8.4 |
c$$$ si = 8.4 |
1372 |
else !X-view |
c$$$ else !X-view |
1373 |
f = 6. |
c$$$ f = 6. |
1374 |
si = 3.9 |
c$$$ si = 3.9 |
1375 |
endif |
c$$$ endif |
1376 |
|
c$$$ |
1377 |
fbad_cog = 1. |
c$$$ fbad_cog = 1. |
1378 |
f0 = 1 |
c$$$ f0 = 1 |
1379 |
f1 = 1 |
c$$$ f1 = 1 |
1380 |
f2 = 1 |
c$$$ f2 = 1 |
1381 |
f3 = 1 |
c$$$ f3 = 1 |
1382 |
if(sl1.gt.sr1.and.sl1.gt.0.)then |
c$$$ if(sl1.gt.sr1.and.sl1.gt.0.)then |
1383 |
|
c$$$ |
1384 |
if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)) ).eq.0)f0=f |
c$$$ if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)) ).eq.0)f0=f |
1385 |
if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)-1)).eq.0)f1=f |
c$$$ if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)-1)).eq.0)f1=f |
1386 |
c if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)+1)).eq.0)f3=f |
c$$$c if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)+1)).eq.0)f3=f |
1387 |
|
c$$$ |
1388 |
if(ncog.eq.2.and.sl1.ne.0)then |
c$$$ if(ncog.eq.2.and.sl1.ne.0)then |
1389 |
fbad_cog = (f1**2*sc**2/sl1**2+f0**2)/(sc**2/sl1**2+1.) |
c$$$ fbad_cog = (f1**2*sc**2/sl1**2+f0**2)/(sc**2/sl1**2+1.) |
1390 |
elseif(ncog.eq.3.and.sl1.ne.0.and.sr1.ne.0)then |
c$$$ elseif(ncog.eq.3.and.sl1.ne.0.and.sr1.ne.0)then |
1391 |
fbad_cog = 1. |
c$$$ fbad_cog = 1. |
1392 |
elseif(ncog.eq.4.and.sl1.ne.0.and.sr1.ne.0.and.sl2.ne.0)then |
c$$$ elseif(ncog.eq.4.and.sl1.ne.0.and.sr1.ne.0.and.sl2.ne.0)then |
1393 |
fbad_cog = 1. |
c$$$ fbad_cog = 1. |
1394 |
else |
c$$$ else |
1395 |
fbad_cog = 1. |
c$$$ fbad_cog = 1. |
1396 |
endif |
c$$$ endif |
1397 |
|
c$$$ |
1398 |
elseif(sl1.le.sr1.and.sr1.gt.0.)then |
c$$$ elseif(sl1.le.sr1.and.sr1.gt.0.)then |
1399 |
|
c$$$ |
1400 |
|
c$$$ |
1401 |
if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)) ).eq.0)f0=f |
c$$$ if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)) ).eq.0)f0=f |
1402 |
if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)+1)).eq.0)f1=f |
c$$$ if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)+1)).eq.0)f1=f |
1403 |
c if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)-1)).eq.0)f3=f |
c$$$c if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)-1)).eq.0)f3=f |
1404 |
|
c$$$ |
1405 |
if(ncog.eq.2.and.sr1.ne.0)then |
c$$$ if(ncog.eq.2.and.sr1.ne.0)then |
1406 |
fbad_cog = (f1**2*sc**2/sr1**2+f0**2)/(sc**2/sr1**2+1.) |
c$$$ fbad_cog = (f1**2*sc**2/sr1**2+f0**2)/(sc**2/sr1**2+1.) |
1407 |
elseif(ncog.eq.3.and.sr1.ne.0.and.sl1.ne.0)then |
c$$$ elseif(ncog.eq.3.and.sr1.ne.0.and.sl1.ne.0)then |
1408 |
fbad_cog = 1. |
c$$$ fbad_cog = 1. |
1409 |
elseif(ncog.eq.4.and.sr1.ne.0.and.sl1.ne.0.and.sr2.ne.0)then |
c$$$ elseif(ncog.eq.4.and.sr1.ne.0.and.sl1.ne.0.and.sr2.ne.0)then |
1410 |
fbad_cog = 1. |
c$$$ fbad_cog = 1. |
1411 |
else |
c$$$ else |
1412 |
fbad_cog = 1. |
c$$$ fbad_cog = 1. |
1413 |
endif |
c$$$ endif |
1414 |
|
c$$$ |
1415 |
endif |
c$$$ endif |
1416 |
|
c$$$ |
1417 |
fbad_cog0 = sqrt(fbad_cog) |
c$$$ fbad_cog0 = sqrt(fbad_cog) |
1418 |
|
c$$$ |
1419 |
return |
c$$$ return |
1420 |
end |
c$$$ end |
1421 |
|
c$$$ |
1422 |
|
c$$$ |
1423 |
|
c$$$ |
1424 |
|
|
1425 |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
1426 |
|
|
1427 |
FUNCTION risx_eta2(x) |
FUNCTION risxeta2(x) |
1428 |
|
|
1429 |
DOUBLE PRECISION V( 1) |
DOUBLE PRECISION V( 1) |
1430 |
INTEGER NPAR, NDIM, IMQFUN, I, J |
INTEGER NPAR, NDIM, IMQFUN, I, J |
1496 |
+/ |
+/ |
1497 |
|
|
1498 |
V(1)= abs(x) |
V(1)= abs(x) |
1499 |
|
if(V(1).gt.20.)V(1)=20. |
1500 |
|
|
1501 |
HQUADF = 0. |
HQUADF = 0. |
1502 |
DO 20 J = 1, NPAR |
DO 20 J = 1, NPAR |
1511 |
20 CONTINUE |
20 CONTINUE |
1512 |
IF (IMQFUN .EQ. 2) HQUADF = VCONST * EXP (HQUADF) |
IF (IMQFUN .EQ. 2) HQUADF = VCONST * EXP (HQUADF) |
1513 |
|
|
1514 |
risx_eta2=HQUADF* 1e-4 |
risxeta2=HQUADF* 1e-4 |
1515 |
|
|
1516 |
END |
END |
1517 |
|
|
1518 |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
1519 |
FUNCTION risx_eta3(x) |
FUNCTION risxeta3(x) |
1520 |
DOUBLE PRECISION V( 1) |
DOUBLE PRECISION V( 1) |
1521 |
INTEGER NPAR, NDIM, IMQFUN, I, J |
INTEGER NPAR, NDIM, IMQFUN, I, J |
1522 |
DOUBLE PRECISION HQDJ, VV, VCONST |
DOUBLE PRECISION HQDJ, VV, VCONST |
1587 |
+/ |
+/ |
1588 |
|
|
1589 |
V(1) = abs(x) |
V(1) = abs(x) |
1590 |
|
if(V(1).gt.20.)V(1)=20. |
1591 |
|
|
1592 |
HQUADF = 0. |
HQUADF = 0. |
1593 |
DO 20 J = 1, NPAR |
DO 20 J = 1, NPAR |
1594 |
HQDJ = 0. |
HQDJ = 0. |
1602 |
20 CONTINUE |
20 CONTINUE |
1603 |
IF (IMQFUN .EQ. 2) HQUADF = VCONST * EXP (HQUADF) |
IF (IMQFUN .EQ. 2) HQUADF = VCONST * EXP (HQUADF) |
1604 |
|
|
1605 |
risx_eta3 = HQUADF* 1e-4 |
risxeta3 = HQUADF* 1e-4 |
1606 |
|
|
1607 |
END |
END |
1608 |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
1609 |
FUNCTION risx_eta4(x) |
FUNCTION risxeta4(x) |
1610 |
DOUBLE PRECISION V( 1) |
DOUBLE PRECISION V( 1) |
1611 |
INTEGER NPAR, NDIM, IMQFUN, I, J |
INTEGER NPAR, NDIM, IMQFUN, I, J |
1612 |
DOUBLE PRECISION HQDJ, VV, VCONST |
DOUBLE PRECISION HQDJ, VV, VCONST |
1677 |
+/ |
+/ |
1678 |
|
|
1679 |
V(1)=abs(x) |
V(1)=abs(x) |
1680 |
|
if(V(1).gt.20.)V(1)=20. |
1681 |
|
|
1682 |
HQUADF = 0. |
HQUADF = 0. |
1683 |
DO 20 J = 1, NPAR |
DO 20 J = 1, NPAR |
1692 |
20 CONTINUE |
20 CONTINUE |
1693 |
IF (IMQFUN .EQ. 2) HQUADF = VCONST * EXP (HQUADF) |
IF (IMQFUN .EQ. 2) HQUADF = VCONST * EXP (HQUADF) |
1694 |
|
|
1695 |
risx_eta4=HQUADF* 1e-4 |
risxeta4=HQUADF* 1e-4 |
1696 |
|
|
1697 |
END |
END |
1698 |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
1699 |
FUNCTION risy_eta2(x) |
FUNCTION risyeta2(x) |
1700 |
DOUBLE PRECISION V( 1) |
DOUBLE PRECISION V( 1) |
1701 |
INTEGER NPAR, NDIM, IMQFUN, I, J |
INTEGER NPAR, NDIM, IMQFUN, I, J |
1702 |
DOUBLE PRECISION HQDJ, VV, VCONST |
DOUBLE PRECISION HQDJ, VV, VCONST |
1749 |
+/ |
+/ |
1750 |
|
|
1751 |
v(1)= abs(x) |
v(1)= abs(x) |
1752 |
|
if(V(1).gt.20.)V(1)=20. |
1753 |
|
|
1754 |
HQUADF = 0. |
HQUADF = 0. |
1755 |
DO 20 J = 1, NPAR |
DO 20 J = 1, NPAR |
1764 |
20 CONTINUE |
20 CONTINUE |
1765 |
IF (IMQFUN .EQ. 2) HQUADF = VCONST * EXP (HQUADF) |
IF (IMQFUN .EQ. 2) HQUADF = VCONST * EXP (HQUADF) |
1766 |
|
|
1767 |
risy_eta2=HQUADF* 1e-4 |
risyeta2=HQUADF* 1e-4 |
1768 |
|
|
1769 |
END |
END |
1770 |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
1816 |
+/ |
+/ |
1817 |
|
|
1818 |
V(1)=abs(x) |
V(1)=abs(x) |
1819 |
|
if(V(1).gt.20.)V(1)=20. |
1820 |
|
|
1821 |
HQUADF = 0. |
HQUADF = 0. |
1822 |
DO 20 J = 1, NPAR |
DO 20 J = 1, NPAR |
1897 |
+/ |
+/ |
1898 |
|
|
1899 |
V(1)=abs(x) |
V(1)=abs(x) |
1900 |
|
if(V(1).gt.20.)V(1)=20. |
1901 |
|
|
1902 |
HQUADF = 0. |
HQUADF = 0. |
1903 |
DO 20 J = 1, NPAR |
DO 20 J = 1, NPAR |
1915 |
risx_cog = HQUADF * 1e-4 |
risx_cog = HQUADF * 1e-4 |
1916 |
|
|
1917 |
END |
END |
1918 |
|
|
1919 |
|
|
1920 |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
1921 |
|
real function pfacorr(ic,angle) |
1922 |
|
*-------------------------------------------------------------- |
1923 |
|
* this function returns the landi correction for this cluster |
1924 |
|
*-------------------------------------------------------------- |
1925 |
|
include 'commontracker.f' |
1926 |
|
include 'calib.f' |
1927 |
|
include 'level1.f' |
1928 |
|
|
1929 |
|
real angle |
1930 |
|
integer iview,lad |
1931 |
|
|
1932 |
|
iview = VIEW(ic) |
1933 |
|
lad = nld(MAXS(ic),VIEW(ic)) |
1934 |
|
|
1935 |
|
* find angular bin |
1936 |
|
* (in futuro possiamo pensare di interpolare anche sull'angolo) |
1937 |
|
do iang=1,nangbin |
1938 |
|
if(angL(iang).lt.angle.and.angR(iang).ge.angle)then |
1939 |
|
iangle=iang |
1940 |
|
goto 98 |
1941 |
|
endif |
1942 |
|
enddo |
1943 |
|
if(DEBUG.eq.1) |
1944 |
|
$ print*,'pfacorr *** warning *** angle out of range: ',angle |
1945 |
|
if(angle.le.angL(1))iang=1 |
1946 |
|
if(angle.ge.angR(nangbin))iang=nangbin |
1947 |
|
98 continue !jump here if ok |
1948 |
|
|
1949 |
|
pfacorr = fcorr(iview,lad,iang) |
1950 |
|
|
1951 |
|
if(DEBUG.eq.1)print*,'CORR (ic ',ic,' ang',angle,') -->',pfacorr |
1952 |
|
|
1953 |
|
|
1954 |
|
100 return |
1955 |
|
end |