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4c039060 1/**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
3 * *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
6 * *
7 * Permission to use, copy, modify and distribute this software and its *
8 * documentation strictly for non-commercial purposes is hereby granted *
9 * without fee, provided that the above copyright notice appears in all *
10 * copies and that both the copyright notice and this permission notice *
11 * appear in the supporting documentation. The authors make no claims *
12 * about the suitability of this software for any purpose. It is *
13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
b2a60966 15/* $Id$ */
ffcecca6 16/* History of cvs commits:
17 *
18 * $Log$
c15b04ad 19 * Revision 1.92 2005/11/03 13:09:19 hristov
20 * Removing meaningless const declarations (linuxicc)
21 *
eb0b1051 22 * Revision 1.91 2005/07/27 15:08:53 kharlov
23 * Mixture ArCO2 is corrected
24 *
a004143a 25 * Revision 1.90 2005/06/17 07:39:07 hristov
26 * Removing GetDebug and SetDebug from AliRun and AliModule. Using AliLog for the messages
27 *
4951e003 28 * Revision 1.89 2005/05/28 12:10:07 schutz
29 * Copy constructor is corrected (by T.P.)
30 *
ffcecca6 31 */
b2a60966 32
d15a28e7 33//_________________________________________________________________________
b2a60966 34// Base Class for PHOS description:
35// PHOS consists of a PbWO4 calorimeter (EMCA) and a gazeous charged
36// particles detector (CPV or PPSD).
37// The only provided method here is CreateMaterials,
38// which defines the materials common to all PHOS versions.
39//
40//*-- Author: Laurent Aphecetche & Yves Schutz (SUBATECH)
d15a28e7 41//////////////////////////////////////////////////////////////////////////////
e84be1eb 42
fdeead01 43
fe4da5cc 44// --- ROOT system ---
2ab0c725 45class TFile;
88cb7938 46#include <TFolder.h>
88cb7938 47#include <TTree.h>
48#include <TVirtualMC.h>
046ae904 49#include <TH1F.h>
50#include <TF1.h>
e9a5efdf 51#include <TRandom.h>
fe4da5cc 52
53// --- Standard library ---
d15a28e7 54
548f0134 55// --- AliRoot header files ---
94de3818 56#include "AliMagF.h"
88cb7938 57#include "AliPHOS.h"
e9a5efdf 58#include "AliPHOSGetter.h"
85a5290f 59#include "AliRun.h"
60#include "AliPHOSDigitizer.h"
61#include "AliPHOSSDigitizer.h"
65792ca0 62#include "AliPHOSDigit.h"
63#include "AliAltroBuffer.h"
e4d04cf1 64#include "AliLog.h"
c15b04ad 65#include "AliCDBManager.h"
66#include "AliCDBEntry.h"
67#include "AliCDBStorage.h"
68#include "AliPHOSCalibData.h"
7f78a025 69
fe4da5cc 70ClassImp(AliPHOS)
e4d04cf1 71
72Double_t AliPHOS::fgCapa = 1.; // 1pF
73Int_t AliPHOS::fgOrder = 2 ;
74Double_t AliPHOS::fgTimeMax = 2.56E-5 ; // each sample is over 100 ns fTimeMax/fTimeBins
75Double_t AliPHOS::fgTimePeak = 4.1E-6 ; // 4 micro seconds
76Double_t AliPHOS::fgTimeTrigger = 100E-9 ; // 100ns, just for a reference
e4d04cf1 77
0ce0b56f 78//____________________________________________________________________________
046ae904 79 AliPHOS:: AliPHOS() : AliDetector()
6b87d0dd 80{
a532e9d8 81 // Default ctor
046ae904 82 fName = "PHOS" ;
e4d04cf1 83
6b87d0dd 84}
fa7cce36 85
6b87d0dd 86//____________________________________________________________________________
046ae904 87AliPHOS::AliPHOS(const char* name, const char* title): AliDetector(name, title)
6b87d0dd 88{
a532e9d8 89 // ctor : title is used to identify the layout
90
e4d04cf1 91 fHighCharge = 8.2 ; // adjusted for a high gain range of 5.12 GeV (10 bits)
92 fHighGain = 6.64 ;
93 fHighLowGainFactor = 16. ; // adjusted for a low gain range of 82 GeV (10 bits)
94 fLowGainOffset = GetGeometry()->GetNModules() + 1 ;
95 // offset added to the module id to distinguish high and low gain data
6b87d0dd 96}
fa7cce36 97
0ce0b56f 98//____________________________________________________________________________
7b326aac 99AliPHOS::~AliPHOS()
100{
0ce0b56f 101}
102
780fda6d 103//____________________________________________________________________________
ffcecca6 104void AliPHOS::Copy(TObject &obj)const
780fda6d 105{
7f78a025 106 // copy method to be used byy the cpy ctor
ffcecca6 107 TObject::Copy(obj);
108
109 AliPHOS &phos = static_cast<AliPHOS &>(obj);
110
351dd634 111 phos.fHighCharge = fHighCharge ;
112 phos.fHighGain = fHighGain ;
113 phos.fHighLowGainFactor = fHighLowGainFactor ;
114 phos.fLowGainOffset = fLowGainOffset;
780fda6d 115}
116
487d23e3 117//____________________________________________________________________________
118AliDigitizer* AliPHOS::CreateDigitizer(AliRunDigitizer* manager) const
119{
120 return new AliPHOSDigitizer(manager);
121}
122
d15a28e7 123//____________________________________________________________________________
fe4da5cc 124void AliPHOS::CreateMaterials()
125{
b2a60966 126 // Definitions of materials to build PHOS and associated tracking media.
127 // media number in idtmed are 699 to 798.
fe4da5cc 128
d15a28e7 129 // --- The PbWO4 crystals ---
92862013 130 Float_t aX[3] = {207.19, 183.85, 16.0} ;
131 Float_t zX[3] = {82.0, 74.0, 8.0} ;
132 Float_t wX[3] = {1.0, 1.0, 4.0} ;
133 Float_t dX = 8.28 ;
fe4da5cc 134
92862013 135 AliMixture(0, "PbWO4$", aX, zX, dX, -3, wX) ;
fe4da5cc 136
fe4da5cc 137
d15a28e7 138 // --- The polysterene scintillator (CH) ---
92862013 139 Float_t aP[2] = {12.011, 1.00794} ;
140 Float_t zP[2] = {6.0, 1.0} ;
141 Float_t wP[2] = {1.0, 1.0} ;
142 Float_t dP = 1.032 ;
fe4da5cc 143
92862013 144 AliMixture(1, "Polystyrene$", aP, zP, dP, -2, wP) ;
fe4da5cc 145
d15a28e7 146 // --- Aluminium ---
147 AliMaterial(2, "Al$", 26.98, 13., 2.7, 8.9, 999., 0, 0) ;
148 // --- Absorption length is ignored ^
fe4da5cc 149
d15a28e7 150 // --- Tyvek (CnH2n) ---
92862013 151 Float_t aT[2] = {12.011, 1.00794} ;
152 Float_t zT[2] = {6.0, 1.0} ;
153 Float_t wT[2] = {1.0, 2.0} ;
154 Float_t dT = 0.331 ;
fe4da5cc 155
92862013 156 AliMixture(3, "Tyvek$", aT, zT, dT, -2, wT) ;
fe4da5cc 157
d15a28e7 158 // --- Polystyrene foam ---
92862013 159 Float_t aF[2] = {12.011, 1.00794} ;
160 Float_t zF[2] = {6.0, 1.0} ;
161 Float_t wF[2] = {1.0, 1.0} ;
162 Float_t dF = 0.12 ;
fe4da5cc 163
92862013 164 AliMixture(4, "Foam$", aF, zF, dF, -2, wF) ;
fe4da5cc 165
d15a28e7 166 // --- Titanium ---
92862013 167 Float_t aTIT[3] = {47.88, 26.98, 54.94} ;
168 Float_t zTIT[3] = {22.0, 13.0, 25.0} ;
169 Float_t wTIT[3] = {69.0, 6.0, 1.0} ;
170 Float_t dTIT = 4.5 ;
fe4da5cc 171
92862013 172 AliMixture(5, "Titanium$", aTIT, zTIT, dTIT, -3, wTIT);
fe4da5cc 173
d15a28e7 174 // --- Silicon ---
175 AliMaterial(6, "Si$", 28.0855, 14., 2.33, 9.36, 42.3, 0, 0) ;
fe4da5cc 176
fe4da5cc 177
fe4da5cc 178
d15a28e7 179 // --- Foam thermo insulation ---
92862013 180 Float_t aTI[2] = {12.011, 1.00794} ;
181 Float_t zTI[2] = {6.0, 1.0} ;
182 Float_t wTI[2] = {1.0, 1.0} ;
85218d13 183 Float_t dTI = 0.04 ;
fe4da5cc 184
92862013 185 AliMixture(7, "Thermo Insul.$", aTI, zTI, dTI, -2, wTI) ;
fe4da5cc 186
74e56d72 187 // --- Textolith ---
92862013 188 Float_t aTX[4] = {16.0, 28.09, 12.011, 1.00794} ;
189 Float_t zTX[4] = {8.0, 14.0, 6.0, 1.0} ;
190 Float_t wTX[4] = {292.0, 68.0, 462.0, 736.0} ;
191 Float_t dTX = 1.75 ;
fe4da5cc 192
92862013 193 AliMixture(8, "Textolit$", aTX, zTX, dTX, -4, wTX) ;
fe4da5cc 194
d15a28e7 195 //--- FR4 ---
74e56d72 196 Float_t aFR[4] = {16.0, 28.09, 12.011, 1.00794} ;
197 Float_t zFR[4] = {8.0, 14.0, 6.0, 1.0} ;
198 Float_t wFR[4] = {292.0, 68.0, 462.0, 736.0} ;
92862013 199 Float_t dFR = 1.8 ;
fe4da5cc 200
74e56d72 201 AliMixture(9, "FR4$", aFR, zFR, dFR, -4, wFR) ;
fe4da5cc 202
d15a28e7 203 // --- The Composite Material for micromegas (so far polyetylene) ---
92862013 204 Float_t aCM[2] = {12.01, 1.} ;
205 Float_t zCM[2] = {6., 1.} ;
206 Float_t wCM[2] = {1., 2.} ;
207 Float_t dCM = 0.935 ;
fe4da5cc 208
92862013 209 AliMixture(10, "Compo Mat$", aCM, zCM, dCM, -2, wCM) ;
fe4da5cc 210
d15a28e7 211 // --- Copper ---
212 AliMaterial(11, "Cu$", 63.546, 29, 8.96, 1.43, 14.8, 0, 0) ;
213
214 // --- G10 : Printed Circuit material ---
92862013 215 Float_t aG10[4] = { 12., 1., 16., 28.} ;
216 Float_t zG10[4] = { 6., 1., 8., 14.} ;
217 Float_t wG10[4] = { .259, .288, .248, .205} ;
218 Float_t dG10 = 1.7 ;
d15a28e7 219
92862013 220 AliMixture(12, "G10$", aG10, zG10, dG10, -4, wG10);
fe4da5cc 221
d15a28e7 222 // --- Lead ---
223 AliMaterial(13, "Pb$", 207.2, 82, 11.35, 0.56, 0., 0, 0) ;
fe4da5cc 224
d15a28e7 225 // --- The gas mixture ---
226 // Co2
92862013 227 Float_t aCO[2] = {12.0, 16.0} ;
228 Float_t zCO[2] = {6.0, 8.0} ;
229 Float_t wCO[2] = {1.0, 2.0} ;
230 Float_t dCO = 0.001977 ;
fe4da5cc 231
92862013 232 AliMixture(14, "CO2$", aCO, zCO, dCO, -2, wCO);
fe4da5cc 233
d15a28e7 234 // Ar
92862013 235 Float_t dAr = 0.001782 ;
236 AliMaterial(15, "Ar$", 39.948, 18.0, dAr, 14.0, 0., 0, 0) ;
d15a28e7 237
a004143a 238 // Ar+CO2 Mixture (80% / 20%)
239 Float_t arContent = 0.80 ; // Ar-content of the ArCO2-mixture
240 Float_t aArCO[3] = {39.948, 12.0, 16.0} ;
241 Float_t zArCO[3] = {18.0 , 6.0, 8.0} ;
242 Float_t wArCO[3];
243 wArCO[0] = arContent;
244 wArCO[1] = (1-arContent)*1;
245 wArCO[2] = (1-arContent)*2;
246 Float_t dArCO = arContent*dAr + (1-arContent)*dCO ;
247 AliMixture(16, "ArCO2$", aArCO, zArCO, dArCO, -3, wArCO) ;
fe4da5cc 248
a530ba0a 249 // --- Stainless steel (let it be pure iron) ---
250 AliMaterial(17, "Steel$", 55.845, 26, 7.87, 1.76, 0., 0, 0) ;
85218d13 251
252
253 // --- Fiberglass ---
254 Float_t aFG[4] = {16.0, 28.09, 12.011, 1.00794} ;
255 Float_t zFG[4] = {8.0, 14.0, 6.0, 1.0} ;
256 Float_t wFG[4] = {292.0, 68.0, 462.0, 736.0} ;
257 Float_t dFG = 1.9 ;
258
259 AliMixture(18, "Fibergla$", aFG, zFG, dFG, -4, wFG) ;
260
261 // --- Cables in Air box ---
262 // SERVICES
263
264 Float_t aCA[4] = { 1.,12.,55.8,63.5 };
265 Float_t zCA[4] = { 1.,6.,26.,29. };
266 Float_t wCA[4] = { .014,.086,.42,.48 };
267 Float_t dCA = 0.8 ; //this density is raw estimation, if you know better - correct
268
269 AliMixture(19, "Cables $", aCA, zCA, dCA, -4, wCA) ;
270
271
d15a28e7 272 // --- Air ---
a7262d8e 273 Float_t aAir[4]={12.0107,14.0067,15.9994,39.948};
274 Float_t zAir[4]={6.,7.,8.,18.};
275 Float_t wAir[4]={0.000124,0.755267,0.231781,0.012827};
276 Float_t dAir = 1.20479E-3;
d15a28e7 277
a7262d8e 278 AliMixture(99, "Air$", aAir, zAir, dAir, 4, wAir) ;
279
d15a28e7 280 // DEFINITION OF THE TRACKING MEDIA
fe4da5cc 281
d15a28e7 282 // for PHOS: idtmed[699->798] equivalent to fIdtmed[0->100]
283 Int_t * idtmed = fIdtmed->GetArray() - 699 ;
92862013 284 Int_t isxfld = gAlice->Field()->Integ() ;
285 Float_t sxmgmx = gAlice->Field()->Max() ;
fe4da5cc 286
d15a28e7 287 // The scintillator of the calorimeter made of PBW04 -> idtmed[699]
288 AliMedium(0, "PHOS Xtal $", 0, 1,
92862013 289 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.1, 0, 0) ;
fe4da5cc 290
d15a28e7 291 // The scintillator of the CPV made of Polystyrene scintillator -> idtmed[700]
292 AliMedium(1, "CPV scint. $", 1, 1,
92862013 293 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.1, 0, 0) ;
fe4da5cc 294
d15a28e7 295 // Various Aluminium parts made of Al -> idtmed[701]
296 AliMedium(2, "Al parts $", 2, 0,
92862013 297 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.001, 0.001, 0, 0) ;
fe4da5cc 298
d15a28e7 299 // The Tywek which wraps the calorimeter crystals -> idtmed[702]
300 AliMedium(3, "Tyvek wrapper$", 3, 0,
92862013 301 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.001, 0.001, 0, 0) ;
fe4da5cc 302
d15a28e7 303 // The Polystyrene foam around the calorimeter module -> idtmed[703]
304 AliMedium(4, "Polyst. foam $", 4, 0,
92862013 305 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.1, 0, 0) ;
fe4da5cc 306
d15a28e7 307 // The Titanium around the calorimeter crystal -> idtmed[704]
308 AliMedium(5, "Titan. cover $", 5, 0,
92862013 309 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.0001, 0.0001, 0, 0) ;
fe4da5cc 310
d15a28e7 311 // The Silicon of the pin diode to read out the calorimeter crystal -> idtmed[705]
312 AliMedium(6, "Si PIN $", 6, 0,
7b326aac 313 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.01, 0.01, 0, 0) ;
fe4da5cc 314
d15a28e7 315 // The thermo insulating material of the box which contains the calorimeter module -> idtmed[706]
316 AliMedium(7, "Thermo Insul.$", 7, 0,
92862013 317 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.1, 0, 0) ;
fe4da5cc 318
d15a28e7 319 // The Textolit which makes up the box which contains the calorimeter module -> idtmed[707]
320 AliMedium(8, "Textolit $", 8, 0,
92862013 321 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.1, 0, 0) ;
fe4da5cc 322
d15a28e7 323 // FR4: The Plastic which makes up the frame of micromegas -> idtmed[708]
324 AliMedium(9, "FR4 $", 9, 0,
92862013 325 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.0001, 0, 0) ;
fe4da5cc 326
fe4da5cc 327
d15a28e7 328 // The Composite Material for micromegas -> idtmed[709]
329 AliMedium(10, "CompoMat $", 10, 0,
92862013 330 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.1, 0, 0) ;
fe4da5cc 331
d15a28e7 332 // Copper -> idtmed[710]
333 AliMedium(11, "Copper $", 11, 0,
92862013 334 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.0001, 0, 0) ;
fe4da5cc 335
d15a28e7 336 // G10: Printed Circuit material -> idtmed[711]
337
338 AliMedium(12, "G10 $", 12, 0,
92862013 339 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.01, 0, 0) ;
fe4da5cc 340
d15a28e7 341 // The Lead -> idtmed[712]
342
343 AliMedium(13, "Lead $", 13, 0,
92862013 344 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.1, 0, 0) ;
fe4da5cc 345
d15a28e7 346 // The gas mixture: ArCo2 -> idtmed[715]
347
348 AliMedium(16, "ArCo2 $", 16, 1,
92862013 349 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.01, 0, 0) ;
d15a28e7 350
a530ba0a 351 // Stainless steel -> idtmed[716]
352 AliMedium(17, "Steel $", 17, 0,
353 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.0001, 0, 0) ;
354
85218d13 355 // Fibergalss -> idtmed[717]
356 AliMedium(18, "Fiberglass$", 18, 0,
357 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.1, 0, 0) ;
358
359 // Cables in air -> idtmed[718]
360 AliMedium(19, "Cables $", 19, 0,
361 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.1, 0, 0) ;
362
d15a28e7 363 // Air -> idtmed[798]
364 AliMedium(99, "Air $", 99, 0,
92862013 365 isxfld, sxmgmx, 10.0, 1.0, 0.1, 0.1, 10.0, 0, 0) ;
fe4da5cc 366
d15a28e7 367 // --- Set decent energy thresholds for gamma and electron tracking
fe4da5cc 368
d15a28e7 369 // Tracking threshold for photons and electrons in the scintillator crystal
370 gMC->Gstpar(idtmed[699], "CUTGAM",0.5E-4) ;
371 gMC->Gstpar(idtmed[699], "CUTELE",1.0E-4) ;
9f616d61 372
d15a28e7 373 // --- Generate explicitly delta rays in the titan cover ---
374 gMC->Gstpar(idtmed[704], "LOSS",3.) ;
375 gMC->Gstpar(idtmed[704], "DRAY",1.) ;
d15a28e7 376 // --- and in aluminium parts ---
377 gMC->Gstpar(idtmed[701], "LOSS",3.) ;
378 gMC->Gstpar(idtmed[701], "DRAY",1.) ;
92862013 379 // --- and in PIN diode
380 gMC->Gstpar(idtmed[705], "LOSS",3) ;
381 gMC->Gstpar(idtmed[705], "DRAY",1) ;
382 // --- and in the passive convertor
383 gMC->Gstpar(idtmed[712], "LOSS",3) ;
384 gMC->Gstpar(idtmed[712], "DRAY",1) ;
385 // Tracking threshold for photons and electrons in the gas ArC02
b7101219 386 gMC->Gstpar(idtmed[715], "CUTGAM",1.E-5) ;
387 gMC->Gstpar(idtmed[715], "CUTELE",1.E-5) ;
388 gMC->Gstpar(idtmed[715], "CUTNEU",1.E-5) ;
389 gMC->Gstpar(idtmed[715], "CUTHAD",1.E-5) ;
390 gMC->Gstpar(idtmed[715], "CUTMUO",1.E-5) ;
391 gMC->Gstpar(idtmed[715], "BCUTE",1.E-5) ;
392 gMC->Gstpar(idtmed[715], "BCUTM",1.E-5) ;
393 gMC->Gstpar(idtmed[715], "DCUTE",1.E-5) ;
394 gMC->Gstpar(idtmed[715], "DCUTM",1.E-5) ;
395 gMC->Gstpar(idtmed[715], "PPCUTM",1.E-5) ;
9f616d61 396 gMC->Gstpar(idtmed[715], "LOSS",2.) ;
397 gMC->Gstpar(idtmed[715], "DRAY",0.) ;
398 gMC->Gstpar(idtmed[715], "STRA",2.) ;
399
0c409cb2 400}
a532e9d8 401
65792ca0 402//____________________________________________________________________________
403void AliPHOS::Digits2Raw()
404{
405// convert digits of the current event to raw data
e4d04cf1 406
407 AliPHOSLoader * loader = dynamic_cast<AliPHOSLoader*>(fLoader) ;
65792ca0 408
409 // get the digits
e4d04cf1 410 loader->LoadDigits();
411 TClonesArray* digits = loader->Digits() ;
e9a5efdf 412
65792ca0 413 if (!digits) {
351dd634 414 AliError(Form("No digits found !"));
65792ca0 415 return;
416 }
417
e4d04cf1 418 // get the digitizer
419 loader->LoadDigitizer();
420 AliPHOSDigitizer * digitizer = dynamic_cast<AliPHOSDigitizer *>(loader->Digitizer()) ;
421
65792ca0 422 // get the geometry
e4d04cf1 423 AliPHOSGeometry* geom = GetGeometry();
65792ca0 424 if (!geom) {
351dd634 425 AliError(Form("No geometry found !"));
65792ca0 426 return;
427 }
428
429 // some digitization constants
046ae904 430 const Int_t kDDLOffset = 0x600; // assigned to PHOS
e4d04cf1 431 const Int_t kThreshold = 1; // skip digits below this threshold
65792ca0 432
433 AliAltroBuffer* buffer = NULL;
434 Int_t prevDDL = -1;
046ae904 435 Int_t adcValuesLow[fkTimeBins];
436 Int_t adcValuesHigh[fkTimeBins];
65792ca0 437
c15b04ad 438 AliPHOSCalibData* calib=0;
439
440 //retrieve calibration database
441 if(AliCDBManager::Instance()->IsDefaultStorageSet()){
442 AliCDBEntry *entry = (AliCDBEntry*) AliCDBManager::Instance()->GetDefaultStorage()
443 ->Get("PHOS/GainFactors_and_Pedestals/Calibration",gAlice->GetRunNumber());
444 calib = (AliPHOSCalibData*) entry->GetObject();
445 }
446
65792ca0 447 // loop over digits (assume ordered digits)
448 for (Int_t iDigit = 0; iDigit < digits->GetEntries(); iDigit++) {
e4d04cf1 449 AliPHOSDigit* digit = dynamic_cast<AliPHOSDigit *>(digits->At(iDigit)) ;
e9a5efdf 450 if (digit->GetAmp() < kThreshold)
451 continue;
65792ca0 452 Int_t relId[4];
453 geom->AbsToRelNumbering(digit->GetId(), relId);
454 Int_t module = relId[0];
e9a5efdf 455
456 // Begin FIXME
457 if (relId[1] != 0)
458 continue; // ignore digits from CPV
459 // End FIXME
460
461 // PHOS EMCA has 4 DDL per module. Splitting is done based on the row number
65792ca0 462 Int_t iDDL = 4 * (module - 1) + (4 * (relId[2] - 1)) / geom->GetNPhi();
463
464 // new DDL
465 if (iDDL != prevDDL) {
466 // write real header and close previous file
467 if (buffer) {
468 buffer->Flush();
469 buffer->WriteDataHeader(kFALSE, kFALSE);
470 delete buffer;
471 }
472
473 // open new file and write dummy header
e9a5efdf 474 TString fileName("PHOS_") ;
475 fileName += (iDDL + kDDLOffset) ;
476 fileName += ".ddl" ;
477 buffer = new AliAltroBuffer(fileName.Data(), 1);
65792ca0 478 buffer->WriteDataHeader(kTRUE, kFALSE); //Dummy;
479
480 prevDDL = iDDL;
481 }
482
483 // out of time range signal (?)
e4d04cf1 484 if (digit->GetTimeR() > GetRawFormatTimeMax() ) {
65792ca0 485 buffer->FillBuffer(digit->GetAmp());
e4d04cf1 486 buffer->FillBuffer(GetRawFormatTimeBins() ); // time bin
487 buffer->FillBuffer(3); // bunch length
65792ca0 488 buffer->WriteTrailer(3, relId[3], relId[2], module); // trailer
489
e4d04cf1 490 // calculate the time response function
65792ca0 491 } else {
c15b04ad 492 Double_t energy = 0 ;
493 Int_t module = relId[0];
494 Int_t column = relId[3];
495 Int_t row = relId[2];
496 if ( digit->GetId() <= geom->GetNModules() * geom->GetNCristalsInModule()) {
497 if(calib)
498 energy = digit->GetAmp()*calib->GetADCchannelEmc(module,column,row) +
499 calib->GetADCpedestalEmc(module,column,row);
500 else
501 energy=digit->GetAmp()*digitizer->GetEMCchannel()+digitizer->GetEMCpedestal();
502 }
e4d04cf1 503 else
c15b04ad 504 energy = digit->GetAmp()*digitizer->GetCPVchannel()+digitizer->GetCPVpedestal();
e4d04cf1 505
addad4c9 506 Bool_t lowgain = RawSampledResponse(digit->GetTimeR(), energy, adcValuesHigh, adcValuesLow) ;
046ae904 507
addad4c9 508 if (lowgain)
509 buffer->WriteChannel(relId[3], relId[2], module + fLowGainOffset,
e4d04cf1 510 GetRawFormatTimeBins(), adcValuesLow, kThreshold);
addad4c9 511 else
512 buffer->WriteChannel(relId[3], relId[2], module,
513 GetRawFormatTimeBins(), adcValuesHigh, kThreshold);
514
65792ca0 515 }
516 }
046ae904 517
65792ca0 518 // write real header and close last file
519 if (buffer) {
520 buffer->Flush();
521 buffer->WriteDataHeader(kFALSE, kFALSE);
522 delete buffer;
523 }
046ae904 524
e4d04cf1 525 loader->UnloadDigits();
e9a5efdf 526}
527
528//____________________________________________________________________________
529void AliPHOS::Hits2SDigits()
530{
531// create summable digits
532
a1952ef7 533 AliPHOSSDigitizer phosDigitizer(fLoader->GetRunLoader()->GetFileName().Data()) ;
534 phosDigitizer.SetEventRange(0, -1) ; // do all the events
535 phosDigitizer.ExecuteTask("all") ;
e9a5efdf 536}
537
538//____________________________________________________________________________
539AliLoader* AliPHOS::MakeLoader(const char* topfoldername)
540{
541//different behaviour than standard (singleton getter)
542// --> to be discussed and made eventually coherent
543 fLoader = new AliPHOSLoader(GetName(),topfoldername);
544 return fLoader;
545}
546
046ae904 547//__________________________________________________________________
e4d04cf1 548Double_t AliPHOS::RawResponseFunction(Double_t *x, Double_t *par)
046ae904 549{
550 // Shape of the electronics raw reponse:
e4d04cf1 551 // It is a semi-gaussian, 2nd order Gamma function of the general form
552 // v(t) = n**n * Q * A**n / C *(t/tp)**n * exp(-n * t/tp) with
553 // tp : peaking time par[0]
554 // n : order of the function
555 // C : integrating capacitor in the preamplifier
556 // A : open loop gain of the preamplifier
557 // Q : the total APD charge to be measured Q = C * energy
046ae904 558
e4d04cf1 559 Double_t signal ;
560 Double_t xx = x[0] - ( fgTimeTrigger + par[3] ) ;
561
562 if (xx < 0 || xx > fgTimeMax)
563 signal = 0. ;
564 else {
565 Double_t fac = par[0] * TMath::Power(fgOrder, fgOrder) * TMath::Power(par[1], fgOrder) / fgCapa ;
566 signal = fac * par[2] * TMath::Power(xx / fgTimePeak, fgOrder) * TMath::Exp(-fgOrder * (xx / fgTimePeak)) ;
567 }
568 return signal ;
569}
570
571//__________________________________________________________________
572Double_t AliPHOS::RawResponseFunctionMax(Double_t charge, Double_t gain)
573{
574 return ( charge * TMath::Power(fgOrder, fgOrder) * TMath::Power(gain, fgOrder)
575 / ( fgCapa * TMath::Exp(fgOrder) ) );
576
046ae904 577}
578
579//__________________________________________________________________
eb0b1051 580Bool_t AliPHOS::RawSampledResponse(Double_t dtime, Double_t damp, Int_t * adcH, Int_t * adcL) const
046ae904 581{
582 // for a start time dtime and an amplitude damp given by digit,
e4d04cf1 583 // calculates the raw sampled response AliPHOS::RawResponseFunction
046ae904 584
585 const Int_t kRawSignalOverflow = 0x3FF ;
e4d04cf1 586 Bool_t lowGain = kFALSE ;
587
588 TF1 signalF("signal", RawResponseFunction, 0, GetRawFormatTimeMax(), 4);
589
590 for (Int_t iTime = 0; iTime < GetRawFormatTimeBins(); iTime++) {
591 signalF.SetParameter(0, GetRawFormatHighCharge() ) ;
592 signalF.SetParameter(1, GetRawFormatHighGain() ) ;
593 signalF.SetParameter(2, damp) ;
594 signalF.SetParameter(3, dtime) ;
595 Double_t time = iTime * GetRawFormatTimeMax() / GetRawFormatTimeBins() ;
596 Double_t signal = signalF.Eval(time) ;
597 if ( static_cast<Int_t>(signal+0.5) > kRawSignalOverflow ){ // larger than 10 bits
598 signal = kRawSignalOverflow ;
599 lowGain = kTRUE ;
600 }
601 adcH[iTime] = static_cast<Int_t>(signal + 0.5) ;
602
603 signalF.SetParameter(0, GetRawFormatLowCharge() ) ;
604 signalF.SetParameter(1, GetRawFormatLowGain() ) ;
605 signal = signalF.Eval(time) ;
606 if ( static_cast<Int_t>(signal+0.5) > kRawSignalOverflow) // larger than 10 bits
607 signal = kRawSignalOverflow ;
608 adcL[iTime] = static_cast<Int_t>(0.5 + signal ) ;
609
046ae904 610 }
e4d04cf1 611 return lowGain ;
046ae904 612}
613
e9a5efdf 614//____________________________________________________________________________
615void AliPHOS::SetTreeAddress()
616{
617 // Links Hits in the Tree to Hits array
618 TBranch *branch;
619 char branchname[20];
620 sprintf(branchname,"%s",GetName());
e9a5efdf 621 // Branch address for hit tree
351dd634 622 TTree *treeH = TreeH();
e9a5efdf 623 if (treeH) {
624 branch = treeH->GetBranch(branchname);
625 if (branch)
626 {
627 if (fHits == 0x0) fHits= new TClonesArray("AliPHOSHit",1000);
351dd634 628 //AliInfo(Form("<%s> Setting Hits Address",GetName()));
e9a5efdf 629 branch->SetAddress(&fHits);
630 }
631 }
632}
633