]> git.uio.no Git - u/mrichter/AliRoot.git/blame - ZDC/AliZDC.cxx
M
[u/mrichter/AliRoot.git] / ZDC / AliZDC.cxx
CommitLineData
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 **************************************************************************/
15
88cb7938 16/* $Id$ */
4c039060 17
fe4da5cc 18///////////////////////////////////////////////////////////////////////////////
19// //
359cdddc 20// Zero Degree Calorimeter //
21// This class contains the basic functions for the ZDCs; //
22// functions specific to one particular geometry are //
23// contained in the derived classes //
fe4da5cc 24// //
fe4da5cc 25///////////////////////////////////////////////////////////////////////////////
26
f901045b 27// --- ROOT system
fe4da5cc 28#include <TBRIK.h>
7ca4655f 29#include <TClonesArray.h>
88cb7938 30#include <TGeometry.h>
31#include <TNode.h>
32#include <TTree.h>
232b622f 33#include <TFile.h>
8af17dba 34#include <TSystem.h>
90001c80 35#include <TRandom.h>
fe4da5cc 36
f901045b 37// --- AliRoot header files
88cb7938 38#include "AliDetector.h"
f7ee745b 39#include "AliRawDataHeaderSim.h"
90001c80 40#include "AliRawReader.h"
41#include "AliLoader.h"
42#include "AliRun.h"
43#include "AliMC.h"
44#include "AliLog.h"
45#include "AliDAQ.h"
fe4da5cc 46#include "AliZDC.h"
f901045b 47#include "AliZDCHit.h"
6de91202 48#include "AliZDCSDigit.h"
49#include "AliZDCDigit.h"
50#include "AliZDCDigitizer.h"
51#include "AliZDCRawStream.h"
6024ec85 52#include "AliZDCPedestals.h"
53#include "AliZDCCalib.h"
08f92f14 54#include "AliFstream.h"
88cb7938 55
fe4da5cc 56
57ClassImp(AliZDC)
8af17dba 58
fe4da5cc 59//_____________________________________________________________________________
cc2abffd 60AliZDC::AliZDC() :
61 AliDetector(),
a718c993 62 fNoShower(0),
6024ec85 63 fPedCalib(0),
64 fCalibData(0),
a718c993 65 fZDCCalibFName("")
fe4da5cc 66{
67 //
68 // Default constructor for the Zero Degree Calorimeter base class
69 //
2e6fc82a 70
cc2abffd 71 fIshunt = 1;
72 fNhits = 0;
73 fHits = 0;
74 fDigits = 0;
75 fNdigits = 0;
d16dd065 76
fe4da5cc 77}
78
79//_____________________________________________________________________________
cc2abffd 80AliZDC::AliZDC(const char *name, const char *title) :
81 AliDetector(name,title),
82 fNoShower (0),
6024ec85 83 fPedCalib(0),
84 fCalibData(0),
a718c993 85 fZDCCalibFName("")
fe4da5cc 86{
87 //
88 // Standard constructor for the Zero Degree Calorimeter base class
89 //
cc2abffd 90
91 fIshunt = 1;
92 fNhits = 0;
93 fDigits = 0;
94 fNdigits = 0;
95
96 fHits = new TClonesArray("AliZDCHit",1000);
5d12ce38 97 gAlice->GetMCApp()->AddHitList(fHits);
8af17dba 98
99 char sensname[5],senstitle[25];
100 sprintf(sensname,"ZDC");
101 sprintf(senstitle,"ZDC dummy");
102 SetName(sensname); SetTitle(senstitle);
f901045b 103
866ab5a2 104}
cc2abffd 105
866ab5a2 106//____________________________________________________________________________
107AliZDC::~AliZDC()
108{
109 //
110 // ZDC destructor
111 //
112
cc2abffd 113 fIshunt = 0;
6024ec85 114 delete fPedCalib;
d16dd065 115 delete fCalibData;
116
fe4da5cc 117}
cc2abffd 118
119//_____________________________________________________________________________
120AliZDC::AliZDC(const AliZDC& ZDC) :
a718c993 121AliDetector("ZDC","ZDC"),
122fNoShower(ZDC.fNoShower),
123fPedCalib(ZDC.fPedCalib),
124fCalibData(ZDC.fCalibData),
a718c993 125fZDCCalibFName(ZDC.fZDCCalibFName)
cc2abffd 126{
127 // copy constructor
cc2abffd 128}
129
130//_____________________________________________________________________________
131AliZDC& AliZDC::operator=(const AliZDC& ZDC)
132{
133 // assignement operator
134 if(this!=&ZDC){
135 fNoShower = ZDC.fNoShower;
6024ec85 136 fPedCalib = ZDC.fPedCalib;
cc2abffd 137 fCalibData = ZDC.fCalibData;
138 fZDCCalibFName = ZDC.fZDCCalibFName;
139 } return *this;
140}
141
fe4da5cc 142//_____________________________________________________________________________
143void AliZDC::AddHit(Int_t track, Int_t *vol, Float_t *hits)
144{
145 //
f901045b 146 // Add a ZDC hit to the hit list.
147 // -> We make use of 2 array of hits:
148 // [1] fHits (the usual one) that contains hits for each PRIMARY
149 // [2] fStHits that contains hits for each EVENT and is used to
150 // obtain digits at the end of each event
fe4da5cc 151 //
f901045b 152
47709f57 153 static Float_t primKinEn=0., xImpact=0., yImpact=0., sFlag=0.;
154 static Int_t pcPDGcode;
68ca986e 155
43f34e8b 156 AliZDCHit *newquad, *curprimquad;
f901045b 157 newquad = new AliZDCHit(fIshunt, track, vol, hits);
65d4f2be 158 TClonesArray &lhits = *fHits;
cefa66cb 159
160 if(fNhits==0){
161 // First hit -> setting flag for primary or secondary particle
5d12ce38 162 Int_t primary = gAlice->GetMCApp()->GetPrimary(track);
47709f57 163 //
cefa66cb 164 if(track != primary){
3ff116f2 165 newquad->SetSFlag(1); // SECONDARY particle entering the ZDC
cefa66cb 166 }
167 else if(track == primary){
3ff116f2 168 newquad->SetSFlag(0); // PRIMARY particle entering the ZDC
cefa66cb 169 }
3ff116f2 170 sFlag = newquad->GetSFlag();
171 primKinEn = newquad->GetPrimKinEn();
172 xImpact = newquad->GetXImpact();
173 yImpact = newquad->GetYImpact();
47709f57 174 pcPDGcode = newquad->GetPDGCode();
cefa66cb 175 }
176 else{
3ff116f2 177 newquad->SetPrimKinEn(primKinEn);
178 newquad->SetXImpact(xImpact);
179 newquad->SetYImpact(yImpact);
180 newquad->SetSFlag(sFlag);
47709f57 181 newquad->SetPDGCode(pcPDGcode);
cefa66cb 182 }
183
43f34e8b 184 Int_t j;
f901045b 185 for(j=0; j<fNhits; j++){
2e6fc82a 186 // If hits are equal (same track, same volume), sum them.
f901045b 187 curprimquad = (AliZDCHit*) lhits[j];
188 if(*curprimquad == *newquad){
189 *curprimquad = *curprimquad+*newquad;
cc2abffd 190 // CH. debug
191 /*if(newquad->GetEnergy() != 0. || newquad->GetLightPMC() != 0. ||
192 newquad->GetLightPMQ() != 0.){
193 printf("\n\t --- Equal hits found\n");
194 curprimquad->Print("");
195 newquad->Print("");
196 printf("\t --- Det. %d, Quad. %d: X = %f, E = %f, LightPMC = %f, LightPMQ = %f\n",
197 curprimquad->GetVolume(0),curprimquad->GetVolume(1),curprimquad->GetXImpact(),
198 curprimquad->GetEnergy(), curprimquad->GetLightPMC(), curprimquad->GetLightPMQ());
199 }*/
200 //
f901045b 201 delete newquad;
68ca986e 202 return;
f901045b 203 }
204 }
f901045b 205
206 //Otherwise create a new hit
cc2abffd 207 new(lhits[fNhits]) AliZDCHit(*newquad);
f901045b 208 fNhits++;
cc2abffd 209 // CH. debug
210 /*printf("\n\t New ZDC hit added! fNhits = %d\n", fNhits);
211 printf("\t Det. %d, Quad.t %d: X = %f, E = %f, LightPMC = %f, LightPMQ = %f\n",
212 newquad->GetVolume(0),newquad->GetVolume(1),newquad->GetXImpact(),
213 newquad->GetEnergy(), newquad->GetLightPMC(), newquad->GetLightPMQ());
214 */
866ab5a2 215 delete newquad;
cefa66cb 216}
217
fe4da5cc 218//_____________________________________________________________________________
219void AliZDC::BuildGeometry()
220{
221 //
222 // Build the ROOT TNode geometry for event display
223 // in the Zero Degree Calorimeter
224 // This routine is dummy for the moment
225 //
226
68ca986e 227 TNode *node, *top;
228 TBRIK *brik;
359cdddc 229 const int kColorZDC = kBlue;
fe4da5cc 230
231 //
68ca986e 232 top=gAlice->GetGeometry()->GetNode("alice");
fe4da5cc 233
234 // ZDC
6024ec85 235 brik = new TBRIK("S_ZDC","ZDC box","void",300,300,5);
236 top->cd();
237 node = new TNode("ZDC","ZDC","S_ZDC",0,0,600,"");
238 node->SetLineColor(kColorZDC);
239 fNodes->Add(node);
fe4da5cc 240}
241
359cdddc 242//____________________________________________________________________________
243Float_t AliZDC::ZMin(void) const
244{
245 // Minimum dimension of the ZDC module in z
6de91202 246 return -11600.;
359cdddc 247}
248
249//____________________________________________________________________________
250Float_t AliZDC::ZMax(void) const
251{
252 // Maximum dimension of the ZDC module in z
382e174b 253 return 11750.;
359cdddc 254}
255
256
fe4da5cc 257//_____________________________________________________________________________
5bc762ca 258void AliZDC::MakeBranch(Option_t *opt)
fe4da5cc 259{
260 //
359cdddc 261 // Create Tree branches for the ZDC
fe4da5cc 262 //
359cdddc 263
264 char branchname[10];
265 sprintf(branchname,"%s",GetName());
88cb7938 266
267 const char *cH = strstr(opt,"H");
268
382e174b 269 if(cH && fLoader->TreeH()) {
270 if (fHits) {
271 fHits->Clear();
272 fNhits = 0;
273 }
274 else {
275 fHits = new TClonesArray("AliZDCHit",1000);
276 if (gAlice && gAlice->GetMCApp())
277 gAlice->GetMCApp()->AddHitList(fHits);
278 }
279 }
359cdddc 280
281 AliDetector::MakeBranch(opt);
1450a7cd 282}
1450a7cd 283
b6d27557 284//_____________________________________________________________________________
285void AliZDC::Hits2SDigits()
286{
6de91202 287 // Create summable digits from hits
288
80e87581 289 AliDebug(1,"\n Entering AliZDC::Hits2SDigits() ");
b6d27557 290
85a5290f 291 fLoader->LoadHits("read");
292 fLoader->LoadSDigits("recreate");
6de91202 293 AliRunLoader* runLoader = fLoader->GetRunLoader();
294 AliZDCSDigit sdigit;
295 AliZDCSDigit* psdigit = &sdigit;
85a5290f 296
6de91202 297 // Event loop
90001c80 298 for(Int_t iEvent = 0; iEvent < runLoader->GetNumberOfEvents(); iEvent++) {
80e87581 299 Float_t pmCZNC=0, pmCZPC=0, pmCZNA=0, pmCZPA=0, pmZEM1 = 0, pmZEM2 = 0;
300 Float_t pmQZNC[4], pmQZPC[4], pmQZNA[4], pmQZPA[4];
301 for(Int_t i = 0; i < 4; i++) pmQZNC[i] = pmQZPC[i] = pmQZNA[i] = pmQZPA[i] = 0;
85a5290f 302
6de91202 303 runLoader->GetEvent(iEvent);
304 TTree* treeH = fLoader->TreeH();
359cdddc 305 Int_t ntracks = (Int_t) treeH->GetEntries();
6de91202 306 ResetHits();
307
359cdddc 308 // Tracks loop
6de91202 309 Int_t sector[2];
90001c80 310 for(Int_t itrack = 0; itrack < ntracks; itrack++) {
6de91202 311 treeH->GetEntry(itrack);
90001c80 312 for(AliZDCHit* zdcHit = (AliZDCHit*)FirstHit(-1); zdcHit;
6de91202 313 zdcHit = (AliZDCHit*)NextHit()) {
b6d27557 314
6de91202 315 sector[0] = zdcHit->GetVolume(0);
316 sector[1] = zdcHit->GetVolume(1);
80e87581 317 if((sector[1] < 1) || (sector[1] > 5)) {
6de91202 318 Error("Hits2SDigits", "sector[0] = %d, sector[1] = %d",
319 sector[0], sector[1]);
320 continue;
321 }
322 Float_t lightQ = zdcHit->GetLightPMQ();
323 Float_t lightC = zdcHit->GetLightPMC();
324
80e87581 325 if(sector[0] == 1) { //ZNC
326 pmCZNC += lightC;
327 pmQZNC[sector[1]-1] += lightQ;
328 }
329 else if(sector[0] == 2) { //ZPC
330 pmCZPC += lightC;
331 pmQZPC[sector[1]-1] += lightQ;
332 }
333 else if(sector[0] == 3) { //ZEM
90001c80 334 if(sector[1] == 1) pmZEM1 += lightC;
80e87581 335 else pmZEM2 += lightQ;
6de91202 336 }
80e87581 337 if(sector[0] == 4) { //ZNA
338 pmCZNA += lightC;
339 pmQZNA[sector[1]-1] += lightQ;
340 }
341 else if(sector[0] == 5) { //ZPA
342 pmCZPA += lightC;
343 pmQZPA[sector[1]-1] += lightQ;
344 }
6de91202 345 }//Hits loop
359cdddc 346 }
6de91202 347
348 // create the output tree
349 fLoader->MakeTree("S");
350 TTree* treeS = fLoader->TreeS();
351 const Int_t kBufferSize = 4000;
352 treeS->Branch(GetName(), "AliZDCSDigit", &psdigit, kBufferSize);
353
80e87581 354 // Create sdigits for ZNC
355 sector[0] = 1; // Detector = ZNC
6de91202 356 sector[1] = 0; // Common PM ADC
80e87581 357 new(psdigit) AliZDCSDigit(sector, pmCZNC);
358 if(pmCZNC > 0) treeS->Fill();
90001c80 359 for(Int_t j = 0; j < 4; j++) {
6de91202 360 sector[1] = j+1; // Towers PM ADCs
80e87581 361 new(psdigit) AliZDCSDigit(sector, pmQZNC[j]);
362 if(pmQZNC[j] > 0) treeS->Fill();
b6d27557 363 }
359cdddc 364
80e87581 365 // Create sdigits for ZPC
366 sector[0] = 2; // Detector = ZPC
6de91202 367 sector[1] = 0; // Common PM ADC
80e87581 368 new(psdigit) AliZDCSDigit(sector, pmCZPC);
369 if(pmCZPC > 0) treeS->Fill();
90001c80 370 for(Int_t j = 0; j < 4; j++) {
6de91202 371 sector[1] = j+1; // Towers PM ADCs
80e87581 372 new(psdigit) AliZDCSDigit(sector, pmQZPC[j]);
373 if(pmQZPC[j] > 0) treeS->Fill();
6de91202 374 }
375
376 // Create sdigits for ZEM
377 sector[0] = 3;
378 sector[1] = 1; // Detector = ZEM1
379 new(psdigit) AliZDCSDigit(sector, pmZEM1);
90001c80 380 if(pmZEM1 > 0) treeS->Fill();
6de91202 381 sector[1] = 2; // Detector = ZEM2
382 new(psdigit) AliZDCSDigit(sector, pmZEM2);
90001c80 383 if(pmZEM2 > 0) treeS->Fill();
6de91202 384
80e87581 385 // Create sdigits for ZNA
386 sector[0] = 4; // Detector = ZNA
387 sector[1] = 0; // Common PM ADC
388 new(psdigit) AliZDCSDigit(sector, pmCZNA);
389 if(pmCZNA > 0) treeS->Fill();
390 for(Int_t j = 0; j < 4; j++) {
391 sector[1] = j+1; // Towers PM ADCs
392 new(psdigit) AliZDCSDigit(sector, pmQZNA[j]);
393 if(pmQZNA[j] > 0) treeS->Fill();
394 }
395
396 // Create sdigits for ZPA
397 sector[0] = 5; // Detector = ZPA
398 sector[1] = 0; // Common PM ADC
399 new(psdigit) AliZDCSDigit(sector, pmCZPA);
400 if(pmCZPA > 0) treeS->Fill();
401 for(Int_t j = 0; j < 4; j++) {
402 sector[1] = j+1; // Towers PM ADCs
403 new(psdigit) AliZDCSDigit(sector, pmQZPA[j]);
404 if(pmQZPA[j] > 0) treeS->Fill();
405 }
406
6de91202 407 // write the output tree
408 fLoader->WriteSDigits("OVERWRITE");
85a5290f 409 }
410
411 fLoader->UnloadHits();
412 fLoader->UnloadSDigits();
359cdddc 413}
414
415//_____________________________________________________________________________
6de91202 416AliDigitizer* AliZDC::CreateDigitizer(AliRunDigitizer* manager) const
359cdddc 417{
6de91202 418 // Create the digitizer for ZDC
419
420 return new AliZDCDigitizer(manager);
359cdddc 421}
422
423//_____________________________________________________________________________
6de91202 424void AliZDC::Digits2Raw()
359cdddc 425{
6de91202 426 // Convert ZDC digits to raw data
427
83347831 428 // Format: 24 int values -> ZN1(C+Q1-4), ZP1(C+Q1-4), ZEM1, ZEM2, ZN(C+Q1-4), ZP2(C+Q1-4), 2 Ref PMs
429 // + 24 int values for the corresponding out of time channels
d79f8d50 430 // For the CAEN module V965 we have an Header, the Data Words and an End Of Block
431 // 12 channels x 2 gain chains read from 1st ADC module
83347831 432 // 12 channels x 2 gain chains read from 2nd ADC module
d79f8d50 433 // 12 channels x 2 gain chains read from 3rd ADC module (o.o.t.)
83347831 434 // 12 channels x 2 gain chains read from 4rth ADC module (o.o.t.)
d79f8d50 435 //
83347831 436 const int knADCData1=24, knADCData2=24; // In principle the 2 numbers can be different!
7f73eb6b 437 UInt_t lADCHeader1;
7f73eb6b 438 UInt_t lADCHeader2;
83347831 439 UInt_t lADCData1[knADCData1];
8a2624cc 440 UInt_t lADCData2[knADCData2];
d79f8d50 441 UInt_t lADCData3[knADCData1];
d79f8d50 442 UInt_t lADCData4[knADCData2];
443 //
232b622f 444 UInt_t lADCEndBlock;
6de91202 445
446 // load the digits
447 fLoader->LoadDigits("read");
448 AliZDCDigit digit;
449 AliZDCDigit* pdigit = &digit;
450 TTree* treeD = fLoader->TreeD();
90001c80 451 if(!treeD) return;
6de91202 452 treeD->SetBranchAddress("ZDC", &pdigit);
83347831 453 //printf("\t AliZDC::Digits2Raw -> TreeD has %d entries\n",(Int_t) treeD->GetEntries());
6de91202 454
455 // Fill data array
456 // ADC header
232b622f 457 UInt_t lADCHeaderGEO = 0;
458 UInt_t lADCHeaderCRATE = 0;
8a2624cc 459 UInt_t lADCHeaderCNT1 = knADCData1;
460 UInt_t lADCHeaderCNT2 = knADCData2;
1450a7cd 461
7f73eb6b 462 lADCHeader1 = lADCHeaderGEO << 27 | 0x1 << 25 | lADCHeaderCRATE << 16 |
463 lADCHeaderCNT1 << 8 ;
7f73eb6b 464 lADCHeader2 = lADCHeaderGEO << 27 | 0x1 << 25 | lADCHeaderCRATE << 16 |
465 lADCHeaderCNT2 << 8 ;
6de91202 466
467 // ADC data word
232b622f 468 UInt_t lADCDataGEO = lADCHeaderGEO;
83347831 469 //
8a2624cc 470 UInt_t lADCDataValue1[knADCData1];
471 UInt_t lADCDataValue2[knADCData2];
d79f8d50 472 UInt_t lADCDataValue3[knADCData1];
473 UInt_t lADCDataValue4[knADCData2];
83347831 474 //
8a2624cc 475 UInt_t lADCDataOvFlw1[knADCData1];
476 UInt_t lADCDataOvFlw2[knADCData2];
d79f8d50 477 UInt_t lADCDataOvFlw3[knADCData1];
478 UInt_t lADCDataOvFlw4[knADCData2];
83347831 479 //
d79f8d50 480 for(Int_t i=0; i<knADCData1 ; i++){
7f73eb6b 481 lADCDataValue1[i] = 0;
482 lADCDataOvFlw1[i] = 0;
d79f8d50 483 lADCDataValue3[i] = 0;
484 lADCDataOvFlw3[i] = 0;
7f73eb6b 485 }
d79f8d50 486 for(Int_t i=0; i<knADCData2 ; i++){
7f73eb6b 487 lADCDataValue2[i] = 0;
488 lADCDataOvFlw2[i] = 0;
d79f8d50 489 lADCDataValue4[i] = 0;
490 lADCDataOvFlw4[i] = 0;
6de91202 491 }
83347831 492 //
232b622f 493 UInt_t lADCDataChannel = 0;
6de91202 494
495 // loop over digits
d79f8d50 496 for(Int_t iDigit=0; iDigit<treeD->GetEntries(); iDigit++){
6de91202 497 treeD->GetEntry(iDigit);
d79f8d50 498 if(!pdigit) continue;
a5d5ab4c 499 //digit.Print("");
abf60186 500
d79f8d50 501 // *** ADC data
83347831 502 Int_t index=0;
503 if(digit.GetSector(1)!=5){ // ZDC signal channels
504 // *** ADC1 (ZN1, ZP1, ZEM1,2) or ADC3 (ZN1, ZP1, ZEM1,2 o.o.t.)
505 if(digit.GetSector(0)==1 || digit.GetSector(0)==2 || digit.GetSector(0)==3){
506 if(digit.GetSector(0)==1 || digit.GetSector(0)==2){
507 index = (digit.GetSector(0)-1) + 4*digit.GetSector(1); // ZN1 or ZP1
508 lADCDataChannel = 8*(digit.GetSector(0)-1) + digit.GetSector(1);
509 }
510 else if(digit.GetSector(0)==3){ // ZEM 1,2
511 index = 20 + (digit.GetSector(1)-1);
512 lADCDataChannel = 5 + 8*(digit.GetSector(1)-1);
513 }
514 //
515 /*printf("\t AliZDC::Digits2Raw -> idig%d det %d quad %d index %d, ADCch %d ADCVal[%d, %d]\n",
516 iDigit,digit.GetSector(0),digit.GetSector(1),index,lADCDataChannel,
517 digit.GetADCValue(0),digit.GetADCValue(1));// Ch. debug
518 */
519 //
520 if(iDigit<knADCData1){ // *** In-time signals
521 lADCDataValue1[index] = digit.GetADCValue(0); // High gain ADC ch.
522 if(lADCDataValue1[index] > 2047) lADCDataOvFlw1[index] = 1;
523 lADCDataValue1[index+2] = digit.GetADCValue(1); // Low gain ADC ch.
524 if(lADCDataValue1[index+2] > 2047) lADCDataOvFlw1[index+2] = 1;
525
526 lADCData1[index] = lADCDataGEO << 27 | 0x1 << 24 | lADCDataChannel << 17 |
527 lADCDataOvFlw1[index] << 12 | (lADCDataValue1[index] & 0xfff);
528 lADCData1[index+2] = lADCDataGEO << 27 | 0x1 << 24 | lADCDataChannel << 17 | 0x1 << 16 |
529 lADCDataOvFlw1[index+2] << 12 | (lADCDataValue1[index+2] & 0xfff);
530 }
531 else{ // *** Out-of-time signals
532 lADCDataValue3[index] = digit.GetADCValue(0); // High gain ADC ch.
533 if(lADCDataValue3[index] > 2047) lADCDataOvFlw3[index] = 1;
534 lADCDataValue3[index+2] = digit.GetADCValue(1); // Low gain ADC ch.
535 if(lADCDataValue3[index+2] > 2047) lADCDataOvFlw3[index+2] = 1;
536
537 lADCData3[index] = lADCDataGEO << 27 | lADCDataChannel << 17 |
538 lADCDataOvFlw3[index] << 12 | (lADCDataValue3[index] & 0xfff);
539 lADCData3[index+2] = lADCDataGEO << 27 | lADCDataChannel << 17 | 0x1 << 16 |
540 lADCDataOvFlw3[index+2] << 12 | (lADCDataValue3[index+2] & 0xfff);
541 }
7f73eb6b 542 }
83347831 543 // *** ADC2 (ZN2, ZP2) or ADC4 (ZN2, ZP2 o.o.t.)
544 else if(digit.GetSector(0)==4 || digit.GetSector(0)==5){
545 index = (digit.GetSector(0)-4) + 4*digit.GetSector(1); // ZN2 or ZP2
546 lADCDataChannel = 8*(digit.GetSector(0)-4) + digit.GetSector(1);
547 //
548 /*printf("\t AliZDC::Digits2Raw -> idig%d det %d quad %d index %d, ADCch %d ADCVal[%d, %d]\n",
549 iDigit,digit.GetSector(0),digit.GetSector(1),index,lADCDataChannel,
550 digit.GetADCValue(0),digit.GetADCValue(1));// Ch. debug
551 */
552 //
553 if(iDigit<knADCData2){ // *** In-time signals
554 lADCDataValue2[index] = digit.GetADCValue(0);
555 if(lADCDataValue2[index] > 2047) lADCDataOvFlw2[index] = 1;
556 lADCDataValue2[index+2] = digit.GetADCValue(1);
557 if(lADCDataValue2[index+2] > 2047) lADCDataOvFlw2[index+2] = 1;
558 //
559 lADCData2[index] = lADCDataGEO << 27 | lADCDataChannel << 17 |
560 lADCDataOvFlw2[index] << 12 | (lADCDataValue2[index] & 0xfff);
561 lADCData2[index+2] = lADCDataGEO << 27 | lADCDataChannel << 17 | 0x1 << 16 |
562 lADCDataOvFlw2[index+2] << 12 | (lADCDataValue2[index+2] & 0xfff);
563 }
564 else{ // *** Out-of-time signals
565 lADCDataValue4[index] = digit.GetADCValue(0);
566 if(lADCDataValue4[index] > 2047) lADCDataOvFlw4[index] = 1;
567 lADCDataValue4[index+2] = digit.GetADCValue(1);
568 if(lADCDataValue4[index+2] > 2047) lADCDataOvFlw4[index+2] = 1;
569 //
570 lADCData4[index] = lADCDataGEO << 27 | lADCDataChannel << 17 |
571 lADCDataOvFlw4[index] << 12 | (lADCDataValue4[index] & 0xfff);
572 lADCData4[index+2] = lADCDataGEO << 27 | lADCDataChannel << 17 | 0x1 << 16 |
573 lADCDataOvFlw4[index+2] << 12 | (lADCDataValue4[index+2] & 0xfff);
574 }
d79f8d50 575 }
6de91202 576 }
83347831 577 // *** ADC2 (Reference PTMs) or ADC4 (Reference PTMs o.o.t.)
578 else if(digit.GetSector(1)==5){
c35ed519 579 index = 20 + (digit.GetSector(0)-1)/3;
580 lADCDataChannel = 5 + 8*(digit.GetSector(0)-1)/3;
abf60186 581 //
83347831 582 /*printf("\t AliZDC::Digits2Raw -> idig%d det %d quad %d index %d, ADCch %d ADCVal[%d, %d]\n",
583 iDigit,digit.GetSector(0),digit.GetSector(1),index,lADCDataChannel,
584 digit.GetADCValue(0),digit.GetADCValue(1));// Ch. debug
c7426372 585 */
7f73eb6b 586 //
83347831 587 if(iDigit<knADCData2){ // *** In-time signals
588 lADCDataValue2[index] = digit.GetADCValue(0);
589 if(lADCDataValue2[index] > 2047) lADCDataOvFlw2[index] = 1;
590 lADCDataValue2[index+2] = digit.GetADCValue(1);
591 if(lADCDataValue2[index+2] > 2047) lADCDataOvFlw2[index+2] = 1;
d79f8d50 592 //
83347831 593 lADCData2[index] = lADCDataGEO << 27 | lADCDataChannel << 17 |
594 lADCDataOvFlw2[index] << 12 | (lADCDataValue2[index] & 0xfff);
595 lADCData2[index+2] = lADCDataGEO << 27 | lADCDataChannel << 17 | 0x1 << 16 |
596 lADCDataOvFlw2[index+2] << 12 | (lADCDataValue2[index+2] & 0xfff);
597 }
598 else{ // *** Out-of-time signals
599 lADCDataValue4[index] = digit.GetADCValue(0);
600 if(lADCDataValue4[index] > 2047) lADCDataOvFlw4[index] = 1;
601 lADCDataValue4[index+2] = digit.GetADCValue(1);
602 if(lADCDataValue4[index+2] > 2047) lADCDataOvFlw4[index+2] = 1;
d79f8d50 603 //
83347831 604 lADCData4[index] = lADCDataGEO << 27 | lADCDataChannel << 17 |
605 lADCDataOvFlw4[index] << 12 | (lADCDataValue4[index] & 0xfff);
606 lADCData4[index+2] = lADCDataGEO << 27 | lADCDataChannel << 17 | 0x1 << 16 |
607 lADCDataOvFlw4[index+2] << 12 | (lADCDataValue4[index+2] & 0xfff);
608 }
609
6de91202 610 }
83347831 611 if((index<0) || (index>23)) {
6de91202 612 Error("Digits2Raw", "sector[0] = %d, sector[1] = %d",
613 digit.GetSector(0), digit.GetSector(1));
614 continue;
1450a7cd 615 }
1450a7cd 616
1450a7cd 617
1450a7cd 618 }
83347831 619 //
620 /*
58e12fee 621 for(Int_t i=0;i<knADCData1;i++) printf("\t ADCData1[%d] = %x\n",i,lADCData1[i]);
622 for(Int_t i=0;i<knADCData2;i++) printf("\t ADCData2[%d] = %x\n",i,lADCData2[i]);
623 for(Int_t i=0;i<knADCData1;i++) printf("\t ADCData3[%d] = %x\n",i,lADCData3[i]);
624 for(Int_t i=0;i<knADCData2;i++) printf("\t ADCData4[%d] = %x\n",i,lADCData4[i]);
c7426372 625 */
7f73eb6b 626
6de91202 627 // End of Block
232b622f 628 UInt_t lADCEndBlockGEO = lADCHeaderGEO;
629 UInt_t lADCEndBlockEvCount = gAlice->GetEventNrInRun();
83347831 630 //
232b622f 631 lADCEndBlock = lADCEndBlockGEO << 27 | 0x1 << 26 | lADCEndBlockEvCount;
256c2b16 632 //printf("\t AliZDC::Digits2Raw -> ADCEndBlock = %d\n",lADCEndBlock);
6de91202 633
634
635 // open the output file
636 char fileName[30];
362c9d61 637 strcpy(fileName,AliDAQ::DdlFileName("ZDC",0));
08f92f14 638
639 AliFstream* file = new AliFstream(fileName);
6de91202 640
641 // write the DDL data header
f7ee745b 642 AliRawDataHeaderSim header;
d79f8d50 643 header.fSize = sizeof(header) +
644 sizeof(lADCHeader1) + sizeof(lADCData1) + sizeof(lADCEndBlock) +
645 sizeof(lADCHeader2) + sizeof(lADCData2) + sizeof(lADCEndBlock) +
83347831 646 sizeof(lADCHeader1) + sizeof(lADCData3) + sizeof(lADCEndBlock) +
647 sizeof(lADCHeader2) + sizeof(lADCData4) + sizeof(lADCEndBlock);
648 //
abf60186 649 /*printf("sizeof header = %d, ADCHeader1 = %d, ADCData1 = %d, ADCEndBlock = %d\n",
650 sizeof(header),sizeof(lADCHeader1),sizeof(lADCData1),sizeof(lADCEndBlock));
651 printf("sizeof header = %d, ADCHeader2 = %d, ADCData2 = %d, ADCEndBlock = %d\n",
83347831 652 sizeof(header),sizeof(lADCHeader2),sizeof(lADCData2),sizeof(lADCEndBlock));
653 */
654 //
6de91202 655 header.SetAttribute(0); // valid data
08f92f14 656 file->WriteBuffer((char*)(&header), sizeof(header));
6de91202 657
658 // write the raw data and close the file
08f92f14 659 file->WriteBuffer((char*) &lADCHeader1, sizeof (lADCHeader1));
660 file->WriteBuffer((char*)(lADCData1), sizeof(lADCData1));
661 file->WriteBuffer((char*) &lADCEndBlock, sizeof(lADCEndBlock));
662 file->WriteBuffer((char*) &lADCHeader2, sizeof (lADCHeader2));
663 file->WriteBuffer((char*)(lADCData2), sizeof(lADCData2));
664 file->WriteBuffer((char*) &lADCEndBlock, sizeof(lADCEndBlock));
83347831 665 file->WriteBuffer((char*) &lADCHeader1, sizeof (lADCHeader1));
08f92f14 666 file->WriteBuffer((char*)(lADCData3), sizeof(lADCData3));
667 file->WriteBuffer((char*) &lADCEndBlock, sizeof(lADCEndBlock));
83347831 668 file->WriteBuffer((char*) &lADCHeader2, sizeof (lADCHeader2));
08f92f14 669 file->WriteBuffer((char*)(lADCData4), sizeof(lADCData4));
670 file->WriteBuffer((char*) &lADCEndBlock, sizeof(lADCEndBlock));
671 delete file;
6de91202 672
673 // unload the digits
674 fLoader->UnloadDigits();
359cdddc 675}
676
90001c80 677//_____________________________________________________________________________
678Bool_t AliZDC::Raw2SDigits(AliRawReader* rawReader)
679{
680 // Convert ZDC raw data to Sdigits
681
36f43fdf 682 AliLoader* loader = (gAlice->GetRunLoader())->GetLoader("ZDCLoader");
683 if(!loader) {
684 AliError("no ZDC loader found");
685 return kFALSE;
686 }
687
688// // Event loop
689 Int_t iEvent = 0;
90001c80 690 while(rawReader->NextEvent()){
36f43fdf 691 (gAlice->GetRunLoader())->GetEvent(iEvent++);
90001c80 692 // Create the output digit tree
36f43fdf 693 TTree* treeS = loader->TreeS();
694 if(!treeS){
695 loader->MakeTree("S");
696 treeS = loader->TreeS();
90001c80 697 }
698 //
699 AliZDCSDigit sdigit;
700 AliZDCSDigit* psdigit = &sdigit;
701 const Int_t kBufferSize = 4000;
702 treeS->Branch("ZDC", "AliZDCSDigit", &psdigit, kBufferSize);
703 //
704 AliZDCRawStream rawStream(rawReader);
6310fd85 705 Int_t sector[2], resADC, rawADC, corrADC, nPheVal;
90001c80 706 Int_t jcount = 0;
707 while(rawStream.Next()){
708 if(rawStream.IsADCDataWord()){
83347831 709 //For the moment only in-time SDigits are foreseen (1st 48 raw values)
710 if(jcount < 48){
90001c80 711 for(Int_t j=0; j<2; j++) sector[j] = rawStream.GetSector(j);
6310fd85 712 rawADC = rawStream.GetADCValue();
713 resADC = rawStream.GetADCGain();
36f43fdf 714 //printf("\t RAw2SDigits raw%d -> RawADC[%d, %d, %d] read\n",
6310fd85 715 // jcount, sector[0], sector[1], rawADC);
90001c80 716 //
6310fd85 717 corrADC = rawADC - Pedestal(sector[0], sector[1], resADC);
718 if(corrADC<0) corrADC=0;
719 nPheVal = ADCch2Phe(sector[0], sector[1], corrADC, resADC);
36f43fdf 720 //
721 //printf("\t \t -> SDigit[%d, %d, %d] created\n",
722 // sector[0], sector[1], nPheVal);
723 //
90001c80 724 new(psdigit) AliZDCSDigit(sector, (Float_t) nPheVal);
725 treeS->Fill();
36f43fdf 726 jcount++;
90001c80 727 }
90001c80 728 }//IsADCDataWord
729 }//rawStream.Next
730 // write the output tree
731 fLoader->WriteSDigits("OVERWRITE");
732 fLoader->UnloadSDigits();
733 }//Event loop
734
735 return kTRUE;
736}
737
738//_____________________________________________________________________________
739Int_t AliZDC::Pedestal(Int_t Det, Int_t Quad, Int_t Res) const
740{
741 // Returns a pedestal for detector det, PM quad, channel with res.
742 //
36f43fdf 743 // Getting calibration object for ZDC set
744 AliCDBManager *man = AliCDBManager::Instance();
84dda325 745 AliCDBEntry *entry = man->Get("ZDC/Calib/Pedestals");
6024ec85 746 AliZDCPedestals *calibPed = (AliZDCPedestals*) entry->GetObject();
36f43fdf 747 //
6024ec85 748 if(!calibPed){
36f43fdf 749 printf("\t No calibration object found for ZDC!");
750 return -1;
751 }
752 //
c35ed519 753 Int_t index=0, kNch=24;
754 if(Quad!=5){
755 if(Det==1) index = Quad+kNch*Res; // ZN1
756 else if(Det==2) index = Quad+5+kNch*Res; // ZP1
757 else if(Det==3) index = Quad+9+kNch*Res; // ZEM
758 else if(Det==4) index = Quad+12+kNch*Res; // ZN2
759 else if(Det==5) index = Quad+17+kNch*Res; // ZP2
760 }
761 else index = (Det-1)/3+22+kNch*Res; // Reference PMs
36f43fdf 762 //
763 //
c35ed519 764 Float_t meanPed = calibPed->GetMeanPed(index);
765 Float_t pedWidth = calibPed->GetMeanPedWidth(index);
766 Float_t pedValue = gRandom->Gaus(meanPed,pedWidth);
90001c80 767 //
6310fd85 768 //printf("\t AliZDC::Pedestal - det(%d, %d) - Ped[%d] = %d\n",Det, Quad, index,(Int_t) pedValue); // Chiara debugging!
36f43fdf 769
90001c80 770
771
6310fd85 772 return (Int_t) pedValue;
90001c80 773}
774
775
776//_____________________________________________________________________________
36f43fdf 777Int_t AliZDC::ADCch2Phe(Int_t Det, Int_t Quad, Int_t ADCVal, Int_t Res) const
90001c80 778{
779 // Evaluation of the no. of phe produced
6310fd85 780 Float_t pmGain[6][5];
781 Float_t resADC[2];
90001c80 782 for(Int_t j = 0; j < 5; j++){
6310fd85 783 pmGain[0][j] = 50000.;
784 pmGain[1][j] = 100000.;
785 pmGain[2][j] = 100000.;
786 pmGain[3][j] = 50000.;
787 pmGain[4][j] = 100000.;
788 pmGain[5][j] = 100000.;
90001c80 789 }
790 // ADC Caen V965
6310fd85 791 resADC[0] = 0.0000008; // ADC Resolution high gain: 200 fC/adcCh
792 resADC[1] = 0.0000064; // ADC Resolution low gain: 25 fC/adcCh
90001c80 793 //
6310fd85 794 Int_t nPhe = (Int_t) (ADCVal * pmGain[Det-1][Quad] * resADC[Res]);
36f43fdf 795 //
796 //printf("\t AliZDC::ADCch2Phe -> det(%d, %d) - ADC %d phe %d\n",Det,Quad,ADCVal,nPhe);
90001c80 797
798 return nPhe;
799}
800
b81c9821 801//______________________________________________________________________
802void AliZDC::SetTreeAddress(){
90001c80 803
b81c9821 804 // Set branch address for the Trees.
90001c80 805 if(fLoader->TreeH() && (fHits == 0x0))
b81c9821 806 fHits = new TClonesArray("AliZDCHit",1000);
807
b81c9821 808 AliDetector::SetTreeAddress();
809}