f6019cda |
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 | |
16 | /* $Id$ */ |
17 | |
18 | //_________________________________________________________________________ |
fa42b1f3 |
19 | //-- |
20 | //-- Yves Schutz (SUBATECH) |
f6019cda |
21 | // Reconstruction class. Redesigned from the old AliReconstructionner class and |
22 | // derived from STEER/AliReconstructor. |
23 | // |
85c25c2e |
24 | //-- Aleksei Pavlinov : added staf for EMCAL jet trigger 9Apr 25, 2008) |
25 | // : fgDigitsArr should read just once at event |
26 | |
f6019cda |
27 | // --- ROOT system --- |
85c25c2e |
28 | #include <TList.h> |
29 | #include <TClonesArray.h> |
60d8ad94 |
30 | #include <TH2.h> |
0c5b726e |
31 | #include "TGeoManager.h" |
32 | #include "TGeoMatrix.h" |
f6019cda |
33 | |
34 | // --- Standard library --- |
35 | |
36 | // --- AliRoot header files --- |
f6019cda |
37 | #include "AliEMCALReconstructor.h" |
5dee926e |
38 | |
aaa3cb7c |
39 | #include "AliCodeTimer.h" |
af885e0f |
40 | #include "AliESDEvent.h" |
89ffc0b0 |
41 | #include "AliESDCaloCluster.h" |
0e7c6655 |
42 | #include "AliESDCaloCells.h" |
6a0cf740 |
43 | #include "AliESDtrack.h" |
5dee926e |
44 | #include "AliEMCALLoader.h" |
98e9578e |
45 | #include "AliEMCALRawUtils.h" |
0e7c6655 |
46 | #include "AliEMCALDigit.h" |
f6019cda |
47 | #include "AliEMCALClusterizerv1.h" |
5dee926e |
48 | #include "AliEMCALRecPoint.h" |
dc293ae9 |
49 | #include "AliEMCALPID.h" |
0964c2e9 |
50 | #include "AliEMCALTrigger.h" |
1d59832c |
51 | #include "AliRawReader.h" |
fa42b1f3 |
52 | #include "AliCDBEntry.h" |
53 | #include "AliCDBManager.h" |
65bdc82f |
54 | #include "AliEMCALGeometry.h" |
ac8ae9fe |
55 | #include "AliEMCAL.h" |
85c25c2e |
56 | #include "AliESDVZERO.h" |
0c5b726e |
57 | #include "AliCDBManager.h" |
72c58de0 |
58 | #include "AliRunLoader.h" |
59 | #include "AliRun.h" |
916f1e76 |
60 | #include "AliEMCALTriggerData.h" |
61 | #include "AliEMCALTriggerElectronics.h" |
fb97fc0f |
62 | //#include "AliVZEROLoader.h" |
1d59832c |
63 | |
85c25c2e |
64 | ClassImp(AliEMCALReconstructor) |
f6019cda |
65 | |
ba6de5ea |
66 | const AliEMCALRecParam* AliEMCALReconstructor::fgkRecParam = 0; // EMCAL rec. parameters |
65bdc82f |
67 | AliEMCALRawUtils* AliEMCALReconstructor::fgRawUtils = 0; // EMCAL raw utilities class |
9517d886 |
68 | AliEMCALClusterizer* AliEMCALReconstructor::fgClusterizer = 0; // EMCAL clusterizer class |
85c25c2e |
69 | TClonesArray* AliEMCALReconstructor::fgDigitsArr = 0; // shoud read just once at event |
916f1e76 |
70 | AliEMCALTriggerElectronics* AliEMCALReconstructor::fgTriggerProcessor = 0x0; |
f6019cda |
71 | //____________________________________________________________________________ |
18a21c7c |
72 | AliEMCALReconstructor::AliEMCALReconstructor() |
40164976 |
73 | : fDebug(kFALSE), fList(0), fGeom(0),fCalibData(0),fPedestalData(0) |
f6019cda |
74 | { |
75 | // ctor |
65bdc82f |
76 | |
77 | fgRawUtils = new AliEMCALRawUtils; |
72c58de0 |
78 | |
79 | //To make sure we match with the geometry in a simulation file, |
80 | //let's try to get it first. If not, take the default geometry |
33c3c91a |
81 | AliRunLoader *rl = AliRunLoader::Instance(); |
72c58de0 |
82 | if (rl->GetAliRun() && rl->GetAliRun()->GetDetector("EMCAL")) { |
83 | fGeom = dynamic_cast<AliEMCAL*>(rl->GetAliRun()->GetDetector("EMCAL"))->GetGeometry(); |
84 | } else { |
85 | AliInfo(Form("Using default geometry in reconstruction")); |
937d0661 |
86 | fGeom = AliEMCALGeometry::GetInstance(AliEMCALGeometry::GetDefaultGeometryName()); |
65bdc82f |
87 | } |
0e7c6655 |
88 | |
0c5b726e |
89 | //Get calibration parameters |
90 | if(!fCalibData) |
91 | { |
92 | AliCDBEntry *entry = (AliCDBEntry*) |
93 | AliCDBManager::Instance()->Get("EMCAL/Calib/Data"); |
94 | if (entry) fCalibData = (AliEMCALCalibData*) entry->GetObject(); |
95 | } |
96 | |
97 | if(!fCalibData) |
98 | AliFatal("Calibration parameters not found in CDB!"); |
99 | |
40164976 |
100 | //Get calibration parameters |
101 | if(!fPedestalData) |
102 | { |
103 | AliCDBEntry *entry = (AliCDBEntry*) |
104 | AliCDBManager::Instance()->Get("EMCAL/Calib/Pedestals"); |
105 | if (entry) fPedestalData = (AliCaloCalibPedestal*) entry->GetObject(); |
106 | } |
107 | |
108 | if(!fPedestalData) |
109 | AliFatal("Dead map not found in CDB!"); |
110 | |
111 | |
0c5b726e |
112 | //Init the clusterizer with geometry and calibration pointers, avoid doing it twice. |
40164976 |
113 | fgClusterizer = new AliEMCALClusterizerv1(fGeom, fCalibData,fPedestalData); |
0c5b726e |
114 | |
72c58de0 |
115 | if(!fGeom) AliFatal(Form("Could not get geometry!")); |
116 | |
916f1e76 |
117 | fgTriggerProcessor = new AliEMCALTriggerElectronics(); |
f6019cda |
118 | } |
119 | |
0a4cb131 |
120 | //____________________________________________________________________________ |
f6019cda |
121 | AliEMCALReconstructor::~AliEMCALReconstructor() |
122 | { |
123 | // dtor |
65bdc82f |
124 | delete fGeom; |
5e3106bc |
125 | delete fgRawUtils; |
126 | delete fgClusterizer; |
916f1e76 |
127 | delete fgTriggerProcessor; |
128 | |
aaa3cb7c |
129 | AliCodeTimer::Instance()->Print(); |
f6019cda |
130 | } |
131 | |
40871053 |
132 | // //____________________________________________________________________________ |
133 | // void AliEMCALReconstructor::Init() |
134 | // { |
135 | // // Trigger hists - Oct 24, 2007 |
136 | // fList = AliEMCALHistoUtilities::GetTriggersListOfHists(kTRUE); |
137 | // } |
85c25c2e |
138 | |
139 | //____________________________________________________________________________ |
c47157cd |
140 | void AliEMCALReconstructor::Reconstruct(TTree* digitsTree, TTree* clustersTree) const |
f6019cda |
141 | { |
142 | // method called by AliReconstruction; |
143 | // Only the clusterization is performed,; the rest of the reconstruction is done in FillESD because the track |
144 | // segment maker needs access to the AliESD object to retrieve the tracks reconstructed by |
145 | // the global tracking. |
c47157cd |
146 | // Works on the current event. |
fa42b1f3 |
147 | |
1a429a6b |
148 | AliCodeTimerAuto("",0) |
aaa3cb7c |
149 | |
85c25c2e |
150 | ReadDigitsArrayFromTree(digitsTree); |
0832a2bf |
151 | fgClusterizer->InitParameters(); |
4601e3a7 |
152 | fgClusterizer->SetOutput(clustersTree); |
916f1e76 |
153 | |
154 | AliEMCALTriggerData* trgData = new AliEMCALTriggerData(); |
155 | |
156 | Int_t bufferSize = 32000; |
157 | |
158 | if (TBranch* triggerBranch = clustersTree->GetBranch("EMTRG")) |
159 | triggerBranch->SetAddress(&trgData); |
160 | else |
161 | clustersTree->Branch("EMTRG","AliEMCALTriggerData",&trgData,bufferSize); |
162 | |
fb97fc0f |
163 | // AliVZEROLoader* vzeroLoader = dynamic_cast<AliVZEROLoader*>(AliRunLoader::Instance()->GetDetectorLoader("VZERO")); |
164 | // |
165 | // TTree* treeV0 = 0x0; |
166 | // |
167 | // if (vzeroLoader) |
168 | // { |
169 | // vzeroLoader->LoadDigits("READ"); |
170 | // treeV0 = vzeroLoader->TreeD(); |
171 | // } |
172 | // |
916f1e76 |
173 | TClonesArray *trgDigits = new TClonesArray("AliEMCALRawDigit",1000); |
174 | TBranch *branchdig = digitsTree->GetBranch("EMTRG"); |
175 | if (!branchdig) |
176 | { |
177 | AliError("Can't get the branch with the EMCAL trigger digits !"); |
178 | return; |
179 | } |
180 | |
181 | branchdig->SetAddress(&trgDigits); |
182 | branchdig->GetEntry(0); |
183 | |
fb97fc0f |
184 | fgTriggerProcessor->Digits2Trigger(trgDigits, NULL, trgData); |
916f1e76 |
185 | |
186 | trgDigits->Delete(); |
0341167b |
187 | delete trgDigits; |
188 | |
85c25c2e |
189 | if(fgDigitsArr && fgDigitsArr->GetEntries()) { |
190 | |
9517d886 |
191 | fgClusterizer->SetInput(digitsTree); |
9517d886 |
192 | |
85c25c2e |
193 | if(Debug()) |
9517d886 |
194 | fgClusterizer->Digits2Clusters("deb all") ; |
85c25c2e |
195 | else |
9517d886 |
196 | fgClusterizer->Digits2Clusters(""); |
197 | |
198 | fgClusterizer->Clear(); |
85c25c2e |
199 | |
200 | } |
9517d886 |
201 | |
fb97fc0f |
202 | // if (vzeroLoader) |
203 | // { |
204 | // vzeroLoader->UnloadDigits(); |
205 | // } |
206 | // |
916f1e76 |
207 | clustersTree->Fill(); |
208 | |
209 | delete trgData; |
f6019cda |
210 | } |
211 | |
212 | //____________________________________________________________________________ |
c47157cd |
213 | void AliEMCALReconstructor::ConvertDigits(AliRawReader* rawReader, TTree* digitsTree) const |
98e9578e |
214 | |
a68156e6 |
215 | { |
c47157cd |
216 | // Conversion from raw data to |
217 | // EMCAL digits. |
218 | // Works on a single-event basis |
85c60a8e |
219 | |
98e9578e |
220 | rawReader->Reset() ; |
98e9578e |
221 | |
3e5fa09c |
222 | TClonesArray *digitsArr = new TClonesArray("AliEMCALDigit",200); |
916f1e76 |
223 | TClonesArray *digitsTrg = new TClonesArray("AliEMCALRawDigit", 200); |
224 | |
c47157cd |
225 | Int_t bufsize = 32000; |
226 | digitsTree->Branch("EMCAL", &digitsArr, bufsize); |
916f1e76 |
227 | digitsTree->Branch("EMTRG", &digitsTrg, bufsize); |
98e9578e |
228 | |
65bdc82f |
229 | //must be done here because, in constructor, option is not yet known |
230 | fgRawUtils->SetOption(GetOption()); |
b4133f05 |
231 | |
0832a2bf |
232 | fgRawUtils->SetRawFormatHighLowGainFactor(GetRecParam()->GetHighLowGainFactor()); |
233 | fgRawUtils->SetRawFormatOrder(GetRecParam()->GetOrderParameter()); |
234 | fgRawUtils->SetRawFormatTau(GetRecParam()->GetTau()); |
235 | fgRawUtils->SetNoiseThreshold(GetRecParam()->GetNoiseThreshold()); |
236 | fgRawUtils->SetNPedSamples(GetRecParam()->GetNPedSamples()); |
9f467289 |
237 | fgRawUtils->SetRemoveBadChannels(GetRecParam()->GetRemoveBadChannels()); |
238 | fgRawUtils->SetFittingAlgorithm(GetRecParam()->GetFittingAlgorithm()); |
46f1d25f |
239 | fgRawUtils->SetFALTROUsage(GetRecParam()->UseFALTRO()); |
240 | |
916f1e76 |
241 | fgRawUtils->Raw2Digits(rawReader,digitsArr,fPedestalData,digitsTrg); |
c615db53 |
242 | |
243 | digitsTree->Fill(); |
89d338a6 |
244 | digitsArr->Delete(); |
916f1e76 |
245 | digitsTrg->Delete(); |
89d338a6 |
246 | delete digitsArr; |
916f1e76 |
247 | delete digitsTrg; |
c615db53 |
248 | |
a68156e6 |
249 | } |
250 | |
85c25c2e |
251 | |
a68156e6 |
252 | //____________________________________________________________________________ |
0e7c6655 |
253 | void AliEMCALReconstructor::FillESD(TTree* digitsTree, TTree* clustersTree, |
c47157cd |
254 | AliESDEvent* esd) const |
f6019cda |
255 | { |
98e9578e |
256 | // Called by AliReconstruct after Reconstruct() and global tracking and vertexing |
85c25c2e |
257 | // and V0 |
c47157cd |
258 | // Works on the current event |
85c25c2e |
259 | // printf(" ## AliEMCALReconstructor::FillESD() is started ### \n "); |
260 | //return; |
92da3372 |
261 | |
6a0cf740 |
262 | //###################################################### |
0964c2e9 |
263 | //#########Calculate trigger and set trigger info########### |
6a0cf740 |
264 | //###################################################### |
46f1d25f |
265 | // Obsolete, to be changed with new trigger emulator when consensus is achieved about what is stored in ESDs. |
85c25c2e |
266 | AliEMCALTrigger tr; |
267 | // tr.SetPatchSize(1); // create 4x4 patches |
268 | tr.SetSimulation(kFALSE); // Reconstruction mode |
269 | tr.SetDigitsList(fgDigitsArr); |
270 | // Get VZERO total multiplicity for jet trigger simulation |
271 | // The simulation of jey trigger will be incorrect if no VZERO data |
272 | // at ESD |
273 | AliESDVZERO* vZero = esd->GetVZEROData(); |
274 | if(vZero) { |
275 | tr.SetVZER0Multiplicity(vZero->GetMTotV0A() + vZero->GetMTotV0C()); |
276 | } |
277 | // |
0964c2e9 |
278 | tr.Trigger(); |
85c25c2e |
279 | |
0964c2e9 |
280 | Float_t maxAmp2x2 = tr.Get2x2MaxAmplitude(); |
281 | Float_t maxAmpnxn = tr.GetnxnMaxAmplitude(); |
282 | Float_t ampOutOfPatch2x2 = tr.Get2x2AmpOutOfPatch() ; |
283 | Float_t ampOutOfPatchnxn = tr.GetnxnAmpOutOfPatch() ; |
284 | |
0964c2e9 |
285 | Int_t iSM2x2 = tr.Get2x2SuperModule(); |
286 | Int_t iSMnxn = tr.GetnxnSuperModule(); |
85c25c2e |
287 | Int_t iModulePhi2x2 = tr.Get2x2ModulePhi(); |
288 | Int_t iModulePhinxn = tr.GetnxnModulePhi(); |
289 | Int_t iModuleEta2x2 = tr.Get2x2ModuleEta(); |
290 | Int_t iModuleEtanxn = tr.GetnxnModuleEta(); |
0964c2e9 |
291 | |
85c25c2e |
292 | AliDebug(2, Form("Trigger 2x2 max amp %f, out amp %f, SM %d, iphi %d ieta %d", maxAmp2x2, ampOutOfPatch2x2, iSM2x2,iModulePhi2x2, iModuleEta2x2)); |
293 | AliDebug(2, Form("Trigger 4x4 max amp %f , out amp %f, SM %d, iphi %d, ieta %d", maxAmpnxn, ampOutOfPatchnxn, iSMnxn,iModulePhinxn, iModuleEtanxn)); |
0964c2e9 |
294 | |
295 | TVector3 pos2x2(-1,-1,-1); |
296 | TVector3 posnxn(-1,-1,-1); |
297 | |
85c25c2e |
298 | Int_t iAbsId2x2 = fGeom->GetAbsCellIdFromCellIndexes( iSM2x2, iModulePhi2x2, iModuleEta2x2) ; // should be changed to Module |
299 | Int_t iAbsIdnxn = fGeom->GetAbsCellIdFromCellIndexes( iSMnxn, iModulePhinxn, iModuleEtanxn) ; |
65bdc82f |
300 | fGeom->GetGlobal(iAbsId2x2, pos2x2); |
301 | fGeom->GetGlobal(iAbsIdnxn, posnxn); |
85c25c2e |
302 | //printf(" iAbsId2x2 %i iAbsIdnxn %i \n", iAbsId2x2, iAbsIdnxn); |
0964c2e9 |
303 | |
304 | TArrayF triggerPosition(6); |
305 | triggerPosition[0] = pos2x2(0) ; |
306 | triggerPosition[1] = pos2x2(1) ; |
307 | triggerPosition[2] = pos2x2(2) ; |
308 | triggerPosition[3] = posnxn(0) ; |
309 | triggerPosition[4] = posnxn(1) ; |
85c25c2e |
310 | triggerPosition[5] = posnxn(2) ; |
311 | //printf(" triggerPosition "); |
312 | //for(int i=0; i<6; i++) printf(" %i %f : ", i, triggerPosition[i]); |
0964c2e9 |
313 | |
314 | TArrayF triggerAmplitudes(4); |
315 | triggerAmplitudes[0] = maxAmp2x2 ; |
316 | triggerAmplitudes[1] = ampOutOfPatch2x2 ; |
317 | triggerAmplitudes[2] = maxAmpnxn ; |
318 | triggerAmplitudes[3] = ampOutOfPatchnxn ; |
85c25c2e |
319 | //printf("\n triggerAmplitudes "); |
320 | //for(int i=0; i<4; i++) printf(" %i %f : ", i, triggerAmplitudes[i]); |
321 | //printf("\n"); |
85d4cbde |
322 | //tr.Print(""); |
60d8ad94 |
323 | // |
324 | // Trigger jet staff |
325 | // |
326 | if(tr.GetNJetThreshold()>0) { |
327 | // Jet phi/eta |
328 | Int_t n0 = triggerPosition.GetSize(); |
329 | const TH2F *hpatch = tr.GetJetMatrixE(); |
330 | triggerPosition.Set(n0 + 2); |
331 | for(Int_t i=0; i<2; i++) triggerPosition[n0+i] = hpatch->GetMean(i+1); |
332 | // Add jet ampitudes |
333 | n0 = triggerAmplitudes.GetSize(); |
334 | triggerAmplitudes.Set(n0 + tr.GetNJetThreshold()); |
335 | Double_t *ampJet = tr.GetL1JetThresholds(); |
336 | for(Int_t i=0; i<tr.GetNJetThreshold(); i++){ |
337 | triggerAmplitudes[n0 + i] = Float_t(ampJet[i]); |
338 | } |
339 | } |
0964c2e9 |
340 | esd->AddEMCALTriggerPosition(triggerPosition); |
341 | esd->AddEMCALTriggerAmplitudes(triggerAmplitudes); |
85c25c2e |
342 | // Fill trigger hists |
40871053 |
343 | // AliEMCALHistoUtilities::FillTriggersListOfHists(fList,&triggerPosition,&triggerAmplitudes); |
aaa3cb7c |
344 | |
0e7c6655 |
345 | //######################################## |
346 | //##############Fill CaloCells############### |
347 | //######################################## |
aaa3cb7c |
348 | |
0e7c6655 |
349 | TClonesArray *digits = new TClonesArray("AliEMCALDigit",1000); |
350 | TBranch *branchdig = digitsTree->GetBranch("EMCAL"); |
351 | if (!branchdig) { |
0c5b726e |
352 | AliError("can't get the branch with the EMCAL digits !"); |
0e7c6655 |
353 | return; |
354 | } |
355 | branchdig->SetAddress(&digits); |
356 | digitsTree->GetEvent(0); |
357 | Int_t nDigits = digits->GetEntries(), idignew = 0 ; |
358 | AliDebug(1,Form("%d digits",nDigits)); |
359 | |
360 | AliESDCaloCells &emcCells = *(esd->GetEMCALCells()); |
361 | emcCells.CreateContainer(nDigits); |
362 | emcCells.SetType(AliESDCaloCells::kEMCALCell); |
0c5b726e |
363 | Float_t energy = 0; |
0e7c6655 |
364 | for (Int_t idig = 0 ; idig < nDigits ; idig++) { |
365 | const AliEMCALDigit * dig = (const AliEMCALDigit*)digits->At(idig); |
829ba234 |
366 | if(dig->GetAmplitude() > 0 ){ |
367 | energy = (static_cast<AliEMCALClusterizerv1*> (fgClusterizer))->Calibrate(dig->GetAmplitude(),dig->GetTime(),dig->GetId()); //TimeR or Time? |
40164976 |
368 | if(energy > 0){ //Digits tagged as bad (dead, hot, not alive) are set to 0 in calibrate, remove them |
369 | emcCells.SetCell(idignew,dig->GetId(),energy, dig->GetTime()); |
370 | idignew++; |
371 | } |
0e7c6655 |
372 | } |
373 | } |
374 | emcCells.SetNumberOfCells(idignew); |
375 | emcCells.Sort(); |
376 | |
377 | //------------------------------------------------------------ |
378 | //-----------------CLUSTERS----------------------------- |
379 | //------------------------------------------------------------ |
9dce5a21 |
380 | clustersTree->SetBranchStatus("*",0); //disable all branches |
381 | clustersTree->SetBranchStatus("EMCALECARP",1); //Enable only the branch we need |
382 | |
0e7c6655 |
383 | TObjArray *clusters = new TObjArray(100); |
384 | TBranch *branch = clustersTree->GetBranch("EMCALECARP"); |
385 | branch->SetAddress(&clusters); |
9dce5a21 |
386 | branch->GetEntry(0); |
387 | //clustersTree->GetEvent(0); |
0e7c6655 |
388 | |
389 | Int_t nClusters = clusters->GetEntries(), nClustersNew=0; |
390 | AliDebug(1,Form("%d clusters",nClusters)); |
85c25c2e |
391 | |
6a0cf740 |
392 | //###################################################### |
393 | //#######################TRACK MATCHING############### |
394 | //###################################################### |
395 | //Fill list of integers, each one is index of track to which the cluster belongs. |
396 | |
397 | // step 1 - initialize array of matched track indexes |
398 | Int_t *matchedTrack = new Int_t[nClusters]; |
399 | for (Int_t iclus = 0; iclus < nClusters; iclus++) |
400 | matchedTrack[iclus] = -1; // neg. index --> no matched track |
401 | |
402 | // step 2, change the flag for all matched clusters found in tracks |
403 | Int_t iemcalMatch = -1; |
404 | Int_t endtpc = esd->GetNumberOfTracks(); |
405 | for (Int_t itrack = 0; itrack < endtpc; itrack++) { |
406 | AliESDtrack * track = esd->GetTrack(itrack) ; // retrieve track |
407 | iemcalMatch = track->GetEMCALcluster(); |
65f4a419 |
408 | if(iemcalMatch >= 0) matchedTrack[iemcalMatch] = itrack; |
6a0cf740 |
409 | } |
85c25c2e |
410 | |
6a0cf740 |
411 | //######################################## |
85c25c2e |
412 | //##############Fill CaloClusters############# |
6a0cf740 |
413 | //######################################## |
5dee926e |
414 | for (Int_t iClust = 0 ; iClust < nClusters ; iClust++) { |
c47157cd |
415 | const AliEMCALRecPoint * clust = (const AliEMCALRecPoint*)clusters->At(iClust); |
8ada0ffe |
416 | //if(clust->GetClusterType()== AliESDCaloCluster::kEMCALClusterv1) nRP++; else nPC++; |
85c60a8e |
417 | if (Debug()) clust->Print(); |
a7a5421e |
418 | // Get information from EMCAL reconstruction points |
85c60a8e |
419 | Float_t xyz[3]; |
5dee926e |
420 | TVector3 gpos; |
421 | clust->GetGlobalPosition(gpos); |
35397e76 |
422 | for (Int_t ixyz=0; ixyz<3; ixyz++) |
5dee926e |
423 | xyz[ixyz] = gpos[ixyz]; |
85c25c2e |
424 | Float_t elipAxis[2]; |
425 | clust->GetElipsAxis(elipAxis); |
35397e76 |
426 | //Create digits lists |
427 | Int_t cellMult = clust->GetMultiplicity(); |
428 | //TArrayS digiList(digitMult); |
429 | Float_t *amplFloat = clust->GetEnergiesList(); |
430 | Int_t *digitInts = clust->GetAbsId(); |
431 | TArrayS absIdList(cellMult); |
eb972628 |
432 | TArrayD fracList(cellMult); |
35397e76 |
433 | |
434 | Int_t newCellMult = 0; |
435 | for (Int_t iCell=0; iCell<cellMult; iCell++) { |
436 | if (amplFloat[iCell] > 0) { |
437 | absIdList[newCellMult] = (UShort_t)(digitInts[iCell]); |
eb972628 |
438 | //Uncomment when unfolding is done |
439 | //if(emcCells.GetCellAmplitude(digitInts[iCell])>0) |
440 | //fracList[newCellMult] = amplFloat[iCell]/(emcCells.GetCellAmplitude(digitInts[iCell])*calibration);//get cell calibration value |
441 | //else |
442 | fracList[newCellMult] = 0; |
35397e76 |
443 | newCellMult++; |
92da3372 |
444 | } |
92da3372 |
445 | } |
85c25c2e |
446 | |
eb972628 |
447 | absIdList.Set(newCellMult); |
448 | fracList.Set(newCellMult); |
449 | |
35397e76 |
450 | if(newCellMult > 0) { // accept cluster if it has some digit |
451 | nClustersNew++; |
65721814 |
452 | //Primaries |
7592dfc4 |
453 | Int_t parentMult = 0; |
fa42b1f3 |
454 | Int_t *parentList = clust->GetParents(parentMult); |
a7a5421e |
455 | // fills the ESDCaloCluster |
35397e76 |
456 | AliESDCaloCluster * ec = new AliESDCaloCluster() ; |
457 | ec->SetClusterType(AliESDCaloCluster::kEMCALClusterv1); |
7592dfc4 |
458 | ec->SetPosition(xyz); |
459 | ec->SetE(clust->GetEnergy()); |
40164976 |
460 | |
461 | //Distance to the nearest bad crystal |
462 | ec->SetDistanceToBadChannel(clust->GetDistanceToBadTower()); |
463 | |
35397e76 |
464 | ec->SetNCells(newCellMult); |
465 | //Change type of list from short to ushort |
466 | UShort_t *newAbsIdList = new UShort_t[newCellMult]; |
eb972628 |
467 | Double_t *newFracList = new Double_t[newCellMult]; |
35397e76 |
468 | for(Int_t i = 0; i < newCellMult ; i++) { |
469 | newAbsIdList[i]=absIdList[i]; |
eb972628 |
470 | newFracList[i]=fracList[i]; |
35397e76 |
471 | } |
472 | ec->SetCellsAbsId(newAbsIdList); |
eb972628 |
473 | ec->SetCellsAmplitudeFraction(newFracList); |
35397e76 |
474 | ec->SetClusterDisp(clust->GetDispersion()); |
475 | ec->SetClusterChi2(-1); //not yet implemented |
476 | ec->SetM02(elipAxis[0]*elipAxis[0]) ; |
477 | ec->SetM20(elipAxis[1]*elipAxis[1]) ; |
78902954 |
478 | ec->SetTOF(clust->GetTime()) ; //time-of-fligh |
225cd96d |
479 | ec->SetNExMax(clust->GetNExMax()); //number of local maxima |
35397e76 |
480 | TArrayI arrayTrackMatched(1);// Only one track, temporal solution. |
481 | arrayTrackMatched[0]= matchedTrack[iClust]; |
482 | ec->AddTracksMatched(arrayTrackMatched); |
483 | |
484 | TArrayI arrayParents(parentMult,parentList); |
485 | ec->AddLabels(arrayParents); |
486 | |
6a0cf740 |
487 | // add the cluster to the esd object |
eb972628 |
488 | esd->AddCaloCluster(ec); |
a7a5421e |
489 | delete ec; |
85d4cbde |
490 | delete [] newAbsIdList ; |
eb972628 |
491 | delete [] newFracList ; |
35397e76 |
492 | } |
493 | } // cycle on clusters |
85c25c2e |
494 | |
35397e76 |
495 | delete [] matchedTrack; |
85c25c2e |
496 | |
35397e76 |
497 | //Fill ESDCaloCluster with PID weights |
1942834a |
498 | AliEMCALPID *pid = new AliEMCALPID; |
499 | //pid->SetPrintInfo(kTRUE); |
500 | pid->SetReconstructor(kTRUE); |
501 | pid->RunPID(esd); |
502 | delete pid; |
eb972628 |
503 | |
1942834a |
504 | delete digits; |
505 | delete clusters; |
eb972628 |
506 | |
1942834a |
507 | //Store EMCAL misalignment matrixes |
508 | FillMisalMatrixes(esd) ; |
0c5b726e |
509 | |
510 | } |
511 | |
512 | //================================================================================== |
513 | void AliEMCALReconstructor::FillMisalMatrixes(AliESDEvent* esd)const{ |
514 | //Store EMCAL matrixes in ESD Header |
515 | |
516 | //Check, if matrixes was already stored |
cb8a44fb |
517 | for(Int_t sm = 0 ; sm < fGeom->GetNumberOfSuperModules(); sm++){ |
0c5b726e |
518 | if(esd->GetEMCALMatrix(sm)!=0) |
519 | return ; |
520 | } |
521 | |
522 | //Create and store matrixes |
523 | if(!gGeoManager){ |
524 | AliError("Can not store misal. matrixes: no gGeoManager! \n") ; |
525 | return ; |
526 | } |
527 | //Note, that owner of copied marixes will be header |
528 | char path[255] ; |
5e3106bc |
529 | TGeoHMatrix * m = 0x0; |
cb8a44fb |
530 | for(Int_t sm = 0; sm < fGeom->GetNumberOfSuperModules(); sm++){ |
0c5b726e |
531 | sprintf(path,"/ALIC_1/XEN1_1/SMOD_%d",sm+1) ; //In Geometry modules numbered 1,2,.,5 |
532 | if(sm >= 10) sprintf(path,"/ALIC_1/XEN1_1/SM10_%d",sm-10+1) ; |
533 | |
9ddc5deb |
534 | if (gGeoManager->CheckPath(path)){ |
cb8a44fb |
535 | gGeoManager->cd(path); |
0c5b726e |
536 | m = gGeoManager->GetCurrentMatrix() ; |
cb8a44fb |
537 | // printf("================================================= \n"); |
538 | // printf("AliEMCALReconstructor::FixMisalMatrixes(), sm %d, \n",sm); |
539 | // m->Print(""); |
0c5b726e |
540 | esd->SetEMCALMatrix(new TGeoHMatrix(*m),sm) ; |
cb8a44fb |
541 | // printf("================================================= \n"); |
0c5b726e |
542 | } |
543 | else{ |
544 | esd->SetEMCALMatrix(NULL,sm) ; |
545 | } |
546 | } |
f6019cda |
547 | } |
dc293ae9 |
548 | |
0c5b726e |
549 | |
550 | |
9517d886 |
551 | //__________________________________________________________________________ |
85c25c2e |
552 | void AliEMCALReconstructor::ReadDigitsArrayFromTree(TTree *digitsTree) const |
553 | { |
554 | // See AliEMCALClusterizer::SetInput(TTree *digitsTree); |
555 | if(fgDigitsArr) { |
556 | // Clear previous digits |
557 | fgDigitsArr->Delete(); |
558 | delete fgDigitsArr; |
559 | } |
560 | // Read the digits from the input tree |
561 | TBranch *branch = digitsTree->GetBranch("EMCAL"); |
562 | if (!branch) { |
563 | AliError("can't get the branch with the EMCAL digits !"); |
564 | return; |
565 | } |
566 | fgDigitsArr = new TClonesArray("AliEMCALDigit",100); |
567 | branch->SetAddress(&fgDigitsArr); |
568 | branch->GetEntry(0); |
569 | } |
98e9578e |
570 | |
916f1e76 |
571 | |