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HcalDetDiagNoiseMonitor.cc
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7 
8 #include "TFile.h"
9 #include "TTree.h"
10 #include <TVector2.h>
11 #include <TVector3.h>
12 
14 
17 
36 // #include "DataFormats/L1Trigger/interface/L1ParticleMap.h"
41 //#include "DataFormats/L1GlobalTrigger/interface/L1GtLogicParser.h"
55 
56 // this is to retrieve HCAL LogicalMap
58 
59 
60 #include <math.h>
61 
62 using namespace reco;
63 
65 constexpr float adc2fC[128]={-0.5,0.5,1.5,2.5,3.5,4.5,5.5,6.5,7.5,8.5,9.5, 10.5,11.5,12.5,
66  13.5,15.,17.,19.,21.,23.,25.,27.,29.5,32.5,35.5,38.5,42.,46.,50.,54.5,59.5,
67  64.5,59.5,64.5,69.5,74.5,79.5,84.5,89.5,94.5,99.5,104.5,109.5,114.5,119.5,
68  124.5,129.5,137.,147.,157.,167.,177.,187.,197.,209.5,224.5,239.5,254.5,272.,
69  292.,312.,334.5,359.5,384.5,359.5,384.5,409.5,434.5,459.5,484.5,509.5,534.5,
70  559.5,584.5,609.5,634.5,659.5,684.5,709.5,747.,797.,847.,897.,947.,997.,
71  1047.,1109.5,1184.5,1259.5,1334.5,1422.,1522.,1622.,1734.5,1859.5,1984.5,
72  1859.5,1984.5,2109.5,2234.5,2359.5,2484.5,2609.5,2734.5,2859.5,2984.5,
73  3109.5,3234.5,3359.5,3484.5,3609.5,3797.,4047.,4297.,4547.,4797.,5047.,
74  5297.,5609.5,5984.5,6359.5,6734.5,7172.,7672.,8172.,8734.5,9359.5,9984.5};
76 constexpr char const *subdets[11]={"HBM","HBP","HEM","HEP","HO1M","HO0","HO1P","HO2M","HO2P","HFM","HFP"};
77 constexpr char const *HB_RBX[36]={
78 "HBM01","HBM02","HBM03","HBM04","HBM05","HBM06","HBM07","HBM08","HBM09","HBM10","HBM11","HBM12","HBM13","HBM14","HBM15","HBM16","HBM17","HBM18",
79 "HBP01","HBP02","HBP03","HBP04","HBP05","HBP06","HBP07","HBP08","HBP09","HBP10","HBP11","HBP12","HBP13","HBP14","HBP15","HBP16","HBP17","HBP18"};
80 constexpr char const *HE_RBX[36]={
81 "HEM01","HEM02","HEM03","HEM04","HEM05","HEM06","HEM07","HEM08","HEM09","HEM10","HEM11","HEM12","HEM13","HEM14","HEM15","HEM16","HEM17","HEM18",
82 "HEP01","HEP02","HEP03","HEP04","HEP05","HEP06","HEP07","HEP08","HEP09","HEP10","HEP11","HEP12","HEP13","HEP14","HEP15","HEP16","HEP17","HEP18"};
83 constexpr char const *HO_RBX[36]={
84 "HO2M02","HO2M04","HO2M06","HO2M08","HO2M10","HO2M12","HO1M02","HO1M04","HO1M06","HO1M08","HO1M10","HO1M12",
85 "HO001","HO002","HO003","HO004","HO005","HO006","HO007","HO008","HO009","HO010","HO011","HO012",
86 "HO1P02","HO1P04","HO1P06","HO1P08","HO1P10","HO1P12","HO2P02","HO2P04","HO2P06","HO2P08","HO2P10","HO2P12",
87 };
88 
89 
91 public:
93  reset();
94  reset_LS();
95  };
96  void reset(){
97  n_th_hi=n_th_300=n_pix_1=n_pix_8=pix=n_pix=0;
98  }
99  void reset_LS(){
100  n_th_hi_LS=n_th_300_LS=0;
101  }
102  int n_th_hi;
103  int n_th_300;
104  int n_pix_1;
105  int n_pix_8;
106  int pix;
107  int n_pix;
110 };
112 public:
114  reset();
115  }
116  void reset(){
117  n_pix_hi=n_pix_lo=energy=n_zero=0;
118  }
119  int n_pix_hi;
120  int n_pix_lo;
121  int n_zero;
122  float energy;
123 };
124 
126 public:
128  reset();
129  }
130  void reset(){
131  for(int i=0;i<HcalFrontEndId::maxRmIndex;i++) rm[i].reset();
132  }
133  void reset_LS(){
134  for(int i=0;i<HcalFrontEndId::maxRmIndex;i++) rm[i].reset_LS();
135  }
136  int GetRMindex(const std::string& rbx,int rm){
137  if(rbx.substr(0,3)=="HO0"){
138  int sect=atoi(rbx.substr(3,2).c_str());
139  if(sect>12) return -1;
140  if(rm==1 && (sect==2 || sect==3 || sect==6 || sect==7 || sect==10 || sect==11)) return -1;
141  if(rm==4 && (sect==12 || sect==1 || sect==4 || sect==5 || sect==8 || sect==9 )) return -1;
142  }
143  if(rbx.substr(0,3)=="HO1" || rbx.substr(0,3)=="HO2"){
144  int sect=atoi(rbx.substr(4,2).c_str());
145  if(sect>12) return -1;
146  if(sect==1 || sect==3 || sect==5 || sect==7 || sect==9 || sect==11) return -1;
147  }
148  HcalFrontEndId id(rbx,rm,1,1,1,1,1);
149  if(id.rawId()==0) return -1;
150  return id.rmIndex();
151  }
153 };
154 
157  {
158 
159  tok_tb_ = consumes<HcalTBTriggerData>(ps.getParameter<edm::InputTag>("hcalTBTriggerDataTag"));
160 
161  ievt_=0;
162  run_number=-1;
163  NoisyEvents=0;
164  LocalRun=false;
166  FirstOrbit=FirstOrbitLS=0xFFFFFFFF;
168 
169  Online_ = ps.getUntrackedParameter<bool>("online",false);
170  mergeRuns_ = ps.getUntrackedParameter<bool>("mergeRuns",false);
171  enableCleanup_ = ps.getUntrackedParameter<bool>("enableCleanup",false);
172  debug_ = ps.getUntrackedParameter<int>("debug",0);
173  prefixME_ = ps.getUntrackedParameter<std::string>("subSystemFolder","Hcal/");
174  if (prefixME_.substr(prefixME_.size()-1,prefixME_.size())!="/")
175  prefixME_.append("/");
176  subdir_ = ps.getUntrackedParameter<std::string>("TaskFolder","DetDiagNoiseMonitor_Hcal");
177  if (subdir_.size()>0 && subdir_.substr(subdir_.size()-1,subdir_.size())!="/")
178  subdir_.append("/");
179  subdir_=prefixME_+subdir_;
180  AllowedCalibTypes_ = ps.getUntrackedParameter<std::vector<int> > ("AllowedCalibTypes");
181  skipOutOfOrderLS_ = ps.getUntrackedParameter<bool>("skipOutOfOrderLS",false);
182  NLumiBlocks_ = ps.getUntrackedParameter<int>("NLumiBlocks",4000);
183  makeDiagnostics_ = ps.getUntrackedParameter<bool>("makeDiagnostics",false);
184 
185  UseDB = ps.getUntrackedParameter<bool> ("UseDB" , false);
186  OutputFilePath = ps.getUntrackedParameter<std::string>("OutputFilePath", "");
187  HPDthresholdHi = ps.getUntrackedParameter<double>("NoiseThresholdHPDhi",49.0);
188  HPDthresholdLo = ps.getUntrackedParameter<double>("NoiseThresholdHPDlo",10.0);
189  SpikeThreshold = ps.getUntrackedParameter<double>("NoiseSpikeThreshold",0.5);
190  Overwrite = ps.getUntrackedParameter<bool> ("Overwrite",true);
191 
192  tok_raw_ = consumes<FEDRawDataCollection>(ps.getUntrackedParameter<edm::InputTag>("RawDataLabel",edm::InputTag("source","")));
193  digiLabel_ = ps.getUntrackedParameter<edm::InputTag>("digiLabel",edm::InputTag("hcalDigis"));
194  tok_l1_ = consumes<L1GlobalTriggerReadoutRecord>(ps.getUntrackedParameter<edm::InputTag>("gtLabel"));
195 
196 
197  tok_hbhe_ = consumes<HBHEDigiCollection>(digiLabel_);
198  tok_ho_ = consumes<HODigiCollection>(digiLabel_);
199 
200  RMSummary = 0;
201  needLogicalMap_=true;
202  setupDone_ = false;
203 }
204 
206 
207 
209 {
210  if (debug_>1) std::cout <<"HcalDetDiagNoiseMonitor::bookHistograms"<<std::endl;
212 
213  if (tevt_==0) this->setup(ib); // set up histograms if they have not been created before
214  if (mergeRuns_==false)
215  this->reset();
216 
217  return;
218 
219 }
220 
222  if (setupDone_)
223  return;
224  setupDone_ = true;
225  // Call base class setup
228 
231  meEVT_ = ib.bookInt("HcalNoiseMonitor Event Number");
232  ib.setCurrentFolder(subdir_+"Common Plots");
233 
234  name="RBX Pixel multiplicity"; PixelMult = ib.book1D(name,name,73,0,73);
235  name="HPD energy"; HPDEnergy = ib.book1D(name,name,200,0,2500);
236  name="RBX energy"; RBXEnergy = ib.book1D(name,name,200,0,3500);
237  name="Number of zero TS per RBX"; NZeroes = ib.book1D(name,name,100,0,100);
238  name="Trigger BX Tbit11"; TriggerBx11 = ib.book1D(name,name,4000,0,4000);
239  name="Trigger BX Tbit12"; TriggerBx12 = ib.book1D(name,name,4000,0,4000);
240 
241  ib.setCurrentFolder(subdir_+"HBHE Plots");
242  name="HBP HPD Noise Rate Pixel above 50fC"; HBP_Rate50 = ib.book1D(name,name,73,0,73);
243  name="HBM HPD Noise Rate Pixel above 50fC"; HBM_Rate50 = ib.book1D(name,name,73,0,73);
244  name="HEP HPD Noise Rate Pixel above 50fC"; HEP_Rate50 = ib.book1D(name,name,73,0,73);
245  name="HEM HPD Noise Rate Pixel above 50fC"; HEM_Rate50 = ib.book1D(name,name,73,0,73);
246  name="HBP HPD Noise Rate HPD above 300fC"; HBP_Rate300 = ib.book1D(name,name,73,0,73);
247  name="HBM HPD Noise Rate HPD above 300fC"; HBM_Rate300 = ib.book1D(name,name,73,0,73);
248  name="HEP HPD Noise Rate HPD above 300fC"; HEP_Rate300 = ib.book1D(name,name,73,0,73);
249  name="HEM HPD Noise Rate HPD above 300fC"; HEM_Rate300 = ib.book1D(name,name,73,0,73);
250 
251  ib.setCurrentFolder(subdir_+"HO Plots");
252  name="HO0 HPD Noise Rate Pixel above 50fC"; HO0_Rate50 = ib.book1D(name,name,49,0,49);
253  name="HO1P HPD Noise Rate Pixel above 50fC"; HO1P_Rate50 = ib.book1D(name,name,48,0,48);
254  name="HO1M HPD Noise Rate Pixel above 50fC"; HO1M_Rate50 = ib.book1D(name,name,48,0,48);
255  name="HO0 HPD Noise Rate HPD above 300fC"; HO0_Rate300 = ib.book1D(name,name,48,0,48);
256  name="HO1P HPD Noise Rate HPD abGetRMindexove 300fC"; HO1P_Rate300 = ib.book1D(name,name,48,0,48);
257  name="HO1M HPD Noise Rate HPD above 300fC"; HO1M_Rate300 = ib.book1D(name,name,48,0,48);
258 
259 
260  ib.setCurrentFolder(subdir_+"Noise Spike Plots");
261 
262  name="HB RM Spike Map"; HB_RBXmapSpikeCnt= ib.book2D(name,name,4,0.5,4.5,36,0.5,36.5);
263  name="HE RM Spike Map"; HE_RBXmapSpikeCnt= ib.book2D(name,name,4,0.5,4.5,36,0.5,36.5);
264  name="HO RM Spike Map"; HO_RBXmapSpikeCnt= ib.book2D(name,name,4,0.5,4.5,36,0.5,36.5);
265 
266  std::string title="RM";
270 
271  for(int i=0;i<36;i++){
275  }
276 
277 
278  return;
279 }
280 
282  getLogicalMap(iSetup);
283  HcalBaseDQMonitor::analyze(iEvent, iSetup);
284  if (!IsAllowedCalibType()) return;
285  if (LumiInOrder(iEvent.luminosityBlock())==false) return;
286 // HcalBaseDQMonitor::analyze(iEvent, iSetup);
287  bool isNoiseEvent=false;
288  int orbit=-1111;
289  int bx=-1111;
290 
291  // for local runs
292  edm::Handle<HcalTBTriggerData> trigger_data;
293  iEvent.getByToken(tok_tb_, trigger_data);
294  if(trigger_data.isValid()){
295  if(trigger_data->triggerWord()>1000) isNoiseEvent=true;
296  LocalRun=true;
297  }
298 
299  // We do not want to look at Abort Gap events
301  iEvent.getByToken(tok_raw_,rawdata);
302  //checking FEDs for calibration information
304  const FEDRawData& fedData = rawdata->FEDData(i) ;
305  if ( fedData.size() < 24 ) continue ;
306  orbit= ((const HcalDCCHeader*)(fedData.data()))->getOrbitNumber();
307  bx=((const HcalDCCHeader*)(fedData.data()))->getBunchId();
308  if(((const HcalDCCHeader*)(fedData.data()))->getCalibType()!=hc_Null) return;
309  }
310 
311  // Check GCT trigger bits
313  iEvent.getByToken(tok_l1_, gtRecord);
314  if(gtRecord.isValid()){
315  const TechnicalTriggerWord tWord = gtRecord->technicalTriggerWord();
316  if(tWord.at(11) || tWord.at(12)) isNoiseEvent=true;
317  if(tWord.at(11)){ TriggerBx11->Fill(bx);}
318  if(tWord.at(12)){ TriggerBx12->Fill(bx);}
319  }
320 
321  if(!isNoiseEvent) return;
322  if(ievt_==0){ FirstOrbit=orbit; FirstOrbitLS=orbit; newLS=true;}
323  if(LastOrbit <orbit) LastOrbit=orbit;
324  if(FirstOrbit>orbit) FirstOrbit=orbit;
325  if(LastOrbitLS <orbit) LastOrbitLS=orbit;
326  if(FirstOrbitLS>orbit) FirstOrbitLS=orbit;
327  if(newLS){
328  FirstOrbitLS=orbit;
329  newLS=false;
330  }
331 
332  if(!LocalRun){
333  double TIME=(double)(LastOrbit-FirstOrbit)/11223.0;
334  if(TIME>1800.0){
335  UpdateHistos();
336  SaveRates();
337  RMSummary->reset();
338  FirstOrbit=orbit;
339  }
340  }
341 
342  meEVT_->Fill(++ievt_);
343 
344  run_number=iEvent.id().run();
345 
347 
349  iEvent.getByToken(tok_hbhe_,hbhe);
350  for(HBHEDigiCollection::const_iterator digi=hbhe->begin();digi!=hbhe->end();digi++){
351  double max=-100/*,sum*/,energy=0; int n_zero=0;
352  for(int i=0;i<digi->size();i++){
353  // sum=adc2fC[digi->sample(i).adc()&0xff];
354  if(max<adc2fC[digi->sample(i).adc()&0xff]) max=adc2fC[digi->sample(i).adc()&0xff];
355  if(adc2fC[digi->sample(i).adc()&0xff]==0) n_zero++;
356  }
357  HcalFrontEndId lmap_entry=logicalMap_->getHcalFrontEndId(digi->id());
358  int index=lmap_entry.rmIndex(); if(index>=HcalFrontEndId::maxRmIndex) continue;
359  RMs[index].n_zero++;
360  if(max>HPDthresholdLo){
361  for(int i=0;i<digi->size();i++) energy+=adc2fC[digi->sample(i).adc()&0xff]-2.5;
362  RMs[index].n_pix_lo++;
363  if(max>HPDthresholdHi){ RMs[index].n_pix_hi++; isNoiseEvent=true;}
364  RMs[index].energy+=energy;
365  }
366  }
367 
369  iEvent.getByToken(tok_ho_,ho);
370  for(HODigiCollection::const_iterator digi=ho->begin();digi!=ho->end();digi++){
371  double max=-100,energy=0; int Eta=digi->id().ieta(); int Phi=digi->id().iphi(); int n_zero=0;
372  for(int i=0;i<digi->size()-1;i++){
373  if(max<adc2fC[digi->sample(i).adc()&0xff]) max=adc2fC[digi->sample(i).adc()&0xff];
374  if(adc2fC[digi->sample(i).adc()&0xff]==0) n_zero++;
375  }
376  if((Eta>=11 && Eta<=15 && Phi>=59 && Phi<=70) || (Eta>=5 && Eta<=10 && Phi>=47 && Phi<=58)){
377  continue; // ignory SiPMs
378  }else{
379  HcalFrontEndId lmap_entry=logicalMap_->getHcalFrontEndId(digi->id());
380  int index=lmap_entry.rmIndex(); if(index>=HcalFrontEndId::maxRmIndex) continue;
381  RMs[index].n_zero++;
382  if(max>HPDthresholdLo){
383  for(int i=0;i<digi->size();i++) energy+=adc2fC[digi->sample(i).adc()&0xff]-2.5;
384  RMs[index].n_pix_lo++;
385  if(max>HPDthresholdHi){ RMs[index].n_pix_hi++; isNoiseEvent=true;}
386  RMs[index].energy+=energy;
387  }
388  }
389  }
390 
391  NoisyEvents++;
392 
393  // RMs loop
394  for(int i=0;i<HcalFrontEndId::maxRmIndex;i++){
395  if(RMs[i].n_pix_hi>0){
396  HPDEnergy->Fill(RMs[i].energy);
397  RMSummary->rm[i].n_th_hi++;
398  RMSummary->rm[i].n_th_hi_LS++;
399  if(RMs[i].energy>300) RMSummary->rm[i].n_th_300++;
400  if(RMs[i].energy>300) RMSummary->rm[i].n_th_300_LS++;
401  if(RMs[i].n_pix_lo>1) RMSummary->rm[i].n_pix_1++;
402  if(RMs[i].n_pix_lo>8) RMSummary->rm[i].n_pix_8++;
403  RMSummary->rm[i].pix+=RMs[i].n_pix_lo;
404  RMSummary->rm[i].n_pix++;
405  }
406  }
407 
408  // RBX loop
409  for(int sd=0;sd<7;sd++) for(int sect=1;sect<=18;sect++){
410  std::stringstream tempss;
411  tempss << std::setw(2) << std::setfill('0') << sect;
412  std::string rbx= subdets[sd]+tempss.str();
413 
414  double rbx_energy=0;int pix_mult=0; int n_zero=0; bool isValidRBX=false;
415  for(int rm=1;rm<=4;rm++){
416  int index=RMSummary->GetRMindex(rbx,rm);
417  if(index>0 && index<HcalFrontEndId::maxRmIndex){
418  rbx_energy+=RMs[index].energy;
419  pix_mult+=RMs[index].n_pix_lo;
420  n_zero+=RMs[index].n_zero;
421  isValidRBX=true;
422  }
423  }
424  if(isValidRBX){
425  PixelMult->Fill(pix_mult);
426  RBXEnergy->Fill(rbx_energy);
427  NZeroes->Fill(n_zero);
428  }
429  }
430 
431  if((ievt_%100)==0 && debug_>0)
432  std::cout <<ievt_<<"\t"<<NoisyEvents<<std::endl;
433  return;
434 }
435 
437 int first_rbx=0,last_rbx=0;
438  //double TIME=(double)(LastOrbitLS-FirstOrbitLS)/11223.0;
439  double TIME=23.0;
440  newLS=true;
441  if(TIME==0) return;
442 
443  for(int sd=0;sd<9;sd++){
444  if(sd==0){ first_rbx=0; last_rbx=18;} //HBM
445  if(sd==1){ first_rbx=18; last_rbx=36;} //HBP
446  if(sd==0 || sd==1){ // update HB plots
447  for(int rbx=first_rbx;rbx<last_rbx;rbx++)for(int rm=1;rm<=4;rm++){
448  int index=RMSummary->GetRMindex(HB_RBX[rbx],rm);
449  if(index<0 || index>=HcalFrontEndId::maxRmIndex) continue;
450  double val=RMSummary->rm[index].n_th_hi_LS/TIME;
451  if(val>SpikeThreshold){
452  HB_RBXmapSpikeCnt->Fill(rm,rbx+1,1);
453  //printf("%s %i %f (%f)\n",HO_RBX[rbx].c_str(),rm,RMSummary->rm[index].n_th_hi_LS/TIME,TIME);
454  }
456  }
457  }
458  if(sd==2){ first_rbx=0; last_rbx=18;} //HEM
459  if(sd==3){ first_rbx=18; last_rbx=36;} //HEP
460  if(sd==2 || sd==3){ // update HB plots
461  for(int rbx=first_rbx;rbx<last_rbx;rbx++)for(int rm=1;rm<=4;rm++){
462  int index=RMSummary->GetRMindex(HE_RBX[rbx],rm);
463  if(index<0 || index>=HcalFrontEndId::maxRmIndex) continue;
464  double val=RMSummary->rm[index].n_th_hi_LS/TIME;
465  if(val>SpikeThreshold){
466  HE_RBXmapSpikeCnt->Fill(rm,rbx+1,1);
467  //printf("%s %i %f (%f)\n",HO_RBX[rbx].c_str(),rm,RMSummary->rm[index].n_th_hi_LS/TIME,TIME);
468  }
470  }
471  }
472  if(sd==4){ first_rbx=6; last_rbx=12;} //HO1M
473  if(sd==5){ first_rbx=12; last_rbx=24;} //HO0
474  if(sd==6){ first_rbx=24; last_rbx=30;} //HO1P
475  if(sd>3){
476  for(int rbx=first_rbx;rbx<last_rbx;rbx++)for(int rm=1;rm<=4;rm++){
477  int index=RMSummary->GetRMindex(HO_RBX[rbx],rm);
478  if(index<0 || index>=HcalFrontEndId::maxRmIndex) continue;
479  double val=RMSummary->rm[index].n_th_hi_LS/TIME;
480  if(val>SpikeThreshold){
481  HO_RBXmapSpikeCnt->Fill(rm,rbx+1,1);
482  //printf("%s %i %f (%f)\n",HO_RBX[rbx].c_str(),rm,RMSummary->rm[index].n_th_hi_LS/TIME,TIME);
483  }
485  }
486  }
487  } //sd=0;sd<9
488 }
489 
491  int first_rbx=0;
492  double TIME=(double)(LastOrbit-FirstOrbit)/11223.0;
493  if(TIME==0) return;
494  for(int sd=0;sd<9;sd++){
495  if(sd==0){ first_rbx=0; } //HBM
496  if(sd==1){ first_rbx=18;} //HBP
497  if(sd==0 || sd==1){ // update HB plots
498  for(int rbx=0;rbx<18;rbx++)for(int rm=1;rm<=4;rm++){
499  int index=RMSummary->GetRMindex(HB_RBX[rbx+first_rbx],rm);
500  if(index<0 || index>=HcalFrontEndId::maxRmIndex) continue;
501  if(sd==0){
502  HBM_Rate50->setBinContent(rbx*4+rm,RMSummary->rm[index].n_th_hi/TIME);
503  HBM_Rate300->setBinContent(rbx*4+rm,RMSummary->rm[index].n_th_300/TIME);
504  }
505  if(sd==1){
506  HBP_Rate50->setBinContent(rbx*4+rm,RMSummary->rm[index].n_th_hi/TIME);
507  HBP_Rate300->setBinContent(rbx*4+rm,RMSummary->rm[index].n_th_300/TIME);
508  }
509  }
510  }
511  if(sd==2){ first_rbx=0;} //HEM
512  if(sd==3){ first_rbx=18;} //HEP
513  if(sd==2 || sd==3){ // update HB plots
514  for(int rbx=0;rbx<18;rbx++)for(int rm=1;rm<=4;rm++){
515  int index=RMSummary->GetRMindex(HE_RBX[rbx+first_rbx],rm);
516  if(index<0 || index>=HcalFrontEndId::maxRmIndex) continue;
517  if(sd==2){
518  HEM_Rate50->setBinContent(rbx*4+rm,RMSummary->rm[index].n_th_hi/TIME);
519  HEM_Rate300->setBinContent(rbx*4+rm,RMSummary->rm[index].n_th_300/TIME);
520  }
521  if(sd==3){
522  HEP_Rate50->setBinContent(rbx*4+rm,RMSummary->rm[index].n_th_hi/TIME);
523  HEP_Rate300->setBinContent(rbx*4+rm,RMSummary->rm[index].n_th_300/TIME);
524  }
525  }
526  }
527  int n=0;
528  if(sd==4){ first_rbx=6; n=6;} //HO1M
529  if(sd==5){ first_rbx=12;n=12;} //HO0
530  if(sd==6){ first_rbx=24;n=6;} //HO1P
531  if(sd>3){ // update HO plots
532  for(int rbx=0;rbx<n;rbx++)for(int rm=1;rm<=4;rm++){
533  int index=RMSummary->GetRMindex(HO_RBX[rbx+first_rbx],rm);
534  if(index<0 || index>=HcalFrontEndId::maxRmIndex) continue;
535  if(sd==4){
536  HO1M_Rate50->setBinContent(rbx*4*2+rm,RMSummary->rm[index].n_th_hi/TIME);
537  HO1M_Rate300->setBinContent(rbx*4*2+rm,RMSummary->rm[index].n_th_300/TIME);
538  }
539  if(sd==5){
540  HO0_Rate50->setBinContent(rbx*4+rm,RMSummary->rm[index].n_th_hi/TIME);
541  HO0_Rate300->setBinContent(rbx*4+rm,RMSummary->rm[index].n_th_300/TIME);
542  }
543  if(sd==5){
544  HO1P_Rate50->setBinContent(rbx*4*2+rm,RMSummary->rm[index].n_th_hi/TIME);
545  HO1P_Rate300->setBinContent(rbx*4+rm,RMSummary->rm[index].n_th_300/TIME);
546  }
547  }
548  }
549  } //sd=0;sd<9
550 }
551 
553 char RBX[20];
554 int RM;
555 float VAL1,VAL2,VAL3,VAL4,VAL5;
556 char str[500];
557  double TIME=(double)(LastOrbit-FirstOrbit)/11223.0;
558  if(TIME==0) return;
559  if(OutputFilePath.size()>0){
560  if(!Overwrite){
561  sprintf(str,"%sHcalDetDiagNoiseData_run%06i_%i.root",OutputFilePath.c_str(),run_number,dataset_seq_number);
562  }else{
563  sprintf(str,"%sHcalDetDiagNoiseData.root",OutputFilePath.c_str());
564  }
565  TFile *theFile = new TFile(str, "RECREATE");
566  if(!theFile->IsOpen()) return;
567  theFile->cd();
568  sprintf(str,"%d",run_number); TObjString run(str); run.Write("run number");
569  sprintf(str,"%d",ievt_); TObjString events(str); events.Write("Total events processed");
570  sprintf(str,"%d",dataset_seq_number); TObjString dsnum(str); dsnum.Write("Dataset number");
571  Long_t t; t=time(0); strftime(str,30,"%F %T",localtime(&t)); TObjString tm(str); tm.Write("Dataset creation time");
572 
573  TTree *tree =new TTree("HCAL Noise data","HCAL Noise data");
574  if(tree==0) return;
575  tree->Branch("RBX", &RBX, "RBX/C");
576  tree->Branch("rm", &RM, "rm/I");
577  tree->Branch("RATE_50", &VAL1, "RATE_50");
578  tree->Branch("RATE_300", &VAL2, "RATE_300");
579  tree->Branch("RATE_PIX1", &VAL3, "RATE_PIX1");
580  tree->Branch("RATE_PIX8", &VAL4, "RATE_PIX8");
581  tree->Branch("RATE_PIXMEAN", &VAL5, "RATE_PIXMEAN");
582  for(int rbx=0;rbx<36;rbx++) for(int rm=1;rm<=4;rm++){
583  int index=RMSummary->GetRMindex(HB_RBX[rbx],rm);
584  if(index<0 || index>=HcalFrontEndId::maxRmIndex) continue;
585  sprintf(RBX,"%s",HB_RBX[rbx]);
586  RM=rm;
587  VAL1=RMSummary->rm[index].n_th_hi/TIME;
588  VAL2=RMSummary->rm[index].n_th_300/TIME;
589  VAL3=RMSummary->rm[index].n_pix_1/TIME;
590  VAL4=RMSummary->rm[index].n_pix_8/TIME;
591  if(RMSummary->rm[index].n_pix>0)VAL5=RMSummary->rm[index].pix/RMSummary->rm[index].n_pix; else VAL5=0;
592  tree->Fill();
593  }
594  for(int rbx=0;rbx<36;rbx++) for(int rm=1;rm<=4;rm++){
595  int index=RMSummary->GetRMindex(HE_RBX[rbx],rm);
596  if(index<0 || index>=HcalFrontEndId::maxRmIndex) continue;
597  sprintf(RBX,"%s",HE_RBX[rbx]);
598  RM=rm;
599  VAL1=RMSummary->rm[index].n_th_hi/TIME;
600  VAL2=RMSummary->rm[index].n_th_300/TIME;
601  VAL3=RMSummary->rm[index].n_pix_1/TIME;
602  VAL4=RMSummary->rm[index].n_pix_8/TIME;
603  if(RMSummary->rm[index].n_pix>0)VAL5=RMSummary->rm[index].pix/RMSummary->rm[index].n_pix; else VAL5=0;
604  tree->Fill();
605  }
606  for(int rbx=0;rbx<36;rbx++) for(int rm=1;rm<=4;rm++){
607  int index=RMSummary->GetRMindex(HO_RBX[rbx],rm);
608  if(index<0 || index>=HcalFrontEndId::maxRmIndex) continue;
609  sprintf(RBX,"%s",HO_RBX[rbx]);
610  RM=rm;
611  VAL1=RMSummary->rm[index].n_th_hi/TIME;
612  VAL2=RMSummary->rm[index].n_th_300/TIME;
613  VAL3=RMSummary->rm[index].n_pix_1/TIME;
614  VAL4=RMSummary->rm[index].n_pix_8/TIME;
615  if(RMSummary->rm[index].n_pix>0)VAL5=RMSummary->rm[index].pix/RMSummary->rm[index].n_pix; else VAL5=0;
616  tree->Fill();
617  }
618  theFile->Write();
619  theFile->Close();
620  theFile->Delete();
622 
623  }
624 }
625 
626 
628 
630 {
631  if(LocalRun) UpdateHistos(); SaveRates();
632 
633  if ( RMSummary ) delete RMSummary;
634 }
635 
RunNumber_t run() const
Definition: EventID.h:39
T getParameter(std::string const &) const
T getUntrackedParameter(std::string const &, T const &) const
int i
Definition: DBlmapReader.cc:9
bool LumiInOrder(int lumisec)
void setBinContent(int binx, double content)
set content of bin (1-D)
int ib
Definition: cuy.py:660
virtual void analyze(const edm::Event &e, const edm::EventSetup &c)
bool getByToken(EDGetToken token, Handle< PROD > &result) const
Definition: Event.h:446
#define DEFINE_FWK_MODULE(type)
Definition: MakerMacros.h:17
std::vector< int > AllowedCalibTypes_
HcalDetDiagNoiseRMData rm[HcalFrontEndId::maxRmIndex]
virtual void bookHistograms(DQMStore::IBooker &, edm::Run const &, edm::EventSetup const &)
MonitorElement * bookInt(Args &&...args)
Definition: DQMStore.h:103
std::vector< HBHEDataFrame >::const_iterator const_iterator
char const * HO_RBX[36]
void setBinLabel(int bin, const std::string &label, int axis=1)
set bin label for x, y or z axis (axis=1, 2, 3 respectively)
edm::LuminosityBlockNumber_t luminosityBlock() const
Definition: EventBase.h:59
void getLogicalMap(const edm::EventSetup &c)
HcalDetDiagNoiseRMSummary * RMSummary
#define constexpr
size_t size() const
Lenght of the data buffer in bytes.
Definition: FEDRawData.h:47
char const * HB_RBX[36]
void Fill(long long x)
int iEvent
Definition: GenABIO.cc:230
void analyze(edm::Event const &e, edm::EventSetup const &s)
int GetRMindex(const std::string &rbx, int rm)
edm::EDGetTokenT< L1GlobalTriggerReadoutRecord > tok_l1_
int rmIndex() const
HcalLogicalMap * logicalMap_
edm::EDGetTokenT< HBHEDigiCollection > tok_hbhe_
string rm
Definition: submit.py:76
static const int maxRmIndex
MonitorElement * book1D(Args &&...args)
Definition: DQMStore.h:115
std::vector< bool > TechnicalTriggerWord
technical trigger bits (64 bits)
edm::EDGetTokenT< HODigiCollection > tok_ho_
bool isValid() const
Definition: HandleBase.h:76
char const * subdets[11]
const HcalFrontEndId getHcalFrontEndId(const DetId &)
void endLuminosityBlock(const edm::LuminosityBlock &lumiSeg, const edm::EventSetup &c)
void setCurrentFolder(const std::string &fullpath)
Definition: DQMStore.cc:274
char const * HE_RBX[36]
MonitorElement * book2D(Args &&...args)
Definition: DQMStore.h:133
double sd
edm::EventID id() const
Definition: EventBase.h:56
tuple events
Definition: patZpeak.py:19
const unsigned char * data() const
Return a const pointer to the beginning of the data buffer.
Definition: FEDRawData.cc:28
tuple cout
Definition: gather_cfg.py:121
edm::EDGetTokenT< FEDRawDataCollection > tok_raw_
void setup(DQMStore::IBooker &)
dictionary rawdata
Definition: lumiPlot.py:393
HcalDetDiagNoiseMonitor(const edm::ParameterSet &ps)
void setAxisTitle(const std::string &title, int axis=1)
set x-, y- or z-axis title (axis=1, 2, 3 respectively)
void reset(double vett[256])
Definition: TPedValues.cc:11
void bookHistograms(DQMStore::IBooker &ib, const edm::Run &run, const edm::EventSetup &c)
virtual void setup(DQMStore::IBooker &)
Definition: Run.h:41
float adc2fC[128]
edm::EDGetTokenT< HcalTBTriggerData > tok_tb_