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SummaryClient.cc
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1 #include "../interface/SummaryClient.h"
2 
4 
6 
7 #include <algorithm>
8 
9 namespace ecaldqm
10 {
13  towerBadFraction_(0.),
14  fedBadFraction_(0.)
15  {
16  qualitySummaries_.insert("QualitySummary");
17  qualitySummaries_.insert("ReportSummaryMap");
18  qualitySummaries_.insert("ReportSummaryContents");
19  qualitySummaries_.insert("ReportSummary");
20  }
21 
22  void
24  {
25  towerBadFraction_ = _params.getUntrackedParameter<double>("towerBadFraction");
26  fedBadFraction_ = _params.getUntrackedParameter<double>("fedBadFraction");
27 
28  std::vector<std::string> sourceList(_params.getUntrackedParameter<std::vector<std::string> >("activeSources"));
29  if(std::find(sourceList.begin(), sourceList.end(), "Presample") == sourceList.end()) sources_.erase(std::string("Presample"));
30  if(std::find(sourceList.begin(), sourceList.end(), "Timing") == sourceList.end()) sources_.erase(std::string("Timing"));
31  if(std::find(sourceList.begin(), sourceList.end(), "TriggerPrimitives") == sourceList.end()) sources_.erase(std::string("TriggerPrimitives"));
32  if(std::find(sourceList.begin(), sourceList.end(), "HotCell") == sourceList.end()) sources_.erase(std::string("HotCell"));
33  }
34 
35  void
37  {
39 
40  MESet& meReportSummaryContents(MEs_.at("ReportSummaryContents"));
41  MESet& meReportSummary(MEs_.at("ReportSummary"));
42  MESet& meReportSummaryMap(MEs_.at("ReportSummaryMap"));
43 
44  for(unsigned iDCC(0); iDCC < nDCC; ++iDCC){
45  int dccid(iDCC + 1);
46  meReportSummaryContents.fill(dccid, -1.);
47  }
48 
49  meReportSummary.fill(-1.);
50 
51  meReportSummaryMap.reset(-1.);
52  }
53 
54  void
56  {
57  if(_pType == kLumi && !onlineMode_) return;
58  // TODO: Implement offline per-lumi summary
59 
60  MESet& meReportSummaryContents(MEs_.at("ReportSummaryContents"));
61  MESet& meReportSummary(MEs_.at("ReportSummary"));
62 
63  for(unsigned iDCC(0); iDCC < nDCC; ++iDCC){
64  int dccid(iDCC + 1);
65  meReportSummaryContents.fill(dccid, -1.);
66  }
67  meReportSummary.fill(-1.);
68 
69  MESet const& sIntegrityByLumi(sources_.at("IntegrityByLumi"));
70  MESet const& sDesyncByLumi(sources_.at("DesyncByLumi"));
71  MESet const& sFEByLumi(sources_.at("FEByLumi"));
72 
73  double integrityByLumi[nDCC];
74  double rawDataByLumi[nDCC];
75  for(unsigned iDCC(0); iDCC < nDCC; ++iDCC){
76  integrityByLumi[iDCC] = sIntegrityByLumi.getBinContent(iDCC + 1);
77  rawDataByLumi[iDCC] = sDesyncByLumi.getBinContent(iDCC + 1) + sFEByLumi.getBinContent(iDCC + 1);
78  }
79 
80  MESet& meQualitySummary(MEs_.at("QualitySummary"));
81  MESet& meReportSummaryMap(MEs_.at("ReportSummaryMap"));
82 
83  MESet const& sIntegrity(sources_.at("Integrity"));
84  MESet const& sRawData(sources_.at("RawData"));
85  MESet const* sPresample(using_("Presample") ? &sources_.at("Presample") : 0);
86  MESet const* sTiming(using_("Timing") ? &sources_.at("Timing") : 0);
87  MESet const* sTriggerPrimitives(using_("TriggerPrimitives") ? &sources_.at("TriggerPrimitives") : 0);
88  MESet const* sHotCell(using_("HotCell") ? &sources_.at("HotCell") : 0);
89 
90  float totalChannels(0.);
91  float totalGood(0.);
92 
93  double dccChannels[nDCC];
94  std::fill_n(dccChannels, nDCC, 0.);
95  double dccGood[nDCC];
96  std::fill_n(dccGood, nDCC, 0.);
97 
98  std::map<uint32_t, int> badChannelsCount;
99 
100  MESet::iterator qEnd(meQualitySummary.end());
101  MESet::const_iterator iItr(sIntegrity);
102  for(MESet::iterator qItr(meQualitySummary.beginChannel()); qItr != qEnd; qItr.toNextChannel()){
103 
104  DetId id(qItr->getId());
105  unsigned iDCC(dccId(id) - 1);
106 
107  iItr = qItr;
108 
109  int integrity(iItr->getBinContent());
110 
111  if(integrity == kUnknown || integrity == kMUnknown){
112  qItr->setBinContent(integrity);
113  continue;
114  }
115 
116  int presample(sPresample ? sPresample->getBinContent(id) : kUnknown);
117  int hotcell(sHotCell ? sHotCell->getBinContent(id) : kUnknown);
118  int timing(sTiming ? sTiming->getBinContent(id) : kUnknown);
119  int trigprim(sTriggerPrimitives ? sTriggerPrimitives->getBinContent(id) : kUnknown);
120 
121  int rawdata(sRawData.getBinContent(id));
122 
123  if(integrity == kBad && integrityByLumi[iDCC] == 0.) integrity = kGood;
124  if(rawdata == kBad && rawDataByLumi[iDCC] == 0.) rawdata = kGood;
125 
126  int status(kGood);
127  if(integrity == kBad || presample == kBad || timing == kBad || rawdata == kBad || trigprim == kBad || hotcell == kBad)
128  status = kBad;
129  else if(integrity == kUnknown && presample == kUnknown && timing == kUnknown && rawdata == kUnknown && trigprim == kUnknown)
130  status = kUnknown;
131 
132  qItr->setBinContent(status);
133 
134  if(status == kBad){
135  if(id.subdetId() == EcalBarrel) badChannelsCount[EBDetId(id).tower().rawId()] += 1;
136  if(id.subdetId() == EcalEndcap) badChannelsCount[EEDetId(id).sc().rawId()] += 1;
137  }
138  else{
139  dccGood[iDCC] += 1.;
140  totalGood += 1.;
141  }
142  dccChannels[iDCC] += 1.;
143  totalChannels += 1.;
144  }
145 
146  // search clusters of bad towers
147  if(onlineMode_){
148  for(int iz(-1); iz < 2; iz += 2){
149  for(int ieta(0); ieta < 17; ++ieta){
150  if(iz == 1 && ieta == 0) continue;
151  for(int iphi(1); iphi <= 72; ++iphi){
152  EcalTrigTowerDetId ttids[4];
153  unsigned badTowers(0);
154  for(int deta(0); deta < 2; ++deta){
155  int ttz(ieta == 0 && deta == 0 ? -1 : iz);
156  int tteta(ieta == 0 && deta == 0 ? 1 : ieta + deta);
157  for(int dphi(0); dphi < 2; ++dphi){
158  int ttphi(iphi != 72 ? iphi + dphi : 1);
159  EcalTrigTowerDetId ttid(ttz, EcalBarrel, tteta, ttphi);
160  ttids[deta * 2 + dphi] = ttid;
161 
162  if(badChannelsCount[ttid.rawId()] > towerBadFraction_ * 25.)
163  badTowers += 1;
164  }
165  }
166 
167  if(badTowers > 2){
168  for(unsigned iD(0); iD < 4; ++iD)
169  dccGood[dccId(ttids[iD]) - 1] = 0.;
170  }
171  }
172  }
173  }
174  for(int iz(-1); iz <= 1; iz += 2){
175  for(int ix(1); ix < 20; ++ix){
176  for(int iy(1); iy < 20; ++iy){
177  EcalScDetId scids[4];
178  unsigned badTowers(0);
179  for(int dx(0); dx < 2; ++dx){
180  for(int dy(0); dy < 2; ++dy){
181  if(!EcalScDetId::validDetId(ix + dx, iy + dy, iz)){
182  scids[dx * 2 + dy] = EcalScDetId(0);
183  continue;
184  }
185  EcalScDetId scid(ix + dx, iy + dy, iz);
186  scids[dx * 2 + dy] = scid;
187 
188  if(badChannelsCount[scid.rawId()] > towerBadFraction_ * scConstituents(scid).size())
189  badTowers += 1;
190  }
191  }
192 
193  // contiguous towers bad -> [(00)(11)] [(11)(00)] [(01)(01)] [(10)(10)] []=>x ()=>y
194  if(badTowers > 2){
195  for(unsigned iD(0); iD < 4; ++iD){
196  EcalScDetId& scid(scids[iD]);
197  if(scid.null()) continue;
198  dccGood[dccId(scid) - 1] = 0.;
199  }
200  }
201  }
202  }
203  }
204  }
205 
206  double nBad(0.);
207  for(unsigned iDCC(0); iDCC < nDCC; ++iDCC){
208  if(dccChannels[iDCC] < 1.) continue;
209 
210  int dccid(iDCC + 1);
211  float frac(dccGood[iDCC] / dccChannels[iDCC]);
212  meReportSummaryMap.setBinContent(dccid, frac);
213  meReportSummaryContents.fill(dccid, frac);
214 
215  if(1. - frac > fedBadFraction_) nBad += 1.;
216  }
217 
218  if(totalChannels > 0.) meReportSummary.fill(totalGood / totalChannels);
219 
220  if(onlineMode_){
221  if(totalChannels > 0.) MEs_.at("GlobalSummary").setBinContent(1, totalGood / totalChannels);
222  MEs_.at("NBadFEDs").setBinContent(1, nBad);
223  }
224  }
225 
227 }
228 
229 
230 
static bool validDetId(int ix, int iy, int iz)
Definition: EcalScDetId.cc:64
void setParams(edm::ParameterSet const &) override
T getUntrackedParameter(std::string const &, T const &) const
#define DEFINE_ECALDQM_WORKER(TYPE)
Definition: DQWorker.h:108
bool using_(std::string const &_name, ProcessType _type=kJob) const
void find(edm::Handle< EcalRecHitCollection > &hits, DetId thisDet, std::vector< EcalRecHitCollection::const_iterator > &hit, bool debug=false)
Definition: FindCaloHit.cc:7
const_iterator & toNextChannel()
Definition: MESet.h:271
uint32_t rawId() const
get the raw id
Definition: DetId.h:43
void resetMEs() override
void producePlots(ProcessType) override
std::set< std::string > qualitySummaries_
virtual double getBinContent(DetId const &, int=0) const
Definition: MESet.h:72
EcalTrigTowerDetId tower() const
get the HCAL/trigger iphi of this crystal
Definition: EBDetId.h:59
MESetCollection sources_
Definition: DetId.h:18
bool null() const
is this a null id ?
Definition: DetId.h:45
MESetCollection MEs_
Definition: DQWorker.h:75
EcalScDetId sc() const
Definition: EEDetId.h:88
std::vector< DetId > scConstituents(EcalScDetId const &)
dictionary rawdata
Definition: lumiPlot.py:393
tuple status
Definition: ntuplemaker.py:245
unsigned dccId(DetId const &)