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BeamMonitor.cc
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1 /*
2  * \file BeamMonitor.cc
3  * \author Geng-yuan Jeng/UC Riverside
4  * Francisco Yumiceva/FNAL
5  */
6 
7 /*
8 The code has been modified for running average
9 mode, and it gives results for the last NLS which is
10 configurable.
11 Sushil S. Chauhan /UCDavis
12 Evan Friis /UCDavis
13 The last tag for working versions without this change is
14 V00-03-25
15 */
16 
32 #include <numeric>
33 #include <cmath>
34 #include <memory>
35 #include <TMath.h>
36 #include <iostream>
37 #include <TStyle.h>
38 #include <ctime>
39 
40 using namespace std;
41 using namespace edm;
42 
43 void BeamMonitor::formatFitTime(char* ts, const time_t& t) {
44  //constexpr int CET(+1);
45  constexpr int CEST(+2);
46 
47  //tm * ptm;
48  //ptm = gmtime ( &t );
49  //int year = ptm->tm_year;
50 
51  //get correct year from ctime
52  time_t currentTime;
53  struct tm* localTime;
54  time(&currentTime); // Get the current time
55  localTime = localtime(&currentTime); // Convert the current time to the local time
56  int year = localTime->tm_year + 1900;
57 
58  tm* ptm;
59  ptm = gmtime(&t);
60 
61  //check if year is ok
62  if (year <= 37)
63  year += 2000;
64  if (year >= 70 && year <= 137)
65  year += 1900;
66 
67  if (year < 1995) {
68  edm::LogError("BadTimeStamp") << "year reported is " << year << " !!" << std::endl;
69  //year = 2015; //overwritten later by BeamFitter.cc for fits but needed here for TH1
70  //edm::LogError("BadTimeStamp") << "Resetting to " <<year<<std::endl;
71  }
72  sprintf(ts,
73  "%4d-%02d-%02d %02d:%02d:%02d",
74  year,
75  ptm->tm_mon + 1,
76  ptm->tm_mday,
77  (ptm->tm_hour + CEST) % 24,
78  ptm->tm_min,
79  ptm->tm_sec);
80 
81 #ifdef STRIP_TRAILING_BLANKS_IN_TIMEZONE
82  unsigned int b = strlen(ts);
83  while (ts[--b] == ' ') {
84  ts[b] = 0;
85  }
86 #endif
87 }
88 
89 static constexpr int buffTime = 23;
90 
91 std::string BeamMonitor::getGMTstring(const time_t& timeToConvert) {
92  char buff[32];
93  std::strftime(buff, sizeof(buff), "%Y.%m.%d %H:%M:%S GMT", gmtime(&timeToConvert));
94  std::string timeStr(buff);
95  return timeStr;
96 }
97 
98 //
99 // constructors and destructor
100 //
102  : dxBin_(ps.getParameter<int>("dxBin")),
103  dxMin_(ps.getParameter<double>("dxMin")),
104  dxMax_(ps.getParameter<double>("dxMax")),
105 
106  vxBin_(ps.getParameter<int>("vxBin")),
107  vxMin_(ps.getParameter<double>("vxMin")),
108  vxMax_(ps.getParameter<double>("vxMax")),
109 
110  phiBin_(ps.getParameter<int>("phiBin")),
111  phiMin_(ps.getParameter<double>("phiMin")),
112  phiMax_(ps.getParameter<double>("phiMax")),
113 
114  dzBin_(ps.getParameter<int>("dzBin")),
115  dzMin_(ps.getParameter<double>("dzMin")),
116  dzMax_(ps.getParameter<double>("dzMax")),
117 
118  countEvt_(0),
119  countLumi_(0),
120  nthBSTrk_(0),
121  nFitElements_(3),
122  resetHistos_(false),
123  StartAverage_(false),
124  firstAverageFit_(0),
125  countGapLumi_(0) {
126  monitorName_ = ps.getUntrackedParameter<string>("monitorName", "YourSubsystemName");
127  recordName_ = ps.getUntrackedParameter<string>("recordName");
128  bsSrc_ = consumes<reco::BeamSpot>(ps.getUntrackedParameter<InputTag>("beamSpot"));
129  tracksLabel_ = consumes<reco::TrackCollection>(
130  ps.getParameter<ParameterSet>("BeamFitter").getUntrackedParameter<InputTag>("TrackCollection"));
131  pvSrc_ = consumes<reco::VertexCollection>(ps.getUntrackedParameter<InputTag>("primaryVertex"));
132  hltSrc_ = consumes<TriggerResults>(ps.getParameter<InputTag>("hltResults"));
133  intervalInSec_ = ps.getUntrackedParameter<int>("timeInterval", 920); //40 LS X 23"
134  fitNLumi_ = ps.getUntrackedParameter<int>("fitEveryNLumi", -1);
135  resetFitNLumi_ = ps.getUntrackedParameter<int>("resetEveryNLumi", -1);
136  fitPVNLumi_ = ps.getUntrackedParameter<int>("fitPVEveryNLumi", -1);
137  resetPVNLumi_ = ps.getUntrackedParameter<int>("resetPVEveryNLumi", -1);
138  deltaSigCut_ = ps.getUntrackedParameter<double>("deltaSignificanceCut", 15);
139  debug_ = ps.getUntrackedParameter<bool>("Debug");
140  onlineMode_ = ps.getUntrackedParameter<bool>("OnlineMode");
141  jetTrigger_ = ps.getUntrackedParameter<std::vector<std::string> >("jetTrigger");
142  min_Ntrks_ = ps.getParameter<ParameterSet>("BeamFitter").getUntrackedParameter<int>("MinimumInputTracks");
143  maxZ_ = ps.getParameter<ParameterSet>("BeamFitter").getUntrackedParameter<double>("MaximumZ");
144  minNrVertices_ = ps.getParameter<ParameterSet>("PVFitter").getUntrackedParameter<unsigned int>("minNrVerticesForFit");
145  minVtxNdf_ = ps.getParameter<ParameterSet>("PVFitter").getUntrackedParameter<double>("minVertexNdf");
146  minVtxWgt_ = ps.getParameter<ParameterSet>("PVFitter").getUntrackedParameter<double>("minVertexMeanWeight");
147  useLockRecords_ = ps.getUntrackedParameter<bool>("useLockRecords");
148 
149  if (!monitorName_.empty())
150  monitorName_ = monitorName_ + "/";
151 
152  theBeamFitter = std::make_unique<BeamFitter>(ps, consumesCollector());
153  theBeamFitter->resetTrkVector();
154  theBeamFitter->resetLSRange();
155  theBeamFitter->resetRefTime();
156  theBeamFitter->resetPVFitter();
157 
158  if (fitNLumi_ <= 0)
159  fitNLumi_ = 1;
161  refBStime[0] = refBStime[1] = refPVtime[0] = refPVtime[1] = 0;
162  maxZ_ = std::fabs(maxZ_);
163  lastlumi_ = 0;
164  nextlumi_ = 0;
165  processed_ = false;
166 }
167 
168 //--------------------------------------------------------
169 namespace {
170  /*The order of the enums is identical to the order in which
171  MonitorElements are added to hs
172  */
173  enum Hists {
174  k_x0_lumi,
175  k_x0_lumi_all,
176  k_y0_lumi,
177  k_y0_lumi_all,
178  k_z0_lumi,
179  k_z0_lumi_all,
180  k_sigmaX0_lumi,
181  k_sigmaX0_lumi_all,
182  k_sigmaY0_lumi,
183  k_sigmaY0_lumi_all,
184  k_sigmaZ0_lumi,
185  k_sigmaZ0_lumi_all,
186  k_x0_time,
187  k_x0_time_all,
188  k_y0_time,
189  k_y0_time_all,
190  k_z0_time,
191  k_z0_time_all,
192  k_sigmaX0_time,
193  k_sigmaX0_time_all,
194  k_sigmaY0_time,
195  k_sigmaY0_time_all,
196  k_sigmaZ0_time,
197  k_sigmaZ0_time_all,
198  k_PVx_lumi,
199  k_PVx_lumi_all,
200  k_PVy_lumi,
201  k_PVy_lumi_all,
202  k_PVz_lumi,
203  k_PVz_lumi_all,
204  k_PVx_time,
205  k_PVx_time_all,
206  k_PVy_time,
207  k_PVy_time_all,
208  k_PVz_time,
209  k_PVz_time_all,
210  kNumHists
211  };
212 } // namespace
213 
217  }
218 }
219 
220 void BeamMonitor::bookHistograms(DQMStore::IBooker& iBooker, edm::Run const& iRun, edm::EventSetup const& iSetup) {
221  frun = iRun.run();
222  ftimestamp = iRun.beginTime().value();
223  tmpTime = ftimestamp >> 32;
225  char eventTime[64];
226  formatFitTime(eventTime, tmpTime);
227  edm::LogInfo("BeamMonitor") << "TimeOffset = " << eventTime << std::endl;
228  TDatime da(eventTime);
229  if (debug_) {
230  edm::LogInfo("BeamMonitor") << "TimeOffset = ";
231  da.Print();
232  }
233  auto daTime = da.Convert(kTRUE);
234 
235  // book some histograms here
236 
237  // create and cd into new folder
238  iBooker.setCurrentFolder(monitorName_ + "Fit");
239 
240  h_nTrk_lumi = iBooker.book1D("nTrk_lumi", "Num. of selected tracks vs lumi (Fit)", 20, 0.5, 20.5);
241  h_nTrk_lumi->setAxisTitle("Lumisection", 1);
242  h_nTrk_lumi->setAxisTitle("Num of Tracks for Fit", 2);
243 
244  //store vtx vs lumi for monitoring why fits fail
245  h_nVtx_lumi = iBooker.book1D("nVtx_lumi", "Num. of selected Vtx vs lumi (Fit)", 20, 0.5, 20.5);
246  h_nVtx_lumi->setAxisTitle("Lumisection", 1);
247  h_nVtx_lumi->setAxisTitle("Num of Vtx for Fit", 2);
248 
249  h_nVtx_lumi_all = iBooker.book1D("nVtx_lumi_all", "Num. of selected Vtx vs lumi (Fit) all", 20, 0.5, 20.5);
250  h_nVtx_lumi_all->getTH1()->SetCanExtend(TH1::kAllAxes);
251  h_nVtx_lumi_all->setAxisTitle("Lumisection", 1);
252  h_nVtx_lumi_all->setAxisTitle("Num of Vtx for Fit", 2);
253 
254  h_d0_phi0 = iBooker.bookProfile(
255  "d0_phi0", "d_{0} vs. #phi_{0} (Selected Tracks)", phiBin_, phiMin_, phiMax_, dxBin_, dxMin_, dxMax_, "");
256  h_d0_phi0->setAxisTitle("#phi_{0} (rad)", 1);
257  h_d0_phi0->setAxisTitle("d_{0} (cm)", 2);
258 
259  h_vx_vy = iBooker.book2D(
260  "trk_vx_vy", "Vertex (PCA) position of selected tracks", vxBin_, vxMin_, vxMax_, vxBin_, vxMin_, vxMax_);
261  h_vx_vy->setOption("COLZ");
262  // h_vx_vy->getTH1()->SetCanExtend(TH1::kAllAxes);
263  h_vx_vy->setAxisTitle("x coordinate of input track at PCA (cm)", 1);
264  h_vx_vy->setAxisTitle("y coordinate of input track at PCA (cm)", 2);
265 
266  {
267  TDatime* da = new TDatime();
268  gStyle->SetTimeOffset(da->Convert(kTRUE));
269  }
270 
271  const int nvar_ = 6;
272  string coord[nvar_] = {"x", "y", "z", "sigmaX", "sigmaY", "sigmaZ"};
273  string label[nvar_] = {
274  "x_{0} (cm)", "y_{0} (cm)", "z_{0} (cm)", "#sigma_{X_{0}} (cm)", "#sigma_{Y_{0}} (cm)", "#sigma_{Z_{0}} (cm)"};
275 
276  hs.reserve(kNumHists);
277  for (int i = 0; i < 4; i++) {
278  iBooker.setCurrentFolder(monitorName_ + "Fit");
279  for (int ic = 0; ic < nvar_; ++ic) {
280  TString histName(coord[ic]);
281  TString histTitle(coord[ic]);
282  string ytitle(label[ic]);
283  string xtitle("");
284  string options("E1");
285  bool createHisto = true;
286  switch (i) {
287  case 1: // BS vs time
288  histName += "0_time";
289  xtitle = "Time [UTC]";
290  if (ic < 3)
291  histTitle += " coordinate of beam spot vs time (Fit)";
292  else
293  histTitle = histTitle.Insert(5, " ") + " of beam spot vs time (Fit)";
294  break;
295  case 2: // PV vs lumi
296  if (ic < 3) {
297  iBooker.setCurrentFolder(monitorName_ + "PrimaryVertex");
298  histName.Insert(0, "PV");
299  histName += "_lumi";
300  histTitle.Insert(0, "Avg. ");
301  histTitle += " position of primary vtx vs lumi";
302  xtitle = "Lumisection";
303  ytitle.insert(0, "PV");
304  ytitle += " #pm #sigma_{PV";
305  ytitle += coord[ic];
306  ytitle += "} (cm)";
307  } else
308  createHisto = false;
309  break;
310  case 3: // PV vs time
311  if (ic < 3) {
312  iBooker.setCurrentFolder(monitorName_ + "PrimaryVertex");
313  histName.Insert(0, "PV");
314  histName += "_time";
315  histTitle.Insert(0, "Avg. ");
316  histTitle += " position of primary vtx vs time";
317  xtitle = "Time [UTC]";
318  ytitle.insert(0, "PV");
319  ytitle += " #pm #sigma_{PV";
320  ytitle += coord[ic];
321  ytitle += "} (cm)";
322  } else
323  createHisto = false;
324  break;
325  default: // BS vs lumi
326  histName += "0_lumi";
327  xtitle = "Lumisection";
328  if (ic < 3)
329  histTitle += " coordinate of beam spot vs lumi (Fit)";
330  else
331  histTitle = histTitle.Insert(5, " ") + " of beam spot vs lumi (Fit)";
332  break;
333  }
334  if (createHisto) {
335  edm::LogInfo("BeamMonitor") << "hitsName = " << histName << "; histTitle = " << histTitle << std::endl;
336  auto tmpHs = iBooker.book1D(histName, histTitle, 40, 0.5, 40.5);
337  hs.push_back(tmpHs);
338  tmpHs->setAxisTitle(xtitle, 1);
339  tmpHs->setAxisTitle(ytitle, 2);
340  tmpHs->getTH1()->SetOption("E1");
341  if (histName.Contains("time")) {
342  //int nbins = (intervalInSec_/23 > 0 ? intervalInSec_/23 : 40);
343  tmpHs->getTH1()->SetBins(intervalInSec_, 0.5, intervalInSec_ + 0.5);
344  tmpHs->setAxisTimeDisplay(1);
345  tmpHs->setAxisTimeFormat("%H:%M:%S", 1);
346  tmpHs->getTH1()->GetXaxis()->SetTimeOffset(daTime);
347  }
348  histName += "_all";
349  histTitle += " all";
350  tmpHs = iBooker.book1D(histName, histTitle, 40, 0.5, 40.5);
351  hs.push_back(tmpHs);
352  tmpHs->getTH1()->SetCanExtend(TH1::kAllAxes);
353  tmpHs->setAxisTitle(xtitle, 1);
354  tmpHs->setAxisTitle(ytitle, 2);
355  tmpHs->getTH1()->SetOption("E1");
356  if (histName.Contains("time")) {
357  //int nbins = (intervalInSec_/23 > 0 ? intervalInSec_/23 : 40);
358  tmpHs->getTH1()->SetBins(intervalInSec_, 0.5, intervalInSec_ + 0.5);
359  tmpHs->setAxisTimeDisplay(1);
360  tmpHs->setAxisTimeFormat("%H:%M:%S", 1);
361  tmpHs->getTH1()->GetXaxis()->SetTimeOffset(daTime);
362  }
363  }
364  }
365  }
366  assert(hs.size() == kNumHists);
367  assert(0 == strcmp(hs[k_sigmaY0_time]->getTH1()->GetName(), "sigmaY0_time"));
368  assert(0 == strcmp(hs[k_PVz_lumi_all]->getTH1()->GetName(), "PVz_lumi_all"));
369 
370  iBooker.setCurrentFolder(monitorName_ + "Fit");
371 
372  h_trk_z0 = iBooker.book1D("trk_z0", "z_{0} of selected tracks", dzBin_, dzMin_, dzMax_);
373  h_trk_z0->setAxisTitle("z_{0} of selected tracks (cm)", 1);
374 
375  h_vx_dz = iBooker.bookProfile(
376  "vx_dz", "v_{x} vs. dz of selected tracks", dzBin_, dzMin_, dzMax_, dxBin_, dxMin_, dxMax_, "");
377  h_vx_dz->setAxisTitle("dz (cm)", 1);
378  h_vx_dz->setAxisTitle("x coordinate of input track at PCA (cm)", 2);
379 
380  h_vy_dz = iBooker.bookProfile(
381  "vy_dz", "v_{y} vs. dz of selected tracks", dzBin_, dzMin_, dzMax_, dxBin_, dxMin_, dxMax_, "");
382  h_vy_dz->setAxisTitle("dz (cm)", 1);
383  h_vy_dz->setAxisTitle("y coordinate of input track at PCA (cm)", 2);
384 
385  h_x0 = iBooker.book1D("BeamMonitorFeedBack_x0", "x coordinate of beam spot (Fit)", 100, -0.01, 0.01);
386  h_x0->setAxisTitle("x_{0} (cm)", 1);
387  h_x0->getTH1()->SetCanExtend(TH1::kAllAxes);
388 
389  h_y0 = iBooker.book1D("BeamMonitorFeedBack_y0", "y coordinate of beam spot (Fit)", 100, -0.01, 0.01);
390  h_y0->setAxisTitle("y_{0} (cm)", 1);
391  h_y0->getTH1()->SetCanExtend(TH1::kAllAxes);
392 
393  h_z0 = iBooker.book1D("BeamMonitorFeedBack_z0", "z coordinate of beam spot (Fit)", dzBin_, dzMin_, dzMax_);
394  h_z0->setAxisTitle("z_{0} (cm)", 1);
395  h_z0->getTH1()->SetCanExtend(TH1::kAllAxes);
396 
397  h_sigmaX0 = iBooker.book1D("BeamMonitorFeedBack_sigmaX0", "sigma x0 of beam spot (Fit)", 100, 0, 0.05);
398  h_sigmaX0->setAxisTitle("#sigma_{X_{0}} (cm)", 1);
399  h_sigmaX0->getTH1()->SetCanExtend(TH1::kAllAxes);
400 
401  h_sigmaY0 = iBooker.book1D("BeamMonitorFeedBack_sigmaY0", "sigma y0 of beam spot (Fit)", 100, 0, 0.05);
402  h_sigmaY0->setAxisTitle("#sigma_{Y_{0}} (cm)", 1);
403  h_sigmaY0->getTH1()->SetCanExtend(TH1::kAllAxes);
404 
405  h_sigmaZ0 = iBooker.book1D("BeamMonitorFeedBack_sigmaZ0", "sigma z0 of beam spot (Fit)", 100, 0, 10);
406  h_sigmaZ0->setAxisTitle("#sigma_{Z_{0}} (cm)", 1);
407  h_sigmaZ0->getTH1()->SetCanExtend(TH1::kAllAxes);
408 
409  // Histograms of all reco tracks (without cuts):
410  h_trkPt = iBooker.book1D("trkPt", "p_{T} of all reco'd tracks (no selection)", 200, 0., 50.);
411  h_trkPt->setAxisTitle("p_{T} (GeV/c)", 1);
412 
413  h_trkVz = iBooker.book1D("trkVz", "Z coordinate of PCA of all reco'd tracks (no selection)", dzBin_, dzMin_, dzMax_);
414  h_trkVz->setAxisTitle("V_{Z} (cm)", 1);
415 
416  cutFlowTable = iBooker.book1D("cutFlowTable", "Cut flow table of track selection", 9, 0, 9);
417 
418  // Results of previous good fit:
419  fitResults = iBooker.book2D("fitResults", "Results of previous good beam fit", 2, 0, 2, 8, 0, 8);
420  fitResults->setAxisTitle("Fitted Beam Spot (cm)", 1);
421  fitResults->setBinLabel(8, "x_{0}", 2);
422  fitResults->setBinLabel(7, "y_{0}", 2);
423  fitResults->setBinLabel(6, "z_{0}", 2);
424  fitResults->setBinLabel(5, "#sigma_{Z}", 2);
425  fitResults->setBinLabel(4, "#frac{dx}{dz} (rad)", 2);
426  fitResults->setBinLabel(3, "#frac{dy}{dz} (rad)", 2);
427  fitResults->setBinLabel(2, "#sigma_{X}", 2);
428  fitResults->setBinLabel(1, "#sigma_{Y}", 2);
429  fitResults->setBinLabel(1, "Mean", 1);
430  fitResults->setBinLabel(2, "Stat. Error", 1);
431  fitResults->getTH1()->SetOption("text");
432 
433  // Histos of PrimaryVertices:
434  iBooker.setCurrentFolder(monitorName_ + "PrimaryVertex");
435 
436  h_nVtx = iBooker.book1D("vtxNbr", "Reconstructed Vertices(non-fake) in all Event", 60, -0.5, 59.5);
437  h_nVtx->setAxisTitle("Num. of reco. vertices", 1);
438 
439  //For one Trigger only
440  h_nVtx_st = iBooker.book1D("vtxNbr_SelectedTriggers", "Reconstructed Vertices(non-fake) in Events", 60, -0.5, 59.5);
441  //h_nVtx_st->setAxisTitle("Num. of reco. vertices for Un-Prescaled Jet Trigger",1);
442 
443  // Monitor only the PV with highest sum pt of assoc. trks:
444  h_PVx[0] = iBooker.book1D("PVX", "x coordinate of Primary Vtx", 50, -0.01, 0.01);
445  h_PVx[0]->setAxisTitle("PVx (cm)", 1);
446  h_PVx[0]->getTH1()->SetCanExtend(TH1::kAllAxes);
447 
448  h_PVy[0] = iBooker.book1D("PVY", "y coordinate of Primary Vtx", 50, -0.01, 0.01);
449  h_PVy[0]->setAxisTitle("PVy (cm)", 1);
450  h_PVy[0]->getTH1()->SetCanExtend(TH1::kAllAxes);
451 
452  h_PVz[0] = iBooker.book1D("PVZ", "z coordinate of Primary Vtx", dzBin_, dzMin_, dzMax_);
453  h_PVz[0]->setAxisTitle("PVz (cm)", 1);
454 
455  h_PVx[1] = iBooker.book1D("PVXFit", "x coordinate of Primary Vtx (Last Fit)", 50, -0.01, 0.01);
456  h_PVx[1]->setAxisTitle("PVx (cm)", 1);
457  h_PVx[1]->getTH1()->SetCanExtend(TH1::kAllAxes);
458 
459  h_PVy[1] = iBooker.book1D("PVYFit", "y coordinate of Primary Vtx (Last Fit)", 50, -0.01, 0.01);
460  h_PVy[1]->setAxisTitle("PVy (cm)", 1);
461  h_PVy[1]->getTH1()->SetCanExtend(TH1::kAllAxes);
462 
463  h_PVz[1] = iBooker.book1D("PVZFit", "z coordinate of Primary Vtx (Last Fit)", dzBin_, dzMin_, dzMax_);
464  h_PVz[1]->setAxisTitle("PVz (cm)", 1);
465 
466  h_PVxz = iBooker.bookProfile("PVxz", "PVx vs. PVz", dzBin_ / 2, dzMin_, dzMax_, dxBin_ / 2, dxMin_, dxMax_, "");
467  h_PVxz->setAxisTitle("PVz (cm)", 1);
468  h_PVxz->setAxisTitle("PVx (cm)", 2);
469 
470  h_PVyz = iBooker.bookProfile("PVyz", "PVy vs. PVz", dzBin_ / 2, dzMin_, dzMax_, dxBin_ / 2, dxMin_, dxMax_, "");
471  h_PVyz->setAxisTitle("PVz (cm)", 1);
472  h_PVyz->setAxisTitle("PVy (cm)", 2);
473 
474  // Results of previous good fit:
475  pvResults = iBooker.book2D("pvResults", "Results of fitting Primary Vertices", 2, 0, 2, 6, 0, 6);
476  pvResults->setAxisTitle("Fitted Primary Vertex (cm)", 1);
477  pvResults->setBinLabel(6, "PVx", 2);
478  pvResults->setBinLabel(5, "PVy", 2);
479  pvResults->setBinLabel(4, "PVz", 2);
480  pvResults->setBinLabel(3, "#sigma_{X}", 2);
481  pvResults->setBinLabel(2, "#sigma_{Y}", 2);
482  pvResults->setBinLabel(1, "#sigma_{Z}", 2);
483  pvResults->setBinLabel(1, "Mean", 1);
484  pvResults->setBinLabel(2, "Stat. Error", 1);
485  pvResults->getTH1()->SetOption("text");
486 
487  // Summary plots:
488  iBooker.setCurrentFolder(monitorName_ + "EventInfo");
489 
490  reportSummary = iBooker.bookFloat("reportSummary");
491  if (reportSummary)
492  reportSummary->Fill(std::numeric_limits<double>::quiet_NaN());
493 
494  char histo[20];
495  iBooker.setCurrentFolder(monitorName_ + "EventInfo/reportSummaryContents");
496  for (int n = 0; n < nFitElements_; n++) {
497  switch (n) {
498  case 0:
499  sprintf(histo, "x0_status");
500  break;
501  case 1:
502  sprintf(histo, "y0_status");
503  break;
504  case 2:
505  sprintf(histo, "z0_status");
506  break;
507  }
509  }
510 
511  for (int i = 0; i < nFitElements_; i++) {
512  summaryContent_[i] = 0.;
513  reportSummaryContents[i]->Fill(std::numeric_limits<double>::quiet_NaN());
514  }
515 
516  iBooker.setCurrentFolder(monitorName_ + "EventInfo");
517 
518  reportSummaryMap = iBooker.book2D("reportSummaryMap", "Beam Spot Summary Map", 1, 0, 1, 3, 0, 3);
520  reportSummaryMap->setAxisTitle("Fitted Beam Spot", 2);
521  reportSummaryMap->setBinLabel(1, " ", 1);
522  reportSummaryMap->setBinLabel(1, "x_{0}", 2);
523  reportSummaryMap->setBinLabel(2, "y_{0}", 2);
524  reportSummaryMap->setBinLabel(3, "z_{0}", 2);
525  for (int i = 0; i < nFitElements_; i++) {
526  reportSummaryMap->setBinContent(1, i + 1, -1.);
527  }
528 }
529 
530 //--------------------------------------------------------
532  // start DB logger
533  DBloggerReturn_ = 0;
536  onlineDbService_->logger().logInfo() << "BeamMonitor::beginLuminosityBlock - LS: " << lumiSeg.luminosityBlock();
537  }
538 
539  int nthlumi = lumiSeg.luminosityBlock();
540  const edm::TimeValue_t fbegintimestamp = lumiSeg.beginTime().value();
541  const std::time_t ftmptime = fbegintimestamp >> 32;
542 
543  if (countLumi_ == 0 && (!processed_)) {
545  refBStime[0] = refPVtime[0] = ftmptime;
546  mapBeginBSLS[countLumi_] = nthlumi;
547  mapBeginPVLS[countLumi_] = nthlumi;
548  mapBeginBSTime[countLumi_] = ftmptime;
549  mapBeginPVTime[countLumi_] = ftmptime;
550  } //for the first record
551 
552  if (nthlumi > nextlumi_) {
553  if (processed_) {
554  countLumi_++;
555  //store here them will need when we remove the first one of Last N LS
556  mapBeginBSLS[countLumi_] = nthlumi;
557  mapBeginPVLS[countLumi_] = nthlumi;
558  mapBeginBSTime[countLumi_] = ftmptime;
559  mapBeginPVTime[countLumi_] = ftmptime;
560  } //processed passed but not the first lumi
561  if ((!processed_) && countLumi_ != 0) {
562  mapBeginBSLS[countLumi_] = nthlumi;
563  mapBeginPVLS[countLumi_] = nthlumi;
564  mapBeginBSTime[countLumi_] = ftmptime;
565  mapBeginPVTime[countLumi_] = ftmptime;
566  } //processed fails for last lumi
567  } //nthLumi > nextlumi
568 
569  if (StartAverage_) {
570  //Just Make sure it get rest
571  refBStime[0] = 0;
572  refPVtime[0] = 0;
573  beginLumiOfPVFit_ = 0;
574  beginLumiOfBSFit_ = 0;
575 
576  if (debug_)
577  edm::LogInfo("BeamMonitor") << " beginLuminosityBlock: Size of mapBeginBSLS before = " << mapBeginBSLS.size()
578  << endl;
579  if (nthlumi >
580  nextlumi_) { //this make sure that it does not take into account this lumi for fitting and only look forward for new lumi
581  //as countLumi also remains the same so map value get overwritten once return to normal running.
582  //even if few LS are misssing and DQM module do not sees them then it catchs up again
583  map<int, int>::iterator itbs = mapBeginBSLS.begin();
584  map<int, int>::iterator itpv = mapBeginPVLS.begin();
585  map<int, std::time_t>::iterator itbstime = mapBeginBSTime.begin();
586  map<int, std::time_t>::iterator itpvtime = mapBeginPVTime.begin();
587 
588  if (processed_) { // otherwise if false then LS range of fit get messed up because we don't remove trk/pvs but we remove LS begin value . This prevent it as it happened if LS is there but no event are processed for some reason
589  mapBeginBSLS.erase(itbs);
590  mapBeginPVLS.erase(itpv);
591  mapBeginBSTime.erase(itbstime);
592  mapBeginPVTime.erase(itpvtime);
593  }
594  /*//not sure if want this or not ??
595  map<int, int>::iterator itgapb=mapBeginBSLS.begin();
596  map<int, int>::iterator itgape=mapBeginBSLS.end(); itgape--;
597  countGapLumi_ = ( (itgape->second) - (itgapb->second) );
598  //if we see Gap more than then 2*resetNFitLumi !!!!!!!
599  //for example if 10-15 is fitted and if 16-25 are missing then we next fit will be for range 11-26 but BS can change in between
600  // so better start as fresh and reset everything like starting in the begining!
601  if(countGapLumi_ >= 2*resetFitNLumi_){RestartFitting(); mapBeginBSLS[countLumi_] = nthlumi;}
602  */
603  }
604 
605  if (debug_)
606  edm::LogInfo("BeamMonitor") << " beginLuminosityBlock:: Size of mapBeginBSLS After = " << mapBeginBSLS.size()
607  << endl;
608 
609  map<int, int>::iterator bbs = mapBeginBSLS.begin();
610  map<int, int>::iterator bpv = mapBeginPVLS.begin();
611  map<int, std::time_t>::iterator bbst = mapBeginBSTime.begin();
612  map<int, std::time_t>::iterator bpvt = mapBeginPVTime.begin();
613 
614  if (beginLumiOfPVFit_ == 0)
615  beginLumiOfPVFit_ = bpv->second; //new begin time after removing the LS
616  if (beginLumiOfBSFit_ == 0)
617  beginLumiOfBSFit_ = bbs->second;
618  if (refBStime[0] == 0)
619  refBStime[0] = bbst->second;
620  if (refPVtime[0] == 0)
621  refPVtime[0] = bpvt->second;
622 
623  } //same logic for average fit as above commented line
624 
625  map<int, std::time_t>::iterator nbbst = mapBeginBSTime.begin();
626  map<int, std::time_t>::iterator nbpvt = mapBeginPVTime.begin();
627 
628  if (onlineMode_ && (nthlumi < nextlumi_))
629  return;
630 
631  if (onlineMode_) {
632  if (nthlumi > nextlumi_) {
633  if (countLumi_ != 0 && processed_)
634  FitAndFill(lumiSeg, lastlumi_, nextlumi_, nthlumi);
635  nextlumi_ = nthlumi;
636  edm::LogInfo("BeamMonitor") << "beginLuminosityBlock:: Next Lumi to Fit: " << nextlumi_ << endl;
637  if ((StartAverage_) && refBStime[0] == 0)
638  refBStime[0] = nbbst->second;
639  if ((StartAverage_) && refPVtime[0] == 0)
640  refPVtime[0] = nbpvt->second;
641  }
642  } else {
643  if (processed_)
644  FitAndFill(lumiSeg, lastlumi_, nextlumi_, nthlumi);
645  nextlumi_ = nthlumi;
646  edm::LogInfo("BeamMonitor") << " beginLuminosityBlock:: Next Lumi to Fit: " << nextlumi_ << endl;
647  if ((StartAverage_) && refBStime[0] == 0)
648  refBStime[0] = nbbst->second;
649  if ((StartAverage_) && refPVtime[0] == 0)
650  refPVtime[0] = nbpvt->second;
651  }
652 
653  //countLumi_++;
654  if (processed_)
655  processed_ = false;
656  edm::LogInfo("BeamMonitor") << " beginLuminosityBlock:: Begin of Lumi: " << nthlumi << endl;
657 }
658 
659 // ----------------------------------------------------------
660 void BeamMonitor::analyze(const Event& iEvent, const EventSetup& iSetup) {
661  const int nthlumi = iEvent.luminosityBlock();
662  if (onlineMode_ && (nthlumi < nextlumi_)) {
663  edm::LogInfo("BeamMonitor") << "analyze:: Spilt event from previous lumi section!" << std::endl;
664  return;
665  }
666  if (onlineMode_ && (nthlumi > nextlumi_)) {
667  edm::LogInfo("BeamMonitor") << "analyze:: Spilt event from next lumi section!!!" << std::endl;
668  return;
669  }
670 
671  countEvt_++;
672  theBeamFitter->readEvent(
673  iEvent); //Remember when track fitter read the event in the same place the PVFitter read the events !!!!!!!!!
674 
675  Handle<reco::BeamSpot> recoBeamSpotHandle;
676  iEvent.getByToken(bsSrc_, recoBeamSpotHandle);
677  refBS = *recoBeamSpotHandle;
678 
679  //------Cut Flow Table filled every event!--------------------------------------
680  {
681  // Make a copy of the cut flow table from the beam fitter.
682  auto tmphisto = static_cast<TH1F*>(theBeamFitter->getCutFlow());
683  cutFlowTable->getTH1()->SetBins(
684  tmphisto->GetNbinsX(), tmphisto->GetXaxis()->GetXmin(), tmphisto->GetXaxis()->GetXmax());
685  // Update the bin labels
686  if (countEvt_ == 1) // SetLabel just once
687  for (int n = 0; n < tmphisto->GetNbinsX(); n++)
688  cutFlowTable->setBinLabel(n + 1, tmphisto->GetXaxis()->GetBinLabel(n + 1), 1);
689  cutFlowTable->Reset();
690  cutFlowTable->getTH1()->Add(tmphisto);
691  }
692 
693  //----Reco tracks -------------------------------------
695  iEvent.getByToken(tracksLabel_, TrackCollection);
696  const reco::TrackCollection* tracks = TrackCollection.product();
697  for (reco::TrackCollection::const_iterator track = tracks->begin(); track != tracks->end(); ++track) {
698  h_trkPt->Fill(track->pt()); //no need to change here for average bs
699  h_trkVz->Fill(track->vz());
700  }
701 
702  //-------HLT Trigger --------------------------------
704  bool JetTrigPass = false;
705  if (iEvent.getByToken(hltSrc_, triggerResults)) {
706  const edm::TriggerNames& trigNames = iEvent.triggerNames(*triggerResults);
707  for (unsigned int i = 0; i < triggerResults->size(); i++) {
708  const std::string& trigName = trigNames.triggerName(i);
709 
710  if (JetTrigPass)
711  continue;
712 
713  for (size_t t = 0; t < jetTrigger_.size(); ++t) {
714  if (JetTrigPass)
715  continue;
716 
717  string string_search(jetTrigger_[t]);
718  size_t found = trigName.find(string_search);
719 
720  if (found != string::npos) {
721  int thisTrigger_ = trigNames.triggerIndex(trigName);
722  if (triggerResults->accept(thisTrigger_))
723  JetTrigPass = true;
724  } //if trigger found
725  } //for(t=0;..)
726  } //for(i=0; ..)
727  } //if trigger colleciton exist)
728 
729  //------ Primary Vertices-------
731 
732  if (iEvent.getByToken(pvSrc_, PVCollection)) {
733  int nPVcount = 0;
734  int nPVcount_ST = 0; //For Single Trigger(hence ST)
735 
736  for (reco::VertexCollection::const_iterator pv = PVCollection->begin(); pv != PVCollection->end(); ++pv) {
737  //--- vertex selection
738  if (pv->isFake() || pv->tracksSize() == 0)
739  continue;
740  nPVcount++; // count non fake pv:
741 
742  if (JetTrigPass)
743  nPVcount_ST++; //non-fake pv with a specific trigger
744 
745  if (pv->ndof() < minVtxNdf_ || (pv->ndof() + 3.) / pv->tracksSize() < 2 * minVtxWgt_)
746  continue;
747 
748  //Fill this map to store xyx for pv so that later we can remove the first one for run aver
749  mapPVx[countLumi_].push_back(pv->x());
750  mapPVy[countLumi_].push_back(pv->y());
751  mapPVz[countLumi_].push_back(pv->z());
752 
753  if (!StartAverage_) { //for first N LS
754  h_PVx[0]->Fill(pv->x());
755  h_PVy[0]->Fill(pv->y());
756  h_PVz[0]->Fill(pv->z());
757  h_PVxz->Fill(pv->z(), pv->x());
758  h_PVyz->Fill(pv->z(), pv->y());
759  } //for first N LiS
760  else {
761  h_PVxz->Fill(pv->z(), pv->x());
762  h_PVyz->Fill(pv->z(), pv->y());
763  }
764 
765  } //loop over pvs
766 
767  h_nVtx->Fill(nPVcount * 1.); //no need to change it for average BS
768 
769  mapNPV[countLumi_].push_back((nPVcount_ST));
770 
771  if (!StartAverage_) {
772  h_nVtx_st->Fill(nPVcount_ST * 1.);
773  }
774 
775  } //if pv collection is availaable
776 
777  if (StartAverage_) {
778  map<int, std::vector<float> >::iterator itpvx = mapPVx.begin();
779  map<int, std::vector<float> >::iterator itpvy = mapPVy.begin();
780  map<int, std::vector<float> >::iterator itpvz = mapPVz.begin();
781 
782  map<int, std::vector<int> >::iterator itbspvinfo = mapNPV.begin();
783 
784  if ((int)mapPVx.size() > resetFitNLumi_) { //sometimes the events is not there but LS is there!
785  mapPVx.erase(itpvx);
786  mapPVy.erase(itpvy);
787  mapPVz.erase(itpvz);
788  mapNPV.erase(itbspvinfo);
789  } //loop over Last N lumi collected
790 
791  } //StartAverage==true
792 
793  processed_ = true;
794 }
795 
796 //--------------------------------------------------------
797 void BeamMonitor::endLuminosityBlock(const LuminosityBlock& lumiSeg, const EventSetup& iSetup) {
798  int nthlumi = lumiSeg.id().luminosityBlock();
799  edm::LogInfo("BeamMonitor") << "endLuminosityBlock:: Lumi of the last event before endLuminosityBlock: " << nthlumi
800  << endl;
801 
802  if (onlineMode_ && nthlumi < nextlumi_)
803  return;
804  const edm::TimeValue_t fendtimestamp = lumiSeg.endTime().value();
805  const std::time_t fendtime = fendtimestamp >> 32;
806  tmpTime = refBStime[1] = refPVtime[1] = fendtime;
807 
808  // end DB logger
810  onlineDbService_->logger().logInfo() << "BeamMonitor::endLuminosityBlock";
812  }
813 }
814 
815 //--------------------------------------------------------
816 void BeamMonitor::FitAndFill(const LuminosityBlock& lumiSeg, int& lastlumi, int& nextlumi, int& nthlumi) {
817  if (onlineMode_ && (nthlumi <= nextlumi))
818  return;
819 
820  //set the correct run number when no event in the LS for fake output
821  if ((processed_) && theBeamFitter->getRunNumber() != frun)
822  theBeamFitter->setRun(frun);
823 
824  int currentlumi = nextlumi;
825  edm::LogInfo("BeamMonitor") << "FitAndFill:: Lumi of the current fit: " << currentlumi << endl;
826  lastlumi = currentlumi;
827  endLumiOfBSFit_ = currentlumi;
828  endLumiOfPVFit_ = currentlumi;
829 
830  //---------Fix for Runninv average-------------
831  mapLSPVStoreSize[countLumi_] = theBeamFitter->getPVvectorSize();
832 
833  if (StartAverage_) {
834  std::map<int, std::size_t>::iterator rmLSPVi = mapLSPVStoreSize.begin();
835  size_t SizeToRemovePV = rmLSPVi->second;
836  for (std::map<int, std::size_t>::iterator rmLSPVe = mapLSPVStoreSize.end(); ++rmLSPVi != rmLSPVe;)
837  rmLSPVi->second -= SizeToRemovePV;
838 
839  theBeamFitter->resizePVvector(SizeToRemovePV);
840 
841  map<int, std::size_t>::iterator tmpItpv = mapLSPVStoreSize.begin();
842  mapLSPVStoreSize.erase(tmpItpv);
843  }
844  if (debug_)
845  edm::LogInfo("BeamMonitor") << "FitAndFill:: Size of thePVvector After removing the PVs = "
846  << theBeamFitter->getPVvectorSize() << endl;
847 
848  //lets filt the PV for GUI here: It was in analyzer in preivous versiton but moved here due to absence of event in some lumis, works OK
849  bool resetHistoFlag_ = false;
850  if ((int)mapPVx.size() >= resetFitNLumi_ && (StartAverage_)) {
851  h_PVx[0]->Reset();
852  h_PVy[0]->Reset();
853  h_PVz[0]->Reset();
854  h_nVtx_st->Reset();
855  resetHistoFlag_ = true;
856  }
857 
858  int MaxPVs = 0;
859  int countEvtLastNLS_ = 0;
860  int countTotPV_ = 0;
861 
862  std::map<int, std::vector<int> >::iterator mnpv = mapNPV.begin();
863  std::map<int, std::vector<float> >::iterator mpv2 = mapPVy.begin();
864  std::map<int, std::vector<float> >::iterator mpv3 = mapPVz.begin();
865 
866  for (std::map<int, std::vector<float> >::iterator mpv1 = mapPVx.begin(); mpv1 != mapPVx.end();
867  ++mpv1, ++mpv2, ++mpv3, ++mnpv) {
868  std::vector<float>::iterator mpvs2 = (mpv2->second).begin();
869  std::vector<float>::iterator mpvs3 = (mpv3->second).begin();
870  for (std::vector<float>::iterator mpvs1 = (mpv1->second).begin(); mpvs1 != (mpv1->second).end();
871  ++mpvs1, ++mpvs2, ++mpvs3) {
872  if (resetHistoFlag_) {
873  h_PVx[0]->Fill(*mpvs1); //these histogram are reset after StartAverage_ flag is ON
874  h_PVy[0]->Fill(*mpvs2);
875  h_PVz[0]->Fill(*mpvs3);
876  }
877  } //loop over second
878 
879  //Do the same here for nPV distr.
880  for (std::vector<int>::iterator mnpvs = (mnpv->second).begin(); mnpvs != (mnpv->second).end(); ++mnpvs) {
881  if ((*mnpvs > 0) && (resetHistoFlag_))
882  h_nVtx_st->Fill((*mnpvs) * (1.0));
883  countEvtLastNLS_++;
884  countTotPV_ += (*mnpvs);
885  if ((*mnpvs) > MaxPVs)
886  MaxPVs = (*mnpvs);
887  } //loop over second of mapNPV
888 
889  } //loop over last N lumis
890 
891  char tmpTitlePV[100];
892  sprintf(tmpTitlePV, "%s %i %s %i", "Num. of reco. vertices for LS: ", beginLumiOfPVFit_, " to ", endLumiOfPVFit_);
893  h_nVtx_st->setAxisTitle(tmpTitlePV, 1);
894 
895  std::vector<float> DipPVInfo_;
896  DipPVInfo_.clear();
897 
898  if (countTotPV_ != 0) {
899  DipPVInfo_.push_back((float)countEvtLastNLS_);
900  DipPVInfo_.push_back(h_nVtx_st->getMean());
901  DipPVInfo_.push_back(h_nVtx_st->getMeanError());
902  DipPVInfo_.push_back(h_nVtx_st->getRMS());
903  DipPVInfo_.push_back(h_nVtx_st->getRMSError());
904  DipPVInfo_.push_back((float)MaxPVs);
905  DipPVInfo_.push_back((float)countTotPV_);
906  MaxPVs = 0;
907  } else {
908  for (size_t i = 0; i < 7; i++) {
909  if (i > 0) {
910  DipPVInfo_.push_back(0.);
911  } else {
912  DipPVInfo_.push_back((float)countEvtLastNLS_);
913  }
914  }
915  }
916  theBeamFitter->SetPVInfo(DipPVInfo_);
917  countEvtLastNLS_ = 0;
918 
919  if (onlineMode_) { // filling LS gap
920  // FIXME: need to add protection for the case if the gap is at the resetting LS!
921  const int countLS_bs = hs[k_x0_lumi]->getTH1()->GetEntries();
922  const int countLS_pv = hs[k_PVx_lumi]->getTH1()->GetEntries();
923  edm::LogInfo("BeamMonitor") << "FitAndFill:: countLS_bs = " << countLS_bs << " ; countLS_pv = " << countLS_pv
924  << std::endl;
925  int LSgap_bs = currentlumi / fitNLumi_ - countLS_bs;
926  int LSgap_pv = currentlumi / fitPVNLumi_ - countLS_pv;
927  if (currentlumi % fitNLumi_ == 0)
928  LSgap_bs--;
929  if (currentlumi % fitPVNLumi_ == 0)
930  LSgap_pv--;
931  edm::LogInfo("BeamMonitor") << "FitAndFill:: LSgap_bs = " << LSgap_bs << " ; LSgap_pv = " << LSgap_pv << std::endl;
932  // filling previous fits if LS gap ever exists
933  for (int ig = 0; ig < LSgap_bs; ig++) {
934  hs[k_x0_lumi]->ShiftFillLast(0., 0., fitNLumi_); //x0 , x0err, fitNLumi_; see DQMCore....
935  hs[k_y0_lumi]->ShiftFillLast(0., 0., fitNLumi_);
936  hs[k_z0_lumi]->ShiftFillLast(0., 0., fitNLumi_);
937  hs[k_sigmaX0_lumi]->ShiftFillLast(0., 0., fitNLumi_);
938  hs[k_sigmaY0_lumi]->ShiftFillLast(0., 0., fitNLumi_);
939  hs[k_sigmaZ0_lumi]->ShiftFillLast(0., 0., fitNLumi_);
941  }
942  for (int ig = 0; ig < LSgap_pv; ig++) {
943  hs[k_PVx_lumi]->ShiftFillLast(0., 0., fitPVNLumi_);
944  hs[k_PVy_lumi]->ShiftFillLast(0., 0., fitPVNLumi_);
945  hs[k_PVz_lumi]->ShiftFillLast(0., 0., fitPVNLumi_);
946  }
947  const int previousLS = h_nTrk_lumi->getTH1()->GetEntries();
948  for (int i = 1; i < (currentlumi - previousLS);
949  i++) //if (current-previoius)= 1 then never go inside the for loop!!!!!!!!!!!
951  }
952 
953  edm::LogInfo("BeamMonitor") << "FitAndFill:: Time lapsed since last scroll = " << tmpTime - refTime << std::endl;
954 
955  if (testScroll(tmpTime, refTime)) {
956  scrollTH1(hs[k_x0_time]->getTH1(), refTime);
957  scrollTH1(hs[k_y0_time]->getTH1(), refTime);
958  scrollTH1(hs[k_z0_time]->getTH1(), refTime);
959  scrollTH1(hs[k_sigmaX0_time]->getTH1(), refTime);
960  scrollTH1(hs[k_sigmaY0_time]->getTH1(), refTime);
961  scrollTH1(hs[k_sigmaZ0_time]->getTH1(), refTime);
962  scrollTH1(hs[k_PVx_time]->getTH1(), refTime);
963  scrollTH1(hs[k_PVy_time]->getTH1(), refTime);
964  scrollTH1(hs[k_PVz_time]->getTH1(), refTime);
965  }
966 
967  bool doPVFit = false;
968 
969  if (fitPVNLumi_ > 0) {
970  if (onlineMode_) {
971  if (currentlumi % fitPVNLumi_ == 0)
972  doPVFit = true;
973  } else if (countLumi_ % fitPVNLumi_ == 0)
974  doPVFit = true;
975  } else
976  doPVFit = true;
977 
978  if (doPVFit) {
979  edm::LogInfo("BeamMonitor") << "FitAndFill:: Do PV Fitting for LS = " << beginLumiOfPVFit_ << " to "
980  << endLumiOfPVFit_ << std::endl;
981  // Primary Vertex Fit:
982  if (h_PVx[0]->getTH1()->GetEntries() > minNrVertices_) {
983  pvResults->Reset();
984  char tmpTitle[50];
985  sprintf(
986  tmpTitle, "%s %i %s %i", "Fitted Primary Vertex (cm) of LS: ", beginLumiOfPVFit_, " to ", endLumiOfPVFit_);
987  pvResults->setAxisTitle(tmpTitle, 1);
988 
989  std::unique_ptr<TF1> fgaus{new TF1("fgaus", "gaus")};
990  double mean, width, meanErr, widthErr;
991  fgaus->SetLineColor(4);
992  h_PVx[0]->getTH1()->Fit(fgaus.get(), "QLM0");
993  mean = fgaus->GetParameter(1);
994  width = fgaus->GetParameter(2);
995  meanErr = fgaus->GetParError(1);
996  widthErr = fgaus->GetParError(2);
997 
998  hs[k_PVx_lumi]->ShiftFillLast(mean, width, fitPVNLumi_);
999  hs[k_PVx_lumi_all]->setBinContent(currentlumi, mean);
1000  hs[k_PVx_lumi_all]->setBinError(currentlumi, width);
1001  int nthBin = tmpTime - refTime;
1002  if (nthBin < 0)
1003  edm::LogInfo("BeamMonitor") << "FitAndFill:: Event time outside current range of time histograms!"
1004  << std::endl;
1005  if (nthBin > 0) {
1006  hs[k_PVx_time]->setBinContent(nthBin, mean);
1007  hs[k_PVx_time]->setBinError(nthBin, width);
1008  }
1009  int jthBin = tmpTime - startTime;
1010  if (jthBin > 0) {
1011  hs[k_PVx_time_all]->setBinContent(jthBin, mean);
1012  hs[k_PVx_time_all]->setBinError(jthBin, width);
1013  }
1014  pvResults->setBinContent(1, 6, mean);
1015  pvResults->setBinContent(1, 3, width);
1016  pvResults->setBinContent(2, 6, meanErr);
1017  pvResults->setBinContent(2, 3, widthErr);
1018 
1019  {
1020  // snap shot of the fit
1021  auto tmphisto = h_PVx[0]->getTH1F();
1022  h_PVx[1]->getTH1()->SetBins(
1023  tmphisto->GetNbinsX(), tmphisto->GetXaxis()->GetXmin(), tmphisto->GetXaxis()->GetXmax());
1024  h_PVx[1]->Reset();
1025  h_PVx[1]->getTH1()->Add(tmphisto);
1026  h_PVx[1]->getTH1()->Fit(fgaus.get(), "QLM");
1027  }
1028 
1029  h_PVy[0]->getTH1()->Fit(fgaus.get(), "QLM0");
1030  mean = fgaus->GetParameter(1);
1031  width = fgaus->GetParameter(2);
1032  meanErr = fgaus->GetParError(1);
1033  widthErr = fgaus->GetParError(2);
1034  hs[k_PVy_lumi]->ShiftFillLast(mean, width, fitPVNLumi_);
1035  hs[k_PVy_lumi_all]->setBinContent(currentlumi, mean);
1036  hs[k_PVy_lumi_all]->setBinError(currentlumi, width);
1037  if (nthBin > 0) {
1038  hs[k_PVy_time]->setBinContent(nthBin, mean);
1039  hs[k_PVy_time]->setBinError(nthBin, width);
1040  }
1041  if (jthBin > 0) {
1042  hs[k_PVy_time_all]->setBinContent(jthBin, mean);
1043  hs[k_PVy_time_all]->setBinError(jthBin, width);
1044  }
1045  pvResults->setBinContent(1, 5, mean);
1046  pvResults->setBinContent(1, 2, width);
1047  pvResults->setBinContent(2, 5, meanErr);
1048  pvResults->setBinContent(2, 2, widthErr);
1049  // snap shot of the fit
1050  {
1051  auto tmphisto = h_PVy[0]->getTH1F();
1052  h_PVy[1]->getTH1()->SetBins(
1053  tmphisto->GetNbinsX(), tmphisto->GetXaxis()->GetXmin(), tmphisto->GetXaxis()->GetXmax());
1054  h_PVy[1]->Reset();
1055  h_PVy[1]->getTH1()->Add(tmphisto);
1056  h_PVy[1]->getTH1()->Fit(fgaus.get(), "QLM");
1057  }
1058 
1059  h_PVz[0]->getTH1()->Fit(fgaus.get(), "QLM0");
1060  mean = fgaus->GetParameter(1);
1061  width = fgaus->GetParameter(2);
1062  meanErr = fgaus->GetParError(1);
1063  widthErr = fgaus->GetParError(2);
1064  hs[k_PVz_lumi]->ShiftFillLast(mean, width, fitPVNLumi_);
1065  hs[k_PVz_lumi_all]->setBinContent(currentlumi, mean);
1066  hs[k_PVz_lumi_all]->setBinError(currentlumi, width);
1067  if (nthBin > 0) {
1068  hs[k_PVz_time]->setBinContent(nthBin, mean);
1069  hs[k_PVz_time]->setBinError(nthBin, width);
1070  }
1071  if (jthBin > 0) {
1072  hs[k_PVz_time_all]->setBinContent(jthBin, mean);
1073  hs[k_PVz_time_all]->setBinError(jthBin, width);
1074  }
1075  pvResults->setBinContent(1, 4, mean);
1076  pvResults->setBinContent(1, 1, width);
1077  pvResults->setBinContent(2, 4, meanErr);
1078  pvResults->setBinContent(2, 1, widthErr);
1079  {
1080  // snap shot of the fit
1081  auto tmphisto = h_PVz[0]->getTH1F();
1082  h_PVz[1]->getTH1()->SetBins(
1083  tmphisto->GetNbinsX(), tmphisto->GetXaxis()->GetXmin(), tmphisto->GetXaxis()->GetXmax());
1084  h_PVz[1]->Reset();
1085  h_PVz[1]->getTH1()->Add(tmphisto);
1086  h_PVz[1]->getTH1()->Fit(fgaus.get(), "QLM");
1087  }
1088  } //check if found min Vertices
1089  } //do PVfit
1090 
1091  if ((resetPVNLumi_ > 0 && countLumi_ == resetPVNLumi_) || StartAverage_) {
1092  beginLumiOfPVFit_ = 0;
1093  refPVtime[0] = 0;
1094  }
1095 
1096  //---------Readjustment of theBSvector, RefTime, beginLSofFit---------
1097  vector<BSTrkParameters> theBSvector1 = theBeamFitter->getBSvector();
1098  mapLSBSTrkSize[countLumi_] = (theBSvector1.size());
1099  size_t PreviousRecords = 0; //needed to fill nth record of tracks in GUI
1100 
1101  if (StartAverage_) {
1102  size_t SizeToRemove = 0;
1103  std::map<int, std::size_t>::iterator rmls = mapLSBSTrkSize.begin();
1104  SizeToRemove = rmls->second;
1105  if (debug_)
1106  edm::LogInfo("BeamMonitor") << " The size to remove is = " << SizeToRemove << endl;
1107  int changedAfterThis = 0;
1108  for (std::map<int, std::size_t>::iterator rmLS = mapLSBSTrkSize.begin(); rmLS != mapLSBSTrkSize.end();
1109  ++rmLS, ++changedAfterThis) {
1110  if (changedAfterThis > 0) {
1111  (rmLS->second) = (rmLS->second) - SizeToRemove;
1112  if ((mapLSBSTrkSize.size() - (size_t)changedAfterThis) == 2)
1113  PreviousRecords = (rmLS->second);
1114  }
1115  }
1116 
1117  theBeamFitter->resizeBSvector(SizeToRemove);
1118 
1119  map<int, std::size_t>::iterator tmpIt = mapLSBSTrkSize.begin();
1120  mapLSBSTrkSize.erase(tmpIt);
1121 
1122  std::pair<int, int> checkfitLS = theBeamFitter->getFitLSRange();
1123  std::pair<time_t, time_t> checkfitTime = theBeamFitter->getRefTime();
1124  theBeamFitter->setFitLSRange(beginLumiOfBSFit_, checkfitLS.second);
1125  theBeamFitter->setRefTime(refBStime[0], checkfitTime.second);
1126  }
1127 
1128  //Fill the track for this fit
1129  vector<BSTrkParameters> theBSvector = theBeamFitter->getBSvector();
1130  h_nTrk_lumi->ShiftFillLast(theBSvector.size());
1131 
1132  if (debug_)
1133  edm::LogInfo("BeamMonitor") << "FitAndFill:: Size of theBSViector.size() After =" << theBSvector.size() << endl;
1134 
1135  bool countFitting = false;
1136  if (theBSvector.size() >= PreviousRecords && theBSvector.size() >= min_Ntrks_) {
1137  countFitting = true;
1138  }
1139 
1140  //---Fix for Cut Flow Table for Running average in a same way//the previous code has problem for resetting!!!
1141  mapLSCF[countLumi_] = *theBeamFitter->getCutFlow();
1142  if (StartAverage_ && !mapLSCF.empty()) {
1143  const TH1F& cutFlowToSubtract = mapLSCF.begin()->second;
1144  // Subtract the last cut flow from all of the others.
1145  std::map<int, TH1F>::iterator cf = mapLSCF.begin();
1146  // Start on second entry
1147  for (; cf != mapLSCF.end(); ++cf) {
1148  cf->second.Add(&cutFlowToSubtract, -1);
1149  }
1150  theBeamFitter->subtractFromCutFlow(&cutFlowToSubtract);
1151  // Remove the obsolete lumi section
1152  mapLSCF.erase(mapLSCF.begin());
1153  }
1154 
1155  if (resetHistos_) {
1156  h_d0_phi0->Reset();
1157  h_vx_vy->Reset();
1158  h_vx_dz->Reset();
1159  h_vy_dz->Reset();
1160  h_trk_z0->Reset();
1161  resetHistos_ = false;
1162  }
1163 
1164  if (StartAverage_)
1165  nthBSTrk_ = PreviousRecords; //after average proccess is ON//for 2-6 LS fit PreviousRecords is size from 2-5 LS
1166 
1167  edm::LogInfo("BeamMonitor") << " The Previous Recored for this fit is =" << nthBSTrk_ << endl;
1168 
1169  unsigned int itrk = 0;
1170  for (vector<BSTrkParameters>::const_iterator BSTrk = theBSvector.begin(); BSTrk != theBSvector.end();
1171  ++BSTrk, ++itrk) {
1172  if (itrk >= nthBSTrk_) { //fill for this record only !!
1173  h_d0_phi0->Fill(BSTrk->phi0(), BSTrk->d0());
1174  double vx = BSTrk->vx();
1175  double vy = BSTrk->vy();
1176  double z0 = BSTrk->z0();
1177  h_vx_vy->Fill(vx, vy);
1178  h_vx_dz->Fill(z0, vx);
1179  h_vy_dz->Fill(z0, vy);
1180  h_trk_z0->Fill(z0);
1181  }
1182  }
1183 
1184  nthBSTrk_ = theBSvector.size(); // keep track of num of tracks filled so far
1185 
1186  edm::LogInfo("BeamMonitor") << " The Current Recored for this fit is =" << nthBSTrk_ << endl;
1187 
1188  if (countFitting)
1189  edm::LogInfo("BeamMonitor") << "FitAndFill:: Num of tracks collected = " << nthBSTrk_ << endl;
1190 
1191  if (fitNLumi_ > 0) {
1192  if (onlineMode_) {
1193  if (currentlumi % fitNLumi_ != 0) {
1194  // for (std::map<TString,MonitorElement*>::iterator itAll = hs.begin();
1195  // itAll != hs.end(); ++itAll) {
1196  // if ((*itAll).first.Contains("all")) {
1197  // (*itAll).second->setBinContent(currentlumi,0.);
1198  // (*itAll).second->setBinError(currentlumi,0.);
1199  // }
1200  // }
1201  return;
1202  }
1203  } else if (countLumi_ % fitNLumi_ != 0)
1204  return;
1205  }
1206 
1207  edm::LogInfo("BeamMonitor") << "FitAndFill:: [DebugTime] refBStime[0] = " << refBStime[0]
1208  << "; address = " << &refBStime[0] << std::endl;
1209  edm::LogInfo("BeamMonitor") << "FitAndFill:: [DebugTime] refBStime[1] = " << refBStime[1]
1210  << "; address = " << &refBStime[1] << std::endl;
1211 
1212  //Fill for all LS even if fit fails
1213  h_nVtx_lumi->ShiftFillLast((theBeamFitter->getPVvectorSize()), 0., fitNLumi_);
1214  h_nVtx_lumi_all->setBinContent(currentlumi, (theBeamFitter->getPVvectorSize()));
1215 
1216  if (countFitting) {
1217  nFits_++;
1218  std::pair<int, int> fitLS = theBeamFitter->getFitLSRange();
1219  edm::LogInfo("BeamMonitor") << "FitAndFill:: [BeamFitter] Do BeamSpot Fit for LS = " << fitLS.first << " to "
1220  << fitLS.second << std::endl;
1221  edm::LogInfo("BeamMonitor") << "FitAndFill:: [BeamMonitor] Do BeamSpot Fit for LS = " << beginLumiOfBSFit_
1222  << " to " << endLumiOfBSFit_ << std::endl;
1223 
1224  //Now Run the PV and Track Fitter over the collected tracks and pvs
1225  if (theBeamFitter->runPVandTrkFitter()) {
1226  reco::BeamSpot bs = theBeamFitter->getBeamSpot();
1227  if (bs.type() > 0) // with good beamwidth fit
1228  preBS = bs; // cache good fit results
1229 
1230  edm::LogInfo("BeamMonitor") << "\n RESULTS OF DEFAULT FIT:" << endl;
1231  edm::LogInfo("BeamMonitor") << bs << endl;
1232  edm::LogInfo("BeamMonitor") << "[BeamFitter] fitting done \n" << endl;
1233 
1234  hs[k_x0_lumi]->ShiftFillLast(bs.x0(), bs.x0Error(), fitNLumi_);
1235  hs[k_y0_lumi]->ShiftFillLast(bs.y0(), bs.y0Error(), fitNLumi_);
1236  hs[k_z0_lumi]->ShiftFillLast(bs.z0(), bs.z0Error(), fitNLumi_);
1237  hs[k_sigmaX0_lumi]->ShiftFillLast(bs.BeamWidthX(), bs.BeamWidthXError(), fitNLumi_);
1238  hs[k_sigmaY0_lumi]->ShiftFillLast(bs.BeamWidthY(), bs.BeamWidthYError(), fitNLumi_);
1239  hs[k_sigmaZ0_lumi]->ShiftFillLast(bs.sigmaZ(), bs.sigmaZ0Error(), fitNLumi_);
1240  hs[k_x0_lumi_all]->setBinContent(currentlumi, bs.x0());
1241  hs[k_x0_lumi_all]->setBinError(currentlumi, bs.x0Error());
1242  hs[k_y0_lumi_all]->setBinContent(currentlumi, bs.y0());
1243  hs[k_y0_lumi_all]->setBinError(currentlumi, bs.y0Error());
1244  hs[k_z0_lumi_all]->setBinContent(currentlumi, bs.z0());
1245  hs[k_z0_lumi_all]->setBinError(currentlumi, bs.z0Error());
1246  hs[k_sigmaX0_lumi_all]->setBinContent(currentlumi, bs.BeamWidthX());
1247  hs[k_sigmaX0_lumi_all]->setBinError(currentlumi, bs.BeamWidthXError());
1248  hs[k_sigmaY0_lumi_all]->setBinContent(currentlumi, bs.BeamWidthY());
1249  hs[k_sigmaY0_lumi_all]->setBinError(currentlumi, bs.BeamWidthYError());
1250  hs[k_sigmaZ0_lumi_all]->setBinContent(currentlumi, bs.sigmaZ());
1251  hs[k_sigmaZ0_lumi_all]->setBinError(currentlumi, bs.sigmaZ0Error());
1252 
1253  int nthBin = tmpTime - refTime;
1254  if (nthBin > 0) {
1255  hs[k_x0_time]->setBinContent(nthBin, bs.x0());
1256  hs[k_y0_time]->setBinContent(nthBin, bs.y0());
1257  hs[k_z0_time]->setBinContent(nthBin, bs.z0());
1258  hs[k_sigmaX0_time]->setBinContent(nthBin, bs.BeamWidthX());
1259  hs[k_sigmaY0_time]->setBinContent(nthBin, bs.BeamWidthY());
1260  hs[k_sigmaZ0_time]->setBinContent(nthBin, bs.sigmaZ());
1261  hs[k_x0_time]->setBinError(nthBin, bs.x0Error());
1262  hs[k_y0_time]->setBinError(nthBin, bs.y0Error());
1263  hs[k_z0_time]->setBinError(nthBin, bs.z0Error());
1264  hs[k_sigmaX0_time]->setBinError(nthBin, bs.BeamWidthXError());
1265  hs[k_sigmaY0_time]->setBinError(nthBin, bs.BeamWidthYError());
1266  hs[k_sigmaZ0_time]->setBinError(nthBin, bs.sigmaZ0Error());
1267  }
1268 
1269  int jthBin = tmpTime - startTime;
1270  if (jthBin > 0) {
1271  hs[k_x0_time_all]->setBinContent(jthBin, bs.x0());
1272  hs[k_y0_time_all]->setBinContent(jthBin, bs.y0());
1273  hs[k_z0_time_all]->setBinContent(jthBin, bs.z0());
1274  hs[k_sigmaX0_time_all]->setBinContent(jthBin, bs.BeamWidthX());
1275  hs[k_sigmaY0_time_all]->setBinContent(jthBin, bs.BeamWidthY());
1276  hs[k_sigmaZ0_time_all]->setBinContent(jthBin, bs.sigmaZ());
1277  hs[k_x0_time_all]->setBinError(jthBin, bs.x0Error());
1278  hs[k_y0_time_all]->setBinError(jthBin, bs.y0Error());
1279  hs[k_z0_time_all]->setBinError(jthBin, bs.z0Error());
1280  hs[k_sigmaX0_time_all]->setBinError(jthBin, bs.BeamWidthXError());
1281  hs[k_sigmaY0_time_all]->setBinError(jthBin, bs.BeamWidthYError());
1282  hs[k_sigmaZ0_time_all]->setBinError(jthBin, bs.sigmaZ0Error());
1283  }
1284 
1285  h_x0->Fill(bs.x0());
1286  h_y0->Fill(bs.y0());
1287  h_z0->Fill(bs.z0());
1288  if (bs.type() > 0) { // with good beamwidth fit
1289  h_sigmaX0->Fill(bs.BeamWidthX());
1290  h_sigmaY0->Fill(bs.BeamWidthY());
1291  }
1292  h_sigmaZ0->Fill(bs.sigmaZ());
1293 
1294  if (nthBSTrk_ >= 2 * min_Ntrks_) {
1295  double amp = std::sqrt(bs.x0() * bs.x0() + bs.y0() * bs.y0());
1296  double alpha = std::atan2(bs.y0(), bs.x0());
1297  std::unique_ptr<TF1> f1{new TF1("f1", "[0]*sin(x-[1])", -3.14, 3.14)};
1298  f1->SetParameters(amp, alpha);
1299  f1->SetParLimits(0, amp - 0.1, amp + 0.1);
1300  f1->SetParLimits(1, alpha - 0.577, alpha + 0.577);
1301  f1->SetLineColor(4);
1302  h_d0_phi0->getTProfile()->Fit(f1.get(), "QR");
1303 
1304  double mean = bs.z0();
1305  double width = bs.sigmaZ();
1306  std::unique_ptr<TF1> fgaus{new TF1("fgaus", "gaus")};
1307  fgaus->SetParameters(mean, width);
1308  fgaus->SetLineColor(4);
1309  h_trk_z0->getTH1()->Fit(fgaus.get(), "QLRM", "", mean - 3 * width, mean + 3 * width);
1310  }
1311 
1312  fitResults->Reset();
1313  std::pair<int, int> LSRange = theBeamFitter->getFitLSRange();
1314  char tmpTitle[50];
1315  sprintf(tmpTitle, "%s %i %s %i", "Fitted Beam Spot (cm) of LS: ", LSRange.first, " to ", LSRange.second);
1316  fitResults->setAxisTitle(tmpTitle, 1);
1317  fitResults->setBinContent(1, 8, bs.x0());
1318  fitResults->setBinContent(1, 7, bs.y0());
1319  fitResults->setBinContent(1, 6, bs.z0());
1320  fitResults->setBinContent(1, 5, bs.sigmaZ());
1321  fitResults->setBinContent(1, 4, bs.dxdz());
1322  fitResults->setBinContent(1, 3, bs.dydz());
1323  if (bs.type() > 0) { // with good beamwidth fit
1324  fitResults->setBinContent(1, 2, bs.BeamWidthX());
1325  fitResults->setBinContent(1, 1, bs.BeamWidthY());
1326  } else { // fill cached widths
1329  }
1330 
1331  fitResults->setBinContent(2, 8, bs.x0Error());
1332  fitResults->setBinContent(2, 7, bs.y0Error());
1333  fitResults->setBinContent(2, 6, bs.z0Error());
1334  fitResults->setBinContent(2, 5, bs.sigmaZ0Error());
1335  fitResults->setBinContent(2, 4, bs.dxdzError());
1336  fitResults->setBinContent(2, 3, bs.dydzError());
1337  if (bs.type() > 0) { // with good beamwidth fit
1338  fitResults->setBinContent(2, 2, bs.BeamWidthXError());
1339  fitResults->setBinContent(2, 1, bs.BeamWidthYError());
1340  } else { // fill cached width errors
1343  }
1344 
1345  // count good fit
1346  // if (std::fabs(refBS.x0()-bs.x0())/bs.x0Error() < deltaSigCut_) { // disabled temporarily
1347  summaryContent_[0] += 1.;
1348  // }
1349  // if (std::fabs(refBS.y0()-bs.y0())/bs.y0Error() < deltaSigCut_) { // disabled temporarily
1350  summaryContent_[1] += 1.;
1351  // }
1352  // if (std::fabs(refBS.z0()-bs.z0())/bs.z0Error() < deltaSigCut_) { // disabled temporarily
1353  summaryContent_[2] += 1.;
1354  // }
1355 
1356  // Create the BeamSpotOnlineObjects object
1357  BeamSpotOnlineObjects* BSOnline = new BeamSpotOnlineObjects();
1358  BSOnline->SetLastAnalyzedLumi(LSRange.second);
1359  BSOnline->SetLastAnalyzedRun(theBeamFitter->getRunNumber());
1360  BSOnline->SetLastAnalyzedFill(0); // To be updated with correct LHC Fill number
1361  BSOnline->SetPosition(bs.x0(), bs.y0(), bs.z0());
1362  BSOnline->SetSigmaZ(bs.sigmaZ());
1363  BSOnline->SetBeamWidthX(bs.BeamWidthX());
1364  BSOnline->SetBeamWidthY(bs.BeamWidthY());
1365  BSOnline->SetBeamWidthXError(bs.BeamWidthXError());
1366  BSOnline->SetBeamWidthYError(bs.BeamWidthYError());
1367  BSOnline->Setdxdz(bs.dxdz());
1368  BSOnline->Setdydz(bs.dydz());
1369  BSOnline->SetType(bs.type());
1370  BSOnline->SetEmittanceX(bs.emittanceX());
1371  BSOnline->SetEmittanceY(bs.emittanceY());
1372  BSOnline->SetBetaStar(bs.betaStar());
1373  for (int i = 0; i < 7; ++i) {
1374  for (int j = 0; j < 7; ++j) {
1375  BSOnline->SetCovariance(i, j, bs.covariance(i, j));
1376  }
1377  }
1378  BSOnline->SetNumTracks(theBeamFitter->getNTracks());
1379  BSOnline->SetNumPVs(theBeamFitter->getNPVs());
1380  BSOnline->SetUsedEvents((int)DipPVInfo_[0]);
1381  BSOnline->SetMeanPV(DipPVInfo_[1]);
1382  BSOnline->SetMeanErrorPV(DipPVInfo_[2]);
1383  BSOnline->SetRmsPV(DipPVInfo_[3]);
1384  BSOnline->SetRmsErrorPV(DipPVInfo_[4]);
1385  BSOnline->SetMaxPVs((int)DipPVInfo_[5]);
1386  auto creationTime =
1387  std::chrono::duration_cast<std::chrono::microseconds>(std::chrono::system_clock::now().time_since_epoch())
1388  .count();
1389  BSOnline->SetCreationTime(creationTime);
1390 
1391  std::pair<time_t, time_t> timeForDIP = theBeamFitter->getRefTime();
1392  BSOnline->SetStartTimeStamp(timeForDIP.first);
1393  BSOnline->SetStartTime(getGMTstring(timeForDIP.first));
1394  BSOnline->SetEndTimeStamp(timeForDIP.second);
1395  BSOnline->SetEndTime(getGMTstring(timeForDIP.second));
1396 
1397  edm::LogInfo("BeamMonitor") << "FitAndFill::[PayloadCreation] BeamSpotOnline object created: \n" << std::endl;
1398  edm::LogInfo("BeamMonitor") << *BSOnline << std::endl;
1399 
1400  // Create the payload for BeamSpotOnlineObjects object
1401  if (onlineDbService_.isAvailable()) {
1402  edm::LogInfo("BeamMonitor") << "FitAndFill::[PayloadCreation] onlineDbService available \n" << std::endl;
1403  onlineDbService_->logger().logInfo() << "BeamMonitor::FitAndFill - Lumi of the current fit: " << currentlumi;
1405  << "BeamMonitor::FitAndFill - Do PV Fitting for LS = " << beginLumiOfPVFit_ << " to " << endLumiOfPVFit_;
1407  << "BeamMonitor::FitAndFill - [BeamFitter] Do BeamSpot Fit for LS = " << LSRange.first << " to "
1408  << LSRange.second;
1410  << "BeamMonitor::FitAndFill - [BeamMonitor] Do BeamSpot Fit for LS = " << beginLumiOfBSFit_ << " to "
1411  << endLumiOfBSFit_;
1412  onlineDbService_->logger().logInfo() << "BeamMonitor - RESULTS OF DEFAULT FIT:";
1413  onlineDbService_->logger().logInfo() << "\n" << bs;
1415  << "BeamMonitor::FitAndFill - [PayloadCreation] BeamSpotOnline object created:";
1416  onlineDbService_->logger().logInfo() << "\n" << *BSOnline;
1417  onlineDbService_->logger().logInfo() << "BeamMonitor - Additional parameters for DIP:";
1418  onlineDbService_->logger().logInfo() << "Events used in the fit: " << BSOnline->GetUsedEvents();
1419  onlineDbService_->logger().logInfo() << "Mean PV : " << BSOnline->GetMeanPV();
1420  onlineDbService_->logger().logInfo() << "Mean PV Error : " << BSOnline->GetMeanErrorPV();
1421  onlineDbService_->logger().logInfo() << "Rms PV : " << BSOnline->GetRmsPV();
1422  onlineDbService_->logger().logInfo() << "Rms PV Error : " << BSOnline->GetRmsErrorPV();
1423  onlineDbService_->logger().logInfo() << "Max PVs : " << BSOnline->GetMaxPVs();
1424  onlineDbService_->logger().logInfo() << "StartTime : " << BSOnline->GetStartTime();
1425  onlineDbService_->logger().logInfo() << "StartTimeStamp : " << BSOnline->GetStartTimeStamp();
1426  onlineDbService_->logger().logInfo() << "EndTime : " << BSOnline->GetEndTime();
1427  onlineDbService_->logger().logInfo() << "EndTimeStamp : " << BSOnline->GetEndTimeStamp();
1428  onlineDbService_->logger().logInfo() << "BeamMonitor::FitAndFill - [PayloadCreation] onlineDbService available";
1430  << "BeamMonitor::FitAndFill - [PayloadCreation] SetCreationTime: " << creationTime
1431  << " [epoch in microseconds]";
1432  try {
1435  << "BeamMonitor::FitAndFill - [PayloadCreation] writeForNextLumisection executed correctly";
1436  } catch (const std::exception& e) {
1437  onlineDbService_->logger().logError() << "BeamMonitor - Error writing record: " << recordName_
1438  << " for Run: " << frun << " - Lumi: " << LSRange.second;
1439  onlineDbService_->logger().logError() << "Error is: " << e.what();
1440  onlineDbService_->logger().logError() << "RESULTS OF DEFAULT FIT WAS:";
1441  onlineDbService_->logger().logError() << "\n" << bs;
1442  DBloggerReturn_ = 2;
1443  }
1444  }
1445  edm::LogInfo("BeamMonitor") << "FitAndFill::[PayloadCreation] BeamSpotOnline payload created \n" << std::endl;
1446 
1447  } //if (theBeamFitter->runPVandTrkFitter())
1448  else { // beam fit fails
1449  reco::BeamSpot bs = theBeamFitter->getBeamSpot();
1450  edm::LogInfo("BeamMonitor") << "FitAndFill:: [BeamMonitor] Beam fit fails!!! \n" << endl;
1451  edm::LogInfo("BeamMonitor") << "FitAndFill:: [BeamMonitor] Output beam spot for DIP \n" << endl;
1452  edm::LogInfo("BeamMonitor") << bs << endl;
1453 
1454  if (onlineDbService_.isAvailable()) {
1455  onlineDbService_->logger().logInfo() << "BeamMonitor::FitAndFill - Beam fit fails!!!";
1456  onlineDbService_->logger().logInfo() << "BeamMonitor::FitAndFill - Output beam spot for DIP";
1457  onlineDbService_->logger().logInfo() << "\n" << bs;
1458  DBloggerReturn_ = 2;
1459  }
1460 
1461  hs[k_sigmaX0_lumi]->ShiftFillLast(bs.BeamWidthX(), bs.BeamWidthXError(), fitNLumi_);
1462  hs[k_sigmaY0_lumi]->ShiftFillLast(bs.BeamWidthY(), bs.BeamWidthYError(), fitNLumi_);
1463  hs[k_sigmaZ0_lumi]->ShiftFillLast(bs.sigmaZ(), bs.sigmaZ0Error(), fitNLumi_);
1464  hs[k_x0_lumi]->ShiftFillLast(bs.x0(), bs.x0Error(), fitNLumi_);
1465  hs[k_y0_lumi]->ShiftFillLast(bs.y0(), bs.y0Error(), fitNLumi_);
1466  hs[k_z0_lumi]->ShiftFillLast(bs.z0(), bs.z0Error(), fitNLumi_);
1467  } // end of beam fit fails
1468 
1469  } //-------- end of countFitting------------------------------------------
1470  else { // no fit
1471  // Overwrite Fit LS and fit time when no event processed or no track selected
1473  theBeamFitter->setRefTime(refBStime[0], refBStime[1]);
1474  if (theBeamFitter->runPVandTrkFitter()) {
1475  } // Dump fake beam spot for DIP
1476  reco::BeamSpot bs = theBeamFitter->getBeamSpot();
1477  edm::LogInfo("BeamMonitor") << "FitAndFill:: [BeamMonitor] No fitting \n" << endl;
1478  edm::LogInfo("BeamMonitor") << "FitAndFill:: [BeamMonitor] Output fake beam spot for DIP \n" << endl;
1479  edm::LogInfo("BeamMonitor") << bs << endl;
1480 
1481  if (onlineDbService_.isAvailable()) {
1482  onlineDbService_->logger().logInfo() << "BeamMonitor::FitAndFill - No fitting";
1483  onlineDbService_->logger().logInfo() << "BeamMonitor::FitAndFill - Output fake beam spot for DIP";
1484  onlineDbService_->logger().logInfo() << "\n" << bs;
1485  DBloggerReturn_ = 2;
1486  }
1487 
1488  hs[k_sigmaX0_lumi]->ShiftFillLast(bs.BeamWidthX(), bs.BeamWidthXError(), fitNLumi_);
1489  hs[k_sigmaY0_lumi]->ShiftFillLast(bs.BeamWidthY(), bs.BeamWidthYError(), fitNLumi_);
1490  hs[k_sigmaZ0_lumi]->ShiftFillLast(bs.sigmaZ(), bs.sigmaZ0Error(), fitNLumi_);
1491  hs[k_x0_lumi]->ShiftFillLast(bs.x0(), bs.x0Error(), fitNLumi_);
1492  hs[k_y0_lumi]->ShiftFillLast(bs.y0(), bs.y0Error(), fitNLumi_);
1493  hs[k_z0_lumi]->ShiftFillLast(bs.z0(), bs.z0Error(), fitNLumi_);
1494  }
1495 
1496  // Fill summary report
1497  if (countFitting) {
1498  for (int n = 0; n < nFitElements_; n++) {
1500  }
1501 
1502  summarySum_ = 0;
1503  for (int ii = 0; ii < nFitElements_; ii++) {
1505  }
1507  if (reportSummary)
1509 
1510  for (int bi = 0; bi < nFitElements_; bi++) {
1511  reportSummaryMap->setBinContent(1, bi + 1, summaryContent_[bi] / (float)nFits_);
1512  }
1513  }
1514 
1515  if ((resetFitNLumi_ > 0 &&
1516  ((onlineMode_ &&
1517  countLumi_ == resetFitNLumi_) || //OR it should be currentLumi_ (if in sequence then does not mattar)
1518  (!onlineMode_ && countLumi_ == resetFitNLumi_))) ||
1519  (StartAverage_)) {
1520  edm::LogInfo("BeamMonitor") << "FitAndFill:: The flag is ON for running average Beam Spot fit" << endl;
1521  StartAverage_ = true;
1522  firstAverageFit_++;
1523  resetHistos_ = true;
1524  nthBSTrk_ = 0;
1525  beginLumiOfBSFit_ = 0;
1526  refBStime[0] = 0;
1527  }
1528 }
1529 
1530 //--------------------------------------------------------
1532  if (debug_)
1533  edm::LogInfo("BeamMonitor")
1534  << " RestartingFitting:: Restart Beami everything to a fresh start !!! because Gap is > 10 LS" << endl;
1535  //track based fit reset here
1536  resetHistos_ = true;
1537  nthBSTrk_ = 0;
1538  theBeamFitter->resetTrkVector();
1539  theBeamFitter->resetLSRange();
1540  theBeamFitter->resetRefTime();
1541  theBeamFitter->resetPVFitter();
1542  theBeamFitter->resetCutFlow();
1543  beginLumiOfBSFit_ = 0;
1544  refBStime[0] = 0;
1545  //pv based fit iis reset here
1546  h_PVx[0]->Reset();
1547  h_PVy[0]->Reset();
1548  h_PVz[0]->Reset();
1549  beginLumiOfPVFit_ = 0;
1550  refPVtime[0] = 0;
1551  //Clear all the Maps here
1552  mapPVx.clear();
1553  mapPVy.clear();
1554  mapPVz.clear();
1555  mapNPV.clear();
1556  mapBeginBSLS.clear();
1557  mapBeginPVLS.clear();
1558  mapBeginBSTime.clear();
1559  mapBeginPVTime.clear();
1560  mapLSBSTrkSize.clear();
1561  mapLSPVStoreSize.clear();
1562  mapLSCF.clear();
1563  countGapLumi_ = 0;
1564  countLumi_ = 0;
1565  StartAverage_ = false;
1566 }
1567 
1568 //-------------------------------------------------------
1570  if (debug_)
1571  edm::LogInfo("BeamMonitor") << "dqmEndRun:: Clearing all the Maps " << endl;
1572  //Clear all the Maps here
1573  mapPVx.clear();
1574  mapPVy.clear();
1575  mapPVz.clear();
1576  mapNPV.clear();
1577  mapBeginBSLS.clear();
1578  mapBeginPVLS.clear();
1579  mapBeginBSTime.clear();
1580  mapBeginPVTime.clear();
1581  mapLSBSTrkSize.clear();
1582  mapLSPVStoreSize.clear();
1583  mapLSCF.clear();
1584 
1587  }
1588 }
1589 //--------------------------------------------------------
1590 void BeamMonitor::scrollTH1(TH1* h, time_t ref) {
1591  char offsetTime[64];
1592  formatFitTime(offsetTime, ref);
1593  TDatime da(offsetTime);
1594  if (lastNZbin > 0) {
1595  double val = h->GetBinContent(lastNZbin);
1596  double valErr = h->GetBinError(lastNZbin);
1597  h->Reset();
1598  h->GetXaxis()->SetTimeOffset(da.Convert(kTRUE));
1599  int bin = (lastNZbin > buffTime ? buffTime : 1);
1600  h->SetBinContent(bin, val);
1601  h->SetBinError(bin, valErr);
1602  } else {
1603  h->Reset();
1604  h->GetXaxis()->SetTimeOffset(da.Convert(kTRUE));
1605  }
1606 }
1607 
1608 //--------------------------------------------------------
1609 // Method to check whether to chane histogram time offset (forward only)
1610 bool BeamMonitor::testScroll(time_t& tmpTime_, time_t& refTime_) {
1611  bool scroll_ = false;
1612  if (tmpTime_ - refTime_ >= intervalInSec_) {
1613  scroll_ = true;
1614  edm::LogInfo("BeamMonitor") << "testScroll:: Reset Time Offset" << std::endl;
1616  for (int bin = intervalInSec_; bin >= 1; bin--) {
1617  if (hs[k_x0_time]->getBinContent(bin) > 0) {
1618  lastNZbin = bin;
1619  break;
1620  }
1621  }
1622  edm::LogInfo("BeamMonitor") << "testScroll:: Last non zero bin = " << lastNZbin << std::endl;
1623  if (tmpTime_ - refTime_ >= intervalInSec_ + lastNZbin) {
1624  edm::LogInfo("BeamMonitor") << "testScroll:: Time difference too large since last readout" << std::endl;
1625  lastNZbin = 0;
1626  refTime_ = tmpTime_ - buffTime;
1627  } else {
1628  edm::LogInfo("BeamMonitor") << "testScroll:: Offset to last record" << std::endl;
1629  int offset = ((lastNZbin > buffTime) ? (lastNZbin - buffTime) : (lastNZbin - 1));
1630  refTime_ += offset;
1631  }
1632  }
1633  return scroll_;
1634 }
1635 
1637 
1638 // Local Variables:
1639 // show-trailing-whitespace: t
1640 // truncate-lines: t
1641 // End:
BeamMonitor::recordName_
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