45 constexpr
int CEST(+2);
55 localTime = localtime(¤tTime);
56 int year = localTime->tm_year + 1900;
64 if (year >= 70 && year <= 137)
68 edm::LogError(
"BadTimeStamp") <<
"year reported is " << year <<
" !!" << std::endl;
73 "%4d-%02d-%02d %02d:%02d:%02d",
81 #ifdef STRIP_TRAILING_BLANKS_IN_TIMEZONE
82 unsigned int b = strlen(ts);
83 while (ts[--
b] ==
' ') {
95 : dxBin_(ps.getParameter<
int>(
"dxBin")),
96 dxMin_(ps.getParameter<double>(
"dxMin")),
97 dxMax_(ps.getParameter<double>(
"dxMax")),
99 vxBin_(ps.getParameter<
int>(
"vxBin")),
100 vxMin_(ps.getParameter<double>(
"vxMin")),
101 vxMax_(ps.getParameter<double>(
"vxMax")),
103 phiBin_(ps.getParameter<
int>(
"phiBin")),
104 phiMin_(ps.getParameter<double>(
"phiMin")),
105 phiMax_(ps.getParameter<double>(
"phiMax")),
107 dzBin_(ps.getParameter<
int>(
"dzBin")),
108 dzMin_(ps.getParameter<double>(
"dzMin")),
109 dzMax_(ps.getParameter<double>(
"dzMax")),
116 StartAverage_(
false),
220 edm::LogInfo(
"BeamMonitor") <<
"TimeOffset = " << eventTime << std::endl;
221 TDatime
da(eventTime);
226 auto daTime =
da.Convert(kTRUE);
233 h_nTrk_lumi = iBooker.
book1D(
"nTrk_lumi",
"Num. of selected tracks vs lumi (Fit)", 20, 0.5, 20.5);
238 h_nVtx_lumi = iBooker.
book1D(
"nVtx_lumi",
"Num. of selected Vtx vs lumi (Fit)", 20, 0.5, 20.5);
242 h_nVtx_lumi_all = iBooker.
book1D(
"nVtx_lumi_all",
"Num. of selected Vtx vs lumi (Fit) all", 20, 0.5, 20.5);
260 TDatime*
da =
new TDatime();
261 gStyle->SetTimeOffset(
da->Convert(kTRUE));
265 string coord[nvar_] = {
"x",
"y",
"z",
"sigmaX",
"sigmaY",
"sigmaZ"};
266 string label[nvar_] = {
267 "x_{0} (cm)",
"y_{0} (cm)",
"z_{0} (cm)",
"#sigma_{X_{0}} (cm)",
"#sigma_{Y_{0}} (cm)",
"#sigma_{Z_{0}} (cm)"};
269 hs.reserve(kNumHists);
270 for (
int i = 0;
i < 4;
i++) {
272 for (
int ic = 0; ic < nvar_; ++ic) {
273 TString histName(coord[ic]);
278 bool createHisto =
true;
281 histName +=
"0_time";
284 histTitle +=
" coordinate of beam spot vs time (Fit)";
291 histName.Insert(0,
"PV");
294 histTitle +=
" position of primary vtx vs lumi";
297 ytitle +=
" #pm #sigma_{PV";
306 histName.Insert(0,
"PV");
309 histTitle +=
" position of primary vtx vs time";
312 ytitle +=
" #pm #sigma_{PV";
319 histName +=
"0_lumi";
322 histTitle +=
" coordinate of beam spot vs lumi (Fit)";
328 edm::LogInfo(
"BeamMonitor") <<
"hitsName = " << histName <<
"; histTitle = " <<
histTitle << std::endl;
331 tmpHs->setAxisTitle(
xtitle, 1);
332 tmpHs->setAxisTitle(
ytitle, 2);
333 tmpHs->getTH1()->SetOption(
"E1");
334 if (histName.Contains(
"time")) {
337 tmpHs->setAxisTimeDisplay(1);
338 tmpHs->setAxisTimeFormat(
"%H:%M:%S", 1);
339 tmpHs->getTH1()->GetXaxis()->SetTimeOffset(daTime);
345 tmpHs->getTH1()->SetCanExtend(TH1::kAllAxes);
346 tmpHs->setAxisTitle(
xtitle, 1);
347 tmpHs->setAxisTitle(
ytitle, 2);
348 tmpHs->getTH1()->SetOption(
"E1");
349 if (histName.Contains(
"time")) {
352 tmpHs->setAxisTimeDisplay(1);
353 tmpHs->setAxisTimeFormat(
"%H:%M:%S", 1);
354 tmpHs->getTH1()->GetXaxis()->SetTimeOffset(daTime);
360 assert(0 == strcmp(
hs[k_sigmaY0_time]->getTH1()->GetName(),
"sigmaY0_time"));
361 assert(0 == strcmp(
hs[k_PVz_lumi_all]->getTH1()->GetName(),
"PVz_lumi_all"));
378 h_x0 = iBooker.
book1D(
"BeamMonitorFeedBack_x0",
"x coordinate of beam spot (Fit)", 100, -0.01, 0.01);
382 h_y0 = iBooker.
book1D(
"BeamMonitorFeedBack_y0",
"y coordinate of beam spot (Fit)", 100, -0.01, 0.01);
390 h_sigmaX0 = iBooker.
book1D(
"BeamMonitorFeedBack_sigmaX0",
"sigma x0 of beam spot (Fit)", 100, 0, 0.05);
394 h_sigmaY0 = iBooker.
book1D(
"BeamMonitorFeedBack_sigmaY0",
"sigma y0 of beam spot (Fit)", 100, 0, 0.05);
398 h_sigmaZ0 = iBooker.
book1D(
"BeamMonitorFeedBack_sigmaZ0",
"sigma z0 of beam spot (Fit)", 100, 0, 10);
403 h_trkPt = iBooker.
book1D(
"trkPt",
"p_{T} of all reco'd tracks (no selection)", 200, 0., 50.);
409 cutFlowTable = iBooker.
book1D(
"cutFlowTable",
"Cut flow table of track selection", 9, 0, 9);
412 fitResults = iBooker.
book2D(
"fitResults",
"Results of previous good beam fit", 2, 0, 2, 8, 0, 8);
429 h_nVtx = iBooker.
book1D(
"vtxNbr",
"Reconstructed Vertices(non-fake) in all Event", 60, -0.5, 59.5);
433 h_nVtx_st = iBooker.
book1D(
"vtxNbr_SelectedTriggers",
"Reconstructed Vertices(non-fake) in Events", 60, -0.5, 59.5);
437 h_PVx[0] = iBooker.
book1D(
"PVX",
"x coordinate of Primary Vtx", 50, -0.01, 0.01);
441 h_PVy[0] = iBooker.
book1D(
"PVY",
"y coordinate of Primary Vtx", 50, -0.01, 0.01);
448 h_PVx[1] = iBooker.
book1D(
"PVXFit",
"x coordinate of Primary Vtx (Last Fit)", 50, -0.01, 0.01);
452 h_PVy[1] = iBooker.
book1D(
"PVYFit",
"y coordinate of Primary Vtx (Last Fit)", 50, -0.01, 0.01);
468 pvResults = iBooker.
book2D(
"pvResults",
"Results of fitting Primary Vertices", 2, 0, 2, 6, 0, 6);
492 sprintf(
histo,
"x0_status");
495 sprintf(
histo,
"y0_status");
498 sprintf(
histo,
"z0_status");
534 const std::time_t ftmptime = fbegintimestamp >> 32;
578 map<int, std::time_t>::iterator itbstime =
mapBeginBSTime.begin();
579 map<int, std::time_t>::iterator itpvtime =
mapBeginPVTime.begin();
649 edm::LogInfo(
"BeamMonitor") <<
" beginLuminosityBlock:: Begin of Lumi: " << nthlumi << endl;
654 const int nthlumi =
iEvent.luminosityBlock();
656 edm::LogInfo(
"BeamMonitor") <<
"analyze:: Spilt event from previous lumi section!" << std::endl;
660 edm::LogInfo(
"BeamMonitor") <<
"analyze:: Spilt event from next lumi section!!!" << std::endl;
670 refBS = *recoBeamSpotHandle;
675 auto tmphisto = static_cast<TH1F*>(
theBeamFitter->getCutFlow());
677 tmphisto->GetNbinsX(), tmphisto->GetXaxis()->GetXmin(), tmphisto->GetXaxis()->GetXmax());
680 for (
int n = 0;
n < tmphisto->GetNbinsX();
n++)
697 bool JetTrigPass =
false;
713 if (
found != string::npos) {
731 if (
pv->isFake() ||
pv->tracksSize() == 0)
771 map<int, std::vector<float> >::iterator itpvx =
mapPVx.begin();
772 map<int, std::vector<float> >::iterator itpvy =
mapPVy.begin();
773 map<int, std::vector<float> >::iterator itpvz =
mapPVz.begin();
775 map<int, std::vector<int> >::iterator itbspvinfo =
mapNPV.begin();
792 edm::LogInfo(
"BeamMonitor") <<
"endLuminosityBlock:: Lumi of the last event before endLuminosityBlock: " << nthlumi
798 const std::time_t fendtime = fendtimestamp >> 32;
817 int currentlumi = nextlumi;
818 edm::LogInfo(
"BeamMonitor") <<
"FitAndFill:: Lumi of the current fit: " << currentlumi << endl;
819 lastlumi = currentlumi;
828 size_t SizeToRemovePV = rmLSPVi->second;
829 for (std::map<int, std::size_t>::iterator rmLSPVe =
mapLSPVStoreSize.end(); ++rmLSPVi != rmLSPVe;)
830 rmLSPVi->second -= SizeToRemovePV;
838 edm::LogInfo(
"BeamMonitor") <<
"FitAndFill:: Size of thePVvector After removing the PVs = "
842 bool resetHistoFlag_ =
false;
848 resetHistoFlag_ =
true;
852 int countEvtLastNLS_ = 0;
855 std::map<int, std::vector<int> >::iterator mnpv =
mapNPV.begin();
856 std::map<int, std::vector<float> >::iterator mpv2 =
mapPVy.begin();
857 std::map<int, std::vector<float> >::iterator mpv3 =
mapPVz.begin();
860 ++mpv1, ++mpv2, ++mpv3, ++mnpv) {
861 std::vector<float>::iterator mpvs2 = (mpv2->second).begin();
862 std::vector<float>::iterator mpvs3 = (mpv3->second).begin();
863 for (std::vector<float>::iterator mpvs1 = (mpv1->second).begin(); mpvs1 != (mpv1->second).
end();
864 ++mpvs1, ++mpvs2, ++mpvs3) {
865 if (resetHistoFlag_) {
873 for (std::vector<int>::iterator mnpvs = (mnpv->second).begin(); mnpvs != (mnpv->second).
end(); ++mnpvs) {
874 if ((*mnpvs > 0) && (resetHistoFlag_))
877 countTotPV_ += (*mnpvs);
878 if ((*mnpvs) > MaxPVs)
884 char tmpTitlePV[100];
888 std::vector<float> DipPVInfo_;
891 if (countTotPV_ != 0) {
892 DipPVInfo_.push_back((
float)countEvtLastNLS_);
897 DipPVInfo_.push_back((
float)MaxPVs);
898 DipPVInfo_.push_back((
float)countTotPV_);
901 for (
size_t i = 0;
i < 7;
i++) {
903 DipPVInfo_.push_back(0.);
905 DipPVInfo_.push_back((
float)countEvtLastNLS_);
910 countEvtLastNLS_ = 0;
914 const int countLS_bs =
hs[k_x0_lumi]->getTH1()->GetEntries();
915 const int countLS_pv =
hs[k_PVx_lumi]->getTH1()->GetEntries();
916 edm::LogInfo(
"BeamMonitor") <<
"FitAndFill:: countLS_bs = " << countLS_bs <<
" ; countLS_pv = " << countLS_pv
918 int LSgap_bs = currentlumi /
fitNLumi_ - countLS_bs;
919 int LSgap_pv = currentlumi /
fitPVNLumi_ - countLS_pv;
924 edm::LogInfo(
"BeamMonitor") <<
"FitAndFill:: LSgap_bs = " << LSgap_bs <<
" ; LSgap_pv = " << LSgap_pv << std::endl;
926 for (
int ig = 0; ig < LSgap_bs; ig++) {
930 hs[k_sigmaX0_lumi]->ShiftFillLast(0., 0.,
fitNLumi_);
931 hs[k_sigmaY0_lumi]->ShiftFillLast(0., 0.,
fitNLumi_);
932 hs[k_sigmaZ0_lumi]->ShiftFillLast(0., 0.,
fitNLumi_);
935 for (
int ig = 0; ig < LSgap_pv; ig++) {
941 for (
int i = 1;
i < (currentlumi - previousLS);
960 bool doPVFit =
false;
982 std::unique_ptr<TF1> fgaus{
new TF1(
"fgaus",
"gaus")};
984 fgaus->SetLineColor(4);
986 mean = fgaus->GetParameter(1);
987 width = fgaus->GetParameter(2);
988 meanErr = fgaus->GetParError(1);
989 widthErr = fgaus->GetParError(2);
992 hs[k_PVx_lumi_all]->setBinContent(currentlumi,
mean);
993 hs[k_PVx_lumi_all]->setBinError(currentlumi,
width);
996 edm::LogInfo(
"BeamMonitor") <<
"FitAndFill:: Event time outside current range of time histograms!"
999 hs[k_PVx_time]->setBinContent(nthBin,
mean);
1000 hs[k_PVx_time]->setBinError(nthBin,
width);
1004 hs[k_PVx_time_all]->setBinContent(jthBin,
mean);
1005 hs[k_PVx_time_all]->setBinError(jthBin,
width);
1016 tmphisto->GetNbinsX(), tmphisto->GetXaxis()->GetXmin(), tmphisto->GetXaxis()->GetXmax());
1023 mean = fgaus->GetParameter(1);
1024 width = fgaus->GetParameter(2);
1025 meanErr = fgaus->GetParError(1);
1026 widthErr = fgaus->GetParError(2);
1028 hs[k_PVy_lumi_all]->setBinContent(currentlumi,
mean);
1029 hs[k_PVy_lumi_all]->setBinError(currentlumi,
width);
1031 hs[k_PVy_time]->setBinContent(nthBin,
mean);
1032 hs[k_PVy_time]->setBinError(nthBin,
width);
1035 hs[k_PVy_time_all]->setBinContent(jthBin,
mean);
1036 hs[k_PVy_time_all]->setBinError(jthBin,
width);
1046 tmphisto->GetNbinsX(), tmphisto->GetXaxis()->GetXmin(), tmphisto->GetXaxis()->GetXmax());
1053 mean = fgaus->GetParameter(1);
1054 width = fgaus->GetParameter(2);
1055 meanErr = fgaus->GetParError(1);
1056 widthErr = fgaus->GetParError(2);
1058 hs[k_PVz_lumi_all]->setBinContent(currentlumi,
mean);
1059 hs[k_PVz_lumi_all]->setBinError(currentlumi,
width);
1061 hs[k_PVz_time]->setBinContent(nthBin,
mean);
1062 hs[k_PVz_time]->setBinError(nthBin,
width);
1065 hs[k_PVz_time_all]->setBinContent(jthBin,
mean);
1066 hs[k_PVz_time_all]->setBinError(jthBin,
width);
1076 tmphisto->GetNbinsX(), tmphisto->GetXaxis()->GetXmin(), tmphisto->GetXaxis()->GetXmax());
1090 vector<BSTrkParameters> theBSvector1 =
theBeamFitter->getBSvector();
1092 size_t PreviousRecords = 0;
1095 size_t SizeToRemove = 0;
1096 std::map<int, std::size_t>::iterator rmls =
mapLSBSTrkSize.begin();
1097 SizeToRemove = rmls->second;
1099 edm::LogInfo(
"BeamMonitor") <<
" The size to remove is = " << SizeToRemove << endl;
1100 int changedAfterThis = 0;
1102 ++rmLS, ++changedAfterThis) {
1103 if (changedAfterThis > 0) {
1104 (rmLS->second) = (rmLS->second) - SizeToRemove;
1106 PreviousRecords = (rmLS->second);
1115 std::pair<int, int> checkfitLS =
theBeamFitter->getFitLSRange();
1116 std::pair<time_t, time_t> checkfitTime =
theBeamFitter->getRefTime();
1122 vector<BSTrkParameters> theBSvector =
theBeamFitter->getBSvector();
1126 edm::LogInfo(
"BeamMonitor") <<
"FitAndFill:: Size of theBSViector.size() After =" << theBSvector.size() << endl;
1128 bool countFitting =
false;
1129 if (theBSvector.size() >= PreviousRecords && theBSvector.size() >=
min_Ntrks_) {
1130 countFitting =
true;
1136 const TH1F& cutFlowToSubtract =
mapLSCF.begin()->second;
1138 std::map<int, TH1F>::iterator cf =
mapLSCF.begin();
1140 for (; cf !=
mapLSCF.end(); ++cf) {
1141 cf->second.Add(&cutFlowToSubtract, -1);
1162 unsigned int itrk = 0;
1163 for (vector<BSTrkParameters>::const_iterator BSTrk = theBSvector.begin(); BSTrk != theBSvector.end();
1167 double vx = BSTrk->vx();
1168 double vy = BSTrk->vy();
1169 double z0 = BSTrk->z0();
1201 <<
"; address = " << &
refBStime[0] << std::endl;
1203 <<
"; address = " << &
refBStime[1] << std::endl;
1212 edm::LogInfo(
"BeamMonitor") <<
"FitAndFill:: [BeamFitter] Do BeamSpot Fit for LS = " << fitLS.first <<
" to "
1213 << fitLS.second << std::endl;
1223 edm::LogInfo(
"BeamMonitor") <<
"\n RESULTS OF DEFAULT FIT:" << endl;
1225 edm::LogInfo(
"BeamMonitor") <<
"[BeamFitter] fitting done \n" << endl;
1230 hs[k_sigmaX0_lumi]->ShiftFillLast(
bs.BeamWidthX(),
bs.BeamWidthXError(),
fitNLumi_);
1231 hs[k_sigmaY0_lumi]->ShiftFillLast(
bs.BeamWidthY(),
bs.BeamWidthYError(),
fitNLumi_);
1232 hs[k_sigmaZ0_lumi]->ShiftFillLast(
bs.sigmaZ(),
bs.sigmaZ0Error(),
fitNLumi_);
1233 hs[k_x0_lumi_all]->setBinContent(currentlumi,
bs.x0());
1234 hs[k_x0_lumi_all]->setBinError(currentlumi,
bs.x0Error());
1235 hs[k_y0_lumi_all]->setBinContent(currentlumi,
bs.y0());
1236 hs[k_y0_lumi_all]->setBinError(currentlumi,
bs.y0Error());
1237 hs[k_z0_lumi_all]->setBinContent(currentlumi,
bs.z0());
1238 hs[k_z0_lumi_all]->setBinError(currentlumi,
bs.z0Error());
1239 hs[k_sigmaX0_lumi_all]->setBinContent(currentlumi,
bs.BeamWidthX());
1240 hs[k_sigmaX0_lumi_all]->setBinError(currentlumi,
bs.BeamWidthXError());
1241 hs[k_sigmaY0_lumi_all]->setBinContent(currentlumi,
bs.BeamWidthY());
1242 hs[k_sigmaY0_lumi_all]->setBinError(currentlumi,
bs.BeamWidthYError());
1243 hs[k_sigmaZ0_lumi_all]->setBinContent(currentlumi,
bs.sigmaZ());
1244 hs[k_sigmaZ0_lumi_all]->setBinError(currentlumi,
bs.sigmaZ0Error());
1248 hs[k_x0_time]->setBinContent(nthBin,
bs.x0());
1249 hs[k_y0_time]->setBinContent(nthBin,
bs.y0());
1250 hs[k_z0_time]->setBinContent(nthBin,
bs.z0());
1251 hs[k_sigmaX0_time]->setBinContent(nthBin,
bs.BeamWidthX());
1252 hs[k_sigmaY0_time]->setBinContent(nthBin,
bs.BeamWidthY());
1253 hs[k_sigmaZ0_time]->setBinContent(nthBin,
bs.sigmaZ());
1254 hs[k_x0_time]->setBinError(nthBin,
bs.x0Error());
1255 hs[k_y0_time]->setBinError(nthBin,
bs.y0Error());
1256 hs[k_z0_time]->setBinError(nthBin,
bs.z0Error());
1257 hs[k_sigmaX0_time]->setBinError(nthBin,
bs.BeamWidthXError());
1258 hs[k_sigmaY0_time]->setBinError(nthBin,
bs.BeamWidthYError());
1259 hs[k_sigmaZ0_time]->setBinError(nthBin,
bs.sigmaZ0Error());
1264 hs[k_x0_time_all]->setBinContent(jthBin,
bs.x0());
1265 hs[k_y0_time_all]->setBinContent(jthBin,
bs.y0());
1266 hs[k_z0_time_all]->setBinContent(jthBin,
bs.z0());
1267 hs[k_sigmaX0_time_all]->setBinContent(jthBin,
bs.BeamWidthX());
1268 hs[k_sigmaY0_time_all]->setBinContent(jthBin,
bs.BeamWidthY());
1269 hs[k_sigmaZ0_time_all]->setBinContent(jthBin,
bs.sigmaZ());
1270 hs[k_x0_time_all]->setBinError(jthBin,
bs.x0Error());
1271 hs[k_y0_time_all]->setBinError(jthBin,
bs.y0Error());
1272 hs[k_z0_time_all]->setBinError(jthBin,
bs.z0Error());
1273 hs[k_sigmaX0_time_all]->setBinError(jthBin,
bs.BeamWidthXError());
1274 hs[k_sigmaY0_time_all]->setBinError(jthBin,
bs.BeamWidthYError());
1275 hs[k_sigmaZ0_time_all]->setBinError(jthBin,
bs.sigmaZ0Error());
1281 if (
bs.type() > 0) {
1289 double alpha = std::atan2(
bs.y0(),
bs.x0());
1290 std::unique_ptr<TF1>
f1{
new TF1(
"f1",
"[0]*sin(x-[1])", -3.14, 3.14)};
1291 f1->SetParameters(amp,
alpha);
1292 f1->SetParLimits(0, amp - 0.1, amp + 0.1);
1294 f1->SetLineColor(4);
1299 std::unique_ptr<TF1> fgaus{
new TF1(
"fgaus",
"gaus")};
1301 fgaus->SetLineColor(4);
1306 std::pair<int, int> LSRange =
theBeamFitter->getFitLSRange();
1308 sprintf(tmpTitle,
"%s %i %s %i",
"Fitted Beam Spot (cm) of LS: ", LSRange.first,
" to ", LSRange.second);
1316 if (
bs.type() > 0) {
1330 if (
bs.type() > 0) {
1366 for (
int i = 0;
i < 7; ++
i) {
1367 for (
int j = 0;
j < 7; ++
j) {
1378 edm::LogInfo(
"BeamMonitor") <<
"FitAndFill::[PayloadCreation] BeamSpotOnline object created: \n" << std::endl;
1383 edm::LogInfo(
"BeamMonitor") <<
"FitAndFill::[PayloadCreation] onlineDbService available \n" << std::endl;
1388 <<
"BeamMonitor::FitAndFill - [BeamFitter] Do BeamSpot Fit for LS = " << fitLS.first <<
" to "
1391 <<
"BeamMonitor::FitAndFill - [BeamMonitor] Do BeamSpot Fit for LS = " <<
beginLumiOfBSFit_ <<
" to "
1396 <<
"BeamMonitor::FitAndFill - [PayloadCreation] BeamSpotOnline object created:";
1400 <<
"BeamMonitor::FitAndFill - [PayloadCreation] SetCreationTime: " <<
creationTime
1401 <<
" [epoch in microseconds]";
1405 <<
"BeamMonitor::FitAndFill - [PayloadCreation] writeForNextLumisection executed correctly";
1408 <<
" for Run: " <<
frun <<
" - Lumi: " << fitLS.second;
1415 edm::LogInfo(
"BeamMonitor") <<
"FitAndFill::[PayloadCreation] BeamSpotOnline payload created \n" << std::endl;
1420 edm::LogInfo(
"BeamMonitor") <<
"FitAndFill:: [BeamMonitor] Beam fit fails!!! \n" << endl;
1421 edm::LogInfo(
"BeamMonitor") <<
"FitAndFill:: [BeamMonitor] Output beam spot for DIP \n" << endl;
1431 hs[k_sigmaX0_lumi]->ShiftFillLast(
bs.BeamWidthX(),
bs.BeamWidthXError(),
fitNLumi_);
1432 hs[k_sigmaY0_lumi]->ShiftFillLast(
bs.BeamWidthY(),
bs.BeamWidthYError(),
fitNLumi_);
1433 hs[k_sigmaZ0_lumi]->ShiftFillLast(
bs.sigmaZ(),
bs.sigmaZ0Error(),
fitNLumi_);
1447 edm::LogInfo(
"BeamMonitor") <<
"FitAndFill:: [BeamMonitor] No fitting \n" << endl;
1448 edm::LogInfo(
"BeamMonitor") <<
"FitAndFill:: [BeamMonitor] Output fake beam spot for DIP \n" << endl;
1458 hs[k_sigmaX0_lumi]->ShiftFillLast(
bs.BeamWidthX(),
bs.BeamWidthXError(),
fitNLumi_);
1459 hs[k_sigmaY0_lumi]->ShiftFillLast(
bs.BeamWidthY(),
bs.BeamWidthYError(),
fitNLumi_);
1460 hs[k_sigmaZ0_lumi]->ShiftFillLast(
bs.sigmaZ(),
bs.sigmaZ0Error(),
fitNLumi_);
1490 edm::LogInfo(
"BeamMonitor") <<
"FitAndFill:: The flag is ON for running average Beam Spot fit" << endl;
1504 <<
" RestartingFitting:: Restart Beami everything to a fresh start !!! because Gap is > 10 LS" << endl;
1541 edm::LogInfo(
"BeamMonitor") <<
"dqmEndRun:: Clearing all the Maps " << endl;
1561 char offsetTime[64];
1563 TDatime
da(offsetTime);
1568 h->GetXaxis()->SetTimeOffset(
da.Convert(kTRUE));
1571 h->SetBinError(
bin, valErr);
1574 h->GetXaxis()->SetTimeOffset(
da.Convert(kTRUE));
1581 bool scroll_ =
false;
1584 edm::LogInfo(
"BeamMonitor") <<
"testScroll:: Reset Time Offset" << std::endl;
1587 if (
hs[k_x0_time]->getBinContent(
bin) > 0) {
1594 edm::LogInfo(
"BeamMonitor") <<
"testScroll:: Time difference too large since last readout" << std::endl;
1598 edm::LogInfo(
"BeamMonitor") <<
"testScroll:: Offset to last record" << std::endl;