153 std::cout <<
"L1TdeRCT: analyze...." << std::endl;
170 double triggerTypeLast =
static_cast<double> (edm::EventAuxiliary::ExperimentType::ErrorTrigger)
197 int effEGThresholdBitNumber = 999;
200 effEGThresholdBitNumber = 46;
204 effEGThresholdBitNumber = 47;
208 effEGThresholdBitNumber = 48;
212 effEGThresholdBitNumber = 49;
216 effEGThresholdBitNumber = 50;
220 effEGThresholdBitNumber = 51;
224 effEGThresholdBitNumber = 52;
227 int algoBitNumber = 0;
228 bool triggered =
false;
229 bool independent_triggered =
false;
230 DecisionWord::const_iterator algoItr;
231 for (algoItr = dWord.begin(); algoItr != dWord.end(); algoItr++)
236 if (algoBitNumber == effEGThresholdBitNumber)
240 if (algoBitNumber <= 45 || algoBitNumber >= 53)
242 independent_triggered =
true;
276 edm::LogInfo(
"TPG DataNotFound") <<
"can't find EcalTrigPrimDigiCollection";
285 if(iEcalTp->compressedEt() > 0)
290 if(iEcalTp->id().ieta() > 0)
293 if(iEcalTp->compressedEt() > 3)
rctInputTPGEcalOcc_ ->
Fill(1.*(iEcalTp->id().ieta())-0.5,iEcalTp->id().iphi()) ;
298 if(iEcalTp->compressedEt() > 3)
rctInputTPGEcalOcc_ ->
Fill(1.*(iEcalTp->id().ieta())+0.5,iEcalTp->id().iphi()) ;
301 if(
verbose_)
std::cout <<
" ECAL data: Energy: " << iEcalTp->compressedEt() <<
" eta " << iEcalTp->id().ieta() <<
" phi " << iEcalTp->id().iphi() << std::endl ;
306 edm::LogInfo(
"TPG DataNotFound") <<
"can't find HcalTrigPrimDigiCollection";
321 for (
int nSample = 0; nSample < 10; nSample++)
323 if (iHcalTp->sample(nSample).compressedEt() != 0)
326 << iHcalTp->sample(nSample).compressedEt()
328 << iHcalTp->sample(nSample).fineGrain()
329 <<
" ieta " << iHcalTp->id().ieta()
330 <<
" iphi " << iHcalTp->id().iphi()
331 <<
" sample " << nSample
333 if (iHcalTp->sample(nSample).compressedEt() > highEt)
335 highSample = nSample;
336 highEt = iHcalTp->sample(nSample).compressedEt() ;
344 if(iHcalTp->id().ieta() > 0)
360 edm::LogInfo(
"DataNotFound") <<
"can't find L1CaloRegionCollection";
367 edm::LogInfo(
"DataNotFound") <<
"can't find L1CaloRegionCollection";
377 edm::LogInfo(
"DataNotFound") <<
"can't find L1CaloEmCollection";
385 edm::LogInfo(
"DataNotFound") <<
"can't find L1CaloEmCollection";
398 int nelectrIsoData = 0;
399 int nelectrNisoData = 0;
400 int nelectrIsoEmul = 0;
401 int nelectrNisoEmul = 0;
403 int electronDataRank[2][
PhiEtaMax]={{0}};
406 int electronEmulRank[2][
PhiEtaMax]={{0}};
418 bool regionDataOverFlow [
PhiEtaMax] = {
false};
419 bool regionDataTauVeto [
PhiEtaMax] = {
false};
420 bool regionDataMip [
PhiEtaMax] = {
false};
421 bool regionDataQuiet [
PhiEtaMax] = {
false};
422 bool regionDataHfPlusTau[
PhiEtaMax] = {
false};
428 bool regionEmulOverFlow [
PhiEtaMax] = {
false};
429 bool regionEmulTauVeto [
PhiEtaMax] = {
false};
430 bool regionEmulMip [
PhiEtaMax] = {
false};
431 bool regionEmulQuiet [
PhiEtaMax] = {
false};
432 bool regionEmulHfPlusTau[
PhiEtaMax] = {
false};
436 for (L1CaloEmCollection::const_iterator iem = emEmul->begin();
437 iem != emEmul->end();
452 channel=
PHIBINS*iem->regionId().ieta()+iem->regionId().iphi();
454 electronEmulRank[0][nelectrIsoEmul]=iem->rank() ;
455 electronEmulEta[0][nelectrIsoEmul]=iem->regionId().ieta();
456 electronEmulPhi[0][nelectrIsoEmul]=iem->regionId().iphi();
471 channel=
PHIBINS*iem->regionId().ieta()+iem->regionId().iphi();
473 electronEmulRank[1][nelectrNisoEmul]=iem->rank() ;
474 electronEmulEta[1][nelectrNisoEmul]=iem->regionId().ieta();
475 electronEmulPhi[1][nelectrNisoEmul]=iem->regionId().iphi();
481 for (L1CaloEmCollection::const_iterator iem = emData->begin();
482 iem != emData->end();
494 iem->regionId().iphi(), 0.01);
498 channel=
PHIBINS*iem->regionId().ieta()+iem->regionId().iphi();
504 electronDataRank[0][nelectrIsoData]=iem->rank() ;
505 electronDataEta[0][nelectrIsoData]=iem->regionId().ieta();
506 electronDataPhi[0][nelectrIsoData]=iem->regionId().iphi();
517 iem->regionId().iphi(), 0.01);
521 channel=
PHIBINS*iem->regionId().ieta()+iem->regionId().iphi();
527 electronDataRank[1][nelectrNisoData]=iem->rank() ;
528 electronDataEta[1][nelectrNisoData]=iem->regionId().ieta();
529 electronDataPhi[1][nelectrNisoData]=iem->regionId().iphi();
536 for(L1CaloRegionCollection::const_iterator ireg = rgnEmul->begin();
537 ireg != rgnEmul->end();
553 if(ireg->overFlow()) {
558 if(ireg->tauVeto()) {
573 if(ireg->fineGrain()) {
584 nRegionEmul =
PHIBINS * ireg->gctEta() + ireg->gctPhi();
586 regionEmulRank [nRegionEmul] = ireg->et() ;
587 regionEmulEta [nRegionEmul] = ireg->gctEta();
588 regionEmulPhi [nRegionEmul] = ireg->gctPhi();
589 regionEmulOverFlow [nRegionEmul] = ireg->overFlow();
590 regionEmulTauVeto [nRegionEmul] = ireg->tauVeto();
591 regionEmulMip [nRegionEmul] = ireg->mip();
592 regionEmulQuiet [nRegionEmul] = ireg->quiet();
593 regionEmulHfPlusTau[nRegionEmul] = ireg->fineGrain();
596 for(L1CaloRegionCollection::const_iterator ireg = rgnData->begin();
597 ireg != rgnData->end();
625 nRegionData =
PHIBINS * ireg->gctEta() + ireg->gctPhi();
627 regionDataRank [nRegionData] = ireg->et() ;
628 regionDataEta [nRegionData] = ireg->gctEta();
629 regionDataPhi [nRegionData] = ireg->gctPhi();
630 regionDataOverFlow [nRegionData] = ireg->overFlow();
631 regionDataTauVeto [nRegionData] = ireg->tauVeto();
632 regionDataMip [nRegionData] = ireg->mip();
633 regionDataQuiet [nRegionData] = ireg->quiet();
634 regionDataHfPlusTau[nRegionData] = ireg->fineGrain();
639 std::cout <<
"I found Data! Iso: " << nelectrIsoData <<
" Niso: " << nelectrNisoData << std::endl ;
640 for(
int i=0;
i<nelectrIsoData;
i++)
641 std::cout <<
" Iso Energy " << electronDataRank[0][
i] <<
" eta " << electronDataEta[0][
i] <<
" phi " << electronDataPhi[0][
i] << std::endl ;
642 for(
int i=0;
i<nelectrNisoData;
i++)
643 std::cout <<
" Niso Energy " << electronDataRank[1][
i] <<
" eta " << electronDataEta[1][
i] <<
" phi " << electronDataPhi[1][
i] << std::endl ;
645 std::cout <<
"I found Emul! Iso: " << nelectrIsoEmul <<
" Niso: " << nelectrNisoEmul << std::endl ;
646 for(
int i=0;
i<nelectrIsoEmul;
i++)
647 std::cout <<
" Iso Energy " << electronEmulRank[0][
i] <<
" eta " << electronEmulEta[0][
i] <<
" phi " << electronEmulPhi[0][
i] << std::endl ;
648 for(
int i=0;
i<nelectrNisoEmul;
i++)
649 std::cout <<
" Niso Energy " << electronEmulRank[1][
i] <<
" eta " << electronEmulEta[1][
i] <<
" phi " << electronEmulPhi[1][
i] << std::endl ;
653 if(regionDataRank[
i] !=0 )
std::cout <<
" Energy " << regionDataRank[
i] <<
" eta " << regionDataEta[
i] <<
" phi " << regionDataPhi[
i] << std::endl ;
657 if(regionEmulRank[
i] !=0 )
std::cout <<
" Energy " << regionEmulRank[
i] <<
" eta " << regionEmulEta[
i] <<
" phi " << regionEmulPhi[
i] << std::endl ;
662 for(
int k=0;
k<2;
k++)
664 int nelectrE, nelectrD;
668 nelectrE=nelectrIsoEmul;
669 nelectrD=nelectrIsoData;
674 nelectrE=nelectrNisoEmul;
675 nelectrD=nelectrNisoData;
678 for(
int i = 0;
i < nelectrE;
i++)
683 int chnl=
PHIBINS*electronEmulEta[
k][
i]+electronEmulPhi[
k][
i];
684 if(
k==1 && independent_triggered) {
693 if(electronEmulRank[
k][i]>=trigThresh){
694 if(
k==1 && independent_triggered) {
704 Bool_t
found = kFALSE;
706 for(
int j = 0;
j < nelectrD;
j++)
708 if(electronEmulEta[
k][i]==electronDataEta[
k][
j] &&
709 electronEmulPhi[
k][i]==electronDataPhi[
k][
j])
718 chnl=
PHIBINS*electronEmulEta[
k][
i]+electronEmulPhi[
k][
i];
722 int energy_difference;
724 energy_difference=(electronEmulRank[
k][
i] - electronDataRank[
k][
j]);
728 if(electronEmulRank[
k][i]==electronDataRank[
k][j])
743 bitset<8> bitDifference( electronEmulRank[
k][i]^electronDataRank[
k][j] );
744 for(
size_t n=0;
n < bitDifference.size();
n++){
758 chnl=
PHIBINS*electronEmulEta[
k][
i]+electronEmulPhi[
k][
i];
762 int energy_difference;
764 energy_difference=(electronEmulRank[
k][
i] - electronDataRank[
k][
j]) ;
769 if(electronEmulRank[
k][i]==electronDataRank[
k][j])
783 bitset<8> bitDifference( electronEmulRank[
k][i]^electronDataRank[
k][j] );
784 for(
size_t n=0;
n < bitDifference.size();
n++){
805 bitset<8> bit( electronEmulRank[
k][i] );
806 for(
size_t n=0;
n < bit.size();
n++){
811 chnl=
PHIBINS*electronEmulEta[
k][
i]+electronEmulPhi[
k][
i];
826 chnl=
PHIBINS*electronEmulEta[
k][
i]+electronEmulPhi[
k][
i];
830 bitset<8> bit( electronEmulRank[
k][i] );
831 for(
size_t n=0;
n < bit.size();
n++){
874 for(
int i = 0; i < nelectrE; i++)
876 int chnl=
PHIBINS*electronEmulEta[
k][
i]+electronEmulPhi[
k][
i];
881 for(
int i = 0; i < nelectrD; i++)
883 Bool_t found = kFALSE;
885 for(
int j = 0; j < nelectrE; j++)
887 if(electronEmulEta[
k][j]==electronDataEta[
k][i] &&
888 electronEmulPhi[
k][j]==electronDataPhi[
k][i])
904 bitset<8> bit( electronDataRank[
k][i] );
905 for(
size_t n=0;
n < bit.size();
n++){
910 chnl=
PHIBINS*electronDataEta[
k][
i]+electronDataPhi[
k][
i];
927 bitset<8> bit( electronDataRank[
k][i] );
928 for(
size_t n=0;
n < bit.size();
n++){
933 chnl=
PHIBINS*electronDataEta[
k][
i]+electronDataPhi[
k][
i];
954 for(
unsigned int i = 0; i < (int)
PhiEtaMax; i++)
956 Bool_t regFound = kFALSE;
957 Bool_t overFlowFound = kFALSE;
958 Bool_t tauVetoFound = kFALSE;
959 Bool_t mipFound = kFALSE;
960 Bool_t quietFound = kFALSE;
961 Bool_t hfPlusTauFound = kFALSE;
968 if(regionDataRank[i] >= 1 && regionEmulRank[i] >= 1)
972 chnl =
PHIBINS*regionEmulEta[
i] + regionEmulPhi[
i];
981 if(regionEmulRank[i] == regionDataRank[i])
993 bitset<10> bitDifference( regionEmulRank[i]^regionDataRank[i] );
994 for(
size_t n=0;
n < bitDifference.size();
n++){
996 if(
n >= 5 ){
rctRegBitDiff_->
Fill( regionEmulEta[i]+0.5, regionEmulPhi[i]+(
n-5)*0.2, bitDifference[
n] ); }
1006 if(regionEmulOverFlow[i] ==
true &&
1007 regionDataOverFlow[i] ==
true)
1010 overFlowFound = kTRUE;
1013 if(regionEmulTauVeto[i] ==
true &&
1014 regionDataTauVeto[i] ==
true)
1017 tauVetoFound = kTRUE;
1020 if (regionEmulMip[i] ==
true && regionDataMip[i] ==
true) {
1025 if (regionEmulQuiet[i] ==
true && regionDataQuiet[i] ==
true) {
1030 if (regionEmulHfPlusTau[i] ==
true && regionDataHfPlusTau[i] ==
true) {
1032 hfPlusTauFound = kTRUE;
1041 if(regFound == kFALSE && regionEmulRank[i] >= 1 )
1045 bitset<10> bit( regionEmulRank[i] );
1046 for(
size_t n=0;
n < bit.size();
n++){
1048 if(
n >= 5 ){
rctRegBitOff_->
Fill( regionEmulEta[i]+0.5, regionEmulPhi[i]+(
n-5)*0.2, bit[
n] ); }
1051 chnl =
PHIBINS*regionEmulEta[
i] + regionEmulPhi[
i];
1059 if(overFlowFound == kFALSE && regionEmulOverFlow[i] ==
true)
1064 if(tauVetoFound == kFALSE && regionEmulTauVeto[i] ==
true)
1069 if (mipFound == kFALSE && regionEmulMip[i] ==
true) {
1073 if (quietFound == kFALSE && regionEmulQuiet[i] ==
true) {
1077 if (hfPlusTauFound == kFALSE && regionEmulHfPlusTau[i] ==
true ) {
1113 for (
int i = 0; i < (int)
PhiEtaMax; i++)
1115 Bool_t regFound = kFALSE;
1116 Bool_t overFlowFound = kFALSE;
1117 Bool_t tauVetoFound = kFALSE;
1118 Bool_t mipFound = kFALSE;
1119 Bool_t quietFound = kFALSE;
1120 Bool_t hfPlusTauFound = kFALSE;
1128 if(regionEmulRank[i] >= 1 && regionDataRank[i] >= 1)
1131 if(regionDataOverFlow[i] ==
true &&
1132 regionEmulOverFlow[i] ==
true)
1133 overFlowFound = kTRUE;
1135 if(regionDataTauVeto[i] ==
true &&
1136 regionEmulTauVeto[i] ==
true)
1137 tauVetoFound = kTRUE;
1139 if (regionDataMip[i] ==
true && regionEmulMip[i] ==
true)
1142 if (regionDataQuiet[i] ==
true && regionEmulQuiet[i] ==
true)
1145 if (regionDataHfPlusTau[i] ==
true && regionEmulHfPlusTau[i] ==
true)
1146 hfPlusTauFound = kTRUE;
1150 if(regFound == kFALSE && regionDataRank[i] >= 1)
1154 bitset<10> bit( regionDataRank[i] );
1155 for(
size_t n=0;
n < bit.size();
n++){
1157 if(
n >= 5 ){
rctRegBitOn_->
Fill( regionDataEta[i]+0.5, regionDataPhi[i]+(
n-5)*0.2, bit[
n] ); }
1161 chnl =
PHIBINS*regionDataEta[
i] + regionDataPhi[
i];
1173 if(overFlowFound == kFALSE && regionDataOverFlow[i] ==
true )
1178 if(tauVetoFound == kFALSE && regionDataTauVeto[i] ==
true )
1183 if (mipFound == kFALSE && regionDataMip[i] ==
true ) {
1187 if (quietFound == kFALSE && regionDataQuiet[i] ==
true ) {
1191 if (hfPlusTauFound == kFALSE && regionDataHfPlusTau[i] ==
true ) {
MonitorElement * rctBitUnmatchedDataTauVeto2D_
void DivideME2D(MonitorElement *numerator, MonitorElement *denominator, MonitorElement *result)
MonitorElement * rctRegUnmatchedDataOcc1D_
MonitorElement * rctIsoEmBitDiff_
MonitorElement * rctRegMatchedOcc1D_
MonitorElement * rctNisoEmEmulOcc1D_
MonitorElement * rctNisoEmIneff2oneD_
MonitorElement * rctNisoEmIneff1D_
MonitorElement * rctNisoEmEff2Occ1D_
MonitorElement * rctInputTPGHcalOcc_
MonitorElement * rctNisoEmEff2oneD_
MonitorElement * rctNisoEmIneff2Occ1D_
MonitorElement * rctBitMatchedTauVeto2D_
MonitorElement * rctBitDataMip2D_
MonitorElement * rctBitUnmatchedDataHfPlusTau2D_
MonitorElement * rctBitEmulTauVeto2D_
bool getByToken(EDGetToken token, Handle< PROD > &result) const
MonitorElement * rctIsoEmIneff2Occ_
MonitorElement * trigEffThresh_
MonitorElement * rctBitHfPlusTauIneff2D_
MonitorElement * rctIsoEmIneff2Occ1D_
MonitorElement * rctIsoEmEmulOcc1D_
MonitorElement * rctBitUnmatchedEmulTauVeto2D_
edm::EDGetTokenT< L1CaloEmCollection > rctSourceData_emData_
MonitorElement * rctBitUnmatchedEmulQuiet2D_
MonitorElement * trigEffThreshOcc_
MonitorElement * rctNisoEffChannel_[396]
MonitorElement * rctRegOvereff1D_
std::vector< EcalTriggerPrimitiveDigi >::const_iterator const_iterator
MonitorElement * rctIsoEmEff2_
MonitorElement * rctNisoEmOvereffOcc1D_
MonitorElement * trigEffOcc_[396]
MonitorElement * rctRegOvereff2D_
MonitorElement * rctIsoEmOvereffOcc1D_
MonitorElement * triggerType_
MonitorElement * rctBitTauVetoEff2D_
MonitorElement * rctBitMatchedQuiet2D_
MonitorElement * rctBitTauVetoOvereff2D_
MonitorElement * rctRegDataOcc1D_
MonitorElement * rctIsoEmIneffOcc_
MonitorElement * rctBitDataQuiet2D_
MonitorElement * rctBitMatchedHfPlusTau2D_
MonitorElement * rctIsoEmEff2Occ_
MonitorElement * rctRegEmulOcc2D_
MonitorElement * rctRegUnmatchedEmulOcc2D_
edm::EDGetTokenT< L1GlobalTriggerReadoutRecord > gtDigisLabel_
MonitorElement * rctRegSpEff2D_
MonitorElement * rctBitUnmatchedEmulOverFlow2D_
MonitorElement * rctIsoEmBitOn_
MonitorElement * rctRegIneff2D_
MonitorElement * rctIsoEmEff2Occ1D_
bool singlechannelhistos_
MonitorElement * rctBitMipIneff2D_
MonitorElement * rctBitOverFlowOvereff2D_
MonitorElement * rctInputTPGHcalSample_
MonitorElement * rctIsoEmOvereff_
MonitorElement * rctBitDataOverFlow2D_
MonitorElement * rctIsoEmDataOcc_
MonitorElement * rctNisoEmEff1oneD_
edm::EDGetTokenT< HcalTrigPrimDigiCollection > hcalTPGData_
MonitorElement * rctNisoEmIneff2Occ_
MonitorElement * rctNisoEmOvereffOcc_
MonitorElement * rctRegBitOn_
MonitorElement * rctRegBitDiff_
MonitorElement * rctNisoEmDataOcc_
MonitorElement * rctNisoEmIneff2_
MonitorElement * rctBitDataHfPlusTau2D_
std::string gtEGAlgoName_
void DivideME1D(MonitorElement *numerator, MonitorElement *denominator, MonitorElement *result)
MonitorElement * rctRegIneffChannel_[396]
MonitorElement * rctInputTPGEcalOcc_
MonitorElement * rctRegDataOcc2D_
MonitorElement * rctInputTPGEcalRank_
MonitorElement * rctIsoEmIneff1D_
void Fill(HcalDetId &id, double val, std::vector< TH2F > &depth)
std::vector< bool > DecisionWord
typedefs
MonitorElement * rctBitMipOvereff2D_
MonitorElement * trigEff_[396]
MonitorElement * rctBitMatchedOverFlow2D_
MonitorElement * rctBitEmulOverFlow2D_
MonitorElement * rctRegEmulOcc1D_
edm::EDGetTokenT< EcalTrigPrimDigiCollection > ecalTPGData_
MonitorElement * rctIsoEmBitOff_
MonitorElement * rctBitEmulMip2D_
MonitorElement * rctIsoEmIneff2_
MonitorElement * rctBitEmulQuiet2D_
MonitorElement * rctNisoEmEmulOcc_
MonitorElement * rctBitEmulHfPlusTau2D_
MonitorElement * triggerAlgoNumbers_
MonitorElement * rctNisoIneffChannel_[396]
MonitorElement * rctRegSpIneff2D_
MonitorElement * rctIsoEmEmulOcc_
MonitorElement * rctIsoEmEff1Occ_
MonitorElement * rctNisoEmOvereff1D_
MonitorElement * rctNisoEmEff2Occ_
MonitorElement * rctBitUnmatchedEmulHfPlusTau2D_
MonitorElement * rctRegEff1D_
MonitorElement * rctBitMatchedMip2D_
MonitorElement * rctNisoEmEff2_
MonitorElement * rctRegSpEff1D_
MonitorElement * rctIsoEmEff1Occ1D_
MonitorElement * rctIsoEmEff1oneD_
MonitorElement * rctNisoEmIneff_
MonitorElement * rctRegSpEffOcc1D_
MonitorElement * rctRegMatchedOcc2D_
MonitorElement * rctNIsoEmBitDiff_
MonitorElement * rctBitHfPlusTauOvereff2D_
MonitorElement * rctNisoEmEff1Occ_
MonitorElement * rctIsoEmOvereff1D_
MonitorElement * rctIsoEmEff1_
MonitorElement * rctBitTauVetoIneff2D_
MonitorElement * rctInputTPGHcalRank_
const unsigned int PhiEtaMax
MonitorElement * trigEffTriggThreshOcc_
MonitorElement * rctIsoEmIneffOcc1D_
MonitorElement * rctRegEffChannel_[396]
MonitorElement * rctBitHfPlusTauEff2D_
MonitorElement * rctNisoEmIneffOcc1D_
MonitorElement * rctRegOvereffChannel_[396]
MonitorElement * rctBitOverFlowIneff2D_
MonitorElement * rctRegSpIneffOcc1D_
MonitorElement * rctBitUnmatchedDataMip2D_
MonitorElement * trigEffTriggOcc_[396]
MonitorElement * rctBitMipEff2D_
MonitorElement * rctIsoEmIneff2oneD_
MonitorElement * rctRegUnmatchedDataOcc2D_
MonitorElement * rctBitUnmatchedEmulMip2D_
MonitorElement * rctBitOverFlowEff2D_
MonitorElement * rctNIsoEmBitOff_
edm::EDGetTokenT< L1CaloRegionCollection > rctSourceEmul_rgnEmul_
MonitorElement * rctIsoIneffChannel_[396]
MonitorElement * rctRegSpEffOcc2D_
edm::EventAuxiliary::ExperimentType experimentType() const
MonitorElement * rctIsoEmOvereffOcc_
MonitorElement * rctNisoEmDataOcc1D_
edm::EDGetTokenT< L1CaloRegionCollection > rctSourceData_rgnData_
MonitorElement * rctNIsoEmBitOn_
MonitorElement * rctRegIneff1D_
MonitorElement * rctNisoEmEff1Occ1D_
MonitorElement * rctIsoEmDataOcc1D_
volatile std::atomic< bool > shutdown_flag false
MonitorElement * rctBitDataTauVeto2D_
MonitorElement * rctIsoEffChannel_[396]
MonitorElement * rctNisoEmOvereff_
MonitorElement * rctRegEff2D_
int filterTriggerType_
filter TriggerType
MonitorElement * rctInputTPGEcalOccNoCut_
MonitorElement * rctNisoOvereffChannel_[396]
MonitorElement * rctNisoEmIneffOcc_
MonitorElement * rctIsoEmEff2oneD_
edm::EDGetTokenT< L1CaloEmCollection > rctSourceEmul_emEmul_
MonitorElement * rctBitUnmatchedDataQuiet2D_
MonitorElement * rctRegSpIneff1D_
MonitorElement * rctRegSpIneffOcc2D_
MonitorElement * rctRegBitOff_
MonitorElement * rctIsoEmIneff_
MonitorElement * rctRegUnmatchedEmulOcc1D_
MonitorElement * rctBitUnmatchedDataOverFlow2D_
MonitorElement * rctIsoOvereffChannel_[396]
MonitorElement * rctNisoEmEff1_