45 : conf_(iConfig), show_mechanical_structure_view(
true), show_readout_view(
false), show_control_view(
false), select_all_detectors(
false), reset_each_run(
false), m_cacheID_(0)
155 k0 = ClusterMultiplicityRegions.getParameter<
double>(
"k0");
156 q0 = ClusterMultiplicityRegions.getParameter<
double>(
"q0");
157 dk0 = ClusterMultiplicityRegions.getParameter<
double>(
"dk0");
158 maxClus = ClusterMultiplicityRegions.getParameter<
double>(
"MaxClus");
159 minPix = ClusterMultiplicityRegions.getParameter<
double>(
"MinPix");
243 std::vector<uint32_t> activeDets;
262 edm::LogInfo(
"SiStripTkDQM|SiStripMonitorCluster")<<
"nr. of activeDets: "<<activeDets.size();
263 for(std::vector<uint32_t>::iterator detid_iterator = activeDets.begin(); detid_iterator!=activeDets.end(); detid_iterator++){
264 uint32_t
detid = (*detid_iterator);
267 activeDets.erase(detid_iterator);
278 ModuleMEsMap.insert( std::make_pair(detid, mod_single));
282 std::pair<std::string,int32_t> det_layer_pair = folder_organizer.
GetSubDetAndLayer(detid, tTopo);
286 std::map<std::string, LayerMEs>::iterator iLayerME =
LayerMEsMap.find(label);
290 int32_t lnumber = det_layer_pair.second;
291 std::vector<uint32_t> layerDetIds;
292 if (det_layer_pair.first ==
"TIB") {
294 }
else if (det_layer_pair.first ==
"TOB") {
296 }
else if (det_layer_pair.first ==
"TID" && lnumber > 0) {
298 }
else if (det_layer_pair.first ==
"TID" && lnumber < 0) {
300 }
else if (det_layer_pair.first ==
"TEC" && lnumber > 0) {
302 }
else if (det_layer_pair.first ==
"TEC" && lnumber < 0) {
308 folder_organizer.
setLayerFolder(detid,tTopo,det_layer_pair.second);
413 const char*
HistoName =
"StripClusVsBXandOrbit";
414 const char* HistoTitle =
"Strip cluster multiplicity vs BX mod(70) and Orbit;Event 1 BX mod(70);time [Orb#]";
417 ParametersNclusVsCycleTimeProf2D.
getParameter<int32_t>(
"Nbins"),
418 ParametersNclusVsCycleTimeProf2D.
getParameter<
double>(
"xmin"),
419 ParametersNclusVsCycleTimeProf2D.
getParameter<
double>(
"xmax"),
420 ParametersNclusVsCycleTimeProf2D.
getParameter<int32_t>(
"Nbinsy"),
421 ParametersNclusVsCycleTimeProf2D.
getParameter<
double>(
"ymin"),
422 ParametersNclusVsCycleTimeProf2D.
getParameter<
double>(
"ymax"),
429 const char*
HistoName =
"ClusterWidths_vs_Amplitudes";
430 const char* HistoTitle =
"Cluster widths vs amplitudes;Amplitudes (integrated ADC counts);Cluster widths";
432 ParametersClusWidthVsAmpTH2.
getParameter<int32_t>(
"Nbinsx"),
433 ParametersClusWidthVsAmpTH2.
getParameter<
double>(
"xmin"),
434 ParametersClusWidthVsAmpTH2.
getParameter<
double>(
"xmax"),
435 ParametersClusWidthVsAmpTH2.
getParameter<int32_t>(
"Nbinsy"),
436 ParametersClusWidthVsAmpTH2.
getParameter<
double>(
"ymin"),
437 ParametersClusWidthVsAmpTH2.
getParameter<
double>(
"ymax"));
452 HistoName =
"NumberOfClustersInStrip";
472 edm::LogInfo(
"SiStripMonitorCluster") <<
"SiStripMonitorCluster::bookHistograms: "
473 <<
" Creating MEs for new Cabling ";
478 edm::LogInfo(
"SiStripMonitorCluster") <<
"SiStripMonitorCluster::bookHistograms: "
479 <<
" Resetting MEs ";
508 int NPixClusters=0, NStripClusters=0, MultiplicityRegion=0;
509 bool isPixValid=
false;
530 if (!cluster_detsetvektor.
isValid())
return;
533 NStripClusters= StrC->
data().size();
535 if (cluster_detsetvektor_pix.
isValid()){
539 MultiplicityRegion=
FindRegion(NStripClusters,NPixClusters);
555 for (std::map<std::string, SubDetMEs>::iterator iSubdet =
SubDetMEsMap.begin();
557 iSubdet->second.totNClusters = 0;
561 bool found_layer_me =
false;
567 int ncluster_layer = 0;
568 std::map<std::string, LayerMEs>::iterator iLayerME =
LayerMEsMap.find(layer_label);
573 layer_single = iLayerME->second;
574 found_layer_me =
true;
577 bool found_module_me =
false;
581 for (std::vector< uint32_t >::const_iterator iterDets = iterLayer->second.begin() ;
582 iterDets != iterLayer->second.end() ; iterDets++) {
585 uint32_t
detid = (*iterDets);
588 if (subdet_label.size() == 0) subdet_label = folder_organizer.
getSubDetFolderAndTag(detid, tTopo).second;
593 std::map<uint32_t, ModMEs >::iterator imodME =
ModuleMEsMap.find(detid);
595 mod_single = imodME->second;
596 found_module_me =
true;
598 }
else found_module_me =
false;
602 if(isearch==cluster_detsetvektor->end()){
626 ncluster_layer += cluster_detset.
size();
628 short total_clusterized_strips = 0;
636 const auto & ampls = clusterIter->amplitudes();
638 float cluster_position = clusterIter->barycenter();
640 short cluster_start = clusterIter->firstStrip();
642 short cluster_width = ampls.size();
644 total_clusterized_strips = total_clusterized_strips + cluster_width;
647 float cluster_signal = 0.0;
648 float cluster_noise = 0.0;
649 int nrnonzeroamplitudes = 0;
652 for(uint iamp=0; iamp<ampls.size(); iamp++){
654 cluster_signal += ampls[iamp];
655 if(!qualityHandle->IsStripBad(qualityRange, clusterIter->firstStrip()+iamp)){
656 noise = noiseHandle->getNoise(clusterIter->firstStrip()+iamp,detNoiseRange)/gainHandle->getStripGain(clusterIter->firstStrip()+iamp, detGainRange);
658 noise2 += noise*
noise;
659 nrnonzeroamplitudes++;
663 if (nrnonzeroamplitudes > 0) cluster_noise =
sqrt(noise2/nrnonzeroamplitudes);
672 cluster_properties.
charge = cluster_signal;
673 cluster_properties.
position = cluster_position;
674 cluster_properties.
start = cluster_start;
675 cluster_properties.
width = cluster_width;
676 cluster_properties.
noise = cluster_noise;
679 if (found_module_me)
fillModuleMEs(mod_single, cluster_properties);
682 if (found_layer_me) {
690 std::map<std::string, SubDetMEs>::iterator iSubdet =
SubDetMEsMap.find(subdet_label);
700 std::map<std::string, SubDetMEs>::iterator iSubdet =
SubDetMEsMap.find(subdet_label);
701 if(iSubdet !=
SubDetMEsMap.end()) iSubdet->second.SubDetClusWidthVsAmpTH2->Fill(cluster_signal, cluster_width);
711 float local_occupancy =
static_cast<float>(total_clusterized_strips)/static_cast<float>(total_nr_strips);
712 if (found_module_me) {
727 std::map<std::string, SubDetMEs>::iterator iSubdet =
SubDetMEsMap.find(subdet_label);
728 if(iSubdet !=
SubDetMEsMap.end()) iSubdet->second.totNClusters += ncluster_layer;
741 && apv_phase_collection.
isValid()
745 long long dbx = event_history->deltaBX();
746 long long tbx = event_history->absoluteBX();
748 bool global_histo_filled =
false;
749 bool MultiplicityRegion_Vs_APVcycle_filled=
false;
751 for (std::map<std::string, SubDetMEs>::iterator it =
SubDetMEsMap.begin();
758 long long tbx_corr = tbx;
767 tbx_corr -= the_phase;
768 long long dbxincycle = event_history->deltaBXinCycle(the_phase);
771 global_histo_filled =
true;
774 if (isPixValid && !MultiplicityRegion_Vs_APVcycle_filled){
777 MultiplicityRegion_Vs_APVcycle_filled=
true;
796 long long tbx_corr = tbx;
797 int the_phase = apv_phase_collection->getPhase(
"All");
804 tbx_corr -= the_phase;
814 std::map<uint32_t, ModMEs >::iterator pos =
ModuleMEsMap.find(idet);
815 ModMEs mod_me = pos->second;
840 hid = hidmanager.
createHistoId(
"NumberOfClusters",
"det",detid);
850 hid = hidmanager.
createHistoId(
"ClusterPosition",
"det",detid);
859 hid = hidmanager.
createHistoId(
"ClusterDigiPosition",
"det",detid);
891 hid = hidmanager.
createHistoId(
"ClusterSignalOverNoise",
"det",detid);
899 hid = hidmanager.
createHistoId(
"ClusterSignalOverNoiseVsPos",
"det",detid);
915 hid = hidmanager.
createHistoId(
"ClusterLocalOccupancy",
"det",detid);
923 hid = hidmanager.
createHistoId(
"NrOfClusterizedStrips",
"det",detid);
930 hid = hidmanager.
createHistoId(
"ClusterWidths_vs_Amplitudes",
"det",detid);
1044 HistoName =
"ClusterCharge__" +
label;
1051 HistoName =
"ClusterWidth__" +
label;
1058 HistoName =
"TotalNumberOfCluster__" +
label;
1066 HistoName =
"TotalNumberOfClusterProfile__" +
label;
1079 HistoName =
"Cluster_vs_ApvCycle__" +
label;
1094 HistoName =
"Cluster_vs_ApvCycle_2D__" +
label;
1096 double h2ymax = 9999.0;
1097 double yfact = Parameters.
getParameter<
double>(
"yfactor");
1098 if(label.find(
"TIB") != std::string::npos) h2ymax = (6984.*256.)*yfact;
1099 else if (label.find(
"TID") != std::string::npos) h2ymax = (2208.*256.)*yfact;
1100 else if (label.find(
"TOB") != std::string::npos) h2ymax = (12906.*256.)*yfact;
1101 else if (label.find(
"TEC") != std::string::npos) h2ymax = (7552.*2.*256.)*yfact;
1118 HistoName =
"ClusterWidths_vs_Amplitudes__" +
label;
1136 HistoName =
"Cluster_vs_DeltaBxCycle__" +
label;
1150 HistoName =
"DeltaBx_vs_ApvCycle__" +
label;
1177 for(
int ipos=cluster.
start+1; ipos<=cluster.
start+cluster.
width; ipos++){
1186 if (cluster.
noise > 0)
1191 if (cluster.
noise > 0)
1259 return ibooker.
book1D(HistoName,HistoName,
1270 return ibooker.
book2D(HistoName,HistoName,
1283 double kplus=
k0*(1+
dk0/100);
1284 double kminus=
k0*(1-
dk0/100);
1287 if (nstrip!=0 && npix >= (nstrip*kminus-
q0) && npix <=(nstrip*kplus+
q0)) region=1;
1288 else if (nstrip!=0 && npix < (nstrip*kminus-
q0) && nstrip <=
maxClus) region=2;
1289 else if (nstrip!=0 && npix < (nstrip*kminus-
q0) && nstrip >
maxClus) region=3;
1290 else if (nstrip!=0 && npix > (nstrip*kplus+
q0)) region=4;
1291 else if (npix >
minPix && nstrip==0) region=5;
void ResetModuleMEs(uint32_t idet)
T getParameter(std::string const &) const
virtual void analyze(const edm::Event &, const edm::EventSetup &)
MonitorElement * bookME1D(const char *ParameterSetLabel, const char *HistoName, DQMStore::IBooker &ibooker)
int FindRegion(int nstrip, int npixel)
boost::transform_iterator< IterHelp, const_IdIter > const_iterator
MonitorElement * ModuleLocalOccupancy
bool show_mechanical_structure_view
void setSiStripFolderName(std::string name)
MonitorElement * ClusterDigiPosition
MonitorElement * PixVsStripMultiplicityRegions
std::pair< const std::string, const char * > getSubDetFolderAndTag(const uint32_t &detid, const TrackerTopology *tTopo)
The Signals That Services Can Subscribe To This is based on ActivityRegistry and is current per Services can connect to the signals distributed by the ActivityRegistry in order to monitor the activity of the application Each possible callback has some defined which we here list in angle e< void, edm::EventIDconst &, edm::Timestampconst & > We also list in braces which AR_WATCH_USING_METHOD_ is used for those or
MonitorElement * bookProfile(Args &&...args)
bool getByToken(EDGetToken token, Handle< PROD > &result) const
bool moduleswitchclusstonon
MonitorElement * GlobalCStripVsCpix
MonitorElement * SubDetClusterWidthTH1
MonitorElement * LayerLocalOccupancyTrend
bool layerswitchclusdigiposon
void setBinLabel(int bin, const std::string &label, int axis=1)
set bin label for x, y or z axis (axis=1, 2, 3 respectively)
edm::ESHandle< SiStripDetCabling > SiStripDetCabling_
std::pair< std::string, int32_t > GetSubDetAndLayer(const uint32_t &detid, const TrackerTopology *tTopo, bool ring_flag=0)
MonitorElement * ClusterSignalOverNoiseVsPos
MonitorElement * LayerClusterNoise
Provides a code based selection for trigger and DCS information in order to have no failing filters i...
bool moduleswitchcluschargeon
bool subdetswitchtotclusth1on
MonitorElement * StripNoise2Cycle
data_type const * const_iterator
MonitorElement * NrOfClusterizedStrips
MonitorElement * LayerClusterStoN
void createLayerMEs(std::string label, int ndets, DQMStore::IBooker &ibooker)
MonitorElement * ClusterPosition
bool layerswitchnrclusterizedstrip
MonitorElement * LayerNumberOfClusterProfile
bool module_clusterWidth_vs_amplitude_on
std::map< std::string, LayerMEs > LayerMEsMap
MonitorElement * SubDetClusterApvTH2
bool moduleswitchclusposon
bool layerswitchclusstonon
bool layerswitchnumclusterprofon
bool subdetswitchcluswidthon
std::map< std::string, std::vector< uint32_t > > LayerDetMap
void bookHistograms(DQMStore::IBooker &, edm::Run const &, edm::EventSetup const &) override
MonitorElement * NumberOfPixelClus
void setDetectorFolder(uint32_t rawdetid, const TrackerTopology *tTopo)
unsigned long long m_cacheID_
MonitorElement * SubDetApvDBxProf2
void createSubDetMEs(std::string label, DQMStore::IBooker &ibooker)
std::map< uint32_t, ModMEs > ModuleMEsMap
bool getStatus(edm::Event const &e, edm::EventSetup const &eSetup)
MonitorElement * SubDetClusterApvProf
MonitorElement * LayerClusWidthVsAmpTH2
MonitorElement * ClusterNoise
MonitorElement * ClusterSignalOverNoise
void createMEs(const edm::EventSetup &es, DQMStore::IBooker &ibooker)
bool moduleswitchcluswidthon
std::map< std::string, std::string > SubDetPhasePartMap
MonitorElement * GlobalApvCycleDBxTH2
bool globalswitchnclusvscycletimeprof2don
vector< ParameterSet > Parameters
void getTOBDetectors(const std::vector< uint32_t > &inputDetRawIds, std::vector< uint32_t > &tobDetRawIds, uint32_t layer=0, uint32_t bkw_frw=0, uint32_t rod=0) const
MonitorElement * bookProfile2D(Args &&...args)
MonitorElement * LayerLocalOccupancy
void Fill(HcalDetId &id, double val, std::vector< TH2F > &depth)
bool subdetswitchapvcycleprofon
GenericTriggerEventFlag * genTriggerEventFlagPixelDCSfilter_
ConsumesCollector consumesCollector()
Use a ConsumesCollector to gather consumes information from helper functions.
void fill(uint32_t &detid, float value)
MonitorElement * LayerClusterWidthProfile
bool accept(const edm::Event &event, const edm::EventSetup &setup)
To be called from analyze/filter() methods.
bool subdetswitchapvcycledbxprof2on
bool layerswitchclusposon
bool moduleswitchclusnoiseon
bool layerswitchcluschargeon
bool layerswitchclusstonVsposon
data_type const * data(size_t cell) const
MonitorElement * book1D(Args &&...args)
bool globalswitchcstripvscpix
void tag(MonitorElement *, unsigned int)
Abs< T >::type abs(const T &t)
std::pair< ContainerIterator, ContainerIterator > Range
MonitorElement * bookMETrend(const char *, DQMStore::IBooker &ibooker)
bool subdetswitchtotclusprofon
TkHistoMap * tkmapcluster
MonitorElement * NumberOfClusters
MonitorElement * SubDetTotClusterProf
MonitorElement * ClusterCharge
bool globalswitchstripnoise2apvcycle
bool moduleswitchclusstonVsposon
MonitorElement * NumberOfStripClus
Kind kind(void) const
Get the type of the monitor element.
std::string getSubdetid(uint32_t id, const TrackerTopology *tTopo, bool flag_ring)
void dqmBeginRun(const edm::Run &, const edm::EventSetup &)
MonitorElement * SubDetClusterChargeTH1
edm::EDGetTokenT< EventWithHistory > historyProducerToken_
MonitorElement * ClusWidthVsAmpTH2
MonitorElement * LayerClusterStoNTrend
MonitorElement * GlobalMainDiagonalPosition
std::string topFolderName_
MonitorElement * bookME2D(const char *ParameterSetLabel, const char *HistoName, DQMStore::IBooker &ibooker)
MonitorElement * SubDetClusterDBxCycleProf
SiStripDCSStatus * dcsStatus_
bool subdetswitchdbxcycleprofon
GenericTriggerEventFlag * genTriggerEventFlagBPTXfilter_
bool subdet_clusterWidth_vs_amplitude_on
bool globalswitchstripnoise3apvcycle
void setLayerFolder(uint32_t rawdetid, const TrackerTopology *tTopo, int32_t layer=0, bool ring_flag=0)
void fillME(MonitorElement *ME, float value1)
SiStripMonitorCluster(const edm::ParameterSet &)
void setCurrentFolder(const std::string &fullpath)
MonitorElement * LayerClusterWidth
MonitorElement * LayerClusterWidthTrend
MonitorElement * SubDetClusWidthVsAmpTH2
bool layerswitchclusnoiseon
T const * product() const
MonitorElement * book2D(Args &&...args)
bool layerswitchclusterwidthprofon
std::string createHistoId(std::string description, std::string id_type, uint32_t component_id)
T const * product() const
bool subdetswitchcluschargeon
bool layerswitchlocaloccupancy
bool layer_clusterWidth_vs_amplitude_on
MonitorElement * StripNoise3Cycle
void createModuleMEs(ModMEs &mod_single, uint32_t detid, DQMStore::IBooker &ibooker)
void getTECDetectors(const std::vector< uint32_t > &inputDetRawIds, std::vector< uint32_t > &tecDetRawIds, uint32_t side=0, uint32_t wheel=0, uint32_t petal_bkw_frw=0, uint32_t petal=0, uint32_t ring=0, uint32_t ster=0) const
bool layerswitchcluswidthon
edm::EDGetTokenT< edmNew::DetSetVector< SiPixelCluster > > clusterProducerPixToken_
std::map< std::string, SubDetMEs > SubDetMEsMap
void fillLayerMEs(LayerMEs &, ClusterProperties &cluster)
std::pair< ContainerIterator, ContainerIterator > Range
void getTIBDetectors(const std::vector< uint32_t > &inputDetRawIds, std::vector< uint32_t > &tibDetRawIds, uint32_t layer=0, uint32_t bkw_frw=0, uint32_t int_ext=0, uint32_t string=0) const
MonitorElement * LayerClusterCharge
MonitorElement * SubDetTotClusterTH1
bool applyClusterQuality_
MonitorElement * ClusterWidth
edm::EDGetTokenT< edmNew::DetSetVector< SiStripCluster > > clusterProducerStripToken_
void getTIDDetectors(const std::vector< uint32_t > &inputDetRawIds, std::vector< uint32_t > &tidDetRawIds, uint32_t side=0, uint32_t wheel=0, uint32_t ring=0, uint32_t ster=0) const
MonitorElement * LayerClusterChargeTrend
volatile std::atomic< bool > shutdown_flag false
void initRun(const edm::Run &run, const edm::EventSetup &setup)
To be called from beginRun() methods.
std::string createHistoLayer(std::string description, std::string id_type, std::string path, std::string flag)
std::pair< ContainerIterator, ContainerIterator > Range
bool globalswitchMultiRegions
bool moduleswitchlocaloccupancy
edm::EDGetTokenT< APVCyclePhaseCollection > apvPhaseProducerToken_
std::string qualityLabel_
MonitorElement * Module_ClusWidthVsAmpTH2
GenericTriggerEventFlag * genTriggerEventFlagStripDCSfilter_
void setAxisTitle(const std::string &title, int axis=1)
set x-, y- or z-axis title (axis=1, 2, 3 respectively)
void Reset(void)
reset ME (ie. contents, errors, etc)
bool globalswitchmaindiagonalposition
MonitorElement * NclusVsCycleTimeProf2D
bool globalswitchapvcycledbxth2on
void fillModuleMEs(ModMEs &mod_mes, ClusterProperties &cluster)
bool clusterWidth_vs_amplitude_on
MonitorElement * LayerClusterNoiseTrend
bool moduleswitchnrclusterizedstrip
bool subdetswitchapvcycleth2on
bool moduleswitchclusdigiposon