18 #include "CLHEP/Random/RandFlat.h" 19 #include "CLHEP/Random/RandGauss.h" 38 edm::LogInfo(
"SiStripGainCosmicCalculator::SiStripGainCosmicCalculator");
53 edm::LogInfo(
"SiStripApvGainCalculator")<<
"The calibration for these DetIds will be set to a default value";
55 edm::LogInfo(
"SiStripApvGainCalculator")<<
"exclude detid = "<< *imod;
64 edm::LogInfo(
"SiStripGainCosmicCalculator::~SiStripGainCosmicCalculator");
85 std::cout<<
"SiStripGainCosmicCalculator::algoBeginJob called"<<std::endl;
89 HlistOtherHistos->Add(
new TH1F( Form(
"APVPairCorrections"), Form(
"APVPairCorrections"), 50,-1.,4.));
90 HlistOtherHistos->Add(
new TH1F(Form(
"APVPairCorrectionsTIB1mono"),Form(
"APVPairCorrectionsTIB1mono"),50,-1.,4.));
91 HlistOtherHistos->Add(
new TH1F(Form(
"APVPairCorrectionsTIB1stereo"),Form(
"APVPairCorrectionsTIB1stereo"),50,-1.,4.));
92 HlistOtherHistos->Add(
new TH1F(Form(
"APVPairCorrectionsTIB2"),Form(
"APVPairCorrectionsTIB2"),50,-1.,4.));
93 HlistOtherHistos->Add(
new TH1F(Form(
"APVPairCorrectionsTOB1"),Form(
"APVPairCorrectionsTOB1"),50,-1.,4.));
94 HlistOtherHistos->Add(
new TH1F(Form(
"APVPairCorrectionsTOB2"),Form(
"APVPairCorrectionsTOB2"),50,-1.,4.));
95 HlistOtherHistos->Add(
new TH1F(Form(
"LocalAngle"),Form(
"LocalAngle"),70,-0.1,3.4));
96 HlistOtherHistos->Add(
new TH1F(Form(
"LocalAngleAbsoluteCosine"),Form(
"LocalAngleAbsoluteCosine"),48,-0.1,1.1));
97 HlistOtherHistos->Add(
new TH1F(Form(
"LocalPosition_cm"),Form(
"LocalPosition_cm"),100,-5.,5.));
98 HlistOtherHistos->Add(
new TH1F(Form(
"LocalPosition_normalized"),Form(
"LocalPosition_normalized"),100,-1.1,1.1));
99 TH1F* local_histo =
new TH1F(Form(
"SiStripRecHitType"),Form(
"SiStripRecHitType"),2,0.5,2.5);
HlistOtherHistos->Add(local_histo);
100 local_histo->GetXaxis()->SetBinLabel(1,
"simple"); local_histo->GetXaxis()->SetBinLabel(2,
"matched");
104 std::vector<uint32_t> activeDets; activeDets.clear();
113 for(TrackerGeometry::DetContainer::const_iterator it = tkGeom->
dets().begin(); it != tkGeom->
dets().end(); it++){
114 if( dynamic_cast<const StripGeomDetUnit*>((*it))!=
nullptr){
115 uint32_t detid= ((*it)->geographicalId()).rawId();
117 double module_thickness = (*it)->surface().bounds().thickness();
118 thickness_map.insert(std::make_pair(detid,module_thickness));
120 bool is_active_detector =
false;
122 if( *iactive == detid ){
123 is_active_detector =
true;
128 bool exclude_this_detid =
false;
130 if(*imod == detid) exclude_this_detid =
true;
134 if(is_active_detector && (!exclude_this_detid)){
136 unsigned short NAPVPairs = p.
nstrips()/256;
137 if( NAPVPairs<2 || NAPVPairs>3 ) {
138 edm::LogError(
"SiStripGainCosmicCalculator")<<
"Problem with Number of strips in detector: "<<p.
nstrips()<<
" Exiting program";
141 for(
int iapp = 0; iapp<NAPVPairs; iapp++){
142 TString hid = Form(
"ChargeAPVPair_%i_%i",detid,iapp);
171 for(reco::TrackCollection::const_iterator itr = tracks->begin(); itr != tracks->end(); itr++){
175 std::vector<std::pair<const TrackingRecHit *,float> >hitangle;
177 for(std::vector<std::pair<const TrackingRecHit *,float> >::const_iterator hitangle_iter=hitangle.begin();hitangle_iter!=hitangle.end();hitangle_iter++){
179 float local_angle=hitangle_iter->second;
186 if(sistripsimplehit){
189 const auto & ampls = cluster->amplitudes();
190 uint32_t thedetid = 0;
193 ((TH1F*)
HlistOtherHistos->FindObject(
"LocalPosition_normalized"))->
Fill(local_position.
x()/module_width);
195 int ifirststrip= cluster->firstStrip();
196 int theapvpairid =
int(
float(ifirststrip)/256.);
197 TH1F* histopointer = (TH1F*)
HlistAPVPairs->FindObject(Form(
"ChargeAPVPair_%i_%i",thedetid,theapvpairid));
200 for(
unsigned int iampl = 0; iampl<ampls.size(); iampl++){
201 cCharge += ampls[iampl];
203 double cluster_charge_over_path = ((double)cCharge) * fabs(
cos(local_angle)) / ( 10. * module_thickness);
204 histopointer->Fill(cluster_charge_over_path);
217 double adcs = -0.5;
double error = 0.;
double nr_of_entries = inputHisto->GetEntries();
219 return std::make_pair(adcs,error);
231 std::unique_ptr<TF1> fitfunction(
new TF1(
"landaufit",
"landau") );
232 inputHisto->Fit(fitfunction.get(),
"0Q");
233 adcs = fitfunction->GetParameter(
"MPV");
234 error = fitfunction->GetParError(1);
235 double chi2 = fitfunction->GetChisquare();
236 double ndf = fitfunction->GetNDF();
237 double chi2overndf = chi2 / ndf;
239 if(adcs< 2. || (error/adcs)>1.8 ){
240 inputHisto->Fit(fitfunction.get(),
"0Q",
nullptr,0.,400.);
241 std::cout<<
"refitting landau for histogram "<<inputHisto->GetTitle()<<std::endl;
242 std::cout<<
"initial error/adcs ="<<error<<
" / "<<adcs<<std::endl;
243 std::cout<<
"new error/adcs ="<<fitfunction->GetParError(1)<<
" / "<<fitfunction->GetParameter(
"MPV")<<std::endl;
244 adcs = fitfunction->GetParameter(
"MPV");
245 error = fitfunction->GetParError(1);
246 chi2 = fitfunction->GetChisquare();
247 ndf = fitfunction->GetNDF();
248 chi2overndf = chi2 / ndf;
252 adcs = -0.5; error = 0.;
254 return std::make_pair(adcs,error);
260 double module_width=0.;
262 if (dynamic_cast<const StripGeomDetUnit*>(it)==
nullptr && dynamic_cast<const PixelGeomDetUnit*>(it)==
nullptr) {
263 std::cout <<
"this detID doesn't seem to belong to the Tracker" << std::endl;
273 double module_thickness=0.;
275 if (dynamic_cast<const StripGeomDetUnit*>(it)==
nullptr && dynamic_cast<const PixelGeomDetUnit*>(it)==
nullptr) {
276 std::cout <<
"this detID doesn't seem to belong to the Tracker" << std::endl;
280 return module_thickness;
285 std::cout<<
"SiStripGainCosmicCalculator::getNewObject called"<<std::endl;
289 TH1F *ChargeOfEachAPVPair =
new TH1F(
"ChargeOfEachAPVPair",
"ChargeOfEachAPVPair",1,0,1); ChargeOfEachAPVPair->SetCanExtend(TH1::kAllAxes);
290 TH1F *EntriesApvPairs =
new TH1F(
"EntriesApvPairs",
"EntriesApvPairs",1,0,1); EntriesApvPairs->SetCanExtend(TH1::kAllAxes);
291 TH1F * NrOfEntries =
new TH1F(
"NrOfEntries",
"NrOfEntries",351,-0.5,350.5);
292 TH1F * ModuleThickness =
new TH1F(
"ModuleThickness",
"ModuleThickness",2,0.5,2.5);
HlistOtherHistos->Add(ModuleThickness);
293 ModuleThickness->GetXaxis()->SetBinLabel(1,
"320mu"); ModuleThickness->GetXaxis()->SetBinLabel(2,
"500mu"); ModuleThickness->SetYTitle(
"Nr APVPairs");
294 TH1F * ModuleWidth =
new TH1F(
"ModuleWidth",
"ModuleWidth",5,0.5,5.5);
HlistOtherHistos->Add(ModuleWidth);
295 ModuleWidth->GetXaxis()->SetBinLabel(1,
"6.144cm"); ModuleWidth->GetXaxis()->SetBinLabel(2,
"7.14cm");
296 ModuleWidth->GetXaxis()->SetBinLabel(3,
"9.3696cm"); ModuleWidth->GetXaxis()->SetBinLabel(4,
"10.49cm");
297 ModuleWidth->GetXaxis()->SetBinLabel(5,
"12.03cm");
298 ModuleWidth->SetYTitle(
"Nr APVPairs");
302 double MeanCharge = 0.;
303 double NrOfApvPairs = 0.;
304 TH1F *MyHisto = (TH1F*)hiterator();
306 TString histo_title = MyHisto->GetTitle();
307 if(histo_title.Contains(
"ChargeAPVPair_")){
309 double local_nrofadcs = two_values.first;
310 double local_sigma = two_values.second;
311 ChargeOfEachAPVPair->Fill(histo_title, local_nrofadcs);
312 int ichbin = ChargeOfEachAPVPair->GetXaxis()->FindBin(histo_title.Data());
313 ChargeOfEachAPVPair->SetBinError(ichbin,local_sigma);
314 EntriesApvPairs->Fill(histo_title, MyHisto->GetEntries());
315 NrOfEntries->Fill(MyHisto->GetEntries());
316 if(local_nrofadcs > 0){
317 MeanCharge += local_nrofadcs;
321 MyHisto = (TH1F*)hiterator();
323 ChargeOfEachAPVPair->LabelsDeflate(
"X"); EntriesApvPairs->LabelsDeflate(
"X");
327 MeanCharge = MeanCharge / NrOfApvPairs;
329 TH1F* CorrectionOfEachAPVPair = (TH1F*) ChargeOfEachAPVPair->Clone(
"CorrectionOfEachAPVPair");
330 TH1F *ChargeOfEachAPVPairControlView =
new TH1F(
"ChargeOfEachAPVPairControlView",
"ChargeOfEachAPVPairControlView",1,0,1); ChargeOfEachAPVPairControlView->SetCanExtend(TH1::kAllAxes);
331 TH1F *CorrectionOfEachAPVPairControlView =
new TH1F(
"CorrectionOfEachAPVPairControlView",
"CorrectionOfEachAPVPairControlView",1,0,1); CorrectionOfEachAPVPairControlView->SetCanExtend(TH1::kAllAxes);
332 std::ofstream APVPairTextOutput(
"apvpair_corrections.txt");
333 APVPairTextOutput<<
"# MeanCharge = "<<MeanCharge<<std::endl;
334 APVPairTextOutput<<
"# Nr. of APVPairs = "<<NrOfApvPairs<<std::endl;
335 for(
int ibin=1; ibin <= ChargeOfEachAPVPair->GetNbinsX(); ibin++){
336 TString local_bin_label = ChargeOfEachAPVPair->GetXaxis()->GetBinLabel(ibin);
337 double local_charge_over_path = ChargeOfEachAPVPair->GetBinContent(ibin);
338 if(local_bin_label.Contains(
"ChargeAPVPair_") && local_charge_over_path > 0.0000001){
339 uint32_t extracted_detid; std::istringstream read_label((local_bin_label(14,9)).Data()); read_label >> extracted_detid;
340 unsigned short extracted_apvpairid; std::istringstream read_apvpair((local_bin_label(24,1)).Data()); read_apvpair >> extracted_apvpairid;
341 double local_error_of_charge = ChargeOfEachAPVPair->GetBinError(ibin);
342 double local_correction = -0.5;
343 double local_error_correction = 0.;
344 local_correction = MeanCharge / local_charge_over_path;
345 local_error_correction = local_correction * local_error_of_charge / local_charge_over_path;
346 if(local_error_correction>1.8){
347 std::cout<<
"too large error "<<local_error_correction<<
" for histogram "<<local_bin_label<<std::endl;
349 double nr_of_entries = EntriesApvPairs->GetBinContent(ibin);
350 APVPairTextOutput<<local_bin_label<<
" "<<local_correction<<
" "<<local_charge_over_path<<
" "<<nr_of_entries<<std::endl;
351 CorrectionOfEachAPVPair->SetBinContent(ibin, local_correction);
352 CorrectionOfEachAPVPair->SetBinError(ibin, local_error_correction);
355 unsigned int generalized_layer = 0;
365 generalized_layer = 10*thedetId.
subdetId();
371 if(generalized_layer==31){
374 if(generalized_layer==32){
377 if(generalized_layer==33){
380 if(generalized_layer==51){
383 if(generalized_layer==52){
388 std::ostringstream local_key;
390 local_key<<
"fecCrate"<<fedchannelconnection.
fecCrate()<<
"_fecSlot"<<fedchannelconnection.
fecSlot()<<
"_fecRing"<<fedchannelconnection.
fecRing()<<
"_ccuAddr"<<fedchannelconnection.
ccuAddr()<<
"_ccuChan"<<fedchannelconnection.
ccuChan()<<
"_apvPair"<<extracted_apvpairid;
391 TString control_key = local_key.str();
392 ChargeOfEachAPVPairControlView->Fill(control_key,local_charge_over_path);
393 int ibin1 = ChargeOfEachAPVPairControlView->GetXaxis()->FindBin(control_key);
394 ChargeOfEachAPVPairControlView->SetBinError(ibin1,local_error_of_charge);
395 CorrectionOfEachAPVPairControlView->Fill(control_key, local_correction);
396 int ibin2 = CorrectionOfEachAPVPairControlView->GetXaxis()->FindBin(control_key);
397 CorrectionOfEachAPVPairControlView->SetBinError(ibin2, local_error_correction);
400 if( fabs(module_thickness - 0.032)<0.001 ) ModuleThickness->Fill(1);
401 if( fabs(module_thickness - 0.05)<0.001 ) ModuleThickness->Fill(2);
403 double module_width =
moduleWidth(extracted_detid);
404 if(fabs(module_width-6.144)<0.01) ModuleWidth->Fill(1);
405 if(fabs(module_width-7.14)<0.01) ModuleWidth->Fill(2);
406 if(fabs(module_width-9.3696)<0.01) ModuleWidth->Fill(3);
407 if(fabs(module_width-10.49)<0.01) ModuleWidth->Fill(4);
408 if(fabs(module_width-12.03)<0.01) ModuleWidth->Fill(5);
412 ChargeOfEachAPVPairControlView->LabelsDeflate(
"X");
413 CorrectionOfEachAPVPairControlView->LabelsDeflate(
"X");
426 auto obj = std::make_unique<SiStripApvGain>();
const uint16_t & fecSlot() const
T getParameter(std::string const &) const
TObjArray * HlistAPVPairs
T getUntrackedParameter(std::string const &, T const &) const
uint32_t total_nr_of_events
std::vector< uint32_t > SelectedDetIds
double ExpectedChargeDeposition
const uint16_t & fecCrate() const
const FedChannelConnection & getConnection(uint32_t det_id, unsigned short apv_pair) const
void getTIBDetectors(const std::vector< uint32_t > &inputDetRawIds, std::vector< uint32_t > &tibDetRawIds, const TrackerTopology *trackerTopology, uint32_t layer=0, uint32_t bkw_frw=0, uint32_t int_ext=0, uint32_t string=0)
void addActiveDetectorsRawIds(std::vector< uint32_t > &) const
unsigned int tibLayer(const DetId &id) const
double moduleThickness(const uint32_t detid)
void algoBeginJob(const edm::EventSetup &) override
TObjArray * HlistOtherHistos
TrackerGeometry const * tkGeom
constexpr uint32_t rawId() const
get the raw id
std::vector< Track > TrackCollection
collection of Tracks
~SiStripGainCosmicCalculator() override
const Bounds & bounds() const
bool outputHistogramsInRootFile
const Plane & surface() const
The nominal surface of the GeomDet.
std::pair< double, double > getPeakOfLandau(TH1F *inputHisto)
virtual float width() const =0
const DetContainer & dets() const override
Returm a vector of all GeomDet (including all GeomDetUnits)
const TrackerGeomDet * idToDetUnit(DetId) const override
Return the pointer to the GeomDetUnit corresponding to a given DetId.
unsigned int MinNrEntries
const uint16_t & fecRing() const
Class containning control, module, detector and connection information, at the level of a FED channel...
void Fill(HcalDetId &id, double val, std::vector< TH2F > &depth)
Cos< T >::type cos(const T &t)
const uint16_t & ccuChan() const
SiStripGainCosmicCalculator(const edm::ParameterSet &)
constexpr int subdetId() const
get the contents of the subdetector field (not cast into any detector's numbering enum) ...
std::map< uint32_t, double > thickness_map
ClusterRef cluster() const
SiStripDetCabling const * siStripDetCabling
virtual LocalPoint localPosition() const =0
const uint16_t & ccuAddr() const
bool getByLabel(InputTag const &tag, Handle< PROD > &result) const
std::unique_ptr< SiStripApvGain > getNewObject() override
uint32_t tibGlued(const DetId &id) const
const TrackerTopology * tTopo
T const * product() const
virtual float thickness() const =0
virtual int nstrips() const =0
std::vector< uint32_t > detModulesToBeExcluded
void getTOBDetectors(const std::vector< uint32_t > &inputDetRawIds, std::vector< uint32_t > &tobDetRawIds, const TrackerTopology *trackerTopology, uint32_t layer=0, uint32_t bkw_frw=0, uint32_t rod=0)
uint32_t tibStereo(const DetId &id) const
double moduleWidth(const uint32_t detid)
T const * product() const
void algoEndJob() override
void algoAnalyze(const edm::Event &, const edm::EventSetup &) override
unsigned int tobLayer(const DetId &id) const