122 if(
f<parm[0]) itype=1;
123 else if(
f<parm[0]+parm[1]) itype=2;
134 ptgen=
pow(t*(
pow(parm[3],a1)-x0)+x0,1./a1);
136 if(iType) *iType=itype;
137 if(ptGen) *ptGen=ptgen;
141 TMath::Sqrt(parm[7]*parm[7]*ptgen+parm[8]*parm[8]*ptgen*ptgen);
146 triggerParm[2]/(1.+
TMath::Exp((triggerParm[0]-ptObs)/triggerParm[1]));
147 isTriggered= rnd->
Rndm()<triggerProb;
149 }
while((!triggerFlag) && (!isTriggered));
151 if(triggerFlag) *triggerFlag=isTriggered;
210 TH1D *histUnfoldInput=
211 new TH1D(
"unfolding input rec",
";ptrec",nDet,xminDet,xmaxDet);
212 TH2D *histUnfoldMatrix=
213 new TH2D(
"unfolding matrix",
";ptgen;ptrec",
214 nGen,xminGen,xmaxGen,nDet,xminDet,xmaxDet);
215 TH1D *histUnfoldBgr1=
216 new TH1D(
"unfolding bgr1 rec",
";ptrec",nDet,xminDet,xmaxDet);
217 TH1D *histUnfoldBgr2=
218 new TH1D(
"unfolding bgr2 rec",
";ptrec",nDet,xminDet,xmaxDet);
219 TH2D *histUnfoldMatrixSys=
220 new TH2D(
"unfolding matrix sys",
";ptgen;ptrec",
221 nGen,xminGen,xmaxGen,nDet,xminDet,xmaxDet);
225 new TH1D(
"bbb input rec",
";ptrec",nGen,xminGen,xmaxGen);
226 TH1D *histBbbSignalRec=
227 new TH1D(
"bbb signal rec",
";ptrec",nGen,xminGen,xmaxGen);
229 new TH1D(
"bbb bgr1 rec",
";ptrec",nGen,xminGen,xmaxGen);
231 new TH1D(
"bbb bgr2 rec",
";ptrec",nGen,xminGen,xmaxGen);
233 new TH1D(
"bbb bgrPt rec",
";ptrec",nGen,xminGen,xmaxGen);
234 TH1D *histBbbSignalGen=
235 new TH1D(
"bbb signal gen",
";ptgen",nGen,xminGen,xmaxGen);
236 TH1D *histBbbSignalRecSys=
237 new TH1D(
"bbb signal sys rec",
";ptrec",nGen,xminGen,xmaxGen);
238 TH1D *histBbbBgrPtSys=
239 new TH1D(
"bbb bgrPt sys rec",
";ptrec",nGen,xminGen,xmaxGen);
240 TH1D *histBbbSignalGenSys=
241 new TH1D(
"bbb signal sys gen",
";ptgen",nGen,xminGen,xmaxGen);
245 new TH1D(
"DATA truth gen",
";ptgen",nGen,xminGen,xmaxGen);
247 new TH1D(
"MC prediction rec",
";ptrec",nDet,xminDet,xmaxDet);
263 static Double_t triggerParm_DATA[]={8.0,
269 while(intLumi<lumiData) {
273 Double_t ptObs=GenerateEvent(parm_DATA,triggerParm_DATA,&intLumi,
274 &isTriggered,&ptGen,&iTypeGen);
277 histUnfoldInput->
Fill(ptObs);
280 histBbbInput->
Fill(ptObs);
283 if(iTypeGen==0) histDataTruth->
Fill(ptGen);
303 static Double_t triggerParm_MC[]={8.0,
309 Double_t lumiWeight = lumiData/lumiMC;
311 while(intLumi<lumiMC) {
315 Double_t ptObs=GenerateEvent(parm_MC,triggerParm_MC,&intLumi,&isTriggered,
317 if(!isTriggered) ptObs=0.0;
322 histUnfoldMatrix->
Fill(ptGen,ptObs,lumiWeight);
323 }
else if(iTypeGen==1) {
324 histUnfoldBgr1->
Fill(ptObs,lumiWeight);
325 }
else if(iTypeGen==2) {
326 histUnfoldBgr2->
Fill(ptObs,lumiWeight);
331 if((ptGen>=xminGen)&&(ptGen<xmaxGen)) {
332 histBbbSignalRec->
Fill(ptObs,lumiWeight);
334 histBbbBgrPt->
Fill(ptObs,lumiWeight);
336 histBbbSignalGen->
Fill(ptGen,lumiWeight);
337 }
else if(iTypeGen==1) {
338 histBbbBgr1->
Fill(ptObs,lumiWeight);
339 }
else if(iTypeGen==2) {
340 histBbbBgr2->
Fill(ptObs,lumiWeight);
344 histDetMC ->
Fill(ptObs,lumiWeight);
364 while(intLumi<lumiMC) {
368 Double_t ptObs=GenerateEvent(parm_MC_SYS,triggerParm_MC,&intLumi,
369 &isTriggered,&ptGen,&iTypeGen);
370 if(!isTriggered) ptObs=0.0;
374 histUnfoldMatrixSys->
Fill(ptGen,ptObs);
379 if((ptGen>=xminGen)&&(ptGen<xmaxGen)) {
380 histBbbSignalRecSys->
Fill(ptObs);
382 histBbbBgrPtSys->
Fill(ptObs);
384 histBbbSignalGenSys->
Fill(ptGen);
411 regMode,constraintMode,densityFlags);
414 unfold.SetInput(histUnfoldInput);
420 unfold.SubtractBackground(histUnfoldBgr1,
"background1",scale_bgr,dscale_bgr);
421 unfold.SubtractBackground(histUnfoldBgr2,
"background2",scale_bgr,dscale_bgr);
424 unfold.AddSysError(histUnfoldMatrixSys,
"signalshape_SYS",
434 Int_t iBest=unfold.ScanLcurve(nScan,0.,0.,&lCurve,&logTauX,&logTauY);
436 cout<<
"chi**2="<<unfold.GetChi2A()<<
"+"<<unfold.GetChi2L()
437 <<
" / "<<unfold.GetNdf()<<
"\n";
453 TH1 *histUnfoldOutput=unfold.GetOutput(
"PT(unfold,stat+bgrerr)");
456 TH2 *histEmatStat=unfold.GetEmatrixInput(
"unfolding stat error matrix");
460 TH2 *histEmatTotal=unfold.GetEmatrixTotal(
"unfolding total error matrix");
464 TH1 *histUnfoldStat=
new TH1D(
"PT(unfold,staterr)",
";Pt(gen)",
465 nGen,xminGen,xmaxGen);
466 TH1 *histUnfoldTotal=
new TH1D(
"PT(unfold,totalerr)",
";Pt(gen)",
467 nGen,xminGen,xmaxGen);
483 TH2D *histCorr=
new TH2D(
"Corr(total)",
";Pt(gen);Pt(gen)",
484 nGen,xminGen,xmaxGen,nGen,xminGen,xmaxGen);
488 if(ei<=0.0)
continue;
489 for(
Int_t j=0;j<nGen+2;j++) {
491 if(ej<=0.0)
continue;
497 TH1 *histDetNormBgr1=unfold.GetBackground(
"bgr1 normalized",
499 TH1 *histDetNormBgrTotal=unfold.GetBackground(
"bgr total normalized");
509 histUnfoldInput->
Draw(
"E");
514 histDetMC->
Draw(
"SAME HIST");
515 histDetNormBgr1->
Draw(
"SAME HIST");
516 histDetNormBgrTotal->
Draw(
"SAME HIST");
523 histUnfoldTotal->
Draw(
"E");
525 histUnfoldOutput->
Draw(
"SAME E1");
527 histUnfoldStat->
Draw(
"SAME E1");
528 histDataTruth->
Draw(
"SAME HIST");
530 histBbbSignalGen->
Draw(
"SAME HIST");
535 histUnfoldMatrix->
Draw(
"BOX");
541 bestLogTauLogChi2->
Draw(
"*");
547 bestLcurve->
Draw(
"*");
551 histCorr->
Draw(
"BOX");
553 output.SaveAs(
"testUnfold3.ps");
558 std::cout<<
"bin truth result (stat) (bgr) (sys)\n";
559 std::cout<<
"===+=====+=========+========+========+=======\n";
583 Double_t errData_stat_bbb = errData*fCorr;
585 Double_t errData_statbgr_bbb = errData_bgr*fCorr;
591 Double_t shift_sys= data_bgr*fCorr_sys - data_bbb;
595 TMath::Sqrt(errData_statbgr_bbb*errData_statbgr_bbb
596 +shift_sys*shift_sys);
607 (
"%3d %5.0f %8.1f +/-%5.1f +/-%5.1f +/-%5.1f (unfolding)",
609 errData_stat_unfold,
TMath::Sqrt(errData_statbgr_unfold*
610 errData_statbgr_unfold-
612 errData_stat_unfold),
614 errData_total_unfold-
615 errData_statbgr_unfold*
616 errData_statbgr_unfold))<<
"\n";
618 (
" %8.1f +/-%5.1f +/-%5.1f +/-%5.1f (bin-by-bin)",
619 data_bbb,errData_stat_bbb,
TMath::Sqrt(errData_statbgr_bbb*
626 errData_statbgr_bbb))
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void data
R__EXTERN TStyle * gStyle
virtual void SetLineColor(Color_t lcolor)
Set the line color.
virtual void SetMarkerColor(Color_t mcolor=1)
Set the marker color.
A TGraph is an object made of two arrays X and Y with npoints each.
void Draw(Option_t *chopt="") override
Draw this graph with its current attributes.
1-D histogram with a double per channel (see TH1 documentation)
TH1 is the base class of all histogram classes in ROOT.
virtual Double_t GetBinError(Int_t bin) const
Return value of error associated to bin number bin.
virtual Double_t GetMaximum(Double_t maxval=FLT_MAX) const
Return maximum value smaller than maxval of bins in the range, unless the value has been overridden b...
virtual void SetMaximum(Double_t maximum=-1111)
virtual void SetBinError(Int_t bin, Double_t error)
Set the bin Error Note that this resets the bin eror option to be of Normal Type and for the non-empt...
virtual Int_t Fill(Double_t x)
Increment bin with abscissa X by 1.
void Draw(Option_t *option="") override
Draw this histogram with options.
virtual void SetMinimum(Double_t minimum=-1111)
static void SetDefaultSumw2(Bool_t sumw2=kTRUE)
When this static function is called with sumw2=kTRUE, all new histograms will automatically activate ...
virtual void SetBinContent(Int_t bin, Double_t content)
Set bin content see convention for numbering bins in TH1::GetBin In case the bin number is greater th...
virtual Double_t GetBinContent(Int_t bin) const
Return content of bin number bin.
2-D histogram with a double per channel (see TH1 documentation)
Service class for 2-D histogram classes.
void SetBinContent(Int_t bin, Double_t content) override
Set bin content.
Double_t GetBinContent(Int_t binx, Int_t biny) const override
Int_t Fill(Double_t) override
Invalid Fill method.
Random number generator class based on M.
This is the base class for the ROOT Random number generators.
Double_t Rndm() override
Machine independent random number generator.
virtual Double_t BreitWigner(Double_t mean=0, Double_t gamma=1)
Return a number distributed following a BreitWigner function with mean and gamma.
Base class for spline implementation containing the Draw/Paint methods.
void Draw(Option_t *option="") override
Draw this function with its current attributes.
virtual void GetKnot(Int_t i, Double_t &x, Double_t &y) const =0
static TString Format(const char *fmt,...)
Static method which formats a string using a printf style format descriptor and return a TString.
An algorithm to unfold distributions from detector to truth level.
EDensityMode
choice of regularisation scale factors to cinstruct the matrix L
@ kDensityModeBinWidth
scale factors from multidimensional bin width
@ kSysErrModeMatrix
matrix is an alternative to the default matrix, the errors are the difference to the original matrix
static const char * GetTUnfoldVersion(void)
Return a string describing the TUnfold version.
EConstraint
type of extra constraint
@ kEConstraintArea
enforce preservation of the area
ERegMode
choice of regularisation scheme
@ kRegModeCurvature
regularize the 2nd derivative of the output distribution
@ kHistMapOutputHoriz
truth level on x-axis of the response matrix
RVec< PromoteTypes< T0, T1 > > pow(const T0 &x, const RVec< T1 > &v)
Double_t Exp(Double_t x)
Returns the base-e exponential function of x, which is e raised to the power x.
Double_t Log(Double_t x)
Returns the natural logarithm of x.
Double_t Sqrt(Double_t x)
Returns the square root of x.
LongDouble_t Power(LongDouble_t x, LongDouble_t y)
Returns x raised to the power y.