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zerobias.C
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zerobias.C
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#define zerobias_cxx
#include "zerobias.h"
#include <TH2.h>
#include <TStyle.h>
#include <TCanvas.h>
#include <TProfile.h>
#include "TFile.h"
#include "CondFormats/JetMETObjects/interface/FactorizedJetCorrector.h"
#include "CondFormats/JetMETObjects/interface/JetCorrectorParameters.h"
#include "CondFormats/JetMETObjects/interface/JetCorrectionUncertainty.h"
#include <iostream>
using namespace std;
struct histos {
TProfile *pmu;
TProfile *prho;
TProfile *pnpv;
TH1D *hrawvseta;
TH1D *hl1vseta;
TH1D *hjecvseta;
TH1D *hresvseta;
TH1D *hrcvseta;
TH1D *hmcvseta;
TH1D *hrawvspt;
TH1D *hl1vspt;
TH1D *hjecvspt;
TH1D *hresvspt;
TH1D *hrcvspt;
TH1D *hmcvspt;
TH1D *hrawvsmu;
TH1D *hl1vsmu;
TH1D *hjecvsmu;
TH1D *hresvsmu;
TH1D *hrcvsmu;
TH1D *hmcvsmu;
TH1D *hmu00up;
TH1D *hmu15dw;
TH1D *hmu1520;
TH1D *hmu2025;
TH1D *hmu2530;
TH1D *hmu30up;
TProfile *pptcorrovptchvsmu;
TProfile *pptrawovptchvsmu;
TProfile *pptrcovptchvsmu;
TProfile *pptmcovptchvsmu;
TH2D *h2ptcorrovptchvsmu;
TH2D *h2ptrawovptchvsmu;
TH2D *h2ptrcovptchvsmu;
TH2D *h2ptmcovptchvsmu;
};
void zerobias::Loop()
{
// In a ROOT session, you can do:
// root> .L zerobias.C
// root> zerobias t
// root> t.GetEntry(12); // Fill t data members with entry number 12
// root> t.Show(); // Show values of entry 12
// root> t.Show(16); // Read and show values of entry 16
// root> t.Loop(); // Loop on all entries
//
// This is the loop skeleton where:
// jentry is the global entry number in the chain
// ientry is the entry number in the current Tree
// Note that the argument to GetEntry must be:
// jentry for TChain::GetEntry
// ientry for TTree::GetEntry and TBranch::GetEntry
//
// To read only selected branches, Insert statements like:
// METHOD1:
// fChain->SetBranchStatus("*",0); // disable all branches
// fChain->SetBranchStatus("branchname",1); // activate branchname
// METHOD2: replace line
// fChain->GetEntry(jentry); //read all branches
//by b_branchname->GetEntry(ientry); //read only this branch
if (fChain == 0) return;
//Long64_t nentries = fChain->GetEntriesFast();
Long64_t nentries = fChain->GetEntries();
fChain->SetBranchStatus("*",0); // disable all branches
fChain->SetBranchStatus("nJets",1); // activate branchname
fChain->SetBranchStatus("jet_pt",1);
fChain->SetBranchStatus("jet_eta",1);
fChain->SetBranchStatus("jet_area",1);
fChain->SetBranchStatus("jet_ch",1);
fChain->SetBranchStatus("rho",1);
fChain->SetBranchStatus("mu",1);
fChain->SetBranchStatus("nPV",1);
string s = "";
FactorizedJetCorrector *_JEC;
FactorizedJetCorrector *_JECRC;
FactorizedJetCorrector *_JECMC;
{
const char *cd = "CondFormats/JetMETObjects/data/";
//s = Form("%s/Summer16_07Aug2017%s_V5_DATA_L1FastJet_AK4PFchs.txt",cd,"GH");
//s = Form("%s/Summer16_07Aug2017%s_V5_DATA_L1RC_AK4PFchs.txt",cd,"GH");
//s = Form("%s/Summer16_07Aug2017_V5_MC_L1FastJet_AK4PFchs.txt",cd);
//s = Form("%s/Summer16_07Aug2017_V5_MC_L1RC_AK4PFchs.txt",cd);
//
//s = Form("%s/Summer16_07Aug2017%s_V15_MC_L1FastJet_AK4PFchs.txt",cd,"");
//s = Form("%s/Summer16_07Aug2017%s_V16_DATA_L1FastJet_AK4PFchs.txt",cd,"GH");
//s = Form("%s/Summer16_07Aug2017%s_V17_DATA_L1FastJet_AK4PFchs.txt",cd,"GH");
//s = Form("%s/Summer16_07Aug2017%s_V18_DATA_L1FastJet_AK4PFchs.txt",cd,"GH");
s = Form("%s/Summer16_07Aug2017%s_V14Mikko_L1fix_Data_L1FastJet_AK4PFchs.txt",cd,"GH");
cout << s << endl << flush;
JetCorrectorParameters *l1 = new JetCorrectorParameters(s);
//s = Form("%s/Summer16_07Aug2017%s_V15_MC_L1RC_AK4PFchs.txt",cd,"");
//s = Form("%s/Summer16_07Aug2017%s_V17_DATA_L1RC_AK4PFchs.txt",cd,"GH");
s = Form("%s/Summer16_07Aug2017%s_V18_DATA_L1RC_AK4PFchs.txt",cd,"GH");
cout << s << endl << flush;
JetCorrectorParameters *l1rc = new JetCorrectorParameters(s);
s = Form("%s/Summer16_07Aug2017%s_V15_MC_L1FastJet_AK4PFchs.txt",cd,"");
cout << s << endl << flush;
JetCorrectorParameters *l1mc = new JetCorrectorParameters(s);
s = Form("%s/Summer16_07Aug2017%s_V15_MC_L2Relative_AK4PFchs.txt",cd,"");
//s = Form("%s/Summer16_07Aug2017%s_V16_DATA_L2Relative_AK4PFchs.txt",cd,"GH");
//s = Form("%s/Summer16_07Aug2017%s_V17_DATA_L2Relative_AK4PFchs.txt",cd,"GH");
//s = Form("%s/Summer16_07Aug2017%s_V18_DATA_L2Relative_AK4PFchs.txt",cd,"GH");
cout << s << endl << flush;
JetCorrectorParameters *l2 = new JetCorrectorParameters(s);
//s = Form("%s/Summer16_07Aug2017%s_V15_MC_L2L3Residual_AK4PFchs.txt",cd,""); //==1
//s = Form("%s/Summer16_07Aug2017%s_V16M_DATA_L2L3Residual_AK4PFchs.txt",cd,"GH");
//s = Form("%s/Summer16_07Aug2017%s_V17_DATA_L2L3Residual_AK4PFchs.txt",cd,"GH");
//s = Form("%s/Summer16_07Aug2017%s_V17C_DATA_L2L3Residual_AK4PFchs.txt",cd,"GH");
s = Form("%s/Summer16_07Aug2017%s_V18_DATA_L2L3Residual_AK4PFchs.txt",cd,"GH");
cout << s << endl << flush;
JetCorrectorParameters *res = new JetCorrectorParameters(s);
vector<JetCorrectorParameters> v;
v.push_back(*l1);
v.push_back(*l2);
v.push_back(*res);
_JEC = new FactorizedJetCorrector(v);
vector<JetCorrectorParameters> vrc;
vrc.push_back(*l1rc);
vrc.push_back(*l2);
vrc.push_back(*res);
_JECRC = new FactorizedJetCorrector(vrc);
vector<JetCorrectorParameters> vmc;
vmc.push_back(*l1mc);
vmc.push_back(*l2);
vmc.push_back(*res);
_JECMC = new FactorizedJetCorrector(vmc);
}
//TFile *fout = new TFile("rootfiles/zerobias.root","RECREATE");
//TFile *fout = new TFile("rootfiles/zerobias-data15.root","RECREATE");
//TFile *fout = new TFile("rootfiles/zerobias-mc-v15.root","RECREATE");
//TFile *fout = new TFile("rootfiles/zerobias-data-v16m.root","RECREATE");
//TFile *fout = new TFile("rootfiles/zerobias-data-v17.root","RECREATE");
//TFile *fout = new TFile("rootfiles/zerobias-data-v17c.root","RECREATE");
//TFile *fout = new TFile("rootfiles/zerobias-mc-v15.root","RECREATE");
//TFile *fout = new TFile("rootfiles/zerobias-data-v18.root","RECREATE");
TFile *fout = new TFile("rootfiles/zerobias-data-v18v14fix.root","RECREATE");
const double x[] =
//{10, 12, 15, 18, 21, 24, 28, 32, 37, 43, 49, 56, 64, 74, 84, 97, 114,
{5, 7.5, 10, 12.5, 15, 17.5, 20, 22.5, 25, 27.5, 30, 32.5, 35, 37.5, 40,
43, 49, 56, 64, 74, 84, 97, 114,
133, 153, 174, 196, 220, 245, 272, 300, 330, 362, 395, 430, 468, 507,
548, 592, 638, 686, 737, 790, 846, 905, 967, 1032, 1101, 1172, 1248,
1327, 1410, 1497, 1588, 1684, 1784, 1890, 2000, 2116, 2238, 2366, 2500,
2640, 2787, 2941, 3103, 3273, 3450, 3832, 6076, 6389}; // Eta_0.0-0.5
const int nx = sizeof(x)/sizeof(x[0])-1;
TH1D *hptlead = new TH1D("hptlead",";p_{T,lead};N_{jet}",nx,x);
TH1D *hpttag = new TH1D("hpttag",";p_{T,tag};N_{jet}",nx,x);
TH1D *hmu0 = new TH1D("hmu0",";#mu;1/N_{evt}",60,0,60);
TH1D *hrho0 = new TH1D("hrho0",";#rho;1/N_{evt}",60,0,60);
TH1D *hnpv0 = new TH1D("hnpv0",";N_{PV};1/N_{evt}",60,0,60);
TProfile *pmu0 = new TProfile("pmu0",";#mu;#LT#mu#GT (GeV)",60,0,60);
TProfile *prho0 = new TProfile("prho0",";#mu;#LT#rho#GT (GeV)",60,0,60);
TProfile *pnpv0 = new TProfile("pnpv0",";#mu;#LTN_{PV,good}#GT",60,0,60);
// Repeat these plots for each pT cut
int vpt[] = {5, 10, 15, 20, 25, 30, 40, 60, 80, 120};
const int npt = sizeof(vpt)/sizeof(vpt[0]);
vector<histos*> vh(npt);
for (int ipt = 0; ipt != npt; ++ipt) {
// Create new histograms
int pt = vpt[ipt];
TProfile *pmu = new TProfile(Form("pmu_pt%d",pt),";#mu;#LT#mu#GT (GeV)",60,0,60);
TProfile *prho = new TProfile(Form("prho_pt%d",pt),";#mu;#LT#rho#GT (GeV)",60,0,60);
TProfile *pnpv = new TProfile(Form("pnpv_pt%d",pt),";#mu;#LTN_{PV,good}#GT",60,0,60);
TH1D *hrawvseta = new TH1D(Form("hrawvseta_pt%d",pt),";#eta;N_{jet}",104,-5.2,5.2);
TH1D *hl1vseta = new TH1D(Form("hl1vseta_pt%d",pt),";#eta;N_{jet}",104,-5.2,5.2);
TH1D *hjecvseta = new TH1D(Form("hjecvseta_pt%d",pt),";#eta;N_{jet}",104,-5.2,5.2);
TH1D *hresvseta = new TH1D(Form("hresvseta_pt%d",pt),";#eta;N_{jet}",104,-5.2,5.2);
TH1D *hrcvseta = new TH1D(Form("hrcvseta_pt%d",pt),";#eta;N_{jet}",104,-5.2,5.2);
TH1D *hmcvseta = new TH1D(Form("hmcvseta_pt%d",pt),";#eta;N_{jet}",104,-5.2,5.2);
TH1D *hrawvspt = new TH1D(Form("hrawvspt_pt%d",pt),";p_{T} (GeV);N_{jet}",nx,x);
TH1D *hl1vspt = new TH1D(Form("hl1vspt_pt%d",pt),";p_{T} (GeV);N_{jet}",nx,x);
TH1D *hjecvspt = new TH1D(Form("hjecvspt_pt%d",pt),";p_{T} (GeV);N_{jet}",nx,x);
TH1D *hresvspt = new TH1D(Form("hresvspt_pt%d",pt),";p_{T} (GeV);N_{jet}",nx,x);
TH1D *hrcvspt = new TH1D(Form("hrcvspt_pt%d",pt),";p_{T} (GeV);N_{jet}",nx,x);
TH1D *hmcvspt = new TH1D(Form("hmcvspt_pt%d",pt),";p_{T} (GeV);N_{jet}",nx,x);
TH1D *hrawvsmu = new TH1D(Form("hrawvsmu_pt%d",pt),";#mu;N_{jet}",60,0,60);
TH1D *hl1vsmu = new TH1D(Form("hl1vsmu_pt%d",pt),";#mu;N_{jet}",60,0,60);
TH1D *hjecvsmu = new TH1D(Form("hjecvsmu_pt%d",pt),";#mu;N_{jet}",60,0,60);
TH1D *hresvsmu = new TH1D(Form("hresvsmu_pt%d",pt),";#mu;N_{jet}",60,0,60);
TH1D *hrcvsmu = new TH1D(Form("hrcvsmu_pt%d",pt),";#mu;N_{jet}",60,0,60);
TH1D *hmcvsmu = new TH1D(Form("hmcvsmu_pt%d",pt),";#mu;N_{jet}",60,0,60);
TH1D *hmu00up = new TH1D(Form("hmu00up_%d",pt),";#eta;N_{jet}",104,-5.2,5.2);
TH1D *hmu15dw = new TH1D(Form("hmu15dw_pt%d",pt),";#eta;N_{jet}",104,-5.2,5.2);
TH1D *hmu1520 = new TH1D(Form("hmu1520_pt%d",pt),";#eta;N_{jet}",104,-5.2,5.2);
TH1D *hmu2025 = new TH1D(Form("hmu2025_pt%d",pt),";#eta;N_{jet}",104,-5.2,5.2);
TH1D *hmu2530 = new TH1D(Form("hmu2530_pt%d",pt),";#eta;N_{jet}",104,-5.2,5.2);
TH1D *hmu30up = new TH1D(Form("hmu30up_pt%d",pt),";#eta;N_{jet}",104,-5.2,5.2);
TProfile *pptcorrovptchvsmu = new TProfile(Form("pptcorrovptchsvsmu_pt%d",pt),";#mu;0.6#timesp_{T,corr}/p_{T,ch}",60,0,60);
TProfile *pptrawovptchvsmu = new TProfile(Form("pptrawovptchsvsmu_pt%d",pt),";#mu;0.6#timesp_{T,raw}/p_{T,ch}",60,0,60);
TProfile *pptrcovptchvsmu = new TProfile(Form("pptrcovptchsvsmu_pt%d",pt),";#mu;0.6#timesp_{T,RC}/p_{T,ch}",60,0,60);
TProfile *pptmcovptchvsmu = new TProfile(Form("pptmcovptchsvsmu_pt%d",pt),";#mu;0.6#timesp_{T,MC}/p_{T,ch}",60,0,60);
TH2D *h2ptcorrovptchvsmu = new TH2D(Form("h2ptcorrovptchsvsmu_pt%d",pt),";#mu;0.6#timesp_{T,corr}/p_{T,ch}",60,0,60,200,0,4);
TH2D *h2ptrawovptchvsmu = new TH2D(Form("h2ptrawovptchsvsmu_pt%d",pt),";#mu;0.6#timesp_{T,raw}/p_{T,ch}",60,0,60,200,0,4);
TH2D *h2ptrcovptchvsmu = new TH2D(Form("h2ptrcovptchsvsmu_pt%d",pt),";#mu;0.6#timesp_{T,RC}/p_{T,ch}",60,0,60,200,0,4);
TH2D *h2ptmcovptchvsmu = new TH2D(Form("h2ptmcovptchsvsmu_pt%d",pt),";#mu;0.6#timesp_{T,MC}/p_{T,ch}",60,0,60,200,0,4);
// Store in a vector array for easy handing;
histos *h = new histos();
vh[ipt] = h;
h->pmu = pmu;
h->prho = prho;
h->pnpv = pnpv;
h->hrawvseta = hrawvseta;
h->hl1vseta = hl1vseta;
h->hjecvseta = hjecvseta;
h->hresvseta = hresvseta;
h->hrcvseta = hrcvseta;
h->hmcvseta = hmcvseta;
h->hrawvspt = hrawvspt;
h->hl1vspt = hl1vspt;
h->hjecvspt = hjecvspt;
h->hresvspt = hresvspt;
h->hrcvspt = hrcvspt;
h->hmcvspt = hmcvspt;
h->hrawvsmu = hrawvsmu;
h->hl1vsmu = hl1vsmu;
h->hjecvsmu = hjecvsmu;
h->hresvsmu = hresvsmu;
h->hrcvsmu = hrcvsmu;
h->hmcvsmu = hmcvsmu;
h->hmu00up = hmu00up;
h->hmu15dw = hmu15dw;
h->hmu1520 = hmu1520;
h->hmu2025 = hmu2025;
h->hmu2530 = hmu2530;
h->hmu30up = hmu30up;
h->pptcorrovptchvsmu = pptcorrovptchvsmu;
h->pptrawovptchvsmu = pptrawovptchvsmu;
h->pptrcovptchvsmu = pptrcovptchvsmu;
h->pptmcovptchvsmu = pptmcovptchvsmu;
h->h2ptcorrovptchvsmu = h2ptcorrovptchvsmu;
h->h2ptrawovptchvsmu = h2ptrawovptchvsmu;
h->h2ptrcovptchvsmu = h2ptrcovptchvsmu;
h->h2ptmcovptchvsmu = h2ptmcovptchvsmu;
}
double sum(0), sum15dw(0), sum1520(0), sum2025(0), sum2530(0), sum30up(0);
double nmu(0), nmu15dw(0), nmu1520(0), nmu2025(0), nmu2530(0), nmu30up(0);
//const double ptmin = 15.;//30
Long64_t ntot = fChain->GetEntries();
cout << "Read in " << ntot << " entries" << endl << flush;
cout << "Process " << 1.*ntot/100000 << " blocks" << endl << flush;
// Set number of entries
//nentries = 1000000;
//nentries = 100;
Long64_t nbytes = 0, nb = 0;
for (Long64_t jentry=0; jentry<nentries;jentry++) {
Long64_t ientry = LoadTree(jentry);
if (ientry < 0) break;
nb = fChain->GetEntry(jentry); nbytes += nb;
// if (Cut(ientry) < 0) continue;
if (ientry%100000==0) cout << "." << flush;
++sum; nmu += mu;
if (mu<15) { ++sum15dw; nmu15dw += mu; }
if (mu>=15 && mu<20) { ++sum1520; nmu1520 += mu; }
if (mu>=20 && mu<25) { ++sum2025; nmu2025 += mu; }
if (mu>=25 && mu<30) { ++sum2530; nmu2530 += mu; }
if (mu>=30) { ++sum30up; nmu30up += mu; }
hmu0->Fill(mu);
hrho0->Fill(rho);
hnpv0->Fill(nPV);
pmu0->Fill(mu,mu);
prho0->Fill(mu,rho);
pnpv0->Fill(mu,nPV);
for (int i = 0; i != nJets; ++i) {
_JEC->setRho(rho);
_JEC->setJetA(jet_area[i]);
_JEC->setJetPt(jet_pt[i]);
_JEC->setJetEta(jet_eta[i]);
//double jec = _JEC->getCorrection();
//double ptcorr = jec*jet_pt[i];
vector<float> jecs = _JEC->getSubCorrections();
_JECRC->setRho(rho);
_JECRC->setJetA(jet_area[i]);
_JECRC->setJetPt(jet_pt[i]);
_JECRC->setJetEta(jet_eta[i]);
double jecrc = _JECRC->getCorrection();
_JECMC->setRho(rho);
_JECMC->setJetA(jet_area[i]);
_JECMC->setJetPt(jet_pt[i]);
_JECMC->setJetEta(jet_eta[i]);
double jecmc = _JECMC->getCorrection();
double ptcorr = jecs[2]*jet_pt[i];
double ptch = jet_ch[i]*jet_pt[i];
for (int ipt = 0; ipt != npt; ++ipt) {
double ptmin = vpt[ipt];
double ptmax = (ipt!=npt-1 ? vpt[ipt+1] : 6500.);
histos *h = vh[ipt];
// Rates vs eta (for given pT)
if (jet_pt[i]>ptmin && jet_pt[i]<ptmax)
h->hrawvseta->Fill(jet_eta[i]);
if (jecs[0]*jet_pt[i]>ptmin && jecs[0]*jet_pt[i]<ptmax)
h->hl1vseta->Fill(jet_eta[i]);
if (jecs[1]*jet_pt[i]>ptmin && jecs[1]*jet_pt[i]>ptmin)
h->hjecvseta->Fill(jet_eta[i]);
if (jecs[2]*jet_pt[i]>ptmin && jecs[2]*jet_pt[i]>ptmin)
h->hresvseta->Fill(jet_eta[i]);
if (jecrc*jet_pt[i]>ptmin && jecrc*jet_pt[i]>ptmin)
h->hrcvseta->Fill(jet_eta[i]);
if (jecmc*jet_pt[i]>ptmin && jecmc*jet_pt[i]>ptmin)
h->hmcvseta->Fill(jet_eta[i]);
if (fabs(jet_eta[i])<1.3) {
// Rates vs pT (for barrel eta)
h->hrawvspt->Fill(jet_pt[i]);
h->hl1vspt->Fill(jecs[0]*jet_pt[i]);
h->hjecvspt->Fill(jecs[1]*jet_pt[i]);
h->hresvspt->Fill(jecs[2]*jet_pt[i]);
h->hrcvspt->Fill(jecrc*jet_pt[i]);
h->hmcvspt->Fill(jecmc*jet_pt[i]);
// Rates vs mu (for given pT and barrel eta)
if (mu>0.1) {
if (jet_pt[i]>ptmin && jet_pt[i]<ptmax)
h->hrawvsmu->Fill(mu, 1./mu);
if (jecs[0]*jet_pt[i]>ptmin && jecs[0]*jet_pt[i]<ptmax)
h->hl1vsmu->Fill(mu, 1./mu);
if (jecs[1]*jet_pt[i]>ptmin && jecs[1]*jet_pt[i]>ptmin)
h->hjecvsmu->Fill(mu, 1./mu);
if (jecs[2]*jet_pt[i]>ptmin && jecs[2]*jet_pt[i]>ptmin)
h->hresvsmu->Fill(mu, 1./mu);
if (jecrc*jet_pt[i]>ptmin && jecrc*jet_pt[i]>ptmin)
h->hrcvsmu->Fill(mu, 1./mu);
if (jecmc*jet_pt[i]>ptmin && jecmc*jet_pt[i]>ptmin)
h->hmcvsmu->Fill(mu, 1./mu);
}
}
// Rates vs eta (for given pT and mu range)
if (ptcorr>ptmin && ptcorr<ptmax) {
h->pmu->Fill(mu,mu);
h->prho->Fill(mu,rho);
h->pnpv->Fill(mu,nPV);
h->hmu00up->Fill(jet_eta[i]);
if (mu<15) h->hmu15dw->Fill(jet_eta[i]);
if (mu>=15 && mu<20) h->hmu1520->Fill(jet_eta[i]);
if (mu>=20 && mu<25) h->hmu2025->Fill(jet_eta[i]);
if (mu>=25 && mu<30) h->hmu2530->Fill(jet_eta[i]);
if (mu>=30) h->hmu30up->Fill(jet_eta[i]);
} // pt>ptmin
if (ptch>0.6*ptmin && ptch<0.6*ptmax) {
if (fabs(jet_eta[i])<1.3 ) {
//if (ptch > 0.2*jet_pt[i]) {
h->pptcorrovptchvsmu->Fill(mu, 0.6*ptcorr/ptch);
h->pptrawovptchvsmu->Fill(mu, 0.6*jet_pt[i]/ptch);
h->pptrcovptchvsmu->Fill(mu, 0.6*jecrc*jet_pt[i]/ptch);
h->pptmcovptchvsmu->Fill(mu, 0.6*jecmc*jet_pt[i]/ptch);
//}
h->h2ptcorrovptchvsmu->Fill(mu, 0.6*ptcorr/ptch);
h->h2ptrawovptchvsmu->Fill(mu, 0.6*jet_pt[i]/ptch);
h->h2ptrcovptchvsmu->Fill(mu, 0.6*jecrc*jet_pt[i]/ptch);
h->h2ptmcovptchvsmu->Fill(mu, 0.6*jecmc*jet_pt[i]/ptch);
} // |eta|<1.3
} // ptch>0.6*ptmin
} // for ipt
if (fabs(jet_eta[i])<1.3) {
if (i==0) hptlead->Fill(ptcorr);
if (i<2) hpttag->Fill(ptcorr);
} // for |jet_eta|<1.3
} // for i
}
hmu0->Scale(1./nentries);
hrho0->Scale(1./nentries);
hnpv0->Scale(1./nentries);
for (int ipt = 0; ipt != npt; ++ipt) {
histos *h = vh[ipt];
h->hrawvseta->Scale(1./nmu);
h->hl1vseta->Scale(1./nmu);
h->hjecvseta->Scale(1./nmu);
h->hresvseta->Scale(1./nmu);
h->hrcvseta->Scale(1./nmu);
h->hmcvseta->Scale(1./nmu);
h->hrawvspt->Scale(1./nmu);
h->hl1vspt->Scale(1./nmu);
h->hjecvspt->Scale(1./nmu);
h->hresvspt->Scale(1./nmu);
h->hrcvspt->Scale(1./nmu);
h->hmcvspt->Scale(1./nmu);
h->hrawvsmu->Scale(1./sum);
h->hl1vsmu->Scale(1./sum);
h->hjecvsmu->Scale(1./sum);
h->hresvsmu->Scale(1./sum);
h->hrcvsmu->Scale(1./sum);
h->hmcvsmu->Scale(1./sum);
h->hmu00up->Scale(1./nmu);
h->hmu15dw->Scale(1./nmu15dw);
h->hmu1520->Scale(1./nmu1520);
h->hmu2025->Scale(1./nmu2025);
h->hmu2530->Scale(1./nmu2530);
h->hmu30up->Scale(1./nmu30up);
}
cout << "Processed nentries="<<nentries<<" (sum="<<sum
<<", nmu="<<nmu<<", <mu>="<<nmu/sum<<")"<<endl;
fout->Write();
fout->Close();
}