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#include "browseStacks.h"
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#include "TH2.h"
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#include "THStack.h"
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4 |
#include "TRegexp.h"
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#include "TROOT.h"
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#include "TCanvas.h"
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#include "TObjArray.h"
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#include "TText.h"
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#include "TStyle.h"
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#include <iostream>
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#include <algorithm>
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using namespace std;
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// Make the stacks and then browse them interactive
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// if (makePictures==true), saves all plots to out/stacks.ps
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// Also: make out_stacks_xx.png where xx is the page number
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// on the stack.ps file
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//
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// keep2D=false to skip the annoying 2D histograms
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//
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void browseStacks(vector<TString> v_samples, vector<Color_t> v_colors, TString outfile, vector<TString> v_legEntries, bool drawLogY, vector<Style_t> v_style, bool plotData) {
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if (v_samples.size() != v_colors.size()) {
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cout << "Number of entries in the vector of samples is not the same as the number of entries in the vector of Color_t" << endl;
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return;
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}
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if (v_style.size() !=0 && v_style.size() != v_colors.size()) {
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cout << "Number of entries in the vector of styles is not the same as the number of entries in the vector of samples" << endl;
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return;
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}
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gStyle->SetOptTitle(0);
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// Find out what the names of the existing histograms are
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// The histogram names are XX_YY_ZZ, where XX is the sample,
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// eg, "tt", YY is the actual name, ZZ is the final state, eg, "ee"
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//exclude data if it is found
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bool keep2D = false;
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TObjArray* myNames = getMyHistosNames(v_samples.at(0).Data(),"ee",keep2D);
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if(myNames->GetSize() == 0) {
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cout << "could not find the sample at the first point in the vector of samples. Exiting." << endl;
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return;
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}
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// debugging code to see what's in myNames
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std::cout << "Processing the following " << myNames->GetEntries() << " histograms: ";
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for (unsigned int i = 0; i < myNames->GetEntries(); i++)
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{
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if (i > 0)
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std::cout << ", ";
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else
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std::cout << "";
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std::cout << myNames->At(i)->GetName();
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}
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std::cout << std::endl;
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std::cout.flush();
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std::cout << "Processing the following " << v_samples.size() << " samples: ";
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for (unsigned int i = 0; i < v_samples.size(); i++)
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{
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if (i > 0)
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std::cout << ", ";
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else
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std::cout << "";
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std::cout << v_samples.at(i).Data();
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}
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std::cout << std::endl;
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std::cout.flush();
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// Now loop over histograms, and make stacks
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TCanvas *c = new TCanvas();
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c->Divide(2,2);
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vector<string> v_channel;
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v_channel.push_back("ee");
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v_channel.push_back("mm");
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v_channel.push_back("em");
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v_channel.push_back("all");
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for (int i=0; i<myNames->GetEntries(); i++) {
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for (int i_channel=0; i_channel<4; i_channel++) {
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vector<TH1F*> v_hists;
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TH1F *hdata = NULL;
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for(unsigned int i_prefix = 0; i_prefix < v_samples.size(); i_prefix++) {
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TString histoName = v_samples.at(i_prefix) + "_" + myNames->At(i)->GetName() + "_" + v_channel.at(i_channel);
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TObject *obj = gDirectory->Get(histoName.Data());
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if (!obj->InheritsFrom(TH1::Class()))
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continue;
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TH1F *htemp = dynamic_cast<TH1F*>(obj);
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htemp->SetFillColor(v_colors.at(i_prefix));
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htemp->SetLineColor(kBlack);
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TString plot(myNames->At(i)->GetName());
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if(plot.Contains("jet") ||
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plot.Contains("met") ||
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plot.Contains("btag") ||
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plot.Contains("ht") ||
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plot.Contains("tch") ||
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plot.Contains("mass"))
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{
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string xtitle;
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string ytitle;
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if(plot.Contains("jet")) {
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xtitle = "Number of jets";
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ytitle = "Events";
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} else if(plot.Contains("met")) {
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xtitle = "#slash{E}_{T} (GeV)";
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ytitle = "Events/(10 GeV)";
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} else if(plot.Contains("ht")) {
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xtitle = "H_{T} (GeV)";
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ytitle = "Events/(10 GeV)";
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} else if(plot.Contains("btag" || plot.Contains("tch")) ) {
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xtitle = "Number of b-tagged jets";
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ytitle = "Events";
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// const char *jetbins[4] = {"0", "1", "2", "#geq 3"};
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// for(int k = 0; k<4; k++)
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// htemp->GetXaxis()->SetBinLabel(k+1, jetbins[k]);
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// htemp->GetXaxis()->SetLabelSize(0.07);
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} else if (plot.Contains("wmass")) {
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xtitle = "M_{jj} (GeV)";
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ytitle = "Events / (10 GeV)";
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} else if(plot.Contains("dilMass")) {
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xtitle = "Dilepton mass [GeV/c^{2}]";
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ytitle = "Events/(5 GeV/c^{2})";
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}
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htemp->GetXaxis()->SetTitle(xtitle.c_str());
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htemp->GetYaxis()->SetTitle(ytitle.c_str());
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htemp->GetYaxis()->SetTitleOffset(1.5);
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htemp->GetXaxis()->SetTitleSize(0.045);
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htemp->GetYaxis()->SetTitleSize(0.045);
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}
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if (v_style.size() > 0) {
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htemp->SetFillStyle(v_style.at(i_prefix));
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if(v_samples.at(i_prefix) == "data") {
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htemp->SetMarkerStyle(v_style.at(i_prefix));
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htemp->SetMarkerColor(v_colors.at(i_prefix));
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}
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}
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//don't add the data histogram to the stack
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if (v_samples.at(i_prefix) == "data") {
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hdata = htemp;
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continue;
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}
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if (i_prefix==0) {
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v_hists.push_back(htemp);
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continue;
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}
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htemp->Add(v_hists.back());
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v_hists.push_back(htemp);
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}//prefix loop
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if (hdata != NULL)
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v_hists.push_back(hdata);
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c->cd(i_channel+1);
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//now set the Minimum if we want Log Scale
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float min = 0;
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if(drawLogY && i_channel != 2)
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min = GetMinimum(v_hists);
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//set the minimum, before we pass the vector of hists to the legend function
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for(vector<TH1F*>::iterator it = v_hists.begin(); it != v_hists.end(); it++)
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(*it)->SetMinimum(min);
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TLegend *leg = NULL;
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if (i_channel == 3) {
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leg = makeLegend(v_hists, v_legEntries, drawLogY, TString(myNames->At(i)->GetName()));
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} else {
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float max = 0;
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for(vector<TH1F*>::iterator it = v_hists.begin(); it != v_hists.end(); it++) {
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if((*it)->GetMaximum() > max)
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max = (*it)->GetMaximum();
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}
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for(vector<TH1F*>::iterator it = v_hists.begin(); it != v_hists.end(); it++) {
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if(drawLogY && i_channel != 2 )
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(*it)->SetMaximum(50*max);
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else
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(*it)->SetMaximum(1.5*max);
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}
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}
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//now we gotta draw, in reverse order
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bool data_is_first_and_skipped = false;
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for(vector<TH1F*>::reverse_iterator it = v_hists.rbegin(); it != v_hists.rend(); it++) {
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//do not draw if the histogram is empty...1e-6 should be good enough
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if(drawLogY && (*it)->GetMaximum() < 1e-6)
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continue;
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if (i_channel == 3) {
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float max = 1.1*leg->GetY2();
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if (drawLogY)
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max = 5*leg->GetY2();
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if (v_hists.back()->GetMaximum() < max)
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(*it)->SetMaximum(max);
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}
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if (TString((*it)->GetName()).Contains("data")) {
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hdata = (*it);
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if (it == v_hists.rbegin() && plotData)
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(*it)->Draw("Pe");
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else if (it == v_hists.rbegin() && !plotData)
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data_is_first_and_skipped = true;
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else if (plotData)
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(*it)->Draw("Pesame");
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} else {
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if (it == v_hists.rbegin() || data_is_first_and_skipped) {
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(*it)->Draw("hist");
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data_is_first_and_skipped = false;
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}
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else
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(*it)->Draw("histsame");
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}
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}
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if(hdata != NULL && plotData) {
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hdata->Draw("Pesame");
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}
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gPad->RedrawAxis();
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if(i_channel == 3)
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leg->Draw();
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//need to draw the first histogram in the stack again, because of the tickmarks
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//now set the Log scale, if desired
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if(drawLogY && i_channel!=2)
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gPad->SetLogy(1);
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TPaveText *pt = getPaveText(v_hists, i_channel);
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pt->Draw();
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}//channel loop
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c->Modified();
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c->Update();
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TString tempstring = outfile.ReplaceAll(".root", "");
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if(i != myNames->GetEntries() - 1)
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c->Print((tempstring + ".eps(").Data());
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else
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c->Print((tempstring + ".eps)").Data());
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}//histos loop
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}
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double GetMinimum(const vector<TH1F*> &v_hists) {
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TH1* h = NULL; //get the first non-empty histogram
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for(unsigned int i = 0; v_hists.size(); i++) {
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h = v_hists.at(i);
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if(h->Integral() > 0)
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break;
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}
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if(h->GetMinimum() < 5e-3)
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return 5e-3;
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else
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return
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0.5*(h->GetMinimum());
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}
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TLegend* makeLegend(const vector<TH1F*> &v_hists, vector<TString> v_legEntries, bool drawLogY, TString histName) {
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//Prefer to draw the Legend on the right half of the
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//canvas, so only look at the right half
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int nbins = v_hists.at(0)->GetNbinsX();
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TH1F *hdata = NULL;
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TH1F *hmax = NULL;
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for(vector<TH1F*>::const_reverse_iterator rit = v_hists.rbegin(); rit != v_hists.rend(); rit++) {
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if(TString((*rit)->GetName()).Contains("data")) {
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hdata = *rit;
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break;
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}
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}
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for(vector<TH1F*>::const_reverse_iterator rit = v_hists.rbegin(); rit != v_hists.rend(); rit++) {
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if(TString((*rit)->GetName()).Contains("data"))
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continue;
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hmax = *rit;
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break;
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}
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// std::cout << "determing x position of legend..." << std::endl;
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//want the legend to be on the right
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//start with the last but 1 bin, and let this be the highX bin
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//skip the last bin 'cause it has the overflow
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float rangeX = hmax->GetXaxis()->GetXmax() - hmax->GetXaxis()->GetXmin() - hmax->GetBinWidth(nbins);
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int highBinX = nbins - 1;
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float highX = hmax->GetBinLowEdge(nbins) - 0.01*rangeX;
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float lowX = hmax->GetXaxis()->GetXmin() + 0.75*rangeX;
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int lowBinX = hmax->FindBin(lowX);
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314 |
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// std::cout << "determing y position of legend..." << std::endl;
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//now we need to figure out what the maxY is in the range
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//and set the Y's of the legend to accomodate
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float max = 1e-6;
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float lowY, highY;
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float rangeY = hmax->GetYaxis()->GetXmax() - hmax->GetYaxis()->GetXmin();
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for(int bin = lowBinX; bin < highBinX+1; bin++) {
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if(hmax->GetBinContent(bin) >= hdata->GetBinContent(bin)) {
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if(max < hmax->GetBinContent(bin))
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max = hmax->GetBinContent(bin);
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} else {
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327 |
if(max < hdata->GetBinContent(bin))
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max = hdata->GetBinContent(bin);
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}
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}
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// std:: cout << "max: " << max << std::endl;
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rangeY = hdata->GetMinimum();
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if(hdata->GetMaximum() > hmax->GetMinimum())
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rangeY = hdata->GetMaximum() - rangeY;
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else
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rangeY = hmax->GetMaximum() - rangeY;
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338 |
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if(drawLogY) {
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340 |
lowY = 5*max;
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341 |
highY = lowY + 10*rangeY;
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} else {
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343 |
lowY = 1.2*max;
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344 |
highY = lowY + 0.3*rangeY;
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}
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347 |
//cout << "lowY, highY: "<< lowY << "," << highY << endl;
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TLegend *leg;
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349 |
if(drawLogY)
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350 |
leg = new TLegend(lowX,lowY,highX,highY, "", "br");
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else
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leg = new TLegend(0.7, 0.58, 0.95, 0.92, "", "brNDC");
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if((histName.Contains("nJet") || histName.Contains("bTag")) && drawLogY) {
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354 |
int temp = hdata->GetNbinsX();
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leg = new TLegend(hdata->GetNbinsX()-1.1, lowY, temp - 0.05*hdata->GetBinWidth(temp), highY, "", "br");
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356 |
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357 |
}
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358 |
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359 |
leg->SetFillColor(kWhite);
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360 |
leg->SetBorderSize(0);
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361 |
leg->SetFillStyle(1001);
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362 |
|
363 |
if(v_hists.size() != v_legEntries.size()) {
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364 |
cout << "the number of entries in the legend vector are not the same as the number"
|
365 |
<< " of entries in the hists vector. Returning a null TLegend. " << endl;
|
366 |
return NULL;
|
367 |
}
|
368 |
vector<TH1F*>::const_reverse_iterator ritH = v_hists.rbegin();
|
369 |
vector<TString>::const_reverse_iterator ritE = v_legEntries.rbegin();
|
370 |
|
371 |
// std::cout << "filling legend..." << std::endl;
|
372 |
|
373 |
for(; ritH != v_hists.rend(); ritH++, ritE++) {
|
374 |
if(*ritE == "Data")
|
375 |
leg->AddEntry(*ritH, *ritE, "P");
|
376 |
else
|
377 |
leg->AddEntry(*ritH, *ritE, "f");
|
378 |
}
|
379 |
|
380 |
|
381 |
|
382 |
|
383 |
return leg;
|
384 |
}
|
385 |
|
386 |
|
387 |
|
388 |
|
389 |
|
390 |
TPaveText *getPaveText(const vector<TH1F*> &v_hists, int i_channel) {
|
391 |
|
392 |
if(v_hists.size() == 0)
|
393 |
return NULL;
|
394 |
|
395 |
|
396 |
/*
|
397 |
//all the histograms should have the same Y range
|
398 |
TH1F *temp = dynamic_cast<TH1F*>(v_hists.at(0)->Clone());
|
399 |
float lowX, lowY;
|
400 |
float highX, highY;
|
401 |
float rangeX = temp->GetXaxis()->GetXmax() - temp->GetXaxis()->GetXmin();
|
402 |
float rangeY = temp->GetMaximum() - temp->GetMinimum();
|
403 |
lowX = temp->GetXaxis()->GetXmin() + 0.05*rangeX;
|
404 |
highX = lowX + 0.2*rangeX;
|
405 |
lowY = temp->GetMinimum() + 0.85*rangeY;
|
406 |
highY = temp->GetMinimum() + 0.98*rangeY;
|
407 |
|
408 |
cout << "lowX, highX: "<< lowX << "," << highX << endl;
|
409 |
cout << "lowY, highY: "<< lowY << "," << highY << endl;
|
410 |
|
411 |
TPaveText *pt1 = new TPaveText(lowX, lowY, highX, highY, "br");
|
412 |
*/
|
413 |
|
414 |
|
415 |
/*
|
416 |
//used for iso, id plots
|
417 |
TPaveText *pt1 = new TPaveText(0.3, 0.77, 0.5, 0.90, "brNDC");
|
418 |
if(i_channel == 2) {
|
419 |
pt1 = new TPaveText(0.62, 0.77, 0.82, 0.90, "brNDC");
|
420 |
}
|
421 |
*/
|
422 |
|
423 |
|
424 |
/*
|
425 |
//for full analysis cut plots
|
426 |
TPaveText *pt1 = new TPaveText(0.20, 0.77, 0.40, 0.90, "brNDC");
|
427 |
if(i_channel == 2) {
|
428 |
pt1 = new TPaveText(0.58, 0.77, 0.78, 0.90, "brNDC"); //used for iso, id plots
|
429 |
}
|
430 |
*/
|
431 |
|
432 |
|
433 |
/*
|
434 |
//for the NJet plot, after the Z veto and the met cut
|
435 |
TPaveText *pt1 = new TPaveText(0.25, 0.77, 0.45, 0.90, "brNDC");
|
436 |
if(i_channel != 3)
|
437 |
pt1 = new TPaveText(0.62, 0.77, 0.82, 0.90, "brNDC");
|
438 |
*/
|
439 |
|
440 |
|
441 |
//for the MET plot, after the Zveto and the 2jet cut
|
442 |
TPaveText *pt1 = new TPaveText(0.62, 0.77, 0.82, 0.90, "brNDC");
|
443 |
if(i_channel == 3)
|
444 |
pt1 = new TPaveText(0.2, 0.77, 0.4, 0.90, "brNDC");
|
445 |
|
446 |
|
447 |
pt1->SetName("pt1name");
|
448 |
pt1->SetBorderSize(0);
|
449 |
pt1->SetFillStyle(0);
|
450 |
|
451 |
|
452 |
TText *blah = pt1->AddText("CMS Preliminary");
|
453 |
blah->SetTextSize(0.032);
|
454 |
blah->SetTextAlign(11);
|
455 |
blah = pt1->AddText("4.7 fb^{-1} at #sqrt{s}=7 TeV");
|
456 |
blah->SetTextSize(0.032);
|
457 |
blah->SetTextAlign(11);
|
458 |
|
459 |
if(i_channel==0)
|
460 |
blah = pt1->AddText("Events with ee");
|
461 |
if(i_channel == 1)
|
462 |
blah = pt1->AddText("Events with #mu#mu");
|
463 |
if(i_channel == 2)
|
464 |
blah = pt1->AddText("Events with e#mu");
|
465 |
if(i_channel == 3)
|
466 |
blah = pt1->AddText("Events with ee/#mu#mu/e#mu");
|
467 |
blah->SetTextSize(0.032);
|
468 |
blah->SetTextAlign(11);
|
469 |
|
470 |
|
471 |
return pt1;
|
472 |
}
|