3 |
|
|
4 |
|
namespace HbbAnalysis { |
5 |
|
|
6 |
< |
void HbbEvent::retrieveLeadJets(const std::vector<HbbAnalysis::Jet> & aVec, |
7 |
< |
const std::vector<HbbAnalysis::Jet> & aNonbVec, |
8 |
< |
HbbAnalysis::Jet & aLead, |
9 |
< |
HbbAnalysis::Jet & aNtoLead) |
10 |
< |
{ |
11 |
< |
if (aVec.size() == 0) return; |
12 |
< |
if (aNonbVec.size() == 0) { |
13 |
< |
aLead = aVec.at(0); |
14 |
< |
if (aVec.size() > 1) aNtoLead = aVec.at(1); |
15 |
< |
} |
16 |
< |
else { |
17 |
< |
if (aVec.at(0).recoVars().pT>aNonbVec.at(0).recoVars().pT){ |
18 |
< |
aLead = aVec.at(0); |
19 |
< |
if (aVec.size() > 1){ |
20 |
< |
if (aVec.at(1).recoVars().pT>aNonbVec.at(0).recoVars().pT) aNtoLead = aVec.at(1); |
21 |
< |
else aNtoLead = aNonbVec.at(0); |
22 |
< |
} |
6 |
> |
// void HbbEvent::retrieveLeadJets(const std::vector<HbbAnalysis::Jet> & aVec, |
7 |
> |
// const std::vector<HbbAnalysis::Jet> & abVec, |
8 |
> |
// HbbAnalysis::Jet & aLead, |
9 |
> |
// HbbAnalysis::Jet & aNtoLead) |
10 |
> |
// { |
11 |
> |
// if (abVec.size() == 0) return; |
12 |
> |
// if (aVec.size() == abVec.size()) { |
13 |
> |
// aLead = abVec.at(0); |
14 |
> |
// if (abVec.size() > 1) aNtoLead = abVec.at(1); |
15 |
> |
// } |
16 |
> |
// else { |
17 |
> |
// if (abVec.at(0).recoVars().pT>aVec.at(0).recoVars().pT){ |
18 |
> |
// aLead = abVec.at(0); |
19 |
> |
// if (abVec.size() > 1){ |
20 |
> |
// if (abVec.at(1).recoVars().pT>aVec.at(0).recoVars().pT) aNtoLead = abVec.at(1); |
21 |
> |
// else aNtoLead = aVec.at(0); |
22 |
> |
// } |
23 |
> |
// } |
24 |
> |
// else { |
25 |
> |
// aLead = aVec.at(0); |
26 |
> |
// if (aVec.size() > 1){ |
27 |
> |
// if (aVec.at(1).recoVars().pT > abVec.at(0).recoVars().pT) aNtoLead = aVec.at(1); |
28 |
> |
// else aNtoLead = abVec.at(0); |
29 |
> |
// } |
30 |
> |
// } |
31 |
> |
// } |
32 |
> |
|
33 |
> |
// } |
34 |
> |
|
35 |
> |
void HbbEvent::PrintReco(){ |
36 |
> |
|
37 |
> |
std::cout << "--------------------------------------------------------------------" << std::endl; |
38 |
> |
std::cout << "RUN: " << run_ << "\tLS: " << lb_ << "\tEVENT: " << event_ << std::endl; |
39 |
> |
std::cout << "--------------------------------------------------------------------" << std::endl; |
40 |
> |
for (unsigned i = 0; i < electrons_.size(); ++i) { |
41 |
> |
std::cout << "-----------------------------Electrons----------------------------" << std::endl; |
42 |
> |
std::cout << "Electron " << i << ":" << std::endl; |
43 |
> |
electrons_[i].Print(); |
44 |
|
} |
45 |
< |
else { |
46 |
< |
aLead = aNonbVec.at(0); |
47 |
< |
if (aNonbVec.size() > 1){ |
48 |
< |
if (aNonbVec.at(1).recoVars().pT > aVec.at(0).recoVars().pT) aNtoLead = aNonbVec.at(1); |
49 |
< |
else aNtoLead = aVec.at(0); |
50 |
< |
} |
45 |
> |
for (unsigned i = 0; i < muons_.size(); ++i) { |
46 |
> |
std::cout << "-------------------------------Muons------------------------------" << std::endl; |
47 |
> |
std::cout << "Muon " << i << ":" << std::endl; |
48 |
> |
muons_[i].Print(); |
49 |
> |
} |
50 |
> |
for (unsigned i = 0; i < pfJets_.size(); ++i) { |
51 |
> |
std::cout << "------------------------------PFJets------------------------------" << std::endl; |
52 |
> |
std::cout << "Jet " << i << ":" << std::endl; |
53 |
> |
pfJets_[i].Print(); |
54 |
|
} |
55 |
|
} |
32 |
– |
|
33 |
– |
} |
34 |
– |
|
56 |
|
|
57 |
|
} |