TTTT_Analysis.cpp 19 KB

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  1. /**
  2. * @file
  3. * @author Caleb Fangmeier <caleb@fangmeier.tech>
  4. * @version 0.1
  5. *
  6. * @section LICENSE
  7. *
  8. *
  9. * MIT License
  10. *
  11. * Copyright (c) 2017 Caleb Fangmeier
  12. *
  13. * Permission is hereby granted, free of charge, to any person obtaining a copy
  14. * of this software and associated documentation files (the "Software"), to deal
  15. * in the Software without restriction, including without limitation the rights
  16. * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
  17. * copies of the Software, and to permit persons to whom the Software is
  18. * furnished to do so, subject to the following conditions:
  19. *
  20. * The above copyright notice and this permission notice shall be included in all
  21. * copies or substantial portions of the Software.
  22. *
  23. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  24. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  25. * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
  26. * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  27. * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
  28. * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
  29. * SOFTWARE.
  30. *
  31. * @section DESCRIPTION
  32. * Main analysis routine file. This file declares the Histogram/Graph objects
  33. * that will end up in the final root file. It also declares the values that
  34. * are used to populate the histogram, as well as how these values are
  35. * calculated. See the Fil-Val documentation for how the system works.
  36. */
  37. #include <iostream>
  38. #include <vector>
  39. #include <utility>
  40. #include <limits>
  41. #include "filval/filval.hpp"
  42. #include "filval_root/filval_root.hpp"
  43. #include "MiniTreeDataSet.hpp"
  44. #include <TSystem.h>
  45. #define PI 3.14159
  46. #define W_MASS 80.385 // GeV/c^2
  47. #define Z_MASS 91.188 // GeV/c^2
  48. #define T_MASS 172.44 // GeV/c^2
  49. using namespace std;
  50. using namespace fv;
  51. using namespace fv::root;
  52. void enable_branches(MiniTreeDataSet& mt){
  53. mt.fChain->SetBranchStatus("*", false);
  54. mt.track_branch<int>("nLepGood");
  55. mt.track_branch_vec< int >("nLepGood", "LepGood_pdgId");
  56. mt.track_branch_vec<float>("nLepGood", "LepGood_pt");
  57. mt.track_branch_vec<float>("nLepGood", "LepGood_eta");
  58. mt.track_branch_vec<float>("nLepGood", "LepGood_phi");
  59. mt.track_branch_vec<float>("nLepGood", "LepGood_mass");
  60. mt.track_branch_vec< int >("nLepGood", "LepGood_charge");
  61. mt.track_branch_vec< int >("nLepGood", "LepGood_mcMatchId");
  62. mt.track_branch_vec< int >("nLepGood", "LepGood_mcMatchPdgId");
  63. mt.track_branch_vec< int >("nLepGood", "LepGood_mcMatchAny");
  64. mt.track_branch_vec< int >("nLepGood", "LepGood_mcMatchTau");
  65. mt.track_branch_vec< int >("nLepGood", "LepGood_mcPt");
  66. mt.track_branch<int>("nJet");
  67. mt.track_branch_vec<float>("nJet", "Jet_pt");
  68. mt.track_branch_vec<float>("nJet", "Jet_eta");
  69. mt.track_branch_vec<float>("nJet", "Jet_phi");
  70. mt.track_branch_vec<float>("nJet", "Jet_mass");
  71. mt.track_branch_vec<float>("nJet", "Jet_btagCMVA");
  72. mt.track_branch<int>("nGenPart");
  73. mt.track_branch_vec< int >("nGenPart", "GenPart_pdgId");
  74. mt.track_branch_vec< int >("nGenPart", "GenPart_motherIndex");
  75. mt.track_branch_vec< int >("nGenPart", "GenPart_motherId");
  76. mt.track_branch_vec<float>("nGenPart", "GenPart_pt");
  77. mt.track_branch_vec<float>("nGenPart", "GenPart_eta");
  78. mt.track_branch_vec<float>("nGenPart", "GenPart_phi");
  79. mt.track_branch_vec<float>("nGenPart", "GenPart_mass");
  80. mt.track_branch_vec< int >("nGenPart", "GenPart_status");
  81. mt.track_branch<int>("nBJetLoose40");
  82. mt.track_branch<int>("nBJetMedium40");
  83. mt.track_branch<int>("nBJetTight40");
  84. mt.track_branch<int>("nVert");
  85. mt.track_branch< int >("run" );
  86. mt.track_branch< int >("lumi");
  87. mt.track_branch< int >("evt" );
  88. mt.track_branch<float>("xsec");
  89. }
  90. struct Jet{
  91. TLorentzVector v;
  92. float b_cmva;
  93. int idx;
  94. public:
  95. Jet()
  96. :v(),b_cmva(0),idx(0) { }
  97. Jet(const TLorentzVector& v, float b_cmva, int idx)
  98. :v(v),b_cmva(b_cmva),idx(idx) { }
  99. };
  100. void declare_values(MiniTreeDataSet& mt){
  101. energies(lorentz_vectors("LepGood_pt", "LepGood_eta", "LepGood_phi", "LepGood_mass", "LepGood_4v"), "LepGood_energy");
  102. energies(lorentz_vectors("GenPart_pt", "GenPart_eta", "GenPart_phi", "GenPart_mass", "GenPart_4v"), "GenPart_energy");
  103. energies(lorentz_vectors("Jet_pt", "Jet_eta", "Jet_phi", "Jet_mass", "Jet_4v" ), "Jet_energy");
  104. auto& build_jets = GenFunction::register_function<std::vector<Jet>(std::vector<TLorentzVector>,std::vector<float>)>("build_jets",
  105. FUNC(([](const std::vector<TLorentzVector>& vs, const std::vector<float>& b_cmvas){
  106. std::vector<Jet> jets;
  107. for(int i=0; i<vs.size(); i++){
  108. jets.push_back(Jet(vs[i],b_cmvas[i],i));
  109. }
  110. return jets;
  111. })));
  112. auto jet_parts = fv::tuple<std::vector<TLorentzVector>,std::vector<float>>(lookup<std::vector<TLorentzVector>>("Jet_4v"), lookup<std::vector<float>>("Jet_btagCMVA"));
  113. auto jets = apply(build_jets, jet_parts, "jets");
  114. auto b_jets = filter(GenFunction::register_function<bool(Jet)>("b_jet_filter",
  115. FUNC(([cut=0.0](const Jet& j){
  116. return j.b_cmva > cut;
  117. }))), jets, "b_jets");
  118. auto dijets = combinations<Jet,2>(jets, "dijets");
  119. auto& w_mass_filter = GenFunction::register_function<bool(Jet, Jet)>("w_mass_filter",
  120. FUNC(([win_l=W_MASS-10, win_h=W_MASS+10](const Jet& j1, const Jet& j2){
  121. float inv_mass = (j1.v + j2.v).M();
  122. return inv_mass > win_l && inv_mass < win_h;
  123. })));
  124. auto w_dijets = tup_filter(w_mass_filter, dijets, "w_dijets");
  125. auto top_cands = cart_product<std::tuple<Jet,Jet>, Jet>(w_dijets, b_jets);
  126. auto& dup_filter = GenFunction::register_function<bool(std::tuple<Jet,Jet>,Jet)>("dup_filter",
  127. FUNC(([](const std::tuple<Jet,Jet>& w, const Jet& b){
  128. int j0 = b.idx;
  129. int j1 = std::get<0>(w).idx;
  130. int j2 = std::get<1>(w).idx;
  131. return (j0 != j1) && (j0 != j2) && (j1 != j2);
  132. })));
  133. top_cands = tup_filter(dup_filter, top_cands, "top_cands_deduped");
  134. fv::map(GenFunction::register_function<float(std::tuple<Jet,Jet>,Jet)>("t_mass",
  135. FUNC(([](const std::tuple<Jet,Jet>& w, const Jet& b){
  136. return (std::get<0>(w).v+std::get<1>(w).v+b.v).M();
  137. }))),top_cands, "rec_top_mass");
  138. auto& inv_mass2 = GenFunction::register_function<float(Jet, Jet)>("inv_mass2",
  139. FUNC(([] (const Jet& j1, const Jet& j2){
  140. TLorentzVector sum = j1.v + j2.v;
  141. return (float)sum.M();
  142. })));
  143. fv::map(inv_mass2, dijets, "di-jet_inv_mass");
  144. fv::pair<vector<float>,vector<float>>("LepGood_energy", "LepGood_pt", "LepGood_energy_LepGood_pt");
  145. fv::pair<vector<float>,vector<float>>("Jet_energy", "Jet_eta", "Jet_energy_vs_Jet_eta");
  146. max<float>("LepGood_energy", "LepGood_energy_max");
  147. min<float>("LepGood_energy", "LepGood_energy_min");
  148. range<float>("LepGood_energy", "LepGood_energy_range");
  149. mean<float>("LepGood_energy", "LepGood_energy_mean");
  150. count<float>(GenFunction::register_function<bool(float)>("bJet_Selection", FUNC(([](float x){return x>0;}))),
  151. "Jet_btagCMVA", "b_jet_count");
  152. auto &is_electron = GenFunction::register_function<bool(int)>("is_electron", FUNC(([](int pdgId)
  153. {
  154. return abs(pdgId) == 11;
  155. })));
  156. auto &is_muon = GenFunction::register_function<bool(int)>("is_muon", FUNC(([](int pdgId)
  157. {
  158. return abs(pdgId) == 13;
  159. })));
  160. auto &is_lepton = GenFunction::register_function<bool(int)>("is_lepton", FUNC(([ie=&is_electron, im=&is_muon](int pdgId)
  161. {
  162. return (*ie)(pdgId) || (*im)(pdgId);
  163. })));
  164. count<int>(is_electron, "GenPart_pdgId", "genEle_count");
  165. count<int>(is_muon, "GenPart_pdgId", "genMu_count");
  166. count<int>(is_lepton, "GenPart_pdgId", "genLep_count");
  167. count<int>(is_electron, "LepGood_pdgId", "recEle_count");
  168. count<int>(is_muon, "LepGood_pdgId", "recMu_count");
  169. count<int>(is_lepton, "LepGood_pdgId", "recLep_count");
  170. fv::pair<int, int>("genEle_count", "recEle_count", "genEle_count_v_recEle_count");
  171. fv::pair<int, int>("genMu_count", "recMu_count", "genMu_count_v_recMu_count");
  172. fv::pair<int, int>("genLep_count", "recLep_count", "genLep_count_v_recLep_count");
  173. obs_filter("trilepton", FUNC(([nLepGood=lookup<int>("nLepGood")]()
  174. {
  175. return dynamic_cast<Value<int>*>(nLepGood)->get_value() == 3;
  176. })));
  177. obs_filter("os-dilepton", FUNC(([LepGood_charge=lookup<vector<int>>("LepGood_charge")]()
  178. {
  179. auto& charges = LepGood_charge->get_value();
  180. return charges.size()==2 && (charges[0] != charges[1]);
  181. })));
  182. obs_filter("ss-dilepton", FUNC(([LepGood_charge=lookup<vector<int>>("LepGood_charge")]()
  183. {
  184. auto& charges = LepGood_charge->get_value();
  185. return charges.size()==2 && (charges[0] == charges[1]);
  186. })));
  187. }
  188. void declare_containers(MiniTreeDataSet& mt){
  189. mt.register_container<ContainerTH1<int>>("lepton_count", "Lepton Multiplicity", lookup<int>("nLepGood"), 8, 0, 8);
  190. mt.register_container<ContainerTH1Many<float>>("LepGood_energy_all", "Lepton Energy - All",
  191. lookup<vector<float>>("LepGood_energy"), 50, 0, 500);
  192. mt.register_container<ContainerTH1<float>>("LepGood_energy_max", "Lepton Energy - Max",
  193. lookup<float>("LepGood_energy_max"), 50, 0, 500,
  194. "Lepton Energy Max(GeV)");
  195. mt.register_container<ContainerTH1<float>>("LepGood_energy_min", "Lepton Energy - Min",
  196. lookup<float>("LepGood_energy_min"), 50, 0, 500,
  197. "Lepton Energy Min(GeV)");
  198. mt.register_container<ContainerTH1<float>>("LepGood_energy_range", "Lepton Energy - Range",
  199. lookup<float>("LepGood_energy_range"), 50, 0, 500,
  200. "Lepton Energy Range(GeV)");
  201. mt.register_container<ContainerTH1Many<float>>("Jet_pt", "Jet P_T",
  202. lookup<vector<float>>("Jet_pt"), 50, 0, 500,
  203. "Jet P_T");
  204. mt.register_container<ContainerTH1Many<float>>("Jet_eta", "Jet Eta",
  205. lookup<vector<float>>("Jet_eta"), 50, -3, 3,
  206. "Jet Eta");
  207. mt.register_container<ContainerTH1Many<float>>("Jet_phi", "Jet Phi",
  208. lookup<vector<float>>("Jet_phi"), 20, -PI, PI,
  209. "Jet Phi");
  210. mt.register_container<ContainerTH1Many<float>>("Jet_mass", "Jet Mass",
  211. lookup<vector<float>>("Jet_mass"), 50, 0, 200,
  212. "Jet Mass");
  213. mt.register_container<ContainerTH1Many<float>>("dijet_inv_mass", "Di-Jet Inv. Mass - All",
  214. lookup<vector<float>>("di-jet_inv_mass"), 100, 0, 500,
  215. "Di-Jet Mass");
  216. mt.register_container<ContainerTH1Many<float>>("dijet_inv_mass_osdilepton", "Di-Jet Inv. Mass - OS Dilepton",
  217. lookup<vector<float>>("di-jet_inv_mass"), 100, 0, 500,
  218. "Di-Jet Mass")->add_filter(lookup_obs_filter("os-dilepton"));
  219. mt.register_container<ContainerTH1Many<float>>("dijet_inv_mass_ssdilepton", "Di-Jet Inv. Mass - SS Dilepton",
  220. lookup<vector<float>>("di-jet_inv_mass"), 100, 0, 500,
  221. "Di-Jet Mass")->add_filter(lookup_obs_filter("ss-dilepton"));
  222. mt.register_container<ContainerTH1Many<float>>("dijet_inv_mass_trilepton", "Di-Jet Inv. Mass - Trilepton",
  223. lookup<vector<float>>("di-jet_inv_mass"), 100, 0, 500,
  224. "Di-Jet Mass")->add_filter(lookup_obs_filter("trilepton"));
  225. mt.register_container<ContainerTH1Many<float>>("rec_top_mass", "Reconstructed top mass",
  226. lookup<vector<float>>("rec_top_mass"), 100, 0, 500,
  227. "Tri-jet invarient mass");
  228. mt.register_container<ContainerTH1Many<float>>("Jet_energy", "Jet Energy",
  229. lookup<vector<float>>("Jet_energy"), 100, 0, 400,
  230. "Jet Energy");
  231. mt.register_container<ContainerTH2Many<float>>("Jet_energy_vs_Jet_eta", "Jet Energy vs Jet Eta",
  232. lookup<std::pair<vector<float>, vector<float>>>("Jet_energy_vs_Jet_eta"),
  233. 100, 0, 400, 50, -3, 3,
  234. "Jet Energy", "Jet Eta");
  235. mt.register_container<ContainerTH2<int>>("nLepvsnJet", "Number of Leptons vs Number of Jets",
  236. fv::pair<int, int>("nLepGood", "nJet"),
  237. 7, 0, 7, 20, 0, 20,
  238. "Number of Leptons", "Number of Jets");
  239. mt.register_container<ContainerTH2Many<float>>("LepGood_energy_vs_pt", "Lepton Energy vs Lepton Pt",
  240. lookup<std::pair<std::vector<float>,std::vector<float>>>("LepGood_energy_LepGood_pt"),
  241. 50, 0, 500, 50, 0, 500,
  242. "lepton energy","lepton Pt");
  243. mt.register_container<ContainerTH2<int>>("genEle_count_v_recEle_count", "Number of Generated Electrons v. Number of Reconstructed Electrons",
  244. lookup<std::pair<int,int>>("genEle_count_v_recEle_count"),
  245. 10, 0, 10, 10, 0, 10,
  246. "Generated Electrons","Reconstructed Electrons");
  247. mt.register_container<ContainerTH2<int>>("genMu_count_v_recMu_count", "Number of Generated Muons v. Number of Reconstructed Muons",
  248. lookup<std::pair<int,int>>("genMu_count_v_recMu_count"),
  249. 10, 0, 10, 10, 0, 10,
  250. "Generated Muons","Reconstructed Muons");
  251. mt.register_container<ContainerTH2<int>>("genLep_count_v_recLep_count", "Number of Generated Leptons v. Number of Reconstructed Leptons (e & mu only)",
  252. lookup<std::pair<int,int>>("genLep_count_v_recLep_count"),
  253. 10, 0, 10, 10, 0, 10,
  254. "Generated Leptons","Reconstructed Leptons");
  255. mt.register_container<ContainerTH1<int>>("b_jet_count", "B-Jet Multiplicity", lookup<int>("b_jet_count"), 10, 0, 10);
  256. mt.register_container<ContainerTH1<int>>("jet_count_os_dilepton", "Jet Multiplicity - OS Dilepton Events",
  257. lookup<int>("nJet"), 14, 0, 14)->add_filter(lookup_obs_filter("os-dilepton"));
  258. mt.register_container<ContainerTH1<int>>("jet_count_ss_dilepton", "Jet Multiplicity - SS Dilepton Events",
  259. lookup<int>("nJet"), 14, 0, 14)->add_filter(lookup_obs_filter("ss-dilepton"));
  260. mt.register_container<ContainerTH1<int>>("jet_count_trilepton", "Jet Multiplicity - Trilepton Events",
  261. lookup<int>("nJet"), 14, 0, 14)->add_filter(lookup_obs_filter("trilepton"));
  262. mt.register_container<ContainerTH1<int>>("nVert", "Number of Primary Vertices", lookup<int>("nVert"), 50, 0, 50);
  263. mt.register_container<CounterMany<int>>("GenPart_pdgId_counter", lookup<vector<int>>("GenPart_pdgId"));
  264. mt.register_container<Vector<vector< int >>>("GenPart_pdgId", lookup<vector< int >>("GenPart_pdgId"));
  265. mt.register_container<Vector<vector< int >>>("GenPart_motherIndex", lookup<vector< int >>("GenPart_motherIndex"));
  266. mt.register_container<Vector<vector< int >>>("GenPart_motherId", lookup<vector< int >>("GenPart_motherId"));
  267. mt.register_container<Vector<vector<float>>>("GenPart_pt", lookup<vector<float>>("GenPart_pt"));
  268. mt.register_container<Vector<vector<float>>>("GenPart_energy", lookup<vector<float>>("GenPart_energy"));
  269. mt.register_container<Vector<vector< int >>>("GenPart_status", lookup<vector< int >>("GenPart_status"));
  270. mt.register_container<Vector<vector< int >>>("LepGood_mcMatchId", lookup<vector< int >>("LepGood_mcMatchId"));
  271. mt.register_container<Vector<vector< int >>>("LepGood_mcMatchPdgId", lookup<vector< int >>("LepGood_mcMatchPdgId"));
  272. mt.register_container<Vector< int >>("run", lookup< int >("run") );
  273. mt.register_container<Vector< int >>("lumi", lookup< int >("lumi"));
  274. mt.register_container<Vector< int >>("evt", lookup< int >("evt") );
  275. mt.register_container<Vector<float>>("xsec", lookup<float>("xsec"));
  276. }
  277. void run_analysis(const std::string& input_filename, bool silent){
  278. gSystem->Load("libfilval.so");
  279. auto replace_suffix = [](const std::string& input, const std::string& new_suffix){
  280. return input.substr(0, input.find_last_of(".")) + new_suffix;
  281. };
  282. string log_filename = replace_suffix(input_filename, "_result.log");
  283. fv::util::Log::init_logger(log_filename, fv::util::LogPriority::kLogDebug);
  284. string output_filename = replace_suffix(input_filename, "_result.root");
  285. MiniTreeDataSet mt(input_filename, output_filename);
  286. enable_branches(mt);
  287. declare_values(mt);
  288. declare_containers(mt);
  289. mt.process(silent);
  290. mt.save_all();
  291. }
  292. int main(int argc, char * argv[])
  293. {
  294. fv::util::ArgParser args(argc, argv);
  295. if(!args.cmdOptionExists("-f")) {
  296. cout << "Usage: ./main (-s) -f input_minitree.root" << endl;
  297. return -1;
  298. }
  299. bool silent = args.cmdOptionExists("-s");
  300. string input_filename = args.getCmdOption("-f");
  301. run_analysis(input_filename, silent);
  302. }