Belle II Software  light-2212-foldex
VariablesToHistogramModule.cc
1 /**************************************************************************
2  * basf2 (Belle II Analysis Software Framework) *
3  * Author: The Belle II Collaboration *
4  * *
5  * See git log for contributors and copyright holders. *
6  * This file is licensed under LGPL-3.0, see LICENSE.md. *
7  **************************************************************************/
8 
9 #include <analysis/modules/VariablesToHistogram/VariablesToHistogramModule.h>
10 
11 #include <analysis/dataobjects/ParticleList.h>
12 #include <analysis/VariableManager/Manager.h>
13 #include <framework/logging/Logger.h>
14 #include <framework/pcore/ProcHandler.h>
15 #include <framework/utilities/MakeROOTCompatible.h>
16 #include <framework/core/ModuleParam.templateDetails.h>
17 #include <framework/utilities/RootFileCreationManager.h>
18 
19 #include <memory>
20 
21 using namespace std;
22 using namespace Belle2;
23 
24 // Register module in the framework
25 REG_MODULE(VariablesToHistogram);
26 
27 
28 VariablesToHistogramModule::VariablesToHistogramModule() :
29  Module()
30 {
31  //Set module properties
32  setDescription("Calculate variables specified by the user for a given ParticleList and save them into one or two dimensional histograms.");
34 
35  std::vector<std::tuple<std::string, int, float, float>> emptylist;
36  std::vector<std::tuple<std::string, int, float, float, std::string, int, float, float>> emptylist_2d;
37  addParam("particleList", m_particleList,
38  "Name of particle list with reconstructed particles. If no list is provided the variables are saved once per event (only possible for event-type variables)",
39  std::string(""));
40  addParam("variables", m_variables,
41  "List of variables to save. Variables are taken from Variable::Manager, and are identical to those available to e.g. ParticleSelector.",
42  emptylist);
43  addParam("variables_2d", m_variables_2d,
44  "List of variable pairs to save. Variables are taken from Variable::Manager, and are identical to those available to e.g. ParticleSelector.",
45  emptylist_2d);
46 
47  addParam("fileName", m_fileName, "Name of ROOT file for output.", string("VariablesToHistogram.root"));
48  addParam("directory", m_directory, "Directory for all histograms **inside** the file to allow for histograms from multiple "
49  "particlelists in the same file without conflicts", m_directory);
50 
51  m_file = nullptr;
52 }
53 
55 {
56  if (not m_particleList.empty())
58 
59  // Check if we can access the given file
61  if (!m_file) return;
62  // Make sure we don't disturb the global directory for other modules, friggin side effects everywhere
63  TDirectory::TContext directoryGuard(m_file.get());
64  if (not m_directory.empty()) {
66  m_file->mkdir(m_directory.c_str());
67  m_file->cd(m_directory.c_str());
68  }
69 
70  for (const auto& varTuple : m_variables) {
71  std::string varStr;
72  int varNbins = 0;
73  float low = 0;
74  float high = 0;
75  std::tie(varStr, varNbins, low, high) = varTuple;
76  std::string compatibleName = MakeROOTCompatible::makeROOTCompatible(varStr);
77 
78  auto ptr = std::make_unique<StoreObjPtr<RootMergeable<TH1D>>>("", DataStore::c_Persistent);
79  ptr->registerInDataStore(m_fileName + m_directory + varStr, DataStore::c_DontWriteOut);
80  ptr->construct(compatibleName.c_str(), compatibleName.c_str(), varNbins, low, high);
81  m_hists.emplace_back(std::move(ptr));
82 
83  //also collection function pointers
85  if (!var) {
86  B2ERROR("Variable '" << varStr << "' is not available in Variable::Manager!");
87  } else {
88  m_functions.push_back(var->function);
89  }
90  }
91 
92  for (const auto& varTuple : m_variables_2d) {
93  std::string varStr1;
94  int varNbins1 = 0;
95  float low1 = 0;
96  float high1 = 0;
97  std::string varStr2;
98  int varNbins2 = 0;
99  float low2 = 0;
100  float high2 = 0;
101  std::tie(varStr1, varNbins1, low1, high1, varStr2, varNbins2, low2, high2) = varTuple;
102  std::string compatibleName1 = MakeROOTCompatible::makeROOTCompatible(varStr1);
103  std::string compatibleName2 = MakeROOTCompatible::makeROOTCompatible(varStr2);
104 
105  auto ptr2d = std::make_unique<StoreObjPtr<RootMergeable<TH2D>>>("", DataStore::c_Persistent);
106  ptr2d->registerInDataStore(m_fileName + m_directory + varStr1 + varStr2, DataStore::c_DontWriteOut);
107  ptr2d->construct((compatibleName1 + compatibleName2).c_str(), (compatibleName1 + compatibleName2).c_str(),
108  varNbins1, low1, high1, varNbins2, low2, high2);
109  m_2d_hists.emplace_back(std::move(ptr2d));
110 
111  //also collection function pointers
113  if (!var1) {
114  B2ERROR("Variable '" << varStr1 << "' is not available in Variable::Manager!");
115  } else {
116  m_functions_2d_1.push_back(var1->function);
117  }
118 
119  //also collection function pointers
121  if (!var2) {
122  B2ERROR("Variable '" << varStr2 << "' is not available in Variable::Manager!");
123  } else {
124  m_functions_2d_2.push_back(var2->function);
125  }
126  }
127 
128 }
129 
131 {
132  unsigned int nVars = m_variables.size();
133  unsigned int nVars_2d = m_variables_2d.size();
134  std::vector<float> vars(nVars);
135  std::vector<float> vars_2d_1(nVars_2d);
136  std::vector<float> vars_2d_2(nVars_2d);
137 
138  if (m_particleList.empty()) {
139  for (unsigned int iVar = 0; iVar < nVars; iVar++) {
140  if (std::holds_alternative<double>(m_functions[iVar](nullptr))) {
141  vars[iVar] = std::get<double>(m_functions[iVar](nullptr));
142  } else if (std::holds_alternative<int>(m_functions[iVar](nullptr))) {
143  vars[iVar] = std::get<int>(m_functions[iVar](nullptr));
144  } else if (std::holds_alternative<bool>(m_functions[iVar](nullptr))) {
145  vars[iVar] = std::get<bool>(m_functions[iVar](nullptr));
146  }
147  (*m_hists[iVar])->get().Fill(vars[iVar]);
148  }
149  for (unsigned int iVar = 0; iVar < nVars_2d; iVar++) {
150  if (std::holds_alternative<double>(m_functions_2d_1[iVar](nullptr))) {
151  vars_2d_1[iVar] = std::get<double>(m_functions_2d_1[iVar](nullptr));
152  } else if (std::holds_alternative<int>(m_functions_2d_1[iVar](nullptr))) {
153  vars_2d_1[iVar] = std::get<int>(m_functions_2d_1[iVar](nullptr));
154  } else if (std::holds_alternative<bool>(m_functions_2d_1[iVar](nullptr))) {
155  vars_2d_1[iVar] = std::get<bool>(m_functions_2d_1[iVar](nullptr));
156  }
157  if (std::holds_alternative<double>(m_functions_2d_2[iVar](nullptr))) {
158  vars_2d_2[iVar] = std::get<double>(m_functions_2d_2[iVar](nullptr));
159  } else if (std::holds_alternative<int>(m_functions_2d_2[iVar](nullptr))) {
160  vars_2d_2[iVar] = std::get<int>(m_functions_2d_2[iVar](nullptr));
161  } else if (std::holds_alternative<bool>(m_functions_2d_2[iVar](nullptr))) {
162  vars_2d_2[iVar] = std::get<bool>(m_functions_2d_2[iVar](nullptr));
163  }
164  (*m_2d_hists[iVar])->get().Fill(vars_2d_1[iVar], vars_2d_2[iVar]);
165  }
166 
167  } else {
169  unsigned int nPart = particlelist->getListSize();
170  for (unsigned int iPart = 0; iPart < nPart; iPart++) {
171  const Particle* particle = particlelist->getParticle(iPart);
172  for (unsigned int iVar = 0; iVar < nVars; iVar++) {
173  if (std::holds_alternative<double>(m_functions[iVar](particle))) {
174  vars[iVar] = std::get<double>(m_functions[iVar](particle));
175  } else if (std::holds_alternative<int>(m_functions[iVar](particle))) {
176  vars[iVar] = std::get<int>(m_functions[iVar](particle));
177  } else if (std::holds_alternative<bool>(m_functions[iVar](particle))) {
178  vars[iVar] = std::get<bool>(m_functions[iVar](particle));
179  }
180  (*m_hists[iVar])->get().Fill(vars[iVar]);
181  }
182  for (unsigned int iVar = 0; iVar < nVars_2d; iVar++) {
183  if (std::holds_alternative<double>(m_functions_2d_1[iVar](particle))) {
184  vars_2d_1[iVar] = std::get<double>(m_functions_2d_1[iVar](particle));
185  } else if (std::holds_alternative<int>(m_functions_2d_1[iVar](particle))) {
186  vars_2d_1[iVar] = std::get<int>(m_functions_2d_1[iVar](particle));
187  } else if (std::holds_alternative<bool>(m_functions_2d_1[iVar](particle))) {
188  vars_2d_1[iVar] = std::get<bool>(m_functions_2d_1[iVar](particle));
189  }
190  if (std::holds_alternative<double>(m_functions_2d_2[iVar](particle))) {
191  vars_2d_2[iVar] = std::get<double>(m_functions_2d_2[iVar](particle));
192  } else if (std::holds_alternative<int>(m_functions_2d_2[iVar](particle))) {
193  vars_2d_2[iVar] = std::get<int>(m_functions_2d_2[iVar](particle));
194  } else if (std::holds_alternative<bool>(m_functions_2d_2[iVar](particle))) {
195  vars_2d_2[iVar] = std::get<bool>(m_functions_2d_2[iVar](particle));
196  }
197  (*m_2d_hists[iVar])->get().Fill(vars_2d_1[iVar], vars_2d_2[iVar]);
198  }
199  }
200  }
201 }
202 
204 {
206  TDirectory::TContext directoryGuard(m_file.get());
207  if (not m_directory.empty()) {
208  m_file->cd(m_directory.c_str());
209  }
210  B2INFO("Writing Histograms to " << gDirectory->GetPath());
211  unsigned int nVars = m_variables.size();
212  for (unsigned int iVar = 0; iVar < nVars; iVar++) {
213  (*m_hists[iVar])->write(gDirectory);
214  }
215  unsigned int nVars_2d = m_variables_2d.size();
216  for (unsigned int iVar = 0; iVar < nVars_2d; iVar++) {
217  (*m_2d_hists[iVar])->write(gDirectory);
218  }
219 
220  const bool writeError = m_file->TestBit(TFile::kWriteError);
221  m_file.reset();
222  if (writeError) {
223  B2FATAL("A write error occurred while saving '" << m_fileName << "', please check if enough disk space is available.");
224  }
225  }
226 }
@ c_DontWriteOut
Object/array should be NOT saved by output modules.
Definition: DataStore.h:71
@ c_Persistent
Object is available during entire execution time.
Definition: DataStore.h:60
static std::string makeROOTCompatible(std::string str)
Remove special characters that ROOT dislikes in branch names, e.g.
Base class for Modules.
Definition: Module.h:72
void setDescription(const std::string &description)
Sets the description of the module.
Definition: Module.cc:214
void setPropertyFlags(unsigned int propertyFlags)
Sets the flags for the module properties.
Definition: Module.cc:208
@ c_ParallelProcessingCertified
This module can be run in parallel processing mode safely (All I/O must be done through the data stor...
Definition: Module.h:80
@ c_TerminateInAllProcesses
When using parallel processing, call this module's terminate() function in all processes().
Definition: Module.h:83
Class to store reconstructed particles.
Definition: Particle.h:74
static bool isOutputProcess()
Return true if the process is an output process.
Definition: ProcHandler.cc:232
static bool parallelProcessingUsed()
Returns true if multiple processes have been spawned, false in single-core mode.
Definition: ProcHandler.cc:226
bool isRequired(const std::string &name="")
Ensure this array/object has been registered previously.
Type-safe access to single objects in the data store.
Definition: StoreObjPtr.h:95
const Var * getVariable(std::string name)
Get the variable belonging to the given key.
Definition: Manager.cc:57
static Manager & Instance()
get singleton instance.
Definition: Manager.cc:25
std::string m_directory
Name of the Directory.
virtual void initialize() override
Initialises the module.
std::vector< std::tuple< std::string, int, float, float > > m_variables
List of variables to save.
virtual void event() override
Method called for each event.
virtual void terminate() override
Write TTree to file, and close file if necessary.
std::vector< Variable::Manager::FunctionPtr > m_functions_2d_1
List of function pointers corresponding to given variables.
std::string m_fileName
Name of ROOT file for output.
std::vector< std::tuple< std::string, int, float, float, std::string, int, float, float > > m_variables_2d
List of pairs of variables to save.
std::vector< Variable::Manager::FunctionPtr > m_functions
List of function pointers corresponding to given variables.
std::string m_particleList
Name of particle list with reconstructed particles.
std::shared_ptr< TFile > m_file
ROOT file for output.
std::vector< Variable::Manager::FunctionPtr > m_functions_2d_2
List of function pointers corresponding to given variables.
std::vector< std::unique_ptr< StoreObjPtr< RootMergeable< TH2D > > > > m_2d_hists
The ROOT TH2Ds for output.
std::vector< std::unique_ptr< StoreObjPtr< RootMergeable< TH1D > > > > m_hists
The ROOT TH1Ds for output.
void addParam(const std::string &name, T &paramVariable, const std::string &description, const T &defaultValue)
Adds a new parameter to the module.
Definition: Module.h:560
std::shared_ptr< TFile > getFile(std::string, bool ignoreErrors=false)
Get a file with a specific name, if is does not exist it will be created.
static RootFileCreationManager & getInstance()
Interface for the FileManager.
#define REG_MODULE(moduleName)
Register the given module (without 'Module' suffix) with the framework.
Definition: Module.h:650
Abstract base class for different kinds of events.
Definition: ClusterUtils.h:23
A variable returning a floating-point value for a given Particle.
Definition: Manager.h:146
FunctionPtr function
Pointer to function.
Definition: Manager.h:147