/[PAMELA software]/PamCut/CollectionActions/Histo1DActions/Histo1DAction/Histo1DAction.h
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Annotation of /PamCut/CollectionActions/Histo1DActions/Histo1DAction/Histo1DAction.h

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Revision 1.5 - (hide annotations) (download)
Thu Mar 11 19:14:03 2010 UTC (14 years, 8 months ago) by pam-fi
Branch: MAIN
Changes since 1.4: +5 -6 lines
File MIME type: text/plain
Some bugs fixed.

1 pam-fi 1.1 /*
2     * Histo1DAction.h
3     *
4     * Created on: 25/ago/2009
5     * Author: Nicola Mori
6     */
7    
8     /*! @file Histo1DAction.h The Histo1DAction class declaration file. */
9    
10     #ifndef HISTO1DACTION_H_
11     #define HISTO1DACTION_H_
12    
13     #include "../../CollectionAction/CollectionAction.h"
14    
15     #include <TH1I.h>
16     #include <TH1F.h>
17     #include <TH1D.h>
18    
19     /*! @brief An abstract action that fills a 1-dimensional histogram.
20     *
21     * This abstract class provides all the common methods needed to produce 1-dimensional histograms,
22     * like reading the bins from a file, setting up the root histogram and so on. It handles histograms
23     * both as a ROOT histogram and as a vector. The OnGood() method has to be implemented in children
24     * classes, with the specific physical variable to fill the histogram. Eg., a rigidity histogram class
25     * derived from Histo1DAction could have this OnGood() implementation:
26     *
27     * Fill(event->GetTrack(0)->GetTrkTrack()->GetRigidity());
28     *
29     * Fill() automatically fills the ROOT and the vector histogram.
30     * The template argument HistoType is the type of histogram (Int_t, Double_t,...). In current
31     * implementation, ROOT histograms are only supported for Int_t, Float_t and Double_t. For all the
32     * other types, only the the vector histogram with text file output will be produced. If you want to
33     * implement some new types of ROOT histograms, please specialize the template definitions of _CreateHisto()
34     * and ~Histo1DAction() (see the specializations in the .cpp file).
35     *
36     * */
37     template<class HistoType>
38     class Histo1DAction: public CollectionAction {
39     public:
40    
41     /*! @brief Constructor.
42     *
43     * Binning is read from a text file.
44     *
45     * @param actionName The action's name.
46     * @param title The ROOT histogram title.
47     * @param outFileBase The file base name for the histogram output. If "", no output file will be produced.
48     * @param mode The mode of ROOT file creation (see documentation of TFile constructor
49     * in ROOT's reference guide).
50     * @param outRoot If true, an output ROOT file named outFileBase + ".root" will be produced.
51     * @param outText If true, an output text file named outFileBase + ".txt" will be produced. It will overwrite an
52     * eventually existing file with the same name.
53     */
54     Histo1DAction(const char *actionName, TString title, TString outFileBase = "", TString mode = "UPDATE", bool outRoot =
55     false, bool outText = false);
56    
57     /*! @brief Destructor
58     *
59     * This has to be specialized for each kind of ROOT histogram.
60     *
61     * */
62     ~Histo1DAction();
63    
64     /*! @brief Sets the X axis using a binning read from a a vector.
65     *
66     * @param label The axis' label.
67     * @param bins A vector containing the histogram binning (with sign, eventually; from lowest to highest).
68     */
69     void SetXAxis(TString label, vector<float> &bins);
70     /*! @brief Sets the X axis reading the binning from a file.
71     *
72     * @param label The axis' label.
73     * @param binsFile The file containing the bins (with sign, eventually; from lowest to highest).
74     */
75     void SetXAxis(TString label, TString binsFile);
76     /*! @brief Sets the X axis specifying the binning parameters.
77     *
78     * @param label The axis' label.
79     * @param nBins The number of bins.
80     * @param min The lower limit of the axis.
81     * @param max The upper limit of the axis.
82     * @param logBinning If true, bins will be logarithmically spaced.
83     */
84     void SetXAxis(TString label, unsigned int nBins, float min, float max, bool logBinning = false);
85    
86     /*! @brief Sets up the histogram
87     *
88 pam-fi 1.2 * This routine effectively prepares the histogram, after the desired parameters has been set by #SetXAxis().
89 pam-fi 1.1 *
90     * @param events Pointer to PamLevel2 events (unused).
91     */
92     void Setup(PamLevel2 *events) {
93     CollectionAction::Setup(events);
94     _InitHistos();
95    
96     }
97     /*! @ brief Post-analysis tasks.
98     *
99     * This method writes the output on a ROOT file if the proper option was set in the constructor.
100     */
101     void Finalize();
102    
103     /*! @brief Returns the histogram.
104     *
105     * @return A reference to a vector containing the values of the bins of the histogram.
106     */
107     vector<HistoType> &GetHisto() {
108     return _histo;
109     }
110    
111 pam-fi 1.2 /*! Fills the ROOT and the vector histogram.
112     *
113     * @param value The value of the X coordinate associated to the event.
114     * @param weight The weight which will be applied to the event.
115     */
116 pam-fi 1.1 void Fill(double value, double weight = 1.);
117    
118     /*! @brief The number of events which fell below the lower histogram limit. */
119     HistoType GetOverflow() {
120     return _overflow;
121     }
122    
123     /*! @brief The number of events which fell above the upper histogram limit. */
124     HistoType GetUnderflow() {
125     return _underflow;
126     }
127    
128     protected:
129    
130 pam-fi 1.2 /*! @brief The vector containing the limits of the bins(from lower to higher). */
131 pam-fi 1.1 std::vector<float> _bins;
132 pam-fi 1.2 /*! @brief A vector containing the value of the histogram for each bin. */
133 pam-fi 1.1 vector<HistoType> _histo;
134 pam-fi 1.2 /*! @brief The ROOT histogram. */
135 pam-fi 1.1 TH1 *_rootHisto;
136    
137     TString _outFileBase;
138     TString _mode;
139     TString _title, _xLabel;
140 pam-fi 1.5
141     private:
142    
143     HistoType _underflow, _overflow;
144 pam-fi 1.1 bool _outRoot;
145     bool _outText;
146     void _CreateHisto();
147     void _InitHistos();
148     };
149    
150     template<class HistoType>
151     void Histo1DAction<HistoType>::_CreateHisto() {
152    
153     // No ROOT histogram for generic type; see template specializations in .cpp file.
154     _rootHisto = NULL;
155     }
156 pam-fi 1.3 // Specializations for _CreateHistos(). See Histo1DAction.cpp
157     template<>
158     void Histo1DAction<Int_t>::_CreateHisto();
159    
160     template<>
161     void Histo1DAction<Float_t>::_CreateHisto();
162    
163     template<>
164     void Histo1DAction<Double_t>::_CreateHisto();
165 pam-fi 1.1
166     template<class HistoType>
167     void Histo1DAction<HistoType>::_InitHistos() {
168    
169     _CreateHisto();
170 pam-fi 1.4 if (_bins.size() < 2) // SetXAxis not called by the main program, or wrongly filled (only 1 bin limit)
171     SetXAxis("Default X", 10, 0., 1.);
172 pam-fi 1.1
173     if (_rootHisto) {
174     Double_t *auxArray = new Double_t[_bins.size()];
175    
176     for (unsigned int i = 0; i < _bins.size(); i++) {
177     auxArray[i] = _bins[i];
178     }
179    
180     _rootHisto->SetBins(_bins.size() - 1, auxArray);
181     _rootHisto->SetName(GetName());
182     _rootHisto->SetTitle(_title);
183     _rootHisto->SetXTitle(_xLabel);
184     _rootHisto->SetYTitle("Events");
185    
186     delete[] auxArray;
187    
188     }
189    
190     _histo.resize(_bins.size() - 1);
191    
192     }
193    
194     template<class HistoType>
195     Histo1DAction<HistoType>::~Histo1DAction() {
196 pam-fi 1.3
197     delete _rootHisto;
198     _rootHisto = NULL;
199    
200 pam-fi 1.1 }
201    
202     template<class HistoType>
203     Histo1DAction<HistoType>::Histo1DAction(const char *actionName, TString title, TString outFileBase, TString mode,
204     bool outRoot, bool outText) :
205     CollectionAction(actionName), _bins(0), _histo(0), _rootHisto(NULL), _outFileBase(outFileBase), _mode(mode), _title(
206 pam-fi 1.5 title), _xLabel(""), _underflow(0), _overflow(0), _outRoot(outRoot), _outText(outText) {
207 pam-fi 1.1
208     }
209    
210     template<class HistoType>
211     void Histo1DAction<HistoType>::SetXAxis(TString label, vector<float> &bins) {
212    
213     _bins = bins;
214     _xLabel = label;
215    
216     }
217    
218     template<class HistoType>
219     void Histo1DAction<HistoType>::SetXAxis(TString label, TString binsFile) {
220    
221     // Reading the bins from file
222     ifstream binListFile;
223     binListFile.open(binsFile);
224    
225     TString auxString;
226     _bins.resize(0);
227     while (!binListFile.eof()) {
228     binListFile >> auxString;
229     if (auxString != "") {
230     _bins.push_back(auxString.Atof());
231     }
232     }
233     binListFile.close();
234    
235     _xLabel = label;
236    
237     }
238    
239     template<class HistoType>
240     void Histo1DAction<HistoType>::SetXAxis(TString label, unsigned int nBins, float min, float max, bool logBinning) {
241    
242     _bins.resize(nBins + 1);
243    
244     if (!logBinning || (logBinning && min <= 0.)) {
245    
246     #ifdef DEBUGPAMCUT
247     if (logbinning && rigMin <= 0.)
248     cout << "Warning: logarithmic binning was chosen for X axis but min <= 0. Using linear binning."
249     #endif
250    
251     float step = (max - min) / nBins;
252     for (unsigned int i = 0; i < nBins + 1; i++) {
253     _bins[i] = min + i * step;
254     }
255    
256     }
257     else {
258    
259     double maxExp = log10(max / min);
260     for (unsigned int i = 0; i < nBins + 1; i++) {
261     _bins[i] = min * pow(10., (double) i / ((double) nBins) * maxExp);
262     }
263    
264     }
265    
266     _xLabel = label;
267     }
268    
269     template<class HistoType>
270     inline void Histo1DAction<HistoType>::Fill(double value, double weight) {
271    
272     _rootHisto->Fill(value, weight);
273    
274     if (value < _bins[0]) {
275     _underflow += (HistoType) weight;
276     return;
277     }
278    
279     if (value > _bins[_bins.size() - 1]) {
280     _overflow += (HistoType) weight;
281     return;
282     }
283    
284     int xBin = 1;
285     while (value >= _bins[xBin]) {
286     xBin++;
287     }
288     xBin--;
289    
290     _histo[xBin] += (HistoType) weight;
291     }
292    
293     template<class HistoType>
294     void Histo1DAction<HistoType>::Finalize() {
295    
296     if (_outFileBase != "") {
297     // Write the ROOT file
298     if (_rootHisto && _outRoot) {
299     TFile outRootFile((_outFileBase + ".root"), _mode);
300     outRootFile.cd();
301     _rootHisto->Write();
302     outRootFile.Close();
303     }
304    
305     //Write the text file
306     if (_outText) {
307     ofstream outTextFile((_outFileBase + ".txt").Data(), ios_base::out);
308     for (unsigned int i = 0; i < _histo.size(); i++) {
309     outTextFile << _histo[i] << "\n";
310     }
311     outTextFile << endl;
312     outTextFile.close();
313     }
314     }
315    
316     }
317     #endif /* HISTO1DACTION_H_ */

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