1 | #ifndef MARS_MFindSupercutsONOFF
|
---|
2 | #define MARS_MFindSupercutsONOFF
|
---|
3 |
|
---|
4 | #ifndef MARS_MParContainer
|
---|
5 | #include "MParContainer.h"
|
---|
6 | #endif
|
---|
7 |
|
---|
8 | #ifndef ROOT_TArrayD
|
---|
9 | #include <TArrayD.h>
|
---|
10 | #endif
|
---|
11 | #ifndef ROOT_TArrayI
|
---|
12 | #include <TArrayI.h>
|
---|
13 | #endif
|
---|
14 |
|
---|
15 | #ifndef ROOT_TH1F
|
---|
16 | #include <TH1F.h>
|
---|
17 | #endif
|
---|
18 |
|
---|
19 | #ifndef ROOT_TPostScript
|
---|
20 | #include <TPostScript.h>
|
---|
21 | #endif
|
---|
22 |
|
---|
23 |
|
---|
24 | class MFilter;
|
---|
25 | class MEvtLoop;
|
---|
26 | class MH3;
|
---|
27 | class MSupercutsCalcONOFF;
|
---|
28 |
|
---|
29 | class MGeomCam;
|
---|
30 | class MHMatrix;
|
---|
31 |
|
---|
32 |
|
---|
33 | class MFindSupercutsONOFF : public MParContainer
|
---|
34 | {
|
---|
35 | private:
|
---|
36 |
|
---|
37 |
|
---|
38 | // TMP
|
---|
39 | // There are quite some problems during the data preprocessing.
|
---|
40 | // For the time being, I will add some cuts to the functions
|
---|
41 | // DefineTrainTestMatrixThetaRange and for OFF, so that I can
|
---|
42 | // make a kind of preprocess on my own. This allows me
|
---|
43 | // to make a very silly preprocess with wolfgangs macro, which
|
---|
44 | // might be free of corrupted data, and then I can do on my own.
|
---|
45 |
|
---|
46 |
|
---|
47 | // VARIABLES INITIALIZED IN CONSTRUCTOR
|
---|
48 |
|
---|
49 | Double_t fSizeCutLow;
|
---|
50 | Double_t fSizeCutUp;
|
---|
51 |
|
---|
52 | Double_t fDistCutLow;
|
---|
53 | Double_t fDistCutUp;
|
---|
54 |
|
---|
55 | Double_t fLengthCutLow;
|
---|
56 | Double_t fLengthCutUp;
|
---|
57 |
|
---|
58 | Double_t fWidthCutLow;
|
---|
59 | Double_t fWidthCutUp;
|
---|
60 |
|
---|
61 |
|
---|
62 | // ENDTMP
|
---|
63 |
|
---|
64 |
|
---|
65 |
|
---|
66 |
|
---|
67 |
|
---|
68 |
|
---|
69 | TString fFilenameTrain;
|
---|
70 | TString fFilenameTest;
|
---|
71 |
|
---|
72 | Int_t fHowManyTrain;
|
---|
73 | Int_t fHowManyTest;
|
---|
74 |
|
---|
75 | Int_t fHowManyTrainOFF;
|
---|
76 | Int_t fHowManyTestOFF;
|
---|
77 |
|
---|
78 |
|
---|
79 |
|
---|
80 | Double_t fAlphaSig; // Max alpha value were signal is expected
|
---|
81 |
|
---|
82 | // Background range (in alpha) is defined by the member variables
|
---|
83 | // fAlphaBkgMin and fAlphaBkgMax
|
---|
84 | Double_t fAlphaBkgMin;
|
---|
85 | Double_t fAlphaBkgMax;
|
---|
86 |
|
---|
87 | Int_t fThetaMin; // Cuts in ThetaOrig.fVal (in mili radians!!!)
|
---|
88 | Int_t fThetaMax; // Cuts in ThetaOrig.fVal (in mili radians !!!)
|
---|
89 | TString fThetaRangeString;
|
---|
90 |
|
---|
91 |
|
---|
92 |
|
---|
93 | // Variables for binning of alpha plots
|
---|
94 |
|
---|
95 | Int_t fNAlphaBins;
|
---|
96 | Double_t fAlphaBinLow;
|
---|
97 | Double_t fAlphaBinUp;
|
---|
98 |
|
---|
99 |
|
---|
100 | Bool_t fUseOrigDistribution;
|
---|
101 |
|
---|
102 |
|
---|
103 | Double_t fNormFactorTrain;
|
---|
104 | Double_t fNormFactorTest;
|
---|
105 | Double_t fSigmaLiMaTrain;
|
---|
106 | Double_t fSigmaLiMaTest;
|
---|
107 | Double_t fNexTrain;
|
---|
108 | Double_t fNexTest;
|
---|
109 | Double_t fGammaEfficiency; // Fraction of gammas that remain after cuts
|
---|
110 | // Quantity that will have to be determined with MC
|
---|
111 |
|
---|
112 | Bool_t fTuneNormFactor; // If true, normalization factors are corrected using the estimated number of gammas and the gamma efficiency
|
---|
113 | // fNormFactorTrain = fNormFactorTrain - Ngammas/EventsInTrainMatrixOFF
|
---|
114 |
|
---|
115 |
|
---|
116 | // Boolean variable used to determine wether the normalization factor is
|
---|
117 | // computed from method 1) or 2)
|
---|
118 | // 1) Using total number of ON and OFF events before cuts, and tuning the factor
|
---|
119 | // correcting for "contamination" of gamma events in ON sample
|
---|
120 | // 2) Using number of ON and OFF events after cuts in the background
|
---|
121 | // region determined by variables fAlphaBkgMin-fAlphaBkgMax
|
---|
122 |
|
---|
123 | Bool_t fNormFactorFromAlphaBkg; // if kTRUE, method 2) is used
|
---|
124 |
|
---|
125 |
|
---|
126 |
|
---|
127 | // Boolean variable used to disable the usage ("serious" usage) of the
|
---|
128 | // quantities computed from fits. This will be useful in those cases
|
---|
129 | // where there is too few events to perform a decent fit to the
|
---|
130 | // alpha histograms. Default value will be kTRUE.
|
---|
131 |
|
---|
132 | Bool_t fUseFittedQuantities;
|
---|
133 |
|
---|
134 | // Boolean variable that controls wether the optimization of the
|
---|
135 | // parameters (MMinuitInterface::CallMinuit(..) in function FindParams(..))
|
---|
136 | // takes place or not. kTRUE will skip such optimization.
|
---|
137 | // This variable is useful to test the optmized parameters (previously found
|
---|
138 | // and stored in root file) on the TRAIN sample.
|
---|
139 |
|
---|
140 | Bool_t fSkipOptimization;
|
---|
141 |
|
---|
142 |
|
---|
143 |
|
---|
144 | // Boolean variable that allows the user to set some limits to the
|
---|
145 | // some of the Minuit parameters. For the time being, only the limits
|
---|
146 | // for the parameters which do NOT depend in size, dist and theta are set,
|
---|
147 | // i.e. static limits. The value of this boolean variable is set in the
|
---|
148 | // constructor of the class.
|
---|
149 |
|
---|
150 | Bool_t fSetLimitsToSomeMinuitParams;
|
---|
151 |
|
---|
152 | // Limits for the Minuit parameters. For the time being the values are set in the constructor
|
---|
153 | // of the class. One MUST be very careful to set limits such that the expected final values
|
---|
154 | // (optimized values) are far away from the limits.
|
---|
155 |
|
---|
156 |
|
---|
157 |
|
---|
158 | Double_t fMinuitDistUPUpperLimit;
|
---|
159 | Double_t fMinuitDistUPLowerLimit;
|
---|
160 | Double_t fMinuitLengthUPUpperLimit;
|
---|
161 | Double_t fMinuitLengthUPLowerLimit;
|
---|
162 | Double_t fMinuitWidthUPUpperLimit;
|
---|
163 | Double_t fMinuitWidthUPLowerLimit;
|
---|
164 |
|
---|
165 | Double_t fMinuitLeakage1UPUpperLimit;
|
---|
166 | Double_t fMinuitLeakage1UPLowerLimit;
|
---|
167 |
|
---|
168 |
|
---|
169 |
|
---|
170 | Double_t fMinuitDistLOWUpperLimit;
|
---|
171 | Double_t fMinuitDistLOWLowerLimit;
|
---|
172 | Double_t fMinuitLengthLOWUpperLimit;
|
---|
173 | Double_t fMinuitLengthLOWLowerLimit;
|
---|
174 | Double_t fMinuitWidthLOWUpperLimit;
|
---|
175 | Double_t fMinuitWidthLOWLowerLimit;
|
---|
176 |
|
---|
177 |
|
---|
178 |
|
---|
179 | // Boolean variable used to control decide wether to use theta information
|
---|
180 | // in the computation of teh dynamical cuts.
|
---|
181 | Bool_t fNotUseTheta;
|
---|
182 |
|
---|
183 |
|
---|
184 | // Boolean variable that allows to use/not use the dist info in the cuts parameterization
|
---|
185 | // kTRUE for use it.
|
---|
186 | // For the time being this variable is set in the constructor
|
---|
187 |
|
---|
188 | Bool_t fUseDist;
|
---|
189 |
|
---|
190 |
|
---|
191 |
|
---|
192 | // Boolean variable used to decide wether to use dynamical cuts or static cuts
|
---|
193 | // kTRUE means that static cuts are used.
|
---|
194 | Bool_t fUseStaticCuts;
|
---|
195 |
|
---|
196 |
|
---|
197 | // Boolean variable that allows the user to write the initial parameters
|
---|
198 | // into the root file that will be used to store the optimum cuts.
|
---|
199 | // If fUseInitialSCParams = kTRUE , parameters are written.
|
---|
200 | // In this way, the initial SC parameters can be applied on the data (train/test)
|
---|
201 |
|
---|
202 | // The initial parameters are ONLY written to the root file if
|
---|
203 | // there is NO SC params optimization, i.e., if variable
|
---|
204 | // fSkipOptimization = kTRUE;
|
---|
205 |
|
---|
206 | // The default value is obviously kFALSE.
|
---|
207 |
|
---|
208 | Bool_t fUseInitialSCParams;
|
---|
209 |
|
---|
210 |
|
---|
211 | TString fFilenameParam;
|
---|
212 |
|
---|
213 | TString fHadronnessName;
|
---|
214 | TString fHadronnessNameOFF;
|
---|
215 |
|
---|
216 | // name for the containers to store the
|
---|
217 | // supercuts applied to Train (ON/OFF) and Test(ON/OFF) samples
|
---|
218 |
|
---|
219 | TString fTrainONSupercutsAppliedName;
|
---|
220 | TString fTrainOFFSupercutsAppliedName;
|
---|
221 |
|
---|
222 | TString fTestONSupercutsAppliedName;
|
---|
223 | TString fTestOFFSupercutsAppliedName;
|
---|
224 |
|
---|
225 |
|
---|
226 |
|
---|
227 | // Name of Postscript file where, for each theta bin, alpha ON and OFF distributions
|
---|
228 | // after cuts (and hence, Nex and SigmaLiMa computations) will be stored
|
---|
229 | // If fAlphaDistributionsPostScriptFilename is not defined, postscript file is not
|
---|
230 | // produced. It is an optional variable...
|
---|
231 |
|
---|
232 | // NOT WORKING YET !!!!
|
---|
233 | TPostScript* fPsFilename;
|
---|
234 | TPostScript* fPsFilename2;
|
---|
235 |
|
---|
236 | TString fPsFilenameString; // Name of the file where plots will be stored while the
|
---|
237 | // TPostScript option is not working
|
---|
238 |
|
---|
239 | TString fAlphaDistributionsRootFilename;
|
---|
240 | // Root file where histograms containing the ON alpha distribution and the
|
---|
241 | // OFF alpha distribution (non normalized) , AFTER CUTS, are stored.
|
---|
242 | // Histograms containing the normalization factors, Nex and SigmaLiMa for
|
---|
243 | // each theta bin will be also stored there.
|
---|
244 | // This name MUST be defined, since the histograms stored there will be used by
|
---|
245 | // function XXX to compute an overall Nex and sigmaLiMa combining all those histograms
|
---|
246 |
|
---|
247 |
|
---|
248 | MSupercutsCalcONOFF *fCalcHadTrain;
|
---|
249 | MSupercutsCalcONOFF *fCalcHadTest;
|
---|
250 | MSupercutsCalcONOFF *fCalcHadTrainOFF;
|
---|
251 | MSupercutsCalcONOFF *fCalcHadTestOFF;
|
---|
252 |
|
---|
253 |
|
---|
254 | MHMatrix *fMatrixTrain;
|
---|
255 | MHMatrix *fMatrixTest;
|
---|
256 | MHMatrix *fMatrixTrainOFF;
|
---|
257 | MHMatrix *fMatrixTestOFF;
|
---|
258 |
|
---|
259 | MGeomCam *fCam;
|
---|
260 |
|
---|
261 | MEvtLoop *fObjectFit;
|
---|
262 |
|
---|
263 | MFilter *fMatrixFilter;
|
---|
264 |
|
---|
265 | // to comunicate with MINUIT -----------------
|
---|
266 | // attention : dimensions must agree with those in
|
---|
267 | // MMinuitInterface::CallMinuit()
|
---|
268 | //char fParName [80][100];
|
---|
269 | TArrayD fVinit;
|
---|
270 | TArrayD fStep;
|
---|
271 | TArrayD fLimlo;
|
---|
272 | TArrayD fLimup;
|
---|
273 | TArrayI fFix;
|
---|
274 |
|
---|
275 | UInt_t fNpar;
|
---|
276 |
|
---|
277 | TString fMethod;
|
---|
278 |
|
---|
279 | Double_t fMin, fEdm, fErrdef;
|
---|
280 | Int_t fNpari, fNparx, fIstat;
|
---|
281 | Int_t fErrMinimize;
|
---|
282 | //--------------------------------------------
|
---|
283 |
|
---|
284 |
|
---|
285 | public:
|
---|
286 | MFindSupercutsONOFF(const char *name=NULL, const char *title=NULL);
|
---|
287 | ~MFindSupercutsONOFF();
|
---|
288 |
|
---|
289 | void SetFilenameTraining(const TString &name, const Int_t howmany)
|
---|
290 | {fFilenameTrain = name; fHowManyTrain = howmany; }
|
---|
291 |
|
---|
292 | void SetFilenameTest(const TString &name, const Int_t howmany)
|
---|
293 | {fFilenameTest = name; fHowManyTest = howmany; }
|
---|
294 |
|
---|
295 | void SetFilenameParam(const TString &name) {fFilenameParam = name;}
|
---|
296 | void SetHadronnessName(const TString &name) {fHadronnessName = name;}
|
---|
297 | void SetHadronnessNameOFF(const TString &name) {fHadronnessNameOFF = name;}
|
---|
298 |
|
---|
299 |
|
---|
300 | void SetSupercutsAppliedTreeNames();
|
---|
301 |
|
---|
302 |
|
---|
303 | void SetAlphaDistributionsRootFilename(const TString &name)
|
---|
304 | {fAlphaDistributionsRootFilename = name;}
|
---|
305 |
|
---|
306 | Bool_t SetAlphaSig (Double_t alphasig);
|
---|
307 | Bool_t SetAlphaBkgMin (Double_t alphabkgmin);
|
---|
308 | Bool_t SetAlphaBkgMax (Double_t alphabkgmax);
|
---|
309 |
|
---|
310 | // Function that checks that the values of the member data
|
---|
311 | // fAlphaSig, fAlphaBkgMin and fAlphaBkgMax make sense
|
---|
312 | // (ie, fAlphaSig < fAlphaBkgMin < fAlphaBkgMax)
|
---|
313 |
|
---|
314 | Bool_t CheckAlphaSigBkg();
|
---|
315 |
|
---|
316 | void SetUseFittedQuantities (Bool_t b)
|
---|
317 | {fUseFittedQuantities = b;}
|
---|
318 |
|
---|
319 |
|
---|
320 | void SetPostScriptFile(TPostScript* PsFile);
|
---|
321 | void SetPostScriptFile2(TPostScript &PsFile);
|
---|
322 |
|
---|
323 | void SetPsFilenameString (const TString filename);
|
---|
324 |
|
---|
325 |
|
---|
326 | void SetMatrixFilter(MFilter *filter) {fMatrixFilter = filter;}
|
---|
327 |
|
---|
328 |
|
---|
329 |
|
---|
330 |
|
---|
331 | Bool_t DefineTrainMatrix(const TString &name, MH3 &href,
|
---|
332 | const Int_t howmany, const TString &filetrain);
|
---|
333 | Bool_t DefineTestMatrix(const TString &name, MH3 &href,
|
---|
334 | const Int_t howmany, const TString &filetest);
|
---|
335 |
|
---|
336 |
|
---|
337 |
|
---|
338 | Bool_t DefineTrainTestMatrix(const TString &name, MH3 &href,
|
---|
339 | const Int_t howmanytrain, const Int_t howmanytest,
|
---|
340 | const TString &filetrain, const TString &filetest);
|
---|
341 |
|
---|
342 |
|
---|
343 |
|
---|
344 | Bool_t DefineTrainTestMatrixThetaRange(const TString &name,
|
---|
345 | const Double_t whichfractiontrain,
|
---|
346 | const Double_t whichfractiontest,
|
---|
347 | Double_t ThetaMin, Double_t ThetaMax,
|
---|
348 | const TString &filetrain, const TString &filetest);
|
---|
349 |
|
---|
350 |
|
---|
351 |
|
---|
352 |
|
---|
353 | Bool_t DefineTrainTestMatrixOFFThetaRange(const TString &name,
|
---|
354 | const Double_t whichfractiontrain,
|
---|
355 | const Double_t whichfractiontest,
|
---|
356 | Double_t ThetaMin, Double_t ThetaMax,
|
---|
357 | const TString &filetrain, const TString &filetest);
|
---|
358 |
|
---|
359 |
|
---|
360 | MHMatrix *GetMatrixTrain() { return fMatrixTrain; }
|
---|
361 | MHMatrix *GetMatrixTest() { return fMatrixTest; }
|
---|
362 | MHMatrix *GetMatrixTrainOFF() { return fMatrixTrainOFF; }
|
---|
363 | MHMatrix *GetMatrixTestOFF() { return fMatrixTestOFF; }
|
---|
364 |
|
---|
365 |
|
---|
366 | void SetUseOrigDistribution(Bool_t b);
|
---|
367 |
|
---|
368 |
|
---|
369 | Bool_t ReadMatrix( const TString &filetrain, const TString &filetest);
|
---|
370 |
|
---|
371 | Bool_t ReadMatrixOFF( const TString &filetrainOFF, const TString &filetestOFF);
|
---|
372 |
|
---|
373 | Bool_t ComputeNormFactorTrain ();
|
---|
374 | Bool_t ComputeNormFactorTest ();
|
---|
375 |
|
---|
376 | Bool_t FindParams(TString parSCinit, TArrayD ¶ms, TArrayD &steps);
|
---|
377 | // Bool_t TestParams();
|
---|
378 |
|
---|
379 | // Function used to apply the supercuts on the TEST sample.
|
---|
380 | // Two event loops (one after the other)
|
---|
381 | // are used to fill the 2 alpha distributions (ON and OFF)
|
---|
382 | // applying supercuts to the Test sample
|
---|
383 | Bool_t TestParamsOnTestSample();
|
---|
384 |
|
---|
385 |
|
---|
386 | // Function used to apply the supercuts on the TRAIN sample.
|
---|
387 | // Two event loops (one after the other)
|
---|
388 | // are used to fill the 2 alpha distributions (ON and OFF)
|
---|
389 | // applying supercuts to the TRAIN sample
|
---|
390 | Bool_t TestParamsOnTrainSample();
|
---|
391 |
|
---|
392 |
|
---|
393 |
|
---|
394 | Bool_t SetThetaRange(Double_t ThetaMin, Double_t ThetaMax);
|
---|
395 |
|
---|
396 | Bool_t SetSizeRange(Double_t SizeMin, Double_t SizeMax);
|
---|
397 |
|
---|
398 |
|
---|
399 | void SetAlphaPlotBinining(Int_t nbins, Double_t binlow, Double_t binup)
|
---|
400 | { fNAlphaBins = nbins; fAlphaBinLow = binlow; fAlphaBinUp = binup;}
|
---|
401 |
|
---|
402 | Double_t GetNormFactorTrain() {return fNormFactorTrain;}
|
---|
403 | Double_t GetNormFactorTest() {return fNormFactorTest;}
|
---|
404 | Double_t GetSigmaLiMaTrain() {return fSigmaLiMaTrain;}
|
---|
405 | Double_t GetSigmaLiMaTest() {return fSigmaLiMaTest;}
|
---|
406 | Double_t GetNexTrain() {return fNexTrain;}
|
---|
407 | Double_t GetNexTest() {return fNexTest;}
|
---|
408 |
|
---|
409 |
|
---|
410 | Double_t GetAlphaSig() {return fAlphaSig;}
|
---|
411 | Double_t GetAlphaBkgMin () {return fAlphaBkgMin;}
|
---|
412 | Double_t GetAlphaBkgMax () {return fAlphaBkgMax;}
|
---|
413 |
|
---|
414 | Bool_t GetUseFittedQuantities() {return fUseFittedQuantities;}
|
---|
415 | Bool_t GetSkipOptimization() {return fSkipOptimization;}
|
---|
416 | Bool_t GetUseInitialSCParams() {return fUseInitialSCParams;}
|
---|
417 |
|
---|
418 | Bool_t SetGammaEfficiency (Double_t gammaeff);
|
---|
419 | Double_t GetGammaEfficiency() {return fGammaEfficiency;}
|
---|
420 |
|
---|
421 |
|
---|
422 |
|
---|
423 | // Double_t ComputeNormFactorFromAlphaBkg(TH1 *histON, TH1 *histOFF);
|
---|
424 |
|
---|
425 | void SetTuneNormFactor(Bool_t b) {fTuneNormFactor = b;}
|
---|
426 |
|
---|
427 | void SetNormFactorFromAlphaBkg (Bool_t b) {fNormFactorFromAlphaBkg = b;}
|
---|
428 |
|
---|
429 | void SetSkipOptimization(Bool_t b);
|
---|
430 |
|
---|
431 | void SetUseInitialSCParams(Bool_t b);
|
---|
432 |
|
---|
433 | void SetVariableNotUseTheta(Bool_t b) {fNotUseTheta = b;}
|
---|
434 | Bool_t GetVariableNotUseTheta() { return fNotUseTheta;}
|
---|
435 |
|
---|
436 | void SetVariableUseStaticCuts(Bool_t b) {fUseStaticCuts = b;}
|
---|
437 | Bool_t GetVariableUseStaticCuts() { return fUseStaticCuts;}
|
---|
438 |
|
---|
439 |
|
---|
440 |
|
---|
441 |
|
---|
442 |
|
---|
443 |
|
---|
444 | ClassDef(MFindSupercutsONOFF, 1) // Class for optimization of the Supercuts
|
---|
445 | };
|
---|
446 |
|
---|
447 | #endif
|
---|
448 |
|
---|
449 |
|
---|
450 |
|
---|
451 |
|
---|
452 |
|
---|
453 |
|
---|
454 |
|
---|
455 |
|
---|
456 |
|
---|
457 |
|
---|
458 |
|
---|
459 |
|
---|
460 |
|
---|
461 |
|
---|
462 |
|
---|
463 |
|
---|
464 |
|
---|
465 |
|
---|
466 |
|
---|