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RooSimultaneous.cxx
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1/*****************************************************************************
2 * Project: RooFit *
3 * Package: RooFitCore *
4 * @(#)root/roofitcore:$Id$
5 * Authors: *
6 * WV, Wouter Verkerke, UC Santa Barbara, verkerke@slac.stanford.edu *
7 * DK, David Kirkby, UC Irvine, dkirkby@uci.edu *
8 * *
9 * Copyright (c) 2000-2005, Regents of the University of California *
10 * and Stanford University. All rights reserved. *
11 * *
12 * Redistribution and use in source and binary forms, *
13 * with or without modification, are permitted according to the terms *
14 * listed in LICENSE (http://roofit.sourceforge.net/license.txt) *
15 *****************************************************************************/
16
17/**
18\file RooSimultaneous.cxx
19\class RooSimultaneous
20\ingroup Roofitcore
21
22Facilitates simultaneous fitting of multiple PDFs to subsets of a given dataset.
23The class takes an index category, which is used as a selector
24for PDFs, and a list of PDFs, each associated
25with a state of the index category. RooSimultaneous always returns
26the value of the PDF that is associated with the current value
27of the index category.
28
29Extended likelihood fitting is supported if all components support
30extended likelihood mode. The expected number of events by a RooSimultaneous
31is that of the component p.d.f. selected by the index category.
32
33The index category can be accessed using indexCategory().
34
35###Generating events
36When generating events from a RooSimultaneous, the index category has to be added to
37the dataset. Further, the PDF needs to know the relative probabilities of each category, i.e.,
38how many events are in which category. This can be achieved in two ways:
39- Generating with proto data that have category entries: An event from the same category as
40in the proto data is created for each event in the proto data.
41See RooAbsPdf::generate(const RooArgSet&,const RooDataSet&,Int_t,bool,bool,bool) const.
42- No proto data: A category is chosen randomly.
43\note This requires that the PDFs building the simultaneous are extended. In this way,
44the relative probability of each category can be calculated from the number of events
45in each category.
46**/
47
48#include "RooSimultaneous.h"
49
50#include "Roo1DTable.h"
52#include "RooAbsData.h"
53#include "RooAddPdf.h"
54#include "RooArgSet.h"
55#include "RooBinSamplingPdf.h"
56#include "RooCategory.h"
57#include "RooCmdConfig.h"
58#include "RooDataHist.h"
59#include "RooDataSet.h"
60#include "RooGlobalFunc.h"
61#include "RooMsgService.h"
62#include "RooNameReg.h"
63#include "RooPlot.h"
64#include "RooRandom.h"
65#include "RooRealVar.h"
66#include "RooSimGenContext.h"
68#include "RooSuperCategory.h"
69
70#include "RooFitImplHelpers.h"
71
72#include <ROOT/StringUtils.hxx>
73
74#include <iostream>
75
76namespace {
77
78std::map<std::string, RooAbsPdf *> createPdfMap(const RooArgList &inPdfList, RooAbsCategoryLValue &inIndexCat)
79{
80 std::map<std::string, RooAbsPdf *> pdfMap;
81 auto indexCatIt = inIndexCat.begin();
82 for (unsigned int i = 0; i < inPdfList.size(); ++i) {
83 auto pdf = static_cast<RooAbsPdf *>(&inPdfList[i]);
84 const auto &nameIdx = (*indexCatIt++);
85 pdfMap[nameIdx.first] = pdf;
86 }
87 return pdfMap;
88}
89
90} // namespace
91
93
94void RooSimultaneous::InitializationOutput::addPdf(const RooAbsPdf &pdf, std::string const &catLabel)
95{
96 finalPdfs.push_back(&pdf);
97 finalCatLabels.emplace_back(catLabel);
98}
99
100using std::string, std::endl;
101
103
104
105
106////////////////////////////////////////////////////////////////////////////////
107/// Constructor with index category. PDFs associated with indexCat
108/// states can be added after construction with the addPdf() function.
109///
110/// RooSimultaneous can function without having a PDF associated
111/// with every single state. The normalization in such cases is taken
112/// from the number of registered PDFs, but getVal() will assert if
113/// when called for an unregistered index state.
114
115RooSimultaneous::RooSimultaneous(const char *name, const char *title,
116 RooAbsCategoryLValue& inIndexCat) :
117 RooSimultaneous{name, title, std::map<std::string, RooAbsPdf*>{}, inIndexCat}
118{
119}
120
121
122////////////////////////////////////////////////////////////////////////////////
123/// Constructor from index category and full list of PDFs.
124/// In this constructor form, a PDF must be supplied for each indexCat state
125/// to avoid ambiguities. The PDFs are associated with the states of the
126/// index category as they appear when iterating through the category states
127/// with RooAbsCategory::begin() and RooAbsCategory::end(). This usually means
128/// they are associated by ascending index numbers.
129///
130/// PDFs may not overlap (i.e. share any variables) with the index category (function)
131
132RooSimultaneous::RooSimultaneous(const char *name, const char *title,
133 const RooArgList& inPdfList, RooAbsCategoryLValue& inIndexCat) :
134 RooSimultaneous{name, title, createPdfMap(inPdfList, inIndexCat), inIndexCat}
135{
136 if (inPdfList.size() != inIndexCat.size()) {
137 std::stringstream errMsg;
138 errMsg << "RooSimultaneous::ctor(" << GetName()
139 << " ERROR: Number PDF list entries must match number of index category states, no PDFs added";
140 coutE(InputArguments) << errMsg.str() << std::endl;
141 throw std::invalid_argument(errMsg.str());
142 }
143}
144
145
146////////////////////////////////////////////////////////////////////////////////
147
148RooSimultaneous::RooSimultaneous(const char *name, const char *title, std::map<string, RooAbsPdf *> pdfMap,
149 RooAbsCategoryLValue &inIndexCat)
150 : RooSimultaneous(name, title, std::move(*initialize(name ? name : "", inIndexCat, pdfMap)))
151{
152}
153
154/// For internal use in RooFit.
155RooSimultaneous::RooSimultaneous(const char *name, const char *title,
157 RooAbsCategoryLValue &inIndexCat)
158 : RooSimultaneous(name, title, RooFit::Detail::flatMapToStdMap(pdfMap), inIndexCat)
159{
160}
161
163 : RooAbsPdf(name, title),
164 _plotCoefNormSet("!plotCoefNormSet", "plotCoefNormSet", this, false, false),
165 _partIntMgr(this, 10),
166 _indexCat("indexCat", "Index category", this, *initInfo.indexCat)
167{
168 for (std::size_t i = 0; i < initInfo.finalPdfs.size(); ++i) {
169 addPdf(*initInfo.finalPdfs[i], initInfo.finalCatLabels[i].c_str());
170 }
171
172 // Take ownership of eventual super category
173 if (initInfo.superIndex) {
174 addOwnedComponents(std::move(initInfo.superIndex));
175 }
176}
177
178/// \cond ROOFIT_INTERNAL
179
180// This class cannot be locally defined in initialize as it cannot be
181// used as a template argument in that case
182namespace RooSimultaneousAux {
183 struct CompInfo {
184 RooAbsPdf* pdf ;
185 RooSimultaneous* simPdf ;
186 const RooAbsCategoryLValue* subIndex ;
187 std::unique_ptr<RooArgSet> subIndexComps;
188 } ;
189}
190
191/// \endcond
192
193std::unique_ptr<RooSimultaneous::InitializationOutput>
195 std::map<std::string, RooAbsPdf *> const& pdfMap)
196
197{
198 auto out = std::make_unique<RooSimultaneous::InitializationOutput>();
199 out->indexCat = &inIndexCat;
200
201 // First see if there are any RooSimultaneous input components
202 bool simComps(false) ;
203 for (auto const& item : pdfMap) {
204 if (dynamic_cast<RooSimultaneous*>(item.second)) {
205 simComps = true ;
206 break ;
207 }
208 }
209
210 // If there are no simultaneous component p.d.f. do simple processing through addPdf()
211 if (!simComps) {
212 for (auto const& item : pdfMap) {
213 out->addPdf(*item.second,item.first);
214 }
215 return out;
216 }
217
218 std::string msgPrefix = "RooSimultaneous::initialize(" + name + ") ";
219
220 // Issue info message that we are about to do some rearranging
221 oocoutI(nullptr, InputArguments) << msgPrefix << "INFO: one or more input component of simultaneous p.d.f.s are"
222 << " simultaneous p.d.f.s themselves, rewriting composite expressions as one-level simultaneous p.d.f. in terms of"
223 << " final constituents and extended index category" << std::endl;
224
225
226 RooArgSet allAuxCats ;
227 std::map<string,RooSimultaneousAux::CompInfo> compMap ;
228 for (auto const& item : pdfMap) {
229 RooSimultaneousAux::CompInfo ci ;
230 ci.pdf = item.second ;
231 RooSimultaneous* simComp = dynamic_cast<RooSimultaneous*>(item.second) ;
232 if (simComp) {
233 ci.simPdf = simComp ;
234 ci.subIndex = &simComp->indexCat() ;
235 ci.subIndexComps = simComp->indexCat().isFundamental()
236 ? std::make_unique<RooArgSet>(simComp->indexCat())
237 : std::unique_ptr<RooArgSet>(simComp->indexCat().getVariables());
238 allAuxCats.add(*ci.subIndexComps,true) ;
239 } else {
240 ci.simPdf = nullptr;
241 ci.subIndex = nullptr;
242 }
243 compMap[item.first] = std::move(ci);
244 }
245
246 // Construct the 'superIndex' from the nominal index category and all auxiliary components
247 RooArgSet allCats(inIndexCat) ;
248 allCats.add(allAuxCats) ;
249 std::string siname = name + "_index";
250 out->superIndex = std::make_unique<RooSuperCategory>(siname.c_str(),siname.c_str(),allCats) ;
251 auto *superIndex = out->superIndex.get();
252 out->indexCat = superIndex;
253
254 // Now process each of original pdf/state map entries
255 for (auto const& citem : compMap) {
256
257 RooArgSet repliCats(allAuxCats) ;
258 if (citem.second.subIndexComps) {
259 repliCats.remove(*citem.second.subIndexComps) ;
260 }
261 inIndexCat.setLabel(citem.first.c_str()) ;
262
263 if (!citem.second.simPdf) {
264
265 // Entry is a plain p.d.f. assign it to every state permutation of the repliCats set
266 RooSuperCategory repliSuperCat("tmp","tmp",repliCats) ;
267
268 // Iterator over all states of repliSuperCat
269 for (const auto& nameIdx : repliSuperCat) {
270 // Set value
271 repliSuperCat.setLabel(nameIdx.first) ;
272 // Retrieve corresponding label of superIndex
273 string superLabel = superIndex->getCurrentLabel() ;
274 out->addPdf(*citem.second.pdf,superLabel);
275 oocxcoutD(static_cast<RooAbsArg*>(nullptr), InputArguments) << msgPrefix
276 << "assigning pdf " << citem.second.pdf->GetName() << " to super label " << superLabel << endl ;
277 }
278 } else {
279
280 // Entry is a simultaneous p.d.f
281
282 if (repliCats.empty()) {
283
284 // Case 1 -- No replication of components of RooSim component are required
285
286 for (const auto& type : *citem.second.subIndex) {
287 const_cast<RooAbsCategoryLValue*>(citem.second.subIndex)->setLabel(type.first.c_str());
288 string superLabel = superIndex->getCurrentLabel() ;
289 RooAbsPdf* compPdf = citem.second.simPdf->getPdf(type.first);
290 if (compPdf) {
291 out->addPdf(*compPdf,superLabel);
292 oocxcoutD(static_cast<RooAbsArg*>(nullptr), InputArguments) << msgPrefix
293 << "assigning pdf " << compPdf->GetName() << "(member of " << citem.second.pdf->GetName()
294 << ") to super label " << superLabel << endl ;
295 } else {
296 oocoutW(nullptr, InputArguments) << msgPrefix << "WARNING: No p.d.f. associated with label "
297 << type.second << " for component RooSimultaneous p.d.f " << citem.second.pdf->GetName()
298 << "which is associated with master index label " << citem.first << endl ;
299 }
300 }
301
302 } else {
303
304 // Case 2 -- Replication of components of RooSim component are required
305
306 // Make replication supercat
307 RooSuperCategory repliSuperCat("tmp","tmp",repliCats) ;
308
309 for (const auto& stype : *citem.second.subIndex) {
310 const_cast<RooAbsCategoryLValue*>(citem.second.subIndex)->setLabel(stype.first.c_str());
311
312 for (const auto& nameIdx : repliSuperCat) {
313 repliSuperCat.setLabel(nameIdx.first) ;
314 const string superLabel = superIndex->getCurrentLabel() ;
315 RooAbsPdf* compPdf = citem.second.simPdf->getPdf(stype.first);
316 if (compPdf) {
317 out->addPdf(*compPdf,superLabel);
318 oocxcoutD(static_cast<RooAbsArg*>(nullptr), InputArguments) << msgPrefix
319 << "assigning pdf " << compPdf->GetName() << "(member of " << citem.second.pdf->GetName()
320 << ") to super label " << superLabel << endl ;
321 } else {
322 oocoutW(nullptr, InputArguments) << msgPrefix << "WARNING: No p.d.f. associated with label "
323 << stype.second << " for component RooSimultaneous p.d.f " << citem.second.pdf->GetName()
324 << "which is associated with master index label " << citem.first << endl ;
325 }
326 }
327 }
328 }
329 }
330 }
331
332 return out;
333}
334
335
336////////////////////////////////////////////////////////////////////////////////
337/// Copy constructor
338
340 RooAbsPdf(other,name),
341 _plotCoefNormSet("!plotCoefNormSet",this,other._plotCoefNormSet),
342 _plotCoefNormRange(other._plotCoefNormRange),
343 _partIntMgr(other._partIntMgr,this),
344 _indexCat("indexCat",this,other._indexCat),
345 _numPdf(other._numPdf)
346{
347 // Copy proxy list
348 for(auto* proxy : static_range_cast<RooRealProxy*>(other._pdfProxyList)) {
349 _pdfProxyList.Add(new RooRealProxy(proxy->GetName(),this,*proxy)) ;
350 }
351}
352
353
354
355////////////////////////////////////////////////////////////////////////////////
356/// Destructor
357
359{
361}
362
363
364
365////////////////////////////////////////////////////////////////////////////////
366/// Return the p.d.f associated with the given index category name
367
369{
370 RooRealProxy* proxy = static_cast<RooRealProxy*>(_pdfProxyList.FindObject(catName.c_str()));
371 return proxy ? static_cast<RooAbsPdf*>(proxy->absArg()) : nullptr;
372}
373
374
375
376////////////////////////////////////////////////////////////////////////////////
377/// Associate given PDF with index category state label 'catLabel'.
378/// The name state must be already defined in the index category.
379///
380/// RooSimultaneous can function without having a PDF associated
381/// with every single state. The normalization in such cases is taken
382/// from the number of registered PDFs, but getVal() will fail if
383/// called for an unregistered index state.
384///
385/// PDFs may not overlap (i.e. share any variables) with the index category (function).
386/// \param[in] pdf PDF to be added.
387/// \param[in] catLabel Name of the category state to be associated to the PDF.
388/// \return `true` in case of failure.
389
390bool RooSimultaneous::addPdf(const RooAbsPdf& pdf, const char* catLabel)
391{
392 // PDFs cannot overlap with the index category
393 if (pdf.dependsOn(_indexCat.arg())) {
394 coutE(InputArguments) << "RooSimultaneous::addPdf(" << GetName() << "): PDF '" << pdf.GetName()
395 << "' overlaps with index category '" << _indexCat.arg().GetName() << "'."<< endl ;
396 return true ;
397 }
398
399 // Each index state can only have one PDF associated with it
400 if (_pdfProxyList.FindObject(catLabel)) {
401 coutE(InputArguments) << "RooSimultaneous::addPdf(" << GetName() << "): index state '"
402 << catLabel << "' has already an associated PDF." << endl ;
403 return true ;
404 }
405
406 const RooSimultaneous* simPdf = dynamic_cast<const RooSimultaneous*>(&pdf) ;
407 if (simPdf) {
408
409 coutE(InputArguments) << "RooSimultaneous::addPdf(" << GetName()
410 << ") ERROR: you cannot add a RooSimultaneous component to a RooSimultaneous using addPdf()."
411 << " Use the constructor with RooArgList if input p.d.f.s or the map<string,RooAbsPdf&> instead." << endl ;
412 return true ;
413
414 } else {
415
416 // Create a proxy named after the associated index state
417 TObject* proxy = new RooRealProxy(catLabel,catLabel,this,const_cast<RooAbsPdf&>(pdf));
418 _pdfProxyList.Add(proxy) ;
419 _numPdf += 1 ;
420 }
421
422 return false ;
423}
424
425////////////////////////////////////////////////////////////////////////////////
426/// Examine the pdf components and check if one of them can be extended or must be extended.
427/// It is enough to have one component that can be extended or must be extended to return the flag in
428/// the total simultaneous pdf.
429
431{
432 bool anyCanExtend = false;
433
434 for (auto *proxy : static_range_cast<RooRealProxy *>(_pdfProxyList)) {
435 auto &pdf = static_cast<RooAbsPdf const&>(proxy->arg());
436 if (pdf.mustBeExtended())
437 return MustBeExtended;
438 anyCanExtend |= pdf.canBeExtended();
439 }
440 return anyCanExtend ? CanBeExtended : CanNotBeExtended;
441}
442
443////////////////////////////////////////////////////////////////////////////////
444/// Return the current value:
445/// the value of the PDF associated with the current index category state
446
448{
449 // Retrieve the proxy by index name
450 RooRealProxy *proxy = static_cast<RooRealProxy *>(_pdfProxyList.FindObject(_indexCat.label()));
451
452 double nEvtTot = 1.0;
453 double nEvtCat = 1.0;
454
455 // Calculate relative weighting factor for sim-pdfs of all extendable components
456 if (canBeExtended()) {
457
458 nEvtTot = 0;
459 nEvtCat = 0;
460
461 for (auto *proxy2 : static_range_cast<RooRealProxy *>(_pdfProxyList)) {
462 auto &pdf2 = static_cast<RooAbsPdf const &>(proxy2->arg());
463 if(!pdf2.canBeExtended()) {
464 // If one of the pdfs can't be expected, reset the normalization
465 // factor to one and break out of the loop.
466 nEvtTot = 1.0;
467 nEvtCat = 1.0;
468 break;
469 }
470 const double nEvt = pdf2.expectedEvents(_normSet);
471 nEvtTot += nEvt;
472 if (proxy == proxy2) {
473 // Matching by proxy by pointer rather than pdfs, because it's
474 // possible to have the same pdf used in different states.
475 nEvtCat += nEvt;
476 }
477 }
478 }
479 double catFrac = nEvtCat / nEvtTot;
480
481 // Return the selected PDF value, normalized by the relative number of
482 // expected events if applicable.
483 return *proxy * catFrac;
484}
485
486////////////////////////////////////////////////////////////////////////////////
487/// Return the number of expected events: If the index is in nset,
488/// then return the sum of the expected events of all components,
489/// otherwise return the number of expected events of the PDF
490/// associated with the current index category state
491
493{
494 if (nset->contains(_indexCat.arg())) {
495
496 double sum(0) ;
497
498 for(auto * proxy : static_range_cast<RooRealProxy*>(_pdfProxyList)) {
499 sum += (static_cast<RooAbsPdf*>(proxy->absArg()))->expectedEvents(nset) ;
500 }
501
502 return sum ;
503
504 } else {
505
506 // Retrieve the proxy by index name
507 RooRealProxy* proxy = static_cast<RooRealProxy*>(_pdfProxyList.FindObject(_indexCat.label())) ;
508
509 //assert(proxy!=0) ;
510 if (proxy==nullptr) return 0 ;
511
512 // Return the selected PDF value, normalized by the number of index states
513 return (static_cast<RooAbsPdf*>(proxy->absArg()))->expectedEvents(nset);
514 }
515}
516
517
518
519////////////////////////////////////////////////////////////////////////////////
520/// Forward determination of analytical integration capabilities to component p.d.f.s
521/// A unique code is assigned to the combined integration capabilities of all associated
522/// p.d.f.s
523
525 const RooArgSet* normSet, const char* rangeName) const
526{
527 // Declare that we can analytically integrate all requested observables
528 analVars.add(allVars) ;
529
530 // Retrieve (or create) the required partial integral list
531 Int_t code ;
532
533 // Check if this configuration was created before
534 CacheElem* cache = static_cast<CacheElem*>(_partIntMgr.getObj(normSet,&analVars,nullptr,RooNameReg::ptr(rangeName))) ;
535 if (cache) {
536 code = _partIntMgr.lastIndex() ;
537 return code+1 ;
538 }
539 cache = new CacheElem ;
540
541 // Create the partial integral set for this request
542 for(auto * proxy : static_range_cast<RooRealProxy*>(_pdfProxyList)) {
543 cache->_partIntList.addOwned(std::unique_ptr<RooAbsReal>{proxy->arg().createIntegral(analVars,normSet,nullptr,rangeName)});
544 }
545
546 // Store the partial integral list and return the assigned code ;
547 code = _partIntMgr.setObj(normSet,&analVars,cache,RooNameReg::ptr(rangeName)) ;
548
549 return code+1 ;
550}
551
552
553
554////////////////////////////////////////////////////////////////////////////////
555/// Return analytical integration defined by given code
556
557double RooSimultaneous::analyticalIntegralWN(Int_t code, const RooArgSet* normSet, const char* /*rangeName*/) const
558{
559 // No integration scenario
560 if (code==0) {
561 return getVal(normSet) ;
562 }
563
564 // Partial integration scenarios, rangeName already encoded in 'code'
565 CacheElem* cache = static_cast<CacheElem*>(_partIntMgr.getObjByIndex(code-1)) ;
566
567 RooRealProxy* proxy = static_cast<RooRealProxy*>(_pdfProxyList.FindObject(_indexCat.label())) ;
568 Int_t idx = _pdfProxyList.IndexOf(proxy) ;
569 return (static_cast<RooAbsReal*>(cache->_partIntList.at(idx)))->getVal(normSet) ;
570}
571
572
573
574
575
576
577////////////////////////////////////////////////////////////////////////////////
578/// Back-end for plotOn() implementation on RooSimultaneous which
579/// needs special handling because a RooSimultaneous PDF cannot
580/// project out its index category via integration. plotOn() will
581/// abort if this is requested without providing a projection dataset.
582
584{
585 // Sanity checks
586 if (plotSanityChecks(frame)) return frame ;
587
588 // Extract projection configuration from command list
589 RooCmdConfig pc("RooSimultaneous::plotOn(" + std::string(GetName()) + ")");
590 pc.defineString("sliceCatState","SliceCat",0,"",true) ;
591 pc.defineDouble("scaleFactor","Normalization",0,1.0) ;
592 pc.defineInt("scaleType","Normalization",0,RooAbsPdf::Relative) ;
593 pc.defineObject("sliceCatList","SliceCat",0,nullptr,true) ;
594 // This dummy is needed for plotOn to recognize the "SliceCatMany" command.
595 // It is not used directly, but the "SliceCat" commands are nested in it.
596 // Removing this dummy definition results in "ERROR: unrecognized command: SliceCatMany".
597 pc.defineObject("dummy1","SliceCatMany",0) ;
598 pc.defineSet("projSet","Project",0) ;
599 pc.defineSet("sliceSet","SliceVars",0) ;
600 pc.defineSet("projDataSet","ProjData",0) ;
601 pc.defineObject("projData","ProjData",1) ;
602 pc.defineMutex("Project","SliceVars") ;
603 pc.allowUndefined() ; // there may be commands we don't handle here
604
605 // Process and check varargs
606 pc.process(cmdList) ;
607 if (!pc.ok(true)) {
608 return frame ;
609 }
610
611 const RooAbsData* projData = static_cast<const RooAbsData*>(pc.getObject("projData")) ;
612 const RooArgSet* projDataSet = pc.getSet("projDataSet");
613 const RooArgSet* sliceSetTmp = pc.getSet("sliceSet") ;
614 std::unique_ptr<RooArgSet> sliceSet( sliceSetTmp ? (static_cast<RooArgSet*>(sliceSetTmp->Clone())) : nullptr );
615 const RooArgSet* projSet = pc.getSet("projSet") ;
616 double scaleFactor = pc.getDouble("scaleFactor") ;
617 ScaleType stype = (ScaleType) pc.getInt("scaleType") ;
618
619
620 // Look for category slice arguments and add them to the master slice list if found
621 const char* sliceCatState = pc.getString("sliceCatState",nullptr,true) ;
622 const RooLinkedList& sliceCatList = pc.getObjectList("sliceCatList") ;
623 if (sliceCatState) {
624
625 // Make the master slice set if it doesnt exist
626 if (!sliceSet) {
627 sliceSet = std::make_unique<RooArgSet>();
628 }
629
630 // Prepare comma separated label list for parsing
631 auto catTokens = ROOT::Split(sliceCatState, ",");
632
633 // Loop over all categories provided by (multiple) Slice() arguments
634 unsigned int tokenIndex = 0;
635 for(auto * scat : static_range_cast<RooCategory*>(sliceCatList)) {
636 const char* slabel = tokenIndex >= catTokens.size() ? nullptr : catTokens[tokenIndex++].c_str();
637
638 if (slabel) {
639 // Set the slice position to the value indicated by slabel
640 scat->setLabel(slabel) ;
641 // Add the slice category to the master slice set
642 sliceSet->add(*scat,false) ;
643 }
644 }
645 }
646
647 // Check if we have a projection dataset
648 if (!projData) {
649 coutE(InputArguments) << "RooSimultaneous::plotOn(" << GetName() << ") ERROR: must have a projection dataset for index category" << endl ;
650 return frame ;
651 }
652
653 // Make list of variables to be projected
654 RooArgSet projectedVars ;
655 if (sliceSet) {
656 makeProjectionSet(frame->getPlotVar(),frame->getNormVars(),projectedVars,true) ;
657
658 // Take out the sliced variables
659 for (const auto sliceArg : *sliceSet) {
660 RooAbsArg* arg = projectedVars.find(sliceArg->GetName()) ;
661 if (arg) {
662 projectedVars.remove(*arg) ;
663 } else {
664 coutI(Plotting) << "RooAbsReal::plotOn(" << GetName() << ") slice variable "
665 << sliceArg->GetName() << " was not projected anyway" << endl ;
666 }
667 }
668 } else if (projSet) {
669 makeProjectionSet(frame->getPlotVar(),projSet,projectedVars,false) ;
670 } else {
671 makeProjectionSet(frame->getPlotVar(),frame->getNormVars(),projectedVars,true) ;
672 }
673
674 bool projIndex(false) ;
675
676 if (!_indexCat.arg().isDerived()) {
677 // *** Error checking for a fundamental index category ***
678 //cout << "RooSim::plotOn: index is fundamental" << endl ;
679
680 // Check that the provided projection dataset contains our index variable
681 if (!projData->get()->find(_indexCat.arg().GetName())) {
682 coutE(Plotting) << "RooSimultaneous::plotOn(" << GetName() << ") ERROR: Projection over index category "
683 << "requested, but projection data set doesn't contain index category" << endl ;
684 return frame ;
685 }
686
687 if (projectedVars.find(_indexCat.arg().GetName())) {
688 projIndex=true ;
689 }
690
691 } else {
692 // *** Error checking for a composite index category ***
693
694 // Determine if any servers of the index category are in the projectedVars
695 RooArgSet projIdxServers ;
696 bool anyServers(false) ;
697 for (const auto server : flattenedCatList()) {
698 if (projectedVars.find(server->GetName())) {
699 anyServers=true ;
700 projIdxServers.add(*server) ;
701 }
702 }
703
704 // Check that the projection dataset contains all the
705 // index category components we're projecting over
706
707 // Determine if all projected servers of the index category are in the projection dataset
708 bool allServers(true) ;
709 std::string missing;
710 for (const auto server : projIdxServers) {
711 if (!projData->get()->find(server->GetName())) {
712 allServers=false ;
713 missing = server->GetName();
714 }
715 }
716
717 if (!allServers) {
718 coutE(Plotting) << "RooSimultaneous::plotOn(" << GetName()
719 << ") ERROR: Projection dataset doesn't contain complete set of index categories to do projection."
720 << "\n\tcategory " << missing << " is missing." << endl ;
721 return frame ;
722 }
723
724 if (anyServers) {
725 projIndex = true ;
726 }
727 }
728
729 // Calculate relative weight fractions of components
730 std::unique_ptr<Roo1DTable> wTable( projData->table(_indexCat.arg()) );
731
732 // Clone the index category to be able to cycle through the category states for plotting without
733 // affecting the category state of our instance
734 RooArgSet idxCloneSet;
735 RooArgSet(*_indexCat).snapshot(idxCloneSet, true);
736 auto idxCatClone = static_cast<RooAbsCategoryLValue*>(idxCloneSet.find(_indexCat->GetName()) );
737 assert(idxCatClone);
738
739 // Make list of category columns to exclude from projection data
740 std::unique_ptr<RooArgSet> idxCompSliceSet( idxCatClone->getObservables(frame->getNormVars()) );
741
742 // If we don't project over the index, just do the regular plotOn
743 if (!projIndex) {
744
745 coutI(Plotting) << "RooSimultaneous::plotOn(" << GetName() << ") plot on " << frame->getPlotVar()->GetName()
746 << " represents a slice in the index category (" << _indexCat.arg().GetName() << ")" << endl ;
747
748 // Reduce projData: take out fitCat (component) columns and entries that don't match selected slice
749 // Construct cut string to only select projection data event that match the current slice
750
751 // Make cut string to exclude rows from projection data
752 TString cutString ;
753 bool first(true) ;
754 for (const auto arg : *idxCompSliceSet) {
755 auto idxComp = static_cast<RooCategory*>(arg);
756 RooAbsArg* slicedComponent = nullptr;
757 if (sliceSet && (slicedComponent = sliceSet->find(*idxComp)) != nullptr) {
758 auto theCat = static_cast<const RooAbsCategory*>(slicedComponent);
759 idxComp->setIndex(theCat->getCurrentIndex(), false);
760 }
761
762 if (!first) {
763 cutString.Append("&&") ;
764 } else {
765 first=false ;
766 }
767 cutString.Append(Form("%s==%d",idxComp->GetName(),idxComp->getCurrentIndex())) ;
768 }
769
770 // Make temporary projData without RooSim index category components
771 RooArgSet projDataVars(*projData->get()) ;
772 projDataVars.remove(*idxCompSliceSet,true,true) ;
773
774 std::unique_ptr<RooAbsData> projDataTmp( const_cast<RooAbsData*>(projData)->reduce(projDataVars,cutString) );
775
776 // Override normalization and projection dataset
777 RooCmdArg tmp1 = RooFit::Normalization(scaleFactor*wTable->getFrac(idxCatClone->getCurrentLabel()),stype) ;
778 RooCmdArg tmp2 = RooFit::ProjWData(*projDataSet,*projDataTmp) ;
779
780 // WVE -- do not adjust normalization for asymmetry plots
781 RooLinkedList cmdList2(cmdList) ;
782 if (!cmdList.find("Asymmetry")) {
783 cmdList2.Add(&tmp1) ;
784 }
785 cmdList2.Add(&tmp2) ;
786
787 // Plot single component
788 RooPlot* retFrame = getPdf(idxCatClone->getCurrentLabel())->plotOn(frame,cmdList2);
789 return retFrame ;
790 }
791
792 // If we project over the index, plot using a temporary RooAddPdf
793 // using the weights from the data as coefficients
794
795 // Build the list of indexCat components that are sliced
796 idxCompSliceSet->remove(projectedVars,true,true) ;
797
798 // Make a new expression that is the weighted sum of requested components
799 RooArgList pdfCompList ;
800 RooArgList wgtCompList ;
801//RooAbsPdf* pdf ;
802 double sumWeight(0) ;
803 for(auto * proxy : static_range_cast<RooRealProxy*>(_pdfProxyList)) {
804
805 idxCatClone->setLabel(proxy->name()) ;
806
807 // Determine if this component is the current slice (if we slice)
808 bool skip(false) ;
809 for (const auto idxSliceCompArg : *idxCompSliceSet) {
810 const auto idxSliceComp = static_cast<RooAbsCategory*>(idxSliceCompArg);
811 RooAbsCategory* idxComp = static_cast<RooAbsCategory*>(idxCloneSet.find(idxSliceComp->GetName())) ;
812 if (idxComp->getCurrentIndex()!=idxSliceComp->getCurrentIndex()) {
813 skip=true ;
814 break ;
815 }
816 }
817 if (skip) continue ;
818
819 // Instantiate a RRV holding this pdfs weight fraction
820 wgtCompList.addOwned(std::make_unique<RooRealVar>(proxy->name(),"coef",wTable->getFrac(proxy->name())));
821 sumWeight += wTable->getFrac(proxy->name()) ;
822
823 // Add the PDF to list list
824 pdfCompList.add(proxy->arg()) ;
825 }
826
827 TString plotVarName(GetName()) ;
828 RooAddPdf plotVar{plotVarName,"weighted sum of RS components",pdfCompList,wgtCompList};
829
830 // Fix appropriate coefficient normalization in plot function
831 if (!_plotCoefNormSet.empty()) {
832 plotVar.fixAddCoefNormalization(_plotCoefNormSet) ;
833 }
834
835 std::unique_ptr<RooAbsData> projDataTmp;
836 RooArgSet projSetTmp ;
837 if (projData) {
838
839 // Construct cut string to only select projection data event that match the current slice
840 TString cutString ;
841 if (!idxCompSliceSet->empty()) {
842 bool first(true) ;
843 for (const auto idxSliceCompArg : *idxCompSliceSet) {
844 const auto idxSliceComp = static_cast<RooAbsCategory*>(idxSliceCompArg);
845 if (!first) {
846 cutString.Append("&&") ;
847 } else {
848 first=false ;
849 }
850 cutString.Append(Form("%s==%d",idxSliceComp->GetName(),idxSliceComp->getCurrentIndex())) ;
851 }
852 }
853
854 // Make temporary projData without RooSim index category components
855 RooArgSet projDataVars(*projData->get()) ;
856 RooArgSet idxCatServers;
857 _indexCat.arg().getObservables(frame->getNormVars(), idxCatServers) ;
858
859 projDataVars.remove(idxCatServers,true,true) ;
860
861 if (!idxCompSliceSet->empty()) {
862 projDataTmp = std::unique_ptr<RooAbsData>{const_cast<RooAbsData*>(projData)->reduce(projDataVars,cutString)};
863 } else {
864 projDataTmp = std::unique_ptr<RooAbsData>{const_cast<RooAbsData*>(projData)->reduce(projDataVars)};
865 }
866
867
868
869 if (projSet) {
870 projSetTmp.add(*projSet) ;
871 projSetTmp.remove(idxCatServers,true,true);
872 }
873 }
874
875
876 if (_indexCat.arg().isDerived() && !idxCompSliceSet->empty()) {
877 coutI(Plotting) << "RooSimultaneous::plotOn(" << GetName() << ") plot on " << frame->getPlotVar()->GetName()
878 << " represents a slice in index category components " << *idxCompSliceSet << endl ;
879
880 RooArgSet idxCompProjSet;
881 _indexCat.arg().getObservables(frame->getNormVars(), idxCompProjSet) ;
882 idxCompProjSet.remove(*idxCompSliceSet,true,true) ;
883 if (!idxCompProjSet.empty()) {
884 coutI(Plotting) << "RooSimultaneous::plotOn(" << GetName() << ") plot on " << frame->getPlotVar()->GetName()
885 << " averages with data index category components " << idxCompProjSet << endl ;
886 }
887 } else {
888 coutI(Plotting) << "RooSimultaneous::plotOn(" << GetName() << ") plot on " << frame->getPlotVar()->GetName()
889 << " averages with data index category (" << _indexCat.arg().GetName() << ")" << endl ;
890 }
891
892
893 // Override normalization and projection dataset
894 RooLinkedList cmdList2(cmdList) ;
895
896 RooCmdArg tmp1 = RooFit::Normalization(scaleFactor*sumWeight,stype) ;
897 RooCmdArg tmp2 = RooFit::ProjWData(*projDataSet,*projDataTmp) ;
898 // WVE -- do not adjust normalization for asymmetry plots
899 if (!cmdList.find("Asymmetry")) {
900 cmdList2.Add(&tmp1) ;
901 }
902 cmdList2.Add(&tmp2) ;
903
904 RooPlot* frame2 ;
905 if (!projSetTmp.empty()) {
906 // Plot temporary function
907 RooCmdArg tmp3 = RooFit::Project(projSetTmp) ;
908 cmdList2.Add(&tmp3) ;
909 frame2 = plotVar.plotOn(frame,cmdList2) ;
910 } else {
911 // Plot temporary function
912 frame2 = plotVar.plotOn(frame,cmdList2) ;
913 }
914
915 return frame2 ;
916}
917
918
919////////////////////////////////////////////////////////////////////////////////
920/// Interface function used by test statistics to freeze choice of observables
921/// for interpretation of fraction coefficients. Needed here because a RooSimultaneous
922/// works like a RooAddPdf when plotted
923
924void RooSimultaneous::selectNormalization(const RooArgSet* normSet, bool /*force*/)
925{
927 if (normSet) _plotCoefNormSet.add(*normSet) ;
928}
929
930
931////////////////////////////////////////////////////////////////////////////////
932/// Interface function used by test statistics to freeze choice of range
933/// for interpretation of fraction coefficients. Needed here because a RooSimultaneous
934/// works like a RooAddPdf when plotted
935
936void RooSimultaneous::selectNormalizationRange(const char* normRange2, bool /*force*/)
937{
938 _plotCoefNormRange = RooNameReg::ptr(normRange2) ;
939}
940
941
942
943
944////////////////////////////////////////////////////////////////////////////////
945
947 const RooArgSet* auxProto, bool verbose, bool autoBinned, const char* binnedTag) const
948{
949 const char* idxCatName = _indexCat.arg().GetName() ;
950
951 if (vars.find(idxCatName) && prototype==nullptr
952 && (auxProto==nullptr || auxProto->empty())
953 && (autoBinned || (binnedTag && strlen(binnedTag)))) {
954
955 // Return special generator config that can also do binned generation for selected states
956 return new RooSimSplitGenContext(*this,vars,verbose,autoBinned,binnedTag) ;
957
958 } else {
959
960 // Return regular generator config ;
961 return genContext(vars,prototype,auxProto,verbose) ;
962 }
963}
964
965
966
967////////////////////////////////////////////////////////////////////////////////
968/// Return specialized generator context for simultaneous p.d.f.s
969
971 const RooArgSet* auxProto, bool verbose) const
972{
973 RooArgSet allVars{vars};
974 if(prototype) allVars.add(*prototype->get());
975
976 RooArgSet catsAmongAllVars;
977 allVars.selectCommon(flattenedCatList(), catsAmongAllVars);
978
979 // Not generating index cat: return context for pdf associated with present index state
980 if(catsAmongAllVars.empty()) {
981 auto* proxy = static_cast<RooRealProxy*>(_pdfProxyList.FindObject(_indexCat->getCurrentLabel()));
982 if (!proxy) {
983 coutE(InputArguments) << "RooSimultaneous::genContext(" << GetName()
984 << ") ERROR: no PDF associated with current state ("
985 << _indexCat.arg().GetName() << "=" << _indexCat.arg().getCurrentLabel() << ")" << endl ;
986 return nullptr;
987 }
988 return static_cast<RooAbsPdf*>(proxy->absArg())->genContext(vars,prototype,auxProto,verbose) ;
989 }
990
991 RooArgSet catsAmongProtoVars;
992 if(prototype) {
993 prototype->get()->selectCommon(flattenedCatList(), catsAmongProtoVars);
994
995 if(!catsAmongProtoVars.empty() && catsAmongProtoVars.size() != flattenedCatList().size()) {
996 // Abort if we have only part of the servers
997 coutE(Plotting) << "RooSimultaneous::genContext: ERROR: prototype must include either all "
998 << " components of the RooSimultaneous index category or none " << std::endl;
999 return nullptr;
1000 }
1001 }
1002
1003 return new RooSimGenContext(*this,vars,prototype,auxProto,verbose) ;
1004}
1005
1006
1007
1008
1009////////////////////////////////////////////////////////////////////////////////
1010
1012 const RooArgSet* nset,
1013 double scaleFactor,
1014 bool correctForBinVolume,
1015 bool showProgress) const
1016{
1017 if (RooAbsReal::fillDataHist (hist, nset, scaleFactor,
1018 correctForBinVolume, showProgress) == nullptr)
1019 return nullptr;
1020
1021 const double sum = hist->sumEntries();
1022 if (sum != 0) {
1023 for (int i=0 ; i<hist->numEntries() ; i++) {
1024 hist->set(i, hist->weight(i) / sum, 0.);
1025 }
1026 }
1027
1028 return hist;
1029}
1030
1031
1032
1033
1034////////////////////////////////////////////////////////////////////////////////
1035/// Special generator interface for generation of 'global observables' -- for RooStats tools
1036
1038{
1039 // Make set with clone of variables (placeholder for output)
1040 RooArgSet globClone;
1041 whatVars.snapshot(globClone);
1042
1043 auto data = std::make_unique<RooDataSet>("gensimglobal","gensimglobal",whatVars);
1044
1045 for (Int_t i=0 ; i<nEvents ; i++) {
1046 for (const auto& nameIdx : indexCat()) {
1047
1048 // Get pdf associated with state from simpdf
1049 RooAbsPdf* pdftmp = getPdf(nameIdx.first);
1050
1051 RooArgSet globtmp;
1052 pdftmp->getObservables(&whatVars, globtmp) ;
1053
1054 // If there are any, generate only global variables defined by the pdf
1055 // associated with this state and transfer values to output placeholder.
1056 if (!globtmp.empty()) {
1057 globClone.assign(*std::unique_ptr<RooDataSet>{pdftmp->generate(globtmp,1)}->get(0)) ;
1058 }
1059 }
1060 data->add(globClone) ;
1061 }
1062
1063 return RooFit::makeOwningPtr(std::move(data));
1064}
1065
1066
1067/// Wraps the components of this RooSimultaneous in RooBinSamplingPdfs.
1068/// \param[in] data The dataset to be used in the eventual fit, used to figure
1069/// out the observables and whether the dataset is binned.
1070/// \param[in] precision Precision argument for all created RooBinSamplingPdfs.
1072
1073 if (precision < 0.) return;
1074
1075 RooArgSet newSamplingPdfs;
1076
1077 for (auto const &item : this->indexCat()) {
1078
1079 auto const &catName = item.first;
1080 auto &pdf = *this->getPdf(catName);
1081
1082 if (auto newSamplingPdf = RooBinSamplingPdf::create(pdf, data, precision)) {
1083 // Set the "ORIGNAME" attribute the indicate to
1084 // RooAbsArg::redirectServers() which pdf should be replaced by this
1085 // RooBinSamplingPdf in the RooSimultaneous.
1086 newSamplingPdf->setAttribute(
1087 (std::string("ORIGNAME:") + pdf.GetName()).c_str());
1088 newSamplingPdfs.addOwned(std::move(newSamplingPdf));
1089 }
1090 }
1091
1092 this->redirectServers(newSamplingPdfs, false, true);
1093 this->addOwnedComponents(std::move(newSamplingPdfs));
1094}
1095
1096
1097/// Wraps the components of this RooSimultaneous in RooBinSamplingPdfs, with a
1098/// different precision parameter for each component.
1099/// \param[in] data The dataset to be used in the eventual fit, used to figure
1100/// out the observables and whether the dataset is binned.
1101/// \param[in] precisions The map that gives the precision argument for each
1102/// component in the RooSimultaneous. The keys are the pdf names. If
1103/// there is no value for a given component, it will not use the bin
1104/// integration. Otherwise, the value has the same meaning than in
1105/// the IntegrateBins() command argument for RooAbsPdf::fitTo().
1106/// \param[in] useCategoryNames If this flag is set, the category names will be
1107/// used to look up the precision in the precisions map instead of
1108/// the pdf names.
1110 std::map<std::string, double> const& precisions,
1111 bool useCategoryNames /*=false*/) {
1112
1113 constexpr double defaultPrecision = -1.;
1114
1115 RooArgSet newSamplingPdfs;
1116
1117 for (auto const &item : this->indexCat()) {
1118
1119 auto const &catName = item.first;
1120 auto &pdf = *this->getPdf(catName);
1121 std::string pdfName = pdf.GetName();
1122
1123 auto found = precisions.find(useCategoryNames ? catName : pdfName);
1124 const double precision =
1125 found != precisions.end() ? found->second : defaultPrecision;
1126 if (precision < 0.)
1127 continue;
1128
1129 if (auto newSamplingPdf = RooBinSamplingPdf::create(pdf, data, precision)) {
1130 // Set the "ORIGNAME" attribute the indicate to
1131 // RooAbsArg::redirectServers() which pdf should be replaced by this
1132 // RooBinSamplingPdf in the RooSimultaneous.
1133 newSamplingPdf->setAttribute(
1134 (std::string("ORIGNAME:") + pdf.GetName()).c_str());
1135 newSamplingPdfs.addOwned(std::move(newSamplingPdf));
1136 }
1137 }
1138
1139 this->redirectServers(newSamplingPdfs, false, true);
1140 this->addOwnedComponents(std::move(newSamplingPdfs));
1141}
1142
1143/// Internal utility function to get a list of all category components for this
1144/// RooSimultaneous. The output contains only the index category if it is a
1145/// RooCategory, or the list of all category components if it is a
1146/// RooSuperCategory.
1148{
1149 // Note that the index category of a RooSimultaneous can only be of type
1150 // RooCategory or RooSuperCategory, because these are the only classes that
1151 // inherit from RooAbsCategoryLValue.
1152 if (auto superCat = dynamic_cast<RooSuperCategory const*>(&_indexCat.arg())) {
1153 return superCat->inputCatList();
1154 }
1155
1156 if(!_indexCatSet) {
1157 _indexCatSet = std::make_unique<RooArgSet>(_indexCat.arg());
1158 }
1159 return *_indexCatSet;
1160}
1161
1162namespace {
1163
1164void markObs(RooAbsArg *arg, std::string const &prefix, RooArgSet const &normSet)
1165{
1166 for (RooAbsArg *server : arg->servers()) {
1167 if (server->isFundamental() && normSet.find(*server)) {
1168 markObs(server, prefix, normSet);
1169 server->setAttribute("__obs__");
1170 } else if (!server->isFundamental()) {
1171 markObs(server, prefix, normSet);
1172 }
1173 }
1174}
1175
1176void prefixArgs(RooAbsArg *arg, std::string const &prefix, RooArgSet const &normSet)
1177{
1178 if (!arg->getStringAttribute("__prefix__")) {
1179 arg->SetName((prefix + arg->GetName()).c_str());
1180 arg->setStringAttribute("__prefix__", prefix.c_str());
1181 }
1182 for (RooAbsArg *server : arg->servers()) {
1183 if (server->isFundamental() && normSet.find(*server)) {
1184 prefixArgs(server, prefix, normSet);
1185 } else if (!server->isFundamental()) {
1186 prefixArgs(server, prefix, normSet);
1187 }
1188 }
1189}
1190
1191} // namespace
1192
1193std::unique_ptr<RooAbsArg>
1195{
1196 std::unique_ptr<RooSimultaneous> newSimPdf{static_cast<RooSimultaneous *>(this->Clone())};
1197
1198 const char *rangeName = this->getStringAttribute("RangeName");
1199 bool splitRange = this->getAttribute("SplitRange");
1200
1201 RooArgSet newPdfs;
1202 std::vector<std::string> catNames;
1203
1204 for (auto *proxy : static_range_cast<RooRealProxy *>(newSimPdf->_pdfProxyList)) {
1205 catNames.emplace_back(proxy->GetName());
1206 std::string const &catName = catNames.back();
1207 const std::string prefix = "_" + catName + "_";
1208
1209 const std::string origname = proxy->arg().GetName();
1210
1211 auto pdfClone = RooHelpers::cloneTreeWithSameParameters(static_cast<RooAbsPdf const &>(proxy->arg()), &normSet);
1212
1213 markObs(pdfClone.get(), prefix, normSet);
1214
1215 std::unique_ptr<RooArgSet> pdfNormSet(
1216 static_cast<RooArgSet *>(std::unique_ptr<RooArgSet>(pdfClone->getVariables())->selectByAttrib("__obs__", true)));
1217
1218 if (rangeName) {
1219 pdfClone->setNormRange(RooHelpers::getRangeNameForSimComponent(rangeName, splitRange, catName).c_str());
1220 }
1221
1222 RooFit::Detail::CompileContext pdfContext{*pdfNormSet};
1223 pdfContext.setLikelihoodMode(ctx.likelihoodMode());
1224 auto *pdfFinal = pdfContext.compile(*pdfClone, *newSimPdf, *pdfNormSet);
1225
1226 // We can only prefix the observables after everything related the
1227 // compiling of the compute graph for the normalization set is done. This
1228 // is because of a subtlety in conditional RooProdPdfs, which stores the
1229 // normalization sets for the individual pdfs in RooArgSets that are
1230 // disconnected from the computation graph, so we have no control over
1231 // them. An alternative would be to use recursive server re-direction,
1232 // but this has more performance overhead.
1233 prefixArgs(pdfFinal, prefix, normSet);
1234
1235 pdfFinal->fixAddCoefNormalization(*pdfNormSet, false);
1236
1237 pdfClone->SetName((std::string("_") + pdfClone->GetName()).c_str());
1238 pdfFinal->addOwnedComponents(std::move(pdfClone));
1239
1240 pdfFinal->setAttribute(("ORIGNAME:" + origname).c_str());
1241 newPdfs.add(*pdfFinal);
1242
1243 // We will remove the old pdf server because we will fill the new ones by
1244 // hand via the creation of new proxies.
1245 newSimPdf->removeServer(const_cast<RooAbsReal &>(proxy->arg()), true);
1246 }
1247
1248 // Replace pdfs with compiled pdfs. Don't use RooAbsArg::redirectServers()
1249 // here, because it doesn't support replacing two servers with the same name
1250 // (it can happen in a RooSimultaneous that two pdfs have the same name).
1251
1252 // First delete old proxies (we have already removed the servers before).
1253 newSimPdf->_pdfProxyList.Delete();
1254
1255 // Recreate the _pdfProxyList with the compiled pdfs
1256 for (std::size_t i = 0; i < newPdfs.size(); ++i) {
1257 const char *label = catNames[i].c_str();
1258 newSimPdf->_pdfProxyList.Add(
1259 new RooRealProxy(label, label, newSimPdf.get(), *static_cast<RooAbsReal *>(newPdfs[i])));
1260 }
1261
1262 ctx.compileServers(*newSimPdf, normSet); // to trigger compiling also the index category
1263
1264 return newSimPdf;
1265}
#define coutI(a)
#define oocoutW(o, a)
#define oocxcoutD(o, a)
#define oocoutI(o, a)
#define coutE(a)
RooTemplateProxy< RooAbsReal > RooRealProxy
Compatibility typedef replacing the old RooRealProxy class.
#define ClassImp(name)
Definition Rtypes.h:382
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void data
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void char Point_t Rectangle_t WindowAttributes_t Float_t Float_t Float_t Int_t Int_t UInt_t UInt_t Rectangle_t Int_t Int_t Window_t TString Int_t GCValues_t GetPrimarySelectionOwner GetDisplay GetScreen GetColormap GetNativeEvent const char const char dpyName wid window const char font_name cursor keysym reg const char only_if_exist regb h Point_t winding char text const char depth char const char Int_t count const char ColorStruct_t color const char Pixmap_t Pixmap_t PictureAttributes_t attr const char char ret_data h unsigned char height h Atom_t Int_t ULong_t ULong_t unsigned char prop_list Atom_t Atom_t Atom_t Time_t type
char name[80]
Definition TGX11.cxx:110
char * Form(const char *fmt,...)
Formats a string in a circular formatting buffer.
Definition TString.cxx:2489
Common abstract base class for objects that represent a value and a "shape" in RooFit.
Definition RooAbsArg.h:79
bool dependsOn(const RooAbsCollection &serverList, const RooAbsArg *ignoreArg=nullptr, bool valueOnly=false) const
Test whether we depend on (ie, are served by) any object in the specified collection.
R__DEPRECATED(6, 36, "Use getObservables().") RooFit R__DEPRECATED(6, 36, "Use getObservables().") RooFit R__DEPRECATED(6, 36, "Use getObservables().") RooFit const RooAbsArg &testArg const
Definition RooAbsArg.h:145
void setStringAttribute(const Text_t *key, const Text_t *value)
Associate string 'value' to this object under key 'key'.
RooFit::OwningPtr< RooArgSet > getObservables(const RooArgSet &set, bool valueOnly=true) const
Given a set of possible observables, return the observables that this PDF depends on.
void SetName(const char *name) override
Set the name of the TNamed.
bool addOwnedComponents(const RooAbsCollection &comps)
Take ownership of the contents of 'comps'.
const Text_t * getStringAttribute(const Text_t *key) const
Get string attribute mapped under key 'key'.
bool redirectServers(const RooAbsCollection &newServerList, bool mustReplaceAll=false, bool nameChange=false, bool isRecursionStep=false)
Replace all direct servers of this object with the new servers in newServerList.
bool getAttribute(const Text_t *name) const
Check if a named attribute is set. By default, all attributes are unset.
RooFit::OwningPtr< RooArgSet > getVariables(bool stripDisconnected=true) const
Return RooArgSet with all variables (tree leaf nodes of expression tree)
TObject * Clone(const char *newname=nullptr) const override
Make a clone of an object using the Streamer facility.
Definition RooAbsArg.h:91
virtual bool isFundamental() const
Is this object a fundamental type that can be added to a dataset? Fundamental-type subclasses overrid...
Definition RooAbsArg.h:223
Abstract base class for objects that represent a discrete value that can be set from the outside,...
virtual bool setLabel(const char *label, bool printError=true)=0
Change category state by specifying a state name.
A space to attach TBranches.
virtual value_type getCurrentIndex() const
Return index number of current state.
virtual const char * getCurrentLabel() const
Return label string of current state.
std::map< std::string, value_type >::const_iterator begin() const
Iterator for category state names. Points to pairs of index and name.
std::size_t size() const
Number of states defined.
virtual bool remove(const RooAbsArg &var, bool silent=false, bool matchByNameOnly=false)
Remove the specified argument from our list.
bool contains(const RooAbsArg &var) const
Check if collection contains an argument with the same name as var.
const char * GetName() const override
Returns name of object.
virtual bool add(const RooAbsArg &var, bool silent=false)
Add the specified argument to list.
TObject * Clone(const char *newname=nullptr) const override
Make a clone of an object using the Streamer facility.
void assign(const RooAbsCollection &other) const
Sets the value, cache and constant attribute of any argument in our set that also appears in the othe...
Storage_t::size_type size() const
RooAbsArg * first() const
virtual bool addOwned(RooAbsArg &var, bool silent=false)
Add an argument and transfer the ownership to the collection.
RooAbsArg * find(const char *name) const
Find object with given name in list.
Abstract base class for binned and unbinned datasets.
Definition RooAbsData.h:57
virtual const RooArgSet * get() const
Definition RooAbsData.h:101
virtual Roo1DTable * table(const RooArgSet &catSet, const char *cuts="", const char *opts="") const
Construct table for product of categories in catSet.
virtual Int_t numEntries() const
Return number of entries in dataset, i.e., count unweighted entries.
Abstract base class for generator contexts of RooAbsPdf objects.
Abstract interface for all probability density functions.
Definition RooAbsPdf.h:40
RooArgSet const * _normSet
Normalization integral (owned by _normMgr)
Definition RooAbsPdf.h:320
RooPlot * plotOn(RooPlot *frame, const RooCmdArg &arg1={}, const RooCmdArg &arg2={}, const RooCmdArg &arg3={}, const RooCmdArg &arg4={}, const RooCmdArg &arg5={}, const RooCmdArg &arg6={}, const RooCmdArg &arg7={}, const RooCmdArg &arg8={}, const RooCmdArg &arg9={}, const RooCmdArg &arg10={}) const override
Helper calling plotOn(RooPlot*, RooLinkedList&) const.
Definition RooAbsPdf.h:124
bool canBeExtended() const
If true, PDF can provide extended likelihood term.
Definition RooAbsPdf.h:218
@ CanBeExtended
Definition RooAbsPdf.h:212
@ MustBeExtended
Definition RooAbsPdf.h:212
@ CanNotBeExtended
Definition RooAbsPdf.h:212
RooFit::OwningPtr< RooDataSet > generate(const RooArgSet &whatVars, Int_t nEvents, const RooCmdArg &arg1, const RooCmdArg &arg2={}, const RooCmdArg &arg3={}, const RooCmdArg &arg4={}, const RooCmdArg &arg5={})
See RooAbsPdf::generate(const RooArgSet&,const RooCmdArg&,const RooCmdArg&,const RooCmdArg&,...
Definition RooAbsPdf.h:57
Abstract base class for objects that represent a real value and implements functionality common to al...
Definition RooAbsReal.h:59
RooDataHist * fillDataHist(RooDataHist *hist, const RooArgSet *nset, double scaleFactor, bool correctForBinVolume=false, bool showProgress=false) const
Fill a RooDataHist with values sampled from this function at the bin centers.
double getVal(const RooArgSet *normalisationSet=nullptr) const
Evaluate object.
Definition RooAbsReal.h:103
bool plotSanityChecks(RooPlot *frame) const
Utility function for plotOn(), perform general sanity check on frame to ensure safe plotting operatio...
void makeProjectionSet(const RooAbsArg *plotVar, const RooArgSet *allVars, RooArgSet &projectedVars, bool silent) const
Utility function for plotOn() that constructs the set of observables to project when plotting ourselv...
Efficient implementation of a sum of PDFs of the form.
Definition RooAddPdf.h:33
RooArgList is a container object that can hold multiple RooAbsArg objects.
Definition RooArgList.h:22
RooAbsArg * at(Int_t idx) const
Return object at given index, or nullptr if index is out of range.
Definition RooArgList.h:110
RooAbsArg * absArg() const
Return pointer to contained argument.
Definition RooArgProxy.h:46
RooArgSet is a container object that can hold multiple RooAbsArg objects.
Definition RooArgSet.h:24
RooArgSet * snapshot(bool deepCopy=true) const
Use RooAbsCollection::snapshot(), but return as RooArgSet.
Definition RooArgSet.h:154
RooArgSet * selectCommon(const RooAbsCollection &refColl) const
Use RooAbsCollection::selecCommon(), but return as RooArgSet.
Definition RooArgSet.h:149
static std::unique_ptr< RooAbsPdf > create(RooAbsPdf &pdf, RooAbsData const &data, double precision)
Creates a wrapping RooBinSamplingPdf if appropriate.
Int_t setObj(const RooArgSet *nset, T *obj, const TNamed *isetRangeName=nullptr)
Setter function without integration set.
T * getObjByIndex(Int_t index) const
Retrieve payload object by slot index.
Int_t lastIndex() const
Return index of slot used in last get or set operation.
T * getObj(const RooArgSet *nset, Int_t *sterileIndex=nullptr, const TNamed *isetRangeName=nullptr)
Getter function without integration set.
Object to represent discrete states.
Definition RooCategory.h:28
Named container for two doubles, two integers two object points and three string pointers that can be...
Definition RooCmdArg.h:26
Configurable parser for RooCmdArg named arguments.
void defineMutex(const char *head, Args_t &&... tail)
Define arguments where any pair is mutually exclusive.
bool process(const RooCmdArg &arg)
Process given RooCmdArg.
double getDouble(const char *name, double defaultValue=0.0) const
Return double property registered with name 'name'.
bool defineDouble(const char *name, const char *argName, int doubleNum, double defValue=0.0)
Define double property name 'name' mapped to double in slot 'doubleNum' in RooCmdArg with name argNam...
RooArgSet * getSet(const char *name, RooArgSet *set=nullptr) const
Return RooArgSet property registered with name 'name'.
bool defineSet(const char *name, const char *argName, int setNum, const RooArgSet *set=nullptr)
Define TObject property name 'name' mapped to object in slot 'setNum' in RooCmdArg with name argName ...
bool ok(bool verbose) const
Return true of parsing was successful.
bool defineObject(const char *name, const char *argName, int setNum, const TObject *obj=nullptr, bool isArray=false)
Define TObject property name 'name' mapped to object in slot 'setNum' in RooCmdArg with name argName ...
const char * getString(const char *name, const char *defaultValue="", bool convEmptyToNull=false) const
Return string property registered with name 'name'.
bool defineString(const char *name, const char *argName, int stringNum, const char *defValue="", bool appendMode=false)
Define double property name 'name' mapped to double in slot 'stringNum' in RooCmdArg with name argNam...
const RooLinkedList & getObjectList(const char *name) const
Return list of objects registered with name 'name'.
bool defineInt(const char *name, const char *argName, int intNum, int defValue=0)
Define integer property name 'name' mapped to integer in slot 'intNum' in RooCmdArg with name argName...
void allowUndefined(bool flag=true)
If flag is true the processing of unrecognized RooCmdArgs is not considered an error.
int getInt(const char *name, int defaultValue=0) const
Return integer property registered with name 'name'.
TObject * getObject(const char *name, TObject *obj=nullptr) const
Return TObject property registered with name 'name'.
void removeAll() override
Remove all argument inset using remove(const RooAbsArg&).
bool add(const RooAbsArg &var, bool valueServer, bool shapeServer, bool silent)
Overloaded RooCollection_t::add() method insert object into set and registers object as server to own...
Container class to hold N-dimensional binned data.
Definition RooDataHist.h:40
double weight(std::size_t i) const
Return weight of i-th bin.
void set(std::size_t binNumber, double weight, double wgtErr)
Set bin content of bin that was last loaded with get(std::size_t).
double sumEntries() const override
Sum the weights of all bins.
Container class to hold unbinned data.
Definition RooDataSet.h:33
const RooArgSet * get(Int_t index) const override
Return RooArgSet with coordinates of event 'index'.
void compileServers(RooAbsArg &arg, RooArgSet const &normSet)
Collection class for internal use, storing a collection of RooAbsArg pointers in a doubly linked list...
TObject * find(const char *name) const
Return pointer to object with given name in collection.
virtual void Add(TObject *arg)
static const TNamed * ptr(const char *stringPtr)
Return a unique TNamed pointer for given C++ string.
Plot frame and a container for graphics objects within that frame.
Definition RooPlot.h:45
void remove(const char *name=nullptr, bool deleteToo=true)
Remove object with given name, or last object added if no name is given.
Definition RooPlot.cxx:868
const RooArgSet * getNormVars() const
Definition RooPlot.h:152
RooAbsRealLValue * getPlotVar() const
Definition RooPlot.h:143
Facilitates simultaneous fitting of multiple PDFs to subsets of a given dataset.
void selectNormalization(const RooArgSet *depSet=nullptr, bool force=false) override
Interface function used by test statistics to freeze choice of observables for interpretation of frac...
double evaluate() const override
Return the current value: the value of the PDF associated with the current index category state.
Int_t _numPdf
Number of registered PDFs.
void selectNormalizationRange(const char *rangeName=nullptr, bool force=false) override
Interface function used by test statistics to freeze choice of range for interpretation of fraction c...
TList _pdfProxyList
List of PDF proxies (named after applicable category state)
RooObjCacheManager _partIntMgr
! Component normalization manager
~RooSimultaneous() override
Destructor.
RooFit::OwningPtr< RooDataSet > generateSimGlobal(const RooArgSet &whatVars, Int_t nEvents) override
Special generator interface for generation of 'global observables' – for RooStats tools.
RooArgSet const & flattenedCatList() const
Internal utility function to get a list of all category components for this RooSimultaneous.
RooPlot * plotOn(RooPlot *frame, const RooCmdArg &arg1, const RooCmdArg &arg2={}, const RooCmdArg &arg3={}, const RooCmdArg &arg4={}, const RooCmdArg &arg5={}, const RooCmdArg &arg6={}, const RooCmdArg &arg7={}, const RooCmdArg &arg8={}, const RooCmdArg &arg9={}, const RooCmdArg &arg10={}) const override
ExtendMode extendMode() const override
Examine the pdf components and check if one of them can be extended or must be extended.
RooCategoryProxy _indexCat
Index category.
double analyticalIntegralWN(Int_t code, const RooArgSet *normSet, const char *rangeName=nullptr) const override
Return analytical integration defined by given code.
Int_t getAnalyticalIntegralWN(RooArgSet &allVars, RooArgSet &numVars, const RooArgSet *normSet, const char *rangeName=nullptr) const override
Forward determination of analytical integration capabilities to component p.d.f.s A unique code is as...
double expectedEvents(const RooArgSet *nset) const override
Return the number of expected events: If the index is in nset, then return the sum of the expected ev...
friend class RooSimGenContext
RooAbsGenContext * autoGenContext(const RooArgSet &vars, const RooDataSet *prototype=nullptr, const RooArgSet *auxProto=nullptr, bool verbose=false, bool autoBinned=true, const char *binnedTag="") const override
RooAbsPdf * getPdf(RooStringView catName) const
Return the p.d.f associated with the given index category name.
std::unique_ptr< RooAbsArg > compileForNormSet(RooArgSet const &normSet, RooFit::Detail::CompileContext &ctx) const override
static std::unique_ptr< RooSimultaneous::InitializationOutput > initialize(std::string const &name, RooAbsCategoryLValue &inIndexCat, std::map< std::string, RooAbsPdf * > const &pdfMap)
void wrapPdfsInBinSamplingPdfs(RooAbsData const &data, double precision)
Wraps the components of this RooSimultaneous in RooBinSamplingPdfs.
const TNamed * _plotCoefNormRange
RooAbsGenContext * genContext(const RooArgSet &vars, const RooDataSet *prototype=nullptr, const RooArgSet *auxProto=nullptr, bool verbose=false) const override
Return specialized generator context for simultaneous p.d.f.s.
std::unique_ptr< RooArgSet > _indexCatSet
! Index category wrapped in a RooArgSet if needed internally
bool addPdf(const RooAbsPdf &pdf, const char *catLabel)
Associate given PDF with index category state label 'catLabel'.
RooSetProxy _plotCoefNormSet
const RooAbsCategoryLValue & indexCat() const
friend class RooSimSplitGenContext
virtual RooDataHist * fillDataHist(RooDataHist *hist, const RooArgSet *nset, double scaleFactor, bool correctForBinVolume=false, bool showProgress=false) const
The RooStringView is a wrapper around a C-style string that can also be constructed from a std::strin...
const char * c_str() const
Joins several RooAbsCategoryLValue objects into a single category.
bool setLabel(const char *label, bool printError=true) override
Set the value of the super category by specifying the state name.
TObject * FindObject(const char *name) const override
Find an object in this list using its name.
Definition TList.cxx:576
void Add(TObject *obj) override
Definition TList.h:81
void Delete(Option_t *option="") override
Remove all objects from the list AND delete all heap based objects.
Definition TList.cxx:468
const char * GetName() const override
Returns name of object.
Definition TNamed.h:47
Mother of all ROOT objects.
Definition TObject.h:41
virtual Int_t IndexOf(const TObject *obj) const
Return index of object in collection.
Basic string class.
Definition TString.h:139
TString & Append(const char *cs)
Definition TString.h:572
RooCmdArg ProjWData(const RooAbsData &projData, bool binData=false)
RooCmdArg Project(const RooArgSet &projSet)
RooCmdArg Normalization(double scaleFactor)
std::vector< std::string > Split(std::string_view str, std::string_view delims, bool skipEmpty=false)
Splits a string at each character in delims.
The namespace RooFit contains mostly switches that change the behaviour of functions of PDFs (or othe...
Definition JSONIO.h:26
OwningPtr< T > makeOwningPtr(std::unique_ptr< T > &&ptr)
Internal helper to turn a std::unique_ptr<T> into an OwningPtr.
Definition Config.h:40
T * OwningPtr
An alias for raw pointers for indicating that the return type of a RooFit function is an owning point...
Definition Config.h:35
std::unique_ptr< T > cloneTreeWithSameParameters(T const &arg, RooArgSet const *observables=nullptr)
Clone RooAbsArg object and reattach to original parameters.
std::string getRangeNameForSimComponent(std::string const &rangeName, bool splitRange, std::string const &catName)
Internal struct used for initialization.
std::vector< RooAbsPdf const * > finalPdfs
std::vector< std::string > finalCatLabels
void addPdf(const RooAbsPdf &pdf, std::string const &catLabel)
static uint64_t sum(uint64_t i)
Definition Factory.cxx:2345