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root/cvsroot/UserCode/MitEdm/Producers/src/ProducerConversions.cc
Revision: 1.23
Committed: Mon Jan 18 14:41:33 2010 UTC (15 years, 3 months ago) by bendavid
Content type: text/plain
Branch: MAIN
CVS Tags: Mit_014a, Mit_014, Mit_014pre3, Mit_014pre2, Mit_014pre1, Mit_013d, Mit_013c, Mit_013b, Mit_013a, Mit_013, Mit_013pre1, Mit_012i
Changes since 1.22: +37 -6 lines
Log Message:
Fix Track Paramater phi-related bugs and add consistent propagation to origin

File Contents

# User Rev Content
1 bendavid 1.23 // $Id: ProducerConversions.cc,v 1.22 2009/12/15 23:27:34 bendavid Exp $
2 bendavid 1.1
3 loizides 1.5 #include "MitEdm/Producers/interface/ProducerConversions.h"
4 bendavid 1.1 #include "DataFormats/Common/interface/Handle.h"
5     #include "DataFormats/TrackReco/interface/Track.h"
6     #include "DataFormats/TrackReco/interface/TrackFwd.h"
7 bendavid 1.6 #include "DataFormats/VertexReco/interface/Vertex.h"
8     #include "DataFormats/VertexReco/interface/VertexFwd.h"
9 bendavid 1.18 #include "MagneticField/Engine/interface/MagneticField.h"
10     #include "MagneticField/Records/interface/IdealMagneticFieldRecord.h"
11 bendavid 1.19 #include "TrackingTools/TrajectoryState/interface/TrajectoryStateTransform.h"
12     #include "TrackingTools/PatternTools/interface/ClosestApproachInRPhi.h"
13 bendavid 1.7 #include "MitEdm/Producers/interface/HitDropperRecord.h"
14     #include "MitEdm/Producers/interface/HitDropper.h"
15 bendavid 1.1 #include "MitEdm/DataFormats/interface/Types.h"
16 loizides 1.5 #include "MitEdm/DataFormats/interface/Collections.h"
17 bendavid 1.1 #include "MitEdm/DataFormats/interface/DecayPart.h"
18     #include "MitEdm/DataFormats/interface/StablePart.h"
19 bendavid 1.6 #include "MitEdm/DataFormats/interface/StableData.h"
20 bendavid 1.1 #include "MitEdm/VertexFitInterface/interface/MvfInterface.h"
21 bendavid 1.23 #include "MitEdm/VertexFitInterface/interface/TrackParameters.h"
22 bendavid 1.20 #include <TMath.h>
23 bendavid 1.1
24     using namespace std;
25     using namespace edm;
26     using namespace reco;
27     using namespace mitedm;
28     using namespace mithep;
29    
30     //--------------------------------------------------------------------------------------------------
31     ProducerConversions::ProducerConversions(const ParameterSet& cfg) :
32 paus 1.11 BaseCandProducer (cfg),
33     iStables1_ (cfg.getUntrackedParameter<string>("iStables1","")),
34     iStables2_ (cfg.getUntrackedParameter<string>("iStables2","")),
35     iPVertexes_ (cfg.getUntrackedParameter<string>("iPVertexes","offlinePrimaryVerticesWithBS")),
36     usePVertex_ (cfg.getUntrackedParameter<bool> ("usePVertex",true)),
37     convConstraint_ (cfg.getUntrackedParameter<bool> ("convConstraint",false)),
38     convConstraint3D_(cfg.getUntrackedParameter<bool> ("convConstraint3D",true)),
39 bendavid 1.15 rhoMin_ (cfg.getUntrackedParameter<double>("rhoMin",0.0)),
40 bendavid 1.23 useRhoMin_ (cfg.getUntrackedParameter<bool> ("useRhoMin",true)),
41 bendavid 1.20 useHitDropper_ (cfg.getUntrackedParameter<bool> ("useHitDropper",true)),
42 bendavid 1.21 applyChargeConstraint_(cfg.getUntrackedParameter<bool> ("applyChargeConstraint",false))
43 bendavid 1.1 {
44 loizides 1.5 // Constructor.
45    
46 bendavid 1.1 produces<DecayPartCol>();
47     }
48    
49     //--------------------------------------------------------------------------------------------------
50     ProducerConversions::~ProducerConversions()
51     {
52 loizides 1.5 // Destructor.
53 bendavid 1.1 }
54    
55     //--------------------------------------------------------------------------------------------------
56     void ProducerConversions::produce(Event &evt, const EventSetup &setup)
57     {
58 loizides 1.5 // Produce our DecayPartCol.
59    
60 bendavid 1.1 // First input collection
61     Handle<StablePartCol> hStables1;
62 bendavid 1.9 if (!GetProduct(iStables1_, hStables1, evt)) {
63     printf("Stable collection 1 not found in ProducerConversions\n");
64 bendavid 1.1 return;
65 bendavid 1.9 }
66 bendavid 1.1 const StablePartCol *pS1 = hStables1.product();
67     // Second input collection
68     Handle<StablePartCol> hStables2;
69 bendavid 1.9 if (!GetProduct(iStables2_, hStables2, evt)) {
70     printf("Stable collection 2 not found in ProducerConversions\n");
71 bendavid 1.1 return;
72 bendavid 1.9 }
73 bendavid 1.1 const StablePartCol *pS2 = hStables2.product();
74    
75 bendavid 1.6 const reco::Vertex *vertex = 0;
76     mitedm::VertexPtr vPtr;
77     if (usePVertex_) {
78     // Primary vertex collection
79     Handle<reco::VertexCollection> hVertexes;
80     if (!GetProduct(iPVertexes_, hVertexes, evt))
81     return;
82     const reco::VertexCollection *pV = hVertexes.product();
83    
84     //Choose the primary vertex with the largest number of tracks
85     UInt_t maxTracks=0;
86     for (UInt_t i=0; i<pV->size(); ++i) {
87     const reco::Vertex &v = pV->at(i);
88     UInt_t nTracks = v.tracksSize();
89     if (nTracks >= maxTracks) {
90     maxTracks = nTracks;
91     vertex = &v;
92     vPtr = mitedm::VertexPtr(hVertexes,i);
93     }
94     }
95     }
96 bendavid 1.7
97 paus 1.11 // Get hit dropper
98 bendavid 1.7 ESHandle<HitDropper> hDropper;
99     setup.get<HitDropperRecord>().get("HitDropper",hDropper);
100     const HitDropper *dropper = hDropper.product();
101 bendavid 1.6
102 bendavid 1.18 //Get Magnetic Field from event setup, taking value at (0,0,0)
103     edm::ESHandle<MagneticField> magneticField;
104     setup.get<IdealMagneticFieldRecord>().get(magneticField);
105     const double bfield = magneticField->inTesla(GlobalPoint(0.,0.,0.)).z();
106    
107 bendavid 1.23 edm::ESHandle<TransientTrackBuilder> hTransientTrackBuilder;
108     setup.get<TransientTrackRecord>().get("TransientTrackBuilder",hTransientTrackBuilder);
109     const TransientTrackBuilder *transientTrackBuilder = hTransientTrackBuilder.product();
110    
111     //construct intermediate collection of TrackParameters in mvf format for vertex fit
112     std::vector<TrackParameters> trkPars1;
113     for (UInt_t i = 0; i<pS1->size(); ++i) {
114     const reco::Track *t = pS1->at(i).track();
115     const reco::TransientTrack ttrk = transientTrackBuilder->build(t);
116     TrackParameters cmsTrk(ttrk);
117     TrackParameters mvfTrk = cmsTrk.mvfTrack();
118     trkPars1.push_back(mvfTrk);
119     }
120    
121     std::vector<TrackParameters> trkPars2;
122     if (iStables1_ == iStables2_)
123     trkPars2 = trkPars1;
124     else for (UInt_t i = 0; i<pS2->size(); ++i) {
125     const reco::Track *t = pS2->at(i).track();
126     const reco::TransientTrack ttrk = transientTrackBuilder->build(t);
127     TrackParameters cmsTrk(ttrk);
128     TrackParameters mvfTrk = cmsTrk.mvfTrack();
129     trkPars2.push_back(mvfTrk);
130     }
131    
132    
133 bendavid 1.1 // Create the output collection
134     auto_ptr<DecayPartCol> pD(new DecayPartCol());
135 bendavid 1.6
136 bendavid 1.19 ClosestApproachInRPhi helixIntersector;
137    
138 bendavid 1.20 int nFits = 0;
139    
140     //printf("S1 size = %i\n", pS1->size());
141    
142 bendavid 1.1 // Simple double loop
143     for (UInt_t i = 0; i<pS1->size(); ++i) {
144     const StablePart &s1 = pS1->at(i);
145    
146 bendavid 1.20 const reco::Track * t1 = s1.track();
147 bendavid 1.23 const TrackParameters &trkPar1 = trkPars1.at(i);
148    
149 bendavid 1.1 UInt_t j;
150     if (iStables1_ == iStables2_)
151     j = i+1;
152     else
153     j = 0;
154    
155 bendavid 1.19 TrajectoryStateTransform tsTransform;
156    
157     FreeTrajectoryState initialState1 = tsTransform.initialFreeState(*s1.track(),&*magneticField);
158    
159 bendavid 1.1 for (; j<pS2->size(); ++j) {
160     const StablePart &s2 = pS2->at(j);
161    
162 bendavid 1.21 //Do fast helix fit to check if there's any hope
163 bendavid 1.13 const reco::Track * t2 = s2.track();
164 bendavid 1.23 const TrackParameters &trkPar2 = trkPars2.at(j);
165 bendavid 1.13
166     int trackCharge = t1->charge() + t2->charge();
167 bendavid 1.19
168 bendavid 1.13 double dR0 = 0.0;
169    
170 bendavid 1.20 if (!applyChargeConstraint_ || trackCharge==0) {
171 bendavid 1.19 FreeTrajectoryState initialState2 = tsTransform.initialFreeState(*s2.track(),&*magneticField);
172     helixIntersector.calculate(initialState1, initialState2);
173     if (helixIntersector.status())
174     dR0 = helixIntersector.crossingPoint().perp();
175 bendavid 1.3 }
176 bendavid 1.13
177     int fitStatus = 0;
178     MultiVertexFitterD fit;
179 bendavid 1.23 if ( (!applyChargeConstraint_ || trackCharge==0) && (!useRhoMin_ || dR0 > rhoMin_) ) {
180 bendavid 1.13
181     // Vertex fit now, possibly with conversion constraint
182 bendavid 1.20 nFits++;
183 bendavid 1.13
184 bendavid 1.18 fit.init(bfield); // Reset to the magnetic field from the event setup
185 bendavid 1.23
186     fit.addTrack(*trkPar1.pars(),*trkPar1.cMat(),1,s1.mass(),MultiVertexFitterD::VERTEX_1);
187     fit.addTrack(*trkPar2.pars(),*trkPar2.cMat(),2,s2.mass(),MultiVertexFitterD::VERTEX_1);
188 bendavid 1.13 if (convConstraint3D_) {
189     fit.conversion_3d(MultiVertexFitterD::VERTEX_1);
190     //printf("applying 3d conversion constraint\n");
191     }
192     else if (convConstraint_) {
193     fit.conversion_2d(MultiVertexFitterD::VERTEX_1);
194     //printf("applying 2d conversion constraint\n");
195     }
196     //initialize primary vertex parameters in the fitter
197     if (usePVertex_) {
198     float vErr[3][3];
199     for (UInt_t vi=0; vi<3; ++vi)
200     for (UInt_t vj=0; vj<3; ++vj)
201     vErr[vi][vj] = vertex->covariance(vi,vj);
202    
203     fit.setPrimaryVertex(vertex->x(),vertex->y(),vertex->z());
204     fit.setPrimaryVertexError(vErr);
205     }
206    
207     fitStatus = fit.fit();
208 bendavid 1.23
209 bendavid 1.6 }
210    
211     if (fitStatus) {
212 bendavid 1.3 DecayPart *d = new DecayPart(oPid_,DecayPart::Fast);
213 bendavid 1.1
214 bendavid 1.3 // Update temporarily some of the quantities (prob, chi2, nDoF, mass, lxy, pt, fourMomentum)
215     d->setProb(fit.prob());
216     d->setChi2(fit.chisq());
217     d->setNdof(fit.ndof());
218    
219     FourVector p4Fitted(0.,0.,0.,0.);
220     p4Fitted += fit.getTrackP4(1);
221     p4Fitted += fit.getTrackP4(2);
222     d->setFourMomentum(p4Fitted);
223 paus 1.12 d->setPosition(fit.getVertex (MultiVertexFitterD::VERTEX_1));
224     d->setError (fit.getErrorMatrix(MultiVertexFitterD::VERTEX_1));
225 bendavid 1.3 float mass, massErr;
226     const int trksIds[2] = { 1, 2 };
227     mass = fit.getMass(2,trksIds,massErr);
228    
229 bendavid 1.6 ThreeVector p3Fitted(p4Fitted.px(), p4Fitted.py(), p4Fitted.pz());
230    
231 paus 1.11 // Get decay length in xy plane
232 bendavid 1.6 float dl, dlErr;
233 paus 1.12 dl = fit.getDecayLength(MultiVertexFitterD::PRIMARY_VERTEX, MultiVertexFitterD::VERTEX_1,
234 bendavid 1.6 p3Fitted, dlErr);
235    
236 paus 1.11 // Get Z decay length
237 bendavid 1.6 float dlz, dlzErr;
238 paus 1.12 dlz = fit.getZDecayLength(MultiVertexFitterD::PRIMARY_VERTEX, MultiVertexFitterD::VERTEX_1,
239 bendavid 1.6 p3Fitted, dlzErr);
240    
241 paus 1.11 // Get impact parameter
242 bendavid 1.6 float dxy, dxyErr;
243 paus 1.12 dxy = fit.getImpactPar(MultiVertexFitterD::PRIMARY_VERTEX, MultiVertexFitterD::VERTEX_1,
244 bendavid 1.6 p3Fitted, dxyErr);
245 bendavid 1.1
246 bendavid 1.8 BasePartPtr ptr1(hStables1,i);
247     BasePartPtr ptr2(hStables2,j);
248    
249     StableData c1(fit.getTrackP4(1).px(),fit.getTrackP4(1).py(), fit.getTrackP4(1).pz(), ptr1);
250     StableData c2(fit.getTrackP4(2).px(),fit.getTrackP4(2).py(), fit.getTrackP4(2).pz(), ptr2);
251    
252 paus 1.12 const ThreeVector vtxPos = fit.getVertex(MultiVertexFitterD::VERTEX_1);
253 loizides 1.14 const ThreeVector trkMom1(fit.getTrackP4(1).px(),
254     fit.getTrackP4(1).py(),
255     fit.getTrackP4(1).pz());
256     const ThreeVector trkMom2(fit.getTrackP4(2).px(),
257     fit.getTrackP4(2).py(),
258     fit.getTrackP4(2).pz());
259 bendavid 1.8
260 paus 1.11 // Build corrected HitPattern for StableData, removing hits before the fit vertex
261 bendavid 1.15 if (useHitDropper_) {
262 bendavid 1.17 reco::HitPattern hits1 = dropper->CorrectedHitsAOD(s1.track(), vtxPos, trkMom1, dlErr, dlzErr);
263     reco::HitPattern hits2 = dropper->CorrectedHitsAOD(s2.track(), vtxPos, trkMom2, dlErr, dlzErr);
264    
265 bendavid 1.15 c1.SetHits(hits1);
266     c2.SetHits(hits2);
267     c1.SetHitsFilled();
268     c2.SetHitsFilled();
269 bendavid 1.22
270     reco::HitPattern sharedHits = dropper->SharedHits(s1.track(),s2.track());
271     d->setSharedHits(sharedHits);
272 bendavid 1.15 }
273 bendavid 1.8
274     d->addStableChild(c1);
275     d->addStableChild(c2);
276    
277    
278 bendavid 1.6 d->setFittedMass (mass);
279     d->setFittedMassError(massErr);
280    
281     d->setLxy(dl);
282     d->setLxyError(dlErr);
283     d->setLxyToPv(dl);
284     d->setLxyToPvError(dlErr);
285    
286     d->setLz(dlz);
287     d->setLzError(dlzErr);
288     d->setLzToPv(dlz);
289     d->setLzToPvError(dlzErr);
290    
291     d->setDxy(dxy);
292     d->setDxyError(dxyErr);
293     d->setDxyToPv(dxy);
294     d->setDxyToPvError(dxyErr);
295    
296     if (usePVertex_)
297     d->setPrimaryVertex(vPtr);
298    
299     // Put the result into our collection
300 bendavid 1.13 pD->push_back(*d);
301 loizides 1.5
302 bendavid 1.1 delete d;
303     }
304     }
305     }
306 bendavid 1.20
307     //printf("nConversionFits = %i\n",nFits);
308 bendavid 1.1
309     // Write the collection even if it is empty
310 loizides 1.5 if (0) {
311     cout << " ProducerConversions::produce - " << pD->size() << " entries collection created -"
312     << " (Pid: " << oPid_ << ")\n";
313     }
314 bendavid 1.1 evt.put(pD);
315     }
316    
317     //define this as a plug-in
318     DEFINE_FWK_MODULE(ProducerConversions);