Belle II Software light-2607-kasei
MassPointingVertexFitKFit Class Reference

MassPointingVertexFitKFit is a derived class from KFitBase It performs a kinematical fit with three constraints: the invariant mass is constrained to its PDG value, the tracks are forced to a common vertex, and the momentum vector is forced to point to an externally provided space point. More...

#include <MassPointingVertexFitKFit.h>

Inheritance diagram for MassPointingVertexFitKFit:
Collaboration diagram for MassPointingVertexFitKFit:

Public Member Functions

 MassPointingVertexFitKFit (void)
 Construct an object with no argument.
 
 ~MassPointingVertexFitKFit (void) override
 Destruct the object.
 
enum KFitError::ECode setInitialVertex (const HepPoint3D &v)
 Set an initial vertex point for the mass-vertex-pointing constraint fit.
 
enum KFitError::ECode setInvariantMass (const double m)
 Set an invariant mass for the mass-vertex-pointing constraint fit.
 
enum KFitError::ECode setProductionVertex (const HepPoint3D &v)
 Set the production vertex of the particle.
 
enum KFitError::ECode fixMass (void)
 Tell the object to fix the last added track property at the invariant mass.
 
enum KFitError::ECode unfixMass (void)
 Tell the object to unfix the last added track property at the invariant mass.
 
const HepPoint3D getVertex (const int flag=KFitConst::kAfterFit) const
 Get a vertex position.
 
const CLHEP::HepSymMatrix getVertexError (void) const
 Get a fitted vertex error matrix.
 
double getInvariantMass (void) const
 Get an invariant mass.
 
double getCHIsq (void) const override
 Get a chi-square of the fit.
 
const CLHEP::HepMatrix getTrackVertexError (const int id) const
 Get a vertex error matrix of the track.
 
double getTrackCHIsq (const int id) const override
 Get a chi-square of the track.
 
const CLHEP::HepMatrix getCorrelation (const int id1, const int id2, const int flag=KFitConst::kAfterFit) const override
 Get a correlation matrix between two tracks.
 
enum KFitError::ECode doFit (void)
 Perform a mass-vertex-pointing constraint fit.
 
enum KFitError::ECode updateMother (Particle *mother)
 Update mother particle.
 
enum KFitError::ECode addTrack (const KFitTrack &kp)
 Add a track to the fitter object.
 
enum KFitError::ECode addTrack (const CLHEP::HepLorentzVector &p, const HepPoint3D &x, const CLHEP::HepSymMatrix &e, const double q)
 Add a track to the fitter object with specifying its momentum, position, error matrix, and charge.
 
enum KFitError::ECode addParticle (const Particle *particle)
 Add a particle to the fitter.
 
virtual enum KFitError::ECode setCorrelation (const CLHEP::HepMatrix &c)
 Set a correlation matrix.
 
virtual enum KFitError::ECode setZeroCorrelation (void)
 Indicate no correlation between tracks.
 
enum KFitError::ECode setMagneticField (const double mf)
 Change a magnetic field from the default value KFitConst::kDefaultMagneticField.
 
enum KFitError::ECode getErrorCode (void) const
 Get a code of the last error.
 
int getTrackCount (void) const
 Get the number of added tracks.
 
virtual int getNDF (void) const
 Get an NDF of the fit.
 
double getMagneticField (void) const
 Get a magnetic field.
 
const CLHEP::HepLorentzVector getTrackMomentum (const int id) const
 Get a Lorentz vector of the track.
 
const HepPoint3D getTrackPosition (const int id) const
 Get a position of the track.
 
const CLHEP::HepSymMatrix getTrackError (const int id) const
 Get an error matrix of the track.
 
const KFitTrack getTrack (const int id) const
 Get a specified track object.
 
bool isFitted (void) const
 Return false if fit is not performed yet or performed fit is failed; otherwise true.
 

Protected Member Functions

enum KFitError::ECode doFit1 (void)
 Perform a fit (used in MassFitKFit::doFit()).
 
enum KFitError::ECode doFit2 (void)
 Perform a fit (used in VertexFitKFit::doFit() and MassVertexFitKFit::doFit()).
 
bool isTrackIDInRange (const int id) const
 Check if the id is in the range.
 

Static Protected Member Functions

static CLHEP::HepSymMatrix makeError1 (const CLHEP::HepLorentzVector &p, const CLHEP::HepMatrix &e)
 Rebuild an error matrix from a Lorentz vector and an error matrix.
 
static CLHEP::HepMatrix makeError1 (const CLHEP::HepLorentzVector &p1, const CLHEP::HepLorentzVector &p2, const CLHEP::HepMatrix &e)
 Rebuild an error matrix from a pair of Lorentz vectors and an error matrix.
 
static CLHEP::HepMatrix makeError2 (const CLHEP::HepLorentzVector &p, const CLHEP::HepMatrix &e)
 Rebuild an error matrix from a Lorentz vector and an error matrix.
 
static CLHEP::HepSymMatrix makeError3 (const CLHEP::HepLorentzVector &p, const CLHEP::HepMatrix &e, const bool is_fix_mass)
 Rebuild an error matrix from a Lorentz vector and an error matrix.
 
static CLHEP::HepMatrix makeError3 (const CLHEP::HepLorentzVector &p1, const CLHEP::HepLorentzVector &p2, const CLHEP::HepMatrix &e, const bool is_fix_mass1, const bool is_fix_mass2)
 Rebuild an error matrix from a pair of Lorentz vectors and an error matrix.
 
static CLHEP::HepMatrix makeError4 (const CLHEP::HepLorentzVector &p, const CLHEP::HepMatrix &e)
 Rebuild an error matrix from a Lorentz vector and an error matrix.
 
static bool isNonZeroEnergy (const CLHEP::HepLorentzVector &p)
 Check if the energy is non-zero.
 

Protected Attributes

enum KFitError::ECode m_ErrorCode
 Error code.
 
bool m_FlagFitted
 Flag to indicate if the fit is performed and succeeded.
 
std::vector< KFitTrackm_Tracks
 Container of input tracks.
 
std::vector< CLHEP::HepMatrix > m_BeforeCorrelation
 Container of input correlation matrices.
 
CLHEP::HepSymMatrix m_V_al_0
 See J.Tanaka Ph.D (2001) p137 for definition.
 
CLHEP::HepMatrix m_al_0
 See J.Tanaka Ph.D (2001) p136 for definition.
 
CLHEP::HepMatrix m_al_1
 See J.Tanaka Ph.D (2001) p136 for definition.
 
CLHEP::HepMatrix m_al_a
 See J.Tanaka Ph.D (2001) p137 for definition.
 
CLHEP::HepMatrix m_property
 Container of charges and masses.
 
CLHEP::HepMatrix m_D
 See J.Tanaka Ph.D (2001) p137 for definition.
 
CLHEP::HepMatrix m_d
 See J.Tanaka Ph.D (2001) p137 for definition.
 
CLHEP::HepMatrix m_V_D
 See J.Tanaka Ph.D (2001) p138 for definition.
 
CLHEP::HepMatrix m_V_al_1
 See J.Tanaka Ph.D (2001) p138 for definition.
 
CLHEP::HepMatrix m_lam
 See J.Tanaka Ph.D (2001) p137 for definition.
 
CLHEP::HepMatrix m_E
 See J.Tanaka Ph.D (2001) p137 for definition.
 
CLHEP::HepMatrix m_V_E
 See J.Tanaka Ph.D (2001) p138 for definition.
 
CLHEP::HepMatrix m_lam0
 See J.Tanaka Ph.D (2001) p138 for definition.
 
CLHEP::HepMatrix m_v
 See J.Tanaka Ph.D (2001) p137 for definition.
 
CLHEP::HepMatrix m_v_a
 See J.Tanaka Ph.D (2001) p137 for definition.
 
CLHEP::HepMatrix m_V_Dt
 See J.Tanaka Ph.D (2001) p138 for definition.
 
CLHEP::HepMatrix m_Cov_v_al_1
 See J.Tanaka Ph.D (2001) p137 for definition.
 
int m_NDF
 NDF of the fit.
 
double m_CHIsq
 chi-square of the fit.
 
int m_TrackCount
 Number of tracks.
 
int m_NecessaryTrackCount
 Number needed tracks to perform fit.
 
bool m_FlagCorrelation
 Flag whether a correlation among tracks exists.
 
bool m_FlagOverIteration
 Flag whether the iteration count exceeds the limit.
 
double m_MagneticField
 Magnetic field.
 

Private Member Functions

enum KFitError::ECode prepareInputMatrix (void) override
 Build grand matrices for minimum search from input-track properties.
 
enum KFitError::ECode prepareInputSubMatrix (void) override
 Build sub-matrices for minimum search from input-track properties.
 
enum KFitError::ECode prepareCorrelation (void) override
 Build a grand correlation matrix from input-track properties.
 
enum KFitError::ECode prepareOutputMatrix (void) override
 Build an output error matrix.
 
enum KFitError::ECode makeCoreMatrix (void) override
 Build matrices using the kinematical constraint.
 
enum KFitError::ECode calculateNDF (void) override
 Calculate an NDF of the fit.
 

Private Attributes

HepPoint3D m_BeforeVertex
 Vertex position before the fit.
 
HepPoint3D m_AfterVertex
 Vertex position after the fit.
 
CLHEP::HepSymMatrix m_AfterVertexError
 Vertex error matrix after the fit.
 
std::vector< CLHEP::HepMatrix > m_AfterTrackVertexError
 array of vertex error matrices after the fit.
 
HepPoint3D m_ProductionVertex
 Production vertex position.
 
double m_InvariantMass
 Invariant mass.
 
std::vector< int > m_IsFixMass
 Array of flags whether the track property is fixed at the mass.
 

Detailed Description

MassPointingVertexFitKFit is a derived class from KFitBase It performs a kinematical fit with three constraints: the invariant mass is constrained to its PDG value, the tracks are forced to a common vertex, and the momentum vector is forced to point to an externally provided space point.

Definition at line 30 of file MassPointingVertexFitKFit.h.

Constructor & Destructor Documentation

◆ MassPointingVertexFitKFit()

Construct an object with no argument.

Definition at line 23 of file MassPointingVertexFitKFit.cc.

23 :
24 m_BeforeVertex(HepPoint3D(0., 0., 0.)),
25 m_AfterVertexError(HepSymMatrix(3, 0)),
26 m_ProductionVertex(HepPoint3D(0., 0., 0.))
27{
28 m_FlagFitted = false;
30 m_V_E = HepMatrix(3, 3, 0);
31 m_v = HepMatrix(3, 1, 0);
32 m_v_a = HepMatrix(3, 1, 0);
33 m_InvariantMass = -1.0;
34}
int m_NecessaryTrackCount
Number needed tracks to perform fit.
Definition KFitBase.h:303
CLHEP::HepMatrix m_v_a
See J.Tanaka Ph.D (2001) p137 for definition.
Definition KFitBase.h:287
CLHEP::HepMatrix m_V_E
See J.Tanaka Ph.D (2001) p138 for definition.
Definition KFitBase.h:281
bool m_FlagFitted
Flag to indicate if the fit is performed and succeeded.
Definition KFitBase.h:245
CLHEP::HepMatrix m_v
See J.Tanaka Ph.D (2001) p137 for definition.
Definition KFitBase.h:285
HepPoint3D m_ProductionVertex
Production vertex position.
CLHEP::HepSymMatrix m_AfterVertexError
Vertex error matrix after the fit.
HepPoint3D m_BeforeVertex
Vertex position before the fit.

Member Function Documentation

◆ addParticle()

enum KFitError::ECode addParticle ( const Particle * particle)
inherited

Add a particle to the fitter.

The function gets track parameters from the Particle dataobject and calls addTrack().

Parameters
[in]particleParticle.
Returns
error code (zero if success)

Definition at line 59 of file KFitBase.cc.

60{
61 return addTrack(
62 ROOTToCLHEP::getHepLorentzVector(particle->get4Vector()),
63 ROOTToCLHEP::getPoint3D(particle->getVertex()),
64 ROOTToCLHEP::getHepSymMatrix(particle->getMomentumVertexErrorMatrix()),
65 particle->getCharge());
66}
ROOT::Math::XYZVector getVertex() const
Returns vertex position (POCA for charged, IP for neutral FS particles)
Definition Particle.h:651
double getCharge(void) const
Returns particle charge.
Definition Particle.cc:653
ROOT::Math::PxPyPzEVector get4Vector() const
Returns Lorentz vector.
Definition Particle.h:567
TMatrixFSym getMomentumVertexErrorMatrix() const
Returns 7x7 error matrix.
Definition Particle.cc:451
enum KFitError::ECode addTrack(const KFitTrack &kp)
Add a track to the fitter object.
Definition KFitBase.cc:38

◆ addTrack() [1/2]

enum KFitError::ECode addTrack ( const CLHEP::HepLorentzVector & p,
const HepPoint3D & x,
const CLHEP::HepSymMatrix & e,
const double q )
inherited

Add a track to the fitter object with specifying its momentum, position, error matrix, and charge.

This function internally calls addTrack(const KFitTrack &kp).

Parameters
pLorentz vector of the track
xposition of the track
e(7x7) error matrix of the track
qcharge of the track
Returns
error code (zero if success)

Definition at line 47 of file KFitBase.cc.

47 {
48 if (e.num_row() != KFitConst::kNumber7)
49 {
51 KFitError::displayError(__FILE__, __LINE__, __func__, m_ErrorCode);
52 return m_ErrorCode;
53 }
54
55 return this->addTrack(KFitTrack(p, x, e, q));
56}
enum KFitError::ECode m_ErrorCode
Error code.
Definition KFitBase.h:243
static void displayError(const char *file, const int line, const char *func, const enum ECode code)
Display a description of error and its location.
Definition KFitError.h:71
@ kBadMatrixSize
Wrong correlation matrix size.
Definition KFitError.h:48
static const int kNumber7
Constant 7 to check matrix size (internal use)
Definition KFitConst.h:30

◆ addTrack() [2/2]

enum KFitError::ECode addTrack ( const KFitTrack & kp)
inherited

Add a track to the fitter object.

Parameters
kpobject of the track
Returns
error code (zero if success)

Definition at line 38 of file KFitBase.cc.

38 {
39 m_Tracks.push_back(p);
40 m_TrackCount = m_Tracks.size();
41
43}
std::vector< KFitTrack > m_Tracks
Container of input tracks.
Definition KFitBase.h:249
int m_TrackCount
Number of tracks.
Definition KFitBase.h:301

◆ calculateNDF()

enum KFitError::ECode calculateNDF ( void )
overrideprivatevirtual

Calculate an NDF of the fit.

Returns
error code (zero if success)

Implements KFitBase.

Definition at line 587 of file MassPointingVertexFitKFit.cc.

587 {
588 m_NDF = 2 * m_TrackCount - 3 + 3;
589
591}
int m_NDF
NDF of the fit.
Definition KFitBase.h:295

◆ doFit()

enum KFitError::ECode doFit ( void )

Perform a mass-vertex-pointing constraint fit.

Returns
error code (zero if success)

Definition at line 192 of file MassPointingVertexFitKFit.cc.

192 {
193 return KFitBase::doFit2();
194}
enum KFitError::ECode doFit2(void)
Perform a fit (used in VertexFitKFit::doFit() and MassVertexFitKFit::doFit()).
Definition KFitBase.cc:580

◆ doFit1()

enum KFitError::ECode doFit1 ( void )
protectedinherited

Perform a fit (used in MassFitKFit::doFit()).

Returns
error code (zero if success)

Definition at line 504 of file KFitBase.cc.

504 {
506
508 {
510 KFitError::displayError(__FILE__, __LINE__, __func__, m_ErrorCode);
511 return m_ErrorCode;
512 }
513
516
517
518 double chisq = 0;
519 double tmp_chisq = KFitConst::kInitialCHIsq;
520 int err_inverse = 0;
521
522 HepMatrix tmp_al_1(m_al_1);
523 HepMatrix tmp_V_al_1(m_V_al_1);
524
525 m_al_a = m_al_0;
526 HepMatrix tmp_al_a(m_al_a);
527
528
529 for (int i = 0; i < KFitConst::kMaxIterationCount; i++)
530 {
532
533 m_V_D = (m_V_al_0.similarity(m_D)).inverse(err_inverse);
534 if (err_inverse != 0) {
536 return m_ErrorCode;
537 }
538
539 m_lam = m_V_D * (m_D * (m_al_0 - m_al_1) + m_d);
540 chisq = ((m_lam.T()) * (m_D * (m_al_0 - m_al_1) + m_d))(1, 1);
541 m_al_1 = m_al_0 - m_V_al_0 * (m_D.T()) * m_lam;
542 m_V_al_1 = m_V_al_0 - m_V_al_0 * (m_D.T()) * m_V_D * m_D * m_V_al_0;
543
544 if (tmp_chisq <= chisq) {
545 if (i == 0) {
547 return m_ErrorCode;
548 } else {
549 chisq = tmp_chisq;
550 m_al_1 = tmp_al_1;
551 m_al_a = tmp_al_a;
552 m_V_al_1 = tmp_V_al_1;
553 break;
554 }
555 } else {
556 tmp_chisq = chisq;
557 tmp_al_a = tmp_al_1;
558 tmp_al_1 = m_al_1;
559 tmp_V_al_1 = m_V_al_1;
560 if (i == KFitConst::kMaxIterationCount - 1) {
561 m_al_a = tmp_al_1;
562 m_FlagOverIteration = true;
563 }
564 }
565 }
566
568
570
571 m_CHIsq = chisq;
572
573 m_FlagFitted = true;
574
576}
virtual enum KFitError::ECode prepareInputMatrix(void)=0
Build grand matrices for minimum search from input-track properties.
virtual enum KFitError::ECode prepareOutputMatrix(void)=0
Build an output error matrix.
CLHEP::HepMatrix m_al_1
See J.Tanaka Ph.D (2001) p136 for definition.
Definition KFitBase.h:259
CLHEP::HepMatrix m_lam
See J.Tanaka Ph.D (2001) p137 for definition.
Definition KFitBase.h:276
bool m_FlagOverIteration
Flag whether the iteration count exceeds the limit.
Definition KFitBase.h:308
CLHEP::HepMatrix m_V_al_1
See J.Tanaka Ph.D (2001) p138 for definition.
Definition KFitBase.h:274
CLHEP::HepMatrix m_d
See J.Tanaka Ph.D (2001) p137 for definition.
Definition KFitBase.h:268
CLHEP::HepMatrix m_al_a
See J.Tanaka Ph.D (2001) p137 for definition.
Definition KFitBase.h:261
CLHEP::HepMatrix m_D
See J.Tanaka Ph.D (2001) p137 for definition.
Definition KFitBase.h:266
CLHEP::HepMatrix m_V_D
See J.Tanaka Ph.D (2001) p138 for definition.
Definition KFitBase.h:271
CLHEP::HepSymMatrix m_V_al_0
See J.Tanaka Ph.D (2001) p137 for definition.
Definition KFitBase.h:255
virtual enum KFitError::ECode makeCoreMatrix(void)=0
Build matrices using the kinematical constraint.
double m_CHIsq
chi-square of the fit.
Definition KFitBase.h:297
virtual enum KFitError::ECode calculateNDF(void)=0
Calculate an NDF of the fit.
CLHEP::HepMatrix m_al_0
See J.Tanaka Ph.D (2001) p136 for definition.
Definition KFitBase.h:257
@ kCannotGetMatrixInverse
Cannot calculate matrix inverse (bad track property or internal error)
Definition KFitError.h:57
@ kBadInitialCHIsq
Bad initial chi-square (internal error)
Definition KFitError.h:52
@ kBadTrackSize
Track count too small to perform fit.
Definition KFitError.h:46
static constexpr double kInitialCHIsq
Initial chi-square value (internal use)
Definition KFitConst.h:46
static const int kMaxIterationCount
Maximum iteration step (internal use)
Definition KFitConst.h:43

◆ doFit2()

enum KFitError::ECode doFit2 ( void )
protectedinherited

Perform a fit (used in VertexFitKFit::doFit() and MassVertexFitKFit::doFit()).

Returns
error code (zero if success)

Definition at line 580 of file KFitBase.cc.

580 {
582
584 {
586 KFitError::displayError(__FILE__, __LINE__, __func__, m_ErrorCode);
587 return m_ErrorCode;
588 }
589
592
593
594 double chisq = 0;
595 double tmp2_chisq = KFitConst::kInitialCHIsq;
596 int err_inverse = 0;
597
598 m_al_a = m_al_0;
599 HepMatrix tmp_al_a(m_al_a);
600
601 HepMatrix tmp_D(m_D), tmp_E(m_E);
602 HepMatrix tmp_V_D(m_V_D), tmp_V_E(m_V_E);
603 HepMatrix tmp_lam0(m_lam0), tmp_v_a(m_v_a);
604
605 HepMatrix tmp2_D(m_D), tmp2_E(m_E);
606 HepMatrix tmp2_V_D(m_V_D), tmp2_V_E(m_V_E);
607 HepMatrix tmp2_lam0(m_lam0), tmp2_v_a(m_v_a), tmp2_v(m_v_a);
608
609
610 for (int j = 0; j < KFitConst::kMaxIterationCount; j++) // j'th loop start
611 {
612
613 double tmp_chisq = KFitConst::kInitialCHIsq;
614
615 for (int i = 0; i < KFitConst::kMaxIterationCount; i++) { // i'th loop start
616
619
620 m_V_D = (m_V_al_0.similarity(m_D)).inverse(err_inverse);
621 if (err_inverse) {
623 return m_ErrorCode;
624 }
625
626 m_V_E = ((m_E.T()) * m_V_D * m_E).inverse(err_inverse);
627 if (err_inverse) {
629 return m_ErrorCode;
630 }
631 m_lam0 = m_V_D * (m_D * (m_al_0 - m_al_1) + m_d);
632 chisq = ((m_lam0.T()) * (m_D * (m_al_0 - m_al_1) + m_E * (m_v - m_v_a) + m_d))(1, 1);
633 m_v_a = m_v_a - m_V_E * (m_E.T()) * m_lam0;
634
635 if (tmp_chisq <= chisq) {
636 if (i == 0) {
638 return m_ErrorCode;
639 } else {
640 chisq = tmp_chisq;
641 m_v_a = tmp_v_a;
642 m_V_E = tmp_V_E;
643 m_V_D = tmp_V_D;
644 m_lam0 = tmp_lam0;
645 m_E = tmp_E;
646 m_D = tmp_D;
647 break;
648 }
649 } else {
650 tmp_chisq = chisq;
651 tmp_v_a = m_v_a;
652 tmp_V_E = m_V_E;
653 tmp_V_D = m_V_D;
654 tmp_lam0 = m_lam0;
655 tmp_E = m_E;
656 tmp_D = m_D;
657 if (i == KFitConst::kMaxIterationCount - 1) {
658 m_FlagOverIteration = true;
659 }
660 }
661 } // i'th loop over
662
663
664 m_al_a = m_al_1;
665 m_lam = m_lam0 - m_V_D * m_E * m_V_E * (m_E.T()) * m_lam0;
666 m_al_1 = m_al_0 - m_V_al_0 * (m_D.T()) * m_lam;
667
668 if (j == 0) {
669
670 tmp2_chisq = chisq;
671 tmp2_v_a = m_v_a;
672 tmp2_v = m_v;
673 tmp2_V_E = m_V_E;
674 tmp2_V_D = m_V_D;
675 tmp2_lam0 = m_lam0;
676 tmp2_E = m_E;
677 tmp2_D = m_D;
678 tmp_al_a = m_al_a;
679
680 } else {
681
682 if (tmp2_chisq <= chisq) {
683 chisq = tmp2_chisq;
684 m_v_a = tmp2_v_a;
685 m_v = tmp2_v;
686 m_V_E = tmp2_V_E;
687 m_V_D = tmp2_V_D;
688 m_lam0 = tmp2_lam0;
689 m_E = tmp2_E;
690 m_D = tmp2_D;
691 m_al_a = tmp_al_a;
692 break;
693 } else {
694 tmp2_chisq = chisq;
695 tmp2_v_a = m_v_a;
696 tmp2_v = m_v;
697 tmp2_V_E = m_V_E;
698 tmp2_V_D = m_V_D;
699 tmp2_lam0 = m_lam0;
700 tmp2_E = m_E;
701 tmp2_D = m_D;
702 tmp_al_a = m_al_a;
703 if (j == KFitConst::kMaxIterationCount - 1) {
704 m_FlagOverIteration = true;
705 }
706 }
707 }
708 } // j'th loop over
709
710
712
713 m_lam = m_lam0 - m_V_D * m_E * m_V_E * (m_E.T()) * m_lam0;
714 m_al_1 = m_al_0 - m_V_al_0 * (m_D.T()) * m_lam;
715 m_V_Dt = m_V_D - m_V_D * m_E * m_V_E * (m_E.T()) * m_V_D;
716 m_V_al_1 = m_V_al_0 - m_V_al_0 * (m_D.T()) * m_V_Dt * m_D * m_V_al_0;
717 m_Cov_v_al_1 = -m_V_E * (m_E.T()) * m_V_D * m_D * m_V_al_0;
718
720
721 m_CHIsq = chisq;
722
723 m_FlagFitted = true;
724
726}
CLHEP::HepMatrix m_V_Dt
See J.Tanaka Ph.D (2001) p138 for definition.
Definition KFitBase.h:289
CLHEP::HepMatrix m_E
See J.Tanaka Ph.D (2001) p137 for definition.
Definition KFitBase.h:279
virtual enum KFitError::ECode prepareInputSubMatrix(void)=0
Build sub-matrices for minimum search from input-track properties.
CLHEP::HepMatrix m_lam0
See J.Tanaka Ph.D (2001) p138 for definition.
Definition KFitBase.h:283
CLHEP::HepMatrix m_Cov_v_al_1
See J.Tanaka Ph.D (2001) p137 for definition.
Definition KFitBase.h:291

◆ fixMass()

enum KFitError::ECode fixMass ( void )

Tell the object to fix the last added track property at the invariant mass.

Not intended for end user's use.

Returns
error code (zero if success)

Definition at line 65 of file MassPointingVertexFitKFit.cc.

65 {
66 m_IsFixMass.push_back(true);
67
69}
std::vector< int > m_IsFixMass
Array of flags whether the track property is fixed at the mass.

◆ getCHIsq()

double getCHIsq ( void ) const
overridevirtual

Get a chi-square of the fit.

Returns
chi-square of the fit

Reimplemented from KFitBase.

Definition at line 114 of file MassPointingVertexFitKFit.cc.

115{
116 return m_CHIsq;
117}

◆ getCorrelation()

const HepMatrix getCorrelation ( const int id1,
const int id2,
const int flag = KFitConst::kAfterFit ) const
overridevirtual

Get a correlation matrix between two tracks.

Parameters
id1first track id
id2second track id
flagKFitConst::kBeforeFit or KFitConst::kAfterFit
Returns
(7x7) correlation matrix

Reimplemented from KFitBase.

Definition at line 165 of file MassPointingVertexFitKFit.cc.

166{
167 if (flag == KFitConst::kAfterFit && !isFitted()) return HepMatrix(KFitConst::kNumber7, KFitConst::kNumber7, 0);
168 if (!isTrackIDInRange(id1)) return HepMatrix(KFitConst::kNumber7, KFitConst::kNumber7, 0);
169 if (!isTrackIDInRange(id2)) return HepMatrix(KFitConst::kNumber7, KFitConst::kNumber7, 0);
170
171 switch (flag) {
173 return KFitBase::getCorrelation(id1, id2, flag);
174
176 return makeError3(
177 this->getTrackMomentum(id1),
178 this->getTrackMomentum(id2),
179 m_V_al_1.sub(KFitConst::kNumber7 * id1 + 1, KFitConst::kNumber7 * (id1 + 1), KFitConst::kNumber7 * id2 + 1,
180 KFitConst::kNumber7 * (id2 + 1)),
181 m_IsFixMass[id1],
182 m_IsFixMass[id2]);
183
184 default:
185 KFitError::displayError(__FILE__, __LINE__, __func__, KFitError::kOutOfRange);
186 return HepMatrix(KFitConst::kNumber7, KFitConst::kNumber7, 0);
187 }
188}
static CLHEP::HepSymMatrix makeError3(const CLHEP::HepLorentzVector &p, const CLHEP::HepMatrix &e, const bool is_fix_mass)
Rebuild an error matrix from a Lorentz vector and an error matrix.
Definition KFitBase.cc:322
const CLHEP::HepLorentzVector getTrackMomentum(const int id) const
Get a Lorentz vector of the track.
Definition KFitBase.cc:154
bool isFitted(void) const
Return false if fit is not performed yet or performed fit is failed; otherwise true.
Definition KFitBase.cc:730
bool isTrackIDInRange(const int id) const
Check if the id is in the range.
Definition KFitBase.cc:741
virtual const CLHEP::HepMatrix getCorrelation(const int id1, const int id2, const int flag=KFitConst::kAfterFit) const
Get a correlation matrix between two tracks.
Definition KFitBase.cc:183
@ kOutOfRange
Specified track-id out of range.
Definition KFitError.h:41
static const int kAfterFit
Input parameter to specify after-fit when setting/getting a track attribute.
Definition KFitConst.h:35
static const int kBeforeFit
Input parameter to specify before-fit when setting/getting a track attribute.
Definition KFitConst.h:33

◆ getErrorCode()

enum KFitError::ECode getErrorCode ( void ) const
inherited

Get a code of the last error.

Returns
the last error code

Definition at line 101 of file KFitBase.cc.

101 {
102 return m_ErrorCode;
103}

◆ getInvariantMass()

double getInvariantMass ( void ) const

Get an invariant mass.

Returns
invariant mass

Definition at line 107 of file MassPointingVertexFitKFit.cc.

108{
109 return m_InvariantMass;
110}

◆ getMagneticField()

double getMagneticField ( void ) const
inherited

Get a magnetic field.

Returns
magnetic field

Definition at line 128 of file KFitBase.cc.

129{
130 return m_MagneticField;
131}
double m_MagneticField
Magnetic field.
Definition KFitBase.h:311

◆ getNDF()

int getNDF ( void ) const
virtualinherited

Get an NDF of the fit.

Returns
NDF of the fit

Definition at line 114 of file KFitBase.cc.

115{
116 return m_NDF;
117}

◆ getTrack()

const KFitTrack getTrack ( const int id) const
inherited

Get a specified track object.

Parameters
idtrack id
Returns
specified track object

Definition at line 175 of file KFitBase.cc.

176{
177 if (!isTrackIDInRange(id)) return KFitTrack();
178 return m_Tracks[id];
179}

◆ getTrackCHIsq()

double getTrackCHIsq ( const int id) const
overridevirtual

Get a chi-square of the track.

Parameters
idtrack id
Returns
chi-square of the track

Reimplemented from KFitBase.

Definition at line 130 of file MassPointingVertexFitKFit.cc.

131{
132 if (!isFitted()) return -1;
133 if (!isTrackIDInRange(id)) return -1;
134
135 if (m_IsFixMass[id]) {
136
137 HepMatrix da(m_Tracks[id].getFitParameter(KFitConst::kBeforeFit) - m_Tracks[id].getFitParameter(KFitConst::kAfterFit));
138 int err_inverse = 0;
139 const double chisq = (da.T() * (m_Tracks[id].getFitError(KFitConst::kBeforeFit).inverse(err_inverse)) * da)[0][0];
140
141 if (err_inverse) {
142 KFitError::displayError(__FILE__, __LINE__, __func__, KFitError::kCannotGetMatrixInverse);
143 return -1;
144 }
145
146 return chisq;
147
148 } else {
149
150 HepMatrix da(m_Tracks[id].getMomPos(KFitConst::kBeforeFit) - m_Tracks[id].getMomPos(KFitConst::kAfterFit));
151 int err_inverse = 0;
152 const double chisq = (da.T() * (m_Tracks[id].getError(KFitConst::kBeforeFit).inverse(err_inverse)) * da)[0][0];
153
154 if (err_inverse) {
155 KFitError::displayError(__FILE__, __LINE__, __func__, KFitError::kCannotGetMatrixInverse);
156 return -1;
157 }
158
159 return chisq;
160 }
161}

◆ getTrackCount()

int getTrackCount ( void ) const
inherited

Get the number of added tracks.

Returns
the number of added tracks

Definition at line 107 of file KFitBase.cc.

108{
109 return m_TrackCount;
110}

◆ getTrackError()

const HepSymMatrix getTrackError ( const int id) const
inherited

Get an error matrix of the track.

Parameters
idtrack id
Returns
error matrix of the track

Definition at line 168 of file KFitBase.cc.

169{
170 if (!isTrackIDInRange(id)) return HepSymMatrix(KFitConst::kNumber7, 0);
171 return m_Tracks[id].getError();
172}

◆ getTrackMomentum()

const HepLorentzVector getTrackMomentum ( const int id) const
inherited

Get a Lorentz vector of the track.

Parameters
idtrack id
Returns
Lorentz vector of the track

Definition at line 154 of file KFitBase.cc.

155{
156 if (!isTrackIDInRange(id)) return HepLorentzVector();
157 return m_Tracks[id].getMomentum();
158}

◆ getTrackPosition()

const HepPoint3D getTrackPosition ( const int id) const
inherited

Get a position of the track.

Parameters
idtrack id
Returns
position of the track

Definition at line 161 of file KFitBase.cc.

162{
163 if (!isTrackIDInRange(id)) return HepPoint3D();
164 return m_Tracks[id].getPosition();
165}

◆ getTrackVertexError()

const HepMatrix getTrackVertexError ( const int id) const

Get a vertex error matrix of the track.

Parameters
idtrack id
Returns
vertex error matrix

Definition at line 121 of file MassPointingVertexFitKFit.cc.

122{
123 if (!isTrackIDInRange(id)) return HepMatrix(3, KFitConst::kNumber7, 0);
124
125 return m_AfterTrackVertexError[id];
126}
std::vector< CLHEP::HepMatrix > m_AfterTrackVertexError
array of vertex error matrices after the fit.

◆ getVertex()

const HepPoint3D getVertex ( const int flag = KFitConst::kAfterFit) const

Get a vertex position.

Parameters
flagKFitConst::kBeforeFit or KFitConst::kAfterFit
Returns
vertex position

Definition at line 81 of file MassPointingVertexFitKFit.cc.

82{
83 if (flag == KFitConst::kAfterFit && !isFitted()) return HepPoint3D();
84
85 switch (flag) {
87 return m_BeforeVertex;
88
90 return m_AfterVertex;
91
92 default:
93 KFitError::displayError(__FILE__, __LINE__, __func__, KFitError::kOutOfRange);
94 return HepPoint3D();
95 }
96}
HepPoint3D m_AfterVertex
Vertex position after the fit.

◆ getVertexError()

const HepSymMatrix getVertexError ( void ) const

Get a fitted vertex error matrix.

Returns
vertex error matrix

Definition at line 100 of file MassPointingVertexFitKFit.cc.

101{
102 return m_AfterVertexError;
103}

◆ isFitted()

bool isFitted ( void ) const
inherited

Return false if fit is not performed yet or performed fit is failed; otherwise true.

Returns
see description

Definition at line 730 of file KFitBase.cc.

731{
732 if (m_FlagFitted) return true;
733
734 KFitError::displayError(__FILE__, __LINE__, __func__, KFitError::kNotFittedYet);
735
736 return false;
737}
@ kNotFittedYet
Not fitted yet.
Definition KFitError.h:38

◆ isNonZeroEnergy()

bool isNonZeroEnergy ( const CLHEP::HepLorentzVector & p)
staticprotectedinherited

Check if the energy is non-zero.

Parameters
pLorentz vector
Returns
true for non-zero energy, false for otherwise

Definition at line 752 of file KFitBase.cc.

753{
754 if (p.t() != 0) return true;
755
756 KFitError::displayError(__FILE__, __LINE__, __func__, KFitError::kDivisionByZero);
757
758 return false;
759}
@ kDivisionByZero
Division by zero (bad track property or internal error)
Definition KFitError.h:55

◆ isTrackIDInRange()

bool isTrackIDInRange ( const int id) const
protectedinherited

Check if the id is in the range.

Parameters
idtrack id
Returns
true if the id is in the range, false otherwise

Definition at line 741 of file KFitBase.cc.

742{
743 if (0 <= id && id < m_TrackCount) return true;
744
745 KFitError::displayError(__FILE__, __LINE__, __func__, KFitError::kOutOfRange);
746
747 return false;
748}

◆ makeCoreMatrix()

enum KFitError::ECode makeCoreMatrix ( void )
overrideprivatevirtual

Build matrices using the kinematical constraint.

Returns
error code (zero if success)

Implements KFitBase.

Definition at line 380 of file MassPointingVertexFitKFit.cc.

380 {
381 // Mass Constraint
382 HepMatrix al_1_prime(m_al_1);
383 HepMatrix Sum_al_1(4, 1, 0);
384 std::vector<double> energy(m_TrackCount);
385 double a;
386
387 for (int i = 0; i < m_TrackCount; i++)
388 {
389 a = m_property[i][2];
390 al_1_prime[i * KFitConst::kNumber7 + 0][0] -= a * (m_v_a[1][0] - al_1_prime[i * KFitConst::kNumber7 + 5][0]);
391 al_1_prime[i * KFitConst::kNumber7 + 1][0] += a * (m_v_a[0][0] - al_1_prime[i * KFitConst::kNumber7 + 4][0]);
392 energy[i] = sqrt(al_1_prime[i * KFitConst::kNumber7 + 0][0] * al_1_prime[i * KFitConst::kNumber7 + 0][0] +
393 al_1_prime[i * KFitConst::kNumber7 + 1][0] * al_1_prime[i * KFitConst::kNumber7 + 1][0] +
394 al_1_prime[i * KFitConst::kNumber7 + 2][0] * al_1_prime[i * KFitConst::kNumber7 + 2][0] +
395 m_property[i][1] * m_property[i][1]);
396 if (m_IsFixMass[i])
397 Sum_al_1[3][0] += energy[i];
398 else
399 Sum_al_1[3][0] += al_1_prime[i * KFitConst::kNumber7 + 3][0];
400 }
401
402 for (int i = 0; i < m_TrackCount; i++)
403 {
404 for (int j = 0; j < 3; j++) Sum_al_1[j][0] += al_1_prime[i * KFitConst::kNumber7 + j][0];
405 }
406
407 double vtx = sqrt((m_v_a[0][0] - m_ProductionVertex.x()) * (m_v_a[0][0] - m_ProductionVertex.x())
408 + (m_v_a[1][0] - m_ProductionVertex.y()) * (m_v_a[1][0] - m_ProductionVertex.y())
409 + (m_v_a[2][0] - m_ProductionVertex.z()) * (m_v_a[2][0] - m_ProductionVertex.z()));
410 double vtxpt2 = (m_ProductionVertex.x() - m_v_a[0][0]) * (m_ProductionVertex.x() - m_v_a[0][0]) + (m_ProductionVertex.y() - m_v_a[1][0]) * (m_ProductionVertex.y() - m_v_a[1][0]);
411 double mom = sqrt(Sum_al_1[0][0] * Sum_al_1[0][0] + Sum_al_1[1][0] * Sum_al_1[1][0] + Sum_al_1[2][0] * Sum_al_1[2][0]);
412 double Pt2 = Sum_al_1[0][0] * Sum_al_1[0][0] + Sum_al_1[1][0] * Sum_al_1[1][0];
413
414 m_d[2 * m_TrackCount][0] =
415 + Sum_al_1[3][0] * Sum_al_1[3][0] - Sum_al_1[0][0] * Sum_al_1[0][0]
416 - Sum_al_1[1][0] * Sum_al_1[1][0] - Sum_al_1[2][0] * Sum_al_1[2][0]
418
419 double phiPointingConstraint = atan2(m_v_a[1][0] - m_ProductionVertex.y(), m_v_a[0][0] - m_ProductionVertex.x()) - atan2(Sum_al_1[1][0], Sum_al_1[0][0]);
420 phiPointingConstraint = std::fmod(phiPointingConstraint + TMath::Pi(), TMath::TwoPi());
421 if (phiPointingConstraint < 0) phiPointingConstraint += TMath::TwoPi();
422 phiPointingConstraint -= TMath::Pi();
423
424 m_d[2 * m_TrackCount + 1][0] = phiPointingConstraint;
425 m_d[2 * m_TrackCount + 2][0] = acos((m_v_a[2][0] - m_ProductionVertex.z()) / vtx) - acos(Sum_al_1[2][0] / mom);
426
427 double Sum_a = 0., Sum_tmpx = 0., Sum_tmpy = 0.;
428 for (int i = 0; i < m_TrackCount; i++)
429 {
430 if (energy[i] == 0) {
432 KFitError::displayError(__FILE__, __LINE__, __func__, m_ErrorCode);
433 return m_ErrorCode;
434 }
435
436 a = m_property[i][2];
437
438 if (m_IsFixMass[i]) {
439 double invE = 1. / energy[i];
440 m_D[2 * m_TrackCount][i * KFitConst::kNumber7 + 0] = 2.*(Sum_al_1[3][0] * al_1_prime[i * KFitConst::kNumber7 + 0][0] * invE -
441 Sum_al_1[0][0]);
442 m_D[2 * m_TrackCount][i * KFitConst::kNumber7 + 1] = 2.*(Sum_al_1[3][0] * al_1_prime[i * KFitConst::kNumber7 + 1][0] * invE -
443 Sum_al_1[1][0]);
444 m_D[2 * m_TrackCount][i * KFitConst::kNumber7 + 2] = 2.*(Sum_al_1[3][0] * al_1_prime[i * KFitConst::kNumber7 + 2][0] * invE -
445 Sum_al_1[2][0]);
446 m_D[2 * m_TrackCount][i * KFitConst::kNumber7 + 3] = 0.;
447 m_D[2 * m_TrackCount][i * KFitConst::kNumber7 + 4] = -2.*(Sum_al_1[3][0] * al_1_prime[i * KFitConst::kNumber7 + 1][0] * invE -
448 Sum_al_1[1][0]) * a;
449 m_D[2 * m_TrackCount][i * KFitConst::kNumber7 + 5] = 2.*(Sum_al_1[3][0] * al_1_prime[i * KFitConst::kNumber7 + 0][0] * invE -
450 Sum_al_1[0][0]) * a;
451 m_D[2 * m_TrackCount][i * KFitConst::kNumber7 + 6] = 0.;
452 Sum_tmpx += al_1_prime[i * KFitConst::kNumber7 + 0][0] * invE * a;
453 Sum_tmpy += al_1_prime[i * KFitConst::kNumber7 + 1][0] * invE * a;
454 } else {
455 m_D[2 * m_TrackCount][i * KFitConst::kNumber7 + 0] = -2.*Sum_al_1[0][0];
456 m_D[2 * m_TrackCount][i * KFitConst::kNumber7 + 1] = -2.*Sum_al_1[1][0];
457 m_D[2 * m_TrackCount][i * KFitConst::kNumber7 + 2] = -2.*Sum_al_1[2][0];
458 m_D[2 * m_TrackCount][i * KFitConst::kNumber7 + 3] = 2.*Sum_al_1[3][0];
459 m_D[2 * m_TrackCount][i * KFitConst::kNumber7 + 4] = 2.*Sum_al_1[1][0] * a;
460 m_D[2 * m_TrackCount][i * KFitConst::kNumber7 + 5] = -2.*Sum_al_1[0][0] * a;
461 m_D[2 * m_TrackCount][i * KFitConst::kNumber7 + 6] = 0.;
462 }
463 m_D[2 * m_TrackCount + 1][i * KFitConst::kNumber7 + 0] = Sum_al_1[1][0] / Pt2;
464 m_D[2 * m_TrackCount + 1][i * KFitConst::kNumber7 + 1] = - Sum_al_1[0][0] / Pt2;
465 m_D[2 * m_TrackCount + 1][i * KFitConst::kNumber7 + 2] = 0.;
466 m_D[2 * m_TrackCount + 1][i * KFitConst::kNumber7 + 3] = 0.;
467 m_D[2 * m_TrackCount + 1][i * KFitConst::kNumber7 + 4] = a * Sum_al_1[0][0] / Pt2;
468 m_D[2 * m_TrackCount + 1][i * KFitConst::kNumber7 + 5] = a * Sum_al_1[1][0] / Pt2;
469 m_D[2 * m_TrackCount + 1][i * KFitConst::kNumber7 + 6] = 0.;
470 m_D[2 * m_TrackCount + 2][i * KFitConst::kNumber7 + 0] = - Sum_al_1[0][0] * Sum_al_1[2][0] / (sqrt(Pt2) * mom * mom);
471 m_D[2 * m_TrackCount + 2][i * KFitConst::kNumber7 + 1] = - Sum_al_1[1][0] * Sum_al_1[2][0] / (sqrt(Pt2) * mom * mom);
472 m_D[2 * m_TrackCount + 2][i * KFitConst::kNumber7 + 2] = sqrt(Pt2) / (mom * mom);
473 m_D[2 * m_TrackCount + 2][i * KFitConst::kNumber7 + 3] = 0.;
474 m_D[2 * m_TrackCount + 2][i * KFitConst::kNumber7 + 4] = a * Sum_al_1[1][0] * Sum_al_1[2][0] / (sqrt(Pt2) * mom * mom);
475 m_D[2 * m_TrackCount + 2][i * KFitConst::kNumber7 + 5] = - a * Sum_al_1[0][0] * Sum_al_1[2][0] / (sqrt(Pt2) * mom * mom);
476 m_D[2 * m_TrackCount + 2][i * KFitConst::kNumber7 + 6] = 0.;
477 Sum_a += a;
478 }
479
480 // m_E
481 m_E[2 * m_TrackCount][0] = -2.*Sum_al_1[1][0] * Sum_a + 2.*Sum_al_1[3][0] * Sum_tmpy;
482 m_E[2 * m_TrackCount][1] = 2.*Sum_al_1[0][0] * Sum_a - 2.*Sum_al_1[3][0] * Sum_tmpx;
483 m_E[2 * m_TrackCount][2] = 0.;
484 m_E[2 * m_TrackCount + 1][0] = (m_ProductionVertex.y() - m_v_a[1][0]) / vtxpt2 - Sum_a * Sum_al_1[0][0] / Pt2;
485 m_E[2 * m_TrackCount + 1][1] = (m_v_a[0][0] - m_ProductionVertex.x()) / vtxpt2 - Sum_a * Sum_al_1[1][0] / Pt2;
486 m_E[2 * m_TrackCount + 1][2] = 0.;
487 m_E[2 * m_TrackCount + 2][0] = (m_v_a[0][0] - m_ProductionVertex.x()) * (m_v_a[2][0] - m_ProductionVertex.z()) / (vtx* vtx * sqrt(vtxpt2)) - Sum_a * Sum_al_1[1][0] * Sum_al_1[2][0] / (sqrt(Pt2) * mom * mom);
488 m_E[2 * m_TrackCount + 2][1] = (m_v_a[1][0] - m_ProductionVertex.y()) * (m_v_a[2][0] - m_ProductionVertex.z()) / (vtx* vtx * sqrt(vtxpt2)) + Sum_a * Sum_al_1[0][0] * Sum_al_1[2][0] / (sqrt(Pt2) * mom * mom);
489 m_E[2 * m_TrackCount + 2][2] = - sqrt(vtxpt2) / (vtx * vtx);
490
491 for (int i = 0; i < m_TrackCount; i++)
492 {
493 double S, U;
494 double sininv;
495
496 double px = m_al_1[i * KFitConst::kNumber7 + 0][0];
497 double py = m_al_1[i * KFitConst::kNumber7 + 1][0];
498 double pz = m_al_1[i * KFitConst::kNumber7 + 2][0];
499 double x = m_al_1[i * KFitConst::kNumber7 + 4][0];
500 double y = m_al_1[i * KFitConst::kNumber7 + 5][0];
501 double z = m_al_1[i * KFitConst::kNumber7 + 6][0];
502 a = m_property[i][2];
503
504 double pt = sqrt(px * px + py * py);
505
506 if (pt == 0) {
508 KFitError::displayError(__FILE__, __LINE__, __func__, m_ErrorCode);
509 return m_ErrorCode;
510 }
511
512 double invPt = 1. / pt;
513 double invPt2 = invPt * invPt;
514 double dlx = m_v_a[0][0] - x;
515 double dly = m_v_a[1][0] - y;
516 double dlz = m_v_a[2][0] - z;
517 double a1 = -dlx * py + dly * px;
518 double a2 = dlx * px + dly * py;
519 double r2d2 = dlx * dlx + dly * dly;
520 double Rx = dlx - 2.*px * a2 * invPt2;
521 double Ry = dly - 2.*py * a2 * invPt2;
522
523 if (a != 0.) { // charged
524
525 double B = a * a2 * invPt2;
526 if (fabs(B) > 1.) {
528 KFitError::displayError(__FILE__, __LINE__, __func__, m_ErrorCode);
529 return m_ErrorCode;
530 }
531 // sin^(-1)(B)
532 sininv = asin(B);
533 double tmp0 = 1.0 - B * B;
534 if (tmp0 == 0) {
536 KFitError::displayError(__FILE__, __LINE__, __func__, m_ErrorCode);
537 return m_ErrorCode;
538 }
539 // 1/sqrt(1-B^2)
540 double sqrtag = 1.0 / sqrt(tmp0);
541 S = sqrtag * invPt2;
542 U = dlz - pz * sininv / a;
543
544 } else { // neutral
545
546 sininv = 0.0;
547 S = invPt2;
548 U = dlz - pz * a2 * invPt2;
549
550 }
551
552 // d
553 m_d[i * 2 + 0][0] = a1 - 0.5 * a * r2d2;
554 m_d[i * 2 + 1][0] = U * pt;
555
556 // D
557 m_D[i * 2 + 0][i * KFitConst::kNumber7 + 0] = dly;
558 m_D[i * 2 + 0][i * KFitConst::kNumber7 + 1] = -dlx;
559 m_D[i * 2 + 0][i * KFitConst::kNumber7 + 2] = 0.0;
560 m_D[i * 2 + 0][i * KFitConst::kNumber7 + 4] = py + a * dlx;
561 m_D[i * 2 + 0][i * KFitConst::kNumber7 + 5] = -px + a * dly;
562 m_D[i * 2 + 0][i * KFitConst::kNumber7 + 6] = 0.0;
563 m_D[i * 2 + 1][i * KFitConst::kNumber7 + 0] = -pz * pt * S * Rx + U * px * invPt;
564 m_D[i * 2 + 1][i * KFitConst::kNumber7 + 1] = -pz * pt * S * Ry + U * py * invPt;
565 if (a != 0.)
566 m_D[i * 2 + 1][i * KFitConst::kNumber7 + 2] = -sininv * pt / a;
567 else
568 m_D[i * 2 + 1][i * KFitConst::kNumber7 + 2] = -a2 * invPt;
569 m_D[i * 2 + 1][i * KFitConst::kNumber7 + 4] = px * pz * pt * S;
570 m_D[i * 2 + 1][i * KFitConst::kNumber7 + 5] = py * pz * pt * S;
571 m_D[i * 2 + 1][i * KFitConst::kNumber7 + 6] = -pt;
572
573 // E
574 m_E[i * 2 + 0][0] = -py - a * dlx;
575 m_E[i * 2 + 0][1] = px - a * dly;
576 m_E[i * 2 + 0][2] = 0.0;
577 m_E[i * 2 + 1][0] = -px * pz * pt * S;
578 m_E[i * 2 + 1][1] = -py * pz * pt * S;
579 m_E[i * 2 + 1][2] = pt;
580 }
581
583}
CLHEP::HepMatrix m_property
Container of charges and masses.
Definition KFitBase.h:263

◆ makeError1() [1/2]

HepSymMatrix makeError1 ( const CLHEP::HepLorentzVector & p,
const CLHEP::HepMatrix & e )
staticprotectedinherited

Rebuild an error matrix from a Lorentz vector and an error matrix.

Parameters
pLorentz vector
e(6x6) error matrix
Returns
(7x7) error matrix

Definition at line 223 of file KFitBase.cc.

224{
225 // self track
226 // Error(6x6,e) ==> Error(7x7,output(hsm)) using Momentum(p).
227
228 if (!isNonZeroEnergy(p)) return HepSymMatrix(KFitConst::kNumber7, 0);
229
230 HepSymMatrix hsm(KFitConst::kNumber7, 0);
231
232 for (int i = 0; i < 3; i++) for (int j = i; j < 3; j++) {
233 hsm[i][j] = e[i][j];
234 hsm[4 + i][4 + j] = e[3 + i][3 + j];
235 }
236 for (int i = 0; i < 3; i++) for (int j = 0; j < 3; j++) {
237 hsm[i][4 + j] = e[i][3 + j];
238 }
239
240 const double invE = 1 / p.t();
241 hsm[0][3] = (p.x() * hsm[0][0] + p.y() * hsm[0][1] + p.z() * hsm[0][2]) * invE;
242 hsm[1][3] = (p.x() * hsm[0][1] + p.y() * hsm[1][1] + p.z() * hsm[1][2]) * invE;
243 hsm[2][3] = (p.x() * hsm[0][2] + p.y() * hsm[1][2] + p.z() * hsm[2][2]) * invE;
244 hsm[3][3] = (p.x() * p.x() * hsm[0][0] + p.y() * p.y() * hsm[1][1] + p.z() * p.z() * hsm[2][2]
245 + 2.0 * p.x() * p.y() * hsm[0][1]
246 + 2.0 * p.x() * p.z() * hsm[0][2]
247 + 2.0 * p.y() * p.z() * hsm[1][2]) * invE * invE;
248 hsm[3][4] = (p.x() * hsm[0][4] + p.y() * hsm[1][4] + p.z() * hsm[2][4]) * invE;
249 hsm[3][5] = (p.x() * hsm[0][5] + p.y() * hsm[1][5] + p.z() * hsm[2][5]) * invE;
250 hsm[3][6] = (p.x() * hsm[0][6] + p.y() * hsm[1][6] + p.z() * hsm[2][6]) * invE;
251
252 return hsm;
253}
static bool isNonZeroEnergy(const CLHEP::HepLorentzVector &p)
Check if the energy is non-zero.
Definition KFitBase.cc:752

◆ makeError1() [2/2]

HepMatrix makeError1 ( const CLHEP::HepLorentzVector & p1,
const CLHEP::HepLorentzVector & p2,
const CLHEP::HepMatrix & e )
staticprotectedinherited

Rebuild an error matrix from a pair of Lorentz vectors and an error matrix.

Parameters
p1first Lorentz vector
p2second Lorentz vector
e(6x6) error matrix
Returns
(7x7) error matrix

Definition at line 257 of file KFitBase.cc.

258{
259 // track and track
260 // Error(6x6,e) ==> Error(7x7,output(hm)) using Momentum(p1&p2).
261
262 if (!isNonZeroEnergy(p1)) return HepSymMatrix(KFitConst::kNumber7, 0);
263 if (!isNonZeroEnergy(p2)) return HepSymMatrix(KFitConst::kNumber7, 0);
264
266
267 for (int i = 0; i < 3; i++) for (int j = 0; j < 3; j++) {
268 hm[i][j] = e[i][j];
269 hm[4 + i][4 + j] = e[3 + i][3 + j];
270 hm[4 + i][j] = e[3 + i][j];
271 hm[i][4 + j] = e[i][3 + j];
272 }
273
274 const double invE1 = 1 / p1.t();
275 const double invE2 = 1 / p2.t();
276 hm[0][3] = (p2.x() * hm[0][0] + p2.y() * hm[0][1] + p2.z() * hm[0][2]) * invE2;
277 hm[1][3] = (p2.x() * hm[1][0] + p2.y() * hm[1][1] + p2.z() * hm[1][2]) * invE2;
278 hm[2][3] = (p2.x() * hm[2][0] + p2.y() * hm[2][1] + p2.z() * hm[2][2]) * invE2;
279 hm[4][3] = (p2.x() * hm[4][0] + p2.y() * hm[4][1] + p2.z() * hm[4][2]) * invE2;
280 hm[5][3] = (p2.x() * hm[5][0] + p2.y() * hm[5][1] + p2.z() * hm[5][2]) * invE2;
281 hm[6][3] = (p2.x() * hm[6][0] + p2.y() * hm[6][1] + p2.z() * hm[6][2]) * invE2;
282 hm[3][3] = (p1.x() * p2.x() * hm[0][0] + p1.y() * p2.y() * hm[1][1] + p1.z() * p2.z() * hm[2][2] +
283 p1.x() * p2.y() * hm[0][1] + p2.x() * p1.y() * hm[1][0] +
284 p1.x() * p2.z() * hm[0][2] + p2.x() * p1.z() * hm[2][0] +
285 p1.y() * p2.z() * hm[1][2] + p2.y() * p1.z() * hm[2][1]) * invE1 * invE2;
286 hm[3][0] = (p1.x() * hm[0][0] + p1.y() * hm[1][0] + p1.z() * hm[2][0]) * invE1;
287 hm[3][1] = (p1.x() * hm[0][1] + p1.y() * hm[1][1] + p1.z() * hm[2][1]) * invE1;
288 hm[3][2] = (p1.x() * hm[0][2] + p1.y() * hm[1][2] + p1.z() * hm[2][2]) * invE1;
289 hm[3][4] = (p1.x() * hm[0][4] + p1.y() * hm[1][4] + p1.z() * hm[2][4]) * invE1;
290 hm[3][5] = (p1.x() * hm[0][5] + p1.y() * hm[1][5] + p1.z() * hm[2][5]) * invE1;
291 hm[3][6] = (p1.x() * hm[0][6] + p1.y() * hm[1][6] + p1.z() * hm[2][6]) * invE1;
292
293 return hm;
294}

◆ makeError2()

HepMatrix makeError2 ( const CLHEP::HepLorentzVector & p,
const CLHEP::HepMatrix & e )
staticprotectedinherited

Rebuild an error matrix from a Lorentz vector and an error matrix.

Parameters
pLorentz vector
e(3x6) error matrix
Returns
(3x7) error matrix

Definition at line 298 of file KFitBase.cc.

299{
300 // vertex and track
301 // Error(3x6,e) ==> Error(3x7,output(hm)) using Momentum(p).
302
303 if (!isNonZeroEnergy(p)) return HepSymMatrix(KFitConst::kNumber7, 0);
304
305 HepMatrix hm(3, KFitConst::kNumber7, 0);
306
307 for (int i = 0; i < 3; i++) for (int j = 0; j < 3; j++) {
308 hm[i][j] = e[i][j];
309 hm[i][4 + j] = e[i][3 + j];
310 }
311
312 const double invE = 1 / p.t();
313 hm[0][3] = (p.x() * hm[0][0] + p.y() * hm[0][1] + p.z() * hm[0][2]) * invE;
314 hm[1][3] = (p.x() * hm[1][0] + p.y() * hm[1][1] + p.z() * hm[1][2]) * invE;
315 hm[2][3] = (p.x() * hm[2][0] + p.y() * hm[2][1] + p.z() * hm[2][2]) * invE;
316
317 return hm;
318}

◆ makeError3() [1/2]

HepSymMatrix makeError3 ( const CLHEP::HepLorentzVector & p,
const CLHEP::HepMatrix & e,
const bool is_fix_mass )
staticprotectedinherited

Rebuild an error matrix from a Lorentz vector and an error matrix.

Parameters
pLorentz vector
e(7x7) error matrix
is_fix_masstrue to recalculate energy term from other parameters, false to do nothing
Returns
(7x7) error matrix

Definition at line 322 of file KFitBase.cc.

323{
324 // self track
325 // Error(7x7,e) ==> Error(7x7,output(hsm)) using Momentum(p).
326 // is_fix_mass = 1 : Energy term is recalculated from the other parameters.
327 // is_fix_mass = 0 : hsm = e.
328
329 if (!isNonZeroEnergy(p)) return HepSymMatrix(KFitConst::kNumber7, 0);
330
331 if (!is_fix_mass) {
332 HepSymMatrix hsm(KFitConst::kNumber7, 0);
333 for (int i = 0; i < 7; i++) for (int j = i; j < 7; j++) {
334 hsm[i][j] = e[i][j];
335 }
336 return hsm;
337 }
338
339 HepSymMatrix hsm(KFitConst::kNumber7, 0);
340
341 for (int i = 0; i < 7; i++) {
342 if (i != 3)
343 for (int j = i; j < 7; j++) hsm[i][j] = e[i][j];
344 }
345
346 double invE = 1 / p.t();
347 hsm[0][3] = (p.x() * hsm[0][0] + p.y() * hsm[0][1] + p.z() * hsm[0][2]) * invE;
348 hsm[1][3] = (p.x() * hsm[0][1] + p.y() * hsm[1][1] + p.z() * hsm[1][2]) * invE;
349 hsm[2][3] = (p.x() * hsm[0][2] + p.y() * hsm[1][2] + p.z() * hsm[2][2]) * invE;
350 hsm[3][3] = (p.x() * p.x() * hsm[0][0] + p.y() * p.y() * hsm[1][1] + p.z() * p.z() * hsm[2][2]
351 + 2.0 * p.x() * p.y() * hsm[0][1]
352 + 2.0 * p.x() * p.z() * hsm[0][2]
353 + 2.0 * p.y() * p.z() * hsm[1][2]) * invE * invE;
354 hsm[3][4] = (p.x() * hsm[0][4] + p.y() * hsm[1][4] + p.z() * hsm[2][4]) * invE;
355 hsm[3][5] = (p.x() * hsm[0][5] + p.y() * hsm[1][5] + p.z() * hsm[2][5]) * invE;
356 hsm[3][6] = (p.x() * hsm[0][6] + p.y() * hsm[1][6] + p.z() * hsm[2][6]) * invE;
357
358 return hsm;
359}

◆ makeError3() [2/2]

HepMatrix makeError3 ( const CLHEP::HepLorentzVector & p1,
const CLHEP::HepLorentzVector & p2,
const CLHEP::HepMatrix & e,
const bool is_fix_mass1,
const bool is_fix_mass2 )
staticprotectedinherited

Rebuild an error matrix from a pair of Lorentz vectors and an error matrix.

Parameters
p1first Lorentz vector
p2second Lorentz vector
e(7x7) error matrix
is_fix_mass1true to recalculate energy term from other parameters, false to do nothing
is_fix_mass2true to recalculate energy term from other parameters, false to do nothing
Returns
(7x7) error matrix

Definition at line 363 of file KFitBase.cc.

366{
367 // track and track
368 // Error(7x7,e) ==> Error(7x7,output(hm)) using Momentum(p1&p2).
369 // is_fix_mass = 1 : Energy term is recalculated from the other parameters.
370 // is_fix_mass = 0 : not.
371
372 if (is_fix_mass1 && is_fix_mass2) {
373 if (!isNonZeroEnergy(p1)) return HepSymMatrix(KFitConst::kNumber7, 0);
374 if (!isNonZeroEnergy(p2)) return HepSymMatrix(KFitConst::kNumber7, 0);
375
376 HepMatrix hm(e);
377
378 const double invE1 = 1 / p1.t();
379 const double invE2 = 1 / p2.t();
380 hm[0][3] = (p2.x() * hm[0][0] + p2.y() * hm[0][1] + p2.z() * hm[0][2]) * invE2;
381 hm[1][3] = (p2.x() * hm[1][0] + p2.y() * hm[1][1] + p2.z() * hm[1][2]) * invE2;
382 hm[2][3] = (p2.x() * hm[2][0] + p2.y() * hm[2][1] + p2.z() * hm[2][2]) * invE2;
383 hm[4][3] = (p2.x() * hm[4][0] + p2.y() * hm[4][1] + p2.z() * hm[4][2]) * invE2;
384 hm[5][3] = (p2.x() * hm[5][0] + p2.y() * hm[5][1] + p2.z() * hm[5][2]) * invE2;
385 hm[6][3] = (p2.x() * hm[6][0] + p2.y() * hm[6][1] + p2.z() * hm[6][2]) * invE2;
386 hm[3][0] = (p1.x() * hm[0][0] + p1.y() * hm[1][0] + p1.z() * hm[2][0]) * invE1;
387 hm[3][1] = (p1.x() * hm[0][1] + p1.y() * hm[1][1] + p1.z() * hm[2][1]) * invE1;
388 hm[3][2] = (p1.x() * hm[0][2] + p1.y() * hm[1][2] + p1.z() * hm[2][2]) * invE1;
389 hm[3][3] = (p1.x() * p2.x() * hm[0][0] + p1.y() * p2.y() * hm[1][1] + p1.z() * p2.z() * hm[2][2] +
390 p1.x() * p2.y() * hm[0][1] + p2.x() * p1.y() * hm[1][0] +
391 p1.x() * p2.z() * hm[0][2] + p2.x() * p1.z() * hm[2][0] +
392 p1.y() * p2.z() * hm[1][2] + p2.y() * p1.z() * hm[2][1]) * invE1 * invE2;
393 hm[3][4] = (p1.x() * hm[0][4] + p1.y() * hm[1][4] + p1.z() * hm[2][4]) * invE1;
394 hm[3][5] = (p1.x() * hm[0][5] + p1.y() * hm[1][5] + p1.z() * hm[2][5]) * invE1;
395 hm[3][6] = (p1.x() * hm[0][6] + p1.y() * hm[1][6] + p1.z() * hm[2][6]) * invE1;
396
397 return hm;
398 }
399
400
401 if (is_fix_mass1 && !is_fix_mass2) {
402 if (!isNonZeroEnergy(p1)) return HepSymMatrix(KFitConst::kNumber7, 0);
403
404 HepMatrix hm(e);
405
406 const double invE1 = 1 / p1.t();
407 hm[3][0] = (p1.x() * hm[0][0] + p1.y() * hm[1][0] + p1.z() * hm[2][0]) * invE1;
408 hm[3][1] = (p1.x() * hm[0][1] + p1.y() * hm[1][1] + p1.z() * hm[2][1]) * invE1;
409 hm[3][2] = (p1.x() * hm[0][2] + p1.y() * hm[1][2] + p1.z() * hm[2][2]) * invE1;
410 hm[3][3] = (p1.x() * hm[0][3] + p1.y() * hm[1][3] + p1.z() * hm[2][3]) * invE1;
411 hm[3][4] = (p1.x() * hm[0][4] + p1.y() * hm[1][4] + p1.z() * hm[2][4]) * invE1;
412 hm[3][5] = (p1.x() * hm[0][5] + p1.y() * hm[1][5] + p1.z() * hm[2][5]) * invE1;
413 hm[3][6] = (p1.x() * hm[0][6] + p1.y() * hm[1][6] + p1.z() * hm[2][6]) * invE1;
414
415 return hm;
416 }
417
418
419 if (!is_fix_mass1 && is_fix_mass2) {
420 if (!isNonZeroEnergy(p2)) return HepSymMatrix(KFitConst::kNumber7, 0);
421
422 HepMatrix hm(e);
423
424 const double invE2 = 1 / p2.t();
425 hm[0][3] = (p2.x() * hm[0][0] + p2.y() * hm[0][1] + p2.z() * hm[0][2]) * invE2;
426 hm[1][3] = (p2.x() * hm[1][0] + p2.y() * hm[1][1] + p2.z() * hm[1][2]) * invE2;
427 hm[2][3] = (p2.x() * hm[2][0] + p2.y() * hm[2][1] + p2.z() * hm[2][2]) * invE2;
428 hm[3][3] = (p2.x() * hm[3][0] + p2.y() * hm[3][1] + p2.z() * hm[3][2]) * invE2;
429 hm[4][3] = (p2.x() * hm[4][0] + p2.y() * hm[4][1] + p2.z() * hm[4][2]) * invE2;
430 hm[5][3] = (p2.x() * hm[5][0] + p2.y() * hm[5][1] + p2.z() * hm[5][2]) * invE2;
431 hm[6][3] = (p2.x() * hm[6][0] + p2.y() * hm[6][1] + p2.z() * hm[6][2]) * invE2;
432
433 return hm;
434 }
435
436 return e;
437}

◆ makeError4()

HepMatrix makeError4 ( const CLHEP::HepLorentzVector & p,
const CLHEP::HepMatrix & e )
staticprotectedinherited

Rebuild an error matrix from a Lorentz vector and an error matrix.

Parameters
pLorentz vector
e(3x7) error matrix
Returns
(7x7) error matrix

Definition at line 441 of file KFitBase.cc.

442{
443 // vertex and track
444 // Error(3x7,e) ==> Error(3x7,output(hm)) using Momentum(p).
445 // Energy term is recalculated from the other parameters.
446
447 if (!isNonZeroEnergy(p)) return HepSymMatrix(KFitConst::kNumber7, 0);
448
449 HepMatrix hm(e);
450
451 const double invE = 1 / p.t();
452 hm[0][3] = (p.x() * hm[0][0] + p.y() * hm[0][1] + p.z() * hm[0][2]) * invE;
453 hm[1][3] = (p.x() * hm[1][0] + p.y() * hm[1][1] + p.z() * hm[1][2]) * invE;
454 hm[2][3] = (p.x() * hm[2][0] + p.y() * hm[2][1] + p.z() * hm[2][2]) * invE;
455
456 return hm;
457}

◆ prepareCorrelation()

enum KFitError::ECode prepareCorrelation ( void )
overrideprivatevirtual

Build a grand correlation matrix from input-track properties.

Returns
error code (zero if success)

Reimplemented from KFitBase.

Definition at line 287 of file MassPointingVertexFitKFit.cc.

287 {
288 if (m_BeforeCorrelation.size() != static_cast<unsigned int>(m_TrackCount * (m_TrackCount - 1) / 2))
289 {
291 KFitError::displayError(__FILE__, __LINE__, __func__, m_ErrorCode);
292 return m_ErrorCode;
293 }
294
295 int row = 0, col = 0;
296
297 for (const auto& hm : m_BeforeCorrelation)
298 {
299 // counter
300 row++;
301 if (row == m_TrackCount) {
302 col++;
303 row = col + 1;
304 }
305
306 int ii = 0, jj = 0;
307 for (int i = KFitConst::kNumber7 * row; i < KFitConst::kNumber7 * (row + 1); i++) {
308 for (int j = KFitConst::kNumber7 * col; j < KFitConst::kNumber7 * (col + 1); j++) {
309 m_V_al_0[i][j] = hm[ii][jj];
310 jj++;
311 }
312 jj = 0;
313 ii++;
314 }
315 }
316
318}
std::vector< CLHEP::HepMatrix > m_BeforeCorrelation
Container of input correlation matrices.
Definition KFitBase.h:251
@ kBadCorrelationSize
Wrong correlation matrix size (internal error)
Definition KFitError.h:50

◆ prepareInputMatrix()

enum KFitError::ECode prepareInputMatrix ( void )
overrideprivatevirtual

Build grand matrices for minimum search from input-track properties.

Returns
error code (zero if success)

Implements KFitBase.

Definition at line 198 of file MassPointingVertexFitKFit.cc.

198 {
200 {
202 KFitError::displayError(__FILE__, __LINE__, __func__, m_ErrorCode);
203 return m_ErrorCode;
204 }
205
206
207 if (m_IsFixMass.size() == 0)
208 {
209 // If no fix_mass flag at all,
210 // all tracks are considered to be fixed at mass.
211 for (int i = 0; i < m_TrackCount; i++) this->fixMass();
212 } else if (m_IsFixMass.size() != (unsigned int)m_TrackCount)
213 {
215 KFitError::displayError(__FILE__, __LINE__, __func__, m_ErrorCode);
216 return m_ErrorCode;
217 }
218
219
220 int index = 0;
221 m_al_0 = HepMatrix(KFitConst::kNumber7 * m_TrackCount, 1, 0);
222 m_property = HepMatrix(m_TrackCount, 3, 0);
223 m_V_al_0 = HepSymMatrix(KFitConst::kNumber7 * m_TrackCount, 0);
224
225 for (const auto& track : m_Tracks)
226 {
227 // momentum x,y,z,E and position x,y,z
228 m_al_0[index * KFitConst::kNumber7 + 0][0] = track.getMomentum(KFitConst::kBeforeFit).x();
229 m_al_0[index * KFitConst::kNumber7 + 1][0] = track.getMomentum(KFitConst::kBeforeFit).y();
230 m_al_0[index * KFitConst::kNumber7 + 2][0] = track.getMomentum(KFitConst::kBeforeFit).z();
231 m_al_0[index * KFitConst::kNumber7 + 3][0] = track.getMomentum(KFitConst::kBeforeFit).t();
232 m_al_0[index * KFitConst::kNumber7 + 4][0] = track.getPosition(KFitConst::kBeforeFit).x();
233 m_al_0[index * KFitConst::kNumber7 + 5][0] = track.getPosition(KFitConst::kBeforeFit).y();
234 m_al_0[index * KFitConst::kNumber7 + 6][0] = track.getPosition(KFitConst::kBeforeFit).z();
235 // these error
236 m_V_al_0.sub(index * KFitConst::kNumber7 + 1, track.getError(KFitConst::kBeforeFit));
237 // charge, mass, a
238 m_property[index][0] = track.getCharge();
239 m_property[index][1] = track.getMass();
240 const double c = Const::speedOfLight * 1e-4;
241 m_property[index][2] = -c * m_MagneticField * track.getCharge();
242 index++;
243 }
244
245 // error between track and track
247 {
248 this->prepareCorrelation();
250 KFitError::displayError(__FILE__, __LINE__, __func__, m_ErrorCode);
251 return m_ErrorCode;
252 }
253 }
254
255 // vertex
256 m_v_a[0][0] = m_BeforeVertex.x();
257 m_v_a[1][0] = m_BeforeVertex.y();
258 m_v_a[2][0] = m_BeforeVertex.z();
259
260 // set member matrix
261 m_al_1 = m_al_0;
262
265 m_E = m_V_al_1.sub(1, m_TrackCount * 2 + 3, 1, 3);
266 m_d = m_V_al_1.sub(1, m_TrackCount * 2 + 3, 1, 1);
267 m_V_D = m_V_al_1.sub(1, m_TrackCount * 2 + 3, 1, m_TrackCount * 2 + 3);
268 m_lam = m_V_al_1.sub(1, m_TrackCount * 2 + 3, 1, 1);
269 m_lam0 = m_V_al_1.sub(1, m_TrackCount * 2 + 3, 1, 1);
270 m_V_Dt = m_V_al_1.sub(1, m_TrackCount * 2 + 3, 1, m_TrackCount * 2 + 3);
272
274}
static const double speedOfLight
[cm/ns]
Definition Const.h:696
bool m_FlagCorrelation
Flag whether a correlation among tracks exists.
Definition KFitBase.h:306
enum KFitError::ECode prepareCorrelation(void) override
Build a grand correlation matrix from input-track properties.
enum KFitError::ECode fixMass(void)
Tell the object to fix the last added track property at the invariant mass.
static const int kMaxTrackCount
Maximum track size.
Definition KFitConst.h:38

◆ prepareInputSubMatrix()

enum KFitError::ECode prepareInputSubMatrix ( void )
overrideprivatevirtual

Build sub-matrices for minimum search from input-track properties.

Returns
error code (zero if success)

Implements KFitBase.

Definition at line 278 of file MassPointingVertexFitKFit.cc.

278 {
279 // vertex
280 for (int i = 0; i < 3; i++) m_v[i][0] = m_v_a[i][0];
281
283}

◆ prepareOutputMatrix()

enum KFitError::ECode prepareOutputMatrix ( void )
overrideprivatevirtual

Build an output error matrix.

Returns
error code (zero if success)

Implements KFitBase.

Definition at line 322 of file MassPointingVertexFitKFit.cc.

322 {
323 Hep3Vector h3v;
324 int index = 0;
325 for (auto& pdata : m_Tracks)
326 {
327 // tracks
328 // momentum
329 h3v.setX(m_al_1[index * KFitConst::kNumber7 + 0][0]);
330 h3v.setY(m_al_1[index * KFitConst::kNumber7 + 1][0]);
331 h3v.setZ(m_al_1[index * KFitConst::kNumber7 + 2][0]);
332 if (m_IsFixMass[index])
333 pdata.setMomentum(HepLorentzVector(h3v, sqrt(h3v.mag2() + pdata.getMass()*pdata.getMass())), KFitConst::kAfterFit);
334 else
335 pdata.setMomentum(HepLorentzVector(h3v, m_al_1[index * KFitConst::kNumber7 + 3][0]), KFitConst::kAfterFit);
336 // position
337 pdata.setPosition(HepPoint3D(
338 m_al_1[index * KFitConst::kNumber7 + 4][0],
339 m_al_1[index * KFitConst::kNumber7 + 5][0],
341 // error of the tracks
342 pdata.setError(this->makeError3(pdata.getMomentum(),
343 m_V_al_1.sub(
344 index * KFitConst::kNumber7 + 1,
345 (index + 1)*KFitConst::kNumber7,
346 index * KFitConst::kNumber7 + 1,
347 (index + 1)*KFitConst::kNumber7), m_IsFixMass[index]),
349 if (m_ErrorCode != KFitError::kNoError) break;
350 index++;
351 }
352
353 // vertex
354 m_AfterVertex.setX(m_v_a[0][0]);
355 m_AfterVertex.setY(m_v_a[1][0]);
356 m_AfterVertex.setZ(m_v_a[2][0]);
357 // error of the vertex
358 for (int i = 0; i < 3; i++) for (int j = i; j < 3; j++)
359 {
360 m_AfterVertexError[i][j] = m_V_E[i][j];
361 }
362 // error between vertex and tracks
363 for (int i = 0; i < m_TrackCount; i++)
364 {
365 HepMatrix hm(3, KFitConst::kNumber7, 0);
366 for (int j = 0; j < 3; j++) for (int k = 0; k < KFitConst::kNumber7; k++) {
367 hm[j][k] = m_Cov_v_al_1[j][KFitConst::kNumber7 * i + k];
368 }
369 if (m_IsFixMass[i])
370 m_AfterTrackVertexError.push_back(this->makeError4(m_Tracks[i].getMomentum(), hm));
371 else
372 m_AfterTrackVertexError.push_back(hm);
373 }
374
376}
static CLHEP::HepMatrix makeError4(const CLHEP::HepLorentzVector &p, const CLHEP::HepMatrix &e)
Rebuild an error matrix from a Lorentz vector and an error matrix.
Definition KFitBase.cc:441

◆ setCorrelation()

enum KFitError::ECode setCorrelation ( const CLHEP::HepMatrix & c)
virtualinherited

Set a correlation matrix.

Not intended for end user's use.

Parameters
c(7x7) correlation matrix
Returns
error code (zero if success)

Definition at line 70 of file KFitBase.cc.

70 {
71 if (e.num_row() != KFitConst::kNumber7)
72 {
74 KFitError::displayError(__FILE__, __LINE__, __func__, m_ErrorCode);
75 return m_ErrorCode;
76 }
77 m_BeforeCorrelation.push_back(e);
78 m_FlagCorrelation = true;
79
81}

◆ setInitialVertex()

enum KFitError::ECode setInitialVertex ( const HepPoint3D & v)

Set an initial vertex point for the mass-vertex-pointing constraint fit.

Parameters
vinitial vertex point
Returns
error code (zero if success)

Definition at line 41 of file MassPointingVertexFitKFit.cc.

41 {
43
45}

◆ setInvariantMass()

enum KFitError::ECode setInvariantMass ( const double m)

Set an invariant mass for the mass-vertex-pointing constraint fit.

Parameters
minvariant mass
Returns
error code (zero if success)

Definition at line 49 of file MassPointingVertexFitKFit.cc.

49 {
51
53}

◆ setMagneticField()

enum KFitError::ECode setMagneticField ( const double mf)
inherited

Change a magnetic field from the default value KFitConst::kDefaultMagneticField.

Parameters
mfmagnetic field to set
Returns
error code (zero if success)

Definition at line 93 of file KFitBase.cc.

93 {
94 m_MagneticField = mf;
95
97}

◆ setProductionVertex()

enum KFitError::ECode setProductionVertex ( const HepPoint3D & v)

Set the production vertex of the particle.

Parameters
vproduction vertex
Returns
error code (zero if success)

Definition at line 57 of file MassPointingVertexFitKFit.cc.

57 {
59
61}

◆ setZeroCorrelation()

enum KFitError::ECode setZeroCorrelation ( void )
virtualinherited

Indicate no correlation between tracks.

Not intended for end user's use.

Returns
error code (zero if success)

Definition at line 85 of file KFitBase.cc.

85 {
86 HepMatrix zero(KFitConst::kNumber7, KFitConst::kNumber7, 0);
87
88 return this->setCorrelation(zero);
89}
virtual enum KFitError::ECode setCorrelation(const CLHEP::HepMatrix &c)
Set a correlation matrix.
Definition KFitBase.cc:70

◆ unfixMass()

enum KFitError::ECode unfixMass ( void )

Tell the object to unfix the last added track property at the invariant mass.

Not intended for end user's use.

Returns
error code (zero if success)

Definition at line 73 of file MassPointingVertexFitKFit.cc.

73 {
74 m_IsFixMass.push_back(false);
75
77}

◆ updateMother()

enum KFitError::ECode updateMother ( Particle * mother)

Update mother particle.

Parameters
motherparticle

Definition at line 593 of file MassPointingVertexFitKFit.cc.

594{
595 MakeMotherKFit kmm;
597 unsigned n = getTrackCount();
598 for (unsigned i = 0; i < n; ++i) {
600 getTrack(i).getCharge());
602 for (unsigned j = i + 1; j < n; ++j) {
604 }
605 }
606 kmm.setVertex(getVertex());
608 m_ErrorCode = kmm.doMake();
610 B2DEBUG(2, "Error in doMake");
611 return m_ErrorCode;
612 }
613 double chi2 = getCHIsq();
614 int ndf = getNDF();
615 double prob = TMath::Prob(chi2, ndf);
616 mother->addExtraInfo("ndf", ndf);
617 mother->addExtraInfo("chiSquared", chi2);
618 mother->updateMomentum(
619 CLHEPToROOT::getLorentzVector(kmm.getMotherMomentum()),
620 CLHEPToROOT::getXYZVector(kmm.getMotherPosition()),
621 CLHEPToROOT::getTMatrixFSym(kmm.getMotherError()),
622 prob);
624 return m_ErrorCode;
625}
void addExtraInfo(const std::string &name, double value)
Sets the user-defined data of given name to the given value.
Definition Particle.cc:1421
void updateMomentum(const ROOT::Math::PxPyPzEVector &p4, const ROOT::Math::XYZVector &vertex, const TMatrixFSym &errMatrix, double pValue)
Sets Lorentz vector, position, 7x7 error matrix and p-value.
Definition Particle.h:397
const CLHEP::HepSymMatrix getTrackError(const int id) const
Get an error matrix of the track.
Definition KFitBase.cc:168
const HepPoint3D getTrackPosition(const int id) const
Get a position of the track.
Definition KFitBase.cc:161
virtual int getNDF(void) const
Get an NDF of the fit.
Definition KFitBase.cc:114
const KFitTrack getTrack(const int id) const
Get a specified track object.
Definition KFitBase.cc:175
int getTrackCount(void) const
Get the number of added tracks.
Definition KFitBase.cc:107
enum KFitError::ECode setVertex(const HepPoint3D &v)
Set a vertex position of the mother particle.
enum KFitError::ECode addTrack(const KFitTrack &kp)
Add a track to the make-mother object.
enum KFitError::ECode doMake(void)
Perform a reconstruction of mother particle.
const CLHEP::HepSymMatrix getMotherError(void) const
Get an error matrix of the mother particle.
enum KFitError::ECode setCorrelation(const CLHEP::HepMatrix &e)
Set a correlation matrix.
const HepPoint3D getMotherPosition(void) const
Get a position of the mother particle.
enum KFitError::ECode setVertexError(const CLHEP::HepSymMatrix &e)
Set a vertex error matrix of the mother particle.
enum KFitError::ECode setTrackVertexError(const CLHEP::HepMatrix &e)
Set a vertex error matrix of the child particle in the addTrack'ed order.
const CLHEP::HepLorentzVector getMotherMomentum(void) const
Get a Lorentz vector of the mother particle.
enum KFitError::ECode setMagneticField(const double mf)
Change a magnetic field from the default value KFitConst::kDefaultMagneticField.
double getCHIsq(void) const override
Get a chi-square of the fit.
const CLHEP::HepSymMatrix getVertexError(void) const
Get a fitted vertex error matrix.
const CLHEP::HepMatrix getCorrelation(const int id1, const int id2, const int flag=KFitConst::kAfterFit) const override
Get a correlation matrix between two tracks.
const HepPoint3D getVertex(const int flag=KFitConst::kAfterFit) const
Get a vertex position.
const CLHEP::HepMatrix getTrackVertexError(const int id) const
Get a vertex error matrix of the track.

Member Data Documentation

◆ m_AfterTrackVertexError

std::vector<CLHEP::HepMatrix> m_AfterTrackVertexError
private

array of vertex error matrices after the fit.

Definition at line 117 of file MassPointingVertexFitKFit.h.

◆ m_AfterVertex

HepPoint3D m_AfterVertex
private

Vertex position after the fit.

Definition at line 113 of file MassPointingVertexFitKFit.h.

◆ m_AfterVertexError

CLHEP::HepSymMatrix m_AfterVertexError
private

Vertex error matrix after the fit.

Definition at line 115 of file MassPointingVertexFitKFit.h.

◆ m_al_0

CLHEP::HepMatrix m_al_0
protectedinherited

See J.Tanaka Ph.D (2001) p136 for definition.

Definition at line 257 of file KFitBase.h.

◆ m_al_1

CLHEP::HepMatrix m_al_1
protectedinherited

See J.Tanaka Ph.D (2001) p136 for definition.

Definition at line 259 of file KFitBase.h.

◆ m_al_a

CLHEP::HepMatrix m_al_a
protectedinherited

See J.Tanaka Ph.D (2001) p137 for definition.

Definition at line 261 of file KFitBase.h.

◆ m_BeforeCorrelation

std::vector<CLHEP::HepMatrix> m_BeforeCorrelation
protectedinherited

Container of input correlation matrices.

Definition at line 251 of file KFitBase.h.

◆ m_BeforeVertex

HepPoint3D m_BeforeVertex
private

Vertex position before the fit.

Definition at line 111 of file MassPointingVertexFitKFit.h.

◆ m_CHIsq

double m_CHIsq
protectedinherited

chi-square of the fit.

Definition at line 297 of file KFitBase.h.

◆ m_Cov_v_al_1

CLHEP::HepMatrix m_Cov_v_al_1
protectedinherited

See J.Tanaka Ph.D (2001) p137 for definition.

Definition at line 291 of file KFitBase.h.

◆ m_D

CLHEP::HepMatrix m_D
protectedinherited

See J.Tanaka Ph.D (2001) p137 for definition.

Definition at line 266 of file KFitBase.h.

◆ m_d

CLHEP::HepMatrix m_d
protectedinherited

See J.Tanaka Ph.D (2001) p137 for definition.

Definition at line 268 of file KFitBase.h.

◆ m_E

CLHEP::HepMatrix m_E
protectedinherited

See J.Tanaka Ph.D (2001) p137 for definition.

Definition at line 279 of file KFitBase.h.

◆ m_ErrorCode

enum KFitError::ECode m_ErrorCode
protectedinherited

Error code.

Definition at line 243 of file KFitBase.h.

◆ m_FlagCorrelation

bool m_FlagCorrelation
protectedinherited

Flag whether a correlation among tracks exists.

Definition at line 306 of file KFitBase.h.

◆ m_FlagFitted

bool m_FlagFitted
protectedinherited

Flag to indicate if the fit is performed and succeeded.

Definition at line 245 of file KFitBase.h.

◆ m_FlagOverIteration

bool m_FlagOverIteration
protectedinherited

Flag whether the iteration count exceeds the limit.

Definition at line 308 of file KFitBase.h.

◆ m_InvariantMass

double m_InvariantMass
private

Invariant mass.

Definition at line 121 of file MassPointingVertexFitKFit.h.

◆ m_IsFixMass

std::vector<int> m_IsFixMass
private

Array of flags whether the track property is fixed at the mass.

Definition at line 123 of file MassPointingVertexFitKFit.h.

◆ m_lam

CLHEP::HepMatrix m_lam
protectedinherited

See J.Tanaka Ph.D (2001) p137 for definition.

Definition at line 276 of file KFitBase.h.

◆ m_lam0

CLHEP::HepMatrix m_lam0
protectedinherited

See J.Tanaka Ph.D (2001) p138 for definition.

Definition at line 283 of file KFitBase.h.

◆ m_MagneticField

double m_MagneticField
protectedinherited

Magnetic field.

Definition at line 311 of file KFitBase.h.

◆ m_NDF

int m_NDF
protectedinherited

NDF of the fit.

Definition at line 295 of file KFitBase.h.

◆ m_NecessaryTrackCount

int m_NecessaryTrackCount
protectedinherited

Number needed tracks to perform fit.

Definition at line 303 of file KFitBase.h.

◆ m_ProductionVertex

HepPoint3D m_ProductionVertex
private

Production vertex position.

Definition at line 119 of file MassPointingVertexFitKFit.h.

◆ m_property

CLHEP::HepMatrix m_property
protectedinherited

Container of charges and masses.

Definition at line 263 of file KFitBase.h.

◆ m_TrackCount

int m_TrackCount
protectedinherited

Number of tracks.

Definition at line 301 of file KFitBase.h.

◆ m_Tracks

std::vector<KFitTrack> m_Tracks
protectedinherited

Container of input tracks.

Definition at line 249 of file KFitBase.h.

◆ m_v

CLHEP::HepMatrix m_v
protectedinherited

See J.Tanaka Ph.D (2001) p137 for definition.

Definition at line 285 of file KFitBase.h.

◆ m_v_a

CLHEP::HepMatrix m_v_a
protectedinherited

See J.Tanaka Ph.D (2001) p137 for definition.

Definition at line 287 of file KFitBase.h.

◆ m_V_al_0

CLHEP::HepSymMatrix m_V_al_0
protectedinherited

See J.Tanaka Ph.D (2001) p137 for definition.

Definition at line 255 of file KFitBase.h.

◆ m_V_al_1

CLHEP::HepMatrix m_V_al_1
protectedinherited

See J.Tanaka Ph.D (2001) p138 for definition.

Definition at line 274 of file KFitBase.h.

◆ m_V_D

CLHEP::HepMatrix m_V_D
protectedinherited

See J.Tanaka Ph.D (2001) p138 for definition.

Definition at line 271 of file KFitBase.h.

◆ m_V_Dt

CLHEP::HepMatrix m_V_Dt
protectedinherited

See J.Tanaka Ph.D (2001) p138 for definition.

Definition at line 289 of file KFitBase.h.

◆ m_V_E

CLHEP::HepMatrix m_V_E
protectedinherited

See J.Tanaka Ph.D (2001) p138 for definition.

Definition at line 281 of file KFitBase.h.


The documentation for this class was generated from the following files: