LSSTApplications  19.0.0-14-gb0260a2+72efe9b372,20.0.0+7927753e06,20.0.0+8829bf0056,20.0.0+995114c5d2,20.0.0+b6f4b2abd1,20.0.0+bddc4f4cbe,20.0.0-1-g253301a+8829bf0056,20.0.0-1-g2b7511a+0d71a2d77f,20.0.0-1-g5b95a8c+7461dd0434,20.0.0-12-g321c96ea+23efe4bbff,20.0.0-16-gfab17e72e+fdf35455f6,20.0.0-2-g0070d88+ba3ffc8f0b,20.0.0-2-g4dae9ad+ee58a624b3,20.0.0-2-g61b8584+5d3db074ba,20.0.0-2-gb780d76+d529cf1a41,20.0.0-2-ged6426c+226a441f5f,20.0.0-2-gf072044+8829bf0056,20.0.0-2-gf1f7952+ee58a624b3,20.0.0-20-geae50cf+e37fec0aee,20.0.0-25-g3dcad98+544a109665,20.0.0-25-g5eafb0f+ee58a624b3,20.0.0-27-g64178ef+f1f297b00a,20.0.0-3-g4cc78c6+e0676b0dc8,20.0.0-3-g8f21e14+4fd2c12c9a,20.0.0-3-gbd60e8c+187b78b4b8,20.0.0-3-gbecbe05+48431fa087,20.0.0-38-ge4adf513+a12e1f8e37,20.0.0-4-g97dc21a+544a109665,20.0.0-4-gb4befbc+087873070b,20.0.0-4-gf910f65+5d3db074ba,20.0.0-5-gdfe0fee+199202a608,20.0.0-5-gfbfe500+d529cf1a41,20.0.0-6-g64f541c+d529cf1a41,20.0.0-6-g9a5b7a1+a1cd37312e,20.0.0-68-ga3f3dda+5fca18c6a4,20.0.0-9-g4aef684+e18322736b,w.2020.45
LSSTDataManagementBasePackage
Quadrupole.cc
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1 // -*- lsst-c++ -*-
2 
3 /*
4  * LSST Data Management System
5  * Copyright 2008, 2009, 2010 LSST Corporation.
6  *
7  * This product includes software developed by the
8  * LSST Project (http://www.lsst.org/).
9  *
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26 
27 namespace lsst {
28 namespace afw {
29 namespace geom {
30 namespace ellipses {
31 
32 BaseCore::Registrar<Quadrupole> Quadrupole::registrar;
33 
34 std::string Quadrupole::getName() const { return "Quadrupole"; }
35 
37  if (_matrix(0, 1) != _matrix(1, 0))
39  "Quadrupole matrix must be symmetric.");
40  if (getIxx() < 0 || getIyy() < 0)
42  "Quadrupole matrix cannot have negative diagonal elements.");
43  if (getDeterminant() < 0)
45  "Quadrupole matrix cannot have negative determinant.");
46 }
47 
48 void Quadrupole::readParameters(double const* iter) {
49  setIxx(*iter++);
50  setIyy(*iter++);
51  setIxy(*iter++);
52 }
53 
54 void Quadrupole::writeParameters(double* iter) const {
55  *iter++ = getIxx();
56  *iter++ = getIyy();
57  *iter++ = getIxy();
58 }
59 
60 Quadrupole::Quadrupole(double ixx, double iyy, double ixy, bool normalize) {
61  setIxx(ixx);
62  setIyy(iyy);
63  setIxy(ixy);
64  if (normalize) this->normalize();
65 }
66 
67 Quadrupole::Quadrupole(BaseCore::ParameterVector const& vector, bool normalize) {
68  setIxx(vector[IXX]);
69  setIyy(vector[IYY]);
70  setIxy(vector[IXY]);
71  if (normalize) this->normalize();
72 }
73 
74 Quadrupole::Quadrupole(Matrix const& matrix, bool normalize) : _matrix(matrix) {
75  if (normalize) this->normalize();
76 }
77 
78 void Quadrupole::_assignToQuadrupole(double& ixx, double& iyy, double& ixy) const {
79  ixx = getIxx();
80  iyy = getIyy();
81  ixy = getIxy();
82 }
83 
84 BaseCore::Jacobian Quadrupole::_dAssignToQuadrupole(double& ixx, double& iyy, double& ixy) const {
85  ixx = getIxx();
86  iyy = getIyy();
87  ixy = getIxy();
88  return Jacobian::Identity();
89 }
90 
91 void Quadrupole::_assignToAxes(double& a, double& b, double& theta) const {
93 }
94 
95 BaseCore::Jacobian Quadrupole::_dAssignToAxes(double& a, double& b, double& theta) const {
96  return BaseCore::_dAssignQuadrupoleToAxes(getIxx(), getIyy(), getIxy(), a, b, theta);
97 }
98 
99 void Quadrupole::_assignFromQuadrupole(double ixx, double iyy, double ixy) {
100  setIxx(ixx);
101  setIyy(iyy);
102  setIxy(ixy);
103 }
104 
105 BaseCore::Jacobian Quadrupole::_dAssignFromQuadrupole(double ixx, double iyy, double ixy) {
106  setIxx(ixx);
107  setIyy(iyy);
108  setIxy(ixy);
109  return Jacobian::Identity();
110 }
111 
112 void Quadrupole::_assignFromAxes(double a, double b, double theta) {
113  BaseCore::_assignAxesToQuadrupole(a, b, theta, _matrix(0, 0), _matrix(1, 1), _matrix(0, 1));
114  _matrix(1, 0) = _matrix(0, 1);
115 }
116 
117 BaseCore::Jacobian Quadrupole::_dAssignFromAxes(double a, double b, double theta) {
118  Jacobian r = BaseCore::_dAssignAxesToQuadrupole(a, b, theta, _matrix(0, 0), _matrix(1, 1), _matrix(0, 1));
119  _matrix(1, 0) = _matrix(0, 1);
120  return r;
121 }
122 } // namespace ellipses
123 } // namespace geom
124 } // namespace afw
125 } // namespace lsst
lsst::afw::geom::ellipses::Quadrupole::getIxx
double const getIxx() const
Definition: Quadrupole.h:54
lsst::afw::geom::ellipses::Quadrupole::setIxx
void setIxx(double ixx)
Definition: Quadrupole.h:55
lsst::afw::geom::ellipses::Quadrupole::setIyy
void setIyy(double iyy)
Definition: Quadrupole.h:58
std::string
STL class.
ellipses
Axes.h
lsst::afw::geom::ellipses::Quadrupole::_assignFromAxes
void _assignFromAxes(double a, double b, double theta) override
Return the size of the bounding box for the ellipse core.
Definition: Quadrupole.cc:112
lsst::afw::geom::ellipses::BaseCore::_dAssignAxesToQuadrupole
static Jacobian _dAssignAxesToQuadrupole(double a, double b, double theta, double &ixx, double &iyy, double &ixy)
Return the size of the bounding box for the ellipse core.
Definition: BaseCore.cc:232
lsst::afw
Definition: imageAlgorithm.dox:1
Quadrupole.h
lsst::afw::geom::ellipses::Quadrupole::getIxy
double const getIxy() const
Definition: Quadrupole.h:60
lsst::afw::geom::ellipses::Quadrupole::Quadrupole
Quadrupole(double ixx=1.0, double iyy=1.0, double ixy=0.0, bool normalize=false)
Construct from parameter values.
Definition: Quadrupole.cc:60
lsst::afw::geom::ellipses::Quadrupole::_dAssignFromAxes
Jacobian _dAssignFromAxes(double a, double b, double theta) override
Return the size of the bounding box for the ellipse core.
Definition: Quadrupole.cc:117
lsst::afw::geom::ellipses::Quadrupole::_assignToQuadrupole
void _assignToQuadrupole(double &ixx, double &iyy, double &ixy) const override
Return the size of the bounding box for the ellipse core.
Definition: Quadrupole.cc:78
lsst::afw::geom::ellipses::Quadrupole::Matrix
Eigen::Matrix< double, 2, 2, Eigen::DontAlign > Matrix
Matrix type for the matrix representation of Quadrupole parameters.
Definition: Quadrupole.h:52
lsst::afw::geom::ellipses::Quadrupole::IXY
@ IXY
Definition: Quadrupole.h:49
lsst::afw::geom::ellipses::BaseCore::_dAssignQuadrupoleToAxes
static Jacobian _dAssignQuadrupoleToAxes(double ixx, double iyy, double ixy, double &a, double &b, double &theta)
Return the size of the bounding box for the ellipse core.
Definition: BaseCore.cc:194
lsst::afw::geom::ellipses::Quadrupole::writeParameters
void writeParameters(double *iter) const override
Return the size of the bounding box for the ellipse core.
Definition: Quadrupole.cc:54
lsst::afw::geom::ellipses::Quadrupole::getName
std::string getName() const override
Return a string that identifies this parametrization.
Definition: Quadrupole.cc:34
lsst::afw::geom::ellipses::Quadrupole::setIxy
void setIxy(double ixy)
Definition: Quadrupole.h:61
lsst::afw::geom::ellipses::Quadrupole::getIyy
double const getIyy() const
Definition: Quadrupole.h:57
lsst::afw::geom::ellipses::BaseCore::ParameterVector
Eigen::Vector3d ParameterVector
Parameter vector type.
Definition: BaseCore.h:61
lsst::afw::geom::ellipses::Quadrupole::_assignFromQuadrupole
void _assignFromQuadrupole(double ixx, double iyy, double ixy) override
Return the size of the bounding box for the ellipse core.
Definition: Quadrupole.cc:99
lsst::afw::geom::ellipses::Quadrupole::_dAssignToAxes
Jacobian _dAssignToAxes(double &a, double &b, double &theta) const override
Return the size of the bounding box for the ellipse core.
Definition: Quadrupole.cc:95
b
table::Key< int > b
Definition: TransmissionCurve.cc:467
lsst
A base class for image defects.
Definition: imageAlgorithm.dox:1
LSST_EXCEPT
#define LSST_EXCEPT(type,...)
Create an exception with a given type.
Definition: Exception.h:48
lsst::afw::geom::ellipses::Quadrupole::IXX
@ IXX
Definition: Quadrupole.h:49
lsst::geom
Definition: AffineTransform.h:36
lsst::afw::geom::ellipses::BaseCore::Jacobian
Eigen::Matrix3d Jacobian
Parameter Jacobian matrix type.
Definition: BaseCore.h:64
lsst::afw::geom::ellipses::Quadrupole::_dAssignFromQuadrupole
Jacobian _dAssignFromQuadrupole(double ixx, double iyy, double ixy) override
Return the size of the bounding box for the ellipse core.
Definition: Quadrupole.cc:105
lsst.pex::exceptions::InvalidParameterError
Reports invalid arguments.
Definition: Runtime.h:66
lsst::afw::geom::ellipses::BaseCore::_assignAxesToQuadrupole
static void _assignAxesToQuadrupole(double a, double b, double theta, double &ixx, double &iyy, double &ixy)
Return the size of the bounding box for the ellipse core.
Definition: BaseCore.cc:219
a
table::Key< int > a
Definition: TransmissionCurve.cc:466
lsst::afw::geom::ellipses::Quadrupole::getDeterminant
double getDeterminant() const
Return the determinant of the matrix representation.
Definition: Quadrupole.h:83
lsst::afw::geom::ellipses::Quadrupole::normalize
void normalize() override
Put the parameters into a "standard form", and throw InvalidParameterError if they cannot be normaliz...
Definition: Quadrupole.cc:36
lsst::afw::geom::ellipses::Quadrupole::readParameters
void readParameters(double const *iter) override
Return the size of the bounding box for the ellipse core.
Definition: Quadrupole.cc:48
astshim.fitsChanContinued.iter
def iter(self)
Definition: fitsChanContinued.py:88
lsst::afw::geom::ellipses::Quadrupole::_assignToAxes
void _assignToAxes(double &a, double &b, double &theta) const override
Return the size of the bounding box for the ellipse core.
Definition: Quadrupole.cc:91
lsst::afw::geom::ellipses::BaseCore::_assignQuadrupoleToAxes
static void _assignQuadrupoleToAxes(double ixx, double iyy, double ixy, double &a, double &b, double &theta)
Return the size of the bounding box for the ellipse core.
Definition: BaseCore.cc:184
lsst::afw::geom::ellipses::Quadrupole::_dAssignToQuadrupole
Jacobian _dAssignToQuadrupole(double &ixx, double &iyy, double &ixy) const override
Return the size of the bounding box for the ellipse core.
Definition: Quadrupole.cc:84
lsst::afw::geom::ellipses::Quadrupole::IYY
@ IYY
Definition: Quadrupole.h:49