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
PolynomialTransform.h
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1 // -*- LSST-C++ -*-
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3 /*
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24 #ifndef LSST_MEAS_ASTROM_PolynomialTransform_INCLUDED
25 #define LSST_MEAS_ASTROM_PolynomialTransform_INCLUDED
26 
27 #include "ndarray/eigen.h"
28 #include "lsst/geom/Point.h"
30 
31 namespace lsst {
32 namespace meas {
33 namespace astrom {
34 
35 class SipForwardTransform;
36 class SipReverseTransform;
37 class ScaledPolynomialTransform;
38 
46 public:
51 
56 
61 
72  PolynomialTransform(ndarray::Array<double const, 2, 0> const& xCoeffs,
73  ndarray::Array<double const, 2, 0> const& yCoeffs);
74 
81 
88 
95 
102 
105 
107  int getOrder() const { return _xCoeffs.getSize<0>() - 1; }
108 
115  ndarray::Array<double const, 2, 2> getXCoeffs() const { return _xCoeffs.shallow(); }
116 
123  ndarray::Array<double const, 2, 2> getYCoeffs() const { return _yCoeffs.shallow(); }
124 
129 
133  geom::Point2D operator()(geom::Point2D const& in) const;
134 
135 private:
136  PolynomialTransform(int order);
137 
141  friend class SipForwardTransform;
142  friend class SipReverseTransform;
144 
145  ndarray::Array<double, 2, 2> _xCoeffs;
146  ndarray::Array<double, 2, 2> _yCoeffs;
147  mutable Eigen::VectorXd _u; // workspace for operator() and linearize
148  mutable Eigen::VectorXd _v;
149 };
150 
158 public:
166 
174  static ScaledPolynomialTransform convert(SipForwardTransform const& sipForward);
175 
183  static ScaledPolynomialTransform convert(SipReverseTransform const& sipReverse);
184 
196  geom::AffineTransform const& outputScalingInverse);
197 
199 
201 
203 
205 
207 
209  PolynomialTransform const& getPoly() const { return _poly; }
210 
212  geom::AffineTransform const& getInputScaling() const { return _inputScaling; }
213 
215  geom::AffineTransform const& getOutputScalingInverse() const { return _outputScalingInverse; }
216 
221 
225  geom::Point2D operator()(geom::Point2D const& in) const;
226 
227 private:
229  PolynomialTransform _poly;
230  geom::AffineTransform _inputScaling;
231  geom::AffineTransform _outputScalingInverse;
232 };
233 
241 
249 
250 } // namespace astrom
251 } // namespace meas
252 } // namespace lsst
253 
254 #endif // !LSST_MEAS_ASTROM_PolynomialTransform_INCLUDED
lsst::meas::astrom::PolynomialTransform::convert
static PolynomialTransform convert(ScaledPolynomialTransform const &other)
Convert a ScaledPolynomialTransform to an equivalent PolynomialTransform.
Definition: PolynomialTransform.cc:36
lsst::meas::astrom::ScaledPolynomialTransform::linearize
geom::AffineTransform linearize(geom::Point2D const &in) const
Return an approximate affine transform at the given point.
Definition: PolynomialTransform.cc:206
lsst::meas::astrom::ScaledPolynomialTransform::swap
void swap(ScaledPolynomialTransform &other)
Definition: PolynomialTransform.cc:200
lsst::meas::astrom::ScaledPolynomialTransform::operator=
ScaledPolynomialTransform & operator=(ScaledPolynomialTransform const &other)=default
lsst::meas::astrom::PolynomialTransform::getOrder
int getOrder() const
Return the order of the polynomials.
Definition: PolynomialTransform.h:107
AffineTransform.h
lsst::meas::astrom::ScaledPolynomialTransform::ScaledPolynomialTransform
ScaledPolynomialTransform(ScaledPolynomialTransform &&other)=default
lsst::meas::astrom::PolynomialTransform::getYCoeffs
ndarray::Array< double const, 2, 2 > getYCoeffs() const
2-D polynomial coefficients that compute the output x coordinate.
Definition: PolynomialTransform.h:123
lsst::meas::astrom::ScaledPolynomialTransformFitter
A fitter class for scaled polynomial transforms.
Definition: ScaledPolynomialTransformFitter.h:101
lsst::meas::astrom::ScaledPolynomialTransform::getOutputScalingInverse
geom::AffineTransform const & getOutputScalingInverse() const
Return the affine transform applied to points after the polynomial transform.
Definition: PolynomialTransform.h:215
lsst::meas::astrom::ScaledPolynomialTransform::convert
static ScaledPolynomialTransform convert(PolynomialTransform const &poly)
Convert a PolynomialTransform to an equivalent ScaledPolynomialTransform.
Definition: PolynomialTransform.cc:172
lsst::meas::astrom::ScaledPolynomialTransform
A 2-d coordinate transform represented by a lazy composition of an AffineTransform,...
Definition: PolynomialTransform.h:157
lsst::meas::astrom::SipForwardTransform
A transform that maps pixel coordinates to intermediate world coordinates according to the SIP conven...
Definition: SipTransform.h:136
lsst::geom::AffineTransform
An affine coordinate transformation consisting of a linear transformation and an offset.
Definition: AffineTransform.h:75
Point.h
lsst::meas::astrom::ScaledPolynomialTransform::ScaledPolynomialTransform
ScaledPolynomialTransform(ScaledPolynomialTransform const &other)=default
lsst::meas::astrom::PolynomialTransform::operator=
PolynomialTransform & operator=(PolynomialTransform const &other)
Copy assignment.
Definition: PolynomialTransform.cc:107
lsst::meas::astrom::PolynomialTransform::operator()
geom::Point2D operator()(geom::Point2D const &in) const
Apply the transform to a point.
Definition: PolynomialTransform.cc:157
other
ItemVariant const * other
Definition: Schema.cc:56
lsst::meas::astrom::PolynomialTransform::linearize
geom::AffineTransform linearize(geom::Point2D const &in) const
Return an approximate affine transform at the given point.
Definition: PolynomialTransform.cc:129
lsst::meas::astrom::PolynomialTransform
A 2-d coordinate transform represented by a pair of standard polynomials (one for each coordinate).
Definition: PolynomialTransform.h:45
lsst
A base class for image defects.
Definition: imageAlgorithm.dox:1
lsst::meas::astrom::ScaledPolynomialTransform::getPoly
PolynomialTransform const & getPoly() const
Return the polynomial transform applied after the input scaling.
Definition: PolynomialTransform.h:209
lsst::meas::astrom::PolynomialTransform::PolynomialTransform
PolynomialTransform(ndarray::Array< double const, 2, 0 > const &xCoeffs, ndarray::Array< double const, 2, 0 > const &yCoeffs)
Construct a new transform from existing coefficient arrays.
Definition: PolynomialTransform.cc:74
lsst::geom::polynomials
Definition: Basis1d.h:26
lsst::meas::astrom::ScaledPolynomialTransform::operator()
geom::Point2D operator()(geom::Point2D const &in) const
Apply the transform to a point.
Definition: PolynomialTransform.cc:210
lsst::meas::astrom::ScaledPolynomialTransform::ScaledPolynomialTransform
ScaledPolynomialTransform(PolynomialTransform const &poly, geom::AffineTransform const &inputScaling, geom::AffineTransform const &outputScalingInverse)
Construct a new ScaledPolynomialTransform from its constituents.
Definition: PolynomialTransform.cc:195
lsst::geom::Point< double, 2 >
lsst::meas::astrom::PolynomialTransform::getXCoeffs
ndarray::Array< double const, 2, 2 > getXCoeffs() const
2-D polynomial coefficients that compute the output x coordinate.
Definition: PolynomialTransform.h:115
lsst::meas::astrom::ScaledPolynomialTransform::operator=
ScaledPolynomialTransform & operator=(ScaledPolynomialTransform &&other)=default
lsst::meas::astrom::PolynomialTransform::compose
friend PolynomialTransform compose(geom::AffineTransform const &t1, PolynomialTransform const &t2)
Return a PolynomialTransform that is equivalent to the composition t1(t2())
Definition: PolynomialTransform.cc:214
lsst::meas::astrom::SipReverseTransform
A transform that maps intermediate world coordinates to pixel coordinates according to the SIP conven...
Definition: SipTransform.h:246
lsst::meas::astrom::ScaledPolynomialTransform::getInputScaling
geom::AffineTransform const & getInputScaling() const
Return the first affine transform applied to input points.
Definition: PolynomialTransform.h:212
lsst::meas::astrom::PolynomialTransform::swap
void swap(PolynomialTransform &other)
Lightweight swap.
Definition: PolynomialTransform.cc:122
lsst::meas::astrom::compose
PolynomialTransform compose(geom::AffineTransform const &t1, PolynomialTransform const &t2)
Return a PolynomialTransform that is equivalent to the composition t1(t2())
Definition: PolynomialTransform.cc:214