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
sipApproximation.cc
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1 /*
2  * Developed for the LSST Data Management System.
3  * This product includes software developed by the LSST Project
4  * (https://www.lsst.org).
5  * See the COPYRIGHT file at the top-level directory of this distribution
6  * for details of code ownership.
7  *
8  * This program is free software: you can redistribute it and/or modify
9  * it under the terms of the GNU General Public License as published by
10  * the Free Software Foundation, either version 3 of the License, or
11  * (at your option) any later version.
12  *
13  * This program is distributed in the hope that it will be useful,
14  * but WITHOUT ANY WARRANTY; without even the implied warranty of
15  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16  * GNU General Public License for more details.
17  *
18  * You should have received a copy of the GNU General Public License
19  * along with this program. If not, see <https://www.gnu.org/licenses/>.
20  */
21 
22 #include "pybind11/pybind11.h"
23 #include "pybind11/stl.h"
24 #include "pybind11/eigen.h"
25 
26 #include "ndarray/pybind11.h"
27 
29 
30 namespace py = pybind11;
31 using namespace pybind11::literals;
32 
33 namespace lsst { namespace afw { namespace geom { namespace {
34 
35 using PySipApproximation = py::class_<SipApproximation, std::shared_ptr<SipApproximation>>;
36 
37 PYBIND11_MODULE(sipApproximation, mod) {
38  py::module::import("lsst.geom");
39  py::module::import("lsst.afw.geom.transform");
40 
41  PySipApproximation cls(mod, "SipApproximation");
42 
43  cls.def(
44  py::init<
46  lsst::geom::Point2D const &,
47  Eigen::MatrixXd const &,
48  lsst::geom::Box2D const &,
49  lsst::geom::Extent2I const &,
50  int,
51  bool,
52  double
53  >(),
54  "pixelToIwc"_a, "crpix"_a, "cd"_a, "bbox"_a, "gridShape"_a, "order"_a,
55  "useInverse"_a=true, "svdThreshold"_a=-1
56  );
57 
58  cls.def(
59  py::init<
61  lsst::geom::Point2D const &,
62  Eigen::MatrixXd const &,
63  lsst::geom::Box2D const &,
64  lsst::geom::Extent2I const &,
65  ndarray::Array<double const, 2> const &,
66  ndarray::Array<double const, 2> const &,
67  ndarray::Array<double const, 2> const &,
68  ndarray::Array<double const, 2> const &,
69  bool
70  >(),
71  "pixelToIwc"_a, "crpix"_a, "cd"_a, "bbox"_a, "gridShape"_a,
72  "a"_a, "b"_a, "ap"_a, "bp"_a, "useInverse"_a=true
73  );
74 
75  using ScalarTransform = lsst::geom::Point2D (SipApproximation::*)(lsst::geom::Point2D const &) const;
76  using VectorTransform = std::vector<lsst::geom::Point2D> (SipApproximation::*)(
77  std::vector<lsst::geom::Point2D> const &) const;
78 
79  cls.def("getOrder", &SipApproximation::getOrder);
80  cls.def("getA", py::overload_cast<int, int>(&SipApproximation::getA, py::const_), "p"_a, "q"_a);
81  cls.def("getB", py::overload_cast<int, int>(&SipApproximation::getB, py::const_), "p"_a, "q"_a);
82  cls.def("getAP", py::overload_cast<int, int>(&SipApproximation::getAP, py::const_), "p"_a, "q"_a);
83  cls.def("getBP", py::overload_cast<int, int>(&SipApproximation::getBP, py::const_), "p"_a, "q"_a);
84  cls.def("getA", py::overload_cast<>(&SipApproximation::getA, py::const_));
85  cls.def("getB", py::overload_cast<>(&SipApproximation::getB, py::const_));
86  cls.def("getAP", py::overload_cast<>(&SipApproximation::getAP, py::const_));
87  cls.def("getBP", py::overload_cast<>(&SipApproximation::getBP, py::const_));
88  cls.def("applyForward", (ScalarTransform)&SipApproximation::applyForward);
89  cls.def("applyForward", (VectorTransform)&SipApproximation::applyForward);
90  cls.def("applyInverse", (ScalarTransform)&SipApproximation::applyInverse);
91  cls.def("applyInverse", (VectorTransform)&SipApproximation::applyInverse);
92  cls.def("getGridStep", &SipApproximation::getGridStep);
93  cls.def("getGridShape", &SipApproximation::getGridShape);
94  cls.def("getBBox", &SipApproximation::getBBox);
95  cls.def("getPixelOrigin", &SipApproximation::getPixelOrigin);
96  cls.def("getCdMatrix", &SipApproximation::getCdMatrix);
97  cls.def("updateGrid", &SipApproximation::updateGrid, "shape"_a);
98  cls.def("refineGrid", &SipApproximation::refineGrid, "factor"_a=2);
99  cls.def("fit", &SipApproximation::fit, "order"_a, "svdThreshold"_a=-1);
100  cls.def("computeMaxDeviation", &SipApproximation::computeMaxDeviation);
101 }
102 
103 }}}} // namespace lsst::afw::<anonymous>
std::shared_ptr
STL class.
std::vector
STL class.
lsst::afw
Definition: imageAlgorithm.dox:1
lsst::geom::Point2D
Point< double, 2 > Point2D
Definition: Point.h:324
SipApproximation.h
lsst::afw::geom.transform.transformContinued.cls
cls
Definition: transformContinued.py:33
lsst
A base class for image defects.
Definition: imageAlgorithm.dox:1
lsst::geom
Definition: AffineTransform.h:36
lsst::geom::Point< double, 2 >
pybind11
Definition: _GenericMap.cc:40
lsst::geom::Box2D
A floating-point coordinate rectangle geometry.
Definition: Box.h:413
lsst::utils.tests.init
def init()
Definition: tests.py:59
lsst::geom::Extent< int, 2 >
lsst::afw::cameraGeom::PYBIND11_MODULE
PYBIND11_MODULE(camera, mod)
Definition: camera.cc:133