LSST Applications  21.0.0-147-g0e635eb1+1acddb5be5,22.0.0+052faf71bd,22.0.0+1ea9a8b2b2,22.0.0+6312710a6c,22.0.0+729191ecac,22.0.0+7589c3a021,22.0.0+9f079a9461,22.0.1-1-g7d6de66+b8044ec9de,22.0.1-1-g87000a6+536b1ee016,22.0.1-1-g8e32f31+6312710a6c,22.0.1-10-gd060f87+016f7cdc03,22.0.1-12-g9c3108e+df145f6f68,22.0.1-16-g314fa6d+c825727ab8,22.0.1-19-g93a5c75+d23f2fb6d8,22.0.1-19-gb93eaa13+aab3ef7709,22.0.1-2-g8ef0a89+b8044ec9de,22.0.1-2-g92698f7+9f079a9461,22.0.1-2-ga9b0f51+052faf71bd,22.0.1-2-gac51dbf+052faf71bd,22.0.1-2-gb66926d+6312710a6c,22.0.1-2-gcb770ba+09e3807989,22.0.1-20-g32debb5+b8044ec9de,22.0.1-23-gc2439a9a+fb0756638e,22.0.1-3-g496fd5d+09117f784f,22.0.1-3-g59f966b+1e6ba2c031,22.0.1-3-g849a1b8+f8b568069f,22.0.1-3-gaaec9c0+c5c846a8b1,22.0.1-32-g5ddfab5d3+60ce4897b0,22.0.1-4-g037fbe1+64e601228d,22.0.1-4-g8623105+b8044ec9de,22.0.1-5-g096abc9+d18c45d440,22.0.1-5-g15c806e+57f5c03693,22.0.1-7-gba73697+57f5c03693,master-g6e05de7fdc+c1283a92b8,master-g72cdda8301+729191ecac,w.2021.39
LSST Data Management Base Package
_skyWcs.cc
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1 /*
2  * This file is part of afw.
3  *
4  * Developed for the LSST Data Management System.
5  * This product includes software developed by the LSST Project
6  * (https://www.lsst.org).
7  * See the COPYRIGHT file at the top-level directory of this distribution
8  * for details of code ownership.
9  *
10  * This program is free software: you can redistribute it and/or modify
11  * it under the terms of the GNU General Public License as published by
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17  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18  * GNU General Public License for more details.
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23 
24 #include "pybind11/pybind11.h"
25 #include <lsst/utils/python.h>
26 #include "pybind11/eigen.h"
27 
28 #include <memory>
29 
30 #include "astshim.h"
31 #include "Eigen/Core"
32 #include "pybind11/stl.h"
33 #include "ndarray/pybind11.h"
34 
35 #include "lsst/geom.h"
38 #include "lsst/afw/geom/SkyWcs.h"
39 #include "lsst/afw/table/io/python.h" // for addPersistableMethods
40 
41 namespace py = pybind11;
42 using namespace py::literals;
43 
44 namespace lsst {
45 namespace afw {
46 namespace geom {
47 namespace {
48 
49 void declareSkyWcs(lsst::utils::python::WrapperCollection &wrappers) {
50  wrappers.wrap([](auto &mod) {
51  mod.def("makeCdMatrix", makeCdMatrix, "scale"_a, "orientation"_a = 0 * lsst::geom::degrees,
52  "flipX"_a = false);
53  mod.def("makeFlippedWcs", makeFlippedWcs, "wcs"_a, "flipLR"_a, "flipTB"_a, "center"_a);
54  mod.def("makeModifiedWcs", makeModifiedWcs, "pixelTransform"_a, "wcs"_a, "modifyActualPixels"_a);
55  mod.def("makeSkyWcs",
57  Eigen::Matrix2d const &, std::string const &))makeSkyWcs,
58  "crpix"_a, "crval"_a, "cdMatrix"_a, "projection"_a = "TAN");
59  mod.def("makeSkyWcs", (std::shared_ptr<SkyWcs>(*)(daf::base::PropertySet &, bool))makeSkyWcs,
60  "metadata"_a, "strip"_a = false);
61  mod.def("makeSkyWcs",
64  "pixelsToFieldAngle"_a, "orientation"_a, "flipX"_a, "boresight"_a, "projection"_a = "TAN");
65  mod.def("makeTanSipWcs",
67  Eigen::Matrix2d const &, Eigen::MatrixXd const &,
68  Eigen::MatrixXd const &))makeTanSipWcs,
69  "crpix"_a, "crval"_a, "cdMatrix"_a, "sipA"_a, "sipB"_a);
70  mod.def("makeTanSipWcs",
72  Eigen::Matrix2d const &, Eigen::MatrixXd const &,
73  Eigen::MatrixXd const &, Eigen::MatrixXd const &,
74  Eigen::MatrixXd const &))makeTanSipWcs,
75  "crpix"_a, "crval"_a, "cdMatrix"_a, "sipA"_a, "sipB"_a, "sipAp"_a, "sipBp"_a);
76  mod.def("makeWcsPairTransform", makeWcsPairTransform, "src"_a, "dst"_a);
77  mod.def("getIntermediateWorldCoordsToSky", getIntermediateWorldCoordsToSky, "wcs"_a,
78  "simplify"_a = true);
79  mod.def("getPixelToIntermediateWorldCoords", getPixelToIntermediateWorldCoords, "wcs"_a,
80  "simplify"_a = true);
81  });
82  wrappers.wrapType(
83  py::class_<SkyWcs, std::shared_ptr<SkyWcs>, typehandling::Storable>(wrappers.module, "SkyWcs"),
84  [](auto &mod, auto &cls) {
85  cls.def(py::init<daf::base::PropertySet &, bool>(), "metadata"_a, "strip"_a = false);
86  cls.def(py::init<ast::FrameDict const &>(), "frameDict"_a);
87 
88  cls.def("__eq__", &SkyWcs::operator==, py::is_operator());
89  cls.def("__ne__", &SkyWcs::operator!=, py::is_operator());
90 
91  table::io::python::addPersistableMethods<SkyWcs>(cls);
92 
93  cls.def("copyAtShiftedPixelOrigin", &SkyWcs::copyAtShiftedPixelOrigin, "shift"_a);
94  cls.def("getFitsMetadata", &SkyWcs::getFitsMetadata, "precise"_a = false);
95  cls.def("getPixelScale",
96  (lsst::geom::Angle(SkyWcs::*)(lsst::geom::Point2D const &) const) &
97  SkyWcs::getPixelScale,
98  "pixel"_a);
99  cls.def("getPixelScale", (lsst::geom::Angle(SkyWcs::*)() const) & SkyWcs::getPixelScale);
100  cls.def("getPixelOrigin", &SkyWcs::getPixelOrigin);
101  cls.def("getSkyOrigin", &SkyWcs::getSkyOrigin);
102  cls.def("getCdMatrix",
103  (Eigen::Matrix2d(SkyWcs::*)(lsst::geom::Point2D const &) const) & SkyWcs::getCdMatrix,
104  "pixel"_a);
105  cls.def("getCdMatrix", (Eigen::Matrix2d(SkyWcs::*)() const) & SkyWcs::getCdMatrix);
106  cls.def("getTanWcs", &SkyWcs::getTanWcs, "pixel"_a);
107  cls.def("getFrameDict", [](SkyWcs const &self) { return self.getFrameDict()->copy(); });
108  cls.def("getTransform", &SkyWcs::getTransform);
109 
110  cls.def_property_readonly("isFits", &SkyWcs::isFits);
111  cls.def_property_readonly("isFlipped", &SkyWcs::isFlipped);
112  cls.def("linearizePixelToSky",
114  lsst::geom::AngleUnit const &) const) &
115  SkyWcs::linearizePixelToSky,
116  "coord"_a, "skyUnit"_a);
117  cls.def("linearizePixelToSky",
119  lsst::geom::AngleUnit const &) const) &
120  SkyWcs::linearizePixelToSky,
121  "coord"_a, "skyUnit"_a);
122  cls.def("linearizeSkyToPixel",
124  lsst::geom::AngleUnit const &) const) &
125  SkyWcs::linearizeSkyToPixel,
126  "coord"_a, "skyUnit"_a);
127  cls.def("linearizeSkyToPixel",
129  lsst::geom::AngleUnit const &) const) &
130  SkyWcs::linearizeSkyToPixel,
131  "coord"_a, "skyUnit"_a);
132  cls.def("pixelToSky",
133  (lsst::geom::SpherePoint(SkyWcs::*)(lsst::geom::Point2D const &) const) &
134  SkyWcs::pixelToSky,
135  "pixel"_a);
136  cls.def("pixelToSky",
137  (lsst::geom::SpherePoint(SkyWcs::*)(double, double) const) & SkyWcs::pixelToSky,
138  "x"_a, "y"_a);
139  cls.def("pixelToSky",
141  std::vector<lsst::geom::Point2D> const &) const) &
142  SkyWcs::pixelToSky,
143  "pixel"_a);
144  cls.def("skyToPixel",
145  (lsst::geom::Point2D(SkyWcs::*)(lsst::geom::SpherePoint const &) const) &
146  SkyWcs::skyToPixel,
147  "sky"_a);
148  cls.def("skyToPixel",
150  std::vector<lsst::geom::SpherePoint> const &) const) &
151  SkyWcs::skyToPixel,
152  "sky"_a);
153  // Do not wrap getShortClassName because it returns the name of the class;
154  // use `<class>.__name__` or `type(<instance>).__name__` instead.
155  // Do not wrap readStream or writeStream because C++ streams are not easy to wrap.
156  cls.def_static("readString", &SkyWcs::readString);
157  cls.def("writeString", &SkyWcs::writeString);
158 
159  utils::python::addOutputOp(cls, "__str__");
160  // For repr, we could instead call writeString for the very long AST Frame/Mapping output.
161  utils::python::addOutputOp(cls, "__repr__");
162  });
163 }
164 } // namespace
165 void wrapSkyWcs(lsst::utils::python::WrapperCollection &wrappers) {
166  wrappers.addInheritanceDependency("lsst.afw.table.io");
167  wrappers.addInheritanceDependency("lsst.afw.typehandling");
168  wrappers.addSignatureDependency("astshim");
169  declareSkyWcs(wrappers);
170 }
171 } // namespace geom
172 } // namespace afw
173 } // namespace lsst
An affine coordinate transformation consisting of a linear transformation and an offset.
A class representing an angle.
Definition: Angle.h:127
A class used to convert scalar POD types such as double to Angle.
Definition: Angle.h:70
Point in an unspecified spherical coordinate system.
Definition: SpherePoint.h:57
std::shared_ptr< SkyWcs > makeSkyWcs(daf::base::PropertySet &metadata, bool strip=false)
Construct a SkyWcs from FITS keywords.
Definition: SkyWcs.cc:521
std::shared_ptr< TransformPoint2ToPoint2 > getPixelToIntermediateWorldCoords(SkyWcs const &wcs, bool simplify=true)
Return a transform from pixel coordinates to intermediate world coordinates.
Definition: SkyWcs.cc:559
std::shared_ptr< SkyWcs > makeTanSipWcs(lsst::geom::Point2D const &crpix, lsst::geom::SpherePoint const &crval, Eigen::Matrix2d const &cdMatrix, Eigen::MatrixXd const &sipA, Eigen::MatrixXd const &sipB)
Construct a TAN-SIP SkyWcs with forward SIP distortion terms and an iterative inverse.
Definition: SkyWcs.cc:538
Eigen::Matrix2d makeCdMatrix(lsst::geom::Angle const &scale, lsst::geom::Angle const &orientation=0 *lsst::geom::degrees, bool flipX=false)
Make a WCS CD matrix.
Definition: SkyWcs.cc:133
std::shared_ptr< TransformPoint2ToSpherePoint > getIntermediateWorldCoordsToSky(SkyWcs const &wcs, bool simplify=true)
Return a transform from intermediate world coordinates to sky.
Definition: SkyWcs.cc:553
std::shared_ptr< SkyWcs > makeModifiedWcs(TransformPoint2ToPoint2 const &pixelTransform, SkyWcs const &wcs, bool modifyActualPixels)
Create a new SkyWcs whose pixels are transformed by pixelTransform, as described below.
Definition: SkyWcs.cc:486
void wrapSkyWcs(lsst::utils::python::WrapperCollection &)
Definition: _skyWcs.cc:165
std::shared_ptr< TransformPoint2ToPoint2 > makeWcsPairTransform(SkyWcs const &src, SkyWcs const &dst)
A Transform obtained by putting two SkyWcs objects "back to back".
Definition: SkyWcs.cc:146
Transform< Point2Endpoint, Point2Endpoint > TransformPoint2ToPoint2
Definition: Transform.h:300
std::shared_ptr< SkyWcs > makeFlippedWcs(SkyWcs const &wcs, bool flipLR, bool flipTB, lsst::geom::Point2D const &center)
Return a copy of a FITS-WCS with pixel positions flipped around a specified center.
Definition: SkyWcs.cc:467
void addOutputOp(PyClass &cls, std::string const &method)
Add __str__ or __repr__ method implemented by operator<<.
Definition: python.h:87
constexpr AngleUnit degrees
constant with units of degrees
Definition: Angle.h:109
A base class for image defects.