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
_circle.cc
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1 /*
2  * LSST Data Management System
3  * See COPYRIGHT file at the top of the source tree.
4  *
5  * This product includes software developed by the
6  * LSST Project (http://www.lsst.org/).
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
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13  * This program is distributed in the hope that it will be useful,
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16  * GNU General Public License for more details.
17  *
18  * You should have received a copy of the LSST License Statement and
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20  * see <https://www.lsstcorp.org/LegalNotices/>.
21  */
22 #include "pybind11/pybind11.h"
23 
24 #include "lsst/sphgeom/python.h"
25 
26 #include "lsst/sphgeom/Box.h"
27 #include "lsst/sphgeom/Circle.h"
29 #include "lsst/sphgeom/Ellipse.h"
30 #include "lsst/sphgeom/Region.h"
32 
35 
36 namespace py = pybind11;
37 using namespace pybind11::literals;
38 
39 namespace lsst {
40 namespace sphgeom {
41 
42 namespace {
44  uint8_t const *buffer = reinterpret_cast<uint8_t const *>(
45  PYBIND11_BYTES_AS_STRING(bytes.ptr()));
46  size_t n = static_cast<size_t>(PYBIND11_BYTES_SIZE(bytes.ptr()));
47  return Circle::decode(buffer, n);
48 }
49 }
50 
51 template <>
53  cls.attr("TYPE_CODE") = py::int_(Circle::TYPE_CODE);
54 
55  cls.def_static("empty", &Circle::empty);
56  cls.def_static("full", &Circle::full);
57  cls.def_static("squaredChordLengthFor", &Circle::squaredChordLengthFor,
58  "openingAngle"_a);
59  cls.def_static("openingAngleFor", &Circle::openingAngleFor,
60  "squaredChordLength"_a);
61 
62  cls.def(py::init<>());
63  cls.def(py::init<UnitVector3d const &>(), "center"_a);
64  cls.def(py::init<UnitVector3d const &, Angle>(), "center"_a, "angle"_a);
65  cls.def(py::init<UnitVector3d const &, double>(), "center"_a,
66  "squaredChordLength"_a);
67  cls.def(py::init<Circle const &>(), "circle"_a);
68 
69  cls.def("__eq__", &Circle::operator==, py::is_operator());
70  cls.def("__ne__", &Circle::operator!=, py::is_operator());
71  cls.def("__contains__",
72  (bool (Circle::*)(Circle const &) const) & Circle::contains,
73  py::is_operator());
74  // Rewrap this base class method since there are overloads in this subclass
75  cls.def("__contains__",
76  (bool (Circle::*)(UnitVector3d const &) const) & Circle::contains,
77  py::is_operator());
78 
79  cls.def("isEmpty", &Circle::isEmpty);
80  cls.def("isFull", &Circle::isFull);
81  cls.def("getCenter", &Circle::getCenter);
82  cls.def("getSquaredChordLength", &Circle::getSquaredChordLength);
83  cls.def("getOpeningAngle", &Circle::getOpeningAngle);
84  cls.def("contains",
85  (bool (Circle::*)(Circle const &) const) & Circle::contains);
86  // Rewrap this base class method since there are overloads in this subclass
87  cls.def("contains",
88  (bool (Circle::*)(UnitVector3d const &) const) & Circle::contains);
89 
90  cls.def("isDisjointFrom",
91  (bool (Circle::*)(UnitVector3d const &) const) &
92  Circle::isDisjointFrom);
93  cls.def("isDisjointFrom",
94  (bool (Circle::*)(Circle const &) const) & Circle::isDisjointFrom);
95  cls.def("intersects",
96  (bool (Circle::*)(UnitVector3d const &) const) &
97  Circle::intersects);
98  cls.def("intersects",
99  (bool (Circle::*)(Circle const &) const) & Circle::intersects);
100  cls.def("isWithin",
101  (bool (Circle::*)(UnitVector3d const &) const) & Circle::isWithin);
102  cls.def("isWithin",
103  (bool (Circle::*)(Circle const &) const) & Circle::isWithin);
104  cls.def("clipTo",
105  (Circle & (Circle::*)(UnitVector3d const &)) & Circle::clipTo);
106  cls.def("clipTo", (Circle & (Circle::*)(Circle const &)) & Circle::clipTo);
107  cls.def("clippedTo",
108  (Circle(Circle::*)(UnitVector3d const &) const) &
109  Circle::clippedTo);
110  cls.def("clippedTo",
111  (Circle(Circle::*)(Circle const &) const) & Circle::clippedTo);
112  cls.def("expandTo",
113  (Circle & (Circle::*)(UnitVector3d const &)) & Circle::expandTo);
114  cls.def("expandTo",
115  (Circle & (Circle::*)(Circle const &)) & Circle::expandTo);
116  cls.def("expandedTo",
117  (Circle(Circle::*)(UnitVector3d const &) const) &
118  Circle::expandedTo);
119  cls.def("expandedTo",
120  (Circle(Circle::*)(Circle const &) const) & Circle::expandedTo);
121  cls.def("dilateBy", &Circle::dilateBy, "radius"_a);
122  cls.def("dilatedBy", &Circle::dilatedBy, "radius"_a);
123  cls.def("erodeBy", &Circle::erodeBy, "radius"_a);
124  cls.def("erodedBy", &Circle::erodedBy, "radius"_a);
125  cls.def("getArea", &Circle::getArea);
126  cls.def("complement", &Circle::complement);
127  cls.def("complemented", &Circle::complemented);
128 
129  // Note that the Region interface has already been wrapped.
130 
131  // The lambda is necessary for now; returning the unique pointer
132  // directly leads to incorrect results and crashes.
133  cls.def_static("decode",
134  [](py::bytes bytes) { return decode(bytes).release(); },
135  "bytes"_a);
136 
137  cls.def("__str__", [](Circle const &self) {
138  return py::str("Circle({!s}, {!s})")
139  .format(self.getCenter(), self.getOpeningAngle());
140  });
141  cls.def("__repr__", [](Circle const &self) {
142  return py::str("Circle({!r}, {!r})")
143  .format(self.getCenter(), self.getOpeningAngle());
144  });
145  cls.def(py::pickle(
146  [](const Circle &self) { return python::encode(self); },
147  [](py::bytes bytes) { return decode(bytes).release(); }));
148 }
149 
150 } // sphgeom
151 } // lsst
Ellipse.h
This file declares a class for representing elliptical regions on the unit sphere.
Region.h
This file defines an interface for spherical regions.
lsst::sphgeom::Region
Region is a minimal interface for 2-dimensional regions on the unit sphere.
Definition: Region.h:79
Box.h
This file declares a class for representing longitude/latitude angle boxes on the unit sphere.
UnitVector3d.h
This file declares a class for representing unit vectors in ℝ³.
python.h
Circle.h
This file declares a class for representing circular regions on the unit sphere.
lsst::afw::geom.transform.transformContinued.cls
cls
Definition: transformContinued.py:33
lsst::sphgeom::UnitVector3d
UnitVector3d is a unit vector in ℝ³ with components stored in double precision.
Definition: UnitVector3d.h:55
astshim.fitsChanContinued.contains
def contains(self, name)
Definition: fitsChanContinued.py:127
lsst
A base class for image defects.
Definition: imageAlgorithm.dox:1
bytes
table::Key< table::Array< std::uint8_t > > bytes
Definition: Transform.cc:199
relationship.h
utils.h
pybind11
Definition: _GenericMap.cc:40
lsst::sphgeom::Circle
Circle is a circular region on the unit sphere that contains its boundary.
Definition: Circle.h:46
std::unique_ptr
STL class.
ConvexPolygon.h
This file declares a class for representing convex polygons with great circle edges on the unit spher...
lsst::sphgeom::defineClass
void defineClass(py::class_< Circle, std::unique_ptr< Circle >, Region > &cls)
Definition: _circle.cc:52