LSST Applications  21.0.0+04719a4bac,21.0.0-1-ga51b5d4+f5e6047307,21.0.0-11-g2b59f77+a9c1acf22d,21.0.0-11-ga42c5b2+86977b0b17,21.0.0-12-gf4ce030+76814010d2,21.0.0-13-g1721dae+760e7a6536,21.0.0-13-g3a573fe+768d78a30a,21.0.0-15-g5a7caf0+f21cbc5713,21.0.0-16-g0fb55c1+b60e2d390c,21.0.0-19-g4cded4ca+71a93a33c0,21.0.0-2-g103fe59+bb20972958,21.0.0-2-g45278ab+04719a4bac,21.0.0-2-g5242d73+3ad5d60fb1,21.0.0-2-g7f82c8f+8babb168e8,21.0.0-2-g8f08a60+06509c8b61,21.0.0-2-g8faa9b5+616205b9df,21.0.0-2-ga326454+8babb168e8,21.0.0-2-gde069b7+5e4aea9c2f,21.0.0-2-gecfae73+1d3a86e577,21.0.0-2-gfc62afb+3ad5d60fb1,21.0.0-25-g1d57be3cd+e73869a214,21.0.0-3-g357aad2+ed88757d29,21.0.0-3-g4a4ce7f+3ad5d60fb1,21.0.0-3-g4be5c26+3ad5d60fb1,21.0.0-3-g65f322c+e0b24896a3,21.0.0-3-g7d9da8d+616205b9df,21.0.0-3-ge02ed75+a9c1acf22d,21.0.0-4-g591bb35+a9c1acf22d,21.0.0-4-g65b4814+b60e2d390c,21.0.0-4-gccdca77+0de219a2bc,21.0.0-4-ge8a399c+6c55c39e83,21.0.0-5-gd00fb1e+05fce91b99,21.0.0-6-gc675373+3ad5d60fb1,21.0.0-64-g1122c245+4fb2b8f86e,21.0.0-7-g04766d7+cd19d05db2,21.0.0-7-gdf92d54+04719a4bac,21.0.0-8-g5674e7b+d1bd76f71f,master-gac4afde19b+a9c1acf22d,w.2021.13
LSST Data Management Base Package
_vector3d.cc
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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  *
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22 #include "pybind11/pybind11.h"
23 
24 #include "lsst/sphgeom/python.h"
25 
26 #include "lsst/sphgeom/Angle.h"
28 #include "lsst/sphgeom/Vector3d.h"
30 
31 namespace py = pybind11;
32 using namespace pybind11::literals;
33 
34 namespace lsst {
35 namespace sphgeom {
36 
37 template <>
39  cls.def(py::init<>());
40  cls.def(py::init<double, double, double>(), "x"_a, "y"_a, "z"_a);
41  cls.def(py::init<Vector3d const &>(), "vector"_a);
42  // Construct a Vector3d from a UnitVector3d, enabling implicit
43  // conversion from UnitVector3d to Vector3d in python via
44  // py::implicitly_convertible
45  cls.def(py::init([](UnitVector3d const &u) {
46  return new Vector3d(u.x(), u.y(), u.z());
47  }));
48 
49  cls.def("__eq__", &Vector3d::operator==, py::is_operator());
50  cls.def("__ne__", &Vector3d::operator!=, py::is_operator());
51  cls.def("__neg__", (Vector3d(Vector3d::*)() const) & Vector3d::operator-);
52  cls.def("__add__", &Vector3d::operator+, py::is_operator());
53  cls.def("__sub__",
54  (Vector3d(Vector3d::*)(Vector3d const &) const) &
55  Vector3d::operator-,
56  py::is_operator());
57  cls.def("__mul__", &Vector3d::operator*, py::is_operator());
58  cls.def("__truediv__", &Vector3d::operator/, py::is_operator());
59 
60  cls.def("__iadd__", &Vector3d::operator+=);
61  cls.def("__isub__", &Vector3d::operator-=);
62  cls.def("__imul__", &Vector3d::operator*=);
63  cls.def("__itruediv__", &Vector3d::operator/=);
64 
65  cls.def("x", &Vector3d::x);
66  cls.def("y", &Vector3d::y);
67  cls.def("z", &Vector3d::z);
68  cls.def("dot", &Vector3d::dot);
69  cls.def("getSquaredNorm", &Vector3d::getSquaredNorm);
70  cls.def("getNorm", &Vector3d::getNorm);
71  cls.def("isZero", &Vector3d::isZero);
72  cls.def("normalize", &Vector3d::normalize);
73  cls.def("isNormalized", &Vector3d::isNormalized);
74  cls.def("cross", &Vector3d::cross);
75  cls.def("cwiseProduct", &Vector3d::cwiseProduct);
76  cls.def("rotatedAround", &Vector3d::rotatedAround, "axis"_a, "angle"_a);
77 
78  cls.def("__len__", [](Vector3d const &self) { return py::int_(3); });
79  cls.def("__getitem__", [](Vector3d const &self, py::int_ i) {
80  return self(python::convertIndex(3, i));
81  });
82 
83  cls.def("__str__", [](Vector3d const &self) {
84  return py::str("[{!s}, {!s}, {!s}]")
85  .format(self.x(), self.y(), self.z());
86  });
87  cls.def("__repr__", [](Vector3d const &self) {
88  return py::str("Vector3d({!r}, {!r}, {!r})")
89  .format(self.x(), self.y(), self.z());
90  });
91 
92  cls.def("__reduce__", [cls](Vector3d const &self) {
93  return py::make_tuple(cls,
94  py::make_tuple(self.x(), self.y(), self.z()));
95  });
96 }
97 
98 } // sphgeom
99 } // lsst
double x
double z
Definition: Match.cc:44
int y
Definition: SpanSet.cc:49
This file declares a class for representing unit vectors in ℝ³.
This file declares a class for representing vectors in ℝ³.
UnitVector3d is a unit vector in ℝ³ with components stored in double precision.
Definition: UnitVector3d.h:55
Vector3d is a vector in ℝ³ with components stored in double precision.
Definition: Vector3d.h:44
def dot(symb, c, r, frame=None, size=2, ctype=None, origin=afwImage.PARENT, *args, **kwargs)
Definition: ds9.py:100
void defineClass(py::class_< Vector3d, std::shared_ptr< Vector3d >> &cls)
Definition: _vector3d.cc:38
def init()
Definition: tests.py:59
A base class for image defects.
This file declares a class for representing angles.