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
_matrix3d.cc
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22 #include "pybind11/pybind11.h"
23 
24 #include "lsst/sphgeom/python.h"
25 
26 #include "lsst/sphgeom/Matrix3d.h"
28 
29 namespace py = pybind11;
30 using namespace pybind11::literals;
31 
32 namespace lsst {
33 namespace sphgeom {
34 
35 namespace {
36 Vector3d getRow(Matrix3d const &self, py::int_ row) {
37  return self.getRow(static_cast<int>(python::convertIndex(3, row)));
38 }
39 }
40 
41 template <>
43  cls.def(py::init<>());
44  cls.def(py::init<double, double, double, double, double, double, double,
45  double, double>(),
46  "m00"_a, "m01"_a, "m02"_a, "m10"_a, "m11"_a, "m12"_a, "m20"_a,
47  "m21"_a, "m22"_a);
48  cls.def(py::init<Vector3d const &>(), "diagonal"_a);
49  cls.def(py::init<double>(), "scale"_a);
50  cls.def(py::init<Matrix3d const &>(), "matrix"_a);
51 
52  cls.def("__eq__", &Matrix3d::operator==, py::is_operator());
53  cls.def("__ne__", &Matrix3d::operator!=, py::is_operator());
54 
55  // Add bounds checking to getRow and getColumn
56  cls.def("getRow", &getRow, "row"_a);
57  cls.def("getColumn",
58  [](Matrix3d const &self, py::int_ col) {
59  return self.getColumn(
60  static_cast<int>(python::convertIndex(3, col)));
61  },
62  "col"_a);
63 
64  cls.def("__len__", [](Matrix3d const &self) { return py::int_(3); });
65  cls.def("__getitem__", &getRow, py::is_operator());
66  cls.def("__getitem__",
67  [](Matrix3d const &self, py::tuple t) {
68  if (t.size() > 2) {
69  throw py::index_error("Too many indexes for Matrix3d");
70  } else if (t.size() == 0) {
71  return py::cast(self);
72  } else if (t.size() == 1) {
73  return py::cast(getRow(self, t[0].cast<py::int_>()));
74  }
75  return py::cast(
76  self(python::convertIndex(3, t[0].cast<py::int_>()),
77  python::convertIndex(3, t[1].cast<py::int_>())));
78  },
79  py::is_operator());
80 
81  cls.def("inner", &Matrix3d::inner, "matrix"_a);
82  cls.def("getSquaredNorm", &Matrix3d::getSquaredNorm);
83  cls.def("getNorm", &Matrix3d::getNorm);
84 
85  cls.def("__mul__",
86  (Vector3d(Matrix3d::*)(Vector3d const &) const) &
87  Matrix3d::operator*,
88  "vector"_a, py::is_operator());
89  cls.def("__mul__",
90  (Matrix3d(Matrix3d::*)(Matrix3d const &) const) &
91  Matrix3d::operator*,
92  "matrix"_a, py::is_operator());
93  cls.def("__add__", &Matrix3d::operator+, py::is_operator());
94  cls.def("__sub__", &Matrix3d::operator-, py::is_operator());
95 
96  cls.def("cwiseProduct", &Matrix3d::cwiseProduct);
97  cls.def("transpose", &Matrix3d::transpose);
98  cls.def("inverse", &Matrix3d::inverse);
99 
100  cls.def("__str__", [](Matrix3d const &self) {
101  return py::str("[[{!s}, {!s}, {!s}],\n"
102  " [{!s}, {!s}, {!s}],\n"
103  " [{!s}, {!s}, {!s}]]")
104  .format(self(0, 0), self(0, 1), self(0, 2), self(1, 0),
105  self(1, 1), self(1, 2), self(2, 0), self(2, 1),
106  self(2, 2));
107  });
108  cls.def("__repr__", [](Matrix3d const &self) {
109  return py::str("Matrix3d({!r}, {!r}, {!r},\n"
110  " {!r}, {!r}, {!r},\n"
111  " {!r}, {!r}, {!r})")
112  .format(self(0, 0), self(0, 1), self(0, 2), self(1, 0),
113  self(1, 1), self(1, 2), self(2, 0), self(2, 1),
114  self(2, 2));
115  });
116  cls.def("__reduce__", [cls](Matrix3d const &self) {
117  auto args = py::make_tuple(self(0, 0), self(0, 1), self(0, 2),
118  self(1, 0), self(1, 1), self(1, 2),
119  self(2, 0), self(2, 1), self(2, 2));
120  return py::make_tuple(cls, args);
121  });
122 }
123 
124 } // sphgeom
125 } // lsst
This file contains a class representing 3x3 real matrices.
A 3x3 matrix with real entries stored in double precision.
Definition: Matrix3d.h:38
Vector3d is a vector in ℝ³ with components stored in double precision.
Definition: Vector3d.h:44
void defineClass(py::class_< Matrix3d, std::shared_ptr< Matrix3d >> &cls)
Definition: _matrix3d.cc:42
def init()
Definition: tests.py:59
A base class for image defects.
int row
Definition: CR.cc:145
int col
Definition: CR.cc:144