LSST Applications  21.0.0-172-gfb10e10a+18fedfabac,22.0.0+297cba6710,22.0.0+80564b0ff1,22.0.0+8d77f4f51a,22.0.0+a28f4c53b1,22.0.0+dcf3732eb2,22.0.1-1-g7d6de66+2a20fdde0d,22.0.1-1-g8e32f31+297cba6710,22.0.1-1-geca5380+7fa3b7d9b6,22.0.1-12-g44dc1dc+2a20fdde0d,22.0.1-15-g6a90155+515f58c32b,22.0.1-16-g9282f48+790f5f2caa,22.0.1-2-g92698f7+dcf3732eb2,22.0.1-2-ga9b0f51+7fa3b7d9b6,22.0.1-2-gd1925c9+bf4f0e694f,22.0.1-24-g1ad7a390+a9625a72a8,22.0.1-25-g5bf6245+3ad8ecd50b,22.0.1-25-gb120d7b+8b5510f75f,22.0.1-27-g97737f7+2a20fdde0d,22.0.1-32-gf62ce7b1+aa4237961e,22.0.1-4-g0b3f228+2a20fdde0d,22.0.1-4-g243d05b+871c1b8305,22.0.1-4-g3a563be+32dcf1063f,22.0.1-4-g44f2e3d+9e4ab0f4fa,22.0.1-42-gca6935d93+ba5e5ca3eb,22.0.1-5-g15c806e+85460ae5f3,22.0.1-5-g58711c4+611d128589,22.0.1-5-g75bb458+99c117b92f,22.0.1-6-g1c63a23+7fa3b7d9b6,22.0.1-6-g50866e6+84ff5a128b,22.0.1-6-g8d3140d+720564cf76,22.0.1-6-gd805d02+cc5644f571,22.0.1-8-ge5750ce+85460ae5f3,master-g6e05de7fdc+babf819c66,master-g99da0e417a+8d77f4f51a,w.2021.48
LSST Data Management Base Package
truncatedGaussian.cc
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1 // -*- lsst-c++ -*-
2 /*
3  * LSST Data Management System
4  * Copyright 2008-2013 LSST Corporation.
5  *
6  * This product includes software developed by the
7  * LSST Project (http://www.lsst.org/).
8  *
9  * This program is free software: you can redistribute it and/or modify
10  * it under the terms of the GNU General Public License as published by
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17  * GNU General Public License for more details.
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23 
24 #include "pybind11/pybind11.h"
25 #include "pybind11/eigen.h"
26 #include "pybind11/stl.h"
27 
28 #include "ndarray/pybind11.h"
29 
31 
32 namespace py = pybind11;
33 using namespace pybind11::literals;
34 
35 namespace lsst {
36 namespace meas {
37 namespace modelfit {
38 namespace {
39 
40 using Sampler = TruncatedGaussianSampler;
41 using Evaluator = TruncatedGaussianEvaluator;
42 using LogEvaluator = TruncatedGaussianLogEvaluator;
43 
44 using PyTruncatedGaussian = py::class_<TruncatedGaussian, std::shared_ptr<TruncatedGaussian>>;
45 using PySampler = py::class_<Sampler, std::shared_ptr<Sampler>>;
46 using PyEvaluator = py::class_<Evaluator, std::shared_ptr<Evaluator>>;
47 using PyLogEvaluator = py::class_<LogEvaluator, std::shared_ptr<LogEvaluator>>;
48 
49 // Shared wrapper code for the TruncatedGaussianLogEvaluator and
50 // TruncatedGaussianEvaluator classes, which have the exact same interface.
51 // 'name' should be one of ("Evaluator", "LogEvaluator").
52 template <typename Class, typename PyClass>
53 static PyClass declareEvaluator(py::module &mod, std::string const &name) {
54  PyClass cls(mod, ("TruncatedGaussian" + name).c_str());
55  cls.def(py::init<TruncatedGaussian const &>(), "parent"_a);
56  cls.def("__call__",
57  (Scalar (Class::*)(ndarray::Array<Scalar const, 1, 1> const &) const) & Class::operator(),
58  "alpha"_a);
59  cls.def("__call__", (void (Class::*)(ndarray::Array<Scalar const, 2, 1> const &,
60  ndarray::Array<Scalar, 1, 1> const &) const) &
61  Class::operator(),
62  "alpha"_a, "output"_a);
63  // Third overload of operator() is just an Eigen version of the ndarray one, so it's
64  // redundant in Python.
65  return cls;
66 }
67 
68 PYBIND11_MODULE(truncatedGaussian, mod) {
69  py::module::import("lsst.afw.math");
70 
71  PyTruncatedGaussian cls(mod, "TruncatedGaussian");
72  py::enum_<TruncatedGaussian::SampleStrategy>(cls, "SampleStrategy")
73  .value("DIRECT_WITH_REJECTION", TruncatedGaussian::DIRECT_WITH_REJECTION)
74  .value("ALIGN_AND_WEIGHT", TruncatedGaussian::ALIGN_AND_WEIGHT)
75  .export_values();
76  cls.def_static("fromSeriesParameters", &TruncatedGaussian::fromSeriesParameters, "q0"_a, "gradient"_a,
77  "hessian"_a);
78  cls.def_static("fromStandardParameters", &TruncatedGaussian::fromStandardParameters, "mean"_a,
79  "covariance"_a);
80  cls.def("sample", (Sampler (TruncatedGaussian::*)(TruncatedGaussian::SampleStrategy) const) &
81  TruncatedGaussian::sample,
82  "strategy"_a);
83  cls.def("sample", (Sampler (TruncatedGaussian::*)(Scalar) const) & TruncatedGaussian::sample,
84  "minRejectionEfficiency"_a = 0.1);
85  cls.def("evaluateLog", &TruncatedGaussian::evaluateLog);
86  cls.def("evaluate", &TruncatedGaussian::evaluate);
87  cls.def("getDim", &TruncatedGaussian::getDim);
88  cls.def("maximize", &TruncatedGaussian::maximize);
89  cls.def("getUntruncatedFraction", &TruncatedGaussian::getUntruncatedFraction);
90  cls.def("getLogPeakAmplitude", &TruncatedGaussian::getLogPeakAmplitude);
91  cls.def("getLogIntegral", &TruncatedGaussian::getLogIntegral);
92 
93  cls.attr("LogEvaluator") = declareEvaluator<LogEvaluator, PyLogEvaluator>(mod, "LogEvaluator");
94  cls.attr("Evaluator") = declareEvaluator<Evaluator, PyEvaluator>(mod, "Evaluator");
95 
96  PySampler clsSampler(mod, "TruncatedGaussianSampler");
97  clsSampler.def(py::init<TruncatedGaussian const &, TruncatedGaussian::SampleStrategy>(), "parent"_a,
98  "strategy"_a);
99  clsSampler.def("__call__",
100  (Scalar (Sampler::*)(afw::math::Random &, ndarray::Array<Scalar, 1, 1> const &) const) &
101  Sampler::operator(),
102  "rng"_a, "alpha"_a);
103  clsSampler.def("__call__", (void (Sampler::*)(afw::math::Random &, ndarray::Array<Scalar, 2, 1> const &,
104  ndarray::Array<Scalar, 1, 1> const &, bool) const) &
105  Sampler::operator(),
106  "rng"_a, "alpha"_a, "weights"_a, "multiplyWeights"_a = false);
107 
108  cls.attr("Sampler") = clsSampler;
109 }
110 
111 }
112 }
113 }
114 } // namespace lsst::meas::modelfit::anonymous
table::Key< std::string > name
Definition: Amplifier.cc:116
PYBIND11_MODULE(_cameraGeom, mod)
Definition: _cameraGeom.cc:38
py::class_< PixelAreaBoundedField, std::shared_ptr< PixelAreaBoundedField >, BoundedField > PyClass
double Scalar
Typedefs to be used for probability and parameter values.
Definition: common.h:44
A base class for image defects.