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LSST Data Management Base Package
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photometryModels.cc
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1// -*- LSST-C++ -*-
2/*
3 * This file is part of jointcal.
4 *
5 * Developed for the LSST Data Management System.
6 * This product includes software developed by the LSST Project
7 * (https://www.lsst.org).
8 * See the COPYRIGHT file at the top-level directory of this distribution
9 * for details of code ownership.
10 *
11 * This program is free software: you can redistribute it and/or modify
12 * it under the terms of the GNU General Public License as published by
13 * the Free Software Foundation, either version 3 of the License, or
14 * (at your option) any later version.
15 *
16 * This program is distributed in the hope that it will be useful,
17 * but WITHOUT ANY WARRANTY; without even the implied warranty of
18 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
19 * GNU General Public License for more details.
20 *
21 * You should have received a copy of the GNU General Public License
22 * along with this program. If not, see <https://www.gnu.org/licenses/>.
23 */
24
25#include "lsst/utils/python.h"
26#include "pybind11/pybind11.h"
28#include "pybind11/eigen.h"
29#include "pybind11/stl.h"
30#include "Eigen/Core"
31
36
37namespace py = pybind11;
38using namespace pybind11::literals;
39
40namespace lsst {
41namespace jointcal {
42namespace {
43
44void declarePhotometryModel(lsst::cpputils::python::WrapperCollection &wrappers) {
45 using PyPhotometryModel = py::class_<PhotometryModel, std::shared_ptr<PhotometryModel>>;
46
47 wrappers.wrapType(PyPhotometryModel(wrappers.module, "PhotometryModel"), [](auto &mod, auto &cls) {
48 cls.def("assignIndices", &PhotometryModel::assignIndices);
49 cls.def("freezeErrorTransform", &PhotometryModel::freezeErrorTransform);
50
51 cls.def("offsetParams", &PhotometryModel::offsetParams);
52 cls.def("offsetFittedStar", &PhotometryModel::offsetFittedStar);
53
54 cls.def("transform", &PhotometryModel::transform);
55 cls.def("transformError", &PhotometryModel::transformError);
56 cls.def("computeResidual", &PhotometryModel::computeResidual);
57
58 cls.def("getRefError", &PhotometryModel::getRefError);
59 cls.def("computeRefResidual", &PhotometryModel::computeRefResidual);
60
61 cls.def("checkPositiveOnBBox", &PhotometryModel::checkPositiveOnBBox);
62 cls.def("validate", &PhotometryModel::validate);
63
64 cls.def("getMappingIndices", &PhotometryModel::getMappingIndices);
65 cls.def("computeParameterDerivatives",
66 [](PhotometryModel const &self, MeasuredStar const &star, CcdImage const &ccdImage) {
67 Eigen::VectorXd derivatives(self.getNpar(ccdImage));
68 self.computeParameterDerivatives(star, ccdImage, derivatives);
69 return derivatives;
70 });
71
72 cls.def("getNpar", &PhotometryModel::getNpar);
73 cls.def("toPhotoCalib", &PhotometryModel::toPhotoCalib);
74 cls.def("getMapping", &PhotometryModel::getMapping, py::return_value_policy::reference_internal);
75 cls.def("getTotalParameters", &PhotometryModel::getTotalParameters);
76
77 utils::python::addOutputOp(cls, "__repr__");
78 cls.def("__str__", [](PhotometryModel const &self) { return "PhotometryModel"; });
79 });
80}
81
82void declareSimplePhotometryModel(lsst::cpputils::python::WrapperCollection &wrappers) {
83 using PySimplePhotometryModel =
84 py::class_<SimplePhotometryModel, std::shared_ptr<SimplePhotometryModel>, PhotometryModel>;
85
86 wrappers.wrapType(PySimplePhotometryModel(wrappers.module, "SimplePhotometryModel"), [](auto &mod, auto &cls) {
87 cls.def("__str__", [](SimplePhotometryModel const &self) { return "SimplePhotometryModel"; });
88 });
89}
90
91void declareSimpleFluxModel(lsst::cpputils::python::WrapperCollection &wrappers) {
92 using PySimpleFluxModel =
93 py::class_<SimpleFluxModel, std::shared_ptr<SimpleFluxModel>, SimplePhotometryModel, PhotometryModel>;
94
95 wrappers.wrapType(PySimpleFluxModel(wrappers.module, "SimpleFluxModel"), [](auto &mod, auto &cls) {
96 cls.def(py::init<CcdImageList const &, double>(), "ccdImageList"_a, "errorPedestal"_a = 0);
97 cls.def("__str__", [](SimpleFluxModel const &self) { return "SimpleFluxModel"; });
98 });
99}
100
101void declareSimpleMagnitudeModel(lsst::cpputils::python::WrapperCollection &wrappers) {
102 using PySimpleMagnitudeModel = py::class_<SimpleMagnitudeModel, std::shared_ptr<SimpleMagnitudeModel>, SimplePhotometryModel,
103 PhotometryModel>;
104
105 wrappers.wrapType(PySimpleMagnitudeModel(wrappers.module, "SimpleMagnitudeModel"), [](auto &mod, auto &cls) {
106 cls.def(py::init<CcdImageList const &, double>(), "ccdImageList"_a, "errorPedestal"_a = 0);
107 cls.def("__str__", [](SimpleMagnitudeModel const &self) { return "SimpleMagnitudeModel"; });
108 });
109}
110
111void declareConstrainedPhotometryModel(lsst::cpputils::python::WrapperCollection &wrappers) {
112 using PyConstrainedPhotometryModel =
113 py::class_<ConstrainedPhotometryModel, std::shared_ptr<ConstrainedPhotometryModel>, PhotometryModel>;
114
115 wrappers.wrapType(
116 PyConstrainedPhotometryModel(wrappers.module, "ConstrainedPhotometryModel"), [](auto &mod, auto &cls) {
117 cls.def("__str__",
118 [](ConstrainedPhotometryModel const &self) { return "ConstrainedPhotometryModel"; });
119 });
120}
121
122void declareConstrainedFluxModel(lsst::cpputils::python::WrapperCollection &wrappers) {
123 using PyConstrainedFluxModel = py::class_<ConstrainedFluxModel, std::shared_ptr<ConstrainedFluxModel>, PhotometryModel>;
124
125 wrappers.wrapType(PyConstrainedFluxModel(wrappers.module, "ConstrainedFluxModel"), [](auto &mod, auto &cls) {
126 cls.def(py::init<CcdImageList const &, lsst::geom::Box2D const &, int, double>(), "CcdImageList"_a,
127 "bbox"_a, "visitOrder"_a = 7, "errorPedestal"_a = 0);
128 });
129}
130
131void declareConstrainedMagnitudeModel(lsst::cpputils::python::WrapperCollection &wrappers) {
132 using PyConstrainedMagnitudeModel = py::class_<ConstrainedMagnitudeModel, std::shared_ptr<ConstrainedMagnitudeModel>, PhotometryModel>;
133
134 wrappers.wrapType(PyConstrainedMagnitudeModel(wrappers.module, "ConstrainedMagnitudeModel"), [](auto &mod, auto &cls) {
135 cls.def(py::init<CcdImageList const &, lsst::geom::Box2D const &, int, double>(), "CcdImageList"_a,
136 "bbox"_a, "visitOrder"_a = 7, "errorPedestal"_a = 0);
137 cls.def("__str__", [](ConstrainedMagnitudeModel const &self) { return "ConstrainedMagnitudeModel"; });
138 });
139}
140} // namespace
141
143 declarePhotometryModel(wrappers);
144 declareSimplePhotometryModel(wrappers);
145 declareSimpleFluxModel(wrappers);
146 declareSimpleMagnitudeModel(wrappers);
147 declareConstrainedPhotometryModel(wrappers);
148 declareConstrainedFluxModel(wrappers);
149 declareConstrainedMagnitudeModel(wrappers);
150}
151
152} // namespace jointcal
153} // namespace lsst
A helper class for subdividing pybind11 module across multiple translation units (i....
Definition python.h:242
PyType wrapType(PyType cls, ClassWrapperCallback function, bool setModuleName=true)
Add a type (class or enum) wrapper, deferring method and other attribute definitions until finish() i...
Definition python.h:391
pybind11::module module
The module object passed to the PYBIND11_MODULE block that contains this WrapperCollection.
Definition python.h:448
virtual std::size_t getTotalParameters() const =0
Return the total number of parameters in this model.
PhotometryMappingBase const & getMapping(CcdImage const &ccdImage) const
Get the mapping associated with ccdImage.
std::size_t getNpar(CcdImage const &ccdImage) const
Return the number of parameters in the mapping of CcdImage.
virtual std::shared_ptr< afw::image::PhotoCalib > toPhotoCalib(CcdImage const &ccdImage) const =0
Return the mapping of ccdImage represented as a PhotoCalib.
void wrapPhotometryModels(WrapperCollection &wrappers)