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
CircularApertureFlux.cc
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1 // -*- lsst-c++ -*-
2 /*
3  * LSST Data Management System
4  * Copyright 2008-2014 LSST Corporation.
5  *
6  * This product includes software developed by the
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23 
24 #include "lsst/afw/table/Source.h"
28 
29 namespace lsst {
30 namespace meas {
31 namespace base {
32 
35  daf::base::PropertySet& metadata)
36  : ApertureFluxAlgorithm(ctrl, name, schema, metadata) {
37  for (std::size_t i = 0; i < ctrl.radii.size(); ++i) {
38  if (ctrl.radii[i] > ctrl.maxSincRadius) break;
39  SincCoeffs<float>::cache(0.0, ctrl.radii[i]);
40  }
41 }
42 
44  afw::image::Exposure<float> const& exposure) const {
47  axes = std::static_pointer_cast<afw::geom::ellipses::Axes>(ellipse.getCorePtr());
48  for (std::size_t i = 0; i < _ctrl.radii.size(); ++i) {
49  // Each call to _centroidExtractor within this loop goes through exactly the same error-checking
50  // logic and returns the same result, but it's not expensive logic, so we just call it repeatedly
51  // instead of coming up with a new interface that would allow us to move it outside the loop.
52  ellipse.setCenter(_centroidExtractor(measRecord, getFlagHandler(i)));
53  axes->setA(_ctrl.radii[i]);
54  axes->setB(_ctrl.radii[i]);
56  copyResultToRecord(result, measRecord, i);
57  }
58 }
59 
60 } // namespace base
61 } // namespace meas
62 } // namespace lsst
py::object result
Definition: _schema.cc:429
table::Key< std::string > name
Definition: Amplifier.cc:116
table::Schema schema
Definition: python.h:134
An ellipse core for the semimajor/semiminor axis and position angle parametrization (a,...
Definition: Axes.h:47
An ellipse defined by an arbitrary BaseCore and a center point.
Definition: Ellipse.h:51
std::shared_ptr< BaseCore const > getCorePtr() const
Return the ellipse core.
Definition: Ellipse.h:77
void setCenter(lsst::geom::Point2D const &center)
Set the center point.
Definition: Ellipse.h:68
MaskedImageT getMaskedImage()
Return the MaskedImage.
Definition: Exposure.h:228
Defines the fields and offsets for a table.
Definition: Schema.h:51
Record class that contains measurements made on a single exposure.
Definition: Source.h:78
Class for storing generic metadata.
Definition: PropertySet.h:66
Base class for multiple-aperture photometry algorithms.
Definition: ApertureFlux.h:80
SafeCentroidExtractor _centroidExtractor
Definition: ApertureFlux.h:199
void copyResultToRecord(Result const &result, afw::table::SourceRecord &record, int index) const
Definition: ApertureFlux.cc:96
static Result computeFlux(afw::image::Image< T > const &image, afw::geom::ellipses::Ellipse const &ellipse, Control const &ctrl=Control())
Compute the instFlux (and optionally, uncertanties) within an aperture using the algorithm determined...
FlagHandler const & getFlagHandler(int index) const
Definition: ApertureFlux.h:196
Configuration object for multiple-aperture flux algorithms.
Definition: ApertureFlux.h:49
double maxSincRadius
"Maximum radius (in pixels) for which the sinc algorithm should be used instead of the " "faster naiv...
Definition: ApertureFlux.h:58
std::vector< double > radii
"Radius (in pixels) of apertures." ;
Definition: ApertureFlux.h:53
virtual void measure(afw::table::SourceRecord &record, afw::image::Exposure< float > const &exposure) const
Measure the configured apertures on the given image.
CircularApertureFluxAlgorithm(Control const &ctrl, std::string const &name, afw::table::Schema &schema, daf::base::PropertySet &metadata)
static void cache(float rInner, float rOuter)
Cache the coefficients for a particular aperture.
Definition: SincCoeffs.cc:491
A base class for image defects.
T size(T... args)
A Result struct for running an aperture flux algorithm with a single radius.
Definition: ApertureFlux.h:217