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
PhotometryModel.h
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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
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19  * GNU General Public License for more details.
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22  * along with this program. If not, see <https://www.gnu.org/licenses/>.
23  */
24 
25 #ifndef LSST_JOINTCAL_PHOTOMETRY_MODEL_H
26 #define LSST_JOINTCAL_PHOTOMETRY_MODEL_H
27 
28 #include <string>
29 #include <vector>
30 
32 #include "lsst/log/Log.h"
33 
34 #include "lsst/jointcal/CcdImage.h"
39 #include "lsst/jointcal/RefStar.h"
40 
41 namespace lsst {
42 namespace jointcal {
43 
45 public:
51 
60  virtual Eigen::Index assignIndices(std::string const &whatToFit, Eigen::Index firstIndex) = 0;
61 
69  virtual void offsetParams(Eigen::VectorXd const &delta) = 0;
70 
77  virtual void offsetFittedStar(FittedStar &fittedStar, double delta) const = 0;
78 
91  virtual double computeResidual(CcdImage const &ccdImage, MeasuredStar const &measuredStar) const = 0;
92 
101  virtual double transform(CcdImage const &ccdImage, MeasuredStar const &measuredStar) const = 0;
102 
112  virtual double transformError(CcdImage const &ccdImage, MeasuredStar const &measuredStar) const = 0;
113 
121  virtual void freezeErrorTransform() = 0;
122 
129  virtual void getMappingIndices(CcdImage const &ccdImage, IndexVector &indices) const = 0;
130 
138  virtual void computeParameterDerivatives(MeasuredStar const &measuredStar, CcdImage const &ccdImage,
139  Eigen::VectorXd &derivatives) const = 0;
140 
142  virtual double getRefError(RefStar const &refStar) const = 0;
143 
145  virtual double computeRefResidual(FittedStar const &fittedStar, RefStar const &refStar) const = 0;
146 
151 
153  std::size_t getNpar(CcdImage const &ccdImage) const { return findMapping(ccdImage)->getNpar(); }
154 
156  PhotometryMappingBase const &getMapping(CcdImage const &ccdImage) const {
157  return *(findMapping(ccdImage));
158  }
159 
161  virtual std::size_t getTotalParameters() const = 0;
162 
169  virtual void print(std::ostream &out) const = 0;
170 
181  bool validate(CcdImageList const &ccdImageList, int ndof) const;
182 
189  bool checkPositiveOnBBox(CcdImage const &ccdImage) const;
190 
192  model.print(s);
193  return s;
194  }
195 
196  double getErrorPedestal() { return errorPedestal; }
197 
199  double tweakFluxError(jointcal::MeasuredStar const &measuredStar) const {
200  if (errorPedestal == 0) {
201  return measuredStar.getInstFluxErr();
202  } else {
203  return std::hypot(measuredStar.getInstFluxErr(), measuredStar.getInstFlux() * errorPedestal);
204  }
205  }
206 
208  double tweakMagnitudeError(jointcal::MeasuredStar const &measuredStar) const {
209  if (errorPedestal == 0) {
210  return measuredStar.getInstMagErr();
211  } else {
212  return std::hypot(measuredStar.getInstMagErr(), errorPedestal);
213  }
214  }
215 
216 protected:
218  virtual PhotometryMappingBase *findMapping(CcdImage const &ccdImage) const = 0;
219 
222 
223  // Pedestal on flux/magnitude error (percent of flux or delta magnitude)
225 };
226 } // namespace jointcal
227 } // namespace lsst
228 
229 #endif // LSST_JOINTCAL_PHOTOMETRY_MODEL_H
LSST DM logging module built on log4cxx.
#define LOG_LOGGER
Definition: Log.h:703
Implementation of the Photometric Calibration class.
Handler of an actual image from a single CCD.
Definition: CcdImage.h:64
The objects which have been measured several times.
Definition: FittedStar.h:61
objects measured on actual images.
Definition: MeasuredStar.h:46
double getInstFluxErr() const
Definition: MeasuredStar.h:98
Relates transform(s) to their position in the fitting matrix and allows interaction with the transfor...
virtual std::size_t getNpar() const =0
Number of total parameters in this mapping.
virtual std::size_t getTotalParameters() const =0
Return the total number of parameters in this model.
virtual PhotometryMappingBase * findMapping(CcdImage const &ccdImage) const =0
Return a pointer to the mapping associated with this ccdImage.
virtual Eigen::Index assignIndices(std::string const &whatToFit, Eigen::Index firstIndex)=0
Assign indices in the full matrix to the parameters being fit in the mappings, starting at firstIndex...
LOG_LOGGER _log
lsst.logging instance, to be created by a subclass so that messages have consistent name.
virtual void offsetParams(Eigen::VectorXd const &delta)=0
Offset the parameters by the provided amounts (by -delta).
virtual double transform(CcdImage const &ccdImage, MeasuredStar const &measuredStar) const =0
Return the on-sky transformed flux for measuredStar on ccdImage.
virtual double getRefError(RefStar const &refStar) const =0
Return the refStar error appropriate for this model (e.g. fluxErr or magErr).
bool validate(CcdImageList const &ccdImageList, int ndof) const
Return true if this is a "reasonable" model.
virtual void print(std::ostream &out) const =0
Print a string representation of the contents of this mapping, for debugging.
virtual void offsetFittedStar(FittedStar &fittedStar, double delta) const =0
Offset the appropriate flux or magnitude (by -delta).
PhotometryModel(LOG_LOGGER log, double errorPedestal=0)
virtual void freezeErrorTransform()=0
Once this routine has been called, the error transform is not modified by offsetParams().
virtual std::shared_ptr< afw::image::PhotoCalib > toPhotoCalib(CcdImage const &ccdImage) const =0
Return the mapping of ccdImage represented as a PhotoCalib.
virtual double computeResidual(CcdImage const &ccdImage, MeasuredStar const &measuredStar) const =0
Compute the residual between the model applied to a star and its associated fittedStar.
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 void computeParameterDerivatives(MeasuredStar const &measuredStar, CcdImage const &ccdImage, Eigen::VectorXd &derivatives) const =0
Compute the parametric derivatives of this model.
virtual void getMappingIndices(CcdImage const &ccdImage, IndexVector &indices) const =0
Get how this set of parameters (of length Npar()) map into the "grand" fit.
bool checkPositiveOnBBox(CcdImage const &ccdImage) const
Check that the model is positive on the ccdImage bbox.
virtual double computeRefResidual(FittedStar const &fittedStar, RefStar const &refStar) const =0
Return the fittedStar - refStar residual appropriate for this model (e.g. flux - flux or mag - mag).
double tweakFluxError(jointcal::MeasuredStar const &measuredStar) const
Add a fraction of the instrumental flux to the instrumental flux error, in quadrature.
friend std::ostream & operator<<(std::ostream &s, PhotometryModel const &model)
virtual double transformError(CcdImage const &ccdImage, MeasuredStar const &measuredStar) const =0
Return the on-sky transformed flux uncertainty for measuredStar on ccdImage.
double tweakMagnitudeError(jointcal::MeasuredStar const &measuredStar) const
Add a small magnitude offset to the "instrumental magnitude" error, in quadrature.
Objects used as position anchors, typically USNO stars.
Definition: RefStar.h:39
T hypot(T... args)
A base class for image defects.