LSSTApplications  18.0.0+106,18.0.0+50,19.0.0,19.0.0+1,19.0.0+10,19.0.0+11,19.0.0+13,19.0.0+17,19.0.0+2,19.0.0-1-g20d9b18+6,19.0.0-1-g425ff20,19.0.0-1-g5549ca4,19.0.0-1-g580fafe+6,19.0.0-1-g6fe20d0+1,19.0.0-1-g7011481+9,19.0.0-1-g8c57eb9+6,19.0.0-1-gb5175dc+11,19.0.0-1-gdc0e4a7+9,19.0.0-1-ge272bc4+6,19.0.0-1-ge3aa853,19.0.0-10-g448f008b,19.0.0-12-g6990b2c,19.0.0-2-g0d9f9cd+11,19.0.0-2-g3d9e4fb2+11,19.0.0-2-g5037de4,19.0.0-2-gb96a1c4+3,19.0.0-2-gd955cfd+15,19.0.0-3-g2d13df8,19.0.0-3-g6f3c7dc,19.0.0-4-g725f80e+11,19.0.0-4-ga671dab3b+1,19.0.0-4-gad373c5+3,19.0.0-5-ga2acb9c+2,19.0.0-5-gfe96e6c+2,w.2020.01
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lsst::jointcal::AstrometryTransformIdentity Class Reference

A do-nothing transformation. It anyway has dummy routines to mimick a AstrometryTransform. More...

#include <AstrometryTransform.h>

Inheritance diagram for lsst::jointcal::AstrometryTransformIdentity:
lsst::jointcal::AstrometryTransform

Public Member Functions

 AstrometryTransformIdentity ()
 constructor. More...
 
void apply (const double xIn, const double yIn, double &xOut, double &yOut) const override
 xOut = xIn; yOut = yIn ! More...
 
double fit (StarMatchList const &starMatchList) override
 fits a transform to a std::list of Point pairs (p1,p2, the Point fields in StarMatch). More...
 
std::unique_ptr< AstrometryTransformcomposeAndReduce (AstrometryTransform const &right) const override
 Return a reduced composition of newTransform = this(right()), or nullptr if it cannot be reduced. More...
 
void dump (std::ostream &stream=std::cout) const override
 dumps the transform coefficients to stream. More...
 
std::size_t getNpar () const override
 returns the number of parameters (to compute chi2's) More...
 
std::unique_ptr< AstrometryTransformclone () const override
 returns a copy (allocated by new) of the transformation. More...
 
void computeDerivative (Point const &where, AstrometryTransformLinear &derivative, const double step=0.01) const override
 Computes the local Derivative of a transform, w.r.t. More...
 
virtual AstrometryTransformLinear linearApproximation (Point const &where, const double step=0.01) const override
 linear approximation. More...
 
std::shared_ptr< ast::MappingtoAstMap (jointcal::Frame const &domain) const override
 Create an equivalent AST mapping for this transformation, including an analytic inverse if possible. More...
 
void write (std::ostream &s) const override
 
void read (std::istream &s)
 
void apply (Point const &in, Point &out) const
 applies the tranfo to in and writes into out. Is indeed virtual. More...
 
Point apply (Point const &in) const
 All these apply(..) shadow the virtual one in derived classes, unless one writes "using AstrometryTransform::apply". More...
 
Frame apply (Frame const &inputframe, bool inscribed) const
 Transform a bounding box, taking either the inscribed or circumscribed box. More...
 
std::string __str__ ()
 
void transformStar (FatPoint &in) const
 
virtual double getJacobian (Point const &point) const
 returns the local jacobian. More...
 
virtual double getJacobian (const double x, const double y) const
 returns the local jacobian. More...
 
virtual void transformPosAndErrors (const FatPoint &in, FatPoint &out) const
 
virtual void transformErrors (Point const &where, const double *vIn, double *vOut) const
 transform errors (represented as double[3] in order V(xx),V(yy),Cov(xy)) More...
 
virtual std::unique_ptr< AstrometryTransforminverseTransform (const double precision, const Frame &region) const
 returns an inverse transform. Numerical if not overloaded. More...
 
void getParams (double *params) const
 params should be at least Npar() long More...
 
void offsetParams (Eigen::VectorXd const &delta)
 
virtual double paramRef (Eigen::Index const i) const
 
virtual double & paramRef (Eigen::Index const i)
 
virtual void paramDerivatives (Point const &where, double *dx, double *dy) const
 Derivative w.r.t parameters. More...
 
virtual std::unique_ptr< AstrometryTransformroughInverse (const Frame &region) const
 Rough inverse. More...
 
void write (const std::string &fileName) const
 

Detailed Description

A do-nothing transformation. It anyway has dummy routines to mimick a AstrometryTransform.

Definition at line 220 of file AstrometryTransform.h.

Constructor & Destructor Documentation

◆ AstrometryTransformIdentity()

lsst::jointcal::AstrometryTransformIdentity::AstrometryTransformIdentity ( )
inline

constructor.

Definition at line 223 of file AstrometryTransform.h.

223 {}

Member Function Documentation

◆ __str__()

std::string lsst::jointcal::AstrometryTransform::__str__ ( )
inlineinherited

Definition at line 94 of file AstrometryTransform.h.

94  {
96  dump(s);
97  return s.str();
98  }
T str(T... args)
virtual void dump(std::ostream &stream=std::cout) const =0
dumps the transform coefficients to stream.

◆ apply() [1/4]

void lsst::jointcal::AstrometryTransform::apply ( Point const &  in,
Point out 
) const
inlineinherited

applies the tranfo to in and writes into out. Is indeed virtual.

Definition at line 71 of file AstrometryTransform.h.

71 { apply(in.x, in.y, out.x, out.y); }
virtual void apply(const double xIn, const double yIn, double &xOut, double &yOut) const =0

◆ apply() [2/4]

Point lsst::jointcal::AstrometryTransform::apply ( Point const &  in) const
inlineinherited

All these apply(..) shadow the virtual one in derived classes, unless one writes "using AstrometryTransform::apply".

Definition at line 75 of file AstrometryTransform.h.

75  {
76  double xout, yout;
77  apply(in.x, in.y, xout, yout);
78  return Point(xout, yout);
79  }
virtual void apply(const double xIn, const double yIn, double &xOut, double &yOut) const =0

◆ apply() [3/4]

Frame lsst::jointcal::AstrometryTransform::apply ( Frame const &  inputframe,
bool  inscribed 
) const
inherited

Transform a bounding box, taking either the inscribed or circumscribed box.

Parameters
[in]inputframeThe frame to be transformed.
[in]inscribedReturn the inscribed (true) or circumscribed (false) box.
Returns
The transformed frame.

Definition at line 75 of file AstrometryTransform.cc.

75  {
76  // 2 opposite corners
77  double xtmin1, xtmax1, ytmin1, ytmax1;
78  apply(inputframe.xMin, inputframe.yMin, xtmin1, ytmin1);
79  apply(inputframe.xMax, inputframe.yMax, xtmax1, ytmax1);
80  Frame fr1(std::min(xtmin1, xtmax1), std::min(ytmin1, ytmax1), std::max(xtmin1, xtmax1),
81  std::max(ytmin1, ytmax1));
82  // 2 other corners
83  double xtmin2, xtmax2, ytmin2, ytmax2;
84  apply(inputframe.xMin, inputframe.yMax, xtmin2, ytmax2);
85  apply(inputframe.xMax, inputframe.yMin, xtmax2, ytmin2);
86  Frame fr2(std::min(xtmin2, xtmax2), std::min(ytmin2, ytmax2), std::max(xtmin2, xtmax2),
87  std::max(ytmin2, ytmax2));
88 
89  if (inscribed) return fr1 * fr2;
90  return fr1 + fr2;
91 }
T min(T... args)
T max(T... args)
virtual void apply(const double xIn, const double yIn, double &xOut, double &yOut) const =0

◆ apply() [4/4]

void lsst::jointcal::AstrometryTransformIdentity::apply ( const double  xIn,
const double  yIn,
double &  xOut,
double &  yOut 
) const
inlineoverridevirtual

xOut = xIn; yOut = yIn !

Implements lsst::jointcal::AstrometryTransform.

Definition at line 226 of file AstrometryTransform.h.

226  {
227  xOut = xIn;
228  yOut = yIn;
229  } // to speed up

◆ clone()

std::unique_ptr<AstrometryTransform> lsst::jointcal::AstrometryTransformIdentity::clone ( ) const
inlineoverridevirtual

returns a copy (allocated by new) of the transformation.

Implements lsst::jointcal::AstrometryTransform.

Definition at line 245 of file AstrometryTransform.h.

◆ composeAndReduce()

std::unique_ptr<AstrometryTransform> lsst::jointcal::AstrometryTransformIdentity::composeAndReduce ( AstrometryTransform const &  right) const
inlineoverridevirtual

Return a reduced composition of newTransform = this(right()), or nullptr if it cannot be reduced.

"Reduced" in this context means that they are capable of being merged into a single transform, for example, for two polynomials:

\[ f(x) = 1 + x^2, g(x) = -1 + 3x \]

we would have h = f.composeAndReduce(g) == 2 - 6x + 9x^2.

To be overloaded by derived classes if they can properly reduce the composition.

Parameters
rightThe transform to apply first.
Returns
The new reduced and composed AstrometryTransform, or nullptr if no such reduction is possible.

Reimplemented from lsst::jointcal::AstrometryTransform.

Definition at line 237 of file AstrometryTransform.h.

237  {
238  return right.clone();
239  }
T right(T... args)

◆ computeDerivative()

void lsst::jointcal::AstrometryTransformIdentity::computeDerivative ( Point const &  where,
AstrometryTransformLinear derivative,
const double  step = 0.01 
) const
overridevirtual

Computes the local Derivative of a transform, w.r.t.

the Derivative is represented by a AstrometryTransformLinear, in which (hopefully), the offset terms are zero.

position.

Step is used for numerical derivation.

Derivative should transform a vector of offsets into a vector of offsets.

Reimplemented from lsst::jointcal::AstrometryTransform.

Definition at line 437 of file AstrometryTransform.cc.

438  {
439  derivative = AstrometryTransformLinear();
440 }

◆ dump()

void lsst::jointcal::AstrometryTransformIdentity::dump ( std::ostream stream = std::cout) const
inlineoverridevirtual

dumps the transform coefficients to stream.

Implements lsst::jointcal::AstrometryTransform.

Definition at line 241 of file AstrometryTransform.h.

241 { stream << "x' = x\ny' = y" << std::endl; }
T endl(T... args)

◆ fit()

double lsst::jointcal::AstrometryTransformIdentity::fit ( StarMatchList const &  starMatchList)
inlineoverridevirtual

fits a transform to a std::list of Point pairs (p1,p2, the Point fields in StarMatch).

After the fit this(p1) yields approximately p2. The returned value is the sum of squared residuals. If you want to fit a partial transform (e.g. such that this(T1(p1)) = T2(p2), use StarMatchList::applyTransform beforehand.

Implements lsst::jointcal::AstrometryTransform.

Definition at line 231 of file AstrometryTransform.h.

231  {
232  throw pexExcept::TypeError(
233  "AstrometryTransformIdentity is the identity transformation: it cannot be fit to anything.");
234  }
Reports errors from accepting an object of an unexpected or inappropriate type.
Definition: Runtime.h:167

◆ getJacobian() [1/2]

virtual double lsst::jointcal::AstrometryTransform::getJacobian ( Point const &  point) const
inlinevirtualinherited

returns the local jacobian.

Definition at line 110 of file AstrometryTransform.h.

110 { return getJacobian(point.x, point.y); }
virtual double getJacobian(Point const &point) const
returns the local jacobian.

◆ getJacobian() [2/2]

double lsst::jointcal::AstrometryTransform::getJacobian ( const double  x,
const double  y 
) const
virtualinherited

returns the local jacobian.

Definition at line 98 of file AstrometryTransform.cc.

98  {
99  double x2, y2;
100  double eps = x * 0.01;
101  if (eps == 0) eps = 0.01;
102  apply(x, y, x2, y2);
103  double dxdx, dydx;
104  apply(x + eps, y, dxdx, dydx);
105  dxdx -= x2;
106  dydx -= y2;
107  double dxdy, dydy;
108  apply(x, y + eps, dxdy, dydy);
109  dxdy -= x2;
110  dydy -= y2;
111  return ((dxdx * dydy - dxdy * dydx) / (eps * eps));
112 }
int y
Definition: SpanSet.cc:49
double x
virtual void apply(const double xIn, const double yIn, double &xOut, double &yOut) const =0

◆ getNpar()

std::size_t lsst::jointcal::AstrometryTransformIdentity::getNpar ( ) const
inlineoverridevirtual

returns the number of parameters (to compute chi2's)

Reimplemented from lsst::jointcal::AstrometryTransform.

Definition at line 243 of file AstrometryTransform.h.

243 { return 0; }

◆ getParams()

void lsst::jointcal::AstrometryTransform::getParams ( double *  params) const
inherited

params should be at least Npar() long

Definition at line 215 of file AstrometryTransform.cc.

215  {
216  std::size_t npar = getNpar();
217  for (std::size_t i = 0; i < npar; ++i) params[i] = paramRef(i);
218 }
virtual std::size_t getNpar() const
returns the number of parameters (to compute chi2&#39;s)
virtual double paramRef(Eigen::Index const i) const

◆ inverseTransform()

std::unique_ptr< AstrometryTransform > lsst::jointcal::AstrometryTransform::inverseTransform ( const double  precision,
const Frame region 
) const
virtualinherited

returns an inverse transform. Numerical if not overloaded.

precision and region refer to the "input" side of this, and hence to the output side of the returned AstrometryTransform.

Reimplemented in lsst::jointcal::TanRaDecToPixel, lsst::jointcal::TanSipPixelToRaDec, lsst::jointcal::TanPixelToRaDec, lsst::jointcal::AstrometryTransformLinear, and lsst::jointcal::AstrometryTransformInverse.

Definition at line 302 of file AstrometryTransform.cc.

303  {
304  return std::unique_ptr<AstrometryTransform>(new AstrometryTransformInverse(this, precision, region));
305 }
STL class.

◆ linearApproximation()

AstrometryTransformLinear lsst::jointcal::AstrometryTransformIdentity::linearApproximation ( Point const &  where,
const double  step = 0.01 
) const
overridevirtual

linear approximation.

Reimplemented from lsst::jointcal::AstrometryTransform.

Definition at line 442 of file AstrometryTransform.cc.

443  {
444  AstrometryTransformLinear result;
445  return result; // rely on default AstrometryTransformlin constructor;
446 }
py::object result
Definition: _schema.cc:429

◆ offsetParams()

void lsst::jointcal::AstrometryTransform::offsetParams ( Eigen::VectorXd const &  delta)
inherited

Definition at line 220 of file AstrometryTransform.cc.

220  {
221  std::size_t npar = getNpar();
222  for (std::size_t i = 0; i < npar; ++i) paramRef(i) += delta[i];
223 }
virtual std::size_t getNpar() const
returns the number of parameters (to compute chi2&#39;s)
virtual double paramRef(Eigen::Index const i) const

◆ paramDerivatives()

void lsst::jointcal::AstrometryTransform::paramDerivatives ( Point const &  where,
double *  dx,
double *  dy 
) const
virtualinherited

Derivative w.r.t parameters.

Derivatives should be al least 2*NPar long. first Npar, for x, last Npar for y.

Reimplemented in lsst::jointcal::AstrometryTransformPolynomial.

Definition at line 235 of file AstrometryTransform.cc.

235  {
236  throw LSST_EXCEPT(pex::exceptions::InvalidParameterError,
237  "AstrometryTransform::paramDerivatives() should never be called ");
238 }
#define LSST_EXCEPT(type,...)
Create an exception with a given type.
Definition: Exception.h:48

◆ paramRef() [1/2]

double lsst::jointcal::AstrometryTransform::paramRef ( Eigen::Index const  i) const
virtualinherited

Reimplemented in lsst::jointcal::AstrometryTransformPolynomial.

Definition at line 225 of file AstrometryTransform.cc.

225  {
226  throw LSST_EXCEPT(pex::exceptions::InvalidParameterError,
227  std::string("AstrometryTransform::paramRef should never be called "));
228 }
STL class.
#define LSST_EXCEPT(type,...)
Create an exception with a given type.
Definition: Exception.h:48

◆ paramRef() [2/2]

double & lsst::jointcal::AstrometryTransform::paramRef ( Eigen::Index const  i)
virtualinherited

Reimplemented in lsst::jointcal::AstrometryTransformPolynomial.

Definition at line 230 of file AstrometryTransform.cc.

230  {
231  throw LSST_EXCEPT(pex::exceptions::InvalidParameterError,
232  "AstrometryTransform::paramRef should never be called ");
233 }
#define LSST_EXCEPT(type,...)
Create an exception with a given type.
Definition: Exception.h:48

◆ read()

void lsst::jointcal::AstrometryTransformIdentity::read ( std::istream s)

Definition at line 456 of file AstrometryTransform.cc.

456  {
457  int format;
458  stream >> format;
459  if (format != 1)
460  throw LSST_EXCEPT(pex::exceptions::InvalidParameterError,
461  " AstrometryTransformIdentity::read : format is not 1 ");
462 }
def format(config, name=None, writeSourceLine=True, prefix="", verbose=False)
Definition: history.py:174
#define LSST_EXCEPT(type,...)
Create an exception with a given type.
Definition: Exception.h:48

◆ roughInverse()

std::unique_ptr< AstrometryTransform > lsst::jointcal::AstrometryTransform::roughInverse ( const Frame region) const
virtualinherited

Rough inverse.

Stored by the numerical inverter to guess starting point for the trials. Just here to enable overloading.

Reimplemented in lsst::jointcal::TanRaDecToPixel, lsst::jointcal::TanPixelToRaDec, and lsst::jointcal::AstrometryTransformInverse.

Definition at line 194 of file AstrometryTransform.cc.

194  {
195  // "in" and "out" refer to the inverse direction.
196  Point centerOut = region.getCenter();
197  Point centerIn = apply(centerOut);
198  AstrometryTransformLinear der;
199  computeDerivative(centerOut, der, std::sqrt(region.getArea()) / 5.);
200  der = der.inverted();
201  der = AstrometryTransformLinearShift(centerOut.x, centerOut.y) * der *
202  AstrometryTransformLinearShift(-centerIn.x, -centerIn.y);
203  return std::unique_ptr<AstrometryTransform>(new AstrometryTransformLinear(der));
204 }
virtual void computeDerivative(Point const &where, AstrometryTransformLinear &derivative, const double step=0.01) const
Computes the local Derivative of a transform, w.r.t.
STL class.
T sqrt(T... args)
virtual void apply(const double xIn, const double yIn, double &xOut, double &yOut) const =0

◆ toAstMap()

std::shared_ptr< ast::Mapping > lsst::jointcal::AstrometryTransformIdentity::toAstMap ( jointcal::Frame const &  domain) const
overridevirtual

Create an equivalent AST mapping for this transformation, including an analytic inverse if possible.

Parameters
domainThe domain of the transform, to help find an inverse.
Returns
An AST Mapping that represents this transformation.

Reimplemented from lsst::jointcal::AstrometryTransform.

Definition at line 448 of file AstrometryTransform.cc.

448  {
449  return std::make_shared<ast::UnitMap>(2); // a AstrometryTransformIdentity is identically ast::UnitMap(2)
450 }

◆ transformErrors()

void lsst::jointcal::AstrometryTransform::transformErrors ( Point const &  where,
const double *  vIn,
double *  vOut 
) const
virtualinherited

transform errors (represented as double[3] in order V(xx),V(yy),Cov(xy))

Definition at line 161 of file AstrometryTransform.cc.

161  {
162  AstrometryTransformLinear der;
163  computeDerivative(where, der, 0.01);
164  double a11 = der.A11();
165  double a22 = der.A22();
166  double a21 = der.A21();
167  double a12 = der.A12();
168 
169  /* (a11 a12) (vxx vxy)
170  M = ( ) and V = ( )
171  (a21 a22) (xvy vyy)
172 
173  Vxx = Vin[0], vyy = Vin[1], Vxy = Vin[2];
174  we want to compute M*V*tp(M)
175  A lin alg light package would be perfect...
176  */
177  int xx = 0;
178  int yy = 1;
179  int xy = 2;
180  // M*V :
181 
182  double b11 = a11 * vIn[xx] + a12 * vIn[xy];
183  double b22 = a21 * vIn[xy] + a22 * vIn[yy];
184  double b12 = a11 * vIn[xy] + a12 * vIn[yy];
185  double b21 = a21 * vIn[xx] + a22 * vIn[xy];
186 
187  // (M*V) * tp(M)
188 
189  vOut[xx] = b11 * a11 + b12 * a12;
190  vOut[xy] = b11 * a21 + b12 * a22;
191  vOut[yy] = b21 * a21 + b22 * a22;
192 }
virtual void computeDerivative(Point const &where, AstrometryTransformLinear &derivative, const double step=0.01) const
Computes the local Derivative of a transform, w.r.t.

◆ transformPosAndErrors()

void lsst::jointcal::AstrometryTransform::transformPosAndErrors ( const FatPoint in,
FatPoint out 
) const
virtualinherited

Reimplemented in lsst::jointcal::TanRaDecToPixel, and lsst::jointcal::AstrometryTransformPolynomial.

Definition at line 144 of file AstrometryTransform.cc.

144  {
145  FatPoint res; // in case in and out are the same address...
146  res = apply(in);
147  AstrometryTransformLinear der;
148  // could save a call here, since Derivative needs the transform of where that we already have
149  // 0.01 may not be a very good idea in all cases. May be we should provide a way of altering that.
150  computeDerivative(in, der, 0.01);
151  double a11 = der.A11();
152  double a22 = der.A22();
153  double a21 = der.A21();
154  double a12 = der.A12();
155  res.vx = a11 * (a11 * in.vx + 2 * a12 * in.vxy) + a12 * a12 * in.vy;
156  res.vy = a21 * a21 * in.vx + a22 * a22 * in.vy + 2. * a21 * a22 * in.vxy;
157  res.vxy = a21 * a11 * in.vx + a22 * a12 * in.vy + (a21 * a12 + a11 * a22) * in.vxy;
158  out = res;
159 }
virtual void computeDerivative(Point const &where, AstrometryTransformLinear &derivative, const double step=0.01) const
Computes the local Derivative of a transform, w.r.t.
virtual void apply(const double xIn, const double yIn, double &xOut, double &yOut) const =0

◆ transformStar()

void lsst::jointcal::AstrometryTransform::transformStar ( FatPoint in) const
inlineinherited

Definition at line 107 of file AstrometryTransform.h.

107 { transformPosAndErrors(in, in); }
virtual void transformPosAndErrors(const FatPoint &in, FatPoint &out) const

◆ write() [1/2]

void lsst::jointcal::AstrometryTransform::write ( const std::string fileName) const
inherited

Definition at line 245 of file AstrometryTransform.cc.

245  {
246  ofstream s(fileName.c_str());
247  write(s);
248  bool ok = !s.fail();
249  s.close();
250  if (!ok)
251  throw LSST_EXCEPT(pex::exceptions::InvalidParameterError,
252  "AstrometryTransform::write, something went wrong for file " + fileName);
253 }
void write(const std::string &fileName) const
STL class.
#define LSST_EXCEPT(type,...)
Create an exception with a given type.
Definition: Exception.h:48
T c_str(T... args)

◆ write() [2/2]

void lsst::jointcal::AstrometryTransformIdentity::write ( std::ostream s) const
overridevirtual

Reimplemented from lsst::jointcal::AstrometryTransform.

Definition at line 452 of file AstrometryTransform.cc.

452  {
453  stream << "AstrometryTransformIdentity 1" << endl;
454 }
T endl(T... args)

The documentation for this class was generated from the following files: