LSST Applications  21.0.0-147-g0e635eb1+1acddb5be5,22.0.0+052faf71bd,22.0.0+1ea9a8b2b2,22.0.0+6312710a6c,22.0.0+729191ecac,22.0.0+7589c3a021,22.0.0+9f079a9461,22.0.1-1-g7d6de66+b8044ec9de,22.0.1-1-g87000a6+536b1ee016,22.0.1-1-g8e32f31+6312710a6c,22.0.1-10-gd060f87+016f7cdc03,22.0.1-12-g9c3108e+df145f6f68,22.0.1-16-g314fa6d+c825727ab8,22.0.1-19-g93a5c75+d23f2fb6d8,22.0.1-19-gb93eaa13+aab3ef7709,22.0.1-2-g8ef0a89+b8044ec9de,22.0.1-2-g92698f7+9f079a9461,22.0.1-2-ga9b0f51+052faf71bd,22.0.1-2-gac51dbf+052faf71bd,22.0.1-2-gb66926d+6312710a6c,22.0.1-2-gcb770ba+09e3807989,22.0.1-20-g32debb5+b8044ec9de,22.0.1-23-gc2439a9a+fb0756638e,22.0.1-3-g496fd5d+09117f784f,22.0.1-3-g59f966b+1e6ba2c031,22.0.1-3-g849a1b8+f8b568069f,22.0.1-3-gaaec9c0+c5c846a8b1,22.0.1-32-g5ddfab5d3+60ce4897b0,22.0.1-4-g037fbe1+64e601228d,22.0.1-4-g8623105+b8044ec9de,22.0.1-5-g096abc9+d18c45d440,22.0.1-5-g15c806e+57f5c03693,22.0.1-7-gba73697+57f5c03693,master-g6e05de7fdc+c1283a92b8,master-g72cdda8301+729191ecac,w.2021.39
LSST Data Management Base Package
LinearTransform.cc
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1 /*
2  * Developed for the LSST Data Management System.
3  * This product includes software developed by the LSST Project
4  * (https://www.lsst.org).
5  * See the COPYRIGHT file at the top-level directory of this distribution
6  * for details of code ownership.
7  *
8  * This program is free software: you can redistribute it and/or modify
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15  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16  * GNU General Public License for more details.
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19  * along with this program. If not, see <https://www.gnu.org/licenses/>.
20  */
21 
22 #include <iostream>
23 #include <iomanip>
24 
25 #include "Eigen/LU"
26 
28 
29 namespace lsst {
30 namespace geom {
31 
34  r << (*this)[XX], (*this)[YX], (*this)[XY], (*this)[YY];
35  return r;
36 }
37 
39  (*this)[XX] = vector[XX];
40  (*this)[XY] = vector[XY];
41  (*this)[YX] = vector[YX];
42  (*this)[YY] = vector[YY];
43 }
44 
46  Eigen::FullPivLU<Matrix> lu(getMatrix());
47  if (!lu.isInvertible()) {
48  throw LSST_EXCEPT(SingularTransformException, "Could not compute LinearTransform inverse");
49  }
50  Matrix inv = lu.inverse();
51  return LinearTransform(inv);
52 }
53 
54 double LinearTransform::computeDeterminant() const noexcept { return getMatrix().determinant(); }
55 
57  TransformDerivativeMatrix r = TransformDerivativeMatrix::Zero();
58  r(0, XX) = input.getX();
59  r(0, XY) = input.getY();
60  r(1, YX) = input.getX();
61  r(1, YY) = input.getY();
62  return r;
63 }
64 
66  std::ios::fmtflags flags = os.flags();
67  int prec = os.precision(7);
68  os.setf(std::ios::fixed);
69  os << "LinearTransform([(" << std::setw(10) << t[LinearTransform::XX] << "," << std::setw(10)
70  << t[LinearTransform::XY] << "),\n";
71  os << " (" << std::setw(10) << t[LinearTransform::YX] << "," << std::setw(10)
72  << t[LinearTransform::YY] << ")])";
73  os.precision(prec);
74  os.flags(flags);
75  return os;
76 }
77 
78 } // namespace geom
79 } // namespace lsst
#define LSST_EXCEPT(type,...)
Create an exception with a given type.
Definition: Exception.h:48
std::ostream * os
Definition: Schema.cc:557
A 2D linear coordinate transformation.
Eigen::Matrix< double, 2, 2, Eigen::DontAlign > Matrix
ParameterVector const getParameterVector() const noexcept
Return the transform matrix elements as a parameter vector.
LinearTransform const inverted() const
Return the inverse transform.
Matrix const & getMatrix() const noexcept
double computeDeterminant() const noexcept
Return the determinant of the 2x2 matrix.
Eigen::Matrix< double, 4, 1 > ParameterVector
LinearTransform() noexcept
Construct an empty (identity) LinearTransform.
TransformDerivativeMatrix dTransform(Point2D const &input) const noexcept
Derivative of (*this)(input) with respect to the transform elements (for Point).
void setParameterVector(ParameterVector const &vector) noexcept
Set the transform matrix elements from a parameter vector.
Eigen::Matrix< double, 2, 4 > TransformDerivativeMatrix
T flags(T... args)
std::ostream & operator<<(std::ostream &os, lsst::geom::AffineTransform const &transform)
A base class for image defects.
T precision(T... args)
T setf(T... args)
T setw(T... args)