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ThirdDegreePolynomialGT.h
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1/* Copyright (C) 2008 National Institute For Space Research (INPE) - Brazil.
2
3 This file is part of the TerraLib - a Framework for building GIS enabled applications.
4
5 TerraLib is free software: you can redistribute it and/or modify
6 it under the terms of the GNU Lesser General Public License as published by
7 the Free Software Foundation, either version 3 of the License,
8 or (at your option) any later version.
9
10 TerraLib is distributed in the hope that it will be useful,
11 but WITHOUT ANY WARRANTY; without even the implied warranty of
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 GNU Lesser General Public License for more details.
14
15 You should have received a copy of the GNU Lesser General Public License
16 along with TerraLib. See COPYING. If not, write to
17 TerraLib Team at <terralib-team@terralib.org>.
18 */
19
20/*!
21 \file terralib/geometry/ThirdDegreePolynomialGT.h
22
23 \brief Third Degree Polynomial Geometric transformation.
24*/
25
26#ifndef __TERRALIB_GEOMETRY_INTERNAL_THIRDDEGREEPOLYNOMIALGT_H
27#define __TERRALIB_GEOMETRY_INTERNAL_THIRDDEGREEPOLYNOMIALGT_H
28
29// TerraLib
30#include "Config.h"
32
33// Boost
34#include <boost/concept_check.hpp>
35#include <boost/numeric/ublas/matrix.hpp>
36
37namespace te
38{
39 namespace gm
40 {
41 /*!
42 \class ThirdDegreePolynomialGT
43
44 \brief Third Degree Polynomial Geometric transformation.
45
46 \note The transformation parameters (inside GTParameters::m_directParameters) are disposed on the following form:
47
48 \code
49 u = a.x"0.y"0 + b.x"1*y"0 + c.x"0.y"1 + d.x"2.y"0 + e.x"1.y"1 + f.x"0.y"2 + g.x"3.y"0 + h.x"2.y"1 + i.x"1.y"2 + j.x"0.y"3
50 v = k.x"0.y"0 + l.x"1*y"0 + m.x"0.y"1 + n.x"2.y"0 + o.x"1.y"1 + p.x"0.y"2 + q.x"3.y"0 + r.x"2.y"1 + s.x"1.y"2 + t.x"0.y"3
51
52 GTParameters::m_directParameters = [ a b c d e f g h i j k l m n o p q r s t]
53 \endcode
54 */
56 {
57 public:
58
59 /*! \brief Default constructor. */
61
62 /*! \brief Destructor. */
64
65 const std::string& getName() const;
66
67 bool isValid( const GTParameters& params ) const;
68
69 void directMap( const GTParameters& params, const double& pt1X,
70 const double& pt1Y, double& pt2X, double& pt2Y ) const;
71
72 void inverseMap( const GTParameters& params, const double& pt2X,
73 const double& pt2Y, double& pt1X, double& pt1Y ) const;
74
75 unsigned int getMinRequiredTiePoints() const;
76
78
79 protected:
80
81 // Variables used by computeParameters
83 mutable unsigned int m_computeParameters_tpIdx;
84 mutable boost::numeric::ublas::matrix< double > m_computeParameters_W;
85 mutable boost::numeric::ublas::matrix< double > m_computeParameters_WI;
86 mutable boost::numeric::ublas::matrix< double > m_computeParameters_X;
87 mutable boost::numeric::ublas::matrix< double > m_computeParameters_XI;
88 mutable boost::numeric::ublas::matrix< double > m_computeParameters_Y;
89 mutable boost::numeric::ublas::matrix< double > m_computeParameters_YI;
90 mutable boost::numeric::ublas::matrix< double > m_computeParameters_PinvW;
91 mutable boost::numeric::ublas::matrix< double > m_computeParameters_PinvWI;
92 mutable boost::numeric::ublas::matrix< double > m_computeParameters_A;
93 mutable boost::numeric::ublas::matrix< double > m_computeParameters_AI;
94 mutable boost::numeric::ublas::matrix< double > m_computeParameters_B;
95 mutable boost::numeric::ublas::matrix< double > m_computeParameters_BI;
96
97 bool computeParameters( GTParameters& params ) const;
98 };
99
100 } // end namespace gm
101} // end namespace te
102
103#endif // __TERRALIB_GEOMETRY_INTERNAL_THIRDDEGREEPOLYNOMIALGT_H
104
2D Geometric transformation base class.
2D Geometric transformation parameters.
Definition: GTParameters.h:51
2D Geometric transformation base class.
Third Degree Polynomial Geometric transformation.
ThirdDegreePolynomialGT()
Default constructor.
boost::numeric::ublas::matrix< double > m_computeParameters_A
boost::numeric::ublas::matrix< double > m_computeParameters_W
boost::numeric::ublas::matrix< double > m_computeParameters_X
void directMap(const GTParameters &params, const double &pt1X, const double &pt1Y, double &pt2X, double &pt2Y) const
Direct mapping (from pt1 space into pt2 space).
boost::numeric::ublas::matrix< double > m_computeParameters_B
void inverseMap(const GTParameters &params, const double &pt2X, const double &pt2Y, double &pt1X, double &pt1Y) const
Inverse mapping (from pt2 space into pt1 space).
const std::string & getName() const
Returns the current transformation name.
boost::numeric::ublas::matrix< double > m_computeParameters_BI
GeometricTransformation * clone() const
Creat a clone copy of this instance.
boost::numeric::ublas::matrix< double > m_computeParameters_AI
bool isValid(const GTParameters &params) const
Verifies if the supplied parameters already has a valid transformation.
unsigned int getMinRequiredTiePoints() const
Returns the minimum number of required tie-points for the current transformation.
boost::numeric::ublas::matrix< double > m_computeParameters_PinvW
boost::numeric::ublas::matrix< double > m_computeParameters_YI
boost::numeric::ublas::matrix< double > m_computeParameters_XI
boost::numeric::ublas::matrix< double > m_computeParameters_Y
boost::numeric::ublas::matrix< double > m_computeParameters_PinvWI
boost::numeric::ublas::matrix< double > m_computeParameters_WI
bool computeParameters(GTParameters &params) const
Calculate the transformation parameters following the new supplied tie-points.
TerraLib.
#define TEGEOMEXPORT
You can use this macro in order to export/import classes and functions from this module.
Definition: Config.h:76
Proxy configuration file for TerraView (see terraview_config.h).