AlbersEqualArea.cpp 6.63 KB
Newer Older
Valentin Platzgummer's avatar
Valentin Platzgummer committed
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186
/**
 * \file NETGeographicLib/AlbersEqualArea.cpp
 * \brief Implementation for NETGeographicLib::AlbersEqualArea class
 *
 * NETGeographicLib is copyright (c) Scott Heiman (2013)
 * GeographicLib is Copyright (c) Charles Karney (2010-2012)
 * <charles@karney.com> and licensed under the MIT/X11 License.
 * For more information, see
 * https://geographiclib.sourceforge.io/
 **********************************************************************/
#include "stdafx.h"
#include "GeographicLib/AlbersEqualArea.hpp"
#include "AlbersEqualArea.h"
#include "NETGeographicLib.h"

using namespace NETGeographicLib;

//*****************************************************************************
AlbersEqualArea::!AlbersEqualArea()
{
    if ( m_pAlbersEqualArea != NULL )
    {
        delete m_pAlbersEqualArea;
        m_pAlbersEqualArea = NULL;
    }
}

//*****************************************************************************
AlbersEqualArea::AlbersEqualArea( StandardTypes type )
{
    try
    {
        switch ( type )
        {
        case StandardTypes::CylindricalEqualArea:
            m_pAlbersEqualArea = new GeographicLib::AlbersEqualArea( GeographicLib::AlbersEqualArea::CylindricalEqualArea() );
            break;
        case StandardTypes::AzimuthalEqualAreaNorth:
            m_pAlbersEqualArea = new GeographicLib::AlbersEqualArea( GeographicLib::AlbersEqualArea::AzimuthalEqualAreaNorth() );
            break;
        case StandardTypes::AzimuthalEqualAreaSouth:
            m_pAlbersEqualArea = new GeographicLib::AlbersEqualArea( GeographicLib::AlbersEqualArea::AzimuthalEqualAreaSouth() );
            break;
        }
    }
    catch ( std::bad_alloc )
    {
        throw gcnew GeographicErr( "Failed to allocate memory for a GeographicLib::AlbersEqualArea" );
    }
}

//*****************************************************************************
AlbersEqualArea::AlbersEqualArea(double a, double f, double stdlat1, double stdlat2, double k1)
{
    try
    {
        m_pAlbersEqualArea = new GeographicLib::AlbersEqualArea( a, f, stdlat1, stdlat2, k1 );
    }
    catch ( GeographicLib::GeographicErr err )
    {
        throw gcnew GeographicErr( err.what() );
    }
    catch ( std::bad_alloc )
    {
        throw gcnew GeographicErr( "Failed to allocate memory for a GeographicLib::AlbersEqualArea" );
    }
}

//*****************************************************************************
AlbersEqualArea::AlbersEqualArea(double a, double f, double stdlat, double k0)
{
    try
    {
        m_pAlbersEqualArea = new GeographicLib::AlbersEqualArea( a, f, stdlat, k0 );
    }
    catch ( GeographicLib::GeographicErr err )
    {
        throw gcnew GeographicErr( err.what() );
    }
    catch ( std::bad_alloc )
    {
        throw gcnew GeographicErr( "Failed to allocate memory for a GeographicLib::AlbersEqualArea" );
    }
}

//*****************************************************************************
AlbersEqualArea::AlbersEqualArea(double a, double f,
                        double sinlat1, double coslat1,
                        double sinlat2, double coslat2,
                        double k1)
{
    try
    {
        m_pAlbersEqualArea = new GeographicLib::AlbersEqualArea(
            a, f, sinlat1, coslat1, sinlat2, coslat2, k1 );
    }
    catch ( GeographicLib::GeographicErr err )
    {
        throw gcnew GeographicErr( err.what() );
    }
    catch ( std::bad_alloc )
    {
        throw gcnew GeographicErr( "Failed to allocate memory for a GeographicLib::AlbersEqualArea" );
    }
}

//*****************************************************************************
void AlbersEqualArea::SetScale(double lat, double k)
{
    try
    {
        m_pAlbersEqualArea->SetScale( lat, k );
    }
    catch ( const std::exception& xcpt )
    {
        throw gcnew GeographicErr( xcpt.what() );
    }
}

//*****************************************************************************
void AlbersEqualArea::Forward(double lon0, double lat, double lon,
                [System::Runtime::InteropServices::Out] double% x,
                [System::Runtime::InteropServices::Out] double% y,
                [System::Runtime::InteropServices::Out] double% gamma,
                [System::Runtime::InteropServices::Out] double% k)
{
    double lx, ly, lgamma, lk;
    m_pAlbersEqualArea->Forward( lon0, lat, lon, lx, ly, lgamma, lk );
    x = lx;
    y = ly;
    gamma = lgamma;
    k = lk;
}

//*****************************************************************************
void AlbersEqualArea::Reverse(double lon0, double x, double y,
                     [System::Runtime::InteropServices::Out] double% lat,
                     [System::Runtime::InteropServices::Out] double% lon,
                     [System::Runtime::InteropServices::Out] double% gamma,
                     [System::Runtime::InteropServices::Out] double% k)
{
    double llat, llon, lgamma, lk;
    m_pAlbersEqualArea->Reverse( lon0, x, y, llat, llon, lgamma, lk );
    lat = llat;
    lon = llon;
    gamma = lgamma;
    k = lk;
}

//*****************************************************************************
void AlbersEqualArea::Forward(double lon0, double lat, double lon,
                     [System::Runtime::InteropServices::Out] double% x,
                     [System::Runtime::InteropServices::Out] double% y)
{
    double lx, ly, lgamma, lk;
    m_pAlbersEqualArea->Forward( lon0, lat, lon, lx, ly, lgamma, lk );
    x = lx;
    y = ly;
}

//*****************************************************************************
void AlbersEqualArea::Reverse(double lon0, double x, double y,
                     [System::Runtime::InteropServices::Out] double% lat,
                     [System::Runtime::InteropServices::Out] double% lon)
{
    double llat, llon, lgamma, lk;
    m_pAlbersEqualArea->Reverse( lon0, x, y, llat, llon, lgamma, lk );
    lat = llat;
    lon = llon;
}

//*****************************************************************************
double AlbersEqualArea::EquatorialRadius::get()
{ return m_pAlbersEqualArea->EquatorialRadius(); }

//*****************************************************************************
double AlbersEqualArea::Flattening::get()
{ return m_pAlbersEqualArea->Flattening(); }

//*****************************************************************************
double AlbersEqualArea::OriginLatitude::get()
{ return m_pAlbersEqualArea->OriginLatitude(); }

//*****************************************************************************
double AlbersEqualArea::CentralScale::get()
{ return m_pAlbersEqualArea->CentralScale(); }