#ifndef BOOST_GEOMETRY_PROJECTIONS_MBTFPP_HPP #define BOOST_GEOMETRY_PROJECTIONS_MBTFPP_HPP // Boost.Geometry - extensions-gis-projections (based on PROJ4) // This file is automatically generated. DO NOT EDIT. // Copyright (c) 2008-2015 Barend Gehrels, Amsterdam, the Netherlands. // This file was modified by Oracle on 2017. // Modifications copyright (c) 2017, Oracle and/or its affiliates. // Contributed and/or modified by Adam Wulkiewicz, on behalf of Oracle. // Use, modification and distribution is subject to the Boost Software License, // Version 1.0. (See accompanying file LICENSE_1_0.txt or copy at // http://www.boost.org/LICENSE_1_0.txt) // This file is converted from PROJ4, http://trac.osgeo.org/proj // PROJ4 is originally written by Gerald Evenden (then of the USGS) // PROJ4 is maintained by Frank Warmerdam // PROJ4 is converted to Boost.Geometry by Barend Gehrels // Last updated version of proj: 4.9.1 // Original copyright notice: // Permission is hereby granted, free of charge, to any person obtaining a // copy of this software and associated documentation files (the "Software"), // to deal in the Software without restriction, including without limitation // the rights to use, copy, modify, merge, publish, distribute, sublicense, // and/or sell copies of the Software, and to permit persons to whom the // Software is furnished to do so, subject to the following conditions: // The above copyright notice and this permission notice shall be included // in all copies or substantial portions of the Software. // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS // OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL // THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING // FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER // DEALINGS IN THE SOFTWARE. #include #include #include #include #include namespace boost { namespace geometry { namespace srs { namespace par4 { struct mbtfpp {}; }} //namespace srs::par4 namespace projections { #ifndef DOXYGEN_NO_DETAIL namespace detail { namespace mbtfpp { static const double CS_ = .95257934441568037152; static const double FXC = .92582009977255146156; static const double FYC = 3.40168025708304504493; //static const double C23 = .66666666666666666666; //static const double C13 = .33333333333333333333; static const double ONEEPS = 1.0000001; template inline T C23() { return detail::TWOTHIRD(); } template inline T C13() { return detail::THIRD(); } // template class, using CRTP to implement forward/inverse template struct base_mbtfpp_spheroid : public base_t_fi, CalculationType, Parameters> { typedef CalculationType geographic_type; typedef CalculationType cartesian_type; inline base_mbtfpp_spheroid(const Parameters& par) : base_t_fi, CalculationType, Parameters>(*this, par) {} // FORWARD(s_forward) spheroid // Project coordinates from geographic (lon, lat) to cartesian (x, y) inline void fwd(geographic_type& lp_lon, geographic_type& lp_lat, cartesian_type& xy_x, cartesian_type& xy_y) const { static const CalculationType C23 = mbtfpp::C23(); static const CalculationType C13 = mbtfpp::C13(); lp_lat = asin(CS_ * sin(lp_lat)); xy_x = FXC * lp_lon * (2. * cos(C23 * lp_lat) - 1.); xy_y = FYC * sin(C13 * lp_lat); } // INVERSE(s_inverse) spheroid // Project coordinates from cartesian (x, y) to geographic (lon, lat) inline void inv(cartesian_type& xy_x, cartesian_type& xy_y, geographic_type& lp_lon, geographic_type& lp_lat) const { static const CalculationType HALFPI = detail::HALFPI(); static const CalculationType C23 = mbtfpp::C23(); lp_lat = xy_y / FYC; if (fabs(lp_lat) >= 1.) { if (fabs(lp_lat) > ONEEPS) BOOST_THROW_EXCEPTION( projection_exception(-20) ); else lp_lat = (lp_lat < 0.) ? -HALFPI : HALFPI; } else lp_lat = asin(lp_lat); lp_lon = xy_x / ( FXC * (2. * cos(C23 * (lp_lat *= 3.)) - 1.) ); if (fabs(lp_lat = sin(lp_lat) / CS_) >= 1.) { if (fabs(lp_lat) > ONEEPS) BOOST_THROW_EXCEPTION( projection_exception(-20) ); else lp_lat = (lp_lat < 0.) ? -HALFPI : HALFPI; } else lp_lat = asin(lp_lat); } static inline std::string get_name() { return "mbtfpp_spheroid"; } }; // McBride-Thomas Flat-Polar Parabolic template inline void setup_mbtfpp(Parameters& par) { par.es = 0.; } }} // namespace detail::mbtfpp #endif // doxygen /*! \brief McBride-Thomas Flat-Polar Parabolic projection \ingroup projections \tparam Geographic latlong point type \tparam Cartesian xy point type \tparam Parameters parameter type \par Projection characteristics - Cylindrical - Spheroid \par Example \image html ex_mbtfpp.gif */ template struct mbtfpp_spheroid : public detail::mbtfpp::base_mbtfpp_spheroid { inline mbtfpp_spheroid(const Parameters& par) : detail::mbtfpp::base_mbtfpp_spheroid(par) { detail::mbtfpp::setup_mbtfpp(this->m_par); } }; #ifndef DOXYGEN_NO_DETAIL namespace detail { // Static projection BOOST_GEOMETRY_PROJECTIONS_DETAIL_STATIC_PROJECTION(srs::par4::mbtfpp, mbtfpp_spheroid, mbtfpp_spheroid) // Factory entry(s) template class mbtfpp_entry : public detail::factory_entry { public : virtual base_v* create_new(const Parameters& par) const { return new base_v_fi, CalculationType, Parameters>(par); } }; template inline void mbtfpp_init(detail::base_factory& factory) { factory.add_to_factory("mbtfpp", new mbtfpp_entry); } } // namespace detail #endif // doxygen } // namespace projections }} // namespace boost::geometry #endif // BOOST_GEOMETRY_PROJECTIONS_MBTFPP_HPP