ortho.hpp 9.2 KB

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  1. // Boost.Geometry - gis-projections (based on PROJ4)
  2. // Copyright (c) 2008-2015 Barend Gehrels, Amsterdam, the Netherlands.
  3. // This file was modified by Oracle on 2017, 2018, 2019.
  4. // Modifications copyright (c) 2017-2019, Oracle and/or its affiliates.
  5. // Contributed and/or modified by Adam Wulkiewicz, on behalf of Oracle.
  6. // Use, modification and distribution is subject to the Boost Software License,
  7. // Version 1.0. (See accompanying file LICENSE_1_0.txt or copy at
  8. // http://www.boost.org/LICENSE_1_0.txt)
  9. // This file is converted from PROJ4, http://trac.osgeo.org/proj
  10. // PROJ4 is originally written by Gerald Evenden (then of the USGS)
  11. // PROJ4 is maintained by Frank Warmerdam
  12. // PROJ4 is converted to Boost.Geometry by Barend Gehrels
  13. // Last updated version of proj: 5.0.0
  14. // Original copyright notice:
  15. // Permission is hereby granted, free of charge, to any person obtaining a
  16. // copy of this software and associated documentation files (the "Software"),
  17. // to deal in the Software without restriction, including without limitation
  18. // the rights to use, copy, modify, merge, publish, distribute, sublicense,
  19. // and/or sell copies of the Software, and to permit persons to whom the
  20. // Software is furnished to do so, subject to the following conditions:
  21. // The above copyright notice and this permission notice shall be included
  22. // in all copies or substantial portions of the Software.
  23. // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
  24. // OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  25. // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
  26. // THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  27. // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
  28. // FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
  29. // DEALINGS IN THE SOFTWARE.
  30. #ifndef BOOST_GEOMETRY_PROJECTIONS_ORTHO_HPP
  31. #define BOOST_GEOMETRY_PROJECTIONS_ORTHO_HPP
  32. #include <boost/config.hpp>
  33. #include <boost/geometry/util/math.hpp>
  34. #include <boost/math/special_functions/hypot.hpp>
  35. #include <boost/geometry/srs/projections/impl/base_static.hpp>
  36. #include <boost/geometry/srs/projections/impl/base_dynamic.hpp>
  37. #include <boost/geometry/srs/projections/impl/projects.hpp>
  38. #include <boost/geometry/srs/projections/impl/factory_entry.hpp>
  39. namespace boost { namespace geometry
  40. {
  41. namespace projections
  42. {
  43. #ifndef DOXYGEN_NO_DETAIL
  44. namespace detail { namespace ortho
  45. {
  46. enum mode_type {
  47. n_pole = 0,
  48. s_pole = 1,
  49. equit = 2,
  50. obliq = 3
  51. };
  52. template <typename T>
  53. struct par_ortho
  54. {
  55. T sinph0;
  56. T cosph0;
  57. mode_type mode;
  58. };
  59. static const double epsilon10 = 1.e-10;
  60. template <typename T, typename Parameters>
  61. struct base_ortho_spheroid
  62. {
  63. par_ortho<T> m_proj_parm;
  64. // FORWARD(s_forward) spheroid
  65. // Project coordinates from geographic (lon, lat) to cartesian (x, y)
  66. inline void fwd(Parameters const& par, T const& lp_lon, T const& lp_lat, T& xy_x, T& xy_y) const
  67. {
  68. static const T half_pi = detail::half_pi<T>();
  69. T coslam, cosphi, sinphi;
  70. cosphi = cos(lp_lat);
  71. coslam = cos(lp_lon);
  72. switch (this->m_proj_parm.mode) {
  73. case equit:
  74. if (cosphi * coslam < - epsilon10) {
  75. BOOST_THROW_EXCEPTION( projection_exception(error_tolerance_condition) );
  76. }
  77. xy_y = sin(lp_lat);
  78. break;
  79. case obliq:
  80. if (this->m_proj_parm.sinph0 * (sinphi = sin(lp_lat)) +
  81. this->m_proj_parm.cosph0 * cosphi * coslam < - epsilon10) {
  82. BOOST_THROW_EXCEPTION( projection_exception(error_tolerance_condition) );
  83. }
  84. xy_y = this->m_proj_parm.cosph0 * sinphi - this->m_proj_parm.sinph0 * cosphi * coslam;
  85. break;
  86. case n_pole:
  87. coslam = - coslam;
  88. BOOST_FALLTHROUGH;
  89. case s_pole:
  90. if (fabs(lp_lat - par.phi0) - epsilon10 > half_pi) {
  91. BOOST_THROW_EXCEPTION( projection_exception(error_tolerance_condition) );
  92. }
  93. xy_y = cosphi * coslam;
  94. break;
  95. }
  96. xy_x = cosphi * sin(lp_lon);
  97. }
  98. // INVERSE(s_inverse) spheroid
  99. // Project coordinates from cartesian (x, y) to geographic (lon, lat)
  100. inline void inv(Parameters const& par, T xy_x, T xy_y, T& lp_lon, T& lp_lat) const
  101. {
  102. static const T half_pi = detail::half_pi<T>();
  103. T rh, cosc, sinc;
  104. if ((sinc = (rh = boost::math::hypot(xy_x, xy_y))) > 1.) {
  105. if ((sinc - 1.) > epsilon10) {
  106. BOOST_THROW_EXCEPTION( projection_exception(error_tolerance_condition) );
  107. }
  108. sinc = 1.;
  109. }
  110. cosc = sqrt(1. - sinc * sinc); /* in this range OK */
  111. if (fabs(rh) <= epsilon10) {
  112. lp_lat = par.phi0;
  113. lp_lon = 0.0;
  114. } else {
  115. switch (this->m_proj_parm.mode) {
  116. case n_pole:
  117. xy_y = -xy_y;
  118. lp_lat = acos(sinc);
  119. break;
  120. case s_pole:
  121. lp_lat = - acos(sinc);
  122. break;
  123. case equit:
  124. lp_lat = xy_y * sinc / rh;
  125. xy_x *= sinc;
  126. xy_y = cosc * rh;
  127. goto sinchk;
  128. case obliq:
  129. lp_lat = cosc * this->m_proj_parm.sinph0 + xy_y * sinc * this->m_proj_parm.cosph0 /rh;
  130. xy_y = (cosc - this->m_proj_parm.sinph0 * lp_lat) * rh;
  131. xy_x *= sinc * this->m_proj_parm.cosph0;
  132. sinchk:
  133. if (fabs(lp_lat) >= 1.)
  134. lp_lat = lp_lat < 0. ? -half_pi : half_pi;
  135. else
  136. lp_lat = asin(lp_lat);
  137. break;
  138. }
  139. lp_lon = (xy_y == 0. && (this->m_proj_parm.mode == obliq || this->m_proj_parm.mode == equit))
  140. ? (xy_x == 0. ? 0. : xy_x < 0. ? -half_pi : half_pi)
  141. : atan2(xy_x, xy_y);
  142. }
  143. }
  144. static inline std::string get_name()
  145. {
  146. return "ortho_spheroid";
  147. }
  148. };
  149. // Orthographic
  150. template <typename Parameters, typename T>
  151. inline void setup_ortho(Parameters& par, par_ortho<T>& proj_parm)
  152. {
  153. if (fabs(fabs(par.phi0) - geometry::math::half_pi<T>()) <= epsilon10)
  154. proj_parm.mode = par.phi0 < 0. ? s_pole : n_pole;
  155. else if (fabs(par.phi0) > epsilon10) {
  156. proj_parm.mode = obliq;
  157. proj_parm.sinph0 = sin(par.phi0);
  158. proj_parm.cosph0 = cos(par.phi0);
  159. } else
  160. proj_parm.mode = equit;
  161. par.es = 0.;
  162. }
  163. }} // namespace detail::ortho
  164. #endif // doxygen
  165. /*!
  166. \brief Orthographic projection
  167. \ingroup projections
  168. \tparam Geographic latlong point type
  169. \tparam Cartesian xy point type
  170. \tparam Parameters parameter type
  171. \par Projection characteristics
  172. - Azimuthal
  173. - Spheroid
  174. \par Example
  175. \image html ex_ortho.gif
  176. */
  177. template <typename T, typename Parameters>
  178. struct ortho_spheroid : public detail::ortho::base_ortho_spheroid<T, Parameters>
  179. {
  180. template <typename Params>
  181. inline ortho_spheroid(Params const& , Parameters & par)
  182. {
  183. detail::ortho::setup_ortho(par, this->m_proj_parm);
  184. }
  185. };
  186. #ifndef DOXYGEN_NO_DETAIL
  187. namespace detail
  188. {
  189. // Static projection
  190. BOOST_GEOMETRY_PROJECTIONS_DETAIL_STATIC_PROJECTION_FI(srs::spar::proj_ortho, ortho_spheroid)
  191. // Factory entry(s)
  192. BOOST_GEOMETRY_PROJECTIONS_DETAIL_FACTORY_ENTRY_FI(ortho_entry, ortho_spheroid)
  193. BOOST_GEOMETRY_PROJECTIONS_DETAIL_FACTORY_INIT_BEGIN(ortho_init)
  194. {
  195. BOOST_GEOMETRY_PROJECTIONS_DETAIL_FACTORY_INIT_ENTRY(ortho, ortho_entry)
  196. }
  197. } // namespace detail
  198. #endif // doxygen
  199. } // namespace projections
  200. }} // namespace boost::geometry
  201. #endif // BOOST_GEOMETRY_PROJECTIONS_ORTHO_HPP