generic_rk_call_algebra.hpp 10 KB

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  1. /*
  2. [auto_generated]
  3. boost/numeric/odeint/stepper/detail/generic_rk_call_algebra.hpp
  4. [begin_description]
  5. Algebra caller for the generic Runge-Kutta methods.
  6. [end_description]
  7. Copyright 2011-2012 Mario Mulansky
  8. Copyright 2011-2012 Karsten Ahnert
  9. Distributed under the Boost Software License, Version 1.0.
  10. (See accompanying file LICENSE_1_0.txt or
  11. copy at http://www.boost.org/LICENSE_1_0.txt)
  12. */
  13. #ifndef BOOST_NUMERIC_ODEINT_STEPPER_DETAIL_GENERIC_RK_CALL_ALGEBRA_HPP_INCLUDED
  14. #define BOOST_NUMERIC_ODEINT_STEPPER_DETAIL_GENERIC_RK_CALL_ALGEBRA_HPP_INCLUDED
  15. namespace boost {
  16. namespace numeric {
  17. namespace odeint {
  18. namespace detail {
  19. template< size_t StageNumber , class Algebra >
  20. struct generic_rk_call_algebra;
  21. template< class Algebra >
  22. struct generic_rk_call_algebra< 1 , Algebra >
  23. {
  24. typedef Algebra algebra_type;
  25. template< class S1 , class S2 , class S3 , class S4 , class Op>
  26. void operator()( algebra_type &algebra , S1 &s1 , S2 &s2 , S3 &s3 , S4 * /* s4_array */ , Op op ) const
  27. {
  28. algebra.for_each3( s1 , s2 , s3 , op );
  29. }
  30. template< class S1 , class S2 , class S4 , class Op>
  31. void operator()( algebra_type &algebra , S1 &s1 , S2 &s2 , S4 * /* s4_array */ , Op op ) const
  32. {
  33. algebra.for_each2( s1 , s2 , op );
  34. }
  35. };
  36. template< class Algebra >
  37. struct generic_rk_call_algebra< 2 , Algebra >
  38. {
  39. template< class S1 , class S2 , class S3 , class S4 , class Op>
  40. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S3 &s3 , S4 s4_array[1] , Op op ) const
  41. {
  42. algebra.for_each4( s1 , s2 , s3 , s4_array[0].m_v , op );
  43. }
  44. template< class S1 , class S2 , class S4 , class Op>
  45. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S4 s4_array[1] , Op op ) const
  46. {
  47. algebra.for_each3( s1 , s2 , s4_array[0].m_v , op );
  48. }
  49. };
  50. template< class Algebra >
  51. struct generic_rk_call_algebra< 3 , Algebra >
  52. {
  53. template< class S1 , class S2 , class S3 , class S4 , class Op>
  54. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S3 &s3 , S4 s4_array[2] , Op op ) const
  55. {
  56. algebra.for_each5( s1 , s2 , s3 , s4_array[0].m_v , s4_array[1].m_v , op );
  57. }
  58. template< class S1 , class S2 , class S4 , class Op>
  59. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S4 s4_array[2] , Op op ) const
  60. {
  61. algebra.for_each4( s1 , s2 , s4_array[0].m_v , s4_array[1].m_v , op );
  62. }
  63. };
  64. template< class Algebra >
  65. struct generic_rk_call_algebra< 4 , Algebra >
  66. {
  67. template< class S1 , class S2 , class S3 , class S4 , class Op>
  68. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S3 &s3 , S4 s4_array[3] , Op op ) const
  69. {
  70. algebra.for_each6( s1 , s2 , s3 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , op );
  71. }
  72. template< class S1 , class S2 , class S4 , class Op>
  73. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S4 s4_array[3] , Op op ) const
  74. {
  75. algebra.for_each5( s1 , s2 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , op );
  76. }
  77. };
  78. template< class Algebra >
  79. struct generic_rk_call_algebra< 5 , Algebra >
  80. {
  81. template< class S1 , class S2 , class S3 , class S4 , class Op>
  82. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S3 &s3 , S4 s4_array[4] , Op op ) const
  83. {
  84. algebra.for_each7( s1 , s2 , s3 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , op );
  85. }
  86. template< class S1 , class S2 , class S4 , class Op>
  87. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S4 s4_array[4] , Op op ) const
  88. {
  89. algebra.for_each6( s1 , s2 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , op );
  90. }
  91. };
  92. template< class Algebra >
  93. struct generic_rk_call_algebra< 6 , Algebra >
  94. {
  95. template< class S1 , class S2 , class S3 , class S4 , class Op>
  96. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S3 &s3 , S4 s4_array[5] , Op op ) const
  97. {
  98. algebra.for_each8( s1 , s2 , s3 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , s4_array[4].m_v , op );
  99. }
  100. template< class S1 , class S2 , class S4 , class Op>
  101. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S4 s4_array[5] , Op op ) const
  102. {
  103. algebra.for_each7( s1 , s2 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , s4_array[4].m_v , op );
  104. }
  105. };
  106. template< class Algebra >
  107. struct generic_rk_call_algebra< 7 , Algebra >
  108. {
  109. template< class S1 , class S2 , class S3 , class S4 , class Op>
  110. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S3 &s3 , S4 s4_array[6] , Op op ) const
  111. {
  112. algebra.for_each9( s1 , s2 , s3 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , s4_array[4].m_v ,
  113. s4_array[5].m_v , op );
  114. }
  115. template< class S1 , class S2 , class S4 , class Op>
  116. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S4 s4_array[6] , Op op ) const
  117. {
  118. algebra.for_each8( s1 , s2 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , s4_array[4].m_v ,
  119. s4_array[5].m_v , op );
  120. }
  121. };
  122. template< class Algebra >
  123. struct generic_rk_call_algebra< 8 , Algebra >
  124. {
  125. template< class S1 , class S2 , class S3 , class S4 , class Op>
  126. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S3 &s3 , S4 s4_array[7] , Op op ) const
  127. {
  128. algebra.for_each10( s1 , s2 , s3 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , s4_array[4].m_v ,
  129. s4_array[5].m_v , s4_array[6].m_v , op );
  130. }
  131. template< class S1 , class S2 , class S4 , class Op>
  132. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S4 s4_array[7] , Op op ) const
  133. {
  134. algebra.for_each9( s1 , s2 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , s4_array[4].m_v ,
  135. s4_array[5].m_v , s4_array[6].m_v , op );
  136. }
  137. };
  138. template< class Algebra >
  139. struct generic_rk_call_algebra< 9 , Algebra >
  140. {
  141. template< class S1 , class S2 , class S3 , class S4 , class Op>
  142. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S3 &s3 , S4 s4_array[8] , Op op ) const
  143. {
  144. algebra.for_each11( s1 , s2 , s3 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , s4_array[4].m_v ,
  145. s4_array[5].m_v , s4_array[6].m_v , s4_array[7].m_v , op );
  146. }
  147. template< class S1 , class S2 , class S4 , class Op>
  148. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S4 s4_array[8] , Op op ) const
  149. {
  150. algebra.for_each10( s1 , s2 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , s4_array[4].m_v ,
  151. s4_array[5].m_v , s4_array[6].m_v , s4_array[7].m_v , op );
  152. }
  153. };
  154. template< class Algebra >
  155. struct generic_rk_call_algebra< 10 , Algebra >
  156. {
  157. template< class S1 , class S2 , class S3 , class S4 , class Op>
  158. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S3 &s3 , S4 s4_array[9] , Op op ) const
  159. {
  160. algebra.for_each12( s1 , s2 , s3 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , s4_array[4].m_v ,
  161. s4_array[5].m_v , s4_array[6].m_v , s4_array[7].m_v , s4_array[8].m_v , op );
  162. }
  163. template< class S1 , class S2 , class S4 , class Op>
  164. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S4 s4_array[9] , Op op ) const
  165. {
  166. algebra.for_each11( s1 , s2 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , s4_array[4].m_v ,
  167. s4_array[5].m_v , s4_array[6].m_v , s4_array[7].m_v , s4_array[8].m_v , op );
  168. }
  169. };
  170. template< class Algebra >
  171. struct generic_rk_call_algebra< 11 , Algebra >
  172. {
  173. template< class S1 , class S2 , class S3 , class S4 , class Op>
  174. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S3 &s3 , S4 s4_array[10] , Op op ) const
  175. {
  176. algebra.for_each13( s1 , s2 , s3 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , s4_array[4].m_v ,
  177. s4_array[5].m_v , s4_array[6].m_v , s4_array[7].m_v , s4_array[8].m_v , s4_array[9].m_v , op );
  178. }
  179. template< class S1 , class S2 , class S4 , class Op>
  180. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S4 s4_array[10] , Op op ) const
  181. {
  182. algebra.for_each12( s1 , s2 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , s4_array[4].m_v ,
  183. s4_array[5].m_v , s4_array[6].m_v , s4_array[7].m_v , s4_array[8].m_v , s4_array[9].m_v , op );
  184. }
  185. };
  186. template< class Algebra >
  187. struct generic_rk_call_algebra< 12 , Algebra >
  188. {
  189. template< class S1 , class S2 , class S3 , class S4 , class Op>
  190. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S3 &s3 , S4 s4_array[11] , Op op ) const
  191. {
  192. algebra.for_each14( s1 , s2 , s3 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , s4_array[4].m_v ,
  193. s4_array[5].m_v , s4_array[6].m_v , s4_array[7].m_v , s4_array[8].m_v , s4_array[9].m_v , s4_array[10].m_v , op );
  194. }
  195. template< class S1 , class S2 , class S4 , class Op>
  196. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S4 s4_array[11] , Op op ) const
  197. {
  198. algebra.for_each13( s1 , s2 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , s4_array[4].m_v ,
  199. s4_array[5].m_v , s4_array[6].m_v , s4_array[7].m_v , s4_array[8].m_v , s4_array[9].m_v , s4_array[10].m_v , op );
  200. }
  201. };
  202. template< class Algebra >
  203. struct generic_rk_call_algebra< 13 , Algebra >
  204. {
  205. template< class S1 , class S2 , class S3 , class S4 , class Op>
  206. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S3 &s3 , S4 s4_array[12] , Op op ) const
  207. {
  208. algebra.for_each15( s1 , s2 , s3 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , s4_array[4].m_v ,
  209. s4_array[5].m_v , s4_array[6].m_v , s4_array[7].m_v , s4_array[8].m_v , s4_array[9].m_v , s4_array[10].m_v , s4_array[11].m_v , op );
  210. }
  211. template< class S1 , class S2 , class S4 , class Op>
  212. void operator()( Algebra &algebra , S1 &s1 , S2 &s2 , S4 s4_array[12] , Op op ) const
  213. {
  214. algebra.for_each14( s1 , s2 , s4_array[0].m_v , s4_array[1].m_v , s4_array[2].m_v , s4_array[3].m_v , s4_array[4].m_v ,
  215. s4_array[5].m_v , s4_array[6].m_v , s4_array[7].m_v , s4_array[8].m_v , s4_array[9].m_v , s4_array[10].m_v , s4_array[11].m_v , op );
  216. }
  217. };
  218. }
  219. }
  220. }
  221. }
  222. #endif // BOOST_NUMERIC_ODEINT_STEPPER_DETAIL_GENERIC_RK_CALL_ALGEBRA_HPP_INCLUDED