main.cpp 9.6 KB

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  1. /**
  2. * @file tests/mpi/main.cpp
  3. * @author The PARADEVS Development Team
  4. * See the AUTHORS or Authors.txt file
  5. */
  6. /*
  7. * PARADEVS - the multimodeling and simulation environment
  8. * This file is a part of the PARADEVS environment
  9. *
  10. * Copyright (C) 2013-2015 ULCO http://www.univ-litoral.fr
  11. *
  12. * This program is free software: you can redistribute it and/or modify
  13. * it under the terms of the GNU General Public License as published by
  14. * the Free Software Foundation, either version 3 of the License, or
  15. * (at your option) any later version.
  16. *
  17. * This program is distributed in the hope that it will be useful,
  18. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  19. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  20. * GNU General Public License for more details.
  21. *
  22. * You should have received a copy of the GNU General Public License
  23. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  24. */
  25. #include <paradevs/common/RootCoordinator.hpp>
  26. #include <boost/mpi/environment.hpp>
  27. #include <boost/mpi/communicator.hpp>
  28. // #include <tests/boost_graph/graph_defs.hpp>
  29. // #include <tests/boost_graph/graph_builder.hpp>
  30. // #include <tests/boost_graph/graph_generator.hpp>
  31. // #include <tests/boost_graph/graph_partitioning.hpp>
  32. #include <paradevs/common/time/DoubleTime.hpp>
  33. #include <paradevs/kernel/pdevs/mpi/LogicalProcessor.hpp>
  34. #include <paradevs/kernel/pdevs/multithreading/Coordinator.hpp>
  35. #include <tests/mpi/graph_manager.hpp>
  36. #include <chrono>
  37. using namespace paradevs::tests::mpi;
  38. using namespace paradevs::common;
  39. using namespace boost::mpi;
  40. using namespace std::chrono;
  41. void example_simple(int argc, char *argv[])
  42. {
  43. environment env(argc, argv);
  44. communicator world;
  45. if (world.rank() == 0) {
  46. paradevs::tests::mpi::RootGraphManagerParameters parameters;
  47. parameters.ranks.push_back(1);
  48. parameters.ranks.push_back(2);
  49. parameters.ranks.push_back(3);
  50. parameters.ranks.push_back(4);
  51. parameters.ranks.push_back(5);
  52. parameters.ranks.push_back(6);
  53. parameters.ranks.push_back(7);
  54. parameters.ranks.push_back(8);
  55. paradevs::common::RootCoordinator <
  56. DoubleTime,
  57. paradevs::pdevs::Coordinator <
  58. DoubleTime,
  59. paradevs::tests::mpi::RootGraphManager,
  60. paradevs::common::NoParameters,
  61. paradevs::tests::mpi::RootGraphManagerParameters >
  62. > rc(0, 1000, "root", paradevs::common::NoParameters(), parameters);
  63. steady_clock::time_point t1 = steady_clock::now();
  64. rc.run();
  65. steady_clock::time_point t2 = steady_clock::now();
  66. duration < double > time_span = duration_cast <
  67. duration < double > >(t2 - t1);
  68. std::cout << "CHAIN = " << time_span.count() << std::endl;
  69. } else {
  70. std::stringstream ss;
  71. ss << "S" << world.rank();
  72. if (world.rank() == 1) {
  73. paradevs::pdevs::mpi::Coordinator <
  74. DoubleTime,
  75. paradevs::tests::mpi::S1GraphManager > model(
  76. ss.str(), paradevs::common::NoParameters(),
  77. paradevs::common::NoParameters());
  78. paradevs::pdevs::mpi::LogicalProcessor <
  79. DoubleTime > LP(&model, world.rank(), 0);
  80. model.set_logical_processor(&LP);
  81. LP.loop();
  82. } else {
  83. paradevs::pdevs::mpi::Coordinator <
  84. DoubleTime,
  85. paradevs::tests::mpi::S2GraphManager > model(
  86. ss.str(), paradevs::common::NoParameters(),
  87. paradevs::common::NoParameters());
  88. paradevs::pdevs::mpi::LogicalProcessor <
  89. DoubleTime > LP(&model, world.rank(), 0);
  90. model.set_logical_processor(&LP);
  91. LP.loop();
  92. }
  93. }
  94. }
  95. void example_simple_local()
  96. {
  97. paradevs::tests::mpi::RootLocalGraphManagerParameters parameters;
  98. parameters.ranks.push_back(1);
  99. parameters.ranks.push_back(2);
  100. parameters.ranks.push_back(3);
  101. parameters.ranks.push_back(4);
  102. parameters.ranks.push_back(5);
  103. parameters.ranks.push_back(6);
  104. parameters.ranks.push_back(7);
  105. parameters.ranks.push_back(8);
  106. paradevs::common::RootCoordinator <
  107. DoubleTime,
  108. paradevs::pdevs::Coordinator <
  109. DoubleTime,
  110. paradevs::tests::mpi::RootLocalGraphManager,
  111. paradevs::common::NoParameters,
  112. paradevs::tests::mpi::RootLocalGraphManagerParameters >
  113. > rc(0, 1000, "root", paradevs::common::NoParameters(), parameters);
  114. steady_clock::time_point t1 = steady_clock::now();
  115. rc.run();
  116. steady_clock::time_point t2 = steady_clock::now();
  117. duration < double > time_span = duration_cast <
  118. duration < double > >(t2 - t1);
  119. std::cout << "CHAIN = " << time_span.count() << std::endl;
  120. }
  121. void example_simple_multithreading()
  122. {
  123. paradevs::tests::mpi::RootLocalGraphManagerParameters parameters;
  124. parameters.ranks.push_back(1);
  125. parameters.ranks.push_back(2);
  126. parameters.ranks.push_back(3);
  127. parameters.ranks.push_back(4);
  128. parameters.ranks.push_back(5);
  129. parameters.ranks.push_back(6);
  130. parameters.ranks.push_back(7);
  131. parameters.ranks.push_back(8);
  132. paradevs::common::RootCoordinator <
  133. DoubleTime,
  134. paradevs::pdevs::multithreading::Coordinator <
  135. DoubleTime,
  136. paradevs::tests::mpi::RootMultithreadingGraphManager,
  137. paradevs::common::NoParameters,
  138. paradevs::tests::mpi::RootLocalGraphManagerParameters >
  139. > rc(0, 1000, "root", paradevs::common::NoParameters(), parameters);
  140. steady_clock::time_point t1 = steady_clock::now();
  141. rc.run();
  142. steady_clock::time_point t2 = steady_clock::now();
  143. duration < double > time_span = duration_cast <
  144. duration < double > >(t2 - t1);
  145. std::cout << "CHAIN = " << time_span.count() << std::endl;
  146. }
  147. #define SUB_GRID_SIZE 32
  148. #define SUB_GRID_NUMBER 8
  149. void example_grid(int argc, char *argv[])
  150. {
  151. environment env(argc, argv);
  152. communicator world;
  153. if (world.rank() == 0) {
  154. paradevs::tests::mpi::GridGraphManagerParameters parameters;
  155. parameters.global_size = SUB_GRID_SIZE * SUB_GRID_NUMBER;
  156. parameters.sub_grid_size = SUB_GRID_SIZE;
  157. paradevs::common::RootCoordinator <
  158. DoubleTime,
  159. paradevs::pdevs::Coordinator <
  160. DoubleTime,
  161. paradevs::tests::mpi::GridGraphManager,
  162. paradevs::common::NoParameters,
  163. paradevs::tests::mpi::GridGraphManagerParameters >
  164. > rc(0, 20, "root", paradevs::common::NoParameters(), parameters);
  165. rc.run();
  166. } else {
  167. std::stringstream ss;
  168. unsigned int x = (world.rank() - 1) % SUB_GRID_NUMBER;
  169. unsigned int y = (world.rank() - 1) / SUB_GRID_NUMBER;
  170. paradevs::tests::mpi::SubGridGraphManagerParameters parameters;
  171. ss << "GC_" << x << "_" << y;
  172. parameters.global_size = SUB_GRID_SIZE * SUB_GRID_NUMBER;
  173. parameters.begin_column = x * SUB_GRID_SIZE;
  174. parameters.end_column = (x + 1) * SUB_GRID_SIZE - 1;
  175. parameters.begin_line = y * SUB_GRID_SIZE;
  176. parameters.end_line = (y + 1) * SUB_GRID_SIZE - 1;
  177. paradevs::pdevs::mpi::Coordinator <
  178. DoubleTime,
  179. paradevs::tests::mpi::SubGridGraphManager,
  180. paradevs::common::NoParameters,
  181. paradevs::tests::mpi::SubGridGraphManagerParameters
  182. > model(ss.str(), paradevs::common::NoParameters(), parameters);
  183. paradevs::pdevs::mpi::LogicalProcessor <
  184. DoubleTime > LP(&model, world.rank(), 0);
  185. model.set_logical_processor(&LP);
  186. LP.loop();
  187. }
  188. }
  189. // void example_grid(int argc, char *argv[])
  190. // {
  191. // environment env(argc, argv);
  192. // communicator world;
  193. // unsigned int side = 100;
  194. // std::vector<std::pair<int,int>> vertex_selection;
  195. // std::pair<int,int> tmp;
  196. // tmp.first = 0;
  197. // tmp.second = 3;
  198. // vertex_selection.push_back(tmp);
  199. // paradevs::tests::boost_graph::Entiers weight_vertex;
  200. // weight_vertex.push_back(1);
  201. // const char *edge_weight;
  202. // edge_weight = "../../sortie_graphe/tests_grid.txt";
  203. // bool rec = false;
  204. // paradevs::tests::boost_graph::RandomGridGraphGenerator generator(
  205. // side, vertex_selection, weight_vertex, edge_weight, rec);
  206. // paradevs::tests::boost_graph::PartitioningGraphBuilder builder(
  207. // 4, "gggp", 20, false, generator);
  208. // paradevs::tests::mpi::MPIHierarchicalGraphManagerParameters parameters;
  209. // builder.build(parameters.graphs, parameters.input_edges,
  210. // parameters.output_edges, parameters.parent_connections);
  211. // if (world.rank() == 0) {
  212. // paradevs::common::RootCoordinator <
  213. // DoubleTime, paradevs::pdevs::mpi::Coordinator <
  214. // DoubleTime,
  215. // paradevs::tests::mpi::MPIHierarchicalGraphManager,
  216. // paradevs::common::NoParameters,
  217. // paradevs::tests::mpi::MPIHierarchicalGraphManagerParameters >
  218. // > rc(0, 10, "root", paradevs::common::NoParameters(), parameters);
  219. // steady_clock::time_point t1 = steady_clock::now();
  220. // rc.run();
  221. // steady_clock::time_point t2 = steady_clock::now();
  222. // duration < double > time_span = duration_cast <
  223. // duration < double > >(t2 - t1);
  224. // std::cout << "MULTI = " << time_span.count() << std::endl;
  225. // } else {
  226. // }
  227. // }
  228. int main(int argc, char *argv[])
  229. {
  230. example_simple_multithreading();
  231. // example_simple(argc, argv);
  232. // example_simple_local();
  233. // example_grid(argc, argv);
  234. return 0;
  235. }