registry.cpp 8.4 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275
  1. #include <gtest/gtest.h>
  2. #include <registry.hpp>
  3. TEST(DefaultRegistry, Functionalities) {
  4. using registry_type = entt::DefaultRegistry<int, char>;
  5. registry_type registry;
  6. ASSERT_EQ(registry.size(), registry_type::size_type{0});
  7. ASSERT_EQ(registry.capacity(), registry_type::size_type{0});
  8. ASSERT_TRUE(registry.empty());
  9. ASSERT_TRUE(registry.empty<int>());
  10. ASSERT_TRUE(registry.empty<char>());
  11. registry_type::entity_type e1 = registry.create();
  12. registry_type::entity_type e2 = registry.create<int, char>();
  13. ASSERT_FALSE(registry.empty<int>());
  14. ASSERT_FALSE(registry.empty<char>());
  15. ASSERT_NE(e1, e2);
  16. ASSERT_FALSE(registry.has<int>(e1));
  17. ASSERT_TRUE(registry.has<int>(e2));
  18. ASSERT_FALSE(registry.has<char>(e1));
  19. ASSERT_TRUE(registry.has<char>(e2));
  20. ASSERT_TRUE((registry.has<int, char>(e2)));
  21. ASSERT_FALSE((registry.has<int, char>(e1)));
  22. ASSERT_EQ(registry.assign<int>(e1, 42), 42);
  23. ASSERT_EQ(registry.assign<char>(e1, 'c'), 'c');
  24. ASSERT_NO_THROW(registry.remove<int>(e2));
  25. ASSERT_NO_THROW(registry.remove<char>(e2));
  26. ASSERT_TRUE(registry.has<int>(e1));
  27. ASSERT_FALSE(registry.has<int>(e2));
  28. ASSERT_TRUE(registry.has<char>(e1));
  29. ASSERT_FALSE(registry.has<char>(e2));
  30. ASSERT_TRUE((registry.has<int, char>(e1)));
  31. ASSERT_FALSE((registry.has<int, char>(e2)));
  32. registry_type::entity_type e3 = registry.clone(e1);
  33. ASSERT_TRUE(registry.has<int>(e3));
  34. ASSERT_TRUE(registry.has<char>(e3));
  35. ASSERT_EQ(registry.get<int>(e1), 42);
  36. ASSERT_EQ(registry.get<char>(e1), 'c');
  37. ASSERT_EQ(registry.get<int>(e1), registry.get<int>(e3));
  38. ASSERT_EQ(registry.get<char>(e1), registry.get<char>(e3));
  39. ASSERT_NE(&registry.get<int>(e1), &registry.get<int>(e3));
  40. ASSERT_NE(&registry.get<char>(e1), &registry.get<char>(e3));
  41. ASSERT_NO_THROW(registry.copy(e2, e1));
  42. ASSERT_TRUE(registry.has<int>(e2));
  43. ASSERT_TRUE(registry.has<char>(e2));
  44. ASSERT_EQ(registry.get<int>(e1), 42);
  45. ASSERT_EQ(registry.get<char>(e1), 'c');
  46. ASSERT_EQ(registry.get<int>(e1), registry.get<int>(e2));
  47. ASSERT_EQ(registry.get<char>(e1), registry.get<char>(e2));
  48. ASSERT_NE(&registry.get<int>(e1), &registry.get<int>(e2));
  49. ASSERT_NE(&registry.get<char>(e1), &registry.get<char>(e2));
  50. ASSERT_NO_THROW(registry.replace<int>(e1, 0));
  51. ASSERT_EQ(registry.get<int>(e1), 0);
  52. ASSERT_NO_THROW(registry.copy<int>(e2, e1));
  53. ASSERT_EQ(registry.get<int>(e2), 0);
  54. ASSERT_NE(&registry.get<int>(e1), &registry.get<int>(e2));
  55. ASSERT_NO_THROW(registry.remove<int>(e2));
  56. ASSERT_NO_THROW(registry.accomodate<int>(e1, 1));
  57. ASSERT_NO_THROW(registry.accomodate<int>(e2, 1));
  58. ASSERT_EQ(static_cast<const registry_type &>(registry).get<int>(e1), 1);
  59. ASSERT_EQ(static_cast<const registry_type &>(registry).get<int>(e2), 1);
  60. ASSERT_EQ(registry.size(), registry_type::size_type{3});
  61. ASSERT_EQ(registry.capacity(), registry_type::size_type{3});
  62. ASSERT_FALSE(registry.empty());
  63. ASSERT_NO_THROW(registry.destroy(e3));
  64. ASSERT_TRUE(registry.valid(e1));
  65. ASSERT_TRUE(registry.valid(e2));
  66. ASSERT_FALSE(registry.valid(e3));
  67. ASSERT_EQ(registry.size(), registry_type::size_type{2});
  68. ASSERT_EQ(registry.capacity(), registry_type::size_type{3});
  69. ASSERT_FALSE(registry.empty());
  70. ASSERT_NO_THROW(registry.reset());
  71. ASSERT_EQ(registry.size(), registry_type::size_type{0});
  72. ASSERT_EQ(registry.capacity(), registry_type::size_type{0});
  73. ASSERT_TRUE(registry.empty());
  74. registry.create<int, char>();
  75. ASSERT_FALSE(registry.empty<int>());
  76. ASSERT_FALSE(registry.empty<char>());
  77. ASSERT_NO_THROW(registry.reset<int>());
  78. ASSERT_TRUE(registry.empty<int>());
  79. ASSERT_FALSE(registry.empty<char>());
  80. ASSERT_NO_THROW(registry.reset());
  81. ASSERT_TRUE(registry.empty<int>());
  82. ASSERT_TRUE(registry.empty<char>());
  83. e1 = registry.create<int>();
  84. e2 = registry.create();
  85. ASSERT_NO_THROW(registry.reset<int>(e1));
  86. ASSERT_NO_THROW(registry.reset<int>(e2));
  87. ASSERT_TRUE(registry.empty<int>());
  88. }
  89. TEST(DefaultRegistry, Copy) {
  90. using registry_type = entt::DefaultRegistry<int, char, double>;
  91. registry_type registry;
  92. registry_type::entity_type e1 = registry.create<int, char>();
  93. registry_type::entity_type e2 = registry.create<int, double>();
  94. ASSERT_TRUE(registry.has<int>(e1));
  95. ASSERT_TRUE(registry.has<char>(e1));
  96. ASSERT_FALSE(registry.has<double>(e1));
  97. ASSERT_TRUE(registry.has<int>(e2));
  98. ASSERT_FALSE(registry.has<char>(e2));
  99. ASSERT_TRUE(registry.has<double>(e2));
  100. ASSERT_NO_THROW(registry.copy(e2, e1));
  101. ASSERT_TRUE(registry.has<int>(e1));
  102. ASSERT_TRUE(registry.has<char>(e1));
  103. ASSERT_FALSE(registry.has<double>(e1));
  104. ASSERT_TRUE(registry.has<int>(e2));
  105. ASSERT_TRUE(registry.has<char>(e2));
  106. ASSERT_FALSE(registry.has<double>(e2));
  107. ASSERT_FALSE(registry.empty<int>());
  108. ASSERT_FALSE(registry.empty<char>());
  109. ASSERT_TRUE(registry.empty<double>());
  110. registry.reset();
  111. }
  112. TEST(DefaultRegistry, ViewSingleComponent) {
  113. using registry_type = entt::DefaultRegistry<int, char>;
  114. registry_type registry;
  115. registry_type::entity_type e1 = registry.create();
  116. registry_type::entity_type e2 = registry.create<int, char>();
  117. auto view = registry.view<char>();
  118. ASSERT_NE(view.begin(), view.end());
  119. ASSERT_EQ(view.size(), typename registry_type::view_type<char>::size_type{1});
  120. registry.assign<char>(e1);
  121. ASSERT_EQ(view.size(), typename registry_type::view_type<char>::size_type{2});
  122. registry.remove<char>(e1);
  123. registry.remove<char>(e2);
  124. ASSERT_EQ(view.begin(), view.end());
  125. ASSERT_NO_THROW(registry.reset());
  126. ASSERT_NO_THROW(registry.view<char>().begin()++);
  127. ASSERT_NO_THROW(++registry.view<char>().begin());
  128. }
  129. TEST(DefaultRegistry, ViewMultipleComponent) {
  130. using registry_type = entt::DefaultRegistry<int, char>;
  131. registry_type registry;
  132. registry_type::entity_type e1 = registry.create<char>();
  133. registry_type::entity_type e2 = registry.create<int, char>();
  134. auto view = registry.view<int, char>();
  135. ASSERT_NE(view.begin(), view.end());
  136. registry.remove<char>(e1);
  137. registry.remove<char>(e2);
  138. view.reset();
  139. ASSERT_EQ(view.begin(), view.end());
  140. ASSERT_NO_THROW(registry.reset());
  141. ASSERT_NO_THROW((registry.view<int, char>().begin()++));
  142. ASSERT_NO_THROW((++registry.view<int, char>().begin()));
  143. }
  144. TEST(DefaultRegistry, EmptyViewSingleComponent) {
  145. using registry_type = entt::DefaultRegistry<char, int, double>;
  146. registry_type registry;
  147. registry.create<char, double>();
  148. registry.create<char>();
  149. auto view = registry.view<int>();
  150. ASSERT_EQ(view.size(), registry_type::size_type{0});
  151. registry.reset();
  152. }
  153. TEST(DefaultRegistry, EmptyViewMultipleComponent) {
  154. using registry_type = entt::DefaultRegistry<char, int, float, double>;
  155. registry_type registry;
  156. registry.create<double, int, float>();
  157. registry.create<char, float>();
  158. auto view = registry.view<char, int, float>();
  159. for(auto entity: view) {
  160. (void)entity;
  161. FAIL();
  162. }
  163. registry.reset();
  164. }
  165. TEST(DefaultRegistry, ViewSingleComponentWithExclude) {
  166. using registry_type = entt::DefaultRegistry<int, char>;
  167. registry_type registry;
  168. registry_type::entity_type e1 = registry.create<char>();
  169. registry_type::entity_type e2 = registry.create<int, char>();
  170. auto view = registry.view<char>().exclude<int>();
  171. ASSERT_NE(view.begin(), view.end());
  172. ASSERT_EQ(*view.begin(), e1);
  173. ASSERT_NE(*view.begin(), e2);
  174. ASSERT_EQ(++view.begin(), view.end());
  175. ASSERT_NO_THROW(registry.reset());
  176. ASSERT_NO_THROW((registry.view<char>().exclude<int>().begin()++));
  177. ASSERT_NO_THROW((++registry.view<char>().exclude<int>().begin()));
  178. }
  179. TEST(DefaultRegistry, ViewMultipleComponentWithExclude) {
  180. using registry_type = entt::DefaultRegistry<int, char, double>;
  181. registry_type registry;
  182. registry_type::entity_type e1 = registry.create<int, char, double>();
  183. registry_type::entity_type e2 = registry.create<char, double>();
  184. auto view = registry.view<char, double>().exclude<int>();
  185. ASSERT_NE(view.begin(), view.end());
  186. ASSERT_NE(*view.begin(), e1);
  187. ASSERT_EQ(*view.begin(), e2);
  188. ASSERT_EQ(++view.begin(), view.end());
  189. ASSERT_NO_THROW(registry.reset());
  190. ASSERT_NO_THROW((registry.view<char>().exclude<int>().begin()++));
  191. ASSERT_NO_THROW((++registry.view<char>().exclude<int>().begin()));
  192. }