group.cpp 41 KB

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  1. #include <utility>
  2. #include <iterator>
  3. #include <algorithm>
  4. #include <type_traits>
  5. #include <gtest/gtest.h>
  6. #include <entt/entity/registry.hpp>
  7. #include <entt/entity/group.hpp>
  8. struct empty_type {};
  9. struct boxed_int { int value; };
  10. bool operator==(const boxed_int &lhs, const boxed_int &rhs) {
  11. return lhs.value == rhs.value;
  12. }
  13. TEST(NonOwningGroup, Functionalities) {
  14. entt::registry registry;
  15. auto group = registry.group(entt::get<int, char>);
  16. auto cgroup = std::as_const(registry).group(entt::get<const int, const char>);
  17. ASSERT_TRUE(group.empty());
  18. const auto e0 = registry.create();
  19. registry.emplace<char>(e0, '1');
  20. const auto e1 = registry.create();
  21. registry.emplace<int>(e1, 42);
  22. registry.emplace<char>(e1, '2');
  23. ASSERT_FALSE(group.empty());
  24. ASSERT_NO_THROW(group.begin()++);
  25. ASSERT_NO_THROW(++cgroup.begin());
  26. ASSERT_NO_THROW([](auto it) { return it++; }(group.rbegin()));
  27. ASSERT_NO_THROW([](auto it) { return ++it; }(cgroup.rbegin()));
  28. ASSERT_NE(group.begin(), group.end());
  29. ASSERT_NE(cgroup.begin(), cgroup.end());
  30. ASSERT_NE(group.rbegin(), group.rend());
  31. ASSERT_NE(cgroup.rbegin(), cgroup.rend());
  32. ASSERT_EQ(group.size(), 1u);
  33. registry.emplace<int>(e0);
  34. ASSERT_EQ(group.size(), 2u);
  35. registry.remove<int>(e0);
  36. ASSERT_EQ(group.size(), 1u);
  37. for(auto entity: group) {
  38. ASSERT_EQ(std::get<0>(cgroup.get<const int, const char>(entity)), 42);
  39. ASSERT_EQ(std::get<1>(group.get<int, char>(entity)), '2');
  40. ASSERT_EQ(cgroup.get<const char>(entity), '2');
  41. }
  42. ASSERT_EQ(*(group.data() + 0), e1);
  43. registry.remove<char>(e0);
  44. registry.remove<char>(e1);
  45. ASSERT_EQ(group.begin(), group.end());
  46. ASSERT_EQ(cgroup.begin(), cgroup.end());
  47. ASSERT_EQ(group.rbegin(), group.rend());
  48. ASSERT_EQ(cgroup.rbegin(), cgroup.rend());
  49. ASSERT_TRUE(group.empty());
  50. ASSERT_NE(group.capacity(), 0u);
  51. group.shrink_to_fit();
  52. ASSERT_EQ(group.capacity(), 0u);
  53. decltype(group) invalid{};
  54. ASSERT_TRUE(group);
  55. ASSERT_TRUE(cgroup);
  56. ASSERT_FALSE(invalid);
  57. }
  58. TEST(NonOwningGroup, Invalid) {
  59. entt::registry registry{};
  60. auto group = std::as_const(registry).group(entt::get<const empty_type, const int>);
  61. const auto entity = registry.create();
  62. registry.emplace<empty_type>(entity);
  63. registry.emplace<int>(entity);
  64. ASSERT_FALSE(group);
  65. ASSERT_TRUE(group.empty());
  66. ASSERT_EQ(group.size(), 0u);
  67. ASSERT_EQ(group.capacity(), 0u);
  68. ASSERT_NO_THROW(group.shrink_to_fit());
  69. ASSERT_EQ(group.data(), nullptr);
  70. ASSERT_EQ(group.begin(), group.end());
  71. ASSERT_EQ(group.rbegin(), group.rend());
  72. ASSERT_FALSE(group.contains(entity));
  73. ASSERT_EQ(group.find(entity), group.end());
  74. ASSERT_EQ(group.front(), entt::entity{entt::null});
  75. ASSERT_EQ(group.back(), entt::entity{entt::null});
  76. group.each([](const auto, const auto &) { FAIL(); });
  77. group.each([](const auto &) { FAIL(); });
  78. for([[maybe_unused]] auto all: group.each()) { FAIL(); }
  79. for(auto first = group.each().rbegin(), last = group.each().rend(); first != last; ++first) { FAIL(); }
  80. ASSERT_NO_THROW(group.sort([](const auto, const auto) { FAIL(), true; }));
  81. ASSERT_NO_THROW(group.sort<const empty_type>());
  82. }
  83. TEST(NonOwningGroup, ElementAccess) {
  84. entt::registry registry;
  85. auto group = registry.group(entt::get<int, char>);
  86. auto cgroup = std::as_const(registry).group(entt::get<const int, const char>);
  87. const auto e0 = registry.create();
  88. registry.emplace<int>(e0);
  89. registry.emplace<char>(e0);
  90. const auto e1 = registry.create();
  91. registry.emplace<int>(e1);
  92. registry.emplace<char>(e1);
  93. for(auto i = 0u; i < group.size(); ++i) {
  94. ASSERT_EQ(group[i], i ? e0 : e1);
  95. ASSERT_EQ(cgroup[i], i ? e0 : e1);
  96. }
  97. }
  98. TEST(NonOwningGroup, Contains) {
  99. entt::registry registry;
  100. auto group = registry.group(entt::get<int, char>);
  101. const auto e0 = registry.create();
  102. registry.emplace<int>(e0);
  103. registry.emplace<char>(e0);
  104. const auto e1 = registry.create();
  105. registry.emplace<int>(e1);
  106. registry.emplace<char>(e1);
  107. registry.destroy(e0);
  108. ASSERT_FALSE(group.contains(e0));
  109. ASSERT_TRUE(group.contains(e1));
  110. }
  111. TEST(NonOwningGroup, Empty) {
  112. entt::registry registry;
  113. const auto e0 = registry.create();
  114. registry.emplace<double>(e0);
  115. registry.emplace<int>(e0);
  116. registry.emplace<float>(e0);
  117. const auto e1 = registry.create();
  118. registry.emplace<char>(e1);
  119. registry.emplace<float>(e1);
  120. ASSERT_TRUE(registry.group(entt::get<char, int, float>).empty());
  121. ASSERT_TRUE(registry.group(entt::get<double, char, int, float>).empty());
  122. }
  123. TEST(NonOwningGroup, Each) {
  124. entt::registry registry;
  125. auto group = registry.group(entt::get<int, char>);
  126. const auto e0 = registry.create();
  127. registry.emplace<int>(e0, 0);
  128. registry.emplace<char>(e0);
  129. const auto e1 = registry.create();
  130. registry.emplace<int>(e1, 1);
  131. registry.emplace<char>(e1);
  132. auto cgroup = std::as_const(registry).group(entt::get<const int, const char>);
  133. std::size_t cnt = 0;
  134. for(auto first = cgroup.each().rbegin(), last = cgroup.each().rend(); first != last; ++first) {
  135. static_assert(std::is_same_v<decltype(*first), std::tuple<entt::entity, const int &, const char &>>);
  136. ASSERT_EQ(std::get<1>(*first), cnt++);
  137. }
  138. group.each([&cnt](auto, int &, char &) { ++cnt; });
  139. group.each([&cnt](int &, char &) { ++cnt; });
  140. ASSERT_EQ(cnt, std::size_t{6});
  141. cgroup.each([&cnt](const int &, const char &) { --cnt; });
  142. cgroup.each([&cnt](auto, const int &, const char &) { --cnt; });
  143. for(auto &&[entt, iv, cv]: group.each()) {
  144. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  145. static_assert(std::is_same_v<decltype(iv), int &>);
  146. static_assert(std::is_same_v<decltype(cv), char &>);
  147. ASSERT_EQ(iv, --cnt);
  148. }
  149. ASSERT_EQ(cnt, std::size_t{0});
  150. }
  151. TEST(NonOwningGroup, Sort) {
  152. entt::registry registry;
  153. auto group = registry.group(entt::get<const int, unsigned int>);
  154. const auto e0 = registry.create();
  155. const auto e1 = registry.create();
  156. const auto e2 = registry.create();
  157. const auto e3 = registry.create();
  158. registry.emplace<unsigned int>(e0, 0u);
  159. registry.emplace<unsigned int>(e1, 1u);
  160. registry.emplace<unsigned int>(e2, 2u);
  161. registry.emplace<unsigned int>(e3, 3u);
  162. registry.emplace<int>(e0, 0);
  163. registry.emplace<int>(e1, 1);
  164. registry.emplace<int>(e2, 2);
  165. ASSERT_EQ(*(group.data() + 0u), e0);
  166. ASSERT_EQ(*(group.data() + 1u), e1);
  167. ASSERT_EQ(*(group.data() + 2u), e2);
  168. group.sort([](const entt::entity lhs, const entt::entity rhs) {
  169. return entt::to_integral(lhs) < entt::to_integral(rhs);
  170. });
  171. ASSERT_EQ(*(group.data() + 0u), e2);
  172. ASSERT_EQ(*(group.data() + 1u), e1);
  173. ASSERT_EQ(*(group.data() + 2u), e0);
  174. ASSERT_EQ((group.get<const int, unsigned int>(e0)), (std::make_tuple(0, 0u)));
  175. ASSERT_EQ((group.get<const int, unsigned int>(e1)), (std::make_tuple(1, 1u)));
  176. ASSERT_EQ((group.get<const int, unsigned int>(e2)), (std::make_tuple(2, 2u)));
  177. ASSERT_FALSE(group.contains(e3));
  178. group.sort<const int>([](const int lhs, const int rhs) {
  179. return lhs > rhs;
  180. });
  181. ASSERT_EQ(*(group.data() + 0u), e0);
  182. ASSERT_EQ(*(group.data() + 1u), e1);
  183. ASSERT_EQ(*(group.data() + 2u), e2);
  184. ASSERT_EQ((group.get<const int, unsigned int>(e0)), (std::make_tuple(0, 0u)));
  185. ASSERT_EQ((group.get<const int, unsigned int>(e1)), (std::make_tuple(1, 1u)));
  186. ASSERT_EQ((group.get<const int, unsigned int>(e2)), (std::make_tuple(2, 2u)));
  187. ASSERT_FALSE(group.contains(e3));
  188. }
  189. TEST(NonOwningGroup, SortAsAPool) {
  190. entt::registry registry;
  191. auto group = registry.group(entt::get<const int, unsigned int>);
  192. const auto e0 = registry.create();
  193. const auto e1 = registry.create();
  194. const auto e2 = registry.create();
  195. const auto e3 = registry.create();
  196. auto uval = 0u;
  197. auto ival = 0;
  198. registry.emplace<unsigned int>(e0, uval++);
  199. registry.emplace<unsigned int>(e1, uval++);
  200. registry.emplace<unsigned int>(e2, uval++);
  201. registry.emplace<unsigned int>(e3, uval+1);
  202. registry.emplace<int>(e0, ival++);
  203. registry.emplace<int>(e1, ival++);
  204. registry.emplace<int>(e2, ival++);
  205. for(auto entity: group) {
  206. ASSERT_EQ(group.get<unsigned int>(entity), --uval);
  207. ASSERT_EQ(group.get<const int>(entity), --ival);
  208. }
  209. registry.sort<unsigned int>(std::less<unsigned int>{});
  210. group.sort<unsigned int>();
  211. ASSERT_EQ((group.get<const int, unsigned int>(e0)), (std::make_tuple(0, 0u)));
  212. ASSERT_EQ((group.get<const int, unsigned int>(e1)), (std::make_tuple(1, 1u)));
  213. ASSERT_EQ((group.get<const int, unsigned int>(e2)), (std::make_tuple(2, 2u)));
  214. ASSERT_FALSE(group.contains(e3));
  215. for(auto entity: group) {
  216. ASSERT_EQ(group.get<unsigned int>(entity), uval++);
  217. ASSERT_EQ(group.get<const int>(entity), ival++);
  218. }
  219. }
  220. TEST(NonOwningGroup, IndexRebuiltOnDestroy) {
  221. entt::registry registry;
  222. auto group = registry.group(entt::get<int, unsigned int>);
  223. const auto e0 = registry.create();
  224. const auto e1 = registry.create();
  225. registry.emplace<unsigned int>(e0, 0u);
  226. registry.emplace<unsigned int>(e1, 1u);
  227. registry.emplace<int>(e0, 0);
  228. registry.emplace<int>(e1, 1);
  229. registry.destroy(e0);
  230. registry.emplace<int>(registry.create(), 42);
  231. ASSERT_EQ(group.size(), 1u);
  232. ASSERT_EQ(group[{}], e1);
  233. ASSERT_EQ(group.get<int>(e1), 1);
  234. ASSERT_EQ(group.get<unsigned int>(e1), 1u);
  235. group.each([e1](auto entity, auto ivalue, auto uivalue) {
  236. ASSERT_EQ(entity, e1);
  237. ASSERT_EQ(ivalue, 1);
  238. ASSERT_EQ(uivalue, 1u);
  239. });
  240. for(auto &&curr: group.each()) {
  241. ASSERT_EQ(std::get<0>(curr), e1);
  242. ASSERT_EQ(std::get<1>(curr), 1);
  243. ASSERT_EQ(std::get<2>(curr), 1u);
  244. }
  245. }
  246. TEST(NonOwningGroup, ConstNonConstAndAllInBetween) {
  247. entt::registry registry;
  248. auto group = registry.group(entt::get<int, empty_type, const char>);
  249. ASSERT_EQ(group.size(), 0u);
  250. const auto entity = registry.create();
  251. registry.emplace<int>(entity, 0);
  252. registry.emplace<empty_type>(entity);
  253. registry.emplace<char>(entity, 'c');
  254. ASSERT_EQ(group.size(), 1u);
  255. static_assert(std::is_same_v<decltype(group.get<int>({})), int &>);
  256. static_assert(std::is_same_v<decltype(group.get<const char>({})), const char &>);
  257. static_assert(std::is_same_v<decltype(group.get<int, const char>({})), std::tuple<int &, const char &>>);
  258. static_assert(std::is_same_v<decltype(group.get({})), std::tuple<int &, const char &>>);
  259. static_assert(std::is_same_v<decltype(group.data()), const entt::entity *>);
  260. group.each([](auto &&i, auto &&c) {
  261. static_assert(std::is_same_v<decltype(i), int &>);
  262. static_assert(std::is_same_v<decltype(c), const char &>);
  263. });
  264. for(auto &&[entt, iv, cv]: group.each()) {
  265. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  266. static_assert(std::is_same_v<decltype(iv), int &>);
  267. static_assert(std::is_same_v<decltype(cv), const char &>);
  268. }
  269. }
  270. TEST(NonOwningGroup, Find) {
  271. entt::registry registry;
  272. auto group = registry.group(entt::get<int, const char>);
  273. const auto e0 = registry.create();
  274. registry.emplace<int>(e0);
  275. registry.emplace<char>(e0);
  276. const auto e1 = registry.create();
  277. registry.emplace<int>(e1);
  278. registry.emplace<char>(e1);
  279. const auto e2 = registry.create();
  280. registry.emplace<int>(e2);
  281. registry.emplace<char>(e2);
  282. const auto e3 = registry.create();
  283. registry.emplace<int>(e3);
  284. registry.emplace<char>(e3);
  285. registry.remove<int>(e1);
  286. ASSERT_NE(group.find(e0), group.end());
  287. ASSERT_EQ(group.find(e1), group.end());
  288. ASSERT_NE(group.find(e2), group.end());
  289. ASSERT_NE(group.find(e3), group.end());
  290. auto it = group.find(e2);
  291. ASSERT_EQ(*it, e2);
  292. ASSERT_EQ(*(++it), e3);
  293. ASSERT_EQ(*(++it), e0);
  294. ASSERT_EQ(++it, group.end());
  295. ASSERT_EQ(++group.find(e0), group.end());
  296. const auto e4 = registry.create();
  297. registry.destroy(e4);
  298. const auto e5 = registry.create();
  299. registry.emplace<int>(e5);
  300. registry.emplace<char>(e5);
  301. ASSERT_NE(group.find(e5), group.end());
  302. ASSERT_EQ(group.find(e4), group.end());
  303. }
  304. TEST(NonOwningGroup, ExcludedComponents) {
  305. entt::registry registry;
  306. const auto e0 = registry.create();
  307. registry.emplace<int>(e0, 0);
  308. const auto e1 = registry.create();
  309. registry.emplace<int>(e1, 1);
  310. registry.emplace<char>(e1);
  311. const auto group = registry.group(entt::get<int>, entt::exclude<char>);
  312. const auto e2 = registry.create();
  313. registry.emplace<int>(e2, 2);
  314. const auto e3 = registry.create();
  315. registry.emplace<int>(e3, 3);
  316. registry.emplace<char>(e3);
  317. for(const auto entity: group) {
  318. ASSERT_TRUE(entity == e0 || entity == e2);
  319. if(entity == e0) {
  320. ASSERT_EQ(group.get<int>(e0), 0);
  321. } else if(entity == e2) {
  322. ASSERT_EQ(group.get<int>(e2), 2);
  323. }
  324. }
  325. registry.emplace<char>(e0);
  326. registry.emplace<char>(e2);
  327. ASSERT_TRUE(group.empty());
  328. registry.remove<char>(e1);
  329. registry.remove<char>(e3);
  330. for(const auto entity: group) {
  331. ASSERT_TRUE(entity == e1 || entity == e3);
  332. if(entity == e1) {
  333. ASSERT_EQ(group.get<int>(e1), 1);
  334. } else if(entity == e3) {
  335. ASSERT_EQ(group.get<int>(e3), 3);
  336. }
  337. }
  338. }
  339. TEST(NonOwningGroup, EmptyAndNonEmptyTypes) {
  340. entt::registry registry;
  341. const auto group = registry.group(entt::get<int, empty_type>);
  342. const auto e0 = registry.create();
  343. registry.emplace<empty_type>(e0);
  344. registry.emplace<int>(e0);
  345. const auto e1 = registry.create();
  346. registry.emplace<empty_type>(e1);
  347. registry.emplace<int>(e1);
  348. registry.emplace<int>(registry.create());
  349. for(const auto entity: group) {
  350. ASSERT_TRUE(entity == e0 || entity == e1);
  351. }
  352. group.each([e0, e1](const auto entity, const int &) {
  353. ASSERT_TRUE(entity == e0 || entity == e1);
  354. });
  355. for(auto &&[entt, iv]: group.each()) {
  356. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  357. static_assert(std::is_same_v<decltype(iv), int &>);
  358. ASSERT_TRUE(entt == e0 || entt == e1);
  359. }
  360. ASSERT_EQ(group.size(), 2u);
  361. }
  362. TEST(NonOwningGroup, TrackEntitiesOnComponentDestruction) {
  363. entt::registry registry;
  364. const auto group = registry.group(entt::get<int>, entt::exclude<char>);
  365. const auto cgroup = std::as_const(registry).group(entt::get<const int>, entt::exclude<char>);
  366. const auto entity = registry.create();
  367. registry.emplace<int>(entity);
  368. registry.emplace<char>(entity);
  369. ASSERT_TRUE(group.empty());
  370. ASSERT_TRUE(cgroup.empty());
  371. registry.remove<char>(entity);
  372. ASSERT_FALSE(group.empty());
  373. ASSERT_FALSE(cgroup.empty());
  374. }
  375. TEST(NonOwningGroup, EmptyTypes) {
  376. entt::registry registry;
  377. const auto entity = registry.create();
  378. registry.emplace<int>(entity);
  379. registry.emplace<char>(entity);
  380. registry.emplace<empty_type>(entity);
  381. registry.group(entt::get<int, char, empty_type>).each([entity](const auto entt, int, char) {
  382. ASSERT_EQ(entity, entt);
  383. });
  384. for(auto &&[entt, iv, cv]: registry.group(entt::get<int, char, empty_type>).each()) {
  385. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  386. static_assert(std::is_same_v<decltype(iv), int &>);
  387. static_assert(std::is_same_v<decltype(cv), char &>);
  388. ASSERT_EQ(entity, entt);
  389. }
  390. registry.group(entt::get<int, empty_type, char>).each([check = true](int, char) mutable {
  391. ASSERT_TRUE(check);
  392. check = false;
  393. });
  394. for(auto &&[entt, iv, cv]: registry.group(entt::get<int, empty_type, char>).each()) {
  395. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  396. static_assert(std::is_same_v<decltype(iv), int &>);
  397. static_assert(std::is_same_v<decltype(cv), char &>);
  398. ASSERT_EQ(entity, entt);
  399. }
  400. registry.group(entt::get<empty_type, int, char>).each([entity](const auto entt, int, char) {
  401. ASSERT_EQ(entity, entt);
  402. });
  403. for(auto &&[entt, iv, cv]: registry.group(entt::get<empty_type, int, char>).each()) {
  404. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  405. static_assert(std::is_same_v<decltype(iv), int &>);
  406. static_assert(std::is_same_v<decltype(cv), char &>);
  407. ASSERT_EQ(entity, entt);
  408. }
  409. registry.group(entt::get<int, char, double>).each([](const auto, int, char, double) { FAIL(); });
  410. ASSERT_EQ(registry.group(entt::get<int, char, double>).each().begin(), registry.group(entt::get<int, char, double>).each().end());
  411. }
  412. TEST(NonOwningGroup, FrontBack) {
  413. entt::registry registry;
  414. auto group = registry.group<>(entt::get<const int, const char>);
  415. ASSERT_EQ(group.front(), static_cast<entt::entity>(entt::null));
  416. ASSERT_EQ(group.back(), static_cast<entt::entity>(entt::null));
  417. const auto e0 = registry.create();
  418. registry.emplace<int>(e0);
  419. registry.emplace<char>(e0);
  420. const auto e1 = registry.create();
  421. registry.emplace<int>(e1);
  422. registry.emplace<char>(e1);
  423. const auto entity = registry.create();
  424. registry.emplace<char>(entity);
  425. ASSERT_EQ(group.front(), e1);
  426. ASSERT_EQ(group.back(), e0);
  427. }
  428. TEST(NonOwningGroup, SignalRace) {
  429. entt::registry registry;
  430. registry.on_construct<double>().connect<&entt::registry::emplace_or_replace<int>>();
  431. const auto group = registry.group(entt::get<int, double>);
  432. auto entity = registry.create();
  433. registry.emplace<double>(entity);
  434. ASSERT_EQ(group.size(), 1u);
  435. }
  436. TEST(NonOwningGroup, ExtendedGet) {
  437. using type = decltype(std::declval<entt::registry>().group(entt::get<int, empty_type, char>).get({}));
  438. static_assert(std::tuple_size_v<type> == 2u);
  439. static_assert(std::is_same_v<std::tuple_element_t<0, type>, int &>);
  440. static_assert(std::is_same_v<std::tuple_element_t<1, type>, char &>);
  441. }
  442. TEST(OwningGroup, Functionalities) {
  443. entt::registry registry;
  444. auto group = registry.group<int>(entt::get<char>);
  445. auto cgroup = std::as_const(registry).group<const int>(entt::get<const char>);
  446. ASSERT_TRUE(group.empty());
  447. const auto e0 = registry.create();
  448. registry.emplace<char>(e0, '1');
  449. const auto e1 = registry.create();
  450. registry.emplace<int>(e1, 42);
  451. registry.emplace<char>(e1, '2');
  452. ASSERT_FALSE(group.empty());
  453. ASSERT_NO_THROW(group.begin()++);
  454. ASSERT_NO_THROW(++cgroup.begin());
  455. ASSERT_NO_THROW([](auto it) { return it++; }(group.rbegin()));
  456. ASSERT_NO_THROW([](auto it) { return ++it; }(cgroup.rbegin()));
  457. ASSERT_NE(group.begin(), group.end());
  458. ASSERT_NE(cgroup.begin(), cgroup.end());
  459. ASSERT_NE(group.rbegin(), group.rend());
  460. ASSERT_NE(cgroup.rbegin(), cgroup.rend());
  461. ASSERT_EQ(group.size(), 1u);
  462. registry.emplace<int>(e0);
  463. ASSERT_EQ(group.size(), 2u);
  464. registry.remove<int>(e0);
  465. ASSERT_EQ(group.size(), 1u);
  466. ASSERT_EQ(*(cgroup.raw<const int>() + 0), 42);
  467. ASSERT_EQ(*(group.raw<int>() + 0), 42);
  468. for(auto entity: group) {
  469. ASSERT_EQ(std::get<0>(cgroup.get<const int, const char>(entity)), 42);
  470. ASSERT_EQ(std::get<1>(group.get<int, char>(entity)), '2');
  471. ASSERT_EQ(cgroup.get<const char>(entity), '2');
  472. }
  473. ASSERT_EQ(*(group.data() + 0), e1);
  474. ASSERT_EQ(*(group.raw<int>() + 0), 42);
  475. registry.remove<char>(e0);
  476. registry.remove<char>(e1);
  477. ASSERT_EQ(group.begin(), group.end());
  478. ASSERT_EQ(cgroup.begin(), cgroup.end());
  479. ASSERT_EQ(group.rbegin(), group.rend());
  480. ASSERT_EQ(cgroup.rbegin(), cgroup.rend());
  481. ASSERT_TRUE(group.empty());
  482. decltype(group) invalid{};
  483. ASSERT_TRUE(group);
  484. ASSERT_TRUE(cgroup);
  485. ASSERT_FALSE(invalid);
  486. }
  487. TEST(OwningGroup, Invalid) {
  488. entt::registry registry{};
  489. auto group = std::as_const(registry).group<const int>(entt::get<const empty_type>);
  490. const auto entity = registry.create();
  491. registry.emplace<empty_type>(entity);
  492. registry.emplace<int>(entity);
  493. ASSERT_FALSE(group);
  494. ASSERT_TRUE(group.empty());
  495. ASSERT_EQ(group.size(), 0u);
  496. ASSERT_EQ(group.raw<const int>(), nullptr);
  497. ASSERT_EQ(group.data(), nullptr);
  498. ASSERT_EQ(group.begin(), group.end());
  499. ASSERT_EQ(group.rbegin(), group.rend());
  500. ASSERT_FALSE(group.contains(entity));
  501. ASSERT_EQ(group.find(entity), group.end());
  502. ASSERT_EQ(group.front(), entt::entity{entt::null});
  503. ASSERT_EQ(group.back(), entt::entity{entt::null});
  504. group.each([](const auto, const auto &) { FAIL(); });
  505. group.each([](const auto &) { FAIL(); });
  506. for([[maybe_unused]] auto all: group.each()) { FAIL(); }
  507. for(auto first = group.each().rbegin(), last = group.each().rend(); first != last; ++first) { FAIL(); }
  508. }
  509. TEST(OwningGroup, ElementAccess) {
  510. entt::registry registry;
  511. auto group = registry.group<int>(entt::get<char>);
  512. auto cgroup = std::as_const(registry).group<const int>(entt::get<const char>);
  513. const auto e0 = registry.create();
  514. registry.emplace<int>(e0);
  515. registry.emplace<char>(e0);
  516. const auto e1 = registry.create();
  517. registry.emplace<int>(e1);
  518. registry.emplace<char>(e1);
  519. for(auto i = 0u; i < group.size(); ++i) {
  520. ASSERT_EQ(group[i], i ? e0 : e1);
  521. ASSERT_EQ(cgroup[i], i ? e0 : e1);
  522. }
  523. }
  524. TEST(OwningGroup, Contains) {
  525. entt::registry registry;
  526. auto group = registry.group<int>(entt::get<char>);
  527. const auto e0 = registry.create();
  528. registry.emplace<int>(e0);
  529. registry.emplace<char>(e0);
  530. const auto e1 = registry.create();
  531. registry.emplace<int>(e1);
  532. registry.emplace<char>(e1);
  533. registry.destroy(e0);
  534. ASSERT_FALSE(group.contains(e0));
  535. ASSERT_TRUE(group.contains(e1));
  536. }
  537. TEST(OwningGroup, Empty) {
  538. entt::registry registry;
  539. const auto e0 = registry.create();
  540. registry.emplace<double>(e0);
  541. registry.emplace<int>(e0);
  542. registry.emplace<float>(e0);
  543. const auto e1 = registry.create();
  544. registry.emplace<char>(e1);
  545. registry.emplace<float>(e1);
  546. ASSERT_TRUE((registry.group<char, int>(entt::get<float>).empty()));
  547. ASSERT_TRUE((registry.group<double, float>(entt::get<char, int>).empty()));
  548. }
  549. TEST(OwningGroup, Each) {
  550. entt::registry registry;
  551. auto group = registry.group<int>(entt::get<char>);
  552. const auto e0 = registry.create();
  553. registry.emplace<int>(e0, 0);
  554. registry.emplace<char>(e0);
  555. const auto e1 = registry.create();
  556. registry.emplace<int>(e1, 1);
  557. registry.emplace<char>(e1);
  558. auto cgroup = std::as_const(registry).group<const int>(entt::get<const char>);
  559. std::size_t cnt = 0;
  560. for(auto first = cgroup.each().rbegin(), last = cgroup.each().rend(); first != last; ++first) {
  561. static_assert(std::is_same_v<decltype(*first), std::tuple<entt::entity, const int &, const char &>>);
  562. ASSERT_EQ(std::get<1>(*first), cnt++);
  563. }
  564. group.each([&cnt](auto, int &, char &) { ++cnt; });
  565. group.each([&cnt](int &, char &) { ++cnt; });
  566. ASSERT_EQ(cnt, std::size_t{6});
  567. cgroup.each([&cnt](const int &, const char &) { --cnt; });
  568. cgroup.each([&cnt](auto, const int &, const char &) { --cnt; });
  569. for(auto &&[entt, iv, cv]: group.each()) {
  570. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  571. static_assert(std::is_same_v<decltype(iv), int &>);
  572. static_assert(std::is_same_v<decltype(cv), char &>);
  573. ASSERT_EQ(iv, --cnt);
  574. }
  575. ASSERT_EQ(cnt, std::size_t{0});
  576. }
  577. TEST(OwningGroup, SortOrdered) {
  578. entt::registry registry;
  579. auto group = registry.group<boxed_int, char>();
  580. entt::entity entities[5]{};
  581. registry.create(std::begin(entities), std::end(entities));
  582. registry.emplace<boxed_int>(entities[0], 12);
  583. registry.emplace<char>(entities[0], 'a');
  584. registry.emplace<boxed_int>(entities[1], 9);
  585. registry.emplace<char>(entities[1], 'b');
  586. registry.emplace<boxed_int>(entities[2], 6);
  587. registry.emplace<char>(entities[2], 'c');
  588. registry.emplace<boxed_int>(entities[3], 1);
  589. registry.emplace<boxed_int>(entities[4], 2);
  590. group.sort([&group](const entt::entity lhs, const entt::entity rhs) {
  591. return group.get<boxed_int>(lhs).value < group.get<boxed_int>(rhs).value;
  592. });
  593. ASSERT_EQ(*(group.data() + 0u), entities[0]);
  594. ASSERT_EQ(*(group.data() + 1u), entities[1]);
  595. ASSERT_EQ(*(group.data() + 2u), entities[2]);
  596. ASSERT_EQ(*(group.data() + 3u), entities[3]);
  597. ASSERT_EQ(*(group.data() + 4u), entities[4]);
  598. ASSERT_EQ((group.raw<boxed_int>() + 0u)->value, 12);
  599. ASSERT_EQ((group.raw<boxed_int>() + 1u)->value, 9);
  600. ASSERT_EQ((group.raw<boxed_int>() + 2u)->value, 6);
  601. ASSERT_EQ((group.raw<boxed_int>() + 3u)->value, 1);
  602. ASSERT_EQ((group.raw<boxed_int>() + 4u)->value, 2);
  603. ASSERT_EQ(*(group.raw<char>() + 0u), 'a');
  604. ASSERT_EQ(*(group.raw<char>() + 1u), 'b');
  605. ASSERT_EQ(*(group.raw<char>() + 2u), 'c');
  606. ASSERT_EQ((group.get<boxed_int, char>(entities[0])), (std::make_tuple(boxed_int{12}, 'a')));
  607. ASSERT_EQ((group.get<boxed_int, char>(entities[1])), (std::make_tuple(boxed_int{9}, 'b')));
  608. ASSERT_EQ((group.get<boxed_int, char>(entities[2])), (std::make_tuple(boxed_int{6}, 'c')));
  609. ASSERT_FALSE(group.contains(entities[3]));
  610. ASSERT_FALSE(group.contains(entities[4]));
  611. }
  612. TEST(OwningGroup, SortReverse) {
  613. entt::registry registry;
  614. auto group = registry.group<boxed_int, char>();
  615. entt::entity entities[5]{};
  616. registry.create(std::begin(entities), std::end(entities));
  617. registry.emplace<boxed_int>(entities[0], 6);
  618. registry.emplace<char>(entities[0], 'a');
  619. registry.emplace<boxed_int>(entities[1], 9);
  620. registry.emplace<char>(entities[1], 'b');
  621. registry.emplace<boxed_int>(entities[2], 12);
  622. registry.emplace<char>(entities[2], 'c');
  623. registry.emplace<boxed_int>(entities[3], 1);
  624. registry.emplace<boxed_int>(entities[4], 2);
  625. group.sort<boxed_int>([](const auto &lhs, const auto &rhs) {
  626. return lhs.value < rhs.value;
  627. });
  628. ASSERT_EQ(*(group.data() + 0u), entities[2]);
  629. ASSERT_EQ(*(group.data() + 1u), entities[1]);
  630. ASSERT_EQ(*(group.data() + 2u), entities[0]);
  631. ASSERT_EQ(*(group.data() + 3u), entities[3]);
  632. ASSERT_EQ(*(group.data() + 4u), entities[4]);
  633. ASSERT_EQ((group.raw<boxed_int>() + 0u)->value, 12);
  634. ASSERT_EQ((group.raw<boxed_int>() + 1u)->value, 9);
  635. ASSERT_EQ((group.raw<boxed_int>() + 2u)->value, 6);
  636. ASSERT_EQ((group.raw<boxed_int>() + 3u)->value, 1);
  637. ASSERT_EQ((group.raw<boxed_int>() + 4u)->value, 2);
  638. ASSERT_EQ(*(group.raw<char>() + 0u), 'c');
  639. ASSERT_EQ(*(group.raw<char>() + 1u), 'b');
  640. ASSERT_EQ(*(group.raw<char>() + 2u), 'a');
  641. ASSERT_EQ((group.get<boxed_int, char>(entities[0])), (std::make_tuple(boxed_int{6}, 'a')));
  642. ASSERT_EQ((group.get<boxed_int, char>(entities[1])), (std::make_tuple(boxed_int{9}, 'b')));
  643. ASSERT_EQ((group.get<boxed_int, char>(entities[2])), (std::make_tuple(boxed_int{12}, 'c')));
  644. ASSERT_FALSE(group.contains(entities[3]));
  645. ASSERT_FALSE(group.contains(entities[4]));
  646. }
  647. TEST(OwningGroup, SortUnordered) {
  648. entt::registry registry;
  649. auto group = registry.group<boxed_int>(entt::get<char>);
  650. entt::entity entities[7]{};
  651. registry.create(std::begin(entities), std::end(entities));
  652. registry.emplace<boxed_int>(entities[0], 6);
  653. registry.emplace<char>(entities[0], 'c');
  654. registry.emplace<boxed_int>(entities[1], 3);
  655. registry.emplace<char>(entities[1], 'b');
  656. registry.emplace<boxed_int>(entities[2], 1);
  657. registry.emplace<char>(entities[2], 'a');
  658. registry.emplace<boxed_int>(entities[3], 9);
  659. registry.emplace<char>(entities[3], 'd');
  660. registry.emplace<boxed_int>(entities[4], 12);
  661. registry.emplace<char>(entities[4], 'e');
  662. registry.emplace<boxed_int>(entities[5], 4);
  663. registry.emplace<boxed_int>(entities[6], 5);
  664. group.sort<char>([](const auto lhs, const auto rhs) {
  665. return lhs < rhs;
  666. });
  667. ASSERT_EQ(*(group.data() + 0u), entities[4]);
  668. ASSERT_EQ(*(group.data() + 1u), entities[3]);
  669. ASSERT_EQ(*(group.data() + 2u), entities[0]);
  670. ASSERT_EQ(*(group.data() + 3u), entities[1]);
  671. ASSERT_EQ(*(group.data() + 4u), entities[2]);
  672. ASSERT_EQ(*(group.data() + 5u), entities[5]);
  673. ASSERT_EQ(*(group.data() + 6u), entities[6]);
  674. ASSERT_EQ((group.raw<boxed_int>() + 0u)->value, 12);
  675. ASSERT_EQ((group.raw<boxed_int>() + 1u)->value, 9);
  676. ASSERT_EQ((group.raw<boxed_int>() + 2u)->value, 6);
  677. ASSERT_EQ((group.raw<boxed_int>() + 3u)->value, 3);
  678. ASSERT_EQ((group.raw<boxed_int>() + 4u)->value, 1);
  679. ASSERT_EQ((group.raw<boxed_int>() + 5u)->value, 4);
  680. ASSERT_EQ((group.raw<boxed_int>() + 6u)->value, 5);
  681. ASSERT_EQ((group.get<boxed_int, char>(entities[0])), (std::make_tuple(boxed_int{6}, 'c')));
  682. ASSERT_EQ((group.get<boxed_int, char>(entities[1])), (std::make_tuple(boxed_int{3}, 'b')));
  683. ASSERT_EQ((group.get<boxed_int, char>(entities[2])), (std::make_tuple(boxed_int{1}, 'a')));
  684. ASSERT_EQ((group.get<boxed_int, char>(entities[3])), (std::make_tuple(boxed_int{9}, 'd')));
  685. ASSERT_EQ((group.get<boxed_int, char>(entities[4])), (std::make_tuple(boxed_int{12}, 'e')));
  686. ASSERT_FALSE(group.contains(entities[5]));
  687. ASSERT_FALSE(group.contains(entities[6]));
  688. }
  689. TEST(OwningGroup, SortWithExclusionList) {
  690. entt::registry registry;
  691. auto group = registry.group<boxed_int>(entt::exclude<char>);
  692. entt::entity entities[5]{};
  693. registry.create(std::begin(entities), std::end(entities));
  694. registry.emplace<boxed_int>(entities[0], 0);
  695. registry.emplace<boxed_int>(entities[1], 1);
  696. registry.emplace<boxed_int>(entities[2], 2);
  697. registry.emplace<boxed_int>(entities[3], 3);
  698. registry.emplace<boxed_int>(entities[4], 4);
  699. registry.emplace<char>(entities[2]);
  700. group.sort([](const entt::entity lhs, const entt::entity rhs) {
  701. return lhs < rhs;
  702. });
  703. ASSERT_EQ(*(group.data() + 0u), entities[4]);
  704. ASSERT_EQ(*(group.data() + 1u), entities[3]);
  705. ASSERT_EQ(*(group.data() + 2u), entities[1]);
  706. ASSERT_EQ(*(group.data() + 3u), entities[0]);
  707. ASSERT_EQ((group.raw<boxed_int>() + 0u)->value, 4);
  708. ASSERT_EQ((group.raw<boxed_int>() + 1u)->value, 3);
  709. ASSERT_EQ((group.raw<boxed_int>() + 2u)->value, 1);
  710. ASSERT_EQ((group.raw<boxed_int>() + 3u)->value, 0);
  711. ASSERT_EQ(group.get<boxed_int>(entities[0]).value, 0);
  712. ASSERT_EQ(group.get<boxed_int>(entities[1]).value, 1);
  713. ASSERT_EQ(group.get<boxed_int>(entities[3]).value, 3);
  714. ASSERT_EQ(group.get<boxed_int>(entities[4]).value, 4);
  715. ASSERT_FALSE(group.contains(entities[2]));
  716. }
  717. TEST(OwningGroup, IndexRebuiltOnDestroy) {
  718. entt::registry registry;
  719. auto group = registry.group<int>(entt::get<unsigned int>);
  720. const auto e0 = registry.create();
  721. const auto e1 = registry.create();
  722. registry.emplace<unsigned int>(e0, 0u);
  723. registry.emplace<unsigned int>(e1, 1u);
  724. registry.emplace<int>(e0, 0);
  725. registry.emplace<int>(e1, 1);
  726. registry.destroy(e0);
  727. registry.emplace<int>(registry.create(), 42);
  728. ASSERT_EQ(group.size(), 1u);
  729. ASSERT_EQ(group[{}], e1);
  730. ASSERT_EQ(group.get<int>(e1), 1);
  731. ASSERT_EQ(group.get<unsigned int>(e1), 1u);
  732. group.each([e1](auto entity, auto ivalue, auto uivalue) {
  733. ASSERT_EQ(entity, e1);
  734. ASSERT_EQ(ivalue, 1);
  735. ASSERT_EQ(uivalue, 1u);
  736. });
  737. for(auto &&curr: group.each()) {
  738. ASSERT_EQ(std::get<0>(curr), e1);
  739. ASSERT_EQ(std::get<1>(curr), 1);
  740. ASSERT_EQ(std::get<2>(curr), 1u);
  741. }
  742. }
  743. TEST(OwningGroup, ConstNonConstAndAllInBetween) {
  744. entt::registry registry;
  745. auto group = registry.group<int, const char>(entt::get<empty_type, double, const float>);
  746. ASSERT_EQ(group.size(), 0u);
  747. const auto entity = registry.create();
  748. registry.emplace<int>(entity, 0);
  749. registry.emplace<char>(entity, 'c');
  750. registry.emplace<empty_type>(entity);
  751. registry.emplace<double>(entity, 0.);
  752. registry.emplace<float>(entity, 0.f);
  753. ASSERT_EQ(group.size(), 1u);
  754. static_assert(std::is_same_v<decltype(group.get<int>({})), int &>);
  755. static_assert(std::is_same_v<decltype(group.get<const char>({})), const char &>);
  756. static_assert(std::is_same_v<decltype(group.get<double>({})), double &>);
  757. static_assert(std::is_same_v<decltype(group.get<const float>({})), const float &>);
  758. static_assert(std::is_same_v<decltype(group.get<int, const char, double, const float>({})), std::tuple<int &, const char &, double &, const float &>>);
  759. static_assert(std::is_same_v<decltype(group.get({})), std::tuple<int &, const char &, double &, const float &>>);
  760. static_assert(std::is_same_v<decltype(group.data()), const entt::entity *>);
  761. static_assert(std::is_same_v<decltype(group.raw<const char>()), const char *>);
  762. static_assert(std::is_same_v<decltype(group.raw<int>()), int *>);
  763. group.each([](auto &&i, auto &&c, auto &&d, auto &&f) {
  764. static_assert(std::is_same_v<decltype(i), int &>);
  765. static_assert(std::is_same_v<decltype(c), const char &>);
  766. static_assert(std::is_same_v<decltype(d), double &>);
  767. static_assert(std::is_same_v<decltype(f), const float &>);
  768. });
  769. for(auto &&[entt, iv, cv, dv, fv]: group.each()) {
  770. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  771. static_assert(std::is_same_v<decltype(iv), int &>);
  772. static_assert(std::is_same_v<decltype(cv), const char &>);
  773. static_assert(std::is_same_v<decltype(dv), double &>);
  774. static_assert(std::is_same_v<decltype(fv), const float &>);
  775. }
  776. }
  777. TEST(OwningGroup, Find) {
  778. entt::registry registry;
  779. auto group = registry.group<int>(entt::get<const char>);
  780. const auto e0 = registry.create();
  781. registry.emplace<int>(e0);
  782. registry.emplace<char>(e0);
  783. const auto e1 = registry.create();
  784. registry.emplace<int>(e1);
  785. registry.emplace<char>(e1);
  786. const auto e2 = registry.create();
  787. registry.emplace<int>(e2);
  788. registry.emplace<char>(e2);
  789. const auto e3 = registry.create();
  790. registry.emplace<int>(e3);
  791. registry.emplace<char>(e3);
  792. registry.remove<int>(e1);
  793. ASSERT_NE(group.find(e0), group.end());
  794. ASSERT_EQ(group.find(e1), group.end());
  795. ASSERT_NE(group.find(e2), group.end());
  796. ASSERT_NE(group.find(e3), group.end());
  797. auto it = group.find(e2);
  798. ASSERT_EQ(*it, e2);
  799. ASSERT_EQ(*(++it), e3);
  800. ASSERT_EQ(*(++it), e0);
  801. ASSERT_EQ(++it, group.end());
  802. ASSERT_EQ(++group.find(e0), group.end());
  803. const auto e4 = registry.create();
  804. registry.destroy(e4);
  805. const auto e5 = registry.create();
  806. registry.emplace<int>(e5);
  807. registry.emplace<char>(e5);
  808. ASSERT_NE(group.find(e5), group.end());
  809. ASSERT_EQ(group.find(e4), group.end());
  810. }
  811. TEST(OwningGroup, ExcludedComponents) {
  812. entt::registry registry;
  813. const auto e0 = registry.create();
  814. registry.emplace<int>(e0, 0);
  815. const auto e1 = registry.create();
  816. registry.emplace<int>(e1, 1);
  817. registry.emplace<char>(e1);
  818. const auto group = registry.group<int>(entt::exclude<char, double>);
  819. const auto e2 = registry.create();
  820. registry.emplace<int>(e2, 2);
  821. const auto e3 = registry.create();
  822. registry.emplace<int>(e3, 3);
  823. registry.emplace<double>(e3);
  824. for(const auto entity: group) {
  825. ASSERT_TRUE(entity == e0 || entity == e2);
  826. if(entity == e0) {
  827. ASSERT_EQ(group.get<int>(e0), 0);
  828. } else if(entity == e2) {
  829. ASSERT_EQ(group.get<int>(e2), 2);
  830. }
  831. }
  832. registry.emplace<char>(e0);
  833. registry.emplace<double>(e2);
  834. ASSERT_TRUE(group.empty());
  835. registry.remove<char>(e1);
  836. registry.remove<double>(e3);
  837. for(const auto entity: group) {
  838. ASSERT_TRUE(entity == e1 || entity == e3);
  839. if(entity == e1) {
  840. ASSERT_EQ(group.get<int>(e1), 1);
  841. } else if(entity == e3) {
  842. ASSERT_EQ(group.get<int>(e3), 3);
  843. }
  844. }
  845. }
  846. TEST(OwningGroup, EmptyAndNonEmptyTypes) {
  847. entt::registry registry;
  848. const auto group = registry.group<int>(entt::get<empty_type>);
  849. const auto e0 = registry.create();
  850. registry.emplace<empty_type>(e0);
  851. registry.emplace<int>(e0);
  852. const auto e1 = registry.create();
  853. registry.emplace<empty_type>(e1);
  854. registry.emplace<int>(e1);
  855. registry.emplace<int>(registry.create());
  856. for(const auto entity: group) {
  857. ASSERT_TRUE(entity == e0 || entity == e1);
  858. }
  859. group.each([e0, e1](const auto entity, const int &) {
  860. ASSERT_TRUE(entity == e0 || entity == e1);
  861. });
  862. for(auto &&[entt, iv]: group.each()) {
  863. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  864. static_assert(std::is_same_v<decltype(iv), int &>);
  865. ASSERT_TRUE(entt == e0 || entt == e1);
  866. }
  867. ASSERT_EQ(group.size(), 2u);
  868. }
  869. TEST(OwningGroup, TrackEntitiesOnComponentDestruction) {
  870. entt::registry registry;
  871. const auto group = registry.group<int>(entt::exclude<char>);
  872. const auto cgroup = std::as_const(registry).group<const int>(entt::exclude<char>);
  873. const auto entity = registry.create();
  874. registry.emplace<int>(entity);
  875. registry.emplace<char>(entity);
  876. ASSERT_TRUE(group.empty());
  877. ASSERT_TRUE(cgroup.empty());
  878. registry.remove<char>(entity);
  879. ASSERT_FALSE(group.empty());
  880. ASSERT_FALSE(cgroup.empty());
  881. }
  882. TEST(OwningGroup, EmptyTypes) {
  883. entt::registry registry;
  884. const auto entity = registry.create();
  885. registry.emplace<int>(entity);
  886. registry.emplace<char>(entity);
  887. registry.emplace<empty_type>(entity);
  888. registry.group<int>(entt::get<char, empty_type>).each([entity](const auto entt, int, char) {
  889. ASSERT_EQ(entity, entt);
  890. });
  891. for(auto &&[entt, iv, cv]: registry.group<int>(entt::get<char, empty_type>).each()) {
  892. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  893. static_assert(std::is_same_v<decltype(iv), int &>);
  894. static_assert(std::is_same_v<decltype(cv), char &>);
  895. ASSERT_EQ(entity, entt);
  896. }
  897. registry.group<char>(entt::get<empty_type, int>).each([check = true](char, int) mutable {
  898. ASSERT_TRUE(check);
  899. check = false;
  900. });
  901. for(auto &&[entt, cv, iv]: registry.group<char>(entt::get<empty_type, int>).each()) {
  902. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  903. static_assert(std::is_same_v<decltype(cv), char &>);
  904. static_assert(std::is_same_v<decltype(iv), int &>);
  905. ASSERT_EQ(entity, entt);
  906. }
  907. registry.group<empty_type>(entt::get<int, char>).each([entity](const auto entt, int, char) {
  908. ASSERT_EQ(entity, entt);
  909. });
  910. for(auto &&[entt, iv, cv]: registry.group<empty_type>(entt::get<int, char>).each()) {
  911. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  912. static_assert(std::is_same_v<decltype(iv), int &>);
  913. static_assert(std::is_same_v<decltype(cv), char &>);
  914. ASSERT_EQ(entity, entt);
  915. }
  916. registry.group<double>(entt::get<int, char>).each([](const auto, double, int, char) { FAIL(); });
  917. ASSERT_EQ(registry.group<double>(entt::get<int, char>).each().begin(), registry.group<double>(entt::get<int, char>).each().end());
  918. }
  919. TEST(OwningGroup, FrontBack) {
  920. entt::registry registry;
  921. auto group = registry.group<const char>(entt::get<const int>);
  922. ASSERT_EQ(group.front(), static_cast<entt::entity>(entt::null));
  923. ASSERT_EQ(group.back(), static_cast<entt::entity>(entt::null));
  924. const auto e0 = registry.create();
  925. registry.emplace<int>(e0);
  926. registry.emplace<char>(e0);
  927. const auto e1 = registry.create();
  928. registry.emplace<int>(e1);
  929. registry.emplace<char>(e1);
  930. const auto entity = registry.create();
  931. registry.emplace<char>(entity);
  932. ASSERT_EQ(group.front(), e1);
  933. ASSERT_EQ(group.back(), e0);
  934. }
  935. TEST(OwningGroup, SignalRace) {
  936. entt::registry registry;
  937. registry.on_construct<double>().connect<&entt::registry::emplace_or_replace<int>>();
  938. const auto group = registry.group<int>(entt::get<double>);
  939. auto entity = registry.create();
  940. registry.emplace<double>(entity);
  941. ASSERT_EQ(group.size(), 1u);
  942. }
  943. TEST(OwningGroup, StableLateInitialization) {
  944. entt::registry registry;
  945. for(std::size_t i{}; i < 30u; ++i) {
  946. auto entity = registry.create();
  947. if(!(i % 2u)) registry.emplace<int>(entity);
  948. if(!(i % 3u)) registry.emplace<char>(entity);
  949. }
  950. // thanks to @pgruenbacher for pointing out this corner case
  951. ASSERT_EQ((registry.group<int, char>().size()), 5u);
  952. }
  953. TEST(OwningGroup, PreventEarlyOptOut) {
  954. entt::registry registry;
  955. registry.emplace<int>(registry.create(), 3);
  956. const auto entity = registry.create();
  957. registry.emplace<char>(entity, 'c');
  958. registry.emplace<int>(entity, 2);
  959. // thanks to @pgruenbacher for pointing out this corner case
  960. registry.group<char, int>().each([entity](const auto entt, const auto &c, const auto &i) {
  961. ASSERT_EQ(entity, entt);
  962. ASSERT_EQ(c, 'c');
  963. ASSERT_EQ(i, 2);
  964. });
  965. }
  966. TEST(OwningGroup, ExtendedGet) {
  967. using type = decltype(std::declval<entt::registry>().group<int, empty_type>(entt::get<char>).get({}));
  968. static_assert(std::tuple_size_v<type> == 2u);
  969. static_assert(std::is_same_v<std::tuple_element_t<0, type>, int &>);
  970. static_assert(std::is_same_v<std::tuple_element_t<1, type>, char &>);
  971. }