view.cpp 27 KB

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  1. #include <tuple>
  2. #include <utility>
  3. #include <type_traits>
  4. #include <gtest/gtest.h>
  5. #include <entt/entity/registry.hpp>
  6. #include <entt/entity/view.hpp>
  7. struct empty_type {};
  8. TEST(SingleComponentView, Functionalities) {
  9. entt::registry registry;
  10. auto view = registry.view<char>();
  11. auto cview = std::as_const(registry).view<const char>();
  12. const auto e0 = registry.create();
  13. const auto e1 = registry.create();
  14. ASSERT_TRUE(view.empty());
  15. registry.emplace<int>(e1);
  16. registry.emplace<char>(e1);
  17. ASSERT_NO_THROW(view.begin()++);
  18. ASSERT_NO_THROW(++cview.begin());
  19. ASSERT_NO_THROW([](auto it) { return it++; }(view.rbegin()));
  20. ASSERT_NO_THROW([](auto it) { return ++it; }(cview.rbegin()));
  21. ASSERT_NE(view.begin(), view.end());
  22. ASSERT_NE(cview.begin(), cview.end());
  23. ASSERT_NE(view.rbegin(), view.rend());
  24. ASSERT_NE(cview.rbegin(), cview.rend());
  25. ASSERT_EQ(view.size(), 1u);
  26. ASSERT_FALSE(view.empty());
  27. registry.emplace<char>(e0);
  28. ASSERT_EQ(view.size(), 2u);
  29. view.get<char>(e0) = '1';
  30. std::get<0>(view.get(e1)) = '2';
  31. for(auto entity: view) {
  32. ASSERT_TRUE(cview.get<const char>(entity) == '1' || std::get<const char &>(cview.get(entity)) == '2');
  33. }
  34. ASSERT_EQ(*(view.data() + 0), e1);
  35. ASSERT_EQ(*(view.data() + 1), e0);
  36. ASSERT_EQ(*(view.raw() + 0), '2');
  37. ASSERT_EQ(*(cview.raw() + 1), '1');
  38. registry.remove<char>(e0);
  39. registry.remove<char>(e1);
  40. ASSERT_EQ(view.begin(), view.end());
  41. ASSERT_EQ(view.rbegin(), view.rend());
  42. ASSERT_TRUE(view.empty());
  43. }
  44. TEST(SingleComponentView, ElementAccess) {
  45. entt::registry registry;
  46. auto view = registry.view<int>();
  47. auto cview = std::as_const(registry).view<const int>();
  48. const auto e0 = registry.create();
  49. registry.emplace<int>(e0);
  50. const auto e1 = registry.create();
  51. registry.emplace<int>(e1);
  52. for(auto i = 0u; i < view.size(); ++i) {
  53. ASSERT_EQ(view[i], i ? e0 : e1);
  54. ASSERT_EQ(cview[i], i ? e0 : e1);
  55. }
  56. }
  57. TEST(SingleComponentView, Contains) {
  58. entt::registry registry;
  59. const auto e0 = registry.create();
  60. registry.emplace<int>(e0);
  61. const auto e1 = registry.create();
  62. registry.emplace<int>(e1);
  63. registry.destroy(e0);
  64. auto view = registry.view<int>();
  65. ASSERT_FALSE(view.contains(e0));
  66. ASSERT_TRUE(view.contains(e1));
  67. }
  68. TEST(SingleComponentView, Empty) {
  69. entt::registry registry;
  70. const auto e0 = registry.create();
  71. registry.emplace<char>(e0);
  72. registry.emplace<double>(e0);
  73. const auto e1 = registry.create();
  74. registry.emplace<char>(e1);
  75. auto view = registry.view<int>();
  76. ASSERT_EQ(view.size(), 0u);
  77. ASSERT_EQ(view.begin(), view.end());
  78. ASSERT_EQ(view.rbegin(), view.rend());
  79. }
  80. TEST(SingleComponentView, Each) {
  81. entt::registry registry;
  82. registry.emplace<int>(registry.create(), 0);
  83. registry.emplace<int>(registry.create(), 1);
  84. auto view = registry.view<int>();
  85. auto cview = std::as_const(registry).view<const int>();
  86. std::size_t cnt = 0;
  87. for(auto first = cview.each().rbegin(), last = cview.each().rend(); first != last; ++first) {
  88. static_assert(std::is_same_v<decltype(*first), std::tuple<entt::entity, const int &>>);
  89. ASSERT_EQ(std::get<1>(*first), cnt++);
  90. }
  91. view.each([&cnt](auto, int &) { ++cnt; });
  92. view.each([&cnt](int &) { ++cnt; });
  93. ASSERT_EQ(cnt, std::size_t{6});
  94. cview.each([&cnt](const int &) { --cnt; });
  95. cview.each([&cnt](auto, const int &) { --cnt; });
  96. for(auto &&[entt, iv]: view.each()) {
  97. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  98. static_assert(std::is_same_v<decltype(iv), int &>);
  99. ASSERT_EQ(iv, --cnt);
  100. }
  101. ASSERT_EQ(cnt, std::size_t{0});
  102. }
  103. TEST(SingleComponentView, ConstNonConstAndAllInBetween) {
  104. entt::registry registry;
  105. auto view = registry.view<int>();
  106. auto cview = std::as_const(registry).view<const int>();
  107. ASSERT_EQ(view.size(), decltype(view.size()){0});
  108. ASSERT_EQ(cview.size(), decltype(cview.size()){0});
  109. registry.emplace<int>(registry.create(), 0);
  110. ASSERT_EQ(view.size(), decltype(view.size()){1});
  111. ASSERT_EQ(cview.size(), decltype(cview.size()){1});
  112. static_assert(std::is_same_v<typename decltype(view)::raw_type, int>);
  113. static_assert(std::is_same_v<typename decltype(cview)::raw_type, const int>);
  114. static_assert(std::is_same_v<decltype(view.get<int>({})), int &>);
  115. static_assert(std::is_same_v<decltype(view.get({})), std::tuple<int &>>);
  116. static_assert(std::is_same_v<decltype(view.raw()), int *>);
  117. static_assert(std::is_same_v<decltype(cview.get<const int>({})), const int &>);
  118. static_assert(std::is_same_v<decltype(cview.get({})), std::tuple<const int &>>);
  119. static_assert(std::is_same_v<decltype(cview.raw()), const int *>);
  120. view.each([](auto &&i) {
  121. static_assert(std::is_same_v<decltype(i), int &>);
  122. });
  123. cview.each([](auto &&i) {
  124. static_assert(std::is_same_v<decltype(i), const int &>);
  125. });
  126. for(auto &&[entt, iv]: view.each()) {
  127. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  128. static_assert(std::is_same_v<decltype(iv), int &>);
  129. }
  130. for(auto &&[entt, iv]: cview.each()) {
  131. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  132. static_assert(std::is_same_v<decltype(iv), const int &>);
  133. }
  134. }
  135. TEST(SingleComponentView, ConstNonConstAndAllInBetweenWithEmptyType) {
  136. entt::registry registry;
  137. auto view = registry.view<empty_type>();
  138. auto cview = std::as_const(registry).view<const empty_type>();
  139. ASSERT_EQ(view.size(), decltype(view.size()){0});
  140. ASSERT_EQ(cview.size(), decltype(cview.size()){0});
  141. registry.emplace<empty_type>(registry.create());
  142. ASSERT_EQ(view.size(), decltype(view.size()){1});
  143. ASSERT_EQ(cview.size(), decltype(cview.size()){1});
  144. static_assert(std::is_same_v<typename decltype(view)::raw_type, empty_type>);
  145. static_assert(std::is_same_v<typename decltype(cview)::raw_type, const empty_type>);
  146. static_assert(std::is_same_v<decltype(view.get({})), std::tuple<>>);
  147. static_assert(std::is_same_v<decltype(cview.get({})), std::tuple<>>);
  148. for(auto &&[entt]: view.each()) {
  149. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  150. }
  151. for(auto &&[entt]: cview.each()) {
  152. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  153. }
  154. }
  155. TEST(SingleComponentView, Find) {
  156. entt::registry registry;
  157. auto view = registry.view<int>();
  158. const auto e0 = registry.create();
  159. registry.emplace<int>(e0);
  160. const auto e1 = registry.create();
  161. registry.emplace<int>(e1);
  162. const auto e2 = registry.create();
  163. registry.emplace<int>(e2);
  164. const auto e3 = registry.create();
  165. registry.emplace<int>(e3);
  166. registry.remove<int>(e1);
  167. ASSERT_NE(view.find(e0), view.end());
  168. ASSERT_EQ(view.find(e1), view.end());
  169. ASSERT_NE(view.find(e2), view.end());
  170. ASSERT_NE(view.find(e3), view.end());
  171. auto it = view.find(e2);
  172. ASSERT_EQ(*it, e2);
  173. ASSERT_EQ(*(++it), e3);
  174. ASSERT_EQ(*(++it), e0);
  175. ASSERT_EQ(++it, view.end());
  176. ASSERT_EQ(++view.find(e0), view.end());
  177. const auto e4 = registry.create();
  178. registry.destroy(e4);
  179. const auto e5 = registry.create();
  180. registry.emplace<int>(e5);
  181. ASSERT_NE(view.find(e5), view.end());
  182. ASSERT_EQ(view.find(e4), view.end());
  183. }
  184. TEST(SingleComponentView, EmptyTypes) {
  185. entt::registry registry;
  186. auto create = [&](auto... component) {
  187. const auto entt = registry.create();
  188. (registry.emplace<decltype(component)>(entt, component), ...);
  189. return entt;
  190. };
  191. const auto entity = create(0, empty_type{});
  192. create('c');
  193. registry.view<empty_type>().each([entity](const auto entt) {
  194. ASSERT_EQ(entity, entt);
  195. });
  196. registry.view<empty_type>().each([check = true]() mutable {
  197. ASSERT_TRUE(check);
  198. check = false;
  199. });
  200. for(auto &&[entt]: registry.view<empty_type>().each()) {
  201. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  202. ASSERT_EQ(entity, entt);
  203. }
  204. registry.view<int>().each([entity](const auto entt, int) {
  205. ASSERT_EQ(entity, entt);
  206. });
  207. registry.view<int>().each([check = true](int) mutable {
  208. ASSERT_TRUE(check);
  209. check = false;
  210. });
  211. for(auto &&[entt, iv]: registry.view<int>().each()) {
  212. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  213. static_assert(std::is_same_v<decltype(iv), int &>);
  214. ASSERT_EQ(entity, entt);
  215. }
  216. }
  217. TEST(SingleComponentView, FrontBack) {
  218. entt::registry registry;
  219. auto view = registry.view<const int>();
  220. ASSERT_EQ(view.front(), static_cast<entt::entity>(entt::null));
  221. ASSERT_EQ(view.back(), static_cast<entt::entity>(entt::null));
  222. const auto e0 = registry.create();
  223. registry.emplace<int>(e0);
  224. const auto e1 = registry.create();
  225. registry.emplace<int>(e1);
  226. ASSERT_EQ(view.front(), e1);
  227. ASSERT_EQ(view.back(), e0);
  228. }
  229. TEST(MultiComponentView, Functionalities) {
  230. entt::registry registry;
  231. auto view = registry.view<int, char>();
  232. auto cview = std::as_const(registry).view<const int, const char>();
  233. const auto e0 = registry.create();
  234. registry.emplace<char>(e0);
  235. const auto e1 = registry.create();
  236. registry.emplace<int>(e1);
  237. registry.emplace<char>(e1);
  238. ASSERT_EQ(*view.begin(), e1);
  239. ASSERT_EQ(*view.rbegin(), e1);
  240. ASSERT_EQ(++view.begin(), (view.end()));
  241. ASSERT_EQ(++view.rbegin(), (view.rend()));
  242. ASSERT_NO_THROW((view.begin()++));
  243. ASSERT_NO_THROW((++cview.begin()));
  244. ASSERT_NO_THROW(view.rbegin()++);
  245. ASSERT_NO_THROW(++cview.rbegin());
  246. ASSERT_NE(view.begin(), view.end());
  247. ASSERT_NE(cview.begin(), cview.end());
  248. ASSERT_NE(view.rbegin(), view.rend());
  249. ASSERT_NE(cview.rbegin(), cview.rend());
  250. ASSERT_EQ(view.size_hint(), decltype(view.size_hint()){1});
  251. registry.get<char>(e0) = '1';
  252. registry.get<char>(e1) = '2';
  253. registry.get<int>(e1) = 42;
  254. for(auto entity: view) {
  255. ASSERT_EQ(std::get<0>(cview.get<const int, const char>(entity)), 42);
  256. ASSERT_EQ(std::get<1>(view.get<int, char>(entity)), '2');
  257. ASSERT_EQ(cview.get<const char>(entity), '2');
  258. }
  259. }
  260. TEST(MultiComponentView, Iterator) {
  261. entt::registry registry;
  262. const auto entity = registry.create();
  263. registry.emplace<int>(entity);
  264. registry.emplace<char>(entity);
  265. const auto view = registry.view<int, char>();
  266. using iterator = typename decltype(view)::iterator;
  267. iterator end{view.begin()};
  268. iterator begin{};
  269. begin = view.end();
  270. std::swap(begin, end);
  271. ASSERT_EQ(begin, view.begin());
  272. ASSERT_EQ(end, view.end());
  273. ASSERT_NE(begin, end);
  274. ASSERT_EQ(begin++, view.begin());
  275. ASSERT_EQ(begin--, view.end());
  276. ASSERT_EQ(++begin, view.end());
  277. ASSERT_EQ(--begin, view.begin());
  278. ASSERT_EQ(*begin, entity);
  279. ASSERT_EQ(*begin.operator->(), entity);
  280. }
  281. TEST(MultiComponentView, ReverseIterator) {
  282. entt::registry registry;
  283. const auto entity = registry.create();
  284. registry.emplace<int>(entity);
  285. registry.emplace<char>(entity);
  286. const auto view = registry.view<int, char>();
  287. using iterator = typename decltype(view)::reverse_iterator;
  288. iterator end{view.rbegin()};
  289. iterator begin{};
  290. begin = view.rend();
  291. std::swap(begin, end);
  292. ASSERT_EQ(begin, view.rbegin());
  293. ASSERT_EQ(end, view.rend());
  294. ASSERT_NE(begin, end);
  295. ASSERT_EQ(begin++, view.rbegin());
  296. ASSERT_EQ(begin--, view.rend());
  297. ASSERT_EQ(++begin, view.rend());
  298. ASSERT_EQ(--begin, view.rbegin());
  299. ASSERT_EQ(*begin, entity);
  300. ASSERT_EQ(*begin.operator->(), entity);
  301. }
  302. TEST(MultiComponentView, Contains) {
  303. entt::registry registry;
  304. const auto e0 = registry.create();
  305. registry.emplace<int>(e0);
  306. registry.emplace<char>(e0);
  307. const auto e1 = registry.create();
  308. registry.emplace<int>(e1);
  309. registry.emplace<char>(e1);
  310. registry.destroy(e0);
  311. auto view = registry.view<int, char>();
  312. ASSERT_FALSE(view.contains(e0));
  313. ASSERT_TRUE(view.contains(e1));
  314. }
  315. TEST(MultiComponentView, Empty) {
  316. entt::registry registry;
  317. const auto e0 = registry.create();
  318. registry.emplace<double>(e0);
  319. registry.emplace<int>(e0);
  320. registry.emplace<float>(e0);
  321. const auto e1 = registry.create();
  322. registry.emplace<char>(e1);
  323. registry.emplace<float>(e1);
  324. auto view = registry.view<char, int, float>();
  325. ASSERT_EQ(view.size_hint(), 1u);
  326. ASSERT_EQ(view.begin(), view.end());
  327. ASSERT_EQ(view.rbegin(), view.rend());
  328. }
  329. TEST(MultiComponentView, Each) {
  330. entt::registry registry;
  331. const auto e0 = registry.create();
  332. registry.emplace<int>(e0, 0);
  333. registry.emplace<char>(e0);
  334. const auto e1 = registry.create();
  335. registry.emplace<int>(e1, 1);
  336. registry.emplace<char>(e1);
  337. auto view = registry.view<int, char>();
  338. auto cview = std::as_const(registry).view<const int, const char>();
  339. std::size_t cnt = 0;
  340. for(auto first = cview.each().rbegin(), last = cview.each().rend(); first != last; ++first) {
  341. static_assert(std::is_same_v<decltype(*first), std::tuple<entt::entity, const int &, const char &>>);
  342. ASSERT_EQ(std::get<1>(*first), cnt++);
  343. }
  344. view.each([&cnt](auto, int &, char &) { ++cnt; });
  345. view.each([&cnt](int &, char &) { ++cnt; });
  346. ASSERT_EQ(cnt, std::size_t{6});
  347. cview.each([&cnt](const int &, const char &) { --cnt; });
  348. cview.each([&cnt](auto, const int &, const char &) { --cnt; });
  349. for(auto &&[entt, iv, cv]: cview.each()) {
  350. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  351. static_assert(std::is_same_v<decltype(iv), const int &>);
  352. static_assert(std::is_same_v<decltype(cv), const char &>);
  353. ASSERT_EQ(iv, --cnt);
  354. }
  355. ASSERT_EQ(cnt, std::size_t{0});
  356. }
  357. TEST(MultiComponentView, EachWithSuggestedType) {
  358. entt::registry registry;
  359. for(auto i = 0; i < 3; ++i) {
  360. const auto entity = registry.create();
  361. registry.emplace<int>(entity, i);
  362. registry.emplace<char>(entity);
  363. }
  364. // makes char a better candidate during iterations
  365. const auto entity = registry.create();
  366. registry.emplace<int>(entity, 99);
  367. registry.view<int, char>().each<int>([value = 2](const auto curr, const auto) mutable {
  368. ASSERT_EQ(curr, value--);
  369. });
  370. registry.sort<int>([](const auto lhs, const auto rhs) {
  371. return lhs < rhs;
  372. });
  373. registry.view<int, char>().each<int>([value = 0](const auto curr, const auto) mutable {
  374. ASSERT_EQ(curr, value++);
  375. });
  376. registry.sort<int>([](const auto lhs, const auto rhs) {
  377. return lhs > rhs;
  378. });
  379. auto value = registry.view<int, char>().size_hint();
  380. for(auto &&curr: registry.view<int, char>().each()) {
  381. ASSERT_EQ(std::get<1>(curr), static_cast<int>(--value));
  382. }
  383. registry.sort<int>([](const auto lhs, const auto rhs) {
  384. return lhs < rhs;
  385. });
  386. value = {};
  387. for(auto &&curr: registry.view<int, char>().each<int>()) {
  388. ASSERT_EQ(std::get<1>(curr), static_cast<int>(value++));
  389. }
  390. }
  391. TEST(MultiComponentView, EachWithHoles) {
  392. entt::registry registry;
  393. const auto e0 = registry.create();
  394. const auto e1 = registry.create();
  395. const auto e2 = registry.create();
  396. registry.emplace<char>(e0, '0');
  397. registry.emplace<char>(e1, '1');
  398. registry.emplace<int>(e0, 0);
  399. registry.emplace<int>(e2, 2);
  400. auto view = registry.view<char, int>();
  401. view.each([e0](auto entity, const char &c, const int &i) {
  402. ASSERT_EQ(entity, e0);
  403. ASSERT_EQ(c, '0');
  404. ASSERT_EQ(i, 0);
  405. });
  406. for(auto &&curr: view.each()) {
  407. ASSERT_EQ(std::get<0>(curr), e0);
  408. ASSERT_EQ(std::get<1>(curr), '0');
  409. ASSERT_EQ(std::get<2>(curr), 0);
  410. }
  411. }
  412. TEST(MultiComponentView, ConstNonConstAndAllInBetween) {
  413. entt::registry registry;
  414. auto view = registry.view<int, empty_type, const char>();
  415. ASSERT_EQ(view.size_hint(), decltype(view.size_hint()){0});
  416. const auto entity = registry.create();
  417. registry.emplace<int>(entity, 0);
  418. registry.emplace<empty_type>(entity);
  419. registry.emplace<char>(entity, 'c');
  420. ASSERT_EQ(view.size_hint(), decltype(view.size_hint()){1});
  421. static_assert(std::is_same_v<decltype(view.get<int>({})), int &>);
  422. static_assert(std::is_same_v<decltype(view.get<const char>({})), const char &>);
  423. static_assert(std::is_same_v<decltype(view.get<int, const char>({})), std::tuple<int &, const char &>>);
  424. static_assert(std::is_same_v<decltype(view.get({})), std::tuple<int &, const char &>>);
  425. view.each([](auto &&i, auto &&c) {
  426. static_assert(std::is_same_v<decltype(i), int &>);
  427. static_assert(std::is_same_v<decltype(c), const char &>);
  428. });
  429. for(auto &&[entt, iv, cv]: view.each()) {
  430. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  431. static_assert(std::is_same_v<decltype(iv), int &>);
  432. static_assert(std::is_same_v<decltype(cv), const char &>);
  433. }
  434. }
  435. TEST(MultiComponentView, Find) {
  436. entt::registry registry;
  437. auto view = registry.view<int, const char>();
  438. const auto e0 = registry.create();
  439. registry.emplace<int>(e0);
  440. registry.emplace<char>(e0);
  441. const auto e1 = registry.create();
  442. registry.emplace<int>(e1);
  443. registry.emplace<char>(e1);
  444. const auto e2 = registry.create();
  445. registry.emplace<int>(e2);
  446. registry.emplace<char>(e2);
  447. const auto e3 = registry.create();
  448. registry.emplace<int>(e3);
  449. registry.emplace<char>(e3);
  450. registry.remove<int>(e1);
  451. ASSERT_NE(view.find(e0), view.end());
  452. ASSERT_EQ(view.find(e1), view.end());
  453. ASSERT_NE(view.find(e2), view.end());
  454. ASSERT_NE(view.find(e3), view.end());
  455. auto it = view.find(e2);
  456. ASSERT_EQ(*it, e2);
  457. ASSERT_EQ(*(++it), e3);
  458. ASSERT_EQ(*(++it), e0);
  459. ASSERT_EQ(++it, view.end());
  460. ASSERT_EQ(++view.find(e0), view.end());
  461. const auto e4 = registry.create();
  462. registry.destroy(e4);
  463. const auto e5 = registry.create();
  464. registry.emplace<int>(e5);
  465. registry.emplace<char>(e5);
  466. ASSERT_NE(view.find(e5), view.end());
  467. ASSERT_EQ(view.find(e4), view.end());
  468. }
  469. TEST(MultiComponentView, ExcludedComponents) {
  470. entt::registry registry;
  471. const auto e0 = registry.create();
  472. registry.emplace<int>(e0, 0);
  473. const auto e1 = registry.create();
  474. registry.emplace<int>(e1, 1);
  475. registry.emplace<char>(e1);
  476. const auto e2 = registry.create();
  477. registry.emplace<int>(e2, 2);
  478. const auto e3 = registry.create();
  479. registry.emplace<int>(e3, 3);
  480. registry.emplace<char>(e3);
  481. const auto view = std::as_const(registry).view<const int>(entt::exclude<char>);
  482. for(const auto entity: view) {
  483. ASSERT_TRUE(entity == e0 || entity == e2);
  484. if(entity == e0) {
  485. ASSERT_EQ(view.get<const int>(e0), 0);
  486. } else if(entity == e2) {
  487. ASSERT_EQ(std::get<0>(view.get(e2)), 2);
  488. }
  489. }
  490. registry.emplace<char>(e0);
  491. registry.emplace<char>(e2);
  492. registry.remove<char>(e1);
  493. registry.remove<char>(e3);
  494. for(const auto entity: view) {
  495. ASSERT_TRUE(entity == e1 || entity == e3);
  496. if(entity == e1) {
  497. ASSERT_EQ(std::get<0>(view.get(e1)), 1);
  498. } else if(entity == e3) {
  499. ASSERT_EQ(view.get<const int>(e3), 3);
  500. }
  501. }
  502. }
  503. TEST(MultiComponentView, EmptyTypes) {
  504. entt::registry registry;
  505. const auto entity = registry.create();
  506. registry.emplace<int>(entity);
  507. registry.emplace<char>(entity);
  508. registry.emplace<double>(entity);
  509. registry.emplace<empty_type>(entity);
  510. const auto other = registry.create();
  511. registry.emplace<int>(other);
  512. registry.emplace<char>(other);
  513. registry.view<int, char, empty_type>().each([entity](const auto entt, int, char) {
  514. ASSERT_EQ(entity, entt);
  515. });
  516. for(auto &&[entt, iv, cv]: registry.view<int, char, empty_type>().each()) {
  517. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  518. static_assert(std::is_same_v<decltype(iv), int &>);
  519. static_assert(std::is_same_v<decltype(cv), char &>);
  520. ASSERT_EQ(entity, entt);
  521. }
  522. registry.view<int, empty_type, char>().each([check = true](int, char) mutable {
  523. ASSERT_TRUE(check);
  524. check = false;
  525. });
  526. for(auto &&[entt, iv, cv]: registry.view<int, empty_type, char>().each()) {
  527. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  528. static_assert(std::is_same_v<decltype(iv), int &>);
  529. static_assert(std::is_same_v<decltype(cv), char &>);
  530. ASSERT_EQ(entity, entt);
  531. }
  532. registry.view<empty_type, int, char>().each([entity](const auto entt, int, char) {
  533. ASSERT_EQ(entity, entt);
  534. });
  535. for(auto &&[entt, iv, cv]: registry.view<empty_type, int, char>().each()) {
  536. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  537. static_assert(std::is_same_v<decltype(iv), int &>);
  538. static_assert(std::is_same_v<decltype(cv), char &>);
  539. ASSERT_EQ(entity, entt);
  540. }
  541. registry.view<empty_type, int, char>().each<empty_type>([entity](const auto entt, int, char) {
  542. ASSERT_EQ(entity, entt);
  543. });
  544. for(auto &&[entt, iv, cv]: registry.view<empty_type, int, char>().each<empty_type>()) {
  545. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  546. static_assert(std::is_same_v<decltype(iv), int &>);
  547. static_assert(std::is_same_v<decltype(cv), char &>);
  548. ASSERT_EQ(entity, entt);
  549. }
  550. registry.view<int, empty_type, char>().each<empty_type>([check = true](int, char) mutable {
  551. ASSERT_TRUE(check);
  552. check = false;
  553. });
  554. for(auto &&[entt, iv, cv]: registry.view<int, empty_type, char>().each<empty_type>()) {
  555. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  556. static_assert(std::is_same_v<decltype(iv), int &>);
  557. static_assert(std::is_same_v<decltype(cv), char &>);
  558. ASSERT_EQ(entity, entt);
  559. }
  560. registry.view<int, char, double>().each([entity](const auto entt, int, char, double) {
  561. ASSERT_EQ(entity, entt);
  562. });
  563. for(auto &&[entt, iv, cv, dv]: registry.view<int, char, double>().each()) {
  564. static_assert(std::is_same_v<decltype(entt), entt::entity>);
  565. static_assert(std::is_same_v<decltype(iv), int &>);
  566. static_assert(std::is_same_v<decltype(cv), char &>);
  567. static_assert(std::is_same_v<decltype(dv), double &>);
  568. ASSERT_EQ(entity, entt);
  569. }
  570. }
  571. TEST(MultiComponentView, FrontBack) {
  572. entt::registry registry;
  573. auto view = registry.view<const int, const char>();
  574. ASSERT_EQ(view.front(), static_cast<entt::entity>(entt::null));
  575. ASSERT_EQ(view.back(), static_cast<entt::entity>(entt::null));
  576. const auto e0 = registry.create();
  577. registry.emplace<int>(e0);
  578. registry.emplace<char>(e0);
  579. const auto e1 = registry.create();
  580. registry.emplace<int>(e1);
  581. registry.emplace<char>(e1);
  582. const auto entity = registry.create();
  583. registry.emplace<char>(entity);
  584. ASSERT_EQ(view.front(), e1);
  585. ASSERT_EQ(view.back(), e0);
  586. }
  587. TEST(MultiComponentView, ChunkedEmpty) {
  588. entt::registry registry;
  589. auto view = registry.view<const entt::id_type, const char>();
  590. view.chunked([](auto...) { FAIL(); });
  591. registry.emplace<entt::id_type>(registry.create());
  592. registry.emplace<char>(registry.create());
  593. view.chunked([](auto...) { FAIL(); });
  594. }
  595. TEST(MultiComponentView, ChunkedContiguous) {
  596. entt::registry registry;
  597. auto view = registry.view<const entt::id_type, const char>();
  598. for(auto i = 0; i < 5; ++i) {
  599. const auto entity = registry.create();
  600. registry.emplace<entt::id_type>(entity, entt::to_integral(entity));
  601. registry.emplace<char>(entity);
  602. }
  603. view.chunked([](auto *entity, auto *id, auto *, auto sz) {
  604. ASSERT_EQ(sz, 5u);
  605. for(decltype(sz) i{}; i < sz; ++i) {
  606. ASSERT_EQ(entt::to_integral(*(entity + i)), *(id + i));
  607. }
  608. });
  609. }
  610. TEST(MultiComponentView, ChunkedSpread) {
  611. entt::registry registry;
  612. auto view = registry.view<const entt::id_type, const char>();
  613. registry.emplace<entt::id_type>(registry.create());
  614. for(auto i = 0; i < 3; ++i) {
  615. const auto entity = registry.create();
  616. registry.emplace<entt::id_type>(entity, entt::to_integral(entity));
  617. registry.emplace<char>(entity);
  618. }
  619. registry.emplace<char>(registry.create());
  620. for(auto i = 0; i < 3; ++i) {
  621. const auto entity = registry.create();
  622. registry.emplace<entt::id_type>(entity, entt::to_integral(entity));
  623. registry.emplace<char>(entity);
  624. }
  625. registry.emplace<entt::id_type>(registry.create());
  626. registry.emplace<entt::id_type>(registry.create());
  627. registry.emplace<char>(registry.create());
  628. view.chunked([](auto *entity, auto *id, auto *, auto sz) {
  629. ASSERT_EQ(sz, 3u);
  630. for(decltype(sz) i{}; i < sz; ++i) {
  631. ASSERT_EQ(entt::to_integral(*(entity + i)), *(id + i));
  632. }
  633. });
  634. }
  635. TEST(MultiComponentView, ChunkedWithExcludedComponents) {
  636. entt::registry registry;
  637. auto view = registry.view<const entt::id_type, const char>(entt::exclude<double>);
  638. registry.emplace<entt::id_type>(registry.create());
  639. for(auto i = 0; i < 3; ++i) {
  640. const auto entity = registry.create();
  641. registry.emplace<entt::id_type>(entity, entt::to_integral(entity));
  642. registry.emplace<char>(entity);
  643. }
  644. registry.emplace<char>(registry.create());
  645. for(auto i = 0; i < 2; ++i) {
  646. const auto entity = registry.create();
  647. registry.emplace<entt::id_type>(entity, entt::to_integral(entity));
  648. registry.emplace<char>(entity);
  649. registry.emplace<double>(entity);
  650. }
  651. for(auto i = 0; i < 3; ++i) {
  652. const auto entity = registry.create();
  653. registry.emplace<entt::id_type>(entity, entt::to_integral(entity));
  654. registry.emplace<char>(entity);
  655. }
  656. for(auto i = 0; i < 2; ++i) {
  657. const auto entity = registry.create();
  658. registry.emplace<entt::id_type>(entity, entt::to_integral(entity));
  659. registry.emplace<char>(entity);
  660. registry.emplace<double>(entity);
  661. }
  662. registry.emplace<entt::id_type>(registry.create());
  663. registry.emplace<entt::id_type>(registry.create());
  664. registry.emplace<char>(registry.create());
  665. view.chunked([](auto *entity, auto *id, auto *, auto sz) {
  666. ASSERT_EQ(sz, 3u);
  667. for(decltype(sz) i{}; i < sz; ++i) {
  668. ASSERT_EQ(entt::to_integral(*(entity + i)), *(id + i));
  669. }
  670. });
  671. }
  672. TEST(MultiComponentView, ExtendedGet) {
  673. using type = decltype(std::declval<entt::registry>().view<int, empty_type, char>().get({}));
  674. static_assert(std::tuple_size_v<type> == 2u);
  675. static_assert(std::is_same_v<std::tuple_element_t<0, type>, int &>);
  676. static_assert(std::is_same_v<std::tuple_element_t<1, type>, char &>);
  677. }