traits.hpp 26 KB

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  1. // sol2
  2. // The MIT License (MIT)
  3. // Copyright (c) 2013-2022 Rapptz, ThePhD and contributors
  4. // Permission is hereby granted, free of charge, to any person obtaining a copy of
  5. // this software and associated documentation files (the "Software"), to deal in
  6. // the Software without restriction, including without limitation the rights to
  7. // use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of
  8. // the Software, and to permit persons to whom the Software is furnished to do so,
  9. // subject to the following conditions:
  10. // The above copyright notice and this permission notice shall be included in all
  11. // copies or substantial portions of the Software.
  12. // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  13. // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS
  14. // FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR
  15. // COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER
  16. // IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
  17. // CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
  18. #ifndef SOL_TRAITS_HPP
  19. #define SOL_TRAITS_HPP
  20. #include <sol/tuple.hpp>
  21. #include <sol/bind_traits.hpp>
  22. #include <sol/pointer_like.hpp>
  23. #include <sol/base_traits.hpp>
  24. #include <sol/string_view.hpp>
  25. #include <type_traits>
  26. #include <cstdint>
  27. #include <memory>
  28. #include <functional>
  29. #include <array>
  30. #include <iterator>
  31. #include <iosfwd>
  32. #if SOL_IS_ON(SOL_STD_VARIANT)
  33. #include <variant>
  34. #endif // variant is weird on XCode, thanks XCode
  35. namespace sol { namespace meta {
  36. template <typename T>
  37. struct unwrapped {
  38. typedef T type;
  39. };
  40. template <typename T>
  41. struct unwrapped<std::reference_wrapper<T>> {
  42. typedef T type;
  43. };
  44. template <typename T>
  45. using unwrapped_t = typename unwrapped<T>::type;
  46. template <typename T>
  47. struct unwrap_unqualified : unwrapped<unqualified_t<T>> { };
  48. template <typename T>
  49. using unwrap_unqualified_t = typename unwrap_unqualified<T>::type;
  50. template <typename T>
  51. struct remove_member_pointer;
  52. template <typename R, typename T>
  53. struct remove_member_pointer<R T::*> {
  54. typedef R type;
  55. };
  56. template <typename R, typename T>
  57. struct remove_member_pointer<R T::*const> {
  58. typedef R type;
  59. };
  60. template <typename T>
  61. using remove_member_pointer_t = remove_member_pointer<T>;
  62. template <typename T, typename...>
  63. struct all_same : std::true_type { };
  64. template <typename T, typename U, typename... Args>
  65. struct all_same<T, U, Args...> : std::integral_constant<bool, std::is_same<T, U>::value && all_same<T, Args...>::value> { };
  66. template <typename T, typename...>
  67. struct any_same : std::false_type { };
  68. template <typename T, typename U, typename... Args>
  69. struct any_same<T, U, Args...> : std::integral_constant<bool, std::is_same<T, U>::value || any_same<T, Args...>::value> { };
  70. template <typename T, typename... Args>
  71. constexpr inline bool any_same_v = any_same<T, Args...>::value;
  72. template <bool B>
  73. using boolean = std::integral_constant<bool, B>;
  74. template <bool B>
  75. constexpr inline bool boolean_v = boolean<B>::value;
  76. template <typename T>
  77. using neg = boolean<!T::value>;
  78. template <typename T>
  79. constexpr inline bool neg_v = neg<T>::value;
  80. template <typename... Args>
  81. struct all : boolean<true> { };
  82. template <typename T, typename... Args>
  83. struct all<T, Args...> : std::conditional_t<T::value, all<Args...>, boolean<false>> { };
  84. template <typename... Args>
  85. struct any : boolean<false> { };
  86. template <typename T, typename... Args>
  87. struct any<T, Args...> : std::conditional_t<T::value, boolean<true>, any<Args...>> { };
  88. template <typename... Args>
  89. constexpr inline bool all_v = all<Args...>::value;
  90. template <typename... Args>
  91. constexpr inline bool any_v = any<Args...>::value;
  92. enum class enable_t { _ };
  93. constexpr const auto enabler = enable_t::_;
  94. template <bool value, typename T = void>
  95. using disable_if_t = std::enable_if_t<!value, T>;
  96. template <typename... Args>
  97. using enable = std::enable_if_t<all<Args...>::value, enable_t>;
  98. template <typename... Args>
  99. using disable = std::enable_if_t<neg<all<Args...>>::value, enable_t>;
  100. template <typename... Args>
  101. using enable_any = std::enable_if_t<any<Args...>::value, enable_t>;
  102. template <typename... Args>
  103. using disable_any = std::enable_if_t<neg<any<Args...>>::value, enable_t>;
  104. template <typename V, typename... Vs>
  105. struct find_in_pack_v : boolean<false> { };
  106. template <typename V, typename Vs1, typename... Vs>
  107. struct find_in_pack_v<V, Vs1, Vs...> : any<boolean<(V::value == Vs1::value)>, find_in_pack_v<V, Vs...>> { };
  108. namespace meta_detail {
  109. template <std::size_t I, typename T, typename... Args>
  110. struct index_in_pack : std::integral_constant<std::size_t, SIZE_MAX> { };
  111. template <std::size_t I, typename T, typename T1, typename... Args>
  112. struct index_in_pack<I, T, T1, Args...>
  113. : conditional_t<std::is_same<T, T1>::value, std::integral_constant<std::ptrdiff_t, I>, index_in_pack<I + 1, T, Args...>> { };
  114. } // namespace meta_detail
  115. template <typename T, typename... Args>
  116. struct index_in_pack : meta_detail::index_in_pack<0, T, Args...> { };
  117. template <typename T, typename List>
  118. struct index_in : meta_detail::index_in_pack<0, T, List> { };
  119. template <typename T, typename... Args>
  120. struct index_in<T, types<Args...>> : meta_detail::index_in_pack<0, T, Args...> { };
  121. template <std::size_t I, typename... Args>
  122. struct at_in_pack { };
  123. template <std::size_t I, typename... Args>
  124. using at_in_pack_t = typename at_in_pack<I, Args...>::type;
  125. template <std::size_t I, typename Arg, typename... Args>
  126. struct at_in_pack<I, Arg, Args...> : std::conditional<I == 0, Arg, at_in_pack_t<I - 1, Args...>> { };
  127. template <typename Arg, typename... Args>
  128. struct at_in_pack<0, Arg, Args...> {
  129. typedef Arg type;
  130. };
  131. namespace meta_detail {
  132. template <typename, typename TI>
  133. using on_even = meta::boolean<(TI::value % 2) == 0>;
  134. template <typename, typename TI>
  135. using on_odd = meta::boolean<(TI::value % 2) == 1>;
  136. template <typename, typename>
  137. using on_always = std::true_type;
  138. template <template <typename...> class When, std::size_t Limit, std::size_t I, template <typename...> class Pred, typename... Ts>
  139. struct count_when_for_pack : std::integral_constant<std::size_t, 0> { };
  140. template <template <typename...> class When, std::size_t Limit, std::size_t I, template <typename...> class Pred, typename T, typename... Ts>
  141. struct count_when_for_pack<When, Limit, I, Pred, T, Ts...> : conditional_t < sizeof...(Ts)
  142. == 0
  143. || Limit<2, std::integral_constant<std::size_t, I + static_cast<std::size_t>(Limit != 0 && Pred<T>::value)>,
  144. count_when_for_pack<When, Limit - static_cast<std::size_t>(When<T, std::integral_constant<std::size_t, I>>::value),
  145. I + static_cast<std::size_t>(When<T, std::integral_constant<std::size_t, I>>::value&& Pred<T>::value), Pred, Ts...>> { };
  146. } // namespace meta_detail
  147. template <template <typename...> class Pred, typename... Ts>
  148. struct count_for_pack : meta_detail::count_when_for_pack<meta_detail::on_always, sizeof...(Ts), 0, Pred, Ts...> { };
  149. template <template <typename...> class Pred, typename... Ts>
  150. inline constexpr std::size_t count_for_pack_v = count_for_pack<Pred, Ts...>::value;
  151. template <template <typename...> class Pred, typename List>
  152. struct count_for;
  153. template <template <typename...> class Pred, typename... Args>
  154. struct count_for<Pred, types<Args...>> : count_for_pack<Pred, Args...> { };
  155. template <std::size_t Limit, template <typename...> class Pred, typename... Ts>
  156. struct count_for_to_pack : meta_detail::count_when_for_pack<meta_detail::on_always, Limit, 0, Pred, Ts...> { };
  157. template <std::size_t Limit, template <typename...> class Pred, typename... Ts>
  158. inline constexpr std::size_t count_for_to_pack_v = count_for_to_pack<Limit, Pred, Ts...>::value;
  159. template <template <typename...> class When, std::size_t Limit, template <typename...> class Pred, typename... Ts>
  160. struct count_when_for_to_pack : meta_detail::count_when_for_pack<When, Limit, 0, Pred, Ts...> { };
  161. template <template <typename...> class When, std::size_t Limit, template <typename...> class Pred, typename... Ts>
  162. inline constexpr std::size_t count_when_for_to_pack_v = count_when_for_to_pack<When, Limit, Pred, Ts...>::value;
  163. template <template <typename...> class Pred, typename... Ts>
  164. using count_even_for_pack = count_when_for_to_pack<meta_detail::on_even, sizeof...(Ts), Pred, Ts...>;
  165. template <template <typename...> class Pred, typename... Ts>
  166. inline constexpr std::size_t count_even_for_pack_v = count_even_for_pack<Pred, Ts...>::value;
  167. template <template <typename...> class Pred, typename... Ts>
  168. using count_odd_for_pack = count_when_for_to_pack<meta_detail::on_odd, sizeof...(Ts), Pred, Ts...>;
  169. template <template <typename...> class Pred, typename... Ts>
  170. inline constexpr std::size_t count_odd_for_pack_v = count_odd_for_pack<Pred, Ts...>::value;
  171. template <typename... Args>
  172. struct return_type {
  173. typedef std::tuple<Args...> type;
  174. };
  175. template <typename T>
  176. struct return_type<T> {
  177. typedef T type;
  178. };
  179. template <>
  180. struct return_type<> {
  181. typedef void type;
  182. };
  183. template <typename... Args>
  184. using return_type_t = typename return_type<Args...>::type;
  185. namespace meta_detail {
  186. template <typename>
  187. struct always_true : std::true_type { };
  188. struct is_invokable_tester {
  189. template <typename Fun, typename... Args>
  190. static always_true<decltype(std::declval<Fun>()(std::declval<Args>()...))> test(int);
  191. template <typename...>
  192. static std::false_type test(...);
  193. };
  194. } // namespace meta_detail
  195. template <typename T>
  196. struct is_invokable;
  197. template <typename Fun, typename... Args>
  198. struct is_invokable<Fun(Args...)> : decltype(meta_detail::is_invokable_tester::test<Fun, Args...>(0)) { };
  199. namespace meta_detail {
  200. template <typename T, typename = void>
  201. struct is_invocable : std::is_function<std::remove_pointer_t<T>> { };
  202. template <typename T>
  203. struct is_invocable<T,
  204. std::enable_if_t<std::is_final<unqualified_t<T>>::value && std::is_class<unqualified_t<T>>::value
  205. && std::is_same<decltype(void(&T::operator())), void>::value>> { };
  206. template <typename T>
  207. struct is_invocable<T,
  208. std::enable_if_t<!std::is_final<unqualified_t<T>>::value && std::is_class<unqualified_t<T>>::value
  209. && std::is_destructible<unqualified_t<T>>::value>> {
  210. struct F {
  211. void operator()() {};
  212. };
  213. struct Derived : T, F { };
  214. template <typename U, U>
  215. struct Check;
  216. template <typename V>
  217. static sfinae_no_t test(Check<void (F::*)(), &V::operator()>*);
  218. template <typename>
  219. static sfinae_yes_t test(...);
  220. static constexpr bool value = std::is_same_v<decltype(test<Derived>(0)), sfinae_yes_t>;
  221. };
  222. template <typename T>
  223. struct is_invocable<T,
  224. std::enable_if_t<!std::is_final<unqualified_t<T>>::value && std::is_class<unqualified_t<T>>::value
  225. && !std::is_destructible<unqualified_t<T>>::value>> {
  226. struct F {
  227. void operator()() {};
  228. };
  229. struct Derived : T, F {
  230. ~Derived() = delete;
  231. };
  232. template <typename U, U>
  233. struct Check;
  234. template <typename V>
  235. static sfinae_no_t test(Check<void (F::*)(), &V::operator()>*);
  236. template <typename>
  237. static sfinae_yes_t test(...);
  238. static constexpr bool value = std::is_same_v<decltype(test<Derived>(0)), sfinae_yes_t>;
  239. };
  240. struct has_begin_end_impl {
  241. template <typename T, typename U = unqualified_t<T>, typename B = decltype(std::declval<U&>().begin()),
  242. typename E = decltype(std::declval<U&>().end())>
  243. static std::true_type test(int);
  244. template <typename...>
  245. static std::false_type test(...);
  246. };
  247. struct has_key_type_impl {
  248. template <typename T, typename U = unqualified_t<T>, typename V = typename U::key_type>
  249. static std::true_type test(int);
  250. template <typename...>
  251. static std::false_type test(...);
  252. };
  253. struct has_key_comp_impl {
  254. template <typename T, typename V = decltype(std::declval<unqualified_t<T>>().key_comp())>
  255. static std::true_type test(int);
  256. template <typename...>
  257. static std::false_type test(...);
  258. };
  259. struct has_load_factor_impl {
  260. template <typename T, typename V = decltype(std::declval<unqualified_t<T>>().load_factor())>
  261. static std::true_type test(int);
  262. template <typename...>
  263. static std::false_type test(...);
  264. };
  265. struct has_mapped_type_impl {
  266. template <typename T, typename V = typename unqualified_t<T>::mapped_type>
  267. static std::true_type test(int);
  268. template <typename...>
  269. static std::false_type test(...);
  270. };
  271. struct has_value_type_impl {
  272. template <typename T, typename V = typename unqualified_t<T>::value_type>
  273. static std::true_type test(int);
  274. template <typename...>
  275. static std::false_type test(...);
  276. };
  277. struct has_iterator_impl {
  278. template <typename T, typename V = typename unqualified_t<T>::iterator>
  279. static std::true_type test(int);
  280. template <typename...>
  281. static std::false_type test(...);
  282. };
  283. struct has_key_value_pair_impl {
  284. template <typename T, typename U = unqualified_t<T>, typename V = typename U::value_type, typename F = decltype(std::declval<V&>().first),
  285. typename S = decltype(std::declval<V&>().second)>
  286. static std::true_type test(int);
  287. template <typename...>
  288. static std::false_type test(...);
  289. };
  290. template <typename T>
  291. struct has_push_back_test {
  292. private:
  293. template <typename C>
  294. static sfinae_yes_t test(decltype(std::declval<C>().push_back(std::declval<std::add_rvalue_reference_t<typename C::value_type>>()))*);
  295. template <typename C>
  296. static sfinae_no_t test(...);
  297. public:
  298. static constexpr bool value = std::is_same_v<decltype(test<T>(0)), sfinae_yes_t>;
  299. };
  300. template <typename T>
  301. struct has_insert_with_iterator_test {
  302. private:
  303. template <typename C>
  304. static sfinae_yes_t test(decltype(std::declval<C>().insert(
  305. std::declval<std::add_rvalue_reference_t<typename C::iterator>>(), std::declval<std::add_rvalue_reference_t<typename C::value_type>>()))*);
  306. template <typename C>
  307. static sfinae_no_t test(...);
  308. public:
  309. static constexpr bool value = !std::is_same_v<decltype(test<T>(0)), sfinae_no_t>;
  310. };
  311. template <typename T>
  312. struct has_insert_test {
  313. private:
  314. template <typename C>
  315. static sfinae_yes_t test(decltype(std::declval<C>().insert(std::declval<std::add_rvalue_reference_t<typename C::value_type>>()))*);
  316. template <typename C>
  317. static sfinae_no_t test(...);
  318. public:
  319. static constexpr bool value = !std::is_same_v<decltype(test<T>(0)), sfinae_no_t>;
  320. };
  321. template <typename T>
  322. struct has_insert_after_test {
  323. private:
  324. template <typename C>
  325. static sfinae_yes_t test(decltype(std::declval<C>().insert_after(std::declval<std::add_rvalue_reference_t<typename C::const_iterator>>(),
  326. std::declval<std::add_rvalue_reference_t<typename C::value_type>>()))*);
  327. template <typename C>
  328. static sfinae_no_t test(...);
  329. public:
  330. static constexpr bool value = std::is_same_v<decltype(test<T>(0)), sfinae_yes_t>;
  331. };
  332. template <typename T>
  333. struct has_size_test {
  334. private:
  335. template <typename C>
  336. static sfinae_yes_t test(decltype(std::declval<C>().size())*);
  337. template <typename C>
  338. static sfinae_no_t test(...);
  339. public:
  340. static constexpr bool value = std::is_same_v<decltype(test<T>(0)), sfinae_yes_t>;
  341. };
  342. template <typename T>
  343. struct has_max_size_test {
  344. private:
  345. template <typename C>
  346. static sfinae_yes_t test(decltype(std::declval<C>().max_size())*);
  347. template <typename C>
  348. static sfinae_no_t test(...);
  349. public:
  350. static constexpr bool value = std::is_same_v<decltype(test<T>(0)), sfinae_yes_t>;
  351. };
  352. template <typename T>
  353. struct has_to_string_test {
  354. private:
  355. template <typename C>
  356. static sfinae_yes_t test(decltype(std::declval<C>().to_string())*);
  357. template <typename C>
  358. static sfinae_no_t test(...);
  359. public:
  360. static constexpr bool value = std::is_same_v<decltype(test<T>(0)), sfinae_yes_t>;
  361. };
  362. template <typename T, typename U, typename = void>
  363. class supports_op_less_test : public std::false_type { };
  364. template <typename T, typename U>
  365. class supports_op_less_test<T, U, void_t<decltype(std::declval<T&>() < std::declval<U&>())>>
  366. : public std::integral_constant<bool,
  367. #if SOL_IS_ON(SOL_STD_VARIANT)
  368. !is_specialization_of_v<unqualified_t<T>, std::variant> && !is_specialization_of_v<unqualified_t<U>, std::variant>
  369. #else
  370. true
  371. #endif
  372. > {
  373. };
  374. template <typename T, typename U, typename = void>
  375. class supports_op_equal_test : public std::false_type { };
  376. template <typename T, typename U>
  377. class supports_op_equal_test<T, U, void_t<decltype(std::declval<T&>() == std::declval<U&>())>>
  378. : public std::integral_constant<bool,
  379. #if SOL_IS_ON(SOL_STD_VARIANT)
  380. !is_specialization_of_v<unqualified_t<T>, std::variant> && !is_specialization_of_v<unqualified_t<U>, std::variant>
  381. #else
  382. true
  383. #endif
  384. > {
  385. };
  386. template <typename T, typename U, typename = void>
  387. class supports_op_less_equal_test : public std::false_type { };
  388. template <typename T, typename U>
  389. class supports_op_less_equal_test<T, U, void_t<decltype(std::declval<T&>() <= std::declval<U&>())>>
  390. : public std::integral_constant<bool,
  391. #if SOL_IS_ON(SOL_STD_VARIANT)
  392. !is_specialization_of_v<unqualified_t<T>, std::variant> && !is_specialization_of_v<unqualified_t<U>, std::variant>
  393. #else
  394. true
  395. #endif
  396. > {
  397. };
  398. template <typename T, typename U, typename = void>
  399. class supports_op_left_shift_test : public std::false_type { };
  400. template <typename T, typename U>
  401. class supports_op_left_shift_test<T, U, void_t<decltype(std::declval<T&>() << std::declval<U&>())>> : public std::true_type { };
  402. template <typename T, typename = void>
  403. class supports_adl_to_string_test : public std::false_type { };
  404. template <typename T>
  405. class supports_adl_to_string_test<T, void_t<decltype(to_string(std::declval<const T&>()))>> : public std::true_type { };
  406. template <typename T, bool b>
  407. struct is_matched_lookup_impl : std::false_type { };
  408. template <typename T>
  409. struct is_matched_lookup_impl<T, true> : std::is_same<typename T::key_type, typename T::value_type> { };
  410. template <typename T>
  411. using non_void_t = meta::conditional_t<std::is_void_v<T>, ::sol::detail::unchecked_t, T>;
  412. template <typename T>
  413. using detect_sentinel = typename T::sentinel;
  414. } // namespace meta_detail
  415. template <typename T, typename Fallback>
  416. class sentinel_or {
  417. public:
  418. using type = detected_or_t<Fallback, meta_detail::detect_sentinel, T>;
  419. };
  420. template <typename T, typename Fallback>
  421. using sentinel_or_t = typename sentinel_or<T, Fallback>::type;
  422. template <typename T, typename U = T>
  423. class supports_op_less : public meta_detail::supports_op_less_test<T, U> { };
  424. template <typename T, typename U = T>
  425. class supports_op_equal : public meta_detail::supports_op_equal_test<T, U> { };
  426. template <typename T, typename U = T>
  427. class supports_op_less_equal : public meta_detail::supports_op_less_equal_test<T, U> { };
  428. template <typename T, typename U = T>
  429. class supports_op_left_shift : public meta_detail::supports_op_left_shift_test<T, U> { };
  430. template <typename T>
  431. class supports_adl_to_string : public meta_detail::supports_adl_to_string_test<T> { };
  432. template <typename T>
  433. class supports_to_string_member : public meta::boolean<meta_detail::has_to_string_test<meta_detail::non_void_t<T>>::value> { };
  434. template <typename T>
  435. using is_invocable = boolean<meta_detail::is_invocable<T>::value>;
  436. template <typename T>
  437. constexpr inline bool is_invocable_v = is_invocable<T>::value;
  438. template <typename T>
  439. struct has_begin_end : decltype(meta_detail::has_begin_end_impl::test<T>(0)) { };
  440. template <typename T>
  441. constexpr inline bool has_begin_end_v = has_begin_end<T>::value;
  442. template <typename T>
  443. struct has_key_value_pair : decltype(meta_detail::has_key_value_pair_impl::test<T>(0)) { };
  444. template <typename T>
  445. struct has_key_type : decltype(meta_detail::has_key_type_impl::test<T>(0)) { };
  446. template <typename T>
  447. struct has_key_comp : decltype(meta_detail::has_key_comp_impl::test<T>(0)) { };
  448. template <typename T>
  449. struct has_load_factor : decltype(meta_detail::has_load_factor_impl::test<T>(0)) { };
  450. template <typename T>
  451. struct has_mapped_type : decltype(meta_detail::has_mapped_type_impl::test<T>(0)) { };
  452. template <typename T>
  453. struct has_iterator : decltype(meta_detail::has_iterator_impl::test<T>(0)) { };
  454. template <typename T>
  455. struct has_value_type : decltype(meta_detail::has_value_type_impl::test<T>(0)) { };
  456. template <typename T>
  457. using has_push_back = meta::boolean<meta_detail::has_push_back_test<T>::value>;
  458. template <typename T>
  459. using has_max_size = meta::boolean<meta_detail::has_max_size_test<T>::value>;
  460. template <typename T>
  461. using has_insert = meta::boolean<meta_detail::has_insert_test<T>::value>;
  462. template <typename T>
  463. using has_insert_with_iterator = meta::boolean<meta_detail::has_insert_with_iterator_test<T>::value>;
  464. template <typename T>
  465. using has_insert_after = meta::boolean<meta_detail::has_insert_after_test<T>::value>;
  466. template <typename T>
  467. using has_size = meta::boolean<meta_detail::has_size_test<T>::value>;
  468. template <typename T>
  469. using is_associative = meta::all<has_key_type<T>, has_key_value_pair<T>, has_mapped_type<T>>;
  470. template <typename T>
  471. using is_lookup = meta::all<has_key_type<T>, has_value_type<T>>;
  472. template <typename T>
  473. using is_ordered = meta::all<has_key_comp<T>, meta::neg<has_load_factor<T>>>;
  474. template <typename T>
  475. using is_matched_lookup = meta_detail::is_matched_lookup_impl<T, is_lookup<T>::value>;
  476. template <typename T>
  477. using is_initializer_list = meta::is_specialization_of<T, std::initializer_list>;
  478. template <typename T>
  479. constexpr inline bool is_initializer_list_v = is_initializer_list<T>::value;
  480. template <typename T, typename CharT = char>
  481. using is_string_literal_array_of = boolean<std::is_array_v<T> && std::is_same_v<std::remove_all_extents_t<T>, CharT>>;
  482. template <typename T, typename CharT = char>
  483. constexpr inline bool is_string_literal_array_of_v = is_string_literal_array_of<T, CharT>::value;
  484. template <typename T>
  485. using is_string_literal_array = boolean<std::is_array_v<T>
  486. && any_same_v<std::remove_all_extents_t<T>, char,
  487. #if SOL_IS_ON(SOL_CHAR8_T)
  488. char8_t,
  489. #endif
  490. char16_t, char32_t, wchar_t>>;
  491. template <typename T>
  492. constexpr inline bool is_string_literal_array_v = is_string_literal_array<T>::value;
  493. template <typename T, typename CharT>
  494. struct is_string_of : std::false_type { };
  495. template <typename CharT, typename CharTargetT, typename TraitsT, typename AllocT>
  496. struct is_string_of<std::basic_string<CharT, TraitsT, AllocT>, CharTargetT> : std::is_same<CharT, CharTargetT> { };
  497. template <typename T, typename CharT>
  498. constexpr inline bool is_string_of_v = is_string_of<T, CharT>::value;
  499. template <typename T, typename CharT>
  500. struct is_string_view_of : std::false_type { };
  501. template <typename CharT, typename CharTargetT, typename TraitsT>
  502. struct is_string_view_of<std::basic_string_view<CharT, TraitsT>, CharTargetT> : std::is_same<CharT, CharTargetT> { };
  503. template <typename T, typename CharT>
  504. constexpr inline bool is_string_view_of_v = is_string_view_of<T, CharT>::value;
  505. template <typename T>
  506. using is_string_like
  507. = meta::boolean<is_specialization_of_v<T, std::basic_string> || is_specialization_of_v<T, std::basic_string_view> || is_string_literal_array_v<T>>;
  508. template <typename T>
  509. constexpr inline bool is_string_like_v = is_string_like<T>::value;
  510. template <typename T, typename CharT = char>
  511. using is_string_constructible = meta::boolean<is_string_literal_array_of_v<T, CharT> || std::is_same_v<T, const CharT*> || std::is_same_v<T, CharT>
  512. || is_string_of_v<T, CharT> || std::is_same_v<T, std::initializer_list<CharT>> || is_string_view_of_v<T, CharT> || std::is_null_pointer_v<T>>;
  513. template <typename T, typename CharT = char>
  514. constexpr inline bool is_string_constructible_v = is_string_constructible<T, CharT>::value;
  515. template <typename T>
  516. using is_string_like_or_constructible = meta::boolean<is_string_like_v<T> || is_string_constructible_v<T>>;
  517. template <typename T>
  518. struct is_pair : std::false_type { };
  519. template <typename T1, typename T2>
  520. struct is_pair<std::pair<T1, T2>> : std::true_type { };
  521. template <typename T, typename Char>
  522. using is_c_str_of = any<std::is_same<T, const Char*>, std::is_same<T, Char const* const>, std::is_same<T, Char*>, is_string_literal_array_of<T, Char>>;
  523. template <typename T, typename Char>
  524. constexpr inline bool is_c_str_of_v = is_c_str_of<T, Char>::value;
  525. template <typename T>
  526. using is_c_str = is_c_str_of<T, char>;
  527. template <typename T>
  528. constexpr inline bool is_c_str_v = is_c_str<T>::value;
  529. template <typename T, typename Char>
  530. using is_c_str_or_string_of = any<is_c_str_of<T, Char>, is_string_of<T, Char>>;
  531. template <typename T, typename Char>
  532. constexpr inline bool is_c_str_or_string_of_v = is_c_str_or_string_of<T, Char>::value;
  533. template <typename T>
  534. using is_c_str_or_string = is_c_str_or_string_of<T, char>;
  535. template <typename T>
  536. constexpr inline bool is_c_str_or_string_v = is_c_str_or_string<T>::value;
  537. template <typename T>
  538. struct is_move_only : all<neg<std::is_reference<T>>, neg<std::is_copy_constructible<unqualified_t<T>>>, std::is_move_constructible<unqualified_t<T>>> { };
  539. template <typename T>
  540. using is_not_move_only = neg<is_move_only<T>>;
  541. namespace meta_detail {
  542. template <typename T>
  543. decltype(auto) force_tuple(T&& x) {
  544. if constexpr (meta::is_specialization_of_v<meta::unqualified_t<T>, std::tuple>) {
  545. return std::forward<T>(x);
  546. }
  547. else {
  548. return std::tuple<T>(std::forward<T>(x));
  549. }
  550. }
  551. } // namespace meta_detail
  552. template <typename... X>
  553. decltype(auto) tuplefy(X&&... x) {
  554. return std::tuple_cat(meta_detail::force_tuple(std::forward<X>(x))...);
  555. }
  556. template <typename T, typename = void>
  557. struct iterator_tag {
  558. using type = std::input_iterator_tag;
  559. };
  560. template <typename T>
  561. struct iterator_tag<T, conditional_t<false, typename std::iterator_traits<T>::iterator_category, void>> {
  562. using type = typename std::iterator_traits<T>::iterator_category;
  563. };
  564. }} // namespace sol::meta
  565. #endif // SOL_TRAITS_HPP