swap.pass.cpp 8.9 KB

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  1. //===----------------------------------------------------------------------===//
  2. //
  3. // The LLVM Compiler Infrastructure
  4. //
  5. // This file is dual licensed under the MIT and the University of Illinois Open
  6. // Source Licenses. See LICENSE.TXT for details.
  7. //
  8. //===----------------------------------------------------------------------===//
  9. // UNSUPPORTED: c++98, c++03, c++11, c++14
  10. // <optional>
  11. // void swap(optional&)
  12. // noexcept(is_nothrow_move_constructible<T>::value &&
  13. // is_nothrow_swappable<T>::value)
  14. #include <optional>
  15. #include <type_traits>
  16. #include <cassert>
  17. #include "test_macros.h"
  18. #include "archetypes.hpp"
  19. using std::optional;
  20. class X
  21. {
  22. int i_;
  23. public:
  24. static unsigned dtor_called;
  25. X(int i) : i_(i) {}
  26. X(X&& x) = default;
  27. X& operator=(X&&) = default;
  28. ~X() {++dtor_called;}
  29. friend bool operator==(const X& x, const X& y) {return x.i_ == y.i_;}
  30. };
  31. unsigned X::dtor_called = 0;
  32. class Y
  33. {
  34. int i_;
  35. public:
  36. static unsigned dtor_called;
  37. Y(int i) : i_(i) {}
  38. Y(Y&&) = default;
  39. ~Y() {++dtor_called;}
  40. friend constexpr bool operator==(const Y& x, const Y& y) {return x.i_ == y.i_;}
  41. friend void swap(Y& x, Y& y) {std::swap(x.i_, y.i_);}
  42. };
  43. unsigned Y::dtor_called = 0;
  44. class Z
  45. {
  46. int i_;
  47. public:
  48. Z(int i) : i_(i) {}
  49. Z(Z&&) {TEST_THROW(7);}
  50. friend constexpr bool operator==(const Z& x, const Z& y) {return x.i_ == y.i_;}
  51. friend void swap(Z& x, Z& y) {TEST_THROW(6);}
  52. };
  53. int main()
  54. {
  55. {
  56. optional<int> opt1;
  57. optional<int> opt2;
  58. static_assert(noexcept(opt1.swap(opt2)) == true, "");
  59. assert(static_cast<bool>(opt1) == false);
  60. assert(static_cast<bool>(opt2) == false);
  61. opt1.swap(opt2);
  62. assert(static_cast<bool>(opt1) == false);
  63. assert(static_cast<bool>(opt2) == false);
  64. }
  65. {
  66. optional<int> opt1(1);
  67. optional<int> opt2;
  68. static_assert(noexcept(opt1.swap(opt2)) == true, "");
  69. assert(static_cast<bool>(opt1) == true);
  70. assert(*opt1 == 1);
  71. assert(static_cast<bool>(opt2) == false);
  72. opt1.swap(opt2);
  73. assert(static_cast<bool>(opt1) == false);
  74. assert(static_cast<bool>(opt2) == true);
  75. assert(*opt2 == 1);
  76. }
  77. {
  78. optional<int> opt1;
  79. optional<int> opt2(2);
  80. static_assert(noexcept(opt1.swap(opt2)) == true, "");
  81. assert(static_cast<bool>(opt1) == false);
  82. assert(static_cast<bool>(opt2) == true);
  83. assert(*opt2 == 2);
  84. opt1.swap(opt2);
  85. assert(static_cast<bool>(opt1) == true);
  86. assert(*opt1 == 2);
  87. assert(static_cast<bool>(opt2) == false);
  88. }
  89. {
  90. optional<int> opt1(1);
  91. optional<int> opt2(2);
  92. static_assert(noexcept(opt1.swap(opt2)) == true, "");
  93. assert(static_cast<bool>(opt1) == true);
  94. assert(*opt1 == 1);
  95. assert(static_cast<bool>(opt2) == true);
  96. assert(*opt2 == 2);
  97. opt1.swap(opt2);
  98. assert(static_cast<bool>(opt1) == true);
  99. assert(*opt1 == 2);
  100. assert(static_cast<bool>(opt2) == true);
  101. assert(*opt2 == 1);
  102. }
  103. {
  104. optional<X> opt1;
  105. optional<X> opt2;
  106. static_assert(noexcept(opt1.swap(opt2)) == true, "");
  107. assert(static_cast<bool>(opt1) == false);
  108. assert(static_cast<bool>(opt2) == false);
  109. opt1.swap(opt2);
  110. assert(static_cast<bool>(opt1) == false);
  111. assert(static_cast<bool>(opt2) == false);
  112. assert(X::dtor_called == 0);
  113. }
  114. {
  115. optional<X> opt1(1);
  116. optional<X> opt2;
  117. static_assert(noexcept(opt1.swap(opt2)) == true, "");
  118. assert(static_cast<bool>(opt1) == true);
  119. assert(*opt1 == 1);
  120. assert(static_cast<bool>(opt2) == false);
  121. X::dtor_called = 0;
  122. opt1.swap(opt2);
  123. assert(X::dtor_called == 1);
  124. assert(static_cast<bool>(opt1) == false);
  125. assert(static_cast<bool>(opt2) == true);
  126. assert(*opt2 == 1);
  127. }
  128. {
  129. optional<X> opt1;
  130. optional<X> opt2(2);
  131. static_assert(noexcept(opt1.swap(opt2)) == true, "");
  132. assert(static_cast<bool>(opt1) == false);
  133. assert(static_cast<bool>(opt2) == true);
  134. assert(*opt2 == 2);
  135. X::dtor_called = 0;
  136. opt1.swap(opt2);
  137. assert(X::dtor_called == 1);
  138. assert(static_cast<bool>(opt1) == true);
  139. assert(*opt1 == 2);
  140. assert(static_cast<bool>(opt2) == false);
  141. }
  142. {
  143. optional<X> opt1(1);
  144. optional<X> opt2(2);
  145. static_assert(noexcept(opt1.swap(opt2)) == true, "");
  146. assert(static_cast<bool>(opt1) == true);
  147. assert(*opt1 == 1);
  148. assert(static_cast<bool>(opt2) == true);
  149. assert(*opt2 == 2);
  150. X::dtor_called = 0;
  151. opt1.swap(opt2);
  152. assert(X::dtor_called == 1); // from inside std::swap
  153. assert(static_cast<bool>(opt1) == true);
  154. assert(*opt1 == 2);
  155. assert(static_cast<bool>(opt2) == true);
  156. assert(*opt2 == 1);
  157. }
  158. {
  159. optional<Y> opt1;
  160. optional<Y> opt2;
  161. static_assert(noexcept(opt1.swap(opt2)) == false, "");
  162. assert(static_cast<bool>(opt1) == false);
  163. assert(static_cast<bool>(opt2) == false);
  164. opt1.swap(opt2);
  165. assert(static_cast<bool>(opt1) == false);
  166. assert(static_cast<bool>(opt2) == false);
  167. assert(Y::dtor_called == 0);
  168. }
  169. {
  170. optional<Y> opt1(1);
  171. optional<Y> opt2;
  172. static_assert(noexcept(opt1.swap(opt2)) == false, "");
  173. assert(static_cast<bool>(opt1) == true);
  174. assert(*opt1 == 1);
  175. assert(static_cast<bool>(opt2) == false);
  176. Y::dtor_called = 0;
  177. opt1.swap(opt2);
  178. assert(Y::dtor_called == 1);
  179. assert(static_cast<bool>(opt1) == false);
  180. assert(static_cast<bool>(opt2) == true);
  181. assert(*opt2 == 1);
  182. }
  183. {
  184. optional<Y> opt1;
  185. optional<Y> opt2(2);
  186. static_assert(noexcept(opt1.swap(opt2)) == false, "");
  187. assert(static_cast<bool>(opt1) == false);
  188. assert(static_cast<bool>(opt2) == true);
  189. assert(*opt2 == 2);
  190. Y::dtor_called = 0;
  191. opt1.swap(opt2);
  192. assert(Y::dtor_called == 1);
  193. assert(static_cast<bool>(opt1) == true);
  194. assert(*opt1 == 2);
  195. assert(static_cast<bool>(opt2) == false);
  196. }
  197. {
  198. optional<Y> opt1(1);
  199. optional<Y> opt2(2);
  200. static_assert(noexcept(opt1.swap(opt2)) == false, "");
  201. assert(static_cast<bool>(opt1) == true);
  202. assert(*opt1 == 1);
  203. assert(static_cast<bool>(opt2) == true);
  204. assert(*opt2 == 2);
  205. Y::dtor_called = 0;
  206. opt1.swap(opt2);
  207. assert(Y::dtor_called == 0);
  208. assert(static_cast<bool>(opt1) == true);
  209. assert(*opt1 == 2);
  210. assert(static_cast<bool>(opt2) == true);
  211. assert(*opt2 == 1);
  212. }
  213. {
  214. optional<Z> opt1;
  215. optional<Z> opt2;
  216. static_assert(noexcept(opt1.swap(opt2)) == false, "");
  217. assert(static_cast<bool>(opt1) == false);
  218. assert(static_cast<bool>(opt2) == false);
  219. opt1.swap(opt2);
  220. assert(static_cast<bool>(opt1) == false);
  221. assert(static_cast<bool>(opt2) == false);
  222. }
  223. #ifndef TEST_HAS_NO_EXCEPTIONS
  224. {
  225. optional<Z> opt1;
  226. opt1.emplace(1);
  227. optional<Z> opt2;
  228. static_assert(noexcept(opt1.swap(opt2)) == false, "");
  229. assert(static_cast<bool>(opt1) == true);
  230. assert(*opt1 == 1);
  231. assert(static_cast<bool>(opt2) == false);
  232. try
  233. {
  234. opt1.swap(opt2);
  235. assert(false);
  236. }
  237. catch (int i)
  238. {
  239. assert(i == 7);
  240. }
  241. assert(static_cast<bool>(opt1) == true);
  242. assert(*opt1 == 1);
  243. assert(static_cast<bool>(opt2) == false);
  244. }
  245. {
  246. optional<Z> opt1;
  247. optional<Z> opt2;
  248. opt2.emplace(2);
  249. static_assert(noexcept(opt1.swap(opt2)) == false, "");
  250. assert(static_cast<bool>(opt1) == false);
  251. assert(static_cast<bool>(opt2) == true);
  252. assert(*opt2 == 2);
  253. try
  254. {
  255. opt1.swap(opt2);
  256. assert(false);
  257. }
  258. catch (int i)
  259. {
  260. assert(i == 7);
  261. }
  262. assert(static_cast<bool>(opt1) == false);
  263. assert(static_cast<bool>(opt2) == true);
  264. assert(*opt2 == 2);
  265. }
  266. {
  267. optional<Z> opt1;
  268. opt1.emplace(1);
  269. optional<Z> opt2;
  270. opt2.emplace(2);
  271. static_assert(noexcept(opt1.swap(opt2)) == false, "");
  272. assert(static_cast<bool>(opt1) == true);
  273. assert(*opt1 == 1);
  274. assert(static_cast<bool>(opt2) == true);
  275. assert(*opt2 == 2);
  276. try
  277. {
  278. opt1.swap(opt2);
  279. assert(false);
  280. }
  281. catch (int i)
  282. {
  283. assert(i == 6);
  284. }
  285. assert(static_cast<bool>(opt1) == true);
  286. assert(*opt1 == 1);
  287. assert(static_cast<bool>(opt2) == true);
  288. assert(*opt2 == 2);
  289. }
  290. #endif
  291. }