experimental-core-result-status.cpp 13 KB

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  1. /* Unit testing for outcomes
  2. (C) 2013-2019 Niall Douglas <http://www.nedproductions.biz/> (8 commits)
  3. Boost Software License - Version 1.0 - August 17th, 2003
  4. Permission is hereby granted, free of charge, to any person or organization
  5. obtaining a copy of the software and accompanying documentation covered by
  6. this license (the "Software") to use, reproduce, display, distribute,
  7. execute, and transmit the Software, and to prepare derivative works of the
  8. Software, and to permit third-parties to whom the Software is furnished to
  9. do so, all subject to the following:
  10. The copyright notices in the Software and this entire statement, including
  11. the above license grant, this restriction and the following disclaimer,
  12. must be included in all copies of the Software, in whole or in part, and
  13. all derivative works of the Software, unless such copies or derivative
  14. works are solely in the form of machine-executable object code generated by
  15. a source language processor.
  16. THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  17. IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  18. FITNESS FOR A PARTICULAR PURPOSE, TITLE AND NON-INFRINGEMENT. IN NO EVENT
  19. SHALL THE COPYRIGHT HOLDERS OR ANYONE DISTRIBUTING THE SOFTWARE BE LIABLE
  20. FOR ANY DAMAGES OR OTHER LIABILITY, WHETHER IN CONTRACT, TORT OR OTHERWISE,
  21. ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
  22. DEALINGS IN THE SOFTWARE.
  23. */
  24. #include <boost/outcome/experimental/status_result.hpp>
  25. template <class T, class S = BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE::system_code, class NoValuePolicy = BOOST_OUTCOME_V2_NAMESPACE::experimental::policy::default_status_result_policy<T, S>> using result = BOOST_OUTCOME_V2_NAMESPACE::experimental::status_result<T, S, NoValuePolicy>;
  26. using BOOST_OUTCOME_V2_NAMESPACE::in_place_type;
  27. #include <boost/test/unit_test.hpp>
  28. #include <boost/test/unit_test_monitor.hpp>
  29. #include <exception>
  30. #include <iostream>
  31. #ifndef BOOST_NO_EXCEPTIONS
  32. // Custom error type with payload
  33. struct payload
  34. {
  35. BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE::errc ec{BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE::errc::success};
  36. const char *str{nullptr};
  37. payload() = default;
  38. payload(BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE::errc _ec, const char *_str)
  39. : ec(_ec)
  40. , str(_str)
  41. {
  42. }
  43. };
  44. struct payload_exception : std::exception
  45. {
  46. const char *_what{nullptr};
  47. explicit payload_exception(const char *what)
  48. : _what(what)
  49. {
  50. }
  51. virtual const char *what() const noexcept override final { return _what; } // NOLINT
  52. };
  53. class _payload_domain;
  54. using status_code_payload = BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE::status_code<_payload_domain>;
  55. class _payload_domain : public BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE::status_code_domain
  56. {
  57. template <class> friend class status_code;
  58. using _base = BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE::status_code_domain;
  59. public:
  60. using value_type = payload;
  61. using string_ref = _base::string_ref;
  62. public:
  63. constexpr _payload_domain() noexcept : _base(0x7b782c8f935e34ba) {}
  64. static inline constexpr const _payload_domain &get();
  65. virtual _base::string_ref name() const noexcept override final { return string_ref("payload domain"); } // NOLINT
  66. protected:
  67. virtual bool _do_failure(const BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE::status_code<void> &code) const noexcept override final // NOLINT
  68. {
  69. assert(code.domain() == *this); // NOLINT
  70. return static_cast<const status_code_payload &>(code).value().ec != BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE::errc::success; // NOLINT
  71. }
  72. virtual bool _do_equivalent(const BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE::status_code<void> &code1, const BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE::status_code<void> &code2) const noexcept override final // NOLINT
  73. {
  74. assert(code1.domain() == *this); // NOLINT
  75. const auto &c1 = static_cast<const status_code_payload &>(code1); // NOLINT
  76. if(code2.domain() == *this)
  77. {
  78. const auto &c2 = static_cast<const status_code_payload &>(code2); // NOLINT
  79. return c1.value().ec == c2.value().ec;
  80. }
  81. return false;
  82. }
  83. virtual BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE::generic_code _generic_code(const BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE::status_code<void> &code) const noexcept override final // NOLINT
  84. {
  85. assert(code.domain() == *this); // NOLINT
  86. return static_cast<const status_code_payload &>(code).value().ec; // NOLINT
  87. }
  88. virtual _base::string_ref _do_message(const BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE::status_code<void> &code) const noexcept override final // NOLINT
  89. {
  90. assert(code.domain() == *this); // NOLINT
  91. const auto &c = static_cast<const status_code_payload &>(code); // NOLINT
  92. return string_ref(BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE::detail::generic_code_message(c.value().ec));
  93. }
  94. virtual void _do_throw_exception(const BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE::status_code<void> &code) const override final // NOLINT
  95. {
  96. assert(code.domain() == *this); // NOLINT
  97. const auto &c = static_cast<const status_code_payload &>(code); // NOLINT
  98. throw payload_exception(c.value().str);
  99. }
  100. };
  101. constexpr _payload_domain payload_domain;
  102. inline constexpr const _payload_domain &_payload_domain::get()
  103. {
  104. return payload_domain;
  105. }
  106. inline status_code_payload make_status_code(payload c) noexcept
  107. {
  108. return status_code_payload(BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE::in_place, c);
  109. }
  110. #endif
  111. BOOST_OUTCOME_AUTO_TEST_CASE(works_status_code_result, "Tests that the result with status_code works as intended")
  112. {
  113. using namespace BOOST_OUTCOME_SYSTEM_ERROR2_NAMESPACE;
  114. { // errored int
  115. result<int> m(generic_code{errc::bad_address});
  116. BOOST_CHECK(!m);
  117. BOOST_CHECK(!m.has_value());
  118. BOOST_CHECK(m.has_error());
  119. // BOOST_CHECK(!m.has_exception());
  120. BOOST_CHECK_THROW(m.value(), generic_error);
  121. BOOST_CHECK_NO_THROW(m.error());
  122. }
  123. { // errored void
  124. result<void> m(generic_code{errc::bad_address});
  125. BOOST_CHECK(!m);
  126. BOOST_CHECK(!m.has_value());
  127. BOOST_CHECK(m.has_error());
  128. // BOOST_CHECK(!m.has_exception());
  129. BOOST_CHECK_THROW(([&m]() -> void { return m.value(); }()), generic_error);
  130. BOOST_CHECK_NO_THROW(m.error());
  131. }
  132. { // valued int
  133. result<int> m(5);
  134. BOOST_CHECK(m);
  135. BOOST_CHECK(m.has_value());
  136. BOOST_CHECK(!m.has_error());
  137. // BOOST_CHECK(!m.has_exception());
  138. BOOST_CHECK(m.value() == 5);
  139. m.value() = 6;
  140. BOOST_CHECK(m.value() == 6);
  141. }
  142. { // valued bool
  143. result<bool> m(false);
  144. BOOST_CHECK(m);
  145. BOOST_CHECK(m.has_value());
  146. BOOST_CHECK(!m.has_error());
  147. // BOOST_CHECK(!m.has_exception());
  148. BOOST_CHECK(m.value() == false);
  149. m.value() = true;
  150. BOOST_CHECK(m.value() == true);
  151. }
  152. { // moves do not clear state
  153. result<std::string> m("niall");
  154. BOOST_CHECK(m);
  155. BOOST_CHECK(m.has_value());
  156. BOOST_CHECK(!m.has_error());
  157. // BOOST_CHECK(!m.has_exception());
  158. BOOST_CHECK(m.value() == "niall");
  159. m.value() = "NIALL";
  160. BOOST_CHECK(m.value() == "NIALL");
  161. auto temp(std::move(m).value());
  162. BOOST_CHECK(temp == "NIALL");
  163. BOOST_CHECK(m.value().empty()); // NOLINT
  164. }
  165. { // valued void
  166. result<void> m(in_place_type<void>);
  167. BOOST_CHECK(m);
  168. BOOST_CHECK(m.has_value());
  169. BOOST_CHECK(!m.has_error());
  170. // BOOST_CHECK(!m.has_exception());
  171. BOOST_CHECK_NO_THROW(m.value()); // works, but type returned is unusable
  172. }
  173. { // errored
  174. error ec(errc::no_link);
  175. result<int> m(ec.clone());
  176. BOOST_CHECK(!m);
  177. BOOST_CHECK(!m.has_value());
  178. BOOST_CHECK(m.has_error());
  179. // BOOST_CHECK(!m.has_exception());
  180. BOOST_CHECK_THROW(m.value(), generic_error);
  181. BOOST_CHECK(m.error() == ec);
  182. }
  183. if(false) // NOLINT
  184. { // void, void is permitted, but is not constructible
  185. result<void, void> *m = nullptr;
  186. m->value();
  187. m->error();
  188. }
  189. {
  190. // Deliberately define non-trivial operations
  191. struct udt
  192. {
  193. int _v{0};
  194. udt() = default;
  195. udt(udt &&o) noexcept : _v(o._v) {}
  196. udt(const udt &o) // NOLINT
  197. : _v(o._v)
  198. {
  199. }
  200. udt &operator=(udt &&o) noexcept
  201. {
  202. _v = o._v;
  203. return *this;
  204. }
  205. udt &operator=(const udt &o) // NOLINT
  206. {
  207. _v = o._v;
  208. return *this;
  209. }
  210. ~udt() { _v = 0; }
  211. };
  212. // No default construction, no copy nor move
  213. struct udt2
  214. {
  215. udt2() = delete;
  216. udt2(udt2 &&) = delete;
  217. udt2(const udt2 &) = delete;
  218. udt2 &operator=(udt2 &&) = delete;
  219. udt2 &operator=(const udt2 &) = delete;
  220. explicit udt2(int /*unused*/) {}
  221. ~udt2() = default;
  222. };
  223. // Can only be constructed via multiple args
  224. struct udt3
  225. {
  226. udt3() = delete;
  227. udt3(udt3 &&) = delete;
  228. udt3(const udt3 &) = delete;
  229. udt3 &operator=(udt3 &&) = delete;
  230. udt3 &operator=(const udt3 &) = delete;
  231. explicit udt3(int /*unused*/, const char * /*unused*/, std::nullptr_t /*unused*/) {}
  232. ~udt3() = default;
  233. };
  234. result<int> a(5);
  235. result<int> b(generic_code{errc::invalid_argument});
  236. std::cout << sizeof(a) << std::endl; // 32 bytes
  237. if(false) // NOLINT
  238. {
  239. b.assume_value();
  240. a.assume_error();
  241. }
  242. #ifndef BOOST_NO_EXCEPTIONS
  243. try
  244. {
  245. b.value();
  246. std::cerr << "fail" << std::endl;
  247. std::terminate();
  248. }
  249. catch(const generic_error &e)
  250. {
  251. BOOST_CHECK(!strcmp(e.what(), b.error().message().c_str()));
  252. }
  253. #endif
  254. static_assert(!std::is_default_constructible<decltype(a)>::value, "");
  255. static_assert(!std::is_nothrow_default_constructible<decltype(a)>::value, "");
  256. static_assert(!std::is_copy_constructible<decltype(a)>::value, "");
  257. // Quality of implementation of std::optional is poor :(
  258. #ifndef TESTING_WG21_EXPERIMENTAL_RESULT
  259. static_assert(!std::is_trivially_copy_constructible<decltype(a)>::value, "");
  260. static_assert(!std::is_nothrow_copy_constructible<decltype(a)>::value, "");
  261. static_assert(!std::is_copy_assignable<decltype(a)>::value, "");
  262. static_assert(!std::is_trivially_copy_assignable<decltype(a)>::value, "");
  263. static_assert(!std::is_nothrow_copy_assignable<decltype(a)>::value, "");
  264. #endif
  265. static_assert(!std::is_trivially_destructible<decltype(a)>::value, "");
  266. static_assert(std::is_nothrow_destructible<decltype(a)>::value, "");
  267. // Test void compiles
  268. result<void> c(in_place_type<void>);
  269. // Test a standard udt compiles
  270. result<udt> d(in_place_type<udt>);
  271. static_assert(!std::is_default_constructible<decltype(d)>::value, "");
  272. static_assert(!std::is_nothrow_default_constructible<decltype(d)>::value, "");
  273. static_assert(!std::is_copy_constructible<decltype(d)>::value, "");
  274. static_assert(!std::is_trivially_copy_constructible<decltype(d)>::value, "");
  275. static_assert(!std::is_nothrow_copy_constructible<decltype(d)>::value, "");
  276. static_assert(!std::is_copy_assignable<decltype(d)>::value, "");
  277. static_assert(!std::is_trivially_copy_assignable<decltype(d)>::value, "");
  278. static_assert(!std::is_nothrow_copy_assignable<decltype(d)>::value, "");
  279. static_assert(std::is_move_assignable<decltype(d)>::value, "");
  280. static_assert(!std::is_trivially_move_assignable<decltype(d)>::value, "");
  281. static_assert(std::is_nothrow_move_assignable<decltype(d)>::value, "");
  282. static_assert(!std::is_trivially_destructible<decltype(d)>::value, "");
  283. static_assert(std::is_nothrow_destructible<decltype(d)>::value, "");
  284. // Test a highly pathological udt compiles
  285. result<udt2> e(in_place_type<udt2>, 5);
  286. // result<udt2> e2(e);
  287. static_assert(!std::is_default_constructible<decltype(e)>::value, "");
  288. static_assert(!std::is_nothrow_default_constructible<decltype(e)>::value, "");
  289. static_assert(!std::is_copy_constructible<decltype(e)>::value, "");
  290. static_assert(!std::is_trivially_copy_constructible<decltype(e)>::value, "");
  291. static_assert(!std::is_nothrow_copy_constructible<decltype(e)>::value, "");
  292. static_assert(!std::is_copy_assignable<decltype(e)>::value, "");
  293. static_assert(!std::is_trivially_copy_assignable<decltype(e)>::value, "");
  294. static_assert(!std::is_nothrow_copy_assignable<decltype(e)>::value, "");
  295. static_assert(!std::is_move_assignable<decltype(e)>::value, "");
  296. static_assert(!std::is_trivially_move_assignable<decltype(e)>::value, "");
  297. static_assert(!std::is_nothrow_move_assignable<decltype(e)>::value, "");
  298. // Test a udt which can only be constructed in place compiles
  299. result<udt3> g(in_place_type<udt3>, 5, static_cast<const char *>("niall"), nullptr);
  300. // Does converting inplace construction also work?
  301. result<udt3> h(5, static_cast<const char *>("niall"), nullptr);
  302. result<udt3> i(generic_code{errc::not_enough_memory});
  303. BOOST_CHECK(h.has_value());
  304. BOOST_CHECK(i.has_error());
  305. }
  306. // Test direct use of error code enum works
  307. {
  308. constexpr result<int, errc, BOOST_OUTCOME_V2_NAMESPACE::policy::all_narrow> a(5), b(errc::invalid_argument);
  309. static_assert(a.value() == 5, "a is not 5");
  310. static_assert(b.error() == errc::invalid_argument, "b is not errored");
  311. }
  312. #ifndef BOOST_NO_EXCEPTIONS
  313. // Test payload facility
  314. {
  315. const char *niall = "niall";
  316. result<int, status_code_payload> b{payload{errc::invalid_argument, niall}};
  317. try
  318. {
  319. b.value();
  320. BOOST_CHECK(false);
  321. }
  322. catch(const payload_exception &e)
  323. {
  324. BOOST_CHECK(!strcmp(e.what(), niall));
  325. }
  326. catch(...)
  327. {
  328. BOOST_CHECK(false);
  329. }
  330. }
  331. #endif
  332. }