transform.hpp 21 KB

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  1. // Copyright (C) 2016-2018 T. Zachary Laine
  2. //
  3. // Distributed under the Boost Software License, Version 1.0. (See
  4. // accompanying file LICENSE_1_0.txt or copy at
  5. // http://www.boost.org/LICENSE_1_0.txt)
  6. #ifndef BOOST_YAP_DETAIL_TRANSFORM_HPP_INCLUDED
  7. #define BOOST_YAP_DETAIL_TRANSFORM_HPP_INCLUDED
  8. #include <boost/yap/algorithm_fwd.hpp>
  9. #include <boost/hana/transform.hpp>
  10. #include <cassert>
  11. namespace boost { namespace yap { namespace detail {
  12. template<int I, typename T, typename... Ts>
  13. struct nth_element_impl
  14. {
  15. using type = typename nth_element_impl<I - 1, Ts...>::type;
  16. };
  17. template<typename T, typename... Ts>
  18. struct nth_element_impl<0, T, Ts...>
  19. {
  20. using type = T;
  21. };
  22. template<int I, typename... Ts>
  23. using nth_element = typename nth_element_impl<I, Ts...>::type;
  24. template<typename T, bool RemoveRefs = std::is_rvalue_reference<T>::value>
  25. struct rvalue_ref_to_value;
  26. template<typename T>
  27. struct rvalue_ref_to_value<T, true>
  28. {
  29. using type = typename std::remove_reference<T>::type;
  30. };
  31. template<typename T>
  32. struct rvalue_ref_to_value<T, false>
  33. {
  34. using type = T;
  35. };
  36. template<typename T>
  37. using rvalue_ref_to_value_t = typename rvalue_ref_to_value<T>::type;
  38. template<bool IsRvalueRef>
  39. struct rvalue_mover
  40. {
  41. template<typename T>
  42. constexpr decltype(auto) operator()(T && t) const
  43. {
  44. return static_cast<T &&>(t);
  45. }
  46. };
  47. template<>
  48. struct rvalue_mover<true>
  49. {
  50. template<typename T>
  51. constexpr std::remove_reference_t<T> operator()(T && t) const
  52. {
  53. return std::move(t);
  54. }
  55. };
  56. template<typename... PlaceholderArgs>
  57. struct placeholder_transform_t
  58. {
  59. using tuple_t = hana::tuple<rvalue_ref_to_value_t<PlaceholderArgs>...>;
  60. placeholder_transform_t(PlaceholderArgs &&... args) :
  61. placeholder_args_(static_cast<PlaceholderArgs &&>(args)...)
  62. {}
  63. template<long long I>
  64. constexpr decltype(auto)
  65. operator()(expr_tag<expr_kind::terminal>, boost::yap::placeholder<I>) const
  66. {
  67. static_assert(
  68. I <= decltype(hana::size(std::declval<tuple_t>()))::value,
  69. "Out of range placeholder index,");
  70. using nth_type = nth_element<I - 1, PlaceholderArgs...>;
  71. return as_expr<minimal_expr>(
  72. rvalue_mover<!std::is_lvalue_reference<nth_type>::value>::value(
  73. placeholder_args_[hana::llong<I - 1>{}]));
  74. }
  75. tuple_t placeholder_args_;
  76. };
  77. template<typename... PlaceholderArgs>
  78. struct evaluation_transform_t
  79. {
  80. using tuple_t = hana::tuple<rvalue_ref_to_value_t<PlaceholderArgs>...>;
  81. evaluation_transform_t(PlaceholderArgs &&... args) :
  82. placeholder_args_(static_cast<PlaceholderArgs &&>(args)...)
  83. {}
  84. template<long long I>
  85. constexpr decltype(auto)
  86. operator()(expr_tag<expr_kind::terminal>, boost::yap::placeholder<I>) const
  87. {
  88. static_assert(
  89. I <= decltype(hana::size(std::declval<tuple_t>()))::value,
  90. "Out of range placeholder index,");
  91. using nth_type = nth_element<I - 1, PlaceholderArgs...>;
  92. return rvalue_mover<!std::is_lvalue_reference<nth_type>::value>{}(
  93. placeholder_args_[hana::llong<I - 1>{}]);
  94. }
  95. template<typename T>
  96. constexpr decltype(auto) operator()(expr_tag<expr_kind::terminal>, T && t) const
  97. {
  98. return static_cast<T &&>(t);
  99. }
  100. #define BOOST_YAP_UNARY_OPERATOR_CASE(op, op_name) \
  101. template<typename T> \
  102. constexpr decltype(auto) operator()(expr_tag<expr_kind::op_name>, T && t) const \
  103. { \
  104. return op transform( \
  105. as_expr<minimal_expr>(static_cast<T &&>(t)), *this); \
  106. }
  107. BOOST_YAP_UNARY_OPERATOR_CASE(+, unary_plus)
  108. BOOST_YAP_UNARY_OPERATOR_CASE(-, negate)
  109. BOOST_YAP_UNARY_OPERATOR_CASE(*, dereference)
  110. BOOST_YAP_UNARY_OPERATOR_CASE(~, complement)
  111. BOOST_YAP_UNARY_OPERATOR_CASE(&, address_of)
  112. BOOST_YAP_UNARY_OPERATOR_CASE(!, logical_not)
  113. BOOST_YAP_UNARY_OPERATOR_CASE(++, pre_inc)
  114. BOOST_YAP_UNARY_OPERATOR_CASE(--, pre_dec)
  115. template<typename T>
  116. constexpr decltype(auto) operator()(expr_tag<expr_kind::post_inc>, T && t) const
  117. {
  118. return transform(
  119. as_expr<minimal_expr>(static_cast<T &&>(t)), *this)++;
  120. }
  121. template<typename T>
  122. constexpr decltype(auto) operator()(expr_tag<expr_kind::post_dec>, T && t) const
  123. {
  124. return transform(
  125. as_expr<minimal_expr>(static_cast<T &&>(t)), *this)--;
  126. }
  127. #undef BOOST_YAP_UNARY_OPERATOR_CASE
  128. #define BOOST_YAP_BINARY_OPERATOR_CASE(op, op_name) \
  129. template<typename T, typename U> \
  130. constexpr decltype(auto) operator()(expr_tag<expr_kind::op_name>, T && t, U && u) const \
  131. { \
  132. return transform(as_expr<minimal_expr>(static_cast<T &&>(t)), *this) \
  133. op transform(as_expr<minimal_expr>(static_cast<U &&>(u)), *this); \
  134. }
  135. BOOST_YAP_BINARY_OPERATOR_CASE(<<, shift_left)
  136. BOOST_YAP_BINARY_OPERATOR_CASE(>>, shift_right)
  137. BOOST_YAP_BINARY_OPERATOR_CASE(*, multiplies)
  138. BOOST_YAP_BINARY_OPERATOR_CASE(/, divides)
  139. BOOST_YAP_BINARY_OPERATOR_CASE(%, modulus)
  140. BOOST_YAP_BINARY_OPERATOR_CASE(+, plus)
  141. BOOST_YAP_BINARY_OPERATOR_CASE(-, minus)
  142. BOOST_YAP_BINARY_OPERATOR_CASE(<, less)
  143. BOOST_YAP_BINARY_OPERATOR_CASE(>, greater)
  144. BOOST_YAP_BINARY_OPERATOR_CASE(<=, less_equal)
  145. BOOST_YAP_BINARY_OPERATOR_CASE(>=, greater_equal)
  146. BOOST_YAP_BINARY_OPERATOR_CASE(==, equal_to)
  147. BOOST_YAP_BINARY_OPERATOR_CASE(!=, not_equal_to)
  148. BOOST_YAP_BINARY_OPERATOR_CASE(||, logical_or)
  149. BOOST_YAP_BINARY_OPERATOR_CASE(&&, logical_and)
  150. BOOST_YAP_BINARY_OPERATOR_CASE(&, bitwise_and)
  151. BOOST_YAP_BINARY_OPERATOR_CASE(|, bitwise_or)
  152. BOOST_YAP_BINARY_OPERATOR_CASE (^, bitwise_xor)
  153. // clang-format off
  154. //[ evaluation_transform_comma
  155. template<typename T, typename U>
  156. constexpr decltype(auto) operator()(expr_tag<expr_kind::comma>, T && t, U && u) const
  157. {
  158. return transform(
  159. as_expr<minimal_expr>(static_cast<T &&>(t)), *this),
  160. transform(
  161. as_expr<minimal_expr>(static_cast<U &&>(u)), *this);
  162. }
  163. //]
  164. // clang-format on
  165. BOOST_YAP_BINARY_OPERATOR_CASE(->*, mem_ptr)
  166. BOOST_YAP_BINARY_OPERATOR_CASE(=, assign)
  167. BOOST_YAP_BINARY_OPERATOR_CASE(<<=, shift_left_assign)
  168. BOOST_YAP_BINARY_OPERATOR_CASE(>>=, shift_right_assign)
  169. BOOST_YAP_BINARY_OPERATOR_CASE(*=, multiplies_assign)
  170. BOOST_YAP_BINARY_OPERATOR_CASE(/=, divides_assign)
  171. BOOST_YAP_BINARY_OPERATOR_CASE(%=, modulus_assign)
  172. BOOST_YAP_BINARY_OPERATOR_CASE(+=, plus_assign)
  173. BOOST_YAP_BINARY_OPERATOR_CASE(-=, minus_assign)
  174. BOOST_YAP_BINARY_OPERATOR_CASE(&=, bitwise_and_assign)
  175. BOOST_YAP_BINARY_OPERATOR_CASE(|=, bitwise_or_assign)
  176. BOOST_YAP_BINARY_OPERATOR_CASE(^=, bitwise_xor_assign)
  177. template<typename T, typename U>
  178. constexpr decltype(auto)
  179. operator()(expr_tag<expr_kind::subscript>, T && t, U && u) const
  180. {
  181. return transform(
  182. as_expr<minimal_expr>(static_cast<T &&>(t)), *this)[transform(
  183. as_expr<minimal_expr>(static_cast<U &&>(u)), *this)];
  184. }
  185. #undef BOOST_YAP_BINARY_OPERATOR_CASE
  186. template<typename T, typename U, typename V>
  187. constexpr decltype(auto)
  188. operator()(expr_tag<expr_kind::if_else>, T && t, U && u, V && v) const
  189. {
  190. return transform(as_expr<minimal_expr>(static_cast<T &&>(t)), *this)
  191. ? transform(
  192. as_expr<minimal_expr>(static_cast<U &&>(u)), *this)
  193. : transform(
  194. as_expr<minimal_expr>(static_cast<V &&>(v)),
  195. *this);
  196. }
  197. // clang-format off
  198. //[ evaluation_transform_call
  199. template<typename Callable, typename... Args>
  200. constexpr decltype(auto) operator()(
  201. expr_tag<expr_kind::call>, Callable && callable, Args &&... args) const
  202. {
  203. return transform(as_expr<minimal_expr>(static_cast<Callable &&>(callable)), *this)(
  204. transform(as_expr<minimal_expr>(static_cast<Args &&>(args)), *this)...
  205. );
  206. }
  207. //]
  208. // clang-format on
  209. tuple_t placeholder_args_;
  210. };
  211. template<bool Strict, int I, bool IsExprRef>
  212. struct transform_impl;
  213. template<
  214. bool Strict,
  215. typename Expr,
  216. typename TransformTuple,
  217. int I,
  218. expr_arity Arity,
  219. typename = void_t<>>
  220. struct transform_expression_tag;
  221. // Forward terminals/recurively transform noterminasl; attempted last.
  222. template<bool IsLvalueRef, bool IsTerminal, bool Strict>
  223. struct default_transform
  224. {
  225. template<typename Expr, typename TransformTuple>
  226. constexpr decltype(auto) operator()(Expr && expr, TransformTuple transforms) const
  227. {
  228. return static_cast<Expr &&>(expr);
  229. }
  230. };
  231. template<bool IsLvalueRef, bool IsTerminal>
  232. struct default_transform<IsLvalueRef, IsTerminal, true>
  233. {
  234. struct incomplete;
  235. // If you're getting an error because this function is uncallable,
  236. // that's by design. You called yap::transform_strict(expr, xfrom)
  237. // and one or more subexpression of 'expr' are not callable with any
  238. // overload in 'xform'.
  239. template<typename Expr, typename TransformTuple>
  240. constexpr incomplete operator()(Expr && expr, TransformTuple transforms) const;
  241. };
  242. template<
  243. expr_kind Kind,
  244. template<expr_kind, class> class ExprTemplate,
  245. typename OldTuple,
  246. typename NewTuple>
  247. constexpr auto make_expr_from_tuple(
  248. ExprTemplate<Kind, OldTuple> const & expr, NewTuple && tuple)
  249. {
  250. return ExprTemplate<Kind, NewTuple>{std::move(tuple)};
  251. }
  252. template<expr_kind Kind, typename Expr, typename NewTuple>
  253. constexpr auto make_expr_from_tuple(Expr const & expr, NewTuple && tuple)
  254. {
  255. return minimal_expr<Kind, NewTuple>{std::move(tuple)};
  256. }
  257. template<typename Expr, typename Tuple, typename TransformTuple>
  258. constexpr decltype(auto) transform_nonterminal(
  259. Expr const & expr, Tuple && tuple, TransformTuple transforms)
  260. {
  261. auto transformed_tuple =
  262. hana::transform(static_cast<Tuple &&>(tuple), [&](auto && element) {
  263. using element_t = decltype(element);
  264. auto const kind = remove_cv_ref_t<element_t>::kind;
  265. ::boost::yap::detail::
  266. transform_impl<false, 0, kind == expr_kind::expr_ref>
  267. xform;
  268. return xform(static_cast<element_t &&>(element), transforms);
  269. });
  270. auto const kind = remove_cv_ref_t<Expr>::kind;
  271. return make_expr_from_tuple<kind>(expr, std::move(transformed_tuple));
  272. }
  273. template<>
  274. struct default_transform<true, false, false>
  275. {
  276. template<typename Expr, typename TransformTuple>
  277. constexpr decltype(auto) operator()(Expr && expr, TransformTuple transforms) const
  278. {
  279. return transform_nonterminal(expr, expr.elements, transforms);
  280. }
  281. };
  282. template<>
  283. struct default_transform<false, false, false>
  284. {
  285. template<typename Expr, typename TransformTuple>
  286. decltype(auto) operator()(Expr && expr, TransformTuple transforms) const
  287. {
  288. return transform_nonterminal(
  289. expr, std::move(expr.elements), transforms);
  290. }
  291. };
  292. // Dispatch to the next transform, or to the default transform if there is
  293. // no next transform.
  294. template<
  295. bool Strict,
  296. typename Expr,
  297. typename TransformTuple,
  298. int I,
  299. bool NextTransformExists>
  300. struct next_or_default_transform
  301. {
  302. constexpr decltype(auto) operator()(Expr && expr, TransformTuple transforms) const
  303. {
  304. // Use the next transform.
  305. constexpr expr_kind kind = remove_cv_ref_t<Expr>::kind;
  306. return detail::
  307. transform_impl<Strict, I + 1, kind == expr_kind::expr_ref>{}(
  308. static_cast<Expr &&>(expr), transforms);
  309. }
  310. };
  311. template<bool Strict, typename Expr, typename TransformTuple, int I>
  312. struct next_or_default_transform<Strict, Expr, TransformTuple, I, false>
  313. {
  314. constexpr decltype(auto) operator()(Expr && expr, TransformTuple transforms) const
  315. {
  316. // No next transform exists; use the default transform.
  317. constexpr expr_kind kind = remove_cv_ref_t<Expr>::kind;
  318. return default_transform<
  319. std::is_lvalue_reference<Expr>::value,
  320. kind == expr_kind::terminal,
  321. Strict>{}(static_cast<Expr &&>(expr), transforms);
  322. }
  323. };
  324. // Expression-matching; attempted second.
  325. template<
  326. bool Strict,
  327. typename Expr,
  328. typename TransformTuple,
  329. int I,
  330. typename = detail::void_t<>>
  331. struct transform_expression_expr
  332. {
  333. constexpr decltype(auto) operator()(Expr && expr, TransformTuple transforms) const
  334. {
  335. // No expr-matching succeeded; use the next or default transform.
  336. return next_or_default_transform<
  337. Strict,
  338. Expr,
  339. TransformTuple,
  340. I,
  341. I + 1 < decltype(hana::size(
  342. std::declval<TransformTuple>()))::value>{}(
  343. static_cast<Expr &&>(expr), transforms);
  344. }
  345. };
  346. template<bool Strict, typename Expr, typename TransformTuple, int I>
  347. struct transform_expression_expr<
  348. Strict,
  349. Expr,
  350. TransformTuple,
  351. I,
  352. void_t<decltype((*std::declval<TransformTuple>()[hana::llong<I>{}])(
  353. std::declval<Expr>()))>>
  354. {
  355. constexpr decltype(auto) operator()(Expr && expr, TransformTuple transforms) const
  356. {
  357. return (*transforms[hana::llong<I>{}])(static_cast<Expr &&>(expr));
  358. }
  359. };
  360. // Tag-matching; attempted first.
  361. template<
  362. bool Strict,
  363. typename Expr,
  364. typename TransformTuple,
  365. int I,
  366. expr_arity Arity,
  367. typename>
  368. struct transform_expression_tag
  369. {
  370. constexpr decltype(auto) operator()(Expr && expr, TransformTuple transforms) const
  371. {
  372. // No tag-matching succeeded; try expr-matching.
  373. return transform_expression_expr<Strict, Expr, TransformTuple, I>{}(
  374. static_cast<Expr &&>(expr), transforms);
  375. }
  376. };
  377. template<typename T>
  378. decltype(auto) terminal_value(T && x)
  379. {
  380. return value_impl<true>(static_cast<T &&>(x));
  381. }
  382. template<bool Strict, typename Expr, typename TransformTuple, int I>
  383. struct transform_expression_tag<
  384. Strict,
  385. Expr,
  386. TransformTuple,
  387. I,
  388. expr_arity::one,
  389. void_t<decltype((*std::declval<TransformTuple>()[hana::llong<I>{}])(
  390. expr_tag<remove_cv_ref_t<Expr>::kind>{},
  391. terminal_value(::boost::yap::value(std::declval<Expr>()))))>>
  392. {
  393. constexpr decltype(auto) operator()(Expr && expr, TransformTuple transforms) const
  394. {
  395. return (*transforms[hana::llong<I>{}])(
  396. expr_tag<remove_cv_ref_t<Expr>::kind>{},
  397. terminal_value(
  398. ::boost::yap::value(static_cast<Expr &&>(expr))));
  399. }
  400. };
  401. template<bool Strict, typename Expr, typename TransformTuple, int I>
  402. struct transform_expression_tag<
  403. Strict,
  404. Expr,
  405. TransformTuple,
  406. I,
  407. expr_arity::two,
  408. void_t<decltype((*std::declval<TransformTuple>()[hana::llong<I>{}])(
  409. expr_tag<remove_cv_ref_t<Expr>::kind>{},
  410. terminal_value(::boost::yap::left(std::declval<Expr>())),
  411. terminal_value(::boost::yap::right(std::declval<Expr>()))))>>
  412. {
  413. constexpr decltype(auto) operator()(Expr && expr, TransformTuple transforms) const
  414. {
  415. return (*transforms[hana::llong<I>{}])(
  416. expr_tag<remove_cv_ref_t<Expr>::kind>{},
  417. terminal_value(::boost::yap::left(static_cast<Expr &&>(expr))),
  418. terminal_value(
  419. ::boost::yap::right(static_cast<Expr &&>(expr))));
  420. }
  421. };
  422. template<bool Strict, typename Expr, typename TransformTuple, int I>
  423. struct transform_expression_tag<
  424. Strict,
  425. Expr,
  426. TransformTuple,
  427. I,
  428. expr_arity::three,
  429. void_t<decltype((*std::declval<TransformTuple>()[hana::llong<I>{}])(
  430. expr_tag<remove_cv_ref_t<Expr>::kind>{},
  431. terminal_value(::boost::yap::cond(std::declval<Expr>())),
  432. terminal_value(::boost::yap::then(std::declval<Expr>())),
  433. terminal_value(::boost::yap::else_(std::declval<Expr>()))))>>
  434. {
  435. constexpr decltype(auto) operator()(Expr && expr, TransformTuple transforms) const
  436. {
  437. return (*transforms[hana::llong<I>{}])(
  438. expr_tag<remove_cv_ref_t<Expr>::kind>{},
  439. terminal_value(::boost::yap::cond(static_cast<Expr &&>(expr))),
  440. terminal_value(::boost::yap::then(static_cast<Expr &&>(expr))),
  441. terminal_value(
  442. ::boost::yap::else_(static_cast<Expr &&>(expr))));
  443. }
  444. };
  445. template<typename Expr, typename Transform>
  446. struct transform_call_unpacker
  447. {
  448. template<long long... I>
  449. constexpr auto operator()(
  450. Expr && expr,
  451. Transform & transform,
  452. std::integer_sequence<long long, I...>) const
  453. -> decltype(transform(
  454. expr_tag<expr_kind::call>{},
  455. terminal_value(::boost::yap::get(
  456. static_cast<Expr &&>(expr), hana::llong_c<I>))...))
  457. {
  458. return transform(
  459. expr_tag<expr_kind::call>{},
  460. terminal_value(::boost::yap::get(
  461. static_cast<Expr &&>(expr), hana::llong_c<I>))...);
  462. }
  463. };
  464. template<typename Expr>
  465. constexpr auto indices_for(Expr const & expr)
  466. {
  467. constexpr long long size = decltype(hana::size(expr.elements))::value;
  468. return std::make_integer_sequence<long long, size>();
  469. }
  470. template<bool Strict, typename Expr, typename TransformTuple, int I>
  471. struct transform_expression_tag<
  472. Strict,
  473. Expr,
  474. TransformTuple,
  475. I,
  476. expr_arity::n,
  477. void_t<decltype(
  478. transform_call_unpacker<
  479. Expr,
  480. decltype(*std::declval<TransformTuple>()[hana::llong<I>{}])>{}(
  481. std::declval<Expr>(),
  482. *std::declval<TransformTuple>()[hana::llong<I>{}],
  483. indices_for(std::declval<Expr>())))>>
  484. {
  485. constexpr decltype(auto) operator()(Expr && expr, TransformTuple transforms) const
  486. {
  487. using transform_t = decltype(*transforms[hana::llong<I>{}]);
  488. return transform_call_unpacker<Expr, transform_t>{}(
  489. static_cast<Expr &&>(expr),
  490. *transforms[hana::llong<I>{}],
  491. indices_for(expr));
  492. }
  493. };
  494. template<bool Strict, int I, bool IsExprRef>
  495. struct transform_impl
  496. {
  497. template<typename Expr, typename TransformTuple>
  498. constexpr decltype(auto) operator()(Expr && expr, TransformTuple transforms) const
  499. {
  500. constexpr expr_kind kind = detail::remove_cv_ref_t<Expr>::kind;
  501. return detail::transform_expression_tag<
  502. Strict,
  503. Expr,
  504. TransformTuple,
  505. I,
  506. detail::arity_of<kind>()>{}(
  507. static_cast<Expr &&>(expr), transforms);
  508. }
  509. };
  510. template<bool Strict, int I>
  511. struct transform_impl<Strict, I, true>
  512. {
  513. template<typename Expr, typename TransformTuple>
  514. constexpr decltype(auto) operator()(Expr && expr, TransformTuple transforms) const
  515. {
  516. return detail::transform_impl<Strict, I, false>{}(
  517. ::boost::yap::deref(static_cast<Expr &&>(expr)), transforms);
  518. }
  519. };
  520. }}}
  521. #endif