//===----------------------------------------------------------------------===// // // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. // See https://llvm.org/LICENSE.txt for license information. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception // //===----------------------------------------------------------------------===// // UNSUPPORTED: c++03, c++11, c++14, c++17 // constexpr counted_iterator operator+(iter_difference_t n) const // requires random_access_iterator; // friend constexpr counted_iterator operator+( // iter_difference_t n, const counted_iterator& x) // requires random_access_iterator; // constexpr counted_iterator& operator+=(iter_difference_t n) // requires random_access_iterator; #include #include "test_macros.h" #include "test_iterators.h" template concept PlusEnabled = requires(Iter& iter) { iter + 1; }; template concept PlusEqEnabled = requires(Iter& iter) { iter += 1; }; constexpr bool test() { int buffer[8] = {1, 2, 3, 4, 5, 6, 7, 8}; { { using Counted = std::counted_iterator>; std::counted_iterator iter(random_access_iterator{buffer}, 8); assert(iter + 2 == Counted(random_access_iterator{buffer + 2}, 6)); assert(iter + 0 == Counted(random_access_iterator{buffer}, 8)); ASSERT_SAME_TYPE(decltype(iter + 2), Counted); } { using Counted = const std::counted_iterator>; const std::counted_iterator iter(random_access_iterator{buffer}, 8); assert(iter + 8 == Counted(random_access_iterator{buffer + 8}, 0)); assert(iter + 0 == Counted(random_access_iterator{buffer}, 8)); ASSERT_SAME_TYPE(decltype(iter + 2), std::remove_const_t); } } { { using Counted = std::counted_iterator>; std::counted_iterator iter(random_access_iterator{buffer}, 8); assert(2 + iter == Counted(random_access_iterator{buffer + 2}, 6)); assert(0 + iter == Counted(random_access_iterator{buffer}, 8)); ASSERT_SAME_TYPE(decltype(iter + 2), Counted); } { using Counted = const std::counted_iterator>; const std::counted_iterator iter(random_access_iterator{buffer}, 8); assert(8 + iter == Counted(random_access_iterator{buffer + 8}, 0)); assert(0 + iter == Counted(random_access_iterator{buffer}, 8)); ASSERT_SAME_TYPE(decltype(iter + 2), std::remove_const_t); } } { { using Counted = std::counted_iterator>; std::counted_iterator iter(random_access_iterator{buffer}, 8); assert((iter += 2) == Counted(random_access_iterator{buffer + 2}, 6)); assert((iter += 0) == Counted(random_access_iterator{buffer + 2}, 6)); ASSERT_SAME_TYPE(decltype(iter += 2), Counted&); } { using Counted = std::counted_iterator>; std::counted_iterator iter(contiguous_iterator{buffer}, 8); assert((iter += 8) == Counted(contiguous_iterator{buffer + 8}, 0)); assert((iter += 0) == Counted(contiguous_iterator{buffer + 8}, 0)); ASSERT_SAME_TYPE(decltype(iter += 2), Counted&); } { static_assert( PlusEnabled>>); static_assert(!PlusEnabled>>); static_assert( PlusEqEnabled< std::counted_iterator>>); static_assert(!PlusEqEnabled>>); } } return true; } int main(int, char**) { test(); static_assert(test()); return 0; }