//===----------------------------------------------------------------------===// // // 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 // //===----------------------------------------------------------------------===// // // class multiset // pair equal_range(const key_type& k); // pair equal_range(const key_type& k) const; #include #include #include "test_macros.h" #include "min_allocator.h" #include "private_constructor.h" int main(int, char**) { { typedef int V; typedef std::multiset M; { typedef std::pair R; V ar[] = { 5, 5, 5, 7, 7, 7, 9, 9, 9 }; M m(ar, ar+sizeof(ar)/sizeof(ar[0])); R r = m.equal_range(4); assert(r.first == std::next(m.begin(), 0)); assert(r.second == std::next(m.begin(), 0)); r = m.equal_range(5); assert(r.first == std::next(m.begin(), 0)); assert(r.second == std::next(m.begin(), 3)); r = m.equal_range(6); assert(r.first == std::next(m.begin(), 3)); assert(r.second == std::next(m.begin(), 3)); r = m.equal_range(7); assert(r.first == std::next(m.begin(), 3)); assert(r.second == std::next(m.begin(), 6)); r = m.equal_range(8); assert(r.first == std::next(m.begin(), 6)); assert(r.second == std::next(m.begin(), 6)); r = m.equal_range(9); assert(r.first == std::next(m.begin(), 6)); assert(r.second == std::next(m.begin(), 9)); r = m.equal_range(10); assert(r.first == std::next(m.begin(), 9)); assert(r.second == std::next(m.begin(), 9)); } { typedef std::pair R; V ar[] = { 5, 5, 5, 7, 7, 7, 9, 9, 9 }; const M m(ar, ar+sizeof(ar)/sizeof(ar[0])); R r = m.equal_range(4); assert(r.first == std::next(m.begin(), 0)); assert(r.second == std::next(m.begin(), 0)); r = m.equal_range(5); assert(r.first == std::next(m.begin(), 0)); assert(r.second == std::next(m.begin(), 3)); r = m.equal_range(6); assert(r.first == std::next(m.begin(), 3)); assert(r.second == std::next(m.begin(), 3)); r = m.equal_range(7); assert(r.first == std::next(m.begin(), 3)); assert(r.second == std::next(m.begin(), 6)); r = m.equal_range(8); assert(r.first == std::next(m.begin(), 6)); assert(r.second == std::next(m.begin(), 6)); r = m.equal_range(9); assert(r.first == std::next(m.begin(), 6)); assert(r.second == std::next(m.begin(), 9)); r = m.equal_range(10); assert(r.first == std::next(m.begin(), 9)); assert(r.second == std::next(m.begin(), 9)); } } #if TEST_STD_VER >= 11 { typedef int V; typedef std::multiset, min_allocator> M; { typedef std::pair R; V ar[] = { 5, 5, 5, 7, 7, 7, 9, 9, 9 }; M m(ar, ar+sizeof(ar)/sizeof(ar[0])); R r = m.equal_range(4); assert(r.first == std::next(m.begin(), 0)); assert(r.second == std::next(m.begin(), 0)); r = m.equal_range(5); assert(r.first == std::next(m.begin(), 0)); assert(r.second == std::next(m.begin(), 3)); r = m.equal_range(6); assert(r.first == std::next(m.begin(), 3)); assert(r.second == std::next(m.begin(), 3)); r = m.equal_range(7); assert(r.first == std::next(m.begin(), 3)); assert(r.second == std::next(m.begin(), 6)); r = m.equal_range(8); assert(r.first == std::next(m.begin(), 6)); assert(r.second == std::next(m.begin(), 6)); r = m.equal_range(9); assert(r.first == std::next(m.begin(), 6)); assert(r.second == std::next(m.begin(), 9)); r = m.equal_range(10); assert(r.first == std::next(m.begin(), 9)); assert(r.second == std::next(m.begin(), 9)); } { typedef std::pair R; V ar[] = { 5, 5, 5, 7, 7, 7, 9, 9, 9 }; const M m(ar, ar+sizeof(ar)/sizeof(ar[0])); R r = m.equal_range(4); assert(r.first == std::next(m.begin(), 0)); assert(r.second == std::next(m.begin(), 0)); r = m.equal_range(5); assert(r.first == std::next(m.begin(), 0)); assert(r.second == std::next(m.begin(), 3)); r = m.equal_range(6); assert(r.first == std::next(m.begin(), 3)); assert(r.second == std::next(m.begin(), 3)); r = m.equal_range(7); assert(r.first == std::next(m.begin(), 3)); assert(r.second == std::next(m.begin(), 6)); r = m.equal_range(8); assert(r.first == std::next(m.begin(), 6)); assert(r.second == std::next(m.begin(), 6)); r = m.equal_range(9); assert(r.first == std::next(m.begin(), 6)); assert(r.second == std::next(m.begin(), 9)); r = m.equal_range(10); assert(r.first == std::next(m.begin(), 9)); assert(r.second == std::next(m.begin(), 9)); } } #endif #if TEST_STD_VER > 11 { typedef int V; typedef std::multiset> M; typedef std::pair R; V ar[] = { 5, 5, 5, 7, 7, 7, 9, 9, 9 }; M m(ar, ar+sizeof(ar)/sizeof(ar[0])); R r = m.equal_range(4); assert(r.first == std::next(m.begin(), 0)); assert(r.second == std::next(m.begin(), 0)); r = m.equal_range(5); assert(r.first == std::next(m.begin(), 0)); assert(r.second == std::next(m.begin(), 3)); r = m.equal_range(6); assert(r.first == std::next(m.begin(), 3)); assert(r.second == std::next(m.begin(), 3)); r = m.equal_range(7); assert(r.first == std::next(m.begin(), 3)); assert(r.second == std::next(m.begin(), 6)); r = m.equal_range(8); assert(r.first == std::next(m.begin(), 6)); assert(r.second == std::next(m.begin(), 6)); r = m.equal_range(9); assert(r.first == std::next(m.begin(), 6)); assert(r.second == std::next(m.begin(), 9)); r = m.equal_range(10); assert(r.first == std::next(m.begin(), 9)); assert(r.second == std::next(m.begin(), 9)); } { typedef PrivateConstructor V; typedef std::multiset> M; typedef std::pair R; M m; m.insert ( V::make ( 5 )); m.insert ( V::make ( 5 )); m.insert ( V::make ( 5 )); m.insert ( V::make ( 7 )); m.insert ( V::make ( 7 )); m.insert ( V::make ( 7 )); m.insert ( V::make ( 9 )); m.insert ( V::make ( 9 )); m.insert ( V::make ( 9 )); R r = m.equal_range(4); assert(r.first == std::next(m.begin(), 0)); assert(r.second == std::next(m.begin(), 0)); r = m.equal_range(5); assert(r.first == std::next(m.begin(), 0)); assert(r.second == std::next(m.begin(), 3)); r = m.equal_range(6); assert(r.first == std::next(m.begin(), 3)); assert(r.second == std::next(m.begin(), 3)); r = m.equal_range(7); assert(r.first == std::next(m.begin(), 3)); assert(r.second == std::next(m.begin(), 6)); r = m.equal_range(8); assert(r.first == std::next(m.begin(), 6)); assert(r.second == std::next(m.begin(), 6)); r = m.equal_range(9); assert(r.first == std::next(m.begin(), 6)); assert(r.second == std::next(m.begin(), 9)); r = m.equal_range(10); assert(r.first == std::next(m.begin(), 9)); assert(r.second == std::next(m.begin(), 9)); } #endif return 0; }