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250 lines
7.5 KiB
C++
250 lines
7.5 KiB
C++
// Range v3 library
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//
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// Copyright Eric Niebler 2014-present
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//
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// Use, modification and distribution is subject to the
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// Boost Software License, Version 1.0. (See accompanying
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// file LICENSE_1_0.txt or copy at
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// http://www.boost.org/LICENSE_1_0.txt)
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//
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// Project home: https://github.com/ericniebler/range-v3
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//===----------------------------------------------------------------------===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is dual licensed under the MIT and the University of Illinois Open
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// Source Licenses. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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#include <memory>
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#include <numeric>
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#include <random>
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#include <algorithm>
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#include <range/v3/core.hpp>
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#include <range/v3/algorithm/minmax_element.hpp>
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#include "../array.hpp"
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#include "../simple_test.hpp"
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#include "../test_utils.hpp"
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#include "../test_iterators.hpp"
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RANGES_DIAGNOSTIC_IGNORE_GLOBAL_CONSTRUCTORS
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namespace
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{
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std::mt19937 gen;
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template<class Iter, class Sent = Iter>
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void
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test_iter(Iter first, Sent last)
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{
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ranges::minmax_element_result<Iter> p = ranges::minmax_element(first, last);
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if (first != last)
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{
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for (Iter j = first; j != last; ++j)
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{
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CHECK(!(*j < *p.min));
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CHECK(!(*p.max < *j));
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}
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}
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else
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{
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CHECK(p.min == last);
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CHECK(p.max == last);
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}
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auto rng = ::MakeTestRange(first, last);
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p = ranges::minmax_element(rng);
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if (first != last)
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{
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for (Iter j = first; j != last; ++j)
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{
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CHECK(!(*j < *p.min));
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CHECK(!(*p.max < *j));
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}
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}
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else
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{
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CHECK(p.min == last);
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CHECK(p.max == last);
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}
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auto res = ranges::minmax_element(std::move(rng));
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if (first != last)
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{
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for (Iter j = first; j != last; ++j)
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{
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CHECK(is_dangling(res.min));
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CHECK(!(*p.max < *j));
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}
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}
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else
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{
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CHECK(is_dangling(res.min));
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CHECK(is_dangling(res.max));
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}
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}
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template<class Iter, class Sent = Iter>
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void
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test_iter(unsigned N)
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{
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std::unique_ptr<int[]> a{new int[N]};
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std::iota(a.get(), a.get()+N, 0);
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std::shuffle(a.get(), a.get()+N, gen);
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test_iter(Iter(a.get()), Sent(a.get()+N));
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}
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template<class Iter, class Sent = Iter>
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void
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test_iter()
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{
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test_iter<Iter, Sent>(0);
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test_iter<Iter, Sent>(1);
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test_iter<Iter, Sent>(2);
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test_iter<Iter, Sent>(3);
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test_iter<Iter, Sent>(10);
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test_iter<Iter, Sent>(1000);
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{
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const unsigned N = 100;
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std::unique_ptr<int[]> a{new int[N]};
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std::fill_n(a.get(), N, 5);
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std::shuffle(a.get(), a.get()+N, gen);
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ranges::minmax_element_result<Iter> p = ranges::minmax_element(Iter(a.get()), Sent(a.get()+N));
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CHECK(base(p.min) == a.get());
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CHECK(base(p.max) == a.get()+N-1);
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}
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}
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template<class Iter, class Sent = Iter>
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void
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test_iter_comp(Iter first, Sent last)
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{
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typedef std::greater<int> Compare;
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Compare comp;
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ranges::minmax_element_result<Iter> p = ranges::minmax_element(first, last, comp);
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if (first != last)
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{
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for (Iter j = first; j != last; ++j)
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{
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CHECK(!comp(*j, *p.min));
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CHECK(!comp(*p.max, *j));
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}
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}
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else
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{
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CHECK(p.min == last);
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CHECK(p.max == last);
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}
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auto rng = ::MakeTestRange(first, last);
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p = ranges::minmax_element(rng, comp);
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if (first != last)
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{
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for (Iter j = first; j != last; ++j)
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{
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CHECK(!comp(*j, *p.min));
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CHECK(!comp(*p.max, *j));
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}
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}
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else
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{
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CHECK(p.min == last);
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CHECK(p.max == last);
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}
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auto res = ranges::minmax_element(std::move(rng), comp);
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CHECK(is_dangling(res.min));
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CHECK(is_dangling(res.max));
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}
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template<class Iter, class Sent = Iter>
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void
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test_iter_comp(unsigned N)
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{
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std::unique_ptr<int[]> a{new int[N]};
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std::iota(a.get(), a.get()+N, 0);
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std::shuffle(a.get(), a.get()+N, gen);
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test_iter_comp(Iter(a.get()), Sent(a.get()+N));
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}
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template<class Iter, class Sent = Iter>
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void
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test_iter_comp()
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{
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test_iter_comp<Iter, Sent>(0);
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test_iter_comp<Iter, Sent>(1);
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test_iter_comp<Iter, Sent>(2);
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test_iter_comp<Iter, Sent>(3);
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test_iter_comp<Iter, Sent>(10);
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test_iter_comp<Iter, Sent>(1000);
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{
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const unsigned N = 100;
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std::unique_ptr<int[]> a{new int[N]};
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std::fill_n(a.get(), N, 5);
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std::shuffle(a.get(), a.get()+N, gen);
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typedef std::greater<int> Compare;
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Compare comp;
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ranges::minmax_element_result<Iter> p = ranges::minmax_element(Iter(a.get()), Sent(a.get()+N), comp);
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CHECK(base(p.min) == a.get());
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CHECK(base(p.max) == a.get()+N-1);
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}
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}
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struct S
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{
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int i;
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};
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}
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int main()
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{
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test_iter<ForwardIterator<const int*> >();
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test_iter<BidirectionalIterator<const int*> >();
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test_iter<RandomAccessIterator<const int*> >();
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test_iter<const int*>();
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test_iter<ForwardIterator<const int*>, Sentinel<const int*>>();
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test_iter<BidirectionalIterator<const int*>, Sentinel<const int*>>();
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test_iter<RandomAccessIterator<const int*>, Sentinel<const int*>>();
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test_iter<ForwardIterator<const int*> >();
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test_iter<BidirectionalIterator<const int*> >();
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test_iter<RandomAccessIterator<const int*> >();
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test_iter<const int*>();
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test_iter<ForwardIterator<const int*>, Sentinel<const int*>>();
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test_iter<BidirectionalIterator<const int*>, Sentinel<const int*>>();
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test_iter<RandomAccessIterator<const int*>, Sentinel<const int*>>();
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test_iter_comp<ForwardIterator<const int*> >();
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test_iter_comp<BidirectionalIterator<const int*> >();
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test_iter_comp<RandomAccessIterator<const int*> >();
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test_iter_comp<const int*>();
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test_iter_comp<ForwardIterator<const int*>, Sentinel<const int*>>();
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test_iter_comp<BidirectionalIterator<const int*>, Sentinel<const int*>>();
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test_iter_comp<RandomAccessIterator<const int*>, Sentinel<const int*>>();
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test_iter_comp<ForwardIterator<const int*> >();
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test_iter_comp<BidirectionalIterator<const int*> >();
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test_iter_comp<RandomAccessIterator<const int*> >();
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test_iter_comp<const int*>();
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test_iter_comp<ForwardIterator<const int*>, Sentinel<const int*>>();
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test_iter_comp<BidirectionalIterator<const int*>, Sentinel<const int*>>();
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test_iter_comp<RandomAccessIterator<const int*>, Sentinel<const int*>>();
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// Works with projections?
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S s[] = {S{1},S{2},S{3},S{4},S{-4},S{5},S{6},S{40},S{7},S{8},S{9}};
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ranges::minmax_element_result<S const *> ps = ranges::minmax_element(s, std::less<int>{}, &S::i);
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CHECK(ps.min->i == -4);
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CHECK(ps.max->i == 40);
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{
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constexpr auto a = test::array<int, 10>{{1, 2, 3, 4, -4, 5, 6, 40, 8, 9}};
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STATIC_CHECK(ranges::minmax_element(a).min == ranges::begin(a) + 4);
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STATIC_CHECK(ranges::minmax_element(a).max == ranges::begin(a) + 7);
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}
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return test_result();
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}
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