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151 lines
4.6 KiB
C++
151 lines
4.6 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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// Copyright 2005 - 2007 Adobe Systems Incorporated
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// Distributed under the MIT License(see accompanying file LICENSE_1_0_0.txt
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// or a copy at http://stlab.adobe.com/licenses.html)
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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 <utility>
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#include <vector>
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#include <range/v3/core.hpp>
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#include <range/v3/algorithm/replace_if.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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template<typename Iter, typename Sent = Iter>
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void test_iter()
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{
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int ia[] = {0, 1, 2, 3, 4};
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const unsigned sa = sizeof(ia)/sizeof(ia[0]);
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Iter i = ranges::replace_if(Iter(ia), Sent(ia+sa), [](int j){return j==2;}, 5);
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CHECK(ia[0] == 0);
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CHECK(ia[1] == 1);
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CHECK(ia[2] == 5);
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CHECK(ia[3] == 3);
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CHECK(ia[4] == 4);
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CHECK(base(i) == ia + sa);
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}
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template<typename Iter, typename Sent = Iter>
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void test_rng()
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{
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int ia[] = {0, 1, 2, 3, 4};
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const unsigned sa = sizeof(ia)/sizeof(ia[0]);
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auto rng = ranges::make_subrange(Iter(ia), Sent(ia+sa));
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Iter i = ranges::replace_if(rng, [](int j){return j==2;}, 5);
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CHECK(ia[0] == 0);
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CHECK(ia[1] == 1);
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CHECK(ia[2] == 5);
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CHECK(ia[3] == 3);
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CHECK(ia[4] == 4);
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CHECK(base(i) == ia + sa);
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}
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constexpr bool equals_two(int i)
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{
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return i == 2;
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}
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constexpr bool test_constexpr()
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{
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using namespace ranges;
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int ia[] = {0, 1, 2, 3, 4};
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constexpr auto sa = ranges::size(ia);
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auto r = ranges::replace_if(ia, equals_two, 42);
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STATIC_CHECK_RETURN(r == ia + sa);
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STATIC_CHECK_RETURN(ia[0] == 0);
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STATIC_CHECK_RETURN(ia[1] == 1);
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STATIC_CHECK_RETURN(ia[2] == 42);
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STATIC_CHECK_RETURN(ia[3] == 3);
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STATIC_CHECK_RETURN(ia[4] == 4);
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return true;
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}
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int main()
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{
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test_iter<ForwardIterator<int*> >();
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test_iter<BidirectionalIterator<int*> >();
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test_iter<RandomAccessIterator<int*> >();
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test_iter<int*>();
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test_iter<ForwardIterator<int*>, Sentinel<int*> >();
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test_iter<BidirectionalIterator<int*>, Sentinel<int*> >();
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test_iter<RandomAccessIterator<int*>, Sentinel<int*> >();
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test_rng<ForwardIterator<int*> >();
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test_rng<BidirectionalIterator<int*> >();
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test_rng<RandomAccessIterator<int*> >();
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test_rng<int*>();
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test_rng<ForwardIterator<int*>, Sentinel<int*> >();
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test_rng<BidirectionalIterator<int*>, Sentinel<int*> >();
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test_rng<RandomAccessIterator<int*>, Sentinel<int*> >();
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// test projection
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{
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using P = std::pair<int,std::string>;
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P ia[] = {{0,"0"}, {1,"1"}, {2,"2"}, {3,"3"}, {4,"4"}};
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P *i = ranges::replace_if(ia, [](int j){return j==2;}, std::make_pair(42,"42"),
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&std::pair<int,std::string>::first);
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CHECK(ia[0] == P{0,"0"});
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CHECK(ia[1] == P{1,"1"});
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CHECK(ia[2] == P{42,"42"});
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CHECK(ia[3] == P{3,"3"});
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CHECK(ia[4] == P{4,"4"});
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CHECK(i == ranges::end(ia));
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}
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// test rvalue ranges
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{
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using P = std::pair<int,std::string>;
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P ia[] = {{0,"0"}, {1,"1"}, {2,"2"}, {3,"3"}, {4,"4"}};
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auto i = ranges::replace_if(std::move(ia), [](int j){return j==2;}, std::make_pair(42,"42"),
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&std::pair<int,std::string>::first);
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#ifndef RANGES_WORKAROUND_MSVC_573728
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CHECK(::is_dangling(i));
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#endif // RANGES_WORKAROUND_MSVC_573728
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CHECK(ia[0] == P{0,"0"});
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CHECK(ia[1] == P{1,"1"});
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CHECK(ia[2] == P{42,"42"});
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CHECK(ia[3] == P{3,"3"});
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CHECK(ia[4] == P{4,"4"});
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}
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{
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using P = std::pair<int,std::string>;
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std::vector<P> ia{{0,"0"}, {1,"1"}, {2,"2"}, {3,"3"}, {4,"4"}};
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auto i = ranges::replace_if(std::move(ia), [](int j){return j==2;}, std::make_pair(42,"42"),
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&std::pair<int,std::string>::first);
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CHECK(::is_dangling(i));
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CHECK(ia[0] == P{0,"0"});
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CHECK(ia[1] == P{1,"1"});
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CHECK(ia[2] == P{42,"42"});
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CHECK(ia[3] == P{3,"3"});
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CHECK(ia[4] == P{4,"4"});
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}
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{
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STATIC_CHECK(test_constexpr());
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}
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return ::test_result();
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}
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