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204 lines
5.1 KiB
C++
204 lines
5.1 KiB
C++
//===----------------------------------------------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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// <algorithm>
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// template<ForwardIterator Iter>
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// requires OutputIterator<Iter, Iter::reference>
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// && EqualityComparable<Iter::value_type>
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// constexpr Iter // constexpr after C++17
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// unique(Iter first, Iter last);
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#include <algorithm>
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#include <cassert>
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#include <memory>
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#include "test_macros.h"
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#include "test_iterators.h"
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#if TEST_STD_VER > 17
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TEST_CONSTEXPR bool test_constexpr() {
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int ia[] = {0, 1, 1, 3, 4};
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const int expected[] = {0, 1, 3, 4};
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const size_t N = 4;
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auto it = std::unique(std::begin(ia), std::end(ia));
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return it == (std::begin(ia) + N)
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&& std::equal(std::begin(ia), it, std::begin(expected), std::end(expected))
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;
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}
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#endif
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template <class Iter>
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void
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test()
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{
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int ia[] = {0};
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const unsigned sa = sizeof(ia)/sizeof(ia[0]);
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Iter r = std::unique(Iter(ia), Iter(ia+sa));
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assert(base(r) == ia + sa);
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assert(ia[0] == 0);
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int ib[] = {0, 1};
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const unsigned sb = sizeof(ib)/sizeof(ib[0]);
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r = std::unique(Iter(ib), Iter(ib+sb));
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assert(base(r) == ib + sb);
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assert(ib[0] == 0);
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assert(ib[1] == 1);
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int ic[] = {0, 0};
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const unsigned sc = sizeof(ic)/sizeof(ic[0]);
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r = std::unique(Iter(ic), Iter(ic+sc));
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assert(base(r) == ic + 1);
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assert(ic[0] == 0);
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int id[] = {0, 0, 1};
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const unsigned sd = sizeof(id)/sizeof(id[0]);
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r = std::unique(Iter(id), Iter(id+sd));
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assert(base(r) == id + 2);
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assert(id[0] == 0);
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assert(id[1] == 1);
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int ie[] = {0, 0, 1, 0};
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const unsigned se = sizeof(ie)/sizeof(ie[0]);
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r = std::unique(Iter(ie), Iter(ie+se));
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assert(base(r) == ie + 3);
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assert(ie[0] == 0);
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assert(ie[1] == 1);
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assert(ie[2] == 0);
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int ig[] = {0, 0, 1, 1};
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const unsigned sg = sizeof(ig)/sizeof(ig[0]);
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r = std::unique(Iter(ig), Iter(ig+sg));
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assert(base(r) == ig + 2);
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assert(ig[0] == 0);
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assert(ig[1] == 1);
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int ih[] = {0, 1, 1};
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const unsigned sh = sizeof(ih)/sizeof(ih[0]);
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r = std::unique(Iter(ih), Iter(ih+sh));
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assert(base(r) == ih + 2);
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assert(ih[0] == 0);
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assert(ih[1] == 1);
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int ii[] = {0, 1, 1, 1, 2, 2, 2};
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const unsigned si = sizeof(ii)/sizeof(ii[0]);
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r = std::unique(Iter(ii), Iter(ii+si));
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assert(base(r) == ii + 3);
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assert(ii[0] == 0);
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assert(ii[1] == 1);
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assert(ii[2] == 2);
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}
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#if TEST_STD_VER >= 11
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struct do_nothing
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{
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void operator()(void*) const {}
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};
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typedef std::unique_ptr<int, do_nothing> Ptr;
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template <class Iter>
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void
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test1()
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{
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int one = 1;
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int two = 2;
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Ptr ia[1];
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const unsigned sa = sizeof(ia)/sizeof(ia[0]);
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Iter r = std::unique(Iter(ia), Iter(ia+sa));
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assert(base(r) == ia + sa);
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assert(ia[0] == 0);
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Ptr ib[2];
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ib[1].reset(&one);
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const unsigned sb = sizeof(ib)/sizeof(ib[0]);
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r = std::unique(Iter(ib), Iter(ib+sb));
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assert(base(r) == ib + sb);
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assert(ib[0] == 0);
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assert(*ib[1] == 1);
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Ptr ic[2];
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const unsigned sc = sizeof(ic)/sizeof(ic[0]);
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r = std::unique(Iter(ic), Iter(ic+sc));
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assert(base(r) == ic + 1);
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assert(ic[0] == 0);
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Ptr id[3];
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id[2].reset(&one);
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const unsigned sd = sizeof(id)/sizeof(id[0]);
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r = std::unique(Iter(id), Iter(id+sd));
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assert(base(r) == id + 2);
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assert(id[0] == 0);
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assert(*id[1] == 1);
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Ptr ie[4];
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ie[2].reset(&one);
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const unsigned se = sizeof(ie)/sizeof(ie[0]);
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r = std::unique(Iter(ie), Iter(ie+se));
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assert(base(r) == ie + 3);
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assert(ie[0] == 0);
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assert(*ie[1] == 1);
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assert(ie[2] == 0);
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Ptr ig[4];
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ig[2].reset(&one);
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ig[3].reset(&one);
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const unsigned sg = sizeof(ig)/sizeof(ig[0]);
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r = std::unique(Iter(ig), Iter(ig+sg));
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assert(base(r) == ig + 2);
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assert(ig[0] == 0);
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assert(*ig[1] == 1);
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Ptr ih[3];
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ih[1].reset(&one);
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ih[2].reset(&one);
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const unsigned sh = sizeof(ih)/sizeof(ih[0]);
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r = std::unique(Iter(ih), Iter(ih+sh));
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assert(base(r) == ih + 2);
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assert(ih[0] == 0);
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assert(*ih[1] == 1);
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Ptr ii[7];
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ii[1].reset(&one);
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ii[2].reset(&one);
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ii[3].reset(&one);
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ii[4].reset(&two);
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ii[5].reset(&two);
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ii[6].reset(&two);
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const unsigned si = sizeof(ii)/sizeof(ii[0]);
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r = std::unique(Iter(ii), Iter(ii+si));
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assert(base(r) == ii + 3);
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assert(ii[0] == 0);
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assert(*ii[1] == 1);
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assert(*ii[2] == 2);
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}
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#endif // TEST_STD_VER >= 11
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int main(int, char**)
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{
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test<forward_iterator<int*> >();
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test<bidirectional_iterator<int*> >();
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test<random_access_iterator<int*> >();
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test<int*>();
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#if TEST_STD_VER >= 11
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test1<forward_iterator<Ptr*> >();
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test1<bidirectional_iterator<Ptr*> >();
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test1<random_access_iterator<Ptr*> >();
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test1<Ptr*>();
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#endif
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#if TEST_STD_VER > 17
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static_assert(test_constexpr());
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#endif
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return 0;
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}
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