
to reflect the new license. These used slightly different spellings that defeated my regular expressions. We understand that people may be surprised that we're moving the header entirely to discuss the new license. We checked this carefully with the Foundation's lawyer and we believe this is the correct approach. Essentially, all code in the project is now made available by the LLVM project under our new license, so you will see that the license headers include that license only. Some of our contributors have contributed code under our old license, and accordingly, we have retained a copy of our old license notice in the top-level files in each project and repository. llvm-svn: 351648
144 lines
5.0 KiB
C++
144 lines
5.0 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<InputIterator InIter, class OutIter>
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// requires OutputIterator<OutIter, RvalueOf<InIter::value_type>::type>
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// && EqualityComparable<InIter::value_type>
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// && HasAssign<InIter::value_type, InIter::reference>
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// && Constructible<InIter::value_type, InIter::reference>
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// constexpr OutIter // constexpr after C++17
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// unique_copy(InIter first, InIter last, OutIter result);
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#include <algorithm>
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#include <cassert>
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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, 2, 2, 4};
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int ib[] = {0, 0, 0, 0, 0};
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const int expected[] = {0, 1, 2, 4};
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auto it = std::unique_copy(std::begin(ia), std::end(ia), std::begin(ib));
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return it == (std::begin(ib) + std::size(expected))
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&& *it == 0 // don't overwrite final value in output
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&& std::equal(std::begin(ib), 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 InIter, class OutIter>
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void
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test()
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{
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const int ia[] = {0};
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const unsigned sa = sizeof(ia)/sizeof(ia[0]);
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int ja[sa] = {-1};
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OutIter r = std::unique_copy(InIter(ia), InIter(ia+sa), OutIter(ja));
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assert(base(r) == ja + sa);
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assert(ja[0] == 0);
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const int ib[] = {0, 1};
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const unsigned sb = sizeof(ib)/sizeof(ib[0]);
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int jb[sb] = {-1};
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r = std::unique_copy(InIter(ib), InIter(ib+sb), OutIter(jb));
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assert(base(r) == jb + sb);
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assert(jb[0] == 0);
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assert(jb[1] == 1);
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const int ic[] = {0, 0};
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const unsigned sc = sizeof(ic)/sizeof(ic[0]);
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int jc[sc] = {-1};
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r = std::unique_copy(InIter(ic), InIter(ic+sc), OutIter(jc));
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assert(base(r) == jc + 1);
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assert(jc[0] == 0);
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const int id[] = {0, 0, 1};
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const unsigned sd = sizeof(id)/sizeof(id[0]);
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int jd[sd] = {-1};
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r = std::unique_copy(InIter(id), InIter(id+sd), OutIter(jd));
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assert(base(r) == jd + 2);
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assert(jd[0] == 0);
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assert(jd[1] == 1);
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const int ie[] = {0, 0, 1, 0};
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const unsigned se = sizeof(ie)/sizeof(ie[0]);
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int je[se] = {-1};
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r = std::unique_copy(InIter(ie), InIter(ie+se), OutIter(je));
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assert(base(r) == je + 3);
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assert(je[0] == 0);
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assert(je[1] == 1);
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assert(je[2] == 0);
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const int ig[] = {0, 0, 1, 1};
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const unsigned sg = sizeof(ig)/sizeof(ig[0]);
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int jg[sg] = {-1};
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r = std::unique_copy(InIter(ig), InIter(ig+sg), OutIter(jg));
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assert(base(r) == jg + 2);
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assert(jg[0] == 0);
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assert(jg[1] == 1);
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const int ih[] = {0, 1, 1};
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const unsigned sh = sizeof(ih)/sizeof(ih[0]);
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int jh[sh] = {-1};
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r = std::unique_copy(InIter(ih), InIter(ih+sh), OutIter(jh));
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assert(base(r) == jh + 2);
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assert(jh[0] == 0);
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assert(jh[1] == 1);
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const 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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int ji[si] = {-1};
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r = std::unique_copy(InIter(ii), InIter(ii+si), OutIter(ji));
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assert(base(r) == ji + 3);
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assert(ji[0] == 0);
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assert(ji[1] == 1);
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assert(ji[2] == 2);
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}
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int main()
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{
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test<input_iterator<const int*>, output_iterator<int*> >();
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test<input_iterator<const int*>, forward_iterator<int*> >();
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test<input_iterator<const int*>, bidirectional_iterator<int*> >();
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test<input_iterator<const int*>, random_access_iterator<int*> >();
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test<input_iterator<const int*>, int*>();
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test<forward_iterator<const int*>, output_iterator<int*> >();
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test<forward_iterator<const int*>, forward_iterator<int*> >();
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test<forward_iterator<const int*>, bidirectional_iterator<int*> >();
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test<forward_iterator<const int*>, random_access_iterator<int*> >();
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test<forward_iterator<const int*>, int*>();
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test<bidirectional_iterator<const int*>, output_iterator<int*> >();
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test<bidirectional_iterator<const int*>, forward_iterator<int*> >();
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test<bidirectional_iterator<const int*>, bidirectional_iterator<int*> >();
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test<bidirectional_iterator<const int*>, random_access_iterator<int*> >();
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test<bidirectional_iterator<const int*>, int*>();
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test<random_access_iterator<const int*>, output_iterator<int*> >();
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test<random_access_iterator<const int*>, forward_iterator<int*> >();
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test<random_access_iterator<const int*>, bidirectional_iterator<int*> >();
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test<random_access_iterator<const int*>, random_access_iterator<int*> >();
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test<random_access_iterator<const int*>, int*>();
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test<const int*, output_iterator<int*> >();
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test<const int*, forward_iterator<int*> >();
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test<const int*, bidirectional_iterator<int*> >();
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test<const int*, random_access_iterator<int*> >();
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test<const int*, int*>();
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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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}
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