forked from OSchip/llvm-project
334 lines
11 KiB
C++
334 lines
11 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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// UNSUPPORTED: c++03, c++11, c++14, c++17
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// <algorithm>
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// template<input_iterator I, sentinel_for<I> S, weakly_incrementable O, class Gen>
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// requires (forward_iterator<I> || random_access_iterator<O>) &&
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// indirectly_copyable<I, O> &&
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// uniform_random_bit_generator<remove_reference_t<Gen>>
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// O sample(I first, S last, O out, iter_difference_t<I> n, Gen&& g); // Since C++20
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//
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// template<input_range R, weakly_incrementable O, class Gen>
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// requires (forward_range<R> || random_access_iterator<O>) &&
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// indirectly_copyable<iterator_t<R>, O> &&
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// uniform_random_bit_generator<remove_reference_t<Gen>>
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// O sample(R&& r, O out, range_difference_t<R> n, Gen&& g); // Since C++20
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#include <algorithm>
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#include <array>
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#include <concepts>
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#include <functional>
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#include <random>
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#include <ranges>
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#include <utility>
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#include "almost_satisfies_types.h"
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#include "test_iterators.h"
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#include "test_macros.h"
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class RandGen {
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public:
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constexpr static size_t min() { return 0; }
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constexpr static size_t max() { return 255; }
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constexpr size_t operator()() {
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flip = !flip;
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return flip;
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}
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private:
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bool flip = false;
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};
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static_assert(std::uniform_random_bit_generator<RandGen>);
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// `std::uniform_random_bit_generator` is a subset of requirements of `__libcpp_random_is_valid_urng`. Make sure that
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// a type satisfying the required minimum is still accepted by `ranges::shuffle`.
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LIBCPP_STATIC_ASSERT(!std::__libcpp_random_is_valid_urng<RandGen>::value);
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struct BadGen {
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constexpr static size_t min() { return 255; }
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constexpr static size_t max() { return 0; }
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constexpr size_t operator()() const;
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};
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static_assert(!std::uniform_random_bit_generator<BadGen>);
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// Test constraints of the (iterator, sentinel) overload.
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// ======================================================
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template <class Iter = int*, class Sent = int*, class Out = int*, class Gen = RandGen>
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concept HasSampleIter =
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requires(Iter&& iter, Sent&& sent, Out&& out, std::iter_difference_t<Iter> n, Gen&& gen) {
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std::ranges::sample(std::forward<Iter>(iter), std::forward<Sent>(sent),
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std::forward<Out>(out), n, std::forward<Gen>(gen));
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};
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static_assert(HasSampleIter<int*, int*, int*, RandGen>);
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// !input_iterator<I>
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static_assert(!HasSampleIter<InputIteratorNotDerivedFrom>);
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static_assert(!HasSampleIter<InputIteratorNotIndirectlyReadable>);
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static_assert(!HasSampleIter<InputIteratorNotInputOrOutputIterator>);
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// !sentinel_for<S, I>
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static_assert(!HasSampleIter<int*, SentinelForNotSemiregular>);
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static_assert(!HasSampleIter<int*, SentinelForNotWeaklyEqualityComparableWith>);
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// !weakly_incrementable<O>
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static_assert(!HasSampleIter<int*, int*, WeaklyIncrementableNotMovable>);
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// (forward_iterator<I> || random_access_iterator<O>)
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static_assert(HasSampleIter<
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forward_iterator<int*>, forward_iterator<int*>,
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cpp20_output_iterator<int*>
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>);
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static_assert(HasSampleIter<
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cpp20_input_iterator<int*>, sentinel_wrapper<cpp20_input_iterator<int*>>,
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random_access_iterator<int*>
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>);
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// !(forward_iterator<I> || random_access_iterator<O>)
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static_assert(!HasSampleIter<
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cpp20_input_iterator<int*>, sentinel_wrapper<cpp20_input_iterator<int*>>,
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cpp20_output_iterator<int*>
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>);
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// !indirectly_copyable<I, O>
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static_assert(!HasSampleIter<int*, int*, int**>);
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// !uniform_random_bit_generator<remove_reference_t<Gen>>
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static_assert(!HasSampleIter<int*, int*, int*, BadGen>);
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// Test constraints of the (range) overload.
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// =========================================
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template <class Range, class Out = int*, class Gen = RandGen>
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concept HasSampleRange =
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requires(Range&& range, Out&& out, std::ranges::range_difference_t<Range> n, Gen&& gen) {
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std::ranges::sample(std::forward<Range>(range), std::forward<Out>(out), n, std::forward<Gen>(gen));
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};
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template <class T>
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using R = UncheckedRange<T>;
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static_assert(HasSampleRange<R<int*>, int*, RandGen>);
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// !input_range<R>
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static_assert(!HasSampleRange<InputRangeNotDerivedFrom>);
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static_assert(!HasSampleRange<InputRangeNotIndirectlyReadable>);
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static_assert(!HasSampleRange<InputRangeNotInputOrOutputIterator>);
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// !weakly_incrementable<O>
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static_assert(!HasSampleRange<R<int*>, WeaklyIncrementableNotMovable>);
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// (forward_range<R> || random_access_iterator<O>)
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static_assert(HasSampleRange<
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R<forward_iterator<int*>>,
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cpp20_output_iterator<int*>
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>);
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static_assert(HasSampleRange<
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R<cpp20_input_iterator<int*>>,
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random_access_iterator<int*>
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>);
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// !(forward_range<R> || random_access_iterator<O>)
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static_assert(!HasSampleRange<
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R<cpp20_input_iterator<int*>>,
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cpp20_output_iterator<int*>
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>);
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// !indirectly_copyable<I, O>
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static_assert(!HasSampleRange<R<int*>, int**>);
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// !uniform_random_bit_generator<remove_reference_t<Gen>>
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static_assert(!HasSampleRange<R<int*>, int*, BadGen>);
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template <class Iter, class Sent, class Out, size_t N, class Gen>
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void test_one(std::array<int, N> in, size_t n, Gen gen) {
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assert(n <= static_cast<size_t>(N));
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auto verify_is_subsequence = [&] (auto output) {
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auto sorted_input = in;
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std::ranges::sort(sorted_input);
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auto sorted_output = std::ranges::subrange(output.begin(), output.begin() + n);
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std::ranges::sort(sorted_output);
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assert(std::ranges::includes(sorted_input, sorted_output));
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};
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{ // (iterator, sentinel) overload.
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auto begin = Iter(in.data());
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auto end = Sent(Iter(in.data() + in.size()));
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std::array<int, N> output;
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auto out = Out(output.begin());
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std::same_as<Out> decltype(auto) result = std::ranges::sample(
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std::move(begin), std::move(end), std::move(out), n, gen);
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assert(base(result) == output.data() + n);
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verify_is_subsequence(output);
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// The output of `sample` is implementation-specific.
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}
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{ // (range) overload.
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auto begin = Iter(in.data());
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auto end = Sent(Iter(in.data() + in.size()));
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std::array<int, N> output;
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auto out = Out(output.begin());
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std::same_as<Out> decltype(auto) result = std::ranges::sample(std::ranges::subrange(
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std::move(begin), std::move(end)), std::move(out), n, gen);
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assert(base(result) == output.data() + n);
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verify_is_subsequence(output);
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// The output of `sample` is implementation-specific.
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}
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}
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template <class Iter, class Sent, class Out>
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void test_iterators_iter_sent_out() {
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RandGen gen;
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// Empty sequence.
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test_one<Iter, Sent, Out, 0>({}, 0, gen);
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// 1-element sequence.
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test_one<Iter, Sent, Out, 1>({1}, 1, gen);
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// 2-element sequence.
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test_one<Iter, Sent, Out, 2>({1, 2}, 1, gen);
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test_one<Iter, Sent, Out, 2>({1, 2}, 2, gen);
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// n == 0.
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test_one<Iter, Sent, Out, 3>({1, 2, 3}, 0, gen);
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// Longer sequence.
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{
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std::array input = {1, 8, 2, 3, 4, 6, 5, 7};
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for (int i = 0; i <= static_cast<int>(input.size()); ++i){
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test_one<Iter, Sent, Out, input.size()>(input, i, gen);
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}
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}
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}
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template <class Iter, class Sent>
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void test_iterators_iter_sent() {
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if constexpr (std::forward_iterator<Iter>) {
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test_iterators_iter_sent_out<Iter, Sent, cpp20_output_iterator<int*>>();
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test_iterators_iter_sent_out<Iter, Sent, forward_iterator<int*>>();
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}
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test_iterators_iter_sent_out<Iter, Sent, random_access_iterator<int*>>();
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test_iterators_iter_sent_out<Iter, Sent, contiguous_iterator<int*>>();
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test_iterators_iter_sent_out<Iter, Sent, int*>();
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}
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template <class Iter>
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void test_iterators_iter() {
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if constexpr (std::sentinel_for<Iter, Iter>) {
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test_iterators_iter_sent<Iter, Iter>();
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}
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test_iterators_iter_sent<Iter, sentinel_wrapper<Iter>>();
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}
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void test_iterators() {
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test_iterators_iter<cpp20_input_iterator<int*>>();
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test_iterators_iter<random_access_iterator<int*>>();
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test_iterators_iter<contiguous_iterator<int*>>();
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test_iterators_iter<int*>();
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test_iterators_iter<const int*>();
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}
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// Checks the logic for wrapping the given iterator to make sure it works correctly regardless of the value category of
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// the given generator object.
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template <class Gen, bool CheckConst = true>
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void test_generator() {
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std::array in = {1, 2, 3, 4, 5, 6, 7, 8};
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constexpr int N = 5;
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std::array<int, N> output;
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auto begin = in.begin();
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auto end = in.end();
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auto out = output.begin();
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{ // Lvalue.
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Gen g;
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std::ranges::sample(begin, end, out, N, g);
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std::ranges::sample(in, out, N, g);
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}
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if constexpr (CheckConst) { // Const lvalue.
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const Gen g;
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std::ranges::sample(begin, end, out, N, g);
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std::ranges::sample(in, out, N, g);
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}
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{ // Prvalue.
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std::ranges::sample(begin, end, out, N, Gen());
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std::ranges::sample(in, out, N, Gen());
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}
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{ // Xvalue.
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Gen g1, g2;
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std::ranges::sample(begin, end, out, N, std::move(g1));
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std::ranges::sample(in, out, N, std::move(g2));
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}
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}
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// Checks the logic for wrapping the given iterator to make sure it works correctly regardless of whether the given
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// generator class has a const or non-const invocation operator (or both).
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void test_generators() {
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struct GenBase {
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constexpr static size_t min() { return 0; }
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constexpr static size_t max() { return 255; }
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};
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struct NonconstGen : GenBase {
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size_t operator()() { return 1; }
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};
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struct ConstGen : GenBase {
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size_t operator()() const { return 1; }
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};
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struct ConstAndNonconstGen : GenBase {
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size_t operator()() { return 1; }
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size_t operator()() const { return 1; }
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};
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test_generator<ConstGen>();
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test_generator<NonconstGen, /*CheckConst=*/false>();
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test_generator<ConstAndNonconstGen>();
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}
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void test() {
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test_iterators();
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test_generators();
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{ // Stable (if `I` models `forward_iterator`).
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struct OrderedValue {
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int value;
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int original_order;
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bool operator==(const OrderedValue&) const = default;
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auto operator<=>(const OrderedValue& rhs) const { return value <=> rhs.value; }
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};
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const std::array<OrderedValue, 8> in = {{
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{1, 1}, {1, 2}, {1, 3}, {1, 4}, {1, 5}, {1, 6}, {1, 7}, {1, 8}
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}};
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{ // (iterator, sentinel) overload.
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std::array<OrderedValue, in.size()> out;
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std::ranges::sample(in.begin(), in.end(), out.begin(), in.size(), RandGen());
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assert(out == in);
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}
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{ // (range) overload.
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std::array<OrderedValue, in.size()> out;
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std::ranges::sample(in, out.begin(), in.size(), RandGen());
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assert(out == in);
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}
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}
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}
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int main(int, char**) {
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test();
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// Note: `ranges::sample` is not `constexpr`.
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return 0;
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}
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