xref: /freebsd-src/contrib/llvm-project/libcxx/include/__iterator/advance.h (revision 647cbc5de815c5651677bf8582797f716ec7b48d)
1 // -*- C++ -*-
2 //===----------------------------------------------------------------------===//
3 //
4 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
5 // See https://llvm.org/LICENSE.txt for license information.
6 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
7 //
8 //===----------------------------------------------------------------------===//
9 
10 #ifndef _LIBCPP___ITERATOR_ADVANCE_H
11 #define _LIBCPP___ITERATOR_ADVANCE_H
12 
13 #include <__assert>
14 #include <__concepts/assignable.h>
15 #include <__concepts/same_as.h>
16 #include <__config>
17 #include <__iterator/concepts.h>
18 #include <__iterator/incrementable_traits.h>
19 #include <__iterator/iterator_traits.h>
20 #include <__type_traits/enable_if.h>
21 #include <__type_traits/is_integral.h>
22 #include <__utility/convert_to_integral.h>
23 #include <__utility/declval.h>
24 #include <__utility/move.h>
25 #include <__utility/unreachable.h>
26 #include <limits>
27 
28 #if !defined(_LIBCPP_HAS_NO_PRAGMA_SYSTEM_HEADER)
29 #  pragma GCC system_header
30 #endif
31 
32 _LIBCPP_PUSH_MACROS
33 #include <__undef_macros>
34 
35 _LIBCPP_BEGIN_NAMESPACE_STD
36 
37 template <class _InputIter>
38 _LIBCPP_HIDE_FROM_ABI _LIBCPP_CONSTEXPR_SINCE_CXX17 void
39 __advance(_InputIter& __i, typename iterator_traits<_InputIter>::difference_type __n, input_iterator_tag) {
40   for (; __n > 0; --__n)
41     ++__i;
42 }
43 
44 template <class _BiDirIter>
45 _LIBCPP_HIDE_FROM_ABI _LIBCPP_CONSTEXPR_SINCE_CXX17 void
46 __advance(_BiDirIter& __i, typename iterator_traits<_BiDirIter>::difference_type __n, bidirectional_iterator_tag) {
47   if (__n >= 0)
48     for (; __n > 0; --__n)
49       ++__i;
50   else
51     for (; __n < 0; ++__n)
52       --__i;
53 }
54 
55 template <class _RandIter>
56 _LIBCPP_HIDE_FROM_ABI _LIBCPP_CONSTEXPR_SINCE_CXX17 void
57 __advance(_RandIter& __i, typename iterator_traits<_RandIter>::difference_type __n, random_access_iterator_tag) {
58   __i += __n;
59 }
60 
61 template < class _InputIter,
62            class _Distance,
63            class _IntegralDistance = decltype(std::__convert_to_integral(std::declval<_Distance>())),
64            class                   = __enable_if_t<is_integral<_IntegralDistance>::value> >
65 _LIBCPP_HIDE_FROM_ABI _LIBCPP_CONSTEXPR_SINCE_CXX17 void advance(_InputIter& __i, _Distance __orig_n) {
66   typedef typename iterator_traits<_InputIter>::difference_type _Difference;
67   _Difference __n = static_cast<_Difference>(std::__convert_to_integral(__orig_n));
68   _LIBCPP_ASSERT_UNCATEGORIZED(__n >= 0 || __has_bidirectional_iterator_category<_InputIter>::value,
69                                "Attempt to advance(it, n) with negative n on a non-bidirectional iterator");
70   std::__advance(__i, __n, typename iterator_traits<_InputIter>::iterator_category());
71 }
72 
73 #if _LIBCPP_STD_VER >= 20
74 
75 // [range.iter.op.advance]
76 
77 namespace ranges {
78 namespace __advance {
79 
80 struct __fn {
81 private:
82   template <class _Ip>
83   _LIBCPP_HIDE_FROM_ABI static constexpr void __advance_forward(_Ip& __i, iter_difference_t<_Ip> __n) {
84     while (__n > 0) {
85       --__n;
86       ++__i;
87     }
88   }
89 
90   template <class _Ip>
91   _LIBCPP_HIDE_FROM_ABI static constexpr void __advance_backward(_Ip& __i, iter_difference_t<_Ip> __n) {
92     while (__n < 0) {
93       ++__n;
94       --__i;
95     }
96   }
97 
98 public:
99   // Preconditions: If `I` does not model `bidirectional_iterator`, `n` is not negative.
100   template <input_or_output_iterator _Ip>
101   _LIBCPP_HIDE_FROM_ABI constexpr void operator()(_Ip& __i, iter_difference_t<_Ip> __n) const {
102     _LIBCPP_ASSERT_UNCATEGORIZED(
103         __n >= 0 || bidirectional_iterator<_Ip>, "If `n < 0`, then `bidirectional_iterator<I>` must be true.");
104 
105     // If `I` models `random_access_iterator`, equivalent to `i += n`.
106     if constexpr (random_access_iterator<_Ip>) {
107       __i += __n;
108       return;
109     } else if constexpr (bidirectional_iterator<_Ip>) {
110       // Otherwise, if `n` is non-negative, increments `i` by `n`.
111       __advance_forward(__i, __n);
112       // Otherwise, decrements `i` by `-n`.
113       __advance_backward(__i, __n);
114       return;
115     } else {
116       // Otherwise, if `n` is non-negative, increments `i` by `n`.
117       __advance_forward(__i, __n);
118       return;
119     }
120   }
121 
122   // Preconditions: Either `assignable_from<I&, S> || sized_sentinel_for<S, I>` is modeled, or [i, bound_sentinel)
123   // denotes a range.
124   template <input_or_output_iterator _Ip, sentinel_for<_Ip> _Sp>
125   _LIBCPP_HIDE_FROM_ABI constexpr void operator()(_Ip& __i, _Sp __bound_sentinel) const {
126     // If `I` and `S` model `assignable_from<I&, S>`, equivalent to `i = std::move(bound_sentinel)`.
127     if constexpr (assignable_from<_Ip&, _Sp>) {
128       __i = std::move(__bound_sentinel);
129     }
130     // Otherwise, if `S` and `I` model `sized_sentinel_for<S, I>`, equivalent to `ranges::advance(i, bound_sentinel -
131     // i)`.
132     else if constexpr (sized_sentinel_for<_Sp, _Ip>) {
133       (*this)(__i, __bound_sentinel - __i);
134     }
135     // Otherwise, while `bool(i != bound_sentinel)` is true, increments `i`.
136     else {
137       while (__i != __bound_sentinel) {
138         ++__i;
139       }
140     }
141   }
142 
143   // Preconditions:
144   //   * If `n > 0`, [i, bound_sentinel) denotes a range.
145   //   * If `n == 0`, [i, bound_sentinel) or [bound_sentinel, i) denotes a range.
146   //   * If `n < 0`, [bound_sentinel, i) denotes a range, `I` models `bidirectional_iterator`, and `I` and `S` model
147   //   `same_as<I, S>`.
148   // Returns: `n - M`, where `M` is the difference between the ending and starting position.
149   template <input_or_output_iterator _Ip, sentinel_for<_Ip> _Sp>
150   _LIBCPP_HIDE_FROM_ABI constexpr iter_difference_t<_Ip>
151   operator()(_Ip& __i, iter_difference_t<_Ip> __n, _Sp __bound_sentinel) const {
152     _LIBCPP_ASSERT_UNCATEGORIZED((__n >= 0) || (bidirectional_iterator<_Ip> && same_as<_Ip, _Sp>),
153                                  "If `n < 0`, then `bidirectional_iterator<I> && same_as<I, S>` must be true.");
154     // If `S` and `I` model `sized_sentinel_for<S, I>`:
155     if constexpr (sized_sentinel_for<_Sp, _Ip>) {
156       // If |n| >= |bound_sentinel - i|, equivalent to `ranges::advance(i, bound_sentinel)`.
157       // __magnitude_geq(a, b) returns |a| >= |b|, assuming they have the same sign.
158       auto __magnitude_geq = [](auto __a, auto __b) { return __a == 0 ? __b == 0 : __a > 0 ? __a >= __b : __a <= __b; };
159       if (const auto __m = __bound_sentinel - __i; __magnitude_geq(__n, __m)) {
160         (*this)(__i, __bound_sentinel);
161         return __n - __m;
162       }
163 
164       // Otherwise, equivalent to `ranges::advance(i, n)`.
165       (*this)(__i, __n);
166       return 0;
167     } else {
168       // Otherwise, if `n` is non-negative, while `bool(i != bound_sentinel)` is true, increments `i` but at
169       // most `n` times.
170       while (__i != __bound_sentinel && __n > 0) {
171         ++__i;
172         --__n;
173       }
174 
175       // Otherwise, while `bool(i != bound_sentinel)` is true, decrements `i` but at most `-n` times.
176       if constexpr (bidirectional_iterator<_Ip> && same_as<_Ip, _Sp>) {
177         while (__i != __bound_sentinel && __n < 0) {
178           --__i;
179           ++__n;
180         }
181       }
182       return __n;
183     }
184 
185     __libcpp_unreachable();
186   }
187 };
188 
189 } // namespace __advance
190 
191 inline namespace __cpo {
192 inline constexpr auto advance = __advance::__fn{};
193 } // namespace __cpo
194 } // namespace ranges
195 
196 #endif // _LIBCPP_STD_VER >= 20
197 
198 _LIBCPP_END_NAMESPACE_STD
199 
200 _LIBCPP_POP_MACROS
201 
202 #endif // _LIBCPP___ITERATOR_ADVANCE_H
203