libstdc++
mdspan
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1// <mdspan> -*- C++ -*-
2
3// Copyright The GNU Toolchain Authors.
4//
5// This file is part of the GNU ISO C++ Library. This library is free
6// software; you can redistribute it and/or modify it under the
7// terms of the GNU General Public License as published by the
8// Free Software Foundation; either version 3, or (at your option)
9// any later version.
10
11// This library is distributed in the hope that it will be useful,
12// but WITHOUT ANY WARRANTY; without even the implied warranty of
13// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14// GNU General Public License for more details.
15
16// Under Section 7 of GPL version 3, you are granted additional
17// permissions described in the GCC Runtime Library Exception, version
18// 3.1, as published by the Free Software Foundation.
19
20// You should have received a copy of the GNU General Public License and
21// a copy of the GCC Runtime Library Exception along with this program;
22// see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
23// <http://www.gnu.org/licenses/>.
24
25/** @file mdspan
26 * This is a Standard C++ Library header.
27 */
28
29#ifndef _GLIBCXX_MDSPAN
30#define _GLIBCXX_MDSPAN 1
31
32#ifdef _GLIBCXX_SYSHDR
33#pragma GCC system_header
34#endif
35
36#include <span>
37#include <array>
38#include <type_traits>
39#include <utility>
40
41#define __glibcxx_want_mdspan
42#define __glibcxx_want_aligned_accessor
43#define __glibcxx_want_submdspan
44#include <bits/version.h>
45
46#if __glibcxx_aligned_accessor
47#include <bits/align.h>
48#endif
49
50#if __glibcxx_submdspan
51#include <tuple>
52#endif
53
54#if __cplusplus > 202302L
56#endif
57
58#ifdef __glibcxx_mdspan
59
60namespace std _GLIBCXX_VISIBILITY(default)
61{
62_GLIBCXX_BEGIN_NAMESPACE_VERSION
63 namespace __mdspan
64 {
65 consteval bool
66 __all_static(std::span<const size_t> __extents)
67 {
68 for(auto __ext : __extents)
69 if (__ext == dynamic_extent)
70 return false;
71 return true;
72 }
73
74 consteval bool
75 __all_dynamic(std::span<const size_t> __extents)
76 {
77 for(auto __ext : __extents)
78 if (__ext != dynamic_extent)
79 return false;
80 return true;
81 }
82
83 template<typename _IndexType, typename _OIndexTypeRef>
84 constexpr _IndexType
85 __index_type_cast(_OIndexTypeRef&& __other)
86 {
87 // _GLIBCXX_RESOLVE_LIB_DEFECTS
88 // 4020. extents::index-cast weirdness
89 using _OIndexType = std::remove_cvref_t<_OIndexTypeRef>;
90 if constexpr (std::is_integral_v<_OIndexType>)
91 {
92 constexpr _IndexType __index_type_max
93 = __gnu_cxx::__int_traits<_IndexType>::__max;
94 constexpr _OIndexType __oindex_type_max
95 = __gnu_cxx::__int_traits<_OIndexType>::__max;
96
97 if constexpr (__index_type_max < __oindex_type_max)
98 __glibcxx_assert(cmp_less_equal(__other, __index_type_max));
99
100 if constexpr (std::is_signed_v<_OIndexType>)
101 __glibcxx_assert(__other >= 0);
102 return static_cast<_IndexType>(__other);
103 }
104 else
105 {
106 // _GLIBCXX_RESOLVE_LIB_DEFECTS
107 // 4314. Missing move in mdspan layout mapping::operator()
108 auto __ret = static_cast<_IndexType>(std::forward<_OIndexTypeRef>(__other));
109 if constexpr (std::is_signed_v<_IndexType>)
110 __glibcxx_assert(__ret >= 0);
111 return __ret;
112 }
113 }
114
115 template<array _Extents>
116 class _StaticExtents
117 {
118 public:
119 static constexpr size_t _S_rank = _Extents.size();
120
121 // For __r in [0, _S_rank], _S_dynamic_index(__r) is the number
122 // of dynamic extents up to (and not including) __r.
123 //
124 // If __r is the index of a dynamic extent, then
125 // _S_dynamic_index[__r] is the index of that extent in
126 // _M_dyn_exts.
127 static constexpr size_t
128 _S_dynamic_index(size_t __r) noexcept
129 { return _S_dynamic_index_data[__r]; }
130
131 static constexpr auto _S_dynamic_index_data = [] consteval
132 {
133 array<size_t, _S_rank+1> __ret;
134 size_t __dyn = 0;
135 for (size_t __i = 0; __i < _S_rank; ++__i)
136 {
137 __ret[__i] = __dyn;
138 __dyn += (_Extents[__i] == dynamic_extent);
139 }
140 __ret[_S_rank] = __dyn;
141 return __ret;
142 }();
143
144 static constexpr size_t _S_rank_dynamic = _S_dynamic_index(_S_rank);
145
146 // For __r in [0, _S_rank_dynamic), _S_dynamic_index_inv(__r) is the
147 // index of the __r-th dynamic extent in _Extents.
148 static constexpr size_t
149 _S_dynamic_index_inv(size_t __r) noexcept
150 { return _S_dynamic_index_inv_data[__r]; }
151
152 static constexpr auto _S_dynamic_index_inv_data = [] consteval
153 {
154 array<size_t, _S_rank_dynamic> __ret;
155 for (size_t __i = 0, __r = 0; __i < _S_rank; ++__i)
156 if (_Extents[__i] == dynamic_extent)
157 __ret[__r++] = __i;
158 return __ret;
159 }();
160
161 static constexpr size_t
162 _S_static_extent(size_t __r) noexcept
163 { return _Extents[__r]; }
164 };
165
166 template<array _Extents>
167 requires (__all_dynamic<_Extents>())
168 class _StaticExtents<_Extents>
169 {
170 public:
171 static constexpr size_t _S_rank = _Extents.size();
172
173 static constexpr size_t
174 _S_dynamic_index(size_t __r) noexcept
175 { return __r; }
176
177 static constexpr size_t _S_rank_dynamic = _S_rank;
178
179 static constexpr size_t
180 _S_dynamic_index_inv(size_t __k) noexcept
181 { return __k; }
182
183 static constexpr size_t
184 _S_static_extent(size_t) noexcept
185 { return dynamic_extent; }
186 };
187
188 template<typename _IndexType, array _Extents>
189 class _ExtentsStorage : public _StaticExtents<_Extents>
190 {
191 private:
192 using _Base = _StaticExtents<_Extents>;
193
194 public:
195 using _Base::_S_rank;
196 using _Base::_S_rank_dynamic;
197 using _Base::_S_dynamic_index;
198 using _Base::_S_dynamic_index_inv;
199 using _Base::_S_static_extent;
200
201 static constexpr bool
202 _S_is_dynamic(size_t __r) noexcept
203 {
204 if constexpr (__all_static(_Extents))
205 return false;
206 else if constexpr (__all_dynamic(_Extents))
207 return true;
208 else
209 return _Extents[__r] == dynamic_extent;
210 }
211
212 template<typename _OIndexType>
213 static constexpr _IndexType
214 _S_int_cast(const _OIndexType& __other) noexcept
215 { return _IndexType(__other); }
216
217 constexpr _IndexType
218 _M_extent(size_t __r) const noexcept
219 {
220 if (_S_is_dynamic(__r))
221 return _M_dyn_exts[_S_dynamic_index(__r)];
222 else
223 return _S_static_extent(__r);
224 }
225
226 template<size_t _OtherRank, typename _GetOtherExtent>
227 static constexpr bool
228 _S_is_compatible_extents(_GetOtherExtent __get_extent) noexcept
229 {
230 if constexpr (_OtherRank == _S_rank)
231 for (size_t __i = 0; __i < _S_rank; ++__i)
232 if (!_S_is_dynamic(__i)
233 && !cmp_equal(_Extents[__i], _S_int_cast(__get_extent(__i))))
234 return false;
235 return true;
236 }
237
238 template<size_t _OtherRank, typename _GetOtherExtent>
239 constexpr void
240 _M_init_dynamic_extents(_GetOtherExtent __get_extent) noexcept
241 {
242 __glibcxx_assert(_S_is_compatible_extents<_OtherRank>(__get_extent));
243 for (size_t __i = 0; __i < _S_rank_dynamic; ++__i)
244 {
245 size_t __di = __i;
246 if constexpr (_OtherRank != _S_rank_dynamic)
247 __di = _S_dynamic_index_inv(__i);
248 _M_dyn_exts[__i] = _S_int_cast(__get_extent(__di));
249 }
250 }
251
252 constexpr
253 _ExtentsStorage() noexcept = default;
254
255 template<typename _OIndexType, array _OExtents>
256 constexpr
257 _ExtentsStorage(const _ExtentsStorage<_OIndexType, _OExtents>&
258 __other) noexcept
259 {
260 _M_init_dynamic_extents<_S_rank>([&__other](size_t __i)
261 { return __other._M_extent(__i); });
262 }
263
264 template<typename _OIndexType, size_t _Nm>
265 constexpr
266 _ExtentsStorage(span<const _OIndexType, _Nm> __exts) noexcept
267 {
268 _M_init_dynamic_extents<_Nm>(
269 [&__exts](size_t __i) -> const _OIndexType&
270 { return __exts[__i]; });
271 }
272
273 static constexpr const array<size_t, _S_rank>&
274 _S_static_extents() noexcept
275 { return _Extents; }
276
277 constexpr span<const _IndexType>
278 _M_dynamic_extents(size_t __begin, size_t __end) const noexcept
279 requires (_Extents.size() > 0)
280 {
281 return {_M_dyn_exts + _S_dynamic_index(__begin),
282 _S_dynamic_index(__end) - _S_dynamic_index(__begin)};
283 }
284
285 private:
286 using _Storage = __array_traits<_IndexType, _S_rank_dynamic>::_Type;
287 [[no_unique_address]] _Storage _M_dyn_exts{};
288 };
289
290 template<typename _OIndexType, typename _SIndexType>
291 concept __valid_index_type =
292 is_convertible_v<_OIndexType, _SIndexType> &&
293 is_nothrow_constructible_v<_SIndexType, _OIndexType>;
294
295 template<size_t _Extent, typename _IndexType>
296 concept
297 __valid_static_extent = _Extent == dynamic_extent
298 || _Extent <= __gnu_cxx::__int_traits<_IndexType>::__max;
299
300 template<typename _Extents>
301 constexpr const array<size_t, _Extents::rank()>&
302 __static_extents() noexcept
303 { return _Extents::_Storage::_S_static_extents(); }
304
305 template<typename _Extents>
306 constexpr span<const size_t>
307 __static_extents(size_t __begin, size_t __end) noexcept
308 {
309 const auto& __sta_exts = __static_extents<_Extents>();
310 return span<const size_t>(__sta_exts.data() + __begin, __end - __begin);
311 }
312
313 // Pre-compute: \prod_{i = 0}^r _Extents[i], for r = 0,..., n (exclusive)
314 template<array _Extents>
315 constexpr auto __fwd_partial_prods = [] consteval
316 {
317 constexpr size_t __rank = _Extents.size();
318 std::array<size_t, __rank> __ret;
319 size_t __prod = 1;
320 for (size_t __r = 0; __r < __rank; ++__r)
321 {
322 __ret[__r] = __prod;
323 if (size_t __ext = _Extents[__r]; __ext != dynamic_extent)
324 __prod *= __ext;
325 }
326 return __ret;
327 }();
328
329 // Pre-compute: \prod_{i = r+1}^{n-1} _Extents[i]
330 template<array _Extents>
331 constexpr auto __rev_partial_prods = [] consteval
332 {
333 constexpr size_t __rank = _Extents.size();
334 std::array<size_t, __rank> __ret;
335 size_t __prod = 1;
336 for (size_t __r = __rank; __r > 0; --__r)
337 {
338 __ret[__r - 1] = __prod;
339 if (size_t __ext = _Extents[__r - 1]; __ext != dynamic_extent)
340 __prod *= __ext;
341 }
342 return __ret;
343 }();
344
345 template<typename _Extents>
346 constexpr span<const typename _Extents::index_type>
347 __dynamic_extents(const _Extents& __exts, size_t __begin = 0,
348 size_t __end = _Extents::rank()) noexcept
349 { return __exts._M_exts._M_dynamic_extents(__begin, __end); }
350 }
351
352#if __glibcxx_submdspan
353 struct full_extent_t
354 {
355 explicit full_extent_t() = default;
356 };
357
358 inline constexpr full_extent_t full_extent{};
359
360 template<typename _OffsetType, typename _ExtentType, typename _StrideType>
361 struct extent_slice
362 {
363 static_assert(__is_signed_or_unsigned_integer<_OffsetType>::value
364 || __detail::__integral_constant_like<_OffsetType>);
365 static_assert(__is_signed_or_unsigned_integer<_ExtentType>::value
366 || __detail::__integral_constant_like<_ExtentType>);
367 static_assert(__is_signed_or_unsigned_integer<_StrideType>::value
368 || __detail::__integral_constant_like<_StrideType>);
369
370 using offset_type = _OffsetType;
371 using extent_type = _ExtentType;
372 using stride_type = _StrideType;
373
374 [[no_unique_address]] offset_type offset{};
375 [[no_unique_address]] extent_type extent{};
376 [[no_unique_address]] stride_type stride{};
377 };
378
379 template<typename _FirstType, typename _LastType, typename _StrideType = constant_wrapper<1zu>>
380 struct range_slice
381 {
382 static_assert(__is_signed_or_unsigned_integer<_FirstType>::value
383 || __detail::__integral_constant_like<_FirstType>);
384 static_assert(__is_signed_or_unsigned_integer<_LastType>::value
385 || __detail::__integral_constant_like<_LastType>);
386 static_assert(__is_signed_or_unsigned_integer<_StrideType>::value
387 || __detail::__integral_constant_like<_StrideType>);
388
389 [[no_unique_address]] _FirstType first{};
390 [[no_unique_address]] _LastType last{};
391 [[no_unique_address]] _StrideType stride{};
392 };
393
394 template<typename _Mapping>
395 struct submdspan_mapping_result
396 {
397 [[no_unique_address]] _Mapping mapping = _Mapping();
398 size_t offset{};
399 };
400
401 template<typename _Tp>
402 constexpr bool __is_submdspan_mapping_result = false;
403
404 template<typename _Mapping>
405 constexpr bool __is_submdspan_mapping_result<submdspan_mapping_result<_Mapping>> = true;
406
407 template<typename _Mapping>
408 concept __submdspan_mapping_result = __is_submdspan_mapping_result<_Mapping>;
409
410#endif // __glibcxx_submdspan
411
412 template<typename _IndexType, size_t... _Extents>
413 class extents
414 {
415 static_assert(__is_signed_or_unsigned_integer<_IndexType>::value,
416 "IndexType must be a signed or unsigned integer type");
417 static_assert(
418 (__mdspan::__valid_static_extent<_Extents, _IndexType> && ...),
419 "Extents must either be dynamic or representable as IndexType");
420
421 using _Storage = __mdspan::_ExtentsStorage<
422 _IndexType, array<size_t, sizeof...(_Extents)>{_Extents...}>;
423 [[no_unique_address]] _Storage _M_exts;
424
425 public:
426 using index_type = _IndexType;
427 using size_type = make_unsigned_t<index_type>;
428 using rank_type = size_t;
429
430 static constexpr rank_type
431 rank() noexcept { return _Storage::_S_rank; }
432
433 static constexpr rank_type
434 rank_dynamic() noexcept { return _Storage::_S_rank_dynamic; }
435
436 static constexpr size_t
437 static_extent(rank_type __r) noexcept
438 {
439 __glibcxx_assert(__r < rank());
440 if constexpr (rank() == 0)
441 __builtin_trap();
442 else
443 return _Storage::_S_static_extent(__r);
444 }
445
446 constexpr index_type
447 extent(rank_type __r) const noexcept
448 {
449 __glibcxx_assert(__r < rank());
450 if constexpr (rank() == 0)
451 __builtin_trap();
452 else
453 return _M_exts._M_extent(__r);
454 }
455
456 constexpr
457 extents() noexcept = default;
458
459 private:
460 static consteval bool
461 _S_is_less_dynamic(size_t __ext, size_t __oext)
462 { return (__ext != dynamic_extent) && (__oext == dynamic_extent); }
463
464 template<typename _OIndexType, size_t... _OExtents>
465 static consteval bool
466 _S_ctor_explicit()
467 {
468 return (_S_is_less_dynamic(_Extents, _OExtents) || ...)
469 || (__gnu_cxx::__int_traits<index_type>::__max
470 < __gnu_cxx::__int_traits<_OIndexType>::__max);
471 }
472
473 template<size_t... _OExtents>
474 static consteval bool
475 _S_is_compatible_extents()
476 {
477 if constexpr (sizeof...(_OExtents) != rank())
478 return false;
479 else
480 return ((_OExtents == dynamic_extent || _Extents == dynamic_extent
481 || _OExtents == _Extents) && ...);
482 }
483
484 public:
485 template<typename _OIndexType, size_t... _OExtents>
486 requires (_S_is_compatible_extents<_OExtents...>())
487 constexpr explicit(_S_ctor_explicit<_OIndexType, _OExtents...>())
488 extents(const extents<_OIndexType, _OExtents...>& __other) noexcept
489 : _M_exts(__other._M_exts)
490 { }
491
492 template<__mdspan::__valid_index_type<index_type>... _OIndexTypes>
493 requires (sizeof...(_OIndexTypes) == rank()
494 || sizeof...(_OIndexTypes) == rank_dynamic())
495 constexpr explicit extents(_OIndexTypes... __exts) noexcept
496 : _M_exts(span<const _IndexType, sizeof...(_OIndexTypes)>(
497 initializer_list{static_cast<_IndexType>(std::move(__exts))...}))
498 { }
499
500 template<typename _OIndexType, size_t _Nm>
501 requires __mdspan::__valid_index_type<const _OIndexType&, index_type>
502 && (_Nm == rank() || _Nm == rank_dynamic())
503 constexpr explicit(_Nm != rank_dynamic())
504 extents(span<_OIndexType, _Nm> __exts) noexcept
505 : _M_exts(span<const _OIndexType, _Nm>(__exts))
506 { }
507
508 template<typename _OIndexType, size_t _Nm>
509 requires __mdspan::__valid_index_type<const _OIndexType&, index_type>
510 && (_Nm == rank() || _Nm == rank_dynamic())
511 constexpr explicit(_Nm != rank_dynamic())
512 extents(const array<_OIndexType, _Nm>& __exts) noexcept
513 : _M_exts(span<const _OIndexType, _Nm>(__exts))
514 { }
515
516 template<typename _OIndexType, size_t... _OExtents>
517 friend constexpr bool
518 operator==(const extents& __self,
519 const extents<_OIndexType, _OExtents...>& __other) noexcept
520 {
521 if constexpr (!_S_is_compatible_extents<_OExtents...>())
522 return false;
523 else
524 {
525 auto __impl = [&__self, &__other]<size_t... _Counts>(
526 index_sequence<_Counts...>)
527 { return (cmp_equal(__self.extent(_Counts),
528 __other.extent(_Counts)) && ...); };
529 return __impl(make_index_sequence<__self.rank()>());
530 }
531 }
532
533 private:
534 friend constexpr const array<size_t, rank()>&
535 __mdspan::__static_extents<extents>() noexcept;
536
537 friend constexpr span<const index_type>
538 __mdspan::__dynamic_extents<extents>(const extents&, size_t, size_t)
539 noexcept;
540
541 template<typename _OIndexType, size_t... _OExtents>
542 friend class extents;
543 };
544
545 namespace __mdspan
546 {
547 template<typename _Tp, size_t _Nm>
548 constexpr bool
549 __contains_zero(span<_Tp, _Nm> __exts) noexcept
550 {
551 for (size_t __i = 0; __i < __exts.size(); ++__i)
552 if (__exts[__i] == 0)
553 return true;
554 return false;
555 }
556
557 template<typename _Tp, size_t _Nm>
558 consteval bool
559 __contains_zero(const array<_Tp, _Nm>& __exts) noexcept
560 { return __contains_zero(span<const _Tp>(__exts)); }
561
562 template<typename _Extents>
563 constexpr bool
564 __empty(const _Extents& __exts) noexcept
565 {
566 if constexpr (__contains_zero(__static_extents<_Extents>()))
567 return true;
568 else if constexpr (_Extents::rank_dynamic() > 0)
569 return __contains_zero(__dynamic_extents(__exts));
570 else
571 return false;
572 }
573
574 template<typename _Extents>
575 constexpr typename _Extents::index_type
576 __extents_prod(const _Extents& __exts, size_t __sta_prod, size_t __begin,
577 size_t __end) noexcept
578 {
579 if (__sta_prod == 0)
580 return 0;
581
582 size_t __ret = __sta_prod;
583 if constexpr (_Extents::rank_dynamic() > 0)
584 for (auto __factor : __dynamic_extents(__exts, __begin, __end))
585 __ret *= size_t(__factor);
586 return static_cast<typename _Extents::index_type>(__ret);
587 }
588
589 // Preconditions: _r < _Extents::rank()
590 template<typename _Extents>
591 constexpr typename _Extents::index_type
592 __fwd_prod(const _Extents& __exts, size_t __begin, size_t __end) noexcept
593 {
594 size_t __sta_prod = [__begin, __end] {
595 span<const size_t> __sta_exts
596 = __static_extents<_Extents>(__begin, __end);
597 size_t __ret = 1;
598 for(auto __ext : __sta_exts)
599 if (__ext != dynamic_extent)
600 __ret *= __ext;
601 return __ret;
602 }();
603 return __extents_prod(__exts, __sta_prod, __begin, __end);
604 }
605
606 template<typename _Extents>
607 constexpr typename _Extents::index_type
608 __fwd_prod(const _Extents& __exts, size_t __r) noexcept
609 {
610 constexpr size_t __rank = _Extents::rank();
611 constexpr auto& __sta_exts = __static_extents<_Extents>();
612 if constexpr (__rank == 1)
613 return 1;
614 else if constexpr (__rank == 2)
615 return __r == 0 ? 1 : __exts.extent(0);
616 else if constexpr (__all_dynamic(std::span(__sta_exts).first(__rank-1)))
617 return __extents_prod(__exts, 1, 0, __r);
618 else
619 {
620 size_t __sta_prod = __fwd_partial_prods<__sta_exts>[__r];
621 return __extents_prod(__exts, __sta_prod, 0, __r);
622 }
623 }
624
625 template<typename _IndexType, size_t _Nm>
626 consteval _IndexType
627 __fwd_prod(span<const _IndexType, _Nm> __values)
628 {
629 _IndexType __ret = 1;
630 for(auto __value : __values)
631 __ret *= __value;
632 return __ret;
633 }
634
635 // Preconditions: _r < _Extents::rank()
636 template<typename _Extents>
637 constexpr typename _Extents::index_type
638 __rev_prod(const _Extents& __exts, size_t __r) noexcept
639 {
640 constexpr size_t __rank = _Extents::rank();
641 constexpr auto& __sta_exts = __static_extents<_Extents>();
642 if constexpr (__rank == 1)
643 return 1;
644 else if constexpr (__rank == 2)
645 return __r == 0 ? __exts.extent(1) : 1;
646 else if constexpr (__all_dynamic(std::span(__sta_exts).last(__rank-1)))
647 return __extents_prod(__exts, 1, __r + 1, __rank);
648 else
649 {
650 size_t __sta_prod = __rev_partial_prods<__sta_exts>[__r];
651 return __extents_prod(__exts, __sta_prod, __r + 1, __rank);
652 }
653 }
654
655 template<typename _Extents>
656 constexpr typename _Extents::index_type
657 __size(const _Extents& __exts) noexcept
658 {
659 constexpr size_t __sta_prod = [] {
660 span<const size_t> __sta_exts = __static_extents<_Extents>();
661 size_t __ret = 1;
662 for(auto __ext : __sta_exts)
663 if (__ext != dynamic_extent)
664 __ret *= __ext;
665 return __ret;
666 }();
667 return __extents_prod(__exts, __sta_prod, 0, _Extents::rank());
668 }
669
670 template<typename _IndexType, size_t... _Counts>
671 auto __build_dextents_type(integer_sequence<size_t, _Counts...>)
672 -> extents<_IndexType, ((void) _Counts, dynamic_extent)...>;
673 }
674
675 template<typename _IndexType, size_t _Rank>
676 using dextents = decltype(__mdspan::__build_dextents_type<_IndexType>(
678
679#if __glibcxx_mdspan >= 202406L
680 template<size_t _Rank, typename _IndexType = size_t>
681 using dims = dextents<_IndexType, _Rank>;
682#endif
683
684 template<typename... _Integrals>
685 requires (is_convertible_v<_Integrals, size_t> && ...)
686 explicit extents(_Integrals...) ->
687 extents<size_t, __detail::__maybe_static_ext<_Integrals>...>;
688
689 struct layout_left
690 {
691 template<typename _Extents>
692 class mapping;
693 };
694
695 struct layout_right
696 {
697 template<typename _Extents>
698 class mapping;
699 };
700
701 struct layout_stride
702 {
703 template<typename _Extents>
704 class mapping;
705 };
706
707#ifdef __glibcxx_padded_layouts
708 template<size_t _PaddingValue>
709 struct layout_left_padded
710 {
711 template<typename _Extents>
712 class mapping;
713 };
714
715 template<size_t _PaddingValue>
716 struct layout_right_padded
717 {
718 template<typename _Extents>
719 class mapping;
720 };
721#endif
722
723 namespace __mdspan
724 {
725 template<typename _Tp>
726 constexpr bool __is_extents = false;
727
728 template<typename _IndexType, size_t... _Extents>
729 constexpr bool __is_extents<extents<_IndexType, _Extents...>> = true;
730
731 template<typename _Extents, typename... _Indices>
732 constexpr typename _Extents::index_type
733 __linear_index_left(const _Extents& __exts, _Indices... __indices)
734 noexcept
735 {
736 using _IndexType = typename _Extents::index_type;
737 _IndexType __res = 0;
738 if constexpr (sizeof...(__indices) > 0)
739 {
740 _IndexType __mult = 1;
741 auto __update = [&, __pos = 0u](_IndexType __idx) mutable
742 {
743 _GLIBCXX_DEBUG_ASSERT(cmp_less(__idx, __exts.extent(__pos)));
744 __res += __idx * __mult;
745 __mult *= __exts.extent(__pos);
746 ++__pos;
747 };
748 (__update(__indices), ...);
749 }
750 return __res;
751 }
752
753 template<typename _IndexType>
754 consteval _IndexType
755 __static_quotient(std::span<const size_t> __sta_exts,
756 _IndexType __nom = __gnu_cxx::__int_traits<_IndexType>::__max)
757 {
758 for (auto __factor : __sta_exts)
759 {
760 if (__factor != dynamic_extent)
761 __nom /= _IndexType(__factor);
762 if (__nom == 0)
763 break;
764 }
765 return __nom;
766 }
767
768 template<typename _Extents,
769 typename _IndexType = typename _Extents::index_type>
770 requires __is_extents<_Extents>
771 consteval _IndexType
772 __static_quotient(_IndexType __nom
773 = __gnu_cxx::__int_traits<_IndexType>::__max)
774 {
775 std::span<const size_t> __sta_exts = __static_extents<_Extents>();
776 return __static_quotient<_IndexType>(__sta_exts, __nom);
777 }
778
779 template<typename _Extents>
780 constexpr bool
781 __is_representable_extents(const _Extents& __exts) noexcept
782 {
783 using _IndexType = _Extents::index_type;
784
785 if constexpr (__contains_zero(__static_extents<_Extents>()))
786 return true;
787 else
788 {
789 constexpr auto __sta_quo = __static_quotient<_Extents>();
790 if constexpr (_Extents::rank_dynamic() == 0)
791 return __sta_quo != 0;
792 else
793 {
794 auto __dyn_exts = __dynamic_extents(__exts);
795 if (__contains_zero(__dyn_exts))
796 return true;
797
798 if constexpr (__sta_quo == 0)
799 return false;
800 else
801 {
802 auto __dyn_quo = _IndexType(__sta_quo);
803 for (auto __factor : __dyn_exts)
804 {
805 __dyn_quo /= __factor;
806 if (__dyn_quo == 0)
807 return false;
808 }
809 return true;
810 }
811 }
812 }
813 }
814
815 template<typename _Extents, typename _IndexType>
816 concept __representable_size = _Extents::rank_dynamic() != 0
817 || __contains_zero(__static_extents<_Extents>())
818 || (__static_quotient<_Extents, _IndexType>() != 0);
819
820 template<typename _Layout, typename _Mapping>
821 concept __mapping_of =
822 is_same_v<typename _Layout::template mapping<
823 typename _Mapping::extents_type>,
824 _Mapping>;
825
826 template<template<size_t> typename _Layout, typename _Mapping>
827 concept __padded_mapping_of = __mapping_of<
828 _Layout<_Mapping::padding_value>, _Mapping>;
829
830#ifdef __glibcxx_padded_layouts
831 template<typename _Mapping>
832 constexpr bool __is_left_padded_mapping = __padded_mapping_of<
833 layout_left_padded, _Mapping>;
834
835 template<typename _Mapping>
836 constexpr bool __is_right_padded_mapping = __padded_mapping_of<
837 layout_right_padded, _Mapping>;
838
839 template<typename _Mapping>
840 constexpr bool __is_padded_mapping = __is_left_padded_mapping<_Mapping>
841 || __is_right_padded_mapping<_Mapping>;
842#endif
843
844 template<typename _PaddedMapping>
845 consteval size_t
846 __get_static_stride()
847 { return _PaddedMapping::_PaddedStorage::_S_static_stride; }
848
849 template<typename _Mapping>
850 concept __standardized_mapping = __mapping_of<layout_left, _Mapping>
851 || __mapping_of<layout_right, _Mapping>
852 || __mapping_of<layout_stride, _Mapping>
853#ifdef __glibcxx_padded_layouts
854 || __is_left_padded_mapping<_Mapping>
855 || __is_right_padded_mapping<_Mapping>
856#endif
857 ;
858
859 // A tag type to create internal ctors.
860 class __internal_ctor
861 { };
862
863 template<typename _Mapping>
864 constexpr typename _Mapping::index_type
865 __offset(const _Mapping& __m) noexcept
866 {
867 using _IndexType = typename _Mapping::index_type;
868 constexpr auto __rank = _Mapping::extents_type::rank();
869
870 if constexpr (__standardized_mapping<_Mapping>)
871 return 0;
872 else if (__empty(__m.extents()))
873 return 0;
874 else
875 {
876 auto __impl = [&__m]<size_t... _Counts>(index_sequence<_Counts...>)
877 { return __m(((void) _Counts, _IndexType(0))...); };
878 return __impl(make_index_sequence<__rank>());
879 }
880 }
881
882#ifdef __glibcxx_submdspan
883 template<typename _Tp>
884 constexpr bool __is_extent_slice = false;
885
886 template<typename _OffsetType, typename _ExtentType, typename _StrideType>
887 constexpr bool __is_extent_slice<extent_slice<_OffsetType,
888 _ExtentType, _StrideType>> = true;
889
890 template<typename _Tp>
891 constexpr bool __is_range_slice = false;
892
893 template<typename _FirstType, typename _LastType, typename _StrideType>
894 constexpr bool __is_range_slice<range_slice<_FirstType,
895 _LastType, _StrideType>> = true;
896
897 template<typename _IndexType, typename _OIndexType>
898 consteval bool
899 __is_representable_integer(_OIndexType __value)
900 {
901 constexpr auto __min = __gnu_cxx::__int_traits<_IndexType>::__min;
902 constexpr auto __max = __gnu_cxx::__int_traits<_IndexType>::__max;
903 return std::cmp_less_equal(__min, __value)
904 && std::cmp_less_equal(__value, __max);
905 }
906
907 template<typename _Tp>
908 constexpr bool __is_constant_wrapper = false;
909
910 template<auto _Xv, typename _Tp>
911 constexpr bool __is_constant_wrapper<constant_wrapper<_Xv, _Tp>>
912 = true;
913
914 template<size_t _Index, typename _Extents>
915 constexpr auto
916 __extract_extent(const _Extents& __exts)
917 {
918 using _IndexType = typename _Extents::index_type;
919 return extents<_IndexType, _Extents::static_extent(_Index)>{
920 __exts.extent(_Index)};
921 }
922
923 template<typename _Slice, typename _IndexType>
924 concept __acceptable_slice_type = same_as<_Slice, full_extent_t>
925 || same_as<_Slice, _IndexType> || __is_constant_wrapper<_Slice>
926 || __is_extent_slice<_Slice>;
927
928 template<typename _IndexType, typename... _Slices>
929 consteval auto
930 __subrank()
931 {
932 return (static_cast<size_t>(!convertible_to<_Slices, _IndexType>)
933 + ... + 0);
934 }
935
936 template<typename _IndexType, typename... _Slices>
937 consteval auto
938 __inv_map_rank()
939 {
940 constexpr auto __rank = sizeof...(_Slices);
941 constexpr auto __sub_rank = __subrank<_IndexType, _Slices...>();
942 auto __map = std::array<size_t, __sub_rank>{};
943 auto __is_int_like = std::array<bool, __rank>{
944 convertible_to<_Slices, _IndexType>...};
945
946 size_t __i = 0;
947 for (size_t __k = 0; __k < __rank; ++__k)
948 if (!__is_int_like[__k])
949 __map[__i++] = __k;
950 return __map;
951 }
952
953 template<typename _Slice>
954 constexpr auto
955 __slice_begin(_Slice __slice)
956 {
957 if constexpr (same_as<_Slice, full_extent_t>)
958 return 0;
959 else if constexpr (__is_extent_slice<_Slice>)
960 return __slice.offset;
961 else
962 return __slice; // collapsing slice
963 }
964
965 template<typename _Mapping, typename... _Slices>
966 constexpr size_t
967 __suboffset(const _Mapping& __mapping, const _Slices&... __slices)
968 {
969 using _IndexType = typename _Mapping::index_type;
970 auto __any_past_the_end = [&]<size_t... _Is>(index_sequence<_Is...>)
971 {
972 auto __is_past_the_end = [](const auto& __slice, const auto& __ext)
973 {
974 using _Slice = remove_cvref_t<decltype(__slice)>;
975 if constexpr (is_convertible_v<_Slice, _IndexType>)
976 return false;
977 else if constexpr (same_as<_Slice, full_extent_t>
978 && __ext.static_extent(0) != 0
979 && __ext.static_extent(0) != dynamic_extent)
980 return false;
981 else
982 return __mdspan::__slice_begin(__slice) == __ext.extent(0);
983 };
984
985 const auto& __exts = __mapping.extents();
986 return ((__is_past_the_end(__slices...[_Is],
987 __mdspan::__extract_extent<_Is>(__exts))) || ...);
988 };
989
990 if constexpr ((same_as<_Slices, full_extent_t> && ...))
991 return __mdspan::__offset(__mapping);
992
993 if (__any_past_the_end(std::make_index_sequence<sizeof...(__slices)>()))
994 return __mapping.required_span_size();
995 return __mapping(__mdspan::__slice_begin(__slices)...);
996 }
997
998 template<typename _IndexType, size_t _Extent, typename _Slice>
999 consteval size_t
1000 __static_slice_extent()
1001 {
1002 if constexpr (same_as<_Slice, full_extent_t>)
1003 return _Extent;
1004 else if constexpr (same_as<_Slice, constant_wrapper<_IndexType(0)>>)
1005 return 0;
1006 else if constexpr (__is_constant_wrapper<typename _Slice::extent_type>)
1007 return _Slice::extent_type::value;
1008 else
1009 return dynamic_extent;
1010 }
1011
1012 template<size_t _K, typename _Extents, typename _Slice>
1013 constexpr typename _Extents::index_type
1014 __dynamic_slice_extent(const _Extents& __exts, _Slice __slice)
1015 {
1016 if constexpr (__is_extent_slice<_Slice>)
1017 return __slice.extent;
1018 else
1019 return __exts.extent(_K);
1020 }
1021
1022 template<typename _IndexType, size_t... _Extents, typename... _Slices>
1023 requires (sizeof...(_Slices) == sizeof...(_Extents))
1024 constexpr auto
1025 __subextents(const extents<_IndexType, _Extents...>& __exts,
1026 _Slices... __slices)
1027 {
1028 constexpr auto __inv_map = __mdspan::__inv_map_rank<_IndexType, _Slices...>();
1029 auto __impl = [&]<size_t... _Indices>(std::index_sequence<_Indices...>)
1030 {
1031 using _SubExts = extents<_IndexType,
1032 __mdspan::__static_slice_extent<_IndexType,
1033 _Extents...[__inv_map[_Indices]],
1034 _Slices...[__inv_map[_Indices]]>()...>;
1035 if constexpr (_SubExts::rank_dynamic() == 0)
1036 return _SubExts{};
1037 else
1038 {
1039 using _StaticSubExtents = __mdspan::_StaticExtents<
1040 __mdspan::__static_extents<_SubExts>()>;
1041 auto __create = [&]<size_t... _Is>(std::index_sequence<_Is...>)
1042 {
1043 constexpr auto __slice_idx = [__inv_map](size_t __i) consteval
1044 {
1045 return __inv_map[_StaticSubExtents::_S_dynamic_index_inv(__i)];
1046 };
1047
1048 return _SubExts{__mdspan::__dynamic_slice_extent<__slice_idx(_Is)>(
1049 __exts, __slices...[__slice_idx(_Is)])...};
1050 };
1051 constexpr auto __dyn_subrank = _SubExts::rank_dynamic();
1052 return __create(std::make_index_sequence<__dyn_subrank>());
1053 }
1054 };
1055
1056 return __impl(std::make_index_sequence<__inv_map.size()>());
1057 }
1058
1059 enum class _LayoutSide
1060 {
1061 __left,
1062 __right,
1063 __unknown
1064 };
1065
1066 template<typename _Mapping>
1067 consteval _LayoutSide
1068 __mapping_side()
1069 {
1070 if constexpr (__is_left_padded_mapping<_Mapping>
1071 || __mapping_of<layout_left, _Mapping>)
1072 return _LayoutSide::__left;
1073 if constexpr (__is_right_padded_mapping<_Mapping>
1074 || __mapping_of<layout_right, _Mapping>)
1075 return _LayoutSide::__right;
1076 else
1077 return _LayoutSide::__unknown;
1078 }
1079
1080 template<_LayoutSide _Side, size_t _Rank>
1081 struct _StridesTrait
1082 {
1083 static constexpr const _LayoutSide _S_side = _Side;
1084
1085 static constexpr size_t
1086 _S_idx(size_t __k) noexcept
1087 {
1088 if constexpr (_Side == _LayoutSide::__left)
1089 return __k;
1090 else
1091 return _Rank - 1 - __k;
1092 }
1093
1094 // Unifies the formulas for computing strides for padded and unpadded
1095 // layouts.
1096 template<typename _Mapping>
1097 static constexpr typename _Mapping::index_type
1098 _S_padded_extent(const _Mapping& __mapping, size_t __k)
1099 {
1100 if (__k == 0)
1101 return __mapping.stride(_S_idx(1));
1102 else
1103 return __mapping.extents().extent(_S_idx(__k));
1104 }
1105
1106 template<typename _IndexType, typename... _Slices>
1107 static consteval auto
1108 _S_inv_map()
1109 {
1110 static_assert(_Side != _LayoutSide::__unknown);
1111 auto __impl = [&]<size_t... _Is>(std::index_sequence<_Is...>)
1112 {
1113 return __mdspan::__inv_map_rank<_IndexType, _Slices...[_S_idx(_Is)]...>();
1114 };
1115 return __impl(std::make_index_sequence<_Rank>());
1116 }
1117 };
1118
1119 template<typename _SubExts, typename _Mapping, typename... _Slices>
1120 constexpr auto
1121 __substrides_generic(const _Mapping& __mapping, const _Slices&... __slices)
1122 {
1123 using _IndexType = typename _Mapping::index_type;
1124 if constexpr (_SubExts::rank() == 0)
1125 return array<_IndexType, _SubExts::rank()>{};
1126 else
1127 {
1128 auto __stride = [&__mapping](size_t __k, auto __slice) -> _IndexType
1129 {
1130 if constexpr (__is_extent_slice<decltype(__slice)>)
1131 if (__slice.extent > 1)
1132 return __mapping.stride(__k) * __slice.stride;
1133 return __mapping.stride(__k);
1134 };
1135
1136 auto __impl = [&]<size_t... _Is>(std::index_sequence<_Is...>)
1137 {
1138 constexpr auto __inv_map
1139 = __mdspan::__inv_map_rank<_IndexType, _Slices...>();
1140 return array<_IndexType, _SubExts::rank()>{
1141 __stride(__inv_map[_Is], __slices...[__inv_map[_Is]])...};
1142 };
1143 return __impl(std::make_index_sequence<_SubExts::rank()>());
1144 }
1145 };
1146
1147 template<typename _SubExts, typename _Mapping, typename... _Slices>
1148 constexpr auto
1149 __substrides_standardized(const _Mapping& __mapping,
1150 const _Slices&... __slices)
1151 {
1152 using _IndexType = typename _Mapping::index_type;
1153 using _Trait = _StridesTrait<__mapping_side<_Mapping>(),
1154 _Mapping::extents_type::rank()>;
1155 using _SubTrait = _StridesTrait<__mapping_side<_Mapping>(), _SubExts::rank()>;
1156
1157 constexpr size_t __sub_rank = _SubExts::rank();
1158
1159 std::array<_IndexType, __sub_rank> __ret;
1160 if constexpr (__sub_rank > 0)
1161 {
1162 constexpr auto __inv_map
1163 = _Trait::template _S_inv_map<_IndexType, _Slices...>();
1164 auto __loop = [&]<size_t... _Ks>(std::index_sequence<_Ks...>)
1165 {
1166 size_t __i0 = 0;
1167 size_t __stride = 1;
1168 auto __body = [&](size_t __k, auto __slice)
1169 {
1170 for (size_t __i = __i0; __i < __inv_map[__k]; ++__i)
1171 __stride *= _Trait::_S_padded_extent(__mapping, __i);
1172
1173 size_t __krev = _SubTrait::_S_idx(__k);
1174 if constexpr (__is_extent_slice<decltype(__slice)>)
1175 {
1176 if (__slice.extent > 1)
1177 __ret[__krev] = __stride * __slice.stride;
1178 else
1179 __ret[__krev] = __stride;
1180 }
1181 else
1182 __ret[__krev] = __stride;
1183
1184 __i0 = __inv_map[__k];
1185 };
1186
1187 ((__body(_Ks, __slices...[_Trait::_S_idx(__inv_map[_Ks])])),...);
1188 };
1190 }
1191 return __ret;
1192 }
1193
1194
1195 template<typename _SubExts, typename _Mapping, typename... _Slices>
1196 constexpr auto
1197 __substrides(const _Mapping& __mapping, const _Slices&... __slices)
1198 {
1199 if constexpr (__mdspan::__mapping_side<_Mapping>() == _LayoutSide::__unknown)
1200 return __mdspan::__substrides_generic<_SubExts>(__mapping, __slices...);
1201 else
1202 return __mdspan::__substrides_standardized<_SubExts>(__mapping, __slices...);
1203 }
1204
1205 template<typename _Slice>
1206 concept __is_unit_stride_slice = (__mdspan::__is_extent_slice<_Slice>
1207 && __mdspan::__is_constant_wrapper<typename _Slice::stride_type>
1208 && _Slice::stride_type::value == 1)
1209 || std::same_as<_Slice, full_extent_t>;
1210
1211 // These are (forced) exclusive categories:
1212 // - full & collapsing: obvious,
1213 // - unit_extent_slice: extent_slice{a, b, cw<1>}, but not `full`,
1214 // - extent_slice: extent_slice{a, b, c} with c != cw<1>.
1215 enum class _SliceKind
1216 {
1217 __extent_slice,
1218 __unit_stride_slice,
1219 __full,
1220 __collapsing
1221 };
1222
1223 template<typename _Slice>
1224 consteval _SliceKind
1225 __make_slice_kind()
1226 {
1227 if constexpr (std::same_as<_Slice, full_extent_t>)
1228 return _SliceKind::__full;
1229 else if constexpr (__mdspan::__is_extent_slice<_Slice>)
1230 {
1231 if constexpr (__mdspan::__is_unit_stride_slice<_Slice>)
1232 return _SliceKind::__unit_stride_slice;
1233 else
1234 return _SliceKind::__extent_slice;
1235 }
1236 else
1237 return _SliceKind::__collapsing;
1238 }
1239
1240 template<typename... _Slices>
1241 consteval array<_SliceKind, sizeof...(_Slices)>
1242 __make_slice_kind_array()
1243 {
1244 return array<_SliceKind, sizeof...(_Slices)>{
1245 __mdspan::__make_slice_kind<_Slices>()...};
1246 }
1247
1248 // __block_size - 1
1249 // [full, ..., full, unit_slice , *]
1250 consteval bool
1251 __is_block(span<const _SliceKind> __slice_kinds, size_t __block_size)
1252 {
1253 if (__block_size == 0)
1254 return false;
1255
1256 if (__block_size > __slice_kinds.size())
1257 return false;
1258
1259 for (size_t __i = 0; __i < __block_size - 1; ++__i)
1260 if (__slice_kinds[__i] != _SliceKind::__full)
1261 return false;
1262
1263 auto __last = __slice_kinds[__block_size - 1];
1264 return __last == _SliceKind::__full
1265 || __last == _SliceKind::__unit_stride_slice;
1266 }
1267
1268 // __u __u + __sub_rank-2
1269 // [unit_slice, i, ..., k, full, ..., full, unit_slice, *]
1270 static consteval size_t
1271 __padded_block_begin_generic(span<const _SliceKind> __slice_kinds,
1272 size_t __sub_rank)
1273 {
1274 if (__slice_kinds[0] != _SliceKind::__full
1275 && __slice_kinds[0] != _SliceKind::__unit_stride_slice)
1276 return dynamic_extent;
1277 else if (__slice_kinds.size() == 1)
1278 return dynamic_extent;
1279 else
1280 {
1281 size_t __u = 1;
1282 while(__u < __slice_kinds.size()
1283 && __slice_kinds[__u] == _SliceKind::__collapsing)
1284 ++__u;
1285
1286 if (__mdspan::__is_block(__slice_kinds.subspan(__u), __sub_rank -1))
1287 return __u;
1288 return dynamic_extent;
1289 }
1290 }
1291
1292 template<_LayoutSide _Side, size_t _Nm>
1293 static consteval size_t
1294 __padded_block_begin(span<const _SliceKind, _Nm> __slice_kinds, size_t __sub_rank)
1295 {
1296 if constexpr (_Side == _LayoutSide::__left)
1297 return __mdspan::__padded_block_begin_generic(__slice_kinds, __sub_rank);
1298 else
1299 {
1300 std::array<_SliceKind, _Nm> __rev_slices;
1301 for(size_t __i = 0; __i < _Nm; ++__i)
1302 __rev_slices[__i] = __slice_kinds[_Nm - 1 - __i];
1303 auto __rev_slice_kinds = span<const _SliceKind>(__rev_slices);
1304
1305 auto __u = __mdspan::__padded_block_begin_generic(__rev_slice_kinds,
1306 __sub_rank);
1307 return __u == dynamic_extent ? dynamic_extent : _Nm - 1 - __u;
1308 }
1309 }
1310
1311 template<_LayoutSide _Side, bool _Padded>
1312 struct _SubMdspanMapping;
1313
1314 template<>
1315 struct _SubMdspanMapping<_LayoutSide::__left, false>
1316 {
1317 using _Layout = layout_left;
1318 template<size_t _Pad> using _PaddedLayout = layout_left_padded<_Pad>;
1319
1320 template<typename _Mapping, size_t _Us>
1321 static consteval size_t
1322 _S_pad()
1323 {
1324 using _Extents = typename _Mapping::extents_type;
1325 constexpr auto __sta_exts = __mdspan::__static_extents<_Extents>(0, _Us);
1326 if constexpr (!__mdspan::__all_static(__sta_exts))
1327 return dynamic_extent;
1328 else
1329 return __mdspan::__fwd_prod(__sta_exts);
1330 }
1331
1332 template<size_t _Nm>
1333 static consteval bool
1334 _S_is_unpadded_submdspan(span<const _SliceKind, _Nm> __slice_kinds, size_t __sub_rank)
1335 { return __mdspan::__is_block(__slice_kinds, __sub_rank); }
1336 };
1337
1338 template<>
1339 struct _SubMdspanMapping<_LayoutSide::__left, true>
1340 {
1341 using _Layout = layout_left;
1342 template<size_t _Pad> using _PaddedLayout = layout_left_padded<_Pad>;
1343
1344 template<typename _Mapping, size_t _Us>
1345 static consteval size_t
1346 _S_pad()
1347 {
1348 using _Extents = typename _Mapping::extents_type;
1349 constexpr auto __sta_exts
1350 = __mdspan::__static_extents<_Extents>(1, _Us);
1351 constexpr auto __sta_padstride
1352 = __mdspan::__get_static_stride<_Mapping>();
1353 if constexpr (__sta_padstride == dynamic_extent
1354 || !__mdspan::__all_static(__sta_exts))
1355 return dynamic_extent;
1356 else
1357 return __sta_padstride * __mdspan::__fwd_prod(__sta_exts);
1358 }
1359
1360 template<size_t _Nm>
1361 static consteval bool
1362 _S_is_unpadded_submdspan(span<const _SliceKind, _Nm> __slice_kinds,
1363 size_t __sub_rank)
1364 {
1365 if (__sub_rank == 1)
1366 return __slice_kinds[0] == _SliceKind::__unit_stride_slice
1367 || __slice_kinds[0] == _SliceKind::__full;
1368 else
1369 return false;
1370 }
1371 };
1372
1373 template<>
1374 struct _SubMdspanMapping<_LayoutSide::__right, false>
1375 {
1376 using _Layout = layout_right;
1377 template<size_t _Pad> using _PaddedLayout = layout_right_padded<_Pad>;
1378
1379 template<typename _Mapping, size_t _Us>
1380 static consteval size_t
1381 _S_pad()
1382 {
1383 using _Extents = typename _Mapping::extents_type;
1384 constexpr auto __rank = _Extents::rank();
1385 constexpr auto __sta_exts
1386 = __mdspan::__static_extents<_Extents>(_Us + 1, __rank);
1387 if constexpr (!__mdspan::__all_static(__sta_exts))
1388 return dynamic_extent;
1389 else
1390 return __fwd_prod(__sta_exts);
1391 }
1392
1393 template<size_t _Nm>
1394 static consteval bool
1395 _S_is_unpadded_submdspan(span<const _SliceKind, _Nm> __slice_kinds,
1396 size_t __sub_rank)
1397 {
1398 auto __rev_slice_kinds = array<_SliceKind, _Nm>{};
1399 for(size_t __i = 0; __i < _Nm; ++__i)
1400 __rev_slice_kinds[__i] = __slice_kinds[_Nm - 1 - __i];
1401 return __mdspan::__is_block(span(__rev_slice_kinds), __sub_rank);
1402 }
1403 };
1404
1405 template<>
1406 struct _SubMdspanMapping<_LayoutSide::__right, true>
1407 {
1408 using _Layout = layout_right;
1409 template<size_t _Pad> using _PaddedLayout = layout_right_padded<_Pad>;
1410
1411 template<typename _Mapping, size_t _Us>
1412 static consteval size_t
1413 _S_pad()
1414 {
1415 using _Extents = typename _Mapping::extents_type;
1416 constexpr auto __rank = _Extents::rank();
1417 constexpr auto __sta_exts
1418 = __mdspan::__static_extents<_Extents>(_Us + 1, __rank - 1);
1419 constexpr auto __sta_padstride
1420 = __mdspan::__get_static_stride<_Mapping>();
1421 if constexpr (__sta_padstride == dynamic_extent
1422 || !__mdspan::__all_static(__sta_exts))
1423 return dynamic_extent;
1424 else
1425 return __sta_padstride * __mdspan::__fwd_prod(__sta_exts);
1426 }
1427
1428 template<size_t _Nm>
1429 static consteval bool
1430 _S_is_unpadded_submdspan(span<const _SliceKind, _Nm> __slice_kinds,
1431 size_t __sub_rank)
1432 {
1433 if (__sub_rank == 1)
1434 return __slice_kinds[_Nm - 1] == _SliceKind::__unit_stride_slice
1435 || __slice_kinds[_Nm - 1] == _SliceKind::__full;
1436 else
1437 return false;
1438 }
1439 };
1440
1441
1442 template<typename _Mapping>
1443 constexpr auto
1444 __submdspan_mapping_impl(const _Mapping& __mapping)
1445 { return submdspan_mapping_result{__mapping, 0}; }
1446
1447 template<typename _Mapping, typename... _Slices>
1448 requires (sizeof...(_Slices) > 0)
1449 constexpr auto
1450 __submdspan_mapping_impl(const _Mapping& __mapping, _Slices... __slices)
1451 {
1452 using _IndexType = typename _Mapping::index_type;
1453 static_assert((__acceptable_slice_type<_Slices, _IndexType> && ...));
1454
1455 constexpr auto __side = __mdspan::__mapping_side<_Mapping>();
1456 constexpr auto __rank = sizeof...(_Slices);
1457 using _Trait = _SubMdspanMapping<__side, __is_padded_mapping<_Mapping>>;
1458 using _SliceView = span<const _SliceKind, __rank>;
1459
1460 constexpr auto __slice_kinds = __mdspan::__make_slice_kind_array<_Slices...>();
1461 auto __offset = __mdspan::__suboffset(__mapping, __slices...);
1462 auto __sub_exts = __mdspan::__subextents(__mapping.extents(), __slices...);
1463 using _SubExts = decltype(__sub_exts);
1464 constexpr auto __sub_rank = _SubExts::rank();
1465 if constexpr (__sub_rank == 0)
1466 return submdspan_mapping_result{
1467 typename _Trait::_Layout::mapping(__sub_exts), __offset};
1468 else if constexpr (_Trait::_S_is_unpadded_submdspan(
1469 _SliceView(__slice_kinds), __sub_rank))
1470 return submdspan_mapping_result{
1471 typename _Trait::_Layout::mapping(__sub_exts), __offset};
1472 else if constexpr (
1473 constexpr auto __u = __padded_block_begin<__side>(
1474 _SliceView(__slice_kinds), __sub_rank);
1475 __u != dynamic_extent)
1476 {
1477 constexpr auto __pad = _Trait::template _S_pad<_Mapping, __u>();
1478 using _Layout = typename _Trait::template _PaddedLayout<__pad>;
1479 return submdspan_mapping_result{
1480 typename _Layout::mapping(__sub_exts, __mapping.stride(__u)),
1481 __offset};
1482 }
1483 else
1484 {
1485 auto __sub_strides
1486 = __mdspan::__substrides<_SubExts>(__mapping, __slices...);
1487 return submdspan_mapping_result{
1488 layout_stride::mapping(__sub_exts, __sub_strides), __offset};
1489 }
1490 }
1491#endif // __glibcxx_submdspan
1492 }
1493
1494 template<typename _Extents>
1495 class layout_left::mapping
1496 {
1497 public:
1498 using extents_type = _Extents;
1499 using index_type = typename extents_type::index_type;
1500 using size_type = typename extents_type::size_type;
1501 using rank_type = typename extents_type::rank_type;
1502 using layout_type = layout_left;
1503
1504 static_assert(__mdspan::__representable_size<extents_type, index_type>,
1505 "The size of extents_type must be representable as index_type");
1506
1507 constexpr
1508 mapping() noexcept = default;
1509
1510 constexpr
1511 mapping(const mapping&) noexcept = default;
1512
1513 constexpr
1514 mapping(const extents_type& __extents) noexcept
1515 : _M_extents(__extents)
1516 { __glibcxx_assert(__mdspan::__is_representable_extents(_M_extents)); }
1517
1518 template<typename _OExtents>
1519 requires is_constructible_v<extents_type, _OExtents>
1520 constexpr explicit(!is_convertible_v<_OExtents, extents_type>)
1521 mapping(const mapping<_OExtents>& __other) noexcept
1522 : mapping(__other.extents(), __mdspan::__internal_ctor{})
1523 { }
1524
1525 template<typename _OExtents>
1526 requires (extents_type::rank() <= 1)
1527 && is_constructible_v<extents_type, _OExtents>
1528 constexpr explicit(!is_convertible_v<_OExtents, extents_type>)
1529 mapping(const layout_right::mapping<_OExtents>& __other) noexcept
1530 : mapping(__other.extents(), __mdspan::__internal_ctor{})
1531 { }
1532
1533 // noexcept for consistency with other layouts.
1534 template<typename _OExtents>
1535 requires is_constructible_v<extents_type, _OExtents>
1536 constexpr explicit(!(extents_type::rank() == 0
1537 && is_convertible_v<_OExtents, extents_type>))
1538 mapping(const layout_stride::mapping<_OExtents>& __other) noexcept
1539 : mapping(__other.extents(), __mdspan::__internal_ctor{})
1540 { __glibcxx_assert(*this == __other); }
1541
1542#if __glibcxx_padded_layouts
1543 template<typename _LeftpadMapping>
1544 requires __mdspan::__is_left_padded_mapping<_LeftpadMapping>
1545 && is_constructible_v<extents_type,
1546 typename _LeftpadMapping::extents_type>
1547 constexpr
1548 explicit(!is_convertible_v<typename _LeftpadMapping::extents_type,
1549 extents_type>)
1550 mapping(const _LeftpadMapping& __other) noexcept
1551 : mapping(__other.extents(), __mdspan::__internal_ctor{})
1552 {
1553 constexpr size_t __ostride_sta
1554 = __mdspan::__get_static_stride<_LeftpadMapping>();
1555
1556 if constexpr (extents_type::rank() > 1)
1557 {
1558 if constexpr (extents_type::static_extent(0) != dynamic_extent
1559 && __ostride_sta != dynamic_extent)
1560 static_assert(extents_type::static_extent(0) == __ostride_sta);
1561 else
1562 __glibcxx_assert(__other.stride(1)
1563 == __other.extents().extent(0));
1564 }
1565 }
1566#endif // __glibcxx_padded_layouts
1567
1568 constexpr mapping&
1569 operator=(const mapping&) noexcept = default;
1570
1571 constexpr const extents_type&
1572 extents() const noexcept { return _M_extents; }
1573
1574 constexpr index_type
1575 required_span_size() const noexcept
1576 { return __mdspan::__size(_M_extents); }
1577
1578 // _GLIBCXX_RESOLVE_LIB_DEFECTS
1579 // 4314. Missing move in mdspan layout mapping::operator()
1580 template<__mdspan::__valid_index_type<index_type>... _Indices>
1581 requires (sizeof...(_Indices) == extents_type::rank())
1582 constexpr index_type
1583 operator()(_Indices... __indices) const noexcept
1584 {
1585 return __mdspan::__linear_index_left(_M_extents,
1586 static_cast<index_type>(std::move(__indices))...);
1587 }
1588
1589 static constexpr bool
1590 is_always_unique() noexcept { return true; }
1591
1592 static constexpr bool
1593 is_always_exhaustive() noexcept { return true; }
1594
1595 static constexpr bool
1596 is_always_strided() noexcept { return true; }
1597
1598 static constexpr bool
1599 is_unique() noexcept { return true; }
1600
1601 static constexpr bool
1602 is_exhaustive() noexcept { return true; }
1603
1604 static constexpr bool
1605 is_strided() noexcept { return true; }
1606
1607 constexpr index_type
1608 stride(rank_type __i) const noexcept
1609 requires (extents_type::rank() > 0)
1610 {
1611 __glibcxx_assert(__i < extents_type::rank());
1612 return __mdspan::__fwd_prod(_M_extents, __i);
1613 }
1614
1615 template<typename _OExtents>
1616 requires (extents_type::rank() == _OExtents::rank())
1617 friend constexpr bool
1618 operator==(const mapping& __self, const mapping<_OExtents>& __other)
1619 noexcept
1620 { return __self.extents() == __other.extents(); }
1621
1622 private:
1623 template<typename _OExtents>
1624 constexpr explicit
1625 mapping(const _OExtents& __oexts, __mdspan::__internal_ctor) noexcept
1626 : _M_extents(__oexts)
1627 {
1628 static_assert(__mdspan::__representable_size<_OExtents, index_type>,
1629 "The size of OtherExtents must be representable as index_type");
1630 __glibcxx_assert(__mdspan::__is_representable_extents(_M_extents));
1631 }
1632
1633#if __glibcxx_submdspan
1634 template<typename... _Slices>
1635 requires (extents_type::rank() == sizeof...(_Slices))
1636 friend constexpr auto
1637 submdspan_mapping(const mapping& __mapping, _Slices... __slices)
1638 { return __mdspan::__submdspan_mapping_impl(__mapping, __slices...); }
1639#endif // __glibcxx_submdspan
1640
1641 [[no_unique_address]] extents_type _M_extents{};
1642 };
1643
1644 namespace __mdspan
1645 {
1646 template<typename _Extents, typename... _Indices>
1647 constexpr typename _Extents::index_type
1648 __linear_index_right(const _Extents& __exts, _Indices... __indices)
1649 noexcept
1650 {
1651 using _IndexType = typename _Extents::index_type;
1652 array<_IndexType, sizeof...(__indices)> __ind_arr{__indices...};
1653 _IndexType __res = 0;
1654 if constexpr (sizeof...(__indices) > 0)
1655 {
1656 _IndexType __mult = 1;
1657 auto __update = [&, __pos = __exts.rank()](_IndexType) mutable
1658 {
1659 --__pos;
1660 _GLIBCXX_DEBUG_ASSERT(cmp_less(__ind_arr[__pos],
1661 __exts.extent(__pos)));
1662 __res += __ind_arr[__pos] * __mult;
1663 __mult *= __exts.extent(__pos);
1664 };
1665 (__update(__indices), ...);
1666 }
1667 return __res;
1668 }
1669 }
1670
1671 template<typename _Extents>
1672 class layout_right::mapping
1673 {
1674 public:
1675 using extents_type = _Extents;
1676 using index_type = typename extents_type::index_type;
1677 using size_type = typename extents_type::size_type;
1678 using rank_type = typename extents_type::rank_type;
1679 using layout_type = layout_right;
1680
1681 static_assert(__mdspan::__representable_size<extents_type, index_type>,
1682 "The size of extents_type must be representable as index_type");
1683
1684 constexpr
1685 mapping() noexcept = default;
1686
1687 constexpr
1688 mapping(const mapping&) noexcept = default;
1689
1690 constexpr
1691 mapping(const extents_type& __extents) noexcept
1692 : _M_extents(__extents)
1693 { __glibcxx_assert(__mdspan::__is_representable_extents(_M_extents)); }
1694
1695 template<typename _OExtents>
1696 requires is_constructible_v<extents_type, _OExtents>
1697 constexpr explicit(!is_convertible_v<_OExtents, extents_type>)
1698 mapping(const mapping<_OExtents>& __other) noexcept
1699 : mapping(__other.extents(), __mdspan::__internal_ctor{})
1700 { }
1701
1702 template<typename _OExtents>
1703 requires (extents_type::rank() <= 1)
1704 && is_constructible_v<extents_type, _OExtents>
1705 constexpr explicit(!is_convertible_v<_OExtents, extents_type>)
1706 mapping(const layout_left::mapping<_OExtents>& __other) noexcept
1707 : mapping(__other.extents(), __mdspan::__internal_ctor{})
1708 { }
1709
1710 template<typename _OExtents>
1711 requires is_constructible_v<extents_type, _OExtents>
1712 constexpr explicit(!(extents_type::rank() == 0
1713 && is_convertible_v<_OExtents, extents_type>))
1714 mapping(const layout_stride::mapping<_OExtents>& __other) noexcept
1715 : mapping(__other.extents(), __mdspan::__internal_ctor{})
1716 { __glibcxx_assert(*this == __other); }
1717
1718#if __glibcxx_padded_layouts
1719 template<typename _RightPaddedMapping>
1720 requires __mdspan::__is_right_padded_mapping<_RightPaddedMapping>
1721 && is_constructible_v<extents_type,
1722 typename _RightPaddedMapping::extents_type>
1723 constexpr
1724 explicit(!is_convertible_v<typename _RightPaddedMapping::extents_type,
1725 extents_type>)
1726 mapping(const _RightPaddedMapping& __other) noexcept
1727 : mapping(__other.extents(), __mdspan::__internal_ctor{})
1728 {
1729 constexpr size_t __rank = extents_type::rank();
1730 constexpr size_t __ostride_sta
1731 = __mdspan::__get_static_stride<_RightPaddedMapping>();
1732
1733 if constexpr (__rank > 1)
1734 {
1735 if constexpr (extents_type::static_extent(__rank - 1) != dynamic_extent
1736 && __ostride_sta != dynamic_extent)
1737 static_assert(extents_type::static_extent(__rank - 1)
1738 == __ostride_sta);
1739 else
1740 __glibcxx_assert(__other.stride(__rank - 2)
1741 == __other.extents().extent(__rank - 1));
1742 }
1743 }
1744#endif
1745
1746 constexpr mapping&
1747 operator=(const mapping&) noexcept = default;
1748
1749 constexpr const extents_type&
1750 extents() const noexcept { return _M_extents; }
1751
1752 constexpr index_type
1753 required_span_size() const noexcept
1754 { return __mdspan::__size(_M_extents); }
1755
1756 // _GLIBCXX_RESOLVE_LIB_DEFECTS
1757 // 4314. Missing move in mdspan layout mapping::operator()
1758 template<__mdspan::__valid_index_type<index_type>... _Indices>
1759 requires (sizeof...(_Indices) == extents_type::rank())
1760 constexpr index_type
1761 operator()(_Indices... __indices) const noexcept
1762 {
1763 return __mdspan::__linear_index_right(
1764 _M_extents, static_cast<index_type>(std::move(__indices))...);
1765 }
1766
1767 static constexpr bool
1768 is_always_unique() noexcept
1769 { return true; }
1770
1771 static constexpr bool
1772 is_always_exhaustive() noexcept
1773 { return true; }
1774
1775 static constexpr bool
1776 is_always_strided() noexcept
1777 { return true; }
1778
1779 static constexpr bool
1780 is_unique() noexcept
1781 { return true; }
1782
1783 static constexpr bool
1784 is_exhaustive() noexcept
1785 { return true; }
1786
1787 static constexpr bool
1788 is_strided() noexcept
1789 { return true; }
1790
1791 constexpr index_type
1792 stride(rank_type __i) const noexcept
1793 requires (extents_type::rank() > 0)
1794 {
1795 __glibcxx_assert(__i < extents_type::rank());
1796 return __mdspan::__rev_prod(_M_extents, __i);
1797 }
1798
1799 template<typename _OExtents>
1800 requires (extents_type::rank() == _OExtents::rank())
1801 friend constexpr bool
1802 operator==(const mapping& __self, const mapping<_OExtents>& __other)
1803 noexcept
1804 { return __self.extents() == __other.extents(); }
1805
1806 private:
1807 template<typename _OExtents>
1808 constexpr explicit
1809 mapping(const _OExtents& __oexts, __mdspan::__internal_ctor) noexcept
1810 : _M_extents(__oexts)
1811 {
1812 static_assert(__mdspan::__representable_size<_OExtents, index_type>,
1813 "The size of OtherExtents must be representable as index_type");
1814 __glibcxx_assert(__mdspan::__is_representable_extents(_M_extents));
1815 }
1816
1817#if __glibcxx_submdspan
1818 template<typename... _Slices>
1819 requires (extents_type::rank() == sizeof...(_Slices))
1820 friend constexpr auto
1821 submdspan_mapping(const mapping& __mapping, _Slices... __slices)
1822 { return __mdspan::__submdspan_mapping_impl(__mapping, __slices...); }
1823#endif // __glibcxx_submdspan
1824
1825 [[no_unique_address]] extents_type _M_extents{};
1826 };
1827
1828 namespace __mdspan
1829 {
1830 template<typename _Mp>
1831 concept __mapping_alike = requires
1832 {
1833 requires __is_extents<typename _Mp::extents_type>;
1834 { _Mp::is_always_strided() } -> same_as<bool>;
1835 { _Mp::is_always_exhaustive() } -> same_as<bool>;
1836 { _Mp::is_always_unique() } -> same_as<bool>;
1837 bool_constant<_Mp::is_always_strided()>::value;
1838 bool_constant<_Mp::is_always_exhaustive()>::value;
1839 bool_constant<_Mp::is_always_unique()>::value;
1840 };
1841
1842 template<typename _Mapping, typename... _Indices>
1843 constexpr typename _Mapping::index_type
1844 __linear_index_strides(const _Mapping& __m, _Indices... __indices)
1845 noexcept
1846 {
1847 using _IndexType = typename _Mapping::index_type;
1848 _IndexType __res = 0;
1849 if constexpr (sizeof...(__indices) > 0)
1850 {
1851 auto __update = [&, __pos = 0u](_IndexType __idx) mutable
1852 {
1853 _GLIBCXX_DEBUG_ASSERT(cmp_less(__idx,
1854 __m.extents().extent(__pos)));
1855 __res += __idx * __m.stride(__pos++);
1856 };
1857 (__update(__indices), ...);
1858 }
1859 return __res;
1860 }
1861 }
1862
1863 template<typename _Extents>
1864 class layout_stride::mapping
1865 {
1866 public:
1867 using extents_type = _Extents;
1868 using index_type = typename extents_type::index_type;
1869 using size_type = typename extents_type::size_type;
1870 using rank_type = typename extents_type::rank_type;
1871 using layout_type = layout_stride;
1872
1873 static_assert(__mdspan::__representable_size<extents_type, index_type>,
1874 "The size of extents_type must be representable as index_type");
1875
1876 constexpr
1877 mapping() noexcept
1878 {
1879 // The precondition is either statically asserted, or automatically
1880 // satisfied because dynamic extents are zero-initialized.
1881 size_t __stride = 1;
1882 for (size_t __i = extents_type::rank(); __i > 0; --__i)
1883 {
1884 _M_strides[__i - 1] = index_type(__stride);
1885 __stride *= size_t(_M_extents.extent(__i - 1));
1886 }
1887 }
1888
1889 constexpr
1890 mapping(const mapping&) noexcept = default;
1891
1892 template<typename _OIndexType>
1893 requires __mdspan::__valid_index_type<const _OIndexType&, index_type>
1894 constexpr
1895 mapping(const extents_type& __exts,
1896 span<_OIndexType, extents_type::rank()> __strides) noexcept
1897 : _M_extents(__exts)
1898 {
1899 for (size_t __i = 0; __i < extents_type::rank(); ++__i)
1900 _M_strides[__i] =
1901 __mdspan::__index_type_cast<index_type>(as_const(__strides[__i]));
1902 }
1903
1904 template<typename _OIndexType>
1905 requires __mdspan::__valid_index_type<const _OIndexType&, index_type>
1906 constexpr
1907 mapping(const extents_type& __exts,
1908 const array<_OIndexType, extents_type::rank()>& __strides)
1909 noexcept
1910 : mapping(__exts,
1911 span<const _OIndexType, extents_type::rank()>(__strides))
1912 { }
1913
1914 template<__mdspan::__mapping_alike _StridedMapping>
1915 requires (is_constructible_v<extents_type,
1916 typename _StridedMapping::extents_type>
1917 && _StridedMapping::is_always_unique()
1918 && _StridedMapping::is_always_strided())
1919 constexpr explicit(!(
1920 is_convertible_v<typename _StridedMapping::extents_type, extents_type>
1921 && __mdspan::__standardized_mapping<_StridedMapping>))
1922 mapping(const _StridedMapping& __other) noexcept
1923 : _M_extents(__other.extents())
1924 {
1925 using _OIndexType = _StridedMapping::index_type;
1926 using _OExtents = _StridedMapping::extents_type;
1927
1928 __glibcxx_assert(__mdspan::__offset(__other) == 0);
1929 static_assert(__mdspan::__representable_size<_OExtents, index_type>,
1930 "The size of StridedMapping::extents_type must be representable as"
1931 " index_type");
1932 if constexpr (cmp_greater(__gnu_cxx::__int_traits<_OIndexType>::__max,
1933 __gnu_cxx::__int_traits<index_type>::__max))
1934 __glibcxx_assert(!cmp_less(
1935 __gnu_cxx::__int_traits<index_type>::__max,
1936 __other.required_span_size())
1937 && "other.required_span_size() must be representable"
1938 " as index_type");
1939 if constexpr (extents_type::rank() > 0)
1940 for (size_t __i = 0; __i < extents_type::rank(); ++__i)
1941 _M_strides[__i] = index_type(__other.stride(__i));
1942 }
1943
1944 constexpr mapping&
1945 operator=(const mapping&) noexcept = default;
1946
1947 constexpr const extents_type&
1948 extents() const noexcept { return _M_extents; }
1949
1950 constexpr array<index_type, extents_type::rank()>
1951 strides() const noexcept
1952 {
1953 array<index_type, extents_type::rank()> __ret;
1954 for (size_t __i = 0; __i < extents_type::rank(); ++__i)
1955 __ret[__i] = _M_strides[__i];
1956 return __ret;
1957 }
1958
1959 constexpr index_type
1960 required_span_size() const noexcept
1961 {
1962 if (__mdspan::__empty(_M_extents))
1963 return 0;
1964
1965 index_type __ret = 1;
1966 for (size_t __i = 0; __i < extents_type::rank(); ++__i)
1967 __ret += (_M_extents.extent(__i) - 1) * _M_strides[__i];
1968 return __ret;
1969 }
1970
1971 // _GLIBCXX_RESOLVE_LIB_DEFECTS
1972 // 4314. Missing move in mdspan layout mapping::operator()
1973 template<__mdspan::__valid_index_type<index_type>... _Indices>
1974 requires (sizeof...(_Indices) == extents_type::rank())
1975 constexpr index_type
1976 operator()(_Indices... __indices) const noexcept
1977 {
1978 return __mdspan::__linear_index_strides(*this,
1979 static_cast<index_type>(std::move(__indices))...);
1980 }
1981
1982 static constexpr bool
1983 is_always_unique() noexcept { return true; }
1984
1985 // _GLIBCXX_RESOLVE_LIB_DEFECTS
1986 // 4266. layout_stride::mapping should treat empty mappings as exhaustive
1987 static constexpr bool
1988 is_always_exhaustive() noexcept
1989 {
1990 return (_Extents::rank() == 0) || __mdspan::__contains_zero(
1991 __mdspan::__static_extents<extents_type>());
1992 }
1993
1994 static constexpr bool
1995 is_always_strided() noexcept { return true; }
1996
1997 static constexpr bool
1998 is_unique() noexcept { return true; }
1999
2000 // _GLIBCXX_RESOLVE_LIB_DEFECTS
2001 // 4266. layout_stride::mapping should treat empty mappings as exhaustive
2002 constexpr bool
2003 is_exhaustive() const noexcept
2004 {
2005 if constexpr (!is_always_exhaustive())
2006 {
2007 auto __size = __mdspan::__size(_M_extents);
2008 if(__size > 0)
2009 return __size == required_span_size();
2010 }
2011 return true;
2012 }
2013
2014 static constexpr bool
2015 is_strided() noexcept { return true; }
2016
2017 constexpr index_type
2018 stride(rank_type __r) const noexcept { return _M_strides[__r]; }
2019
2020 template<__mdspan::__mapping_alike _OMapping>
2021 requires ((extents_type::rank() == _OMapping::extents_type::rank())
2022 && _OMapping::is_always_strided())
2023 friend constexpr bool
2024 operator==(const mapping& __self, const _OMapping& __other) noexcept
2025 {
2026 if (__self.extents() != __other.extents())
2027 return false;
2028 if constexpr (extents_type::rank() > 0)
2029 for (size_t __i = 0; __i < extents_type::rank(); ++__i)
2030 if (!cmp_equal(__self.stride(__i), __other.stride(__i)))
2031 return false;
2032 return __mdspan::__offset(__other) == 0;
2033 }
2034
2035 private:
2036#if __glibcxx_submdspan
2037 template<typename... _Slices>
2038 requires (extents_type::rank() == sizeof...(_Slices))
2039 friend constexpr auto
2040 submdspan_mapping(const mapping& __mapping, _Slices... __slices)
2041 {
2042 if constexpr (sizeof...(_Slices) == 0)
2043 return submdspan_mapping_result{__mapping, 0};
2044 else
2045 {
2046 auto __offset = __mdspan::__suboffset(__mapping, __slices...);
2047 auto __sub_exts = __mdspan::__subextents(__mapping.extents(), __slices...);
2048 auto __sub_strides
2049 = __mdspan::__substrides<decltype(__sub_exts)>(__mapping, __slices...);
2050 return submdspan_mapping_result{
2051 layout_stride::mapping(__sub_exts, __sub_strides), __offset};
2052 }
2053 }
2054#endif
2055
2056 using _Strides = typename __array_traits<index_type,
2057 extents_type::rank()>::_Type;
2058 [[no_unique_address]] extents_type _M_extents;
2059 [[no_unique_address]] _Strides _M_strides;
2060 };
2061
2062#ifdef __glibcxx_padded_layouts
2063 namespace __mdspan
2064 {
2065 constexpr size_t
2066 __least_multiple(size_t __x, size_t __y)
2067 {
2068 if (__x <= 1)
2069 return __y;
2070 return (__y / __x + (__y % __x != 0)) * __x ;
2071 }
2072
2073 template<typename _IndexType>
2074 constexpr bool
2075 __is_representable_least_multiple(size_t __x, size_t __y)
2076 {
2077 constexpr auto __y_max = __gnu_cxx::__int_traits<_IndexType>::__max;
2078 if(std::cmp_greater(__y, __y_max))
2079 return false;
2080
2081 if(__x <= 1)
2082 return true;
2083
2084 auto __max_delta = __y_max - static_cast<_IndexType>(__y);
2085 auto __y_mod_x = __y % __x;
2086 auto __delta = (__y_mod_x == 0) ? size_t(0) : (__x - __y_mod_x);
2087 return std::cmp_less_equal(__delta, __max_delta);
2088 }
2089
2090 template<typename _Extents, size_t _PaddingValue, typename _LayoutTraits,
2091 size_t _Rank = _Extents::rank()>
2092 concept __valid_static_stride = (_Extents::rank() <= 1)
2093 || (_PaddingValue == dynamic_extent)
2094 || (_Extents::static_extent(_LayoutTraits::_S_ext_idx) == dynamic_extent)
2095 || (__is_representable_least_multiple<size_t>(
2096 _PaddingValue, _Extents::static_extent(_LayoutTraits::_S_ext_idx)));
2097
2098 template<size_t _PaddedStride, typename _Extents,
2099 typename _LayoutTraits>
2100 consteval bool
2101 __is_representable_padded_size()
2102 {
2103 using _IndexType = typename _Extents::index_type;
2104 auto __sta_exts = __static_extents<_Extents>(
2105 _LayoutTraits::_S_unpad_begin, _LayoutTraits::_S_unpad_end);
2106 size_t __max = __gnu_cxx::__int_traits<_IndexType>::__max;
2107 return __static_quotient(__sta_exts, __max / _PaddedStride) != 0;
2108 }
2109
2110 template<typename _Extents, size_t _PaddedStride, typename _LayoutTraits,
2111 size_t _Rank = _Extents::rank()>
2112 concept __valid_padded_size = (_Rank <= 1)
2113 || (_PaddedStride == dynamic_extent)
2114 || (!__all_static(__static_extents<_Extents>()))
2115 || (__contains_zero(__static_extents<_Extents>()))
2116 || (__is_representable_padded_size<_PaddedStride, _Extents,
2117 _LayoutTraits>());
2118
2119 template<typename _Extents, typename _Stride, typename... _Indices>
2120 constexpr typename _Extents::index_type
2121 __linear_index_leftpad(const _Extents& __exts, _Stride __stride,
2122 _Indices... __indices)
2123 {
2124 // i0 + stride*(i1 + extents.extent(1)*...)
2125 using _IndexType = typename _Extents::index_type;
2126 _IndexType __res = 0;
2127 if constexpr (sizeof...(__indices) > 0)
2128 {
2129 _IndexType __mult = 1;
2130
2131 auto __update_rest = [&, __pos = 1u](_IndexType __idx) mutable
2132 {
2133 __res += __idx * __mult;
2134 __mult *= __exts.extent(__pos);
2135 ++__pos;
2136 };
2137
2138 auto __update = [&](_IndexType __idx, auto... __rest)
2139 {
2140 __res += __idx;
2141 __mult = __stride.extent(0);
2142 (__update_rest(__rest), ...);
2143 };
2144 __update(__indices...);
2145 }
2146 return __res;
2147 }
2148
2149 template<typename _Extents, typename _Stride, typename... _Indices>
2150 constexpr typename _Extents::index_type
2151 __linear_index_rightpad(const _Extents& __exts, _Stride __stride,
2152 _Indices... __indices)
2153 {
2154 // i[n-1] + stride*(i[n-2] + extents.extent(n-2])*...)
2155 using _IndexType = typename _Extents::index_type;
2156 _IndexType __res = 0;
2157 if constexpr (sizeof...(__indices) > 0)
2158 {
2159 _IndexType __mult = 1;
2160 array<_IndexType, sizeof...(__indices)> __ind_arr{__indices...};
2161
2162 auto __update_rest = [&, __pos = __exts.rank()-1](_IndexType) mutable
2163 {
2164 --__pos;
2165 __res += __ind_arr[__pos] * __mult;
2166 __mult *= __exts.extent(__pos);
2167 };
2168
2169 auto __update = [&](_IndexType, auto... __rest)
2170 {
2171 __res += __ind_arr[__exts.rank() - 1];
2172 __mult = __stride.extent(0);
2173 (__update_rest(__rest), ...);
2174 };
2175 __update(__indices...);
2176 }
2177 return __res;
2178 }
2179
2180 template<size_t _Rank>
2181 struct _LeftPaddedLayoutTraits
2182 {
2183 using _LayoutSame = layout_left;
2184 using _LayoutOther = layout_right;
2185
2186 constexpr static const size_t _S_ext_idx = 0;
2187 constexpr static const size_t _S_stride_idx = 1;
2188 constexpr static const size_t _S_unpad_begin = 1;
2189 constexpr static const size_t _S_unpad_end = _Rank;
2190
2191 template<typename _IndexType, size_t _StaticStride, size_t..._Extents>
2192 constexpr static auto
2193 _S_make_padded_extent(
2194 extents<_IndexType, _StaticStride> __stride,
2195 const extents<_IndexType, _Extents...>& __exts)
2196 {
2197 auto __impl = [&]<size_t... _Is>(integer_sequence<size_t, _Is...>)
2198 {
2199 return extents<_IndexType, _StaticStride,
2200 (_Extents...[_Is + 1])...>{
2201 __stride.extent(0), __exts.extent(_Is + 1)...};
2202 };
2203 return __impl(make_index_sequence<sizeof...(_Extents) - 1>());
2204 }
2205 };
2206
2207 template<size_t _Rank>
2208 struct _RightPaddedLayoutTraits
2209 {
2210 using _LayoutSame = layout_right;
2211 using _LayoutOther = layout_left;
2212
2213 constexpr static size_t _S_ext_idx = _Rank - 1;
2214 constexpr static size_t _S_stride_idx = _Rank - 2;
2215 constexpr static size_t _S_unpad_begin = 0;
2216 constexpr static size_t _S_unpad_end = _Rank - 1;
2217
2218 template<typename _IndexType, size_t _StaticStride, size_t..._Extents>
2219 constexpr static auto
2220 _S_make_padded_extent(
2221 extents<_IndexType, _StaticStride> __stride,
2222 const extents<_IndexType, _Extents...>& __exts)
2223 {
2224 auto __impl = [&]<size_t... _Is>(integer_sequence<size_t, _Is...>)
2225 {
2226 return extents<_IndexType, (_Extents...[_Is])..., _StaticStride>{
2227 __exts.extent(_Is)..., __stride.extent(0)};
2228 };
2229 return __impl(make_index_sequence<sizeof...(_Extents) - 1>());
2230 }
2231 };
2232
2233 template<size_t _PaddingValue, typename _Extents, typename _LayoutTraits>
2234 class _PaddedStorage
2235 {
2236 using _LayoutSame = typename _LayoutTraits::_LayoutSame;
2237
2238 public:
2239 using _IndexType = typename _Extents::index_type;
2240 constexpr static size_t _S_rank = _Extents::rank();
2241
2242 // _GLIBCXX_RESOLVE_LIB_DEFECTS
2243 // 4372. Weaken Mandates: for dynamic padding values in padded layouts
2244 static_assert((_PaddingValue == dynamic_extent)
2245 || (cmp_less_equal(_PaddingValue,
2246 __gnu_cxx::__int_traits<_IndexType>::__max)),
2247 "padding_value must be representable as index_type");
2248
2249 static_assert(__representable_size<_Extents, _IndexType>,
2250 "The size of extents_type must be representable as index_type");
2251
2252 static_assert(__valid_static_stride<_Extents, _PaddingValue,
2253 _LayoutTraits>,
2254 "The padded stride must be representable as size_t");
2255
2256 static constexpr size_t _S_static_stride = [] consteval
2257 {
2258 constexpr size_t __rank = _Extents::rank();
2259 if constexpr (__rank <= 1)
2260 return 0;
2261 else
2262 {
2263 constexpr size_t __ext_idx = _LayoutTraits::_S_ext_idx;
2264 constexpr size_t __sta_ext = _Extents::static_extent(__ext_idx);
2265 if constexpr (__sta_ext == 0)
2266 return size_t(0);
2267 else if constexpr (_PaddingValue == dynamic_extent
2268 || __sta_ext == dynamic_extent)
2269 return dynamic_extent;
2270 else
2271 return __least_multiple(_PaddingValue, __sta_ext);
2272 }
2273 }();
2274
2275 static_assert(_S_static_stride == dynamic_extent
2276 || cmp_less_equal(_S_static_stride,
2277 __gnu_cxx::__int_traits<_IndexType>::__max),
2278 "Padded stride must be representable as index_type");
2279
2280 static_assert(__valid_padded_size<_Extents, _S_static_stride,
2281 _LayoutTraits>);
2282
2283 constexpr
2284 _PaddedStorage() noexcept
2285 {
2286 if constexpr (_S_rank > 1)
2287 if constexpr (_S_static_stride == dynamic_extent
2288 && _S_static_padextent() != dynamic_extent)
2289 _M_stride = _Stride{_S_static_padextent()};
2290 }
2291
2292 constexpr explicit
2293 _PaddedStorage(const _Extents& __exts)
2294 : _M_extents(__exts)
2295 {
2296 if constexpr (!__all_static(__static_extents<_Extents>()))
2297 __glibcxx_assert(__is_representable_extents(_M_extents));
2298
2299 if constexpr (_S_rank > 1)
2300 {
2301 _IndexType __stride;
2302 if constexpr (_PaddingValue == dynamic_extent)
2303 __stride = _M_padextent();
2304 else if constexpr (_S_static_padextent() != dynamic_extent)
2305 return;
2306 else
2307 {
2308 __glibcxx_assert(
2309 __is_representable_least_multiple<_IndexType>(
2310 _PaddingValue, _M_padextent()));
2311
2312 __stride = static_cast<_IndexType>(
2313 __least_multiple(_PaddingValue, _M_padextent()));
2314
2315 __glibcxx_assert(__is_representable_extents(
2316 _LayoutTraits::_S_make_padded_extent(
2317 std::dextents<_IndexType, 1>{__stride},
2318 _M_extents)));
2319 }
2320 _M_stride = _Stride{__stride};
2321 }
2322 }
2323
2324 constexpr explicit
2325 _PaddedStorage(const _Extents& __exts, _IndexType __pad)
2326 : _M_extents(__exts)
2327 {
2328 if constexpr (_PaddingValue != dynamic_extent)
2329 __glibcxx_assert(cmp_equal(_PaddingValue, __pad));
2330 if constexpr (_S_rank > 1 && _S_static_stride == dynamic_extent)
2331 {
2332 __glibcxx_assert(
2333 __is_representable_least_multiple<_IndexType>(
2334 __pad, _M_padextent()));
2335
2336 _M_stride = _Stride{static_cast<_IndexType>(
2337 __least_multiple(__pad, _M_padextent()))};
2338
2339 __glibcxx_assert(__is_representable_extents(
2340 _LayoutTraits::_S_make_padded_extent(
2341 _M_stride, _M_extents)));
2342 }
2343 }
2344
2345 template<typename _OExtents>
2346 constexpr explicit
2347 _PaddedStorage(
2348 const typename _LayoutSame::template mapping<_OExtents>& __other)
2349 : _PaddedStorage(_Extents(__other.extents()))
2350 {
2351 constexpr size_t __stride_idx = _LayoutTraits::_S_stride_idx;
2352 constexpr size_t __ext_idx = _LayoutTraits::_S_ext_idx;
2353 if constexpr (_S_rank > 1 && _PaddingValue != dynamic_extent)
2354 {
2355 static_assert(_S_static_stride == dynamic_extent
2356 || _OExtents::static_extent(__ext_idx) == dynamic_extent
2357 || _S_static_stride == _OExtents::static_extent(__ext_idx),
2358 "The padded stride must be compatible with other");
2359
2360 if constexpr (_S_static_stride == dynamic_extent
2361 || _OExtents::static_extent(__stride_idx) == dynamic_extent)
2362 __glibcxx_assert(std::cmp_equal(_M_padstride(),
2363 _M_padextent()));
2364 }
2365 }
2366
2367 template<typename _OExtents>
2368 constexpr explicit
2369 _PaddedStorage(const typename layout_stride::mapping<_OExtents>&
2370 __other)
2371 : _M_extents(__other.extents())
2372 {
2373 __glibcxx_assert(cmp_less_equal(__other.required_span_size(),
2375 ::__max));
2376
2377 constexpr size_t __stride_idx = _LayoutTraits::_S_stride_idx;
2378 if constexpr (_S_rank > 1)
2379 {
2380 if constexpr (_PaddingValue != dynamic_extent)
2381 __glibcxx_assert(cmp_equal(__other.stride(__stride_idx),
2382 _M_calc_padstride())
2383 && "The padded stride must be compatible with other");
2384 if constexpr (_S_static_stride == dynamic_extent)
2385 _M_stride = _Stride{__other.stride(__stride_idx)};
2386 }
2387 }
2388
2389 template<typename _SamePaddedMapping>
2390 constexpr explicit
2391 _PaddedStorage(_LayoutTraits::_LayoutSame,
2392 const _SamePaddedMapping& __other)
2393 : _M_extents(__other.extents())
2394 {
2395 if constexpr (_S_rank > 1)
2396 {
2397 static_assert(_PaddingValue == dynamic_extent
2398 || _SamePaddedMapping::padding_value == dynamic_extent
2399 || _PaddingValue == _SamePaddedMapping::padding_value,
2400 "If neither PaddingValue is dynamic_extent, then they must "
2401 "be equal");
2402
2403 constexpr size_t __stride_idx = _LayoutTraits::_S_stride_idx;
2404 if constexpr (_PaddingValue != dynamic_extent)
2405 __glibcxx_assert(cmp_equal(__other.stride(__stride_idx),
2406 _M_calc_padstride())
2407 && "The padded stride must be compatible with other");
2408 if constexpr (_S_static_stride == dynamic_extent)
2409 _M_stride = _Stride{__other.stride(__stride_idx)};
2410 }
2411 __glibcxx_assert(cmp_less_equal(__other.required_span_size(),
2412 __gnu_cxx::__int_traits<_IndexType>::__max));
2413 }
2414
2415 template<typename _OtherPaddedMapping>
2416 constexpr explicit
2417 _PaddedStorage(_LayoutTraits::_LayoutOther,
2418 const _OtherPaddedMapping& __other) noexcept
2419 : _M_extents(__other.extents())
2420 {
2421 __glibcxx_assert(cmp_less_equal(__other.required_span_size(),
2422 __gnu_cxx::__int_traits<_IndexType>::__max));
2423 }
2424
2425 static constexpr bool
2426 _M_is_always_exhaustive() noexcept
2427 {
2428 if constexpr (_S_rank <= 1)
2429 return true;
2430 else
2431 return _S_static_padextent() != dynamic_extent
2432 && _S_static_stride != dynamic_extent
2433 && _S_static_padextent() == _S_static_stride;
2434 }
2435
2436 constexpr bool
2437 _M_is_exhaustive() const noexcept
2438 {
2439 if constexpr (_M_is_always_exhaustive())
2440 return true;
2441 else
2442 return cmp_equal(_M_padextent(), _M_padstride());
2443 }
2444
2445 constexpr static size_t
2446 _S_static_padextent() noexcept
2447 { return _Extents::static_extent(_LayoutTraits::_S_ext_idx); }
2448
2449 constexpr _IndexType
2450 _M_padextent() const noexcept
2451 { return _M_extents.extent(_LayoutTraits::_S_ext_idx); }
2452
2453 constexpr _IndexType
2454 _M_calc_padstride() const noexcept
2455 {
2456 if constexpr (_S_static_stride != dynamic_extent)
2457 return _S_static_stride;
2458 else if constexpr (_PaddingValue != dynamic_extent)
2459 return __least_multiple(_PaddingValue, _M_padextent());
2460 else
2461 return _M_padextent();
2462 }
2463
2464 constexpr _IndexType
2465 _M_padstride() const noexcept
2466 { return _M_stride.extent(0); }
2467
2468 constexpr _IndexType
2469 _M_required_span_size() const noexcept
2470 {
2471 if constexpr (_S_rank == 0)
2472 return 1;
2473 else if (__mdspan::__empty(_M_extents))
2474 return 0;
2475 else
2476 {
2477 size_t __stride = static_cast<size_t>(_M_padstride());
2478 size_t __prod_rest = __mdspan::__fwd_prod(_M_extents,
2479 _LayoutTraits::_S_unpad_begin, _LayoutTraits::_S_unpad_end);
2480 size_t __delta = _M_padstride() - _M_padextent();
2481 return static_cast<_IndexType>(__stride * __prod_rest - __delta);
2482 }
2483 }
2484
2485 template<typename _SamePaddedMapping>
2486 constexpr bool
2487 _M_equal(const _SamePaddedMapping& __other) const noexcept
2488 {
2489 return _M_extents == __other.extents()
2490 && (_S_rank < 2
2491 || cmp_equal(_M_stride.extent(0),
2492 __other.stride(_LayoutTraits::_S_stride_idx)));
2493 }
2494
2495 using _Stride = std::extents<_IndexType, _S_static_stride>;
2496 [[no_unique_address]] _Stride _M_stride;
2497 [[no_unique_address]] _Extents _M_extents;
2498 };
2499 }
2500
2501 template<size_t _PaddingValue>
2502 template<typename _Extents>
2503 class layout_left_padded<_PaddingValue>::mapping
2504 {
2505 public:
2506 static constexpr size_t padding_value = _PaddingValue;
2507
2508 using extents_type = _Extents;
2509 using index_type = typename extents_type::index_type;
2510 using size_type = typename extents_type::size_type;
2511 using rank_type = typename extents_type::rank_type;
2512 using layout_type = layout_left_padded<padding_value>;
2513
2514 private:
2515 static constexpr size_t _S_rank = extents_type::rank();
2516 using _PaddedStorage = __mdspan::_PaddedStorage<_PaddingValue,
2517 _Extents, __mdspan::_LeftPaddedLayoutTraits<_S_rank>>;
2518 [[no_unique_address]] _PaddedStorage _M_storage;
2519
2520 consteval friend size_t
2521 __mdspan::__get_static_stride<mapping>();
2522
2523 constexpr index_type
2524 _M_extent(size_t __r) const noexcept
2525 { return _M_storage._M_extents.extent(__r); }
2526
2527 constexpr index_type
2528 _M_padstride() const noexcept
2529 { return _M_storage._M_stride.extent(0); }
2530
2531 public:
2532 constexpr
2533 mapping() noexcept
2534 { }
2535
2536 constexpr
2537 mapping(const mapping&) noexcept = default;
2538
2539 constexpr
2540 mapping(const extents_type& __exts)
2541 : _M_storage(__exts)
2542 { }
2543
2544 template<__mdspan::__valid_index_type<index_type> _OIndexType>
2545 constexpr
2546 mapping(const extents_type& __exts, _OIndexType __pad)
2547 : _M_storage(__exts,
2548 __mdspan::__index_type_cast<index_type>(std::move(__pad)))
2549 { }
2550
2551 template<typename _OExtents>
2552 requires is_constructible_v<extents_type, _OExtents>
2553 constexpr explicit(!is_convertible_v<_OExtents, extents_type>)
2554 mapping(const layout_left::mapping<_OExtents>& __other)
2555 : _M_storage(__other)
2556 { }
2557
2558 template<typename _OExtents>
2559 requires is_constructible_v<_OExtents, extents_type>
2560 constexpr explicit(!(_OExtents::rank() == 0
2561 && is_convertible_v<_OExtents, extents_type>))
2562 mapping(const typename layout_stride::mapping<_OExtents>& __other)
2563 : _M_storage(__other)
2564 { __glibcxx_assert(*this == __other); }
2565
2566 template<typename _LeftPaddedMapping>
2567 requires __mdspan::__is_left_padded_mapping<_LeftPaddedMapping>
2568 && is_constructible_v<extents_type,
2569 typename _LeftPaddedMapping::extents_type>
2570 constexpr explicit(
2571 !is_convertible_v<typename _LeftPaddedMapping::extents_type,
2572 extents_type>
2573 || _S_rank > 1 && (padding_value != dynamic_extent
2574 || _LeftPaddedMapping::padding_value == dynamic_extent))
2575 mapping(const _LeftPaddedMapping& __other)
2576 : _M_storage(layout_left{}, __other)
2577 { }
2578
2579 template<typename _RightPaddedMapping>
2580 requires (__mdspan::__is_right_padded_mapping<_RightPaddedMapping>
2581 || __mdspan::__mapping_of<layout_right, _RightPaddedMapping>)
2582 && (_S_rank <= 1)
2583 && is_constructible_v<extents_type,
2584 typename _RightPaddedMapping::extents_type>
2585 constexpr explicit(!is_convertible_v<
2586 typename _RightPaddedMapping::extents_type, extents_type>)
2587 mapping(const _RightPaddedMapping& __other) noexcept
2588 : _M_storage(layout_right{}, __other)
2589 { }
2590
2591 constexpr mapping&
2592 operator=(const mapping&) noexcept = default;
2593
2594 constexpr const extents_type&
2595 extents() const noexcept { return _M_storage._M_extents; }
2596
2597 constexpr array<index_type, _S_rank>
2598 strides() const noexcept
2599 {
2600 array<index_type, _S_rank> __ret;
2601 if constexpr (_S_rank > 0)
2602 __ret[0] = 1;
2603 if constexpr (_S_rank > 1)
2604 __ret[1] = _M_padstride();
2605 if constexpr (_S_rank > 2)
2606 for(size_t __i = 2; __i < _S_rank; ++__i)
2607 __ret[__i] = __ret[__i - 1] * _M_extent(__i - 1);
2608 return __ret;
2609 }
2610
2611 constexpr index_type
2612 required_span_size() const noexcept
2613 { return _M_storage._M_required_span_size(); }
2614
2615 // _GLIBCXX_RESOLVE_LIB_DEFECTS
2616 // 4314. Missing move in mdspan layout mapping::operator()
2617 template<__mdspan::__valid_index_type<index_type>... _Indices>
2618 requires (sizeof...(_Indices) == _S_rank)
2619 constexpr index_type
2620 operator()(_Indices... __indices) const noexcept
2621 {
2622 return __mdspan::__linear_index_leftpad(
2623 extents(), _M_storage._M_stride,
2624 static_cast<index_type>(std::move(__indices))...);
2625 }
2626
2627 static constexpr bool
2628 is_always_exhaustive() noexcept
2629 { return _PaddedStorage::_M_is_always_exhaustive(); }
2630
2631 constexpr bool
2632 is_exhaustive() const noexcept
2633 { return _M_storage._M_is_exhaustive(); }
2634
2635 static constexpr bool
2636 is_always_unique() noexcept { return true; }
2637
2638 static constexpr bool
2639 is_unique() noexcept { return true; }
2640
2641 static constexpr bool
2642 is_always_strided() noexcept { return true; }
2643
2644 static constexpr bool
2645 is_strided() noexcept { return true; }
2646
2647 constexpr index_type
2648 stride(rank_type __r) const noexcept
2649 {
2650 __glibcxx_assert(__r < _S_rank);
2651 if (__r == 0)
2652 return 1;
2653 else
2654 return static_cast<index_type>(
2655 static_cast<size_t>(_M_padstride()) *
2656 static_cast<size_t>(__mdspan::__fwd_prod(extents(), 1, __r)));
2657 }
2658
2659 template<typename _LeftpadMapping>
2660 requires(__mdspan::__is_left_padded_mapping<_LeftpadMapping>
2661 && _LeftpadMapping::extents_type::rank() == _S_rank)
2662 friend constexpr bool
2663 operator==(const mapping& __self, const _LeftpadMapping& __other)
2664 noexcept
2665 { return __self._M_storage._M_equal(__other); }
2666
2667 private:
2668#if __glibcxx_submdspan
2669 template<typename... _Slices>
2670 requires (extents_type::rank() == sizeof...(_Slices))
2671 friend constexpr auto
2672 submdspan_mapping(const mapping& __mapping, _Slices... __slices)
2673 { return __mdspan::__submdspan_mapping_impl(__mapping, __slices...); }
2674#endif // __glibcxx_submdspan
2675 };
2676
2677 template<size_t _PaddingValue>
2678 template<typename _Extents>
2679 class layout_right_padded<_PaddingValue>::mapping {
2680 public:
2681 static constexpr size_t padding_value = _PaddingValue;
2682 using extents_type = _Extents;
2683 using index_type = typename extents_type::index_type;
2684 using size_type = typename extents_type::size_type;
2685 using rank_type = typename extents_type::rank_type;
2686 using layout_type = layout_right_padded<_PaddingValue>;
2687
2688 private:
2689 static constexpr size_t _S_rank = extents_type::rank();
2690 using _PaddedStorage = __mdspan::_PaddedStorage<_PaddingValue,
2691 _Extents, __mdspan::_RightPaddedLayoutTraits<_S_rank>>;
2692 [[no_unique_address]] _PaddedStorage _M_storage;
2693
2694 consteval friend size_t
2695 __mdspan::__get_static_stride<mapping>();
2696
2697 constexpr index_type
2698 _M_extent(size_t __r) const noexcept
2699 { return _M_storage._M_extents.extent(__r); }
2700
2701 constexpr index_type
2702 _M_padstride() const noexcept
2703 { return _M_storage._M_stride.extent(0); }
2704
2705 public:
2706 constexpr
2707 mapping() noexcept
2708 { }
2709
2710 constexpr
2711 mapping(const mapping&) noexcept = default;
2712
2713 constexpr
2714 mapping(const extents_type& __exts)
2715 : _M_storage(__exts)
2716 { }
2717
2718 template<__mdspan::__valid_index_type<index_type> _OIndexType>
2719 constexpr
2720 mapping(const extents_type& __exts, _OIndexType __pad)
2721 : _M_storage(__exts,
2722 __mdspan::__index_type_cast<index_type>(std::move(__pad)))
2723 { }
2724
2725 template<typename _OExtents>
2726 requires is_constructible_v<extents_type, _OExtents>
2727 constexpr explicit(!is_convertible_v<_OExtents, extents_type>)
2728 mapping(const layout_right::mapping<_OExtents>& __other)
2729 : _M_storage(__other)
2730 { }
2731
2732 template<typename _OExtents>
2733 requires is_constructible_v<_OExtents, extents_type>
2734 constexpr explicit(!(_OExtents::rank() == 0
2735 && is_convertible_v<_OExtents, extents_type>))
2736 mapping(const typename layout_stride::mapping<_OExtents>& __other)
2737 : _M_storage(__other)
2738 { __glibcxx_assert(*this == __other); }
2739
2740 template<typename _RightPaddedMapping>
2741 requires __mdspan::__is_right_padded_mapping<_RightPaddedMapping>
2742 && is_constructible_v<extents_type,
2743 typename _RightPaddedMapping::extents_type>
2744 constexpr explicit(
2745 !is_convertible_v<typename _RightPaddedMapping::extents_type,
2746 extents_type>
2747 || _S_rank > 1 && (padding_value != dynamic_extent
2748 || _RightPaddedMapping::padding_value == dynamic_extent))
2749 mapping(const _RightPaddedMapping& __other)
2750 : _M_storage(layout_right{}, __other)
2751 { }
2752
2753 template<typename _LeftPaddedMapping>
2754 requires (__mdspan::__is_left_padded_mapping<_LeftPaddedMapping>
2755 || __mdspan::__mapping_of<layout_left, _LeftPaddedMapping>)
2756 && (_S_rank <= 1)
2757 && is_constructible_v<extents_type,
2758 typename _LeftPaddedMapping::extents_type>
2759 constexpr explicit(!is_convertible_v<
2760 typename _LeftPaddedMapping::extents_type, extents_type>)
2761 mapping(const _LeftPaddedMapping& __other) noexcept
2762 : _M_storage(layout_left{}, __other)
2763 { }
2764
2765 constexpr mapping& operator=(const mapping&) noexcept = default;
2766
2767 constexpr const extents_type&
2768 extents() const noexcept { return _M_storage._M_extents; }
2769
2770 constexpr array<index_type, _S_rank>
2771 strides() const noexcept
2772 {
2773 array<index_type, _S_rank> __ret;
2774 if constexpr (_S_rank > 0)
2775 __ret[_S_rank - 1] = 1;
2776 if constexpr (_S_rank > 1)
2777 __ret[_S_rank - 2] = _M_padstride();
2778 if constexpr (_S_rank > 2)
2779 for(size_t __i = _S_rank - 2; __i > 0; --__i)
2780 __ret[__i - 1] = __ret[__i] * _M_extent(__i);
2781 return __ret;
2782 }
2783
2784 constexpr index_type
2785 required_span_size() const noexcept
2786 { return _M_storage._M_required_span_size(); }
2787
2788 // _GLIBCXX_RESOLVE_LIB_DEFECTS
2789 // 4314. Missing move in mdspan layout mapping::operator()
2790 template<__mdspan::__valid_index_type<index_type>... _Indices>
2791 requires (sizeof...(_Indices) == _S_rank)
2792 constexpr index_type
2793 operator()(_Indices... __indices) const noexcept
2794 {
2795 return __mdspan::__linear_index_rightpad(
2796 extents(), _M_storage._M_stride,
2797 static_cast<index_type>(std::move(__indices))...);
2798 }
2799
2800 static constexpr bool
2801 is_always_exhaustive() noexcept
2802 { return _PaddedStorage::_M_is_always_exhaustive(); }
2803
2804 constexpr bool
2805 is_exhaustive() const noexcept
2806 { return _M_storage._M_is_exhaustive(); }
2807
2808 static constexpr bool
2809 is_always_unique() noexcept { return true; }
2810
2811 static constexpr bool
2812 is_unique() noexcept { return true; }
2813
2814 static constexpr bool
2815 is_always_strided() noexcept { return true; }
2816
2817 static constexpr bool
2818 is_strided() noexcept { return true; }
2819
2820 constexpr index_type
2821 stride(rank_type __r) const noexcept
2822 {
2823 __glibcxx_assert(__r < _S_rank);
2824 if constexpr (_S_rank <= 1)
2825 return 1;
2826 else if (__r == _S_rank - 1)
2827 return 1;
2828 else if (__r == _S_rank - 2)
2829 return _M_padstride();
2830 else
2831 return static_cast<index_type>(
2832 static_cast<size_t>(_M_padstride()) *
2833 static_cast<size_t>(__mdspan::__fwd_prod(
2834 extents(), __r + 1, _S_rank - 1)));
2835 }
2836
2837 template<typename _RightPaddedMapping>
2838 requires(__mdspan::__is_right_padded_mapping<_RightPaddedMapping>
2839 && _RightPaddedMapping::extents_type::rank() == _S_rank)
2840 friend constexpr bool
2841 operator==(const mapping& __self, const _RightPaddedMapping& __other)
2842 noexcept
2843 { return __self._M_storage._M_equal(__other); }
2844
2845#if __glibcxx_submdspan
2846 private:
2847 template<typename... _Slices>
2848 requires (extents_type::rank() == sizeof...(_Slices))
2849 friend constexpr auto
2850 submdspan_mapping(const mapping& __mapping, _Slices... __slices)
2851 { return __mdspan::__submdspan_mapping_impl(__mapping, __slices...); }
2852#endif // __glibcxx_submdspan
2853 };
2854#endif // __glibcxx_padded_layouts
2855
2856 template<typename _ElementType>
2857 struct default_accessor
2858 {
2859 static_assert(!is_array_v<_ElementType>,
2860 "ElementType must not be an array type");
2861 static_assert(!is_abstract_v<_ElementType>,
2862 "ElementType must not be an abstract class type");
2863
2864 using offset_policy = default_accessor;
2865 using element_type = _ElementType;
2866 using reference = element_type&;
2867 using data_handle_type = element_type*;
2868
2869 constexpr
2870 default_accessor() noexcept = default;
2871
2872 template<typename _OElementType>
2873 requires is_convertible_v<_OElementType(*)[], element_type(*)[]>
2874 constexpr
2875 default_accessor(default_accessor<_OElementType>) noexcept
2876 { }
2877
2878 constexpr reference
2879 access(data_handle_type __p, size_t __i) const noexcept
2880 { return __p[__i]; }
2881
2882 constexpr data_handle_type
2883 offset(data_handle_type __p, size_t __i) const noexcept
2884 { return __p + __i; }
2885 };
2886
2887#ifdef __glibcxx_aligned_accessor
2888 template<typename _ElementType, size_t _ByteAlignment>
2889 struct aligned_accessor
2890 {
2891 static_assert(has_single_bit(_ByteAlignment),
2892 "ByteAlignment must be a power of two");
2893 static_assert(_ByteAlignment >= alignof(_ElementType));
2894
2895 using offset_policy = default_accessor<_ElementType>;
2896 using element_type = _ElementType;
2897 using reference = element_type&;
2898 using data_handle_type = element_type*;
2899
2900 static constexpr size_t byte_alignment = _ByteAlignment;
2901
2902 constexpr
2903 aligned_accessor() noexcept = default;
2904
2905 template<typename _OElementType, size_t _OByteAlignment>
2906 requires (_OByteAlignment >= byte_alignment)
2907 && is_convertible_v<_OElementType(*)[], element_type(*)[]>
2908 constexpr
2909 aligned_accessor(aligned_accessor<_OElementType, _OByteAlignment>)
2910 noexcept
2911 { }
2912
2913 template<typename _OElementType>
2914 requires is_convertible_v<_OElementType(*)[], element_type(*)[]>
2915 constexpr explicit
2916 aligned_accessor(default_accessor<_OElementType>) noexcept
2917 { }
2918
2919 template<typename _OElementType>
2920 requires is_convertible_v<element_type(*)[], _OElementType(*)[]>
2921 constexpr
2922 operator default_accessor<_OElementType>() const noexcept
2923 { return {}; }
2924
2925 constexpr reference
2926 access(data_handle_type __p, size_t __i) const noexcept
2927 { return std::assume_aligned<byte_alignment>(__p)[__i]; }
2928
2929 constexpr typename offset_policy::data_handle_type
2930 offset(data_handle_type __p, size_t __i) const noexcept
2931 { return std::assume_aligned<byte_alignment>(__p) + __i; }
2932 };
2933#endif
2934
2935 template<typename _ElementType, typename _Extents,
2936 typename _LayoutPolicy = layout_right,
2937 typename _AccessorPolicy = default_accessor<_ElementType>>
2938 class mdspan
2939 {
2940 static_assert(!is_array_v<_ElementType>,
2941 "ElementType must not be an array type");
2942 static_assert(!is_abstract_v<_ElementType>,
2943 "ElementType must not be an abstract class type");
2944 static_assert(__mdspan::__is_extents<_Extents>,
2945 "Extents must be a specialization of std::extents");
2946 static_assert(is_same_v<_ElementType,
2947 typename _AccessorPolicy::element_type>);
2948
2949 public:
2950 using extents_type = _Extents;
2951 using layout_type = _LayoutPolicy;
2952 using accessor_type = _AccessorPolicy;
2953 using mapping_type = typename layout_type::template mapping<extents_type>;
2954 using element_type = _ElementType;
2955 using value_type = remove_cv_t<element_type>;
2956 using index_type = typename extents_type::index_type;
2957 using size_type = typename extents_type::size_type;
2958 using rank_type = typename extents_type::rank_type;
2959 using data_handle_type = typename accessor_type::data_handle_type;
2960 using reference = typename accessor_type::reference;
2961
2962 static constexpr rank_type
2963 rank() noexcept { return extents_type::rank(); }
2964
2965 static constexpr rank_type
2966 rank_dynamic() noexcept { return extents_type::rank_dynamic(); }
2967
2968 static constexpr size_t
2969 static_extent(rank_type __r) noexcept
2970 { return extents_type::static_extent(__r); }
2971
2972 constexpr index_type
2973 extent(rank_type __r) const noexcept { return extents().extent(__r); }
2974
2975 constexpr
2976 mdspan()
2977 requires (rank_dynamic() > 0)
2978 && is_default_constructible_v<data_handle_type>
2979 && is_default_constructible_v<mapping_type>
2980 && is_default_constructible_v<accessor_type> = default;
2981
2982 constexpr
2983 mdspan(const mdspan& __other) = default;
2984
2985 constexpr
2986 mdspan(mdspan&& __other) = default;
2987
2988 template<__mdspan::__valid_index_type<index_type>... _OIndexTypes>
2989 requires (sizeof...(_OIndexTypes) == rank()
2990 || sizeof...(_OIndexTypes) == rank_dynamic())
2991 && is_constructible_v<mapping_type, extents_type>
2992 && is_default_constructible_v<accessor_type>
2993 constexpr explicit
2994 mdspan(data_handle_type __handle, _OIndexTypes... __exts)
2995 : _M_accessor(),
2996 _M_mapping(_Extents(static_cast<index_type>(std::move(__exts))...)),
2997 _M_handle(std::move(__handle))
2998 { }
2999
3000 template<typename _OIndexType, size_t _Nm>
3001 requires __mdspan::__valid_index_type<const _OIndexType&, index_type>
3002 && (_Nm == rank() || _Nm == rank_dynamic())
3003 && is_constructible_v<mapping_type, extents_type>
3004 && is_default_constructible_v<accessor_type>
3005 constexpr explicit(_Nm != rank_dynamic())
3006 mdspan(data_handle_type __handle, span<_OIndexType, _Nm> __exts)
3007 : _M_accessor(), _M_mapping(extents_type(__exts)),
3008 _M_handle(std::move(__handle))
3009 { }
3010
3011 template<typename _OIndexType, size_t _Nm>
3012 requires __mdspan::__valid_index_type<const _OIndexType&, index_type>
3013 && (_Nm == rank() || _Nm == rank_dynamic())
3014 && is_constructible_v<mapping_type, extents_type>
3015 && is_default_constructible_v<accessor_type>
3016 constexpr explicit(_Nm != rank_dynamic())
3017 mdspan(data_handle_type __handle, const array<_OIndexType, _Nm>& __exts)
3018 : _M_accessor(), _M_mapping(extents_type(__exts)),
3019 _M_handle(std::move(__handle))
3020 { }
3021
3022 constexpr
3023 mdspan(data_handle_type __handle, const extents_type& __exts)
3024 requires is_constructible_v<mapping_type, const extents_type&>
3025 && is_default_constructible_v<accessor_type>
3026 : _M_accessor(), _M_mapping(__exts), _M_handle(std::move(__handle))
3027 { }
3028
3029 constexpr
3030 mdspan(data_handle_type __handle, const mapping_type& __mapping)
3031 requires is_default_constructible_v<accessor_type>
3032 : _M_accessor(), _M_mapping(__mapping), _M_handle(std::move(__handle))
3033 { }
3034
3035 constexpr
3036 mdspan(data_handle_type __handle, const mapping_type& __mapping,
3037 const accessor_type& __accessor)
3038 : _M_accessor(__accessor), _M_mapping(__mapping),
3039 _M_handle(std::move(__handle))
3040 { }
3041
3042 template<typename _OElementType, typename _OExtents, typename _OLayout,
3043 typename _OAccessor>
3044 requires is_constructible_v<mapping_type,
3045 const typename _OLayout::template mapping<_OExtents>&>
3046 && is_constructible_v<accessor_type, const _OAccessor&>
3047 constexpr explicit(!is_convertible_v<
3048 const typename _OLayout::template mapping<_OExtents>&, mapping_type>
3049 || !is_convertible_v<const _OAccessor&, accessor_type>)
3050 mdspan(const mdspan<_OElementType, _OExtents, _OLayout, _OAccessor>&
3051 __other)
3052 : _M_accessor(__other.accessor()), _M_mapping(__other.mapping()),
3053 _M_handle(__other.data_handle())
3054 {
3055 static_assert(is_constructible_v<data_handle_type,
3056 const typename _OAccessor::data_handle_type&>);
3057 static_assert(is_constructible_v<extents_type, _OExtents>);
3058 }
3059
3060 constexpr mdspan&
3061 operator=(const mdspan& __other) = default;
3062
3063 constexpr mdspan&
3064 operator=(mdspan&& __other) = default;
3065
3066 template<__mdspan::__valid_index_type<index_type>... _OIndexTypes>
3067 requires (sizeof...(_OIndexTypes) == rank())
3068 constexpr reference
3069 operator[](_OIndexTypes... __indices) const
3070 {
3071 if constexpr (rank() == 0)
3072 return _M_accessor.access(_M_handle, _M_mapping());
3073 else if constexpr (!(is_same_v<_OIndexTypes, index_type> && ...))
3074 return operator[](
3075 __mdspan::__index_type_cast<index_type>(std::move(__indices))...);
3076 else
3077 {
3078 auto __is_multi_index = [&]<size_t... _Counts>(index_sequence<_Counts...>)
3079 { return ((__indices < extents().extent(_Counts)) && ...); };
3080
3081 __glibcxx_assert(__is_multi_index(make_index_sequence<rank()>()));
3082 return _M_accessor.access(_M_handle, _M_mapping(__indices...));
3083 }
3084 }
3085
3086 template<typename _OIndexType>
3087 requires __mdspan::__valid_index_type<const _OIndexType&, index_type>
3088 constexpr reference
3089 operator[](span<_OIndexType, rank()> __indices) const
3090 {
3091 auto __call = [&]<size_t... _Counts>(index_sequence<_Counts...>)
3092 -> reference
3093 {
3094 return operator[](
3095 __mdspan::__index_type_cast<index_type>(as_const(__indices[_Counts]))...);
3096 };
3097 return __call(make_index_sequence<rank()>());
3098 }
3099
3100 template<typename _OIndexType>
3101 requires __mdspan::__valid_index_type<const _OIndexType&, index_type>
3102 constexpr reference
3103 operator[](const array<_OIndexType, rank()>& __indices) const
3104 { return operator[](span<const _OIndexType, rank()>(__indices)); }
3105
3106#if __cplusplus > 202302L
3107 template<__mdspan::__valid_index_type<index_type>... _OIndexTypes>
3108 requires (sizeof...(_OIndexTypes) == rank())
3109 constexpr reference
3110 at(_OIndexTypes... __indices) const
3111 {
3112 if constexpr (rank() == 0)
3113 return _M_accessor.access(_M_handle, _M_mapping());
3114 else if constexpr (!(is_integral_v<_OIndexTypes> && ...))
3115 return at(__index_int_t<_OIndexTypes>(std::move(__indices))...);
3116 else
3117 {
3118 auto __check_bound = [&]<typename _OIntType>(size_t __dim, _OIntType __index)
3119 {
3120 if constexpr (is_signed_v<_OIntType>)
3121 if (__index < 0)
3122 std::__throw_out_of_range_fmt(
3123 __N("mdspan::at: %zuth index is negative"), __dim);
3124
3125 const auto __ext = extents().extent(__dim);
3126 if (std::cmp_greater_equal(__index, __ext))
3127 std::__throw_out_of_range_fmt(
3128 __N("mdspan::at: %zuth index (which is %zu)"
3129 " >= extent(%zu) (which is %zu)"),
3130 __dim, size_t(__index), __dim, size_t(__ext));
3131 };
3132 auto __check_bounds = [&]<size_t... _Counts>(index_sequence<_Counts...>)
3133 { (__check_bound(_Counts, __indices), ...); };
3134
3135 __check_bounds(make_index_sequence<rank()>());
3136 auto __index = _M_mapping(static_cast<index_type>(__indices)...);
3137 return _M_accessor.access(_M_handle, __index);
3138 }
3139 }
3140
3141 template<typename _OIndexType>
3142 requires __mdspan::__valid_index_type<const _OIndexType&, index_type>
3143 constexpr reference
3144 at(span<_OIndexType, rank()> __indices) const
3145 {
3146 auto __call = [&]<size_t... _Counts>(index_sequence<_Counts...>)
3147 -> reference
3148 {
3149 return at(
3150 __index_int_t<_OIndexType>(as_const(__indices[_Counts]))...);
3151 };
3152 return __call(make_index_sequence<rank()>());
3153 }
3154
3155 template<typename _OIndexType>
3156 requires __mdspan::__valid_index_type<const _OIndexType&, index_type>
3157 constexpr reference
3158 at(const array<_OIndexType, rank()>& __indices) const
3159 { return at(span<const _OIndexType, rank()>(__indices)); }
3160#endif // C++26
3161
3162 constexpr size_type
3163 size() const noexcept
3164 {
3165 __glibcxx_assert(cmp_less_equal(_M_mapping.required_span_size(),
3167 ::__max));
3168 return size_type(__mdspan::__size(extents()));
3169 }
3170
3171 [[nodiscard]]
3172 constexpr bool
3173 empty() const noexcept
3174 { return __mdspan::__empty(extents()); }
3175
3176 friend constexpr void
3177 swap(mdspan& __x, mdspan& __y) noexcept
3178 {
3179 using std::swap;
3180 swap(__x._M_mapping, __y._M_mapping);
3181 swap(__x._M_accessor, __y._M_accessor);
3182 swap(__x._M_handle, __y._M_handle);
3183 }
3184
3185 constexpr const extents_type&
3186 extents() const noexcept { return _M_mapping.extents(); }
3187
3188 constexpr const data_handle_type&
3189 data_handle() const noexcept { return _M_handle; }
3190
3191 constexpr const mapping_type&
3192 mapping() const noexcept { return _M_mapping; }
3193
3194 constexpr const accessor_type&
3195 accessor() const noexcept { return _M_accessor; }
3196
3197 // Strengthened noexcept for all `is_*` methods.
3198
3199 static constexpr bool
3200 is_always_unique() noexcept(noexcept(mapping_type::is_always_unique()))
3201 { return mapping_type::is_always_unique(); }
3202
3203 static constexpr bool
3204 is_always_exhaustive()
3205 noexcept(noexcept(mapping_type::is_always_exhaustive()))
3206 { return mapping_type::is_always_exhaustive(); }
3207
3208 static constexpr bool
3209 is_always_strided()
3210 noexcept(noexcept(mapping_type::is_always_strided()))
3211 { return mapping_type::is_always_strided(); }
3212
3213 constexpr bool
3214 is_unique() const noexcept(noexcept(_M_mapping.is_unique()))
3215 { return _M_mapping.is_unique(); }
3216
3217 constexpr bool
3218 is_exhaustive() const noexcept(noexcept(_M_mapping.is_exhaustive()))
3219 { return _M_mapping.is_exhaustive(); }
3220
3221 constexpr bool
3222 is_strided() const noexcept(noexcept(_M_mapping.is_strided()))
3223 { return _M_mapping.is_strided(); }
3224
3225 constexpr index_type
3226 stride(rank_type __r) const { return _M_mapping.stride(__r); }
3227
3228 private:
3229 template<typename _OIndexType>
3230 using __index_int_t = std::__conditional_t<
3231 is_integral_v<_OIndexType>, _OIndexType, index_type>;
3232
3233 [[no_unique_address]] accessor_type _M_accessor = accessor_type();
3234 [[no_unique_address]] mapping_type _M_mapping = mapping_type();
3235 [[no_unique_address]] data_handle_type _M_handle = data_handle_type();
3236 };
3237
3238 template<typename _CArray>
3239 requires is_array_v<_CArray> && (rank_v<_CArray> == 1)
3240 mdspan(_CArray&)
3241 -> mdspan<remove_all_extents_t<_CArray>,
3242 extents<size_t, extent_v<_CArray, 0>>>;
3243
3244 template<typename _Pointer>
3245 requires is_pointer_v<remove_reference_t<_Pointer>>
3246 mdspan(_Pointer&&)
3247 -> mdspan<remove_pointer_t<remove_reference_t<_Pointer>>, extents<size_t>>;
3248
3249 template<typename _ElementType, typename... _Integrals>
3250 requires (is_convertible_v<_Integrals, size_t> && ...)
3251 && (sizeof...(_Integrals) > 0)
3252 explicit mdspan(_ElementType*, _Integrals...)
3253 -> mdspan<_ElementType,
3254 extents<size_t, __detail::__maybe_static_ext<_Integrals>...>>;
3255
3256 template<typename _ElementType, typename _OIndexType, size_t _Nm>
3257 mdspan(_ElementType*, span<_OIndexType, _Nm>)
3258 -> mdspan<_ElementType, dextents<size_t, _Nm>>;
3259
3260 template<typename _ElementType, typename _OIndexType, size_t _Nm>
3261 mdspan(_ElementType*, const array<_OIndexType, _Nm>&)
3262 -> mdspan<_ElementType, dextents<size_t, _Nm>>;
3263
3264 template<typename _ElementType, typename _IndexType, size_t... _ExtentsPack>
3265 mdspan(_ElementType*, const extents<_IndexType, _ExtentsPack...>&)
3266 -> mdspan<_ElementType, extents<_IndexType, _ExtentsPack...>>;
3267
3268 template<typename _ElementType, typename _MappingType>
3269 mdspan(_ElementType*, const _MappingType&)
3270 -> mdspan<_ElementType, typename _MappingType::extents_type,
3271 typename _MappingType::layout_type>;
3272
3273 // _GLIBCXX_RESOLVE_LIB_DEFECTS
3274 // 4511. Inconsistency between the deduction guide of std::mdspan taking...
3275 template<typename _MappingType, typename _AccessorType>
3276 mdspan(typename _AccessorType::data_handle_type, const _MappingType&,
3277 const _AccessorType&)
3278 -> mdspan<typename _AccessorType::element_type,
3279 typename _MappingType::extents_type,
3280 typename _MappingType::layout_type, _AccessorType>;
3281
3282#if __glibcxx_submdspan
3283 namespace __mdspan
3284 {
3285 template<typename _IndexType, typename _Slice>
3286 constexpr auto
3287 __canonical_index(_Slice&& __slice)
3288 {
3289 if constexpr (__detail::__integral_constant_like<_Slice>)
3290 {
3291 static_assert(__is_representable_integer<_IndexType>(_Slice::value));
3292 static_assert(_Slice::value >= 0);
3293 return std::cw<_IndexType(_Slice::value)>;
3294 }
3295 else
3296 return __mdspan::__index_type_cast<_IndexType>(std::move(__slice));
3297 }
3298
3299 template<typename _IndexType,
3300 typename _OffsetType, typename _SpanType, typename _StrideType>
3301 constexpr auto
3302 __canonical_range_slice(_OffsetType __offset, _SpanType __span,
3303 _StrideType __stride)
3304 {
3305 if constexpr (is_same_v<_SpanType, constant_wrapper<_IndexType(0)>>
3306 || is_same_v<_StrideType, constant_wrapper<_IndexType(1)>>)
3307 return extent_slice{
3308 .offset = __offset,
3309 .extent = __span,
3310 .stride = cw<_IndexType(1)>
3311 };
3312 else if constexpr (__is_constant_wrapper<_StrideType>)
3313 {
3314 static_assert(_StrideType::value > 0);
3315 if constexpr (__is_constant_wrapper<_SpanType>)
3316 return extent_slice{
3317 .offset = __offset,
3318 .extent = cw<_IndexType(1 + (_SpanType::value - 1) / _StrideType::value)>,
3319 .stride = __stride
3320 };
3321 else
3322 return extent_slice{
3323 .offset = __offset,
3324 .extent = _IndexType(__span > 0 ? 1 + (__span - 1) / _StrideType::value : 0),
3325 .stride = __stride
3326 };
3327 }
3328 else if (__span == 0 || __stride == 1)
3329 return extent_slice{
3330 .offset = __offset,
3331 .extent = _IndexType(__span),
3332 .stride = _IndexType(1)
3333 };
3334 else
3335 {
3336 __glibcxx_assert(__stride > 0);
3337 return extent_slice{
3338 .offset = __offset,
3339 .extent = _IndexType(1 + (__span - 1) / __stride),
3340 .stride = __stride
3341 };
3342 }
3343 }
3344
3345 template<typename _IndexType, typename _Slice>
3346 constexpr auto
3347 __slice_cast(_Slice&& __slice)
3348 {
3349 using _SliceType = remove_cvref_t<_Slice>;
3350 if constexpr (is_convertible_v<_SliceType, full_extent_t>)
3351 return static_cast<full_extent_t>(std::move(__slice));
3352 else if constexpr (is_convertible_v<_SliceType, _IndexType>)
3353 return __mdspan::__canonical_index<_IndexType>(std::move(__slice));
3354 else if constexpr (__is_extent_slice<_SliceType>)
3355 return extent_slice{
3356 .offset = __mdspan::__canonical_index<_IndexType>(std::move(__slice.offset)),
3357 .extent = __mdspan::__canonical_index<_IndexType>(std::move(__slice.extent)),
3358 .stride = __mdspan::__canonical_index<_IndexType>(std::move(__slice.stride))
3359 };
3360 else if constexpr (__is_range_slice<_SliceType>)
3361 {
3362 auto __first
3363 = __mdspan::__canonical_index<_IndexType>(std::move(__slice.first));
3364 auto __last
3365 = __mdspan::__canonical_index<_IndexType>(std::move(__slice.last));
3366 return __mdspan::__canonical_range_slice<_IndexType>(
3367 __first,
3368 __mdspan::__canonical_index<_IndexType>(__last - __first),
3369 __mdspan::__canonical_index<_IndexType>(std::move(__slice.stride)));
3370 }
3371 else
3372 {
3373 auto [__sbegin, __send] = std::move(__slice);
3374 auto __cbegin
3375 = __mdspan::__canonical_index<_IndexType>(std::move(__sbegin));
3376 auto __cend
3377 = __mdspan::__canonical_index<_IndexType>(std::move(__send));
3378 auto __cspan
3379 = __mdspan::__canonical_index<_IndexType>(__cend - __cbegin);
3380 return __mdspan::__canonical_range_slice<_IndexType>(
3381 __cbegin, __cspan, cw<_IndexType(1)>);
3382 }
3383 }
3384
3385 template<typename _IndexType, size_t _Extent, typename _OIndexType>
3386 constexpr void
3387 __check_inrange_index(const extents<_IndexType, _Extent>& __ext,
3388 const _OIndexType& __idx)
3389 {
3390 if constexpr (__is_constant_wrapper<_OIndexType>
3391 && _Extent != dynamic_extent)
3392 {
3393 static_assert(_OIndexType::value >= 0);
3394 static_assert(std::cmp_less(_OIndexType::value, _Extent));
3395 }
3396 else
3397 __glibcxx_assert(__idx < __ext.extent(0));
3398 }
3399
3400 template<typename _IndexType, size_t _Extent, typename _OIndexType>
3401 constexpr void
3402 __check_valid_index(const extents<_IndexType, _Extent>& __ext,
3403 const _OIndexType& __idx)
3404 {
3405 if constexpr (__is_constant_wrapper<_OIndexType>
3406 && _Extent != dynamic_extent)
3407 {
3408 static_assert(_OIndexType::value >= 0);
3409 static_assert(std::cmp_less_equal(_OIndexType::value, _Extent));
3410 }
3411 else
3412 __glibcxx_assert(__idx <= __ext.extent(0));
3413 }
3414
3415 template<typename _IndexType, size_t _Extent, typename _Slice>
3416 constexpr void
3417 __check_valid_slice(const extents<_IndexType, _Extent>& __ext,
3418 const _Slice& __slice)
3419 {
3420 if constexpr (__is_extent_slice<_Slice>)
3421 {
3422 __mdspan::__check_valid_index(__ext, __slice.extent);
3423 // DEVIATION: For empty slices, P3663r3 does not allow us to check
3424 // that this is less than or equal to the k-th extent (at runtime).
3425 // We're only allowed to check if __slice.offset, __slice.extent
3426 // are constant wrappers and __ext is a static extent.
3427 if constexpr (is_same_v<typename _Slice::extent_type,
3428 constant_wrapper<_IndexType(0)>>)
3429 __mdspan::__check_valid_index(__ext, __slice.offset);
3430 else if constexpr (is_same_v<typename _Slice::extent_type,
3431 constant_wrapper<_IndexType(1)>>)
3432 __mdspan::__check_inrange_index(__ext, __slice.offset);
3433 else if constexpr (__is_constant_wrapper<typename _Slice::extent_type>)
3434 {
3435 __mdspan::__check_inrange_index(__ext, __slice.offset);
3436 if constexpr (__is_constant_wrapper<typename _Slice::stride_type>)
3437 static_assert(_Slice::stride_type::value > 0);
3438 else
3439 __glibcxx_assert(__slice.stride > 0);
3440
3441 if constexpr (_Extent != dynamic_extent
3442 && __is_constant_wrapper<typename _Slice::offset_type>)
3443 static_assert(std::cmp_greater_equal(
3444 _Extent - _Slice::offset_type::value,
3445 _Slice::extent_type::value));
3446 if constexpr (_Extent != dynamic_extent
3447 && __is_constant_wrapper<typename _Slice::stride_type>)
3448 static_assert(std::cmp_greater(
3449 _Extent,
3450 (_Slice::extent_type::value - 1) * _Slice::stride_type::value));
3451
3452 if constexpr (_Extent != dynamic_extent
3453 && __is_constant_wrapper<typename _Slice::offset_type>
3454 && __is_constant_wrapper<typename _Slice::stride_type>)
3455 static_assert(std::cmp_greater(
3456 _Extent - _Slice::offset_type::value,
3457 (_Slice::extent_type::value - 1) * _Slice::stride_type::value));
3458 else
3459 __glibcxx_assert(std::cmp_greater(
3460 __ext.extent(0) - __slice.offset,
3461 (_Slice::extent_type::value - 1) * __slice.stride));
3462 }
3463 else if constexpr (is_same_v<typename _Slice::stride_type,
3464 constant_wrapper<_IndexType(1)>>)
3465 {
3466 __mdspan::__check_valid_index(__ext, __slice.offset);
3467 __glibcxx_assert(std::cmp_greater_equal(
3468 __ext.extent(0) - __slice.offset,
3469 __slice.extent));
3470 }
3471 else if (__slice.extent == 0)
3472 __mdspan::__check_valid_index(__ext, __slice.offset);
3473 else
3474 {
3475 __glibcxx_assert(__slice.offset < __ext.extent(0));
3476 __glibcxx_assert(__slice.extent == 1 || __slice.stride > 0);
3477 __glibcxx_assert(__slice.extent == 1 || std::cmp_greater(
3478 __ext.extent(0) - __slice.offset,
3479 (__slice.extent - 1) * __slice.stride));
3480 }
3481 }
3482 else if constexpr (!is_same_v<_Slice, full_extent_t>)
3483 __mdspan::__check_inrange_index(__ext, __slice);
3484 }
3485
3486 template<typename _Extents, typename... _Slices>
3487 constexpr void
3488 __check_valid_slices(const _Extents& __exts, const _Slices&... __slices)
3489 {
3490 constexpr auto __rank = _Extents::rank();
3491 auto __impl = [&]<size_t... _Is>(index_sequence<_Is...>)
3492 {
3493 ((__mdspan::__check_valid_slice(__extract_extent<_Is>(__exts),
3494 __slices...[_Is])),...);
3495 };
3496 __impl(make_index_sequence<__rank>());
3497 }
3498
3499 template<typename _Slice>
3500 using __full_extent_t = std::full_extent_t;
3501
3502 // Enables ADL-only calls from submdspan.
3503 void submdspan_mapping() = delete;
3504
3505 template<typename _Mapping, typename... _Slices>
3506 concept __sliceable_mapping = requires(const _Mapping __m, _Slices... __slices)
3507 {
3508 { submdspan_mapping(__m, __slices...) } -> __submdspan_mapping_result;
3509 };
3510
3511 template<typename _Mapping, typename... _Slices>
3512 constexpr auto
3513 __submapping(const _Mapping& __mapping, _Slices... __slices)
3514 {
3515 __mdspan::__check_valid_slices(__mapping.extents(), __slices...);
3516 return submdspan_mapping(__mapping, __slices...);
3517 }
3518 }
3519
3520 template<typename _IndexType, size_t... _Extents, typename... _RawSlices>
3521 requires (sizeof...(_RawSlices) == sizeof...(_Extents))
3522 constexpr auto
3523 subextents(const extents<_IndexType, _Extents...>& __exts,
3524 _RawSlices... __raw_slices)
3525 {
3526 auto __impl = [&__exts](auto... __slices)
3527 {
3528 __mdspan::__check_valid_slices(__exts, __slices...);
3529 return __mdspan::__subextents(__exts, __slices...);
3530 };
3531 return __impl(__mdspan::__slice_cast<_IndexType>(__raw_slices)...);
3532 }
3533
3534 template<typename _IndexType, size_t... _Extents, typename... _RawSlices>
3535 requires (sizeof...(_Extents) == sizeof...(_RawSlices))
3536 constexpr auto
3537 canonical_slices(const extents<_IndexType, _Extents...>& __exts,
3538 _RawSlices... __raw_slices)
3539 {
3540 auto __impl = [&__exts](auto... __slices)
3541 {
3542 __mdspan::__check_valid_slices(__exts, __slices...);
3543 return std::make_tuple(__slices...);
3544 };
3545 return __impl(__mdspan::__slice_cast<_IndexType>(__raw_slices)...);
3546 }
3547
3548 template<typename _ElementType, typename _Extents, typename _Layout,
3549 typename _Accessor, typename... _RawSlices>
3550 requires (sizeof...(_RawSlices) == _Extents::rank()
3551 && __mdspan::__sliceable_mapping<typename _Layout::template mapping<_Extents>,
3552 __mdspan::__full_extent_t<_RawSlices>...>)
3553 constexpr auto
3554 submdspan(
3555 const mdspan<_ElementType, _Extents, _Layout, _Accessor>& __md,
3556 _RawSlices... __raw_slices)
3557 {
3558 using _IndexType = typename _Extents::index_type;
3559 auto [__mapping, __offset] = __mdspan::__submapping(
3560 __md.mapping(), __mdspan::__slice_cast<_IndexType>(__raw_slices)...);
3561 return std::mdspan(
3562 __md.accessor().offset(__md.data_handle(), __offset),
3563 std::move(__mapping),
3564 typename _Accessor::offset_policy(__md.accessor()));
3565 }
3566#endif // __glibcxx_submdspan
3567
3568_GLIBCXX_END_NAMESPACE_VERSION
3569}
3570#endif
3571#endif
constexpr _Tp * assume_aligned(_Tp *__ptr) noexcept
Inform the compiler that a pointer is aligned.
Definition align.h:90
typename make_unsigned< _Tp >::type make_unsigned_t
Alias template for make_unsigned.
Definition type_traits:2250
constexpr tuple< typename __decay_and_strip< _Elements >::__type... > make_tuple(_Elements &&... __args)
Create a tuple containing copies of the arguments.
Definition tuple:2725
constexpr std::remove_reference< _Tp >::type && move(_Tp &&__t) noexcept
Convert a value to an rvalue.
Definition move.h:138
constexpr _Tp && forward(typename std::remove_reference< _Tp >::type &__t) noexcept
Forward an lvalue.
Definition move.h:72
ISO C++ entities toplevel namespace is std.
make_integer_sequence< size_t, _Num > make_index_sequence
Alias template make_index_sequence.
Definition utility.h:527
integer_sequence< size_t, _Idx... > index_sequence
Alias template index_sequence.
Definition utility.h:523
__numeric_traits_integer< _Tp > __int_traits
Convenience alias for __numeric_traits<integer-type>.