25#ifndef _GLIBCXX_EXPERIMENTAL_SIMD_H
26#define _GLIBCXX_EXPERIMENTAL_SIMD_H
28#if __cplusplus >= 201703L
30#include "simd_detail.h"
31#include "numeric_traits.h"
34#ifdef _GLIBCXX_DEBUG_UB
44#if _GLIBCXX_SIMD_X86INTRIN
46#elif _GLIBCXX_SIMD_HAVE_NEON
47#pragma GCC diagnostic push
50#pragma GCC diagnostic ignored "-Wnarrowing"
52#pragma GCC diagnostic pop
54#if _GLIBCXX_SIMD_HAVE_SVE
61_GLIBCXX_SIMD_BEGIN_NAMESPACE
87#if !_GLIBCXX_SIMD_X86INTRIN
88using __m128 [[__gnu__::__vector_size__(16)]] = float;
89using __m128d [[__gnu__::__vector_size__(16)]] = double;
90using __m128i [[__gnu__::__vector_size__(16)]] =
long long;
91using __m256 [[__gnu__::__vector_size__(32)]] = float;
92using __m256d [[__gnu__::__vector_size__(32)]] = double;
93using __m256i [[__gnu__::__vector_size__(32)]] =
long long;
94using __m512 [[__gnu__::__vector_size__(64)]] = float;
95using __m512d [[__gnu__::__vector_size__(64)]] = double;
96using __m512i [[__gnu__::__vector_size__(64)]] =
long long;
99#if _GLIBCXX_SIMD_HAVE_SVE
100constexpr inline int __sve_vectorized_size_bytes = __ARM_FEATURE_SVE_BITS / 8;
102constexpr inline int __sve_vectorized_size_bytes = 0;
124template <
int _UsedBytes>
127template <
int _UsedBytes>
128 struct _VecBltnBtmsk;
130template <
int _UsedBytes,
int _TotalBytes = __sve_vectorized_size_
bytes>
133template <
typename _Tp,
int _Np>
134 using _VecN = _VecBuiltin<
sizeof(_Tp) * _Np>;
136template <
int _UsedBytes = 16>
137 using _Sse = _VecBuiltin<_UsedBytes>;
139template <
int _UsedBytes = 32>
140 using _Avx = _VecBuiltin<_UsedBytes>;
142template <
int _UsedBytes = 64>
143 using _Avx512 = _VecBltnBtmsk<_UsedBytes>;
145template <
int _UsedBytes = 16>
146 using _Neon = _VecBuiltin<_UsedBytes>;
148template <
int _UsedBytes = __sve_vectorized_size_
bytes>
149 using _Sve = _SveAbi<_UsedBytes, __sve_vectorized_size_bytes>;
154using __avx512 = _Avx512<>;
155using __neon = _Neon<>;
156using __neon128 = _Neon<16>;
157using __neon64 = _Neon<8>;
161template <
typename _Tp,
size_t _Np,
typename...>
165 using fixed_size = _Fixed<_Np>;
167using scalar = _Scalar;
172template <
typename _Tp>
175template <
typename _Tp>
178template <
typename _Tp,
typename _Abi>
181template <
typename _Tp,
typename _Abi>
184template <
typename _Tp,
typename _Abi>
189struct element_aligned_tag
191 template <
typename _Tp,
typename _Up =
typename _Tp::value_type>
192 static constexpr size_t _S_alignment =
alignof(_Up);
194 template <
typename _Tp,
typename _Up>
195 _GLIBCXX_SIMD_INTRINSIC
static constexpr _Up*
200struct vector_aligned_tag
202 template <
typename _Tp,
typename _Up =
typename _Tp::value_type>
203 static constexpr size_t _S_alignment
204 = std::__bit_ceil(
sizeof(_Up) * _Tp::size());
206 template <
typename _Tp,
typename _Up>
207 _GLIBCXX_SIMD_INTRINSIC
static constexpr _Up*
209 {
return static_cast<_Up*
>(__builtin_assume_aligned(__ptr, _S_alignment<_Tp, _Up>)); }
212template <
size_t _Np>
struct overaligned_tag
214 template <
typename _Tp,
typename _Up =
typename _Tp::value_type>
215 static constexpr size_t _S_alignment = _Np;
217 template <
typename _Tp,
typename _Up>
218 _GLIBCXX_SIMD_INTRINSIC
static constexpr _Up*
220 {
return static_cast<_Up*
>(__builtin_assume_aligned(__ptr, _Np)); }
223inline constexpr element_aligned_tag element_aligned = {};
225inline constexpr vector_aligned_tag vector_aligned = {};
228 inline constexpr overaligned_tag<_Np> overaligned = {};
232 using _SizeConstant = integral_constant<size_t, _Xp>;
234constexpr inline bool __have_mmx = _GLIBCXX_SIMD_HAVE_MMX;
235constexpr inline bool __have_sse = _GLIBCXX_SIMD_HAVE_SSE;
236constexpr inline bool __have_sse2 = _GLIBCXX_SIMD_HAVE_SSE2;
237constexpr inline bool __have_sse3 = _GLIBCXX_SIMD_HAVE_SSE3;
238constexpr inline bool __have_ssse3 = _GLIBCXX_SIMD_HAVE_SSSE3;
239constexpr inline bool __have_sse4_1 = _GLIBCXX_SIMD_HAVE_SSE4_1;
240constexpr inline bool __have_sse4_2 = _GLIBCXX_SIMD_HAVE_SSE4_2;
241constexpr inline bool __have_xop = _GLIBCXX_SIMD_HAVE_XOP;
242constexpr inline bool __have_avx = _GLIBCXX_SIMD_HAVE_AVX;
243constexpr inline bool __have_avx2 = _GLIBCXX_SIMD_HAVE_AVX2;
244constexpr inline bool __have_bmi = _GLIBCXX_SIMD_HAVE_BMI1;
245constexpr inline bool __have_bmi2 = _GLIBCXX_SIMD_HAVE_BMI2;
246constexpr inline bool __have_lzcnt = _GLIBCXX_SIMD_HAVE_LZCNT;
247constexpr inline bool __have_sse4a = _GLIBCXX_SIMD_HAVE_SSE4A;
248constexpr inline bool __have_fma = _GLIBCXX_SIMD_HAVE_FMA;
249constexpr inline bool __have_fma4 = _GLIBCXX_SIMD_HAVE_FMA4;
250constexpr inline bool __have_f16c = _GLIBCXX_SIMD_HAVE_F16C;
251constexpr inline bool __have_popcnt = _GLIBCXX_SIMD_HAVE_POPCNT;
252constexpr inline bool __have_avx512f = _GLIBCXX_SIMD_HAVE_AVX512F;
253constexpr inline bool __have_avx512dq = _GLIBCXX_SIMD_HAVE_AVX512DQ;
254constexpr inline bool __have_avx512vl = _GLIBCXX_SIMD_HAVE_AVX512VL;
255constexpr inline bool __have_avx512bw = _GLIBCXX_SIMD_HAVE_AVX512BW;
256constexpr inline bool __have_avx512dq_vl = __have_avx512dq && __have_avx512vl;
257constexpr inline bool __have_avx512bw_vl = __have_avx512bw && __have_avx512vl;
258constexpr inline bool __have_avx512bitalg = _GLIBCXX_SIMD_HAVE_AVX512BITALG;
259constexpr inline bool __have_avx512vbmi2 = _GLIBCXX_SIMD_HAVE_AVX512VBMI2;
260constexpr inline bool __have_avx512vbmi = _GLIBCXX_SIMD_HAVE_AVX512VBMI;
261constexpr inline bool __have_avx512ifma = _GLIBCXX_SIMD_HAVE_AVX512IFMA;
262constexpr inline bool __have_avx512cd = _GLIBCXX_SIMD_HAVE_AVX512CD;
263constexpr inline bool __have_avx512vnni = _GLIBCXX_SIMD_HAVE_AVX512VNNI;
264constexpr inline bool __have_avx512vpopcntdq = _GLIBCXX_SIMD_HAVE_AVX512VPOPCNTDQ;
265constexpr inline bool __have_avx512vp2intersect = _GLIBCXX_SIMD_HAVE_AVX512VP2INTERSECT;
267constexpr inline bool __have_neon = _GLIBCXX_SIMD_HAVE_NEON;
268constexpr inline bool __have_neon_a32 = _GLIBCXX_SIMD_HAVE_NEON_A32;
269constexpr inline bool __have_neon_a64 = _GLIBCXX_SIMD_HAVE_NEON_A64;
270constexpr inline bool __support_neon_float =
271#if defined __GCC_IEC_559
273#elif defined __FAST_MATH__
279constexpr inline bool __have_sve = _GLIBCXX_SIMD_HAVE_SVE;
280constexpr inline bool __have_sve2 = _GLIBCXX_SIMD_HAVE_SVE2;
283constexpr inline bool __have_power10vec =
true;
285constexpr inline bool __have_power10vec =
false;
287#ifdef __POWER9_VECTOR__
288constexpr inline bool __have_power9vec =
true;
290constexpr inline bool __have_power9vec =
false;
292#if defined __POWER8_VECTOR__
293constexpr inline bool __have_power8vec =
true;
295constexpr inline bool __have_power8vec = __have_power9vec;
298constexpr inline bool __have_power_vsx =
true;
300constexpr inline bool __have_power_vsx = __have_power8vec;
302#if defined __ALTIVEC__
303constexpr inline bool __have_power_vmx =
true;
305constexpr inline bool __have_power_vmx = __have_power_vsx;
312#ifdef math_errhandling
316 template <
int = math_errhandling>
318 __handle_fpexcept_impl(
int)
319 {
return math_errhandling & MATH_ERREXCEPT; }
325 __handle_fpexcept_impl(
float)
327#if defined __FAST_MATH__
335 static constexpr bool _S_handle_fpexcept = __handle_fpexcept_impl(0);
337 constexpr std::uint_least64_t
338 __floating_point_flags()
340 std::uint_least64_t __flags = 0;
341 if constexpr (_S_handle_fpexcept)
345#elif __FINITE_MATH_ONLY__
347#elif __GCC_IEC_559 < 2
350 __flags |= (__FLT_EVAL_METHOD__ + 1) << 3;
354 constexpr std::uint_least64_t
357 if constexpr (__have_mmx || __have_sse)
362 | (__have_ssse3 << 4)
363 | (__have_sse4_1 << 5)
364 | (__have_sse4_2 << 6)
369 | (__have_bmi2 << 11)
370 | (__have_lzcnt << 12)
371 | (__have_sse4a << 13)
373 | (__have_fma4 << 15)
374 | (__have_f16c << 16)
375 | (__have_popcnt << 17)
376 | (__have_avx512f << 18)
377 | (__have_avx512dq << 19)
378 | (__have_avx512vl << 20)
379 | (__have_avx512bw << 21)
380 | (__have_avx512bitalg << 22)
381 | (__have_avx512vbmi2 << 23)
382 | (__have_avx512vbmi << 24)
383 | (__have_avx512ifma << 25)
384 | (__have_avx512cd << 26)
385 | (__have_avx512vnni << 27)
386 | (__have_avx512vpopcntdq << 28)
387 | (__have_avx512vp2intersect << 29);
388 else if constexpr (__have_neon || __have_sve)
390 | (__have_neon_a32 << 1)
391 | (__have_neon_a64 << 2)
392 | (__have_neon_a64 << 2)
393 | (__support_neon_float << 3)
395 | (__have_sve2 << 5);
396 else if constexpr (__have_power_vmx)
397 return __have_power_vmx
398 | (__have_power_vsx << 1)
399 | (__have_power8vec << 2)
400 | (__have_power9vec << 3)
401 | (__have_power10vec << 4);
408 struct _OdrEnforcer {};
411 template <std::uint_least64_t...>
412 struct _MachineFlagsTemplate {};
425 _MachineFlagsTemplate<__machine_flags(), __floating_point_flags()>>;
429 template <
typename _Tp>
430 _GLIBCXX_SIMD_INTRINSIC
constexpr
432 operator()(_Tp __a, _Tp __b)
const
435 return min(__a, __b);
441 template <
typename _Tp>
442 _GLIBCXX_SIMD_INTRINSIC
constexpr
444 operator()(_Tp __a, _Tp __b)
const
447 return max(__a, __b);
454template <
typename _Fp,
size_t... _I>
455 [[__gnu__::__flatten__]] _GLIBCXX_SIMD_INTRINSIC
constexpr
457 __execute_on_index_sequence(_Fp&& __f, index_sequence<_I...>)
458 { ((void)__f(_SizeConstant<_I>()), ...); }
460template <
typename _Fp>
461 _GLIBCXX_SIMD_INTRINSIC
constexpr void
462 __execute_on_index_sequence(_Fp&&, index_sequence<>)
465template <
size_t _Np,
typename _Fp>
466 _GLIBCXX_SIMD_INTRINSIC
constexpr void
467 __execute_n_times(_Fp&& __f)
469 __execute_on_index_sequence(
static_cast<_Fp&&
>(__f),
470 make_index_sequence<_Np>{});
475template <
typename _R,
typename _Fp,
size_t... _I>
476 [[__gnu__::__flatten__]] _GLIBCXX_SIMD_INTRINSIC
constexpr
478 __execute_on_index_sequence_with_return(_Fp&& __f, index_sequence<_I...>)
479 {
return _R{__f(_SizeConstant<_I>())...}; }
481template <
size_t _Np,
typename _R,
typename _Fp>
482 _GLIBCXX_SIMD_INTRINSIC
constexpr _R
483 __generate_from_n_evaluations(_Fp&& __f)
485 return __execute_on_index_sequence_with_return<_R>(
486 static_cast<_Fp&&
>(__f), make_index_sequence<_Np>{});
491template <
size_t... _I,
typename _F0,
typename _FArgs>
492 [[__gnu__::__flatten__]] _GLIBCXX_SIMD_INTRINSIC
constexpr
494 __call_with_n_evaluations(index_sequence<_I...>, _F0&& __f0, _FArgs&& __fargs)
495 {
return __f0(__fargs(_SizeConstant<_I>())...); }
497template <
size_t _Np,
typename _F0,
typename _FArgs>
498 _GLIBCXX_SIMD_INTRINSIC
constexpr auto
499 __call_with_n_evaluations(_F0&& __f0, _FArgs&& __fargs)
501 return __call_with_n_evaluations(make_index_sequence<_Np>{},
502 static_cast<_F0&&
>(__f0),
503 static_cast<_FArgs&&
>(__fargs));
508template <
size_t _First = 0,
size_t... _It,
typename _Tp,
typename _Fp>
509 [[__gnu__::__flatten__]] _GLIBCXX_SIMD_INTRINSIC
constexpr
511 __call_with_subscripts(_Tp&& __x, index_sequence<_It...>, _Fp&& __fun)
512 {
return __fun(__x[_First + _It]...); }
514template <
size_t _Np,
size_t _First = 0,
typename _Tp,
typename _Fp>
515 _GLIBCXX_SIMD_INTRINSIC
constexpr auto
516 __call_with_subscripts(_Tp&& __x, _Fp&& __fun)
518 return __call_with_subscripts<_First>(
static_cast<_Tp&&
>(__x),
519 make_index_sequence<_Np>(),
520 static_cast<_Fp&&
>(__fun));
527using _UChar =
unsigned char;
528using _SChar =
signed char;
529using _UShort =
unsigned short;
530using _UInt =
unsigned int;
531using _ULong =
unsigned long;
532using _ULLong =
unsigned long long;
533using _LLong =
long long;
537template <
typename _T0,
typename...>
538 struct __first_of_pack
539 {
using type = _T0; };
541template <
typename... _Ts>
542 using __first_of_pack_t =
typename __first_of_pack<_Ts...>::type;
546template <
typename _Tp>
547 typename _Tp::value_type
548 __value_type_or_identity_impl(
int);
550template <
typename _Tp>
552 __value_type_or_identity_impl(
float);
554template <
typename _Tp>
555 using __value_type_or_identity_t
556 =
decltype(__value_type_or_identity_impl<_Tp>(
int()));
560template <
typename _Tp>
561 struct __is_vectorizable :
public is_arithmetic<_Tp> {};
564 struct __is_vectorizable<bool> :
public false_type {};
566template <
typename _Tp>
567 inline constexpr bool __is_vectorizable_v = __is_vectorizable<_Tp>::value;
570template <
typename _Tp,
typename = enable_if_t<__is_vectorizable_v<_Tp>>>
571 using _Vectorizable = _Tp;
575template <
typename _Ptr,
typename _ValueType>
576 struct __is_possible_loadstore_conversion
577 : conjunction<__is_vectorizable<_Ptr>, __is_vectorizable<_ValueType>> {};
580 struct __is_possible_loadstore_conversion<bool, bool> : true_type {};
583template <
typename _Ptr,
typename _ValueType,
585 __is_possible_loadstore_conversion<_Ptr, _ValueType>::value>>
586 using _LoadStorePtr = _Ptr;
590template <
typename _Tp,
typename =
void_t<>>
591 struct __is_bitmask : false_type {};
593template <
typename _Tp>
594 inline constexpr bool __is_bitmask_v = __is_bitmask<_Tp>::value;
597template <
typename _Tp>
598 struct __is_bitmask<_Tp,
599 void_t<decltype(
declval<unsigned&>() = declval<_Tp>() & 1u)>>
604#pragma GCC diagnostic push
605#pragma GCC diagnostic ignored "-Wpedantic"
606template <
size_t _Bytes>
610 static_assert(_Bytes > 0);
611 if constexpr (_Bytes ==
sizeof(int))
613 else if constexpr (_Bytes ==
sizeof(_SChar))
615 else if constexpr (_Bytes ==
sizeof(short))
617 else if constexpr (_Bytes ==
sizeof(long))
619 else if constexpr (_Bytes ==
sizeof(_LLong))
621 #ifdef __SIZEOF_INT128__
622 else if constexpr (_Bytes ==
sizeof(__int128))
625 else if constexpr (_Bytes %
sizeof(int) == 0)
627 constexpr size_t _Np = _Bytes /
sizeof(int);
632 _GLIBCXX_SIMD_INTRINSIC
constexpr _Ip
635 return __generate_from_n_evaluations<_Np, _Ip>(
636 [&](
auto __i) _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
637 return __rhs._M_data[__i] & _M_data[__i];
641 _GLIBCXX_SIMD_INTRINSIC
constexpr _Ip
644 return __generate_from_n_evaluations<_Np, _Ip>(
645 [&](
auto __i) _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
646 return __rhs._M_data[__i] | _M_data[__i];
650 _GLIBCXX_SIMD_INTRINSIC
constexpr _Ip
653 return __generate_from_n_evaluations<_Np, _Ip>(
654 [&](
auto __i) _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
655 return __rhs._M_data[__i] ^ _M_data[__i];
659 _GLIBCXX_SIMD_INTRINSIC
constexpr _Ip
662 return __generate_from_n_evaluations<_Np, _Ip>(
663 [&](
auto __i) _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
return ~_M_data[__i]; });
669 static_assert(_Bytes == 0,
"this should be unreachable");
671#pragma GCC diagnostic pop
673template <
typename _Tp>
674 using __int_for_sizeof_t =
decltype(__int_for_sizeof<sizeof(_Tp)>());
677 using __int_with_sizeof_t =
decltype(__int_for_sizeof<_Np>());
681template <
typename _Tp>
682 struct __is_fixed_size_abi : false_type {};
685 struct __is_fixed_size_abi<simd_abi::fixed_size<_Np>> : true_type {};
687template <
typename _Tp>
688 inline constexpr bool __is_fixed_size_abi_v = __is_fixed_size_abi<_Tp>::value;
692template <
typename _Abi>
695 {
return is_same_v<simd_abi::scalar, _Abi>; }
699template <
template <
int>
class _Abi,
int _Bytes>
701 __abi_bytes_impl(_Abi<_Bytes>*)
704template <
typename _Tp>
706 __abi_bytes_impl(_Tp*)
709template <
typename _Abi>
710 inline constexpr int __abi_bytes_v
711 = __abi_bytes_impl(
static_cast<_Abi*
>(
nullptr));
715template <
typename _Abi>
717 __is_builtin_bitmask_abi()
718 {
return is_same_v<simd_abi::_VecBltnBtmsk<__abi_bytes_v<_Abi>>, _Abi>; }
722template <
typename _Abi>
726 constexpr auto _Bytes = __abi_bytes_v<_Abi>;
727 return _Bytes <= 16 && is_same_v<simd_abi::_VecBuiltin<_Bytes>, _Abi>;
732template <
typename _Abi>
736 constexpr auto _Bytes = __abi_bytes_v<_Abi>;
737 return _Bytes > 16 && _Bytes <= 32
738 && is_same_v<simd_abi::_VecBuiltin<_Bytes>, _Abi>;
743template <
typename _Abi>
747 constexpr auto _Bytes = __abi_bytes_v<_Abi>;
748 return _Bytes <= 64 && is_same_v<simd_abi::_Avx512<_Bytes>, _Abi>;
753template <
typename _Abi>
757 constexpr auto _Bytes = __abi_bytes_v<_Abi>;
758 return _Bytes <= 16 && is_same_v<simd_abi::_VecBuiltin<_Bytes>, _Abi>;
763template <
typename _Abi>
767 constexpr auto _Bytes = __abi_bytes_v<_Abi>;
768 return _Bytes <= __sve_vectorized_size_bytes && is_same_v<simd_abi::_Sve<_Bytes>, _Abi>;
773template <
typename,
typename _Up>
774 struct __make_dependent
775 {
using type = _Up; };
777template <
typename _Tp,
typename _Up>
778 using __make_dependent_t =
typename __make_dependent<_Tp, _Up>::type;
784template <
typename... _Args>
785 [[noreturn]] _GLIBCXX_SIMD_ALWAYS_INLINE
void
786 __invoke_ub([[maybe_unused]]
const char* __msg, [[maybe_unused]]
const _Args&... __args)
788#ifdef _GLIBCXX_DEBUG_UB
789 __builtin_fprintf(stderr, __msg, __args...);
792 __builtin_unreachable();
798template <
typename _Tp>
799 struct __assert_unreachable
800 {
static_assert(!is_same_v<_Tp, _Tp>,
"this should be unreachable"); };
804template <typename _Tp, typename _Ap, size_t _Np = simd_size<_Tp, _Ap>::value>
806 __size_or_zero_dispatch(
int)
809template <
typename _Tp,
typename _Ap>
811 __size_or_zero_dispatch(
float)
814template <
typename _Tp,
typename _Ap>
815 inline constexpr size_t __size_or_zero_v
816 = __size_or_zero_dispatch<_Tp, _Ap>(0);
820inline constexpr size_t
821__div_roundup(
size_t __a,
size_t __b)
822{
return (__a + __b - 1) / __b; }
831 _GLIBCXX_SIMD_INTRINSIC
constexpr
832 _ExactBool(
bool __b) : _M_data(__b) {}
834 _ExactBool(
int) =
delete;
836 _GLIBCXX_SIMD_INTRINSIC
constexpr
837 operator bool()
const
848template <
typename _Tp>
849 using __may_alias [[__gnu__::__may_alias__]] = _Tp;
854struct _UnsupportedBase
856 _UnsupportedBase() =
delete;
857 _UnsupportedBase(
const _UnsupportedBase&) =
delete;
858 _UnsupportedBase& operator=(
const _UnsupportedBase&) =
delete;
859 ~_UnsupportedBase() =
delete;
875 using _SimdBase = _UnsupportedBase;
876 using _MaskBase = _UnsupportedBase;
878 static constexpr size_t _S_full_size = 0;
879 static constexpr bool _S_is_partial =
false;
881 static constexpr size_t _S_simd_align = 1;
883 struct _SimdMember {};
884 struct _SimdCastType;
886 static constexpr size_t _S_mask_align = 1;
888 struct _MaskMember {};
889 struct _MaskCastType;
894template <
typename _Tp,
typename _Abi,
typename =
void_t<>>
895 struct _SimdTraits : _InvalidTraits {};
903inline constexpr struct _PrivateInit {} __private_init = {};
905inline constexpr struct _BitsetInit {} __bitset_init = {};
909template <
typename _From,
typename _To,
bool = is_arithmetic_v<_From>,
910 bool = is_arithmetic_v<_To>>
911 struct __is_narrowing_conversion;
915template <
typename _From,
typename _To>
916 struct __is_narrowing_conversion<_From, _To, true, true>
917 :
public __bool_constant<(
918 __digits_v<_From> > __digits_v<_To>
919 || __finite_max_v<_From> > __finite_max_v<_To>
920 || __finite_min_v<_From> < __finite_min_v<_To>
921 || (is_signed_v<_From> && is_unsigned_v<_To>))> {};
923template <
typename _Tp>
924 struct __is_narrowing_conversion<_Tp, bool, true, true>
925 :
public true_type {};
928 struct __is_narrowing_conversion<bool, bool, true, true>
929 :
public false_type {};
931template <
typename _Tp>
932 struct __is_narrowing_conversion<_Tp, _Tp, true, true>
933 :
public false_type {};
935template <
typename _From,
typename _To>
936 struct __is_narrowing_conversion<_From, _To, false, true>
937 :
public negation<is_convertible<_From, _To>> {};
941template <
typename _From,
typename _To,
bool = (sizeof(_From) < sizeof(_To))>
942 struct __converts_to_higher_
integer_rank : public true_type {};
945template <
typename _From,
typename _To>
946 struct __converts_to_higher_integer_rank<_From, _To, false>
947 :
public is_same<decltype(declval<_From>() + declval<_To>()), _To> {};
951template <
typename _Tp,
typename _Ap>
952 _GLIBCXX_SIMD_INTRINSIC
constexpr const auto&
953 __data(
const simd<_Tp, _Ap>& __x);
955template <
typename _Tp,
typename _Ap>
956 _GLIBCXX_SIMD_INTRINSIC
constexpr auto&
957 __data(simd<_Tp, _Ap>& __x);
959template <
typename _Tp,
typename _Ap>
960 _GLIBCXX_SIMD_INTRINSIC
constexpr const auto&
961 __data(
const simd_mask<_Tp, _Ap>& __x);
963template <
typename _Tp,
typename _Ap>
964 _GLIBCXX_SIMD_INTRINSIC
constexpr auto&
965 __data(simd_mask<_Tp, _Ap>& __x);
969template <
typename _FromT,
typename _FromA,
typename _ToT,
typename _ToA,
971 struct _SimdConverter;
973template <
typename _Tp,
typename _Ap>
974 struct _SimdConverter<_Tp, _Ap, _Tp, _Ap, void>
976 template <
typename _Up>
977 _GLIBCXX_SIMD_INTRINSIC
const _Up&
978 operator()(
const _Up& __x)
984template <
typename _V>
985 _GLIBCXX_SIMD_INTRINSIC
constexpr auto
986 __to_value_type_or_member_type(
const _V& __x) ->
decltype(__data(__x))
987 {
return __data(__x); }
989template <
typename _V>
990 _GLIBCXX_SIMD_INTRINSIC
constexpr const typename _V::value_type&
991 __to_value_type_or_member_type(
const typename _V::value_type& __x)
996template <
size_t _Size>
997 struct __bool_storage_member_type;
999template <
size_t _Size>
1000 using __bool_storage_member_type_t =
1001 typename __bool_storage_member_type<_Size>::type;
1011template <
typename _Tp,
typename... _Abis>
1016template <
typename _Tp,
int _Np>
1017 struct __fixed_size_storage;
1019template <
typename _Tp,
int _Np>
1020 using __fixed_size_storage_t =
typename __fixed_size_storage<_Tp, _Np>::type;
1024template <
typename _Tp,
size_t _Size,
typename =
void_t<>>
1025 struct _SimdWrapper;
1027template <
typename _Tp>
1028 using _SimdWrapper8 = _SimdWrapper<_Tp, 8 /
sizeof(_Tp)>;
1029template <
typename _Tp>
1030 using _SimdWrapper16 = _SimdWrapper<_Tp, 16 /
sizeof(_Tp)>;
1031template <
typename _Tp>
1032 using _SimdWrapper32 = _SimdWrapper<_Tp, 32 /
sizeof(_Tp)>;
1033template <
typename _Tp>
1034 using _SimdWrapper64 = _SimdWrapper<_Tp, 64 /
sizeof(_Tp)>;
1036template <
typename _Tp,
size_t _W
idth>
1037 struct _SveSimdWrapper;
1041template <
typename _Tp>
1042 struct __is_simd_wrapper : false_type {};
1044template <
typename _Tp,
size_t _Np>
1045 struct __is_simd_wrapper<_SimdWrapper<_Tp, _Np>> : true_type {};
1047template <
typename _Tp>
1048 inline constexpr bool __is_simd_wrapper_v = __is_simd_wrapper<_Tp>::value;
1055 template <
typename _Tp,
typename _Fp>
1057 _S_bit_iteration(_Tp __mask, _Fp&& __f)
1059 static_assert(
sizeof(_ULLong) >=
sizeof(_Tp));
1060 conditional_t<
sizeof(_Tp) <=
sizeof(_UInt), _UInt, _ULLong> __k;
1061 if constexpr (is_convertible_v<_Tp,
decltype(__k)>)
1064 __k = __mask.to_ullong();
1067 __f(std::__countr_zero(__k));
1077template <
typename _Tp =
void>
1079 {
constexpr _Tp operator()(_Tp __a)
const {
return ++__a; } };
1082 struct __increment<void>
1084 template <
typename _Tp>
1086 operator()(_Tp __a)
const
1090template <
typename _Tp =
void>
1092 {
constexpr _Tp operator()(_Tp __a)
const {
return --__a; } };
1095 struct __decrement<void>
1097 template <
typename _Tp>
1099 operator()(_Tp __a)
const
1105template <
typename _From,
typename _To,
1107 __is_narrowing_conversion<__remove_cvref_t<_From>, _To>>::value>>
1108 using _ValuePreserving = _From;
1110template <
typename _From,
typename _To,
1111 typename _DecayedFrom = __remove_cvref_t<_From>,
1113 is_convertible<_From, _To>,
1115 is_same<_DecayedFrom, _To>, is_same<_DecayedFrom, int>,
1116 conjunction<is_same<_DecayedFrom, _UInt>, is_unsigned<_To>>,
1117 negation<__is_narrowing_conversion<_DecayedFrom, _To>>>>::value>>
1118 using _ValuePreservingOrInt = _From;
1122template <
typename _Tp,
size_t _Bytes,
typename =
void_t<>>
1123 struct __intrinsic_type;
1125template <
typename _Tp,
size_t _Size>
1126 using __intrinsic_type_t =
1127 typename __intrinsic_type<_Tp, _Size *
sizeof(_Tp)>::type;
1129template <
typename _Tp>
1130 using __intrinsic_type2_t =
typename __intrinsic_type<_Tp, 2>::type;
1131template <
typename _Tp>
1132 using __intrinsic_type4_t =
typename __intrinsic_type<_Tp, 4>::type;
1133template <
typename _Tp>
1134 using __intrinsic_type8_t =
typename __intrinsic_type<_Tp, 8>::type;
1135template <
typename _Tp>
1136 using __intrinsic_type16_t =
typename __intrinsic_type<_Tp, 16>::type;
1137template <
typename _Tp>
1138 using __intrinsic_type32_t =
typename __intrinsic_type<_Tp, 32>::type;
1139template <
typename _Tp>
1140 using __intrinsic_type64_t =
typename __intrinsic_type<_Tp, 64>::type;
1144template <
size_t _Np,
bool _Sanitized = false>
1147template <
size_t _Np,
bool _Sanitized>
1148 struct __is_bitmask<_BitMask<_Np, _Sanitized>, void> : true_type {};
1150template <
size_t _Np>
1151 using _SanitizedBitMask = _BitMask<_Np, true>;
1153template <
size_t _Np,
bool _Sanitized>
1156 static_assert(_Np > 0);
1158 static constexpr size_t _NBytes = __div_roundup(_Np, __CHAR_BIT__);
1162 sizeof(_ULLong), std::__bit_ceil(_NBytes))>>>;
1164 static constexpr int _S_array_size = __div_roundup(_NBytes,
sizeof(_Tp));
1166 _Tp _M_bits[_S_array_size];
1168 static constexpr int _S_unused_bits
1169 = _Np == 1 ? 0 : _S_array_size *
sizeof(_Tp) * __CHAR_BIT__ - _Np;
1171 static constexpr _Tp _S_bitmask = +_Tp(~_Tp()) >> _S_unused_bits;
1173 constexpr _BitMask() noexcept = default;
1175 constexpr _BitMask(
unsigned long long __x) noexcept
1176 : _M_bits{
static_cast<_Tp
>(__x)} {}
1178 _BitMask(bitset<_Np> __x) noexcept : _BitMask(__x.to_ullong()) {}
1180 constexpr _BitMask(
const _BitMask&)
noexcept =
default;
1182 template <
bool _RhsSanitized,
typename =
enable_if_t<_RhsSanitized ==
false
1183 && _Sanitized ==
true>>
1184 constexpr _BitMask(
const _BitMask<_Np, _RhsSanitized>& __rhs) noexcept
1185 : _BitMask(__rhs._M_sanitized()) {}
1187 constexpr operator _SimdWrapper<bool, _Np>() const noexcept
1189 static_assert(_S_array_size == 1);
1195 _M_to_bits() const noexcept
1197 static_assert(_S_array_size == 1);
1202 constexpr unsigned long long
1203 to_ullong() const noexcept
1205 static_assert(_S_array_size == 1);
1210 constexpr unsigned long
1211 to_ulong() const noexcept
1213 static_assert(_S_array_size == 1);
1217 constexpr bitset<_Np>
1218 _M_to_bitset() const noexcept
1220 static_assert(_S_array_size == 1);
1224 constexpr decltype(
auto)
1225 _M_sanitized()
const noexcept
1227 if constexpr (_Sanitized)
1229 else if constexpr (_Np == 1)
1230 return _SanitizedBitMask<_Np>(_M_bits[0]);
1233 _SanitizedBitMask<_Np> __r = {};
1234 for (
int __i = 0; __i < _S_array_size; ++__i)
1235 __r._M_bits[__i] = _M_bits[__i];
1236 if constexpr (_S_unused_bits > 0)
1237 __r._M_bits[_S_array_size - 1] &= _S_bitmask;
1242 template <
size_t _Mp,
bool _LSanitized>
1243 constexpr _BitMask<_Np + _Mp, _Sanitized>
1244 _M_prepend(_BitMask<_Mp, _LSanitized> __lsb)
const noexcept
1246 constexpr size_t _RN = _Np + _Mp;
1247 using _Rp = _BitMask<_RN, _Sanitized>;
1248 if constexpr (_Rp::_S_array_size == 1)
1250 _Rp __r{{_M_bits[0]}};
1251 __r._M_bits[0] <<= _Mp;
1252 __r._M_bits[0] |= __lsb._M_sanitized()._M_bits[0];
1256 __assert_unreachable<_Rp>();
1262 template <
size_t _DropLsb,
size_t _NewSize = _Np - _DropLsb>
1264 _M_extract() const noexcept
1266 static_assert(_Np > _DropLsb);
1267 static_assert(_DropLsb + _NewSize <=
sizeof(_ULLong) * __CHAR_BIT__,
1268 "not implemented for bitmasks larger than one ullong");
1269 if constexpr (_NewSize == 1)
1271 return _SanitizedBitMask<1>(_M_bits[0] & (_Tp(1) << _DropLsb));
1273 return _BitMask<_NewSize,
1274 ((_NewSize + _DropLsb ==
sizeof(_Tp) * __CHAR_BIT__
1275 && _NewSize + _DropLsb <= _Np)
1276 || ((_Sanitized || _Np ==
sizeof(_Tp) * __CHAR_BIT__)
1277 && _NewSize + _DropLsb >= _Np))>(_M_bits[0]
1283 all() const noexcept
1285 if constexpr (_Np == 1)
1287 else if constexpr (!_Sanitized)
1288 return _M_sanitized().all();
1291 constexpr _Tp __allbits = ~_Tp();
1292 for (
int __i = 0; __i < _S_array_size - 1; ++__i)
1293 if (_M_bits[__i] != __allbits)
1295 return _M_bits[_S_array_size - 1] == _S_bitmask;
1302 any() const noexcept
1304 if constexpr (_Np == 1)
1306 else if constexpr (!_Sanitized)
1307 return _M_sanitized().any();
1310 for (
int __i = 0; __i < _S_array_size - 1; ++__i)
1311 if (_M_bits[__i] != 0)
1313 return _M_bits[_S_array_size - 1] != 0;
1319 none() const noexcept
1321 if constexpr (_Np == 1)
1323 else if constexpr (!_Sanitized)
1324 return _M_sanitized().none();
1327 for (
int __i = 0; __i < _S_array_size - 1; ++__i)
1328 if (_M_bits[__i] != 0)
1330 return _M_bits[_S_array_size - 1] == 0;
1337 count() const noexcept
1339 if constexpr (_Np == 1)
1341 else if constexpr (!_Sanitized)
1342 return _M_sanitized().none();
1345 int __result = __builtin_popcountll(_M_bits[0]);
1346 for (
int __i = 1; __i < _S_array_size; ++__i)
1347 __result += __builtin_popcountll(_M_bits[__i]);
1354 operator[](
size_t __i)
const noexcept
1356 if constexpr (_Np == 1)
1358 else if constexpr (_S_array_size == 1)
1359 return (_M_bits[0] >> __i) & 1;
1362 const size_t __j = __i / (
sizeof(_Tp) * __CHAR_BIT__);
1363 const size_t __shift = __i % (
sizeof(_Tp) * __CHAR_BIT__);
1364 return (_M_bits[__j] >> __shift) & 1;
1368 template <
size_t __i>
1370 operator[](_SizeConstant<__i>)
const noexcept
1372 static_assert(__i < _Np);
1373 constexpr size_t __j = __i / (
sizeof(_Tp) * __CHAR_BIT__);
1374 constexpr size_t __shift = __i % (
sizeof(_Tp) * __CHAR_BIT__);
1375 return static_cast<bool>(_M_bits[__j] & (_Tp(1) << __shift));
1380 set(
size_t __i,
bool __x)
noexcept
1382 if constexpr (_Np == 1)
1384 else if constexpr (_S_array_size == 1)
1386 _M_bits[0] &= ~_Tp(_Tp(1) << __i);
1387 _M_bits[0] |= _Tp(_Tp(__x) << __i);
1391 const size_t __j = __i / (
sizeof(_Tp) * __CHAR_BIT__);
1392 const size_t __shift = __i % (
sizeof(_Tp) * __CHAR_BIT__);
1393 _M_bits[__j] &= ~_Tp(_Tp(1) << __shift);
1394 _M_bits[__j] |= _Tp(_Tp(__x) << __shift);
1398 template <
size_t __i>
1400 set(_SizeConstant<__i>,
bool __x)
noexcept
1402 static_assert(__i < _Np);
1403 if constexpr (_Np == 1)
1407 constexpr size_t __j = __i / (
sizeof(_Tp) * __CHAR_BIT__);
1408 constexpr size_t __shift = __i % (
sizeof(_Tp) * __CHAR_BIT__);
1409 constexpr _Tp __mask = ~_Tp(_Tp(1) << __shift);
1410 _M_bits[__j] &= __mask;
1411 _M_bits[__j] |= _Tp(_Tp(__x) << __shift);
1417 operator~() const noexcept
1419 if constexpr (_Np == 1)
1423 _BitMask __result{};
1424 for (
int __i = 0; __i < _S_array_size - 1; ++__i)
1425 __result._M_bits[__i] = ~_M_bits[__i];
1426 if constexpr (_Sanitized)
1427 __result._M_bits[_S_array_size - 1]
1428 = _M_bits[_S_array_size - 1] ^ _S_bitmask;
1430 __result._M_bits[_S_array_size - 1] = ~_M_bits[_S_array_size - 1];
1436 operator^=(
const _BitMask& __b) &
noexcept
1438 __execute_n_times<_S_array_size>(
1439 [&](
auto __i) _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA { _M_bits[__i] ^= __b._M_bits[__i]; });
1444 operator|=(
const _BitMask& __b) &
noexcept
1446 __execute_n_times<_S_array_size>(
1447 [&](
auto __i) _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA { _M_bits[__i] |= __b._M_bits[__i]; });
1452 operator&=(
const _BitMask& __b) &
noexcept
1454 __execute_n_times<_S_array_size>(
1455 [&](
auto __i) _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA { _M_bits[__i] &= __b._M_bits[__i]; });
1459 friend constexpr _BitMask
1460 operator^(
const _BitMask& __a,
const _BitMask& __b)
noexcept
1467 friend constexpr _BitMask
1468 operator|(
const _BitMask& __a,
const _BitMask& __b)
noexcept
1475 friend constexpr _BitMask
1476 operator&(
const _BitMask& __a,
const _BitMask& __b)
noexcept
1483 _GLIBCXX_SIMD_INTRINSIC
1485 _M_is_constprop()
const
1487 if constexpr (_S_array_size == 0)
1488 return __builtin_constant_p(_M_bits[0]);
1491 for (
int __i = 0; __i < _S_array_size; ++__i)
1492 if (!__builtin_constant_p(_M_bits[__i]))
1503template <
typename _Tp =
void>
1504 static inline constexpr int __min_vector_size = 2 *
sizeof(_Tp);
1506#if _GLIBCXX_SIMD_HAVE_NEON
1508 inline constexpr int __min_vector_size<void> = 8;
1511 inline constexpr int __min_vector_size<void> = 16;
1516template <
typename _Tp,
size_t _Np,
typename =
void>
1517 struct __vector_type_n {};
1520template <
typename _Tp>
1521 struct __vector_type_n<_Tp, 0, void> {};
1524template <
typename _Tp>
1525 struct __vector_type_n<_Tp, 1,
enable_if_t<__is_vectorizable_v<_Tp>>>
1526 {
using type = _Tp; };
1529template <
typename _Tp,
size_t _Np>
1530 struct __vector_type_n<_Tp, _Np,
enable_if_t<__is_vectorizable_v<_Tp> && _Np >= 2>>
1532 static constexpr size_t _S_Np2 = std::__bit_ceil(_Np *
sizeof(_Tp));
1534 static constexpr size_t _S_Bytes =
1540 _S_Np2 < __min_vector_size<_Tp> ? __min_vector_size<_Tp>
1543 using type [[__gnu__::__vector_size__(_S_Bytes)]] = _Tp;
1546template <
typename _Tp,
size_t _Bytes,
size_t = _Bytes % sizeof(_Tp)>
1547 struct __vector_type;
1549template <
typename _Tp,
size_t _Bytes>
1550 struct __vector_type<_Tp, _Bytes, 0>
1551 : __vector_type_n<_Tp, _Bytes / sizeof(_Tp)> {};
1553template <
typename _Tp,
size_t _Size>
1554 using __vector_type_t =
typename __vector_type_n<_Tp, _Size>::type;
1556template <
typename _Tp>
1557 using __vector_type2_t =
typename __vector_type<_Tp, 2>::type;
1558template <
typename _Tp>
1559 using __vector_type4_t =
typename __vector_type<_Tp, 4>::type;
1560template <
typename _Tp>
1561 using __vector_type8_t =
typename __vector_type<_Tp, 8>::type;
1562template <
typename _Tp>
1563 using __vector_type16_t =
typename __vector_type<_Tp, 16>::type;
1564template <
typename _Tp>
1565 using __vector_type32_t =
typename __vector_type<_Tp, 32>::type;
1566template <
typename _Tp>
1567 using __vector_type64_t =
typename __vector_type<_Tp, 64>::type;
1571template <
typename _Tp,
typename =
void_t<>>
1572 struct __is_vector_type : false_type {};
1574template <
typename _Tp>
1575 struct __is_vector_type<
1576 _Tp,
void_t<typename __vector_type<
1578 : is_same<_Tp, typename __vector_type<
1579 remove_reference_t<decltype(declval<_Tp>()[0])>,
1580 sizeof(_Tp)>::type> {};
1582template <
typename _Tp>
1583 inline constexpr bool __is_vector_type_v = __is_vector_type<_Tp>::value;
1587#if _GLIBCXX_SIMD_HAVE_SSE_ABI
1588template <
typename _Tp>
1589 using __is_intrinsic_type = __is_vector_type<_Tp>;
1591template <
typename _Tp,
typename =
void_t<>>
1592 struct __is_intrinsic_type : false_type {};
1594template <
typename _Tp>
1595 struct __is_intrinsic_type<
1596 _Tp,
void_t<typename __intrinsic_type<
1598 : is_same<_Tp, typename __intrinsic_type<
1599 remove_reference_t<decltype(declval<_Tp>()[0])>,
1600 sizeof(_Tp)>::type> {};
1603template <
typename _Tp>
1604 inline constexpr bool __is_intrinsic_type_v = __is_intrinsic_type<_Tp>::value;
1608template <
typename _Tp,
typename =
void_t<>>
1609 struct _VectorTraitsImpl;
1611template <
typename _Tp>
1612 struct _VectorTraitsImpl<_Tp,
enable_if_t<__is_vector_type_v<_Tp>
1613 || __is_intrinsic_type_v<_Tp>>>
1616 using value_type = remove_reference_t<decltype(declval<_Tp>()[0])>;
1617 static constexpr int _S_full_size =
sizeof(_Tp) /
sizeof(value_type);
1618 using _Wrapper = _SimdWrapper<value_type, _S_full_size>;
1619 template <
typename _Up,
int _W = _S_full_size>
1620 static constexpr bool _S_is
1621 = is_same_v<value_type, _Up> && _W == _S_full_size;
1624template <
typename _Tp,
size_t _Np>
1625 struct _VectorTraitsImpl<_SimdWrapper<_Tp, _Np>,
1626 void_t<__vector_type_t<_Tp, _Np>>>
1628 using type = __vector_type_t<_Tp, _Np>;
1629 using value_type = _Tp;
1630 static constexpr int _S_full_size =
sizeof(type) /
sizeof(value_type);
1631 using _Wrapper = _SimdWrapper<_Tp, _Np>;
1632 static constexpr bool _S_is_partial = (_Np == _S_full_size);
1633 static constexpr int _S_partial_width = _Np;
1634 template <
typename _Up,
int _W = _S_full_size>
1635 static constexpr bool _S_is
1636 = is_same_v<value_type, _Up>&& _W == _S_full_size;
1639template <typename _Tp, typename = typename _VectorTraitsImpl<_Tp>::type>
1640 using _VectorTraits = _VectorTraitsImpl<_Tp>;
1644template <
typename _V>
1645 _GLIBCXX_SIMD_INTRINSIC
constexpr auto
1648 if constexpr (__is_vector_type_v<_V>)
1650 else if constexpr (is_simd<_V>::value || is_simd_mask<_V>::value)
1652 if constexpr (__is_fixed_size_abi_v<typename _V::abi_type>)
1654 static_assert(is_simd<_V>::value);
1655 static_assert(_V::abi_type::template __traits<
1656 typename _V::value_type>::_SimdMember::_S_tuple_size == 1);
1657 return __as_vector(__data(__x).first);
1659 else if constexpr (_V::size() > 1)
1660 return __data(__x)._M_data;
1663 static_assert(is_simd<_V>::value);
1664 using _Tp =
typename _V::value_type;
1666 constexpr auto __bytes =
sizeof(_Tp) == 8 ? 16 : sizeof(_Tp);
1667 using _RV [[__gnu__::__vector_size__(__bytes)]] = _Tp;
1669 using _RV [[__gnu__::__vector_size__(
sizeof(_Tp))]] = _Tp;
1671 return _RV{__data(__x)};
1674 else if constexpr (__is_vectorizable_v<_V>)
1675 return __vector_type_t<_V, 2>{__x};
1682template <
size_t _Np = 0,
typename _V>
1683 _GLIBCXX_SIMD_INTRINSIC
constexpr auto
1684 __as_wrapper(_V __x)
1686 if constexpr (__is_vector_type_v<_V>)
1687 return _SimdWrapper<
typename _VectorTraits<_V>::value_type,
1688 (_Np > 0 ? _Np : _VectorTraits<_V>::_S_full_size)>(__x);
1689 else if constexpr (is_simd<_V>::value || is_simd_mask<_V>::value)
1691 static_assert(_V::size() == _Np);
1696 static_assert(_V::_S_size == _Np);
1703template <
typename _To,
typename _From>
1704 _GLIBCXX_SIMD_INTRINSIC
constexpr _To
1705 __intrin_bitcast(_From __v)
1707 static_assert((__is_vector_type_v<_From> || __is_intrinsic_type_v<_From>)
1708 && (__is_vector_type_v<_To> || __is_intrinsic_type_v<_To>));
1709 if constexpr (
sizeof(_To) ==
sizeof(_From))
1710 return reinterpret_cast<_To
>(__v);
1711 else if constexpr (
sizeof(_From) >
sizeof(_To))
1712 if constexpr (
sizeof(_To) >= 16)
1713 return reinterpret_cast<const __may_alias<_To>&
>(__v);
1717 __builtin_memcpy(&__r, &__v,
sizeof(_To));
1720#if _GLIBCXX_SIMD_X86INTRIN && !defined _GLIBCXX_CLANG
1721 else if constexpr (__have_avx &&
sizeof(_From) == 16 &&
sizeof(_To) == 32)
1722 return reinterpret_cast<_To
>(__builtin_ia32_ps256_ps(
1723 reinterpret_cast<__vector_type_t<float, 4>
>(__v)));
1724 else if constexpr (__have_avx512f &&
sizeof(_From) == 16
1725 &&
sizeof(_To) == 64)
1726 return reinterpret_cast<_To
>(__builtin_ia32_ps512_ps(
1727 reinterpret_cast<__vector_type_t<float, 4>
>(__v)));
1728 else if constexpr (__have_avx512f &&
sizeof(_From) == 32
1729 &&
sizeof(_To) == 64)
1730 return reinterpret_cast<_To
>(__builtin_ia32_ps512_256ps(
1731 reinterpret_cast<__vector_type_t<float, 8>
>(__v)));
1733 else if constexpr (
sizeof(__v) <= 8)
1734 return reinterpret_cast<_To
>(
1735 __vector_type_t<__int_for_sizeof_t<_From>,
sizeof(_To) /
sizeof(_From)>{
1736 reinterpret_cast<__int_for_sizeof_t<_From>
>(__v)});
1739 static_assert(
sizeof(_To) >
sizeof(_From));
1741 __builtin_memcpy(&__r, &__v,
sizeof(_From));
1748template <
typename _To,
size_t _NN = 0,
typename _From,
1749 typename _FromVT = _VectorTraits<_From>,
1750 size_t _Np = _NN == 0 ?
sizeof(_From) /
sizeof(_To) : _NN>
1751 _GLIBCXX_SIMD_INTRINSIC
constexpr __vector_type_t<_To, _Np>
1752 __vector_bitcast(_From __x)
1754 using _R = __vector_type_t<_To, _Np>;
1755 return __intrin_bitcast<_R>(__x);
1758template <
typename _To,
size_t _NN = 0,
typename _Tp,
size_t _Nx,
1760 = _NN == 0 ?
sizeof(_SimdWrapper<_Tp, _Nx>) /
sizeof(_To) : _NN>
1761 _GLIBCXX_SIMD_INTRINSIC
constexpr __vector_type_t<_To, _Np>
1762 __vector_bitcast(
const _SimdWrapper<_Tp, _Nx>& __x)
1764 static_assert(_Np > 1);
1765 return __intrin_bitcast<__vector_type_t<_To, _Np>>(__x._M_data);
1770#ifdef _GLIBCXX_SIMD_WORKAROUND_PR85048
1771template <
typename _To,
typename _Tp,
typename _TVT = _VectorTraits<_Tp>>
1772 _To __convert_x86(_Tp);
1774template <
typename _To,
typename _Tp,
typename _TVT = _VectorTraits<_Tp>>
1775 _To __convert_x86(_Tp, _Tp);
1777template <
typename _To,
typename _Tp,
typename _TVT = _VectorTraits<_Tp>>
1778 _To __convert_x86(_Tp, _Tp, _Tp, _Tp);
1780template <
typename _To,
typename _Tp,
typename _TVT = _VectorTraits<_Tp>>
1781 _To __convert_x86(_Tp, _Tp, _Tp, _Tp, _Tp, _Tp, _Tp, _Tp);
1783template <
typename _To,
typename _Tp,
typename _TVT = _VectorTraits<_Tp>>
1784 _To __convert_x86(_Tp, _Tp, _Tp, _Tp, _Tp, _Tp, _Tp, _Tp, _Tp, _Tp, _Tp, _Tp,
1785 _Tp, _Tp, _Tp, _Tp);
1790template <
typename _To,
typename _From>
1791 _GLIBCXX_SIMD_INTRINSIC
constexpr _To
1792 __bit_cast(
const _From __x)
1794#if __has_builtin(__builtin_bit_cast)
1795 return __builtin_bit_cast(_To, __x);
1797 static_assert(
sizeof(_To) ==
sizeof(_From));
1798 constexpr bool __to_is_vectorizable
1799 = is_arithmetic_v<_To> || is_enum_v<_To>;
1800 constexpr bool __from_is_vectorizable
1801 = is_arithmetic_v<_From> || is_enum_v<_From>;
1802 if constexpr (__is_vector_type_v<_To> && __is_vector_type_v<_From>)
1803 return reinterpret_cast<_To
>(__x);
1804 else if constexpr (__is_vector_type_v<_To> && __from_is_vectorizable)
1806 using _FV [[__gnu__::__vector_size__(
sizeof(_From))]] = _From;
1807 return reinterpret_cast<_To
>(_FV{__x});
1809 else if constexpr (__to_is_vectorizable && __from_is_vectorizable)
1811 using _TV [[__gnu__::__vector_size__(
sizeof(_To))]] = _To;
1812 using _FV [[__gnu__::__vector_size__(
sizeof(_From))]] = _From;
1813 return reinterpret_cast<_TV
>(_FV{__x})[0];
1815 else if constexpr (__to_is_vectorizable && __is_vector_type_v<_From>)
1817 using _TV [[__gnu__::__vector_size__(
sizeof(_To))]] = _To;
1818 return reinterpret_cast<_TV
>(__x)[0];
1823 __builtin_memcpy(
reinterpret_cast<char*
>(&__r),
1824 reinterpret_cast<const char*
>(&__x),
sizeof(_To));
1832template <
typename _Tp,
typename _TVT = _VectorTraits<_Tp>,
1833 typename _R = __
intrinsic_type_t<
typename _TVT::value_type, _TVT::_S_full_size>>
1834 _GLIBCXX_SIMD_INTRINSIC
constexpr _R
1835 __to_intrin(_Tp __x)
1837 static_assert(
sizeof(__x) <=
sizeof(_R),
1838 "__to_intrin may never drop values off the end");
1839 if constexpr (
sizeof(__x) ==
sizeof(_R))
1840 return reinterpret_cast<_R
>(__as_vector(__x));
1843 using _Up = __int_for_sizeof_t<_Tp>;
1844 return reinterpret_cast<_R
>(
1845 __vector_type_t<_Up,
sizeof(_R) /
sizeof(_Up)>{__bit_cast<_Up>(__x)});
1851template <
typename _Tp,
typename... _Args>
1852 _GLIBCXX_SIMD_INTRINSIC
constexpr __vector_type_t<_Tp,
sizeof...(_Args)>
1853 __make_vector(
const _Args&... __args)
1854 {
return __vector_type_t<_Tp,
sizeof...(_Args)>{
static_cast<_Tp
>(__args)...}; }
1858template <
size_t _Np,
typename _Tp,
size_t... _I>
1859 _GLIBCXX_SIMD_INTRINSIC
constexpr __vector_type_t<_Tp, _Np>
1860 __vector_broadcast_impl(_Tp __x, index_sequence<_I...>)
1861 {
return __vector_type_t<_Tp, _Np>{((void)_I, __x)...}; }
1863template <
size_t _Np,
typename _Tp>
1864 _GLIBCXX_SIMD_INTRINSIC
constexpr __vector_type_t<_Tp, _Np>
1865 __vector_broadcast(_Tp __x)
1866 {
return __vector_broadcast_impl<_Np, _Tp>(__x, make_index_sequence<_Np>()); }
1870 template <
typename _Tp,
size_t _Np,
typename _Gp,
size_t... _I>
1871 _GLIBCXX_SIMD_INTRINSIC
constexpr __vector_type_t<_Tp, _Np>
1872 __generate_vector_impl(_Gp&& __gen, index_sequence<_I...>)
1873 {
return __vector_type_t<_Tp, _Np>{
static_cast<_Tp
>(__gen(_SizeConstant<_I>()))...}; }
1875template <
typename _V,
typename _VVT = _VectorTraits<_V>,
typename _Gp>
1876 _GLIBCXX_SIMD_INTRINSIC
constexpr _V
1877 __generate_vector(_Gp&& __gen)
1879 if constexpr (__is_vector_type_v<_V>)
1880 return __generate_vector_impl<
typename _VVT::value_type,
1881 _VVT::_S_full_size>(
1882 static_cast<_Gp&&
>(__gen), make_index_sequence<_VVT::_S_full_size>());
1884 return __generate_vector_impl<
typename _VVT::value_type,
1885 _VVT::_S_partial_width>(
1886 static_cast<_Gp&&
>(__gen),
1887 make_index_sequence<_VVT::_S_partial_width>());
1890template <
typename _Tp,
size_t _Np,
typename _Gp>
1891 _GLIBCXX_SIMD_INTRINSIC
constexpr __vector_type_t<_Tp, _Np>
1892 __generate_vector(_Gp&& __gen)
1894 return __generate_vector_impl<_Tp, _Np>(
static_cast<_Gp&&
>(__gen),
1895 make_index_sequence<_Np>());
1900template <
typename _TW>
1901 _GLIBCXX_SIMD_INTRINSIC
constexpr _TW
1902 __xor(_TW __a, _TW __b)
noexcept
1904 if constexpr (__is_vector_type_v<_TW> || __is_simd_wrapper_v<_TW>)
1906 using _Tp =
typename conditional_t<__is_simd_wrapper_v<_TW>, _TW,
1907 _VectorTraitsImpl<_TW>>::value_type;
1908 if constexpr (is_floating_point_v<_Tp>)
1910 using _Ip = make_unsigned_t<__int_for_sizeof_t<_Tp>>;
1911 return __vector_bitcast<_Tp>(__vector_bitcast<_Ip>(__a)
1912 ^ __vector_bitcast<_Ip>(__b));
1914 else if constexpr (__is_vector_type_v<_TW>)
1917 return __a._M_data ^ __b._M_data;
1925template <
typename _TW>
1926 _GLIBCXX_SIMD_INTRINSIC
constexpr _TW
1927 __or(_TW __a, _TW __b)
noexcept
1929 if constexpr (__is_vector_type_v<_TW> || __is_simd_wrapper_v<_TW>)
1931 using _Tp =
typename conditional_t<__is_simd_wrapper_v<_TW>, _TW,
1932 _VectorTraitsImpl<_TW>>::value_type;
1933 if constexpr (is_floating_point_v<_Tp>)
1935 using _Ip = make_unsigned_t<__int_for_sizeof_t<_Tp>>;
1936 return __vector_bitcast<_Tp>(__vector_bitcast<_Ip>(__a)
1937 | __vector_bitcast<_Ip>(__b));
1939 else if constexpr (__is_vector_type_v<_TW>)
1942 return __a._M_data | __b._M_data;
1950template <
typename _TW>
1951 _GLIBCXX_SIMD_INTRINSIC
constexpr _TW
1952 __and(_TW __a, _TW __b)
noexcept
1954 if constexpr (__is_vector_type_v<_TW> || __is_simd_wrapper_v<_TW>)
1956 using _Tp =
typename conditional_t<__is_simd_wrapper_v<_TW>, _TW,
1957 _VectorTraitsImpl<_TW>>::value_type;
1958 if constexpr (is_floating_point_v<_Tp>)
1960 using _Ip = make_unsigned_t<__int_for_sizeof_t<_Tp>>;
1961 return __vector_bitcast<_Tp>(__vector_bitcast<_Ip>(__a)
1962 & __vector_bitcast<_Ip>(__b));
1964 else if constexpr (__is_vector_type_v<_TW>)
1967 return __a._M_data & __b._M_data;
1975#if _GLIBCXX_SIMD_X86INTRIN && !defined _GLIBCXX_CLANG
1976static constexpr struct
1978 _GLIBCXX_SIMD_INTRINSIC __v4sf
1979 operator()(__v4sf __a, __v4sf __b)
const noexcept
1980 {
return __builtin_ia32_andnps(__a, __b); }
1982 _GLIBCXX_SIMD_INTRINSIC __v2df
1983 operator()(__v2df __a, __v2df __b)
const noexcept
1984 {
return __builtin_ia32_andnpd(__a, __b); }
1986 _GLIBCXX_SIMD_INTRINSIC __v2di
1987 operator()(__v2di __a, __v2di __b)
const noexcept
1988 {
return __builtin_ia32_pandn128(__a, __b); }
1990 _GLIBCXX_SIMD_INTRINSIC __v8sf
1991 operator()(__v8sf __a, __v8sf __b)
const noexcept
1992 {
return __builtin_ia32_andnps256(__a, __b); }
1994 _GLIBCXX_SIMD_INTRINSIC __v4df
1995 operator()(__v4df __a, __v4df __b)
const noexcept
1996 {
return __builtin_ia32_andnpd256(__a, __b); }
1998 _GLIBCXX_SIMD_INTRINSIC __v4di
1999 operator()(__v4di __a, __v4di __b)
const noexcept
2001 if constexpr (__have_avx2)
2002 return __builtin_ia32_andnotsi256(__a, __b);
2004 return reinterpret_cast<__v4di
>(
2005 __builtin_ia32_andnpd256(
reinterpret_cast<__v4df
>(__a),
2006 reinterpret_cast<__v4df
>(__b)));
2009 _GLIBCXX_SIMD_INTRINSIC __v16sf
2010 operator()(__v16sf __a, __v16sf __b)
const noexcept
2012 if constexpr (__have_avx512dq)
2013 return _mm512_andnot_ps(__a, __b);
2015 return reinterpret_cast<__v16sf
>(
2016 _mm512_andnot_si512(
reinterpret_cast<__v8di
>(__a),
2017 reinterpret_cast<__v8di
>(__b)));
2020 _GLIBCXX_SIMD_INTRINSIC __v8df
2021 operator()(__v8df __a, __v8df __b)
const noexcept
2023 if constexpr (__have_avx512dq)
2024 return _mm512_andnot_pd(__a, __b);
2026 return reinterpret_cast<__v8df
>(
2027 _mm512_andnot_si512(
reinterpret_cast<__v8di
>(__a),
2028 reinterpret_cast<__v8di
>(__b)));
2031 _GLIBCXX_SIMD_INTRINSIC __v8di
2032 operator()(__v8di __a, __v8di __b)
const noexcept
2033 {
return _mm512_andnot_si512(__a, __b); }
2037template <
typename _TW>
2038 _GLIBCXX_SIMD_INTRINSIC
constexpr _TW
2039 __andnot(_TW __a, _TW __b)
noexcept
2041 if constexpr (__is_vector_type_v<_TW> || __is_simd_wrapper_v<_TW>)
2043 using _TVT = conditional_t<__is_simd_wrapper_v<_TW>, _TW,
2044 _VectorTraitsImpl<_TW>>;
2045 using _Tp =
typename _TVT::value_type;
2046#if _GLIBCXX_SIMD_X86INTRIN && !defined _GLIBCXX_CLANG
2047 if constexpr (
sizeof(_TW) >= 16)
2049 const auto __ai = __to_intrin(__a);
2050 const auto __bi = __to_intrin(__b);
2051 if (!__builtin_is_constant_evaluated()
2052 && !(__builtin_constant_p(__ai) && __builtin_constant_p(__bi)))
2054 const auto __r = _S_x86_andnot(__ai, __bi);
2055 if constexpr (is_convertible_v<
decltype(__r), _TW>)
2058 return reinterpret_cast<typename _TVT::type
>(__r);
2062 using _Ip = make_unsigned_t<__int_for_sizeof_t<_Tp>>;
2063 return __vector_bitcast<_Tp>(~__vector_bitcast<_Ip>(__a)
2064 & __vector_bitcast<_Ip>(__b));
2072template <
typename _Tp,
typename _TVT = _VectorTraits<_Tp>>
2073 _GLIBCXX_SIMD_INTRINSIC
constexpr _Tp
2074 __not(_Tp __a)
noexcept
2076 if constexpr (is_floating_point_v<typename _TVT::value_type>)
2077 return reinterpret_cast<typename _TVT::type
>(
2078 ~__vector_bitcast<unsigned>(__a));
2085template <
typename _T0,
typename _T1,
typename _Fun,
size_t... _Is>
2086 _GLIBCXX_SIMD_INTRINSIC
constexpr
2087 __vector_type_t<remove_reference_t<decltype(declval<_T0>()[0])>,
sizeof...(_Is)>
2088 __vec_shuffle(_T0 __x, _T1 __y, index_sequence<_Is...> __seq, _Fun __idx_perm)
2090 constexpr int _N0 =
sizeof(__x) /
sizeof(__x[0]);
2091 constexpr int _N1 =
sizeof(__y) /
sizeof(__y[0]);
2092 using _Tp = remove_reference_t<decltype(declval<_T0>()[0])>;
2093 using _RV [[maybe_unused]] = __vector_type_t<_Tp,
sizeof...(_Is)>;
2094#if __has_builtin(__builtin_shufflevector)
2095#ifdef _GLIBCXX_CLANG
2097 if constexpr (
sizeof(__x) >
sizeof(__y) and _N1 == 1)
2098 return __vec_shuffle(__x, _T0{__y[0]}, __seq, __idx_perm);
2099 else if constexpr (
sizeof(__x) >
sizeof(__y))
2100 return __vec_shuffle(__x, __intrin_bitcast<_T0>(__y), __seq, __idx_perm);
2101 else if constexpr (
sizeof(__x) <
sizeof(__y) and _N0 == 1)
2102 return __vec_shuffle(_T1{__x[0]}, __y, __seq, [=](
int __i) {
2103 __i = __idx_perm(__i);
2104 return __i < _N0 ? __i : __i - _N0 + _N1;
2106 else if constexpr (
sizeof(__x) <
sizeof(__y))
2107 return __vec_shuffle(__intrin_bitcast<_T1>(__x), __y, __seq, [=](
int __i) {
2108 __i = __idx_perm(__i);
2109 return __i < _N0 ? __i : __i - _N0 + _N1;
2114 const auto __r = __builtin_shufflevector(__x, __y, [=] {
2115 constexpr int __j = __idx_perm(_Is);
2116 static_assert(__j < _N0 + _N1);
2120 if constexpr (
sizeof(__r) ==
sizeof(_RV))
2123 return _RV {__r[_Is]...};
2131 constexpr int __j = __idx_perm(_Is);
2132 static_assert(__j < _N0 + _N1);
2133 if constexpr (__j < 0)
2135 else if constexpr (__j < _N0)
2138 return __y[__j - _N0];
2144template <
typename _T0,
typename _Fun,
typename _Seq>
2145 _GLIBCXX_SIMD_INTRINSIC
constexpr auto
2146 __vec_shuffle(_T0 __x, _Seq __seq, _Fun __idx_perm)
2147 {
return __vec_shuffle(__x, _T0(), __seq, __idx_perm); }
2151template <
typename _Tp,
typename _TVT = _VectorTraits<_Tp>,
2152 typename _R = __vector_type_t<
typename _TVT::value_type, _TVT::_S_full_size * 2>>
2154 __concat(_Tp a_, _Tp b_)
2156#ifdef _GLIBCXX_SIMD_WORKAROUND_XXX_1
2158 = conditional_t<is_floating_point_v<typename _TVT::value_type>, double,
2160 long long,
typename _TVT::value_type>>;
2161 constexpr int input_width =
sizeof(_Tp) /
sizeof(_W);
2162 const auto __a = __vector_bitcast<_W>(a_);
2163 const auto __b = __vector_bitcast<_W>(b_);
2164 using _Up = __vector_type_t<_W,
sizeof(_R) /
sizeof(_W)>;
2166 constexpr int input_width = _TVT::_S_full_size;
2167 const _Tp& __a = a_;
2168 const _Tp& __b = b_;
2171 if constexpr (input_width == 2)
2172 return reinterpret_cast<_R
>(_Up{__a[0], __a[1], __b[0], __b[1]});
2173 else if constexpr (input_width == 4)
2174 return reinterpret_cast<_R
>(
2175 _Up{__a[0], __a[1], __a[2], __a[3], __b[0], __b[1], __b[2], __b[3]});
2176 else if constexpr (input_width == 8)
2177 return reinterpret_cast<_R
>(
2178 _Up{__a[0], __a[1], __a[2], __a[3], __a[4], __a[5], __a[6], __a[7],
2179 __b[0], __b[1], __b[2], __b[3], __b[4], __b[5], __b[6], __b[7]});
2180 else if constexpr (input_width == 16)
2181 return reinterpret_cast<_R
>(
2182 _Up{__a[0], __a[1], __a[2], __a[3], __a[4], __a[5], __a[6],
2183 __a[7], __a[8], __a[9], __a[10], __a[11], __a[12], __a[13],
2184 __a[14], __a[15], __b[0], __b[1], __b[2], __b[3], __b[4],
2185 __b[5], __b[6], __b[7], __b[8], __b[9], __b[10], __b[11],
2186 __b[12], __b[13], __b[14], __b[15]});
2187 else if constexpr (input_width == 32)
2188 return reinterpret_cast<_R
>(
2189 _Up{__a[0], __a[1], __a[2], __a[3], __a[4], __a[5], __a[6],
2190 __a[7], __a[8], __a[9], __a[10], __a[11], __a[12], __a[13],
2191 __a[14], __a[15], __a[16], __a[17], __a[18], __a[19], __a[20],
2192 __a[21], __a[22], __a[23], __a[24], __a[25], __a[26], __a[27],
2193 __a[28], __a[29], __a[30], __a[31], __b[0], __b[1], __b[2],
2194 __b[3], __b[4], __b[5], __b[6], __b[7], __b[8], __b[9],
2195 __b[10], __b[11], __b[12], __b[13], __b[14], __b[15], __b[16],
2196 __b[17], __b[18], __b[19], __b[20], __b[21], __b[22], __b[23],
2197 __b[24], __b[25], __b[26], __b[27], __b[28], __b[29], __b[30],
2203template <
typename _Tp,
typename _TVT = _VectorTraits<_Tp>>
2204 struct _ZeroExtendProxy
2206 using value_type =
typename _TVT::value_type;
2207 static constexpr size_t _Np = _TVT::_S_full_size;
2210 template <
typename _To,
typename _ToVT = _VectorTraits<_To>,
2212 = enable_if_t<is_same_v<
typename _ToVT::value_type, value_type>>>
2213 _GLIBCXX_SIMD_INTRINSIC
operator _To()
const
2215 constexpr size_t _ToN = _ToVT::_S_full_size;
2216 if constexpr (_ToN == _Np)
2218 else if constexpr (_ToN == 2 * _Np)
2220#ifdef _GLIBCXX_SIMD_WORKAROUND_XXX_3
2221 if constexpr (__have_avx && _TVT::template _S_is<float, 4>)
2222 return __vector_bitcast<value_type>(
2223 _mm256_insertf128_ps(__m256(), __x, 0));
2224 else if constexpr (__have_avx && _TVT::template _S_is<double, 2>)
2225 return __vector_bitcast<value_type>(
2226 _mm256_insertf128_pd(__m256d(), __x, 0));
2227 else if constexpr (__have_avx2 && _Np *
sizeof(value_type) == 16)
2228 return __vector_bitcast<value_type>(
2229 _mm256_insertf128_si256(__m256i(), __to_intrin(__x), 0));
2230 else if constexpr (__have_avx512f && _TVT::template _S_is<float, 8>)
2232 if constexpr (__have_avx512dq)
2233 return __vector_bitcast<value_type>(
2234 _mm512_insertf32x8(__m512(), __x, 0));
2236 return reinterpret_cast<__m512
>(
2237 _mm512_insertf64x4(__m512d(),
2238 reinterpret_cast<__m256d
>(__x), 0));
2240 else if constexpr (__have_avx512f
2241 && _TVT::template _S_is<double, 4>)
2242 return __vector_bitcast<value_type>(
2243 _mm512_insertf64x4(__m512d(), __x, 0));
2244 else if constexpr (__have_avx512f && _Np *
sizeof(value_type) == 32)
2245 return __vector_bitcast<value_type>(
2246 _mm512_inserti64x4(__m512i(), __to_intrin(__x), 0));
2248 return __concat(__x, _Tp());
2250 else if constexpr (_ToN == 4 * _Np)
2252#ifdef _GLIBCXX_SIMD_WORKAROUND_XXX_3
2253 if constexpr (__have_avx512dq && _TVT::template _S_is<double, 2>)
2255 return __vector_bitcast<value_type>(
2256 _mm512_insertf64x2(__m512d(), __x, 0));
2258 else if constexpr (__have_avx512f
2259 && is_floating_point_v<value_type>)
2261 return __vector_bitcast<value_type>(
2262 _mm512_insertf32x4(__m512(),
reinterpret_cast<__m128
>(__x),
2265 else if constexpr (__have_avx512f && _Np *
sizeof(value_type) == 16)
2267 return __vector_bitcast<value_type>(
2268 _mm512_inserti32x4(__m512i(), __to_intrin(__x), 0));
2271 return __concat(__concat(__x, _Tp()),
2272 __vector_type_t<value_type, _Np * 2>());
2274 else if constexpr (_ToN == 8 * _Np)
2275 return __concat(
operator __vector_type_t<value_type, _Np * 4>(),
2276 __vector_type_t<value_type, _Np * 4>());
2277 else if constexpr (_ToN == 16 * _Np)
2278 return __concat(
operator __vector_type_t<value_type, _Np * 8>(),
2279 __vector_type_t<value_type, _Np * 8>());
2281 __assert_unreachable<_Tp>();
2285template <
typename _Tp,
typename _TVT = _VectorTraits<_Tp>>
2286 _GLIBCXX_SIMD_INTRINSIC _ZeroExtendProxy<_Tp, _TVT>
2287 __zero_extend(_Tp __x)
2292template <
int _Offset,
2295 typename _TVT = _VectorTraits<_Tp>,
2296 typename _R = __vector_type_t<
typename _TVT::value_type, _TVT::_S_full_size / _SplitBy>>
2297 _GLIBCXX_SIMD_INTRINSIC
constexpr _R
2300 using value_type =
typename _TVT::value_type;
2301#if _GLIBCXX_SIMD_X86INTRIN
2302 if constexpr (
sizeof(_Tp) == 64 && _SplitBy == 4 && _Offset > 0)
2304 if constexpr (__have_avx512dq && is_same_v<double, value_type>)
2305 return _mm512_extractf64x2_pd(__to_intrin(__in), _Offset);
2306 else if constexpr (is_floating_point_v<value_type>)
2307 return __vector_bitcast<value_type>(
2308 _mm512_extractf32x4_ps(__intrin_bitcast<__m512>(__in), _Offset));
2310 return reinterpret_cast<_R
>(
2311 _mm512_extracti32x4_epi32(__intrin_bitcast<__m512i>(__in),
2317#ifdef _GLIBCXX_SIMD_WORKAROUND_XXX_1
2319 is_floating_point_v<value_type>, double,
2321 static_assert(
sizeof(_R) %
sizeof(_W) == 0);
2322 constexpr int __return_width =
sizeof(_R) /
sizeof(_W);
2323 using _Up = __vector_type_t<_W, __return_width>;
2324 const auto __x = __vector_bitcast<_W>(__in);
2326 constexpr int __return_width = _TVT::_S_full_size / _SplitBy;
2328 const __vector_type_t<value_type, _TVT::_S_full_size>& __x
2331 constexpr int _O = _Offset * __return_width;
2332 return __call_with_subscripts<__return_width, _O>(
2333 __x, [](
auto... __entries) _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
2334 return reinterpret_cast<_R
>(_Up{__entries...});
2341template <
typename _Tp,
2342 typename _R = __vector_type8_t<typename _VectorTraits<_Tp>::value_type>>
2343 _GLIBCXX_SIMD_INTRINSIC
constexpr _R
2347 __builtin_memcpy(&__r, &__x, 8);
2351template <
typename _Tp,
2352 typename _R = __vector_type8_t<typename _VectorTraits<_Tp>::value_type>>
2353 _GLIBCXX_SIMD_INTRINSIC
constexpr _R
2356 static_assert(
sizeof(_Tp) == 16,
"use __hi64z if you meant it");
2358 __builtin_memcpy(&__r,
reinterpret_cast<const char*
>(&__x) + 8, 8);
2362template <
typename _Tp,
2363 typename _R = __vector_type8_t<typename _VectorTraits<_Tp>::value_type>>
2364 _GLIBCXX_SIMD_INTRINSIC
constexpr _R
2365 __hi64z([[maybe_unused]] _Tp __x)
2368 if constexpr (
sizeof(_Tp) == 16)
2369 __builtin_memcpy(&__r,
reinterpret_cast<const char*
>(&__x) + 8, 8);
2375template <
typename _Tp>
2376 _GLIBCXX_SIMD_INTRINSIC
constexpr auto
2378 {
return __extract<0,
sizeof(_Tp) / 16>(__x); }
2380template <
typename _Tp>
2381 _GLIBCXX_SIMD_INTRINSIC
constexpr auto
2384 static_assert(
sizeof(__x) == 32);
2385 return __extract<1, 2>(__x);
2390template <
typename _Tp>
2391 _GLIBCXX_SIMD_INTRINSIC
constexpr auto
2394 static_assert(
sizeof(__x) == 64);
2395 return __extract<0, 2>(__x);
2398template <
typename _Tp>
2399 _GLIBCXX_SIMD_INTRINSIC
constexpr auto
2402 static_assert(
sizeof(__x) == 64);
2403 return __extract<1, 2>(__x);
2408template <
typename _Tp>
2411 static_assert(__is_vector_type_v<_Tp>);
2415 template <
typename _Up,
typename _UVT = _VectorTraits<_Up>>
2416 _GLIBCXX_SIMD_INTRINSIC
constexpr operator _Up()
const
2417 {
return __intrin_bitcast<typename _UVT::type>(__x); }
2420template <
typename _Tp>
2421 _GLIBCXX_SIMD_INTRINSIC
constexpr _AutoCast<_Tp>
2422 __auto_bitcast(
const _Tp& __x)
2425template <
typename _Tp,
size_t _Np>
2426 _GLIBCXX_SIMD_INTRINSIC
constexpr
2427 _AutoCast<typename _SimdWrapper<_Tp, _Np>::_BuiltinType>
2428 __auto_bitcast(
const _SimdWrapper<_Tp, _Np>& __x)
2429 {
return {__x._M_data}; }
2434#if _GLIBCXX_SIMD_HAVE_SSE_ABI
2436#if _GLIBCXX_SIMD_HAVE_AVX512F && _GLIBCXX_SIMD_X86INTRIN
2437template <
size_t _Size>
2438 struct __bool_storage_member_type
2440 static_assert((_Size & (_Size - 1)) != 0,
2441 "This trait may only be used for non-power-of-2 sizes. "
2442 "Power-of-2 sizes must be specialized.");
2444 typename __bool_storage_member_type<std::__bit_ceil(_Size)>::type;
2448 struct __bool_storage_member_type<1> {
using type = bool; };
2451 struct __bool_storage_member_type<2> {
using type = __mmask8; };
2454 struct __bool_storage_member_type<4> {
using type = __mmask8; };
2457 struct __bool_storage_member_type<8> {
using type = __mmask8; };
2460 struct __bool_storage_member_type<16> {
using type = __mmask16; };
2463 struct __bool_storage_member_type<32> {
using type = __mmask32; };
2466 struct __bool_storage_member_type<64> {
using type = __mmask64; };
2472#if _GLIBCXX_SIMD_HAVE_SSE
2473template <
typename _Tp,
size_t _Bytes>
2474 struct __intrinsic_type<_Tp, _Bytes,
enable_if_t<__is_vectorizable_v<_Tp> && _Bytes <= 64>>
2477 static_assert(!(is_same_v<_Tp, long double>
2478 &&
sizeof(
long double) >
sizeof(double)),
2479 "no __intrinsic_type support for long double on x86");
2481 static constexpr size_t _S_VBytes = _Bytes <= 16 ? 16 : _Bytes <= 32 ? 32 : 64;
2483 using type [[__gnu__::__vector_size__(_S_VBytes)]]
2484 = conditional_t<is_integral_v<_Tp>,
long long int,
2485 conditional_t<is_same_v<_Tp, long double>, double, _Tp> >;
2492#if _GLIBCXX_SIMD_HAVE_NEON
2494 struct __intrinsic_type<float, 8, void>
2495 {
using type = float32x2_t; };
2498 struct __intrinsic_type<float, 16, void>
2499 {
using type = float32x4_t; };
2502 struct __intrinsic_type<double, 8, void>
2504#if _GLIBCXX_SIMD_HAVE_NEON_A64
2505 using type = float64x1_t;
2510 struct __intrinsic_type<double, 16, void>
2512#if _GLIBCXX_SIMD_HAVE_NEON_A64
2513 using type = float64x2_t;
2517#define _GLIBCXX_SIMD_ARM_INTRIN(_Bits, _Np) \
2519 struct __intrinsic_type<__int_with_sizeof_t<_Bits / 8>, \
2520 _Np * _Bits / 8, void> \
2521 { using type = int##_Bits##x##_Np##_t; }; \
2523 struct __intrinsic_type<make_unsigned_t<__int_with_sizeof_t<_Bits / 8>>, \
2524 _Np * _Bits / 8, void> \
2525 { using type = uint##_Bits##x##_Np##_t; }
2526_GLIBCXX_SIMD_ARM_INTRIN(8, 8);
2527_GLIBCXX_SIMD_ARM_INTRIN(8, 16);
2528_GLIBCXX_SIMD_ARM_INTRIN(16, 4);
2529_GLIBCXX_SIMD_ARM_INTRIN(16, 8);
2530_GLIBCXX_SIMD_ARM_INTRIN(32, 2);
2531_GLIBCXX_SIMD_ARM_INTRIN(32, 4);
2532_GLIBCXX_SIMD_ARM_INTRIN(64, 1);
2533_GLIBCXX_SIMD_ARM_INTRIN(64, 2);
2534#undef _GLIBCXX_SIMD_ARM_INTRIN
2536template <
typename _Tp,
size_t _Bytes>
2537 struct __intrinsic_type<_Tp, _Bytes,
enable_if_t<__is_vectorizable_v<_Tp> && _Bytes <= 16>>
2539 static constexpr int _SVecBytes = _Bytes <= 8 ? 8 : 16;
2541 using _Ip = __int_for_sizeof_t<_Tp>;
2544 is_floating_point_v<_Tp>, _Tp,
2545 conditional_t<is_unsigned_v<_Tp>, make_unsigned_t<_Ip>, _Ip>>;
2547 static_assert(!is_same_v<_Tp, _Up> || _SVecBytes != _Bytes,
2548 "should use explicit specialization above");
2550 using type =
typename __intrinsic_type<_Up, _SVecBytes>::type;
2557template <
typename _Tp>
2558 struct __intrinsic_type_impl;
2560#define _GLIBCXX_SIMD_PPC_INTRIN(_Tp) \
2562 struct __intrinsic_type_impl<_Tp> { using type = __vector _Tp; }
2563_GLIBCXX_SIMD_PPC_INTRIN(
float);
2565_GLIBCXX_SIMD_PPC_INTRIN(
double);
2567_GLIBCXX_SIMD_PPC_INTRIN(
signed char);
2568_GLIBCXX_SIMD_PPC_INTRIN(
unsigned char);
2569_GLIBCXX_SIMD_PPC_INTRIN(
signed short);
2570_GLIBCXX_SIMD_PPC_INTRIN(
unsigned short);
2571_GLIBCXX_SIMD_PPC_INTRIN(
signed int);
2572_GLIBCXX_SIMD_PPC_INTRIN(
unsigned int);
2573#if defined __VSX__ || __SIZEOF_LONG__ == 4
2574_GLIBCXX_SIMD_PPC_INTRIN(
signed long);
2575_GLIBCXX_SIMD_PPC_INTRIN(
unsigned long);
2578_GLIBCXX_SIMD_PPC_INTRIN(
signed long long);
2579_GLIBCXX_SIMD_PPC_INTRIN(
unsigned long long);
2581#undef _GLIBCXX_SIMD_PPC_INTRIN
2583template <
typename _Tp,
size_t _Bytes>
2584 struct __intrinsic_type<_Tp, _Bytes,
enable_if_t<__is_vectorizable_v<_Tp> && _Bytes <= 16>>
2586 static constexpr bool _S_is_ldouble = is_same_v<_Tp, long double>;
2589 static_assert(!(_S_is_ldouble &&
sizeof(
long double) >
sizeof(double)),
2590 "no __intrinsic_type support for 128-bit floating point on PowerPC");
2593 static_assert(!(is_same_v<_Tp, double>
2594 || (_S_is_ldouble &&
sizeof(
long double) ==
sizeof(double))),
2595 "no __intrinsic_type support for 64-bit floating point on PowerPC w/o VSX");
2598 static constexpr auto __element_type()
2600 if constexpr (is_floating_point_v<_Tp>)
2602 if constexpr (_S_is_ldouble)
2607 else if constexpr (is_signed_v<_Tp>)
2609 if constexpr (
sizeof(_Tp) ==
sizeof(_SChar))
2611 else if constexpr (
sizeof(_Tp) ==
sizeof(short))
2613 else if constexpr (
sizeof(_Tp) ==
sizeof(int))
2615 else if constexpr (
sizeof(_Tp) ==
sizeof(_LLong))
2620 if constexpr (
sizeof(_Tp) ==
sizeof(_UChar))
2622 else if constexpr (
sizeof(_Tp) ==
sizeof(_UShort))
2624 else if constexpr (
sizeof(_Tp) ==
sizeof(_UInt))
2626 else if constexpr (
sizeof(_Tp) ==
sizeof(_ULLong))
2631 using type =
typename __intrinsic_type_impl<
decltype(__element_type())>::type;
2637template <
size_t _W
idth>
2638 struct _SimdWrapper<bool, _Width,
2639 void_t<typename __bool_storage_member_type<_Width>::type>>
2641 using _BuiltinType =
typename __bool_storage_member_type<_Width>::type;
2642 using value_type = bool;
2644 static constexpr size_t _S_full_size =
sizeof(_BuiltinType) * __CHAR_BIT__;
2646 _GLIBCXX_SIMD_INTRINSIC
constexpr _SimdWrapper<bool, _S_full_size>
2647 __as_full_vector()
const
2650 _GLIBCXX_SIMD_INTRINSIC
constexpr
2651 _SimdWrapper() =
default;
2653 _GLIBCXX_SIMD_INTRINSIC
constexpr
2654 _SimdWrapper(_BuiltinType __k) : _M_data(__k) {};
2656 _GLIBCXX_SIMD_INTRINSIC
2657 operator const _BuiltinType&()
const
2660 _GLIBCXX_SIMD_INTRINSIC
2661 operator _BuiltinType&()
2664 _GLIBCXX_SIMD_INTRINSIC _BuiltinType
2668 _GLIBCXX_SIMD_INTRINSIC
constexpr value_type
2669 operator[](
size_t __i)
const
2670 {
return _M_data & (_BuiltinType(1) << __i); }
2672 template <
size_t __i>
2673 _GLIBCXX_SIMD_INTRINSIC
constexpr value_type
2674 operator[](_SizeConstant<__i>)
const
2675 {
return _M_data & (_BuiltinType(1) << __i); }
2677 _GLIBCXX_SIMD_INTRINSIC
constexpr void
2678 _M_set(
size_t __i, value_type __x)
2681 _M_data |= (_BuiltinType(1) << __i);
2683 _M_data &= ~(_BuiltinType(1) << __i);
2686 _GLIBCXX_SIMD_INTRINSIC
constexpr bool
2687 _M_is_constprop()
const
2688 {
return __builtin_constant_p(_M_data); }
2690 _GLIBCXX_SIMD_INTRINSIC
constexpr bool
2691 _M_is_constprop_none_of()
const
2693 if (__builtin_constant_p(_M_data))
2695 constexpr int __nbits =
sizeof(_BuiltinType) * __CHAR_BIT__;
2696 constexpr _BuiltinType __active_mask
2697 = ~_BuiltinType() >> (__nbits - _Width);
2698 return (_M_data & __active_mask) == 0;
2703 _GLIBCXX_SIMD_INTRINSIC
constexpr bool
2704 _M_is_constprop_all_of()
const
2706 if (__builtin_constant_p(_M_data))
2708 constexpr int __nbits =
sizeof(_BuiltinType) * __CHAR_BIT__;
2709 constexpr _BuiltinType __active_mask
2710 = ~_BuiltinType() >> (__nbits - _Width);
2711 return (_M_data & __active_mask) == __active_mask;
2716 _BuiltinType _M_data;
2720template <
bool _MustZeroInitPadding,
typename _BuiltinType>
2721 struct _SimdWrapperBase;
2723template <
typename _BuiltinType>
2724 struct _SimdWrapperBase<false, _BuiltinType>
2726 _GLIBCXX_SIMD_INTRINSIC
constexpr
2727 _SimdWrapperBase() =
default;
2729 _GLIBCXX_SIMD_INTRINSIC
constexpr
2730 _SimdWrapperBase(_BuiltinType __init) : _M_data(__init) {}
2732 _BuiltinType _M_data;
2735template <
typename _BuiltinType>
2736 struct _SimdWrapperBase<true, _BuiltinType>
2739 _GLIBCXX_SIMD_INTRINSIC
constexpr
2740 _SimdWrapperBase() : _M_data() {}
2742 _GLIBCXX_SIMD_INTRINSIC
constexpr
2743 _SimdWrapperBase(_BuiltinType __init) : _M_data(__init) {}
2745 _BuiltinType _M_data;
2750struct _DisabledSimdWrapper;
2752template <
typename _Tp,
size_t _W
idth>
2753 struct _SimdWrapper<
2755 void_t<__vector_type_t<_Tp, _Width>, __intrinsic_type_t<_Tp, _Width>>>
2756 : _SimdWrapperBase<__has_iec559_behavior<__signaling_NaN, _Tp>::value
2757 && sizeof(_Tp) * _Width
2758 == sizeof(__vector_type_t<_Tp, _Width>),
2759 __vector_type_t<_Tp, _Width>>
2761 static constexpr bool _S_need_default_init
2762 = __has_iec559_behavior<__signaling_NaN, _Tp>::value
2763 and
sizeof(_Tp) * _Width ==
sizeof(__vector_type_t<_Tp, _Width>);
2765 using _BuiltinType = __vector_type_t<_Tp, _Width>;
2767 using _Base = _SimdWrapperBase<_S_need_default_init, _BuiltinType>;
2769 static_assert(__is_vectorizable_v<_Tp>);
2770 static_assert(_Width >= 2);
2772 using value_type = _Tp;
2774 static inline constexpr size_t _S_full_size
2775 =
sizeof(_BuiltinType) /
sizeof(value_type);
2776 static inline constexpr int _S_size = _Width;
2777 static inline constexpr bool _S_is_partial = _S_full_size != _S_size;
2779 using _Base::_M_data;
2781 _GLIBCXX_SIMD_INTRINSIC
constexpr _SimdWrapper<_Tp, _S_full_size>
2782 __as_full_vector()
const
2785 _GLIBCXX_SIMD_INTRINSIC
constexpr
2786 _SimdWrapper(initializer_list<_Tp> __init)
2787 : _Base(__generate_from_n_evaluations<_Width, _BuiltinType>(
2788 [&](auto __i) _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
2789 return __init.begin()[__i.value];
2792 _GLIBCXX_SIMD_INTRINSIC
constexpr
2793 _SimdWrapper() =
default;
2795 _GLIBCXX_SIMD_INTRINSIC
constexpr
2796 _SimdWrapper(
const _SimdWrapper&) =
default;
2798 _GLIBCXX_SIMD_INTRINSIC
constexpr
2799 _SimdWrapper(_SimdWrapper&&) =
default;
2801 _GLIBCXX_SIMD_INTRINSIC
constexpr _SimdWrapper&
2802 operator=(
const _SimdWrapper&) =
default;
2804 _GLIBCXX_SIMD_INTRINSIC
constexpr _SimdWrapper&
2805 operator=(_SimdWrapper&&) =
default;
2808 using _SimdWrapperBase<_S_need_default_init, _BuiltinType>::_SimdWrapperBase;
2812 _GLIBCXX_SIMD_INTRINSIC
constexpr
2813 _SimdWrapper(conditional_t<is_same_v<_BuiltinType, __intrinsic_type_t<_Tp, _Width>>,
2814 _DisabledSimdWrapper, __intrinsic_type_t<_Tp, _Width>> __x)
2815 : _Base(__vector_bitcast<_Tp, _Width>(__x)) {}
2819 template <
typename _V,
typename _TVT = _VectorTraits<_V>,
2820 typename = enable_if_t<sizeof(
typename _TVT::value_type) == sizeof(_Tp)
2821 and sizeof(_V) == sizeof(_BuiltinType)
2822 and is_
integral_v<_Tp>
2823 and is_
integral_v<
typename _TVT::value_type>>>
2824 _GLIBCXX_SIMD_INTRINSIC
constexpr
2825 _SimdWrapper(_V __x)
2826 : _Base(reinterpret_cast<_BuiltinType>(__x)) {}
2828 template <
typename... _As,
2829 typename =
enable_if_t<((is_same_v<simd_abi::scalar, _As> && ...)
2830 &&
sizeof...(_As) <= _Width)>>
2831 _GLIBCXX_SIMD_INTRINSIC
constexpr
2832 operator _SimdTuple<_Tp, _As...>()
const
2834 return __generate_from_n_evaluations<
sizeof...(_As), _SimdTuple<_Tp, _As...>>(
2835 [&](
auto __i)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA
2836 {
return _M_data[int(__i)]; });
2839 _GLIBCXX_SIMD_INTRINSIC
constexpr
2840 operator const _BuiltinType&()
const
2843 _GLIBCXX_SIMD_INTRINSIC
constexpr
2844 operator _BuiltinType&()
2847 _GLIBCXX_SIMD_INTRINSIC
constexpr _Tp
2848 operator[](
size_t __i)
const
2849 {
return _M_data[__i]; }
2851 template <
size_t __i>
2852 _GLIBCXX_SIMD_INTRINSIC
constexpr _Tp
2853 operator[](_SizeConstant<__i>)
const
2854 {
return _M_data[__i]; }
2856 _GLIBCXX_SIMD_INTRINSIC
constexpr void
2857 _M_set(
size_t __i, _Tp __x)
2859 if (__builtin_is_constant_evaluated())
2860 _M_data = __generate_from_n_evaluations<_Width, _BuiltinType>([&](
auto __j) {
2861 return __j == __i ? __x : _M_data[__j()];
2867 _GLIBCXX_SIMD_INTRINSIC
2869 _M_is_constprop()
const
2870 {
return __builtin_constant_p(_M_data); }
2872 _GLIBCXX_SIMD_INTRINSIC
constexpr bool
2873 _M_is_constprop_none_of()
const
2875 if (__builtin_constant_p(_M_data))
2878 if constexpr (is_floating_point_v<_Tp>)
2880 using _Ip = __int_for_sizeof_t<_Tp>;
2881 const auto __intdata = __vector_bitcast<_Ip>(_M_data);
2882 __execute_n_times<_Width>(
2883 [&](
auto __i) { __r &= __intdata[__i.value] == _Ip(); });
2886 __execute_n_times<_Width>(
2887 [&](
auto __i) { __r &= _M_data[__i.value] == _Tp(); });
2888 if (__builtin_constant_p(__r))
2894 _GLIBCXX_SIMD_INTRINSIC
constexpr bool
2895 _M_is_constprop_all_of()
const
2897 if (__builtin_constant_p(_M_data))
2900 if constexpr (is_floating_point_v<_Tp>)
2902 using _Ip = __int_for_sizeof_t<_Tp>;
2903 const auto __intdata = __vector_bitcast<_Ip>(_M_data);
2904 __execute_n_times<_Width>(
2905 [&](
auto __i) { __r &= __intdata[__i.value] == ~_Ip(); });
2908 __execute_n_times<_Width>(
2909 [&](
auto __i) { __r &= _M_data[__i.value] == ~_Tp(); });
2910 if (__builtin_constant_p(__r))
2920template <
typename _Tp>
2922 __vectorized_sizeof()
2924 if constexpr (!__is_vectorizable_v<_Tp>)
2927 if constexpr (
sizeof(_Tp) <= 8)
2930 if constexpr (__have_avx512bw)
2932 if constexpr (__have_avx512f &&
sizeof(_Tp) >= 4)
2934 if constexpr (__have_avx2)
2936 if constexpr (__have_avx && is_floating_point_v<_Tp>)
2938 if constexpr (__have_sse2)
2940 if constexpr (__have_sse && is_same_v<_Tp, float>)
2950 if constexpr (__have_power8vec
2951 || (__have_power_vmx && (
sizeof(_Tp) < 8))
2952 || (__have_power_vsx && is_floating_point_v<_Tp>) )
2956 if constexpr (__have_neon_a64)
2958 if constexpr (__have_neon_a32 and (not is_floating_point_v<_Tp>
2959 or is_same_v<_Tp, float>))
2961 if constexpr (__have_neon
2966 && (__support_neon_float || !is_floating_point_v<_Tp>))
2976template <
typename _Tp>
2977 inline constexpr int max_fixed_size
2978 = ((__have_avx512bw &&
sizeof(_Tp) == 1)
2979 || (__have_sve && __sve_vectorized_size_bytes/
sizeof(_Tp) >= 64)) ? 64 : 32;
2982#if defined __x86_64__ || defined __aarch64__
2983template <
typename _Tp>
2984 using compatible =
conditional_t<(
sizeof(_Tp) <= 8), _VecBuiltin<16>, scalar>;
2985#elif defined __ARM_NEON
2988template <
typename _Tp>
2991 && (__support_neon_float || !is_floating_point_v<_Tp>)),
2992 _VecBuiltin<16>, scalar>;
2995 using compatible = scalar;
3000template <
typename _Tp>
3002 __determine_native_abi()
3004 constexpr size_t __bytes = __vectorized_sizeof<_Tp>();
3005 if constexpr (__bytes ==
sizeof(_Tp))
3006 return static_cast<scalar*
>(
nullptr);
3007 else if constexpr (__have_sve)
3008 return static_cast<_SveAbi<__sve_vectorized_size_bytes>*
>(
nullptr);
3009 else if constexpr (__have_avx512vl || (__have_avx512f && __bytes == 64))
3010 return static_cast<_VecBltnBtmsk<__bytes>*
>(
nullptr);
3012 return static_cast<_VecBuiltin<__bytes>*
>(
nullptr);
3015template <
typename _Tp,
typename = enable_if_t<__is_vectorizable_v<_Tp>>>
3016 using native = remove_pointer_t<decltype(__determine_native_abi<_Tp>())>;
3020#if defined _GLIBCXX_SIMD_DEFAULT_ABI
3021template <
typename _Tp>
3022 using __default_abi = _GLIBCXX_SIMD_DEFAULT_ABI<_Tp>;
3024template <
typename _Tp>
3025 using __default_abi = compatible<_Tp>;
3032template <
typename _Tp>
3033 struct is_simd_flag_type
3038 struct is_simd_flag_type<element_aligned_tag>
3043 struct is_simd_flag_type<vector_aligned_tag>
3047template <
size_t _Np>
3048 struct is_simd_flag_type<overaligned_tag<_Np>>
3049 : __bool_constant<(_Np > 0) and __has_single_bit(_Np)>
3052template <
typename _Tp>
3053 inline constexpr bool is_simd_flag_type_v = is_simd_flag_type<_Tp>::value;
3055template <
typename _Tp,
typename = enable_if_t<is_simd_flag_type_v<_Tp>>>
3056 using _IsSimdFlagType = _Tp;
3059template <
typename _Tp,
typename =
void_t<>>
3060 struct is_abi_tag : false_type {};
3062template <
typename _Tp>
3063 struct is_abi_tag<_Tp,
void_t<typename _Tp::_IsValidAbiTag>>
3064 :
public _Tp::_IsValidAbiTag {};
3066template <
typename _Tp>
3067 inline constexpr bool is_abi_tag_v = is_abi_tag<_Tp>::value;
3070template <
typename _Tp>
3071 struct is_simd :
public false_type {};
3073template <
typename _Tp>
3074 inline constexpr bool is_simd_v = is_simd<_Tp>::value;
3076template <
typename _Tp>
3077 struct is_simd_mask :
public false_type {};
3079template <
typename _Tp>
3080inline constexpr bool is_simd_mask_v = is_simd_mask<_Tp>::value;
3083template <
typename _Tp,
typename _Abi,
typename =
void>
3084 struct __simd_size_impl {};
3086template <
typename _Tp,
typename _Abi>
3087 struct __simd_size_impl<
3089 enable_if_t<conjunction_v<__is_vectorizable<_Tp>, is_abi_tag<_Abi>>>>
3090 : _SizeConstant<_Abi::template _S_size<_Tp>> {};
3092template <
typename _Tp,
typename _Abi = simd_abi::__default_abi<_Tp>>
3093 struct simd_size : __simd_size_impl<_Tp, _Abi> {};
3095template <
typename _Tp,
typename _Abi = simd_abi::__default_abi<_Tp>>
3096 inline constexpr size_t simd_size_v = simd_size<_Tp, _Abi>::value;
3099template <
typename _Tp,
size_t _Np,
typename =
void>
3100 struct __deduce_impl;
3102template <
typename _Tp,
size_t _Np,
typename =
void>
3103 struct __no_sve_deduce_impl;
3114template <
typename _Tp,
size_t _Np,
typename...>
3115 struct deduce : __deduce_impl<_Tp, _Np> {};
3117template <
typename _Tp,
size_t _Np,
typename... _Abis>
3118 using deduce_t =
typename deduce<_Tp, _Np, _Abis...>::type;
3120template <
typename _Tp,
size_t _Np,
typename...>
3121 struct __no_sve_deduce : __no_sve_deduce_impl<_Tp, _Np> {};
3123template <
typename _Tp,
size_t _Np,
typename... _Abis>
3124 using __no_sve_deduce_t =
typename __no_sve_deduce<_Tp, _Np, _Abis...>::type;
3129template <
typename _Tp,
typename _V,
typename =
void>
3132template <
typename _Tp,
typename _Up,
typename _Abi>
3133 struct rebind_simd<_Tp, simd<_Up, _Abi>,
3134 void_t<
std::conditional_t<!__is_sve_abi<_Abi>(),
3135 simd_abi::__no_sve_deduce_t<_Tp, simd_size_v<_Up, _Abi>, _Abi>,
3136 simd_abi::deduce_t<_Tp, simd_size_v<_Up, _Abi>, _Abi>>>>
3139 !__is_sve_abi<_Abi>(),
3140 simd_abi::__no_sve_deduce_t<_Tp, simd_size_v<_Up, _Abi>, _Abi>,
3141 simd_abi::deduce_t<_Tp, simd_size_v<_Up, _Abi>, _Abi>>>;
3144template <
typename _Tp,
typename _Up,
typename _Abi>
3145 struct rebind_simd<_Tp, simd_mask<_Up, _Abi>,
3147 simd_abi::__no_sve_deduce_t<_Tp, simd_size_v<_Up, _Abi>, _Abi>,
3148 simd_abi::deduce_t<_Tp, simd_size_v<_Up, _Abi>, _Abi>>>>
3151 !__is_sve_abi<_Abi>(),
3152 simd_abi::__no_sve_deduce_t<_Tp, simd_size_v<_Up, _Abi>, _Abi>,
3153 simd_abi::deduce_t<_Tp, simd_size_v<_Up, _Abi>, _Abi>>>;
3156template <
typename _Tp,
typename _V>
3157 using rebind_simd_t =
typename rebind_simd<_Tp, _V>::type;
3160template <
int _Np,
typename _V,
typename =
void>
3163template <
int _Np,
typename _Tp,
typename _Abi>
3164 struct resize_simd<_Np, simd<_Tp, _Abi>,
void_t<simd_abi::deduce_t<_Tp, _Np, _Abi>>>
3165 {
using type = simd<_Tp, simd_abi::deduce_t<_Tp, _Np, _Abi>>; };
3167template <
int _Np,
typename _Tp,
typename _Abi>
3168 struct resize_simd<_Np, simd_mask<_Tp, _Abi>,
void_t<simd_abi::deduce_t<_Tp, _Np, _Abi>>>
3169 {
using type = simd_mask<_Tp, simd_abi::deduce_t<_Tp, _Np, _Abi>>; };
3171template <
int _Np,
typename _V>
3172 using resize_simd_t =
typename resize_simd<_Np, _V>::type;
3176template <
typename _Tp,
typename _Up =
typename _Tp::value_type>
3177 struct memory_alignment
3178 :
public _SizeConstant<vector_aligned_tag::_S_alignment<_Tp, _Up>> {};
3180template <
typename _Tp,
typename _Up =
typename _Tp::value_type>
3181 inline constexpr size_t memory_alignment_v = memory_alignment<_Tp, _Up>::value;
3184template <
typename _Tp,
typename _Abi = simd_abi::__default_abi<_Tp>>
3187template <
typename _Tp,
typename _Abi>
3188 struct is_simd<simd<_Tp, _Abi>> :
public true_type {};
3190template <
typename _Tp>
3191 using native_simd = simd<_Tp, simd_abi::native<_Tp>>;
3193template <
typename _Tp,
int _Np>
3194 using fixed_size_simd = simd<_Tp, simd_abi::fixed_size<_Np>>;
3196template <
typename _Tp,
size_t _Np>
3197 using __deduced_simd = simd<_Tp, simd_abi::deduce_t<_Tp, _Np>>;
3200template <
typename _Tp,
typename _Abi = simd_abi::__default_abi<_Tp>>
3203template <
typename _Tp,
typename _Abi>
3204 struct is_simd_mask<simd_mask<_Tp, _Abi>> :
public true_type {};
3206template <
typename _Tp>
3207 using native_simd_mask = simd_mask<_Tp, simd_abi::native<_Tp>>;
3209template <
typename _Tp,
int _Np>
3210 using fixed_size_simd_mask = simd_mask<_Tp, simd_abi::fixed_size<_Np>>;
3212template <
typename _Tp,
size_t _Np>
3213 using __deduced_simd_mask = simd_mask<_Tp, simd_abi::deduce_t<_Tp, _Np>>;
3217template <
typename _Tp,
typename _Up,
typename _Ap,
bool = is_simd_v<_Tp>,
typename =
void>
3218 struct __static_simd_cast_return_type;
3220template <
typename _Tp,
typename _A0,
typename _Up,
typename _Ap>
3221 struct __static_simd_cast_return_type<simd_mask<_Tp, _A0>, _Up, _Ap, false, void>
3222 : __static_simd_cast_return_type<simd<_Tp, _A0>, _Up, _Ap> {};
3224template <
typename _Tp,
typename _Up,
typename _Ap>
3225 struct __static_simd_cast_return_type<
3226 _Tp, _Up, _Ap, true,
enable_if_t<_Tp::size() == simd_size_v<_Up, _Ap>>>
3227 {
using type = _Tp; };
3229template <
typename _Tp,
typename _Ap>
3230 struct __static_simd_cast_return_type<_Tp, _Tp, _Ap, false,
3231#ifdef _GLIBCXX_SIMD_FIX_P2TS_ISSUE66
3237 {
using type = simd<_Tp, _Ap>; };
3239template <
typename _Tp,
typename =
void>
3240 struct __safe_make_signed {
using type = _Tp;};
3242template <
typename _Tp>
3243 struct __safe_make_signed<_Tp,
enable_if_t<is_integral_v<_Tp>>>
3246 using type = make_signed_t<make_unsigned_t<_Tp>>;
3249template <
typename _Tp>
3250 using safe_make_signed_t =
typename __safe_make_signed<_Tp>::type;
3252template <
typename _Tp,
typename _Up,
typename _Ap>
3253 struct __static_simd_cast_return_type<_Tp, _Up, _Ap, false,
3254#ifdef _GLIBCXX_SIMD_FIX_P2TS_ISSUE66
3262 (is_integral_v<_Up> && is_integral_v<_Tp> &&
3263#ifndef _GLIBCXX_SIMD_FIX_P2TS_ISSUE65
3264 is_signed_v<_Up> != is_signed_v<_Tp> &&
3266 is_same_v<safe_make_signed_t<_Up>, safe_make_signed_t<_Tp>>),
3267 simd<_Tp, _Ap>, fixed_size_simd<_Tp, simd_size_v<_Up, _Ap>>>;
3270template <
typename _Tp,
typename _Up,
typename _Ap,
3272 =
typename __static_simd_cast_return_type<_Tp, _Up, _Ap>::type>
3273 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR _R
3274 static_simd_cast(
const simd<_Up, _Ap>& __x)
3276 if constexpr (is_same<_R, simd<_Up, _Ap>>::value)
3280 _SimdConverter<_Up, _Ap, typename _R::value_type, typename _R::abi_type>
3282 return _R(__private_init, __c(__data(__x)));
3286namespace __proposed {
3287template <
typename _Tp,
typename _Up,
typename _Ap,
3289 =
typename __static_simd_cast_return_type<_Tp, _Up, _Ap>::type>
3290 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
typename _R::mask_type
3291 static_simd_cast(
const simd_mask<_Up, _Ap>& __x)
3293 using _RM =
typename _R::mask_type;
3294 return {__private_init, _RM::abi_type::_MaskImpl::template _S_convert<
3295 typename _RM::simd_type::value_type>(__x)};
3298template <
typename _To,
typename _Up,
typename _Abi>
3299 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
3301 simd_bit_cast(
const simd<_Up, _Abi>& __x)
3303 using _Tp =
typename _To::value_type;
3304 using _ToMember =
typename _SimdTraits<_Tp, typename _To::abi_type>::_SimdMember;
3305 using _From = simd<_Up, _Abi>;
3306 using _FromMember =
typename _SimdTraits<_Up, _Abi>::_SimdMember;
3308 static_assert(
sizeof(_To) ==
sizeof(_From));
3309 static_assert(is_trivially_copyable_v<_Tp> && is_trivially_copyable_v<_Up>);
3310 static_assert(is_trivially_copyable_v<_ToMember> && is_trivially_copyable_v<_FromMember>);
3311#if __has_builtin(__builtin_bit_cast)
3312 return {__private_init, __builtin_bit_cast(_ToMember, __data(__x))};
3314 return {__private_init, __bit_cast<_ToMember>(__data(__x))};
3318template <
typename _To,
typename _Up,
typename _Abi>
3319 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
3321 simd_bit_cast(
const simd_mask<_Up, _Abi>& __x)
3323 using _From = simd_mask<_Up, _Abi>;
3324 static_assert(
sizeof(_To) ==
sizeof(_From));
3325 static_assert(is_trivially_copyable_v<_From>);
3328 if constexpr (is_simd_v<_To>)
3330 using _Tp =
typename _To::value_type;
3331 using _ToMember =
typename _SimdTraits<_Tp, typename _To::abi_type>::_SimdMember;
3332 static_assert(is_trivially_copyable_v<_ToMember>);
3333#if __has_builtin(__builtin_bit_cast)
3334 return {__private_init, __builtin_bit_cast(_ToMember, __x)};
3336 return {__private_init, __bit_cast<_ToMember>(__x)};
3341 static_assert(is_trivially_copyable_v<_To>);
3342#if __has_builtin(__builtin_bit_cast)
3343 return __builtin_bit_cast(_To, __x);
3345 return __bit_cast<_To>(__x);
3352template <
typename _Tp,
typename _Up,
typename _Ap,
3353 typename _To = __value_type_or_identity_t<_Tp>>
3354 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
auto
3355 simd_cast(
const simd<_ValuePreserving<_Up, _To>, _Ap>& __x)
3356 ->
decltype(static_simd_cast<_Tp>(__x))
3357 {
return static_simd_cast<_Tp>(__x); }
3359namespace __proposed {
3360template <
typename _Tp,
typename _Up,
typename _Ap,
3361 typename _To = __value_type_or_identity_t<_Tp>>
3362 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
auto
3363 simd_cast(
const simd_mask<_ValuePreserving<_Up, _To>, _Ap>& __x)
3364 ->
decltype(static_simd_cast<_Tp>(__x))
3365 {
return static_simd_cast<_Tp>(__x); }
3370namespace __proposed {
3397template <
typename _Tp,
typename _Up,
typename _Ap>
3398 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
enable_if_t<
3399 conjunction_v<is_simd<_Tp>, is_same<typename _Tp::value_type, _Up>>, _Tp>
3400 resizing_simd_cast(
const simd<_Up, _Ap>& __x)
3402 if constexpr (is_same_v<typename _Tp::abi_type, _Ap>)
3404 else if (__builtin_is_constant_evaluated())
3405 return _Tp([&](
auto __i)
constexpr {
3406 return __i < simd_size_v<_Up, _Ap> ? __x[__i] : _Up();
3408 else if constexpr (simd_size_v<_Up, _Ap> == 1)
3414 else if constexpr (_Tp::size() == 1)
3416 else if constexpr (
sizeof(_Tp) ==
sizeof(__x)
3417 && !__is_fixed_size_abi_v<_Ap> && !__is_sve_abi<_Ap>())
3418 return {__private_init,
3419 __vector_bitcast<typename _Tp::value_type, _Tp::size()>(
3420 _Ap::_S_masked(__data(__x))._M_data)};
3424 __builtin_memcpy(&__data(__r), &__data(__x),
3426 *
std::min(_Tp::size(), simd_size_v<_Up, _Ap>));
3431template <
typename _Tp,
typename _Up,
typename _Ap>
3432 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
3433 enable_if_t<is_simd_mask_v<_Tp>, _Tp>
3434 resizing_simd_cast(
const simd_mask<_Up, _Ap>& __x)
3436 return {__private_init, _Tp::abi_type::_MaskImpl::template _S_convert<
3437 typename _Tp::simd_type::value_type>(__x)};
3443template <
typename _Tp,
int _Np>
3444 _GLIBCXX_SIMD_INTRINSIC fixed_size_simd<_Tp, _Np>
3445 to_fixed_size(
const fixed_size_simd<_Tp, _Np>& __x)
3448template <
typename _Tp,
int _Np>
3449 _GLIBCXX_SIMD_INTRINSIC fixed_size_simd_mask<_Tp, _Np>
3450 to_fixed_size(
const fixed_size_simd_mask<_Tp, _Np>& __x)
3453template <
typename _Tp,
typename _Ap>
3454 _GLIBCXX_SIMD_INTRINSIC fixed_size_simd<_Tp, simd_size_v<_Tp, _Ap>>
3455 to_fixed_size(
const simd<_Tp, _Ap>& __x)
3457 using _Rp = fixed_size_simd<_Tp, simd_size_v<_Tp, _Ap>>;
3458 return _Rp([&__x](
auto __i)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
return __x[__i]; });
3461template <
typename _Tp,
typename _Ap>
3462 _GLIBCXX_SIMD_INTRINSIC fixed_size_simd_mask<_Tp, simd_size_v<_Tp, _Ap>>
3463 to_fixed_size(
const simd_mask<_Tp, _Ap>& __x)
3465 return {__private_init,
3466 [&](
auto __i)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
return __x[__i]; }};
3470template <
typename _Tp,
int _Np>
3471 _GLIBCXX_SIMD_INTRINSIC
3472 enable_if_t<(_Np == native_simd<_Tp>::size()), native_simd<_Tp>>
3473 to_native(
const fixed_size_simd<_Tp, _Np>& __x)
3475 alignas(memory_alignment_v<native_simd<_Tp>>) _Tp __mem[_Np];
3476 __x.copy_to(__mem, vector_aligned);
3477 return {__mem, vector_aligned};
3480template <
typename _Tp,
int _Np>
3481 _GLIBCXX_SIMD_INTRINSIC
3482 enable_if_t<(_Np == native_simd_mask<_Tp>::size()), native_simd_mask<_Tp>>
3483 to_native(
const fixed_size_simd_mask<_Tp, _Np>& __x)
3485 return native_simd_mask<_Tp>(
3487 [&](
auto __i)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
return __x[__i]; });
3491template <
typename _Tp,
int _Np>
3492 _GLIBCXX_SIMD_INTRINSIC
enable_if_t<(_Np == simd<_Tp>::size()), simd<_Tp>>
3493 to_compatible(
const simd<_Tp, simd_abi::fixed_size<_Np>>& __x)
3495 alignas(memory_alignment_v<simd<_Tp>>) _Tp __mem[_Np];
3496 __x.copy_to(__mem, vector_aligned);
3497 return {__mem, vector_aligned};
3500template <
typename _Tp,
int _Np>
3501 _GLIBCXX_SIMD_INTRINSIC
3502 enable_if_t<(_Np == simd_mask<_Tp>::size()), simd_mask<_Tp>>
3503 to_compatible(
const simd_mask<_Tp, simd_abi::fixed_size<_Np>>& __x)
3505 return simd_mask<_Tp>(
3507 [&](
auto __i)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
return __x[__i]; });
3514template <
typename _M,
typename _Tp>
3515 class const_where_expression
3518 static_assert(is_same_v<_V, __remove_cvref_t<_Tp>>);
3520 struct _Wrapper {
using value_type = _V; };
3523 using _Impl =
typename _V::_Impl;
3526 typename conditional_t<is_arithmetic_v<_V>, _Wrapper, _V>::value_type;
3528 _GLIBCXX_SIMD_INTRINSIC
friend const _M&
3529 __get_mask(
const const_where_expression& __x)
3530 {
return __x._M_k; }
3532 _GLIBCXX_SIMD_INTRINSIC
friend const _Tp&
3533 __get_lvalue(
const const_where_expression& __x)
3534 {
return __x._M_value; }
3540 const_where_expression(
const const_where_expression&) =
delete;
3542 const_where_expression& operator=(
const const_where_expression&) =
delete;
3544 _GLIBCXX_SIMD_INTRINSIC
constexpr
3545 const_where_expression(
const _M& __kk,
const _Tp& dd)
3546 : _M_k(__kk), _M_value(const_cast<_Tp&>(dd)) {}
3548 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR _V
3551 return {__private_init,
3552 _Impl::template _S_masked_unary<negate>(__data(_M_k),
3556 template <
typename _Up,
typename _Flags>
3557 [[nodiscard]] _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR _V
3558 copy_from(
const _LoadStorePtr<_Up, value_type>* __mem, _IsSimdFlagType<_Flags>)
const&&
3560 return {__private_init,
3561 _Impl::_S_masked_load(__data(_M_value), __data(_M_k),
3562 _Flags::template _S_apply<_V>(__mem))};
3565 template <
typename _Up,
typename _Flags>
3566 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
void
3567 copy_to(_LoadStorePtr<_Up, value_type>* __mem, _IsSimdFlagType<_Flags>)
const&&
3569 _Impl::_S_masked_store(__data(_M_value),
3570 _Flags::template _S_apply<_V>(__mem),
3576template <
typename _Tp>
3577 class const_where_expression<bool, _Tp>
3582 static_assert(is_same_v<_V, __remove_cvref_t<_Tp>>);
3584 struct _Wrapper {
using value_type = _V; };
3588 =
typename conditional_t<is_arithmetic_v<_V>, _Wrapper, _V>::value_type;
3590 _GLIBCXX_SIMD_INTRINSIC
friend const _M&
3591 __get_mask(
const const_where_expression& __x)
3592 {
return __x._M_k; }
3594 _GLIBCXX_SIMD_INTRINSIC
friend const _Tp&
3595 __get_lvalue(
const const_where_expression& __x)
3596 {
return __x._M_value; }
3602 const_where_expression(
const const_where_expression&) =
delete;
3603 const_where_expression& operator=(
const const_where_expression&) =
delete;
3605 _GLIBCXX_SIMD_INTRINSIC
constexpr
3606 const_where_expression(
const bool __kk,
const _Tp& dd)
3607 : _M_k(__kk), _M_value(const_cast<_Tp&>(dd)) {}
3609 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR _V
3611 {
return _M_k ? -_M_value : _M_value; }
3613 template <
typename _Up,
typename _Flags>
3614 [[nodiscard]] _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR _V
3615 copy_from(
const _LoadStorePtr<_Up, value_type>* __mem, _IsSimdFlagType<_Flags>)
const&&
3616 {
return _M_k ?
static_cast<_V
>(__mem[0]) : _M_value; }
3618 template <
typename _Up,
typename _Flags>
3619 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
void
3620 copy_to(_LoadStorePtr<_Up, value_type>* __mem, _IsSimdFlagType<_Flags>)
const&&
3623 __mem[0] = _M_value;
3628template <
typename _M,
typename _Tp>
3629 class where_expression :
public const_where_expression<_M, _Tp>
3631 using _Impl =
typename const_where_expression<_M, _Tp>::_Impl;
3633 static_assert(!is_const<_Tp>::value,
3634 "where_expression may only be instantiated with __a non-const "
3637 using typename const_where_expression<_M, _Tp>::value_type;
3638 using const_where_expression<_M, _Tp>::_M_k;
3639 using const_where_expression<_M, _Tp>::_M_value;
3642 is_same<typename _M::abi_type, typename _Tp::abi_type>::value,
"");
3643 static_assert(_M::size() == _Tp::size(),
"");
3645 _GLIBCXX_SIMD_INTRINSIC
friend constexpr _Tp&
3646 __get_lvalue(where_expression& __x)
3647 {
return __x._M_value; }
3650 where_expression(
const where_expression&) =
delete;
3651 where_expression& operator=(
const where_expression&) =
delete;
3653 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
3654 where_expression(
const _M& __kk, _Tp& dd)
3655 : const_where_expression<_M, _Tp>(__kk, dd) {}
3657 template <
typename _Up>
3658 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
void
3659 operator=(_Up&& __x) &&
3661 _Impl::_S_masked_assign(__data(_M_k), __data(_M_value),
3662 __to_value_type_or_member_type<_Tp>(
3663 static_cast<_Up&&
>(__x)));
3666#define _GLIBCXX_SIMD_OP_(__op, __name) \
3667 template <typename _Up> \
3668 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR void \
3669 operator __op##=(_Up&& __x)&& \
3671 _Impl::template _S_masked_cassign( \
3672 __data(_M_k), __data(_M_value), \
3673 __to_value_type_or_member_type<_Tp>(static_cast<_Up&&>(__x)), \
3674 [](auto __impl, auto __lhs, auto __rhs) \
3675 constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA \
3676 { return __impl.__name(__lhs, __rhs); }); \
3679 _GLIBCXX_SIMD_OP_(+, _S_plus);
3680 _GLIBCXX_SIMD_OP_(-, _S_minus);
3681 _GLIBCXX_SIMD_OP_(*, _S_multiplies);
3682 _GLIBCXX_SIMD_OP_(/, _S_divides);
3683 _GLIBCXX_SIMD_OP_(%, _S_modulus);
3684 _GLIBCXX_SIMD_OP_(&, _S_bit_and);
3685 _GLIBCXX_SIMD_OP_(|, _S_bit_or);
3686 _GLIBCXX_SIMD_OP_(^, _S_bit_xor);
3687 _GLIBCXX_SIMD_OP_(<<, _S_shift_left);
3688 _GLIBCXX_SIMD_OP_(>>, _S_shift_right);
3689#undef _GLIBCXX_SIMD_OP_
3691 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
void
3695 = _Impl::template _S_masked_unary<__increment>(__data(_M_k), __data(_M_value));
3698 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
void
3702 = _Impl::template _S_masked_unary<__increment>(__data(_M_k), __data(_M_value));
3705 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
void
3709 = _Impl::template _S_masked_unary<__decrement>(__data(_M_k), __data(_M_value));
3712 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
void
3716 = _Impl::template _S_masked_unary<__decrement>(__data(_M_k), __data(_M_value));
3720 template <
typename _Up,
typename _Flags>
3721 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
void
3722 copy_from(
const _LoadStorePtr<_Up, value_type>* __mem, _IsSimdFlagType<_Flags>) &&
3724 __data(_M_value) = _Impl::_S_masked_load(__data(_M_value), __data(_M_k),
3725 _Flags::template _S_apply<_Tp>(__mem));
3730template <
typename _Tp>
3731 class where_expression<bool, _Tp>
3732 :
public const_where_expression<bool, _Tp>
3735 using typename const_where_expression<_M, _Tp>::value_type;
3736 using const_where_expression<_M, _Tp>::_M_k;
3737 using const_where_expression<_M, _Tp>::_M_value;
3740 where_expression(
const where_expression&) =
delete;
3741 where_expression& operator=(
const where_expression&) =
delete;
3743 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
3744 where_expression(
const _M& __kk, _Tp& dd)
3745 : const_where_expression<_M, _Tp>(__kk, dd) {}
3747#define _GLIBCXX_SIMD_OP_(__op) \
3748 template <typename _Up> \
3749 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR void \
3750 operator __op(_Up&& __x)&& \
3751 { if (_M_k) _M_value __op static_cast<_Up&&>(__x); }
3753 _GLIBCXX_SIMD_OP_(=)
3754 _GLIBCXX_SIMD_OP_(+=)
3755 _GLIBCXX_SIMD_OP_(-=)
3756 _GLIBCXX_SIMD_OP_(*=)
3757 _GLIBCXX_SIMD_OP_(/=)
3758 _GLIBCXX_SIMD_OP_(%=)
3759 _GLIBCXX_SIMD_OP_(&=)
3760 _GLIBCXX_SIMD_OP_(|=)
3761 _GLIBCXX_SIMD_OP_(^=)
3762 _GLIBCXX_SIMD_OP_(<<=)
3763 _GLIBCXX_SIMD_OP_(>>=)
3764 #undef _GLIBCXX_SIMD_OP_
3766 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
void
3768 {
if (_M_k) ++_M_value; }
3770 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
void
3772 {
if (_M_k) ++_M_value; }
3774 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
void
3776 {
if (_M_k) --_M_value; }
3778 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
void
3780 {
if (_M_k) --_M_value; }
3783 template <
typename _Up,
typename _Flags>
3784 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
void
3785 copy_from(
const _LoadStorePtr<_Up, value_type>* __mem, _IsSimdFlagType<_Flags>) &&
3786 {
if (_M_k) _M_value = __mem[0]; }
3790template <
typename _Tp,
typename _Ap>
3791 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
3792 where_expression<simd_mask<_Tp, _Ap>, simd<_Tp, _Ap>>
3793 where(
const typename simd<_Tp, _Ap>::mask_type& __k, simd<_Tp, _Ap>& __value)
3794 {
return {__k, __value}; }
3796template <
typename _Tp,
typename _Ap>
3797 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
3798 const_where_expression<simd_mask<_Tp, _Ap>, simd<_Tp, _Ap>>
3799 where(
const typename simd<_Tp, _Ap>::mask_type& __k,
const simd<_Tp, _Ap>& __value)
3800 {
return {__k, __value}; }
3802template <
typename _Tp,
typename _Ap>
3803 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
3804 where_expression<simd_mask<_Tp, _Ap>, simd_mask<_Tp, _Ap>>
3805 where(
const remove_const_t<simd_mask<_Tp, _Ap>>& __k, simd_mask<_Tp, _Ap>& __value)
3806 {
return {__k, __value}; }
3808template <
typename _Tp,
typename _Ap>
3809 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
3810 const_where_expression<simd_mask<_Tp, _Ap>, simd_mask<_Tp, _Ap>>
3811 where(
const remove_const_t<simd_mask<_Tp, _Ap>>& __k,
const simd_mask<_Tp, _Ap>& __value)
3812 {
return {__k, __value}; }
3814template <
typename _Tp>
3815 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR where_expression<bool, _Tp>
3816 where(_ExactBool __k, _Tp& __value)
3817 {
return {__k, __value}; }
3819template <
typename _Tp>
3820 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR const_where_expression<bool, _Tp>
3821 where(_ExactBool __k,
const _Tp& __value)
3822 {
return {__k, __value}; }
3824template <
typename _Tp,
typename _Ap>
3825 _GLIBCXX_SIMD_CONSTEXPR
void
3826 where(
bool __k, simd<_Tp, _Ap>& __value) =
delete;
3828template <
typename _Tp,
typename _Ap>
3829 _GLIBCXX_SIMD_CONSTEXPR
void
3830 where(
bool __k,
const simd<_Tp, _Ap>& __value) =
delete;
3833namespace __proposed {
3834template <
size_t _Np>
3837 const bitset<_Np> __bits;
3840 where_range(bitset<_Np> __b) : __bits(__b) {}
3847 _GLIBCXX_SIMD_INTRINSIC
void
3849 { __bit = __builtin_ctzl(__mask); }
3851 _GLIBCXX_SIMD_INTRINSIC
void
3855 __mask &= (__mask - 1);
3860 iterator(
decltype(__mask) __m) : __mask(__m) { __next_bit(); }
3861 iterator(
const iterator&) =
default;
3862 iterator(iterator&&) =
default;
3864 _GLIBCXX_SIMD_ALWAYS_INLINE
size_t
3868 _GLIBCXX_SIMD_ALWAYS_INLINE
size_t
3872 _GLIBCXX_SIMD_ALWAYS_INLINE iterator&
3880 _GLIBCXX_SIMD_ALWAYS_INLINE iterator
3883 iterator __tmp = *
this;
3889 _GLIBCXX_SIMD_ALWAYS_INLINE
bool
3890 operator==(
const iterator& __rhs)
const
3891 {
return __mask == __rhs.__mask; }
3893 _GLIBCXX_SIMD_ALWAYS_INLINE
bool
3894 operator!=(
const iterator& __rhs)
const
3895 {
return __mask != __rhs.__mask; }
3900 {
return __bits.to_ullong(); }
3907template <
typename _Tp,
typename _Ap>
3908 where_range<simd_size_v<_Tp, _Ap>>
3909 where(
const simd_mask<_Tp, _Ap>& __k)
3910 {
return __k.__to_bitset(); }
3916template <
typename _Tp,
typename _Abi,
typename _BinaryOperation = plus<>>
3917 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR _Tp
3918 reduce(
const simd<_Tp, _Abi>& __v, _BinaryOperation __binary_op = _BinaryOperation())
3919 {
return _Abi::_SimdImpl::_S_reduce(__v, __binary_op); }
3921template <
typename _M,
typename _V,
typename _BinaryOperation = plus<>>
3922 _GLIBCXX_SIMD_INTRINSIC
typename _V::value_type
3923 reduce(
const const_where_expression<_M, _V>& __x,
3924 typename _V::value_type __identity_element, _BinaryOperation __binary_op)
3926 if (__builtin_expect(none_of(__get_mask(__x)),
false))
3927 return __identity_element;
3929 _V __tmp = __identity_element;
3930 _V::_Impl::_S_masked_assign(__data(__get_mask(__x)), __data(__tmp),
3931 __data(__get_lvalue(__x)));
3932 return reduce(__tmp, __binary_op);
3935template <
typename _M,
typename _V>
3936 _GLIBCXX_SIMD_INTRINSIC
typename _V::value_type
3937 reduce(
const const_where_expression<_M, _V>& __x, plus<> __binary_op = {})
3938 {
return reduce(__x, 0, __binary_op); }
3940template <
typename _M,
typename _V>
3941 _GLIBCXX_SIMD_INTRINSIC
typename _V::value_type
3942 reduce(
const const_where_expression<_M, _V>& __x, multiplies<> __binary_op)
3943 {
return reduce(__x, 1, __binary_op); }
3945template <
typename _M,
typename _V>
3946 _GLIBCXX_SIMD_INTRINSIC
typename _V::value_type
3947 reduce(
const const_where_expression<_M, _V>& __x, bit_and<> __binary_op)
3948 {
return reduce(__x, ~
typename _V::value_type(), __binary_op); }
3950template <
typename _M,
typename _V>
3951 _GLIBCXX_SIMD_INTRINSIC
typename _V::value_type
3952 reduce(
const const_where_expression<_M, _V>& __x, bit_or<> __binary_op)
3953 {
return reduce(__x, 0, __binary_op); }
3955template <
typename _M,
typename _V>
3956 _GLIBCXX_SIMD_INTRINSIC
typename _V::value_type
3957 reduce(
const const_where_expression<_M, _V>& __x, bit_xor<> __binary_op)
3958 {
return reduce(__x, 0, __binary_op); }
3960template <
typename _Tp,
typename _Abi>
3961 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR _Tp
3962 hmin(
const simd<_Tp, _Abi>& __v)
noexcept
3963 {
return _Abi::_SimdImpl::_S_reduce(__v, __detail::_Minimum()); }
3965template <
typename _Tp,
typename _Abi>
3966 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR _Tp
3967 hmax(
const simd<_Tp, _Abi>& __v)
noexcept
3968 {
return _Abi::_SimdImpl::_S_reduce(__v, __detail::_Maximum()); }
3970template <
typename _M,
typename _V>
3971 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
3972 typename _V::value_type
3973 hmin(
const const_where_expression<_M, _V>& __x)
noexcept
3975 using _Tp =
typename _V::value_type;
3976 constexpr _Tp __id_elem =
3977#ifdef __FINITE_MATH_ONLY__
3978 __finite_max_v<_Tp>;
3980 __value_or<__infinity, _Tp>(__finite_max_v<_Tp>);
3982 _V __tmp = __id_elem;
3983 _V::_Impl::_S_masked_assign(__data(__get_mask(__x)), __data(__tmp),
3984 __data(__get_lvalue(__x)));
3985 return _V::abi_type::_SimdImpl::_S_reduce(__tmp, __detail::_Minimum());
3988template <
typename _M,
typename _V>
3989 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
3990 typename _V::value_type
3991 hmax(
const const_where_expression<_M, _V>& __x)
noexcept
3993 using _Tp =
typename _V::value_type;
3994 constexpr _Tp __id_elem =
3995#ifdef __FINITE_MATH_ONLY__
3996 __finite_min_v<_Tp>;
3999 if constexpr (__value_exists_v<__infinity, _Tp>)
4000 return -__infinity_v<_Tp>;
4002 return __finite_min_v<_Tp>;
4005 _V __tmp = __id_elem;
4006 _V::_Impl::_S_masked_assign(__data(__get_mask(__x)), __data(__tmp),
4007 __data(__get_lvalue(__x)));
4008 return _V::abi_type::_SimdImpl::_S_reduce(__tmp, __detail::_Maximum());
4013template <
typename _Tp,
typename _Ap>
4014 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR simd<_Tp, _Ap>
4015 min(
const simd<_Tp, _Ap>& __a,
const simd<_Tp, _Ap>& __b)
4016 {
return {__private_init, _Ap::_SimdImpl::_S_min(__data(__a), __data(__b))}; }
4018template <
typename _Tp,
typename _Ap>
4019 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR simd<_Tp, _Ap>
4020 max(
const simd<_Tp, _Ap>& __a,
const simd<_Tp, _Ap>& __b)
4021 {
return {__private_init, _Ap::_SimdImpl::_S_max(__data(__a), __data(__b))}; }
4023template <
typename _Tp,
typename _Ap>
4024 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
4025 pair<simd<_Tp, _Ap>, simd<_Tp, _Ap>>
4026 minmax(
const simd<_Tp, _Ap>& __a,
const simd<_Tp, _Ap>& __b)
4028 const auto pair_of_members
4029 = _Ap::_SimdImpl::_S_minmax(__data(__a), __data(__b));
4030 return {simd<_Tp, _Ap>(__private_init, pair_of_members.first),
4031 simd<_Tp, _Ap>(__private_init, pair_of_members.second)};
4034template <
typename _Tp,
typename _Ap>
4035 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR simd<_Tp, _Ap>
4036 clamp(
const simd<_Tp, _Ap>& __v,
const simd<_Tp, _Ap>& __lo,
const simd<_Tp, _Ap>& __hi)
4038 using _Impl =
typename _Ap::_SimdImpl;
4039 return {__private_init,
4040 _Impl::_S_min(__data(__hi),
4041 _Impl::_S_max(__data(__lo), __data(__v)))};
4046template <
size_t... _Sizes,
typename _Tp,
typename _Ap,
4047 typename =
enable_if_t<((_Sizes + ...) == simd<_Tp, _Ap>::size())>>
4048 inline tuple<simd<_Tp, simd_abi::deduce_t<_Tp, _Sizes>>...>
4049 split(
const simd<_Tp, _Ap>&);
4052template <
int _Index,
int _Total,
int _Combine = 1,
typename _Tp,
size_t _Np>
4053 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_CONST
constexpr
4054 conditional_t<_Np == _Total and _Combine == 1, _Tp, _SimdWrapper<_Tp, _Np / _Total * _Combine>>
4055 __extract_part(
const _SimdWrapper<_Tp, _Np> __x);
4057template <
int _Index,
int _Parts,
int _Combine = 1,
typename _Tp,
typename _A0,
typename... _As>
4058 _GLIBCXX_SIMD_INTRINSIC
constexpr auto
4059 __extract_part(
const _SimdTuple<_Tp, _A0, _As...>& __x);
4063template <
size_t _V0,
size_t... _Values>
4066 template <
size_t _I>
4067 static constexpr size_t
4068 _S_at(_SizeConstant<_I> = {})
4070 if constexpr (_I == 0)
4073 return _SizeList<_Values...>::template _S_at<_I - 1>();
4076 template <
size_t _I>
4077 static constexpr auto
4078 _S_before(_SizeConstant<_I> = {})
4080 if constexpr (_I == 0)
4081 return _SizeConstant<0>();
4083 return _SizeConstant<
4084 _V0 + _SizeList<_Values...>::template _S_before<_I - 1>()>();
4087 template <
size_t _Np>
4088 static constexpr auto
4089 _S_pop_front(_SizeConstant<_Np> = {})
4091 if constexpr (_Np == 0)
4094 return _SizeList<_Values...>::template _S_pop_front<_Np - 1>();
4100template <
typename _Tp,
size_t _Np>
4101 _GLIBCXX_SIMD_INTRINSIC _SimdWrapper<_Tp, _Np / 2>
4102 __extract_center(_SimdWrapper<_Tp, _Np> __x)
4104 static_assert(_Np >= 4);
4105 static_assert(_Np % 4 == 0);
4106#if _GLIBCXX_SIMD_X86INTRIN
4107 if constexpr (__have_avx512f &&
sizeof(_Tp) * _Np == 64)
4109 const auto __intrin = __to_intrin(__x);
4110 if constexpr (is_integral_v<_Tp>)
4111 return __vector_bitcast<_Tp>(_mm512_castsi512_si256(
4112 _mm512_shuffle_i32x4(__intrin, __intrin,
4113 1 + 2 * 0x4 + 2 * 0x10 + 3 * 0x40)));
4114 else if constexpr (
sizeof(_Tp) == 4)
4115 return __vector_bitcast<_Tp>(_mm512_castps512_ps256(
4116 _mm512_shuffle_f32x4(__intrin, __intrin,
4117 1 + 2 * 0x4 + 2 * 0x10 + 3 * 0x40)));
4118 else if constexpr (
sizeof(_Tp) == 8)
4119 return __vector_bitcast<_Tp>(_mm512_castpd512_pd256(
4120 _mm512_shuffle_f64x2(__intrin, __intrin,
4121 1 + 2 * 0x4 + 2 * 0x10 + 3 * 0x40)));
4123 __assert_unreachable<_Tp>();
4125 else if constexpr (
sizeof(_Tp) * _Np == 32 && is_floating_point_v<_Tp>)
4126 return __vector_bitcast<_Tp>(
4127 _mm_shuffle_pd(__lo128(__vector_bitcast<double>(__x)),
4128 __hi128(__vector_bitcast<double>(__x)), 1));
4129 else if constexpr (
sizeof(__x) == 32 &&
sizeof(_Tp) * _Np <= 32)
4130 return __vector_bitcast<_Tp>(
4131 _mm_alignr_epi8(__hi128(__vector_bitcast<_LLong>(__x)),
4132 __lo128(__vector_bitcast<_LLong>(__x)),
4133 sizeof(_Tp) * _Np / 4));
4137 __vector_type_t<_Tp, _Np / 2> __r;
4138 __builtin_memcpy(&__r,
4139 reinterpret_cast<const char*
>(&__x)
4140 +
sizeof(_Tp) * _Np / 4,
4141 sizeof(_Tp) * _Np / 2);
4146template <
typename _Tp,
typename _A0,
typename... _As>
4147 _GLIBCXX_SIMD_INTRINSIC
4148 _SimdWrapper<_Tp, _SimdTuple<_Tp, _A0, _As...>::_S_size() / 2>
4149 __extract_center(
const _SimdTuple<_Tp, _A0, _As...>& __x)
4151 if constexpr (
sizeof...(_As) == 0)
4152 return __extract_center(__x.first);
4154 return __extract_part<1, 4, 2>(__x);
4159template <
size_t... _Sizes,
typename _Tp,
typename... _As>
4161 __split_wrapper(_SizeList<_Sizes...>,
const _SimdTuple<_Tp, _As...>& __x)
4163 return split<_Sizes...>(
4164 fixed_size_simd<_Tp, _SimdTuple<_Tp, _As...>::_S_size()>(__private_init,
4171template <
typename _V,
typename _Ap,
4172 size_t _Parts = simd_size_v<typename _V::value_type, _Ap> / _V::size()>
4173 enable_if_t<simd_size_v<typename _V::value_type, _Ap> == _Parts * _V::size()
4174 && is_simd_v<_V>, array<_V, _Parts>>
4175 split(
const simd<typename _V::value_type, _Ap>& __x)
4177 using _Tp =
typename _V::value_type;
4179 auto __gen_fallback = [&]()
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
4180 return __generate_from_n_evaluations<_Parts, array<_V, _Parts>>(
4181 [&](
auto __i)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
4182 return _V([&](
auto __j)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA
4183 {
return __x[__i * _V::size() + __j]; });
4187 if constexpr (_Parts == 1)
4189 return {simd_cast<_V>(__x)};
4191 else if (__x._M_is_constprop())
4193 return __gen_fallback();
4195#if _GLIBCXX_SIMD_HAVE_SVE
4196 else if constexpr(__is_sve_abi<_Ap>)
4198 return __gen_fallback();
4202 __is_fixed_size_abi_v<_Ap>
4203 && (is_same_v<typename _V::abi_type, simd_abi::scalar>
4204 || (__is_fixed_size_abi_v<typename _V::abi_type>
4205 &&
sizeof(_V) ==
sizeof(_Tp) * _V::size()
4209#ifdef _GLIBCXX_SIMD_USE_ALIASING_LOADS
4210 const __may_alias<_Tp>*
const __element_ptr
4211 =
reinterpret_cast<const __may_alias<_Tp>*
>(&__data(__x));
4212 return __generate_from_n_evaluations<_Parts, array<_V, _Parts>>(
4213 [&](
auto __i)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA
4214 {
return _V(__element_ptr + __i * _V::size(), vector_aligned); });
4216 const auto& __xx = __data(__x);
4217 return __generate_from_n_evaluations<_Parts, array<_V, _Parts>>(
4218 [&](
auto __i)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
4219 [[maybe_unused]]
constexpr size_t __offset
4220 =
decltype(__i)::value * _V::size();
4221 return _V([&](
auto __j)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
4222 constexpr _SizeConstant<__j + __offset> __k;
4228 else if constexpr (is_same_v<typename _V::abi_type, simd_abi::scalar>)
4231 return __generate_from_n_evaluations<_Parts, array<_V, _Parts>>(
4232 [&](
auto __i)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
return __x[__i]; });
4236 return __generate_from_n_evaluations<_Parts, array<_V, _Parts>>(
4237 [&](
auto __i)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
4238 if constexpr (__is_fixed_size_abi_v<typename _V::abi_type>)
4239 return _V([&](
auto __j)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
4240 return __x[__i * _V::size() + __j];
4243 return _V(__private_init,
4244 __extract_part<
decltype(__i)::value, _Parts>(__data(__x)));
4251template <
typename _V,
typename _Ap,
4252 size_t _Parts = simd_size_v<typename _V::simd_type::value_type, _Ap> / _V::size()>
4253 enable_if_t<is_simd_mask_v<_V> && simd_size_v<
typename
4254 _V::simd_type::value_type, _Ap> == _Parts * _V::size(), array<_V, _Parts>>
4255 split(
const simd_mask<typename _V::simd_type::value_type, _Ap>& __x)
4257 if constexpr (is_same_v<_Ap, typename _V::abi_type>)
4259 else if constexpr (_Parts == 1)
4260 return {__proposed::static_simd_cast<_V>(__x)};
4261 else if constexpr (_Parts == 2 && __is_sse_abi<typename _V::abi_type>()
4262 && __is_avx_abi<_Ap>())
4263 return {_V(__private_init, __lo128(__data(__x))),
4264 _V(__private_init, __hi128(__data(__x)))};
4265 else if constexpr (_V::size() <= __CHAR_BIT__ *
sizeof(_ULLong))
4267 const bitset __bits = __x.__to_bitset();
4268 return __generate_from_n_evaluations<_Parts, array<_V, _Parts>>(
4269 [&](
auto __i)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
4270 constexpr size_t __offset = __i * _V::size();
4271 return _V(__bitset_init, (__bits >> __offset).to_ullong());
4276 return __generate_from_n_evaluations<_Parts, array<_V, _Parts>>(
4277 [&](
auto __i)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
4278 constexpr size_t __offset = __i * _V::size();
4279 return _V(__private_init,
4280 [&](
auto __j)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
4281 return __x[__j + __offset];
4289template <
size_t... _Sizes,
typename _Tp,
typename _Ap,
typename>
4290 _GLIBCXX_SIMD_ALWAYS_INLINE
4291 tuple<simd<_Tp, simd_abi::deduce_t<_Tp, _Sizes>>...>
4292 split(
const simd<_Tp, _Ap>& __x)
4294 using _SL = _SizeList<_Sizes...>;
4295 using _Tuple = tuple<__deduced_simd<_Tp, _Sizes>...>;
4296 constexpr size_t _Np = simd_size_v<_Tp, _Ap>;
4297 constexpr size_t _N0 = _SL::template _S_at<0>();
4298 using _V = __deduced_simd<_Tp, _N0>;
4300 auto __gen_fallback = [&]()
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA
4302 return __generate_from_n_evaluations<
sizeof...(_Sizes), _Tuple>(
4303 [&](
auto __i)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
4304 using _Vi = __deduced_simd<_Tp, _SL::_S_at(__i)>;
4305 constexpr size_t __offset = _SL::_S_before(__i);
4306 return _Vi([&](
auto __j)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
4307 return __x[__offset + __j];
4312 if (__x._M_is_constprop())
4314#if _GLIBCXX_SIMD_HAVE_SVE
4315 else if constexpr (__have_sve)
4318 else if constexpr (_Np == _N0)
4320 static_assert(
sizeof...(_Sizes) == 1);
4321 return {simd_cast<_V>(__x)};
4324 (__is_fixed_size_abi_v<
4325 _Ap> && __fixed_size_storage_t<_Tp, _Np>::_S_first_size == _N0)
4328 !__is_fixed_size_abi_v<typename _V::abi_type>,
4329 "How can <_Tp, _Np> be __a single _SimdTuple entry but __a "
4335 __split_wrapper(_SL::template _S_pop_front<1>(),
4336 __data(__x).second));
4338 else if constexpr ((!__is_fixed_size_abi_v<simd_abi::deduce_t<_Tp, _Sizes>> && ...))
4340 constexpr array<size_t,
sizeof...(_Sizes)> __size = {_Sizes...};
4341 return __generate_from_n_evaluations<
sizeof...(_Sizes), _Tuple>(
4342 [&](
auto __i)
constexpr {
4343 constexpr size_t __offset = [&]() {
4345 for (
unsigned __j = 0; __j < __i; ++__j)
4349 return __deduced_simd<_Tp, __size[__i]>(
4351 __extract_part<__offset, _Np, __size[__i]>(__data(__x)));
4354#ifdef _GLIBCXX_SIMD_USE_ALIASING_LOADS
4355 const __may_alias<_Tp>*
const __element_ptr
4356 =
reinterpret_cast<const __may_alias<_Tp>*
>(&__x);
4357 return __generate_from_n_evaluations<
sizeof...(_Sizes), _Tuple>(
4358 [&](
auto __i)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
4359 using _Vi = __deduced_simd<_Tp, _SL::_S_at(__i)>;
4360 constexpr size_t __offset = _SL::_S_before(__i);
4361 constexpr size_t __base_align =
alignof(simd<_Tp, _Ap>);
4362 constexpr size_t __a
4363 = __base_align - ((__offset *
sizeof(_Tp)) % __base_align);
4364 constexpr size_t __b = ((__a - 1) & __a) ^ __a;
4365 constexpr size_t __alignment = __b == 0 ? __a : __b;
4366 return _Vi(__element_ptr + __offset, overaligned<__alignment>);
4369 return __generate_from_n_evaluations<
sizeof...(_Sizes), _Tuple>(
4370 [&](
auto __i)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
4371 using _Vi = __deduced_simd<_Tp, _SL::_S_at(__i)>;
4372 const auto& __xx = __data(__x);
4373 using _Offset =
decltype(_SL::_S_before(__i));
4374 return _Vi([&](
auto __j)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
4375 constexpr _SizeConstant<_Offset::value + __j> __k;
4385template <
size_t _I,
typename _Tp,
typename _Ap,
typename... _As>
4386 _GLIBCXX_SIMD_INTRINSIC
constexpr _Tp
4387 __subscript_in_pack(
const simd<_Tp, _Ap>& __x,
const simd<_Tp, _As>&... __xs)
4389 if constexpr (_I < simd_size_v<_Tp, _Ap>)
4392 return __subscript_in_pack<_I - simd_size_v<_Tp, _Ap>>(__xs...);
4397template <
typename _Tp,
typename _A0,
typename... _As>
4398 _GLIBCXX_SIMD_INTRINSIC
void
4399 __store_pack_of_simd(
char* __mem,
const simd<_Tp, _A0>& __x0,
const simd<_Tp, _As>&... __xs)
4401 constexpr size_t __n_bytes =
sizeof(_Tp) * simd_size_v<_Tp, _A0>;
4402 __builtin_memcpy(__mem, &__data(__x0), __n_bytes);
4403 if constexpr (
sizeof...(__xs) > 0)
4404 __store_pack_of_simd(__mem + __n_bytes, __xs...);
4409template <
typename _Tp,
typename... _As,
typename = __detail::__odr_helper>
4410 inline _GLIBCXX_SIMD_CONSTEXPR
4411 simd<_Tp, simd_abi::deduce_t<_Tp, (simd_size_v<_Tp, _As> + ...)>>
4412 concat(
const simd<_Tp, _As>&... __xs)
4414 constexpr int _Np = (simd_size_v<_Tp, _As> + ...);
4415 using _Abi = simd_abi::deduce_t<_Tp, _Np>;
4416 using _Rp = simd<_Tp, _Abi>;
4417 using _RW =
typename _SimdTraits<_Tp, _Abi>::_SimdMember;
4418 if constexpr (
sizeof...(__xs) == 1)
4419 return simd_cast<_Rp>(__xs...);
4420 else if ((... && __xs._M_is_constprop()))
4421 return _Rp([&](
auto __i)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA
4422 {
return __subscript_in_pack<__i>(__xs...); });
4423 else if constexpr (__is_simd_wrapper_v<_RW> and
sizeof...(__xs) == 2)
4425 return {__private_init,
4428 constexpr int __sizes[2] = {int(simd_size_v<_Tp, _As>)...};
4429 constexpr int __vsizes[2]
4430 = {int(
sizeof(__as_vector(__xs)) /
sizeof(_Tp))...};
4431 constexpr int __padding0 = __vsizes[0] - __sizes[0];
4432 return __i >= _Np ? -1 : __i < __sizes[0] ? __i : __i + __padding0;
4435 else if constexpr (__is_simd_wrapper_v<_RW> and
sizeof...(__xs) == 3)
4436 return [](
const auto& __x0,
const auto& __x1,
const auto& __x2)
4437 _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
4438 return concat(concat(__x0, __x1), __x2);
4440 else if constexpr (__is_simd_wrapper_v<_RW> and
sizeof...(__xs) > 3)
4441 return [](
const auto& __x0,
const auto& __x1,
const auto&... __rest)
4442 _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
4443 return concat(concat(__x0, __x1), concat(__rest...));
4448 __store_pack_of_simd(
reinterpret_cast<char*
>(&__data(__r)), __xs...);
4455template <
typename _Tp,
typename _Abi,
size_t _Np>
4456 _GLIBCXX_SIMD_ALWAYS_INLINE
4457 _GLIBCXX_SIMD_CONSTEXPR __deduced_simd<_Tp, simd_size_v<_Tp, _Abi> * _Np>
4458 concat(
const array<simd<_Tp, _Abi>, _Np>& __x)
4460 return __call_with_subscripts<_Np>(
4461 __x, [](
const auto&... __xs) _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
4462 return concat(__xs...);
4470template <
typename _Up,
typename _Accessor = _Up,
4471 typename _ValueType =
typename _Up::value_type>
4472 class _SmartReference
4478 _GLIBCXX_SIMD_INTRINSIC
constexpr _ValueType
4479 _M_read() const noexcept
4481 if constexpr (is_arithmetic_v<_Up>)
4484 return _M_obj[_M_index];
4487 template <
typename _Tp>
4488 _GLIBCXX_SIMD_INTRINSIC
constexpr void
4489 _M_write(_Tp&& __x)
const
4490 { _Accessor::_S_set(_M_obj, _M_index,
static_cast<_Tp&&
>(__x)); }
4493 _GLIBCXX_SIMD_INTRINSIC
constexpr
4494 _SmartReference(_Up& __o,
int __i) noexcept
4495 : _M_index(__i), _M_obj(__o) {}
4497 using value_type = _ValueType;
4499 _GLIBCXX_SIMD_INTRINSIC
4500 _SmartReference(
const _SmartReference&) =
delete;
4502 _GLIBCXX_SIMD_INTRINSIC
constexpr
4503 operator value_type() const noexcept
4504 {
return _M_read(); }
4506 template <
typename _Tp,
typename = _ValuePreservingOrInt<__remove_cvref_t<_Tp>, value_type>>
4507 _GLIBCXX_SIMD_INTRINSIC
constexpr _SmartReference
4508 operator=(_Tp&& __x) &&
4510 _M_write(
static_cast<_Tp&&
>(__x));
4511 return {_M_obj, _M_index};
4514#define _GLIBCXX_SIMD_OP_(__op) \
4515 template <typename _Tp, \
4516 typename _TT = decltype(declval<value_type>() __op declval<_Tp>()), \
4517 typename = _ValuePreservingOrInt<__remove_cvref_t<_Tp>, _TT>, \
4518 typename = _ValuePreservingOrInt<_TT, value_type>> \
4519 _GLIBCXX_SIMD_INTRINSIC constexpr _SmartReference \
4520 operator __op##=(_Tp&& __x) && \
4522 const value_type& __lhs = _M_read(); \
4523 _M_write(__lhs __op __x); \
4524 return {_M_obj, _M_index}; \
4526 _GLIBCXX_SIMD_ALL_ARITHMETICS(_GLIBCXX_SIMD_OP_);
4527 _GLIBCXX_SIMD_ALL_SHIFTS(_GLIBCXX_SIMD_OP_);
4528 _GLIBCXX_SIMD_ALL_BINARY(_GLIBCXX_SIMD_OP_);
4529#undef _GLIBCXX_SIMD_OP_
4531 template <
typename _Tp = void,
4532 typename =
decltype(++declval<conditional_t<true, value_type, _Tp>&>())>
4533 _GLIBCXX_SIMD_INTRINSIC
constexpr _SmartReference
4536 value_type __x = _M_read();
4538 return {_M_obj, _M_index};
4541 template <
typename _Tp = void,
4542 typename =
decltype(declval<conditional_t<true, value_type, _Tp>&>()++)>
4543 _GLIBCXX_SIMD_INTRINSIC
constexpr value_type
4546 const value_type __r = _M_read();
4547 value_type __x = __r;
4552 template <
typename _Tp = void,
4553 typename =
decltype(--declval<conditional_t<true, value_type, _Tp>&>())>
4554 _GLIBCXX_SIMD_INTRINSIC
constexpr _SmartReference
4557 value_type __x = _M_read();
4559 return {_M_obj, _M_index};
4562 template <
typename _Tp = void,
4563 typename =
decltype(declval<conditional_t<true, value_type, _Tp>&>()--)>
4564 _GLIBCXX_SIMD_INTRINSIC
constexpr value_type
4567 const value_type __r = _M_read();
4568 value_type __x = __r;
4573 _GLIBCXX_SIMD_INTRINSIC
friend void
4574 swap(_SmartReference&& __a, _SmartReference&& __b)
noexcept(
4576 is_nothrow_constructible<value_type, _SmartReference&&>,
4577 is_nothrow_assignable<_SmartReference&&, value_type&&>>::value)
4579 value_type __tmp =
static_cast<_SmartReference&&
>(__a);
4580 static_cast<_SmartReference&&
>(__a) =
static_cast<value_type
>(__b);
4581 static_cast<_SmartReference&&
>(__b) =
std::move(__tmp);
4584 _GLIBCXX_SIMD_INTRINSIC
friend void
4585 swap(value_type& __a, _SmartReference&& __b)
noexcept(
4587 is_nothrow_constructible<value_type, value_type&&>,
4588 is_nothrow_assignable<value_type&, value_type&&>,
4589 is_nothrow_assignable<_SmartReference&&, value_type&&>>::value)
4592 __a =
static_cast<value_type
>(__b);
4593 static_cast<_SmartReference&&
>(__b) =
std::move(__tmp);
4596 _GLIBCXX_SIMD_INTRINSIC
friend void
4597 swap(_SmartReference&& __a, value_type& __b)
noexcept(
4599 is_nothrow_constructible<value_type, _SmartReference&&>,
4600 is_nothrow_assignable<value_type&, value_type&&>,
4601 is_nothrow_assignable<_SmartReference&&, value_type&&>>::value)
4603 value_type __tmp(__a);
4604 static_cast<_SmartReference&&
>(__a) =
std::move(__b);
4611template <
int _Bytes>
4612 struct __scalar_abi_wrapper
4614 template <
typename _Tp>
static constexpr size_t _S_full_size = 1;
4615 template <
typename _Tp>
static constexpr size_t _S_size = 1;
4616 template <
typename _Tp>
static constexpr size_t _S_is_partial =
false;
4618 template <
typename _Tp,
typename _Abi = simd_abi::scalar>
4619 static constexpr bool _S_is_valid_v
4620 = _Abi::template _IsValid<_Tp>::value &&
sizeof(_Tp) == _Bytes;
4625template <
typename _Tp>
4626 struct __decay_abi {
using type = _Tp; };
4628template <
int _Bytes>
4629 struct __decay_abi<__scalar_abi_wrapper<_Bytes>>
4630 {
using type = simd_abi::scalar; };
4638template <
template <
int>
class _Abi,
int _Bytes,
typename _Tp>
4639 struct __find_next_valid_abi
4641 static constexpr auto
4644 constexpr int _NextBytes = std::__bit_ceil((
unsigned)_Bytes) / 2;
4645 using _NextAbi = _Abi<_NextBytes>;
4646 if constexpr (_NextBytes <
sizeof(_Tp) * 2)
4647 return _Abi<_Bytes>();
4648 else if constexpr (_NextAbi::template _S_is_partial<_Tp> ==
false
4649 && _NextAbi::template _S_is_valid_v<_Tp>)
4652 return __find_next_valid_abi<_Abi, _NextBytes, _Tp>::_S_choose();
4655 using type =
decltype(_S_choose());
4658template <
int _Bytes,
typename _Tp>
4659 struct __find_next_valid_abi<__scalar_abi_wrapper, _Bytes, _Tp>
4660 {
using type = simd_abi::scalar; };
4663template <
template <
int>
class...>
4666 template <
typename,
int>
static constexpr bool _S_has_valid_abi =
false;
4667 template <
typename,
int>
using _FirstValidAbi = void;
4668 template <
typename,
int>
using _BestAbi = void;
4671template <
template <
int>
class _A0,
template <
int>
class... _Rest>
4672 struct _AbiList<_A0, _Rest...>
4674 template <
typename _Tp,
int _Np>
4675 static constexpr bool _S_has_valid_abi
4676 = _A0<
sizeof(_Tp) * _Np>::template _S_is_valid_v<
4677 _Tp> || _AbiList<_Rest...>::template _S_has_valid_abi<_Tp, _Np>;
4679 template <
typename _Tp,
int _Np>
4681 _A0<
sizeof(_Tp) * _Np>::template _S_is_valid_v<_Tp>,
4682 typename __decay_abi<_A0<
sizeof(_Tp) * _Np>>::type,
4683 typename _AbiList<_Rest...>::template _FirstValidAbi<_Tp, _Np>>;
4685 template <
typename _Tp,
int _Np>
4686 static constexpr auto
4687 _S_determine_best_abi()
4689 static_assert(_Np >= 1);
4690 constexpr int _Bytes =
sizeof(_Tp) * _Np;
4691 if constexpr (_Np == 1)
4692 return __make_dependent_t<_Tp, simd_abi::scalar>{};
4695 constexpr int __fullsize = _A0<_Bytes>::template _S_full_size<_Tp>;
4700 if constexpr (_A0<_Bytes>::template _S_is_valid_v<_Tp>
4701 && ((__is_sve_abi<_A0<_Bytes>>() && __have_sve
4702 && (_Np <= __sve_vectorized_size_bytes/
sizeof(_Tp)))
4703 || (__fullsize / 2 < _Np))
4705 return typename __decay_abi<_A0<_Bytes>>::type{};
4709 typename __find_next_valid_abi<_A0, _Bytes, _Tp>::type;
4710 if constexpr (_Bp::template _S_is_valid_v<
4711 _Tp> && _Bp::template _S_size<_Tp> <= _Np)
4715 typename _AbiList<_Rest...>::template _BestAbi<_Tp, _Np>{};
4720 template <
typename _Tp,
int _Np>
4721 using _BestAbi =
decltype(_S_determine_best_abi<_Tp, _Np>());
4729using _AllNativeAbis = _AbiList<
4730#if _GLIBCXX_SIMD_HAVE_SVE
4733 simd_abi::_VecBltnBtmsk, simd_abi::_VecBuiltin, __scalar_abi_wrapper>;
4735using _NoSveAllNativeAbis = _AbiList<simd_abi::_VecBltnBtmsk, simd_abi::_VecBuiltin,
4736 __scalar_abi_wrapper>;
4739template <
typename _Tp,
typename _Abi>
4740 struct _SimdTraits<_Tp, _Abi,
void_t<typename _Abi::template _IsValid<_Tp>>>
4741 : _Abi::template __traits<_Tp> {};
4745template <
typename _Tp,
size_t _Np>
4746 struct __deduce_impl<
4747 _Tp, _Np,
enable_if_t<_AllNativeAbis::template _S_has_valid_abi<_Tp, _Np>>>
4748 {
using type = _AllNativeAbis::_FirstValidAbi<_Tp, _Np>; };
4750template <
typename _Tp,
size_t _Np>
4751 struct __no_sve_deduce_impl<
4752 _Tp, _Np,
enable_if_t<_NoSveAllNativeAbis::template _S_has_valid_abi<_Tp, _Np>>>
4753 {
using type = _NoSveAllNativeAbis::_FirstValidAbi<_Tp, _Np>; };
4756template <
typename _Tp,
size_t _Np,
typename =
void>
4757 struct __deduce_fixed_size_fallback {};
4759template <
typename _Tp,
size_t _Np>
4760 struct __deduce_fixed_size_fallback<_Tp, _Np,
4761 enable_if_t<simd_abi::fixed_size<_Np>::template _S_is_valid_v<_Tp>>>
4762 {
using type = simd_abi::fixed_size<_Np>; };
4764template <
typename _Tp,
size_t _Np,
typename>
4765 struct __deduce_impl :
public __deduce_fixed_size_fallback<_Tp, _Np> {};
4767template <
typename _Tp,
size_t _Np,
typename>
4768 struct __no_sve_deduce_impl
4769 :
public __deduce_fixed_size_fallback<_Tp, _Np>
4777template <
typename _Tp,
typename _Abi>
4778 class simd_mask :
public _SimdTraits<_Tp, _Abi>::_MaskBase
4781 using _Traits = _SimdTraits<_Tp, _Abi>;
4782 using _MemberType =
typename _Traits::_MaskMember;
4788 using _Ip = __int_for_sizeof_t<_Tp>;
4789 static constexpr _Ip* _S_type_tag =
nullptr;
4791 friend typename _Traits::_MaskBase;
4792 friend class simd<_Tp, _Abi>;
4793 friend typename _Traits::_SimdImpl;
4796 using _Impl =
typename _Traits::_MaskImpl;
4801 using value_type = bool;
4802 using reference = _SmartReference<_MemberType, _Impl, value_type>;
4803 using simd_type = simd<_Tp, _Abi>;
4804 using abi_type = _Abi;
4807 static constexpr size_t size()
4808 {
return __size_or_zero_v<_Tp, _Abi>; }
4812 simd_mask() =
default;
4813 simd_mask(
const simd_mask&) =
default;
4814 simd_mask(simd_mask&&) =
default;
4815 simd_mask& operator=(
const simd_mask&) =
default;
4816 simd_mask& operator=(simd_mask&&) =
default;
4820 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
explicit
4821 simd_mask(
typename _Traits::_MaskCastType __init)
4822 : _M_data{__init} {}
4831 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
static simd_mask
4832 __from_bitset(bitset<size()> bs)
4833 {
return {__bitset_init, bs}; }
4835 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR bitset<size()>
4837 {
return _Impl::_S_to_bits(_M_data)._M_to_bitset(); }
4841 _GLIBCXX_SIMD_ALWAYS_INLINE
explicit _GLIBCXX_SIMD_CONSTEXPR
4842 simd_mask(value_type __x)
4843 : _M_data(_Impl::template _S_broadcast<_Ip>(__x)) {}
4847 #ifdef _GLIBCXX_SIMD_ENABLE_IMPLICIT_MASK_CAST
4849 template <
typename _Up,
typename _A2,
4850 typename = enable_if_t<simd_size_v<_Up, _A2> == size()>>
4851 _GLIBCXX_SIMD_ALWAYS_INLINE
explicit(
sizeof(_MemberType)
4852 !=
sizeof(
typename _SimdTraits<_Up, _A2>::_MaskMember))
4853 simd_mask(
const simd_mask<_Up, _A2>& __x)
4854 : simd_mask(__proposed::static_simd_cast<simd_mask>(__x)) {}
4857 template <
typename _Up,
typename =
enable_if_t<conjunction<
4858 is_same<abi_type, simd_abi::fixed_size<size()>>,
4859 is_same<_Up, _Up>>::value>>
4860 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
4861 simd_mask(
const simd_mask<_Up, simd_abi::fixed_size<size()>>& __x)
4862 : _M_data(_Impl::_S_from_bitmask(__data(__x), _S_type_tag)) {}
4867 template <
typename _Flags>
4868 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
4869 simd_mask(
const value_type* __mem, _IsSimdFlagType<_Flags>)
4870 : _M_data(_Impl::template _S_load<_Ip>(_Flags::template _S_apply<simd_mask>(__mem))) {}
4872 template <
typename _Flags>
4873 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
4874 simd_mask(
const value_type* __mem, simd_mask __k, _IsSimdFlagType<_Flags>)
4877 _M_data = _Impl::_S_masked_load(_M_data, __k._M_data,
4878 _Flags::template _S_apply<simd_mask>(__mem));
4883 template <
typename _Flags>
4884 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
void
4885 copy_from(
const value_type* __mem, _IsSimdFlagType<_Flags>)
4886 { _M_data = _Impl::template _S_load<_Ip>(_Flags::template _S_apply<simd_mask>(__mem)); }
4890 template <
typename _Flags>
4891 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
void
4892 copy_to(value_type* __mem, _IsSimdFlagType<_Flags>)
const
4893 { _Impl::_S_store(_M_data, _Flags::template _S_apply<simd_mask>(__mem)); }
4897 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR reference
4898 operator[](
size_t __i)
4901 __invoke_ub(
"Subscript %d is out of range [0, %d]", __i, size() - 1);
4902 return {_M_data, int(__i)};
4905 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR value_type
4906 operator[](
size_t __i)
const
4909 __invoke_ub(
"Subscript %d is out of range [0, %d]", __i, size() - 1);
4910 if constexpr (__is_scalar_abi<_Abi>())
4913 return static_cast<bool>(_M_data[__i]);
4918 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR simd_mask
4920 {
return {__private_init, _Impl::_S_bit_not(_M_data)}; }
4924 #ifdef _GLIBCXX_SIMD_ENABLE_IMPLICIT_MASK_CAST
4926 template <
typename _Up,
typename _A2,
4927 typename = enable_if_t<is_convertible_v<simd_mask<_Up, _A2>, simd_mask>>>
4928 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd_mask
4929 operator&&(
const simd_mask& __x,
const simd_mask<_Up, _A2>& __y)
4931 return {__private_init,
4932 _Impl::_S_logical_and(__x._M_data, simd_mask(__y)._M_data)};
4935 template <
typename _Up,
typename _A2,
4936 typename = enable_if_t<is_convertible_v<simd_mask<_Up, _A2>, simd_mask>>>
4937 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd_mask
4938 operator||(
const simd_mask& __x,
const simd_mask<_Up, _A2>& __y)
4940 return {__private_init,
4941 _Impl::_S_logical_or(__x._M_data, simd_mask(__y)._M_data)};
4945 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd_mask
4946 operator&&(
const simd_mask& __x,
const simd_mask& __y)
4947 {
return {__private_init, _Impl::_S_logical_and(__x._M_data, __y._M_data)}; }
4949 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd_mask
4950 operator||(
const simd_mask& __x,
const simd_mask& __y)
4951 {
return {__private_init, _Impl::_S_logical_or(__x._M_data, __y._M_data)}; }
4953 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd_mask
4954 operator&(
const simd_mask& __x,
const simd_mask& __y)
4955 {
return {__private_init, _Impl::_S_bit_and(__x._M_data, __y._M_data)}; }
4957 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd_mask
4958 operator|(
const simd_mask& __x,
const simd_mask& __y)
4959 {
return {__private_init, _Impl::_S_bit_or(__x._M_data, __y._M_data)}; }
4961 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd_mask
4962 operator^(
const simd_mask& __x,
const simd_mask& __y)
4963 {
return {__private_init, _Impl::_S_bit_xor(__x._M_data, __y._M_data)}; }
4965 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd_mask&
4966 operator&=(simd_mask& __x,
const simd_mask& __y)
4968 __x._M_data = _Impl::_S_bit_and(__x._M_data, __y._M_data);
4972 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd_mask&
4973 operator|=(simd_mask& __x,
const simd_mask& __y)
4975 __x._M_data = _Impl::_S_bit_or(__x._M_data, __y._M_data);
4979 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd_mask&
4980 operator^=(simd_mask& __x,
const simd_mask& __y)
4982 __x._M_data = _Impl::_S_bit_xor(__x._M_data, __y._M_data);
4988 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd_mask
4989 operator==(
const simd_mask& __x,
const simd_mask& __y)
4990 {
return !operator!=(__x, __y); }
4992 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd_mask
4993 operator!=(
const simd_mask& __x,
const simd_mask& __y)
4994 {
return {__private_init, _Impl::_S_bit_xor(__x._M_data, __y._M_data)}; }
4998 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
4999 simd_mask(_PrivateInit,
typename _Traits::_MaskMember __init)
5000 : _M_data(__init) {}
5004 template <typename _Fp, typename = decltype(bool(declval<_Fp>()(size_t())))>
5005 _GLIBCXX_SIMD_INTRINSIC
constexpr
5006 simd_mask(_PrivateInit, _Fp&& __gen)
5009 __execute_n_times<size()>([&](
auto __i)
constexpr _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
5010 _Impl::_S_set(_M_data, __i, __gen(__i));
5016 _GLIBCXX_SIMD_INTRINSIC
constexpr
5017 simd_mask(_BitsetInit, bitset<size()> __init)
5018 : _M_data(_Impl::_S_from_bitmask(_SanitizedBitMask<size()>(__init), _S_type_tag))
5029 template <
typename _Up,
typename _A2,
5030 typename = enable_if_t<simd_size_v<_Up, _A2> == simd_size_v<_Tp, _Abi>>>
5031 _GLIBCXX_SIMD_ALWAYS_INLINE
5032 operator simd_mask<_Up, _A2>() &&
5034 using namespace std::experimental::__proposed;
5035 return static_simd_cast<simd_mask<_Up, _A2>>(_M_data);
5038 const simd_mask<_Tp, _Abi>& _M_data;
5041 _GLIBCXX_SIMD_INTRINSIC _CvtProxy
5047 #ifdef __GXX_CONDITIONAL_IS_OVERLOADABLE__
5048 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd_mask
5049 operator?:(
const simd_mask& __k,
const simd_mask& __where_true,
5050 const simd_mask& __where_false)
5052 auto __ret = __where_false;
5053 _Impl::_S_masked_assign(__k._M_data, __ret._M_data, __where_true._M_data);
5057 template <
typename _U1,
typename _U2,
5058 typename _Rp = simd<common_type_t<_U1, _U2>, _Abi>,
5060 is_convertible<_U1, _Rp>, is_convertible<_U2, _Rp>,
5061 is_convertible<simd_mask, typename _Rp::mask_type>>>>
5062 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend _Rp
5063 operator?:(
const simd_mask& __k,
const _U1& __where_true,
5064 const _U2& __where_false)
5066 _Rp __ret = __where_false;
5067 _Rp::_Impl::_S_masked_assign(
5068 __data(
static_cast<typename _Rp::mask_type
>(__k)), __data(__ret),
5069 __data(
static_cast<_Rp
>(__where_true)));
5073 #ifdef _GLIBCXX_SIMD_ENABLE_IMPLICIT_MASK_CAST
5074 template <
typename _Kp,
typename _Ak,
typename _Up,
typename _Au,
5076 conjunction_v<is_convertible<simd_mask<_Kp, _Ak>, simd_mask>,
5077 is_convertible<simd_mask<_Up, _Au>, simd_mask>>>>
5078 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd_mask
5079 operator?:(
const simd_mask<_Kp, _Ak>& __k,
const simd_mask& __where_true,
5080 const simd_mask<_Up, _Au>& __where_false)
5082 simd_mask __ret = __where_false;
5083 _Impl::_S_masked_assign(simd_mask(__k)._M_data, __ret._M_data,
5084 __where_true._M_data);
5092 _GLIBCXX_SIMD_INTRINSIC
constexpr bool
5093 _M_is_constprop()
const
5095 if constexpr (__is_scalar_abi<_Abi>())
5096 return __builtin_constant_p(_M_data);
5098 return _M_data._M_is_constprop();
5104 friend const auto& __data<_Tp, abi_type>(
const simd_mask&);
5105 friend auto& __data<_Tp, abi_type>(simd_mask&);
5106 alignas(_Traits::_S_mask_align) _MemberType _M_data;
5113template <
typename _Tp,
typename _Ap>
5114 _GLIBCXX_SIMD_INTRINSIC
constexpr const auto&
5115 __data(
const simd_mask<_Tp, _Ap>& __x)
5116 {
return __x._M_data; }
5118template <
typename _Tp,
typename _Ap>
5119 _GLIBCXX_SIMD_INTRINSIC
constexpr auto&
5120 __data(simd_mask<_Tp, _Ap>& __x)
5121 {
return __x._M_data; }
5127template <
typename _Tp,
typename _Abi>
5128 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
bool
5129 all_of(
const simd_mask<_Tp, _Abi>& __k)
noexcept
5131 if (__builtin_is_constant_evaluated() || __k._M_is_constprop())
5133 for (
size_t __i = 0; __i < simd_size_v<_Tp, _Abi>; ++__i)
5139 return _Abi::_MaskImpl::_S_all_of(__k);
5142template <
typename _Tp,
typename _Abi>
5143 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
bool
5144 any_of(
const simd_mask<_Tp, _Abi>& __k)
noexcept
5146 if (__builtin_is_constant_evaluated() || __k._M_is_constprop())
5148 for (
size_t __i = 0; __i < simd_size_v<_Tp, _Abi>; ++__i)
5154 return _Abi::_MaskImpl::_S_any_of(__k);
5157template <
typename _Tp,
typename _Abi>
5158 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
bool
5159 none_of(
const simd_mask<_Tp, _Abi>& __k)
noexcept
5161 if (__builtin_is_constant_evaluated() || __k._M_is_constprop())
5163 for (
size_t __i = 0; __i < simd_size_v<_Tp, _Abi>; ++__i)
5169 return _Abi::_MaskImpl::_S_none_of(__k);
5172template <
typename _Tp,
typename _Abi>
5173 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
bool
5174 some_of(
const simd_mask<_Tp, _Abi>& __k)
noexcept
5176 if (__builtin_is_constant_evaluated() || __k._M_is_constprop())
5178 for (
size_t __i = 1; __i < simd_size_v<_Tp, _Abi>; ++__i)
5179 if (__k[__i] != __k[__i - 1])
5184 return _Abi::_MaskImpl::_S_some_of(__k);
5187template <
typename _Tp,
typename _Abi>
5188 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
int
5189 popcount(
const simd_mask<_Tp, _Abi>& __k)
noexcept
5191 if (__builtin_is_constant_evaluated() || __k._M_is_constprop())
5193 const int __r = __call_with_subscripts<simd_size_v<_Tp, _Abi>>(
5194 __k, [](
auto... __elements) _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
5195 return ((__elements != 0) + ...);
5197 if (__builtin_is_constant_evaluated() || __builtin_constant_p(__r))
5200 return _Abi::_MaskImpl::_S_popcount(__k);
5203template <
typename _Tp,
typename _Abi>
5204 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
int
5205 find_first_set(
const simd_mask<_Tp, _Abi>& __k)
5207 if (__builtin_is_constant_evaluated() || __k._M_is_constprop())
5209 constexpr size_t _Np = simd_size_v<_Tp, _Abi>;
5210 const size_t _Idx = __call_with_n_evaluations<_Np>(
5211 [](
auto... __indexes) _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
5213 }, [&](
auto __i) _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
5214 return __k[__i] ? +__i : _Np;
5217 __invoke_ub(
"find_first_set(empty mask) is UB");
5218 if (__builtin_constant_p(_Idx))
5221 return _Abi::_MaskImpl::_S_find_first_set(__k);
5224template <
typename _Tp,
typename _Abi>
5225 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
int
5226 find_last_set(
const simd_mask<_Tp, _Abi>& __k)
5228 if (__builtin_is_constant_evaluated() || __k._M_is_constprop())
5230 constexpr size_t _Np = simd_size_v<_Tp, _Abi>;
5231 const int _Idx = __call_with_n_evaluations<_Np>(
5232 [](
auto... __indexes) _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
5234 }, [&](
auto __i) _GLIBCXX_SIMD_ALWAYS_INLINE_LAMBDA {
5235 return __k[__i] ? int(__i) : -1;
5238 __invoke_ub(
"find_first_set(empty mask) is UB");
5239 if (__builtin_constant_p(_Idx))
5242 return _Abi::_MaskImpl::_S_find_last_set(__k);
5245_GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
bool
5246all_of(_ExactBool __x)
noexcept
5249_GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
bool
5250any_of(_ExactBool __x)
noexcept
5253_GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
bool
5254none_of(_ExactBool __x)
noexcept
5257_GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
bool
5258some_of(_ExactBool)
noexcept
5261_GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
int
5262popcount(_ExactBool __x)
noexcept
5265_GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
int
5266find_first_set(_ExactBool)
5269_GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
int
5270find_last_set(_ExactBool)
5277template <
typename _V,
typename _Tp,
typename _Abi,
bool>
5278 class _SimdIntOperators {};
5280template <
typename _V,
typename _Tp,
typename _Abi>
5281 class _SimdIntOperators<_V, _Tp, _Abi, true>
5283 using _Impl =
typename _SimdTraits<_Tp, _Abi>::_SimdImpl;
5285 _GLIBCXX_SIMD_INTRINSIC
constexpr const _V&
5287 {
return *
static_cast<const _V*
>(
this); }
5289 template <
typename _Up>
5290 _GLIBCXX_SIMD_INTRINSIC
static _GLIBCXX_SIMD_CONSTEXPR _V
5291 _S_make_derived(_Up&& __d)
5292 {
return {__private_init,
static_cast<_Up&&
>(__d)}; }
5295 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend
5297 operator%=(_V& __lhs,
const _V& __x)
5298 {
return __lhs = __lhs % __x; }
5300 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend
5302 operator&=(_V& __lhs,
const _V& __x)
5303 {
return __lhs = __lhs & __x; }
5305 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend
5307 operator|=(_V& __lhs,
const _V& __x)
5308 {
return __lhs = __lhs | __x; }
5310 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend
5312 operator^=(_V& __lhs,
const _V& __x)
5313 {
return __lhs = __lhs ^ __x; }
5315 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend
5317 operator<<=(_V& __lhs,
const _V& __x)
5318 {
return __lhs = __lhs << __x; }
5320 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend
5322 operator>>=(_V& __lhs,
const _V& __x)
5323 {
return __lhs = __lhs >> __x; }
5325 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend
5327 operator<<=(_V& __lhs,
int __x)
5328 {
return __lhs = __lhs << __x; }
5330 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend
5332 operator>>=(_V& __lhs,
int __x)
5333 {
return __lhs = __lhs >> __x; }
5335 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend
5339 return _SimdIntOperators::_S_make_derived(
5340 _Impl::_S_modulus(__data(__x), __data(__y)));
5343 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend
5347 return _SimdIntOperators::_S_make_derived(
5348 _Impl::_S_bit_and(__data(__x), __data(__y)));
5351 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend
5355 return _SimdIntOperators::_S_make_derived(
5356 _Impl::_S_bit_or(__data(__x), __data(__y)));
5359 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend
5363 return _SimdIntOperators::_S_make_derived(
5364 _Impl::_S_bit_xor(__data(__x), __data(__y)));
5367 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend
5371 return _SimdIntOperators::_S_make_derived(
5372 _Impl::_S_bit_shift_left(__data(__x), __data(__y)));
5375 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend
5379 return _SimdIntOperators::_S_make_derived(
5380 _Impl::_S_bit_shift_right(__data(__x), __data(__y)));
5383 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend
5388 __invoke_ub(
"The behavior is undefined if the right operand of a "
5389 "shift operation is negative. [expr.shift]\nA shift by "
5392 if (
size_t(__y) >=
sizeof(declval<_Tp>() << __y) * __CHAR_BIT__)
5394 "The behavior is undefined if the right operand of a "
5395 "shift operation is greater than or equal to the width of the "
5396 "promoted left operand. [expr.shift]\nA shift by %d was requested",
5398 return _SimdIntOperators::_S_make_derived(
5399 _Impl::_S_bit_shift_left(__data(__x), __y));
5402 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend
5408 "The behavior is undefined if the right operand of a shift "
5409 "operation is negative. [expr.shift]\nA shift by %d was requested",
5411 if (
size_t(__y) >=
sizeof(declval<_Tp>() << __y) * __CHAR_BIT__)
5413 "The behavior is undefined if the right operand of a shift "
5414 "operation is greater than or equal to the width of the promoted "
5415 "left operand. [expr.shift]\nA shift by %d was requested",
5417 return _SimdIntOperators::_S_make_derived(
5418 _Impl::_S_bit_shift_right(__data(__x), __y));
5422 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
5425 {
return {__private_init, _Impl::_S_complement(__derived()._M_data)}; }
5432template <
typename _Tp,
typename _Abi>
5433 class simd :
public _SimdIntOperators<
5434 simd<_Tp, _Abi>, _Tp, _Abi,
5435 conjunction<is_integral<_Tp>,
5436 typename _SimdTraits<_Tp, _Abi>::_IsValid>::value>,
5437 public _SimdTraits<_Tp, _Abi>::_SimdBase
5439 using _Traits = _SimdTraits<_Tp, _Abi>;
5440 using _MemberType =
typename _Traits::_SimdMember;
5441 using _CastType =
typename _Traits::_SimdCastType;
5442 static constexpr _Tp* _S_type_tag =
nullptr;
5443 friend typename _Traits::_SimdBase;
5446 using _Impl =
typename _Traits::_SimdImpl;
5448 friend _SimdIntOperators<simd, _Tp, _Abi, true>;
5450 using value_type = _Tp;
5451 using reference = _SmartReference<_MemberType, _Impl, value_type>;
5452 using mask_type = simd_mask<_Tp, _Abi>;
5453 using abi_type = _Abi;
5455 static constexpr size_t size()
5456 {
return __size_or_zero_v<_Tp, _Abi>; }
5458 _GLIBCXX_SIMD_CONSTEXPR simd() =
default;
5459 _GLIBCXX_SIMD_CONSTEXPR simd(
const simd&) =
default;
5460 _GLIBCXX_SIMD_CONSTEXPR simd(simd&&) noexcept = default;
5461 _GLIBCXX_SIMD_CONSTEXPR simd& operator=(const simd&) = default;
5462 _GLIBCXX_SIMD_CONSTEXPR simd& operator=(simd&&) noexcept = default;
5465 template <typename _Up,
5466 typename = enable_if_t<!is_same_v<__remove_cvref_t<_Up>,
bool>>>
5467 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
5468 simd(_ValuePreservingOrInt<_Up, value_type>&& __x)
5470 _Impl::_S_broadcast(static_cast<value_type>(static_cast<_Up&&>(__x))))
5475 template <
typename _Up>
5476 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
5477 simd(
const simd<_Up, simd_abi::fixed_size<size()>>& __x,
5480 is_same<simd_abi::fixed_size<size()>, abi_type>,
5481 negation<__is_narrowing_conversion<_Up, value_type>>,
5482 __converts_to_higher_integer_rank<_Up, value_type>>::value,
5484 : simd{static_cast<array<_Up, size()>>(__x).data(), vector_aligned} {}
5487#ifdef _GLIBCXX_SIMD_ENABLE_STATIC_CAST
5488 template <
typename _Up,
typename _A2,
5489 typename =
decltype(static_simd_cast<simd>(
5490 declval<
const simd<_Up, _A2>&>()))>
5491 _GLIBCXX_SIMD_ALWAYS_INLINE
explicit _GLIBCXX_SIMD_CONSTEXPR
5492 simd(
const simd<_Up, _A2>& __x)
5493 : simd(static_simd_cast<simd>(__x)) {}
5497 template <
typename _Fp>
5498 _GLIBCXX_SIMD_ALWAYS_INLINE
explicit _GLIBCXX_SIMD_CONSTEXPR
5499 simd(_Fp&& __gen, _ValuePreservingOrInt<
decltype(declval<_Fp>()(
5500 declval<_SizeConstant<0>&>())),
5501 value_type>* =
nullptr)
5502 : _M_data(_Impl::_S_generator(static_cast<_Fp&&>(__gen), _S_type_tag)) {}
5505 template <
typename _Up,
typename _Flags>
5506 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
5507 simd(
const _Up* __mem, _IsSimdFlagType<_Flags>)
5509 _Impl::_S_load(_Flags::template _S_apply<simd>(__mem), _S_type_tag))
5513 template <
typename _Up,
typename _Flags>
5514 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
void
5515 copy_from(
const _Vectorizable<_Up>* __mem, _IsSimdFlagType<_Flags>)
5517 _M_data =
static_cast<decltype(_M_data)
>(
5518 _Impl::_S_load(_Flags::template _S_apply<simd>(__mem), _S_type_tag));
5522 template <
typename _Up,
typename _Flags>
5523 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
void
5524 copy_to(_Vectorizable<_Up>* __mem, _IsSimdFlagType<_Flags>)
const
5526 _Impl::_S_store(_M_data, _Flags::template _S_apply<simd>(__mem),
5531 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR reference
5532 operator[](
size_t __i)
5533 {
return {_M_data, int(__i)}; }
5535 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR value_type
5536 operator[]([[maybe_unused]]
size_t __i)
const
5538 if constexpr (__is_scalar_abi<_Abi>())
5540 _GLIBCXX_DEBUG_ASSERT(__i == 0);
5544 return _M_data[__i];
5548 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR simd&
5551 _Impl::_S_increment(_M_data);
5555 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR simd
5559 _Impl::_S_increment(_M_data);
5563 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR simd&
5566 _Impl::_S_decrement(_M_data);
5570 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR simd
5574 _Impl::_S_decrement(_M_data);
5579 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR mask_type
5581 {
return {__private_init, _Impl::_S_negate(_M_data)}; }
5583 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR simd
5587 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR simd
5589 {
return {__private_init, _Impl::_S_unary_minus(_M_data)}; }
5592 _GLIBCXX_SIMD_ALWAYS_INLINE
explicit _GLIBCXX_SIMD_CONSTEXPR
5593 simd(_CastType __init) : _M_data(__init) {}
5596 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd&
5597 operator+=(simd& __lhs,
const simd& __x)
5598 {
return __lhs = __lhs + __x; }
5600 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd&
5601 operator-=(simd& __lhs,
const simd& __x)
5602 {
return __lhs = __lhs - __x; }
5604 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd&
5605 operator*=(simd& __lhs,
const simd& __x)
5606 {
return __lhs = __lhs * __x; }
5608 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd&
5609 operator/=(simd& __lhs,
const simd& __x)
5610 {
return __lhs = __lhs / __x; }
5613 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd
5614 operator+(
const simd& __x,
const simd& __y)
5615 {
return {__private_init, _Impl::_S_plus(__x._M_data, __y._M_data)}; }
5617 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd
5618 operator-(
const simd& __x,
const simd& __y)
5619 {
return {__private_init, _Impl::_S_minus(__x._M_data, __y._M_data)}; }
5621 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd
5622 operator*(
const simd& __x,
const simd& __y)
5623 {
return {__private_init, _Impl::_S_multiplies(__x._M_data, __y._M_data)}; }
5625 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd
5626 operator/(
const simd& __x,
const simd& __y)
5627 {
return {__private_init, _Impl::_S_divides(__x._M_data, __y._M_data)}; }
5630 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend mask_type
5631 operator==(
const simd& __x,
const simd& __y)
5632 {
return simd::_S_make_mask(_Impl::_S_equal_to(__x._M_data, __y._M_data)); }
5634 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend mask_type
5635 operator!=(
const simd& __x,
const simd& __y)
5637 return simd::_S_make_mask(
5638 _Impl::_S_not_equal_to(__x._M_data, __y._M_data));
5641 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend mask_type
5642 operator<(
const simd& __x,
const simd& __y)
5643 {
return simd::_S_make_mask(_Impl::_S_less(__x._M_data, __y._M_data)); }
5645 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend mask_type
5648 return simd::_S_make_mask(_Impl::_S_less_equal(__x._M_data, __y._M_data));
5651 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend mask_type
5652 operator>(
const simd& __x,
const simd& __y)
5653 {
return simd::_S_make_mask(_Impl::_S_less(__y._M_data, __x._M_data)); }
5655 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend mask_type
5658 return simd::_S_make_mask(_Impl::_S_less_equal(__y._M_data, __x._M_data));
5662#ifdef __GXX_CONDITIONAL_IS_OVERLOADABLE__
5663 _GLIBCXX_SIMD_ALWAYS_INLINE _GLIBCXX_SIMD_CONSTEXPR
friend simd
5664 operator?:(
const mask_type& __k,
const simd& __where_true,
5665 const simd& __where_false)
5667 auto __ret = __where_false;
5668 _Impl::_S_masked_assign(__data(__k), __data(__ret), __data(__where_true));
5676 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
5677 simd(_PrivateInit,
const _MemberType& __init)
5678 : _M_data(__init) {}
5681 _GLIBCXX_SIMD_INTRINSIC
5682 simd(_BitsetInit, bitset<size()> __init) : _M_data()
5683 { where(mask_type(__bitset_init, __init), *
this) = ~*
this; }
5685 _GLIBCXX_SIMD_INTRINSIC
constexpr bool
5686 _M_is_constprop()
const
5688 if constexpr (__is_scalar_abi<_Abi>())
5689 return __builtin_constant_p(_M_data);
5691 return _M_data._M_is_constprop();
5695 _GLIBCXX_SIMD_INTRINSIC
static constexpr mask_type
5696 _S_make_mask(
typename mask_type::_MemberType __k)
5697 {
return {__private_init, __k}; }
5699 friend const auto& __data<value_type, abi_type>(
const simd&);
5700 friend auto& __data<value_type, abi_type>(simd&);
5701 alignas(_Traits::_S_simd_align) _MemberType _M_data;
5707template <
typename _Tp,
typename _Ap>
5708 _GLIBCXX_SIMD_INTRINSIC
constexpr const auto&
5709 __data(
const simd<_Tp, _Ap>& __x)
5710 {
return __x._M_data; }
5712template <
typename _Tp,
typename _Ap>
5713 _GLIBCXX_SIMD_INTRINSIC
constexpr auto&
5714 __data(simd<_Tp, _Ap>& __x)
5715 {
return __x._M_data; }
5718namespace __float_bitwise_operators {
5719template <
typename _Tp,
typename _Ap>
5720 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR simd<_Tp, _Ap>
5721 operator^(
const simd<_Tp, _Ap>& __a,
const simd<_Tp, _Ap>& __b)
5722 {
return {__private_init, _Ap::_SimdImpl::_S_bit_xor(__data(__a), __data(__b))}; }
5724template <
typename _Tp,
typename _Ap>
5725 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR simd<_Tp, _Ap>
5726 operator|(
const simd<_Tp, _Ap>& __a,
const simd<_Tp, _Ap>& __b)
5727 {
return {__private_init, _Ap::_SimdImpl::_S_bit_or(__data(__a), __data(__b))}; }
5729template <
typename _Tp,
typename _Ap>
5730 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR simd<_Tp, _Ap>
5731 operator&(
const simd<_Tp, _Ap>& __a,
const simd<_Tp, _Ap>& __b)
5732 {
return {__private_init, _Ap::_SimdImpl::_S_bit_and(__data(__a), __data(__b))}; }
5734template <
typename _Tp,
typename _Ap>
5735 _GLIBCXX_SIMD_INTRINSIC _GLIBCXX_SIMD_CONSTEXPR
5736 enable_if_t<is_floating_point_v<_Tp>, simd<_Tp, _Ap>>
5737 operator~(
const simd<_Tp, _Ap>& __a)
5738 {
return {__private_init, _Ap::_SimdImpl::_S_complement(__data(__a))}; }
5743_GLIBCXX_SIMD_END_NAMESPACE
constexpr bool operator<=(const duration< _Rep1, _Period1 > &__lhs, const duration< _Rep2, _Period2 > &__rhs)
constexpr bool operator>=(const duration< _Rep1, _Period1 > &__lhs, const duration< _Rep2, _Period2 > &__rhs)
constexpr duration< __common_rep_t< _Rep1, __disable_if_is_duration< _Rep2 > >, _Period > operator%(const duration< _Rep1, _Period > &__d, const _Rep2 &__s)
constexpr bool operator<(const duration< _Rep1, _Period1 > &__lhs, const duration< _Rep2, _Period2 > &__rhs)
constexpr bool operator>(const duration< _Rep1, _Period1 > &__lhs, const duration< _Rep2, _Period2 > &__rhs)
constexpr complex< _Tp > operator*(const complex< _Tp > &__x, const complex< _Tp > &__y)
Return new complex value x times y.
constexpr complex< _Tp > operator-(const complex< _Tp > &__x, const complex< _Tp > &__y)
Return new complex value x minus y.
constexpr complex< _Tp > operator+(const complex< _Tp > &__x, const complex< _Tp > &__y)
Return new complex value x plus y.
constexpr complex< _Tp > operator/(const complex< _Tp > &__x, const complex< _Tp > &__y)
Return new complex value x divided by y.
typename conditional< _Cond, _Iftrue, _Iffalse >::type conditional_t
Alias template for conditional.
typename remove_reference< _Tp >::type remove_reference_t
Alias template for remove_reference.
typename make_unsigned< _Tp >::type make_unsigned_t
Alias template for make_unsigned.
typename enable_if< _Cond, _Tp >::type enable_if_t
Alias template for enable_if.
__bool_constant< false > false_type
The type used as a compile-time boolean with false value.
constexpr auto tuple_cat(_Tpls &&... __tpls) -> typename __tuple_cat_result< _Tpls... >::__type
Create a tuple containing all elements from multiple tuple-like objects.
auto declval() noexcept -> decltype(__declval< _Tp >(0))
constexpr tuple< typename __decay_and_strip< _Elements >::__type... > make_tuple(_Elements &&... __args)
Create a tuple containing copies of the arguments.
constexpr std::remove_reference< _Tp >::type && move(_Tp &&__t) noexcept
Convert a value to an rvalue.
constexpr const _Tp & max(const _Tp &, const _Tp &)
This does what you think it does.
constexpr const _Tp & min(const _Tp &, const _Tp &)
This does what you think it does.
constexpr _Tp reduce(_InputIterator __first, _InputIterator __last, _Tp __init, _BinaryOperation __binary_op)
Calculate reduction of values in a range.
void void_t
A metafunction that always yields void, used for detecting valid types.
ISO C++ entities toplevel namespace is std.
make_integer_sequence< size_t, _Num > make_index_sequence
Alias template make_index_sequence.
constexpr bitset< _Nb > operator^(const bitset< _Nb > &__x, const bitset< _Nb > &__y) noexcept
Global bitwise operations on bitsets.
std::basic_istream< _CharT, _Traits > & operator>>(std::basic_istream< _CharT, _Traits > &__is, bitset< _Nb > &__x)
Global I/O operators for bitsets.
std::basic_ostream< _CharT, _Traits > & operator<<(std::basic_ostream< _CharT, _Traits > &__os, const bitset< _Nb > &__x)
Global I/O operators for bitsets.
constexpr bitset< _Nb > operator|(const bitset< _Nb > &__x, const bitset< _Nb > &__y) noexcept
Global bitwise operations on bitsets.
constexpr bitset< _Nb > operator&(const bitset< _Nb > &__x, const bitset< _Nb > &__y) noexcept
Global bitwise operations on bitsets.