31#ifndef _GLIBCXX_VALARRAY
32#define _GLIBCXX_VALARRAY 1
34#pragma GCC system_header
40#if __cplusplus >= 201103L
44namespace std _GLIBCXX_VISIBILITY(default)
46_GLIBCXX_BEGIN_NAMESPACE_VERSION
48 template<
class _Clos,
typename _Tp>
51 template<
typename _Tp1,
typename _Tp2>
56 template<
class _Oper,
template<
class,
class>
class _Meta,
class _Dom>
60 template<
class,
class>
class _Meta1,
61 template<
class,
class>
class _Meta2,
62 class _Dom1,
class _Dom2>
65 template<
template<
class,
class>
class _Meta,
class _Dom>
68 template<
template<
class,
class>
class _Meta,
class _Dom>
71 template<
template<
class,
class>
class _Meta,
class _Dom>
74 template<
template<
class,
class>
class _Meta,
class _Dom>
77 template<
template<
class,
class>
class _Meta,
class _Dom>
81 using __detail::_UnClos;
82 using __detail::_BinClos;
83 using __detail::_SClos;
84 using __detail::_GClos;
85 using __detail::_IClos;
86 using __detail::_ValFunClos;
87 using __detail::_RefFunClos;
97_GLIBCXX_END_NAMESPACE_VERSION
103namespace std _GLIBCXX_VISIBILITY(default)
105_GLIBCXX_BEGIN_NAMESPACE_VERSION
132 typedef typename __fun<_Op, _Tp>::result_type __rt;
133 typedef _Expr<_UnClos<_Op, _ValArray, _Tp>, __rt> _Rt;
136 typedef _Tp value_type;
154#if __cplusplus >= 201103L
171#if __cplusplus >= 201103L
177 valarray(
const _Expr<_Dom, _Tp>& __e);
189 valarray<_Tp>& operator=(const valarray<_Tp>& __v);
191#if __cplusplus >= 201103L
199 valarray<_Tp>&
operator=(valarray<_Tp>&& __v)
noexcept;
209 valarray<_Tp>&
operator=(
const _Tp& __t);
251#if __cplusplus >= 201103L
263 template<
class _Dom> valarray<_Tp>&
277 const _Tp&
operator[](
size_t)
const _GLIBCXX_NOTHROW;
339 valarray<_Tp>
operator[](
const valarray<bool>& __m)
const;
366 _Expr<_IClos<_ValArray, _Tp>, _Tp>
367 operator[](
const valarray<size_t>& __i)
const;
391 typename _UnaryOp<__bitwise_not>::_Rt
operator~()
const;
394 typename _UnaryOp<__logical_not>::_Rt
operator!()
const;
479#if __cplusplus >= 201103L
481 void swap(valarray<_Tp>& __v)
noexcept;
516 valarray<_Tp>
shift (
int __n)
const;
545 _Expr<_ValFunClos<_ValArray, _Tp>, _Tp>
apply(_Tp __func(_Tp))
const;
557 _Expr<_RefFunClos<_ValArray, _Tp>, _Tp>
apply(_Tp __func(
const _Tp&))
const;
568 void resize(
size_t __size, _Tp __c = _Tp());
572 _Tp* __restrict__ _M_data;
574 friend struct _Array<_Tp>;
577#if __cpp_deduction_guides >= 201606
578 template<
typename _Tp,
size_t _Nm>
582 template<
typename _Tp>
586 __glibcxx_requires_subscript(__i);
590 template<
typename _Tp>
594 __glibcxx_requires_subscript(__i);
600_GLIBCXX_END_NAMESPACE_VERSION
610namespace std _GLIBCXX_VISIBILITY(default)
612_GLIBCXX_BEGIN_NAMESPACE_VERSION
619 template<
typename _Tp>
623 template<
typename _Tp>
626 : _M_size(__n), _M_data(__valarray_get_storage<_Tp>(__n))
627 { std::__valarray_default_construct(_M_data, _M_data + __n); }
629 template<
typename _Tp>
632 : _M_size(__n), _M_data(__valarray_get_storage<_Tp>(__n))
633 { std::__valarray_fill_construct(_M_data, _M_data + __n, __t); }
635 template<
typename _Tp>
638 : _M_size(__n), _M_data(__valarray_get_storage<_Tp>(__n))
640 __glibcxx_assert(__p != 0 || __n == 0);
641 std::__valarray_copy_construct(__p, __p + __n, _M_data);
644 template<
typename _Tp>
647 : _M_size(__v._M_size), _M_data(__valarray_get_storage<_Tp>(__v._M_size))
648 { std::__valarray_copy_construct(__v._M_data, __v._M_data + _M_size,
651#if __cplusplus >= 201103L
652 template<
typename _Tp>
655 : _M_size(__v._M_size), _M_data(__v._M_data)
662 template<
typename _Tp>
665 : _M_size(__sa._M_sz), _M_data(__valarray_get_storage<_Tp>(__sa._M_sz))
667 std::__valarray_copy_construct
668 (__sa._M_array, __sa._M_sz, __sa._M_stride, _Array<_Tp>(_M_data));
671 template<
typename _Tp>
674 : _M_size(__ga._M_index.
size()),
675 _M_data(__valarray_get_storage<_Tp>(_M_size))
677 std::__valarray_copy_construct
678 (__ga._M_array, _Array<size_t>(__ga._M_index),
679 _Array<_Tp>(_M_data), _M_size);
682 template<
typename _Tp>
685 : _M_size(__ma._M_sz), _M_data(__valarray_get_storage<_Tp>(__ma._M_sz))
687 std::__valarray_copy_construct
688 (__ma._M_array, __ma._M_mask, _Array<_Tp>(_M_data), _M_size);
691 template<
typename _Tp>
694 : _M_size(__ia._M_sz), _M_data(__valarray_get_storage<_Tp>(__ia._M_sz))
696 std::__valarray_copy_construct
697 (__ia._M_array, __ia._M_index, _Array<_Tp>(_M_data), _M_size);
700#if __cplusplus >= 201103L
701 template<
typename _Tp>
704 : _M_size(__l.
size()), _M_data(__valarray_get_storage<_Tp>(__l.
size()))
705 { std::__valarray_copy_construct(__l.begin(), __l.end(), _M_data); }
708 template<
typename _Tp>
template<
class _Dom>
711 : _M_size(__e.
size()), _M_data(__valarray_get_storage<_Tp>(_M_size))
712 { std::__valarray_copy_construct(__e, _M_size, _Array<_Tp>(_M_data)); }
714 template<
typename _Tp>
716 valarray<_Tp>::~valarray() _GLIBCXX_NOEXCEPT
718 std::__valarray_destroy_elements(_M_data, _M_data + _M_size);
719 std::__valarray_release_memory(_M_data);
722 template<
typename _Tp>
728 if (_M_size == __v._M_size)
729 std::__valarray_copy(__v._M_data, _M_size, _M_data);
734 std::__valarray_destroy_elements(_M_data, _M_data + _M_size);
735 std::__valarray_release_memory(_M_data);
737 _M_size = __v._M_size;
738 _M_data = __valarray_get_storage<_Tp>(_M_size);
739 std::__valarray_copy_construct(__v._M_data, __v._M_data + _M_size,
745#if __cplusplus >= 201103L
746 template<
typename _Tp>
752 std::__valarray_destroy_elements(_M_data, _M_data + _M_size);
753 std::__valarray_release_memory(_M_data);
755 _M_size = __v._M_size;
756 _M_data = __v._M_data;
762 template<
typename _Tp>
768 if (_M_size == __l.size())
769 std::__valarray_copy(__l.begin(), __l.size(), _M_data);
774 std::__valarray_destroy_elements(_M_data, _M_data + _M_size);
775 std::__valarray_release_memory(_M_data);
777 _M_size = __l.size();
778 _M_data = __valarray_get_storage<_Tp>(_M_size);
779 std::__valarray_copy_construct(__l.begin(), __l.begin() + _M_size,
786 template<
typename _Tp>
790 std::__valarray_fill(_M_data, _M_size, __t);
794 template<
typename _Tp>
798 __glibcxx_assert(_M_size == __sa._M_sz);
799 std::__valarray_copy(__sa._M_array, __sa._M_sz,
800 __sa._M_stride, _Array<_Tp>(_M_data));
804 template<
typename _Tp>
808 __glibcxx_assert(_M_size == __ga._M_index.
size());
809 std::__valarray_copy(__ga._M_array, _Array<size_t>(__ga._M_index),
810 _Array<_Tp>(_M_data), _M_size);
814 template<
typename _Tp>
818 __glibcxx_assert(_M_size == __ma._M_sz);
819 std::__valarray_copy(__ma._M_array, __ma._M_mask,
820 _Array<_Tp>(_M_data), _M_size);
824 template<
typename _Tp>
828 __glibcxx_assert(_M_size == __ia._M_sz);
829 std::__valarray_copy(__ia._M_array, __ia._M_index,
830 _Array<_Tp>(_M_data), _M_size);
834 template<
typename _Tp>
template<
class _Dom>
840 if (_M_size == __e.size())
845 for (
size_t __i = 0; __i < _M_size; ++__i)
846 _M_data[__i] = __e[__i];
852 std::__valarray_destroy_elements(_M_data, _M_data + _M_size);
853 std::__valarray_release_memory(_M_data);
855 _M_size = __e.size();
856 _M_data = __valarray_get_storage<_Tp>(_M_size);
857 std::__valarray_copy_construct(__e, _M_size, _Array<_Tp>(_M_data));
862 template<
typename _Tp>
863 inline _Expr<_SClos<_ValArray,_Tp>, _Tp>
866 typedef _SClos<_ValArray,_Tp> _Closure;
867 return _Expr<_Closure, _Tp>(_Closure (_Array<_Tp>(_M_data), __s));
870 template<
typename _Tp>
875 template<
typename _Tp>
876 inline _Expr<_GClos<_ValArray,_Tp>, _Tp>
879 typedef _GClos<_ValArray,_Tp> _Closure;
880 return _Expr<_Closure, _Tp>
881 (_Closure(_Array<_Tp>(_M_data), __gs._M_index->_M_index));
884 template<
typename _Tp>
889 (_Array<_Tp>(_M_data), __gs._M_index->_M_index);
892 template<
typename _Tp>
897 size_t __e = __m.
size();
898 for (
size_t __i=0; __i<__e; ++__i)
901 _Array<bool> (__m)));
904 template<
typename _Tp>
909 size_t __e = __m.
size();
910 for (
size_t __i=0; __i<__e; ++__i)
915 template<
typename _Tp>
916 inline _Expr<_IClos<_ValArray,_Tp>, _Tp>
919 typedef _IClos<_ValArray,_Tp> _Closure;
920 return _Expr<_Closure, _Tp>(_Closure(*
this, __i));
923 template<
typename _Tp>
928 _Array<size_t>(__i));
931#if __cplusplus >= 201103L
950 __glibcxx_assert(_M_size > 0);
951 return std::__valarray_sum(_M_data, _M_data + _M_size);
963 _Tp* __restrict__ __tmp_M_data =
964 std::__valarray_get_storage<_Tp>(_M_size);
967 std::__valarray_copy_construct(_M_data,
968 _M_data + _M_size, __tmp_M_data);
971 if (
size_t(__n) > _M_size)
974 std::__valarray_copy_construct(_M_data + __n,
975 _M_data + _M_size, __tmp_M_data);
976 std::__valarray_default_construct(__tmp_M_data + _M_size - __n,
977 __tmp_M_data + _M_size);
981 if (-
size_t(__n) > _M_size)
984 std::__valarray_copy_construct(_M_data, _M_data + _M_size + __n,
986 std::__valarray_default_construct(__tmp_M_data,
990 __ret._M_size = _M_size;
991 __ret._M_data = __tmp_M_data;
1004 _Tp* __restrict__ __tmp_M_data =
1005 std::__valarray_get_storage<_Tp>(_M_size);
1008 std::__valarray_copy_construct(_M_data,
1009 _M_data + _M_size, __tmp_M_data);
1012 if (
size_t(__n) > _M_size)
1013 __n = int(__n % _M_size);
1015 std::__valarray_copy_construct(_M_data, _M_data + __n,
1016 __tmp_M_data + _M_size - __n);
1017 std::__valarray_copy_construct(_M_data + __n, _M_data + _M_size,
1022 if (-
size_t(__n) > _M_size)
1023 __n = -int(-
size_t(__n) % _M_size);
1025 std::__valarray_copy_construct(_M_data + _M_size + __n,
1026 _M_data + _M_size, __tmp_M_data);
1027 std::__valarray_copy_construct(_M_data, _M_data + _M_size + __n,
1028 __tmp_M_data - __n);
1031 __ret._M_size = _M_size;
1032 __ret._M_data = __tmp_M_data;
1043 std::__valarray_destroy_elements(_M_data, _M_data + _M_size);
1046 std::__valarray_release_memory(_M_data);
1048 _M_data = __valarray_get_storage<_Tp>(__n);
1050 std::__valarray_fill_construct(_M_data, _M_data + __n, __c);
1053 template<
typename _Tp>
1057 __glibcxx_assert(_M_size > 0);
1058 return *std::min_element(_M_data, _M_data + _M_size);
1061 template<
typename _Tp>
1065 __glibcxx_assert(_M_size > 0);
1066 return *std::max_element(_M_data, _M_data + _M_size);
1070 inline _Expr<_ValFunClos<_ValArray, _Tp>, _Tp>
1073 typedef _ValFunClos<_ValArray, _Tp> _Closure;
1074 return _Expr<_Closure, _Tp>(_Closure(*
this, __func));
1078 inline _Expr<_RefFunClos<_ValArray, _Tp>, _Tp>
1081 typedef _RefFunClos<_ValArray, _Tp> _Closure;
1082 return _Expr<_Closure, _Tp>(_Closure(*
this, __func));
1086#define _DEFINE_VALARRAY_UNARY_OPERATOR(_Op, _Name) \
1087 template<typename _Tp> \
1088 inline typename valarray<_Tp>::template _UnaryOp<_Name>::_Rt \
1089 valarray<_Tp>::operator _Op() const \
1091 typedef _UnClos<_Name, _ValArray, _Tp> _Closure; \
1092 typedef typename __fun<_Name, _Tp>::result_type _Rt; \
1093 return _Expr<_Closure, _Rt>(_Closure(*this)); \
1096 _DEFINE_VALARRAY_UNARY_OPERATOR(+, __unary_plus)
1097 _DEFINE_VALARRAY_UNARY_OPERATOR(-, __negate)
1098 _DEFINE_VALARRAY_UNARY_OPERATOR(~, __bitwise_not)
1099 _DEFINE_VALARRAY_UNARY_OPERATOR (!, __logical_not)
1101#undef _DEFINE_VALARRAY_UNARY_OPERATOR
1103#define _DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(_Op, _Name) \
1104 template<class _Tp> \
1105 inline valarray<_Tp>& \
1106 valarray<_Tp>::operator _Op##=(const _Tp &__t) \
1108 _Array_augmented_##_Name(_Array<_Tp>(_M_data), _M_size, __t); \
1112 template<class _Tp> \
1113 inline valarray<_Tp>& \
1114 valarray<_Tp>::operator _Op##=(const valarray<_Tp> &__v) \
1116 __glibcxx_assert(_M_size == __v._M_size); \
1117 _Array_augmented_##_Name(_Array<_Tp>(_M_data), _M_size, \
1118 _Array<_Tp>(__v._M_data)); \
1122_DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(+, __plus)
1123_DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(-, __minus)
1124_DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(*, __multiplies)
1125_DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(/, __divides)
1126_DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(%, __modulus)
1127_DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(^, __bitwise_xor)
1128_DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(&, __bitwise_and)
1129_DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(|, __bitwise_or)
1130_DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(<<, __shift_left)
1131_DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT(>>, __shift_right)
1133#undef _DEFINE_VALARRAY_AUGMENTED_ASSIGNMENT
1135#define _DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(_Op, _Name) \
1136 template<class _Tp> template<class _Dom> \
1137 inline valarray<_Tp>& \
1138 valarray<_Tp>::operator _Op##=(const _Expr<_Dom, _Tp>& __e) \
1140 _Array_augmented_##_Name(_Array<_Tp>(_M_data), __e, _M_size); \
1144_DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(+, __plus)
1145_DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(-, __minus)
1146_DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(*, __multiplies)
1147_DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(/, __divides)
1148_DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(%, __modulus)
1149_DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(^, __bitwise_xor)
1150_DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(&, __bitwise_and)
1151_DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(|, __bitwise_or)
1152_DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(<<, __shift_left)
1153_DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT(>>, __shift_right)
1155#undef _DEFINE_VALARRAY_EXPR_AUGMENTED_ASSIGNMENT
1158#define _DEFINE_BINARY_OPERATOR(_Op, _Name) \
1159 template<typename _Tp> \
1160 inline _Expr<_BinClos<_Name, _ValArray, _ValArray, _Tp, _Tp>, \
1161 typename __fun<_Name, _Tp>::result_type> \
1162 operator _Op(const valarray<_Tp>& __v, const valarray<_Tp>& __w) \
1164 __glibcxx_assert(__v.size() == __w.size()); \
1165 typedef _BinClos<_Name, _ValArray, _ValArray, _Tp, _Tp> _Closure; \
1166 typedef typename __fun<_Name, _Tp>::result_type _Rt; \
1167 return _Expr<_Closure, _Rt>(_Closure(__v, __w)); \
1170 template<typename _Tp> \
1171 inline _Expr<_BinClos<_Name, _ValArray,_Constant, _Tp, _Tp>, \
1172 typename __fun<_Name, _Tp>::result_type> \
1173 operator _Op(const valarray<_Tp>& __v, \
1174 const typename valarray<_Tp>::value_type& __t) \
1176 typedef _BinClos<_Name, _ValArray, _Constant, _Tp, _Tp> _Closure; \
1177 typedef typename __fun<_Name, _Tp>::result_type _Rt; \
1178 return _Expr<_Closure, _Rt>(_Closure(__v, __t)); \
1181 template<typename _Tp> \
1182 inline _Expr<_BinClos<_Name, _Constant, _ValArray, _Tp, _Tp>, \
1183 typename __fun<_Name, _Tp>::result_type> \
1184 operator _Op(const typename valarray<_Tp>::value_type& __t, \
1185 const valarray<_Tp>& __v) \
1187 typedef _BinClos<_Name, _Constant, _ValArray, _Tp, _Tp> _Closure; \
1188 typedef typename __fun<_Name, _Tp>::result_type _Rt; \
1189 return _Expr<_Closure, _Rt>(_Closure(__t, __v)); \
1192_DEFINE_BINARY_OPERATOR(+, __plus)
1193_DEFINE_BINARY_OPERATOR(-, __minus)
1194_DEFINE_BINARY_OPERATOR(*, __multiplies)
1195_DEFINE_BINARY_OPERATOR(/, __divides)
1196_DEFINE_BINARY_OPERATOR(%, __modulus)
1197_DEFINE_BINARY_OPERATOR(^, __bitwise_xor)
1198_DEFINE_BINARY_OPERATOR(&, __bitwise_and)
1199_DEFINE_BINARY_OPERATOR(|, __bitwise_or)
1200_DEFINE_BINARY_OPERATOR(<<, __shift_left)
1201_DEFINE_BINARY_OPERATOR(>>, __shift_right)
1202_DEFINE_BINARY_OPERATOR(&&, __logical_and)
1203_DEFINE_BINARY_OPERATOR(||, __logical_or)
1204_DEFINE_BINARY_OPERATOR(==, __equal_to)
1205_DEFINE_BINARY_OPERATOR(!=, __not_equal_to)
1206_DEFINE_BINARY_OPERATOR(<, __less)
1207_DEFINE_BINARY_OPERATOR(>, __greater)
1208_DEFINE_BINARY_OPERATOR(<=, __less_equal)
1209_DEFINE_BINARY_OPERATOR(>=, __greater_equal)
1211#undef _DEFINE_BINARY_OPERATOR
1214#if __cplusplus >= 201103L
1247 if (
auto __n = __va.size())
1263 if (
auto __n = __va.size())
1272_GLIBCXX_END_NAMESPACE_VERSION
void swap(any &__x, any &__y) noexcept
Exchange the states of two any objects.
constexpr _Tp * __addressof(_Tp &__r) noexcept
Same as C++11 std::addressof.
size_t size() const
Return the number of elements in array.
_Tp min() const
Return the minimum element using operator<().
_Tp max() const
Return the maximum element using operator<().
valarray< _Tp > cshift(int __n) const
Return a rotated array.
void swap(valarray< _Tp > &__v) noexcept
Swap.
_Tp & operator[](size_t __i) noexcept
void resize(size_t __size, _Tp __c=_Tp())
Resize array.
_Tp sum() const
Return the sum of all elements in the array.
valarray() noexcept
Construct an empty array.
_Tp * end(valarray< _Tp > &__va) noexcept
Return an iterator pointing to one past the last element of the valarray.
valarray< _Tp > shift(int __n) const
Return a shifted array.
_Expr< _ValFunClos< _ValArray, _Tp >, _Tp > apply(_Tp __func(_Tp)) const
Apply a function to the array.
_Tp * begin(valarray< _Tp > &__va) noexcept
Return an iterator pointing to the first element of the valarray.
valarray< _Tp > & operator=(const valarray< _Tp > &__v)
Assign elements to an array.
ISO C++ entities toplevel namespace is std.
constexpr auto size(const _Container &__cont) noexcept(noexcept(__cont.size())) -> decltype(__cont.size())
Return the size of a container.
Implementation details not part of the namespace std interface.
Smart array designed to support numeric processing.
valarray< _Tp > & operator^=(const _Tp &)
Set each element e of array to e ^ t.
valarray< _Tp > & operator/=(const _Tp &)
Divide each element of array by t.
valarray(const _Tp *__restrict__, size_t)
Construct an array initialized to the first n elements of t.
valarray< _Tp > & operator|=(const valarray< _Tp > &)
Logical or corresponding elements of v with elements of array.
_UnaryOp< __unary_plus >::_Rt operator+() const
Return a new valarray by applying unary + to each element.
valarray< _Tp > & operator*=(const _Tp &)
Multiply each element of array by t.
_UnaryOp< __logical_not >::_Rt operator!() const
Return a new valarray by applying unary ! to each element.
valarray< _Tp > & operator<<=(const _Tp &)
Left shift each element e of array by t bits.
valarray< _Tp > & operator/=(const valarray< _Tp > &)
Divide elements of array by corresponding elements of v.
valarray< _Tp > & operator-=(const _Tp &)
Subtract t to each element of array.
_UnaryOp< __bitwise_not >::_Rt operator~() const
Return a new valarray by applying unary ~ to each element.
valarray< _Tp > & operator>>=(const _Tp &)
Right shift each element e of array by t bits.
valarray< _Tp > & operator-=(const valarray< _Tp > &)
Subtract corresponding elements of v from elements of array.
valarray< _Tp > & operator%=(const _Tp &)
Set each element e of array to e % t.
valarray< _Tp > & operator+=(const _Tp &)
Add t to each element of array.
valarray< _Tp > & operator>>=(const valarray< _Tp > &)
Right shift elements of array by corresponding elements of v.
valarray< _Tp > & operator+=(const valarray< _Tp > &)
Add corresponding elements of v to elements of array.
valarray< _Tp > & operator^=(const valarray< _Tp > &)
Logical xor corresponding elements of v with elements of array.
valarray< _Tp > & operator&=(const valarray< _Tp > &)
Logical and corresponding elements of v with elements of array.
valarray< _Tp > & operator*=(const valarray< _Tp > &)
Multiply elements of array by corresponding elements of v.
_UnaryOp< __negate >::_Rt operator-() const
Return a new valarray by applying unary - to each element.
valarray< _Tp > & operator%=(const valarray< _Tp > &)
Modulo elements of array by corresponding elements of v.
valarray< _Tp > & operator&=(const _Tp &)
Set each element e of array to e & t.
valarray< _Tp > & operator|=(const _Tp &)
Set each element e of array to e | t.
Reference to one-dimensional subset of an array.
Reference to multi-dimensional subset of an array.
Reference to selected subset of an array.
Reference to arbitrary subset of an array.
Class defining multi-dimensional subset of an array.
Class defining one-dimensional subset of an array.