E.V.E
v2023.02.15
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◆
negate
eve::negate = functor<negate_t>
inline
constexpr
Header file
#include <eve/module/core.hpp>
Callable Signatures
namespace
eve
{
// Regular overload
constexpr
auto
negate
(
value
auto
x
,
value
auto
y
)
noexcept
;
// 1
// Lanes masking
constexpr
auto
negate
[
conditional_expr
auto
c
](
value
auto
x
,
value
auto
y
)
noexcept
;
// 2
constexpr
auto
negate
[
logical_value
auto
m
](
value
auto
,
value
auto
yx
)
noexcept
;
// 2
}
eve::conditional_expr
Specifies that a type is a Conditional Expression.
Definition
conditional.hpp:28
eve::logical_value
The concept logical_value<T> is satisfied if and only if T satisfies eve::value and the element type ...
Definition
value.hpp:134
eve::value
The concept value<T> is satisfied if and only if T satisfies either eve::scalar_value or eve::simd_va...
Definition
value.hpp:34
eve::negate
constexpr auto negate
elementwise_callable object computing the product of the first parameter by the sign of the second.
Definition
negate.hpp:70
eve::translate_t
typename decltype(detail::as_translated_type(as< T >{}))::type translate_t
Returns the final translated type of T.
Definition
translation.hpp:107
eve
EVE Main Namespace.
Definition
abi.hpp:19
Parameters
x
,
y
:
arguments
.
tup
: non empty tuple of arguments.
c
:
Conditional expression
masking the operation.
m
:
Logical value
masking the operation.
Return value
The
elementwise
product of the first parameter by the sign of the second is returned.
The operation is performed conditionnaly
Example
// revision 0
#include <eve/module/core.hpp>
#include <iostream>
int
main
()
{
eve::wide
wf0
{0.0, 1.0, 2.0, 3.0, -1.0, -2.0, -3.0, -4.0};
eve::wide
wf1
{0.0, -4.0, 1.0, -1.0, 2.0, -2.0, 3.0, -3.0};
eve::wide
wi0
{0, 1, 2, 3, -1, -2, -3, -4};
eve::wide
wi1
{0, -4, 1, -1, 2, -2, 3, -3};
eve::wide
wu0
{0
u
, 1u, 2u, 3u, 4u, 5u, 6u, 7u};
eve::wide
wu1
{7u, 6u, 5u, 4u, 3u, 2u, 1u, 0
u
};
std::cout <<
"<- wf0 = "
<<
wf0
<<
"\n"
;
std::cout <<
"<- wf1 = "
<<
wf1
<<
"\n"
;
std::cout <<
"<- wi0 = "
<<
wi0
<<
"\n"
;
std::cout <<
"<- wi1 = "
<<
wi1
<<
"\n"
;
std::cout <<
"<- wu0 = "
<<
wu0
<<
"\n"
;
std::cout <<
"<- wu1 = "
<<
wu1
<<
"\n"
;
std::cout <<
"-> negate(wf0, wf1) = "
<<
eve::negate
(
wf0
,
wf1
) <<
"\n"
;
std::cout <<
"-> negate[ignore_last(2)](wf0, wf1) = "
<<
eve::negate
[
eve::ignore_last
(2)](
wf0
,
wf1
) <<
"\n"
;
std::cout <<
"-> negate[wf0 != 0](wf0, wf1) = "
<<
eve::negate
[
wf0
!= 0](
wf0
,
wf1
) <<
"\n"
;
std::cout <<
"-> negate(wu0, wu1) = "
<<
eve::negate
(
wu0
,
wu1
) <<
"\n"
;
std::cout <<
"-> negate[ignore_last(2)](wu0, wu1) = "
<<
eve::negate
[
eve::ignore_last
(2)](
wu0
,
wu1
) <<
"\n"
;
std::cout <<
"-> negate[wu0 != 0](wu0, wu1) = "
<<
eve::negate
[
wu0
!= 0](
wu0
,
wu1
) <<
"\n"
;
std::cout <<
"-> negate(wi0, wi1) = "
<<
eve::negate
(
wi0
,
wi1
) <<
"\n"
;
std::cout <<
"-> negate[ignore_last(2)](wi0, wi1) = "
<<
eve::negate
[
eve::ignore_last
(2)](
wi0
,
wi1
) <<
"\n"
;
std::cout <<
"-> negate[wi0 != 0](wi0, wi1) = "
<<
eve::negate
[
wi0
!= 0](
wi0
,
wi1
) <<
"\n"
;
}
eve::ignore_last
Conditional expression ignoring the k last lanes from a eve::simd_value.
Definition
conditional.hpp:320
eve::wide
Wrapper for SIMD registers.
Definition
wide.hpp:94
eve