Struct wasmtime_environ::__core::simd::Mask [−][src]
#[repr(transparent)]pub struct Mask<T, const LANES: usize>(_)
where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount;
portable_simd
)Expand description
A SIMD vector mask for LANES
elements of width specified by Element
.
The layout of this type is unspecified.
Implementations
impl<T, const LANES: usize> Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
🔬 This is a nightly-only experimental API. (portable_simd
)
portable_simd
)Construct a mask by setting all lanes to the given value.
🔬 This is a nightly-only experimental API. (portable_simd
)
portable_simd
)Converts an array to a SIMD vector.
🔬 This is a nightly-only experimental API. (portable_simd
)
portable_simd
)Converts a SIMD vector to an array.
🔬 This is a nightly-only experimental API. (portable_simd
)
portable_simd
)Converts a vector of integers to a mask, where 0 represents false
and -1
represents true
.
Safety
All lanes must be either 0 or -1.
🔬 This is a nightly-only experimental API. (portable_simd
)
portable_simd
)Converts a vector of integers to a mask, where 0 represents false
and -1
represents true
.
Panics
Panics if any lane is not 0 or -1.
🔬 This is a nightly-only experimental API. (portable_simd
)
portable_simd
)Converts the mask to a vector of integers, where 0 represents false
and -1
represents true
.
🔬 This is a nightly-only experimental API. (portable_simd
)
portable_simd
)🔬 This is a nightly-only experimental API. (portable_simd
)
portable_simd
)Tests the value of the specified lane.
Panics
Panics if lane
is greater than or equal to the number of lanes in the vector.
🔬 This is a nightly-only experimental API. (portable_simd
)
portable_simd
)🔬 This is a nightly-only experimental API. (portable_simd
)
portable_simd
)Sets the value of the specified lane.
Panics
Panics if lane
is greater than or equal to the number of lanes in the vector.
🔬 This is a nightly-only experimental API. (portable_simd
)
portable_simd
)Returns true if any lane is set, or false otherwise.
impl<T, const LANES: usize> Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
🔬 This is a nightly-only experimental API. (portable_simd
)
portable_simd
)Choose lanes from two vectors.
For each lane in the mask, choose the corresponding lane from true_values
if
that lane mask is true, and false_values
if that lane mask is false.
let a = Simd::from_array([0, 1, 2, 3]);
let b = Simd::from_array([4, 5, 6, 7]);
let mask = Mask::from_array([true, false, false, true]);
let c = mask.select(a, b);
assert_eq!(c.to_array(), [0, 5, 6, 3]);
select
can also be used on masks:
let a = Mask::<i32, 4>::from_array([true, true, false, false]);
let b = Mask::<i32, 4>::from_array([false, false, true, true]);
let mask = Mask::<i32, 4>::from_array([true, false, false, true]);
let c = mask.select(a, b);
assert_eq!(c.to_array(), [true, false, true, false]);
Trait Implementations
impl<T, const LANES: usize> BitAnd<Mask<T, LANES>> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitAnd<Mask<T, LANES>> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitAnd<Mask<T, LANES>> for bool where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitAnd<Mask<T, LANES>> for bool where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitAnd<bool> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitAnd<bool> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitAndAssign<Mask<T, LANES>> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitAndAssign<Mask<T, LANES>> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
Performs the &=
operation. Read more
impl<T, const LANES: usize> BitAndAssign<bool> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitAndAssign<bool> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
Performs the &=
operation. Read more
impl<T, const LANES: usize> BitOr<Mask<T, LANES>> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitOr<Mask<T, LANES>> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitOr<Mask<T, LANES>> for bool where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitOr<Mask<T, LANES>> for bool where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitOr<bool> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitOr<bool> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitOrAssign<Mask<T, LANES>> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitOrAssign<Mask<T, LANES>> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
Performs the |=
operation. Read more
impl<T, const LANES: usize> BitOrAssign<bool> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitOrAssign<bool> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
Performs the |=
operation. Read more
impl<T, const LANES: usize> BitXor<Mask<T, LANES>> for bool where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitXor<Mask<T, LANES>> for bool where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitXor<Mask<T, LANES>> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitXor<Mask<T, LANES>> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitXor<bool> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitXor<bool> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitXorAssign<Mask<T, LANES>> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitXorAssign<Mask<T, LANES>> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
Performs the ^=
operation. Read more
impl<T, const LANES: usize> BitXorAssign<bool> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> BitXorAssign<bool> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
Performs the ^=
operation. Read more
impl<T, const LANES: usize> Clone for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> Clone for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> Debug for Mask<T, LANES> where
T: MaskElement + Debug,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> Debug for Mask<T, LANES> where
T: MaskElement + Debug,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> Default for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> Default for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> From<[bool; LANES]> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> From<[bool; LANES]> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> From<Mask<T, LANES>> for [bool; LANES] where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> From<Mask<T, LANES>> for [bool; LANES] where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> Not for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> Not for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> PartialEq<Mask<T, LANES>> for Mask<T, LANES> where
T: MaskElement + PartialEq<T>,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> PartialEq<Mask<T, LANES>> for Mask<T, LANES> where
T: MaskElement + PartialEq<T>,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> PartialOrd<Mask<T, LANES>> for Mask<T, LANES> where
T: MaskElement + PartialOrd<T>,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> PartialOrd<Mask<T, LANES>> for Mask<T, LANES> where
T: MaskElement + PartialOrd<T>,
LaneCount<LANES>: SupportedLaneCount,
This method returns an ordering between self
and other
values if one exists. Read more
This method tests less than (for self
and other
) and is used by the <
operator. Read more
This method tests less than or equal to (for self
and other
) and is used by the <=
operator. Read more
This method tests greater than (for self
and other
) and is used by the >
operator. Read more
impl<T, const LANES: usize> Copy for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> Select<Mask<<T as SimdElement>::Mask, LANES>> for Simd<T, LANES> where
T: SimdElement,
LaneCount<LANES>: SupportedLaneCount,
impl<T, const LANES: usize> Select<Mask<T, LANES>> for Mask<T, LANES> where
T: MaskElement,
LaneCount<LANES>: SupportedLaneCount,
Auto Trait Implementations
impl<T, const LANES: usize> RefUnwindSafe for Mask<T, LANES> where
T: RefUnwindSafe,
impl<T, const LANES: usize> UnwindSafe for Mask<T, LANES> where
T: UnwindSafe,
Blanket Implementations
Mutably borrows from an owned value. Read more