# Struct std::simd::i32x4 [−][src]

#[repr(simd)]pub struct i32x4(_, _, _, _);

A 128-bit vector with 4 `i32`

lanes.

## Methods

`impl i32x4`

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`impl i32x4`

`pub const fn new(x0: i32, x1: i32, x2: i32, x3: i32) -> i32x4`

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`pub const fn new(x0: i32, x1: i32, x2: i32, x3: i32) -> i32x4`

Creates a new instance with each vector elements initialized with the provided values.

`pub const fn lanes() -> usize`

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`pub const fn lanes() -> usize`

Returns the number of vector lanes.

`pub const fn splat(value: i32) -> i32x4`

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`pub const fn splat(value: i32) -> i32x4`

Constructs a new instance with each element initialized to
`value`

.

`pub fn extract(self, index: usize) -> i32`

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`pub fn extract(self, index: usize) -> i32`

`pub unsafe fn extract_unchecked(self, index: usize) -> i32`

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`pub unsafe fn extract_unchecked(self, index: usize) -> i32`

`pub fn replace(self, index: usize, new_value: i32) -> i32x4`

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`pub fn replace(self, index: usize, new_value: i32) -> i32x4`

Returns a new vector where the value at `index`

is replaced by `new_value`

.

# Panics

If `index >= Self::lanes()`

.

`pub unsafe fn replace_unchecked(self, index: usize, new_value: i32) -> i32x4`

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`pub unsafe fn replace_unchecked(self, index: usize, new_value: i32) -> i32x4`

Returns a new vector where the value at `index`

is replaced by `new_value`

.

# Precondition

If `index >= Self::lanes()`

the behavior is undefined.

`impl i32x4`

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`impl i32x4`

`pub fn store_aligned(self, slice: &mut [i32])`

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`pub fn store_aligned(self, slice: &mut [i32])`

Writes the values of the vector to the `slice`

.

# Panics

If `slice.len() < Self::lanes()`

or `&slice[0]`

is not
aligned to an `align_of::<Self>()`

boundary.

`pub fn store_unaligned(self, slice: &mut [i32])`

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`pub fn store_unaligned(self, slice: &mut [i32])`

`pub unsafe fn store_aligned_unchecked(self, slice: &mut [i32])`

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`pub unsafe fn store_aligned_unchecked(self, slice: &mut [i32])`

Writes the values of the vector to the `slice`

.

# Precondition

If `slice.len() < Self::lanes()`

or `&slice[0]`

is not
aligned to an `align_of::<Self>()`

boundary, the behavior is
undefined.

`pub unsafe fn store_unaligned_unchecked(self, slice: &mut [i32])`

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`pub unsafe fn store_unaligned_unchecked(self, slice: &mut [i32])`

Writes the values of the vector to the `slice`

.

# Precondition

If `slice.len() < Self::lanes()`

the behavior is undefined.

`pub fn load_aligned(slice: &[i32]) -> i32x4`

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`pub fn load_aligned(slice: &[i32]) -> i32x4`

Instantiates a new vector with the values of the `slice`

.

# Panics

If `slice.len() < Self::lanes()`

or `&slice[0]`

is not aligned
to an `align_of::<Self>()`

boundary.

`pub fn load_unaligned(slice: &[i32]) -> i32x4`

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`pub fn load_unaligned(slice: &[i32]) -> i32x4`

`pub unsafe fn load_aligned_unchecked(slice: &[i32]) -> i32x4`

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`pub unsafe fn load_aligned_unchecked(slice: &[i32]) -> i32x4`

Instantiates a new vector with the values of the `slice`

.

# Precondition

If `slice.len() < Self::lanes()`

or `&slice[0]`

is not aligned
to an `align_of::<Self>()`

boundary, the behavior is undefined.

`pub unsafe fn load_unaligned_unchecked(slice: &[i32]) -> i32x4`

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`pub unsafe fn load_unaligned_unchecked(slice: &[i32]) -> i32x4`

Instantiates a new vector with the values of the `slice`

.

# Precondition

If `slice.len() < Self::lanes()`

the behavior is undefined.

`impl i32x4`

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`impl i32x4`

`pub fn eq(self, other: i32x4) -> m32x4`

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`pub fn eq(self, other: i32x4) -> m32x4`

Lane-wise equality comparison.

`pub fn ne(self, other: i32x4) -> m32x4`

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`pub fn ne(self, other: i32x4) -> m32x4`

Lane-wise inequality comparison.

`pub fn lt(self, other: i32x4) -> m32x4`

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`pub fn lt(self, other: i32x4) -> m32x4`

Lane-wise less-than comparison.

`pub fn le(self, other: i32x4) -> m32x4`

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`pub fn le(self, other: i32x4) -> m32x4`

Lane-wise less-than-or-equals comparison.

`pub fn gt(self, other: i32x4) -> m32x4`

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`pub fn gt(self, other: i32x4) -> m32x4`

Lane-wise greater-than comparison.

`pub fn ge(self, other: i32x4) -> m32x4`

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`pub fn ge(self, other: i32x4) -> m32x4`

Lane-wise greater-than-or-equals comparison.

`impl i32x4`

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`impl i32x4`

`pub fn wrapping_sum(self) -> i32`

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`pub fn wrapping_sum(self) -> i32`

Horizontal sum of the vector elements.

The intrinsic performs a tree-reduction of the vector elements. That is, for an 8 element vector:

((x0 + x1) + (x2 + x3)) + ((x4 + x5) + (x6 + x7))

# Integer vectors

If an operation overflows it returns the mathematical result
modulo `2^n`

where `n`

is the number of times it overflows.

# Floating-point vectors

If one of the vector element is `NaN`

the reduction returns
`NaN`

.

`pub fn wrapping_product(self) -> i32`

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`pub fn wrapping_product(self) -> i32`

Horizontal product of the vector elements.

The intrinsic performs a tree-reduction of the vector elements. That is, for an 8 element vector:

((x0 * x1) * (x2 * x3)) * ((x4 * x5) * (x6 * x7))

# Integer vectors

If an operation overflows it returns the mathematical result
modulo `2^n`

where `n`

is the number of times it overflows.

# Floating-point vectors

If one of the vector element is `NaN`

the reduction returns
`NaN`

.

`impl i32x4`

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`impl i32x4`

`pub fn max_element(self) -> i32`

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`pub fn max_element(self) -> i32`

Largest vector element value.

`pub fn min_element(self) -> i32`

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`pub fn min_element(self) -> i32`

Smallest vector element value.

`impl i32x4`

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`impl i32x4`

`pub fn and(self) -> i32`

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`pub fn and(self) -> i32`

Lane-wise bitwise `and`

of the vector elements.

`pub fn or(self) -> i32`

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`pub fn or(self) -> i32`

Lane-wise bitwise `or`

of the vector elements.

`pub fn xor(self) -> i32`

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`pub fn xor(self) -> i32`

Lane-wise bitwise `xor`

of the vector elements.

`impl i32x4`

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`impl i32x4`

`pub fn min(self, x: i32x4) -> i32x4`

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`pub fn min(self, x: i32x4) -> i32x4`

Minimum of two vectors.

Returns a new vector containing the minimum value of each of the input vector lanes.

`pub fn max(self, x: i32x4) -> i32x4`

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`pub fn max(self, x: i32x4) -> i32x4`

Maximum of two vectors.

Returns a new vector containing the minimum value of each of the input vector lanes.

## Trait Implementations

`impl RemAssign<i32x4> for i32x4`

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`impl RemAssign<i32x4> for i32x4`

`fn rem_assign(&mut self, other: i32x4)`

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`fn rem_assign(&mut self, other: i32x4)`

Performs the `%=`

operation.

`impl RemAssign<i32> for i32x4`

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`impl RemAssign<i32> for i32x4`

`fn rem_assign(&mut self, other: i32)`

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`fn rem_assign(&mut self, other: i32)`

Performs the `%=`

operation.

`impl DivAssign<i32x4> for i32x4`

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`impl DivAssign<i32x4> for i32x4`

`fn div_assign(&mut self, other: i32x4)`

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`fn div_assign(&mut self, other: i32x4)`

Performs the `/=`

operation.

`impl DivAssign<i32> for i32x4`

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`impl DivAssign<i32> for i32x4`

`fn div_assign(&mut self, other: i32)`

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`fn div_assign(&mut self, other: i32)`

Performs the `/=`

operation.

`impl MulAssign<i32> for i32x4`

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`impl MulAssign<i32> for i32x4`

`fn mul_assign(&mut self, other: i32)`

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`fn mul_assign(&mut self, other: i32)`

Performs the `*=`

operation.

`impl MulAssign<i32x4> for i32x4`

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`impl MulAssign<i32x4> for i32x4`

`fn mul_assign(&mut self, other: i32x4)`

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`fn mul_assign(&mut self, other: i32x4)`

Performs the `*=`

operation.

`impl SubAssign<i32> for i32x4`

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`impl SubAssign<i32> for i32x4`

`fn sub_assign(&mut self, other: i32)`

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`fn sub_assign(&mut self, other: i32)`

Performs the `-=`

operation.

`impl SubAssign<i32x4> for i32x4`

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`impl SubAssign<i32x4> for i32x4`

`fn sub_assign(&mut self, other: i32x4)`

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`fn sub_assign(&mut self, other: i32x4)`

Performs the `-=`

operation.

`impl From<u32x4> for i32x4`

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`impl From<u32x4> for i32x4`

`impl From<i32x4> for u32x4`

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`impl From<i32x4> for u32x4`

`impl From<i32x4> for i16x4`

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`impl From<i32x4> for i16x4`

`impl From<f64x4> for i32x4`

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`impl From<f64x4> for i32x4`

`impl From<i8x4> for i32x4`

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`impl From<i8x4> for i32x4`

`impl From<m8x4> for i32x4`

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`impl From<m8x4> for i32x4`

`impl From<i32x4> for i64x4`

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`impl From<i32x4> for i64x4`

`impl From<i32x4> for f32x4`

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`impl From<i32x4> for f32x4`

`impl From<i32x4> for u16x4`

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`impl From<i32x4> for u16x4`

`impl From<i64x4> for i32x4`

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`impl From<i64x4> for i32x4`

`impl From<m64x4> for i32x4`

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`impl From<m64x4> for i32x4`

`impl From<i32x4> for u8x4`

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`impl From<i32x4> for u8x4`

`impl From<m32x4> for i32x4`

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`impl From<m32x4> for i32x4`

`impl From<m16x4> for i32x4`

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`impl From<m16x4> for i32x4`

`impl From<i16x4> for i32x4`

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`impl From<i16x4> for i32x4`

`impl From<f32x4> for i32x4`

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`impl From<f32x4> for i32x4`

`impl From<u64x4> for i32x4`

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`impl From<u64x4> for i32x4`

`impl From<u8x4> for i32x4`

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`impl From<u8x4> for i32x4`

`impl From<i32x4> for i8x4`

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`impl From<i32x4> for i8x4`

`impl From<i32x4> for u64x4`

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`impl From<i32x4> for u64x4`

`impl From<i32x4> for f64x4`

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`impl From<i32x4> for f64x4`

`impl From<u16x4> for i32x4`

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`impl From<u16x4> for i32x4`

`impl AddAssign<i32> for i32x4`

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`impl AddAssign<i32> for i32x4`

`fn add_assign(&mut self, other: i32)`

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`fn add_assign(&mut self, other: i32)`

Performs the `+=`

operation.

`impl AddAssign<i32x4> for i32x4`

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`impl AddAssign<i32x4> for i32x4`

`fn add_assign(&mut self, other: i32x4)`

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`fn add_assign(&mut self, other: i32x4)`

Performs the `+=`

operation.

`impl Neg for i32x4`

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`impl Neg for i32x4`

`type Output = i32x4`

The resulting type after applying the `-`

operator.

`fn neg(self) -> i32x4`

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`fn neg(self) -> i32x4`

Performs the unary `-`

operation.

`impl ShrAssign<u64> for i32x4`

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`impl ShrAssign<u64> for i32x4`

`fn shr_assign(&mut self, other: u64)`

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`fn shr_assign(&mut self, other: u64)`

Performs the `>>=`

operation.

`impl ShrAssign<i32x4> for i32x4`

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`impl ShrAssign<i32x4> for i32x4`

`fn shr_assign(&mut self, other: i32x4)`

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`fn shr_assign(&mut self, other: i32x4)`

Performs the `>>=`

operation.

`impl ShrAssign<i16> for i32x4`

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`impl ShrAssign<i16> for i32x4`

`fn shr_assign(&mut self, other: i16)`

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`fn shr_assign(&mut self, other: i16)`

Performs the `>>=`

operation.

`impl ShrAssign<usize> for i32x4`

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`impl ShrAssign<usize> for i32x4`

`fn shr_assign(&mut self, other: usize)`

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`fn shr_assign(&mut self, other: usize)`

Performs the `>>=`

operation.

`impl ShrAssign<i64> for i32x4`

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`impl ShrAssign<i64> for i32x4`

`fn shr_assign(&mut self, other: i64)`

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`fn shr_assign(&mut self, other: i64)`

Performs the `>>=`

operation.

`impl ShrAssign<i32> for i32x4`

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`impl ShrAssign<i32> for i32x4`

`fn shr_assign(&mut self, other: i32)`

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`fn shr_assign(&mut self, other: i32)`

Performs the `>>=`

operation.

`impl ShrAssign<u32> for i32x4`

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`impl ShrAssign<u32> for i32x4`

`fn shr_assign(&mut self, other: u32)`

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`fn shr_assign(&mut self, other: u32)`

Performs the `>>=`

operation.

`impl ShrAssign<isize> for i32x4`

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`impl ShrAssign<isize> for i32x4`

`fn shr_assign(&mut self, other: isize)`

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`fn shr_assign(&mut self, other: isize)`

Performs the `>>=`

operation.

`impl ShrAssign<i8> for i32x4`

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`impl ShrAssign<i8> for i32x4`

`fn shr_assign(&mut self, other: i8)`

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`fn shr_assign(&mut self, other: i8)`

Performs the `>>=`

operation.

`impl ShrAssign<u8> for i32x4`

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`impl ShrAssign<u8> for i32x4`

`fn shr_assign(&mut self, other: u8)`

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`fn shr_assign(&mut self, other: u8)`

Performs the `>>=`

operation.

`impl ShrAssign<u16> for i32x4`

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`impl ShrAssign<u16> for i32x4`

`fn shr_assign(&mut self, other: u16)`

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`fn shr_assign(&mut self, other: u16)`

Performs the `>>=`

operation.

`impl Sub<i32> for i32x4`

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`impl Sub<i32> for i32x4`

`type Output = i32x4`

The resulting type after applying the `-`

operator.

`fn sub(self, other: i32) -> i32x4`

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`fn sub(self, other: i32) -> i32x4`

Performs the `-`

operation.

`impl Sub<i32x4> for i32`

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`impl Sub<i32x4> for i32`

`type Output = i32x4`

The resulting type after applying the `-`

operator.

`fn sub(self, other: i32x4) -> i32x4`

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`fn sub(self, other: i32x4) -> i32x4`

Performs the `-`

operation.

`impl Sub<i32x4> for i32x4`

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`impl Sub<i32x4> for i32x4`

`type Output = i32x4`

The resulting type after applying the `-`

operator.

`fn sub(self, other: i32x4) -> i32x4`

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`fn sub(self, other: i32x4) -> i32x4`

Performs the `-`

operation.

`impl UpperHex for i32x4`

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`impl UpperHex for i32x4`

`fn fmt(&self, f: &mut Formatter) -> Result<(), Error>`

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`fn fmt(&self, f: &mut Formatter) -> Result<(), Error>`

Formats the value using the given formatter.

`impl Shr<u32> for i32x4`

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`impl Shr<u32> for i32x4`

`type Output = i32x4`

The resulting type after applying the `>>`

operator.

`fn shr(self, other: u32) -> i32x4`

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`fn shr(self, other: u32) -> i32x4`

Performs the `>>`

operation.

`impl Shr<i16> for i32x4`

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`impl Shr<i16> for i32x4`

`type Output = i32x4`

The resulting type after applying the `>>`

operator.

`fn shr(self, other: i16) -> i32x4`

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`fn shr(self, other: i16) -> i32x4`

Performs the `>>`

operation.

`impl Shr<i8> for i32x4`

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`impl Shr<i8> for i32x4`

`type Output = i32x4`

The resulting type after applying the `>>`

operator.

`fn shr(self, other: i8) -> i32x4`

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`fn shr(self, other: i8) -> i32x4`

Performs the `>>`

operation.

`impl Shr<isize> for i32x4`

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`impl Shr<isize> for i32x4`

`type Output = i32x4`

The resulting type after applying the `>>`

operator.

`fn shr(self, other: isize) -> i32x4`

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`fn shr(self, other: isize) -> i32x4`

Performs the `>>`

operation.

`impl Shr<u64> for i32x4`

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`impl Shr<u64> for i32x4`

`type Output = i32x4`

The resulting type after applying the `>>`

operator.

`fn shr(self, other: u64) -> i32x4`

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`fn shr(self, other: u64) -> i32x4`

Performs the `>>`

operation.

`impl Shr<i32> for i32x4`

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`impl Shr<i32> for i32x4`

`type Output = i32x4`

The resulting type after applying the `>>`

operator.

`fn shr(self, other: i32) -> i32x4`

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`fn shr(self, other: i32) -> i32x4`

Performs the `>>`

operation.

`impl Shr<u16> for i32x4`

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`impl Shr<u16> for i32x4`

`type Output = i32x4`

The resulting type after applying the `>>`

operator.

`fn shr(self, other: u16) -> i32x4`

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`fn shr(self, other: u16) -> i32x4`

Performs the `>>`

operation.

`impl Shr<u8> for i32x4`

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`impl Shr<u8> for i32x4`

`type Output = i32x4`

The resulting type after applying the `>>`

operator.

`fn shr(self, other: u8) -> i32x4`

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`fn shr(self, other: u8) -> i32x4`

Performs the `>>`

operation.

`impl Shr<i32x4> for i32x4`

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`impl Shr<i32x4> for i32x4`

`type Output = i32x4`

The resulting type after applying the `>>`

operator.

`fn shr(self, other: i32x4) -> i32x4`

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`fn shr(self, other: i32x4) -> i32x4`

Performs the `>>`

operation.

`impl Shr<i64> for i32x4`

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`impl Shr<i64> for i32x4`

`type Output = i32x4`

The resulting type after applying the `>>`

operator.

`fn shr(self, other: i64) -> i32x4`

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`fn shr(self, other: i64) -> i32x4`

Performs the `>>`

operation.

`impl Shr<usize> for i32x4`

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`impl Shr<usize> for i32x4`

`type Output = i32x4`

The resulting type after applying the `>>`

operator.

`fn shr(self, other: usize) -> i32x4`

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`fn shr(self, other: usize) -> i32x4`

Performs the `>>`

operation.

`impl Clone for i32x4`

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`impl Clone for i32x4`

`fn clone(&self) -> i32x4`

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`fn clone(&self) -> i32x4`

Returns a copy of the value. Read more

`fn clone_from(&mut self, source: &Self)`

1.0.0[src]

`fn clone_from(&mut self, source: &Self)`

Performs copy-assignment from `source`

. Read more

`impl PartialOrd<i32x4> for i32x4`

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`impl PartialOrd<i32x4> for i32x4`

`fn partial_cmp(&self, other: &i32x4) -> Option<Ordering>`

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`fn partial_cmp(&self, other: &i32x4) -> Option<Ordering>`

This method returns an ordering between `self`

and `other`

values if one exists. Read more

`fn lt(&self, other: &i32x4) -> bool`

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`fn lt(&self, other: &i32x4) -> bool`

This method tests less than (for `self`

and `other`

) and is used by the `<`

operator. Read more

`fn le(&self, other: &i32x4) -> bool`

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`fn le(&self, other: &i32x4) -> bool`

This method tests less than or equal to (for `self`

and `other`

) and is used by the `<=`

operator. Read more

`fn gt(&self, other: &i32x4) -> bool`

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`fn gt(&self, other: &i32x4) -> bool`

This method tests greater than (for `self`

and `other`

) and is used by the `>`

operator. Read more

`fn ge(&self, other: &i32x4) -> bool`

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`fn ge(&self, other: &i32x4) -> bool`

This method tests greater than or equal to (for `self`

and `other`

) and is used by the `>=`

operator. Read more

`impl Octal for i32x4`

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`impl Octal for i32x4`

`fn fmt(&self, f: &mut Formatter) -> Result<(), Error>`

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`fn fmt(&self, f: &mut Formatter) -> Result<(), Error>`

Formats the value using the given formatter.

`impl BitXor<i32> for i32x4`

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`impl BitXor<i32> for i32x4`

`type Output = i32x4`

The resulting type after applying the `^`

operator.

`fn bitxor(self, other: i32) -> i32x4`

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`fn bitxor(self, other: i32) -> i32x4`

Performs the `^`

operation.

`impl BitXor<i32x4> for i32x4`

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`impl BitXor<i32x4> for i32x4`

`type Output = i32x4`

The resulting type after applying the `^`

operator.

`fn bitxor(self, other: i32x4) -> i32x4`

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`fn bitxor(self, other: i32x4) -> i32x4`

Performs the `^`

operation.

`impl BitXor<i32x4> for i32`

[src]

`impl BitXor<i32x4> for i32`

`type Output = i32x4`

The resulting type after applying the `^`

operator.

`fn bitxor(self, other: i32x4) -> i32x4`

[src]

`fn bitxor(self, other: i32x4) -> i32x4`

Performs the `^`

operation.

`impl Not for i32x4`

[src]

`impl Not for i32x4`

`type Output = i32x4`

The resulting type after applying the `!`

operator.

`fn not(self) -> i32x4`

[src]

`fn not(self) -> i32x4`

Performs the unary `!`

operation.

`impl Eq for i32x4`

[src]

`impl Eq for i32x4`

`impl Copy for i32x4`

[src]

`impl Copy for i32x4`

`impl Hash for i32x4`

[src]

`impl Hash for i32x4`

`fn hash<H>(&self, state: &mut H) where`

H: Hasher,

[src]

`fn hash<H>(&self, state: &mut H) where`

H: Hasher,

Feeds this value into the given [`Hasher`

]. Read more

`fn hash_slice<H>(data: &[Self], state: &mut H) where`

H: Hasher,

1.3.0[src]

`fn hash_slice<H>(data: &[Self], state: &mut H) where`

H: Hasher,

Feeds a slice of this type into the given [`Hasher`

]. Read more

`impl PartialEq<i32x4> for i32x4`

[src]

`impl PartialEq<i32x4> for i32x4`

`fn eq(&self, other: &i32x4) -> bool`

[src]

`fn eq(&self, other: &i32x4) -> bool`

This method tests for `self`

and `other`

values to be equal, and is used by `==`

. Read more

`fn ne(&self, other: &i32x4) -> bool`

[src]

`fn ne(&self, other: &i32x4) -> bool`

This method tests for `!=`

.

`impl Rem<i32x4> for i32x4`

[src]

`impl Rem<i32x4> for i32x4`

`type Output = i32x4`

The resulting type after applying the `%`

operator.

`fn rem(self, other: i32x4) -> i32x4`

[src]

`fn rem(self, other: i32x4) -> i32x4`

Performs the `%`

operation.

`impl Rem<i32x4> for i32`

[src]

`impl Rem<i32x4> for i32`

`type Output = i32x4`

The resulting type after applying the `%`

operator.

`fn rem(self, other: i32x4) -> i32x4`

[src]

`fn rem(self, other: i32x4) -> i32x4`

Performs the `%`

operation.

`impl Rem<i32> for i32x4`

[src]

`impl Rem<i32> for i32x4`

`type Output = i32x4`

The resulting type after applying the `%`

operator.

`fn rem(self, other: i32) -> i32x4`

[src]

`fn rem(self, other: i32) -> i32x4`

Performs the `%`

operation.

`impl Mul<i32> for i32x4`

[src]

`impl Mul<i32> for i32x4`

`type Output = i32x4`

The resulting type after applying the `*`

operator.

`fn mul(self, other: i32) -> i32x4`

[src]

`fn mul(self, other: i32) -> i32x4`

Performs the `*`

operation.

`impl Mul<i32x4> for i32x4`

[src]

`impl Mul<i32x4> for i32x4`

`type Output = i32x4`

The resulting type after applying the `*`

operator.

`fn mul(self, other: i32x4) -> i32x4`

[src]

`fn mul(self, other: i32x4) -> i32x4`

Performs the `*`

operation.

`impl Mul<i32x4> for i32`

[src]

`impl Mul<i32x4> for i32`

`type Output = i32x4`

The resulting type after applying the `*`

operator.

`fn mul(self, other: i32x4) -> i32x4`

[src]

`fn mul(self, other: i32x4) -> i32x4`

Performs the `*`

operation.

`impl LowerHex for i32x4`

[src]

`impl LowerHex for i32x4`

`fn fmt(&self, f: &mut Formatter) -> Result<(), Error>`

[src]

`fn fmt(&self, f: &mut Formatter) -> Result<(), Error>`

Formats the value using the given formatter.

`impl Shl<i16> for i32x4`

[src]

`impl Shl<i16> for i32x4`

`type Output = i32x4`

The resulting type after applying the `<<`

operator.

`fn shl(self, other: i16) -> i32x4`

[src]

`fn shl(self, other: i16) -> i32x4`

Performs the `<<`

operation.

`impl Shl<i32x4> for i32x4`

[src]

`impl Shl<i32x4> for i32x4`

`type Output = i32x4`

The resulting type after applying the `<<`

operator.

`fn shl(self, other: i32x4) -> i32x4`

[src]

`fn shl(self, other: i32x4) -> i32x4`

Performs the `<<`

operation.

`impl Shl<i32> for i32x4`

[src]

`impl Shl<i32> for i32x4`

`type Output = i32x4`

The resulting type after applying the `<<`

operator.

`fn shl(self, other: i32) -> i32x4`

[src]

`fn shl(self, other: i32) -> i32x4`

Performs the `<<`

operation.

`impl Shl<isize> for i32x4`

[src]

`impl Shl<isize> for i32x4`

`type Output = i32x4`

The resulting type after applying the `<<`

operator.

`fn shl(self, other: isize) -> i32x4`

[src]

`fn shl(self, other: isize) -> i32x4`

Performs the `<<`

operation.

`impl Shl<u8> for i32x4`

[src]

`impl Shl<u8> for i32x4`

`type Output = i32x4`

The resulting type after applying the `<<`

operator.

`fn shl(self, other: u8) -> i32x4`

[src]

`fn shl(self, other: u8) -> i32x4`

Performs the `<<`

operation.

`impl Shl<i8> for i32x4`

[src]

`impl Shl<i8> for i32x4`

`type Output = i32x4`

The resulting type after applying the `<<`

operator.

`fn shl(self, other: i8) -> i32x4`

[src]

`fn shl(self, other: i8) -> i32x4`

Performs the `<<`

operation.

`impl Shl<u32> for i32x4`

[src]

`impl Shl<u32> for i32x4`

`type Output = i32x4`

The resulting type after applying the `<<`

operator.

`fn shl(self, other: u32) -> i32x4`

[src]

`fn shl(self, other: u32) -> i32x4`

Performs the `<<`

operation.

`impl Shl<u64> for i32x4`

[src]

`impl Shl<u64> for i32x4`

`type Output = i32x4`

The resulting type after applying the `<<`

operator.

`fn shl(self, other: u64) -> i32x4`

[src]

`fn shl(self, other: u64) -> i32x4`

Performs the `<<`

operation.

`impl Shl<u16> for i32x4`

[src]

`impl Shl<u16> for i32x4`

`type Output = i32x4`

The resulting type after applying the `<<`

operator.

`fn shl(self, other: u16) -> i32x4`

[src]

`fn shl(self, other: u16) -> i32x4`

Performs the `<<`

operation.

`impl Shl<usize> for i32x4`

[src]

`impl Shl<usize> for i32x4`

`type Output = i32x4`

The resulting type after applying the `<<`

operator.

`fn shl(self, other: usize) -> i32x4`

[src]

`fn shl(self, other: usize) -> i32x4`

Performs the `<<`

operation.

`impl Shl<i64> for i32x4`

[src]

`impl Shl<i64> for i32x4`

`type Output = i32x4`

The resulting type after applying the `<<`

operator.

`fn shl(self, other: i64) -> i32x4`

[src]

`fn shl(self, other: i64) -> i32x4`

Performs the `<<`

operation.

`impl BitAnd<i32x4> for i32x4`

[src]

`impl BitAnd<i32x4> for i32x4`

`type Output = i32x4`

The resulting type after applying the `&`

operator.

`fn bitand(self, other: i32x4) -> i32x4`

[src]

`fn bitand(self, other: i32x4) -> i32x4`

Performs the `&`

operation.

`impl BitAnd<i32x4> for i32`

[src]

`impl BitAnd<i32x4> for i32`

`type Output = i32x4`

The resulting type after applying the `&`

operator.

`fn bitand(self, other: i32x4) -> i32x4`

[src]

`fn bitand(self, other: i32x4) -> i32x4`

Performs the `&`

operation.

`impl BitAnd<i32> for i32x4`

[src]

`impl BitAnd<i32> for i32x4`

`type Output = i32x4`

The resulting type after applying the `&`

operator.

`fn bitand(self, other: i32) -> i32x4`

[src]

`fn bitand(self, other: i32) -> i32x4`

Performs the `&`

operation.

`impl Default for i32x4`

[src]

`impl Default for i32x4`

`impl ShlAssign<u64> for i32x4`

[src]

`impl ShlAssign<u64> for i32x4`

`fn shl_assign(&mut self, other: u64)`

[src]

`fn shl_assign(&mut self, other: u64)`

Performs the `<<=`

operation.

`impl ShlAssign<u16> for i32x4`

[src]

`impl ShlAssign<u16> for i32x4`

`fn shl_assign(&mut self, other: u16)`

[src]

`fn shl_assign(&mut self, other: u16)`

Performs the `<<=`

operation.

`impl ShlAssign<i8> for i32x4`

[src]

`impl ShlAssign<i8> for i32x4`

`fn shl_assign(&mut self, other: i8)`

[src]

`fn shl_assign(&mut self, other: i8)`

Performs the `<<=`

operation.

`impl ShlAssign<i16> for i32x4`

[src]

`impl ShlAssign<i16> for i32x4`

`fn shl_assign(&mut self, other: i16)`

[src]

`fn shl_assign(&mut self, other: i16)`

Performs the `<<=`

operation.

`impl ShlAssign<i32x4> for i32x4`

[src]

`impl ShlAssign<i32x4> for i32x4`

`fn shl_assign(&mut self, other: i32x4)`

[src]

`fn shl_assign(&mut self, other: i32x4)`

Performs the `<<=`

operation.

`impl ShlAssign<i64> for i32x4`

[src]

`impl ShlAssign<i64> for i32x4`

`fn shl_assign(&mut self, other: i64)`

[src]

`fn shl_assign(&mut self, other: i64)`

Performs the `<<=`

operation.

`impl ShlAssign<u32> for i32x4`

[src]

`impl ShlAssign<u32> for i32x4`

`fn shl_assign(&mut self, other: u32)`

[src]

`fn shl_assign(&mut self, other: u32)`

Performs the `<<=`

operation.

`impl ShlAssign<i32> for i32x4`

[src]

`impl ShlAssign<i32> for i32x4`

`fn shl_assign(&mut self, other: i32)`

[src]

`fn shl_assign(&mut self, other: i32)`

Performs the `<<=`

operation.

`impl ShlAssign<u8> for i32x4`

[src]

`impl ShlAssign<u8> for i32x4`

`fn shl_assign(&mut self, other: u8)`

[src]

`fn shl_assign(&mut self, other: u8)`

Performs the `<<=`

operation.

`impl ShlAssign<usize> for i32x4`

[src]

`impl ShlAssign<usize> for i32x4`

`fn shl_assign(&mut self, other: usize)`

[src]

`fn shl_assign(&mut self, other: usize)`

Performs the `<<=`

operation.

`impl ShlAssign<isize> for i32x4`

[src]

`impl ShlAssign<isize> for i32x4`

`fn shl_assign(&mut self, other: isize)`

[src]

`fn shl_assign(&mut self, other: isize)`

Performs the `<<=`

operation.

`impl BitXorAssign<i32x4> for i32x4`

[src]

`impl BitXorAssign<i32x4> for i32x4`

`fn bitxor_assign(&mut self, other: i32x4)`

[src]

`fn bitxor_assign(&mut self, other: i32x4)`

Performs the `^=`

operation.

`impl BitXorAssign<i32> for i32x4`

[src]

`impl BitXorAssign<i32> for i32x4`

`fn bitxor_assign(&mut self, other: i32)`

[src]

`fn bitxor_assign(&mut self, other: i32)`

Performs the `^=`

operation.

`impl Div<i32> for i32x4`

[src]

`impl Div<i32> for i32x4`

`type Output = i32x4`

The resulting type after applying the `/`

operator.

`fn div(self, other: i32) -> i32x4`

[src]

`fn div(self, other: i32) -> i32x4`

Performs the `/`

operation.

`impl Div<i32x4> for i32`

[src]

`impl Div<i32x4> for i32`

`type Output = i32x4`

The resulting type after applying the `/`

operator.

`fn div(self, other: i32x4) -> i32x4`

[src]

`fn div(self, other: i32x4) -> i32x4`

Performs the `/`

operation.

`impl Div<i32x4> for i32x4`

[src]

`impl Div<i32x4> for i32x4`

`type Output = i32x4`

The resulting type after applying the `/`

operator.

`fn div(self, other: i32x4) -> i32x4`

[src]

`fn div(self, other: i32x4) -> i32x4`

Performs the `/`

operation.

`impl FromBits<i32x4> for u16x8`

[src]

`impl FromBits<i32x4> for u16x8`

`impl FromBits<i32x4> for u32x4`

[src]

`impl FromBits<i32x4> for u32x4`

`impl FromBits<i32x4> for u8x16`

[src]

`impl FromBits<i32x4> for u8x16`

`impl FromBits<i8x16> for i32x4`

[src]

`impl FromBits<i8x16> for i32x4`

`impl FromBits<i64x2> for i32x4`

[src]

`impl FromBits<i64x2> for i32x4`

`impl FromBits<i32x4> for u64x2`

[src]

`impl FromBits<i32x4> for u64x2`

`impl FromBits<__m128d> for i32x4`

[src]

`impl FromBits<__m128d> for i32x4`

`impl FromBits<u16x8> for i32x4`

[src]

`impl FromBits<u16x8> for i32x4`

`impl FromBits<m16x8> for i32x4`

[src]

`impl FromBits<m16x8> for i32x4`

`impl FromBits<i32x4> for f64x2`

[src]

`impl FromBits<i32x4> for f64x2`

`impl FromBits<m32x4> for i32x4`

[src]

`impl FromBits<m32x4> for i32x4`

`impl FromBits<f64x2> for i32x4`

[src]

`impl FromBits<f64x2> for i32x4`

`impl FromBits<u32x4> for i32x4`

[src]

`impl FromBits<u32x4> for i32x4`

`impl FromBits<f32x4> for i32x4`

[src]

`impl FromBits<f32x4> for i32x4`

`impl FromBits<i32x4> for i8x16`

[src]

`impl FromBits<i32x4> for i8x16`

`impl FromBits<i16x8> for i32x4`

[src]

`impl FromBits<i16x8> for i32x4`

`impl FromBits<m8x16> for i32x4`

[src]

`impl FromBits<m8x16> for i32x4`

`impl FromBits<u64x2> for i32x4`

[src]

`impl FromBits<u64x2> for i32x4`

`impl FromBits<i32x4> for i16x8`

[src]

`impl FromBits<i32x4> for i16x8`

`impl FromBits<m64x2> for i32x4`

[src]

`impl FromBits<m64x2> for i32x4`

`impl FromBits<__m128> for i32x4`

[src]

`impl FromBits<__m128> for i32x4`

`impl FromBits<i32x4> for i64x2`

[src]

`impl FromBits<i32x4> for i64x2`

`impl FromBits<__m128i> for i32x4`

[src]

`impl FromBits<__m128i> for i32x4`

`impl FromBits<i32x4> for f32x4`

[src]

`impl FromBits<i32x4> for f32x4`

`impl FromBits<u8x16> for i32x4`

[src]

`impl FromBits<u8x16> for i32x4`

`impl BitOrAssign<i32x4> for i32x4`

[src]

`impl BitOrAssign<i32x4> for i32x4`

`fn bitor_assign(&mut self, other: i32x4)`

[src]

`fn bitor_assign(&mut self, other: i32x4)`

Performs the `|=`

operation.

`impl BitOrAssign<i32> for i32x4`

[src]

`impl BitOrAssign<i32> for i32x4`

`fn bitor_assign(&mut self, other: i32)`

[src]

`fn bitor_assign(&mut self, other: i32)`

Performs the `|=`

operation.

`impl BitAndAssign<i32x4> for i32x4`

[src]

`impl BitAndAssign<i32x4> for i32x4`

`fn bitand_assign(&mut self, other: i32x4)`

[src]

`fn bitand_assign(&mut self, other: i32x4)`

Performs the `&=`

operation.

`impl BitAndAssign<i32> for i32x4`

[src]

`impl BitAndAssign<i32> for i32x4`

`fn bitand_assign(&mut self, other: i32)`

[src]

`fn bitand_assign(&mut self, other: i32)`

Performs the `&=`

operation.

`impl Binary for i32x4`

[src]

`impl Binary for i32x4`

`fn fmt(&self, f: &mut Formatter) -> Result<(), Error>`

[src]

`fn fmt(&self, f: &mut Formatter) -> Result<(), Error>`

Formats the value using the given formatter.

`impl Add<i32> for i32x4`

[src]

`impl Add<i32> for i32x4`

`type Output = i32x4`

The resulting type after applying the `+`

operator.

`fn add(self, other: i32) -> i32x4`

[src]

`fn add(self, other: i32) -> i32x4`

Performs the `+`

operation.

`impl Add<i32x4> for i32x4`

[src]

`impl Add<i32x4> for i32x4`

`type Output = i32x4`

The resulting type after applying the `+`

operator.

`fn add(self, other: i32x4) -> i32x4`

[src]

`fn add(self, other: i32x4) -> i32x4`

Performs the `+`

operation.

`impl Add<i32x4> for i32`

[src]

`impl Add<i32x4> for i32`

`type Output = i32x4`

The resulting type after applying the `+`

operator.

`fn add(self, other: i32x4) -> i32x4`

[src]

`fn add(self, other: i32x4) -> i32x4`

Performs the `+`

operation.

`impl Debug for i32x4`

[src]

`impl Debug for i32x4`

`fn fmt(&self, f: &mut Formatter) -> Result<(), Error>`

[src]

`fn fmt(&self, f: &mut Formatter) -> Result<(), Error>`

Formats the value using the given formatter. Read more

`impl BitOr<i32x4> for i32`

[src]

`impl BitOr<i32x4> for i32`

`type Output = i32x4`

The resulting type after applying the `|`

operator.

`fn bitor(self, other: i32x4) -> i32x4`

[src]

`fn bitor(self, other: i32x4) -> i32x4`

Performs the `|`

operation.

`impl BitOr<i32x4> for i32x4`

[src]

`impl BitOr<i32x4> for i32x4`

`type Output = i32x4`

The resulting type after applying the `|`

operator.

`fn bitor(self, other: i32x4) -> i32x4`

[src]

`fn bitor(self, other: i32x4) -> i32x4`

Performs the `|`

operation.

`impl BitOr<i32> for i32x4`

[src]

`impl BitOr<i32> for i32x4`