Struct autd3_driver::defined::ControlPoints
source · pub struct ControlPoints<const N: usize> { /* private fields */ }Implementations§
source§impl<const N: usize> ControlPoints<N>
impl<const N: usize> ControlPoints<N>
pub const fn points(&self) -> [ControlPoint; N]
pub const fn intensity(&self) -> EmitIntensity
source§impl<const N: usize> ControlPoints<N>
impl<const N: usize> ControlPoints<N>
pub fn with_intensity(self, value: impl Into<EmitIntensity>) -> Self
source§impl<const N: usize> ControlPoints<N>
impl<const N: usize> ControlPoints<N>
pub const fn new(points: [ControlPoint; N]) -> Self
Methods from Deref<Target = [ControlPoint; N]>§
1.57.0 · sourcepub fn as_slice(&self) -> &[T]
pub fn as_slice(&self) -> &[T]
Returns a slice containing the entire array. Equivalent to &s[..].
1.57.0 · sourcepub fn as_mut_slice(&mut self) -> &mut [T]
pub fn as_mut_slice(&mut self) -> &mut [T]
Returns a mutable slice containing the entire array. Equivalent to
&mut s[..].
1.77.0 · sourcepub fn each_ref(&self) -> [&T; N]
pub fn each_ref(&self) -> [&T; N]
Borrows each element and returns an array of references with the same
size as self.
§Example
let floats = [3.1, 2.7, -1.0];
let float_refs: [&f64; 3] = floats.each_ref();
assert_eq!(float_refs, [&3.1, &2.7, &-1.0]);This method is particularly useful if combined with other methods, like
map. This way, you can avoid moving the original
array if its elements are not Copy.
let strings = ["Ferris".to_string(), "♥".to_string(), "Rust".to_string()];
let is_ascii = strings.each_ref().map(|s| s.is_ascii());
assert_eq!(is_ascii, [true, false, true]);
// We can still access the original array: it has not been moved.
assert_eq!(strings.len(), 3);1.77.0 · sourcepub fn each_mut(&mut self) -> [&mut T; N]
pub fn each_mut(&mut self) -> [&mut T; N]
Borrows each element mutably and returns an array of mutable references
with the same size as self.
§Example
let mut floats = [3.1, 2.7, -1.0];
let float_refs: [&mut f64; 3] = floats.each_mut();
*float_refs[0] = 0.0;
assert_eq!(float_refs, [&mut 0.0, &mut 2.7, &mut -1.0]);
assert_eq!(floats, [0.0, 2.7, -1.0]);sourcepub fn split_array_ref<const M: usize>(&self) -> (&[T; M], &[T])
🔬This is a nightly-only experimental API. (split_array)
pub fn split_array_ref<const M: usize>(&self) -> (&[T; M], &[T])
split_array)Divides one array reference into two at an index.
The first will contain all indices from [0, M) (excluding
the index M itself) and the second will contain all
indices from [M, N) (excluding the index N itself).
§Panics
Panics if M > N.
§Examples
#![feature(split_array)]
let v = [1, 2, 3, 4, 5, 6];
{
let (left, right) = v.split_array_ref::<0>();
assert_eq!(left, &[]);
assert_eq!(right, &[1, 2, 3, 4, 5, 6]);
}
{
let (left, right) = v.split_array_ref::<2>();
assert_eq!(left, &[1, 2]);
assert_eq!(right, &[3, 4, 5, 6]);
}
{
let (left, right) = v.split_array_ref::<6>();
assert_eq!(left, &[1, 2, 3, 4, 5, 6]);
assert_eq!(right, &[]);
}sourcepub fn split_array_mut<const M: usize>(&mut self) -> (&mut [T; M], &mut [T])
🔬This is a nightly-only experimental API. (split_array)
pub fn split_array_mut<const M: usize>(&mut self) -> (&mut [T; M], &mut [T])
split_array)Divides one mutable array reference into two at an index.
The first will contain all indices from [0, M) (excluding
the index M itself) and the second will contain all
indices from [M, N) (excluding the index N itself).
§Panics
Panics if M > N.
§Examples
#![feature(split_array)]
let mut v = [1, 0, 3, 0, 5, 6];
let (left, right) = v.split_array_mut::<2>();
assert_eq!(left, &mut [1, 0][..]);
assert_eq!(right, &mut [3, 0, 5, 6]);
left[1] = 2;
right[1] = 4;
assert_eq!(v, [1, 2, 3, 4, 5, 6]);sourcepub fn rsplit_array_ref<const M: usize>(&self) -> (&[T], &[T; M])
🔬This is a nightly-only experimental API. (split_array)
pub fn rsplit_array_ref<const M: usize>(&self) -> (&[T], &[T; M])
split_array)Divides one array reference into two at an index from the end.
The first will contain all indices from [0, N - M) (excluding
the index N - M itself) and the second will contain all
indices from [N - M, N) (excluding the index N itself).
§Panics
Panics if M > N.
§Examples
#![feature(split_array)]
let v = [1, 2, 3, 4, 5, 6];
{
let (left, right) = v.rsplit_array_ref::<0>();
assert_eq!(left, &[1, 2, 3, 4, 5, 6]);
assert_eq!(right, &[]);
}
{
let (left, right) = v.rsplit_array_ref::<2>();
assert_eq!(left, &[1, 2, 3, 4]);
assert_eq!(right, &[5, 6]);
}
{
let (left, right) = v.rsplit_array_ref::<6>();
assert_eq!(left, &[]);
assert_eq!(right, &[1, 2, 3, 4, 5, 6]);
}sourcepub fn rsplit_array_mut<const M: usize>(&mut self) -> (&mut [T], &mut [T; M])
🔬This is a nightly-only experimental API. (split_array)
pub fn rsplit_array_mut<const M: usize>(&mut self) -> (&mut [T], &mut [T; M])
split_array)Divides one mutable array reference into two at an index from the end.
The first will contain all indices from [0, N - M) (excluding
the index N - M itself) and the second will contain all
indices from [N - M, N) (excluding the index N itself).
§Panics
Panics if M > N.
§Examples
#![feature(split_array)]
let mut v = [1, 0, 3, 0, 5, 6];
let (left, right) = v.rsplit_array_mut::<4>();
assert_eq!(left, &mut [1, 0]);
assert_eq!(right, &mut [3, 0, 5, 6][..]);
left[1] = 2;
right[1] = 4;
assert_eq!(v, [1, 2, 3, 4, 5, 6]);sourcepub fn as_ascii(&self) -> Option<&[AsciiChar; N]>
🔬This is a nightly-only experimental API. (ascii_char)
pub fn as_ascii(&self) -> Option<&[AsciiChar; N]>
ascii_char)Converts this array of bytes into a array of ASCII characters,
or returns None if any of the characters is non-ASCII.
§Examples
#![feature(ascii_char)]
#![feature(const_option)]
const HEX_DIGITS: [std::ascii::Char; 16] =
*b"0123456789abcdef".as_ascii().unwrap();
assert_eq!(HEX_DIGITS[1].as_str(), "1");
assert_eq!(HEX_DIGITS[10].as_str(), "a");sourcepub unsafe fn as_ascii_unchecked(&self) -> &[AsciiChar; N]
🔬This is a nightly-only experimental API. (ascii_char)
pub unsafe fn as_ascii_unchecked(&self) -> &[AsciiChar; N]
ascii_char)Converts this array of bytes into a array of ASCII characters, without checking whether they’re valid.
§Safety
Every byte in the array must be in 0..=127, or else this is UB.
Trait Implementations§
source§impl<const N: usize> Clone for ControlPoints<N>
impl<const N: usize> Clone for ControlPoints<N>
source§fn clone(&self) -> ControlPoints<N>
fn clone(&self) -> ControlPoints<N>
1.0.0 · source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
source. Read moresource§impl<const N: usize> Debug for ControlPoints<N>
impl<const N: usize> Debug for ControlPoints<N>
source§impl<const N: usize> Deref for ControlPoints<N>
impl<const N: usize> Deref for ControlPoints<N>
source§impl<const N: usize> DerefMut for ControlPoints<N>
impl<const N: usize> DerefMut for ControlPoints<N>
source§impl<C, const N: usize> From<[C; N]> for ControlPoints<N>where
ControlPoint: From<C>,
impl<C, const N: usize> From<[C; N]> for ControlPoints<N>where
ControlPoint: From<C>,
source§impl<C, I: Into<EmitIntensity>, const N: usize> From<([C; N], I)> for ControlPoints<N>where
ControlPoint: From<C>,
impl<C, I: Into<EmitIntensity>, const N: usize> From<([C; N], I)> for ControlPoints<N>where
ControlPoint: From<C>,
source§impl<C, I: Into<EmitIntensity>> From<(C, I)> for ControlPoints<1>where
ControlPoint: From<C>,
impl<C, I: Into<EmitIntensity>> From<(C, I)> for ControlPoints<1>where
ControlPoint: From<C>,
source§impl<C> From<C> for ControlPoints<1>where
ControlPoint: From<C>,
impl<C> From<C> for ControlPoints<1>where
ControlPoint: From<C>,
source§impl<const N: usize> PartialEq for ControlPoints<N>
impl<const N: usize> PartialEq for ControlPoints<N>
source§fn eq(&self, other: &ControlPoints<N>) -> bool
fn eq(&self, other: &ControlPoints<N>) -> bool
self and other values to be equal, and is used
by ==.impl<const N: usize> StructuralPartialEq for ControlPoints<N>
Auto Trait Implementations§
impl<const N: usize> Freeze for ControlPoints<N>
impl<const N: usize> RefUnwindSafe for ControlPoints<N>
impl<const N: usize> Send for ControlPoints<N>
impl<const N: usize> Sync for ControlPoints<N>
impl<const N: usize> Unpin for ControlPoints<N>
impl<const N: usize> UnwindSafe for ControlPoints<N>
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T: ?Sized,
impl<T> BorrowMut<T> for Twhere
T: ?Sized,
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fn borrow_mut(&mut self) -> &mut T
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impl<T> FmtForward for T
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Self: Binary,
fn fmt_binary(self) -> FmtBinary<Self>where
Self: Binary,
self to use its Binary implementation when Debug-formatted.source§fn fmt_display(self) -> FmtDisplay<Self>where
Self: Display,
fn fmt_display(self) -> FmtDisplay<Self>where
Self: Display,
self to use its Display implementation when
Debug-formatted.source§fn fmt_lower_exp(self) -> FmtLowerExp<Self>where
Self: LowerExp,
fn fmt_lower_exp(self) -> FmtLowerExp<Self>where
Self: LowerExp,
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Debug-formatted.source§fn fmt_lower_hex(self) -> FmtLowerHex<Self>where
Self: LowerHex,
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Self: LowerHex,
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Debug-formatted.source§fn fmt_upper_hex(self) -> FmtUpperHex<Self>where
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Self: UpperHex,
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