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Rangef

Struct Rangef 

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#[repr(C)]
pub struct Rangef { pub min: f32, pub max: f32, }
Expand description

Inclusive range of floats, i.e. min..=max, but more ergonomic than RangeInclusive.

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§min: f32§max: f32

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impl Rangef

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pub const EVERYTHING: Self

Infinite range that contains everything, from -∞ to +∞, inclusive.

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pub const NOTHING: Self

The inverse of Self::EVERYTHING: stretches from positive infinity to negative infinity. Contains nothing.

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pub const NAN: Self

An invalid Rangef filled with f32::NAN.

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pub fn new(min: f32, max: f32) -> Self

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pub fn point(min_and_max: f32) -> Self

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pub fn span(self) -> f32

The length of the range, i.e. max - min.

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pub fn center(self) -> f32

The center of the range

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pub fn contains(self, x: f32) -> bool

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pub fn clamp(self, x: f32) -> f32

Equivalent to x.clamp(min, max)

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pub fn as_positive(self) -> Self

Flip min and max if needed, so that min <= max after.

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pub fn shrink(self, amnt: f32) -> Self

Shrink by this much on each side, keeping the center

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pub fn expand(self, amnt: f32) -> Self

Expand by this much on each side, keeping the center

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pub fn flip(self) -> Self

Flip the min and the max

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pub fn intersection(self, other: Self) -> Self

The overlap of two ranges, i.e. the range that is contained by both.

If the ranges do not overlap, returns a range with span() < 0.0.

assert_eq!(Rangef::new(0.0, 10.0).intersection(Rangef::new(5.0, 15.0)), Rangef::new(5.0, 10.0));
assert_eq!(Rangef::new(0.0, 10.0).intersection(Rangef::new(10.0, 20.0)), Rangef::new(10.0, 10.0));
assert!(Rangef::new(0.0, 10.0).intersection(Rangef::new(20.0, 30.0)).span() < 0.0);
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pub fn intersects(self, other: Self) -> bool

Do the two ranges intersect?

assert!(Rangef::new(0.0, 10.0).intersects(Rangef::new(5.0, 15.0)));
assert!(Rangef::new(0.0, 10.0).intersects(Rangef::new(5.0, 6.0)));
assert!(Rangef::new(0.0, 10.0).intersects(Rangef::new(10.0, 20.0)));
assert!(!Rangef::new(0.0, 10.0).intersects(Rangef::new(20.0, 30.0)));

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impl Clone for Rangef

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fn clone(&self) -> Rangef

Returns a duplicate of the value. Read more
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fn clone_from(&mut self, source: &Self)

Performs copy-assignment from source. Read more
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impl Debug for Rangef

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fn fmt(&self, f: &mut Formatter<'_>) -> Result

Formats the value using the given formatter. Read more
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impl From<&RangeFrom<f32>> for Rangef

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fn from(range: &RangeFrom<f32>) -> Self

Converts to this type from the input type.
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impl From<&RangeFull> for Rangef

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fn from(_: &RangeFull) -> Self

Converts to this type from the input type.
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impl From<&RangeInclusive<f32>> for Rangef

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fn from(range: &RangeInclusive<f32>) -> Self

Converts to this type from the input type.
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impl From<&Rangef> for RangeInclusive<f32>

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fn from(_: &Rangef) -> Self

Converts to this type from the input type.
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impl From<RangeFrom<f32>> for Rangef

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fn from(range: RangeFrom<f32>) -> Self

Converts to this type from the input type.
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impl From<RangeFull> for Rangef

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fn from(_: RangeFull) -> Self

Converts to this type from the input type.
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impl From<RangeInclusive<f32>> for Rangef

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fn from(range: RangeInclusive<f32>) -> Self

Converts to this type from the input type.
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impl From<RangeToInclusive<f32>> for Rangef

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fn from(range: RangeToInclusive<f32>) -> Self

Converts to this type from the input type.
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impl From<Rangef> for RangeInclusive<f32>

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fn from(_: Rangef) -> Self

Converts to this type from the input type.
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impl PartialEq<RangeInclusive<f32>> for Rangef

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fn eq(&self, other: &RangeInclusive<f32>) -> bool

Tests for self and other values to be equal, and is used by ==.
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fn ne(&self, other: &Rhs) -> bool

Tests for !=. The default implementation is almost always sufficient, and should not be overridden without very good reason.
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impl PartialEq<Rangef> for RangeInclusive<f32>

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

Tests for self and other values to be equal, and is used by ==.
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fn ne(&self, other: &Rhs) -> bool

Tests for !=. The default implementation is almost always sufficient, and should not be overridden without very good reason.
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impl PartialEq for Rangef

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

Tests for self and other values to be equal, and is used by ==.
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fn ne(&self, other: &Rhs) -> bool

Tests for !=. The default implementation is almost always sufficient, and should not be overridden without very good reason.
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impl Copy for Rangef

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impl StructuralPartialEq for Rangef

Auto Trait Implementations§

Blanket Implementations§

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impl<T> Any for T
where T: 'static + ?Sized,

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fn type_id(&self) -> TypeId

Gets the TypeId of self. Read more
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impl<T> Borrow<T> for T
where T: ?Sized,

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fn borrow(&self) -> &T

Immutably borrows from an owned value. Read more
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impl<T> BorrowMut<T> for T
where T: ?Sized,

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fn borrow_mut(&mut self) -> &mut T

Mutably borrows from an owned value. Read more
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impl<T> CloneToUninit for T
where T: Clone,

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unsafe fn clone_to_uninit(&self, dest: *mut u8)

🔬This is a nightly-only experimental API. (clone_to_uninit)
Performs copy-assignment from self to dest. Read more
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impl<T> From<T> for T

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fn from(t: T) -> T

Returns the argument unchanged.

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impl<T, U> Into<U> for T
where U: From<T>,

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fn into(self) -> U

Calls U::from(self).

That is, this conversion is whatever the implementation of From<T> for U chooses to do.

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impl<T> ToOwned for T
where T: Clone,

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type Owned = T

The resulting type after obtaining ownership.
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fn to_owned(&self) -> T

Creates owned data from borrowed data, usually by cloning. Read more
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fn clone_into(&self, target: &mut T)

Uses borrowed data to replace owned data, usually by cloning. Read more
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impl<T, U> TryFrom<U> for T
where U: Into<T>,

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type Error = Infallible

The type returned in the event of a conversion error.
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fn try_from(value: U) -> Result<T, <T as TryFrom<U>>::Error>

Performs the conversion.
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impl<T, U> TryInto<U> for T
where U: TryFrom<T>,

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type Error = <U as TryFrom<T>>::Error

The type returned in the event of a conversion error.
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fn try_into(self) -> Result<U, <U as TryFrom<T>>::Error>

Performs the conversion.