Struct cint::LinearSrgbA [−][src]
#[repr(C)]pub struct LinearSrgbA<ComponentTy, AlphaState> { pub r: ComponentTy, pub g: ComponentTy, pub b: ComponentTy, pub alpha: ComponentTy, // some fields omitted }
Expand description
A color in the linear (decoded) sRGB color space.
This color space uses the sRGB/Rec.709 primaries, D65 white point,
and sRGB transfer functions. This version is linear, with the
sRGB EOTF, aka “inverse gamma compensation”, applied in order to
decode it from EncodedSrgb
This is type has an alpha channel, and so is paramaterized by both
a ComponentTy, as with any color type, but also an AlphaState,
which symbolizes whether the other color components have been
Premultiplied with the alpha channel or are Separate from it.
Fields
r: ComponentTyExpand description
The red component.
g: ComponentTyExpand description
The green component.
b: ComponentTyExpand description
The blue component.
alpha: ComponentTyExpand description
The alpha component.
Trait Implementations
impl<ComponentTy, AlphaState> AsRef<[ComponentTy; 4]> for LinearSrgbA<ComponentTy, AlphaState>[src]
impl<ComponentTy, AlphaState> AsRef<[ComponentTy; 4]> for LinearSrgbA<ComponentTy, AlphaState>[src]impl<ComponentTy: Clone, AlphaState: Clone> Clone for LinearSrgbA<ComponentTy, AlphaState>[src]
impl<ComponentTy: Clone, AlphaState: Clone> Clone for LinearSrgbA<ComponentTy, AlphaState>[src]fn clone(&self) -> LinearSrgbA<ComponentTy, AlphaState>[src]
fn clone(&self) -> LinearSrgbA<ComponentTy, AlphaState>[src]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)1.0.0[src]Performs copy-assignment from source. Read more
impl<ComponentTy: Debug, AlphaState: Debug> Debug for LinearSrgbA<ComponentTy, AlphaState>[src]
impl<ComponentTy: Debug, AlphaState: Debug> Debug for LinearSrgbA<ComponentTy, AlphaState>[src]impl<ComponentTy: Hash, AlphaState: Hash> Hash for LinearSrgbA<ComponentTy, AlphaState>[src]
impl<ComponentTy: Hash, AlphaState: Hash> Hash for LinearSrgbA<ComponentTy, AlphaState>[src]impl<ComponentTy, AlphaState> Into<[ComponentTy; 4]> for LinearSrgbA<ComponentTy, AlphaState>[src]
impl<ComponentTy, AlphaState> Into<[ComponentTy; 4]> for LinearSrgbA<ComponentTy, AlphaState>[src]impl<ComponentTy: Ord, AlphaState: Ord> Ord for LinearSrgbA<ComponentTy, AlphaState>[src]
impl<ComponentTy: Ord, AlphaState: Ord> Ord for LinearSrgbA<ComponentTy, AlphaState>[src]fn cmp(&self, other: &LinearSrgbA<ComponentTy, AlphaState>) -> Ordering[src]
fn cmp(&self, other: &LinearSrgbA<ComponentTy, AlphaState>) -> Ordering[src]#[must_use]fn max(self, other: Self) -> Self1.21.0[src]
#[must_use]fn max(self, other: Self) -> Self1.21.0[src]Compares and returns the maximum of two values. Read more
impl<ComponentTy: PartialEq, AlphaState: PartialEq> PartialEq<LinearSrgbA<ComponentTy, AlphaState>> for LinearSrgbA<ComponentTy, AlphaState>[src]
impl<ComponentTy: PartialEq, AlphaState: PartialEq> PartialEq<LinearSrgbA<ComponentTy, AlphaState>> for LinearSrgbA<ComponentTy, AlphaState>[src]fn eq(&self, other: &LinearSrgbA<ComponentTy, AlphaState>) -> bool[src]
fn eq(&self, other: &LinearSrgbA<ComponentTy, AlphaState>) -> bool[src]This method tests for self and other values to be equal, and is used
by ==. Read more
fn ne(&self, other: &LinearSrgbA<ComponentTy, AlphaState>) -> bool[src]
fn ne(&self, other: &LinearSrgbA<ComponentTy, AlphaState>) -> bool[src]This method tests for !=.
impl<ComponentTy: PartialOrd, AlphaState: PartialOrd> PartialOrd<LinearSrgbA<ComponentTy, AlphaState>> for LinearSrgbA<ComponentTy, AlphaState>[src]
impl<ComponentTy: PartialOrd, AlphaState: PartialOrd> PartialOrd<LinearSrgbA<ComponentTy, AlphaState>> for LinearSrgbA<ComponentTy, AlphaState>[src]fn partial_cmp(
&self,
other: &LinearSrgbA<ComponentTy, AlphaState>
) -> Option<Ordering>[src]
fn partial_cmp(
&self,
other: &LinearSrgbA<ComponentTy, AlphaState>
) -> Option<Ordering>[src]This method returns an ordering between self and other values if one exists. Read more
#[must_use]fn lt(&self, other: &Rhs) -> bool1.0.0[src]
#[must_use]fn lt(&self, other: &Rhs) -> bool1.0.0[src]This method tests less than (for self and other) and is used by the < operator. Read more
#[must_use]fn le(&self, other: &Rhs) -> bool1.0.0[src]
#[must_use]fn le(&self, other: &Rhs) -> bool1.0.0[src]This method tests less than or equal to (for self and other) and is used by the <=
operator. Read more
impl<ComponentTy: Zeroable, AlphaState> Zeroable for LinearSrgbA<ComponentTy, AlphaState>[src]
impl<ComponentTy: Zeroable, AlphaState> Zeroable for LinearSrgbA<ComponentTy, AlphaState>[src]impl<ComponentTy: Copy, AlphaState: Copy> Copy for LinearSrgbA<ComponentTy, AlphaState>[src]
impl<ComponentTy: Eq, AlphaState: Eq> Eq for LinearSrgbA<ComponentTy, AlphaState>[src]
impl<ComponentTy: Pod, AlphaState: Copy + 'static> Pod for LinearSrgbA<ComponentTy, AlphaState>[src]
impl<ComponentTy, AlphaState> StructuralEq for LinearSrgbA<ComponentTy, AlphaState>[src]
impl<ComponentTy, AlphaState> StructuralPartialEq for LinearSrgbA<ComponentTy, AlphaState>[src]
Auto Trait Implementations
impl<ComponentTy, AlphaState> Send for LinearSrgbA<ComponentTy, AlphaState> where
AlphaState: Send,
ComponentTy: Send,
AlphaState: Send,
ComponentTy: Send,
impl<ComponentTy, AlphaState> Sync for LinearSrgbA<ComponentTy, AlphaState> where
AlphaState: Sync,
ComponentTy: Sync,
AlphaState: Sync,
ComponentTy: Sync,
impl<ComponentTy, AlphaState> Unpin for LinearSrgbA<ComponentTy, AlphaState> where
AlphaState: Unpin,
ComponentTy: Unpin,
AlphaState: Unpin,
ComponentTy: Unpin,