pub struct GammaValue(pub f64);Expand description
Gamma value.
Tuple Fields§
§0: f64Methods from Deref<Target = f64>§
pub const RADIX: u32 = 2u32
pub const MANTISSA_DIGITS: u32 = 53u32
pub const DIGITS: u32 = 15u32
pub const EPSILON: f64 = 2.2204460492503131E-16f64
pub const MIN: f64 = -1.7976931348623157E+308f64
pub const MIN_POSITIVE: f64 = 2.2250738585072014E-308f64
pub const MAX: f64 = 1.7976931348623157E+308f64
pub const MIN_EXP: i32 = -1_021i32
pub const MAX_EXP: i32 = 1_024i32
pub const MIN_10_EXP: i32 = -307i32
pub const MAX_10_EXP: i32 = 308i32
pub const NAN: f64 = NaN_f64
pub const INFINITY: f64 = +Inf_f64
pub const NEG_INFINITY: f64 = -Inf_f64
1.62.0 · Sourcepub fn total_cmp(&self, other: &f64) -> Ordering
pub fn total_cmp(&self, other: &f64) -> Ordering
Returns the ordering between self and other.
Unlike the standard partial comparison between floating point numbers,
this comparison always produces an ordering in accordance to
the totalOrder predicate as defined in the IEEE 754 (2008 revision)
floating point standard. The values are ordered in the following sequence:
- negative quiet NaN
- negative signaling NaN
- negative infinity
- negative numbers
- negative subnormal numbers
- negative zero
- positive zero
- positive subnormal numbers
- positive numbers
- positive infinity
- positive signaling NaN
- positive quiet NaN.
The ordering established by this function does not always agree with the
PartialOrd and PartialEq implementations of f64. For example,
they consider negative and positive zero equal, while total_cmp
doesn’t.
The interpretation of the signaling NaN bit follows the definition in the IEEE 754 standard, which may not match the interpretation by some of the older, non-conformant (e.g. MIPS) hardware implementations.
§Example
struct GoodBoy {
name: String,
weight: f64,
}
let mut bois = vec![
GoodBoy { name: "Pucci".to_owned(), weight: 0.1 },
GoodBoy { name: "Woofer".to_owned(), weight: 99.0 },
GoodBoy { name: "Yapper".to_owned(), weight: 10.0 },
GoodBoy { name: "Chonk".to_owned(), weight: f64::INFINITY },
GoodBoy { name: "Abs. Unit".to_owned(), weight: f64::NAN },
GoodBoy { name: "Floaty".to_owned(), weight: -5.0 },
];
bois.sort_by(|a, b| a.weight.total_cmp(&b.weight));
// `f64::NAN` could be positive or negative, which will affect the sort order.
if f64::NAN.is_sign_negative() {
assert!(bois.into_iter().map(|b| b.weight)
.zip([f64::NAN, -5.0, 0.1, 10.0, 99.0, f64::INFINITY].iter())
.all(|(a, b)| a.to_bits() == b.to_bits()))
} else {
assert!(bois.into_iter().map(|b| b.weight)
.zip([-5.0, 0.1, 10.0, 99.0, f64::INFINITY, f64::NAN].iter())
.all(|(a, b)| a.to_bits() == b.to_bits()))
}Trait Implementations§
Source§impl Clone for GammaValue
impl Clone for GammaValue
Source§fn clone(&self) -> GammaValue
fn clone(&self) -> GammaValue
Returns a duplicate of the value. Read more
1.0.0 · Source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
Performs copy-assignment from
source. Read moreSource§impl Debug for GammaValue
impl Debug for GammaValue
Source§impl Default for GammaValue
impl Default for GammaValue
Source§impl Deref for GammaValue
impl Deref for GammaValue
Source§impl Element for GammaValue
impl Element for GammaValue
Source§fn decode_body(buf: &mut &[u8]) -> Result<Self>
fn decode_body(buf: &mut &[u8]) -> Result<Self>
Decode the body of the element from a buffer.
Source§fn encode_body<B: BufMut>(&self, buf: &mut B) -> Result<()>
fn encode_body<B: BufMut>(&self, buf: &mut B) -> Result<()>
Encode the body of the element to a buffer.
Source§const HAS_DEFAULT_VALUE: bool = false
const HAS_DEFAULT_VALUE: bool = false
Whether the element has a default value, as per Matroska specification.
If true, and the element is missing in a master element, it should be treated as if it were present with the default value.
If false, and the element is missing in a master element, it should be treated as an error.
Source§impl PartialEq for GammaValue
impl PartialEq for GammaValue
Source§impl PartialOrd for GammaValue
impl PartialOrd for GammaValue
impl Copy for GammaValue
impl StructuralPartialEq for GammaValue
Auto Trait Implementations§
impl Freeze for GammaValue
impl RefUnwindSafe for GammaValue
impl Send for GammaValue
impl Sync for GammaValue
impl Unpin for GammaValue
impl UnwindSafe for GammaValue
Blanket Implementations§
Source§impl<T> AsyncReadElement for Twhere
T: Element,
impl<T> AsyncReadElement for Twhere
T: Element,
Source§impl<T> AsyncReadFrom for Twhere
T: Element,
impl<T> AsyncReadFrom for Twhere
T: Element,
Source§impl<T> AsyncWriteTo for Twhere
T: Encode,
impl<T> AsyncWriteTo for Twhere
T: Encode,
Source§async fn async_write_to<W>(&self, w: &mut W) -> Result<(), Error>where
W: AsyncWrite + Unpin,
async fn async_write_to<W>(&self, w: &mut W) -> Result<(), Error>where
W: AsyncWrite + Unpin,
Available on crate feature
tokio only.Write to a writer asynchronously.
Source§impl<T> BorrowMut<T> for Twhere
T: ?Sized,
impl<T> BorrowMut<T> for Twhere
T: ?Sized,
Source§fn borrow_mut(&mut self) -> &mut T
fn borrow_mut(&mut self) -> &mut T
Mutably borrows from an owned value. Read more