Struct sp_runtime::Perbill
source · pub struct Perbill(_);
Expand description
Re-export top-level arithmetic stuff. A fixed point representation of a number in the range [0, 1].
Parts per Billion
Implementations§
source§impl Perbill
impl Perbill
sourcepub const fn from_parts(parts: u32) -> Perbill
pub const fn from_parts(parts: u32) -> Perbill
From an explicitly defined number of parts per maximum of the type.
sourcepub const fn from_percent(x: u32) -> Perbill
pub const fn from_percent(x: u32) -> Perbill
Converts a percent into Self
. Equal to x / 100
.
This can be created at compile time.
sourcepub const fn one() -> Perbill
pub const fn one() -> Perbill
See PerThing::one
sourcepub fn is_one(&self) -> bool
pub fn is_one(&self) -> bool
See PerThing::is_one
.
sourcepub const fn zero() -> Perbill
pub const fn zero() -> Perbill
See PerThing::zero
.
sourcepub fn is_zero(&self) -> bool
pub fn is_zero(&self) -> bool
See PerThing::is_zero
.
sourcepub const fn deconstruct(self) -> u32
pub const fn deconstruct(self) -> u32
sourcepub fn square(self) -> Perbill
pub fn square(self) -> Perbill
See PerThing::square
.
sourcepub fn from_float(x: f64) -> Perbill
pub fn from_float(x: f64) -> Perbill
See PerThing::from_float
.
sourcepub fn from_rational_approximation<N>(p: N, q: N) -> Perbillwhere
N: Clone + Ord + TryInto<u32> + TryInto<u64> + Div<N, Output = N> + Rem<N, Output = N> + Add<N, Output = N> + AddAssign<N> + Unsigned + Zero + One,
u32: Into<N>,
👎Deprecated: Use PerThing::from_rational
instead
pub fn from_rational_approximation<N>(p: N, q: N) -> Perbillwhere
N: Clone + Ord + TryInto<u32> + TryInto<u64> + Div<N, Output = N> + Rem<N, Output = N> + Add<N, Output = N> + AddAssign<N> + Unsigned + Zero + One,
u32: Into<N>,
PerThing::from_rational
insteadsourcepub fn from_rational<N>(p: N, q: N) -> Perbillwhere
N: Clone + Ord + TryInto<u32> + TryInto<u64> + Div<N, Output = N> + Rem<N, Output = N> + Add<N, Output = N> + AddAssign<N> + Unsigned + Zero + One,
u32: Into<N>,
pub fn from_rational<N>(p: N, q: N) -> Perbillwhere
N: Clone + Ord + TryInto<u32> + TryInto<u64> + Div<N, Output = N> + Rem<N, Output = N> + Add<N, Output = N> + AddAssign<N> + Unsigned + Zero + One,
u32: Into<N>,
sourcepub fn int_mul(self, b: u32) -> Perbill
pub fn int_mul(self, b: u32) -> Perbill
Integer multiplication with another value, saturating at 1.
sourcepub fn mul_floor<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<u32> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Unsigned,
u32: Into<N>,
pub fn mul_floor<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<u32> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Unsigned,
u32: Into<N>,
See PerThing::mul_floor
.
sourcepub fn mul_ceil<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<u32> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Unsigned,
u32: Into<N>,
pub fn mul_ceil<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<u32> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Unsigned,
u32: Into<N>,
See PerThing::mul_ceil
.
sourcepub fn saturating_reciprocal_mul<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<u32> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Saturating + Unsigned,
u32: Into<N>,
pub fn saturating_reciprocal_mul<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<u32> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Saturating + Unsigned,
u32: Into<N>,
sourcepub fn saturating_reciprocal_mul_floor<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<u32> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Saturating + Unsigned,
u32: Into<N>,
pub fn saturating_reciprocal_mul_floor<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<u32> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Saturating + Unsigned,
u32: Into<N>,
sourcepub fn saturating_reciprocal_mul_ceil<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<u32> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Saturating + Unsigned,
u32: Into<N>,
pub fn saturating_reciprocal_mul_ceil<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<u32> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Saturating + Unsigned,
u32: Into<N>,
sourcepub fn saturating_div(self, rhs: Perbill, r: Rounding) -> Perbill
pub fn saturating_div(self, rhs: Perbill, r: Rounding) -> Perbill
Saturating division. Compute self / rhs
, saturating at one if rhs < self
.
The rounding
method must be specified. e.g.:
let pc = |x| Percent::from_percent(x);
assert_eq!(
pc(2).saturating_div(pc(3), Down),
pc(66),
);
assert_eq!(
pc(1).saturating_div(pc(3), NearestPrefUp),
pc(33),
);
assert_eq!(
pc(2).saturating_div(pc(3), NearestPrefDown),
pc(67),
);
assert_eq!(
pc(1).saturating_div(pc(3), Up),
pc(34),
);
Trait Implementations§
source§impl CheckedAdd for Perbill
impl CheckedAdd for Perbill
source§impl CheckedMul for Perbill
impl CheckedMul for Perbill
Note
CheckedMul will never fail for PerThings.
source§impl CheckedSub for Perbill
impl CheckedSub for Perbill
source§impl CompactAs for Perbill
impl CompactAs for Perbill
Implementation makes any compact encoding of PerThing::Inner
valid,
when decoding it will saturate up to PerThing::ACCURACY
.
source§impl Decode for Perbill
impl Decode for Perbill
source§impl<'de> Deserialize<'de> for Perbill
impl<'de> Deserialize<'de> for Perbill
source§fn deserialize<__D>(
__deserializer: __D
) -> Result<Perbill, <__D as Deserializer<'de>>::Error>where
__D: Deserializer<'de>,
fn deserialize<__D>(
__deserializer: __D
) -> Result<Perbill, <__D as Deserializer<'de>>::Error>where
__D: Deserializer<'de>,
source§impl Encode for Perbill
impl Encode for Perbill
source§fn encode_to<__CodecOutputEdqy>(&self, __codec_dest_edqy: &mut __CodecOutputEdqy)where
__CodecOutputEdqy: Output + ?Sized,
fn encode_to<__CodecOutputEdqy>(&self, __codec_dest_edqy: &mut __CodecOutputEdqy)where
__CodecOutputEdqy: Output + ?Sized,
source§fn using_encoded<R, F>(&self, f: F) -> Rwhere
F: FnOnce(&[u8]) -> R,
fn using_encoded<R, F>(&self, f: F) -> Rwhere
F: FnOnce(&[u8]) -> R,
source§fn size_hint(&self) -> usize
fn size_hint(&self) -> usize
source§fn encoded_size(&self) -> usize
fn encoded_size(&self) -> usize
source§impl MaxEncodedLen for Perbill
impl MaxEncodedLen for Perbill
source§fn max_encoded_len() -> usize
fn max_encoded_len() -> usize
source§impl<N> Mul<N> for Perbillwhere
N: Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Unsigned<Output = N> + Clone + UniqueSaturatedInto<u32> + Rem<N>,
u32: Into<N>,
impl<N> Mul<N> for Perbillwhere
N: Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Unsigned<Output = N> + Clone + UniqueSaturatedInto<u32> + Rem<N>,
u32: Into<N>,
Non-overflow multiplication.
This is tailored to be used with a balance type.
source§impl Ord for Perbill
impl Ord for Perbill
source§impl PartialOrd<Perbill> for Perbill
impl PartialOrd<Perbill> for Perbill
1.0.0 · source§fn le(&self, other: &Rhs) -> bool
fn le(&self, other: &Rhs) -> bool
self
and other
) and is used by the <=
operator. Read moresource§impl PerThing for Perbill
impl PerThing for Perbill
source§fn deconstruct(self) -> <Perbill as PerThing>::Inner
fn deconstruct(self) -> <Perbill as PerThing>::Inner
Consume self and return the number of parts per thing.
source§fn from_parts(parts: <Perbill as PerThing>::Inner) -> Perbill
fn from_parts(parts: <Perbill as PerThing>::Inner) -> Perbill
Build this type from a number of parts per thing.
source§fn from_float(x: f64) -> Perbill
fn from_float(x: f64) -> Perbill
NOTE: saturate to 0 or 1 if x is beyond [0, 1]
§type Upper = u64
type Upper = u64
Self::Inner
, used to avoid overflow in some computations.
It must be able to compute ACCURACY^2
. Read moresource§const ACCURACY: <Perbill as PerThing>::Inner = {transmute(0x3b9aca00): <sp_arithmetic::Perbill as sp_arithmetic::PerThing>::Inner}
const ACCURACY: <Perbill as PerThing>::Inner = {transmute(0x3b9aca00): <sp_arithmetic::Perbill as sp_arithmetic::PerThing>::Inner}
source§fn from_rational_with_rounding<N>(p: N, q: N, r: Rounding) -> Result<Perbill, ()>where
N: Clone + Ord + TryInto<<Perbill as PerThing>::Inner> + TryInto<<Perbill as PerThing>::Upper> + Div<N, Output = N> + Rem<N, Output = N> + Add<N, Output = N> + AddAssign<N> + Unsigned + Zero + One,
<Perbill as PerThing>::Inner: Into<N>,
fn from_rational_with_rounding<N>(p: N, q: N, r: Rounding) -> Result<Perbill, ()>where
N: Clone + Ord + TryInto<<Perbill as PerThing>::Inner> + TryInto<<Perbill as PerThing>::Upper> + Div<N, Output = N> + Rem<N, Output = N> + Add<N, Output = N> + AddAssign<N> + Unsigned + Zero + One,
<Perbill as PerThing>::Inner: Into<N>,
p/q
into a per-thing fraction. Read moresource§fn less_epsilon(self) -> Self
fn less_epsilon(self) -> Self
self
or self
if it is already zero.source§fn try_less_epsilon(self) -> Result<Self, Self>
fn try_less_epsilon(self) -> Result<Self, Self>
self
or an error with the same value if self
is already
zero. Read moresource§fn plus_epsilon(self) -> Self
fn plus_epsilon(self) -> Self
self
or self
if it is already one.source§fn try_plus_epsilon(self) -> Result<Self, Self>
fn try_plus_epsilon(self) -> Result<Self, Self>
self
or an error with the same value if self
is already
one. Read moresource§fn from_percent(x: Self::Inner) -> Self
fn from_percent(x: Self::Inner) -> Self
Self::from_parts(x * Self::ACCURACY / 100)
but more accurate and can cope with potential type overflows. Read moresource§fn left_from_one(self) -> Self
fn left_from_one(self) -> Self
self
is saturating-subtracted from Self::one()
.source§fn mul_floor<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<Self::Inner> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Unsigned,
Self::Inner: Into<N>,
fn mul_floor<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<Self::Inner> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Unsigned,
Self::Inner: Into<N>,
Mul
rounds to the
nearest whole number. Read moresource§fn mul_ceil<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<Self::Inner> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Unsigned,
Self::Inner: Into<N>,
fn mul_ceil<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<Self::Inner> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Unsigned,
Self::Inner: Into<N>,
Mul
rounds to the nearest whole number. Read moresource§fn saturating_reciprocal_mul<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<Self::Inner> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Saturating + Unsigned,
Self::Inner: Into<N>,
fn saturating_reciprocal_mul<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<Self::Inner> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Saturating + Unsigned,
Self::Inner: Into<N>,
self
. The result is rounded to the
nearest whole number and saturates at the numeric bounds instead of overflowing. Read moresource§fn saturating_reciprocal_mul_floor<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<Self::Inner> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Saturating + Unsigned,
Self::Inner: Into<N>,
fn saturating_reciprocal_mul_floor<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<Self::Inner> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Saturating + Unsigned,
Self::Inner: Into<N>,
self
. The result is rounded down to the
nearest whole number and saturates at the numeric bounds instead of overflowing. Read moresource§fn saturating_reciprocal_mul_ceil<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<Self::Inner> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Saturating + Unsigned,
Self::Inner: Into<N>,
fn saturating_reciprocal_mul_ceil<N>(self, b: N) -> Nwhere
N: Clone + UniqueSaturatedInto<Self::Inner> + Rem<N, Output = N> + Div<N, Output = N> + Mul<N, Output = N> + Add<N, Output = N> + Saturating + Unsigned,
Self::Inner: Into<N>,
self
. The result is rounded up to the
nearest whole number and saturates at the numeric bounds instead of overflowing. Read moresource§fn from_rational<N>(p: N, q: N) -> Selfwhere
N: Clone + Ord + TryInto<Self::Inner> + TryInto<Self::Upper> + Div<N, Output = N> + Rem<N, Output = N> + Add<N, Output = N> + AddAssign<N> + Unsigned + Zero + One,
Self::Inner: Into<N>,
fn from_rational<N>(p: N, q: N) -> Selfwhere
N: Clone + Ord + TryInto<Self::Inner> + TryInto<Self::Upper> + Div<N, Output = N> + Rem<N, Output = N> + Add<N, Output = N> + AddAssign<N> + Unsigned + Zero + One,
Self::Inner: Into<N>,
p/q
into a per-thing fraction. This will never overflow. Read moresource§fn from_rational_approximation<N>(p: N, q: N) -> Selfwhere
N: Clone + Ord + TryInto<Self::Inner> + TryInto<Self::Upper> + Div<N, Output = N> + Rem<N, Output = N> + Add<N, Output = N> + AddAssign<N> + Unsigned + Zero + One,
Self::Inner: Into<N>,
fn from_rational_approximation<N>(p: N, q: N) -> Selfwhere
N: Clone + Ord + TryInto<Self::Inner> + TryInto<Self::Upper> + Div<N, Output = N> + Rem<N, Output = N> + Add<N, Output = N> + AddAssign<N> + Unsigned + Zero + One,
Self::Inner: Into<N>,
Self::from_rational
.source§impl Saturating for Perbill
impl Saturating for Perbill
source§fn saturating_add(self, rhs: Perbill) -> Perbill
fn saturating_add(self, rhs: Perbill) -> Perbill
Saturating addition. Compute self + rhs
, saturating at the numeric bounds instead of
overflowing. This operation is lossless if it does not saturate.
source§fn saturating_sub(self, rhs: Perbill) -> Perbill
fn saturating_sub(self, rhs: Perbill) -> Perbill
Saturating subtraction. Compute self - rhs
, saturating at the numeric bounds instead of
overflowing. This operation is lossless if it does not saturate.
source§fn saturating_mul(self, rhs: Perbill) -> Perbill
fn saturating_mul(self, rhs: Perbill) -> Perbill
Saturating multiply. Compute self * rhs
, saturating at the numeric bounds instead of
overflowing. This operation is lossy.
source§fn saturating_pow(self, exp: usize) -> Perbill
fn saturating_pow(self, exp: usize) -> Perbill
Saturating exponentiation. Computes self.pow(exp)
, saturating at the numeric
bounds instead of overflowing. This operation is lossy.
source§impl SaturatingAdd for Perbill
impl SaturatingAdd for Perbill
source§impl SaturatingSub for Perbill
impl SaturatingSub for Perbill
source§impl Serialize for Perbill
impl Serialize for Perbill
source§fn serialize<__S>(
&self,
__serializer: __S
) -> Result<<__S as Serializer>::Ok, <__S as Serializer>::Error>where
__S: Serializer,
fn serialize<__S>(
&self,
__serializer: __S
) -> Result<<__S as Serializer>::Ok, <__S as Serializer>::Error>where
__S: Serializer,
impl Copy for Perbill
impl EncodeLike<Perbill> for Perbill
impl Eq for Perbill
impl StructuralEq for Perbill
impl StructuralPartialEq for Perbill
Auto Trait Implementations§
impl RefUnwindSafe for Perbill
impl Send for Perbill
impl Sync for Perbill
impl Unpin for Perbill
impl UnwindSafe for Perbill
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builds. Read moresource§fn tap_borrow_dbg<B>(self, func: impl FnOnce(&B)) -> Selfwhere
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builds. Read moresource§fn tap_ref_dbg<R>(self, func: impl FnOnce(&R)) -> Selfwhere
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.tap_ref()
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Self: AsMut<R>,
R: ?Sized,
.tap_ref_mut()
only in debug builds, and is erased in release
builds. Read moresource§impl<T> ThresholdOrd<T> for Twhere
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T
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.