pub enum Month {
January = 1,
February = 2,
March = 3,
April = 4,
May = 5,
June = 6,
July = 7,
August = 8,
September = 9,
October = 10,
November = 11,
December = 12,
}Expand description
A month of the year, e.g. 1 for January, 2 for February, etc.
Variants§
January = 1
February = 2
March = 3
April = 4
May = 5
June = 6
July = 7
August = 8
September = 9
October = 10
November = 11
December = 12
Implementations§
Source§impl Month
impl Month
Sourcepub const fn is_january(&self) -> bool
pub const fn is_january(&self) -> bool
Returns true if this value is of type January. Returns false otherwise
Sourcepub const fn is_february(&self) -> bool
pub const fn is_february(&self) -> bool
Returns true if this value is of type February. Returns false otherwise
Sourcepub const fn is_march(&self) -> bool
pub const fn is_march(&self) -> bool
Returns true if this value is of type March. Returns false otherwise
Sourcepub const fn is_april(&self) -> bool
pub const fn is_april(&self) -> bool
Returns true if this value is of type April. Returns false otherwise
Sourcepub const fn is_may(&self) -> bool
pub const fn is_may(&self) -> bool
Returns true if this value is of type May. Returns false otherwise
Sourcepub const fn is_june(&self) -> bool
pub const fn is_june(&self) -> bool
Returns true if this value is of type June. Returns false otherwise
Sourcepub const fn is_july(&self) -> bool
pub const fn is_july(&self) -> bool
Returns true if this value is of type July. Returns false otherwise
Sourcepub const fn is_august(&self) -> bool
pub const fn is_august(&self) -> bool
Returns true if this value is of type August. Returns false otherwise
Sourcepub const fn is_september(&self) -> bool
pub const fn is_september(&self) -> bool
Returns true if this value is of type September. Returns false otherwise
Sourcepub const fn is_october(&self) -> bool
pub const fn is_october(&self) -> bool
Returns true if this value is of type October. Returns false otherwise
Sourcepub const fn is_november(&self) -> bool
pub const fn is_november(&self) -> bool
Returns true if this value is of type November. Returns false otherwise
Sourcepub const fn is_december(&self) -> bool
pub const fn is_december(&self) -> bool
Returns true if this value is of type December. Returns false otherwise
Methods from Deref<Target = u8>§
pub const MIN: u8 = 0
pub const MAX: u8
pub const BITS: u32
1.23.0 · Sourcepub fn is_ascii(&self) -> bool
pub fn is_ascii(&self) -> bool
Checks if the value is within the ASCII range.
§Examples
let ascii = 97u8;
let non_ascii = 150u8;
assert!(ascii.is_ascii());
assert!(!non_ascii.is_ascii());Sourcepub fn as_ascii(&self) -> Option<AsciiChar>
🔬This is a nightly-only experimental API. (ascii_char)
pub fn as_ascii(&self) -> Option<AsciiChar>
ascii_char)If the value of this byte is within the ASCII range, returns it as an
ASCII character. Otherwise, returns None.
Sourcepub unsafe fn as_ascii_unchecked(&self) -> AsciiChar
🔬This is a nightly-only experimental API. (ascii_char)
pub unsafe fn as_ascii_unchecked(&self) -> AsciiChar
ascii_char)Converts this byte to an ASCII character, without checking whether or not it’s valid.
§Safety
This byte must be valid ASCII, or else this is UB.
1.23.0 · Sourcepub fn to_ascii_uppercase(&self) -> u8
pub fn to_ascii_uppercase(&self) -> u8
Makes a copy of the value in its ASCII upper case equivalent.
ASCII letters ‘a’ to ‘z’ are mapped to ‘A’ to ‘Z’, but non-ASCII letters are unchanged.
To uppercase the value in-place, use make_ascii_uppercase.
§Examples
let lowercase_a = 97u8;
assert_eq!(65, lowercase_a.to_ascii_uppercase());1.23.0 · Sourcepub fn to_ascii_lowercase(&self) -> u8
pub fn to_ascii_lowercase(&self) -> u8
Makes a copy of the value in its ASCII lower case equivalent.
ASCII letters ‘A’ to ‘Z’ are mapped to ‘a’ to ‘z’, but non-ASCII letters are unchanged.
To lowercase the value in-place, use make_ascii_lowercase.
§Examples
let uppercase_a = 65u8;
assert_eq!(97, uppercase_a.to_ascii_lowercase());1.23.0 · Sourcepub fn eq_ignore_ascii_case(&self, other: &u8) -> bool
pub fn eq_ignore_ascii_case(&self, other: &u8) -> bool
Checks that two values are an ASCII case-insensitive match.
This is equivalent to to_ascii_lowercase(a) == to_ascii_lowercase(b).
§Examples
let lowercase_a = 97u8;
let uppercase_a = 65u8;
assert!(lowercase_a.eq_ignore_ascii_case(&uppercase_a));1.24.0 · Sourcepub fn is_ascii_alphabetic(&self) -> bool
pub fn is_ascii_alphabetic(&self) -> bool
Checks if the value is an ASCII alphabetic character:
- U+0041 ‘A’ ..= U+005A ‘Z’, or
- U+0061 ‘a’ ..= U+007A ‘z’.
§Examples
let uppercase_a = b'A';
let uppercase_g = b'G';
let a = b'a';
let g = b'g';
let zero = b'0';
let percent = b'%';
let space = b' ';
let lf = b'\n';
let esc = b'\x1b';
assert!(uppercase_a.is_ascii_alphabetic());
assert!(uppercase_g.is_ascii_alphabetic());
assert!(a.is_ascii_alphabetic());
assert!(g.is_ascii_alphabetic());
assert!(!zero.is_ascii_alphabetic());
assert!(!percent.is_ascii_alphabetic());
assert!(!space.is_ascii_alphabetic());
assert!(!lf.is_ascii_alphabetic());
assert!(!esc.is_ascii_alphabetic());1.24.0 · Sourcepub fn is_ascii_uppercase(&self) -> bool
pub fn is_ascii_uppercase(&self) -> bool
Checks if the value is an ASCII uppercase character: U+0041 ‘A’ ..= U+005A ‘Z’.
§Examples
let uppercase_a = b'A';
let uppercase_g = b'G';
let a = b'a';
let g = b'g';
let zero = b'0';
let percent = b'%';
let space = b' ';
let lf = b'\n';
let esc = b'\x1b';
assert!(uppercase_a.is_ascii_uppercase());
assert!(uppercase_g.is_ascii_uppercase());
assert!(!a.is_ascii_uppercase());
assert!(!g.is_ascii_uppercase());
assert!(!zero.is_ascii_uppercase());
assert!(!percent.is_ascii_uppercase());
assert!(!space.is_ascii_uppercase());
assert!(!lf.is_ascii_uppercase());
assert!(!esc.is_ascii_uppercase());1.24.0 · Sourcepub fn is_ascii_lowercase(&self) -> bool
pub fn is_ascii_lowercase(&self) -> bool
Checks if the value is an ASCII lowercase character: U+0061 ‘a’ ..= U+007A ‘z’.
§Examples
let uppercase_a = b'A';
let uppercase_g = b'G';
let a = b'a';
let g = b'g';
let zero = b'0';
let percent = b'%';
let space = b' ';
let lf = b'\n';
let esc = b'\x1b';
assert!(!uppercase_a.is_ascii_lowercase());
assert!(!uppercase_g.is_ascii_lowercase());
assert!(a.is_ascii_lowercase());
assert!(g.is_ascii_lowercase());
assert!(!zero.is_ascii_lowercase());
assert!(!percent.is_ascii_lowercase());
assert!(!space.is_ascii_lowercase());
assert!(!lf.is_ascii_lowercase());
assert!(!esc.is_ascii_lowercase());1.24.0 · Sourcepub fn is_ascii_alphanumeric(&self) -> bool
pub fn is_ascii_alphanumeric(&self) -> bool
Checks if the value is an ASCII alphanumeric character:
- U+0041 ‘A’ ..= U+005A ‘Z’, or
- U+0061 ‘a’ ..= U+007A ‘z’, or
- U+0030 ‘0’ ..= U+0039 ‘9’.
§Examples
let uppercase_a = b'A';
let uppercase_g = b'G';
let a = b'a';
let g = b'g';
let zero = b'0';
let percent = b'%';
let space = b' ';
let lf = b'\n';
let esc = b'\x1b';
assert!(uppercase_a.is_ascii_alphanumeric());
assert!(uppercase_g.is_ascii_alphanumeric());
assert!(a.is_ascii_alphanumeric());
assert!(g.is_ascii_alphanumeric());
assert!(zero.is_ascii_alphanumeric());
assert!(!percent.is_ascii_alphanumeric());
assert!(!space.is_ascii_alphanumeric());
assert!(!lf.is_ascii_alphanumeric());
assert!(!esc.is_ascii_alphanumeric());1.24.0 · Sourcepub fn is_ascii_digit(&self) -> bool
pub fn is_ascii_digit(&self) -> bool
Checks if the value is an ASCII decimal digit: U+0030 ‘0’ ..= U+0039 ‘9’.
§Examples
let uppercase_a = b'A';
let uppercase_g = b'G';
let a = b'a';
let g = b'g';
let zero = b'0';
let percent = b'%';
let space = b' ';
let lf = b'\n';
let esc = b'\x1b';
assert!(!uppercase_a.is_ascii_digit());
assert!(!uppercase_g.is_ascii_digit());
assert!(!a.is_ascii_digit());
assert!(!g.is_ascii_digit());
assert!(zero.is_ascii_digit());
assert!(!percent.is_ascii_digit());
assert!(!space.is_ascii_digit());
assert!(!lf.is_ascii_digit());
assert!(!esc.is_ascii_digit());Sourcepub fn is_ascii_octdigit(&self) -> bool
🔬This is a nightly-only experimental API. (is_ascii_octdigit)
pub fn is_ascii_octdigit(&self) -> bool
is_ascii_octdigit)Checks if the value is an ASCII octal digit: U+0030 ‘0’ ..= U+0037 ‘7’.
§Examples
#![feature(is_ascii_octdigit)]
let uppercase_a = b'A';
let a = b'a';
let zero = b'0';
let seven = b'7';
let nine = b'9';
let percent = b'%';
let lf = b'\n';
assert!(!uppercase_a.is_ascii_octdigit());
assert!(!a.is_ascii_octdigit());
assert!(zero.is_ascii_octdigit());
assert!(seven.is_ascii_octdigit());
assert!(!nine.is_ascii_octdigit());
assert!(!percent.is_ascii_octdigit());
assert!(!lf.is_ascii_octdigit());1.24.0 · Sourcepub fn is_ascii_hexdigit(&self) -> bool
pub fn is_ascii_hexdigit(&self) -> bool
Checks if the value is an ASCII hexadecimal digit:
- U+0030 ‘0’ ..= U+0039 ‘9’, or
- U+0041 ‘A’ ..= U+0046 ‘F’, or
- U+0061 ‘a’ ..= U+0066 ‘f’.
§Examples
let uppercase_a = b'A';
let uppercase_g = b'G';
let a = b'a';
let g = b'g';
let zero = b'0';
let percent = b'%';
let space = b' ';
let lf = b'\n';
let esc = b'\x1b';
assert!(uppercase_a.is_ascii_hexdigit());
assert!(!uppercase_g.is_ascii_hexdigit());
assert!(a.is_ascii_hexdigit());
assert!(!g.is_ascii_hexdigit());
assert!(zero.is_ascii_hexdigit());
assert!(!percent.is_ascii_hexdigit());
assert!(!space.is_ascii_hexdigit());
assert!(!lf.is_ascii_hexdigit());
assert!(!esc.is_ascii_hexdigit());1.24.0 · Sourcepub fn is_ascii_punctuation(&self) -> bool
pub fn is_ascii_punctuation(&self) -> bool
Checks if the value is an ASCII punctuation or symbol character (i.e. not alphanumeric, whitespace, or control):
- U+0021 ..= U+002F
! " # $ % & ' ( ) * + , - . /, or - U+003A ..= U+0040
: ; < = > ? @, or - U+005B ..= U+0060
[ \ ] ^ _ `, or - U+007B ..= U+007E
{ | } ~
§Examples
let uppercase_a = b'A';
let uppercase_g = b'G';
let a = b'a';
let g = b'g';
let zero = b'0';
let percent = b'%';
let space = b' ';
let lf = b'\n';
let esc = b'\x1b';
assert!(!uppercase_a.is_ascii_punctuation());
assert!(!uppercase_g.is_ascii_punctuation());
assert!(!a.is_ascii_punctuation());
assert!(!g.is_ascii_punctuation());
assert!(!zero.is_ascii_punctuation());
assert!(percent.is_ascii_punctuation());
assert!(!space.is_ascii_punctuation());
assert!(!lf.is_ascii_punctuation());
assert!(!esc.is_ascii_punctuation());1.24.0 · Sourcepub fn is_ascii_graphic(&self) -> bool
pub fn is_ascii_graphic(&self) -> bool
Checks if the value is an ASCII graphic character (i.e. not whitespace or control): U+0021 ‘!’ ..= U+007E ‘~’.
§Examples
let uppercase_a = b'A';
let uppercase_g = b'G';
let a = b'a';
let g = b'g';
let zero = b'0';
let percent = b'%';
let space = b' ';
let lf = b'\n';
let esc = b'\x1b';
assert!(uppercase_a.is_ascii_graphic());
assert!(uppercase_g.is_ascii_graphic());
assert!(a.is_ascii_graphic());
assert!(g.is_ascii_graphic());
assert!(zero.is_ascii_graphic());
assert!(percent.is_ascii_graphic());
assert!(!space.is_ascii_graphic());
assert!(!lf.is_ascii_graphic());
assert!(!esc.is_ascii_graphic());1.24.0 · Sourcepub fn is_ascii_whitespace(&self) -> bool
pub fn is_ascii_whitespace(&self) -> bool
Checks if the value is an ASCII whitespace character: U+0020 SPACE, U+0009 HORIZONTAL TAB, U+000A LINE FEED, U+000C FORM FEED, or U+000D CARRIAGE RETURN.
Warning: Because the list above excludes U+000B VERTICAL TAB,
b.is_ascii_whitespace() is not equivalent to char::from(b).is_whitespace().
Rust uses the WhatWG Infra Standard’s definition of ASCII whitespace. There are several other definitions in wide use. For instance, the POSIX locale includes U+000B VERTICAL TAB as well as all the above characters, but—from the very same specification—the default rule for “field splitting” in the Bourne shell considers only SPACE, HORIZONTAL TAB, and LINE FEED as whitespace.
If you are writing a program that will process an existing file format, check what that format’s definition of whitespace is before using this function.
§Examples
let uppercase_a = b'A';
let uppercase_g = b'G';
let a = b'a';
let g = b'g';
let zero = b'0';
let percent = b'%';
let space = b' ';
let lf = b'\n';
let esc = b'\x1b';
assert!(!uppercase_a.is_ascii_whitespace());
assert!(!uppercase_g.is_ascii_whitespace());
assert!(!a.is_ascii_whitespace());
assert!(!g.is_ascii_whitespace());
assert!(!zero.is_ascii_whitespace());
assert!(!percent.is_ascii_whitespace());
assert!(space.is_ascii_whitespace());
assert!(lf.is_ascii_whitespace());
assert!(!esc.is_ascii_whitespace());1.24.0 · Sourcepub fn is_ascii_control(&self) -> bool
pub fn is_ascii_control(&self) -> bool
Checks if the value is an ASCII control character: U+0000 NUL ..= U+001F UNIT SEPARATOR, or U+007F DELETE. Note that most ASCII whitespace characters are control characters, but SPACE is not.
§Examples
let uppercase_a = b'A';
let uppercase_g = b'G';
let a = b'a';
let g = b'g';
let zero = b'0';
let percent = b'%';
let space = b' ';
let lf = b'\n';
let esc = b'\x1b';
assert!(!uppercase_a.is_ascii_control());
assert!(!uppercase_g.is_ascii_control());
assert!(!a.is_ascii_control());
assert!(!g.is_ascii_control());
assert!(!zero.is_ascii_control());
assert!(!percent.is_ascii_control());
assert!(!space.is_ascii_control());
assert!(lf.is_ascii_control());
assert!(esc.is_ascii_control());Trait Implementations§
impl Copy for Month
Source§impl<'de> Deserialize<'de> for Month
impl<'de> Deserialize<'de> for Month
Source§fn deserialize<__D>(
__deserializer: __D,
) -> Result<Month, <__D as Deserializer<'de>>::Error>where
__D: Deserializer<'de>,
fn deserialize<__D>(
__deserializer: __D,
) -> Result<Month, <__D as Deserializer<'de>>::Error>where
__D: Deserializer<'de>,
impl Eq for Month
Source§impl FromStr for Month
impl FromStr for Month
Source§fn from_str(s: &str) -> Result<Month, Error>
fn from_str(s: &str) -> Result<Month, Error>
Parses a month from a string.
The string must be a valid month number (1-12).
If the string is not a valid month, an Error::InvalidMonth is returned.
§Examples
extern crate klirr_core;
use klirr_core::prelude::*;
let month: Month = "3".parse().unwrap();
assert_eq!(month, Month::March);Source§impl Ord for Month
impl Ord for Month
1.21.0 (const: unstable) · Source§fn max(self, other: Self) -> Selfwhere
Self: Sized,
fn max(self, other: Self) -> Selfwhere
Self: Sized,
Source§impl PartialOrd for Month
impl PartialOrd for Month
Source§impl Serialize for Month
impl Serialize for Month
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 StructuralPartialEq for Month
Source§impl TryFrom<i32> for Month
impl TryFrom<i32> for Month
Source§fn try_from(month: i32) -> Result<Month, Error>
fn try_from(month: i32) -> Result<Month, Error>
Attempts to convert an integer to a Month.
The integer must be between 1 and 12, inclusive.
If the integer is outside this range, an Error::InvalidMonth is returned
§Examples
extern crate klirr_core;
use klirr_core::prelude::*;
let march = Month::try_from(3).unwrap();
assert_eq!(march.to_string(), "3".to_owned());Auto Trait Implementations§
impl Freeze for Month
impl RefUnwindSafe for Month
impl Send for Month
impl Sync for Month
impl Unpin for Month
impl UnsafeUnpin for Month
impl UnwindSafe for Month
Blanket Implementations§
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Swp: WhitePoint<T>,
Dwp: WhitePoint<T>,
D: AdaptFrom<S, Swp, Dwp, T>,
impl<S, D, Swp, Dwp, T> AdaptInto<D, Swp, Dwp, T> for Swhere
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Swp: WhitePoint<T>,
Dwp: WhitePoint<T>,
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M: TransformMatrix<T>,
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C: IntoArrays<T>,
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self,
parameters: BakedParameters<WpParam, <U as IntoCam16Unclamped<WpParam, T>>::Scalar>,
) -> T
fn into_cam16_unclamped( self, parameters: BakedParameters<WpParam, <U as IntoCam16Unclamped<WpParam, T>>::Scalar>, ) -> T
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fn into_color_unclamped(self) -> U
Source§impl<T> IntoEither for T
impl<T> IntoEither for T
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if into_left is true.
Converts self into a Right variant of Either<Self, Self>
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fn into_either_with<F>(self, into_left: F) -> Either<Self, Self>
self into a Left variant of Either<Self, Self>
if into_left(&self) returns true.
Converts self into a Right variant of Either<Self, Self>
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impl<T> IntoStimulus<T> for T
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fn into_stimulus(self) -> T
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ToString::to_string, but without panic on OOM.
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try_into_colors fails to cast.Source§fn try_components_into(self) -> Result<C, <T as TryComponentsInto<C>>::Error>
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fn try_into_color(self) -> Result<U, OutOfBounds<U>>
OutOfBounds error is returned which contains
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