pub struct PWrapper<T>(pub T);Expand description
Wrapper for many std types,
which implements the const_debug_fmt and/or const_display_fmt methods for them.
The macros from this crate automatically wraps std types in this type,
so you only need to use it if you’re manually calling the const_*_fmt methods.
§Constructors
Most std types can be wrapped in this type simply by doing PWrapper(value).
To wrap arrays, there is the PWrapper::slice constructor
for convenience.
§Excluded std types
Note that this type does not implement the formatting methods for std types which wrap non-std types, only for a selection of wrapped std types.
You can use the call_debug_fmt macro to format arrays/slices/Options of
any type that can be const debug formatted.
§Example
This example demonstrates how you can implement debug formatting for a type using PWrapper to write std types.
use const_format::{Error, Formatter, PWrapper};
use const_format::{impl_fmt, formatc, try_};
use core::num::NonZeroU32;
pub struct Divide(pub u32, pub u32);
impl_fmt!{
impl Divide;
pub const fn const_debug_fmt(&self, f: &mut Formatter<'_>) -> Result<(), Error> {
let Self(left, right) = *self;
let divided = self.0 / self.1;
let mut f = f.debug_struct("Divide");
try_!(PWrapper(self.0).const_debug_fmt(f.field("numerator")));
try_!(PWrapper(self.1).const_debug_fmt(f.field("denominator")));
try_!(PWrapper(divided).const_debug_fmt(f.field("divided")));
f.finish()
}
}
const TEXT: &str = formatc!("{:?}", Divide(34, 11));
const T_HEX: &str = formatc!("{:X?}", Divide(34, 11));
const T_BIN: &str = formatc!("{:b?}", Divide(34, 11));
assert_eq!(TEXT, "Divide { numerator: 34, denominator: 11, divided: 3 }");
assert_eq!(T_HEX, "Divide { numerator: 22, denominator: B, divided: 3 }");
assert_eq!(T_BIN, "Divide { numerator: 100010, denominator: 1011, divided: 11 }");Tuple Fields§
§0: TImplementations§
Source§impl PWrapper<i8>
impl PWrapper<i8>
Sourcepub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
pub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a hexadecimal literal.
Sourcepub const fn binary_len(self, fmt: FormattingFlags) -> usize
pub const fn binary_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a binary literal.
Source§impl PWrapper<i8>
impl PWrapper<i8>
Sourcepub const fn unsigned_abs(self) -> u8
pub const fn unsigned_abs(self) -> u8
Returns the absolute value of this integer, as the equivalent unsigned type.
Source§impl PWrapper<i16>
impl PWrapper<i16>
Sourcepub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
pub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a hexadecimal literal.
Sourcepub const fn binary_len(self, fmt: FormattingFlags) -> usize
pub const fn binary_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a binary literal.
Source§impl PWrapper<i16>
impl PWrapper<i16>
Sourcepub const fn unsigned_abs(self) -> u16
pub const fn unsigned_abs(self) -> u16
Returns the absolute value of this integer, as the equivalent unsigned type.
Source§impl PWrapper<i32>
impl PWrapper<i32>
Sourcepub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
pub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a hexadecimal literal.
Sourcepub const fn binary_len(self, fmt: FormattingFlags) -> usize
pub const fn binary_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a binary literal.
Source§impl PWrapper<i32>
impl PWrapper<i32>
Sourcepub const fn unsigned_abs(self) -> u32
pub const fn unsigned_abs(self) -> u32
Returns the absolute value of this integer, as the equivalent unsigned type.
Source§impl PWrapper<i64>
impl PWrapper<i64>
Sourcepub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
pub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a hexadecimal literal.
Sourcepub const fn binary_len(self, fmt: FormattingFlags) -> usize
pub const fn binary_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a binary literal.
Source§impl PWrapper<i64>
impl PWrapper<i64>
Sourcepub const fn unsigned_abs(self) -> u64
pub const fn unsigned_abs(self) -> u64
Returns the absolute value of this integer, as the equivalent unsigned type.
Source§impl PWrapper<i128>
impl PWrapper<i128>
Sourcepub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
pub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a hexadecimal literal.
Sourcepub const fn binary_len(self, fmt: FormattingFlags) -> usize
pub const fn binary_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a binary literal.
Source§impl PWrapper<i128>
impl PWrapper<i128>
Sourcepub const fn unsigned_abs(self) -> u128
pub const fn unsigned_abs(self) -> u128
Returns the absolute value of this integer, as the equivalent unsigned type.
Source§impl PWrapper<u8>
impl PWrapper<u8>
Sourcepub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
pub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a hexadecimal literal.
Sourcepub const fn binary_len(self, fmt: FormattingFlags) -> usize
pub const fn binary_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a binary literal.
Source§impl PWrapper<u8>
impl PWrapper<u8>
Sourcepub const fn unsigned_abs(self) -> u8
pub const fn unsigned_abs(self) -> u8
Returns the absolute value of this integer, as the equivalent unsigned type.
Source§impl PWrapper<u16>
impl PWrapper<u16>
Sourcepub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
pub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a hexadecimal literal.
Sourcepub const fn binary_len(self, fmt: FormattingFlags) -> usize
pub const fn binary_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a binary literal.
Source§impl PWrapper<u16>
impl PWrapper<u16>
Sourcepub const fn unsigned_abs(self) -> u16
pub const fn unsigned_abs(self) -> u16
Returns the absolute value of this integer, as the equivalent unsigned type.
Source§impl PWrapper<u32>
impl PWrapper<u32>
Sourcepub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
pub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a hexadecimal literal.
Sourcepub const fn binary_len(self, fmt: FormattingFlags) -> usize
pub const fn binary_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a binary literal.
Source§impl PWrapper<u32>
impl PWrapper<u32>
Sourcepub const fn unsigned_abs(self) -> u32
pub const fn unsigned_abs(self) -> u32
Returns the absolute value of this integer, as the equivalent unsigned type.
Source§impl PWrapper<u64>
impl PWrapper<u64>
Sourcepub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
pub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a hexadecimal literal.
Sourcepub const fn binary_len(self, fmt: FormattingFlags) -> usize
pub const fn binary_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a binary literal.
Source§impl PWrapper<u64>
impl PWrapper<u64>
Sourcepub const fn unsigned_abs(self) -> u64
pub const fn unsigned_abs(self) -> u64
Returns the absolute value of this integer, as the equivalent unsigned type.
Source§impl PWrapper<u128>
impl PWrapper<u128>
Sourcepub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
pub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a hexadecimal literal.
Sourcepub const fn binary_len(self, fmt: FormattingFlags) -> usize
pub const fn binary_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a binary literal.
Source§impl PWrapper<u128>
impl PWrapper<u128>
Sourcepub const fn unsigned_abs(self) -> u128
pub const fn unsigned_abs(self) -> u128
Returns the absolute value of this integer, as the equivalent unsigned type.
Source§impl PWrapper<usize>
impl PWrapper<usize>
Sourcepub const fn compute_display_len(self, fmt: FormattingFlags) -> usize
pub const fn compute_display_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a literal.
Sourcepub const fn compute_debug_len(self, fmt: FormattingFlags) -> usize
pub const fn compute_debug_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a literal.
Sourcepub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
pub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a hexadecimal literal.
Sourcepub const fn binary_len(self, fmt: FormattingFlags) -> usize
pub const fn binary_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a binary literal.
Source§impl PWrapper<isize>
impl PWrapper<isize>
Sourcepub const fn compute_display_len(self, fmt: FormattingFlags) -> usize
pub const fn compute_display_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a literal.
Sourcepub const fn compute_debug_len(self, fmt: FormattingFlags) -> usize
pub const fn compute_debug_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a literal.
Sourcepub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
pub const fn hexadecimal_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a hexadecimal literal.
Sourcepub const fn binary_len(self, fmt: FormattingFlags) -> usize
pub const fn binary_len(self, fmt: FormattingFlags) -> usize
Computes how long much space is necessary to write this integer as a binary literal.
Source§impl PWrapper<usize>
impl PWrapper<usize>
Sourcepub const fn unsigned_abs(self) -> usize
pub const fn unsigned_abs(self) -> usize
Returns the absolute value of this integer.
Source§impl PWrapper<isize>
impl PWrapper<isize>
Sourcepub const fn unsigned_abs(self) -> usize
pub const fn unsigned_abs(self) -> usize
Returns the absolute value of this integer, as the equivalent unsigned type.
Source§impl PWrapper<&[u8]>
impl PWrapper<&[u8]>
Sourcepub const fn compute_utf8_debug_len(self) -> usize
pub const fn compute_utf8_debug_len(self) -> usize
Computes how much space is necessary to write the wrapped &[u8] as a utf8 string,
with debug formatting
Sourcepub const fn compute_utf8_debug_len_in_range(self, range: Range<usize>) -> usize
pub const fn compute_utf8_debug_len_in_range(self, range: Range<usize>) -> usize
Computes how much space is necessary to write &self.0[range] as a utf8 string,
with debug formatting
Trait Implementations§
impl<T> Copy for PWrapper<T>where
T: Copy,
Auto Trait Implementations§
impl<T> Freeze for PWrapper<T>where
T: Freeze,
impl<T> RefUnwindSafe for PWrapper<T>where
T: RefUnwindSafe,
impl<T> Send for PWrapper<T>where
T: Send,
impl<T> Sync for PWrapper<T>where
T: Sync,
impl<T> Unpin for PWrapper<T>where
T: Unpin,
impl<T> UnsafeUnpin for PWrapper<T>where
T: UnsafeUnpin,
impl<T> UnwindSafe for PWrapper<T>where
T: UnwindSafe,
Blanket Implementations§
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
impl<ST, DT> CastableFrom<ST, Initialized, Initialized> for DT
impl<ST, DT> CastableFrom<ST, Uninit, Uninit> for DT
Source§impl<T> CloneToUninit for Twhere
T: Clone,
impl<T> CloneToUninit for Twhere
T: Clone,
Source§impl<T> Downcast for Twhere
T: Any,
impl<T> Downcast for Twhere
T: Any,
Source§fn into_any(self: Box<T>) -> Box<dyn Any>
fn into_any(self: Box<T>) -> Box<dyn Any>
Box<dyn Trait> (where Trait: Downcast) to Box<dyn Any>. Box<dyn Any> can
then be further downcast into Box<ConcreteType> where ConcreteType implements Trait.Source§fn into_any_rc(self: Rc<T>) -> Rc<dyn Any>
fn into_any_rc(self: Rc<T>) -> Rc<dyn Any>
Rc<Trait> (where Trait: Downcast) to Rc<Any>. Rc<Any> can then be
further downcast into Rc<ConcreteType> where ConcreteType implements Trait.Source§fn as_any(&self) -> &(dyn Any + 'static)
fn as_any(&self) -> &(dyn Any + 'static)
&Trait (where Trait: Downcast) to &Any. This is needed since Rust cannot
generate &Any’s vtable from &Trait’s.Source§fn as_any_mut(&mut self) -> &mut (dyn Any + 'static)
fn as_any_mut(&mut self) -> &mut (dyn Any + 'static)
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fn into_any(self: Box<T>) -> Box<dyn Any>
Box<dyn Trait> (where Trait: Downcast) to Box<dyn Any>, which can then be
downcast into Box<dyn ConcreteType> where ConcreteType implements Trait.Source§fn into_any_rc(self: Rc<T>) -> Rc<dyn Any>
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impl<T> DowncastSend for T
Source§impl<T> DowncastSync for T
impl<T> DowncastSync for T
Source§impl<T> DowncastSync for T
impl<T> DowncastSync for T
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impl<T> IntoEither for T
Source§fn into_either(self, into_left: bool) -> Either<Self, Self>
fn into_either(self, into_left: bool) -> Either<Self, Self>
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Source§impl<SS, SP> SupersetOf<SS> for SPwhere
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Source§fn to_subset(&self) -> Option<SS>
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