Enum scale_info::prelude::ops::ControlFlow
1.55.0 · source · [−]pub enum ControlFlow<B, C = ()> {
Continue(C),
Break(B),
}Expand description
Used to tell an operation whether it should exit early or go on as usual.
This is used when exposing things (like graph traversals or visitors) where
you want the user to be able to choose whether to exit early.
Having the enum makes it clearer – no more wondering “wait, what did false
mean again?” – and allows including a value.
Similar to Option and Result, this enum can be used with the ? operator
to return immediately if the Break variant is present or otherwise continue normally
with the value inside the Continue variant.
Examples
Early-exiting from Iterator::try_for_each:
use std::ops::ControlFlow;
let r = (2..100).try_for_each(|x| {
if 403 % x == 0 {
return ControlFlow::Break(x)
}
ControlFlow::Continue(())
});
assert_eq!(r, ControlFlow::Break(13));A basic tree traversal:
use std::ops::ControlFlow;
pub struct TreeNode<T> {
value: T,
left: Option<Box<TreeNode<T>>>,
right: Option<Box<TreeNode<T>>>,
}
impl<T> TreeNode<T> {
pub fn traverse_inorder<B>(&self, f: &mut impl FnMut(&T) -> ControlFlow<B>) -> ControlFlow<B> {
if let Some(left) = &self.left {
left.traverse_inorder(f)?;
}
f(&self.value)?;
if let Some(right) = &self.right {
right.traverse_inorder(f)?;
}
ControlFlow::Continue(())
}
fn leaf(value: T) -> Option<Box<TreeNode<T>>> {
Some(Box::new(Self { value, left: None, right: None }))
}
}
let node = TreeNode {
value: 0,
left: TreeNode::leaf(1),
right: Some(Box::new(TreeNode {
value: -1,
left: TreeNode::leaf(5),
right: TreeNode::leaf(2),
}))
};
let mut sum = 0;
let res = node.traverse_inorder(&mut |val| {
if *val < 0 {
ControlFlow::Break(*val)
} else {
sum += *val;
ControlFlow::Continue(())
}
});
assert_eq!(res, ControlFlow::Break(-1));
assert_eq!(sum, 6);Variants
Continue(C)
Move on to the next phase of the operation as normal.
Break(B)
Exit the operation without running subsequent phases.
Implementations
sourceimpl<B, C> ControlFlow<B, C>
impl<B, C> ControlFlow<B, C>
1.59.0 · sourcepub fn is_break(&self) -> bool
pub fn is_break(&self) -> bool
Returns true if this is a Break variant.
Examples
use std::ops::ControlFlow;
assert!(ControlFlow::<i32, String>::Break(3).is_break());
assert!(!ControlFlow::<String, i32>::Continue(3).is_break());1.59.0 · sourcepub fn is_continue(&self) -> bool
pub fn is_continue(&self) -> bool
Returns true if this is a Continue variant.
Examples
use std::ops::ControlFlow;
assert!(!ControlFlow::<i32, String>::Break(3).is_continue());
assert!(ControlFlow::<String, i32>::Continue(3).is_continue());sourcepub fn break_value(self) -> Option<B>
🔬 This is a nightly-only experimental API. (control_flow_enum)
pub fn break_value(self) -> Option<B>
control_flow_enum)Converts the ControlFlow into an Option which is Some if the
ControlFlow was Break and None otherwise.
Examples
#![feature(control_flow_enum)]
use std::ops::ControlFlow;
assert_eq!(ControlFlow::<i32, String>::Break(3).break_value(), Some(3));
assert_eq!(ControlFlow::<String, i32>::Continue(3).break_value(), None);sourcepub fn map_break<T, F>(self, f: F) -> ControlFlow<T, C> where
F: FnOnce(B) -> T,
🔬 This is a nightly-only experimental API. (control_flow_enum)
pub fn map_break<T, F>(self, f: F) -> ControlFlow<T, C> where
F: FnOnce(B) -> T,
control_flow_enum)Maps ControlFlow<B, C> to ControlFlow<T, C> by applying a function
to the break value in case it exists.
sourceimpl<B> ControlFlow<B, ()>
impl<B> ControlFlow<B, ()>
sourcepub const CONTINUE: ControlFlow<B, ()>
🔬 This is a nightly-only experimental API. (control_flow_enum)
pub const CONTINUE: ControlFlow<B, ()>
control_flow_enum)It’s frequently the case that there’s no value needed with Continue,
so this provides a way to avoid typing (()), if you prefer it.
Examples
#![feature(control_flow_enum)]
use std::ops::ControlFlow;
let mut partial_sum = 0;
let last_used = (1..10).chain(20..25).try_for_each(|x| {
partial_sum += x;
if partial_sum > 100 { ControlFlow::Break(x) }
else { ControlFlow::CONTINUE }
});
assert_eq!(last_used.break_value(), Some(22));sourceimpl<C> ControlFlow<(), C>
impl<C> ControlFlow<(), C>
sourcepub const BREAK: ControlFlow<(), C>
🔬 This is a nightly-only experimental API. (control_flow_enum)
pub const BREAK: ControlFlow<(), C>
control_flow_enum)APIs like try_for_each don’t need values with Break,
so this provides a way to avoid typing (()), if you prefer it.
Examples
#![feature(control_flow_enum)]
use std::ops::ControlFlow;
let mut partial_sum = 0;
(1..10).chain(20..25).try_for_each(|x| {
if partial_sum > 100 { ControlFlow::BREAK }
else { partial_sum += x; ControlFlow::CONTINUE }
});
assert_eq!(partial_sum, 108);Trait Implementations
sourceimpl<B, C> Clone for ControlFlow<B, C> where
B: Clone,
C: Clone,
impl<B, C> Clone for ControlFlow<B, C> where
B: Clone,
C: Clone,
sourcefn clone(&self) -> ControlFlow<B, C>
fn clone(&self) -> ControlFlow<B, C>
Returns a copy of the value. Read more
1.0.0 · sourcefn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
Performs copy-assignment from source. Read more
sourceimpl<B, C> Debug for ControlFlow<B, C> where
B: Debug,
C: Debug,
impl<B, C> Debug for ControlFlow<B, C> where
B: Debug,
C: Debug,
sourceimpl<B, C> FromResidual<<ControlFlow<B, C> as Try>::Residual> for ControlFlow<B, C>
impl<B, C> FromResidual<<ControlFlow<B, C> as Try>::Residual> for ControlFlow<B, C>
sourcefn from_residual(residual: ControlFlow<B, Infallible>) -> ControlFlow<B, C>
fn from_residual(residual: ControlFlow<B, Infallible>) -> ControlFlow<B, C>
try_trait_v2)Constructs the type from a compatible Residual type. Read more
sourceimpl<B, C> PartialEq<ControlFlow<B, C>> for ControlFlow<B, C> where
B: PartialEq<B>,
C: PartialEq<C>,
impl<B, C> PartialEq<ControlFlow<B, C>> for ControlFlow<B, C> where
B: PartialEq<B>,
C: PartialEq<C>,
sourcefn eq(&self, other: &ControlFlow<B, C>) -> bool
fn eq(&self, other: &ControlFlow<B, C>) -> bool
This method tests for self and other values to be equal, and is used
by ==. Read more
sourcefn ne(&self, other: &ControlFlow<B, C>) -> bool
fn ne(&self, other: &ControlFlow<B, C>) -> bool
This method tests for !=.
sourceimpl<B, C> Residual<C> for ControlFlow<B, Infallible>
impl<B, C> Residual<C> for ControlFlow<B, Infallible>
type TryType = ControlFlow<B, C>
type TryType = ControlFlow<B, C>
try_trait_v2_residual)The “return” type of this meta-function.
sourceimpl<B, C> Try for ControlFlow<B, C>
impl<B, C> Try for ControlFlow<B, C>
type Output = C
type Output = C
try_trait_v2)The type of the value produced by ? when not short-circuiting.
type Residual = ControlFlow<B, Infallible>
type Residual = ControlFlow<B, Infallible>
try_trait_v2)The type of the value passed to FromResidual::from_residual
as part of ? when short-circuiting. Read more
sourcefn from_output(output: <ControlFlow<B, C> as Try>::Output) -> ControlFlow<B, C>
fn from_output(output: <ControlFlow<B, C> as Try>::Output) -> ControlFlow<B, C>
try_trait_v2)Constructs the type from its Output type. Read more
sourcefn branch(
self
) -> ControlFlow<<ControlFlow<B, C> as Try>::Residual, <ControlFlow<B, C> as Try>::Output>
fn branch(
self
) -> ControlFlow<<ControlFlow<B, C> as Try>::Residual, <ControlFlow<B, C> as Try>::Output>
try_trait_v2)Used in ? to decide whether the operator should produce a value
(because this returned ControlFlow::Continue)
or propagate a value back to the caller
(because this returned ControlFlow::Break). Read more
impl<B, C> Copy for ControlFlow<B, C> where
B: Copy,
C: Copy,
impl<B, C> StructuralPartialEq for ControlFlow<B, C>
Auto Trait Implementations
impl<B, C> RefUnwindSafe for ControlFlow<B, C> where
B: RefUnwindSafe,
C: RefUnwindSafe,
impl<B, C> Send for ControlFlow<B, C> where
B: Send,
C: Send,
impl<B, C> Sync for ControlFlow<B, C> where
B: Sync,
C: Sync,
impl<B, C> Unpin for ControlFlow<B, C> where
B: Unpin,
C: Unpin,
impl<B, C> UnwindSafe for ControlFlow<B, C> where
B: UnwindSafe,
C: UnwindSafe,
Blanket Implementations
sourceimpl<T> BorrowMut<T> for T where
T: ?Sized,
impl<T> BorrowMut<T> for T where
T: ?Sized,
const: unstable · sourcefn borrow_mut(&mut self) -> &mut T
fn borrow_mut(&mut self) -> &mut T
Mutably borrows from an owned value. Read more
impl<T> FmtForward for T
impl<T> FmtForward for T
fn fmt_binary(self) -> FmtBinary<Self> where
Self: Binary,
fn fmt_binary(self) -> FmtBinary<Self> where
Self: Binary,
Causes self to use its Binary implementation when Debug-formatted. Read more
fn fmt_display(self) -> FmtDisplay<Self> where
Self: Display,
fn fmt_display(self) -> FmtDisplay<Self> where
Self: Display,
Causes self to use its Display implementation when
Debug-formatted. Read more
fn fmt_lower_exp(self) -> FmtLowerExp<Self> where
Self: LowerExp,
fn fmt_lower_exp(self) -> FmtLowerExp<Self> where
Self: LowerExp,
Causes self to use its LowerExp implementation when
Debug-formatted. Read more
fn fmt_lower_hex(self) -> FmtLowerHex<Self> where
Self: LowerHex,
fn fmt_lower_hex(self) -> FmtLowerHex<Self> where
Self: LowerHex,
Causes self to use its LowerHex implementation when
Debug-formatted. Read more
fn fmt_octal(self) -> FmtOctal<Self> where
Self: Octal,
fn fmt_octal(self) -> FmtOctal<Self> where
Self: Octal,
Causes self to use its Octal implementation when Debug-formatted. Read more
fn fmt_pointer(self) -> FmtPointer<Self> where
Self: Pointer,
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Self: Pointer,
Causes self to use its Pointer implementation when
Debug-formatted. Read more
fn fmt_upper_exp(self) -> FmtUpperExp<Self> where
Self: UpperExp,
fn fmt_upper_exp(self) -> FmtUpperExp<Self> where
Self: UpperExp,
Causes self to use its UpperExp implementation when
Debug-formatted. Read more
fn fmt_upper_hex(self) -> FmtUpperHex<Self> where
Self: UpperHex,
fn fmt_upper_hex(self) -> FmtUpperHex<Self> where
Self: UpperHex,
Causes self to use its UpperHex implementation when
Debug-formatted. Read more
fn fmt_list(self) -> FmtList<Self> where
&'a Self: for<'a> IntoIterator,
fn fmt_list(self) -> FmtList<Self> where
&'a Self: for<'a> IntoIterator,
Formats each item in a sequence. Read more
impl<T> Pipe for T where
T: ?Sized,
impl<T> Pipe for T where
T: ?Sized,
fn pipe<R>(self, func: impl FnOnce(Self) -> R) -> R
fn pipe<R>(self, func: impl FnOnce(Self) -> R) -> R
Pipes by value. This is generally the method you want to use. Read more
fn pipe_ref<'a, R>(&'a self, func: impl FnOnce(&'a Self) -> R) -> R where
R: 'a,
fn pipe_ref<'a, R>(&'a self, func: impl FnOnce(&'a Self) -> R) -> R where
R: 'a,
Borrows self and passes that borrow into the pipe function. Read more
fn pipe_ref_mut<'a, R>(&'a mut self, func: impl FnOnce(&'a mut Self) -> R) -> R where
R: 'a,
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R: 'a,
Mutably borrows self and passes that borrow into the pipe function. Read more
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Self: Borrow<B>,
B: 'a + ?Sized,
R: 'a,
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Self: Borrow<B>,
B: 'a + ?Sized,
R: 'a,
Borrows self, then passes self.borrow() into the pipe function. Read more
fn pipe_borrow_mut<'a, B, R>(
&'a mut self,
func: impl FnOnce(&'a mut B) -> R
) -> R where
Self: BorrowMut<B>,
B: 'a + ?Sized,
R: 'a,
fn pipe_borrow_mut<'a, B, R>(
&'a mut self,
func: impl FnOnce(&'a mut B) -> R
) -> R where
Self: BorrowMut<B>,
B: 'a + ?Sized,
R: 'a,
Mutably borrows self, then passes self.borrow_mut() into the pipe
function. Read more
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Self: AsRef<U>,
U: 'a + ?Sized,
R: 'a,
fn pipe_as_ref<'a, U, R>(&'a self, func: impl FnOnce(&'a U) -> R) -> R where
Self: AsRef<U>,
U: 'a + ?Sized,
R: 'a,
Borrows self, then passes self.as_ref() into the pipe function.
fn pipe_as_mut<'a, U, R>(&'a mut self, func: impl FnOnce(&'a mut U) -> R) -> R where
Self: AsMut<U>,
U: 'a + ?Sized,
R: 'a,
fn pipe_as_mut<'a, U, R>(&'a mut self, func: impl FnOnce(&'a mut U) -> R) -> R where
Self: AsMut<U>,
U: 'a + ?Sized,
R: 'a,
Mutably borrows self, then passes self.as_mut() into the pipe
function. Read more
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Self: Deref<Target = T>,
T: 'a + ?Sized,
R: 'a,
fn pipe_deref<'a, T, R>(&'a self, func: impl FnOnce(&'a T) -> R) -> R where
Self: Deref<Target = T>,
T: 'a + ?Sized,
R: 'a,
Borrows self, then passes self.deref() into the pipe function.
impl<T> Tap for T
impl<T> Tap for T
fn tap_borrow<B>(self, func: impl FnOnce(&B)) -> Self where
Self: Borrow<B>,
B: ?Sized,
fn tap_borrow<B>(self, func: impl FnOnce(&B)) -> Self where
Self: Borrow<B>,
B: ?Sized,
Immutable access to the Borrow<B> of a value. Read more
fn tap_borrow_mut<B>(self, func: impl FnOnce(&mut B)) -> Self where
Self: BorrowMut<B>,
B: ?Sized,
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fn tap_ref<R>(self, func: impl FnOnce(&R)) -> Self where
Self: AsRef<R>,
R: ?Sized,
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R: ?Sized,
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fn tap_ref_mut<R>(self, func: impl FnOnce(&mut R)) -> Self where
Self: AsMut<R>,
R: ?Sized,
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R: ?Sized,
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fn tap_deref<T>(self, func: impl FnOnce(&T)) -> Self where
Self: Deref<Target = T>,
T: ?Sized,
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fn tap_deref_mut<T>(self, func: impl FnOnce(&mut T)) -> Self where
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T: ?Sized,
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Self: DerefMut<Target = T> + Deref,
T: ?Sized,
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fn tap_dbg(self, func: impl FnOnce(&Self)) -> Self
fn tap_dbg(self, func: impl FnOnce(&Self)) -> Self
Calls .tap() only in debug builds, and is erased in release builds.
fn tap_mut_dbg(self, func: impl FnOnce(&mut Self)) -> Self
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fn tap_borrow_dbg<B>(self, func: impl FnOnce(&B)) -> Self where
Self: Borrow<B>,
B: ?Sized,
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Self: Borrow<B>,
B: ?Sized,
Calls .tap_borrow() only in debug builds, and is erased in release
builds. Read more
fn tap_borrow_mut_dbg<B>(self, func: impl FnOnce(&mut B)) -> Self where
Self: BorrowMut<B>,
B: ?Sized,
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Self: BorrowMut<B>,
B: ?Sized,
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builds. Read more
fn tap_ref_dbg<R>(self, func: impl FnOnce(&R)) -> Self where
Self: AsRef<R>,
R: ?Sized,
fn tap_ref_dbg<R>(self, func: impl FnOnce(&R)) -> Self where
Self: AsRef<R>,
R: ?Sized,
Calls .tap_ref() only in debug builds, and is erased in release
builds. Read more
fn tap_ref_mut_dbg<R>(self, func: impl FnOnce(&mut R)) -> Self where
Self: AsMut<R>,
R: ?Sized,
fn tap_ref_mut_dbg<R>(self, func: impl FnOnce(&mut R)) -> Self where
Self: AsMut<R>,
R: ?Sized,
Calls .tap_ref_mut() only in debug builds, and is erased in release
builds. Read more
sourceimpl<T> ToOwned for T where
T: Clone,
impl<T> ToOwned for T where
T: Clone,
type Owned = T
type Owned = T
The resulting type after obtaining ownership.
sourcefn clone_into(&self, target: &mut T)
fn clone_into(&self, target: &mut T)
toowned_clone_into)Uses borrowed data to replace owned data, usually by cloning. Read more