pub(crate) struct GeneralAutoderef<'db, Ctx, Steps = Vec<(Ty<'db>, AutoderefKind)>> {
ctx: Ctx,
traits: Option<AutoderefTraits>,
state: AutoderefSnapshot<'db, Steps>,
include_raw_pointers: bool,
use_receiver_trait: bool,
span: Span,
}Expand description
Recursively dereference a type, considering both built-in
dereferences (*) and the Deref trait.
Although called Autoderef it can be configured to use the
Receiver trait instead of the Deref trait.
Fields§
§ctx: Ctx§traits: Option<AutoderefTraits>§state: AutoderefSnapshot<'db, Steps>§include_raw_pointers: bool§use_receiver_trait: bool§span: SpanImplementations§
Source§impl<'db, Ctx: AutoderefCtx<'db>> GeneralAutoderef<'db, Ctx>
impl<'db, Ctx: AutoderefCtx<'db>> GeneralAutoderef<'db, Ctx>
pub(crate) fn adjust_steps_as_infer_ok( &mut self, ) -> InferOk<'db, Vec<Adjustment>>
Source§impl<'a, 'db> GeneralAutoderef<'db, DefaultAutoderefCtx<'a, 'db>, Vec<(Ty<'db>, AutoderefKind)>>
impl<'a, 'db> GeneralAutoderef<'db, DefaultAutoderefCtx<'a, 'db>, Vec<(Ty<'db>, AutoderefKind)>>
Source§impl<'a, 'db> GeneralAutoderef<'db, InferenceContextAutoderefCtx<'a, 'db>, Vec<(Ty<'db>, AutoderefKind)>>
impl<'a, 'db> GeneralAutoderef<'db, InferenceContextAutoderefCtx<'a, 'db>, Vec<(Ty<'db>, AutoderefKind)>>
pub(crate) fn new_from_inference_context( ctx: &'a mut InferenceContext<'db>, base_ty: Ty<'db>, span: Span, ) -> Self
pub(crate) fn ctx(&mut self) -> &mut InferenceContext<'db>
Source§impl<'a, 'db> GeneralAutoderef<'db, DefaultAutoderefCtx<'a, 'db>, usize>
impl<'a, 'db> GeneralAutoderef<'db, DefaultAutoderefCtx<'a, 'db>, usize>
Source§impl<'db, Ctx, Steps> GeneralAutoderef<'db, Ctx, Steps>where
Ctx: AutoderefCtx<'db>,
Steps: TrackAutoderefSteps<'db>,
impl<'db, Ctx, Steps> GeneralAutoderef<'db, Ctx, Steps>where
Ctx: AutoderefCtx<'db>,
Steps: TrackAutoderefSteps<'db>,
fn new_impl(ctx: Ctx, base_ty: Ty<'db>, span: Span) -> Self
fn infcx(&self) -> &InferCtxt<'db>
fn param_env(&self) -> ParamEnv<'db>
fn interner(&self) -> DbInterner<'db>
fn autoderef_traits(&mut self) -> Option<AutoderefTraits>
fn overloaded_deref_ty(&mut self, ty: Ty<'db>) -> Option<Ty<'db>>
Sourcepub(crate) fn final_ty(&self) -> Ty<'db>
pub(crate) fn final_ty(&self) -> Ty<'db>
Returns the final type we ended up with, which may be an unresolved inference variable.
pub(crate) fn step_count(&self) -> usize
pub(crate) fn take_obligations( &mut self, ) -> Vec<Obligation<'db, Predicate<'db>>>
pub(crate) fn steps(&self) -> &Steps
pub(crate) fn reached_recursion_limit(&self) -> bool
Sourcepub(crate) fn include_raw_pointers(self) -> Self
pub(crate) fn include_raw_pointers(self) -> Self
also dereference through raw pointer types
e.g., assuming ptr_to_Foo is the type *const Foo
fcx.autoderef(span, ptr_to_Foo) => [*const Foo]
fcx.autoderef(span, ptr_to_Foo).include_raw_ptrs() => [*const Foo, Foo]
Sourcepub(crate) fn use_receiver_trait(self) -> Self
pub(crate) fn use_receiver_trait(self) -> Self
Use core::ops::Receiver and core::ops::Receiver::Target as
the trait and associated type to iterate, instead of
core::ops::Deref and core::ops::Deref::Target
Trait Implementations§
Source§impl<'db, Ctx, Steps> Iterator for GeneralAutoderef<'db, Ctx, Steps>where
Ctx: AutoderefCtx<'db>,
Steps: TrackAutoderefSteps<'db>,
impl<'db, Ctx, Steps> Iterator for GeneralAutoderef<'db, Ctx, Steps>where
Ctx: AutoderefCtx<'db>,
Steps: TrackAutoderefSteps<'db>,
Source§fn next(&mut self) -> Option<Self::Item>
fn next(&mut self) -> Option<Self::Item>
Source§fn next_chunk<const N: usize>(
&mut self,
) -> Result<[Self::Item; N], IntoIter<Self::Item, N>>where
Self: Sized,
fn next_chunk<const N: usize>(
&mut self,
) -> Result<[Self::Item; N], IntoIter<Self::Item, N>>where
Self: Sized,
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fn size_hint(&self) -> (usize, Option<usize>)
1.0.0 (const: unstable) · Source§fn count(self) -> usizewhere
Self: Sized,
fn count(self) -> usizewhere
Self: Sized,
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Self: Sized,
fn last(self) -> Option<Self::Item>where
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Source§fn advance_by(&mut self, n: usize) -> Result<(), NonZero<usize>>
fn advance_by(&mut self, n: usize) -> Result<(), NonZero<usize>>
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fn nth(&mut self, n: usize) -> Option<Self::Item>
nth element of the iterator. Read more1.28.0 (const: unstable) · Source§fn step_by(self, step: usize) -> StepBy<Self>where
Self: Sized,
fn step_by(self, step: usize) -> StepBy<Self>where
Self: Sized,
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fn chain<U>(self, other: U) -> Chain<Self, <U as IntoIterator>::IntoIter>
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U: IntoIterator,
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Self: Sized,
U: IntoIterator,
Source§fn intersperse(self, separator: Self::Item) -> Intersperse<Self>
fn intersperse(self, separator: Self::Item) -> Intersperse<Self>
iter_intersperse)separator between items
of the original iterator. Read moreSource§fn intersperse_with<G>(self, separator: G) -> IntersperseWith<Self, G>
fn intersperse_with<G>(self, separator: G) -> IntersperseWith<Self, G>
iter_intersperse)separator
between items of the original iterator. Read more1.0.0 (const: unstable) · Source§fn map<B, F>(self, f: F) -> Map<Self, F>
fn map<B, F>(self, f: F) -> Map<Self, F>
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fn for_each<F>(self, f: F)
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Self: Sized,
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Self: Sized,
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fn skip_while<P>(self, predicate: P) -> SkipWhile<Self, P>
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fn take_while<P>(self, predicate: P) -> TakeWhile<Self, P>
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Self: Sized,
fn skip(self, n: usize) -> Skip<Self>where
Self: Sized,
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n elements, or fewer
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fn scan<St, B, F>(self, initial_state: St, f: F) -> Scan<Self, St, F>
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fn flatten(self) -> Flatten<Self>
Source§fn map_windows<F, R, const N: usize>(self, f: F) -> MapWindows<Self, F, N>
fn map_windows<F, R, const N: usize>(self, f: F) -> MapWindows<Self, F, N>
iter_map_windows)f for each contiguous window of size N over
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1.0.0 (const: unstable) · Source§fn by_ref(&mut self) -> &mut Selfwhere
Self: Sized,
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fn collect<B>(self) -> B
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&mut self,
) -> <<Self::Item as Try>::Residual as Residual<B>>::TryType
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fn try_fold<B, F, R>(&mut self, init: B, f: F) -> R
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fn try_for_each<F, R>(&mut self, f: F) -> R
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fn fold<B, F>(self, init: B, f: F) -> B
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fn reduce<F>(self, f: F) -> Option<Self::Item>
Source§fn try_reduce<R>(
&mut self,
f: impl FnMut(Self::Item, Self::Item) -> R,
) -> <<R as Try>::Residual as Residual<Option<<R as Try>::Output>>>::TryType
fn try_reduce<R>( &mut self, f: impl FnMut(Self::Item, Self::Item) -> R, ) -> <<R as Try>::Residual as Residual<Option<<R as Try>::Output>>>::TryType
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fn all<F>(&mut self, f: F) -> bool
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fn any<F>(&mut self, f: F) -> bool
1.0.0 (const: unstable) · Source§fn find<P>(&mut self, predicate: P) -> Option<Self::Item>
fn find<P>(&mut self, predicate: P) -> Option<Self::Item>
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fn find_map<B, F>(&mut self, f: F) -> Option<B>
Source§fn try_find<R>(
&mut self,
f: impl FnMut(&Self::Item) -> R,
) -> <<R as Try>::Residual as Residual<Option<Self::Item>>>::TryType
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try_find)1.0.0 (const: unstable) · Source§fn position<P>(&mut self, predicate: P) -> Option<usize>
fn position<P>(&mut self, predicate: P) -> Option<usize>
1.0.0 (const: unstable) · Source§fn max(self) -> Option<Self::Item>
fn max(self) -> Option<Self::Item>
1.0.0 (const: unstable) · Source§fn min(self) -> Option<Self::Item>
fn min(self) -> Option<Self::Item>
1.6.0 (const: unstable) · Source§fn max_by_key<B, F>(self, f: F) -> Option<Self::Item>
fn max_by_key<B, F>(self, f: F) -> Option<Self::Item>
1.15.0 (const: unstable) · Source§fn max_by<F>(self, compare: F) -> Option<Self::Item>
fn max_by<F>(self, compare: F) -> Option<Self::Item>
1.6.0 (const: unstable) · Source§fn min_by_key<B, F>(self, f: F) -> Option<Self::Item>
fn min_by_key<B, F>(self, f: F) -> Option<Self::Item>
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fn min_by<F>(self, compare: F) -> Option<Self::Item>
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fn copied<'a, T>(self) -> Copied<Self>
Source§fn array_chunks<const N: usize>(self) -> ArrayChunks<Self, N>where
Self: Sized,
fn array_chunks<const N: usize>(self) -> ArrayChunks<Self, N>where
Self: Sized,
iter_array_chunks)N elements of the iterator at a time. Read more1.11.0 (const: unstable) · Source§fn product<P>(self) -> P
fn product<P>(self) -> P
Source§fn cmp_by<I, F>(self, other: I, cmp: F) -> Ordering
fn cmp_by<I, F>(self, other: I, cmp: F) -> Ordering
iter_order_by)Iterator with those
of another with respect to the specified comparison function. Read more1.5.0 (const: unstable) · Source§fn partial_cmp<I>(self, other: I) -> Option<Ordering>
fn partial_cmp<I>(self, other: I) -> Option<Ordering>
PartialOrd elements of
this Iterator with those of another. The comparison works like short-circuit
evaluation, returning a result without comparing the remaining elements.
As soon as an order can be determined, the evaluation stops and a result is returned. Read moreSource§fn partial_cmp_by<I, F>(self, other: I, partial_cmp: F) -> Option<Ordering>where
Self: Sized,
I: IntoIterator,
F: FnMut(Self::Item, <I as IntoIterator>::Item) -> Option<Ordering>,
fn partial_cmp_by<I, F>(self, other: I, partial_cmp: F) -> Option<Ordering>where
Self: Sized,
I: IntoIterator,
F: FnMut(Self::Item, <I as IntoIterator>::Item) -> Option<Ordering>,
iter_order_by)Iterator with those
of another with respect to the specified comparison function. Read moreSource§fn eq_by<I, F>(self, other: I, eq: F) -> bool
fn eq_by<I, F>(self, other: I, eq: F) -> bool
iter_order_by)1.5.0 (const: unstable) · Source§fn lt<I>(self, other: I) -> bool
fn lt<I>(self, other: I) -> bool
Iterator are lexicographically
less than those of another. Read more1.5.0 (const: unstable) · Source§fn le<I>(self, other: I) -> bool
fn le<I>(self, other: I) -> bool
Iterator are lexicographically
less or equal to those of another. Read more1.5.0 (const: unstable) · Source§fn gt<I>(self, other: I) -> bool
fn gt<I>(self, other: I) -> bool
Iterator are lexicographically
greater than those of another. Read more1.5.0 (const: unstable) · Source§fn ge<I>(self, other: I) -> bool
fn ge<I>(self, other: I) -> bool
Iterator are lexicographically
greater than or equal to those of another. Read more1.82.0 (const: unstable) · Source§fn is_sorted(self) -> bool
fn is_sorted(self) -> bool
1.82.0 (const: unstable) · Source§fn is_sorted_by<F>(self, compare: F) -> bool
fn is_sorted_by<F>(self, compare: F) -> bool
Auto Trait Implementations§
impl<'db, Ctx, Steps> Freeze for GeneralAutoderef<'db, Ctx, Steps>
impl<'db, Ctx, Steps> RefUnwindSafe for GeneralAutoderef<'db, Ctx, Steps>where
Ctx: RefUnwindSafe,
Steps: RefUnwindSafe,
impl<'db, Ctx, Steps> Send for GeneralAutoderef<'db, Ctx, Steps>
impl<'db, Ctx, Steps> Sync for GeneralAutoderef<'db, Ctx, Steps>
impl<'db, Ctx, Steps> Unpin for GeneralAutoderef<'db, Ctx, Steps>
impl<'db, Ctx, Steps> UnsafeUnpin for GeneralAutoderef<'db, Ctx, Steps>where
Ctx: UnsafeUnpin,
Steps: UnsafeUnpin,
impl<'db, Ctx, Steps> UnwindSafe for GeneralAutoderef<'db, Ctx, Steps>where
Ctx: UnwindSafe,
Steps: UnwindSafe,
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T: ?Sized,
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self,
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self,
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§fn kmerge_by<F>(
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Self: Sized,
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F: FnMut(&<Self::Item as IntoIterator>::Item, &<Self::Item as IntoIterator>::Item) -> bool,
fn kmerge_by<F>(
self,
first: F,
) -> KMergeBy<<Self::Item as IntoIterator>::IntoIter, F>where
Self: Sized,
Self::Item: IntoIterator,
F: FnMut(&<Self::Item as IntoIterator>::Item, &<Self::Item as IntoIterator>::Item) -> bool,
§fn cartesian_product<J>(
self,
other: J,
) -> Product<Self, <J as IntoIterator>::IntoIter>
fn cartesian_product<J>( self, other: J, ) -> Product<Self, <J as IntoIterator>::IntoIter>
self and J. Read more§fn multi_cartesian_product(
self,
) -> MultiProduct<<Self::Item as IntoIterator>::IntoIter>where
Self: Sized,
Self::Item: IntoIterator,
<Self::Item as IntoIterator>::IntoIter: Clone,
<Self::Item as IntoIterator>::Item: Clone,
fn multi_cartesian_product(
self,
) -> MultiProduct<<Self::Item as IntoIterator>::IntoIter>where
Self: Sized,
Self::Item: IntoIterator,
<Self::Item as IntoIterator>::IntoIter: Clone,
<Self::Item as IntoIterator>::Item: Clone,
self. Read more§fn coalesce<F>(self, f: F) -> CoalesceBy<Self, F, NoCount>
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§fn dedup(self) -> CoalesceBy<Self, DedupPred2CoalescePred<DedupEq>, NoCount>
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§fn dedup_by<Cmp>(
self,
cmp: Cmp,
) -> CoalesceBy<Self, DedupPred2CoalescePred<Cmp>, NoCount>
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§fn dedup_with_count(
self,
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self,
) -> CoalesceBy<Self, DedupPredWithCount2CoalescePred<DedupEq>, WithCount>where
Self: Sized,
§fn dedup_by_with_count<Cmp>(
self,
cmp: Cmp,
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§fn duplicates(self) -> DuplicatesBy<Self, Self::Item, ById>
fn duplicates(self) -> DuplicatesBy<Self, Self::Item, ById>
§fn duplicates_with_hasher<S>(
self,
hash_builder: S,
) -> DuplicatesBy<Self, Self::Item, ById, S>
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§fn duplicates_by<V, F>(self, f: F) -> DuplicatesBy<Self, V, ByFn<F>>
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§fn duplicates_by_with_hasher<V, F, S>(
self,
f: F,
hash_builder: S,
) -> DuplicatesBy<Self, V, ByFn<F>, S>
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§fn unique(self) -> Unique<Self>
fn unique(self) -> Unique<Self>
§fn unique_with_hasher<S>(self, hash_builder: S) -> Unique<Self, S>
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§fn unique_by<V, F>(self, f: F) -> UniqueBy<Self, V, F>
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§fn unique_by_with_hasher<V, F, S>(
self,
f: F,
hash_builder: S,
) -> UniqueBy<Self, V, F, S>
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§fn peeking_take_while<F>(&mut self, accept: F) -> PeekingTakeWhile<'_, Self, F>
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true, including the element for which the predicate
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Use .array_combinations() instead
§fn array_combinations<const K: usize>(
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§fn combinations(self, k: usize) -> CombinationsGeneric<Self, Vec<usize>>
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self,
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fn array_combinations_with_replacement<const K: usize>( self, ) -> CombinationsWithReplacementGeneric<Self, [usize; K]>
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§fn powerset(self) -> Powerset<Self>
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§fn pad_using<F>(self, min: usize, f: F) -> PadUsing<Self, F>
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§fn update<F>(self, updater: F) -> Update<Self, F>
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§fn next_array<const N: usize>(&mut self) -> Option<[Self::Item; N]>where
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Self: Sized,
§fn collect_array<const N: usize>(self) -> Option<[Self::Item; N]>where
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§fn next_tuple<T>(&mut self) -> Option<T>
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§fn collect_tuple<T>(self) -> Option<T>
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§fn find_position<P>(&mut self, pred: P) -> Option<(usize, Self::Item)>
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§fn find_or_last<P>(self, predicate: P) -> Option<Self::Item>
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§fn find_or_first<P>(self, predicate: P) -> Option<Self::Item>
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§fn contains<Q>(&mut self, query: &Q) -> bool
fn contains<Q>(&mut self, query: &Q) -> bool
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§fn all_unique(&mut self) -> bool
fn all_unique(&mut self) -> bool
§fn all_unique_with_hasher<S>(&mut self, hash_builder: S) -> bool
fn all_unique_with_hasher<S>(&mut self, hash_builder: S) -> bool
§fn dropping(self, n: usize) -> Selfwhere
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fn dropping(self, n: usize) -> Selfwhere
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n elements from the iterator eagerly,
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.collect_vec() is simply a type specialization of Iterator::collect,
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§fn set_from<'a, A, J>(&mut self, from: J) -> usize
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sep. Read more§fn fold_ok<A, E, B, F>(&mut self, start: B, f: F) -> Result<B, E>
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§fn tree_reduce<F>(self, f: F) -> Option<Self::Item>
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§fn tree_fold1<F>(self, f: F) -> Option<Self::Item>
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Use .tree_reduce() instead
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fn fold_while<B, F>(&mut self, init: B, f: F) -> FoldWhile<B>
§fn product1<P>(self) -> Option<P>
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§fn sorted_unstable(self) -> IntoIter<Self::Item>
fn sorted_unstable(self) -> IntoIter<Self::Item>
§fn sorted_unstable_by<F>(self, cmp: F) -> IntoIter<Self::Item>
fn sorted_unstable_by<F>(self, cmp: F) -> IntoIter<Self::Item>
§fn sorted_unstable_by_key<K, F>(self, f: F) -> IntoIter<Self::Item>
fn sorted_unstable_by_key<K, F>(self, f: F) -> IntoIter<Self::Item>
§fn sorted(self) -> IntoIter<Self::Item>
fn sorted(self) -> IntoIter<Self::Item>
§fn sorted_by<F>(self, cmp: F) -> IntoIter<Self::Item>
fn sorted_by<F>(self, cmp: F) -> IntoIter<Self::Item>
§fn sorted_by_key<K, F>(self, f: F) -> IntoIter<Self::Item>
fn sorted_by_key<K, F>(self, f: F) -> IntoIter<Self::Item>
§fn sorted_by_cached_key<K, F>(self, f: F) -> IntoIter<Self::Item>
fn sorted_by_cached_key<K, F>(self, f: F) -> IntoIter<Self::Item>
§fn k_smallest(self, k: usize) -> IntoIter<Self::Item>
fn k_smallest(self, k: usize) -> IntoIter<Self::Item>
§fn k_smallest_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item>
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§fn k_smallest_by_key<F, K>(self, k: usize, key: F) -> IntoIter<Self::Item>
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§fn k_smallest_relaxed(self, k: usize) -> IntoIter<Self::Item>
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§fn k_smallest_relaxed_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item>
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§fn k_smallest_relaxed_by_key<F, K>(
self,
k: usize,
key: F,
) -> IntoIter<Self::Item>
fn k_smallest_relaxed_by_key<F, K>( self, k: usize, key: F, ) -> IntoIter<Self::Item>
§fn k_largest(self, k: usize) -> IntoIter<Self::Item>
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§fn k_largest_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item>
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§fn k_largest_by_key<F, K>(self, k: usize, key: F) -> IntoIter<Self::Item>
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§fn k_largest_relaxed(self, k: usize) -> IntoIter<Self::Item>
fn k_largest_relaxed(self, k: usize) -> IntoIter<Self::Item>
§fn k_largest_relaxed_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item>
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§fn k_largest_relaxed_by_key<F, K>(
self,
k: usize,
key: F,
) -> IntoIter<Self::Item>
fn k_largest_relaxed_by_key<F, K>( self, k: usize, key: F, ) -> IntoIter<Self::Item>
§fn tail(self, n: usize) -> IntoIter<Self::Item>where
Self: Sized,
fn tail(self, n: usize) -> IntoIter<Self::Item>where
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n elements. Read more§fn partition_map<A, B, F, L, R>(self, predicate: F) -> (A, B)
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Iterator::partition, each partition may
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Results into one list of all the Ok elements
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fn into_group_map<K, V>(self) -> HashMap<K, Vec<V>>
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hash_builder: S,
) -> HashMap<K, Vec<V>, S>
fn into_group_map_with_hasher<K, V, S>( self, hash_builder: S, ) -> HashMap<K, Vec<V>, S>
HashMap of keys mapped to Vecs of values, using the hash builder for hashing.
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fn into_group_map_by<K, V, F>(self, f: F) -> HashMap<K, Vec<V>>
HashMap of keys mapped to Vecs of values. The key is specified
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hash_builder: S,
) -> HashMap<K, Vec<V>, S>
fn into_group_map_by_with_hasher<K, V, F, S>( self, f: F, hash_builder: S, ) -> HashMap<K, Vec<V>, S>
HashMap of keys mapped to Vecs of values, using the hash builder for hashing.
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fn into_grouping_map_with_hasher<K, V, S>( self, hash_builder: S, ) -> GroupingMap<Self, S>
GroupingMap to be used later with one of the efficient
group-and-fold operations it allows to perform, using the specified hash builder for
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See .into_grouping_map() for more information.§fn into_grouping_map_by<K, V, F>(
self,
key_mapper: F,
) -> GroupingMap<MapSpecialCase<Self, GroupingMapFn<F>>>
fn into_grouping_map_by<K, V, F>( self, key_mapper: F, ) -> GroupingMap<MapSpecialCase<Self, GroupingMapFn<F>>>
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key_mapper: F,
hash_builder: S,
) -> GroupingMap<MapSpecialCase<Self, GroupingMapFn<F>>, S>
fn into_grouping_map_by_with_hasher<K, V, F, S>( self, key_mapper: F, hash_builder: S, ) -> GroupingMap<MapSpecialCase<Self, GroupingMapFn<F>>, S>
GroupingMap to be used later with one of the efficient
group-and-fold operations it allows to perform, using the specified hash builder for
hashing the keys.
See .into_grouping_map_by() for more information.§fn min_set_by<F>(self, compare: F) -> Vec<Self::Item>
fn min_set_by<F>(self, compare: F) -> Vec<Self::Item>
§fn min_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
fn min_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
§fn max_set_by<F>(self, compare: F) -> Vec<Self::Item>
fn max_set_by<F>(self, compare: F) -> Vec<Self::Item>
§fn max_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
fn max_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
§fn minmax(self) -> MinMaxResult<Self::Item>
fn minmax(self) -> MinMaxResult<Self::Item>
§fn minmax_by_key<K, F>(self, key: F) -> MinMaxResult<Self::Item>
fn minmax_by_key<K, F>(self, key: F) -> MinMaxResult<Self::Item>
§fn minmax_by<F>(self, compare: F) -> MinMaxResult<Self::Item>
fn minmax_by<F>(self, compare: F) -> MinMaxResult<Self::Item>
§fn position_max(self) -> Option<usize>
fn position_max(self) -> Option<usize>
§fn position_max_by_key<K, F>(self, key: F) -> Option<usize>
fn position_max_by_key<K, F>(self, key: F) -> Option<usize>
§fn position_max_by<F>(self, compare: F) -> Option<usize>
fn position_max_by<F>(self, compare: F) -> Option<usize>
§fn position_min(self) -> Option<usize>
fn position_min(self) -> Option<usize>
§fn position_min_by_key<K, F>(self, key: F) -> Option<usize>
fn position_min_by_key<K, F>(self, key: F) -> Option<usize>
§fn position_min_by<F>(self, compare: F) -> Option<usize>
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§fn position_minmax(self) -> MinMaxResult<usize>
fn position_minmax(self) -> MinMaxResult<usize>
§fn position_minmax_by_key<K, F>(self, key: F) -> MinMaxResult<usize>
fn position_minmax_by_key<K, F>(self, key: F) -> MinMaxResult<usize>
§fn position_minmax_by<F>(self, compare: F) -> MinMaxResult<usize>
fn position_minmax_by<F>(self, compare: F) -> MinMaxResult<usize>
§fn exactly_one(self) -> Result<Self::Item, ExactlyOneError<Self>>where
Self: Sized,
fn exactly_one(self) -> Result<Self::Item, ExactlyOneError<Self>>where
Self: Sized,
§fn at_most_one(self) -> Result<Option<Self::Item>, ExactlyOneError<Self>>where
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fn at_most_one(self) -> Result<Option<Self::Item>, ExactlyOneError<Self>>where
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Ok(None) will be returned. If the iterator yields
exactly one element, that element will be returned, otherwise an error will be returned
containing an iterator that has the same output as the input iterator. Read more§fn multipeek(self) -> MultiPeek<Self>where
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.next()
values without advancing the base iterator. Read more§fn counts(self) -> HashMap<Self::Item, usize>
fn counts(self) -> HashMap<Self::Item, usize>
HashMap which
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of times it appears. Read more§fn counts_with_hasher<S>(self, hash_builder: S) -> HashMap<Self::Item, usize, S>
fn counts_with_hasher<S>(self, hash_builder: S) -> HashMap<Self::Item, usize, S>
HashMap the same way
.counts() does, but use the specified hash builder for hashing.§fn counts_by<K, F>(self, f: F) -> HashMap<K, usize>
fn counts_by<K, F>(self, f: F) -> HashMap<K, usize>
HashMap which
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of times it appears,
determining identity using a keying function. Read more§fn counts_by_with_hasher<K, F, S>(
self,
f: F,
hash_builder: S,
) -> HashMap<K, usize, S>
fn counts_by_with_hasher<K, F, S>( self, f: F, hash_builder: S, ) -> HashMap<K, usize, S>
HashMap the same way
.counts_by() does, but use the specified hash builder for hashing.§fn multiunzip<FromI>(self) -> FromIwhere
Self: Sized + MultiUnzip<FromI>,
fn multiunzip<FromI>(self) -> FromIwhere
Self: Sized + MultiUnzip<FromI>,
§fn try_len(&self) -> Result<usize, (usize, Option<usize>)>
fn try_len(&self) -> Result<usize, (usize, Option<usize>)>
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self,
prefix: Prefix,
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fn strip_prefix<Prefix>( self, prefix: Prefix, ) -> Result<Self, StripPrefixError<Self, <Prefix as IntoIterator>::IntoIter, Self::Item>>
§fn strip_prefix_by<Prefix, F>(
self,
prefix: Prefix,
eq: F,
) -> Result<Self, StripPrefixError<Self, <Prefix as IntoIterator>::IntoIter, Self::Item>>where
Self: Sized,
Prefix: IntoIterator,
F: FnMut(&Self::Item, &<Prefix as IntoIterator>::Item) -> bool,
fn strip_prefix_by<Prefix, F>(
self,
prefix: Prefix,
eq: F,
) -> Result<Self, StripPrefixError<Self, <Prefix as IntoIterator>::IntoIter, Self::Item>>where
Self: Sized,
Prefix: IntoIterator,
F: FnMut(&Self::Item, &<Prefix as IntoIterator>::Item) -> bool,
eq to compare items. Read more