use core::borrow::Borrow;
use core::fmt;
use core::iter::FromIterator;
use generic_array::typenum::PowerOfTwo;
use generic_array::ArrayLength;
use hash32::{BuildHasher, BuildHasherDefault, FnvHasher, Hash, Hasher};
use indexmap::{self, Bucket, IndexMap, Pos};
pub type FnvIndexSet<T, N> = IndexSet<T, N, BuildHasherDefault<FnvHasher>>;
pub struct IndexSet<T, N, S>
where
T: Eq + Hash,
N: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
{
map: IndexMap<T, (), N, S>,
}
impl<T, N, S> IndexSet<T, N, BuildHasherDefault<S>>
where
T: Eq + Hash,
S: Default + Hasher,
N: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>> + PowerOfTwo,
{
pub fn new() -> Self {
IndexSet {
map: IndexMap::new(),
}
}
}
impl<T, N, S> IndexSet<T, N, S>
where
T: Eq + Hash,
S: BuildHasher,
N: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
{
pub fn capacity(&self) -> usize {
self.map.capacity()
}
pub fn iter(&self) -> Iter<T> {
Iter {
iter: self.map.iter(),
}
}
pub fn difference<'a, N2, S2>(
&'a self,
other: &'a IndexSet<T, N2, S2>,
) -> Difference<'a, T, N2, S2>
where
N2: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
S2: BuildHasher,
{
Difference {
iter: self.iter(),
other,
}
}
pub fn symmetric_difference<'a, N2, S2>(
&'a self,
other: &'a IndexSet<T, N2, S2>,
) -> impl Iterator<Item = &'a T>
where
N2: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
S2: BuildHasher,
{
self.difference(other).chain(other.difference(self))
}
pub fn intersection<'a, N2, S2>(
&'a self,
other: &'a IndexSet<T, N2, S2>,
) -> Intersection<'a, T, N2, S2>
where
N2: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
S2: BuildHasher,
{
Intersection {
iter: self.iter(),
other,
}
}
pub fn union<'a, N2, S2>(
&'a self,
other: &'a IndexSet<T, N2, S2>,
) -> impl Iterator<Item = &'a T>
where
N2: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
S2: BuildHasher,
{
self.iter().chain(other.difference(self))
}
pub fn len(&self) -> usize {
self.map.len()
}
pub fn is_empty(&self) -> bool {
self.map.is_empty()
}
pub fn clear(&mut self) {
self.map.clear()
}
pub fn contains<Q>(&self, value: &Q) -> bool
where
T: Borrow<Q>,
Q: ?Sized + Eq + Hash,
{
self.map.contains_key(value)
}
pub fn is_disjoint<N2, S2>(&self, other: &IndexSet<T, N2, S2>) -> bool
where
N2: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
S2: BuildHasher,
{
self.iter().all(|v| !other.contains(v))
}
pub fn is_subset<N2, S2>(&self, other: &IndexSet<T, N2, S2>) -> bool
where
N2: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
S2: BuildHasher,
{
self.iter().all(|v| other.contains(v))
}
pub fn is_superset<N2, S2>(&self, other: &IndexSet<T, N2, S2>) -> bool
where
N2: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
S2: BuildHasher,
{
other.is_subset(self)
}
pub fn insert(&mut self, value: T) -> Result<bool, T> {
self.map
.insert(value, ())
.map(|old| old.is_none())
.map_err(|(k, _)| k)
}
pub fn remove<Q>(&mut self, value: &Q) -> bool
where
T: Borrow<Q>,
Q: ?Sized + Eq + Hash,
{
self.map.remove(value).is_some()
}
}
impl<T, N, S> fmt::Debug for IndexSet<T, N, S>
where
T: Eq + Hash + fmt::Debug,
S: BuildHasher,
N: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
{
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
f.debug_set().entries(self.iter()).finish()
}
}
impl<T, N, S> Default for IndexSet<T, N, S>
where
T: Eq + Hash,
S: BuildHasher + Default,
N: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
{
fn default() -> Self {
IndexSet {
map: <_>::default(),
}
}
}
impl<T, N1, N2, S1, S2> PartialEq<IndexSet<T, N2, S2>> for IndexSet<T, N1, S1>
where
T: Eq + Hash,
S1: BuildHasher,
S2: BuildHasher,
N1: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
N2: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
{
fn eq(&self, other: &IndexSet<T, N2, S2>) -> bool {
self.len() == other.len() && self.is_subset(other)
}
}
impl<T, N, S> Extend<T> for IndexSet<T, N, S>
where
T: Eq + Hash,
S: BuildHasher,
N: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
{
fn extend<I>(&mut self, iterable: I)
where
I: IntoIterator<Item = T>,
{
self.map.extend(iterable.into_iter().map(|k| (k, ())))
}
}
impl<'a, T, N, S> Extend<&'a T> for IndexSet<T, N, S>
where
T: 'a + Eq + Hash + Copy,
S: BuildHasher,
N: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
{
fn extend<I>(&mut self, iterable: I)
where
I: IntoIterator<Item = &'a T>,
{
self.extend(iterable.into_iter().cloned())
}
}
impl<T, N, S> FromIterator<T> for IndexSet<T, N, S>
where
T: Eq + Hash,
S: BuildHasher + Default,
N: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
{
fn from_iter<I>(iter: I) -> Self
where
I: IntoIterator<Item = T>,
{
let mut set = IndexSet::default();
set.extend(iter);
set
}
}
impl<'a, T, N, S> IntoIterator for &'a IndexSet<T, N, S>
where
T: Eq + Hash,
S: BuildHasher,
N: ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
{
type Item = &'a T;
type IntoIter = Iter<'a, T>;
fn into_iter(self) -> Self::IntoIter {
self.iter()
}
}
pub struct Iter<'a, T>
where
T: 'a,
{
iter: indexmap::Iter<'a, T, ()>,
}
impl<'a, T> Iterator for Iter<'a, T>
where
T: 'a,
{
type Item = &'a T;
fn next(&mut self) -> Option<Self::Item> {
self.iter.next().map(|(k, _)| k)
}
}
pub struct Difference<'a, T, N, S>
where
S: 'a + BuildHasher,
T: 'a + Eq + Hash,
N: 'a + ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
{
iter: Iter<'a, T>,
other: &'a IndexSet<T, N, S>,
}
impl<'a, T, N, S> Iterator for Difference<'a, T, N, S>
where
S: 'a + BuildHasher,
T: 'a + Eq + Hash,
N: 'a + ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
{
type Item = &'a T;
fn next(&mut self) -> Option<Self::Item> {
loop {
let elt = self.iter.next()?;
if !self.other.contains(elt) {
return Some(elt);
}
}
}
}
pub struct Intersection<'a, T, N, S>
where
S: 'a + BuildHasher,
T: 'a + Eq + Hash,
N: 'a + ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
{
iter: Iter<'a, T>,
other: &'a IndexSet<T, N, S>,
}
impl<'a, T, N, S> Iterator for Intersection<'a, T, N, S>
where
S: 'a + BuildHasher,
T: 'a + Eq + Hash,
N: 'a + ArrayLength<Bucket<T, ()>> + ArrayLength<Option<Pos>>,
{
type Item = &'a T;
fn next(&mut self) -> Option<Self::Item> {
loop {
let elt = self.iter.next()?;
if self.other.contains(elt) {
return Some(elt);
}
}
}
}