use core::borrow::Borrow;
use core::hash::Hash;
use crate::buf::{Bindable, Buf, Visit};
use crate::error::Error;
use crate::phf::hashing::HashKey;
use crate::phf::Entry;
use crate::pointer::{DefaultSize, Ref, Size};
use crate::ZeroCopy;
pub struct Map<'a, K, V> {
key: HashKey,
entries: &'a [Entry<K, V>],
displacements: &'a [Entry<u32, u32>],
buf: &'a Buf,
}
impl<'a, K, V> Map<'a, K, V>
where
K: ZeroCopy,
V: ZeroCopy,
{
pub fn get<T>(&self, key: &T) -> Result<Option<&V>, Error>
where
T: ?Sized + Visit,
T::Target: Eq + Hash,
K: Visit,
K::Target: Borrow<T::Target>,
{
let Some(entry) = self.get_entry(key)? else {
return Ok(None);
};
Ok(Some(entry.1))
}
pub fn contains_key<T>(&self, key: &T) -> Result<bool, Error>
where
T: ?Sized + Visit,
T::Target: Eq + Hash,
K: Visit,
K::Target: Borrow<T::Target>,
{
Ok(self.get_entry(key)?.is_some())
}
pub fn get_entry<T>(&self, key: &T) -> Result<Option<(&K, &V)>, Error>
where
T: ?Sized + Visit,
T::Target: Eq + Hash,
K: Visit,
K::Target: Borrow<T::Target>,
{
if self.displacements.is_empty() {
return Ok(None);
}
let hashes = crate::phf::hashing::hash(self.buf, key, &self.key)?;
let index =
crate::phf::hashing::get_index(&hashes, self.displacements, self.entries.len())?;
let Some(e) = self.entries.get(index) else {
return Ok(None);
};
if key.visit(self.buf, |b| e.key.visit(self.buf, |a| a.borrow() == b))?? {
Ok(Some((&e.key, &e.value)))
} else {
Ok(None)
}
}
}
impl<K, V, O: Size> Bindable for MapRef<K, V, O>
where
K: ZeroCopy,
V: ZeroCopy,
{
type Bound<'a> = Map<'a, K, V> where Self: 'a;
fn bind(self, buf: &Buf) -> Result<Self::Bound<'_>, Error> {
Ok(Map {
key: self.key,
entries: buf.load(self.entries)?,
displacements: buf.load(self.displacements)?,
buf,
})
}
}
#[derive(Debug, ZeroCopy)]
#[repr(C)]
#[zero_copy(crate)]
pub struct MapRef<K, V, O: Size = DefaultSize>
where
K: ZeroCopy,
V: ZeroCopy,
{
key: HashKey,
entries: Ref<[Entry<K, V>], O>,
displacements: Ref<[Entry<u32, u32>], O>,
}
impl<K, V, O: Size> MapRef<K, V, O>
where
K: ZeroCopy,
V: ZeroCopy,
{
#[cfg(feature = "alloc")]
pub(crate) fn new(
key: HashKey,
entries: Ref<[Entry<K, V>], O>,
displacements: Ref<[Entry<u32, u32>], O>,
) -> Self {
Self {
key,
entries,
displacements,
}
}
}
impl<K, V, O: Size> MapRef<K, V, O>
where
K: ZeroCopy,
V: ZeroCopy,
{
pub fn get<'a, T>(&self, buf: &'a Buf, key: &T) -> Result<Option<&'a V>, Error>
where
T: ?Sized + Visit,
T::Target: Eq + Hash,
K: 'a + Visit,
K::Target: Borrow<T::Target>,
{
let Some(entry) = self.get_entry(buf, key)? else {
return Ok(None);
};
Ok(Some(entry.1))
}
pub fn contains_key<T>(&self, buf: &Buf, key: &T) -> Result<bool, Error>
where
T: ?Sized + Visit,
T::Target: Eq + Hash,
K: Visit,
K::Target: Borrow<T::Target>,
{
Ok(self.get_entry(buf, key)?.is_some())
}
pub fn get_entry<'a, T>(&self, buf: &'a Buf, key: &T) -> Result<Option<(&'a K, &'a V)>, Error>
where
T: ?Sized + Visit,
T::Target: Eq + Hash,
K: 'a + Visit,
K::Target: Borrow<T::Target>,
{
if self.displacements.is_empty() {
return Ok(None);
}
let hashes = crate::phf::hashing::hash(buf, key, &self.key)?;
let displacements = |index| match self.displacements.get(index) {
Some(entry) => Ok(Some(buf.load(entry)?)),
None => Ok(None),
};
let index = crate::phf::hashing::get_custom_index(
&hashes,
displacements,
self.displacements.len(),
self.entries.len(),
)?;
let Some(e) = self.entries.get(index) else {
return Ok(None);
};
let e = buf.load(e)?;
if key.visit(buf, |b| e.key.visit(buf, |a| a.borrow() == b))?? {
Ok(Some((&e.key, &e.value)))
} else {
Ok(None)
}
}
}
impl<K, V, O: Size> Clone for MapRef<K, V, O>
where
K: ZeroCopy,
V: ZeroCopy,
{
fn clone(&self) -> Self {
*self
}
}
impl<K, V, O: Size> Copy for MapRef<K, V, O>
where
K: ZeroCopy,
V: ZeroCopy,
{
}