use parking_lot::Mutex;
use serde::{Deserializer, Serialize, Serializer};
use std::cell::UnsafeCell;
use std::fmt::{Debug, Display, Formatter};
use std::ops::{Deref, DerefMut, Index};
use std::slice::{Iter as SliceIter, IterMut as SliceIterMut};
use std::sync::atomic::{AtomicBool, AtomicUsize, Ordering};
use std::sync::Arc;
use std::vec::IntoIter;
use super::{ReadGuard, ReadMapGuard, WriteGuard, WriteLock};
pub type VecGet<'a, V> = ReadGuard<'a, V>;
pub type VecRefMut<'a, V> = WriteGuard<'a, V>;
pub struct VecIter<'a, V> {
count: &'a AtomicUsize,
inner: SliceIter<'a, V>,
}
impl<'a, V> Drop for VecIter<'a, V> {
fn drop(&mut self) {
self.count.fetch_sub(1, Ordering::Release);
}
}
impl<'a, V> Iterator for VecIter<'a, V> {
type Item = &'a V;
fn next(&mut self) -> Option<Self::Item> {
self.inner.next()
}
}
pub struct VecIterMut<'a, V> {
_w: WriteLock<'a>,
inner: SliceIterMut<'a, V>,
}
impl<'a, V> Iterator for VecIterMut<'a, V> {
type Item = &'a mut V;
fn next(&mut self) -> Option<Self::Item> {
self.inner.next()
}
}
impl<'a, V> Deref for VecIterMut<'a, V> {
type Target = SliceIterMut<'a, V>;
fn deref(&self) -> &Self::Target {
&self.inner
}
}
impl<'a, V> DerefMut for VecIterMut<'a, V> {
fn deref_mut(&mut self) -> &mut Self::Target {
&mut self.inner
}
}
pub struct SyncVec<V> {
dirty: UnsafeCell<Vec<V>>,
write: Mutex<()>,
id: usize,
writing: AtomicBool,
registry: Mutex<Vec<std::boxed::Box<AtomicUsize>>>,
}
unsafe impl<V: Send> Send for SyncVec<V> {}
unsafe impl<V: Sync> Sync for SyncVec<V> {}
impl<V> SyncVec<V> {
#[inline]
fn begin_read(&self) -> &AtomicUsize {
let count = super::reader_count_for(self.id, &self.registry);
loop {
count.fetch_add(1, Ordering::SeqCst);
if !self.writing.load(Ordering::SeqCst) {
return count;
}
count.fetch_sub(1, Ordering::SeqCst);
std::thread::yield_now();
}
}
#[inline]
fn begin_write(&self) -> WriteLock<'_> {
let lock = self.write.lock();
self.writing.store(true, Ordering::SeqCst);
loop {
let registry = self.registry.lock();
let all_zero = registry.iter().all(|c| c.load(Ordering::SeqCst) == 0);
if all_zero {
break;
}
drop(registry);
std::thread::yield_now();
}
WriteLock::new(lock, &self.writing)
}
pub fn new_arc() -> Arc<Self> {
Arc::new(Self::new())
}
pub fn new() -> Self {
Self {
dirty: UnsafeCell::new(Vec::new()),
write: Mutex::new(()),
id: super::CONTAINER_ID.fetch_add(1, Ordering::Relaxed),
writing: AtomicBool::new(false),
registry: Mutex::new(Vec::new()),
}
}
pub fn with_capacity(capacity: usize) -> Self {
Self {
dirty: UnsafeCell::new(Vec::with_capacity(capacity)),
write: Mutex::new(()),
id: super::CONTAINER_ID.fetch_add(1, Ordering::Relaxed),
writing: AtomicBool::new(false),
registry: Mutex::new(Vec::new()),
}
}
pub fn with_vec(vec: Vec<V>) -> Self {
Self {
dirty: UnsafeCell::new(vec),
write: Mutex::new(()),
id: super::CONTAINER_ID.fetch_add(1, Ordering::Relaxed),
writing: AtomicBool::new(false),
registry: Mutex::new(Vec::new()),
}
}
pub fn insert(&self, index: usize, v: V) -> Option<V> {
let _w = self.begin_write();
unsafe { &mut *self.dirty.get() }.insert(index, v);
None
}
pub fn set(&self, index: usize, v: V) -> Option<V> {
let _w = self.begin_write();
let m = unsafe { &mut *self.dirty.get() };
m[index] = v;
None
}
pub fn push(&self, v: V) -> Option<V> {
let _w = self.begin_write();
unsafe { &mut *self.dirty.get() }.push(v);
None
}
pub fn pushes(&self, arr: Vec<V>) -> Option<V> {
let _w = self.begin_write();
unsafe { &mut *self.dirty.get() }.extend(arr);
None
}
pub fn push_mut(&mut self, v: V) -> Option<V> {
unsafe { &mut *self.dirty.get() }.push(v);
None
}
pub fn pop(&self) -> Option<V> {
let _w = self.begin_write();
unsafe { &mut *self.dirty.get() }.pop()
}
pub fn pop_mut(&mut self) -> Option<V> {
unsafe { &mut *self.dirty.get() }.pop()
}
pub fn remove(&self, index: usize) -> Option<V> {
let _w = self.begin_write();
let m = unsafe { &mut *self.dirty.get() };
if m.len() > index {
Some(m.remove(index))
} else {
None
}
}
pub fn remove_mut(&mut self, index: usize) -> Option<V> {
let m = unsafe { &mut *self.dirty.get() };
if m.len() > index {
Some(m.remove(index))
} else {
None
}
}
pub fn len(&self) -> usize {
let count = self.begin_read();
let n = unsafe { &*self.dirty.get() }.len();
count.fetch_sub(1, Ordering::Release);
n
}
pub fn is_empty(&self) -> bool {
let count = self.begin_read();
let b = unsafe { &*self.dirty.get() }.is_empty();
count.fetch_sub(1, Ordering::Release);
b
}
pub fn clear(&self) {
let _w = self.begin_write();
unsafe { &mut *self.dirty.get() }.clear();
}
pub fn shrink_to_fit(&self) {
let _w = self.begin_write();
unsafe { &mut *self.dirty.get() }.shrink_to_fit();
}
pub fn from(vec: Vec<V>) -> Self {
Self::with_vec(vec)
}
#[inline]
pub fn get(&self, index: usize) -> Option<VecGet<'_, V>> {
let count = self.begin_read();
let m = unsafe { &*self.dirty.get() };
match m.get(index) {
Some(v) => Some(ReadGuard::new(count, v)),
None => {
count.fetch_sub(1, Ordering::Release);
None
}
}
}
#[inline]
pub unsafe fn get_uncheck(&self, index: usize) -> &V {
unsafe { (&*self.dirty.get()).get_unchecked(index) }
}
#[inline]
pub fn get_mut(&self, index: usize) -> Option<VecRefMut<'_, V>> {
let w = self.begin_write();
let m = unsafe { &mut *self.dirty.get() };
match m.get_mut(index) {
Some(v) => Some(WriteGuard::new(w, v)),
None => None,
}
}
#[inline]
pub fn contains(&self, x: &V) -> bool
where
V: PartialEq,
{
let count = self.begin_read();
let b = unsafe { &*self.dirty.get() }.contains(x);
count.fetch_sub(1, Ordering::Release);
b
}
pub fn iter(&self) -> VecIter<'_, V> {
let count = self.begin_read();
let m = unsafe { &*self.dirty.get() };
VecIter {
count,
inner: m.iter(),
}
}
pub fn iter_mut(&self) -> VecIterMut<'_, V> {
let w = self.begin_write();
let m = unsafe { &mut *self.dirty.get() };
VecIterMut {
_w: w,
inner: m.iter_mut(),
}
}
pub fn into_iter(self) -> IntoIter<V> {
self.into_inner().into_iter()
}
pub fn dirty_ref(&self) -> ReadMapGuard<'_, Vec<V>> {
let count = self.begin_read();
let m = unsafe { &*self.dirty.get() };
ReadMapGuard::new(count, m)
}
pub fn into_inner(self) -> Vec<V> {
self.dirty.into_inner()
}
}
impl<V> IntoIterator for SyncVec<V> {
type Item = V;
type IntoIter = IntoIter<V>;
fn into_iter(self) -> Self::IntoIter {
self.into_iter()
}
}
impl<'a, V> IntoIterator for &'a SyncVec<V> {
type Item = &'a V;
type IntoIter = VecIter<'a, V>;
fn into_iter(self) -> Self::IntoIter {
self.iter()
}
}
impl<V> Index<usize> for SyncVec<V> {
type Output = V;
fn index(&self, index: usize) -> &Self::Output {
unsafe { &*self.dirty.get() }
.get(index)
.expect("index out of bounds")
}
}
impl<V> Serialize for SyncVec<V>
where
V: Serialize,
{
fn serialize<S>(&self, serializer: S) -> Result<S::Ok, S::Error>
where
S: Serializer,
{
self.dirty_ref().serialize(serializer)
}
}
impl<'de, V> serde::Deserialize<'de> for SyncVec<V>
where
V: serde::Deserialize<'de>,
{
fn deserialize<D>(deserializer: D) -> Result<Self, D::Error>
where
D: Deserializer<'de>,
{
let m = Vec::deserialize(deserializer)?;
Ok(Self::from(m))
}
}
impl<V> Debug for SyncVec<V>
where
V: Debug,
{
fn fmt(&self, f: &mut Formatter<'_>) -> std::fmt::Result {
Debug::fmt(&*self.dirty_ref(), f)
}
}
impl<V> Display for SyncVec<V>
where
V: Debug,
{
fn fmt(&self, f: &mut Formatter<'_>) -> std::fmt::Result {
Debug::fmt(&*self.dirty_ref(), f)
}
}
impl<V: PartialEq> PartialEq for SyncVec<V> {
fn eq(&self, other: &Self) -> bool {
(*self.dirty_ref()).eq(&*other.dirty_ref())
}
}
impl<V: Clone> Clone for SyncVec<V> {
fn clone(&self) -> Self {
SyncVec::from(self.dirty_ref().to_vec())
}
}
impl<V> Default for SyncVec<V> {
fn default() -> Self {
SyncVec::new()
}
}
#[macro_export]
macro_rules! sync_vec {
() => (
$crate::sync::SyncVec::new()
);
($elem:expr; $n:expr) => (
$crate::sync::SyncVec::with_vec(vec![$elem;$n])
);
($($x:expr),+ $(,)?) => (
$crate::sync::SyncVec::with_vec(vec![$($x),+,])
);
}