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mod stack;
use stack::Stack;
use std::{
self,
cell::UnsafeCell,
mem::{size_of, MaybeUninit},
ops::{Deref, DerefMut},
slice,
};
thread_local!(
static THREAD_LOCAL: Dropper = Dropper(UnsafeCell::new(
Stack::null()
))
);
struct Dropper(UnsafeCell<Stack>);
impl Drop for Dropper {
fn drop(&mut self) {
let stack = self.get_mut();
stack.force_dealloc();
}
}
impl Deref for Dropper {
type Target = UnsafeCell<Stack>;
fn deref(&self) -> &Self::Target {
&self.0
}
}
impl DerefMut for Dropper {
fn deref_mut(&mut self) -> &mut Self::Target {
&mut self.0
}
}
const fn uninit_array<const N: usize, T>() -> [MaybeUninit<T>; N] {
unsafe { MaybeUninit::<[MaybeUninit<T>; N]>::uninit().assume_init() }
}
pub fn uninit_slice<T, F, R>(len: usize, f: F) -> R
where
F: FnOnce(&mut [MaybeUninit<T>]) -> R,
{
if std::mem::size_of::<T>() == 0 {
let mut tmp = Vec::<MaybeUninit<T>>::with_capacity(len);
let tmp = tmp.as_mut_ptr();
let mut slice = unsafe { slice::from_raw_parts_mut(tmp, len) };
return f(&mut slice);
}
if len <= 32 {
let mut slice: [MaybeUninit<T>; 32] = uninit_array();
return f(&mut slice[..len]);
}
let (_restore, slice) = THREAD_LOCAL.with(|cell| unsafe {
let stack = &mut *cell.get();
stack.get_slice(len)
});
f(slice)
}
pub fn buffer<T, F, R, I>(i: I, f: F) -> R
where
I: Iterator<Item = T>,
F: FnOnce(&mut [T]) -> R,
{
if size_of::<T>() == 0 {
let mut v = Vec::new();
for item in i {
v.push(item);
}
return f(&mut v);
}
struct Writer<'a, T> {
restore: Option<DropStack>,
reserved: &'a mut [MaybeUninit<T>],
written: usize,
}
impl<T> Writer<'_, T> {
fn write(&mut self, item: T) {
self.reserved[self.written] = MaybeUninit::new(item);
self.written += 1;
}
fn inits(&mut self) -> &mut [MaybeUninit<T>] {
&mut self.reserved[..self.written]
}
}
impl<T> Drop for Writer<'_, T> {
fn drop(&mut self) {
unsafe {
for init in self.inits() {
init.assume_init_drop();
}
}
}
}
unsafe {
let mut on_stack: [MaybeUninit<T>; 32] = uninit_array();
let mut writer = Writer {
restore: None,
reserved: &mut on_stack,
written: 0,
};
for next in i {
if writer.written == writer.reserved.len() {
THREAD_LOCAL.with(|cell| {
let stack = &mut *cell.get();
if let Some(prev) = &writer.restore {
if prev.0.base == stack.base {
let required_bytes = size_of::<T>() * writer.reserved.len();
if stack.remaining_bytes() >= required_bytes {
stack.len += required_bytes;
writer.reserved = slice::from_raw_parts_mut(
writer.reserved.as_mut_ptr() as *mut MaybeUninit<T>,
writer.written * 2,
);
return;
}
}
}
let (restore, slice) = stack.get_slice(writer.written * 2);
for i in 0..writer.written {
slice[i].write(writer.reserved[i].assume_init_read());
}
writer.restore = Some(restore);
writer.reserved = slice;
});
}
writer.write(next);
}
let inits = writer.inits();
let buffer = &mut *(inits as *mut [MaybeUninit<T>] as *mut [T]);
f(buffer)
}
}
pub(crate) struct DropStack(Stack);
impl Drop for DropStack {
fn drop(&mut self) {
unsafe {
THREAD_LOCAL.with(|cell| {
let mut current = &mut *cell.get();
if current.ref_eq(&self.0) {
current.len = self.0.len;
} else {
self.0.try_dealloc();
}
});
}
}
}