async_engine: move scheduler into workspace crate
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parent
b7ecf700fa
commit
03d3876888
7 changed files with 205 additions and 182 deletions
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@ -1,290 +0,0 @@
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use {
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crate::{
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async_engine::{AsyncEngine, Phase},
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tracy::ZoneName,
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utils::{
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numcell::NumCell,
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ptr_ext::{MutPtrExt, PtrExt},
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},
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},
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std::{
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cell::{Cell, UnsafeCell},
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future::Future,
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mem::ManuallyDrop,
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pin::Pin,
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ptr,
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rc::Rc,
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task::{Context, Poll, RawWaker, RawWakerVTable, Waker},
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},
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};
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#[must_use]
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pub struct SpawnedFuture<T: 'static> {
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vtable: &'static SpawnedFutureVtable<T>,
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data: *mut u8,
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}
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impl<T> Future for SpawnedFuture<T> {
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type Output = T;
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fn poll(self: Pin<&mut Self>, cx: &mut Context<'_>) -> Poll<Self::Output> {
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unsafe { (self.vtable.poll)(self.data, cx) }
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}
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}
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impl<T> Drop for SpawnedFuture<T> {
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fn drop(&mut self) {
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unsafe {
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(self.vtable.drop)(self.data);
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}
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}
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}
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struct SpawnedFutureVTableProxy<T, F>(T, F);
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impl<T: 'static, F: Future<Output = T>> SpawnedFutureVTableProxy<T, F> {
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const VTABLE: &'static SpawnedFutureVtable<T> = &SpawnedFutureVtable {
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poll: Self::poll,
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drop: Self::drop,
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};
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unsafe fn poll(data: *mut u8, ctx: &mut Context<'_>) -> Poll<T> {
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unsafe {
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let task = (data as *const Task<T, F>).deref();
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if &task.state & COMPLETED == 0 {
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task.waker.set(Some(ctx.waker().clone()));
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Poll::Pending
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} else if &task.state & EMPTIED == 0 {
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task.state.or_assign(EMPTIED);
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Poll::Ready(ptr::read(&*task.data.get().deref().result))
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} else {
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panic!("Future polled after it has already been emptied");
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}
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}
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}
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unsafe fn drop(data: *mut u8) {
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unsafe {
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{
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let task = (data as *const Task<T, F>).deref();
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task.state.or_assign(CANCELLED);
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if &task.state & RUNNING == 0 {
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task.drop_data();
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}
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}
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Task::<T, F>::dec_ref_count(data as _);
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}
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}
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}
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struct SpawnedFutureVtable<T> {
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poll: unsafe fn(data: *mut u8, ctx: &mut Context<'_>) -> Poll<T>,
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drop: unsafe fn(data: *mut u8),
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}
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union TaskData<T, F: Future<Output = T>> {
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result: ManuallyDrop<T>,
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future: ManuallyDrop<F>,
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}
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const RUNNING: u32 = 1;
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const RUN_AGAIN: u32 = 2;
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const COMPLETED: u32 = 4;
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const EMPTIED: u32 = 8;
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const CANCELLED: u32 = 16;
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struct Task<T, F: Future<Output = T>> {
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ref_count: NumCell<u64>,
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phase: Phase,
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state: NumCell<u32>,
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data: UnsafeCell<TaskData<T, F>>,
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waker: Cell<Option<Waker>>,
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queue: Rc<AsyncEngine>,
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#[cfg_attr(not(feature = "tracy"), expect(dead_code))]
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zone: ZoneName,
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}
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pub(super) struct Runnable {
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data: *const u8,
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run: unsafe fn(data: *const u8, run: bool),
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}
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impl Runnable {
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pub(super) fn run(self) {
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let slf = ManuallyDrop::new(self);
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unsafe {
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(slf.run)(slf.data, true);
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}
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}
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}
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impl Drop for Runnable {
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fn drop(&mut self) {
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unsafe {
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(self.run)(self.data, false);
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}
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}
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}
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impl AsyncEngine {
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pub(super) fn spawn_<T, F: Future<Output = T>>(
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self: &Rc<Self>,
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#[cfg_attr(not(feature = "tracy"), expect(unused_variables))] name: &str,
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phase: Phase,
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f: F,
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) -> SpawnedFuture<T> {
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let f = Box::new(Task {
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ref_count: NumCell::new(1),
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phase,
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state: NumCell::new(0),
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data: UnsafeCell::new(TaskData {
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future: ManuallyDrop::new(f),
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}),
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waker: Cell::new(None),
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queue: self.clone(),
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zone: create_zone_name!("task:{}", name),
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});
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unsafe {
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f.schedule_run();
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}
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let f = Box::into_raw(f);
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SpawnedFuture {
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vtable: SpawnedFutureVTableProxy::<T, F>::VTABLE,
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data: f as _,
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}
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}
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}
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impl<T, F: Future<Output = T>> Task<T, F> {
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const VTABLE: &'static RawWakerVTable = &RawWakerVTable::new(
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Self::waker_clone,
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Self::waker_wake,
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Self::waker_wake_by_ref,
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Self::waker_drop,
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);
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unsafe fn run_proxy(data: *const u8, run: bool) {
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unsafe {
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let task = data as *const Self;
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if run {
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task.deref().run();
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} else {
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Self::task_runnable_dropped(task);
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}
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Self::dec_ref_count(task);
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}
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}
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#[cold]
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unsafe fn task_runnable_dropped(task: *const Self) {
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unsafe {
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let task = task.deref();
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task.state.and_assign(!RUNNING);
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if task.state.get() & CANCELLED != 0 {
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task.drop_data();
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}
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}
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}
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unsafe fn dec_ref_count(slf: *const Self) {
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unsafe {
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if slf.deref().ref_count.fetch_sub(1) == 1 {
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drop(Box::from_raw(slf as *mut Self));
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}
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}
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}
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unsafe fn inc_ref_count(&self) {
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self.ref_count.fetch_add(1);
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}
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unsafe fn waker_clone(data: *const ()) -> RawWaker {
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unsafe {
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let task = &mut *(data as *mut Self);
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task.inc_ref_count();
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RawWaker::new(data, Self::VTABLE)
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}
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}
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unsafe fn waker_wake(data: *const ()) {
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unsafe {
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Self::waker_wake_by_ref(data);
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Self::waker_drop(data);
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}
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}
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unsafe fn waker_wake_by_ref(data: *const ()) {
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unsafe {
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(data as *const Self).deref().schedule_run();
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}
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}
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unsafe fn waker_drop(data: *const ()) {
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unsafe { Self::dec_ref_count(data as _) }
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}
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unsafe fn schedule_run(&self) {
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unsafe {
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if &self.state & (COMPLETED | CANCELLED) == 0 {
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if &self.state & RUNNING == 0 {
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self.state.or_assign(RUNNING);
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self.inc_ref_count();
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let data = self as *const _ as _;
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self.queue.push(
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Runnable {
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data,
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run: Self::run_proxy,
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},
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self.phase,
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);
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} else {
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self.state.or_assign(RUN_AGAIN);
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}
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}
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}
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}
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unsafe fn run(&self) {
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unsafe {
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if &self.state & CANCELLED == 0 {
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let data = self.data.get().deref_mut();
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self.inc_ref_count();
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let raw_waker = RawWaker::new(self as *const _ as _, Self::VTABLE);
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let waker = Waker::from_raw(raw_waker);
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let mut ctx = Context::from_waker(&waker);
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let poll = {
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dynamic_zone!(self.zone);
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Pin::new_unchecked(&mut *data.future).poll(&mut ctx)
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};
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if let Poll::Ready(d) = poll {
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ManuallyDrop::drop(&mut data.future);
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ptr::write(&mut data.result, ManuallyDrop::new(d));
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self.state.or_assign(COMPLETED);
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if let Some(waker) = self.waker.take() {
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waker.wake();
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}
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}
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}
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self.state.and_assign(!RUNNING);
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if &self.state & CANCELLED != 0 {
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self.drop_data();
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} else if &self.state & RUN_AGAIN != 0 {
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self.state.and_assign(!RUN_AGAIN);
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self.schedule_run()
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}
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}
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}
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unsafe fn drop_data(&self) {
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unsafe {
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if &self.state & COMPLETED == 0 {
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ManuallyDrop::drop(&mut self.data.get().deref_mut().future);
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} else if &self.state & EMPTIED == 0 {
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ManuallyDrop::drop(&mut self.data.get().deref_mut().result);
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}
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}
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}
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}
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