mirror of
https://gitlab.com/fabinfra/fabaccess/bffh.git
synced 2024-11-22 23:07:56 +01:00
120 lines
3.6 KiB
Rust
120 lines
3.6 KiB
Rust
//!
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//! Handle for recoverable process
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use crate::proc_data::ProcData;
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use crate::proc_handle::ProcHandle;
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use crate::state::State;
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use std::any::Any;
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use std::fmt::{self, Debug, Formatter};
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use std::future::Future;
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use std::pin::Pin;
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use std::task::{Context, Poll};
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use std::thread;
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/// Recoverable handle which encapsulates a standard Proc Handle and contain all panics inside.
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///
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/// Execution of `after_panic` will be immediate on polling the [RecoverableHandle]'s future.
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pub struct RecoverableHandle<R> {
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inner: ProcHandle<thread::Result<R>>,
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/// Panic callback
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///
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/// This callback will be called if the interior future panics. It is passed the panic
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// reason i.e. the `Err` of [`std::thread::Result`]
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panicked: Option<Box<dyn FnOnce(Box<dyn Any + Send>) + Send + Sync>>,
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}
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impl<R> RecoverableHandle<R> {
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pub(crate) fn new(inner: ProcHandle<thread::Result<R>>) -> Self {
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RecoverableHandle {
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inner,
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panicked: None,
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}
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}
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/// Cancels the proc.
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///
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/// If the proc has already completed, calling this method will have no effect.
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///
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/// When a proc is cancelled, its future cannot be polled again and will be dropped instead.
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pub fn cancel(&self) {
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self.inner.cancel()
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}
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/// Returns a state of the ProcHandle.
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pub fn state(&self) -> State {
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self.inner.state()
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}
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/// Adds a callback that will be executed should the inner future `panic!`s
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///
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/// ```rust
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/// # use std::any::Any;
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/// use lightproc::proc_stack::ProcStack;
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/// use lightproc::proc_state::EmptyProcState;
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/// # use lightproc::prelude::*;
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/// #
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/// # // ... future that does work
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/// # let future = async {
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/// # println!("Doing some work");
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/// # };
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/// #
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/// # // ... basic schedule function with no waker logic
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/// # fn schedule_function(proc: LightProc) {;}
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/// #
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/// # // ... process stack with a lifecycle callback
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/// # let proc_stack =
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/// # ProcStack::default()
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/// # .with_after_panic(|s: &mut EmptyProcState| {
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/// # println!("After panic started!");
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/// # });
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/// #
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/// // ... creating a recoverable process
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/// let (proc, recoverable) = LightProc::recoverable(
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/// future,
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/// schedule_function,
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/// );
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///
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/// recoverable
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/// .on_return(|_e: Box<dyn Any + Send>| {
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/// println!("Inner future panicked");
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/// });
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/// ```
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pub fn on_panic<F>(mut self, callback: F) -> Self
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where
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F: FnOnce(Box<dyn Any + Send>) + Send + Sync + 'static,
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{
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self.panicked = Some(Box::new(callback));
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self
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}
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}
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impl<R> Future for RecoverableHandle<R> {
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type Output = Option<R>;
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fn poll(mut self: Pin<&mut Self>, cx: &mut Context) -> Poll<Self::Output> {
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match Pin::new(&mut self.inner).poll(cx) {
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Poll::Pending => Poll::Pending,
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Poll::Ready(None) => Poll::Ready(None),
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Poll::Ready(Some(Ok(val))) => Poll::Ready(Some(val)),
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Poll::Ready(Some(Err(e))) => {
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if let Some(callback) = self.panicked.take() {
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callback(e);
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}
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Poll::Ready(None)
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}
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}
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}
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}
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impl<R> Debug for RecoverableHandle<R> {
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fn fmt(&self, fmt: &mut Formatter) -> fmt::Result {
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let ptr = self.inner.raw_proc.as_ptr();
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let pdata = ptr as *const ProcData;
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fmt.debug_struct("ProcHandle")
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.field("pdata", unsafe { &(*pdata) })
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.finish_non_exhaustive()
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}
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}
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