198 lines
6.5 KiB
Rust
198 lines
6.5 KiB
Rust
use core::future::poll_fn;
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use core::marker::PhantomData;
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use core::mem;
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use core::task::Poll;
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use super::raw;
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/// Token to spawn a newly-created task in an executor.
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///
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/// When calling a task function (like `#[embassy_executor::task] async fn my_task() { ... }`), the returned
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/// value is a `SpawnToken` that represents an instance of the task, ready to spawn. You must
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/// then spawn it into an executor, typically with [`Spawner::spawn()`].
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///
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/// The generic parameter `S` determines whether the task can be spawned in executors
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/// in other threads or not. If `S: Send`, it can, which allows spawning it into a [`SendSpawner`].
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/// If not, it can't, so it can only be spawned into the current thread's executor, with [`Spawner`].
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///
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/// # Panics
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///
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/// Dropping a SpawnToken instance panics. You may not "abort" spawning a task in this way.
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/// Once you've invoked a task function and obtained a SpawnToken, you *must* spawn it.
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#[must_use = "Calling a task function does nothing on its own. You must spawn the returned SpawnToken, typically with Spawner::spawn()"]
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pub struct SpawnToken<S> {
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raw_task: Option<raw::TaskRef>,
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phantom: PhantomData<*mut S>,
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}
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impl<S> SpawnToken<S> {
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pub(crate) unsafe fn new(raw_task: raw::TaskRef) -> Self {
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Self {
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raw_task: Some(raw_task),
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phantom: PhantomData,
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}
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}
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/// Return a SpawnToken that represents a failed spawn.
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pub fn new_failed() -> Self {
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Self {
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raw_task: None,
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phantom: PhantomData,
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}
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}
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}
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impl<S> Drop for SpawnToken<S> {
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fn drop(&mut self) {
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// TODO deallocate the task instead.
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panic!("SpawnToken instances may not be dropped. You must pass them to Spawner::spawn()")
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}
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}
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/// Error returned when spawning a task.
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#[derive(Copy, Clone, Debug)]
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#[cfg_attr(feature = "defmt", derive(defmt::Format))]
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pub enum SpawnError {
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/// Too many instances of this task are already running.
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///
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/// By default, a task marked with `#[embassy_executor::task]` can only have one instance
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/// running at a time. You may allow multiple instances to run in parallel with
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/// `#[embassy_executor::task(pool_size = 4)]`, at the cost of higher RAM usage.
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Busy,
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}
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/// Handle to spawn tasks into an executor.
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///
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/// This Spawner can spawn any task (Send and non-Send ones), but it can
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/// only be used in the executor thread (it is not Send itself).
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///
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/// If you want to spawn tasks from another thread, use [SendSpawner].
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#[derive(Copy, Clone)]
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pub struct Spawner {
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executor: &'static raw::Executor,
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not_send: PhantomData<*mut ()>,
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}
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impl Spawner {
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pub(crate) fn new(executor: &'static raw::Executor) -> Self {
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Self {
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executor,
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not_send: PhantomData,
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}
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}
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/// Get a Spawner for the current executor.
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///
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/// This function is `async` just to get access to the current async
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/// context. It returns instantly, it does not block/yield.
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///
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/// # Panics
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///
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/// Panics if the current executor is not an Embassy executor.
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pub async fn for_current_executor() -> Self {
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poll_fn(|cx| {
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let task = raw::task_from_waker(cx.waker());
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let executor = unsafe { task.header().executor.get().unwrap_unchecked() };
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let executor = unsafe { raw::Executor::wrap(executor) };
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Poll::Ready(Self::new(executor))
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})
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.await
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}
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/// Spawn a task into an executor.
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///
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/// You obtain the `token` by calling a task function (i.e. one marked with `#[embassy_executor::task]`).
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pub fn spawn<S>(&self, token: SpawnToken<S>) -> Result<(), SpawnError> {
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let task = token.raw_task;
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mem::forget(token);
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match task {
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Some(task) => {
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unsafe { self.executor.spawn(task) };
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Ok(())
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}
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None => Err(SpawnError::Busy),
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}
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}
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// Used by the `embassy_executor_macros::main!` macro to throw an error when spawn
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// fails. This is here to allow conditional use of `defmt::unwrap!`
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// without introducing a `defmt` feature in the `embassy_executor_macros` package,
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// which would require use of `-Z namespaced-features`.
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/// Spawn a task into an executor, panicking on failure.
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///
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/// # Panics
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///
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/// Panics if the spawning fails.
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pub fn must_spawn<S>(&self, token: SpawnToken<S>) {
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unwrap!(self.spawn(token));
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}
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/// Convert this Spawner to a SendSpawner. This allows you to send the
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/// spawner to other threads, but the spawner loses the ability to spawn
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/// non-Send tasks.
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pub fn make_send(&self) -> SendSpawner {
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SendSpawner::new(&self.executor.inner)
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}
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}
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/// Handle to spawn tasks into an executor from any thread.
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///
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/// This Spawner can be used from any thread (it is Send), but it can
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/// only spawn Send tasks. The reason for this is spawning is effectively
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/// "sending" the tasks to the executor thread.
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///
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/// If you want to spawn non-Send tasks, use [Spawner].
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#[derive(Copy, Clone)]
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pub struct SendSpawner {
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executor: &'static raw::SyncExecutor,
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}
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impl SendSpawner {
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pub(crate) fn new(executor: &'static raw::SyncExecutor) -> Self {
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Self { executor }
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}
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/// Get a Spawner for the current executor.
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///
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/// This function is `async` just to get access to the current async
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/// context. It returns instantly, it does not block/yield.
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///
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/// # Panics
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///
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/// Panics if the current executor is not an Embassy executor.
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pub async fn for_current_executor() -> Self {
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poll_fn(|cx| {
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let task = raw::task_from_waker(cx.waker());
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let executor = unsafe { task.header().executor.get().unwrap_unchecked() };
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Poll::Ready(Self::new(executor))
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})
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.await
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}
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/// Spawn a task into an executor.
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///
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/// You obtain the `token` by calling a task function (i.e. one marked with `#[embassy_executor::task]`).
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pub fn spawn<S: Send>(&self, token: SpawnToken<S>) -> Result<(), SpawnError> {
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let header = token.raw_task;
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mem::forget(token);
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match header {
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Some(header) => {
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unsafe { self.executor.spawn(header) };
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Ok(())
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}
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None => Err(SpawnError::Busy),
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}
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}
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/// Spawn a task into an executor, panicking on failure.
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///
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/// # Panics
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///
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/// Panics if the spawning fails.
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pub fn must_spawn<S: Send>(&self, token: SpawnToken<S>) {
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unwrap!(self.spawn(token));
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}
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}
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