143 lines
		
	
	
		
			4.7 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
			
		
		
	
	
			143 lines
		
	
	
		
			4.7 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
#![cfg_attr(not(any(feature = "arch-std", feature = "arch-wasm")), no_std)]
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#![allow(clippy::new_without_default)]
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#![doc = include_str!("../README.md")]
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#![warn(missing_docs)]
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//! ## Feature flags
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#![doc = document_features::document_features!(feature_label = r#"<span class="stab portability"><code>{feature}</code></span>"#)]
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// This mod MUST go first, so that the others see its macros.
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pub(crate) mod fmt;
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pub use embassy_executor_macros::task;
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macro_rules! check_at_most_one {
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    (@amo [$($feats:literal)*] [] [$($res:tt)*]) => {
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        #[cfg(any($($res)*))]
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        compile_error!(concat!("At most one of these features can be enabled at the same time:", $(" `", $feats, "`",)*));
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    };
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    (@amo $feats:tt [$curr:literal $($rest:literal)*] [$($res:tt)*]) => {
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        check_at_most_one!(@amo $feats [$($rest)*] [$($res)* $(all(feature=$curr, feature=$rest),)*]);
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    };
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    ($($f:literal),*$(,)?) => {
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        check_at_most_one!(@amo [$($f)*] [$($f)*] []);
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    };
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}
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check_at_most_one!("arch-avr", "arch-cortex-m", "arch-riscv32", "arch-std", "arch-wasm",);
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#[cfg(feature = "_arch")]
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#[cfg_attr(feature = "arch-avr", path = "arch/avr.rs")]
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#[cfg_attr(feature = "arch-cortex-m", path = "arch/cortex_m.rs")]
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#[cfg_attr(feature = "arch-riscv32", path = "arch/riscv32.rs")]
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#[cfg_attr(feature = "arch-std", path = "arch/std.rs")]
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#[cfg_attr(feature = "arch-wasm", path = "arch/wasm.rs")]
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mod arch;
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#[cfg(feature = "_arch")]
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#[allow(unused_imports)] // don't warn if the module is empty.
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pub use arch::*;
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pub mod raw;
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mod spawner;
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pub use spawner::*;
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mod config {
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    #![allow(unused)]
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    include!(concat!(env!("OUT_DIR"), "/config.rs"));
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}
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/// Implementation details for embassy macros.
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/// Do not use. Used for macros and HALs only. Not covered by semver guarantees.
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#[doc(hidden)]
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#[cfg(not(feature = "nightly"))]
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pub mod _export {
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    use core::alloc::Layout;
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    use core::cell::{Cell, UnsafeCell};
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    use core::future::Future;
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    use core::mem::MaybeUninit;
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    use core::ptr::null_mut;
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    use critical_section::{CriticalSection, Mutex};
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    use crate::raw::TaskPool;
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    struct Arena<const N: usize> {
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        buf: UnsafeCell<MaybeUninit<[u8; N]>>,
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        ptr: Mutex<Cell<*mut u8>>,
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    }
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    unsafe impl<const N: usize> Sync for Arena<N> {}
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    unsafe impl<const N: usize> Send for Arena<N> {}
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    impl<const N: usize> Arena<N> {
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        const fn new() -> Self {
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            Self {
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                buf: UnsafeCell::new(MaybeUninit::uninit()),
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                ptr: Mutex::new(Cell::new(null_mut())),
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            }
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        }
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        fn alloc<T>(&'static self, cs: CriticalSection) -> &'static mut MaybeUninit<T> {
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            let layout = Layout::new::<T>();
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            let start = self.buf.get().cast::<u8>();
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            let end = unsafe { start.add(N) };
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            let mut ptr = self.ptr.borrow(cs).get();
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            if ptr.is_null() {
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                ptr = self.buf.get().cast::<u8>();
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            }
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            let bytes_left = (end as usize) - (ptr as usize);
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            let align_offset = (ptr as usize).next_multiple_of(layout.align()) - (ptr as usize);
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            if align_offset + layout.size() > bytes_left {
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                panic!("embassy-executor: task arena is full. You must increase the arena size, see the documentation for details: https://docs.embassy.dev/embassy-executor/");
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            }
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            let res = unsafe { ptr.add(align_offset) };
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            let ptr = unsafe { ptr.add(align_offset + layout.size()) };
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            self.ptr.borrow(cs).set(ptr);
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            unsafe { &mut *(res as *mut MaybeUninit<T>) }
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        }
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    }
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    static ARENA: Arena<{ crate::config::TASK_ARENA_SIZE }> = Arena::new();
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    pub struct TaskPoolRef {
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        // type-erased `&'static mut TaskPool<F, N>`
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        // Needed because statics can't have generics.
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        ptr: Mutex<Cell<*mut ()>>,
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    }
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    unsafe impl Sync for TaskPoolRef {}
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    unsafe impl Send for TaskPoolRef {}
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    impl TaskPoolRef {
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        pub const fn new() -> Self {
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            Self {
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                ptr: Mutex::new(Cell::new(null_mut())),
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            }
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        }
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        /// Get the pool for this ref, allocating it from the arena the first time.
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        ///
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        /// safety: for a given TaskPoolRef instance, must always call with the exact
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        /// same generic params.
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        pub unsafe fn get<F: Future, const N: usize>(&'static self) -> &'static TaskPool<F, N> {
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            critical_section::with(|cs| {
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                let ptr = self.ptr.borrow(cs);
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                if ptr.get().is_null() {
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                    let pool = ARENA.alloc::<TaskPool<F, N>>(cs);
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                    pool.write(TaskPool::new());
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                    ptr.set(pool as *mut _ as _);
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                }
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                unsafe { &*(ptr.get() as *const _) }
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            })
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        }
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    }
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}
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