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Add timeout and delay example
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2 changed files with 154 additions and 0 deletions
67
examples/async-delay.rs
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67
examples/async-delay.rs
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#![no_main]
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#![no_std]
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#![feature(type_alias_impl_trait)]
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use panic_semihosting as _;
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#[rtic::app(device = lm3s6965, dispatchers = [SSI0, UART0], peripherals = true)]
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mod app {
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use cortex_m_semihosting::{debug, hprintln};
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use systick_monotonic::*;
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#[shared]
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struct Shared {}
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#[local]
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struct Local {}
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#[monotonic(binds = SysTick, default = true)]
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type MyMono = Systick<100>;
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#[init]
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fn init(cx: init::Context) -> (Shared, Local, init::Monotonics) {
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hprintln!("init").unwrap();
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foo::spawn().ok();
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bar::spawn().ok();
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baz::spawn().ok();
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(
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Shared {},
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Local {},
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init::Monotonics(Systick::new(cx.core.SYST, 12_000_000)),
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)
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}
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#[idle]
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fn idle(_: idle::Context) -> ! {
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// debug::exit(debug::EXIT_SUCCESS);
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loop {
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// hprintln!("idle");
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cortex_m::asm::wfi(); // put the MCU in sleep mode until interrupt occurs
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}
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}
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#[task]
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async fn foo(_cx: foo::Context) {
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hprintln!("hello from foo").ok();
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monotonics::delay(100.millis()).await;
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hprintln!("bye from foo").ok();
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}
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#[task]
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async fn bar(_cx: bar::Context) {
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hprintln!("hello from bar").ok();
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monotonics::delay(200.millis()).await;
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hprintln!("bye from bar").ok();
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}
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#[task]
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async fn baz(_cx: baz::Context) {
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hprintln!("hello from baz").ok();
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monotonics::delay(300.millis()).await;
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hprintln!("bye from baz").ok();
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debug::exit(debug::EXIT_SUCCESS);
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}
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}
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87
examples/async-timeout.rs
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87
examples/async-timeout.rs
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#![no_main]
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#![no_std]
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#![feature(type_alias_impl_trait)]
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use panic_semihosting as _;
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// NOTES:
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//
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// - Async tasks cannot have `#[lock_free]` resources, as they can interleve and each async
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// task can have a mutable reference stored.
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// - Spawning an async task equates to it being polled once.
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#[rtic::app(device = lm3s6965, dispatchers = [SSI0, UART0], peripherals = true)]
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mod app {
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use core::{
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future::Future,
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pin::Pin,
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task::{Context, Poll},
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};
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use cortex_m_semihosting::{debug, hprintln};
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use systick_monotonic::*;
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#[shared]
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struct Shared {}
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#[local]
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struct Local {}
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#[monotonic(binds = SysTick, default = true)]
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type MyMono = Systick<100>;
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#[init]
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fn init(cx: init::Context) -> (Shared, Local, init::Monotonics) {
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hprintln!("init").unwrap();
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foo::spawn().ok();
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bar::spawn().ok();
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(
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Shared {},
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Local {},
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init::Monotonics(Systick::new(cx.core.SYST, 12_000_000)),
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)
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}
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#[idle]
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fn idle(_: idle::Context) -> ! {
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loop {
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cortex_m::asm::wfi(); // put the MCU in sleep mode until interrupt occurs
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}
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}
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#[task]
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async fn foo(_cx: foo::Context) {
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hprintln!("hello from foo").ok();
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// This will not timeout
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match monotonics::timeout_after(monotonics::delay(100.millis()), 200.millis()).await {
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Ok(_) => hprintln!("foo no timeout").ok(),
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Err(_) => hprintln!("foo timeout").ok(),
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};
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}
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#[task]
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async fn bar(_cx: bar::Context) {
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hprintln!("hello from bar").ok();
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// This will timeout
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match monotonics::timeout_after(NeverEndingFuture {}, 300.millis()).await {
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Ok(_) => hprintln!("bar no timeout").ok(),
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Err(_) => hprintln!("bar timeout").ok(),
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};
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debug::exit(debug::EXIT_SUCCESS);
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}
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pub struct NeverEndingFuture {}
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impl Future for NeverEndingFuture {
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type Output = ();
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fn poll(self: Pin<&mut Self>, _: &mut Context<'_>) -> Poll<Self::Output> {
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// Never finish
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Poll::Pending
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}
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}
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}
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