rtic/examples/actor-publish.rs

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#![no_main]
#![no_std]
use panic_semihosting as _;
#[rtic::app(device = lm3s6965, dispatchers = [GPIOA, GPIOB])]
mod app {
use core::sync::atomic::{AtomicBool, Ordering};
use cortex_m_semihosting::{debug, hprintln};
use rtic_actor_traits::Receive;
struct A;
struct B;
const PAYLOAD: i32 = 42;
static CLONE_WAS_CALLED_EXACTLY_ONCE: AtomicBool = AtomicBool::new(false);
struct M {
payload: i32,
}
impl Clone for M {
fn clone(&self) -> Self {
assert!(!CLONE_WAS_CALLED_EXACTLY_ONCE.load(Ordering::Relaxed));
CLONE_WAS_CALLED_EXACTLY_ONCE.store(true, Ordering::Relaxed);
// `derive(Clone)` implementation
Self {
payload: self.payload.clone(),
}
}
}
static A_RECEIVE_WAS_CALLED: AtomicBool = AtomicBool::new(false);
impl Receive<M> for A {
fn receive(&mut self, m: M) {
hprintln!("A::receive was called").ok();
assert_eq!(PAYLOAD, m.payload);
A_RECEIVE_WAS_CALLED.store(true, Ordering::Relaxed);
}
}
static B_RECEIVE_WAS_CALLED: AtomicBool = AtomicBool::new(false);
impl Receive<M> for B {
fn receive(&mut self, m: M) {
hprintln!("B::receive was called").ok();
assert_eq!(PAYLOAD, m.payload);
B_RECEIVE_WAS_CALLED.store(true, Ordering::Relaxed);
}
}
#[actors]
struct Actors {
#[subscribe(M, capacity = 2)]
#[init(A)]
a: A,
#[subscribe(M, capacity = 1)]
#[init(B)]
b: B,
}
#[init]
fn init(cx: init::Context) -> (Shared, Local, init::Monotonics, Actors) {
let mut poster = cx.poster;
assert!(poster.post(M { payload: PAYLOAD }).is_ok());
assert!(CLONE_WAS_CALLED_EXACTLY_ONCE.load(Ordering::Relaxed));
// receive invocations withheld
assert!(!A_RECEIVE_WAS_CALLED.load(Ordering::Relaxed));
assert!(!B_RECEIVE_WAS_CALLED.load(Ordering::Relaxed));
(Shared {}, Local {}, init::Monotonics(), Actors {})
}
#[idle]
fn idle(_: idle::Context) -> ! {
// receive invocations must have executed by now
assert!(A_RECEIVE_WAS_CALLED.load(Ordering::Relaxed));
assert!(B_RECEIVE_WAS_CALLED.load(Ordering::Relaxed));
loop {
debug::exit(debug::EXIT_SUCCESS)
}
}
#[local]
struct Local {}
#[shared]
struct Shared {}
}