//! examples/generics.rs #![deny(unsafe_code)] #![deny(warnings)] #![no_main] #![no_std] use cortex_m_semihosting::hprintln; use panic_semihosting as _; use rtic::Mutex; #[rtic::app(device = lm3s6965)] mod app { use cortex_m_semihosting::{debug, hprintln}; use lm3s6965::Interrupt; #[resources] struct Resources { #[init(0)] shared: u32, } #[init] fn init(_: init::Context) -> (init::LateResources, init::Monotonics) { rtic::pend(Interrupt::UART0); rtic::pend(Interrupt::UART1); (init::LateResources {}, init::Monotonics()) } #[task(binds = UART0, resources = [shared])] fn uart0(c: uart0::Context) { let mut state = 0; // second argument has type `resources::shared` super::advance(&mut state, c.resources.shared); hprintln!("UART0, state {}", state).unwrap(); rtic::pend(Interrupt::UART1); debug::exit(debug::EXIT_SUCCESS); } #[task(binds = UART1, priority = 2, resources = [shared])] fn uart1(c: uart1::Context) { let mut state = 1; // second argument has type `resources::shared` super::advance(&mut state, c.resources.shared); hprintln!("UART1, state {}", state).unwrap(); } } // the second parameter is generic: it can be any type that implements the `Mutex` trait fn advance(state: &mut u32, mut shared: impl Mutex) { *state += 1; let (old, new) = shared.lock(|shared: &mut u32| { let old = *shared; *shared += *state; (old, *shared) }); hprintln!("shared: {} -> {}", old, new).unwrap(); }