rtic/examples/generics.rs

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//! examples/generics.rs
#![deny(unsafe_code)]
#![deny(warnings)]
#![no_main]
#![no_std]
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use cortex_m_semihosting::hprintln;
use panic_semihosting as _;
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use rtic::Mutex;
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#[rtic::app(device = lm3s6965)]
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mod app {
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use cortex_m_semihosting::{debug, hprintln};
use lm3s6965::Interrupt;
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#[shared]
struct Shared {
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shared: u32,
}
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#[local]
struct Local {}
#[init]
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fn init(_: init::Context) -> (Shared, Local, init::Monotonics) {
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rtic::pend(Interrupt::UART0);
rtic::pend(Interrupt::UART1);
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(Shared { shared: 0 }, Local {}, init::Monotonics())
}
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#[task(binds = UART0, shared = [shared], local = [state: u32 = 0])]
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fn uart0(c: uart0::Context) {
hprintln!("UART0(STATE = {})", *c.local.state);
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// second argument has type `shared::shared`
super::advance(c.local.state, c.shared.shared);
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rtic::pend(Interrupt::UART1);
// Exit moved after nop to ensure that rtic::pend gets
// to run before exiting
cortex_m::asm::nop();
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debug::exit(debug::EXIT_SUCCESS); // Exit QEMU simulator
}
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#[task(binds = UART1, priority = 2, shared = [shared], local = [state: u32 = 0])]
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fn uart1(c: uart1::Context) {
hprintln!("UART1(STATE = {})", *c.local.state);
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// second argument has type `shared::shared`
super::advance(c.local.state, c.shared.shared);
}
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}
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// the second parameter is generic: it can be any type that implements the `Mutex` trait
fn advance(state: &mut u32, mut shared: impl Mutex<T = u32>) {
*state += 1;
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let (old, new) = shared.lock(|shared: &mut u32| {
let old = *shared;
*shared += *state;
(old, *shared)
});
hprintln!("shared: {} -> {}", old, new);
}