embedded-trainings-2020/advanced/firmware/src/bin/resource-solution.rs

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#![no_main]
#![no_std]
use cortex_m::asm;
use dk::peripheral::POWER;
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// this imports `beginner/apps/lib.rs` to retrieve our global logger + panicking-behavior
use firmware as _;
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#[rtic::app(device = dk)]
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const APP: () = {
struct Resources {
power: POWER,
counter: usize, // <- new resource
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}
#[init]
fn init(_cx: init::Context) -> init::LateResources {
let board = dk::init().unwrap();
let power = board.power;
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power.intenset.write(|w| w.usbdetected().set_bit());
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defmt::println!("USBDETECTED interrupt enabled");
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init::LateResources {
power,
counter: 0, // <- initialize the new resource
}
}
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#[idle]
fn main(_cx: main::Context) -> ! {
loop {
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defmt::println!("idle: going to sleep");
asm::wfi();
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defmt::println!("idle: woke up");
}
}
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#[task(binds = POWER_CLOCK, resources = [power, counter])]
// ^^^^^^^ we want to access the resource from here
fn on_power_event(cx: on_power_event::Context) {
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defmt::debug!("POWER event occurred");
let power = cx.resources.power;
let counter = cx.resources.counter;
*counter += 1;
let n = *counter;
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defmt::println!(
"on_power_event: cable connected {} time{}",
n,
if n != 1 { "s" } else { "" }
);
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// clear the interrupt flag; otherwise this task will run again after it returns
power.events_usbdetected.reset();
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}
};