mirror of
https://github.com/rtic-rs/rtic.git
synced 2024-11-27 14:04:56 +01:00
133 lines
3.6 KiB
Rust
133 lines
3.6 KiB
Rust
//! ...
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use super::Monotonic;
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pub use super::{TimeoutError, TimerQueue};
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use atomic_polyfill::{AtomicU32, Ordering};
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use core::ops::Deref;
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use cortex_m::peripheral::SYST;
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use embedded_hal_async::delay::DelayUs;
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pub use fugit::ExtU32;
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const TIMER_HZ: u32 = 1_000;
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/// Systick implementing `rtic_monotonic::Monotonic` which runs at 1 kHz.
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pub struct Systick;
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impl Systick {
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/// Start a `Monotonic` based on SysTick.
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///
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/// The `sysclk` parameter is the speed at which SysTick runs at. This value should come from
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/// the clock generation function of the used HAL.
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///
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/// Notice that the actual rate of the timer is a best approximation based on the given
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/// `sysclk` and `TIMER_HZ`.
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///
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/// Note: Give the return value to `TimerQueue::initialize()` to initialize the timer queue.
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#[must_use]
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pub fn start(mut systick: cortex_m::peripheral::SYST, sysclk: u32) -> Self {
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// + TIMER_HZ / 2 provides round to nearest instead of round to 0.
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// - 1 as the counter range is inclusive [0, reload]
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let reload = (sysclk + TIMER_HZ / 2) / TIMER_HZ - 1;
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assert!(reload <= 0x00ff_ffff);
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assert!(reload > 0);
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systick.disable_counter();
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systick.set_clock_source(cortex_m::peripheral::syst::SystClkSource::Core);
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systick.set_reload(reload);
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systick.enable_interrupt();
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systick.enable_counter();
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Systick {}
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}
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fn systick() -> SYST {
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unsafe { core::mem::transmute::<(), SYST>(()) }
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}
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}
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static SYSTICK_CNT: AtomicU32 = AtomicU32::new(0);
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impl Monotonic for Systick {
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type Instant = fugit::TimerInstantU32<TIMER_HZ>;
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type Duration = fugit::TimerDurationU32<TIMER_HZ>;
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const ZERO: Self::Instant = Self::Instant::from_ticks(0);
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fn now() -> Self::Instant {
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if Self::systick().has_wrapped() {
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SYSTICK_CNT.fetch_add(1, Ordering::AcqRel);
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}
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Self::Instant::from_ticks(SYSTICK_CNT.load(Ordering::Relaxed))
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}
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fn set_compare(_: Self::Instant) {
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// No need to do something here, we get interrupts anyway.
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}
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fn clear_compare_flag() {
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// NOOP with SysTick interrupt
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}
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fn pend_interrupt() {
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cortex_m::peripheral::SCB::set_pendst();
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}
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fn on_interrupt() {
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if Self::systick().has_wrapped() {
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SYSTICK_CNT.fetch_add(1, Ordering::AcqRel);
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}
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}
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fn enable_timer() {}
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fn disable_timer() {}
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}
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/// Timer queue wrapper to implement traits on
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pub struct SystickTimerQueue(TimerQueue<Systick>);
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impl SystickTimerQueue {
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/// Create a new timer queue.
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pub const fn new() -> Self {
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Self(TimerQueue::new())
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}
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}
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impl Deref for SystickTimerQueue {
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type Target = TimerQueue<Systick>;
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#[inline(always)]
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fn deref(&self) -> &Self::Target {
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&self.0
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}
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}
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impl DelayUs for SystickTimerQueue {
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type Error = core::convert::Infallible;
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async fn delay_us(&mut self, us: u32) -> Result<(), Self::Error> {
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self.delay(us.micros()).await;
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Ok(())
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}
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async fn delay_ms(&mut self, ms: u32) -> Result<(), Self::Error> {
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self.delay(ms.millis()).await;
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Ok(())
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}
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}
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/// Register the Systick interrupt and crate a timer queue with a specific name and speed.
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#[macro_export]
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macro_rules! make_systick_timer_queue {
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($timer_queue_name:ident) => {
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static $timer_queue_name: SystickTimerQueue = SystickTimerQueue::new();
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#[no_mangle]
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#[allow(non_snake_case)]
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unsafe extern "C" fn SysTick() {
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$timer_queue_name.on_monotonic_interrupt();
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}
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};
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}
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