Update stm32-data and rename RTC to Clock
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@ -5,16 +5,16 @@ use core::convert::TryInto;
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use core::sync::atomic::{compiler_fence, AtomicU32, Ordering};
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use embassy::interrupt::InterruptExt;
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use embassy::time::{Clock, TICKS_PER_SECOND};
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use embassy::time::{Clock as EmbassyClock, TICKS_PER_SECOND};
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use crate::interrupt::{CriticalSection, Interrupt, Mutex};
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use crate::pac::timer::TimGp16;
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use crate::time::Hertz;
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// RTC timekeeping works with something we call "periods", which are time intervals
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// of 2^15 ticks. The RTC counter value is 16 bits, so one "overflow cycle" is 2 periods.
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// Clock timekeeping works with something we call "periods", which are time intervals
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// of 2^15 ticks. The Clock counter value is 16 bits, so one "overflow cycle" is 2 periods.
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//
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// A `period` count is maintained in parallel to the RTC hardware `counter`, like this:
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// A `period` count is maintained in parallel to the Timer hardware `counter`, like this:
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// - `period` and `counter` start at 0
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// - `period` is incremented on overflow (at counter value 0)
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// - `period` is incremented "midway" between overflows (at counter value 0x8000)
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@ -47,17 +47,15 @@ impl AlarmState {
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}
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}
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// TODO: This is sometimes wasteful, try to find a better way
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const ALARM_COUNT: usize = 3;
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/// RTC timer that can be used by the executor and to set alarms.
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/// Clock timer that can be used by the executor and to set alarms.
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///
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/// It can work with Timers 2, 3, 4, 5, 9 and 12. Timers 9 and 12 only have one alarm available,
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/// while the others have three each.
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/// This timer works internally with a unit of 2^15 ticks, which means that if a call to
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/// [`embassy::time::Clock::now`] is blocked for that amount of ticks the returned value will be
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/// wrong (an old value). The current default tick rate is 32768 ticks per second.
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pub struct RTC<T: Instance> {
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/// It can work with Timers 2, 3, 4, 5. This timer works internally with a unit of 2^15 ticks, which
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/// means that if a call to [`embassy::time::Clock::now`] is blocked for that amount of ticks the
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/// returned value will be wrong (an old value). The current default tick rate is 32768 ticks per
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/// second.
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pub struct Clock<T: Instance> {
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_inner: T,
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irq: T::Interrupt,
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/// Number of 2^23 periods elapsed since boot.
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@ -66,7 +64,7 @@ pub struct RTC<T: Instance> {
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alarms: Mutex<[AlarmState; ALARM_COUNT]>,
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}
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impl<T: Instance> RTC<T> {
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impl<T: Instance> Clock<T> {
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pub fn new(peripheral: T, irq: T::Interrupt) -> Self {
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Self {
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_inner: peripheral,
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@ -212,7 +210,7 @@ impl<T: Instance> RTC<T> {
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}
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}
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impl<T: Instance> embassy::time::Clock for RTC<T> {
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impl<T: Instance> EmbassyClock for Clock<T> {
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fn now(&self) -> u64 {
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let inner = T::inner();
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@ -225,7 +223,7 @@ impl<T: Instance> embassy::time::Clock for RTC<T> {
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pub struct Alarm<T: Instance> {
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n: usize,
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rtc: &'static RTC<T>,
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rtc: &'static Clock<T>,
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}
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impl<T: Instance> embassy::time::Alarm for Alarm<T> {
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@ -345,15 +343,15 @@ pub trait Instance: sealed::Instance + Sized + 'static {}
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macro_rules! impl_timer {
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($inst:ident) => {
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impl crate::rtc::sealed::Instance for peripherals::$inst {
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impl crate::clock::sealed::Instance for peripherals::$inst {
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type Interrupt = interrupt::$inst;
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fn inner() -> crate::rtc::TimerInner {
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const INNER: crate::rtc::TimerInner = crate::rtc::TimerInner($inst);
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fn inner() -> crate::clock::TimerInner {
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const INNER: crate::clock::TimerInner = crate::clock::TimerInner($inst);
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INNER
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}
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}
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impl crate::rtc::Instance for peripherals::$inst {}
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impl crate::clock::Instance for peripherals::$inst {}
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};
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}
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@ -9,6 +9,8 @@
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// This must go FIRST so that all the other modules see its macros.
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pub mod fmt;
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#[cfg(feature = "_timer")]
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pub mod clock;
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#[cfg(feature = "_dma")]
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pub mod dma;
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pub mod exti;
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@ -17,8 +19,6 @@ pub mod pwr;
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pub mod rcc;
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#[cfg(feature = "_rng")]
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pub mod rng;
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#[cfg(feature = "_timer")]
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pub mod rtc;
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#[cfg(feature = "_sdmmc")]
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pub mod sdmmc;
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#[cfg(feature = "_spi")]
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@ -1 +1 @@
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Subproject commit 3f85766a0f97889788059e71d62d13950d6d7105
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Subproject commit c5db875ec2ce8568cfac018ecbdf288fc4b63ba0
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