stm32: fix rtc wakeup timing and add dbg
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@ -8,7 +8,7 @@ license = "MIT OR Apache-2.0"
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src_base = "https://github.com/embassy-rs/embassy/blob/embassy-stm32-v$VERSION/embassy-stm32/src/"
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src_base_git = "https://github.com/embassy-rs/embassy/blob/$COMMIT/embassy-stm32/src/"
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features = ["nightly", "defmt", "unstable-pac", "unstable-traits", "exti", "time-driver-any", "time", "low-power"]
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features = ["nightly", "defmt", "unstable-pac", "unstable-traits", "exti", "time-driver-any", "time", "low-power", "rtc-debug"]
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flavors = [
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{ regex_feature = "stm32f0.*", target = "thumbv6m-none-eabi" },
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{ regex_feature = "stm32f1.*", target = "thumbv7m-none-eabi" },
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@ -90,6 +90,7 @@ defmt = ["dep:defmt", "bxcan/unstable-defmt", "embassy-sync/defmt", "embassy-emb
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exti = []
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low-power = [ "dep:embassy-executor", "embassy-executor/arch-cortex-m" ]
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rtc-debug = []
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embassy-executor = []
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## Automatically generate `memory.x` file using [`stm32-metapac`](https://docs.rs/stm32-metapac/)
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@ -89,6 +89,9 @@ impl Executor {
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self.time_driver.resume_time();
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trace!("low power: resume time");
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#[cfg(feature = "rtc-debug")]
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cortex_m::asm::bkpt();
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}
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pub(self) fn stop_with_rtc(&mut self, rtc: &'static Rtc) {
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@ -118,6 +121,7 @@ impl Executor {
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}
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trace!("low power: enter stop...");
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#[cfg(not(feature = "rtc-debug"))]
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self.scb.set_sleepdeep();
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}
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@ -140,6 +144,9 @@ impl Executor {
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///
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/// This function never returns.
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pub fn run(&'static mut self, init: impl FnOnce(Spawner)) -> ! {
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#[cfg(feature = "rtc-debug")]
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trace!("low power: rtc debug enabled");
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init(unsafe { EXECUTOR.as_mut().unwrap() }.inner.spawner());
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loop {
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@ -17,7 +17,7 @@ use crate::{peripherals, Peripheral};
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pub const HSI_FREQ: Hertz = Hertz(16_000_000);
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/// LSI speed
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pub const LSI_FREQ: Hertz = Hertz(32_000);
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pub const LSI_FREQ: Hertz = Hertz(32_768);
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/// Clocks configuration
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#[non_exhaustive]
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@ -47,6 +47,18 @@ struct RtcInstant {
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subsecond: u16,
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}
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#[cfg(all(feature = "low-power", feature = "defmt"))]
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impl defmt::Format for RtcInstant {
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fn format(&self, fmt: defmt::Formatter) {
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defmt::write!(
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fmt,
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"{}:{}",
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self.second,
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RTC::regs().prer().read().prediv_s() - self.subsecond,
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)
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}
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}
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#[cfg(feature = "low-power")]
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impl core::ops::Sub for RtcInstant {
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type Output = embassy_time::Duration;
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@ -174,7 +186,7 @@ impl Rtc {
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let second = bcd2_to_byte((tr.st(), tr.su()));
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// Unlock the registers
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r.dr();
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r.dr().read();
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RtcInstant { second, subsecond }
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}
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@ -1,7 +1,5 @@
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use stm32_metapac::rtc::vals::{Init, Osel, Pol};
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#[cfg(feature = "low-power")]
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use super::RtcInstant;
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use super::{sealed, RtcConfig};
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use crate::pac::rtc::Rtc;
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use crate::peripherals::RTC;
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@ -77,6 +75,21 @@ impl super::Rtc {
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/// start the wakeup alarm and wtih a duration that is as close to but less than
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/// the requested duration, and record the instant the wakeup alarm was started
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pub(crate) fn start_wakeup_alarm(&self, requested_duration: embassy_time::Duration) {
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#[cfg(feature = "rtc-debug")]
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if critical_section::with(|cs| {
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if let Some(instant) = self.stop_time.borrow(cs).take() {
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self.stop_time.borrow(cs).replace(Some(instant));
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Some(())
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} else {
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None
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}
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})
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.is_some()
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{
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return;
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}
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use embassy_time::{Duration, TICK_HZ};
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use crate::rcc::get_freqs;
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@ -86,17 +99,14 @@ impl super::Rtc {
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let rtc_ticks = requested_duration.as_ticks() * rtc_hz / TICK_HZ;
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let prescaler = WakeupPrescaler::compute_min((rtc_ticks / u16::MAX as u64) as u32);
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// adjust the rtc ticks to the prescaler
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// adjust the rtc ticks to the prescaler and subtract one rtc tick
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let rtc_ticks = rtc_ticks / (<WakeupPrescaler as Into<u32>>::into(prescaler) as u64);
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let rtc_ticks = if rtc_ticks >= u16::MAX as u64 {
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u16::MAX - 1
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} else {
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rtc_ticks as u16
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};
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let duration = Duration::from_ticks(
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rtc_ticks as u64 * TICK_HZ * (<WakeupPrescaler as Into<u32>>::into(prescaler) as u64) / rtc_hz,
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);
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}
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.saturating_sub(1);
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self.write(false, |regs| {
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regs.cr().modify(|w| w.set_wute(false));
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@ -104,11 +114,21 @@ impl super::Rtc {
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while !regs.isr().read().wutwf() {}
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regs.cr().modify(|w| w.set_wucksel(prescaler.into()));
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regs.wutr().write(|w| w.set_wut(rtc_ticks));
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regs.cr().modify(|w| w.set_wute(true));
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regs.cr().modify(|w| w.set_wutie(true));
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});
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trace!("rtc: start wakeup alarm for {} ms", duration.as_millis());
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trace!(
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"rtc: start wakeup alarm for {} ms (psc: {}, ticks: {}) at {}",
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Duration::from_ticks(
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rtc_ticks as u64 * TICK_HZ * (<WakeupPrescaler as Into<u32>>::into(prescaler) as u64) / rtc_hz,
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)
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.as_millis(),
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<WakeupPrescaler as Into<u32>>::into(prescaler),
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rtc_ticks,
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self.instant(),
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);
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critical_section::with(|cs| assert!(self.stop_time.borrow(cs).replace(Some(self.instant())).is_none()))
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}
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@ -119,7 +139,10 @@ impl super::Rtc {
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pub(crate) fn stop_wakeup_alarm(&self) -> Option<embassy_time::Duration> {
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use crate::interrupt::typelevel::Interrupt;
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trace!("rtc: stop wakeup alarm...");
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trace!("rtc: stop wakeup alarm at {}", self.instant());
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#[cfg(feature = "rtc-debug")]
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return None;
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self.write(false, |regs| {
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regs.cr().modify(|w| w.set_wutie(false));
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@ -363,6 +363,7 @@ impl RtcDriver {
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.start_wakeup_alarm(time_until_next_alarm);
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});
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#[cfg(not(feature = "rtc-debug"))]
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T::regs_gp16().cr1().modify(|w| w.set_cen(false));
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Ok(())
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@ -374,6 +375,7 @@ impl RtcDriver {
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pub(crate) fn resume_time(&self) {
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self.stop_wakeup_alarm();
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#[cfg(not(feature = "rtc-debug"))]
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T::regs_gp16().cr1().modify(|w| w.set_cen(true));
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}
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}
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@ -46,8 +46,10 @@ async fn async_main(_spawner: Spawner) {
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stop_with_rtc(rtc);
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info!("Waiting 5 seconds");
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Timer::after(Duration::from_secs(5)).await;
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info!("Waiting...");
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Timer::after(Duration::from_secs(2)).await;
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info!("Waiting...");
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Timer::after(Duration::from_secs(3)).await;
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info!("Test OK");
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cortex_m::asm::bkpt();
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