commit
b3367be9c8
@ -18,7 +18,7 @@ flavors = [
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{ regex_feature = "stm32f7.*", target = "thumbv7em-none-eabi" },
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{ regex_feature = "stm32c0.*", target = "thumbv6m-none-eabi" },
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{ regex_feature = "stm32g0.*", target = "thumbv6m-none-eabi" },
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{ regex_feature = "stm32g4.*", target = "thumbv7em-none-eabi" },
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{ regex_feature = "stm32g4.*", target = "thumbv7em-none-eabi", features = ["low-power"] },
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{ regex_feature = "stm32h5.*", target = "thumbv8m.main-none-eabihf" },
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{ regex_feature = "stm32h7.*", target = "thumbv7em-none-eabi" },
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{ regex_feature = "stm32l0.*", target = "thumbv6m-none-eabi", features = ["low-power"] },
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@ -33,6 +33,61 @@ use embassy_hal_internal::Peripheral;
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use crate::peripherals::RTC;
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use crate::rtc::sealed::Instance;
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#[allow(dead_code)]
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#[repr(u8)]
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#[derive(Clone, Copy, Debug)]
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pub(crate) enum WakeupPrescaler {
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Div2 = 2,
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Div4 = 4,
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Div8 = 8,
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Div16 = 16,
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}
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#[cfg(any(stm32wb, stm32f4, stm32l0, stm32g4))]
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impl From<WakeupPrescaler> for crate::pac::rtc::vals::Wucksel {
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fn from(val: WakeupPrescaler) -> Self {
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use crate::pac::rtc::vals::Wucksel;
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match val {
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WakeupPrescaler::Div2 => Wucksel::DIV2,
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WakeupPrescaler::Div4 => Wucksel::DIV4,
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WakeupPrescaler::Div8 => Wucksel::DIV8,
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WakeupPrescaler::Div16 => Wucksel::DIV16,
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}
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}
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}
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#[cfg(any(stm32wb, stm32f4, stm32l0, stm32g4))]
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impl From<crate::pac::rtc::vals::Wucksel> for WakeupPrescaler {
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fn from(val: crate::pac::rtc::vals::Wucksel) -> Self {
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use crate::pac::rtc::vals::Wucksel;
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match val {
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Wucksel::DIV2 => WakeupPrescaler::Div2,
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Wucksel::DIV4 => WakeupPrescaler::Div4,
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Wucksel::DIV8 => WakeupPrescaler::Div8,
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Wucksel::DIV16 => WakeupPrescaler::Div16,
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_ => unreachable!(),
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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 WakeupPrescaler {
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pub fn compute_min(val: u32) -> Self {
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*[
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WakeupPrescaler::Div2,
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WakeupPrescaler::Div4,
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WakeupPrescaler::Div8,
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WakeupPrescaler::Div16,
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]
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.iter()
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.skip_while(|psc| **psc as u32 <= val)
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.next()
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.unwrap_or(&WakeupPrescaler::Div16)
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}
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}
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/// Errors that can occur on methods on [RtcClock]
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#[non_exhaustive]
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#[derive(Clone, Debug, PartialEq, Eq)]
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@ -277,6 +332,114 @@ impl Rtc {
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pub fn write_backup_register(&self, register: usize, value: u32) {
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RTC::write_backup_register(&RTC::regs(), register, value)
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}
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#[cfg(feature = "low-power")]
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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(
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&self,
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requested_duration: embassy_time::Duration,
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cs: critical_section::CriticalSection,
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) {
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use embassy_time::{Duration, TICK_HZ};
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#[cfg(any(rtc_v3, rtc_v3u5))]
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use crate::pac::rtc::vals::Calrf;
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// Panic if the rcc mod knows we're not using low-power rtc
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#[cfg(any(rcc_wb, rcc_f4, rcc_f410))]
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unsafe { crate::rcc::get_freqs() }.rtc.unwrap();
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let requested_duration = requested_duration.as_ticks().clamp(0, u32::MAX as u64);
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let rtc_hz = Self::frequency().0 as u64;
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let rtc_ticks = requested_duration * 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 and subtract one rtc tick
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let rtc_ticks = rtc_ticks / prescaler as u64;
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let rtc_ticks = rtc_ticks.clamp(0, (u16::MAX - 1) as u64).saturating_sub(1) as u16;
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self.write(false, |regs| {
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regs.cr().modify(|w| w.set_wute(false));
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#[cfg(any(
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rtc_v2f0, rtc_v2f2, rtc_v2f3, rtc_v2f4, rtc_v2f7, rtc_v2h7, rtc_v2l0, rtc_v2l1, rtc_v2l4, rtc_v2wb
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))]
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{
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regs.isr().modify(|w| w.set_wutf(false));
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while !regs.isr().read().wutwf() {}
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}
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#[cfg(any(rtc_v3, rtc_v3u5))]
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{
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regs.scr().write(|w| w.set_cwutf(Calrf::CLEAR));
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while !regs.icsr().read().wutwf() {}
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}
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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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let instant = self.instant().unwrap();
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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(rtc_ticks as u64 * TICK_HZ * prescaler as u64 / rtc_hz).as_millis(),
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prescaler as u32,
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rtc_ticks,
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instant,
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);
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assert!(self.stop_time.borrow(cs).replace(Some(instant)).is_none())
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}
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#[cfg(feature = "low-power")]
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/// stop the wakeup alarm and return the time elapsed since `start_wakeup_alarm`
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/// was called, otherwise none
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pub(crate) fn stop_wakeup_alarm(&self, cs: critical_section::CriticalSection) -> Option<embassy_time::Duration> {
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use crate::interrupt::typelevel::Interrupt;
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#[cfg(any(rtc_v3, rtc_v3u5))]
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use crate::pac::rtc::vals::Calrf;
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let instant = self.instant().unwrap();
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if RTC::regs().cr().read().wute() {
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trace!("rtc: stop wakeup alarm at {}", instant);
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self.write(false, |regs| {
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regs.cr().modify(|w| w.set_wutie(false));
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regs.cr().modify(|w| w.set_wute(false));
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#[cfg(any(
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rtc_v2f0, rtc_v2f2, rtc_v2f3, rtc_v2f4, rtc_v2f7, rtc_v2h7, rtc_v2l0, rtc_v2l1, rtc_v2l4, rtc_v2wb
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))]
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regs.isr().modify(|w| w.set_wutf(false));
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#[cfg(any(rtc_v3, rtc_v3u5))]
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regs.scr().write(|w| w.set_cwutf(Calrf::CLEAR));
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crate::pac::EXTI
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.pr(0)
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.modify(|w| w.set_line(RTC::EXTI_WAKEUP_LINE, true));
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<RTC as crate::rtc::sealed::Instance>::WakeupInterrupt::unpend();
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});
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}
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self.stop_time.borrow(cs).take().map(|stop_time| instant - stop_time)
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}
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#[cfg(feature = "low-power")]
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pub(crate) fn enable_wakeup_line(&self) {
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use crate::interrupt::typelevel::Interrupt;
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use crate::pac::EXTI;
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<RTC as crate::rtc::sealed::Instance>::WakeupInterrupt::unpend();
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unsafe { <RTC as crate::rtc::sealed::Instance>::WakeupInterrupt::enable() };
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EXTI.rtsr(0).modify(|w| w.set_line(RTC::EXTI_WAKEUP_LINE, true));
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EXTI.imr(0).modify(|w| w.set_line(RTC::EXTI_WAKEUP_LINE, true));
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}
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}
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pub(crate) fn byte_to_bcd2(byte: u8) -> (u8, u8) {
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@ -6,145 +6,7 @@ use crate::peripherals::RTC;
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use crate::rtc::sealed::Instance;
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#[allow(dead_code)]
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#[repr(u8)]
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#[derive(Clone, Copy, Debug)]
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pub(crate) enum WakeupPrescaler {
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Div2 = 2,
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Div4 = 4,
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Div8 = 8,
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Div16 = 16,
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}
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#[cfg(any(stm32wb, stm32f4, stm32l0))]
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impl From<WakeupPrescaler> for crate::pac::rtc::vals::Wucksel {
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fn from(val: WakeupPrescaler) -> Self {
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use crate::pac::rtc::vals::Wucksel;
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match val {
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WakeupPrescaler::Div2 => Wucksel::DIV2,
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WakeupPrescaler::Div4 => Wucksel::DIV4,
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WakeupPrescaler::Div8 => Wucksel::DIV8,
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WakeupPrescaler::Div16 => Wucksel::DIV16,
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}
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}
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}
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#[cfg(any(stm32wb, stm32f4, stm32l0))]
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impl From<crate::pac::rtc::vals::Wucksel> for WakeupPrescaler {
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fn from(val: crate::pac::rtc::vals::Wucksel) -> Self {
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use crate::pac::rtc::vals::Wucksel;
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match val {
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Wucksel::DIV2 => WakeupPrescaler::Div2,
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Wucksel::DIV4 => WakeupPrescaler::Div4,
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Wucksel::DIV8 => WakeupPrescaler::Div8,
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Wucksel::DIV16 => WakeupPrescaler::Div16,
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_ => unreachable!(),
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}
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}
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}
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#[allow(dead_code)]
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impl WakeupPrescaler {
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pub fn compute_min(val: u32) -> Self {
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*[
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WakeupPrescaler::Div2,
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WakeupPrescaler::Div4,
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WakeupPrescaler::Div8,
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WakeupPrescaler::Div16,
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]
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.iter()
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.skip_while(|psc| **psc as u32 <= val)
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.next()
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.unwrap_or(&WakeupPrescaler::Div16)
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}
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}
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impl super::Rtc {
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#[cfg(feature = "low-power")]
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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(
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&self,
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requested_duration: embassy_time::Duration,
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cs: critical_section::CriticalSection,
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) {
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use embassy_time::{Duration, TICK_HZ};
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// Panic if the rcc mod knows we're not using low-power rtc
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#[cfg(any(rcc_wb, rcc_f4, rcc_f410))]
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unsafe { crate::rcc::get_freqs() }.rtc.unwrap();
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let requested_duration = requested_duration.as_ticks().clamp(0, u32::MAX as u64);
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let rtc_hz = Self::frequency().0 as u64;
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let rtc_ticks = requested_duration * 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 and subtract one rtc tick
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let rtc_ticks = rtc_ticks / prescaler as u64;
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let rtc_ticks = rtc_ticks.clamp(0, (u16::MAX - 1) as u64).saturating_sub(1) as u16;
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self.write(false, |regs| {
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regs.cr().modify(|w| w.set_wute(false));
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regs.isr().modify(|w| w.set_wutf(false));
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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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let instant = self.instant().unwrap();
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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(rtc_ticks as u64 * TICK_HZ * prescaler as u64 / rtc_hz).as_millis(),
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prescaler as u32,
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rtc_ticks,
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instant,
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);
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assert!(self.stop_time.borrow(cs).replace(Some(instant)).is_none())
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}
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#[cfg(feature = "low-power")]
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/// stop the wakeup alarm and return the time elapsed since `start_wakeup_alarm`
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/// was called, otherwise none
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pub(crate) fn stop_wakeup_alarm(&self, cs: critical_section::CriticalSection) -> Option<embassy_time::Duration> {
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use crate::interrupt::typelevel::Interrupt;
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let instant = self.instant().unwrap();
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if RTC::regs().cr().read().wute() {
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trace!("rtc: stop wakeup alarm at {}", instant);
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self.write(false, |regs| {
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regs.cr().modify(|w| w.set_wutie(false));
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regs.cr().modify(|w| w.set_wute(false));
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regs.isr().modify(|w| w.set_wutf(false));
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crate::pac::EXTI
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.pr(0)
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.modify(|w| w.set_line(RTC::EXTI_WAKEUP_LINE, true));
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<RTC as crate::rtc::sealed::Instance>::WakeupInterrupt::unpend();
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});
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}
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self.stop_time.borrow(cs).take().map(|stop_time| instant - stop_time)
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}
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#[cfg(feature = "low-power")]
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pub(crate) fn enable_wakeup_line(&self) {
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use crate::interrupt::typelevel::Interrupt;
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use crate::pac::EXTI;
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<RTC as crate::rtc::sealed::Instance>::WakeupInterrupt::unpend();
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unsafe { <RTC as crate::rtc::sealed::Instance>::WakeupInterrupt::enable() };
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EXTI.rtsr(0).modify(|w| w.set_line(RTC::EXTI_WAKEUP_LINE, true));
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EXTI.imr(0).modify(|w| w.set_line(RTC::EXTI_WAKEUP_LINE, true));
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}
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/// Applies the RTC config
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/// It this changes the RTC clock source the time will be reset
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pub(super) fn configure(&mut self, async_psc: u8, sync_psc: u16) {
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|
@ -95,7 +95,7 @@ impl super::Rtc {
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})
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}
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pub(super) fn write<F, R>(&mut self, init_mode: bool, f: F) -> R
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pub(super) fn write<F, R>(&self, init_mode: bool, f: F) -> R
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where
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F: FnOnce(&crate::pac::rtc::Rtc) -> R,
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{
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@ -129,6 +129,12 @@ impl super::Rtc {
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impl sealed::Instance for crate::peripherals::RTC {
|
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const BACKUP_REGISTER_COUNT: usize = 32;
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|
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#[cfg(all(feature = "low-power", stm32g4))]
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const EXTI_WAKEUP_LINE: usize = 20;
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#[cfg(all(feature = "low-power", stm32g4))]
|
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type WakeupInterrupt = crate::interrupt::typelevel::RTC_WKUP;
|
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|
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fn read_backup_register(_rtc: &Rtc, register: usize) -> Option<u32> {
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#[allow(clippy::if_same_then_else)]
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if register < Self::BACKUP_REGISTER_COUNT {
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|
@ -10,7 +10,7 @@ stm32f103c8 = ["embassy-stm32/stm32f103c8", "not-gpdma"]
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stm32f429zi = ["embassy-stm32/stm32f429zi", "chrono", "eth", "stop", "can", "not-gpdma", "dac-adc-pin", "rng"]
|
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stm32g071rb = ["embassy-stm32/stm32g071rb", "cm0", "not-gpdma", "dac-adc-pin"]
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stm32c031c6 = ["embassy-stm32/stm32c031c6", "cm0", "not-gpdma"]
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stm32g491re = ["embassy-stm32/stm32g491re", "chrono", "not-gpdma", "rng"]
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stm32g491re = ["embassy-stm32/stm32g491re", "chrono", "stop", "not-gpdma", "rng"]
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stm32h755zi = ["embassy-stm32/stm32h755zi-cm7", "chrono", "not-gpdma", "eth", "dac-adc-pin", "rng"]
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stm32h753zi = ["embassy-stm32/stm32h753zi", "chrono", "not-gpdma", "eth", "rng"]
|
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stm32h7a3zi = ["embassy-stm32/stm32h7a3zi", "not-gpdma", "rng"]
|
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|
Loading…
Reference in New Issue
Block a user