Merge branch 'main' of github.com:embassy-rs/embassy into low-power
This commit is contained in:
@ -9,8 +9,11 @@ use embassy_sync::blocking_mutex::raw::CriticalSectionRawMutex;
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#[cfg(feature = "low-power")]
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use embassy_sync::blocking_mutex::Mutex;
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pub use self::datetime::{DateTime, DayOfWeek, Error as DateTimeError, RtcInstant};
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use crate::rtc::datetime::day_of_week_to_u8;
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use self::datetime::day_of_week_to_u8;
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#[cfg(not(rtc_v2f2))]
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use self::datetime::RtcInstant;
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pub use self::datetime::{DateTime, DayOfWeek, Error as DateTimeError};
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use crate::pac::rtc::regs::{Dr, Tr};
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use crate::time::Hertz;
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/// refer to AN4759 to compare features of RTC2 and RTC3
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@ -31,11 +34,15 @@ use crate::peripherals::RTC;
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use crate::rtc::sealed::Instance;
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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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pub enum RtcError {
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/// An invalid DateTime was given or stored on the hardware.
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InvalidDateTime(DateTimeError),
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/// The current time could not be read
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ReadFailure,
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/// The RTC clock is not running
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NotRunning,
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}
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@ -45,48 +52,25 @@ pub struct RtcTimeProvider {
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}
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impl RtcTimeProvider {
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#[cfg(not(rtc_v2f2))]
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pub(crate) fn instant(&self) -> Result<RtcInstant, RtcError> {
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self.read(|_, tr, ss| {
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let second = bcd2_to_byte((tr.st(), tr.su()));
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RtcInstant::from(second, ss).map_err(RtcError::InvalidDateTime)
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})
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}
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/// Return the current datetime.
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///
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/// # Errors
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///
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/// Will return an `RtcError::InvalidDateTime` if the stored value in the system is not a valid [`DayOfWeek`].
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pub fn now(&self) -> Result<DateTime, RtcError> {
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// For RM0433 we use BYPSHAD=1 to work around errata ES0392 2.19.1
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#[cfg(rcc_h7rm0433)]
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loop {
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let r = RTC::regs();
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let ss = r.ssr().read().ss();
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let dr = r.dr().read();
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let tr = r.tr().read();
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// If an RTCCLK edge occurs during read we may see inconsistent values
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// so read ssr again and see if it has changed. (see RM0433 Rev 7 46.3.9)
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let ss_after = r.ssr().read().ss();
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if ss == ss_after {
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let second = bcd2_to_byte((tr.st(), tr.su()));
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let minute = bcd2_to_byte((tr.mnt(), tr.mnu()));
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let hour = bcd2_to_byte((tr.ht(), tr.hu()));
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let weekday = dr.wdu();
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let day = bcd2_to_byte((dr.dt(), dr.du()));
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let month = bcd2_to_byte((dr.mt() as u8, dr.mu()));
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let year = bcd2_to_byte((dr.yt(), dr.yu())) as u16 + 1970_u16;
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return DateTime::from(year, month, day, weekday, hour, minute, second)
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.map_err(RtcError::InvalidDateTime);
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}
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}
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#[cfg(not(rcc_h7rm0433))]
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{
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let r = RTC::regs();
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let tr = r.tr().read();
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self.read(|dr, tr, _| {
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let second = bcd2_to_byte((tr.st(), tr.su()));
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let minute = bcd2_to_byte((tr.mnt(), tr.mnu()));
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let hour = bcd2_to_byte((tr.ht(), tr.hu()));
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// Reading either RTC_SSR or RTC_TR locks the values in the higher-order
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// calendar shadow registers until RTC_DR is read.
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let dr = r.dr().read();
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let weekday = dr.wdu();
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let day = bcd2_to_byte((dr.dt(), dr.du()));
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@ -94,7 +78,33 @@ impl RtcTimeProvider {
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let year = bcd2_to_byte((dr.yt(), dr.yu())) as u16 + 1970_u16;
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DateTime::from(year, month, day, weekday, hour, minute, second).map_err(RtcError::InvalidDateTime)
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})
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}
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fn read<R>(&self, mut f: impl FnMut(Dr, Tr, u16) -> Result<R, RtcError>) -> Result<R, RtcError> {
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let r = RTC::regs();
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#[cfg(not(rtc_v2f2))]
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let read_ss = || r.ssr().read().ss();
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#[cfg(rtc_v2f2)]
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let read_ss = || 0;
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let mut ss = read_ss();
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for _ in 0..5 {
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let tr = r.tr().read();
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let dr = r.dr().read();
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let ss_after = read_ss();
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// If an RTCCLK edge occurs during read we may see inconsistent values
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// so read ssr again and see if it has changed. (see RM0433 Rev 7 46.3.9)
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if ss == ss_after {
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return f(dr, tr, ss.try_into().unwrap());
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} else {
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ss = ss_after
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}
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}
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return Err(RtcError::ReadFailure);
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}
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}
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@ -158,6 +168,14 @@ impl Rtc {
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this.configure(async_psc, sync_psc);
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// Wait for the clock to update after initialization
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#[cfg(not(rtc_v2f2))]
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{
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let now = this.instant().unwrap();
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while this.instant().unwrap().subsecond == now.subsecond {}
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}
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this
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}
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@ -177,7 +195,6 @@ impl Rtc {
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///
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/// Will return `RtcError::InvalidDateTime` if the datetime is not a valid range.
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pub fn set_datetime(&mut self, t: DateTime) -> Result<(), RtcError> {
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self::datetime::validate_datetime(&t).map_err(RtcError::InvalidDateTime)?;
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self.write(true, |rtc| {
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let (ht, hu) = byte_to_bcd2(t.hour() as u8);
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let (mnt, mnu) = byte_to_bcd2(t.minute() as u8);
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@ -217,16 +234,8 @@ impl Rtc {
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#[cfg(not(rtc_v2f2))]
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/// Return the current instant.
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pub fn instant(&self) -> Result<RtcInstant, RtcError> {
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let r = RTC::regs();
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let tr = r.tr().read();
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let subsecond = r.ssr().read().ss();
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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().read();
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RtcInstant::from(second, subsecond.try_into().unwrap())
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fn instant(&self) -> Result<RtcInstant, RtcError> {
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self.time_provider().instant()
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}
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/// Return the current datetime.
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