timer::global: wrap us in Microseconds, impl embedded_hal blocking delay traits
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7f45d10af3
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@ -10,7 +10,7 @@ mod regs;
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pub struct DevC {
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pub struct DevC {
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regs: &'static mut regs::RegisterBlock,
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regs: &'static mut regs::RegisterBlock,
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enabled: bool,
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enabled: bool,
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count_down: super::timer::global::CountDown,
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count_down: super::timer::global::CountDown<Milliseconds>,
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timeout_ms: Milliseconds,
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timeout_ms: Milliseconds,
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}
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}
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@ -19,7 +19,7 @@ impl log::Log for Logger {
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if self.enabled(record.metadata()) {
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if self.enabled(record.metadata()) {
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let timestamp = unsafe {
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let timestamp = unsafe {
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GlobalTimer::get()
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GlobalTimer::get()
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}.get_us();
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}.get_us().0;
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let seconds = timestamp / 1_000_000;
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let seconds = timestamp / 1_000_000;
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let micros = timestamp % 1_000_000;
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let micros = timestamp % 1_000_000;
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@ -14,7 +14,7 @@ use nb;
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/// Basic SDIO Struct with common low-level functions.
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/// Basic SDIO Struct with common low-level functions.
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pub struct SDIO {
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pub struct SDIO {
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regs: &'static mut regs::RegisterBlock,
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regs: &'static mut regs::RegisterBlock,
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count_down: super::timer::global::CountDown,
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count_down: super::timer::global::CountDown<Milliseconds>,
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input_clk_hz: u32,
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input_clk_hz: u32,
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card_type: CardType,
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card_type: CardType,
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card_detect: bool,
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card_detect: bool,
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@ -8,3 +8,18 @@ impl core::ops::Add for Milliseconds {
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Milliseconds(self.0 + rhs.0)
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Milliseconds(self.0 + rhs.0)
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}
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}
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}
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}
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#[derive(Debug, Clone, Copy, PartialEq, PartialOrd)]
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pub struct Microseconds(pub u64);
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impl core::ops::Add for Microseconds {
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type Output = Self;
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fn add(self, rhs: Self) -> Self::Output {
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Microseconds(self.0 + rhs.0)
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}
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}
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pub trait TimeSource<U> {
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fn now(&self) -> U;
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}
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@ -1,9 +1,10 @@
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use core::ops::Add;
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use void::Void;
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use void::Void;
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use libregister::{RegisterR, RegisterW};
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use libregister::{RegisterR, RegisterW};
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use crate::{
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use crate::{
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clocks::Clocks,
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clocks::Clocks,
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mpcore,
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mpcore,
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time::Milliseconds,
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time::{Milliseconds, Microseconds, TimeSource},
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};
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};
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/// "uptime"
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/// "uptime"
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@ -79,41 +80,82 @@ impl GlobalTimer {
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}
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}
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/// read with high precision
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/// read with high precision
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pub fn get_us(&self) -> u64 {
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pub fn get_us(&self) -> Microseconds {
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let prescaler = self.regs.global_timer_control.read().prescaler() as u64;
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let prescaler = self.regs.global_timer_control.read().prescaler() as u64;
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let clocks = Clocks::get();
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let clocks = Clocks::get();
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1_000_000 * self.get_counter() * (prescaler + 1) / clocks.cpu_3x2x() as u64
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Microseconds(1_000_000 * self.get_counter() * (prescaler + 1) / clocks.cpu_3x2x() as u64)
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}
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}
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/// return a handle that has implements
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/// return a handle that has implements
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/// `embedded_hal::timer::CountDown`
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/// `embedded_hal::timer::CountDown`
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pub fn countdown(&self) -> CountDown {
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pub fn countdown<U>(&self) -> CountDown<U>
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where
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Self: TimeSource<U>,
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{
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CountDown {
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CountDown {
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timer: self.clone(),
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timer: self.clone(),
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timeout: Milliseconds(0),
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timeout: self.now(),
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}
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}
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}
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}
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}
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}
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#[derive(Clone)]
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impl TimeSource<Milliseconds> for GlobalTimer {
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pub struct CountDown {
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fn now(&self) -> Milliseconds {
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timer: GlobalTimer,
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self.get_time()
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timeout: Milliseconds,
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}
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}
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}
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impl embedded_hal::timer::CountDown for CountDown {
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impl TimeSource<Microseconds> for GlobalTimer {
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type Time = Milliseconds;
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fn now(&self) -> Microseconds {
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self.get_us()
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}
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}
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#[derive(Clone)]
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pub struct CountDown<U> {
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timer: GlobalTimer,
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timeout: U,
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}
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/// embedded-hal async API
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impl<U: Add<Output=U> + PartialOrd> embedded_hal::timer::CountDown for CountDown<U>
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where
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GlobalTimer: TimeSource<U>,
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{
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type Time = U;
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fn start<T: Into<Self::Time>>(&mut self, count: T) {
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fn start<T: Into<Self::Time>>(&mut self, count: T) {
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self.timeout = self.timer.get_time() + count.into();
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self.timeout = self.timer.now() + count.into();
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}
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}
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fn wait(&mut self) -> nb::Result<(), Void> {
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fn wait(&mut self) -> nb::Result<(), Void> {
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if self.timer.get_time() <= self.timeout {
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if self.timer.now() <= self.timeout {
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Err(nb::Error::WouldBlock)
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Err(nb::Error::WouldBlock)
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} else {
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} else {
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Ok(())
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Ok(())
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}
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}
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}
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}
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}
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}
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/// embedded-hal sync API
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impl embedded_hal::blocking::delay::DelayMs<u64> for GlobalTimer {
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fn delay_ms(&mut self, ms: u64) {
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use embedded_hal::timer::CountDown;
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let mut countdown = self.countdown::<Milliseconds>();
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countdown.start(Milliseconds(ms));
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nb::block!(countdown.wait()).unwrap();
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}
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}
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/// embedded-hal sync API
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impl embedded_hal::blocking::delay::DelayUs<u64> for GlobalTimer {
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fn delay_us(&mut self, us: u64) {
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use embedded_hal::timer::CountDown;
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let mut countdown = self.countdown::<Microseconds>();
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countdown.start(Microseconds(us));
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nb::block!(countdown.wait()).unwrap();
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}
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}
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