mirror of
https://github.com/italicsjenga/rp-hal-boards.git
synced 2025-01-11 04:51:31 +11:00
Merge branch 'main' into basic-gpio
This commit is contained in:
commit
7588f76844
4
.github/workflows/check.yml
vendored
4
.github/workflows/check.yml
vendored
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@ -27,3 +27,7 @@ jobs:
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with:
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with:
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command: clippy
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command: clippy
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args: -- -Dwarnings
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args: -- -Dwarnings
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- uses: actions-rs/cargo@v1
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with:
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command: test
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args: --target x86_64-unknown-linux-gnu
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@ -12,10 +12,11 @@ license = "MIT OR Apache-2.0"
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[dependencies]
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[dependencies]
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cortex-m = "0.7.1"
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cortex-m = "0.7.1"
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embedded-hal = { version = "0.2.4", features = ["unproven"] }
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embedded-hal = { version = "0.2.4", features = ["unproven"] }
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embedded-time = "0.10.1"
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nb = "1.0.0"
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nb = "1.0.0"
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rp2040-pac = { git = "https://github.com/rp-rs/rp2040-pac", branch="main" }
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rp2040-pac = { git = "https://github.com/rp-rs/rp2040-pac", branch="main" }
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[dev-dependencies]
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[dev-dependencies]
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cortex-m-rt = "0.6.13"
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cortex-m-rt = "0.6.13"
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panic-halt = "0.2.0"
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panic-halt = "0.2.0"
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rp2040-boot2 = { git = "https://github.com/rp-rs/rp2040-boot2-rs", branch="main" }
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rp2040-boot2 = { git = "https://github.com/rp-rs/rp2040-boot2-rs", branch="main" }
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@ -10,6 +10,7 @@
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extern crate cortex_m;
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extern crate cortex_m;
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extern crate embedded_hal as hal;
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extern crate embedded_hal as hal;
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extern crate nb;
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extern crate nb;
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pub extern crate rp2040_pac as pac;
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pub extern crate rp2040_pac as pac;
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pub mod adc;
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pub mod adc;
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@ -25,3 +26,4 @@ pub mod timer;
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pub mod uart;
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pub mod uart;
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pub mod usb;
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pub mod usb;
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pub mod watchdog;
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pub mod watchdog;
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pub mod xosc;
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@ -266,7 +266,7 @@ float_funcs! {
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/// Convert a float to a signed 64-bit integer, rounding towards -Infinity, and clamping
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/// Convert a float to a signed 64-bit integer, rounding towards -Infinity, and clamping
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/// the result to lie within the range -0x8000000000000000 to 0x7FFFFFFFFFFFFFFF
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/// the result to lie within the range -0x8000000000000000 to 0x7FFFFFFFFFFFFFFF
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0x6c float_to_int64(v: f32) -> i64;
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0x6c float_to_int64(v: f32) -> i64;
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/// Convert a float to a signed fixed point 64-bit integer representation where n
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/// Convert a float to a signed fixed point 64-bit integer representation where n
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/// specifies the position of the binary point in the resulting fixed point representation -
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/// specifies the position of the binary point in the resulting fixed point representation -
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/// e.g. _float2fix(0.5f, 16) == 0x8000. This method rounds towards -Infinity, and
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/// e.g. _float2fix(0.5f, 16) == 0x8000. This method rounds towards -Infinity, and
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/// clamps the resulting integer to lie within the range -0x8000000000000000 to
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/// clamps the resulting integer to lie within the range -0x8000000000000000 to
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193
rp2040-hal/src/xosc.rs
Normal file
193
rp2040-hal/src/xosc.rs
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@ -0,0 +1,193 @@
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//! Crystal Oscillator (XOSC)
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// See [Chapter 2 Section 16](https://datasheets.raspberrypi.org/rp2040/rp2040_datasheet.pdf) for more details
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use core::convert::TryInto;
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use core::{convert::Infallible, ops::RangeInclusive};
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use embedded_time::{
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duration::{Duration, Milliseconds},
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fixed_point::FixedPoint,
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fraction::Fraction,
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rate::{Hertz, Megahertz, Rate},
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};
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use nb::Error::WouldBlock;
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/// State of the Crystal Oscillator (typestate trait)
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pub trait State {}
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/// XOSC is disabled (typestate)
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pub struct Disabled;
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/// XOSC is initialized, ie we've given parameters (typestate)
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pub struct Initialized {
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freq_hz: Hertz,
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}
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/// Stable state (typestate)
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pub struct Stable {
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freq_hz: Hertz,
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}
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/// XOSC is in dormant mode (see Chapter 2, Section 16, §5)
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pub struct Dormant;
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impl State for Disabled {}
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impl State for Initialized {}
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impl State for Stable {}
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impl State for Dormant {}
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/// Possible errors when initializing the CrystalOscillator
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pub enum Error {
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/// Frequency is out of the 1-15MHz range (see datasheet)
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FrequencyOutOfRange,
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/// Argument is bad : overflows, ...
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BadArgument,
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}
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/// Blocking helper method to setup the XOSC without going through all the steps.
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pub fn setup_xosc_blocking(
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xosc_dev: rp2040_pac::XOSC,
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frequency: Hertz,
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) -> Result<CrystalOscillator<Stable>, Error> {
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let initialized_xosc = CrystalOscillator::new(xosc_dev).initialize(frequency)?;
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let stable_xosc_token = nb::block!(initialized_xosc.await_stabilization()).unwrap();
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Ok(initialized_xosc.get_stable(stable_xosc_token))
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}
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/// A Crystal Oscillator.
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pub struct CrystalOscillator<S: State> {
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device: rp2040_pac::XOSC,
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state: S,
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}
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impl<S: State> CrystalOscillator<S> {
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/// Transitions the oscillator to another state.
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fn transition<To: State>(self, state: To) -> CrystalOscillator<To> {
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CrystalOscillator {
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device: self.device,
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state,
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}
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}
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/// Releases the underlying device.
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pub fn free(self) -> rp2040_pac::XOSC {
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self.device
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}
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}
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impl CrystalOscillator<Disabled> {
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/// Creates a new CrystalOscillator from the underlying device.
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pub fn new(dev: rp2040_pac::XOSC) -> Self {
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CrystalOscillator {
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device: dev,
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state: Disabled,
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}
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}
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/// Initializes the XOSC : frequency range is set, startup delay is calculated and set.
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pub fn initialize(self, frequency: Hertz) -> Result<CrystalOscillator<Initialized>, Error> {
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const ALLOWED_FREQUENCY_RANGE: RangeInclusive<Megahertz<u32>> =
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Megahertz(1)..=Megahertz(15);
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const STABLE_DELAY: Milliseconds = Milliseconds(1_u32);
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const DIVIDER: Fraction = Fraction::new(256, 1);
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let freq_mhz: Megahertz = frequency.into();
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if !ALLOWED_FREQUENCY_RANGE.contains(&freq_mhz) {
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return Err(Error::FrequencyOutOfRange);
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}
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self.device.ctrl.write(|w| {
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w.freq_range()._1_15mhz();
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w
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});
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//1 ms = 10e-3 sec and Freq = 1/T where T is in seconds so 1ms converts to 1000Hz
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let delay_to_hz: Hertz = STABLE_DELAY.to_rate().map_err(|_| Error::BadArgument)?;
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//startup_delay = ((freq_hz * 10e-3) / 256) = ((freq_hz / 1000) / 256)
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//See Chapter 2, Section 16, §3)
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//We do the calculation first.
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let startup_delay = frequency
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.checked_div(delay_to_hz.integer())
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.and_then(|r| r.to_generic::<u32>(DIVIDER).ok())
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.ok_or(Error::BadArgument)?;
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//Then we check if it fits into an u16.
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let startup_delay: u16 = (*startup_delay.integer())
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.try_into()
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.map_err(|_| Error::BadArgument)?;
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self.device.startup.write(|w| unsafe {
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w.delay().bits(startup_delay);
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w
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});
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self.device.ctrl.write(|w| {
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w.enable().enable();
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w
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});
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Ok(self.transition(Initialized { freq_hz: frequency }))
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}
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}
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/// A token that's given when the oscillator is stablilzed, and can be exchanged to proceed to the next stage.
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pub struct StableOscillatorToken {
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_private: (),
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}
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impl CrystalOscillator<Initialized> {
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/// One has to wait for the startup delay before using the oscillator, ie awaiting stablilzation of the XOSC
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pub fn await_stabilization(&self) -> nb::Result<StableOscillatorToken, Infallible> {
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if self.device.status.read().stable().bit_is_clear() {
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return Err(WouldBlock);
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}
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Ok(StableOscillatorToken { _private: () })
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}
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/// Returns the stablilzed oscillator
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pub fn get_stable(self, _token: StableOscillatorToken) -> CrystalOscillator<Stable> {
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let freq_hz = self.state.freq_hz;
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self.transition(Stable { freq_hz })
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}
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}
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impl CrystalOscillator<Stable> {
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/// Operating frequency of the XOSC in hertz
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pub fn operating_frequency(&self) -> Hertz {
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self.state.freq_hz
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}
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/// Disables the XOSC
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pub fn disable(self) -> CrystalOscillator<Disabled> {
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self.device.ctrl.modify(|_r, w| {
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w.enable().disable();
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w
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});
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self.transition(Disabled)
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}
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/// Put the XOSC in DORMANT state.
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/// This method is marked unsafe because prior to switch the XOSC into DORMANT state,
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/// PLLs must be stopped and IRQs have to be properly configured.
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/// This method does not do any of that, it merely switches the XOSC to DORMANT state.
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/// See Chapter 2, Section 16, §5) for details.
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pub unsafe fn dormant(self) -> CrystalOscillator<Dormant> {
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//taken from the C SDK
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const XOSC_DORMANT_VALUE: u32 = 0x636f6d61;
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self.device.dormant.write(|w| {
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w.bits(XOSC_DORMANT_VALUE);
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w
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});
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self.transition(Dormant)
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}
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}
|
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