145 lines
4.2 KiB
Rust
145 lines
4.2 KiB
Rust
//! Analog to Digital Converter (ADC)
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#![macro_use]
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#![allow(missing_docs)] // TODO
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#[cfg(not(adc_f3_v2))]
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#[cfg_attr(adc_f1, path = "f1.rs")]
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#[cfg_attr(adc_f3, path = "f3.rs")]
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#[cfg_attr(adc_f3_v1_1, path = "f3_v1_1.rs")]
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#[cfg_attr(adc_v1, path = "v1.rs")]
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#[cfg_attr(adc_v2, path = "v2.rs")]
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#[cfg_attr(any(adc_v3, adc_g0), path = "v3.rs")]
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#[cfg_attr(adc_v4, path = "v4.rs")]
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mod _version;
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#[cfg(not(any(adc_f1, adc_f3_v2)))]
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mod resolution;
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mod sample_time;
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#[allow(unused)]
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#[cfg(not(adc_f3_v2))]
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pub use _version::*;
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#[cfg(not(any(adc_f1, adc_f3, adc_f3_v2)))]
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pub use resolution::Resolution;
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#[cfg(not(adc_f3_v2))]
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pub use sample_time::SampleTime;
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use crate::peripherals;
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/// Analog to Digital driver.
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pub struct Adc<'d, T: Instance> {
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#[allow(unused)]
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adc: crate::PeripheralRef<'d, T>,
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#[cfg(not(any(adc_f3_v2, adc_f3_v1_1)))]
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sample_time: SampleTime,
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}
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pub(crate) mod sealed {
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#[cfg(any(adc_f1, adc_f3, adc_v1, adc_f3_v1_1))]
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use embassy_sync::waitqueue::AtomicWaker;
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#[cfg(any(adc_f1, adc_f3, adc_v1, adc_f3_v1_1))]
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pub struct State {
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pub waker: AtomicWaker,
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}
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#[cfg(any(adc_f1, adc_f3, adc_v1, adc_f3_v1_1))]
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impl State {
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pub const fn new() -> Self {
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Self {
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waker: AtomicWaker::new(),
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}
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}
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}
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pub trait InterruptableInstance {
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type Interrupt: crate::interrupt::typelevel::Interrupt;
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}
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pub trait Instance: InterruptableInstance {
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fn regs() -> crate::pac::adc::Adc;
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#[cfg(not(any(adc_f1, adc_v1, adc_f3_v2, adc_f3_v1_1, adc_g0)))]
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fn common_regs() -> crate::pac::adccommon::AdcCommon;
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#[cfg(adc_f3)]
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fn frequency() -> crate::time::Hertz;
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#[cfg(any(adc_f1, adc_f3, adc_v1, adc_f3_v1_1))]
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fn state() -> &'static State;
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}
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pub trait AdcPin<T: Instance> {
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#[cfg(any(adc_v1, adc_v2))]
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fn set_as_analog(&mut self) {}
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fn channel(&self) -> u8;
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}
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pub trait InternalChannel<T> {
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fn channel(&self) -> u8;
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}
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}
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/// ADC instance.
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#[cfg(not(any(adc_f1, adc_v1, adc_v2, adc_v3, adc_v4, adc_f3, adc_f3_v1_1, adc_g0)))]
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pub trait Instance: sealed::Instance + crate::Peripheral<P = Self> {}
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/// ADC instance.
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#[cfg(any(adc_f1, adc_v1, adc_v2, adc_v3, adc_v4, adc_f3, adc_f3_v1_1, adc_g0))]
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pub trait Instance: sealed::Instance + crate::Peripheral<P = Self> + crate::rcc::RccPeripheral {}
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/// ADC pin.
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pub trait AdcPin<T: Instance>: sealed::AdcPin<T> {}
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/// ADC internal channel.
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pub trait InternalChannel<T>: sealed::InternalChannel<T> {}
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foreach_adc!(
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($inst:ident, $common_inst:ident, $clock:ident) => {
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impl crate::adc::sealed::Instance for peripherals::$inst {
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fn regs() -> crate::pac::adc::Adc {
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crate::pac::$inst
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}
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#[cfg(not(any(adc_f1, adc_v1, adc_f3_v2, adc_f3_v1_1, adc_g0)))]
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fn common_regs() -> crate::pac::adccommon::AdcCommon {
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return crate::pac::$common_inst
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}
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#[cfg(adc_f3)]
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fn frequency() -> crate::time::Hertz {
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unsafe { crate::rcc::get_freqs() }.$clock.unwrap()
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}
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#[cfg(any(adc_f1, adc_f3, adc_v1, adc_f3_v1_1))]
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fn state() -> &'static sealed::State {
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static STATE: sealed::State = sealed::State::new();
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&STATE
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}
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}
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foreach_interrupt!(
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($inst,adc,ADC,GLOBAL,$irq:ident) => {
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impl sealed::InterruptableInstance for peripherals::$inst {
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type Interrupt = crate::interrupt::typelevel::$irq;
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}
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};
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);
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impl crate::adc::Instance for peripherals::$inst {}
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};
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);
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macro_rules! impl_adc_pin {
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($inst:ident, $pin:ident, $ch:expr) => {
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impl crate::adc::AdcPin<peripherals::$inst> for crate::peripherals::$pin {}
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impl crate::adc::sealed::AdcPin<peripherals::$inst> for crate::peripherals::$pin {
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#[cfg(any(adc_v1, adc_v2))]
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fn set_as_analog(&mut self) {
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<Self as crate::gpio::sealed::Pin>::set_as_analog(self);
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}
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fn channel(&self) -> u8 {
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$ch
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}
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}
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};
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}
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