embassy-stm32/pwm: Generalize channel selection
550da471be
previously refactored the STM32
PWM logic in such a way to preclude use of non-contiguous channels (e.g.
channel 2 but not channel 1). Refactor it yet again to yet again allow
this sort of usage.
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parent
709df0dc1d
commit
042e11960e
@ -1,85 +1,71 @@
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use core::marker::PhantomData;
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use embassy_hal_common::{into_ref, PeripheralRef};
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use super::*;
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#[allow(unused_imports)]
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use crate::gpio::sealed::{AFType, Pin};
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use crate::gpio::AnyPin;
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use crate::time::Hertz;
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use crate::Peripheral;
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pub struct Ch1;
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pub struct Ch2;
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pub struct Ch3;
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pub struct Ch4;
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pub struct PwmPin<'d, Perip, Channel> {
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_pin: PeripheralRef<'d, AnyPin>,
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phantom: PhantomData<(Perip, Channel)>,
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}
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macro_rules! channel_impl {
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($channel:ident, $pin_trait:ident) => {
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impl<'d, Perip: CaptureCompare16bitInstance> PwmPin<'d, Perip, $channel> {
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pub fn new(pin: impl Peripheral<P = impl $pin_trait<Perip>> + 'd) -> Self {
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into_ref!(pin);
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critical_section::with(|_| unsafe {
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pin.set_low();
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pin.set_as_af(pin.af_num(), AFType::OutputPushPull);
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#[cfg(gpio_v2)]
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pin.set_speed(crate::gpio::Speed::VeryHigh);
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});
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PwmPin {
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_pin: pin.map_into(),
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phantom: PhantomData,
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}
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}
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}
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};
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}
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channel_impl!(Ch1, Channel1Pin);
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channel_impl!(Ch2, Channel2Pin);
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channel_impl!(Ch3, Channel3Pin);
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channel_impl!(Ch4, Channel4Pin);
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pub struct SimplePwm<'d, T> {
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inner: PeripheralRef<'d, T>,
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}
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macro_rules! config_pins {
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($($pin:ident),*) => {
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into_ref!($($pin),*);
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// NOTE(unsafe) Exclusive access to the registers
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critical_section::with(|_| unsafe {
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$(
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$pin.set_low();
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$pin.set_as_af($pin.af_num(), AFType::OutputPushPull);
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#[cfg(gpio_v2)]
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$pin.set_speed(crate::gpio::Speed::VeryHigh);
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)*
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})
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};
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}
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impl<'d, T: CaptureCompare16bitInstance> SimplePwm<'d, T> {
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pub fn new_1ch(
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pub fn new(
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tim: impl Peripheral<P = T> + 'd,
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ch1: impl Peripheral<P = impl Channel1Pin<T>> + 'd,
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_ch1: Option<PwmPin<T, Ch1>>,
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_ch2: Option<PwmPin<T, Ch2>>,
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_ch3: Option<PwmPin<T, Ch3>>,
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_ch4: Option<PwmPin<T, Ch4>>,
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freq: Hertz,
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) -> Self {
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Self::new_inner(tim, freq, move || {
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config_pins!(ch1);
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})
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Self::new_inner(tim, freq)
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}
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pub fn new_2ch(
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tim: impl Peripheral<P = T> + 'd,
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ch1: impl Peripheral<P = impl Channel1Pin<T>> + 'd,
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ch2: impl Peripheral<P = impl Channel2Pin<T>> + 'd,
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freq: Hertz,
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) -> Self {
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Self::new_inner(tim, freq, move || {
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config_pins!(ch1, ch2);
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})
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}
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pub fn new_3ch(
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tim: impl Peripheral<P = T> + 'd,
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ch1: impl Peripheral<P = impl Channel1Pin<T>> + 'd,
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ch2: impl Peripheral<P = impl Channel2Pin<T>> + 'd,
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ch3: impl Peripheral<P = impl Channel3Pin<T>> + 'd,
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freq: Hertz,
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) -> Self {
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Self::new_inner(tim, freq, move || {
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config_pins!(ch1, ch2, ch3);
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})
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}
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pub fn new_4ch(
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tim: impl Peripheral<P = T> + 'd,
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ch1: impl Peripheral<P = impl Channel1Pin<T>> + 'd,
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ch2: impl Peripheral<P = impl Channel2Pin<T>> + 'd,
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ch3: impl Peripheral<P = impl Channel3Pin<T>> + 'd,
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ch4: impl Peripheral<P = impl Channel4Pin<T>> + 'd,
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freq: Hertz,
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) -> Self {
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Self::new_inner(tim, freq, move || {
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config_pins!(ch1, ch2, ch3, ch4);
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})
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}
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fn new_inner(tim: impl Peripheral<P = T> + 'd, freq: Hertz, configure_pins: impl FnOnce()) -> Self {
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fn new_inner(tim: impl Peripheral<P = T> + 'd, freq: Hertz) -> Self {
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into_ref!(tim);
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T::enable();
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<T as crate::rcc::sealed::RccPeripheral>::reset();
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configure_pins();
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let mut this = Self { inner: tim };
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this.inner.set_frequency(freq);
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