Merge #1330
1330: stm32/pwm: add complementary pwm r=Dirbaio a=xoviat This implements complementary PWM with dead time on many supported targets. The specific dead-time programming functions are passed through directly to the user, which is a bit ugly but the best compromise I could reach for now. Co-authored-by: xoviat <xoviat@users.noreply.github.com>
This commit is contained in:
commit
da8258b767
124
embassy-stm32/src/pwm/complementary_pwm.rs
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124
embassy-stm32/src/pwm/complementary_pwm.rs
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@ -0,0 +1,124 @@
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use core::marker::PhantomData;
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use embassy_hal_common::{into_ref, PeripheralRef};
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pub use stm32_metapac::timer::vals::Ckd;
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use super::simple_pwm::*;
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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 ComplementaryPwmPin<'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! complementary_channel_impl {
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($new_chx:ident, $channel:ident, $pin_trait:ident, $complementary_pin_trait:ident) => {
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impl<'d, Perip: CaptureCompare16bitInstance> ComplementaryPwmPin<'d, Perip, $channel> {
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pub fn $new_chx(pin: impl Peripheral<P = impl $complementary_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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ComplementaryPwmPin {
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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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complementary_channel_impl!(new_ch1, Ch1, Channel1Pin, Channel1ComplementaryPin);
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complementary_channel_impl!(new_ch2, Ch2, Channel2Pin, Channel2ComplementaryPin);
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complementary_channel_impl!(new_ch3, Ch3, Channel3Pin, Channel3ComplementaryPin);
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complementary_channel_impl!(new_ch4, Ch4, Channel4Pin, Channel4ComplementaryPin);
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pub struct ComplementaryPwm<'d, T> {
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inner: PeripheralRef<'d, T>,
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}
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impl<'d, T: ComplementaryCaptureCompare16bitInstance> ComplementaryPwm<'d, T> {
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pub fn new(
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tim: impl Peripheral<P = T> + 'd,
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_ch1: Option<PwmPin<'d, T, Ch1>>,
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_ch1n: Option<ComplementaryPwmPin<'d, T, Ch1>>,
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_ch2: Option<PwmPin<'d, T, Ch2>>,
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_ch2n: Option<ComplementaryPwmPin<'d, T, Ch2>>,
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_ch3: Option<PwmPin<'d, T, Ch3>>,
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_ch3n: Option<ComplementaryPwmPin<'d, T, Ch3>>,
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_ch4: Option<PwmPin<'d, T, Ch4>>,
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_ch4n: Option<ComplementaryPwmPin<'d, T, Ch4>>,
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freq: Hertz,
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) -> Self {
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Self::new_inner(tim, freq)
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}
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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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let mut this = Self { inner: tim };
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this.inner.set_frequency(freq);
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this.inner.start();
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unsafe {
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this.inner.enable_outputs(true);
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this.inner
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.set_output_compare_mode(Channel::Ch1, OutputCompareMode::PwmMode1);
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this.inner
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.set_output_compare_mode(Channel::Ch2, OutputCompareMode::PwmMode1);
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this.inner
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.set_output_compare_mode(Channel::Ch3, OutputCompareMode::PwmMode1);
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this.inner
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.set_output_compare_mode(Channel::Ch4, OutputCompareMode::PwmMode1);
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}
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this
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}
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pub fn enable(&mut self, channel: Channel) {
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unsafe {
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self.inner.enable_channel(channel, true);
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self.inner.enable_complementary_channel(channel, true);
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}
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}
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pub fn disable(&mut self, channel: Channel) {
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unsafe {
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self.inner.enable_complementary_channel(channel, false);
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self.inner.enable_channel(channel, false);
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}
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}
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pub fn set_freq(&mut self, freq: Hertz) {
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self.inner.set_frequency(freq);
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}
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pub fn get_max_duty(&self) -> u16 {
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unsafe { self.inner.get_max_compare_value() }
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}
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pub fn set_duty(&mut self, channel: Channel, duty: u16) {
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assert!(duty < self.get_max_duty());
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unsafe { self.inner.set_compare_value(channel, duty) }
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}
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pub fn set_dead_time_clock_division(&mut self, value: Ckd) {
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unsafe { self.inner.set_dead_time_clock_division(value) }
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}
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pub fn set_dead_time_value(&mut self, value: u8) {
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unsafe { self.inner.set_dead_time_value(value) }
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}
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}
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@ -1,5 +1,8 @@
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pub mod complementary_pwm;
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pub mod simple_pwm;
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use stm32_metapac::timer::vals::Ckd;
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#[cfg(feature = "unstable-pac")]
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pub mod low_level {
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pub use super::sealed::*;
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@ -67,6 +70,14 @@ pub(crate) mod sealed {
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unsafe fn get_max_compare_value(&self) -> u16;
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}
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pub trait ComplementaryCaptureCompare16bitInstance: CaptureCompare16bitInstance {
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unsafe fn set_dead_time_clock_division(&mut self, value: Ckd);
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unsafe fn set_dead_time_value(&mut self, value: u8);
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unsafe fn enable_complementary_channel(&mut self, channel: Channel, enable: bool);
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}
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pub trait CaptureCompare32bitInstance: crate::timer::sealed::GeneralPurpose32bitInstance {
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unsafe fn set_output_compare_mode(&mut self, channel: Channel, mode: OutputCompareMode);
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@ -82,6 +93,12 @@ pub trait CaptureCompare16bitInstance:
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sealed::CaptureCompare16bitInstance + crate::timer::GeneralPurpose16bitInstance + 'static
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{
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}
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pub trait ComplementaryCaptureCompare16bitInstance:
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sealed::ComplementaryCaptureCompare16bitInstance + crate::timer::AdvancedControlInstance + 'static
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{
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}
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pub trait CaptureCompare32bitInstance:
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sealed::CaptureCompare32bitInstance + CaptureCompare16bitInstance + crate::timer::GeneralPurpose32bitInstance + 'static
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{
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@ -209,6 +226,29 @@ foreach_interrupt! {
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impl CaptureCompare16bitInstance for crate::peripherals::$inst {
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}
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impl crate::pwm::sealed::ComplementaryCaptureCompare16bitInstance for crate::peripherals::$inst {
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unsafe fn set_dead_time_clock_division(&mut self, value: Ckd) {
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use crate::timer::sealed::AdvancedControlInstance;
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Self::regs_advanced().cr1().modify(|w| w.set_ckd(value));
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}
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unsafe fn set_dead_time_value(&mut self, value: u8) {
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use crate::timer::sealed::AdvancedControlInstance;
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Self::regs_advanced().bdtr().modify(|w| w.set_dtg(value));
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}
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unsafe fn enable_complementary_channel(&mut self, channel: Channel, enable: bool) {
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use crate::timer::sealed::AdvancedControlInstance;
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Self::regs_advanced()
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.ccer()
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.modify(|w| w.set_ccne(channel.raw(), enable));
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}
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}
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impl ComplementaryCaptureCompare16bitInstance for crate::peripherals::$inst {
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}
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};
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}
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examples/stm32f4/src/bin/pwm_complementary.rs
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77
examples/stm32f4/src/bin/pwm_complementary.rs
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#![no_std]
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#![no_main]
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#![feature(type_alias_impl_trait)]
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use defmt::*;
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use embassy_executor::Spawner;
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use embassy_stm32::pwm::complementary_pwm::{Ckd, ComplementaryPwm, ComplementaryPwmPin};
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use embassy_stm32::pwm::simple_pwm::PwmPin;
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use embassy_stm32::pwm::Channel;
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use embassy_stm32::time::khz;
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use embassy_time::{Duration, Timer};
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use {defmt_rtt as _, panic_probe as _};
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#[embassy_executor::main]
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async fn main(_spawner: Spawner) {
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let p = embassy_stm32::init(Default::default());
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info!("Hello World!");
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let ch1 = PwmPin::new_ch1(p.PE9);
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let ch1n = ComplementaryPwmPin::new_ch1(p.PA7);
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let mut pwm = ComplementaryPwm::new(
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p.TIM1,
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Some(ch1),
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Some(ch1n),
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None,
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None,
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None,
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None,
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None,
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None,
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khz(10),
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);
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/*
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Dead-time = T_clk * T_dts * T_dtg
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T_dts:
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This bit-field indicates the division ratio between the timer clock (CK_INT) frequency and the
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dead-time and sampling clock (tDTS)used by the dead-time generators and the digital filters
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(ETR, TIx),
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00: tDTS=tCK_INT
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01: tDTS=2*tCK_INT
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10: tDTS=4*tCK_INT
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T_dtg:
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This bit-field defines the duration of the dead-time inserted between the complementary
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outputs. DT correspond to this duration.
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DTG[7:5]=0xx => DT=DTG[7:0]x tdtg with tdtg=tDTS.
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DTG[7:5]=10x => DT=(64+DTG[5:0])xtdtg with Tdtg=2xtDTS.
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DTG[7:5]=110 => DT=(32+DTG[4:0])xtdtg with Tdtg=8xtDTS.
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DTG[7:5]=111 => DT=(32+DTG[4:0])xtdtg with Tdtg=16xtDTS.
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Example if TDTS=125ns (8MHz), dead-time possible values are:
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0 to 15875 ns by 125 ns steps,
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16 us to 31750 ns by 250 ns steps,
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32 us to 63us by 1 us steps,
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64 us to 126 us by 2 us steps
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*/
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pwm.set_dead_time_clock_division(Ckd::DIV1);
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pwm.set_dead_time_value(0);
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let max = pwm.get_max_duty();
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pwm.enable(Channel::Ch1);
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info!("PWM initialized");
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info!("PWM max duty {}", max);
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loop {
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pwm.set_duty(Channel::Ch1, 0);
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Timer::after(Duration::from_millis(300)).await;
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pwm.set_duty(Channel::Ch1, max / 4);
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Timer::after(Duration::from_millis(300)).await;
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pwm.set_duty(Channel::Ch1, max / 2);
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Timer::after(Duration::from_millis(300)).await;
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pwm.set_duty(Channel::Ch1, max - 1);
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Timer::after(Duration::from_millis(300)).await;
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}
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}
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