wip usart
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embassy-stm32-examples/src/bin/usart.rs
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130
embassy-stm32-examples/src/bin/usart.rs
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#![no_std]
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#![no_main]
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#![feature(trait_alias)]
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#![feature(min_type_alias_impl_trait)]
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#![feature(impl_trait_in_bindings)]
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#![feature(type_alias_impl_trait)]
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#[path = "../example_common.rs"]
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mod example_common;
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use embassy::executor::Executor;
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use embassy::time::Clock;
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use embassy::util::Forever;
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use embassy_stm32::exti::{self, ExtiInput};
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use embassy_stm32::gpio::{Input, Pull};
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use embassy_traits::gpio::{WaitForFallingEdge, WaitForRisingEdge};
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use example_common::*;
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use cortex_m_rt::entry;
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use pac::{interrupt, NVIC};
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use stm32f4::stm32f429 as pac;
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#[embassy::task]
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async fn main_task() {
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let p = embassy_stm32::Peripherals::take().unwrap();
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let button = Input::new(p.PC13, Pull::Down);
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let mut button = ExtiInput::new(button, p.EXTI13);
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info!("Press the USER button...");
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loop {
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button.wait_for_rising_edge().await;
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info!("Pressed!");
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button.wait_for_falling_edge().await;
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info!("Released!");
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}
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}
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struct ZeroClock;
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impl Clock for ZeroClock {
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fn now(&self) -> u64 {
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0
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}
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}
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static EXECUTOR: Forever<Executor> = Forever::new();
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#[entry]
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fn main() -> ! {
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info!("Hello World!");
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let pp = pac::Peripherals::take().unwrap();
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pp.DBGMCU.cr.modify(|_, w| {
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w.dbg_sleep().set_bit();
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w.dbg_standby().set_bit();
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w.dbg_stop().set_bit()
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});
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pp.RCC.ahb1enr.modify(|_, w| w.dma1en().enabled());
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pp.RCC.ahb1enr.modify(|_, w| {
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w.gpioaen().enabled();
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w.gpioben().enabled();
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w.gpiocen().enabled();
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w.gpioden().enabled();
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w.gpioeen().enabled();
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w.gpiofen().enabled();
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w
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});
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pp.RCC.apb2enr.modify(|_, w| {
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w.usart1en().enabled();
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w.syscfgen().enabled();
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w
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});
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unsafe { embassy::time::set_clock(&ZeroClock) };
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unsafe {
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NVIC::unmask(interrupt::EXTI0);
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NVIC::unmask(interrupt::EXTI1);
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NVIC::unmask(interrupt::EXTI2);
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NVIC::unmask(interrupt::EXTI3);
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NVIC::unmask(interrupt::EXTI4);
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NVIC::unmask(interrupt::EXTI9_5);
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NVIC::unmask(interrupt::EXTI15_10);
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}
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let executor = EXECUTOR.put(Executor::new());
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executor.run(|spawner| {
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unwrap!(spawner.spawn(main_task()));
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})
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}
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// TODO for now irq handling is done by user code using the old pac, until we figure out how interrupts work in the metapac
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#[interrupt]
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unsafe fn EXTI0() {
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exti::on_irq()
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}
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#[interrupt]
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unsafe fn EXTI1() {
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exti::on_irq()
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}
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#[interrupt]
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unsafe fn EXTI2() {
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exti::on_irq()
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}
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#[interrupt]
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unsafe fn EXTI3() {
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exti::on_irq()
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}
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#[interrupt]
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unsafe fn EXTI4() {
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exti::on_irq()
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}
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#[interrupt]
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unsafe fn EXTI9_5() {
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exti::on_irq()
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}
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#[interrupt]
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unsafe fn EXTI15_10() {
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exti::on_irq()
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}
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@ -1,5 +1,6 @@
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use embassy_extras::peripherals;
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#[rustfmt::skip]
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peripherals!(
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// GPIO Port A
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PA0, PA1, PA2, PA3, PA4, PA5, PA6, PA7, PA8, PA9, PA10, PA11, PA12, PA13, PA14, PA15,
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@ -10,6 +11,12 @@ peripherals!(
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// todo more ports
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// EXTI
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EXTI0, EXTI1, EXTI2, EXTI3, EXTI4, EXTI5, EXTI6, EXTI7, EXTI8, EXTI9, EXTI10, EXTI11, EXTI12,
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EXTI13, EXTI14, EXTI15,
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EXTI0, EXTI1, EXTI2, EXTI3, EXTI4, EXTI5, EXTI6, EXTI7, EXTI8, EXTI9, EXTI10, EXTI11, EXTI12, EXTI13, EXTI14, EXTI15,
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// USART
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USART1,
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USART2,
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USART3,
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USART6,
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);
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@ -32,5 +32,6 @@ pub mod exti;
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pub mod gpio;
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//pub mod rtc;
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//pub mod interrupt;
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pub mod usart;
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pub(crate) use stm32_metapac as pac;
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64
embassy-stm32/src/usart.rs
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64
embassy-stm32/src/usart.rs
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use embassy::util::PeripheralBorrow;
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use crate::pac::usart_v1::{regs, vals, Usart};
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use crate::peripherals;
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mod sealed {
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use super::*;
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pub trait Instance {
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fn regs(&self) -> Usart;
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}
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}
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#[non_exhaustive]
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pub struct Config {
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pub baudrate: u32,
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pub data_bits: u8,
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pub stop_bits: u8,
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}
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impl Default for Config {
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fn default() -> Self {
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Self {
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baudrate: 115200,
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data_bits: 8,
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stop_bits: 1,
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}
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}
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}
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pub struct Uart<'d, T: Instance> {
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inner: T,
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phantom: PhantomData<&'d mut T>,
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}
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impl<'d, T: Instance> Uart<'d, T> {
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pub fn new(
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inner: impl PeripheralBorrow<Target = T>,
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tx: impl PeripheralBorrow<Target = impl TxPin<T>>,
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rx: impl PeripheralBorrow<Target = impl RxPin<T>>,
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cts: impl PeripheralBorrow<Target = impl CtsPin<T>>,
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rts: impl PeripheralBorrow<Target = impl RtsPin<T>>,
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config: Config,
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) -> Self {
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unborrow!(inner, tx, rx, cts, rts);
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}
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}
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pub trait Instance: sealed::Instance {}
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macro_rules! impl_instance {
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($type:ident, $addr:expr) => {
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impl sealed::Instance for peripherals::$type {
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fn regs(&self) -> Usart {
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Usart($addr as _)
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}
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}
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impl Instance for peripherals::$type {}
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};
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}
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impl_instance!(USART1, 0x40011000);
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impl_instance!(USART2, 0x40004400);
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impl_instance!(USART3, 0x40004800);
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impl_instance!(USART6, 0x40011400);
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