stm32/usart: expose all functionality as inherent methods.
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98f24bf819
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@ -129,7 +129,7 @@ impl<'d, T: Instance, TxDma, RxDma> Uart<'d, T, TxDma, RxDma> {
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}
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}
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async fn write_dma(&mut self, buffer: &[u8]) -> Result<(), Error>
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pub async fn write(&mut self, buffer: &[u8]) -> Result<(), Error>
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where
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TxDma: crate::usart::TxDma<T>,
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{
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@ -146,7 +146,7 @@ impl<'d, T: Instance, TxDma, RxDma> Uart<'d, T, TxDma, RxDma> {
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Ok(())
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}
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async fn read_dma(&mut self, buffer: &mut [u8]) -> Result<(), Error>
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pub async fn read(&mut self, buffer: &mut [u8]) -> Result<(), Error>
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where
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RxDma: crate::usart::RxDma<T>,
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{
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@ -163,7 +163,7 @@ impl<'d, T: Instance, TxDma, RxDma> Uart<'d, T, TxDma, RxDma> {
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Ok(())
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}
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pub fn read_blocking(&mut self, buffer: &mut [u8]) -> Result<(), Error> {
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pub fn blocking_read(&mut self, buffer: &mut [u8]) -> Result<(), Error> {
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unsafe {
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let r = self.inner.regs();
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for b in buffer {
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@ -190,6 +190,25 @@ impl<'d, T: Instance, TxDma, RxDma> Uart<'d, T, TxDma, RxDma> {
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}
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Ok(())
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}
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pub fn blocking_write(&mut self, buffer: &[u8]) -> Result<(), Error> {
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unsafe {
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let r = self.inner.regs();
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for &b in buffer {
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while !sr(r).read().txe() {}
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tdr(r).write_volatile(b);
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}
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}
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Ok(())
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}
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pub fn blocking_flush(&mut self) -> Result<(), Error> {
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unsafe {
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let r = self.inner.regs();
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while !sr(r).read().tc() {}
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}
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Ok(())
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}
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}
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impl<'d, T: Instance, TxDma, RxDma> embedded_hal::serial::Read<u8> for Uart<'d, T, TxDma, RxDma> {
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@ -224,21 +243,10 @@ impl<'d, T: Instance, TxDma, RxDma> embedded_hal::blocking::serial::Write<u8>
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{
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type Error = Error;
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fn bwrite_all(&mut self, buffer: &[u8]) -> Result<(), Self::Error> {
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unsafe {
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let r = self.inner.regs();
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for &b in buffer {
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while !sr(r).read().txe() {}
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tdr(r).write_volatile(b);
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}
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}
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Ok(())
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self.blocking_write(buffer)
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}
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fn bflush(&mut self) -> Result<(), Self::Error> {
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unsafe {
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let r = self.inner.regs();
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while !sr(r).read().tc() {}
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}
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Ok(())
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self.blocking_flush()
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}
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}
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@ -252,7 +260,7 @@ where
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= impl Future<Output = Result<(), embassy_traits::uart::Error>> + 'a;
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fn write<'a>(&'a mut self, buf: &'a [u8]) -> Self::WriteFuture<'a> {
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self.write_dma(buf)
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self.write(buf)
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.map_err(|_| embassy_traits::uart::Error::Other)
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}
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}
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@ -267,7 +275,7 @@ where
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= impl Future<Output = Result<(), embassy_traits::uart::Error>> + 'a;
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fn read<'a>(&'a mut self, buf: &'a mut [u8]) -> Self::ReadFuture<'a> {
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self.read_dma(buf)
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self.read(buf)
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.map_err(|_| embassy_traits::uart::Error::Other)
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}
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}
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@ -9,7 +9,6 @@ use embassy::executor::Spawner;
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use embassy_stm32::dma::NoDma;
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use embassy_stm32::usart::{Config, Uart};
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use embassy_stm32::Peripherals;
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use embassy_traits::uart::Write as _;
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use example_common::*;
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use heapless::String;
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@ -7,7 +7,6 @@ mod example_common;
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use cortex_m_rt::entry;
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use embassy_stm32::dma::NoDma;
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use embassy_stm32::usart::{Config, Uart};
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use embedded_hal::blocking::serial::Write;
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use example_common::*;
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#[entry]
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@ -19,12 +18,12 @@ fn main() -> ! {
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let config = Config::default();
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let mut usart = Uart::new(p.USART3, p.PD9, p.PD8, NoDma, NoDma, config);
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unwrap!(usart.bwrite_all(b"Hello Embassy World!\r\n"));
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unwrap!(usart.blocking_write(b"Hello Embassy World!\r\n"));
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info!("wrote Hello, starting echo");
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let mut buf = [0u8; 1];
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loop {
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unwrap!(usart.read_blocking(&mut buf));
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unwrap!(usart.bwrite_all(&buf));
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unwrap!(usart.blocking_read(&mut buf));
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unwrap!(usart.blocking_write(&buf));
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}
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}
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@ -9,7 +9,6 @@ use embassy::executor::Spawner;
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use embassy_stm32::dma::NoDma;
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use embassy_stm32::usart::{Config, Uart};
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use embassy_stm32::Peripherals;
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use embassy_traits::uart::Write as _;
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use example_common::*;
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use heapless::String;
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@ -9,7 +9,6 @@ use embassy::executor::Spawner;
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use embassy_stm32::dma::NoDma;
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use embassy_stm32::usart::{Config, Uart};
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use embassy_stm32::Peripherals;
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use embassy_traits::uart::Write as _Write;
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use example_common::*;
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use heapless::String;
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@ -4,7 +4,6 @@
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#[path = "../example_common.rs"]
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mod example_common;
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use cortex_m::prelude::_embedded_hal_blocking_serial_Write;
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use embassy::executor::Executor;
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use embassy::util::Forever;
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use embassy_stm32::dma::NoDma;
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@ -20,13 +19,13 @@ async fn main_task() {
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let config = Config::default();
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let mut usart = Uart::new(p.UART7, p.PF6, p.PF7, NoDma, NoDma, config);
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unwrap!(usart.bwrite_all(b"Hello Embassy World!\r\n"));
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unwrap!(usart.blocking_write(b"Hello Embassy World!\r\n"));
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info!("wrote Hello, starting echo");
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let mut buf = [0u8; 1];
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loop {
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unwrap!(usart.read_blocking(&mut buf));
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unwrap!(usart.bwrite_all(&buf));
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unwrap!(usart.blocking_read(&mut buf));
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unwrap!(usart.blocking_write(&buf));
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}
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}
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@ -9,7 +9,6 @@ use embassy::executor::Executor;
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use embassy::util::Forever;
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use embassy_stm32::dma::NoDma;
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use embassy_stm32::usart::{Config, Uart};
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use embassy_traits::uart::Write as _Write;
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use example_common::*;
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use cortex_m_rt::entry;
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@ -10,7 +10,6 @@ use example_common::*;
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use embassy::executor::Spawner;
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use embassy_stm32::usart::{Config, Uart};
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use embassy_stm32::Peripherals;
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use embassy_traits::uart::{Read, Write};
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#[embassy::main]
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async fn main(_spawner: Spawner, p: Peripherals) {
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@ -7,7 +7,6 @@ mod example_common;
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use embassy_stm32::dma::NoDma;
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use embassy_stm32::usart::{Config, Uart};
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use embedded_hal::blocking::serial::Write;
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use example_common::*;
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#[cortex_m_rt::entry]
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@ -19,12 +18,12 @@ fn main() -> ! {
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let config = Config::default();
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let mut usart = Uart::new(p.UART4, p.PA1, p.PA0, NoDma, NoDma, config);
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unwrap!(usart.bwrite_all(b"Hello Embassy World!\r\n"));
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unwrap!(usart.blocking_write(b"Hello Embassy World!\r\n"));
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info!("wrote Hello, starting echo");
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let mut buf = [0u8; 1];
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loop {
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unwrap!(usart.read_blocking(&mut buf));
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unwrap!(usart.bwrite_all(&buf));
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unwrap!(usart.blocking_read(&mut buf));
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unwrap!(usart.blocking_write(&buf));
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}
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}
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@ -9,7 +9,6 @@ use embassy::executor::Spawner;
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use embassy_stm32::dma::NoDma;
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use embassy_stm32::usart::{Config, Uart};
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use embassy_stm32::Peripherals;
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use embassy_traits::uart::Write as _;
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use example_common::*;
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use heapless::String;
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@ -9,7 +9,6 @@ use embassy::executor::Spawner;
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use embassy_stm32::dma::NoDma;
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use embassy_stm32::usart::{Config, Uart};
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use embassy_stm32::Peripherals;
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use embedded_hal::blocking::serial::Write;
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use example_common::*;
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#[embassy::main(config = "config()")]
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@ -42,10 +41,10 @@ async fn main(_spawner: Spawner, p: Peripherals) {
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// This is because we aren't sending+receiving at the same time.
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let data = [0xC0, 0xDE];
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usart.bwrite_all(&data).unwrap();
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usart.blocking_write(&data).unwrap();
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let mut buf = [0; 2];
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usart.read_blocking(&mut buf).unwrap();
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usart.blocking_read(&mut buf).unwrap();
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assert_eq!(buf, data);
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info!("Test OK");
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@ -8,7 +8,6 @@ use defmt::assert_eq;
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use embassy::executor::Spawner;
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use embassy_stm32::usart::{Config, Uart};
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use embassy_stm32::Peripherals;
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use embassy_traits::uart::{Read, Write};
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use example_common::*;
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#[embassy::main(config = "config()")]
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12
tests/stm32/teleprobe.sh
Executable file
12
tests/stm32/teleprobe.sh
Executable file
@ -0,0 +1,12 @@
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echo Running target=$1 elf=$2
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STATUSCODE=$(
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curl \
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-sS \
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--output /dev/stderr \
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--write-out "%{http_code}" \
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-H "Authorization: Bearer $TELEPROBE_TOKEN" \
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https://teleprobe.embassy.dev/targets/$1/run --data-binary @$2
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)
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echo
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echo HTTP Status code: $STATUSCODE
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test "$STATUSCODE" -eq 200
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