Reduce amount of samples for nrf5340
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0a27b6cedb
commit
2baebabf4d
3
.vscode/settings.json
vendored
3
.vscode/settings.json
vendored
@ -13,7 +13,8 @@
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// Declare for the target you wish to develop
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// "embassy-executor/Cargo.toml",
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// "embassy-sync/Cargo.toml",
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"examples/nrf/Cargo.toml",
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"examples/nrf52840/Cargo.toml",
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//"examples/nrf5340/Cargo.toml",
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// "examples/nrf-rtos-trace/Cargo.toml",
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// "examples/rp/Cargo.toml",
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// "examples/std/Cargo.toml",
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@ -1,26 +0,0 @@
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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::info;
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use embassy_executor::Spawner;
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use embassy_nrf::interrupt;
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use embassy_nrf::timer::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_nrf::init(Default::default());
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let mut t = Timer::new_awaitable(p.TIMER0, interrupt::take!(TIMER0));
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// default frequency is 1MHz, so this triggers every second
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t.cc(0).write(1_000_000);
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// clear the timer value on cc[0] compare match
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t.cc(0).short_compare_clear();
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t.start();
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loop {
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// wait for compare match
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t.cc(0).wait().await;
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info!("hardware timer tick");
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}
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}
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@ -1,57 +0,0 @@
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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_nrf::buffered_uarte::{BufferedUarte, State};
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use embassy_nrf::{interrupt, uarte};
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use embedded_io::asynch::{BufRead, Write};
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use futures::pin_mut;
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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_nrf::init(Default::default());
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let mut config = uarte::Config::default();
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config.parity = uarte::Parity::EXCLUDED;
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config.baudrate = uarte::Baudrate::BAUD115200;
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let mut tx_buffer = [0u8; 4096];
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let mut rx_buffer = [0u8; 4096];
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let irq = interrupt::take!(SERIAL0);
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let mut state = State::new();
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// Please note - important to have hardware flow control (https://github.com/embassy-rs/embassy/issues/536)
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let u = BufferedUarte::new(
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&mut state,
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p.UARTETWISPI0,
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p.TIMER0,
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p.PPI_CH0,
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p.PPI_CH1,
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irq,
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p.P0_08,
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p.P0_06,
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p.P0_07,
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p.P0_05,
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config,
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&mut rx_buffer,
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&mut tx_buffer,
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);
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pin_mut!(u);
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info!("uarte initialized!");
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unwrap!(u.write_all(b"Hello!\r\n").await);
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info!("wrote hello in uart!");
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loop {
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info!("reading...");
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let buf = unwrap!(u.fill_buf().await);
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info!("read done, got {}", buf);
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// Read bytes have to be explicitly consumed, otherwise fill_buf() will return them again
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let n = buf.len();
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u.consume(n);
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}
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}
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@ -1,43 +0,0 @@
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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::unwrap;
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use embassy_executor::Spawner;
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use embassy_nrf::gpio::{Level, Output, OutputDrive};
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use embassy_sync::blocking_mutex::raw::ThreadModeRawMutex;
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use embassy_sync::channel::Channel;
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use embassy_time::{Duration, Timer};
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use {defmt_rtt as _, panic_probe as _};
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enum LedState {
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On,
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Off,
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}
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static CHANNEL: Channel<ThreadModeRawMutex, LedState, 1> = Channel::new();
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#[embassy_executor::task]
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async fn my_task() {
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loop {
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CHANNEL.send(LedState::On).await;
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Timer::after(Duration::from_secs(1)).await;
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CHANNEL.send(LedState::Off).await;
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Timer::after(Duration::from_secs(1)).await;
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}
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}
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#[embassy_executor::main]
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async fn main(spawner: Spawner) {
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let p = embassy_nrf::init(Default::default());
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let mut led = Output::new(p.P0_28, Level::Low, OutputDrive::Standard);
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unwrap!(spawner.spawn(my_task()));
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loop {
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match CHANNEL.recv().await {
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LedState::On => led.set_high(),
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LedState::Off => led.set_low(),
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}
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}
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}
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@ -1,50 +0,0 @@
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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::unwrap;
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use embassy_executor::Spawner;
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use embassy_nrf::gpio::{AnyPin, Level, Output, OutputDrive, Pin};
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use embassy_sync::blocking_mutex::raw::NoopRawMutex;
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use embassy_sync::channel::{Channel, Receiver, Sender};
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use embassy_time::{Duration, Timer};
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use static_cell::StaticCell;
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use {defmt_rtt as _, panic_probe as _};
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enum LedState {
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On,
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Off,
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}
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static CHANNEL: StaticCell<Channel<NoopRawMutex, LedState, 1>> = StaticCell::new();
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#[embassy_executor::task]
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async fn send_task(sender: Sender<'static, NoopRawMutex, LedState, 1>) {
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loop {
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sender.send(LedState::On).await;
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Timer::after(Duration::from_secs(1)).await;
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sender.send(LedState::Off).await;
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Timer::after(Duration::from_secs(1)).await;
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}
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}
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#[embassy_executor::task]
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async fn recv_task(led: AnyPin, receiver: Receiver<'static, NoopRawMutex, LedState, 1>) {
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let mut led = Output::new(led, Level::Low, OutputDrive::Standard);
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loop {
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match receiver.recv().await {
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LedState::On => led.set_high(),
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LedState::Off => led.set_low(),
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}
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}
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}
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#[embassy_executor::main]
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async fn main(spawner: Spawner) {
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let p = embassy_nrf::init(Default::default());
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let channel = CHANNEL.init(Channel::new());
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unwrap!(spawner.spawn(send_task(channel.sender())));
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unwrap!(spawner.spawn(recv_task(p.P0_28.degrade(), channel.receiver())));
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}
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@ -1,34 +0,0 @@
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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::{info, unwrap};
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use embassy_executor::Spawner;
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use embassy_nrf::gpio::{AnyPin, Input, Pin as _, Pull};
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use {defmt_rtt as _, panic_probe as _};
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#[embassy_executor::task(pool_size = 4)]
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async fn button_task(n: usize, mut pin: Input<'static, AnyPin>) {
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loop {
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pin.wait_for_low().await;
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info!("Button {:?} pressed!", n);
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pin.wait_for_high().await;
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info!("Button {:?} released!", n);
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}
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}
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#[embassy_executor::main]
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async fn main(spawner: Spawner) {
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let p = embassy_nrf::init(Default::default());
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info!("Starting!");
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let btn1 = Input::new(p.P0_23.degrade(), Pull::Up);
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let btn2 = Input::new(p.P0_24.degrade(), Pull::Up);
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let btn3 = Input::new(p.P0_08.degrade(), Pull::Up);
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let btn4 = Input::new(p.P0_09.degrade(), Pull::Up);
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unwrap!(spawner.spawn(button_task(1, btn1)));
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unwrap!(spawner.spawn(button_task(2, btn2)));
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unwrap!(spawner.spawn(button_task(3, btn3)));
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unwrap!(spawner.spawn(button_task(4, btn4)));
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}
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@ -1,35 +0,0 @@
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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_nrf::{interrupt, uarte};
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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_nrf::init(Default::default());
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let mut config = uarte::Config::default();
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config.parity = uarte::Parity::EXCLUDED;
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config.baudrate = uarte::Baudrate::BAUD115200;
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let irq = interrupt::take!(SERIAL0);
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let uart = uarte::Uarte::new(p.UARTETWISPI0, irq, p.P0_08, p.P0_06, config);
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let (mut tx, mut rx) = uart.split_with_idle(p.TIMER0, p.PPI_CH0, p.PPI_CH1);
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info!("uarte initialized!");
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// Message must be in SRAM
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let mut buf = [0; 8];
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buf.copy_from_slice(b"Hello!\r\n");
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unwrap!(tx.write(&buf).await);
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info!("wrote hello in uart!");
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loop {
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info!("reading...");
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let n = unwrap!(rx.read_until_idle(&mut buf).await);
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info!("got {} bytes", n);
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}
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}
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@ -1,60 +0,0 @@
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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_nrf::peripherals::UARTETWISPI0;
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use embassy_nrf::uarte::UarteRx;
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use embassy_nrf::{interrupt, uarte};
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use embassy_sync::blocking_mutex::raw::ThreadModeRawMutex;
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use embassy_sync::channel::Channel;
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use {defmt_rtt as _, panic_probe as _};
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static CHANNEL: Channel<ThreadModeRawMutex, [u8; 8], 1> = Channel::new();
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#[embassy_executor::main]
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async fn main(spawner: Spawner) {
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let p = embassy_nrf::init(Default::default());
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let mut config = uarte::Config::default();
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config.parity = uarte::Parity::EXCLUDED;
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config.baudrate = uarte::Baudrate::BAUD115200;
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let irq = interrupt::take!(SERIAL0);
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let uart = uarte::Uarte::new(p.UARTETWISPI0, irq, p.P1_00, p.P1_01, config);
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let (mut tx, rx) = uart.split();
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info!("uarte initialized!");
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// Spawn a task responsible purely for reading
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unwrap!(spawner.spawn(reader(rx)));
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// Message must be in SRAM
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{
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let mut buf = [0; 23];
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buf.copy_from_slice(b"Type 8 chars to echo!\r\n");
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unwrap!(tx.write(&buf).await);
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info!("wrote hello in uart!");
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}
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// Continue reading in this main task and write
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// back out the buffer we receive from the read
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// task.
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loop {
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let buf = CHANNEL.recv().await;
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info!("writing...");
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unwrap!(tx.write(&buf).await);
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}
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}
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#[embassy_executor::task]
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async fn reader(mut rx: UarteRx<'static, UARTETWISPI0>) {
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let mut buf = [0; 8];
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loop {
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info!("reading...");
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unwrap!(rx.read(&mut buf).await);
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CHANNEL.send(buf).await;
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}
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}
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