Rotating blinky
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@@ -13,6 +13,7 @@ panic-halt = "1.0.0"
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panic-semihosting = "0.6"
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panic-semihosting = "0.6"
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stm32f3 = { version = "0.16.0", features = ["stm32f303"] }
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stm32f3 = { version = "0.16.0", features = ["stm32f303"] }
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stm32f3xx-hal = { version = "0.10.0", features = ["stm32f303xc"] }
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stm32f3xx-hal = { version = "0.10.0", features = ["stm32f303xc"] }
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switch-hal = "0.4.0"
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# Uncomment for the panic example.
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# Uncomment for the panic example.
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# panic-itm = "0.4.1"
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# panic-itm = "0.4.1"
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156
src/main.rs
156
src/main.rs
@@ -2,6 +2,7 @@
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#![no_main]
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#![no_main]
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use core::fmt::Write;
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use core::fmt::Write;
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use core::slice::Iter;
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use cortex_m_semihosting::hprintln;
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use cortex_m_semihosting::hprintln;
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// pick a panicking behavior
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// pick a panicking behavior
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@@ -13,8 +14,120 @@ use panic_semihosting as _; // logs messages to the host stderr; requires a debu
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use cortex_m::peripheral::{syst, Peripherals};
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use cortex_m::peripheral::{syst, Peripherals};
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use cortex_m_rt::entry;
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use cortex_m_rt::entry;
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use stm32f3xx_hal::delay;
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use stm32f3xx_hal::serial::Serial;
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use stm32f3xx_hal::serial::Serial;
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use stm32f3xx_hal::{self as hal, pac, prelude::*};
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use stm32f3xx_hal::{
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gpio::{self, gpioe},
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pac,
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prelude::*,
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};
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use switch_hal::{ActiveHigh, IntoSwitch, OutputSwitch, Switch};
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enum Direction {
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North,
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NorthEast,
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East,
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SouthEast,
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South,
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SouthWest,
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West,
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NorthWest,
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}
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impl Direction {
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pub fn iter() -> Iter<'static, Direction> {
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static DIRECTIONS: [Direction; 8] = [
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Direction::North,
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Direction::NorthEast,
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Direction::East,
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Direction::SouthEast,
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Direction::South,
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Direction::SouthWest,
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Direction::West,
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Direction::NorthWest,
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];
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DIRECTIONS.iter()
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}
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}
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type Led = Switch<gpioe::PEx<gpio::Output<gpio::PushPull>>, ActiveHigh>;
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struct Leds {
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ld3: Led,
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ld4: Led,
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ld5: Led,
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ld6: Led,
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ld7: Led,
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ld8: Led,
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ld9: Led,
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ld10: Led,
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}
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impl Leds {
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fn new<PE8Mode, PE9Mode, PE10Mode, PE11Mode, PE12Mode, PE13Mode, PE14Mode, PE15Mode>(
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pe8: gpioe::PE8<PE8Mode>,
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pe9: gpioe::PE9<PE9Mode>,
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pe10: gpioe::PE10<PE10Mode>,
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pe11: gpioe::PE11<PE11Mode>,
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pe12: gpioe::PE12<PE12Mode>,
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pe13: gpioe::PE13<PE13Mode>,
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pe14: gpioe::PE14<PE14Mode>,
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pe15: gpioe::PE15<PE15Mode>,
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moder: &mut gpioe::MODER,
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otyper: &mut gpioe::OTYPER,
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) -> Self {
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let mut leds = Self {
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ld3: pe9
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.into_push_pull_output(moder, otyper)
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.downgrade()
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.into_active_high_switch(),
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ld4: pe8
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.into_push_pull_output(moder, otyper)
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.downgrade()
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.into_active_high_switch(),
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ld5: pe10
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.into_push_pull_output(moder, otyper)
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.downgrade()
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.into_active_high_switch(),
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ld6: pe15
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.into_push_pull_output(moder, otyper)
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.downgrade()
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.into_active_high_switch(),
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ld7: pe11
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.into_push_pull_output(moder, otyper)
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.downgrade()
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.into_active_high_switch(),
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ld8: pe14
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.into_push_pull_output(moder, otyper)
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.downgrade()
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.into_active_high_switch(),
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ld9: pe12
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.into_push_pull_output(moder, otyper)
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.downgrade()
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.into_active_high_switch(),
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ld10: pe13
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.into_push_pull_output(moder, otyper)
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.downgrade()
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.into_active_high_switch(),
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};
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for dir in Direction::iter() {
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leds.for_direction(dir).off().ok();
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}
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leds
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}
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pub fn for_direction(&mut self, direction: &Direction) -> &mut Led {
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match direction {
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Direction::North => &mut self.ld3, // done
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Direction::NorthEast => &mut self.ld5, // done
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Direction::East => &mut self.ld7, // done
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Direction::SouthEast => &mut self.ld9,
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Direction::South => &mut self.ld8,
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Direction::SouthWest => &mut self.ld10,
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Direction::West => &mut self.ld6, // done
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Direction::NorthWest => &mut self.ld4, // done
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}
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}
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}
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#[entry]
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#[entry]
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fn main() -> ! {
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fn main() -> ! {
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@@ -32,19 +145,19 @@ fn main() -> ! {
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systick.set_reload(8_000_000); // 1s
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systick.set_reload(8_000_000); // 1s
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systick.clear_current();
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systick.clear_current();
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// PE9: LD3 (red)
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// PE8: LD4 (blue)
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// PE10: LD5 (orange)
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let mut gpioe = dp.GPIOE.split(&mut rcc.ahb);
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let mut gpioe = dp.GPIOE.split(&mut rcc.ahb);
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let mut ld3 = gpioe
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let mut leds = Leds::new(
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.pe9
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gpioe.pe8,
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.into_push_pull_output(&mut gpioe.moder, &mut gpioe.otyper);
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gpioe.pe9,
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let mut ld4 = gpioe
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gpioe.pe10,
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.pe8
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gpioe.pe11,
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.into_push_pull_output(&mut gpioe.moder, &mut gpioe.otyper);
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gpioe.pe12,
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let mut ld5 = gpioe
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gpioe.pe13,
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.pe10
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gpioe.pe14,
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.into_push_pull_output(&mut gpioe.moder, &mut gpioe.otyper);
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gpioe.pe15,
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&mut gpioe.moder,
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&mut gpioe.otyper,
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);
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let mut gpioc = dp.GPIOC.split(&mut rcc.ahb);
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let mut gpioc = dp.GPIOC.split(&mut rcc.ahb);
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let pins = (
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let pins = (
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@@ -59,14 +172,21 @@ fn main() -> ! {
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);
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);
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let mut uart = Serial::new(dp.USART1, pins, 115200.Bd(), clocks, &mut rcc.apb2);
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let mut uart = Serial::new(dp.USART1, pins, 115200.Bd(), clocks, &mut rcc.apb2);
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systick.enable_counter();
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let mut delay = delay::Delay::new(systick, clocks);
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let mut enabled = true;
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let mut enabled = true;
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loop {
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loop {
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while !systick.has_wrapped() {}
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enabled = !enabled;
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enabled = !enabled;
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ld3.toggle().unwrap();
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for dir in Direction::iter() {
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ld4.toggle().unwrap();
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let led = leds.for_direction(dir);
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ld5.toggle().unwrap();
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if enabled {
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led.on().ok();
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} else {
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led.off().ok();
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}
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delay.delay_ms(50u16);
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}
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uart.write_str("Loop\r\n").unwrap();
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uart.write_str("Loop\r\n").unwrap();
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hprintln!("Loop");
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hprintln!("Loop");
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}
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}
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