Small fixes, add full code display solution
This commit is contained in:
@@ -2,6 +2,7 @@
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members = [
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"src/getting-started",
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"src/hello-world",
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"src/display",
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]
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[profile.dev]
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@@ -58,8 +58,9 @@ What's out of scope for this book:
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## Reporting problems
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The source of this book is in [this repository].
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If you encounter any typo or problem with the code report it on the [issue tracker],
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or even submit a pull request.
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If you encounter any typo or problem please report it on the [issue tracker],
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or even submit a [pull request].
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[this repository]: https://github.com/droogmic/microrust
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[issue tracker]: https://github.com/droogmic/microrust/issues
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[pull request]: https://github.com/droogmic/microrust/pulls
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@@ -37,7 +37,7 @@
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- [Solution](display/03.00.SOLUTION.md)
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- [Layout](display/03.01.LAYOUT.md)
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- [Multiplexing](display/03.02.MULT.md)
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- [Full](display/03.03.FULL.md)
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- [Full Solution](display/03.03.FULL.md)
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- [WIP - Sensors and I²C](sensors/00.00.README.md)
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@@ -29,7 +29,7 @@ pub fn display_pre(&mut self, delay: &mut Delay, led_matrix: [[u8; 9]; 3], durat
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delay.delay_ms(delay_ms);
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// It is not worth the logic to check which pins need resetting,
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// so set all the pins back high.
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for col_line in cols.iter_mut() {
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for col_line in &mut cols {
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col_line.set_high();
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}
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// Set the row back low.
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@@ -1,4 +1,8 @@
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# Full
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# Full Solution
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Full solution still to come.
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Please look at the implementation in the [micro:bit crate](https://github.com/therealprof/microbit]).
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For the most modern implementations,
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please look at the code in the [micro:bit crate](https://github.com/therealprof/microbit).
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``` rust
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{{#include src/main.rs}}
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```
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9
src/display/Cargo.toml
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9
src/display/Cargo.toml
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@@ -0,0 +1,9 @@
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[package]
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name = "display"
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version = "0.1.0"
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[dependencies]
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cortex-m-rt="~0.5"
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cortex-m-semihosting="~0.3"
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panic-semihosting = "~0.3"
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microbit="~0.5"
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209
src/display/src/main.rs
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209
src/display/src/main.rs
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@@ -0,0 +1,209 @@
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#![no_std]
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#![no_main]
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extern crate panic_semihosting;
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extern crate cortex_m_rt as rt;
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extern crate cortex_m_semihosting as sh;
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#[macro_use(entry, exception)]
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extern crate microbit;
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use core::fmt::Write;
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use rt::ExceptionFrame;
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use sh::hio;
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use microbit::hal::delay::Delay;
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use microbit::hal::gpio::gpio::PIN;
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use microbit::hal::gpio::gpio::{PIN4, PIN5, PIN6, PIN7, PIN8, PIN9, PIN10, PIN11, PIN12, PIN13, PIN14, PIN15};
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use microbit::hal::gpio::{Output, PushPull};
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use microbit::hal::serial;
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use microbit::hal::serial::BAUD115200;
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use microbit::hal::prelude::*;
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exception!(HardFault, hard_fault);
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fn hard_fault(ef: &ExceptionFrame) -> ! {
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panic!("{:#?}", ef);
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}
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exception!(*, default_handler);
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fn default_handler(irqn: i16) {
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panic!("Unhandled exception (IRQn = {})", irqn);
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}
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type LED = PIN<Output<PushPull>>;
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const DEFAULT_DELAY_MS: u32 = 2;
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const LED_LAYOUT: [[(usize, usize); 5]; 5] = [
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[(0, 0), (1, 3), (0, 1), (1, 4), (0, 2)],
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[(2, 3), (2, 4), (2, 5), (2, 6), (2, 7)],
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[(1, 1), (0, 8), (1, 2), (2, 8), (1, 0)],
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[(0, 7), (0, 6), (0, 5), (0, 4), (0, 3)],
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[(2, 2), (1, 6), (2, 0), (1, 5), (2, 1)],
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];
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/// Array of all the LEDs in the 5x5 display on the board
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pub struct Display {
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delay_ms: u32,
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rows: [LED; 3],
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cols: [LED; 9],
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}
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impl Display {
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/// Initializes all the user LEDs
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pub fn new(
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col1: PIN4<Output<PushPull>>,
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col2: PIN5<Output<PushPull>>,
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col3: PIN6<Output<PushPull>>,
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col4: PIN7<Output<PushPull>>,
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col5: PIN8<Output<PushPull>>,
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col6: PIN9<Output<PushPull>>,
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col7: PIN10<Output<PushPull>>,
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col8: PIN11<Output<PushPull>>,
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col9: PIN12<Output<PushPull>>,
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row1: PIN13<Output<PushPull>>,
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row2: PIN14<Output<PushPull>>,
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row3: PIN15<Output<PushPull>>,
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) -> Self {
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let mut retval = Display {
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delay_ms: DEFAULT_DELAY_MS,
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rows: [row1.downgrade(), row2.downgrade(), row3.downgrade()],
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cols: [
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col1.downgrade(), col2.downgrade(), col3.downgrade(),
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col4.downgrade(), col5.downgrade(), col6.downgrade(),
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col7.downgrade(), col8.downgrade(), col9.downgrade()
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],
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};
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// This is needed to reduce flickering on reset
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retval.clear();
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retval
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}
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/// Clear display
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pub fn clear(&mut self) {
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for row in &mut self.rows {
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row.set_low();
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}
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for col in &mut self.cols {
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col.set_high();
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}
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}
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/// Convert 5x5 display image to 3x9 matrix image
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pub fn display2matrix(led_display: [[u8; 5]; 5]) -> [[u8; 9]; 3] {
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let mut led_matrix: [[u8; 9]; 3] = [[0; 9]; 3];
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for (led_display_row, layout_row) in led_display.iter().zip(LED_LAYOUT.iter()) {
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for (led_display_val, layout_loc) in led_display_row.iter().zip(layout_row) {
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led_matrix[layout_loc.0][layout_loc.1] = *led_display_val;
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}
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}
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led_matrix
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}
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/// Display 5x5 display image for a given duration
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pub fn display(&mut self, delay: &mut Delay, led_display: [[u8; 5]; 5], duration_ms: u32) {
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let led_matrix = Display::display2matrix(led_display);
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// Calculates how long to block for
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// e.g. If the duration_ms is 500ms (half a second)
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// and self.delay_ms is 2ms (about 2ms per scan row),
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// each refresh takes 3rows×2ms, so we need 500ms / (3×2ms) loops.
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let loops = duration_ms / (self.rows.len() as u32 * self.delay_ms);
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for _ in 0..loops {
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for (row_line, led_matrix_row) in self.rows.iter_mut().zip(led_matrix.iter()) {
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row_line.set_high();
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for (col_line, led_matrix_val) in self.cols.iter_mut().zip(led_matrix_row.iter()) {
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// We are keeping it simple, and not adding brightness
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if *led_matrix_val > 0 {
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col_line.set_low();
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}
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}
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delay.delay_ms(self.delay_ms);
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for col_line in &mut self.cols {
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col_line.set_high();
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}
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row_line.set_low();
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}
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}
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}
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}
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entry!(main);
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fn main() -> ! {
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let mut stdout = hio::hstdout().unwrap();
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writeln!(stdout, "Start").unwrap();
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if let Some(p) = microbit::Peripherals::take() {
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// Split GPIO
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let mut gpio = p.GPIO.split();
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// Configure RX and TX pins accordingly
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let tx = gpio.pin24.into_push_pull_output().downgrade();
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let rx = gpio.pin25.into_floating_input().downgrade();
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// Configure serial communication
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let (mut tx, _) = serial::Serial::uart0(p.UART0, tx, rx, BAUD115200).split();
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write!(tx, "serial - start\r\n");
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// Create delay provider
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let mut delay = Delay::new(p.TIMER0);
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// Display pins
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let row1 = gpio.pin13.into_push_pull_output();
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let row2 = gpio.pin14.into_push_pull_output();
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let row3 = gpio.pin15.into_push_pull_output();
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let col1 = gpio.pin4.into_push_pull_output();
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let col2 = gpio.pin5.into_push_pull_output();
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let col3 = gpio.pin6.into_push_pull_output();
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let col4 = gpio.pin7.into_push_pull_output();
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let col5 = gpio.pin8.into_push_pull_output();
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let col6 = gpio.pin9.into_push_pull_output();
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let col7 = gpio.pin10.into_push_pull_output();
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let col8 = gpio.pin11.into_push_pull_output();
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let col9 = gpio.pin12.into_push_pull_output();
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let mut leds = Display::new(
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col1, col2, col3,
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col4, col5, col6,
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col7, col8, col9,
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row1, row2, row3,
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);
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#[allow(non_snake_case)]
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let letter_I = [
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[0, 1, 1, 1, 0],
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[0, 0, 1, 0, 0],
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[0, 0, 1, 0, 0],
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[0, 0, 1, 0, 0],
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[0, 1, 1, 1, 0],
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];
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let heart = [
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[0, 1, 0, 1, 0],
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[1, 0, 1, 0, 1],
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[1, 0, 0, 0, 1],
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[0, 1, 0, 1, 0],
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[0, 0, 1, 0, 0],
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];
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#[allow(non_snake_case)]
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let letter_U = [
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[0, 1, 0, 1, 0],
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[0, 1, 0, 1, 0],
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[0, 1, 0, 1, 0],
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[0, 1, 0, 1, 0],
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[0, 1, 1, 1, 0],
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];
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let _ = write!(tx, "\n\rStarting!\n\r");
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loop {
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let _ = write!(tx, "I <3 Rust on the micro:bit!\n\r");
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leds.display(&mut delay, letter_I, 1000);
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leds.display(&mut delay, heart, 1000);
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leds.display(&mut delay, letter_U, 1000);
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leds.clear();
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delay.delay_ms(250_u32);
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}
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}
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panic!("End");
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}
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@@ -1,5 +1,12 @@
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# Connects GDB to OpenOCD server port
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target remote :3333
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# (optional) Unmangle function names when debugging
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set print asm-demangle on
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# Enable semihosting
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monitor arm semihosting enable
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# Load your program, breaks at entry
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load
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# (optional) Add breakpoint at function
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break hello::main
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continue
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# Continue with execution
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continue
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