Very nearly get qoi image rendering
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0a71347771
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images/Image.qoi
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images/Image.qoi
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images/Image.xcf
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images/Image.xcf
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@ -42,6 +42,10 @@ impl Rgb565 {
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pub fn cyan() -> Rgb565 {
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Rgb565(0, 255, 255)
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}
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pub fn qoi_hash(&self) -> usize {
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((self.0 as u32 * 3 + self.1 as u32 * 5 + self.2 as u32 * 7 + 255 * 11) % 64) as usize
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}
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}
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impl Mul<f32> for Rgb565 {
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@ -83,7 +87,7 @@ pub struct Display<T: DelayNs, DCPin: PinOps, RSTPin: PinOps> {
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pub delay: T,
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}
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enum Command {
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pub enum Command {
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NOP = 0x0,
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SoftReset = 0x1,
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RddID = 0x4,
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@ -138,7 +142,7 @@ enum ColorMode {
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ColorMode16M = 0x07,
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}
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enum Writeable<'d> {
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pub enum Writeable<'d> {
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Command(Command),
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Data(&'d [u8]),
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}
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@ -151,7 +155,7 @@ enum Rotation {
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}
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impl<T: DelayNs, DCPin: PinOps, RSTPin: PinOps> Display<T, DCPin, RSTPin> {
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fn write(&mut self, writeable: Writeable) {
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pub fn write(&mut self, writeable: Writeable) {
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self.cs.set_low().unwrap();
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match writeable {
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Writeable::Command(cmd) => {
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@ -242,7 +246,7 @@ impl<T: DelayNs, DCPin: PinOps, RSTPin: PinOps> Display<T, DCPin, RSTPin> {
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self.write(Writeable::Data(&[start1, start2, end1, end2]));
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}
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fn set_window(&mut self, pos0: Position, pos1: Position) {
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pub fn set_window(&mut self, pos0: Position, pos1: Position) {
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self.set_columns(pos0.x, pos1.x);
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self.set_rows(pos0.y, pos1.y);
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self.write(Writeable::Command(Command::RamWR));
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@ -1,2 +0,0 @@
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// https://qoiformat.org/qoi-specification.pdf
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const image: &[u8; 294] = include_bytes!("../images/Image.qoi");
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25
src/main.rs
25
src/main.rs
@ -3,6 +3,7 @@
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*/
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#![no_std]
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#![no_main]
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#![feature(iter_array_chunks)]
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use atmega_hal::{
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Adc, Usart,
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@ -16,12 +17,13 @@ use panic_halt as _;
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use crate::{
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display::{Display, Position, Rgb565},
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peripherals::{Button, Knob},
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qoi::draw_image,
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};
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mod display;
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mod font;
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mod image;
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mod peripherals;
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mod qoi;
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type CoreClock = atmega_hal::clock::MHz8;
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@ -96,13 +98,20 @@ fn main() -> ! {
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idx = (idx + 1) % colors.len();
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}
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if last_input != input || button_poll {
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last_input = input;
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display.draw_rect(
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Position { x: 0, y: 0 },
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Position { x: 200, y: 200 },
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(colors[idx] * input).as_color(),
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);
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// if last_input != input || button_poll {
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// last_input = input;
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// display.draw_rect(
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// Position { x: 0, y: 0 },
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// Position { x: 200, y: 200 },
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// (colors[idx] * input).as_color(),
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// );
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// }
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match draw_image(&mut serial, &mut display, Position { x: 0, y: 0 }) {
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Ok(_) => ufmt::uwriteln!(serial, "Successfully read QOI").unwrap(),
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Err(e) => ufmt::uwriteln!(serial, "Error: {:?}", e).unwrap(),
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}
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delay.delay_ms(1000);
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}
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}
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243
src/qoi.rs
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243
src/qoi.rs
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@ -0,0 +1,243 @@
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use core::slice::Iter;
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use atmega_hal::{
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Atmega, Usart,
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pac::USART0,
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port::{PB3, PB5, PD0, PD1, Pin, PinOps, mode},
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};
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use embedded_hal::delay::DelayNs;
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use ufmt::derive::uDebug;
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use crate::{
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CoreClock,
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display::{Color, Display, Position, Rgb565, Writeable},
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};
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// https://qoiformat.org/qoi-specification.pdf
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const image: &[u8; 288] = include_bytes!("../images/Image.qoi");
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const BUFFER_SIZE: usize = 64;
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#[derive(Debug, uDebug)]
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pub enum QoiErr {
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InvalidMagicNumber,
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UnexpectedEOF,
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}
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pub fn draw_image<T: DelayNs, DCPin: PinOps, RSTPin: PinOps>(
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serial: &mut Usart<USART0, Pin<mode::Input, PD0>, Pin<mode::Output, PD1>, CoreClock>,
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display: &mut Display<T, DCPin, RSTPin>,
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position: Position,
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) -> Result<(), QoiErr> {
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let mut iter = image.iter();
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if let (Some(113), Some(111), Some(105), Some(102)) =
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(iter.next(), iter.next(), iter.next(), iter.next())
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{
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fn next<'a>(iter: &mut Iter<'a, u8>) -> Result<&'a u8, QoiErr> {
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iter.next().ok_or(QoiErr::UnexpectedEOF)
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}
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let width = u32::from_be_bytes([
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*next(&mut iter)?,
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*next(&mut iter)?,
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*next(&mut iter)?,
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*next(&mut iter)?,
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]) as u16;
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let height = u32::from_be_bytes([
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*next(&mut iter)?,
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*next(&mut iter)?,
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*next(&mut iter)?,
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*next(&mut iter)?,
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]) as u16;
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let channels = *next(&mut iter)?;
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let colorspace = *next(&mut iter)?;
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ufmt::uwriteln!(serial, "Successfully read QOI header").unwrap();
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display.set_window(
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position,
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Position {
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x: position.x + width,
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y: position.y + height,
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},
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);
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let qoi_iter = QoiIterator::from(iter, serial);
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let mut prev_pixels = [0u8; 64];
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let mut chunks = qoi_iter.array_chunks::<BUFFER_SIZE>();
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while let Some(array) = chunks.next() {
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let mut colors = [0u8; BUFFER_SIZE * 2];
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for (i, pixel) in array.iter().enumerate() {
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let [c1, c2] = pixel.as_color().bytes;
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colors[i * 2] = c1;
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colors[i * 2 + 1] = c2;
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}
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display.write(Writeable::Data(&colors));
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}
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if let Some(remainder) = chunks.into_remainder() {
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for pixel in remainder {
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let [c1, c2] = pixel.as_color().bytes;
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display.write(Writeable::Data(&[c1, c2]));
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}
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}
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// display.draw_rect(
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// position,
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// Position {
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// x: position.x + 100,
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// y: position.y + 100,
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// },
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// Rgb565::green().as_color(),
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// );
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Ok(())
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} else {
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Err(QoiErr::InvalidMagicNumber)
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}
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}
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struct QoiIterator<'a> {
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inner: Iter<'a, u8>,
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serial: &'a mut Usart<USART0, Pin<mode::Input, PD0>, Pin<mode::Output, PD1>, CoreClock>,
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prev_pixels: [Rgb565; 64],
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prev_alphas: [u8; 64],
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last_pixel: Rgb565,
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last_alpha: u8,
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repeat: u8,
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}
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impl<'a> QoiIterator<'a> {
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fn from(
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bytes: Iter<'a, u8>,
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serial: &'a mut Usart<USART0, Pin<mode::Input, PD0>, Pin<mode::Output, PD1>, CoreClock>,
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) -> Self {
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QoiIterator {
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inner: bytes,
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serial,
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prev_pixels: [Rgb565(255, 255, 255); 64],
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prev_alphas: [255; 64],
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last_pixel: Rgb565(0, 0, 0),
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last_alpha: 255,
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repeat: 0,
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}
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}
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}
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impl<'a> Iterator for QoiIterator<'a> {
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type Item = Rgb565;
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fn next(&mut self) -> Option<Self::Item> {
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if self.repeat > 0 {
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self.repeat -= 1;
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return Some(self.last_pixel);
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}
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if let Some(byte) = self.inner.next() {
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let (color, alpha) = if *byte == 0xff {
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let red = self.inner.next().unwrap();
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let green = self.inner.next().unwrap();
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let blue = self.inner.next().unwrap();
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let alpha = self.inner.next().unwrap();
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ufmt::uwriteln!(self.serial, "RGBA: {} {} {} {}", red, green, blue, alpha).unwrap();
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(Rgb565(*red, *green, *blue), *alpha)
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} else if *byte == 0b11111110 {
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let red = self.inner.next().unwrap();
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let green = self.inner.next().unwrap();
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let blue = self.inner.next().unwrap();
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ufmt::uwriteln!(self.serial, "RGB: {} {} {}", red, green, blue).unwrap();
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(Rgb565(*red, *green, *blue), self.last_alpha)
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} else {
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let tag = (0b11000000 & byte) >> 6;
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let data = 0b00111111 & byte;
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ufmt::uwriteln!(self.serial, "Tag: {}", tag).unwrap();
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if tag == 0 {
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(
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self.prev_pixels[data as usize],
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self.prev_alphas[data as usize],
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)
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} else if tag == 1 {
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let dr = ((0b110000 & data) >> 4) as i8 - 2;
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let dg = ((0b001100 & data) >> 2) as i8 - 2;
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let db = (0b000011 & data) as i8 - 2;
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ufmt::uwriteln!(
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self.serial,
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"Diffs: {} {} {}",
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((0b110000 & data) >> 4),
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((0b001100 & data) >> 2),
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(0b000011 & data)
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)
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.unwrap();
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(
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Rgb565(
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(self.last_pixel.0 as i8).wrapping_add(dr) as u8,
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(self.last_pixel.1 as i8).wrapping_add(dg) as u8,
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(self.last_pixel.2 as i8).wrapping_add(db) as u8,
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),
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self.last_alpha,
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)
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} else if tag == 2 {
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let second = self.inner.next().unwrap();
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let dg = data as i8 - 32;
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let dr_dg = ((0b11110000 & second) >> 4) as i8 - 8;
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let db_dg = (0b00001111 & second) as i8 - 8;
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let dr = dr_dg + dg;
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let db = db_dg + dg;
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ufmt::uwriteln!(
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self.serial,
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"Last: {} {} {}",
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self.last_pixel.0 as i8,
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self.last_pixel.1 as i8,
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self.last_pixel.2 as i8
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)
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.unwrap();
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ufmt::uwriteln!(self.serial, "Values: {} {} {}", dr_dg, dg, db_dg).unwrap();
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ufmt::uwriteln!(self.serial, "Diffs: {} {} {}", dr, dg, db).unwrap();
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ufmt::uwriteln!(
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self.serial,
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"Res: {} {} {}",
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self.last_pixel.0 as i8 + dr,
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self.last_pixel.1 as i8 + dg,
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self.last_pixel.2 as i8 + db
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)
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.unwrap();
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(
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Rgb565(
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(self.last_pixel.0 as i8).wrapping_add(dr) as u8,
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(self.last_pixel.1 as i8).wrapping_add(dg) as u8,
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(self.last_pixel.2 as i8).wrapping_add(db) as u8,
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),
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self.last_alpha,
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)
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} else if tag == 3 {
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// QOI_OP_RUN
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self.repeat = data;
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ufmt::uwriteln!(self.serial, "Repeat: {}", self.repeat).unwrap();
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(self.last_pixel, self.last_alpha)
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} else {
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(Rgb565::green(), 255)
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}
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};
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self.last_pixel = color;
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self.last_alpha = alpha;
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let hash =
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((color.0 as u32 * 3 + color.1 as u32 * 5 + color.2 as u32 * 7 + alpha as u32 * 11)
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% 64) as usize;
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ufmt::uwriteln!(
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self.serial,
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"Color: {} {} {} {}, Hash: {}",
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color.0,
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color.1,
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color.2,
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alpha,
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hash
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)
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.unwrap();
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self.prev_pixels[hash] = color;
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Some(color)
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} else {
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None
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}
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}
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}
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