Updated for better use as a module
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@@ -4,7 +4,7 @@ use sprite::*;
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pub struct GraphicsBuf {
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pub struct GraphicsBuf {
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buffer: [u8; 8192],
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buffer: [u8; 8192],
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sprites: [Sprite; 30],
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pub sprites: [Sprite; 30],
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sprite_atlas: SpriteAtlas,
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sprite_atlas: SpriteAtlas,
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}
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}
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@@ -25,6 +25,7 @@ impl Sprite {
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#[repr(u8)]
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#[repr(u8)]
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#[derive(Copy, Clone)]
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#[derive(Copy, Clone)]
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#[allow(unused)]
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pub enum SpriteFlip {
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pub enum SpriteFlip {
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None = 0,
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None = 0,
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Horizontal = 1,
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Horizontal = 1,
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126
src/sh1106.rs
Normal file
126
src/sh1106.rs
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@@ -0,0 +1,126 @@
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use cortex_m::delay::Delay;
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use embedded_hal::i2c::I2c;
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use rp2040_hal::i2c::Error;
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use defmt as _;
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use crate::graphics::GraphicsBuf;
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#[allow(unused)]
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#[repr(u8)]
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#[derive(PartialEq, Copy, Clone)]
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pub enum SH1106Cmd {
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SetColumnLo = 0,
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SetColumnHi = 0x10,
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DisplayInvert = 0xA6,
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DisplayOnOff = 0xAE,
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ColDirectionNorm = 0xC0,
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ColDirectionRev = 0xC8,
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SetPage = 0xB0,
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}
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pub const SH1106_I2C_ADDR: u8 = 0x78u8 >> 1;
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pub struct SH1106Dev {
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ready: bool,
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}
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impl SH1106Dev {
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pub fn new(delay: &mut Delay, mut i2c: &mut dyn I2c<Error = Error>) -> Self {
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send_command(&mut i2c, &SH1106Cmd::DisplayOnOff, 0x00);
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delay.delay_ms(100);
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send_command(&mut i2c, &SH1106Cmd::DisplayInvert, 0);
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send_command(&mut i2c, &SH1106Cmd::ColDirectionNorm, 0);
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set_col(&mut i2c, 2);
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set_page(&mut i2c, 0);
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clr_screen(&mut i2c);
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delay.delay_ms(500);
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send_command(&mut i2c, &SH1106Cmd::DisplayOnOff, 0x01);
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SH1106Dev { ready: true }
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}
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pub fn blit_framebuffer(&self, i2c: &mut dyn I2c<Error = Error>, gfx_buf: &GraphicsBuf) {
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if !self.ready {
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panic!("Attempted to use SSH1106 before initialized.");
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}
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let buf = gfx_buf.get_px_buffer();
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// for each row of 8x8 pixels
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for r in 0..8 {
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set_page(i2c, r);
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set_col(i2c, 2);
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// for each cel of 8x8 pixels
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for c in 0..16 {
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let mut cel = [0u8; 8];
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// so our x,y here would be r * 128 + c * 8
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// start assembling the 8x8 cel
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for x in 0..8 {
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let mut col_byte = 0u8;
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// for each row of the cel
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for y in 0..8 {
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let pix_x = (c as usize) * 8 + x;
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let pix_y = (r as usize) * 8 + y;
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col_byte |= buf[pix_y * 128 + pix_x] << y;
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}
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cel[x] = col_byte;
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}
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write_cel_pixels(i2c, &cel);
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}
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}
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}
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}
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fn send_command(i2c: &mut dyn I2c<Error = Error>, command: &SH1106Cmd, data: u8) {
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let mut writebuf: [u8; 2] = [0; 2];
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writebuf[0] = 0b1000_0000;
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writebuf[1] = (command.clone() as u8) | data;
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match i2c.write(SH1106_I2C_ADDR, &writebuf) {
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_ => (),
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};
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}
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fn set_col(i2c: &mut dyn I2c<Error = Error>, col: u8) {
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let col_lo = col & 0b0000_1111;
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let col_hi = (col & 0b1111_0000) >> 4;
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send_command(i2c, &SH1106Cmd::SetColumnLo, col_lo);
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send_command(i2c, &SH1106Cmd::SetColumnHi, col_hi);
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}
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fn set_page(i2c: &mut dyn I2c<Error = Error>, page: u8) {
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send_command(i2c, &SH1106Cmd::SetPage, page & 0b0000_0111);
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}
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fn clr_screen(i2c: &mut dyn I2c<Error = Error>) {
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let mut writebuf = [0u8; 132 * 8 + 1];
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writebuf[0] = 0b0100_0000;
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for i in 0..8 {
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match i2c.write(SH1106_I2C_ADDR, &writebuf) {
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_ => (),
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};
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set_page(i2c, i);
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}
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}
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fn write_cel_pixels(i2c: &mut dyn I2c<Error = Error>, data: &[u8]) {
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let mut writebuf = [0b0100_0000u8; 9];
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writebuf[0] = 0b0100_0000;
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writebuf[1..].copy_from_slice(&data[0..8]);
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match i2c.write(SH1106_I2C_ADDR, &writebuf) {
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_ => (),
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};
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}
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