Add epd2in9b support
parent
8829f9a315
commit
20a01a25bf
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@ -18,12 +18,13 @@ edition = "2018"
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travis-ci = { repository = "caemor/epd-waveshare" }
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[features]
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default = ["epd1in54", "epd1in54b", "epd2in9", "epd4in2", "epd7in5", "epd7in5_v2", "graphics"]
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default = ["epd1in54", "epd1in54b", "epd2in9", "epd2in9b", "epd4in2", "epd7in5", "epd7in5_v2", "graphics"]
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graphics = ["embedded-graphics"]
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epd1in54 = []
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epd1in54b = []
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epd2in9 = []
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epd2in9b = []
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epd4in2 = []
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epd7in5 = []
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epd7in5_v2 = []
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11
src/color.rs
11
src/color.rs
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@ -9,6 +9,17 @@ pub enum Color {
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White,
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}
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/// Only for the Black/White/Color-Displays
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#[derive(Clone, Copy, PartialEq, Debug)]
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pub enum TriColor {
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/// Black color
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Black,
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/// White color
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White,
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/// Red color
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Red,
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}
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//TODO: Rename get_bit_value to bit() and get_byte_value to byte() ?
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impl Color {
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@ -0,0 +1,39 @@
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//! SPI Commands for the Waveshare 2.9" red E-Ink Display
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use crate::traits;
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#[allow(dead_code)]
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#[allow(non_camel_case_types)]
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#[derive(Copy, Clone)]
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pub(crate) enum Command {
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PANEL_SETTING = 0x00,
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POWER_SETTING = 0x01,
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POWER_OFF = 0x02,
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POWER_ON = 0x04,
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BOOSTER_SOFT_START = 0x06,
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DEEP_SLEEP = 0x07,
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DATA_START_TRANSMISSION_1 = 0x10,
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DISPLAY_REFRESH = 0x12,
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DATA_START_TRANSMISSION_2 = 0x13,
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LUT_FOR_VCOM = 0x20,
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LUT_WHITE_TO_WHITE = 0x21,
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LUT_BLACK_TO_WHITE = 0x22,
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LUT_WHITE_TO_BLACK = 0x23,
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LUT_BLACK_TO_BLACK = 0x24,
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PLL_CONTROL = 0x30,
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TEMPERATURE_SENSOR_COMMAND = 0x40,
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TEMPERATURE_SENSOR_SELECTION = 0x41,
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VCOM_AND_DATA_INTERVAL_SETTING = 0x50,
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RESOLUTION_SETTING = 0x61,
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VCM_DC_SETTING = 0x82,
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POWER_SAVING = 0xE3,
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}
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impl traits::Command for Command {
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/// Returns the address of the command
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fn address(self) -> u8 {
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self as u8
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}
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}
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@ -0,0 +1,45 @@
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use crate::epd2in9b::{DEFAULT_BACKGROUND_COLOR, HEIGHT, NUM_DISPLAY_BITS, WIDTH};
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use crate::graphics::{Display, DisplayRotation};
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use crate::prelude::*;
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use embedded_graphics::prelude::*;
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pub struct Display2in9b {
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buffer: [u8; NUM_DISPLAY_BITS as usize],
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rotation: DisplayRotation,
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}
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impl Default for Display2in9b {
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fn default() -> Self {
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Display2in9b {
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buffer: [DEFAULT_BACKGROUND_COLOR.get_byte_value(); NUM_DISPLAY_BITS as usize],
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rotation: DisplayRotation::default(),
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}
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}
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}
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impl Drawing<Color> for Display2in9b {
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fn draw<T>(&mut self, item_pixels: T)
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where
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T: IntoIterator<Item = Pixel<Color>>,
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{
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self.draw_helper(WIDTH, HEIGHT, item_pixels);
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}
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}
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impl Display for Display2in9b {
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fn buffer(&self) -> &[u8] {
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&self.buffer
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}
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fn get_mut_buffer(&mut self) -> &mut [u8] {
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&mut self.buffer
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}
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fn set_rotation(&mut self, rotation: DisplayRotation) {
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self.rotation = rotation;
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}
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fn rotation(&self) -> DisplayRotation {
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self.rotation
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}
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}
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@ -0,0 +1,322 @@
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//! A simple Driver for the Waveshare 2.9" (B) E-Ink Display via SPI
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use embedded_hal::{
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blocking::{delay::*, spi::Write},
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digital::v2::*,
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};
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use crate::interface::DisplayInterface;
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use crate::traits::{
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InternalWiAdditions, RefreshLUT, WaveshareDisplay, WaveshareThreeColorDisplay,
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};
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pub const WIDTH: u32 = 128;
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pub const HEIGHT: u32 = 296;
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pub const NUM_DISPLAY_BITS: u32 = WIDTH * HEIGHT / 8;
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pub const DEFAULT_BACKGROUND_COLOR: Color = Color::White;
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const IS_BUSY_LOW: bool = true;
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const VCOM_DATA_INTERVAL: u8 = 0x07;
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const WHITE_BORDER: u8 = 0x70;
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const BLACK_BORDER: u8 = 0x30;
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const RED_BORDER: u8 = 0xb0;
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const FLOATING_BORDER: u8 = 0xF0;
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use crate::color::{Color, TriColor};
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pub(crate) mod command;
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use self::command::Command;
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#[cfg(feature = "graphics")]
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mod graphics;
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#[cfg(feature = "graphics")]
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pub use self::graphics::Display2in9b;
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/// EPD2in9b driver
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pub struct EPD2in9b<SPI, CS, BUSY, DC, RST> {
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interface: DisplayInterface<SPI, CS, BUSY, DC, RST>,
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color: Color,
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}
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impl<SPI, CS, BUSY, DC, RST> InternalWiAdditions<SPI, CS, BUSY, DC, RST>
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for EPD2in9b<SPI, CS, BUSY, DC, RST>
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where
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SPI: Write<u8>,
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CS: OutputPin,
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BUSY: InputPin,
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DC: OutputPin,
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RST: OutputPin,
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{
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fn init<DELAY: DelayMs<u8>>(
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&mut self,
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spi: &mut SPI,
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delay: &mut DELAY,
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) -> Result<(), SPI::Error> {
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// Values taken from datasheet and sample code
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self.interface.reset(delay);
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// start the booster
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self.interface
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.cmd_with_data(spi, Command::BOOSTER_SOFT_START, &[0x17, 0x17, 0x17])?;
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// power on
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self.command(spi, Command::POWER_ON)?;
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delay.delay_ms(5);
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self.wait_until_idle();
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// set the panel settings
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self.cmd_with_data(spi, Command::PANEL_SETTING, &[0x8F])?;
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self.cmd_with_data(
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spi,
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Command::VCOM_AND_DATA_INTERVAL_SETTING,
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&[WHITE_BORDER | VCOM_DATA_INTERVAL],
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)?;
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// set resolution
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self.send_resolution(spi)?;
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self.cmd_with_data(spi, Command::VCM_DC_SETTING, &[0x0A])?;
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self.wait_until_idle();
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Ok(())
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}
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}
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impl<SPI, CS, BUSY, DC, RST> WaveshareThreeColorDisplay<SPI, CS, BUSY, DC, RST>
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for EPD2in9b<SPI, CS, BUSY, DC, RST>
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where
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SPI: Write<u8>,
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CS: OutputPin,
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BUSY: InputPin,
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DC: OutputPin,
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RST: OutputPin,
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{
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fn update_color_frame(
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&mut self,
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spi: &mut SPI,
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black: &[u8],
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red: &[u8],
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) -> Result<(), SPI::Error> {
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self.update_mono_frame(spi, black)?;
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self.update_red_frame(spi, red)
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}
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}
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impl<SPI, CS, BUSY, DC, RST> WaveshareDisplay<SPI, CS, BUSY, DC, RST>
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for EPD2in9b<SPI, CS, BUSY, DC, RST>
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where
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SPI: Write<u8>,
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CS: OutputPin,
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BUSY: InputPin,
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DC: OutputPin,
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RST: OutputPin,
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{
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fn new<DELAY: DelayMs<u8>>(
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spi: &mut SPI,
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cs: CS,
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busy: BUSY,
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dc: DC,
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rst: RST,
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delay: &mut DELAY,
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) -> Result<Self, SPI::Error> {
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let interface = DisplayInterface::new(cs, busy, dc, rst);
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let color = DEFAULT_BACKGROUND_COLOR;
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let mut epd = EPD2in9b { interface, color };
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epd.init(spi, delay)?;
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Ok(epd)
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}
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fn sleep(&mut self, spi: &mut SPI) -> Result<(), SPI::Error> {
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// Section 8.2 from datasheet
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self.interface.cmd_with_data(
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spi,
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Command::VCOM_AND_DATA_INTERVAL_SETTING,
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&[FLOATING_BORDER | VCOM_DATA_INTERVAL],
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)?;
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self.command(spi, Command::POWER_OFF)?;
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// The example STM code from Github has a wait after POWER_OFF
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self.wait_until_idle();
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self.cmd_with_data(spi, Command::DEEP_SLEEP, &[0xA5])?;
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Ok(())
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}
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fn wake_up<DELAY: DelayMs<u8>>(
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&mut self,
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spi: &mut SPI,
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delay: &mut DELAY,
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) -> Result<(), SPI::Error> {
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self.init(spi, delay)
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}
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fn set_background_color(&mut self, color: Color) {
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self.color = color;
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}
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fn background_color(&self) -> &Color {
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&self.color
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}
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fn width(&self) -> u32 {
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WIDTH
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}
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fn height(&self) -> u32 {
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HEIGHT
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}
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fn update_frame(&mut self, spi: &mut SPI, buffer: &[u8]) -> Result<(), SPI::Error> {
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self.interface
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.cmd(spi, Command::DATA_START_TRANSMISSION_1)?;
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self.interface.data(spi, &buffer)?;
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// Clear the red layer
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let color = self.color.get_byte_value();
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self.interface
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.cmd(spi, Command::DATA_START_TRANSMISSION_2)?;
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self.interface.data_x_times(spi, color, NUM_DISPLAY_BITS)?;
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self.wait_until_idle();
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Ok(())
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}
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#[allow(unused)]
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fn update_partial_frame(
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&mut self,
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spi: &mut SPI,
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buffer: &[u8],
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x: u32,
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y: u32,
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width: u32,
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height: u32,
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) -> Result<(), SPI::Error> {
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Ok(())
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}
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fn display_frame(&mut self, spi: &mut SPI) -> Result<(), SPI::Error> {
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self.command(spi, Command::DISPLAY_REFRESH)?;
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self.wait_until_idle();
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Ok(())
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}
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fn clear_frame(&mut self, spi: &mut SPI) -> Result<(), SPI::Error> {
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self.send_resolution(spi)?;
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let color = DEFAULT_BACKGROUND_COLOR.get_byte_value();
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// Clear the black
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self.interface
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.cmd(spi, Command::DATA_START_TRANSMISSION_1)?;
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self.interface.data_x_times(spi, color, NUM_DISPLAY_BITS)?;
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// Clear the red
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self.interface
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.cmd(spi, Command::DATA_START_TRANSMISSION_2)?;
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self.interface.data_x_times(spi, color, NUM_DISPLAY_BITS)?;
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self.wait_until_idle();
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Ok(())
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}
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fn set_lut(
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&mut self,
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_spi: &mut SPI,
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_refresh_rate: Option<RefreshLUT>,
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) -> Result<(), SPI::Error> {
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Ok(())
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}
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fn is_busy(&self) -> bool {
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self.interface.is_busy(IS_BUSY_LOW)
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}
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}
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impl<SPI, CS, BUSY, DC, RST> EPD2in9b<SPI, CS, BUSY, DC, RST>
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where
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SPI: Write<u8>,
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CS: OutputPin,
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BUSY: InputPin,
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DC: OutputPin,
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RST: OutputPin,
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{
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fn command(&mut self, spi: &mut SPI, command: Command) -> Result<(), SPI::Error> {
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self.interface.cmd(spi, command)
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}
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fn send_data(&mut self, spi: &mut SPI, data: &[u8]) -> Result<(), SPI::Error> {
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self.interface.data(spi, data)
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}
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fn cmd_with_data(
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&mut self,
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spi: &mut SPI,
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command: Command,
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data: &[u8],
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) -> Result<(), SPI::Error> {
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self.interface.cmd_with_data(spi, command, data)
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}
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fn wait_until_idle(&mut self) {
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self.interface.wait_until_idle(IS_BUSY_LOW)
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}
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fn send_resolution(&mut self, spi: &mut SPI) -> Result<(), SPI::Error> {
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let w = self.width();
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let h = self.height();
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self.command(spi, Command::RESOLUTION_SETTING)?;
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self.send_data(spi, &[w as u8])?;
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self.send_data(spi, &[(h >> 8) as u8])?;
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self.send_data(spi, &[h as u8])
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}
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/// Set the outer border of the display to the chosen color.
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pub fn set_border_color(&mut self, spi: &mut SPI, color: TriColor) -> Result<(), SPI::Error> {
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let border = match color {
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TriColor::Black => BLACK_BORDER,
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TriColor::White => WHITE_BORDER,
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TriColor::Red => RED_BORDER,
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};
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self.cmd_with_data(
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spi,
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Command::VCOM_AND_DATA_INTERVAL_SETTING,
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&[border | VCOM_DATA_INTERVAL],
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)
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}
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/// Update only the black/white data of the display.
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///
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/// Finish by calling `update_red_frame`.
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pub fn update_mono_frame(&mut self, spi: &mut SPI, black: &[u8]) -> Result<(), SPI::Error> {
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self.interface
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.cmd(spi, Command::DATA_START_TRANSMISSION_1)?;
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self.interface.data(spi, black)?;
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Ok(())
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}
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/// Update only red data of the display.
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///
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/// This data takes precedence over the black/white data.
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pub fn update_red_frame(&mut self, spi: &mut SPI, red: &[u8]) -> Result<(), SPI::Error> {
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self.interface
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.cmd(spi, Command::DATA_START_TRANSMISSION_2)?;
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self.interface.data(spi, red)?;
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self.wait_until_idle();
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Ok(())
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}
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}
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@ -81,11 +81,14 @@ pub mod epd1in54b;
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#[cfg(feature = "epd2in9")]
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pub mod epd2in9;
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#[cfg(feature = "epd2in9b")]
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pub mod epd2in9b;
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#[cfg(any(feature = "epd1in54", feature = "epd2in9"))]
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pub(crate) mod type_a;
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pub mod prelude {
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pub use crate::color::Color;
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pub use crate::color::{Color, TriColor};
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pub use crate::traits::{RefreshLUT, WaveshareDisplay, WaveshareThreeColorDisplay};
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#[cfg(feature = "epd7in5_v2")]
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