5 changed files with 635 additions and 0 deletions
@ -0,0 +1,145 @@
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#![deny(warnings)] |
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use embedded_graphics::{ |
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mono_font::MonoTextStyleBuilder, |
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prelude::*, |
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primitives::{Circle, Line, PrimitiveStyle}, |
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text::{Baseline, Text, TextStyleBuilder}, |
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}; |
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use embedded_hal::prelude::*; |
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use epd_waveshare::{ |
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color::TriColor, |
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epd2in13bc_v3::{Display2in13bc, Epd2in13bc}, |
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graphics::DisplayRotation, |
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prelude::*, |
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}; |
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use linux_embedded_hal::{ |
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spidev::{self, SpidevOptions}, |
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sysfs_gpio::Direction, |
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Delay, Pin, Spidev, |
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}; |
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// The pins in this example are for the Universal e-Paper Raw Panel Driver HAT
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// activate spi, gpio in raspi-config
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// needs to be run with sudo because of some sysfs_gpio permission problems and follow-up timing problems
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// see https://github.com/rust-embedded/rust-sysfs-gpio/issues/5 and follow-up issues
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fn main() -> Result<(), std::io::Error> { |
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// Configure SPI
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// Settings are taken from
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let mut spi = Spidev::open("/dev/spidev0.0").expect("spidev directory"); |
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let options = SpidevOptions::new() |
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.bits_per_word(8) |
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.max_speed_hz(4_000_000) |
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.mode(spidev::SpiModeFlags::SPI_MODE_0) |
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.build(); |
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spi.configure(&options).expect("spi configuration"); |
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// Configure Digital I/O Pin to be used as Chip Select for SPI
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let cs = Pin::new(26); //BCM7 CE0
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cs.export().expect("cs export"); |
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while !cs.is_exported() {} |
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cs.set_direction(Direction::Out).expect("CS Direction"); |
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cs.set_value(1).expect("CS Value set to 1"); |
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let busy = Pin::new(24); // GPIO 24, board J-18
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busy.export().expect("busy export"); |
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while !busy.is_exported() {} |
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busy.set_direction(Direction::In).expect("busy Direction"); |
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//busy.set_value(1).expect("busy Value set to 1");
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let dc = Pin::new(25); // GPIO 25, board J-22
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dc.export().expect("dc export"); |
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while !dc.is_exported() {} |
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dc.set_direction(Direction::Out).expect("dc Direction"); |
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dc.set_value(1).expect("dc Value set to 1"); |
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let rst = Pin::new(17); // GPIO 17, board J-11
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rst.export().expect("rst export"); |
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while !rst.is_exported() {} |
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rst.set_direction(Direction::Out).expect("rst Direction"); |
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rst.set_value(1).expect("rst Value set to 1"); |
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let mut delay = Delay {}; |
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let mut epd2in13 = |
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Epd2in13bc::new(&mut spi, cs, busy, dc, rst, &mut delay).expect("eink initalize error"); |
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println!("Test all the rotations"); |
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let mut display = Display2in13bc::default(); |
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display.set_rotation(DisplayRotation::Rotate0); |
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draw_text(&mut display, "Rotate 0!", 5, 5); |
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display.set_rotation(DisplayRotation::Rotate90); |
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draw_text(&mut display, "Rotate 90!", 5, 5); |
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display.set_rotation(DisplayRotation::Rotate180); |
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draw_text(&mut display, "Rotate 180!", 5, 5); |
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display.set_rotation(DisplayRotation::Rotate270); |
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draw_text(&mut display, "Rotate 270!", 5, 5); |
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epd2in13.update_frame(&mut spi, display.buffer(), &mut delay)?; |
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epd2in13 |
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.display_frame(&mut spi, &mut delay) |
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.expect("display frame new graphics"); |
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delay.delay_ms(5000u16); |
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display.clear_buffer(TriColor::White); |
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println!("Now test new graphics with default rotation and some special stuff:"); |
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// draw a analog clock
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let _ = Circle::with_center(Point::new(52, 52), 80) |
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.into_styled(PrimitiveStyle::with_fill(TriColor::Chromatic)) |
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.draw(&mut display); |
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let _ = Circle::with_center(Point::new(52, 52), 80) |
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.into_styled(PrimitiveStyle::with_stroke(TriColor::Black, 3)) |
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.draw(&mut display); |
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let _ = Line::new(Point::new(52, 52), Point::new(18, 28)) |
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.into_styled(PrimitiveStyle::with_stroke(TriColor::White, 5)) |
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.draw(&mut display); |
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let _ = Line::new(Point::new(52, 52), Point::new(68, 28)) |
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.into_styled(PrimitiveStyle::with_stroke(TriColor::White, 1)) |
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.draw(&mut display); |
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// draw white on black background
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let style = MonoTextStyleBuilder::new() |
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.font(&embedded_graphics::mono_font::ascii::FONT_6X10) |
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.text_color(TriColor::White) |
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.background_color(TriColor::Chromatic) |
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.build(); |
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let text_style = TextStyleBuilder::new().baseline(Baseline::Top).build(); |
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let _ = Text::with_text_style("Hello World!", Point::new(112, 10), style, text_style) |
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.draw(&mut display); |
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// use bigger/different font
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let style = MonoTextStyleBuilder::new() |
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.font(&embedded_graphics::mono_font::ascii::FONT_10X20) |
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.text_color(TriColor::White) |
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.background_color(TriColor::Chromatic) |
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.build(); |
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let _ = Text::with_text_style("Hello\nWorld!", Point::new(112, 40), style, text_style) |
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.draw(&mut display); |
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epd2in13.update_color_frame(&mut spi, display.bw_buffer(), display.chromatic_buffer()).unwrap(); |
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epd2in13.display_frame(&mut spi, &mut delay).unwrap(); |
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println!("Finished tests - going to sleep"); |
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epd2in13.clear_frame(&mut spi, &mut delay).unwrap(); |
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epd2in13.sleep(&mut spi, &mut delay) |
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} |
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fn draw_text(display: &mut Display2in13bc, text: &str, x: i32, y: i32) { |
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let style = MonoTextStyleBuilder::new() |
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.font(&embedded_graphics::mono_font::ascii::FONT_6X10) |
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.text_color(TriColor::White) |
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.background_color(TriColor::Black) |
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.build(); |
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let text_style = TextStyleBuilder::new().baseline(Baseline::Top).build(); |
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let _ = Text::with_text_style(text, Point::new(x, y), style, text_style).draw(display); |
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} |
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@ -0,0 +1,141 @@
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use crate::traits; |
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/// Epd7in5b_v3 commands
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///
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/// Should rarely (never?) be needed directly.
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///
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/// For more infos about the addresses and what they are doing look into the PDFs.
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#[allow(dead_code)] |
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#[derive(Copy, Clone)] |
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pub(crate) enum Command { |
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/// Set Resolution, LUT selection, BWR pixels, gate scan direction, source shift
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/// direction, booster switch, soft reset.
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PanelSetting = 0x00, |
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/// Selecting internal and external power
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PowerSetting = 0x01, |
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/// After the Power Off command, the driver will power off following the Power Off
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/// Sequence; BUSY signal will become "0". This command will turn off charge pump,
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/// T-con, source driver, gate driver, VCOM, and temperature sensor, but register
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/// data will be kept until VDD becomes OFF. Source Driver output and Vcom will remain
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/// as previous condition, which may have 2 conditions: 0V or floating.
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PowerOff = 0x02, |
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/// Setting Power OFF sequence
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PowerOffSequenceSetting = 0x03, |
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/// Turning On the Power
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///
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/// After the Power ON command, the driver will power on following the Power ON
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/// sequence. Once complete, the BUSY signal will become "1".
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PowerOn = 0x04, |
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/// Starting data transmission
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BoosterSoftStart = 0x06, |
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/// This command makes the chip enter the deep-sleep mode to save power.
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///
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/// The deep sleep mode would return to stand-by by hardware reset.
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///
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/// The only one parameter is a check code, the command would be excuted if check code = 0xA5.
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DeepSleep = 0x07, |
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/// This command starts transmitting data and write them into SRAM. To complete data
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/// transmission, command DSP (Data Stop) must be issued. Then the chip will start to
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/// send data/VCOM for panel.
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///
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/// BLACK/WHITE or OLD_DATA
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DataStartTransmissionBlackWhite = 0x10, |
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/// To stop data transmission, this command must be issued to check the `data_flag`.
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///
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/// After this command, BUSY signal will become "0" until the display update is
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/// finished.
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DataStop = 0x11, |
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/// After this command is issued, driver will refresh display (data/VCOM) according to
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/// SRAM data and LUT.
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///
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/// After Display Refresh command, BUSY signal will become "0" until the display
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/// update is finished.
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DisplayRefresh = 0x12, |
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/// RED or NEW_DATA
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DataStartTransmissionChromatic = 0x13, |
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/// Dual SPI - what for?
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DualSpi = 0x15, |
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/// This command builds the VCOM Look-Up Table (LUTC).
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LutForVcom = 0x20, |
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/// This command builds the White to White Look-Up Table (LUTWW).
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LutWhiteToWhite = 0x21, |
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/// This command builds the Black to White Look-Up Table (LUTKW).
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LutBlackToWhite = 0x22, |
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/// This command builds the White to Black Look-Up Table (LUTWK).
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LutWhiteToBlack = 0x23, |
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/// This command builds the Black to Black Look-Up Table (LUTKK).
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LutBlackToBlack = 0x24, |
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/// This command builds the Border? Look-Up Table (LUTR0).
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LutBorder = 0x25, |
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/// This command builds the XON Look-Up Table (LUTXON).
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LutXon = 0x2A, |
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/// The command controls the PLL clock frequency.
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PllControl = 0x30, |
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/// This command reads the temperature sensed by the temperature sensor.
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TemperatureSensor = 0x40, |
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/// This command indicates the interval of Vcom and data output. When setting the
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/// vertical back porch, the total blanking will be kept (20 Hsync).
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VcomAndDataIntervalSetting = 0x50, |
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/// This command defines non-overlap period of Gate and Source.
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TconSetting = 0x60, |
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/// This command defines alternative resolution and this setting is of higher priority
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/// than the RES\[1:0\] in R00H (PSR).
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TconResolution = 0x61, |
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//TODO /// This command defines MCU host direct access external memory mode.
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GateSourceStart = 0x65, |
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/// The LUT_REV / Chip Revision is read from OTP address = 25001 and 25000.
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Revision = 0x70, |
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/// This command sets `VCOM_DC` value.
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VcmDcSetting = 0x82, |
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// TODO
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ProgramMode = 0xA0, |
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//
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// TODO
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ActiveProgram = 0xA1, |
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// TODO
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ReadOtpData = 0xA2, |
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// /// This is in all the Waveshare controllers for Epd7in5, but it's not documented
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// /// anywhere in the datasheet `¯\_(ツ)_/¯`
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// FlashMode = 0xE5,
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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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#[cfg(test)] |
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mod tests { |
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use super::*; |
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use crate::traits::Command as CommandTrait; |
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#[test] |
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fn command_addr() { |
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assert_eq!(Command::PanelSetting.address(), 0x00); |
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assert_eq!(Command::DisplayRefresh.address(), 0x12); |
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} |
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} |
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@ -0,0 +1,74 @@
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use crate::epd2in13bc_v3::{DEFAULT_BACKGROUND_COLOR, HEIGHT, WIDTH, NUM_DISPLAY_BITS}; |
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use crate::graphics::{DisplayColorRendering, DisplayRotation, TriDisplay}; |
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use crate::color::TriColor; |
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use embedded_graphics_core::prelude::*; |
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/// Full size buffer for use with the 7in5 EPD
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///
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/// Can also be manually constructed:
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/// `buffer: [DEFAULT_BACKGROUND_COLOR.get_byte_value(); WIDTH / 8 * HEIGHT]`
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pub struct Display2in13bc { |
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buffer: [u8; 2 * NUM_DISPLAY_BITS as usize], |
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rotation: DisplayRotation, |
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} |
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impl Default for Display2in13bc { |
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fn default() -> Self { |
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Display2in13bc { |
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buffer: [DEFAULT_BACKGROUND_COLOR.get_byte_value(); |
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2 * 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 DrawTarget for Display2in13bc { |
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type Color = TriColor; |
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type Error = core::convert::Infallible; |
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fn draw_iter<I>(&mut self, pixels: I) -> Result<(), Self::Error> |
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where |
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I: IntoIterator<Item = Pixel<Self::Color>>, |
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{ |
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for pixel in pixels { |
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self.draw_helper_tri(WIDTH, HEIGHT, pixel, DisplayColorRendering::Positive)?; |
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} |
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Ok(()) |
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} |
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} |
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impl OriginDimensions for Display2in13bc { |
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fn size(&self) -> Size { |
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Size::new(WIDTH, HEIGHT) |
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} |
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} |
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impl TriDisplay for Display2in13bc { |
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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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fn chromatic_offset(&self) -> usize { |
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NUM_DISPLAY_BITS as usize |
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} |
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fn bw_buffer(&self) -> &[u8] { |
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&self.buffer[0..self.chromatic_offset()] |
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} |
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fn chromatic_buffer(&self) -> &[u8] { |
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&self.buffer[self.chromatic_offset()..] |
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} |
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} |
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@ -0,0 +1,274 @@
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//! A simple Driver for the Waveshare 2.13" E-Ink Display (V3) via SPI
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//!
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//! # References
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//!
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//! - [Datasheet](https://www.waveshare.com/wiki/2.13inch_e-Paper_HAT_(B))
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//!
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//! Important note for V3:
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//! Revision V3 has been released on 2019.11, the resolution is upgraded to 212×104
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//! The hardware and interface of V2 are compatible with V1, however, the related software should be updated.
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use embedded_hal::{ |
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blocking::{delay::*, spi::Write}, |
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digital::v2::{InputPin, OutputPin}, |
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}; |
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use crate::color::TriColor; |
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use crate::interface::DisplayInterface; |
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use crate::prelude::{WaveshareThreeColorDisplay}; |
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use crate::traits::{InternalWiAdditions, RefreshLut, WaveshareDisplay}; |
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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::Display2in13bc; |
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/// Width of epd2in13bc_v3 in pixels
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pub const WIDTH: u32 = 104; |
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/// Height of epd2in13bc_v3 in pixels
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pub const HEIGHT: u32 = 212; |
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/// Default background color (white) of epd2in13bc_v3 display
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pub const DEFAULT_BACKGROUND_COLOR: TriColor = TriColor::White; |
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const IS_BUSY_LOW: bool = true; |
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/// Number of bits for b/w buffer and same for chromatic buffer
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const NUM_DISPLAY_BITS: u32 = WIDTH * HEIGHT / 8; |
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/// Epd2in13bc (V3) driver
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///
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pub struct Epd2in13bc<SPI, CS, BUSY, DC, RST, DELAY> { |
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// Connection Interface
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interface: DisplayInterface<SPI, CS, BUSY, DC, RST, DELAY>, |
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color: TriColor, |
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} |
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impl<SPI, CS, BUSY, DC, RST, DELAY> InternalWiAdditions<SPI, CS, BUSY, DC, RST, DELAY> |
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for Epd2in13bc<SPI, CS, BUSY, DC, RST, DELAY> |
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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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DELAY: DelayMs<u8>, |
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{ |
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fn init(&mut self, spi: &mut SPI, delay: &mut DELAY) -> Result<(), SPI::Error> { |
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// Reset the device
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self.interface.reset(delay, 10); |
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self.command(spi, Command::PowerOn)?; |
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self.wait_until_idle(spi, delay)?; |
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self.command_with_data(spi, Command::PanelSetting, &[0x0F, 0x89])?; |
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self.command_with_data(spi, Command::TconResolution, &[0x68, 0x00, 0xD4])?; |
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self.command_with_data(spi, Command::VcomAndDataIntervalSetting, &[0x77])?; |
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Ok(()) |
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} |
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} |
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impl<SPI, CS, BUSY, DC, RST, DELAY> WaveshareThreeColorDisplay<SPI, CS, BUSY, DC, RST, DELAY> |
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for Epd2in13bc<SPI, CS, BUSY, DC, RST, DELAY> |
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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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DELAY: DelayMs<u8>, |
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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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chromatic: &[u8], |
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) -> Result<(), SPI::Error> { |
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self.update_achromatic_frame(spi, black)?; |
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self.update_chromatic_frame(spi, chromatic) |
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} |
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|
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fn update_achromatic_frame(&mut self, spi: &mut SPI, black: &[u8]) -> Result<(), SPI::Error> { |
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self.command_with_data(spi, Command::DataStartTransmissionBlackWhite, black) |
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} |
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|
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fn update_chromatic_frame( |
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&mut self, |
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spi: &mut SPI, |
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chromatic: &[u8], |
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) -> Result<(), SPI::Error> { |
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self.command_with_data(spi, Command::DataStartTransmissionChromatic, chromatic) |
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} |
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} |
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|
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impl<SPI, CS, BUSY, DC, RST, DELAY> WaveshareDisplay<SPI, CS, BUSY, DC, RST, DELAY> |
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for Epd2in13bc<SPI, CS, BUSY, DC, RST, DELAY> |
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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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DELAY: DelayMs<u8>, |
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{ |
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type DisplayColor = TriColor; |
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fn new( |
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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 = Epd2in13bc { interface, color }; |
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epd.init(spi, delay)?; |
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|
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Ok(epd) |
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} |
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|
||||
fn wake_up(&mut self, spi: &mut SPI, delay: &mut DELAY) -> Result<(), SPI::Error> { |
||||
self.init(spi, delay) |
||||
} |
||||
|
||||
fn sleep(&mut self, spi: &mut SPI, delay: &mut DELAY) -> Result<(), SPI::Error> { |
||||
self.wait_until_idle(spi, delay)?; |
||||
self.command_with_data(spi, Command::VcomAndDataIntervalSetting, &[0xF7])?; |
||||
|
||||
self.command(spi, Command::PowerOff)?; |
||||
self.wait_until_idle(spi, delay)?; |
||||
|
||||
self.command_with_data(spi, Command::DeepSleep, &[0xA5])?; |
||||
Ok(()) |
||||
} |
||||
|
||||
fn update_frame( |
||||
&mut self, |
||||
spi: &mut SPI, |
||||
buffer: &[u8], |
||||
delay: &mut DELAY, |
||||
) -> Result<(), SPI::Error> { |
||||
self.wait_until_idle(spi, delay)?; |
||||
self.command_with_data(spi, Command::DataStartTransmissionBlackWhite, buffer)?; |
||||
|
||||
let color = self.color.get_byte_value(); |
||||
self.command(spi, Command::DataStartTransmissionChromatic)?; |
||||
self.interface.data_x_times(spi, color, WIDTH * HEIGHT / 8)?; |
||||
|
||||
self.wait_until_idle(spi, delay)?; |
||||
Ok(()) |
||||
} |
||||
|
||||
#[allow(unused)] |
||||
fn update_partial_frame( |
||||
&mut self, |
||||
spi: &mut SPI, |
||||
buffer: &[u8], |
||||
x: u32, |
||||
y: u32, |
||||
width: u32, |
||||
height: u32, |
||||
) -> Result<(), SPI::Error> { |
||||
unimplemented!() |
||||
} |
||||
|
||||
fn display_frame(&mut self, spi: &mut SPI, delay: &mut DELAY) -> Result<(), SPI::Error> { |
||||
self.command(spi, Command::DisplayRefresh)?; |
||||
self.wait_until_idle(spi, delay)?; |
||||
Ok(()) |
||||
} |
||||
|
||||
fn update_and_display_frame( |
||||
&mut self, |
||||
spi: &mut SPI, |
||||
buffer: &[u8], |
||||
delay: &mut DELAY, |
||||
) -> Result<(), SPI::Error> { |
||||
self.update_frame(spi, buffer, delay)?; |
||||
self.display_frame(spi, delay)?; |
||||
Ok(()) |
||||
} |
||||
|
||||
fn clear_frame(&mut self, spi: &mut SPI, delay: &mut DELAY) -> Result<(), SPI::Error> { |
||||
self.wait_until_idle(spi, delay)?; |
||||
|
||||
self.command(spi, Command::DataStartTransmissionBlackWhite)?; |
||||
self.interface.data_x_times(spi, 0xFF, WIDTH * HEIGHT / 8)?; |
||||
|
||||
self.command(spi, Command::DataStartTransmissionChromatic)?; |
||||
self.interface.data_x_times(spi, 0xFF, WIDTH * HEIGHT / 8)?; |
||||
|
||||
self.command(spi, Command::DisplayRefresh)?; |
||||
Ok(()) |
||||
} |
||||
|
||||
fn set_background_color(&mut self, color: TriColor) { |
||||
self.color = color; |
||||
} |
||||
|
||||
fn background_color(&self) -> &TriColor { |
||||
&self.color |
||||
} |
||||
|
||||
fn width(&self) -> u32 { |
||||
WIDTH |
||||
} |
||||
|
||||
fn height(&self) -> u32 { |
||||
HEIGHT |
||||
} |
||||
|
||||
fn set_lut( |
||||
&mut self, |
||||
_spi: &mut SPI, |
||||
_refresh_rate: Option<RefreshLut>, |
||||
) -> Result<(), SPI::Error> { |
||||
unimplemented!() |
||||
} |
||||
|
||||
fn is_busy(&self) -> bool { |
||||
self.interface.is_busy(IS_BUSY_LOW) |
||||
} |
||||
} |
||||
|
||||
impl<SPI, CS, BUSY, DC, RST, DELAY> Epd2in13bc<SPI, CS, BUSY, DC, RST, DELAY> |
||||
where |
||||
SPI: Write<u8>, |
||||
CS: OutputPin, |
||||
BUSY: InputPin, |
||||
DC: OutputPin, |
||||
RST: OutputPin, |
||||
DELAY: DelayMs<u8>, |
||||
{ |
||||
fn command(&mut self, spi: &mut SPI, command: Command) -> Result<(), SPI::Error> { |
||||
self.interface.cmd(spi, command) |
||||
} |
||||
|
||||
fn send_data(&mut self, spi: &mut SPI, data: &[u8]) -> Result<(), SPI::Error> { |
||||
self.interface.data(spi, data) |
||||
} |
||||
|
||||
fn command_with_data( |
||||
&mut self, |
||||
spi: &mut SPI, |
||||
command: Command, |
||||
data: &[u8], |
||||
) -> Result<(), SPI::Error> { |
||||
self.interface.cmd_with_data(spi, command, data) |
||||
} |
||||
|
||||
fn wait_until_idle(&mut self, spi: &mut SPI, delay: &mut DELAY) -> Result<(), SPI::Error> { |
||||
while self.interface.is_busy(IS_BUSY_LOW) { |
||||
self.interface.cmd(spi, Command::Revision)?; |
||||
delay.delay_ms(20); |
||||
} |
||||
Ok(()) |
||||
} |
||||
} |
||||
Loading…
Reference in new issue