2022-05-26 15:11:00 +02:00
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#pragma once
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#include <stdint.h>
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#include <avr/pgmspace.h>
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#include "../clock.hpp"
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#include "../io/io.hpp"
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2022-05-26 16:03:38 +02:00
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namespace eink {
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2022-05-26 15:11:00 +02:00
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2022-05-26 16:03:38 +02:00
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template <uint16_t Width, uint16_t Height, typename Spi, io::P RstPin, io::P DcPin, io::P BusyPin>
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class Eink {
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struct Cmd {
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static constexpr auto SW_RESET = uint8_t{0x12};
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static constexpr auto DRIVER_OUTPUT_CONTROL = uint8_t{0x01};
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static constexpr auto DATA_ENTRY_MODE = uint8_t{0x11};
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static constexpr auto SET_RAM_X_ADDR_POSITIONS = uint8_t{0x44};
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static constexpr auto SET_RAM_Y_ADDR_POSITIONS = uint8_t{0x45};
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static constexpr auto BORDER_WAVEFORM_CONTROL = uint8_t{0x3C};
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static constexpr auto READ_TEMPERATURE_SENSOR = uint8_t{0x18};
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static constexpr auto SET_RAM_X_ADDR = uint8_t{0x4E};
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static constexpr auto SET_RAM_Y_ADDR = uint8_t{0x4F};
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static constexpr auto WRITE_RAM_BLACK = uint8_t{0x24};
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static constexpr auto WRITE_RAM_RED = uint8_t{0x26};
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static constexpr auto DISPLAY_UPDATE_CONTROL_2 = uint8_t{0x22};
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static constexpr auto UPDATE_DISPLAY = uint8_t{0x20};
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static constexpr auto DEEP_SLEEP_MODE = uint8_t{0x10};
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};
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static io::Pin<RstPin> m_rst;
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static io::Pin<DcPin> m_dc;
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static io::Pin<BusyPin> m_bsy;
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public:
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static void init()
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{
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m_rst.dir(io::Dir::OUT);
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m_dc.dir(io::Dir::OUT);
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m_bsy.dir(io::Dir::IN);
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Spi::init();
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reset();
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waitUntilIdle();
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sendCommand(Cmd::SW_RESET);
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waitUntilIdle();
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sendCommand(Cmd::DRIVER_OUTPUT_CONTROL);
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sendData(0xC7);
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sendData(0x00);
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sendData(0x01);
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sendCommand(Cmd::DATA_ENTRY_MODE);
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sendData(0x02);
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sendCommand(Cmd::SET_RAM_X_ADDR_POSITIONS);
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sendData(Width / 8 - 1);
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sendData(0x00);
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sendCommand(Cmd::SET_RAM_Y_ADDR_POSITIONS);
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sendData(0x00);
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sendData(0x00);
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sendData(Height - 1);
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sendData(0x00);
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sendCommand(Cmd::BORDER_WAVEFORM_CONTROL);
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sendData(0x05);
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sendCommand(Cmd::READ_TEMPERATURE_SENSOR);
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sendData(0x80);
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sendCommand(Cmd::SET_RAM_X_ADDR);
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sendData(Width / 8 - 1);
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sendCommand(Cmd::SET_RAM_Y_ADDR);
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sendData(0x00);
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sendData(0x00);
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waitUntilIdle();
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}
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static void sendCommand(const uint8_t command)
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{
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m_dc = false;
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spiTransfer(command);
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}
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static void sendData(const uint8_t data)
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{
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m_dc = true;
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spiTransfer(data);
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}
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static void waitUntilIdle()
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{
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while (m_bsy) {
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_delay_ms(100);
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}
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}
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static void reset()
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{
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m_rst = true;
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_delay_ms(200);
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m_rst = false;
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_delay_ms(10);
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m_rst = true;
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_delay_ms(200);
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}
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static void draw(const uint8_t *blackFrame, const uint8_t *redFrame)
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{
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sendCommand(Cmd::WRITE_RAM_BLACK);
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for (auto i = uint16_t{0}; i < Width * Height / 8; i++) {
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sendData(pgm_read_byte(&blackFrame[i]));
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}
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sendCommand(Cmd::WRITE_RAM_RED);
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for (auto i = uint16_t{0}; i < Width * Height / 8; i++) {
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sendData(~pgm_read_byte(&redFrame[i]));
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}
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sendCommand(Cmd::DISPLAY_UPDATE_CONTROL_2);
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sendData(0xF7);
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sendCommand(Cmd::UPDATE_DISPLAY);
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waitUntilIdle();
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}
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static void clear()
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{
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sendCommand(Cmd::WRITE_RAM_BLACK);
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for (auto i = uint16_t{0}; i < Width * Height / 8; i++) {
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sendData(0xff);
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}
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sendCommand(Cmd::WRITE_RAM_RED);
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for (auto i = uint16_t{0}; i < Width * Height / 8; i++) {
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sendData(0x00);
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}
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sendCommand(Cmd::DISPLAY_UPDATE_CONTROL_2);
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sendData(0xF7);
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sendCommand(Cmd::UPDATE_DISPLAY);
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waitUntilIdle();
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}
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static void sleep()
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{
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sendCommand(Cmd::DEEP_SLEEP_MODE);
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sendData(0x01);
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_delay_ms(100);
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}
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static void spiTransfer(const uint8_t data)
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{
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Spi::select(true);
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Spi::transfer(data);
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Spi::select(false);
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}
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};
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} // namespace eink
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