mirror of
https://github.com/DCC-EX/CommandStation-EX.git
synced 2024-11-23 08:06:13 +01:00
187 lines
5.3 KiB
Plaintext
187 lines
5.3 KiB
Plaintext
/*
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* © 2024, Henk Kruisbrink & Chris Harlow. All rights reserved.
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* © 2023, Neil McKechnie. All rights reserved.
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*
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* This file is part of DCC++EX API
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*
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* This is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* It is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with CommandStation. If not, see <https://www.gnu.org/licenses/>.
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*/
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/*
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*
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* Dec 2023, Added NXP SC16IS752 I2C Dual UART
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* The SC16IS752 has 64 bytes TX & RX FIFO buffer
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* First version without interrupts from I2C UART and only RX/TX are used, interrupts may not be
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* needed as the RX Fifo holds the reply
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*
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* Jan 2024, Issue with using both UARTs simultaniously, the secod uart seems to work but the first transmit
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* corrupt data. This need more analysis and experimenatation.
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* Will push this driver to the dev branch with the uart fixed to 0
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* Both SC16IS750 (single uart) and SC16IS752 (dual uart, but only uart 0 is enable)
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*
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* myHall.cpp configuration syntax:
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*
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* I2CRailcom::create(1st vPin, vPins, I2C address);
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*
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* myAutomation configuration
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* HAL(I2CRailcom, 1st vPin, vPins, I2C address)
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* Parameters:
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* 1st vPin : First virtual pin that EX-Rail can control to play a sound, use PLAYSOUND command (alias of ANOUT)
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* vPins : Total number of virtual pins allocated (2 vPins are supported, one for each UART)
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* 1st vPin for UART 0, 2nd for UART 1
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* I2C Address : I2C address of the serial controller, in 0x format
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*/
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#ifndef IO_TM1638_h
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#define IO_TM1638_h
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#include <Arduino.h>
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#include "IODevice.h"
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#include "I2CManager.h"
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#include "DIAG.h"
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class TM1638 : public IODevice {
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private:
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static const uint8_t
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INSTRUCTION_WRITE_DATA=0x40,
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INSTRUCTION_READ_KEY=0x42,
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INSTRUCTION_ADDRESS_AUTO=0x40,
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INSTRUCTION_ADDRESS_FIXED=0x44,
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INSTRUCTION_NORMAL_MODE=0x40,
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INSTRUCTION_TEST_MODE=0x48,
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FIRST_DISPLAY_ADDRESS=0xC0,
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DISPLAY_TURN_OFF=0x80,
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DISPLAY_TURN_ON=0x88;
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static constexpr uint8_t _digits[16]={ // 7-segment hex
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0b00111111,0b00000110,0b01011011,0b01001111,
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0b01100110,0b01101101,0b01111101,0b00000111,
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0b01111111,0b01101111,0b01110111,0b01111100,
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0b00111001,0b01011110,0b01111001,0b01110001
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};
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uint8_t _clk_pin;
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uint8_t _stb_pin;
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uint8_t _dio_pin;
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uint8_t _buttons;
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uint8_t _leds;
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uint8_t _pulse;
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private:
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// Constructor
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TM1638(VPIN firstVpin, byte clk_pin,byte stb_pin,byte dio_pin){
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_firstVpin = firstVpin;
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_nPins = 8;
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_clk_pin=clk_pin;
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_stb_pin=stb_pin;
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_dio_pin=dio_pin;
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_buttons=0;
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_leds=0;
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_pulse=4;
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pinMode(stb_pin, OUTPUT);
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pinMode(clk_pin, OUTPUT);
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pinMode(dio_pin, OUTPUT);
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ArduinoPins::fastWriteDigital(stb_pin, HIGH);
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ArduinoPins::fastWriteDigital(clk_pin, HIGH);
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ArduinoPins::fastWriteDigital(dio_pin, HIGH);
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addDevice(this);
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}
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public:
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static void create(VPIN firstVpin, byte clk_pin,byte stb_pin,byte dio_pin) {
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if (checkNoOverlap(firstVpin,8))
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new TM1638(firstVpin, clk_pin,stb_pin,dio_pin);
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}
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void _begin() override {
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_deviceState = DEVSTATE_NORMAL;
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writeCommand(DISPLAY_TURN_ON | _pulse);
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_display();
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}
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void strobe(bool on) {
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ArduinoPins::fastWriteDigital(_stb_pin, on?LOW:HIGH); // select device
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delayMicroseconds(1);
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}
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void _loop(unsigned long currentMicros) override {
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// Read the buttons
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strobe(true);
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writeData(INSTRUCTION_READ_KEY);
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pinMode(_dio_pin, INPUT);
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_buttons=0;
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for (uint8_t i=0; 4;i++){
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auto data = readData();
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_buttons |= ((data>>4) & 0x01) | (data & 0x01);
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_buttons <<= 2;
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}
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pinMode(_dio_pin,OUTPUT);
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strobe(false);
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}
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void _display() override {
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DIAG(F("TM1638 Configured on Vpins:%u-%u"), _firstVpin, _firstVpin+_nPins-1);
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}
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// digital read gets button state
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int _read(VPIN vpin) override {
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return bitRead(_buttons,vpin - _firstVpin);
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}
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// digital write sets led state
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void _write(VPIN vpin, int value) override {
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auto pin=vpin-_firstVpin;
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writeCommand(INSTRUCTION_WRITE_DATA | INSTRUCTION_ADDRESS_FIXED);
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strobe(true);
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writeData(FIRST_DISPLAY_ADDRESS + (pin*2+1));
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writeData(value?0x01:0x00);
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strobe(false);
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}
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void writeCommand(uint8_t val)
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{
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strobe(true);
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writeData(val);
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strobe(false);
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}
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void writeData(uint8_t val)
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{
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ArduinoPins::fastWriteDigital(_clk_pin, LOW);
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for (uint8_t i = 0; i < 8; i++) {
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ArduinoPins::fastWriteDigital(_dio_pin, val & 1);
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val >>= 1;
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ArduinoPins::fastWriteDigital(_clk_pin, HIGH);
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ArduinoPins::fastWriteDigital(_clk_pin, LOW);
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}
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}
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uint8_t readData() {
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uint8_t value = 0;
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ArduinoPins::fastWriteDigital(_clk_pin, LOW);
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for (uint8_t i = 0; i < 8; ++i) {
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ArduinoPins::fastWriteDigital(_clk_pin, HIGH);
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value |= ArduinoPins::fastReadDigital(_dio_pin) << i;
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ArduinoPins::fastWriteDigital(_clk_pin, LOW);
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}
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return value;
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}
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};
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#endif // IO_I2CRailcom_h
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