mirror of https://github.com/arendst/Tasmota.git
228 lines
5.6 KiB
C++
228 lines
5.6 KiB
C++
/*
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xsns_28_tm1638.ino - TM1638 8 switch, led and 7 segment unit support for Tasmota
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Copyright (C) 2020 Theo Arends
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This program 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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This program 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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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#ifdef USE_TM1638
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/*********************************************************************************************\
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* TM1638 8 switch, led and 7 segment
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*
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* Uses GPIO TM16 DIO, TM16 CLK and TM16 STB
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\*********************************************************************************************/
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#define XSNS_28 28
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#define TM1638_COLOR_NONE 0
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#define TM1638_COLOR_RED 1
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#define TM1638_COLOR_GREEN 2
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#define TM1638_CLOCK_DELAY 1 // uSec
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uint8_t tm1638_type = 1;
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uint8_t tm1638_clock_pin = 0;
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uint8_t tm1638_data_pin = 0;
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uint8_t tm1638_strobe_pin = 0;
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uint8_t tm1638_displays = 8;
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uint8_t tm1638_active_display = 1;
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uint8_t tm1638_intensity = 0;
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uint8_t tm1638_state = 0;
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/*********************************************************************************************\
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* Pieces from library https://github.com/rjbatista/tm1638-library
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* and from library https://github.com/MartyMacGyver/TM1638-demos-and-examples
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\*********************************************************************************************/
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void Tm16XXSend(uint8_t data)
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{
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for (uint32_t i = 0; i < 8; i++) {
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digitalWrite(tm1638_data_pin, !!(data & (1 << i)));
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digitalWrite(tm1638_clock_pin, LOW);
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delayMicroseconds(TM1638_CLOCK_DELAY);
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digitalWrite(tm1638_clock_pin, HIGH);
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}
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}
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void Tm16XXSendCommand(uint8_t cmd)
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{
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digitalWrite(tm1638_strobe_pin, LOW);
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Tm16XXSend(cmd);
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digitalWrite(tm1638_strobe_pin, HIGH);
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}
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void TM16XXSendData(uint8_t address, uint8_t data)
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{
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Tm16XXSendCommand(0x44);
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digitalWrite(tm1638_strobe_pin, LOW);
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Tm16XXSend(0xC0 | address);
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Tm16XXSend(data);
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digitalWrite(tm1638_strobe_pin, HIGH);
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}
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uint8_t Tm16XXReceive(void)
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{
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uint8_t temp = 0;
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// Pull-up on
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pinMode(tm1638_data_pin, INPUT);
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digitalWrite(tm1638_data_pin, HIGH);
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for (uint32_t i = 0; i < 8; ++i) {
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digitalWrite(tm1638_clock_pin, LOW);
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delayMicroseconds(TM1638_CLOCK_DELAY);
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temp |= digitalRead(tm1638_data_pin) << i;
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digitalWrite(tm1638_clock_pin, HIGH);
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}
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// Pull-up off
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pinMode(tm1638_data_pin, OUTPUT);
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digitalWrite(tm1638_data_pin, LOW);
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return temp;
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}
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/*********************************************************************************************/
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void Tm16XXClearDisplay(void)
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{
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for (uint32_t i = 0; i < tm1638_displays; i++) {
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TM16XXSendData(i << 1, 0);
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}
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}
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void Tm1638SetLED(uint8_t color, uint8_t pos)
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{
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TM16XXSendData((pos << 1) + 1, color);
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}
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void Tm1638SetLEDs(word leds)
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{
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for (uint32_t i = 0; i < tm1638_displays; i++) {
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uint8_t color = 0;
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if ((leds & (1 << i)) != 0) {
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color |= TM1638_COLOR_RED;
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}
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if ((leds & (1 << (i + 8))) != 0) {
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color |= TM1638_COLOR_GREEN;
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}
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Tm1638SetLED(color, i);
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}
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}
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uint8_t Tm1638GetButtons(void)
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{
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uint8_t keys = 0;
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digitalWrite(tm1638_strobe_pin, LOW);
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Tm16XXSend(0x42);
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for (uint32_t i = 0; i < 4; i++) {
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keys |= Tm16XXReceive() << i;
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}
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digitalWrite(tm1638_strobe_pin, HIGH);
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return keys;
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}
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/*********************************************************************************************/
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void TmInit(void)
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{
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tm1638_type = 0;
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if ((pin[GPIO_TM16CLK] < 99) && (pin[GPIO_TM16DIO] < 99) && (pin[GPIO_TM16STB] < 99)) {
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tm1638_clock_pin = pin[GPIO_TM16CLK];
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tm1638_data_pin = pin[GPIO_TM16DIO];
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tm1638_strobe_pin = pin[GPIO_TM16STB];
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pinMode(tm1638_data_pin, OUTPUT);
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pinMode(tm1638_clock_pin, OUTPUT);
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pinMode(tm1638_strobe_pin, OUTPUT);
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digitalWrite(tm1638_strobe_pin, HIGH);
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digitalWrite(tm1638_clock_pin, HIGH);
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Tm16XXSendCommand(0x40);
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Tm16XXSendCommand(0x80 | (tm1638_active_display ? 8 : 0) | tmin(7, tm1638_intensity));
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digitalWrite(tm1638_strobe_pin, LOW);
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Tm16XXSend(0xC0);
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for (uint32_t i = 0; i < 16; i++) {
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Tm16XXSend(0x00);
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}
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digitalWrite(tm1638_strobe_pin, HIGH);
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tm1638_type = 1;
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tm1638_state = 1;
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}
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}
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void TmLoop(void)
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{
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if (tm1638_state) {
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uint8_t buttons = Tm1638GetButtons();
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for (uint32_t i = 0; i < MAX_SWITCHES; i++) {
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SwitchSetVirtual(i, (buttons &1) ^1);
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uint8_t color = (SwitchGetVirtual(i)) ? TM1638_COLOR_NONE : TM1638_COLOR_RED;
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Tm1638SetLED(color, i);
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buttons >>= 1;
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}
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SwitchHandler(1);
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}
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}
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/*
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void TmShow(bool json)
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{
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if (tm1638_type) {
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}
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}
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*/
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/*********************************************************************************************\
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* Interface
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\*********************************************************************************************/
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bool Xsns28(uint8_t function)
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{
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bool result = false;
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if (tm1638_type) {
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switch (function) {
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case FUNC_INIT:
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TmInit();
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break;
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case FUNC_EVERY_50_MSECOND:
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TmLoop();
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break;
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/*
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case FUNC_JSON_APPEND:
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TmShow(1);
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break;
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#ifdef USE_WEBSERVER
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case FUNC_WEB_SENSOR:
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TmShow(0);
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break;
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#endif // USE_WEBSERVER
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*/
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}
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}
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return result;
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}
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#endif // USE_TM1638
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