202 lines
5.6 KiB
C++
202 lines
5.6 KiB
C++
//******************************************************************************************
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// File: EX_PWM_Dim.cpp
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// Authors: Dan G Ogorchock
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//
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// Summary: EX_PWM_Dim is a class which implements the SmartThings "Switch" and "Switch Level" device capabilities.
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// It inherits from the st::Executor class.
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//
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// Create an instance of this class in your sketch's global variable section
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// For Example: st::EX_PWM_Dim executor1(F("dimmerSwitch1"), PIN_SWITCH, PIN_LEVEL, LOW, true);
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//
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// st::EX_PWM_Dim() constructor requires the following arguments
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// - String &name - REQUIRED - the name of the object - must match the Groovy ST_Anything DeviceType tile name
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// - byte pin - REQUIRED - the Arduino Pin to be used as a digital output
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// - byte pin_pwm - REQUIRED - the Arduino Pin to be used as a pwm output
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// - bool startingState - OPTIONAL - the value desired for the initial state of the switch. LOW = "off", HIGH = "on"
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// - bool invertLogic - OPTIONAL - determines whether the Arduino Digital Output should use inverted logic
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//
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// Change History:
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//
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// Date Who What
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// ---- --- ----
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// 2016-04-30 Dan Ogorchock Original Creation
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// 2018-08-14 Dan Ogorchock Modified to avoid compiler errors on ESP32 since it currently does not support "analogWrite()"
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// 2018-08-30 Dan Ogorchock Modified comment section above to comply with new Parent/Child Device Handler requirements
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// 2018-08-30 Dan Ogorchock Adding reporting of 'level'
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// 2018-12-06 Dan Ogorchock Fixed Comments
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// 2019-04-10 Dan Ogorchock Corrected analogWrite() call for ESP8266 platform
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// 2019-12-19 Doug Johnson Created new file based on EX_Switch_Dim to remove separate switch, and add dedicated smoothing
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// 2020-04-01 Dan Ogorchock Added compatability for traditional Arduino Boards
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//
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//
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//******************************************************************************************
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#include "EX_PWM_Dim.h"
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#include "Constants.h"
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#include "Everything.h"
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namespace st
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{
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//private
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void EX_PWM_Dim::writeLevelToPin()
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{
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if((m_nCurrentLevel == 0) && (m_bSetState == HIGH))
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{
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for(int i=1; i < m_nSetLevel; i++)
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{
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m_nCurrentLevel++;
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#if defined(ARDUINO_ARCH_ESP32)
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if (st::Executor::debug) {
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Serial.println(F("EX_Switch_Dim:: analogWrite not currently supported on ESP32!"));
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}
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#elif defined(ARDUINO_ARCH_ESP8266)
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analogWrite(m_nPinPWM, map(m_nCurrentLevel, 0, 100, 0, 1023));
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#else
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analogWrite(m_nPinPWM, map(m_nCurrentLevel, 0, 100, 0, 255));
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#endif
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delay(7);
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}
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}
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if((m_nCurrentLevel > 0) && (m_bSetState == LOW))
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{
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for(int i=m_nCurrentLevel; i > 0; i--)
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{
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m_nCurrentLevel--;
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#if defined(ARDUINO_ARCH_ESP32)
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if (st::Executor::debug) {
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Serial.println(F("EX_Switch_Dim:: analogWrite not currently supported on ESP32!"));
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}
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#elif defined(ARDUINO_ARCH_ESP8266)
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analogWrite(m_nPinPWM, map(m_nCurrentLevel, 0, 100, 0, 1023));
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#else
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analogWrite(m_nPinPWM, map(m_nCurrentLevel, 0, 100, 0, 255));
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#endif
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delay(7);
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}
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}
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if((m_nCurrentLevel < m_nSetLevel)&& (m_bSetState == HIGH))
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{
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for(int i=m_nCurrentLevel; i < m_nSetLevel; i++)
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{
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m_nCurrentLevel++;
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#if defined(ARDUINO_ARCH_ESP32)
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if (st::Executor::debug) {
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Serial.println(F("EX_Switch_Dim:: analogWrite not currently supported on ESP32!"));
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}
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#elif defined(ARDUINO_ARCH_ESP8266)
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analogWrite(m_nPinPWM, map(m_nCurrentLevel, 0, 100, 0, 1023));
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#else
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analogWrite(m_nPinPWM, map(m_nCurrentLevel, 0, 100, 0, 255));
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#endif
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delay(7);
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}
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}
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if(m_nCurrentLevel > m_nSetLevel)
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{
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for(int i=m_nCurrentLevel; i > m_nSetLevel; i--)
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{
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m_nCurrentLevel--;
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#if defined(ARDUINO_ARCH_ESP32)
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if (st::Executor::debug) {
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Serial.println(F("EX_Switch_Dim:: analogWrite not currently supported on ESP32!"));
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}
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#elif defined(ARDUINO_ARCH_ESP8266)
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analogWrite(m_nPinPWM, map(m_nCurrentLevel, 0, 100, 0, 1023));
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#else
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analogWrite(m_nPinPWM, map(m_nCurrentLevel, 0, 100, 0, 255));
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#endif
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delay(7);
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}
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}
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if(m_nCurrentLevel == 0)
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{
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m_bCurrentState = LOW;
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}
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else
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{
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m_bCurrentState = HIGH;
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}
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}
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//public
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//constructor
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EX_PWM_Dim::EX_PWM_Dim(const __FlashStringHelper *name, byte pinPWM, bool startingState, bool invertLogic) :
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Executor(name),
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m_bCurrentState(startingState),
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m_bInvertLogic(invertLogic)
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{
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m_nCurrentLevel = startingState == HIGH ? 100 : 0;
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setPWMPin(pinPWM);
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}
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//destructor
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EX_PWM_Dim::~EX_PWM_Dim()
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{
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}
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void EX_PWM_Dim::init()
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{
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//Everything::sendSmartString(getName() + " " + (m_bCurrentState == HIGH ? F("on") : F("off")));
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refresh();
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}
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void EX_PWM_Dim::beSmart(const String &str)
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{
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//String s = str.substring(str.indexOf(' ') + 1, str.indexOf(':'));
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//String dur = str.substring(str.indexOf(':') + 1);
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//dur.trim();
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String s = str.substring(str.indexOf(' ') + 1);
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if (st::Executor::debug) {
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Serial.print(F("EX_PWM_Dim::beSmart s = "));
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Serial.println(s);
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}
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if (s == F("on"))
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{
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m_bSetState = HIGH;
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}
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else if (s == F("off"))
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{
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m_bSetState = LOW;
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}
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else //must be a set level command
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{
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s.trim();
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m_nSetLevel = byte(s.toInt());
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if (m_nSetLevel == 0)
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{
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m_bSetState = LOW;
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}
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else
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{
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m_bSetState = HIGH;
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}
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}
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writeLevelToPin();
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//Everything::sendSmartString(getName() + " " + (m_bCurrentState == HIGH ? F("on") : F("off")));
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refresh();
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}
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void EX_PWM_Dim::refresh()
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{
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Everything::sendSmartString(getName() + " " + (m_bCurrentState == HIGH ? F("on") : F("off")));
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Everything::sendSmartString(getName() + " " + m_nSetLevel);
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}
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void EX_PWM_Dim::setPWMPin(byte pin)
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{
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m_nPinPWM = pin;
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pinMode(m_nPinPWM, OUTPUT);
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writeLevelToPin();
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}
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}
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