166 lines
6.4 KiB
C++
166 lines
6.4 KiB
C++
//******************************************************************************************
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// File: PS_DS18B20_Temperature.cpp
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// Author: Dan G Ogorchock
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//
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// Summary: PS_DS18B20_Temperature is a class which implements both the SmartThings "Temperature Measurement" capability.
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// It inherits from the st::PollingSensor class. The current version uses a digital pin to measure the
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// temperature from a Dallas Semiconductor One Wire DS18B20 series sensor.
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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::PS_DS18B20_Temperature sensor1(F("temperature1"), 120, 0, PIN_TEMPERATURE, false); (for a single sensor)
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// st::PS_DS18B20_Temperature sensor1(F("temperature"), 120, 0, PIN_TEMPERATURE, false, 10, 3); (for 3 sensors)
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//
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// st::PS_DS18B20_Temperature() constructor requires the following arguments
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// - String &name - REQUIRED - the name of the object - either "temperature1" for a single sensor, or "temperature" for multiple sensors
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// - long interval - REQUIRED - the polling interval in seconds
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// - long offset - REQUIRED - the polling interval offset in seconds - used to prevent all polling sensors from executing at the same time
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// - byte pin - REQUIRED - the Arduino Pin to be used for the One-Wire DS18B20 sensor conenction
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// - bool In_C - OPTIONAL - true = Report Celsius, false = Report Farenheit (Farentheit is the default)
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// - byte resolution - OPTIONAL - DS18B20 sensor resolution in bits. 9, 10, 11, or 12. Defaults to 10 for decent accuracy and performance
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// - byte num_sensors - OPTIONAL - number of OneWire DS18B20 sensors attached to OneWire bus - Defaults to 1
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// - byte sensorStartingNum - OPTIONAL - Starting number for sending temperature sensor data when using multiple sensors on one pin - Defaults to 1
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//
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// This class supports receiving configuration data from the SmartThings cloud via the ST App. A user preference
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// can be configured in your phone's ST App, and then the "Configure" tile will send the data for all sensors to
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// the ST Shield. For PollingSensors, this data is handled in the beSMart() function.
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//
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// TODO: Determine a method to persist the ST Cloud's Polling Interval data
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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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// 2015-10-08 Matt Boykin Original Creation
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// 2016-02-19 Dan Ogorchock Cleaned Up for inclusing in the ST_Anything Project
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// 2016-02-27 Dan Ogorchock Added support for multiple DS18B20 sensors
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// 2017-08-18 Dan Ogorchock Modified to send floating point values to SmartThings
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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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// 2019-03-11 Dan Ogorchock Added new optional parameter for starting sensor number for data transfer
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// 2019-07-05 Dan Ogorchock Fix bug in multiple sensor support logic
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//
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//
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//******************************************************************************************
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#include "PS_DS18B20_Temperature.h"
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#include "Constants.h"
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#include "Everything.h"
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#include <Wire.h>
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#include <OneWire.h>
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#include <DallasTemperature.h>
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namespace st
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{
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//private
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//public
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//constructor - called in your sketch's global variable declaration section
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PS_DS18B20_Temperature::PS_DS18B20_Temperature(const __FlashStringHelper *name, unsigned int interval, int offset, byte pin, bool In_C, byte resolution, byte num_sensors, byte sensorStartingNum) :
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PollingSensor(name, interval, offset),
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m_dblTemperatureSensorValue(0.0),
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m_OneWireBus(pin),
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m_DS18B20(&m_OneWireBus),
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m_In_C(In_C),
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m_Resolution(resolution),
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m_numSensors(num_sensors),
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m_sensorStartingNum(sensorStartingNum)
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{
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}
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//destructor
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PS_DS18B20_Temperature::~PS_DS18B20_Temperature()
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{
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}
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//SmartThings Shield data handler (receives configuration data from ST - polling interval, and adjusts on the fly)
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void PS_DS18B20_Temperature::beSmart(const String &str)
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{
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String s = str.substring(str.indexOf(' ') + 1);
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if (s.toInt() != 0) {
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st::PollingSensor::setInterval(s.toInt() * 1000);
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if (st::PollingSensor::debug) {
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Serial.print(F("PS_DS18B20_Temperature::beSmart set polling interval to "));
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Serial.println(s.toInt());
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}
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}
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else {
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if (st::PollingSensor::debug)
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{
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Serial.print(F("PS_DS18B20_Temperature::beSmart cannot convert "));
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Serial.print(s);
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Serial.println(F(" to an Integer."));
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}
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}
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}
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//initialization routine - get first set of readings and send to ST cloud
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void PS_DS18B20_Temperature::init()
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{
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m_DS18B20.begin(); //Initialize the DallasTemperature library
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m_DS18B20.setResolution(m_Resolution); //Set the temperature sensor resolution
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m_DS18B20.requestTemperatures(); //Send the command to get temperatures once, to ensure clean data before sending to ST
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delay(500); //Wait 500ms to let sensors stabilize
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getData(); //Get temperature data and send to ST cloud
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}
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//function to get data from sensor and queue results for transfer to ST Cloud
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void PS_DS18B20_Temperature::getData()
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{
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if (st::PollingSensor::debug) {
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Serial.print(F("PS_DS18B20_Temperature::Requesting temperatures..."));
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}
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m_DS18B20.requestTemperatures(); // Send the command to get temperatures
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if (st::PollingSensor::debug) {
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Serial.println(F("DONE"));
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}
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byte maxSensorNum = m_sensorStartingNum + m_numSensors - 1;
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for (int index = m_sensorStartingNum; index <= maxSensorNum; index++)
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{
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if (m_In_C)
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{
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m_dblTemperatureSensorValue = m_DS18B20.getTempCByIndex(index-m_sensorStartingNum);
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}
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else
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{
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m_dblTemperatureSensorValue = m_DS18B20.getTempFByIndex(index-m_sensorStartingNum);
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}
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if (st::PollingSensor::debug) {
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Serial.print(F("PS_DS18B20_Temperature:: Temperature for the device # "));
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Serial.print(index);
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Serial.print(F(" is: "));
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Serial.println(m_dblTemperatureSensorValue);
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}
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if (isnan(m_dblTemperatureSensorValue))
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{
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if (st::PollingSensor::debug) {
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Serial.print(F("PS_DS18B20_Temperature:: Error Reading Sensor # "));
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Serial.println(index);
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}
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m_dblTemperatureSensorValue = -99.0;
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}
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if (m_numSensors == 1)
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{
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Everything::sendSmartString(getName() + " " + String(m_dblTemperatureSensorValue));
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}
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else
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{
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Everything::sendSmartString(getName() + index + " " + String(m_dblTemperatureSensorValue));
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}
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}
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}
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}
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