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Kien Ha
9d6716531b MSA-1635: Nest 2016-12-04 20:42:24 -08:00
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/**
* Qubino Weatherstation
* Device Handler
* Version 1.0
* Date: 16.12.2016
* Author: Kristjan Jamšek (Kjamsek), Goap d.o.o.
* Copyright 2016 Kristjan Jamšek
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except
* in compliance with the License. You may obtain a copy of the License at:
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software distributed under the License is distributed
* on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License
* for the specific language governing permissions and limitations under the License.
*
* - DEVICE HANDLER FOR QUBINO WEATHERSTATION Z-WAVE DEVICE -
* The handler supports all unsecure functions of the Qubino Weatherstation device. Configuration parameters and
* association groups can be set in the device's preferences screen, but they are applied on the device only after
* pressing the 'Set configuration' and 'Set associations' buttons on the bottom of the details view.
*
* This device handler supports data values that are currently not implemented as capabilities, so custom attribute
* states are used. Please use a SmartApp that supports custom attribute monitoring with this device in your rules.
* By default the 'Temperature Measurement' and 'Relative Humidity Measurement' capability states are mirrored from
* the custom attribute state values 'temperatureCh1' and 'humidityCh1'.
*
* This device handler uses hubAction in configure() method in order to set a MultiChannel Lifeline association to the
* device, so reports from all endpoints can be received.
*
*
* CHANGELOG:
* 0.99: Final release code cleanup and commenting
* 1.00: Added comments to code for readability
*/
metadata {
definition (name: "Qubino Weatherstation", namespace: "Goap", author: "Kristjan Jamšek") {
capability "Configuration" //Needed for configure() function to set MultiChannel Lifeline Association Set
capability "Temperature Measurement" //Used on main tile, needed in order to have the device appear in capabilities lists, mirrors temperatureCh1 attribute states
capability "Relative Humidity Measurement" //Needed in order to have the device appear in capabilities lists, mirrors humidityCh1 attribute states
capability "Sensor" // - Tagging capability
attribute "temperatureCh1", "number" // temperature attribute for Ch1 Temperature reported by device's endpoint 1
attribute "windDirection", "number" // wind direction attribute for Wind Gauge - Direction reported by device's endpoint 2
attribute "windVelocity", "number" // wind velocity attribute for Wind Gauge - Velocity reported by device's endpoint 3
attribute "windGust", "number" // wind gust velocity attribute for Wind Gauge - Wind gust reported by device's endpoint 4
attribute "windTemperature", "number" // wind temperature attribute for Wind Gauge - Temperature reported by device's endpoint 5
attribute "windChillTemperature", "number" // wind chill temperature attribute for Wind Gauge - Wind Chill reported by device's endpoint 6
attribute "rainRate", "number" // rain rate attribute for Rain Sensor data reported by device's endpoint 7
attribute "humidityCh1", "number" // humidity attribute for Ch1 Humidity reported by device's endpoint 8
attribute "temperatureCh2", "number" // temperature attribute for Ch2 Temperature reported by device's endpoint 9
attribute "humidityCh2", "number" // humidity attribute for Ch2 Humidity reported by device's endpoint 10
attribute "setConfigParams", "string" // attribute for tile element for setConfigurationParams command
attribute "setAssocGroups", "string" // attribute for tile element for setAssociations command
command "setConfigurationParams" // command to issue Configuration Set command sequence according to user's preferences
command "setAssociations" // command to issue Association Set command sequence according to user's preferences
fingerprint mfr:"0159", prod:"0007", model:"0053" //Manufacturer Information values for Qubino Weatherstation
}
simulator {
// TESTED WITH PHYSICAL DEVICE - UNNEEDED
}
tiles(scale: 2) {
valueTile("temperature", "device.temperature") {
state("temperature", label:'${currentValue} °', unit:"°", icon: "st.Weather.weather2", backgroundColors: [
// Celsius Color Range
[value: 0, color: "#153591"],
[value: 7, color: "#1e9cbb"],
[value: 15, color: "#90d2a7"],
[value: 23, color: "#44b621"],
[value: 29, color: "#f1d801"],
[value: 33, color: "#d04e00"],
[value: 36, color: "#bc2323"],
// Fahrenheit Color Range
[value: 40, color: "#153591"],
[value: 44, color: "#1e9cbb"],
[value: 59, color: "#90d2a7"],
[value: 74, color: "#44b621"],
[value: 84, color: "#f1d801"],
[value: 92, color: "#d04e00"],
[value: 96, color: "#bc2323"]
])
}
valueTile("humidity", "device.humidity") {
state("humidity", label:'${currentValue} %', unit:"%", display:false)
}
standardTile("temperatureCh1", "device.temperatureCh1", width: 3, height: 3) {
state("temperatureCh1", label:'Temperature Ch1: ${currentValue} °', unit:'°', icon: 'st.Weather.weather2')
}
standardTile("windDirection", "device.windDirection", width: 3, height: 3) {
state("windDirection", label:'Wind Direction: ${currentValue} °', unit: "°", icon: 'st.Outdoor.outdoor20')
}
standardTile("windVelocity", "device.windVelocity", width: 3, height: 3) {
state("windVelocity", label:'Wind Velocity: ${currentValue} m/s', unit:"m/s", icon: 'st.Weather.weather1')
}
standardTile("windGust", "device.windGust", width: 3, height: 3) {
state("windGust", label:'Wind Gust: ${currentValue} m/s', unit:"m/s", icon: 'st.Weather.weather1')
}
standardTile("windTemperature", "device.windTemperature", width: 3, height: 3) {
state("windTemperature", label:'Wind Temperature: ${currentValue} °', unit:'°', icon: 'st.Weather.weather2')
}
standardTile("windChillTemperature", "device.windChillTemperature", width: 3, height: 3) {
state("windChillTemperature", label:'Wind Chill: ${currentValue} °', unit:'°', icon: 'st.Weather.weather2')
}
standardTile("rainRate", "device.rainRate", width: 3, height: 3) {
state("rainRate", label:'Rain Sensor: ${currentValue} mm/h', unit:"mm/h", icon: 'st.Weather.weather10')
}
standardTile("humidityCh1", "device.humidityCh1", width: 3, height: 3) {
state("humidityCh1", label:'Humidity Ch1: ${currentValue} %', unit:"%", icon: 'st.Weather.weather12')
}
standardTile("temperatureCh2", "device.temperatureCh2", width: 3, height: 3) {
state("temperatureCh2", label:'Temperature Ch2: ${currentValue} °', unit:'°', icon: 'st.Weather.weather2')
}
standardTile("humidityCh2", "device.humidityCh2", width: 3, height: 3) {
state("humidityCh2", label:'Humidity Ch2: ${currentValue} %', unit:"%", icon: 'st.Weather.weather12')
}
standardTile("setConfigParams", "device.setConfigParams", decoration: "flat", width: 3, height: 3) {
state("setConfigParams", label:'Set configuration', action:'setConfigurationParams', icon: "st.secondary.tools")
}
standardTile("setAssocGroups", "device.setAssocGroups", decoration: "flat", width: 3, height: 3) {
state("setAssocGroups", label:'Set associations', action:'setAssociations', icon: "st.secondary.tools")
}
main("temperature")
details(["temperatureCh1", "humidityCh1", "windDirection", "windVelocity", "windGust", "windTemperature", "windChillTemperature", "rainRate", "temperatureCh2", "humidityCh2", "setConfigParams", "setAssocGroups"])
}
preferences {
/**
* -------- CONFIGURATION PARAMETER SECTION --------
*/
input name: "param1", type: "number", range: "0..8800", required: false,
title: "1. Wind Gauge, Wind Gust Top Value. " +
"If the Wind Gust is higher than the parameter value, the device triggers an association.\n" +
"Available settings:\n" +
"0 ... 8800 = value from 0,00 m/s to 88,00 m/s,\n" +
"Default value: 1000 (10,00 m/s)."
input name: "param2", type: "number", range: "0..30000", required: false,
title: "2. Rain Gauge, Rain Rate Top Value. " +
"If the Rain Sensor Rain Rate is higher than the parameter value, the device triggers an association.\n" +
"Available settings:\n" +
"0 ... 30000 = value from 0,00 mm/h to 300,00 mm/h,\n" +
"Default value: 200 (2,00 mm/h)."
input name: "param3", type: "enum", required: false,
options: ["0" : "0",
"1" : "1"],
title: "3. Wind Gauge, Wind Gust. " +
"Available settings:\n" +
"0 = If the Wind Gust is higher than the parameter number 1 value, then the device sends a Basic Set 0x00,\n" +
"1 = If the Wind Gust is higher than the parameter number 1 value, then the device sends a Basic Set 0xFF,\n" +
"Default value: 1."
input name: "param4", type: "enum", required: false,
options: ["0" : "0",
"1" : "1"],
title: "4. Rain Gauge, Rain Rate. " +
"Available settings:\n" +
"0 = If the Rain Rate is higher than the parameter number 2 value, then the device sends a Basic Set 0x00,\n" +
"1 = If the Rain Rate is higher than the parameter number 2 value, then the device sends a Basic Set 0xFF,\n" +
"Default value: 1."
input name: "param5", type: "enum", required: false,
options: ["0" : "0",
"1" : "1"],
title: "5. Endpoint 1 - Unsolicited Report enable/disable. " +
"Available settings:\n" +
"0 = Unsolicited Report disabled,\n" +
"1 = Unsolicited Report enabled,\n" +
"Default value: 1."
input name: "param6", type: "enum", required: false,
options: ["0" : "0",
"1" : "1"],
title: "6. Endpoint 2 - Unsolicited Report enable/disable. " +
"Available settings:\n" +
"0 = Unsolicited Report disabled,\n" +
"1 = Unsolicited Report enabled,\n" +
"Default value: 1."
input name: "param7", type: "enum", required: false,
options: ["0" : "0",
"1" : "1"],
title: "7. Endpoint 3 - Unsolicited Report enable/disable. " +
"Available settings:\n" +
"0 = Unsolicited Report disabled,\n" +
"1 = Unsolicited Report enabled,\n" +
"Default value: 1."
input name: "param8", type: "enum", required: false,
options: ["0" : "0",
"1" : "1"],
title: "8. Endpoint 4 - Unsolicited Report enable/disable. " +
"Available settings:\n" +
"0 = Unsolicited Report disabled,\n" +
"1 = Unsolicited Report enabled,\n" +
"Default value: 1."
input name: "param9", type: "enum", required: false,
options: ["0" : "0",
"1" : "1"],
title: "9. Endpoint 5 - Unsolicited Report enable/disable. " +
"Available settings:\n" +
"0 = Unsolicited Report disabled,\n" +
"1 = Unsolicited Report enabled,\n" +
"Default value: 1."
input name: "param10", type: "enum", required: false,
options: ["0" : "0",
"1" : "1"],
title: "10. Endpoint 6 - Unsolicited Report enable/disable. " +
"Available settings:\n" +
"0 = Unsolicited Report disabled,\n" +
"1 = Unsolicited Report enabled,\n" +
"Default value: 1."
input name: "param11", type: "enum", required: false,
options: ["0" : "0",
"1" : "1"],
title: "11. Endpoint 7 - Unsolicited Report enable/disable. " +
"Available settings:\n" +
"0 = Unsolicited Report disabled,\n" +
"1 = Unsolicited Report enabled,\n" +
"Default value: 1."
input name: "param12", type: "enum", required: false,
options: ["0" : "0",
"1" : "1"],
title: "12. Endpoint 8 - Unsolicited Report enable/disable. " +
"Available settings:\n" +
"0 = Unsolicited Report disabled,\n" +
"1 = Unsolicited Report enabled,\n" +
"Default value: 1."
input name: "param13", type: "enum", required: false,
options: ["0" : "0",
"1" : "1"],
title: "13. Endpoint 9 - Unsolicited Report enable/disable. " +
"Available settings:\n" +
"0 = Unsolicited Report disabled,\n" +
"1 = Unsolicited Report enabled,\n" +
"Default value: 1."
input name: "param14", type: "enum", required: false,
options: ["0" : "0",
"1" : "1"],
title: "14. Endpoint 10 - Unsolicited Report enable/disable. " +
"Available settings:\n" +
"0 = Unsolicited Report disabled,\n" +
"1 = Unsolicited Report enabled,\n" +
"Default value: 1."
input name: "param15", type: "enum", required: false,
options: ["0" : "0",
"1" : "1"],
title: "15. Random ID enable/disable " +
"Available settings:\n" +
"0 = Random ID disabled,\n" +
"1 = Random ID enabled,\n" +
"Default value: 0."
/**
* -------- ASSOCIATION GROUP SECTION --------
*/
input name: "assocGroup2", type: "text", required: false,
title: "Association group 2: \n" +
"Basic On/Off command will be sent to associated nodes when the Wind Gust of the Wind Gauge exceeds the Configuration parameter 1 value. \n" +
"NOTE: Insert the node Id value of the devices you wish to associate this group with. Multiple nodeIds can also be set at once by separating individual values by a comma (2,3,...)."
input name: "assocGroup3", type: "text", required: false,
title: "Association group 3: \n" +
"Basic On/Off command will be sent to associated nodes when the Rain Rate exceeds the Configuration parameter 2 value. \n" +
"NOTE: Insert the node Id value of the devices you wish to associate this group with. Multiple nodeIds can also be set at once by separating individual values by a comma (2,3,...)."
}
}
/**
* -------- HELPER METHODS SECTION --------
*/
/**
* Converts a list of String type node id values to Integer type.
*
* @param stringList - a list of String type node id values.
* @return stringList - a list of Integer type node id values.
*/
def convertStringListToIntegerList(stringList){
for(int i=0;i<stringList.size();i++){
stringList[i] = stringList[i].toInteger()
}
return stringList
}
/**
* Converts temperature values to fahrenheit or celsius scales accordign to user's setting.
*
* @param scaleParam user set scale parameter.
* @param encapCmd received temperature parsed value.
* @return String type value of the converted temperature value.
*/
def convertDegrees(scaleParam, encapCmd){
switch (scaleParam) {
default:
break;
case "F":
if(encapCmd.scale == 1){
return encapCmd.scaledSensorValue.toString()
}else{
return (encapCmd.scaledSensorValue * 9 / 5 + 32).toString()
}
break;
case "C":
if(encapCmd.scale == 0){
return encapCmd.scaledSensorValue.toString()
}else{
return (encapCmd.scaledSensorValue * 9 / 5 + 32).toString()
}
break;
}
}
/*
* -------- HANDLE COMMANDS SECTION --------
*/
/**
* Configuration capability command handler that executes after module inclusion to remove existing singlechannel association Lifeline and replace it
* with a multichannel Lifeline association setting for node id 1 and endpoint 1, which enables modules to report multichannel encapsulated frames.
*
* @param void
* @return List of commands that will be executed in sequence with 500 ms delay inbetween.
*/
def configure() {
log.debug "Qubino Weatherstation: configure()"
/** In this method we first clear the association group 1 that is set by SmartThings automatically.
* Afterwards we use physicalgraph.device.HubAction("8E0101000101") as a workaround for SmartThings' MultiChannel Association Command Class implementation,
* where we cannot set a node id and endpoint id. The hardcoded parameter "8E0101000101" should be interpreted in sequence as hexadecimal byte values:
* 8E010100 - Command class and command values, along with the field for singlechannel node id omitted
* 0101 - These two byte values represent the multichannel node id 01 followed by the endpoint id 01 (in general this value can be left as is unless
* multiple subordinated controllers are included in your network. In that case please adjust these two value to the correct id.
*/
def assocCmds = []
assocCmds << zwave.associationV1.associationRemove(groupingIdentifier:1, nodeId:zwaveHubNodeId).format()
assocCmds << new physicalgraph.device.HubAction("8E0101000101")
return delayBetween(assocCmds, 500)
}
/**
* setAssociations command handler that sets user selected association groups. In case no node id is insetred the group is instead cleared.
* Lifeline association hidden from user influence by design.
*
* @param void
* @return List of Association commands that will be executed in sequence with 500 ms delay inbetween.
*/
def setAssociations() {
log.debug "Qubino Weatherstation: setAssociations()"
def assocSet = []
if(settings.assocGroup2 != null){
def group2parsed = settings.assocGroup2.tokenize(",")
group2parsed = convertStringListToIntegerList(group2parsed)
assocSet << zwave.associationV1.associationSet(groupingIdentifier:2, nodeId:group2parsed).format()
}else{
assocSet << zwave.associationV1.associationRemove(groupingIdentifier:2, nodeId: 0).format()
}
if(settings.assocGroup3 != null){
def group3parsed = settings.assocGroup3.tokenize(",")
group3parsed = convertStringListToIntegerList(group3parsed)
assocSet << zwave.associationV1.associationSet(groupingIdentifier:3, nodeId:group3parsed).format()
}else{
assocSet << zwave.associationV1.associationRemove(groupingIdentifier:3, nodeId: 0).format()
}
return delayBetween(assocSet, 500)
}
/**
* setConfigurationParams command handler that sets user selected configuration parameters on the device.
* In case no value is set for a specific parameter the method skips setting that parameter.
* Secure mdoe setting hidden from user influence by design.
*
* @param void
* @return List of Configuration Set commands that will be executed in sequence with 500 ms delay inbetween.
*/
def setConfigurationParams() {
log.debug "Qubino Weatherstation: setConfigurationParams()"
def configSequence = []
if(settings.param1 != null){
configSequence << zwave.configurationV1.configurationSet(parameterNumber: 1, size: 2, scaledConfigurationValue: settings.param1.toInteger()).format()
}
if(settings.param2 != null){
configSequence << zwave.configurationV1.configurationSet(parameterNumber: 2, size: 2, scaledConfigurationValue: settings.param2.toInteger()).format()
}
if(settings.param3 != null){
configSequence << zwave.configurationV1.configurationSet(parameterNumber: 3, size: 1, scaledConfigurationValue: settings.param3.toInteger()).format()
}
if(settings.param4 != null){
configSequence << zwave.configurationV1.configurationSet(parameterNumber: 4, size: 1, scaledConfigurationValue: settings.param4.toInteger()).format()
}
if(settings.param5 != null){
configSequence << zwave.configurationV1.configurationSet(parameterNumber: 5, size: 1, scaledConfigurationValue: settings.param5.toInteger()).format()
}
if(settings.param6 != null){
configSequence << zwave.configurationV1.configurationSet(parameterNumber: 6, size: 1, scaledConfigurationValue: settings.param6.toInteger()).format()
}
if(settings.param7 != null){
configSequence << zwave.configurationV1.configurationSet(parameterNumber: 7, size: 1, scaledConfigurationValue: settings.param7.toInteger()).format()
}
if(settings.param8 != null){
configSequence << zwave.configurationV1.configurationSet(parameterNumber: 8, size: 1, scaledConfigurationValue: settings.param8.toInteger()).format()
}
if(settings.param9 != null){
configSequence << zwave.configurationV1.configurationSet(parameterNumber: 9, size: 1, scaledConfigurationValue: settings.param9.toInteger()).format()
}
if(settings.param10 != null){
configSequence << zwave.configurationV1.configurationSet(parameterNumber: 10, size: 1, scaledConfigurationValue: settings.param10.toInteger()).format()
}
if(settings.param11 != null){
configSequence << zwave.configurationV1.configurationSet(parameterNumber: 11, size: 1, scaledConfigurationValue: settings.param11.toInteger()).format()
}
if(settings.param12 != null){
configSequence << zwave.configurationV1.configurationSet(parameterNumber: 12, size: 1, scaledConfigurationValue: settings.param12.toInteger()).format()
}
if(settings.param13 != null){
configSequence << zwave.configurationV1.configurationSet(parameterNumber: 13, size: 1, scaledConfigurationValue: settings.param13.toInteger()).format()
}
if(settings.param14 != null){
configSequence << zwave.configurationV1.configurationSet(parameterNumber: 14, size: 1, scaledConfigurationValue: settings.param14.toInteger()).format()
}
if(settings.param15 != null){
configSequence << zwave.configurationV1.configurationSet(parameterNumber: 15, size: 1, scaledConfigurationValue: settings.param15.toInteger()).format()
}
return delayBetween(configSequence, 500)
}
/*
* -------- EVENT PARSER SECTION --------
*/
/**
* parse function takes care of parsing received bytes and passing them on to event methods.
*
* @param description String type value of the received bytes.
* @return Parsed result of the received bytes.
*/
def parse(String description) {
log.debug "Qubino Weatherstation: Parsing '${description}'"
def result = null
def cmd = zwave.parse(description)
if (cmd) {
result = zwaveEvent(cmd)
log.debug "Parsed ${cmd} to ${result.inspect()}"
} else {
log.debug "Non-parsed event: ${description}"
}
return result
}
/**
* Event method for MultiChannelCmdEncap encapsulation frames.
*
* @param cmd Type physicalgraph.zwave.commands.multichannelv3.MultiChannelCmdEncap received command.
* @return List of events that will update UI elements for data display.
*/
def zwaveEvent(physicalgraph.zwave.commands.multichannelv3.MultiChannelCmdEncap cmd) {
def encapsulatedCommand = cmd.encapsulatedCommand([0x30: 1, 0x31: 1])
def tempScale = location.temperatureScale
def resultEvents = []
switch (cmd.sourceEndPoint) {
default:
break;
case 1:
resultEvents << createEvent(name:"temperatureCh1", value: convertDegrees(tempScale,encapsulatedCommand), unit:"°"+location.temperatureScale, descriptionText: "Temperature Ch1: "+convertDegrees(tempScale,encapsulatedCommand)+"°"+location.temperatureScale)
resultEvents << createEvent(name:"temperature", value: convertDegrees(tempScale,encapsulatedCommand), unit:"°"+location.temperatureScale, descriptionText: "Temperature Ch1: "+convertDegrees(tempScale,encapsulatedCommand)+"°"+location.temperatureScale, displayed: false)
break;
case 2:
resultEvents << createEvent(name:"windDirection", value: encapsulatedCommand.scaledSensorValue.toString(), unit:"°", descriptionText: "Wind Direction: "+encapsulatedCommand.scaledSensorValue.toString()+" °")
break;
case 3:
resultEvents << createEvent(name:"windVelocity", value: encapsulatedCommand.scaledSensorValue.toString(), unit:"m/s", descriptionText: "Wind Velocity: "+encapsulatedCommand.scaledSensorValue.toString()+" m/s")
break;
case 4:
resultEvents << createEvent(name:"windGust", value: encapsulatedCommand.scaledSensorValue.toString(), unit:"m/s", descriptionText: "Wind Gust: "+encapsulatedCommand.scaledSensorValue.toString()+" m/s")
break;
case 5:
resultEvents << createEvent(name:"windTemperature", value: convertDegrees(tempScale,encapsulatedCommand), unit:"°"+location.temperatureScale, descriptionText: "Wind Temperature: "+convertDegrees(tempScale,encapsulatedCommand)+" °"+location.temperatureScale)
break;
case 6:
resultEvents << createEvent(name:"windChillTemperature", value: convertDegrees(tempScale,encapsulatedCommand), unit:"°"+location.temperatureScale, descriptionText: "Wind Chill: "+convertDegrees(tempScale,encapsulatedCommand)+" °"+location.temperatureScale)
break;
case 7:
resultEvents << createEvent(name:"rainRate", value: encapsulatedCommand.scaledSensorValue.toString(), unit:"mm/h", descriptionText: "Rain Sensor: "+encapsulatedCommand.scaledSensorValue.toString()+" mm/h")
break;
case 8:
resultEvents << createEvent(name:"humidity", value: encapsulatedCommand.scaledSensorValue.toString(), unit:"%", descriptionText: "Humidity Ch1: "+encapsulatedCommand.scaledSensorValue.toString()+" %", displayed: false)
resultEvents << createEvent(name:"humidityCh1", value: encapsulatedCommand.scaledSensorValue.toString(), unit:"%", descriptionText: "Humidity Ch1: "+encapsulatedCommand.scaledSensorValue.toString()+" %")
break;
case 9:
resultEvents << createEvent(name:"temperatureCh2", value: convertDegrees(tempScale,encapsulatedCommand), unit:"°"+location.temperatureScale, descriptionText: "Temperature Ch2: "+convertDegrees(tempScale,encapsulatedCommand)+" °"+location.temperatureScale)
break;
case 10:
resultEvents << createEvent(name:"humidityCh2", value: encapsulatedCommand.scaledSensorValue.toString(), unit:"%", descriptionText: "Humidity Ch2: "+encapsulatedCommand.scaledSensorValue.toString()+" %")
break;
}
return resultEvents
}

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@@ -0,0 +1,600 @@
/**
* Nest Direct
*
* Author: dianoga7@3dgo.net
* Code: https://github.com/smartthings-users/device-type.nest
*
* INSTALLATION
* =========================================
* 1) Create a new device type (https://graph.api.smartthings.com/ide/devices)
* Name: Nest
* Author: dianoga7@3dgo.net
* Capabilities:
* Polling
* Relative Humidity Measurement
* Thermostat
* Temperature Measurement
* Presence Sensor
* Sensor
* Custom Attributes:
* temperatureUnit
* Custom Commands:
* away
* present
* setPresence
* heatingSetpointUp
* heatingSetpointDown
* coolingSetpointUp
* coolingSetpointDown
* setFahrenheit
* setCelsius
*
* 2) If you want to switch from slider controls to buttons, comment out the slider details line and uncomment the button details line.
*
* 3) Create a new device (https://graph.api.smartthings.com/device/list)
* Name: Your Choice
* Device Network Id: Your Choice
* Type: Nest (should be the last option)
* Location: Choose the correct location
* Hub/Group: Leave blank
*
* 4) Update device preferences
* Click on the new device to see the details.
* Click the edit button next to Preferences
* Fill in your information.
* To find your serial number, login to http://home.nest.com. Click on the thermostat
* you want to control. Under settings, go to Technical Info. Your serial number is
* the second item.
*
* 5) That's it, you're done.
*
* Copyright (C) 2013 Brian Steere <dianoga7@3dgo.net>
* Permission is hereby granted, free of charge, to any person obtaining a copy of this
* software and associated documentation files (the "Software"), to deal in the Software
* without restriction, including without limitation the rights to use, copy, modify,
* merge, publish, distribute, sublicense, and/or sell copies of the Software, and to
* permit persons to whom the Software is furnished to do so, subject to the following
* conditions: The above copyright notice and this permission notice shall be included
* in all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED,
* INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A
* PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT
* HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF
* CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE
* OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
*/
preferences {
input("username", "text", title: "Username", description: "Your Nest username (usually an email address)")
input("password", "password", title: "Password", description: "Your Nest password")
input("serial", "text", title: "Serial #", description: "The serial number of your thermostat")
}
// for the UI
metadata {
definition (name: "Nest", namespace: "smartthings-users", author: "dianoga7@3dgo.net") {
capability "Polling"
capability "Relative Humidity Measurement"
capability "Thermostat"
capability "Temperature Measurement"
capability "Presence Sensor"
capability "Sensor"
command "away"
command "present"
command "setPresence"
command "heatingSetpointUp"
command "heatingSetpointDown"
command "coolingSetpointUp"
command "coolingSetpointDown"
command "setFahrenheit"
command "setCelsius"
attribute "temperatureUnit", "string"
}
simulator {
// TODO: define status and reply messages here
}
tiles {
valueTile("temperature", "device.temperature", canChangeIcon: true, canChangeBackground:true) {
state("temperature", label: '${currentValue}°', backgroundColors: [
// Celsius Color Range
[value: 0, color: "#153591"],
[value: 7, color: "#1e9cbb"],
[value: 15, color: "#90d2a7"],
[value: 23, color: "#44b621"],
[value: 29, color: "#f1d801"],
[value: 33, color: "#d04e00"],
[value: 36, color: "#bc2323"],
// Fahrenheit Color Range
[value: 40, color: "#153591"],
[value: 44, color: "#1e9cbb"],
[value: 59, color: "#90d2a7"],
[value: 74, color: "#44b621"],
[value: 84, color: "#f1d801"],
[value: 92, color: "#d04e00"],
[value: 96, color: "#bc2323"]
]
)
}
standardTile("thermostatMode", "device.thermostatMode", inactiveLabel: true, decoration: "flat") {
state("auto", action:"thermostat.off", icon: "st.thermostat.auto")
state("off", action:"thermostat.cool", icon: "st.thermostat.heating-cooling-off")
state("cool", action:"thermostat.heat", icon: "st.thermostat.cool")
state("heat", action:"thermostat.auto", icon: "st.thermostat.heat")
}
standardTile("thermostatFanMode", "device.thermostatFanMode", inactiveLabel: true, decoration: "flat") {
state "auto", action:"thermostat.fanOn", icon: "st.thermostat.fan-auto"
state "on", action:"thermostat.fanCirculate", icon: "st.thermostat.fan-on"
state "circulate", action:"thermostat.fanAuto", icon: "st.thermostat.fan-circulate"
}
valueTile("heatingSetpoint", "device.heatingSetpoint") {
state "default", label:'${currentValue}°', unit:"Heat", backgroundColor:"#bc2323"
}
valueTile("coolingSetpoint", "device.coolingSetpoint") {
state "default", label:'${currentValue}°', unit:"Cool", backgroundColor:"#1e9cbb"
}
standardTile("thermostatOperatingState", "device.thermostatOperatingState", inactiveLabel: false, decoration: "flat") {
state "idle", action:"polling.poll", label:'${name}', icon: "st.sonos.pause-icon"
state "cooling", action:"polling.poll", label:' ', icon: "st.thermostat.cooling", backgroundColor:"#1e9cbb"
state "heating", action:"polling.poll", label:' ', icon: "st.thermostat.heating", backgroundColor:"#bc2323"
state "fan only", action:"polling.poll", label:'${name}', icon: "st.Appliances.appliances11"
}
valueTile("humidity", "device.humidity", inactiveLabel: false) {
state "default", label:'${currentValue}%', unit:"Humidity"
}
standardTile("presence", "device.presence", inactiveLabel: false, decoration: "flat") {
state "present", label:'${name}', action:"away", icon: "st.Home.home2"
state "not present", label:'away', action:"present", icon: "st.Transportation.transportation5"
}
standardTile("refresh", "device.thermostatMode", inactiveLabel: false, decoration: "flat") {
state "default", action:"polling.poll", icon:"st.secondary.refresh"
}
standardTile("temperatureUnit", "device.temperatureUnit", canChangeIcon: false) {
state "fahrenheit", label: "°F", icon: "st.alarm.temperature.normal", action:"setCelsius"
state "celsius", label: "°C", icon: "st.alarm.temperature.normal", action:"setFahrenheit"
}
controlTile("heatSliderControl", "device.heatingSetpoint", "slider", height: 1, width: 2, inactiveLabel: false) {
state "setHeatingSetpoint", label:'Set temperature to', action:"thermostat.setHeatingSetpoint"
}
controlTile("coolSliderControl", "device.coolingSetpoint", "slider", height: 1, width: 2, inactiveLabel: false) {
state "setCoolingSetpoint", label:'Set temperature to', action:"thermostat.setCoolingSetpoint"
}
standardTile("heatingSetpointUp", "device.heatingSetpoint", canChangeIcon: false, inactiveLabel: false, decoration: "flat") {
state "heatingSetpointUp", label:' ', action:"heatingSetpointUp", icon:"st.thermostat.thermostat-up", backgroundColor:"#bc2323"
}
standardTile("heatingSetpointDown", "device.heatingSetpoint", canChangeIcon: false, inactiveLabel: false, decoration: "flat") {
state "heatingSetpointDown", label:' ', action:"heatingSetpointDown", icon:"st.thermostat.thermostat-down", backgroundColor:"#bc2323"
}
standardTile("coolingSetpointUp", "device.coolingSetpoint", canChangeIcon: false, inactiveLabel: false, decoration: "flat") {
state "coolingSetpointUp", label:' ', action:"coolingSetpointUp", icon:"st.thermostat.thermostat-up", backgroundColor:"#1e9cbb"
}
standardTile("coolingSetpointDown", "device.coolingSetpoint", canChangeIcon: false, inactiveLabel: false, decoration: "flat") {
state "coolingSetpointDown", label:' ', action:"coolingSetpointDown", icon:"st.thermostat.thermostat-down", backgroundColor:"#1e9cbb"
}
main(["temperature", "thermostatOperatingState", "humidity"])
// ============================================================
// Slider or Buttons...
// To expose buttons, comment out the first detials line below and uncomment the second details line below.
// To expose sliders, uncomment the first details line below and comment out the second details line below.
details(["temperature", "thermostatOperatingState", "humidity", "thermostatMode", "thermostatFanMode", "presence", "heatingSetpoint", "heatSliderControl", "coolingSetpoint", "coolSliderControl", "temperatureUnit", "refresh"])
// details(["temperature", "thermostatOperatingState", "humidity", "thermostatMode", "thermostatFanMode", "presence", "heatingSetpointDown", "heatingSetpoint", "heatingSetpointUp", "coolingSetpointDown", "coolingSetpoint", "coolingSetpointUp", "temperatureUnit", "refresh"])
// ============================================================
}
}
// parse events into attributes
def parse(String description) {
}
// handle commands
def setHeatingSetpoint(temp) {
def latestThermostatMode = device.latestState('thermostatMode')
def temperatureUnit = device.latestValue('temperatureUnit')
switch (temperatureUnit) {
case "celsius":
if (temp) {
if (temp < 9) {
temp = 9
}
if (temp > 32) {
temp = 32
}
if (latestThermostatMode.stringValue == 'auto') {
api('temperature', ['target_change_pending': true, 'target_temperature_low': temp]) {
sendEvent(name: 'heatingSetpoint', value: heatingSetpoint, unit: temperatureUnit, state: "heat")
}
} else if (latestThermostatMode.stringValue == 'heat') {
api('temperature', ['target_change_pending': true, 'target_temperature': temp]) {
sendEvent(name: 'heatingSetpoint', value: heatingSetpoint, unit: temperatureUnit, state: "heat")
}
}
}
break;
default:
if (temp) {
if (temp < 51) {
temp = 51
}
if (temp > 89) {
temp = 89
}
if (latestThermostatMode.stringValue == 'auto') {
api('temperature', ['target_change_pending': true, 'target_temperature_low': fToC(temp)]) {
sendEvent(name: 'heatingSetpoint', value: heatingSetpoint, unit: temperatureUnit, state: "heat")
}
} else if (latestThermostatMode.stringValue == 'heat') {
api('temperature', ['target_change_pending': true, 'target_temperature': fToC(temp)]) {
sendEvent(name: 'heatingSetpoint', value: heatingSetpoint, unit: temperatureUnit, state: "heat")
}
}
}
break;
}
poll()
}
def coolingSetpointUp(){
int newSetpoint = device.currentValue("coolingSetpoint") + 1
log.debug "Setting cool set point up to: ${newSetpoint}"
setCoolingSetpoint(newSetpoint)
}
def coolingSetpointDown(){
int newSetpoint = device.currentValue("coolingSetpoint") - 1
log.debug "Setting cool set point down to: ${newSetpoint}"
setCoolingSetpoint(newSetpoint)
}
def setCoolingSetpoint(temp) {
def latestThermostatMode = device.latestState('thermostatMode')
def temperatureUnit = device.latestValue('temperatureUnit')
switch (temperatureUnit) {
case "celsius":
if (temp) {
if (temp < 9) {
temp = 9
}
if (temp > 32) {
temp = 32
}
if (latestThermostatMode.stringValue == 'auto') {
api('temperature', ['target_change_pending': true, 'target_temperature_high': temp]) {
sendEvent(name: 'coolingSetpoint', value: coolingSetpoint, unit: temperatureUnit, state: "cool")
}
} else if (latestThermostatMode.stringValue == 'cool') {
api('temperature', ['target_change_pending': true, 'target_temperature': temp]) {
sendEvent(name: 'coolingSetpoint', value: coolingSetpoint, unit: temperatureUnit, state: "cool")
}
}
}
break;
default:
if (temp) {
if (temp < 51) {
temp = 51
}
if (temp > 89) {
temp = 89
}
if (latestThermostatMode.stringValue == 'auto') {
api('temperature', ['target_change_pending': true, 'target_temperature_high': fToC(temp)]) {
sendEvent(name: 'coolingSetpoint', value: coolingSetpoint, unit: temperatureUnit, state: "cool")
}
} else if (latestThermostatMode.stringValue == 'cool') {
api('temperature', ['target_change_pending': true, 'target_temperature': fToC(temp)]) {
sendEvent(name: 'coolingSetpoint', value: coolingSetpoint, unit: temperatureUnit, state: "cool")
}
}
}
break;
}
poll()
}
def heatingSetpointUp(){
int newSetpoint = device.currentValue("heatingSetpoint") + 1
log.debug "Setting heat set point up to: ${newSetpoint}"
setHeatingSetpoint(newSetpoint)
}
def heatingSetpointDown(){
int newSetpoint = device.currentValue("heatingSetpoint") - 1
log.debug "Setting heat set point down to: ${newSetpoint}"
setHeatingSetpoint(newSetpoint)
}
def setFahrenheit() {
def temperatureUnit = "fahrenheit"
log.debug "Setting temperatureUnit to: ${temperatureUnit}"
sendEvent(name: "temperatureUnit", value: temperatureUnit)
poll()
}
def setCelsius() {
def temperatureUnit = "celsius"
log.debug "Setting temperatureUnit to: ${temperatureUnit}"
sendEvent(name: "temperatureUnit", value: temperatureUnit)
poll()
}
def off() {
setThermostatMode('off')
}
def heat() {
setThermostatMode('heat')
}
def emergencyHeat() {
setThermostatMode('heat')
}
def cool() {
setThermostatMode('cool')
}
def auto() {
setThermostatMode('range')
}
def setThermostatMode(mode) {
mode = mode == 'emergency heat'? 'heat' : mode
api('thermostat_mode', ['target_change_pending': true, 'target_temperature_type': mode]) {
mode = mode == 'range' ? 'auto' : mode
sendEvent(name: 'thermostatMode', value: mode)
poll()
}
}
def fanOn() {
setThermostatFanMode('on')
}
def fanAuto() {
setThermostatFanMode('auto')
}
def fanCirculate() {
setThermostatFanMode('circulate')
}
def setThermostatFanMode(mode) {
def modes = [
on: ['fan_mode': 'on'],
auto: ['fan_mode': 'auto'],
circulate: ['fan_mode': 'duty-cycle', 'fan_duty_cycle': 900]
]
api('fan_mode', modes.getAt(mode)) {
sendEvent(name: 'thermostatFanMode', value: mode)
poll()
}
}
def away() {
setPresence('away')
sendEvent(name: 'presence', value: 'not present')
}
def present() {
setPresence('present')
sendEvent(name: 'presence', value: 'present')
}
def setPresence(status) {
log.debug "Status: $status"
api('presence', ['away': status == 'away', 'away_timestamp': new Date().getTime(), 'away_setter': 0]) {
poll()
}
}
def poll() {
log.debug "Executing 'poll'"
api('status', []) {
data.device = it.data.device.getAt(settings.serial)
data.shared = it.data.shared.getAt(settings.serial)
data.structureId = it.data.link.getAt(settings.serial).structure.tokenize('.')[1]
data.structure = it.data.structure.getAt(data.structureId)
data.device.fan_mode = data.device.fan_mode == 'duty-cycle'? 'circulate' : data.device.fan_mode
data.structure.away = data.structure.away ? 'away' : 'present'
log.debug(data.shared)
def humidity = data.device.current_humidity
def temperatureType = data.shared.target_temperature_type
def fanMode = data.device.fan_mode
def heatingSetpoint = '--'
def coolingSetpoint = '--'
temperatureType = temperatureType == 'range' ? 'auto' : temperatureType
sendEvent(name: 'humidity', value: humidity)
sendEvent(name: 'thermostatFanMode', value: fanMode)
sendEvent(name: 'thermostatMode', value: temperatureType)
def temperatureUnit = device.latestValue('temperatureUnit')
switch (temperatureUnit) {
case "celsius":
def temperature = Math.round(data.shared.current_temperature)
def targetTemperature = Math.round(data.shared.target_temperature)
if (temperatureType == "cool") {
coolingSetpoint = targetTemperature
} else if (temperatureType == "heat") {
heatingSetpoint = targetTemperature
} else if (temperatureType == "auto") {
coolingSetpoint = Math.round(data.shared.target_temperature_high)
heatingSetpoint = Math.round(data.shared.target_temperature_low)
}
sendEvent(name: 'temperature', value: temperature, unit: temperatureUnit, state: temperatureType)
sendEvent(name: 'coolingSetpoint', value: coolingSetpoint, unit: temperatureUnit, state: "cool")
sendEvent(name: 'heatingSetpoint', value: heatingSetpoint, unit: temperatureUnit, state: "heat")
break;
default:
def temperature = Math.round(cToF(data.shared.current_temperature))
def targetTemperature = Math.round(cToF(data.shared.target_temperature))
if (temperatureType == "cool") {
coolingSetpoint = targetTemperature
} else if (temperatureType == "heat") {
heatingSetpoint = targetTemperature
} else if (temperatureType == "auto") {
coolingSetpoint = Math.round(cToF(data.shared.target_temperature_high))
heatingSetpoint = Math.round(cToF(data.shared.target_temperature_low))
}
sendEvent(name: 'temperature', value: temperature, unit: temperatureUnit, state: temperatureType)
sendEvent(name: 'coolingSetpoint', value: coolingSetpoint, unit: temperatureUnit, state: "cool")
sendEvent(name: 'heatingSetpoint', value: heatingSetpoint, unit: temperatureUnit, state: "heat")
break;
}
switch (device.latestValue('presence')) {
case "present":
if (data.structure.away == 'away') {
sendEvent(name: 'presence', value: 'not present')
}
break;
case "not present":
if (data.structure.away == 'present') {
sendEvent(name: 'presence', value: 'present')
}
break;
}
if (data.shared.hvac_ac_state) {
sendEvent(name: 'thermostatOperatingState', value: "cooling")
} else if (data.shared.hvac_heater_state) {
sendEvent(name: 'thermostatOperatingState', value: "heating")
} else if (data.shared.hvac_fan_state) {
sendEvent(name: 'thermostatOperatingState', value: "fan only")
} else {
sendEvent(name: 'thermostatOperatingState', value: "idle")
}
}
}
def api(method, args = [], success = {}) {
if(!isLoggedIn()) {
log.debug "Need to login"
login(method, args, success)
return
}
def methods = [
'status': [uri: "/v2/mobile/${data.auth.user}", type: 'get'],
'fan_mode': [uri: "/v2/put/device.${settings.serial}", type: 'post'],
'thermostat_mode': [uri: "/v2/put/shared.${settings.serial}", type: 'post'],
'temperature': [uri: "/v2/put/shared.${settings.serial}", type: 'post'],
'presence': [uri: "/v2/put/structure.${data.structureId}", type: 'post']
]
def request = methods.getAt(method)
log.debug "Logged in"
doRequest(request.uri, args, request.type, success)
}
// Need to be logged in before this is called. So don't call this. Call api.
def doRequest(uri, args, type, success) {
log.debug "Calling $type : $uri : $args"
if(uri.charAt(0) == '/') {
uri = "${data.auth.urls.transport_url}${uri}"
}
def params = [
uri: uri,
headers: [
'X-nl-protocol-version': 1,
'X-nl-user-id': data.auth.userid,
'Authorization': "Basic ${data.auth.access_token}"
],
body: args
]
def postRequest = { response ->
if (response.getStatus() == 302) {
def locations = response.getHeaders("Location")
def location = locations[0].getValue()
log.debug "redirecting to ${location}"
doRequest(location, args, type, success)
} else {
success.call(response)
}
}
try {
if (type == 'post') {
httpPostJson(params, postRequest)
} else if (type == 'get') {
httpGet(params, postRequest)
}
} catch (Throwable e) {
login()
}
}
def login(method = null, args = [], success = {}) {
def params = [
uri: 'https://home.nest.com/user/login',
body: [username: settings.username, password: settings.password]
]
httpPost(params) {response ->
data.auth = response.data
data.auth.expires_in = Date.parse('EEE, dd-MMM-yyyy HH:mm:ss z', response.data.expires_in).getTime()
log.debug data.auth
api(method, args, success)
}
}
def isLoggedIn() {
if(!data.auth) {
log.debug "No data.auth"
return false
}
def now = new Date().getTime();
return data.auth.expires_in > now
}
def cToF(temp) {
return (temp * 1.8 + 32).toDouble()
}
def fToC(temp) {
return ((temp - 32) / 1.8).toDouble()
}

View File

@@ -39,7 +39,7 @@ metadata {
}
def generatePresenceEvent(boolean present) {
log.info "Life360 generatePresenceEvent($present)"
log.debug "Here in generatePresenceEvent!"
def value = formatValue(present)
def linkText = getLinkText(device)
def descriptionText = formatDescriptionText(linkText, present)

View File

@@ -128,7 +128,7 @@ private Map parseCatchAllMessage(String description) {
if (cluster.command == 0x07) {
if (cluster.data[0] == 0x00){
log.debug "TEMP REPORTING CONFIG RESPONSE" + cluster
resultMap = [name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID]]
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
}
else {
log.warn "TEMP REPORTING CONFIG FAILED- error code:${cluster.data[0]}"

View File

@@ -132,7 +132,7 @@ private Map parseCatchAllMessage(String description) {
if (cluster.command == 0x07) {
if (cluster.data[0] == 0x00) {
log.debug "TEMP REPORTING CONFIG RESPONSE" + cluster
resultMap = [name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID]]
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
}
else {
log.warn "TEMP REPORTING CONFIG FAILED- error code:${cluster.data[0]}"

View File

@@ -161,7 +161,7 @@ private Map parseCatchAllMessage(String description) {
if (cluster.command == 0x07) {
if(cluster.data[0] == 0x00) {
log.debug "TEMP REPORTING CONFIG RESPONSE" + cluster
resultMap = [name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID]]
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
}
else {
log.warn "TEMP REPORTING CONFIG FAILED- error code:${cluster.data[0]}"
@@ -339,7 +339,7 @@ private Map getContactResult(value) {
log.debug "Contact: ${device.displayName} value = ${value}"
def descriptionText = value == 'open' ? '{{ device.displayName }} was opened' : '{{ device.displayName }} was closed'
sendEvent(name: 'contact', value: value, descriptionText: descriptionText, displayed: false, translatable: true)
return [name: 'status', value: value, descriptionText: descriptionText, translatable: true]
sendEvent(name: 'status', value: value, descriptionText: descriptionText, translatable: true)
}
private getAccelerationResult(numValue) {

View File

@@ -119,7 +119,7 @@ private Map parseCatchAllMessage(String description) {
if (cluster.command == 0x07){
if (cluster.data[0] == 0x00) {
log.debug "TEMP REPORTING CONFIG RESPONSE" + cluster
resultMap = [name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID]]
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
}
else {
log.warn "TEMP REPORTING CONFIG FAILED- error code:${cluster.data[0]}"

View File

@@ -103,7 +103,7 @@ private Map parseCatchAllMessage(String description) {
if (cluster.command == 0x07) {
if (cluster.data[0] == 0x00){
log.debug "TEMP REPORTING CONFIG RESPONSE" + cluster
resultMap = [name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID]]
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
}
else {
log.warn "TEMP REPORTING CONFIG FAILED- error code:${cluster.data[0]}"

View File

@@ -289,12 +289,12 @@ def initializeLife360Connection() {
state.life360AccessToken = result.data.access_token
return true;
}
log.info "Life360 initializeLife360Connection, response=${result.data}"
log.debug "Response=${result.data}"
return false;
}
catch (e) {
log.error "Life360 initializeLife360Connection, error: $e"
log.debug e
return false;
}
@@ -656,7 +656,7 @@ def generateInitialEvent (member, childDevice) {
try { // we are going to just ignore any errors
log.info "Life360 generateInitialEvent($member, $childDevice)"
log.debug "Generate Initial Event for New Device for Member = ${member.id}"
def place = state.places.find{it.id==settings.place}
@@ -677,8 +677,6 @@ def generateInitialEvent (member, childDevice) {
// log.debug "Distance Away = ${distanceAway}"
boolean isPresent = (distanceAway <= placeRadius)
log.info "Life360 generateInitialEvent, member: ($memberLatitude, $memberLongitude), place: ($placeLatitude, $placeLongitude), radius: $placeRadius, dist: $distanceAway, present: $isPresent"
// log.debug "External Id=${app.id}:${member.id}"
@@ -720,7 +718,7 @@ def haversine(lat1, lon1, lat2, lon2) {
def placeEventHandler() {
log.info "Life360 placeEventHandler: params=$params, settings.place=$settings.place"
log.debug "In placeEventHandler method."
// the POST to this end-point will look like:
// POST http://test.com/webhook?circleId=XXXX&placeId=XXXX&userId=XXXX&direction=arrive
@@ -731,6 +729,8 @@ def placeEventHandler() {
def direction = params?.direction
def timestamp = params?.timestamp
log.debug "Life360 Event: Circle: ${circleId}, Place: ${placeId}, User: ${userId}, Direction: ${direction}"
if (placeId == settings.place) {
def presenceState = (direction=="in")
@@ -745,10 +745,10 @@ def placeEventHandler() {
if (deviceWrapper) {
deviceWrapper.generatePresenceEvent(presenceState)
log.debug "Life360 event raised on child device: ${externalId}"
log.debug "Event raised on child device: ${externalId}"
}
else {
log.warn "Life360 couldn't find child device associated with inbound Life360 event."
log.debug "Couldn't find child device associated with inbound Life360 event."
}
}