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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
}

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

@@ -26,23 +26,44 @@ definition(
preferences {
section("Control these contact sensors...") {
input "contact", "capability.contactSensor", multiple:true, required:false
}
section("Control these switches...") {
input "switches", "capability.switch", multiple:true
input "switches", "capability.switch", multiple:true, required:false
}
section("Control these smoke alarms...") {
input "smoke_alarms", "capability.smokeDetector", multiple:true, required:false
}
section("Control these window shades...") {
input "shades", "capability.windowShade", multiple:true, required:false
}
section("Control these garage doors...") {
input "garage", "capability.garageDoorControl", multiple:true, required:false
}
section("Control these water sensors...") {
input "water_sensors", "capability.waterSensor", multiple:true, required:false
}
section("Control these motion sensors...") {
input "motions", "capability.motionSensor", multiple:true
input "motions", "capability.motionSensor", multiple:true, required:false
}
section("Control these presence sensors...") {
input "presence_sensors", "capability.presenceSensor", multiple:true
input "presence_sensors", "capability.presenceSensor", multiple:true, required:false
}
section("Control these outlets...") {
input "outlets", "capability.switch", multiple:true
input "outlets", "capability.switch", multiple:true, required:false
}
section("Control these power meters...") {
input "meters", "capability.powerMeter", multiple:true, required:false
}
section("Control these locks...") {
input "locks", "capability.lock", multiple:true
input "locks", "capability.lock", multiple:true, required:false
}
section("Control these locks...") {
input "temperature_sensors", "capability.temperatureMeasurement"
section("Control these temperature sensors...") {
input "temperature_sensors", "capability.temperatureMeasurement", multiple:true, required:false
}
section("Control these batteries...") {
input "batteries", "capability.battery", multiple:true, required:false
}
}
@@ -61,13 +82,13 @@ def updated() {
def initialize() {
// TODO: subscribe to attributes, devices, locations, etc.
subscribe(outlet, "energy", outletHandler)
subscribe(outlet, "switch", outletHandler)
//subscribe(outlet, "energy", outletHandler)
//subscribe(outlet, "switch", outletHandler)
}
// TODO: implement event handlers
def outletHandler(evt) {
log.debug "$outlet.currentEnergy"
//log.debug "$outlet.currentEnergy"
//TODO call G API
}
@@ -83,9 +104,14 @@ mappings {
GET: "getAllDevices"
]
}
path("/doorlocks/:id/:command") {
path("/doorlocks/lock/:id") {
action: [
GET: "updateDoorLock"
GET: "lockDoorLock"
]
}
path("/doorlocks/unlock/:id") {
action: [
GET: "unlockDoorLock"
]
}
path("/doorlocks/:id") {
@@ -93,10 +119,70 @@ mappings {
GET: "getDoorLockStatus"
]
}
path("/contacts/:id") {
action: [
GET: "getContactStatus"
]
}
path("/smoke/:id") {
action: [
GET: "getSmokeStatus"
]
}
path("/shades/open/:id") {
action: [
GET: "openShade"
]
}
path("/shades/preset/:id") {
action: [
GET: "presetShade"
]
}
path("/shades/close/:id") {
action: [
GET: "closeShade"
]
}
path("/shades/:id") {
action: [
GET: "getShadeStatus"
]
}
path("/garage/open/:id") {
action: [
GET: "openGarage"
]
}
path("/garage/close/:id") {
action: [
GET: "closeGarage"
]
}
path("/garage/:id") {
action: [
GET: "getGarageStatus"
]
}
path("/watersensors/:id") {
action: [
GET: "getWaterSensorStatus"
]
}
path("/tempsensors/:id") {
action: [
GET: "getTempSensorsStatus"
]
}
path("/meters/:id") {
action: [
GET: "getMeterStatus"
]
}
path("/batteries/:id") {
action: [
GET: "getBatteryStatus"
]
}
path("/presences/:id") {
action: [
@@ -113,14 +199,29 @@ mappings {
GET: "getOutletStatus"
]
}
path("/outlets/:id/:command") {
path("/outlets/turnon/:id") {
action: [
GET: "updateOutlet"
GET: "turnOnOutlet"
]
}
path("/switches/:command") {
path("/outlets/turnoff/:id") {
action: [
PUT: "updateSwitch"
GET: "turnOffOutlet"
]
}
path("/switches/turnon/:id") {
action: [
GET: "turnOnSwitch"
]
}
path("/switches/turnoff/:id") {
action: [
GET: "turnOffSwitch"
]
}
path("/switches/:id") {
action: [
GET: "getSwitchStatus"
]
}
}
@@ -128,12 +229,149 @@ mappings {
//API Methods
def getAllDevices() {
def locks_list = locks.collect{device(it,"Lock")}
def contact_list = contact.collect{device(it,"Contact Sensor")}
def smokes_list = smoke_alarms.collect{device(it,"Smoke Alarm")}
def shades_list = shades.collect{device(it,"Window Shade")}
def garage_list = garage.collect{device(it,"Garage Door")}
def water_sensors_list = water_sensors.collect{device(it,"Water Sensor")}
def presences_list = presence_sensors.collect{device(it,"Presence")}
def motions_list = motions.collect{device(it,"Motion")}
def outlets_list = outlets.collect{device(it,"Outlet")}
def switches_list = switches.collect{device(it,"Switch")}
def temp_list = temperature_sensors.collect{device(it,"Temperature")}
return [Locks: locks_list, Presences: presences_list, Motions: motions_list, Outlets: outlets_list, Switches: switches_list, Temperatures: temp_list]
def meters_list = meters.collect{device(it,"Power Meters")}
def battery_list = batteries.collect{device(it,"Batteries")}
return smokes_list + contact_list + water_sensors_list + shades_list + garage_list + locks_list + presences_list + motions_list + outlets_list + switches_list + temp_list + meters_list + battery_list
}
//contact sensors
def getContactStatus() {
def device = contact.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
def args = getTempSensorsStatus(device.id)
return [Device_state: device.currentValue('contact')] + args
}
}
//smoke detectors
def getSmokeStatus() {
def device = smoke_alarms.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
def bat = getBatteryStatus(device.id)
return [Device_state: device.currentValue('smoke')] + bat
}
}
//garage
def getGarageStatus() {
def device = garage.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
return [Device_state: device.currentValue('door')]
}
}
def openGarage() {
def device = garage.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
device.open();
return [Device_id: params.id, result_action: "200"]
}
}
def closeGarage() {
def device = garage.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
device.close();
return [Device_id: params.id, result_action: "200"]
}
}
//shades
def getShadeStatus() {
def device = shades.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
return [Device_state: device.currentValue('windowShade')]
}
}
def openShade() {
def device = shades.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
device.open();
return [Device_id: params.id, result_action: "200"]
}
}
def presetShade() {
def device = shades.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
device.presetPosition();
return [Device_id: params.id, result_action: "200"]
}
}
def closeShade() {
def device = shades.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
device.close();
return [Device_id: params.id, result_action: "200"]
}
}
//water sensor
def getWaterSensorStatus() {
def device = water_sensors.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
def bat = getBatteryStatus(device.id)
return [Device_state: device.currentValue('water')] + bat
}
}
//batteries
def getBatteryStatus() {
def device = batteries.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
return [Device_state: device.latestValue("battery")]
}
}
def getBatteryStatus(id) {
def device = batteries.find { it.id == id }
if (!device) {
return []
} else {
return [battery_state: device.latestValue("battery")]
}
}
//LOCKS
@@ -142,30 +380,34 @@ def getDoorLockStatus() {
if (!device) {
httpError(404, "Device not found")
} else {
return [Device_state: device.currentValue('lock')]
def bat = getBatteryStatus(device.id)
return [Device_state: device.currentValue('lock')] + bat
}
}
def updateDoorLock() {
def command = params.command
def lockDoorLock() {
def device = locks.find { it.id == params.id }
if (command){
if (!device) {
if (!device) {
httpError(404, "Device not found")
} else {
if(command == "toggle")
{
if(device.currentValue('lock') == "locked")
device.unlock();
else
device.lock();
device.lock();
return [Device_id: params.id, result_action: "200"]
return [Device_id: params.id, result_action: "200"]
}
}
}
}
def unlockDoorLock() {
def device = locks.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
device.unlock();
return [Device_id: params.id, result_action: "200"]
}
}
//PRESENCE
def getPresenceStatus() {
@@ -173,7 +415,8 @@ def getPresenceStatus() {
if (!device) {
httpError(404, "Device not found")
} else {
return [Device_state: device.currentValue('presence')]
def bat = getBatteryStatus(device.id)
return [Device_state: device.currentValue('presence')] + bat
}
}
@@ -184,7 +427,8 @@ def getMotionStatus() {
if (!device) {
httpError(404, "Device not found")
} else {
return [Device_state: device.currentValue('motion')]
def args = getTempSensorsStatus(device.id)
return [Device_state: device.currentValue('motion')] + args
}
}
@@ -195,52 +439,98 @@ def getOutletStatus() {
if (!device) {
httpError(404, "Device not found")
} else {
return [Device_state: device.currentSwitch, Current_watt: device.currentValue("energy")]
def watt = getMeterStatus(device.id)
return [Device_state: device.currentSwitch] + watt
}
}
def updateOutlet() {
def getMeterStatus() {
def command = params.command
def device = meters.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
return [Device_id: device.id, Device_type: device.type, Current_watt: device.currentValue("power")]
}
}
def getMeterStatus(id) {
def device = meters.find { it.id == id }
if (!device) {
return []
} else {
return [Current_watt: device.currentValue("power")]
}
}
def turnOnOutlet() {
def device = outlets.find { it.id == params.id }
if (command){
if (!device) {
httpError(404, "Device not found")
} else {
if(command == "toggle")
{
if(device.currentSwitch == "on")
device.off();
else
device.on();
device.on();
return [Device_id: params.id, result_action: "200"]
}
return [Device_id: params.id, result_action: "200"]
}
}
}
}
def turnOffOutlet() {
def device = outlets.find { it.id == params.id }
if (command){
if (!device) {
httpError(404, "Device not found")
} else {
device.off();
return [Device_id: params.id, result_action: "200"]
}
}
}
//SWITCH
def updateSwitch() {
def command = params.command
def getSwitchStatus() {
def device = switches.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
return [Device_state: device.currentValue('switch')]
}
}
def turnOnSwitch() {
def device = switches.find { it.id == params.id }
if (command){
if (!device) {
httpError(404, "Device not found")
} else {
if(command == "toggle")
{
if(device.currentSwitch == "on")
device.off();
else
device.on();
device.on();
return [Device_id: params.id, result_action: "200"]
}
return [Device_id: params.id, result_action: "200"]
}
}
}
def turnOffSwitch() {
def device = switches.find { it.id == params.id }
if (command){
if (!device) {
httpError(404, "Device not found")
} else {
device.on();
return [Device_id: params.id, result_action: "200"]
}
}
}
//TEMPERATURE
def getTempSensorsStatus() {
@@ -248,6 +538,17 @@ def getTempSensorsStatus() {
if (!device) {
httpError(404, "Device not found")
} else {
return [Device_state: device.currentValue('temperature')]
def bat = getBatteryStatus(device.id)
return [Device_state: device.currentValue('temperature')] + bat
}
}
def getTempSensorsStatus(id) {
def device = temperature_sensors.find { it.id == id }
if (!device) {
return []
} else {
def bat = getBatteryStatus(device.id)
return [temperature: device.currentValue('temperature')] + bat
}
}
}

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."
}
}