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Author SHA1 Message Date
Fredrik Westman
9a760b778c MSA-1875: Originally developed by Don Caruanna with minor changes from Sensative.
This is intended to be the official/default device handler for Strips by Sensative.

The preference defaults are set to the device defaults. 
(If you are looking for accurate values in the IDE, you have to hit "Done" in preferences once, even if you don't change any settings.)

Preferences with an asterisk have to wait for the next wakeup, automatic or manual. The pending icon will display if there are changes pending and say "Synced" otherwise. If you revert your preferences to values that match the device before the next wakeup, it will go back to "Synced". Only changed preferences are pushed to the device.

The actual wakeup by the device is approximately 90% of the wakeupinterval setting. So the observed wakeup interval will be a little less than the chosen one. Also, the wakeupinterval has a minimum of 1800 and a maximum of 86400.

A tamper notification is sent in 2 cases:
Putting a magnet on the round edge when there is a magnet on the square one triggers tamper
During a Manual Wake Up, a tamper is sent before the Node Info.
The tamper event time can be cleared by just tapping on the time itself. Tamper events are reported so they can be seen historically in the GUI.
2017-04-07 02:01:23 -07:00
74 changed files with 761 additions and 2163 deletions

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/**
* Strips by Sensative
* Device Handler by Don Caruana
*
* Date: 2017-2-19
* Supported Command Classes per device specs
*
* Association v2
* Association Group Information
* Battery
* Binary Sensor
* Configuration
* Device Reset Local
* Manufacturer Specific
* Notification v4
* Powerlevel
* Version v2
* Wake Up v2
* ZWavePlus Info v2
*
* Parm Size Description Value
* 1 1 Type of report to send 1 (Default)-Notification Report, 0-Binary Sensor report, 2-Basic report
* 2 1 LED Indication 1 (Default)-On for event (ex. door opened), 0-Off
*
* This device handler will just override the smartthings default wakeup interval of 4 hours and set to 24 hours (manufacturer default)
* and check the battery once a day (no sooner than every 23 hours)
*/
metadata {
definition (name: "Strips by Sensative", namespace: "doncaruana/Sensative", author: "Don Caruana, Sensative") {
capability "Contact Sensor"
capability "Configuration"
capability "Battery"
capability "Sensor"
capability "Refresh"
attribute "needUpdate", "string"
attribute "tamper" , "string"
fingerprint mfr:"019A", prod:"0003", model:"0003", deviceJoinName:"Strips by Sensative"
fingerprint deviceId:"0x0701", inClusters: "0x5E,0x86,0x72,0x30,0x70,0x71,0x5A,0x85,0x59,0x80,0x84,0x73"
fingerprint cc: "0x5E,0x86,0x72,0x30,0x70,0x71,0x5A,0x85,0x59,0x80,0x84,0x73", mfr:"019A", prod:"0003", model:"0003", deviceJoinName:"Strips by Sensative"
}
preferences {
section ("configuration settings") {
input(
title : "Changes in Settings marked with * will not take effect until the next device Wake Up."
,description : null
,type : "paragraph")
input "sendType", "enum",
title: "* Reporting Type",
description: "Notification Report",
options:["binary": "Sensor Binary Report", "notification": "Notification Report", "basic": "Basic Report"],
defaultValue: "notification",
displayDuringSetup: false
input "wakeupInterval","enum",
title: "* Device Wake Up Interval",
description: "24 hours",
defaultValue: "86400",
required: false,
displayDuringSetup: false,
options: buildInterval()
input "led", "bool",
title: "* LED On",
defaultValue: true,
displayDuringSetup: false
input "ignoreWakeup", "bool",
title: "Ignore Manual Wake Up",
defaultValue: false,
displayDuringSetup: false
input "invertOutput", "bool",
title: "Invert Open/Close Reporting",
defaultValue: false,
displayDuringSetup: false
}
}
tiles(scale: 2) {
multiAttributeTile(name:"contact", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.contact", key: "PRIMARY_CONTROL") {
attributeState "open", label:'${name}', icon:"st.contact.contact.open", backgroundColor:"#ffa81e"
attributeState "closed", label:'${name}', icon:"st.contact.contact.closed", backgroundColor:"#79b821"
}
}
standardTile("tamper", "device.tamper", inactiveLabel: false, width: 4, height: 3) {
state "tamper", label:'${currentValue}', action:"refresh.refresh", backgroundColor:"#FFCC7B"
}
standardTile("configure", "device.needUpdate", inactiveLabel: false, width: 2, height: 2) {
state "NO" , label:'Synced', backgroundColor:"#B1D57D"
state "YES", label:'Pending changes', backgroundColor:"#FFCC7B"
}
standardTile("battery", "device.battery", inactiveLabel: false, width: 2, height: 1) {
state "battery", label:'Battery: ${currentValue}%'
}
main (["contact"])
details(["contact","battery","tamper","configure"])
}
simulator {
// messages the device returns in response to commands it receives
status "open (basic)" : "command: 9881, payload: 00 20 01 FF"
status "closed (basic)" : "command: 9881 payload: 00 20 01 00"
status "open (notification)" : "command: 9881, payload: 00 71 05 06 FF 00 FF 06 16 00 00"
status "closed (notification)" : "command: 9881, payload: 00 71 05 06 00 00 FF 06 17 00 00"
status "wake up" : "command: 9881, payload: 00 84 07"
status "battery (100%)" : "command: 9881, payload: 00 80 03 64"
status "battery low" : "command: 9881, payload: 00 80 03 FF"
}
}
def configure() {
def commands = []
state.lastupdate = now()
sendEvent(name: "tamper", value: "No Tamper", displayed: false)
log.debug "Listing all device parameters and defaults since this is a new inclusion"
commands << zwave.manufacturerSpecificV1.manufacturerSpecificGet().format()
commands << zwave.versionV1.versionGet().format()
commands << zwave.batteryV1.batteryGet().format()
commands << zwave.configurationV1.configurationGet(parameterNumber: 1).format()
commands << zwave.configurationV1.configurationGet(parameterNumber: 2).format()
commands << zwave.wakeUpV2.wakeUpIntervalSet(seconds: 86400, nodeid:zwaveHubNodeId).format()
commands << zwave.wakeUpV2.wakeUpIntervalGet().format()
commands << zwave.wakeUpV2.wakeUpNoMoreInformation().format()
delayBetween(commands, 1500)
}
private getCommandClassVersions() {
[
0x71: 3, // Notification
0x5E: 2, // ZwaveplusInfo
0x59: 1, // AssociationGrpInfo
0x85: 2, // Association
0x80: 1, // Battery
0x70: 1, // Configuration
0x5A: 1, // DeviceResetLocally
0x72: 1, // ManufacturerSpecific
0x73: 1, // Powerlevel
0x84: 2, // WakeUp
0x86: 1, // Version
0x30: 1, // Binary Sensor
]
}
// Parse incoming device messages to generate events
def parse(String description) {
def result = []
def cmd
if (description.startsWith("Err 106")) {
state.sec = 0
result = createEvent( name: "secureInclusion", value: "failed", eventType: "ALERT",
descriptionText: "This sensor failed to complete the network security key exchange. If you are unable to control it via SmartThings, you must remove it from your network and add it again.")
} else if (description.startsWith("Err")) {
result = createEvent(descriptionText: "$device.displayName $description", isStateChange: true)
} else {
cmd = zwave.parse(description, commandClassVersions)
if (cmd) {
result = zwaveEvent(cmd)
}
}
if (result instanceof List) {
result = result.flatten()
}
log.debug "Parsed '$description' to $result"
return result
}
/**
* Triggered when Done button is pushed on Preference Pane
*/
def updated()
{
if(now() - state.lastupdate > 3000){
def isUpdateNeeded = "NO"
if(wakeupInterval != null && state.wakeupInterval != wakeupInterval) {isUpdateNeeded = "YES"}
if (sendType != null && sendType != state.sendType) {isUpdateNeeded = "YES"}
if (led != null && led != state.led) {isUpdateNeeded = "YES"}
state.lastupdate = now()
sendEvent(name:"needUpdate", value: isUpdateNeeded, displayed:false, isStateChange: true)
}
}
/**
* Only device parameter changes require a state change
*/
def update_settings()
{
def cmds = []
def isUpdateNeeded = "NO"
if (state.wakeupInterval != wakeupInterval){
cmds << zwave.wakeUpV2.wakeUpIntervalSet(seconds: wakeupInterval.toInteger(), nodeid:zwaveHubNodeId).format()
cmds << "delay 1000"
cmds << zwave.wakeUpV2.wakeUpIntervalGet().format()
}
if (sendType != state.sendType){
cmds << zwave.configurationV1.configurationSet(parameterNumber: 1, size: 1, configurationValue: [sendType == "binary" ? 0 : sendType == "basic" ? 2 : 1]).format()
cmds << "delay 1000"
cmds << zwave.configurationV1.configurationGet(parameterNumber: 1).format()
}
if (led != state.led){
cmds << zwave.configurationV1.configurationSet(parameterNumber: 2, size: 1, configurationValue: [led == true ? 1 : 0]).format()
cmds << "delay 1000"
cmds << zwave.configurationV1.configurationGet(parameterNumber: 2).format()
}
cmds << "delay 1000"
sendEvent(name:"needUpdate", value: isUpdateNeeded, displayed:false, isStateChange: true)
return cmds
}
def zwaveEvent(physicalgraph.zwave.commands.configurationv1.ConfigurationReport cmd) {
def name = ""
def value = ""
def tmpParm = cmd.parameterNumber
def reportValue = cmd.configurationValue[0]
switch (cmd.parameterNumber) {
case 1:
name = "sendType"
switch (reportValue) {
case 0:
value = "binary"
break
case 1:
value = "notification"
break
case 2:
value = "basic"
break
default:
break
}
state.sendType = value
log.debug "sendType = $value"
break
case 2:
name = "led"
value = reportValue
log.debug "led = $value"
state.led = reportValue == 1 ? true : false
break
default:
break
}
sendEvent(name: name, value: value, displayed: true)
}
def zwaveEvent(physicalgraph.zwave.commands.securityv1.SecurityMessageEncapsulation cmd) {
def encapsulatedCommand = cmd.encapsulatedCommand(commandClassVersions)
log.debug "encapsulated: $encapsulatedCommand"
if (encapsulatedCommand) {
state.sec = 1
return zwaveEvent(encapsulatedCommand)
} else {
log.warn "Unable to extract encapsulated cmd from $cmd"
return [createEvent(descriptionText: cmd.toString())]
}
}
def sensorValueEvent(value) {
//If the invertOutput parameter is set, logically invert the output value
def flip = 0
if (state.sendType == "notification"){
flip = value ^ 0x1}
else{
flip = value ^ 0xFF}
if (invertOutput) {value = flip}
if (value) {
createEvent(name: "contact", value: "open", descriptionText: "$device.displayName is open")
} else {
createEvent(name: "contact", value: "closed", descriptionText: "$device.displayName is closed")
}
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicReport cmd) {
return sensorValueEvent(cmd.value)
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicSet cmd) {
return sensorValueEvent(cmd.value)
}
def zwaveEvent(physicalgraph.zwave.commands.sensorbinaryv1.SensorBinaryReport cmd) {
return sensorValueEvent(cmd.sensorValue)
}
def zwaveEvent(physicalgraph.zwave.commands.sensoralarmv1.SensorAlarmReport cmd) {
return sensorValueEvent(cmd.sensorState)
}
def zwaveEvent(physicalgraph.zwave.commands.notificationv3.NotificationReport cmd) {
def result = []
if (cmd.notificationType == 0x06 && cmd.event == 0x16) {
result << sensorValueEvent(1)
} else if (cmd.notificationType == 0x06 && cmd.event == 0x17) {
result << sensorValueEvent(0)
} else if (cmd.notificationType == 0x07) {
if (cmd.event == 0x00) {
if (cmd.eventParametersLength == 0 || cmd.eventParameter[0] != 3) {
result << createEvent(descriptionText: "$device.displayName covering replaced", isStateChange: true, displayed: false)
} else {
result << sensorValueEvent(0)
}
} else if (cmd.event == 0x01 || cmd.event == 0x02) {
result << sensorValueEvent(1)
} else if (cmd.event == 0x03) {
result << createEvent(descriptionText: "$device.displayName covering was removed", isStateChange: true)
if (!device.currentState("ManufacturerCode")) {
result << response(secure(zwave.manufacturerSpecificV1.manufacturerSpecificGet()))
}
} else if (cmd.event == 0x04) {
def timeString1 = new Date().format("MMM d", location.timeZone)
def timeString2 = new Date().format("hh:mm:ss", location.timeZone)
result << createEvent(name: "tamper", value: "Tampered\n${timeString1}\n${timeString2}", descriptionText: "$device.displayName was tampered with at ${timeString1} ${timeString2}", isStateChange: true)
if (!ignoreWakeup) {
sendEvent(name:"WakeUp", value: "Manual Wakeup", descriptionText: "${device.displayName} woke up", isStateChange: true, displayed: true)
result << doWakeup()
}
} else if (cmd.event == 0x05 || cmd.event == 0x06) {
result << createEvent(descriptionText: "$device.displayName detected glass breakage", isStateChange: true)
} else {
result << createEvent(descriptionText: "$device.displayName event $cmd.event ${cmd.eventParameter.inspect()}", isStateChange: true, displayed: false)
}
} else if (cmd.notificationType) {
result << createEvent(descriptionText: "$device.displayName notification $cmd.notificationType event $cmd.event ${cmd.eventParameter.inspect()}", isStateChange: true, displayed: false)
} else {
def value = cmd.v1AlarmLevel == 255 ? "active" : cmd.v1AlarmLevel ?: "inactive"
result << createEvent(name: "alarm $cmd.v1AlarmType", value: value, isStateChange: true, displayed: false)
}
return result
}
def zwaveEvent(physicalgraph.zwave.commands.wakeupv2.WakeUpNotification cmd) {
def event = createEvent(name: "WakeUp", value: "Auto Wakeup", descriptionText: "${device.displayName} woke up", isStateChange: true, displayed: true)
def cmds = []
if (!device.currentState("ManufacturerCode")) {
cmds << zwave.manufacturerSpecificV1.manufacturerSpecificGet().format()
cmds << "delay 2000"
}
if (!state.lastbat || now() - state.lastbat > 23*60*60*1000) { //check no sooner than once every 23 hours (once a day)
log.debug "checking battery"
event.descriptionText += ", requesting battery"
cmds << zwave.batteryV1.batteryGet().format()
cmds << "delay 2000"
} else {
log.debug "not checking battery, was updated ${(now() - state.lastbat)/60000 as int} min ago"
}
if (device.currentValue("needUpdate") == "YES") { cmds += update_settings() }
cmds << zwave.wakeUpV2.wakeUpNoMoreInformation().format()
return [event, response(cmds)]
}
def zwaveEvent(physicalgraph.zwave.commands.batteryv1.BatteryReport cmd) {
def map = [ name: "battery", unit: "%" ]
if (cmd.batteryLevel == 0xFF) {
map.value = 1
map.descriptionText = "${device.displayName} has a low battery"
map.isStateChange = true
} else {
map.value = cmd.batteryLevel
}
def event = createEvent(map)
map.isStateChange = true
state.lastbat = now()
return [event]
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv1.ManufacturerSpecificReport cmd) {
def result = []
def manufacturerCode = String.format("%04X", cmd.manufacturerId)
def productTypeCode = String.format("%04X", cmd.productTypeId)
def productCode = String.format("%04X", cmd.productId)
def wirelessConfig = "ZWP"
updateDataValue("Manufacturer", cmd.manufacturerName)
updateDataValue("Manufacturer ID", manufacturerCode)
updateDataValue("Product Type", productTypeCode)
updateDataValue("Product Code", productCode)
return result
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
return [createEvent(descriptionText: "$device.displayName: $cmd", displayed: false)]
}
private secure(physicalgraph.zwave.Command cmd) {
if (state.sec == 0) { // default to secure
cmd.format()
} else {
zwave.securityV1.securityMessageEncapsulation().encapsulate(cmd).format()
}
}
private secureSequence(commands, delay=200) {
delayBetween(commands.collect{ secure(it) }, delay)
}
def buildInterval() {
def intervalList = []
intervalList << [ "0" : "Disabled" ]
intervalList << [ "1800" : "30 minutes" ]
intervalList << [ "3600" : "1 hour" ]
intervalList << [ "7200" : "2 hours" ]
intervalList << [ "10800" : "3 hours" ]
intervalList << [ "14400" : "4 hours" ]
intervalList << [ "18000" : "5 hours" ]
intervalList << [ "21600" : "6 hours" ]
intervalList << [ "36000" : "10 hours" ]
intervalList << [ "43200" : "12 hours" ]
intervalList << [ "86400" : "24 hours" ]
}
def doWakeup() {
def cmds = []
cmds << "delay 2000"
if (device.currentValue("needUpdate") == "YES") { cmds += update_settings() }
cmds << zwave.wakeUpV2.wakeUpNoMoreInformation().format()
return response(cmds)
}
def refresh() {
sendEvent(name: "tamper", value: "No Tamper", displayed: false)
}
def zwaveEvent(physicalgraph.zwave.commands.versionv1.VersionReport cmd) {
def appversion = String.format("%02d.%02d", cmd.applicationVersion, cmd.applicationSubVersion)
def zprotoversion = String.format("%d.%02d", cmd.zWaveProtocolVersion, cmd.zWaveProtocolSubVersion)
updateDataValue("zWave Library", cmd.zWaveLibraryType.toString())
updateDataValue("Firmware", appversion)
updateDataValue("zWave Version", zprotoversion)
sendEvent(name: "Firmware", value: appversion, displayed: true)
}
def zwaveEvent(physicalgraph.zwave.commands.wakeupv2.WakeUpIntervalReport cmd) {
state.wakeupInterval = cmd.seconds.toString()
sendEvent(name: "wakeupInterval", value: state.wakeupInterval, displayed: true)
}

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# Express Controls EZMultiPli
Works with:
* [Express Controls EZMultiPli](https://www.smartthings.com/works-with-smartthings/)
## Table of contents
* [Release Notes](#release-notes)
* [Capabilities](#capabilities)
* [Troubleshooting](#troubleshooting)
## Release Notes
* **2017-04-19** - _dkirker_ - Update default config values in config value range check functions, use lux if lum option is null, fix NullPointerException on initial pairing when color data has not been set (and set the default color data!)
* **2017-04-10** - _DrZwave_ (with help from Donald Kirker) - changed fingerprint to the new format, lowered the OnTime and other parameters to be "more in line with ST user expectations", get the luminance in LUX so it reports in lux all the time.
* **2016-10-06** - _erocm1231_ - Added "updated" method to run when configuration options are changed. Depending on model of unit, luminance is being reported as a relative percentace or as a lux value. Added the option to configure this in the handler.
* **2016-01-28** - _erocm1231_ - Changed the configuration method to use scaledConfiguration so that it properly formatted negative numbers. Also, added configurationGet and a configurationReport method so that config values can be verified.
* **2015-12-04** - _erocm1231_ - added range value to preferences as suggested by @Dela-Rick.
* **2015-11-26** - _erocm1231_ - Fixed null condition error when adding as a new device.
* **2015-11-24** - _erocm1231_ - Added refresh command. Made a few changes to how the handler maps colors to the LEDs. Fixed the device not having its on/off status updated when colors are changed.
* **2015-11-23** - _erocm1231_ - Changed the look to match SmartThings v2 devices.
* **2015-11-21** - _erocm1231_ - Made code much more efficient. Also made it compatible when setColor is passed a hex value. Mapping of special colors: Soft White - Default - Yellow, White - Concentrate - White, Daylight - Energize - Teal, Warm White - Relax - Yellow
* **2015-11-19** - _erocm1231_ - Fixed a couple incorrect colors, changed setColor to be more compatible with other apps
* **2015-11-18** - _erocm1231_ - Added to setColor for compatibility with Smart Lighting
* **v0.1.0** - _DrZWave_ - chose better icons, Got color LED to work - first fully functional version
* **v0.0.9** - _jrs_ - got the temp and luminance to work. Motion works. Debugging the color wheel.
* **v0.0.8** - _DrZWave_ 2/25/2015 - change the color control to be tiles since there are only 8 colors.
* **v0.0.7** - _jrs_ - 02/23/2015 - Jim Sulin
## Capabilities
* **Actuator** - represents that a Device has commands
* **Sensor** - detects sensor events
* **Motion Sensor** - can detect motion
* **Temperature Measurement** - defines device measures current temperature
* **Illuminance Measurement** - gives the illuminance reading from devices that support it
* **Switch** - can detect state (possible values: on/off)
* **Color Control** - represents that the color attributes of a device can be controlled (hue, saturation, color value
* **Configuration** - configure() command called when device is installed or device preferences updated
* **Refresh** - refresh() command for status updates
## Troubleshooting

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// Express Controls EZMultiPli Multi-sensor
// Motion Sensor - Temperature - Light level - 8 Color Indicator LED - Z-Wave Range Extender - Wall Powered
// driver for SmartThings
// The EZMultiPli is also known as the HSM200 from HomeSeer.com
metadata {
definition (name: "EZmultiPli", namespace: "DrZWave", author: "Eric Ryherd", oauth: true) {
capability "Actuator"
capability "Sensor"
capability "Motion Sensor"
capability "Temperature Measurement"
capability "Illuminance Measurement"
capability "Switch"
capability "Color Control"
capability "Configuration"
capability "Refresh"
fingerprint mfr: "001E", prod: "0004", model: "0001" // new format for Fingerprint which is unique for every certified Z-Wave product
} // end definition
simulator {
// messages the device returns in response to commands it receives
status "motion" : "command: 7105000000FF07, payload: 07"
status "no motion" : "command: 7105000000FF07, payload: 00"
for (int i = 0; i <= 100; i += 20) {
status "temperature ${i}F": new physicalgraph.zwave.Zwave().sensorMultilevelV5.sensorMultilevelReport(
scaledSensorValue: i, precision: 1, sensorType: 1, scale: 1).incomingMessage()
}
for (int i = 0; i <= 100; i += 20) {
status "luminance ${i} %": new physicalgraph.zwave.Zwave().sensorMultilevelV5.sensorMultilevelReport(
scaledSensorValue: i, precision: 0, sensorType: 3).incomingMessage()
}
} //end simulator
tiles (scale: 2){
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL", icon: "st.Lighting.light18") {
attributeState "on", label:'${name}', action:"switch.off", icon:"st.switches.light.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${name}', action:"switch.on", icon:"st.switches.light.off", backgroundColor:"#ffffff", nextState:"turningOn"
attributeState "turningOn", label:'${name}', icon:"st.switches.light.on", backgroundColor:"#79b821"
attributeState "turningOff", label:'${name}', icon:"st.switches.light.off", backgroundColor:"#ffffff"
}
tileAttribute ("device.color", key: "COLOR_CONTROL") {
attributeState "color", action:"setColor"
}
tileAttribute ("statusText", key: "SECONDARY_CONTROL") {
attributeState "statusText", label:'${currentValue}'
}
}
standardTile("motion", "device.motion", width: 2, height: 2, canChangeIcon: true, canChangeBackground: true) {
state "active", label:'motion', icon:"st.motion.motion.active", backgroundColor:"#53a7c0"
state "inactive", label:'no motion', icon:"st.motion.motion.inactive", backgroundColor:"#ffffff"
}
valueTile("temperature", "device.temperature", width: 2, height: 2) {
state "temperature", label:'${currentValue}°', unit:"F", icon:"", // would be better if the units would switch to the desired units of the system (imperial or metric)
backgroundColors:[
[value: 0, color: "#1010ff"], // blue=cold
[value: 65, color: "#a0a0f0"],
[value: 70, color: "#e0e050"],
[value: 75, color: "#f0d030"], // yellow
[value: 80, color: "#fbf020"],
[value: 85, color: "#fbdc01"],
[value: 90, color: "#fb3a01"],
[value: 95, color: "#fb0801"] // red=hot
]
}
// icons to use would be st.Weather.weather2 or st.alarm.temperature.normal - see http://scripts.3dgo.net/smartthings/icons/ for a list of icons
valueTile("illuminance", "device.illuminance", width: 2, height: 2, inactiveLabel: false) {
// jrs 4/7/2015 - Null on display
//state "luminosity", label:'${currentValue} ${unit}'
state "luminosity", label:'${currentValue}', unit:'${currentValue}', icon:"",
backgroundColors:[
[value: 25, color: "#404040"],
[value: 50, color: "#808080"],
[value: 75, color: "#a0a0a0"],
[value: 90, color: "#e0e0e0"],
//lux measurement values
[value: 150, color: "#404040"],
[value: 300, color: "#808080"],
[value: 600, color: "#a0a0a0"],
[value: 900, color: "#e0e0e0"]
]
}
standardTile("refresh", "device.switch", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
standardTile("configure", "device.configure", inactiveLabel: false, width: 2, height: 2, decoration: "flat") {
state "configure", label:'', action:"configuration.configure", icon:"st.secondary.configure"
}
main (["temperature","motion", "switch"])
details(["switch", "motion", "temperature", "illuminance", "refresh", "configure"])
} // end tiles
preferences {
input "OnTime", "number", title: "No Motion Interval", description: "N minutes lights stay on after no motion detected [0, 1-127]", range: "0..127", defaultValue: 2, displayDuringSetup: true, required: false
input "OnLevel", "number", title: "Dimmer Onlevel", description: "Dimmer OnLevel for associated node 2 lights [-1, 0, 1-99]", range: "-1..99", defaultValue: -1, displayDuringSetup: true, required: false
input "LiteMin", "number", title: "Luminance Report Frequency", description: "Luminance report sent every N minutes [0-127]", range: "0..127", defaultValue: 6, displayDuringSetup: true, required: false
input "TempMin", "number", title: "Temperature Report Frequency", description: "Temperature report sent every N minutes [0-127]", range: "0..127", defaultValue: 6, displayDuringSetup: true, required: false
input "TempAdj", "number", title: "Temperature Calibration", description: "Adjust temperature up/down N tenths of a degree F [(-127)-(+128)]", range: "-127..128", defaultValue: 0, displayDuringSetup: true, required: false
input("lum", "enum", title:"Illuminance Measurement", description: "Percent or Lux", defaultValue: 2 ,required: false, displayDuringSetup: true, options:
[1:"Percent",
2:"Lux"])
}
} // end metadata
// Parse incoming device messages from device to generate events
def parse(String description){
//log.debug "==> New Zwave Event: ${description}"
def result = []
def cmd = zwave.parse(description, [0x31: 5]) // 0x31=SensorMultilevel which we force to be version 5
if (cmd) {
def cmdData = zwaveEvent(cmd)
if (cmdData != [:])
result << createEvent(cmdData)
}
def statusTextmsg = ""
if (device.currentState('temperature') != null && device.currentState('illuminance') != null) {
statusTextmsg = "${device.currentState('temperature').value} ° - ${device.currentState('illuminance').value} ${(lum == 1) ? "%" : "LUX"}"
sendEvent("name":"statusText", "value":statusTextmsg, displayed:false)
}
if (result != [null] && result != []) log.debug "Parse returned ${result}"
return result
}
// Event Generation
def zwaveEvent(physicalgraph.zwave.commands.sensormultilevelv5.SensorMultilevelReport cmd){
def map = [:]
switch (cmd.sensorType) {
case 0x01: // SENSOR_TYPE_TEMPERATURE_VERSION_1
def cmdScale = cmd.scale == 1 ? "F" : "C"
map.value = convertTemperatureIfNeeded(cmd.scaledSensorValue, cmdScale, cmd.precision)
map.unit = getTemperatureScale()
map.name = "temperature"
log.debug "Temperature report"
break;
case 0x03 : // SENSOR_TYPE_LUMINANCE_VERSION_1
map.value = cmd.scaledSensorValue.toInteger().toString()
if(lum == 1) map.unit = "%"
else map.unit = "lux"
map.name = "illuminance"
log.debug "Luminance report"
break;
}
return map
}
def zwaveEvent(physicalgraph.zwave.commands.configurationv2.ConfigurationReport cmd) {
log.debug "${device.displayName} parameter '${cmd.parameterNumber}' with a byte size of '${cmd.size}' is set to '${cmd.configurationValue}'"
}
def zwaveEvent(physicalgraph.zwave.commands.notificationv3.NotificationReport cmd) {
def map = [:]
if (cmd.notificationType==0x07) { // NOTIFICATION_TYPE_BURGLAR
if (cmd.event==0x07 || cmd.event==0x08) {
map.name = "motion"
map.value = "active"
map.descriptionText = "$device.displayName motion detected"
log.debug "motion recognized"
} else if (cmd.event==0) {
map.name = "motion"
map.value = "inactive"
map.descriptionText = "$device.displayName no motion detected"
log.debug "No motion recognized"
}
}
if (map.name != "motion") {
log.debug "unmatched parameters for cmd: ${cmd.toString()}}"
}
return map
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicReport cmd) {
// The EZMultiPli sets the color back to #ffffff on "off" or at init, so update the ST device to reflect this.
if (device.latestState("color") == null || (cmd.value == 0 && device.latestState("color").value != "#ffffff")) {
sendEvent(name: "color", value: "#ffffff", displayed: true)
}
[name: "switch", value: cmd.value ? "on" : "off", type: "digital"]
}
def updated()
{
log.debug "updated() is being called"
def cmds = configure()
if (cmds != []) response(cmds)
}
def on() {
log.debug "Turning Light 'on'"
delayBetween([
zwave.basicV1.basicSet(value: 0xFF).format(),
zwave.basicV1.basicGet().format()
], 500)
}
def off() {
log.debug "Turning Light 'off'"
delayBetween([
zwave.basicV1.basicSet(value: 0x00).format(),
zwave.basicV1.basicGet().format()
], 500)
}
def setColor(value) {
log.debug "setColor() : ${value}"
def myred
def mygreen
def myblue
def hexValue
def cmds = []
if ( value.level == 1 && value.saturation > 20) {
def rgb = huesatToRGB(value.hue as Integer, 100)
myred = rgb[0] >=128 ? 255 : 0
mygreen = rgb[1] >=128 ? 255 : 0
myblue = rgb[2] >=128 ? 255 : 0
}
else if ( value.level > 1 ) {
def rgb = huesatToRGB(value.hue as Integer, value.saturation as Integer)
myred = rgb[0] >=128 ? 255 : 0
mygreen = rgb[1] >=128 ? 255 : 0
myblue = rgb[2] >=128 ? 255 : 0
}
else if (value.hex) {
def rgb = value.hex.findAll(/[0-9a-fA-F]{2}/).collect { Integer.parseInt(it, 16) }
myred = rgb[0] >=128 ? 255 : 0
mygreen = rgb[1] >=128 ? 255 : 0
myblue = rgb[2] >=128 ? 255 : 0
}
else {
myred=value.red >=128 ? 255 : 0 // the EZMultiPli has just on/off for each of the 3 channels RGB so convert the 0-255 value into 0 or 255.
mygreen=value.green >=128 ? 255 : 0
myblue=value.blue>=128 ? 255 : 0
}
//log.debug "Red: ${myred} Green: ${mygreen} Blue: ${myblue}"
//cmds << zwave.colorControlV1.stateSet(stateDataLength: 3, VariantGroup1: [0x02, myred], VariantGroup2:[ 0x03, mygreen], VariantGroup3:[0x04,myblue]).format() // ST support for this command as of 2015/02/23 does not support the color IDs so this command cannot be used.
// So instead we'll use these commands to hack around the lack of support of the above command
cmds << zwave.basicV1.basicSet(value: 0x00).format() // As of 2015/02/23 ST is not supporting stateSet properly but found this hack that works.
if (myred!=0) {
cmds << zwave.colorControlV1.startCapabilityLevelChange(capabilityId: 0x02, startState: myred, ignoreStartState: True, updown: True).format()
cmds << zwave.colorControlV1.stopStateChange(capabilityId: 0x02).format()
}
if (mygreen!=0) {
cmds << zwave.colorControlV1.startCapabilityLevelChange(capabilityId: 0x03, startState: mygreen, ignoreStartState: True, updown: True).format()
cmds << zwave.colorControlV1.stopStateChange(capabilityId: 0x03).format()
}
if (myblue!=0) {
cmds << zwave.colorControlV1.startCapabilityLevelChange(capabilityId: 0x04, startState: myblue, ignoreStartState: True, updown: True).format()
cmds << zwave.colorControlV1.stopStateChange(capabilityId: 0x04).format()
}
cmds << zwave.basicV1.basicGet().format()
hexValue = rgbToHex([r:myred, g:mygreen, b:myblue])
if(hexValue) sendEvent(name: "color", value: hexValue, displayed: true)
delayBetween(cmds, 100)
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
// Handles all Z-Wave commands we aren't interested in
[:]
}
// ensure we are passing acceptable param values for LiteMin & TempMin configs
def checkLiteTempInput(value) {
if (value == null) {
value=6
}
def liteTempVal = value.toInteger()
switch (liteTempVal) {
case { it < 0 }:
return 6 // bad value, set to default
break
case { it > 127 }:
return 127 // bad value, greater then MAX, set to MAX
break
default:
return liteTempVal // acceptable value
}
}
// ensure we are passing acceptable param value for OnTime config
def checkOnTimeInput(value) {
if (value == null) {
value=2
}
def onTimeVal = value.toInteger()
switch (onTimeVal) {
case { it < 0 }:
return 2 // bad value set to default
break
case { it > 127 }:
return 127 // bad value, greater then MAX, set to MAX
break
default:
return onTimeVal // acceptable value
}
}
// ensure we are passing acceptable param value for OnLevel config
def checkOnLevelInput(value) {
if (value == null) {
value=99
}
def onLevelVal = value.toInteger()
switch (onLevelVal) {
case { it < -1 }:
return -1 // bad value set to default
break
case { it > 99 }:
return 99 // bad value, greater then MAX, set to MAX
break
default:
return onLevelVal // acceptable value
}
}
// ensure we are passing an acceptable param value for TempAdj configs
def checkTempAdjInput(value) {
if (value == null) {
value=0
}
def tempAdjVal = value.toInteger()
switch (tempAdjVal) {
case { it < -127 }:
return 0 // bad value, set to default
break
case { it > 128 }:
return 128 // bad value, greater then MAX, set to MAX
break
default:
return tempAdjVal // acceptable value
}
}
def refresh() {
def cmd = []
cmd << zwave.switchColorV3.switchColorGet().format()
cmd << zwave.sensorMultilevelV5.sensorMultilevelGet(sensorType:1, scale:1).format()
cmd << zwave.sensorMultilevelV5.sensorMultilevelGet(sensorType:3, scale:1).format()
cmd << zwave.basicV1.basicGet().format()
delayBetween(cmd, 1000)
}
def configure() {
log.debug "OnTime=${settings.OnTime} OnLevel=${settings.OnLevel} TempAdj=${settings.TempAdj}"
def cmd = delayBetween([
zwave.configurationV1.configurationSet(parameterNumber: 1, size: 1, scaledConfigurationValue: checkOnTimeInput(settings.OnTime)).format(),
zwave.configurationV1.configurationSet(parameterNumber: 2, size: 1, scaledConfigurationValue: checkOnLevelInput(settings.OnLevel)).format(),
zwave.configurationV1.configurationSet(parameterNumber: 3, size: 1, scaledConfigurationValue: checkLiteTempInput(settings.LiteMin)).format(),
zwave.configurationV1.configurationSet(parameterNumber: 4, size: 1, scaledConfigurationValue: checkLiteTempInput(settings.TempMin)).format(),
zwave.configurationV1.configurationSet(parameterNumber: 5, size: 1, scaledConfigurationValue: checkTempAdjInput(settings.TempAdj)).format(),
zwave.configurationV1.configurationGet(parameterNumber: 1).format(),
zwave.configurationV1.configurationGet(parameterNumber: 2).format(),
zwave.configurationV1.configurationGet(parameterNumber: 3).format(),
zwave.configurationV1.configurationGet(parameterNumber: 4).format(),
zwave.configurationV1.configurationGet(parameterNumber: 5).format()
], 100)
//log.debug cmd
cmd + refresh()
}
def huesatToRGB(float hue, float sat) {
while(hue >= 100) hue -= 100
int h = (int)(hue / 100 * 6)
float f = hue / 100 * 6 - h
int p = Math.round(255 * (1 - (sat / 100)))
int q = Math.round(255 * (1 - (sat / 100) * f))
int t = Math.round(255 * (1 - (sat / 100) * (1 - f)))
switch (h) {
case 0: return [255, t, p]
case 1: return [q, 255, p]
case 2: return [p, 255, t]
case 3: return [p, q, 255]
case 4: return [t, p, 255]
case 5: return [255, p, q]
}
}
def rgbToHex(rgb) {
def r = hex(rgb.r)
def g = hex(rgb.g)
def b = hex(rgb.b)
def hexColor = "#${r}${g}${b}"
hexColor
}
private hex(value, width=2) {
def s = new BigInteger(Math.round(value).toString()).toString(16)
while (s.size() < width) {
s = "0" + s
}
s
}

View File

@@ -14,13 +14,13 @@
*
*/
metadata {
definition (name: "Fibaro Door/Window Sensor ZW5 with Temperature", namespace: "fibargroup", author: "Fibar Group S.A.", ocfDeviceType: "x.com.st.d.sensor.contact") {
definition (name: "Fibaro Door/Window Sensor ZW5 with Temperature", namespace: "fibargroup", author: "Fibar Group S.A.") {
capability "Battery"
capability "Contact Sensor"
capability "Sensor"
capability "Configuration"
capability "Tamper Alert"
capability "Temperature Measurement"
fingerprint deviceId: "0x0701", inClusters: "0x5E, 0x85, 0x59, 0x22, 0x20, 0x80, 0x70, 0x56, 0x5A, 0x7A, 0x72, 0x8E, 0x71, 0x73, 0x98, 0x2B, 0x9C, 0x30, 0x31, 0x86", outClusters: ""
@@ -28,26 +28,26 @@ metadata {
}
simulator {
}
tiles(scale: 2) {
multiAttributeTile(name:"FGK", type:"lighting", width:6, height:4) {//with generic type secondary control text is not displayed in Android app
tileAttribute("device.contact", key:"PRIMARY_CONTROL") {
attributeState("open", icon:"st.contact.contact.open", backgroundColor:"#e86d13")
attributeState("closed", icon:"st.contact.contact.closed", backgroundColor:"#00a0dc")
}
tileAttribute("device.tamper", key:"SECONDARY_CONTROL") {
attributeState("active", label:'tamper active', backgroundColor:"#53a7c0")
attributeState("inactive", label:'tamper inactive', backgroundColor:"#ffffff")
}
}
}
valueTile("battery", "device.battery", inactiveLabel: false, width: 2, height: 2, decoration: "flat") {
state "battery", label:'${currentValue}% battery', unit:""
}
valueTile("temperature", "device.temperature", inactiveLabel: false, width: 2, height: 2) {
state "temperature", label:'${currentValue}°',
backgroundColors:[
@@ -60,7 +60,7 @@ metadata {
[value: 96, color: "#bc2323"]
]
}
main "FGK"
details(["FGK","battery", "temperature"])
}
@@ -68,9 +68,9 @@ metadata {
// parse events into attributes
def parse(String description) {
log.debug "Parsing '${description}'"
log.debug "Parsing '${description}'"
def result = []
if (description.startsWith("Err 106")) {
if (state.sec) {
result = createEvent(descriptionText:description, displayed:false)
@@ -87,7 +87,7 @@ def parse(String description) {
return null
} else {
def cmd = zwave.parse(description, [0x31: 5, 0x56: 1, 0x71: 3, 0x72: 2, 0x80: 1, 0x84: 2, 0x85: 2, 0x86: 1, 0x98: 1])
if (cmd) {
log.debug "Parsed '${cmd}'"
zwaveEvent(cmd)
@@ -125,13 +125,13 @@ def zwaveEvent(physicalgraph.zwave.commands.notificationv3.NotificationReport cm
//(parameter 20 was not changed before device's re-inclusion)
def map = [:]
if (cmd.notificationType == 6) {
switch (cmd.event) {
switch (cmd.event) {
case 22:
map.name = "contact"
map.value = "open"
map.descriptionText = "${device.displayName}: is open"
break
case 23:
map.name = "contact"
map.value = "closed"
@@ -145,7 +145,7 @@ def zwaveEvent(physicalgraph.zwave.commands.notificationv3.NotificationReport cm
map.value = "inactive"
map.descriptionText = "${device.displayName}: tamper alarm has been deactivated"
break
case 3:
map.name = "tamper"
map.value = "active"
@@ -153,7 +153,7 @@ def zwaveEvent(physicalgraph.zwave.commands.notificationv3.NotificationReport cm
break
}
}
createEvent(map)
}
@@ -166,7 +166,7 @@ def zwaveEvent(physicalgraph.zwave.commands.batteryv1.BatteryReport cmd) {
createEvent(map)
}
def zwaveEvent(physicalgraph.zwave.commands.wakeupv2.WakeUpNotification cmd) {
def zwaveEvent(physicalgraph.zwave.commands.wakeupv2.WakeUpNotification cmd) {
def event = createEvent(descriptionText: "${device.displayName} woke up", displayed: false)
def cmds = []
cmds << encap(zwave.batteryV1.batteryGet())
@@ -177,32 +177,32 @@ def zwaveEvent(physicalgraph.zwave.commands.wakeupv2.WakeUpNotification cmd) {
[event, response(cmds)]
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd) {
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd) {
log.debug "manufacturerId: ${cmd.manufacturerId}"
log.debug "manufacturerName: ${cmd.manufacturerName}"
log.debug "productId: ${cmd.productId}"
log.debug "productTypeId: ${cmd.productTypeId}"
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.DeviceSpecificReport cmd) {
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.DeviceSpecificReport cmd) {
log.debug "deviceIdData: ${cmd.deviceIdData}"
log.debug "deviceIdDataFormat: ${cmd.deviceIdDataFormat}"
log.debug "deviceIdDataLengthIndicator: ${cmd.deviceIdDataLengthIndicator}"
log.debug "deviceIdType: ${cmd.deviceIdType}"
if (cmd.deviceIdType == 1 && cmd.deviceIdDataFormat == 1) {//serial number in binary format
String serialNumber = "h'"
cmd.deviceIdData.each{ data ->
serialNumber += "${String.format("%02X", data)}"
}
updateDataValue("serialNumber", serialNumber)
log.debug "${device.displayName} - serial number: ${serialNumber}"
}
}
def zwaveEvent(physicalgraph.zwave.commands.versionv1.VersionReport cmd) {
def zwaveEvent(physicalgraph.zwave.commands.versionv1.VersionReport cmd) {
updateDataValue("version", "${cmd.applicationVersion}.${cmd.applicationSubVersion}")
log.debug "applicationVersion: ${cmd.applicationVersion}"
log.debug "applicationSubVersion: ${cmd.applicationSubVersion}"
@@ -221,7 +221,7 @@ def zwaveEvent(physicalgraph.zwave.commands.sensormultilevelv5.SensorMultilevelR
map.name = "temperature"
map.displayed = true
}
createEvent(map)
}
@@ -231,9 +231,9 @@ def zwaveEvent(physicalgraph.zwave.commands.deviceresetlocallyv1.DeviceResetLoca
def configure() {
log.debug "Executing 'configure'"
def cmds = []
cmds += zwave.wakeUpV2.wakeUpIntervalSet(seconds:21600, nodeid: zwaveHubNodeId)//FGK's default wake up interval
cmds += zwave.manufacturerSpecificV2.manufacturerSpecificGet()
cmds += zwave.manufacturerSpecificV2.deviceSpecificGet()
@@ -242,7 +242,7 @@ def configure() {
cmds += zwave.sensorMultilevelV5.sensorMultilevelGet(sensorType: 1, scale: 0)
cmds += zwave.associationV2.associationSet(groupingIdentifier:1, nodeId: [zwaveHubNodeId])
cmds += zwave.wakeUpV2.wakeUpNoMoreInformation()
encapSequence(cmds, 500)
}
@@ -261,7 +261,7 @@ private encapSequence(commands, delay=200) {
private encap(physicalgraph.zwave.Command cmd) {
def secureClasses = [0x20, 0x2B, 0x30, 0x5A, 0x70, 0x71, 0x84, 0x85, 0x8E, 0x9C]
//todo: check if secure inclusion was successful
//if not do not send security-encapsulated command
if (secureClasses.find{ it == cmd.commandClassId }) {
@@ -269,4 +269,4 @@ private encap(physicalgraph.zwave.Command cmd) {
} else {
crc16(cmd)
}
}
}

View File

@@ -14,7 +14,7 @@
*
*/
metadata {
definition (name: "Fibaro Door/Window Sensor ZW5", namespace: "fibargroup", author: "Fibar Group S.A.", ocfDeviceType: "x.com.st.d.sensor.contact") {
definition (name: "Fibaro Door/Window Sensor ZW5", namespace: "fibargroup", author: "Fibar Group S.A.") {
capability "Battery"
capability "Contact Sensor"
capability "Sensor"
@@ -26,26 +26,26 @@ metadata {
}
simulator {
}
tiles(scale: 2) {
multiAttributeTile(name:"FGK", type:"lighting", width:6, height:4) {//with generic type secondary control text is not displayed in Android app
tileAttribute("device.contact", key:"PRIMARY_CONTROL") {
attributeState("open", icon:"st.contact.contact.open", backgroundColor:"#e86d13")
attributeState("closed", icon:"st.contact.contact.closed", backgroundColor:"#00a0dc")
}
tileAttribute("device.tamper", key:"SECONDARY_CONTROL") {
attributeState("active", label:'tamper active', backgroundColor:"#53a7c0")
attributeState("inactive", label:'tamper inactive', backgroundColor:"#ffffff")
}
}
}
valueTile("battery", "device.battery", inactiveLabel: false, width: 2, height: 2, decoration: "flat") {
state "battery", label:'${currentValue}% battery', unit:""
}
main "FGK"
details(["FGK","battery"])
}
@@ -53,9 +53,9 @@ metadata {
// parse events into attributes
def parse(String description) {
log.debug "Parsing '${description}'"
log.debug "Parsing '${description}'"
def result = []
if (description.startsWith("Err 106")) {
if (state.sec) {
result = createEvent(descriptionText:description, displayed:false)
@@ -72,7 +72,7 @@ def parse(String description) {
return null
} else {
def cmd = zwave.parse(description, [0x56: 1, 0x71: 3, 0x72: 2, 0x80: 1, 0x84: 2, 0x85: 2, 0x86: 1, 0x98: 1])
if (cmd) {
log.debug "Parsed '${cmd}'"
zwaveEvent(cmd)
@@ -110,13 +110,13 @@ def zwaveEvent(physicalgraph.zwave.commands.notificationv3.NotificationReport cm
//(parameter 20 was not changed before device's re-inclusion)
def map = [:]
if (cmd.notificationType == 6) {
switch (cmd.event) {
switch (cmd.event) {
case 22:
map.name = "contact"
map.value = "open"
map.descriptionText = "${device.displayName}: is open"
break
case 23:
map.name = "contact"
map.value = "closed"
@@ -130,7 +130,7 @@ def zwaveEvent(physicalgraph.zwave.commands.notificationv3.NotificationReport cm
map.value = "inactive"
map.descriptionText = "${device.displayName}: tamper alarm has been deactivated"
break
case 3:
map.name = "tamper"
map.value = "active"
@@ -138,7 +138,7 @@ def zwaveEvent(physicalgraph.zwave.commands.notificationv3.NotificationReport cm
break
}
}
createEvent(map)
}
@@ -151,7 +151,7 @@ def zwaveEvent(physicalgraph.zwave.commands.batteryv1.BatteryReport cmd) {
createEvent(map)
}
def zwaveEvent(physicalgraph.zwave.commands.wakeupv2.WakeUpNotification cmd) {
def zwaveEvent(physicalgraph.zwave.commands.wakeupv2.WakeUpNotification cmd) {
def event = createEvent(descriptionText: "${device.displayName} woke up", displayed: false)
def cmds = []
cmds << encap(zwave.batteryV1.batteryGet())
@@ -160,32 +160,32 @@ def zwaveEvent(physicalgraph.zwave.commands.wakeupv2.WakeUpNotification cmd) {
[event, response(cmds)]
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd) {
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd) {
log.debug "manufacturerId: ${cmd.manufacturerId}"
log.debug "manufacturerName: ${cmd.manufacturerName}"
log.debug "productId: ${cmd.productId}"
log.debug "productTypeId: ${cmd.productTypeId}"
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.DeviceSpecificReport cmd) {
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.DeviceSpecificReport cmd) {
log.debug "deviceIdData: ${cmd.deviceIdData}"
log.debug "deviceIdDataFormat: ${cmd.deviceIdDataFormat}"
log.debug "deviceIdDataLengthIndicator: ${cmd.deviceIdDataLengthIndicator}"
log.debug "deviceIdType: ${cmd.deviceIdType}"
if (cmd.deviceIdType == 1 && cmd.deviceIdDataFormat == 1) {//serial number in binary format
String serialNumber = "h'"
cmd.deviceIdData.each{ data ->
serialNumber += "${String.format("%02X", data)}"
}
updateDataValue("serialNumber", serialNumber)
log.debug "${device.displayName} - serial number: ${serialNumber}"
}
}
def zwaveEvent(physicalgraph.zwave.commands.versionv1.VersionReport cmd) {
def zwaveEvent(physicalgraph.zwave.commands.versionv1.VersionReport cmd) {
updateDataValue("version", "${cmd.applicationVersion}.${cmd.applicationSubVersion}")
log.debug "applicationVersion: ${cmd.applicationVersion}"
log.debug "applicationSubVersion: ${cmd.applicationSubVersion}"
@@ -204,7 +204,7 @@ def configure() {
sendEvent(name: "checkInterval", value: 8 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
def cmds = []
cmds += zwave.wakeUpV2.wakeUpIntervalSet(seconds:21600, nodeid: zwaveHubNodeId)//FGK's default wake up interval
cmds += zwave.manufacturerSpecificV2.manufacturerSpecificGet()
cmds += zwave.manufacturerSpecificV2.deviceSpecificGet()
@@ -212,7 +212,7 @@ def configure() {
cmds += zwave.batteryV1.batteryGet()
cmds += zwave.associationV2.associationSet(groupingIdentifier:1, nodeId: [zwaveHubNodeId])
cmds += zwave.wakeUpV2.wakeUpNoMoreInformation()
encapSequence(cmds, 500)
}
@@ -231,7 +231,7 @@ private encapSequence(commands, delay=200) {
private encap(physicalgraph.zwave.Command cmd) {
def secureClasses = [0x20, 0x2B, 0x30, 0x5A, 0x70, 0x71, 0x84, 0x85, 0x8E, 0x9C]
//todo: check if secure inclusion was successful
//if not do not send security-encapsulated command
if (secureClasses.find{ it == cmd.commandClassId }) {
@@ -239,4 +239,4 @@ private encap(physicalgraph.zwave.Command cmd) {
} else {
crc16(cmd)
}
}
}

View File

@@ -14,7 +14,7 @@
*
*/
metadata {
definition (name: "Fibaro Flood Sensor ZW5", namespace: "fibargroup", author: "Fibar Group S.A.", ocfDeviceType: "x.com.st.d.sensor.moisture") {
definition (name: "Fibaro Flood Sensor ZW5", namespace: "fibargroup", author: "Fibar Group S.A.") {
capability "Battery"
capability "Configuration"
capability "Sensor"
@@ -37,13 +37,13 @@ metadata {
attributeState("dry", icon:"st.alarm.water.dry", backgroundColor:"#ffffff")
attributeState("wet", icon:"st.alarm.water.wet", backgroundColor:"#00a0dc")
}
tileAttribute("device.tamper", key:"SECONDARY_CONTROL") {
attributeState("active", label:'tamper active', backgroundColor:"#cccccc")
attributeState("inactive", label:'tamper inactive', backgroundColor:"#00A0DC")
}
}
valueTile("temperature", "device.temperature", inactiveLabel: false, width: 2, height: 2) {
state "temperature", label:'${currentValue}°',
backgroundColors:[
@@ -130,14 +130,14 @@ def zwaveEvent(physicalgraph.zwave.commands.wakeupv2.WakeUpNotification cmd)
[event, response(cmds)]
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd) {
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd) {
log.debug "manufacturerId: ${cmd.manufacturerId}"
log.debug "manufacturerName: ${cmd.manufacturerName}"
log.debug "productId: ${cmd.productId}"
log.debug "productTypeId: ${cmd.productTypeId}"
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.DeviceSpecificReport cmd) {
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.DeviceSpecificReport cmd) {
log.debug "deviceIdData: ${cmd.deviceIdData}"
log.debug "deviceIdDataFormat: ${cmd.deviceIdDataFormat}"
log.debug "deviceIdDataLengthIndicator: ${cmd.deviceIdDataLengthIndicator}"

View File

@@ -14,7 +14,7 @@
*
*/
metadata {
definition (name: "Fibaro Motion Sensor ZW5", namespace: "fibargroup", author: "Fibar Group S.A.", ocfDeviceType: "x.com.st.d.sensor.motion") {
definition (name: "Fibaro Motion Sensor ZW5", namespace: "fibargroup", author: "Fibar Group S.A.") {
capability "Battery"
capability "Configuration"
capability "Illuminance Measurement"
@@ -23,27 +23,27 @@ metadata {
capability "Tamper Alert"
capability "Temperature Measurement"
capability "Health Check"
fingerprint deviceId: "0x0701", inClusters: "0x5E, 0x20, 0x86, 0x72, 0x5A, 0x59, 0x85, 0x73, 0x84, 0x80, 0x71, 0x56, 0x70, 0x31, 0x8E, 0x22, 0x30, 0x9C, 0x98, 0x7A", outClusters: ""
}
simulator {
}
tiles(scale: 2) {
multiAttributeTile(name:"FGMS", type:"lighting", width:6, height:4) {//with generic type secondary control text is not displayed in Android app
tileAttribute("device.motion", key:"PRIMARY_CONTROL") {
attributeState("inactive", label:"no motion", icon:"st.motion.motion.inactive", backgroundColor:"#79b821")
attributeState("active", label:"motion", icon:"st.motion.motion.active", backgroundColor:"#ffa81e")
attributeState("active", label:"motion", icon:"st.motion.motion.active", backgroundColor:"#ffa81e")
}
tileAttribute("device.tamper", key:"SECONDARY_CONTROL") {
attributeState("active", label:'tamper active', backgroundColor:"#00a0dc")
attributeState("inactive", label:'tamper inactive', backgroundColor:"#cccccc")
}
}
}
valueTile("temperature", "device.temperature", inactiveLabel: false, width: 2, height: 2) {
state "temperature", label:'${currentValue}°',
backgroundColors:[
@@ -56,15 +56,15 @@ metadata {
[value: 96, color: "#bc2323"]
]
}
valueTile("illuminance", "device.illuminance", inactiveLabel: false, width: 2, height: 2) {
state "luminosity", label:'${currentValue} ${unit}', unit:"lux"
}
valueTile("battery", "device.battery", inactiveLabel: false, width: 2, height: 2, decoration: "flat") {
state "battery", label:'${currentValue}% battery', unit:""
}
main "FGMS"
details(["FGMS","battery","temperature","illuminance"])
}
@@ -72,9 +72,9 @@ metadata {
// parse events into attributes
def parse(String description) {
log.debug "Parsing '${description}'"
log.debug "Parsing '${description}'"
def result = []
if (description.startsWith("Err 106")) {
if (state.sec) {
result = createEvent(descriptionText:description, displayed:false)
@@ -91,7 +91,7 @@ def parse(String description) {
return null
} else {
def cmd = zwave.parse(description, [0x31: 5, 0x56: 1, 0x71: 3, 0x72: 2, 0x80: 1, 0x84: 2, 0x85: 2, 0x86: 1, 0x98: 1])
if (cmd) {
log.debug "Parsed '${cmd}'"
zwaveEvent(cmd)
@@ -159,13 +159,13 @@ def zwaveEvent(physicalgraph.zwave.commands.notificationv3.NotificationReport cm
map.descriptionText = "${device.displayName}: motion has stopped"
}
break
case 3:
map.name = "tamper"
map.value = "active"
map.descriptionText = "${device.displayName}: tamper alarm activated"
break
case 8:
map.name = "motion"
map.value = "active"
@@ -173,7 +173,7 @@ def zwaveEvent(physicalgraph.zwave.commands.notificationv3.NotificationReport cm
break
}
}
createEvent(map)
}
@@ -194,39 +194,39 @@ def zwaveEvent(physicalgraph.zwave.commands.wakeupv2.WakeUpNotification cmd)
cmds << "delay 500"
cmds << encap(zwave.sensorMultilevelV5.sensorMultilevelGet(sensorType: 1, scale: 0))
cmds << "delay 500"
cmds << encap(zwave.sensorMultilevelV5.sensorMultilevelGet(sensorType: 3, scale: 1))
cmds << encap(zwave.sensorMultilevelV5.sensorMultilevelGet(sensorType: 3, scale: 1))
cmds << "delay 1200"
cmds << encap(zwave.wakeUpV1.wakeUpNoMoreInformation())
[event, response(cmds)]
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd) {
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd) {
log.debug "manufacturerId: ${cmd.manufacturerId}"
log.debug "manufacturerName: ${cmd.manufacturerName}"
log.debug "productId: ${cmd.productId}"
log.debug "productTypeId: ${cmd.productTypeId}"
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.DeviceSpecificReport cmd) {
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.DeviceSpecificReport cmd) {
log.debug "deviceIdData: ${cmd.deviceIdData}"
log.debug "deviceIdDataFormat: ${cmd.deviceIdDataFormat}"
log.debug "deviceIdDataLengthIndicator: ${cmd.deviceIdDataLengthIndicator}"
log.debug "deviceIdType: ${cmd.deviceIdType}"
if (cmd.deviceIdType == 1 && cmd.deviceIdDataFormat == 1) {//serial number in binary format
String serialNumber = "h'"
cmd.deviceIdData.each{ data ->
serialNumber += "${String.format("%02X", data)}"
}
updateDataValue("serialNumber", serialNumber)
log.debug "${device.displayName} - serial number: ${serialNumber}"
}
}
def zwaveEvent(physicalgraph.zwave.commands.versionv1.VersionReport cmd) {
def zwaveEvent(physicalgraph.zwave.commands.versionv1.VersionReport cmd) {
updateDataValue("version", "${cmd.applicationVersion}.${cmd.applicationSubVersion}")
log.debug "applicationVersion: ${cmd.applicationVersion}"
log.debug "applicationSubVersion: ${cmd.applicationSubVersion}"
@@ -245,7 +245,7 @@ def configure() {
sendEvent(name: "checkInterval", value: 8 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
def cmds = []
cmds += zwave.wakeUpV2.wakeUpIntervalSet(seconds: 7200, nodeid: zwaveHubNodeId)//FGMS' default wake up interval
cmds += zwave.manufacturerSpecificV2.manufacturerSpecificGet()
cmds += zwave.manufacturerSpecificV2.deviceSpecificGet()
@@ -255,7 +255,7 @@ def configure() {
cmds += zwave.sensorMultilevelV5.sensorMultilevelGet(sensorType: 1, scale: 0)
cmds += zwave.sensorMultilevelV5.sensorMultilevelGet(sensorType: 3, scale: 1)
cmds += zwave.wakeUpV2.wakeUpNoMoreInformation()
encapSequence(cmds, 500)
}

View File

@@ -1,900 +0,0 @@
/**
* kad
*
* Copyright 2017 Kadeem Coleman
*
* 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.
*
*/
metadata {
definition (name: "kad", namespace: "happy new ", author: "Kadeem Coleman") {
capability "Acceleration Sensor"
capability "Actuator"
capability "Alarm"
capability "Alarm System"
capability "Alarm System Arm Only"
capability "Astronomical Data"
capability "Audio Notification"
capability "Battery"
capability "Beacon"
capability "Bridge"
capability "Buffered Video Capture"
capability "Bulb"
capability "Button"
capability "Carbon Dioxide Measurement"
capability "Carbon Monoxide Detector"
capability "Color Control"
capability "Color Temperature"
capability "Configuration"
capability "Consumable"
capability "Contact Sensor"
capability "Door Control"
capability "Energy Meter"
capability "Estimated Time Of Arrival"
capability "Garage Door Control"
capability "Health Check"
capability "Image Capture"
capability "Indicator"
capability "Infrared Level"
capability "Light"
capability "Light"
capability "Lock"
capability "Lock Codes"
capability "Lock Only"
capability "Media Controller"
capability "Momentary"
capability "Motion Sensor"
capability "Music Player"
capability "Ocf"
capability "Outlet"
capability "pH Measurement"
capability "Polling"
capability "Power"
capability "Power Meter"
capability "Power Source"
capability "Presence Sensor"
capability "Refresh"
capability "Relay Switch"
capability "Samsung TV"
capability "Sensor"
capability "Shock Sensor"
capability "Signal Strength"
capability "Sleep Sensor"
capability "Smoke Detector"
capability "Sound Sensor"
capability "Speech Recognition"
capability "Speech Synthesis"
capability "Switch"
capability "Switch Level"
capability "Tamper Alert"
capability "Temperature Measurement"
capability "Test Capability"
capability "Thermostat"
capability "Thermostat Cooling Setpoint"
capability "Thermostat Fan Mode"
capability "Thermostat Heating Setpoint"
capability "Thermostat Mode"
capability "Thermostat Operating State"
capability "Thermostat Setpoint"
capability "Three Axis"
capability "Timed Session"
capability "Tone"
capability "Touch Sensor"
capability "Ultraviolet Index"
capability "Valve"
capability "Video Camera"
capability "Video Capture"
capability "Voltage Measurement"
capability "Water Sensor"
capability "Window Shade"
capability "Zw Multichannel"
}
simulator {
// TODO: define status and reply messages here
}
tiles {
// TODO: define your main and details tiles here
}
}
// parse events into attributes
def parse(String description) {
log.debug "Parsing '${description}'"
// TODO: handle 'acceleration' attribute
// TODO: handle 'alarm' attribute
// TODO: handle 'alarmSystemStatus' attribute
// TODO: handle 'alarmSystemStatus' attribute
// TODO: handle 'sunrise' attribute
// TODO: handle 'sunset' attribute
// TODO: handle 'sunriseTime' attribute
// TODO: handle 'sunsetTime' attribute
// TODO: handle 'battery' attribute
// TODO: handle 'presence' attribute
// TODO: handle 'clip' attribute
// TODO: handle 'switch' attribute
// TODO: handle 'button' attribute
// TODO: handle 'numberOfButtons' attribute
// TODO: handle 'carbonDioxide' attribute
// TODO: handle 'carbonMonoxide' attribute
// TODO: handle 'hue' attribute
// TODO: handle 'saturation' attribute
// TODO: handle 'color' attribute
// TODO: handle 'colorTemperature' attribute
// TODO: handle 'consumableStatus' attribute
// TODO: handle 'contact' attribute
// TODO: handle 'door' attribute
// TODO: handle 'energy' attribute
// TODO: handle 'eta' attribute
// TODO: handle 'door' attribute
// TODO: handle 'checkInterval' attribute
// TODO: handle 'image' attribute
// TODO: handle 'indicatorStatus' attribute
// TODO: handle 'infraredLevel' attribute
// TODO: handle 'switch' attribute
// TODO: handle 'switch' attribute
// TODO: handle 'lock' attribute
// TODO: handle 'lock' attribute
// TODO: handle 'codeReport' attribute
// TODO: handle 'codeChanged' attribute
// TODO: handle 'lock' attribute
// TODO: handle 'activities' attribute
// TODO: handle 'currentActivity' attribute
// TODO: handle 'motion' attribute
// TODO: handle 'status' attribute
// TODO: handle 'level' attribute
// TODO: handle 'trackDescription' attribute
// TODO: handle 'trackData' attribute
// TODO: handle 'mute' attribute
// TODO: handle 'switch' attribute
// TODO: handle 'pH' attribute
// TODO: handle 'powerSource' attribute
// TODO: handle 'power' attribute
// TODO: handle 'powerSource' attribute
// TODO: handle 'presence' attribute
// TODO: handle 'switch' attribute
// TODO: handle 'volume' attribute
// TODO: handle 'mute' attribute
// TODO: handle 'pictureMode' attribute
// TODO: handle 'soundMode' attribute
// TODO: handle 'switch' attribute
// TODO: handle 'messageButton' attribute
// TODO: handle 'shock' attribute
// TODO: handle 'lqi' attribute
// TODO: handle 'rssi' attribute
// TODO: handle 'sleeping' attribute
// TODO: handle 'smoke' attribute
// TODO: handle 'carbonMonoxide' attribute
// TODO: handle 'sound' attribute
// TODO: handle 'phraseSpoken' attribute
// TODO: handle 'switch' attribute
// TODO: handle 'level' attribute
// TODO: handle 'tamper' attribute
// TODO: handle 'temperature' attribute
// TODO: handle 'temperature' attribute
// TODO: handle 'heatingSetpoint' attribute
// TODO: handle 'coolingSetpoint' attribute
// TODO: handle 'thermostatSetpoint' attribute
// TODO: handle 'thermostatMode' attribute
// TODO: handle 'thermostatFanMode' attribute
// TODO: handle 'thermostatOperatingState' attribute
// TODO: handle 'schedule' attribute
// TODO: handle 'coolingSetpointMin' attribute
// TODO: handle 'coolingSetpointMax' attribute
// TODO: handle 'heatingSetpointMin' attribute
// TODO: handle 'heatingSetpointMax' attribute
// TODO: handle 'thermostatSetpointMin' attribute
// TODO: handle 'thermostatSetpointMax' attribute
// TODO: handle 'coolingSetpointMin' attribute
// TODO: handle 'coolingSetpointMax' attribute
// TODO: handle 'heatingSetpointMin' attribute
// TODO: handle 'heatingSetpointMax' attribute
// TODO: handle 'thermostatSetpointMin' attribute
// TODO: handle 'thermostatSetpointMax' attribute
// TODO: handle 'coolingSetpoint' attribute
// TODO: handle 'coolingSetpointMin' attribute
// TODO: handle 'coolingSetpointMax' attribute
// TODO: handle 'thermostatFanMode' attribute
// TODO: handle 'heatingSetpoint' attribute
// TODO: handle 'heatingSetpointMin' attribute
// TODO: handle 'heatingSetpointMax' attribute
// TODO: handle 'thermostatMode' attribute
// TODO: handle 'thermostatOperatingState' attribute
// TODO: handle 'thermostatSetpoint' attribute
// TODO: handle 'thermostatSetpointMin' attribute
// TODO: handle 'thermostatSetpointMax' attribute
// TODO: handle 'threeAxis' attribute
// TODO: handle 'sessionStatus' attribute
// TODO: handle 'timeRemaining' attribute
// TODO: handle 'touch' attribute
// TODO: handle 'ultravioletIndex' attribute
// TODO: handle 'contact' attribute
// TODO: handle 'valve' attribute
// TODO: handle 'camera' attribute
// TODO: handle 'statusMessage' attribute
// TODO: handle 'mute' attribute
// TODO: handle 'settings' attribute
// TODO: handle 'clip' attribute
// TODO: handle 'stream' attribute
// TODO: handle 'voltage' attribute
// TODO: handle 'water' attribute
// TODO: handle 'windowShade' attribute
// TODO: handle 'epEvent' attribute
// TODO: handle 'epInfo' attribute
}
// handle commands
def off() {
log.debug "Executing 'off'"
// TODO: handle 'off' command
}
def strobe() {
log.debug "Executing 'strobe'"
// TODO: handle 'strobe' command
}
def siren() {
log.debug "Executing 'siren'"
// TODO: handle 'siren' command
}
def both() {
log.debug "Executing 'both'"
// TODO: handle 'both' command
}
def sendEvent(alarmSystemStatus,off)() {
log.debug "Executing 'sendEvent(alarmSystemStatus,off)'"
// TODO: handle 'sendEvent(alarmSystemStatus,off)' command
}
def sendEvent(alarmSystemStatus,stay)() {
log.debug "Executing 'sendEvent(alarmSystemStatus,stay)'"
// TODO: handle 'sendEvent(alarmSystemStatus,stay)' command
}
def sendEvent(alarmSystemStatus,away)() {
log.debug "Executing 'sendEvent(alarmSystemStatus,away)'"
// TODO: handle 'sendEvent(alarmSystemStatus,away)' command
}
def sendEvent(alarmSystemStatus,stay)() {
log.debug "Executing 'sendEvent(alarmSystemStatus,stay)'"
// TODO: handle 'sendEvent(alarmSystemStatus,stay)' command
}
def sendEvent(alarmSystemStatus,away)() {
log.debug "Executing 'sendEvent(alarmSystemStatus,away)'"
// TODO: handle 'sendEvent(alarmSystemStatus,away)' command
}
def sendEvent(sunrise)() {
log.debug "Executing 'sendEvent(sunrise)'"
// TODO: handle 'sendEvent(sunrise)' command
}
def sendEvent(sunset)() {
log.debug "Executing 'sendEvent(sunset)'"
// TODO: handle 'sendEvent(sunset)' command
}
def sendEvent(sunriseTime)() {
log.debug "Executing 'sendEvent(sunriseTime)'"
// TODO: handle 'sendEvent(sunriseTime)' command
}
def sendEvent(sunsetTime)() {
log.debug "Executing 'sendEvent(sunsetTime)'"
// TODO: handle 'sendEvent(sunsetTime)' command
}
def playText() {
log.debug "Executing 'playText'"
// TODO: handle 'playText' command
}
def playTextAndResume() {
log.debug "Executing 'playTextAndResume'"
// TODO: handle 'playTextAndResume' command
}
def playTextAndRestore() {
log.debug "Executing 'playTextAndRestore'"
// TODO: handle 'playTextAndRestore' command
}
def playTrack() {
log.debug "Executing 'playTrack'"
// TODO: handle 'playTrack' command
}
def playTrackAndResume() {
log.debug "Executing 'playTrackAndResume'"
// TODO: handle 'playTrackAndResume' command
}
def playTrackAndRestore() {
log.debug "Executing 'playTrackAndRestore'"
// TODO: handle 'playTrackAndRestore' command
}
def capture() {
log.debug "Executing 'capture'"
// TODO: handle 'capture' command
}
def off() {
log.debug "Executing 'off'"
// TODO: handle 'off' command
}
def on() {
log.debug "Executing 'on'"
// TODO: handle 'on' command
}
def setHue() {
log.debug "Executing 'setHue'"
// TODO: handle 'setHue' command
}
def setSaturation() {
log.debug "Executing 'setSaturation'"
// TODO: handle 'setSaturation' command
}
def setColor() {
log.debug "Executing 'setColor'"
// TODO: handle 'setColor' command
}
def setColorTemperature() {
log.debug "Executing 'setColorTemperature'"
// TODO: handle 'setColorTemperature' command
}
def configure() {
log.debug "Executing 'configure'"
// TODO: handle 'configure' command
}
def setConsumableStatus() {
log.debug "Executing 'setConsumableStatus'"
// TODO: handle 'setConsumableStatus' command
}
def open() {
log.debug "Executing 'open'"
// TODO: handle 'open' command
}
def close() {
log.debug "Executing 'close'"
// TODO: handle 'close' command
}
def open() {
log.debug "Executing 'open'"
// TODO: handle 'open' command
}
def close() {
log.debug "Executing 'close'"
// TODO: handle 'close' command
}
def ping() {
log.debug "Executing 'ping'"
// TODO: handle 'ping' command
}
def take() {
log.debug "Executing 'take'"
// TODO: handle 'take' command
}
def indicatorWhenOn() {
log.debug "Executing 'indicatorWhenOn'"
// TODO: handle 'indicatorWhenOn' command
}
def indicatorWhenOff() {
log.debug "Executing 'indicatorWhenOff'"
// TODO: handle 'indicatorWhenOff' command
}
def indicatorNever() {
log.debug "Executing 'indicatorNever'"
// TODO: handle 'indicatorNever' command
}
def setInfraredLevel() {
log.debug "Executing 'setInfraredLevel'"
// TODO: handle 'setInfraredLevel' command
}
def off() {
log.debug "Executing 'off'"
// TODO: handle 'off' command
}
def on() {
log.debug "Executing 'on'"
// TODO: handle 'on' command
}
def off() {
log.debug "Executing 'off'"
// TODO: handle 'off' command
}
def on() {
log.debug "Executing 'on'"
// TODO: handle 'on' command
}
def lock() {
log.debug "Executing 'lock'"
// TODO: handle 'lock' command
}
def unlock() {
log.debug "Executing 'unlock'"
// TODO: handle 'unlock' command
}
def lock() {
log.debug "Executing 'lock'"
// TODO: handle 'lock' command
}
def unlock() {
log.debug "Executing 'unlock'"
// TODO: handle 'unlock' command
}
def updateCodes() {
log.debug "Executing 'updateCodes'"
// TODO: handle 'updateCodes' command
}
def setCode() {
log.debug "Executing 'setCode'"
// TODO: handle 'setCode' command
}
def deleteCode() {
log.debug "Executing 'deleteCode'"
// TODO: handle 'deleteCode' command
}
def requestCode() {
log.debug "Executing 'requestCode'"
// TODO: handle 'requestCode' command
}
def reloadAllCodes() {
log.debug "Executing 'reloadAllCodes'"
// TODO: handle 'reloadAllCodes' command
}
def lock() {
log.debug "Executing 'lock'"
// TODO: handle 'lock' command
}
def startActivity() {
log.debug "Executing 'startActivity'"
// TODO: handle 'startActivity' command
}
def getAllActivities() {
log.debug "Executing 'getAllActivities'"
// TODO: handle 'getAllActivities' command
}
def getCurrentActivity() {
log.debug "Executing 'getCurrentActivity'"
// TODO: handle 'getCurrentActivity' command
}
def push() {
log.debug "Executing 'push'"
// TODO: handle 'push' command
}
def play() {
log.debug "Executing 'play'"
// TODO: handle 'play' command
}
def pause() {
log.debug "Executing 'pause'"
// TODO: handle 'pause' command
}
def stop() {
log.debug "Executing 'stop'"
// TODO: handle 'stop' command
}
def nextTrack() {
log.debug "Executing 'nextTrack'"
// TODO: handle 'nextTrack' command
}
def playTrack() {
log.debug "Executing 'playTrack'"
// TODO: handle 'playTrack' command
}
def setLevel() {
log.debug "Executing 'setLevel'"
// TODO: handle 'setLevel' command
}
def mute() {
log.debug "Executing 'mute'"
// TODO: handle 'mute' command
}
def previousTrack() {
log.debug "Executing 'previousTrack'"
// TODO: handle 'previousTrack' command
}
def unmute() {
log.debug "Executing 'unmute'"
// TODO: handle 'unmute' command
}
def setTrack() {
log.debug "Executing 'setTrack'"
// TODO: handle 'setTrack' command
}
def resumeTrack() {
log.debug "Executing 'resumeTrack'"
// TODO: handle 'resumeTrack' command
}
def restoreTrack() {
log.debug "Executing 'restoreTrack'"
// TODO: handle 'restoreTrack' command
}
def postOcfCommand() {
log.debug "Executing 'postOcfCommand'"
// TODO: handle 'postOcfCommand' command
}
def off() {
log.debug "Executing 'off'"
// TODO: handle 'off' command
}
def on() {
log.debug "Executing 'on'"
// TODO: handle 'on' command
}
def poll() {
log.debug "Executing 'poll'"
// TODO: handle 'poll' command
}
def refresh() {
log.debug "Executing 'refresh'"
// TODO: handle 'refresh' command
}
def on() {
log.debug "Executing 'on'"
// TODO: handle 'on' command
}
def off() {
log.debug "Executing 'off'"
// TODO: handle 'off' command
}
def volumeUp() {
log.debug "Executing 'volumeUp'"
// TODO: handle 'volumeUp' command
}
def volumeDown() {
log.debug "Executing 'volumeDown'"
// TODO: handle 'volumeDown' command
}
def setVolume() {
log.debug "Executing 'setVolume'"
// TODO: handle 'setVolume' command
}
def mute() {
log.debug "Executing 'mute'"
// TODO: handle 'mute' command
}
def unmute() {
log.debug "Executing 'unmute'"
// TODO: handle 'unmute' command
}
def setPictureMode() {
log.debug "Executing 'setPictureMode'"
// TODO: handle 'setPictureMode' command
}
def setSoundMode() {
log.debug "Executing 'setSoundMode'"
// TODO: handle 'setSoundMode' command
}
def on() {
log.debug "Executing 'on'"
// TODO: handle 'on' command
}
def off() {
log.debug "Executing 'off'"
// TODO: handle 'off' command
}
def showMessage() {
log.debug "Executing 'showMessage'"
// TODO: handle 'showMessage' command
}
def speak() {
log.debug "Executing 'speak'"
// TODO: handle 'speak' command
}
def on() {
log.debug "Executing 'on'"
// TODO: handle 'on' command
}
def off() {
log.debug "Executing 'off'"
// TODO: handle 'off' command
}
def setLevel() {
log.debug "Executing 'setLevel'"
// TODO: handle 'setLevel' command
}
def setHeatingSetpoint() {
log.debug "Executing 'setHeatingSetpoint'"
// TODO: handle 'setHeatingSetpoint' command
}
def setCoolingSetpoint() {
log.debug "Executing 'setCoolingSetpoint'"
// TODO: handle 'setCoolingSetpoint' command
}
def off() {
log.debug "Executing 'off'"
// TODO: handle 'off' command
}
def heat() {
log.debug "Executing 'heat'"
// TODO: handle 'heat' command
}
def emergencyHeat() {
log.debug "Executing 'emergencyHeat'"
// TODO: handle 'emergencyHeat' command
}
def cool() {
log.debug "Executing 'cool'"
// TODO: handle 'cool' command
}
def setThermostatMode() {
log.debug "Executing 'setThermostatMode'"
// TODO: handle 'setThermostatMode' command
}
def fanOn() {
log.debug "Executing 'fanOn'"
// TODO: handle 'fanOn' command
}
def fanAuto() {
log.debug "Executing 'fanAuto'"
// TODO: handle 'fanAuto' command
}
def fanCirculate() {
log.debug "Executing 'fanCirculate'"
// TODO: handle 'fanCirculate' command
}
def setThermostatFanMode() {
log.debug "Executing 'setThermostatFanMode'"
// TODO: handle 'setThermostatFanMode' command
}
def auto() {
log.debug "Executing 'auto'"
// TODO: handle 'auto' command
}
def setSchedule() {
log.debug "Executing 'setSchedule'"
// TODO: handle 'setSchedule' command
}
def setCoolingSetpoint() {
log.debug "Executing 'setCoolingSetpoint'"
// TODO: handle 'setCoolingSetpoint' command
}
def fanOn() {
log.debug "Executing 'fanOn'"
// TODO: handle 'fanOn' command
}
def fanAuto() {
log.debug "Executing 'fanAuto'"
// TODO: handle 'fanAuto' command
}
def fanCirculate() {
log.debug "Executing 'fanCirculate'"
// TODO: handle 'fanCirculate' command
}
def setThermostatFanMode() {
log.debug "Executing 'setThermostatFanMode'"
// TODO: handle 'setThermostatFanMode' command
}
def setHeatingSetpoint() {
log.debug "Executing 'setHeatingSetpoint'"
// TODO: handle 'setHeatingSetpoint' command
}
def off() {
log.debug "Executing 'off'"
// TODO: handle 'off' command
}
def heat() {
log.debug "Executing 'heat'"
// TODO: handle 'heat' command
}
def emergencyHeat() {
log.debug "Executing 'emergencyHeat'"
// TODO: handle 'emergencyHeat' command
}
def cool() {
log.debug "Executing 'cool'"
// TODO: handle 'cool' command
}
def auto() {
log.debug "Executing 'auto'"
// TODO: handle 'auto' command
}
def setThermostatMode() {
log.debug "Executing 'setThermostatMode'"
// TODO: handle 'setThermostatMode' command
}
def setTimeRemaining() {
log.debug "Executing 'setTimeRemaining'"
// TODO: handle 'setTimeRemaining' command
}
def start() {
log.debug "Executing 'start'"
// TODO: handle 'start' command
}
def stop() {
log.debug "Executing 'stop'"
// TODO: handle 'stop' command
}
def pause() {
log.debug "Executing 'pause'"
// TODO: handle 'pause' command
}
def cancel() {
log.debug "Executing 'cancel'"
// TODO: handle 'cancel' command
}
def beep() {
log.debug "Executing 'beep'"
// TODO: handle 'beep' command
}
def open() {
log.debug "Executing 'open'"
// TODO: handle 'open' command
}
def close() {
log.debug "Executing 'close'"
// TODO: handle 'close' command
}
def on() {
log.debug "Executing 'on'"
// TODO: handle 'on' command
}
def off() {
log.debug "Executing 'off'"
// TODO: handle 'off' command
}
def mute() {
log.debug "Executing 'mute'"
// TODO: handle 'mute' command
}
def unmute() {
log.debug "Executing 'unmute'"
// TODO: handle 'unmute' command
}
def flip() {
log.debug "Executing 'flip'"
// TODO: handle 'flip' command
}
def capture() {
log.debug "Executing 'capture'"
// TODO: handle 'capture' command
}
def open() {
log.debug "Executing 'open'"
// TODO: handle 'open' command
}
def close() {
log.debug "Executing 'close'"
// TODO: handle 'close' command
}
def presetPosition() {
log.debug "Executing 'presetPosition'"
// TODO: handle 'presetPosition' command
}
def enableEpEvents() {
log.debug "Executing 'enableEpEvents'"
// TODO: handle 'enableEpEvents' command
}
def epCmd() {
log.debug "Executing 'epCmd'"
// TODO: handle 'epCmd' command
}

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@@ -1,2 +0,0 @@
.st-ignore
README.md

View File

@@ -1,33 +0,0 @@
# Osotech Plant Link
Cloud Execution
Works with:
* [OSO Technologies PlantLink Soil Moisture Sensor](https://www.smartthings.com/works-with-smartthings/oso-technologies/oso-technologies-plantlink-soil-moisture-sensor)
## Table of contents
* [Capabilities](#capabilities)
* [Health](#device-health)
* [Troubleshooting](#troubleshooting)
## Capabilities
* **Sensor** - detects sensor events
* **Health Check** - indicates ability to get device health notifications
## Device Health
Plant Link sensor is a ZigBee sleepy device and checks in every 15 minutes.
Device-Watch allows 2 check-in misses from device plus some lag time. So Check-in interval = (2*15 + 2)mins = 32 mins.
* __32min__ checkInterval
## Troubleshooting
If the device doesn't pair when trying from the SmartThings mobile app, it is possible that the sensor is out of range.
Pairing needs to be tried again by placing the sensor closer to the hub.
Instructions related to pairing, resetting and removing the different motion sensors from SmartThings can be found in the following links
for the different models:
* [OSO Technologies PlantLink Soil Moisture Sensor Troubleshooting Tips](https://support.smartthings.com/hc/en-us/articles/206868986-PlantLink-Soil-Moisture-Sensor)

View File

@@ -24,7 +24,6 @@ import groovy.json.JsonBuilder
metadata {
definition (name: "PlantLink", namespace: "OsoTech", author: "Oso Technologies") {
capability "Sensor"
capability "Health Check"
command "setStatusIcon"
command "setPlantFuelLevel"
@@ -71,16 +70,6 @@ metadata {
}
}
def updated() {
// Device-Watch allows 2 check-in misses from device
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
}
def installed() {
// Device-Watch allows 2 check-in misses from device
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
}
def setStatusIcon(value){
def status = ''
switch (value) {
@@ -172,4 +161,4 @@ def parseDescriptionAsMap(description) {
map += []
}
}
}
}

View File

@@ -100,11 +100,6 @@ metadata {
}
}
def installed(){
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated(){
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])

View File

@@ -58,11 +58,6 @@ metadata {
}
}
def installed() {
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated() {
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])

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@@ -1,2 +0,0 @@
.st-ignore
README.md

View File

@@ -1,50 +0,0 @@
# Arrival Sensor HA (2016+ Model)
Cloud Execution
Works with:
* [Samsung SmartThings Arrival Sensor](https://support.smartthings.com/hc/en-us/articles/212417083-Samsung-SmartThings-Arrival-Sensor)
## Table of contents
* [Capabilities](#capabilities)
* [Health](#device-health)
* [Battery](#battery)
* [Troubleshooting](#troubleshooting)
## Capabilities
* **Tone** - beep command to allow an audible tone
* **Actuator** - device has commands
* **Presence Sensor** - device tells presence with enum - {present, not present}
* **Sensor** - device has attributes
* **Battery** - defines device uses a battery
* **Configuration** - _configure()_ command called when device is installed or device preferences updated
* **Health Check** - indicates ability to get device health notifications
## Device Health
Arrival Sensor ZigBee is an untracked device. Sends broadcast of battery level every 20 seconds.
Disconnects when Hub goes OFFLINE.
## Battery
Uses 1 CR2032 Battery
* [Changing the Battery](https://support.smartthings.com/hc/en-us/articles/200907400-How-to-change-the-battery-in-the-SmartSense-Presence-Sensor-and-Samsung-SmartThings-Arrival-Sensor)
## Troubleshooting
If the device doesn't pair when trying from the SmartThings mobile app, it is possible that the arrival sensor is out of range.
Pairing needs to be tried again by placing the sensor closer to the hub.
* [Samsung SmartThings Arrival Sensor Troubleshooting Tips](https://support.smartthings.com/hc/en-us/articles/205382134-Samsung-SmartThings-Arrival-Sensor-2015-model-)
If the arrival sensor doesn't update its status, here are a few things you can try to debug.
* [Troubleshooting: Samsung SmartThings Arrival Sensor won't update its status](https://support.smartthings.com/hc/en-us/articles/200846514-Troubleshooting-Samsung-SmartThings-Arrival-Sensor-won-t-update-its-status)

View File

@@ -1,7 +1,5 @@
import groovy.json.JsonOutput
/**
* Copyright 2017 SmartThings
* Copyright 2016 SmartThings
*
* 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:
@@ -21,7 +19,6 @@ metadata {
capability "Sensor"
capability "Battery"
capability "Configuration"
capability "Health Check"
fingerprint inClusters: "0000,0001,0003,000F,0020", outClusters: "0003,0019",
manufacturer: "SmartThings", model: "tagv4", deviceJoinName: "Arrival Sensor"
@@ -61,13 +58,8 @@ def updated() {
startTimer()
}
def installed() {
// Arrival sensors only goes OFFLINE when Hub is off
sendEvent(name: "DeviceWatch-Enroll", value: JsonOutput.toJson([protocol: "zigbee", scheme:"untracked"]), displayed: false)
}
def configure() {
def cmds = zigbee.readAttribute(zigbee.POWER_CONFIGURATION_CLUSTER, 0x0020) + zigbee.batteryConfig(20, 20, 0x01)
def cmds = zigbee.batteryConfig(20, 20, 0x01)
log.debug "configure -- cmds: ${cmds}"
return cmds
}
@@ -174,4 +166,4 @@ def checkPresenceCallback() {
if (timeSinceLastCheckin >= theCheckInterval) {
handlePresenceEvent(false)
}
}
}

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@@ -1,2 +0,0 @@
.st-ignore
README.md

View File

@@ -1,49 +0,0 @@
# Arrival Sensor (2015 Model)
Cloud Execution
Works with:
* [Arrival Sensor](https://www.smartthings.com/products/samsung-smartthings-arrival-sensor)
## Table of contents
* [Capabilities](#capabilities)
* [Health](#device-health)
* [Battery](#battery)
* [Troubleshooting](#troubleshooting)
## Capabilities
* **Tone** - beep command to allow an audible tone
* **Actuator** - device has commands
* **Signal Strength** - device can read the strength of signal- lqi: Link Quality Indication, rssi: Received Signal Strength Indication
* **Presence Sensor** - device tells presence with enum - {present, not present}
* **Sensor** - device has attributes
* **Battery** - defines device uses a battery
* **Health Check** - indicates ability to get device health notifications
## Device Health
Arrival Sensor ZigBee is an untracked device. Disconnects when Hub goes OFFLINE.
## Battery
Uses 1 CR2032 Battery
* [Changing the Battery](https://support.smartthings.com/hc/en-us/articles/200907400-How-to-change-the-battery-in-the-SmartSense-Presence-Sensor-and-Samsung-SmartThings-Arrival-Sensor)
## Troubleshooting
If the device doesn't pair when trying from the SmartThings mobile app, it is possible that the arrival sensor is out of range.
Pairing needs to be tried again by placing the sensor closer to the hub.
* [Samsung SmartThings Arrival Sensor Troubleshooting Tips](https://support.smartthings.com/hc/en-us/articles/205382134-Samsung-SmartThings-Arrival-Sensor-2015-model-)
If the arrival sensor doesn't update its status, here are a few things you can try to debug.
* [Troubleshooting: Samsung SmartThings Arrival Sensor won't update its status](https://support.smartthings.com/hc/en-us/articles/200846514-Troubleshooting-Samsung-SmartThings-Arrival-Sensor-won-t-update-its-status)

View File

@@ -1,5 +1,3 @@
import groovy.json.JsonOutput
/**
* Copyright 2015 SmartThings
*
@@ -21,7 +19,6 @@ metadata {
capability "Presence Sensor"
capability "Sensor"
capability "Battery"
capability "Health Check"
fingerprint profileId: "FC01", deviceId: "019A"
fingerprint profileId: "FC01", deviceId: "0131", inClusters: "0000,0003", outClusters: "0003"
@@ -114,11 +111,6 @@ def beep() {
]
}
def installed() {
// Arrival sensors only goes OFFLINE when Hub is off
sendEvent(name: "DeviceWatch-Enroll", value: JsonOutput.toJson([protocol: "zigbee", scheme:"untracked"]), displayed: false)
}
def parse(String description) {
def results
if (isBatteryMessage(description)) {

View File

@@ -15,7 +15,7 @@
*/
metadata {
definition (name: "Cree Bulb", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.light") {
definition (name: "Cree Bulb", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Configuration"

View File

@@ -12,7 +12,7 @@
*
*/
metadata {
definition (name: "Dimmer Switch", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.light") {
definition (name: "Dimmer Switch", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.switch") {
capability "Switch Level"
capability "Actuator"
capability "Indicator"
@@ -23,9 +23,9 @@ metadata {
capability "Health Check"
capability "Light"
fingerprint mfr:"0063", prod:"4457", deviceJoinName: "GE In-Wall Smart Dimmer"
fingerprint mfr:"0063", prod:"4944", deviceJoinName: "GE In-Wall Smart Dimmer"
fingerprint mfr:"0063", prod:"5044", deviceJoinName: "GE Plug-In Smart Dimmer"
fingerprint mfr:"0063", prod:"4457", deviceJoinName: "GE In-Wall Smart Dimmer "
fingerprint mfr:"0063", prod:"4944", deviceJoinName: "GE In-Wall Smart Dimmer "
fingerprint mfr:"0063", prod:"5044", deviceJoinName: "GE Plug-In Smart Dimmer "
fingerprint mfr:"0063", prod:"4944", model:"3034", deviceJoinName: "GE In-Wall Smart Fan Control"
}
@@ -84,11 +84,6 @@ metadata {
}
}
def installed() {
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated(){
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])

View File

@@ -85,11 +85,6 @@ def parse(String description) {
result
}
def installed() {
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
//send the command to stop polling
def updated() {
// Device-Watch simply pings if no device events received for 32min(checkInterval)

View File

@@ -12,7 +12,7 @@
*
*/
metadata {
definition (name: "Everspring Flood Sensor", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "x.com.st.d.sensor.moisture") {
definition (name: "Everspring Flood Sensor", namespace: "smartthings", author: "SmartThings") {
capability "Water Sensor"
capability "Configuration"
capability "Sensor"
@@ -29,7 +29,7 @@ metadata {
status "battery ${i}%": new physicalgraph.zwave.Zwave().batteryV1.batteryReport(batteryLevel: i).incomingMessage()
}
}
tiles(scale: 2) {
multiAttributeTile(name:"water", type: "generic", width: 6, height: 4){
tileAttribute ("device.water", key: "PRIMARY_CONTROL") {

View File

@@ -29,7 +29,7 @@
* 2. 20150125 Todd Wackford
* Leaned out parse and moved most device info getting into configuration method.
*/
/**
* Sets up metadata, simulator info and tile definition.
*
@@ -38,7 +38,7 @@
* @return none
*/
metadata {
definition (name: "Fibaro Motion Sensor", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "x.com.st.d.sensor.motion") {
definition (name: "Fibaro Motion Sensor", namespace: "smartthings", author: "SmartThings") {
capability "Motion Sensor"
capability "Temperature Measurement"
capability "Acceleration Sensor"
@@ -47,7 +47,7 @@
capability "Sensor"
capability "Battery"
capability "Health Check"
command "resetParams2StDefaults"
command "listCurrentParams"
command "updateZwaveParam"
@@ -110,7 +110,7 @@
state("active", label:'vibration', icon:"st.motion.acceleration.active", backgroundColor:"#53a7c0")
state("inactive", label:'still', icon:"st.motion.acceleration.inactive", backgroundColor:"#ffffff")
}
main(["motion", "temperature", "acceleration", "illuminance"])
details(["motion", "temperature", "acceleration", "battery", "illuminance", "configure"])
@@ -130,18 +130,18 @@ def configure() {
sendEvent(name: "checkInterval", value: 8 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
def cmds = []
// send associate to group 3 to get sensor data reported only to hub
cmds << zwave.associationV2.associationSet(groupingIdentifier:3, nodeId:[zwaveHubNodeId]).format()
// turn on tamper sensor with active/inactive reports (use it as an acceleration sensor) default is 0, or off
cmds << zwave.configurationV1.configurationSet(configurationValue: [4], parameterNumber: 24, size: 1).format()
cmds << zwave.configurationV1.configurationGet(parameterNumber: 24).format()
// temperature change report threshold (0-255 = 0.1 to 25.5C) default is 1.0 Celcius, setting to .5 Celcius
cmds << zwave.configurationV1.configurationSet(configurationValue: [5], parameterNumber: 60, size: 1).format()
cmds << zwave.configurationV1.configurationGet(parameterNumber: 60).format()
cmds << zwave.configurationV1.configurationGet(parameterNumber: 60).format()
cmds << response(zwave.batteryV1.batteryGet())
cmds << response(zwave.versionV1.versionGet().format())
cmds << response(zwave.manufacturerSpecificV2.manufacturerSpecificGet().format())
@@ -155,20 +155,20 @@ def parse(String description)
{
def result = []
def cmd = zwave.parse(description, [0x72: 2, 0x31: 2, 0x30: 1, 0x84: 1, 0x9C: 1, 0x70: 2, 0x80: 1, 0x86: 1, 0x7A: 1, 0x56: 1])
if (description == "updated") {
result << response(zwave.wakeUpV1.wakeUpIntervalSet(seconds: 7200, nodeid:zwaveHubNodeId))
result << response(zwave.manufacturerSpecificV2.manufacturerSpecificGet())
result << response(zwave.manufacturerSpecificV2.manufacturerSpecificGet())
}
if (cmd) {
if( cmd.CMD == "8407" ) {
if( cmd.CMD == "8407" ) {
result << response(zwave.batteryV1.batteryGet().format())
result << new physicalgraph.device.HubAction(zwave.wakeUpV1.wakeUpNoMoreInformation().format())
result << new physicalgraph.device.HubAction(zwave.wakeUpV1.wakeUpNoMoreInformation().format())
}
result << createEvent(zwaveEvent(cmd))
}
if ( result[0] != null ) {
log.debug "Parse returned ${result}"
result
@@ -189,14 +189,14 @@ def zwaveEvent(physicalgraph.zwave.commands.crc16encapv1.Crc16Encap cmd)
}
}
def createEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd, Map item1) {
def createEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd, Map item1) {
log.debug "manufacturerId: ${cmd.manufacturerId}"
log.debug "manufacturerName: ${cmd.manufacturerName}"
log.debug "productId: ${cmd.productId}"
log.debug "productTypeId: ${cmd.productTypeId}"
}
def createEvent(physicalgraph.zwave.commands.versionv1.VersionReport cmd, Map item1) {
def createEvent(physicalgraph.zwave.commands.versionv1.VersionReport cmd, Map item1) {
updateDataValue("applicationVersion", "${cmd.applicationVersion}")
log.debug "applicationVersion: ${cmd.applicationVersion}"
log.debug "applicationSubVersion: ${cmd.applicationSubVersion}"
@@ -205,7 +205,7 @@ def createEvent(physicalgraph.zwave.commands.versionv1.VersionReport cmd, Map it
log.debug "zWaveProtocolSubVersion: ${cmd.zWaveProtocolSubVersion}"
}
def createEvent(physicalgraph.zwave.commands.firmwareupdatemdv1.FirmwareMdReport cmd, Map item1) {
def createEvent(physicalgraph.zwave.commands.firmwareupdatemdv1.FirmwareMdReport cmd, Map item1) {
log.debug "checksum: ${cmd.checksum}"
log.debug "firmwareId: ${cmd.firmwareId}"
log.debug "manufacturerId: ${cmd.manufacturerId}"
@@ -304,7 +304,7 @@ def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerS
def msr = String.format("%04X-%04X-%04X", cmd.manufacturerId, cmd.productTypeId, cmd.productId)
log.debug "msr: $msr"
updateDataValue("MSR", msr)
if ( msr == "010F-0800-2001" ) { //this is the msr and device type for the fibaro motion sensor
configure()
}
@@ -334,7 +334,7 @@ def test() {
* @return none
*/
def updateZwaveParam(params) {
if ( params ) {
if ( params ) {
def pNumber = params.paramNumber
def pSize = params.size
def pValue = [params.value]
@@ -344,7 +344,7 @@ def updateZwaveParam(params) {
def cmds = []
cmds << zwave.configurationV1.configurationSet(configurationValue: pValue, parameterNumber: pNumber, size: pSize).format()
cmds << zwave.configurationV1.configurationGet(parameterNumber: pNumber).format()
delayBetween(cmds, 1000)
delayBetween(cmds, 1000)
}
}
@@ -388,13 +388,13 @@ def resetParams2StDefaults() {
cmds << zwave.configurationV1.configurationSet(configurationValue: [18], parameterNumber: 86, size: 1).format()
cmds << zwave.configurationV1.configurationSet(configurationValue: [28], parameterNumber: 87, size: 1).format()
cmds << zwave.configurationV1.configurationSet(configurationValue: [1], parameterNumber: 89, size: 1).format()
delayBetween(cmds, 500)
}
/**
* Lists all of available Fibaro parameters and thier current settings out to the
* logging window in the IDE This will be called from the "Fibaro Tweaker" or
* Lists all of available Fibaro parameters and thier current settings out to the
* logging window in the IDE This will be called from the "Fibaro Tweaker" or
* user's own app.
*
* <p>THIS IS AN ADVANCED OPERATION. USE AT YOUR OWN RISK! READ OEM DOCUMENTATION!
@@ -433,6 +433,7 @@ def listCurrentParams() {
cmds << zwave.configurationV1.configurationGet(parameterNumber: 86).format()
cmds << zwave.configurationV1.configurationGet(parameterNumber: 87).format()
cmds << zwave.configurationV1.configurationGet(parameterNumber: 89).format()
delayBetween(cmds, 500)
}

View File

@@ -50,11 +50,6 @@ metadata {
}
}
def installed(){
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated(){
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])

View File

@@ -42,7 +42,7 @@
*/
metadata {
definition (name: "GE Link Bulb", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.light") {
definition (name: "GE Link Bulb", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Configuration"

View File

@@ -57,18 +57,8 @@ metadata {
}
}
def initialize() {
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"LAN\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device.hub.hardwareID}\"}", displayed: false)
}
void installed() {
log.debug "installed()"
initialize()
}
def updated() {
log.debug "updated()"
initialize()
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"LAN\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device.hub.hardwareID}\"}", displayed: false)
}
// parse events into attributes

View File

@@ -45,18 +45,8 @@ metadata {
}
}
def initialize() {
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"LAN\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device.hub.hardwareID}\"}", displayed: false)
}
void installed() {
log.debug "installed()"
initialize()
}
def updated() {
log.debug "updated()"
initialize()
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"LAN\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device.hub.hardwareID}\"}", displayed: false)
}
// parse events into attributes

View File

@@ -66,18 +66,8 @@ metadata {
}
}
def initialize() {
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"LAN\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device.hub.hardwareID}\"}", displayed: false)
}
void installed() {
log.debug "installed()"
initialize()
}
def updated() {
log.debug "updated()"
initialize()
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"LAN\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device.hub.hardwareID}\"}", displayed: false)
}
// parse events into attributes

View File

@@ -50,17 +50,8 @@ metadata {
}
}
def initialize() {
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"LAN\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device.hub.hardwareID}\"}", displayed: false)
}
void installed() {
log.debug "installed()"
initialize()
}
def updated() {
initialize()
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"LAN\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device.hub.hardwareID}\"}", displayed: false)
}
// parse events into attributes

View File

@@ -55,18 +55,8 @@ metadata {
}
}
def initialize() {
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"LAN\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device.hub.hardwareID}\"}", displayed: false)
}
void installed() {
log.debug "installed()"
initialize()
}
def updated() {
log.debug "updated()"
initialize()
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"LAN\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device.hub.hardwareID}\"}", displayed: false)
}
// parse events into attributes

View File

@@ -5,7 +5,7 @@
*
*/
metadata {
definition (name: "LIFX Color Bulb", namespace: "smartthings", author: "LIFX", ocfDeviceType: "oic.d.light") {
definition (name: "LIFX Color Bulb", namespace: "smartthings", author: "LIFX") {
capability "Actuator"
capability "Color Control"
capability "Color Temperature"
@@ -64,18 +64,8 @@ metadata {
}
}
def initialize() {
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"cloud\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device?.hub?.hardwareID}\"}", displayed: false)
}
void installed() {
log.debug "installed()"
initialize()
}
def updated() {
log.debug "updated()"
initialize()
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"cloud\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device?.hub?.hardwareID}\"}")
}
// handle commands
@@ -200,7 +190,7 @@ def off() {
def refresh() {
log.debug "Executing 'refresh'"
def resp = parent.apiGET("/lights/${selector()}")
if (resp.status == 404) {
state.online = false

View File

@@ -5,7 +5,7 @@
*
*/
metadata {
definition (name: "LIFX White Bulb", namespace: "smartthings", author: "LIFX", ocfDeviceType: "oic.d.light") {
definition (name: "LIFX White Bulb", namespace: "smartthings", author: "LIFX") {
capability "Actuator"
capability "Color Temperature"
capability "Switch"
@@ -55,18 +55,8 @@ metadata {
}
}
def initialize() {
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"cloud\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device?.hub?.hardwareID}\"}", displayed: false)
}
void installed() {
log.debug "installed()"
initialize()
}
def updated() {
log.debug "updated()"
initialize()
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"cloud\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device?.hub?.hardwareID}\"}")
}
// handle commands
@@ -129,7 +119,7 @@ def off() {
def refresh() {
log.debug "Executing 'refresh'"
def resp = parent.apiGET("/lights/${selector()}")
if (resp.status == 404) {
state.online = false

View File

@@ -1,4 +1,3 @@
import groovy.json.JsonOutput
/**
* Logitech Harmony Hub
*
@@ -40,18 +39,14 @@ metadata {
}
}
def initialize() {
sendEvent(name: "DeviceWatch-Enroll", value: JsonOutput.toJson([protocol: "cloud", scheme:"untracked"]), displayed: false)
}
def installed() {
log.debug "installed()"
initialize()
sendEvent(name: "DeviceWatch-Enroll", value: JsonOutput.toJson([protocol: "cloud", scheme:"untracked"]), displayed: false)
}
def updated() {
log.debug "updated()"
initialize()
sendEvent(name: "DeviceWatch-Enroll", value: JsonOutput.toJson([protocol: "cloud", scheme:"untracked"]), displayed: false)
}
def startActivity(String activityId) {

View File

@@ -12,7 +12,7 @@
*
*/
metadata {
definition (name: "Open/Closed Sensor", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "x.com.st.d.sensor.contact") {
definition (name: "Open/Closed Sensor", namespace: "smartthings", author: "SmartThings") {
capability "Contact Sensor"
capability "Sensor"
@@ -44,7 +44,7 @@ def parse(String description) {
if (description.startsWith("zone")) {
resMap = createEvent(name: "contact", value: zigbee.parseZoneStatus(description).isAlarm1Set() ? "open" : "closed")
}
log.debug "Parse returned $resMap"
return resMap
}

View File

@@ -21,7 +21,7 @@ Works with:
## Device Health
Plant Link sensor is a ZigBee sleepy device and checks in every 15 minutes.
Plant Link sensor is a Z-wave sleepy device and checks in every 15 minutes.
Device-Watch allows 2 check-in misses from device plus some lag time. So Check-in interval = (2*15 + 2)mins = 32 mins.
* __32min__ checkInterval

View File

@@ -17,7 +17,7 @@
*/
metadata {
definition (name: "RGBW Light", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.light") {
definition (name: "RGBW Light", namespace: "smartthings", author: "SmartThings") {
capability "Switch Level"
capability "Color Control"
capability "Color Temperature"

View File

@@ -1,2 +0,0 @@
.st-ignore
README.md

View File

@@ -21,12 +21,10 @@ metadata {
capability "Switch"
capability "Sensor"
capability "Alarm"
capability "Health Check"
command "test"
fingerprint deviceId: "0x1100", inClusters: "0x26,0x71"
fingerprint mfr:"0084", prod:"0313", model:"010B", deviceJoinName: "FortrezZ Siren Strobe Alarm"
}
simulator {
@@ -70,16 +68,6 @@ metadata {
}
}
def installed() {
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated() {
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def on() {
[
zwave.basicV1.basicSet(value: 0xFF).format(),
@@ -161,10 +149,3 @@ def createEvents(physicalgraph.zwave.commands.basicv1.BasicReport cmd)
def zwaveEvent(physicalgraph.zwave.Command cmd) {
log.warn "UNEXPECTED COMMAND: $cmd"
}
/**
* PING is used by Device-Watch in attempt to reach the Device
* */
def ping() {
secure(zwave.basicV1.basicGet())
}

View File

@@ -91,11 +91,6 @@ def parse(String description) {
return result
}
def installed() {
// Device-Watch simply pings if no device events received for 482min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 4 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated() {
// Device-Watch simply pings if no device events received for 482min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 4 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])

View File

@@ -33,6 +33,7 @@ metadata {
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05,FC02", outClusters: "0019", manufacturer: "CentraLite", model: "3320"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05,FC02", outClusters: "0019", manufacturer: "CentraLite", model: "3321"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05,FC02", outClusters: "0019", manufacturer: "CentraLite", model: "3321-S", deviceJoinName: "Multipurpose Sensor"
fingerprint inClusters: "0000,0001,0003,0020,0402,0500,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3323-G", deviceJoinName: "Centralite Micro Door Sensor"
fingerprint inClusters: "0000,0001,0003,000F,0020,0402,0500,FC02", outClusters: "0019", manufacturer: "SmartThings", model: "multiv4", deviceJoinName: "Multipurpose Sensor"
attribute "status", "string"
@@ -191,10 +192,6 @@ private List<Map> parseAxis(List<Map> attrData) {
def y = hexToSignedInt(attrData.find { it.attrInt == 0x0013 }?.value)
def z = hexToSignedInt(attrData.find { it.attrInt == 0x0014 }?.value)
if ([x, y ,z].any { it == null }) {
return []
}
def xyzResults = [:]
if (device.getDataValue("manufacturer") == "SmartThings") {
// This mapping matches the current behavior of the Device Handler for the Centralite sensors
@@ -375,10 +372,6 @@ def updated() {
}
private hexToSignedInt(hexVal) {
if (!hexVal) {
return null
}
def unsignedVal = hexToInt(hexVal)
unsignedVal > 32767 ? unsignedVal - 65536 : unsignedVal
}

View File

@@ -31,7 +31,6 @@ metadata {
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3300-S"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3300"
fingerprint inClusters: "0000,0001,0003,0020,0402,0500,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3320-L", deviceJoinName: "Iris Contact Sensor"
fingerprint inClusters: "0000,0001,0003,0020,0402,0500,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3323-G", deviceJoinName: "Centralite Micro Door Sensor"
}
simulator {

View File

@@ -15,7 +15,7 @@
//DEPRECATED - Using the generic DTH for this device. Users need to be moved before deleting this DTH
metadata {
definition (name: "Sylvania Ultra iQ", namespace:"smartthings", author: "SmartThings", ocfDeviceType: "oic.d.light") {
definition (name: "Sylvania Ultra iQ", namespace:"smartthings", author: "SmartThings") {
capability "Switch Level"
capability "Configuration"
capability "Switch"

View File

@@ -18,8 +18,8 @@
//DEPRECATED - Using the generic DTH for this device. Users need to be moved before deleting this DTH
metadata {
definition (name: "WeMo Bulb", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.light") {
definition (name: "WeMo Bulb", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Configuration"
capability "Refresh"
@@ -57,7 +57,7 @@ metadata {
valueTile("level", "device.level", inactiveLabel: false, decoration: "flat") {
state "level", label: 'Level ${currentValue}%'
}
main(["switch"])
details(["switch", "level", "levelSliderControl", "refresh"])
@@ -87,11 +87,11 @@ def parse(String description) {
if (description?.startsWith("read attr")) {
log.debug description[-2..-1]
def i = Math.round(convertHexToInt(description[-2..-1]) / 256 * 100 )
sendEvent( name: "level", value: i )
}
}
def on() {
@@ -136,16 +136,16 @@ def setLevel(value) {
def configure() {
log.debug "Configuring Reporting and Bindings."
def configCmds = [
def configCmds = [
//Switch Reporting
"zcl global send-me-a-report 6 0 0x10 0 3600 {01}", "delay 500",
"send 0x${device.deviceNetworkId} 1 1", "delay 1000",
//Level Control Reporting
"zcl global send-me-a-report 8 0 0x20 5 3600 {0010}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zdo bind 0x${device.deviceNetworkId} 1 1 6 {${device.zigbeeId}} {}", "delay 1000",
"zdo bind 0x${device.deviceNetworkId} 1 1 8 {${device.zigbeeId}} {}", "delay 500",
]

View File

@@ -28,7 +28,6 @@ metadata {
command "enrollResponse"
fingerprint inClusters: "0000, 0001, 0003, 0020, 0402, 0B05", outClusters: "0003, 0006, 0008, 0019", manufacturer: "OSRAM", model: "LIGHTIFY Dimming Switch", deviceJoinName: "OSRAM LIGHTIFY Dimming Switch"
fingerprint inClusters: "0000, 0001, 0003, 0020, 0402, 0B05", outClusters: "0003, 0006, 0008, 0019", manufacturer: "CentraLite", model: "3130", deviceJoinName: "Centralite Zigbee Smart Switch"
//fingerprint inClusters: "0000, 0001, 0003, 0020, 0500", outClusters: "0003,0019", manufacturer: "CentraLite", model: "3455-L", deviceJoinName: "Iris Care Pendant"
fingerprint inClusters: "0000, 0001, 0003, 0007, 0020, 0402, 0B05", outClusters: "0003, 0006, 0019", manufacturer: "CentraLite", model: "3460-L", deviceJoinName: "Iris Smart Button"
fingerprint inClusters: "0000, 0001, 0003, 0007, 0020, 0B05", outClusters: "0003, 0006, 0019", manufacturer: "CentraLite", model:"3450-L", deviceJoinName: "Iris KeyFob"
@@ -252,19 +251,12 @@ def initialize() {
if ((device.getDataValue("manufacturer") == "OSRAM") && (device.getDataValue("model") == "LIGHTIFY Dimming Switch")) {
sendEvent(name: "numberOfButtons", value: 2)
}
else if (device.getDataValue("manufacturer") == "CentraLite") {
if (device.getDataValue("model") == "3130") {
sendEvent(name: "numberOfButtons", value: 2)
}
else if ((device.getDataValue("model") == "3455-L") || (device.getDataValue("model") == "3460-L")) {
sendEvent(name: "numberOfButtons", value: 1)
}
else if (device.getDataValue("model") == "3450-L") {
sendEvent(name: "numberOfButtons", value: 4)
}
else {
sendEvent(name: "numberOfButtons", value: 4) //default case. can be changed later.
}
else if ((device.getDataValue("manufacturer") == "CentraLite") &&
((device.getDataValue("model") == "3455-L") || (device.getDataValue("model") == "3460-L"))) {
sendEvent(name: "numberOfButtons", value: 1)
}
else if ((device.getDataValue("manufacturer") == "CentraLite") && (device.getDataValue("model") == "3450-L")) {
sendEvent(name: "numberOfButtons", value: 4)
}
else {
//default. can be changed

View File

@@ -13,7 +13,7 @@
*/
metadata {
definition (name: "ZigBee Dimmer Power", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.light") {
definition (name: "ZigBee Dimmer Power", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.switch") {
capability "Actuator"
capability "Configuration"
capability "Refresh"
@@ -70,27 +70,19 @@ def parse(String description) {
else {
sendEvent(event)
}
} else {
def descMap = zigbee.parseDescriptionAsMap(description)
if (descMap && descMap.clusterInt == 0x0006 && descMap.commandInt == 0x07) {
if (descMap.data[0] == "00") {
}
else {
def cluster = zigbee.parse(description)
if (cluster && cluster.clusterId == 0x0006 && cluster.command == 0x07) {
if (cluster.data[0] == 0x00){
log.debug "ON/OFF REPORTING CONFIG RESPONSE: " + cluster
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
} else {
}
else {
log.warn "ON/OFF REPORTING CONFIG FAILED- error code:${cluster.data[0]}"
}
} else if (device.getDataValue("manufacturer") == "sengled" && descMap && descMap.clusterInt == 0x0008 && descMap.attrInt == 0x0000) {
// This is being done because the sengled element touch incorrectly uses the value 0xFF for the max level.
// Per the ZCL spec for the UINT8 data type 0xFF is an invalid value, and 0xFE should be the max. Here we
// manually handle the invalid attribute value since it will be ignored by getEvent as an invalid value.
// We also set the level of the bulb to 0xFE so future level reports will be 0xFE until it is changed by
// something else.
if (descMap.value.toUpperCase() == "FF") {
descMap.value = "FE"
}
sendHubCommand(zigbee.command(zigbee.LEVEL_CONTROL_CLUSTER, 0x00, "FE0000").collect { new physicalgraph.device.HubAction(it) }, 0)
sendEvent(zigbee.getEventFromAttrData(descMap.clusterInt, descMap.attrInt, descMap.encoding, descMap.value))
} else {
}
else {
log.warn "DID NOT PARSE MESSAGE for description : $description"
log.debug zigbee.parseDescriptionAsMap(description)
}
@@ -122,17 +114,9 @@ def refresh() {
def configure() {
log.debug "Configuring Reporting and Bindings."
def cmds = []
if (device.getDataValue("manufacturer") == "sengled") {
def startLevel = 0xFE
if ((device.currentState("level")?.value != null)) {
startLevel = Math.round(Integer.parseInt(device.currentState("level").value) * 0xFE / 100)
}
// Level Control Cluster, command Move to Level, level start level, transition time 0
cmds << zigbee.command(zigbee.LEVEL_CONTROL_CLUSTER, 0x00, sprintf("%02X0000", startLevel))
}
// Device-Watch allows 2 check-in misses from device + ping (plus 1 min lag time)
// enrolls with default periodic reporting until newer 5 min interval is confirmed
sendEvent(name: "checkInterval", value: 2 * 60 * 60 + 1 * 60, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
cmds + refresh()
refresh()
}

View File

@@ -13,7 +13,7 @@
*/
metadata {
definition (name: "ZigBee Dimmer", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.light") {
definition (name: "ZigBee Dimmer", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.switch") {
capability "Actuator"
capability "Configuration"
capability "Refresh"

View File

@@ -16,7 +16,7 @@ import groovy.transform.Field
@Field Boolean hasConfiguredHealthCheck = false
metadata {
definition (name: "ZLL Dimmer Bulb", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.light") {
definition (name: "ZLL Dimmer Bulb", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Configuration"

View File

@@ -14,7 +14,7 @@
import physicalgraph.zigbee.zcl.DataType
metadata {
definition (name: "ZLL RGB Bulb", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.light") {
definition (name: "ZLL RGB Bulb", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Color Control"

View File

@@ -14,7 +14,7 @@
import physicalgraph.zigbee.zcl.DataType
metadata {
definition (name: "ZLL RGBW Bulb", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.light") {
definition (name: "ZLL RGBW Bulb", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Color Control"

View File

@@ -16,7 +16,7 @@ import groovy.transform.Field
@Field Boolean hasConfiguredHealthCheck = false
metadata {
definition (name: "ZLL White Color Temperature Bulb 5000K", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.light") {
definition (name: "ZLL White Color Temperature Bulb 5000K", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Color Temperature"
@@ -101,7 +101,7 @@ def refresh() {
if (!((device.getDataValue("manufacturer") == "Eaton") && (device.getDataValue("model") == "Halo_LT01"))) {
cmds = cmds + zigbee.onOffConfig() + zigbee.levelConfig() + zigbee.colorTemperatureConfig()
}
cmds
}

View File

@@ -16,7 +16,7 @@ import groovy.transform.Field
@Field Boolean hasConfiguredHealthCheck = false
metadata {
definition (name: "ZLL White Color Temperature Bulb", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.light") {
definition (name: "ZLL White Color Temperature Bulb", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Color Temperature"

View File

@@ -12,7 +12,7 @@
*
*/
metadata {
definition (name: "Z-Wave Dimmer Switch Generic", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.light") {
definition (name: "Z-Wave Dimmer Switch Generic", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.switch") {
capability "Switch Level"
capability "Actuator"
capability "Health Check"
@@ -78,11 +78,6 @@ metadata {
}
}
def installed(){
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated(){
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])

View File

@@ -17,7 +17,7 @@
*/
metadata {
definition (name: "Z-Wave Door/Window Sensor", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "x.com.st.d.sensor.contact") {
definition (name: "Z-Wave Door/Window Sensor", namespace: "smartthings", author: "SmartThings") {
capability "Contact Sensor"
capability "Sensor"
capability "Battery"
@@ -30,9 +30,6 @@ metadata {
fingerprint deviceId: "0x0701", inClusters: "0x5E,0x86,0x72,0x98", outClusters: "0x5A,0x82"
fingerprint deviceId: "0x0701", inClusters: "0x5E,0x80,0x71,0x85,0x70,0x72,0x86,0x30,0x31,0x84,0x59,0x73,0x5A,0x8F,0x98,0x7A", outClusters:"0x20" // Philio multi+
fingerprint mfr:"0086", prod:"0002", model:"001D", deviceJoinName: "Aeon Labs Door/Window Sensor (Gen 5)"
fingerprint mfr:"014A", prod:"0001", model:"0002", deviceJoinName: "Ecolink Door/Window Sensor"
fingerprint mfr:"0086", prod:"0102", model:"0070", deviceJoinName: "Aeon Labs Door/Window Sensor 6"
fingerprint mfr:"011A", prod:"0601", model:"0903", deviceJoinName: "Enerwave Magnetic Door/Window Sensor"
}
// simulator metadata
@@ -82,11 +79,6 @@ def parse(String description) {
return result
}
def installed() {
// Device-Watch simply pings if no device events received for 482min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 4 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated() {
// Device-Watch simply pings if no device events received for 482min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 4 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])

View File

@@ -65,11 +65,6 @@ metadata {
import physicalgraph.zwave.commands.barrieroperatorv1.*
def installed(){
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated(){
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])

View File

@@ -1,4 +1,4 @@
# Z-Wave Lock
# Z-Wave Switch
Cloud Execution
@@ -6,6 +6,7 @@ Works with:
* [Yale Key Free Touchscreen Deadbolt (YRD240)](https://www.smartthings.com/works-with-smartthings/yale/yale-key-free-touchscreen-deadbolt-yrd240)
## Table of contents
* [Capabilities](#capabilities)
@@ -40,3 +41,5 @@ If the device doesn't pair when trying from the SmartThings mobile app, it is po
Pairing needs to be tried again by placing the device closer to the hub.
Instructions related to pairing, resetting and removing the device from SmartThings can be found in the following link:
* [General Z-Wave/ZigBee Yale Lock Troubleshooting](https://support.smartthings.com/hc/en-us/articles/205138400-How-to-connect-Yale-locks)

View File

@@ -68,11 +68,6 @@ metadata {
import physicalgraph.zwave.commands.doorlockv1.*
import physicalgraph.zwave.commands.usercodev1.*
def installed() {
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated() {
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])

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@@ -16,7 +16,7 @@
*
*/
metadata {
definition (name: "Z-Wave Metering Dimmer", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.light") {
definition (name: "Z-Wave Metering Dimmer", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.switch") {
capability "Switch"
capability "Polling"
capability "Power Meter"
@@ -100,11 +100,6 @@ def parse(String description) {
result
}
def installed() {
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated() {
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])

View File

@@ -74,11 +74,6 @@ metadata {
}
}
def installed() {
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated() {
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])

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@@ -17,7 +17,7 @@
*/
metadata {
definition (name: "Z-Wave Motion Sensor", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "x.com.st.d.sensor.motion") {
definition (name: "Z-Wave Motion Sensor", namespace: "smartthings", author: "SmartThings") {
capability "Motion Sensor"
capability "Sensor"
capability "Battery"
@@ -36,7 +36,7 @@ metadata {
status "inactive": "command: 3003, payload: 00"
status "active": "command: 3003, payload: FF"
}
tiles {
standardTile("motion", "device.motion", width: 2, height: 2) {
state("active", label:'motion', icon:"st.motion.motion.active", backgroundColor:"#00A0DC")
@@ -51,12 +51,7 @@ metadata {
}
}
def installed() {
// Device wakes up every 4 hours, this interval allows us to miss one wakeup notification before marking offline
sendEvent(name: "checkInterval", value: 8 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated() {
def updated(){
// Device wakes up every 4 hours, this interval allows us to miss one wakeup notification before marking offline
sendEvent(name: "checkInterval", value: 8 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
@@ -202,4 +197,4 @@ def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerS
result << createEvent(descriptionText: "$device.displayName MSR: $msr", isStateChange: false)
result
}
}

View File

@@ -16,7 +16,7 @@
*/
metadata {
definition (name: "Z-Wave Plus Door/Window Sensor", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "x.com.st.d.sensor.contact") {
definition (name: "Z-Wave Plus Door/Window Sensor", namespace: "smartthings", author: "SmartThings") {
capability "Contact Sensor"
capability "Configuration"
capability "Battery"

View File

@@ -1,8 +1,8 @@
# Smartalert Siren
# Z-wave Siren
Cloud Execution
Works with:
Works with:
* [FortrezZ Siren Strobe Alarm](https://www.smartthings.com/works-with-smartthings/other/fortrezz-water-valve)
@@ -15,10 +15,13 @@ Works with:
## Capabilities
* **Actuator** - represents that a Device has commands
* **Switch** - can detect state (possible values: on/off)
* **Sensor** - detects sensor events
* **Alarm** - allows for interacting with devices that serve as alarms
* **Battery** - defines device uses a battery
* **Health Check** - indicates ability to get device health notifications
* **Polling** - represents that poll() can be implemented for the device
* **Refresh** - _refresh()_ command for status updates
* **Sensor** - detects sensor events
* **Switch** - can detect state (possible values: on/off)
## Device Health

View File

@@ -20,6 +20,7 @@ metadata {
capability "Actuator"
capability "Alarm"
capability "Battery"
capability "Health Check"
capability "Polling"
capability "Refresh"
capability "Sensor"
@@ -27,6 +28,7 @@ metadata {
fingerprint inClusters: "0x20,0x25,0x86,0x80,0x85,0x72,0x71"
fingerprint mfr:"0084", prod:"0313", model:"010B", deviceJoinName: "FortrezZ Siren Strobe Alarm"
}
simulator {
@@ -58,6 +60,11 @@ metadata {
}
}
def updated(){
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def createEvents(physicalgraph.zwave.commands.batteryv1.BatteryReport cmd) {
def map = [ name: "battery", unit: "%" ]
if (cmd.batteryLevel == 0xFF) {
@@ -119,6 +126,13 @@ def both() {
on()
}
/**
* PING is used by Device-Watch in attempt to reach the Device
* */
def ping() {
refresh()
}
def refresh() {
log.debug "sending battery refresh command"
zwave.batteryV1.batteryGet().format()

View File

@@ -53,12 +53,7 @@ metadata {
}
}
def installed() {
// Device checks in every hour, this interval allows us to miss one check-in notification before marking offline
sendEvent(name: "checkInterval", value: 2 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated() {
def updated(){
// Device checks in every hour, this interval allows us to miss one check-in notification before marking offline
sendEvent(name: "checkInterval", value: 2 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}

View File

@@ -61,11 +61,6 @@ metadata {
}
}
def installed(){
// Device-Watch simply pings if no device events received for checkInterval duration of 32min = 2 * 15min + 2min lag time
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated(){
// Device-Watch simply pings if no device events received for checkInterval duration of 32min = 2 * 15min + 2min lag time
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])

View File

@@ -22,9 +22,9 @@ metadata {
capability "Health Check"
capability "Light"
fingerprint mfr:"0063", prod:"4952", deviceJoinName: "GE Wall Switch"
fingerprint mfr:"0063", prod:"5257", deviceJoinName: "GE Wall Switch"
fingerprint mfr:"0063", prod:"5052", deviceJoinName: "GE Plug-In Switch"
fingerprint mfr:"0063", prod:"4952", deviceJoinName: "Z-Wave Wall Switch"
fingerprint mfr:"0063", prod:"5257", deviceJoinName: "Z-Wave Wall Switch"
fingerprint mfr:"0063", prod:"5052", deviceJoinName: "Z-Wave Plug-In Switch"
fingerprint mfr:"0113", prod:"5257", deviceJoinName: "Z-Wave Wall Switch"
}
@@ -65,11 +65,6 @@ metadata {
}
}
def installed() {
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated(){
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])

View File

@@ -124,11 +124,6 @@ metadata {
}
}
def installed(){
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated(){
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])

View File

@@ -16,7 +16,7 @@
* Date: 2013-03-07
*/
metadata {
definition (name: "Z-Wave Virtual Momentary Contact Switch", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "x.com.st.d.sensor.contact") {
definition (name: "Z-Wave Virtual Momentary Contact Switch", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Switch"
capability "Refresh"

View File

@@ -17,7 +17,7 @@
*/
metadata {
definition (name: "Z-Wave Water Sensor", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "x.com.st.d.sensor.moisture") {
definition (name: "Z-Wave Water Sensor", namespace: "smartthings", author: "SmartThings") {
capability "Water Sensor"
capability "Sensor"
capability "Battery"
@@ -29,7 +29,7 @@ metadata {
status "dry": "command: 3003, payload: 00"
status "wet": "command: 3003, payload: FF"
}
tiles {
standardTile("water", "device.water", width: 2, height: 2) {
state "dry", icon:"st.alarm.water.dry", backgroundColor:"#ffffff"

View File

@@ -52,15 +52,15 @@ definition(
//Device Inputs
preferences {
section("Allow OpenT2T to control these things...") {
input "contactSensors", "capability.contactSensor", title: "Which Contact Sensors", multiple: true, required: false, hideWhenEmpty: true
input "garageDoors", "capability.garageDoorControl", title: "Which Garage Doors?", multiple: true, required: false, hideWhenEmpty: true
input "locks", "capability.lock", title: "Which Locks?", multiple: true, required: false, hideWhenEmpty: true
input "cameras", "capability.videoCapture", title: "Which Cameras?", multiple: true, required: false, hideWhenEmpty: true
input "motionSensors", "capability.motionSensor", title: "Which Motion Sensors?", multiple: true, required: false, hideWhenEmpty: true
input "presenceSensors", "capability.presenceSensor", title: "Which Presence Sensors", multiple: true, required: false, hideWhenEmpty: true
input "switches", "capability.switch", title: "Which Switches and Lights?", multiple: true, required: false, hideWhenEmpty: true
input "thermostats", "capability.thermostat", title: "Which Thermostat?", multiple: true, required: false, hideWhenEmpty: true
input "waterSensors", "capability.waterSensor", title: "Which Water Leak Sensors?", multiple: true, required: false, hideWhenEmpty: true
input "contactSensors", "capability.contactSensor", title: "Which Contact Sensors", multiple: true, required: false
input "garageDoors", "capability.garageDoorControl", title: "Which Garage Doors?", multiple: true, required: false
input "locks", "capability.lock", title: "Which Locks?", multiple: true, required: false
input "cameras", "capability.videoCapture", title: "Which Cameras?", multiple: true, required: false
input "motionSensors", "capability.motionSensor", title: "Which Motion Sensors?", multiple: true, required: false
input "presenceSensors", "capability.presenceSensor", title: "Which Presence Sensors", multiple: true, required: false
input "switches", "capability.switch", title: "Which Switches and Lights?", multiple: true, required: false
input "thermostats", "capability.thermostat", title: "Which Thermostat?", multiple: true, required: false
input "waterSensors", "capability.waterSensor", title: "Which Water Leak Sensors?", multiple: true, required: false
}
}
@@ -80,6 +80,16 @@ def getInputs() {
//API external Endpoints
mappings {
path("/subscriptionURL/:url") {
action: [
PUT: "updateEndpointURL"
]
}
path("/connectionId/:connId") {
action: [
PUT: "updateConnectionId"
]
}
path("/devices") {
action: [
GET: "getDevices"
@@ -95,52 +105,33 @@ mappings {
PUT: "updateDevice"
]
}
path("/deviceSubscription") {
path("/subscription/:id") {
action: [
POST: "registerDeviceChange",
DELETE: "unregisterDeviceChange"
]
}
path("/locationSubscription") {
action: [
POST: "registerDeviceGraph",
DELETE: "unregisterDeviceGraph"
]
}
}
def installed() {
log.debug "Installing with settings: ${settings}"
log.debug "Installed with settings: ${settings}"
initialize()
}
def updated() {
log.debug "Updating with settings: ${settings}"
if(state.deviceSubscriptionMap == null){
state.deviceSubscriptionMap = [:]
log.debug "deviceSubscriptionMap created."
}
if( state.locationSubscriptionMap == null){
state.locationSubscriptionMap = [:]
log.debug "locationSubscriptionMap created."
}
log.debug "Updated with settings: ${settings}"
unsubscribe()
registerAllDeviceSubscriptions()
registerSubscriptions()
}
def initialize() {
log.debug "Initializing with settings: ${settings}"
state.deviceSubscriptionMap = [:]
log.debug "deviceSubscriptionMap created."
registerAllDeviceSubscriptions()
state.locationSubscriptionMap = [:]
log.debug "locationSubscriptionMap created."
state.connectionId = ""
state.endpointURL = "https://ifs.windows-int.com/v1/cb/81C7E77B-EABC-488A-B2BF-FEC42F0DABD2/notify"
registerSubscriptions()
}
/*** Subscription Functions ***/
//Subscribe events for all devices
def registerAllDeviceSubscriptions() {
def registerSubscriptions() {
registerChangeHandler(inputs)
}
@@ -149,195 +140,101 @@ def registerChangeHandler(myList) {
myList.each { myDevice ->
def theAtts = myDevice.supportedAttributes
theAtts.each {att ->
subscribe(myDevice, att.name, deviceEventHandler)
log.info "Registering for ${myDevice.displayName}.${att.name}"
subscribe(myDevice, att.name, eventHandler)
log.info "Registering ${myDevice.displayName}.${att.name}"
}
}
}
//Endpoints function: Subscribe to events from a specific device
def registerDeviceChange() {
def subscriptionEndpt = params.subscriptionURL
def deviceId = params.deviceId
def myDevice = findDevice(deviceId)
if( myDevice == null ){
httpError(404, "Cannot find device with device ID ${deviceId}.")
}
def myDevice = findDevice(params.id)
def theAtts = myDevice.supportedAttributes
try {
theAtts.each {att ->
subscribe(myDevice, att.name, deviceEventHandler)
}
log.info "Subscribing for ${myDevice.displayName}"
if(subscriptionEndpt != null){
if(state.deviceSubscriptionMap[deviceId] == null){
state.deviceSubscriptionMap.put(deviceId, [subscriptionEndpt])
log.info "Added subscription URL: ${subscriptionEndpt} for ${myDevice.displayName}"
} else if (!state.deviceSubscriptionMap[deviceId].contains(subscriptionEndpt)){
state.deviceSubscriptionMap[deviceId] << subscriptionEndpt
log.info "Added subscription URL: ${subscriptionEndpt} for ${myDevice.displayName}"
}
subscribe(myDevice, att.name, eventHandler)
log.info "Registering ${myDevice.displayName}.${att.name}"
}
return ["succeed"]
} catch (e) {
httpError(500, "something went wrong: $e")
}
log.info "Current subscription map is ${state.deviceSubscriptionMap}"
return ["succeed"]
}
//Endpoints function: Unsubscribe to events from a specific device
def unregisterDeviceChange() {
def subscriptionEndpt = params.subscriptionURL
def deviceId = params.deviceId
def myDevice = findDevice(deviceId)
if( myDevice == null ){
httpError(404, "Cannot find device with device ID ${deviceId}.")
}
def myDevice = findDevice(params.id)
try {
if(subscriptionEndpt != null && subscriptionEndpt != "undefined"){
if (state.deviceSubscriptionMap[deviceId]?.contains(subscriptionEndpt)){
if(state.deviceSubscriptionMap[deviceId].size() == 1){
state.deviceSubscriptionMap.remove(deviceId)
} else {
state.deviceSubscriptionMap[deviceId].remove(subscriptionEndpt)
}
log.info "Removed subscription URL: ${subscriptionEndpt} for ${myDevice.displayName}"
}
} else {
state.deviceSubscriptionMap.remove(deviceId)
log.info "Unsubscriping for ${myDevice.displayName}"
}
} catch (e) {
httpError(500, "something went wrong: $e")
}
log.info "Current subscription map is ${state.deviceSubscriptionMap}"
}
//Endpoints function: Subscribe to device additiona/removal updated in a location
def registerDeviceGraph() {
def subscriptionEndpt = params.subscriptionURL
if (subscriptionEndpt != null && subscriptionEndpt != "undefined"){
subscribe(location, "DeviceCreated", locationEventHandler, [filterEvents: false])
subscribe(location, "DeviceUpdated", locationEventHandler, [filterEvents: false])
subscribe(location, "DeviceDeleted", locationEventHandler, [filterEvents: false])
if(state.locationSubscriptionMap[location.id] == null){
state.locationSubscriptionMap.put(location.id, [subscriptionEndpt])
log.info "Added subscription URL: ${subscriptionEndpt} for Location ${location.name}"
} else if (!state.locationSubscriptionMap[location.id].contains(subscriptionEndpt)){
state.locationSubscriptionMap[location.id] << subscriptionEndpt
log.info "Added subscription URL: ${subscriptionEndpt} for Location ${location.name}"
}
log.info "Current location subscription map is ${state.locationSubscriptionMap}"
unsubscribe(myDevice)
log.info "Unregistering ${myDevice.displayName}"
return ["succeed"]
} else {
httpError(400, "missing input parameter: subscriptionURL")
}
}
//Endpoints function: Unsubscribe to events from a specific device
def unregisterDeviceGraph() {
def subscriptionEndpt = params.subscriptionURL
try {
if(subscriptionEndpt != null && subscriptionEndpt != "undefined"){
if (state.locationSubscriptionMap[location.id]?.contains(subscriptionEndpt)){
if(state.locationSubscriptionMap[location.id].size() == 1){
state.locationSubscriptionMap.remove(location.id)
} else {
state.locationSubscriptionMap[location.id].remove(subscriptionEndpt)
}
log.info "Removed subscription URL: ${subscriptionEndpt} for Location ${location.name}"
}
}else{
httpError(400, "missing input parameter: subscriptionURL")
}
} catch (e) {
httpError(500, "something went wrong: $e")
}
log.info "Current location subscription map is ${state.locationSubscriptionMap}"
}
//When events are triggered, send HTTP post to web socket servers
def deviceEventHandler(evt) {
def eventHandler(evt) {
def evt_device_id = evt.deviceId
def evt_device_value = evt.value
def evt_name = evt.name
def evt_device = evt.device
def evt_deviceType = getDeviceType(evt_device)
def evt_deviceType = getDeviceType(evt_device);
def deviceInfo
def params = [ body: [deviceName: evt_device.displayName, deviceId: evt_device.id, locationId: location.id] ]
if(evt.data != null){
def evtData = parseJson(evt.data)
log.info "Received event for ${evt_device.displayName}, data: ${evtData}, description: ${evt.descriptionText}"
if(evt_deviceType == "thermostat")
{
deviceInfo = [name: evt_device.displayName, id: evt_device.id, status:evt_device.getStatus(), deviceType:evt_deviceType, manufacturer:evt_device.getManufacturerName(), model:evt_device.getModelName(), attributes: deviceAttributeList(evt_device), locationMode: getLocationModeInfo()]
}
else
{
deviceInfo = [name: evt_device.displayName, id: evt_device.id, status:evt_device.getStatus(), deviceType:evt_deviceType, manufacturer:evt_device.getManufacturerName(), model:evt_device.getModelName(), attributes: deviceAttributeList(evt_device)]
}
//send event to all subscriptions urls
log.debug "Current subscription urls for ${evt_device.displayName} is ${state.deviceSubscriptionMap[evt_device.id]}"
state.deviceSubscriptionMap[evt_device.id].each {
params.uri = "${it}"
def params = [
uri: "${state.endpointURL}/${state.connectionId}",
body: [ deviceInfo ]
]
try {
log.trace "POST URI: ${params.uri}"
log.trace "Payload: ${params.body}"
try{
httpPostJson(params) { resp ->
log.trace "response status code: ${resp.status}"
log.trace "response data: ${resp.data}"
httpPostJson(params) { resp ->
resp.headers.each {
log.debug "${it.name} : ${it.value}"
}
} catch (e) {
log.error "something went wrong: $e"
log.trace "response status code: ${resp.status}"
log.trace "response data: ${resp.data}"
}
} catch (e) {
log.debug "something went wrong: $e"
}
}
def locationEventHandler(evt) {
log.info "Received event for location ${location.name}/${location.id}, Event: ${evt.name}, description: ${evt.descriptionText}, apiServerUrl: ${apiServerUrl("")}"
switch(evt.name){
case "DeviceCreated":
case "DeviceDeleted":
def evt_device = evt.device
def evt_deviceType = getDeviceType(evt_device)
log.info "DeviceName: ${evt_device.displayName}, DeviceID: ${evt_device.id}, deviceType: ${evt_deviceType}"
def params = [ body: [ eventType:evt.name, deviceId: evt_device.id, locationId: location.id ] ]
state.locationSubscriptionMap[location.id].each {
params.uri = "${it}"
log.trace "POST URI: ${params.uri}"
log.trace "Payload: ${params.body}"
try{
httpPostJson(params) { resp ->
log.trace "response status code: ${resp.status}"
log.trace "response data: ${resp.data}"
}
} catch (e) {
log.error "something went wrong: $e"
}
}
case "DeviceUpdated":
default:
break
}
//Endpoints function: update subcription endpoint url [state.endpoint]
void updateEndpointURL() {
state.endpointURL = params.url
log.info "Updated EndpointURL to ${state.endpointURL}"
}
/*** Device Query/Update Functions ***/
//Endpoints function: update global variable [state.connectionId]
void updateConnectionId() {
def connId = params.connId
state.connectionId = connId
log.info "Updated ConnectionID to ${state.connectionId}"
}
//Endpoints function: return all device data in json format
def getDevices() {
def deviceData = []
inputs?.each {
def deviceType = getDeviceType(it)
if(deviceType == "thermostat") {
deviceData << [name: it.displayName, id: it.id, status:it.status, deviceType:deviceType, manufacturer:it.manufacturerName, model:it.modelName, attributes: deviceAttributeList(it, deviceType), locationMode: getLocationModeInfo()]
} else {
deviceData << [name: it.displayName, id: it.id, status:it.status, deviceType:deviceType, manufacturer:it.manufacturerName, model:it.modelName, attributes: deviceAttributeList(it, deviceType)]
if(deviceType == "thermostat")
{
deviceData << [name: it.displayName, id: it.id, status:it.getStatus(), deviceType:deviceType, manufacturer:it.getManufacturerName(), model:it.getModelName(), attributes: deviceAttributeList(it), locationMode: getLocationModeInfo()]
}
else
{
deviceData << [name: it.displayName, id: it.id, status:it.getStatus(), deviceType:deviceType, manufacturer:it.getManufacturerName(), model:it.getModelName(), attributes: deviceAttributeList(it)]
}
}
@@ -350,12 +247,14 @@ def getDevice() {
def it = findDevice(params.id)
def deviceType = getDeviceType(it)
def device
if(deviceType == "thermostat") {
device = [name: it.displayName, id: it.id, status:it.status, deviceType:deviceType, manufacturer:it.manufacturerName, model:it.modelName, attributes: deviceAttributeList(it,deviceType), locationMode: getLocationModeInfo()]
} else {
device = [name: it.displayName, id: it.id, status:it.status, deviceType:deviceType, manufacturer:it.manufacturerName, model:it.modelName, attributes: deviceAttributeList(it, deviceType)]
if(deviceType == "thermostat")
{
device = [name: it.displayName, id: it.id, status:it.getStatus(), deviceType:deviceType, manufacturer:it.getManufacturerName(), model:it.getModelName(), attributes: deviceAttributeList(it), locationMode: getLocationModeInfo()]
}
else
{
device = [name: it.displayName, id: it.id, status:it.getStatus(), deviceType:deviceType, manufacturer:it.getManufacturerName(), model:it.getModelName(), attributes: deviceAttributeList(it)]
}
log.debug "getDevice, return: ${device}"
return device
}
@@ -451,6 +350,9 @@ private getDeviceType(device) {
}
}
break
case "contact sensor":
deviceType = "contactSensor"
return deviceType
case "garageDoorControl":
deviceType = "garageDoor"
return deviceType
@@ -460,15 +362,17 @@ private getDeviceType(device) {
case "video camera":
deviceType = "camera"
return deviceType
case "motion sensor":
deviceType = "motionSensor"
return deviceType
case "presence sensor":
deviceType = "presenceSensor"
return deviceType
case "thermostat":
deviceType = "thermostat"
return deviceType
case "acceleration sensor":
case "contact sensor":
case "motion sensor":
case "presence sensor":
case "water sensor":
deviceType = "genericSensor"
deviceType = "waterSensor"
return deviceType
default:
break
@@ -483,33 +387,14 @@ private findDevice(deviceId) {
}
//Return a list of device attributes
private deviceAttributeList(device, deviceType) {
def attributeList = [:]
def allAttributes = device.supportedAttributes
allAttributes.each { attribute ->
private deviceAttributeList(device) {
device.supportedAttributes.collectEntries { attribute->
try {
def currentState = device.currentState(attribute.name)
if(currentState != null ){
switch(attribute.name){
case 'temperature':
attributeList.putAll([ (attribute.name): currentState.value, 'temperatureScale':location.temperatureScale ])
break;
default:
attributeList.putAll([(attribute.name): currentState.value ])
break;
}
if( deviceType == "genericSensor" ){
def key = attribute.name + "_lastUpdated"
attributeList.putAll([ (key): currentState.isoDate ])
}
} else {
attributeList.putAll([ (attribute.name): null ]);
}
[ (attribute.name): device.currentValue(attribute.name) ]
} catch(e) {
attributeList.putAll([ (attribute.name): null ]);
[ (attribute.name): null ]
}
}
return attributeList
}
//Map device command and value.

View File

@@ -73,7 +73,7 @@ def bridgeDiscovery(params = [:]) {
}
ssdpSubscribe()
log.trace "bridgeRefreshCount: $bridgeRefreshCount"
//bridge discovery request every 15 //25 seconds
if ((bridgeRefreshCount % 5) == 0) {
discoverBridges()
@@ -207,7 +207,6 @@ def bulbDiscovery() {
}
private discoverBridges() {
log.trace "Sending Hue Discovery message to the hub"
sendHubCommand(new physicalgraph.device.HubAction("lan discovery urn:schemas-upnp-org:device:basic:1", physicalgraph.device.Protocol.LAN))
}

View File

@@ -47,7 +47,6 @@ def getCallbackUrl() { return "${getServerUrl()}/oauth/callback" }
def apiURL(path = '/') { return "https://api.lifx.com/v1${path}" }
def getSecretKey() { return appSettings.secretKey }
def getClientId() { return appSettings.clientId }
private getVendorName() { "LIFX" }
def authPage() {
log.debug "authPage test1"
@@ -77,7 +76,6 @@ def authPage() {
return dynamicPage(name:"Credentials", title:"", nextPage:"", install:true, uninstall: true) {
section("Select your location") {
input "selectedLocationId", "enum", required:true, title:"Select location ({{count}} found)", messageArgs: [count: count], multiple:false, options:options, submitOnChange: true
paragraph "Devices will be added automatically from your ${vendorName} account. To add or delete devices please use the Official ${vendorName} App."
}
}
}

View File

@@ -136,20 +136,10 @@ def getDataForChild(child, startDate, endDate) {
def wattvisionURL = wattvisionURL(child.deviceNetworkId, startDate, endDate)
if (wattvisionURL) {
try {
httpGet(uri: wattvisionURL) { response ->
def json = new org.json.JSONObject(response.data.toString())
child.addWattvisionData(json)
return "success"
}
} catch (groovyx.net.http.HttpResponseException httpE) {
log.error "Wattvision getDataForChild HttpResponseException: ${httpE} -> ${httpE.response.data}"
//log.debug "wattvisionURL = ${wattvisionURL}"
return "fail"
} catch (e) {
log.error "Wattvision getDataForChild General Exception: ${e}"
//log.debug "wattvisionURL = ${wattvisionURL}"
return "fail"
httpGet(uri: wattvisionURL) { response ->
def json = new org.json.JSONObject(response.data.toString())
child.addWattvisionData(json)
return "success"
}
}
}
@@ -174,14 +164,9 @@ def wattvisionURL(senorId, startDate, endDate) {
if (diff > 259200000) { // 3 days in milliseconds
// Wattvision only allows pulling 3 hours of data at a time
startDate = new Date(hours: endDate.hours - 3)
} else if (diff < 10000) { // 10 seconds in milliseconds
// Wattvision throws errors when the difference between start_time and end_time is 5 seconds or less
// So we are going to make sure that we have a few more seconds of breathing room
use (groovy.time.TimeCategory) {
startDate = endDate - 10.seconds
}
}
def params = [
"sensor_id" : senorId,
"api_id" : wattvisionApiAccess.id,
@@ -495,3 +480,4 @@ def connectionSuccessful(deviceName, iconSrc) {
render contentType: 'text/html', data: html
}