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Author SHA1 Message Date
Raffaele Giannattasio
55db0ac12a MSA-1994: keypad 2017-05-20 12:36:20 -07:00
80 changed files with 4506 additions and 1748 deletions

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@@ -9,7 +9,7 @@ apply plugin: 'smartthings-slack'
buildscript {
dependencies {
classpath "com.smartthings.deployment:executable-deployment-scripts:1.0.12"
classpath "com.smartthings.deployment:executable-deployment-scripts:1.0.11"
}
repositories {
mavenLocal()
@@ -19,7 +19,7 @@ buildscript {
username smartThingsArtifactoryUserName
password smartThingsArtifactoryPassword
}
url "https://smartthings.jfrog.io/smartthings/libs-release-local"
url "https://artifactory.smartthings.com/libs-release-local"
}
}
}
@@ -32,7 +32,7 @@ repositories {
username smartThingsArtifactoryUserName
password smartThingsArtifactoryPassword
}
url "https://smartthings.jfrog.io/smartthings/libs-release-local"
url "https://artifactory.smartthings.com/libs-release-local"
}
}
@@ -51,10 +51,10 @@ sourceSets {
dependencies {
devicetypesCompile 'org.codehaus.groovy:groovy-all:2.4.7'
devicetypesCompile 'smartthings:appengine-z-wave:0.1.3'
devicetypesCompile 'smartthings:appengine-zigbee:0.1.12'
devicetypesCompile 'smartthings:appengine-z-wave:0.1.2'
devicetypesCompile 'smartthings:appengine-zigbee:0.1.11'
smartappsCompile 'org.codehaus.groovy:groovy-all:2.4.7'
smartappsCompile 'smartthings:appengine-common:0.1.9'
smartappsCompile 'smartthings:appengine-common:0.1.8'
smartappsCompile 'org.codehaus.groovy.modules.http-builder:http-builder:0.7.1'
smartappsCompile 'org.grails:grails-web:2.3.11'
smartappsCompile 'org.json:json:20140107'
@@ -74,19 +74,19 @@ slackSendMessage {
String username
switch (branch) {
case 'master':
username = 'DEV'
username = 'Hickory'
iconUrl = wolverine
color = '#35D0F2'
messageText = 'Began deployment of _SmartThingsPublic[master]_ branch to the _Dev_ environments.'
break
case 'staging':
username = 'STG'
username = 'Dickory'
iconUrl = beach
color = '#FFDE20'
messageText = 'Began deployment of _SmartThingsPublic[staging]_ branch to the _Staging_ environments.'
break
case 'production':
username = 'PRD'
username = 'Dock'
iconUrl = drinks
color = '#FF1D23'
messageText = 'Began deployment of _SmartThingsPublic[production]_ branch to the _Prod_ environments.'

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@@ -0,0 +1,171 @@
/**
* Utilitech Glass Break Sensor
*
* Author: Adam Heinmiller
*
* Date: 2014-11-09
*/
metadata
{
definition (namespace: "adamheinmiller", name: "Utilitech Glass Break Sensor", author: "Adam Heinmiller")
{
capability "Contact Sensor"
capability "Battery"
fingerprint deviceId:"0xA102", inClusters:"0x20, 0x9C, 0x80, 0x82, 0x84, 0x87, 0x85, 0x72, 0x86, 0x5A"
}
simulator
{
status "Activate Sensor": "command: 9C02, payload: 26 00 FF 00 00"
status "Reset Sensor": "command: 9C02, payload: 26 00 00 00 00"
status "Battery Status 25%": "command: 8003, payload: 19"
status "Battery Status 50%": "command: 8003, payload: 32"
status "Battery Status 75%": "command: 8003, payload: 4B"
status "Battery Status 100%": "command: 8003, payload: 64"
}
tiles
{
standardTile("contact", "device.contact", width: 2, height: 2)
{
state "closed", label: '${name}', icon: "st.contact.contact.closed", backgroundColor: "#79b821"
state "open", label: '${name}', icon: "st.contact.contact.open", backgroundColor: "#FF0000"
}
valueTile("battery", "device.battery", inactiveLabel: false, decoration: "flat")
{
state "battery", label:'${currentValue}% battery', unit:""
}
main "contact"
details(["contact", "battery"])
}
}
def installed()
{
updated()
}
def updated()
{
}
def getTimestamp()
{
return new Date().time
}
def getBatteryLevel(int pNewLevel)
{
def bl = state.BatteryLevel ?: [pNewLevel, pNewLevel, pNewLevel] as int[]
def iAvg = 4 + ((int)(pNewLevel + bl[0] + bl[1] + bl[2]) / 4)
state.BatteryLevel = [pNewLevel, bl[0], bl[1]]
//log.debug "New Bat Level: ${iAvg - (iAvg % 5)}, $state.BatteryLevel"
return iAvg - (iAvg % 5)
}
def parse(String description)
{
def result = []
// "0x20, 0x9C, 0x80, 0x82, 0x84, 0x87, 0x85, 0x72, 0x86, 0x5A"
def cmd = zwave.parse(description)
//log.debug "Parse: Desc: $description, CMD: $cmd"
if (cmd)
{
result << zwaveEvent(cmd)
}
return result
}
def zwaveEvent(physicalgraph.zwave.commands.wakeupv2.WakeUpNotification cmd)
{
logCommand(cmd)
def result = []
result << response(zwave.wakeUpV2.wakeUpNoMoreInformation())
return result
}
def zwaveEvent(physicalgraph.zwave.commands.hailv1.Hail cmd)
{
logCommand(cmd)
def result = []
return result
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicReport cmd)
{
logCommand(cmd)
def result = []
return result
}
def zwaveEvent(physicalgraph.zwave.commands.batteryv1.BatteryReport cmd)
{
logCommand(cmd)
def result = [name: "battery", unit: "%", value: getBatteryLevel(cmd.batteryLevel)]
return createEvent(result)
}
def zwaveEvent(physicalgraph.zwave.commands.sensoralarmv1.SensorAlarmReport cmd)
{
logCommand(cmd)
def result = [name: "contact"]
if (cmd.sensorState == 0)
{
result += [value: "closed", descriptionText: "${device.displayName} has reset"]
}
else if (cmd.sensorState == 255)
{
result += [value: "open", descriptionText: "${device.displayName} detected broken glass"]
}
return createEvent(result)
}
def zwaveEvent(physicalgraph.zwave.Command cmd)
{
logCommand("**Unhandled**: $cmd")
return createEvent([descriptionText: "Unhandled: ${device.displayName}: ${cmd}", displayed: false])
}
def logCommand(cmd)
{
log.debug "Device Command: $cmd"
}

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@@ -1,268 +0,0 @@
/**
*
* Inovelli 2-Channel Smart Plug
*
* github: Eric Maycock (erocm123)
* Date: 2017-04-27
* Copyright Eric Maycock
*
* Includes all configuration parameters and ease of advanced configuration.
*
* 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: "Inovelli 2-Channel Smart Plug", namespace: "erocm123", author: "Eric Maycock") {
capability "Actuator"
capability "Sensor"
capability "Switch"
capability "Polling"
capability "Refresh"
capability "Health Check"
fingerprint manufacturer: "015D", prod: "0221", model: "251C", deviceJoinName: "Show Home 2-Channel Smart Plug"
fingerprint manufacturer: "0312", prod: "B221", model: "251C", deviceJoinName: "Inovelli 2-Channel Smart Plug"
}
simulator {}
preferences {}
tiles {
multiAttributeTile(name: "switch", type: "lighting", width: 6, height: 4, canChangeIcon: true) {
tileAttribute("device.switch", key: "PRIMARY_CONTROL") {
attributeState "off", label: '${name}', action: "switch.on", icon: "st.switches.switch.off", backgroundColor: "#ffffff", nextState: "turningOn"
attributeState "on", label: '${name}', action: "switch.off", icon: "st.switches.switch.on", backgroundColor: "#00a0dc", nextState: "turningOff"
attributeState "turningOff", label: '${name}', action: "switch.on", icon: "st.switches.switch.off", backgroundColor: "#ffffff", nextState: "turningOn"
attributeState "turningOn", label: '${name}', action: "switch.off", icon: "st.switches.switch.on", backgroundColor: "#00a0dc", nextState: "turningOff"
}
}
standardTile("refresh", "device.switch", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "default", label: "", action: "refresh.refresh", icon: "st.secondary.refresh"
}
main(["switch"])
details(["switch",
childDeviceTiles("all"), "refresh"
])
}
}
def parse(String description) {
def result = []
def cmd = zwave.parse(description)
if (cmd) {
result += zwaveEvent(cmd)
logging("Parsed ${cmd} to ${result.inspect()}", 1)
} else {
logging("Non-parsed event: ${description}", 2)
}
return result
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicReport cmd, ep = null) {
logging("BasicReport ${cmd} - ep ${ep}", 2)
if (ep) {
def event
childDevices.each {
childDevice ->
if (childDevice.deviceNetworkId == "$device.deviceNetworkId-ep$ep") {
childDevice.sendEvent(name: "switch", value: cmd.value ? "on" : "off")
}
}
if (cmd.value) {
event = [createEvent([name: "switch", value: "on"])]
} else {
def allOff = true
childDevices.each {
n ->
if (n.currentState("switch").value != "off") allOff = false
}
if (allOff) {
event = [createEvent([name: "switch", value: "off"])]
} else {
event = [createEvent([name: "switch", value: "on"])]
}
}
return event
}
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicSet cmd) {
logging("BasicSet ${cmd}", 2)
def result = createEvent(name: "switch", value: cmd.value ? "on" : "off", type: "digital")
def cmds = []
cmds << encap(zwave.switchBinaryV1.switchBinaryGet(), 1)
cmds << encap(zwave.switchBinaryV1.switchBinaryGet(), 2)
return [result, response(commands(cmds))] // returns the result of reponse()
}
def zwaveEvent(physicalgraph.zwave.commands.switchbinaryv1.SwitchBinaryReport cmd, ep = null) {
logging("SwitchBinaryReport ${cmd} - ep ${ep}", 2)
if (ep) {
def event
def childDevice = childDevices.find {
it.deviceNetworkId == "$device.deviceNetworkId-ep$ep"
}
if (childDevice) childDevice.sendEvent(name: "switch", value: cmd.value ? "on" : "off")
if (cmd.value) {
event = [createEvent([name: "switch", value: "on"])]
} else {
def allOff = true
childDevices.each {
n->
if (n.currentState("switch").value != "off") allOff = false
}
if (allOff) {
event = [createEvent([name: "switch", value: "off"])]
} else {
event = [createEvent([name: "switch", value: "on"])]
}
}
return event
} else {
def result = createEvent(name: "switch", value: cmd.value ? "on" : "off", type: "digital")
def cmds = []
cmds << encap(zwave.switchBinaryV1.switchBinaryGet(), 1)
cmds << encap(zwave.switchBinaryV1.switchBinaryGet(), 2)
return [result, response(commands(cmds))] // returns the result of reponse()
}
}
def zwaveEvent(physicalgraph.zwave.commands.multichannelv3.MultiChannelCmdEncap cmd) {
logging("MultiChannelCmdEncap ${cmd}", 2)
def encapsulatedCommand = cmd.encapsulatedCommand([0x32: 3, 0x25: 1, 0x20: 1])
if (encapsulatedCommand) {
zwaveEvent(encapsulatedCommand, cmd.sourceEndPoint as Integer)
}
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd) {
logging("ManufacturerSpecificReport ${cmd}", 2)
def msr = String.format("%04X-%04X-%04X", cmd.manufacturerId, cmd.productTypeId, cmd.productId)
logging("msr: $msr", 2)
updateDataValue("MSR", msr)
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
// This will capture any commands not handled by other instances of zwaveEvent
// and is recommended for development so you can see every command the device sends
logging("Unhandled Event: ${cmd}", 2)
}
def on() {
logging("on()", 1)
commands([
zwave.switchAllV1.switchAllOn(),
encap(zwave.switchBinaryV1.switchBinaryGet(), 1),
encap(zwave.switchBinaryV1.switchBinaryGet(), 2)
])
}
def off() {
logging("off()", 1)
commands([
zwave.switchAllV1.switchAllOff(),
encap(zwave.switchBinaryV1.switchBinaryGet(), 1),
encap(zwave.switchBinaryV1.switchBinaryGet(), 2)
])
}
void childOn(String dni) {
logging("childOn($dni)", 1)
def cmds = []
cmds << new physicalgraph.device.HubAction(command(encap(zwave.basicV1.basicSet(value: 0xFF), channelNumber(dni))))
cmds << new physicalgraph.device.HubAction(command(encap(zwave.switchBinaryV1.switchBinaryGet(), channelNumber(dni))))
sendHubCommand(cmds, 1000)
}
void childOff(String dni) {
logging("childOff($dni)", 1)
def cmds = []
cmds << new physicalgraph.device.HubAction(command(encap(zwave.basicV1.basicSet(value: 0x00), channelNumber(dni))))
cmds << new physicalgraph.device.HubAction(command(encap(zwave.switchBinaryV1.switchBinaryGet(), channelNumber(dni))))
sendHubCommand(cmds, 1000)
}
void childRefresh(String dni) {
logging("childRefresh($dni)", 1)
def cmds = []
cmds << new physicalgraph.device.HubAction(command(encap(zwave.switchBinaryV1.switchBinaryGet(), channelNumber(dni))))
sendHubCommand(cmds, 1000)
}
def poll() {
logging("poll()", 1)
commands([
encap(zwave.switchBinaryV1.switchBinaryGet(), 1),
encap(zwave.switchBinaryV1.switchBinaryGet(), 2),
])
}
def refresh() {
logging("refresh()", 1)
commands([
encap(zwave.switchBinaryV1.switchBinaryGet(), 1),
encap(zwave.switchBinaryV1.switchBinaryGet(), 2),
])
}
def ping() {
logging("ping()", 1)
refresh()
}
def installed() {
logging("installed()", 1)
command(zwave.manufacturerSpecificV1.manufacturerSpecificGet())
createChildDevices()
}
def updated() {
logging("updated()", 1)
if (!childDevices) {
createChildDevices()
} else if (device.label != state.oldLabel) {
childDevices.each {
if (it.label == "${state.oldLabel} (CH${channelNumber(it.deviceNetworkId)})") {
def newLabel = "${device.displayName} (CH${channelNumber(it.deviceNetworkId)})"
it.setLabel(newLabel)
}
}
state.oldLabel = device.label
}
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
sendEvent(name: "needUpdate", value: device.currentValue("needUpdate"), displayed: false, isStateChange: true)
}
def zwaveEvent(physicalgraph.zwave.commands.configurationv2.ConfigurationReport cmd) {
logging("${device.displayName} parameter '${cmd.parameterNumber}' with a byte size of '${cmd.size}' is set to '${cmd2Integer(cmd.configurationValue)}'", 2)
}
private encap(cmd, endpoint) {
if (endpoint) {
zwave.multiChannelV3.multiChannelCmdEncap(destinationEndPoint: endpoint).encapsulate(cmd)
} else {
cmd
}
}
private command(physicalgraph.zwave.Command cmd) {
if (state.sec) {
zwave.securityV1.securityMessageEncapsulation().encapsulate(cmd).format()
} else {
cmd.format()
}
}
private commands(commands, delay = 1000) {
delayBetween(commands.collect {
command(it)
}, delay)
}
private channelNumber(String dni) {
dni.split("-ep")[-1] as Integer
}
private void createChildDevices() {
state.oldLabel = device.label
for (i in 1..2) {
addChildDevice("Switch Child Device", "${device.deviceNetworkId}-ep${i}", null, [completedSetup: true, label: "${device.displayName} (CH${i})",
isComponent: true, componentName: "ep$i", componentLabel: "Channel $i"
])
}
}
private def logging(message, level) {
if (logLevel != "0") {
switch (logLevel) {
case "1":
if (level > 1) log.debug "$message"
break
case "99":
log.debug "$message"
break
}
}
}

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@@ -1,49 +0,0 @@
/**
* Switch Child Device
*
* Copyright 2017 Eric Maycock
*
* 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: "Switch Child Device", namespace: "erocm123", author: "Eric Maycock") {
capability "Switch"
capability "Actuator"
capability "Sensor"
capability "Refresh"
}
tiles {
multiAttributeTile(name:"switch", type: "lighting", width: 3, height: 4, canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "off", label: '${name}', action: "switch.on", icon: "st.switches.switch.off", backgroundColor: "#ffffff", nextState:"turningOn"
attributeState "on", label: '${name}', action: "switch.off", icon: "st.switches.switch.on", backgroundColor: "#00A0DC", nextState:"turningOff"
attributeState "turningOn", label:'${name}', action:"switch.off", icon:"st.switches.switch.on", backgroundColor:"#00A0DC", nextState:"turningOff"
attributeState "turningOff", label:'${name}', action:"switch.on", icon:"st.switches.switch.off", backgroundColor:"#ffffff", nextState:"turningOn"
}
}
standardTile("refresh", "device.switch", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
}
}
void on() {
parent.childOn(device.deviceNetworkId)
}
void off() {
parent.childOff(device.deviceNetworkId)
}
void refresh() {
parent.childRefresh(device.deviceNetworkId)
}

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@@ -39,8 +39,8 @@ metadata {
}
tileAttribute("device.tamper", key:"SECONDARY_CONTROL") {
attributeState("active", label:'tamper active', backgroundColor:"#00A0DC")
attributeState("inactive", label:'tamper inactive', backgroundColor:"#CCCCCC")
attributeState("active", label:'tamper active', backgroundColor:"#53a7c0")
attributeState("inactive", label:'tamper inactive', backgroundColor:"#ffffff")
}
}

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@@ -37,8 +37,8 @@ metadata {
}
tileAttribute("device.tamper", key:"SECONDARY_CONTROL") {
attributeState("active", label:'tamper active', backgroundColor:"#00A0DC")
attributeState("inactive", label:'tamper inactive', backgroundColor:"#CCCCCC")
attributeState("active", label:'tamper active', backgroundColor:"#53a7c0")
attributeState("inactive", label:'tamper inactive', backgroundColor:"#ffffff")
}
}

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@@ -1,188 +0,0 @@
/**
* Devolo Humidity Sensor
*
* Copyright 2017 Garth Williams
*
* 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.
*
*
* Based on definition (name: "Aeon Multisensor 6", namespace: "smartthings", author: "SmartThings")
*
*/
metadata {
definition (name: "Devolo Humidity Sensor", namespace: "garth", author: "Garth Williams") {
capability "Temperature Measurement"
capability "Relative Humidity Measurement"
capability "Configuration"
capability "Sensor"
capability "Battery"
capability "Health Check"
attribute "batteryStatus", "string"
fingerprint mfr: "0175", prod: "0002", model: "0020"
}
simulator {
for (int i = 0; i <= 100; i += 20) {
status "temperature ${i}F": new physicalgraph.zwave.Zwave().securityV1.securityMessageEncapsulation().encapsulate(
new physicalgraph.zwave.Zwave().sensorMultilevelV2.sensorMultilevelReport(
scaledSensorValue: i, precision: 1, sensorType: 1, scale: 1)
).incomingMessage()
}
for (int i = 0; i <= 100; i += 20) {
status "humidity ${i}%": new physicalgraph.zwave.Zwave().securityV1.securityMessageEncapsulation().encapsulate(
new physicalgraph.zwave.Zwave().sensorMultilevelV2.sensorMultilevelReport(scaledSensorValue: i, sensorType: 5)
).incomingMessage()
}
for (int i in [0, 5, 10, 15, 50, 99, 100]) {
status "battery ${i}%": new physicalgraph.zwave.Zwave().securityV1.securityMessageEncapsulation().encapsulate(
new physicalgraph.zwave.Zwave().batteryV1.batteryReport(batteryLevel: i)
).incomingMessage()
}
status "low battery alert": new physicalgraph.zwave.Zwave().securityV1.securityMessageEncapsulation().encapsulate(
new physicalgraph.zwave.Zwave().batteryV1.batteryReport(batteryLevel: 255)
).incomingMessage()
status "wake up" : "command: 8407, payload: "
}
preferences {
}
tiles(scale: 2) {
valueTile("temperature", "device.temperature", inactiveLabel: false, width: 2, height: 2) {
state "temperature", label:'${currentValue}°',
backgroundColors:[
[value: 32, color: "#153591"],
[value: 44, color: "#1e9cbb"],
[value: 59, color: "#90d2a7"],
[value: 74, color: "#44b621"],
[value: 84, color: "#f1d801"],
[value: 92, color: "#d04e00"],
[value: 98, color: "#bc2323"]
]
}
valueTile("humidity", "device.humidity", inactiveLabel: false, width: 2, height: 2) {
state "humidity", label:'${currentValue}% humidity', unit:""
}
valueTile("battery", "device.battery", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "battery", label:'${currentValue}% battery', unit:""
}
valueTile("batteryStatus", "device.batteryStatus", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "batteryStatus", label:'${currentValue}', unit:""
}
main(["temperature", "humidity"])
details(["temperature", "humidity", "batteryStatus"])
}
}
def parse(String description) {
log.debug "parse() >> description: $description"
def result = null
if (description.startsWith("Err 106")) {
log.debug "parse() >> Err 106"
result = createEvent( name: "secureInclusion", value: "failed", isStateChange: true,
descriptionText: "This sensor failed to complete the network security key exchange. If you are unable to control it via SmartThings, you must remove it from your network and add it again.")
} else if (description != "updated") {
log.debug "parse() >> zwave.parse(description)"
def cmd = zwave.parse(description, [0x31: 5, 0x30: 2, 0x84: 1])
if (cmd) {
result = zwaveEvent(cmd)
}
}
log.debug "After zwaveEvent(cmd) >> Parsed '${description}' to ${result.inspect()}"
return result
}
def zwaveEvent(physicalgraph.zwave.commands.securityv1.SecurityMessageEncapsulation cmd) {
def encapsulatedCommand = cmd.encapsulatedCommand([0x31: 5, 0x30: 2, 0x84: 1])
state.sec = 1
log.debug "encapsulated: ${encapsulatedCommand}"
if (encapsulatedCommand) {
zwaveEvent(encapsulatedCommand)
} else {
log.warn "Unable to extract encapsulated cmd from $cmd"
createEvent(descriptionText: cmd.toString())
}
}
def zwaveEvent(physicalgraph.zwave.commands.securityv1.SecurityCommandsSupportedReport cmd) {
log.info "Executing zwaveEvent 98 (SecurityV1): 03 (SecurityCommandsSupportedReport) with cmd: $cmd"
state.sec = 1
}
def zwaveEvent(physicalgraph.zwave.commands.securityv1.NetworkKeyVerify cmd) {
state.sec = 1
log.info "Executing zwaveEvent 98 (SecurityV1): 07 (NetworkKeyVerify) with cmd: $cmd (node is securely included)"
def result = [createEvent(name:"secureInclusion", value:"success", descriptionText:"Secure inclusion was successful", isStateChange: true)]
result
}
def zwaveEvent(physicalgraph.zwave.commands.batteryv1.BatteryReport cmd) {
def result = []
def map = [ name: "battery", unit: "%" ]
if (cmd.batteryLevel == 0xFF) {
map.value = 1
map.descriptionText = "${device.displayName} battery is low"
map.isStateChange = true
} else {
map.value = cmd.batteryLevel
}
state.lastbatt = now()
result << createEvent(map)
if (device.latestValue("powerSupply") != "USB Cable"){
result << createEvent(name: "batteryStatus", value: "${map.value} % battery", displayed: false)
}
result
}
def zwaveEvent(physicalgraph.zwave.commands.sensormultilevelv5.SensorMultilevelReport cmd){
def map = [:]
switch (cmd.sensorType) {
case 1:
map.name = "temperature"
def cmdScale = cmd.scale == 1 ? "F" : "C"
map.value = convertTemperatureIfNeeded(cmd.scaledSensorValue, cmdScale, cmd.precision)
map.unit = getTemperatureScale()
break
case 5:
map.name = "humidity"
map.value = cmd.scaledSensorValue.toInteger()
map.unit = "%"
break
default:
map.descriptionText = cmd.toString()
}
createEvent(map)
}
def zwaveEvent(physicalgraph.zwave.commands.configurationv2.ConfigurationReport cmd) {
log.debug "ConfigurationReport: $cmd"
def result = []
def value
if (cmd.parameterNumber == 9 && cmd.configurationValue[0] == 1) {
value = "Battery"
result << createEvent(name: "powerSupply", value: value, displayed: false)
} else if (cmd.parameterNumber == 101){
result << response(configure())
}
result
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
log.debug "General zwaveEvent cmd: ${cmd}"
createEvent(descriptionText: cmd.toString(), isStateChange: false)
}

View File

@@ -0,0 +1,618 @@
/**
* Centralite Keypad
*
* Copyright 2015-2016 Mitch Pond, Zack Cornelius
*
* 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: "Centralite Keypad", namespace: "mitchpond", author: "Mitch Pond") {
capability "Battery"
capability "Configuration"
capability "Motion Sensor"
capability "Sensor"
capability "Temperature Measurement"
capability "Refresh"
capability "Lock Codes"
capability "Tamper Alert"
capability "Tone"
capability "button"
capability "polling"
capability "Contact Sensor"
attribute "armMode", "String"
attribute "lastUpdate", "String"
command "setDisarmed"
command "setArmedAway"
command "setArmedStay"
command "setArmedNight"
command "setExitDelay", ['number']
command "setEntryDelay", ['number']
command "testCmd"
command "sendInvalidKeycodeResponse"
command "acknowledgeArmRequest"
fingerprint endpointId: "01", profileId: "0104", deviceId: "0401", inClusters: "0000,0001,0003,0020,0402,0500,0B05", outClusters: "0019,0501", manufacturer: "CentraLite", model: "3400", deviceJoinName: "Xfinity 3400-X Keypad"
fingerprint endpointId: "01", profileId: "0104", deviceId: "0401", inClusters: "0000,0001,0003,0020,0402,0500,0501,0B05,FC04", outClusters: "0019,0501", manufacturer: "CentraLite", model: "3405-L", deviceJoinName: "Iris 3405-L Keypad"
}
preferences{
input ("tempOffset", "number", title: "Enter an offset to adjust the reported temperature",
defaultValue: 0, displayDuringSetup: false)
input ("beepLength", "number", title: "Enter length of beep in seconds",
defaultValue: 1, displayDuringSetup: false)
input ("motionTime", "number", title: "Time in seconds for Motion to become Inactive (Default:10, 0=disabled)", defaultValue: 10, displayDuringSetup: false)
}
tiles (scale: 2) {
multiAttributeTile(name: "keypad", type:"generic", width:6, height:4, canChangeIcon: true) {
tileAttribute ("device.armMode", key: "PRIMARY_CONTROL") {
attributeState("disarmed", label:'${currentValue}', icon:"st.Home.home2", backgroundColor:"#44b621")
attributeState("armedStay", label:'ARMED/STAY', icon:"st.Home.home3", backgroundColor:"#ffa81e")
attributeState("armedAway", label:'ARMED/AWAY', icon:"st.nest.nest-away", backgroundColor:"#d04e00")
}
tileAttribute("device.lastUpdate", key: "SECONDARY_CONTROL") {
attributeState("default", label:'Updated: ${currentValue}')
}
/*
tileAttribute("device.battery", key: "SECONDARY_CONTROL") {
attributeState("default", label:'Battery: ${currentValue}%', unit:"%")
}
tileAttribute("device.battery", key: "VALUE_CONTROL") {
attributeState "VALUE_UP", action: "refresh"
attributeState "VALUE_DOWN", action: "refresh"
}
*/
tileAttribute("device.temperature", key: "VALUE_CONTROL") {
attributeState "VALUE_UP", action: "refresh"
attributeState "VALUE_DOWN", action: "refresh"
}
}
valueTile("temperature", "device.temperature", width: 2, height: 2) {
state "temperature", label: '${currentValue}°',
backgroundColors:[
[value: 31, color: "#153591"],
[value: 44, color: "#1e9cbb"],
[value: 59, color: "#90d2a7"],
[value: 74, color: "#44b621"],
[value: 84, color: "#f1d801"],
[value: 95, color: "#d04e00"],
[value: 96, color: "#bc2323"]
]
}
standardTile("motion", "device.motion", decoration: "flat", canChangeBackground: true, width: 2, height: 2) {
state "active", label:'motion',icon:"st.motion.motion.active", backgroundColor:"#53a7c0"
state "inactive", label:'no motion',icon:"st.motion.motion.inactive", backgroundColor:"#ffffff"
}
standardTile("tamper", "device.tamper", decoration: "flat", canChangeBackground: true, width: 2, height: 2) {
state "clear", label: 'Tamper', icon:"st.motion.acceleration.inactive", backgroundColor: "#ffffff"
state "detected", label: 'Tamper', icon:"st.motion.acceleration.active", backgroundColor:"#cc5c5c"
}
standardTile("Panic", "device.contact", decoration: "flat", canChangeBackground: true, width: 2, height: 2) {
state "open", label: 'Panic', icon:"st.security.alarm.alarm", backgroundColor: "#ffffff"
state "closed", label: 'Panic', icon:"st.security.alarm.clear", backgroundColor:"#bc2323"
}
standardTile("Mode", "device.armMode", decoration: "flat", canChangeBackground: true, width: 2, height: 2) {
state "disarmed", label:'OFF', icon:"st.Home.home2", backgroundColor:"#44b621"
state "armedStay", label:'OFF', icon:"st.Home.home3", backgroundColor:"#ffffff"
state "armedAway", label:'OFF', icon:"st.net.nest-away", backgroundColor:"#ffffff"
}
standardTile("beep", "device.beep", decoration: "flat", width: 2, height: 2) {
state "default", action:"tone.beep", icon:"st.secondary.beep", backgroundColor:"#ffffff"
}
valueTile("battery", "device.battery", decoration: "flat", width: 2, height: 2) {
state "battery", label:'${currentValue}% battery', unit:""
}
standardTile("refresh", "device.refresh", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "default", action:"refresh.refresh", icon:"st.secondary.refresh"
}
standardTile("configure", "device.configure", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "default", action:"configuration.configure", icon:"st.secondary.configure"
}
valueTile("armMode", "device.armMode", decoration: "flat", width: 2, height: 2) {
state "armMode", label: '${currentValue}'
}
main (["keypad"])
details (["keypad","motion","tamper","Panic","Mode","beep","refresh","battery"])
}
}
// parse events into attributes
def parse(String description) {
log.debug "Parsing '${description}'";
def results = [];
//------Miscellaneous Zigbee message------//
if (description?.startsWith('catchall:')) {
//log.debug zigbee.parse(description);
def message = zigbee.parse(description);
//------Profile-wide command (rattr responses, errors, etc.)------//
if (message?.isClusterSpecific == false) {
//------Default response------//
if (message?.command == 0x0B) {
if (message?.data[1] == 0x81)
log.error "Device: unrecognized command: "+description;
else if (message?.data[1] == 0x80)
log.error "Device: malformed command: "+description;
}
//------Read attributes responses------//
else if (message?.command == 0x01) {
if (message?.clusterId == 0x0402) {
log.debug "Device: read attribute response: "+description;
results = parseTempAttributeMsg(message)
}}
else
log.debug "Unhandled profile-wide command: "+description;
}
//------Cluster specific commands------//
else if (message?.isClusterSpecific) {
//------IAS ACE------//
if (message?.clusterId == 0x0501) {
if (message?.command == 0x07) {
motionON()
}
else if (message?.command == 0x04) {
results = createEvent(name: "button", value: "pushed", data: [buttonNumber: 1], descriptionText: "$device.displayName panic button was pushed", isStateChange: true)
panicContact()
}
else if (message?.command == 0x00) {
results = handleArmRequest(message)
log.trace results
}
}
else log.debug "Unhandled cluster-specific command: "+description
}
}
//------IAS Zone Enroll request------//
else if (description?.startsWith('enroll request')) {
log.debug "Sending IAS enroll response..."
results = zigbee.enrollResponse()
}
//------Read Attribute response------//
else if (description?.startsWith('read attr -')) {
results = parseReportAttributeMessage(description)
}
//------Temperature Report------//
else if (description?.startsWith('temperature: ')) {
log.debug "Got ST-style temperature report.."
results = createEvent(getTemperatureResult(zigbee.parseHATemperatureValue(description, "temperature: ", getTemperatureScale())))
log.debug results
}
else if (description?.startsWith('zone status ')) {
results = parseIasMessage(description)
}
return results
}
def configure() {
log.debug "--- Configure Called"
String hubZigbeeId = swapEndianHex(device.hub.zigbeeEui)
def cmd = [
//------IAS Zone/CIE setup------//
"zcl global write 0x500 0x10 0xf0 {${hubZigbeeId}}", "delay 100",
"send 0x${device.deviceNetworkId} 1 1", "delay 200",
//------Set up binding------//
"zdo bind 0x${device.deviceNetworkId} 1 1 0x500 {${device.zigbeeId}} {}", "delay 200",
"zdo bind 0x${device.deviceNetworkId} 1 1 0x501 {${device.zigbeeId}} {}", "delay 200",
] +
zigbee.configureReporting(1,0x20,0x20,3600,43200,0x01) +
zigbee.configureReporting(0x0402,0x00,0x29,30,3600,0x0064)
return cmd + refresh()
}
def poll() {
refresh()
}
def refresh() {
return sendStatusToDevice() +
zigbee.readAttribute(0x0001,0x20) +
zigbee.readAttribute(0x0402,0x00)
}
private formatLocalTime(time, format = "EEE, MMM d yyyy @ h:mm a z") {
if (time instanceof Long) {
time = new Date(time)
}
if (time instanceof String) {
//get UTC time
time = timeToday(time, location.timeZone)
}
if (!(time instanceof Date)) {
return null
}
def formatter = new java.text.SimpleDateFormat(format)
formatter.setTimeZone(location.timeZone)
return formatter.format(time)
}
private parseReportAttributeMessage(String description) {
Map descMap = (description - "read attr - ").split(",").inject([:]) { map, param ->
def nameAndValue = param.split(":")
map += [(nameAndValue[0].trim()):nameAndValue[1].trim()]
}
//log.debug "Desc Map: $descMap"
def results = []
if (descMap.cluster == "0001" && descMap.attrId == "0020") {
log.debug "Received battery level report"
results = createEvent(getBatteryResult(Integer.parseInt(descMap.value, 16)))
}
else if (descMap.cluster == "0001" && descMap.attrId == "0034")
{
log.debug "Received Battery Rated Voltage: ${descMap.value}"
}
else if (descMap.cluster == "0001" && descMap.attrId == "0036")
{
log.debug "Received Battery Alarm Voltage: ${descMap.value}"
}
else if (descMap.cluster == "0402" && descMap.attrId == "0000") {
def value = getTemperature(descMap.value)
results = createEvent(getTemperatureResult(value))
}
return results
}
private parseTempAttributeMsg(message) {
byte[] temp = message.data[-2..-1].reverse()
createEvent(getTemperatureResult(getTemperature(temp.encodeHex() as String)))
}
private Map parseIasMessage(String description) {
List parsedMsg = description.split(' ')
String msgCode = parsedMsg[2]
Map resultMap = [:]
switch(msgCode) {
case '0x0020': // Closed/No Motion/Dry
resultMap = getContactResult('closed')
break
case '0x0021': // Open/Motion/Wet
resultMap = getContactResult('open')
break
case '0x0022': // Tamper Alarm
break
case '0x0023': // Battery Alarm
break
case '0x0024': // Supervision Report
resultMap = getContactResult('closed')
break
case '0x0025': // Restore Report
resultMap = getContactResult('open')
break
case '0x0026': // Trouble/Failure
break
case '0x0028': // Test Mode
break
case '0x0000':
resultMap = createEvent(name: "tamper", value: "clear", isStateChange: true, displayed: false)
break
case '0x0004':
resultMap = createEvent(name: "tamper", value: "detected", isStateChange: true, displayed: false)
break;
default:
log.debug "Invalid message code in IAS message: ${msgCode}"
}
return resultMap
}
private Map getMotionResult(value) {
String linkText = getLinkText(device)
String descriptionText = value == 'active' ? "${linkText} detected motion" : "${linkText} motion has stopped"
return [
name: 'motion',
value: value,
descriptionText: descriptionText
]
}
def motionON() {
log.debug "--- Motion Detected"
sendEvent(name: "motion", value: "active", displayed:true, isStateChange: true)
//-- Calculate Inactive timeout value
def motionTimeRun = (settings.motionTime?:0).toInteger()
//-- If Inactive timeout was configured
if (motionTimeRun > 0) {
log.debug "--- Will become inactive in $motionTimeRun seconds"
runIn(motionTimeRun, "motionOFF")
}
}
def motionOFF() {
log.debug "--- Motion Inactive (OFF)"
sendEvent(name: "motion", value: "inactive", displayed:true, isStateChange: true)
}
def panicContact() {
log.debug "--- Panic button hit"
sendEvent(name: "contact", value: "open", displayed: true, isStateChange: true)
runIn(3, "panicContactClose")
}
def panicContactClose()
{
sendEvent(name: "contact", value: "closed", displayed: true, isStateChange: true)
}
//TODO: find actual good battery voltage range and update this method with proper values for min/max
//
//Converts the battery level response into a percentage to display in ST
//and creates appropriate message for given level
private getBatteryResult(rawValue) {
def linkText = getLinkText(device)
def result = [name: 'battery']
def volts = rawValue / 10
def descriptionText
if (volts > 3.5) {
result.descriptionText = "${linkText} battery has too much power (${volts} volts)."
}
else {
def minVolts = 2.5
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
result.value = Math.min(100, (int) pct * 100)
result.descriptionText = "${linkText} battery was ${result.value}%"
}
return result
}
private getTemperature(value) {
def celcius = Integer.parseInt(value, 16).shortValue() / 100
if(getTemperatureScale() == "C"){
return celcius
} else {
return celsiusToFahrenheit(celcius) as Integer
}
}
private Map getTemperatureResult(value) {
log.debug 'TEMP'
def linkText = getLinkText(device)
if (tempOffset) {
def offset = tempOffset as int
def v = value as int
value = v + offset
}
def descriptionText = "${linkText} was ${value}°${temperatureScale}"
return [
name: 'temperature',
value: value,
descriptionText: descriptionText
]
}
//------Command handlers------//
private handleArmRequest(message){
def keycode = new String(message.data[2..-2] as byte[],'UTF-8')
def reqArmMode = message.data[0]
//state.lastKeycode = keycode
log.debug "Received arm command with keycode/armMode: ${keycode}/${reqArmMode}"
//Acknowledge the command. This may not be *technically* correct, but it works
/*List cmds = [
"raw 0x501 {09 01 00 0${reqArmMode}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 500"
]
def results = cmds?.collect { new physicalgraph.device.HubAction(it) } + createCodeEntryEvent(keycode, reqArmMode)
*/
def results = createCodeEntryEvent(keycode, reqArmMode)
log.trace "Method: handleArmRequest(message): "+results
return results
}
def createCodeEntryEvent(keycode, armMode) {
createEvent(name: "codeEntered", value: keycode as String, data: armMode as String,
isStateChange: true, displayed: false)
}
//
//The keypad seems to be expecting responses that are not in-line with the HA 1.2 spec. Maybe HA 1.3 or Zigbee 3.0??
//
private sendStatusToDevice() {
log.debug 'Sending status to device...'
def armMode = device.currentValue("armMode")
log.trace 'Arm mode: '+armMode
def status = ''
if (armMode == null || armMode == 'disarmed') status = 0
else if (armMode == 'armedAway') status = 3
else if (armMode == 'armedStay') status = 1
else if (armMode == 'armedNight') status = 2
// If we're not in one of the 4 basic modes, don't update the status, don't want to override beep timings, exit delay is dependent on it being correct
if (status != '')
{
return sendRawStatus(status)
}
else
{
return []
}
}
// Statuses:
// 00 - Disarmed
// 01 - Armed partial
// 02 - Armed partial
// 03 - Armed Away
// 04 - ?
// 05 - Fast beep (1 per second)
// 05 - Entry delay (Uses seconds) Appears to keep the status lights as it was
// 06 - Amber status blink (Ignores seconds)
// 07 - ?
// 08 - Red status blink
// 09 - ?
// 10 - Exit delay Slow beep (2 per second, accelerating to 1 beep per second for the last 10 seconds) - With red flashing status - Uses seconds
// 11 - ?
// 12 - ?
// 13 - ?
private sendRawStatus(status, seconds = 00) {
log.debug "Sending Status ${zigbee.convertToHexString(status)}${zigbee.convertToHexString(seconds)} to device..."
// Seems to require frame control 9, which indicates a "Server to client" cluster specific command (which seems backward? I thought the keypad was the server)
List cmds = ["raw 0x501 {09 01 04 ${zigbee.convertToHexString(status)}${zigbee.convertToHexString(seconds)}}",
"send 0x${device.deviceNetworkId} 1 1", 'delay 100']
def results = cmds?.collect { new physicalgraph.device.HubAction(it) };
return results
}
def notifyPanelStatusChanged(status) {
//TODO: not yet implemented. May not be needed.
}
//------------------------//
def setDisarmed() { setModeHelper("disarmed",0) }
def setArmedAway(def delay=0) { setModeHelper("armedAway",delay) }
def setArmedStay(def delay=0) { setModeHelper("armedStay",delay) }
def setArmedNight(def delay=0) { setModeHelper("armedNight",delay) }
def setEntryDelay(delay) {
setModeHelper("entryDelay", delay)
sendRawStatus(5, delay) // Entry delay beeps
}
def setExitDelay(delay) {
setModeHelper("exitDelay", delay)
sendRawStatus(10, delay) // Exit delay
}
private setModeHelper(String armMode, delay) {
sendEvent([name: "armMode", value: armMode, data: [delay: delay as int], isStateChange: true])
def lastUpdate = formatLocalTime(now())
sendEvent(name: "lastUpdate", value: lastUpdate, displayed: false)
sendStatusToDevice()
}
private setKeypadArmMode(armMode){
Map mode = [disarmed: '00', armedAway: '03', armedStay: '01', armedNight: '02', entryDelay: '', exitDelay: '']
if (mode[armMode] != '')
{
return ["raw 0x501 {09 01 04 ${mode[armMode]}00}",
"send 0x${device.deviceNetworkId} 1 1", 'delay 100']
}
}
def acknowledgeArmRequest(armMode){
List cmds = [
"raw 0x501 {09 01 00 0${armMode}}",
"send 0x${device.deviceNetworkId} 1 1", "delay 100"
]
def results = cmds?.collect { new physicalgraph.device.HubAction(it) }
log.trace "Method: acknowledgeArmRequest(armMode): "+results
return results
}
def sendInvalidKeycodeResponse(){
List cmds = [
"raw 0x501 {09 01 00 04}",
"send 0x${device.deviceNetworkId} 1 1", "delay 100"
]
log.trace 'Method: sendInvalidKeycodeResponse(): '+cmds
return (cmds?.collect { new physicalgraph.device.HubAction(it) }) + sendStatusToDevice()
}
def beep(def beepLength = settings.beepLength) {
if ( beepLength == null )
{
beepLength = 0
}
def len = zigbee.convertToHexString(beepLength, 2)
List cmds = ["raw 0x501 {09 01 04 05${len}}", 'delay 200',
"send 0x${device.deviceNetworkId} 1 1", 'delay 500']
cmds
}
//------Utility methods------//
private String swapEndianHex(String hex) {
reverseArray(hex.decodeHex()).encodeHex()
}
private byte[] reverseArray(byte[] array) {
int i = 0;
int j = array.length - 1;
byte tmp;
while (j > i) {
tmp = array[j];
array[j] = array[i];
array[i] = tmp;
j--;
i++;
}
return array
}
//------------------------//
private testCmd(){
//log.trace zigbee.parse('catchall: 0104 0501 01 01 0140 00 4F2D 01 00 0000 07 00 ')
//beep(10)
//test exit delay
//log.debug device.zigbeeId
//testingTesting()
//discoverCmds()
//zigbee.configureReporting(1,0x20,0x20,3600,43200,0x01) //battery reporting
//["raw 0x0001 {00 00 06 00 2000 20 100E FEFF 01}",
//"send 0x${device.deviceNetworkId} 1 1"]
//zigbee.command(0x0003, 0x00, "0500") //Identify: blinks connection light
//log.debug //temperature reporting
return zigbee.readAttribute(0x0020,0x01) +
zigbee.readAttribute(0x0020,0x02) +
zigbee.readAttribute(0x0020,0x03)
}
private discoverCmds(){
List cmds = ["raw 0x0501 {08 01 11 0011}", 'delay 200',
"send 0x${device.deviceNetworkId} 1 1", 'delay 500']
cmds
}
private testingTesting() {
log.debug "Delay: "+device.currentState("armMode").toString()
List cmds = ["raw 0x501 {09 01 04 050A}", 'delay 200',
"send 0x${device.deviceNetworkId} 1 1", 'delay 500']
cmds
}

View File

@@ -1,5 +1,5 @@
/**
* Spruce Sensor -updated with SLP model number 5/2017
* Spruce Sensor -Pre-release V2 10/8/2015
*
* Copyright 2014 Plaid Systems
*
@@ -14,33 +14,25 @@
*
-------10/20/2015 Updates--------
-Fix/add battery reporting interval to update
-remove polling and/or refresh
-------5/2017 Updates--------
-Add fingerprints for SLP
-add device health, check every 60mins + 2mins
-remove polling and/or refresh(?)
*/
metadata {
definition (name: "Spruce Sensor", namespace: "plaidsystems", author: "Plaid Systems") {
definition (name: "Spruce Sensor", namespace: "plaidsystems", author: "NCauffman") {
capability "Configuration"
capability "Battery"
capability "Relative Humidity Measurement"
capability "Temperature Measurement"
capability "Sensor"
capability "Health Check"
//capability "Polling"
attribute "maxHum", "string"
attribute "minHum", "string"
command "resetHumidity"
command "refresh"
fingerprint profileId: "0104", inClusters: "0000,0001,0003,0402,0405", outClusters: "0003, 0019", manufacturer: "PLAID SYSTEMS", model: "PS-SPRZMS-01", deviceJoinName: "Spruce Sensor"
fingerprint profileId: "0104", inClusters: "0000,0001,0003,0402,0405", outClusters: "0003, 0019", manufacturer: "PLAID SYSTEMS", model: "PS-SPRZMS-SLP1", deviceJoinName: "Spruce Sensor"
fingerprint profileId: "0104", inClusters: "0000,0001,0003,0402,0405", outClusters: "0003, 0019", manufacturer: "PLAID SYSTEMS", model: "PS-SPRZMS-01"
}
preferences {
@@ -301,11 +293,6 @@ def setConfig(){
sendEvent(name: 'configuration',value: configInterval, descriptionText: "Configuration initialized")
}
def installed(){
//check every 1 hour + 2mins
sendEvent(name: "checkInterval", value: 1 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
}
//when device preferences are changed
def updated(){
log.debug "device updated"
@@ -316,8 +303,6 @@ def updated(){
sendEvent(name: 'configuration',value: 0, descriptionText: "Settings changed and will update at next report. Measure interval set to ${interval} mins")
}
}
//check every 1 hour + 2mins
sendEvent(name: "checkInterval", value: 1 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
}
//poll
@@ -410,4 +395,4 @@ private byte[] reverseArray(byte[] array) {
i++;
}
return array
}
}

View File

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

View File

@@ -1,34 +0,0 @@
# Aeon Labs Key Fob
Cloud Execution
Works with:
* [Aeon Labs Key Fob](http://aeotec.com/z-wave-key-fob-remote-control)
## Table of contents
* [Capabilities](#capabilities)
* [Health](#device-health)
* [Troubleshooting](#troubleshooting)
## Capabilities
* **Actuator** - represents device has commands
* **Button** - represents a device with one or more buttons
* **Holdable Button** - represents a device with one or more holdable buttons
* **Configuration** - allows for configuration of devices
* **Sensor** - detects sensor events
* **Battery** - defines device uses a battery
* **Health Check** - indicates ability to get device health notifications
## Device Health
Aeon Key Fob is a ZWave totally sleepy device and is marked offline only in the case when Hub is offline.
## 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 Aeon Labs Key Fob from SmartThings can be found in the following link:
* [Aeotec Key Fob Troubleshooting Tips](https://support.smartthings.com/hc/en-us/articles/202294120-Aeon-Labs-Key-Fob)

View File

@@ -1,4 +1,3 @@
import groovy.json.JsonOutput
/**
* Copyright 2015 SmartThings
*
@@ -20,10 +19,8 @@ metadata {
capability "Configuration"
capability "Sensor"
capability "Battery"
capability "Health Check"
fingerprint deviceId: "0x0101", inClusters: "0x86,0x72,0x70,0x80,0x84,0x85"
fingerprint mfr: "0086", prod: "0001", model: "0026", deviceJoinName: "Aeon Panic Button"
}
simulator {
@@ -133,15 +130,5 @@ def updated() {
}
def initialize() {
// Device only goes OFFLINE when Hub is off
sendEvent(name: "DeviceWatch-Enroll", value: JsonOutput.toJson([protocol: "zwave", scheme:"untracked"]), displayed: false)
def zwMap = getZwaveInfo()
def buttons = 4 // Default for Key Fob
// Only one button for Aeon Panic Button
if (zwMap && zwMap.mfr == "0086" && zwMap.prod == "0001" && zwMap.model == "0026") {
buttons = 1
}
sendEvent(name: "numberOfButtons", value: buttons)
sendEvent(name: "numberOfButtons", value: 4)
}

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

View File

@@ -1,33 +0,0 @@
# Aeon Minimote
Cloud Execution
Works with:
* [Aeotec Minimote](http://aeotec.com/small-z-wave-remote-control)
## Table of contents
* [Capabilities](#capabilities)
* [Health](#device-health)
* [Troubleshooting](#troubleshooting)
## Capabilities
* **Actuator** - represents device has commands
* **Button** - represents a device with one or more buttons
* **Holdable Button** - represents a device with one or more holdable buttons
* **Configuration** - allows for configuration of devices
* **Sensor** - detects sensor events
* **Health Check** - indicates ability to get device health notifications
## Device Health
Aeon Minimote is a ZWave totally sleepy device and is marked offline only in the case when Hub is offline.
## 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 Aeotec Minimote from SmartThings can be found in the following link:
* [Aeotec Minimote Troubleshooting Tips](https://support.smartthings.com/hc/en-us/articles/202087904-Aeotec-Minimote)

View File

@@ -1,4 +1,3 @@
import groovy.json.JsonOutput
/**
* Copyright 2015 SmartThings
*
@@ -19,7 +18,6 @@ metadata {
capability "Holdable Button"
capability "Configuration"
capability "Sensor"
capability "Health Check"
fingerprint deviceId: "0x0101", inClusters: "0x86,0x72,0x70,0x9B", outClusters: "0x26,0x2B"
fingerprint deviceId: "0x0101", inClusters: "0x86,0x72,0x70,0x9B,0x85,0x84", outClusters: "0x26" // old style with numbered buttons
@@ -111,6 +109,7 @@ def configure() {
return cmds
}
def installed() {
initialize()
}
@@ -120,7 +119,5 @@ def updated() {
}
def initialize() {
// Device only goes OFFLINE when Hub is off
sendEvent(name: "DeviceWatch-Enroll", value: JsonOutput.toJson([protocol: "zwave", scheme:"untracked"]), displayed: false)
sendEvent(name: "numberOfButtons", value: 4)
}

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

View File

@@ -1,39 +0,0 @@
# Aeon Multisensor 6
Cloud Execution
Works with:
* [Aeon Labs MultiSensor 6](https://www.smartthings.com/products/aeon-labs-multisensor-6)
## Table of contents
* [Capabilities](#capabilities)
* [Health](#device-health)
* [Troubleshooting](#troubleshooting)
## Capabilities
* **Motion Sensor** - can detect motion
* **Temperature Measurement** - defines device measures current temperature
* **Relative Humidity Measurement** - allow reading the relative humidity from devices that support it
* **Illuminance Measurement** - gives the illuminance reading from devices that support it
* **Ultraviolet Index** - gives the ability to get the ultraviolet index from devices that report it
* **Configuration** - _configure()_ command called when device is installed or device preferences updated
* **Sensor** - detects sensor events
* **Battery** - defines device uses a battery
* **Health Check** - indicates ability to get device health notifications
## Device Health
Aeon Labs MultiSensor 6 is polled by the hub.
Aeon MultiSensor reports in once every hour.
* __122min__ checkInterval
## Troubleshooting
If the device doesn't pair when trying from the SmartThings mobile app, it is possible that the device is out of range.
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:
* [Aeon Labs MultiSensor 6 Troubleshooting Tips](https://support.smartthings.com/hc/en-us/articles/206157226)

View File

@@ -22,7 +22,6 @@ metadata {
capability "Configuration"
capability "Sensor"
capability "Battery"
capability "Health Check"
attribute "tamper", "enum", ["detected", "clear"]
attribute "batteryStatus", "string"
@@ -30,7 +29,6 @@ metadata {
fingerprint deviceId: "0x2101", inClusters: "0x5E,0x86,0x72,0x59,0x85,0x73,0x71,0x84,0x80,0x30,0x31,0x70,0x7A", outClusters: "0x5A"
fingerprint deviceId: "0x2101", inClusters: "0x5E,0x86,0x72,0x59,0x85,0x73,0x71,0x84,0x80,0x30,0x31,0x70,0x7A,0x5A"
fingerprint mfr:"0086", prod:"0102", model:"0064", deviceJoinName: "Aeon Labs MultiSensor 6"
}
simulator {
@@ -129,14 +127,7 @@ metadata {
}
}
def installed(){
// Device-Watch simply pings if no device events received for 122min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 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 122min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
log.debug "Updated with settings: ${settings}"
log.debug "${device.displayName} is now ${device.latestValue("powerSupply")}"
@@ -335,13 +326,6 @@ def zwaveEvent(physicalgraph.zwave.Command cmd) {
createEvent(descriptionText: cmd.toString(), isStateChange: false)
}
/**
* PING is used by Device-Watch in attempt to reach the Device
* */
def ping() {
secure(zwave.batteryV1.batteryGet())
}
def configure() {
// This sensor joins as a secure device if you double-click the button to include it
log.debug "${device.displayName} is configuring its settings"

View File

@@ -22,6 +22,8 @@ metadata {
capability "Battery"
capability "Health Check"
command "configureAfterSecure"
fingerprint deviceId: "0x0701", inClusters: "0x5E,0x86,0x72,0x59,0x85,0x73,0x71,0x84,0x80,0x30,0x31,0x70,0x98,0x7A", outClusters:"0x5A"
fingerprint mfr:"0086", prod:"0102", model:"004A", deviceJoinName: "Aeon Labs MultiSensor (Gen 5)"
}
@@ -89,12 +91,12 @@ metadata {
valueTile("battery", "device.battery", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "battery", label:'${currentValue}% battery', unit:""
}
standardTile("configure", "device.configure", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "configure", label:'', action:"configure", icon:"st.secondary.configure"
standardTile("configureAfterSecure", "device.configure", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "configure", label:'', action:"configureAfterSecure", icon:"st.secondary.configure"
}
main(["motion", "temperature", "humidity", "illuminance"])
details(["motion", "temperature", "humidity", "illuminance", "battery", "configure"])
details(["motion", "temperature", "humidity", "illuminance", "battery", "configureAfterSecure"])
}
}
@@ -129,8 +131,8 @@ def zwaveEvent(physicalgraph.zwave.commands.wakeupv1.WakeUpNotification cmd)
if (!isConfigured()) {
// we're still in the process of configuring a newly joined device
log.debug("not sending wakeUpNoMoreInformation yet: late configure")
result += response(configure())
log.debug("not sending wakeUpNoMoreInformation yet")
result += response(configureAfterSecure())
} else {
result += response(zwave.wakeUpV1.wakeUpNoMoreInformation())
}
@@ -148,6 +150,11 @@ def zwaveEvent(physicalgraph.zwave.commands.securityv1.SecurityMessageEncapsulat
}
}
def zwaveEvent(physicalgraph.zwave.commands.securityv1.SecurityCommandsSupportedReport cmd) {
// log.debug "Received SecurityCommandsSupportedReport"
response(configureAfterSecure())
}
def zwaveEvent(physicalgraph.zwave.commands.batteryv1.BatteryReport cmd) {
def map = [ name: "battery", unit: "%" ]
if (cmd.batteryLevel == 0xFF) {
@@ -219,6 +226,36 @@ def zwaveEvent(physicalgraph.zwave.Command cmd) {
createEvent(descriptionText: cmd.toString(), isStateChange: false)
}
def configureAfterSecure() {
// log.debug "configureAfterSecure()"
def request = [
// send temperature, humidity, and illuminance every 8 minutes
zwave.configurationV1.configurationSet(parameterNumber: 101, size: 4, scaledConfigurationValue: 128|64|32),
zwave.configurationV1.configurationSet(parameterNumber: 111, size: 4, scaledConfigurationValue: 8*60),
// send battery every 20 hours
zwave.configurationV1.configurationSet(parameterNumber: 102, size: 4, scaledConfigurationValue: 1),
zwave.configurationV1.configurationSet(parameterNumber: 112, size: 4, scaledConfigurationValue: 20*60*60),
// send no-motion report 60 seconds after motion stops
zwave.configurationV1.configurationSet(parameterNumber: 3, size: 2, scaledConfigurationValue: 60),
// send binary sensor report instead of basic set for motion
zwave.configurationV1.configurationSet(parameterNumber: 5, size: 1, scaledConfigurationValue: 2),
// disable notification-style motion events
zwave.notificationV3.notificationSet(notificationType: 7, notificationStatus: 0),
zwave.batteryV1.batteryGet(),
zwave.sensorBinaryV2.sensorBinaryGet(sensorType:0x0C)
]
setConfigured()
secureSequence(request) + ["delay 20000", zwave.wakeUpV1.wakeUpNoMoreInformation().format()]
}
/**
* PING is used by Device-Watch in attempt to reach the Device
* */
@@ -228,36 +265,7 @@ def ping() {
def configure() {
// log.debug "configure()"
def request = []
// send temperature, humidity, and illuminance every 8 minutes
request << zwave.configurationV1.configurationSet(parameterNumber: 101, size: 4, scaledConfigurationValue: 128|64|32)
request << zwave.configurationV1.configurationSet(parameterNumber: 111, size: 4, scaledConfigurationValue: 8*60)
// send battery every 20 hours
request << zwave.configurationV1.configurationSet(parameterNumber: 102, size: 4, scaledConfigurationValue: 1)
request << zwave.configurationV1.configurationSet(parameterNumber: 112, size: 4, scaledConfigurationValue: 20*60*60)
// send no-motion report 60 seconds after motion stops
request << zwave.configurationV1.configurationSet(parameterNumber: 3, size: 2, scaledConfigurationValue: 60)
// send binary sensor report instead of basic set for motion
request << zwave.configurationV1.configurationSet(parameterNumber: 5, size: 1, scaledConfigurationValue: 2)
// Turn on the Multisensor Gen5 PIR sensor
request << zwave.configurationV1.configurationSet(parameterNumber: 4, size: 1, scaledConfigurationValue: 1)
// disable notification-style motion events
request << zwave.notificationV3.notificationSet(notificationType: 7, notificationStatus: 0)
request << zwave.batteryV1.batteryGet()
request << zwave.sensorBinaryV2.sensorBinaryGet(sensorType: 0x0C) //motion
request << zwave.sensorMultilevelV5.sensorMultilevelGet(sensorType: 0x01) //temperature
request << zwave.sensorMultilevelV5.sensorMultilevelGet(sensorType: 0x03) //illuminance
request << zwave.sensorMultilevelV5.sensorMultilevelGet(sensorType: 0x05) //humidity
setConfigured()
secureSequence(request) + ["delay 20000", zwave.wakeUpV1.wakeUpNoMoreInformation().format()]
//["delay 30000"] + secure(zwave.securityV1.securityCommandsSupportedGet())
}
private setConfigured() {

View File

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

View File

@@ -1,48 +0,0 @@
# Aeon Multisensor
Cloud Execution
Works with:
* [Aeotec MultiSensor (DSB05-ZWUS)](https://www.smartthings.com/products/aeotec-multisensor-5)
## Table of contents
* [Capabilities](#capabilities)
* [Health](#device-health)
* [Battery](#battery-specification)
* [Troubleshooting](#troubleshooting)
## Capabilities
* **Motion Sensor** - can detect motion
* **Temperature Measurement** - defines device measures current temperature
* **Relative Humidity Measurement** - allow reading the relative humidity from devices that support it
* **Illuminance Measurement** - gives the illuminance reading from devices that support it
* **Configuration** - _configure()_ command called when device is installed or device preferences updated
* **Sensor** - detects sensor events
* **Battery** - defines device uses a battery
* **Health Check** - indicates ability to get device health notifications
## Device Health
Aeon Labs MultiSensor is polled by the hub.
As of hubCore version 0.14.38 the hub sends up reports every 15 minutes regardless of whether the state changed.
Device-Watch allows 2 check-in misses from device plus some lag time. So Check-in interval = (2*15 + 2)mins = 32 mins.
Not to mention after going OFFLINE when the device is plugged back in, it might take a considerable amount of time for
the device to appear as ONLINE again. This is because if this listening device does not respond to two poll requests in a row,
it is not polled for 5 minutes by the hub. This can delay up the process of being marked ONLINE by quite some time.
* __32min__ checkInterval
## Battery Specification
Four AAA batteries are required.
## Troubleshooting
If the device doesn't pair when trying from the SmartThings mobile app, it is possible that the device is out of range.
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:
* [Aeon MultiSensor Troubleshooting Tips](https://support.smartthings.com/hc/en-us/articles/206157226-How-to-connect-Aeon-Labs-MultiSensors)

View File

@@ -20,7 +20,6 @@ metadata {
capability "Illuminance Measurement"
capability "Sensor"
capability "Battery"
capability "Health Check"
fingerprint deviceId: "0x2001", inClusters: "0x30,0x31,0x80,0x84,0x70,0x85,0x72,0x86"
}
@@ -94,16 +93,6 @@ 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])
}
// Parse incoming device messages to generate events
def parse(String description)
{
@@ -190,13 +179,6 @@ def zwaveEvent(physicalgraph.zwave.Command cmd) {
[:]
}
/**
* PING is used by Device-Watch in attempt to reach the Device
* */
def ping() {
secure(zwave.batteryV1.batteryGet())
}
def configure() {
delayBetween([
// send binary sensor report instead of basic set for motion

View File

@@ -16,7 +16,7 @@
* Date: 2014-07-15
*/
metadata {
definition (name: "Aeon Siren", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "x.com.st.d.sensor.smoke") {
definition (name: "Aeon Siren", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Alarm"
capability "Switch"
@@ -61,8 +61,6 @@ 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])
response(secure(zwave.basicV1.basicGet()))
}
def updated() {
@@ -165,4 +163,4 @@ private secure(physicalgraph.zwave.Command cmd) {
* */
def ping() {
secure(zwave.basicV1.basicGet())
}
}

View File

@@ -1,5 +1,3 @@
//DEPRECATED. INTEGRATION MOVED TO SUPER LAN CONNECT
/**
* Bose SoundTouch
*

View File

@@ -9,7 +9,6 @@ metadata {
capability "Configuration"
capability "Refresh"
capability "Sensor"
capability "Health Check"
attribute "thermostatFanState", "string"
@@ -19,7 +18,6 @@ metadata {
command "quickSetHeat"
fingerprint deviceId: "0x08", inClusters: "0x43,0x40,0x44,0x31,0x80,0x85,0x60"
fingerprint mfr:"0098", prod:"6401", model:"0107", deviceJoinName: "2Gig CT100 Programmable Thermostat"
}
// simulator metadata
@@ -108,16 +106,6 @@ 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 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 parse(String description)
{
def result = []
@@ -451,14 +439,6 @@ def setCoolingSetpoint(Double degrees, Integer delay = 30000) {
], delay)
}
/**
* PING is used by Device-Watch in attempt to reach the Device
* */
def ping() {
log.debug "ping() called"
refresh()
}
def configure() {
delayBetween([
zwave.thermostatModeV2.thermostatModeSupportedGet().format(),

View File

@@ -108,20 +108,11 @@ def updated(){
}
}
def getCommandClassVersions() {
[
0x20: 1, // Basic
0x26: 1, // SwitchMultilevel
0x56: 1, // Crc16Encap
0x70: 1, // Configuration
]
}
def parse(String description) {
def result = null
if (description != "updated") {
log.debug "parse() >> zwave.parse($description)"
def cmd = zwave.parse(description, commandClassVersions)
def cmd = zwave.parse(description, [0x20: 1, 0x26: 1, 0x70: 1])
if (cmd) {
result = zwaveEvent(cmd)
}
@@ -188,16 +179,6 @@ def zwaveEvent(physicalgraph.zwave.commands.switchmultilevelv1.SwitchMultilevelS
[createEvent(name:"switch", value:"on"), response(zwave.switchMultilevelV1.switchMultilevelGet().format())]
}
def zwaveEvent(physicalgraph.zwave.commands.crc16encapv1.Crc16Encap cmd) {
def versions = commandClassVersions
def version = versions[cmd.commandClass as Integer]
def ccObj = version ? zwave.commandClass(cmd.commandClass, version) : zwave.commandClass(cmd.commandClass)
def encapsulatedCommand = ccObj?.command(cmd.command)?.parse(cmd.data)
if (encapsulatedCommand) {
zwaveEvent(encapsulatedCommand)
}
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
// Handles all Z-Wave commands we aren't interested in
[:]

View File

@@ -70,7 +70,7 @@ metadata {
state "heat", action:"switchMode", nextState: "updating", icon: "st.thermostat.heat"
state "cool", action:"switchMode", nextState: "updating", icon: "st.thermostat.cool"
state "auto", action:"switchMode", nextState: "updating", icon: "st.thermostat.auto"
state "auxheatonly", action:"switchMode", icon: "st.thermostat.emergency-heat"
state "emergency heat", action:"switchMode", icon: "st.thermostat.emergency-heat" // emergency heat = auxHeatOnly
state "updating", label:"Working", icon: "st.secondary.secondary"
}
standardTile("fanMode", "device.thermostatFanMode", inactiveLabel: false, decoration: "flat") {
@@ -156,49 +156,47 @@ void poll() {
def generateEvent(Map results) {
log.debug "parsing data $results"
if(results) {
results.each { name, value ->
def linkText = getLinkText(device)
def supportedThermostatModes = ["off"]
def thermostatMode = null
results.each { name, value ->
def isChange = false
def isDisplayed = true
def event = [name: name, linkText: linkText, descriptionText: getThermostatDescriptionText(name, value, linkText),
handlerName: name]
if (name=="temperature" || name=="heatingSetpoint" || name=="coolingSetpoint" ) {
def sendValue = location.temperatureScale == "C"? roundC(convertFtoC(value.toDouble())) : value.toInteger()
event << [value: sendValue, unit: temperatureScale]
isChange = isTemperatureStateChange(device, name, value.toString())
isDisplayed = isChange
event << [value: sendValue, unit: temperatureScale, isStateChange: isChange, displayed: isDisplayed]
} else if (name=="maxCoolingSetpoint" || name=="minCoolingSetpoint" || name=="maxHeatingSetpoint" || name=="minHeatingSetpoint") {
def sendValue = location.temperatureScale == "C"? roundC(convertFtoC(value.toDouble())) : value.toInteger()
event << [value: sendValue, unit: temperatureScale, displayed: false]
} else if (name=="heatMode" || name=="coolMode" || name=="autoMode" || name=="auxHeatMode"){
if (value == true) {
supportedThermostatModes << ((name == "auxHeatMode") ? "auxheatonly" : name - "Mode")
}
return // as we don't want to send this event here, proceed to next name/value pair
isChange = isStateChange(device, name, value.toString())
event << [value: value.toString(), isStateChange: isChange, displayed: false]
} else if (name=="thermostatFanMode"){
sendEvent(name: "supportedThermostatFanModes", value: fanModes(), displayed: false)
event << [value: value.toString(), data:[supportedThermostatFanModes: fanModes()]]
isChange = isStateChange(device, name, value.toString())
event << [value: value.toString(), isStateChange: isChange, displayed: false]
} else if (name=="humidity") {
event << [value: value.toString(), displayed: false, unit: "%"]
isChange = isStateChange(device, name, value.toString())
event << [value: value.toString(), isStateChange: isChange, displayed: false, unit: "%"]
} else if (name == "deviceAlive") {
isChange = isStateChange(device, name, value.toString())
event['isStateChange'] = isChange
event['displayed'] = false
} else if (name == "thermostatMode") {
thermostatMode = value.toLowerCase()
return // as we don't want to send this event here, proceed to next name/value pair
def mode = value.toString()
mode = (mode == "auxHeatOnly") ? "emergency heat" : mode
isChange = isStateChange(device, name, mode)
event << [value: mode, isStateChange: isChange, displayed: isDisplayed]
} else {
event << [value: value.toString()]
isChange = isStateChange(device, name, value.toString())
isDisplayed = isChange
event << [value: value.toString(), isStateChange: isChange, displayed: isDisplayed]
}
sendEvent(event)
}
if (state.supportedThermostatModes != supportedThermostatModes) {
state.supportedThermostatModes = supportedThermostatModes
sendEvent(name: "supportedThermostatModes", value: supportedThermostatModes, displayed: false)
}
if (thermostatMode) {
sendEvent(name: "thermostatMode", value: thermostatMode, data:[supportedThermostatModes:state.supportedThermostatModes], linkText: linkText,
descriptionText: getThermostatDescriptionText("thermostatMode", thermostatMode, linkText), handlerName: "thermostatMode")
}
generateSetpointEvent ()
generateStatusEvent ()
}
@@ -324,7 +322,15 @@ void resumeProgram() {
}
def modes() {
return state.supportedThermostatModes
if (state.modes) {
log.debug "Modes = ${state.modes}"
return state.modes
}
else {
state.modes = parent.availableModes(this)
log.debug "Modes = ${state.modes}"
return state.modes
}
}
def fanModes() {
@@ -407,13 +413,11 @@ def setThermostatFanMode(String mode) {
}
def generateModeEvent(mode) {
sendEvent(name: "thermostatMode", value: mode, data:[supportedThermostatModes: state.supportedThermostatModes],
descriptionText: "$device.displayName is in ${mode} mode")
sendEvent(name: "thermostatMode", value: mode, descriptionText: "$device.displayName is in ${mode} mode", displayed: true)
}
def generateFanModeEvent(fanMode) {
sendEvent(name: "thermostatFanMode", value: fanMode, data:[supportedThermostatFanModes: fanModes()],
descriptionText: "$device.displayName fan is in ${fanMode} mode")
sendEvent(name: "thermostatFanMode", value: fanMode, descriptionText: "$device.displayName fan is in ${fanMode} mode", displayed: true)
}
def generateOperatingStateEvent(operatingState) {
@@ -449,14 +453,14 @@ def heat() {
}
def emergencyHeat() {
auxheatonly()
auxHeatOnly()
}
def auxheatonly() {
log.debug "auxheatonly()"
def auxHeatOnly() {
log.debug "auxHeatOnly = emergency heat"
def deviceId = device.deviceNetworkId.split(/\./).last()
if (parent.setMode ("auxHeatOnly", deviceId))
generateModeEvent("auxheatonly")
generateModeEvent("emergency heat") // emergency heat = auxHeatOnly
else {
log.debug "Error setting new mode."
def currentMode = device.currentState("thermostatMode")?.value
@@ -589,7 +593,7 @@ def generateSetpointEvent() {
} else if (mode == "off") {
sendEvent("name":"thermostatSetpoint", "value":averageSetpoint, "unit":location.temperatureScale)
sendEvent("name":"displayThermostatSetpoint", "value":"Off", displayed: false)
} else if (mode == "auxheatonly") {
} else if (mode == "emergency heat") { // emergency heat = auxHeatOnly
sendEvent("name":"thermostatSetpoint", "value":heatingSetpoint, "unit":location.temperatureScale)
sendEvent("name":"displayThermostatSetpoint", "value":heatingSetpoint, "unit":location.temperatureScale, displayed: false)
}
@@ -628,7 +632,7 @@ void raiseSetpoint() {
targetvalue = thermostatSetpoint ? thermostatSetpoint : 0
targetvalue = location.temperatureScale == "F"? targetvalue + 1 : targetvalue + 0.5
if ((mode == "heat" || mode == "auxheatonly") && targetvalue > maxHeatingSetpoint) {
if ((mode == "heat" || mode == "emergency heat") && targetvalue > maxHeatingSetpoint) { // emergency heat = auxHeatOnly
targetvalue = maxHeatingSetpoint
} else if (mode == "cool" && targetvalue > maxCoolingSetpoint) {
targetvalue = maxCoolingSetpoint
@@ -674,7 +678,7 @@ void lowerSetpoint() {
targetvalue = thermostatSetpoint ? thermostatSetpoint : 0
targetvalue = location.temperatureScale == "F"? targetvalue - 1 : targetvalue - 0.5
if ((mode == "heat" || mode == "auxheatonly") && targetvalue < minHeatingSetpoint) {
if ((mode == "heat" || mode == "emergency heat") && targetvalue < minHeatingSetpoint) { // emergency heat = auxHeatOnly
targetvalue = minHeatingSetpoint
} else if (mode == "cool" && targetvalue < minCoolingSetpoint) {
targetvalue = minCoolingSetpoint
@@ -715,7 +719,7 @@ void alterSetpoint(temp) {
}
//step1: check thermostatMode, enforce limits before sending request to cloud
if (mode == "heat" || mode == "auxheatonly"){
if (mode == "heat" || mode == "emergency heat"){ // emergency heat = auxHeatOnly
if (temp.value > coolingSetpoint){
targetHeatingSetpoint = temp.value
targetCoolingSetpoint = temp.value
@@ -750,7 +754,7 @@ void alterSetpoint(temp) {
log.debug "alterSetpoint in mode $mode succeed change setpoint to= ${temp.value}"
} else {
log.error "Error alterSetpoint()"
if (mode == "heat" || mode == "auxheatonly"){
if (mode == "heat" || mode == "emergency heat"){ // emergency heat = auxHeatOnly
sendEvent("name": "thermostatSetpoint", "value": heatingSetpoint.toString(), displayed: false)
sendEvent("name": "displayThermostatSetpoint", "value": heatingSetpoint.toString(), displayed: false)
} else if (mode == "cool") {
@@ -779,7 +783,7 @@ def generateStatusEvent() {
log.debug "Cooling set point = ${coolingSetpoint}"
log.debug "HVAC Mode = ${mode}"
if (mode == "heat" || mode == "auxheatonly") {
if (mode == "heat") {
if (temperature >= heatingSetpoint) {
statusText = "Right Now: Idle"
} else {
@@ -802,6 +806,8 @@ def generateStatusEvent() {
}
} else if (mode == "off") {
statusText = "Right Now: Off"
} else if (mode == "emergency heat") { // emergency heat = auxHeatOnly
statusText = "Emergency Heat"
} else {
statusText = "?"
}

View File

@@ -1,163 +0,0 @@
/**
* Copyright 2017 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:
*
* 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.
*
* Everspring ST815 Illuminance Sensor
*
* Author: SmartThings
* Date: 2017-3-4
*/
metadata {
definition (name: "Everspring Illuminance Sensor", namespace: "smartthings", author: "SmartThings") {
capability "Illuminance Measurement"
capability "Battery"
capability "Configuration"
capability "Sensor"
capability "Health Check"
fingerprint mfr:"0060", prod:"0007", model:"0001"
}
simulator {
for( int i = 0; i <= 100; i += 20 ) {
status "illuminace ${i} lux": new physicalgraph.zwave.Zwave().sensorMultilevelV2.sensorMultilevelReport(
scaledSensorValue: i, precision: 0, sensorType: 3, scale: 1).incomingMessage()
}
for( int i = 0; i <= 100; i += 20 ) {
status "battery ${i}%": new physicalgraph.zwave.Zwave().batteryV1.batteryReport(
batteryLevel: i).incomingMessage()
}
status "wakeup": "command: 8407, payload: "
}
tiles(scale: 2) {
valueTile("temperature", "device.temperature", inactiveLabel: false, width: 2, height: 2) {
state "temperature", label:'${currentValue}°',
backgroundColors:[
[value: 32, color: "#153591"],
[value: 44, color: "#1e9cbb"],
[value: 59, color: "#90d2a7"],
[value: 74, color: "#44b621"],
[value: 84, color: "#f1d801"],
[value: 92, color: "#d04e00"],
[value: 98, color: "#bc2323"]
]
}
valueTile("humidity", "device.humidity", inactiveLabel: false, width: 2, height: 2) {
state "humidity", label:'${currentValue}% humidity', unit:""
}
valueTile("battery", "device.battery", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "battery", label:'${currentValue}% battery', unit:""
}
main( ["temperature", "humidity"] )
details( ["temperature", "humidity", "battery"] )
}
}
def updated() {
state.configured = false
}
def parse(String description) {
def result = []
def cmd = zwave.parse(description, [0x20: 1, 0x31: 2, 0x70: 1, 0x71: 1, 0x80: 1, 0x84: 2, 0x85: 2])
if (cmd) {
result = zwaveEvent(cmd)
}
if (result instanceof List) {
log.debug "Parsed '$description' to ${result.collect { it.respondsTo("toHubAction") ? it.toHubAction() : it }}"
} else {
log.debug "Parsed '$description' to ${result}"
}
return result
}
def zwaveEvent(physicalgraph.zwave.commands.wakeupv2.WakeUpNotification cmd) {
def result = [
createEvent(descriptionText: "${device.displayName} woke up", isStateChange: false)
]
if (state.configured) {
result << response(zwave.batteryV1.batteryGet())
} else {
result << response(configure())
}
return result
}
def zwaveEvent(physicalgraph.zwave.commands.alarmv1.AlarmReport cmd) {
if (cmd.alarmType == 1 && cmd.alarmType == 0xFF) {
return createEvent(descriptionText: "${device.displayName} battery is low", isStateChange: true)
} else if (cmd.alarmType == 2 && cmd.alarmLevel == 1) {
return createEvent(descriptionText: "${device.displayName} powered up", isStateChange: false)
}
}
def zwaveEvent(physicalgraph.zwave.commands.sensormultilevelv2.SensorMultilevelReport cmd) {
def map = [:]
switch( cmd.sensorType ) {
case 3:
// luminance
map.value = cmd.scaledSensorValue.toInteger().toString()
map.unit = "lux"
map.name = "illuminance"
break;
}
return createEvent(map)
}
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 response_cmds = []
if (!currentTemperature) {
response_cmds << zwave.sensorMultilevelV2.sensorMultilevelGet().format()
response_cmds << "delay 1000"
}
response_cmds << zwave.wakeUpV1.wakeUpNoMoreInformation().format()
return [createEvent(map), response(response_cmds)]
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
log.debug "Unhandled: ${cmd.toString()}"
return [:]
}
def configure() {
state.configured = true
sendEvent(name: "checkInterval", value: 8 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
delayBetween([
// Auto report time interval in minutes
zwave.configurationV1.configurationSet(parameterNumber: 5, size: 2, scaledConfigurationValue: 20).format(),
// Auto report lux change threshold
zwave.configurationV1.configurationSet(parameterNumber: 6, size: 2, scaledConfigurationValue: 30).format(),
// Get battery report triggers WakeUpNMI
zwave.batteryV1.batteryGet().format()
])
}

View File

@@ -1,188 +0,0 @@
/**
* Copyright 2017 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:
*
* 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.
*
* Everspring ST814 Temperature/Humidity Sensor
*
* Author: SmartThings
* Date: 2017-3-4
*/
metadata {
definition (name: "Everspring ST814", namespace: "smartthings", author: "SmartThings") {
capability "Temperature Measurement"
capability "Relative Humidity Measurement"
capability "Battery"
capability "Configuration"
capability "Sensor"
capability "Health Check"
fingerprint mfr:"0060", prod:"0006", model:"0001"
}
simulator {
for( int i = 0; i <= 100; i += 20 ) {
status "temperature ${i}F": new physicalgraph.zwave.Zwave().sensorMultilevelV2.sensorMultilevelReport(
scaledSensorValue: i, precision: 1, sensorType: 1, scale: 1).incomingMessage()
}
for( int i = 0; i <= 100; i += 20 ) {
status "humidity ${i}%": new physicalgraph.zwave.Zwave().sensorMultilevelV2.sensorMultilevelReport(
scaledSensorValue: i, precision: 0, sensorType: 5).incomingMessage()
}
for( int i = 0; i <= 100; i += 20 ) {
status "battery ${i}%": new physicalgraph.zwave.Zwave().batteryV1.batteryReport(
batteryLevel: i).incomingMessage()
}
status "wakeup": "command: 8407, payload: "
}
tiles(scale: 2) {
valueTile("temperature", "device.temperature", inactiveLabel: false, width: 2, height: 2) {
state "temperature", label:'${currentValue}°',
backgroundColors:[
[value: 32, color: "#153591"],
[value: 44, color: "#1e9cbb"],
[value: 59, color: "#90d2a7"],
[value: 74, color: "#44b621"],
[value: 84, color: "#f1d801"],
[value: 92, color: "#d04e00"],
[value: 98, color: "#bc2323"]
]
}
valueTile("humidity", "device.humidity", inactiveLabel: false, width: 2, height: 2) {
state "humidity", label:'${currentValue}% humidity', unit:""
}
valueTile("battery", "device.battery", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "battery", label:'${currentValue}% battery', unit:""
}
main( ["temperature", "humidity"] )
details( ["temperature", "humidity", "battery"] )
}
}
def updated() {
state.configured = false
}
def parse(String description) {
def result = []
def cmd = zwave.parse(description, [0x20: 1, 0x31: 2, 0x70: 1, 0x71: 1, 0x80: 1, 0x84: 2, 0x85: 2])
if (cmd) {
result = zwaveEvent(cmd)
}
if (result instanceof List) {
log.debug "Parsed '$description' to ${result.collect { it.respondsTo("toHubAction") ? it.toHubAction() : it }}"
} else {
log.debug "Parsed '$description' to ${result}"
}
return result
}
def zwaveEvent(physicalgraph.zwave.commands.wakeupv2.WakeUpNotification cmd) {
def result = [
createEvent(descriptionText: "${device.displayName} woke up", isStateChange: false)
]
if (state.configured) {
result << response(zwave.batteryV1.batteryGet())
} else {
result << response(configure())
}
return result
}
def zwaveEvent(physicalgraph.zwave.commands.alarmv1.AlarmReport cmd) {
if (cmd.alarmType == 1 && cmd.alarmType == 0xFF) {
return createEvent(descriptionText: "${device.displayName} battery is low", isStateChange: true)
} else if (cmd.alarmType == 2 && cmd.alarmLevel == 1) {
return createEvent(descriptionText: "${device.displayName} powered up", isStateChange: false)
}
}
def zwaveEvent(physicalgraph.zwave.commands.sensormultilevelv2.SensorMultilevelReport cmd) {
def map = [:]
switch( cmd.sensorType ) {
case 1:
/* temperature */
def cmdScale = cmd.scale == 1 ? "F" : "C"
map.value = convertTemperatureIfNeeded(cmd.scaledSensorValue, cmdScale, cmd.precision)
map.unit = getTemperatureScale()
map.name = "temperature"
break
case 5:
/* humidity */
map.value = cmd.scaledSensorValue.toInteger().toString()
map.unit = "%"
map.name = "humidity"
break
}
return createEvent(map)
}
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 response_cmds = []
if (!currentTemperature) {
response_cmds << zwave.sensorMultilevelV2.sensorMultilevelGet().format()
response_cmds << "delay 1000"
}
response_cmds << zwave.wakeUpV1.wakeUpNoMoreInformation().format()
return [createEvent(map), response(response_cmds)]
}
def zwaveEvent(physicalgraph.zwave.commands.multichannelv3.MultiChannelCmdEncap cmd) {
def result = null
def encapsulatedCommand = cmd.encapsulatedCommand([0x20: 1, 0x31: 2, 0x70: 1, 0x71: 1, 0x80: 1, 0x84: 2, 0x85: 2])
log.debug ("Command from endpoint ${cmd.sourceEndPoint}: ${encapsulatedCommand}")
if (encapsulatedCommand) {
result = zwaveEvent(encapsulatedCommand)
}
result
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
log.debug "Unhandled: ${cmd.toString()}"
return [:]
}
def configure() {
state.configured = true
sendEvent(name: "checkInterval", value: 8 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
delayBetween([
// Auto report time interval in minutes
zwave.configurationV1.configurationSet(parameterNumber: 6, size: 2, scaledConfigurationValue: 20).format(),
// Auto report temperature change threshold
zwave.configurationV1.configurationSet(parameterNumber: 7, size: 1, scaledConfigurationValue: 2).format(),
// Auto report humidity change threshold
zwave.configurationV1.configurationSet(parameterNumber: 8, size: 1, scaledConfigurationValue: 5).format(),
// Get battery report triggers WakeUpNMI
zwave.batteryV1.batteryGet().format()
])
}

View File

@@ -107,8 +107,8 @@
state "configure", label:'', action:"configuration.configure", icon:"st.secondary.configure"
}
standardTile("acceleration", "device.acceleration") {
state("active", label:'vibration', icon:"st.motion.acceleration.active", backgroundColor:"#00a0dc")
state("inactive", label:'still', icon:"st.motion.acceleration.inactive", backgroundColor:"#cccccc")
state("active", label:'vibration', icon:"st.motion.acceleration.active", backgroundColor:"#53a7c0")
state("inactive", label:'still', icon:"st.motion.acceleration.inactive", backgroundColor:"#ffffff")
}

View File

@@ -300,21 +300,15 @@ def setColor(value) {
value.hex = "#${hex(value.red)}${hex(value.green)}${hex(value.blue)}"
}
if(value.hue) {
sendEvent(name: "hue", value: value.hue, displayed: false)
}
if(value.saturation) {
sendEvent(name: "saturation", value: value.saturation, displayed: false)
}
if(value.hex?.trim()) {
sendEvent(name: "color", value: value.hex, displayed: false)
}
if (value.level) {
sendEvent(name: "level", value: value.level)
}
if (value.switch?.trim()) {
sendEvent(name: "switch", value: value.switch)
}
sendEvent(name: "hue", value: value.hue, displayed: false)
sendEvent(name: "saturation", value: value.saturation, displayed: false)
sendEvent(name: "color", value: value.hex, displayed: false)
if (value.level) {
sendEvent(name: "level", value: value.level)
}
if (value.switch) {
sendEvent(name: "switch", value: value.switch)
}
sendRGB(value.rh, value.gh, value.bh)
}

View File

@@ -12,13 +12,13 @@
*
*/
metadata {
definition (name: "Fortrezz Water Valve", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.watervalve") {
definition (name: "Fortrezz Water Valve", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Health Check"
capability "Valve"
capability "Refresh"
capability "Sensor"
fingerprint deviceId: "0x1000", inClusters: "0x25,0x72,0x86,0x71,0x22,0x70"
fingerprint mfr:"0084", prod:"0213", model:"0215", deviceJoinName: "FortrezZ Water Valve"
}
@@ -34,17 +34,14 @@ metadata {
}
// tile definitions
tiles(scale: 2) {
multiAttributeTile(name:"contact", type: "generic", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.contact", key: "PRIMARY_CONTROL") {
attributeState "open", label: '${name}', action: "valve.close", icon: "st.valves.water.open", backgroundColor: "#00A0DC", nextState:"closing"
attributeState "closed", label: '${name}', action: "valve.open", icon: "st.valves.water.closed", backgroundColor: "#ffffff", nextState:"opening"
attributeState "opening", label: '${name}', action: "valve.close", icon: "st.valves.water.open", backgroundColor: "#00A0DC"
attributeState "closing", label: '${name}', action: "valve.open", icon: "st.valves.water.closed", backgroundColor: "#ffffff"
}
tiles {
standardTile("contact", "device.contact", width: 2, height: 2, canChangeIcon: true) {
state "open", label: '${name}', action: "valve.close", icon: "st.valves.water.open", backgroundColor: "#00A0DC", nextState:"closing"
state "closed", label: '${name}', action: "valve.open", icon: "st.valves.water.closed", backgroundColor: "#ffffff", nextState:"opening"
state "opening", label: '${name}', action: "valve.close", icon: "st.valves.water.open", backgroundColor: "#00A0DC"
state "closing", label: '${name}', action: "valve.open", icon: "st.valves.water.closed", backgroundColor: "#ffffff"
}
standardTile("refresh", "device.valve", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
standardTile("refresh", "device.switch", inactiveLabel: false, decoration: "flat") {
state "default", label:'', action:"refresh.refresh", icon:"st.secondary.refresh"
}
@@ -56,8 +53,6 @@ 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])
response(refresh())
}
def updated(){
@@ -67,37 +62,30 @@ def updated(){
def parse(String description) {
log.trace description
def result = null
def cmd = zwave.parse(description)
if (cmd) {
return zwaveEvent(cmd)
result = createEvent(zwaveEvent(cmd))
}
log.debug "Could not parse message"
return null
log.debug "Parse returned ${result?.descriptionText}"
return result
}
def zwaveEvent(physicalgraph.zwave.commands.switchbinaryv1.SwitchBinaryReport cmd) {
def value = cmd.value ? "closed" : "open"
return [createEventWithDebug([name: "contact", value: value, descriptionText: "$device.displayName valve is $value"]),
createEventWithDebug([name: "valve", value: value, descriptionText: "$device.displayName valve is $value"])]
[name: "contact", value: value, descriptionText: "$device.displayName valve is $value"]
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
return createEvent([:]) // Handles all Z-Wave commands we aren't interested in
[:] // Handles all Z-Wave commands we aren't interested in
}
def open() {
delayBetween([
zwave.switchBinaryV1.switchBinarySet(switchValue: 0x00).format(),
zwave.switchBinaryV1.switchBinaryGet().format()
], 500)
zwave.switchBinaryV1.switchBinarySet(switchValue: 0x00).format()
}
def close() {
delayBetween([
zwave.switchBinaryV1.switchBinarySet(switchValue: 0xFF).format(),
zwave.switchBinaryV1.switchBinaryGet().format()
], 500)
zwave.switchBinaryV1.switchBinarySet(switchValue: 0xFF).format()
}
/**
@@ -110,9 +98,3 @@ def ping() {
def refresh() {
zwave.switchBinaryV1.switchBinaryGet().format()
}
def createEventWithDebug(eventMap) {
def event = createEvent(eventMap)
log.debug "Event created with ${event?.name}:${event?.value} - ${event?.descriptionText}"
return event
}

View File

@@ -1,5 +1,3 @@
//DEPRECATED. INTEGRATION MOVED TO SUPER LAN CONNECT
/**
* Hue Bloom
*

View File

@@ -1,5 +1,3 @@
//DEPRECATED. INTEGRATION MOVED TO SUPER LAN CONNECT
/**
* Hue Bridge
*

View File

@@ -1,5 +1,3 @@
//DEPRECATED. INTEGRATION MOVED TO SUPER LAN CONNECT
/**
* Hue Bulb
*

View File

@@ -1,5 +1,3 @@
//DEPRECATED. INTEGRATION MOVED TO SUPER LAN CONNECT
/**
* Hue Lux Bulb
*

View File

@@ -1,5 +1,3 @@
//DEPRECATED. INTEGRATION MOVED TO SUPER LAN CONNECT
/**
* Hue White Ambiance Bulb
*

View File

@@ -16,7 +16,7 @@
* Date: 2013-03-05
*/
metadata {
definition (name: "SmartAlert Siren", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "x.com.st.d.sensor.smoke") {
definition (name: "SmartAlert Siren", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "x.com.st.smokedetector") {
capability "Actuator"
capability "Switch"
capability "Sensor"

View File

@@ -23,12 +23,12 @@ metadata {
capability "Refresh"
capability "Sensor"
capability "Health Check"
capability "Light"
capability "Outlet"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0B04,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3200", deviceJoinName: "Outlet"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0B04,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3200-Sgb", deviceJoinName: "Outlet"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0B04,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "4257050-RZHAC", deviceJoinName: "Outlet"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 000F, 0B04", outClusters: "0019", manufacturer: "SmartThings", model: "outletv4", deviceJoinName: "Outlet"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0B04,0B05", outClusters: "0019"
}

View File

@@ -105,8 +105,6 @@ def parse(String description) {
} else {
log.warn "TEMP REPORTING CONFIG FAILED- error code: ${descMap.data[0]}"
}
} else if (descMap?.clusterInt == zigbee.IAS_ZONE_CLUSTER && descMap.attrInt == zigbee.ATTRIBUTE_IAS_ZONE_STATUS && descMap?.value) {
map = translateZoneStatus(new ZoneStatus(zigbee.convertToInt(descMap?.value)))
}
}
} else if (map.name == "temperature") {
@@ -131,10 +129,6 @@ def parse(String description) {
private Map parseIasMessage(String description) {
ZoneStatus zs = zigbee.parseZoneStatus(description)
translateZoneStatus(zs)
}
private Map translateZoneStatus(ZoneStatus zs) {
return zs.isAlarm1Set() ? getMoistureResult('wet') : getMoistureResult('dry')
}
@@ -203,8 +197,7 @@ def ping() {
def refresh() {
log.debug "Refreshing Temperature and Battery"
def refreshCmds = zigbee.readAttribute(zigbee.TEMPERATURE_MEASUREMENT_CLUSTER, 0x0000) +
zigbee.readAttribute(zigbee.POWER_CONFIGURATION_CLUSTER, 0x0020) +
zigbee.readAttribute(zigbee.IAS_ZONE_CLUSTER, zigbee.ATTRIBUTE_IAS_ZONE_STATUS)
zigbee.readAttribute(zigbee.POWER_CONFIGURATION_CLUSTER, 0x0020)
return refreshCmds + zigbee.enrollResponse()
}

View File

@@ -61,8 +61,8 @@ metadata {
tiles(scale: 2) {
multiAttributeTile(name: "motion", type: "generic", width: 6, height: 4) {
tileAttribute("device.motion", key: "PRIMARY_CONTROL") {
attributeState "active", label: 'motion', icon: "st.motion.motion.active", backgroundColor: "#00A0DC"
attributeState "inactive", label: 'no motion', icon: "st.motion.motion.inactive", backgroundColor: "#cccccc"
attributeState "active", label: 'motion', icon: "st.motion.motion.active", backgroundColor: "#53a7c0"
attributeState "inactive", label: 'no motion', icon: "st.motion.motion.inactive", backgroundColor: "#ffffff"
}
}
valueTile("temperature", "device.temperature", width: 2, height: 2) {
@@ -111,8 +111,6 @@ def parse(String description) {
def value = descMap.value.endsWith("01") ? "active" : "inactive"
log.debug "Doing a read attr motion event"
map = getMotionResult(value)
} else if (descMap?.clusterInt == zigbee.IAS_ZONE_CLUSTER && descMap.attrInt == zigbee.ATTRIBUTE_IAS_ZONE_STATUS && descMap?.value) {
map = translateZoneStatus(new ZoneStatus(zigbee.convertToInt(descMap?.value)))
}
}
} else if (map.name == "temperature") {
@@ -137,10 +135,6 @@ def parse(String description) {
private Map parseIasMessage(String description) {
ZoneStatus zs = zigbee.parseZoneStatus(description)
translateZoneStatus(zs)
}
private Map translateZoneStatus(ZoneStatus zs) {
// Some sensor models that use this DTH use alarm1 and some use alarm2 to signify motion
return (zs.isAlarm1Set() || zs.isAlarm2Set()) ? getMotionResult('active') : getMotionResult('inactive')
}
@@ -171,8 +165,8 @@ private Map getBatteryResult(rawValue) {
def pct = batteryMap[volts]
result.value = pct
} else {
def minVolts = 2.4
def maxVolts = 2.7
def minVolts = 2.1
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
def roundedPct = Math.round(pct * 100)
if (roundedPct <= 0)
@@ -206,8 +200,7 @@ def refresh() {
log.debug "refresh called"
def refreshCmds = zigbee.readAttribute(zigbee.POWER_CONFIGURATION_CLUSTER, 0x0020) +
zigbee.readAttribute(zigbee.TEMPERATURE_MEASUREMENT_CLUSTER, 0x0000) +
zigbee.readAttribute(zigbee.IAS_ZONE_CLUSTER, zigbee.ATTRIBUTE_IAS_ZONE_STATUS)
zigbee.readAttribute(zigbee.TEMPERATURE_MEASUREMENT_CLUSTER, 0x0000)
return refreshCmds + zigbee.enrollResponse()
}

View File

@@ -87,8 +87,8 @@ metadata {
state("closed", label: 'Closed', icon: "st.contact.contact.closed", backgroundColor: "#00a0dc")
}
standardTile("acceleration", "device.acceleration", width: 2, height: 2) {
state("active", label: 'Active', icon: "st.motion.acceleration.active", backgroundColor: "#00a0dc")
state("inactive", label: 'Inactive', icon: "st.motion.acceleration.inactive", backgroundColor: "#cccccc")
state("active", label: 'Active', icon: "st.motion.acceleration.active", backgroundColor: "#53a7c0")
state("inactive", label: 'Inactive', icon: "st.motion.acceleration.inactive", backgroundColor: "#ffffff")
}
valueTile("temperature", "device.temperature", width: 2, height: 2) {
state("temperature", label: '${currentValue}°',
@@ -134,9 +134,8 @@ def parse(String description) {
} else {
log.warn "TEMP REPORTING CONFIG FAILED- error code: ${descMap.data[0]}"
}
} else if (descMap?.clusterInt == zigbee.IAS_ZONE_CLUSTER && descMap.attrInt == zigbee.ATTRIBUTE_IAS_ZONE_STATUS && descMap?.value) {
maps += translateZoneStatus(new ZoneStatus(zigbee.convertToInt(descMap?.value)))
} else {
maps += handleAcceleration(descMap)
}
}
@@ -179,7 +178,7 @@ private List<Map> handleAcceleration(descMap) {
result += parseAxis(descMap.additionalAttrs)
}
} else if (descMap.clusterInt == 0xFC02 && descMap.attrInt == 0x0012) {
def addAttrs = descMap.additionalAttrs ?: []
def addAttrs = descMap.additionalAttrs
addAttrs << ["attrInt": descMap.attrInt, "value": descMap.value]
result += parseAxis(addAttrs)
}
@@ -230,11 +229,6 @@ private List<Map> parseAxis(List<Map> attrData) {
private List<Map> parseIasMessage(String description) {
ZoneStatus zs = zigbee.parseZoneStatus(description)
translateZoneStatus(zs)
}
private List<Map> translateZoneStatus(ZoneStatus zs) {
List<Map> results = []
if (garageSensor != "Yes") {
@@ -274,7 +268,7 @@ private Map getBatteryResult(rawValue) {
result.value = pct
} else {
def minVolts = 2.1
def maxVolts = 2.7
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
def roundedPct = Math.round(pct * 100)
if (roundedPct <= 0)
@@ -319,7 +313,7 @@ def refresh() {
def refreshCmds = zigbee.readAttribute(zigbee.TEMPERATURE_MEASUREMENT_CLUSTER, 0x0000) +
zigbee.readAttribute(zigbee.POWER_CONFIGURATION_CLUSTER, 0x0020) +
zigbee.readAttribute(0xFC02, 0x0010, [mfgCode: manufacturerCode]) +
zigbee.readAttribute(zigbee.IAS_ZONE_CLUSTER, zigbee.ATTRIBUTE_IAS_ZONE_STATUS) + zigbee.enrollResponse()
zigbee.enrollResponse()
return refreshCmds
}

View File

@@ -49,6 +49,6 @@ def arrived() {
def departed() {
log.trace "Executing 'departed'"
log.trace "Executing 'arrived'"
sendEvent(name: "presence", value: "not present")
}

View File

@@ -1,5 +1,3 @@
//DEPRECATED. INTEGRATION MOVED TO SUPER LAN CONNECT
/**
* Copyright 2015 SmartThings
*

View File

@@ -1,5 +1,3 @@
//DEPRECATED. INTEGRATION MOVED TO SUPER LAN CONNECT
/**
* Copyright 2015 SmartThings
*
@@ -48,8 +46,8 @@
}
standardTile("motion", "device.motion", width: 2, height: 2) {
state("active", label:'motion', icon:"st.motion.motion.active", backgroundColor:"#00A0DC")
state("inactive", label:'no motion', icon:"st.motion.motion.inactive", backgroundColor:"#CCCCCC")
state("active", label:'motion', icon:"st.motion.motion.active", backgroundColor:"#53a7c0")
state("inactive", label:'no motion', icon:"st.motion.motion.inactive", backgroundColor:"#ffffff")
state("offline", label:'${name}', icon:"st.motion.motion.inactive", backgroundColor:"#ff0000")
}

View File

@@ -1,5 +1,3 @@
//DEPRECATED. INTEGRATION MOVED TO SUPER LAN CONNECT
/**
* Copyright 2015 SmartThings
*

View File

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

View File

@@ -1,42 +0,0 @@
# ZigBee Button
Cloud Execution
Works with:
* [OSRAM LIGHTIFY Dimming Switch](https://support.smartthings.com/hc/en-us/articles/115000236823-SYLVANIA-Dimming-Switch)
* [Iris Smart Button](https://support.smartthings.com/hc/en-us/articles/115000190186-Iris-Smart-Button)
* [Iris KeyFob](https://support.smartthings.com/hc/en-us/articles/217409686-Iris-Smart-Fob)
## Table of contents
* [Capabilities](#capabilities)
* [Health](#device-health)
* [Troubleshooting](#troubleshooting)
## Capabilities
* **Actuator** - It represents that a device has commands.
* **Battery** - It defines that the device has a battery
* **Button** - It defines that a device has one or more buttons
* **Holdable Button** - It defines that a device has one or more holdable buttons
* **Configuration** - _configure()_ command called when device is installed or device preferences updated
* **Refresh** - _refresh()_ command for status updates
* **Sensor** - it represents that a Device has attributes.
* **Health Check** - indicates ability to get device health notifications
## Device Health
ZigBee Button is marked offline only in the case when Hub is offline.
## Troubleshooting
If the device doesn't pair when trying from the SmartThings mobile app, it is possible that the device is out of range.
Pairing needs to be tried again by placing the device closer to the hub.
It may also happen that you need to reset the device.
Instructions related to pairing, resetting and removing the device from SmartThings can be found in the following link:
* [OSRAM LIGHTIFY Dimming Switch Troubleshooting Tips](https://support.smartthings.com/hc/en-us/articles/115000236823-SYLVANIA-Dimming-Switch)
* [Iris Smart Button Troubleshooting Tips](https://support.smartthings.com/hc/en-us/articles/115000190186-Iris-Smart-Button)
* [Iris KeyFob Troubleshooting Tips](https://support.smartthings.com/hc/en-us/articles/217409686-Iris-Smart-Fob)

View File

@@ -13,8 +13,6 @@
* for the specific language governing permissions and limitations under the License.
*
*/
import groovy.json.JsonOutput
import physicalgraph.zigbee.zcl.DataType
metadata {
@@ -26,7 +24,6 @@ metadata {
capability "Configuration"
capability "Refresh"
capability "Sensor"
capability "Health Check"
command "enrollResponse"
@@ -252,8 +249,6 @@ def updated() {
}
def initialize() {
// Arrival sensors only goes OFFLINE when Hub is off
sendEvent(name: "DeviceWatch-Enroll", value: JsonOutput.toJson([protocol: "zigbee", scheme:"untracked"]), displayed: false)
if ((device.getDataValue("manufacturer") == "OSRAM") && (device.getDataValue("model") == "LIGHTIFY Dimming Switch")) {
sendEvent(name: "numberOfButtons", value: 2)
}

View File

@@ -66,29 +66,22 @@ 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/classic 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 : $description"
log.debug "${descMap}"
log.debug "${cluster}"
}
}
}

View File

@@ -34,7 +34,7 @@ import physicalgraph.zigbee.zcl.DataType
fingerprint profileId: "0104", inClusters: "0000,0001,0003,0009,000A,0101,0020", outClusters: "000A,0019", manufacturer: "Yale", model: "YRD210 PB DB", deviceJoinName: "Yale Push Button Deadbolt Lock"
fingerprint profileId: "0104", inClusters: "0000,0001,0003,0009,000A,0101,0020", outClusters: "000A,0019", manufacturer: "Yale", model: "YRD220/240 TSDB", deviceJoinName: "Yale Touch Screen Deadbolt Lock"
fingerprint profileId: "0104", inClusters: "0000,0001,0003,0009,000A,0101,0020", outClusters: "000A,0019", manufacturer: "Yale", model: "YRL210 PB LL", deviceJoinName: "Yale Push Button Lever Lock"
fingerprint profileId: "0104", inClusters: "0000,0001,0003,0009,000A,0101,0020", outClusters: "000A,0019", manufacturer: "Yale", model: "YRD226/246 TSDB", deviceJoinName: "Yale Touch Screen Deadbolt Lock"
fingerprint profileId: "0104", inClusters: "0000,0001,0003,0009,000A,0101,0020", outClusters: "000A,0019", manufacturer: "Yale", model: "YRD226/246 TSDB", deviceJoinName: "Yale Touch Screen Deadbolt Lock"
}
tiles(scale: 2) {

View File

@@ -103,12 +103,12 @@ def parse(String description) {
if (zigbeeMap?.clusterInt == COLOR_CONTROL_CLUSTER) {
if(zigbeeMap.attrInt == ATTRIBUTE_HUE){ //Hue Attribute
state.hueValue = Math.round(zigbee.convertHexToInt(zigbeeMap.value) / 0xfe * 100)
runIn(5, updateColor, [overwrite: true])
def hueValue = Math.round(zigbee.convertHexToInt(zigbeeMap.value) / 0xfe * 100)
sendEvent(name: "hue", value: hueValue, descriptionText: "Color has changed")
}
else if(zigbeeMap.attrInt == ATTRIBUTE_SATURATION){ //Saturation Attribute
state.saturationValue = Math.round(zigbee.convertHexToInt(zigbeeMap.value) / 0xfe * 100)
runIn(5, updateColor, [overwrite: true])
def saturationValue = Math.round(zigbee.convertHexToInt(zigbeeMap.value) / 0xfe * 100)
sendEvent(name: "saturation", value: saturationValue, descriptionText: "Color has changed", displayed: false)
}
}
else if (cluster && cluster.clusterId == 0x0006 && cluster.command == 0x07) {
@@ -127,11 +127,6 @@ def parse(String description) {
}
}
def updateColor() {
sendEvent(name: "hue", value: state.hueValue, descriptionText: "Color has changed")
sendEvent(name: "saturation", value: state.saturationValue, descriptionText: "Color has changed", displayed: false)
}
def on() {
zigbee.on()
}
@@ -209,9 +204,9 @@ def setColor(value){
log.trace "setColor($value)"
zigbee.on() +
zigbee.command(COLOR_CONTROL_CLUSTER, MOVE_TO_HUE_AND_SATURATION_COMMAND,
getScaledHue(value.hue), getScaledSaturation(value.saturation), "0000") +
zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION) +
zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_HUE)
getScaledHue(value.hue), getScaledSaturation(value.saturation), "0000") +
zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_HUE) +
zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION)
}
def setHue(value) {

View File

@@ -27,6 +27,7 @@ metadata {
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0702"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0702, 0B05", outClusters: "0003, 000A, 0019", manufacturer: "Jasco Products", model: "45853", deviceJoinName: "GE ZigBee Plug-In Switch"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0702, 0B05", outClusters: "000A, 0019", manufacturer: "Jasco Products", model: "45856", deviceJoinName: "GE ZigBee In-Wall Switch"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 000F, 0B04", outClusters: "0019", manufacturer: "SmartThings", model: "outletv4", deviceJoinName: "Outlet"
}
tiles(scale: 2) {

View File

@@ -38,7 +38,7 @@ metadata {
}
tiles(scale: 2) {
multiAttributeTile(name:"contact", type: "generic", width: 6, height: 4, canChangeIcon: true){
multiAttributeTile(name:"valve", type: "generic", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.contact", key: "PRIMARY_CONTROL") {
attributeState "open", label: '${name}', action: "valve.close", icon: "st.valves.water.open", backgroundColor: "#00A0DC", nextState:"closing"
attributeState "closed", label: '${name}', action: "valve.open", icon: "st.valves.water.closed", backgroundColor: "#ffffff", nextState:"opening"
@@ -58,8 +58,8 @@ metadata {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
main(["contact"])
details(["contact", "battery", "refresh"])
main(["valve"])
details(["valve", "battery", "refresh"])
}
}
@@ -83,9 +83,6 @@ def parse(String description) {
}
}
sendEvent(event)
//handle valve attribute
event.name = "valve"
sendEvent(event)
}
else {
def descMap = zigbee.parseDescriptionAsMap(description)

View File

@@ -75,10 +75,6 @@ def parse(String description) {
return result
}
def uninstalled() {
sendEvent(name: "epEvent", value: "delete all", isStateChange: true, displayed: false, descriptionText: "Delete endpoint devices")
}
def zwaveEvent(physicalgraph.zwave.commands.wakeupv1.WakeUpNotification cmd) {
[ createEvent(descriptionText: "${device.displayName} woke up", isStateChange:true),
response(["delay 2000", zwave.wakeUpV1.wakeUpNoMoreInformation().format()]) ]

View File

@@ -88,20 +88,11 @@ def updated(){
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def getCommandClassVersions() {
[
0x20: 1, // Basic
0x26: 1, // SwitchMultilevel
0x56: 1, // Crc16Encap
0x70: 1, // Configuration
]
}
def parse(String description) {
def result = null
if (description != "updated") {
log.debug "parse() >> zwave.parse($description)"
def cmd = zwave.parse(description, commandClassVersions)
def cmd = zwave.parse(description, [0x20: 1, 0x26: 1, 0x70: 1])
if (cmd) {
result = zwaveEvent(cmd)
}
@@ -168,16 +159,6 @@ def zwaveEvent(physicalgraph.zwave.commands.switchmultilevelv1.SwitchMultilevelS
[createEvent(name:"switch", value:"on"), response(zwave.switchMultilevelV1.switchMultilevelGet().format())]
}
def zwaveEvent(physicalgraph.zwave.commands.crc16encapv1.Crc16Encap cmd) {
def versions = commandClassVersions
def version = versions[cmd.commandClass as Integer]
def ccObj = version ? zwave.commandClass(cmd.commandClass, version) : zwave.commandClass(cmd.commandClass)
def encapsulatedCommand = ccObj?.command(cmd.command)?.parse(cmd.data)
if (encapsulatedCommand) {
zwaveEvent(encapsulatedCommand)
}
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
// Handles all Z-Wave commands we aren't interested in
[:]

View File

@@ -30,15 +30,9 @@ 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:"0086", prod:"0102", model:"0070", deviceJoinName: "Aeon Labs Door/Window Sensor 6"
fingerprint mfr:"0086", prod:"0102", model:"0059", deviceJoinName: "Aeon Labs Recessed Door Sensor"
fingerprint mfr:"014A", prod:"0001", model:"0002", deviceJoinName: "Ecolink Door/Window Sensor"
fingerprint mfr:"014A", prod:"0001", model:"0003", deviceJoinName: "Ecolink Tilt 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"
fingerprint mfr:"014F", prod:"2001", model:"0102", deviceJoinName: "Nortek GoControl Door/Window Sensor"
fingerprint mfr:"0063", prod:"4953", model:"3031", deviceJoinName: "Jasco Hinge Pin Door Sensor"
fingerprint mfr:"019A", prod:"0003", model:"0003", deviceJoinName: "Sensative Strips"
}
// simulator metadata
@@ -113,9 +107,9 @@ def updated() {
def configure() {
commands([
zwave.sensorBinaryV2.sensorBinaryGet(sensorType: zwave.sensorBinaryV2.SENSOR_TYPE_DOOR_WINDOW),
zwave.manufacturerSpecificV2.manufacturerSpecificGet()
], 1000)
zwave.manufacturerSpecificV2.manufacturerSpecificGet(),
zwave.batteryV1.batteryGet()
], 6000)
}
def sensorValueEvent(value) {
@@ -190,17 +184,11 @@ def zwaveEvent(physicalgraph.zwave.commands.wakeupv1.WakeUpNotification cmd)
cmds << command(zwave.manufacturerSpecificV2.manufacturerSpecificGet())
cmds << "delay 1200"
}
if (device.currentValue("contact") == null) { // Incase our initial request didn't make it
cmds << command(zwave.sensorBinaryV2.sensorBinaryGet(sensorType: zwave.sensorBinaryV2.SENSOR_TYPE_DOOR_WINDOW))
}
if (!state.lastbat || now() - state.lastbat > 53*60*60*1000) {
cmds << command(zwave.batteryV1.batteryGet())
} else { // If we check the battery state we will send NoMoreInfo in the handler for BatteryReport so that we definitely get the report
} else {
cmds << zwave.wakeUpV1.wakeUpNoMoreInformation().format()
}
[event, response(cmds)]
}

View File

@@ -26,24 +26,7 @@ metadata {
fingerprint deviceId: "0x4003", inClusters: "0x98"
fingerprint deviceId: "0x4004", inClusters: "0x98"
fingerprint mfr:"0090", prod:"0001", model:"0236", deviceJoinName: "KwikSet SmartCode 910 Deadbolt Door Lock"
fingerprint mfr:"0090", prod:"0003", model:"0238", deviceJoinName: "KwikSet SmartCode 910 Deadbolt Door Lock"
fingerprint mfr:"0090", prod:"0001", model:"0001", deviceJoinName: "KwikSet SmartCode 910 Contemporary Deadbolt Door Lock"
fingerprint mfr:"0090", prod:"0003", model:"0339", deviceJoinName: "KwikSet SmartCode 912 Lever Door Lock"
fingerprint mfr:"0090", prod:"0003", model:"4006", deviceJoinName: "KwikSet SmartCode 914 Deadbolt Door Lock" //backlit version
fingerprint mfr:"0090", prod:"0003", model:"0440", deviceJoinName: "KwikSet SmartCode 914 Deadbolt Door Lock"
fingerprint mfr:"0090", prod:"0001", model:"0642", deviceJoinName: "KwikSet SmartCode 916 Touchscreen Deadbolt Door Lock"
fingerprint mfr:"0090", prod:"0003", model:"0642", deviceJoinName: "KwikSet SmartCode 916 Touchscreen Deadbolt Door Lock"
fingerprint mfr:"003B", prod:"6341", model:"0544", deviceJoinName: "Schlage Camelot Touchscreen Deadbolt Door Lock"
fingerprint mfr:"003B", prod:"6341", model:"5044", deviceJoinName: "Schlage Century Touchscreen Deadbolt Door Lock"
fingerprint mfr:"003B", prod:"634B", model:"504C", deviceJoinName: "Schlage Connected Keypad Lever Door Lock"
fingerprint mfr:"0129", prod:"0002", model:"0800", deviceJoinName: "Yale Touchscreen Deadbolt Door Lock" // YRD120
fingerprint mfr:"0129", prod:"0002", model:"0000", deviceJoinName: "Yale Touchscreen Deadbolt Door Lock" // YRD220, YRD240
fingerprint mfr:"0129", prod:"0002", model:"FFFF", deviceJoinName: "Yale Touchscreen Lever Door Lock" // YRD220
fingerprint mfr:"0129", prod:"0004", model:"0800", deviceJoinName: "Yale Push Button Deadbolt Door Lock" // YRD110
fingerprint mfr:"0129", prod:"0004", model:"0000", deviceJoinName: "Yale Push Button Deadbolt Door Lock" // YRD210
fingerprint mfr:"0129", prod:"0001", model:"0000", deviceJoinName: "Yale Push Button Lever Door Lock" // YRD210
fingerprint mfr:"0129", prod:"8002", model:"0600", deviceJoinName: "Yale Assure Lock with Bluetooth"
fingerprint mfr:"0129", prod:"0002", model:"0000", deviceJoinName: "Yale Key Free Touchscreen Deadbolt"
}
simulator {
@@ -86,13 +69,13 @@ import physicalgraph.zwave.commands.doorlockv1.*
import physicalgraph.zwave.commands.usercodev1.*
def installed() {
// Device-Watch pings if no device events received for 1 hour (checkInterval)
sendEvent(name: "checkInterval", value: 1 * 60 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
// 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 pings if no device events received for 1 hour (checkInterval)
sendEvent(name: "checkInterval", value: 1 * 60 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
// 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])
try {
if (!state.init) {
state.init = true
@@ -152,10 +135,6 @@ def zwaveEvent(physicalgraph.zwave.commands.securityv1.SecurityCommandsSupported
def zwaveEvent(DoorLockOperationReport cmd) {
def result = []
unschedule("followupStateCheck")
unschedule("stateCheck")
def map = [ name: "lock" ]
if (cmd.doorLockMode == 0xFF) {
map.value = "locked"
@@ -369,7 +348,7 @@ def zwaveEvent(UserCodeReport cmd) {
code = state["set$name"] ?: decrypt(state[name]) ?: "****"
state.remove("set$name".toString())
} else {
map = [ name: "codeReport", value: cmd.userIdentifier, data: [ code: code ], isStateChange: true ]
map = [ name: "codeReport", value: cmd.userIdentifier, data: [ code: code ] ]
map.descriptionText = "$device.displayName code $cmd.userIdentifier is set"
map.displayed = (cmd.userIdentifier != state.requestCode && cmd.userIdentifier != state.pollCode)
map.isStateChange = true
@@ -460,12 +439,11 @@ def zwaveEvent(physicalgraph.zwave.commands.timev1.TimeGet cmd) {
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicSet cmd) {
// The old Schlage locks use group 1 for basic control - we don't want that, so unsubscribe from group 1
def result = [ createEvent(name: "lock", value: cmd.value ? "unlocked" : "locked") ]
def cmds = [
zwave.associationV1.associationRemove(groupingIdentifier:1, nodeId:zwaveHubNodeId).format(),
"delay 1200",
zwave.associationV1.associationGet(groupingIdentifier:2).format()
]
[result, response(cmds)]
result << response(zwave.associationV1.associationRemove(groupingIdentifier:1, nodeId:zwaveHubNodeId))
if (state.assoc != zwaveHubNodeId) {
result << response(zwave.associationV1.associationGet(groupingIdentifier:2))
}
result
}
def zwaveEvent(physicalgraph.zwave.commands.batteryv1.BatteryReport cmd) {
@@ -535,18 +513,11 @@ def unlockwtimeout() {
lockAndCheck(DoorLockOperationSet.DOOR_LOCK_MODE_DOOR_UNSECURED_WITH_TIMEOUT)
}
/**
* PING is used by Device-Watch in attempt to reach the Device
* */
def ping() {
runIn(30, followupStateCheck)
secure(zwave.doorLockV1.doorLockOperationGet())
}
def followupStateCheck() {
runEvery1Hour(stateCheck)
stateCheck()
}
def stateCheck() {
sendHubCommand(new physicalgraph.device.HubAction(secure(zwave.doorLockV1.doorLockOperationGet())))
refresh()
}
def refresh() {

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@@ -85,21 +85,11 @@ metadata {
details(["switch", "power", "energy", "levelSliderControl", "refresh", "reset"])
}
def getCommandClassVersions() {
[
0x20: 1, // Basic
0x26: 3, // SwitchMultilevel
0x56: 1, // Crc16Encap
0x70: 1, // Configuration
0x32: 3, // Meter
]
}
// parse events into attributes
def parse(String description) {
def result = null
if (description != "updated") {
def cmd = zwave.parse(description, commandClassVersions)
def cmd = zwave.parse(description, [0x20: 1, 0x26: 3, 0x70: 1, 0x32:3])
if (cmd) {
result = zwaveEvent(cmd)
log.debug("'$description' parsed to $result")
@@ -134,21 +124,6 @@ def zwaveEvent(physicalgraph.zwave.commands.switchmultilevelv3.SwitchMultilevelR
dimmerEvents(cmd)
}
def zwaveEvent(physicalgraph.zwave.commands.crc16encapv1.Crc16Encap cmd) {
def versions = commandClassVersions
def version = versions[cmd.commandClass as Integer]
def ccObj = version ? zwave.commandClass(cmd.commandClass, version) : zwave.commandClass(cmd.commandClass)
def encapsulatedCommand = ccObj?.command(cmd.command)?.parse(cmd.data)
if (encapsulatedCommand) {
zwaveEvent(encapsulatedCommand)
}
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
// Handles all Z-Wave commands we aren't interested in
[:]
}
def dimmerEvents(physicalgraph.zwave.Command cmd) {
def result = []
def value = (cmd.value ? "on" : "off")

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@@ -89,19 +89,10 @@ def updated() {
} catch (e) { log.debug e }
}
def getCommandClassVersions() {
[
0x20: 1, // Basic
0x32: 1, // SwitchMultilevel
0x56: 1, // Crc16Encap
0x72: 2, // ManufacturerSpecific
]
}
def parse(String description) {
def result = null
if(description == "updated") return
def cmd = zwave.parse(description, commandClassVersions)
def cmd = zwave.parse(description, [0x20: 1, 0x32: 1, 0x72: 2])
if (cmd) {
result = zwaveEvent(cmd)
}
@@ -166,16 +157,6 @@ def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerS
result
}
def zwaveEvent(physicalgraph.zwave.commands.crc16encapv1.Crc16Encap cmd) {
def versions = commandClassVersions
def version = versions[cmd.commandClass as Integer]
def ccObj = version ? zwave.commandClass(cmd.commandClass, version) : zwave.commandClass(cmd.commandClass)
def encapsulatedCommand = ccObj?.command(cmd.command)?.parse(cmd.data)
if (encapsulatedCommand) {
zwaveEvent(encapsulatedCommand)
}
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
log.debug "$device.displayName: Unhandled: $cmd"
[:]

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@@ -29,7 +29,7 @@ metadata {
fingerprint mfr: "0060", prod: "0001", model: "0002", deviceJoinName: "Everspring Motion Sensor" // Everspring SP814
fingerprint mfr: "0060", prod: "0001", model: "0003", deviceJoinName: "Everspring Motion Sensor" // Everspring HSP02
fingerprint mfr: "011A", prod: "0601", model: "0901", deviceJoinName: "Enerwave Motion Sensor" // Enerwave ZWN-BPC
fingerprint mfr: "0063", prod: "4953", model: "3133", deviceJoinName: "GE Portable Smart Motion Sensor"
fingerprint mfr: "0063", prod: "4953", model: "3133", deviceJoinName: "GE Smart Motion Sensor"
}
simulator {

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@@ -37,8 +37,8 @@ metadata {
tiles {
standardTile("motion", "device.motion", width: 3, height: 2) {
state "active", label:'motion', icon:"st.motion.motion.active", backgroundColor:"#00A0DC"
state "inactive", label:'no motion', icon:"st.motion.motion.inactive", backgroundColor:"#CCCCCC"
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", inactiveLabel: false) {

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@@ -16,7 +16,7 @@
* Date: 2014-07-15
*/
metadata {
definition (name: "Z-Wave Siren", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "x.com.st.d.sensor.smoke") {
definition (name: "Z-Wave Siren", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Alarm"
capability "Battery"
@@ -72,7 +72,7 @@ def createEvents(physicalgraph.zwave.commands.batteryv1.BatteryReport cmd) {
def poll() {
if (secondsPast(state.lastbatt, 36*60*60)) {
return zwave.batteryV1.batteryGet().format()
return zwave.batteryV1.batteryGet().format
} else {
return null
}

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@@ -22,7 +22,6 @@ metadata {
attribute "alarmState", "string"
fingerprint deviceId: "0xA100", inClusters: "0x20,0x80,0x70,0x85,0x71,0x72,0x86"
fingerprint mfr:"0138", prod:"0001", model:"0001", deviceJoinName: "First Alert Smoke Detector"
fingerprint mfr:"0138", prod:"0001", model:"0002", deviceJoinName: "First Alert Smoke Detector and Carbon Monoxide Alarm (ZCOMBO)"
}

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@@ -71,17 +71,9 @@ def updated(){
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def getCommandClassVersions() {
[
0x20: 1, // Basic
0x56: 1, // Crc16Encap
0x70: 1, // Configuration
]
}
def parse(String description) {
def result = null
def cmd = zwave.parse(description, commandClassVersions)
def cmd = zwave.parse(description, [0x20: 1, 0x70: 1])
if (cmd) {
result = createEvent(zwaveEvent(cmd))
}
@@ -128,15 +120,6 @@ def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerS
createEvent([descriptionText: "$device.displayName MSR: $msr", isStateChange: false])
}
def zwaveEvent(physicalgraph.zwave.commands.crc16encapv1.Crc16Encap cmd) {
def versions = commandClassVersions
def version = versions[cmd.commandClass as Integer]
def ccObj = version ? zwave.commandClass(cmd.commandClass, version) : zwave.commandClass(cmd.commandClass)
def encapsulatedCommand = ccObj?.command(cmd.command)?.parse(cmd.data)
if (encapsulatedCommand) {
zwaveEvent(encapsulatedCommand)
}
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
// Handles all Z-Wave commands we aren't interested in

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@@ -89,17 +89,9 @@ def updated(){
}
}
def getCommandClassVersions() {
[
0x20: 1, // Basic
0x56: 1, // Crc16Encap
0x70: 1, // Configuration
]
}
def parse(String description) {
def result = null
def cmd = zwave.parse(description, commandClassVersions)
def cmd = zwave.parse(description, [0x20: 1, 0x70: 1])
if (cmd) {
result = createEvent(zwaveEvent(cmd))
}
@@ -146,16 +138,6 @@ def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerS
createEvent([descriptionText: "$device.displayName MSR: $msr", isStateChange: false])
}
def zwaveEvent(physicalgraph.zwave.commands.crc16encapv1.Crc16Encap cmd) {
def versions = commandClassVersions
def version = versions[cmd.commandClass as Integer]
def ccObj = version ? zwave.commandClass(cmd.commandClass, version) : zwave.commandClass(cmd.commandClass)
def encapsulatedCommand = ccObj?.command(cmd.command)?.parse(cmd.data)
if (encapsulatedCommand) {
zwaveEvent(encapsulatedCommand)
}
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
// Handles all Z-Wave commands we aren't interested in

View File

@@ -15,9 +15,10 @@ metadata {
definition (name: "Z-Wave Thermostat", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Temperature Measurement"
capability "Relative Humidity Measurement"
capability "Thermostat"
capability "Configuration"
capability "Refresh"
capability "Polling"
capability "Sensor"
capability "Health Check"
@@ -116,7 +117,7 @@ metadata {
state "cool", label:'${currentValue}° cool', backgroundColor:"#ffffff"
}
standardTile("refresh", "device.thermostatMode", inactiveLabel: false, decoration: "flat") {
state "default", action:"refresh.refresh", icon:"st.secondary.refresh"
state "default", action:"polling.poll", icon:"st.secondary.refresh"
}
main "temperature"
details(["temperature", "mode", "fanMode", "heatSliderControl", "heatingSetpoint", "coolSliderControl", "coolingSetpoint", "refresh"])
@@ -124,20 +125,13 @@ metadata {
}
def installed(){
sendHubCommand(new physicalgraph.device.HubAction(zwave.thermostatModeV2.thermostatModeSupportedGet().format()))
initialize()
// 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(){
initialize()
}
def initialize() {
// 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])
unschedule()
runEvery5Minutes("refresh")
refresh()
}
def parse(String description)
@@ -155,7 +149,6 @@ def parse(String description)
]
if (map.name == "thermostatMode") {
state.lastTriedMode = map.value
map.data = [supportedThermostatModes:state.supportedThermostatModes]
if (map.value == "cool") {
map2.value = device.latestValue("coolingSetpoint")
log.info "THERMOSTAT, latest cooling setpoint = ${map2.value}"
@@ -179,7 +172,6 @@ def parse(String description)
}
} else if (map.name == "thermostatFanMode" && map.isStateChange) {
state.lastTriedFanMode = map.value
map.data = [supportedThermostatFanModes: state.supportedThermostatFanModes]
}
log.debug "Parse returned $result"
result
@@ -313,26 +305,26 @@ def zwaveEvent(physicalgraph.zwave.commands.thermostatfanmodev3.ThermostatFanMod
}
def zwaveEvent(physicalgraph.zwave.commands.thermostatmodev2.ThermostatModeSupportedReport cmd) {
def supportedModes = []
if(cmd.off) { supportedModes << "off" }
if(cmd.heat) { supportedModes << "heat" }
if(cmd.cool) { supportedModes << "cool" }
if(cmd.auto) { supportedModes << "auto" }
if(cmd.auxiliaryemergencyHeat) { supportedModes << "emergency heat" }
def supportedModes = ""
if(cmd.off) { supportedModes += "off " }
if(cmd.heat) { supportedModes += "heat " }
if(cmd.auxiliaryemergencyHeat) { supportedModes += "emergency heat " }
if(cmd.cool) { supportedModes += "cool " }
if(cmd.auto) { supportedModes += "auto " }
state.supportedThermostatModes = supportedModes
sendEvent(name: "supportedThermostatModes", value: supportedModes, displayed: false)
state.supportedModes = supportedModes
// No events to be generated, return empty map
return [:]
}
def zwaveEvent(physicalgraph.zwave.commands.thermostatfanmodev3.ThermostatFanModeSupportedReport cmd) {
def supportedFanModes = []
if(cmd.auto) { supportedFanModes << "auto" } // "fanAuto "
if(cmd.circulation) { supportedFanModes << "circulate" } // "fanCirculate"
if(cmd.low) { supportedFanModes << "on" } // "fanOn"
def supportedFanModes = ""
if(cmd.auto) { supportedFanModes += "auto " } // "fanAuto "
if(cmd.low) { supportedFanModes += "on " } // "fanOn"
if(cmd.circulation) { supportedFanModes += "circulate " } // "fanCirculate"
state.supportedThermostatFanModes = supportedFanModes
sendEvent(name: "supportedThermostatFanModes", value: supportedFanModes, displayed: false)
state.supportedFanModes = supportedFanModes
// No events to be generated, return empty map
return [:]
}
@@ -345,17 +337,15 @@ def zwaveEvent(physicalgraph.zwave.Command cmd) {
}
// Command Implementations
def refresh() {
def cmds = []
cmds << new physicalgraph.device.HubAction(zwave.thermostatModeV2.thermostatModeSupportedGet().format())
cmds << new physicalgraph.device.HubAction(zwave.thermostatFanModeV3.thermostatFanModeSupportedGet().format())
cmds << new physicalgraph.device.HubAction(zwave.thermostatModeV2.thermostatModeGet().format())
cmds << new physicalgraph.device.HubAction(zwave.thermostatFanModeV3.thermostatFanModeGet().format())
cmds << new physicalgraph.device.HubAction(zwave.sensorMultilevelV2.sensorMultilevelGet().format()) // current temperature
cmds << new physicalgraph.device.HubAction(zwave.thermostatOperatingStateV1.thermostatOperatingStateGet().format())
cmds << new physicalgraph.device.HubAction(zwave.thermostatSetpointV1.thermostatSetpointGet(setpointType: 1).format())
cmds << new physicalgraph.device.HubAction(zwave.thermostatSetpointV1.thermostatSetpointGet(setpointType: 2).format())
sendHubCommand(cmds)
def poll() {
delayBetween([
zwave.sensorMultilevelV3.sensorMultilevelGet().format(), // current temperature
zwave.thermostatSetpointV1.thermostatSetpointGet(setpointType: 1).format(),
zwave.thermostatSetpointV1.thermostatSetpointGet(setpointType: 2).format(),
zwave.thermostatModeV2.thermostatModeGet().format(),
zwave.thermostatFanModeV3.thermostatFanModeGet().format(),
zwave.thermostatOperatingStateV1.thermostatOperatingStateGet().format()
], 2300)
}
def quickSetHeat(degrees) {
@@ -426,14 +416,28 @@ def ping() {
poll()
}
def configure() {
delayBetween([
zwave.thermostatModeV2.thermostatModeSupportedGet().format(),
zwave.thermostatFanModeV3.thermostatFanModeSupportedGet().format(),
zwave.associationV1.associationSet(groupingIdentifier:1, nodeId:[zwaveHubNodeId]).format(),
zwave.sensorMultilevelV3.sensorMultilevelGet().format(), // current temperature
zwave.thermostatSetpointV1.thermostatSetpointGet(setpointType: 1).format(),
zwave.thermostatSetpointV1.thermostatSetpointGet(setpointType: 2).format(),
zwave.thermostatModeV2.thermostatModeGet().format(),
zwave.thermostatFanModeV3.thermostatFanModeGet().format(),
zwave.thermostatOperatingStateV1.thermostatOperatingStateGet().format()
], 2300)
}
def modes() {
return state.supportedThermostatModes
["off", "heat", "cool", "auto", "emergency heat"]
}
def switchMode() {
def currentMode = device.currentState("thermostatMode")?.value
def lastTriedMode = state.lastTriedMode ?: currentMode ?: ["off"]
def supportedModes = getDataByName("supportedThermostatModes")
def lastTriedMode = state.lastTriedMode ?: currentMode ?: "off"
def supportedModes = getDataByName("supportedModes")
def modeOrder = modes()
def next = { modeOrder[modeOrder.indexOf(it) + 1] ?: modeOrder[0] }
def nextMode = next(lastTriedMode)
@@ -450,7 +454,7 @@ def switchMode() {
}
def switchToMode(nextMode) {
def supportedModes = getDataByName("supportedThermostatModes")
def supportedModes = getDataByName("supportedModes")
if(supportedModes && !supportedModes.contains(nextMode)) log.warn "thermostat mode '$nextMode' is not supported"
if (nextMode in modes()) {
state.lastTriedMode = nextMode
@@ -462,9 +466,9 @@ def switchToMode(nextMode) {
def switchFanMode() {
def currentMode = device.currentState("thermostatFanMode")?.value
def lastTriedMode = state.lastTriedFanMode ?: currentMode ?: ["off"]
def supportedModes = getDataByName("supportedThermostatFanModes") ?: ["auto", "on"]
def modeOrder = state.supportedThermostatFanModes
def lastTriedMode = state.lastTriedFanMode ?: currentMode ?: "off"
def supportedModes = getDataByName("supportedFanModes") ?: "auto on" // "fanAuto fanOn"
def modeOrder = ["auto", "circulate", "on"] // "fanAuto", "fanCirculate", "fanOn"
def next = { modeOrder[modeOrder.indexOf(it) + 1] ?: modeOrder[0] }
def nextMode = next(lastTriedMode)
while (!supportedModes?.contains(nextMode) && nextMode != "auto") { // "fanAuto"
@@ -474,7 +478,7 @@ def switchFanMode() {
}
def switchToFanMode(nextMode) {
def supportedFanModes = getDataByName("supportedThermostatFanModes")
def supportedFanModes = getDataByName("supportedFanModes")
if(supportedFanModes && !supportedFanModes.contains(nextMode)) log.warn "thermostat mode '$nextMode' is not supported"
def returnCommand

View File

@@ -12,7 +12,7 @@
*
*/
metadata {
definition (name: "Z-Wave Water Valve", namespace: "smartthings", author: "SmartThings", ocfDeviceType: "oic.d.watervalve") {
definition (name: "Z-Wave Water Valve", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Health Check"
capability "Valve"
@@ -37,7 +37,7 @@ metadata {
// tile definitions
tiles(scale: 2) {
multiAttributeTile(name:"valve", type: "generic", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.valve", key: "PRIMARY_CONTROL") {
tileAttribute ("device.contact", key: "PRIMARY_CONTROL") {
attributeState "open", label: '${name}', action: "valve.close", icon: "st.valves.water.open", backgroundColor: "#00A0DC", nextState:"closing"
attributeState "closed", label: '${name}', action: "valve.open", icon: "st.valves.water.closed", backgroundColor: "#ffffff", nextState:"opening"
attributeState "opening", label: '${name}', action: "valve.close", icon: "st.valves.water.open", backgroundColor: "#00A0DC"
@@ -45,7 +45,7 @@ metadata {
}
}
standardTile("refresh", "device.valve", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
standardTile("refresh", "device.contact", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
state "default", label:'', action:"refresh.refresh", icon:"st.secondary.refresh"
}
@@ -58,7 +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])
response(refresh())
}
def updated() {
@@ -69,19 +68,18 @@ def updated() {
def parse(String description) {
log.trace "parse description : $description"
def result = null
def cmd = zwave.parse(description, [0x20: 1])
if (cmd) {
return zwaveEvent(cmd)
result = createEvent(zwaveEvent(cmd))
}
log.debug "Could not parse message"
return null
log.debug "Parse returned ${result?.descriptionText}"
return result
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicReport cmd) {
def value = cmd.value == 0xFF ? "open" : cmd.value == 0x00 ? "closed" : "unknown"
return [createEventWithDebug([name: "contact", value: value, descriptionText: "$device.displayName valve is $value"]),
createEventWithDebug([name: "valve", value: value, descriptionText: "$device.displayName valve is $value"])]
def value = cmd.value == 0xFF ? "open" : cmd.value == 0x00 ? "closed" : "unknown"
[name: "contact", value: value, descriptionText: "$device.displayName valve is $value"]
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd) { //TODO should show MSR when device is discovered
@@ -91,22 +89,20 @@ def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerS
log.debug "productTypeId: ${cmd.productTypeId}"
def msr = String.format("%04X-%04X-%04X", cmd.manufacturerId, cmd.productTypeId, cmd.productId)
updateDataValue("MSR", msr)
return createEventWithDebug([descriptionText: "$device.displayName MSR: $msr", isStateChange: false])
[descriptionText: "$device.displayName MSR: $msr", isStateChange: false]
}
def zwaveEvent(physicalgraph.zwave.commands.deviceresetlocallyv1.DeviceResetLocallyNotification cmd) {
return createEventWithDebug([descriptionText: cmd.toString(), isStateChange: true, displayed: true])
[descriptionText: cmd.toString(), isStateChange: true, displayed: true]
}
def zwaveEvent(physicalgraph.zwave.commands.switchbinaryv1.SwitchBinaryReport cmd) {
def value = cmd.value == 0xFF ? "open" : cmd.value == 0x00 ? "closed" : "unknown"
return [createEventWithDebug([name: "contact", value: value, descriptionText: "$device.displayName valve is $value"]),
createEventWithDebug([name: "valve", value: value, descriptionText: "$device.displayName valve is $value"])]
[name: "contact", value: value, descriptionText: "$device.displayName valve is $value"]
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
return createEvent([:]) // Handles all Z-Wave commands we aren't interested in
[:] // Handles all Z-Wave commands we aren't interested in
}
def open() {
@@ -142,9 +138,3 @@ def refresh() {
}
delayBetween(commands,100)
}
def createEventWithDebug(eventMap) {
def event = createEvent(eventMap)
log.debug "Event created with ${event?.descriptionText}"
return event
}

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@@ -195,10 +195,7 @@ def registerDeviceChange() {
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
// For now, we will only have one subscription endpoint per device
state.deviceSubscriptionMap.remove(deviceId)
state.deviceSubscriptionMap.put(deviceId, [subscriptionEndpt])
state.deviceSubscriptionMap[deviceId] << subscriptionEndpt
log.info "Added subscription URL: ${subscriptionEndpt} for ${myDevice.displayName}"
}

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@@ -1,5 +1,3 @@
//DEPRECATED. INTEGRATION MOVED TO SUPER LAN CONNECT
/**
* Bose SoundTouch (Connect)
*

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@@ -27,9 +27,10 @@ definition(
preferences {
page(name: "selectButton")
for (def i=1; i<=8; i++) {
page(name: "configureButton$i")
}
page(name: "configureButton1")
page(name: "configureButton2")
page(name: "configureButton3")
page(name: "configureButton4")
page(name: "timeIntervalInput", title: "Only during a certain time") {
section {
@@ -59,45 +60,22 @@ def selectButton() {
}
}
def createPage(pageNum) {
if ((state.numButton == pageNum) || (pageNum == 8))
state.installCondition = true
dynamicPage(name: "configureButton$pageNum", title: "Set up button $pageNum here",
nextPage: "configureButton${pageNum+1}", install: state.installCondition, uninstall: configured(), getButtonSections(pageNum))
}
def configureButton1() {
state.numButton = buttonDevice.currentState("numberOfButtons")?.longValue ?: 4
log.debug "state variable numButton: ${state.numButton}"
state.installCondition = false
createPage(1)
dynamicPage(name: "configureButton1", title: "Now let's decide how to use the first button",
nextPage: "configureButton2", uninstall: configured(), getButtonSections(1))
}
def configureButton2() {
createPage(2)
dynamicPage(name: "configureButton2", title: "If you have a second button, set it up here",
nextPage: "configureButton3", uninstall: configured(), getButtonSections(2))
}
def configureButton3() {
createPage(3)
dynamicPage(name: "configureButton3", title: "If you have a third button, you can do even more here",
nextPage: "configureButton4", uninstall: configured(), getButtonSections(3))
}
def configureButton4() {
createPage(4)
}
def configureButton5() {
createPage(5)
}
def configureButton6() {
createPage(6)
}
def configureButton7() {
createPage(7)
}
def configureButton8() {
createPage(8)
dynamicPage(name: "configureButton4", title: "If you have a fourth button, you rule, and can set it up here",
install: true, uninstall: true, getButtonSections(4))
}
def getButtonSections(buttonNumber) {

View File

@@ -202,8 +202,7 @@ def inputSelectionPage() {
section("options variations") {
paragraph "tap these elements and look at the differences when selecting an option"
input(type: "enum", name: "selectionSimple", title: "Simple options", description: "no separators in the selectable options", options: ["Thing 1", "Thing 2", "(Complicated) Thing 3"])
input(type: "enum", name: "selectionSimpleGrouped", title: "Simple (Grouped) options", description: "no separators in the selectable options", groupedOptions: addGroup(englishOptions + spanishOptions))
input(type: "enum", name: "selectionSimple", title: "Simple options", description: "no separators in the selectable options", groupedOptions: addGroup(englishOptions + spanishOptions))
input(type: "enum", name: "selectionGrouped", title: "Grouped options", description: "separate groups of options with headers", groupedOptions: groupedOptions)
}
@@ -215,15 +214,15 @@ def inputSelectionPage() {
section("segmented") {
paragraph "segmented should only work if there are either 2 or 3 options to choose from"
input(type: "enum", name: "selectionSegmented1", style: "segmented", title: "1 option", options: ["One"])
input(type: "enum", name: "selectionSegmented4", style: "segmented", title: "4 options", options: ["One", "Two", "Three", "Four"])
input(type: "enum", name: "selectionSegmented1", style: "segmented", title: "1 option", groupedOptions: addGroup(["One"]))
input(type: "enum", name: "selectionSegmented4", style: "segmented", title: "4 options", groupedOptions: addGroup(["One", "Two", "Three", "Four"]))
paragraph "multiple and required will have no effect on segmented selection elements. There will always be exactly 1 option selected"
input(type: "enum", name: "selectionSegmented2", style: "segmented", title: "2 options", options: ["One", "Two"])
input(type: "enum", name: "selectionSegmented3", style: "segmented", title: "3 options", options: ["One", "Two", "Three"])
paragraph "specifying defaultValue still works with segmented selection elements"
input(type: "enum", name: "selectionSegmentedWithDefault", style: "segmented", title: "defaulted to 'two'", options: ["One", "Two", "Three"], defaultValue: "Two")
input(type: "enum", name: "selectionSegmentedWithDefault", title: "defaulted to 'two'", groupedOptions: addGroup(["One", "Two", "Three"]), defaultValue: "Two")
}
section("required: true") {
@@ -232,8 +231,6 @@ def inputSelectionPage() {
section("multiple: true") {
input(type: "enum", name: "selectionMultiple", title: "This allows multiple selections", description: "It should look different when nothing is selected", groupedOptions: addGroup(["an option", "another option", "no way, one more?"]), multiple: true)
input(type: "enum", name: "selectionMultipleDefault1", title: "This allows multiple selections with a single default", description: "It should look different when nothing is selected", groupedOptions: addGroup(["an option", "another option", "no way, one more?"]), multiple: true, defaultValue: "an option")
input(type: "enum", name: "selectionMultipleDefault2", title: "This allows multiple selections with multiple defaults", description: "It should look different when nothing is selected", groupedOptions: addGroup(["an option", "another option", "no way, one more?"]), multiple: true, defaultValue: ["an option", "another option"])
}
section("with image") {

View File

@@ -1,5 +1,3 @@
//DEPRECATED. INTEGRATION MOVED TO SUPER LAN CONNECT
/**
* Hue Service Manager
*
@@ -1085,6 +1083,7 @@ def on(childDevice) {
log.debug "Executing 'on'"
def id = getId(childDevice)
updateInProgress()
createSwitchEvent(childDevice, "on")
put("lights/$id/state", [on: true])
return "Bulb is turning On"
}
@@ -1093,6 +1092,7 @@ def off(childDevice) {
log.debug "Executing 'off'"
def id = getId(childDevice)
updateInProgress()
createSwitchEvent(childDevice, "off")
put("lights/$id/state", [on: false])
return "Bulb is turning Off"
}
@@ -1108,6 +1108,8 @@ def setLevel(childDevice, percent) {
else
level = Math.min(Math.round(percent * 254 / 100), 254)
createSwitchEvent(childDevice, level > 0, percent)
// For Zigbee lights, if level is set to 0 ST just turns them off without changing level
// that means that the light will still be on when on is called next time
// Lets emulate that here
@@ -1126,6 +1128,7 @@ def setSaturation(childDevice, percent) {
// 0 - 254
def level = Math.min(Math.round(percent * 254 / 100), 254)
// TODO should this be done by app only or should we default to on?
createSwitchEvent(childDevice, "on")
put("lights/$id/state", [sat: level, on: true])
return "Setting saturation to $percent"
}
@@ -1137,6 +1140,7 @@ def setHue(childDevice, percent) {
// 0 - 65535
def level = Math.min(Math.round(percent * 65535 / 100), 65535)
// TODO should this be done by app only or should we default to on?
createSwitchEvent(childDevice, "on")
put("lights/$id/state", [hue: level, on: true])
return "Setting hue to $percent"
}
@@ -1147,6 +1151,7 @@ def setColorTemperature(childDevice, huesettings) {
updateInProgress()
// 153 (6500K) to 500 (2000K)
def ct = hueSettings == 6500 ? 153 : Math.round(1000000 / huesettings)
createSwitchEvent(childDevice, "on")
put("lights/$id/state", [ct: ct, on: true])
return "Setting color temperature to $ct"
}
@@ -1205,6 +1210,7 @@ def setColor(childDevice, huesettings) {
if (huesettings.switch == "off")
value.on = false
createSwitchEvent(childDevice, value.on ? "on" : "off")
put("lights/$id/state", value)
return "Setting color to $value"
}
@@ -1316,6 +1322,32 @@ private List getRealHubFirmwareVersions() {
return location.hubs*.firmwareVersionString.findAll { it }
}
/**
* Sends appropriate turningOn/turningOff state events depending on switch or level changes.
*
* @param childDevice device to send event for
* @param setSwitch The new switch state, "on" or "off"
* @param setLevel Optional, switchLevel between 0-100, used if you set level to 0 for example since
* that should generate "off" instead of level change
*/
private void createSwitchEvent(childDevice, setSwitch, setLevel = null) {
if (setLevel == null) {
setLevel = childDevice.device?.currentValue("level")
}
// Create on, off, turningOn or turningOff event as necessary
def currentState = childDevice.device?.currentValue("switch")
if ((currentState == "off" || currentState == "turningOff")) {
if (setSwitch == "on" || setLevel > 0) {
childDevice.sendEvent(name: "switch", value: "turningOn", displayed: false)
}
} else if ((currentState == "on" || currentState == "turningOn")) {
if (setSwitch == "off" || setLevel == 0) {
childDevice.sendEvent(name: "switch", value: "turningOff", displayed: false)
}
}
}
/**
* Return the supported color range for different Hue lights. If model is not specified
* it defaults to the smallest Gamut (B) to ensure that colors set on a mix of devices

View File

@@ -72,7 +72,7 @@ def authPage() {
log.debug "have LIFX access token"
def options = locationOptions() ?: []
def count = options.size().toString()
def count = options.size()
return dynamicPage(name:"Credentials", title:"", nextPage:"", install:true, uninstall: true) {
section("Select your location") {

View File

@@ -98,7 +98,7 @@ def motionHandler(evt) {
else {
state.motionStopTime = now()
if(delayMinutes) {
runIn(delayMinutes*60, turnOffMotionAfterDelay, [overwrite: true])
runIn(delayMinutes*60, turnOffMotionAfterDelay, [overwrite: false])
} else {
turnOffMotionAfterDelay()
}

View File

@@ -1,5 +1,3 @@
//DEPRECATED. INTEGRATION MOVED TO SUPER LAN CONNECT
/**
* Copyright 2015 SmartThings
*

View File

@@ -296,7 +296,10 @@ def pageHistory() {
if (history.size() == 0) {
paragraph "No history available."
} else {
paragraph "Not implemented"
history.each() {
def text = "" + new Date(it.time + location.timeZone.rawOffset ).format("yyyy-MM-dd HH:mm") + ": " + it.event + " - " + it.description
paragraph text
}
}
}
}
@@ -405,6 +408,7 @@ def pageConfigureZones() {
section("${it.displayName} (contact)") {
input "type_${devId}", "enum", title:"Zone Type", metadata:[values:zoneTypes], defaultValue:"exterior"
input "delay_${devId}", "bool", title:"Entry/Exit Delays", defaultValue:true
input "chime_${devId}", "bool", title:"Chime on open", defaultValue:true
}
}
}
@@ -416,6 +420,7 @@ def pageConfigureZones() {
section("${it.displayName} (motion)") {
input "type_${devId}", "enum", title:"Zone Type", metadata:[values:zoneTypes], defaultValue:"interior"
input "delay_${devId}", "bool", title:"Entry/Exit Delays", defaultValue:false
input "chime_${devId}", "bool", title:"Chime on motion", defaultValue:false
}
}
}
@@ -427,6 +432,7 @@ def pageConfigureZones() {
section("${it.displayName} (movement)") {
input "type_${devId}", "enum", title:"Zone Type", metadata:[values:zoneTypes], defaultValue:"interior"
input "delay_${devId}", "bool", title:"Entry/Exit Delays", defaultValue:false
input "chime_${devId}", "bool", title:"Chime on movement", defaultValue:false
}
}
}
@@ -438,6 +444,7 @@ def pageConfigureZones() {
section("${it.displayName} (smoke)") {
input "type_${devId}", "enum", title:"Zone Type", metadata:[values:zoneTypes], defaultValue:"alert"
input "delay_${devId}", "bool", title:"Entry/Exit Delays", defaultValue:false
input "chime_${devId}", "bool", title:"Chime on smoke", defaultValue:false
}
}
}
@@ -449,6 +456,7 @@ def pageConfigureZones() {
section("${it.displayName} (moisture)") {
input "type_${devId}", "enum", title:"Zone Type", metadata:[values:zoneTypes], defaultValue:"alert"
input "delay_${devId}", "bool", title:"Entry/Exit Delays", defaultValue:false
input "chime_${devId}", "bool", title:"Chime on water", defaultValue:false
}
}
}
@@ -471,6 +479,14 @@ def pageArmingOptions() {
"is armed without setting off an alarm. You can optionally disable " +
"entry and exit delay when the alarm is armed in Stay mode."
def inputKeypads = [
name: "keypads",
type: "capability.lockCodes",
title: "Keypads for Exit / Entry delay",
multiple: true,
required: false
]
def inputAwayModes = [
name: "awayModes",
type: "mode",
@@ -507,10 +523,19 @@ def pageArmingOptions() {
def inputDelayStay = [
name: "stayDelayOff",
type: "bool",
title: "Disable delays in Stay mode",
title: "Disable alarm (entry) delay in Stay mode",
defaultValue: false,
required: true
]
def inputExitDelayStay = [
name: "stayExitDelayOff",
type: "bool",
title: "Disable arming (exit) delay in Stay mode",
defaultValue: true,
required: true
]
def pageProperties = [
name: "pageArmingOptions",
@@ -524,16 +549,21 @@ def pageArmingOptions() {
paragraph helpArming
}
section("Keypads") {
input inputKeypads
}
section("Modes") {
input inputAwayModes
input inputStayModes
input inputDisarmModes
}
section("Exit and Entry Delay") {
paragraph helpDelay
input inputDelay
input inputDelayStay
input inputExitDelayStay
}
}
}
@@ -563,6 +593,14 @@ def pageAlarmOptions() {
defaultValue: "Both"
]
def inputSirenEntryStrobe = [
name: "sirenEntryStrobe",
type: "bool",
title: "Strobe siren during entry delay",
defaultValue: true,
required: true
]
def inputSwitches = [
name: "switches",
type: "capability.switch",
@@ -602,6 +640,7 @@ def pageAlarmOptions() {
section("Sirens") {
input inputAlarms
input inputSirenMode
input inputSirenEntryStrobe
}
section("Switches") {
input inputSwitches
@@ -624,7 +663,49 @@ def pageNotifications() {
"disarmed or when an alarm is set off. Notifications can be send " +
"using either Push messages, SMS (text) messages and Pushbullet " +
"messaging service. Smart Alarm can also notify you with sounds or " +
"voice alerts using compatible audio devices, such as Sonos."
"voice alerts using compatible audio devices, such as Sonos." +
"Or using a SmartAlarm dashboard virtual device."
def inputNotificationDevice = [
name: "notificationDevice",
type: "capability.notification",
title: "Which smart alarm notification device?",
multiple: false,
required: false
]
def inputChimeDevices = [
name: "chimeDevices",
type: "capability.tone",
title: "Which Chime Devices?",
multiple: true,
required: false
]
def inputSirenOnWaterAlert = [
name: "sirenOnWaterAlert",
type: "bool",
title: "Use Siren for Water Leak?",
defaultValue: true,
required: true
]
def inputSirenOnSmokeAlert = [
name: "sirenOnSmokeAlert",
type: "bool",
title: "Use Siren for Smoke Alert?",
defaultValue: true,
required: true
]
def inputSirenOnIntrusionAlert = [
name: "sirenOnIntrusionAlert",
type: "bool",
title: "Use Siren for Intrusion Alert?",
defaultValue: true,
required: true
]
def inputPushAlarm = [
name: "pushMessage",
@@ -807,6 +888,19 @@ def pageNotifications() {
section("Notification Options") {
paragraph helpAbout
}
section("Notification Device")
{
input inputNotificationDevice
}
section("Chime Devices") {
input inputChimeDevices
}
section("Siren Notifcations")
{
input inputSirenOnWaterAlert
input inputSirenOnSmokeAlert
input inputSirenOnIntrusionAlert
}
section("Push Notifications") {
input inputPushAlarm
input inputPushStatus
@@ -1047,6 +1141,7 @@ private def setupInit() {
state.zones = []
state.alarms = []
state.history = []
state.alertType = "None"
} else {
def version = state.version as String
if (version == null || version.startsWith('1')) {
@@ -1065,7 +1160,7 @@ private def initialize() {
clearAlarm()
state.delay = settings.delay?.toInteger() ?: 30
state.offSwitches = []
state.history = []
//state.history = []
if (settings.awayModes?.contains(location.mode)) {
state.armed = true
@@ -1082,8 +1177,20 @@ private def initialize() {
initButtons()
initRestApi()
subscribe(location, onLocation)
if (settings.notificationDevice)
{
subscribe(settings.notificationDevice, "switch.off", gotDismissMessage)
}
STATE()
reportStatus()
}
def gotDismissMessage(evt)
{
log.debug "Got the dismiss message from the notification device.. clearing alarm!"
clearAlarm()
}
private def clearAlarm() {
@@ -1103,6 +1210,7 @@ private def clearAlarm() {
}
state.offSwitches = []
}
reportStatus()
}
private def initZones() {
@@ -1123,7 +1231,8 @@ private def initZones() {
deviceId: it.id,
sensorType: "contact",
zoneType: settings["type_${it.id}"] ?: "exterior",
delay: settings["delay_${it.id}"]
delay: settings["delay_${it.id}"],
chime: settings["chime_${it.id}"]
]
}
subscribe(settings.z_contact, "contact.open", onContact)
@@ -1135,7 +1244,8 @@ private def initZones() {
deviceId: it.id,
sensorType: "motion",
zoneType: settings["type_${it.id}"] ?: "interior",
delay: settings["delay_${it.id}"]
delay: settings["delay_${it.id}"],
chime: settings["chime_${it.id}"]
]
}
subscribe(settings.z_motion, "motion.active", onMotion)
@@ -1147,7 +1257,8 @@ private def initZones() {
deviceId: it.id,
sensorType: "acceleration",
zoneType: settings["type_${it.id}"] ?: "interior",
delay: settings["delay_${it.id}"]
delay: settings["delay_${it.id}"],
chime: settings["chime_${it.id}"]
]
}
subscribe(settings.z_movement, "acceleration.active", onMovement)
@@ -1159,7 +1270,8 @@ private def initZones() {
deviceId: it.id,
sensorType: "smoke",
zoneType: settings["type_${it.id}"] ?: "alert",
delay: settings["delay_${it.id}"]
delay: settings["delay_${it.id}"],
chime: settings["chime_${it.id}"]
]
}
subscribe(settings.z_smoke, "smoke.detected", onSmoke)
@@ -1174,7 +1286,8 @@ private def initZones() {
deviceId: it.id,
sensorType: "water",
zoneType: settings["type_${it.id}"] ?: "alert",
delay: settings["delay_${it.id}"]
delay: settings["delay_${it.id}"],
chime: settings["chime_${it.id}"]
]
}
subscribe(settings.z_water, "water.wet", onWater)
@@ -1257,20 +1370,37 @@ def onWater(evt) { onZoneEvent(evt, "water") }
private def onZoneEvent(evt, sensorType) {
LOG("onZoneEvent(${evt.displayName}, ${sensorType})")
state.alertType = sensorType
def zone = getZoneForDevice(evt.deviceId, sensorType)
if (!zone) {
log.warn "Cannot find zone for device ${evt.deviceId}"
state.alertType = "None"
return
}
if (zone.armed) {
state.alarms << evt.displayName
if (zone.zoneType == "alert" || !zone.delay || (state.stay && settings.stayDelayOff)) {
history("Alarm", "Alarm triggered by ${sensorType} sensor ${evt.displayName}")
activateAlarm()
} else {
history("Entry Delay", "Entry delay triggered by ${sensorType} sensor ${evt.displayName}")
if(settings.sirenEntryStrobe)
{
settings.alarms*.strobe()
}
keypads?.each() { it.setEntryDelay(state.delay) }
myRunIn(state.delay, activateAlarm)
}
}
else if (zone.chime)
{
chimeDevices?.each() {
it.beep()
}
}
}
def onLocation(evt) {
@@ -1311,23 +1441,27 @@ def onButtonEvent(evt) {
def armAway() {
LOG("armAway()")
history("Armed Away", "Alarm armed away")
if (!atomicState.armed || atomicState.stay) {
armPanel(false)
}
reportStatus()
}
def armStay() {
LOG("armStay()")
history("Armed Stay", "Alarm armed stay")
if (!atomicState.armed || !atomicState.stay) {
armPanel(true)
}
reportStatus()
}
def disarm() {
LOG("disarm()")
history("Disarmed", "Alarm disarmed")
if (atomicState.armed) {
state.armed = false
state.zones.each() {
@@ -1335,9 +1469,12 @@ def disarm() {
it.armed = false
}
}
keypads?.each() { it.setDisarmed() }
reset()
}
reportStatus()
}
def panic() {
@@ -1364,6 +1501,7 @@ def reset() {
notify(msg)
notifyVoice()
reportStatus()
}
def exitDelayExpired() {
@@ -1383,6 +1521,16 @@ def exitDelayExpired() {
it.armed = true
}
}
if(stay)
{
keypads?.each() { it.setArmedStay() }
}
else
{
keypads?.each() { it.setArmedAway() }
}
def msg = "${location.name}: all "
if (stay) {
@@ -1406,7 +1554,7 @@ private def armPanel(stay) {
state.zones.each() {
def zoneType = it.zoneType
if (zoneType == "exterior") {
if (it.delay) {
if (it.delay && !(stay && settings.stayExitDelayOff)) {
it.armed = false
armDelay = true
} else {
@@ -1424,10 +1572,22 @@ private def armPanel(stay) {
}
}
def delay = armDelay && !(stay && settings.stayDelayOff) ? atomicState.delay : 0
def delay = armDelay && !(stay && settings.stayExitDelayOff) ? atomicState.delay : 0
if (delay) {
keypads?.each() { it.setExitDelay(delay) }
myRunIn(delay, exitDelayExpired)
}
else
{
if(stay)
{
keypads?.each() { it.setArmedStay() }
}
else
{
keypads?.each() { it.setArmedAway() }
}
}
def mode = stay ? "STAY" : "AWAY"
def msg = "${location.name} "
@@ -1532,21 +1692,50 @@ def activateAlarm() {
log.warn "activateAlarm: false alarm"
return
}
history("Alarm", "Alarm Triggered")
switch (settings.sirenMode) {
case "Siren":
settings.alarms*.siren()
break
case "Strobe":
settings.alarms*.strobe()
break
case "Both":
settings.alarms*.both()
break
if(settings.sirenEntryStrobe)
{
settings.alarms*.off()
}
def atype = state.alertType
if ((atype == "Water" && settings.sirenOnWaterAlert) ||
(atype == "Smoke" && settings.sirenOnSmokeAlert) ||
((atype == "contact" || atype == "acceleration" || atype == "motion") && settings.sirenOnIntrusionAlert))
{
switch (settings.sirenMode) {
case "Siren":
settings.alarms*.siren()
break
case "Strobe":
settings.alarms*.strobe()
break
case "Both":
settings.alarms*.both()
break
}
}
else
{
log.debug "No siren for $atype Alert"
}
}
def activateAlarmPostDelay(String lastAlertType)
{
// no alarm check here as if door opens only for second with delay and system is not disarmed
// we still want alarm even if door is closed after delay.. Basically like real alarm the delay is only
// to disarm the system. Otherwise someone can open door come it, quickly close and there is not alarm LGK.
// issue here is that after delay we could have lost the alert type so pass it in
log.debug "activate alarm post delay check - alert type = $lastAlertType"
activateSirenAfterCheck(lastAlertType)
// Only turn on those switches that are currently off
def switchesOn = settings.switches?.findAll { it?.currentSwitch == "off" }
LOG("switchesOn: ${switchesOn}")
@@ -1570,6 +1759,8 @@ def activateAlarm() {
notify(msg)
notifyVoice()
reportStatus()
myRunIn(180, reset)
}
@@ -1668,12 +1859,61 @@ private def notifyVoice() {
}
}
def reportStatus()
{
log.debug "in report status"
log.debug "notification device = ${settings.notificationDevice}"
if (settings.notificationDevice)
{
def phrase = ""
if (state.alarms.size())
{
phrase = "Alert: Alarm at ${location.name}!"
notificationDevice.deviceNotification(phrase)
log.debug "sending notification alert: = $phrase"
def zones = "Zones: "
state.alarms.each()
{
//log.debug "in loop it"
//log.debug "it = $it"
zones = "Zones: "
zones += " $it" +"\n"
}
notificationDevice.deviceNotification(zones)
log.debug "sending nofication zones = $zones"
// send zone type
phrase = "AlertType: "
def atype = state.alertType
if (atype == null)
atype = "None"
phrase += " $atype"
notificationDevice.deviceNotification(phrase)
log.debug "sending nofication alert type = $phrase"
}
else
{
phrase = "Status: "
if (state.armed)
{
def mode = state.stay ? "Armed - Stay" : "Armed - Away"
phrase += "${mode}"
} else {
phrase += "Disarmed"
}
log.debug "sending notification status = $phrase"
notificationDevice.deviceNotification(phrase)
}
}
}
private def history(String event, String description = "") {
LOG("history(${event}, ${description})")
def history = atomicState.history
history << [time: now(), event: event, description: description]
if (history.size() > 10) {
if (history.size() > 20) {
history = history.sort{it.time}
history = history[1..-1]
}
@@ -1850,3 +2090,27 @@ private def LOG(message) {
private def STATE() {
//log.trace "state: ${state}"
}
def onAlarmSystemStatus(evt) {
LOG("Alarm System Status has been changed to '${evt.value}'")
String mode = evt.value.toLowerCase()
if (mode == "away") {
armAway()
} else if (mode == "stay") {
armStay()
} else if (mode == "off") {
disarm()
}
}
def setAlarmMode(name) {
LOG("Alarm System Status will be set to '${name}'")
def event = [
name: "alarmSystemStatus",
value: name,
isStateChange: true,
displayed: true,
description: "alarm system status is ${name}",
]
sendLocationEvent(event)
}

View File

@@ -125,19 +125,19 @@
if(allOk) {
if(everyoneIsAway() && (state.sunMode == "sunrise")) {
log.debug("Home is Empty Setting New Away Mode")
log.info("Home is Empty Setting New Away Mode")
def delay = (falseAlarmThreshold != null && falseAlarmThreshold != "") ? falseAlarmThreshold * 60 : 10 * 60
runIn(delay, "setAway")
}
if(everyoneIsAway() && (state.sunMode == "sunset")) {
log.debug("Home is Empty Setting New Away Mode")
log.info("Home is Empty Setting New Away Mode")
def delay = (falseAlarmThreshold != null && falseAlarmThreshold != "") ? falseAlarmThreshold * 60 : 10 * 60
runIn(delay, "setAway")
}
else {
log.debug("Home is Occupied Setting New Home Mode")
log.info("Home is Occupied Setting New Home Mode")
setHome()
@@ -152,7 +152,7 @@
log.debug("Checking if everyone is away")
if(everyoneIsAway()) {
log.debug("Nobody is home, running away sequence")
log.info("Nobody is home, running away sequence")
def delay = (falseAlarmThreshold != null && falseAlarmThreshold != "") ? falseAlarmThreshold * 60 : 10 * 60
runIn(delay, "setAway")
}
@@ -161,7 +161,7 @@
else {
def lastTime = state[evt.deviceId]
if (lastTime == null || now() - lastTime >= 1 * 60000) {
log.debug("Someone is home, running home sequence")
log.info("Someone is home, running home sequence")
setHome()
}
state[evt.deviceId] = now()
@@ -175,14 +175,14 @@
if(everyoneIsAway()) {
if(state.sunMode == "sunset") {
def message = "Performing \"${awayNight}\" for you as requested."
log.debug(message)
log.info(message)
sendAway(message)
location.helloHome.execute(settings.awayNight)
}
else if(state.sunMode == "sunrise") {
def message = "Performing \"${awayDay}\" for you as requested."
log.debug(message)
log.info(message)
sendAway(message)
location.helloHome.execute(settings.awayDay)
}
@@ -192,19 +192,19 @@
}
else {
log.debug("Somebody returned home before we set to '${newAwayMode}'")
log.info("Somebody returned home before we set to '${newAwayMode}'")
}
}
//set home mode when house is occupied
def setHome() {
sendOutOfDateNotification()
log.debug("Setting Home Mode!!")
log.info("Setting Home Mode!!")
if(anyoneIsHome()) {
if(state.sunMode == "sunset"){
if (location.mode != "${homeModeNight}"){
def message = "Performing \"${homeNight}\" for you as requested."
log.debug(message)
log.info(message)
sendHome(message)
location.helloHome.execute(settings.homeNight)
}
@@ -213,7 +213,7 @@
if(state.sunMode == "sunrise"){
if (location.mode != "${homeModeDay}"){
def message = "Performing \"${homeDay}\" for you as requested."
log.debug(message)
log.info(message)
sendHome(message)
location.helloHome.execute(settings.homeDay)
}
@@ -329,4 +329,4 @@
sendNotification("Your version of Hello, Home Phrase Director is currently out of date. Please look for the new version of Hello, Home Phrase Director now called 'Routine Director' in the marketplace.")
state.lastTime = (new Date() + 31).getTime()
}
}
}