Compare commits

..

2 Commits

112 changed files with 3853 additions and 11018 deletions

View File

@@ -1,513 +0,0 @@
// keen home smart vent
// http://www.keenhome.io
// SmartThings Device Handler v1.0.0
metadata {
definition (name: "Keen Home Smart Vent", namespace: "Keen Home", author: "Keen Home") {
capability "Switch Level"
capability "Switch"
capability "Configuration"
capability "Refresh"
capability "Sensor"
capability "Temperature Measurement"
capability "Battery"
command "getLevel"
command "getOnOff"
command "getPressure"
command "getBattery"
command "getTemperature"
command "setZigBeeIdTile"
command "clearObstruction"
fingerprint endpoint: "1",
profileId: "0104",
inClusters: "0000,0001,0003,0004,0005,0006,0008,0020,0402,0403,0B05,FC01,FC02",
outClusters: "0019"
}
// simulator metadata
simulator {
// status messages
status "on": "on/off: 1"
status "off": "on/off: 0"
// reply messages
reply "zcl on-off on": "on/off: 1"
reply "zcl on-off off": "on/off: 0"
}
// UI tile definitions
tiles {
standardTile("switch", "device.switch", width: 2, height: 2, canChangeIcon: true) {
state "on", action: "switch.off", icon: "st.vents.vent-open-text", backgroundColor: "#53a7c0"
state "off", action: "switch.on", icon: "st.vents.vent-closed", backgroundColor: "#ffffff"
state "obstructed", action: "clearObstruction", icon: "st.vents.vent-closed", backgroundColor: "#ff0000"
state "clearing", action: "", icon: "st.vents.vent-closed", backgroundColor: "#ffff33"
}
controlTile("levelSliderControl", "device.level", "slider", height: 1, width: 2, inactiveLabel: false) {
state "level", action:"switch level.setLevel"
}
standardTile("refresh", "device.power", inactiveLabel: false, decoration: "flat") {
state "default", label:'', action:"refresh.refresh", icon:"st.secondary.refresh"
}
valueTile("temperature", "device.temperature", inactiveLabel: false) {
state "temperature", label:'${currentValue}°',
backgroundColors:[
[value: 31, color: "#153591"],
[value: 44, color: "#1e9cbb"],
[value: 59, color: "#90d2a7"],
[value: 74, color: "#44b621"],
[value: 84, color: "#f1d801"],
[value: 95, color: "#d04e00"],
[value: 96, color: "#bc2323"]
]
}
valueTile("battery", "device.battery", inactiveLabel: false, decoration: "flat") {
state "battery", label: 'Battery \n${currentValue}%', backgroundColor:"#ffffff"
}
valueTile("zigbeeId", "device.zigbeeId", inactiveLabel: true, decoration: "flat") {
state "serial", label:'${currentValue}', backgroundColor:"#ffffff"
}
main "switch"
details(["switch","refresh","temperature","levelSliderControl","battery"])
}
}
/**** PARSE METHODS ****/
def parse(String description) {
log.debug "description: $description"
Map map = [:]
if (description?.startsWith('catchall:')) {
map = parseCatchAllMessage(description)
}
else if (description?.startsWith('read attr -')) {
map = parseReportAttributeMessage(description)
}
else if (description?.startsWith('temperature: ') || description?.startsWith('humidity: ')) {
map = parseCustomMessage(description)
}
else if (description?.startsWith('on/off: ')) {
map = parseOnOffMessage(description)
}
log.debug "Parse returned $map"
return map ? createEvent(map) : null
}
private Map parseCatchAllMessage(String description) {
log.debug "parseCatchAllMessage"
def cluster = zigbee.parse(description)
log.debug "cluster: ${cluster}"
if (shouldProcessMessage(cluster)) {
log.debug "processing message"
switch(cluster.clusterId) {
case 0x0001:
return makeBatteryResult(cluster.data.last())
break
case 0x0402:
// temp is last 2 data values. reverse to swap endian
String temp = cluster.data[-2..-1].reverse().collect { cluster.hex1(it) }.join()
def value = convertTemperatureHex(temp)
return makeTemperatureResult(value)
break
case 0x0006:
return makeOnOffResult(cluster.data[-1])
break
}
}
return [:]
}
private boolean shouldProcessMessage(cluster) {
// 0x0B is default response indicating message got through
// 0x07 is bind message
if (cluster.profileId != 0x0104 ||
cluster.command == 0x0B ||
cluster.command == 0x07 ||
(cluster.data.size() > 0 && cluster.data.first() == 0x3e)) {
return false
}
return true
}
private Map parseReportAttributeMessage(String description) {
log.debug "parseReportAttributeMessage"
Map descMap = (description - "read attr - ").split(",").inject([:]) { map, param ->
def nameAndValue = param.split(":")
map += [(nameAndValue[0].trim()):nameAndValue[1].trim()]
}
log.debug "Desc Map: $descMap"
if (descMap.cluster == "0006" && descMap.attrId == "0000") {
return makeOnOffResult(Int.parseInt(descMap.value));
}
else if (descMap.cluster == "0008" && descMap.attrId == "0000") {
return makeLevelResult(descMap.value)
}
else if (descMap.cluster == "0402" && descMap.attrId == "0000") {
def value = convertTemperatureHex(descMap.value)
return makeTemperatureResult(value)
}
else if (descMap.cluster == "0001" && descMap.attrId == "0021") {
return makeBatteryResult(Integer.parseInt(descMap.value, 16))
}
else if (descMap.cluster == "0403" && descMap.attrId == "0020") {
return makePressureResult(Integer.parseInt(descMap.value, 16))
}
else if (descMap.cluster == "0000" && descMap.attrId == "0006") {
return makeSerialResult(new String(descMap.value.decodeHex()))
}
// shouldn't get here
return [:]
}
private Map parseCustomMessage(String description) {
Map resultMap = [:]
if (description?.startsWith('temperature: ')) {
// log.debug "${description}"
// def value = zigbee.parseHATemperatureValue(description, "temperature: ", getTemperatureScale())
// log.debug "split: " + description.split(": ")
def value = Double.parseDouble(description.split(": ")[1])
// log.debug "${value}"
resultMap = makeTemperatureResult(convertTemperature(value))
}
return resultMap
}
private Map parseOnOffMessage(String description) {
Map resultMap = [:]
if (description?.startsWith('on/off: ')) {
def value = Integer.parseInt(description - "on/off: ")
resultMap = makeOnOffResult(value)
}
return resultMap
}
private Map makeOnOffResult(rawValue) {
log.debug "makeOnOffResult: ${rawValue}"
def linkText = getLinkText(device)
def value = rawValue == 1 ? "on" : "off"
return [
name: "switch",
value: value,
descriptionText: "${linkText} is ${value}"
]
}
private Map makeLevelResult(rawValue) {
def linkText = getLinkText(device)
def value = Integer.parseInt(rawValue, 16)
def rangeMax = 254
// catch obstruction level
if (value == 255) {
log.debug "${linkText} is obstructed"
// Just return here. Once the vent is power cycled
// it will go back to the previous level before obstruction.
// Therefore, no need to update level on the display.
return [
name: "switch",
value: "obstructed",
descriptionText: "${linkText} is obstructed. Please power cycle."
]
}
value = Math.floor(value / rangeMax * 100)
return [
name: "level",
value: value,
descriptionText: "${linkText} level is ${value}%"
]
}
private Map makePressureResult(rawValue) {
log.debug 'makePressureResut'
def linkText = getLinkText(device)
def pascals = rawValue / 10
def result = [
name: 'pressure',
descriptionText: "${linkText} pressure is ${pascals}Pa",
value: pascals
]
return result
}
private Map makeBatteryResult(rawValue) {
// log.debug 'makeBatteryResult'
def linkText = getLinkText(device)
// log.debug
[
name: 'battery',
value: rawValue,
descriptionText: "${linkText} battery is at ${rawValue}%"
]
}
private Map makeTemperatureResult(value) {
// log.debug 'makeTemperatureResult'
def linkText = getLinkText(device)
// log.debug "tempOffset: ${tempOffset}"
if (tempOffset) {
def offset = tempOffset as int
// log.debug "offset: ${offset}"
def v = value as int
// log.debug "v: ${v}"
value = v + offset
// log.debug "value: ${value}"
}
return [
name: 'temperature',
value: "" + value,
descriptionText: "${linkText} is ${value}°${temperatureScale}",
]
}
/**** HELPER METHODS ****/
private def convertTemperatureHex(value) {
// log.debug "convertTemperatureHex(${value})"
def celsius = Integer.parseInt(value, 16).shortValue() / 100
// log.debug "celsius: ${celsius}"
return convertTemperature(celsius)
}
private def convertTemperature(celsius) {
// log.debug "convertTemperature()"
if(getTemperatureScale() == "C"){
return celsius
} else {
def fahrenheit = Math.round(celsiusToFahrenheit(celsius) * 100) /100
// log.debug "converted to F: ${fahrenheit}"
return fahrenheit
}
}
private def makeSerialResult(serial) {
log.debug "makeSerialResult: " + serial
def linkText = getLinkText(device)
sendEvent([
name: "serial",
value: serial,
descriptionText: "${linkText} has serial ${serial}" ])
return [
name: "serial",
value: serial,
descriptionText: "${linkText} has serial ${serial}" ]
}
// takes a level from 0 to 100 and translates it to a ZigBee move to level with on/off command
private def makeLevelCommand(level) {
def rangeMax = 254
def scaledLevel = Math.round(level * rangeMax / 100)
log.debug "scaled level for ${level}%: ${scaledLevel}"
// convert to hex string and pad to two digits
def hexLevel = new BigInteger(scaledLevel.toString()).toString(16).padLeft(2, '0')
"st cmd 0x${device.deviceNetworkId} 1 8 4 {${hexLevel} 0000}"
}
/**** COMMAND METHODS ****/
def on() {
def linkText = getLinkText(device)
log.debug "open ${linkText}"
// only change the state if the vent is not obstructed
if (device.currentValue("switch") == "obstructed") {
log.error("cannot open because ${linkText} is obstructed")
return
}
sendEvent(makeOnOffResult(1))
"st cmd 0x${device.deviceNetworkId} 1 6 1 {}"
}
def off() {
def linkText = getLinkText(device)
log.debug "close ${linkText}"
// only change the state if the vent is not obstructed
if (device.currentValue("switch") == "obstructed") {
log.error("cannot close because ${linkText} is obstructed")
return
}
sendEvent(makeOnOffResult(0))
"st cmd 0x${device.deviceNetworkId} 1 6 0 {}"
}
def clearObstruction() {
def linkText = getLinkText(device)
log.debug "attempting to clear ${linkText} obstruction"
sendEvent([
name: "switch",
value: "clearing",
descriptionText: "${linkText} is clearing obstruction"
])
// send a move command to ensure level attribute gets reset for old, buggy firmware
// then send a reset to factory defaults
// finally re-configure to ensure reports and binding is still properly set after the rtfd
[
makeLevelCommand(device.currentValue("level")), "delay 500",
"st cmd 0x${device.deviceNetworkId} 1 0 0 {}", "delay 5000"
] + configure()
}
def setLevel(value) {
log.debug "setting level: ${value}"
def linkText = getLinkText(device)
// only change the level if the vent is not obstructed
def currentState = device.currentValue("switch")
if (currentState == "obstructed") {
log.error("cannot set level because ${linkText} is obstructed")
return
}
sendEvent(name: "level", value: value)
if (value > 0) {
sendEvent(name: "switch", value: "on", descriptionText: "${linkText} is on by setting a level")
}
else {
sendEvent(name: "switch", value: "off", descriptionText: "${linkText} is off by setting level to 0")
}
makeLevelCommand(value)
}
def getOnOff() {
log.debug "getOnOff()"
// disallow on/off updates while vent is obstructed
if (device.currentValue("switch") == "obstructed") {
log.error("cannot update open/close status because ${getLinkText(device)} is obstructed")
return []
}
["st rattr 0x${device.deviceNetworkId} 1 0x0006 0"]
}
def getPressure() {
log.debug "getPressure()"
// using a Keen Home specific attribute in the pressure measurement cluster
[
"zcl mfg-code 0x115B", "delay 200",
"zcl global read 0x0403 0x20", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 200"
]
}
def getLevel() {
log.debug "getLevel()"
// disallow level updates while vent is obstructed
if (device.currentValue("switch") == "obstructed") {
log.error("cannot update level status because ${getLinkText(device)} is obstructed")
return []
}
["st rattr 0x${device.deviceNetworkId} 1 0x0008 0x0000"]
}
def getTemperature() {
log.debug "getTemperature()"
["st rattr 0x${device.deviceNetworkId} 1 0x0402 0"]
}
def getBattery() {
log.debug "getBattery()"
["st rattr 0x${device.deviceNetworkId} 1 0x0001 0x0021"]
}
def setZigBeeIdTile() {
log.debug "setZigBeeIdTile() - ${device.zigbeeId}"
def linkText = getLinkText(device)
sendEvent([
name: "zigbeeId",
value: device.zigbeeId,
descriptionText: "${linkText} has zigbeeId ${device.zigbeeId}" ])
return [
name: "zigbeeId",
value: device.zigbeeId,
descriptionText: "${linkText} has zigbeeId ${device.zigbeeId}" ]
}
def refresh() {
getOnOff() +
getLevel() +
getTemperature() +
getPressure() +
getBattery()
}
def configure() {
log.debug "CONFIGURE"
// get ZigBee ID by hidden tile because that's the only way we can do it
setZigBeeIdTile()
def configCmds = [
// bind reporting clusters to hub
"zdo bind 0x${device.deviceNetworkId} 1 1 0x0006 {${device.zigbeeId}} {}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} 1 1 0x0008 {${device.zigbeeId}} {}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} 1 1 0x0402 {${device.zigbeeId}} {}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} 1 1 0x0403 {${device.zigbeeId}} {}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} 1 1 0x0001 {${device.zigbeeId}} {}", "delay 500"
// configure report commands
// zcl global send-me-a-report [cluster] [attr] [type] [min-interval] [max-interval] [min-change]
// report with these parameters is preconfigured in firmware, can be overridden here
// vent on/off state - type: boolean, change: 1
// "zcl global send-me-a-report 6 0 0x10 5 60 {01}", "delay 200",
// "send 0x${device.deviceNetworkId} 1 1", "delay 1500",
// report with these parameters is preconfigured in firmware, can be overridden here
// vent level - type: int8u, change: 1
// "zcl global send-me-a-report 8 0 0x20 5 60 {01}", "delay 200",
// "send 0x${device.deviceNetworkId} 1 1", "delay 1500",
// report with these parameters is preconfigured in firmware, can be overridden here
// temperature - type: int16s, change: 0xA = 10 = 0.1C
// "zcl global send-me-a-report 0x0402 0 0x29 60 60 {0A00}", "delay 200",
// "send 0x${device.deviceNetworkId} 1 1", "delay 1500",
// report with these parameters is preconfigured in firmware, can be overridden here
// keen home custom pressure (tenths of Pascals) - type: int32u, change: 1 = 0.1Pa
// "zcl mfg-code 0x115B", "delay 200",
// "zcl global send-me-a-report 0x0403 0x20 0x22 60 60 {010000}", "delay 200",
// "send 0x${device.deviceNetworkId} 1 1", "delay 1500",
// report with these parameters is preconfigured in firmware, can be overridden here
// battery - type: int8u, change: 1
// "zcl global send-me-a-report 1 0x21 0x20 60 3600 {01}", "delay 200",
// "send 0x${device.deviceNetworkId} 1 1", "delay 1500",
]
return configCmds + refresh()
}

View File

@@ -1,163 +0,0 @@
/**
* PlantLink
*
* This device type takes sensor data and converts it into a json packet to send to myplantlink.com
* where its values will be computed for soil and plant type to show user readable values of how your
* specific plant is doing.
*
*
* Copyright 2015 Oso Technologies
*
* 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.
*
*/
import groovy.json.JsonBuilder
metadata {
definition (name: "PlantLink", namespace: "OsoTech", author: "Oso Technologies") {
capability "Sensor"
command "setStatusIcon"
command "setPlantFuelLevel"
command "setBatteryLevel"
command "setInstallSmartApp"
attribute "plantStatus","string"
attribute "plantFuelLevel","number"
attribute "linkBatteryLevel","string"
attribute "installSmartApp","string"
fingerprint profileId: "0104", inClusters: "0000,0001,0B04"
}
simulator {
status "battery": "read attr - raw: C0720100010A000021340A, dni: C072, endpoint: 01, cluster: 0001, size: 0A, attrId: 0000, encoding: 21, value: 0a34"
status "moisture": "read attr - raw: C072010B040A0001290000, dni: C072, endpoint: 01, cluster: 0B04, size: 0A, attrId: 0100, encoding: 29, value: 0000"
}
tiles {
standardTile("Title", "device.label") {
state("label", label:'PlantLink ${device.label}')
}
valueTile("plantMoistureTile", "device.plantFuelLevel", width: 1, height: 1) {
state("plantMoisture", label: '${currentValue}% Moisture')
}
valueTile("plantStatusTextTile", "device.plantStatus", decoration: "flat", width: 2, height: 2) {
state("plantStatusTextTile", label:'${currentValue}')
}
valueTile("battery", "device.linkBatteryLevel" ) {
state("battery", label:'${currentValue}% battery')
}
valueTile("installSmartApp","device.installSmartApp", decoration: "flat", width: 3, height: 1) {
state "needSmartApp", label:'Please install SmartApp "Required PlantLink Connector"', defaultState:true
state "connectedToSmartApp", label:'Connected to myplantlink.com'
}
main "plantStatusTextTile"
details(['plantStatusTextTile', "plantMoistureTile", "battery", "installSmartApp"])
}
}
def setStatusIcon(value){
def status = ''
switch (value) {
case '0':
status = 'Needs Water'
break
case '1':
status = 'Dry'
break
case '2':
case '3':
status = 'Good'
break
case '4':
status = 'Too Wet'
break
case 'No Soil':
status = 'Too Dry'
setPlantFuelLevel(0)
break
case 'Recently Watered':
status = 'Watered'
setPlantFuelLevel(100)
break
case 'Low Battery':
status = 'Low Battery'
break
case 'Waiting on First Measurement':
status = 'Calibrating'
break
default:
status = "?"
break
}
sendEvent("name":"plantStatus", "value":status, "description":statusText, displayed: true, isStateChange: true)
}
def setPlantFuelLevel(value){
sendEvent("name":"plantFuelLevel", "value":value, "description":statusText, displayed: true, isStateChange: true)
}
def setBatteryLevel(value){
sendEvent("name":"linkBatteryLevel", "value":value, "description":statusText, displayed: true, isStateChange: true)
}
def setInstallSmartApp(value){
sendEvent("name":"installSmartApp", "value":value)
}
def parse(String description) {
def description_map = parseDescriptionAsMap(description)
def event_name = ""
def measurement_map = [
type: "link",
signal: "0x00",
zigbeedeviceid: device.zigbeeId,
created: new Date().time /1000 as int
]
if (description_map.cluster == "0000"){
/* version number, not used */
} else if (description_map.cluster == "0001"){
/* battery voltage in mV (device needs minimium 2.1v to run) */
log.debug "PlantLink - id ${device.zigbeeId} battery ${description_map.value}"
event_name = "battery_status"
measurement_map["battery"] = "0x${description_map.value}"
} else if (description_map.cluster == "0B04"){
/* raw moisture reading (needs to be sent to plantlink for soil/plant type conversion) */
log.debug "PlantLink - id ${device.zigbeeId} raw moisture ${description_map.value}"
measurement_map["moisture"] = "0x${description_map.value}"
event_name = "moisture_status"
} else{
log.debug "PlantLink - id ${device.zigbeeId} Unknown '${description}'"
return
}
def json_builder = new JsonBuilder(measurement_map)
def result = createEvent(name: event_name, value: json_builder.toString())
return result
}
def parseDescriptionAsMap(description) {
(description - "read attr - ").split(",").inject([:]) { map, param ->
def nameAndValue = param.split(":")
map += [(nameAndValue[0].trim()):nameAndValue[1].trim()]
}
}

View File

@@ -56,7 +56,7 @@ metadata {
state "configure", label: '', action: "configuration.configure", icon: "st.secondary.configure"
}
graphTile(name: "powerGraph", attribute: "device.power")
PLATFORM_graphTile(name: "powerGraph", attribute: "device.power")
main(["power", "energy"])
details(["powerGraph", "power", "energy", "reset", "refresh", "configure"])
@@ -68,8 +68,16 @@ metadata {
// ========================================================
preferences {
input name: "graphPrecision", type: "enum", title: "Graph Precision", description: "Daily", required: true, options: graphPrecisionOptions(), defaultValue: "Daily"
input name: "graphType", type: "enum", title: "Graph Type", description: "line", required: false, options: graphTypeOptions()
input name: "graphPrecision", type: "enum", title: "Graph Precision", description: "Daily", required: true, options: PLATFORM_graphPrecisionOptions(), defaultValue: "Daily"
input name: "graphType", type: "enum", title: "Graph Type", description: selectedGraphType(), required: false, options: PLATFORM_graphTypeOptions()
}
def selectedGraphPrecision() {
graphPrecision ?: "Daily"
}
def selectedGraphType() {
graphType ?: "line"
}
// ========================================================
@@ -83,6 +91,22 @@ mappings {
GET: "renderGraph"
]
}
path("/graphDataSizes") { // for testing. remove before publishing
action:
[
GET: "graphDataSizes"
]
}
}
def graphDataSizes() { // for testing. remove before publishing
state.findAll { k, v -> k.startsWith("measure.") }.inject([:]) { attributes, attributeData ->
attributes[attributeData.key] = attributeData.value.inject([:]) { dateTypes, dateTypeData ->
dateTypes[dateTypeData.key] = dateTypeData.value.size()
dateTypes
}
attributes
}
}
// ========================================================
@@ -97,7 +121,8 @@ def parse(String description) {
}
log.debug "Parse returned ${result?.descriptionText}"
storeGraphData(result.name, result.value)
PLATFORM_migrateGraphDataIfNeeded()
PLATFORM_storeData(result.name, result.value)
return result
}
@@ -151,15 +176,535 @@ def configure() {
def renderGraph() {
def data = fetchGraphData(params.attribute)
def data = PLATFORM_fetchGraphData(params.attribute)
def totalData = data*.runningSum
def xValues = data*.unixTime
def yValues = [
Total: [color: "#49a201", data: totalData]
Total: [color: "#49a201", data: totalData, type: selectedGraphType()]
]
renderGraph(attribute: params.attribute, xValues: xValues, yValues: yValues, focus: "Total", label: "Watts")
PLATFORM_renderGraph(attribute: params.attribute, xValues: xValues, yValues: yValues, focus: "Total", label: "Watts")
}
// TODO: // ========================================================
// TODO: // PLATFORM CODE !!! DO NOT ALTER !!!
// TODO: // ========================================================
// ========================================================
// PLATFORM TILES
// ========================================================
def PLATFORM_graphTile(Map tileParams) {
def cleanAttribute = tileParams.attribute - "device." - "capability."
htmlTile([name: tileParams.name, attribute: tileParams.attribute, action: "graph/${cleanAttribute}", width: 3, height: 2] + tileParams)
}
// ========================================================
// PLATFORM GRAPH RENDERING
// ========================================================
private PLATFORM_graphTypeOptions() {
[
"line", // DEFAULT
"spline",
"step",
"area",
"area-spline",
"area-step",
"bar",
"scatter",
"pie",
"donut",
"gauge",
]
}
private PLATFORM_renderGraph(graphParams) {
String attribute = graphParams.attribute
List xValues = graphParams.xValues
Map yValues = graphParams.yValues
String focus = graphParams.focus ?: ""
String label = graphParams.label ?: ""
/*
def xValues = [1, 2]
def yValues = [
High: [type: "spline", data: [5, 6], color: "#bc2323"],
Low: [type: "spline", data: [0, 1], color: "#153591"]
]
Available type values:
line // DEFAULT
spline
step
area
area-spline
area-step
bar
scatter
pie
donut
gauge
*/
def graphData = PLATFORM_buildGraphData(xValues, yValues, label)
def legendData = yValues*.key
def focusJS = focus ? "chart.focus('${focus}')" : "// focus not specified"
def flowColumn = focus ?: yValues ? yValues.keySet().first() : null
def htmlTitle = "${(device.label ?: device.name)} ${attribute.capitalize()} Graph"
renderHTML(htmlTitle) { html ->
html.head {
"""
<!-- Load c3.css -->
<link href="https://www.dropbox.com/s/m6ptp72cw4nx0sp/c3.css?dl=1" rel="stylesheet" type="text/css">
<!-- Load d3.js and c3.js -->
<script src="https://www.dropbox.com/s/9x22jyfu5qyacpp/d3.v3.min.js?dl=1" charset="utf-8"></script>
<script src="https://www.dropbox.com/s/to7dtcn403l7mza/c3.js?dl=1"></script>
<script>
function getDocumentHeight() {
var body = document.body;
var html = document.documentElement;
return html.clientHeight;
}
function getDocumentWidth() {
var body = document.body;
var html = document.documentElement;
return html.clientWidth;
}
</script>
<style>
.legend {
position: absolute;
width: 80%;
padding-left: 15%;
z-index: 999;
padding-top: 5px;
}
.legend span {
width: ${100 / yValues.size()}%;
display: inline-block;
text-align: center;
cursor: pointer;
color: white;
}
</style>
"""
}
html.body {
"""
<div class="legend"></div>
<div id="chart" style="max-height: 120px; position: relative;"></div>
<script>
// Generate the chart
var chart = c3.generate(${graphData as grails.converters.JSON});
// Resize the chart to the size of the device tile
chart.resize({height:getDocumentHeight(), width:getDocumentWidth()});
// Focus data if specified
${focusJS}
// Update the chart when ${attribute} events are received
function ${attribute}(evt) {
var newValue = ['${flowColumn}'];
newValue.push(evt.value);
var newX = ['x'];
newX.push(evt.unixTime);
chart.flow({
columns: [
newX,
newValue
]
});
}
// Build the custom legend
d3.select('.legend').selectAll('span')
.data(${legendData as grails.converters.JSON})
.enter().append('span')
.attr('data-id', function (id) { return id; })
.html(function (id) { return id; })
.each(function (id) {
d3.select(this).style('background-color', chart.color(id));
})
.on('mouseover', function (id) {
chart.focus(id);
})
.on('mouseout', function (id) {
chart.revert();
})
.on('click', function (id) {
chart.toggle(id);
});
</script>
"""
}
}
}
private PLATFORM_buildGraphData(List xValues, Map yValues, String label = "") {
/*
def xValues = [1, 2]
def yValues = [
High: [type: "spline", data: [5, 6], color: "#bc2323"],
Low: [type: "spline", data: [0, 1], color: "#153591"]
]
*/
[
interaction: [
enabled: false
],
bindto : '#chart',
padding : [
left : 30,
right : 30,
bottom: 0,
top : 0
],
legend : [
show: false,
// hide : false,//(yValues.keySet().size() < 2),
// position: 'inset',
// inset: [
// anchor: "top-right"
// ],
// item: [
// onclick: "do nothing" // (yValues.keySet().size() > 1) ? null : "do nothing"
// ]
],
data : [
x : "x",
columns: [(["x"] + xValues)] + yValues.collect { k, v -> [k] + v.data },
types : yValues.inject([:]) { total, current -> total[current.key] = current.value.type; return total },
colors : yValues.inject([:]) { total, current -> total[current.key] = current.value.color; return total }
],
axis : [
x: [
type: 'timeseries',
tick: [
centered: true,
culling : [max: 7],
fit : true,
format : PLATFORM_getGraphDateFormat()
// format: PLATFORM_getGraphDateFormatFunction() // throws securityException when trying to escape javascript
]
],
y: [
label : label,
padding: [
top: 50
]
]
]
]
}
private PLATFORM_getGraphDateFormat(dateType = selectedGraphPrecision()) {
// https://github.com/mbostock/d3/wiki/Time-Formatting
def graphDateFormat
switch (dateType) {
case "Live":
graphDateFormat = "%I:%M" // hour (12-hour clock) as a decimal number [00,12] // AM or PM
break
case "Hourly":
graphDateFormat = "%I %p" // hour (12-hour clock) as a decimal number [00,12] // AM or PM
break
case "Daily":
graphDateFormat = "%a" // abbreviated weekday name
break
case "Monthly":
graphDateFormat = "%b" // abbreviated month name
break
case "Annually":
graphDateFormat = "%y" // year without century as a decimal number [00,99]
break
}
graphDateFormat
}
private String PLATFORM_getGraphDateFormatFunction(dateType = selectedGraphPrecision()) {
def graphDateFunction = "function(date) { return date; }"
switch (dateType) {
case "Live":
graphDateFunction = """
function(date) {
return.getMinutes();
}
"""
break;
case "Hourly":
graphDateFunction = """ function(date) {
var hour = date.getHours();
if (hour == 0) {
return String(/12 am/).substring(1).slice(0,-1);
} else if (hour > 12) {
return hour -12 + String(/ pm/).substring(1).slice(0,-1);
} else {
return hour + String(/ am/).substring(1).slice(0,-1);
}
}"""
break
case "Daily":
graphDateFunction = """ function(date) {
var day = date.getDay();
switch(day) {
case 0: return String(/Sun/).substring(1).slice(0,-1);
case 1: return String(/Mon/).substring(1).slice(0,-1);
case 2: return String(/Tue/).substring(1).slice(0,-1);
case 3: return String(/Wed/).substring(1).slice(0,-1);
case 4: return String(/Thu/).substring(1).slice(0,-1);
case 5: return String(/Fri/).substring(1).slice(0,-1);
case 6: return String(/Sat/).substring(1).slice(0,-1);
}
}"""
break
case "Monthly":
graphDateFunction = """ function(date) {
var month = date.getMonth();
switch(month) {
case 0: return String(/Jan/).substring(1).slice(0,-1);
case 1: return String(/Feb/).substring(1).slice(0,-1);
case 2: return String(/Mar/).substring(1).slice(0,-1);
case 3: return String(/Apr/).substring(1).slice(0,-1);
case 4: return String(/May/).substring(1).slice(0,-1);
case 5: return String(/Jun/).substring(1).slice(0,-1);
case 6: return String(/Jul/).substring(1).slice(0,-1);
case 7: return String(/Aug/).substring(1).slice(0,-1);
case 8: return String(/Sep/).substring(1).slice(0,-1);
case 9: return String(/Oct/).substring(1).slice(0,-1);
case 10: return String(/Nov/).substring(1).slice(0,-1);
case 11: return String(/Dec/).substring(1).slice(0,-1);
}
}"""
break
case "Annually":
graphDateFunction = """
function(date) {
return.getFullYear();
}
"""
break
}
groovy.json.StringEscapeUtils.escapeJavaScript(graphDateFunction)
}
private jsEscapeString(str = "") {
"String(/${str}/).substring(1).slice(0,-1);"
}
private PLATFORM_fetchGraphData(attribute) {
log.debug "PLATFORM_fetchGraphData(${attribute})"
/*
[
[
dateString: "2014-12-1",
unixTime: 1421931600000,
min: 0,
max: 10,
average: 5
],
...
]
*/
def attributeBucket = state["measure.${attribute}"] ?: [:]
def dateType = selectedGraphPrecision()
attributeBucket[dateType]
}
// ========================================================
// PLATFORM DATA STORAGE
// ========================================================
private PLATFORM_graphPrecisionOptions() { ["Live", "Hourly", "Daily", "Monthly", "Annually"] }
private PLATFORM_storeData(attribute, value) {
PLATFORM_graphPrecisionOptions().each { dateType ->
PLATFORM_addDataToBucket(attribute, value, dateType)
}
}
/*
[
Hourly: [
[
dateString: "2014-12-1",
unixTime: 1421931600000,
min: 0,
max: 10,
average: 5
],
...
],
...
]
*/
private PLATFORM_addDataToBucket(attribute, value, dateType) {
def numberValue = value.toBigDecimal()
def attributeKey = "measure.${attribute}"
def attributeBucket = state[attributeKey] ?: [:]
def dateTypeBucket = attributeBucket[dateType] ?: []
def now = new Date()
def itemDateString = now.format("PLATFORM_get${dateType}Format"())
def item = dateTypeBucket.find { it.dateString == itemDateString }
if (!item) {
// no entry for this data point yet, fill with initial values
item = [:]
item.average = numberValue
item.runningSum = numberValue
item.runningCount = 1
item.min = numberValue
item.max = numberValue
item.unixTime = now.getTime()
item.dateString = itemDateString
// add the new data point
dateTypeBucket << item
// clear out old data points
def old = PLATFORM_getOldDateString(dateType)
if (old) { // annual data never gets cleared
dateTypeBucket.findAll { it.unixTime < old }.each { dateTypeBucket.remove(it) }
}
// limit the size of the bucket. Live data can stack up fast
def sizeLimit = 25
if (dateTypeBucket.size() > sizeLimit) {
dateTypeBucket = dateTypeBucket[-sizeLimit..-1]
}
} else {
//re-calculate average/min/max for this bucket
item.runningSum = (item.runningSum.toBigDecimal()) + numberValue
item.runningCount = item.runningCount.toInteger() + 1
item.average = item.runningSum.toBigDecimal() / item.runningCount.toInteger()
if (item.min == null) {
item.min = numberValue
} else if (numberValue < item.min.toBigDecimal()) {
item.min = numberValue
}
if (item.max == null) {
item.max = numberValue
} else if (numberValue > item.max.toBigDecimal()) {
item.max = numberValue
}
}
attributeBucket[dateType] = dateTypeBucket
state[attributeKey] = attributeBucket
}
private PLATFORM_getOldDateString(dateType) {
def now = new Date()
def date
switch (dateType) {
case "Live":
date = now.getTime() - 60 * 60 * 1000 // 1h * 60m * 60s * 1000ms // 1 hour
break
case "Hourly":
date = (now - 1).getTime()
break
case "Daily":
date = (now - 10).getTime()
break
case "Monthly":
date = (now - 30).getTime()
break
case "Annually":
break
}
date
}
private PLATFORM_getLiveFormat() { "HH:mm:ss" }
private PLATFORM_getHourlyFormat() { "yyyy-MM-dd'T'HH" }
private PLATFORM_getDailyFormat() { "yyyy-MM-dd" }
private PLATFORM_getMonthlyFormat() { "yyyy-MM" }
private PLATFORM_getAnnuallyFormat() { "yyyy" }
// ========================================================
// PLATFORM GRAPH DATA MIGRATION
// ========================================================
private PLATFORM_migrateGraphDataIfNeeded() {
if (!state.hasMigratedOldGraphData) {
def acceptableKeys = PLATFORM_graphPrecisionOptions()
def needsMigration = state.findAll { k, v -> v.keySet().findAll { !acceptableKeys.contains(it) } }.keySet()
needsMigration.each { PLATFORM_migrateGraphData(it) }
state.hasMigratedOldGraphData = true
}
}
private PLATFORM_migrateGraphData(attribute) {
log.trace "about to migrate ${attribute}"
def attributeBucket = state[attribute] ?: [:]
def migratedAttributeBucket = [:]
attributeBucket.findAll { k, v -> !PLATFORM_graphPrecisionOptions().contains(k) }.each { oldDateString, oldItem ->
def dateType = oldDateString.contains('T') ? "Hourly" : PLATFORM_graphPrecisionOptions().find {
"PLATFORM_get${it}Format"().size() == oldDateString.size()
}
def dateTypeFormat = "PLATFORM_get${dateType}Format"()
def newBucket = attributeBucket[dateType] ?: []
/*
def existingNewItem = newBucket.find { it.dateString == oldDateString }
if (existingNewItem) {
newBucket.remove(existingNewItem)
}
*/
def newItem = [
min : oldItem.min,
max : oldItem.max,
average : oldItem.average,
runningSum : oldItem.runningSum,
runningCount: oldItem.runningCount,
dateString : oldDateString,
unixTime : new Date().parse(dateTypeFormat, oldDateString).getTime()
]
newBucket << newItem
migratedAttributeBucket[dateType] = newBucket
}
state[attribute] = migratedAttributeBucket
}

View File

@@ -24,8 +24,6 @@ metadata {
capability "Battery"
attribute "tamper", "enum", ["detected", "clear"]
attribute "batteryStatus", "string"
attribute "powerSupply", "enum", ["USB Cable", "Battery"]
fingerprint deviceId: "0x2101", inClusters: "0x5E,0x86,0x72,0x59,0x85,0x73,0x71,0x84,0x80,0x30,0x31,0x70,0x7A", outClusters: "0x5A"
}
@@ -65,19 +63,6 @@ metadata {
status "wake up" : "command: 8407, payload: "
}
preferences {
input description: "Please consult AEOTEC MULTISENSOR 6 operating manual for advanced setting options. You can skip this configuration to use default settings",
title: "Advanced Configuration", displayDuringSetup: true, type: "paragraph", element: "paragraph"
input "motionDelayTime", "enum", title: "Motion Sensor Delay Time",
options: ["20 seconds", "40 seconds", "1 minute", "2 minutes", "3 minutes", "4 minutes"], defaultValue: "${motionDelayTime}", displayDuringSetup: true
input "motionSensitivity", "enum", title: "Motion Sensor Sensitivity", options: ["normal","maximum","minimum"], defaultValue: "${motionSensitivity}", displayDuringSetup: true
input "reportInterval", "enum", title: "Sensors Report Interval",
options: ["8 minutes", "15 minutes", "30 minutes", "1 hour", "6 hours", "12 hours", "18 hours", "24 hours"], defaultValue: "${reportInterval}", displayDuringSetup: true
}
tiles(scale: 2) {
multiAttributeTile(name:"motion", type: "generic", width: 6, height: 4){
tileAttribute ("device.motion", key: "PRIMARY_CONTROL") {
@@ -100,78 +85,53 @@ metadata {
valueTile("humidity", "device.humidity", inactiveLabel: false, width: 2, height: 2) {
state "humidity", label:'${currentValue}% humidity', unit:""
}
valueTile("illuminance", "device.illuminance", inactiveLabel: false, width: 2, height: 2) {
state "illuminance", label:'${currentValue} ${unit}', unit:"lux"
state "luminosity", label:'${currentValue} ${unit}', unit:"lux"
}
valueTile("ultravioletIndex", "device.ultravioletIndex", inactiveLabel: false, width: 2, height: 2) {
state "ultravioletIndex", label:'${currentValue} UV index', 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:""
}
valueTile("powerSupply", "device.powerSupply", height: 2, width: 2, decoration: "flat") {
state "powerSupply", label:'${currentValue} powered', backgroundColor:"#ffffff"
}
main(["motion", "temperature", "humidity", "illuminance", "ultravioletIndex"])
details(["motion", "temperature", "humidity", "illuminance", "ultravioletIndex", "batteryStatus"])
main(["motion", "temperature", "humidity", "illuminance"])
details(["motion", "temperature", "humidity", "illuminance", "battery"])
}
}
def updated() {
log.debug "Updated with settings: ${settings}"
log.debug "${device.displayName} is now ${device.latestValue("powerSupply")}"
if (device.latestValue("powerSupply") == "USB Cable") { //case1: USB powered
def updated()
{
if (state.sec && !isConfigured()) {
// in case we miss the SCSR
response(configure())
} else if (device.latestValue("powerSupply") == "Battery") { //case2: battery powered
// setConfigured("false") is used by WakeUpNotification
setConfigured("false") //wait until the next time device wakeup to send configure command after user change preference
} else { //case3: power source is not identified, ask user to properly pair the sensor again
log.warn "power source is not identified, check it sensor is powered by USB, if so > configure()"
def request = []
request << zwave.configurationV1.configurationGet(parameterNumber: 101)
response(commands(request))
}
}
def parse(String description) {
log.debug "parse() >> description: $description"
def parse(String description)
{
def result = null
if (description.startsWith("Err 106")) {
log.debug "parse() >> Err 106"
state.sec = 0
result = createEvent( name: "secureInclusion", value: "failed", isStateChange: true,
descriptionText: "This sensor failed to complete the network security key exchange. If you are unable to control it via SmartThings, you must remove it from your network and add it again.")
descriptionText: "This sensor failed to complete the network security key exchange. If you are unable to control it via SmartThings, you must remove it from your network and add it again.")
} else if (description != "updated") {
log.debug "parse() >> zwave.parse(description)"
def cmd = zwave.parse(description, [0x31: 5, 0x30: 2, 0x84: 1])
if (cmd) {
result = zwaveEvent(cmd)
}
}
log.debug "After zwaveEvent(cmd) >> Parsed '${description}' to ${result.inspect()}"
log.debug "Parsed '${description}' to ${result.inspect()}"
return result
}
//this notification will be sent only when device is battery powered
def zwaveEvent(physicalgraph.zwave.commands.wakeupv1.WakeUpNotification cmd) {
def zwaveEvent(physicalgraph.zwave.commands.wakeupv1.WakeUpNotification cmd)
{
def result = [createEvent(descriptionText: "${device.displayName} woke up", isStateChange: false)]
def cmds = []
if (!isConfigured()) {
// we're still in the process of configuring a newly joined device
log.debug("late configure")
result << response(configure())
result += response(configure())
} else {
log.debug("Device has been configured sending >> wakeUpNoMoreInformation()")
cmds << zwave.wakeUpV1.wakeUpNoMoreInformation().format()
result << response(cmds)
result += response(zwave.wakeUpV1.wakeUpNoMoreInformation())
}
result
}
@@ -189,29 +149,10 @@ def zwaveEvent(physicalgraph.zwave.commands.securityv1.SecurityMessageEncapsulat
}
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.manufacturerspecificv2.ManufacturerSpecificReport cmd) {
log.info "Executing zwaveEvent 72 (ManufacturerSpecificV2) : 05 (ManufacturerSpecificReport) with cmd: $cmd"
log.debug "manufacturerId: ${cmd.manufacturerId}"
log.debug "manufacturerName: ${cmd.manufacturerName}"
log.debug "productId: ${cmd.productId}"
log.debug "productTypeId: ${cmd.productTypeId}"
def msr = String.format("%04X-%04X-%04X", cmd.manufacturerId, cmd.productTypeId, cmd.productId)
updateDataValue("MSR", msr)
response(configure())
}
def zwaveEvent(physicalgraph.zwave.commands.batteryv1.BatteryReport cmd) {
def result = []
def map = [ name: "battery", unit: "%" ]
if (cmd.batteryLevel == 0xFF) {
map.value = 1
@@ -221,14 +162,11 @@ def zwaveEvent(physicalgraph.zwave.commands.batteryv1.BatteryReport cmd) {
map.value = cmd.batteryLevel
}
state.lastbatt = now()
result << createEvent(map)
if (device.latestValue("powerSupply") != "USB Cable"){
result << createEvent(name: "batteryStatus", value: "${map.value} % battery", displayed: false)
}
result
createEvent(map)
}
def zwaveEvent(physicalgraph.zwave.commands.sensormultilevelv5.SensorMultilevelReport cmd){
def zwaveEvent(physicalgraph.zwave.commands.sensormultilevelv5.SensorMultilevelReport cmd)
{
def map = [:]
switch (cmd.sensorType) {
case 1:
@@ -270,6 +208,7 @@ def motionEvent(value) {
}
def zwaveEvent(physicalgraph.zwave.commands.sensorbinaryv2.SensorBinaryReport cmd) {
setConfigured()
motionEvent(cmd.sensorValue)
}
@@ -286,112 +225,47 @@ def zwaveEvent(physicalgraph.zwave.commands.notificationv3.NotificationReport cm
result << createEvent(name: "tamper", value: "clear", displayed: false)
break
case 3:
result << createEvent(name: "tamper", value: "detected", descriptionText: "$device.displayName was tampered")
result << createEvent(name: "tamper", value: "detected", descriptionText: "$device.displayName was moved")
break
case 7:
result << motionEvent(1)
break
}
} else {
log.warn "Need to handle this cmd.notificationType: ${cmd.notificationType}"
result << createEvent(descriptionText: cmd.toString(), isStateChange: false)
}
result
}
def zwaveEvent(physicalgraph.zwave.commands.configurationv2.ConfigurationReport cmd) {
log.debug "ConfigurationReport: $cmd"
def result = []
def value
if (cmd.parameterNumber == 9 && cmd.configurationValue[0] == 0) {
value = "USB Cable"
if (!isConfigured()) {
log.debug("ConfigurationReport: configuring device")
result << response(configure())
}
result << createEvent(name: "batteryStatus", value: value, displayed: false)
result << createEvent(name: "powerSupply", value: value, displayed: false)
}else 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: ${cmd}"
createEvent(descriptionText: cmd.toString(), isStateChange: false)
}
def configure() {
// This sensor joins as a secure device if you double-click the button to include it
log.debug "${device.displayName} is configuring its settings"
def request = []
if (device.device.rawDescription =~ /98/ && !state.sec) {
log.debug "Multi 6 not sending configure until secure"
return []
}
log.debug "Multi 6 configure()"
def request = [
// send no-motion report 20 seconds after motion stops
zwave.configurationV1.configurationSet(parameterNumber: 3, size: 2, scaledConfigurationValue: 20),
//1. set association groups for hub
request << zwave.associationV1.associationSet(groupingIdentifier:1, nodeId:zwaveHubNodeId)
// report every 8 minutes (threshold reports don't work on battery power)
zwave.configurationV1.configurationSet(parameterNumber: 111, size: 4, scaledConfigurationValue: 8*60),
request << zwave.associationV1.associationSet(groupingIdentifier:2, nodeId:zwaveHubNodeId)
//2. automatic report flags
// param 101 -103 [4 bytes] 128: light sensor, 64 humidity, 32 temperature sensor, 2 ultraviolet sensor, 1 battery sensor -> send command 227 to get all reports
request << zwave.configurationV1.configurationSet(parameterNumber: 101, size: 4, scaledConfigurationValue: 226) //association group 1
request << zwave.configurationV1.configurationSet(parameterNumber: 102, size: 4, scaledConfigurationValue: 1) //association group 2
//3. no-motion report x seconds after motion stops (default 20 secs)
request << zwave.configurationV1.configurationSet(parameterNumber: 3, size: 2, scaledConfigurationValue: timeOptionValueMap[motionDelayTime] ?: 20)
//4. motionSensitivity 3 levels: 64-normal (default), 127-maximum, 0-minimum
request << zwave.configurationV1.configurationSet(parameterNumber: 6, size: 1,
scaledConfigurationValue:
motionSensitivity == "normal" ? 64 :
motionSensitivity == "maximum" ? 127 :
motionSensitivity == "minimum" ? 0 : 64)
//5. report every x minutes (threshold reports don't work on battery power, default 8 mins)
request << zwave.configurationV1.configurationSet(parameterNumber: 111, size: 4, scaledConfigurationValue: timeOptionValueMap[reportInterval] ?: 8*60) //association group 1
request << zwave.configurationV1.configurationSet(parameterNumber: 112, size: 4, scaledConfigurationValue: 6*60*60) //association group 2
//6. report automatically on threshold change
request << zwave.configurationV1.configurationSet(parameterNumber: 40, size: 1, scaledConfigurationValue: 1)
//7. query sensor data
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
request << zwave.sensorMultilevelV5.sensorMultilevelGet(sensorType: 0x1B) //ultravioletIndex
setConfigured("true")
// report automatically on threshold change
zwave.configurationV1.configurationSet(parameterNumber: 40, size: 1, scaledConfigurationValue: 1),
zwave.batteryV1.batteryGet(),
zwave.sensorBinaryV2.sensorBinaryGet(sensorType: 0x0C),
]
commands(request) + ["delay 20000", zwave.wakeUpV1.wakeUpNoMoreInformation().format()]
}
private def getTimeOptionValueMap() { [
"20 seconds" : 20,
"40 seconds" : 40,
"1 minute" : 60,
"2 minutes" : 2*60,
"3 minutes" : 3*60,
"4 minutes" : 4*60,
"5 minutes" : 5*60,
"8 minutes" : 8*60,
"15 minutes" : 15*60,
"30 minutes" : 30*60,
"1 hours" : 1*60*60,
"6 hours" : 6*60*60,
"12 hours" : 12*60*60,
"18 hours" : 6*60*60,
"24 hours" : 24*60*60,
]}
private setConfigured(configure) {
updateDataValue("configured", configure)
private setConfigured() {
updateDataValue("configured", "true")
}
private isConfigured() {
@@ -407,6 +281,5 @@ private command(physicalgraph.zwave.Command cmd) {
}
private commands(commands, delay=200) {
log.info "sending commands: ${commands}"
delayBetween(commands.collect{ command(it) }, delay)
}

View File

@@ -1,989 +0,0 @@
/**
* Bose SoundTouch
*
* Copyright 2015 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.
*
*/
// Needed to be able to serialize the XmlSlurper data back to XML
import groovy.xml.XmlUtil
// for the UI
metadata {
definition (name: "Bose SoundTouch", namespace: "smartthings", author: "SmartThings") {
/**
* List our capabilties. Doing so adds predefined command(s) which
* belong to the capability.
*/
capability "Switch"
capability "Refresh"
capability "Music Player"
capability "Polling"
/**
* Define all commands, ie, if you have a custom action not
* covered by a capability, you NEED to define it here or
* the call will not be made.
*
* To call a capability function, just prefix it with the name
* of the capability, for example, refresh would be "refresh.refresh"
*/
command "preset1"
command "preset2"
command "preset3"
command "preset4"
command "preset5"
command "preset6"
command "aux"
command "everywhereJoin"
command "everywhereLeave"
}
/**
* Define the various tiles and the states that they can be in.
* The 2nd parameter defines an event which the tile listens to,
* if received, it tries to map it to a state.
*
* You can also use ${currentValue} for the value of the event
* or ${name} for the name of the event. Just make SURE to use
* single quotes, otherwise it will only be interpreted at time of
* launch, instead of every time the event triggers.
*/
valueTile("nowplaying", "device.nowplaying", width: 2, height: 1, decoration:"flat") {
state "nowplaying", label:'${currentValue}', action:"refresh.refresh"
}
standardTile("switch", "device.switch", width: 1, height: 1, canChangeIcon: true) {
state "off", label: '${name}', action: "switch.on", icon: "st.Electronics.electronics16", backgroundColor: "#ffffff"
state "on", label: '${name}', action: "switch.off", icon: "st.Electronics.electronics16", backgroundColor: "#79b821"
}
valueTile("1", "device.station1", decoration: "flat", canChangeIcon: false) {
state "station1", label:'${currentValue}', action:"preset1"
}
valueTile("2", "device.station2", decoration: "flat", canChangeIcon: false) {
state "station2", label:'${currentValue}', action:"preset2"
}
valueTile("3", "device.station3", decoration: "flat", canChangeIcon: false) {
state "station3", label:'${currentValue}', action:"preset3"
}
valueTile("4", "device.station4", decoration: "flat", canChangeIcon: false) {
state "station4", label:'${currentValue}', action:"preset4"
}
valueTile("5", "device.station5", decoration: "flat", canChangeIcon: false) {
state "station5", label:'${currentValue}', action:"preset5"
}
valueTile("6", "device.station6", decoration: "flat", canChangeIcon: false) {
state "station6", label:'${currentValue}', action:"preset6"
}
valueTile("aux", "device.switch", decoration: "flat", canChangeIcon: false) {
state "default", label:'Auxillary\nInput', action:"aux"
}
standardTile("refresh", "device.nowplaying", decoration: "flat", canChangeIcon: false) {
state "default", label:'', action:"refresh", icon:"st.secondary.refresh"
}
controlTile("volume", "device.volume", "slider", height:1, width:3, range:"(0..100)") {
state "volume", action:"music Player.setLevel"
}
standardTile("playpause", "device.playpause", decoration: "flat") {
state "pause", label:'', icon:'st.sonos.play-btn', action:'music Player.play'
state "play", label:'', icon:'st.sonos.pause-btn', action:'music Player.pause'
}
standardTile("prev", "device.switch", decoration: "flat", canChangeIcon: false) {
state "default", label:'', action:"music Player.previousTrack", icon:"st.sonos.previous-btn"
}
standardTile("next", "device.switch", decoration: "flat", canChangeIcon: false) {
state "default", label:'', action:"music Player.nextTrack", icon:"st.sonos.next-btn"
}
valueTile("everywhere", "device.everywhere", width:2, height:1, decoration:"flat") {
state "join", label:"Join\nEverywhere", action:"everywhereJoin"
state "leave", label:"Leave\nEverywhere", action:"everywhereLeave"
// Final state is used if the device is in a state where joining is not possible
state "unavailable", label:"Not Available"
}
// Defines which tile to show in the overview
main "switch"
// Defines which tile(s) to show when user opens the detailed view
details ([
"nowplaying", "refresh", // Row 1 (112)
"prev", "playpause", "next", // Row 2 (123)
"volume", // Row 3 (111)
"1", "2", "3", // Row 4 (123)
"4", "5", "6", // Row 5 (123)
"aux", "everywhere"]) // Row 6 (122)
}
/**************************************************************************
* The following section simply maps the actions as defined in
* the metadata into onAction() calls.
*
* This is preferred since some actions can be dealt with more
* efficiently this way. Also keeps all user interaction code in
* one place.
*
*/
def off() { onAction("off") }
def on() { onAction("on") }
def volup() { onAction("volup") }
def voldown() { onAction("voldown") }
def preset1() { onAction("1") }
def preset2() { onAction("2") }
def preset3() { onAction("3") }
def preset4() { onAction("4") }
def preset5() { onAction("5") }
def preset6() { onAction("6") }
def aux() { onAction("aux") }
def refresh() { onAction("refresh") }
def setLevel(level) { onAction("volume", level) }
def play() { onAction("play") }
def pause() { onAction("pause") }
def mute() { onAction("mute") }
def unmute() { onAction("unmute") }
def previousTrack() { onAction("previous") }
def nextTrack() { onAction("next") }
def everywhereJoin() { onAction("ejoin") }
def everywhereLeave() { onAction("eleave") }
/**************************************************************************/
/**
* Main point of interaction with things.
* This function is called by SmartThings Cloud with the resulting data from
* any action (see HubAction()).
*
* Conversely, to execute any actions, you need to return them as a single
* item or a list (flattened).
*
* @param data Data provided by the cloud
* @return an action or a list() of actions. Can also return null if no further
* action is desired at this point.
*/
def parse(String event) {
def data = parseLanMessage(event)
def actions = []
// List of permanent root node handlers
def handlers = [
"nowPlaying" : "boseParseNowPlaying",
"volume" : "boseParseVolume",
"presets" : "boseParsePresets",
"zone" : "boseParseEverywhere",
]
// No need to deal with non-XML data
if (!data.headers || !data.headers?."content-type".contains("xml"))
return null
// Move any pending callbacks into ready state
prepareCallbacks()
def xml = new XmlSlurper().parseText(data.body)
// Let each parser take a stab at it
handlers.each { node,func ->
if (xml.name() == node)
actions << "$func"(xml)
}
// If we have callbacks waiting for this...
actions << processCallbacks(xml)
// Be nice and helpful
if (actions.size() == 0) {
log.warn "parse(): Unhandled data = " + lan
return null
}
// Issue new actions
return actions.flatten()
}
/**
* Called when the devicetype is first installed.
*
* @return action(s) to take or null
*/
def installed() {
onAction("refresh")
}
/**
* Responsible for dealing with user input and taking the
* appropiate action.
*
* @param user The user interaction
* @param data Additional data (optional)
* @return action(s) to take (or null if none)
*/
def onAction(String user, data=null) {
log.info "onAction(${user})"
// Keep IP address current (since device may have changed)
state.address = parent.resolveDNI2Address(device.deviceNetworkId)
// Process action
def actions = null
switch (user) {
case "on":
actions = boseSetPowerState(true)
break
case "off":
boseSetNowPlaying(null, "STANDBY")
actions = boseSetPowerState(false)
break
case "volume":
actions = boseSetVolume(data)
break
case "aux":
boseSetNowPlaying(null, "AUX")
boseZoneReset()
sendEvent(name:"everywhere", value:"unavailable")
case "1":
case "2":
case "3":
case "4":
case "5":
case "6":
actions = boseSetInput(user)
break
case "refresh":
boseSetNowPlaying(null, "REFRESH")
actions = [boseRefreshNowPlaying(), boseGetPresets(), boseGetVolume(), boseGetEverywhereState()]
break
case "play":
actions = [boseSetPlayMode(true), boseRefreshNowPlaying()]
break
case "pause":
actions = [boseSetPlayMode(false), boseRefreshNowPlaying()]
break
case "previous":
actions = [boseChangeTrack(-1), boseRefreshNowPlaying()]
break
case "next":
actions = [boseChangeTrack(1), boseRefreshNowPlaying()]
break
case "mute":
actions = boseSetMute(true)
break
case "unmute":
actions = boseSetMute(false)
break
case "ejoin":
actions = boseZoneJoin()
break
case "eleave":
actions = boseZoneLeave()
break
default:
log.error "Unhandled action: " + user
}
// Make sure we don't have nested lists
if (actions instanceof List)
return actions.flatten()
return actions
}
/**
* Called every so often (every 5 minutes actually) to refresh the
* tiles so the user gets the correct information.
*/
def poll() {
return boseRefreshNowPlaying()
}
/**
* Joins this speaker into the everywhere zone
*/
def boseZoneJoin() {
def results = []
def posts = parent.boseZoneJoin(this)
for (post in posts) {
if (post['endpoint'])
results << bosePOST(post['endpoint'], post['body'], post['host'])
}
sendEvent(name:"everywhere", value:"leave")
results << boseRefreshNowPlaying()
return results
}
/**
* Removes this speaker from the everywhere zone
*/
def boseZoneLeave() {
def results = []
def posts = parent.boseZoneLeave(this)
for (post in posts) {
if (post['endpoint'])
results << bosePOST(post['endpoint'], post['body'], post['host'])
}
sendEvent(name:"everywhere", value:"join")
results << boseRefreshNowPlaying()
return results
}
/**
* Removes this speaker and any children WITHOUT
* signaling the speakers themselves. This is needed
* in certain cases where we know the user action will
* cause the zone to collapse (for example, AUX)
*/
def boseZoneReset() {
parent.boseZoneReset()
}
/**
* Handles <nowPlaying></nowPlaying> information and can also
* perform addtional actions if there is a pending command
* stored in the state variable. For example, the power is
* handled this way.
*
* @param xmlData Data to parse
* @return command
*/
def boseParseNowPlaying(xmlData) {
def result = []
// Perform display update, allow it to add additional commands
if (boseSetNowPlaying(xmlData)) {
result << boseRefreshNowPlaying()
}
return result
}
/**
* Parses volume data
*
* @param xmlData Data to parse
* @return command
*/
def boseParseVolume(xmlData) {
def result = []
sendEvent(name:"volume", value:xmlData.actualvolume.text())
sendEvent(name:"mute", value:(Boolean.toBoolean(xmlData.muteenabled.text()) ? "unmuted" : "muted"))
return result
}
/**
* Parses the result of the boseGetEverywhereState() call
*
* @param xmlData
*/
def boseParseEverywhere(xmlData) {
// No good way of detecting the correct state right now
}
/**
* Parses presets and updates the buttons
*
* @param xmlData Data to parse
* @return command
*/
def boseParsePresets(xmlData) {
def result = []
state.preset = [:]
def missing = ["1", "2", "3", "4", "5", "6"]
for (preset in xmlData.preset) {
def id = preset.attributes()['id']
def name = preset.ContentItem.itemName[0].text().replaceAll(~/ +/, "\n")
if (name == "##TRANS_SONGS##")
name = "Local\nPlaylist"
sendEvent(name:"station${id}", value:name)
missing = missing.findAll { it -> it != id }
// Store the presets into the state for recall later
state.preset["$id"] = XmlUtil.serialize(preset.ContentItem)
}
for (id in missing) {
state.preset["$id"] = null
sendEvent(name:"station${id}", value:"Preset $id\n\nNot set")
}
return result
}
/**
* Based on <nowPlaying></nowPlaying>, updates the visual
* representation of the speaker
*
* @param xmlData The nowPlaying info
* @param override Provide the source type manually (optional)
*
* @return true if it would prefer a refresh soon
*/
def boseSetNowPlaying(xmlData, override=null) {
def needrefresh = false
def nowplaying = null
if (xmlData && xmlData.playStatus) {
switch(xmlData.playStatus) {
case "BUFFERING_STATE":
nowplaying = "Please wait\nBuffering..."
needrefresh = true
break
case "PLAY_STATE":
sendEvent(name:"playpause", value:"play")
break
case "PAUSE_STATE":
case "STOP_STATE":
sendEvent(name:"playpause", value:"pause")
break
}
}
// If the previous section didn't handle this, take another stab at it
if (!nowplaying) {
nowplaying = ""
switch (override ? override : xmlData.attributes()['source']) {
case "AUX":
nowplaying = "Auxiliary Input"
break
case "AIRPLAY":
nowplaying = "Air Play"
break
case "STANDBY":
nowplaying = "Standby"
break
case "INTERNET_RADIO":
nowplaying = "${xmlData.stationName.text()}\n\n${xmlData.description.text()}"
break
case "REFRESH":
nowplaying = "Please wait"
break
case "SPOTIFY":
case "DEEZER":
case "PANDORA":
case "IHEART":
if (xmlData.ContentItem.itemName[0])
nowplaying += "[${xmlData.ContentItem.itemName[0].text()}]\n\n"
case "STORED_MUSIC":
nowplaying += "${xmlData.track.text()}"
if (xmlData.artist)
nowplaying += "\nby\n${xmlData.artist.text()}"
if (xmlData.album)
nowplaying += "\n\n(${xmlData.album.text()})"
break
default:
if (xmlData != null)
nowplaying = "${xmlData.ContentItem.itemName[0].text()}"
else
nowplaying = "Unknown"
}
}
// Some last parsing which only deals with actual data from device
if (xmlData) {
if (xmlData.attributes()['source'] == "STANDBY") {
log.trace "nowPlaying reports standby: " + XmlUtil.serialize(xmlData)
sendEvent(name:"switch", value:"off")
} else {
sendEvent(name:"switch", value:"on")
}
boseSetPlayerAttributes(xmlData)
}
// Do not allow a standby device or AUX to be master
if (!parent.boseZoneHasMaster() && (override ? override : xmlData.attributes()['source']) == "STANDBY")
sendEvent(name:"everywhere", value:"unavailable")
else if ((override ? override : xmlData.attributes()['source']) == "AUX")
sendEvent(name:"everywhere", value:"unavailable")
else if (boseGetZone()) {
log.info "We're in the zone: " + boseGetZone()
sendEvent(name:"everywhere", value:"leave")
} else
sendEvent(name:"everywhere", value:"join")
sendEvent(name:"nowplaying", value:nowplaying)
return needrefresh
}
/**
* Updates the attributes exposed by the music Player capability
*
* @param xmlData The NowPlaying XML data
*/
def boseSetPlayerAttributes(xmlData) {
// Refresh attributes
def trackText = ""
def trackDesc = ""
def trackData = [:]
switch (xmlData.attributes()['source']) {
case "STANDBY":
trackData["station"] = trackText = trackDesc = "Standby"
break
case "AUX":
trackData["station"] = trackText = trackDesc = "Auxiliary Input"
break
case "AIRPLAY":
trackData["station"] = trackText = trackDesc = "Air Play"
break
case "SPOTIFY":
case "DEEZER":
case "PANDORA":
case "IHEART":
case "STORED_MUSIC":
trackText = trackDesc = "${xmlData.track.text()}"
trackData["name"] = xmlData.track.text()
if (xmlData.artist) {
trackText += " by ${xmlData.artist.text()}"
trackDesc += " - ${xmlData.artist.text()}"
trackData["artist"] = xmlData.artist.text()
}
if (xmlData.album) {
trackText += " (${xmlData.album.text()})"
trackData["album"] = xmlData.album.text()
}
break
case "INTERNET_RADIO":
trackDesc = xmlData.stationName.text()
trackText = xmlData.stationName.text() + ": " + xmlData.description.text()
trackData["station"] = xmlData.stationName.text()
break
default:
trackText = trackDesc = xmlData.ContentItem.itemName[0].text()
}
sendEvent(name:"trackDescription", value:trackDesc, descriptionText:trackText)
}
/**
* Queries the state of the "play everywhere" mode
*
* @return command
*/
def boseGetEverywhereState() {
return boseGET("/getZone")
}
/**
* Generates a remote key event
*
* @param key The name of the key
*
* @return command
*
* @note It's VITAL that it's done as two requests, or it will ignore the
* the second key info.
*/
def boseKeypress(key) {
def press = "<key state=\"press\" sender=\"Gabbo\">${key}</key>"
def release = "<key state=\"release\" sender=\"Gabbo\">${key}</key>"
return [bosePOST("/key", press), bosePOST("/key", release)]
}
/**
* Pauses or plays current preset
*
* @param play If true, plays, else it pauses (depending on preset, may stop)
*
* @return command
*/
def boseSetPlayMode(boolean play) {
log.trace "Sending " + (play ? "PLAY" : "PAUSE")
return boseKeypress(play ? "PLAY" : "PAUSE")
}
/**
* Sets the volume in a deterministic way.
*
* @param New volume level, ranging from 0 to 100
*
* @return command
*/
def boseSetVolume(int level) {
def result = []
int vol = Math.min(100, Math.max(level, 0))
sendEvent(name:"volume", value:"${vol}")
return [bosePOST("/volume", "<volume>${vol}</volume>"), boseGetVolume()]
}
/**
* Sets the mute state, unfortunately, for now, we need to query current
* state before taking action (no discrete mute/unmute)
*
* @param mute If true, mutes the system
* @return command
*/
def boseSetMute(boolean mute) {
queueCallback('volume', 'cb_boseSetMute', mute ? 'MUTE' : 'UNMUTE')
return boseGetVolume()
}
/**
* Callback for boseSetMute(), checks current state and changes it
* if it doesn't match the requested state.
*
* @param xml The volume XML data
* @param mute The new state of mute
*
* @return command
*/
def cb_boseSetMute(xml, mute) {
def result = []
if ((xml.muteenabled.text() == 'false' && mute == 'MUTE') ||
(xml.muteenabled.text() == 'true' && mute == 'UNMUTE'))
{
result << boseKeypress("MUTE")
}
log.trace("muteunmute: " + ((mute == "MUTE") ? "unmute" : "mute"))
sendEvent(name:"muteunmute", value:((mute == "MUTE") ? "unmute" : "mute"))
return result
}
/**
* Refreshes the state of the volume
*
* @return command
*/
def boseGetVolume() {
return boseGET("/volume")
}
/**
* Changes the track to either the previous or next
*
* @param direction > 0 = next track, < 0 = previous track, 0 = no action
* @return command
*/
def boseChangeTrack(int direction) {
if (direction < 0) {
return boseKeypress("PREV_TRACK")
} else if (direction > 0) {
return boseKeypress("NEXT_TRACK")
}
return []
}
/**
* Sets the input to preset 1-6 or AUX
*
* @param input The input (one of 1,2,3,4,5,6,aux)
*
* @return command
*
* @note If no presets have been loaded, it will first refresh the presets.
*/
def boseSetInput(input) {
log.info "boseSetInput(${input})"
def result = []
if (!state.preset) {
result << boseGetPresets()
queueCallback('presets', 'cb_boseSetInput', input)
} else {
result << cb_boseSetInput(null, input)
}
return result
}
/**
* Callback used by boseSetInput(), either called directly by
* boseSetInput() if we already have presets, or called after
* retreiving the presets for the first time.
*
* @param xml The presets XML data
* @param input Desired input
*
* @return command
*
* @note Uses KEY commands for AUX, otherwise /select endpoint.
* Reason for this is latency. Since keypresses are done
* in pairs (press + release), you could accidentally change
* the preset if there is a long delay between the two.
*/
def cb_boseSetInput(xml, input) {
def result = []
if (input >= "1" && input <= "6" && state.preset["$input"])
result << bosePOST("/select", state.preset["$input"])
else if (input.toLowerCase() == "aux") {
result << boseKeypress("AUX_INPUT")
}
// Horrible workaround... but we need to delay
// the update by at least a few seconds...
result << boseRefreshNowPlaying(3000)
return result
}
/**
* Sets the power state of the bose unit
*
* @param device The device in-question
* @param enable True to power on, false to power off
*
* @return command
*
* @note Will first query state before acting since there
* is no discreete call.
*/
def boseSetPowerState(boolean enable) {
log.info "boseSetPowerState(${enable})"
queueCallback('nowPlaying', "cb_boseSetPowerState", enable ? "POWERON" : "POWEROFF")
return boseRefreshNowPlaying()
}
/**
* Callback function used by boseSetPowerState(), is used
* to handle the fact that we only have a toggle for power.
*
* @param xml The XML data from nowPlaying
* @param state The requested state
*
* @return command
*/
def cb_boseSetPowerState(xml, state) {
def result = []
if ( (xml.attributes()['source'] == "STANDBY" && state == "POWERON") ||
(xml.attributes()['source'] != "STANDBY" && state == "POWEROFF") )
{
result << boseKeypress("POWER")
if (state == "POWERON") {
result << boseRefreshNowPlaying()
queueCallback('nowPlaying', "cb_boseConfirmPowerOn", 5)
}
}
return result.flatten()
}
/**
* We're sometimes too quick on the draw and get a refreshed nowPlaying
* which shows standby (essentially, the device has yet to completely
* transition to awake state), so we need to poll a few times extra
* to make sure we get it right.
*
* @param xml The XML data from nowPlaying
* @param tries A counter which will decrease, once it reaches zero,
* we give up and assume that whatever we got was correct.
* @return command
*/
def cb_boseConfirmPowerOn(xml, tries) {
def result = []
log.warn "boseConfirmPowerOn() attempt #" + tries
if (xml.attributes()['source'] == "STANDBY" && tries > 0) {
result << boseRefreshNowPlaying()
queueCallback('nowPlaying', "cb_boseConfirmPowerOn", tries-1)
}
return result
}
/**
* Requests an update on currently playing item(s)
*
* @param delay If set to non-zero, delays x ms before issuing
*
* @return command
*/
def boseRefreshNowPlaying(delay=0) {
if (delay > 0) {
return ["delay ${delay}", boseGET("/now_playing")]
}
return boseGET("/now_playing")
}
/**
* Requests the list of presets
*
* @return command
*/
def boseGetPresets() {
return boseGET("/presets")
}
/**
* Utility function, makes GET requests to BOSE device
*
* @param path What endpoint
*
* @return command
*/
def boseGET(String path) {
new physicalgraph.device.HubAction([
method: "GET",
path: path,
headers: [
HOST: state.address + ":8090",
]])
}
/**
* Utility function, makes a POST request to the BOSE device with
* the provided data.
*
* @param path What endpoint
* @param data What data
* @param address Specific ip and port (optional)
*
* @return command
*/
def bosePOST(String path, String data, String address=null) {
new physicalgraph.device.HubAction([
method: "POST",
path: path,
body: data,
headers: [
HOST: address ?: (state.address + ":8090"),
]])
}
/**
* Queues a callback function for when a specific XML root is received
* Will execute on subsequent parse() call(s), never on the current
* parse() call.
*
* @param root The root node that this callback should react to
* @param func Name of the function
* @param param Parameters for function (optional)
*/
def queueCallback(String root, String func, param=null) {
if (!state.pending)
state.pending = [:]
if (!state.pending[root])
state.pending[root] = []
state.pending[root] << ["$func":"$param"]
}
/**
* Transfers the pending callbacks into readiness state
* so they can be executed by processCallbacks()
*
* This is needed to avoid reacting to queueCallbacks() within
* the same loop.
*/
def prepareCallbacks() {
if (!state.pending)
return
if (!state.ready)
state.ready = [:]
state.ready << state.pending
state.pending = [:]
}
/**
* Executes any ready callback for a specific root node
* with associated parameter and then clears that entry.
*
* If a callback returns data, it's added to a list of
* commands which is returned to the caller of this function
*
* Once a callback has been used, it's removed from the list
* of queued callbacks (ie, it executes only once!)
*
* @param xml The XML data to be examined and delegated
* @return list of commands
*/
def processCallbacks(xml) {
def result = []
if (!state.ready)
return result
if (state.ready[xml.name()]) {
state.ready[xml.name()].each { callback ->
callback.each { func, param ->
if (func != "func") {
if (param)
result << "$func"(xml, param)
else
result << "$func"(xml)
}
}
}
state.ready.remove(xml.name())
}
return result.flatten()
}
/**
* State managament for the Play Everywhere zone.
* This is typically called from the parent.
*
* A device is either:
*
* null = Not participating
* server = running the show
* client = under the control of the server
*
* @param newstate (see above for types)
*/
def boseSetZone(String newstate) {
log.debug "boseSetZone($newstate)"
state.zone = newstate
// Refresh our state
if (newstate) {
sendEvent(name:"everywhere", value:"leave")
} else {
sendEvent(name:"everywhere", value:"join")
}
}
/**
* Used by the Everywhere zone, returns the current state
* of zone membership (null, server, client)
* This is typically called from the parent.
*
* @return state
*/
def boseGetZone() {
return state.zone
}
/**
* Sets the DeviceID of this particular device.
*
* Needs to be done this way since DNI is not always
* the same as DeviceID which is used internally by
* BOSE.
*
* @param devID The DeviceID
*/
def boseSetDeviceID(String devID) {
state.deviceID = devID
}
/**
* Retrieves the DeviceID for this device
*
* @return deviceID
*/
def boseGetDeviceID() {
return state.deviceID
}
/**
* Returns the IP of this device
*
* @return IP address
*/
def getDeviceIP() {
return parent.resolveDNI2Address(device.deviceNetworkId)
}

View File

@@ -15,7 +15,6 @@
* Author: SmartThings
* Date: 2013-12-04
*/
//DEPRECATED - Using the generic DTH for this device. Users need to be moved before deleting this DTH
metadata {
definition (name: "CentraLite Dimmer", namespace: "smartthings", author: "SmartThings") {
capability "Switch Level"
@@ -26,6 +25,7 @@ metadata {
capability "Refresh"
capability "Sensor"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0008,0B04,0B05", outClusters: "0019"
}
// simulator metadata
@@ -40,7 +40,7 @@ metadata {
}
tiles(scale: 2) {
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "on", label:'${name}', action:"switch.off", icon:"st.switches.switch.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${name}', action:"switch.on", icon:"st.switches.switch.off", backgroundColor:"#ffffff", nextState:"turningOn"

View File

@@ -153,37 +153,31 @@ def refresh()
//}
def getTemperature(value) {
if (value != null) {
def celsius = Integer.parseInt(value, 16) / 100
if (getTemperatureScale() == "C") {
return celsius
} else {
return Math.round(celsiusToFahrenheit(celsius))
}
def celsius = Integer.parseInt(value, 16) / 100
if(getTemperatureScale() == "C"){
return celsius
} else {
return celsiusToFahrenheit(celsius) as Integer
}
}
def setHeatingSetpoint(degrees) {
if (degrees != null) {
def temperatureScale = getTemperatureScale()
def degreesInteger = Math.round(degrees)
log.debug "setHeatingSetpoint({$degreesInteger} ${temperatureScale})"
sendEvent("name": "heatingSetpoint", "value": degreesInteger)
def celsius = (getTemperatureScale() == "C") ? degreesInteger : (fahrenheitToCelsius(degreesInteger) as Double).round(2)
"st wattr 0x${device.deviceNetworkId} 1 0x201 0x12 0x29 {" + hex(celsius * 100) + "}"
}
def temperatureScale = getTemperatureScale()
def degreesInteger = degrees as Integer
log.debug "setHeatingSetpoint({$degreesInteger} ${temperatureScale})"
sendEvent("name":"heatingSetpoint", "value":degreesInteger)
def celsius = (getTemperatureScale() == "C") ? degreesInteger : (fahrenheitToCelsius(degreesInteger) as Double).round(2)
"st wattr 0x${device.deviceNetworkId} 1 0x201 0x12 0x29 {" + hex(celsius*100) + "}"
}
def setCoolingSetpoint(degrees) {
if (degrees != null) {
def degreesInteger = Math.round(degrees)
log.debug "setCoolingSetpoint({$degreesInteger} ${temperatureScale})"
sendEvent("name": "coolingSetpoint", "value": degreesInteger)
def celsius = (getTemperatureScale() == "C") ? degreesInteger : (fahrenheitToCelsius(degreesInteger) as Double).round(2)
"st wattr 0x${device.deviceNetworkId} 1 0x201 0x11 0x29 {" + hex(celsius * 100) + "}"
}
def degreesInteger = degrees as Integer
log.debug "setCoolingSetpoint({$degreesInteger} ${temperatureScale})"
sendEvent("name":"coolingSetpoint", "value":degreesInteger)
def celsius = (getTemperatureScale() == "C") ? degreesInteger : (fahrenheitToCelsius(degreesInteger) as Double).round(2)
"st wattr 0x${device.deviceNetworkId} 1 0x201 0x11 0x29 {" + hex(celsius*100) + "}"
}
def modes() {

View File

@@ -38,63 +38,169 @@ metadata {
}
// UI tile definitions
tiles(scale: 2) {
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "on", label:'${name}', action:"switch.off", icon:"st.switches.light.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${name}', action:"switch.on", icon:"st.switches.light.off", backgroundColor:"#ffffff", nextState:"turningOn"
attributeState "turningOn", label:'${name}', action:"switch.off", icon:"st.switches.light.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "turningOff", label:'${name}', action:"switch.on", icon:"st.switches.light.off", backgroundColor:"#ffffff", nextState:"turningOn"
}
tileAttribute ("device.level", key: "SLIDER_CONTROL") {
attributeState "level", action:"switch level.setLevel"
}
}
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", "refresh"])
}
tiles {
standardTile("switch", "device.switch", width: 2, height: 2, canChangeIcon: true) {
state "off", label: '${name}', action: "switch.on", icon: "st.switches.light.off", backgroundColor: "#ffffff"
state "on", label: '${name}', action: "switch.off", icon: "st.switches.light.on", backgroundColor: "#79b821"
}
standardTile("refresh", "device.switch", inactiveLabel: false, decoration: "flat") {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
controlTile("levelSliderControl", "device.level", "slider", height: 1, width: 3, inactiveLabel: false) {
state "level", action:"switch level.setLevel"
}
valueTile("level", "device.level", inactiveLabel: false, decoration: "flat") {
state "level", label: 'Level ${currentValue}%'
}
main(["switch"])
details(["switch", "level", "levelSliderControl", "refresh"])
}
}
// Parse incoming device messages to generate events
def parse(String description) {
log.debug "description is $description"
def resultMap = zigbee.getKnownDescription(description)
if (resultMap) {
log.info resultMap
if (resultMap.type == "update") {
log.info "$device updates: ${resultMap.value}"
log.trace description
if (description?.startsWith("catchall:")) {
def msg = zigbee.parse(description)
log.trace msg
log.trace "data: $msg.data"
if(description?.endsWith("0100") ||description?.endsWith("1001"))
{
def result = createEvent(name: "switch", value: "on")
log.debug "Parse returned ${result?.descriptionText}"
return result
}
else {
sendEvent(name: resultMap.type, value: resultMap.value)
if(description?.endsWith("0000") || description?.endsWith("1000"))
{
def result = createEvent(name: "switch", value: "off")
log.debug "Parse returned ${result?.descriptionText}"
return result
}
}
if (description?.startsWith("read attr")) {
log.debug description[-2..-1]
def i = Math.round(convertHexToInt(description[-2..-1]) / 256 * 100 )
sendEvent( name: "level", value: i )
}
else {
log.warn "DID NOT PARSE MESSAGE for description : $description"
log.debug zigbee.parseDescriptionAsMap(description)
}
}
def off() {
zigbee.off()
}
def on() {
zigbee.on()
}
log.debug "on()"
sendEvent(name: "switch", value: "on")
"st cmd 0x${device.deviceNetworkId} ${endpointId} 6 1 {}"
}
def setLevel(value) {
zigbee.setLevel(value)
def off() {
log.debug "off()"
sendEvent(name: "switch", value: "off")
"st cmd 0x${device.deviceNetworkId} ${endpointId} 6 0 {}"
}
def refresh() {
zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.onOffConfig() + zigbee.levelConfig()
// Schedule poll every 1 min
//schedule("0 */1 * * * ?", poll)
//poll()
[
"st rattr 0x${device.deviceNetworkId} ${endpointId} 6 0", "delay 500",
"st rattr 0x${device.deviceNetworkId} ${endpointId} 8 0"
]
}
def setLevel(value) {
log.trace "setLevel($value)"
def cmds = []
if (value == 0) {
sendEvent(name: "switch", value: "off")
cmds << "st cmd 0x${device.deviceNetworkId} ${endpointId} 6 0 {0000 0000}"
}
else if (device.latestValue("switch") == "off") {
sendEvent(name: "switch", value: "on")
}
sendEvent(name: "level", value: value)
def level = hex(value * 255/100)
cmds << "st cmd 0x${device.deviceNetworkId} ${endpointId} 8 4 {${level} 0000}"
//log.debug cmds
cmds
}
def configure() {
log.debug "Configuring Reporting and Bindings."
zigbee.onOffConfig() + zigbee.levelConfig() + zigbee.onOffRefresh() + zigbee.levelRefresh()
String zigbeeId = swapEndianHex(device.hub.zigbeeId)
log.debug "Confuguring Reporting and Bindings."
def configCmds = [
//Switch Reporting
"zcl global send-me-a-report 6 0 0x10 0 3600 {01}", "delay 500",
"send 0x${device.deviceNetworkId} ${endpointId} 1", "delay 1000",
//Level Control Reporting
"zcl global send-me-a-report 8 0 0x20 5 3600 {0010}", "delay 200",
"send 0x${device.deviceNetworkId} ${endpointId} 1", "delay 1500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 6 {${device.zigbeeId}} {}", "delay 1000",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 8 {${device.zigbeeId}} {}", "delay 500",
]
return configCmds + refresh() // send refresh cmds as part of config
}
def uninstalled() {
log.debug "uninstalled()"
response("zcl rftd")
}
private getEndpointId() {
new BigInteger(device.endpointId, 16).toString()
}
private hex(value, width=2) {
def s = new BigInteger(Math.round(value).toString()).toString(16)
while (s.size() < width) {
s = "0" + s
}
s
}
private Integer convertHexToInt(hex) {
Integer.parseInt(hex,16)
}
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
}

View File

@@ -55,136 +55,141 @@ metadata {
}
}
standardTile("indicator", "device.indicatorStatus", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
standardTile("indicator", "device.indicatorStatus", height: 2, width: 2, inactiveLabel: false, decoration: "flat") {
state "when off", action:"indicator.indicatorWhenOn", icon:"st.indicators.lit-when-off"
state "when on", action:"indicator.indicatorNever", icon:"st.indicators.lit-when-on"
state "never", action:"indicator.indicatorWhenOff", icon:"st.indicators.never-lit"
}
standardTile("refresh", "device.switch", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
state "default", label:'', action:"refresh.refresh", icon:"st.secondary.refresh"
}
valueTile("level", "device.level", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "level", label:'${currentValue} %', unit:"%", backgroundColor:"#ffffff"
standardTile("refresh", "device.switch", height: 2, width: 2, inactiveLabel: false, decoration: "flat") {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
main(["switch"])
details(["switch", "level", "indicator", "refresh"])
details(["switch", "refresh", "indicator"])
}
}
def parse(String description) {
def result = null
if (description != "updated") {
log.debug "parse() >> zwave.parse($description)"
def cmd = zwave.parse(description, [0x20: 1, 0x26: 1, 0x70: 1])
if (cmd) {
result = zwaveEvent(cmd)
}
def item1 = [
canBeCurrentState: false,
linkText: getLinkText(device),
isStateChange: false,
displayed: false,
descriptionText: description,
value: description
]
def result
def cmd = zwave.parse(description, [0x20: 1, 0x26: 1, 0x70: 1])
if (cmd) {
result = createEvent(cmd, item1)
}
if (result?.name == 'hail' && hubFirmwareLessThan("000.011.00602")) {
result = [result, response(zwave.basicV1.basicGet())]
log.debug "Was hailed: requesting state update"
} else {
log.debug "Parse returned ${result?.descriptionText}"
else {
item1.displayed = displayed(description, item1.isStateChange)
result = [item1]
}
return result
log.debug "Parse returned ${result?.descriptionText}"
result
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicReport cmd) {
dimmerEvents(cmd)
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicSet cmd) {
dimmerEvents(cmd)
}
def zwaveEvent(physicalgraph.zwave.commands.switchmultilevelv1.SwitchMultilevelReport cmd) {
dimmerEvents(cmd)
}
def zwaveEvent(physicalgraph.zwave.commands.switchmultilevelv1.SwitchMultilevelSet cmd) {
dimmerEvents(cmd)
}
private dimmerEvents(physicalgraph.zwave.Command cmd) {
def value = (cmd.value ? "on" : "off")
def result = [createEvent(name: "switch", value: value)]
if (cmd.value && cmd.value <= 100) {
result << createEvent(name: "level", value: cmd.value, unit: "%")
def createEvent(physicalgraph.zwave.commands.basicv1.BasicReport cmd, Map item1) {
def result = doCreateEvent(cmd, item1)
for (int i = 0; i < result.size(); i++) {
result[i].type = "physical"
}
return result
result
}
def createEvent(physicalgraph.zwave.commands.basicv1.BasicSet cmd, Map item1) {
def result = doCreateEvent(cmd, item1)
for (int i = 0; i < result.size(); i++) {
result[i].type = "physical"
}
result
}
def createEvent(physicalgraph.zwave.commands.switchmultilevelv1.SwitchMultilevelStartLevelChange cmd, Map item1) {
[]
}
def createEvent(physicalgraph.zwave.commands.switchmultilevelv1.SwitchMultilevelStopLevelChange cmd, Map item1) {
[response(zwave.basicV1.basicGet())]
}
def createEvent(physicalgraph.zwave.commands.switchmultilevelv1.SwitchMultilevelSet cmd, Map item1) {
def result = doCreateEvent(cmd, item1)
for (int i = 0; i < result.size(); i++) {
result[i].type = "physical"
}
result
}
def createEvent(physicalgraph.zwave.commands.switchmultilevelv1.SwitchMultilevelReport cmd, Map item1) {
def result = doCreateEvent(cmd, item1)
result[0].descriptionText = "${item1.linkText} is ${item1.value}"
result[0].handlerName = cmd.value ? "statusOn" : "statusOff"
for (int i = 0; i < result.size(); i++) {
result[i].type = "digital"
}
result
}
def doCreateEvent(physicalgraph.zwave.Command cmd, Map item1) {
def result = [item1]
item1.name = "switch"
item1.value = cmd.value ? "on" : "off"
item1.handlerName = item1.value
item1.descriptionText = "${item1.linkText} was turned ${item1.value}"
item1.canBeCurrentState = true
item1.isStateChange = isStateChange(device, item1.name, item1.value)
item1.displayed = item1.isStateChange
if (cmd.value >= 5) {
def item2 = new LinkedHashMap(item1)
item2.name = "level"
item2.value = cmd.value as String
item2.unit = "%"
item2.descriptionText = "${item1.linkText} dimmed ${item2.value} %"
item2.canBeCurrentState = true
item2.isStateChange = isStateChange(device, item2.name, item2.value)
item2.displayed = false
result << item2
}
result
}
def zwaveEvent(physicalgraph.zwave.commands.configurationv1.ConfigurationReport cmd) {
log.debug "ConfigurationReport $cmd"
def value = "when off"
if (cmd.configurationValue[0] == 1) {value = "when on"}
if (cmd.configurationValue[0] == 2) {value = "never"}
createEvent([name: "indicatorStatus", value: value])
[name: "indicatorStatus", value: value, display: false]
}
def zwaveEvent(physicalgraph.zwave.commands.hailv1.Hail cmd) {
createEvent([name: "hail", value: "hail", descriptionText: "Switch button was pressed", displayed: false])
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd) {
log.debug "manufacturerId: ${cmd.manufacturerId}"
log.debug "manufacturerName: ${cmd.manufacturerName}"
log.debug "productId: ${cmd.productId}"
log.debug "productTypeId: ${cmd.productTypeId}"
def msr = String.format("%04X-%04X-%04X", cmd.manufacturerId, cmd.productTypeId, cmd.productId)
updateDataValue("MSR", msr)
createEvent([descriptionText: "$device.displayName MSR: $msr", isStateChange: false])
}
def zwaveEvent(physicalgraph.zwave.commands.switchmultilevelv1.SwitchMultilevelStopLevelChange cmd) {
[createEvent(name:"switch", value:"on"), response(zwave.switchMultilevelV1.switchMultilevelGet().format())]
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
// Handles all Z-Wave commands we aren't interested in
[:]
def createEvent(physicalgraph.zwave.Command cmd, Map map) {
// Handles any Z-Wave commands we aren't interested in
log.debug "UNHANDLED COMMAND $cmd"
}
def on() {
delayBetween([
zwave.basicV1.basicSet(value: 0xFF).format(),
zwave.switchMultilevelV1.switchMultilevelGet().format()
],5000)
log.info "on"
delayBetween([zwave.basicV1.basicSet(value: 0xFF).format(), zwave.switchMultilevelV1.switchMultilevelGet().format()], 5000)
}
def off() {
delayBetween([
zwave.basicV1.basicSet(value: 0x00).format(),
zwave.switchMultilevelV1.switchMultilevelGet().format()
],5000)
delayBetween ([zwave.basicV1.basicSet(value: 0x00).format(), zwave.switchMultilevelV1.switchMultilevelGet().format()], 5000)
}
def setLevel(value) {
log.debug "setLevel >> value: $value"
def valueaux = value as Integer
def level = Math.max(Math.min(valueaux, 99), 0)
if (level > 0) {
sendEvent(name: "switch", value: "on")
} else {
sendEvent(name: "switch", value: "off")
}
sendEvent(name: "level", value: level, unit: "%")
def level = Math.min(valueaux, 99)
delayBetween ([zwave.basicV1.basicSet(value: level).format(), zwave.switchMultilevelV1.switchMultilevelGet().format()], 5000)
}
def setLevel(value, duration) {
log.debug "setLevel >> value: $value, duration: $duration"
def valueaux = value as Integer
def level = Math.max(Math.min(valueaux, 99), 0)
def level = Math.min(valueaux, 99)
def dimmingDuration = duration < 128 ? duration : 128 + Math.round(duration / 60)
def getStatusDelay = duration < 128 ? (duration*1000)+2000 : (Math.round(duration / 60)*60*1000)+2000
delayBetween ([zwave.switchMultilevelV2.switchMultilevelSet(value: level, dimmingDuration: dimmingDuration).format(),
zwave.switchMultilevelV1.switchMultilevelGet().format()], getStatusDelay)
zwave.switchMultilevelV2.switchMultilevelSet(value: level, dimmingDuration: dimmingDuration).format()
}
def poll() {
@@ -192,27 +197,21 @@ def poll() {
}
def refresh() {
log.debug "refresh() is called"
def commands = []
commands << zwave.switchMultilevelV1.switchMultilevelGet().format()
if (getDataValue("MSR") == null) {
commands << zwave.manufacturerSpecificV1.manufacturerSpecificGet().format()
}
delayBetween(commands,100)
zwave.switchMultilevelV1.switchMultilevelGet().format()
}
def indicatorWhenOn() {
sendEvent(name: "indicatorStatus", value: "when on")
sendEvent(name: "indicatorStatus", value: "when on", display: false)
zwave.configurationV1.configurationSet(configurationValue: [1], parameterNumber: 3, size: 1).format()
}
def indicatorWhenOff() {
sendEvent(name: "indicatorStatus", value: "when off")
sendEvent(name: "indicatorStatus", value: "when off", display: false)
zwave.configurationV1.configurationSet(configurationValue: [0], parameterNumber: 3, size: 1).format()
}
def indicatorNever() {
sendEvent(name: "indicatorStatus", value: "never")
sendEvent(name: "indicatorStatus", value: "never", display: false)
zwave.configurationV1.configurationSet(configurationValue: [2], parameterNumber: 3, size: 1).format()
}
@@ -223,4 +222,4 @@ def invertSwitch(invert=true) {
else {
zwave.configurationV1.configurationSet(configurationValue: [0], parameterNumber: 4, size: 1).format()
}
}
}

View File

@@ -1,71 +0,0 @@
/**
* Ecobee Sensor
*
* Copyright 2015 Juan Risso
*
* 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: "Ecobee Sensor", namespace: "smartthings", author: "SmartThings") {
capability "Sensor"
capability "Temperature Measurement"
capability "Motion Sensor"
capability "Refresh"
capability "Polling"
}
simulator {
// TODO: define status and reply messages here
}
tiles {
valueTile("temperature", "device.temperature", width: 2, height: 2) {
state("temperature", label:'${currentValue}°', unit:"F",
backgroundColors:[
[value: 31, color: "#153591"],
[value: 44, color: "#1e9cbb"],
[value: 59, color: "#90d2a7"],
[value: 74, color: "#44b621"],
[value: 84, color: "#f1d801"],
[value: 95, color: "#d04e00"],
[value: 96, color: "#bc2323"]
]
)
}
standardTile("motion", "device.motion") {
state("active", label:'motion', icon:"st.motion.motion.active", backgroundColor:"#53a7c0")
state("inactive", label:'no motion', icon:"st.motion.motion.inactive", backgroundColor:"#ffffff")
}
standardTile("refresh", "device.refresh", inactiveLabel: false, decoration: "flat") {
state "default", action:"refresh.refresh", icon:"st.secondary.refresh"
}
main (["temperature","motion"])
details(["temperature","motion","refresh"])
}
}
def refresh() {
log.debug "refresh..."
poll()
}
void poll() {
log.debug "Executing 'poll' using parent SmartApp"
parent.pollChildren(this)
}
//generate custom mobile activity feeds event
def generateActivityFeedsEvent(notificationMessage) {
sendEvent(name: "notificationMessage", value: "$device.displayName $notificationMessage", descriptionText: "$device.displayName $notificationMessage", displayed: true)
}

View File

@@ -22,31 +22,31 @@ metadata {
capability "Polling"
capability "Sensor"
capability "Refresh"
command "generateEvent"
command "raiseSetpoint"
command "lowerSetpoint"
command "resumeProgram"
command "switchMode"
attribute "thermostatSetpoint","number"
attribute "thermostatStatus","string"
}
simulator { }
tiles {
tiles {
valueTile("temperature", "device.temperature", width: 2, height: 2) {
state("temperature", label:'${currentValue}°', unit:"F",
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"]
]
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("mode", "device.thermostatMode", inactiveLabel: false, decoration: "flat") {
@@ -54,27 +54,27 @@ 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 "updating", label:"Working", icon: "st.secondary.secondary"
state "auxHeatOnly", action:"switchMode", icon: "st.thermostat.emergency-heat"
state "updating", label:"Working", icon: "st.secondary.secondary"
}
standardTile("fanMode", "device.thermostatFanMode", inactiveLabel: false, decoration: "flat") {
state "auto", label:'Fan: ${currentValue}', action:"switchFanMode", nextState: "on"
state "on", label:'Fan: ${currentValue}', action:"switchFanMode", nextState: "off"
state "off", label:'Fan: ${currentValue}', action:"switchFanMode", nextState: "circulate"
state "off", label:'Fan: ${currentValue}', action:"switchFanMode", nextState: "circulate"
state "circulate", label:'Fan: ${currentValue}', action:"switchFanMode", nextState: "auto"
}
standardTile("upButtonControl", "device.thermostatSetpoint", inactiveLabel: false, decoration: "flat") {
state "setpoint", action:"raiseSetpoint", icon:"st.thermostat.thermostat-up"
standardTile("upButtonControl", "device.thermostatSetpoint", inactiveLabel: false, decoration: "flat") {
state "setpoint", action:"raiseSetpoint", backgroundColor:"#d04e00", icon:"st.thermostat.thermostat-up"
}
valueTile("thermostatSetpoint", "device.thermostatSetpoint", width: 1, height: 1, decoration: "flat") {
state "thermostatSetpoint", label:'${currentValue}°'
valueTile("thermostatSetpoint", "device.thermostatSetpoint", width: 1, height: 1, decoration: "flat") {
state "thermostatSetpoint", label:'${currentValue}'
}
valueTile("currentStatus", "device.thermostatStatus", height: 1, width: 2, decoration: "flat") {
state "thermostatStatus", label:'${currentValue}', backgroundColor:"#ffffff"
}
}
standardTile("downButtonControl", "device.thermostatSetpoint", inactiveLabel: false, decoration: "flat") {
state "setpoint", action:"lowerSetpoint", icon:"st.thermostat.thermostat-down"
}
state "setpoint", action:"lowerSetpoint", backgroundColor:"#d04e00", icon:"st.thermostat.thermostat-down"
}
controlTile("heatSliderControl", "device.heatingSetpoint", "slider", height: 1, width: 2, inactiveLabel: false) {
state "setHeatingSetpoint", action:"thermostat.setHeatingSetpoint", backgroundColor:"#d04e00"
}
@@ -91,196 +91,218 @@ metadata {
state "default", action:"refresh.refresh", icon:"st.secondary.refresh"
}
standardTile("resumeProgram", "device.resumeProgram", inactiveLabel: false, decoration: "flat") {
state "resume", action:"resumeProgram", nextState: "updating", label:'Resume Schedule', icon:"st.samsung.da.oven_ic_send"
state "updating", label:"Working", icon: "st.secondary.secondary"
state "resume", label:'Resume Program', action:"device.resumeProgram", icon:"st.sonos.play-icon"
}
main "temperature"
details(["temperature", "upButtonControl", "thermostatSetpoint", "currentStatus", "downButtonControl", "mode", "resumeProgram", "refresh"])
}
preferences {
input "holdType", "enum", title: "Hold Type", description: "When changing temperature, use Temporary (Until next transition) or Permanent hold (default)", required: false, options:["Temporary", "Permanent"]
details(["temperature", "upButtonControl", "thermostatSetpoint", "currentStatus", "downButtonControl", "mode", "resumeProgram", "refresh"])
}
}
/*
preferences {
input "highTemperature", "number", title: "Auto Mode High Temperature:", defaultValue: 80
input "lowTemperature", "number", title: "Auto Mode Low Temperature:", defaultValue: 70
input name: "holdType", type: "enum", title: "Hold Type", description: "When changing temperature, use Temporary or Permanent hold", required: true, options:["Temporary", "Permanent"]
}
*/
// parse events into attributes
def parse(String description) {
log.debug "Parsing '${description}'"
// TODO: handle '' attribute
}
def refresh() {
log.debug "refresh called"
poll()
log.debug "refresh ended"
def refresh()
{
log.debug "refresh called"
poll()
log.debug "refresh ended"
}
def go()
{
log.debug "before:go tile tapped"
poll()
log.debug "after"
}
void poll() {
log.debug "Executing 'poll' using parent SmartApp"
def results = parent.pollChild(this)
generateEvent(results) //parse received message from parent
parseEventData(results)
generateStatusEvent()
}
def generateEvent(Map results) {
def parseEventData(Map results)
{
log.debug "parsing data $results"
if(results) {
results.each { name, value ->
if(results)
{
results.each { name, value ->
def linkText = getLinkText(device)
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 = value? convertTemperatureIfNeeded(value.toDouble(), "F", 1): value //API return temperature value in F
def isChange = false
def isDisplayed = true
if (name=="temperature" || name=="heatingSetpoint" || name=="coolingSetpoint") {
isChange = isTemperatureStateChange(device, name, value.toString())
isDisplayed = isChange
event << [value: sendValue, isStateChange: isChange, displayed: isDisplayed]
} else if (name=="heatMode" || name=="coolMode" || name=="autoMode" || name=="auxHeatMode"){
isChange = isStateChange(device, name, value.toString())
event << [value: value.toString(), isStateChange: isChange, displayed: false]
} else {
isChange = isStateChange(device, name, value.toString())
isDisplayed = isChange
event << [value: value.toString(), isStateChange: isChange, displayed: isDisplayed]
}
sendEvent(event)
isDisplayed = isChange
sendEvent(
name: name,
value: value,
unit: "F",
linkText: linkText,
descriptionText: getThermostatDescriptionText(name, value, linkText),
handlerName: name,
isStateChange: isChange,
displayed: isDisplayed)
}
else {
isChange = isStateChange(device, name, value.toString())
isDisplayed = isChange
sendEvent(
name: name,
value: value.toString(),
linkText: linkText,
descriptionText: getThermostatDescriptionText(name, value, linkText),
handlerName: name,
isStateChange: isChange,
displayed: isDisplayed)
}
}
generateSetpointEvent ()
generateStatusEvent ()
}
}
void generateEvent(Map results)
{
log.debug "parsing data $results"
if(results)
{
results.each { name, value ->
def linkText = getLinkText(device)
def isChange = false
def isDisplayed = true
if (name=="temperature" || name=="heatingSetpoint" || name=="coolingSetpoint") {
isChange = isTemperatureStateChange(device, name, value.toString())
isDisplayed = isChange
sendEvent(
name: name,
value: value,
unit: "F",
linkText: linkText,
descriptionText: getThermostatDescriptionText(name, value, linkText),
handlerName: name,
isStateChange: isChange,
displayed: isDisplayed)
}
else {
isChange = isStateChange(device, name, value.toString())
isDisplayed = isChange
sendEvent(
name: name,
value: value.toString(),
linkText: linkText,
descriptionText: getThermostatDescriptionText(name, value, linkText),
handlerName: name,
isStateChange: isChange,
displayed: isDisplayed)
}
}
generateSetpointEvent ()
generateStatusEvent ()
generateSetpointEvent ()
generateStatusEvent()
}
}
//return descriptionText to be shown on mobile activity feed
private getThermostatDescriptionText(name, value, linkText) {
if(name == "temperature") {
return "$linkText temperature is $value°F"
} else if(name == "heatingSetpoint") {
return "heating setpoint is $value°F"
} else if(name == "coolingSetpoint"){
return "cooling setpoint is $value°F"
} else if (name == "thermostatMode") {
return "thermostat mode is ${value}"
} else if (name == "thermostatFanMode") {
return "thermostat fan mode is ${value}"
} else {
return "${name} = ${value}"
private getThermostatDescriptionText(name, value, linkText)
{
if(name == "temperature")
{
return "$linkText was $value°F"
}
else if(name == "heatingSetpoint")
{
return "latest heating setpoint was $value°F"
}
else if(name == "coolingSetpoint")
{
return "latest cooling setpoint was $value°F"
}
else if (name == "thermostatMode")
{
return "thermostat mode is ${value}"
}
else
{
return "${name} = ${value}"
}
}
void setHeatingSetpoint(setpoint) {
setHeatingSetpoint(setpoint.toDouble())
void setHeatingSetpoint(degreesF) {
setHeatingSetpoint(degreesF.toDouble())
}
void setHeatingSetpoint(Double setpoint) {
// def mode = device.currentValue("thermostatMode")
def heatingSetpoint = setpoint
def coolingSetpoint = device.currentValue("coolingSetpoint").toDouble()
def deviceId = device.deviceNetworkId.split(/\./).last()
//enforce limits of heatingSetpoint
if (heatingSetpoint > 79) {
heatingSetpoint = 79
} else if (heatingSetpoint < 45) {
heatingSetpoint = 45
}
//enforce limits of heatingSetpoint vs coolingSetpoint
if (heatingSetpoint >= coolingSetpoint) {
coolingSetpoint = heatingSetpoint
}
log.debug "Sending setHeatingSetpoint> coolingSetpoint: ${coolingSetpoint}, heatingSetpoint: ${heatingSetpoint}"
def sendHoldType = holdType ? (holdType=="Temporary")? "nextTransition" : (holdType=="Permanent")? "indefinite" : "indefinite" : "indefinite"
if (parent.setHold (this, heatingSetpoint, coolingSetpoint, deviceId, sendHoldType)) {
sendEvent("name":"heatingSetpoint", "value":heatingSetpoint)
sendEvent("name":"coolingSetpoint", "value":coolingSetpoint)
log.debug "Done setHeatingSetpoint> coolingSetpoint: ${coolingSetpoint}, heatingSetpoint: ${heatingSetpoint}"
generateSetpointEvent()
generateStatusEvent()
} else {
log.error "Error setHeatingSetpoint(setpoint)" //This error is handled by the connect app
}
void setHeatingSetpoint(Double degreesF) {
log.debug "setHeatingSetpoint({$degreesF})"
sendEvent("name":"heatingSetpoint", "value":degreesF)
Double coolingSetpoint = device.currentValue("coolingSetpoint")
log.debug "coolingSetpoint: $coolingSetpoint"
parent.setHold(this, degreesF, coolingSetpoint)
}
void setCoolingSetpoint(setpoint) {
setCoolingSetpoint(setpoint.toDouble())
void setCoolingSetpoint(degreesF) {
setCoolingSetpoint(degreesF.toDouble())
}
void setCoolingSetpoint(Double setpoint) {
// def mode = device.currentValue("thermostatMode")
def heatingSetpoint = device.currentValue("heatingSetpoint").toDouble()
def coolingSetpoint = setpoint
def deviceId = device.deviceNetworkId.split(/\./).last()
if (coolingSetpoint > 92) {
coolingSetpoint = 92
} else if (coolingSetpoint < 65) {
coolingSetpoint = 65
}
//enforce limits of heatingSetpoint vs coolingSetpoint
if (heatingSetpoint >= coolingSetpoint) {
heatingSetpoint = coolingSetpoint
}
log.debug "Sending setCoolingSetpoint> coolingSetpoint: ${coolingSetpoint}, heatingSetpoint: ${heatingSetpoint}"
def sendHoldType = holdType ? (holdType=="Temporary")? "nextTransition" : (holdType=="Permanent")? "indefinite" : "indefinite" : "indefinite"
if (parent.setHold (this, heatingSetpoint, coolingSetpoint, deviceId, sendHoldType)) {
sendEvent("name":"heatingSetpoint", "value":heatingSetpoint)
sendEvent("name":"coolingSetpoint", "value":coolingSetpoint)
log.debug "Done setCoolingSetpoint>> coolingSetpoint = ${coolingSetpoint}, heatingSetpoint = ${heatingSetpoint}"
generateSetpointEvent()
generateStatusEvent()
} else {
log.error "Error setCoolingSetpoint(setpoint)" //This error is handled by the connect app
}
void setCoolingSetpoint(Double degreesF) {
log.debug "setCoolingSetpoint({$degreesF})"
sendEvent("name":"coolingSetpoint", "value":degreesF)
Double heatingSetpoint = device.currentValue("heatingSetpoint")
parent.setHold(this, heatingSetpoint, degreesF)
}
void resumeProgram() {
log.debug "resumeProgram() is called"
sendEvent("name":"thermostatStatus", "value":"resuming schedule", "description":statusText, displayed: false)
def deviceId = device.deviceNetworkId.split(/\./).last()
if (parent.resumeProgram(this, deviceId)) {
sendEvent("name":"thermostatStatus", "value":"setpoint is updating", "description":statusText, displayed: false)
runIn(5, "poll")
log.debug "resumeProgram() is done"
sendEvent("name":"resumeProgram", "value":"resume", descriptionText: "resumeProgram is done", displayed: false, isStateChange: true)
} else {
sendEvent("name":"thermostatStatus", "value":"failed resume click refresh", "description":statusText, displayed: false)
log.error "Error resumeProgram() check parent.resumeProgram(this, deviceId)"
}
def configure() {
}
def resumeProgram() {
parent.resumeProgram(this)
}
def modes() {
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
}
log.debug "Modes = ${state.modes}"
return state.modes
}
else {
state.modes = parent.availableModes(this)
log.debug "Modes = ${state.modes}"
return state.modes
}
}
def fanModes() {
["off", "on", "auto", "circulate"]
}
def switchMode() {
log.debug "in switchMode"
def currentMode = device.currentState("thermostatMode")?.value
@@ -292,7 +314,7 @@ def switchMode() {
}
def switchToMode(nextMode) {
log.debug "In switchToMode = ${nextMode}"
log.debug "In switchToMode = ${nextMode}"
if (nextMode in modes()) {
state.lastTriedMode = nextMode
"$nextMode"()
@@ -354,326 +376,300 @@ def getDataByName(String name) {
def setThermostatMode(String value) {
log.debug "setThermostatMode({$value})"
}
def setThermostatFanMode(String value) {
log.debug "setThermostatFanMode({$value})"
}
def generateModeEvent(mode) {
sendEvent(name: "thermostatMode", value: mode, descriptionText: "$device.displayName is in ${mode} mode", displayed: true)
sendEvent(name: "thermostatMode", value: mode, descriptionText: "$device.displayName is in ${mode} mode", displayed: true, isStateChange: true)
}
def generateFanModeEvent(fanMode) {
sendEvent(name: "thermostatFanMode", value: fanMode, descriptionText: "$device.displayName fan is in ${mode} mode", displayed: true)
sendEvent(name: "thermostatFanMode", value: fanMode, descriptionText: "$device.displayName fan is in ${mode} mode", displayed: true, isStateChange: true)
}
def generateOperatingStateEvent(operatingState) {
sendEvent(name: "thermostatOperatingState", value: operatingState, descriptionText: "$device.displayName is ${operatingState}", displayed: true)
sendEvent(name: "thermostatOperatingState", value: operatingState, descriptionText: "$device.displayName is ${operatingState}", displayed: true, isStateChange: true)
}
def off() {
log.debug "off"
def deviceId = device.deviceNetworkId.split(/\./).last()
if (parent.setMode (this,"off", deviceId))
generateModeEvent("off")
else {
log.debug "Error setting new mode."
def currentMode = device.currentState("thermostatMode")?.value
generateModeEvent(currentMode) // reset the tile back
}
generateSetpointEvent()
generateStatusEvent()
generateModeEvent("off")
if (parent.setMode (this,"off"))
generateModeEvent("off")
else {
log.debug "Error setting new mode."
def currentMode = device.currentState("thermostatMode")?.value
generateModeEvent(currentMode) // reset the tile back
}
generateSetpointEvent()
generateStatusEvent()
}
def heat() {
log.debug "heat"
def deviceId = device.deviceNetworkId.split(/\./).last()
if (parent.setMode (this,"heat", deviceId))
generateModeEvent("heat")
else {
log.debug "Error setting new mode."
def currentMode = device.currentState("thermostatMode")?.value
generateModeEvent(currentMode) // reset the tile back
}
generateSetpointEvent()
generateStatusEvent()
generateModeEvent("heat")
if (parent.setMode (this,"heat"))
generateModeEvent("heat")
else {
log.debug "Error setting new mode."
def currentMode = device.currentState("thermostatMode")?.value
generateModeEvent(currentMode) // reset the tile back
}
generateSetpointEvent()
generateStatusEvent()
}
def auxHeatOnly() {
log.debug "auxHeatOnly"
def deviceId = device.deviceNetworkId.split(/\./).last()
if (parent.setMode (this,"auxHeatOnly", deviceId))
generateModeEvent("auxHeatOnly")
else {
log.debug "Error setting new mode."
def currentMode = device.currentState("thermostatMode")?.value
generateModeEvent(currentMode) // reset the tile back
}
generateSetpointEvent()
generateStatusEvent()
generateModeEvent("auxHeatOnly")
if (parent.setMode (this,"auxHeatOnly"))
generateModeEvent("auxHeatOnly")
else {
log.debug "Error setting new mode."
def currentMode = device.currentState("thermostatMode")?.value
generateModeEvent(currentMode) // reset the tile back
}
generateSetpointEvent()
generateStatusEvent()
}
def cool() {
log.debug "cool"
def deviceId = device.deviceNetworkId.split(/\./).last()
if (parent.setMode (this,"cool", deviceId))
generateModeEvent("cool")
else {
log.debug "Error setting new mode."
def currentMode = device.currentState("thermostatMode")?.value
generateModeEvent(currentMode) // reset the tile back
}
generateSetpointEvent()
generateStatusEvent()
generateModeEvent("cool")
if (parent.setMode (this,"cool"))
generateModeEvent("cool")
else {
log.debug "Error setting new mode."
def currentMode = device.currentState("thermostatMode")?.value
generateModeEvent(currentMode) // reset the tile back
}
generateSetpointEvent()
generateStatusEvent()
}
def auto() {
log.debug "auto"
def deviceId = device.deviceNetworkId.split(/\./).last()
if (parent.setMode (this,"auto", deviceId))
generateModeEvent("auto")
else {
log.debug "Error setting new mode."
def currentMode = device.currentState("thermostatMode")?.value
generateModeEvent(currentMode) // reset the tile back
}
generateSetpointEvent()
generateStatusEvent()
generateModeEvent("auto")
if (parent.setMode (this,"auto"))
generateModeEvent("auto")
else {
log.debug "Error setting new mode."
def currentMode = device.currentState("thermostatMode")?.value
generateModeEvent(currentMode) // reset the tile back
}
generateSetpointEvent()
generateStatusEvent()
}
def fanOn() {
log.debug "fanOn"
// parent.setFanMode (this,"on")
parent.setFanMode (this,"on")
}
def fanAuto() {
log.debug "fanAuto"
// parent.setFanMode (this,"auto")
parent.setFanMode (this,"auto")
}
def fanCirculate() {
log.debug "fanCirculate"
// parent.setFanMode (this,"circulate")
parent.setFanMode (this,"circulate")
}
def fanOff() {
log.debug "fanOff"
// parent.setFanMode (this,"off")
parent.setFanMode (this,"off")
}
def generateSetpointEvent() {
log.debug "Generate SetPoint Event"
log.debug "Generate SetPoint Event"
def mode = device.currentValue("thermostatMode")
log.debug "Current Mode = ${mode}"
log.debug "Current Mode = ${mode}"
def heatingSetpoint = device.currentValue("heatingSetpoint").toInteger()
log.debug "Heating Setpoint = ${heatingSetpoint}"
def heatingSetpoint = device.currentValue("heatingSetpoint").toInteger()
log.debug "Heating Setpoint = ${heatingSetpoint}"
def coolingSetpoint = device.currentValue("coolingSetpoint").toInteger()
log.debug "Cooling Setpoint = ${coolingSetpoint}"
log.debug "Cooling Setpoint = ${coolingSetpoint}"
if (mode == "heat") {
sendEvent("name":"thermostatSetpoint", "value":heatingSetpoint.toString()+"°")
}
else if (mode == "cool") {
sendEvent("name":"thermostatSetpoint", "value":coolingSetpoint.toString()+"°")
if (mode == "heat") {
} else if (mode == "auto") {
sendEvent("name":"thermostatSetpoint", "value":"Auto")
sendEvent("name":"thermostatSetpoint", "value":heatingSetpoint.toString())
} else if (mode == "off") {
sendEvent("name":"thermostatSetpoint", "value":"Off")
}
else if (mode == "cool") {
} else if (mode == "emergencyHeat") {
sendEvent("name":"thermostatSetpoint", "value":heatingSetpoint.toString()+"°")
sendEvent("name":"thermostatSetpoint", "value":coolingSetpoint.toString())
} else if (mode == "auto") {
sendEvent("name":"thermostatSetpoint", "value":"Auto")
} else if (mode == "off") {
sendEvent("name":"thermostatSetpoint", "value":"Off")
} else if (mode == "emergencyHeat") {
sendEvent("name":"thermostatSetpoint", "value":heatingSetpoint.toString())
}
}
}
void raiseSetpoint() {
log.debug "Raise SetPoint"
def mode = device.currentValue("thermostatMode")
def targetvalue
def heatingSetpoint = device.currentValue("heatingSetpoint").toInteger()
def coolingSetpoint = device.currentValue("coolingSetpoint").toInteger()
log.debug "Current Mode = ${mode}"
if (mode == "heat") {
heatingSetpoint++
if (heatingSetpoint > 99)
heatingSetpoint = 99
sendEvent("name":"thermostatSetpoint", "value":heatingSetpoint.toString()+"°")
sendEvent("name":"heatingSetpoint", "value":heatingSetpoint)
parent.setHold (this, heatingSetpoint, coolingSetpoint)
log.debug "New Heating Setpoint = ${heatingSetpoint}"
}
else if (mode == "cool") {
coolingSetpoint++
if (coolingSetpoint > 99)
coolingSetpoint = 99
sendEvent("name":"thermostatSetpoint", "value":coolingSetpoint.toString()+"°")
sendEvent("name":"coolingSetpoint", "value":coolingSetpoint)
parent.setHold (this, heatingSetpoint, coolingSetpoint)
log.debug "New Cooling Setpoint = ${coolingSetpoint}"
}
generateStatusEvent()
if (mode == "off" || mode == "auto") {
log.warn "this mode: $mode does not allow raiseSetpoint"
} else {
def heatingSetpoint = device.currentValue("heatingSetpoint").toInteger()
def coolingSetpoint = device.currentValue("coolingSetpoint").toInteger()
def thermostatSetpoint = device.currentValue("thermostatSetpoint").toInteger()
log.debug "raiseSetpoint() mode = ${mode}, heatingSetpoint: ${heatingSetpoint}, coolingSetpoint:${coolingSetpoint}, thermostatSetpoint:${thermostatSetpoint}"
if (device.latestState('thermostatSetpoint')) {
targetvalue = device.latestState('thermostatSetpoint').value as Integer
} else {
targetvalue = 0
}
targetvalue = targetvalue + 1
if (mode == "heat" && targetvalue > 79) {
targetvalue = 79
} else if (mode == "cool" && targetvalue > 92) {
targetvalue = 92
}
sendEvent("name":"thermostatSetpoint", "value":targetvalue, displayed: false)
log.info "In mode $mode raiseSetpoint() to $targetvalue"
runIn(3, "alterSetpoint", [data: [value:targetvalue], overwrite: true]) //when user click button this runIn will be overwrite
}
}
//called by tile when user hit raise temperature button on UI
void lowerSetpoint() {
log.debug "Lower SetPoint"
def mode = device.currentValue("thermostatMode")
def targetvalue
def heatingSetpoint = device.currentValue("heatingSetpoint").toInteger()
def coolingSetpoint = device.currentValue("coolingSetpoint").toInteger()
log.debug "Current Mode = ${mode}, Current Heating Setpoint = ${heatingSetpoint}, Current Cooling Setpoint = ${coolingSetpoint}"
if (mode == "heat" || mode == "emergencyHeat") {
heatingSetpoint--
if (heatingSetpoint < 32)
heatingSetpoint = 32
if (mode == "off" || mode == "auto") {
log.warn "this mode: $mode does not allow lowerSetpoint"
} else {
def heatingSetpoint = device.currentValue("heatingSetpoint").toInteger()
def coolingSetpoint = device.currentValue("coolingSetpoint").toInteger()
def thermostatSetpoint = device.currentValue("thermostatSetpoint").toInteger()
log.debug "lowerSetpoint() mode = ${mode}, heatingSetpoint: ${heatingSetpoint}, coolingSetpoint:${coolingSetpoint}, thermostatSetpoint:${thermostatSetpoint}"
if (device.latestState('thermostatSetpoint')) {
targetvalue = device.latestState('thermostatSetpoint').value as Integer
} else {
targetvalue = 0
}
targetvalue = targetvalue - 1
if (mode == "heat" && targetvalue.toInteger() < 45) {
targetvalue = 45
} else if (mode == "cool" && targetvalue.toInteger() < 65) {
targetvalue = 65
}
sendEvent("name":"thermostatSetpoint", "value":targetvalue, displayed: false)
log.info "In mode $mode lowerSetpoint() to $targetvalue"
runIn(3, "alterSetpoint", [data: [value:targetvalue], overwrite: true]) //when user click button this runIn will be overwrite
}
}
//called by raiseSetpoint() and lowerSetpoint()
void alterSetpoint(temp) {
def mode = device.currentValue("thermostatMode")
def heatingSetpoint = device.currentValue("heatingSetpoint").toInteger()
def coolingSetpoint = device.currentValue("coolingSetpoint").toInteger()
def deviceId = device.deviceNetworkId.split(/\./).last()
def targetHeatingSetpoint
def targetCoolingSetpoint
//step1: check thermostatMode, enforce limits before sending request to cloud
if (mode == "heat"){
if (temp.value > coolingSetpoint){
targetHeatingSetpoint = temp.value
targetCoolingSetpoint = temp.value
} else {
targetHeatingSetpoint = temp.value
targetCoolingSetpoint = coolingSetpoint
}
} else if (mode == "cool") {
//enforce limits before sending request to cloud
if (temp.value < heatingSetpoint){
targetHeatingSetpoint = temp.value
targetCoolingSetpoint = temp.value
} else {
targetHeatingSetpoint = heatingSetpoint
targetCoolingSetpoint = temp.value
}
}
log.debug "alterSetpoint >> in mode ${mode} trying to change heatingSetpoint to ${targetHeatingSetpoint} " +
"coolingSetpoint to ${targetCoolingSetpoint} with holdType : ${holdType}"
def sendHoldType = holdType ? (holdType=="Temporary")? "nextTransition" : (holdType=="Permanent")? "indefinite" : "indefinite" : "indefinite"
//step2: call parent.setHold to send http request to 3rd party cloud
if (parent.setHold(this, targetHeatingSetpoint, targetCoolingSetpoint, deviceId, sendHoldType)) {
sendEvent("name": "thermostatSetpoint", "value": temp.value.toString(), displayed: false)
sendEvent("name": "heatingSetpoint", "value": targetHeatingSetpoint)
sendEvent("name": "coolingSetpoint", "value": targetCoolingSetpoint)
log.debug "alterSetpoint in mode $mode succeed change setpoint to= ${temp.value}"
} else {
log.error "Error alterSetpoint()"
if (mode == "heat"){
sendEvent("name": "thermostatSetpoint", "value": heatingSetpoint.toString(), displayed: false)
} else if (mode == "cool") {
sendEvent("name": "thermostatSetpoint", "value": coolingSetpoint.toString(), displayed: false)
}
}
generateStatusEvent()
sendEvent("name":"thermostatSetpoint", "value":heatingSetpoint.toString()+"°")
sendEvent("name":"heatingSetpoint", "value":heatingSetpoint)
parent.setHold (this, heatingSetpoint, coolingSetpoint)
log.debug "New Heating Setpoint = ${heatingSetpoint}"
}
else if (mode == "cool") {
coolingSetpoint--
if (coolingSetpoint < 32)
coolingSetpoint = 32
sendEvent("name":"thermostatSetpoint", "value":coolingSetpoint.toString()+"°")
sendEvent("name":"coolingSetpoint", "value":coolingSetpoint)
parent.setHold (this, heatingSetpoint, coolingSetpoint)
log.debug "New Cooling Setpoint = ${coolingSetpoint}"
}
generateStatusEvent()
}
def generateStatusEvent() {
def mode = device.currentValue("thermostatMode")
def heatingSetpoint = device.currentValue("heatingSetpoint").toInteger()
def coolingSetpoint = device.currentValue("coolingSetpoint").toInteger()
def temperature = device.currentValue("temperature").toInteger()
def statusText
log.debug "Generate Status Event for Mode = ${mode}"
log.debug "Temperature = ${temperature}"
log.debug "Heating set point = ${heatingSetpoint}"
log.debug "Cooling set point = ${coolingSetpoint}"
log.debug "HVAC Mode = ${mode}"
if (mode == "heat") {
if (temperature >= heatingSetpoint)
statusText = "Right Now: Idle"
else
statusText = "Heating to ${heatingSetpoint}° F"
} else if (mode == "cool") {
if (temperature <= coolingSetpoint)
statusText = "Right Now: Idle"
else
statusText = "Cooling to ${coolingSetpoint}° F"
} else if (mode == "auto") {
statusText = "Right Now: Auto"
} else if (mode == "off") {
statusText = "Right Now: Off"
} else if (mode == "emergencyHeat") {
statusText = "Emergency Heat"
} else {
statusText = "?"
}
log.debug "Generate Status Event = ${statusText}"
sendEvent("name":"thermostatStatus", "value":statusText, "description":statusText, displayed: true)
def heatingSetpoint = device.currentValue("heatingSetpoint").toInteger()
def coolingSetpoint = device.currentValue("coolingSetpoint").toInteger()
def temperature = device.currentValue("temperature").toInteger()
def statusText
log.debug "Generate Status Event for Mode = ${mode}"
log.debug "Temperature = ${temperature}"
log.debug "Heating set point = ${heatingSetpoint}"
log.debug "Cooling set point = ${coolingSetpoint}"
log.debug "HVAC Mode = ${mode}"
if (mode == "heat") {
if (temperature >= heatingSetpoint)
statusText = "Right Now: Idle"
else
statusText = "Heating to ${heatingSetpoint}° F"
} else if (mode == "cool") {
if (temperature <= coolingSetpoint)
statusText = "Right Now: Idle"
else
statusText = "Cooling to ${coolingSetpoint}° F"
} else if (mode == "auto") {
statusText = "Right Now: Auto"
} else if (mode == "off") {
statusText = "Right Now: Off"
} else if (mode == "emergencyHeat") {
statusText = "Emergency Heat"
} else {
statusText = "?"
}
log.debug "Generate Status Event = ${statusText}"
sendEvent("name":"thermostatStatus", "value":statusText, "description":statusText, displayed: true, isStateChange: true)
}
//generate custom mobile activity feeds event
def generateActivityFeedsEvent(notificationMessage) {
sendEvent(name: "notificationMessage", value: "$device.displayName $notificationMessage", descriptionText: "$device.displayName $notificationMessage", displayed: true)
}

View File

@@ -1,455 +0,0 @@
/**
* Copyright 2015 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.
*
*/
metadata {
definition (name: "Fibaro Smoke Sensor", namespace: "smartthings", author: "SmartThings") {
capability "Battery" //attributes: battery
capability "Configuration" //commands: configure()
capability "Sensor"
capability "Smoke Detector" //attributes: smoke ("detected","clear","tested")
capability "Temperature Measurement" //attributes: temperature
attribute "tamper", "enum", ["detected", "clear"]
attribute "heatAlarm", "enum", ["overheat detected", "clear", "rapid temperature rise", "underheat detected"]
fingerprint deviceId: "0x0701", inClusters: "0x5E, 0x86, 0x72, 0x5A, 0x59, 0x85, 0x73, 0x84, 0x80, 0x71, 0x56, 0x70, 0x31, 0x8E, 0x22, 0x9C, 0x98, 0x7A", outClusters: "0x20, 0x8B"
}
simulator {
//battery
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 "battery 100%": "command: 8003, payload: 64"
status "battery 5%": "command: 8003, payload: 05"
//smoke
status "smoke detected": "command: 7105, payload: 01 01"
status "smoke clear": "command: 7105, payload: 01 00"
status "smoke tested": "command: 7105, payload: 01 03"
//temperature
for (int i = 0; i <= 100; i += 20) {
status "temperature ${i}F": new physicalgraph.zwave.Zwave().securityV1.securityMessageEncapsulation().encapsulate(
new physicalgraph.zwave.Zwave().sensorMultilevelV5.sensorMultilevelReport(scaledSensorValue: i, precision: 1, sensorType: 1, scale: 1)
).incomingMessage()
}
}
preferences {
input description: "After successful installation, please click B-button at the Fibaro Smoke Sensor to update device status and configuration",
title: "Instructions", displayDuringSetup: true, type: "paragraph", element: "paragraph"
input description: "Enter the menu by press and hold B-button for 3 seconds. Once indicator glows WHITE, release the B-button. Visual indicator will start changing colours in sequence. Press B-button briefly when visual indicator glows GREEN",
title: "To check smoke detection state", displayDuringSetup: true, type: "paragraph", element: "paragraph"
input description: "Please consult Fibaro Smoke Sensor operating manual for advanced setting options. You can skip this configuration to use default settings",
title: "Advanced Configuration", displayDuringSetup: true, type: "paragraph", element: "paragraph"
input "smokeSensorSensitivity", "enum", title: "Smoke Sensor Sensitivity", options: ["High","Medium","Low"], defaultValue: "${smokeSensorSensitivity}", displayDuringSetup: true
input "zwaveNotificationStatus", "enum", title: "Notifications Status", options: ["disabled","casing opened","exceeding temperature threshold", "lack of Z-Wave range", "all notifications"],
defaultValue: "${zwaveNotificationStatus}", displayDuringSetup: true
input "visualIndicatorNotificationStatus", "enum", title: "Visual Indicator Notifications Status",
options: ["disabled","casing opened","exceeding temperature threshold", "lack of Z-Wave range", "all notifications"],
defaultValue: "${visualIndicatorNotificationStatus}", displayDuringSetup: true
input "soundNotificationStatus", "enum", title: "Sound Notifications Status",
options: ["disabled","casing opened","exceeding temperature threshold", "lack of Z-Wave range", "all notifications"],
defaultValue: "${soundNotificationStatus}", displayDuringSetup: true
input "temperatureReportInterval", "enum", title: "Temperature Report Interval",
options: ["reports inactive", "5 minutes", "15 minutes", "30 minutes", "1 hour", "6 hours", "12 hours", "18 hours", "24 hours"], defaultValue: "${temperatureReportInterval}", displayDuringSetup: true
input "temperatureReportHysteresis", "number", title: "Temperature Report Hysteresis", description: "Available settings: 1-100 C", range: "1..100", displayDuringSetup: true
input "temperatureThreshold", "number", title: "Overheat Temperature Threshold", description: "Available settings: 0 or 2-100 C", range: "0..100", displayDuringSetup: true
input "excessTemperatureSignalingInterval", "enum", title: "Excess Temperature Signaling Interval",
options: ["5 minutes", "15 minutes", "30 minutes", "1 hour", "6 hours", "12 hours", "18 hours", "24 hours"], defaultValue: "${excessTemperatureSignalingInterval}", displayDuringSetup: true
input "lackOfZwaveRangeIndicationInterval", "enum", title: "Lack of Z-Wave Range Indication Interval",
options: ["5 minutes", "15 minutes", "30 minutes", "1 hour", "6 hours", "12 hours", "18 hours", "24 hours"], defaultValue: "${lackOfZwaveRangeIndicationInterval}", displayDuringSetup: true
}
tiles (scale: 2){
multiAttributeTile(name:"smoke", type: "lighting", width: 6, height: 4){
tileAttribute ("device.smoke", key: "PRIMARY_CONTROL") {
attributeState("clear", label:"CLEAR", icon:"st.alarm.smoke.clear", backgroundColor:"#ffffff")
attributeState("detected", label:"SMOKE", icon:"st.alarm.smoke.smoke", backgroundColor:"#e86d13")
attributeState("tested", label:"TEST", icon:"st.alarm.smoke.test", backgroundColor:"#e86d13")
attributeState("replacement required", label:"REPLACE", icon:"st.alarm.smoke.test", backgroundColor:"#FFFF66")
attributeState("unknown", label:"UNKNOWN", icon:"st.alarm.smoke.test", backgroundColor:"#ffffff")
}
tileAttribute ("device.battery", key: "SECONDARY_CONTROL") {
attributeState "battery", label:'Battery: ${currentValue}%', unit:"%"
}
}
valueTile("battery", "device.battery", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "battery", label:'${currentValue}% battery', unit:"%"
}
valueTile("temperature", "device.temperature", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "temperature", label:'${currentValue}°', unit:"C"
}
valueTile("heatAlarm", "device.heatAlarm", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "clear", label:'TEMPERATURE OK', backgroundColor:"#ffffff"
state "overheat detected", label:'OVERHEAT DETECTED', backgroundColor:"#ffffff"
state "rapid temperature rise", label:'RAPID TEMP RISE', backgroundColor:"#ffffff"
state "underheat detected", label:'UNDERHEAT DETECTED', backgroundColor:"#ffffff"
}
valueTile("tamper", "device.tamper", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "clear", label:'NO TAMPER', backgroundColor:"#ffffff"
state "detected", label:'TAMPER DETECTED', backgroundColor:"#ffffff"
}
main "smoke"
details(["smoke","temperature"])
}
}
def updated() {
log.debug "Updated with settings: ${settings}"
setConfigured("false") //wait until the next time device wakeup to send configure command
}
def parse(String description) {
log.debug "parse() >> description: $description"
def result = null
if (description.startsWith("Err 106")) {
log.debug "parse() >> Err 106"
result = createEvent( name: "secureInclusion", value: "failed", isStateChange: true,
descriptionText: "This sensor failed to complete the network security key exchange. " +
"If you are unable to control it via SmartThings, you must remove it from your network and add it again.")
} else if (description != "updated") {
log.debug "parse() >> zwave.parse(description)"
def cmd = zwave.parse(description, [0x31: 5, 0x71: 3, 0x84: 1])
if (cmd) {
result = zwaveEvent(cmd)
}
}
log.debug "After zwaveEvent(cmd) >> Parsed '${description}' to ${result.inspect()}"
return result
}
def zwaveEvent(physicalgraph.zwave.commands.versionv1.VersionReport cmd) {
log.info "Executing zwaveEvent 86 (VersionV1): 12 (VersionReport) with cmd: $cmd"
def fw = "${cmd.applicationVersion}.${cmd.applicationSubVersion}"
updateDataValue("fw", fw)
def text = "$device.displayName: firmware version: $fw, Z-Wave version: ${cmd.zWaveProtocolVersion}.${cmd.zWaveProtocolSubVersion}"
createEvent(descriptionText: text, isStateChange: false)
}
def zwaveEvent(physicalgraph.zwave.commands.batteryv1.BatteryReport cmd) {
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
}
setConfigured("true") //when battery is reported back meaning configuration is done
//Store time of last battery update so we don't ask every wakeup, see WakeUpNotification handler
state.lastbatt = now()
createEvent(map)
}
def zwaveEvent(physicalgraph.zwave.commands.applicationstatusv1.ApplicationBusy cmd) {
def msg = cmd.status == 0 ? "try again later" :
cmd.status == 1 ? "try again in $cmd.waitTime seconds" :
cmd.status == 2 ? "request queued" : "sorry"
createEvent(displayed: true, descriptionText: "$device.displayName is busy, $msg")
}
def zwaveEvent(physicalgraph.zwave.commands.applicationstatusv1.ApplicationRejectedRequest cmd) {
createEvent(displayed: true, descriptionText: "$device.displayName rejected the last request")
}
def zwaveEvent(physicalgraph.zwave.commands.securityv1.SecurityMessageEncapsulation cmd) {
setSecured()
def encapsulatedCommand = cmd.encapsulatedCommand([0x31: 5, 0x71: 3, 0x84: 1])
if (encapsulatedCommand) {
log.debug "command: 98 (Security) 81(SecurityMessageEncapsulation) encapsulatedCommand: $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"
setSecured()
log.info "checking this MSR : ${getDataValue("MSR")} before sending configuration to device"
if (getDataValue("MSR")?.startsWith("010F-0C02")){
response(configure()) //configure device using SmartThings default settings
}
}
def zwaveEvent(physicalgraph.zwave.commands.securityv1.NetworkKeyVerify cmd) {
log.info "Executing zwaveEvent 98 (SecurityV1): 07 (NetworkKeyVerify) with cmd: $cmd (node is securely included)"
createEvent(name:"secureInclusion", value:"success", descriptionText:"Secure inclusion was successful", isStateChange: true, displayed: true)
//after device securely joined the network, call configure() to config device
setSecured()
log.info "checking this MSR : ${getDataValue("MSR")} before sending configuration to device"
if (getDataValue("MSR")?.startsWith("010F-0C02")){
response(configure()) //configure device using SmartThings default settings
}
}
def zwaveEvent(physicalgraph.zwave.commands.notificationv3.NotificationReport cmd) {
log.info "Executing zwaveEvent 71 (NotificationV3): 05 (NotificationReport) with cmd: $cmd"
def result = []
if (cmd.notificationType == 7) {
switch (cmd.event) {
case 0:
result << createEvent(name: "tamper", value: "clear", displayed: false)
break
case 3:
result << createEvent(name: "tamper", value: "detected", descriptionText: "$device.displayName casing was opened")
break
}
} else if (cmd.notificationType == 1) { //Smoke Alarm (V2)
log.debug "notificationv3.NotificationReport: for Smoke Alarm (V2)"
result << smokeAlarmEvent(cmd.event)
} else if (cmd.notificationType == 4) { // Heat Alarm (V2)
log.debug "notificationv3.NotificationReport: for Heat Alarm (V2)"
result << heatAlarmEvent(cmd.event)
} else {
log.warn "Need to handle this cmd.notificationType: ${cmd.notificationType}"
result << createEvent(descriptionText: cmd.toString(), isStateChange: false)
}
result
}
def smokeAlarmEvent(value) {
log.debug "smokeAlarmEvent(value): $value"
def map = [name: "smoke"]
if (value == 1 || value == 2) {
map.value = "detected"
map.descriptionText = "$device.displayName detected smoke"
} else if (value == 0) {
map.value = "clear"
map.descriptionText = "$device.displayName is clear (no smoke)"
} else if (value == 3) {
map.value = "tested"
map.descriptionText = "$device.displayName smoke alarm test"
} else if (value == 4) {
map.value = "replacement required"
map.descriptionText = "$device.displayName replacement required"
} else {
map.value = "unknown"
map.descriptionText = "$device.displayName unknown event"
}
createEvent(map)
}
def heatAlarmEvent(value) {
log.debug "heatAlarmEvent(value): $value"
def map = [name: "heatAlarm"]
if (value == 1 || value == 2) {
map.value = "overheat detected"
map.descriptionText = "$device.displayName overheat detected"
} else if (value == 0) {
map.value = "clear"
map.descriptionText = "$device.displayName heat alarm cleared (no overheat)"
} else if (value == 3 || value == 4) {
map.value = "rapid temperature rise"
map.descriptionText = "$device.displayName rapid temperature rise"
} else if (value == 5 || value == 6) {
map.value = "underheat detected"
map.descriptionText = "$device.displayName underheat detected"
} else {
map.value = "unknown"
map.descriptionText = "$device.displayName unknown event"
}
createEvent(map)
}
def zwaveEvent(physicalgraph.zwave.commands.wakeupv1.WakeUpNotification cmd) {
log.info "Executing zwaveEvent 84 (WakeUpV1): 07 (WakeUpNotification) with cmd: $cmd"
log.info "checking this MSR : ${getDataValue("MSR")} before sending configuration to device"
def result = [createEvent(descriptionText: "${device.displayName} woke up", isStateChange: false)]
def cmds = []
/* check MSR = "manufacturerId-productTypeId" to make sure configuration commands are sent to the right model */
if (!isConfigured() && getDataValue("MSR")?.startsWith("010F-0C02")) {
result << response(configure()) // configure a newly joined device or joined device with preference update
} else {
//Only ask for battery if we haven't had a BatteryReport in a while
if (!state.lastbatt || (new Date().time) - state.lastbatt > 24*60*60*1000) {
log.debug("Device has been configured sending >> batteryGet()")
cmds << zwave.securityV1.securityMessageEncapsulation().encapsulate(zwave.batteryV1.batteryGet()).format()
cmds << "delay 1200"
}
log.debug("Device has been configured sending >> wakeUpNoMoreInformation()")
cmds << zwave.wakeUpV1.wakeUpNoMoreInformation().format()
result << response(cmds) //tell device back to sleep
}
result
}
def zwaveEvent(physicalgraph.zwave.commands.sensormultilevelv5.SensorMultilevelReport cmd) {
log.info "Executing zwaveEvent 31 (SensorMultilevelV5): 05 (SensorMultilevelReport) with cmd: $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
default:
map.descriptionText = cmd.toString()
}
createEvent(map)
}
def zwaveEvent(physicalgraph.zwave.commands.deviceresetlocallyv1.DeviceResetLocallyNotification cmd) {
log.info "Executing zwaveEvent 5A (DeviceResetLocallyV1) : 01 (DeviceResetLocallyNotification) with cmd: $cmd"
createEvent(descriptionText: cmd.toString(), isStateChange: true, displayed: true)
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd) {
log.info "Executing zwaveEvent 72 (ManufacturerSpecificV2) : 05 (ManufacturerSpecificReport) with cmd: $cmd"
log.debug "manufacturerId: ${cmd.manufacturerId}"
log.debug "manufacturerName: ${cmd.manufacturerName}"
log.debug "productId: ${cmd.productId}"
log.debug "productTypeId: ${cmd.productTypeId}"
def result = []
def msr = String.format("%04X-%04X-%04X", cmd.manufacturerId, cmd.productTypeId, cmd.productId)
updateDataValue("MSR", msr)
log.debug "After device is securely joined, send commands to update tiles"
result << zwave.batteryV1.batteryGet()
result << zwave.sensorMultilevelV5.sensorMultilevelGet(sensorType: 0x01)
result << zwave.wakeUpV1.wakeUpNoMoreInformation()
[[descriptionText:"${device.displayName} MSR report"], response(commands(result, 5000))]
}
def zwaveEvent(physicalgraph.zwave.commands.associationv2.AssociationReport cmd) {
def result = []
if (cmd.nodeId.any { it == zwaveHubNodeId }) {
result << createEvent(descriptionText: "$device.displayName is associated in group ${cmd.groupingIdentifier}")
} else if (cmd.groupingIdentifier == 1) {
result << createEvent(descriptionText: "Associating $device.displayName in group ${cmd.groupingIdentifier}")
result << response(zwave.associationV1.associationSet(groupingIdentifier:cmd.groupingIdentifier, nodeId:zwaveHubNodeId))
}
result
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
log.warn "General zwaveEvent cmd: ${cmd}"
createEvent(descriptionText: cmd.toString(), isStateChange: false)
}
def configure() {
// This sensor joins as a secure device if you tripple-click the button to include it
log.debug "configure() >> isSecured() : ${isSecured()}"
if (!isSecured()) {
log.debug "Fibaro smoke sensor not sending configure until secure"
return []
} else {
log.info "${device.displayName} is configuring its settings"
def request = []
//1. configure wakeup interval : available: 0, 4200s-65535s, device default 21600s(6hr)
request += zwave.wakeUpV1.wakeUpIntervalSet(seconds:6*3600, nodeid:zwaveHubNodeId)
//2. Smoke Sensitivity 3 levels: 1-HIGH , 2-MEDIUM (default), 3-LOW
if (smokeSensorSensitivity && smokeSensorSensitivity != "null") {
request += zwave.configurationV1.configurationSet(parameterNumber: 1, size: 1,
scaledConfigurationValue:
smokeSensorSensitivity == "High" ? 1 :
smokeSensorSensitivity == "Medium" ? 2 :
smokeSensorSensitivity == "Low" ? 3 : 2)
}
//3. Z-Wave notification status: 0-all disabled (default), 1-casing open enabled, 2-exceeding temp enable
if (zwaveNotificationStatus && zwaveNotificationStatus != "null"){
request += zwave.configurationV1.configurationSet(parameterNumber: 2, size: 1, scaledConfigurationValue: notificationOptionValueMap[zwaveNotificationStatus] ?: 0)
}
//4. Visual indicator notification status: 0-all disabled (default), 1-casing open enabled, 2-exceeding temp enable, 4-lack of range notification
if (visualIndicatorNotificationStatus && visualIndicatorNotificationStatus != "null") {
request += zwave.configurationV1.configurationSet(parameterNumber: 3, size: 1, scaledConfigurationValue: notificationOptionValueMap[visualIndicatorNotificationStatus] ?: 0)
}
//5. Sound notification status: 0-all disabled (default), 1-casing open enabled, 2-exceeding temp enable, 4-lack of range notification
if (soundNotificationStatus && soundNotificationStatus != "null") {
request += zwave.configurationV1.configurationSet(parameterNumber: 4, size: 1, scaledConfigurationValue: notificationOptionValueMap[soundNotificationStatus] ?: 0)
}
//6. Temperature report interval: 0-report inactive, 1-8640 (multiply by 10 secs) [10s-24hr], default 180 (30 minutes)
if (temperatureReportInterval && temperatureReportInterval != "null") {
request += zwave.configurationV1.configurationSet(parameterNumber: 20, size: 2, scaledConfigurationValue: timeOptionValueMap[temperatureReportInterval] ?: 180)
} else { //send SmartThings default configuration
request += zwave.configurationV1.configurationSet(parameterNumber: 20, size: 2, scaledConfigurationValue: 180)
}
//7. Temperature report hysteresis: 1-100 (in 0.1C step) [0.1C - 10C], default 10 (1 C)
if (temperatureReportHysteresis && temperatureReportHysteresis != null) {
request += zwave.configurationV1.configurationSet(parameterNumber: 21, size: 1, scaledConfigurationValue: temperatureReportHysteresis < 1 ? 1 : temperatureReportHysteresis > 100 ? 100 : temperatureReportHysteresis)
}
//8. Temperature threshold: 1-100 (C), default 55 (C)
if (temperatureThreshold && temperatureThreshold != null) {
request += zwave.configurationV1.configurationSet(parameterNumber: 30, size: 1, scaledConfigurationValue: temperatureThreshold < 1 ? 1 : temperatureThreshold > 100 ? 100 : temperatureThreshold)
}
//9. Excess temperature signaling interval: 1-8640 (multiply by 10 secs) [10s-24hr], default 180 (30 minutes)
if (excessTemperatureSignalingInterval && excessTemperatureSignalingInterval != "null") {
request += zwave.configurationV1.configurationSet(parameterNumber: 31, size: 2, scaledConfigurationValue: timeOptionValueMap[excessTemperatureSignalingInterval] ?: 180)
} else { //send SmartThings default configuration
request += zwave.configurationV1.configurationSet(parameterNumber: 31, size: 2, scaledConfigurationValue: 180)
}
//10. Lack of Z-Wave range indication interval: 1-8640 (multiply by 10 secs) [10s-24hr], default 2160 (6 hours)
if (lackOfZwaveRangeIndicationInterval && lackOfZwaveRangeIndicationInterval != "null") {
request += zwave.configurationV1.configurationSet(parameterNumber: 32, size: 2, scaledConfigurationValue: timeOptionValueMap[lackOfZwaveRangeIndicationInterval] ?: 2160)
} else {
request += zwave.configurationV1.configurationSet(parameterNumber: 32, size: 2, scaledConfigurationValue: 2160)
}
//11. get battery level when device is paired
request += zwave.batteryV1.batteryGet()
//12. get temperature reading from device
request += zwave.sensorMultilevelV5.sensorMultilevelGet(sensorType: 0x01)
commands(request) + ["delay 10000", zwave.wakeUpV1.wakeUpNoMoreInformation().format()]
}
}
private def getTimeOptionValueMap() { [
"5 minutes" : 30,
"15 minutes" : 90,
"30 minutes" : 180,
"1 hour" : 360,
"6 hours" : 2160,
"12 hours" : 4320,
"18 hours" : 6480,
"24 hours" : 8640,
"reports inactive" : 0,
]}
private def getNotificationOptionValueMap() { [
"disabled" : 0,
"casing opened" : 1,
"exceeding temperature threshold" : 2,
"lack of Z-Wave range" : 4,
"all notifications" : 7,
]}
private command(physicalgraph.zwave.Command cmd) {
if (isSecured()) {
log.info "Sending secured command: ${cmd}"
zwave.securityV1.securityMessageEncapsulation().encapsulate(cmd).format()
} else {
log.info "Sending unsecured command: ${cmd}"
cmd.format()
}
}
private commands(commands, delay=200) {
log.info "inside commands: ${commands}"
delayBetween(commands.collect{ command(it) }, delay)
}
private setConfigured(configure) {
updateDataValue("configured", configure)
}
private isConfigured() {
getDataValue("configured") == "true"
}
private setSecured() {
updateDataValue("secured", "true")
}
private isSecured() {
getDataValue("secured") == "true"
}

View File

@@ -1,887 +0,0 @@
/**
* Fidure Thermostat, Based on ZigBee thermostat (SmartThings)
*
* Author: Fidure
* Date: 2014-12-13
* Updated: 2015-08-26
*/
metadata {
// Automatically generated. Make future change here.
definition (name: "Fidure Thermostat", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Temperature Measurement"
capability "Thermostat"
capability "Configuration"
capability "Refresh"
capability "Sensor"
capability "Polling"
attribute "displayTemperature","number"
attribute "displaySetpoint", "string"
command "raiseSetpoint"
command "lowerSetpoint"
attribute "upButtonState", "string"
attribute "downButtonState", "string"
attribute "runningMode", "string"
attribute "lockLevel", "string"
command "setThermostatTime"
command "lock"
attribute "prorgammingOperation", "number"
attribute "prorgammingOperationDisplay", "string"
command "Program"
attribute "setpointHold", "string"
attribute "setpointHoldDisplay", "string"
command "Hold"
attribute "holdExpiary", "string"
attribute "lastTimeSync", "string"
attribute "thermostatOperatingState", "string"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0201,0204,0B05", outClusters: "000A, 0019"
}
// simulator metadata
simulator { }
// pref
preferences {
input ("hold_time", "enum", title: "Default Hold Time in Hours",
description: "Default Hold Duration in hours",
range: "1..24", options: ["No Hold", "2 Hours", "4 Hours", "8 Hours", "12 Hours", "1 Day"],
displayDuringSetup: false)
input ("sync_clock", "boolean", title: "Synchronize Thermostat Clock Automatically?", options: ["Yes","No"])
input ("lock_level", "enum", title: "Thermostat Screen Lock Level", options: ["Full","Mode Only", "Setpoint"])
}
tiles {
valueTile("temperature", "displayTemperature", width: 2, height: 2) {
state("temperature", label:'${currentValue}°', unit:"F",
backgroundColors:[
[value: 0, color: "#153591"],
[value: 7, color: "#1e9cbb"],
[value: 15, color: "#90d2a7"],
[value: 23, color: "#44b621"],
[value: 29, color: "#f1d801"],
[value: 35, color: "#d04e00"],
[value: 36, color: "#bc2323"],
// fahrenheit range
[value: 37, color: "#153591"],
[value: 44, color: "#1e9cbb"],
[value: 59, color: "#90d2a7"],
[value: 74, color: "#44b621"],
[value: 84, color: "#f1d801"],
[value: 95, color: "#d04e00"],
[value: 96, color: "#bc2323"]
]
)
}
standardTile("mode", "device.thermostatMode", inactiveLabel: false, decoration: "flat") {
state "off", action:"thermostat.setThermostatMode", icon:"st.thermostat.heating-cooling-off"
state "cool", action:"thermostat.setThermostatMode", icon:"st.thermostat.cool"
state "heat", action:"thermostat.setThermostatMode", icon:"st.thermostat.heat"
state "auto", action:"thermostat.setThermostatMode", icon:"st.thermostat.auto"
}
standardTile("fanMode", "device.thermostatFanMode", inactiveLabel: false, decoration: "flat") {
state "fanAuto", label:'${name}', action:"thermostat.setThermostatFanMode"
state "fanOn", label:'${name}', action:"thermostat.setThermostatFanMode"
}
standardTile("hvacStatus", "thermostatOperatingState", inactiveLabel: false, decoration: "flat") {
state "Resting", label: 'Resting'
state "Heating", icon:"st.thermostat.heating"
state "Cooling", icon:"st.thermostat.cooling"
}
standardTile("lock", "lockLevel", inactiveLabel: false, decoration: "flat") {
state "Unlocked", action:"lock", label:'${name}'
state "Mode Only", action:"lock", label:'${name}'
state "Setpoint", action:"lock", label:'${name}'
state "Full", action:"lock", label:'${name}'
}
controlTile("heatSliderControl", "device.heatingSetpoint", "slider", height: 1, width: 2, inactiveLabel: false, range: "$min..$max") {
state "setHeatingSetpoint", action:"thermostat.setHeatingSetpoint", backgroundColor:"#d04e00"
}
valueTile("heatingSetpoint", "device.heatingSetpoint", inactiveLabel: false, decoration: "flat") {
state "heat", label:'${currentValue}° heat', unit:"F", backgroundColor:"#ffffff"
}
controlTile("coolSliderControl", "device.coolingSetpoint", "slider", height: 1, width: 2, inactiveLabel: false, range: "$min..$max") {
state "setCoolingSetpoint", action:"thermostat.setCoolingSetpoint", backgroundColor: "#1e9cbb"
}
valueTile("coolingSetpoint", "device.coolingSetpoint", inactiveLabel: false, decoration: "flat") {
state "cool", label:'${currentValue}° cool', unit:"F", backgroundColor:"#ffffff"
}
standardTile("refresh", "device.temperature", inactiveLabel: false, decoration: "flat") {
state "default", action:"refresh.refresh", icon:"st.secondary.refresh"
}
standardTile("configure", "device.configure", inactiveLabel: false, decoration: "flat") {
state "configure", label:'', action:"configuration.configure", icon:"st.secondary.configure"
}
valueTile("scheduleText", "prorgammingOperation", inactiveLabel: false, decoration: "flat", width: 2) {
state "default", label: 'Schedule'
}
valueTile("schedule", "prorgammingOperationDisplay", inactiveLabel: false, decoration: "flat") {
state "default", action:"Program", label: '${currentValue}'
}
valueTile("hold", "setpointHoldDisplay", inactiveLabel: false, decoration: "flat", width: 3) {
state "setpointHold", action:"Hold", label: '${currentValue}'
}
valueTile("setpoint", "displaySetpoint", width: 2, height: 2)
{
state("displaySetpoint", label: '${currentValue}°',
backgroundColor: "#919191")
}
standardTile("upButton", "upButtonState", decoration: "flat", inactiveLabel: false) {
state "normal", action:"raiseSetpoint", backgroundColor:"#919191", icon:"st.thermostat.thermostat-up"
state "pressed", action:"raiseSetpoint", backgroundColor:"#ff0000", icon:"st.thermostat.thermostat-up"
}
standardTile("downButton", "downButtonState", decoration: "flat", inactiveLabel: false) {
state "normal", action:"lowerSetpoint", backgroundColor:"#919191", icon:"st.thermostat.thermostat-down"
state "pressed", action:"lowerSetpoint", backgroundColor:"#ff9191", icon:"st.thermostat.thermostat-down"
}
main "temperature"
details([ "temperature", "mode", "hvacStatus","setpoint","upButton","downButton","scheduleText", "schedule", "hold",
"heatSliderControl", "heatingSetpoint","coolSliderControl", "coolingSetpoint", "lock", "refresh", "configure"])
}
}
def getMin() {
try
{
if (getTemperatureScale() == "C")
return 10
else
return 50
} catch (all)
{
return 10
}
}
def getMax() {
try {
if (getTemperatureScale() == "C")
return 30
else
return 86
} catch (all)
{
return 86
}
}
// parse events into attributes
def parse(String description) {
log.debug "Parse description $description"
def result = []
if (description?.startsWith("read attr -")) {
//TODO: Parse RAW strings for multiple attributes
def descMap = parseDescriptionAsMap(description)
log.debug "Desc Map: $descMap"
for ( atMap in descMap.attrs)
{
def map = [:]
if (descMap.cluster == "0201")
{
//log.trace "attribute: ${atMap.attrId} "
switch(atMap.attrId.toLowerCase())
{
case "0000":
map.name = "temperature"
map.value = getTemperature(atMap.value)
result += createEvent("name":"displayTemperature", "value": getDisplayTemperature(atMap.value))
break;
case "0005":
//log.debug "hex time: ${descMap.value}"
if (atMap.encoding == "23")
{
map.name = "holdExpiary"
map.value = "${convertToTime(atMap.value).getTime()}"
//log.trace "HOLD EXPIRY: ${atMap.value} is ${map.value}"
updateHoldLabel("HoldExp", "${map.value}")
}
break;
case "0011":
map.name = "coolingSetpoint"
map.value = getDisplayTemperature(atMap.value)
updateSetpoint(map.name,map.value)
break;
case "0012":
map.name = "heatingSetpoint"
map.value = getDisplayTemperature(atMap.value)
updateSetpoint(map.name,map.value)
break;
case "001c":
map.name = "thermostatMode"
map.value = getModeMap()[atMap.value]
updateSetpoint(map.name,map.value)
break;
case "001e": //running mode enum8
map.name = "runningMode"
map.value = getModeMap()[atMap.value]
updateSetpoint(map.name,map.value)
break;
case "0023": // setpoint hold enum8
map.name = "setpointHold"
map.value = getHoldMap()[atMap.value]
updateHoldLabel("Hold", map.value)
break;
case "0024": // hold duration int16u
map.name = "setpointHoldDuration"
map.value = Integer.parseInt("${atMap.value}", 16)
break;
case "0025": // thermostat programming operation bitmap8
map.name = "prorgammingOperation"
def val = getProgrammingMap()[Integer.parseInt("${atMap.value}", 16) & 0x01]
result += createEvent("name":"prorgammingOperationDisplay", "value": val)
map.value = atMap.value
break;
case "0029":
// relay state
map.name = "thermostatOperatingState"
map.value = getThermostatOperatingState(atMap.value)
break;
}
} else if (descMap.cluster == "0204")
{
if (atMap.attrId == "0001")
{
map.name = "lockLevel"
map.value = getLockMap()[atMap.value]
}
}
if (map) {
result += createEvent(map)
}
}
}
log.debug "Parse returned $result"
return result
}
def parseDescriptionAsMap(description) {
def map = (description - "read attr - ").split(",").inject([:]) { map, param ->
def nameAndValue = param.split(":")
map += [(nameAndValue[0].trim()):nameAndValue[1].trim()]
}
def attrId = map.get('attrId')
def encoding = map.get('encoding')
def value = map.get('value')
def result = map.get('result')
def list = [];
if (getDataLengthByType(map.get('encoding')) < map.get('value').length()) {
def raw = map.get('raw')
def size = Long.parseLong(''+ map.get('size'), 16)
def index = 12;
def len
//log.trace "processing multi attributes"
while((index-12) < size) {
attrId = flipHexStringEndianness(raw[index..(index+3)])
index+= 4;
if (result == "success")
index+=2;
encoding = raw[index..(index+1)]
index+= 2;
len =getDataLengthByType(encoding)
value = flipHexStringEndianness(raw[index..(index+len-1)])
index+=len;
list += ['attrId': "$attrId", 'encoding':"$encoding", 'value': "$value"]
}
}
else
list += ['attrId': "$attrId", 'encoding': "$encoding", 'value': "$value"]
map.remove('value')
map.remove('encoding')
map.remove('attrId')
map += ['attrs' : list ]
}
def flipHexStringEndianness(s)
{
s = s.reverse()
def sb = new StringBuilder()
for (int i=0; i < s.length() -1; i+=2)
sb.append(s.charAt(i+1)).append(s.charAt(i))
sb
}
def getDataLengthByType(t)
{
// number of bytes in each static data type
def map = ["08":1, "09":2, "0a":3, "0b":4, "0c":5, "0d":6, "0e":7, "0f":8, "10":1, "18":1, "19":2, "1a":3, "1b":4,
"1c":5,"1d":6, "1e":7, "1f":8, "20":1, "21":2, "22":3, "23":4, "24":5, "25":6, "26":7, "27":8, "28":1, "29":2,
"2a":3, "2b":4, "2c":5, "2d":6, "2e":7, "2f":8, "30":1, "31":2, "38":2, "39":4, "40":8, "e0":4, "e1":4, "e2":4,
"e8":2, "e9":2, "ea":4, "f0":8, "f1":16]
// return number of hex chars
return map.get(t) * 2
}
def getProgrammingMap() { [
0:"Off",
1:"On"
]}
def getModeMap() { [
"00":"off",
"01":"auto",
"03":"cool",
"04":"heat"
]}
def getFanModeMap() { [
"04":"fanOn",
"05":"fanAuto"
]}
def getHoldMap()
{[
"00":"Off",
"01":"On"
]}
def updateSetpoint(attrib, val)
{
def cool = device.currentState("coolingSetpoint")?.value
def heat = device.currentState("heatingSetpoint")?.value
def runningMode = device.currentState("runningMode")?.value
def mode = device.currentState("thermostatMode")?.value
def value = '--';
if ("heat" == mode && heat != null)
value = heat;
else if ("cool" == mode && cool != null)
value = cool;
else if ("auto" == mode && runningMode == "cool" && cool != null)
value = cool;
else if ("auto" == mode && runningMode == "heat" && heat != null)
value = heat;
sendEvent("name":"displaySetpoint", "value": value)
}
def raiseSetpoint()
{
sendEvent("name":"upButtonState", "value": "pressed")
sendEvent("name":"upButtonState", "value": "normal")
adjustSetpoint(5)
}
def lowerSetpoint()
{
sendEvent("name":"downButtonState", "value": "pressed")
sendEvent("name":"downButtonState", "value": "normal")
adjustSetpoint(-5)
}
def adjustSetpoint(value)
{
def runningMode = device.currentState("runningMode")?.value
def mode = device.currentState("thermostatMode")?.value
//default to both heat and cool
def modeData = 0x02
if ("heat" == mode || "heat" == runningMode)
modeData = "00"
else if ("cool" == mode || "cool" == runningMode)
modeData = "01"
def amountData = String.format("%02X", value)[-2..-1]
"st cmd 0x${device.deviceNetworkId} 1 0x201 0 {" + modeData + " " + amountData + "}"
}
def getDisplayTemperature(value)
{
def t = Integer.parseInt("$value", 16);
if (getTemperatureScale() == "C") {
t = (((t + 4) / 10) as Integer) / 10;
} else {
t = ((10 *celsiusToFahrenheit(t/100)) as Integer)/ 10;
}
return t;
}
def updateHoldLabel(attr, value)
{
def currentHold = (device?.currentState("setpointHold")?.value)?: "..."
def holdExp = device?.currentState("holdExpiary")?.value
holdExp = holdExp?: "${(new Date()).getTime()}"
if ("Hold" == attr)
{
currentHold = value
}
if ("HoldExp" == attr)
{
holdExp = value
}
boolean past = ( (new Date(holdExp.toLong()).getTime()) < (new Date().getTime()))
if ("HoldExp" == attr)
{
if (!past)
currentHold = "On"
else
currentHold = "Off"
}
def holdString = (currentHold == "On")?
( (past)? "Is On" : "Ends ${compareWithNow(holdExp.toLong())}") :
((currentHold == "Off")? " is Off" : " ...")
sendEvent("name":"setpointHoldDisplay", "value": "Hold ${holdString}")
}
def getSetPointHoldDuration()
{
def holdTime = 0
if (settings.hold_time?.contains("Hours"))
{
holdTime = Integer.parseInt(settings.hold_time[0..1].trim())
}
else if (settings.hold_time?.contains("Day"))
{
holdTime = Integer.parseInt(settings.hold_time[0..1].trim()) * 24
}
def currentHoldDuration = device.currentState("setpointHoldDuration")?.value
if (Short.parseShort('0'+ (currentHoldDuration?: 0)) != (holdTime * 60))
{
[
"st wattr 0x${device.deviceNetworkId} 1 0x201 0x24 0x21 {" +
String.format("%04X", ((holdTime * 60) as Short)) // switch to zigbee endian
+ "}", "delay 100",
"st rattr 0x${device.deviceNetworkId} 1 0x201 0x24", "delay 200",
]
} else
{
[]
}
}
def Hold()
{
def currentHold = device.currentState("setpointHold")?.value
def next = (currentHold == "On") ? "00" : "01"
def nextHold = getHoldMap()[next]
sendEvent("name":"setpointHold", "value":nextHold)
// set the duration first if it's changed
[
"st wattr 0x${device.deviceNetworkId} 1 0x201 0x23 0x30 {$next}", "delay 100" ,
"raw 0x201 {04 21 11 00 00 05 00 }","delay 200", // hold expiry time
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
] + getSetPointHoldDuration()
}
def compareWithNow(d)
{
long mins = (new Date(d)).getTime() - (new Date()).getTime()
mins /= 1000 * 60;
log.trace "mins: ${mins}"
boolean past = (mins < 0)
def ret = (past)? "" : "in "
if (past)
mins *= -1;
float t = 0;
// minutes
if (mins < 60)
{
ret += (mins as Integer) + " min" + ((mins > 1)? 's' : '')
}else if (mins < 1440)
{
t = ( Math.round((14 + mins)/30) as Integer) / 2
ret += t + " hr" + ((t > 1)? 's' : '')
} else
{
t = (Math.round((359 + mins)/720) as Integer) / 2
ret += t + " day" + ((t > 1)? 's' : '')
}
ret += (past)? " ago": ""
log.trace "ret: ${ret}"
ret
}
def convertToTime(data)
{
def time = Integer.parseInt("$data", 16) as long;
time *= 1000;
time += 946684800000; // 481418694
time -= location.timeZone.getRawOffset() + location.timeZone.getDSTSavings();
def d = new Date(time);
//log.trace "converted $data to Time $d"
return d;
}
def Program()
{
def currentSched = device.currentState("prorgammingOperation")?.value
def next = Integer.parseInt(currentSched?: "00", 16);
if ( (next & 0x01) == 0x01)
next = next & 0xfe;
else
next = next | 0x01;
def nextSched = getProgrammingMap()[next & 0x01]
"st wattr 0x${device.deviceNetworkId} 1 0x201 0x25 0x18 {$next}"
}
def getThermostatOperatingState(value)
{
String[] m = [ "heating", "cooling", "fan", "Heat2", "Cool2", "Fan2", "Fan3"]
String desc = 'idle'
value = Integer.parseInt(''+value, 16)
// only check for 1-stage for A1730
for ( i in 0..2 ) {
if (value & 1 << i)
desc = m[i]
}
desc
}
def checkLastTimeSync(delay)
{
def lastSync = device.currentState("lastTimeSync")?.value
if (!lastSync)
lastSync = "${new Date(0)}"
if (settings.sync_clock ?: false && lastSync != new Date(0))
{
sendEvent("name":"lastTimeSync", "value":"${new Date(0)}")
}
long duration = (new Date()).getTime() - (new Date(lastSync)).getTime()
// log.debug "check Time: $lastSync duration: ${duration} settings.sync_clock: ${settings.sync_clock}"
if (duration > 86400000)
{
sendEvent("name":"lastTimeSync", "value":"${new Date()}")
return setThermostatTime()
}
return []
}
def readAttributesCommand(cluster, attribList)
{
def attrString = ''
for ( val in attribList ) {
attrString += ' ' + String.format("%02X %02X", val & 0xff , (val >> 8) & 0xff)
}
//log.trace "list: " + attrString
["raw "+ cluster + " {00 00 00 $attrString}","delay 100",
"send 0x${device.deviceNetworkId} 1 1", "delay 100",
]
}
def refresh()
{
log.debug "refresh called"
// log.trace "list: " + readAttributesCommand(0x201, [0x1C,0x1E,0x23])
readAttributesCommand(0x201, [0x00,0x11,0x12]) +
readAttributesCommand(0x201, [0x1C,0x1E,0x23]) +
readAttributesCommand(0x201, [0x24,0x25,0x29]) +
[
"st rattr 0x${device.deviceNetworkId} 1 0x204 0x01", "delay 200", // lock status
"raw 0x201 {04 21 11 00 00 05 00 }" , "delay 500", // hold expiary
"send 0x${device.deviceNetworkId} 1 1" , "delay 1500",
] + checkLastTimeSync(2000)
}
def poll() {
log.trace "poll called"
refresh()
}
def getTemperature(value) {
def celsius = Integer.parseInt("$value", 16) / 100
if(getTemperatureScale() == "C"){
return celsius as Integer
} else {
return celsiusToFahrenheit(celsius) as Integer
}
}
def setHeatingSetpoint(degrees) {
def temperatureScale = getTemperatureScale()
def degreesInteger = degrees as Integer
sendEvent("name":"heatingSetpoint", "value":degreesInteger)
def celsius = (getTemperatureScale() == "C") ? degreesInteger : (fahrenheitToCelsius(degreesInteger) as Double).round(2)
"st wattr 0x${device.deviceNetworkId} 1 0x201 0x12 0x29 {" + hex(celsius*100) + "}"
}
def setCoolingSetpoint(degrees) {
def degreesInteger = degrees as Integer
sendEvent("name":"coolingSetpoint", "value":degreesInteger)
def celsius = (getTemperatureScale() == "C") ? degreesInteger : (fahrenheitToCelsius(degreesInteger) as Double).round(2)
"st wattr 0x${device.deviceNetworkId} 1 0x201 0x11 0x29 {" + hex(celsius*100) + "}"
}
def modes() {
["off", "heat", "cool"]
}
def setThermostatFanMode() {
def currentFanMode = device.currentState("thermostatFanMode")?.value
//log.debug "switching fan from current mode: $currentFanMode"
def returnCommand
switch (currentFanMode) {
case "fanAuto":
returnCommand = fanOn()
break
case "fanOn":
returnCommand = fanAuto()
break
}
if(!currentFanMode) { returnCommand = fanAuto() }
returnCommand
}
def setThermostatMode() {
def currentMode = device.currentState("thermostatMode")?.value
def modeOrder = modes()
def index = modeOrder.indexOf(currentMode)
def next = index >= 0 && index < modeOrder.size() - 1 ? modeOrder[index + 1] : modeOrder[0]
setThermostatMode(next)
}
def setThermostatMode(String next) {
def val = (getModeMap().find { it.value == next }?.key)?: "00"
// log.trace "mode changing to $next sending value: $val"
sendEvent("name":"thermostatMode", "value":"$next")
["st wattr 0x${device.deviceNetworkId} 1 0x201 0x1C 0x30 {$val}"] +
refresh()
}
def setThermostatFanMode(String value) {
log.debug "setThermostatFanMode({$value})"
"$value"()
}
def off() {
setThermostatMode("off")
}
def cool() {
setThermostatMode("cool")}
def heat() {
setThermostatMode("heat")
}
def auto() {
setThermostatMode("auto")
}
def on() {
fanOn()
}
def fanOn() {
sendEvent("name":"thermostatFanMode", "value":"fanOn")
"st wattr 0x${device.deviceNetworkId} 1 0x202 0 0x30 {04}"
}
def fanAuto() {
sendEvent("name":"thermostatFanMode", "value":"fanAuto")
"st wattr 0x${device.deviceNetworkId} 1 0x202 0 0x30 {05}"
}
def updated()
{
def lastSync = device.currentState("lastTimeSync")?.value
if ((settings.sync_clock ?: false) == false)
{
log.debug "resetting last sync time. Used to be: $lastSync"
sendEvent("name":"lastTimeSync", "value":"${new Date(0)}")
}
}
def getLockMap()
{[
"00":"Unlocked",
"01":"Mode Only",
"02":"Setpoint",
"03":"Full",
"04":"Full",
"05":"Full",
]}
def lock()
{
def currentLock = device.currentState("lockLevel")?.value
def val = getLockMap().find { it.value == currentLock }?.key
//log.debug "current lock is: ${val}"
if (val == "00")
val = getLockMap().find { it.value == (settings.lock_level ?: "Full") }?.key
else
val = "00"
"st rattr 0x${device.deviceNetworkId} 1 0x204 0x01"
}
def setThermostatTime()
{
if ((settings.sync_clock ?: false))
{
log.debug "sync time is disabled, leaving"
return []
}
Date date = new Date();
String zone = location.timeZone.getRawOffset() + " DST " + location.timeZone.getDSTSavings();
long millis = date.getTime(); // Millis since Unix epoch
millis -= 946684800000; // adjust for ZigBee EPOCH
// adjust for time zone and DST offset
millis += location.timeZone.getRawOffset() + location.timeZone.getDSTSavings();
//convert to seconds
millis /= 1000;
// print to a string for hex capture
String s = String.format("%08X", millis);
// hex capture for message format
String data = " " + s.substring(6, 8) + " " + s.substring(4, 6) + " " + s.substring(2, 4)+ " " + s.substring(0, 2);
[
"raw 0x201 {04 21 11 00 02 0f 00 23 ${data} }",
"send 0x${device.deviceNetworkId} 1 ${endpointId}"
]
}
def configure() {
[
"zdo bind 0x${device.deviceNetworkId} 1 1 0x201 {${device.zigbeeId}} {}", "delay 500",
"zcl global send-me-a-report 0x201 0x0000 0x29 20 300 {19 00}", // report temperature changes over 0.2C
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zcl global send-me-a-report 0x201 0x001C 0x30 10 305 { }", // mode
"send 0x${device.deviceNetworkId} 1 ${endpointId}","delay 500",
"zcl global send-me-a-report 0x201 0x0025 0x18 10 310 { 00 }", // schedule on/off
"send 0x${device.deviceNetworkId} 1 ${endpointId}","delay 500",
"zcl global send-me-a-report 0x201 0x001E 0x30 10 315 { 00 }", // running mode
"send 0x${device.deviceNetworkId} 1 ${endpointId}","delay 500",
"zcl global send-me-a-report 0x201 0x0011 0x29 10 320 {32 00}", // cooling setpoint delta: 0.5C (0x3200 in little endian)
"send 0x${device.deviceNetworkId} 1 ${endpointId}","delay 500",
"zcl global send-me-a-report 0x201 0x0012 0x29 10 320 {32 00}", // cooling setpoint delta: 0.5C (0x3200 in little endian)
"send 0x${device.deviceNetworkId} 1 ${endpointId}","delay 500",
"zcl global send-me-a-report 0x201 0x0029 0x19 10 325 { 00 }", "delay 200", // relay status
"send 0x${device.deviceNetworkId} 1 ${endpointId}","delay 500",
"zcl global send-me-a-report 0x201 0x0023 0x30 10 330 { 00 }", // hold
"send 0x${device.deviceNetworkId} 1 ${endpointId}","delay 1500",
] + refresh()
}
private hex(value) {
new BigInteger(Math.round(value).toString()).toString(16)
}
private getEndpointId()
{
new BigInteger(device.endpointId, 16).toString()
}

View File

@@ -19,6 +19,7 @@ metadata {
capability "Sensor"
fingerprint deviceId: "0x1000", inClusters: "0x25,0x72,0x86,0x71,0x22,0x70"
fingerprint deviceId: "0x1006", inClusters: "0x25"
}
// simulator metadata

View File

@@ -50,7 +50,7 @@ metadata {
capability "Switch Level"
capability "Polling"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0008,1000", outClusters: "0019", manufacturer: "GE_Appliances", model: "ZLL Light", deviceJoinName: "GE Link Bulb"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0008,1000", outClusters: "0019"
}
// UI tile definitions
@@ -317,7 +317,7 @@ def setLevel(value) {
state.trigger = "setLevel"
state.lvl = "${level}"
if (dimRate && (state?.rate != null)) {
if (dimRate) {
cmds << "st cmd 0x${device.deviceNetworkId} 1 8 4 {${level} ${state.rate}}"
}
else {
@@ -330,7 +330,8 @@ def setLevel(value) {
def configure() {
log.debug "Configuring Reporting and Bindings."
String zigbeeId = swapEndianHex(device.hub.zigbeeId)
log.debug "Confuguring Reporting and Bindings."
def configCmds = [
//Switch Reporting

View File

@@ -26,6 +26,8 @@ metadata {
capability "Actuator"
capability "Sensor"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0008,0B05,0702", outClusters: "000A,0019", manufacturer: "Jasco Products", model: "45852"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0008,0B05,0702", outClusters: "000A,0019", manufacturer: "Jasco Products", model: "45857"
}
// simulator metadata

View File

@@ -26,6 +26,8 @@ metadata {
capability "Actuator"
capability "Sensor"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0B05,0702", outClusters: "0003, 000A,0019", manufacturer: "Jasco Products", model: "45853"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0B05,0702", outClusters: "000A,0019", manufacturer: "Jasco Products", model: "45856"
}
// simulator metadata

View File

@@ -1,81 +0,0 @@
/**
* Logitech Harmony Activity
*
* Copyright 2015 Juan Risso
*
* 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: "Harmony Activity", namespace: "smartthings", author: "Juan Risso") {
capability "Switch"
capability "Actuator"
capability "Refresh"
command "huboff"
command "alloff"
command "refresh"
}
// simulator metadata
simulator {
}
// UI tile definitions
tiles {
standardTile("button", "device.switch", width: 2, height: 2, canChangeIcon: true) {
state "off", label: 'Off', action: "switch.on", icon: "st.harmony.harmony-hub-icon", backgroundColor: "#ffffff", nextState: "on"
state "on", label: 'On', action: "switch.off", icon: "st.harmony.harmony-hub-icon", backgroundColor: "#79b821", nextState: "off"
}
standardTile("refresh", "device.switch", inactiveLabel: false, decoration: "flat") {
state "default", label:'', action:"refresh.refresh", icon:"st.secondary.refresh"
}
standardTile("forceoff", "device.switch", inactiveLabel: false, decoration: "flat") {
state "default", label:'Force End', action:"switch.off", icon:"st.secondary.off"
}
standardTile("huboff", "device.switch", inactiveLabel: false, decoration: "flat") {
state "default", label:'End Hub Action', action:"huboff", icon:"st.harmony.harmony-hub-icon"
}
standardTile("alloff", "device.switch", inactiveLabel: false, decoration: "flat") {
state "default", label:'All Actions', action:"alloff", icon:"st.secondary.off"
}
main "button"
details(["button", "refresh", "forceoff", "huboff", "alloff"])
}
}
def parse(String description) {
}
def on() {
sendEvent(name: "switch", value: "on")
log.trace parent.activity(device.deviceNetworkId,"start")
}
def off() {
sendEvent(name: "switch", value: "off")
log.trace parent.activity(device.deviceNetworkId,"end")
}
def huboff() {
sendEvent(name: "switch", value: "off")
log.trace parent.activity(device.deviceNetworkId,"hub")
}
def alloff() {
sendEvent(name: "switch", value: "off")
log.trace parent.activity("all","end")
}
def refresh() {
log.debug "Executing 'refresh'"
log.trace parent.poll()
}

View File

@@ -15,27 +15,19 @@ metadata {
// TODO: define status and reply messages here
}
tiles(scale: 2) {
multiAttributeTile(name:"rich-control"){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "default", label: "Hue Bridge", action: "", icon: "st.Lighting.light99-hue", backgroundColor: "#F3C200"
}
tileAttribute ("serialNumber", key: "SECONDARY_CONTROL") {
attributeState "default", label:'SN: ${currentValue}'
}
}
tiles {
standardTile("icon", "icon", width: 1, height: 1, canChangeIcon: false, inactiveLabel: true, canChangeBackground: false) {
state "default", label: "Hue Bridge", action: "", icon: "st.Lighting.light99-hue", backgroundColor: "#FFFFFF"
}
valueTile("serialNumber", "device.serialNumber", decoration: "flat", height: 1, width: 2, inactiveLabel: false) {
state "default", label:'SN: ${currentValue}'
}
valueTile("networkAddress", "device.networkAddress", decoration: "flat", height: 2, width: 4, inactiveLabel: false) {
valueTile("networkAddress", "device.networkAddress", decoration: "flat", height: 1, width: 2, inactiveLabel: false) {
state "default", label:'${currentValue}', height: 1, width: 2, inactiveLabel: false
}
main (["icon"])
details(["rich-control", "networkAddress"])
details(["networkAddress","serialNumber"])
}
}
@@ -44,6 +36,7 @@ def parse(description) {
log.debug "Parsing '${description}'"
def results = []
def result = parent.parse(this, description)
if (result instanceof physicalgraph.device.HubAction){
log.trace "HUE BRIDGE HubAction received -- DOES THIS EVER HAPPEN?"
results << result
@@ -51,30 +44,32 @@ def parse(description) {
//do nothing
log.trace "HUE BRIDGE was updated"
} else {
log.trace "HUE BRIDGE, OTHER"
def map = description
if (description instanceof String) {
map = stringToMap(description)
}
if (map?.name && map?.value) {
log.trace "HUE BRIDGE, GENERATING EVENT: $map.name: $map.value"
results << createEvent(name: "${map.name}", value: "${map.value}")
} else {
log.trace "Parsing description"
results << createEvent(name: "${map?.name}", value: "${map?.value}")
}
else {
log.trace "HUE BRIDGE, OTHER"
def msg = parseLanMessage(description)
if (msg.body) {
def contentType = msg.headers["Content-Type"]
if (contentType?.contains("json")) {
def bulbs = new groovy.json.JsonSlurper().parseText(msg.body)
if (bulbs.state) {
log.info "Bridge response: $msg.body"
} else {
// Sending Bulbs List to parent"
if (parent.state.inBulbDiscovery)
log.info parent.bulbListHandler(device.hub.id, msg.body)
log.warn "NOT PROCESSED: $msg.body"
}
else {
log.debug "HUE BRIDGE, GENERATING BULB LIST EVENT: $bulbs"
sendEvent(name: "bulbList", value: device.hub.id, isStateChange: true, data: bulbs, displayed: false)
}
}
else if (contentType?.contains("xml")) {
log.debug "HUE BRIDGE ALREADY PRESENT"
log.debug "HUE BRIDGE, SWALLOWING BRIDGE DESCRIPTION RESPONSE -- BRIDGE ALREADY PRESENT"
}
}
}

View File

@@ -1,4 +1,3 @@
/**
* Hue Bulb
*
@@ -16,40 +15,49 @@ metadata {
capability "Sensor"
command "setAdjustedColor"
command "reset"
command "refresh"
command "reset"
command "refresh"
}
simulator {
// TODO: define status and reply messages here
}
tiles (scale: 2){
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "on", label:'${name}', action:"switch.off", icon:"st.lights.philips.hue-single", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${name}', action:"switch.on", icon:"st.lights.philips.hue-single", backgroundColor:"#ffffff", nextState:"turningOn"
attributeState "turningOn", label:'${name}', action:"switch.off", icon:"st.lights.philips.hue-single", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "turningOff", label:'${name}', action:"switch.on", icon:"st.lights.philips.hue-single", backgroundColor:"#ffffff", nextState:"turningOn"
}
tileAttribute ("device.level", key: "SLIDER_CONTROL") {
attributeState "level", action:"switch level.setLevel"
}
tileAttribute ("device.color", key: "COLOR_CONTROL") {
attributeState "color", action:"setAdjustedColor"
}
}
standardTile("reset", "device.reset", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "default", label:"Reset Color", action:"reset", icon:"st.lights.philips.hue-single"
}
standardTile("refresh", "device.switch", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
standardTile("switch", "device.switch", width: 2, height: 2, canChangeIcon: true) {
state "on", label:'${name}', action:"switch.off", icon:"st.lights.philips.hue-single", backgroundColor:"#79b821"
state "off", label:'${name}', action:"switch.on", icon:"st.lights.philips.hue-single", backgroundColor:"#ffffff"
}
standardTile("reset", "device.reset", inactiveLabel: false, decoration: "flat") {
state "default", label:"Color Reset", action:"reset", icon:"st.lights.philips.hue-single"
}
standardTile("refresh", "device.switch", inactiveLabel: false, decoration: "flat") {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
controlTile("rgbSelector", "device.color", "color", height: 3, width: 3, inactiveLabel: false) {
state "color", action:"setAdjustedColor"
}
controlTile("levelSliderControl", "device.level", "slider", height: 1, width: 2, inactiveLabel: false, range:"(0..100)") {
state "level", action:"switch level.setLevel"
}
valueTile("level", "device.level", inactiveLabel: false, decoration: "flat") {
state "level", label: 'Level ${currentValue}%'
}
controlTile("saturationSliderControl", "device.saturation", "slider", height: 1, width: 2, inactiveLabel: false) {
state "saturation", action:"color control.setSaturation"
}
valueTile("saturation", "device.saturation", inactiveLabel: false, decoration: "flat") {
state "saturation", label: 'Sat ${currentValue} '
}
controlTile("hueSliderControl", "device.hue", "slider", height: 1, width: 2, inactiveLabel: false) {
state "hue", action:"color control.setHue"
}
valueTile("hue", "device.hue", inactiveLabel: false, decoration: "flat") {
state "hue", label: 'Hue ${currentValue} '
}
main(["switch"])
details(["switch", "levelSliderControl", "rgbSelector", "refresh", "reset"])
}
// parse events into attributes
@@ -68,13 +76,13 @@ def parse(description) {
}
// handle commands
def on() {
log.trace parent.on(this)
def on(transition = "4") {
log.trace parent.on(this,transition)
sendEvent(name: "switch", value: "on")
}
def off() {
log.trace parent.off(this)
def off(transition = "4") {
log.trace parent.off(this,transition)
sendEvent(name: "switch", value: "off")
}
@@ -107,9 +115,9 @@ def setHue(percent) {
sendEvent(name: "hue", value: percent)
}
def setColor(value) {
def setColor(value,alert = "none",transition = 4) {
log.debug "setColor: ${value}, $this"
parent.setColor(this, value)
parent.setColor(this, value, alert, transition)
if (value.hue) { sendEvent(name: "hue", value: value.hue)}
if (value.saturation) { sendEvent(name: "saturation", value: value.saturation)}
if (value.hex) { sendEvent(name: "color", value: value.hex)}

View File

@@ -19,41 +19,24 @@ metadata {
simulator {
// TODO: define status and reply messages here
}
tiles(scale: 2) {
multiAttributeTile(name:"rich-control", type: "lighting", canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "on", label:'${name}', action:"switch.off", icon:"st.lights.philips.hue-single", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${name}', action:"switch.on", icon:"st.lights.philips.hue-single", backgroundColor:"#ffffff", nextState:"turningOn"
attributeState "turningOn", label:'${name}', action:"switch.off", icon:"st.lights.philips.hue-single", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "turningOff", label:'${name}', action:"switch.on", icon:"st.lights.philips.hue-single", backgroundColor:"#ffffff", nextState:"turningOn"
}
tileAttribute ("device.level", key: "SLIDER_CONTROL") {
attributeState "level", action:"switch level.setLevel", range:"(0..100)"
}
tileAttribute ("device.level", key: "SECONDARY_CONTROL") {
attributeState "level", label: 'Level ${currentValue}%'
}
}
standardTile("switch", "device.switch", width: 2, height: 2, canChangeIcon: true) {
state "on", label:'${name}', action:"switch.off", icon:"st.lights.philips.hue-single", backgroundColor:"#79b821", nextState:"turningOff"
state "off", label:'${name}', action:"switch.on", icon:"st.lights.philips.hue-single", backgroundColor:"#ffffff", nextState:"turningOn"
state "turningOn", label:'${name}', action:"switch.off", icon:"st.lights.philips.hue-single", backgroundColor:"#79b821", nextState:"turningOff"
state "turningOff", label:'${name}', action:"switch.on", icon:"st.lights.philips.hue-single", backgroundColor:"#ffffff", nextState:"turningOn"
}
controlTile("levelSliderControl", "device.level", "slider", height: 1, width: 2, inactiveLabel: false, range:"(0..100)") {
state "level", action:"switch level.setLevel"
}
standardTile("refresh", "device.switch", inactiveLabel: false, height: 2, width: 2, decoration: "flat") {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
main(["switch"])
details(["rich-control", "refresh"])
}
standardTile("switch", "device.switch", width: 2, height: 2, canChangeIcon: true) {
state "on", label:'${name}', action:"switch.off", icon:"st.lights.philips.hue-single", backgroundColor:"#79b821"
state "off", label:'${name}', action:"switch.on", icon:"st.lights.philips.hue-single", backgroundColor:"#ffffff"
}
standardTile("refresh", "device.switch", inactiveLabel: false, decoration: "flat") {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
controlTile("levelSliderControl", "device.level", "slider", height: 1, width: 2, inactiveLabel: false, range:"(0..100)") {
state "level", action:"switch level.setLevel"
}
valueTile("level", "device.level", inactiveLabel: false, decoration: "flat") {
state "level", label: 'Level ${currentValue}%'
}
main(["switch"])
details(["switch", "levelSliderControl", "refresh"])
}
// parse events into attributes

View File

@@ -1,225 +0,0 @@
/**
* LIFX Color Bulb
*
* Copyright 2015 LIFX
*
*/
metadata {
definition (name: "LIFX Color Bulb", namespace: "smartthings", author: "LIFX") {
capability "Actuator"
capability "Color Control"
capability "Color Temperature"
capability "Switch"
capability "Switch Level" // brightness
capability "Polling"
capability "Refresh"
capability "Sensor"
}
simulator {
}
tiles(scale: 2) {
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "unreachable", label: "?", action:"refresh.refresh", icon:"http://hosted.lifx.co/smartthings/v1/196xUnreachable.png", backgroundColor:"#666666"
attributeState "on", label:'${name}', action:"switch.off", icon:"http://hosted.lifx.co/smartthings/v1/196xOn.png", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${name}', action:"switch.on", icon:"http://hosted.lifx.co/smartthings/v1/196xOff.png", backgroundColor:"#ffffff", nextState:"turningOn"
attributeState "turningOn", label:'Turning on', action:"switch.off", icon:"http://hosted.lifx.co/smartthings/v1/196xOn.png", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "turningOff", label:'Turning off', action:"switch.on", icon:"http://hosted.lifx.co/smartthings/v1/196xOff.png", backgroundColor:"#ffffff", nextState:"turningOn"
}
tileAttribute ("device.level", key: "SLIDER_CONTROL") {
attributeState "level", action:"switch level.setLevel"
}
tileAttribute ("device.color", key: "COLOR_CONTROL") {
attributeState "color", action:"setColor"
}
tileAttribute ("device.model", key: "SECONDARY_CONTROL") {
attributeState "model", label: '${currentValue}'
}
}
standardTile("refresh", "device.switch", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
valueTile("null", "device.switch", inactiveLabel: false, decoration: "flat") {
state "default", label:''
}
controlTile("colorTempSliderControl", "device.colorTemperature", "slider", height: 2, width: 4, inactiveLabel: false, range:"(2700..9000)") {
state "colorTemp", action:"color temperature.setColorTemperature"
}
valueTile("colorTemp", "device.colorTemperature", inactiveLabel: false, decoration: "flat", height: 2, width: 2) {
state "colorTemp", label: '${currentValue}K'
}
main "switch"
details(["switch", "colorTempSliderControl", "colorTemp", "refresh"])
}
}
// parse events into attributes
def parse(String description) {
if (description == 'updated') {
return // don't poll when config settings is being updated as it may time out
}
poll()
}
// handle commands
def setHue(percentage) {
log.debug "setHue ${percentage}"
parent.logErrors(logObject: log) {
def resp = parent.apiPUT("/lights/${selector()}/state", [color: "hue:${percentage * 3.6}", power: "on"])
if (resp.status < 300) {
sendEvent(name: "hue", value: percentage)
sendEvent(name: "switch", value: "on")
} else {
log.error("Bad setHue result: [${resp.status}] ${resp.data}")
}
}
}
def setSaturation(percentage) {
log.debug "setSaturation ${percentage}"
parent.logErrors(logObject: log) {
def resp = parent.apiPUT("/lights/${selector()}/state", [color: "saturation:${percentage / 100}", power: "on"])
if (resp.status < 300) {
sendEvent(name: "saturation", value: percentage)
sendEvent(name: "switch", value: "on")
} else {
log.error("Bad setSaturation result: [${resp.status}] ${resp.data}")
}
}
}
def setColor(Map color) {
log.debug "setColor ${color}"
def attrs = []
def events = []
color.each { key, value ->
switch (key) {
case "hue":
attrs << "hue:${value * 3.6}"
events << createEvent(name: "hue", value: value)
break
case "saturation":
attrs << "saturation:${value / 100}"
events << createEvent(name: "saturation", value: value)
break
case "colorTemperature":
attrs << "kelvin:${value}"
events << createEvent(name: "colorTemperature", value: value)
break
}
}
parent.logErrors(logObject:log) {
def resp = parent.apiPUT("/lights/${selector()}/state", [color: attrs.join(" "), power: "on"])
if (resp.status < 300) {
sendEvent(name: "color", value: color.hex)
sendEvent(name: "switch", value: "on")
events.each { sendEvent(it) }
} else {
log.error("Bad setColor result: [${resp.status}] ${resp.data}")
}
}
}
def setLevel(percentage) {
log.debug "setLevel ${percentage}"
if (percentage < 1 && percentage > 0) {
percentage = 1 // clamp to 1%
}
if (percentage == 0) {
sendEvent(name: "level", value: 0) // Otherwise the level value tile does not update
return off() // if the brightness is set to 0, just turn it off
}
parent.logErrors(logObject:log) {
def resp = parent.apiPUT("/lights/${selector()}/state", ["brightness": percentage / 100, "power": "on"])
if (resp.status < 300) {
sendEvent(name: "level", value: percentage)
sendEvent(name: "switch.setLevel", value: percentage)
sendEvent(name: "switch", value: "on")
} else {
log.error("Bad setLevel result: [${resp.status}] ${resp.data}")
}
}
}
def setColorTemperature(kelvin) {
log.debug "Executing 'setColorTemperature' to ${kelvin}"
parent.logErrors() {
def resp = parent.apiPUT("/lights/${selector()}/state", [color: "kelvin:${kelvin}", power: "on"])
if (resp.status < 300) {
sendEvent(name: "colorTemperature", value: kelvin)
sendEvent(name: "color", value: "#ffffff")
sendEvent(name: "saturation", value: 0)
} else {
log.error("Bad setLevel result: [${resp.status}] ${resp.data}")
}
}
}
def on() {
log.debug "Device setOn"
parent.logErrors() {
if (parent.apiPUT("/lights/${selector()}/state", [power: "on"]) != null) {
sendEvent(name: "switch", value: "on")
}
}
}
def off() {
log.debug "Device setOff"
parent.logErrors() {
if (parent.apiPUT("/lights/${selector()}/state", [power: "off"]) != null) {
sendEvent(name: "switch", value: "off")
}
}
}
def poll() {
log.debug "Executing 'poll' for ${device} ${this} ${device.deviceNetworkId}"
def resp = parent.apiGET("/lights/${selector()}")
if (resp.status == 404) {
sendEvent(name: "switch", value: "unreachable")
return []
} else if (resp.status != 200) {
log.error("Unexpected result in poll(): [${resp.status}] ${resp.data}")
return []
}
def data = resp.data[0]
log.debug("Data: ${data}")
sendEvent(name: "label", value: data.label)
sendEvent(name: "level", value: Math.round((data.brightness ?: 1) * 100))
sendEvent(name: "switch.setLevel", value: Math.round((data.brightness ?: 1) * 100))
sendEvent(name: "switch", value: data.connected ? data.power : "unreachable")
sendEvent(name: "color", value: colorUtil.hslToHex((data.color.hue / 3.6) as int, (data.color.saturation * 100) as int))
sendEvent(name: "hue", value: data.color.hue / 3.6)
sendEvent(name: "saturation", value: data.color.saturation * 100)
sendEvent(name: "colorTemperature", value: data.color.kelvin)
sendEvent(name: "model", value: "${data.product.company} ${data.product.name}")
return []
}
def refresh() {
log.debug "Executing 'refresh'"
poll()
}
def selector() {
if (device.deviceNetworkId.contains(":")) {
return device.deviceNetworkId
} else {
return "id:${device.deviceNetworkId}"
}
}

View File

@@ -1,155 +0,0 @@
/**
* LIFX White Bulb
*
* Copyright 2015 LIFX
*
*/
metadata {
definition (name: "LIFX White Bulb", namespace: "smartthings", author: "LIFX") {
capability "Actuator"
capability "Color Temperature"
capability "Switch"
capability "Switch Level" // brightness
capability "Polling"
capability "Refresh"
capability "Sensor"
}
simulator {
}
tiles(scale: 2) {
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "unreachable", label: "?", action:"refresh.refresh", icon:"http://hosted.lifx.co/smartthings/v1/196xUnreachable.png", backgroundColor:"#666666"
attributeState "on", label:'${name}', action:"switch.off", icon:"http://hosted.lifx.co/smartthings/v1/196xOn.png", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${name}', action:"switch.on", icon:"http://hosted.lifx.co/smartthings/v1/196xOff.png", backgroundColor:"#ffffff", nextState:"turningOn"
attributeState "turningOn", label:'Turning on', action:"switch.off", icon:"http://hosted.lifx.co/smartthings/v1/196xOn.png", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "turningOff", label:'Turning off', action:"switch.on", icon:"http://hosted.lifx.co/smartthings/v1/196xOff.png", backgroundColor:"#ffffff", nextState:"turningOn"
}
tileAttribute ("device.level", key: "SLIDER_CONTROL") {
attributeState "level", action:"switch level.setLevel"
}
}
standardTile("refresh", "device.switch", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
valueTile("null", "device.switch", inactiveLabel: false, decoration: "flat") {
state "default", label:''
}
controlTile("colorTempSliderControl", "device.colorTemperature", "slider", height: 2, width: 4, inactiveLabel: false, range:"(2700..9000)") {
state "colorTemp", action:"color temperature.setColorTemperature"
}
valueTile("colorTemp", "device.colorTemperature", inactiveLabel: false, decoration: "flat", height: 2, width: 2) {
state "colorTemp", label: '${currentValue}K'
}
main "switch"
details(["switch", "colorTempSliderControl", "colorTemp", "refresh"])
}
}
// parse events into attributes
def parse(String description) {
if (description == 'updated') {
return // don't poll when config settings is being updated as it may time out
}
poll()
}
// handle commands
def setLevel(percentage) {
log.debug "setLevel ${percentage}"
if (percentage < 1 && percentage > 0) {
percentage = 1 // clamp to 1%
}
if (percentage == 0) {
sendEvent(name: "level", value: 0) // Otherwise the level value tile does not update
return off() // if the brightness is set to 0, just turn it off
}
parent.logErrors(logObject:log) {
def resp = parent.apiPUT("/lights/${selector()}/state", [brightness: percentage / 100, power: "on"])
if (resp.status < 300) {
sendEvent(name: "level", value: percentage)
sendEvent(name: "switch.setLevel", value: percentage)
sendEvent(name: "switch", value: "on")
} else {
log.error("Bad setLevel result: [${resp.status}] ${resp.data}")
}
}
}
def setColorTemperature(kelvin) {
log.debug "Executing 'setColorTemperature' to ${kelvin}"
parent.logErrors() {
def resp = parent.apiPUT("/lights/${selector()}/state", [color: "kelvin:${kelvin}", power: "on"])
if (resp.status < 300) {
sendEvent(name: "colorTemperature", value: kelvin)
sendEvent(name: "color", value: "#ffffff")
sendEvent(name: "saturation", value: 0)
sendEvent(name: "switch", value: "on")
} else {
log.error("Bad setColorTemperature result: [${resp.status}] ${resp.data}")
}
}
}
def on() {
log.debug "Device setOn"
parent.logErrors() {
if (parent.apiPUT("/lights/${selector()}/state", [power: "on"]) != null) {
sendEvent(name: "switch", value: "on")
}
}
}
def off() {
log.debug "Device setOff"
parent.logErrors() {
if (parent.apiPUT("/lights/${selector()}/state", [power: "off"]) != null) {
sendEvent(name: "switch", value: "off")
}
}
}
def poll() {
log.debug "Executing 'poll' for ${device} ${this} ${device.deviceNetworkId}"
def resp = parent.apiGET("/lights/${selector()}")
if (resp.status == 404) {
sendEvent(name: "switch", value: "unreachable")
return []
} else if (resp.status != 200) {
log.error("Unexpected result in poll(): [${resp.status}] ${resp.data}")
return []
}
def data = resp.data[0]
sendEvent(name: "label", value: data.label)
sendEvent(name: "level", value: Math.round((data.brightness ?: 1) * 100))
sendEvent(name: "switch.setLevel", value: Math.round((data.brightness ?: 1) * 100))
sendEvent(name: "switch", value: data.connected ? data.power : "unreachable")
sendEvent(name: "colorTemperature", value: data.color.kelvin)
sendEvent(name: "model", value: data.product.name)
return []
}
def refresh() {
log.debug "Executing 'refresh'"
poll()
}
def selector() {
if (device.deviceNetworkId.contains(":")) {
return device.deviceNetworkId
} else {
return "id:${device.deviceNetworkId}"
}
}

View File

@@ -25,7 +25,7 @@ metadata {
tiles {
standardTile("presence", "device.presence", width: 2, height: 2, canChangeBackground: true) {
state("present", labelIcon:"st.presence.tile.mobile-present", backgroundColor:"#53a7c0")
state("not present", labelIcon:"st.presence.tile.mobile-not-present", backgroundColor:"#ebeef2")
state("not present", labelIcon:"st.presence.tile.mobile-not-present", backgroundColor:"#ffffff")
}
main "presence"
details "presence"

View File

@@ -24,8 +24,8 @@ metadata {
command "enrollResponse"
fingerprint inClusters: "0000,0001,0003,0406,0500,0020", manufacturer: "NYCE", model: "3041"
fingerprint inClusters: "0000,0001,0003,0406,0500,0020", manufacturer: "NYCE", model: "3043", deviceJoinName: "NYCE Ceiling Motion Sensor"
fingerprint inClusters: "0000,0001,0003,0406,0500,0020", manufacturer: "NYCE", model: "3045", deviceJoinName: "NYCE Curtain Motion Sensor"
fingerprint inClusters: "0000,0001,0003,0406,0500,0020", manufacturer: "NYCE", model: "3043"
fingerprint inClusters: "0000,0001,0003,0406,0500,0020", manufacturer: "NYCE", model: "3045"
}
tiles {
@@ -201,10 +201,10 @@ def refresh()
def configure() {
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
log.debug "Configuring Reporting, IAS CIE, and Bindings."
String zigbeeId = swapEndianHex(device.hub.zigbeeId)
log.debug "Confuguring Reporting, IAS CIE, and Bindings."
def configCmds = [
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"zcl global write 0x500 0x10 0xf0 {${zigbeeId}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zcl global send-me-a-report 1 0x20 0x20 0x3600 0x3600 {01}", "delay 200",

View File

@@ -24,10 +24,10 @@ metadata {
command "enrollResponse"
fingerprint inClusters: "0000,0001,0003,0406,0500,0020", manufacturer: "NYCE", model: "3011", deviceJoinName: "NYCE Door/Window Sensor"
fingerprint inClusters: "0000,0001,0003,0500,0020", manufacturer: "NYCE", model: "3011", deviceJoinName: "NYCE Door/Window Sensor"
fingerprint inClusters: "0000,0001,0003,0406,0500,0020", manufacturer: "NYCE", model: "3014", deviceJoinName: "NYCE Tilt Sensor"
fingerprint inClusters: "0000,0001,0003,0500,0020", manufacturer: "NYCE", model: "3014", deviceJoinName: "NYCE Tilt Sensor"
fingerprint inClusters: "0000,0001,0003,0406,0500,0020", manufacturer: "NYCE", model: "3011"
fingerprint inClusters: "0000,0001,0003,0500,0020", manufacturer: "NYCE", model: "3011"
fingerprint inClusters: "0000,0001,0003,0406,0500,0020", manufacturer: "NYCE", model: "3014"
fingerprint inClusters: "0000,0001,0003,0500,0020", manufacturer: "NYCE", model: "3014"
}
simulator {
@@ -280,7 +280,7 @@ private List parseIasMessage(String description) {
}
def configure() {
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
String zigbeeId = swapEndianHex(device.hub.zigbeeId)
def configCmds = [
//battery reporting and heartbeat
@@ -290,7 +290,7 @@ def configure() {
// Writes CIE attribute on end device to direct reports to the hub's EUID
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"zcl global write 0x500 0x10 0xf0 {${zigbeeId}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 500",
]

View File

@@ -22,8 +22,10 @@ metadata {
command "setAdjustedColor"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0008,0300,0B04,FC0F", outClusters: "0019", manufacturer: "OSRAM", model: "Gardenspot RGB"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0008,0300,0B04,FC0F", outClusters: "0019", manufacturer: "OSRAM", model: "LIGHTIFY Gardenspot RGB"
}
// simulator metadata

View File

@@ -5,8 +5,6 @@
that issue by using state variables
*/
//DEPRECATED - Using the generic DTH for this device. Users need to be moved before deleting this DTH
metadata {
definition (name: "OSRAM LIGHTIFY LED Tunable White 60W", namespace: "smartthings", author: "SmartThings") {
@@ -22,7 +20,10 @@ metadata {
// indicates that device keeps track of heartbeat (in state.heartbeat)
attribute "heartbeat", "string"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0008,0300,0B04,FC0F", outClusters: "0019", manufacturer: "OSRAM", model: "Classic A60 TW"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0008,0300,0B04,FC0F", outClusters: "0019", manufacturer: "OSRAM", model: "LIGHTIFY A19 Tunable White"
}

View File

@@ -41,7 +41,7 @@ metadata {
}
tiles(scale: 2) {
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "on", label:'${name}', action:"switch.off", icon:"st.switches.switch.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${name}', action:"switch.on", icon:"st.switches.switch.off", backgroundColor:"#ffffff", nextState:"turningOn"
@@ -287,8 +287,7 @@ def isDescriptionPower(descMap) {
def powerValue = "undefined"
if (descMap.cluster == "0B04") {
if (descMap.attrId == "050b") {
if(descMap.value!="ffff")
powerValue = convertHexToInt(descMap.value)
powerValue = convertHexToInt(descMap.value)
}
}
else if (descMap.clusterId == "0B04") {
@@ -328,9 +327,10 @@ def levelConfig() {
//min change in value is 05
def powerConfig() {
[
"zdo bind 0x${device.deviceNetworkId} 1 ${endpointId} 0x0B04 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 0x0B04 0x050B 0x29 1 600 {05 00}", //The send-me-a-report is custom to the attribute type for CentraLite
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500"
//Meter (Power) Reporting
"zdo bind 0x${device.deviceNetworkId} 1 ${endpointId} 0x0B04 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 0x0B04 0x050B 0x2A 1 600 {05}",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 1500"
]
}

View File

@@ -1,19 +1,8 @@
/**
* Copyright 2015 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.
*
* SmartPower Outlet (CentraLite)
* CentraLite Switch
*
* Author: SmartThings
* Date: 2015-08-23
* Date: 2013-12-02
*/
metadata {
// Automatically generated. Make future change here.
@@ -28,9 +17,6 @@ metadata {
// indicates that device keeps track of heartbeat (in state.heartbeat)
attribute "heartbeat", "string"
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: "0000,0003,0004,0005,0006,0B04,0B05", outClusters: "0019"
}
@@ -45,33 +31,22 @@ metadata {
reply "zcl on-off off": "on/off: 0"
}
preferences {
section {
image(name: 'educationalcontent', multiple: true, images: [
"http://cdn.device-gse.smartthings.com/Outlet/US/OutletUS1.jpg",
"http://cdn.device-gse.smartthings.com/Outlet/US/OutletUS2.jpg"
])
}
}
// UI tile definitions
tiles(scale: 2) {
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "on", label: '${name}', action: "switch.off", icon: "st.switches.switch.on", backgroundColor: "#79b821", nextState: "turningOff"
attributeState "off", label: '${name}', action: "switch.on", icon: "st.switches.switch.off", backgroundColor: "#ffffff", nextState: "turningOn"
attributeState "turningOn", label: '${name}', action: "switch.off", icon: "st.switches.switch.on", backgroundColor: "#79b821", nextState: "turningOff"
attributeState "turningOff", label: '${name}', action: "switch.on", icon: "st.switches.switch.off", backgroundColor: "#ffffff", nextState: "turningOn"
attributeState "off", label: '${name}', action: "switch.on", icon: "st.switches.switch.off", backgroundColor: "#ffffff"
attributeState "on", label: '${name}', action: "switch.off", icon: "st.switches.switch.on", backgroundColor: "#79b821"
}
tileAttribute ("power", key: "SECONDARY_CONTROL") {
attributeState "power", label:'${currentValue} W'
}
}
standardTile("refresh", "device.power", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "default", label:'', action:"refresh.refresh", icon:"st.secondary.refresh"
}
main "switch"
details(["switch","refresh"])
}
@@ -79,92 +54,67 @@ metadata {
// Parse incoming device messages to generate events
def parse(String description) {
log.debug "description is $description"
log.debug "Parse description $description"
def name = null
def value = null
// save heartbeat (i.e. last time we got a message from device)
state.heartbeat = Calendar.getInstance().getTimeInMillis()
def finalResult = zigbee.getKnownDescription(description)
//TODO: Remove this after getKnownDescription can parse it automatically
if (!finalResult && description!="updated")
finalResult = getPowerDescription(zigbee.parseDescriptionAsMap(description))
if (finalResult) {
log.info finalResult
if (finalResult.type == "update") {
log.info "$device updates: ${finalResult.value}"
}
else if (finalResult.type == "power") {
def powerValue = (finalResult.value as Integer)/10
sendEvent(name: "power", value: powerValue)
/*
Dividing by 10 as the Divisor is 10000 and unit is kW for the device. AttrId: 0302 and 0300. Simplifying to 10
power level is an integer. The exact power level with correct units needs to be handled in the device type
to account for the different Divisor value (AttrId: 0302) and POWER Unit (AttrId: 0300). CLUSTER for simple metering is 0702
*/
}
else {
sendEvent(name: finalResult.type, value: finalResult.value)
if (description?.startsWith("read attr -")) {
def descMap = parseDescriptionAsMap(description)
log.debug "Read attr: $description"
if (descMap.cluster == "0006" && descMap.attrId == "0000") {
name = "switch"
value = descMap.value.endsWith("01") ? "on" : "off"
} else if (descMap.cluster.equalsIgnoreCase("0B04") && descMap.attrId.equalsIgnoreCase("050b")) {
def reportValue = descMap.value
name = "power"
//power divisor is 10
value = Integer.parseInt(reportValue, 16) / 10
}
} else if (description?.startsWith("on/off:")) {
log.debug "Switch command"
name = "switch"
value = description?.endsWith(" 1") ? "on" : "off"
}
else {
log.warn "DID NOT PARSE MESSAGE for description : $description"
log.debug zigbee.parseDescriptionAsMap(description)
def result = createEvent(name: name, value: value)
log.debug "Parse returned ${result?.descriptionText}"
return result
}
def parseDescriptionAsMap(description) {
(description - "read attr - ").split(",").inject([:]) { map, param ->
def nameAndValue = param.split(":")
map += [(nameAndValue[0].trim()):nameAndValue[1].trim()]
}
}
// Commands to device
def on() {
'zcl on-off on'
}
def off() {
zigbee.off()
'zcl on-off off'
}
def on() {
zigbee.on()
def meter() {
"st rattr 0x${device.deviceNetworkId} 1 0xB04 0x50B"
}
def refresh() {
sendEvent(name: "heartbeat", value: "alive", displayed:false)
zigbee.onOffRefresh() + zigbee.refreshData("0x0B04", "0x050B")
}
def configure() {
zigbee.onOffConfig() + powerConfig() + refresh()
}
//power config for devices with min reporting interval as 1 seconds and reporting interval if no activity as 10min (600s)
//min change in value is 01
def powerConfig() {
[
"zdo bind 0x${device.deviceNetworkId} 1 ${endpointId} 0x0B04 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 0x0B04 0x050B 0x29 1 600 {05 00}", //The send-me-a-report is custom to the attribute type for CentraLite
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500"
"st rattr 0x${device.deviceNetworkId} 1 0xB04 0x50B"
]
}
private getEndpointId() {
new BigInteger(device.endpointId, 16).toString()
}
//TODO: Remove this after getKnownDescription can parse it automatically
def getPowerDescription(descMap) {
def powerValue = "undefined"
if (descMap.cluster == "0B04") {
if (descMap.attrId == "050b") {
if(descMap.value!="ffff")
powerValue = zigbee.convertHexToInt(descMap.value)
}
}
else if (descMap.clusterId == "0B04") {
if(descMap.command=="07"){
return [type: "update", value : "power (0B04) capability configured successfully"]
}
}
if (powerValue != "undefined"){
return [type: "power", value : powerValue]
}
else {
return [:]
}
def configure() {
def configCmds = [
"zdo bind 0x${device.deviceNetworkId} 1 1 6 {${device.zigbeeId}} {}", "delay 200",
"zdo bind 0x${device.deviceNetworkId} 1 1 0xB04 {${device.zigbeeId}} {}", "delay 200"
]
return configCmds + refresh() // send refresh cmds as part of config
}

View File

@@ -79,8 +79,8 @@ metadata {
}
preferences {
input title: "Temperature Offset", description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Degrees", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
input description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Temperature Offset", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
}
}

View File

@@ -88,8 +88,8 @@ metadata {
}
preferences {
input title: "Temperature Offset", description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Degrees", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
input description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Temperature Offset", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
}
}

View File

@@ -22,12 +22,12 @@ metadata {
capability "Water Sensor"
command "enrollResponse"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3315-S"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3315"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3315-Seu"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3315-S", deviceJoinName: "Water Leak Sensor"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3315"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3315-Seu", deviceJoinName: "Water Leak Sensor"
fingerprint inClusters: "0000,0001,0003,000F,0020,0402,0500", outClusters: "0019", manufacturer: "SmartThings", model: "moisturev4", deviceJoinName: "Water Leak Sensor"
}
simulator {
@@ -35,27 +35,18 @@ metadata {
}
preferences {
section {
image(name: 'educationalcontent', multiple: true, images: [
"http://cdn.device-gse.smartthings.com/Moisture/Moisture1.png",
"http://cdn.device-gse.smartthings.com/Moisture/Moisture2.png",
"http://cdn.device-gse.smartthings.com/Moisture/Moisture3.png"
])
}
section {
input title: "Temperature Offset", description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Degrees", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
}
input description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Temperature Offset", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
}
tiles(scale: 2) {
multiAttributeTile(name:"water", type: "generic", width: 6, height: 4){
tileAttribute ("device.water", key: "PRIMARY_CONTROL") {
attributeState "dry", label: "Dry", icon:"st.alarm.water.dry", backgroundColor:"#ffffff"
attributeState "wet", label: "Wet", icon:"st.alarm.water.wet", backgroundColor:"#53a7c0"
attributeState "dry", icon:"st.alarm.water.dry", backgroundColor:"#ffffff"
attributeState "wet", icon:"st.alarm.water.wet", backgroundColor:"#53a7c0"
}
}
valueTile("temperature", "device.temperature", inactiveLabel: false, width: 2, height: 2) {
valueTile("temperature", "device.temperature", inactiveLabel: false) {
state "temperature", label:'${currentValue}°',
backgroundColors:[
[value: 31, color: "#153591"],
@@ -73,7 +64,7 @@ metadata {
standardTile("refresh", "device.refresh", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "default", action:"refresh.refresh", icon:"st.secondary.refresh"
}
main (["water", "temperature"])
details(["water", "temperature", "battery", "refresh"])
}
@@ -264,51 +255,52 @@ private Map getMoistureResult(value) {
]
}
def refresh() {
def refresh()
{
log.debug "Refreshing Temperature and Battery"
def refreshCmds = [
"st rattr 0x${device.deviceNetworkId} 1 0x402 0", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 1 0x20", "delay 200"
]
[
return refreshCmds + enrollResponse()
"st rattr 0x${device.deviceNetworkId} 1 0x402 0", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 1 0x20"
]
}
def configure() {
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
log.debug "Configuring Reporting, IAS CIE, and Bindings."
String zigbeeId = swapEndianHex(device.hub.zigbeeId)
log.debug "Confuguring Reporting, IAS CIE, and Bindings."
def configCmds = [
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 1 {${device.zigbeeId}} {}", "delay 500",
"zcl global send-me-a-report 1 0x20 0x20 30 21600 {01}", //checkin time 6 hrs
"send 0x${device.deviceNetworkId} 1 1", "delay 500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 0x402 {${device.zigbeeId}} {}", "delay 500",
"zcl global send-me-a-report 0x402 0 0x29 30 3600 {6400}",
"send 0x${device.deviceNetworkId} 1 1", "delay 500"
"zcl global write 0x500 0x10 0xf0 {${zigbeeId}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zcl global send-me-a-report 1 0x20 0x20 300 0600 {01}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zcl global send-me-a-report 0x402 0 0x29 300 3600 {6400}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zdo bind 0x${device.deviceNetworkId} 1 1 0x402 {${device.zigbeeId}} {}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} 1 1 0x001 {${device.zigbeeId}} {}", "delay 1000",
"raw 0x500 {01 23 00 00 00}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1000",
]
return configCmds + refresh() // send refresh cmds as part of config
}
def enrollResponse() {
log.debug "Sending enroll response"
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
[
//Resending the CIE in case the enroll request is sent before CIE is written
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
//Enroll Response
"raw 0x500 {01 23 00 00 00}",
"send 0x${device.deviceNetworkId} 1 1", "delay 200"
[
"raw 0x500 {01 23 00 00 00}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1"
]
}
private getEndpointId() {
new BigInteger(device.endpointId, 16).toString()
}
private hex(value) {
new BigInteger(Math.round(value).toString()).toString(16)
}

View File

@@ -35,8 +35,8 @@ metadata {
tiles(scale: 2) {
multiAttributeTile(name:"water", type: "generic", width: 6, height: 4){
tileAttribute ("device.water", key: "PRIMARY_CONTROL") {
attributeState "dry", label: "Dry", icon:"st.alarm.water.dry", backgroundColor:"#ffffff"
attributeState "wet", label: "Wet", icon:"st.alarm.water.wet", backgroundColor:"#53a7c0"
attributeState "dry", icon:"st.alarm.water.dry", backgroundColor:"#ffffff"
attributeState "wet", icon:"st.alarm.water.wet", backgroundColor:"#53a7c0"
}
}
standardTile("temperature", "device.temperature", width: 2, height: 2) {
@@ -47,7 +47,6 @@ metadata {
valueTile("battery", "device.battery", decoration: "flat", inactiveLabel: false, width: 2, height: 2) {
state "battery", label:'${currentValue}% battery', unit:""
}
main (["water", "temperature"])
details(["water", "temperature", "battery"])
}
@@ -129,15 +128,6 @@ def zwaveEvent(physicalgraph.zwave.commands.alarmv2.AlarmReport cmd)
map
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicSet cmd)
{
def map = [:]
map.name = "water"
map.value = cmd.value ? "wet" : "dry"
map.descriptionText = "${device.displayName} is ${map.value}"
map
}
def zwaveEvent(physicalgraph.zwave.Command cmd)
{
log.debug "COMMAND CLASS: $cmd"

View File

@@ -25,11 +25,10 @@ metadata {
command "enrollResponse"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3305-S"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3325-S", deviceJoinName: "Motion Sensor"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3325-S"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3305"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3325"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3326"
fingerprint inClusters: "0000,0001,0003,000F,0020,0402,0500", outClusters: "0019", manufacturer: "SmartThings", model: "motionv4", deviceJoinName: "Motion Sensor"
}
simulator {
@@ -38,17 +37,8 @@ metadata {
}
preferences {
section {
image(name: 'educationalcontent', multiple: true, images: [
"http://cdn.device-gse.smartthings.com/Motion/Motion1.jpg",
"http://cdn.device-gse.smartthings.com/Motion/Motion2.jpg",
"http://cdn.device-gse.smartthings.com/Motion/Motion3.jpg"
])
}
section {
input title: "Temperature Offset", description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Degrees", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
}
input description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Temperature Offset", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
}
tiles(scale: 2) {
@@ -147,6 +137,10 @@ private boolean shouldProcessMessage(cluster) {
return !ignoredMessage
}
private int getHumidity(value) {
return Math.round(Double.parseDouble(value))
}
private Map parseReportAttributeMessage(String description) {
Map descMap = (description - "read attr - ").split(",").inject([:]) { map, param ->
def nameAndValue = param.split(":")
@@ -232,30 +226,29 @@ def getTemperature(value) {
private Map getBatteryResult(rawValue) {
log.debug 'Battery'
def linkText = getLinkText(device)
log.debug rawValue
def result = [
name: 'battery',
value: '--'
]
log.debug rawValue
def result = [
name: 'battery',
value: '--'
]
def volts = rawValue / 10
def descriptionText
if (rawValue == 0) {}
else {
if (volts > 3.5) {
result.descriptionText = "${linkText} battery has too much power (${volts} volts)."
}
else if (volts > 0){
def minVolts = 2.1
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
result.value = Math.min(100, (int) pct * 100)
result.descriptionText = "${linkText} battery was ${result.value}%"
}
if (rawValue == 0) {}
else {
if (volts > 3.5) {
result.descriptionText = "${linkText} battery has too much power (${volts} volts)."
}
else if (volts > 0){
def minVolts = 2.1
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
result.value = Math.min(100, (int) pct * 100)
result.descriptionText = "${linkText} battery was ${result.value}%"
}}
return result
}
@@ -287,52 +280,53 @@ private Map getMotionResult(value) {
]
}
def refresh() {
def refresh()
{
log.debug "refresh called"
def refreshCmds = [
[
"st rattr 0x${device.deviceNetworkId} 1 0x402 0", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 1 0x20", "delay 200"
"st rattr 0x${device.deviceNetworkId} 1 1 0x20"
]
return refreshCmds + enrollResponse()
}
def configure() {
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
log.debug "Configuring Reporting, IAS CIE, and Bindings."
String zigbeeId = swapEndianHex(device.hub.zigbeeId)
log.debug "Confuguring Reporting, IAS CIE, and Bindings."
def configCmds = [
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} 1 ${endpointId} 0x402 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 0x402 0 0x29 300 3600 {6400}",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 1500",
"zdo bind 0x${device.deviceNetworkId} 1 ${endpointId} 0x20 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 1 0x20 0x20 300 3600 {01}",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 1500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 1 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 1 0x20 0x20 30 21600 {01}", //checkin time 6 hrs
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 0x402 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 0x402 0 0x29 300 3600 {6400}",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500"
]
return configCmds + refresh() // send refresh cmds as part of config
}
def enrollResponse() {
log.debug "Sending enroll response"
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
[
//Resending the CIE in case the enroll request is sent before CIE is written
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
//Enroll Response
"raw 0x500 {01 23 00 00 00}",
"send 0x${device.deviceNetworkId} 1 1", "delay 200"
"zdo bind 0x${device.deviceNetworkId} 1 ${endpointId} 0x001 {${device.zigbeeId}} {}", "delay 200",
"zcl global write 0x500 0x10 0xf0 {${zigbeeId}}",
"send 0x${device.deviceNetworkId} 1 ${endpointId}"
]
return configCmds + enrollResponse() + refresh() // send refresh cmds as part of config
}
private getEndpointId() {
new BigInteger(device.endpointId, 16).toString()
}
def enrollResponse() {
log.debug "Sending enroll response"
[
"raw 0x500 {01 23 00 00 00}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}"
]
}
private hex(value) {
new BigInteger(Math.round(value).toString()).toString(16)
}
@@ -353,4 +347,4 @@ private byte[] reverseArray(byte[] array) {
i++;
}
return array
}
}

View File

@@ -21,7 +21,6 @@ metadata {
capability "Battery"
capability "Temperature Measurement"
capability "Refresh"
capability "Sensor"
command "enrollResponse"
@@ -37,8 +36,8 @@ metadata {
}
preferences {
input title: "Temperature Offset", description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Degrees", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
input description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Temperature Offset", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
}
tiles(scale: 2) {
@@ -137,6 +136,10 @@ private boolean shouldProcessMessage(cluster) {
return !ignoredMessage
}
private int getHumidity(value) {
return Math.round(Double.parseDouble(value))
}
private Map parseReportAttributeMessage(String description) {
Map descMap = (description - "read attr - ").split(",").inject([:]) { map, param ->
def nameAndValue = param.split(":")
@@ -222,29 +225,22 @@ def getTemperature(value) {
private Map getBatteryResult(rawValue) {
log.debug 'Battery'
def linkText = getLinkText(device)
log.debug rawValue
def result = [
name: 'battery',
value: '--'
]
def result = [
name: 'battery'
]
def volts = rawValue / 10
def descriptionText
if (rawValue == 0) {}
if (volts > 3.5) {
result.descriptionText = "${linkText} battery has too much power (${volts} volts)."
}
else {
if (volts > 3.5) {
result.descriptionText = "${linkText} battery has too much power (${volts} volts)."
}
else if (volts > 0){
def minVolts = 2.1
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
result.value = Math.min(100, (int) pct * 100)
result.descriptionText = "${linkText} battery was ${result.value}%"
}
def minVolts = 2.1
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
result.value = Math.min(100, (int) pct * 100)
result.descriptionText = "${linkText} battery was ${result.value}%"
}
return result
@@ -277,52 +273,50 @@ private Map getMotionResult(value) {
]
}
def refresh() {
def refresh()
{
log.debug "refresh called"
def refreshCmds = [
[
"st rattr 0x${device.deviceNetworkId} 1 0x402 0", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 1 0x20", "delay 200"
"st rattr 0x${device.deviceNetworkId} 1 1 0x20"
]
return refreshCmds + enrollResponse()
}
def configure() {
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
log.debug "Configuring Reporting, IAS CIE, and Bindings."
String zigbeeId = swapEndianHex(device.hub.zigbeeId)
log.debug "Confuguring Reporting, IAS CIE, and Bindings."
def configCmds = [
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 1 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 1 0x20 0x20 30 21600 {01}", //checkin time 6 hrs
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 0x402 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 0x402 0 0x29 30 3600 {6400}",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500"
"zcl global write 0x500 0x10 0xf0 {${zigbeeId}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zcl global send-me-a-report 1 0x20 0x20 300 3600 {01}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zcl global send-me-a-report 0x402 0 0x29 300 3600 {6400}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zdo bind 0x${device.deviceNetworkId} 1 1 0x402 {${device.zigbeeId}} {}", "delay 200",
"zdo bind 0x${device.deviceNetworkId} 1 1 0x001 {${device.zigbeeId}} {}", "delay 1500",
"raw 0x500 {01 23 00 00 00}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
]
return configCmds + refresh() // send refresh cmds as part of config
}
def enrollResponse() {
log.debug "Sending enroll response"
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
[
//Resending the CIE in case the enroll request is sent before CIE is written
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
//Enroll Response
"raw 0x500 {01 23 00 00 00}",
"send 0x${device.deviceNetworkId} 1 1", "delay 200"
[
"raw 0x500 {01 23 00 00 00}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1"
]
}
private getEndpointId() {
new BigInteger(device.endpointId, 16).toString()
}
private hex(value) {
new BigInteger(Math.round(value).toString()).toString(16)
}

View File

@@ -29,10 +29,8 @@
command "enrollResponse"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05,FC02", outClusters: "0019", manufacturer: "CentraLite", model: "3320"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05,FC02", outClusters: "0019", manufacturer: "CentraLite", model: "3321"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05,FC02", outClusters: "0019", manufacturer: "CentraLite", model: "3321-S", deviceJoinName: "Multipurpose Sensor"
fingerprint inClusters: "0000,0001,0003,000F,0020,0402,0500,FC02", outClusters: "0019", manufacturer: "SmartThings", model: "multiv4", deviceJoinName: "Multipurpose Sensor"
attribute "status", "string"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05,FC02", outClusters: "0019", manufacturer: "CentraLite", model: "3321-S"
}
simulator {
@@ -53,36 +51,18 @@
status "x,y,z: 0,0,1000": "x: 0, y: 0, z: 1000"
}
preferences {
section {
image(name: 'educationalcontent', multiple: true, images: [
"http://cdn.device-gse.smartthings.com/Multi/Multi1.jpg",
"http://cdn.device-gse.smartthings.com/Multi/Multi2.jpg",
"http://cdn.device-gse.smartthings.com/Multi/Multi3.jpg",
"http://cdn.device-gse.smartthings.com/Multi/Multi4.jpg"
])
}
section {
input title: "Temperature Offset", description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Degrees", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
}
section {
input("garageSensor", "enum", title: "Do you want to use this sensor on a garage door?", options: ["Yes", "No"], defaultValue: "No", required: false, displayDuringSetup: false)
}
input description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Temperature Offset", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
}
tiles(scale: 2) {
multiAttributeTile(name:"status", type: "generic", width: 6, height: 4){
tileAttribute ("device.status", key: "PRIMARY_CONTROL") {
multiAttributeTile(name:"contact", type: "generic", width: 6, height: 4){
tileAttribute ("device.contact", key: "PRIMARY_CONTROL") {
attributeState "open", label:'${name}', icon:"st.contact.contact.open", backgroundColor:"#ffa81e"
attributeState "closed", label:'${name}', icon:"st.contact.contact.closed", backgroundColor:"#79b821"
attributeState "garage-open", label:'Open', icon:"st.doors.garage.garage-open", backgroundColor:"#ffa81e"
attributeState "garage-closed", label:'Closed', icon:"st.doors.garage.garage-closed", backgroundColor:"#79b821"
}
}
standardTile("contact", "device.contact", width: 2, height: 2) {
state("open", label:'${name}', icon:"st.contact.contact.open", backgroundColor:"#ffa81e")
state("closed", label:'${name}', icon:"st.contact.contact.closed", backgroundColor:"#79b821")
}
standardTile("acceleration", "device.acceleration", width: 2, height: 2) {
state("active", label:'${name}', icon:"st.motion.acceleration.active", backgroundColor:"#53a7c0")
state("inactive", label:'${name}', icon:"st.motion.acceleration.inactive", backgroundColor:"#ffffff")
@@ -110,36 +90,36 @@
state "default", action:"refresh.refresh", icon:"st.secondary.refresh"
}
main(["status", "acceleration", "temperature"])
details(["status", "acceleration", "temperature", "3axis", "battery", "refresh"])
main(["contact", "acceleration", "temperature"])
details(["contact", "acceleration", "temperature", "3axis", "battery", "refresh"])
}
}
def parse(String description) {
Map map = [:]
if (description?.startsWith('catchall:')) {
map = parseCatchAllMessage(description)
}
def parse(String description) {
Map map = [:]
if (description?.startsWith('catchall:')) {
map = parseCatchAllMessage(description)
}
else if (description?.startsWith('read attr -')) {
map = parseReportAttributeMessage(description)
}
else if (description?.startsWith('temperature: ')) {
map = parseCustomMessage(description)
}
else if (description?.startsWith('zone status')) {
map = parseIasMessage(description)
}
map = parseCustomMessage(description)
}
else if (description?.startsWith('zone status')) {
map = parseIasMessage(description)
}
def result = map ? createEvent(map) : null
if (description?.startsWith('enroll request')) {
List cmds = enrollResponse()
log.debug "enroll response: ${cmds}"
result = cmds?.collect { new physicalgraph.device.HubAction(it) }
}
else if (description?.startsWith('read attr -')) {
result = parseReportAttributeMessage(description).each { createEvent(it) }
}
return result
}
if (description?.startsWith('enroll request')) {
List cmds = enrollResponse()
log.debug "enroll response: ${cmds}"
result = cmds?.collect { new physicalgraph.device.HubAction(it) }
}
return result
}
private Map parseCatchAllMessage(String description) {
Map resultMap = [:]
@@ -178,40 +158,32 @@ private boolean shouldProcessMessage(cluster) {
return !ignoredMessage
}
private List parseReportAttributeMessage(String description) {
private int getHumidity(value) {
return Math.round(Double.parseDouble(value))
}
private Map parseReportAttributeMessage(String description) {
Map descMap = (description - "read attr - ").split(",").inject([:]) { map, param ->
def nameAndValue = param.split(":")
map += [(nameAndValue[0].trim()):nameAndValue[1].trim()]
}
List result = []
Map resultMap = [:]
if (descMap.cluster == "0402" && descMap.attrId == "0000") {
def value = getTemperature(descMap.value)
result << getTemperatureResult(value)
resultMap = getTemperatureResult(value)
}
else if (descMap.cluster == "FC02" && descMap.attrId == "0010") {
if (descMap.value.size() == 32) {
// value will look like 00ae29001403e2290013001629001201
// breaking this apart and swapping byte order where appropriate, this breaks down to:
// X (0x0012) = 0x0016
// Y (0x0013) = 0x03E2
// Z (0x0014) = 0x00AE
// note that there is a known bug in that the x,y,z attributes are interpreted in the wrong order
// this will be fixed in a future update
def threeAxisAttributes = descMap.value[0..-9]
result << parseAxis(threeAxisAttributes)
descMap.value = descMap.value[-2..-1]
}
result << getAccelerationResult(descMap.value)
resultMap = getAccelerationResult(descMap.value)
}
else if (descMap.cluster == "FC02" && descMap.attrId == "0012") {
result << parseAxis(descMap.value)
else if (descMap.cluster == "FC02" && descMap.attrId == "0012") {
resultMap = parseAxis(descMap.value)
}
else if (descMap.cluster == "0001" && descMap.attrId == "0020") {
result << getBatteryResult(Integer.parseInt(descMap.value, 16))
resultMap = getBatteryResult(Integer.parseInt(descMap.value, 16))
}
return result
return resultMap
}
private Map parseCustomMessage(String description) {
@@ -230,15 +202,11 @@ private Map parseIasMessage(String description) {
Map resultMap = [:]
switch(msgCode) {
case '0x0020': // Closed/No Motion/Dry
if (garageSensor != "Yes"){
resultMap = getContactResult('closed')
}
resultMap = getContactResult('closed')
break
case '0x0021': // Open/Motion/Wet
if (garageSensor != "Yes"){
resultMap = getContactResult('open')
}
resultMap = getContactResult('open')
break
case '0x0022': // Tamper Alarm
@@ -248,15 +216,11 @@ private Map parseIasMessage(String description) {
break
case '0x0024': // Supervision Report
if (garageSensor != "Yes"){
resultMap = getContactResult('closed')
}
resultMap = getContactResult('closed')
break
case '0x0025': // Restore Report
if (garageSensor != "Yes"){
resultMap = getContactResult('open')
}
resultMap = getContactResult('open')
break
case '0x0026': // Trouble/Failure
@@ -268,29 +232,6 @@ private Map parseIasMessage(String description) {
return resultMap
}
def updated() {
log.debug "updated called"
log.info "garage value : $garageSensor"
if (garageSensor == "Yes") {
def descriptionText = "Updating device to garage sensor"
if (device.latestValue("status") == "open") {
sendEvent(name: 'status', value: 'garage-open', descriptionText: descriptionText)
}
else if (device.latestValue("status") == "closed") {
sendEvent(name: 'status', value: 'garage-closed', descriptionText: descriptionText)
}
}
else {
def descriptionText = "Updating device to open/close sensor"
if (device.latestValue("status") == "garage-open") {
sendEvent(name: 'status', value: 'open', descriptionText: descriptionText)
}
else if (device.latestValue("status") == "garage-closed") {
sendEvent(name: 'status', value: 'closed', descriptionText: descriptionText)
}
}
}
def getTemperature(value) {
def celsius = Integer.parseInt(value, 16).shortValue() / 100
if(getTemperatureScale() == "C"){
@@ -350,16 +291,19 @@ def getTemperature(value) {
log.debug "Contact"
def linkText = getLinkText(device)
def descriptionText = "${linkText} was ${value == 'open' ? 'opened' : 'closed'}"
sendEvent(name: 'contact', value: value, descriptionText: descriptionText, displayed:false)
sendEvent(name: 'status', value: value, descriptionText: descriptionText)
return [
name: 'contact',
value: value,
descriptionText: descriptionText
]
}
private getAccelerationResult(numValue) {
log.debug "Acceleration"
def name = "acceleration"
def value = numValue.endsWith("1") ? "active" : "inactive"
def linkText = getLinkText(device)
def descriptionText = "$linkText was $value"
//def linkText = getLinkText(device)
def descriptionText = "was $value"
def isStateChange = isStateChange(device, name, value)
[
name: name,
@@ -369,60 +313,77 @@ def getTemperature(value) {
]
}
def refresh() {
def refresh()
{
log.debug "Refreshing Values "
def refreshCmds = [
[
/* sensitivity - default value (8) */
"zcl mfg-code ${manufacturerCode}", "delay 200",
"zcl mfg-code 0x104E", "delay 200",
"zcl global write 0xFC02 0 0x20 {02}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 400",
"zcl mfg-code 0x104E", "delay 200",
"zcl global read 0xFC02 0x0000", "delay 200",
"send 0x${device.deviceNetworkId} 1 1","delay 400",
"st rattr 0x${device.deviceNetworkId} 1 0x402 0", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 1 0x20", "delay 200",
"zcl mfg-code ${manufacturerCode}", "delay 200",
"zcl global read 0xFC02 0x0010",
"send 0x${device.deviceNetworkId} 1 1","delay 400"
]
"zcl mfg-code 0x104E", "delay 200",
"zcl global read 0xFC02 0x0010", "delay 100",
"send 0x${device.deviceNetworkId} 1 1","delay 400",
"zcl mfg-code 0x104E", "delay 200",
"zcl global read 0xFC02 0x0012", "delay 100",
"send 0x${device.deviceNetworkId} 1 1","delay 400",
"zcl mfg-code 0x104E", "delay 200",
"zcl global read 0xFC02 0x0013", "delay 100",
"send 0x${device.deviceNetworkId} 1 1","delay 400",
"zcl mfg-code 0x104E", "delay 200",
"zcl global read 0xFC02 0x0014", "delay 100",
"send 0x${device.deviceNetworkId} 1 1"
return refreshCmds + enrollResponse()
]
}
def configure() {
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
String zigbeeId = swapEndianHex(device.hub.zigbeeId)
log.debug "Configuring Reporting"
def configCmds = [
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
def configCmds = [
"zdo bind 0x${device.deviceNetworkId} 1 ${endpointId} 1 {${device.zigbeeId}} {}", "delay 200",
"zcl global write 0x500 0x10 0xf0 {${zigbeeId}}",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 1 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 1 0x20 0x20 30 21600 {01}", //checkin time 6 hrs
"zdo bind 0x${device.deviceNetworkId} 1 ${endpointId} 0x20 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 1 0x20 0x20 600 3600 {01}",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 0x402 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 0x402 0 0x29 30 3600 {6400}",
"zdo bind 0x${device.deviceNetworkId} 1 ${endpointId} 0x402 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 0x402 0 0x29 300 3600 {6400}",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 0xFC02 {${device.zigbeeId}} {}", "delay 200",
"zcl mfg-code ${manufacturerCode}",
"zcl global send-me-a-report 0xFC02 0x0010 0x18 10 3600 {01}",
"zdo bind 0x${device.deviceNetworkId} 1 ${endpointId} 0xFC02 {${device.zigbeeId}} {}", "delay 200",
"zcl mfg-code 0x104E",
"zcl global send-me-a-report 0xFC02 0x0010 0x18 300 3600 {01}",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zcl mfg-code ${manufacturerCode}",
"zcl global send-me-a-report 0xFC02 0x0012 0x29 1 3600 {01}",
"zcl mfg-code 0x104E",
"zcl global send-me-a-report 0xFC02 0x0012 0x29 300 3600 {01}",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zcl mfg-code ${manufacturerCode}",
"zcl global send-me-a-report 0xFC02 0x0013 0x29 1 3600 {01}",
"zcl mfg-code 0x104E",
"zcl global send-me-a-report 0xFC02 0x0013 0x29 300 3600 {01}",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zcl mfg-code ${manufacturerCode}",
"zcl global send-me-a-report 0xFC02 0x0014 0x29 1 3600 {01}",
"zcl mfg-code 0x104E",
"zcl global send-me-a-report 0xFC02 0x0014 0x29 300 3600 {01}",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500"
]
@@ -436,14 +397,11 @@ private getEndpointId() {
def enrollResponse() {
log.debug "Sending enroll response"
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
[
//Resending the CIE in case the enroll request is sent before CIE is written
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
//Enroll Response
"raw 0x500 {01 23 00 00 00}",
"send 0x${device.deviceNetworkId} 1 1", "delay 200"
"raw 0x500 {01 23 00 00 00}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1"
]
}
@@ -472,33 +430,13 @@ private Map parseAxis(String description) {
def signedZ = unsignedZ > 32767 ? unsignedZ - 65536 : unsignedZ
xyzResults.z = signedZ
log.debug "Z Part: ${signedZ}"
if (garageSensor == "Yes")
garageEvent(signedZ)
}
}
getXyzResult(xyzResults, description)
}
def garageEvent(zValue) {
def absValue = zValue.abs()
def contactValue = null
def garageValue = null
if (absValue>900) {
contactValue = 'closed'
garageValue = 'garage-closed'
}
else if (absValue < 100) {
contactValue = 'open'
garageValue = 'garage-open'
}
if (contactValue != null){
def linkText = getLinkText(device)
def descriptionText = "${linkText} was ${contactValue == 'open' ? 'opened' : 'closed'}"
sendEvent(name: 'contact', value: contactValue, descriptionText: descriptionText, displayed:false)
sendEvent(name: 'status', value: garageValue, descriptionText: descriptionText)
}
}
private Map getXyzResult(results, description) {
def name = "threeAxis"
@@ -519,14 +457,6 @@ private Map getXyzResult(results, description) {
]
}
private getManufacturerCode() {
if (device.getDataValue("manufacturer") == "SmartThings") {
return "0x110A"
} else {
return "0x104E"
}
}
private hexToInt(value) {
new BigInteger(value, 16)
}

View File

@@ -43,8 +43,8 @@ metadata {
}
preferences {
input title: "Temperature Offset", description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Degrees", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
input description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Temperature Offset", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
}
tiles(scale: 2) {

View File

@@ -32,8 +32,8 @@
}
preferences {
input title: "Temperature Offset", description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Degrees", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
input description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Temperature Offset", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
}
tiles(scale: 2) {
@@ -284,59 +284,52 @@ def getTemperature(value) {
]
}
def refresh() {
def refresh()
{
log.debug "Refreshing Temperature and Battery "
def refreshCmds = [
[
"st rattr 0x${device.deviceNetworkId} 1 0x402 0", "delay 200",
//"st rattr 0x${device.deviceNetworkId} 1 0xFC02 2", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 1 0x20", "delay 200"
"st rattr 0x${device.deviceNetworkId} 1 1 0x20"
]
return refreshCmds + enrollResponse()
}
def configure() {
def configure() {
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
log.debug "Configuring Reporting, IAS CIE, and Bindings."
def configCmds = [
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
String zigbeeId = swapEndianHex(device.hub.zigbeeId)
log.debug "Confuguring Reporting, IAS CIE, and Bindings."
def configCmds = [
"zcl global write 0x500 0x10 0xf0 {${zigbeeId}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 1 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 1 0x20 0x20 30 21600 {01}", //checkin time 6 hrs
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zcl global send-me-a-report 1 0x20 0x20 600 3600 {01}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 0x402 {${device.zigbeeId}} {}", "delay 500",
"zcl global send-me-a-report 0x402 0 0x29 30 3600 {6400}",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zcl global send-me-a-report 0x402 0 0x29 300 3600 {6400}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 0xFC02 {${device.zigbeeId}} {}", "delay 500",
"zcl global send-me-a-report 0xFC02 2 0x18 30 3600 {01}",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500"
]
return configCmds + refresh() // send refresh cmds as part of config
"zcl global send-me-a-report 0xFC02 2 0x18 300 3600 {01}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zdo bind 0x${device.deviceNetworkId} 1 1 0xFC02 {${device.zigbeeId}} {}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} 1 1 0x402 {${device.zigbeeId}} {}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} 1 1 1 {${device.zigbeeId}} {}"
]
return configCmds + refresh() // send refresh cmds as part of config
}
def enrollResponse() {
log.debug "Sending enroll response"
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
[
//Resending the CIE in case the enroll request is sent before CIE is written
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
//Enroll Response
"raw 0x500 {01 23 00 00 00}",
"send 0x${device.deviceNetworkId} 1 1", "delay 200"
"raw 0x500 {01 23 00 00 00}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1"
]
}
private getEndpointId() {
new BigInteger(device.endpointId, 16).toString()
}
private hex(value) {
new BigInteger(Math.round(value).toString()).toString(16)
}

View File

@@ -34,8 +34,8 @@ metadata {
}
preferences {
input title: "Temperature Offset", description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Degrees", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
input description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Temperature Offset", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
}
tiles(scale: 2) {
@@ -260,52 +260,51 @@ private Map getContactResult(value) {
]
}
def refresh() {
def refresh()
{
log.debug "Refreshing Temperature and Battery"
def refreshCmds = [
[
"st rattr 0x${device.deviceNetworkId} 1 0x402 0", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 1 0x20", "delay 200"
]
"st rattr 0x${device.deviceNetworkId} 1 1 0x20"
return refreshCmds + enrollResponse()
]
}
def configure() {
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
log.debug "Configuring Reporting, IAS CIE, and Bindings."
String zigbeeId = swapEndianHex(device.hub.zigbeeId)
log.debug "Confuguring Reporting, IAS CIE, and Bindings."
def configCmds = [
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 1 {${device.zigbeeId}} {}", "delay 500",
"zcl global send-me-a-report 1 0x20 0x20 30 21600 {01}", //checkin time 6 hrs
"send 0x${device.deviceNetworkId} 1 1", "delay 500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 0x402 {${device.zigbeeId}} {}", "delay 500",
"zcl global send-me-a-report 0x402 0 0x29 30 3600 {6400}",
"send 0x${device.deviceNetworkId} 1 1", "delay 500"
"zcl global write 0x500 0x10 0xf0 {${zigbeeId}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zcl global send-me-a-report 1 0x20 0x20 600 3600 {01}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zcl global send-me-a-report 0x402 0 0x29 300 3600 {6400}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
//"raw 0x500 {01 23 00 00 00}", "delay 200",
//"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zdo bind 0x${device.deviceNetworkId} 1 1 0x402 {${device.zigbeeId}} {}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} 1 1 1 {${device.zigbeeId}} {}"
]
return configCmds + refresh() // send refresh cmds as part of config
}
def enrollResponse() {
log.debug "Sending enroll response"
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
[
//Resending the CIE in case the enroll request is sent before CIE is written
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
//Enroll Response
"raw 0x500 {01 23 00 00 00}",
"send 0x${device.deviceNetworkId} 1 1", "delay 200"
]
[
"raw 0x500 {01 23 00 00 00}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1"
]
}
private getEndpointId() {
new BigInteger(device.endpointId, 16).toString()
}
private hex(value) {
new BigInteger(Math.round(value).toString()).toString(16)
}

View File

@@ -12,7 +12,7 @@
*
*/
metadata {
definition (name: "Arrival Sensor", namespace: "smartthings", author: "SmartThings") {
definition (name: "SmartSense Presence", namespace: "smartthings", author: "SmartThings") {
capability "Tone"
capability "Actuator"
capability "Signal Strength"
@@ -31,19 +31,10 @@ metadata {
status "battery": "battery: 27, batteryDivisor: 0A, rssi: 100, lqi: 64"
}
preferences {
section {
image(name: 'educationalcontent', multiple: true, images: [
"http://cdn.device-gse.smartthings.com/Arrival/Arrival1.jpg",
"http://cdn.device-gse.smartthings.com/Arrival/Arrival2.jpg"
])
}
}
tiles {
standardTile("presence", "device.presence", width: 2, height: 2, canChangeBackground: true) {
state "present", labelIcon:"st.presence.tile.present", backgroundColor:"#53a7c0"
state "not present", labelIcon:"st.presence.tile.not-present", backgroundColor:"#ebeef2"
state "not present", labelIcon:"st.presence.tile.not-present", backgroundColor:"#ffffff"
}
standardTile("beep", "device.beep", decoration: "flat") {
state "beep", label:'', action:"tone.beep", icon:"st.secondary.beep", backgroundColor:"#ffffff"

View File

@@ -33,8 +33,8 @@ metadata {
}
preferences {
input title: "Temperature Offset", description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Degrees", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
input description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Temperature Offset", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
}
tiles(scale: 2) {
@@ -251,21 +251,25 @@ def refresh()
def configure() {
log.debug "Configuring Reporting and Bindings."
String zigbeeId = swapEndianHex(device.hub.zigbeeId)
log.debug "Confuguring Reporting and Bindings."
def configCmds = [
"zdo bind 0x${device.deviceNetworkId} 1 1 1 {${device.zigbeeId}} {}", "delay 500",
"zcl global send-me-a-report 1 0x20 0x20 30 21600 {01}", //checkin time 6 hrs
"send 0x${device.deviceNetworkId} 1 1", "delay 500",
"zcl global send-me-a-report 1 0x20 0x20 600 3600 {0100}", "delay 500",
"send 0x${device.deviceNetworkId} 1 1", "delay 1000",
"zcl global send-me-a-report 0x402 0 0x29 300 3600 {6400}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zcl global send-me-a-report 0xFC45 0 0x29 300 3600 {6400}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zdo bind 0x${device.deviceNetworkId} 1 1 0xFC45 {${device.zigbeeId}} {}", "delay 1000",
"zdo bind 0x${device.deviceNetworkId} 1 1 0x402 {${device.zigbeeId}} {}", "delay 500",
"zcl global send-me-a-report 0x402 0 0x29 30 3600 {6400}",
"send 0x${device.deviceNetworkId} 1 1", "delay 500",
"zdo bind 0x${device.deviceNetworkId} 1 1 0xFC45 {${device.zigbeeId}} {}", "delay 500",
"zcl global send-me-a-report 0xFC45 0 0x29 30 3600 {6400}",
"send 0x${device.deviceNetworkId} 1 1", "delay 500"
"zdo bind 0x${device.deviceNetworkId} 1 1 1 {${device.zigbeeId}} {}"
]
return configCmds + refresh() // send refresh cmds as part of config
return configCmds + refresh() // send refresh cmds as part of config
}
private hex(value) {

View File

@@ -45,8 +45,8 @@ metadata {
}
preferences {
input title: "Temperature Offset", description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Degrees", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
input description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Temperature Offset", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
}
tiles {

View File

@@ -21,7 +21,6 @@ metadata {
capability "Illuminance Measurement"
capability "Temperature Measurement"
capability "Relative Humidity Measurement"
capability "Sensor"
attribute "localSunrise", "string"
attribute "localSunset", "string"

View File

@@ -11,9 +11,6 @@
* for the specific language governing permissions and limitations under the License.
*
*/
//DEPRECATED - Using the generic DTH for this device. Users need to be moved before deleting this DTH
metadata {
definition (name: "Sylvania Ultra iQ", namespace:"smartthings", author: "SmartThings") {
capability "Switch Level"

View File

@@ -1,5 +1,5 @@
metadata {
definition (name: "Simulated Color Control", namespace: "smartthings/testing", author: "SmartThings") {
definition (name: "Color Control Capability", namespace: "capabilities", author: "SmartThings") {
capability "Color Control"
}

View File

@@ -1,119 +0,0 @@
/**
* Copyright 2015 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.
*
*/
metadata {
definition (name: "Simulated Media Player", namespace: "smartthings/testing", author: "SmartThings") {
capability "Actuator"
capability "Switch"
capability "Refresh"
capability "Sensor"
capability "Music Player"
}
tiles(scale: 2) {
multiAttributeTile(name: "mediaMulti", type:"mediaPlayer", width:6, height:4) {
tileAttribute("device.status", key: "PRIMARY_CONTROL") {
attributeState("paused", label:"Paused",)
attributeState("playing", label:"Playing")
attributeState("stopped", label:"Stopped")
}
tileAttribute("device.status", key: "MEDIA_STATUS") {
attributeState("paused", label:"Paused", action:"music Player.play", nextState: "playing")
attributeState("playing", label:"Playing", action:"music Player.pause", nextState: "paused")
attributeState("stopped", label:"Stopped", action:"music Player.play", nextState: "playing")
}
tileAttribute("device.status", key: "PREVIOUS_TRACK") {
attributeState("default", action:"music Player.previousTrack")
}
tileAttribute("device.status", key: "NEXT_TRACK") {
attributeState("default", action:"music Player.nextTrack")
}
tileAttribute ("device.level", key: "SLIDER_CONTROL") {
attributeState("level", action:"music Player.setLevel")
}
tileAttribute ("device.mute", key: "MEDIA_MUTED") {
attributeState("unmuted", action:"music Player.mute", nextState: "muted")
attributeState("muted", action:"music Player.unmute", nextState: "unmuted")
}
tileAttribute("device.trackDescription", key: "MARQUEE") {
attributeState("default", label:"${currentValue}")
}
}
main "mediaMulti"
details(["mediaMulti"])
}
}
def installed() {
state.tracks = [
"Gangnam Style (강남스타일)\nPSY\nPsy 6 (Six Rules), Part 1",
"Careless Whisper\nWham!\nMake It Big",
"Never Gonna Give You Up\nRick Astley\nWhenever You Need Somebody",
"Shake It Off\nTaylor Swift\n1989",
"Ironic\nAlanis Morissette\nJagged Little Pill",
"Hotline Bling\nDrake\nHotline Bling - Single"
]
state.currentTrack = 0
sendEvent(name: "level", value: 72)
sendEvent(name: "mute", value: "unmuted")
sendEvent(name: "status", value: "stopped")
}
def parse(description) {
// No parsing will happen with this simulated device.
}
def play() {
sendEvent(name: "status", value: "playing")
sendEvent(name: "trackDescription", value: state.tracks[state.currentTrack])
}
def pause() {
sendEvent(name: "status", value: "paused")
sendEvent(name: "trackDescription", value: state.tracks[state.currentTrack])
}
def stop() {
sendEvent(name: "status", value: "stopped")
}
def previousTrack() {
state.currentTrack = state.currentTrack - 1
if (state.currentTrack < 0)
state.currentTrack = state.tracks.size()-1
sendEvent(name: "trackDescription", value: state.tracks[state.currentTrack])
}
def nextTrack() {
state.currentTrack = state.currentTrack + 1
if (state.currentTrack == state.tracks.size())
state.currentTrack = 0
sendEvent(name: "trackDescription", value: state.tracks[state.currentTrack])
}
def mute() {
sendEvent(name: "mute", value: "muted")
}
def unmute() {
sendEvent(name: "mute", value: "unmuted")
}
def setLevel(level) {
sendEvent(name: "level", value: level)
}

View File

@@ -33,8 +33,8 @@ metadata {
}
preferences {
input title: "Temperature Offset", description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Degrees", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
input description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Temperature Offset", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
}
tiles {
@@ -270,12 +270,12 @@ def refresh()
def configure() {
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
log.debug "Configuring Reporting, IAS CIE, and Bindings."
String zigbeeId = swapEndianHex(device.hub.zigbeeId)
log.debug "Confuguring Reporting, IAS CIE, and Bindings."
def configCmds = [
"delay 1000",
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"zcl global write 0x500 0x10 0xf0 {${zigbeeId}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zcl global send-me-a-report 1 0x20 0x20 600 3600 {01}", "delay 200",

View File

@@ -33,14 +33,14 @@ metadata {
state "power", label: '${currentValue} W'
}
htmlTile(name: "powerContent", attribute: "powerContent", type: "HTML", whitelist: "www.wattvision.com" , url: '${currentValue}', width: 3, height: 2)
tile(name: "powerChart", attribute: "powerContent", type: "HTML", url: '${currentValue}', width: 3, height: 2) { }
standardTile("refresh", "device.power", inactiveLabel: false, decoration: "flat") {
state "default", label: '', action: "refresh.refresh", icon: "st.secondary.refresh"
}
main "power"
details(["powerContent", "power", "refresh"])
details(["powerChart", "power", "refresh"])
}
}
@@ -74,10 +74,10 @@ public addWattvisionData(json) {
log.trace "Adding data from Wattvision"
def data = parseJson(json.data.toString())
def data = json.data
def units = json.units ?: "watts"
if (data.size() > 0) {
if (data) {
def latestData = data[-1]
data.each {
sendPowerEvent(it.t, it.v, units, (latestData == it))
@@ -103,7 +103,3 @@ private sendPowerEvent(time, value, units, isLatest = false) {
sendEvent(eventData)
}
def parseJson(String s) {
new groovy.json.JsonSlurper().parseText(s)
}

View File

@@ -15,8 +15,6 @@
* Thanks to Chad Monroe @cmonroe and Patrick Stuart @pstuart
*
*/
//DEPRECATED - Using the generic DTH for this device. Users need to be moved before deleting this DTH
metadata {
definition (name: "WeMo Bulb", namespace: "smartthings", author: "SmartThings") {
@@ -27,6 +25,7 @@ metadata {
capability "Switch"
capability "Switch Level"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0008,FF00", outClusters: "0019"
}
// simulator metadata
@@ -135,7 +134,8 @@ def setLevel(value) {
def configure() {
log.debug "Configuring Reporting and Bindings."
String zigbeeId = swapEndianHex(device.hub.zigbeeId)
log.debug "Confuguring Reporting and Bindings."
def configCmds = [
//Switch Reporting

View File

@@ -25,8 +25,6 @@ metadata {
capability "Refresh"
capability "Sensor"
attribute "currentIP", "string"
command "subscribe"
command "resubscribe"
command "unsubscribe"
@@ -36,36 +34,21 @@ metadata {
// simulator metadata
simulator {}
// UI tile definitions
tiles(scale: 2) {
multiAttributeTile(name:"rich-control", type: "switch", canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "on", label:'${name}', action:"switch.off", icon:"st.Home.home30", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${name}', action:"switch.on", icon:"st.Home.home30", backgroundColor:"#ffffff", nextState:"turningOn"
attributeState "turningOn", label:'${name}', action:"switch.off", icon:"st.Home.home30", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "turningOff", label:'${name}', action:"switch.on", icon:"st.Home.home30", backgroundColor:"#ffffff", nextState:"turningOn"
attributeState "offline", label:'${name}', icon:"st.Home.home30", backgroundColor:"#ff0000"
}
tileAttribute ("currentIP", key: "SECONDARY_CONTROL") {
attributeState "currentIP", label: ''
}
}
// UI tile definitions
tiles {
standardTile("switch", "device.switch", width: 2, height: 2, canChangeIcon: true) {
state "on", label:'${name}', action:"switch.off", icon:"st.switches.switch.on", backgroundColor:"#79b821", nextState:"turningOff"
state "off", label:'${name}', action:"switch.on", icon:"st.switches.switch.off", backgroundColor:"#ffffff", nextState:"turningOn"
state "turningOn", label:'${name}', icon:"st.switches.switch.on", backgroundColor:"#79b821"
state "turningOff", label:'${name}', icon:"st.switches.switch.off", backgroundColor:"#ffffff"
}
standardTile("refresh", "device.switch", inactiveLabel: false, decoration: "flat") {
state "default", label:'', action:"refresh.refresh", icon:"st.secondary.refresh"
}
standardTile("switch", "device.switch", width: 2, height: 2, canChangeIcon: true) {
state "on", label:'${name}', action:"switch.off", icon:"st.Home.home30", backgroundColor:"#79b821", nextState:"turningOff"
state "off", label:'${name}', action:"switch.on", icon:"st.Home.home30", backgroundColor:"#ffffff", nextState:"turningOn"
state "turningOn", label:'${name}', action:"switch.off", icon:"st.Home.home30", backgroundColor:"#79b821", nextState:"turningOff"
state "turningOff", label:'${name}', action:"switch.on", icon:"st.Home.home30", backgroundColor:"#ffffff", nextState:"turningOn"
state "offline", label:'${name}', icon:"st.Home.home30", backgroundColor:"#ff0000"
}
standardTile("refresh", "device.switch", inactiveLabel: false, height: 2, width: 2, decoration: "flat") {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
main(["switch"])
details(["rich-control", "refresh"])
}
main "switch"
details (["switch", "refresh"])
}
}
// parse events into attributes
@@ -85,7 +68,6 @@ def parse(String description) {
def result = []
def bodyString = msg.body
if (bodyString) {
unschedule("setOffline")
def body = new XmlSlurper().parseText(bodyString)
if (body?.property?.TimeSyncRequest?.text()) {
@@ -96,14 +78,13 @@ def parse(String description) {
} else if (body?.property?.BinaryState?.text()) {
def value = body?.property?.BinaryState?.text().toInteger() == 1 ? "on" : "off"
log.trace "Notify: BinaryState = ${value}"
result << createEvent(name: "switch", value: value, descriptionText: "Switch is ${value}")
result << createEvent(name: "switch", value: value)
} else if (body?.property?.TimeZoneNotification?.text()) {
log.debug "Notify: TimeZoneNotification = ${body?.property?.TimeZoneNotification?.text()}"
} else if (body?.Body?.GetBinaryStateResponse?.BinaryState?.text()) {
def value = body?.Body?.GetBinaryStateResponse?.BinaryState?.text().toInteger() == 1 ? "on" : "off"
log.trace "GetBinaryResponse: BinaryState = ${value}"
def dispaux = device.currentValue("switch") != value
result << createEvent(name: "switch", value: value, descriptionText: "Switch is ${value}", displayed: dispaux)
result << createEvent(name: "switch", value: value)
}
}
@@ -120,6 +101,14 @@ private getCallBackAddress() {
device.hub.getDataValue("localIP") + ":" + device.hub.getDataValue("localSrvPortTCP")
}
private Integer convertHexToInt(hex) {
Integer.parseInt(hex,16)
}
private String convertHexToIP(hex) {
[convertHexToInt(hex[0..1]),convertHexToInt(hex[2..3]),convertHexToInt(hex[4..5]),convertHexToInt(hex[6..7])].join(".")
}
private getHostAddress() {
def ip = getDataValue("ip")
def port = getDataValue("port")
@@ -206,8 +195,6 @@ def subscribe(ip, port) {
if (ip && ip != existingIp) {
log.debug "Updating ip from $existingIp to $ip"
updateDataValue("ip", ip)
def ipvalue = convertHexToIP(getDataValue("ip"))
sendEvent(name: "currentIP", value: ipvalue, descriptionText: "IP changed to ${ipvalue}")
}
if (port && port != existingPort) {
log.debug "Updating port from $existingPort to $port"
@@ -272,8 +259,6 @@ User-Agent: CyberGarage-HTTP/1.0
def poll() {
log.debug "Executing 'poll'"
if (device.currentValue("currentIP") != "Offline")
runIn(10, setOffline)
new physicalgraph.device.HubAction("""POST /upnp/control/basicevent1 HTTP/1.1
SOAPACTION: "urn:Belkin:service:basicevent:1#GetBinaryState"
Content-Length: 277
@@ -289,15 +274,3 @@ User-Agent: CyberGarage-HTTP/1.0
</s:Body>
</s:Envelope>""", physicalgraph.device.Protocol.LAN)
}
def setOffline() {
sendEvent(name: "switch", value: "offline", descriptionText: "The device is offline")
}
private Integer convertHexToInt(hex) {
Integer.parseInt(hex,16)
}
private String convertHexToIP(hex) {
[convertHexToInt(hex[0..1]),convertHexToInt(hex[2..3]),convertHexToInt(hex[4..5]),convertHexToInt(hex[6..7])].join(".")
}

View File

@@ -21,8 +21,6 @@
capability "Refresh"
capability "Sensor"
attribute "currentIP", "string"
command "subscribe"
command "resubscribe"
command "unsubscribe"
@@ -33,30 +31,17 @@
}
// UI tile definitions
tiles(scale: 2) {
multiAttributeTile(name:"rich-control", type: "motion", canChangeIcon: true){
tileAttribute ("device.motion", key: "PRIMARY_CONTROL") {
attributeState "active", label:'motion', icon:"st.motion.motion.active", backgroundColor:"#53a7c0"
attributeState "inactive", label:'no motion', icon:"st.motion.motion.inactive", backgroundColor:"#ffffff"
attributeState "offline", label:'${name}', icon:"st.motion.motion.active", backgroundColor:"#ff0000"
}
tileAttribute ("currentIP", key: "SECONDARY_CONTROL") {
attributeState "currentIP", label: ''
}
}
tiles {
standardTile("motion", "device.motion", width: 2, height: 2) {
state("active", label:'motion', icon:"st.motion.motion.active", backgroundColor:"#53a7c0")
state("inactive", label:'no motion', icon:"st.motion.motion.inactive", backgroundColor:"#ffffff")
state("offline", label:'${name}', icon:"st.motion.motion.inactive", backgroundColor:"#ff0000")
}
standardTile("refresh", "device.motion", inactiveLabel: false, decoration: "flat") {
state "default", label:'', action:"refresh.refresh", icon:"st.secondary.refresh"
}
standardTile("refresh", "device.switch", inactiveLabel: false, height: 2, width: 2, decoration: "flat") {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
main "motion"
details (["rich-control", "refresh"])
details (["motion", "refresh"])
}
}
@@ -77,7 +62,6 @@ def parse(String description) {
def result = []
def bodyString = msg.body
if (bodyString) {
unschedule("setOffline")
def body = new XmlSlurper().parseText(bodyString)
if (body?.property?.TimeSyncRequest?.text()) {
@@ -88,7 +72,7 @@ def parse(String description) {
} else if (body?.property?.BinaryState?.text()) {
def value = body?.property?.BinaryState?.text().toInteger() == 1 ? "active" : "inactive"
log.debug "Notify - BinaryState = ${value}"
result << createEvent(name: "motion", value: value, descriptionText: "Motion is ${value}")
result << createEvent(name: "motion", value: value)
} else if (body?.property?.TimeZoneNotification?.text()) {
log.debug "Notify: TimeZoneNotification = ${body?.property?.TimeZoneNotification?.text()}"
}
@@ -107,6 +91,14 @@ private getCallBackAddress() {
device.hub.getDataValue("localIP") + ":" + device.hub.getDataValue("localSrvPortTCP")
}
private Integer convertHexToInt(hex) {
Integer.parseInt(hex,16)
}
private String convertHexToIP(hex) {
[convertHexToInt(hex[0..1]),convertHexToInt(hex[2..3]),convertHexToInt(hex[4..5]),convertHexToInt(hex[6..7])].join(".")
}
private getHostAddress() {
def ip = getDataValue("ip")
def port = getDataValue("port")
@@ -133,8 +125,6 @@ def refresh() {
////////////////////////////
def getStatus() {
log.debug "Executing WeMo Motion 'getStatus'"
if (device.currentValue("currentIP") != "Offline")
runIn(10, setOffline)
new physicalgraph.device.HubAction("""POST /upnp/control/basicevent1 HTTP/1.1
SOAPACTION: "urn:Belkin:service:basicevent:1#GetBinaryState"
Content-Length: 277
@@ -175,9 +165,7 @@ def subscribe(ip, port) {
def existingPort = getDataValue("port")
if (ip && ip != existingIp) {
log.debug "Updating ip from $existingIp to $ip"
updateDataValue("ip", ip)
def ipvalue = convertHexToIP(getDataValue("ip"))
sendEvent(name: "currentIP", value: ipvalue, descriptionText: "IP changed to ${ipvalue}")
updateDataValue("ip", ip)
}
if (port && port != existingPort) {
log.debug "Updating port from $existingPort to $port"
@@ -238,15 +226,3 @@ User-Agent: CyberGarage-HTTP/1.0
</s:Envelope>
""", physicalgraph.device.Protocol.LAN)
}
def setOffline() {
sendEvent(name: "motion", value: "offline", descriptionText: "The device is offline")
}
private Integer convertHexToInt(hex) {
Integer.parseInt(hex,16)
}
private String convertHexToIP(hex) {
[convertHexToInt(hex[0..1]),convertHexToInt(hex[2..3]),convertHexToInt(hex[4..5]),convertHexToInt(hex[6..7])].join(".")
}

View File

@@ -10,142 +10,120 @@
* 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.
*
* Wemo Switch
* Wemo Switch
*
* Author: Juan Risso (SmartThings)
* Date: 2015-10-11
* Author: superuser
* Date: 2013-10-11
*/
metadata {
definition (name: "Wemo Switch", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Switch"
capability "Polling"
capability "Refresh"
capability "Sensor"
definition (name: "Wemo Switch", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Switch"
capability "Polling"
capability "Refresh"
capability "Sensor"
attribute "currentIP", "string"
command "subscribe"
command "resubscribe"
command "unsubscribe"
}
command "subscribe"
command "resubscribe"
command "unsubscribe"
}
// simulator metadata
simulator {}
// simulator metadata
simulator {}
// UI tile definitions
tiles {
standardTile("switch", "device.switch", width: 2, height: 2, canChangeIcon: true) {
state "on", label:'${name}', action:"switch.off", icon:"st.switches.switch.on", backgroundColor:"#79b821"
state "off", label:'${name}', action:"switch.on", icon:"st.switches.switch.off", backgroundColor:"#ffffff"
}
standardTile("refresh", "device.switch", inactiveLabel: false, decoration: "flat") {
state "default", label:'', action:"refresh.refresh", icon:"st.secondary.refresh"
}
// UI tile definitions
tiles(scale: 2) {
multiAttributeTile(name:"rich-control", type: "switch", canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "on", label:'${name}', action:"switch.off", icon:"st.switches.switch.off", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${name}', action:"switch.on", icon:"st.switches.switch.on", backgroundColor:"#ffffff", nextState:"turningOn"
attributeState "turningOn", label:'${name}', action:"switch.off", icon:"st.switches.switch.off", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "turningOff", label:'${name}', action:"switch.on", icon:"st.switches.switch.on", backgroundColor:"#ffffff", nextState:"turningOn"
attributeState "offline", label:'${name}', icon:"st.switches.switch.off", backgroundColor:"#ff0000"
}
tileAttribute ("currentIP", key: "SECONDARY_CONTROL") {
attributeState "currentIP", label: ''
}
}
standardTile("switch", "device.switch", width: 2, height: 2, canChangeIcon: true) {
state "on", label:'${name}', action:"switch.off", icon:"st.switches.switch.off", backgroundColor:"#79b821", nextState:"turningOff"
state "off", label:'${name}', action:"switch.on", icon:"st.switches.switch.on", backgroundColor:"#ffffff", nextState:"turningOn"
state "turningOn", label:'${name}', action:"switch.off", icon:"st.switches.switch.off", backgroundColor:"#79b821", nextState:"turningOff"
state "turningOff", label:'${name}', action:"switch.on", icon:"st.switches.switch.on", backgroundColor:"#ffffff", nextState:"turningOn"
state "offline", label:'${name}', icon:"st.switches.switch.off", backgroundColor:"#ff0000"
}
standardTile("refresh", "device.switch", inactiveLabel: false, height: 2, width: 2, decoration: "flat") {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
main(["switch"])
details(["rich-control", "refresh"])
}
main "switch"
details (["switch", "refresh"])
}
}
// parse events into attributes
def parse(String description) {
log.debug "Parsing '${description}'"
log.debug "Parsing '${description}'"
def msg = parseLanMessage(description)
def headerString = msg.header
def msg = parseLanMessage(description)
def headerString = msg.header
if (headerString?.contains("SID: uuid:")) {
def sid = (headerString =~ /SID: uuid:.*/) ? ( headerString =~ /SID: uuid:.*/)[0] : "0"
sid -= "SID: uuid:".trim()
if (headerString?.contains("SID: uuid:")) {
def sid = (headerString =~ /SID: uuid:.*/) ? ( headerString =~ /SID: uuid:.*/)[0] : "0"
sid -= "SID: uuid:".trim()
updateDataValue("subscriptionId", sid)
}
updateDataValue("subscriptionId", sid)
}
def result = []
def bodyString = msg.body
if (bodyString) {
unschedule("setOffline")
def body = new XmlSlurper().parseText(bodyString)
if (body?.property?.TimeSyncRequest?.text()) {
log.trace "Got TimeSyncRequest"
result << timeSyncResponse()
} else if (body?.Body?.SetBinaryStateResponse?.BinaryState?.text()) {
log.trace "Got SetBinaryStateResponse = ${body?.Body?.SetBinaryStateResponse?.BinaryState?.text()}"
} else if (body?.property?.BinaryState?.text()) {
def value = body?.property?.BinaryState?.text().substring(0, 1).toInteger() == 0 ? "off" : "on"
log.trace "Notify: BinaryState = ${value}, ${body.property.BinaryState}"
def dispaux = device.currentValue("switch") != value
result << createEvent(name: "switch", value: value, descriptionText: "Switch is ${value}", displayed: dispaux)
} else if (body?.property?.TimeZoneNotification?.text()) {
log.debug "Notify: TimeZoneNotification = ${body?.property?.TimeZoneNotification?.text()}"
} else if (body?.Body?.GetBinaryStateResponse?.BinaryState?.text()) {
def value = body?.Body?.GetBinaryStateResponse?.BinaryState?.text().substring(0, 1).toInteger() == 0 ? "off" : "on"
log.trace "GetBinaryResponse: BinaryState = ${value}, ${body.property.BinaryState}"
log.info "Connection: ${device.currentValue("connection")}"
if (device.currentValue("currentIP") == "Offline") {
def ipvalue = convertHexToIP(getDataValue("ip"))
sendEvent(name: "IP", value: ipvalue, descriptionText: "IP is ${ipvalue}")
}
def dispaux2 = device.currentValue("switch") != value
result << createEvent(name: "switch", value: value, descriptionText: "Switch is ${value}", displayed: dispaux2)
}
}
result
def result = []
def bodyString = msg.body
if (bodyString) {
def body = new XmlSlurper().parseText(bodyString)
if (body?.property?.TimeSyncRequest?.text()) {
log.trace "Got TimeSyncRequest"
result << timeSyncResponse()
} else if (body?.Body?.SetBinaryStateResponse?.BinaryState?.text()) {
log.trace "Got SetBinaryStateResponse = ${body?.Body?.SetBinaryStateResponse?.BinaryState?.text()}"
} else if (body?.property?.BinaryState?.text()) {
def value = body?.property?.BinaryState?.text().toInteger() == 1 ? "on" : "off"
log.trace "Notify: BinaryState = ${value}"
result << createEvent(name: "switch", value: value)
} else if (body?.property?.TimeZoneNotification?.text()) {
log.debug "Notify: TimeZoneNotification = ${body?.property?.TimeZoneNotification?.text()}"
} else if (body?.Body?.GetBinaryStateResponse?.BinaryState?.text()) {
def value = body?.Body?.GetBinaryStateResponse?.BinaryState?.text().toInteger() == 1 ? "on" : "off"
log.trace "GetBinaryResponse: BinaryState = ${value}"
result << createEvent(name: "switch", value: value)
}
}
result
}
private getTime() {
// This is essentially System.currentTimeMillis()/1000, but System is disallowed by the sandbox.
((new GregorianCalendar().time.time / 1000l).toInteger()).toString()
// This is essentially System.currentTimeMillis()/1000, but System is disallowed by the sandbox.
((new GregorianCalendar().time.time / 1000l).toInteger()).toString()
}
private getCallBackAddress() {
device.hub.getDataValue("localIP") + ":" + device.hub.getDataValue("localSrvPortTCP")
device.hub.getDataValue("localIP") + ":" + device.hub.getDataValue("localSrvPortTCP")
}
private Integer convertHexToInt(hex) {
Integer.parseInt(hex,16)
Integer.parseInt(hex,16)
}
private String convertHexToIP(hex) {
[convertHexToInt(hex[0..1]),convertHexToInt(hex[2..3]),convertHexToInt(hex[4..5]),convertHexToInt(hex[6..7])].join(".")
[convertHexToInt(hex[0..1]),convertHexToInt(hex[2..3]),convertHexToInt(hex[4..5]),convertHexToInt(hex[6..7])].join(".")
}
private getHostAddress() {
def ip = getDataValue("ip")
def port = getDataValue("port")
if (!ip || !port) {
def parts = device.deviceNetworkId.split(":")
if (parts.length == 2) {
ip = parts[0]
port = parts[1]
} else {
log.warn "Can't figure out ip and port for device: ${device.id}"
}
}
log.debug "Using ip: ${ip} and port: ${port} for device: ${device.id}"
return convertHexToIP(ip) + ":" + convertHexToInt(port)
def ip = getDataValue("ip")
def port = getDataValue("port")
if (!ip || !port) {
def parts = device.deviceNetworkId.split(":")
if (parts.length == 2) {
ip = parts[0]
port = parts[1]
} else {
log.warn "Can't figure out ip and port for device: ${device.id}"
}
}
log.debug "Using ip: ${ip} and port: ${port} for device: ${device.id}"
return convertHexToIP(ip) + ":" + convertHexToInt(port)
}
def on() {
log.debug "Executing 'on'"
log.debug "Executing 'on'"
sendEvent(name: "switch", value: "on")
def turnOn = new physicalgraph.device.HubAction("""POST /upnp/control/basicevent1 HTTP/1.1
SOAPAction: "urn:Belkin:service:basicevent:1#SetBinaryState"
Host: ${getHostAddress()}
@@ -155,16 +133,17 @@ Content-Length: 333
<?xml version="1.0"?>
<SOAP-ENV:Envelope xmlns:SOAP-ENV="http://schemas.xmlsoap.org/soap/envelope/" SOAP-ENV:encodingStyle="http://schemas.xmlsoap.org/soap/encoding/">
<SOAP-ENV:Body>
<m:SetBinaryState xmlns:m="urn:Belkin:service:basicevent:1">
<m:SetBinaryState xmlns:m="urn:Belkin:service:basicevent:1">
<BinaryState>1</BinaryState>
</m:SetBinaryState>
</m:SetBinaryState>
</SOAP-ENV:Body>
</SOAP-ENV:Envelope>""", physicalgraph.device.Protocol.LAN)
}
def off() {
log.debug "Executing 'off'"
def turnOff = new physicalgraph.device.HubAction("""POST /upnp/control/basicevent1 HTTP/1.1
log.debug "Executing 'off'"
sendEvent(name: "switch", value: "off")
def turnOff = new physicalgraph.device.HubAction("""POST /upnp/control/basicevent1 HTTP/1.1
SOAPAction: "urn:Belkin:service:basicevent:1#SetBinaryState"
Host: ${getHostAddress()}
Content-Type: text/xml
@@ -173,13 +152,36 @@ Content-Length: 333
<?xml version="1.0"?>
<SOAP-ENV:Envelope xmlns:SOAP-ENV="http://schemas.xmlsoap.org/soap/envelope/" SOAP-ENV:encodingStyle="http://schemas.xmlsoap.org/soap/encoding/">
<SOAP-ENV:Body>
<m:SetBinaryState xmlns:m="urn:Belkin:service:basicevent:1">
<m:SetBinaryState xmlns:m="urn:Belkin:service:basicevent:1">
<BinaryState>0</BinaryState>
</m:SetBinaryState>
</m:SetBinaryState>
</SOAP-ENV:Body>
</SOAP-ENV:Envelope>""", physicalgraph.device.Protocol.LAN)
}
/*def refresh() {
log.debug "Executing 'refresh'"
new physicalgraph.device.HubAction("""POST /upnp/control/basicevent1 HTTP/1.1
SOAPACTION: "urn:Belkin:service:basicevent:1#GetBinaryState"
Content-Length: 277
Content-Type: text/xml; charset="utf-8"
HOST: ${getHostAddress()}
User-Agent: CyberGarage-HTTP/1.0
<?xml version="1.0" encoding="utf-8"?>
<s:Envelope xmlns:s="http://schemas.xmlsoap.org/soap/envelope/" s:encodingStyle="http://schemas.xmlsoap.org/soap/encoding/">
<s:Body>
<u:GetBinaryState xmlns:u="urn:Belkin:service:basicevent:1">
</u:GetBinaryState>
</s:Body>
</s:Envelope>""", physicalgraph.device.Protocol.LAN)
}*/
def refresh() {
log.debug "Executing WeMo Switch 'subscribe', then 'timeSyncResponse', then 'poll'"
[subscribe(), timeSyncResponse(), poll()]
}
def subscribe(hostAddress) {
log.debug "Executing 'subscribe()'"
def address = getCallBackAddress()
@@ -198,30 +200,27 @@ def subscribe() {
subscribe(getHostAddress())
}
def refresh() {
log.debug "Executing WeMo Switch 'subscribe', then 'timeSyncResponse', then 'poll'"
[subscribe(), timeSyncResponse(), poll()]
}
def subscribe(ip, port) {
def existingIp = getDataValue("ip")
def existingPort = getDataValue("port")
if (ip && ip != existingIp) {
log.debug "Updating ip from $existingIp to $ip"
updateDataValue("ip", ip)
def ipvalue = convertHexToIP(getDataValue("ip"))
sendEvent(name: "currentIP", value: ipvalue, descriptionText: "IP changed to ${ipvalue}")
}
if (port && port != existingPort) {
log.debug "Updating port from $existingPort to $port"
updateDataValue("port", port)
def existingIp = getDataValue("ip")
def existingPort = getDataValue("port")
if (ip && ip != existingIp) {
log.debug "Updating ip from $existingIp to $ip"
updateDataValue("ip", ip)
}
if (port && port != existingPort) {
log.debug "Updating port from $existingPort to $port"
updateDataValue("port", port)
}
subscribe("${ip}:${port}")
}
////////////////////////////
def resubscribe() {
log.debug "Executing 'resubscribe()'"
def sid = getDeviceDataByName("subscriptionId")
log.debug "Executing 'resubscribe()'"
def sid = getDeviceDataByName("subscriptionId")
new physicalgraph.device.HubAction("""SUBSCRIBE /upnp/event/basicevent1 HTTP/1.1
HOST: ${getHostAddress()}
SID: uuid:${sid}
@@ -229,11 +228,12 @@ TIMEOUT: Second-5400
""", physicalgraph.device.Protocol.LAN)
}
////////////////////////////
def unsubscribe() {
def sid = getDeviceDataByName("subscriptionId")
def sid = getDeviceDataByName("subscriptionId")
new physicalgraph.device.HubAction("""UNSUBSCRIBE publisher path HTTP/1.1
HOST: ${getHostAddress()}
SID: uuid:${sid}
@@ -242,7 +242,7 @@ SID: uuid:${sid}
""", physicalgraph.device.Protocol.LAN)
}
////////////////////////////
//TODO: Use UTC Timezone
def timeSyncResponse() {
log.debug "Executing 'timeSyncResponse()'"
@@ -267,15 +267,9 @@ User-Agent: CyberGarage-HTTP/1.0
""", physicalgraph.device.Protocol.LAN)
}
def setOffline() {
//sendEvent(name: "currentIP", value: "Offline", displayed: false)
sendEvent(name: "switch", value: "offline", descriptionText: "The device is offline")
}
def poll() {
log.debug "Executing 'poll'"
if (device.currentValue("currentIP") != "Offline")
runIn(10, setOffline)
new physicalgraph.device.HubAction("""POST /upnp/control/basicevent1 HTTP/1.1
SOAPACTION: "urn:Belkin:service:basicevent:1#GetBinaryState"
Content-Length: 277

View File

@@ -1,101 +0,0 @@
/**
* Copyright 2015 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.
*
*/
metadata {
definition (name: "ZigBee Dimmer Power", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Configuration"
capability "Refresh"
capability "Power Meter"
capability "Sensor"
capability "Switch"
capability "Switch Level"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, 0B04"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, 0702"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, 0702, 0B05", outClusters: "0019", manufacturer: "sengled", model: "Z01-CIA19NAE26", deviceJoinName: "Sengled Element touch"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, 0702, 0B05", outClusters: "000A, 0019", manufacturer: "Jasco Products", model: "45852", deviceJoinName: "GE Zigbee Plug-In Dimmer"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, 0702, 0B05", outClusters: "000A, 0019", manufacturer: "Jasco Products", model: "45857", deviceJoinName: "GE Zigbee In-Wall Dimmer"
}
tiles(scale: 2) {
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "on", label:'${name}', action:"switch.off", icon:"st.switches.switch.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${name}', action:"switch.on", icon:"st.switches.switch.off", backgroundColor:"#ffffff", nextState:"turningOn"
attributeState "turningOn", label:'${name}', action:"switch.off", icon:"st.switches.switch.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "turningOff", label:'${name}', action:"switch.on", icon:"st.switches.switch.off", backgroundColor:"#ffffff", nextState:"turningOn"
}
tileAttribute ("device.level", key: "SLIDER_CONTROL") {
attributeState "level", action:"switch level.setLevel"
}
tileAttribute ("power", key: "SECONDARY_CONTROL") {
attributeState "power", label:'${currentValue} W'
}
}
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", "refresh"])
}
}
// Parse incoming device messages to generate events
def parse(String description) {
log.debug "description is $description"
def resultMap = zigbee.getKnownDescription(description)
if (resultMap) {
log.info resultMap
if (resultMap.type == "update") {
log.info "$device updates: ${resultMap.value}"
}
else if (resultMap.type == "power") {
def powerValue
if (device.getDataValue("manufacturer") != "OSRAM") { //OSRAM devices do not reliably update power
powerValue = (resultMap.value as Integer)/10 //TODO: The divisor value needs to be set as part of configuration
sendEvent(name: "power", value: powerValue)
}
}
else {
sendEvent(name: resultMap.type, value: resultMap.value)
}
}
else {
log.warn "DID NOT PARSE MESSAGE for description : $description"
log.debug zigbee.parseDescriptionAsMap(description)
}
}
def off() {
zigbee.off()
}
def on() {
zigbee.on()
}
def setLevel(value) {
zigbee.setLevel(value)
}
def refresh() {
zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.simpleMeteringPowerRefresh() + zigbee.electricMeasurementPowerRefresh() + zigbee.onOffConfig() + zigbee.levelConfig() + zigbee.simpleMeteringPowerConfig() + zigbee.electricMeasurementPowerConfig()
}
def configure() {
log.debug "Configuring Reporting and Bindings."
zigbee.onOffConfig() + zigbee.levelConfig() + zigbee.simpleMeteringPowerConfig() + zigbee.electricMeasurementPowerConfig() + zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.simpleMeteringPowerRefresh() + zigbee.electricMeasurementPowerRefresh()
}

View File

@@ -11,79 +11,133 @@
* for the specific language governing permissions and limitations under the License.
*
*/
metadata {
definition (name: "ZigBee Dimmer", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Configuration"
capability "Refresh"
capability "Switch"
capability "Switch Level"
definition (name: "ZigBee Dimmer", namespace: "smartthings", author: "SmartThings") {
capability "Switch Level"
capability "Actuator"
capability "Switch"
capability "Configuration"
capability "Sensor"
capability "Refresh"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0008,0B05", outClusters: "0019"
}
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0008"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, 0B04, FC0F", outClusters: "0019", manufacturer: "OSRAM", model: "LIGHTIFY A19 ON/OFF/DIM", deviceJoinName: "OSRAM LIGHTIFY LED Smart Connected Light"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, FF00", outClusters: "0019", manufacturer: "MRVL", model: "MZ100", deviceJoinName: "Wemo Bulb"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, 0B05", outClusters: "0019", manufacturer: "OSRAM SYLVANIA", model: "iQBR30", deviceJoinName: "Sylvania Ultra iQ"
}
// simulator metadata
simulator {
// status messages
status "on": "on/off: 1"
status "off": "on/off: 0"
tiles(scale: 2) {
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "on", label:'${name}', action:"switch.off", icon:"st.switches.light.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${name}', action:"switch.on", icon:"st.switches.light.off", backgroundColor:"#ffffff", nextState:"turningOn"
attributeState "turningOn", label:'${name}', action:"switch.off", icon:"st.switches.light.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "turningOff", label:'${name}', action:"switch.on", icon:"st.switches.light.off", backgroundColor:"#ffffff", nextState:"turningOn"
}
tileAttribute ("device.level", key: "SLIDER_CONTROL") {
attributeState "level", action:"switch level.setLevel"
}
}
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", "refresh"])
}
// reply messages
reply "zcl on-off on": "on/off: 1"
reply "zcl on-off off": "on/off: 0"
}
tiles(scale: 2) {
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "on", label:'${name}', action:"switch.off", icon:"st.switches.switch.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${name}', action:"switch.on", icon:"st.switches.switch.off", backgroundColor:"#ffffff", nextState:"turningOn"
attributeState "turningOn", label:'${name}', action:"switch.off", icon:"st.switches.switch.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "turningOff", label:'${name}', action:"switch.on", icon:"st.switches.switch.off", backgroundColor:"#ffffff", nextState:"turningOn"
}
tileAttribute ("device.level", key: "SLIDER_CONTROL") {
attributeState "level", action:"switch level.setLevel"
}
}
standardTile("refresh", "device.switch", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
valueTile("level", "device.level", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "level", label:'${currentValue} %', unit:"%", backgroundColor:"#ffffff"
}
main "switch"
details(["switch", "refresh", "level", "levelSliderControl"])
}
}
// Parse incoming device messages to generate events
def parse(String description) {
log.debug "description is $description"
log.info description
if (description?.startsWith("catchall:")) {
def msg = zigbee.parse(description)
log.trace msg
log.trace "data: $msg.data"
}
else {
def name = description?.startsWith("on/off: ") ? "switch" : null
def value = name == "switch" ? (description?.endsWith(" 1") ? "on" : "off") : null
def result = createEvent(name: name, value: value)
log.debug "Parse returned ${result?.descriptionText}"
return result
}
}
def resultMap = zigbee.getKnownDescription(description)
if (resultMap) {
log.info resultMap
if (resultMap.type == "update") {
log.info "$device updates: ${resultMap.value}"
}
else {
sendEvent(name: resultMap.type, value: resultMap.value)
}
}
else {
log.warn "DID NOT PARSE MESSAGE for description : $description"
log.debug zigbee.parseDescriptionAsMap(description)
}
// Commands to device
def on() {
log.debug "on()"
sendEvent(name: "switch", value: "on")
"st cmd 0x${device.deviceNetworkId} ${endpointId} 6 1 {}"
}
def off() {
zigbee.off()
log.debug "off()"
sendEvent(name: "switch", value: "off")
"st cmd 0x${device.deviceNetworkId} ${endpointId} 6 0 {}"
}
def on() {
zigbee.on()
}
def setLevel(value) {
zigbee.setLevel(value)
log.trace "setLevel($value)"
def cmds = []
if (value == 0) {
sendEvent(name: "switch", value: "off")
cmds << "st cmd 0x${device.deviceNetworkId} ${endpointId} 6 0 {}"
}
else if (device.latestValue("switch") == "off") {
sendEvent(name: "switch", value: "on")
cmds << "st cmd 0x${device.deviceNetworkId} ${endpointId} 6 1 {}"
}
sendEvent(name: "level", value: value)
def level = hexString(Math.round(value * 255/100))
cmds << "st cmd 0x${device.deviceNetworkId} ${endpointId} 8 4 {${level} 0000}"
//log.debug cmds
cmds
}
def refresh() {
zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.onOffConfig() + zigbee.levelConfig()
[
"st wattr 0x${device.deviceNetworkId} 1 6 0", "delay 200",
"st wattr 0x${device.deviceNetworkId} 1 8 0"
]
}
def configure() {
log.debug "Configuring Reporting and Bindings."
zigbee.onOffConfig() + zigbee.levelConfig() + zigbee.onOffRefresh() + zigbee.levelRefresh()
/*log.debug "binding to switch and level control cluster"
[
"zdo bind 0x${device.deviceNetworkId} 1 1 6 {${device.zigbeeId}} {}", "delay 200",
"zdo bind 0x${device.deviceNetworkId} 1 1 8 {${device.zigbeeId}} {}"
]
*/
//set transition time to 2 seconds. Not currently working.
"st wattr 0x${device.deviceNetworkId} 1 8 0x10 0x21 {1400}"
}
private hex(value, width=2) {
def s = new BigInteger(Math.round(value).toString()).toString(16)
while (s.size() < width) {
s = "0" + s
}
s
}
private getEndpointId() {
new BigInteger(device.endpointId, 16).toString()
}

View File

@@ -1,184 +0,0 @@
/**
* ZigBee Lock
*
* Copyright 2015 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.
*
*/
metadata {
definition (name: "ZigBee Lock", namespace: "smartthings", author: "SmartThings")
{
capability "Actuator"
capability "Lock"
capability "Refresh"
capability "Sensor"
capability "Battery"
capability "Configuration"
fingerprint profileId: "0104", inClusters: "0000,0001,0003,0004,0005,0009,0020,0101,0402,0B05,FDBD", outClusters: "000A,0019",
manufacturer: "Kwikset", model: "SMARTCODE_DEADBOLT_5", deviceJoinName: "Kwikset 5-Button Deadbolt"
fingerprint profileId: "0104", inClusters: "0000,0001,0003,0004,0005,0009,0020,0101,0402,0B05,FDBD", outClusters: "000A,0019",
manufacturer: "Kwikset", model: "SMARTCODE_LEVER_5", deviceJoinName: "Kwikset 5-Button Lever"
fingerprint profileId: "0104", inClusters: "0000,0001,0003,0004,0005,0009,0020,0101,0402,0B05,FDBD", outClusters: "000A,0019",
manufacturer: "Kwikset", model: "SMARTCODE_DEADBOLT_10", deviceJoinName: "Kwikset 10-Button Deadbolt"
fingerprint profileId: "0104", inClusters: "0000,0001,0003,0004,0005,0009,0020,0101,0402,0B05,FDBD", outClusters: "000A,0019",
manufacturer: "Kwikset", model: "SMARTCODE_DEADBOLT_10T", deviceJoinName: "Kwikset 10-Button Touch Deadbolt"
fingerprint profileId: "0104", inClusters: "0000,0001,0003,0009,000A,0101,0020", outClusters: "000A,0019",
manufacturer: "Yale", model: "YRL220 TS LL", deviceJoinName: "Yale Touch Screen Lever Lock"
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"
}
tiles(scale: 2) {
multiAttributeTile(name:"toggle", type:"generic", width:6, height:4){
tileAttribute ("device.lock", key:"PRIMARY_CONTROL") {
attributeState "locked", label:'locked', action:"lock.unlock", icon:"st.locks.lock.locked", backgroundColor:"#79b821", nextState:"unlocking"
attributeState "unlocked", label:'unlocked', action:"lock.lock", icon:"st.locks.lock.unlocked", backgroundColor:"#ffffff", nextState:"locking"
attributeState "unknown", label:"unknown", action:"lock.lock", icon:"st.locks.lock.unknown", backgroundColor:"#ffffff", nextState:"locking"
attributeState "locking", label:'locking', icon:"st.locks.lock.locked", backgroundColor:"#79b821"
attributeState "unlocking", label:'unlocking', icon:"st.locks.lock.unlocked", backgroundColor:"#ffffff"
}
}
standardTile("lock", "device.lock", inactiveLabel:false, decoration:"flat", width:2, height:2) {
state "default", label:'lock', action:"lock.lock", icon:"st.locks.lock.locked", nextState:"locking"
}
standardTile("unlock", "device.lock", inactiveLabel:false, decoration:"flat", width:2, height:2) {
state "default", label:'unlock', action:"lock.unlock", icon:"st.locks.lock.unlocked", nextState:"unlocking"
}
valueTile("battery", "device.battery", inactiveLabel:false, decoration:"flat", width:2, height:2) {
state "battery", label:'${currentValue}% battery', unit:""
}
standardTile("refresh", "device.lock", inactiveLabel:false, decoration:"flat", width:2, height:2) {
state "default", label:'', action:"refresh.refresh", icon:"st.secondary.refresh"
}
main "toggle"
details(["toggle", "lock", "unlock", "battery", "refresh"])
}
}
// Globals
private getCLUSTER_POWER() { 0x0001 }
private getCLUSTER_DOORLOCK() { 0x0101 }
private getDOORLOCK_CMD_LOCK_DOOR() { 0x00 }
private getDOORLOCK_CMD_UNLOCK_DOOR() { 0x01 }
private getDOORLOCK_ATTR_LOCKSTATE() { 0x0000 }
private getPOWER_ATTR_BATTERY_PERCENTAGE_REMAINING() { 0x0021 }
private getTYPE_U8() { 0x20 }
private getTYPE_ENUM8() { 0x30 }
// Public methods
def installed() {
log.trace "installed()"
}
def uninstalled() {
log.trace "uninstalled()"
}
def configure() {
/*
def cmds =
zigbee.configSetup("${CLUSTER_DOORLOCK}", "${DOORLOCK_ATTR_LOCKSTATE}",
"${TYPE_ENUM8}", 0, 3600, "{01}") +
zigbee.configSetup("${CLUSTER_POWER}", "${POWER_ATTR_BATTERY_PERCENTAGE_REMAINING}",
"${TYPE_U8}", 600, 21600, "{01}")
*/
def zigbeeId = device.zigbeeId
def cmds =
[
"zdo bind 0x${device.deviceNetworkId} 0x${device.endpointId} 1 ${CLUSTER_DOORLOCK} {$zigbeeId} {}", "delay 200",
"zcl global send-me-a-report ${CLUSTER_DOORLOCK} ${DOORLOCK_ATTR_LOCKSTATE} ${TYPE_ENUM8} 0 3600 {01}", "delay 200",
"send 0x${device.deviceNetworkId} 1 0x${device.endpointId}", "delay 200",
"zdo bind 0x${device.deviceNetworkId} 0x${device.endpointId} 1 ${CLUSTER_POWER} {$zigbeeId} {}", "delay 200",
"zcl global send-me-a-report ${CLUSTER_POWER} ${POWER_ATTR_BATTERY_PERCENTAGE_REMAINING} ${TYPE_U8} 600 21600 {01}", "delay 200",
"send 0x${device.deviceNetworkId} 1 0x${device.endpointId}", "delay 200",
]
log.info "configure() --- cmds: $cmds"
return cmds + refresh() // send refresh cmds as part of config
}
def refresh() {
def cmds =
zigbee.refreshData("${CLUSTER_DOORLOCK}", "${DOORLOCK_ATTR_LOCKSTATE}") +
zigbee.refreshData("${CLUSTER_POWER}", "${POWER_ATTR_BATTERY_PERCENTAGE_REMAINING}")
log.info "refresh() --- cmds: $cmds"
return cmds
}
def parse(String description) {
log.trace "parse() --- description: $description"
Map map = [:]
if (description?.startsWith('read attr -')) {
map = parseReportAttributeMessage(description)
}
log.debug "parse() --- Parse returned $map"
def result = map ? createEvent(map) : null
return result
}
// Lock capability commands
def lock() {
//def cmds = zigbee.zigbeeCommand("${CLUSTER_DOORLOCK}", "${DOORLOCK_CMD_LOCK_DOOR}", "{}")
//log.info "lock() -- cmds: $cmds"
//return cmds
"st cmd 0x${device.deviceNetworkId} 0x${device.endpointId} ${CLUSTER_DOORLOCK} ${DOORLOCK_CMD_LOCK_DOOR} {}"
}
def unlock() {
//def cmds = zigbee.zigbeeCommand("${CLUSTER_DOORLOCK}", "${DOORLOCK_CMD_UNLOCK_DOOR}", "{}")
//log.info "unlock() -- cmds: $cmds"
//return cmds
"st cmd 0x${device.deviceNetworkId} 0x${device.endpointId} ${CLUSTER_DOORLOCK} ${DOORLOCK_CMD_UNLOCK_DOOR} {}"
}
// Private methods
private Map parseReportAttributeMessage(String description) {
log.trace "parseReportAttributeMessage() --- description: $description"
Map descMap = zigbee.parseDescriptionAsMap(description)
log.debug "parseReportAttributeMessage() --- descMap: $descMap"
Map resultMap = [:]
if (descMap.clusterInt == CLUSTER_POWER && descMap.attrInt == POWER_ATTR_BATTERY_PERCENTAGE_REMAINING) {
resultMap.name = "battery"
resultMap.value = Math.round(Integer.parseInt(descMap.value, 16) / 2)
if (device.getDataValue("manufacturer") == "Yale") { //Handling issue with Yale locks incorrect battery reporting
resultMap.value = Integer.parseInt(descMap.value, 16)
}
log.info "parseReportAttributeMessage() --- battery: ${resultMap.value}"
}
else if (descMap.clusterInt == CLUSTER_DOORLOCK && descMap.attrInt == DOORLOCK_ATTR_LOCKSTATE) {
def value = Integer.parseInt(descMap.value, 16)
resultMap.name = "lock"
resultMap.putAll([0:["value":"unknown",
"descriptionText":"Not fully locked"],
1:["value":"locked"],
2:["value":"unlocked"]].get(value,
["value":"unknown",
"descriptionText":"Unknown lock state"]))
log.info "parseReportAttributeMessage() --- lock: ${resultMap.value}"
}
else {
log.debug "parseReportAttributeMessage() --- ignoring attribute"
}
return resultMap
}

View File

@@ -1,92 +0,0 @@
/**
* Copyright 2015 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.
*
*/
metadata {
definition (name: "ZigBee Switch Power", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Configuration"
capability "Refresh"
capability "Power Meter"
capability "Sensor"
capability "Switch"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0B04"
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"
}
tiles(scale: 2) {
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "on", label:'${name}', action:"switch.off", icon:"st.switches.switch.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${name}', action:"switch.on", icon:"st.switches.switch.off", backgroundColor:"#ffffff", nextState:"turningOn"
attributeState "turningOn", label:'${name}', action:"switch.off", icon:"st.switches.switch.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "turningOff", label:'${name}', action:"switch.on", icon:"st.switches.switch.off", backgroundColor:"#ffffff", nextState:"turningOn"
}
tileAttribute ("power", key: "SECONDARY_CONTROL") {
attributeState "power", label:'${currentValue} W'
}
}
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", "refresh"])
}
}
// Parse incoming device messages to generate events
def parse(String description) {
log.debug "description is $description"
def resultMap = zigbee.getKnownDescription(description)
if (resultMap) {
log.info resultMap
if (resultMap.type == "update") {
log.info "$device updates: ${resultMap.value}"
}
else if (resultMap.type == "power") {
def powerValue
if (device.getDataValue("manufacturer") != "OSRAM") { //OSRAM devices do not reliably update power
powerValue = (resultMap.value as Integer)/10 //TODO: The divisor value needs to be set as part of configuration
sendEvent(name: "power", value: powerValue)
}
}
else {
sendEvent(name: resultMap.type, value: resultMap.value)
}
}
else {
log.warn "DID NOT PARSE MESSAGE for description : $description"
log.debug zigbee.parseDescriptionAsMap(description)
}
}
def off() {
zigbee.off()
}
def on() {
zigbee.on()
}
def refresh() {
zigbee.onOffRefresh() + zigbee.simpleMeteringPowerRefresh() + zigbee.electricMeasurementPowerRefresh() + zigbee.onOffConfig() + zigbee.simpleMeteringPowerConfig() + zigbee.electricMeasurementPowerConfig()
}
def configure() {
log.debug "Configuring Reporting and Bindings."
zigbee.onOffConfig() + zigbee.simpleMeteringPowerConfig() + zigbee.electricMeasurementPowerConfig() + zigbee.onOffRefresh() + zigbee.simpleMeteringPowerRefresh() + zigbee.electricMeasurementPowerRefresh()
}

View File

@@ -1,88 +0,0 @@
/**
* Copyright 2015 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.
*
*/
metadata {
definition (name: "ZigBee Switch", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Configuration"
capability "Refresh"
capability "Switch"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006"
}
// simulator metadata
simulator {
// status messages
status "on": "on/off: 1"
status "off": "on/off: 0"
// reply messages
reply "zcl on-off on": "on/off: 1"
reply "zcl on-off off": "on/off: 0"
}
tiles(scale: 2) {
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "on", label:'${name}', action:"switch.off", icon:"st.switches.light.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${name}', action:"switch.on", icon:"st.switches.light.off", backgroundColor:"#ffffff", nextState:"turningOn"
attributeState "turningOn", label:'${name}', action:"switch.off", icon:"st.switches.light.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "turningOff", label:'${name}', action:"switch.on", icon:"st.switches.light.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"
}
main "switch"
details(["switch", "refresh"])
}
}
// Parse incoming device messages to generate events
def parse(String description) {
log.debug "description is $description"
def resultMap = zigbee.getKnownDescription(description)
if (resultMap) {
log.info resultMap
if (resultMap.type == "update") {
log.info "$device updates: ${resultMap.value}"
}
else {
sendEvent(name: resultMap.type, value: resultMap.value)
}
}
else {
log.warn "DID NOT PARSE MESSAGE for description : $description"
log.debug zigbee.parseDescriptionAsMap(description)
}
}
def off() {
zigbee.off()
}
def on() {
zigbee.on()
}
def refresh() {
zigbee.onOffRefresh() + zigbee.onOffConfig()
}
def configure() {
log.debug "Configuring Reporting and Bindings."
zigbee.onOffConfig() + zigbee.onOffRefresh()
}

View File

@@ -1,134 +0,0 @@
/**
* Copyright 2015 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.
*
* ZigBee White Color Temperature Bulb
*
* Author: SmartThings
* Date: 2015-09-22
*/
metadata {
definition (name: "ZigBee White Color Temperature Bulb", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Color Temperature"
capability "Configuration"
capability "Refresh"
capability "Switch"
capability "Switch Level"
attribute "colorName", "string"
command "setGenericName"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, 0300", outClusters: "0019"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, 0300, 0B04", outClusters: "0019"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, 0300, 0B04, FC0F", outClusters: "0019", manufacturer: "OSRAM", model: "LIGHTIFY BR Tunable White", deviceJoinName: "OSRAM LIGHTIFY LED Flood BR30 Tunable White"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, 0300, 0B04, FC0F", outClusters: "0019", manufacturer: "OSRAM", model: "LIGHTIFY RT Tunable White", deviceJoinName: "OSRAM LIGHTIFY LED Recessed Kit RT 5/6 Tunable White"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, 0300, 0B04, FC0F", outClusters: "0019", manufacturer: "OSRAM", model: "Classic A60 TW", deviceJoinName: "OSRAM LIGHTIFY LED Tunable White 60W"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, 0300, 0B04, FC0F", outClusters: "0019", manufacturer: "OSRAM", model: "LIGHTIFY A19 Tunable White", deviceJoinName: "OSRAM LIGHTIFY LED Tunable White 60W"
}
// UI tile definitions
tiles(scale: 2) {
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "on", label:'${name}', action:"switch.off", icon:"st.switches.light.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${name}', action:"switch.on", icon:"st.switches.light.off", backgroundColor:"#ffffff", nextState:"turningOn"
attributeState "turningOn", label:'${name}', action:"switch.off", icon:"st.switches.light.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "turningOff", label:'${name}', action:"switch.on", icon:"st.switches.light.off", backgroundColor:"#ffffff", nextState:"turningOn"
}
tileAttribute ("device.level", key: "SLIDER_CONTROL") {
attributeState "level", action:"switch level.setLevel"
}
tileAttribute ("colorName", key: "SECONDARY_CONTROL") {
attributeState "colorName", label:'${currentValue}'
}
}
standardTile("refresh", "device.switch", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
controlTile("colorTempSliderControl", "device.colorTemperature", "slider", width: 4, height: 2, inactiveLabel: false, range:"(2700..6500)") {
state "colorTemperature", action:"color temperature.setColorTemperature"
}
valueTile("colorTemp", "device.colorTemperature", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "colorTemperature", label: '${currentValue} K'
}
main(["switch"])
details(["switch", "colorTempSliderControl", "colorTemp", "refresh"])
}
}
// Parse incoming device messages to generate events
def parse(String description) {
log.debug "description is $description"
def finalResult = zigbee.getKnownDescription(description)
if (finalResult) {
log.info finalResult
if (finalResult.type == "update") {
log.info "$device updates: ${finalResult.value}"
}
else {
sendEvent(name: finalResult.type, value: finalResult.value)
}
}
else {
log.warn "DID NOT PARSE MESSAGE for description : $description"
log.debug zigbee.parseDescriptionAsMap(description)
}
}
def off() {
zigbee.off()
}
def on() {
zigbee.on()
}
def setLevel(value) {
zigbee.setLevel(value)
}
def refresh() {
zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.colorTemperatureRefresh() + zigbee.onOffConfig() + zigbee.levelConfig() + zigbee.colorTemperatureConfig()
}
def configure() {
log.debug "Configuring Reporting and Bindings."
zigbee.onOffConfig() + zigbee.levelConfig() + zigbee.colorTemperatureConfig() + zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.colorTemperatureRefresh()
}
def setColorTemperature(value) {
setGenericName(value)
zigbee.setColorTemperature(value)
}
//Naming based on the wiki article here: http://en.wikipedia.org/wiki/Color_temperature
def setGenericName(value){
if (value != null) {
def genericName = "White"
if (value < 3300) {
genericName = "Soft White"
} else if (value < 4150) {
genericName = "Moonlight"
} else if (value <= 5000) {
genericName = "Cool White"
} else if (value >= 5000) {
genericName = "Daylight"
}
sendEvent(name: "colorName", value: genericName)
}
}

View File

@@ -66,20 +66,9 @@ metadata {
import physicalgraph.zwave.commands.doorlockv1.*
import physicalgraph.zwave.commands.usercodev1.*
def updated() {
try {
if (!state.init) {
state.init = true
response(secureSequence([zwave.doorLockV1.doorLockOperationGet(), zwave.batteryV1.batteryGet()]))
}
} catch (e) {
log.warn "updated() threw $e"
}
}
def parse(String description) {
def result = null
if (description.startsWith("Err 106")) {
if (description.startsWith("Err")) {
if (state.sec) {
result = createEvent(descriptionText:description, displayed:false)
} else {
@@ -91,8 +80,6 @@ def parse(String description) {
displayed: true,
)
}
} else if (description == "updated") {
return null
} else {
def cmd = zwave.parse(description, [ 0x98: 1, 0x72: 2, 0x85: 2, 0x86: 1 ])
if (cmd) {
@@ -299,7 +286,7 @@ def zwaveEvent(physicalgraph.zwave.commands.alarmv2.AlarmReport cmd) {
}
break
case 167:
if (!state.lastbatt || now() - state.lastbatt > 12*60*60*1000) {
if (!state.lastbatt || (new Date().time) - state.lastbatt > 12*60*60*1000) {
map = [ descriptionText: "$device.displayName: battery low", isStateChange: true ]
result << response(secure(zwave.batteryV1.batteryGet()))
} else {
@@ -444,7 +431,7 @@ def zwaveEvent(physicalgraph.zwave.commands.batteryv1.BatteryReport cmd) {
} else {
map.value = cmd.batteryLevel
}
state.lastbatt = now()
state.lastbatt = new Date().time
createEvent(map)
}
@@ -512,14 +499,15 @@ def refresh() {
cmds << "delay 4200"
cmds << zwave.associationV1.associationGet(groupingIdentifier:2).format() // old Schlage locks use group 2 and don't secure the Association CC
cmds << secure(zwave.associationV1.associationGet(groupingIdentifier:1))
state.associationQuery = now()
} else if (secondsPast(state.associationQuery, 9)) {
state.associationQuery = new Date().time
} else if (new Date().time - state.associationQuery.toLong() > 9000) {
log.debug "setting association"
cmds << "delay 6000"
cmds << zwave.associationV1.associationSet(groupingIdentifier:2, nodeId:zwaveHubNodeId).format()
cmds << secure(zwave.associationV1.associationSet(groupingIdentifier:1, nodeId:zwaveHubNodeId))
cmds << zwave.associationV1.associationGet(groupingIdentifier:2).format()
cmds << secure(zwave.associationV1.associationGet(groupingIdentifier:1))
state.associationQuery = now()
state.associationQuery = new Date().time
}
log.debug "refresh sending ${cmds.inspect()}"
cmds
@@ -527,22 +515,55 @@ def refresh() {
def poll() {
def cmds = []
// Only check lock state if it changed recently or we haven't had an update in an hour
def latest = device.currentState("lock")?.date?.time
if (!latest || !secondsPast(latest, 6 * 60) || secondsPast(state.lastPoll, 55 * 60)) {
cmds << secure(zwave.doorLockV1.doorLockOperationGet())
state.lastPoll = now()
} else if (!state.lastbatt || now() - state.lastbatt > 53*60*60*1000) {
cmds << secure(zwave.batteryV1.batteryGet())
state.lastbatt = now() //inside-214
}
if (cmds) {
log.debug "poll is sending ${cmds.inspect()}"
cmds
if (state.assoc != zwaveHubNodeId && secondsPast(state.associationQuery, 19 * 60)) {
log.debug "setting association"
cmds << zwave.associationV1.associationSet(groupingIdentifier:2, nodeId:zwaveHubNodeId).format()
cmds << secure(zwave.associationV1.associationSet(groupingIdentifier:1, nodeId:zwaveHubNodeId))
cmds << zwave.associationV1.associationGet(groupingIdentifier:2).format()
cmds << "delay 6000"
cmds << secure(zwave.associationV1.associationGet(groupingIdentifier:1))
cmds << "delay 6000"
state.associationQuery = new Date().time
} else {
// workaround to keep polling from stopping due to lack of activity
sendEvent(descriptionText: "skipping poll", isStateChange: true, displayed: false)
null
// Only check lock state if it changed recently or we haven't had an update in an hour
def latest = device.currentState("lock")?.date?.time
if (!latest || !secondsPast(latest, 6 * 60) || secondsPast(state.lastPoll, 55 * 60)) {
cmds << secure(zwave.doorLockV1.doorLockOperationGet())
state.lastPoll = (new Date()).time
} else if (!state.MSR) {
cmds << zwave.manufacturerSpecificV1.manufacturerSpecificGet().format()
} else if (!state.fw) {
cmds << zwave.versionV1.versionGet().format()
} else if (!state.codes) {
state.pollCode = 1
cmds << secure(zwave.userCodeV1.usersNumberGet())
} else if (state.pollCode && state.pollCode <= state.codes) {
cmds << requestCode(state.pollCode)
} else if (!state.lastbatt || (new Date().time) - state.lastbatt > 53*60*60*1000) {
cmds << secure(zwave.batteryV1.batteryGet())
} else if (!state.enc) {
encryptCodes()
state.enc = 1
}
}
log.debug "poll is sending ${cmds.inspect()}"
device.activity()
cmds ?: null
}
private def encryptCodes() {
def keys = new ArrayList(state.keySet().findAll { it.startsWith("code") })
keys.each { key ->
def match = (key =~ /^code(\d+)$/)
if (match) try {
def keynum = match[0][1].toInteger()
if (keynum > 30 && !state[key]) {
state.remove(key)
} else if (state[key] && !state[key].startsWith("~")) {
log.debug "encrypting $key: ${state[key].inspect()}"
state[key] = encrypt(state[key])
}
} catch (java.lang.NumberFormatException e) { }
}
}
@@ -651,7 +672,7 @@ private Boolean secondsPast(timestamp, seconds) {
return true
}
}
return (now() - timestamp) > (seconds * 1000)
return (new Date().time - timestamp) > (seconds * 1000)
}
private allCodesDeleted() {

View File

@@ -115,10 +115,6 @@ def strobe() {
]
}
def both() {
on()
}
def refresh() {
log.debug "sending battery refresh command"
zwave.batteryV1.batteryGet().format()

View File

@@ -1,124 +0,0 @@
/**
* Copyright 2015 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.
*
*/
metadata {
definition (name: "Z-Wave Water Valve", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Valve"
capability "Polling"
capability "Refresh"
capability "Sensor"
fingerprint deviceId: "0x1006", inClusters: "0x25"
}
// simulator metadata
simulator {
status "open": "command: 2503, payload: FF"
status "close": "command: 2503, payload: 00"
// reply messages
reply "2001FF,delay 100,2502": "command: 2503, payload: FF"
reply "200100,delay 100,2502": "command: 2503, payload: 00"
}
// tile definitions
tiles(scale: 2) {
multiAttributeTile(name:"valve", type: "generic", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.contact", key: "PRIMARY_CONTROL") {
attributeState "open", label: '${name}', action: "valve.close", icon: "st.valves.water.open", backgroundColor: "#53a7c0", nextState:"closing"
attributeState "closed", label: '${name}', action: "valve.open", icon: "st.valves.water.closed", backgroundColor: "#e86d13", nextState:"opening"
attributeState "opening", label: '${name}', action: "valve.close", icon: "st.valves.water.open", backgroundColor: "#ffe71e"
attributeState "closing", label: '${name}', action: "valve.open", icon: "st.valves.water.closed", backgroundColor: "#ffe71e"
}
}
standardTile("refresh", "device.contact", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
state "default", label:'', action:"refresh.refresh", icon:"st.secondary.refresh"
}
main "valve"
details(["valve","refresh"])
}
}
def updated() {
response(refresh())
}
def parse(String description) {
log.trace "parse description : $description"
def result = null
def cmd = zwave.parse(description, [0x20: 1])
if (cmd) {
result = createEvent(zwaveEvent(cmd))
}
log.debug "Parse returned ${result?.descriptionText}"
return result
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicReport cmd) {
def value = cmd.value == 0xFF ? "open" : cmd.value == 0x00 ? "closed" : "unknown"
[name: "contact", value: value, descriptionText: "$device.displayName valve is $value"]
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd) { //TODO should show MSR when device is discovered
log.debug "manufacturerId: ${cmd.manufacturerId}"
log.debug "manufacturerName: ${cmd.manufacturerName}"
log.debug "productId: ${cmd.productId}"
log.debug "productTypeId: ${cmd.productTypeId}"
def msr = String.format("%04X-%04X-%04X", cmd.manufacturerId, cmd.productTypeId, cmd.productId)
updateDataValue("MSR", msr)
[descriptionText: "$device.displayName MSR: $msr", isStateChange: false]
}
def zwaveEvent(physicalgraph.zwave.commands.deviceresetlocallyv1.DeviceResetLocallyNotification cmd) {
[descriptionText: cmd.toString(), isStateChange: true, displayed: true]
}
def zwaveEvent(physicalgraph.zwave.commands.switchbinaryv1.SwitchBinaryReport cmd) {
def value = cmd.value == 0xFF ? "open" : cmd.value == 0x00 ? "closed" : "unknown"
[name: "contact", value: value, descriptionText: "$device.displayName valve is $value"]
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
[:] // Handles all Z-Wave commands we aren't interested in
}
def open() {
delayBetween([
zwave.basicV1.basicSet(value: 0xFF).format(),
zwave.switchBinaryV1.switchBinaryGet().format()
],10000) //wait for a water valve to be completely opened
}
def close() {
delayBetween([
zwave.basicV1.basicSet(value: 0x00).format(),
zwave.switchBinaryV1.switchBinaryGet().format()
],10000) //wait for a water valve to be completely closed
}
def poll() {
zwave.switchBinaryV1.switchBinaryGet().format()
}
def refresh() {
log.debug "refresh() is called"
def commands = [zwave.switchBinaryV1.switchBinaryGet().format()]
if (getDataValue("MSR") == null) {
commands << zwave.manufacturerSpecificV1.manufacturerSpecificGet().format()
}
delayBetween(commands,100)
}

View File

@@ -0,0 +1,48 @@
/**
* Switch Too
*
* Copyright 2015 Bob Florian
*
* 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 Too", author: "Bob Florian") {
capability "Switch"
}
simulator {
// TODO: define status and reply messages here
}
tiles {
// TODO: define your main and details tiles here
}
}
// parse events into attributes
def parse(String description) {
log.debug "Parsing '${description}'"
// TODO: handle 'switch' attribute
}
// handle commands
def on() {
log.debug "Executing 'on'"
// TODO: handle 'on' command
}
def off() {
log.debug "Executing 'off'"
// TODO: handle 'off' command
}

View File

@@ -8,7 +8,6 @@ metadata {
definition (name: "Zen Thermostat", namespace: "zenwithin", author: "ZenWithin") {
capability "Actuator"
capability "Thermostat"
capability "Temperature Measurement"
capability "Configuration"
capability "Refresh"
capability "Sensor"

View File

@@ -20,8 +20,7 @@ definition(
description: "Use this free SmartApp in conjunction with the ObyThing Music app for your Mac to control and automate music and more with iTunes and SmartThings.",
category: "SmartThings Labs",
iconUrl: "http://obycode.com/obything/ObyThingSTLogo.png",
iconX2Url: "http://obycode.com/obything/ObyThingSTLogo@2x.png",
singleInstance: true)
iconX2Url: "http://obycode.com/obything/ObyThingSTLogo@2x.png")
preferences {

View File

@@ -22,8 +22,7 @@ definition(
category: "SmartThings Labs",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/Partner/netamo-icon-1.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Partner/netamo-icon-1%402x.png",
oauth: true,
singleInstance: true
oauth: true
){
appSetting "clientId"
appSetting "clientSecret"

View File

@@ -12,12 +12,7 @@
* 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.
*
* SmartThings data is sent from this SmartApp to Initial State. This is event data only for
* devices for which the user has authorized. Likewise, Initial State's services call this
* SmartApp on the user's behalf to configure Initial State specific parameters. The ToS and
* Privacy Policy for Initial State can be found here: https://www.initialstate.com/terms
*/
definition(
name: "Initial State Event Streamer",
namespace: "initialstate.events",
@@ -33,31 +28,32 @@ import groovy.json.JsonSlurper
preferences {
section("Choose which devices to monitor...") {
input "accelerometers", "capability.accelerationSensor", title: "Accelerometers", multiple: true, required: false
//input "accelerometers", "capability.accelerationSensor", title: "Accelerometers", multiple: true, required: false
input "alarms", "capability.alarm", title: "Alarms", multiple: true, required: false
input "batteries", "capability.battery", title: "Batteries", multiple: true, required: false
input "beacons", "capability.beacon", title: "Beacons", multiple: true, required: false
input "cos", "capability.carbonMonoxideDetector", title: "Carbon Monoxide Detectors", multiple: true, required: false
input "colors", "capability.colorControl", title: "Color Controllers", multiple: true, required: false
//input "batteries", "capability.battery", title: "Batteries", multiple: true, required: false
//input "beacons", "capability.beacon", title: "Beacons", multiple: true, required: false
//input "buttons", "capability.button", title: "Buttons", multiple: true, required: false
//input "cos", "capability.carbonMonoxideDetector", title: "Carbon Monoxide Detectors", multiple: true, required: false
//input "colors", "capability.colorControl", title: "Color Controllers", multiple: true, required: false
input "contacts", "capability.contactSensor", title: "Contact Sensors", multiple: true, required: false
input "doorsControllers", "capability.doorControl", title: "Door Controllers", multiple: true, required: false
input "energyMeters", "capability.energyMeter", title: "Energy Meters", multiple: true, required: false
input "illuminances", "capability.illuminanceMeasurement", title: "Illuminance Meters", multiple: true, required: false
//input "doorsControllers", "capability.doorControl", title: "Door Controllers", multiple: true, required: false
//input "energyMeters", "capability.energyMeter", title: "Energy Meters", multiple: true, required: false
//input "illuminances", "capability.illuminanceMeasurement", title: "Illuminance Meters", multiple: true, required: false
input "locks", "capability.lock", title: "Locks", multiple: true, required: false
input "motions", "capability.motionSensor", title: "Motion Sensors", multiple: true, required: false
input "musicPlayers", "capability.musicPlayer", title: "Music Players", multiple: true, required: false
input "powerMeters", "capability.powerMeter", title: "Power Meters", multiple: true, required: false
//input "musicPlayers", "capability.musicPlayer", title: "Music Players", multiple: true, required: false
//input "powerMeters", "capability.powerMeter", title: "Power Meters", multiple: true, required: false
input "presences", "capability.presenceSensor", title: "Presence Sensors", multiple: true, required: false
input "humidities", "capability.relativeHumidityMeasurement", title: "Humidity Meters", multiple: true, required: false
input "relaySwitches", "capability.relaySwitch", title: "Relay Switches", multiple: true, required: false
input "sleepSensors", "capability.sleepSensor", title: "Sleep Sensors", multiple: true, required: false
input "smokeDetectors", "capability.smokeDetector", title: "Smoke Detectors", multiple: true, required: false
input "peds", "capability.stepSensor", title: "Pedometers", multiple: true, required: false
//input "relaySwitches", "capability.relaySwitch", title: "Relay Switches", multiple: true, required: false
//input "sleepSensors", "capability.sleepSensor", title: "Sleep Sensors", multiple: true, required: false
//input "smokeDetectors", "capability.smokeDetector", title: "Smoke Detectors", multiple: true, required: false
//input "peds", "capability.stepSensor", title: "Pedometers", multiple: true, required: false
input "switches", "capability.switch", title: "Switches", multiple: true, required: false
input "switchLevels", "capability.switchLevel", title: "Switch Levels", multiple: true, required: false
input "temperatures", "capability.temperatureMeasurement", title: "Temperature Sensors", multiple: true, required: false
input "thermostats", "capability.thermostat", title: "Thermostats", multiple: true, required: false
input "valves", "capability.valve", title: "Valves", multiple: true, required: false
//input "valves", "capability.valve", title: "Valves", multiple: true, required: false
input "waterSensors", "capability.waterSensor", title: "Water Sensors", multiple: true, required: false
}
}
@@ -78,71 +74,77 @@ mappings {
}
def subscribeToEvents() {
if (accelerometers != null) {
/*if (accelerometers != null) {
subscribe(accelerometers, "acceleration", genericHandler)
}
}*/
if (alarms != null) {
subscribe(alarms, "alarm", genericHandler)
}
if (batteries != null) {
/*if (batteries != null) {
subscribe(batteries, "battery", genericHandler)
}
if (beacons != null) {
}*/
/*if (beacons != null) {
subscribe(beacons, "presence", genericHandler)
}
if (cos != null) {
}*/
/*
if (buttons != null) {
subscribe(buttons, "button", genericHandler)
}*/
/*if (cos != null) {
subscribe(cos, "carbonMonoxide", genericHandler)
}
if (colors != null) {
}*/
/*if (colors != null) {
subscribe(colors, "hue", genericHandler)
subscribe(colors, "saturation", genericHandler)
subscribe(colors, "color", genericHandler)
}
}*/
if (contacts != null) {
subscribe(contacts, "contact", genericHandler)
}
if (energyMeters != null) {
/*if (doorsControllers != null) {
subscribe(doorsControllers, "door", genericHandler)
}*/
/*if (energyMeters != null) {
subscribe(energyMeters, "energy", genericHandler)
}
if (illuminances != null) {
}*/
/*if (illuminances != null) {
subscribe(illuminances, "illuminance", genericHandler)
}
}*/
if (locks != null) {
subscribe(locks, "lock", genericHandler)
}
if (motions != null) {
subscribe(motions, "motion", genericHandler)
}
if (musicPlayers != null) {
/*if (musicPlayers != null) {
subscribe(musicPlayers, "status", genericHandler)
subscribe(musicPlayers, "level", genericHandler)
subscribe(musicPlayers, "trackDescription", genericHandler)
subscribe(musicPlayers, "trackData", genericHandler)
subscribe(musicPlayers, "mute", genericHandler)
}
if (powerMeters != null) {
}*/
/*if (powerMeters != null) {
subscribe(powerMeters, "power", genericHandler)
}
}*/
if (presences != null) {
subscribe(presences, "presence", genericHandler)
}
if (humidities != null) {
subscribe(humidities, "humidity", genericHandler)
}
if (relaySwitches != null) {
/*if (relaySwitches != null) {
subscribe(relaySwitches, "switch", genericHandler)
}
if (sleepSensors != null) {
}*/
/*if (sleepSensors != null) {
subscribe(sleepSensors, "sleeping", genericHandler)
}
if (smokeDetectors != null) {
}*/
/*if (smokeDetectors != null) {
subscribe(smokeDetectors, "smoke", genericHandler)
}
if (peds != null) {
}*/
/*if (peds != null) {
subscribe(peds, "steps", genericHandler)
subscribe(peds, "goal", genericHandler)
}
}*/
if (switches != null) {
subscribe(switches, "switch", genericHandler)
}
@@ -161,9 +163,9 @@ def subscribeToEvents() {
subscribe(thermostats, "thermostatFanMode", genericHandler)
subscribe(thermostats, "thermostatOperatingState", genericHandler)
}
if (valves != null) {
/*if (valves != null) {
subscribe(valves, "contact", genericHandler)
}
}*/
if (waterSensors != null) {
subscribe(waterSensors, "water", genericHandler)
}
@@ -171,23 +173,23 @@ def subscribeToEvents() {
def getAccessKey() {
log.trace "get access key"
if (atomicState.accessKey == null) {
if (state.accessKey == null) {
httpError(404, "Access Key Not Found")
} else {
[
accessKey: atomicState.accessKey
accessKey: state.accessKey
]
}
}
def getBucketKey() {
log.trace "get bucket key"
if (atomicState.bucketKey == null) {
if (state.bucketKey == null) {
httpError(404, "Bucket key Not Found")
} else {
[
bucketKey: atomicState.bucketKey,
bucketName: atomicState.bucketName
bucketKey: state.bucketKey,
bucketName: state.bucketName
]
}
}
@@ -200,94 +202,53 @@ def setBucketKey() {
log.debug "bucket name: $newBucketName"
log.debug "bucket key: $newBucketKey"
if (newBucketKey && (newBucketKey != atomicState.bucketKey || newBucketName != atomicState.bucketName)) {
atomicState.bucketKey = "$newBucketKey"
atomicState.bucketName = "$newBucketName"
atomicState.isBucketCreated = false
if (newBucketKey && (newBucketKey != state.bucketKey || newBucketName != state.bucketName)) {
state.bucketKey = "$newBucketKey"
state.bucketName = "$newBucketName"
state.isBucketCreated = false
}
tryCreateBucket()
}
def setAccessKey() {
log.trace "set access key"
def newAccessKey = request.JSON?.accessKey
def newGrokerSubdomain = request.JSON?.grokerSubdomain
if (newGrokerSubdomain && newGrokerSubdomain != "" && newGrokerSubdomain != atomicState.grokerSubdomain) {
atomicState.grokerSubdomain = "$newGrokerSubdomain"
atomicState.isBucketCreated = false
}
if (newAccessKey && newAccessKey != atomicState.accessKey) {
atomicState.accessKey = "$newAccessKey"
atomicState.isBucketCreated = false
if (newAccessKey && newAccessKey != state.accessKey) {
state.accessKey = "$newAccessKey"
state.isBucketCreated = false
}
}
def installed() {
atomicState.version = "1.0.18"
subscribeToEvents()
atomicState.isBucketCreated = false
atomicState.grokerSubdomain = "groker"
atomicState.eventBuffer = []
runEvery15Minutes(flushBuffer)
log.debug "installed (version $atomicState.version)"
state.isBucketCreated = false
}
def updated() {
atomicState.version = "1.0.18"
unsubscribe()
if (atomicState.bucketKey != null && atomicState.accessKey != null) {
atomicState.isBucketCreated = false
if (state.bucketKey != null && state.accessKey != null) {
state.isBucketCreated = false
}
if (atomicState.eventBuffer == null) {
atomicState.eventBuffer = []
}
if (atomicState.grokerSubdomain == null || atomicState.grokerSubdomain == "") {
atomicState.grokerSubdomain = "groker"
}
subscribeToEvents()
log.debug "updated (version $atomicState.version)"
}
def uninstalled() {
log.debug "uninstalled (version $atomicState.version)"
}
def createBucket() {
def tryCreateBucket() {
// can't ship events if there is no grokerSubdomain
if (atomicState.grokerSubdomain == null || atomicState.grokerSubdomain == "") {
log.error "streaming url is currently null"
return
}
// if the bucket has already been created, no need to continue
if (atomicState.isBucketCreated) {
return
}
if (!atomicState.bucketName) {
atomicState.bucketName = atomicState.bucketKey
if (!state.bucketName) {
state.bucketName = state.bucketKey
}
if (!atomicState.accessKey) {
return
}
def bucketName = "${atomicState.bucketName}"
def bucketKey = "${atomicState.bucketKey}"
def accessKey = "${atomicState.accessKey}"
def bucketName = "${state.bucketName}"
def bucketKey = "${state.bucketKey}"
def accessKey = "${state.accessKey}"
def bucketCreateBody = new JsonSlurper().parseText("{\"bucketKey\": \"$bucketKey\", \"bucketName\": \"$bucketName\"}")
def bucketCreatePost = [
uri: "https://${atomicState.grokerSubdomain}.initialstate.com/api/buckets",
uri: 'https://groker.initialstate.com/api/buckets',
headers: [
"Content-Type": "application/json",
"X-IS-AccessKey": accessKey
@@ -297,20 +258,10 @@ def tryCreateBucket() {
log.debug bucketCreatePost
try {
// Create a bucket on Initial State so the data has a logical grouping
httpPostJson(bucketCreatePost) { resp ->
log.debug "bucket posted"
if (resp.status >= 400) {
log.error "bucket not created successfully"
} else {
atomicState.isBucketCreated = true
}
}
} catch (e) {
log.error "bucket creation error: $e"
httpPostJson(bucketCreatePost) {
log.debug "bucket posted"
state.isBucketCreated = true
}
}
def genericHandler(evt) {
@@ -322,77 +273,33 @@ def genericHandler(evt) {
}
def value = "$evt.value"
tryCreateBucket()
eventHandler(key, value)
}
// This is a handler function for flushing the event buffer
// after a specified amount of time to reduce the load on ST servers
def flushBuffer() {
def eventBuffer = atomicState.eventBuffer
log.trace "About to flush the buffer on schedule"
if (eventBuffer != null && eventBuffer.size() > 0) {
atomicState.eventBuffer = []
tryShipEvents(eventBuffer)
}
}
def eventHandler(name, value) {
def epoch = now() / 1000
def eventBuffer = atomicState.eventBuffer ?: []
eventBuffer << [key: "$name", value: "$value", epoch: "$epoch"]
if (eventBuffer.size() >= 10) {
// Clear eventBuffer right away since we've already pulled it off of atomicState to reduce the risk of missing
// events. This assumes the grokerSubdomain, accessKey, and bucketKey are set correctly to avoid the eventBuffer
// from growing unbounded.
atomicState.eventBuffer = []
tryShipEvents(eventBuffer)
} else {
// Make sure we persist the updated eventBuffer with the new event added back to atomicState
atomicState.eventBuffer = eventBuffer
}
log.debug "Event added to buffer: " + eventBuffer
}
// a helper function for shipping the atomicState.eventBuffer to Initial State
def tryShipEvents(eventBuffer) {
def grokerSubdomain = atomicState.grokerSubdomain
// can't ship events if there is no grokerSubdomain
if (grokerSubdomain == null || grokerSubdomain == "") {
log.error "streaming url is currently null"
return
}
def accessKey = atomicState.accessKey
def bucketKey = atomicState.bucketKey
// can't ship if access key and bucket key are null, so finish trying
if (accessKey == null || bucketKey == null) {
if (state.accessKey == null || state.bucketKey == null) {
return
}
if (!state.isBucketCreated) {
createBucket()
}
def eventBody = new JsonSlurper().parseText("[{\"key\": \"$name\", \"value\": \"$value\"}]")
def eventPost = [
uri: "https://${grokerSubdomain}.initialstate.com/api/events",
uri: 'https://groker.initialstate.com/api/events',
headers: [
"Content-Type": "application/json",
"X-IS-BucketKey": "${bucketKey}",
"X-IS-AccessKey": "${accessKey}",
"Accept-Version": "0.0.2"
"X-IS-BucketKey": "${state.bucketKey}",
"X-IS-AccessKey": "${state.accessKey}"
],
body: eventBuffer
body: eventBody
]
try {
// post the events to initial state
httpPostJson(eventPost) { resp ->
log.debug "shipped events and got ${resp.status}"
if (resp.status >= 400) {
log.error "shipping failed... ${resp.data}"
}
}
} catch (e) {
log.error "shipping events failed: $e"
}
log.debug eventPost
httpPostJson(eventPost) {
log.debug "event data posted"
}
}

View File

@@ -13,11 +13,11 @@ definition(
iconUrl: "https://s3.amazonaws.com/smartapp-icons/Partner/jawbone-up.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Partner/jawbone-up@2x.png",
oauth: true,
usePreferencesForAuthorization: false,
singleInstance: true
usePreferencesForAuthorization: false
) {
appSetting "clientId"
appSetting "clientSecret"
appSetting "serverUrl"
}
preferences {
@@ -28,13 +28,16 @@ mappings {
path("/receivedToken") { action: [ POST: "receivedToken", GET: "receivedToken"] }
path("/receiveToken") { action: [ POST: "receiveToken", GET: "receiveToken"] }
path("/hookCallback") { action: [ POST: "hookEventHandler", GET: "hookEventHandler"] }
path("/oauth/initialize") {action: [GET: "oauthInitUrl"]}
path("/oauth/callback") { action: [ GET: "callback" ] }
}
def getServerUrl() { return "https://graph.api.smartthings.com" }
def getBuildRedirectUrl() { "${serverUrl}/oauth/initialize?appId=${app.id}&access_token=${state.accessToken}&apiServerUrl=${apiServerUrl}" }
def buildRedirectUrl(page) { return buildActionUrl(page) }
def getSmartThingsClientId() {
return appSettings.clientId
}
def getSmartThingsClientSecret() {
return appSettings.clientSecret
}
def callback() {
def redirectUrl = null
@@ -60,8 +63,9 @@ def callback() {
// SmartThings code, which we ignore, as we don't need to exchange for an access token.
// Instead, go initiate the Jawbone OAuth flow.
log.debug "Executing callback redirect to auth page"
def stcid = getSmartThingsClientId()
state.oauthInitState = UUID.randomUUID().toString()
def oauthParams = [response_type: "code", client_id: appSettings.clientId, scope: "move_read sleep_read", redirect_uri: "${serverUrl}/oauth/callback"]
def oauthParams = [response_type: "code", client_id: stcid, scope: "move_read sleep_read", redirect_uri: "${serverUrl}/oauth/callback"]
redirect(location: "https://jawbone.com/auth/oauth2/auth?${toQueryString(oauthParams)}")
}
} else {
@@ -80,11 +84,10 @@ def authPage() {
createAccessToken()
}
description = "Click to enter Jawbone Credentials"
def redirectUrl = buildRedirectUrl
log.debug "RedirectURL = ${redirectUrl}"
def donebutton= state.JawboneAccessToken != null
return dynamicPage(name: "Credentials", title: "Jawbone UP", nextPage: null, uninstall: true, install: donebutton) {
section { href url:redirectUrl, style:"embedded", required:true, title:"Jawbone UP", state: hast ,description:description }
def redirectUrl = oauthInitUrl()
// log.debug "RedirectURL = ${redirectUrl}"
return dynamicPage(name: "Credentials", title: "Jawbone UP", nextPage: null, uninstall: true, install:false) {
section { href url:redirectUrl, style:"embedded", required:true, title:"Jawbone UP", description:description }
}
} else {
description = "Jawbone Credentials Already Entered."
@@ -96,14 +99,17 @@ def authPage() {
def oauthInitUrl() {
log.debug "oauthInitUrl"
def stcid = getSmartThingsClientId()
state.oauthInitState = UUID.randomUUID().toString()
def oauthParams = [ response_type: "code", client_id: appSettings.clientId, scope: "move_read sleep_read", redirect_uri: "${serverUrl}/oauth/callback" ]
redirect(location: "https://jawbone.com/auth/oauth2/auth?${toQueryString(oauthParams)}")
def oauthParams = [ response_type: "code", client_id: stcid, scope: "move_read sleep_read", redirect_uri: buildRedirectUrl("receiveToken") ]
return "https://jawbone.com/auth/oauth2/auth?${toQueryString(oauthParams)}"
}
def receiveToken(redirectUrl = null) {
log.debug "receiveToken"
def oauthParams = [ client_id: appSettings.clientId, client_secret: appSettings.clientSecret, grant_type: "authorization_code", code: params.code ]
def stcid = getSmartThingsClientId()
def oauthClientSecret = getSmartThingsClientSecret()
def oauthParams = [ client_id: stcid, client_secret: oauthClientSecret, grant_type: "authorization_code", code: params.code ]
def params = [
uri: "https://jawbone.com/auth/oauth2/token?${toQueryString(oauthParams)}",
]
@@ -225,10 +231,18 @@ String toQueryString(Map m) {
return m.collect { k, v -> "${k}=${URLEncoder.encode(v.toString())}" }.sort().join("&")
}
def getServerUrl() { return appSettings.serverUrl ?: "https://graph.api.smartthings.com" }
def buildRedirectUrl(page) {
// log.debug "buildRedirectUrl"
// /api/token/:st_token/smartapps/installations/:id/something
return "${serverUrl}/api/token/${state.accessToken}/smartapps/installations/${app.id}/${page}"
}
def validateCurrentToken() {
log.debug "validateCurrentToken"
def url = "https://jawbone.com/nudge/api/v.1.1/users/@me/refreshToken"
def requestBody = "secret=${appSettings.clientSecret}"
def requestBody = "secret=${getSmartThingsClientSecret()}"
try {
httpPost(uri: url, headers: ["Authorization": "Bearer ${state.JawboneAccessToken}" ], body: requestBody) {response ->
@@ -242,7 +256,9 @@ def validateCurrentToken() {
if (e.statusCode == 401) { // token is expired
log.debug "Access token is expired"
if (state.refreshToken) { // if we have this we are okay
def oauthParams = [client_id: appSettings.clientId, client_secret: appSettings.clientSecret, grant_type: "refresh_token", refresh_token: state.refreshToken]
def stcid = getSmartThingsClientId()
def oauthClientSecret = getSmartThingsClientSecret()
def oauthParams = [client_id: stcid, client_secret: oauthClientSecret, grant_type: "refresh_token", refresh_token: state.refreshToken]
def tokenUrl = "https://jawbone.com/auth/oauth2/token?${toQueryString(oauthParams)}"
def params = [
uri: tokenUrl
@@ -271,10 +287,9 @@ def validateCurrentToken() {
}
def initialize() {
log.debug "Callback URL - Webhook"
def localServerUrl = getApiServerUrl()
def hookUrl = "${localServerUrl}/api/token/${state.accessToken}/smartapps/installations/${app.id}/hookCallback"
def webhook = "https://jawbone.com/nudge/api/v.1.1/users/@me/pubsub?webhook=$hookUrl"
def hookUrl = "${serverUrl}/api/token/${state.accessToken}/smartapps/installations/${app.id}/hookCallback"
def webhook = "https://jawbone.com/nudge/api/v.1.1/users/@me/pubsub?webhook=$hookUrl"
log.debug "Callback URL: $webhook"
httpPost(uri: webhook, headers: ["Authorization": "Bearer ${state.JawboneAccessToken}" ])
}
@@ -312,6 +327,7 @@ def setup() {
}
def installed() {
enableCallback()
if (!state.accessToken) {
log.debug "About to create access token"
@@ -324,6 +340,7 @@ def installed() {
}
def updated() {
enableCallback()
if (!state.accessToken) {
log.debug "About to create access token"
@@ -482,4 +499,4 @@ def hookEventHandler() {
def html = """{"code":200,"message":"OK"}"""
render contentType: 'application/json', data: html
}
}

View File

@@ -0,0 +1,53 @@
/**
*
* Lights On When Door Open After Sundown
*
* Based on "Turn It On When It Opens" by SmartThings
*
* Author: Aaron Crocco
*/
preferences {
section("When the door opens..."){
input "contact1", "capability.contactSensor", title: "Where?"
}
section("Turn on these lights..."){
input "switches", "capability.switch", multiple: true
}
section("and change mode to...") {
input "HomeAfterDarkMode", "mode", title: "Mode?"
}
}
def installed()
{
subscribe(contact1, "contact.open", contactOpenHandler)
}
def updated()
{
unsubscribe()
subscribe(contact1, "contact.open", contactOpenHandler)
}
def contactOpenHandler(evt) {
log.debug "$evt.value: $evt, $settings"
//Check current time to see if it's after sundown.
def s = getSunriseAndSunset(zipCode: zipCode, sunriseOffset: sunriseOffset, sunsetOffset: sunsetOffset)
def now = new Date()
def setTime = s.sunset
log.debug "Sunset is at $setTime. Current time is $now"
if (setTime.before(now)) { //Executes only if it's after sundown.
log.trace "Turning on switches: $switches"
switches.on()
log.trace "Changing house mode to $HomeAfterDarkMode"
setLocationMode(HomeAfterDarkMode)
sendPush("Welcome home! Changing mode to $HomeAfterDarkMode.")
}
}

View File

@@ -26,8 +26,7 @@ definition(
iconUrl: "http://i.imgur.com/HU0ANBp.png",
iconX2Url: "http://i.imgur.com/HU0ANBp.png",
iconX3Url: "http://i.imgur.com/HU0ANBp.png",
oauth: true,
singleInstance: true)
oauth: true)
preferences {

View File

@@ -1,389 +0,0 @@
/**
* Required PlantLink Connector
* This SmartApp forwards the raw data of the deviceType to myplantlink.com
* and returns it back to your device after calculating soil and plant type.
*
* Copyright 2015 Oso Technologies
*
* 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.
*
*/
import groovy.json.JsonBuilder
import java.util.regex.Matcher
import java.util.regex.Pattern
definition(
name: "PlantLink Connector",
namespace: "Osotech",
author: "Oso Technologies",
description: "This SmartApp connects to myplantlink.com and forwards the device data to it so it can calculate easy to read plant status for your specific plant's needs.",
category: "Convenience",
iconUrl: "https://dashboard.myplantlink.com/images/apple-touch-icon-76x76-precomposed.png",
iconX2Url: "https://dashboard.myplantlink.com/images/apple-touch-icon-120x120-precomposed.png",
iconX3Url: "https://dashboard.myplantlink.com/images/apple-touch-icon-152x152-precomposed.png"
) {
appSetting "client_id"
appSetting "client_secret"
appSetting "https_plantLinkServer"
}
preferences {
page(name: "auth", title: "Step 1 of 2", nextPage:"deviceList", content:"authPage")
page(name: "deviceList", title: "Step 2 of 2", install:true, uninstall:false){
section {
input "plantlinksensors", "capability.sensor", title: "Select PlantLink sensors", multiple: true
}
}
}
mappings {
path("/swapToken") {
action: [
GET: "swapToken"
]
}
}
def authPage(){
if(!atomicState.accessToken){
createAccessToken()
atomicState.accessToken = state.accessToken
}
def redirectUrl = oauthInitUrl()
def uninstallAllowed = false
def oauthTokenProvided = false
if(atomicState.authToken){
uninstallAllowed = true
oauthTokenProvided = true
}
if (!oauthTokenProvided) {
return dynamicPage(name: "auth", title: "Step 1 of 2", nextPage:null, uninstall:uninstallAllowed) {
section(){
href(name:"login",
url:redirectUrl,
style:"embedded",
title:"PlantLink",
image:"https://dashboard.myplantlink.com/images/PLlogo.png",
description:"Tap to login to myplantlink.com")
}
}
}else{
return dynamicPage(name: "auth", title: "Step 1 of 2 - Completed", nextPage:"deviceList", uninstall:uninstallAllowed) {
section(){
paragraph "You are logged in to myplantlink.com, tap next to continue", image: iconUrl
href(url:redirectUrl, title:"Or", description:"tap to switch accounts")
}
}
}
}
def installed() {
log.debug "Installed with settings: ${settings}"
initialize()
}
def updated() {
log.debug "Updated with settings: ${settings}"
unsubscribe()
initialize()
}
def uninstalled() {
if (plantlinksensors){
plantlinksensors.each{ sensor_device ->
sensor_device.setInstallSmartApp("needSmartApp")
}
}
}
def initialize() {
atomicState.attached_sensors = [:]
if (plantlinksensors){
subscribe(plantlinksensors, "moisture_status", moistureHandler)
subscribe(plantlinksensors, "battery_status", batteryHandler)
plantlinksensors.each{ sensor_device ->
sensor_device.setStatusIcon("Waiting on First Measurement")
sensor_device.setInstallSmartApp("connectedToSmartApp")
}
}
}
def dock_sensor(device_serial, expected_plant_name) {
def docking_body_json_builder = new JsonBuilder([version: '1c', smartthings_device_id: device_serial])
def docking_params = [
uri : appSettings.https_plantLinkServer,
path : "/api/v1/smartthings/links",
headers : ["Content-Type": "application/json", "Authorization": "Bearer ${atomicState.authToken}"],
contentType: "application/json",
body: docking_body_json_builder.toString()
]
def plant_post_body_map = [
plant_type_key: 999999,
soil_type_key : 1000004
]
def plant_post_params = [
uri : appSettings.https_plantLinkServer,
path : "/api/v1/plants",
headers : ["Content-Type": "application/json", "Authorization": "Bearer ${atomicState.authToken}"],
contentType: "application/json",
]
log.debug "Creating new plant on myplantlink.com - ${expected_plant_name}"
httpPost(docking_params) { docking_response ->
if (parse_api_response(docking_response, "Docking a link")) {
if (docking_response.data.plants.size() == 0) {
log.debug "creating plant for - ${expected_plant_name}"
plant_post_body_map["name"] = expected_plant_name
plant_post_body_map['links_key'] = [docking_response.data.key]
def plant_post_body_json_builder = new JsonBuilder(plant_post_body_map)
plant_post_params["body"] = plant_post_body_json_builder.toString()
httpPost(plant_post_params) { plant_post_response ->
if(parse_api_response(plant_post_response, 'creating plant')){
def attached_map = atomicState.attached_sensors
attached_map[device_serial] = plant_post_response.data
atomicState.attached_sensors = attached_map
}
}
} else {
def plant = docking_response.data.plants[0]
def attached_map = atomicState.attached_sensors
attached_map[device_serial] = plant
atomicState.attached_sensors = attached_map
checkAndUpdatePlantIfNeeded(plant, expected_plant_name)
}
}
}
return true
}
def checkAndUpdatePlantIfNeeded(plant, expected_plant_name){
def plant_put_params = [
uri : appSettings.https_plantLinkServer,
headers : ["Content-Type": "application/json", "Authorization": "Bearer ${atomicState.authToken}"],
contentType : "application/json"
]
if (plant.name != expected_plant_name) {
log.debug "updating plant for - ${expected_plant_name}"
plant_put_params["path"] = "/api/v1/plants/${plant.key}"
def plant_put_body_map = [
name: expected_plant_name
]
def plant_put_body_json_builder = new JsonBuilder(plant_put_body_map)
plant_put_params["body"] = plant_put_body_json_builder.toString()
httpPut(plant_put_params) { plant_put_response ->
parse_api_response(plant_put_response, 'updating plant name')
}
}
}
def moistureHandler(event){
def expected_plant_name = "SmartThings - ${event.displayName}"
def device_serial = getDeviceSerialFromEvent(event)
if (!atomicState.attached_sensors.containsKey(device_serial)){
dock_sensor(device_serial, expected_plant_name)
}else{
def measurement_post_params = [
uri: appSettings.https_plantLinkServer,
path: "/api/v1/smartthings/links/${device_serial}/measurements",
headers: ["Content-Type": "application/json", "Authorization": "Bearer ${atomicState.authToken}"],
contentType: "application/json",
body: event.value
]
httpPost(measurement_post_params) { measurement_post_response ->
if (parse_api_response(measurement_post_response, 'creating moisture measurement') &&
measurement_post_response.data.size() >0){
def measurement = measurement_post_response.data[0]
def plant = measurement.plant
log.debug plant
checkAndUpdatePlantIfNeeded(plant, expected_plant_name)
plantlinksensors.each{ sensor_device ->
if (sensor_device.id == event.deviceId){
sensor_device.setStatusIcon(plant.status)
if (plant.last_measurements && plant.last_measurements[0].moisture){
sensor_device.setPlantFuelLevel(plant.last_measurements[0].moisture * 100 as int)
}
if (plant.last_measurements && plant.last_measurements[0].battery){
sensor_device.setBatteryLevel(plant.last_measurements[0].battery * 100 as int)
}
}
}
}
}
}
}
def batteryHandler(event){
def expected_plant_name = "SmartThings - ${event.displayName}"
def device_serial = getDeviceSerialFromEvent(event)
if (!atomicState.attached_sensors.containsKey(device_serial)){
dock_sensor(device_serial, expected_plant_name)
}else{
def measurement_post_params = [
uri: appSettings.https_plantLinkServer,
path: "/api/v1/smartthings/links/${device_serial}/measurements",
headers: ["Content-Type": "application/json", "Authorization": "Bearer ${atomicState.authToken}"],
contentType: "application/json",
body: event.value
]
httpPost(measurement_post_params) { measurement_post_response ->
parse_api_response(measurement_post_response, 'creating battery measurement')
}
}
}
def getDeviceSerialFromEvent(event){
def pattern = /.*"zigbeedeviceid"\s*:\s*"(\w+)".*/
def match_result = (event.value =~ pattern)
return match_result[0][1]
}
def oauthInitUrl(){
atomicState.oauthInitState = UUID.randomUUID().toString()
def oauthParams = [
response_type: "code",
client_id: appSettings.client_id,
state: atomicState.oauthInitState,
redirect_uri: buildRedirectUrl()
]
return appSettings.https_plantLinkServer + "/oauth/oauth2/authorize?" + toQueryString(oauthParams)
}
def buildRedirectUrl(){
return getServerUrl() + "/api/token/${atomicState.accessToken}/smartapps/installations/${app.id}/swapToken"
}
def swapToken(){
def code = params.code
def oauthState = params.state
def stcid = appSettings.client_id
def postParams = [
method: 'POST',
uri: "https://oso-tech.appspot.com",
path: "/api/v1/oauth-token",
query: [grant_type:'authorization_code', code:params.code, client_id:stcid,
client_secret:appSettings.client_secret, redirect_uri: buildRedirectUrl()],
]
def jsonMap
httpPost(postParams) { resp ->
jsonMap = resp.data
}
atomicState.refreshToken = jsonMap.refresh_token
atomicState.authToken = jsonMap.access_token
def html = """
<html>
<head>
<meta name="viewport" content="width=device-width, initial-scale=1">
<style>
.container {
padding:25px;
}
.flex1 {
width:33%;
float:left;
text-align: center;
}
p {
font-size: 2em;
font-family: Verdana, Geneva, sans-serif;
text-align: center;
color: #777;
}
</style>
</head>
<body>
<div class="container">
<div class="flex1"><img src="https://dashboard.myplantlink.com/images/PLlogo.png" alt="PlantLink" height="75"/></div>
<div class="flex1"><img src="https://s3.amazonaws.com/smartapp-icons/Partner/support/connected-device-icn%402x.png" alt="connected to" height="25" style="padding-top:25px;" /></div>
<div class="flex1"><img src="https://s3.amazonaws.com/smartapp-icons/Partner/support/st-logo%402x.png" alt="SmartThings" height="75"/></div>
<br clear="all">
</div>
<div class="container">
<p>Your PlantLink Account is now connected to SmartThings!</p>
<p style="color:green;">Click <strong>Done</strong> at the top right to finish setup.</p>
</div>
</body>
</html>
"""
render contentType: 'text/html', data: html
}
private refreshAuthToken() {
def stcid = appSettings.client_id
def refreshParams = [
method: 'POST',
uri: "https://hardware-dot-oso-tech.appspot.com",
path: "/api/v1/oauth-token",
query: [grant_type:'refresh_token', code:"${atomicState.refreshToken}", client_id:stcid,
client_secret:appSettings.client_secret],
]
try{
def jsonMap
httpPost(refreshParams) { resp ->
if(resp.status == 200){
log.debug "OAuth Token refreshed"
jsonMap = resp.data
if (resp.data) {
atomicState.refreshToken = resp?.data?.refresh_token
atomicState.authToken = resp?.data?.access_token
if (data?.action && data?.action != "") {
log.debug data.action
"{data.action}"()
data.action = ""
}
}
data.action = ""
}else{
log.debug "refresh failed ${resp.status} : ${resp.status.code}"
}
}
}
catch(Exception e){
log.debug "caught exception refreshing auth token: " + e
}
}
def parse_api_response(resp, message) {
if (resp.status == 200) {
return true
} else {
log.error "sent ${message} Json & got http status ${resp.status} - ${resp.status.code}"
if (resp.status == 401) {
refreshAuthToken()
return false
} else {
debugEvent("Authentication error, invalid authentication method, lack of credentials, etc.", true)
return false
}
}
}
def getServerUrl() {
return "https://graph.api.smartthings.com"
}
def debugEvent(message, displayEvent) {
def results = [
name: "appdebug",
descriptionText: message,
displayed: displayEvent
]
log.debug "Generating AppDebug Event: ${results}"
sendEvent (results)
}
def toQueryString(Map m){
return m.collect { k, v -> "${k}=${URLEncoder.encode(v.toString())}" }.sort().join("&")
}

View File

@@ -14,8 +14,8 @@
*
*/
definition(
name: "Smart Auto Lock / Unlock",
namespace: "smart-auto-lock-unlock",
name: "Smart Lock / Unlock",
namespace: "",
author: "Arnaud",
description: "Automatically locks door X minutes after being closed and keeps door unlocked if door is open.",
category: "Safety & Security",

View File

@@ -1,607 +0,0 @@
/**
* Bose SoundTouch (Connect)
*
* Copyright 2015 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.
*
*/
definition(
name: "Bose SoundTouch (Connect)",
namespace: "smartthings",
author: "SmartThings",
description: "Control your Bose SoundTouch speakers",
category: "SmartThings Labs",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience@2x.png",
iconX3Url: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience@2x.png",
singleInstance: true
)
preferences {
page(name:"deviceDiscovery", title:"Device Setup", content:"deviceDiscovery", refreshTimeout:5)
}
/**
* Get the urn that we're looking for
*
* @return URN which we are looking for
*
* @todo This + getUSNQualifier should be one and should use regular expressions
*/
def getDeviceType() {
return "urn:schemas-upnp-org:device:MediaRenderer:1" // Bose
}
/**
* If not null, returns an additional qualifier for ssdUSN
* to avoid spamming the network
*
* @return Additional qualifier OR null if not needed
*/
def getUSNQualifier() {
return "uuid:BO5EBO5E-F00D-F00D-FEED-"
}
/**
* Get the name of the new device to instantiate in the user's smartapps
* This must be an app owned by the namespace (see #getNameSpace).
*
* @return name
*/
def getDeviceName() {
return "Bose SoundTouch"
}
/**
* Returns the namespace this app and siblings use
*
* @return namespace
*/
def getNameSpace() {
return "smartthings"
}
/**
* The deviceDiscovery page used by preferences. Will automatically
* make calls to the underlying discovery mechanisms as well as update
* whenever new devices are discovered AND verified.
*
* @return a dynamicPage() object
*/
def deviceDiscovery()
{
if(canInstallLabs())
{
def refreshInterval = 3 // Number of seconds between refresh
int deviceRefreshCount = !state.deviceRefreshCount ? 0 : state.deviceRefreshCount as int
state.deviceRefreshCount = deviceRefreshCount + refreshInterval
def devices = getSelectableDevice()
def numFound = devices.size() ?: 0
// Make sure we get location updates (contains LAN data such as SSDP results, etc)
subscribeNetworkEvents()
//device discovery request every 15s
if((deviceRefreshCount % 15) == 0) {
discoverDevices()
}
// Verify request every 3 seconds except on discoveries
if(((deviceRefreshCount % 3) == 0) && ((deviceRefreshCount % 15) != 0)) {
verifyDevices()
}
log.trace "Discovered devices: ${devices}"
return dynamicPage(name:"deviceDiscovery", title:"Discovery Started!", nextPage:"", refreshInterval:refreshInterval, install:true, uninstall: true) {
section("Please wait while we discover your ${getDeviceName()}. Discovery can take five minutes or more, so sit back and relax! Select your device below once discovered.") {
input "selecteddevice", "enum", required:false, title:"Select ${getDeviceName()} (${numFound} found)", multiple:true, options:devices
}
}
}
else
{
def upgradeNeeded = """To use SmartThings Labs, your Hub should be completely up to date.
To update your Hub, access Location Settings in the Main Menu (tap the gear next to your location name), select your Hub, and choose "Update Hub"."""
return dynamicPage(name:"deviceDiscovery", title:"Upgrade needed!", nextPage:"", install:true, uninstall: true) {
section("Upgrade") {
paragraph "$upgradeNeeded"
}
}
}
}
/**
* Called by SmartThings Cloud when user has selected device(s) and
* pressed "Install".
*/
def installed() {
log.trace "Installed with settings: ${settings}"
initialize()
}
/**
* Called by SmartThings Cloud when app has been updated
*/
def updated() {
log.trace "Updated with settings: ${settings}"
unsubscribe()
initialize()
}
/**
* Called by SmartThings Cloud when user uninstalls the app
*
* We don't need to manually do anything here because any children
* are automatically removed upon the removal of the parent.
*
* Only time to do anything here is when you need to notify
* the remote end. And even then you're discouraged from removing
* the children manually.
*/
def uninstalled() {
}
/**
* If user has selected devices, will start monitoring devices
* for changes (new address, port, etc...)
*/
def initialize() {
log.trace "initialize()"
state.subscribe = false
if (selecteddevice) {
addDevice()
refreshDevices()
subscribeNetworkEvents(true)
}
}
/**
* Adds the child devices based on the user's selection
*
* Uses selecteddevice defined in the deviceDiscovery() page
*/
def addDevice(){
def devices = getVerifiedDevices()
def devlist
log.trace "Adding childs"
// If only one device is selected, we don't get a list (when using simulator)
if (!(selecteddevice instanceof List)) {
devlist = [selecteddevice]
} else {
devlist = selecteddevice
}
log.trace "These are being installed: ${devlist}"
devlist.each { dni ->
def d = getChildDevice(dni)
if(!d) {
def newDevice = devices.find { (it.value.mac) == dni }
def deviceName = newDevice?.value.name
if (!deviceName)
deviceName = getDeviceName() + "[${newDevice?.value.name}]"
d = addChildDevice(getNameSpace(), getDeviceName(), dni, newDevice?.value.hub, [label:"${deviceName}"])
d.boseSetDeviceID(newDevice.value.deviceID)
log.trace "Created ${d.displayName} with id $dni"
} else {
log.trace "${d.displayName} with id $dni already exists"
}
}
}
/**
* Resolves a DeviceNetworkId to an address. Primarily used by children
*
* @param dni Device Network id
* @return address or null
*/
def resolveDNI2Address(dni) {
def device = getVerifiedDevices().find { (it.value.mac) == dni }
if (device) {
return convertHexToIP(device.value.networkAddress)
}
return null
}
/**
* Joins a child to the "Play Everywhere" zone
*
* @param child The speaker joining the zone
* @return A list of maps with POST data
*/
def boseZoneJoin(child) {
log = child.log // So we can debug this function
def results = []
def result = [:]
// Find the master (if any)
def server = getChildDevices().find{ it.boseGetZone() == "server" }
if (server) {
log.debug "boseJoinZone() We have a server already, so lets add the new speaker"
child.boseSetZone("client")
result['endpoint'] = "/setZone"
result['host'] = server.getDeviceIP() + ":8090"
result['body'] = "<zone master=\"${server.boseGetDeviceID()}\" senderIPAddress=\"${server.getDeviceIP()}\">"
getChildDevices().each{ it ->
log.trace "child: " + child
log.trace "zone : " + it.boseGetZone()
if (it.boseGetZone() || it.boseGetDeviceID() == child.boseGetDeviceID())
result['body'] = result['body'] + "<member ipaddress=\"${it.getDeviceIP()}\">${it.boseGetDeviceID()}</member>"
}
result['body'] = result['body'] + '</zone>'
} else {
log.debug "boseJoinZone() No server, add it!"
result['endpoint'] = "/setZone"
result['host'] = child.getDeviceIP() + ":8090"
result['body'] = "<zone master=\"${child.boseGetDeviceID()}\" senderIPAddress=\"${child.getDeviceIP()}\">"
result['body'] = result['body'] + "<member ipaddress=\"${child.getDeviceIP()}\">${child.boseGetDeviceID()}</member>"
result['body'] = result['body'] + '</zone>'
child.boseSetZone("server")
}
results << result
return results
}
def boseZoneReset() {
getChildDevices().each{ it.boseSetZone(null) }
}
def boseZoneHasMaster() {
return getChildDevices().find{ it.boseGetZone() == "server" } != null
}
/**
* Removes a speaker from the play everywhere zone.
*
* @param child Which speaker is leaving
* @return a list of maps with POST data
*/
def boseZoneLeave(child) {
log = child.log // So we can debug this function
def results = []
def result = [:]
// First, tag us as a non-member
child.boseSetZone(null)
// Find the master (if any)
def server = getChildDevices().find{ it.boseGetZone() == "server" }
if (server && server.boseGetDeviceID() != child.boseGetDeviceID()) {
log.debug "boseLeaveZone() We have a server, so tell him we're leaving"
result['endpoint'] = "/removeZoneSlave"
result['host'] = server.getDeviceIP() + ":8090"
result['body'] = "<zone master=\"${server.boseGetDeviceID()}\" senderIPAddress=\"${server.getDeviceIP()}\">"
result['body'] = result['body'] + "<member ipaddress=\"${child.getDeviceIP()}\">${child.boseGetDeviceID()}</member>"
result['body'] = result['body'] + '</zone>'
results << result
} else {
log.debug "boseLeaveZone() No server, then...uhm, we probably were it!"
// Dismantle the entire thing, first send this to master
result['endpoint'] = "/removeZoneSlave"
result['host'] = child.getDeviceIP() + ":8090"
result['body'] = "<zone master=\"${child.boseGetDeviceID()}\" senderIPAddress=\"${child.getDeviceIP()}\">"
getChildDevices().each{ dev ->
if (dev.boseGetZone() || dev.boseGetDeviceID() == child.boseGetDeviceID())
result['body'] = result['body'] + "<member ipaddress=\"${dev.getDeviceIP()}\">${dev.boseGetDeviceID()}</member>"
}
result['body'] = result['body'] + '</zone>'
results << result
// Also issue this to each individual client
getChildDevices().each{ dev ->
if (dev.boseGetZone() && dev.boseGetDeviceID() != child.boseGetDeviceID()) {
log.trace "Additional device: " + dev
result['host'] = dev.getDeviceIP() + ":8090"
results << result
}
}
}
return results
}
/**
* Define our XML parsers
*
* @return mapping of root-node <-> parser function
*/
def getParsers() {
[
"root" : "parseDESC",
"info" : "parseINFO"
]
}
/**
* Called when location has changed, contains information from
* network transactions. See deviceDiscovery() for where it is
* registered.
*
* @param evt Holds event information
*/
def onLocation(evt) {
// Convert the event into something we can use
def lanEvent = parseLanMessage(evt.description, true)
lanEvent << ["hub":evt?.hubId]
// Determine what we need to do...
if (lanEvent?.ssdpTerm?.contains(getDeviceType()) &&
(getUSNQualifier() == null ||
lanEvent?.ssdpUSN?.contains(getUSNQualifier())
)
)
{
parseSSDP(lanEvent)
}
else if (
lanEvent.headers && lanEvent.body &&
lanEvent.headers."content-type".contains("xml")
)
{
def parsers = getParsers()
def xmlData = new XmlSlurper().parseText(lanEvent.body)
// Let each parser take a stab at it
parsers.each { node,func ->
if (xmlData.name() == node)
"$func"(xmlData)
}
}
}
/**
* Handles SSDP description file.
*
* @param xmlData
*/
private def parseDESC(xmlData) {
log.info "parseDESC()"
def devicetype = getDeviceType().toLowerCase()
def devicetxml = body.device.deviceType.text().toLowerCase()
// Make sure it's the type we want
if (devicetxml == devicetype) {
def devices = getDevices()
def device = devices.find {it?.key?.contains(xmlData?.device?.UDN?.text())}
if (device && !device.value?.verified) {
// Unlike regular DESC, we cannot trust this just yet, parseINFO() decides all
device.value << [name:xmlData?.device?.friendlyName?.text(),model:xmlData?.device?.modelName?.text(), serialNumber:xmlData?.device?.serialNum?.text()]
} else {
log.error "parseDESC(): The xml file returned a device that didn't exist"
}
}
}
/**
* Handle BOSE <info></info> result. This is an alternative to
* using the SSDP description standard. Some of the speakers do
* not support SSDP description, so we need this as well.
*
* @param xmlData
*/
private def parseINFO(xmlData) {
log.info "parseINFO()"
def devicetype = getDeviceType().toLowerCase()
def deviceID = xmlData.attributes()['deviceID']
def device = getDevices().find {it?.key?.contains(deviceID)}
if (device && !device.value?.verified) {
device.value << [name:xmlData?.name?.text(),model:xmlData?.type?.text(), serialNumber:xmlData?.serialNumber?.text(), "deviceID":deviceID, verified: true]
}
}
/**
* Handles SSDP discovery messages and adds them to the list
* of discovered devices. If it already exists, it will update
* the port and location (in case it was moved).
*
* @param lanEvent
*/
def parseSSDP(lanEvent) {
//SSDP DISCOVERY EVENTS
def USN = lanEvent.ssdpUSN.toString()
def devices = getDevices()
if (!(devices."${USN}")) {
//device does not exist
log.trace "parseSDDP() Adding Device \"${USN}\" to known list"
devices << ["${USN}":lanEvent]
} else {
// update the values
def d = devices."${USN}"
if (d.networkAddress != lanEvent.networkAddress || d.deviceAddress != lanEvent.deviceAddress) {
log.trace "parseSSDP() Updating device location (ip & port)"
d.networkAddress = lanEvent.networkAddress
d.deviceAddress = lanEvent.deviceAddress
}
}
}
/**
* Generates a Map object which can be used with a preference page
* to represent a list of devices detected and verified.
*
* @return Map with zero or more devices
*/
Map getSelectableDevice() {
def devices = getVerifiedDevices()
def map = [:]
devices.each {
def value = "${it.value.name}"
def key = it.value.mac
map["${key}"] = value
}
map
}
/**
* Starts the refresh loop, making sure to keep us up-to-date with changes
*
*/
private refreshDevices() {
discoverDevices()
verifyDevices()
runIn(300, "refreshDevices")
}
/**
* Starts a subscription for network events
*
* @param force If true, will unsubscribe and subscribe if necessary (Optional, default false)
*/
private subscribeNetworkEvents(force=false) {
if (force) {
unsubscribe()
state.subscribe = false
}
if(!state.subscribe) {
subscribe(location, null, onLocation, [filterEvents:false])
state.subscribe = true
}
}
/**
* Issues a SSDP M-SEARCH over the LAN for a specific type (see getDeviceType())
*/
private discoverDevices() {
log.trace "discoverDevice() Issuing SSDP request"
sendHubCommand(new physicalgraph.device.HubAction("lan discovery ${getDeviceType()}", physicalgraph.device.Protocol.LAN))
}
/**
* Walks through the list of unverified devices and issues a verification
* request for each of them (basically calling verifyDevice() per unverified)
*/
private verifyDevices() {
def devices = getDevices().findAll { it?.value?.verified != true }
devices.each {
verifyDevice(
it?.value?.mac,
convertHexToIP(it?.value?.networkAddress),
convertHexToInt(it?.value?.deviceAddress),
it?.value?.ssdpPath
)
}
}
/**
* Verify the device, in this case, we need to obtain the info block which
* holds information such as the actual mac to use in certain scenarios.
*
* Without this mac (henceforth referred to as deviceID), we can't do multi-speaker
* functions.
*
* @param deviceNetworkId The DNI of the device
* @param ip The address of the device on the network (not the same as DNI)
* @param port The port to use (0 will be treated as invalid and will use 80)
* @param devicessdpPath The URL path (for example, /desc)
*
* @note Result is captured in locationHandler()
*/
private verifyDevice(String deviceNetworkId, String ip, int port, String devicessdpPath) {
if(ip) {
def address = ip + ":8090"
sendHubCommand(new physicalgraph.device.HubAction([
method: "GET",
path: "/info",
headers: [
HOST: address,
]]))
} else {
log.warn("verifyDevice() IP address was empty")
}
}
/**
* Returns an array of devices which have been verified
*
* @return array of verified devices
*/
def getVerifiedDevices() {
getDevices().findAll{ it?.value?.verified == true }
}
/**
* Returns all discovered devices or an empty array if none
*
* @return array of devices
*/
def getDevices() {
state.devices = state.devices ?: [:]
}
/**
* Converts a hexadecimal string to an integer
*
* @param hex The string with a hexadecimal value
* @return An integer
*/
private Integer convertHexToInt(hex) {
Integer.parseInt(hex,16)
}
/**
* Converts an IP address represented as 0xAABBCCDD to AAA.BBB.CCC.DDD
*
* @param hex Address represented in hex
* @return String containing normal IPv4 dot notation
*/
private String convertHexToIP(hex) {
if (hex)
[convertHexToInt(hex[0..1]),convertHexToInt(hex[2..3]),convertHexToInt(hex[4..5]),convertHexToInt(hex[6..7])].join(".")
else
hex
}
/**
* Tests if this setup can support SmarthThing Labs items
*
* @return true if it supports it.
*/
private Boolean canInstallLabs()
{
return hasAllHubsOver("000.011.00603")
}
/**
* Tests if the firmwares on all hubs owned by user match or exceed the
* provided version number.
*
* @param desiredFirmware The version that must match or exceed
* @return true if hub has same or newer
*/
private Boolean hasAllHubsOver(String desiredFirmware)
{
return realHubFirmwareVersions.every { fw -> fw >= desiredFirmware }
}
/**
* Creates a list of firmware version for every hub the user has
*
* @return List of firmwares
*/
private List getRealHubFirmwareVersions()
{
return location.hubs*.firmwareVersionString.findAll { it }
}

View File

@@ -1,341 +0,0 @@
/**
* Copyright 2015 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.
*
* Bose® SoundTouch® Control
*
* Author: SmartThings & Joe Geiger
*
* Date: 2015-30-09
*/
definition(
name: "Bose® SoundTouch® Control",
namespace: "smartthings",
author: "SmartThings & Joe Geiger",
description: "Control your Bose® SoundTouch® when certain actions take place in your home.",
category: "SmartThings Labs",
iconUrl: "https://d3azp77rte0gip.cloudfront.net/smartapps/fcf1d93a-ba0b-4324-b96f-e5b5487dfaf5/images/BoseST_icon.png",
iconX2Url: "https://d3azp77rte0gip.cloudfront.net/smartapps/fcf1d93a-ba0b-4324-b96f-e5b5487dfaf5/images/BoseST_icon@2x.png",
iconX3Url: "https://d3azp77rte0gip.cloudfront.net/smartapps/fcf1d93a-ba0b-4324-b96f-e5b5487dfaf5/images/BoseST_icon@2x-1.png"
)
preferences {
page(name: "mainPage", title: "Control your Bose® SoundTouch® when something happens", install: true, uninstall: true)
page(name: "timeIntervalInput", title: "Only during a certain time") {
section {
input "starting", "time", title: "Starting", required: false
input "ending", "time", title: "Ending", required: false
}
}
}
def mainPage() {
dynamicPage(name: "mainPage") {
def anythingSet = anythingSet()
if (anythingSet) {
section("When..."){
ifSet "motion", "capability.motionSensor", title: "Motion Here", required: false, multiple: true
ifSet "contact", "capability.contactSensor", title: "Contact Opens", required: false, multiple: true
ifSet "contactClosed", "capability.contactSensor", title: "Contact Closes", required: false, multiple: true
ifSet "acceleration", "capability.accelerationSensor", title: "Acceleration Detected", required: false, multiple: true
ifSet "mySwitch", "capability.switch", title: "Switch Turned On", required: false, multiple: true
ifSet "mySwitchOff", "capability.switch", title: "Switch Turned Off", required: false, multiple: true
ifSet "arrivalPresence", "capability.presenceSensor", title: "Arrival Of", required: false, multiple: true
ifSet "departurePresence", "capability.presenceSensor", title: "Departure Of", required: false, multiple: true
ifSet "smoke", "capability.smokeDetector", title: "Smoke Detected", required: false, multiple: true
ifSet "water", "capability.waterSensor", title: "Water Sensor Wet", required: false, multiple: true
ifSet "button1", "capability.button", title: "Button Press", required:false, multiple:true //remove from production
ifSet "triggerModes", "mode", title: "System Changes Mode", required: false, multiple: true
ifSet "timeOfDay", "time", title: "At a Scheduled Time", required: false
}
}
section(anythingSet ? "Select additional triggers" : "When...", hideable: anythingSet, hidden: true){
ifUnset "motion", "capability.motionSensor", title: "Motion Here", required: false, multiple: true
ifUnset "contact", "capability.contactSensor", title: "Contact Opens", required: false, multiple: true
ifUnset "contactClosed", "capability.contactSensor", title: "Contact Closes", required: false, multiple: true
ifUnset "acceleration", "capability.accelerationSensor", title: "Acceleration Detected", required: false, multiple: true
ifUnset "mySwitch", "capability.switch", title: "Switch Turned On", required: false, multiple: true
ifUnset "mySwitchOff", "capability.switch", title: "Switch Turned Off", required: false, multiple: true
ifUnset "arrivalPresence", "capability.presenceSensor", title: "Arrival Of", required: false, multiple: true
ifUnset "departurePresence", "capability.presenceSensor", title: "Departure Of", required: false, multiple: true
ifUnset "smoke", "capability.smokeDetector", title: "Smoke Detected", required: false, multiple: true
ifUnset "water", "capability.waterSensor", title: "Water Sensor Wet", required: false, multiple: true
ifUnset "button1", "capability.button", title: "Button Press", required:false, multiple:true //remove from production
ifUnset "triggerModes", "mode", title: "System Changes Mode", required: false, multiple: true
ifUnset "timeOfDay", "time", title: "At a Scheduled Time", required: false
}
section("Perform this action"){
input "actionType", "enum", title: "Action?", required: true, defaultValue: "play", options: [
"Turn On & Play",
"Turn Off",
"Toggle Play/Pause",
"Skip to Next Track",
"Skip to Beginning/Previous Track",
"Play Preset 1",
"Play Preset 2",
"Play Preset 3",
"Play Preset 4",
"Play Preset 5",
"Play Preset 6"
]
}
section {
input "bose", "capability.musicPlayer", title: "Bose® SoundTouch® music player", required: true
}
section("More options", hideable: true, hidden: true) {
input "volume", "number", title: "Set the volume volume", description: "0-100%", required: false
input "frequency", "decimal", title: "Minimum time between actions (defaults to every event)", description: "Minutes", required: false
href "timeIntervalInput", title: "Only during a certain time", description: timeLabel ?: "Tap to set", state: timeLabel ? "complete" : "incomplete"
input "days", "enum", title: "Only on certain days of the week", multiple: true, required: false,
options: ["Monday", "Tuesday", "Wednesday", "Thursday", "Friday", "Saturday", "Sunday"]
if (settings.modes) {
input "modes", "mode", title: "Only when mode is", multiple: true, required: false
}
input "oncePerDay", "bool", title: "Only once per day", required: false, defaultValue: false
}
section([mobileOnly:true]) {
label title: "Assign a name", required: false
mode title: "Set for specific mode(s)"
}
}
}
private anythingSet() {
for (name in ["motion","contact","contactClosed","acceleration","mySwitch","mySwitchOff","arrivalPresence","departurePresence","smoke","water","button1","triggerModes","timeOfDay"]) {
if (settings[name]) {
return true
}
}
return false
}
private ifUnset(Map options, String name, String capability) {
if (!settings[name]) {
input(options, name, capability)
}
}
private ifSet(Map options, String name, String capability) {
if (settings[name]) {
input(options, name, capability)
}
}
def installed() {
log.debug "Installed with settings: ${settings}"
subscribeToEvents()
}
def updated() {
log.debug "Updated with settings: ${settings}"
unsubscribe()
unschedule()
subscribeToEvents()
}
def subscribeToEvents() {
log.trace "subscribeToEvents()"
subscribe(app, appTouchHandler)
subscribe(contact, "contact.open", eventHandler)
subscribe(contactClosed, "contact.closed", eventHandler)
subscribe(acceleration, "acceleration.active", eventHandler)
subscribe(motion, "motion.active", eventHandler)
subscribe(mySwitch, "switch.on", eventHandler)
subscribe(mySwitchOff, "switch.off", eventHandler)
subscribe(arrivalPresence, "presence.present", eventHandler)
subscribe(departurePresence, "presence.not present", eventHandler)
subscribe(smoke, "smoke.detected", eventHandler)
subscribe(smoke, "smoke.tested", eventHandler)
subscribe(smoke, "carbonMonoxide.detected", eventHandler)
subscribe(water, "water.wet", eventHandler)
subscribe(button1, "button.pushed", eventHandler)
if (triggerModes) {
subscribe(location, modeChangeHandler)
}
if (timeOfDay) {
schedule(timeOfDay, scheduledTimeHandler)
}
}
def eventHandler(evt) {
if (allOk) {
def lastTime = state[frequencyKey(evt)]
if (oncePerDayOk(lastTime)) {
if (frequency) {
if (lastTime == null || now() - lastTime >= frequency * 60000) {
takeAction(evt)
}
else {
log.debug "Not taking action because $frequency minutes have not elapsed since last action"
}
}
else {
takeAction(evt)
}
}
else {
log.debug "Not taking action because it was already taken today"
}
}
}
def modeChangeHandler(evt) {
log.trace "modeChangeHandler $evt.name: $evt.value ($triggerModes)"
if (evt.value in triggerModes) {
eventHandler(evt)
}
}
def scheduledTimeHandler() {
eventHandler(null)
}
def appTouchHandler(evt) {
takeAction(evt)
}
private takeAction(evt) {
log.debug "takeAction($actionType)"
def options = [:]
if (volume) {
bose.setLevel(volume as Integer)
options.delay = 1000
}
switch (actionType) {
case "Turn On & Play":
options ? bose.on(options) : bose.on()
break
case "Turn Off":
options ? bose.off(options) : bose.off()
break
case "Toggle Play/Pause":
def currentStatus = bose.currentValue("playpause")
if (currentStatus == "play") {
options ? bose.pause(options) : bose.pause()
}
else if (currentStatus == "pause") {
options ? bose.play(options) : bose.play()
}
break
case "Skip to Next Track":
options ? bose.nextTrack(options) : bose.nextTrack()
break
case "Skip to Beginning/Previous Track":
options ? bose.previousTrack(options) : bose.previousTrack()
break
case "Play Preset 1":
options ? bose.preset1(options) : bose.preset1()
break
case "Play Preset 2":
options ? bose.preset2(options) : bose.preset2()
break
case "Play Preset 3":
options ? bose.preset3(options) : bose.preset3()
break
case "Play Preset 4":
options ? bose.preset4(options) : bose.preset4()
break
case "Play Preset 5":
options ? bose.preset5(options) : bose.preset5()
break
case "Play Preset 6":
options ? bose.preset6(options) : bose.preset6()
break
default:
log.error "Action type '$actionType' not defined"
}
if (frequency) {
state.lastActionTimeStamp = now()
}
}
private frequencyKey(evt) {
//evt.deviceId ?: evt.value
"lastActionTimeStamp"
}
private dayString(Date date) {
def df = new java.text.SimpleDateFormat("yyyy-MM-dd")
if (location.timeZone) {
df.setTimeZone(location.timeZone)
}
else {
df.setTimeZone(TimeZone.getTimeZone("America/New_York"))
}
df.format(date)
}
private oncePerDayOk(Long lastTime) {
def result = true
if (oncePerDay) {
result = lastTime ? dayString(new Date()) != dayString(new Date(lastTime)) : true
log.trace "oncePerDayOk = $result"
}
result
}
// TODO - centralize somehow
private getAllOk() {
modeOk && daysOk && timeOk
}
private getModeOk() {
def result = !modes || modes.contains(location.mode)
log.trace "modeOk = $result"
result
}
private getDaysOk() {
def result = true
if (days) {
def df = new java.text.SimpleDateFormat("EEEE")
if (location.timeZone) {
df.setTimeZone(location.timeZone)
}
else {
df.setTimeZone(TimeZone.getTimeZone("America/New_York"))
}
def day = df.format(new Date())
result = days.contains(day)
}
log.trace "daysOk = $result"
result
}
private getTimeOk() {
def result = true
if (starting && ending) {
def currTime = now()
def start = timeToday(starting, location?.timeZone).time
def stop = timeToday(ending, location?.timeZone).time
result = start < stop ? currTime >= start && currTime <= stop : currTime <= stop || currTime >= start
}
log.trace "timeOk = $result"
result
}
private hhmm(time, fmt = "h:mm a")
{
def t = timeToday(time, location.timeZone)
def f = new java.text.SimpleDateFormat(fmt)
f.setTimeZone(location.timeZone ?: timeZone(time))
f.format(t)
}
private timeIntervalLabel()
{
(starting && ending) ? hhmm(starting) + "-" + hhmm(ending, "h:mm a z") : ""
}
// TODO - End Centralize

Binary file not shown.

Before

Width:  |  Height:  |  Size: 4.3 KiB

Binary file not shown.

Before

Width:  |  Height:  |  Size: 16 KiB

Binary file not shown.

Before

Width:  |  Height:  |  Size: 7.8 KiB

View File

@@ -246,9 +246,6 @@ def toggle(devices) {
else if (devices*.currentValue('lock').contains('locked')) {
devices.unlock()
}
else if (devices*.currentValue('lock').contains('unlocked')) {
devices.lock()
}
else if (devices*.currentValue('alarm').contains('off')) {
devices.siren()
}

View File

@@ -30,7 +30,7 @@ definition(
name: "Carpool Notifier",
namespace: "smartthings",
author: "SmartThings",
description: "Send notifications to your carpooling buddies when you arrive to pick them up. If the person you are picking up is home, and has been for 5 minutes or more, they will get a notification when you arrive.",
description: "This SmartApp is designed to send notifications to your carpooling buddies when you arrive to pick them up. What separates this SmartApp from other notification SmartApps is that it will only send a notification if your carpool buddy is not with you. If the person you are picking up is present, and has been for 5 minutes or more, they will get a notification when you become present.",
category: "Green Living",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/Family/App-IMadeIt.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Family/App-IMadeIt@2x.png"

File diff suppressed because it is too large Load Diff

View File

@@ -1,7 +1,7 @@
/**
* Every Element
*
* Copyright 2015 SmartThings
* Copyright 2014 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:
@@ -14,555 +14,349 @@
*
*/
definition(
name: "Every Element",
namespace: "smartthings/examples",
author: "SmartThings",
description: "Every element demonstration app",
category: "SmartThings Internal",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience@2x.png"
name: "Every Element",
namespace: "smartthings/examples",
author: "SmartThings",
description: "Every element demonstration app",
category: "SmartThings Internal",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience@2x.png"
)
preferences {
// landing page
page(name: "firstPage")
// PageKit
page(name: "buttonsPage")
page(name: "imagePage")
page(name: "inputPage")
page(name: "inputBooleanPage")
page(name: "inputIconPage")
page(name: "inputImagePage")
page(name: "inputDevicePage")
page(name: "inputCapabilityPage")
page(name: "inputRoomPage")
page(name: "inputModePage")
page(name: "inputSelectionPage")
page(name: "inputHubPage")
page(name: "inputContactBookPage")
page(name: "inputTextPage")
page(name: "inputTimePage")
page(name: "appPage")
page(name: "hrefPage")
page(name: "paragraphPage")
page(name: "videoPage")
page(name: "labelPage")
page(name: "modePage")
// Every element helper pages
page(name: "deadEnd", title: "Nothing to see here, move along.", content: "foo")
page(name: "flattenedPage")
page(name: "firstPage")
page(name: "inputPage")
page(name: "appPage")
page(name: "labelPage")
page(name: "modePage")
page(name: "paragraphPage")
page(name: "iconPage")
page(name: "hrefPage")
page(name: "buttonsPage")
page(name: "imagePage")
page(name: "videoPage")
page(name: "deadEnd", title: "Nothing to see here, move along.", content: "foo")
page(name: "flattenedPage")
}
def firstPage() {
dynamicPage(name: "firstPage", title: "Where to first?", install: true, uninstall: true) {
section {
href(page: "appPage", title: "Element: 'app'")
href(page: "buttonsPage", title: "Element: 'buttons'")
href(page: "hrefPage", title: "Element: 'href'")
href(page: "imagePage", title: "Element: 'image'")
href(page: "inputPage", title: "Element: 'input'")
href(page: "labelPage", title: "Element: 'label'")
href(page: "modePage", title: "Element: 'mode'")
href(page: "paragraphPage", title: "Element: 'paragraph'")
href(page: "videoPage", title: "Element: 'video'")
}
section {
href(page: "flattenedPage", title: "All of the above elements on a single page")
}
}
dynamicPage(name: "firstPage", title: "Where to first?", install: true, uninstall: true) {
section() {
href(page: "inputPage", title: "Element: 'input'")
href(page: "appPage", title: "Element: 'app'")
href(page: "labelPage", title: "Element: 'label'")
href(page: "modePage", title: "Element: 'mode'")
href(page: "paragraphPage", title: "Element: 'paragraph'")
href(page: "iconPage", title: "Element: 'icon'")
href(page: "hrefPage", title: "Element: 'href'")
href(page: "buttonsPage", title: "Element: 'buttons'")
href(page: "imagePage", title: "Element: 'image'")
href(page: "videoPage", title: "Element: 'video'")
}
section() {
href(page: "flattenedPage", title: "All of the above elements on a single page")
}
}
}
def inputPage() {
dynamicPage(name: "inputPage", title: "Links to every 'input' element") {
section {
href(page: "inputBooleanPage", title: "to boolean page")
href(page: "inputIconPage", title: "to icon page")
href(page: "inputImagePage", title: "to image page")
href(page: "inputSelectionPage", title: "to selection page")
href(page: "inputTextPage", title: "to text page")
href(page: "inputTimePage", title: "to time page")
}
section("subsets of selection input") {
href(page: "inputDevicePage", title: "to device selection page")
href(page: "inputCapabilityPage", title: "to capability selection page")
href(page: "inputRoomPage", title: "to room selection page")
href(page: "inputModePage", title: "to mode selection page")
href(page: "inputHubPage", title: "to hub selection page")
href(page: "inputContactBookPage", title: "to contact-book selection page")
}
}
}
def inputBooleanPage() {
dynamicPage(name: "inputBooleanPage") {
section {
paragraph "The `required` and `multiple` attributes have no effect because the value will always be either `true` or `false`"
}
section {
input(type: "boolean", name: "booleanWithoutDescription", title: "without description", description: null)
input(type: "boolean", name: "booleanWithDescription", title: "with description", description: "This has a description")
}
section("defaultValue: 'true'") {
input(type: "boolean", name: "booleanWithDefaultValue", title: "", description: "", defaultValue: "true")
}
section("with image") {
input(type: "boolean", name: "booleanWithoutDescriptionWithImage", title: "without description", image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png", description: null)
input(type: "boolean", name: "booleanWithDescriptionWithImage", title: "with description", description: "This has a description", image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
}
}
def inputIconPage() {
dynamicPage(name: "inputIconPage") {
section {
paragraph "`description` is not displayed for icon elements"
paragraph "`multiple` has no effect because you can only choose a single icon"
}
section("required: true") {
input(type: "icon", name: "iconRequired", title: "without description", required: true)
input(type: "icon", name: "iconRequiredWithDescription", title: "with description", description: "this is a description", required: true)
}
section("with image") {
paragraph "The image specified will be replaced after an icon is selected"
input(type: "icon", name: "iconwithImage", title: "without description", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
}
}
def inputImagePage() {
dynamicPage(name: "inputImagePage") {
section {
paragraph "This only exists in DeviceTypes. Someone should do something about that. (glares at MikeDave)"
paragraph "Go to the device preferences of a Mobile Presence device to see it in action"
paragraph "If you try to set the value of this, it will not behave as it would in Device Preferences"
input(type: "image", title: "This is kind of what it looks like", required: false)
}
}
}
def optionsGroup(List groups, String title) {
def group = [values:[], order: groups.size()]
group.title = title ?: ""
groups << group
return groups
}
def addValues(List groups, String key, String value) {
def lastGroup = groups[-1]
lastGroup["values"] << [
key: key,
value: value,
order: lastGroup["values"].size()
]
return groups
}
def listToMap(List original) {
original.inject([:]) { result, v ->
result[v] = v
return result
}
}
def addGroup(List groups, String title, values) {
if (values instanceof List) {
values = listToMap(values)
}
values.inject(optionsGroup(groups, title)) { result, k, v ->
return addValues(result, k, v)
}
return groups
}
def addGroup(values) {
addGroup([], null, values)
}
/* Example usage of options builder
// Creating grouped options
def newGroups = []
addGroup(newGroups, "first group", ["foo", "bar", "baz"])
addGroup(newGroups, "second group", [zero: "zero", one: "uno", two: "dos", three: "tres"])
// simple list
addGroup(["a", "b", "c"])
// simple map
addGroup(["a": "yes", "b": "no", "c": "maybe"])
*/
def inputSelectionPage() {
def englishOptions = ["One", "Two", "Three"]
def spanishOptions = ["Uno", "Dos", "Tres"]
def groupedOptions = []
addGroup(groupedOptions, "English", englishOptions)
addGroup(groupedOptions, "Spanish", spanishOptions)
dynamicPage(name: "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", groupedOptions: addGroup(englishOptions + spanishOptions))
input(type: "enum", name: "selectionGrouped", title: "Grouped options", description: "separate groups of options with headers", groupedOptions: groupedOptions)
}
section("list vs map") {
paragraph "These should be identical in UI, but are different in code and will produce different settings"
input(type: "enum", name: "selectionList", title: "Choose a device", description: "settings will be something like ['Device1 Label']", groupedOptions: addGroup(["Device1 Label", "Device2 Label"]))
input(type: "enum", name: "selectionMap", title: "Choose a device", description: "settings will be something like ['device1-id']", groupedOptions: addGroup(["device1-id": "Device1 Label", "device2-id": "Device2 Label"]))
}
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", 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", title: "defaulted to 'two'", groupedOptions: addGroup(["One", "Two", "Three"]), defaultValue: "Two")
}
section("required: true") {
input(type: "enum", name: "selectionRequired", title: "This is required", description: "It should look different when nothing is selected", groupedOptions: addGroup(["only option"]), required: true)
}
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)
}
section("with image") {
input(type: "enum", name: "selectionWithImage", title: "This has an image", description: "and a description", groupedOptions: addGroup(["an option", "another option", "no way, one more?"]), image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
}
}
def inputTextPage() {
dynamicPage(name: "inputTextPage", title: "Every 'text' variation") {
section("style and functional differences") {
input(type: "text", name: "textRequired", title: "required: true", description: "This should look different when nothing has been entered", required: true)
input(type: "text", name: "textWithImage", title: "with image", description: "This should look different when nothing has been entered", image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png", required: false)
}
section("text") {
input(type: "text", name: "text", title: "This has an alpha-numeric keyboard", description: "no special formatting", required: false)
}
section("password") {
input(type: "password", name: "password", title: "This has an alpha-numeric keyboard", description: "masks value", required: false)
}
section("email") {
input(type: "email", name: "email", title: "This has an email-specific keyboard", description: "no special formatting", required: false)
}
section("phone") {
input(type: "phone", name: "phone", title: "This has a numeric keyboard", description: "formatted for phone numbers", required: false)
}
section("decimal") {
input(type: "decimal", name: "decimal", title: "This has an numeric keyboard with decimal point", description: "no special formatting", required: false)
}
section("number") {
input(type: "number", name: "number", title: "This has an numeric keyboard without decimal point", description: "no special formatting", required: false)
}
section("specified ranges") {
paragraph "You can limit number and decimal inputs to a specific range."
input(range: "50..150", type: "decimal", name: "decimalRange50..150", title: "only values between 50 and 150 will pass validation", description: "no special formatting", required: false)
paragraph "Negative limits will add a negative symbol to the keyboard."
input(range: "-50..50", type: "number", name: "numberRange-50..50", title: "only values between -50 and 50 will pass validation", description: "no special formatting", required: false)
paragraph "Specify * to not limit one side or the other."
input(range: "*..0", type: "decimal", name: "decimalRange*..0", title: "only negative values will pass validation", description: "no special formatting", required: false)
input(range: "*..*", type: "number", name: "numberRange*..*", title: "only positive values will pass validation", description: "no special formatting", required: false)
paragraph "If you don't specify a range, it defaults to 0..*"
}
}
}
def inputTimePage() {
dynamicPage(name: "inputTimePage") {
section {
input(type: "time", name: "timeWithDescription", title: "a time picker", description: "with a description", required: false)
input(type: "time", name: "timeWithoutDescription", title: "without a description", description: null, required: false)
input(type: "time", name: "timeRequired", title: "required: true", required: true)
}
}
}
/// selection subsets
def inputDevicePage() {
dynamicPage(name: "inputDevicePage") {
section("required: true") {
input(type: "device.switch", name: "deviceRequired", title: "This is required", description: "It should look different when nothing is selected")
}
section("multiple: true") {
input(type: "device.switch", name: "deviceMultiple", title: "This is required", description: "It should look different when nothing is selected", multiple: true)
}
section("with image") {
input(type: "device.switch", name: "deviceRequired", title: "This has an image", description: "and a description", image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
}
}
def inputCapabilityPage() {
dynamicPage(name: "inputCapabilityPage") {
section("required: true") {
input(type: "capability.switch", name: "capabilityRequired", title: "This is required", description: "It should look different when nothing is selected")
}
section("multiple: true") {
input(type: "capability.switch", name: "capabilityMultiple", title: "This is required", description: "It should look different when nothing is selected", multiple: true)
}
section("with image") {
input(type: "capability.switch", name: "capabilityRequired", title: "This has an image", description: "and a description", image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
}
}
def inputRoomPage() {
dynamicPage(name: "inputRoomPage") {
section("required: true") {
input(type: "room", name: "roomRequired", title: "This is required", description: "It should look different when nothing is selected")
}
section("multiple: true") {
input(type: "room", name: "roomMultiple", title: "This is required", description: "It should look different when nothing is selected", multiple: true)
}
section("with image") {
input(type: "room", name: "roomRequired", title: "This has an image", description: "and a description", image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
}
}
def inputModePage() {
dynamicPage(name: "inputModePage") {
section("required: true") {
input(type: "mode", name: "modeRequired", title: "This is required", description: "It should look different when nothing is selected")
}
section("multiple: true") {
input(type: "mode", name: "modeMultiple", title: "This is required", description: "It should look different when nothing is selected", multiple: true)
}
section("with image") {
input(type: "mode", name: "modeRequired", title: "This has an image", description: "and a description", image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
}
}
def inputHubPage() {
dynamicPage(name: "inputHubPage") {
section("required: true") {
input(type: "hub", name: "hubRequired", title: "This is required", description: "It should look different when nothing is selected")
}
section("multiple: true") {
input(type: "hub", name: "hubMultiple", title: "This is required", description: "It should look different when nothing is selected", multiple: true)
}
section("with image") {
input(type: "hub", name: "hubRequired", title: "This has an image", description: "and a description", image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
}
}
def inputContactBookPage() {
dynamicPage(name: "inputContactBookPage") {
section("required: true") {
input(type: "contact", name: "contactRequired", title: "This is required", description: "It should look different when nothing is selected")
}
section("multiple: true") {
input(type: "contact", name: "contactMultiple", title: "This is required", description: "It should look different when nothing is selected", multiple: true)
}
section("with image") {
input(type: "contact", name: "contactRequired", title: "This has an image", description: "and a description", image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
}
dynamicPage(name: "inputPage", title: "Every 'input' type") {
section("enum") {
input(type: "enum", name: "enumRefresh", title: "submitOnChange:true", required: false, multiple: true, options: ["one", "two", "three"], submitOnChange: true)
if (enumRefresh) {
paragraph "${enumRefresh}"
}
input(type: "enum", name: "enumSegmented", title: "style:segmented", required: false, multiple: true, options: ["one", "two", "three"], style: "segmented")
input(type: "enum", name: "enum", title: "required:false, multiple:false", required: false, multiple: false, options: ["one", "two", "three"])
input(type: "enum", name: "enumRequired", title: "required:true", required: true, multiple: false, options: ["one", "two", "three"])
input(type: "enum", name: "enumMultiple", title: "multiple:true", required: false, multiple: true, options: ["one", "two", "three"])
input(type: "enum", name: "enumWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, multiple: true, options: ["one", "two", "three"], image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
input(type: "enum", name: "enumWithGroupedOptions", title: "groupedOptions", description: "This enum has grouped options", required: false, multiple: true, groupedOptions: [
[
title : "the group title that is displayed",
order : 0, // the order of the group; 0-based
image : "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png", // not yet supported
values: [
[
key : "the value that will be placed in SmartApp settings.", // such as a device id
value: "the title of the selectable option that is displayed", // such as a device name
order: 0 // the order of the option
]
]
],
[
title : "the second group title that is displayed",
order : 1, // the order of the group; 0-based
image : null, // not yet supported
values: [
[
key : "some_device_id",
value: "some_device_name",
order: 1 // the order of the option. This option will appear second in the list even though it is the first option defined in this map
],
[
key : "some_other_device_id",
value: "some_other_device_name",
order: 0 // the order of the option. This option will appear first in the list even though it is not the first option defined in this map
]
]
]
])
}
section("text") {
input(type: "text", name: "text", title: "required:false, multiple:false", required: false, multiple: false)
input(type: "text", name: "textRequired", title: "required:true", required: true, multiple: false)
input(type: "text", name: "textWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
section("number") {
input(type: "number", name: "number", title: "required:false, multiple:false", required: false, multiple: false)
input(type: "number", name: "numberRequired", title: "required:true", required: true, multiple: false)
input(type: "number", name: "numberWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
section("boolean") {
input(type: "boolean", name: "boolean", title: "required:false, multiple:false", required: false, multiple: false)
input(type: "boolean", name: "booleanWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
section("password") {
input(type: "password", name: "password", title: "required:false, multiple:false", required: false, multiple: false)
input(type: "password", name: "passwordRequired", title: "required:true", required: true, multiple: false)
input(type: "password", name: "passwordWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
section("phone") {
input(type: "phone", name: "phone", title: "required:false, multiple:false", required: false, multiple: false)
input(type: "phone", name: "phoneRequired", title: "required:true", required: true, multiple: false)
input(type: "phone", name: "phoneWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
section("email") {
input(type: "email", name: "email", title: "required:false, multiple:false", required: false, multiple: false)
input(type: "email", name: "emailRequired", title: "required:true", required: true, multiple: false)
input(type: "email", name: "emailWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
section("decimal") {
input(type: "decimal", name: "decimal", title: "required:false, multiple:false", required: false, multiple: false)
input(type: "decimal", name: "decimalRequired", title: "required:true", required: true, multiple: false)
input(type: "decimal", name: "decimalWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
section("mode") {
input(type: "mode", name: "mode", title: "required:false, multiple:false", required: false, multiple: false)
input(type: "mode", name: "modeRequired", title: "required:true", required: true, multiple: false)
input(type: "mode", name: "modeMultiple", title: "multiple:true", required: false, multiple: true)
input(type: "mode", name: "iconWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, multiple: true, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
section("icon") {
input(type: "icon", name: "icon", title: "required:false, multiple:false", required: false, multiple: false)
input(type: "icon", name: "iconRequired", title: "required:true", required: true, multiple: false)
input(type: "icon", name: "iconWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
section("capability") {
input(type: "capability.switch", name: "capability", title: "required:false, multiple:false", required: false, multiple: false)
input(type: "capability.switch", name: "capabilityRequired", title: "required:true", required: true, multiple: false)
input(type: "capability.switch", name: "capabilityMultiple", title: "multiple:true", required: false, multiple: true)
input(type: "capability.switch", name: "capabilityWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, multiple: true, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
section("hub") {
input(type: "hub", name: "hub", title: "required:false, multiple:false", required: false, multiple: false)
input(type: "hub", name: "hubRequired", title: "required:true", required: true, multiple: false)
input(type: "hub", name: "hubMultiple", title: "multiple:true", required: false, multiple: true)
input(type: "hub", name: "hubWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, multiple: true, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
section("device") {
input(type: "device.switch", name: "device", title: "required:false, multiple:false", required: false, multiple: false)
input(type: "device.switch", name: "deviceRequired", title: "required:true", required: true, multiple: false)
input(type: "device.switch", name: "deviceMultiple", title: "multiple:true", required: false, multiple: true)
input(type: "device.switch", name: "deviceWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, multiple: true, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
section("time") {
input(type: "time", name: "time", title: "required:false, multiple:false", required: false, multiple: false)
input(type: "time", name: "timeRequired", title: "required:true", required: true, multiple: false)
input(type: "time", name: "timeWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
section("contact-book") {
input("recipients", "contact", title: "Notify", description: "Send notifications to") {
input(type: "phone", name: "phone", title: "Send text message to", required: false, multiple: false)
input(type: "boolean", name: "boolean", title: "Send push notification", required: false, multiple: false)
}
}
}
}
def appPage() {
dynamicPage(name: "appPage", title: "Every 'app' type") {
section {
paragraph "These won't work unless you create a child SmartApp to link to... Sorry."
}
section("app") {
app(
name: "app",
title: "required:false, multiple:false",
required: false,
multiple: false,
namespace: "Steve",
appName: "Child SmartApp"
)
app(name: "appRequired", title: "required:true", required: true, multiple: false, namespace: "Steve", appName: "Child SmartApp")
app(name: "appComplete", title: "state:complete", required: false, multiple: false, namespace: "Steve", appName: "Child SmartApp", state: "complete")
app(name: "appWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, multiple: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png", namespace: "Steve", appName: "Child SmartApp")
}
section("multiple:true") {
app(name: "appMultiple", title: "multiple:true", required: false, multiple: true, namespace: "Steve", appName: "Child SmartApp")
}
section("multiple:true with image") {
app(name: "appMultipleWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, multiple: true, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png", namespace: "Steve", appName: "Child SmartApp")
}
}
dynamicPage(name: "appPage", title: "Every 'app' type") {
section {
paragraph "These won't work unless you create a child SmartApp to link to... Sorry."
}
section("app") {
app(
name: "app",
title: "required:false, multiple:false",
required: false,
multiple: false,
namespace: "Steve",
appName: "Child SmartApp"
)
app(name: "appRequired", title: "required:true", required: true, multiple: false, namespace: "Steve", appName: "Child SmartApp")
app(name: "appComplete", title: "state:complete", required: false, multiple: false, namespace: "Steve", appName: "Child SmartApp", state: "complete")
app(name: "appWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, multiple: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png", namespace: "Steve", appName: "Child SmartApp")
}
section("multiple:true") {
app(name: "appMultiple", title: "multiple:true", required: false, multiple: true, namespace: "Steve", appName: "Child SmartApp")
}
section("multiple:true with image") {
app(name: "appMultipleWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, multiple: true, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png", namespace: "Steve", appName: "Child SmartApp")
}
}
}
def labelPage() {
dynamicPage(name: "labelPage", title: "Every 'Label' type") {
section("label") {
paragraph "The difference between a label element and a text input element is that the label element will effect the SmartApp directly by setting the label. An input element will place the set value in the SmartApp's settings."
paragraph "There are 3 here as an example. Never use more than 1 label element on a page."
label(name: "label", title: "required:false, multiple:false", required: false, multiple: false)
label(name: "labelRequired", title: "required:true", required: true, multiple: false)
label(name: "labelWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
}
dynamicPage(name: "labelPage", title: "Every 'Label' type") {
section("label") {
label(name: "label", title: "required:false, multiple:false", required: false, multiple: false)
label(name: "labelRequired", title: "required:true", required: true, multiple: false)
label(name: "labelWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
}
}
def modePage() {
dynamicPage(name: "modePage", title: "Every 'mode' type") { // TODO: finish this
section("mode") {
paragraph "The difference between a mode element and a mode input element is that the mode element will effect the SmartApp directly by setting the modes it executes in. A mode input element will place the set value in the SmartApp's settings."
paragraph "Another difference is that you can select 'All Modes' when choosing which mode the SmartApp should execute in. This is the same as selecting no modes. When a SmartApp does not have modes specified, it will execute in all modes."
paragraph "There are 4 here as an example. Never use more than 1 mode element on a page."
mode(name: "mode", title: "required:false, multiple:false", required: false, multiple: false)
mode(name: "modeRequired", title: "required:true", required: true, multiple: false)
mode(name: "modeMultiple", title: "multiple:true", required: false, multiple: true)
mode(name: "modeWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, multiple: true, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
}
dynamicPage(name: "modePage", title: "Every 'mode' type") { // TODO: finish this
section("mode") {
mode(name: "mode", title: "required:false, multiple:false", required: false, multiple: false)
mode(name: "modeRequired", title: "required:true", required: true, multiple: false)
mode(name: "modeMultiple", title: "multiple:true", required: false, multiple: true)
mode(name: "modeWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, multiple: true, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
}
}
def paragraphPage() {
dynamicPage(name: "paragraphPage", title: "Every 'paragraph' type") {
section("paragraph") {
paragraph "This is how you should make a paragraph element"
paragraph image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png", "This is a long description, blah, blah, blah."
}
}
dynamicPage(name: "paragraphPage", title: "Every 'paragraph' type") {
section("paragraph") {
paragraph "This us how you should make a paragraph element"
paragraph image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png", "This is a long description, blah, blah, blah."
}
}
}
def iconPage() {
dynamicPage(name: "iconPage", title: "Every 'icon' type") { // TODO: finish this
section("icon") {
icon(name: "icon", title: "required:false, multiple:false", required: false, multiple: false)
icon(name: "iconRequired", title: "required:true", required: true, multiple: false)
icon(name: "iconWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
}
}
def hrefPage() {
dynamicPage(name: "hrefPage", title: "Every 'href' variation") {
section("stylistic differences") {
href(page: "deadEnd", title: "state: 'complete'", description: "gives the appearance of an input that has been filled out", state: "complete")
href(page: "deadEnd", title: "with image", image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
href(page: "deadEnd", title: "with image and description", description: "and state: 'complete'", image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png", state: "complete")
}
section("functional differences") {
href(page: "deadEnd", title: "to a page within the app")
href(url: "http://www.google.com", title: "to a url using all defaults")
href(url: "http://www.google.com", title: "external: true", description: "takes you outside the app", external: true)
}
}
dynamicPage(name: "hrefPage", title: "Every 'href' type") {
section("page") {
href(name: "hrefPage", title: "required:false, multiple:false", required: false, multiple: false, page: "deadEnd")
href(name: "hrefPageRequired", title: "required:true", required: true, multiple: false, page: "deadEnd", description: "Don't make hrefs required")
href(name: "hrefPageComplete", title: "state:complete", required: false, multiple: false, page: "deadEnd", state: "complete")
href(name: "hrefPageWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png", page: "deadEnd",)
}
section("external") {
href(name: "hrefExternal", title: "required:false, multiple:false", required: false, multiple: false, style: "external", url: "http://smartthings.com/")
href(name: "hrefExternalRequired", title: "required:true", required: true, multiple: false, style: "external", url: "http://smartthings.com/", description: "Don't make hrefs required")
href(name: "hrefExternalComplete", title: "state:complete", required: false, multiple: true, style: "external", url: "http://smartthings.com/", state: "complete")
href(name: "hrefExternalWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png", url: "http://smartthings.com/")
}
section("embedded") {
href(name: "hrefEmbedded", title: "required:false, multiple:false", required: false, multiple: false, style: "embedded", url: "http://smartthings.com/")
href(name: "hrefEmbeddedRequired", title: "required:true", required: true, multiple: false, style: "embedded", url: "http://smartthings.com/", description: "Don't make hrefs required")
href(name: "hrefEmbeddedComplete", title: "state:complete", required: false, multiple: true, style: "embedded", url: "http://smartthings.com/", state: "complete")
href(name: "hrefEmbeddedWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png", url: "http://smartthings.com/")
}
}
}
def buttonsPage() {
dynamicPage(name: "buttonsPage", title: "Every 'button' type") {
section("Simple Buttons") {
paragraph "If there are an odd number of buttons, the last button will span the entire view area."
buttons(name: "buttons1", title: "1 button", buttons: [
[label: "foo", action: "foo"]
])
buttons(name: "buttons2", title: "2 buttons", buttons: [
[label: "foo", action: "foo"],
[label: "bar", action: "bar"]
])
buttons(name: "buttons3", title: "3 buttons", buttons: [
[label: "foo", action: "foo"],
[label: "bar", action: "bar"],
[label: "baz", action: "baz"]
])
buttons(name: "buttonsWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png", buttons: [
[label: "foo", action: "foo"],
[label: "bar", action: "bar"]
])
}
section("Colored Buttons") {
buttons(name: "buttonsColoredSpecial", title: "special strings", description: "SmartThings highly recommends using these colors", buttons: [
[label: "complete", action: "bar", backgroundColor: "complete"],
[label: "required", action: "bar", backgroundColor: "required"]
])
buttons(name: "buttonsColoredHex", title: "hex values work", buttons: [
[label: "bg: #000dff", action: "foo", backgroundColor: "#000dff"],
[label: "fg: #ffac00", action: "foo", color: "#ffac00"],
[label: "both fg and bg", action: "foo", color: "#ffac00", backgroundColor: "#000dff"]
])
buttons(name: "buttonsColoredString", title: "strings work too", buttons: [
[label: "green", action: "foo", backgroundColor: "green"],
[label: "red", action: "foo", backgroundColor: "red"],
[label: "both fg and bg", action: "foo", color: "red", backgroundColor: "green"]
])
}
}
dynamicPage(name: "buttonsPage", title: "Every 'button' type") {
section("buttons") {
buttons(name: "buttons", title: "required:false, multiple:false", required: false, multiple: false, buttons: [
[label: "foo", action: "foo"],
[label: "bar", action: "bar"]
])
buttons(name: "buttonsRequired", title: "required:true", required: true, multiple: false, buttons: [
[label: "foo", action: "foo"],
[label: "bar", action: "bar"]
])
buttons(name: "buttonsWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png", buttons: [
[label: "foo", action: "foo"],
[label: "bar", action: "bar"]
])
}
section("Colored Buttons") {
buttons(name: "buttonsColoredSpecial", title: "special strings", description: "SmartThings highly recommends using these colors", buttons: [
[label: "complete", action: "bar", backgroundColor: "complete"],
[label: "required", action: "bar", backgroundColor: "required"]
])
buttons(name: "buttonsColoredHex", title: "hex values work", buttons: [
[label: "bg: #000dff", action: "foo", backgroundColor: "#000dff"],
[label: "fg: #ffac00", action: "foo", color: "#ffac00"],
[label: "both fg and bg", action: "foo", color: "#ffac00", backgroundColor: "#000dff"]
])
buttons(name: "buttonsColoredString", title: "strings work too", buttons: [
[label: "green", action: "foo", backgroundColor: "green"],
[label: "red", action: "foo", backgroundColor: "red"],
[label: "both fg and bg", action: "foo", color: "red", backgroundColor: "green"]
])
}
}
}
def imagePage() {
dynamicPage(name: "imagePage", title: "Every 'image' type") { // TODO: finish thise
section("image") {
image "http://f.cl.ly/items/1k1S0A0m3805402o3O12/20130915-191127.jpg"
image(name: "imageWithMultipleImages", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, images: ["https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png", "http://f.cl.ly/items/1k1S0A0m3805402o3O12/20130915-191127.jpg"])
}
}
dynamicPage(name: "imagePage", title: "Every 'image' type") { // TODO: finish thise
section("image") {
image "http://f.cl.ly/items/1k1S0A0m3805402o3O12/20130915-191127.jpg"
image(name: "imageWithImage", title: "This element has an image and a long title.", description: "I am setting long title and descriptions to test the offset", required: false, image: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png")
}
}
}
def videoPage() {
dynamicPage(name: "videoPage", title: "Every 'video' type") { // TODO: finish this
section("video") {
// TODO: update this when there is a videoElement method
element(name: "videoElement", element: "video", type: "video", title: "this is a video!", description: "I am setting long title and descriptions to test the offset", required: false, image: "http://f.cl.ly/items/0w0D1p0K2D0d190F3H3N/Image%202015-12-14%20at%207.57.27%20AM.jpg", video: "http://f.cl.ly/items/3O2L03471l2K3E3l3K1r/Zombie%20Kid%20Likes%20Turtles.mp4")
}
}
dynamicPage(name: "imagePage", title: "Every 'image' type") { // TODO: finish this
section("video") {
// TODO: update this when there is a videoElement method
element(name: "videoElement", element: "video", type: "video", title: "this is a video!", description: "I am setting long title and descriptions to test the offset", required: false, image: "http://ec2-54-161-144-215.compute-1.amazonaws.com:8081/jesse/cam1/54aafcd1c198347511c26321.jpg", video: "http://ec2-54-161-144-215.compute-1.amazonaws.com:8081/jesse/cam1/54aafcd1c198347511c2631f.mp4")
}
}
}
def flattenedPage() {
def allSections = []
firstPage().sections[0].body.each { hrefElement ->
if (hrefElement.name != "inputPage") {
// inputPage is a bunch of hrefs
allSections += "${hrefElement.page}"().sections
}
}
// collect the input elements
inputPage().sections.each { section ->
section.body.each { hrefElement ->
allSections += "${hrefElement.page}"().sections
}
}
def flattenedPage = dynamicPage(name: "flattenedPage", title: "All elements in one page!") {}
flattenedPage.sections = allSections
return flattenedPage
def allSections = []
firstPage().sections.each { section ->
section.body.each { hrefElement ->
if (hrefElement.page != "flattenedPage") {
allSections += "${hrefElement.page}"().sections
}
}
}
def flattenedPage = dynamicPage(name: "flattenedPage", title: "All elements in one page!") {}
flattenedPage.sections = allSections
return flattenedPage
}
def foo() {
dynamicPage(name: "deadEnd") {
section { }
}
dynamicPage(name: "deadEnd") {
}
}
def installed() {
log.debug "Installed with settings: ${settings}"
log.debug "Installed with settings: ${settings}"
initialize()
initialize()
}
def updated() {
log.debug "Updated with settings: ${settings}"
log.debug "Updated with settings: ${settings}"
unsubscribe()
initialize()
unsubscribe()
initialize()
}
def initialize() {
// TODO: subscribe to attributes, devices, locations, etc.
// TODO: subscribe to attributes, devices, locations, etc.
}

View File

@@ -23,8 +23,7 @@ definition(
description: "Connect and take pictures using your Foscam camera from inside the Smartthings app.",
category: "SmartThings Internal",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/Partner/foscam.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Partner/foscam@2x.png",
singleInstance: true
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Partner/foscam@2x.png"
)
preferences {

View File

@@ -27,7 +27,7 @@ definition(
name: "Gentle Wake Up",
namespace: "smartthings",
author: "SmartThings",
description: "Dim your lights up slowly, allowing you to wake up more naturally.",
description: "Gentle Wake Up dims your lights slowly, allowing you to wake up more naturally. Once your lights have finished dimming, optionally turn on more things or send yourself a text for a more gentle nudge into the waking world (you may want to set your normal alarm as a backup plan).",
category: "Health & Wellness",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/HealthAndWellness/App-SleepyTime.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/HealthAndWellness/App-SleepyTime@2x.png"

View File

@@ -15,7 +15,7 @@
* for the specific language governing permissions and limitations under the License.
*
*/
definition(
name: "Hue (Connect)",
namespace: "smartthings",
@@ -23,8 +23,7 @@ definition(
description: "Allows you to connect your Philips Hue lights with SmartThings and control them from your Things area or Dashboard in the SmartThings Mobile app. Adjust colors by going to the Thing detail screen for your Hue lights (tap the gear on Hue tiles).\n\nPlease update your Hue Bridge first, outside of the SmartThings app, using the Philips Hue app.",
category: "SmartThings Labs",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/Partner/hue.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Partner/hue@2x.png",
singleInstance: true
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Partner/hue@2x.png"
)
preferences {
@@ -65,14 +64,10 @@ def bridgeDiscovery(params=[:])
def options = bridges ?: []
def numFound = options.size() ?: 0
if (numFound == 0 && state.bridgeRefreshCount > 25) {
log.trace "Cleaning old bridges memory"
state.bridges = [:]
state.bridgeRefreshCount = 0
app.updateSetting("selectedHue", "")
}
subscribe(location, null, locationHandler, [filterEvents:false])
if(!state.subscribe) {
subscribe(location, null, locationHandler, [filterEvents:false])
state.subscribe = true
}
//bridge discovery request every 15 //25 seconds
if((bridgeRefreshCount % 5) == 0) {
@@ -99,20 +94,11 @@ def bridgeLinking()
def nextPage = ""
def title = "Linking with your Hue"
def paragraphText
def hueimage = null
if (selectedHue) {
paragraphText = "Press the button on your Hue Bridge to setup a link. "
hueimage = "http://huedisco.mediavibe.nl/wp-content/uploads/2013/09/pair-bridge.png"
} else {
paragraphText = "You haven't selected a Hue Bridge, please Press \"Done\" and select one before clicking next."
hueimage = null
}
def paragraphText = "Press the button on your Hue Bridge to setup a link."
if (state.username) { //if discovery worked
nextPage = "bulbDiscovery"
title = "Success!"
title = "Success! - click 'Next'"
paragraphText = "Linking to your hub was a success! Please click 'Next'!"
hueimage = null
}
if((linkRefreshcount % 2) == 0 && !state.username) {
@@ -120,39 +106,30 @@ def bridgeLinking()
}
return dynamicPage(name:"bridgeBtnPush", title:title, nextPage:nextPage, refreshInterval:refreshInterval) {
section("") {
section("Button Press") {
paragraph """${paragraphText}"""
if (hueimage != null)
image "${hueimage}"
}
}
}
def bulbDiscovery() {
def bulbDiscovery()
{
int bulbRefreshCount = !state.bulbRefreshCount ? 0 : state.bulbRefreshCount as int
state.bulbRefreshCount = bulbRefreshCount + 1
def refreshInterval = 3
state.inBulbDiscovery = true
def bridge = null
if (selectedHue) {
bridge = getChildDevice(selectedHue)
subscribe(bridge, "bulbList", bulbListData)
}
state.bridgeRefreshCount = 0
def bulboptions = bulbsDiscovered() ?: [:]
def numFound = bulboptions.size() ?: 0
if (numFound == 0)
app.updateSetting("selectedBulbs", "")
if((bulbRefreshCount % 5) == 0) {
def options = bulbsDiscovered() ?: []
def numFound = options.size() ?: 0
if((bulbRefreshCount % 3) == 0) {
discoverHueBulbs()
}
return dynamicPage(name:"bulbDiscovery", title:"Bulb Discovery Started!", nextPage:"", refreshInterval:refreshInterval, install:true, uninstall: true) {
section("Please wait while we discover your Hue Bulbs. Discovery can take five minutes or more, so sit back and relax! Select your device below once discovered.") {
input "selectedBulbs", "enum", required:false, title:"Select Hue Bulbs (${numFound} found)", multiple:true, options:bulboptions
input "selectedBulbs", "enum", required:false, title:"Select Hue Bulbs (${numFound} found)", multiple:true, options:options
}
section {
section {
def title = getBridgeIP() ? "Hue bridge (${getBridgeIP()})" : "Find bridges"
href "bridgeDiscovery", title: title, description: "", state: selectedHue ? "complete" : "incomplete", params: [override: true]
@@ -217,29 +194,24 @@ Map bridgesDiscovered() {
Map bulbsDiscovered() {
def bulbs = getHueBulbs()
def bulbmap = [:]
def map = [:]
if (bulbs instanceof java.util.Map) {
bulbs.each {
def value = "${it.value.name}"
def key = app.id +"/"+ it.value.id
bulbmap["${key}"] = value
def value = "${it?.value?.name}"
def key = app.id +"/"+ it?.value?.id
map["${key}"] = value
}
} else { //backwards compatable
bulbs.each {
def value = "${it.name}"
def key = app.id +"/"+ it.id
logg += "$value - $key, "
bulbmap["${key}"] = value
def value = "${it?.name}"
def key = app.id +"/"+ it?.id
map["${key}"] = value
}
}
return bulbmap
map
}
def bulbListData(evt) {
state.bulbs = evt.jsonData
}
Map getHueBulbs() {
def getHueBulbs() {
state.bulbs = state.bulbs ?: [:]
}
@@ -259,19 +231,24 @@ def installed() {
def updated() {
log.trace "Updated with settings: ${settings}"
unschedule()
unsubscribe()
unsubscribe()
initialize()
}
def initialize() {
log.debug "Initializing"
unsubscribe(bridge)
state.inBulbDiscovery = false
state.bridgeRefreshCount = 0
state.bulbRefreshCount = 0
log.debug "Initializing"
state.subscribe = false
state.bridgeSelectedOverride = false
def bridge = null
if (selectedHue) {
addBridge()
addBulbs()
addBridge()
bridge = getChildDevice(selectedHue)
subscribe(bridge, "bulbList", bulbListHandler)
}
if (selectedBulbs) {
addBulbs()
doDeviceSync()
runEvery5Minutes("doDeviceSync")
}
@@ -286,49 +263,38 @@ def manualRefresh() {
def uninstalled(){
state.bridges = [:]
state.username = null
state.subscribe = false
}
// Handles events to add new bulbs
def bulbListHandler(hub, data = "") {
def msg = "Bulbs list not processed. Only while in settings menu."
def bulbs = [:]
if (state.inBulbDiscovery) {
def logg = ""
log.trace "Adding bulbs to state..."
state.bridgeProcessedLightList = true
def object = new groovy.json.JsonSlurper().parseText(data)
object.each { k,v ->
if (v instanceof Map)
bulbs[k] = [id: k, name: v.name, type: v.type, hub:hub]
}
}
def bridge = null
if (selectedHue)
bridge = getChildDevice(selectedHue)
bridge.sendEvent(name: "bulbList", value: hub, data: bulbs, isStateChange: true, displayed: false)
msg = "${bulbs.size()} bulbs found. ${bulbs}"
return msg
def bulbListHandler(evt) {
def bulbs = [:]
log.trace "Adding bulbs to state..."
state.bridgeProcessedLightList = true
evt.jsonData.each { k,v ->
log.trace "$k: $v"
if (v instanceof Map) {
bulbs[k] = [id: k, name: v.name, type: v.type, hub:evt.value]
}
}
state.bulbs = bulbs
log.info "${bulbs.size()} bulbs found"
}
def addBulbs() {
def bulbs = getHueBulbs()
selectedBulbs?.each { dni ->
selectedBulbs.each { dni ->
def d = getChildDevice(dni)
if(!d) {
def newHueBulb
if (bulbs instanceof java.util.Map) {
newHueBulb = bulbs.find { (app.id + "/" + it.value.id) == dni }
if (newHueBulb != null) {
if (newHueBulb?.value?.type?.equalsIgnoreCase("Dimmable light") ) {
d = addChildDevice("smartthings", "Hue Lux Bulb", dni, newHueBulb?.value.hub, ["label":newHueBulb?.value.name])
} else {
d = addChildDevice("smartthings", "Hue Bulb", dni, newHueBulb?.value.hub, ["label":newHueBulb?.value.name])
}
} else {
log.debug "$dni in not longer paired to the Hue Bridge or ID changed"
}
} else {
if (newHueBulb?.value?.type?.equalsIgnoreCase("Dimmable light")) {
d = addChildDevice("smartthings", "Hue Lux Bulb", dni, newHueBulb?.value.hub, ["label":newHueBulb?.value.name])
} else {
d = addChildDevice("smartthings", "Hue Bulb", dni, newHueBulb?.value.hub, ["label":newHueBulb?.value.name])
}
} else {
//backwards compatable
newHueBulb = bulbs.find { (app.id + "/" + it.id) == dni }
d = addChildDevice("smartthings", "Hue Bulb", dni, newHueBulb?.hub, ["label":newHueBulb?.name])
@@ -356,7 +322,7 @@ def addBridge() {
def d = getChildDevice(selectedHue)
if(!d) {
// compatibility with old devices
def newbridge = true
def newbridge = true
childDevices.each {
if (it.getDeviceDataByName("mac")) {
def newDNI = "${it.getDeviceDataByName("mac")}"
@@ -366,27 +332,22 @@ def addBridge() {
it.setDeviceNetworkId("${newDNI}")
if (oldDNI == selectedHue)
app.updateSetting("selectedHue", newDNI)
newbridge = false
newbridge = false
}
}
}
}
}
if (newbridge) {
d = addChildDevice("smartthings", "Hue Bridge", selectedHue, vbridge.value.hub)
log.debug "created ${d.displayName} with id ${d.deviceNetworkId}"
def childDevice = getChildDevice(d.deviceNetworkId)
childDevice.sendEvent(name: "serialNumber", value: vbridge.value.serialNumber)
if (vbridge.value.ip && vbridge.value.port) {
if (vbridge.value.ip.contains(".")) {
if (vbridge.value.ip.contains("."))
childDevice.sendEvent(name: "networkAddress", value: vbridge.value.ip + ":" + vbridge.value.port)
childDevice.updateDataValue("networkAddress", vbridge.value.ip + ":" + vbridge.value.port)
} else {
childDevice.sendEvent(name: "networkAddress", value: convertHexToIP(vbridge.value.ip) + ":" + convertHexToInt(vbridge.value.port))
childDevice.updateDataValue("networkAddress", convertHexToIP(vbridge.value.ip) + ":" + convertHexToInt(vbridge.value.port))
}
} else {
else
childDevice.sendEvent(name: "networkAddress", value: convertHexToIP(vbridge.value.ip) + ":" + convertHexToInt(vbridge.value.port))
} else
childDevice.sendEvent(name: "networkAddress", value: convertHexToIP(vbridge.value.networkAddress) + ":" + convertHexToInt(vbridge.value.deviceAddress))
childDevice.updateDataValue("networkAddress", convertHexToIP(vbridge.value.networkAddress) + ":" + convertHexToInt(vbridge.value.deviceAddress))
}
}
} else {
log.debug "found ${d.displayName} with id $selectedHue already exists"
@@ -394,6 +355,7 @@ def addBridge() {
}
}
def locationHandler(evt) {
def description = evt.description
log.trace "Location: $description"
@@ -435,11 +397,8 @@ def locationHandler(evt) {
}
}
}
} else {
if (d.getDeviceDataByName("networkAddress"))
networkAddress = d.getDeviceDataByName("networkAddress")
else
networkAddress = d.latestState('networkAddress').stringValue
} else {
networkAddress = d.latestState('networkAddress').stringValue
log.trace "Host: $host - $networkAddress"
if(host != networkAddress) {
log.debug "Device's port or ip changed for device $d..."
@@ -447,8 +406,7 @@ def locationHandler(evt) {
dstate.port = port
dstate.name = "Philips hue ($ip)"
d.sendEvent(name:"networkAddress", value: host)
d.updateDataValue("networkAddress", host)
}
}
}
}
}
@@ -496,13 +454,17 @@ def locationHandler(evt) {
def doDeviceSync(){
log.trace "Doing Hue Device Sync!"
//shrink the large bulb lists
convertBulbListToMap()
poll()
try {
if(!state.subscribe) {
subscribe(location, null, locationHandler, [filterEvents:false])
} catch (all) {
log.trace "Subscription already exist"
}
state.subscribe = true
}
discoverBridges()
}
@@ -511,49 +473,44 @@ def doDeviceSync(){
/////////////////////////////////////
def parse(childDevice, description) {
def parsedEvent = parseLanMessage(description)
def parsedEvent = parseLanMessage(description)
if (parsedEvent.headers && parsedEvent.body) {
def headerString = parsedEvent.headers.toString()
def bodyString = parsedEvent.body.toString()
if (headerString?.contains("json")) {
def body
try {
body = new groovy.json.JsonSlurper().parseText(bodyString)
} catch (all) {
log.warn "Parsing Body failed - trying again..."
poll()
}
if (body instanceof java.util.HashMap) {
//poll response
if (headerString?.contains("json")) {
def body = new groovy.json.JsonSlurper().parseText(parsedEvent.body)
if (body instanceof java.util.HashMap)
{ //poll response
def bulbs = getChildDevices()
//for each bulb
for (bulb in body) {
def d = bulbs.find{it.deviceNetworkId == "${app.id}/${bulb.key}"}
def d = bulbs.find{it.deviceNetworkId == "${app.id}/${bulb.key}"}
if (d) {
if (bulb.value.state?.reachable) {
sendEvent(d.deviceNetworkId, [name: "switch", value: bulb.value?.state?.on ? "on" : "off"])
sendEvent(d.deviceNetworkId, [name: "level", value: Math.round(bulb.value.state.bri * 100 / 255)])
if (bulb.value.state.sat) {
def hue = Math.min(Math.round(bulb.value.state.hue * 100 / 65535), 65535) as int
def sat = Math.round(bulb.value.state.sat * 100 / 255) as int
def hex = colorUtil.hslToHex(hue, sat)
sendEvent(d.deviceNetworkId, [name: "color", value: hex])
sendEvent(d.deviceNetworkId, [name: "hue", value: hue])
sendEvent(d.deviceNetworkId, [name: "saturation", value: sat])
}
} else {
sendEvent(d.deviceNetworkId, [name: "switch", value: "off"])
sendEvent(d.deviceNetworkId, [name: "level", value: 100])
if (bulb.value.state.sat) {
def hue = 23
def sat = 56
def hex = colorUtil.hslToHex(23, 56)
sendEvent(d.deviceNetworkId, [name: "color", value: hex])
sendEvent(d.deviceNetworkId, [name: "hue", value: hue])
sendEvent(d.deviceNetworkId, [name: "saturation", value: sat])
}
}
sendEvent(d.deviceNetworkId, [name: "switch", value: bulb.value?.state?.on ? "on" : "off"])
sendEvent(d.deviceNetworkId, [name: "level", value: Math.round(bulb.value.state.bri * 100 / 255)])
if (bulb.value.state.sat) {
def hue = Math.min(Math.round(bulb.value.state.hue * 100 / 65535), 65535) as int
def sat = Math.round(bulb.value.state.sat * 100 / 255) as int
def hex = colorUtil.hslToHex(hue, sat)
sendEvent(d.deviceNetworkId, [name: "color", value: hex])
sendEvent(d.deviceNetworkId, [name: "hue", value: hue])
sendEvent(d.deviceNetworkId, [name: "saturation", value: sat])
}
} else {
sendEvent(d.deviceNetworkId, [name: "switch", value: "off"])
sendEvent(d.deviceNetworkId, [name: "level", value: 100])
if (bulb.value.state.sat) {
def hue = 23
def sat = 56
def hex = colorUtil.hslToHex(23, 56)
sendEvent(d.deviceNetworkId, [name: "color", value: hex])
sendEvent(d.deviceNetworkId, [name: "hue", value: hue])
sendEvent(d.deviceNetworkId, [name: "saturation", value: sat])
}
}
}
}
}
}
else
{ //put response
@@ -602,29 +559,30 @@ def parse(childDevice, description) {
}
}
}
}
} else {
log.debug "parse - got something other than headers,body..."
return []
}
}
def on(childDevice) {
def on(childDevice, transition = 4) {
log.debug "Executing 'on'"
put("lights/${getId(childDevice)}/state", [on: true])
return "Bulb is On"
// Assume bulb is off if no current state is found for level to avoid bulbs getting stuck in off after initial discovery
def percent = childDevice.device?.currentValue("level") as Integer ?: 0
def level = Math.min(Math.round(percent * 255 / 100), 255)
put("lights/${getId(childDevice)}/state", [bri: level, on: true, transitiontime: transition])
return "level: $percent"
}
def off(childDevice) {
def off(childDevice, transition = 4) {
log.debug "Executing 'off'"
put("lights/${getId(childDevice)}/state", [on: false])
return "Bulb is Off"
put("lights/${getId(childDevice)}/state", [on: false, transitiontime: transition])
}
def setLevel(childDevice, percent) {
log.debug "Executing 'setLevel'"
def level
if (percent == 1) level = 1 else level = Math.min(Math.round(percent * 255 / 100), 255)
def level = Math.min(Math.round(percent * 255 / 100), 255)
put("lights/${getId(childDevice)}/state", [bri: level, on: percent > 0])
}
@@ -640,21 +598,19 @@ def setHue(childDevice, percent) {
put("lights/${getId(childDevice)}/state", [hue: level])
}
def setColor(childDevice, huesettings) {
log.debug "Executing 'setColor($huesettings)'"
def hue = Math.min(Math.round(huesettings.hue * 65535 / 100), 65535)
def sat = Math.min(Math.round(huesettings.saturation * 255 / 100), 255)
def alert = huesettings.alert ? huesettings.alert : "none"
def transition = huesettings.transition ? huesettings.transition : 4
def setColor(childDevice, color, alert = "none", transition = 4) {
log.debug "Executing 'setColor($color)'"
def hue = Math.min(Math.round(color.hue * 65535 / 100), 65535)
def sat = Math.min(Math.round(color.saturation * 255 / 100), 255)
def value = [sat: sat, hue: hue, alert: alert, transitiontime: transition]
if (huesettings.level != null) {
if (huesettings.level == 1) value.bri = 1 else value.bri = Math.min(Math.round(huesettings.level * 255 / 100), 255)
if (color.level != null) {
value.bri = Math.min(Math.round(color.level * 255 / 100), 255)
value.on = value.bri > 0
}
if (huesettings.switch) {
value.on = huesettings.switch == "on"
if (color.switch) {
value.on = color.switch == "on"
}
log.debug "sending command $value"
@@ -684,19 +640,15 @@ private getId(childDevice) {
private poll() {
def host = getBridgeIP()
def uri = "/api/${state.username}/lights/"
try {
sendHubCommand(new physicalgraph.device.HubAction("""GET ${uri} HTTP/1.1
log.debug "GET: $host$uri"
sendHubCommand(new physicalgraph.device.HubAction("""GET ${uri} HTTP/1.1
HOST: ${host}
""", physicalgraph.device.Protocol.LAN, selectedHue))
} catch (all) {
log.warn "Parsing Body failed - trying again..."
doDeviceSync()
}
}
private put(path, body) {
def host = getBridgeIP()
def host = getBridgeIP()
def uri = "/api/${state.username}/$path"
def bodyJSON = new groovy.json.JsonBuilder(body).toString()
def length = bodyJSON.getBytes().size().toString()
@@ -716,19 +668,12 @@ ${bodyJSON}
private getBridgeIP() {
def host = null
if (selectedHue) {
def d = getChildDevice(selectedHue)
if (d) {
if (d.getDeviceDataByName("networkAddress"))
host = d.getDeviceDataByName("networkAddress")
else
host = d.latestState('networkAddress').stringValue
}
def d = getChildDevice(dni)
if (d)
host = d.latestState('networkAddress').stringValue
if (host == null || host == "") {
def serialNumber = selectedHue
def bridge = getHueBridges().find { it?.value?.serialNumber?.equalsIgnoreCase(serialNumber) }?.value
if (!bridge) {
bridge = getHueBridges().find { it?.value?.mac?.equalsIgnoreCase(serialNumber) }?.value
}
if (bridge?.ip && bridge?.port) {
if (bridge?.ip.contains("."))
host = "${bridge?.ip}:${bridge?.port}"
@@ -736,9 +681,9 @@ private getBridgeIP() {
host = "${convertHexToIP(bridge?.ip)}:${convertHexToInt(bridge?.port)}"
} else if (bridge?.networkAddress && bridge?.deviceAddress)
host = "${convertHexToIP(bridge?.networkAddress)}:${convertHexToInt(bridge?.deviceAddress)}"
}
}
log.trace "Bridge: $selectedHue - Host: $host"
}
}
return host
}

View File

@@ -98,15 +98,6 @@ def installed() {
}
def updated() {
def currentDeviceIds = settings.collect { k, devices -> devices }.flatten().collect { it.id }.unique()
def subscriptionDevicesToRemove = app.subscriptions*.device.findAll { device ->
!currentDeviceIds.contains(device.id)
}
subscriptionDevicesToRemove.each { device ->
log.debug "Removing $device.displayName subscription"
state.remove(device.id)
unsubscribe(device)
}
log.debug settings
}

View File

@@ -0,0 +1,128 @@
/**
* Laundry Monitor Using Power Meter
*
* Author: Daniel De Leo
*
* Sends a message and (optionally) turns on or blinks a light to indicate that laundry is done.
* This is a modification of the SmartThings Laundry Monitor Template App. This app uses a power meter
* to determine your laundry status instead of an accelerometer.
*
* Date: 2013-02-21
*/
definition (
name: "Laundry Monitor Using Power Meter",
namespace: "danieldeleo",
author: "Daniel De Leo",
description: "Sends a message and (optionally) turns on or blinks a light to indicate that laundry is done.",
category: "Convenience",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/FunAndSocial/App-HotTubTuner.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/FunAndSocial/App-HotTubTuner%402x.png"
)
preferences {
section("Tell me when this washer/dryer has stopped..."){
input(name: "meter", type: "capability.powerMeter", title: "When This Power Meter...", required: true, multiple: false)
}
section("Via a push notification and/or an SMS message"){
input "phone", "phone", title: "Phone Number (for SMS, optional)", required: false
input "pushAndPhone", "enum", title: "Both Push and SMS?", required: false, options: ["Yes", "No"], defaultValue: "No"
}
section("And by turning on these lights (optional)") {
input "switches", "capability.switch", required: false, multiple: true, title: "Which lights?"
input "lightMode", "enum", options: ["Flash Lights", "Turn On Lights"], required: false, defaultValue: "Flash Lights", title: "Action?"
}
}
def installed() {
initialize()
}
def updated() {
unsubscribe()
initialize()
}
def initialize() {
subscribe(meter, "power", meterHandler)
}
def meterHandler(evt) {
def meterValue = evt.value as double
if(meterValue == 0 && state.running) {
// if meterValue is at 0 Watts and the state is running,
// this means washer/dryer is either done or in a soak cycle
state.running = false
def msg = "${meter.displayName} is finished"
if(phone) {// Send SMS message if phone number provided
sendSms phone, msg
}
else {// Send Push Notification if no phone number provided
sendPush msg
}
if(pushAndPhone == "Yes" && phone) {//Send both Push and SMS
sendPush msg
}
if (switches) {
if (lightMode?.equals("Turn On Lights")) {
switches.on()
}
else {
flashLights()
}
}
}
else if(meterValue > 10 && !state.running) {
// if meterValue is greater than 10Watts and the
// previous read was 0, this means the machine is
// now running
state.running = true
}
}
private flashLights() {
def doFlash = true
def onFor = onFor ?: 2000
def offFor = offFor ?: 2000
def numFlashes = numFlashes ?: 3
log.debug "LAST ACTIVATED IS: ${state.lastActivated}"
if (state.lastActivated) {
def elapsed = now() - state.lastActivated
def sequenceTime = (numFlashes + 1) * (onFor + offFor)
doFlash = elapsed > sequenceTime
log.debug "DO FLASH: $doFlash, ELAPSED: $elapsed, LAST ACTIVATED: ${state.lastActivated}"
}
if (doFlash) {
log.debug "FLASHING $numFlashes times"
state.lastActivated = now()
log.debug "LAST ACTIVATED SET TO: ${state.lastActivated}"
def initialActionOn = switches.collect{it.currentSwitch != "on"}
def delay = 1L
numFlashes.times {
log.trace "Switch on after $delay msec"
switches.eachWithIndex {s, i ->
if (initialActionOn[i]) {
s.on(delay: delay)
}
else {
s.off(delay:delay)
}
}
delay += onFor
log.trace "Switch off after $delay msec"
switches.eachWithIndex {s, i ->
if (initialActionOn[i]) {
s.off(delay: delay)
}
else {
s.on(delay:delay)
}
}
delay += offFor
}
}
}

View File

@@ -22,8 +22,7 @@ definition(
category: "SmartThings Labs",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/Partner/life360.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Partner/life360@2x.png",
oauth: [displayName: "Life360", displayLink: "Life360"],
singleInstance: true
oauth: [displayName: "Life360", displayLink: "Life360"]
) {
appSetting "clientId"
appSetting "clientSecret"
@@ -592,7 +591,7 @@ def updated() {
// log.debug "External Id=${app.id}:${member.id}"
// create the device
def childDevice = addChildDevice("smartthings", "Life360 User", "${app.id}.${member.id}",null,[name:member.firstName, completedSetup: true])
def childDevice = addChildDevice("smartthings", "life360-user", "${app.id}.${member.id}",null,[name:member.firstName, completedSetup: true])
// childDevice.setMemberId(member.id)
if (childDevice)

View File

@@ -1,404 +0,0 @@
/**
* LIFX
*
* Copyright 2015 LIFX
*
*/
definition(
name: "LIFX (Connect)",
namespace: "smartthings",
author: "LIFX",
description: "Allows you to use LIFX smart light bulbs with SmartThings.",
category: "Convenience",
iconUrl: "https://cloud.lifx.com/images/lifx.png",
iconX2Url: "https://cloud.lifx.com/images/lifx.png",
iconX3Url: "https://cloud.lifx.com/images/lifx.png",
oauth: true,
singleInstance: true) {
appSetting "clientId"
appSetting "clientSecret"
}
preferences {
page(name: "Credentials", title: "LIFX", content: "authPage", install: true)
}
mappings {
path("/receivedToken") { action: [ POST: "oauthReceivedToken", GET: "oauthReceivedToken"] }
path("/receiveToken") { action: [ POST: "oauthReceiveToken", GET: "oauthReceiveToken"] }
path("/hookCallback") { action: [ POST: "hookEventHandler", GET: "hookEventHandler"] }
path("/oauth/callback") { action: [ GET: "oauthCallback" ] }
path("/oauth/initialize") { action: [ GET: "oauthInit"] }
path("/test") { action: [ GET: "oauthSuccess" ] }
}
def getServerUrl() { return "https://graph.api.smartthings.com" }
def getCallbackUrl() { return "https://graph.api.smartthings.com/oauth/callback"}
def apiURL(path = '/') { return "https://api.lifx.com/v1${path}" }
def getSecretKey() { return appSettings.secretKey }
def getClientId() { return appSettings.clientId }
def authPage() {
log.debug "authPage test1"
if (!state.lifxAccessToken) {
log.debug "no LIFX access token"
// This is the SmartThings access token
if (!state.accessToken) {
log.debug "no access token, create access token"
state.accessToken = createAccessToken() // predefined method
}
def description = "Tap to enter LIFX credentials"
def redirectUrl = "${serverUrl}/oauth/initialize?appId=${app.id}&access_token=${state.accessToken}&apiServerUrl=${apiServerUrl}" // this triggers oauthInit() below
// def redirectUrl = "${apiServerUrl}"
log.debug "app id: ${app.id}"
log.debug "redirect url: ${redirectUrl}"
return dynamicPage(name: "Credentials", title: "Connect to LIFX", nextPage: null, uninstall: true, install:true) {
section {
href(url:redirectUrl, required:true, title:"Connect to LIFX", description:"Tap here to connect your LIFX account")
}
}
} else {
log.debug "have LIFX access token"
def options = locationOptions() ?: []
def count = options.size()
return dynamicPage(name:"Credentials", title:"", nextPage:"", install:true, uninstall: true) {
section("Select your location") {
input "selectedLocationId", "enum", required:true, title:"Select location (${count} found)", multiple:false, options:options, submitOnChange: true
}
}
}
}
// OAuth
def oauthInit() {
def oauthParams = [client_id: "${appSettings.clientId}", scope: "remote_control:all", response_type: "code" ]
log.info("Redirecting user to OAuth setup")
redirect(location: "https://cloud.lifx.com/oauth/authorize?${toQueryString(oauthParams)}")
}
def oauthCallback() {
def redirectUrl = null
if (params.authQueryString) {
redirectUrl = URLDecoder.decode(params.authQueryString.replaceAll(".+&redirect_url=", ""))
} else {
log.warn "No authQueryString"
}
if (state.lifxAccessToken) {
log.debug "Access token already exists"
success()
} else {
def code = params.code
if (code) {
if (code.size() > 6) {
// LIFX code
log.debug "Exchanging code for access token"
oauthReceiveToken(redirectUrl)
} else {
// Initiate the LIFX OAuth flow.
oauthInit()
}
} else {
log.debug "This code should be unreachable"
success()
}
}
}
def oauthReceiveToken(redirectUrl = null) {
// Not sure what redirectUrl is for
log.debug "receiveToken - params: ${params}"
def oauthParams = [ client_id: "${appSettings.clientId}", client_secret: "${appSettings.clientSecret}", grant_type: "authorization_code", code: params.code, scope: params.scope ] // how is params.code valid here?
def params = [
uri: "https://cloud.lifx.com/oauth/token",
body: oauthParams,
headers: [
"User-Agent": "SmartThings Integration"
]
]
httpPost(params) { response ->
state.lifxAccessToken = response.data.access_token
}
if (state.lifxAccessToken) {
oauthSuccess()
} else {
oauthFailure()
}
}
def oauthSuccess() {
def message = """
<p>Your LIFX Account is now connected to SmartThings!</p>
<p>Click 'Done' to finish setup.</p>
"""
oauthConnectionStatus(message)
}
def oauthFailure() {
def message = """
<p>The connection could not be established!</p>
<p>Click 'Done' to return to the menu.</p>
"""
oauthConnectionStatus(message)
}
def oauthReceivedToken() {
def message = """
<p>Your LIFX Account is already connected to SmartThings!</p>
<p>Click 'Done' to finish setup.</p>
"""
oauthConnectionStatus(message)
}
def oauthConnectionStatus(message, redirectUrl = null) {
def redirectHtml = ""
if (redirectUrl) {
redirectHtml = """
<meta http-equiv="refresh" content="3; url=${redirectUrl}" />
"""
}
def html = """
<!DOCTYPE html>
<html>
<head>
<meta name="viewport" content="width=device-width">
<title>SmartThings Connection</title>
<style type="text/css">
@font-face {
font-family: 'Swiss 721 W01 Thin';
src: url('https://s3.amazonaws.com/smartapp-icons/Partner/fonts/swiss-721-thin-webfont.eot');
src: url('https://s3.amazonaws.com/smartapp-icons/Partner/fonts/swiss-721-thin-webfont.eot?#iefix') format('embedded-opentype'),
url('https://s3.amazonaws.com/smartapp-icons/Partner/fonts/swiss-721-thin-webfont.woff') format('woff'),
url('https://s3.amazonaws.com/smartapp-icons/Partner/fonts/swiss-721-thin-webfont.ttf') format('truetype'),
url('https://s3.amazonaws.com/smartapp-icons/Partner/fonts/swiss-721-thin-webfont.svg#swis721_th_btthin') format('svg');
font-weight: normal;
font-style: normal;
}
@font-face {
font-family: 'Swiss 721 W01 Light';
src: url('https://s3.amazonaws.com/smartapp-icons/Partner/fonts/swiss-721-light-webfont.eot');
src: url('https://s3.amazonaws.com/smartapp-icons/Partner/fonts/swiss-721-light-webfont.eot?#iefix') format('embedded-opentype'),
url('https://s3.amazonaws.com/smartapp-icons/Partner/fonts/swiss-721-light-webfont.woff') format('woff'),
url('https://s3.amazonaws.com/smartapp-icons/Partner/fonts/swiss-721-light-webfont.ttf') format('truetype'),
url('https://s3.amazonaws.com/smartapp-icons/Partner/fonts/swiss-721-light-webfont.svg#swis721_lt_btlight') format('svg');
font-weight: normal;
font-style: normal;
}
.container {
width: 280;
padding: 20px;
text-align: center;
}
img {
vertical-align: middle;
}
img:nth-child(2) {
margin: 0 15px;
}
p {
font-size: 1.2em;
font-family: 'Swiss 721 W01 Thin';
text-align: center;
color: #666666;
padding: 0 20px;
margin-bottom: 0;
}
span {
font-family: 'Swiss 721 W01 Light';
}
</style>
${redirectHtml}
</head>
<body>
<div class="container">
<img src='https://cloud.lifx.com/images/lifx.png' alt='LIFX icon' width='100'/>
<img src='https://s3.amazonaws.com/smartapp-icons/Partner/support/connected-device-icn%402x.png' alt='connected device icon' width="40"/>
<img src='https://s3.amazonaws.com/smartapp-icons/Partner/support/st-logo%402x.png' alt='SmartThings logo' width="100"/>
<p>
${message}
</p>
</div>
</body>
</html>
"""
render contentType: 'text/html', data: html
}
String toQueryString(Map m) {
return m.collect { k, v -> "${k}=${URLEncoder.encode(v.toString())}" }.sort().join("&")
}
// App lifecycle hooks
def installed() {
if (!state.accessToken) {
createAccessToken()
} else {
initialize()
}
// Check for new devices and remove old ones every 3 hours
runEvery3Hours('updateDevices')
}
// called after settings are changed
def updated() {
if (!state.accessToken) {
createAccessToken()
} else {
initialize()
}
}
def uninstalled() {
log.info("Uninstalling, removing child devices...")
unschedule('updateDevices')
removeChildDevices(getChildDevices())
}
private removeChildDevices(devices) {
devices.each {
deleteChildDevice(it.deviceNetworkId) // 'it' is default
}
}
// called after Done is hit after selecting a Location
def initialize() {
log.debug "initialize"
updateDevices()
}
// Misc
Map apiRequestHeaders() {
return ["Authorization": "Bearer ${state.lifxAccessToken}",
"Accept": "application/json",
"Content-Type": "application/json",
"User-Agent": "SmartThings Integration"
]
}
// Requests
def logResponse(response) {
log.info("Status: ${response.status}")
log.info("Body: ${response.data}")
}
// API Requests
// logObject is because log doesn't work if this method is being called from a Device
def logErrors(options = [errorReturn: null, logObject: log], Closure c) {
try {
return c()
} catch (groovyx.net.http.HttpResponseException e) {
options.logObject.error("got error: ${e}, body: ${e.getResponse().getData()}")
if (e.statusCode == 401) { // token is expired
state.remove("lifxAccessToken")
options.logObject.warn "Access token is not valid"
}
return options.errorReturn
} catch (java.net.SocketTimeoutException e) {
options.logObject.warn "Connection timed out, not much we can do here"
return options.errorReturn
}
}
def apiGET(path) {
try {
httpGet(uri: apiURL(path), headers: apiRequestHeaders()) {response ->
logResponse(response)
return response
}
} catch (groovyx.net.http.HttpResponseException e) {
logResponse(e.response)
return e.response
}
}
def apiPUT(path, body = [:]) {
try {
log.debug("Beginning API PUT: ${path}, ${body}")
httpPutJson(uri: apiURL(path), body: new groovy.json.JsonBuilder(body).toString(), headers: apiRequestHeaders(), ) {response ->
logResponse(response)
return response
}
} catch (groovyx.net.http.HttpResponseException e) {
logResponse(e.response)
return e.response
}}
def devicesList(selector = '') {
logErrors([]) {
def resp = apiGET("/lights/${selector}")
if (resp.status == 200) {
return resp.data
} else {
log.error("Non-200 from device list call. ${resp.status} ${resp.data}")
return []
}
}
}
Map locationOptions() {
def options = [:]
def devices = devicesList()
devices.each { device ->
options[device.location.id] = device.location.name
}
log.debug("Locations: ${options}")
return options
}
def devicesInLocation() {
return devicesList("location_id:${settings.selectedLocationId}")
}
// ensures the devices list is up to date
def updateDevices() {
if (!state.devices) {
state.devices = [:]
}
def devices = devicesInLocation()
def selectors = []
log.debug("All selectors: ${selectors}")
devices.each { device ->
def childDevice = getChildDevice(device.id)
selectors.add("${device.id}")
if (!childDevice) {
log.info("Adding device ${device.id}: ${device.product}")
def data = [
label: device.label,
level: Math.round((device.brightness ?: 1) * 100),
switch: device.connected ? device.power : "unreachable",
colorTemperature: device.color.kelvin
]
if (device.product.capabilities.has_color) {
data["color"] = colorUtil.hslToHex((device.color.hue / 3.6) as int, (device.color.saturation * 100) as int)
data["hue"] = device.color.hue / 3.6
data["saturation"] = device.color.saturation * 100
childDevice = addChildDevice(app.namespace, "LIFX Color Bulb", device.id, null, data)
} else {
childDevice = addChildDevice(app.namespace, "LIFX White Bulb", device.id, null, data)
}
}
}
getChildDevices().findAll { !selectors.contains("${it.deviceNetworkId}") }.each {
log.info("Deleting ${it.deviceNetworkId}")
deleteChildDevice(it.deviceNetworkId)
}
runIn(1, 'refreshDevices') // Asynchronously refresh devices so we don't block
}
def refreshDevices() {
log.info("Refreshing all devices...")
getChildDevices().each { device ->
device.refresh()
}
}

View File

@@ -34,20 +34,20 @@
* locks | lock | lock, unlock | locked, unlocked
* ---------------------+-------------------+-----------------------------+------------------------------------
*/
definition(
name: "Logitech Harmony (Connect)",
namespace: "smartthings",
author: "SmartThings",
author: "Juan Pablo Risso",
description: "Allows you to integrate your Logitech Harmony account with SmartThings.",
category: "SmartThings Labs",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/Partner/harmony.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Partner/harmony%402x.png",
oauth: [displayName: "Logitech Harmony", displayLink: "http://www.logitech.com/en-us/harmony-remotes"],
singleInstance: true
oauth: [displayName: "Logitech Harmony", displayLink: "http://www.logitech.com/en-us/harmony-remotes"]
){
appSetting "clientId"
appSetting "clientSecret"
appSetting "callbackUrl"
}
preferences(oauthPage: "deviceAuthorization") {
@@ -89,18 +89,16 @@ mappings {
}
def getServerUrl() { return "https://graph.api.smartthings.com" }
def getCallbackUrl() { "https://graph.api.smartthings.com/oauth/callback" }
def getBuildRedirectUrl() { "${serverUrl}/oauth/initialize?appId=${app.id}&access_token=${state.accessToken}&apiServerUrl=${apiServerUrl}" }
def authPage() {
def description = null
def description = null
if (!state.HarmonyAccessToken) {
if (!state.accessToken) {
log.debug "About to create access token"
createAccessToken()
}
description = "Click to enter Harmony Credentials"
def redirectUrl = buildRedirectUrl
def redirectUrl = "${serverUrl}/oauth/initialize?appId=${app.id}&access_token=${state.accessToken}"
return dynamicPage(name: "Credentials", title: "Harmony", nextPage: null, uninstall: true, install:false) {
section { href url:redirectUrl, style:"embedded", required:true, title:"Harmony", description:description }
}
@@ -112,7 +110,7 @@ def authPage() {
def huboptions = state.HarmonyHubs ?: []
def actoptions = state.HarmonyActivities ?: []
def numFoundHub = huboptions.size() ?: 0
def numFoundAct = actoptions.size() ?: 0
if((deviceRefreshCount % 5) == 0) {
@@ -122,14 +120,13 @@ def authPage() {
section("Please wait while we discover your Harmony Hubs and Activities. Discovery can take five minutes or more, so sit back and relax! Select your device below once discovered.") {
input "selectedhubs", "enum", required:false, title:"Select Harmony Hubs (${numFoundHub} found)", multiple:true, options:huboptions
}
// Virtual activity flag
if (numFoundHub > 0 && numFoundAct > 0 && true)
if (numFoundHub > 0 && numFoundAct > 0 && false)
section("You can also add activities as virtual switches for other convenient integrations") {
input "selectedactivities", "enum", required:false, title:"Select Harmony Activities (${numFoundAct} found)", multiple:true, options:actoptions
}
}
if (state.resethub)
section("Connection to the hub timed out. Please restart the hub and try again.") {}
}
section("Connection to the hub timed out. Please restart the hub and try again.") {}
}
}
}
@@ -141,7 +138,7 @@ def callback() {
} else {
log.warn "No authQueryString"
}
if (state.HarmonyAccessToken) {
log.debug "Access token already exists"
discovery()
@@ -166,8 +163,8 @@ def callback() {
def init() {
log.debug "Requesting Code"
def oauthParams = [client_id: "${appSettings.clientId}", scope: "remote", response_type: "code", redirect_uri: "${callbackUrl}" ]
redirect(location: "https://home.myharmony.com/oauth2/authorize?${toQueryString(oauthParams)}")
def oauthParams = [client_id: "${appSettings.clientId}", scope: "remote", response_type: "code", redirect_uri: "${appSettings.callbackUrl}" ]
redirect(location: "https://home.myharmony.com/oauth2/authorize?${toQueryString(oauthParams)}")
}
def receiveToken(redirectUrl = null) {
@@ -177,7 +174,7 @@ def receiveToken(redirectUrl = null) {
uri: "https://home.myharmony.com/oauth2/token?${toQueryString(oauthParams)}",
]
try {
httpPost(params) { response ->
httpPost(params) { response ->
state.HarmonyAccessToken = response.data.access_token
}
} catch (java.util.concurrent.TimeoutException e) {
@@ -224,7 +221,7 @@ def connectionStatus(message, redirectUrl = null) {
<meta http-equiv="refresh" content="3; url=${redirectUrl}" />
"""
}
def html = """
<!DOCTYPE html>
<html>
@@ -305,28 +302,30 @@ def buildRedirectUrl(page) {
}
def installed() {
enableCallback()
if (!state.accessToken) {
log.debug "About to create access token"
createAccessToken()
} else {
} else {
initialize()
}
}
def updated() {
unsubscribe()
unschedule()
unschedule()
enableCallback()
if (!state.accessToken) {
log.debug "About to create access token"
createAccessToken()
} else {
} else {
initialize()
}
}
}
def uninstalled() {
if (state.HarmonyAccessToken) {
try {
try {
state.HarmonyAccessToken = ""
log.debug "Success disconnecting Harmony from SmartThings"
} catch (groovyx.net.http.HttpResponseException e) {
@@ -340,7 +339,7 @@ def initialize() {
if (selectedhubs || selectedactivities) {
addDevice()
runEvery5Minutes("discovery")
}
}
}
def getHarmonydevices() {
@@ -360,20 +359,20 @@ Map discoverDevices() {
def hubname = getHubName(it.key)
def hubvalue = "${hubname}"
hubs["harmony-${hubkey}"] = hubvalue
it.value.response.data.activities.each {
it.value.response.data.activities.each {
def value = "${it.value.name}"
def key = "harmony-${hubkey}-${it.key}"
activities["${key}"] = value
}
}
}
state.HarmonyHubs = hubs
state.HarmonyActivities = activities
}
state.HarmonyActivities = activities
}
}
//CHILD DEVICE METHODS
def discovery() {
def Params = [auth: state.HarmonyAccessToken]
def Params = [auth: state.HarmonyAccessToken]
def url = "https://home.myharmony.com/cloudapi/activity/all?${toQueryString(Params)}"
try {
httpGet(uri: url, headers: ["Accept": "application/json"]) {response ->
@@ -385,24 +384,22 @@ def discovery() {
poll()
} else {
log.debug "Error: $response.status"
}
}
}
} catch (groovyx.net.http.HttpResponseException e) {
if (e.statusCode == 401) { // token is expired
state.remove("HarmonyAccessToken")
state.remove("HarmonyAccessToken")
log.warn "Harmony Access token has expired"
}
} catch (java.net.SocketTimeoutException e) {
log.warn "Connection to the hub timed out. Please restart the hub and try again."
state.resethub = true
} catch (e) {
log.warn "Hostname in certificate didn't match. Please try again later."
}
}
return null
}
def addDevice() {
log.trace "Adding Hubs"
log.trace "Adding Hubs"
selectedhubs.each { dni ->
def d = getChildDevice(dni)
if(!d) {
@@ -413,8 +410,8 @@ def addDevice() {
} else {
log.trace "found ${d.displayName} with id $dni already exists"
}
}
log.trace "Adding Activities"
}
log.trace "Adding Activities"
selectedactivities.each { dni ->
def d = getChildDevice(dni)
if(!d) {
@@ -425,7 +422,7 @@ def addDevice() {
} else {
log.trace "found ${d.displayName} with id $dni already exists"
}
}
}
}
def activity(dni,mode) {
@@ -433,26 +430,26 @@ def activity(dni,mode) {
def msg = "Command failed"
def url = ''
if (dni == "all") {
url = "https://home.myharmony.com/cloudapi/activity/off?${toQueryString(Params)}"
} else {
url = "https://home.myharmony.com/cloudapi/activity/off?${toQueryString(Params)}"
} else {
def aux = dni.split('-')
def hubId = aux[1]
if (mode == "hub" || (aux.size() <= 2) || (aux[2] == "off")){
url = "https://home.myharmony.com/cloudapi/hub/${hubId}/activity/off?${toQueryString(Params)}"
if (mode == "hub" || (aux.size() <= 2) || (aux[2] == "off")){
url = "https://home.myharmony.com/cloudapi/hub/${hubId}/activity/off?${toQueryString(Params)}"
} else {
def activityId = aux[2]
url = "https://home.myharmony.com/cloudapi/hub/${hubId}/activity/${activityId}/${mode}?${toQueryString(Params)}"
}
}
}
try {
httpPostJson(uri: url) { response ->
httpPostJson(uri: url) { response ->
if (response.data.code == 200 || dni == "all") {
msg = "Command sent succesfully"
state.aux = 0
state.aux = 0
} else {
msg = "Command failed. Error: $response.data.code"
}
}
}
} catch (groovyx.net.http.HttpResponseException ex) {
log.error ex
if (state.aux == 0) {
@@ -460,11 +457,9 @@ def activity(dni,mode) {
activity(dni,mode)
} else {
msg = ex
state.aux = 0
state.aux = 0
}
} catch(Exception ex) {
msg = ex
}
}
runIn(10, "poll", [overwrite: true])
return msg
}
@@ -473,10 +468,10 @@ def poll() {
// GET THE LIST OF ACTIVITIES
if (state.HarmonyAccessToken) {
getActivityList()
def Params = [auth: state.HarmonyAccessToken]
def Params = [auth: state.HarmonyAccessToken]
def url = "https://home.myharmony.com/cloudapi/state?${toQueryString(Params)}"
try {
httpGet(uri: url, headers: ["Accept": "application/json"]) {response ->
httpGet(uri: url, headers: ["Accept": "application/json"]) {response ->
def map = [:]
response.data.hubs.each {
if (it.value.message == "OK") {
@@ -489,20 +484,20 @@ def poll() {
def currentActivity = getActivityName(it.value.response.data.currentAvActivity,it.key)
hub.sendEvent(name: "currentActivity", value: currentActivity, descriptionText: "Current activity is ${currentActivity}", display: false)
}
}
}
} else {
log.trace it.value.message
}
}
}
def activities = getChildDevices()
def activities = getChildDevices()
def activitynotrunning = true
activities.each { activity ->
def act = activity.deviceNetworkId.split('-')
def act = activity.deviceNetworkId.split('-')
if (act.size() > 2) {
def aux = map.find { it.key == act[1] }
if (aux) {
def aux2 = aux.value.split(',')
def childDevice = getChildDevice(activity.deviceNetworkId)
def childDevice = getChildDevice(activity.deviceNetworkId)
if ((act[2] == aux2[0]) && (aux2[1] == "1" || aux2[1] == "2")) {
childDevice?.sendEvent(name: "switch", value: "on")
if (aux2[1] == "1")
@@ -512,30 +507,28 @@ def poll() {
if (aux2[1] == "3")
runIn(5, "poll", [overwrite: true])
}
}
}
}
}
}
return "Poll completed $map - $state.hubs"
}
} catch (groovyx.net.http.HttpResponseException e) {
if (e.statusCode == 401) { // token is expired
state.remove("HarmonyAccessToken")
state.remove("HarmonyAccessToken")
return "Harmony Access token has expired"
}
} catch(Exception e) {
log.trace e
}
}
}
}
}
}
def getActivityList() {
// GET ACTIVITY'S NAME
if (state.HarmonyAccessToken) {
def Params = [auth: state.HarmonyAccessToken]
def Params = [auth: state.HarmonyAccessToken]
def url = "https://home.myharmony.com/cloudapi/activity/all?${toQueryString(Params)}"
try {
httpGet(uri: url, headers: ["Accept": "application/json"]) {response ->
httpGet(uri: url, headers: ["Accept": "application/json"]) {response ->
response.data.hubs.each {
def hub = getChildDevice("harmony-${it.key}")
if (hub) {
@@ -548,19 +541,17 @@ def getActivityList() {
}
activities += [id: "off", name: "Activity OFF", type: "0"]
log.trace activities
}
hub.sendEvent(name: "activities", value: new groovy.json.JsonBuilder(activities).toString(), descriptionText: "Activities are ${activities.collect { it.name }?.join(', ')}", display: false)
}
hub.sendEvent(name: "activities", value: new groovy.json.JsonBuilder(activities).toString(), descriptionText: "Activities are ${activities.collect { it.name }?.join(', ')}", display: false)
}
}
}
}
} catch (groovyx.net.http.HttpResponseException e) {
log.trace e
} catch (java.net.SocketTimeoutException e) {
log.trace e
} catch(Exception e) {
log.trace e
}
}
}
}
return activity
}
@@ -568,16 +559,16 @@ def getActivityName(activity,hubId) {
// GET ACTIVITY'S NAME
def actname = activity
if (state.HarmonyAccessToken) {
def Params = [auth: state.HarmonyAccessToken]
def Params = [auth: state.HarmonyAccessToken]
def url = "https://home.myharmony.com/cloudapi/hub/${hubId}/activity/all?${toQueryString(Params)}"
try {
httpGet(uri: url, headers: ["Accept": "application/json"]) {response ->
httpGet(uri: url, headers: ["Accept": "application/json"]) {response ->
actname = response.data.data.activities[activity].name
}
} catch(Exception e) {
} catch (groovyx.net.http.HttpResponseException e) {
log.trace e
}
}
}
}
return actname
}
@@ -585,19 +576,19 @@ def getActivityId(activity,hubId) {
// GET ACTIVITY'S NAME
def actid = activity
if (state.HarmonyAccessToken) {
def Params = [auth: state.HarmonyAccessToken]
def Params = [auth: state.HarmonyAccessToken]
def url = "https://home.myharmony.com/cloudapi/hub/${hubId}/activity/all?${toQueryString(Params)}"
try {
httpGet(uri: url, headers: ["Accept": "application/json"]) {response ->
httpGet(uri: url, headers: ["Accept": "application/json"]) {response ->
response.data.data.activities.each {
if (it.value.name == activity)
actid = it.key
}
}
}
} catch(Exception e) {
} catch (groovyx.net.http.HttpResponseException e) {
log.trace e
}
}
}
}
return actid
}
@@ -605,16 +596,16 @@ def getHubName(hubId) {
// GET HUB'S NAME
def hubname = hubId
if (state.HarmonyAccessToken) {
def Params = [auth: state.HarmonyAccessToken]
def Params = [auth: state.HarmonyAccessToken]
def url = "https://home.myharmony.com/cloudapi/hub/${hubId}/discover?${toQueryString(Params)}"
try {
httpGet(uri: url, headers: ["Accept": "application/json"]) {response ->
httpGet(uri: url, headers: ["Accept": "application/json"]) {response ->
hubname = response.data.data.name
}
} catch(Exception e) {
} catch (groovyx.net.http.HttpResponseException e) {
log.trace e
}
}
}
}
return hubname
}
@@ -625,8 +616,8 @@ def sendNotification(msg) {
def hookEventHandler() {
// log.debug "In hookEventHandler method."
log.debug "request = ${request}"
def json = request.JSON
def json = request.JSON
def html = """{"code":200,"message":"OK"}"""
render contentType: 'application/json', data: html
@@ -660,16 +651,12 @@ def updateDevice() {
} else {
def device = allDevices.find { it.id == params.id }
if (device) {
if (device.hasCommand("$command")) {
if (arguments) {
device."$command"(*arguments)
} else {
device."$command"()
}
render status: 204, data: "{}"
} else {
render status: 404, data: '{"msg": "Command not supported by this Device"}'
if (arguments) {
device."$command"(*arguments)
} else {
device."$command"()
}
render status: 204, data: "{}"
} else {
render status: 404, data: '{"msg": "Device not found"}'
}

View File

@@ -79,9 +79,12 @@ def scenePage(params=[:]) {
href "devicePage", title: "Show Device States", params: [sceneId:sceneId], description: "", state: sceneIsDefined(sceneId) ? "complete" : "incomplete"
}
section {
href "saveStatesPage", title: "Record Current Device States", params: [sceneId:sceneId], description: ""
}
if (sceneId == currentSceneId) {
section {
href "saveStatesPage", title: "Record Current Device States", params: [sceneId:sceneId], description: ""
}
}
}
}
@@ -222,7 +225,7 @@ private restoreStates(sceneId) {
if (type == "level") {
log.debug "${light.displayName} level is '$level'"
if (level != null) {
light.setLevel(level)
light.setLevel(value)
}
}
else if (type == "color") {

View File

@@ -23,7 +23,7 @@ definition(
name: "Notify Me When",
namespace: "smartthings",
author: "SmartThings",
description: "Receive notifications when anything happens in your home.",
description: "Get a push notification or text message when any of a variety of SmartThings is activated. Supports button push, motion, contact, acceleration, moisture and presence sensors as well as switches.",
category: "Convenience",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/Meta/window_contact.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Meta/window_contact@2x.png"
@@ -49,7 +49,6 @@ preferences {
section("Via a push notification and/or an SMS message"){
input("recipients", "contact", title: "Send notifications to") {
input "phone", "phone", title: "Phone Number (for SMS, optional)", required: false
paragraph "If outside the US please make sure to enter the proper country code"
input "pushAndPhone", "enum", title: "Both Push and SMS?", required: false, options: ["Yes", "No"]
}
}

View File

@@ -22,8 +22,7 @@ definition(
description: "Allows you to control your Samsung TV from the SmartThings app. Perform basic functions like power Off, source, volume, channels and other remote control functions.",
category: "SmartThings Labs",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/Samsung/samsung-remote%402x.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Samsung/samsung-remote%403x.png",
singleInstance: true
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Samsung/samsung-remote%403x.png"
)
preferences {

View File

@@ -16,8 +16,8 @@
*
*/
definition(
name: "Send HAM Bridge Command When",
namespace: "smartthings",
name: "Send HAM Bridge Command When",
namespace: "soletc.com",
author: "Scottin Pollock",
description: "Sends a command to your HAM Bridge server when SmartThings are activated.",
category: "Convenience",
@@ -25,6 +25,7 @@ definition(
iconX2Url: "http://solutionsetcetera.com/stuff/STIcons/HB@2x.png"
)
preferences {
section("Choose one or more, when..."){
input "motion", "capability.motionSensor", title: "Motion Here", required: false, multiple: true

View File

@@ -10,24 +10,24 @@
* 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.
*
* Speaker Control
* Sonos Control
*
* Author: SmartThings
*
* Date: 2013-12-10
*/
definition(
name: "Speaker Control",
name: "Sonos Control",
namespace: "smartthings",
author: "SmartThings",
description: "Play or pause your Speaker when certain actions take place in your home.",
description: "Play or pause your Sonos when certain actions take place in your home.",
category: "SmartThings Labs",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/Partner/sonos.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Partner/sonos@2x.png"
)
preferences {
page(name: "mainPage", title: "Control your Speaker when something happens", install: true, uninstall: true)
page(name: "mainPage", title: "Control your Sonos when something happens", install: true, uninstall: true)
page(name: "timeIntervalInput", title: "Only during a certain time") {
section {
input "starting", "time", title: "Starting", required: false
@@ -81,7 +81,7 @@ def mainPage() {
]
}
section {
input "sonos", "capability.musicPlayer", title: "Speaker music player", required: true
input "sonos", "capability.musicPlayer", title: "Sonos music player", required: true
}
section("More options", hideable: true, hidden: true) {
input "volume", "number", title: "Set the volume volume", description: "0-100%", required: false

View File

@@ -10,7 +10,7 @@
* 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.
*
* Speaker Mood Music
* Sonos Mood Music
*
* Author: SmartThings
* Date: 2014-02-12
@@ -65,7 +65,7 @@ private saveSelectedSong() {
}
definition(
name: "Speaker Mood Music",
name: "Sonos Mood Music",
namespace: "smartthings",
author: "SmartThings",
description: "Plays a selected song or station.",
@@ -75,7 +75,7 @@ definition(
)
preferences {
page(name: "mainPage", title: "Play a selected song or station on your Speaker when something happens", nextPage: "chooseTrack", uninstall: true)
page(name: "mainPage", title: "Play a selected song or station on your Sonos when something happens", nextPage: "chooseTrack", uninstall: true)
page(name: "chooseTrack", title: "Select a song", install: true)
page(name: "timeIntervalInput", title: "Only during a certain time") {
section {
@@ -125,7 +125,7 @@ def mainPage() {
ifUnset "timeOfDay", "time", title: "At a Scheduled Time", required: false
}
section {
input "sonos", "capability.musicPlayer", title: "On this Speaker player", required: true
input "sonos", "capability.musicPlayer", title: "On this Sonos player", required: true
}
section("More options", hideable: true, hidden: true) {
input "volume", "number", title: "Set the volume", description: "0-100%", required: false

View File

@@ -10,23 +10,23 @@
* 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.
*
* Speaker Custom Message
* Sonos Custom Message
*
* Author: SmartThings
* Date: 2014-1-29
*/
definition(
name: "Speaker Notify with Sound",
name: "Sonos Notify with Sound",
namespace: "smartthings",
author: "SmartThings",
description: "Play a sound or custom message through your Speaker when the mode changes or other events occur.",
description: "Play a sound or custom message through your Sonos when the mode changes or other events occur.",
category: "SmartThings Labs",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/Partner/sonos.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Partner/sonos@2x.png"
)
preferences {
page(name: "mainPage", title: "Play a message on your Speaker when something happens", install: true, uninstall: true)
page(name: "mainPage", title: "Play a message on your Sonos when something happens", install: true, uninstall: true)
page(name: "chooseTrack", title: "Select a song or station")
page(name: "timeIntervalInput", title: "Only during a certain time") {
section {
@@ -75,8 +75,8 @@ def mainPage() {
ifUnset "timeOfDay", "time", title: "At a Scheduled Time", required: false
}
section{
input "actionType", "enum", title: "Action?", required: true, defaultValue: "Bell 1", options: [
//"Custom Message",
input "actionType", "enum", title: "Action?", required: true, defaultValue: "Custom Message", options: [
"Custom Message",
"Bell 1",
"Bell 2",
"Dogs Barking",
@@ -89,10 +89,10 @@ def mainPage() {
"Someone is arriving",
"Piano",
"Lightsaber"]
//input "message","text",title:"Play this message", required:false, multiple: false
input "message","text",title:"Play this message", required:false, multiple: false
}
section {
input "sonos", "capability.musicPlayer", title: "On this Speaker player", required: true
input "sonos", "capability.musicPlayer", title: "On this Sonos player", required: true
}
section("More options", hideable: true, hidden: true) {
input "resumePlaying", "bool", title: "Resume currently playing music after notification", required: false, defaultValue: true
@@ -409,13 +409,12 @@ private loadText() {
state.sound = [uri: "http://s3.amazonaws.com/smartapp-media/sonos/lightsaber.mp3", duration: "10"]
break;
default:
/*if (message) {
if (message) {
state.sound = textToSpeech(message instanceof List ? message[0] : message) // not sure why this is (sometimes) needed)
}
else {
state.sound = textToSpeech("You selected the custom message option but did not enter a message in the $app.label Smart App")
}*/
state.sound = [uri: "http://s3.amazonaws.com/smartapp-media/sonos/bell1.mp3", duration: "10"]
}
break;
}
}

View File

@@ -10,23 +10,23 @@
* 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.
*
* Speaker Weather Forecast
* Sonos Weather Forecast
*
* Author: SmartThings
* Date: 2014-1-29
*/
definition(
name: "Speaker Weather Forecast",
name: "Sonos Weather Forecast",
namespace: "smartthings",
author: "SmartThings",
description: "Play a weather report through your Speaker when the mode changes or other events occur",
description: "Play a weather report through your Sonos when the mode changes or other events occur",
category: "SmartThings Labs",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/Partner/sonos.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Partner/sonos@2x.png"
)
preferences {
page(name: "mainPage", title: "Play the weather report on your speaker", install: true, uninstall: true)
page(name: "mainPage", title: "Play the weather report on your sonos", install: true, uninstall: true)
page(name: "chooseTrack", title: "Select a song or station")
page(name: "timeIntervalInput", title: "Only during a certain time") {
section {
@@ -85,7 +85,7 @@ def mainPage() {
)
}
section {
input "sonos", "capability.musicPlayer", title: "On this Speaker player", required: true
input "sonos", "capability.musicPlayer", title: "On this Sonos player", required: true
}
section("More options", hideable: true, hidden: true) {
input "resumePlaying", "bool", title: "Resume currently playing music after weather report finishes", required: false, defaultValue: true

View File

@@ -23,8 +23,7 @@ definition(
description: "Integrate your Tesla car with SmartThings.",
category: "SmartThings Labs",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/Partner/tesla-app%402x.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Partner/tesla-app%403x.png",
singleInstance: true
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Partner/tesla-app%403x.png"
)
preferences {

Some files were not shown because too many files have changed in this diff Show More