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78 changed files with 1848 additions and 2387 deletions

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@@ -127,10 +127,9 @@ def zwaveEvent(physicalgraph.zwave.commands.sensormultilevelv5.SensorMultilevelR
def map = [ displayed: true ] def map = [ displayed: true ]
switch (cmd.sensorType) { switch (cmd.sensorType) {
case 1: case 1:
def cmdScale = cmd.scale == 1 ? "F" : "C" map.name = "temperature"
map.name = "temperature" map.unit = cmd.scale == 1 ? "F" : "C"
map.unit = getTemperatureScale() map.value = convertTemperatureIfNeeded(cmd.scaledSensorValue, map.unit, cmd.precision)
map.value = convertTemperatureIfNeeded(cmd.scaledSensorValue, cmdScale, cmd.precision)
break break
case 3: case 3:
map.name = "illuminance" map.name = "illuminance"

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@@ -87,27 +87,16 @@ def beep() {
up to this long from the time you send the message to the time you hear a sound. up to this long from the time you send the message to the time you hear a sound.
*/ */
// Used source endpoint of 0x02 because we are using smartthings manufacturer specific cluster.
[ [
"raw 0xFC05 {15 0A 11 00 00 15 01}", "raw 0xFC05 {15 0A 11 00 00 15 01}",
"delay 200",
"send 0x$zigbee.deviceNetworkId 0x02 0x$zigbee.endpointId",
"delay 7000", "delay 7000",
"raw 0xFC05 {15 0A 11 00 00 15 01}", "raw 0xFC05 {15 0A 11 00 00 15 01}",
"delay 200",
"send 0x$zigbee.deviceNetworkId 0x02 0x$zigbee.endpointId",
"delay 7000", "delay 7000",
"raw 0xFC05 {15 0A 11 00 00 15 01}", "raw 0xFC05 {15 0A 11 00 00 15 01}",
"delay 200",
"send 0x$zigbee.deviceNetworkId 0x02 0x$zigbee.endpointId",
"delay 7000", "delay 7000",
"raw 0xFC05 {15 0A 11 00 00 15 01}", "raw 0xFC05 {15 0A 11 00 00 15 01}",
"delay 200",
"send 0x$zigbee.deviceNetworkId 0x02 0x$zigbee.endpointId",
"delay 7000", "delay 7000",
"raw 0xFC05 {15 0A 11 00 00 15 01}", "raw 0xFC05 {15 0A 11 00 00 15 01}"
"delay 200",
"send 0x$zigbee.deviceNetworkId 0x02 0x$zigbee.endpointId",
] ]
} }

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@@ -105,21 +105,11 @@ def parseDescriptionAsMap(description) {
// Commands to device // Commands to device
def on() { def on() {
[ 'zcl on-off on'
'zcl on-off on',
'delay 200',
"send 0x${zigbee.deviceNetworkId} 0x01 0x${zigbee.endpointId}",
'delay 500'
]
} }
def off() { def off() {
[ 'zcl on-off off'
'zcl on-off off',
'delay 200',
"send 0x${zigbee.deviceNetworkId} 0x01 0x${zigbee.endpointId}",
'delay 500'
]
} }
def setLevel(value) { def setLevel(value) {

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@@ -23,8 +23,10 @@ Works with:
## Device Health ## Device Health
A Category C6 Connected Cree LED Bulb with maxReportTime of 5 mins. A Category C6 Connected Cree LED Bulb with maxReportTime of 10 min.
Check-in interval = 12 mins Check-in interval is double the value of maxReportTime for Zigbee device.
This gives the device twice the amount of time to respond before it is marked as offline.
Check-in interval = 2*10 = 20 min
## Troubleshooting ## Troubleshooting

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@@ -19,6 +19,7 @@ metadata {
capability "Actuator" capability "Actuator"
capability "Configuration" capability "Configuration"
capability "Polling"
capability "Refresh" capability "Refresh"
capability "Switch" capability "Switch"
capability "Switch Level" capability "Switch Level"
@@ -93,19 +94,17 @@ def ping() {
} }
def refresh() { def refresh() {
zigbee.onOffRefresh() + zigbee.levelRefresh() zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.onOffConfig() + zigbee.levelConfig()
} }
def healthPoll() { def poll() {
log.debug "healthPoll()" zigbee.onOffRefresh() + zigbee.levelRefresh()
def cmds = zigbee.onOffRefresh() + zigbee.levelRefresh()
cmds.each{ sendHubCommand(new physicalgraph.device.HubAction(it))}
} }
def configure() { def configure() {
unschedule() log.debug "Configuring Reporting and Bindings."
runEvery5Minutes("healthPoll") // Device-Watch allows 3 check-in misses from device. 300 seconds x 3 = 15min
// Device-Watch allows 2 check-in misses from device sendEvent(name: "checkInterval", value: 900, displayed: false, data: [protocol: "zigbee"])
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID]) // minReportTime 0 seconds, maxReportTime 5 min. Reporting interval if no activity
zigbee.onOffRefresh() + zigbee.levelRefresh() zigbee.onOffConfig(0, 300) + zigbee.levelConfig() + zigbee.onOffRefresh() + zigbee.levelRefresh()
} }

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

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@@ -1,45 +0,0 @@
# Z-wave Dimmer Switch
Works with:
* [GE Z-Wave In-Wall Smart Dimmer (GE 12724)](http://products.z-wavealliance.org/products/1197)
* [GE Z-Wave In-Wall Smart Dimmer (Toggle) (GE 12729)](http://products.z-wavealliance.org/products/1201)
* [GE Z-Wave Plug-in Smart Dimmer (GE 12718)](http://products.z-wavealliance.org/products/1191)
## Table of contents
* [Capabilities](#capabilities)
* [Health](#device-health)
* [Troubleshooting](#Troubleshooting)
## Capabilities
* **Switch Level** - it's defined to accept two parameters, the level and the rate of dimming
* **Actuator** - represents that a Device has commands
* **Indicator** - gives you the ability to set the indicator LED light on a Z-Wave switch
* **Switch** - can detect state (possible values: on/off)
* **Polling** - represents that poll() can be implemented for the device
* **Refresh** - _refresh()_ command for status updates
* **Sensor** - detects sensor events
* **Health Check** - indicates ability to get device health notifications
## Device Health
Z-Wave Smart Dimmers (In-Wall, In-Wall(Toggle), Plug-In) are polled by the hub.
As of hubCore version 0.14.38 the hub sends up reports every 15 minutes regardless of whether the state changed.
Check-in interval = 32 mins.
Not to mention after going OFFLINE when the device is plugged back in, it might take a considerable amount of time for
the device to appear as ONLINE again. This is because if this listening device does not respond to two poll requests in a row,
it is not polled for 5 minutes by the hub. This can delay up the process of being marked ONLINE by quite some time.
## Troubleshooting
If the device doesn't pair when trying from the SmartThings mobile app, it is possible that the device is out of range.
Pairing needs to be tried again by placing the device closer to the hub.
Instructions related to pairing, resetting and removing the device from SmartThings can be found in the following link:
* [General Z-Wave Dimmer/Switch Troubleshooting Tips](https://support.smartthings.com/hc/en-us/articles/200955890-Troubleshooting-GE-in-wall-switch-or-dimmer-won-t-respond-to-commands-or-automations-Z-Wave-)
* [GE Z-Wave In-Wall Smart Dimmer (GE 12724) Troubleshooting Tips](https://support.smartthings.com/hc/en-us/articles/200902600-GE-In-Wall-Paddle-Dimmer-Switch-GE-12724-Z-Wave-)
* [GE Z-Wave In-Wall Smart Dimmer (Toggle) (GE 12729) Troubleshooting Tips](https://support.smartthings.com/hc/en-us/articles/207568463-GE-In-Wall-Smart-Toggle-Dimmer-GE-12729-Z-Wave-)
* [GE Z-Wave Plug-in Smart Dimmer (GE 12718) Troubleshooting Tips](https://support.smartthings.com/hc/en-us/articles/202088474-GE-Plug-In-Smart-Dimmer-GE-12718-Z-Wave-)

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@@ -20,7 +20,6 @@ metadata {
capability "Polling" capability "Polling"
capability "Refresh" capability "Refresh"
capability "Sensor" capability "Sensor"
capability "Health Check"
fingerprint mfr:"0063", prod:"4457", deviceJoinName: "Z-Wave Wall Dimmer" fingerprint mfr:"0063", prod:"4457", deviceJoinName: "Z-Wave Wall Dimmer"
fingerprint mfr:"0063", prod:"4944", deviceJoinName: "Z-Wave Wall Dimmer" fingerprint mfr:"0063", prod:"4944", deviceJoinName: "Z-Wave Wall Dimmer"
@@ -83,8 +82,6 @@ metadata {
} }
def updated(){ def updated(){
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
switch (ledIndicator) { switch (ledIndicator) {
case "on": case "on":
indicatorWhenOn() indicatorWhenOn()
@@ -218,13 +215,6 @@ def poll() {
zwave.switchMultilevelV1.switchMultilevelGet().format() zwave.switchMultilevelV1.switchMultilevelGet().format()
} }
/**
* PING is used by Device-Watch in attempt to reach the Device
* */
def ping() {
refresh()
}
def refresh() { def refresh() {
log.debug "refresh() is called" log.debug "refresh() is called"
def commands = [] def commands = []

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@@ -67,6 +67,6 @@ def refresh() {
void poll() { void poll() {
log.debug "Executing 'poll' using parent SmartApp" log.debug "Executing 'poll' using parent SmartApp"
parent.pollChild() parent.poll()
} }

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@@ -31,13 +31,13 @@ metadata {
command "switchMode" command "switchMode"
command "switchFanMode" command "switchFanMode"
attribute "thermostatSetpoint", "number" attribute "thermostatSetpoint","number"
attribute "thermostatStatus", "string" attribute "thermostatStatus","string"
attribute "maxHeatingSetpoint", "number" attribute "maxHeatingSetpoint", "number"
attribute "minHeatingSetpoint", "number" attribute "minHeatingSetpoint", "number"
attribute "maxCoolingSetpoint", "number" attribute "maxCoolingSetpoint", "number"
attribute "minCoolingSetpoint", "number" attribute "minCoolingSetpoint", "number"
attribute "deviceTemperatureUnit", "string" attribute "deviceTemperatureUnit", "number"
} }
tiles { tiles {
@@ -133,7 +133,7 @@ def refresh() {
void poll() { void poll() {
log.debug "Executing 'poll' using parent SmartApp" log.debug "Executing 'poll' using parent SmartApp"
parent.pollChild() parent.poll()
} }
def generateEvent(Map results) { def generateEvent(Map results) {
@@ -148,12 +148,14 @@ def generateEvent(Map results) {
handlerName: name] handlerName: name]
if (name=="temperature" || name=="heatingSetpoint" || name=="coolingSetpoint" ) { if (name=="temperature" || name=="heatingSetpoint" || name=="coolingSetpoint" ) {
def sendValue = location.temperatureScale == "C"? roundC(convertFtoC(value.toDouble())) : value.toInteger() def sendValue = convertTemperatureIfNeeded(value.toDouble(), "F", 1) //API return temperature value in F
sendValue = location.temperatureScale == "C"? roundC(sendValue) : sendValue
isChange = isTemperatureStateChange(device, name, value.toString()) isChange = isTemperatureStateChange(device, name, value.toString())
isDisplayed = isChange isDisplayed = isChange
event << [value: sendValue, unit: temperatureScale, isStateChange: isChange, displayed: isDisplayed] event << [value: sendValue, unit: temperatureScale, isStateChange: isChange, displayed: isDisplayed]
} else if (name=="maxCoolingSetpoint" || name=="minCoolingSetpoint" || name=="maxHeatingSetpoint" || name=="minHeatingSetpoint") { } else if (name=="maxCoolingSetpoint" || name=="minCoolingSetpoint" || name=="maxHeatingSetpoint" || name=="minHeatingSetpoint") {
def sendValue = location.temperatureScale == "C"? roundC(convertFtoC(value.toDouble())) : value.toInteger() def sendValue = convertTemperatureIfNeeded(value.toDouble(), "F", 1) //API return temperature value in F
sendValue = location.temperatureScale == "C"? roundC(sendValue) : sendValue
event << [value: sendValue, unit: temperatureScale, displayed: false] event << [value: sendValue, unit: temperatureScale, displayed: false]
} else if (name=="heatMode" || name=="coolMode" || name=="autoMode" || name=="auxHeatMode"){ } else if (name=="heatMode" || name=="coolMode" || name=="autoMode" || name=="auxHeatMode"){
isChange = isStateChange(device, name, value.toString()) isChange = isStateChange(device, name, value.toString())
@@ -251,6 +253,7 @@ void setCoolingSetpoint(setpoint) {
def maxCoolingSetpoint = device.currentValue("maxCoolingSetpoint") def maxCoolingSetpoint = device.currentValue("maxCoolingSetpoint")
def minCoolingSetpoint = device.currentValue("minCoolingSetpoint") def minCoolingSetpoint = device.currentValue("minCoolingSetpoint")
if (coolingSetpoint > maxCoolingSetpoint) { if (coolingSetpoint > maxCoolingSetpoint) {
coolingSetpoint = maxCoolingSetpoint coolingSetpoint = maxCoolingSetpoint
} else if (coolingSetpoint < minCoolingSetpoint) { } else if (coolingSetpoint < minCoolingSetpoint) {
@@ -280,6 +283,7 @@ void setCoolingSetpoint(setpoint) {
} }
void resumeProgram() { void resumeProgram() {
log.debug "resumeProgram() is called" log.debug "resumeProgram() is called"
sendEvent("name":"thermostatStatus", "value":"resuming schedule", "description":statusText, displayed: false) sendEvent("name":"thermostatStatus", "value":"resuming schedule", "description":statusText, displayed: false)
def deviceId = device.deviceNetworkId.split(/\./).last() def deviceId = device.deviceNetworkId.split(/\./).last()
@@ -350,6 +354,7 @@ def switchFanMode() {
} }
def switchToFanMode(nextMode) { def switchToFanMode(nextMode) {
log.debug "switching to fan mode: $nextMode" log.debug "switching to fan mode: $nextMode"
def returnCommand def returnCommand
@@ -515,56 +520,63 @@ def fanAuto() {
} }
def generateSetpointEvent() { def generateSetpointEvent() {
log.debug "Generate SetPoint Event" log.debug "Generate SetPoint Event"
def mode = device.currentValue("thermostatMode") def mode = device.currentValue("thermostatMode")
log.debug "Current Mode = ${mode}"
def heatingSetpoint = device.currentValue("heatingSetpoint") def heatingSetpoint = device.currentValue("heatingSetpoint")
log.debug "Heating Setpoint = ${heatingSetpoint}"
def coolingSetpoint = device.currentValue("coolingSetpoint") def coolingSetpoint = device.currentValue("coolingSetpoint")
log.debug "Cooling Setpoint = ${coolingSetpoint}"
def maxHeatingSetpoint = device.currentValue("maxHeatingSetpoint") def maxHeatingSetpoint = device.currentValue("maxHeatingSetpoint")
def maxCoolingSetpoint = device.currentValue("maxCoolingSetpoint") def maxCoolingSetpoint = device.currentValue("maxCoolingSetpoint")
def minHeatingSetpoint = device.currentValue("minHeatingSetpoint") def minHeatingSetpoint = device.currentValue("minHeatingSetpoint")
def minCoolingSetpoint = device.currentValue("minCoolingSetpoint") def minCoolingSetpoint = device.currentValue("minCoolingSetpoint")
if(location.temperatureScale == "C") { if(location.temperatureScale == "C")
maxHeatingSetpoint = maxHeatingSetpoint > 40 ? roundC(convertFtoC(maxHeatingSetpoint)) : roundC(maxHeatingSetpoint) {
maxCoolingSetpoint = maxCoolingSetpoint > 40 ? roundC(convertFtoC(maxCoolingSetpoint)) : roundC(maxCoolingSetpoint) maxHeatingSetpoint = roundC(maxHeatingSetpoint)
minHeatingSetpoint = minHeatingSetpoint > 40 ? roundC(convertFtoC(minHeatingSetpoint)) : roundC(minHeatingSetpoint) maxCoolingSetpoint = roundC(maxCoolingSetpoint)
minCoolingSetpoint = minCoolingSetpoint > 40 ? roundC(convertFtoC(minCoolingSetpoint)) : roundC(minCoolingSetpoint) minHeatingSetpoint = roundC(minHeatingSetpoint)
heatingSetpoint = heatingSetpoint > 40 ? roundC(convertFtoC(heatingSetpoint)) : roundC(heatingSetpoint) minCoolingSetpoint = roundC(minCoolingSetpoint)
coolingSetpoint = coolingSetpoint > 40 ? roundC(convertFtoC(coolingSetpoint)) : roundC(coolingSetpoint) heatingSetpoint = roundC(heatingSetpoint)
} else { coolingSetpoint = roundC(coolingSetpoint)
maxHeatingSetpoint = maxHeatingSetpoint < 40 ? roundC(convertCtoF(maxHeatingSetpoint)) : maxHeatingSetpoint
maxCoolingSetpoint = maxCoolingSetpoint < 40 ? roundC(convertCtoF(maxCoolingSetpoint)) : maxCoolingSetpoint
minHeatingSetpoint = minHeatingSetpoint < 40 ? roundC(convertCtoF(minHeatingSetpoint)) : minHeatingSetpoint
minCoolingSetpoint = minCoolingSetpoint < 40 ? roundC(convertCtoF(minCoolingSetpoint)) : minCoolingSetpoint
heatingSetpoint = heatingSetpoint < 40 ? roundC(convertCtoF(heatingSetpoint)) : heatingSetpoint
coolingSetpoint = coolingSetpoint < 40 ? roundC(convertCtoF(coolingSetpoint)) : coolingSetpoint
} }
log.debug "Current Mode = ${mode}"
log.debug "Heating Setpoint = ${heatingSetpoint}"
log.debug "Cooling Setpoint = ${coolingSetpoint}"
sendEvent("name":"maxHeatingSetpoint", "value":maxHeatingSetpoint, "unit":location.temperatureScale) sendEvent("name":"maxHeatingSetpoint", "value":maxHeatingSetpoint, "unit":location.temperatureScale)
sendEvent("name":"maxCoolingSetpoint", "value":maxCoolingSetpoint, "unit":location.temperatureScale) sendEvent("name":"maxCoolingSetpoint", "value":maxCoolingSetpoint, "unit":location.temperatureScale)
sendEvent("name":"minHeatingSetpoint", "value":minHeatingSetpoint, "unit":location.temperatureScale) sendEvent("name":"minHeatingSetpoint", "value":minHeatingSetpoint, "unit":location.temperatureScale)
sendEvent("name":"minCoolingSetpoint", "value":minCoolingSetpoint, "unit":location.temperatureScale) sendEvent("name":"minCoolingSetpoint", "value":minCoolingSetpoint, "unit":location.temperatureScale)
sendEvent("name":"heatingSetpoint", "value":heatingSetpoint, "unit":location.temperatureScale)
sendEvent("name":"coolingSetpoint", "value":coolingSetpoint, "unit":location.temperatureScale)
if (mode == "heat") { if (mode == "heat") {
sendEvent("name":"thermostatSetpoint", "value":heatingSetpoint, "unit":location.temperatureScale) sendEvent("name":"thermostatSetpoint", "value":heatingSetpoint, "unit":location.temperatureScale)
} }
else if (mode == "cool") { else if (mode == "cool") {
sendEvent("name":"thermostatSetpoint", "value":coolingSetpoint, "unit":location.temperatureScale) sendEvent("name":"thermostatSetpoint", "value":coolingSetpoint, "unit":location.temperatureScale)
} else if (mode == "auto") { } else if (mode == "auto") {
sendEvent("name":"thermostatSetpoint", "value":"Auto") sendEvent("name":"thermostatSetpoint", "value":"Auto")
} else if (mode == "off") { } else if (mode == "off") {
sendEvent("name":"thermostatSetpoint", "value":"Off") sendEvent("name":"thermostatSetpoint", "value":"Off")
} else if (mode == "auxHeatOnly") { } else if (mode == "auxHeatOnly") {
sendEvent("name":"thermostatSetpoint", "value":heatingSetpoint, "unit":location.temperatureScale) sendEvent("name":"thermostatSetpoint", "value":heatingSetpoint, "unit":location.temperatureScale)
} }
} }
void raiseSetpoint() { void raiseSetpoint() {
@@ -573,31 +585,21 @@ void raiseSetpoint() {
def maxHeatingSetpoint = device.currentValue("maxHeatingSetpoint") def maxHeatingSetpoint = device.currentValue("maxHeatingSetpoint")
def maxCoolingSetpoint = device.currentValue("maxCoolingSetpoint") def maxCoolingSetpoint = device.currentValue("maxCoolingSetpoint")
if (mode == "off" || mode == "auto") { if (mode == "off" || mode == "auto") {
log.warn "this mode: $mode does not allow raiseSetpoint" log.warn "this mode: $mode does not allow raiseSetpoint"
} else { } else {
def heatingSetpoint = device.currentValue("heatingSetpoint") def heatingSetpoint = device.currentValue("heatingSetpoint")
def coolingSetpoint = device.currentValue("coolingSetpoint") def coolingSetpoint = device.currentValue("coolingSetpoint")
def thermostatSetpoint = device.currentValue("thermostatSetpoint") def thermostatSetpoint = device.currentValue("thermostatSetpoint")
if (location.temperatureScale == "C") {
maxHeatingSetpoint = maxHeatingSetpoint > 40 ? convertFtoC(maxHeatingSetpoint) : maxHeatingSetpoint
maxCoolingSetpoint = maxCoolingSetpoint > 40 ? convertFtoC(maxCoolingSetpoint) : maxCoolingSetpoint
heatingSetpoint = heatingSetpoint > 40 ? convertFtoC(heatingSetpoint) : heatingSetpoint
coolingSetpoint = coolingSetpoint > 40 ? convertFtoC(coolingSetpoint) : coolingSetpoint
thermostatSetpoint = thermostatSetpoint > 40 ? convertFtoC(thermostatSetpoint) : thermostatSetpoint
} else {
maxHeatingSetpoint = maxHeatingSetpoint < 40 ? convertCtoF(maxHeatingSetpoint) : maxHeatingSetpoint
maxCoolingSetpoint = maxCoolingSetpoint < 40 ? convertCtoF(maxCoolingSetpoint) : maxCoolingSetpoint
heatingSetpoint = heatingSetpoint < 40 ? convertCtoF(heatingSetpoint) : heatingSetpoint
coolingSetpoint = coolingSetpoint < 40 ? convertCtoF(coolingSetpoint) : coolingSetpoint
thermostatSetpoint = thermostatSetpoint < 40 ? convertCtoF(thermostatSetpoint) : thermostatSetpoint
}
log.debug "raiseSetpoint() mode = ${mode}, heatingSetpoint: ${heatingSetpoint}, coolingSetpoint:${coolingSetpoint}, thermostatSetpoint:${thermostatSetpoint}" log.debug "raiseSetpoint() mode = ${mode}, heatingSetpoint: ${heatingSetpoint}, coolingSetpoint:${coolingSetpoint}, thermostatSetpoint:${thermostatSetpoint}"
targetvalue = thermostatSetpoint ? thermostatSetpoint : 0 if (device.latestState('thermostatSetpoint')) {
targetvalue = device.latestState('thermostatSetpoint').value
targetvalue = location.temperatureScale == "F"? targetvalue.toInteger() : targetvalue.toDouble()
} else {
targetvalue = 0
}
targetvalue = location.temperatureScale == "F"? targetvalue + 1 : targetvalue + 0.5 targetvalue = location.temperatureScale == "F"? targetvalue + 1 : targetvalue + 0.5
if ((mode == "heat" || mode == "auxHeatOnly") && targetvalue > maxHeatingSetpoint) { if ((mode == "heat" || mode == "auxHeatOnly") && targetvalue > maxHeatingSetpoint) {
@@ -620,29 +622,20 @@ void lowerSetpoint() {
def minHeatingSetpoint = device.currentValue("minHeatingSetpoint") def minHeatingSetpoint = device.currentValue("minHeatingSetpoint")
def minCoolingSetpoint = device.currentValue("minCoolingSetpoint") def minCoolingSetpoint = device.currentValue("minCoolingSetpoint")
if (mode == "off" || mode == "auto") { if (mode == "off" || mode == "auto") {
log.warn "this mode: $mode does not allow lowerSetpoint" log.warn "this mode: $mode does not allow lowerSetpoint"
} else { } else {
def heatingSetpoint = device.currentValue("heatingSetpoint") def heatingSetpoint = device.currentValue("heatingSetpoint")
def coolingSetpoint = device.currentValue("coolingSetpoint") def coolingSetpoint = device.currentValue("coolingSetpoint")
def thermostatSetpoint = device.currentValue("thermostatSetpoint") def thermostatSetpoint = device.currentValue("thermostatSetpoint")
if (location.temperatureScale == "C") {
minHeatingSetpoint = minHeatingSetpoint > 40 ? convertFtoC(minHeatingSetpoint) : minHeatingSetpoint
minCoolingSetpoint = minCoolingSetpoint > 40 ? convertFtoC(minCoolingSetpoint) : minCoolingSetpoint
heatingSetpoint = heatingSetpoint > 40 ? convertFtoC(heatingSetpoint) : heatingSetpoint
coolingSetpoint = coolingSetpoint > 40 ? convertFtoC(coolingSetpoint) : coolingSetpoint
thermostatSetpoint = thermostatSetpoint > 40 ? convertFtoC(thermostatSetpoint) : thermostatSetpoint
} else {
minHeatingSetpoint = minHeatingSetpoint < 40 ? convertCtoF(minHeatingSetpoint) : minHeatingSetpoint
minCoolingSetpoint = minCoolingSetpoint < 40 ? convertCtoF(minCoolingSetpoint) : minCoolingSetpoint
heatingSetpoint = heatingSetpoint < 40 ? convertCtoF(heatingSetpoint) : heatingSetpoint
coolingSetpoint = coolingSetpoint < 40 ? convertCtoF(coolingSetpoint) : coolingSetpoint
thermostatSetpoint = thermostatSetpoint < 40 ? convertCtoF(thermostatSetpoint) : thermostatSetpoint
}
log.debug "lowerSetpoint() mode = ${mode}, heatingSetpoint: ${heatingSetpoint}, coolingSetpoint:${coolingSetpoint}, thermostatSetpoint:${thermostatSetpoint}" log.debug "lowerSetpoint() mode = ${mode}, heatingSetpoint: ${heatingSetpoint}, coolingSetpoint:${coolingSetpoint}, thermostatSetpoint:${thermostatSetpoint}"
if (device.latestState('thermostatSetpoint')) {
targetvalue = thermostatSetpoint ? thermostatSetpoint : 0 targetvalue = device.latestState('thermostatSetpoint').value
targetvalue = location.temperatureScale == "F"? targetvalue.toInteger() : targetvalue.toDouble()
} else {
targetvalue = 0
}
targetvalue = location.temperatureScale == "F"? targetvalue - 1 : targetvalue - 0.5 targetvalue = location.temperatureScale == "F"? targetvalue - 1 : targetvalue - 0.5
if ((mode == "heat" || mode == "auxHeatOnly") && targetvalue < minHeatingSetpoint) { if ((mode == "heat" || mode == "auxHeatOnly") && targetvalue < minHeatingSetpoint) {
@@ -660,83 +653,66 @@ void lowerSetpoint() {
//called by raiseSetpoint() and lowerSetpoint() //called by raiseSetpoint() and lowerSetpoint()
void alterSetpoint(temp) { void alterSetpoint(temp) {
def mode = device.currentValue("thermostatMode") def mode = device.currentValue("thermostatMode")
def heatingSetpoint = device.currentValue("heatingSetpoint")
def coolingSetpoint = device.currentValue("coolingSetpoint")
def deviceId = device.deviceNetworkId.split(/\./).last()
if (mode == "off" || mode == "auto") { def targetHeatingSetpoint
log.warn "this mode: $mode does not allow alterSetpoint" def targetCoolingSetpoint
} else {
def heatingSetpoint = device.currentValue("heatingSetpoint")
def coolingSetpoint = device.currentValue("coolingSetpoint")
def deviceId = device.deviceNetworkId.split(/\./).last()
def targetHeatingSetpoint //step1: check thermostatMode, enforce limits before sending request to cloud
def targetCoolingSetpoint if (mode == "heat" || mode == "auxHeatOnly"){
if (temp.value > coolingSetpoint){
def temperatureScaleHasChanged = false targetHeatingSetpoint = temp.value
targetCoolingSetpoint = temp.value
if (location.temperatureScale == "C") {
if ( heatingSetpoint > 40.0 || coolingSetpoint > 40.0 ) {
temperatureScaleHasChanged = true
}
} else { } else {
if ( heatingSetpoint < 40.0 || coolingSetpoint < 40.0 ) { targetHeatingSetpoint = temp.value
temperatureScaleHasChanged = true targetCoolingSetpoint = coolingSetpoint
}
} }
} else if (mode == "cool") {
//step1: check thermostatMode, enforce limits before sending request to cloud //enforce limits before sending request to cloud
if (mode == "heat" || mode == "auxHeatOnly"){ if (temp.value < heatingSetpoint){
if (temp.value > coolingSetpoint){ targetHeatingSetpoint = temp.value
targetHeatingSetpoint = temp.value targetCoolingSetpoint = 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"
def coolingValue = location.temperatureScale == "C"? convertCtoF(targetCoolingSetpoint) : targetCoolingSetpoint
def heatingValue = location.temperatureScale == "C"? convertCtoF(targetHeatingSetpoint) : targetHeatingSetpoint
if (parent.setHold(heatingValue, coolingValue, deviceId, sendHoldType)) {
sendEvent("name": "thermostatSetpoint", "value": temp.value, displayed: false)
sendEvent("name": "heatingSetpoint", "value": targetHeatingSetpoint, "unit": location.temperatureScale)
sendEvent("name": "coolingSetpoint", "value": targetCoolingSetpoint, "unit": location.temperatureScale)
log.debug "alterSetpoint in mode $mode succeed change setpoint to= ${temp.value}"
} else { } else {
log.error "Error alterSetpoint()" targetHeatingSetpoint = heatingSetpoint
if (mode == "heat" || mode == "auxHeatOnly"){ targetCoolingSetpoint = temp.value
sendEvent("name": "thermostatSetpoint", "value": heatingSetpoint.toString(), displayed: false)
} else if (mode == "cool") {
sendEvent("name": "thermostatSetpoint", "value": coolingSetpoint.toString(), displayed: false)
}
} }
if ( temperatureScaleHasChanged )
generateSetpointEvent()
generateStatusEvent()
} }
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"
def coolingValue = location.temperatureScale == "C"? convertCtoF(targetCoolingSetpoint) : targetCoolingSetpoint
def heatingValue = location.temperatureScale == "C"? convertCtoF(targetHeatingSetpoint) : targetHeatingSetpoint
if (parent.setHold(heatingValue, coolingValue, deviceId, sendHoldType)) {
sendEvent("name": "thermostatSetpoint", "value": temp.value, displayed: false)
sendEvent("name": "heatingSetpoint", "value": targetHeatingSetpoint, "unit": location.temperatureScale)
sendEvent("name": "coolingSetpoint", "value": targetCoolingSetpoint, "unit": location.temperatureScale)
log.debug "alterSetpoint in mode $mode succeed change setpoint to= ${temp.value}"
} else {
log.error "Error alterSetpoint()"
if (mode == "heat" || mode == "auxHeatOnly"){
sendEvent("name": "thermostatSetpoint", "value": heatingSetpoint.toString(), displayed: false)
} else if (mode == "cool") {
sendEvent("name": "thermostatSetpoint", "value": coolingSetpoint.toString(), displayed: false)
}
}
generateStatusEvent()
} }
def generateStatusEvent() { def generateStatusEvent() {
def mode = device.currentValue("thermostatMode") def mode = device.currentValue("thermostatMode")
def heatingSetpoint = device.currentValue("heatingSetpoint") def heatingSetpoint = device.currentValue("heatingSetpoint")
def coolingSetpoint = device.currentValue("coolingSetpoint") def coolingSetpoint = device.currentValue("coolingSetpoint")
def temperature = device.currentValue("temperature") def temperature = device.currentValue("temperature")
def statusText def statusText
log.debug "Generate Status Event for Mode = ${mode}" log.debug "Generate Status Event for Mode = ${mode}"
@@ -746,25 +722,36 @@ def generateStatusEvent() {
log.debug "HVAC Mode = ${mode}" log.debug "HVAC Mode = ${mode}"
if (mode == "heat") { if (mode == "heat") {
if (temperature >= heatingSetpoint) if (temperature >= heatingSetpoint)
statusText = "Right Now: Idle" statusText = "Right Now: Idle"
else else
statusText = "Heating to ${heatingSetpoint} ${location.temperatureScale}" statusText = "Heating to ${heatingSetpoint} ${location.temperatureScale}"
} else if (mode == "cool") { } else if (mode == "cool") {
if (temperature <= coolingSetpoint) if (temperature <= coolingSetpoint)
statusText = "Right Now: Idle" statusText = "Right Now: Idle"
else else
statusText = "Cooling to ${coolingSetpoint} ${location.temperatureScale}" statusText = "Cooling to ${coolingSetpoint} ${location.temperatureScale}"
} else if (mode == "auto") {
statusText = "Right Now: Auto"
} else if (mode == "off") {
statusText = "Right Now: Off"
} else if (mode == "auxHeatOnly") {
statusText = "Emergency Heat"
} else {
statusText = "?"
}
} else if (mode == "auto") {
statusText = "Right Now: Auto"
} else if (mode == "off") {
statusText = "Right Now: Off"
} else if (mode == "auxHeatOnly") {
statusText = "Emergency Heat"
} else {
statusText = "?"
}
log.debug "Generate Status Event = ${statusText}" log.debug "Generate Status Event = ${statusText}"
sendEvent("name":"thermostatStatus", "value":statusText, "description":statusText, displayed: true) sendEvent("name":"thermostatStatus", "value":statusText, "description":statusText, displayed: true)
} }
@@ -778,7 +765,7 @@ def roundC (tempC) {
} }
def convertFtoC (tempF) { def convertFtoC (tempF) {
return ((Math.round(((tempF - 32)*(5/9)) * 2))/2).toDouble() return String.format("%.1f", (Math.round(((tempF - 32)*(5/9)) * 2))/2)
} }
def convertCtoF (tempC) { def convertCtoF (tempC) {

View File

@@ -57,7 +57,7 @@ metadata {
} }
void installed() { void installed() {
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"LAN\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device.hub.hardwareID}\"}") sendEvent(name: "checkInterval", value: 60 * 15, data: [protocol: "lan"], displayed: false)
} }
// parse events into attributes // parse events into attributes
@@ -172,3 +172,6 @@ def verifyPercent(percent) {
} }
} }
def ping() {
log.debug "${parent.ping(this)}"
}

View File

@@ -7,11 +7,9 @@
metadata { metadata {
// Automatically generated. Make future change here. // Automatically generated. Make future change here.
definition (name: "Hue Bridge", namespace: "smartthings", author: "SmartThings") { definition (name: "Hue Bridge", namespace: "smartthings", author: "SmartThings") {
capability "Health Check"
attribute "networkAddress", "string" attribute "networkAddress", "string"
// Used to indicate if bridge is reachable or not, i.e. is the bridge connected to the network // Used to indicate if bridge is reachable or not, i.e. is the bridge connected to the network
// Possible values "Online" or "Offline" // Possible values "Online" or "Offline"
attribute "status", "string" attribute "status", "string"
// Id is the number on the back of the hub, Hue uses last six digits of Mac address // Id is the number on the back of the hub, Hue uses last six digits of Mac address
// This is also used in the Hue application as ID // This is also used in the Hue application as ID
@@ -44,10 +42,6 @@ metadata {
} }
} }
void installed() {
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"LAN\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device.hub.hardwareID}\"}")
}
// parse events into attributes // parse events into attributes
def parse(description) { def parse(description) {
log.debug "Parsing '${description}'" log.debug "Parsing '${description}'"
@@ -76,8 +70,13 @@ def parse(description) {
def bulbs = new groovy.json.JsonSlurper().parseText(msg.body) def bulbs = new groovy.json.JsonSlurper().parseText(msg.body)
if (bulbs.state) { if (bulbs.state) {
log.info "Bridge response: $msg.body" log.info "Bridge response: $msg.body"
} else {
// Sending Bulbs List to parent"
if (parent.isInBulbDiscovery())
log.info parent.bulbListHandler(device.hub.id, msg.body)
} }
} else if (contentType?.contains("xml")) { }
else if (contentType?.contains("xml")) {
log.debug "HUE BRIDGE ALREADY PRESENT" log.debug "HUE BRIDGE ALREADY PRESENT"
parent.hubVerification(device.hub.id, msg.body) parent.hubVerification(device.hub.id, msg.body)
} }
@@ -86,4 +85,3 @@ def parse(description) {
} }
results results
} }

View File

@@ -66,7 +66,7 @@ metadata {
} }
void installed() { void installed() {
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"LAN\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device.hub.hardwareID}\"}") sendEvent(name: "checkInterval", value: 60 * 15, data: [protocol: "lan"], displayed: false)
} }
// parse events into attributes // parse events into attributes
@@ -174,7 +174,7 @@ void setColorTemperature(value) {
void refresh() { void refresh() {
log.debug "Executing 'refresh'" log.debug "Executing 'refresh'"
parent?.manualRefresh() parent.manualRefresh()
} }
def verifyPercent(percent) { def verifyPercent(percent) {
@@ -188,3 +188,6 @@ def verifyPercent(percent) {
} }
} }
def ping() {
log.trace "${parent.ping(this)}"
}

View File

@@ -50,7 +50,7 @@ metadata {
} }
void installed() { void installed() {
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"LAN\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device.hub.hardwareID}\"}") sendEvent(name: "checkInterval", value: 60 * 15, data: [protocol: "lan"], displayed: false)
} }
// parse events into attributes // parse events into attributes
@@ -93,3 +93,6 @@ void refresh() {
parent.manualRefresh() parent.manualRefresh()
} }
def ping() {
log.debug "${parent.ping(this)}"
}

View File

@@ -55,7 +55,7 @@ metadata {
} }
void installed() { void installed() {
sendEvent(name: "DeviceWatch-Enroll", value: "{\"protocol\": \"LAN\", \"scheme\":\"untracked\", \"hubHardwareId\": \"${device.hub.hardwareID}\"}") sendEvent(name: "checkInterval", value: 60 * 15, data: [protocol: "lan"], displayed: false)
} }
// parse events into attributes // parse events into attributes
@@ -107,3 +107,6 @@ void refresh() {
parent.manualRefresh() parent.manualRefresh()
} }
def ping() {
log.debug "${parent.ping(this)}"
}

View File

@@ -141,6 +141,7 @@ def setLevel(percentage) {
percentage = 1 // clamp to 1% percentage = 1 // clamp to 1%
} }
if (percentage == 0) { 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 return off() // if the brightness is set to 0, just turn it off
} }
parent.logErrors(logObject:log) { parent.logErrors(logObject:log) {

View File

@@ -71,6 +71,7 @@ def setLevel(percentage) {
percentage = 1 // clamp to 1% percentage = 1 // clamp to 1%
} }
if (percentage == 0) { 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 return off() // if the brightness is set to 0, just turn it off
} }
parent.logErrors(logObject:log) { parent.logErrors(logObject:log) {
@@ -142,7 +143,7 @@ def poll() {
sendEvent(name: "model", value: data.product.name) sendEvent(name: "model", value: data.product.name)
return [] return []
} }
def refresh() { def refresh() {
log.debug "Executing 'refresh'" log.debug "Executing 'refresh'"

View File

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

View File

@@ -1,37 +0,0 @@
# Nyce Door/Window Sensor (Open/Close Sensor)
Works with:
* [NYCE Door/Window Sensor NCZ-3011](https://support.smartthings.com/hc/en-us/articles/204576764-NYCE-Door-Window-Sensor)
## Table of contents
* [Capabilities](#capabilities)
* [Health](#device-health)
* [Battery](#battery-specification)
* [Troubleshooting](#troubleshooting)
## Capabilities
* **Configuration** - _configure()_ command called when device is installed or device preferences updated
* **Contact Sensor** - can detect contact (with possible values - open/closed)
* **Battery** - defines device uses a battery
* **Refresh** - _refresh()_ command for status updates
* **Health Check** - indicates ability to get device health notifications
## Device Health
A Category C2 Nyce Door/Window sensor that has 12min check-in interval
## Battery Specification
One 3V CR2032 battery required.
## Troubleshooting
If the device doesn't pair when trying from the SmartThings mobile app, it is possible that the sensor is out of range.
Pairing needs to be tried again by placing the sensor closer to the hub.
Instructions related to pairing, resetting and removing the sensor from SmartThings can be found in the following link:
* [Nyce Door/Window Sensor](https://support.smartthings.com/hc/en-us/articles/204576764-NYCE-Door-Window-Sensor)

View File

@@ -19,20 +19,19 @@ import physicalgraph.zigbee.clusters.iaszone.ZoneStatus
metadata { metadata {
definition (name: "NYCE Open/Closed Sensor", namespace: "smartthings", author: "NYCE") { definition (name: "NYCE Open/Closed Sensor", namespace: "smartthings", author: "NYCE") {
capability "Battery" capability "Battery"
capability "Configuration" capability "Configuration"
capability "Contact Sensor" capability "Contact Sensor"
capability "Refresh" capability "Refresh"
capability "Health Check"
command "enrollResponse" command "enrollResponse"
fingerprint inClusters: "0000,0001,0003,0500,0020", manufacturer: "NYCE", model: "3010", deviceJoinName: "NYCE Door Hinge Sensor" fingerprint inClusters: "0000,0001,0003,0500,0020", manufacturer: "NYCE", model: "3010", deviceJoinName: "NYCE Door Hinge Sensor"
fingerprint inClusters: "0000,0001,0003,0406,0500,0020", manufacturer: "NYCE", model: "3011", deviceJoinName: "NYCE Door/Window Sensor" 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: "0000,0001,0003,0500,0020", 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: "0000,0001,0003,0406,0500,0020", 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: "0000,0001,0003,0500,0020", manufacturer: "NYCE", model: "3014", deviceJoinName: "NYCE Tilt Sensor"
} }
simulator { simulator {
@@ -274,28 +273,23 @@ private List parseIasMessage(String description) {
return resultListMap return resultListMap
} }
/**
* PING is used by Device-Watch in attempt to reach the Device
* */
def ping() {
return zigbee.readAttribute(0x001, 0x0020) // Read the Battery Level
}
def configure() { def configure() {
// Device-Watch allows 2 check-in misses from device
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui) String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
def enrollCmds = [ def configCmds = [
//battery reporting and heartbeat
"zdo bind 0x${device.deviceNetworkId} 1 ${endpointId} 1 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 1 0x20 0x20 600 3600 {01}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 1500",
// Writes CIE attribute on end device to direct reports to the hub's EUID // Writes CIE attribute on end device to direct reports to the hub's EUID
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200", "zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 500", "send 0x${device.deviceNetworkId} 1 1", "delay 500",
] ]
log.debug "configure: Write IAS CIE" log.debug "configure: Write IAS CIE"
// battery minReportTime 30 seconds, maxReportTime 5 min. Reporting interval if no activity return configCmds
return enrollCmds + zigbee.batteryConfig(30, 300) + refresh() // send refresh cmds as part of config
} }
def enrollResponse() { def enrollResponse() {
@@ -340,8 +334,7 @@ Integer convertHexToInt(hex) {
def refresh() { def refresh() {
log.debug "Refreshing Battery" log.debug "Refreshing Battery"
def refreshCmds = [ [
"st rattr 0x${device.deviceNetworkId} ${endpointId} 1 0x20", "delay 200" "st rattr 0x${device.deviceNetworkId} ${endpointId} 1 0x20", "delay 200"
] ]
return refreshCmds + enrollResponse()
} }

View File

@@ -21,6 +21,9 @@ metadata {
attribute "colorName", "string" attribute "colorName", "string"
command "setAdjustedColor" 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 // simulator metadata

View File

@@ -133,7 +133,7 @@ def refresh() {
} }
def configure() { def configure() {
refresh() + onOffConfig() + levelConfig() + powerConfig() onOffConfig() + levelConfig() + powerConfig() + refresh()
} }

View File

@@ -47,21 +47,9 @@ def parse(String description) {
// Commands to device // Commands to device
def on() { def on() {
[ 'zcl on-off on'
'zcl on-off on',
'delay 200',
"send 0x${zigbee.deviceNetworkId} 0x01 0x${zigbee.endpointId}",
'delay 500'
]
} }
def off() { def off() {
[ 'zcl on-off off'
'zcl on-off off',
'delay 200',
"send 0x${zigbee.deviceNetworkId} 0x01 0x${zigbee.endpointId}",
'delay 500'
]
} }

View File

@@ -23,10 +23,10 @@ Works with:
## Device Health ## Device Health
A Category C1 smart power outlet with maxReportTime of 5 mins. A Category C1 smart power outlet with maxReportTime of 10 min.
Check-in interval is double the value of maxReportTime. Check-in interval is double the value of maxReportTime for Zigbee device.
This gives the device twice the amount of time to respond before it is marked as offline. This gives the device twice the amount of time to respond before it is marked as offline.
Check-in interval = 12 mins Check-in interval = 2*10 = 20 min
## Troubleshooting ## Troubleshooting

View File

@@ -16,7 +16,7 @@
metadata { metadata {
// Automatically generated. Make future change here. // Automatically generated. Make future change here.
definition (name: "SmartPower Outlet", namespace: "smartthings", author: "SmartThings") { definition (name: "SmartPower Outlet", namespace: "smartthings", author: "SmartThings", category: "C1") {
capability "Actuator" capability "Actuator"
capability "Switch" capability "Switch"
capability "Power Meter" capability "Power Meter"
@@ -104,21 +104,8 @@ def parse(String description) {
} }
} }
else { else {
def cluster = zigbee.parse(description) log.warn "DID NOT PARSE MESSAGE for description : $description"
log.debug zigbee.parseDescriptionAsMap(description)
if (cluster && cluster.clusterId == 0x0006 && cluster.command == 0x07){
if (cluster.data[0] == 0x00) {
log.debug "ON/OFF REPORTING CONFIG RESPONSE: " + cluster
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
}
else {
log.warn "ON/OFF REPORTING CONFIG FAILED- error code:${cluster.data[0]}"
}
}
else {
log.warn "DID NOT PARSE MESSAGE for description : $description"
log.debug "${cluster}"
}
} }
} }
@@ -141,12 +128,10 @@ def refresh() {
} }
def configure() { def configure() {
// Device-Watch allows 3 check-in misses from device (plus 1 min lag time) // Device-Watch allows 3 check-in misses from device. 300 seconds x 3 = 15min
// enrolls with default periodic reporting until newer 5 min interval is confirmed sendEvent(name: "checkInterval", value: 900, displayed: false, data: [protocol: "zigbee"])
sendEvent(name: "checkInterval", value: 3 * 10 * 60 + 1 * 60, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
// OnOff minReportTime 0 seconds, maxReportTime 5 min. Reporting interval if no activity // OnOff minReportTime 0 seconds, maxReportTime 5 min. Reporting interval if no activity
refresh() + zigbee.onOffConfig(0, 300) + powerConfig() zigbee.onOffConfig(0, 300) + powerConfig() + refresh()
} }
//power config for devices with min reporting interval as 1 seconds and reporting interval if no activity as 10min (600s) //power config for devices with min reporting interval as 1 seconds and reporting interval if no activity as 10min (600s)

View File

@@ -23,10 +23,10 @@ Works with:
## Device Health ## Device Health
A Category C2 moisture sensor with maxReportTime of 5 mins. A Category C2 moisture sensor with maxReportTime of 1 hr.
Check-in interval is double the value of maxReportTime. Check-in interval is double the value of maxReportTime for Zigbee device.
This gives the device twice the amount of time to respond before it is marked as offline. This gives the device twice the amount of time to respond before it is marked as offline.
Check-in interval = 12 mins Check-in interval = 2*60 = 120 min
## Battery Specification ## Battery Specification

View File

@@ -17,7 +17,7 @@ import physicalgraph.zigbee.clusters.iaszone.ZoneStatus
metadata { metadata {
definition (name: "SmartSense Moisture Sensor",namespace: "smartthings", author: "SmartThings") { definition (name: "SmartSense Moisture Sensor",namespace: "smartthings", author: "SmartThings", category: "C2") {
capability "Configuration" capability "Configuration"
capability "Battery" capability "Battery"
capability "Refresh" capability "Refresh"
@@ -118,28 +118,14 @@ private Map parseCatchAllMessage(String description) {
if (shouldProcessMessage(cluster)) { if (shouldProcessMessage(cluster)) {
switch(cluster.clusterId) { switch(cluster.clusterId) {
case 0x0001: case 0x0001:
// 0x07 - configure reporting resultMap = getBatteryResult(cluster.data.last())
if (cluster.command != 0x07) {
resultMap = getBatteryResult(cluster.data.last())
}
break break
case 0x0402: case 0x0402:
if (cluster.command == 0x07) { // temp is last 2 data values. reverse to swap endian
if (cluster.data[0] == 0x00){ String temp = cluster.data[-2..-1].reverse().collect { cluster.hex1(it) }.join()
log.debug "TEMP REPORTING CONFIG RESPONSE" + cluster def value = getTemperature(temp)
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID]) resultMap = getTemperatureResult(value)
}
else {
log.warn "TEMP REPORTING CONFIG FAILED- error code:${cluster.data[0]}"
}
}
else {
// temp is last 2 data values. reverse to swap endian
String temp = cluster.data[-2..-1].reverse().collect { cluster.hex1(it) }.join()
def value = getTemperature(temp)
resultMap = getTemperatureResult(value)
}
break break
} }
} }
@@ -149,8 +135,10 @@ private Map parseCatchAllMessage(String description) {
private boolean shouldProcessMessage(cluster) { private boolean shouldProcessMessage(cluster) {
// 0x0B is default response indicating message got through // 0x0B is default response indicating message got through
// 0x07 is bind message
boolean ignoredMessage = cluster.profileId != 0x0104 || boolean ignoredMessage = cluster.profileId != 0x0104 ||
cluster.command == 0x0B || cluster.command == 0x0B ||
cluster.command == 0x07 ||
(cluster.data.size() > 0 && cluster.data.first() == 0x3e) (cluster.data.size() > 0 && cluster.data.first() == 0x3e)
return !ignoredMessage return !ignoredMessage
} }
@@ -192,9 +180,9 @@ private Map parseIasMessage(String description) {
def getTemperature(value) { def getTemperature(value) {
def celsius = Integer.parseInt(value, 16).shortValue() / 100 def celsius = Integer.parseInt(value, 16).shortValue() / 100
if(getTemperatureScale() == "C"){ if(getTemperatureScale() == "C"){
return Math.round(celsius) return celsius
} else { } else {
return Math.round(celsiusToFahrenheit(celsius)) return celsiusToFahrenheit(celsius) as Integer
} }
} }
@@ -304,13 +292,19 @@ def refresh() {
} }
def configure() { def configure() {
// Device-Watch allows 3 check-in misses from device (plus 1 min lag time) // Device-Watch allows 3 check-in misses from device. 300 seconds x 3 = 15min
// enrolls with default periodic reporting until newer 5 min interval is confirmed sendEvent(name: "checkInterval", value: 900, displayed: false, data: [protocol: "zigbee"])
sendEvent(name: "checkInterval", value: 3 * 60 * 60 + 1 * 60, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
log.debug "Configuring Reporting, IAS CIE, and Bindings."
def enrollCmds = [
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 500",
]
// temperature minReportTime 30 seconds, maxReportTime 5 min. Reporting interval if no activity // temperature minReportTime 30 seconds, maxReportTime 5 min. Reporting interval if no activity
// battery minReport 30 seconds, maxReportTime 6 hrs by default // battery minReport 30 seconds, maxReportTime 6 hrs by default
return refresh() + zigbee.batteryConfig() + zigbee.temperatureConfig(30, 300) // send refresh cmds as part of config return enrollCmds + zigbee.batteryConfig() + zigbee.temperatureConfig(30, 300) + refresh() // send refresh cmds as part of config
} }
def enrollResponse() { def enrollResponse() {

View File

@@ -22,10 +22,10 @@ Works with:
## Device Health ## Device Health
A Category C2 motion sensor with maxReportTime of 5 mins. A Category C2 motion sensor with maxReportTime of 1 hr.
Check-in interval is double the value of maxReportTime. Check-in interval is double the value of maxReportTime for Zigbee device.
This gives the device twice the amount of time to respond before it is marked as offline. This gives the device twice the amount of time to respond before it is marked as offline.
Check-in interval = 12 mins Check-in interval = 2*60 = 120 min
## Battery Specification ## Battery Specification

View File

@@ -17,7 +17,7 @@ import physicalgraph.zigbee.clusters.iaszone.ZoneStatus
metadata { metadata {
definition (name: "SmartSense Motion Sensor", namespace: "smartthings", author: "SmartThings") { definition (name: "SmartSense Motion Sensor", namespace: "smartthings", author: "SmartThings", category: "C2") {
capability "Motion Sensor" capability "Motion Sensor"
capability "Configuration" capability "Configuration"
capability "Battery" capability "Battery"
@@ -122,37 +122,19 @@ private Map parseCatchAllMessage(String description) {
if (shouldProcessMessage(cluster)) { if (shouldProcessMessage(cluster)) {
switch(cluster.clusterId) { switch(cluster.clusterId) {
case 0x0001: case 0x0001:
// 0x07 - configure reporting resultMap = getBatteryResult(cluster.data.last())
if (cluster.command != 0x07) {
resultMap = getBatteryResult(cluster.data.last())
}
break break
case 0x0402: case 0x0402:
if (cluster.command == 0x07) { // temp is last 2 data values. reverse to swap endian
if (cluster.data[0] == 0x00) { String temp = cluster.data[-2..-1].reverse().collect { cluster.hex1(it) }.join()
log.debug "TEMP REPORTING CONFIG RESPONSE" + cluster def value = getTemperature(temp)
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID]) resultMap = getTemperatureResult(value)
}
else {
log.warn "TEMP REPORTING CONFIG FAILED- error code:${cluster.data[0]}"
}
}
else {
// temp is last 2 data values. reverse to swap endian
String temp = cluster.data[-2..-1].reverse().collect { cluster.hex1(it) }.join()
def value = getTemperature(temp)
resultMap = getTemperatureResult(value)
}
break break
case 0x0406: case 0x0406:
// 0x07 - configure reporting log.debug 'motion'
if (cluster.command != 0x07) { resultMap.name = 'motion'
log.debug 'motion'
resultMap.name = 'motion'
}
break break
} }
} }
@@ -162,8 +144,10 @@ private Map parseCatchAllMessage(String description) {
private boolean shouldProcessMessage(cluster) { private boolean shouldProcessMessage(cluster) {
// 0x0B is default response indicating message got through // 0x0B is default response indicating message got through
// 0x07 is bind message
boolean ignoredMessage = cluster.profileId != 0x0104 || boolean ignoredMessage = cluster.profileId != 0x0104 ||
cluster.command == 0x0B || cluster.command == 0x0B ||
cluster.command == 0x07 ||
(cluster.data.size() > 0 && cluster.data.first() == 0x3e) (cluster.data.size() > 0 && cluster.data.first() == 0x3e)
return !ignoredMessage return !ignoredMessage
} }
@@ -210,9 +194,9 @@ private Map parseIasMessage(String description) {
def getTemperature(value) { def getTemperature(value) {
def celsius = Integer.parseInt(value, 16).shortValue() / 100 def celsius = Integer.parseInt(value, 16).shortValue() / 100
if(getTemperatureScale() == "C"){ if(getTemperatureScale() == "C"){
return Math.round(celsius) return celsius
} else { } else {
return Math.round(celsiusToFahrenheit(celsius)) return celsiusToFahrenheit(celsius) as Integer
} }
} }
@@ -319,13 +303,19 @@ def refresh() {
} }
def configure() { def configure() {
// Device-Watch allows 3 check-in misses from device (plus 1 min lag time) // Device-Watch allows 3 check-in misses from device. 300 seconds x 3 = 15min
// enrolls with default periodic reporting until newer 5 min interval is confirmed sendEvent(name: "checkInterval", value: 900, displayed: false, data: [protocol: "zigbee"])
sendEvent(name: "checkInterval", value: 3 * 60 * 60 + 1 * 60, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
log.debug "Configuring Reporting, IAS CIE, and Bindings."
def enrollCmds = [
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
]
// temperature minReportTime 30 seconds, maxReportTime 5 min. Reporting interval if no activity // temperature minReportTime 30 seconds, maxReportTime 5 min. Reporting interval if no activity
// battery minReport 30 seconds, maxReportTime 6 hrs by default // battery minReport 30 seconds, maxReportTime 6 hrs by default
return refresh() + zigbee.batteryConfig() + zigbee.temperatureConfig(30, 300) // send refresh cmds as part of config return enrollCmds + zigbee.batteryConfig() + zigbee.temperatureConfig(30, 300) + refresh() // send refresh cmds as part of config
} }
def enrollResponse() { def enrollResponse() {

View File

@@ -255,9 +255,13 @@ def refresh() {
} }
def configure() { def configure() {
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
log.debug "Configuring Reporting, IAS CIE, and Bindings." log.debug "Configuring Reporting, IAS CIE, and Bindings."
def configCmds = [ 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", "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 "zcl global send-me-a-report 1 0x20 0x20 30 21600 {01}", //checkin time 6 hrs
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500", "send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
@@ -266,7 +270,7 @@ def configure() {
"zcl global send-me-a-report 0x402 0 0x29 30 3600 {6400}", "zcl global send-me-a-report 0x402 0 0x29 30 3600 {6400}",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500" "send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500"
] ]
return refresh() + configCmds // send refresh cmds as part of config return configCmds + refresh() // send refresh cmds as part of config
} }
def enrollResponse() { def enrollResponse() {

View File

@@ -26,10 +26,10 @@ Works with:
## Device Health ## Device Health
A Category C2 multi sensor with maxReportTime of 5 mins. A Category C2 multi sensor with maxReportTime of 1 hr.
Check-in interval is double the value of maxReportTime. Check-in interval is double the value of maxReportTime for Zigbee device.
This gives the device twice the amount of time to respond before it is marked as offline. This gives the device twice the amount of time to respond before it is marked as offline.
Check-in interval = 12 mins Check-in interval = 2*60 = 120 min
## Battery Specification ## Battery Specification

View File

@@ -16,7 +16,7 @@
import physicalgraph.zigbee.clusters.iaszone.ZoneStatus import physicalgraph.zigbee.clusters.iaszone.ZoneStatus
metadata { metadata {
definition (name: "SmartSense Multi Sensor", namespace: "smartthings", author: "SmartThings") { definition (name: "SmartSense Multi Sensor", namespace: "smartthings", author: "SmartThings", category: "C2") {
capability "Three Axis" capability "Three Axis"
capability "Battery" capability "Battery"
@@ -147,33 +147,20 @@ private Map parseCatchAllMessage(String description) {
if (shouldProcessMessage(cluster)) { if (shouldProcessMessage(cluster)) {
switch(cluster.clusterId) { switch(cluster.clusterId) {
case 0x0001: case 0x0001:
// 0x07 - configure reporting resultMap = getBatteryResult(cluster.data.last())
if (cluster.command != 0x07) {
resultMap = getBatteryResult(cluster.data.last())
}
break break
case 0xFC02: case 0xFC02:
log.debug 'ACCELERATION' log.debug 'ACCELERATION'
break break
case 0x0402: case 0x0402:
if (cluster.command == 0x07) { log.debug 'TEMP'
if(cluster.data[0] == 0x00) { // temp is last 2 data values. reverse to swap endian
log.debug "TEMP REPORTING CONFIG RESPONSE" + cluster String temp = cluster.data[-2..-1].reverse().collect { cluster.hex1(it) }.join()
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID]) def value = getTemperature(temp)
} resultMap = getTemperatureResult(value)
else { break
log.warn "TEMP REPORTING CONFIG FAILED- error code:${cluster.data[0]}"
}
}
else {
// temp is last 2 data values. reverse to swap endian
String temp = cluster.data[-2..-1].reverse().collect { cluster.hex1(it) }.join()
def value = getTemperature(temp)
resultMap = getTemperatureResult(value)
}
break
} }
} }
@@ -182,8 +169,10 @@ private Map parseCatchAllMessage(String description) {
private boolean shouldProcessMessage(cluster) { private boolean shouldProcessMessage(cluster) {
// 0x0B is default response indicating message got through // 0x0B is default response indicating message got through
// 0x07 is bind message
boolean ignoredMessage = cluster.profileId != 0x0104 || boolean ignoredMessage = cluster.profileId != 0x0104 ||
cluster.command == 0x0B || cluster.command == 0x0B ||
cluster.command == 0x07 ||
(cluster.data.size() > 0 && cluster.data.first() == 0x3e) (cluster.data.size() > 0 && cluster.data.first() == 0x3e)
return !ignoredMessage return !ignoredMessage
} }
@@ -272,9 +261,9 @@ def updated() {
def getTemperature(value) { def getTemperature(value) {
def celsius = Integer.parseInt(value, 16).shortValue() / 100 def celsius = Integer.parseInt(value, 16).shortValue() / 100
if(getTemperatureScale() == "C"){ if(getTemperatureScale() == "C"){
return Math.round(celsius) return celsius
} else { } else {
return Math.round(celsiusToFahrenheit(celsius)) return celsiusToFahrenheit(celsius) as Integer
} }
} }
@@ -412,22 +401,22 @@ def refresh() {
} }
def configure() { def configure() {
// Device-Watch allows 3 check-in misses from device (plus 1 min lag time) // Device-Watch allows 3 check-in misses from device. 300 seconds x 3 = 15min
// enrolls with default periodic reporting until newer 5 min interval is confirmed sendEvent(name: "checkInterval", value: 900, displayed: false, data: [protocol: "zigbee"])
sendEvent(name: "checkInterval", value: 3 * 60 * 60 + 1 * 60, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
log.debug "Configuring Reporting" log.debug "Configuring Reporting"
// temperature minReportTime 30 seconds, maxReportTime 5 min. Reporting interval if no activity // temperature minReportTime 30 seconds, maxReportTime 5 min. Reporting interval if no activity
// battery minReport 30 seconds, maxReportTime 6 hrs by default // battery minReport 30 seconds, maxReportTime 6 hrs by default
def configCmds = zigbee.batteryConfig() + def configCmds = enrollResponse() +
zigbee.batteryConfig() +
zigbee.temperatureConfig(30, 300) + zigbee.temperatureConfig(30, 300) +
zigbee.configureReporting(0xFC02, 0x0010, 0x18, 10, 3600, 0x01, [mfgCode: manufacturerCode]) + zigbee.configureReporting(0xFC02, 0x0010, 0x18, 10, 3600, 0x01, [mfgCode: manufacturerCode]) +
zigbee.configureReporting(0xFC02, 0x0012, 0x29, 1, 3600, 0x0001, [mfgCode: manufacturerCode]) + zigbee.configureReporting(0xFC02, 0x0012, 0x29, 1, 3600, 0x0001, [mfgCode: manufacturerCode]) +
zigbee.configureReporting(0xFC02, 0x0013, 0x29, 1, 3600, 0x0001, [mfgCode: manufacturerCode]) + zigbee.configureReporting(0xFC02, 0x0013, 0x29, 1, 3600, 0x0001, [mfgCode: manufacturerCode]) +
zigbee.configureReporting(0xFC02, 0x0014, 0x29, 1, 3600, 0x0001, [mfgCode: manufacturerCode]) zigbee.configureReporting(0xFC02, 0x0014, 0x29, 1, 3600, 0x0001, [mfgCode: manufacturerCode])
return refresh() + configCmds return configCmds + refresh()
} }
private getEndpointId() { private getEndpointId() {

View File

@@ -277,8 +277,12 @@ def getTemperature(value) {
def configure() { def configure() {
sendEvent(name: "checkInterval", value: 7200, displayed: false) sendEvent(name: "checkInterval", value: 7200, displayed: false)
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
log.debug "Configuring Reporting, IAS CIE, and Bindings." log.debug "Configuring Reporting, IAS CIE, and Bindings."
def configCmds = [ 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", "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 "zcl global send-me-a-report 1 0x20 0x20 30 21600 {01}", //checkin time 6 hrs
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500", "send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
@@ -291,7 +295,7 @@ def configure() {
"zcl global send-me-a-report 0xFC02 2 0x18 30 3600 {01}", "zcl global send-me-a-report 0xFC02 2 0x18 30 3600 {01}",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500" "send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500"
] ]
return refresh() + configCmds // send refresh cmds as part of config return configCmds + refresh() // send refresh cmds as part of config
} }
def enrollResponse() { def enrollResponse() {

View File

@@ -24,10 +24,10 @@ Works with:
## Device Health ## Device Health
A Category C2 open/closed sensor with maxReportTime of 5 mins. A Category C2 open/closed sensor with maxReportTime of 1 hr.
Check-in interval is double the value of maxReportTime. Check-in interval is double the value of maxReportTime for Zigbee device.
This gives the device twice the amount of time to respond before it is marked as offline. This gives the device twice the amount of time to respond before it is marked as offline.
Check-in interval = 12 mins Check-in interval = 2*60 = 120 min
## Battery Specification ## Battery Specification

View File

@@ -16,7 +16,7 @@
import physicalgraph.zigbee.clusters.iaszone.ZoneStatus import physicalgraph.zigbee.clusters.iaszone.ZoneStatus
metadata { metadata {
definition (name: "SmartSense Open/Closed Sensor", namespace: "smartthings", author: "SmartThings") { definition (name: "SmartSense Open/Closed Sensor", namespace: "smartthings", author: "SmartThings", category: "C2") {
capability "Battery" capability "Battery"
capability "Configuration" capability "Configuration"
capability "Contact Sensor" capability "Contact Sensor"
@@ -109,28 +109,15 @@ private Map parseCatchAllMessage(String description) {
if (shouldProcessMessage(cluster)) { if (shouldProcessMessage(cluster)) {
switch(cluster.clusterId) { switch(cluster.clusterId) {
case 0x0001: case 0x0001:
// 0x07 - configure reporting resultMap = getBatteryResult(cluster.data.last())
if (cluster.command != 0x07) {
resultMap = getBatteryResult(cluster.data.last())
}
break break
case 0x0402: case 0x0402:
if (cluster.command == 0x07){ log.debug 'TEMP'
if (cluster.data[0] == 0x00) { // temp is last 2 data values. reverse to swap endian
log.debug "TEMP REPORTING CONFIG RESPONSE" + cluster String temp = cluster.data[-2..-1].reverse().collect { cluster.hex1(it) }.join()
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID]) def value = getTemperature(temp)
} resultMap = getTemperatureResult(value)
else {
log.warn "TEMP REPORTING CONFIG FAILED- error code:${cluster.data[0]}"
}
}
else {
// temp is last 2 data values. reverse to swap endian
String temp = cluster.data[-2..-1].reverse().collect { cluster.hex1(it) }.join()
def value = getTemperature(temp)
resultMap = getTemperatureResult(value)
}
break break
} }
} }
@@ -140,8 +127,10 @@ private Map parseCatchAllMessage(String description) {
private boolean shouldProcessMessage(cluster) { private boolean shouldProcessMessage(cluster) {
// 0x0B is default response indicating message got through // 0x0B is default response indicating message got through
// 0x07 is bind message
boolean ignoredMessage = cluster.profileId != 0x0104 || boolean ignoredMessage = cluster.profileId != 0x0104 ||
cluster.command == 0x0B || cluster.command == 0x0B ||
cluster.command == 0x07 ||
(cluster.data.size() > 0 && cluster.data.first() == 0x3e) (cluster.data.size() > 0 && cluster.data.first() == 0x3e)
return !ignoredMessage return !ignoredMessage
} }
@@ -266,15 +255,19 @@ def refresh() {
} }
def configure() { def configure() {
// Device-Watch allows 3 check-in misses from device (plus 1 min lag time) // Device-Watch allows 3 check-in misses from device. 300 seconds x 3 = 15min
// enrolls with default periodic reporting until newer 5 min interval is confirmed sendEvent(name: "checkInterval", value: 900, displayed: false, data: [protocol: "zigbee"])
sendEvent(name: "checkInterval", value: 3 * 60 * 60 + 1 * 60, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
log.debug "Configuring Reporting, IAS CIE, and Bindings." log.debug "Configuring Reporting, IAS CIE, and Bindings."
def enrollCmds = [
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 500",
]
// temperature minReportTime 30 seconds, maxReportTime 5 min. Reporting interval if no activity // temperature minReportTime 30 seconds, maxReportTime 5 min. Reporting interval if no activity
// battery minReport 30 seconds, maxReportTime 6 hrs by default // battery minReport 30 seconds, maxReportTime 6 hrs by default
return refresh() + zigbee.batteryConfig() + zigbee.temperatureConfig(30, 300) // send refresh cmds as part of config return enrollCmds + zigbee.batteryConfig() + zigbee.temperatureConfig(30, 300) + refresh() // send refresh cmds as part of config
} }
def enrollResponse() { def enrollResponse() {

View File

@@ -24,10 +24,10 @@ Works with:
## Device Health ## Device Health
A Category C2 SmartSense Temp/Humidity Sensor with maxReportTime of 5 mins. A Category C2 SmartSense Temp/Humidity Sensor with maxReportTime of 1 hr.
Check-in interval is double the value of maxReportTime. Check-in interval is double the value of maxReportTime for Zigbee device.
This gives the device twice the amount of time to respond before it is marked as offline. This gives the device twice the amount of time to respond before it is marked as offline.
Check-in interval = 12 mins Check-in interval = 2*60 = 120 min
## Battery Specification ## Battery Specification

View File

@@ -14,7 +14,7 @@
* *
*/ */
metadata { metadata {
definition (name: "SmartSense Temp/Humidity Sensor",namespace: "smartthings", author: "SmartThings") { definition (name: "SmartSense Temp/Humidity Sensor",namespace: "smartthings", author: "SmartThings", category: "C2") {
capability "Configuration" capability "Configuration"
capability "Battery" capability "Battery"
capability "Refresh" capability "Refresh"
@@ -93,37 +93,20 @@ private Map parseCatchAllMessage(String description) {
if (shouldProcessMessage(cluster)) { if (shouldProcessMessage(cluster)) {
switch(cluster.clusterId) { switch(cluster.clusterId) {
case 0x0001: case 0x0001:
// 0x07 - configure reporting resultMap = getBatteryResult(cluster.data.last())
if (cluster.command != 0x07) {
resultMap = getBatteryResult(cluster.data.last())
}
break break
case 0x0402: case 0x0402:
if (cluster.command == 0x07) { // temp is last 2 data values. reverse to swap endian
if (cluster.data[0] == 0x00){ String temp = cluster.data[-2..-1].reverse().collect { cluster.hex1(it) }.join()
log.debug "TEMP REPORTING CONFIG RESPONSE" + cluster def value = getTemperature(temp)
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID]) resultMap = getTemperatureResult(value)
} break
else {
log.warn "TEMP REPORTING CONFIG FAILED- error code:${cluster.data[0]}"
}
}
else {
// temp is last 2 data values. reverse to swap endian
String temp = cluster.data[-2..-1].reverse().collect { cluster.hex1(it) }.join()
def value = getTemperature(temp)
resultMap = getTemperatureResult(value)
}
break
case 0xFC45: case 0xFC45:
// 0x07 - configure reporting String pctStr = cluster.data[-1, -2].collect { Integer.toHexString(it) }.join('')
if (cluster.command != 0x07) { String display = Math.round(Integer.valueOf(pctStr, 16) / 100)
String pctStr = cluster.data[-1, -2].collect { Integer.toHexString(it) }.join('') resultMap = getHumidityResult(display)
String display = Math.round(Integer.valueOf(pctStr, 16) / 100)
resultMap = getHumidityResult(display)
}
break break
} }
} }
@@ -133,8 +116,10 @@ private Map parseCatchAllMessage(String description) {
private boolean shouldProcessMessage(cluster) { private boolean shouldProcessMessage(cluster) {
// 0x0B is default response indicating message got through // 0x0B is default response indicating message got through
// 0x07 is bind message
boolean ignoredMessage = cluster.profileId != 0x0104 || boolean ignoredMessage = cluster.profileId != 0x0104 ||
cluster.command == 0x0B || cluster.command == 0x0B ||
cluster.command == 0x07 ||
(cluster.data.size() > 0 && cluster.data.first() == 0x3e) (cluster.data.size() > 0 && cluster.data.first() == 0x3e)
return !ignoredMessage return !ignoredMessage
} }
@@ -250,7 +235,11 @@ private Map getTemperatureResult(value) {
private Map getHumidityResult(value) { private Map getHumidityResult(value) {
log.debug 'Humidity' log.debug 'Humidity'
return value ? [name: 'humidity', value: value, unit: '%'] : [:] return [
name: 'humidity',
value: value,
unit: '%'
]
} }
/** /**
@@ -263,15 +252,20 @@ def ping() {
def refresh() def refresh()
{ {
log.debug "refresh temperature, humidity, and battery" log.debug "refresh temperature, humidity, and battery"
return zigbee.readAttribute(0xFC45, 0x0000, ["mfgCode": 0xC2DF]) + // Original firmware [
zigbee.readAttribute(0x0402, 0x0000) +
zigbee.readAttribute(0x0001, 0x0020) "zcl mfg-code 0xC2DF", "delay 1000",
"zcl global read 0xFC45 0", "delay 1000",
"send 0x${device.deviceNetworkId} 1 1", "delay 1000",
"st rattr 0x${device.deviceNetworkId} 1 0x402 0", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 1 0x20"
]
} }
def configure() { def configure() {
// Device-Watch allows 3 check-in misses from device (plus 1 min lag time) // Device-Watch allows 3 check-in misses from device. 300 seconds x 3 = 15min
// enrolls with default periodic reporting until newer 5 min interval is confirmed sendEvent(name: "checkInterval", value: 900, displayed: false, data: [protocol: "zigbee"])
sendEvent(name: "checkInterval", value: 3 * 60 * 60 + 1 * 60, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
log.debug "Configuring Reporting and Bindings." log.debug "Configuring Reporting and Bindings."
def humidityConfigCmds = [ def humidityConfigCmds = [
@@ -282,7 +276,7 @@ def configure() {
// temperature minReportTime 30 seconds, maxReportTime 5 min. Reporting interval if no activity // temperature minReportTime 30 seconds, maxReportTime 5 min. Reporting interval if no activity
// battery minReport 30 seconds, maxReportTime 6 hrs by default // battery minReport 30 seconds, maxReportTime 6 hrs by default
return refresh() + humidityConfigCmds + zigbee.batteryConfig() + zigbee.temperatureConfig(30, 300) // send refresh cmds as part of config return humidityConfigCmds + zigbee.batteryConfig() + zigbee.temperatureConfig(30, 300) + refresh() // send refresh cmds as part of config
} }
private hex(value) { private hex(value) {

View File

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

View File

@@ -1,42 +0,0 @@
# Tyco Door Window Sensor
Works with:
* [Tyco Door Window Sensor](https://support.smartthings.com/hc/en-us/articles/204834100-Tyco-Door-Window-Sensor)
## Table of contents
* [Capabilities](#capabilities)
* [Health](#device-health)
* [Battery](#battery-specification)
## Capabilities
* **Battery** - defines device uses a battery
* **Configuration** - _configure()_ command called when device is installed or device preferences updated
* **Contact Sensor** - can detect contact (open/close)
* **Refresh** - _refresh()_ command for status updates
* **Temperature Measurement** - can measure the device temperature
* **Health Check** - indicates ability to get device health notifications
## Device Health
Contact sensor with maxReportTime of 5 mins.
Check-in interval is double the value of maxReportTime for Zigbee device.
This gives the device twice the amount of time to respond before it is marked as offline.
Check-in interval = 12 min
## Battery Specification
3V CR2032 battery is required.
## Troubleshooting
If the device doesn't pair when trying from the SmartThings mobile app, it is possible that either the sensor needs to be reseted or the sensor is out of range.
Reset needs to be done by inserting the battery in the sensor and then quickly pressing the adjacent black button 10 times. Pairing should be tried again now.
It may happen that sensor is out of range, then pairing needs to be tried again by placing the sensor closer to the hub.
Instructions related to pairing, resetting and removing the different motion sensors from SmartThings can be found in the following links
for the different models:
* [Tyco Door Window Sensor (MCT-340)](https://support.smartthings.com/hc/en-us/articles/204834100-Tyco-Door-Window-Sensor)

View File

@@ -22,7 +22,6 @@ metadata {
capability "Contact Sensor" capability "Contact Sensor"
capability "Refresh" capability "Refresh"
capability "Temperature Measurement" capability "Temperature Measurement"
capability "Health Check"
command "enrollResponse" command "enrollResponse"
@@ -230,42 +229,44 @@ private Map getContactResult(value) {
] ]
} }
/**
* PING is used by Device-Watch in attempt to reach the Device
* */
def ping() {
return zigbee.readAttribute(0x0402, 0x0000) // Read the Temperature Cluster
}
def refresh() def refresh()
{ {
log.debug "Refreshing Temperature and Battery" log.debug "Refreshing Temperature and Battery"
def refreshCmds = [ [
"st rattr 0x${device.deviceNetworkId} 1 0x402 0", "delay 200", "st rattr 0x${device.deviceNetworkId} 1 0x402 0", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 1 0x20" "st rattr 0x${device.deviceNetworkId} 1 1 0x20"
] ]
return refreshCmds + enrollResponse()
} }
def configure() { def configure() {
// Device-Watch allows 2 check-in misses from device
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui) String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
log.debug "Configuring Reporting, IAS CIE, and Bindings." log.debug "Configuring Reporting, IAS CIE, and Bindings."
def enrollCmds = [ def configCmds = [
"delay 1000", "delay 1000",
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200", "zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500", "send 0x${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", //"raw 0x500 {01 23 00 00 00}", "delay 200",
//"send 0x${device.deviceNetworkId} 1 1", "delay 1500", //"send 0x${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}} {}",
"delay 500"
] ]
return enrollCmds + zigbee.batteryConfig() + zigbee.temperatureConfig(30, 300) + refresh() // send refresh cmds as part of config return configCmds + enrollResponse() + refresh() // send refresh cmds as part of config
} }
def enrollResponse() { def enrollResponse() {

View File

@@ -89,8 +89,14 @@ def parse(String description) {
} }
private Map parseIasButtonMessage(String description) { private Map parseIasButtonMessage(String description) {
def zs = zigbee.parseZoneStatus(description) int zoneInt = Integer.parseInt((description - "zone status 0x"), 16)
return zs.isAlarm2Set() ? getButtonResult("press") : getButtonResult("release") if (zoneInt & 0x02) {
resultMap = getButtonResult('press')
} else {
resultMap = getButtonResult('release')
}
return resultMap
} }
private Map getBatteryResult(rawValue) { private Map getBatteryResult(rawValue) {

View File

@@ -0,0 +1,630 @@
/**
* 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.
*
* Author: SmartThings
* Date: 2013-12-02
*/
metadata {
definition (name: "ZigBee CentraLite Thermostat", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Temperature Measurement"
capability "Thermostat"
capability "Configuration"
capability "Refresh"
capability "Sensor"
capability "Polling"
capability "Battery"
// Custom commands
command "raiseHeatLevel"
command "lowHeatLevel"
command "raiseCoolLevel"
command "lowCoolLevel"
command "setTemperature"
command "setThermostatHoldMode"
command "getPowerSource"
attribute "temperatureScale", "string"
attribute "thermostatHoldMode", "string"
attribute "powerSource", "string"
fingerprint profileId: "0104", inClusters: "0000,0001,0003,0020,0201,0202,0204,0B05", outClusters: "000A, 0019"
}
// simulator metadata
simulator { }
tiles(scale: 2) {
multiAttributeTile(name:"summary", type: "thermostat", width: 6, height: 4) {
tileAttribute("device.temperature", key: "PRIMARY_CONTROL") {
attributeState("temperature", label:'${currentValue}°', unit:"dF",
backgroundColors:[
// Celsius Color Range
[value: 0, color: "#153591"],
[value: 7, color: "#1e9cbb"],
[value: 15, color: "#90d2a7"],
[value: 23, color: "#44b621"],
[value: 29, color: "#f1d801"],
[value: 33, color: "#d04e00"],
[value: 36, color: "#bc2323"],
// Fahrenheit Color Range
[value: 40, color: "#153591"],
[value: 44, color: "#1e9cbb"],
[value: 59, color: "#90d2a7"],
[value: 65, color: "#99ff33"],
[value: 74, color: "#44b621"],
[value: 84, color: "#f1d801"],
[value: 92, color: "#d04e00"],
[value: 96, color: "#bc2323"]
])
}
tileAttribute("device.temperature", key: "VALUE_CONTROL") {
attributeState("default", action: "setTemperature")
}
tileAttribute("device.powerSource", key: "SECONDARY_CONTROL") {
attributeState("default", label:'PowerSrc: ${currentValue}')
}
tileAttribute("device.heatingSetpoint", key: "HEATING_SETPOINT") {
attributeState("default", label:'${currentValue}', unit:"dF")
}
tileAttribute("device.coolingSetpoint", key: "COOLING_SETPOINT") {
attributeState("default", label:'${currentValue}', unit:"dF")
}
}
valueTile("temperature", "device.temperature", width: 2, height: 2) {
state("temperature", label:'${currentValue}°', unit:"",
backgroundColors:[
// Celsius Color Range
[value: 0, color: "#153591"],
[value: 7, color: "#1e9cbb"],
[value: 15, color: "#90d2a7"],
[value: 23, color: "#44b621"],
[value: 29, color: "#f1d801"],
[value: 33, color: "#d04e00"],
[value: 36, color: "#bc2323"],
// Fahrenheit Color Range
[value: 40, color: "#153591"],
[value: 44, color: "#1e9cbb"],
[value: 59, color: "#90d2a7"],
[value: 65, color: "#99ff33"],
[value: 74, color: "#44b621"],
[value: 84, color: "#f1d801"],
[value: 92, color: "#d04e00"],
[value: 96, color: "#bc2323"]
]
)
}
standardTile("mode", "device.thermostatMode", height: 2, width: 2, inactiveLabel: false, canChangeIcon: false) {
state "off", label:'', action:"thermostat.setThermostatMode", icon: "st.thermostat.heating-cooling-off"
state "cool", label:'', action:"thermostat.setThermostatMode", icon: "st.thermostat.cool", backgroundColor: '#99ddff'
state "heat", label:'', action:"thermostat.setThermostatMode", icon: "st.thermostat.heat", backgroundColor: '#fd631c'
state "emergencyHeat", label:'', action:"thermostat.setThermostatMode", icon: "st.thermostat.emergency-heat", backgroundColor: '#E11102'
//state "auto", label:'', action:"thermostat.setThermostatMode", icon: "st.thermostat.auto", backgroundColor: '#ffff00'
}
standardTile("fanMode", "device.thermostatFanMode", height: 2, width: 2, inactiveLabel: false, canChangeIcon: false) {
state "fanAuto", label:'', action:"thermostat.setThermostatFanMode", icon: "st.thermostat.fan-auto", backgroundColor: '#ffff00'
state "fanOn", label:'', action:"thermostat.setThermostatFanMode", icon: "st.thermostat.fan-on", backgroundColor: '#ffff00'
}
standardTile("holdMode", "device.thermostatHoldMode", height: 2, width: 2, inactiveLabel: false, canChangeIcon: false) {
state "holdOff", label:'Hold Off', action:"setThermostatHoldMode", icon: "st.Lighting.light13", backgroundColor:"#ffffff", nextState:"holdOff"
state "holdOn", label:'Hold On', action:"setThermostatHoldMode", icon: "st.Lighting.light11", backgroundColor:"#ffb3ff", nextState:"holdOn"
}
standardTile("raiseHeatLevel", "device.heatingSetpoint", canChangeIcon: false, , height: 0.5, width: 0.5, inactiveLabel: false, decoration: "flat") {
state "raiseHeatLevel", label:' ', action:"raiseHeatLevel", icon:"st.thermostat.thermostat-up"
}
valueTile("heatingSetpoint", "device.heatingSetpoint", height: 1, width: 2, inactiveLabel: false, decoration: "flat") {
state "heat", label:'${currentValue}° Heat', unit:"", backgroundColor:"#fd631c"
}
standardTile("lowHeatLevel", "device.heatingSetpoint", canChangeIcon: false, , height: 0.5, width: 0.5, inactiveLabel: false, decoration: "flat") {
state "lowHeatLevel", label:' ', action:"lowHeatLevel", icon:"st.thermostat.thermostat-down"
}
controlTile("heatSliderControl", "device.heatingSetpoint", "slider", height: 1, width: 4, inactiveLabel: false) {
state "setHeatingSetpoint", action:"thermostat.setHeatingSetpoint", backgroundColor:"#d04e00"
}
standardTile("raiseCoolLevel", "device.heatingSetpoint", canChangeIcon: false, , height: 0.5, width: 0.5, inactiveLabel: false, decoration: "flat") {
state "raiseCoolLevel", label:' ', action:"raiseCoolLevel", icon:"st.thermostat.thermostat-up"
}
valueTile("coolingSetpoint", "device.coolingSetpoint", , height: 1, width: 2, inactiveLabel: false, decoration: "flat") {
state "cool", label:'${currentValue}° Cool', unit:"", backgroundColor:"#66ccff"
}
standardTile("lowCoolLevel", "device.heatingSetpoint", canChangeIcon: false, , height: 0.5, width: 0.5, inactiveLabel: false, decoration: "flat") {
state "lowCoolLevel", label:' ', action:"lowCoolLevel", icon:"st.thermostat.thermostat-down"
}
controlTile("coolSliderControl", "device.coolingSetpoint", "slider", height: 1, width: 4, inactiveLabel: false) {
state "setCoolingSetpoint", action:"thermostat.setCoolingSetpoint", backgroundColor: "#003CEC"
}
standardTile("refresh", "device.temperature", height: 2, width: 2, inactiveLabel: false, decoration: "flat") {
state "default", action:"refresh.refresh", icon:"st.secondary.refresh"
}
standardTile("configure", "device.configure", height: 2, width: 2, inactiveLabel: false, decoration: "flat") {
state "configure", label:'', action:"configuration.configure", icon:"st.secondary.configure"
}
valueTile("battery", "device.battery", decoration: "flat", inactiveLabel: false, width: 2, height: 2) {
state "battery", label:'${currentValue}% Battery', unit:""
}
main(["temperature", "summary"])
details(["summary", "holdMode", "mode", "fanMode", "heatSliderControl", "heatingSetpoint", "coolSliderControl", "coolingSetpoint", "battery", "refresh"])
}
}
def setTemperature(setpoint) {
log.debug "setTemperature() called with setpoint ${setpoint}. "
log.debug "Current temperature: ${device.currentValue("temperature")}. Heat Setpoint: ${device.currentValue("heatingSetpoint")}. Cool Setpoint: ${device.currentValue("coolingSetpoint")}"
def mode = device.currentValue("thermostatMode")
def midpoint
def targetvalue
if (mode == "off") {
log.warn "setTemperature(): this mode: $mode does not allow raiseSetpoint"
return
}
def currentTemp = device.currentValue("temperature")
def deltaTemp = setpoint - currentTemp
log.debug "deltaTemp = ${deltaTemp}"
if (mode == "heat") {
// Change the heat
log.debug "setTemperature(): change the heat temp"
if (deltaTemp < 0) {
lowHeatLevel()
} else if (deltaTemp > 0) {
raiseHeatLevel()
}
} else if (mode == "cool") {
// Change the cool
log.debug "setTemperature(): change the cool temp"
if (deltaTemp < 0) {
lowCoolLevel()
} else if (deltaTemp > 0) {
raiseCoolLevel()
}
}
}
def raiseHeatLevel(){
def mode = device.currentValue("thermostatMode")
if (mode == "off") {
log.warn "raiseHeatLevel(): this mode: $mode does not allow raiseHeatLevel"
} else {
def locationScale = getTemperatureScale()
def maxTemp
def minTemp
if (locationScale == "C") {
maxTemp = 44 // Max Temp in C
minTemp = 7 // Min Temp in C
log.trace "Location is in Celsius, MaxTemp: $maxTemp, MinTemp: $minTemp"
} else {
maxTemp = 86 // Max temp in F
minTemp = 30 // Max temp in F
log.trace "Location is in Farenheit, MaxTemp: $maxTemp, MinTemp: $minTemp"
}
def currentLevel = device.currentValue("heatingSetpoint")
int nextLevel = currentLevel.toInteger() + 1
if( nextLevel > maxTemp){
nextLevel = maxTemp
}
log.debug "Setting heat set point up to: ${nextLevel}"
setHeatingSetpoint(nextLevel)
}
}
def lowHeatLevel(){
if (mode == "off") {
log.warn "lowHeatLevel(): this mode: $mode does not allow lowHeatLevel"
} else {
def locationScale = getTemperatureScale()
def maxTemp
def minTemp
if (locationScale == "C") {
maxTemp = 44 // Max Temp in C
minTemp = 7 // Min Temp in C
log.trace "Location is in Celsius, MaxTemp: $maxTemp, MinTemp: $minTemp"
} else {
maxTemp = 86 // Max temp in F
minTemp = 30 // Max temp in F
log.trace "Location is in Farenheit, MaxTemp: $maxTemp, MinTemp: $minTemp"
}
def currentLevel = device.currentValue("heatingSetpoint")
int nextLevel = currentLevel.toInteger() - 1
if( nextLevel < minTemp){
nextLevel = minTemp
}
log.debug "Setting heat set point down to: ${nextLevel}"
setHeatingSetpoint(nextLevel)
}
}
def raiseCoolLevel(){
if (mode == "off") {
log.warn "raiseCoolLevel(): this mode: $mode does not allow raiseCoolLevel"
} else {
def locationScale = getTemperatureScale()
def maxTemp
def minTemp
if (locationScale == "C") {
maxTemp = 44 // Max Temp in C
minTemp = 7 // Min Temp in C
log.trace "Location is in Celsius, MaxTemp: $maxTemp, MinTemp: $minTemp"
} else {
maxTemp = 86 // Max temp in F
minTemp = 30 // Max temp in F
log.trace "Location is in Farenheit, MaxTemp: $maxTemp, MinTemp: $minTemp"
}
def currentLevel = device.currentValue("coolingSetpoint")
int nextLevel = currentLevel.toInteger() + 1
if( nextLevel > maxTemp){
nextLevel = maxTemp
}
log.debug "Setting cool set point up to: ${nextLevel}"
setCoolingSetpoint(nextLevel)
}
}
def lowCoolLevel(){
if (mode == "off") {
log.warn "lowCoolLevel(): this mode: $mode does not allow lowCoolLevel"
} else {
def locationScale = getTemperatureScale()
def maxTemp
def minTemp
if (locationScale == "C") {
maxTemp = 44 // Max Temp in C
minTemp = 7 // Min Temp in C
log.trace "Location is in Celsius, MaxTemp: $maxTemp, MinTemp: $minTemp"
} else {
maxTemp = 86 // Max temp in F
minTemp = 30 // Max temp in F
log.trace "Location is in Farenheit, MaxTemp: $maxTemp, MinTemp: $minTemp"
}
def currentLevel = device.currentValue("coolingSetpoint")
int nextLevel = currentLevel.toInteger() - 1
if( nextLevel < minTemp){
nextLevel = minTemp
}
log.debug "Setting cool set point down to: ${nextLevel}"
setCoolingSetpoint(nextLevel)
}
}
// parse events into attributes
def parse(String description) {
log.debug "Parse description $description"
def map = [:]
if (description?.startsWith("read attr -")) {
def descMap = parseDescriptionAsMap(description)
log.debug "Desc Map: $descMap"
if (descMap.cluster == "0201" && descMap.attrId == "0000") {
log.debug "TEMP"
map.name = "temperature"
map.value = getTemperature(descMap.value)
} else if (descMap.cluster == "0201" && descMap.attrId == "0011") {
log.debug "COOLING SETPOINT"
map.name = "coolingSetpoint"
map.value = getTemperature(descMap.value)
} else if (descMap.cluster == "0201" && descMap.attrId == "0012") {
log.debug "HEATING SETPOINT"
map.name = "heatingSetpoint"
map.value = getTemperature(descMap.value)
} else if (descMap.cluster == "0201" && descMap.attrId == "001c") {
log.debug "MODE"
map.name = "thermostatMode"
map.value = getModeMap()[descMap.value]
} else if (descMap.cluster == "0202" && descMap.attrId == "0000") {
log.debug "FAN MODE"
map.name = "thermostatFanMode"
map.value = getFanModeMap()[descMap.value]
} else if (descMap.cluster == "0001" && descMap.attrId == "0020") {
log.debug "BATTERY"
map.name = "battery"
map.value = getBatteryLevel(descMap.value)
} else if (descMap.cluster == "0201" && descMap.attrId == "001e") {
log.debug "RUN MODE"
map.name = "thermostatRunMode"
//map.value = getRunModeMap()[descMap.value]
map.value = getThermostatRunMode(descMap.value)
} else if (descMap.cluster == "0201" && descMap.attrId == "0023") {
log.debug "HOLD MODE"
map.name = "thermostatHoldMode"
map.value = getHoldModeMap()[descMap.value]
} else if (descMap.cluster == "0000" && descMap.attrId == "0007") {
log.debug "Power Source"
map.name = "powerSource"
map.value = getPowerSource()[descMap.value]
}
}
def result = null
if (map) {
result = createEvent(map)
}
log.debug "Parse returned $map"
return result
}
def parseDescriptionAsMap(description) {
(description - "read attr - ").split(",").inject([:]) { map, param ->
def nameAndValue = param.split(":")
map += [(nameAndValue[0].trim()):nameAndValue[1].trim()]
}
}
def getModeMap() { [
"00":"off",
//"01":"auto",
"03":"cool",
"04":"heat",
"05":"emergencyHeat"
]}
def getHoldModeMap() { [
"00":"holdOff",
"01":"holdOn",
]}
def getPowerSource() { [
"01":"24VAC",
"03":"Battery",
]}
def getFanModeMap() { [
"04":"fanOn",
"05":"fanAuto"
]}
def getThermostatRunMode(value) {
if (value != null) {
def RunModeValue = Integer.parseInt(value, 16)
log.debug "Thermostat RunMode: ${RunModeValue} "
}
}
def getTemperature(value) {
if (value != null) {
def celsius = Integer.parseInt(value, 16) / 100
if (getTemperatureScale() == "C") {
return celsius
} else {
return Math.round(celsiusToFahrenheit(celsius))
}
}
}
def setHeatingSetpoint(degrees) {
if (degrees != null) {
def temperatureScale = getTemperatureScale()
def degreesInteger = Math.round(degrees)
log.debug "setHeatingSetpoint({$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 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 modes() {
["off", "cool", "heat", "emergencyHeat"]
}
def setThermostatMode() {
log.debug "switching thermostatMode"
def currentMode = device.currentState("thermostatMode")?.value
def modeOrder = modes()
log.debug "modeOrder: ${modeOrder}"
def index = modeOrder.indexOf(currentMode)
log.debug "index: ${index}"
def next = index >= 0 && index < modeOrder.size() - 1 ? modeOrder[index + 1] : modeOrder[0]
log.debug "switching mode from $currentMode to $next"
"$next"()
}
def setThermostatFanMode() {
log.debug "Switching fan mode"
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 setThermostatHoldMode() {
log.debug "Switching Hold mode"
def currentHoldMode = device.currentState("thermostatHoldMode")?.value
log.debug "switching thermostat from current mode: $currentHoldMode"
def returnCommand
switch (currentHoldMode) {
case "holdOff":
returnCommand = holdOn()
break
case "holdOn":
returnCommand = holdOff()
break
}
if(!currentHoldMode) { returnCommand = holdOff() }
returnCommand
}
def setThermostatMode(String value) {
log.debug "setThermostatMode({$value})"
"$value"()
}
def setThermostatFanMode(String value) {
log.debug "setThermostatFanMode({$value})"
"$value"()
}
def setThermostatHoldMode(String value) {
log.debug "setThermostatHoldMode({$value})"
"$value"()
}
def off() {
log.debug "off"
sendEvent("name":"thermostatMode", "value":"off")
"st wattr 0x${device.deviceNetworkId} 1 0x201 0x1C 0x30 {00}"
}
def cool() {
log.debug "cool"
sendEvent("name":"thermostatMode", "value":"cool")
"st wattr 0x${device.deviceNetworkId} 1 0x201 0x1C 0x30 {03}"
}
def heat() {
log.debug "heat"
sendEvent("name":"thermostatMode", "value":"heat")
"st wattr 0x${device.deviceNetworkId} 1 0x201 0x1C 0x30 {04}"
}
def emergencyHeat() {
log.debug "emergencyHeat"
sendEvent("name":"thermostatMode", "value":"emergencyHeat")
"st wattr 0x${device.deviceNetworkId} 1 0x201 0x1C 0x30 {05}"
}
def on() {
fanOn()
}
def fanOn() {
log.debug "fanOn"
sendEvent("name":"thermostatFanMode", "value":"fanOn")
"st wattr 0x${device.deviceNetworkId} 1 0x202 0 0x30 {04}"
}
def auto() {
fanAuto()
}
def fanAuto() {
log.debug "fanAuto"
sendEvent("name":"thermostatFanMode", "value":"fanAuto")
"st wattr 0x${device.deviceNetworkId} 1 0x202 0 0x30 {05}"
}
def holdOn() {
log.debug "Set Hold On for thermostat"
sendEvent("name":"thermostatHoldMode", "value":"holdOn")
"st wattr 0x${device.deviceNetworkId} 1 0x201 0x23 0x30 {01}"
}
def holdOff() {
log.debug "Set Hold Off for thermostat"
sendEvent("name":"thermostatHoldMode", "value":"holdOff")
"st wattr 0x${device.deviceNetworkId} 1 0x201 0x23 0x30 {00}"
}
// Commment out below if no C-wire since it will kill the batteries.
def poll() {
// log.debug "Executing 'poll'"
refresh()
}
def configure() {
log.debug "binding to Thermostat and Fan Control cluster"
[
"zdo bind 0x${device.deviceNetworkId} 1 1 0x000 {${device.zigbeeId}} {}", "delay 200",
"zdo bind 0x${device.deviceNetworkId} 1 1 0x201 {${device.zigbeeId}} {}", "delay 200",
"zdo bind 0x${device.deviceNetworkId} 1 1 0x202 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 1 0x20 0x20 3600 86400 {01}", "delay 100", //battery report request
"send 0x${device.deviceNetworkId} 1 1", "delay 200"
]
}
def refresh()
{
log.debug "refresh called"
[
"st rattr 0x${device.deviceNetworkId} 1 0x000 0x07", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 0x201 0", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 0x201 0x11", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 0x201 0x12", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 0x201 0x1C", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 0x201 0x1E", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 0x201 0x23", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 0x001 0x20", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 0x202 0"
] + configure()
}
private getBatteryLevel(rawValue) {
def intValue = Integer.parseInt(rawValue,16)
def min = 2.1
def max = 3.0
def vBatt = intValue / 10
return ((vBatt - min) / (max - min) * 100) as int
}
private hex(value) {
new BigInteger(Math.round(value).toString()).toString(16)
}

View File

@@ -93,5 +93,5 @@ def refresh() {
def configure() { def configure() {
log.debug "Configuring Reporting and Bindings." log.debug "Configuring Reporting and Bindings."
refresh() zigbee.onOffConfig() + zigbee.levelConfig() + zigbee.simpleMeteringPowerConfig() + zigbee.electricMeasurementPowerConfig() + zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.simpleMeteringPowerRefresh() + zigbee.electricMeasurementPowerRefresh()
} }

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

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@@ -1,36 +0,0 @@
# OSRAM Lightify LED On/Off/Dim
Works with:
* [OSRAM Lightify LED On/Off/Dim](https://shop.smartthings.com/#!/products/osram-led-smart-bulb-on-off-dim)
## Table of contents
* [Capabilities](#capabilities)
* [Health](#device-health)
* [Battery](#battery-specification)
## Capabilities
* **Actuator** - represents that a Device has commands
* **Configuration** - _configure()_ command called when device is installed or device preferences updated
* **Refresh** - _refresh()_ command for status updates
* **Switch** - can detect state (possible values: on/off)
* **Switch Level** - represents current light level, usually 0-100 in percent
* **Health Check** - indicates ability to get device health notifications
## Device Health
A Category C1 Zigbee dimmer with maxReportTime of 5 mins.
Check-in interval is double the value of maxReportTime.
This gives the device twice the amount of time to respond before it is marked as offline.
Check-in interval = 12 mins
## Troubleshooting
If the device doesn't pair when trying from the SmartThings mobile app, it is possible that the device is out of range.
Pairing needs to be tried again by placing the device closer to the hub.
Other troubleshooting tips are listed as follows:
* [Troubleshooting:](https://support.smartthings.com/hc/en-us/articles/207191763-OSRAM-LIGHTIFY-LED-Smart-Connected-Light-A19-On-Off-Dim)

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@@ -60,21 +60,8 @@ def parse(String description) {
} }
} }
else { else {
def cluster = zigbee.parse(description) log.warn "DID NOT PARSE MESSAGE for description : $description"
log.debug zigbee.parseDescriptionAsMap(description)
if (cluster && cluster.clusterId == 0x0006 && cluster.command == 0x07) {
if (cluster.data[0] == 0x00) {
log.debug "ON/OFF REPORTING CONFIG RESPONSE: " + cluster
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
}
else {
log.warn "ON/OFF REPORTING CONFIG FAILED- error code:${cluster.data[0]}"
}
}
else {
log.warn "DID NOT PARSE MESSAGE for description : $description"
log.debug "${cluster}"
}
} }
} }
@@ -97,15 +84,13 @@ def ping() {
} }
def refresh() { def refresh() {
zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.onOffConfig(0, 300) + zigbee.levelConfig() zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.onOffConfig() + zigbee.levelConfig()
} }
def configure() { def configure() {
log.debug "Configuring Reporting and Bindings." log.debug "Configuring Reporting and Bindings."
// Device-Watch allows 3 check-in misses from device (plus 1 min lag time) // Device-Watch allows 3 check-in misses from device. 300 seconds x 3 = 15min
// enrolls with default periodic reporting until newer 5 min interval is confirmed sendEvent(name: "checkInterval", value: 900, displayed: false, data: [protocol: "zigbee"])
sendEvent(name: "checkInterval", value: 3 * 10 * 60 + 1 * 60, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
// OnOff minReportTime 0 seconds, maxReportTime 5 min. Reporting interval if no activity // OnOff minReportTime 0 seconds, maxReportTime 5 min. Reporting interval if no activity
zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.onOffConfig(0, 300) + zigbee.levelConfig() zigbee.onOffConfig(0, 300) + zigbee.levelConfig() + zigbee.onOffRefresh() + zigbee.levelRefresh()
} }

View File

@@ -31,8 +31,7 @@
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: "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: "YRD220/240 TSDB", deviceJoinName: "Yale Touch Screen Deadbolt Lock"
fingerprint profileId: "0104", inClusters: "0000,0001,0003,0009,000A,0101,0020", outClusters: "000A,0019", manufacturer: "Yale", model: "YRL210 PB LL", deviceJoinName: "Yale Push Button Lever Lock" fingerprint profileId: "0104", inClusters: "0000,0001,0003,0009,000A,0101,0020", outClusters: "000A,0019", manufacturer: "Yale", model: "YRL210 PB LL", deviceJoinName: "Yale Push Button Lever Lock"
fingerprint profileId: "0104", inClusters: "0000,0001,0003,0009,000A,0101,0020", outClusters: "000A,0019", manufacturer: "Yale", model: "YRD226/246 TSDB", deviceJoinName: "Yale Touch Screen Deadbolt Lock" }
}
tiles(scale: 2) { tiles(scale: 2) {
multiAttributeTile(name:"toggle", type:"generic", width:6, height:4){ multiAttributeTile(name:"toggle", type:"generic", width:6, height:4){
@@ -90,7 +89,7 @@ def configure() {
zigbee.configureReporting(CLUSTER_POWER, POWER_ATTR_BATTERY_PERCENTAGE_REMAINING, zigbee.configureReporting(CLUSTER_POWER, POWER_ATTR_BATTERY_PERCENTAGE_REMAINING,
TYPE_U8, 600, 21600, 0x01) TYPE_U8, 600, 21600, 0x01)
log.info "configure() --- cmds: $cmds" log.info "configure() --- cmds: $cmds"
return refresh() + cmds // send refresh cmds as part of config return cmds + refresh() // send refresh cmds as part of config
} }
def refresh() { def refresh() {

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@@ -1,154 +0,0 @@
/**
* Copyright 2016 SmartThings
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except
* in compliance with the License. You may obtain a copy of the License at:
*
* 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.
*
* Author: SmartThings
* Date: 2016-01-19
*
* This DTH should serve as the generic DTH to handle RGB ZigBee HA devices (For color bulbs with no color temperature)
*/
metadata {
definition (name: "ZigBee RGB Bulb", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Color Control"
capability "Configuration"
capability "Polling"
capability "Refresh"
capability "Switch"
capability "Switch Level"
capability "Health Check"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0008,0300,0B04,FC0F", outClusters: "0019", manufacturer: "OSRAM", model: "Gardenspot RGB", deviceJoinName: "OSRAM LIGHTIFY Gardenspot mini RGB"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0008,0300,0B04,FC0F", outClusters: "0019", manufacturer: "OSRAM", model: "LIGHTIFY Gardenspot RGB", deviceJoinName: "OSRAM LIGHTIFY Gardenspot mini RGB"
}
// 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:'${name}', action:"switch.off", icon:"st.lights.philips.hue-single", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${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:"color control.setColor"
}
}
standardTile("refresh", "device.refresh", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
main(["switch"])
details(["switch", "refresh"])
}
}
//Globals
private getATTRIBUTE_HUE() { 0x0000 }
private getATTRIBUTE_SATURATION() { 0x0001 }
private getHUE_COMMAND() { 0x00 }
private getSATURATION_COMMAND() { 0x03 }
private getCOLOR_CONTROL_CLUSTER() { 0x0300 }
// Parse incoming device messages to generate events
def parse(String description) {
log.debug "description is $description"
def event = zigbee.getEvent(description)
if (event) {
log.debug event
if (event.name=="level" && event.value==0) {}
else {
sendEvent(event)
}
}
else {
def zigbeeMap = zigbee.parseDescriptionAsMap(description)
def cluster = zigbee.parse(description)
if (zigbeeMap?.clusterInt == COLOR_CONTROL_CLUSTER) {
if(zigbeeMap.attrInt == ATTRIBUTE_HUE){ //Hue Attribute
def hueValue = Math.round(zigbee.convertHexToInt(zigbeeMap.value) / 255 * 100)
sendEvent(name: "hue", value: hueValue, descriptionText: "Color has changed")
}
else if(zigbeeMap.attrInt == ATTRIBUTE_SATURATION){ //Saturation Attribute
def saturationValue = Math.round(zigbee.convertHexToInt(zigbeeMap.value) / 255 * 100)
sendEvent(name: "saturation", value: saturationValue, descriptionText: "Color has changed", displayed: false)
}
}
else if (cluster && cluster.clusterId == 0x0006 && cluster.command == 0x07) {
if (cluster.data[0] == 0x00){
log.debug "ON/OFF REPORTING CONFIG RESPONSE: $cluster"
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
}
else {
log.warn "ON/OFF REPORTING CONFIG FAILED- error code:${cluster.data[0]}"
}
}
else {
log.info "DID NOT PARSE MESSAGE for description : $description"
log.debug zigbeeMap
}
}
}
def on() {
zigbee.on()
}
def off() {
zigbee.off()
}
/**
* PING is used by Device-Watch in attempt to reach the Device
* */
def ping() {
return zigbee.onOffRefresh()
}
def refresh() {
zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_HUE) + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION) + zigbee.onOffConfig(0, 300) + zigbee.levelConfig() + zigbee.configureReporting(COLOR_CONTROL_CLUSTER, ATTRIBUTE_HUE, 0x20, 1, 3600, 0x01) + zigbee.configureReporting(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION, 0x20, 1, 3600, 0x01)
}
def configure() {
log.debug "Configuring Reporting and Bindings."
// Device-Watch allows 3 check-in misses from device (plus 1 min lag time)
// enrolls with default periodic reporting until newer 5 min interval is confirmed
sendEvent(name: "checkInterval", value: 3 * 10 * 60 + 1 * 60, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
// OnOff minReportTime 0 seconds, maxReportTime 5 min. Reporting interval if no activity
zigbee.onOffConfig(0, 300) + zigbee.levelConfig() + zigbee.configureReporting(COLOR_CONTROL_CLUSTER, ATTRIBUTE_HUE, 0x20, 1, 3600, 0x01) + zigbee.configureReporting(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION, 0x20, 1, 3600, 0x01) + zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_HUE) + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION)
}
def setLevel(value) {
zigbee.setLevel(value)
}
def setColor(value){
log.trace "setColor($value)"
zigbee.on() + setHue(value.hue) + "delay 500" + setSaturation(value.saturation)
}
def setHue(value) {
def scaledHueValue = zigbee.convertToHexString(Math.round(value * 0xfe / 100.0), 2)
zigbee.command(COLOR_CONTROL_CLUSTER, HUE_COMMAND, scaledHueValue, "00", "0500") //payload-> hue value, direction (00-> shortest distance), transition time (1/10th second) (0500 in U16 reads 5)
}
def setSaturation(value) {
def scaledSatValue = zigbee.convertToHexString(Math.round(value * 0xfe / 100.0), 2)
zigbee.command(COLOR_CONTROL_CLUSTER, SATURATION_COMMAND, scaledSatValue, "0500") + "delay 1000" + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION)
}

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

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@@ -1,42 +0,0 @@
# OSRAM LIGHTIFY LED RGBW Bulb
Works with:
* [OSRAM LIGHTIFY LED RGBW Bulb](https://support.smartthings.com/hc/en-us/articles/207728173-OSRAM-LIGHTIFY-LED-Smart-Connected-Light-A19-RGBW)
## Table of contents
* [Capabilities](#capabilities)
* [Health](#device-health)
* [Battery](#battery-specification)
## Capabilities
* **Actuator** - It represents that a device has commands.
* **Color Control** - It represents that the color attributes of a device can be controlled (hue, saturation, color value).
* **Color Temperature** - It represents color temperature capability measured in degree Kelvin.
* **Polling** - It represents that a device can be polled.
* **Switch** - can detect state (possible values: on/off)
* **Switch Level** - can detect current light level (0-100 in percent)
* **Configuration** - _configure()_ command called when device is installed or device preferences updated
* **Refresh** - _refresh()_ command for status updates
* **Health Check** - indicates ability to get device health notifications
## Device Health
A Category C6 OSRAM LIGHTIFY LED RGBW Bulb with maxReportTime of 5 mins.
Check-in interval is double the value of maxReportTime.
This gives the device twice the amount of time to respond before it is marked as offline.
Check-in interval = 12 mins
## Troubleshooting
If the device doesn't pair when trying from the SmartThings mobile app, it is possible that the device is out of range.
Pairing needs to be tried again by placing the device closer to the hub.
It may also happen that you need to reset the device.
Instructions related to pairing, resetting and removing the device from SmartThings can be found in the following link:
* [Troubleshooting Tips](https://support.smartthings.com/hc/en-us/articles/207728173-OSRAM-LIGHTIFY-LED-Smart-Connected-Light-A19-RGBW)

View File

@@ -95,7 +95,7 @@ def parse(String description) {
} }
else { else {
def zigbeeMap = zigbee.parseDescriptionAsMap(description) def zigbeeMap = zigbee.parseDescriptionAsMap(description)
def cluster = zigbee.parse(description) log.trace "zigbeeMap : $zigbeeMap"
if (zigbeeMap?.clusterInt == COLOR_CONTROL_CLUSTER) { if (zigbeeMap?.clusterInt == COLOR_CONTROL_CLUSTER) {
if(zigbeeMap.attrInt == ATTRIBUTE_HUE){ //Hue Attribute if(zigbeeMap.attrInt == ATTRIBUTE_HUE){ //Hue Attribute
@@ -107,18 +107,8 @@ def parse(String description) {
sendEvent(name: "saturation", value: saturationValue, descriptionText: "Color has changed", displayed: false) sendEvent(name: "saturation", value: saturationValue, descriptionText: "Color has changed", displayed: false)
} }
} }
else if (cluster && cluster.clusterId == 0x0006 && cluster.command == 0x07) {
if (cluster.data[0] == 0x00){
log.debug "ON/OFF REPORTING CONFIG RESPONSE: " + cluster
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
}
else {
log.warn "ON/OFF REPORTING CONFIG FAILED- error code:${cluster.data[0]}"
}
}
else { else {
log.info "DID NOT PARSE MESSAGE for description : $description" log.info "DID NOT PARSE MESSAGE for description : $description"
log.debug zigbeeMap
} }
} }
} }
@@ -138,17 +128,15 @@ def ping() {
} }
def refresh() { def refresh() {
zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_COLOR_TEMPERATURE) + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_HUE) + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION) + zigbee.onOffConfig(0, 300) + zigbee.levelConfig() + zigbee.colorTemperatureConfig() + zigbee.configureReporting(COLOR_CONTROL_CLUSTER, ATTRIBUTE_HUE, 0x20, 1, 3600, 0x01) + zigbee.configureReporting(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION, 0x20, 1, 3600, 0x01) zigbee.onOffRefresh() + zigbee.readAttribute(0x0008, 0x00) + zigbee.readAttribute(0x0300, 0x00) + zigbee.readAttribute(0x0300, ATTRIBUTE_COLOR_TEMPERATURE) + zigbee.readAttribute(0x0300, ATTRIBUTE_HUE) + zigbee.readAttribute(0x0300, ATTRIBUTE_SATURATION) + zigbee.onOffConfig() + zigbee.levelConfig() + zigbee.colorTemperatureConfig() + zigbee.configureReporting(COLOR_CONTROL_CLUSTER, ATTRIBUTE_HUE, 0x20, 1, 3600, 0x01) + zigbee.configureReporting(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION, 0x20, 1, 3600, 0x01)
} }
def configure() { def configure() {
log.debug "Configuring Reporting and Bindings." log.debug "Configuring Reporting and Bindings."
// Device-Watch allows 3 check-in misses from device (plus 1 min lag time) // Device-Watch allows 3 check-in misses from device. 300 seconds x 3 = 15min
// enrolls with default periodic reporting until newer 5 min interval is confirmed sendEvent(name: "checkInterval", value: 900, displayed: false, data: [protocol: "zigbee"])
sendEvent(name: "checkInterval", value: 3 * 10 * 60 + 1 * 60, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
// OnOff minReportTime 0 seconds, maxReportTime 5 min. Reporting interval if no activity // OnOff minReportTime 0 seconds, maxReportTime 5 min. Reporting interval if no activity
refresh() zigbee.onOffConfig(0, 300) + zigbee.levelConfig() + zigbee.colorTemperatureConfig() + zigbee.configureReporting(COLOR_CONTROL_CLUSTER, ATTRIBUTE_HUE, 0x20, 1, 3600, 0x01) + zigbee.configureReporting(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION, 0x20, 1, 3600, 0x01) + zigbee.readAttribute(0x0006, 0x00) + zigbee.readAttribute(0x0008, 0x00) + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, 0x00) + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_COLOR_TEMPERATURE) + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_HUE) + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION)
} }
def setColorTemperature(value) { def setColorTemperature(value) {
@@ -189,5 +177,5 @@ def setHue(value) {
def setSaturation(value) { def setSaturation(value) {
def scaledSatValue = zigbee.convertToHexString(Math.round(value * 0xfe / 100.0), 2) def scaledSatValue = zigbee.convertToHexString(Math.round(value * 0xfe / 100.0), 2)
zigbee.command(COLOR_CONTROL_CLUSTER, SATURATION_COMMAND, scaledSatValue, "0500") + "delay 1000" + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION) zigbee.command(COLOR_CONTROL_CLUSTER, SATURATION_COMMAND, scaledSatValue, "0500") //payload-> sat value, transition time
} }

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@@ -82,5 +82,5 @@ def refresh() {
def configure() { def configure() {
log.debug "Configuring Reporting and Bindings." log.debug "Configuring Reporting and Bindings."
refresh() zigbee.onOffConfig() + zigbee.simpleMeteringPowerConfig() + zigbee.electricMeasurementPowerConfig() + zigbee.onOffRefresh() + zigbee.simpleMeteringPowerRefresh() + zigbee.electricMeasurementPowerRefresh()
} }

View File

@@ -78,5 +78,5 @@ def refresh() {
def configure() { def configure() {
log.debug "Configuring Reporting and Bindings." log.debug "Configuring Reporting and Bindings."
zigbee.onOffRefresh() + zigbee.onOffConfig() zigbee.onOffConfig() + zigbee.onOffRefresh()
} }

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@@ -134,5 +134,10 @@ def refresh() {
def configure() { def configure() {
log.debug "Configuring Reporting and Bindings." log.debug "Configuring Reporting and Bindings."
refresh() zigbee.onOffConfig() +
zigbee.configureReporting(CLUSTER_POWER, POWER_ATTR_BATTERY_PERCENTAGE_REMAINING, TYPE_U8, 600, 21600, 1) +
zigbee.configureReporting(CLUSTER_BASIC, BASIC_ATTR_POWER_SOURCE, TYPE_ENUM8, 5, 21600, 1) +
zigbee.onOffRefresh() +
zigbee.readAttribute(CLUSTER_BASIC, BASIC_ATTR_POWER_SOURCE) +
zigbee.readAttribute(CLUSTER_POWER, POWER_ATTR_BATTERY_PERCENTAGE_REMAINING)
} }

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

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@@ -1,37 +0,0 @@
# OSRAM Lightify Tunable 60 White
Works with:
* [OSRAM Lightify Tunable 60 White](http://www.osram.com/osram_com/tools-and-services/tools/lightify---smart-connected-light/lightify-for-home---what-is-light-to-you/lightify-products/lightify-classic-a60-tunable-white/index.jsp)
## Table of contents
* [Capabilities](#capabilities)
* [Health](#device-health)
* [Battery](#battery-specification)
## Capabilities
* **Actuator** - represents that a Device has commands
* **Color Temperature** - represents color temperature, measured in degrees Kelvin.
* **Configuration** - _configure()_ command called when device is installed or device preferences updated.
* **Refresh** - _refresh()_ command for status updates
* **Switch** - can detect state (possible values: on/off)
* **Switch Level** - represents current light level, usually 0-100 in percent
* **Health Check** - indicates ability to get device health notifications
## Device Health
A Category C1 OSRAM Lightify Tunable 60 White with maxReportTime of 5 mins.
Check-in interval is double the value of maxReportTime.
This gives the device twice the amount of time to respond before it is marked as offline.
Check-in interval = 12 mins
## Troubleshooting
If the device doesn't pair when trying from the SmartThings mobile app, it is possible that the device is out of range.
Pairing needs to be tried again by placing the device closer to the hub.
Other troubleshooting tips are listed as follows:
* [Troubleshooting:](https://support.smartthings.com/hc/en-us/articles/204576454-OSRAM-LIGHTIFY-Tunable-White-60-Bulb)

View File

@@ -83,21 +83,8 @@ def parse(String description) {
} }
} }
else { else {
def cluster = zigbee.parse(description) log.warn "DID NOT PARSE MESSAGE for description : $description"
log.debug zigbee.parseDescriptionAsMap(description)
if (cluster && cluster.clusterId == 0x0006 && cluster.command == 0x07) {
if (cluster.data[0] == 0x00) {
log.debug "ON/OFF REPORTING CONFIG RESPONSE: " + cluster
sendEvent(name: "checkInterval", value: 60 * 12, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
}
else {
log.warn "ON/OFF REPORTING CONFIG FAILED- error code:${cluster.data[0]}"
}
}
else {
log.warn "DID NOT PARSE MESSAGE for description : $description"
log.debug "${cluster}"
}
} }
} }
@@ -121,17 +108,15 @@ def ping() {
} }
def refresh() { def refresh() {
zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.colorTemperatureRefresh() + zigbee.onOffConfig(0, 300) + zigbee.levelConfig() + zigbee.colorTemperatureConfig() zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.colorTemperatureRefresh() + zigbee.onOffConfig() + zigbee.levelConfig() + zigbee.colorTemperatureConfig()
} }
def configure() { def configure() {
log.debug "Configuring Reporting and Bindings." log.debug "Configuring Reporting and Bindings."
// Device-Watch allows 3 check-in misses from device (plus 1 min lag time) // Device-Watch allows 3 check-in misses from device. 300 seconds x 3 = 15min
// enrolls with default periodic reporting until newer 5 min interval is confirmed sendEvent(name: "checkInterval", value: 900, displayed: false, data: [protocol: "zigbee"])
sendEvent(name: "checkInterval", value: 3 * 10 * 60 + 1 * 60, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
// OnOff minReportTime 0 seconds, maxReportTime 5 min. Reporting interval if no activity // OnOff minReportTime 0 seconds, maxReportTime 5 min. Reporting interval if no activity
refresh() zigbee.onOffConfig(0, 300) + zigbee.levelConfig() + zigbee.colorTemperatureConfig() + zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.colorTemperatureRefresh()
} }
def setColorTemperature(value) { def setColorTemperature(value) {

View File

@@ -11,9 +11,6 @@
* for the specific language governing permissions and limitations under the License. * for the specific language governing permissions and limitations under the License.
* *
*/ */
import groovy.transform.Field
@Field Boolean hasConfiguredHealthCheck = false
metadata { metadata {
definition (name: "ZLL Dimmer Bulb", namespace: "smartthings", author: "SmartThings") { definition (name: "ZLL Dimmer Bulb", namespace: "smartthings", author: "SmartThings") {
@@ -24,7 +21,6 @@ metadata {
capability "Refresh" capability "Refresh"
capability "Switch" capability "Switch"
capability "Switch Level" capability "Switch Level"
capability "Health Check"
//fingerprint profileId: "C05E", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, 1000", outClusters: "0000,0019" //fingerprint profileId: "C05E", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, 1000", outClusters: "0000,0019"
fingerprint profileId: "C05E", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, 1000", outClusters: "0019" fingerprint profileId: "C05E", inClusters: "0000, 0003, 0004, 0005, 0006, 0008, 1000", outClusters: "0019"
@@ -100,38 +96,7 @@ def poll() {
refresh() refresh()
} }
/**
* PING is used by Device-Watch in attempt to reach the Device
* */
def ping() {
return zigbee.levelRefresh()
}
def healthPoll() {
log.debug "healthPoll()"
def cmds = refresh()
cmds.each{ sendHubCommand(new physicalgraph.device.HubAction(it))}
}
def configureHealthCheck() {
Integer hcIntervalMinutes = 12
if (!hasConfiguredHealthCheck) {
log.debug "Configuring Health Check, Reporting"
unschedule("healthPoll")
runEvery5Minutes("healthPoll")
// Device-Watch allows 2 check-in misses from device
sendEvent(name: "checkInterval", value: hcIntervalMinutes * 60, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
hasConfiguredHealthCheck = true
}
}
def configure() { def configure() {
log.debug "configure()" log.debug "Configuring Reporting and Bindings."
zigbee.onOffConfig() + zigbee.levelConfig() + zigbee.onOffRefresh() + zigbee.levelRefresh() zigbee.onOffConfig() + zigbee.levelConfig() + zigbee.onOffRefresh() + zigbee.levelRefresh()
configureHealthCheck()
}
def updated() {
log.debug "updated()"
configureHealthCheck()
} }

View File

@@ -1,134 +0,0 @@
/**
* Copyright 2016 SmartThings
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except
* in compliance with the License. You may obtain a copy of the License at:
*
* 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: "ZLL RGB Bulb", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Color Control"
capability "Configuration"
capability "Polling"
capability "Refresh"
capability "Switch"
capability "Switch Level"
}
// 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:'${name}', action:"switch.off", icon:"st.lights.philips.hue-single", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${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:"color control.setColor"
}
}
standardTile("refresh", "device.refresh", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
main(["switch"])
details(["switch", "refresh"])
}
}
//Globals
private getATTRIBUTE_HUE() { 0x0000 }
private getATTRIBUTE_SATURATION() { 0x0001 }
private getHUE_COMMAND() { 0x00 }
private getSATURATION_COMMAND() { 0x03 }
private getCOLOR_CONTROL_CLUSTER() { 0x0300 }
// Parse incoming device messages to generate events
def parse(String description) {
log.debug "description is $description"
def finalResult = zigbee.getEvent(description)
if (finalResult) {
log.debug finalResult
sendEvent(finalResult)
}
else {
def zigbeeMap = zigbee.parseDescriptionAsMap(description)
log.trace "zigbeeMap : $zigbeeMap"
if (zigbeeMap?.clusterInt == COLOR_CONTROL_CLUSTER) {
if(zigbeeMap.attrInt == ATTRIBUTE_HUE){ //Hue Attribute
def hueValue = Math.round(zigbee.convertHexToInt(zigbeeMap.value) / 255 * 360)
sendEvent(name: "hue", value: hueValue, displayed:false)
}
else if(zigbeeMap.attrInt == ATTRIBUTE_SATURATION){ //Saturation Attribute
def saturationValue = Math.round(zigbee.convertHexToInt(zigbeeMap.value) / 255 * 100)
sendEvent(name: "saturation", value: saturationValue, displayed:false)
}
}
else {
log.info "DID NOT PARSE MESSAGE for description : $description"
}
}
}
def on() {
zigbee.on() + ["delay 1500"] + zigbee.onOffRefresh()
}
def off() {
zigbee.off() + ["delay 1500"] + zigbee.onOffRefresh()
}
def refresh() {
refreshAttributes() + configureAttributes()
}
def poll() {
refreshAttributes()
}
def configure() {
log.debug "Configuring Reporting and Bindings."
configureAttributes() + refreshAttributes()
}
def configureAttributes() {
zigbee.onOffConfig() + zigbee.levelConfig() + zigbee.configureReporting(COLOR_CONTROL_CLUSTER, ATTRIBUTE_HUE, 0x20, 1, 3600, 0x01) + zigbee.configureReporting(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION, 0x20, 1, 3600, 0x01)
}
def refreshAttributes() {
zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_HUE) + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION)
}
def setLevel(value) {
zigbee.setLevel(value) + ["delay 1500"] + zigbee.levelRefresh() //adding refresh because of ZLL bulb not conforming to send-me-a-report
}
def setColor(value){
log.trace "setColor($value)"
zigbee.on() + setHue(value.hue) + ["delay 300"] + setSaturation(value.saturation) + ["delay 2000"] + refreshAttributes()
}
def setHue(value) {
def scaledHueValue = zigbee.convertToHexString(Math.round(value * 0xfe / 100.0), 2)
zigbee.command(COLOR_CONTROL_CLUSTER, HUE_COMMAND, scaledHueValue, "00", "0500") + ["delay 1500"] + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_HUE) //payload-> hue value, direction (00-> shortest distance), transition time (1/10th second) (0500 in U16 reads 5)
}
def setSaturation(value) {
def scaledSatValue = zigbee.convertToHexString(Math.round(value * 0xfe / 100.0), 2)
zigbee.command(COLOR_CONTROL_CLUSTER, SATURATION_COMMAND, scaledSatValue, "0500") + ["delay 1500"] + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION) //payload-> sat value, transition time
}

View File

@@ -123,7 +123,7 @@ def configureAttributes() {
} }
def refreshAttributes() { def refreshAttributes() {
zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.colorTemperatureRefresh() + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_HUE) + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION) zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.colorTemperatureRefresh() + zigbee.readAttribute(0x0300, 0x00) + zigbee.readAttribute(0x0300, ATTRIBUTE_HUE) + zigbee.readAttribute(0x0300, ATTRIBUTE_SATURATION)
} }
def setColorTemperature(value) { def setColorTemperature(value) {
@@ -141,10 +141,10 @@ def setColor(value){
def setHue(value) { def setHue(value) {
def scaledHueValue = zigbee.convertToHexString(Math.round(value * 0xfe / 100.0), 2) def scaledHueValue = zigbee.convertToHexString(Math.round(value * 0xfe / 100.0), 2)
zigbee.command(COLOR_CONTROL_CLUSTER, HUE_COMMAND, scaledHueValue, "00", "0500") + ["delay 1500"] + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_HUE) //payload-> hue value, direction (00-> shortest distance), transition time (1/10th second) (0500 in U16 reads 5) zigbee.command(COLOR_CONTROL_CLUSTER, HUE_COMMAND, scaledHueValue, "00", "0500") //payload-> hue value, direction (00-> shortest distance), transition time (1/10th second) (0500 in U16 reads 5)
} }
def setSaturation(value) { def setSaturation(value) {
def scaledSatValue = zigbee.convertToHexString(Math.round(value * 0xfe / 100.0), 2) def scaledSatValue = zigbee.convertToHexString(Math.round(value * 0xfe / 100.0), 2)
zigbee.command(COLOR_CONTROL_CLUSTER, SATURATION_COMMAND, scaledSatValue, "0500") + ["delay 1500"] + zigbee.readAttribute(COLOR_CONTROL_CLUSTER, ATTRIBUTE_SATURATION) //payload-> sat value, transition time zigbee.command(COLOR_CONTROL_CLUSTER, SATURATION_COMMAND, scaledSatValue, "0500") //payload-> sat value, transition time
} }

View File

@@ -11,9 +11,6 @@
* for the specific language governing permissions and limitations under the License. * for the specific language governing permissions and limitations under the License.
* *
*/ */
import groovy.transform.Field
@Field Boolean hasConfiguredHealthCheck = false
metadata { metadata {
definition (name: "ZLL White Color Temperature Bulb", namespace: "smartthings", author: "SmartThings") { definition (name: "ZLL White Color Temperature Bulb", namespace: "smartthings", author: "SmartThings") {
@@ -25,7 +22,6 @@ metadata {
capability "Refresh" capability "Refresh"
capability "Switch" capability "Switch"
capability "Switch Level" capability "Switch Level"
capability "Health Check"
attribute "colorName", "string" attribute "colorName", "string"
command "setGenericName" command "setGenericName"
@@ -100,41 +96,9 @@ def poll() {
zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.colorTemperatureRefresh() zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.colorTemperatureRefresh()
} }
/**
* PING is used by Device-Watch in attempt to reach the Device
* */
def ping() {
return zigbee.levelRefresh()
}
def healthPoll() {
log.debug "healthPoll()"
def cmds = zigbee.onOffRefresh() + zigbee.levelRefresh()
cmds.each{ sendHubCommand(new physicalgraph.device.HubAction(it))}
}
def configureHealthCheck() {
Integer hcIntervalMinutes = 12
if (!hasConfiguredHealthCheck) {
log.debug "Configuring Health Check, Reporting"
unschedule("healthPoll")
runEvery5Minutes("healthPoll")
// Device-Watch allows 2 check-in misses from device
sendEvent(name: "checkInterval", value: hcIntervalMinutes * 60, displayed: false, data: [protocol: "zigbee", hubHardwareId: device.hub.hardwareID])
hasConfiguredHealthCheck = true
}
}
def configure() { def configure() {
log.debug "configure()" log.debug "Configuring Reporting and Bindings."
configureHealthCheck()
zigbee.onOffConfig() + zigbee.levelConfig() + zigbee.colorTemperatureConfig() + zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.colorTemperatureRefresh() zigbee.onOffConfig() + zigbee.levelConfig() + zigbee.colorTemperatureConfig() + zigbee.onOffRefresh() + zigbee.levelRefresh() + zigbee.colorTemperatureRefresh()
}
def updated() {
log.debug "updated()"
configureHealthCheck()
} }
def setColorTemperature(value) { def setColorTemperature(value) {

View File

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

View File

@@ -1,39 +0,0 @@
# Z-wave Dimmer
Works with:
* [Leviton Plug-in Lamp Dimmer Module (DZPD3-1LW)](http://www.leviton.com/OA_HTML/ProductDetail.jsp?partnumber=DZPD3-1LW)
## Table of contents
* [Capabilities](#capabilities)
* [Health](#device-health)
* [Troubleshooting](#troubleshooting)
## Capabilities
* **Switch Level** - it's defined to accept two parameters, the level and the rate of dimming
* **Actuator** - represents that a Device has commands
* **Health Check** - indicates ability to get device health notifications
* **Switch** - can detect state (possible values: on/off)
* **Polling** - represents that poll() can be implemented for the device
* **Refresh** - _refresh()_ command for status updates
* **Sensor** - detects sensor events
## Device Health
A Category C5 Leviton Plug-in Lamp Dimmer Module (DZPA1-1LW) (Z-Wave) polled by the hub.
As of hubCore version 0.14.38 the hub sends up reports every 15 minutes regardless of whether the state changed.
Device-Watch allows 2 check-in misses from device plus some lag time. So Check-in interval = (2*15 + 2)mins = 32 mins.
Not to mention after going OFFLINE when the device is plugged back in, it might take a considerable amount of time for
the device to appear as ONLINE again. This is because if this listening device does not respond to two poll requests in a row,
it is not polled for 5 minutes by the hub. This can delay up the process of being marked ONLINE by quite some time.
## Troubleshooting
If the device doesn't pair when trying from the SmartThings mobile app, it is possible that the device is out of range.
Pairing needs to be tried again by placing the device closer to the hub.
Instructions related to pairing, resetting and removing the device from SmartThings can be found in the following link:
* [Leviton Plug-in Lamp Dimmer Module (DZPD3-1LW) Troubleshooting Tips](https://support.smartthings.com/hc/en-us/articles/206171053-How-to-connect-Leviton-Z-Wave-devices)

View File

@@ -15,14 +15,12 @@ metadata {
definition (name: "Z-Wave Dimmer Switch Generic", namespace: "smartthings", author: "SmartThings") { definition (name: "Z-Wave Dimmer Switch Generic", namespace: "smartthings", author: "SmartThings") {
capability "Switch Level" capability "Switch Level"
capability "Actuator" capability "Actuator"
capability "Health Check"
capability "Switch" capability "Switch"
capability "Polling" capability "Polling"
capability "Refresh" capability "Refresh"
capability "Sensor" capability "Sensor"
fingerprint inClusters: "0x26", deviceJoinName: "Z-Wave Dimmer" fingerprint inClusters: "0x26", deviceJoinName: "Z-Wave Dimmer"
fingerprint mfr:"001D", prod:"1902", deviceJoinName: "Z-Wave Dimmer"
} }
simulator { simulator {
@@ -70,11 +68,6 @@ metadata {
} }
} }
def updated(){
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def parse(String description) { def parse(String description) {
def result = null def result = null
if (description != "updated") { if (description != "updated") {
@@ -192,13 +185,6 @@ def poll() {
zwave.switchMultilevelV1.switchMultilevelGet().format() zwave.switchMultilevelV1.switchMultilevelGet().format()
} }
/**
* PING is used by Device-Watch in attempt to reach the Device
* */
def ping() {
refresh()
}
def refresh() { def refresh() {
log.debug "refresh() is called" log.debug "refresh() is called"
def commands = [] def commands = []

View File

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

View File

@@ -1,49 +0,0 @@
# Z-Wave Switch
Works with:
* [GE Z-Wave Plug-In Smart Switch (12719)](http://products.z-wavealliance.org/products/1193)
* [GE Z-Wave In-Wall Smart Outlet (12721)](http://products.z-wavealliance.org/products/1195)
* [GE Z-Wave In-Wall Smart Switch (12722)](http://products.z-wavealliance.org/products/1196)
* [GE Z-Wave In-Wall Smart Toggle Switch (12727)](http://products.z-wavealliance.org/products/1200)
## Table of contents
* [Capabilities](#capabilities)
* [Health](#device-health)
* [Troubleshooting](#Troubleshooting)
## Capabilities
* **Actuator** - represents that a Device has commands
* **Indicator** - gives you the ability to set the indicator LED light on a Z-Wave switch
* **Switch** - can detect state (possible values: on/off)
* **Polling** - represents that poll() can be implemented for the device
* **Refresh** - _refresh()_ command for status updates
* **Sensor** - detects sensor events
* **Health Check** - indicates ability to get device health notifications
## Device Health
Z-Wave Switches (Plug-In, In-Wall(Toggle Switch, Switch, Outlet)) are polled by the hub.
As of hubCore version 0.14.38 the hub sends up reports every 15 minutes regardless of whether the state changed.
Device-Watch allows 2 check-in misses from device plus some lag time. So Check-in interval = (2*15 + 2)mins = 32 mins.
Not to mention after going OFFLINE when the device is plugged back in, it might take a considerable amount of time for
the device to appear as ONLINE again. This is because if this listening device does not respond to two poll requests in a row,
it is not polled for 5 minutes by the hub. This can delay up the process of being marked ONLINE by quite some time.
## Troubleshooting
If the device doesn't pair when trying from the SmartThings mobile app, it is possible that the device is out of range.
Pairing needs to be tried again by placing the device closer to the hub.
Instructions related to pairing, resetting and removing the device from SmartThings can be found in the following link:
* [General Z-Wave Dimmer/Switch Troubleshooting](https://support.smartthings.com/hc/en-us/articles/200955890-Troubleshooting-GE-in-wall-switch-or-dimmer-won-t-respond-to-commands-or-automations-Z-Wave-)
* [GE Z-Wave Plug-In Smart Switch (12719) Troubleshooting](https://support.smartthings.com/hc/en-us/articles/200903070-GE-Plug-In-Smart-Switch-GE-12719-Z-Wave)
* [GE Z-Wave In-Wall Smart Outlet (12721) Troubleshooting](https://support.smartthings.com/hc/en-us/articles/200903020-GE-In-Wall-Smart-Outlet-GE-12721-Z-Wave)
* [GE Z-Wave In-Wall Smart Switch (12722) Troubleshooting](https://support.smartthings.com/hc/en-us/articles/200902540-GE-In-Wall-Smart-Switch-GE-12722-Z-Wave)
* [GE Z-Wave In-Wall Smart Toggle Switch (12727) Troubleshooting](https://support.smartthings.com/hc/en-us/articles/207568933-GE-In-Wall-Smart-Toggle-Switch-GE-12727-Z-Wave)

View File

@@ -19,7 +19,6 @@ metadata {
capability "Polling" capability "Polling"
capability "Refresh" capability "Refresh"
capability "Sensor" capability "Sensor"
capability "Health Check"
fingerprint mfr:"0063", prod:"4952", deviceJoinName: "Z-Wave Wall Switch" fingerprint mfr:"0063", prod:"4952", deviceJoinName: "Z-Wave Wall Switch"
fingerprint mfr:"0063", prod:"5257", deviceJoinName: "Z-Wave Wall Switch" fingerprint mfr:"0063", prod:"5257", deviceJoinName: "Z-Wave Wall Switch"
@@ -65,8 +64,6 @@ metadata {
} }
def updated(){ def updated(){
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
switch (ledIndicator) { switch (ledIndicator) {
case "on": case "on":
indicatorWhenOn() indicatorWhenOn()
@@ -159,13 +156,6 @@ def poll() {
]) ])
} }
/**
* PING is used by Device-Watch in attempt to reach the Device
**/
def ping() {
refresh()
}
def refresh() { def refresh() {
delayBetween([ delayBetween([
zwave.switchBinaryV1.switchBinaryGet().format(), zwave.switchBinaryV1.switchBinaryGet().format(),

View File

@@ -21,18 +21,13 @@ definition(
name: "Smart Windows", name: "Smart Windows",
namespace: "egid", namespace: "egid",
author: "Eric Gideon", author: "Eric Gideon",
description: "Compares two temperatures indoor vs outdoor, for example then sends an alert if windows are open (or closed!). If you don't use an external temperature device, your location will be used instead.", description: "Compares two temperatures indoor vs outdoor, for example then sends an alert if windows are open (or closed!). If you don't use an external temperature device, your zipcode will be used instead.",
iconUrl: "https://s3.amazonaws.com/smartthings-device-icons/Home/home9-icn.png", iconUrl: "https://s3.amazonaws.com/smartthings-device-icons/Home/home9-icn.png",
iconX2Url: "https://s3.amazonaws.com/smartthings-device-icons/Home/home9-icn@2x.png" iconX2Url: "https://s3.amazonaws.com/smartthings-device-icons/Home/home9-icn@2x.png"
) )
preferences { preferences {
if (!(location.zipCode || ( location.latitude && location.longitude )) && location.channelName == 'samsungtv') {
section { paragraph title: "Note:", "Location is required for this SmartApp. Go to 'Location Name' settings to setup your correct location." }
}
section( "Set the temperature range for your comfort zone..." ) { section( "Set the temperature range for your comfort zone..." ) {
input "minTemp", "number", title: "Minimum temperature" input "minTemp", "number", title: "Minimum temperature"
input "maxTemp", "number", title: "Maximum temperature" input "maxTemp", "number", title: "Maximum temperature"
@@ -44,11 +39,9 @@ preferences {
input "inTemp", "capability.temperatureMeasurement", title: "Indoor" input "inTemp", "capability.temperatureMeasurement", title: "Indoor"
input "outTemp", "capability.temperatureMeasurement", title: "Outdoor (optional)", required: false input "outTemp", "capability.temperatureMeasurement", title: "Outdoor (optional)", required: false
} }
section( "Set your location" ) {
if (location.channelName != 'samsungtv') { input "zipCode", "text", title: "Zip code"
section( "Set your location" ) { input "zipCode", "text", title: "Zip code" } }
}
section( "Notifications" ) { section( "Notifications" ) {
input "sendPushMessage", "enum", title: "Send a push notification?", metadata:[values:["Yes","No"]], required:false input "sendPushMessage", "enum", title: "Send a push notification?", metadata:[values:["Yes","No"]], required:false
input "retryPeriod", "number", title: "Minutes between notifications:" input "retryPeriod", "number", title: "Minutes between notifications:"
@@ -132,11 +125,7 @@ def temperatureHandler(evt) {
} }
def weatherCheck() { def weatherCheck() {
def json def json = getWeatherFeature("conditions", zipCode)
if (location.channelName != 'samsungtv')
json = getWeatherFeature("conditions", zipCode)
else
json = getWeatherFeature("conditions")
def currentTemp = json?.current_observation?.temp_f def currentTemp = json?.current_observation?.temp_f
if ( currentTemp ) { if ( currentTemp ) {

View File

@@ -1,253 +0,0 @@
/**
* Gideon
*
* Copyright 2016 Nicola Russo
*
* 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: "Gideon",
namespace: "gideon.api",
author: "Braindrain Solutions",
description: "Gideon AI Smart app allows you to connect and control all of your SmartThings devices through the Gideon AI app, making your SmartThings devices even smarter.",
category: "Family",
iconUrl: "http://s33.postimg.org/t77u7y7v3/logo.png",
iconX2Url: "http://s33.postimg.org/t77u7y7v3/logo.png",
iconX3Url: "http://s33.postimg.org/t77u7y7v3/logo.png",
oauth: [displayName: "Gideon AI API", displayLink: "gideon.ai"])
preferences {
section("Control these switches...") {
input "switches", "capability.switch", multiple:true
}
section("Control these motion sensors...") {
input "motions", "capability.motionSensor", multiple:true
}
section("Control these presence sensors...") {
input "presence_sensors", "capability.presenceSensor", multiple:true
}
section("Control these outlets...") {
input "outlets", "capability.switch", multiple:true
}
section("Control these locks...") {
input "locks", "capability.lock", multiple:true
}
section("Control these locks...") {
input "temperature_sensors", "capability.temperatureMeasurement"
}
}
def installed() {
log.debug "Installed with settings: ${settings}"
initialize()
}
def updated() {
log.debug "Updated with settings: ${settings}"
unsubscribe()
initialize()
}
def initialize() {
// TODO: subscribe to attributes, devices, locations, etc.
subscribe(outlet, "energy", outletHandler)
subscribe(outlet, "switch", outletHandler)
}
// TODO: implement event handlers
def outletHandler(evt) {
log.debug "$outlet.currentEnergy"
//TODO call G API
}
private device(it, type) {
it ? [id: it.id, label: it.label, type: type] : null
}
//API Mapping
mappings {
path("/getalldevices") {
action: [
GET: "getAllDevices"
]
}
path("/doorlocks/:id/:command") {
action: [
GET: "updateDoorLock"
]
}
path("/doorlocks/:id") {
action: [
GET: "getDoorLockStatus"
]
}
path("/tempsensors/:id") {
action: [
GET: "getTempSensorsStatus"
]
}
path("/presences/:id") {
action: [
GET: "getPresenceStatus"
]
}
path("/motions/:id") {
action: [
GET: "getMotionStatus"
]
}
path("/outlets/:id") {
action: [
GET: "getOutletStatus"
]
}
path("/outlets/:id/:command") {
action: [
GET: "updateOutlet"
]
}
path("/switches/:command") {
action: [
PUT: "updateSwitch"
]
}
}
//API Methods
def getAllDevices() {
def locks_list = locks.collect{device(it,"Lock")}
def presences_list = presence_sensors.collect{device(it,"Presence")}
def motions_list = motions.collect{device(it,"Motion")}
def outlets_list = outlets.collect{device(it,"Outlet")}
def switches_list = switches.collect{device(it,"Switch")}
def temp_list = temperature_sensors.collect{device(it,"Temperature")}
return [Locks: locks_list, Presences: presences_list, Motions: motions_list, Outlets: outlets_list, Switches: switches_list, Temperatures: temp_list]
}
//LOCKS
def getDoorLockStatus() {
def device = locks.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
return [Device_state: device.currentValue('lock')]
}
}
def updateDoorLock() {
def command = params.command
def device = locks.find { it.id == params.id }
if (command){
if (!device) {
httpError(404, "Device not found")
} else {
if(command == "toggle")
{
if(device.currentValue('lock') == "locked")
device.unlock();
else
device.lock();
return [Device_id: params.id, result_action: "200"]
}
}
}
}
//PRESENCE
def getPresenceStatus() {
def device = presence_sensors.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
return [Device_state: device.currentValue('presence')]
}
}
//MOTION
def getMotionStatus() {
def device = motions.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
return [Device_state: device.currentValue('motion')]
}
}
//OUTLET
def getOutletStatus() {
def device = outlets.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
return [Device_state: device.currentSwitch, Current_watt: device.currentValue("energy")]
}
}
def updateOutlet() {
def command = params.command
def device = outlets.find { it.id == params.id }
if (command){
if (!device) {
httpError(404, "Device not found")
} else {
if(command == "toggle")
{
if(device.currentSwitch == "on")
device.off();
else
device.on();
return [Device_id: params.id, result_action: "200"]
}
}
}
}
//SWITCH
def updateSwitch() {
def command = params.command
def device = switches.find { it.id == params.id }
if (command){
if (!device) {
httpError(404, "Device not found")
} else {
if(command == "toggle")
{
if(device.currentSwitch == "on")
device.off();
else
device.on();
return [Device_id: params.id, result_action: "200"]
}
}
}
}
//TEMPERATURE
def getTempSensorsStatus() {
def device = temperature_sensors.find { it.id == params.id }
if (!device) {
httpError(404, "Device not found")
} else {
return [Device_state: device.currentValue('temperature')]
}
}

View File

@@ -18,13 +18,8 @@ definition(
) )
preferences { preferences {
section("Zip code?") {
if (!(location.zipCode || ( location.latitude && location.longitude )) && location.channelName == 'samsungtv') { input "zipcode", "text", title: "Zipcode?"
section { paragraph title: "Note:", "Location is required for this SmartApp. Go to 'Location Name' settings to setup your correct location." }
}
if (location.channelName != 'samsungtv') {
section( "Set your location" ) { input "zipCode", "text", title: "Zip code" }
} }
section("Things to check?") { section("Things to check?") {
@@ -65,11 +60,7 @@ def scheduleCheck(evt) {
// Only need to poll if we haven't checked in a while - and if something is left open. // Only need to poll if we haven't checked in a while - and if something is left open.
if((now() - (30 * 60 * 1000) > state.lastCheck["time"]) && open) { if((now() - (30 * 60 * 1000) > state.lastCheck["time"]) && open) {
log.info("Something's open - let's check the weather.") log.info("Something's open - let's check the weather.")
def response def response = getWeatherFeature("forecast", zipcode)
if (location.channelName != 'samsungtv')
response = getWeatherFeature("forecast", zipCode)
else
response = getWeatherFeature("forecast")
def weather = isStormy(response) def weather = isStormy(response)
if(weather) { if(weather) {

View File

@@ -4,9 +4,6 @@
* Author: Juan Risso * Author: Juan Risso
* Date: 2013-12-19 * Date: 2013-12-19
*/ */
include 'asynchttp_v1'
definition( definition(
name: "Jawbone UP (Connect)", name: "Jawbone UP (Connect)",
namespace: "juano2310", namespace: "juano2310",
@@ -31,7 +28,7 @@ mappings {
path("/receivedToken") { action: [ POST: "receivedToken", GET: "receivedToken"] } path("/receivedToken") { action: [ POST: "receivedToken", GET: "receivedToken"] }
path("/receiveToken") { action: [ POST: "receiveToken", GET: "receiveToken"] } path("/receiveToken") { action: [ POST: "receiveToken", GET: "receiveToken"] }
path("/hookCallback") { action: [ POST: "hookEventHandler", GET: "hookEventHandler"] } path("/hookCallback") { action: [ POST: "hookEventHandler", GET: "hookEventHandler"] }
path("/oauth/initialize") {action: [GET: "oauthInitUrl"]} path("/oauth/initialize") {action: [GET: "oauthInitUrl"]}
path("/oauth/callback") { action: [ GET: "callback" ] } path("/oauth/callback") { action: [ GET: "callback" ] }
} }
@@ -87,7 +84,6 @@ def authPage() {
log.debug "RedirectURL = ${redirectUrl}" log.debug "RedirectURL = ${redirectUrl}"
def donebutton= state.JawboneAccessToken != null def donebutton= state.JawboneAccessToken != null
return dynamicPage(name: "Credentials", title: "Jawbone UP", nextPage: null, uninstall: true, install: donebutton) { return dynamicPage(name: "Credentials", title: "Jawbone UP", nextPage: null, uninstall: true, install: donebutton) {
section { paragraph title: "Note:", "This device has not been officially tested and certified to “Work with SmartThings”. You can connect it to your SmartThings home but performance may vary and we will not be able to provide support or assistance." }
section { href url:redirectUrl, style:"embedded", required:true, title:"Jawbone UP", state: hast ,description:description } section { href url:redirectUrl, style:"embedded", required:true, title:"Jawbone UP", state: hast ,description:description }
} }
} else { } else {
@@ -238,7 +234,7 @@ def validateCurrentToken() {
httpPost(uri: url, headers: ["Authorization": "Bearer ${state.JawboneAccessToken}" ], body: requestBody) {response -> httpPost(uri: url, headers: ["Authorization": "Bearer ${state.JawboneAccessToken}" ], body: requestBody) {response ->
if (response.status == 200) { if (response.status == 200) {
log.debug "${response.data}" log.debug "${response.data}"
log.debug "Setting refresh token" log.debug "Setting refresh token to ${response.data.data.refresh_token}"
state.refreshToken = response.data.data.refresh_token state.refreshToken = response.data.data.refresh_token
} }
} }
@@ -262,7 +258,7 @@ def validateCurrentToken() {
state.remove("refreshToken") state.remove("refreshToken")
} }
} else { } else {
log.debug "Setting access token" log.debug "Setting access token to ${data.access_token}, refresh token to ${data.refresh_token}"
state.JawboneAccessToken = data.access_token state.JawboneAccessToken = data.access_token
state.refreshToken = data.refresh_token state.refreshToken = data.refresh_token
} }
@@ -306,8 +302,7 @@ def setup() {
def childDevice = addChildDevice('juano2310', "Jawbone User", "${app.id}.${member.xid}",null,[name:"Jawbone UP - " + member.first, completedSetup: true]) def childDevice = addChildDevice('juano2310', "Jawbone User", "${app.id}.${member.xid}",null,[name:"Jawbone UP - " + member.first, completedSetup: true])
if (childDevice) { if (childDevice) {
log.debug "Child Device Successfully Created" log.debug "Child Device Successfully Created"
childDevice?.generateSleepingEvent(false) generateInitialEvent (member, childDevice)
pollChild(childDevice)
} }
} }
} }
@@ -353,67 +348,67 @@ def uninstalled() {
} }
def pollChild(childDevice) { def pollChild(childDevice) {
def childMap = [ value: "$childDevice.device.deviceNetworkId}"] def member = state.member
generatePollingEvents (member, childDevice)
def params = [
uri: 'https://jawbone.com',
path: '/nudge/api/users/@me/goals',
headers: ["Authorization": "Bearer ${state.JawboneAccessToken}" ],
contentType: 'application/json'
]
asynchttp_v1.get('responseGoals', params, childMap)
def params2 = [
uri: 'https://jawbone.com',
path: '/nudge/api/users/@me/moves',
headers: ["Authorization": "Bearer ${state.JawboneAccessToken}" ],
contentType: 'application/json'
]
asynchttp_v1.get('responseMoves', params2, childMap)
} }
def responseGoals(response, dni) { def generatePollingEvents (member, childDevice) {
if (response.hasError()) { // lets figure out if the member is currently "home" (At the place)
log.error "response has error: $response.errorMessage" def urlgoals = "https://jawbone.com/nudge/api/users/@me/goals"
} else { def urlmoves = "https://jawbone.com/nudge/api/users/@me/moves"
def goals def urlsleeps = "https://jawbone.com/nudge/api/users/@me/sleeps"
try { def goals = null
// json response already parsed into JSONElement object def moves = null
goals = response.json.data def sleeps = null
} catch (e) { httpGet(uri: urlgoals, headers: ["Authorization": "Bearer ${state.JawboneAccessToken}" ]) {response ->
log.error "error parsing json from response: $e" goals = response.data.data
} }
if (goals) { httpGet(uri: urlmoves, headers: ["Authorization": "Bearer ${state.JawboneAccessToken}" ]) {response ->
def childDevice = getChildDevice(dni.value) moves = response.data.data.items[0]
log.debug "Goal = ${goals.move_steps} Steps" }
childDevice?.sendEvent(name:"goal", value: goals.move_steps)
} else { try { // we are going to just ignore any errors
log.debug "did not get json results from response body: $response.data" log.debug "Member = ${member.first}"
} log.debug "Moves Goal = ${goals.move_steps} Steps"
} log.debug "Moves = ${moves.details.steps} Steps"
childDevice?.sendEvent(name:"steps", value: moves.details.steps)
childDevice?.sendEvent(name:"goal", value: goals.move_steps)
//setColor(moves.details.steps,goals.move_steps,childDevice)
}
catch (e) {
// eat it
}
} }
def responseMoves(response, dni) { def generateInitialEvent (member, childDevice) {
if (response.hasError()) { // lets figure out if the member is currently "home" (At the place)
log.error "response has error: $response.errorMessage" def urlgoals = "https://jawbone.com/nudge/api/users/@me/goals"
} else { def urlmoves = "https://jawbone.com/nudge/api/users/@me/moves"
def moves def urlsleeps = "https://jawbone.com/nudge/api/users/@me/sleeps"
try { def goals = null
// json response already parsed into JSONElement object def moves = null
moves = response.json.data.items[0] def sleeps = null
} catch (e) { httpGet(uri: urlgoals, headers: ["Authorization": "Bearer ${state.JawboneAccessToken}" ]) {response ->
log.error "error parsing json from response: $e" goals = response.data.data
} }
if (moves) { httpGet(uri: urlmoves, headers: ["Authorization": "Bearer ${state.JawboneAccessToken}" ]) {response ->
def childDevice = getChildDevice(dni.value) moves = response.data.data.items[0]
log.debug "Moves = ${moves.details.steps} Steps" }
childDevice?.sendEvent(name:"steps", value: moves.details.steps)
} else { try { // we are going to just ignore any errors
log.debug "did not get json results from response body: $response.data" log.debug "Member = ${member.first}"
} log.debug "Moves Goal = ${goals.move_steps} Steps"
} log.debug "Moves = ${moves.details.steps} Steps"
log.debug "Sleeping state = false"
childDevice?.generateSleepingEvent(false)
childDevice?.sendEvent(name:"steps", value: moves.details.steps)
childDevice?.sendEvent(name:"goal", value: goals.move_steps)
//setColor(moves.details.steps,goals.move_steps,childDevice)
}
catch (e) {
// eat it
}
} }
def setColor (steps,goal,childDevice) { def setColor (steps,goal,childDevice) {
@@ -437,7 +432,7 @@ def hookEventHandler() {
// get some stuff we need // get some stuff we need
def userId = json.events.user_xid[0] def userId = json.events.user_xid[0]
def json_type = json.events.type[0] def json_type = json.events.type[0]
def json_action = json.events.action[0] def json_action = json.events.action[0]
//log.debug json //log.debug json
log.debug "Userid = ${userId}" log.debug "Userid = ${userId}"
@@ -471,7 +466,7 @@ def hookEventHandler() {
moves = response.data.data.items[0] moves = response.data.data.items[0]
} }
log.debug "Goal = ${goals.move_steps} Steps" log.debug "Goal = ${goals.move_steps} Steps"
log.debug "Steps = ${moves.details.steps} Steps" log.debug "Steps = ${moves.details.steps} Steps"
childDevice?.sendEvent(name:"steps", value: moves.details.steps) childDevice?.sendEvent(name:"steps", value: moves.details.steps)
childDevice?.sendEvent(name:"goal", value: goals.move_steps) childDevice?.sendEvent(name:"goal", value: goals.move_steps)
//setColor(moves.details.steps,goals.move_steps,childDevice) //setColor(moves.details.steps,goals.move_steps,childDevice)

View File

@@ -20,6 +20,8 @@
* JLH - 02-15-2014 - Fuller use of ecobee API * JLH - 02-15-2014 - Fuller use of ecobee API
* 10-28-2015 DVCSMP-604 - accessory sensor, DVCSMP-1174, DVCSMP-1111 - not respond to routines * 10-28-2015 DVCSMP-604 - accessory sensor, DVCSMP-1174, DVCSMP-1111 - not respond to routines
*/ */
include 'asynchttp_v1'
definition( definition(
name: "Ecobee (Connect)", name: "Ecobee (Connect)",
namespace: "smartthings", namespace: "smartthings",
@@ -244,9 +246,7 @@ def getEcobeeThermostats() {
uri: apiEndpoint, uri: apiEndpoint,
path: "/1/thermostat", path: "/1/thermostat",
headers: ["Content-Type": "text/json", "Authorization": "Bearer ${atomicState.authToken}"], headers: ["Content-Type": "text/json", "Authorization": "Bearer ${atomicState.authToken}"],
// TODO - the query string below is not consistent with the Ecobee docs: query: [json: toJson(bodyParams)]
// https://www.ecobee.com/home/developer/api/documentation/v1/operations/get-thermostats.shtml
query: [format: 'json', body: toJson(bodyParams)]
] ]
def stats = [:] def stats = [:]
@@ -265,9 +265,8 @@ def getEcobeeThermostats() {
} catch (groovyx.net.http.HttpResponseException e) { } catch (groovyx.net.http.HttpResponseException e) {
log.trace "Exception polling children: " + e.response.data.status log.trace "Exception polling children: " + e.response.data.status
if (e.response.data.status.code == 14) { if (e.response.data.status.code == 14) {
atomicState.action = "getEcobeeThermostats"
log.debug "Refreshing your auth_token!" log.debug "Refreshing your auth_token!"
refreshAuthToken() refreshAuthToken([async: false, nextAction: "getEcobeeThermostats"])
} }
} }
atomicState.thermostats = stats atomicState.thermostats = stats
@@ -358,16 +357,22 @@ def initialize() {
atomicState.timeSendPush = null atomicState.timeSendPush = null
atomicState.reAttempt = 0 atomicState.reAttempt = 0
pollHandler() //first time polling data data from thermostat initialPoll() //first time polling data data from thermostat
//automatically update devices status every 5 mins //automatically update devices status every 5 mins
runEvery5Minutes("poll") runEvery5Minutes("poll")
} }
def pollHandler() { /**
log.debug "pollHandler()" * Polls the child devices (synchronously).
pollChildren(null) // Hit the ecobee API for update on all thermostats * This is used during app install/update, and is synchronous
* to maintain current behavior that will cause install/update to fail
* if polling fails.
*/
def initialPoll() {
log.debug "initialPoll()"
pollChildrenSync() // Hit the ecobee API for update on all thermostats
atomicState.thermostats.each {stat -> atomicState.thermostats.each {stat ->
def dni = stat.key def dni = stat.key
@@ -380,36 +385,38 @@ def pollHandler() {
} }
} }
def pollChildren(child = null) { /**
def thermostatIdsString = getChildDeviceIdsString() * Polls Ecobee (asynchronously) for updated device state data.
* Called from within this Connect SmartApp as well as the child
* devices.
*/
def poll() {
log.debug "polling asynchronously"
asynchttp_v1.get('asyncPollResponseHandler', getPollParams())
}
/**
* Makes a (synchronous) request to the Ecobee API to get the data for the thermostats.
* This request is made synchronously here because it is called as part of the
* install/updated lifecycle, and changing it to asynchronous during the install/update
* lifecycle may change the behavior if there is an error in polling.
*
* If further analysis shows that polling can be done asynchronously during
* install/update without any adverse consequences, this should then be made
* asynchronous just as the scheduled polling is.
*/
def pollChildrenSync() {
log.debug "polling children: $thermostatIdsString" log.debug "polling children: $thermostatIdsString"
def requestBody = [ def params = getPollParams()
selection: [ params.query << ["Content-Type": "application/json"]
selectionType: "thermostats",
selectionMatch: thermostatIdsString,
includeExtendedRuntime: true,
includeSettings: true,
includeRuntime: true,
includeSensors: true
]
]
def result = false def result = false
log.debug "making synchronous poll request"
def pollParams = [
uri: apiEndpoint,
path: "/1/thermostat",
headers: ["Content-Type": "text/json", "Authorization": "Bearer ${atomicState.authToken}"],
// TODO - the query string below is not consistent with the Ecobee docs:
// https://www.ecobee.com/home/developer/api/documentation/v1/operations/get-thermostats.shtml
query: [format: 'json', body: toJson(requestBody)]
]
try{ try{
httpGet(pollParams) { resp -> httpGet(params) { resp ->
if(resp.status == 200) { if(resp.status == 200) {
log.debug "poll results returned resp.data ${resp.data}"
atomicState.remoteSensors = resp.data.thermostatList.remoteSensors atomicState.remoteSensors = resp.data.thermostatList.remoteSensors
updateSensorData() updateSensorData()
storeThermostatData(resp.data.thermostatList) storeThermostatData(resp.data.thermostatList)
@@ -420,40 +427,95 @@ def pollChildren(child = null) {
} catch (groovyx.net.http.HttpResponseException e) { } catch (groovyx.net.http.HttpResponseException e) {
log.trace "Exception polling children: " + e.response.data.status log.trace "Exception polling children: " + e.response.data.status
if (e.response.data.status.code == 14) { if (e.response.data.status.code == 14) {
atomicState.action = "pollChildren"
log.debug "Refreshing your auth_token!" log.debug "Refreshing your auth_token!"
refreshAuthToken() refreshAuthToken([async: false, nextAction: "pollChildrenSync"])
} }
} }
return result return result
} }
// Poll Child is invoked from the Child Device itself as part of the Poll Capability /**
def pollChild() { * Response handler for asynchronous request to get thermostat data.
def devices = getChildDevices() * Given a successful response, updates the sensor data, stores the thermostat
* data, and generates child device events.
if (pollChildren()) { *
devices.each { child -> * If the access token has expired, will issue a request to refresh the token
if (!child.device.deviceNetworkId.startsWith("ecobee_sensor")) { * (and pending successful token refresh, the poll request will be made again).
if(atomicState.thermostats[child.device.deviceNetworkId] != null) { */
def tData = atomicState.thermostats[child.device.deviceNetworkId] def asyncPollResponseHandler(response, data) {
log.info "pollChild(child)>> data for ${child.device.deviceNetworkId} : ${tData.data}" log.trace "async poll response handler"
child.generateEvent(tData.data) //parse received message from parent if (!response.hasError()) {
} else if(atomicState.thermostats[child.device.deviceNetworkId] == null) { if (response.status == 200) {
log.error "ERROR: Device connection removed? no data for ${child.device.deviceNetworkId}" def json
return null try {
} json = response.getJson()
} } catch (e) {
} log.error ("error parsing JSON", e)
} else { }
log.info "ERROR: pollChildren()" if (json) {
return null atomicState.remoteSensors = json.thermostatList.remoteSensors
} updateSensorData()
storeThermostatData(json.thermostatList)
generateChildThermostatEvent()
}
} else {
log.warn "Response returned non-200 response. Status: ${response.status}, data: ${response.getData()}"
}
} else {
log.trace "Exception polling children: ${response.getErrorMessage()}"
def errorJson
try {
errorJson = response.getErrorJson()
} catch (e) {
log.error("Unable to parse error json response", e)
}
if (errorJson?.status?.code == 14) {
log.debug "Refreshing your auth_token!"
refreshAuthToken([async: true, nextAction: "poll"])
} else {
log.warn "Error polling children that is not due to an expired token. Response: ${response.getErrorData()}"
}
}
} }
void poll() { private getPollParams() {
pollChild() def thermostatIdsString = getChildDeviceIdsString()
def requestBody = [
selection: [
selectionType: "thermostats",
selectionMatch: thermostatIdsString,
includeExtendedRuntime: true,
includeSettings: true,
includeRuntime: true,
includeSensors: true
]
]
return [
uri: apiEndpoint,
path: "/1/thermostat",
headers: ["Authorization": "Bearer ${atomicState.authToken}"],
query: [json: toJson(requestBody)]
]
}
/**
* Calls each child thermostat device to generate an event with the thermostat
* data.
*/
def generateChildThermostatEvent() {
log.trace("generateChildThermostatEvent")
getChildDevices().each { child ->
if (!child.device.deviceNetworkId.startsWith("ecobee_sensor")){
if(atomicState.thermostats[child.device.deviceNetworkId] != null) {
def tData = atomicState.thermostats[child.device.deviceNetworkId]
log.debug "calling child.generateEvent($tData.data)"
child.generateEvent(tData.data) //parse received message from parent
} else if(atomicState.thermostats[child.device.deviceNetworkId] == null) {
log.error "ERROR: Device connection removed? no data for ${child.device.deviceNetworkId}"
return null
}
}
}
} }
def availableModes(child) { def availableModes(child) {
@@ -553,47 +615,104 @@ def toQueryString(Map m) {
return m.collect { k, v -> "${k}=${URLEncoder.encode(v.toString())}" }.sort().join("&") return m.collect { k, v -> "${k}=${URLEncoder.encode(v.toString())}" }.sort().join("&")
} }
private refreshAuthToken() { /**
log.debug "refreshing auth token" * Uses the refresh token to get a new access token, then executes the nextAction.
* @param options - a map of options. valid options are async: true/false, which
* specifies if the refresh token request will be done asynchronously or not (default is false)
* nextAction: "nameOfMethod" specifies what method to execute after
* the token is refreshed (not required).
* (note: using a map as the parameter because we need to call it from a schedueled
* execution and we can only pass a data map to scheduled executions)
*/
private void refreshAuthToken(options) {
if(!atomicState.refreshToken) {
log.warn "Cannot not refresh OAuth token since there is no refreshToken stored"
} else {
def refreshParams = [
uri : apiEndpoint,
path : "/token",
query : [grant_type: 'refresh_token', code: "${atomicState.refreshToken}", client_id: smartThingsClientId],
]
if (options.async) {
refreshAuthTokenAsync(refreshParams, options.nextAction)
} else {
refreshAuthTokenSync(refreshParams, options.nextAction)
}
}
}
if(!atomicState.refreshToken) { private void refreshAuthTokenSync(params, nextAction = null) {
log.warn "Can not refresh OAuth token since there is no refreshToken stored" try {
} else { httpPost(refreshParams) { resp ->
def refreshParams = [ if(resp.status == 200) {
method: 'POST', log.debug "Token refreshed...calling saved RestAction now!"
uri : apiEndpoint, debugEvent("Token refreshed ... calling saved RestAction now!")
path : "/token", saveTokenAndResumeAction(resp.data, nextAction)
query : [grant_type: 'refresh_token', code: "${atomicState.refreshToken}", client_id: smartThingsClientId],
]
def notificationMessage = "is disconnected from SmartThings, because the access credential changed or was lost. Please go to the Ecobee (Connect) SmartApp and re-enter your account login credentials."
//changed to httpPost
try {
def jsonMap
httpPost(refreshParams) { resp ->
if(resp.status == 200) {
log.debug "Token refreshed...calling saved RestAction now!"
debugEvent("Token refreshed ... calling saved RestAction now!")
saveTokenAndResumeAction(resp.data)
}
} }
} catch (groovyx.net.http.HttpResponseException e) { }
log.error "refreshAuthToken() >> Error: e.statusCode ${e.statusCode}" } catch (groovyx.net.http.HttpResponseException e) {
def reAttemptPeriod = 300 // in sec log.error "refreshAuthToken() >> Error: e.statusCode ${e.statusCode}"
if (e.statusCode != 401) { // this issue might comes from exceed 20sec app execution, connectivity issue etc. reauthTokenErrorHandler(e.statusCode)
runIn(reAttemptPeriod, "refreshAuthToken") }
} else if (e.statusCode == 401) { // unauthorized }
atomicState.reAttempt = atomicState.reAttempt + 1
log.warn "reAttempt refreshAuthToken to try = ${atomicState.reAttempt}" private void refreshAuthTokenAsync(refreshParams, nextAction = null) {
if (atomicState.reAttempt <= 3) { log.debug "making asynchronous refresh request"
runIn(reAttemptPeriod, "refreshAuthToken") asynchttp_v1.post('refreshTokenResponseHandler', refreshParams, [nextAction: nextAction])
} else { }
sendPushAndFeeds(notificationMessage)
atomicState.reAttempt = 0 /**
} * The response handler for the request to refresh the authorization handler.
} * Stores the new authorization token and refresh token, and executes any action
} * (method) that failed due to the authorization token expiring.
} */
private void refreshTokenResponseHandler(response, data) {
if (!response.hasError()) {
if (response.status == 200) {
def json
try {
json = response.getJson()
} catch (e) {
log.error "error parsing json from response data: $response.data"
}
if (json) {
log.debug "asnyc refreshTokenHandler: Token refreshed...calling saved RestAction now!"
debugEvent("async Token refreshed ... calling saved RestAction now!")
saveTokenAndResumeAction(json, data.nextAction)
} else {
log.warn "successfully parsed json but result is empty or null"
}
} else {
log.debug "Non 200 response returned. Response code: ${response.code}, data: ${response.getData()}"
}
} else {
log.debug "async refreshTokenHandler: RESPONSE ERROR: ${response.getErrorJson()}"
reauthTokenErrorHandler(response.getErrorJson().code)
}
}
/**
* Retries refreshing the authorization token. Will attempt to get the refresh
* token later, in case there were errors retrieving it.
* Will retry a fixed number of times before sending a push notification to the
* user instructing them to reauthenticate
*/
private void reauthTokenErrorHandler(responseCode) {
def retryInterval = 300 // in seconds
def notificationMessage = "is disconnected from SmartThings, because the access credential changed or was lost. Please go to the Ecobee (Connect) SmartApp and re-enter your account login credentials."
// might get non-401 error from exceeding 20 second app limit, connectivity issues, etc.
if (responseCode != 401) {
runIn(retryInterval, "refreshAuthToken", [async: true])
} else if (responseCode == 401) { // unauthorized
atomicState.reAttempt = atomicState.reAttempt + 1
log.warn "reAttempt refreshAuthToken to try = ${atomicState.reAttempt}"
if (atomicState.reAttempt <= 3) {
runIn(retryInterval, "refreshAuthToken", [async: true])
} else {
sendPushAndFeeds(notificationMessage)
atomicState.reAttempt = 0
}
}
} }
/** /**
@@ -603,20 +722,20 @@ private refreshAuthToken() {
* *
* @param json - an object representing the parsed JSON response from Ecobee * @param json - an object representing the parsed JSON response from Ecobee
*/ */
private void saveTokenAndResumeAction(json) { private void saveTokenAndResumeAction(json, String nextAction) {
log.debug "token response json: $json" def debugMessage = "token response, scope: ${json?.scope}, expires_in: ${json?.expires_in}, token_type: ${json?.token_type}"
log.debug "debugMessage"
if (json) { if (json) {
debugEvent("Response = $json") debugEvent(debugMessage)
atomicState.refreshToken = json?.refresh_token atomicState.refreshToken = json?.refresh_token
atomicState.authToken = json?.access_token atomicState.authToken = json?.access_token
if (atomicState.action) { if (nextAction) {
log.debug "got refresh token, executing next action: ${atomicState.action}" log.debug "got refresh token, will execute next action (passed in!): $nextAction"
"${atomicState.action}"() "$nextAction"()
} }
} else { } else {
log.warn "did not get response body from refresh token response" log.warn "did not get response body from refresh token response"
} }
atomicState.action = ""
} }
/** /**
@@ -756,7 +875,6 @@ private boolean sendCommandToEcobee(Map bodyParams) {
try{ try{
httpPost(cmdParams) { resp -> httpPost(cmdParams) { resp ->
if(resp.status == 200) { if(resp.status == 200) {
log.debug "updated ${resp.data}"
def returnStatus = resp.data.status.code def returnStatus = resp.data.status.code
if (returnStatus == 0) { if (returnStatus == 0) {
log.debug "Successful call to ecobee API." log.debug "Successful call to ecobee API."
@@ -771,11 +889,10 @@ private boolean sendCommandToEcobee(Map bodyParams) {
log.trace "Exception Sending Json: " + e.response.data.status log.trace "Exception Sending Json: " + e.response.data.status
debugEvent ("sent Json & got http status ${e.statusCode} - ${e.response.data.status.code}") debugEvent ("sent Json & got http status ${e.statusCode} - ${e.response.data.status.code}")
if (e.response.data.status.code == 14) { if (e.response.data.status.code == 14) {
// TODO - figure out why we're setting the next action to be pollChildren // TODO - figure out why we're setting the next action to be poll
// after refreshing auth token. Is it to keep UI in sync, or just copy/paste error? // after refreshing auth token. Is it to keep UI in sync, or just copy/paste error?
atomicState.action = "pollChildren"
log.debug "Refreshing your auth_token!" log.debug "Refreshing your auth_token!"
refreshAuthToken() refreshAuthToken([async: true, nextAction: "poll"])
} else { } else {
debugEvent("Authentication error, invalid authentication method, lack of credentials, etc.") debugEvent("Authentication error, invalid authentication method, lack of credentials, etc.")
log.error "Authentication error, invalid authentication method, lack of credentials, etc." log.error "Authentication error, invalid authentication method, lack of credentials, etc."

View File

@@ -454,23 +454,17 @@ def sendStopEvent(source) {
eventData.value += "cancelled" eventData.value += "cancelled"
} }
// send 100% completion event
sendTimeRemainingEvent(100)
// send a non-displayed 0% completion to reset tiles
sendTimeRemainingEvent(0, false)
// send sessionStatus event last so the event feed is ordered properly
sendControllerEvent(eventData) sendControllerEvent(eventData)
sendTimeRemainingEvent(0)
} }
def sendTimeRemainingEvent(percentComplete, displayed = true) { def sendTimeRemainingEvent(percentComplete) {
log.trace "sendTimeRemainingEvent(${percentComplete})" log.trace "sendTimeRemainingEvent(${percentComplete})"
def percentCompleteEventData = [ def percentCompleteEventData = [
name: "percentComplete", name: "percentComplete",
value: percentComplete as int, value: percentComplete as int,
displayed: displayed, displayed: true,
isStateChange: true isStateChange: true
] ]
sendControllerEvent(percentCompleteEventData) sendControllerEvent(percentCompleteEventData)
@@ -480,7 +474,7 @@ def sendTimeRemainingEvent(percentComplete, displayed = true) {
def timeRemainingEventData = [ def timeRemainingEventData = [
name: "timeRemaining", name: "timeRemaining",
value: displayableTime(timeRemaining), value: displayableTime(timeRemaining),
displayed: displayed, displayed: true,
isStateChange: true isStateChange: true
] ]
sendControllerEvent(timeRemainingEventData) sendControllerEvent(timeRemainingEventData)
@@ -614,6 +608,8 @@ private completion() {
handleCompletionMessaging() handleCompletionMessaging()
handleCompletionModesAndPhrases() handleCompletionModesAndPhrases()
sendTimeRemainingEvent(100)
} }
private handleCompletionSwitches() { private handleCompletionSwitches() {

File diff suppressed because it is too large Load Diff

View File

@@ -387,7 +387,7 @@ def updateDevices() {
} else { } else {
childDevice = addChildDevice(app.namespace, "LIFX White Bulb", device.id, null, data) childDevice = addChildDevice(app.namespace, "LIFX White Bulb", device.id, null, data)
} }
} }
} }
getChildDevices().findAll { !selectors.contains("${it.deviceNetworkId}") }.each { getChildDevices().findAll { !selectors.contains("${it.deviceNetworkId}") }.each {
log.info("Deleting ${it.deviceNetworkId}") log.info("Deleting ${it.deviceNetworkId}")

View File

@@ -34,7 +34,6 @@
* locks | lock | lock, unlock | locked, unlocked * locks | lock | lock, unlock | locked, unlocked
* ---------------------+-------------------+-----------------------------+------------------------------------ * ---------------------+-------------------+-----------------------------+------------------------------------
*/ */
include 'asynchttp_v1'
definition( definition(
name: "Logitech Harmony (Connect)", name: "Logitech Harmony (Connect)",
@@ -52,7 +51,7 @@ definition(
} }
preferences(oauthPage: "deviceAuthorization") { preferences(oauthPage: "deviceAuthorization") {
page(name: "Credentials", title: "Connect to your Logitech Harmony device", content: "authPage", install: false, nextPage: "deviceAuthorization") page(name: "Credentials", title: "Connect to your Logitech Harmony device", content: "authPage", install: false, nextPage: "deviceAuthorization")
page(name: "deviceAuthorization", title: "Logitech Harmony device authorization", install: true) { page(name: "deviceAuthorization", title: "Logitech Harmony device authorization", install: true) {
section("Allow Logitech Harmony to control these things...") { section("Allow Logitech Harmony to control these things...") {
input "switches", "capability.switch", title: "Which Switches?", multiple: true, required: false input "switches", "capability.switch", title: "Which Switches?", multiple: true, required: false
@@ -97,41 +96,38 @@ def authPage() {
def description = null def description = null
if (!state.HarmonyAccessToken) { if (!state.HarmonyAccessToken) {
if (!state.accessToken) { if (!state.accessToken) {
log.debug "Harmony - About to create access token" log.debug "About to create access token"
createAccessToken() createAccessToken()
} }
description = "Click to enter Harmony Credentials" description = "Click to enter Harmony Credentials"
def redirectUrl = buildRedirectUrl def redirectUrl = buildRedirectUrl
return dynamicPage(name: "Credentials", title: "Harmony", nextPage: null, uninstall: true, install:false) { return dynamicPage(name: "Credentials", title: "Harmony", nextPage: null, uninstall: true, install:false) {
section { paragraph title: "Note:", "This device has not been officially tested and certified to “Work with SmartThings”. You can connect it to your SmartThings home but performance may vary and we will not be able to provide support or assistance." } section { href url:redirectUrl, style:"embedded", required:true, title:"Harmony", description:description }
section { href url:redirectUrl, style:"embedded", required:true, title:"Harmony", description:description }
} }
} else { } else {
//device discovery request every 5 //25 seconds //device discovery request every 5 //25 seconds
int deviceRefreshCount = !state.deviceRefreshCount ? 0 : state.deviceRefreshCount as int int deviceRefreshCount = !state.deviceRefreshCount ? 0 : state.deviceRefreshCount as int
state.deviceRefreshCount = deviceRefreshCount + 1 state.deviceRefreshCount = deviceRefreshCount + 1
def refreshInterval = 5 def refreshInterval = 3
def huboptions = state.HarmonyHubs ?: [] def huboptions = state.HarmonyHubs ?: []
def actoptions = state.HarmonyActivities ?: [] def actoptions = state.HarmonyActivities ?: []
def numFoundHub = huboptions.size() ?: 0 def numFoundHub = huboptions.size() ?: 0
def numFoundAct = actoptions.size() ?: 0 def numFoundAct = actoptions.size() ?: 0
if((deviceRefreshCount % 5) == 0) { if((deviceRefreshCount % 5) == 0) {
discoverDevices() discoverDevices()
} }
return dynamicPage(name:"Credentials", title:"Discovery Started!", nextPage:"", refreshInterval:refreshInterval, install:true, uninstall: true) { return dynamicPage(name:"Credentials", title:"Discovery Started!", nextPage:"", refreshInterval:refreshInterval, install:true, uninstall: true) {
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.") { 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 (${numFoundHub} found)", multiple:true, submitOnChange: true, options:huboptions input "selectedhubs", "enum", required:false, title:"Select Harmony Hubs (${numFoundHub} found)", multiple:true, options:huboptions
} }
// Virtual activity flag // Virtual activity flag
if (numFoundHub > 0 && numFoundAct > 0 && true) if (numFoundHub > 0 && numFoundAct > 0 && true)
section("You can also add activities as virtual switches for other convenient integrations") { section("You can also add activities as virtual switches for other convenient integrations") {
input "selectedactivities", "enum", required:false, title:"Select Harmony Activities (${numFoundAct} found)", multiple:true, submitOnChange: true, options:actoptions input "selectedactivities", "enum", required:false, title:"Select Harmony Activities (${numFoundAct} found)", multiple:true, options:actoptions
} }
if (state.resethub) 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.") {}
} }
} }
@@ -141,13 +137,13 @@ def callback() {
def redirectUrl = null def redirectUrl = null
if (params.authQueryString) { if (params.authQueryString) {
redirectUrl = URLDecoder.decode(params.authQueryString.replaceAll(".+&redirect_url=", "")) redirectUrl = URLDecoder.decode(params.authQueryString.replaceAll(".+&redirect_url=", ""))
log.debug "Harmony - redirectUrl: ${redirectUrl}" log.debug "redirectUrl: ${redirectUrl}"
} else { } else {
log.warn "Harmony - No authQueryString" log.warn "No authQueryString"
} }
if (state.HarmonyAccessToken) { if (state.HarmonyAccessToken) {
log.debug "Harmony - Access token already exists" log.debug "Access token already exists"
discovery() discovery()
success() success()
} else { } else {
@@ -155,27 +151,27 @@ def callback() {
if (code) { if (code) {
if (code.size() > 6) { if (code.size() > 6) {
// Harmony code // Harmony code
log.debug "Harmony - Exchanging code for access token" log.debug "Exchanging code for access token"
receiveToken(redirectUrl) receiveToken(redirectUrl)
} else { } else {
// Initiate the Harmony OAuth flow. // Initiate the Harmony OAuth flow.
init() init()
} }
} else { } else {
log.debug "Harmony - This code should be unreachable" log.debug "This code should be unreachable"
success() success()
} }
} }
} }
def init() { def init() {
log.debug "Harmony - Requesting Code" log.debug "Requesting Code"
def oauthParams = [client_id: "${appSettings.clientId}", scope: "remote", response_type: "code", redirect_uri: "${servercallbackUrl}" ] def oauthParams = [client_id: "${appSettings.clientId}", scope: "remote", response_type: "code", redirect_uri: "${servercallbackUrl}" ]
redirect(location: "https://home.myharmony.com/oauth2/authorize?${toQueryString(oauthParams)}") redirect(location: "https://home.myharmony.com/oauth2/authorize?${toQueryString(oauthParams)}")
} }
def receiveToken(redirectUrl = null) { def receiveToken(redirectUrl = null) {
log.debug "Harmony - receiveToken" log.debug "receiveToken"
def oauthParams = [ client_id: "${appSettings.clientId}", client_secret: "${appSettings.clientSecret}", grant_type: "authorization_code", code: params.code ] def oauthParams = [ client_id: "${appSettings.clientId}", client_secret: "${appSettings.clientSecret}", grant_type: "authorization_code", code: params.code ]
def params = [ def params = [
uri: "https://home.myharmony.com/oauth2/token?${toQueryString(oauthParams)}", uri: "https://home.myharmony.com/oauth2/token?${toQueryString(oauthParams)}",
@@ -186,7 +182,7 @@ def receiveToken(redirectUrl = null) {
} }
} catch (java.util.concurrent.TimeoutException e) { } catch (java.util.concurrent.TimeoutException e) {
fail(e) fail(e)
log.warn "Harmony - Connection timed out, please try again later." log.warn "Connection timed out, please try again later."
} }
discovery() discovery()
if (state.HarmonyAccessToken) { if (state.HarmonyAccessToken) {
@@ -310,7 +306,7 @@ def buildRedirectUrl(page) {
def installed() { def installed() {
if (!state.accessToken) { if (!state.accessToken) {
log.debug "Harmony - About to create access token" log.debug "About to create access token"
createAccessToken() createAccessToken()
} else { } else {
initialize() initialize()
@@ -318,8 +314,10 @@ def installed() {
} }
def updated() { def updated() {
unsubscribe()
unschedule()
if (!state.accessToken) { if (!state.accessToken) {
log.debug "Harmony - About to create access token" log.debug "About to create access token"
createAccessToken() createAccessToken()
} else { } else {
initialize() initialize()
@@ -330,9 +328,9 @@ def uninstalled() {
if (state.HarmonyAccessToken) { if (state.HarmonyAccessToken) {
try { try {
state.HarmonyAccessToken = "" state.HarmonyAccessToken = ""
log.debug "Harmony - Success disconnecting Harmony from SmartThings" log.debug "Success disconnecting Harmony from SmartThings"
} catch (groovyx.net.http.HttpResponseException e) { } catch (groovyx.net.http.HttpResponseException e) {
log.error "Harmony - Error disconnecting Harmony from SmartThings: ${e.statusCode}" log.error "Error disconnecting Harmony from SmartThings: ${e.statusCode}"
} }
} }
} }
@@ -341,8 +339,7 @@ def initialize() {
state.aux = 0 state.aux = 0
if (selectedhubs || selectedactivities) { if (selectedhubs || selectedactivities) {
addDevice() addDevice()
runEvery5Minutes("poll") runEvery5Minutes("poll")
getActivityList()
} }
} }
@@ -351,7 +348,7 @@ def getHarmonydevices() {
} }
Map discoverDevices() { Map discoverDevices() {
log.trace "Harmony - Discovering devices..." log.trace "Discovering devices..."
discovery() discovery()
if (getHarmonydevices() != []) { if (getHarmonydevices() != []) {
def devices = state.Harmonydevices.hubs def devices = state.Harmonydevices.hubs
@@ -363,7 +360,7 @@ Map discoverDevices() {
def hubname = getHubName(it.key) def hubname = getHubName(it.key)
def hubvalue = "${hubname}" def hubvalue = "${hubname}"
hubs["harmony-${hubkey}"] = hubvalue hubs["harmony-${hubkey}"] = hubvalue
it.value.response.data.activities.each { it.value.response.data.activities.each {
def value = "${it.value.name}" def value = "${it.value.name}"
def key = "harmony-${hubkey}-${it.key}" def key = "harmony-${hubkey}-${it.key}"
activities["${key}"] = value activities["${key}"] = value
@@ -381,177 +378,164 @@ def discovery() {
try { try {
httpGet(uri: url, headers: ["Accept": "application/json"]) {response -> httpGet(uri: url, headers: ["Accept": "application/json"]) {response ->
if (response.status == 200) { if (response.status == 200) {
log.debug "Harmony - valid Token" log.debug "valid Token"
state.Harmonydevices = response.data state.Harmonydevices = response.data
state.resethub = false state.resethub = false
getActivityList()
poll()
} else { } else {
log.debug "Harmony - Error: $response.status" log.debug "Error: $response.status"
} }
} }
} catch (groovyx.net.http.HttpResponseException e) { } catch (groovyx.net.http.HttpResponseException e) {
if (e.statusCode == 401) { // token is expired if (e.statusCode == 401) { // token is expired
state.remove("HarmonyAccessToken") state.remove("HarmonyAccessToken")
log.warn "Harmony - Harmony Access token has expired" log.warn "Harmony Access token has expired"
} }
} catch (java.net.SocketTimeoutException e) { } catch (java.net.SocketTimeoutException e) {
log.warn "Harmony - Connection to the hub timed out. Please restart the hub and try again." log.warn "Connection to the hub timed out. Please restart the hub and try again."
state.resethub = true state.resethub = true
} catch (e) { } catch (e) {
log.info "Harmony - Error: $e" log.info "Logitech Harmony - Error: $e"
} }
return null return null
} }
def addDevice() { def addDevice() {
log.trace "Harmony - Adding Hubs" log.trace "Adding Hubs"
selectedhubs.each { dni -> selectedhubs.each { dni ->
def d = getChildDevice(dni) def d = getChildDevice(dni)
if(!d) { if(!d) {
def newAction = state.HarmonyHubs.find { it.key == dni } def newAction = state.HarmonyHubs.find { it.key == dni }
d = addChildDevice("smartthings", "Logitech Harmony Hub C2C", dni, null, [label:"${newAction.value}"]) d = addChildDevice("smartthings", "Logitech Harmony Hub C2C", dni, null, [label:"${newAction.value}"])
log.trace "Harmony - Created ${d.displayName} with id $dni" log.trace "created ${d.displayName} with id $dni"
poll() poll()
} else { } else {
log.trace "Harmony - Found ${d.displayName} with id $dni already exists" log.trace "found ${d.displayName} with id $dni already exists"
} }
} }
log.trace "Harmony - Adding Activities" log.trace "Adding Activities"
selectedactivities.each { dni -> selectedactivities.each { dni ->
def d = getChildDevice(dni) def d = getChildDevice(dni)
if(!d) { if(!d) {
def newAction = state.HarmonyActivities.find { it.key == dni } def newAction = state.HarmonyActivities.find { it.key == dni }
if (newAction) { if (newAction) {
d = addChildDevice("smartthings", "Harmony Activity", dni, null, [label:"${newAction.value} [Harmony Activity]"]) d = addChildDevice("smartthings", "Harmony Activity", dni, null, [label:"${newAction.value} [Harmony Activity]"])
log.trace "Harmony - Created ${d.displayName} with id $dni" log.trace "created ${d.displayName} with id $dni"
poll() poll()
} }
} else { } else {
log.trace "Harmony - Found ${d.displayName} with id $dni already exists" log.trace "found ${d.displayName} with id $dni already exists"
} }
} }
} }
def activity(dni,mode) { def activity(dni,mode) {
def tokenParam = [auth: state.HarmonyAccessToken] def Params = [auth: state.HarmonyAccessToken]
def url def msg = "Command failed"
def url = ''
if (dni == "all") { if (dni == "all") {
url = "https://home.myharmony.com/cloudapi/activity/off?${toQueryString(tokenParam)}" url = "https://home.myharmony.com/cloudapi/activity/off?${toQueryString(Params)}"
} else { } else {
def aux = dni.split('-') def aux = dni.split('-')
def hubId = aux[1] def hubId = aux[1]
if (mode == "hub" || (aux.size() <= 2) || (aux[2] == "off")){ if (mode == "hub" || (aux.size() <= 2) || (aux[2] == "off")){
url = "https://home.myharmony.com/cloudapi/hub/${hubId}/activity/off?${toQueryString(tokenParam)}" url = "https://home.myharmony.com/cloudapi/hub/${hubId}/activity/off?${toQueryString(Params)}"
} else { } else {
def activityId = aux[2] def activityId = aux[2]
url = "https://home.myharmony.com/cloudapi/hub/${hubId}/activity/${activityId}/${mode}?${toQueryString(tokenParam)}" url = "https://home.myharmony.com/cloudapi/hub/${hubId}/activity/${activityId}/${mode}?${toQueryString(Params)}"
} }
} }
def params = [ try {
uri: url, httpPostJson(uri: url) { response ->
contentType: 'application/json' if (response.data.code == 200 || dni == "all") {
] msg = "Command sent succesfully"
asynchttp_v1.post('activityResponse', params) state.aux = 0
return "Command Sent" } else {
} msg = "Command failed. Error: $response.data.code"
}
def activityResponse(response, data) { }
if (response.hasError()) { } catch (groovyx.net.http.HttpResponseException ex) {
log.error "Harmony - response has error: $response.errorMessage" log.error ex
if (response.status == 401) { // token is expired if (state.aux == 0) {
state.remove("HarmonyAccessToken") state.aux = 1
log.warn "Harmony - Access token has expired" activity(dni,mode)
} else {
msg = ex
state.aux = 0
}
} catch(Exception ex) {
msg = ex
} }
} else { runIn(10, "poll", [overwrite: true])
if (response.status == 200) { return msg
log.trace "Harmony - Command sent succesfully"
poll()
} else {
log.trace "Harmony - Command failed. Error: $response.status"
}
}
} }
def poll() { def poll() {
// GET THE LIST OF ACTIVITIES // GET THE LIST OF ACTIVITIES
if (state.HarmonyAccessToken) { if (state.HarmonyAccessToken) {
def tokenParam = [auth: state.HarmonyAccessToken] getActivityList()
def params = [ def Params = [auth: state.HarmonyAccessToken]
uri: "https://home.myharmony.com/cloudapi/state?${toQueryString(tokenParam)}", def url = "https://home.myharmony.com/cloudapi/state?${toQueryString(Params)}"
headers: ["Accept": "application/json"], try {
contentType: 'application/json' httpGet(uri: url, headers: ["Accept": "application/json"]) {response ->
] def map = [:]
asynchttp_v1.get('pollResponse', params) response.data.hubs.each {
} else { if (it.value.message == "OK") {
log.warn "Harmony - Access token has expired" map["${it.key}"] = "${it.value.response.data.currentAvActivity},${it.value.response.data.activityStatus}"
} def hub = getChildDevice("harmony-${it.key}")
} if (hub) {
if (it.value.response.data.currentAvActivity == "-1") {
def pollResponse(response, data) { hub.sendEvent(name: "currentActivity", value: "--", descriptionText: "There isn't any activity running", display: false)
if (response.hasError()) { } else {
log.error "Harmony - response has error: $response.errorMessage" def currentActivity = getActivityName(it.value.response.data.currentAvActivity,it.key)
if (response.status == 401) { // token is expired hub.sendEvent(name: "currentActivity", value: currentActivity, descriptionText: "Current activity is ${currentActivity}", display: false)
state.remove("HarmonyAccessToken") }
log.warn "Harmony - Access token has expired" }
} } else {
} else { log.trace it.value.message
def ResponseValues }
try { }
// json response already parsed into JSONElement object def activities = getChildDevices()
ResponseValues = response.json def activitynotrunning = true
} catch (e) { activities.each { activity ->
log.error "Harmony - error parsing json from response: $e" def act = activity.deviceNetworkId.split('-')
} if (act.size() > 2) {
if (ResponseValues) { def aux = map.find { it.key == act[1] }
def map = [:] if (aux) {
ResponseValues.hubs.each { def aux2 = aux.value.split(',')
if (it.value.message == "OK") { def childDevice = getChildDevice(activity.deviceNetworkId)
map["${it.key}"] = "${it.value.response.data.currentAvActivity},${it.value.response.data.activityStatus}" if ((act[2] == aux2[0]) && (aux2[1] == "1" || aux2[1] == "2")) {
def hub = getChildDevice("harmony-${it.key}") childDevice?.sendEvent(name: "switch", value: "on")
if (hub) { if (aux2[1] == "1")
if (it.value.response.data.currentAvActivity == "-1") { runIn(5, "poll", [overwrite: true])
hub.sendEvent(name: "currentActivity", value: "--", descriptionText: "There isn't any activity running", display: false) } else {
} else { childDevice?.sendEvent(name: "switch", value: "off")
def currentActivity if (aux2[1] == "3")
def activityDTH = getChildDevice("harmony-${it.key}-${it.value.response.data.currentAvActivity}") runIn(5, "poll", [overwrite: true])
if (activityDTH) }
currentActivity = activityDTH.device.displayName }
else
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 "Harmony - error response: $it.value.message"
}
}
def activities = getChildDevices()
def activitynotrunning = true
activities.each { activity ->
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)
if ((act[2] == aux2[0]) && (aux2[1] == "1" || aux2[1] == "2")) {
childDevice?.sendEvent(name: "switch", value: "on")
if (aux2[1] == "1")
runIn(5, "poll", [overwrite: true])
} else {
childDevice?.sendEvent(name: "switch", value: "off")
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")
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.info "Logitech Harmony - Error: $e"
} }
} else { }
log.debug "Harmony - did not get json results from response body: $response.data"
}
}
} }
def getActivityList() { def getActivityList() {
// GET ACTIVITY'S NAME
if (state.HarmonyAccessToken) { if (state.HarmonyAccessToken) {
def Params = [auth: state.HarmonyAccessToken] def Params = [auth: state.HarmonyAccessToken]
def url = "https://home.myharmony.com/cloudapi/activity/all?${toQueryString(Params)}" def url = "https://home.myharmony.com/cloudapi/activity/all?${toQueryString(Params)}"
@@ -568,19 +552,21 @@ def getActivityList() {
[id: it.key, name: it.value['name'], type: it.value['type']] [id: it.key, name: it.value['name'], type: it.value['type']]
} }
activities += [id: "off", name: "Activity OFF", type: "0"] 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) { } catch (groovyx.net.http.HttpResponseException e) {
log.trace e log.trace e
} catch (java.net.SocketTimeoutException e) { } catch (java.net.SocketTimeoutException e) {
log.trace e log.trace e
} catch(Exception e) { } catch(Exception e) {
log.trace e log.trace e
} }
} }
return activity
} }
def getActivityName(activity,hubId) { def getActivityName(activity,hubId) {
@@ -643,7 +629,7 @@ def sendNotification(msg) {
def hookEventHandler() { def hookEventHandler() {
// log.debug "In hookEventHandler method." // log.debug "In hookEventHandler method."
log.debug "Harmony - request = ${request}" log.debug "request = ${request}"
def json = request.JSON def json = request.JSON
@@ -652,14 +638,14 @@ def hookEventHandler() {
} }
def listDevices() { def listDevices() {
log.debug "Harmony - getDevices(), params: ${params}" log.debug "getDevices, params: ${params}"
allDevices.collect { allDevices.collect {
deviceItem(it) deviceItem(it)
} }
} }
def getDevice() { def getDevice() {
log.debug "Harmony - getDevice(), params: ${params}" log.debug "getDevice, params: ${params}"
def device = allDevices.find { it.id == params.id } def device = allDevices.find { it.id == params.id }
if (!device) { if (!device) {
render status: 404, data: '{"msg": "Device not found"}' render status: 404, data: '{"msg": "Device not found"}'
@@ -672,7 +658,7 @@ def updateDevice() {
def data = request.JSON def data = request.JSON
def command = data.command def command = data.command
def arguments = data.arguments def arguments = data.arguments
log.debug "Harmony - updateDevice(), params: ${params}, request: ${data}" log.debug "updateDevice, params: ${params}, request: ${data}"
if (!command) { if (!command) {
render status: 400, data: '{"msg": "command is required"}' render status: 400, data: '{"msg": "command is required"}'
} else { } else {
@@ -740,7 +726,7 @@ def getDeviceCapabilityCommands(deviceCapabilities) {
} }
def listSubscriptions() { def listSubscriptions() {
log.debug "Harmony - listSubscriptions()" log.debug "listSubscriptions()"
app.subscriptions?.findAll { it.device?.device && it.device.id }?.collect { app.subscriptions?.findAll { it.device?.device && it.device.id }?.collect {
def deviceInfo = state[it.device.id] def deviceInfo = state[it.device.id]
def response = [ def response = [
@@ -761,17 +747,17 @@ def addSubscription() {
def attribute = data.attributeName def attribute = data.attributeName
def callbackUrl = data.callbackUrl def callbackUrl = data.callbackUrl
log.debug "Harmony - addSubscription, params: ${params}, request: ${data}" log.debug "addSubscription, params: ${params}, request: ${data}"
if (!attribute) { if (!attribute) {
render status: 400, data: '{"msg": "attributeName is required"}' render status: 400, data: '{"msg": "attributeName is required"}'
} else { } else {
def device = allDevices.find { it.id == data.deviceId } def device = allDevices.find { it.id == data.deviceId }
if (device) { if (device) {
if (!state.harmonyHubs) { if (!state.harmonyHubs) {
log.debug "Harmony - Adding callbackUrl: $callbackUrl" log.debug "Adding callbackUrl: $callbackUrl"
state[device.id] = [callbackUrl: callbackUrl] state[device.id] = [callbackUrl: callbackUrl]
} }
log.debug "Harmony - Adding subscription" log.debug "Adding subscription"
def subscription = subscribe(device, attribute, deviceHandler) def subscription = subscribe(device, attribute, deviceHandler)
if (!subscription || !subscription.eventSubscription) { if (!subscription || !subscription.eventSubscription) {
subscription = app.subscriptions?.find { it.device?.device && it.device.id == data.deviceId && it.data == attribute && it.handler == 'deviceHandler' } subscription = app.subscriptions?.find { it.device?.device && it.device.id == data.deviceId && it.data == attribute && it.handler == 'deviceHandler' }
@@ -799,7 +785,7 @@ def removeSubscription() {
log.debug "removeSubscription, params: ${params}, subscription: ${subscription}, device: ${device}" log.debug "removeSubscription, params: ${params}, subscription: ${subscription}, device: ${device}"
if (device) { if (device) {
log.debug "Harmony - Removing subscription for device: ${device.id}" log.debug "Removing subscription for device: ${device.id}"
state.remove(device.id) state.remove(device.id)
unsubscribe(device) unsubscribe(device)
} }
@@ -823,17 +809,16 @@ def deviceHandler(evt) {
def deviceInfo = state[evt.deviceId] def deviceInfo = state[evt.deviceId]
if (state.harmonyHubs) { if (state.harmonyHubs) {
state.harmonyHubs.each { harmonyHub -> state.harmonyHubs.each { harmonyHub ->
log.trace "Harmony - Sending data to $harmonyHub.name"
sendToHarmony(evt, harmonyHub.callbackUrl) sendToHarmony(evt, harmonyHub.callbackUrl)
} }
} else if (deviceInfo) { } else if (deviceInfo) {
if (deviceInfo.callbackUrl) { if (deviceInfo.callbackUrl) {
sendToHarmony(evt, deviceInfo.callbackUrl) sendToHarmony(evt, deviceInfo.callbackUrl)
} else { } else {
log.warn "Harmony - No callbackUrl set for device: ${evt.deviceId}" log.warn "No callbackUrl set for device: ${evt.deviceId}"
} }
} else { } else {
log.warn "Harmony - No subscribed device found for device: ${evt.deviceId}" log.warn "No subscribed device found for device: ${evt.deviceId}"
} }
} }
@@ -857,12 +842,12 @@ def sendToHarmony(evt, String callbackUrl) {
body: [evt: [deviceId: evt.deviceId, name: evt.name, value: evt.value]] body: [evt: [deviceId: evt.deviceId, name: evt.name, value: evt.value]]
] ]
try { try {
log.debug "Harmony - Sending data to Harmony Cloud: $params" log.debug "Sending data to Harmony Cloud: $params"
httpPostJson(params) { resp -> httpPostJson(params) { resp ->
log.debug "Harmony - Cloud Response: ${resp.status}" log.debug "Harmony Cloud - Response: ${resp.status}"
} }
} catch (e) { } catch (e) {
log.error "Harmony - Cloud Something went wrong: $e" log.error "Harmony Cloud - Something went wrong: $e"
} }
} }
} }
@@ -887,10 +872,10 @@ def activityCallback() {
if (data.errorCode == "200") { if (data.errorCode == "200") {
device.setCurrentActivity(data.currentActivityId) device.setCurrentActivity(data.currentActivityId)
} else { } else {
log.warn "Harmony - Activity callback error: ${data}" log.warn "Activity callback error: ${data}"
} }
} else { } else {
log.warn "Harmony - Activity callback sent to non-existant dni: ${params.dni}" log.warn "Activity callback sent to non-existant dni: ${params.dni}"
} }
render status: 200, data: '{"msg": "Successfully received callbackUrl"}' render status: 200, data: '{"msg": "Successfully received callbackUrl"}'
} }
@@ -924,13 +909,13 @@ def harmony() {
} }
def deleteHarmony() { def deleteHarmony() {
log.debug "Harmony - Trying to delete Harmony hub with mac: ${params.mac}" log.debug "Trying to delete Harmony hub with mac: ${params.mac}"
def harmonyHub = state.harmonyHubs?.find { it.mac == params.mac } def harmonyHub = state.harmonyHubs?.find { it.mac == params.mac }
if (harmonyHub) { if (harmonyHub) {
log.debug "Harmony - Deleting Harmony hub with mac: ${params.mac}" log.debug "Deleting Harmony hub with mac: ${params.mac}"
state.harmonyHubs.remove(harmonyHub) state.harmonyHubs.remove(harmonyHub)
} else { } else {
log.debug "Harmony - Couldn't find Harmony hub with mac: ${params.mac}" log.debug "Couldn't find Harmony hub with mac: ${params.mac}"
} }
render status: 204, data: "{}" render status: 204, data: "{}"
} }

View File

@@ -26,22 +26,17 @@ definition(
) )
preferences { preferences {
section ("In addition to push notifications, send text alerts to...") {
if (!(location.zipCode || ( location.latitude && location.longitude )) && location.channelName == 'samsungtv') { input("recipients", "contact", title: "Send notifications to") {
section { paragraph title: "Note:", "Location is required for this SmartApp. Go to 'Location Name' settings to setup your correct location." } input "phone1", "phone", title: "Phone Number 1", required: false
input "phone2", "phone", title: "Phone Number 2", required: false
input "phone3", "phone", title: "Phone Number 3", required: false
}
} }
if (location.channelName != 'samsungtv') { section ("Zip code (optional, defaults to location coordinates)...") {
section( "Set your location" ) { input "zipCode", "text", title: "Zip code" } input "zipcode", "text", title: "Zip Code", required: false
} }
section ("In addition to push notifications, send text alerts to...") {
input("recipients", "contact", title: "Send notifications to") {
input "phone1", "phone", title: "Phone Number 1", required: false
input "phone2", "phone", title: "Phone Number 2", required: false
input "phone3", "phone", title: "Phone Number 3", required: false
}
}
} }
def installed() { def installed() {
@@ -66,7 +61,7 @@ def checkForSevereWeather() {
def alerts def alerts
if(locationIsDefined()) { if(locationIsDefined()) {
if(zipcodeIsValid()) { if(zipcodeIsValid()) {
alerts = getWeatherFeature("alerts", zipCode)?.alerts alerts = getWeatherFeature("alerts", zipcode)?.alerts
} else { } else {
log.warn "Severe Weather Alert: Invalid zipcode entered, defaulting to location's zipcode" log.warn "Severe Weather Alert: Invalid zipcode entered, defaulting to location's zipcode"
alerts = getWeatherFeature("alerts")?.alerts alerts = getWeatherFeature("alerts")?.alerts

View File

@@ -86,7 +86,6 @@ def firstPage()
def lightSwitchesDiscovered = lightSwitchesDiscovered() def lightSwitchesDiscovered = lightSwitchesDiscovered()
return dynamicPage(name:"firstPage", title:"Discovery Started!", nextPage:"", refreshInterval: refreshInterval, install:true, uninstall: true) { return dynamicPage(name:"firstPage", title:"Discovery Started!", nextPage:"", refreshInterval: refreshInterval, install:true, uninstall: true) {
section { paragraph title: "Note:", "This device has not been officially tested and certified to “Work with SmartThings”. You can connect it to your SmartThings home but performance may vary and we will not be able to provide support or assistance." }
section("Select a device...") { section("Select a device...") {
input "selectedSwitches", "enum", required:false, title:"Select Wemo Switches \n(${switchesDiscovered.size() ?: 0} found)", multiple:true, options:switchesDiscovered input "selectedSwitches", "enum", required:false, title:"Select Wemo Switches \n(${switchesDiscovered.size() ?: 0} found)", multiple:true, options:switchesDiscovered
input "selectedMotions", "enum", required:false, title:"Select Wemo Motions \n(${motionsDiscovered.size() ?: 0} found)", multiple:true, options:motionsDiscovered input "selectedMotions", "enum", required:false, title:"Select Wemo Motions \n(${motionsDiscovered.size() ?: 0} found)", multiple:true, options:motionsDiscovered