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7 changed files with 230 additions and 238 deletions

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@@ -0,0 +1,167 @@
/**
* Copyright 2015 SmartThings
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except
* in compliance with the License. You may obtain a copy of the License at:
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software distributed under the License is distributed
* on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License
* for the specific language governing permissions and limitations under the License.
*
*/
metadata {
definition (name: "Sump Pump Controller", namespace: "fortrezz", author: "FortrezZ, LLC") {
capability "Sensor"
attribute "alarmState", "string"
attribute "powerAlert", "number"
attribute "sumpAlert", "number"
fingerprint deviceId: "0x0701", inClusters: "0x5E,0x86,0x72,0x5A,0x85,0x59,0x73,0x20,0x7A,0x71"
}
simulator {
status "replace battery now": "command: 7105, payload: 00 00 00 FF 08 0B 00 00"
status "battery fully charged": "command: 7105, payload: 00 00 00 FF 08 0D 00 00"
status "AC mains disconnected": "command: 7105, payload: 00 00 00 FF 08 02 00 00"
status "AC mains reconnected": "command: 7105, payload: 00 00 00 FF 08 03 00 00"
status "Excess Pumping": "command: 7105, payload: 00 00 00 FF 09 03 01 01 00"
status "Float Error": "command: 7105, payload: 00 00 00 FF 09 03 01 02 00"
status "General Error": "command: 7105, payload: 00 00 00 FF 09 01 00 00"
}
tiles (scale: 2){
multiAttributeTile(name:"alert", type: "lighting", width: 6, height: 4){
tileAttribute ("device.alarm", key: "PRIMARY_CONTROL") {
attributeState("clear", label:"clear", icon:"http://swiftlet.technology/wp-content/uploads/2016/04/Ok-96.png", backgroundColor:"#ffffff")
attributeState("alert", label:"Alert!", icon:"http://swiftlet.technology/wp-content/uploads/2016/04/Error-96.png", backgroundColor:"#ff5b5b")
}
}
main "alert"
details(["alert"])
}
}
def parse(String description) {
def results = []
if (description.startsWith("Err")) {
results << createEvent(descriptionText:description, displayed:true)
} else {
def cmd = zwave.parse(description, [ 0x80: 1, 0x84: 1, 0x71: 2, 0x72: 1 ])
if (cmd) {
zwaveEvent(cmd, results)
}
}
log.debug "\"$description\" parsed to ${results.inspect()}"
return results
}
// Notification Report from SPM
def zwaveEvent(physicalgraph.zwave.commands.alarmv2.AlarmReport cmd, results) {
def powerAlert = device.currentValue("powerAlert")
if (powerAlert == null)
{
powerAlert = 0
}
def sumpAlert = device.currentValue("sumpAlert")
if (sumpAlert == null)
{
sumpAlert = 0
}
if (cmd.zwaveAlarmType == 8) {
if (cmd.zwaveAlarmEvent == 2) {
results << createEvent(name: "alarmState", value: "acMainsDisconnected", descriptionText: "AC Mains Disconnected")
powerAlert = powerAlert + 1
} else if (cmd.zwaveAlarmEvent == 3) {
results << createEvent(name: "alarmState", value: "acMainsReconnected", descriptionText: "AC Mains Reconnected")
powerAlert = powerAlert - 1
} else if (cmd.zwaveAlarmEvent == 11) {
results << createEvent(name: "alarmState", value: "replaceBatteryNow", descriptionText: "Replace AA batteries in Z-wave module")
powerAlert = powerAlert + 1
} else if (cmd.zwaveAlarmEvent == 13) {
results << createEvent(name: "alarmState", value: "batteryFullyCharged", descriptionText: "AA Batteries Replaced")
powerAlert = powerAlert - 1
}
if (powerAlert < 0)
{
powerAlert = 0
}
} else if (cmd.zwaveAlarmType == 9) {
if (cmd.zwaveAlarmEvent == 1) {
results << createEvent(name: "alarmState", value: "systemHardwareFailure", descriptionText: "Sump Pump Error, refer to Sump Pump Controller Unit")
sumpAlert = sumpAlert + 1
} else if (cmd.zwaveAlarmEvent == 3) {
if (cmd.eventParameter[0] == 0) {
results << createEvent(name: "alarmState", value: "alarmClear", descriptionText: "Alarm has been cleared")
sumpAlert = 0
} else if (cmd.eventParameter[0] == 1) {
results << createEvent(name: "alarmState", value: "floatError", descriptionText: "Pump or float problem")
sumpAlert = sumpAlert + 1
} else if (cmd.eventParameter[0] == 2) {
results << createEvent(name: "alarmState", value: "backupPumpActivated", descriptionText: "Backup pump was activated")
sumpAlert = sumpAlert + 1
} else if (cmd.eventParameter[0] == 3) {
results << createEvent(name: "alarmState", value: "highWater", descriptionText: "High water alarm")
sumpAlert = sumpAlert + 1
} else if (cmd.eventParameter[0] == 4) {
results << createEvent(name: "alarmState", value: "addWater", descriptionText: "Add distilled water to the battery")
sumpAlert = sumpAlert + 1
} else if (cmd.eventParameter[0] == 5) {
results << createEvent(name: "alarmState", value: "backupPumpError", descriptionText: "Backup pump is defective or not connected")
sumpAlert = sumpAlert + 1
} else if (cmd.eventParameter[0] == 6) {
results << createEvent(name: "alarmState", value: "9VBatteryLow", descriptionText: "9 volt battery is low or slide switch is OFF")
sumpAlert = sumpAlert + 1
} else if (cmd.eventParameter[0] == 7) {
results << createEvent(name: "alarmState", value: "12VBatteryError", descriptionText: "Problem with backup sump pump battery")
sumpAlert = sumpAlert + 1
} else if (cmd.eventParameter[0] == 8) {
results << createEvent(name: "alarmState", value: "checkCable", descriptionText: "Check your cable connection (to Z-wave module)")
sumpAlert = sumpAlert + 1
}
}
if (sumpAlert < 0)
{
sumpAlert = 0
}
}
if ((sumpAlert > 0) || (powerAlert > 0))
{
sendEvent(name: "alarm", value: "alert", displayed: false)
}
else
{
sendEvent(name: "alarm", value: "clear", displayed: false)
}
results
}
def zwaveEvent(physicalgraph.zwave.commands.wakeupv1.WakeUpNotification cmd, results) {
results << new physicalgraph.device.HubAction(zwave.wakeUpV1.wakeUpNoMoreInformation().format())
results << createEvent(descriptionText: "$device.displayName woke up", isStateChange: false)
}
def zwaveEvent(physicalgraph.zwave.commands.batteryv1.BatteryReport cmd, results) {
def map = [ name: "battery", unit: "%" ]
if (cmd.batteryLevel == 0xFF) {
map.value = 1
map.descriptionText = "$device.displayName battery is low!"
} else {
map.value = cmd.batteryLevel
}
results << createEvent(map)
}
def zwaveEvent(physicalgraph.zwave.Command cmd, results) {
def event = [ displayed: false ]
event.linkText = device.label ?: device.name
event.descriptionText = "$event.linkText: $cmd"
results << createEvent(event)
}

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@@ -1,183 +0,0 @@
/**
* Z-Wave Garage Door Opener
*
* Copyright 2014 SmartThings
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except
* in compliance with the License. You may obtain a copy of the License at:
*
* 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: "Telguard GDC1", namespace: "fortrezz", author: "FortrezZ, LLC") {
capability "Actuator"
capability "Door Control"
capability "Garage Door Control"
capability "Contact Sensor"
capability "Refresh"
capability "Sensor"
capability "Switch"
fingerprint deviceId: "0x1000", inClusters: "0x72, 0x86, 0x25"
}
simulator {
status "closed": "command: 9881, payload: 00 66 03 00"
status "opening": "command: 9881, payload: 00 66 03 FE"
status "open": "command: 9881, payload: 00 66 03 FF"
status "closing": "command: 9881, payload: 00 66 03 FC"
status "unknown": "command: 9881, payload: 00 66 03 FD"
reply "988100660100": "command: 9881, payload: 00 66 03 FC"
reply "9881006601FF": "command: 9881, payload: 00 66 03 FE"
}
tiles {
standardTile("toggle", "device.door", width: 2, height: 2) {
state("unknown", label:'${name}', action:"refresh.refresh", icon:"st.doors.garage.garage-open", backgroundColor:"#ffa81e")
state("closed", label:'${name}', action:"door control.open", icon:"st.doors.garage.garage-closed", backgroundColor:"#79b821", nextState:"opening")
state("open", label:'${name}', action:"door control.close", icon:"st.doors.garage.garage-open", backgroundColor:"#ffa81e", nextState:"closing")
state("opening", label:'${name}', icon:"st.doors.garage.garage-opening", backgroundColor:"#ffe71e")
state("closing", label:'${name}', icon:"st.doors.garage.garage-closing", backgroundColor:"#ffe71e")
}
standardTile("open", "device.door", inactiveLabel: false, decoration: "flat") {
state "default", label:'open', action:"door control.open", icon:"st.doors.garage.garage-opening"
}
standardTile("close", "device.door", inactiveLabel: false, decoration: "flat") {
state "default", label:'close', action:"door control.close", icon:"st.doors.garage.garage-closing"
}
standardTile("refresh", "device.door", inactiveLabel: false, decoration: "flat") {
state "default", label:'', action:"refresh.refresh", icon:"st.secondary.refresh"
}
standardTile("switch", "device.switch", width: 2, height: 2, canChangeIcon: true) {
state "on", label:'${name}', action:"switch.off", icon:"st.switches.switch.off", backgroundColor:"#79b821", nextState:"turningOff"
state "off", label:'${name}', action:"switch.on", icon:"st.switches.switch.on", backgroundColor:"#ffffff", nextState:"turningOn"
state "turningOn", label:'${name}', action:"switch.off", icon:"st.switches.switch.off", backgroundColor:"#79b821", nextState:"turningOff"
state "turningOff", label:'${name}', action:"switch.on", icon:"st.switches.switch.on", backgroundColor:"#ffffff", nextState:"turningOn"
state "offline", label:'${name}', icon:"st.switches.switch.off", backgroundColor:"#ff0000"
}
main "toggle"
details(["toggle", "open", "close", "refresh"])
}
}
def parse(String description) {
def results = []
log.debug(description)
if (description.startsWith("Err")) {
results << createEvent(descriptionText:description, displayed:true)
} else {
def cmd = zwave.parse(description)
if (cmd) {
results = zwaveEvent(cmd)
}
}
log.debug "\"$description\" parsed to ${results.inspect()}"
return results
}
def open() {
sendEvent(name: "door", value: "opening", descriptionText: "$device.displayName: opening")
delayBetween([
zwave.basicV1.basicSet(value: 0xFF).format(),
zwave.basicV1.basicGet().format()
], 15000)
}
def close() {
sendEvent(name: "door", value: "closing", descriptionText: "$device.displayName: closing")
zwave.basicV1.basicSet(value: 0x00).format()
}
def on() {
open()
}
def off() {
close()
}
def refresh() {
zwave.basicV1.basicGet().format()
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicReport cmd) {
def map = [name: "door"]
def map2 = [name: "switch"]
if (cmd.value == 0xFF)
{
map.value = "open"
map2.value = "on"
sendEvent(map2)
}
else if (cmd.value == 0x00)
{
map.value = "closed"
map2.value = "off"
sendEvent(map2)
}
else
{
map.value = "unknown"
}
createEvent(map)
}
def zwaveEvent(physicalgraph.zwave.commands.switchbinaryv1.SwitchBinaryReport cmd) {
def map = [name: "door"]
def map2 = [name: "switch"]
if (cmd.value == 0xFF)
{
map.value = "open"
map2.value = "on"
sendEvent(map2)
}
else if (cmd.value == 0x00)
{
map.value = "closed"
map2.value = "off"
sendEvent(map2)
}
else
{
map.value = "unknown"
}
createEvent(map)
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd) {
def result = []
def msr = String.format("%04X-%04X-%04X", cmd.manufacturerId, cmd.productTypeId, cmd.productId)
log.debug "msr: $msr"
updateDataValue("MSR", msr)
result << createEvent(descriptionText: "$device.displayName MSR: $msr", isStateChange: false)
result
}
def zwaveEvent(physicalgraph.zwave.commands.versionv1.VersionReport cmd) {
def fw = "${cmd.applicationVersion}.${cmd.applicationSubVersion}"
updateDataValue("fw", fw)
def text = "$device.displayName: firmware version: $fw, Z-Wave version: ${cmd.zWaveProtocolVersion}.${cmd.zWaveProtocolSubVersion}"
createEvent(descriptionText: text, isStateChange: false)
}
def zwaveEvent(physicalgraph.zwave.commands.applicationstatusv1.ApplicationBusy cmd) {
def msg = cmd.status == 0 ? "try again later" :
cmd.status == 1 ? "try again in $cmd.waitTime seconds" :
cmd.status == 2 ? "request queued" : "sorry"
createEvent(displayed: true, descriptionText: "$device.displayName is busy, $msg")
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
createEvent(displayed: false, descriptionText: "$device.displayName: $cmd")
}

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@@ -27,9 +27,13 @@ Works with:
## Device Health
Aeon Labs MultiSensor 6 is polled by the hub.
Aeon MultiSensor reports in once every hour.
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.
* __122min__ checkInterval
* __32min__ checkInterval
## Troubleshooting

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@@ -130,13 +130,13 @@ metadata {
}
def installed(){
// Device-Watch simply pings if no device events received for 122min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated() {
// Device-Watch simply pings if no device events received for 122min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 60 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
log.debug "Updated with settings: ${settings}"
log.debug "${device.displayName} is now ${device.latestValue("powerSupply")}"

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@@ -171,8 +171,8 @@ private Map getBatteryResult(rawValue) {
def pct = batteryMap[volts]
result.value = pct
} else {
def minVolts = 2.4
def maxVolts = 2.7
def minVolts = 2.1
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
def roundedPct = Math.round(pct * 100)
if (roundedPct <= 0)

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@@ -274,7 +274,7 @@ private Map getBatteryResult(rawValue) {
result.value = pct
} else {
def minVolts = 2.1
def maxVolts = 2.7
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
def roundedPct = Math.round(pct * 100)
if (roundedPct <= 0)

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@@ -15,9 +15,10 @@ metadata {
definition (name: "Z-Wave Thermostat", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Temperature Measurement"
capability "Relative Humidity Measurement"
capability "Thermostat"
capability "Configuration"
capability "Refresh"
capability "Polling"
capability "Sensor"
capability "Health Check"
@@ -116,7 +117,7 @@ metadata {
state "cool", label:'${currentValue}° cool', backgroundColor:"#ffffff"
}
standardTile("refresh", "device.thermostatMode", inactiveLabel: false, decoration: "flat") {
state "default", action:"refresh.refresh", icon:"st.secondary.refresh"
state "default", action:"polling.poll", icon:"st.secondary.refresh"
}
main "temperature"
details(["temperature", "mode", "fanMode", "heatSliderControl", "heatingSetpoint", "coolSliderControl", "coolingSetpoint", "refresh"])
@@ -124,20 +125,13 @@ metadata {
}
def installed(){
sendHubCommand(new physicalgraph.device.HubAction(zwave.thermostatModeV2.thermostatModeSupportedGet().format()))
initialize()
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
}
def updated(){
initialize()
}
def initialize() {
// Device-Watch simply pings if no device events received for 32min(checkInterval)
sendEvent(name: "checkInterval", value: 2 * 15 * 60 + 2 * 60, displayed: false, data: [protocol: "zwave", hubHardwareId: device.hub.hardwareID])
unschedule()
runEvery5Minutes("refresh")
refresh()
}
def parse(String description)
@@ -155,7 +149,6 @@ def parse(String description)
]
if (map.name == "thermostatMode") {
state.lastTriedMode = map.value
map.data = [supportedThermostatModes:state.supportedThermostatModes]
if (map.value == "cool") {
map2.value = device.latestValue("coolingSetpoint")
log.info "THERMOSTAT, latest cooling setpoint = ${map2.value}"
@@ -179,7 +172,6 @@ def parse(String description)
}
} else if (map.name == "thermostatFanMode" && map.isStateChange) {
state.lastTriedFanMode = map.value
map.data = [supportedThermostatFanModes: state.supportedThermostatFanModes]
}
log.debug "Parse returned $result"
result
@@ -313,26 +305,26 @@ def zwaveEvent(physicalgraph.zwave.commands.thermostatfanmodev3.ThermostatFanMod
}
def zwaveEvent(physicalgraph.zwave.commands.thermostatmodev2.ThermostatModeSupportedReport cmd) {
def supportedModes = []
if(cmd.off) { supportedModes << "off" }
if(cmd.heat) { supportedModes << "heat" }
if(cmd.cool) { supportedModes << "cool" }
if(cmd.auto) { supportedModes << "auto" }
if(cmd.auxiliaryemergencyHeat) { supportedModes << "emergency heat" }
def supportedModes = ""
if(cmd.off) { supportedModes += "off " }
if(cmd.heat) { supportedModes += "heat " }
if(cmd.auxiliaryemergencyHeat) { supportedModes += "emergency heat " }
if(cmd.cool) { supportedModes += "cool " }
if(cmd.auto) { supportedModes += "auto " }
state.supportedThermostatModes = supportedModes
sendEvent(name: "supportedThermostatModes", value: supportedModes, displayed: false)
state.supportedModes = supportedModes
// No events to be generated, return empty map
return [:]
}
def zwaveEvent(physicalgraph.zwave.commands.thermostatfanmodev3.ThermostatFanModeSupportedReport cmd) {
def supportedFanModes = []
if(cmd.auto) { supportedFanModes << "auto" } // "fanAuto "
if(cmd.circulation) { supportedFanModes << "circulate" } // "fanCirculate"
if(cmd.low) { supportedFanModes << "on" } // "fanOn"
def supportedFanModes = ""
if(cmd.auto) { supportedFanModes += "auto " } // "fanAuto "
if(cmd.low) { supportedFanModes += "on " } // "fanOn"
if(cmd.circulation) { supportedFanModes += "circulate " } // "fanCirculate"
state.supportedThermostatFanModes = supportedFanModes
sendEvent(name: "supportedThermostatFanModes", value: supportedFanModes, displayed: false)
state.supportedFanModes = supportedFanModes
// No events to be generated, return empty map
return [:]
}
@@ -345,17 +337,15 @@ def zwaveEvent(physicalgraph.zwave.Command cmd) {
}
// Command Implementations
def refresh() {
def cmds = []
cmds << new physicalgraph.device.HubAction(zwave.thermostatModeV2.thermostatModeSupportedGet().format())
cmds << new physicalgraph.device.HubAction(zwave.thermostatFanModeV3.thermostatFanModeSupportedGet().format())
cmds << new physicalgraph.device.HubAction(zwave.thermostatModeV2.thermostatModeGet().format())
cmds << new physicalgraph.device.HubAction(zwave.thermostatFanModeV3.thermostatFanModeGet().format())
cmds << new physicalgraph.device.HubAction(zwave.sensorMultilevelV2.sensorMultilevelGet().format()) // current temperature
cmds << new physicalgraph.device.HubAction(zwave.thermostatOperatingStateV1.thermostatOperatingStateGet().format())
cmds << new physicalgraph.device.HubAction(zwave.thermostatSetpointV1.thermostatSetpointGet(setpointType: 1).format())
cmds << new physicalgraph.device.HubAction(zwave.thermostatSetpointV1.thermostatSetpointGet(setpointType: 2).format())
sendHubCommand(cmds)
def poll() {
delayBetween([
zwave.sensorMultilevelV3.sensorMultilevelGet().format(), // current temperature
zwave.thermostatSetpointV1.thermostatSetpointGet(setpointType: 1).format(),
zwave.thermostatSetpointV1.thermostatSetpointGet(setpointType: 2).format(),
zwave.thermostatModeV2.thermostatModeGet().format(),
zwave.thermostatFanModeV3.thermostatFanModeGet().format(),
zwave.thermostatOperatingStateV1.thermostatOperatingStateGet().format()
], 2300)
}
def quickSetHeat(degrees) {
@@ -426,14 +416,28 @@ def ping() {
poll()
}
def configure() {
delayBetween([
zwave.thermostatModeV2.thermostatModeSupportedGet().format(),
zwave.thermostatFanModeV3.thermostatFanModeSupportedGet().format(),
zwave.associationV1.associationSet(groupingIdentifier:1, nodeId:[zwaveHubNodeId]).format(),
zwave.sensorMultilevelV3.sensorMultilevelGet().format(), // current temperature
zwave.thermostatSetpointV1.thermostatSetpointGet(setpointType: 1).format(),
zwave.thermostatSetpointV1.thermostatSetpointGet(setpointType: 2).format(),
zwave.thermostatModeV2.thermostatModeGet().format(),
zwave.thermostatFanModeV3.thermostatFanModeGet().format(),
zwave.thermostatOperatingStateV1.thermostatOperatingStateGet().format()
], 2300)
}
def modes() {
return state.supportedThermostatModes
["off", "heat", "cool", "auto", "emergency heat"]
}
def switchMode() {
def currentMode = device.currentState("thermostatMode")?.value
def lastTriedMode = state.lastTriedMode ?: currentMode ?: ["off"]
def supportedModes = getDataByName("supportedThermostatModes")
def lastTriedMode = state.lastTriedMode ?: currentMode ?: "off"
def supportedModes = getDataByName("supportedModes")
def modeOrder = modes()
def next = { modeOrder[modeOrder.indexOf(it) + 1] ?: modeOrder[0] }
def nextMode = next(lastTriedMode)
@@ -450,7 +454,7 @@ def switchMode() {
}
def switchToMode(nextMode) {
def supportedModes = getDataByName("supportedThermostatModes")
def supportedModes = getDataByName("supportedModes")
if(supportedModes && !supportedModes.contains(nextMode)) log.warn "thermostat mode '$nextMode' is not supported"
if (nextMode in modes()) {
state.lastTriedMode = nextMode
@@ -462,9 +466,9 @@ def switchToMode(nextMode) {
def switchFanMode() {
def currentMode = device.currentState("thermostatFanMode")?.value
def lastTriedMode = state.lastTriedFanMode ?: currentMode ?: ["off"]
def supportedModes = getDataByName("supportedThermostatFanModes") ?: ["auto", "on"]
def modeOrder = state.supportedThermostatFanModes
def lastTriedMode = state.lastTriedFanMode ?: currentMode ?: "off"
def supportedModes = getDataByName("supportedFanModes") ?: "auto on" // "fanAuto fanOn"
def modeOrder = ["auto", "circulate", "on"] // "fanAuto", "fanCirculate", "fanOn"
def next = { modeOrder[modeOrder.indexOf(it) + 1] ?: modeOrder[0] }
def nextMode = next(lastTriedMode)
while (!supportedModes?.contains(nextMode) && nextMode != "auto") { // "fanAuto"
@@ -474,7 +478,7 @@ def switchFanMode() {
}
def switchToFanMode(nextMode) {
def supportedFanModes = getDataByName("supportedThermostatFanModes")
def supportedFanModes = getDataByName("supportedFanModes")
if(supportedFanModes && !supportedFanModes.contains(nextMode)) log.warn "thermostat mode '$nextMode' is not supported"
def returnCommand