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Author SHA1 Message Date
Mike Sprycha
4d289dbd6b MSA-1339: Adding support for the Sercomm SZ-DWS04 is simply a matter or adding an additional fingerprint to already existing Smartsense Open/Close sensor.
Please consider adding it as either a separate device handler or as an additional fingerprint to existing handler.
2016-06-05 13:28:33 -05:00
4 changed files with 387 additions and 271 deletions

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@@ -0,0 +1,326 @@
/**
* Sercomm SZ-DWS04 Open/Closed Sensor
*
* 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: "Sercomm SZ-DWS04 Open/Closed Sensor", namespace: "mikespry", author: "Mike Sprycha") {
capability "Battery"
capability "Configuration"
capability "Contact Sensor"
capability "Refresh"
capability "Temperature Measurement"
command "enrollResponse"
fingerprint inClusters: "0000,0001,0003,0020,0402,0500,0B05", outClusters: "0019", manufacturer: "Sercomm Corp.", model: "SZ-DWS04N_SF", deviceJoinName: "Sercomm SZ-DWS04"
}
simulator {
}
preferences {
input title: "Temperature Offset", description: "This feature allows you to correct any temperature variations by selecting an offset. Ex: If your sensor consistently reports a temp that's 5 degrees too warm, you'd enter \"-5\". If 3 degrees too cold, enter \"+3\".", displayDuringSetup: false, type: "paragraph", element: "paragraph"
input "tempOffset", "number", title: "Degrees", description: "Adjust temperature by this many degrees", range: "*..*", displayDuringSetup: false
}
tiles(scale: 2) {
multiAttributeTile(name:"contact", type: "generic", width: 6, height: 4){
tileAttribute ("device.contact", key: "PRIMARY_CONTROL") {
attributeState "open", label:'${name}', icon:"st.contact.contact.open", backgroundColor:"#ffa81e"
attributeState "closed", label:'${name}', icon:"st.contact.contact.closed", backgroundColor:"#79b821"
}
}
valueTile("temperature", "device.temperature", inactiveLabel: false, width: 2, height: 2) {
state "temperature", label:'${currentValue}°',
backgroundColors:[
[value: 31, color: "#153591"],
[value: 44, color: "#1e9cbb"],
[value: 59, color: "#90d2a7"],
[value: 74, color: "#44b621"],
[value: 84, color: "#f1d801"],
[value: 95, color: "#d04e00"],
[value: 96, color: "#bc2323"]
]
}
valueTile("battery", "device.battery", decoration: "flat", inactiveLabel: false, width: 2, height: 2) {
state "battery", label:'${currentValue}% battery', unit:""
}
standardTile("refresh", "device.refresh", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "default", action:"refresh.refresh", icon:"st.secondary.refresh"
}
main (["contact", "temperature"])
details(["contact","temperature","battery","refresh"])
}
}
def parse(String description) {
log.debug "description: $description"
Map map = [:]
if (description?.startsWith('catchall:')) {
map = parseCatchAllMessage(description)
}
else if (description?.startsWith('read attr -')) {
map = parseReportAttributeMessage(description)
}
else if (description?.startsWith('temperature: ')) {
map = parseCustomMessage(description)
}
else if (description?.startsWith('zone status')) {
map = parseIasMessage(description)
}
log.debug "Parse returned $map"
def result = map ? createEvent(map) : null
if (description?.startsWith('enroll request')) {
List cmds = enrollResponse()
log.debug "enroll response: ${cmds}"
result = cmds?.collect { new physicalgraph.device.HubAction(it) }
}
return result
}
private Map parseCatchAllMessage(String description) {
Map resultMap = [:]
def cluster = zigbee.parse(description)
if (shouldProcessMessage(cluster)) {
switch(cluster.clusterId) {
case 0x0001:
resultMap = getBatteryResult(cluster.data.last())
break
case 0x0402:
log.debug 'TEMP'
// 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
}
}
return resultMap
}
private boolean shouldProcessMessage(cluster) {
// 0x0B is default response indicating message got through
// 0x07 is bind message
boolean ignoredMessage = cluster.profileId != 0x0104 ||
cluster.command == 0x0B ||
cluster.command == 0x07 ||
(cluster.data.size() > 0 && cluster.data.first() == 0x3e)
return !ignoredMessage
}
private int getHumidity(value) {
return Math.round(Double.parseDouble(value))
}
private Map parseReportAttributeMessage(String description) {
Map descMap = (description - "read attr - ").split(",").inject([:]) { map, param ->
def nameAndValue = param.split(":")
map += [(nameAndValue[0].trim()):nameAndValue[1].trim()]
}
log.debug "Desc Map: $descMap"
Map resultMap = [:]
if (descMap.cluster == "0402" && descMap.attrId == "0000") {
def value = getTemperature(descMap.value)
resultMap = getTemperatureResult(value)
}
else if (descMap.cluster == "0001" && descMap.attrId == "0020") {
resultMap = getBatteryResult(Integer.parseInt(descMap.value, 16))
}
return resultMap
}
private Map parseCustomMessage(String description) {
Map resultMap = [:]
if (description?.startsWith('temperature: ')) {
def value = zigbee.parseHATemperatureValue(description, "temperature: ", getTemperatureScale())
resultMap = getTemperatureResult(value)
}
return resultMap
}
private Map parseIasMessage(String description) {
List parsedMsg = description.split(' ')
String msgCode = parsedMsg[2]
Map resultMap = [:]
switch(msgCode) {
case '0x0020': // Closed/No Motion/Dry
resultMap = getContactResult('closed')
break
case '0x0021': // Open/Motion/Wet
resultMap = getContactResult('open')
break
case '0x0022': // Tamper Alarm
break
case '0x0023': // Battery Alarm
break
case '0x0024': // Supervision Report
resultMap = getContactResult('closed')
break
case '0x0025': // Restore Report
resultMap = getContactResult('open')
break
case '0x0026': // Trouble/Failure
break
case '0x0028': // Test Mode
break
}
return resultMap
}
def getTemperature(value) {
def celsius = Integer.parseInt(value, 16).shortValue() / 100
if(getTemperatureScale() == "C"){
return celsius
} else {
return celsiusToFahrenheit(celsius) as Integer
}
}
private Map getBatteryResult(rawValue) {
log.debug 'Battery'
def linkText = getLinkText(device)
def result = [
name: 'battery'
]
def volts = rawValue / 10
def descriptionText
if (rawValue == 0 || rawValue == 255) {}
else if (volts > 3.5) {
result.descriptionText = "${linkText} battery has too much power (${volts} volts)."
}
else {
def minVolts = 2.1
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
result.value = Math.min(100, (int) pct * 100)
result.descriptionText = "${linkText} battery was ${result.value}%"
}
return result
}
private Map getTemperatureResult(value) {
log.debug 'TEMP'
def linkText = getLinkText(device)
if (tempOffset) {
def offset = tempOffset as int
def v = value as int
value = v + offset
}
def descriptionText = "${linkText} was ${value}°${temperatureScale}"
return [
name: 'temperature',
value: value,
descriptionText: descriptionText
]
}
private Map getContactResult(value) {
log.debug 'Contact Status'
def linkText = getLinkText(device)
def descriptionText = "${linkText} was ${value == 'open' ? 'opened' : 'closed'}"
return [
name: 'contact',
value: value,
descriptionText: descriptionText
]
}
def refresh() {
log.debug "Refreshing Temperature and Battery"
def refreshCmds = [
"st rattr 0x${device.deviceNetworkId} 1 0x402 0", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 1 0x20", "delay 200"
]
return refreshCmds + enrollResponse()
}
def configure() {
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
log.debug "Configuring Reporting, IAS CIE, and Bindings."
def configCmds = [
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 1 {${device.zigbeeId}} {}", "delay 500",
"zcl global send-me-a-report 1 0x20 0x20 30 21600 {01}", //checkin time 6 hrs
"send 0x${device.deviceNetworkId} 1 1", "delay 500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 0x402 {${device.zigbeeId}} {}", "delay 500",
"zcl global send-me-a-report 0x402 0 0x29 30 3600 {6400}",
"send 0x${device.deviceNetworkId} 1 1", "delay 500"
]
return configCmds + refresh() // send refresh cmds as part of config
}
def enrollResponse() {
log.debug "Sending enroll response"
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
[
//Resending the CIE in case the enroll request is sent before CIE is written
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
//Enroll Response
"raw 0x500 {01 23 00 00 00}",
"send 0x${device.deviceNetworkId} 1 1", "delay 200"
]
}
private getEndpointId() {
new BigInteger(device.endpointId, 16).toString()
}
private hex(value) {
new BigInteger(Math.round(value).toString()).toString(16)
}
private String swapEndianHex(String hex) {
reverseArray(hex.decodeHex()).encodeHex()
}
private byte[] reverseArray(byte[] array) {
int i = 0;
int j = array.length - 1;
byte tmp;
while (j > i) {
tmp = array[j];
array[j] = array[i];
array[i] = tmp;
j--;
i++;
}
return array
}

View File

@@ -403,21 +403,39 @@ def refresh() {
if (device.getDataValue("manufacturer") == "SmartThings") {
log.debug "Refreshing Values for manufacturer: SmartThings "
/* These values of Motion Threshold Multiplier(0x01) and Motion Threshold (0x0276)
seem to be giving pretty accurate results for the XYZ co-ordinates for this manufacturer.
Separating these out in a separate if-else because I do not want to touch Centralite part
as of now.
*/
refreshCmds += zigbee.writeAttribute(0xFC02, 0x0000, 0x20, 0x01, [mfgCode: manufacturerCode])
refreshCmds += zigbee.writeAttribute(0xFC02, 0x0002, 0x21, 0x0276, [mfgCode: manufacturerCode])
refreshCmds = refreshCmds + [
/* These values of Motion Threshold Multiplier(01) and Motion Threshold (7602)
seem to be giving pretty accurate results for the XYZ co-ordinates for this manufacturer.
Separating these out in a separate if-else because I do not want to touch Centralite part
as of now.
*/
"zcl mfg-code ${manufacturerCode}", "delay 200",
"zcl global write 0xFC02 0 0x20 {01}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 400",
"zcl mfg-code ${manufacturerCode}", "delay 200",
"zcl global write 0xFC02 2 0x21 {7602}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 400",
]
} else {
refreshCmds += zigbee.writeAttribute(0xFC02, 0x0000, 0x20, 0x02, [mfgCode: manufacturerCode])
refreshCmds = refreshCmds + [
/* sensitivity - default value (8) */
"zcl mfg-code ${manufacturerCode}", "delay 200",
"zcl global write 0xFC02 0 0x20 {02}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 400",
]
}
//Common refresh commands
refreshCmds += zigbee.readAttribute(0x0402, 0x0000) +
zigbee.readAttribute(0x0001, 0x0020) +
zigbee.readAttribute(0xFC02, 0x0010, [mfgCode: manufacturerCode])
refreshCmds = refreshCmds + [
"st rattr 0x${device.deviceNetworkId} 1 0x402 0", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 1 0x20", "delay 200",
"zcl mfg-code ${manufacturerCode}", "delay 200",
"zcl global read 0xFC02 0x0010",
"send 0x${device.deviceNetworkId} 1 1","delay 400"
]
return refreshCmds + enrollResponse()
}
@@ -425,15 +443,38 @@ def refresh() {
def configure() {
sendEvent(name: "checkInterval", value: 7200, displayed: false)
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
log.debug "Configuring Reporting"
def configCmds = enrollResponse() +
zigbee.batteryConfig() +
zigbee.temperatureConfig() +
zigbee.configureReporting(0xFC02, 0x0010, 0x18, 10, 3600, 0x01, [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, 0x0014, 0x29, 1, 3600, 0x0001, [mfgCode: manufacturerCode])
def configCmds = [
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 1 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 1 0x20 0x20 30 21600 {01}", "delay 200", //checkin time 6 hrs
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 0x402 {${device.zigbeeId}} {}", "delay 200",
"zcl global send-me-a-report 0x402 0 0x29 30 3600 {6400}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} ${endpointId} 1 0xFC02 {${device.zigbeeId}} {}", "delay 200",
"zcl mfg-code ${manufacturerCode}", "delay 200",
"zcl global send-me-a-report 0xFC02 0x0010 0x18 10 3600 {01}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zcl mfg-code ${manufacturerCode}", "delay 200",
"zcl global send-me-a-report 0xFC02 0x0012 0x29 1 3600 {0100}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zcl mfg-code ${manufacturerCode}", "delay 200",
"zcl global send-me-a-report 0xFC02 0x0013 0x29 1 3600 {0100}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500",
"zcl mfg-code ${manufacturerCode}", "delay 200",
"zcl global send-me-a-report 0xFC02 0x0014 0x29 1 3600 {0100}", "delay 200",
"send 0x${device.deviceNetworkId} 1 ${endpointId}", "delay 500"
]
return configCmds + refresh()
}

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@@ -21,13 +21,6 @@ metadata {
capability "Motion Sensor"
capability "Sensor"
capability "Battery"
fingerprint mfr: "011F", prod: "0001", model: "0001", deviceJoinName: "Schlage Motion Sensor" // Schlage motion
fingerprint mfr: "014A", prod: "0001", model: "0001", deviceJoinName: "Ecolink Motion Sensor" // Ecolink motion
fingerprint mfr: "014A", prod: "0004", model: "0001", deviceJoinName: "Ecolink Motion Sensor" // Ecolink motion +
fingerprint mfr: "0060", prod: "0001", model: "0002", deviceJoinName: "Everspring Motion Sensor" // Everspring SP814
fingerprint mfr: "0060", prod: "0001", model: "0003", deviceJoinName: "Everspring Motion Sensor" // Everspring HSP02
fingerprint mfr: "011A", prod: "0601", model: "0901", deviceJoinName: "Enerwave Motion Sensor" // Enerwave ZWN-BPC
}
simulator {
@@ -132,9 +125,9 @@ def zwaveEvent(physicalgraph.zwave.commands.wakeupv1.WakeUpNotification cmd)
}
if (!state.lastbat || (new Date().time) - state.lastbat > 53*60*60*1000) {
result << response(zwave.batteryV1.batteryGet())
} else {
result << response(zwave.wakeUpV1.wakeUpNoMoreInformation())
result << response("delay 1200")
}
result << response(zwave.wakeUpV1.wakeUpNoMoreInformation())
result
}

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@@ -1,244 +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: "Z-Wave Plus Window Shade", namespace: "smartthings", author: "SmartThings") {
capability "Window Shade"
capability "Battery"
capability "Refresh"
capability "Health Check"
capability "Actuator"
capability "Sensor"
command "stop"
capability "Switch Level" // until we get a Window Shade Level capability
capability "Switch" // temporary for use with Routines
// This device handler is specifically for position-aware window coverings
//
fingerprint type: "0x1107", cc: "0x5E,0x26", deviceJoinName: "Window Shade"
fingerprint type: "0x9A00", cc: "0x5E,0x26", deviceJoinName: "Window Shade"
fingerprint mfr:"026E", prod:"4353", model:"5A31", deviceJoinName: "Window Blinds"
fingerprint mfr:"026E", prod:"5253", model:"5A31", deviceJoinName: "Roller Shade"
}
simulator {
status "open": "command: 2603, payload: FF"
status "closed": "command: 2603, payload: 00"
status "10%": "command: 2603, payload: 0A"
status "66%": "command: 2603, payload: 42"
status "99%": "command: 2603, payload: 63"
status "battery 100%": "command: 8003, payload: 64"
status "battery low": "command: 8003, payload: FF"
// reply messages
reply "2001FF,delay 1000,2602": "command: 2603, payload: 10 FF FE"
reply "200100,delay 1000,2602": "command: 2603, payload: 60 00 FE"
reply "200142,delay 1000,2602": "command: 2603, payload: 10 42 FE"
reply "200163,delay 1000,2602": "command: 2603, payload: 10 63 FE"
}
tiles(scale: 2) {
multiAttributeTile(name:"windowShade", type: "lighting", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.windowShade", key: "PRIMARY_CONTROL") {
attributeState "open", label:'${name}', action:"close", icon:"st.doors.garage.garage-open", backgroundColor:"#79b821", nextState:"closing"
attributeState "closed", label:'${name}', action:"open", icon:"st.doors.garage.garage-closed", backgroundColor:"#ffffff", nextState:"opening"
attributeState "partiallyOpen", label:'Open', action:"close", icon:"st.doors.garage.garage-open", backgroundColor:"#79b821", nextState:"closing"
attributeState "opening", label:'${name}', action:"stop", icon:"st.doors.garage.garage-opening", backgroundColor:"#79b821", nextState:"partiallyOpen"
attributeState "closing", label:'${name}', action:"stop", icon:"st.doors.garage.garage-closing", backgroundColor:"#ffffff", nextState:"partiallyOpen"
}
tileAttribute ("device.level", key: "SLIDER_CONTROL") {
attributeState "level", action:"setLevel"
}
}
standardTile("refresh", "device.refresh", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
state "default", label:'', action:"refresh.refresh", icon:"st.secondary.refresh", nextState: "disabled"
state "disabled", label:'', action:"", icon:"st.secondary.refresh"
}
valueTile("battery", "device.battery", decoration: "flat", inactiveLabel: false, width: 2, height: 2) {
state "battery", label:'${currentValue}% battery', unit:""
}
preferences {
input "preset", "number", title: "Default half-open position (1-100)", defaultValue: 50, required: false, displayDuringSetup: false
}
main(["windowShade"])
details(["windowShade", "refresh", "battery"])
}
}
def parse(String description) {
def result = null
//if (description =~ /command: 2603, payload: ([0-9A-Fa-f]{6})/)
// TODO: Workaround manual parsing of v4 multilevel report
def cmd = zwave.parse(description, [0x20: 1, 0x26: 3]) // TODO: switch to SwitchMultilevel v4 and use target value
if (cmd) {
result = zwaveEvent(cmd)
}
log.debug "Parsed '$description' to ${result.inspect()}"
return result
}
def getCheckInterval() {
// These are battery-powered devices, and it's not very critical
// to know whether they're online or not 12 hrs
12 * 60 * 60
}
def installed() {
sendEvent(name: "checkInterval", value: checkInterval, displayed: false)
}
def updated() {
if (device.latestValue("checkInterval") != checkInterval) {
sendEvent(name: "checkInterval", value: checkInterval, displayed: false)
}
if (!device.latestState("battery")) {
response(zwave.batteryV1.batteryGet())
}
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicReport cmd) {
handleLevelReport(cmd)
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicSet cmd) {
handleLevelReport(cmd)
}
def zwaveEvent(physicalgraph.zwave.commands.switchmultilevelv3.SwitchMultilevelReport cmd) {
handleLevelReport(cmd)
}
private handleLevelReport(physicalgraph.zwave.Command cmd) {
def descriptionText = null
def shadeValue = null
def level = cmd.value as Integer
if (level >= 99) {
level = 99
shadeValue = "open"
} else if (level <= 0) {
level = 0 // unlike dimmer switches, the level isn't saved when closed
shadeValue = "closed"
} else {
shadeValue = "partiallyOpen"
descriptionText = "${device.displayName} shade is ${level}% open"
}
def levelEvent = createEvent(name: "level", value: level, unit: "%", displayed: false)
def stateEvent = createEvent(name: "windowShade", value: shadeValue, descriptionText: descriptionText, isStateChange: levelEvent.isStateChange)
def result = [stateEvent, levelEvent]
if (!state.lastbatt || now() - state.lastbatt > 24 * 60 * 60 * 1000) {
log.debug "requesting battery"
state.lastbatt = (now() - 23 * 60 * 60 * 1000) // don't queue up multiple battery reqs in a row
result << response(["delay 15000", zwave.batteryV1.batteryGet().format()])
}
result
}
def zwaveEvent(physicalgraph.zwave.commands.switchmultilevelv3.SwitchMultilevelStopLevelChange cmd) {
[ createEvent(name: "windowShade", value: "partiallyOpen", displayed: false, descriptionText: "$device.displayName shade stopped"),
response(zwave.switchMultilevelV1.switchMultilevelGet().format()) ]
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd) {
def msr = String.format("%04X-%04X-%04X", cmd.manufacturerId, cmd.productTypeId, cmd.productId)
updateDataValue("MSR", msr)
if (cmd.manufacturerName) {
updateDataValue("manufacturer", cmd.manufacturerName)
}
createEvent([descriptionText: "$device.displayName MSR: $msr", isStateChange: false])
}
def zwaveEvent(physicalgraph.zwave.commands.batteryv1.BatteryReport cmd) {
def map = [ name: "battery", unit: "%" ]
if (cmd.batteryLevel == 0xFF) {
map.value = 1
map.descriptionText = "${device.displayName} has a low battery"
map.isStateChange = true
} else {
map.value = cmd.batteryLevel
}
state.lastbatt = now()
createEvent(map)
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
log.debug "unhandled $cmd"
return []
}
def open() {
log.debug "open()"
/*delayBetween([
zwave.basicV1.basicSet(value: 0xFF).format(),
zwave.switchMultilevelV1.switchMultilevelGet().format()
], 1000)*/
zwave.basicV1.basicSet(value: 0xFF).format()
}
def close() {
log.debug "close()"
/*delayBetween([
zwave.basicV1.basicSet(value: 0x00).format(),
zwave.switchMultilevelV1.switchMultilevelGet().format()
], 1000)*/
zwave.basicV1.basicSet(value: 0).format()
}
def on() {
open()
}
def off() {
close()
}
def setLevel(value, duration = null) {
log.debug "setLevel(${value.inspect()})"
Integer level = value as Integer
if (level < 0) level = 0
if (level > 99) level = 99
if (!preset && level > 0 && level < 95) state.preset = level
delayBetween([
zwave.basicV1.basicSet(value: level).format(),
zwave.switchMultilevelV1.switchMultilevelGet().format()
])
}
def presetPosition() {
setLevel(preset ?: state.preset ?: 50)
}
def stop() {
log.debug "stop()"
zwave.switchMultilevelV3.switchMultilevelStopLevelChange().format()
}
def ping() {
zwave.switchMultilevelV1.switchMultilevelGet().format()
}
def refresh() {
log.debug "refresh()"
delayBetween([
zwave.switchMultilevelV1.switchMultilevelGet().format(),
zwave.batteryV1.batteryGet().format()
], 1500)
}