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Author SHA1 Message Date
Bootsie Garbutt
3a948f0e51 MSA-1393: Home Remote for PC 2016-07-11 22:11:26 -05:00
45 changed files with 1507 additions and 1698 deletions

View File

@@ -29,7 +29,6 @@ metadata {
attribute "powerSupply", "enum", ["USB Cable", "Battery"]
fingerprint deviceId: "0x2101", inClusters: "0x5E,0x86,0x72,0x59,0x85,0x73,0x71,0x84,0x80,0x30,0x31,0x70,0x7A", outClusters: "0x5A"
fingerprint deviceId: "0x2101", inClusters: "0x5E,0x86,0x72,0x59,0x85,0x73,0x71,0x84,0x80,0x30,0x31,0x70,0x7A,0x5A"
}
simulator {
@@ -329,7 +328,7 @@ def zwaveEvent(physicalgraph.zwave.Command cmd) {
def configure() {
// allow device user configured or default 16 min to check in; double the periodic reporting interval
sendEvent(name: "checkInterval", value: 2* (timeOptionValueMap[reportInterval] ?: (2*8*60)), displayed: false)
sendEvent(name: "checkInterval", value: 2* timeOptionValueMap[reportInterval] ?: 2*8*60, displayed: false)
// This sensor joins as a secure device if you double-click the button to include it
log.debug "${device.displayName} is configuring its settings"
@@ -357,7 +356,7 @@ def configure() {
motionSensitivity == "minimum" ? 0 : 64)
//5. report every x minutes (threshold reports don't work on battery power, default 8 mins)
request << zwave.configurationV1.configurationSet(parameterNumber: 111, size: 4, scaledConfigurationValue: timeOptionValueMap[reportInterval] ?: (8*60)) //association group 1
request << zwave.configurationV1.configurationSet(parameterNumber: 111, size: 4, scaledConfigurationValue: timeOptionValueMap[reportInterval] ?: 8*60) //association group 1
request << zwave.configurationV1.configurationSet(parameterNumber: 112, size: 4, scaledConfigurationValue: 6*60*60) //association group 2

View File

@@ -64,10 +64,8 @@ metadata {
}
standardTile("switch", "device.switch", width: 1, height: 1, canChangeIcon: true) {
state "on", label: '${name}', action: "switch.off", icon: "st.Electronics.electronics16", backgroundColor: "#79b821", nextState:"turningOff"
state "turningOff", label:'TURNING OFF', icon:"st.Electronics.electronics16", backgroundColor:"#ffffff"
state "off", label: '${name}', action: "switch.on", icon: "st.Electronics.electronics16", backgroundColor: "#ffffff", nextState:"turningOn"
state "turningOn", label:'TURNING ON', icon:"st.Electronics.electronics16", backgroundColor:"#79b821"
state "off", label: '${name}', action: "switch.on", icon: "st.Electronics.electronics16", backgroundColor: "#ffffff"
state "on", label: '${name}', action: "switch.off", icon: "st.Electronics.electronics16", backgroundColor: "#79b821"
}
valueTile("1", "device.station1", decoration: "flat", canChangeIcon: false) {
state "station1", label:'${currentValue}', action:"preset1"
@@ -749,16 +747,8 @@ def cb_boseSetInput(xml, input) {
*/
def boseSetPowerState(boolean enable) {
log.info "boseSetPowerState(${enable})"
// Fix to get faster update of power status back from speaker after sending on/off
// Instead of queuing the command to be sent after the refresh send it directly via sendHubCommand
// Note: This is a temporary hack that should be replaced by a re-design of the
// DTH to use sendHubCommand for all commands
sendHubCommand(bosePOST("/key", "<key state=\"press\" sender=\"Gabbo\">POWER</key>"))
sendHubCommand(bosePOST("/key", "<key state=\"release\" sender=\"Gabbo\">POWER</key>"))
sendHubCommand(boseGET("/now_playing"))
if (enable) {
queueCallback('nowPlaying', "cb_boseConfirmPowerOn", 5)
}
queueCallback('nowPlaying', "cb_boseSetPowerState", enable ? "POWERON" : "POWEROFF")
return boseRefreshNowPlaying()
}
/**
@@ -797,11 +787,10 @@ def cb_boseSetPowerState(xml, state) {
*/
def cb_boseConfirmPowerOn(xml, tries) {
def result = []
def attempt = tries as Integer
log.warn "boseConfirmPowerOn() attempt #$attempt"
if (xml.attributes()['source'] == "STANDBY" && attempt > 0) {
log.warn "boseConfirmPowerOn() attempt #" + tries
if (xml.attributes()['source'] == "STANDBY" && tries > 0) {
result << boseRefreshNowPlaying()
queueCallback('nowPlaying', "cb_boseConfirmPowerOn", attempt-1)
queueCallback('nowPlaying', "cb_boseConfirmPowerOn", tries-1)
}
return result
}

View File

@@ -21,9 +21,7 @@ metadata {
capability "Refresh"
capability "Sensor"
fingerprint mfr:"0063", prod:"4457", deviceJoinName: "Z-Wave Wall Dimmer"
fingerprint mfr:"0063", prod:"4944", deviceJoinName: "Z-Wave Wall Dimmer"
fingerprint mfr:"0063", prod:"5044", deviceJoinName: "Z-Wave Plug-In Dimmer"
fingerprint inClusters: "0x26"
}
simulator {
@@ -44,10 +42,6 @@ metadata {
reply "200163,delay 5000,2602": "command: 2603, payload: 63"
}
preferences {
input "ledIndicator", "enum", title: "LED Indicator", description: "Turn LED indicator... ", required: false, options:["on": "When On", "off": "When Off", "never": "Never"], defaultValue: "off"
}
tiles(scale: 2) {
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
@@ -76,28 +70,11 @@ metadata {
}
main(["switch"])
details(["switch", "level", "refresh"])
details(["switch", "level", "indicator", "refresh"])
}
}
def updated(){
switch (ledIndicator) {
case "on":
indicatorWhenOn()
break
case "off":
indicatorWhenOff()
break
case "never":
indicatorNever()
break
default:
indicatorWhenOn()
break
}
}
def parse(String description) {
def result = null
if (description != "updated") {
@@ -225,19 +202,19 @@ def refresh() {
delayBetween(commands,100)
}
void indicatorWhenOn() {
sendEvent(name: "indicatorStatus", value: "when on", display: false)
sendHubCommand(new physicalgraph.device.HubAction(zwave.configurationV1.configurationSet(configurationValue: [1], parameterNumber: 3, size: 1).format()))
def indicatorWhenOn() {
sendEvent(name: "indicatorStatus", value: "when on")
zwave.configurationV1.configurationSet(configurationValue: [1], parameterNumber: 3, size: 1).format()
}
void indicatorWhenOff() {
sendEvent(name: "indicatorStatus", value: "when off", display: false)
sendHubCommand(new physicalgraph.device.HubAction(zwave.configurationV1.configurationSet(configurationValue: [0], parameterNumber: 3, size: 1).format()))
def indicatorWhenOff() {
sendEvent(name: "indicatorStatus", value: "when off")
zwave.configurationV1.configurationSet(configurationValue: [0], parameterNumber: 3, size: 1).format()
}
void indicatorNever() {
sendEvent(name: "indicatorStatus", value: "never", display: false)
sendHubCommand(new physicalgraph.device.HubAction(zwave.configurationV1.configurationSet(configurationValue: [2], parameterNumber: 3, size: 1).format()))
def indicatorNever() {
sendEvent(name: "indicatorStatus", value: "never")
zwave.configurationV1.configurationSet(configurationValue: [2], parameterNumber: 3, size: 1).format()
}
def invertSwitch(invert=true) {
@@ -247,4 +224,4 @@ def invertSwitch(invert=true) {
else {
zwave.configurationV1.configurationSet(configurationValue: [0], parameterNumber: 4, size: 1).format()
}
}
}

View File

@@ -43,7 +43,7 @@ metadata {
}
standardTile("reset", "device.reset", height: 2, width: 2, inactiveLabel: false, decoration: "flat") {
state "default", label:"Reset To White", action:"reset", icon:"st.lights.philips.hue-single"
state "default", label:"Reset Color", action:"reset", icon:"st.lights.philips.hue-single"
}
standardTile("refresh", "device.refresh", height: 2, width: 2, inactiveLabel: false, decoration: "flat") {
@@ -51,7 +51,7 @@ metadata {
}
main(["rich-control"])
details(["rich-control", "reset", "refresh"])
details(["rich-control", "colorTempSliderControl", "colorTemp", "reset", "refresh"])
}
}
@@ -75,78 +75,118 @@ def parse(description) {
// handle commands
void on() {
log.trace parent.on(this)
sendEvent(name: "switch", value: "on")
}
void off() {
log.trace parent.off(this)
sendEvent(name: "switch", value: "off")
}
void nextLevel() {
def level = device.latestValue("level") as Integer ?: 0
if (level <= 100) {
level = Math.min(25 * (Math.round(level / 25) + 1), 100) as Integer
}
else {
level = 25
}
setLevel(level)
}
void setLevel(percent) {
log.debug "Executing 'setLevel'"
if (verifyPercent(percent)) {
log.trace parent.setLevel(this, percent)
parent.setLevel(this, percent)
sendEvent(name: "level", value: percent, descriptionText: "Level has changed to ${percent}%")
sendEvent(name: "switch", value: "on")
}
}
void setSaturation(percent) {
log.debug "Executing 'setSaturation'"
if (verifyPercent(percent)) {
log.trace parent.setSaturation(this, percent)
parent.setSaturation(this, percent)
sendEvent(name: "saturation", value: percent, displayed: false)
}
}
void setHue(percent) {
log.debug "Executing 'setHue'"
if (verifyPercent(percent)) {
log.trace parent.setHue(this, percent)
parent.setHue(this, percent)
sendEvent(name: "hue", value: percent, displayed: false)
}
}
void setColor(value) {
log.debug "setColor: ${value}, $this"
def events = []
def validValues = [:]
if (verifyPercent(value.hue)) {
events << createEvent(name: "hue", value: value.hue, displayed: false)
validValues.hue = value.hue
}
if (verifyPercent(value.saturation)) {
events << createEvent(name: "saturation", value: value.saturation, displayed: false)
validValues.saturation = value.saturation
}
if (value.hex != null) {
if (value.hex ==~ /^\#([A-Fa-f0-9]){6}$/) {
events << createEvent(name: "color", value: value.hex)
validValues.hex = value.hex
} else {
log.warn "$value.hex is not a valid color"
}
}
if (verifyPercent(value.level)) {
events << createEvent(name: "level", value: value.level, descriptionText: "Level has changed to ${value.level}%")
validValues.level = value.level
}
if (value.switch == "off" || (value.level != null && value.level <= 0)) {
events << createEvent(name: "switch", value: "off")
validValues.switch = "off"
} else {
events << createEvent(name: "switch", value: "on")
validValues.switch = "on"
}
if (!validValues.isEmpty()) {
log.trace parent.setColor(this, validValues)
if (!events.isEmpty()) {
parent.setColor(this, validValues)
}
events.each {
sendEvent(it)
}
}
void reset() {
log.debug "Executing 'reset'"
def value = [hue:20, saturation:2]
setAdjustedColor(value)
def value = [level:100, saturation:56, hue:23]
setAdjustedColor(value)
parent.poll()
}
void setAdjustedColor(value) {
if (value) {
log.trace "setAdjustedColor: ${value}"
def adjusted = value + [:]
adjusted.hue = adjustOutgoingHue(value.hue)
// Needed because color picker always sends 100
adjusted.level = null
setColor(adjusted)
setColor(adjusted)
} else {
log.warn "Invalid color input $value"
log.warn "Invalid color input"
}
}
void setColorTemperature(value) {
if (value) {
log.trace "setColorTemperature: ${value}k"
parent.setColorTemperature(this, value)
sendEvent(name: "colorTemperature", value: value)
sendEvent(name: "switch", value: "on")
} else {
log.warn "Invalid color temperature"
}
}
@@ -155,6 +195,22 @@ void refresh() {
parent.manualRefresh()
}
def adjustOutgoingHue(percent) {
def adjusted = percent
if (percent > 31) {
if (percent < 63.0) {
adjusted = percent + (7 * (percent -30 ) / 32)
}
else if (percent < 73.0) {
adjusted = 69 + (5 * (percent - 62) / 10)
}
else {
adjusted = percent + (2 * (100 - percent) / 28)
}
}
log.info "percent: $percent, adjusted: $adjusted"
adjusted
}
def verifyPercent(percent) {
if (percent == null)

View File

@@ -7,13 +7,8 @@
metadata {
// Automatically generated. Make future change here.
definition (name: "Hue Bridge", namespace: "smartthings", author: "SmartThings") {
attribute "serialNumber", "string"
attribute "networkAddress", "string"
// Used to indicate if bridge is reachable or not, i.e. is the bridge connected to the network
// Possible values "Online" or "Offline"
attribute "status", "string"
// 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
attribute "idNumber", "string"
}
simulator {
@@ -22,23 +17,22 @@ metadata {
tiles(scale: 2) {
multiAttributeTile(name:"rich-control"){
tileAttribute ("device.status", key: "PRIMARY_CONTROL") {
attributeState "Offline", label: '${currentValue}', action: "", icon: "st.Lighting.light99-hue", backgroundColor: "#ffffff"
attributeState "Online", label: '${currentValue}', action: "", icon: "st.Lighting.light99-hue", backgroundColor: "#79b821"
tileAttribute ("", key: "PRIMARY_CONTROL") {
attributeState "default", label: "Hue Bridge", action: "", icon: "st.Lighting.light99-hue", backgroundColor: "#F3C200"
}
tileAttribute ("serialNumber", key: "SECONDARY_CONTROL") {
attributeState "default", label:'SN: ${currentValue}'
}
valueTile("doNotRemove", "v", decoration: "flat", height: 2, width: 6, inactiveLabel: false) {
state "default", label:'Do not remove'
}
valueTile("idNumber", "device.idNumber", decoration: "flat", height: 2, width: 6, inactiveLabel: false) {
state "default", label:'ID: ${currentValue}'
valueTile("serialNumber", "device.serialNumber", decoration: "flat", height: 1, width: 2, inactiveLabel: false) {
state "default", label:'SN: ${currentValue}'
}
valueTile("networkAddress", "device.networkAddress", decoration: "flat", height: 2, width: 6, inactiveLabel: false) {
state "default", label:'IP: ${currentValue}'
valueTile("networkAddress", "device.networkAddress", decoration: "flat", height: 2, width: 4, inactiveLabel: false) {
state "default", label:'${currentValue}', height: 1, width: 2, inactiveLabel: false
}
main (["rich-control"])
details(["rich-control", "idNumber", "networkAddress", "doNotRemove"])
details(["rich-control", "networkAddress"])
}
}

View File

@@ -43,16 +43,16 @@ metadata {
}
}
controlTile("colorTempSliderControl", "device.colorTemperature", "slider", width: 4, height: 2, inactiveLabel: false, range:"(2000..6500)") {
state "colorTemperature", action:"color temperature.setColorTemperature"
}
controlTile("colorTempSliderControl", "device.colorTemperature", "slider", width: 4, height: 2, inactiveLabel: false, range:"(2000..6500)") {
state "colorTemperature", action:"color temperature.setColorTemperature"
}
valueTile("colorTemp", "device.colorTemperature", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "colorTemperature", label: 'WHITES'
}
valueTile("colorTemp", "device.colorTemperature", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "colorTemperature", label: '${currentValue} K'
}
standardTile("reset", "device.reset", height: 2, width: 2, inactiveLabel: false, decoration: "flat") {
state "default", label:"Reset To White", action:"reset", icon:"st.lights.philips.hue-single"
state "default", label:"Reset Color", action:"reset", icon:"st.lights.philips.hue-single"
}
standardTile("refresh", "device.refresh", height: 2, width: 2, inactiveLabel: false, decoration: "flat") {
@@ -84,86 +84,118 @@ def parse(description) {
// handle commands
void on() {
log.trace parent.on(this)
sendEvent(name: "switch", value: "on")
}
void off() {
log.trace parent.off(this)
sendEvent(name: "switch", value: "off")
}
void nextLevel() {
def level = device.latestValue("level") as Integer ?: 0
if (level <= 100) {
level = Math.min(25 * (Math.round(level / 25) + 1), 100) as Integer
}
else {
level = 25
}
setLevel(level)
}
void setLevel(percent) {
log.debug "Executing 'setLevel'"
if (verifyPercent(percent)) {
log.trace parent.setLevel(this, percent)
parent.setLevel(this, percent)
sendEvent(name: "level", value: percent, descriptionText: "Level has changed to ${percent}%")
sendEvent(name: "switch", value: "on")
}
}
void setSaturation(percent) {
log.debug "Executing 'setSaturation'"
if (verifyPercent(percent)) {
log.trace parent.setSaturation(this, percent)
parent.setSaturation(this, percent)
sendEvent(name: "saturation", value: percent, displayed: false)
}
}
void setHue(percent) {
log.debug "Executing 'setHue'"
if (verifyPercent(percent)) {
log.trace parent.setHue(this, percent)
parent.setHue(this, percent)
sendEvent(name: "hue", value: percent, displayed: false)
}
}
void setColor(value) {
log.debug "setColor: ${value}, $this"
def events = []
def validValues = [:]
if (verifyPercent(value.hue)) {
events << createEvent(name: "hue", value: value.hue, displayed: false)
validValues.hue = value.hue
}
if (verifyPercent(value.saturation)) {
events << createEvent(name: "saturation", value: value.saturation, displayed: false)
validValues.saturation = value.saturation
}
if (value.hex != null) {
if (value.hex ==~ /^\#([A-Fa-f0-9]){6}$/) {
events << createEvent(name: "color", value: value.hex)
validValues.hex = value.hex
} else {
log.warn "$value.hex is not a valid color"
}
}
if (verifyPercent(value.level)) {
events << createEvent(name: "level", value: value.level, descriptionText: "Level has changed to ${value.level}%")
validValues.level = value.level
}
if (value.switch == "off" || (value.level != null && value.level <= 0)) {
events << createEvent(name: "switch", value: "off")
validValues.switch = "off"
} else {
events << createEvent(name: "switch", value: "on")
validValues.switch = "on"
}
if (!validValues.isEmpty()) {
log.trace parent.setColor(this, validValues)
if (!events.isEmpty()) {
parent.setColor(this, validValues)
}
events.each {
sendEvent(it)
}
}
void reset() {
log.debug "Executing 'reset'"
setColorTemperature(4000)
def value = [level:100, saturation:56, hue:23]
setAdjustedColor(value)
parent.poll()
}
void setAdjustedColor(value) {
if (value) {
log.trace "setAdjustedColor: ${value}"
def adjusted = value + [:]
adjusted.hue = adjustOutgoingHue(value.hue)
// Needed because color picker always sends 100
adjusted.level = null
setColor(adjusted)
setColor(adjusted)
} else {
log.warn "Invalid color input $value"
log.warn "Invalid color input"
}
}
void setColorTemperature(value) {
if (value) {
log.trace "setColorTemperature: ${value}k"
log.trace parent.setColorTemperature(this, value)
parent.setColorTemperature(this, value)
sendEvent(name: "colorTemperature", value: value)
sendEvent(name: "switch", value: "on")
} else {
log.warn "Invalid color temperature $value"
log.warn "Invalid color temperature"
}
}
@@ -172,6 +204,23 @@ void refresh() {
parent.manualRefresh()
}
def adjustOutgoingHue(percent) {
def adjusted = percent
if (percent > 31) {
if (percent < 63.0) {
adjusted = percent + (7 * (percent -30 ) / 32)
}
else if (percent < 73.0) {
adjusted = 69 + (5 * (percent - 62) / 10)
}
else {
adjusted = percent + (2 * (100 - percent) / 28)
}
}
log.info "percent: $percent, adjusted: $adjusted"
adjusted
}
def verifyPercent(percent) {
if (percent == null)
return false

View File

@@ -68,16 +68,20 @@ def parse(description) {
// handle commands
void on() {
log.trace parent.on(this)
sendEvent(name: "switch", value: "on")
}
void off() {
log.trace parent.off(this)
sendEvent(name: "switch", value: "off")
}
void setLevel(percent) {
log.debug "Executing 'setLevel'"
if (percent != null && percent >= 0 && percent <= 100) {
parent.setLevel(this, percent)
sendEvent(name: "level", value: percent)
sendEvent(name: "switch", value: "on")
} else {
log.warn "$percent is not 0-100"
}

View File

@@ -36,12 +36,12 @@ metadata {
}
}
controlTile("colorTempSliderControl", "device.colorTemperature", "slider", width: 4, height: 2, inactiveLabel: false, range:"(2200..6500)") {
controlTile("colorTempSliderControl", "device.colorTemperature", "slider", width: 4, height: 2, inactiveLabel: false, range:"(2000..6500)") {
state "colorTemperature", action:"color temperature.setColorTemperature"
}
valueTile("colorTemp", "device.colorTemperature", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "colorTemperature", label: 'WHITES'
state "colorTemperature", label: '${currentValue} K'
}
standardTile("refresh", "device.refresh", height: 2, width: 2, inactiveLabel: false, decoration: "flat") {
@@ -73,16 +73,20 @@ def parse(description) {
// handle commands
void on() {
log.trace parent.on(this)
sendEvent(name: "switch", value: "on")
}
void off() {
log.trace parent.off(this)
sendEvent(name: "switch", value: "off")
}
void setLevel(percent) {
log.debug "Executing 'setLevel'"
if (percent != null && percent >= 0 && percent <= 100) {
log.trace parent.setLevel(this, percent)
parent.setLevel(this, percent)
sendEvent(name: "level", value: percent)
sendEvent(name: "switch", value: "on")
} else {
log.warn "$percent is not 0-100"
}
@@ -91,7 +95,9 @@ void setLevel(percent) {
void setColorTemperature(value) {
if (value) {
log.trace "setColorTemperature: ${value}k"
log.trace parent.setColorTemperature(this, value)
parent.setColorTemperature(this, value)
sendEvent(name: "colorTemperature", value: value)
sendEvent(name: "switch", value: "on")
} else {
log.warn "Invalid color temperature"
}
@@ -101,3 +107,4 @@ void refresh() {
log.debug "Executing 'refresh'"
parent.manualRefresh()
}

View File

@@ -22,7 +22,6 @@ metadata {
capability "Temperature Measurement"
capability "Water Sensor"
capability "Health Check"
capability "Sensor"
command "enrollResponse"
@@ -256,8 +255,7 @@ private Map getBatteryResult(rawValue) {
def minVolts = 2.1
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
def roundedPct = Math.round(pct * 100)
result.value = Math.min(100, roundedPct)
result.value = Math.min(100, (int) pct * 100)
result.descriptionText = "{{ device.displayName }} battery was {{ value }}%"
}
}

View File

@@ -22,7 +22,6 @@ metadata {
capability "Temperature Measurement"
capability "Refresh"
capability "Health Check"
capability "Sensor"
command "enrollResponse"
@@ -272,8 +271,7 @@ private Map getBatteryResult(rawValue) {
def minVolts = 2.1
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
def roundedPct = Math.round(pct * 100)
result.value = Math.min(100, roundedPct)
result.value = Math.min(100, (int) pct * 100)
result.descriptionText = "{{ device.displayName }} battery was {{ value }}%"
}
}

View File

@@ -24,7 +24,7 @@ metadata {
capability "Temperature Measurement"
capability "Refresh"
capability "Sensor"
command "enrollResponse"
}
@@ -73,7 +73,7 @@ metadata {
def parse(String description) {
log.debug "description: $description"
Map map = [:]
if (description?.startsWith('catchall:')) {
map = parseCatchAllMessage(description)
@@ -87,10 +87,10 @@ def parse(String 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}"
@@ -128,7 +128,7 @@ private Map parseCatchAllMessage(String description) {
private boolean shouldProcessMessage(cluster) {
// 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 == 0x07 ||
(cluster.data.size() > 0 && cluster.data.first() == 0x3e)
@@ -141,7 +141,7 @@ private Map parseReportAttributeMessage(String description) {
map += [(nameAndValue[0].trim()):nameAndValue[1].trim()]
}
log.debug "Desc Map: $descMap"
Map resultMap = [:]
if (descMap.cluster == "0402" && descMap.attrId == "0000") {
def value = getTemperature(descMap.value)
@@ -153,11 +153,11 @@ private Map parseReportAttributeMessage(String description) {
else if (descMap.cluster == "0406" && descMap.attrId == "0000") {
def value = descMap.value.endsWith("01") ? "active" : "inactive"
resultMap = getMotionResult(value)
}
}
return resultMap
}
private Map parseCustomMessage(String description) {
Map resultMap = [:]
if (description?.startsWith('temperature: ')) {
@@ -170,7 +170,7 @@ private Map parseCustomMessage(String description) {
private Map parseIasMessage(String description) {
List parsedMsg = description.split(' ')
String msgCode = parsedMsg[2]
Map resultMap = [:]
switch(msgCode) {
case '0x0020': // Closed/No Motion/Dry
@@ -240,8 +240,7 @@ private Map getBatteryResult(rawValue) {
def minVolts = 2.1
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
def roundedPct = Math.round(pct * 100)
result.value = Math.min(100, roundedPct)
result.value = Math.min(100, (int) pct * 100)
result.descriptionText = "${linkText} battery was ${result.value}%"
}
}

View File

@@ -338,8 +338,7 @@ private Map getBatteryResult(rawValue) {
def minVolts = 2.1
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
def roundedPct = Math.round(pct * 100)
result.value = Math.min(100, roundedPct)
result.value = Math.min(100, (int) pct * 100)
result.descriptionText = "{{ device.displayName }} battery was {{ value }}%"
}
}

View File

@@ -24,7 +24,6 @@
capability "Refresh"
capability "Temperature Measurement"
capability "Health Check"
capability "Sensor"
command "enrollResponse"
}
@@ -235,8 +234,7 @@ def getTemperature(value) {
def minVolts = 2.1
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
def roundedPct = Math.round(pct * 100)
result.value = Math.min(100, roundedPct)
result.value = Math.min(100, (int) pct * 100)
result.descriptionText = "${linkText} battery was ${result.value}%"
}

View File

@@ -13,7 +13,7 @@
* for the specific language governing permissions and limitations under the License.
*
*/
metadata {
definition (name: "SmartSense Open/Closed Sensor", namespace: "smartthings", author: "SmartThings", category: "C2") {
capability "Battery"
@@ -22,25 +22,24 @@ metadata {
capability "Refresh"
capability "Temperature Measurement"
capability "Health Check"
capability "Sensor"
command "enrollResponse"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3300-S"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3300"
fingerprint inClusters: "0000,0001,0003,0020,0402,0500,0B05", outClusters: "0019", manufacturer: "CentraLite", model: "3320-L", deviceJoinName: "Iris Contact Sensor"
}
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") {
@@ -73,10 +72,10 @@ metadata {
details(["contact","temperature","battery","refresh"])
}
}
def parse(String description) {
log.debug "description: $description"
Map map = [:]
if (description?.startsWith('catchall:')) {
map = parseCatchAllMessage(description)
@@ -90,10 +89,10 @@ def parse(String 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}"
@@ -101,7 +100,7 @@ def parse(String description) {
}
return result
}
private Map parseCatchAllMessage(String description) {
Map resultMap = [:]
def cluster = zigbee.parse(description)
@@ -127,7 +126,7 @@ private Map parseCatchAllMessage(String description) {
private boolean shouldProcessMessage(cluster) {
// 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 == 0x07 ||
(cluster.data.size() > 0 && cluster.data.first() == 0x3e)
@@ -137,14 +136,14 @@ private boolean shouldProcessMessage(cluster) {
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: $descMap"
Map resultMap = [:]
if (descMap.cluster == "0402" && descMap.attrId == "0000") {
def value = getTemperature(descMap.value)
@@ -153,10 +152,10 @@ private Map parseReportAttributeMessage(String description) {
else if (descMap.cluster == "0001" && descMap.attrId == "0020") {
resultMap = getBatteryResult(Integer.parseInt(descMap.value, 16))
}
return resultMap
}
private Map parseCustomMessage(String description) {
Map resultMap = [:]
if (description?.startsWith('temperature: ')) {
@@ -169,7 +168,7 @@ private Map parseCustomMessage(String description) {
private Map parseIasMessage(String description) {
List parsedMsg = description.split(' ')
String msgCode = parsedMsg[2]
Map resultMap = [:]
switch(msgCode) {
case '0x0020': // Closed/No Motion/Dry
@@ -202,7 +201,7 @@ private Map parseIasMessage(String description) {
}
return resultMap
}
def getTemperature(value) {
def celsius = Integer.parseInt(value, 16).shortValue() / 100
if(getTemperatureScale() == "C"){
@@ -215,11 +214,11 @@ def getTemperature(value) {
private Map getBatteryResult(rawValue) {
log.debug 'Battery'
def linkText = getLinkText(device)
def result = [
name: 'battery'
]
def volts = rawValue / 10
def descriptionText
if (rawValue == 0 || rawValue == 255) {}
@@ -230,8 +229,7 @@ private Map getBatteryResult(rawValue) {
def minVolts = 2.1
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
def roundedPct = Math.round(pct * 100)
result.value = Math.min(100, roundedPct)
result.value = Math.min(100, (int) pct * 100)
result.descriptionText = "${linkText} battery was ${result.value}%"
}
@@ -277,7 +275,7 @@ def refresh() {
def configure() {
sendEvent(name: "checkInterval", value: 7200, displayed: false)
String zigbeeEui = swapEndianHex(device.hub.zigbeeEui)
log.debug "Configuring Reporting, IAS CIE, and Bindings."
def configCmds = [

View File

@@ -21,7 +21,6 @@ metadata {
capability "Temperature Measurement"
capability "Relative Humidity Measurement"
capability "Health Check"
capability "Sensor"
fingerprint endpointId: "01", inClusters: "0001,0003,0020,0402,0B05,FC45", outClusters: "0019,0003"
}
@@ -206,8 +205,7 @@ private Map getBatteryResult(rawValue) {
def minVolts = 2.1
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
def roundedPct = Math.round(pct * 100)
result.value = Math.min(100, roundedPct)
result.value = Math.min(100, (int) pct * 100)
result.descriptionText = "${linkText} battery was ${result.value}%"
}

View File

@@ -16,8 +16,6 @@
metadata {
definition (name: "Simulated Alarm", namespace: "smartthings/testing", author: "SmartThings") {
capability "Alarm"
capability "Sensor"
capability "Actuator"
}
simulator {

View File

@@ -1,8 +1,6 @@
metadata {
definition (name: "Simulated Color Control", namespace: "smartthings/testing", author: "SmartThings") {
capability "Color Control"
capability "Sensor"
capability "Actuator"
}
simulator {

View File

@@ -15,7 +15,6 @@ metadata {
// Automatically generated. Make future change here.
definition (name: "Simulated Contact Sensor", namespace: "smartthings/testing", author: "bob") {
capability "Contact Sensor"
capability "Sensor"
command "open"
command "close"

View File

@@ -15,8 +15,6 @@ metadata {
// Automatically generated. Make future change here.
definition (name: "Simulated Lock", namespace: "smartthings/testing", author: "bob") {
capability "Lock"
capability "Sensor"
capability "Actuator"
}
// Simulated lock

View File

@@ -15,7 +15,6 @@ metadata {
// Automatically generated. Make future change here.
definition (name: "Simulated Motion Sensor", namespace: "smartthings/testing", author: "bob") {
capability "Motion Sensor"
capability "Sensor"
command "active"
command "inactive"

View File

@@ -15,7 +15,6 @@ metadata {
// Automatically generated. Make future change here.
definition (name: "Simulated Presence Sensor", namespace: "smartthings/testing", author: "bob") {
capability "Presence Sensor"
capability "Sensor"
command "arrived"
command "departed"

View File

@@ -16,8 +16,6 @@ metadata {
definition (name: "Simulated Switch", namespace: "smartthings/testing", author: "bob") {
capability "Switch"
capability "Relay Switch"
capability "Sensor"
capability "Actuator"
command "onPhysical"
command "offPhysical"

View File

@@ -16,7 +16,6 @@ metadata {
definition (name: "Simulated Temperature Sensor", namespace: "smartthings/testing", author: "SmartThings") {
capability "Temperature Measurement"
capability "Switch Level"
capability "Sensor"
command "up"
command "down"

View File

@@ -16,8 +16,6 @@ metadata {
definition (name: "Simulated Thermostat", namespace: "smartthings/testing", author: "SmartThings") {
capability "Thermostat"
capability "Relative Humidity Measurement"
capability "Sensor"
capability "Actuator"
command "tempUp"
command "tempDown"

View File

@@ -15,7 +15,6 @@ metadata {
// Automatically generated. Make future change here.
definition (name: "Simulated Water Sensor", namespace: "smartthings/testing", author: "SmartThings") {
capability "Water Sensor"
capability "Sensor"
command "wet"
command "dry"

View File

@@ -13,7 +13,7 @@
* for the specific language governing permissions and limitations under the License.
*
*/
metadata {
definition (name: "Tyco Door/Window Sensor", namespace: "smartthings", author: "SmartThings") {
capability "Battery"
@@ -21,28 +21,28 @@ metadata {
capability "Contact Sensor"
capability "Refresh"
capability "Temperature Measurement"
command "enrollResponse"
fingerprint inClusters: "0000,0001,0003,0402,0500,0020,0B05", outClusters: "0019", manufacturer: "Visonic", model: "MCT-340 SMA"
}
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 {
standardTile("contact", "device.contact", width: 2, height: 2) {
state("open", label:'${name}', icon:"st.contact.contact.open", backgroundColor:"#ffa81e")
state("closed", label:'${name}', icon:"st.contact.contact.closed", backgroundColor:"#79b821")
}
valueTile("temperature", "device.temperature", inactiveLabel: false) {
state "temperature", label:'${currentValue}°',
backgroundColors:[
@@ -58,23 +58,23 @@ metadata {
valueTile("battery", "device.battery", decoration: "flat", inactiveLabel: false) {
state "battery", label:'${currentValue}% battery', unit:""
}
standardTile("refresh", "device.refresh", inactiveLabel: false, decoration: "flat") {
state "default", action:"refresh.refresh", icon:"st.secondary.refresh"
}
standardTile("configure", "device.configure", inactiveLabel: false, decoration: "flat") {
state "configure", label:'', action:"configuration.configure", icon:"st.secondary.configure"
}
main (["contact", "temperature"])
details(["contact","temperature","battery","refresh","configure"])
}
}
def parse(String description) {
log.debug "description: $description"
Map map = [:]
if (description?.startsWith('catchall:')) {
map = parseCatchAllMessage(description)
@@ -88,10 +88,10 @@ def parse(String 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}"
@@ -99,7 +99,7 @@ def parse(String description) {
}
return result
}
private Map parseCatchAllMessage(String description) {
Map resultMap = [:]
def cluster = zigbee.parse(description)
@@ -125,20 +125,20 @@ private Map parseCatchAllMessage(String description) {
private boolean shouldProcessMessage(cluster) {
// 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 == 0x07 ||
(cluster.data.size() > 0 && cluster.data.first() == 0x3e)
return !ignoredMessage
}
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: $descMap"
Map resultMap = [:]
if (descMap.cluster == "0402" && descMap.attrId == "0000") {
def value = getTemperature(descMap.value)
@@ -147,10 +147,10 @@ private Map parseReportAttributeMessage(String description) {
else if (descMap.cluster == "0001" && descMap.attrId == "0020") {
resultMap = getBatteryResult(Integer.parseInt(descMap.value, 16))
}
return resultMap
}
private Map parseCustomMessage(String description) {
Map resultMap = [:]
if (description?.startsWith('temperature: ')) {
@@ -163,7 +163,7 @@ private Map parseCustomMessage(String description) {
private Map parseIasMessage(String description) {
List parsedMsg = description.split(' ')
String msgCode = parsedMsg[2]
Map resultMap = [:]
switch(msgCode) {
case '0x0020': // Closed/No Motion/Dry
@@ -196,7 +196,7 @@ private Map parseIasMessage(String description) {
}
return resultMap
}
def getTemperature(value) {
def celsius = Integer.parseInt(value, 16).shortValue() / 100
if(getTemperatureScale() == "C"){
@@ -209,11 +209,11 @@ def getTemperature(value) {
private Map getBatteryResult(rawValue) {
log.debug 'Battery'
def linkText = getLinkText(device)
def result = [
name: 'battery'
]
def volts = rawValue / 10
def descriptionText
if (volts > 3.5) {
@@ -223,8 +223,7 @@ private Map getBatteryResult(rawValue) {
def minVolts = 2.1
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
def roundedPct = Math.round(pct * 100)
result.value = Math.min(100, roundedPct)
result.value = Math.min(100, (int) pct * 100)
result.descriptionText = "${linkText} battery was ${result.value}%"
}
@@ -262,7 +261,7 @@ def refresh()
{
log.debug "Refreshing Temperature and Battery"
[
"st rattr 0x${device.deviceNetworkId} 1 0x402 0", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 1 0x20"
@@ -275,24 +274,24 @@ def configure() {
log.debug "Configuring Reporting, IAS CIE, and Bindings."
def configCmds = [
"delay 1000",
"zcl global write 0x500 0x10 0xf0 {${zigbeeEui}}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zcl global send-me-a-report 1 0x20 0x20 600 3600 {01}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zcl global send-me-a-report 0x402 0 0x29 300 3600 {6400}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
//"raw 0x500 {01 23 00 00 00}", "delay 200",
//"send 0x${device.deviceNetworkId} 1 1", "delay 1500",
"zdo bind 0x${device.deviceNetworkId} 1 1 0x402 {${device.zigbeeId}} {}", "delay 500",
"zdo bind 0x${device.deviceNetworkId} 1 1 1 {${device.zigbeeId}} {}",
"delay 500"
]
return configCmds + enrollResponse() + refresh() // send refresh cmds as part of config
@@ -300,11 +299,11 @@ def configure() {
def enrollResponse() {
log.debug "Sending enroll response"
[
[
"raw 0x500 {01 23 00 00 00}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1"
]
}
private hex(value) {

View File

@@ -1,7 +1,8 @@
/**
* ZigBee Button
* Iris Smart Fob
*
* Copyright 2015 Mitch Pond
* Presence code adapted from SmartThings Arrival Sensor HA device type
*
* 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:
@@ -13,235 +14,181 @@
* for the specific language governing permissions and limitations under the License.
*
*/
metadata {
definition (name: "ZigBee Button", namespace: "smartthings", author: "Mitch Pond") {
capability "Actuator"
capability "Battery"
capability "Button"
definition (name: "ZigBee Button", namespace: "smartthings", author: "Mitch Pond") {
capability "Battery"
capability "Button"
capability "Configuration"
capability "Refresh"
capability "Sensor"
command "enrollResponse"
fingerprint inClusters: "0000, 0001, 0003, 0020, 0402, 0B05", outClusters: "0003, 0006, 0008, 0019", manufacturer: "OSRAM", model: "LIGHTIFY Dimming Switch", deviceJoinName: "OSRAM LIGHTIFY Dimming Switch"
//fingerprint inClusters: "0000, 0001, 0003, 0020, 0500", outClusters: "0003,0019", manufacturer: "CentraLite", model: "3455-L", deviceJoinName: "Iris Care Pendant"
//fingerprint inClusters: "0000, 0001, 0003, 0007, 0020, 0402, 0B05", outClusters: "0003, 0006, 0019", manufacturer: "CentraLite", model: "3460-L", deviceJoinName: "Iris Smart Button"
//fingerprint inClusters: "0000, 0001, 0003, 0007, 0020, 0B05", outClusters: "0003, 0006, 0019", manufacturer: "CentraLite", model:"3450-L", deviceJoinName: "Iris KeyFob"
capability "Presence Sensor"
capability "Sensor"
//fingerprint endpointId: "01", profileId: "0104", inClusters: "0000,0001,0003,0007,0020,0B05", outClusters: "0003,0006,0019", model:"3450-L", manufacturer: "CentraLite"
}
preferences{
input ("holdTime", "number", title: "Minimum time in seconds for a press to count as \"held\"",
defaultValue: 3, displayDuringSetup: false)
input "checkInterval", "enum", title: "Presence timeout (minutes)",
defaultValue:"2", options: ["2", "3", "5"], displayDuringSetup: false
input "logging", "bool", title: "Enable debug logging",
defaultValue: false, displayDuringSetup: false
}
simulator {}
preferences {
section {
input ("holdTime", "number", title: "Minimum time in seconds for a press to count as \"held\"", defaultValue: 1, displayDuringSetup: false)
tiles(scale: 2) {
standardTile("presence", "device.presence", width: 4, height: 4, canChangeBackground: true) {
state "present", label: "Present", labelIcon:"st.presence.tile.present", backgroundColor:"#53a7c0"
state "not present", labelIcon:"st.presence.tile.not-present", backgroundColor:"#ffffff"
}
}
tiles {
standardTile("button", "device.button", width: 2, height: 2) {
state "default", label: "", icon: "st.unknown.zwave.remote-controller", backgroundColor: "#ffffff"
state "button 1 pushed", label: "pushed #1", icon: "st.unknown.zwave.remote-controller", backgroundColor: "#79b821"
standardTile("button", "device.button", decoration: "flat", width: 2, height: 2) {
state "default", icon: "st.unknown.zwave.remote-controller", backgroundColor: "#ffffff"
}
valueTile("battery", "device.battery", decoration: "flat", width: 2, height: 2) {
state "battery", label:'${currentValue}% battery', unit:""
}
valueTile("battery", "device.battery", decoration: "flat", inactiveLabel: false) {
state "battery", label:'${currentValue}% battery', unit:""
}
standardTile("refresh", "device.refresh", inactiveLabel: false, decoration: "flat") {
state "default", action:"refresh.refresh", icon:"st.secondary.refresh"
}
main (["button"])
details(["button", "battery", "refresh"])
}
main (["presence"])
details(["presence","button","battery"])
}
}
def parse(String description) {
log.debug "description is $description"
def event = zigbee.getEvent(description)
if (event) {
sendEvent(event)
}
else {
if ((description?.startsWith("catchall:")) || (description?.startsWith("read attr -"))) {
def descMap = zigbee.parseDescriptionAsMap(description)
if (descMap.clusterInt == 0x0001 && descMap.attrInt == 0x0020) {
event = getBatteryResult(zigbee.convertHexToInt(descMap.value))
}
else if (descMap.clusterInt == 0x0006 || descMap.clusterInt == 0x0008) {
event = parseNonIasButtonMessage(descMap)
}
}
else if (description?.startsWith('zone status')) {
event = parseIasButtonMessage(description)
}
log.debug "Parse returned $event"
def result = event ? createEvent(event) : []
if (description?.startsWith('enroll request')) {
List cmds = enrollResponse()
result = cmds?.collect { new physicalgraph.device.HubAction(it) }
}
return result
}
}
private Map parseIasButtonMessage(String description) {
int zoneInt = Integer.parseInt((description - "zone status 0x"), 16)
if (zoneInt & 0x02) {
resultMap = getButtonResult('press')
} else {
resultMap = getButtonResult('release')
}
return resultMap
}
private Map getBatteryResult(rawValue) {
log.debug 'Battery'
def volts = rawValue / 10
if (volts > 3.0 || volts == 0 || rawValue == 0xFF) {
return [:]
}
else {
def result = [
name: 'battery'
]
def minVolts = 2.1
def maxVolts = 3.0
def pct = (volts - minVolts) / (maxVolts - minVolts)
result.value = Math.min(100, (int) pct * 100)
def linkText = getLinkText(device)
result.descriptionText = "${linkText} battery was ${result.value}%"
return result
}
}
private Map parseNonIasButtonMessage(Map descMap){
def buttonState = ""
def buttonNumber = 0
if (((device.getDataValue("model") == "3460-L") || (device.getDataValue("model") == "3450-L"))
&&(descMap.clusterInt == 0x0006)) {
if (descMap.command == "01") {
getButtonResult("press")
}
else if (descMap.command == "00") {
getButtonResult("release")
}
}
else if (descMap.clusterInt == 0x0006) {
buttonState = "pushed"
if (descMap.command == "01") {
buttonNumber = 1
}
else if (descMap.command == "00") {
buttonNumber = 2
}
if (buttonNumber !=0) {
def descriptionText = "$device.displayName button $buttonNumber was $buttonState"
return createEvent(name: "button", value: buttonState, data: [buttonNumber: buttonNumber], descriptionText: descriptionText, isStateChange: true)
}
else {
return [:]
}
}
else if (descMap.clusterInt == 0x0008) {
if (descMap.command == "05") {
state.buttonNumber = 1
getButtonResult("press", 1)
}
else if (descMap.command == "01") {
state.buttonNumber = 2
getButtonResult("press", 2)
}
else if (descMap.command == "03") {
getButtonResult("release", state.buttonNumber)
}
}
}
def refresh() {
log.debug "Refreshing Battery"
return zigbee.readAttribute(0x0001, 0x20) +
zigbee.enrollResponse()
}
def configure() {
log.debug "Configuring Reporting, IAS CIE, and Bindings."
def cmds = []
if (device.getDataValue("model") == "3450-L") {
cmds << [
"zdo bind 0x${device.deviceNetworkId} 1 1 6 {${device.zigbeeId}} {}", "delay 300",
"zdo bind 0x${device.deviceNetworkId} 2 1 6 {${device.zigbeeId}} {}", "delay 300",
"zdo bind 0x${device.deviceNetworkId} 3 1 6 {${device.zigbeeId}} {}", "delay 300",
"zdo bind 0x${device.deviceNetworkId} 4 1 6 {${device.zigbeeId}} {}", "delay 300"
]
}
return zigbee.onOffConfig() +
zigbee.levelConfig() +
zigbee.configureReporting(0x0001, 0x20, 0x20, 30, 21600, 0x01) +
zigbee.enrollResponse() +
zigbee.readAttribute(0x0001, 0x20) +
cmds
}
private Map getButtonResult(buttonState, buttonNumber = 1) {
if (buttonState == 'release') {
log.debug "Button was value : $buttonState"
def timeDiff = now() - state.pressTime
log.info "timeDiff: $timeDiff"
def holdPreference = holdTime ?: 1
log.info "holdp1 : $holdPreference"
holdPreference = (holdPreference as int) * 1000
log.info "holdp2 : $holdPreference"
if (timeDiff > 10000) { //timeDiff>10sec check for refresh sending release value causing actions to be executed
return [:]
}
else {
if (timeDiff < holdPreference) {
buttonState = "pushed"
}
else {
buttonState = "held"
}
def descriptionText = "$device.displayName button $buttonNumber was $buttonState"
return createEvent(name: "button", value: buttonState, data: [buttonNumber: buttonNumber], descriptionText: descriptionText, isStateChange: true)
}
}
else if (buttonState == 'press') {
log.debug "Button was value : $buttonState"
state.pressTime = now()
log.info "presstime: ${state.pressTime}"
return [:]
}
}
def installed() {
initialize()
def descMap = zigbee.parseDescriptionAsMap(description)
logIt descMap
state.lastCheckin = now()
logIt "lastCheckin = ${state.lastCheckin}"
handlePresenceEvent(true)
def results = []
if (description?.startsWith('catchall:'))
results = parseCatchAllMessage(descMap)
else if (description?.startsWith('read attr -'))
results = parseReportAttributeMessage(descMap)
else logIt(descMap, "trace")
return results;
}
def updated() {
initialize()
startTimer()
configure()
}
def initialize() {
if ((device.getDataValue("manufacturer") == "OSRAM") && (device.getDataValue("model") == "LIGHTIFY Dimming Switch")) {
sendEvent(name: "numberOfButtons", value: 2)
}
else if ((device.getDataValue("manufacturer") == "CentraLite") &&
((device.getDataValue("model") == "3455-L") || (device.getDataValue("model") == "3460-L"))) {
sendEvent(name: "numberOfButtons", value: 1)
}
else if ((device.getDataValue("manufacturer") == "CentraLite") && (device.getDataValue("model") == "3450-L")) {
sendEvent(name: "numberOfButtons", value: 4)
}
else {
//default. can be changed
sendEvent(name: "numberOfButtons", value: 4)
}
def configure(){
logIt "Configuring Smart Fob..."
[
"zdo bind 0x${device.deviceNetworkId} 1 1 6 {${device.zigbeeId}} {}", "delay 200",
"zdo bind 0x${device.deviceNetworkId} 2 1 6 {${device.zigbeeId}} {}", "delay 200",
"zdo bind 0x${device.deviceNetworkId} 3 1 6 {${device.zigbeeId}} {}", "delay 200",
"zdo bind 0x${device.deviceNetworkId} 4 1 6 {${device.zigbeeId}} {}", "delay 200",
"zdo bind 0x${device.deviceNetworkId} 1 1 1 {${device.zigbeeId}} {}", "delay 200"
] +
zigbee.configureReporting(0x0001,0x0020,0x20,20,20,0x01)
}
def parseCatchAllMessage(descMap) {
if (descMap?.clusterId == "0006" && descMap?.command == "01") //button pressed
handleButtonPress(descMap.sourceEndpoint as int)
else if (descMap?.clusterId == "0006" && descMap?.command == "00") //button released
handleButtonRelease(descMap.sourceEndpoint as int)
else logIt("Parse: Unhandled message: ${descMap}","trace")
}
def parseReportAttributeMessage(descMap) {
if (descMap?.cluster == "0001" && descMap?.attrId == "0020") createBatteryEvent(getBatteryLevel(descMap.value))
else logIt descMap
}
private createBatteryEvent(percent) {
logIt "Battery level at " + percent
return createEvent([name: "battery", value: percent])
}
//this method determines if a press should count as a push or a hold and returns the relevant event type
private handleButtonRelease(button) {
logIt "lastPress state variable: ${state.lastPress}"
def sequenceError = {logIt("Uh oh...missed a message? Dropping this event.", "error"); state.lastPress = null; return []}
if (!state.lastPress) return sequenceError()
else if (state.lastPress.button != button) return sequenceError()
def currentTime = now()
def startOfPress = state.lastPress?.time
def timeDif = currentTime - startOfPress
def holdTimeMillisec = (settings.holdTime?:3).toInteger() * 1000
state.lastPress = null //we're done with this. clear it to make error conditions easier to catch
if (timeDif < 0)
//likely a message sequence issue or dropped packet. Drop this press and wait for another.
return sequenceError()
else if (timeDif < holdTimeMillisec)
return createButtonEvent(button,"pushed")
else
return createButtonEvent(button,"held")
}
private handleButtonPress(button) {
state.lastPress = [button: button, time: now()]
}
private createButtonEvent(button,action) {
logIt "Button ${button} ${action}"
return createEvent([
name: "button",
value: action,
data:[buttonNumber: button],
descriptionText: "${device.displayName} button ${button} was ${action}",
isStateChange: true,
displayed: true])
}
private getBatteryLevel(rawValue) {
def intValue = Integer.parseInt(rawValue,16)
def min = 2.1
def max = 3.0
def vBatt = intValue / 10
return ((vBatt - min) / (max - min) * 100) as int
}
private handlePresenceEvent(present) {
def wasPresent = device.currentState("presence")?.value == "present"
if (!wasPresent && present) {
logIt "Sensor is present"
startTimer()
} else if (!present) {
logIt "Sensor is not present"
stopTimer()
}
def linkText = getLinkText(device)
def eventMap = [
name: "presence",
value: present ? "present" : "not present",
linkText: linkText,
descriptionText: "${linkText} has ${present ? 'arrived' : 'left'}",
]
logIt "Creating presence event: ${eventMap}"
sendEvent(eventMap)
}
private startTimer() {
logIt "Scheduling periodic timer"
schedule("0 * * * * ?", checkPresenceCallback)
}
private stopTimer() {
logIt "Stopping periodic timer"
unschedule()
}
def checkPresenceCallback() {
def timeSinceLastCheckin = (now() - state.lastCheckin) / 1000
def theCheckInterval = (checkInterval ? checkInterval as int : 2) * 60
logIt "Sensor checked in ${timeSinceLastCheckin} seconds ago"
if (timeSinceLastCheckin >= theCheckInterval) {
handlePresenceEvent(false)
}
}
// ****** Utility functions ******
private logIt(str, logLevel = 'debug') {if (settings.logging) log."$logLevel"(str) }

View File

@@ -53,10 +53,7 @@ def parse(String description) {
def event = zigbee.getEvent(description)
if (event) {
if (event.name=="level" && event.value==0) {}
else {
sendEvent(event)
}
sendEvent(event)
}
else {
log.warn "DID NOT PARSE MESSAGE for description : $description"

View File

@@ -28,9 +28,6 @@ metadata {
capability "Switch"
capability "Switch Level"
attribute "colorName", "string"
command "setGenericName"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0008,0300,0B04,FC0F", outClusters: "0019", manufacturer: "OSRAM", model: "LIGHTIFY Flex RGBW", deviceJoinName: "OSRAM LIGHTIFY LED FLEXIBLE STRIP RGBW"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0008,0300,0B04,FC0F", outClusters: "0019", manufacturer: "OSRAM", model: "Flex RGBW", deviceJoinName: "OSRAM LIGHTIFY LED FLEXIBLE STRIP RGBW"
fingerprint profileId: "0104", inClusters: "0000,0003,0004,0005,0006,0008,0300,0B04,FC0F", outClusters: "0019", manufacturer: "OSRAM", model: "LIGHTIFY A19 RGBW", deviceJoinName: "OSRAM LIGHTIFY LED A19 RGBW"
@@ -57,15 +54,15 @@ metadata {
controlTile("colorTempSliderControl", "device.colorTemperature", "slider", width: 4, height: 2, inactiveLabel: false, range:"(2700..6500)") {
state "colorTemperature", action:"color temperature.setColorTemperature"
}
valueTile("colorName", "device.colorName", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "colorName", label: '${currentValue}'
valueTile("colorTemp", "device.colorTemperature", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "colorTemperature", label: '${currentValue} K'
}
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", "colorTempSliderControl", "colorName", "refresh"])
details(["switch", "colorTempSliderControl", "colorTemp", "refresh"])
}
}
@@ -81,16 +78,10 @@ private getATTRIBUTE_COLOR_TEMPERATURE() { 0x0007 }
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 {
if (event.name=="colorTemperature") {
setGenericName(event.value)
}
sendEvent(event)
}
def finalResult = zigbee.getEvent(description)
if (finalResult) {
log.debug finalResult
sendEvent(finalResult)
}
else {
def zigbeeMap = zigbee.parseDescriptionAsMap(description)
@@ -130,27 +121,9 @@ def configure() {
}
def setColorTemperature(value) {
setGenericName(value)
zigbee.setColorTemperature(value)
}
//Naming based on the wiki article here: http://en.wikipedia.org/wiki/Color_temperature
def setGenericName(value){
if (value != null) {
def genericName = "White"
if (value < 3300) {
genericName = "Soft White"
} else if (value < 4150) {
genericName = "Moonlight"
} else if (value <= 5000) {
genericName = "Cool White"
} else if (value >= 5000) {
genericName = "Daylight"
}
sendEvent(name: "colorName", value: genericName)
}
}
def setLevel(value) {
zigbee.setLevel(value)
}

View File

@@ -20,7 +20,6 @@ metadata {
capability "Switch"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0004, 0005, 0006"
fingerprint profileId: "0104", inClusters: "0000, 0003, 0006", outClusters: "0003, 0006, 0019, 0406", manufacturer: "Leviton", model: "ZSS-10", deviceJoinName: "Leviton Switch"
}
// simulator metadata

View File

@@ -1,5 +1,5 @@
/**
* Copyright 2016 SmartThings
* 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:
@@ -11,133 +11,100 @@
* for the specific language governing permissions and limitations under the License.
*
*/
/*
* Capabilities
* - Battery
* - Configuration
* - Refresh
* - Switch
* - Valve
*/
metadata {
definition (name: "ZigBee Valve", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Battery"
capability "Configuration"
capability "Power Source"
capability "Refresh"
capability "Valve"
definition (name: "Zigbee Valve", namespace: "smartthings", author: "SmartThings") {
capability "Battery"
capability "Configuration"
capability "Refresh"
capability "Switch"
capability "Valve"
fingerprint profileId: "0104", inClusters: "0000, 0001, 0003, 0006, 0020, 0B02, FC02", outClusters: "0019", manufacturer: "WAXMAN", model: "leakSMART Water Valve v2.10", deviceJoinName: "leakSMART Valve"
fingerprint profileId: "0104", inClusters: "0000, 0001, 0003, 0004, 0005, 0006, 0008, 000F, 0020, 0B02", outClusters: "0003, 0019", manufacturer: "WAXMAN", model: "House Water Valve - MDL-TBD", deviceJoinName: "Waxman House Water Valve"
}
fingerprint profileId: "0104", inClusters: "0000,0001,0003,0004,0005,0020,0006,0B02", outClusters: "0003"
}
// simulator metadata
simulator {
// status messages
status "on": "on/off: 1"
status "off": "on/off: 0"
// simulator metadata
simulator {
// status messages
status "on": "on/off: 1"
status "off": "on/off: 0"
// reply messages
reply "zcl on-off on": "on/off: 1"
reply "zcl on-off off": "on/off: 0"
}
// reply messages
reply "zcl on-off on": "on/off: 1"
reply "zcl on-off off": "on/off: 0"
}
tiles(scale: 2) {
multiAttributeTile(name:"valve", type: "generic", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.contact", key: "PRIMARY_CONTROL") {
attributeState "open", label: '${name}', action: "valve.close", icon: "st.valves.water.open", backgroundColor: "#53a7c0", nextState:"closing"
attributeState "closed", label: '${name}', action: "valve.open", icon: "st.valves.water.closed", backgroundColor: "#e86d13", nextState:"opening"
attributeState "opening", label: '${name}', action: "valve.close", icon: "st.valves.water.open", backgroundColor: "#53a7c0", nextState:"closing"
attributeState "closing", label: '${name}', action: "valve.open", icon: "st.valves.water.closed", backgroundColor: "#e86d13", nextState:"opening"
}
tileAttribute ("powerSource", key: "SECONDARY_CONTROL") {
attributeState "powerSource", label:'Power Source: ${currentValue}'
}
}
valueTile("battery", "device.battery", inactiveLabel:false, decoration:"flat", width:2, height:2) {
state "battery", label:'${currentValue}% battery', unit:""
}
standardTile("refresh", "device.refresh", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "default", label:"", action:"refresh.refresh", icon:"st.secondary.refresh"
}
main(["valve"])
details(["valve", "battery", "refresh"])
}
// UI tile definitions
tiles {
standardTile("switch", "device.switch", width: 2, height: 2, canChangeIcon: true) {
state "off", label: 'closed', action: "switch.on", icon: "st.Outdoor.outdoor16", backgroundColor: "#e86d13"
state "on", label: 'open', action: "switch.off", icon: "st.Outdoor.outdoor16", backgroundColor: "#53a7c0"
}
main "switch"
details(["switch"])
}
}
private getCLUSTER_BASIC() { 0x0000 }
private getBASIC_ATTR_POWER_SOURCE() { 0x0007 }
private getCLUSTER_POWER() { 0x0001 }
private getPOWER_ATTR_BATTERY_PERCENTAGE_REMAINING() { 0x0021 }
private getTYPE_U8() { 0x20 }
private getTYPE_ENUM8() { 0x30 }
// Parse incoming device messages to generate events
def parse(String description) {
log.debug "description is $description"
def event = zigbee.getEvent(description)
if (event) {
if(event.name == "switch") {
event.name = "contact" //0006 cluster in valve is tied to contact
if(event.value == "on") {
event.value = "open"
}
else if(event.value == "off") {
event.value = "closed"
}
}
sendEvent(event)
}
else {
def descMap = zigbee.parseDescriptionAsMap(description)
if (descMap.clusterInt == CLUSTER_BASIC && descMap.attrInt == BASIC_ATTR_POWER_SOURCE){
def value = descMap.value
if (value == "01" || value == "02") {
sendEvent(name: "powerSource", value: "Mains")
}
else if (value == "03") {
sendEvent(name: "powerSource", value: "Battery")
}
else if (value == "04") {
sendEvent(name: "powerSource", value: "DC")
}
else {
sendEvent(name: "powerSource", value: "Unknown")
}
}
else if (descMap.clusterInt == CLUSTER_POWER && descMap.attrInt == POWER_ATTR_BATTERY_PERCENTAGE_REMAINING) {
event.name = "battery"
event.value = Math.round(Integer.parseInt(descMap.value, 16) / 2)
sendEvent(event)
}
else {
log.warn "DID NOT PARSE MESSAGE for description : $description"
log.debug descMap
}
}
log.info description
if (description?.startsWith("catchall:")) {
def value = name == "switch" ? (description?.endsWith(" 1") ? "on" : "off") : null
def result = createEvent(name: name, value: value)
def msg = zigbee.parse(description)
log.debug "Parse returned ${result?.descriptionText}"
return result
log.trace msg
log.trace "data: $msg.data"
}
else {
def name = description?.startsWith("on/off: ") ? "switch" : null
def value = name == "switch" ? (description?.endsWith(" 1") ? "on" : "off") : null
def result = createEvent(name: name, value: value)
log.debug "Parse returned ${result?.descriptionText}"
return result
}
}
// Commands to device
def on() {
log.debug "on()"
sendEvent(name: "switch", value: "on")
"st cmd 0x${device.deviceNetworkId} 1 6 1 {}"
}
def off() {
log.debug "off()"
sendEvent(name: "switch", value: "off")
"st cmd 0x${device.deviceNetworkId} 1 6 0 {}"
}
def open() {
zigbee.on()
log.debug "on()"
sendEvent(name: "switch", value: "on")
"st cmd 0x${device.deviceNetworkId} 1 6 1 {}"
}
def close() {
zigbee.off()
log.debug "off()"
sendEvent(name: "switch", value: "off")
"st cmd 0x${device.deviceNetworkId} 1 6 0 {}"
}
def refresh() {
log.debug "refresh called"
zigbee.onOffRefresh() +
zigbee.readAttribute(CLUSTER_BASIC, BASIC_ATTR_POWER_SOURCE) +
zigbee.readAttribute(CLUSTER_POWER, POWER_ATTR_BATTERY_PERCENTAGE_REMAINING) +
zigbee.onOffConfig() +
zigbee.configureReporting(CLUSTER_POWER, POWER_ATTR_BATTERY_PERCENTAGE_REMAINING, TYPE_U8, 600, 21600, 1) +
zigbee.configureReporting(CLUSTER_BASIC, BASIC_ATTR_POWER_SOURCE, TYPE_ENUM8, 5, 21600, 1)
log.debug "sending refresh command"
"st rattr 0x${device.deviceNetworkId} 1 6 0"
}
def configure() {
log.debug "Configuring Reporting and Bindings."
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)
"zdo bind 0x${device.deviceNetworkId} 1 1 6 {${device.zigbeeId}} {}"
}

View File

@@ -49,6 +49,9 @@ metadata {
tileAttribute ("device.level", key: "SLIDER_CONTROL") {
attributeState "level", action:"switch level.setLevel"
}
tileAttribute ("colorName", key: "SECONDARY_CONTROL") {
attributeState "colorName", label:'${currentValue}'
}
}
standardTile("refresh", "device.refresh", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
@@ -58,12 +61,12 @@ metadata {
controlTile("colorTempSliderControl", "device.colorTemperature", "slider", width: 4, height: 2, inactiveLabel: false, range:"(2700..6500)") {
state "colorTemperature", action:"color temperature.setColorTemperature"
}
valueTile("colorName", "device.colorName", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "colorName", label: '${currentValue}'
valueTile("colorTemp", "device.colorTemperature", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "colorTemperature", label: '${currentValue} K'
}
main(["switch"])
details(["switch", "colorTempSliderControl", "colorName", "refresh"])
details(["switch", "colorTempSliderControl", "colorTemp", "refresh"])
}
}
@@ -72,13 +75,7 @@ def parse(String description) {
log.debug "description is $description"
def event = zigbee.getEvent(description)
if (event) {
if (event.name=="level" && event.value==0) {}
else {
if (event.name=="colorTemperature") {
setGenericName(event.value)
}
sendEvent(event)
}
sendEvent(event)
}
else {
log.warn "DID NOT PARSE MESSAGE for description : $description"

View File

@@ -1,205 +0,0 @@
/**
* Copyright 2015 SmartThings
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except
* in compliance with the License. You may obtain a copy of the License at:
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software distributed under the License is distributed
* on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License
* for the specific language governing permissions and limitations under the License.
*
*/
metadata {
definition (name: "Z-Wave Dimmer Switch Generic", namespace: "smartthings", author: "SmartThings") {
capability "Switch Level"
capability "Actuator"
capability "Switch"
capability "Polling"
capability "Refresh"
capability "Sensor"
fingerprint inClusters: "0x26", deviceJoinName: "Z-Wave Dimmer"
}
simulator {
status "on": "command: 2003, payload: FF"
status "off": "command: 2003, payload: 00"
status "09%": "command: 2003, payload: 09"
status "10%": "command: 2003, payload: 0A"
status "33%": "command: 2003, payload: 21"
status "66%": "command: 2003, payload: 42"
status "99%": "command: 2003, payload: 63"
// reply messages
reply "2001FF,delay 5000,2602": "command: 2603, payload: FF"
reply "200100,delay 5000,2602": "command: 2603, payload: 00"
reply "200119,delay 5000,2602": "command: 2603, payload: 19"
reply "200132,delay 5000,2602": "command: 2603, payload: 32"
reply "20014B,delay 5000,2602": "command: 2603, payload: 4B"
reply "200163,delay 5000,2602": "command: 2603, payload: 63"
}
tiles(scale: 2) {
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "on", label:'${name}', action:"switch.off", icon:"st.switches.switch.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "off", label:'${name}', action:"switch.on", icon:"st.switches.switch.off", backgroundColor:"#ffffff", nextState:"turningOn"
attributeState "turningOn", label:'${name}', action:"switch.off", icon:"st.switches.switch.on", backgroundColor:"#79b821", nextState:"turningOff"
attributeState "turningOff", label:'${name}', action:"switch.on", icon:"st.switches.switch.off", backgroundColor:"#ffffff", nextState:"turningOn"
}
tileAttribute ("device.level", key: "SLIDER_CONTROL") {
attributeState "level", action:"switch level.setLevel"
}
}
standardTile("refresh", "device.switch", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
state "default", label:'', action:"refresh.refresh", icon:"st.secondary.refresh"
}
valueTile("level", "device.level", inactiveLabel: false, decoration: "flat", width: 2, height: 2) {
state "level", label:'${currentValue} %', unit:"%", backgroundColor:"#ffffff"
}
main(["switch"])
details(["switch", "level", "refresh"])
}
}
def parse(String description) {
def result = null
if (description != "updated") {
log.debug "parse() >> zwave.parse($description)"
def cmd = zwave.parse(description, [0x20: 1, 0x26: 1, 0x70: 1])
if (cmd) {
result = zwaveEvent(cmd)
}
}
if (result?.name == 'hail' && hubFirmwareLessThan("000.011.00602")) {
result = [result, response(zwave.basicV1.basicGet())]
log.debug "Was hailed: requesting state update"
} else {
log.debug "Parse returned ${result?.descriptionText}"
}
return result
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicReport cmd) {
dimmerEvents(cmd)
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicSet cmd) {
dimmerEvents(cmd)
}
def zwaveEvent(physicalgraph.zwave.commands.switchmultilevelv1.SwitchMultilevelReport cmd) {
dimmerEvents(cmd)
}
def zwaveEvent(physicalgraph.zwave.commands.switchmultilevelv1.SwitchMultilevelSet cmd) {
dimmerEvents(cmd)
}
private dimmerEvents(physicalgraph.zwave.Command cmd) {
def value = (cmd.value ? "on" : "off")
def result = [createEvent(name: "switch", value: value)]
if (cmd.value && cmd.value <= 100) {
result << createEvent(name: "level", value: cmd.value, unit: "%")
}
return result
}
def zwaveEvent(physicalgraph.zwave.commands.configurationv1.ConfigurationReport cmd) {
log.debug "ConfigurationReport $cmd"
def value = "when off"
if (cmd.configurationValue[0] == 1) {value = "when on"}
if (cmd.configurationValue[0] == 2) {value = "never"}
createEvent([name: "indicatorStatus", value: value])
}
def zwaveEvent(physicalgraph.zwave.commands.hailv1.Hail cmd) {
createEvent([name: "hail", value: "hail", descriptionText: "Switch button was pressed", displayed: false])
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd) {
log.debug "manufacturerId: ${cmd.manufacturerId}"
log.debug "manufacturerName: ${cmd.manufacturerName}"
log.debug "productId: ${cmd.productId}"
log.debug "productTypeId: ${cmd.productTypeId}"
def msr = String.format("%04X-%04X-%04X", cmd.manufacturerId, cmd.productTypeId, cmd.productId)
updateDataValue("MSR", msr)
updateDataValue("manufacturer", cmd.manufacturerName)
createEvent([descriptionText: "$device.displayName MSR: $msr", isStateChange: false])
}
def zwaveEvent(physicalgraph.zwave.commands.switchmultilevelv1.SwitchMultilevelStopLevelChange cmd) {
[createEvent(name:"switch", value:"on"), response(zwave.switchMultilevelV1.switchMultilevelGet().format())]
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
// Handles all Z-Wave commands we aren't interested in
[:]
}
def on() {
delayBetween([
zwave.basicV1.basicSet(value: 0xFF).format(),
zwave.switchMultilevelV1.switchMultilevelGet().format()
],5000)
}
def off() {
delayBetween([
zwave.basicV1.basicSet(value: 0x00).format(),
zwave.switchMultilevelV1.switchMultilevelGet().format()
],5000)
}
def setLevel(value) {
log.debug "setLevel >> value: $value"
def valueaux = value as Integer
def level = Math.max(Math.min(valueaux, 99), 0)
if (level > 0) {
sendEvent(name: "switch", value: "on")
} else {
sendEvent(name: "switch", value: "off")
}
sendEvent(name: "level", value: level, unit: "%")
delayBetween ([zwave.basicV1.basicSet(value: level).format(), zwave.switchMultilevelV1.switchMultilevelGet().format()], 5000)
}
def setLevel(value, duration) {
log.debug "setLevel >> value: $value, duration: $duration"
def valueaux = value as Integer
def level = Math.max(Math.min(valueaux, 99), 0)
def dimmingDuration = duration < 128 ? duration : 128 + Math.round(duration / 60)
def getStatusDelay = duration < 128 ? (duration*1000)+2000 : (Math.round(duration / 60)*60*1000)+2000
delayBetween ([zwave.switchMultilevelV2.switchMultilevelSet(value: level, dimmingDuration: dimmingDuration).format(),
zwave.switchMultilevelV1.switchMultilevelGet().format()], getStatusDelay)
}
def poll() {
zwave.switchMultilevelV1.switchMultilevelGet().format()
}
def refresh() {
log.debug "refresh() is called"
def commands = []
commands << zwave.switchMultilevelV1.switchMultilevelGet().format()
if (getDataValue("MSR") == null) {
commands << zwave.manufacturerSpecificV1.manufacturerSpecificGet().format()
}
delayBetween(commands,100)
}
def invertSwitch(invert=true) {
if (invert) {
zwave.configurationV1.configurationSet(configurationValue: [1], parameterNumber: 4, size: 1).format()
}
else {
zwave.configurationV1.configurationSet(configurationValue: [0], parameterNumber: 4, size: 1).format()
}
}

View File

@@ -28,6 +28,7 @@ metadata {
fingerprint deviceId: "0x0701", inClusters: "0x5E,0x98"
fingerprint deviceId: "0x0701", inClusters: "0x5E,0x86,0x72,0x98", outClusters: "0x5A,0x82"
fingerprint deviceId: "0x0701", inClusters: "0x5E,0x80,0x71,0x85,0x70,0x72,0x86,0x30,0x31,0x84,0x59,0x73,0x5A,0x8F,0x98,0x7A", outClusters:"0x20" // Philio multi+
fingerprint deviceId: "0x0701", inClusters: "0x5E,0x72,0x5A,0x80,0x73,0x84,0x85,0x59,0x71,0x70,0x7A,0x98" // Vision door/window
}
// simulator metadata
@@ -35,7 +36,6 @@ metadata {
// status messages
status "open": "command: 2001, payload: FF"
status "closed": "command: 2001, payload: 00"
status "wake up": "command: 8407, payload: "
}
// UI tile definitions
@@ -83,12 +83,12 @@ def updated() {
cmds = [
command(zwave.manufacturerSpecificV2.manufacturerSpecificGet()),
"delay 1200",
zwave.wakeUpV1.wakeUpNoMoreInformation().format()
zwave.wakeUpV1.wakeUpNoMoreInformation()
]
} else if (!state.lastbat) {
cmds = []
} else {
cmds = [zwave.wakeUpV1.wakeUpNoMoreInformation().format()]
cmds = [zwave.wakeUpV1.wakeUpNoMoreInformation()]
}
response(cmds)
}
@@ -175,7 +175,7 @@ def zwaveEvent(physicalgraph.zwave.commands.wakeupv1.WakeUpNotification cmd)
if (!state.lastbat || now() - state.lastbat > 53*60*60*1000) {
cmds << command(zwave.batteryV1.batteryGet())
} else {
cmds << zwave.wakeUpV1.wakeUpNoMoreInformation().format()
cmds << zwave.wakeUpV1.wakeUpNoMoreInformation()
}
[event, response(cmds)]
}

View File

@@ -1,143 +0,0 @@
/**
* Copyright 2015 SmartThings
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except
* in compliance with the License. You may obtain a copy of the License at:
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software distributed under the License is distributed
* on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License
* for the specific language governing permissions and limitations under the License.
*
*/
metadata {
definition (name: "Z-Wave Switch Generic", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Switch"
capability "Polling"
capability "Refresh"
capability "Sensor"
fingerprint inClusters: "0x25", deviceJoinName: "Z-Wave Switch"
}
// simulator metadata
simulator {
status "on": "command: 2003, payload: FF"
status "off": "command: 2003, payload: 00"
// reply messages
reply "2001FF,delay 100,2502": "command: 2503, payload: FF"
reply "200100,delay 100,2502": "command: 2503, payload: 00"
}
// tile definitions
tiles(scale: 2) {
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
tileAttribute ("device.switch", key: "PRIMARY_CONTROL") {
attributeState "on", label: '${name}', action: "switch.off", icon: "st.switches.switch.on", backgroundColor: "#79b821"
attributeState "off", label: '${name}', action: "switch.on", icon: "st.switches.switch.off", backgroundColor: "#ffffff"
}
}
standardTile("refresh", "device.switch", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
state "default", label:'', action:"refresh.refresh", icon:"st.secondary.refresh"
}
main "switch"
details(["switch","refresh"])
}
}
def parse(String description) {
def result = null
def cmd = zwave.parse(description, [0x20: 1, 0x70: 1])
if (cmd) {
result = createEvent(zwaveEvent(cmd))
}
if (result?.name == 'hail' && hubFirmwareLessThan("000.011.00602")) {
result = [result, response(zwave.basicV1.basicGet())]
log.debug "Was hailed: requesting state update"
} else {
log.debug "Parse returned ${result?.descriptionText}"
}
return result
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicReport cmd) {
[name: "switch", value: cmd.value ? "on" : "off", type: "physical"]
}
def zwaveEvent(physicalgraph.zwave.commands.basicv1.BasicSet cmd) {
[name: "switch", value: cmd.value ? "on" : "off", type: "physical"]
}
def zwaveEvent(physicalgraph.zwave.commands.switchbinaryv1.SwitchBinaryReport cmd) {
[name: "switch", value: cmd.value ? "on" : "off", type: "digital"]
}
def zwaveEvent(physicalgraph.zwave.commands.configurationv1.ConfigurationReport cmd) {
def value = "when off"
if (cmd.configurationValue[0] == 1) {value = "when on"}
if (cmd.configurationValue[0] == 2) {value = "never"}
[name: "indicatorStatus", value: value, display: false]
}
def zwaveEvent(physicalgraph.zwave.commands.hailv1.Hail cmd) {
[name: "hail", value: "hail", descriptionText: "Switch button was pressed", displayed: false]
}
def zwaveEvent(physicalgraph.zwave.commands.manufacturerspecificv2.ManufacturerSpecificReport cmd) {
log.debug "manufacturerId: ${cmd.manufacturerId}"
log.debug "manufacturerName: ${cmd.manufacturerName}"
log.debug "productId: ${cmd.productId}"
log.debug "productTypeId: ${cmd.productTypeId}"
def msr = String.format("%04X-%04X-%04X", cmd.manufacturerId, cmd.productTypeId, cmd.productId)
updateDataValue("MSR", msr)
updateDataValue("manufacturer", cmd.manufacturerName)
createEvent([descriptionText: "$device.displayName MSR: $msr", isStateChange: false])
}
def zwaveEvent(physicalgraph.zwave.Command cmd) {
// Handles all Z-Wave commands we aren't interested in
[:]
}
def on() {
delayBetween([
zwave.basicV1.basicSet(value: 0xFF).format(),
zwave.switchBinaryV1.switchBinaryGet().format()
])
}
def off() {
delayBetween([
zwave.basicV1.basicSet(value: 0x00).format(),
zwave.switchBinaryV1.switchBinaryGet().format()
])
}
def poll() {
delayBetween([
zwave.switchBinaryV1.switchBinaryGet().format(),
zwave.manufacturerSpecificV1.manufacturerSpecificGet().format()
])
}
def refresh() {
delayBetween([
zwave.switchBinaryV1.switchBinaryGet().format(),
zwave.manufacturerSpecificV1.manufacturerSpecificGet().format()
])
}
def invertSwitch(invert=true) {
if (invert) {
zwave.configurationV1.configurationSet(configurationValue: [1], parameterNumber: 4, size: 1).format()
}
else {
zwave.configurationV1.configurationSet(configurationValue: [0], parameterNumber: 4, size: 1).format()
}
}

View File

@@ -15,15 +15,12 @@ metadata {
definition (name: "Z-Wave Switch", namespace: "smartthings", author: "SmartThings") {
capability "Actuator"
capability "Indicator"
capability "Switch"
capability "Switch"
capability "Polling"
capability "Refresh"
capability "Sensor"
fingerprint mfr:"0063", prod:"4952", deviceJoinName: "Z-Wave Wall Switch"
fingerprint mfr:"0063", prod:"5257", deviceJoinName: "Z-Wave Wall Switch"
fingerprint mfr:"0063", prod:"5052", deviceJoinName: "Z-Wave Plug-In Switch"
fingerprint mfr:"0113", prod:"5257", deviceJoinName: "Z-Wave Wall Switch"
fingerprint inClusters: "0x25"
}
// simulator metadata
@@ -36,10 +33,6 @@ metadata {
reply "200100,delay 100,2502": "command: 2503, payload: 00"
}
preferences {
input "ledIndicator", "enum", title: "LED Indicator", description: "Turn LED indicator... ", required: false, options:["on": "When On", "off": "When Off", "never": "Never"], defaultValue: "off"
}
// tile definitions
tiles(scale: 2) {
multiAttributeTile(name:"switch", type: "lighting", width: 6, height: 4, canChangeIcon: true){
@@ -59,27 +52,10 @@ metadata {
}
main "switch"
details(["switch","refresh"])
details(["switch","refresh","indicator"])
}
}
def updated(){
switch (ledIndicator) {
case "on":
indicatorWhenOn()
break
case "off":
indicatorWhenOff()
break
case "never":
indicatorNever()
break
default:
indicatorWhenOn()
break
}
}
def parse(String description) {
def result = null
def cmd = zwave.parse(description, [0x20: 1, 0x70: 1])
@@ -163,19 +139,19 @@ def refresh() {
])
}
void indicatorWhenOn() {
def indicatorWhenOn() {
sendEvent(name: "indicatorStatus", value: "when on", display: false)
sendHubCommand(new physicalgraph.device.HubAction(zwave.configurationV1.configurationSet(configurationValue: [1], parameterNumber: 3, size: 1).format()))
zwave.configurationV1.configurationSet(configurationValue: [1], parameterNumber: 3, size: 1).format()
}
void indicatorWhenOff() {
def indicatorWhenOff() {
sendEvent(name: "indicatorStatus", value: "when off", display: false)
sendHubCommand(new physicalgraph.device.HubAction(zwave.configurationV1.configurationSet(configurationValue: [0], parameterNumber: 3, size: 1).format()))
zwave.configurationV1.configurationSet(configurationValue: [0], parameterNumber: 3, size: 1).format()
}
void indicatorNever() {
def indicatorNever() {
sendEvent(name: "indicatorStatus", value: "never", display: false)
sendHubCommand(new physicalgraph.device.HubAction(zwave.configurationV1.configurationSet(configurationValue: [2], parameterNumber: 3, size: 1).format()))
zwave.configurationV1.configurationSet(configurationValue: [2], parameterNumber: 3, size: 1).format()
}
def invertSwitch(invert=true) {

View File

@@ -24,24 +24,17 @@ definition(
iconX3Url: "http://www.gidjit.com/appicon@3x.png",
oauth: [displayName: "Gidjit", displayLink: "www.gidjit.com"])
preferences(oauthPage: "deviceAuthorization") {
// deviceAuthorization page is simply the devices to authorize
page(name: "deviceAuthorization", title: "Device Authorization", nextPage: "instructionPage",
install: false, uninstall: true) {
section ("Allow Gidjit to have access, thereby allowing you to quickly control and monitor your following devices. Privacy Policy can be found at http://priv.gidjit.com/privacy.html") {
input "switches", "capability.switch", title: "Control/Monitor your switches", multiple: true, required: false
input "thermostats", "capability.thermostat", title: "Control/Monitor your thermostats", multiple: true, required: false
input "windowShades", "capability.windowShade", title: "Control/Monitor your window shades", multiple: true, required: false //windowShade
}
}
page(name: "instructionPage", title: "Device Discovery", install: true) {
section() {
paragraph "Now the process is complete return to the Devices section of the Detected Screen. From there and you can add actions to each of your device panels, including launching SmartThings routines."
}
}
preferences {
section ("Allow Gidjit to have access, there by allowing you to quickly control and monitor the following devices") {
input "switches", "capability.switch", title: "Control/Monitor your switches", multiple: true, required: false
input "thermostats", "capability.thermostat", title: "Control/Monitor your thermostats", multiple: true, required: false
input "windowShades", "capability.windowShade", title: "Control/Monitor your window shades", multiple: true, required: false //windowShade
//input "bulbs", "capability.colorControl", title: "Control your lights", multiple: true, required: false //windowShade
}
}
mappings {
path("/structureinfo") {
action: [

View File

@@ -78,7 +78,7 @@ def humidityHandler(evt) {
log.debug "Notification already sent within the last ${deltaMinutes} minutes"
} else {
log.debug "Humidity Rose Above ${tooHumid}: sending SMS and activating ${mySwitch}"
log.debug "Humidity Rose Above ${tooHumid}: sending SMS to $phone1 and activating ${mySwitch}"
send("${humiditySensor1.label} sensed high humidity level of ${evt.value}")
switch1?.on()
}
@@ -91,7 +91,7 @@ def humidityHandler(evt) {
log.debug "Notification already sent within the last ${deltaMinutes} minutes"
} else {
log.debug "Humidity Fell Below ${notHumidEnough}: sending SMS and activating ${mySwitch}"
log.debug "Humidity Fell Below ${notHumidEnough}: sending SMS to $phone1 and activating ${mySwitch}"
send("${humiditySensor1.label} sensed high humidity level of ${evt.value}")
switch1?.off()
}

View File

@@ -25,11 +25,15 @@ preferences {
def installed() {
subscribe(contact1, "contact", contactHandler)
subscribe(switch1, "switch.on", switchOnHandler)
subscribe(switch1, "switch.off", switchOffHandler)
}
def updated() {
unsubscribe()
subscribe(contact1, "contact", contactHandler)
subscribe(switch1, "switch.on", switchOnHandler)
subscribe(switch1, "switch.off", switchOffHandler)
}
def contactHandler(evt) {
@@ -42,4 +46,4 @@ def contactHandler(evt) {
if (evt.value == "closed") {
if(state.wasOn)switch1.on()
}
}
}

View File

@@ -77,7 +77,7 @@ def humidityHandler(evt) {
} else {
if (state.lastStatus != "off") {
log.debug "Humidity Rose Above $humidityHigh1: sending SMS and deactivating $mySwitch"
log.debug "Humidity Rose Above $humidityHigh1: sending SMS to $phone1 and deactivating $mySwitch"
send("${humiditySensor1.label} sensed high humidity level of ${evt.value}, turning off ${switch1.label}")
switch1?.off()
state.lastStatus = "off"
@@ -99,7 +99,7 @@ def humidityHandler(evt) {
} else {
if (state.lastStatus != "on") {
log.debug "Humidity Dropped Below $humidityLow1: sending SMS and activating $mySwitch"
log.debug "Humidity Dropped Below $humidityLow1: sending SMS to $phone1 and activating $mySwitch"
send("${humiditySensor1.label} sensed low humidity level of ${evt.value}, turning on ${switch1.label}")
switch1?.on()
state.lastStatus = "on"
@@ -125,4 +125,4 @@ private send(msg) {
}
log.debug msg
}
}

View File

@@ -237,7 +237,7 @@ def completionPage() {
}
section("Notifications") {
input("recipients", "contact", title: "Send notifications to", required: false) {
input("recipients", "contact", title: "Send notifications to") {
input(name: "completionPhoneNumber", type: "phone", title: "Text This Number", description: "Phone number", required: false)
input(name: "completionPush", type: "bool", title: "Send A Push Notification", description: "Phone number", required: false)
}
@@ -720,7 +720,7 @@ def completionPercentage() {
def now = new Date().getTime()
def timeElapsed = now - atomicState.start
def totalRunTime = totalRunTimeMillis() ?: 1
def totalRunTime = totalRunTimeMillis()
def percentComplete = timeElapsed / totalRunTime * 100
log.debug "percentComplete: ${percentComplete}"

View File

@@ -68,7 +68,7 @@ def scheduleCheck()
sendNotificationToContacts("No one has fed the dog", recipients)
}
else {
log.debug "Feeder was not opened since $midnight, texting one phone number"
log.debug "Feeder was not opened since $midnight, texting $phone1"
sendSms(phone1, "No one has fed the dog")
}
}

File diff suppressed because it is too large Load Diff

View File

@@ -69,10 +69,10 @@ def temperatureHandler(evt) {
def alreadySentSms = recentEvents.count { it.doubleValue <= tooCold } > 1
if (alreadySentSms) {
log.debug "SMS already sent within the last $deltaMinutes minutes"
log.debug "SMS already sent to $phone1 within the last $deltaMinutes minutes"
// TODO: Send "Temperature back to normal" SMS, turn switch off
} else {
log.debug "Temperature dropped below $tooCold: sending SMS and activating $mySwitch"
log.debug "Temperature dropped below $tooCold: sending SMS to $phone1 and activating $mySwitch"
def tempScale = location.temperatureScale ?: "F"
send("${temperatureSensor1.displayName} is too cold, reporting a temperature of ${evt.value}${evt.unit?:tempScale}")
switch1?.on()

View File

@@ -0,0 +1,798 @@
/**
* Home Remote
*
* Copyright 2015 The Home Remote
*
* 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: "Home Remote",
namespace: "thehomeremote.homeremote",
author: "The Home Remote",
description: "Web service that enables communication between the Home Remote app and a SmartThings hub.",
category: "My Apps",
iconUrl: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience.png",
iconX2Url: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience@2x.png",
iconX3Url: "https://s3.amazonaws.com/smartapp-icons/Convenience/Cat-Convenience@2x.png",
oauth: [displayName: "The Home Remote", displayLink: "http://thehomeremote.com/"])
preferences {
section() {
input "accelerationSensors", "capability.accelerationSensor",title: "Acceleration Sensors", multiple: true, required: false
input "alarms", "capability.alarm",title: "Alarms", multiple: true, required: false
input "batteries", "capability.battery",title: "Batteries", multiple: true, required: false
input "beacons", "capability.beacon",title: "Beacons", multiple: true, required: false
input "buttonGroup", "capability.button",title: "Buttons", multiple: true, required: false
input "carbonMonoxideDetectors", "capability.carbonMonoxideDetector",title: "CO Detectors", multiple: true, required: false
input "colorControls", "capability.colorControl",title: "Color Lights", multiple: true, required: false
input "contactSensors", "capability.contactSensor",title: "Contact Sensors", multiple: true, required: false
input "doorControls", "capability.doorControl",title: "Door Controllers", multiple: true, required: false
input "energyMeters", "capability.energyMeter",title: "Energy Meters", multiple: true, required: false
input "illuminanceMeasurements", "capability.illuminanceMeasurement",title: "Illuminance Sensors", multiple: true, required: false
input "imageCaptures", "capability.imageCapture",title: "Cameras", multiple: true, required: false
input "locks", "capability.lock",title: "Locks", multiple: true, required: false
input "mediaControllers", "capability.mediaController",title: "Media Controllers", multiple: true, required: false
input "momentaries", "capability.momentary",title: "Momentary Buttons", multiple: true, required: false
input "motionSensors", "capability.motionSensor",title: "Motion Sensors", multiple: true, required: false
input "musicPlayers", "capability.musicPlayer",title: "Music Players", multiple: true, required: false
input "powerMeters", "capability.powerMeter",title: "Power Meters", multiple: true, required: false
input "presenceSensors", "capability.presenceSensor",title: "Presence Sensors", multiple: true, required: false
input "relativeHumidityMeasurements", "capability.relativeHumidityMeasurement",title: "Humidity Sensors", multiple: true, required: false
input "relaySwitches", "capability.relaySwitch",title: "Relays", multiple: true, required: false
input "signalStrengths", "capability.signalStrength",title: "Signal Strengths", multiple: true, required: false
input "sleepSensors", "capability.sleepSensor",title: "Sleep Sensors", multiple: true, required: false
input "smokeDetectors", "capability.smokeDetector",title: "Smoke Detectors", multiple: true, required: false
input "speechSyntheses", "capability.speechSynthesis",title: "Speech Syntheses", multiple: true, required: false
input "stepSensors", "capability.stepSensor",title: "Step Sensors", multiple: true, required: false
input "switches", "capability.switch",title: "Switches", multiple: true, required: false
input "switchLevels", "capability.switchLevel",title: "Dimmers", multiple: true, required: false
input "temperatureMeasurements", "capability.temperatureMeasurement",title: "Temperature Sensors", multiple: true, required: false
input "thermostats", "capability.thermostat",title: "Thermostats", multiple: true, required: false
input "threeAxes", "capability.threeAxis",title: "Three axis Sensors", multiple: true, required: false
input "tones", "capability.tone",title: "Tones", multiple: true, required: false
input "touchSensors", "capability.touchSensor",title: "Touch Sensors", multiple: true, required: false
input "valves", "capability.valve",title: "Valves", multiple: true, required: false
input "waterSensors", "capability.waterSensor",title: "Water Sensors", multiple: true, required: false
}
}
mappings {
path("/GetCurrentValues") {
action: [
GET: "getCurrentValues"
]
}
path("/GetCurrentValuesWithDisplayName") {
action: [
GET: "getCurrentValuesWithDisplayName"
]
}
path("/GetRoutines") {
action: [
GET: "getRoutines"
]
}
path("/ExecuteCommand") {
action: [
PUT: "executeCommand"
]
}
path("/ExecuteRoutine") {
action: [
PUT: "executeRoutine"
]
}
}
def getCurrentValues() {
def resp = []
accelerationSensors.each {
resp << [id: it.id, capability: "AccelerationSensor", attribute: "acceleration", value: it.currentValue("acceleration")]
}
alarms.each {
resp << [id: it.id, capability: "Alarm", attribute: "alarm", value: it.currentValue("alarm")]
}
batteries.each {
resp << [id: it.id, capability: "Battery", attribute: "battery", value: it.currentValue("battery")]
}
beacons.each {
resp << [id: it.id, capability: "Beacon", attribute: "presence", value: it.currentValue("presence")]
}
buttonGroup.each {
resp << [id: it.id, capability: "Button", attribute: "button", value: it.currentValue("button")]
}
carbonMonoxideDetectors.each {
resp << [id: it.id, capability: "CarbonMonoxideDetector", attribute: "carbonMonoxide", value: it.currentValue("carbonMonoxide")]
}
colorControls.each {
resp << [id: it.id, capability: "ColorControl", attribute: "hue", value: it.currentValue("hue")]
}
colorControls.each {
resp << [id: it.id, capability: "ColorControl", attribute: "saturation", value: it.currentValue("saturation")]
}
colorControls.each {
resp << [id: it.id, capability: "ColorControl", attribute: "color", value: it.currentValue("color")]
}
contactSensors.each {
resp << [id: it.id, capability: "ContactSensor", attribute: "contact", value: it.currentValue("contact")]
}
doorControls.each {
resp << [id: it.id, capability: "DoorControl", attribute: "door", value: it.currentValue("door")]
}
energyMeters.each {
resp << [id: it.id, capability: "EnergyMeter", attribute: "energy", value: it.currentValue("energy")]
}
illuminanceMeasurements.each {
resp << [id: it.id, capability: "IlluminanceMeasurement", attribute: "illuminance", value: it.currentValue("illuminance")]
}
imageCaptures.each {
resp << [id: it.id, capability: "ImageCapture", attribute: "image", value: it.currentValue("image")]
}
locks.each {
resp << [id: it.id, capability: "Lock", attribute: "lock", value: it.currentValue("lock")]
}
mediaControllers.each {
resp << [id: it.id, capability: "MediaController", attribute: "activities", value: it.currentValue("activities")]
}
mediaControllers.each {
resp << [id: it.id, capability: "MediaController", attribute: "currentActivity", value: it.currentValue("currentActivity")]
}
motionSensors.each {
resp << [id: it.id, capability: "MotionSensor", attribute: "motion", value: it.currentValue("motion")]
}
musicPlayers.each {
resp << [id: it.id, capability: "MusicPlayer", attribute: "status", value: it.currentValue("status")]
}
musicPlayers.each {
resp << [id: it.id, capability: "MusicPlayer", attribute: "level", value: it.currentValue("level")]
}
musicPlayers.each {
resp << [id: it.id, capability: "MusicPlayer", attribute: "trackDescription", value: it.currentValue("trackDescription")]
}
musicPlayers.each {
resp << [id: it.id, capability: "MusicPlayer", attribute: "trackData", value: it.currentValue("trackData")]
}
musicPlayers.each {
resp << [id: it.id, capability: "MusicPlayer", attribute: "mute", value: it.currentValue("mute")]
}
powerMeters.each {
resp << [id: it.id, capability: "PowerMeter", attribute: "power", value: it.currentValue("power")]
}
presenceSensors.each {
resp << [id: it.id, capability: "PresenceSensor", attribute: "presence", value: it.currentValue("presence")]
}
relativeHumidityMeasurements.each {
resp << [id: it.id, capability: "RelativeHumidityMeasurement", attribute: "humidity", value: it.currentValue("humidity")]
}
relaySwitches.each {
resp << [id: it.id, capability: "RelaySwitch", attribute: "switch", value: it.currentValue("switch")]
}
signalStrengths.each {
resp << [id: it.id, capability: "SignalStrength", attribute: "lqi", value: it.currentValue("lqi")]
}
signalStrengths.each {
resp << [id: it.id, capability: "SignalStrength", attribute: "rssi", value: it.currentValue("rssi")]
}
sleepSensors.each {
resp << [id: it.id, capability: "SleepSensor", attribute: "sleeping", value: it.currentValue("sleeping")]
}
smokeDetectors.each {
resp << [id: it.id, capability: "SmokeDetector", attribute: "smoke", value: it.currentValue("smoke")]
}
stepSensors.each {
resp << [id: it.id, capability: "StepSensor", attribute: "steps", value: it.currentValue("steps")]
}
stepSensors.each {
resp << [id: it.id, capability: "StepSensor", attribute: "goal", value: it.currentValue("goal")]
}
switches.each {
resp << [id: it.id, capability: "Switch", attribute: "switch", value: it.currentValue("switch")]
}
switchLevels.each {
resp << [id: it.id, capability: "SwitchLevel", attribute: "level", value: it.currentValue("level")]
}
temperatureMeasurements.each {
resp << [id: it.id, capability: "TemperatureMeasurement", attribute: "temperature", value: it.currentValue("temperature")]
}
thermostats.each {
resp << [id: it.id, capability: "Thermostat", attribute: "temperature", value: it.currentValue("temperature")]
}
thermostats.each {
resp << [id: it.id, capability: "Thermostat", attribute: "heatingSetpoint", value: it.currentValue("heatingSetpoint")]
}
thermostats.each {
resp << [id: it.id, capability: "Thermostat", attribute: "coolingSetpoint", value: it.currentValue("coolingSetpoint")]
}
thermostats.each {
resp << [id: it.id, capability: "Thermostat", attribute: "thermostatSetpoint", value: it.currentValue("thermostatSetpoint")]
}
thermostats.each {
resp << [id: it.id, capability: "Thermostat", attribute: "thermostatMode", value: it.currentValue("thermostatMode")]
}
thermostats.each {
resp << [id: it.id, capability: "Thermostat", attribute: "thermostatFanMode", value: it.currentValue("thermostatFanMode")]
}
thermostats.each {
resp << [id: it.id, capability: "Thermostat", attribute: "thermostatOperatingState", value: it.currentValue("thermostatOperatingState")]
}
threeAxes.each {
resp << [id: it.id, capability: "ThreeAxis", attribute: "threeAxis", value: it.currentValue("threeAxis")]
}
touchSensors.each {
resp << [id: it.id, capability: "TouchSensor", attribute: "touch", value: it.currentValue("touch")]
}
valves.each {
resp << [id: it.id, capability: "Valve", attribute: "contact", value: it.currentValue("contact")]
}
waterSensors.each {
resp << [id: it.id, capability: "WaterSensor", attribute: "water", value: it.currentValue("water")]
}
//resp << [id: 0, capability: "Heartbeat", attribute: "heartbeat", value: String.valueOf(state.heartbeat)]
state.heartbeat = !state.heartbeat
return resp
}
def getCurrentValuesWithDisplayName() {
def resp = []
accelerationSensors.each {
resp << [id: it.id, displayName: it.displayName, capability: "AccelerationSensor", attribute: "acceleration", value: it.currentValue("acceleration")]
}
alarms.each {
resp << [id: it.id, displayName: it.displayName, capability: "Alarm", attribute: "alarm", value: it.currentValue("alarm")]
}
batteries.each {
resp << [id: it.id, displayName: it.displayName, capability: "Battery", attribute: "battery", value: it.currentValue("battery")]
}
beacons.each {
resp << [id: it.id, displayName: it.displayName, capability: "Beacon", attribute: "presence", value: it.currentValue("presence")]
}
buttonGroup.each {
resp << [id: it.id, displayName: it.displayName, capability: "Button", attribute: "button", value: it.currentValue("button")]
}
carbonMonoxideDetectors.each {
resp << [id: it.id, displayName: it.displayName, capability: "CarbonMonoxideDetector", attribute: "carbonMonoxide", value: it.currentValue("carbonMonoxide")]
}
colorControls.each {
resp << [id: it.id, displayName: it.displayName, capability: "ColorControl", attribute: "hue", value: it.currentValue("hue")]
}
colorControls.each {
resp << [id: it.id, displayName: it.displayName, capability: "ColorControl", attribute: "saturation", value: it.currentValue("saturation")]
}
colorControls.each {
resp << [id: it.id, displayName: it.displayName, capability: "ColorControl", attribute: "color", value: it.currentValue("color")]
}
contactSensors.each {
resp << [id: it.id, displayName: it.displayName, capability: "ContactSensor", attribute: "contact", value: it.currentValue("contact")]
}
doorControls.each {
resp << [id: it.id, displayName: it.displayName, capability: "DoorControl", attribute: "door", value: it.currentValue("door")]
}
energyMeters.each {
resp << [id: it.id, displayName: it.displayName, capability: "EnergyMeter", attribute: "energy", value: it.currentValue("energy")]
}
illuminanceMeasurements.each {
resp << [id: it.id, displayName: it.displayName, capability: "IlluminanceMeasurement", attribute: "illuminance", value: it.currentValue("illuminance")]
}
imageCaptures.each {
resp << [id: it.id, displayName: it.displayName, capability: "ImageCapture", attribute: "image", value: it.currentValue("image")]
}
locks.each {
resp << [id: it.id, displayName: it.displayName, capability: "Lock", attribute: "lock", value: it.currentValue("lock")]
}
mediaControllers.each {
resp << [id: it.id, displayName: it.displayName, capability: "MediaController", attribute: "activities", value: it.currentValue("activities")]
}
mediaControllers.each {
resp << [id: it.id, displayName: it.displayName, capability: "MediaController", attribute: "currentActivity", value: it.currentValue("currentActivity")]
}
motionSensors.each {
resp << [id: it.id, displayName: it.displayName, capability: "MotionSensor", attribute: "motion", value: it.currentValue("motion")]
}
musicPlayers.each {
resp << [id: it.id, displayName: it.displayName, capability: "MusicPlayer", attribute: "status", value: it.currentValue("status")]
}
musicPlayers.each {
resp << [id: it.id, displayName: it.displayName, capability: "MusicPlayer", attribute: "level", value: it.currentValue("level")]
}
musicPlayers.each {
resp << [id: it.id, displayName: it.displayName, capability: "MusicPlayer", attribute: "trackDescription", value: it.currentValue("trackDescription")]
}
musicPlayers.each {
resp << [id: it.id, displayName: it.displayName, capability: "MusicPlayer", attribute: "trackData", value: it.currentValue("trackData")]
}
musicPlayers.each {
resp << [id: it.id, displayName: it.displayName, capability: "MusicPlayer", attribute: "mute", value: it.currentValue("mute")]
}
powerMeters.each {
resp << [id: it.id, displayName: it.displayName, capability: "PowerMeter", attribute: "power", value: it.currentValue("power")]
}
presenceSensors.each {
resp << [id: it.id, displayName: it.displayName, capability: "PresenceSensor", attribute: "presence", value: it.currentValue("presence")]
}
relativeHumidityMeasurements.each {
resp << [id: it.id, displayName: it.displayName, capability: "RelativeHumidityMeasurement", attribute: "humidity", value: it.currentValue("humidity")]
}
relaySwitches.each {
resp << [id: it.id, displayName: it.displayName, capability: "RelaySwitch", attribute: "switch", value: it.currentValue("switch")]
}
signalStrengths.each {
resp << [id: it.id, displayName: it.displayName, capability: "SignalStrength", attribute: "lqi", value: it.currentValue("lqi")]
}
signalStrengths.each {
resp << [id: it.id, displayName: it.displayName, capability: "SignalStrength", attribute: "rssi", value: it.currentValue("rssi")]
}
sleepSensors.each {
resp << [id: it.id, displayName: it.displayName, capability: "SleepSensor", attribute: "sleeping", value: it.currentValue("sleeping")]
}
smokeDetectors.each {
resp << [id: it.id, displayName: it.displayName, capability: "SmokeDetector", attribute: "smoke", value: it.currentValue("smoke")]
}
stepSensors.each {
resp << [id: it.id, displayName: it.displayName, capability: "StepSensor", attribute: "steps", value: it.currentValue("steps")]
}
stepSensors.each {
resp << [id: it.id, displayName: it.displayName, capability: "StepSensor", attribute: "goal", value: it.currentValue("goal")]
}
switches.each {
resp << [id: it.id, displayName: it.displayName, capability: "Switch", attribute: "switch", value: it.currentValue("switch")]
}
switchLevels.each {
resp << [id: it.id, displayName: it.displayName, capability: "SwitchLevel", attribute: "level", value: it.currentValue("level")]
}
temperatureMeasurements.each {
resp << [id: it.id, displayName: it.displayName, capability: "TemperatureMeasurement", attribute: "temperature", value: it.currentValue("temperature")]
}
thermostats.each {
resp << [id: it.id, displayName: it.displayName, capability: "Thermostat", attribute: "temperature", value: it.currentValue("temperature")]
}
thermostats.each {
resp << [id: it.id, displayName: it.displayName, capability: "Thermostat", attribute: "heatingSetpoint", value: it.currentValue("heatingSetpoint")]
}
thermostats.each {
resp << [id: it.id, displayName: it.displayName, capability: "Thermostat", attribute: "coolingSetpoint", value: it.currentValue("coolingSetpoint")]
}
thermostats.each {
resp << [id: it.id, displayName: it.displayName, capability: "Thermostat", attribute: "thermostatSetpoint", value: it.currentValue("thermostatSetpoint")]
}
thermostats.each {
resp << [id: it.id, displayName: it.displayName, capability: "Thermostat", attribute: "thermostatMode", value: it.currentValue("thermostatMode")]
}
thermostats.each {
resp << [id: it.id, displayName: it.displayName, capability: "Thermostat", attribute: "thermostatFanMode", value: it.currentValue("thermostatFanMode")]
}
thermostats.each {
resp << [id: it.id, displayName: it.displayName, capability: "Thermostat", attribute: "thermostatOperatingState", value: it.currentValue("thermostatOperatingState")]
}
threeAxes.each {
resp << [id: it.id, displayName: it.displayName, capability: "ThreeAxis", attribute: "threeAxis", value: it.currentValue("threeAxis")]
}
touchSensors.each {
resp << [id: it.id, displayName: it.displayName, capability: "TouchSensor", attribute: "touch", value: it.currentValue("touch")]
}
valves.each {
resp << [id: it.id, displayName: it.displayName, capability: "Valve", attribute: "contact", value: it.currentValue("contact")]
}
waterSensors.each {
resp << [id: it.id, displayName: it.displayName, capability: "WaterSensor", attribute: "water", value: it.currentValue("water")]
}
momentaries.each {
resp << [id: it.id, displayName: it.displayName, capability: "Momentary", attribute: "", value: ""]
}
//resp << [id: 0, displayName: "Heartbeat", capability: "Heartbeat", attribute: "heartbeat", value: state.heartbeat]
return resp
}
def getDevices(capability){
def result
switch (capability) {
case "Alarm":
result = alarms
break
case "ColorControl":
result = colorControls
break
case "DoorControl":
result = doorControls
break
case "ImageCapture":
result = imageCaptures
break
case "Lock":
result = locks
break
case "MediaController":
result = mediaControllers
break
case "Momentary":
result = momentaries
break
case "MusicPlayer":
result = musicPlayers
break
case "RelaySwitch":
result = relaySwitches
break
case "SpeechSynthesis":
result = speechSyntheses
break
case "Switch":
result = switches
break
case "SwitchLevel":
result = switchLevels
break
case "Thermostat":
result = thermostats
break
case "ThermostatCoolingSetpoint":
result = thermostatCoolingSetpoints
break
case "ThermostatFanMode":
result = thermostatFanModes
break
case "ThermostatHeatingSetpoint":
result = thermostatHeatingSetpoints
break
case "ThermostatMode":
result = thermostatModes
break
case "Tone":
result = tones
break
case "Valve":
result = valves
break
default:
result = valves
}
return result
}
def getDoorControlCommand(value){
def result
switch (value) {
case "closed":
result = "close"
break
case "open":
result = "open"
break
default:
result = value
}
return result
}
def getLockCommand(value){
def result
switch (value) {
case "locked":
result = "lock"
break
case "unlocked":
result = "unlock"
break
default:
result = value
}
return result
}
def getMuteCommand(value){
def result
switch (value) {
case "muted":
result = "mute"
break
case "unmuted":
result = "unmute"
break
default:
result = value
}
return result
}
def getContactCommand(value){
def result
switch (value) {
case "closed":
result = "close"
break
case "open":
result = "open"
break
default:
result = value
}
return result
}
def getRoutines() {
return location.helloHome?.getPhrases()*.label
}
def getThermostatFanModeCommand(value){
def result
switch (value) {
case "on":
result = "fanOn"
break
case "auto":
result = "fanAuto"
break
case "circulate":
result = "fanCirculate"
break
default:
result = value
}
return result
}
void executeCommand() {
def deviceId = request.JSON?.deviceId
def capability = request.JSON?.capability
def attribute = request.JSON?.attribute
def value = request.JSON?.value
if (deviceId) {
def devices = getDevices(capability)
def command
def valueIsParameter = false
def valueIsInteger = false
switch (attribute) {
case "hue":
command = "setHue"
valueIsParameter = true
valueIsInteger = true
break
case "saturation":
command = "setSaturation"
valueIsParameter = true
valueIsInteger = true
break
case "color":
command = "setColor"
def rgb = hexToRgb(value)
def hsl = rgbToHSL(rgb)
value = [hue:hsl.h.toInteger(), saturation:hsl.s.toInteger()]
valueIsParameter = true
break
case "level":
command = "setLevel"
valueIsParameter = true
valueIsInteger = true
break
case "heatingSetpoint":
command = "setHeatingSetpoint"
valueIsParameter = true
break
case "coolingSetpoint":
command = "setCoolingSetpoint"
valueIsParameter = true
break
case "currentActivity":
command = "startActivity"
valueIsParameter = true
break
case "door":
command = getDoorControlCommand(value)
break
case "lock":
command = getLockCommand(value)
break
case "mute":
command = getMuteCommand(value)
break
case "thermostatFanMode":
command = getThermostatFanModeCommand(value)
break
case "thermostatMode":
if (value == "emergency heat") {
command = "emergencyHeat"
}
else
{
command = value
}
break
case "contact":
command = getContactCommand(value)
break
default:
command = value
}
devices.each {
if (it.id == deviceId) {
// check that the device supports the specified command
// If not, return an error using httpError, providing a HTTP status code.
if (!it.hasCommand(command)) {
httpError(501, "$command is not a valid command for the device")
}
if(valueIsParameter){
if(valueIsInteger){
it."$command"(value as int)
}
else{
it."$command"(value)
}
}
else{
it."$command"()
}
}
}
}
}
void executeRoutine() {
def routine = request.JSON?.routine
location.helloHome?.execute(routine)
}
def rgbToHSL(rgb) {
def r = rgb.r / 255
def g = rgb.g / 255
def b = rgb.b / 255
def h = 0
def s = 0
def l = 0
def var_min = [r,g,b].min()
def var_max = [r,g,b].max()
def del_max = var_max - var_min
l = (var_max + var_min) / 2
if (del_max == 0) {
h = 0
s = 0
} else {
if (l < 0.5) { s = del_max / (var_max + var_min) }
else { s = del_max / (2 - var_max - var_min) }
def del_r = (((var_max - r) / 6) + (del_max / 2)) / del_max
def del_g = (((var_max - g) / 6) + (del_max / 2)) / del_max
def del_b = (((var_max - b) / 6) + (del_max / 2)) / del_max
if (r == var_max) { h = del_b - del_g }
else if (g == var_max) { h = (1 / 3) + del_r - del_b }
else if (b == var_max) { h = (2 / 3) + del_g - del_r }
if (h < 0) { h += 1 }
if (h > 1) { h -= 1 }
}
def hsl = [:]
hsl = [h: h * 100, s: s * 100, l: l]
hsl
}
def hexToRgb(colorHex) {
def rrInt = Integer.parseInt(colorHex.substring(1,3),16)
def ggInt = Integer.parseInt(colorHex.substring(3,5),16)
def bbInt = Integer.parseInt(colorHex.substring(5,7),16)
def colorData = [:]
colorData = [r: rrInt, g: ggInt, b: bbInt]
colorData
}
def installed() {
state.heartbeat = false
}
def updated() {
state.heartbeat = false
}