Compare commits

..

3 Commits

Author SHA1 Message Date
Matt Pennig
16d207f805 naming revisions 2016-03-08 11:25:03 -06:00
Matt Pennig
8a9d420d0c cleaning up after ourselves 2016-01-22 12:45:56 -06:00
Matt Pennig
353493bd34 Adding simulated Media Player device type handler 2016-01-20 14:10:40 -06:00
14 changed files with 217 additions and 522 deletions

View File

@@ -1,155 +0,0 @@
/**
* Copyright 2016 SmartThings
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except
* in compliance with the License. You may obtain a copy of the License at:
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software distributed under the License is distributed
* on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License
* for the specific language governing permissions and limitations under the License.
*
*/
metadata {
definition (name: "Arrival Sensor HA", namespace: "smartthings", author: "SmartThings") {
capability "Tone"
capability "Actuator"
capability "Presence Sensor"
capability "Sensor"
capability "Battery"
capability "Configuration"
fingerprint inClusters: "0000,0001,0003,000F,0020", outClusters: "0003,0019",
manufacturer: "SmartThings", model: "tagv4", deviceJoinName: "Arrival Sensor"
}
preferences {
section {
image(name: 'educationalcontent', multiple: true, images: [
"http://cdn.device-gse.smartthings.com/Arrival/Arrival1.png",
"http://cdn.device-gse.smartthings.com/Arrival/Arrival2.png"
])
}
section {
input "checkInterval", "enum", title: "Presence timeout (minutes)",
defaultValue:"2", options: ["2", "3", "5"], displayDuringSetup: false
}
}
tiles {
standardTile("presence", "device.presence", width: 2, height: 2, canChangeBackground: true) {
state "present", labelIcon:"st.presence.tile.present", backgroundColor:"#53a7c0"
state "not present", labelIcon:"st.presence.tile.not-present", backgroundColor:"#ffffff"
}
standardTile("beep", "device.beep", decoration: "flat") {
state "beep", label:'', action:"tone.beep", icon:"st.secondary.beep", backgroundColor:"#ffffff"
}
valueTile("battery", "device.battery", decoration: "flat", inactiveLabel: false) {
state "battery", label:'${currentValue}% battery', unit:""
}
main "presence"
details(["presence", "beep", "battery"])
}
}
def updated() {
startTimer()
}
def configure() {
def cmds = zigbee.configureReporting(0x0001, 0x0020, 0x20, 20, 20, 0x01)
log.debug "configure -- cmds: ${cmds}"
return cmds
}
def beep() {
log.debug "Sending Identify command to beep the sensor for 5 seconds"
return zigbee.command(0x0003, 0x00, "0500")
}
def parse(String description) {
state.lastCheckin = now()
handlePresenceEvent(true)
if (description?.startsWith('read attr -')) {
handleReportAttributeMessage(description)
}
return []
}
private handleReportAttributeMessage(String description) {
def descMap = zigbee.parseDescriptionAsMap(description)
if (descMap.clusterInt == 0x0001 && descMap.attrInt == 0x0020) {
handleBatteryEvent(Integer.parseInt(descMap.value, 16))
}
}
private handleBatteryEvent(rawValue) {
def linkText = getLinkText(device)
def eventMap = [
name: 'battery',
value: '--'
]
def volts = rawValue / 10
if (volts > 0){
def minVolts = 2.0
def maxVolts = 2.8
if (volts < minVolts)
volts = minVolts
else if (volts > maxVolts)
volts = maxVolts
def pct = (volts - minVolts) / (maxVolts - minVolts)
eventMap.value = Math.round(pct * 100)
eventMap.descriptionText = "${linkText} battery was ${eventMap.value}%"
}
log.debug "Creating battery event: ${eventMap}"
sendEvent(eventMap)
}
private handlePresenceEvent(present) {
def wasPresent = device.currentState("presence")?.value == "present"
if (!wasPresent && present) {
log.debug "Sensor is present"
startTimer()
} else if (!present) {
log.debug "Sensor is not present"
stopTimer()
}
def linkText = getLinkText(device)
def eventMap = [
name: "presence",
value: present ? "present" : "not present",
linkText: linkText,
descriptionText: "${linkText} has ${present ? 'arrived' : 'left'}",
]
log.debug "Creating presence event: ${eventMap}"
sendEvent(eventMap)
}
private startTimer() {
log.debug "Scheduling periodic timer"
schedule("0 * * * * ?", checkPresenceCallback)
}
private stopTimer() {
log.debug "Stopping periodic timer"
unschedule()
}
def checkPresenceCallback() {
def timeSinceLastCheckin = (now() - state.lastCheckin) / 1000
def theCheckInterval = (checkInterval ? checkInterval as int : 2) * 60
log.debug "Sensor checked in ${timeSinceLastCheckin} seconds ago"
if (timeSinceLastCheckin >= theCheckInterval) {
handlePresenceEvent(false)
}
}

View File

@@ -67,7 +67,7 @@ metadata {
state "setpoint", action:"raiseSetpoint", icon:"st.thermostat.thermostat-up"
}
valueTile("thermostatSetpoint", "device.thermostatSetpoint", width: 1, height: 1, decoration: "flat") {
state "thermostatSetpoint", label:'${currentValue}'
state "thermostatSetpoint", label:'${currentValue}°'
}
valueTile("currentStatus", "device.thermostatStatus", height: 1, width: 2, decoration: "flat") {
state "thermostatStatus", label:'${currentValue}', backgroundColor:"#ffffff"

View File

@@ -204,10 +204,8 @@ private List parseReportAttributeMessage(String description) {
}
result << getAccelerationResult(descMap.value)
}
else if (descMap.cluster == "FC02" && descMap.attrId == "0012" && descMap.value.size() == 24) {
// The size is checked to ensure the attribute report contains X, Y and Z values
// If all three axis are not included then the attribute report is ignored
result << parseAxis(descMap.value)
else if (descMap.cluster == "FC02" && descMap.attrId == "0012") {
result << parseAxis(descMap.value)
}
else if (descMap.cluster == "0001" && descMap.attrId == "0020") {
result << getBatteryResult(Integer.parseInt(descMap.value, 16))
@@ -373,50 +371,21 @@ def getTemperature(value) {
def refresh() {
log.debug "Refreshing Values "
def refreshCmds = [
def refreshCmds = []
/* sensitivity - default value (8) */
if (device.getDataValue("manufacturer") == "SmartThings") {
log.debug "Refreshing Values for manufacturer: SmartThings "
refreshCmds = refreshCmds + [
"zcl mfg-code ${manufacturerCode}", "delay 200",
"zcl global write 0xFC02 0 0x20 {02}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 400",
/* These values of Motion Threshold Multiplier(01) and Motion Threshold (7602)
seem to be giving pretty accurate results for the XYZ co-ordinates for this manufacturer.
Separating these out in a separate if-else because I do not want to touch Centralite part
as of now.
*/
"st rattr 0x${device.deviceNetworkId} 1 0x402 0", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 1 0x20", "delay 200",
"zcl mfg-code ${manufacturerCode}", "delay 200",
"zcl global write 0xFC02 0 0x20 {01}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 400",
"zcl mfg-code ${manufacturerCode}", "delay 200",
"zcl global write 0xFC02 2 0x21 {7602}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 400",
]
} else {
refreshCmds = refreshCmds + [
/* sensitivity - default value (8) */
"zcl mfg-code ${manufacturerCode}", "delay 200",
"zcl global write 0xFC02 0 0x20 {02}", "delay 200",
"send 0x${device.deviceNetworkId} 1 1", "delay 400",
]
}
//Common refresh commands
refreshCmds = refreshCmds + [
"st rattr 0x${device.deviceNetworkId} 1 0x402 0", "delay 200",
"st rattr 0x${device.deviceNetworkId} 1 1 0x20", "delay 200",
"zcl mfg-code ${manufacturerCode}", "delay 200",
"zcl global read 0xFC02 0x0010",
"send 0x${device.deviceNetworkId} 1 1","delay 400"
]
"zcl mfg-code ${manufacturerCode}", "delay 200",
"zcl global read 0xFC02 0x0010",
"send 0x${device.deviceNetworkId} 1 1","delay 400"
]
return refreshCmds + enrollResponse()
}
@@ -478,34 +447,35 @@ def enrollResponse() {
]
}
private Map parseAxis(String description) {
def hexToSignedInt = { hexVal ->
def unsignedVal = hexToInt(hexVal)
unsignedVal > 32767 ? unsignedVal - 65536 : unsignedVal
}
def z = hexToSignedInt(description[0..3])
def y = hexToSignedInt(description[10..13])
def x = hexToSignedInt(description[20..23])
def xyzResults = [x: x, y: y, z: z]
if (device.getDataValue("manufacturer") == "SmartThings") {
// This mapping matches the current behavior of the Device Handler for the Centralite sensors
xyzResults.x = z
xyzResults.y = y
xyzResults.z = -x
} else {
// The axises reported by the Device Handler differ from the axises reported by the sensor
// This may change in the future
xyzResults.x = z
xyzResults.y = x
xyzResults.z = y
}
log.debug "parseAxis -- ${xyzResults}"
if (garageSensor == "Yes")
garageEvent(xyzResults.z)
log.debug "parseAxis"
def xyzResults = [x: 0, y: 0, z: 0]
def parts = description.split("2900")
parts[0] = "12" + parts[0]
parts.each { part ->
part = part.trim()
if (part.startsWith("12")) {
def unsignedX = hexToInt(part.split("12")[1].trim())
def signedX = unsignedX > 32767 ? unsignedX - 65536 : unsignedX
xyzResults.x = signedX
log.debug "X Part: ${signedX}"
}
else if (part.startsWith("13")) {
def unsignedY = hexToInt(part.split("13")[1].trim())
def signedY = unsignedY > 32767 ? unsignedY - 65536 : unsignedY
xyzResults.y = signedY
log.debug "Y Part: ${signedY}"
}
else if (part.startsWith("14")) {
def unsignedZ = hexToInt(part.split("14")[1].trim())
def signedZ = unsignedZ > 32767 ? unsignedZ - 65536 : unsignedZ
xyzResults.z = signedZ
log.debug "Z Part: ${signedZ}"
if (garageSensor == "Yes")
garageEvent(signedZ)
}
}
getXyzResult(xyzResults, description)
}
@@ -583,4 +553,3 @@ private byte[] reverseArray(byte[] array) {
return array
}

View File

@@ -0,0 +1,119 @@
/**
* Copyright 2015 SmartThings
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except
* in compliance with the License. You may obtain a copy of the License at:
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software distributed under the License is distributed
* on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License
* for the specific language governing permissions and limitations under the License.
*
*/
metadata {
definition (name: "Simulated Media Player", namespace: "smartthings/testing", author: "SmartThings") {
capability "Actuator"
capability "Switch"
capability "Refresh"
capability "Sensor"
capability "Music Player"
}
tiles(scale: 2) {
multiAttributeTile(name: "mediaMulti", type:"mediaPlayer", width:6, height:4) {
tileAttribute("device.status", key: "PRIMARY_CONTROL") {
attributeState("paused", label:"Paused",)
attributeState("playing", label:"Playing")
attributeState("stopped", label:"Stopped")
}
tileAttribute("device.status", key: "MEDIA_STATUS") {
attributeState("paused", label:"Paused", action:"music Player.play", nextState: "playing")
attributeState("playing", label:"Playing", action:"music Player.pause", nextState: "paused")
attributeState("stopped", label:"Stopped", action:"music Player.play", nextState: "playing")
}
tileAttribute("device.status", key: "PREVIOUS_TRACK") {
attributeState("default", action:"music Player.previousTrack")
}
tileAttribute("device.status", key: "NEXT_TRACK") {
attributeState("default", action:"music Player.nextTrack")
}
tileAttribute ("device.level", key: "SLIDER_CONTROL") {
attributeState("level", action:"music Player.setLevel")
}
tileAttribute ("device.mute", key: "MEDIA_MUTED") {
attributeState("unmuted", action:"music Player.mute", nextState: "muted")
attributeState("muted", action:"music Player.unmute", nextState: "unmuted")
}
tileAttribute("device.trackDescription", key: "MARQUEE") {
attributeState("default", label:"${currentValue}")
}
}
main "mediaMulti"
details(["mediaMulti"])
}
}
def installed() {
state.tracks = [
"Gangnam Style (강남스타일)\nPSY\nPsy 6 (Six Rules), Part 1",
"Careless Whisper\nWham!\nMake It Big",
"Never Gonna Give You Up\nRick Astley\nWhenever You Need Somebody",
"Shake It Off\nTaylor Swift\n1989",
"Ironic\nAlanis Morissette\nJagged Little Pill",
"Hotline Bling\nDrake\nHotline Bling - Single"
]
state.currentTrack = 0
sendEvent(name: "level", value: 72)
sendEvent(name: "mute", value: "unmuted")
sendEvent(name: "status", value: "stopped")
}
def parse(description) {
// No parsing will happen with this simulated device.
}
def play() {
sendEvent(name: "status", value: "playing")
sendEvent(name: "trackDescription", value: state.tracks[state.currentTrack])
}
def pause() {
sendEvent(name: "status", value: "paused")
sendEvent(name: "trackDescription", value: state.tracks[state.currentTrack])
}
def stop() {
sendEvent(name: "status", value: "stopped")
}
def previousTrack() {
state.currentTrack = state.currentTrack - 1
if (state.currentTrack < 0)
state.currentTrack = state.tracks.size()-1
sendEvent(name: "trackDescription", value: state.tracks[state.currentTrack])
}
def nextTrack() {
state.currentTrack = state.currentTrack + 1
if (state.currentTrack == state.tracks.size())
state.currentTrack = 0
sendEvent(name: "trackDescription", value: state.tracks[state.currentTrack])
}
def mute() {
sendEvent(name: "mute", value: "muted")
}
def unmute() {
sendEvent(name: "mute", value: "unmuted")
}
def setLevel(level) {
sendEvent(name: "level", value: level)
}

View File

@@ -1,5 +1,5 @@
/**
* Copyright 2015 SmartThings
* Copyright 2014 SmartThings
*
* Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except
* in compliance with the License. You may obtain a copy of the License at:
@@ -15,7 +15,6 @@ metadata {
// Automatically generated. Make future change here.
definition (name: "Simulated Thermostat", namespace: "smartthings/testing", author: "SmartThings") {
capability "Thermostat"
capability "Relative Humidity Measurement"
command "tempUp"
command "tempDown"
@@ -23,40 +22,11 @@ metadata {
command "heatDown"
command "coolUp"
command "coolDown"
command "setTemperature", ["number"]
command "setTemperature", ["number"]
}
tiles(scale: 2) {
multiAttributeTile(name:"thermostatMulti", type:"thermostat", width:6, height:4) {
tileAttribute("device.temperature", key: "PRIMARY_CONTROL") {
attributeState("default", label:'${currentValue}', unit:"dF")
}
tileAttribute("device.temperature", key: "VALUE_CONTROL") {
attributeState("default", action: "setTemperature")
}
tileAttribute("device.humidity", key: "SECONDARY_CONTROL") {
attributeState("default", label:'${currentValue}%', unit:"%")
}
tileAttribute("device.thermostatOperatingState", key: "OPERATING_STATE") {
attributeState("idle", backgroundColor:"#44b621")
attributeState("heating", backgroundColor:"#ffa81e")
attributeState("cooling", backgroundColor:"#269bd2")
}
tileAttribute("device.thermostatMode", key: "THERMOSTAT_MODE") {
attributeState("off", label:'${name}')
attributeState("heat", label:'${name}')
attributeState("cool", label:'${name}')
attributeState("auto", label:'${name}')
}
tileAttribute("device.heatingSetpoint", key: "HEATING_SETPOINT") {
attributeState("default", label:'${currentValue}', unit:"dF")
}
tileAttribute("device.coolingSetpoint", key: "COOLING_SETPOINT") {
attributeState("default", label:'${currentValue}', unit:"dF")
}
}
valueTile("temperature", "device.temperature", width: 2, height: 2) {
tiles {
valueTile("temperature", "device.temperature", width: 1, height: 1) {
state("temperature", label:'${currentValue}', unit:"dF",
backgroundColors:[
[value: 31, color: "#153591"],
@@ -69,51 +39,51 @@ metadata {
]
)
}
standardTile("tempDown", "device.temperature", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
standardTile("tempDown", "device.temperature", inactiveLabel: false, decoration: "flat") {
state "default", label:'down', action:"tempDown"
}
standardTile("tempUp", "device.temperature", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
standardTile("tempUp", "device.temperature", inactiveLabel: false, decoration: "flat") {
state "default", label:'up', action:"tempUp"
}
valueTile("heatingSetpoint", "device.heatingSetpoint", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
valueTile("heatingSetpoint", "device.heatingSetpoint", inactiveLabel: false, decoration: "flat") {
state "heat", label:'${currentValue} heat', unit: "F", backgroundColor:"#ffffff"
}
standardTile("heatDown", "device.temperature", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
standardTile("heatDown", "device.temperature", inactiveLabel: false, decoration: "flat") {
state "default", label:'down', action:"heatDown"
}
standardTile("heatUp", "device.temperature", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
standardTile("heatUp", "device.temperature", inactiveLabel: false, decoration: "flat") {
state "default", label:'up', action:"heatUp"
}
valueTile("coolingSetpoint", "device.coolingSetpoint", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
valueTile("coolingSetpoint", "device.coolingSetpoint", inactiveLabel: false, decoration: "flat") {
state "cool", label:'${currentValue} cool', unit:"F", backgroundColor:"#ffffff"
}
standardTile("coolDown", "device.temperature", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
standardTile("coolDown", "device.temperature", inactiveLabel: false, decoration: "flat") {
state "default", label:'down', action:"coolDown"
}
standardTile("coolUp", "device.temperature", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
standardTile("coolUp", "device.temperature", inactiveLabel: false, decoration: "flat") {
state "default", label:'up', action:"coolUp"
}
standardTile("mode", "device.thermostatMode", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
standardTile("mode", "device.thermostatMode", inactiveLabel: false, decoration: "flat") {
state "off", label:'${name}', action:"thermostat.heat", backgroundColor:"#ffffff"
state "heat", label:'${name}', action:"thermostat.cool", backgroundColor:"#ffa81e"
state "cool", label:'${name}', action:"thermostat.auto", backgroundColor:"#269bd2"
state "auto", label:'${name}', action:"thermostat.off", backgroundColor:"#79b821"
}
standardTile("fanMode", "device.thermostatFanMode", width: 2, height: 2, inactiveLabel: false, decoration: "flat") {
standardTile("fanMode", "device.thermostatFanMode", inactiveLabel: false, decoration: "flat") {
state "fanAuto", label:'${name}', action:"thermostat.fanOn", backgroundColor:"#ffffff"
state "fanOn", label:'${name}', action:"thermostat.fanCirculate", backgroundColor:"#ffffff"
state "fanCirculate", label:'${name}', action:"thermostat.fanAuto", backgroundColor:"#ffffff"
}
standardTile("operatingState", "device.thermostatOperatingState", width: 2, height: 2) {
standardTile("operatingState", "device.thermostatOperatingState") {
state "idle", label:'${name}', backgroundColor:"#ffffff"
state "heating", label:'${name}', backgroundColor:"#ffa81e"
state "cooling", label:'${name}', backgroundColor:"#269bd2"
}
main("thermostatMulti")
main("temperature","operatingState")
details([
"temperature","tempDown","tempUp",
"mode", "fanMode", "operatingState",
@@ -131,7 +101,6 @@ def installed() {
sendEvent(name: "thermostatMode", value: "off")
sendEvent(name: "thermostatFanMode", value: "fanAuto")
sendEvent(name: "thermostatOperatingState", value: "idle")
sendEvent(name: "humidity", value: 53, unit: "%")
}
def parse(String description) {

View File

@@ -29,7 +29,7 @@ metadata {
tiles {
valueTile("power", "device.power", canChangeIcon: true) {
valueTile("power", "device.power") {
state "power", label: '${currentValue} W'
}

View File

@@ -273,7 +273,7 @@ User-Agent: CyberGarage-HTTP/1.0
def poll() {
log.debug "Executing 'poll'"
if (device.currentValue("currentIP") != "Offline")
runIn(30, setOffline)
runIn(10, setOffline)
new physicalgraph.device.HubAction("""POST /upnp/control/basicevent1 HTTP/1.1
SOAPACTION: "urn:Belkin:service:basicevent:1#GetBinaryState"
Content-Length: 277

View File

@@ -77,8 +77,9 @@ def parse(String description) {
def result = []
def bodyString = msg.body
if (bodyString) {
unschedule("setOffline")
unschedule("setOffline")
def body = new XmlSlurper().parseText(bodyString)
if (body?.property?.TimeSyncRequest?.text()) {
log.trace "Got TimeSyncRequest"
result << timeSyncResponse()
@@ -133,7 +134,7 @@ def refresh() {
def getStatus() {
log.debug "Executing WeMo Motion 'getStatus'"
if (device.currentValue("currentIP") != "Offline")
runIn(30, setOffline)
runIn(10, setOffline)
new physicalgraph.device.HubAction("""POST /upnp/control/basicevent1 HTTP/1.1
SOAPACTION: "urn:Belkin:service:basicevent:1#GetBinaryState"
Content-Length: 277

View File

@@ -28,7 +28,6 @@
command "subscribe"
command "resubscribe"
command "unsubscribe"
command "setOffline"
}
// simulator metadata
@@ -208,7 +207,7 @@ def subscribe(ip, port) {
def existingIp = getDataValue("ip")
def existingPort = getDataValue("port")
if (ip && ip != existingIp) {
log.debug "Updating ip from $existingIp to $ip"
log.debug "Updating ip from $existingIp to $ip"
updateDataValue("ip", ip)
def ipvalue = convertHexToIP(getDataValue("ip"))
sendEvent(name: "currentIP", value: ipvalue, descriptionText: "IP changed to ${ipvalue}")
@@ -276,7 +275,7 @@ def setOffline() {
def poll() {
log.debug "Executing 'poll'"
if (device.currentValue("currentIP") != "Offline")
runIn(30, setOffline)
runIn(10, setOffline)
new physicalgraph.device.HubAction("""POST /upnp/control/basicevent1 HTTP/1.1
SOAPACTION: "urn:Belkin:service:basicevent:1#GetBinaryState"
Content-Length: 277
@@ -291,4 +290,4 @@ User-Agent: CyberGarage-HTTP/1.0
</u:GetBinaryState>
</s:Body>
</s:Envelope>""", physicalgraph.device.Protocol.LAN)
}
}

Binary file not shown.

Before

Width:  |  Height:  |  Size: 13 KiB

Binary file not shown.

Before

Width:  |  Height:  |  Size: 7.3 KiB

View File

@@ -1,189 +0,0 @@
/**
* Vinli Home Beta
*
* Copyright 2015 Daniel
*
*/
definition(
name: "Vinli Home Connect",
namespace: "com.vinli.smartthings",
author: "Daniel",
description: "Allows Vinli users to connect their car to SmartThings",
category: "SmartThings Labs",
iconUrl: "https://d3azp77rte0gip.cloudfront.net/smartapps/baeb2e5d-ebd0-49fe-a4ec-e92417ae20bb/images/vinli_oauth_60.png",
iconX2Url: "https://d3azp77rte0gip.cloudfront.net/smartapps/baeb2e5d-ebd0-49fe-a4ec-e92417ae20bb/images/vinli_oauth_120.png",
iconX3Url: "https://d3azp77rte0gip.cloudfront.net/smartapps/baeb2e5d-ebd0-49fe-a4ec-e92417ae20bb/images/vinli_oauth_120.png",
oauth: true)
preferences {
section ("Allow external service to control these things...") {
input "switches", "capability.switch", multiple: true, required: true
input "locks", "capability.lock", multiple: true, required: true
}
}
mappings {
path("/devices") {
action: [
GET: "listAllDevices"
]
}
path("/switches") {
action: [
GET: "listSwitches"
]
}
path("/switches/:command") {
action: [
PUT: "updateSwitches"
]
}
path("/switches/:id/:command") {
action: [
PUT: "updateSwitch"
]
}
path("/locks/:command") {
action: [
PUT: "updateLocks"
]
}
path("/locks/:id/:command") {
action: [
PUT: "updateLock"
]
}
path("/devices/:id/:command") {
action: [
PUT: "commandDevice"
]
}
}
// returns a list of all devices
def listAllDevices() {
def resp = []
switches.each {
resp << [name: it.name, label: it.label, value: it.currentValue("switch"), type: "switch", id: it.id, hub: it.hub.name]
}
locks.each {
resp << [name: it.name, label: it.label, value: it.currentValue("lock"), type: "lock", id: it.id, hub: it.hub.name]
}
return resp
}
// returns a list like
// [[name: "kitchen lamp", value: "off"], [name: "bathroom", value: "on"]]
def listSwitches() {
def resp = []
switches.each {
resp << [name: it.displayName, value: it.currentValue("switch"), type: "switch", id: it.id]
}
return resp
}
void updateLocks() {
// use the built-in request object to get the command parameter
def command = params.command
if (command) {
// check that the switch supports the specified command
// If not, return an error using httpError, providing a HTTP status code.
locks.each {
if (!it.hasCommand(command)) {
httpError(501, "$command is not a valid command for all switches specified")
}
}
// all switches have the comand
// execute the command on all switches
// (note we can do this on the array - the command will be invoked on every element
locks."$command"()
}
}
void updateLock() {
def command = params.command
locks.each {
if (!it.hasCommand(command)) {
httpError(400, "$command is not a valid command for all lock specified")
}
if (it.id == params.id) {
it."$command"()
}
}
}
void updateSwitch() {
def command = params.command
switches.each {
if (!it.hasCommand(command)) {
httpError(400, "$command is not a valid command for all switches specified")
}
if (it.id == params.id) {
it."$command"()
}
}
}
void commandDevice() {
def command = params.command
def devices = []
switches.each {
devices << it
}
locks.each {
devices << it
}
devices.each {
if (it.id == params.id) {
if (!it.hasCommand(command)) {
httpError(400, "$command is not a valid command for specified device")
}
it."$command"()
}
}
}
void updateSwitches() {
// use the built-in request object to get the command parameter
def command = params.command
if (command) {
// check that the switch supports the specified command
// If not, return an error using httpError, providing a HTTP status code.
switches.each {
if (!it.hasCommand(command)) {
httpError(400, "$command is not a valid command for all switches specified")
}
}
// all switches have the comand
// execute the command on all switches
// (note we can do this on the array - the command will be invoked on every element
switches."$command"()
}
}
def installed() {
log.debug "Installed with settings: ${settings}"
}
def updated() {
log.debug "Updated with settings: ${settings}"
unsubscribe()
}

View File

@@ -13,7 +13,7 @@ preferences{
input "lock1", "capability.lock", required: true
}
section("Select the door contact sensor:") {
input "contact", "capability.contactSensor", required: true
input "contact", "capability.contactSensor", required: true
}
section("Automatically lock the door when closed...") {
input "minutesLater", "number", title: "Delay (in minutes):", required: true
@@ -22,10 +22,9 @@ preferences{
input "secondsLater", "number", title: "Delay (in seconds):", required: true
}
section( "Notifications" ) {
input("recipients", "contact", title: "Send notifications to", required: false) {
input "phoneNumber", "phone", title: "Warn with text message (optional)", description: "Phone Number", required: false
}
}
input "sendPushMessage", "enum", title: "Send a push notification?", metadata:[values:["Yes", "No"]], required: false
input "phoneNumber", "phone", title: "Enter phone number to send text notification.", required: false
}
}
def installed(){
@@ -43,73 +42,55 @@ def initialize(){
subscribe(lock1, "lock", doorHandler, [filterEvents: false])
subscribe(lock1, "unlock", doorHandler, [filterEvents: false])
subscribe(contact, "contact.open", doorHandler)
subscribe(contact, "contact.closed", doorHandler)
subscribe(contact, "contact.closed", doorHandler)
}
def lockDoor(){
log.debug "Locking the door."
lock1.lock()
if(location.contactBookEnabled) {
if ( recipients ) {
log.debug ( "Sending Push Notification..." )
sendNotificationToContacts( "${lock1} locked after ${contact} was closed for ${minutesLater} minutes!", recipients)
}
}
if (phoneNumber) {
log.debug("Sending text message...")
sendSms( phoneNumber, "${lock1} locked after ${contact} was closed for ${minutesLater} minutes!")
}
log.debug ( "Sending Push Notification..." )
if ( sendPushMessage != "No" ) sendPush( "${lock1} locked after ${contact} was closed for ${minutesLater} minutes!" )
log.debug("Sending text message...")
if ( phoneNumber != "0" ) sendSms( phoneNumber, "${lock1} locked after ${contact} was closed for ${minutesLater} minutes!" )
}
def unlockDoor(){
log.debug "Unlocking the door."
lock1.unlock()
if(location.contactBookEnabled) {
if ( recipients ) {
log.debug ( "Sending Push Notification..." )
sendNotificationToContacts( "${lock1} unlocked after ${contact} was opened for ${secondsLater} seconds!", recipients)
}
}
if ( phoneNumber ) {
log.debug("Sending text message...")
sendSms( phoneNumber, "${lock1} unlocked after ${contact} was opened for ${secondsLater} seconds!")
}
log.debug ( "Sending Push Notification..." )
if ( sendPushMessage != "No" ) sendPush( "${lock1} unlocked after ${contact} was opened for ${secondsLater} seconds!" )
log.debug("Sending text message...")
if ( phoneNumber != "0" ) sendSms( phoneNumber, "${lock1} unlocked after ${contact} was opened for ${secondsLater} seconds!" )
}
def doorHandler(evt){
if ((contact.latestValue("contact") == "open") && (evt.value == "locked")) { // If the door is open and a person locks the door then...
//def delay = (secondsLater) // runIn uses seconds
runIn( secondsLater, unlockDoor ) // ...schedule (in minutes) to unlock... We don't want the door to be closed while the lock is engaged.
def delay = (secondsLater) // runIn uses seconds
runIn( delay, unlockDoor ) // ...schedule (in minutes) to unlock... We don't want the door to be closed while the lock is engaged.
}
else if ((contact.latestValue("contact") == "open") && (evt.value == "unlocked")) { // If the door is open and a person unlocks it then...
unschedule( unlockDoor ) // ...we don't need to unlock it later.
}
}
else if ((contact.latestValue("contact") == "closed") && (evt.value == "locked")) { // If the door is closed and a person manually locks it then...
unschedule( lockDoor ) // ...we don't need to lock it later.
}
else if ((contact.latestValue("contact") == "closed") && (evt.value == "unlocked")) { // If the door is closed and a person unlocks it then...
//def delay = (minutesLater * 60) // runIn uses seconds
runIn( (minutesLater * 60), lockDoor ) // ...schedule (in minutes) to lock.
def delay = (minutesLater * 60) // runIn uses seconds
runIn( delay, lockDoor ) // ...schedule (in minutes) to lock.
}
else if ((lock1.latestValue("lock") == "unlocked") && (evt.value == "open")) { // If a person opens an unlocked door...
unschedule( lockDoor ) // ...we don't need to lock it later.
}
else if ((lock1.latestValue("lock") == "unlocked") && (evt.value == "closed")) { // If a person closes an unlocked door...
//def delay = (minutesLater * 60) // runIn uses seconds
runIn( (minutesLater * 60), lockDoor ) // ...schedule (in minutes) to lock.
}
def delay = (minutesLater * 60) // runIn uses seconds
runIn( delay, lockDoor ) // ...schedule (in minutes) to lock.
}
else { //Opening or Closing door when locked (in case you have a handle lock)
log.debug "Unlocking the door."
lock1.unlock()
if(location.contactBookEnabled) {
if ( recipients ) {
log.debug ( "Sending Push Notification..." )
sendNotificationToContacts( "${lock1} unlocked after ${contact} was opened or closed when ${lock1} was locked!", recipients)
}
}
if ( phoneNumber ) {
log.debug("Sending text message...")
sendSms( phoneNumber, "${lock1} unlocked after ${contact} was opened or closed when ${lock1} was locked!")
}
}
log.debug "Unlocking the door."
lock1.unlock()
log.debug ( "Sending Push Notification..." )
if ( sendPushMessage != "No" ) sendPush( "${lock1} unlocked after ${contact} was opened or closed when ${lock1} was locked!" )
log.debug("Sending text message...")
if ( phoneNumber != "0" ) sendSms( phoneNumber, "${lock1} unlocked after ${contact} was opened or closed when ${lock1} was locked!" )
}
}

View File

@@ -258,8 +258,8 @@ def installed() {
def updated() {
log.trace "Updated with settings: ${settings}"
unschedule()
unsubscribe()
unschedule()
initialize()
}
@@ -325,7 +325,6 @@ def addBulbs() {
} else {
d = addChildDevice("smartthings", "Hue Bulb", dni, newHueBulb?.value.hub, ["label":newHueBulb?.value.name])
}
log.debug "created ${d.displayName} with id $dni"
} else {
log.debug "$dni in not longer paired to the Hue Bridge or ID changed"
}
@@ -334,6 +333,8 @@ def addBulbs() {
newHueBulb = bulbs.find { (app.id + "/" + it.id) == dni }
d = addChildDevice("smartthings", "Hue Bulb", dni, newHueBulb?.hub, ["label":newHueBulb?.name])
}
log.debug "created ${d.displayName} with id $dni"
d.refresh()
} else {
log.debug "found ${d.displayName} with id $dni already exists, type: '$d.typeName'"
@@ -774,4 +775,4 @@ private Boolean hasAllHubsOver(String desiredFirmware) {
private List getRealHubFirmwareVersions() {
return location.hubs*.firmwareVersionString.findAll { it }
}
}