forked from github/cordova-android
[CB-463] updated js and rewrote accel plugin again to support the start/stop approach. optimized. single callback used for message passing
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@ -1,6 +1,6 @@
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// commit 7b6ae77e5030060e8e99fe0b79ddcf9d698bf375
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// commit 4a4ba9985c920850fe3f229abc60de984e196ab5
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// File generated at :: Mon May 14 2012 13:03:22 GMT-0700 (PDT)
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// File generated at :: Fri May 18 2012 13:43:11 GMT-0700 (PDT)
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/*
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Licensed to the Apache Software Foundation (ASF) under one
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@ -3373,13 +3373,57 @@ var utils = require("cordova/utils"),
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exec = require("cordova/exec"),
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Acceleration = require('cordova/plugin/Acceleration');
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// Is the accel sensor running?
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var running = false;
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// Keeps reference to watchAcceleration calls.
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var timers = {};
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// Array of listeners; used to keep track of when we should call start and stop.
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var listeners = [];
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// Last returned acceleration object from native
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var accel = null;
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// Tells native to start.
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function start() {
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exec(function(a) {
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var tempListeners = listeners.slice(0);
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accel = new Acceleration(a.x, a.y, a.z, a.timestamp);
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for (var i = 0, l = tempListeners.length; i < l; i++) {
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tempListeners[i].win(accel);
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}
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}, function(e) {
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var tempListeners = listeners.slice(0);
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for (var i = 0, l = tempListeners.length; i < l; i++) {
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tempListeners[i].fail(e);
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}
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}, "Accelerometer", "start", []);
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running = true;
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}
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// Tells native to stop.
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function stop() {
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exec(null, null, "Accelerometer", "stop", []);
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running = false;
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}
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// Adds a callback pair to the listeners array
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function createCallbackPair(win, fail) {
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return {win:win, fail:fail};
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}
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// Removes a win/fail listener pair from the listeners array
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function removeListeners(l) {
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var idx = listeners.indexOf(l);
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if (idx > -1) {
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listeners.splice(idx, 1);
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if (listeners.length === 0) {
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stop();
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}
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}
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}
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var accelerometer = {
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/**
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* Asynchronously aquires the current acceleration.
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@ -3394,13 +3438,22 @@ var accelerometer = {
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throw "getCurrentAcceleration must be called with at least a success callback function as first parameter.";
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}
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var p;
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var win = function(a) {
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accel = new Acceleration(a.x, a.y, a.z, a.timestamp);
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successCallback(accel);
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successCallback(a);
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removeListeners(p);
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};
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var fail = function(e) {
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errorCallback(e);
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removeListeners(p);
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};
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// Get acceleration
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exec(win, errorCallback, "Accelerometer", "getAcceleration", []);
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p = createCallbackPair(win, fail);
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listeners.push(p);
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if (!running) {
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start();
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}
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},
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/**
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@ -3422,24 +3475,28 @@ var accelerometer = {
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// Keep reference to watch id, and report accel readings as often as defined in frequency
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var id = utils.createUUID();
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timers[id] = window.setInterval(function() {
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if (accel) {
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successCallback(accel);
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}
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}, frequency);
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// Success callback from native just updates the accel object.
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var win = function(a) {
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accel = new Acceleration(a.x, a.y, a.z, a.timestamp);
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var p = createCallbackPair(function(){}, function(e) {
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errorCallback(e);
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removeListeners(p);
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});
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listeners.push(p);
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timers[id] = {
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timer:window.setInterval(function() {
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if (accel) {
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successCallback(accel);
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}
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}, frequency),
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listeners:p
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};
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// Fail callback clears the watch and sends an error back.
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var fail = function(err) {
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accelerometer.clearWatch(id);
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errorCallback(err);
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};
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exec(win, fail, "Accelerometer", "addWatch", [id, frequency]);
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if (running) {
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// If we're already running then immediately invoke the success callback
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successCallback(accel);
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} else {
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start();
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}
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return id;
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},
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@ -3452,9 +3509,9 @@ var accelerometer = {
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clearWatch: function(id) {
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// Stop javascript timer & remove from timer list
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if (id && timers[id]) {
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window.clearInterval(timers[id]);
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window.clearInterval(timers[id].timer);
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removeListeners(timers[id].listeners);
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delete timers[id];
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exec(null, null, "Accelerometer", "clearWatch", [id]);
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}
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}
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};
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@ -58,9 +58,8 @@ public class AccelListener extends Plugin implements SensorEventListener {
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private SensorManager sensorManager; // Sensor manager
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private Sensor mSensor; // Acceleration sensor returned by sensor manager
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private HashMap<String, String> watches = new HashMap<String, String>();
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private List<String> callbacks = new ArrayList<String>();
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private String callbackId; // Keeps track of the single "start" callback ID passed in from JS
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/**
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* Create an accelerometer listener.
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@ -93,62 +92,28 @@ public class AccelListener extends Plugin implements SensorEventListener {
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* @return A PluginResult object with a status and message.
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*/
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public PluginResult execute(String action, JSONArray args, String callbackId) {
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PluginResult.Status status = PluginResult.Status.NO_RESULT;
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String message = "";
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PluginResult result = new PluginResult(status, message);
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result.setKeepCallback(true);
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try {
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if (action.equals("getAcceleration")) {
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if (this.status != AccelListener.RUNNING) {
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// If not running, then this is an async call, so don't worry about waiting
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// We drop the callback onto our stack, call start, and let start and the sensor callback fire off the callback down the road
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this.callbacks.add(callbackId);
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this.start();
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} else {
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return new PluginResult(PluginResult.Status.OK, this.getAccelerationJSON());
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}
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}
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else if (action.equals("addWatch")) {
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String watchId = args.getString(0);
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this.watches.put(watchId, callbackId);
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if (this.status != AccelListener.RUNNING) {
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this.start();
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}
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}
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else if (action.equals("clearWatch")) {
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String watchId = args.getString(0);
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if (this.watches.containsKey(watchId)) {
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this.watches.remove(watchId);
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if (this.size() == 0) {
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this.stop();
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}
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}
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return new PluginResult(PluginResult.Status.OK);
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} else {
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// Unsupported action
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return new PluginResult(PluginResult.Status.INVALID_ACTION);
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}
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} catch (JSONException e) {
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return new PluginResult(PluginResult.Status.JSON_EXCEPTION);
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}
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return result;
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}
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PluginResult.Status status = PluginResult.Status.NO_RESULT;
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String message = "";
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PluginResult result = new PluginResult(status, message);
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result.setKeepCallback(true);
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/**
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* Identifies if action to be executed returns a value and should be run synchronously.
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*
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* @param action The action to execute
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* @return T=returns value
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*/
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public boolean isSynch(String action) {
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if (action.equals("getAcceleration") && this.status == AccelListener.RUNNING) {
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return true;
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} else if (action.equals("addWatch") && this.status == AccelListener.RUNNING) {
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return true;
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} else if (action.equals("clearWatch")) {
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return true;
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if (action.equals("start")) {
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this.callbackId = callbackId;
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if (this.status != AccelListener.RUNNING) {
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// If not running, then this is an async call, so don't worry about waiting
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// We drop the callback onto our stack, call start, and let start and the sensor callback fire off the callback down the road
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this.start();
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}
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}
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return false;
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else if (action.equals("stop")) {
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if (this.status == AccelListener.RUNNING) {
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this.stop();
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}
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} else {
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// Unsupported action
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return new PluginResult(PluginResult.Status.INVALID_ACTION);
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}
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return result;
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}
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/**
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@ -162,10 +127,7 @@ public class AccelListener extends Plugin implements SensorEventListener {
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//--------------------------------------------------------------------------
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// LOCAL METHODS
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//--------------------------------------------------------------------------
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private int size() {
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return this.watches.size() + this.callbacks.size();
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}
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//
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/**
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* Start listening for acceleration sensor.
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*
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@ -267,74 +229,47 @@ public class AccelListener extends Plugin implements SensorEventListener {
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this.z = event.values[2];
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this.win();
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if (this.size() == 0) {
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this.stop();
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}
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}
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}
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// Sends an error back to JS
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private void fail(int code, String message) {
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// Error object
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JSONObject errorObj = new JSONObject();
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try {
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errorObj.put("code", code);
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errorObj.put("message", message);
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} catch (JSONException e) {
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// TODO Auto-generated catch block
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e.printStackTrace();
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}
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PluginResult err = new PluginResult(PluginResult.Status.ERROR, errorObj);
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for (String callbackId: this.callbacks)
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{
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this.error(err, callbackId);
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// Error object
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JSONObject errorObj = new JSONObject();
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try {
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errorObj.put("code", code);
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errorObj.put("message", message);
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} catch (JSONException e) {
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e.printStackTrace();
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}
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this.callbacks.clear();
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PluginResult err = new PluginResult(PluginResult.Status.ERROR, errorObj);
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err.setKeepCallback(true);
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Iterator it = this.watches.entrySet().iterator();
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while (it.hasNext()) {
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Map.Entry pairs = (Map.Entry)it.next();
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this.error(err, (String)pairs.getValue());
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}
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this.error(err, this.callbackId);
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}
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private void win() {
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// Success return object
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PluginResult result = new PluginResult(PluginResult.Status.OK, this.getAccelerationJSON());
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for (String callbackId: this.callbacks)
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{
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this.success(result, callbackId);
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}
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this.callbacks.clear();
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// Success return object
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PluginResult result = new PluginResult(PluginResult.Status.OK, this.getAccelerationJSON());
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result.setKeepCallback(true);
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Iterator it = this.watches.entrySet().iterator();
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while (it.hasNext()) {
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Map.Entry pairs = (Map.Entry)it.next();
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this.success(result, (String)pairs.getValue());
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}
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this.success(result, this.callbackId);
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}
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private void setStatus(int status) {
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private void setStatus(int status) {
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this.status = status;
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}
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private JSONObject getAccelerationJSON() {
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JSONObject r = new JSONObject();
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try {
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r.put("x", this.x);
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r.put("y", this.y);
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r.put("z", this.z);
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r.put("timestamp", this.timestamp);
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} catch (JSONException e) {
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// TODO Auto-generated catch block
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e.printStackTrace();
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}
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return r;
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}
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private JSONObject getAccelerationJSON() {
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JSONObject r = new JSONObject();
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try {
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r.put("x", this.x);
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r.put("y", this.y);
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r.put("z", this.z);
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r.put("timestamp", this.timestamp);
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} catch (JSONException e) {
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e.printStackTrace();
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}
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return r;
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}
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}
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