268 lines
7.0 KiB
JavaScript
268 lines
7.0 KiB
JavaScript
"use strict";
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let inherits = require('util').inherits,
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debug = require('debug')('homebridge-neato'),
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botvac = require('node-botvac'),
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Service,
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Characteristic;
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module.exports = function (homebridge)
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{
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Service = homebridge.hap.Service;
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Characteristic = homebridge.hap.Characteristic;
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homebridge.registerPlatform("homebridge-neato", "NeatoVacuumRobot", NeatoVacuumRobotPlatform);
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};
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function NeatoVacuumRobotPlatform(log, config)
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{
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this.log = log;
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this.serial = "1-3-3-7";
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this.email = config['email'];
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this.password = config['password'];
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this.hiddenServices = ('disabled' in config ? config['disabled'] : '');
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// Array of real robots and associated robot accessories (incl rooms)
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this.robots = [];
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if ('refresh' in config && config['refresh'] !== 'auto')
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{
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// parse config parameter
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this.refresh = parseInt(config['refresh']);
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// must be integer and positive
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this.refresh = (typeof this.refresh !== 'number' || (this.refresh % 1) !== 0 || this.refresh < 0) ? 60 : this.refresh;
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// minimum 60s to save some load on the neato servers
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if (this.refresh > 0 && this.refresh < 60)
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{
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this.log.warn("Minimum refresh time is 60 seconds to not overload the neato servers");
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this.refresh = (this.refresh > 0 && this.refresh < 60) ? 60 : this.refresh;
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}
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}
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// default auto
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else
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{
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this.refresh = 'auto';
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}
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this.log("Refresh is set to: " + this.refresh + (this.refresh !== 'auto' ? ' seconds' : ''));
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}
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NeatoVacuumRobotPlatform.prototype = {
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accessories: function (callback)
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{
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debug("Get robots");
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let accessories = [];
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this.boundaryNames = [];
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this.getRobots(() =>
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{
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this.robots.forEach((robot, i) =>
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{
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this.log("Found robot #" + (i + 1) + " named \"" + robot.device.name + "\" with serial \"" + robot.device._serial + "\"");
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// Start Update Intervall
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this.updateRobotTimer(robot.device._serial);
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let NeatoVacuumRobotAccessory = require('./accessories/neatoVacuumRobot')(Service, Characteristic);
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let mainAccessory = new NeatoVacuumRobotAccessory(this, robot);
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accessories.push(mainAccessory);
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robot.mainAccessory = mainAccessory;
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robot.roomAccessories = [];
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if (robot.device.maps)
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{
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robot.device.maps.forEach((map) =>
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{
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if (map.boundaries)
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{
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map.boundaries.forEach((boundary) =>
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{
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if (boundary.type === "polygon")
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{
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let roomAccessory = new NeatoVacuumRobotAccessory(this, robot, boundary);
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accessories.push(roomAccessory);
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robot.roomAccessories.push(roomAccessory);
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}
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})
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}
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})
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}
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});
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callback(accessories);
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});
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},
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getRobots: function (callback)
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{
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debug("Loading your robots");
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let client = new botvac.Client();
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// Login
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client.authorize(this.email, this.password, false, (error) =>
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{
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if (error)
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{
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this.log.error("Can't log on to neato cloud. Please check your internet connection and your credentials. Try again later if the neato servers have issues: " + error);
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callback();
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}
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else
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{
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// Get robots
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client.getRobots((error, robots) =>
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{
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if (error)
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{
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this.log.error("Successful login but can't connect to your neato robot: " + error);
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callback();
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}
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else if (robots.length === 0)
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{
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this.log.error("Successful login but no robots associated with your account.");
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this.robots = [];
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callback();
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}
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else
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{
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debug("Found " + robots.length + " robots");
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let requestedRobot = 0;
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robots.forEach((robot) =>
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{
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// Get Maps for each robot
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robot.getPersistentMaps((error, result) =>
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{
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if (error)
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{
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this.log.error("Error updating persistent maps: " + error + ": " + result);
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callback();
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}
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else if (result.length === 0)
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{
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robot.maps = [];
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callback();
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}
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else
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{
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robot.maps = result;
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let requestedMap = 0;
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robot.maps.forEach((map) =>
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{
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// Get Map Boundary Lines
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robot.getMapBoundaries(map.id, (error, result) =>
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{
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if (error)
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{
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this.log.error("Error getting boundaries: " + error + ": " + result)
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}
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else
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{
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map.boundaries = result.boundaries;
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}
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requestedMap++;
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// Robot is completely requested if all maps are requested
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if (requestedMap === robot.maps.length)
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{
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// Get additional information
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robot.getState((error, result) =>
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{
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if (error)
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{
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this.log.error("Error getting robot meta information: " + error + ": " + result);
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callback();
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}
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else
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{
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this.robots.push({device: robot, meta: result.meta, availableServices: result.availableServices});
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requestedRobot++;
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// Initial request is complete if all robots are requested.
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if (requestedRobot === robots.length)
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{
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callback();
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}
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}
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});
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}
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})
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});
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}
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});
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});
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}
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});
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}
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});
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},
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updateRobot: function (serial, callback)
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{
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let robot = this.getRobot(serial);
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// Data is up to date
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if (typeof (robot.lastUpdate) !== 'undefined' && new Date() - robot.lastUpdate < 2000)
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{
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callback();
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}
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else
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{
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debug(robot.device.name + ": ++ Updating robot state");
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robot.device.getState((error, result) =>
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{
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if (error)
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{
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this.log.error("Cannot update robot. Check if robot is online. " + error);
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}
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robot.lastUpdate = new Date();
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callback();
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});
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}
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},
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getRobot(serial)
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{
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let result;
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this.robots.forEach(function (robot)
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{
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if (robot.device._serial === serial)
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{
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result = robot;
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}
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});
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return result;
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},
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updateRobotTimer: function (serial)
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{
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this.updateRobot(serial, () =>
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{
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let robot = this.getRobot(serial);
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// Clear any other overlapping timers for this robot
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clearTimeout(robot.timer);
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// Tell all accessories of this robot (mainAccessory and roomAccessories) that updated robot data is available
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robot.mainAccessory.updated();
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robot.roomAccessories.forEach(accessory =>
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{
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accessory.updated();
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});
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// Periodic refresh interval set in config
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if (this.refresh !== 'auto' && this.refresh !== 0)
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{
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debug(robot.device.name + ": ++ Next background update in " + this.refresh + " seconds");
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robot.timer = setTimeout(this.updateRobotTimer.bind(this), this.refresh * 1000, serial);
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}
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// Auto refresh set in config
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else if (this.refresh === 'auto' && robot.device.canPause)
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{
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debug(robot.device.name + ": ++ Next background update in 60 seconds while cleaning (auto mode)");
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robot.timer = setTimeout(this.updateRobotTimer.bind(this), 60 * 1000, serial);
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}
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// No refresh
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else
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{
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debug(robot.device.name + ": ++ Stopped background updates");
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}
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});
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},
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}; |