zigbee-herdsman
Version:
An open source ZigBee gateway solution with node.js.
652 lines • 31.4 kB
JavaScript
;
var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) {
if (k2 === undefined) k2 = k;
var desc = Object.getOwnPropertyDescriptor(m, k);
if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) {
desc = { enumerable: true, get: function() { return m[k]; } };
}
Object.defineProperty(o, k2, desc);
}) : (function(o, m, k, k2) {
if (k2 === undefined) k2 = k;
o[k2] = m[k];
}));
var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) {
Object.defineProperty(o, "default", { enumerable: true, value: v });
}) : function(o, v) {
o["default"] = v;
});
var __importStar = (this && this.__importStar) || function (mod) {
if (mod && mod.__esModule) return mod;
var result = {};
if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k);
__setModuleDefault(result, mod);
return result;
};
var __importDefault = (this && this.__importDefault) || function (mod) {
return (mod && mod.__esModule) ? mod : { "default": mod };
};
Object.defineProperty(exports, "__esModule", { value: true });
const events_1 = __importDefault(require("events"));
const database_1 = __importDefault(require("./database"));
const adapter_1 = require("../adapter");
const model_1 = require("./model");
const helpers_1 = require("./helpers");
const Events = __importStar(require("./events"));
const tstype_1 = require("./tstype");
const fs_1 = __importDefault(require("fs"));
const zcl_1 = require("../zcl");
const touchlink_1 = __importDefault(require("./touchlink"));
const greenPower_1 = __importDefault(require("./greenPower"));
const utils_1 = require("../utils");
const assert_1 = __importDefault(require("assert"));
// eslint-disable-next-line @typescript-eslint/ban-ts-comment
// @ts-ignore
const mixin_deep_1 = __importDefault(require("mixin-deep"));
const group_1 = __importDefault(require("./model/group"));
const logger_1 = require("../utils/logger");
const NS = 'zh:controller';
async function catcho(func, errorMessage) {
try {
await func();
}
catch (error) {
logger_1.logger.error(`${errorMessage}: ${error}`, NS);
}
}
const DefaultOptions = {
network: {
networkKeyDistribute: false,
networkKey: [0x01, 0x03, 0x05, 0x07, 0x09, 0x0B, 0x0D, 0x0F, 0x00, 0x02, 0x04, 0x06, 0x08, 0x0A, 0x0C, 0x0D],
panID: 0x1a62,
extendedPanID: [0xDD, 0xDD, 0xDD, 0xDD, 0xDD, 0xDD, 0xDD, 0xDD],
channelList: [11],
},
serialPort: {},
databasePath: null,
databaseBackupPath: null,
backupPath: null,
adapter: { disableLED: false },
acceptJoiningDeviceHandler: null,
};
/**
* @noInheritDoc
*/
class Controller extends events_1.default.EventEmitter {
options;
database;
adapter;
greenPower;
// eslint-disable-next-line
permitJoinNetworkClosedTimer;
// eslint-disable-next-line
permitJoinTimeoutTimer;
permitJoinTimeout;
// eslint-disable-next-line
backupTimer;
// eslint-disable-next-line
databaseSaveTimer;
touchlink;
stopping;
networkParametersCached;
/**
* Create a controller
*
* To auto detect the port provide `null` for `options.serialPort.path`
*/
constructor(options) {
super();
this.stopping = false;
this.options = (0, mixin_deep_1.default)(JSON.parse(JSON.stringify(DefaultOptions)), options);
// Validate options
for (const channel of this.options.network.channelList) {
if (channel < 11 || channel > 26) {
throw new Error(`'${channel}' is an invalid channel, use a channel between 11 - 26.`);
}
}
if (!Array.isArray(this.options.network.networkKey) || this.options.network.networkKey.length !== 16) {
throw new Error(`Network key must be 16 digits long, got ${this.options.network.networkKey.length}.`);
}
if (!Array.isArray(this.options.network.extendedPanID) || this.options.network.extendedPanID.length !== 8) {
throw new Error(`ExtendedPanID must be 8 digits long, got ${this.options.network.extendedPanID.length}.`);
}
if (this.options.network.panID >= 0xFFFF || this.options.network.panID <= 0) {
throw new Error(`PanID must have a value of 0x0001 (1) - 0xFFFE (65534), got ${this.options.network.panID}.`);
}
}
/**
* Start the Herdsman controller
*/
async start() {
// Database (create end inject)
this.database = database_1.default.open(this.options.databasePath);
model_1.Entity.injectDatabase(this.database);
// Adapter (create and inject)
this.adapter = await adapter_1.Adapter.create(this.options.network, this.options.serialPort, this.options.backupPath, this.options.adapter);
logger_1.logger.debug(`Starting with options '${JSON.stringify(this.options)}'`, NS);
const startResult = await this.adapter.start();
logger_1.logger.debug(`Started with result '${startResult}'`, NS);
// Check if we have to change the channel, only do this when adapter `resumed` because:
// - `getNetworkParameters` might be return wrong info because it needs to propogate after backup restore
// - If result is not `resumed` (`reset` or `restored`), the adapter should comission with the channel from `this.options.network`
if ((startResult === 'resumed') && (await this.adapter.supportsChangeChannel())) {
const netParams = (await this.getNetworkParameters());
if (this.options.network.channelList[0] !== netParams.channel) {
await this.changeChannel();
}
}
model_1.Entity.injectAdapter(this.adapter);
// log injection
logger_1.logger.debug(`Injected database: ${this.database != null}, adapter: ${this.adapter != null}`, NS);
this.greenPower = new greenPower_1.default(this.adapter);
this.greenPower.on(tstype_1.GreenPowerEvents.deviceJoined, this.onDeviceJoinedGreenPower.bind(this));
// Register adapter events
this.adapter.on(adapter_1.Events.Events.deviceJoined, this.onDeviceJoined.bind(this));
this.adapter.on(adapter_1.Events.Events.zclData, (data) => this.onZclOrRawData('zcl', data));
this.adapter.on(adapter_1.Events.Events.rawData, (data) => this.onZclOrRawData('raw', data));
this.adapter.on(adapter_1.Events.Events.disconnected, this.onAdapterDisconnected.bind(this));
this.adapter.on(adapter_1.Events.Events.deviceAnnounce, this.onDeviceAnnounce.bind(this));
this.adapter.on(adapter_1.Events.Events.deviceLeave, this.onDeviceLeave.bind(this));
this.adapter.on(adapter_1.Events.Events.networkAddress, this.onNetworkAddress.bind(this));
if (startResult === 'reset') {
if (this.options.databaseBackupPath && fs_1.default.existsSync(this.options.databasePath)) {
fs_1.default.copyFileSync(this.options.databasePath, this.options.databaseBackupPath);
}
logger_1.logger.debug('Clearing database...', NS);
for (const group of group_1.default.all()) {
group.removeFromDatabase();
}
for (const device of model_1.Device.all()) {
device.removeFromDatabase();
}
}
if (startResult === 'reset' || (this.options.backupPath && !fs_1.default.existsSync(this.options.backupPath))) {
await this.backup();
}
// Add coordinator to the database if it is not there yet.
const coordinator = await this.adapter.getCoordinator();
if (model_1.Device.byType('Coordinator').length === 0) {
logger_1.logger.debug('No coordinator in database, querying...', NS);
model_1.Device.create('Coordinator', coordinator.ieeeAddr, coordinator.networkAddress, coordinator.manufacturerID, undefined, undefined, undefined, true, coordinator.endpoints);
}
// Update coordinator ieeeAddr if changed, can happen due to e.g. reflashing
const databaseCoordinator = model_1.Device.byType('Coordinator')[0];
if (databaseCoordinator.ieeeAddr !== coordinator.ieeeAddr) {
logger_1.logger.info(`Coordinator address changed, updating to '${coordinator.ieeeAddr}'`, NS);
databaseCoordinator.changeIeeeAddress(coordinator.ieeeAddr);
}
// Set backup timer to 1 day.
this.backupTimer = setInterval(() => this.backup(), 86400000);
// Set database save timer to 1 hour.
this.databaseSaveTimer = setInterval(() => this.databaseSave(), 3600000);
this.touchlink = new touchlink_1.default(this.adapter);
return startResult;
}
async touchlinkIdentify(ieeeAddr, channel) {
await this.touchlink.identify(ieeeAddr, channel);
}
async touchlinkScan() {
return this.touchlink.scan();
}
async touchlinkFactoryReset(ieeeAddr, channel) {
return this.touchlink.factoryReset(ieeeAddr, channel);
}
async touchlinkFactoryResetFirst() {
return this.touchlink.factoryResetFirst();
}
async addInstallCode(installCode) {
const aqaraMatch = installCode.match(/^G\$M:.+\$A:(.+)\$I:(.+)$/);
let ieeeAddr, key;
if (aqaraMatch) {
ieeeAddr = aqaraMatch[1];
key = aqaraMatch[2];
}
else {
(0, assert_1.default)(installCode.length === 95 || installCode.length === 91, `Unsupported install code, got ${installCode.length} chars, expected 95 or 91`);
const keyStart = installCode.length - (installCode.length === 95 ? 36 : 32);
ieeeAddr = installCode.substring(keyStart - 19, keyStart - 3);
key = installCode.substring(keyStart, installCode.length);
}
ieeeAddr = `0x${ieeeAddr}`;
key = Buffer.from(key.match(/.{1,2}/g).map(d => parseInt(d, 16)));
await this.adapter.addInstallCode(ieeeAddr, key);
}
async permitJoin(permit, device, time) {
await this.permitJoinInternal(permit, 'manual', device, time);
}
async permitJoinInternal(permit, reason, device, time) {
clearInterval(this.permitJoinNetworkClosedTimer);
clearInterval(this.permitJoinTimeoutTimer);
this.permitJoinNetworkClosedTimer = null;
this.permitJoinTimeoutTimer = null;
this.permitJoinTimeout = undefined;
if (permit) {
await this.adapter.permitJoin(254, !device ? null : device.networkAddress);
await this.greenPower.permitJoin(254, !device ? null : device.networkAddress);
// Zigbee 3 networks automatically close after max 255 seconds, keep network open.
this.permitJoinNetworkClosedTimer = setInterval(async () => {
await catcho(async () => {
await this.adapter.permitJoin(254, !device ? null : device.networkAddress);
await this.greenPower.permitJoin(254, !device ? null : device.networkAddress);
}, "Failed to keep permit join alive");
}, 200 * 1000);
if (typeof time === 'number') {
this.permitJoinTimeout = time;
this.permitJoinTimeoutTimer = setInterval(async () => {
this.permitJoinTimeout--;
if (this.permitJoinTimeout <= 0) {
await this.permitJoinInternal(false, 'timer_expired');
}
else {
const data = { permitted: true, timeout: this.permitJoinTimeout, reason };
this.emit(Events.Events.permitJoinChanged, data);
}
}, 1000);
}
const data = { permitted: true, reason, timeout: this.permitJoinTimeout };
this.emit(Events.Events.permitJoinChanged, data);
}
else {
logger_1.logger.debug('Disable joining', NS);
await this.greenPower.permitJoin(0, null);
await this.adapter.permitJoin(0, null);
const data = { permitted: false, reason, timeout: this.permitJoinTimeout };
this.emit(Events.Events.permitJoinChanged, data);
}
}
getPermitJoin() {
return this.permitJoinNetworkClosedTimer != null;
}
getPermitJoinTimeout() {
return this.permitJoinTimeout;
}
isStopping() {
return this.stopping;
}
async stop() {
this.stopping = true;
this.databaseSave();
// Unregister adapter events
this.adapter.removeAllListeners(adapter_1.Events.Events.deviceJoined);
this.adapter.removeAllListeners(adapter_1.Events.Events.zclData);
this.adapter.removeAllListeners(adapter_1.Events.Events.rawData);
this.adapter.removeAllListeners(adapter_1.Events.Events.disconnected);
this.adapter.removeAllListeners(adapter_1.Events.Events.deviceAnnounce);
this.adapter.removeAllListeners(adapter_1.Events.Events.deviceLeave);
await catcho(() => this.permitJoinInternal(false, 'manual'), "Failed to disable join on stop");
clearInterval(this.backupTimer);
clearInterval(this.databaseSaveTimer);
await this.backup();
await this.adapter.stop();
}
databaseSave() {
for (const device of model_1.Device.all()) {
device.save(false);
}
for (const group of group_1.default.all()) {
group.save(false);
}
this.database.write();
}
async backup() {
this.databaseSave();
if (this.options.backupPath && await this.adapter.supportsBackup()) {
logger_1.logger.debug('Creating coordinator backup', NS);
const backup = await this.adapter.backup(model_1.Device.all().map((d) => d.ieeeAddr));
const unifiedBackup = await utils_1.BackupUtils.toUnifiedBackup(backup);
const tmpBackupPath = this.options.backupPath + '.tmp';
fs_1.default.writeFileSync(tmpBackupPath, JSON.stringify(unifiedBackup, null, 2));
fs_1.default.renameSync(tmpBackupPath, this.options.backupPath);
logger_1.logger.info(`Wrote coordinator backup to '${this.options.backupPath}'`, NS);
}
}
async coordinatorCheck() {
if (await this.adapter.supportsBackup()) {
const backup = await this.adapter.backup(model_1.Device.all().map((d) => d.ieeeAddr));
const devicesInBackup = backup.devices.map((d) => `0x${d.ieeeAddress.toString('hex')}`);
const missingRouters = this.getDevices()
.filter((d) => d.type === 'Router' && !devicesInBackup.includes(d.ieeeAddr));
return { missingRouters };
}
else {
throw new Error("Coordinator does not coordinator check because it doesn't support backups");
}
}
async reset(type) {
await this.adapter.reset(type);
}
async getCoordinatorVersion() {
return this.adapter.getCoordinatorVersion();
}
async getNetworkParameters() {
// Cache network parameters as they don't change anymore after start.
if (!this.networkParametersCached) {
this.networkParametersCached = await this.adapter.getNetworkParameters();
}
return this.networkParametersCached;
}
/**
* Get all devices
*/
getDevices() {
return model_1.Device.all();
}
/**
* Get all devices with a specific type
*/
getDevicesByType(type) {
return model_1.Device.byType(type);
}
/**
* Get device by ieeeAddr
*/
getDeviceByIeeeAddr(ieeeAddr) {
return model_1.Device.byIeeeAddr(ieeeAddr);
}
/**
* Get device by networkAddress
*/
getDeviceByNetworkAddress(networkAddress) {
return model_1.Device.byNetworkAddress(networkAddress);
}
/**
* Get group by ID
*/
getGroupByID(groupID) {
return group_1.default.byGroupID(groupID);
}
/**
* Get all groups
*/
getGroups() {
return group_1.default.all();
}
/**
* Create a Group
*/
createGroup(groupID) {
return group_1.default.create(groupID);
}
/**
* Broadcast a network-wide channel change.
*/
async changeChannel() {
logger_1.logger.info(`Broadcasting change channel to '${this.options.network.channelList[0]}'.`, NS);
await this.adapter.changeChannel(this.options.network.channelList[0]);
this.networkParametersCached = null; // invalidate cache
}
/**
* Set transmit power of the adapter
*/
async setTransmitPower(value) {
return this.adapter.setTransmitPower(value);
}
onNetworkAddress(payload) {
logger_1.logger.debug(`Network address '${payload.ieeeAddr}'`, NS);
const device = model_1.Device.byIeeeAddr(payload.ieeeAddr);
if (!device) {
logger_1.logger.debug(`Network address is from unknown device '${payload.ieeeAddr}'`, NS);
return;
}
device.updateLastSeen();
this.selfAndDeviceEmit(device, Events.Events.lastSeenChanged, { device, reason: 'networkAddress' });
if (device.networkAddress !== payload.networkAddress) {
logger_1.logger.debug(`Device '${payload.ieeeAddr}' got new networkAddress '${payload.networkAddress}'`, NS);
device.networkAddress = payload.networkAddress;
device.save();
const data = { device };
this.selfAndDeviceEmit(device, Events.Events.deviceNetworkAddressChanged, data);
}
}
onDeviceAnnounce(payload) {
logger_1.logger.debug(`Device announce '${payload.ieeeAddr}'`, NS);
const device = model_1.Device.byIeeeAddr(payload.ieeeAddr);
if (!device) {
logger_1.logger.debug(`Device announce is from unknown device '${payload.ieeeAddr}'`, NS);
return;
}
device.updateLastSeen();
this.selfAndDeviceEmit(device, Events.Events.lastSeenChanged, { device, reason: 'deviceAnnounce' });
device.implicitCheckin();
if (device.networkAddress !== payload.networkAddress) {
logger_1.logger.debug(`Device '${payload.ieeeAddr}' announced with new networkAddress '${payload.networkAddress}'`, NS);
device.networkAddress = payload.networkAddress;
device.save();
}
const data = { device };
this.selfAndDeviceEmit(device, Events.Events.deviceAnnounce, data);
}
onDeviceLeave(payload) {
logger_1.logger.debug(`Device leave '${payload.ieeeAddr}'`, NS);
const device = payload.ieeeAddr ? model_1.Device.byIeeeAddr(payload.ieeeAddr) : model_1.Device.byNetworkAddress(payload.networkAddress);
if (!device) {
logger_1.logger.debug(`Device leave is from unknown or already deleted device '${payload.ieeeAddr ?? payload.networkAddress}'`, NS);
return;
}
logger_1.logger.debug(`Removing device from database '${device.ieeeAddr}'`, NS);
device.removeFromDatabase();
const data = { ieeeAddr: device.ieeeAddr };
this.selfAndDeviceEmit(device, Events.Events.deviceLeave, data);
}
async onAdapterDisconnected() {
logger_1.logger.debug(`Adapter disconnected`, NS);
await catcho(() => this.adapter.stop(), 'Failed to stop adapter on disconnect');
this.emit(Events.Events.adapterDisconnected);
}
async onDeviceJoinedGreenPower(payload) {
logger_1.logger.debug(`Green power device '${JSON.stringify(payload)}' joined`, NS);
// Green power devices don't have an ieeeAddr, the sourceID is unique and static so use this.
let ieeeAddr = payload.sourceID.toString(16);
ieeeAddr = `0x${'0'.repeat(16 - ieeeAddr.length)}${ieeeAddr}`;
// Green power devices dont' have a modelID, create a modelID based on the deviceID (=type)
const modelID = `GreenPower_${payload.deviceID}`;
let device = model_1.Device.byIeeeAddr(ieeeAddr, true);
if (!device) {
logger_1.logger.debug(`New green power device '${ieeeAddr}' joined`, NS);
logger_1.logger.debug(`Creating device '${ieeeAddr}'`, NS);
device = model_1.Device.create('GreenPower', ieeeAddr, payload.networkAddress, null, undefined, undefined, modelID, true, []);
device.save();
this.selfAndDeviceEmit(device, Events.Events.deviceJoined, { device });
const deviceInterviewPayload = { status: 'successful', device };
this.selfAndDeviceEmit(device, Events.Events.deviceInterview, deviceInterviewPayload);
}
else if (device.isDeleted) {
logger_1.logger.debug(`Deleted green power device '${ieeeAddr}' joined, undeleting`, NS);
device.undelete(true);
this.selfAndDeviceEmit(device, Events.Events.deviceJoined, { device });
const deviceInterviewPayload = { status: 'successful', device };
this.selfAndDeviceEmit(device, Events.Events.deviceInterview, deviceInterviewPayload);
}
}
selfAndDeviceEmit(device, event, data) {
device?.emit(event, data);
this.emit(event, data);
}
async onDeviceJoined(payload) {
logger_1.logger.debug(`Device '${payload.ieeeAddr}' joined`, NS);
if (this.options.acceptJoiningDeviceHandler) {
if (!(await this.options.acceptJoiningDeviceHandler(payload.ieeeAddr))) {
logger_1.logger.debug(`Device '${payload.ieeeAddr}' rejected by handler, removing it`, NS);
await catcho(() => this.adapter.removeDevice(payload.networkAddress, payload.ieeeAddr), 'Failed to remove rejected device');
return;
}
else {
logger_1.logger.debug(`Device '${payload.ieeeAddr}' accepted by handler`, NS);
}
}
let device = model_1.Device.byIeeeAddr(payload.ieeeAddr, true);
if (!device) {
logger_1.logger.debug(`New device '${payload.ieeeAddr}' joined`, NS);
logger_1.logger.debug(`Creating device '${payload.ieeeAddr}'`, NS);
device = model_1.Device.create('Unknown', payload.ieeeAddr, payload.networkAddress, undefined, undefined, undefined, undefined, false, []);
this.selfAndDeviceEmit(device, Events.Events.deviceJoined, { device });
}
else if (device.isDeleted) {
logger_1.logger.debug(`Deleted device '${payload.ieeeAddr}' joined, undeleting`, NS);
device.undelete();
this.selfAndDeviceEmit(device, Events.Events.deviceJoined, { device });
}
if (device.networkAddress !== payload.networkAddress) {
logger_1.logger.debug(`Device '${payload.ieeeAddr}' is already in database with different network address, updating network address`, NS);
device.networkAddress = payload.networkAddress;
device.save();
}
device.updateLastSeen();
this.selfAndDeviceEmit(device, Events.Events.lastSeenChanged, { device, reason: 'deviceJoined' });
device.implicitCheckin();
if (!device.interviewCompleted && !device.interviewing) {
const payloadStart = { status: 'started', device };
logger_1.logger.info(`Interview for '${device.ieeeAddr}' started`, NS);
this.selfAndDeviceEmit(device, Events.Events.deviceInterview, payloadStart);
try {
await device.interview();
logger_1.logger.info(`Succesfully interviewed '${device.ieeeAddr}'`, NS);
const event = { status: 'successful', device };
this.selfAndDeviceEmit(device, Events.Events.deviceInterview, event);
}
catch (error) {
logger_1.logger.error(`Interview failed for '${device.ieeeAddr} with error '${error}'`, NS);
const event = { status: 'failed', device };
this.selfAndDeviceEmit(device, Events.Events.deviceInterview, event);
}
}
else {
logger_1.logger.debug(`Not interviewing '${payload.ieeeAddr}', completed '${device.interviewCompleted}', in progress '${device.interviewing}'`, NS);
}
}
isZclDataPayload(dataPayload, type) {
return type === 'zcl';
}
async onZclOrRawData(dataType, dataPayload) {
const logDataPayload = JSON.parse(JSON.stringify(dataPayload));
if (dataType === 'zcl') {
delete logDataPayload.frame.Cluster;
}
logger_1.logger.debug(`Received '${dataType}' data '${JSON.stringify(logDataPayload)}'`, NS);
let gpDevice = null;
if (this.isZclDataPayload(dataPayload, dataType)) {
if (dataPayload.frame.Cluster.name === 'touchlink') {
// This is handled by touchlink
return;
}
else if (dataPayload.frame.Cluster.name === 'greenPower') {
await this.greenPower.onZclGreenPowerData(dataPayload);
// lookup encapsulated gpDevice for further processing
gpDevice = model_1.Device.byNetworkAddress(dataPayload.frame.Payload.srcID & 0xFFFF);
}
}
let device = gpDevice ? gpDevice : (typeof dataPayload.address === 'string' ?
model_1.Device.byIeeeAddr(dataPayload.address) : model_1.Device.byNetworkAddress(dataPayload.address));
/**
* Handling of re-transmitted Xiaomi messages.
* https://github.com/Koenkk/zigbee2mqtt/issues/1238
* https://github.com/Koenkk/zigbee2mqtt/issues/3592
*
* Some Xiaomi router devices re-transmit messages from Xiaomi end devices.
* The network address of these message is set to the one of the Xiaomi router.
* Therefore it looks like if the message came from the Xiaomi router, while in
* fact it came from the end device.
* Handling these message would result in false state updates.
* The group ID attribute of these message defines the network address of the end device.
*/
if (device?.manufacturerName === 'LUMI' && device?.type == 'Router' && dataPayload.groupID) {
logger_1.logger.debug(`Handling re-transmitted Xiaomi message ${device.networkAddress} -> ${dataPayload.groupID}`, NS);
device = model_1.Device.byNetworkAddress(dataPayload.groupID);
}
if (!device) {
logger_1.logger.debug(`'${dataType}' data is from unknown device with address '${dataPayload.address}', skipping...`, NS);
return;
}
device.updateLastSeen();
//no implicit checkin for genPollCtrl data because it might interfere with the explicit checkin
if (!this.isZclDataPayload(dataPayload, dataType) || !dataPayload.frame.isCluster("genPollCtrl")) {
device.implicitCheckin();
}
device.linkquality = dataPayload.linkquality;
let endpoint = device.getEndpoint(dataPayload.endpoint);
if (!endpoint) {
logger_1.logger.debug(`'${dataType}' data is from unknown endpoint '${dataPayload.endpoint}' from device with ` +
`network address '${dataPayload.address}', creating it...`, NS);
endpoint = device.createEndpoint(dataPayload.endpoint);
}
// Parse command for event
let type = undefined;
let data;
let clusterName = undefined;
const meta = {};
if (this.isZclDataPayload(dataPayload, dataType)) {
const frame = dataPayload.frame;
const command = frame.getCommand();
clusterName = frame.Cluster.name;
meta.zclTransactionSequenceNumber = frame.Header.transactionSequenceNumber;
meta.manufacturerCode = frame.Header.manufacturerCode;
meta.frameControl = frame.Header.frameControl;
if (frame.isGlobal()) {
if (frame.isCommand('report')) {
type = 'attributeReport';
data = helpers_1.ZclFrameConverter.attributeKeyValue(dataPayload.frame, device.manufacturerID);
}
else if (frame.isCommand('read')) {
type = 'read';
data = helpers_1.ZclFrameConverter.attributeList(dataPayload.frame, device.manufacturerID);
}
else if (frame.isCommand('write')) {
type = 'write';
data = helpers_1.ZclFrameConverter.attributeKeyValue(dataPayload.frame, device.manufacturerID);
}
else {
/* istanbul ignore else */
if (frame.isCommand('readRsp')) {
type = 'readResponse';
data = helpers_1.ZclFrameConverter.attributeKeyValue(dataPayload.frame, device.manufacturerID);
}
}
}
else {
/* istanbul ignore else */
if (frame.isSpecific()) {
if (Events.CommandsLookup[command.name]) {
type = Events.CommandsLookup[command.name];
data = dataPayload.frame.Payload;
}
else {
logger_1.logger.debug(`Skipping command '${command.name}' because it is missing from the lookup`, NS);
}
}
}
if (type === 'readResponse' || type === 'attributeReport') {
// Some device report, e.g. it's modelID through a readResponse or attributeReport
for (const [key, value] of Object.entries(data)) {
const property = model_1.Device.ReportablePropertiesMapping[key];
if (property && !device[property.key]) {
property.set(value, device);
}
}
endpoint.saveClusterAttributeKeyValue(frame.Cluster.ID, data);
}
}
else {
type = 'raw';
data = dataPayload.data;
const name = zcl_1.Utils.getCluster(dataPayload.clusterID).name;
clusterName = Number.isNaN(Number(name)) ? name : Number(name);
}
if (type && data) {
const endpoint = device.getEndpoint(dataPayload.endpoint);
const linkquality = dataPayload.linkquality;
const groupID = dataPayload.groupID;
const eventData = {
type: type, device, endpoint, data, linkquality, groupID, cluster: clusterName, meta
};
this.selfAndDeviceEmit(device, Events.Events.message, eventData);
this.selfAndDeviceEmit(device, Events.Events.lastSeenChanged, { device, reason: 'messageEmitted' });
}
else {
this.selfAndDeviceEmit(device, Events.Events.lastSeenChanged, { device, reason: 'messageNonEmitted' });
}
if (this.isZclDataPayload(dataPayload, dataType)) {
await device.onZclData(dataPayload, endpoint);
}
}
}
exports.default = Controller;
//# sourceMappingURL=controller.js.map