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zigbee-herdsman-converters

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Collection of device converters to be used with zigbee-herdsman

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"use strict"; 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 () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __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 }); exports.definitions = void 0; const node_assert_1 = __importDefault(require("node:assert")); const fz = __importStar(require("../converters/fromZigbee")); const exposes = __importStar(require("../lib/exposes")); const m = __importStar(require("../lib/modernExtend")); const reporting = __importStar(require("../lib/reporting")); const globalStore = __importStar(require("../lib/store")); const e = exposes.presets; const fzLocal = { // biome-ignore lint/style/useNamingConvention: ignored using `--suppress` CCTSwitch_D0001_levelctrl: { cluster: "genLevelCtrl", type: ["commandMoveToLevel", "commandMoveToLevelWithOnOff", "commandMove", "commandStop"], convert: (model, msg, publish, options, meta) => { const payload = {}; if (msg.type === "commandMove") { (0, node_assert_1.default)("movemode" in msg.data); const direction = msg.data.movemode === 1 ? "down" : "up"; payload.action = `brightness_${direction}_hold`; globalStore.putValue(msg.endpoint, "direction", direction); globalStore.putValue(msg.endpoint, "start", Date.now()); payload.rate = msg.data.rate; payload.action_rate = msg.data.rate; } else if (msg.type === "commandStop") { const direction = globalStore.getValue(msg.endpoint, "direction"); const duration = Date.now() - globalStore.getValue(msg.endpoint, "start"); payload.action = `brightness_${direction}_release`; payload.duration = duration; payload.action_duration = duration; } else { // wrap the messages from button2 and button4 into a single function // button2 always sends "commandMoveToLevel" // button4 sends two messages, with "commandMoveToLevelWithOnOff" coming first in the sequence // so that's the one we key off of to indicate "button4". we will NOT print it in that case, // instead it will be returned as part of the second sequence with // CCTSwitch_D0001_move_to_colortemp_recall below. let clk = "brightness"; let cmd = null; (0, node_assert_1.default)("level" in msg.data); payload.action_brightness = msg.data.level; payload.action_transition = msg.data.transtime / 10.0; payload.brightness = msg.data.level; payload.transition = msg.data.transtime / 10.0; if (msg.type === "commandMoveToLevel") { // pressing the brightness button increments/decrements from 13-254. // when it reaches the end (254) it will start decrementing by a step, // and vice versa. const direction = msg.data.level > globalStore.getValue(msg.endpoint, "last_brightness") ? "up" : "down"; cmd = `${clk}_${direction}`; globalStore.putValue(msg.endpoint, "last_brightness", msg.data.level); } else if (msg.type === "commandMoveToLevelWithOnOff") { // This is the 'start' of the 4th button sequence. clk = "memory"; globalStore.putValue(msg.endpoint, "last_move_level", msg.data.level); globalStore.putValue(msg.endpoint, "last_clk", clk); } if (clk !== "memory") { globalStore.putValue(msg.endpoint, "last_seq", msg.meta.zclTransactionSequenceNumber); globalStore.putValue(msg.endpoint, "last_clk", clk); payload.action = cmd; } } return payload; }, }, // biome-ignore lint/style/useNamingConvention: ignored using `--suppress` CCTSwitch_D0001_lighting: { cluster: "lightingColorCtrl", type: ["commandMoveToColorTemp", "commandMoveColorTemp"], convert: (model, msg, publish, options, meta) => { const payload = {}; if (msg.type === "commandMoveColorTemp") { (0, node_assert_1.default)("movemode" in msg.data); const clk = "colortemp"; payload.rate = msg.data.rate; payload.action_rate = msg.data.rate; if (msg.data.movemode === 0) { const direction = globalStore.getValue(msg.endpoint, "direction"); const duration = Date.now() - globalStore.getValue(msg.endpoint, "start"); payload.action = `${clk}_${direction}_release`; payload.duration = duration; payload.action_duration = duration; } else { const direction = msg.data.movemode === 3 ? "down" : "up"; payload.action = `${clk}_${direction}_hold`; payload.rate = msg.data.rate; payload.action_rate = msg.data.rate; // store button and start moment globalStore.putValue(msg.endpoint, "direction", direction); globalStore.putValue(msg.endpoint, "start", Date.now()); } } else { // both button3 and button4 send the command "commandMoveToColorTemp" // in order to distinguish between the buttons, use the sequence number and the previous command // to determine if this message was immediately preceded by "commandMoveToLevelWithOnOff" // if this command follows a "commandMoveToLevelWithOnOff", then it's actually button4's second message // and we can ignore it entirely const lastClk = globalStore.getValue(msg.endpoint, "last_clk"); const lastSeq = globalStore.getValue(msg.endpoint, "last_seq"); const seq = msg.meta.zclTransactionSequenceNumber; let clk = "colortemp"; (0, node_assert_1.default)("colortemp" in msg.data); payload.color_temp = msg.data.colortemp; payload.transition = msg.data.transtime / 10.0; payload.action_color_temp = msg.data.colortemp; payload.action_transition = msg.data.transtime / 10.0; // because the remote sends two commands for button4, we need to look at the previous command and // see if it was the recognized start command for button4 - if so, ignore this second command, // because it's not really button3, it's actually button4 if (lastClk === "memory") { payload.action = "recall"; payload.brightness = globalStore.getValue(msg.endpoint, "last_move_level"); payload.action_brightness = globalStore.getValue(msg.endpoint, "last_move_level"); // ensure the "last" message was really the message prior to this one // accounts for missed messages (gap >1) and for the remote's rollover from 127 to 0 if ((seq === 0 && lastSeq === 127) || seq - lastSeq === 1) { clk = null; } } else { // pressing the color temp button increments/decrements from 153-370K. // when it reaches the end (370) it will start decrementing by a step, // and vice versa. const direction = msg.data.colortemp > globalStore.getValue(msg.endpoint, "last_color_temp") ? "up" : "down"; const cmd = `${clk}_${direction}`; payload.action = cmd; globalStore.putValue(msg.endpoint, "last_color_temp", msg.data.colortemp); } if (clk != null) { globalStore.putValue(msg.endpoint, "last_seq", msg.meta.zclTransactionSequenceNumber); globalStore.putValue(msg.endpoint, "last_clk", clk); } } return payload; }, }, }; exports.definitions = [ { zigbeeModel: ["ZBT-DIMLight-GLS0800"], model: "ZBT-DIMLight-GLS0800", vendor: "Leedarson", description: "LED E27 warm white", extend: [m.light()], }, { zigbeeModel: ["ZBT-CCTLight-GLS0904"], model: "ZBT-CCTLight-GLS0904", vendor: "Leedarson", description: "LED E27 tunable white", extend: [m.light({ colorTemp: { range: [153, 370] } })], }, { zigbeeModel: ["ZBT-CCTLight-Candle0904"], model: "ZBT-CCTLight-Candle0904", vendor: "Leedarson", description: "LED E14 tunable white", extend: [m.light({ colorTemp: { range: [153, 370] } })], }, { zigbeeModel: ["LED_GU10_OWDT"], model: "ZM350STW1TCF", vendor: "Leedarson", description: "LED PAR16 50 GU10 tunable white", extend: [m.light({ colorTemp: { range: undefined, startup: false } })], }, { zigbeeModel: ["M350ST-W1R-01", "A470S-A7R-04"], model: "M350STW1", vendor: "Leedarson", description: "LED PAR16 50 GU10", extend: [m.light()], }, { zigbeeModel: ["LED_E27_ORD"], model: "A806S-Q1G", vendor: "Leedarson", description: "LED E27 color", extend: [m.light({ colorTemp: { range: undefined }, color: true })], }, { zigbeeModel: ["ZHA-DimmableLight"], model: "A806S-Q1R", vendor: "Leedarson", description: "LED E27 tunable white", extend: [m.light()], }, { zigbeeModel: ["LED_E27_OWDT"], model: "ZA806SQ1TCF", vendor: "Leedarson", description: "LED E27 tunable white", extend: [m.light({ colorTemp: { range: undefined } })], }, { zigbeeModel: ["ZBT-CCTSwitch-D0001"], model: "6ARCZABZH", vendor: "Leedarson", description: "4-Key Remote Controller", fromZigbee: [fz.command_on, fz.command_off, fzLocal.CCTSwitch_D0001_levelctrl, fzLocal.CCTSwitch_D0001_lighting, fz.battery], exposes: [ e.battery(), e.action([ "colortemp_up_release", "colortemp_down_release", "on", "off", "brightness_up", "brightness_down", "colortemp_up", "colortemp_down", "colortemp_up_hold", "colortemp_down_hold", ]), ], toZigbee: [], configure: async (device, coordinatorEndpoint) => { const endpoint = device.getEndpoint(1); await reporting.bind(endpoint, coordinatorEndpoint, ["genPowerCfg"]); await reporting.batteryPercentageRemaining(endpoint); }, }, { zigbeeModel: ["TWGU10Bulb02UK"], model: "6xy-M350ST-W1Z", vendor: "Leedarson", description: "PAR16 tunable white", extend: [m.light({ colorTemp: { range: undefined } })], }, { fingerprint: [{ modelID: "ZHA-PIRSensor", manufacturerName: "Leedarson" }], model: "5AA-SS-ZA-H0", vendor: "Leedarson", description: "Motion sensor", fromZigbee: [fz.occupancy, fz.ignore_occupancy_report], toZigbee: [], exposes: [e.occupancy()], extend: [m.illuminance()], }, { zigbeeModel: ["ZB-SMART-PIRTH-V1"], model: "7A-SS-ZABC-H0", vendor: "Leedarson", description: "4-in-1-Sensor", fromZigbee: [fz.battery, fz.ias_occupancy_alarm_1, fz.temperature, fz.humidity, fz.ignore_occupancy_report], toZigbee: [], exposes: [e.battery(), e.occupancy(), e.temperature(), e.humidity()], extend: [m.illuminance()], }, { zigbeeModel: ["ZB-MotionSensor-S0000"], model: "8A-SS-BA-H0", vendor: "Leedarson", description: "Motion Sensor", fromZigbee: [fz.battery, fz.ias_occupancy_alarm_1, fz.ignore_occupancy_report], toZigbee: [], exposes: [e.battery(), e.occupancy()], }, { zigbeeModel: ["LDHD2AZW"], model: "LDHD2AZW", vendor: "Leedarson", description: "Magnetic door & window contact sensor", fromZigbee: [fz.ias_contact_alarm_1, fz.temperature, fz.battery], toZigbee: [], meta: { battery: { voltageToPercentage: "3V_2100" } }, configure: async (device, coordinatorEndpoint) => { const endpoint = device.getEndpoint(1); await reporting.bind(endpoint, coordinatorEndpoint, ["msTemperatureMeasurement", "genPowerCfg"]); await reporting.temperature(endpoint); await reporting.batteryVoltage(endpoint); }, exposes: [e.contact(), e.battery_low(), e.tamper(), e.temperature(), e.battery()], }, ]; //# sourceMappingURL=leedarson.js.map