node-red-contrib-victron-ble
Version:
node-red node to parse Instant Readout advertisement data from Victron BLE devices
58 lines (57 loc) • 2.99 kB
JavaScript
;
var __decorate = (this && this.__decorate) || function (decorators, target, key, desc) {
var c = arguments.length, r = c < 3 ? target : desc === null ? desc = Object.getOwnPropertyDescriptor(target, key) : desc, d;
if (typeof Reflect === "object" && typeof Reflect.decorate === "function") r = Reflect.decorate(decorators, target, key, desc);
else for (var i = decorators.length - 1; i >= 0; i--) if (d = decorators[i]) r = (c < 3 ? d(r) : c > 3 ? d(target, key, r) : d(target, key)) || r;
return c > 3 && r && Object.defineProperty(target, key, r), r;
};
var __metadata = (this && this.__metadata) || function (k, v) {
if (typeof Reflect === "object" && typeof Reflect.metadata === "function") return Reflect.metadata(k, v);
};
Object.defineProperty(exports, "__esModule", { value: true });
exports.AcCharger = void 0;
const base_1 = require("./base");
class AcCharger extends base_1.Device {
chargeState;
chargerError;
outputVoltage1;
outputVoltage2;
outputVoltage3;
outputCurrent1;
outputCurrent2;
outputCurrent3;
temperature;
acCurrent;
parseDecrypted(decrypted) {
const reader = new base_1.BitReader(decrypted);
const charge_state = reader.readUnsignedInt(8);
const charger_error = reader.readUnsignedInt(8);
const output_voltage1 = reader.readUnsignedInt(13);
const output_current1 = reader.readUnsignedInt(11);
const output_voltage2 = reader.readUnsignedInt(13);
const output_current2 = reader.readUnsignedInt(11);
const output_voltage3 = reader.readUnsignedInt(13);
const output_current3 = reader.readUnsignedInt(11);
const temperature = reader.readUnsignedInt(7);
const ac_current = reader.readUnsignedInt(9);
this.chargeState = charge_state !== 0xFF ? charge_state : undefined;
this.chargerError = charger_error !== 0xFF ? charger_error : undefined;
this.outputVoltage1 = output_voltage1 !== 0x1FFF ? output_voltage1 / 100 : undefined;
this.outputVoltage2 = output_voltage2 !== 0x1FFF ? output_voltage2 / 100 : undefined;
this.outputVoltage3 = output_voltage3 !== 0x1FFF ? output_voltage3 / 100 : undefined;
this.outputCurrent1 = output_current1 !== 0x7FF ? output_current1 / 10 : undefined;
this.outputCurrent2 = output_current2 !== 0x7FF ? output_current2 / 10 : undefined;
this.outputCurrent3 = output_current3 !== 0x7FF ? output_current3 / 10 : undefined;
this.temperature = temperature !== 0x7F ? (temperature - 40) : undefined;
this.acCurrent = ac_current !== 0x1FF ? ac_current / 10 : undefined;
}
}
exports.AcCharger = AcCharger;
__decorate([
(0, base_1.EnumField)(base_1.OperationMode),
__metadata("design:type", Number)
], AcCharger.prototype, "chargeState", void 0);
__decorate([
(0, base_1.EnumField)(base_1.ChargerError),
__metadata("design:type", Number)
], AcCharger.prototype, "chargerError", void 0);