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"use strict"; /* * ANT+ profile: https://www.thisisant.com/developer/ant-plus/device-profiles/#526_tab * Spec sheet: https://www.thisisant.com/resources/heart-rate-monitor/ */ var __extends = (this && this.__extends) || (function () { var extendStatics = function (d, b) { extendStatics = Object.setPrototypeOf || ({ __proto__: [] } instanceof Array && function (d, b) { d.__proto__ = b; }) || function (d, b) { for (var p in b) if (b.hasOwnProperty(p)) d[p] = b[p]; }; return extendStatics(d, b); }; return function (d, b) { extendStatics(d, b); function __() { this.constructor = d; } d.prototype = b === null ? Object.create(b) : (__.prototype = b.prototype, new __()); }; })(); Object.defineProperty(exports, "__esModule", { value: true }); var ant_1 = require("./ant"); var HeartRateSensorState = /** @class */ (function () { function HeartRateSensorState(deviceId) { this.DeviceID = deviceId; } return HeartRateSensorState; }()); var HeartRateScannerState = /** @class */ (function (_super) { __extends(HeartRateScannerState, _super); function HeartRateScannerState() { return _super !== null && _super.apply(this, arguments) || this; } return HeartRateScannerState; }(HeartRateSensorState)); var PageState; (function (PageState) { PageState[PageState["INIT_PAGE"] = 0] = "INIT_PAGE"; PageState[PageState["STD_PAGE"] = 1] = "STD_PAGE"; PageState[PageState["EXT_PAGE"] = 2] = "EXT_PAGE"; })(PageState || (PageState = {})); var HeartRateSensor = /** @class */ (function (_super) { __extends(HeartRateSensor, _super); function HeartRateSensor() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.page = { oldPage: -1, pageState: PageState.INIT_PAGE, }; return _this; } HeartRateSensor.prototype.attach = function (channel, deviceID) { _super.prototype.attach.call(this, channel, 'receive', deviceID, HeartRateSensor.deviceType, 0, 255, 8070); this.state = new HeartRateSensorState(deviceID); }; HeartRateSensor.prototype.updateState = function (deviceId, data) { this.state.DeviceID = deviceId; updateState(this, this.state, this.page, data); }; HeartRateSensor.deviceType = 120; return HeartRateSensor; }(ant_1.AntPlusSensor)); exports.HeartRateSensor = HeartRateSensor; var HeartRateScanner = /** @class */ (function (_super) { __extends(HeartRateScanner, _super); function HeartRateScanner() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.states = {}; _this.pages = {}; return _this; } HeartRateScanner.prototype.deviceType = function () { return HeartRateSensor.deviceType; }; HeartRateScanner.prototype.createStateIfNew = function (deviceId) { if (!this.states[deviceId]) { this.states[deviceId] = new HeartRateScannerState(deviceId); } if (!this.pages[deviceId]) { this.pages[deviceId] = { oldPage: -1, pageState: PageState.INIT_PAGE }; } }; HeartRateScanner.prototype.updateRssiAndThreshold = function (deviceId, rssi, threshold) { this.states[deviceId].Rssi = rssi; this.states[deviceId].Threshold = threshold; }; HeartRateScanner.prototype.updateState = function (deviceId, data) { updateState(this, this.states[deviceId], this.pages[deviceId], data); }; return HeartRateScanner; }(ant_1.AntPlusScanner)); exports.HeartRateScanner = HeartRateScanner; var TOGGLE_MASK = 0x80; function updateState(sensor, state, page, data) { var pageNum = data.readUInt8(ant_1.Messages.BUFFER_INDEX_MSG_DATA); if (page.pageState === PageState.INIT_PAGE) { page.pageState = PageState.STD_PAGE; // change the state to STD_PAGE and allow the checking of old and new pages // decode with pages if the page byte or toggle bit has changed } else if ((pageNum !== page.oldPage) || (page.pageState === PageState.EXT_PAGE)) { page.pageState = PageState.EXT_PAGE; // set the state to use the extended page format switch (pageNum & ~TOGGLE_MASK) { //check the new pages and remove the toggle bit case 1: //decode the cumulative operating time state.OperatingTime = data.readUInt8(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 1); state.OperatingTime |= data.readUInt8(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 2) << 8; state.OperatingTime |= data.readUInt8(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 3) << 16; state.OperatingTime *= 2; break; case 2: //decode the Manufacturer ID state.ManId = data.readUInt8(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 1); //decode the 4 byte serial number state.SerialNumber = state.DeviceID; state.SerialNumber |= data.readUInt16LE(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 2) << 16; state.SerialNumber >>>= 0; break; case 3: //decode HW version, SW version, and model number state.HwVersion = data.readUInt8(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 1); state.SwVersion = data.readUInt8(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 2); state.ModelNum = data.readUInt8(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 3); break; case 4: //decode the previous heart beat measurement time state.PreviousBeat = data.readUInt16LE(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 2); break; case 5: state.IntervalAverage = data.readUInt8(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 1); state.IntervalMax = data.readUInt8(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 2); state.SessionAverage = data.readUInt8(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 3); break; case 6: state.SupportedFeatures = data.readUInt8(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 2); state.EnabledFeatures = data.readUInt8(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 3); break; case 7: { var batteryLevel = data.readUInt8(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 1); var batteryFrac = data.readUInt8(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 2); var batteryStatus = data.readUInt8(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 3); if (batteryLevel !== 0xFF) { state.BatteryLevel = batteryLevel; } state.BatteryVoltage = (batteryStatus & 0x0F) + (batteryFrac / 256); var batteryFlags = (batteryStatus & 0x70) >>> 4; switch (batteryFlags) { case 1: state.BatteryStatus = 'New'; break; case 2: state.BatteryStatus = 'Good'; break; case 3: state.BatteryStatus = 'Ok'; break; case 4: state.BatteryStatus = 'Low'; break; case 5: state.BatteryStatus = 'Critical'; break; default: state.BatteryVoltage = undefined; state.BatteryStatus = 'Invalid'; break; } break; } default: break; } } // decode the last four bytes of the HRM format, the first byte of this message is the channel number DecodeDefaultHRM(state, data.slice(ant_1.Messages.BUFFER_INDEX_MSG_DATA + 4)); page.oldPage = pageNum; sensor.emit('hbdata', state); sensor.emit('hbData', state); } function DecodeDefaultHRM(state, pucPayload) { // decode the measurement time data (two bytes) state.BeatTime = pucPayload.readUInt16LE(0); // decode the measurement count data state.BeatCount = pucPayload.readUInt8(2); // decode the measurement count data state.ComputedHeartRate = pucPayload.readUInt8(3); } //# sourceMappingURL=heart-rate-sensors.js.map