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yoctolib-esm

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Yoctopuce library for TypeScript/JavaScript, as an ECMAScript 2015 module

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/********************************************************************* * * $Id: svn_id $ * * Implements the high-level API for Humidity functions * * - - - - - - - - - License information: - - - - - - - - - * * Copyright (C) 2011 and beyond by Yoctopuce Sarl, Switzerland. * * Yoctopuce Sarl (hereafter Licensor) grants to you a perpetual * non-exclusive license to use, modify, copy and integrate this * file into your software for the sole purpose of interfacing * with Yoctopuce products. * * You may reproduce and distribute copies of this file in * source or object form, as long as the sole purpose of this * code is to interface with Yoctopuce products. You must retain * this notice in the distributed source file. * * You should refer to Yoctopuce General Terms and Conditions * for additional information regarding your rights and * obligations. * * THE SOFTWARE AND DOCUMENTATION ARE PROVIDED 'AS IS' WITHOUT * WARRANTY OF ANY KIND, EITHER EXPRESS OR IMPLIED, INCLUDING * WITHOUT LIMITATION, ANY WARRANTY OF MERCHANTABILITY, FITNESS * FOR A PARTICULAR PURPOSE, TITLE AND NON-INFRINGEMENT. IN NO * EVENT SHALL LICENSOR BE LIABLE FOR ANY INCIDENTAL, SPECIAL, * INDIRECT OR CONSEQUENTIAL DAMAGES, LOST PROFITS OR LOST DATA, * COST OF PROCUREMENT OF SUBSTITUTE GOODS, TECHNOLOGY OR * SERVICES, ANY CLAIMS BY THIRD PARTIES (INCLUDING BUT NOT * LIMITED TO ANY DEFENSE THEREOF), ANY CLAIMS FOR INDEMNITY OR * CONTRIBUTION, OR OTHER SIMILAR COSTS, WHETHER ASSERTED ON THE * BASIS OF CONTRACT, TORT (INCLUDING NEGLIGENCE), BREACH OF * WARRANTY, OR OTHERWISE. * *********************************************************************/ import { YAPI, YFunction, YSensor } from './yocto_api.js'; //--- (YHumidity class start) /** * YHumidity Class: humidity sensor control interface, available for instance in the Yocto-CO2-V2, the * Yocto-Meteo-V2 or the Yocto-VOC-V3 * * The YHumidity class allows you to read and configure Yoctopuce humidity sensors. * It inherits from YSensor class the core functions to read measures, * to register callback functions, and to access the autonomous datalogger. */ //--- (end of YHumidity class start) export class YHumidity extends YSensor { //--- (end of YHumidity attributes declaration) constructor(yapi, func) { //--- (YHumidity constructor) super(yapi, func); this._relHum = YHumidity.RELHUM_INVALID; this._absHum = YHumidity.ABSHUM_INVALID; this._valueCallbackHumidity = null; this._timedReportCallbackHumidity = null; // API symbols as object properties this.RELHUM_INVALID = YAPI.INVALID_DOUBLE; this.ABSHUM_INVALID = YAPI.INVALID_DOUBLE; this._className = 'Humidity'; //--- (end of YHumidity constructor) } //--- (YHumidity implementation) imm_parseAttr(name, val) { switch (name) { case 'relHum': this._relHum = Math.round(val / 65.536) / 1000.0; return 1; case 'absHum': this._absHum = Math.round(val / 65.536) / 1000.0; return 1; } return super.imm_parseAttr(name, val); } /** * Changes the primary unit for measuring humidity. That unit is a string. * If that strings starts with the letter 'g', the primary measured value is the absolute * humidity, in g/m3. Otherwise, the primary measured value will be the relative humidity * (RH), in per cents. * * Remember to call the saveToFlash() method of the module if the modification * must be kept. * * @param newval : a string corresponding to the primary unit for measuring humidity * * @return YAPI.SUCCESS if the call succeeds. * * On failure, throws an exception or returns a negative error code. */ async set_unit(newval) { let rest_val; rest_val = String(newval); return await this._setAttr('unit', rest_val); } /** * Returns the current relative humidity, in per cents. * * @return a floating point number corresponding to the current relative humidity, in per cents * * On failure, throws an exception or returns YHumidity.RELHUM_INVALID. */ async get_relHum() { let res; if (this._cacheExpiration <= this._yapi.GetTickCount()) { if (await this.load(this._yapi.defaultCacheValidity) != this._yapi.SUCCESS) { return YHumidity.RELHUM_INVALID; } } res = this._relHum; return res; } /** * Returns the current absolute humidity, in grams per cubic meter of air. * * @return a floating point number corresponding to the current absolute humidity, in grams per cubic meter of air * * On failure, throws an exception or returns YHumidity.ABSHUM_INVALID. */ async get_absHum() { let res; if (this._cacheExpiration <= this._yapi.GetTickCount()) { if (await this.load(this._yapi.defaultCacheValidity) != this._yapi.SUCCESS) { return YHumidity.ABSHUM_INVALID; } } res = this._absHum; return res; } /** * Retrieves a humidity sensor for a given identifier. * The identifier can be specified using several formats: * * - FunctionLogicalName * - ModuleSerialNumber.FunctionIdentifier * - ModuleSerialNumber.FunctionLogicalName * - ModuleLogicalName.FunctionIdentifier * - ModuleLogicalName.FunctionLogicalName * * * This function does not require that the humidity sensor is online at the time * it is invoked. The returned object is nevertheless valid. * Use the method YHumidity.isOnline() to test if the humidity sensor is * indeed online at a given time. In case of ambiguity when looking for * a humidity sensor by logical name, no error is notified: the first instance * found is returned. The search is performed first by hardware name, * then by logical name. * * If a call to this object's is_online() method returns FALSE although * you are certain that the matching device is plugged, make sure that you did * call registerHub() at application initialization time. * * @param func : a string that uniquely characterizes the humidity sensor, for instance * YCO2MK02.humidity. * * @return a YHumidity object allowing you to drive the humidity sensor. */ static FindHumidity(func) { let obj; obj = YFunction._FindFromCache('Humidity', func); if (obj == null) { obj = new YHumidity(YAPI, func); YFunction._AddToCache('Humidity', func, obj); } return obj; } /** * Retrieves a humidity sensor for a given identifier in a YAPI context. * The identifier can be specified using several formats: * * - FunctionLogicalName * - ModuleSerialNumber.FunctionIdentifier * - ModuleSerialNumber.FunctionLogicalName * - ModuleLogicalName.FunctionIdentifier * - ModuleLogicalName.FunctionLogicalName * * * This function does not require that the humidity sensor is online at the time * it is invoked. The returned object is nevertheless valid. * Use the method YHumidity.isOnline() to test if the humidity sensor is * indeed online at a given time. In case of ambiguity when looking for * a humidity sensor by logical name, no error is notified: the first instance * found is returned. The search is performed first by hardware name, * then by logical name. * * @param yctx : a YAPI context * @param func : a string that uniquely characterizes the humidity sensor, for instance * YCO2MK02.humidity. * * @return a YHumidity object allowing you to drive the humidity sensor. */ static FindHumidityInContext(yctx, func) { let obj; obj = YFunction._FindFromCacheInContext(yctx, 'Humidity', func); if (obj == null) { obj = new YHumidity(yctx, func); YFunction._AddToCache('Humidity', func, obj); } return obj; } /** * Registers the callback function that is invoked on every change of advertised value. * The callback is invoked only during the execution of ySleep or yHandleEvents. * This provides control over the time when the callback is triggered. For good responsiveness, remember to call * one of these two functions periodically. To unregister a callback, pass a null pointer as argument. * * @param callback : the callback function to call, or a null pointer. The callback function should take two * arguments: the function object of which the value has changed, and the character string describing * the new advertised value. * @noreturn */ async registerValueCallback(callback) { let val; if (callback != null) { await YFunction._UpdateValueCallbackList(this, true); } else { await YFunction._UpdateValueCallbackList(this, false); } this._valueCallbackHumidity = callback; // Immediately invoke value callback with current value if (callback != null && await this.isOnline()) { val = this._advertisedValue; if (!(val == '')) { await this._invokeValueCallback(val); } } return 0; } async _invokeValueCallback(value) { if (this._valueCallbackHumidity != null) { try { await this._valueCallbackHumidity(this, value); } catch (e) { this._yapi.imm_log('Exception in valueCallback:', e); } } else { await super._invokeValueCallback(value); } return 0; } /** * Registers the callback function that is invoked on every periodic timed notification. * The callback is invoked only during the execution of ySleep or yHandleEvents. * This provides control over the time when the callback is triggered. For good responsiveness, remember to call * one of these two functions periodically. To unregister a callback, pass a null pointer as argument. * * @param callback : the callback function to call, or a null pointer. The callback function should take two * arguments: the function object of which the value has changed, and an YMeasure object describing * the new advertised value. * @noreturn */ async registerTimedReportCallback(callback) { let sensor; sensor = this; if (callback != null) { await YFunction._UpdateTimedReportCallbackList(sensor, true); } else { await YFunction._UpdateTimedReportCallbackList(sensor, false); } this._timedReportCallbackHumidity = callback; return 0; } async _invokeTimedReportCallback(value) { if (this._timedReportCallbackHumidity != null) { try { await this._timedReportCallbackHumidity(this, value); } catch (e) { this._yapi.imm_log('Exception in timedReportCallback:', e); } } else { await super._invokeTimedReportCallback(value); } return 0; } /** * Continues the enumeration of humidity sensors started using yFirstHumidity(). * Caution: You can't make any assumption about the returned humidity sensors order. * If you want to find a specific a humidity sensor, use Humidity.findHumidity() * and a hardwareID or a logical name. * * @return a pointer to a YHumidity object, corresponding to * a humidity sensor currently online, or a null pointer * if there are no more humidity sensors to enumerate. */ nextHumidity() { let resolve = this._yapi.imm_resolveFunction(this._className, this._func); if (resolve.errorType != YAPI.SUCCESS) return null; let next_hwid = this._yapi.imm_getNextHardwareId(this._className, resolve.result); if (next_hwid == null) return null; return YHumidity.FindHumidityInContext(this._yapi, next_hwid); } /** * Starts the enumeration of humidity sensors currently accessible. * Use the method YHumidity.nextHumidity() to iterate on * next humidity sensors. * * @return a pointer to a YHumidity object, corresponding to * the first humidity sensor currently online, or a null pointer * if there are none. */ static FirstHumidity() { let next_hwid = YAPI.imm_getFirstHardwareId('Humidity'); if (next_hwid == null) return null; return YHumidity.FindHumidity(next_hwid); } /** * Starts the enumeration of humidity sensors currently accessible. * Use the method YHumidity.nextHumidity() to iterate on * next humidity sensors. * * @param yctx : a YAPI context. * * @return a pointer to a YHumidity object, corresponding to * the first humidity sensor currently online, or a null pointer * if there are none. */ static FirstHumidityInContext(yctx) { let next_hwid = yctx.imm_getFirstHardwareId('Humidity'); if (next_hwid == null) return null; return YHumidity.FindHumidityInContext(yctx, next_hwid); } } // API symbols as static members YHumidity.RELHUM_INVALID = YAPI.INVALID_DOUBLE; YHumidity.ABSHUM_INVALID = YAPI.INVALID_DOUBLE; //# sourceMappingURL=yocto_humidity.js.map