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@rudderstack/analytics-js

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function _arrayLikeToArray(r, a) { (null == a || a > r.length) && (a = r.length); for (var e = 0, n = Array(a); e < a; e++) n[e] = r[e]; return n; } function _arrayWithHoles(r) { if (Array.isArray(r)) return r; } function _arrayWithoutHoles(r) { if (Array.isArray(r)) return _arrayLikeToArray(r); } function _assertThisInitialized(e) { if (void 0 === e) throw new ReferenceError("this hasn't been initialised - super() hasn't been called"); return e; } function asyncGeneratorStep(n, t, e, r, o, a, c) { try { var i = n[a](c), u = i.value; } catch (n) { return void e(n); } i.done ? t(u) : Promise.resolve(u).then(r, o); } function _asyncToGenerator(n) { return function () { var t = this, e = arguments; return new Promise(function (r, o) { var a = n.apply(t, e); function _next(n) { asyncGeneratorStep(a, r, o, _next, _throw, "next", n); } function _throw(n) { asyncGeneratorStep(a, r, o, _next, _throw, "throw", n); } _next(void 0); }); }; } function _callSuper(t, o, e) { return o = _getPrototypeOf(o), _possibleConstructorReturn(t, _isNativeReflectConstruct() ? Reflect.construct(o, e || [], _getPrototypeOf(t).constructor) : o.apply(t, e)); } function _classCallCheck(a, n) { if (!(a instanceof n)) throw new TypeError("Cannot call a class as a function"); } function _construct(t, e, r) { if (_isNativeReflectConstruct()) return Reflect.construct.apply(null, arguments); var o = [null]; o.push.apply(o, e); var p = new (t.bind.apply(t, o))(); return p; } function _defineProperties(e, r) { for (var t = 0; t < r.length; t++) { var o = r[t]; o.enumerable = o.enumerable || false, o.configurable = true, "value" in o && (o.writable = true), Object.defineProperty(e, _toPropertyKey(o.key), o); } } function _createClass(e, r, t) { return r && _defineProperties(e.prototype, r), t && _defineProperties(e, t), Object.defineProperty(e, "prototype", { writable: false }), e; } function _createForOfIteratorHelper(r, e) { var t = "undefined" != typeof Symbol && r[Symbol.iterator] || r["@@iterator"]; if (!t) { if (Array.isArray(r) || (t = _unsupportedIterableToArray(r)) || e) { t && (r = t); var n = 0, F = function () {}; return { s: F, n: function () { return n >= r.length ? { done: true } : { done: false, value: r[n++] }; }, e: function (r) { throw r; }, f: F }; } throw new TypeError("Invalid attempt to iterate non-iterable instance.\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method."); } var o, a = true, u = false; return { s: function () { t = t.call(r); }, n: function () { var r = t.next(); return a = r.done, r; }, e: function (r) { u = true, o = r; }, f: function () { try { a || null == t.return || t.return(); } finally { if (u) throw o; } } }; } function _defineProperty(e, r, t) { return (r = _toPropertyKey(r)) in e ? Object.defineProperty(e, r, { value: t, enumerable: true, configurable: true, writable: true }) : e[r] = t, e; } function _get() { return _get = "undefined" != typeof Reflect && Reflect.get ? Reflect.get.bind() : function (e, t, r) { var p = _superPropBase(e, t); if (p) { var n = Object.getOwnPropertyDescriptor(p, t); return n.get ? n.get.call(arguments.length < 3 ? e : r) : n.value; } }, _get.apply(null, arguments); } function _getPrototypeOf(t) { return _getPrototypeOf = Object.setPrototypeOf ? Object.getPrototypeOf.bind() : function (t) { return t.__proto__ || Object.getPrototypeOf(t); }, _getPrototypeOf(t); } function _inherits(t, e) { if ("function" != typeof e && null !== e) throw new TypeError("Super expression must either be null or a function"); t.prototype = Object.create(e && e.prototype, { constructor: { value: t, writable: true, configurable: true } }), Object.defineProperty(t, "prototype", { writable: false }), e && _setPrototypeOf(t, e); } function _isNativeReflectConstruct() { try { var t = !Boolean.prototype.valueOf.call(Reflect.construct(Boolean, [], function () {})); } catch (t) {} return (_isNativeReflectConstruct = function () { return !!t; })(); } function _iterableToArray(r) { if ("undefined" != typeof Symbol && null != r[Symbol.iterator] || null != r["@@iterator"]) return Array.from(r); } function _iterableToArrayLimit(r, l) { var t = null == r ? null : "undefined" != typeof Symbol && r[Symbol.iterator] || r["@@iterator"]; if (null != t) { var e, n, i, u, a = [], f = true, o = false; try { if (i = (t = t.call(r)).next, 0 === l) ; else for (; !(f = (e = i.call(t)).done) && (a.push(e.value), a.length !== l); f = !0); } catch (r) { o = true, n = r; } finally { try { if (!f && null != t.return && (u = t.return(), Object(u) !== u)) return; } finally { if (o) throw n; } } return a; } } function _nonIterableRest() { throw new TypeError("Invalid attempt to destructure non-iterable instance.\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method."); } function _nonIterableSpread() { throw new TypeError("Invalid attempt to spread non-iterable instance.\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method."); } function ownKeys(e, r) { var t = Object.keys(e); if (Object.getOwnPropertySymbols) { var o = Object.getOwnPropertySymbols(e); r && (o = o.filter(function (r) { return Object.getOwnPropertyDescriptor(e, r).enumerable; })), t.push.apply(t, o); } return t; } function _objectSpread2(e) { for (var r = 1; r < arguments.length; r++) { var t = null != arguments[r] ? arguments[r] : {}; r % 2 ? ownKeys(Object(t), true).forEach(function (r) { _defineProperty(e, r, t[r]); }) : Object.getOwnPropertyDescriptors ? Object.defineProperties(e, Object.getOwnPropertyDescriptors(t)) : ownKeys(Object(t)).forEach(function (r) { Object.defineProperty(e, r, Object.getOwnPropertyDescriptor(t, r)); }); } return e; } function _possibleConstructorReturn(t, e) { if (e && ("object" == typeof e || "function" == typeof e)) return e; if (void 0 !== e) throw new TypeError("Derived constructors may only return object or undefined"); return _assertThisInitialized(t); } function _regeneratorRuntime() { _regeneratorRuntime = function () { return e; }; var t, e = {}, r = Object.prototype, n = r.hasOwnProperty, o = Object.defineProperty || function (t, e, r) { t[e] = r.value; }, i = "function" == typeof Symbol ? Symbol : {}, a = i.iterator || "@@iterator", c = i.asyncIterator || "@@asyncIterator", u = i.toStringTag || "@@toStringTag"; function define(t, e, r) { return Object.defineProperty(t, e, { value: r, enumerable: true, configurable: true, writable: true }), t[e]; } try { define({}, ""); } catch (t) { define = function (t, e, r) { return t[e] = r; }; } function wrap(t, e, r, n) { var i = e && e.prototype instanceof Generator ? e : Generator, a = Object.create(i.prototype), c = new Context(n || []); return o(a, "_invoke", { value: makeInvokeMethod(t, r, c) }), a; } function tryCatch(t, e, r) { try { return { type: "normal", arg: t.call(e, r) }; } catch (t) { return { type: "throw", arg: t }; } } e.wrap = wrap; var h = "suspendedStart", l = "suspendedYield", f = "executing", s = "completed", y = {}; function Generator() {} function GeneratorFunction() {} function GeneratorFunctionPrototype() {} var p = {}; define(p, a, function () { return this; }); var d = Object.getPrototypeOf, v = d && d(d(values([]))); v && v !== r && n.call(v, a) && (p = v); var g = GeneratorFunctionPrototype.prototype = Generator.prototype = Object.create(p); function defineIteratorMethods(t) { ["next", "throw", "return"].forEach(function (e) { define(t, e, function (t) { return this._invoke(e, t); }); }); } function AsyncIterator(t, e) { function invoke(r, o, i, a) { var c = tryCatch(t[r], t, o); if ("throw" !== c.type) { var u = c.arg, h = u.value; return h && "object" == typeof h && n.call(h, "__await") ? e.resolve(h.__await).then(function (t) { invoke("next", t, i, a); }, function (t) { invoke("throw", t, i, a); }) : e.resolve(h).then(function (t) { u.value = t, i(u); }, function (t) { return invoke("throw", t, i, a); }); } a(c.arg); } var r; o(this, "_invoke", { value: function (t, n) { function callInvokeWithMethodAndArg() { return new e(function (e, r) { invoke(t, n, e, r); }); } return r = r ? r.then(callInvokeWithMethodAndArg, callInvokeWithMethodAndArg) : callInvokeWithMethodAndArg(); } }); } function makeInvokeMethod(e, r, n) { var o = h; return function (i, a) { if (o === f) throw Error("Generator is already running"); if (o === s) { if ("throw" === i) throw a; return { value: t, done: true }; } for (n.method = i, n.arg = a;;) { var c = n.delegate; if (c) { var u = maybeInvokeDelegate(c, n); if (u) { if (u === y) continue; return u; } } if ("next" === n.method) n.sent = n._sent = n.arg;else if ("throw" === n.method) { if (o === h) throw o = s, n.arg; n.dispatchException(n.arg); } else "return" === n.method && n.abrupt("return", n.arg); o = f; var p = tryCatch(e, r, n); if ("normal" === p.type) { if (o = n.done ? s : l, p.arg === y) continue; return { value: p.arg, done: n.done }; } "throw" === p.type && (o = s, n.method = "throw", n.arg = p.arg); } }; } function maybeInvokeDelegate(e, r) { var n = r.method, o = e.iterator[n]; if (o === t) return r.delegate = null, "throw" === n && e.iterator.return && (r.method = "return", r.arg = t, maybeInvokeDelegate(e, r), "throw" === r.method) || "return" !== n && (r.method = "throw", r.arg = new TypeError("The iterator does not provide a '" + n + "' method")), y; var i = tryCatch(o, e.iterator, r.arg); if ("throw" === i.type) return r.method = "throw", r.arg = i.arg, r.delegate = null, y; var a = i.arg; return a ? a.done ? (r[e.resultName] = a.value, r.next = e.nextLoc, "return" !== r.method && (r.method = "next", r.arg = t), r.delegate = null, y) : a : (r.method = "throw", r.arg = new TypeError("iterator result is not an object"), r.delegate = null, y); } function pushTryEntry(t) { var e = { tryLoc: t[0] }; 1 in t && (e.catchLoc = t[1]), 2 in t && (e.finallyLoc = t[2], e.afterLoc = t[3]), this.tryEntries.push(e); } function resetTryEntry(t) { var e = t.completion || {}; e.type = "normal", delete e.arg, t.completion = e; } function Context(t) { this.tryEntries = [{ tryLoc: "root" }], t.forEach(pushTryEntry, this), this.reset(true); } function values(e) { if (e || "" === e) { var r = e[a]; if (r) return r.call(e); if ("function" == typeof e.next) return e; if (!isNaN(e.length)) { var o = -1, i = function next() { for (; ++o < e.length;) if (n.call(e, o)) return next.value = e[o], next.done = false, next; return next.value = t, next.done = true, next; }; return i.next = i; } } throw new TypeError(typeof e + " is not iterable"); } return GeneratorFunction.prototype = GeneratorFunctionPrototype, o(g, "constructor", { value: GeneratorFunctionPrototype, configurable: true }), o(GeneratorFunctionPrototype, "constructor", { value: GeneratorFunction, configurable: true }), GeneratorFunction.displayName = define(GeneratorFunctionPrototype, u, "GeneratorFunction"), e.isGeneratorFunction = function (t) { var e = "function" == typeof t && t.constructor; return !!e && (e === GeneratorFunction || "GeneratorFunction" === (e.displayName || e.name)); }, e.mark = function (t) { return Object.setPrototypeOf ? Object.setPrototypeOf(t, GeneratorFunctionPrototype) : (t.__proto__ = GeneratorFunctionPrototype, define(t, u, "GeneratorFunction")), t.prototype = Object.create(g), t; }, e.awrap = function (t) { return { __await: t }; }, defineIteratorMethods(AsyncIterator.prototype), define(AsyncIterator.prototype, c, function () { return this; }), e.AsyncIterator = AsyncIterator, e.async = function (t, r, n, o, i) { void 0 === i && (i = Promise); var a = new AsyncIterator(wrap(t, r, n, o), i); return e.isGeneratorFunction(r) ? a : a.next().then(function (t) { return t.done ? t.value : a.next(); }); }, defineIteratorMethods(g), define(g, u, "Generator"), define(g, a, function () { return this; }), define(g, "toString", function () { return "[object Generator]"; }), e.keys = function (t) { var e = Object(t), r = []; for (var n in e) r.push(n); return r.reverse(), function next() { for (; r.length;) { var t = r.pop(); if (t in e) return next.value = t, next.done = false, next; } return next.done = true, next; }; }, e.values = values, Context.prototype = { constructor: Context, reset: function (e) { if (this.prev = 0, this.next = 0, this.sent = this._sent = t, this.done = false, this.delegate = null, this.method = "next", this.arg = t, this.tryEntries.forEach(resetTryEntry), !e) for (var r in this) "t" === r.charAt(0) && n.call(this, r) && !isNaN(+r.slice(1)) && (this[r] = t); }, stop: function () { this.done = true; var t = this.tryEntries[0].completion; if ("throw" === t.type) throw t.arg; return this.rval; }, dispatchException: function (e) { if (this.done) throw e; var r = this; function handle(n, o) { return a.type = "throw", a.arg = e, r.next = n, o && (r.method = "next", r.arg = t), !!o; } for (var o = this.tryEntries.length - 1; o >= 0; --o) { var i = this.tryEntries[o], a = i.completion; if ("root" === i.tryLoc) return handle("end"); if (i.tryLoc <= this.prev) { var c = n.call(i, "catchLoc"), u = n.call(i, "finallyLoc"); if (c && u) { if (this.prev < i.catchLoc) return handle(i.catchLoc, true); if (this.prev < i.finallyLoc) return handle(i.finallyLoc); } else if (c) { if (this.prev < i.catchLoc) return handle(i.catchLoc, true); } else { if (!u) throw Error("try statement without catch or finally"); if (this.prev < i.finallyLoc) return handle(i.finallyLoc); } } } }, abrupt: function (t, e) { for (var r = this.tryEntries.length - 1; r >= 0; --r) { var o = this.tryEntries[r]; if (o.tryLoc <= this.prev && n.call(o, "finallyLoc") && this.prev < o.finallyLoc) { var i = o; break; } } i && ("break" === t || "continue" === t) && i.tryLoc <= e && e <= i.finallyLoc && (i = null); var a = i ? i.completion : {}; return a.type = t, a.arg = e, i ? (this.method = "next", this.next = i.finallyLoc, y) : this.complete(a); }, complete: function (t, e) { if ("throw" === t.type) throw t.arg; return "break" === t.type || "continue" === t.type ? this.next = t.arg : "return" === t.type ? (this.rval = this.arg = t.arg, this.method = "return", this.next = "end") : "normal" === t.type && e && (this.next = e), y; }, finish: function (t) { for (var e = this.tryEntries.length - 1; e >= 0; --e) { var r = this.tryEntries[e]; if (r.finallyLoc === t) return this.complete(r.completion, r.afterLoc), resetTryEntry(r), y; } }, catch: function (t) { for (var e = this.tryEntries.length - 1; e >= 0; --e) { var r = this.tryEntries[e]; if (r.tryLoc === t) { var n = r.completion; if ("throw" === n.type) { var o = n.arg; resetTryEntry(r); } return o; } } throw Error("illegal catch attempt"); }, delegateYield: function (e, r, n) { return this.delegate = { iterator: values(e), resultName: r, nextLoc: n }, "next" === this.method && (this.arg = t), y; } }, e; } function _setPrototypeOf(t, e) { return _setPrototypeOf = Object.setPrototypeOf ? Object.setPrototypeOf.bind() : function (t, e) { return t.__proto__ = e, t; }, _setPrototypeOf(t, e); } function _slicedToArray(r, e) { return _arrayWithHoles(r) || _iterableToArrayLimit(r, e) || _unsupportedIterableToArray(r, e) || _nonIterableRest(); } function _superPropBase(t, o) { for (; !{}.hasOwnProperty.call(t, o) && null !== (t = _getPrototypeOf(t));); return t; } function _superPropGet(t, o, e, r) { var p = _get(_getPrototypeOf(t.prototype ), o, e); return 2 & r && "function" == typeof p ? function (t) { return p.apply(e, t); } : p; } function _toConsumableArray(r) { return _arrayWithoutHoles(r) || _iterableToArray(r) || _unsupportedIterableToArray(r) || _nonIterableSpread(); } function _toPrimitive(t, r) { if ("object" != typeof t || !t) return t; var e = t[Symbol.toPrimitive]; if (void 0 !== e) { var i = e.call(t, r); if ("object" != typeof i) return i; throw new TypeError("@@toPrimitive must return a primitive value."); } return (String )(t); } function _toPropertyKey(t) { var i = _toPrimitive(t, "string"); return "symbol" == typeof i ? i : i + ""; } function _typeof(o) { "@babel/helpers - typeof"; return _typeof = "function" == typeof Symbol && "symbol" == typeof Symbol.iterator ? function (o) { return typeof o; } : function (o) { return o && "function" == typeof Symbol && o.constructor === Symbol && o !== Symbol.prototype ? "symbol" : typeof o; }, _typeof(o); } function _unsupportedIterableToArray(r, a) { if (r) { if ("string" == typeof r) return _arrayLikeToArray(r, a); var t = {}.toString.call(r).slice(8, -1); return "Object" === t && r.constructor && (t = r.constructor.name), "Map" === t || "Set" === t ? Array.from(r) : "Arguments" === t || /^(?:Ui|I)nt(?:8|16|32)(?:Clamped)?Array$/.test(t) ? _arrayLikeToArray(r, a) : void 0; } } function _isPlaceholder(a){return a!=null&&_typeof(a)==='object'&&a['@@functional/placeholder']===true;} /** * Optimized internal one-arity curry function. * * @private * @category Function * @param {Function} fn The function to curry. * @return {Function} The curried function. */function _curry1(fn){return function f1(a){if(arguments.length===0||_isPlaceholder(a)){return f1;}else {return fn.apply(this,arguments);}};} /** * Optimized internal two-arity curry function. * * @private * @category Function * @param {Function} fn The function to curry. * @return {Function} The curried function. */function _curry2(fn){return function f2(a,b){switch(arguments.length){case 0:return f2;case 1:return _isPlaceholder(a)?f2:_curry1(function(_b){return fn(a,_b);});default:return _isPlaceholder(a)&&_isPlaceholder(b)?f2:_isPlaceholder(a)?_curry1(function(_a){return fn(_a,b);}):_isPlaceholder(b)?_curry1(function(_b){return fn(a,_b);}):fn(a,b);}};} /** * Optimized internal three-arity curry function. * * @private * @category Function * @param {Function} fn The function to curry. * @return {Function} The curried function. */function _curry3(fn){return function f3(a,b,c){switch(arguments.length){case 0:return f3;case 1:return _isPlaceholder(a)?f3:_curry2(function(_b,_c){return fn(a,_b,_c);});case 2:return _isPlaceholder(a)&&_isPlaceholder(b)?f3:_isPlaceholder(a)?_curry2(function(_a,_c){return fn(_a,b,_c);}):_isPlaceholder(b)?_curry2(function(_b,_c){return fn(a,_b,_c);}):_curry1(function(_c){return fn(a,b,_c);});default:return _isPlaceholder(a)&&_isPlaceholder(b)&&_isPlaceholder(c)?f3:_isPlaceholder(a)&&_isPlaceholder(b)?_curry2(function(_a,_b){return fn(_a,_b,c);}):_isPlaceholder(a)&&_isPlaceholder(c)?_curry2(function(_a,_c){return fn(_a,b,_c);}):_isPlaceholder(b)&&_isPlaceholder(c)?_curry2(function(_b,_c){return fn(a,_b,_c);}):_isPlaceholder(a)?_curry1(function(_a){return fn(_a,b,c);}):_isPlaceholder(b)?_curry1(function(_b){return fn(a,_b,c);}):_isPlaceholder(c)?_curry1(function(_c){return fn(a,b,_c);}):fn(a,b,c);}};} function _has(prop,obj){return Object.prototype.hasOwnProperty.call(obj,prop);} /** * Gives a single-word string description of the (native) type of a value, * returning such answers as 'Object', 'Number', 'Array', or 'Null'. Does not * attempt to distinguish user Object types any further, reporting them all as * 'Object'. * * @func * @memberOf R * @since v0.8.0 * @category Type * @sig * -> String * @param {*} val The value to test * @return {String} * @example * * R.type({}); //=> "Object" * R.type(1); //=> "Number" * R.type(false); //=> "Boolean" * R.type('s'); //=> "String" * R.type(null); //=> "Null" * R.type([]); //=> "Array" * R.type(/[A-z]/); //=> "RegExp" * R.type(() => {}); //=> "Function" * R.type(async () => {}); //=> "AsyncFunction" * R.type(undefined); //=> "Undefined" * R.type(BigInt(123)); //=> "BigInt" */var type=/*#__PURE__*/_curry1(function type(val){return val===null?'Null':val===undefined?'Undefined':Object.prototype.toString.call(val).slice(8,-1);}); function _isObject(x){return Object.prototype.toString.call(x)==='[object Object]';} /** * Determine if the passed argument is an integer. * * @private * @param {*} n * @category Type * @return {Boolean} */var _isInteger = Number.isInteger||function _isInteger(n){return n<<0===n;}; function _isString(x){return Object.prototype.toString.call(x)==='[object String]';} function _nth(offset,list){var idx=offset<0?list.length+offset:offset;return _isString(list)?list.charAt(idx):list[idx];} function _cloneRegExp(pattern){return new RegExp(pattern.source,pattern.flags?pattern.flags:(pattern.global?'g':'')+(pattern.ignoreCase?'i':'')+(pattern.multiline?'m':'')+(pattern.sticky?'y':'')+(pattern.unicode?'u':'')+(pattern.dotAll?'s':''));} /** * Copies an object. * * @private * @param {*} value The value to be copied * @param {Boolean} deep Whether or not to perform deep cloning. * @return {*} The copied value. */function _clone(value,deep,map){map||(map=new _ObjectMap());// this avoids the slower switch with a quick if decision removing some milliseconds in each run. if(_isPrimitive(value)){return value;}var copy=function copy(copiedValue){// Check for circular and same references on the object graph and return its corresponding clone. var cachedCopy=map.get(value);if(cachedCopy){return cachedCopy;}map.set(value,copiedValue);for(var key in value){if(Object.prototype.hasOwnProperty.call(value,key)){copiedValue[key]=_clone(value[key],true,map);}}return copiedValue;};switch(type(value)){case 'Object':return copy(Object.create(Object.getPrototypeOf(value)));case 'Array':return copy(Array(value.length));case 'Date':return new Date(value.valueOf());case 'RegExp':return _cloneRegExp(value);case 'Int8Array':case 'Uint8Array':case 'Uint8ClampedArray':case 'Int16Array':case 'Uint16Array':case 'Int32Array':case 'Uint32Array':case 'Float32Array':case 'Float64Array':case 'BigInt64Array':case 'BigUint64Array':return value.slice();default:return value;}}function _isPrimitive(param){var type=_typeof(param);return param==null||type!='object'&&type!='function';}var _ObjectMap=/*#__PURE__*/function(){function _ObjectMap(){this.map={};this.length=0;}_ObjectMap.prototype.set=function(key,value){var hashedKey=this.hash(key);var bucket=this.map[hashedKey];if(!bucket){this.map[hashedKey]=bucket=[];}bucket.push([key,value]);this.length+=1;};_ObjectMap.prototype.hash=function(key){var hashedKey=[];for(var value in key){hashedKey.push(Object.prototype.toString.call(key[value]));}return hashedKey.join();};_ObjectMap.prototype.get=function(key){/** * depending on the number of objects to be cloned is faster to just iterate over the items in the map just because the hash function is so costly, * on my tests this number is 180, anything above that using the hash function is faster. */if(this.length<=180){for(var p in this.map){var bucket=this.map[p];for(var i=0;i<bucket.length;i+=1){var element=bucket[i];if(element[0]===key){return element[1];}}}return;}var hashedKey=this.hash(key);var bucket=this.map[hashedKey];if(!bucket){return;}for(var i=0;i<bucket.length;i+=1){var element=bucket[i];if(element[0]===key){return element[1];}}};return _ObjectMap;}(); /** * Creates a deep copy of the source that can be used in place of the source * object without retaining any references to it. * The source object may contain (nested) `Array`s and `Object`s, * `Number`s, `String`s, `Boolean`s and `Date`s. * `Function`s are assigned by reference rather than copied. * * Dispatches to a `clone` method if present. * * Note that if the source object has multiple nodes that share a reference, * the returned object will have the same structure, but the references will * be pointed to the location within the cloned value. * * @func * @memberOf R * @since v0.1.0 * @category Object * @sig {*} -> {*} * @param {*} value The object or array to clone * @return {*} A deeply cloned copy of `val` * @example * * const objects = [{}, {}, {}]; * const objectsClone = R.clone(objects); * objects === objectsClone; //=> false * objects[0] === objectsClone[0]; //=> false */var clone=/*#__PURE__*/_curry1(function clone(value){return value!=null&&typeof value.clone==='function'?value.clone():_clone(value);}); function _path(pathAr,obj){var val=obj;for(var i=0;i<pathAr.length;i+=1){if(val==null){return undefined;}var p=pathAr[i];if(_isInteger(p)){val=_nth(p,val);}else {val=val[p];}}return val;} /** * Creates a new object with the own properties of the two provided objects. If * a key exists in both objects, the provided function is applied to the key * and the values associated with the key in each object, with the result being * used as the value associated with the key in the returned object. * * @func * @memberOf R * @since v0.19.0 * @category Object * @sig ((String, a, a) -> a) -> {a} -> {a} -> {a} * @param {Function} fn * @param {Object} l * @param {Object} r * @return {Object} * @see R.mergeDeepWithKey, R.merge, R.mergeWith * @example * * let concatValues = (k, l, r) => k == 'values' ? R.concat(l, r) : r * R.mergeWithKey(concatValues, * { a: true, thing: 'foo', values: [10, 20] }, * { b: true, thing: 'bar', values: [15, 35] }); * //=> { a: true, b: true, thing: 'bar', values: [10, 20, 15, 35] } * @symb R.mergeWithKey(f, { x: 1, y: 2 }, { y: 5, z: 3 }) = { x: 1, y: f('y', 2, 5), z: 3 } */var mergeWithKey=/*#__PURE__*/_curry3(function mergeWithKey(fn,l,r){var result={};var k;l=l||{};r=r||{};for(k in l){if(_has(k,l)){result[k]=_has(k,r)?fn(k,l[k],r[k]):l[k];}}for(k in r){if(_has(k,r)&&!_has(k,result)){result[k]=r[k];}}return result;}); /** * Creates a new object with the own properties of the two provided objects. * If a key exists in both objects: * - and both associated values are also objects then the values will be * recursively merged. * - otherwise the provided function is applied to the key and associated values * using the resulting value as the new value associated with the key. * If a key only exists in one object, the value will be associated with the key * of the resulting object. * * @func * @memberOf R * @since v0.24.0 * @category Object * @sig ((String, a, a) -> a) -> {a} -> {a} -> {a} * @param {Function} fn * @param {Object} lObj * @param {Object} rObj * @return {Object} * @see R.mergeWithKey, R.mergeDeepWith * @example * * let concatValues = (k, l, r) => k == 'values' ? R.concat(l, r) : r * R.mergeDeepWithKey(concatValues, * { a: true, c: { thing: 'foo', values: [10, 20] }}, * { b: true, c: { thing: 'bar', values: [15, 35] }}); * //=> { a: true, b: true, c: { thing: 'bar', values: [10, 20, 15, 35] }} */var mergeDeepWithKey=/*#__PURE__*/_curry3(function mergeDeepWithKey(fn,lObj,rObj){return mergeWithKey(function(k,lVal,rVal){if(_isObject(lVal)&&_isObject(rVal)){return mergeDeepWithKey(fn,lVal,rVal);}else {return fn(k,lVal,rVal);}},lObj,rObj);}); /** * Creates a new object with the own properties of the two provided objects. * If a key exists in both objects: * - and both associated values are also objects then the values will be * recursively merged. * - otherwise the provided function is applied to associated values using the * resulting value as the new value associated with the key. * If a key only exists in one object, the value will be associated with the key * of the resulting object. * * @func * @memberOf R * @since v0.24.0 * @category Object * @sig ((a, a) -> a) -> {a} -> {a} -> {a} * @param {Function} fn * @param {Object} lObj * @param {Object} rObj * @return {Object} * @see R.mergeWith, R.mergeDeepWithKey * @example * * R.mergeDeepWith(R.concat, * { a: true, c: { values: [10, 20] }}, * { b: true, c: { values: [15, 35] }}); * //=> { a: true, b: true, c: { values: [10, 20, 15, 35] }} */var mergeDeepWith=/*#__PURE__*/_curry3(function mergeDeepWith(fn,lObj,rObj){return mergeDeepWithKey(function(k,lVal,rVal){return fn(lVal,rVal);},lObj,rObj);}); /** * Retrieves the value at a given path. The nodes of the path can be arbitrary strings or non-negative integers. * For anything else, the value is unspecified. Integer paths are meant to index arrays, strings are meant for objects. * * @func * @memberOf R * @since v0.2.0 * @category Object * @typedefn Idx = String | Int | Symbol * @sig [Idx] -> {a} -> a | Undefined * @sig Idx = String | NonNegativeInt * @param {Array} path The path to use. * @param {Object} obj The object or array to retrieve the nested property from. * @return {*} The data at `path`. * @see R.prop, R.nth, R.assocPath, R.dissocPath * @example * * R.path(['a', 'b'], {a: {b: 2}}); //=> 2 * R.path(['a', 'b'], {c: {b: 2}}); //=> undefined * R.path(['a', 'b', 0], {a: {b: [1, 2, 3]}}); //=> 1 * R.path(['a', 'b', -2], {a: {b: [1, 2, 3]}}); //=> 2 * R.path([2], {'2': 2}); //=> 2 * R.path([-2], {'-2': 'a'}); //=> undefined */var path=/*#__PURE__*/_curry2(_path); /** * Returns a partial copy of an object containing only the keys that satisfy * the supplied predicate. * * @func * @memberOf R * @since v0.8.0 * @category Object * @sig ((v, k) -> Boolean) -> {k: v} -> {k: v} * @param {Function} pred A predicate to determine whether or not a key * should be included on the output object. * @param {Object} obj The object to copy from * @return {Object} A new object with only properties that satisfy `pred` * on it. * @see R.pick, R.filter * @example * * const isUpperCase = (val, key) => key.toUpperCase() === key; * R.pickBy(isUpperCase, {a: 1, b: 2, A: 3, B: 4}); //=> {A: 3, B: 4} */var pickBy=/*#__PURE__*/_curry2(function pickBy(test,obj){var result={};for(var prop in obj){if(test(obj[prop],prop,obj)){result[prop]=obj[prop];}}return result;}); /** * A function to check given value is a function * @param value input value * @returns boolean */// eslint-disable-next-line @typescript-eslint/ban-types var isFunction=function isFunction(value){return typeof value==='function'&&Boolean(value.constructor&&value.call&&value.apply);};/** * A function to check given value is a string * @param value input value * @returns boolean */var isString=function isString(value){return typeof value==='string';};/** * A function to check given value is null or not * @param value input value * @returns boolean */var isNull=function isNull(value){return value===null;};/** * A function to check given value is undefined * @param value input value * @returns boolean */var isUndefined=function isUndefined(value){return typeof value==='undefined';};/** * A function to check given value is null or undefined * @param value input value * @returns boolean */var isNullOrUndefined=function isNullOrUndefined(value){return isNull(value)||isUndefined(value);};/** * Checks if the input is a BigInt * @param value input value * @returns True if the input is a BigInt */var isBigInt=function isBigInt(value){return typeof value==='bigint';};/** * A function to check given value is defined * @param value input value * @returns boolean */var isDefined=function isDefined(value){return !isUndefined(value);};/** * A function to check given value is defined and not null * @param value input value * @returns boolean */var isDefinedAndNotNull=function isDefinedAndNotNull(value){return !isNullOrUndefined(value);};/** * A function to check given value is defined and not null * @param value input value * @returns boolean */var isDefinedNotNullAndNotEmptyString=function isDefinedNotNullAndNotEmptyString(value){return isDefinedAndNotNull(value)&&value!=='';};/** * Determines if the input is of type error * @param value input value * @returns true if the input is of type error else false */var isTypeOfError=function isTypeOfError(value){switch(Object.prototype.toString.call(value)){case '[object Error]':case '[object Exception]':case '[object DOMException]':return true;default:return value instanceof Error;}}; var getValueByPath=function getValueByPath(obj,keyPath){var pathParts=keyPath.split('.');return path(pathParts,obj);};var hasValueByPath=function hasValueByPath(obj,path){return Boolean(getValueByPath(obj,path));};var isObject=function isObject(value){return _typeof(value)==='object';};/** * Checks if the input is an object literal or built-in object type and not null * @param value Input value * @returns true if the input is an object and not null */var isObjectAndNotNull=function isObjectAndNotNull(value){return !isNull(value)&&isObject(value)&&!Array.isArray(value);};/** * Checks if the input is an object literal and not null * @param value Input value * @returns true if the input is an object and not null */var isObjectLiteralAndNotNull=function isObjectLiteralAndNotNull(value){return !isNull(value)&&Object.prototype.toString.call(value)==='[object Object]';};/** * Merges two arrays deeply, right-to-left * In the case of conflicts, the right array's values replace the left array's values in the * same index position * @param leftValue - The left array * @param rightValue - The right array * @returns The merged array */var mergeDeepRightObjectArrays=function mergeDeepRightObjectArrays(leftValue,rightValue){if(!Array.isArray(leftValue)||!Array.isArray(rightValue)){return clone(rightValue);}var mergedArray=clone(leftValue);rightValue.forEach(function(value,index){mergedArray[index]=Array.isArray(value)||isObjectAndNotNull(value)?// eslint-disable-next-line @typescript-eslint/no-use-before-define mergeDeepRight(mergedArray[index],value):value;});return mergedArray;};/** * Merges two objects deeply, right-to-left. * In the case of conflicts, the right object's values take precedence. * For arrays, the right array's values replace the left array's values in the * same index position keeping the remaining left array's values in the resultant array. * @param leftObject - The left object * @param rightObject - The right object * @returns The merged object */var mergeDeepRight=function mergeDeepRight(leftObject,rightObject){return mergeDeepWith(mergeDeepRightObjectArrays,leftObject,rightObject);};/** Checks if the input is a non-empty object literal type and not undefined or null * @param value input any * @returns boolean */var isNonEmptyObject=function isNonEmptyObject(value){return isObjectLiteralAndNotNull(value)&&Object.keys(value).length>0;};/** * A utility to recursively remove undefined values from an object * @param obj input object * @returns a new object */var _removeUndefinedValues=function removeUndefinedValues(obj){var result=pickBy(isDefined,obj);Object.keys(result).forEach(function(key){var value=result[key];if(isObjectLiteralAndNotNull(value)){result[key]=_removeUndefinedValues(value);}});return result;};/** * A utility to recursively remove undefined and null values from an object * @param obj input object * @returns a new object */var _removeUndefinedAndNullValues=function removeUndefinedAndNullValues(obj){var result=pickBy(isDefinedAndNotNull,obj);Object.keys(result).forEach(function(key){var value=result[key];if(isObjectLiteralAndNotNull(value)){result[key]=_removeUndefinedAndNullValues(value);}});return result;};/** * Normalizes an object by removing undefined and null values. * @param val - The value to normalize * @returns The normalized object, or undefined if input is not a non-empty object * @example * getNormalizedObjectValue({ a: 1, b: null, c: undefined }) // returns { a: 1 } * getNormalizedObjectValue({}) // returns undefined * getNormalizedObjectValue(null) // returns undefined */var getNormalizedObjectValue=function getNormalizedObjectValue(val){if(!isNonEmptyObject(val)){return undefined;}return _removeUndefinedAndNullValues(val);};/** * Normalizes a value to a boolean, with support for a default value * @param val Input value * @param defVal Default value * @returns Returns the normalized boolean value * @example * getNormalizedBooleanValue(true, false) // returns true */var getNormalizedBooleanValue=function getNormalizedBooleanValue(val,defVal){if(isDefined(defVal)){return isDefined(val)?val===true:defVal;}return val===true;}; var trim=function trim(value){return value.replace(/^\s+|\s+$/gm,'');};var removeLeadingPeriod=function removeLeadingPeriod(value){return value.replace(/^\.+/,'');};/** * A function to convert values to string * @param val input value * @returns stringified value */var tryStringify=function tryStringify(val){var retVal=val;if(!isString(val)&&!isNullOrUndefined(val)){try{retVal=JSON.stringify(val);}catch(e){retVal=null;}}return retVal;};// The following text encoding and decoding is done before base64 encoding to prevent // https://developer.mozilla.org/en-US/docs/Glossary/Base64#the_unicode_problem /** * Converts a base64 encoded string to bytes array * @param base64Str base64 encoded string * @returns bytes array */var base64ToBytes=function base64ToBytes(base64Str){var binString=globalThis.atob(base64Str);var bytes=binString.split('').map(function(char){return char.charCodeAt(0);});return new Uint8Array(bytes);};/** * Converts a bytes array to base64 encoded string * @param bytes bytes array to be converted to base64 * @returns base64 encoded string */var bytesToBase64=function bytesToBase64(bytes){var binString=Array.from(bytes,function(x){return String.fromCodePoint(x);}).join('');return globalThis.btoa(binString);};/** * Encodes a string to base64 even with unicode characters * @param value input string * @returns base64 encoded string */var toBase64=function toBase64(value){return bytesToBase64(new TextEncoder().encode(value));};/** * Decodes a base64 encoded string * @param value base64 encoded string * @returns decoded string */var fromBase64=function fromBase64(value){return new TextDecoder().decode(base64ToBytes(value));}; // if yes make them null instead of omitting in overloaded cases /* * Normalise the overloaded arguments of the page call facade */var pageArgumentsToCallOptions=function pageArgumentsToCallOptions(category,name,properties,options,callback){var payload={category:category,name:name,properties:properties,options:options,callback:undefined};if(isFunction(callback)){payload.callback=callback;}if(isFunction(options)){payload.category=category;payload.name=name;payload.properties=properties;payload.options=undefined;payload.callback=options;}if(isFunction(properties)){payload.category=category;payload.name=name;payload.properties=undefined;payload.options=undefined;payload.callback=properties;}if(isFunction(name)){payload.category=category;payload.name=undefined;payload.properties=undefined;payload.options=undefined;payload.callback=name;}if(isFunction(category)){payload.category=undefined;payload.name=undefined;payload.properties=undefined;payload.options=undefined;payload.callback=category;}if(isObjectLiteralAndNotNull(category)){payload.name=undefined;payload.category=undefined;payload.properties=category;if(!isFunction(name)){payload.options=name;}else {payload.options=undefined;}}else if(isObjectLiteralAndNotNull(name)){payload.name=undefined;payload.properties=name;if(!isFunction(properties)){payload.options=properties;}else {payload.options=undefined;}}// if the category argument alone is provided b/w category and name, // use it as name and set category to undefined if(isString(category)&&!isString(name)){payload.category=undefined;payload.name=category;}// Rest of the code is just to clean up undefined values // and set some proper defaults // Also, to clone the incoming object type arguments if(!isDefined(payload.category)){payload.category=undefined;}if(!isDefined(payload.name)){payload.name=undefined;}payload.properties=payload.properties?clone(payload.properties):{};if(isDefined(payload.options)){payload.options=clone(payload.options);}else {payload.options=undefined;}var nameForProperties=isString(payload.name)?payload.name:payload.properties.name;var categoryForProperties=isString(payload.category)?payload.category:payload.properties.category;// add name and category to properties payload.properties=mergeDeepRight(isObjectLiteralAndNotNull(payload.properties)?payload.properties:{},_objectSpread2(_objectSpread2({},nameForProperties&&{name:nameForProperties}),categoryForProperties&&{category:categoryForProperties}));return payload;};/* * Normalise the overloaded arguments of the track call facade */var trackArgumentsToCallOptions=function trackArgumentsToCallOptions(event,properties,options,callback){var payload={name:event,properties:properties,options:options,callback:undefined};if(isFunction(callback)){payload.callback=callback;}if(isFunction(options)){payload.properties=properties;payload.options=undefined;payload.callback=options;}if(isFunction(properties)){payload.properties=undefined;payload.options=undefined;payload.callback=properties;}// Rest of the code is just to clean up undefined values // and set some proper defaults // Also, to clone the incoming object type arguments payload.properties=isDefinedAndNotNull(payload.properties)?clone(payload.properties):{};if(isDefined(payload.options)){payload.options=clone(payload.options);}else {payload.options=undefined;}return payload;};/* * Normalise the overloaded arguments of the identify call facade */var identifyArgumentsToCallOptions=function identifyArgumentsToCallOptions(userId,traits,options,callback){var payload={userId:userId,traits:traits,options:options,callback:undefined};if(isFunction(callback)){payload.callback=callback;}if(isFunction(options)){payload.userId=userId;payload.traits=traits;payload.options=undefined;payload.callback=options;}if(isFunction(traits)){payload.userId=userId;payload.traits=undefined;payload.options=undefined;payload.callback=traits;}if(isObjectLiteralAndNotNull(userId)||isNull(userId)){// Explicitly set null to prevent resetting the existing value // in the Analytics class payload.userId=null;payload.traits=userId;if(!isFunction(traits)){payload.options=traits;}else {payload.options=undefined;}}// Rest of the code is just to clean up undefined values // and set some proper defaults // Also, to clone the incoming object type arguments payload.userId=tryStringify(payload.userId);if(isObjectLiteralAndNotNull(payload.traits)){payload.traits=clone(payload.traits);}else {payload.traits=undefined;}if(isDefined(payload.options)){payload.options=clone(payload.options);}else {payload.options=undefined;}return payload;};/* * Normalise the overloaded arguments of the alias call facade */var aliasArgumentsToCallOptions=function aliasArgumentsToCallOptions(to,from,options,callback){var payload={to:to,from:from,options:options,callback:undefined};if(isFunction(callback)){payload.callback=callback;}if(isFunction(options)){payload.to=to;payload.from=from;payload.options=undefined;payload.callback=options;}if(isFunction(from)){payload.to=to;payload.from=undefined;payload.options=undefined;payload.callback=from;}else if(isObjectLiteralAndNotNull(from)||isNull(from)){payload.to=to;payload.from=undefined;payload.options=from;}// Rest of the code is just to clean up undefined values // and set some proper defaults // Also, to clone the incoming object type arguments if(isDefined(payload.to)){payload.to=tryStringify(payload.to);}if(isDefined(payload.from)){payload.from=tryStringify(payload.from);}else {payload.from=undefined;}if(isDefined(payload.options)){payload.options=clone(payload.options);}else {payload.options=undefined;}return payload;};/* * Normalise the overloaded arguments of the group call facade */var groupArgumentsToCallOptions=function groupArgumentsToCallOptions(groupId,traits,options,callback){var payload={groupId:groupId,traits:traits,options:options,callback:undefined};if(isFunction(callback)){payload.callback=callback;}if(isFunction(options)){payload.groupId=groupId;payload.traits=traits;payload.options=undefined;payload.callback=options;}if(isFunction(traits)){payload.groupId=groupId;payload.traits=undefined;payload.options=undefined;payload.callback=traits;}if(isObjectLiteralAndNotNull(groupId)||isNull(groupId)){// Explicitly set null to prevent resetting the existing value // in the Analytics class payload.groupId=null;payload.traits=groupId;if(!isFunction(traits)){payload.options=traits;}else {payload.options=undefined;}}// Rest of the code is just to clean up undefined values // and set some proper defaults // Also, to clone the incoming object type arguments payload.groupId=tryStringify(payload.groupId);if(isObjectLiteralAndNotNull(payload.traits)){payload.traits=clone(payload.traits);}else {payload.traits=undefined;}if(isDefined(payload.options)){payload.options=clone(payload.options);}else {payload.options=undefined;}return payload;}; /** * Represents the options parameter for anonymousId *//** * Represents the beacon queue options parameter in loadOptions type *//** * Represents the queue options parameter in loadOptions type *//** * Represents the destinations queue options parameter in loadOptions type */var PageLifecycleEvents=/*#__PURE__*/function(PageLifecycleEvents){PageLifecycleEvents["LOADED"]="Page Loaded";PageLifecycleEvents["UNLOADED"]="Page Unloaded";return PageLifecycleEvents;}({});/** * Represents the options parameter in the load API */ var API_SUFFIX='API';var CAPABILITIES_MANAGER='CapabilitiesManager';var CONFIG_MANAGER='ConfigManager';var EVENT_MANAGER='EventManager';var PLUGINS_MANAGER='PluginsManager';var USER_SESSION_MANAGER='UserSessionManager';var ERROR_HANDLER='ErrorHandler';var PLUGIN_ENGINE='PluginEngine';var STORE_MANAGER='StoreManager';var READY_API="Ready".concat(API_SUFFIX);var LOAD_API="Load".concat(API_SUFFIX);var EXTERNAL_SRC_LOADER='ExternalSrcLoader';var HTTP_CLIENT='HttpClient';var RSA='RudderStackAnalytics';var ANALYTICS_CORE='AnalyticsCore'; function random(len){return crypto.getRandomValues(new Uint8Array(len));} var SIZE=4096,HEX$1=[],IDX$1=0,BUFFER$1;for(;IDX$1<256;IDX$1++){HEX$1[IDX$1]=(IDX$1+256).toString(16).substring(1);}function v4$1(){if(!BUFFER$1||IDX$1+16>SIZE){BUFFER$1=random(SIZE);IDX$1=0;}var i=0,tmp,out='';for(;i<16;i++){tmp=BUFFER$1[IDX$1+i];if(i==6)out+=HEX$1[tmp&15|64];else if(i==8)out+=HEX$1[tmp&63|128];else out+=HEX$1[tmp];if(i&1&&i>1&&i<11)out+='-';}IDX$1+=16;return out;} var IDX=256,HEX=[],BUFFER;while(IDX--)HEX[IDX]=(IDX+256).toString(16).substring(1);function v4(){var i=0,num,out='';if(!BUFFER||IDX+16>256){BUFFER=Array(i=256);while(i--)BUFFER[i]=256*Math.random()|0;i=IDX=0;}for(;i<16;i++){num=BUFFER[IDX+i];if(i==6)out+=HEX[num&15|64];else if(i==8)out+=HEX[num&63|128];else out+=HEX[num];if(i&1&&i>1&&i<11)out+='-';}IDX++;return out;} var hasCrypto$1=function hasCrypto(){return !isNullOrUndefined(globalThis.crypto)&&isFunction(globalThis.crypto.getRandomValues);}; var generateUUID=function generateUUID(){if(hasCrypto$1()){return v4$1();}return v4();}; var onPageLeave=function onPageLeave(callback){// To ensure the callback is only called once even if more than one events // are fired at once. var pageLeft=false;var isAccessible=false;function handleOnLeave(){if(pageLeft){return;}pageLeft=true;callback(isAccessible);// Reset pageLeft on the next tick // to ensure callback executes for other listeners // when closing an inactive browser tab. setTimeout(function(){pageLeft=false;},0);}// Catches the unloading of the page (e.g., closing the tab or navigating away). // Includes user actions like clicking a link, entering a new URL, // refreshing the page, or closing the browser tab // Note that 'pagehide'