{"version":3,"file":"vendors/breakpoint-helper.js","sources":["webpack:///webpack/bootstrap","webpack:///./node_modules/breakpoint-helper/dist/breakpoint-helper.module.js","webpack:///./node_modules/regenerator-runtime/runtime.js","webpack:///(webpack)/buildin/module.js","webpack:///./src/design-systems/tlc/vendorjs/breakpoint-helper.vendor.js"],"sourcesContent":[" \t// The module cache\n \tvar installedModules = {};\n\n \t// The require function\n \tfunction __webpack_require__(moduleId) {\n\n \t\t// Check if module is in cache\n \t\tif(installedModules[moduleId]) {\n \t\t\treturn installedModules[moduleId].exports;\n \t\t}\n \t\t// Create a new module (and put it into the cache)\n \t\tvar module = installedModules[moduleId] = {\n \t\t\ti: moduleId,\n \t\t\tl: false,\n \t\t\texports: {}\n \t\t};\n\n \t\t// Execute the module function\n \t\tmodules[moduleId].call(module.exports, module, module.exports, __webpack_require__);\n\n \t\t// Flag the module as loaded\n \t\tmodule.l = true;\n\n \t\t// Return the exports of the module\n \t\treturn module.exports;\n \t}\n\n\n \t// expose the modules object (__webpack_modules__)\n \t__webpack_require__.m = modules;\n\n \t// expose the module cache\n \t__webpack_require__.c = installedModules;\n\n \t// define getter function for harmony exports\n \t__webpack_require__.d = function(exports, name, getter) {\n \t\tif(!__webpack_require__.o(exports, name)) {\n \t\t\tObject.defineProperty(exports, name, { enumerable: true, get: getter });\n \t\t}\n \t};\n\n \t// define __esModule on exports\n \t__webpack_require__.r = function(exports) {\n \t\tif(typeof Symbol !== 'undefined' && Symbol.toStringTag) {\n \t\t\tObject.defineProperty(exports, Symbol.toStringTag, { value: 'Module' });\n \t\t}\n \t\tObject.defineProperty(exports, '__esModule', { value: true });\n \t};\n\n \t// create a fake namespace object\n \t// mode & 1: value is a module id, require it\n \t// mode & 2: merge all properties of value into the ns\n \t// mode & 4: return value when already ns object\n \t// mode & 8|1: behave like require\n \t__webpack_require__.t = function(value, mode) {\n \t\tif(mode & 1) value = __webpack_require__(value);\n \t\tif(mode & 8) return value;\n \t\tif((mode & 4) && typeof value === 'object' && value && value.__esModule) return value;\n \t\tvar ns = Object.create(null);\n \t\t__webpack_require__.r(ns);\n \t\tObject.defineProperty(ns, 'default', { enumerable: true, value: value });\n \t\tif(mode & 2 && typeof value != 'string') for(var key in value) __webpack_require__.d(ns, key, function(key) { return value[key]; }.bind(null, key));\n \t\treturn ns;\n \t};\n\n \t// getDefaultExport function for compatibility with non-harmony modules\n \t__webpack_require__.n = function(module) {\n \t\tvar getter = module && module.__esModule ?\n \t\t\tfunction getDefault() { return module['default']; } :\n \t\t\tfunction getModuleExports() { return module; };\n \t\t__webpack_require__.d(getter, 'a', getter);\n \t\treturn getter;\n \t};\n\n \t// Object.prototype.hasOwnProperty.call\n \t__webpack_require__.o = function(object, property) { return Object.prototype.hasOwnProperty.call(object, property); };\n\n \t// __webpack_public_path__\n \t__webpack_require__.p = \"\";\n\n\n \t// Load entry module and return exports\n \treturn __webpack_require__(__webpack_require__.s = \"./src/design-systems/tlc/vendorjs/breakpoint-helper.vendor.js\");\n","var e = {};\n\nfunction t() {\n return e;\n}\n\nfunction n(t, r) {\n if (void 0 === r && (r = !1), Array.isArray(t)) {\n var i = t[1];\n return n(t[0]) + \" and \" + n(i, !0);\n }\n\n var a = e[t];\n if (void 0 === a) throw new Error('\"' + t + '\" does not seem to be a breakpoint name');\n\n if (r) {\n var o = parseFloat(a, 10),\n u = a.replace(o, \"\");\n return \"(max-width: \" + (o - (\"em\" === u ? .0635 : 1)) + u + \")\";\n }\n\n return \"(min-width: \" + a + \")\";\n}\n\nfunction r(e, t) {\n return void 0 === t && (t = !1), window.matchMedia(n(e, t)).matches;\n}\n\nfunction i(e, t) {\n var r = null,\n i = e.immediate,\n a = {\n name: e.name,\n useMax: e.useMax || !1,\n immediate: void 0 === i || i\n };\n\n function o() {\n r = \"string\" == typeof e || Array.isArray(e) ? window.matchMedia(n(e)) : window.matchMedia(n(a.name, a.useMax)), a.immediate && t(r), r.addEventListener(\"change\", t);\n }\n\n return o(), {\n on: o,\n off: function off() {\n r && (r.removeListener(t), r = null);\n }\n };\n}\n\nfunction a(t, n) {\n void 0 === n && (n = {});\n var a = Object.keys(e),\n o = [],\n u = a;\n\n if (0 !== a.length) {\n var c = n.immediate,\n s = n.listenTo,\n f = {\n useMax: n.useMax || !1,\n immediate: void 0 === c || c\n };\n s && (u = s.sort(function (t, n) {\n return parseInt(e[t], 10) - parseInt(e[n], 10);\n }));\n\n var d = function d() {\n t(function (e, t) {\n void 0 === t && (t = !1);\n var n = [];\n return e.forEach(function (e) {\n r(e, t) && n.push(e);\n }), t ? n : n.reverse();\n }(u, f.useMax));\n };\n\n return m(), {\n on: m,\n off: function off() {\n o.length && (o.forEach(function (e) {\n return e.off();\n }), o = []);\n }\n };\n }\n\n function m() {\n u.forEach(function (e) {\n var t = i({\n name: e,\n useMax: f.useMax,\n immediate: !1\n }, d);\n o.push(t);\n }), f.immediate && d();\n }\n}\n\nexport default function (o) {\n var u;\n if (void 0 === o && (o = {}), \"string\" == typeof o && \"meta\" === o ? e = function () {\n var e = document.createElement(\"meta\");\n e.classList.add(\"breakpoint-helper\"), document.getElementsByTagName(\"head\")[0].appendChild(e);\n var t = window.getComputedStyle(e).getPropertyValue(\"font-family\");\n return t.length <= 0 ? {} : (t = t.replace(/'|\"/g, \"\").split(\"&\")).reduce(function (e, t) {\n var n = t.split(\"=\");\n return e[n[0]] = n[1], e;\n }, {});\n }() : \"string\" == typeof o && \"custom\" === o ? (u = [].concat(document.styleSheets).filter(function (e) {\n return -1 !== e.href.indexOf(window.location.origin);\n }), e = [].concat(u).reduce(function (e, t) {\n return [].concat(t.cssRules).forEach(function (t) {\n \":root\" === t.selectorText && t.cssText.split(\"{\")[1].replace(\"}\", \"\").split(\";\").forEach(function (t) {\n var n = t.split(\":\"),\n r = n[0],\n i = n[1];\n -1 !== r.indexOf(\"--bph-\") && (e[r.replace(\"--bph-\", \"\").trim()] = i.trim());\n });\n }), e;\n }, {})) : e = o, 0 === Object.keys(e).length) throw new Error(\"No breakpoints defined\");\n return {\n getBreakpoints: t,\n getMediaQuery: n,\n isMatching: r,\n listen: i,\n listenAll: a\n };\n}","function _typeof(obj) { \"@babel/helpers - typeof\"; if (typeof Symbol === \"function\" && typeof Symbol.iterator === \"symbol\") { _typeof = function _typeof(obj) { return typeof obj; }; } else { _typeof = function _typeof(obj) { return obj && typeof Symbol === \"function\" && obj.constructor === Symbol && obj !== Symbol.prototype ? \"symbol\" : typeof obj; }; } return _typeof(obj); }\n\n/**\n * Copyright (c) 2014-present, Facebook, Inc.\n *\n * This source code is licensed under the MIT license found in the\n * LICENSE file in the root directory of this source tree.\n */\nvar runtime = function (exports) {\n \"use strict\";\n\n var Op = Object.prototype;\n var hasOwn = Op.hasOwnProperty;\n var undefined; // More compressible than void 0.\n\n var $Symbol = typeof Symbol === \"function\" ? Symbol : {};\n var iteratorSymbol = $Symbol.iterator || \"@@iterator\";\n var asyncIteratorSymbol = $Symbol.asyncIterator || \"@@asyncIterator\";\n var toStringTagSymbol = $Symbol.toStringTag || \"@@toStringTag\";\n\n function define(obj, key, value) {\n Object.defineProperty(obj, key, {\n value: value,\n enumerable: true,\n configurable: true,\n writable: true\n });\n return obj[key];\n }\n\n try {\n // IE 8 has a broken Object.defineProperty that only works on DOM objects.\n define({}, \"\");\n } catch (err) {\n define = function define(obj, key, value) {\n return obj[key] = value;\n };\n }\n\n function wrap(innerFn, outerFn, self, tryLocsList) {\n // If outerFn provided and outerFn.prototype is a Generator, then outerFn.prototype instanceof Generator.\n var protoGenerator = outerFn && outerFn.prototype instanceof Generator ? outerFn : Generator;\n var generator = Object.create(protoGenerator.prototype);\n var context = new Context(tryLocsList || []); // The ._invoke method unifies the implementations of the .next,\n // .throw, and .return methods.\n\n generator._invoke = makeInvokeMethod(innerFn, self, context);\n return generator;\n }\n\n exports.wrap = wrap; // Try/catch helper to minimize deoptimizations. Returns a completion\n // record like context.tryEntries[i].completion. This interface could\n // have been (and was previously) designed to take a closure to be\n // invoked without arguments, but in all the cases we care about we\n // already have an existing method we want to call, so there's no need\n // to create a new function object. We can even get away with assuming\n // the method takes exactly one argument, since that happens to be true\n // in every case, so we don't have to touch the arguments object. The\n // only additional allocation required is the completion record, which\n // has a stable shape and so hopefully should be cheap to allocate.\n\n function tryCatch(fn, obj, arg) {\n try {\n return {\n type: \"normal\",\n arg: fn.call(obj, arg)\n };\n } catch (err) {\n return {\n type: \"throw\",\n arg: err\n };\n }\n }\n\n var GenStateSuspendedStart = \"suspendedStart\";\n var GenStateSuspendedYield = \"suspendedYield\";\n var GenStateExecuting = \"executing\";\n var GenStateCompleted = \"completed\"; // Returning this object from the innerFn has the same effect as\n // breaking out of the dispatch switch statement.\n\n var ContinueSentinel = {}; // Dummy constructor functions that we use as the .constructor and\n // .constructor.prototype properties for functions that return Generator\n // objects. For full spec compliance, you may wish to configure your\n // minifier not to mangle the names of these two functions.\n\n function Generator() {}\n\n function GeneratorFunction() {}\n\n function GeneratorFunctionPrototype() {} // This is a polyfill for %IteratorPrototype% for environments that\n // don't natively support it.\n\n\n var IteratorPrototype = {};\n define(IteratorPrototype, iteratorSymbol, function () {\n return this;\n });\n var getProto = Object.getPrototypeOf;\n var NativeIteratorPrototype = getProto && getProto(getProto(values([])));\n\n if (NativeIteratorPrototype && NativeIteratorPrototype !== Op && hasOwn.call(NativeIteratorPrototype, iteratorSymbol)) {\n // This environment has a native %IteratorPrototype%; use it instead\n // of the polyfill.\n IteratorPrototype = NativeIteratorPrototype;\n }\n\n var Gp = GeneratorFunctionPrototype.prototype = Generator.prototype = Object.create(IteratorPrototype);\n GeneratorFunction.prototype = GeneratorFunctionPrototype;\n define(Gp, \"constructor\", GeneratorFunctionPrototype);\n define(GeneratorFunctionPrototype, \"constructor\", GeneratorFunction);\n GeneratorFunction.displayName = define(GeneratorFunctionPrototype, toStringTagSymbol, \"GeneratorFunction\"); // Helper for defining the .next, .throw, and .return methods of the\n // Iterator interface in terms of a single ._invoke method.\n\n function defineIteratorMethods(prototype) {\n [\"next\", \"throw\", \"return\"].forEach(function (method) {\n define(prototype, method, function (arg) {\n return this._invoke(method, arg);\n });\n });\n }\n\n exports.isGeneratorFunction = function (genFun) {\n var ctor = typeof genFun === \"function\" && genFun.constructor;\n return ctor ? ctor === GeneratorFunction || // For the native GeneratorFunction constructor, the best we can\n // do is to check its .name property.\n (ctor.displayName || ctor.name) === \"GeneratorFunction\" : false;\n };\n\n exports.mark = function (genFun) {\n if (Object.setPrototypeOf) {\n Object.setPrototypeOf(genFun, GeneratorFunctionPrototype);\n } else {\n genFun.__proto__ = GeneratorFunctionPrototype;\n define(genFun, toStringTagSymbol, \"GeneratorFunction\");\n }\n\n genFun.prototype = Object.create(Gp);\n return genFun;\n }; // Within the body of any async function, `await x` is transformed to\n // `yield regeneratorRuntime.awrap(x)`, so that the runtime can test\n // `hasOwn.call(value, \"__await\")` to determine if the yielded value is\n // meant to be awaited.\n\n\n exports.awrap = function (arg) {\n return {\n __await: arg\n };\n };\n\n function AsyncIterator(generator, PromiseImpl) {\n function invoke(method, arg, resolve, reject) {\n var record = tryCatch(generator[method], generator, arg);\n\n if (record.type === \"throw\") {\n reject(record.arg);\n } else {\n var result = record.arg;\n var value = result.value;\n\n if (value && _typeof(value) === \"object\" && hasOwn.call(value, \"__await\")) {\n return PromiseImpl.resolve(value.__await).then(function (value) {\n invoke(\"next\", value, resolve, reject);\n }, function (err) {\n invoke(\"throw\", err, resolve, reject);\n });\n }\n\n return PromiseImpl.resolve(value).then(function (unwrapped) {\n // When a yielded Promise is resolved, its final value becomes\n // the .value of the Promise<{value,done}> result for the\n // current iteration.\n result.value = unwrapped;\n resolve(result);\n }, function (error) {\n // If a rejected Promise was yielded, throw the rejection back\n // into the async generator function so it can be handled there.\n return invoke(\"throw\", error, resolve, reject);\n });\n }\n }\n\n var previousPromise;\n\n function enqueue(method, arg) {\n function callInvokeWithMethodAndArg() {\n return new PromiseImpl(function (resolve, reject) {\n invoke(method, arg, resolve, reject);\n });\n }\n\n return previousPromise = // If enqueue has been called before, then we want to wait until\n // all previous Promises have been resolved before calling invoke,\n // so that results are always delivered in the correct order. If\n // enqueue has not been called before, then it is important to\n // call invoke immediately, without waiting on a callback to fire,\n // so that the async generator function has the opportunity to do\n // any necessary setup in a predictable way. This predictability\n // is why the Promise constructor synchronously invokes its\n // executor callback, and why async functions synchronously\n // execute code before the first await. Since we implement simple\n // async functions in terms of async generators, it is especially\n // important to get this right, even though it requires care.\n previousPromise ? previousPromise.then(callInvokeWithMethodAndArg, // Avoid propagating failures to Promises returned by later\n // invocations of the iterator.\n callInvokeWithMethodAndArg) : callInvokeWithMethodAndArg();\n } // Define the unified helper method that is used to implement .next,\n // .throw, and .return (see defineIteratorMethods).\n\n\n this._invoke = enqueue;\n }\n\n defineIteratorMethods(AsyncIterator.prototype);\n define(AsyncIterator.prototype, asyncIteratorSymbol, function () {\n return this;\n });\n exports.AsyncIterator = AsyncIterator; // Note that simple async functions are implemented on top of\n // AsyncIterator objects; they just return a Promise for the value of\n // the final result produced by the iterator.\n\n exports.async = function (innerFn, outerFn, self, tryLocsList, PromiseImpl) {\n if (PromiseImpl === void 0) PromiseImpl = Promise;\n var iter = new AsyncIterator(wrap(innerFn, outerFn, self, tryLocsList), PromiseImpl);\n return exports.isGeneratorFunction(outerFn) ? iter // If outerFn is a generator, return the full iterator.\n : iter.next().then(function (result) {\n return result.done ? result.value : iter.next();\n });\n };\n\n function makeInvokeMethod(innerFn, self, context) {\n var state = GenStateSuspendedStart;\n return function invoke(method, arg) {\n if (state === GenStateExecuting) {\n throw new Error(\"Generator is already running\");\n }\n\n if (state === GenStateCompleted) {\n if (method === \"throw\") {\n throw arg;\n } // Be forgiving, per 25.3.3.3.3 of the spec:\n // https://people.mozilla.org/~jorendorff/es6-draft.html#sec-generatorresume\n\n\n return doneResult();\n }\n\n context.method = method;\n context.arg = arg;\n\n while (true) {\n var delegate = context.delegate;\n\n if (delegate) {\n var delegateResult = maybeInvokeDelegate(delegate, context);\n\n if (delegateResult) {\n if (delegateResult === ContinueSentinel) continue;\n return delegateResult;\n }\n }\n\n if (context.method === \"next\") {\n // Setting context._sent for legacy support of Babel's\n // function.sent implementation.\n context.sent = context._sent = context.arg;\n } else if (context.method === \"throw\") {\n if (state === GenStateSuspendedStart) {\n state = GenStateCompleted;\n throw context.arg;\n }\n\n context.dispatchException(context.arg);\n } else if (context.method === \"return\") {\n context.abrupt(\"return\", context.arg);\n }\n\n state = GenStateExecuting;\n var record = tryCatch(innerFn, self, context);\n\n if (record.type === \"normal\") {\n // If an exception is thrown from innerFn, we leave state ===\n // GenStateExecuting and loop back for another invocation.\n state = context.done ? GenStateCompleted : GenStateSuspendedYield;\n\n if (record.arg === ContinueSentinel) {\n continue;\n }\n\n return {\n value: record.arg,\n done: context.done\n };\n } else if (record.type === \"throw\") {\n state = GenStateCompleted; // Dispatch the exception by looping back around to the\n // context.dispatchException(context.arg) call above.\n\n context.method = \"throw\";\n context.arg = record.arg;\n }\n }\n };\n } // Call delegate.iterator[context.method](context.arg) and handle the\n // result, either by returning a { value, done } result from the\n // delegate iterator, or by modifying context.method and context.arg,\n // setting context.delegate to null, and returning the ContinueSentinel.\n\n\n function maybeInvokeDelegate(delegate, context) {\n var method = delegate.iterator[context.method];\n\n if (method === undefined) {\n // A .throw or .return when the delegate iterator has no .throw\n // method always terminates the yield* loop.\n context.delegate = null;\n\n if (context.method === \"throw\") {\n // Note: [\"return\"] must be used for ES3 parsing compatibility.\n if (delegate.iterator[\"return\"]) {\n // If the delegate iterator has a return method, give it a\n // chance to clean up.\n context.method = \"return\";\n context.arg = undefined;\n maybeInvokeDelegate(delegate, context);\n\n if (context.method === \"throw\") {\n // If maybeInvokeDelegate(context) changed context.method from\n // \"return\" to \"throw\", let that override the TypeError below.\n return ContinueSentinel;\n }\n }\n\n context.method = \"throw\";\n context.arg = new TypeError(\"The iterator does not provide a 'throw' method\");\n }\n\n return ContinueSentinel;\n }\n\n var record = tryCatch(method, delegate.iterator, context.arg);\n\n if (record.type === \"throw\") {\n context.method = \"throw\";\n context.arg = record.arg;\n context.delegate = null;\n return ContinueSentinel;\n }\n\n var info = record.arg;\n\n if (!info) {\n context.method = \"throw\";\n context.arg = new TypeError(\"iterator result is not an object\");\n context.delegate = null;\n return ContinueSentinel;\n }\n\n if (info.done) {\n // Assign the result of the finished delegate to the temporary\n // variable specified by delegate.resultName (see delegateYield).\n context[delegate.resultName] = info.value; // Resume execution at the desired location (see delegateYield).\n\n context.next = delegate.nextLoc; // If context.method was \"throw\" but the delegate handled the\n // exception, let the outer generator proceed normally. If\n // context.method was \"next\", forget context.arg since it has been\n // \"consumed\" by the delegate iterator. If context.method was\n // \"return\", allow the original .return call to continue in the\n // outer generator.\n\n if (context.method !== \"return\") {\n context.method = \"next\";\n context.arg = undefined;\n }\n } else {\n // Re-yield the result returned by the delegate method.\n return info;\n } // The delegate iterator is finished, so forget it and continue with\n // the outer generator.\n\n\n context.delegate = null;\n return ContinueSentinel;\n } // Define Generator.prototype.{next,throw,return} in terms of the\n // unified ._invoke helper method.\n\n\n defineIteratorMethods(Gp);\n define(Gp, toStringTagSymbol, \"Generator\"); // A Generator should always return itself as the iterator object when the\n // @@iterator function is called on it. Some browsers' implementations of the\n // iterator prototype chain incorrectly implement this, causing the Generator\n // object to not be returned from this call. 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