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Current File : //var/www/cwg/wp-content/plugins/searchwp/assets/javascript/dist/settings.js |
(function () { 'use strict'; var commonjsGlobal = typeof globalThis !== 'undefined' ? globalThis : typeof window !== 'undefined' ? window : typeof global !== 'undefined' ? global : typeof self !== 'undefined' ? self : {}; function unwrapExports (x) { return x && x.__esModule && Object.prototype.hasOwnProperty.call(x, 'default') ? x['default'] : x; } function createCommonjsModule(fn, module) { return module = { exports: {} }, fn(module, module.exports), module.exports; } var vue = createCommonjsModule(function (module, exports) { /*! * Vue.js v2.6.12 * (c) 2014-2020 Evan You * Released under the MIT License. */ (function (global, factory) { module.exports = factory() ; }(commonjsGlobal, function () { /* */ var emptyObject = Object.freeze({}); // These helpers produce better VM code in JS engines due to their // explicitness and function inlining. function isUndef (v) { return v === undefined || v === null } function isDef (v) { return v !== undefined && v !== null } function isTrue (v) { return v === true } function isFalse (v) { return v === false } /** * Check if value is primitive. */ function isPrimitive (value) { return ( typeof value === 'string' || typeof value === 'number' || // $flow-disable-line typeof value === 'symbol' || typeof value === 'boolean' ) } /** * Quick object check - this is primarily used to tell * Objects from primitive values when we know the value * is a JSON-compliant type. */ function isObject (obj) { return obj !== null && typeof obj === 'object' } /** * Get the raw type string of a value, e.g., [object Object]. */ var _toString = Object.prototype.toString; function toRawType (value) { return _toString.call(value).slice(8, -1) } /** * Strict object type check. Only returns true * for plain JavaScript objects. */ function isPlainObject (obj) { return _toString.call(obj) === '[object Object]' } function isRegExp (v) { return _toString.call(v) === '[object RegExp]' } /** * Check if val is a valid array index. */ function isValidArrayIndex (val) { var n = parseFloat(String(val)); return n >= 0 && Math.floor(n) === n && isFinite(val) } function isPromise (val) { return ( isDef(val) && typeof val.then === 'function' && typeof val.catch === 'function' ) } /** * Convert a value to a string that is actually rendered. */ function toString (val) { return val == null ? '' : Array.isArray(val) || (isPlainObject(val) && val.toString === _toString) ? JSON.stringify(val, null, 2) : String(val) } /** * Convert an input value to a number for persistence. * If the conversion fails, return original string. */ function toNumber (val) { var n = parseFloat(val); return isNaN(n) ? val : n } /** * Make a map and return a function for checking if a key * is in that map. */ function makeMap ( str, expectsLowerCase ) { var map = Object.create(null); var list = str.split(','); for (var i = 0; i < list.length; i++) { map[list[i]] = true; } return expectsLowerCase ? function (val) { return map[val.toLowerCase()]; } : function (val) { return map[val]; } } /** * Check if a tag is a built-in tag. */ var isBuiltInTag = makeMap('slot,component', true); /** * Check if an attribute is a reserved attribute. */ var isReservedAttribute = makeMap('key,ref,slot,slot-scope,is'); /** * Remove an item from an array. */ function remove (arr, item) { if (arr.length) { var index = arr.indexOf(item); if (index > -1) { return arr.splice(index, 1) } } } /** * Check whether an object has the property. */ var hasOwnProperty = Object.prototype.hasOwnProperty; function hasOwn (obj, key) { return hasOwnProperty.call(obj, key) } /** * Create a cached version of a pure function. */ function cached (fn) { var cache = Object.create(null); return (function cachedFn (str) { var hit = cache[str]; return hit || (cache[str] = fn(str)) }) } /** * Camelize a hyphen-delimited string. */ var camelizeRE = /-(\w)/g; var camelize = cached(function (str) { return str.replace(camelizeRE, function (_, c) { return c ? c.toUpperCase() : ''; }) }); /** * Capitalize a string. */ var capitalize = cached(function (str) { return str.charAt(0).toUpperCase() + str.slice(1) }); /** * Hyphenate a camelCase string. */ var hyphenateRE = /\B([A-Z])/g; var hyphenate = cached(function (str) { return str.replace(hyphenateRE, '-$1').toLowerCase() }); /** * Simple bind polyfill for environments that do not support it, * e.g., PhantomJS 1.x. Technically, we don't need this anymore * since native bind is now performant enough in most browsers. * But removing it would mean breaking code that was able to run in * PhantomJS 1.x, so this must be kept for backward compatibility. */ /* istanbul ignore next */ function polyfillBind (fn, ctx) { function boundFn (a) { var l = arguments.length; return l ? l > 1 ? fn.apply(ctx, arguments) : fn.call(ctx, a) : fn.call(ctx) } boundFn._length = fn.length; return boundFn } function nativeBind (fn, ctx) { return fn.bind(ctx) } var bind = Function.prototype.bind ? nativeBind : polyfillBind; /** * Convert an Array-like object to a real Array. */ function toArray (list, start) { start = start || 0; var i = list.length - start; var ret = new Array(i); while (i--) { ret[i] = list[i + start]; } return ret } /** * Mix properties into target object. */ function extend (to, _from) { for (var key in _from) { to[key] = _from[key]; } return to } /** * Merge an Array of Objects into a single Object. */ function toObject (arr) { var res = {}; for (var i = 0; i < arr.length; i++) { if (arr[i]) { extend(res, arr[i]); } } return res } /* eslint-disable no-unused-vars */ /** * Perform no operation. * Stubbing args to make Flow happy without leaving useless transpiled code * with ...rest (https://flow.org/blog/2017/05/07/Strict-Function-Call-Arity/). */ function noop (a, b, c) {} /** * Always return false. */ var no = function (a, b, c) { return false; }; /* eslint-enable no-unused-vars */ /** * Return the same value. */ var identity = function (_) { return _; }; /** * Generate a string containing static keys from compiler modules. */ function genStaticKeys (modules) { return modules.reduce(function (keys, m) { return keys.concat(m.staticKeys || []) }, []).join(',') } /** * Check if two values are loosely equal - that is, * if they are plain objects, do they have the same shape? */ function looseEqual (a, b) { if (a === b) { return true } var isObjectA = isObject(a); var isObjectB = isObject(b); if (isObjectA && isObjectB) { try { var isArrayA = Array.isArray(a); var isArrayB = Array.isArray(b); if (isArrayA && isArrayB) { return a.length === b.length && a.every(function (e, i) { return looseEqual(e, b[i]) }) } else if (a instanceof Date && b instanceof Date) { return a.getTime() === b.getTime() } else if (!isArrayA && !isArrayB) { var keysA = Object.keys(a); var keysB = Object.keys(b); return keysA.length === keysB.length && keysA.every(function (key) { return looseEqual(a[key], b[key]) }) } else { /* istanbul ignore next */ return false } } catch (e) { /* istanbul ignore next */ return false } } else if (!isObjectA && !isObjectB) { return String(a) === String(b) } else { return false } } /** * Return the first index at which a loosely equal value can be * found in the array (if value is a plain object, the array must * contain an object of the same shape), or -1 if it is not present. */ function looseIndexOf (arr, val) { for (var i = 0; i < arr.length; i++) { if (looseEqual(arr[i], val)) { return i } } return -1 } /** * Ensure a function is called only once. */ function once (fn) { var called = false; return function () { if (!called) { called = true; fn.apply(this, arguments); } } } var SSR_ATTR = 'data-server-rendered'; var ASSET_TYPES = [ 'component', 'directive', 'filter' ]; var LIFECYCLE_HOOKS = [ 'beforeCreate', 'created', 'beforeMount', 'mounted', 'beforeUpdate', 'updated', 'beforeDestroy', 'destroyed', 'activated', 'deactivated', 'errorCaptured', 'serverPrefetch' ]; /* */ var config = ({ /** * Option merge strategies (used in core/util/options) */ // $flow-disable-line optionMergeStrategies: Object.create(null), /** * Whether to suppress warnings. */ silent: false, /** * Show production mode tip message on boot? */ productionTip: "development" !== 'production', /** * Whether to enable devtools */ devtools: "development" !== 'production', /** * Whether to record perf */ performance: false, /** * Error handler for watcher errors */ errorHandler: null, /** * Warn handler for watcher warns */ warnHandler: null, /** * Ignore certain custom elements */ ignoredElements: [], /** * Custom user key aliases for v-on */ // $flow-disable-line keyCodes: Object.create(null), /** * Check if a tag is reserved so that it cannot be registered as a * component. This is platform-dependent and may be overwritten. */ isReservedTag: no, /** * Check if an attribute is reserved so that it cannot be used as a component * prop. This is platform-dependent and may be overwritten. */ isReservedAttr: no, /** * Check if a tag is an unknown element. * Platform-dependent. */ isUnknownElement: no, /** * Get the namespace of an element */ getTagNamespace: noop, /** * Parse the real tag name for the specific platform. */ parsePlatformTagName: identity, /** * Check if an attribute must be bound using property, e.g. value * Platform-dependent. */ mustUseProp: no, /** * Perform updates asynchronously. Intended to be used by Vue Test Utils * This will significantly reduce performance if set to false. */ async: true, /** * Exposed for legacy reasons */ _lifecycleHooks: LIFECYCLE_HOOKS }); /* */ /** * unicode letters used for parsing html tags, component names and property paths. * using https://www.w3.org/TR/html53/semantics-scripting.html#potentialcustomelementname * skipping \u10000-\uEFFFF due to it freezing up PhantomJS */ var unicodeRegExp = /a-zA-Z\u00B7\u00C0-\u00D6\u00D8-\u00F6\u00F8-\u037D\u037F-\u1FFF\u200C-\u200D\u203F-\u2040\u2070-\u218F\u2C00-\u2FEF\u3001-\uD7FF\uF900-\uFDCF\uFDF0-\uFFFD/; /** * Check if a string starts with $ or _ */ function isReserved (str) { var c = (str + '').charCodeAt(0); return c === 0x24 || c === 0x5F } /** * Define a property. */ function def (obj, key, val, enumerable) { Object.defineProperty(obj, key, { value: val, enumerable: !!enumerable, writable: true, configurable: true }); } /** * Parse simple path. */ var bailRE = new RegExp(("[^" + (unicodeRegExp.source) + ".$_\\d]")); function parsePath (path) { if (bailRE.test(path)) { return } var segments = path.split('.'); return function (obj) { for (var i = 0; i < segments.length; i++) { if (!obj) { return } obj = obj[segments[i]]; } return obj } } /* */ // can we use __proto__? var hasProto = '__proto__' in {}; // Browser environment sniffing var inBrowser = typeof window !== 'undefined'; var inWeex = typeof WXEnvironment !== 'undefined' && !!WXEnvironment.platform; var weexPlatform = inWeex && WXEnvironment.platform.toLowerCase(); var UA = inBrowser && window.navigator.userAgent.toLowerCase(); var isIE = UA && /msie|trident/.test(UA); var isIE9 = UA && UA.indexOf('msie 9.0') > 0; var isEdge = UA && UA.indexOf('edge/') > 0; (UA && UA.indexOf('android') > 0) || (weexPlatform === 'android'); var isIOS = (UA && /iphone|ipad|ipod|ios/.test(UA)) || (weexPlatform === 'ios'); UA && /chrome\/\d+/.test(UA) && !isEdge; UA && /phantomjs/.test(UA); var isFF = UA && UA.match(/firefox\/(\d+)/); // Firefox has a "watch" function on Object.prototype... var nativeWatch = ({}).watch; var supportsPassive = false; if (inBrowser) { try { var opts = {}; Object.defineProperty(opts, 'passive', ({ get: function get () { /* istanbul ignore next */ supportsPassive = true; } })); // https://github.com/facebook/flow/issues/285 window.addEventListener('test-passive', null, opts); } catch (e) {} } // this needs to be lazy-evaled because vue may be required before // vue-server-renderer can set VUE_ENV var _isServer; var isServerRendering = function () { if (_isServer === undefined) { /* istanbul ignore if */ if (!inBrowser && !inWeex && typeof commonjsGlobal !== 'undefined') { // detect presence of vue-server-renderer and avoid // Webpack shimming the process _isServer = commonjsGlobal['process'] && commonjsGlobal['process'].env.VUE_ENV === 'server'; } else { _isServer = false; } } return _isServer }; // detect devtools var devtools = inBrowser && window.__VUE_DEVTOOLS_GLOBAL_HOOK__; /* istanbul ignore next */ function isNative (Ctor) { return typeof Ctor === 'function' && /native code/.test(Ctor.toString()) } var hasSymbol = typeof Symbol !== 'undefined' && isNative(Symbol) && typeof Reflect !== 'undefined' && isNative(Reflect.ownKeys); var _Set; /* istanbul ignore if */ // $flow-disable-line if (typeof Set !== 'undefined' && isNative(Set)) { // use native Set when available. _Set = Set; } else { // a non-standard Set polyfill that only works with primitive keys. _Set = /*@__PURE__*/(function () { function Set () { this.set = Object.create(null); } Set.prototype.has = function has (key) { return this.set[key] === true }; Set.prototype.add = function add (key) { this.set[key] = true; }; Set.prototype.clear = function clear () { this.set = Object.create(null); }; return Set; }()); } /* */ var warn = noop; var tip = noop; var generateComponentTrace = (noop); // work around flow check var formatComponentName = (noop); { var hasConsole = typeof console !== 'undefined'; var classifyRE = /(?:^|[-_])(\w)/g; var classify = function (str) { return str .replace(classifyRE, function (c) { return c.toUpperCase(); }) .replace(/[-_]/g, ''); }; warn = function (msg, vm) { var trace = vm ? generateComponentTrace(vm) : ''; if (config.warnHandler) { config.warnHandler.call(null, msg, vm, trace); } else if (hasConsole && (!config.silent)) { console.error(("[Vue warn]: " + msg + trace)); } }; tip = function (msg, vm) { if (hasConsole && (!config.silent)) { console.warn("[Vue tip]: " + msg + ( vm ? generateComponentTrace(vm) : '' )); } }; formatComponentName = function (vm, includeFile) { if (vm.$root === vm) { return '<Root>' } var options = typeof vm === 'function' && vm.cid != null ? vm.options : vm._isVue ? vm.$options || vm.constructor.options : vm; var name = options.name || options._componentTag; var file = options.__file; if (!name && file) { var match = file.match(/([^/\\]+)\.vue$/); name = match && match[1]; } return ( (name ? ("<" + (classify(name)) + ">") : "<Anonymous>") + (file && includeFile !== false ? (" at " + file) : '') ) }; var repeat = function (str, n) { var res = ''; while (n) { if (n % 2 === 1) { res += str; } if (n > 1) { str += str; } n >>= 1; } return res }; generateComponentTrace = function (vm) { if (vm._isVue && vm.$parent) { var tree = []; var currentRecursiveSequence = 0; while (vm) { if (tree.length > 0) { var last = tree[tree.length - 1]; if (last.constructor === vm.constructor) { currentRecursiveSequence++; vm = vm.$parent; continue } else if (currentRecursiveSequence > 0) { tree[tree.length - 1] = [last, currentRecursiveSequence]; currentRecursiveSequence = 0; } } tree.push(vm); vm = vm.$parent; } return '\n\nfound in\n\n' + tree .map(function (vm, i) { return ("" + (i === 0 ? '---> ' : repeat(' ', 5 + i * 2)) + (Array.isArray(vm) ? ((formatComponentName(vm[0])) + "... (" + (vm[1]) + " recursive calls)") : formatComponentName(vm))); }) .join('\n') } else { return ("\n\n(found in " + (formatComponentName(vm)) + ")") } }; } /* */ var uid = 0; /** * A dep is an observable that can have multiple * directives subscribing to it. */ var Dep = function Dep () { this.id = uid++; this.subs = []; }; Dep.prototype.addSub = function addSub (sub) { this.subs.push(sub); }; Dep.prototype.removeSub = function removeSub (sub) { remove(this.subs, sub); }; Dep.prototype.depend = function depend () { if (Dep.target) { Dep.target.addDep(this); } }; Dep.prototype.notify = function notify () { // stabilize the subscriber list first var subs = this.subs.slice(); if (!config.async) { // subs aren't sorted in scheduler if not running async // we need to sort them now to make sure they fire in correct // order subs.sort(function (a, b) { return a.id - b.id; }); } for (var i = 0, l = subs.length; i < l; i++) { subs[i].update(); } }; // The current target watcher being evaluated. // This is globally unique because only one watcher // can be evaluated at a time. Dep.target = null; var targetStack = []; function pushTarget (target) { targetStack.push(target); Dep.target = target; } function popTarget () { targetStack.pop(); Dep.target = targetStack[targetStack.length - 1]; } /* */ var VNode = function VNode ( tag, data, children, text, elm, context, componentOptions, asyncFactory ) { this.tag = tag; this.data = data; this.children = children; this.text = text; this.elm = elm; this.ns = undefined; this.context = context; this.fnContext = undefined; this.fnOptions = undefined; this.fnScopeId = undefined; this.key = data && data.key; this.componentOptions = componentOptions; this.componentInstance = undefined; this.parent = undefined; this.raw = false; this.isStatic = false; this.isRootInsert = true; this.isComment = false; this.isCloned = false; this.isOnce = false; this.asyncFactory = asyncFactory; this.asyncMeta = undefined; this.isAsyncPlaceholder = false; }; var prototypeAccessors = { child: { configurable: true } }; // DEPRECATED: alias for componentInstance for backwards compat. /* istanbul ignore next */ prototypeAccessors.child.get = function () { return this.componentInstance }; Object.defineProperties( VNode.prototype, prototypeAccessors ); var createEmptyVNode = function (text) { if ( text === void 0 ) text = ''; var node = new VNode(); node.text = text; node.isComment = true; return node }; function createTextVNode (val) { return new VNode(undefined, undefined, undefined, String(val)) } // optimized shallow clone // used for static nodes and slot nodes because they may be reused across // multiple renders, cloning them avoids errors when DOM manipulations rely // on their elm reference. function cloneVNode (vnode) { var cloned = new VNode( vnode.tag, vnode.data, // #7975 // clone children array to avoid mutating original in case of cloning // a child. vnode.children && vnode.children.slice(), vnode.text, vnode.elm, vnode.context, vnode.componentOptions, vnode.asyncFactory ); cloned.ns = vnode.ns; cloned.isStatic = vnode.isStatic; cloned.key = vnode.key; cloned.isComment = vnode.isComment; cloned.fnContext = vnode.fnContext; cloned.fnOptions = vnode.fnOptions; cloned.fnScopeId = vnode.fnScopeId; cloned.asyncMeta = vnode.asyncMeta; cloned.isCloned = true; return cloned } /* * not type checking this file because flow doesn't play well with * dynamically accessing methods on Array prototype */ var arrayProto = Array.prototype; var arrayMethods = Object.create(arrayProto); var methodsToPatch = [ 'push', 'pop', 'shift', 'unshift', 'splice', 'sort', 'reverse' ]; /** * Intercept mutating methods and emit events */ methodsToPatch.forEach(function (method) { // cache original method var original = arrayProto[method]; def(arrayMethods, method, function mutator () { var args = [], len = arguments.length; while ( len-- ) args[ len ] = arguments[ len ]; var result = original.apply(this, args); var ob = this.__ob__; var inserted; switch (method) { case 'push': case 'unshift': inserted = args; break case 'splice': inserted = args.slice(2); break } if (inserted) { ob.observeArray(inserted); } // notify change ob.dep.notify(); return result }); }); /* */ var arrayKeys = Object.getOwnPropertyNames(arrayMethods); /** * In some cases we may want to disable observation inside a component's * update computation. */ var shouldObserve = true; function toggleObserving (value) { shouldObserve = value; } /** * Observer class that is attached to each observed * object. Once attached, the observer converts the target * object's property keys into getter/setters that * collect dependencies and dispatch updates. */ var Observer = function Observer (value) { this.value = value; this.dep = new Dep(); this.vmCount = 0; def(value, '__ob__', this); if (Array.isArray(value)) { if (hasProto) { protoAugment(value, arrayMethods); } else { copyAugment(value, arrayMethods, arrayKeys); } this.observeArray(value); } else { this.walk(value); } }; /** * Walk through all properties and convert them into * getter/setters. This method should only be called when * value type is Object. */ Observer.prototype.walk = function walk (obj) { var keys = Object.keys(obj); for (var i = 0; i < keys.length; i++) { defineReactive$$1(obj, keys[i]); } }; /** * Observe a list of Array items. */ Observer.prototype.observeArray = function observeArray (items) { for (var i = 0, l = items.length; i < l; i++) { observe(items[i]); } }; // helpers /** * Augment a target Object or Array by intercepting * the prototype chain using __proto__ */ function protoAugment (target, src) { /* eslint-disable no-proto */ target.__proto__ = src; /* eslint-enable no-proto */ } /** * Augment a target Object or Array by defining * hidden properties. */ /* istanbul ignore next */ function copyAugment (target, src, keys) { for (var i = 0, l = keys.length; i < l; i++) { var key = keys[i]; def(target, key, src[key]); } } /** * Attempt to create an observer instance for a value, * returns the new observer if successfully observed, * or the existing observer if the value already has one. */ function observe (value, asRootData) { if (!isObject(value) || value instanceof VNode) { return } var ob; if (hasOwn(value, '__ob__') && value.__ob__ instanceof Observer) { ob = value.__ob__; } else if ( shouldObserve && !isServerRendering() && (Array.isArray(value) || isPlainObject(value)) && Object.isExtensible(value) && !value._isVue ) { ob = new Observer(value); } if (asRootData && ob) { ob.vmCount++; } return ob } /** * Define a reactive property on an Object. */ function defineReactive$$1 ( obj, key, val, customSetter, shallow ) { var dep = new Dep(); var property = Object.getOwnPropertyDescriptor(obj, key); if (property && property.configurable === false) { return } // cater for pre-defined getter/setters var getter = property && property.get; var setter = property && property.set; if ((!getter || setter) && arguments.length === 2) { val = obj[key]; } var childOb = !shallow && observe(val); Object.defineProperty(obj, key, { enumerable: true, configurable: true, get: function reactiveGetter () { var value = getter ? getter.call(obj) : val; if (Dep.target) { dep.depend(); if (childOb) { childOb.dep.depend(); if (Array.isArray(value)) { dependArray(value); } } } return value }, set: function reactiveSetter (newVal) { var value = getter ? getter.call(obj) : val; /* eslint-disable no-self-compare */ if (newVal === value || (newVal !== newVal && value !== value)) { return } /* eslint-enable no-self-compare */ if (customSetter) { customSetter(); } // #7981: for accessor properties without setter if (getter && !setter) { return } if (setter) { setter.call(obj, newVal); } else { val = newVal; } childOb = !shallow && observe(newVal); dep.notify(); } }); } /** * Set a property on an object. Adds the new property and * triggers change notification if the property doesn't * already exist. */ function set (target, key, val) { if (isUndef(target) || isPrimitive(target) ) { warn(("Cannot set reactive property on undefined, null, or primitive value: " + ((target)))); } if (Array.isArray(target) && isValidArrayIndex(key)) { target.length = Math.max(target.length, key); target.splice(key, 1, val); return val } if (key in target && !(key in Object.prototype)) { target[key] = val; return val } var ob = (target).__ob__; if (target._isVue || (ob && ob.vmCount)) { warn( 'Avoid adding reactive properties to a Vue instance or its root $data ' + 'at runtime - declare it upfront in the data option.' ); return val } if (!ob) { target[key] = val; return val } defineReactive$$1(ob.value, key, val); ob.dep.notify(); return val } /** * Delete a property and trigger change if necessary. */ function del (target, key) { if (isUndef(target) || isPrimitive(target) ) { warn(("Cannot delete reactive property on undefined, null, or primitive value: " + ((target)))); } if (Array.isArray(target) && isValidArrayIndex(key)) { target.splice(key, 1); return } var ob = (target).__ob__; if (target._isVue || (ob && ob.vmCount)) { warn( 'Avoid deleting properties on a Vue instance or its root $data ' + '- just set it to null.' ); return } if (!hasOwn(target, key)) { return } delete target[key]; if (!ob) { return } ob.dep.notify(); } /** * Collect dependencies on array elements when the array is touched, since * we cannot intercept array element access like property getters. */ function dependArray (value) { for (var e = (void 0), i = 0, l = value.length; i < l; i++) { e = value[i]; e && e.__ob__ && e.__ob__.dep.depend(); if (Array.isArray(e)) { dependArray(e); } } } /* */ /** * Option overwriting strategies are functions that handle * how to merge a parent option value and a child option * value into the final value. */ var strats = config.optionMergeStrategies; /** * Options with restrictions */ { strats.el = strats.propsData = function (parent, child, vm, key) { if (!vm) { warn( "option \"" + key + "\" can only be used during instance " + 'creation with the `new` keyword.' ); } return defaultStrat(parent, child) }; } /** * Helper that recursively merges two data objects together. */ function mergeData (to, from) { if (!from) { return to } var key, toVal, fromVal; var keys = hasSymbol ? Reflect.ownKeys(from) : Object.keys(from); for (var i = 0; i < keys.length; i++) { key = keys[i]; // in case the object is already observed... if (key === '__ob__') { continue } toVal = to[key]; fromVal = from[key]; if (!hasOwn(to, key)) { set(to, key, fromVal); } else if ( toVal !== fromVal && isPlainObject(toVal) && isPlainObject(fromVal) ) { mergeData(toVal, fromVal); } } return to } /** * Data */ function mergeDataOrFn ( parentVal, childVal, vm ) { if (!vm) { // in a Vue.extend merge, both should be functions if (!childVal) { return parentVal } if (!parentVal) { return childVal } // when parentVal & childVal are both present, // we need to return a function that returns the // merged result of both functions... no need to // check if parentVal is a function here because // it has to be a function to pass previous merges. return function mergedDataFn () { return mergeData( typeof childVal === 'function' ? childVal.call(this, this) : childVal, typeof parentVal === 'function' ? parentVal.call(this, this) : parentVal ) } } else { return function mergedInstanceDataFn () { // instance merge var instanceData = typeof childVal === 'function' ? childVal.call(vm, vm) : childVal; var defaultData = typeof parentVal === 'function' ? parentVal.call(vm, vm) : parentVal; if (instanceData) { return mergeData(instanceData, defaultData) } else { return defaultData } } } } strats.data = function ( parentVal, childVal, vm ) { if (!vm) { if (childVal && typeof childVal !== 'function') { warn( 'The "data" option should be a function ' + 'that returns a per-instance value in component ' + 'definitions.', vm ); return parentVal } return mergeDataOrFn(parentVal, childVal) } return mergeDataOrFn(parentVal, childVal, vm) }; /** * Hooks and props are merged as arrays. */ function mergeHook ( parentVal, childVal ) { var res = childVal ? parentVal ? parentVal.concat(childVal) : Array.isArray(childVal) ? childVal : [childVal] : parentVal; return res ? dedupeHooks(res) : res } function dedupeHooks (hooks) { var res = []; for (var i = 0; i < hooks.length; i++) { if (res.indexOf(hooks[i]) === -1) { res.push(hooks[i]); } } return res } LIFECYCLE_HOOKS.forEach(function (hook) { strats[hook] = mergeHook; }); /** * Assets * * When a vm is present (instance creation), we need to do * a three-way merge between constructor options, instance * options and parent options. */ function mergeAssets ( parentVal, childVal, vm, key ) { var res = Object.create(parentVal || null); if (childVal) { assertObjectType(key, childVal, vm); return extend(res, childVal) } else { return res } } ASSET_TYPES.forEach(function (type) { strats[type + 's'] = mergeAssets; }); /** * Watchers. * * Watchers hashes should not overwrite one * another, so we merge them as arrays. */ strats.watch = function ( parentVal, childVal, vm, key ) { // work around Firefox's Object.prototype.watch... if (parentVal === nativeWatch) { parentVal = undefined; } if (childVal === nativeWatch) { childVal = undefined; } /* istanbul ignore if */ if (!childVal) { return Object.create(parentVal || null) } { assertObjectType(key, childVal, vm); } if (!parentVal) { return childVal } var ret = {}; extend(ret, parentVal); for (var key$1 in childVal) { var parent = ret[key$1]; var child = childVal[key$1]; if (parent && !Array.isArray(parent)) { parent = [parent]; } ret[key$1] = parent ? parent.concat(child) : Array.isArray(child) ? child : [child]; } return ret }; /** * Other object hashes. */ strats.props = strats.methods = strats.inject = strats.computed = function ( parentVal, childVal, vm, key ) { if (childVal && "development" !== 'production') { assertObjectType(key, childVal, vm); } if (!parentVal) { return childVal } var ret = Object.create(null); extend(ret, parentVal); if (childVal) { extend(ret, childVal); } return ret }; strats.provide = mergeDataOrFn; /** * Default strategy. */ var defaultStrat = function (parentVal, childVal) { return childVal === undefined ? parentVal : childVal }; /** * Validate component names */ function checkComponents (options) { for (var key in options.components) { validateComponentName(key); } } function validateComponentName (name) { if (!new RegExp(("^[a-zA-Z][\\-\\.0-9_" + (unicodeRegExp.source) + "]*$")).test(name)) { warn( 'Invalid component name: "' + name + '". Component names ' + 'should conform to valid custom element name in html5 specification.' ); } if (isBuiltInTag(name) || config.isReservedTag(name)) { warn( 'Do not use built-in or reserved HTML elements as component ' + 'id: ' + name ); } } /** * Ensure all props option syntax are normalized into the * Object-based format. */ function normalizeProps (options, vm) { var props = options.props; if (!props) { return } var res = {}; var i, val, name; if (Array.isArray(props)) { i = props.length; while (i--) { val = props[i]; if (typeof val === 'string') { name = camelize(val); res[name] = { type: null }; } else { warn('props must be strings when using array syntax.'); } } } else if (isPlainObject(props)) { for (var key in props) { val = props[key]; name = camelize(key); res[name] = isPlainObject(val) ? val : { type: val }; } } else { warn( "Invalid value for option \"props\": expected an Array or an Object, " + "but got " + (toRawType(props)) + ".", vm ); } options.props = res; } /** * Normalize all injections into Object-based format */ function normalizeInject (options, vm) { var inject = options.inject; if (!inject) { return } var normalized = options.inject = {}; if (Array.isArray(inject)) { for (var i = 0; i < inject.length; i++) { normalized[inject[i]] = { from: inject[i] }; } } else if (isPlainObject(inject)) { for (var key in inject) { var val = inject[key]; normalized[key] = isPlainObject(val) ? extend({ from: key }, val) : { from: val }; } } else { warn( "Invalid value for option \"inject\": expected an Array or an Object, " + "but got " + (toRawType(inject)) + ".", vm ); } } /** * Normalize raw function directives into object format. */ function normalizeDirectives (options) { var dirs = options.directives; if (dirs) { for (var key in dirs) { var def$$1 = dirs[key]; if (typeof def$$1 === 'function') { dirs[key] = { bind: def$$1, update: def$$1 }; } } } } function assertObjectType (name, value, vm) { if (!isPlainObject(value)) { warn( "Invalid value for option \"" + name + "\": expected an Object, " + "but got " + (toRawType(value)) + ".", vm ); } } /** * Merge two option objects into a new one. * Core utility used in both instantiation and inheritance. */ function mergeOptions ( parent, child, vm ) { { checkComponents(child); } if (typeof child === 'function') { child = child.options; } normalizeProps(child, vm); normalizeInject(child, vm); normalizeDirectives(child); // Apply extends and mixins on the child options, // but only if it is a raw options object that isn't // the result of another mergeOptions call. // Only merged options has the _base property. if (!child._base) { if (child.extends) { parent = mergeOptions(parent, child.extends, vm); } if (child.mixins) { for (var i = 0, l = child.mixins.length; i < l; i++) { parent = mergeOptions(parent, child.mixins[i], vm); } } } var options = {}; var key; for (key in parent) { mergeField(key); } for (key in child) { if (!hasOwn(parent, key)) { mergeField(key); } } function mergeField (key) { var strat = strats[key] || defaultStrat; options[key] = strat(parent[key], child[key], vm, key); } return options } /** * Resolve an asset. * This function is used because child instances need access * to assets defined in its ancestor chain. */ function resolveAsset ( options, type, id, warnMissing ) { /* istanbul ignore if */ if (typeof id !== 'string') { return } var assets = options[type]; // check local registration variations first if (hasOwn(assets, id)) { return assets[id] } var camelizedId = camelize(id); if (hasOwn(assets, camelizedId)) { return assets[camelizedId] } var PascalCaseId = capitalize(camelizedId); if (hasOwn(assets, PascalCaseId)) { return assets[PascalCaseId] } // fallback to prototype chain var res = assets[id] || assets[camelizedId] || assets[PascalCaseId]; if (warnMissing && !res) { warn( 'Failed to resolve ' + type.slice(0, -1) + ': ' + id, options ); } return res } /* */ function validateProp ( key, propOptions, propsData, vm ) { var prop = propOptions[key]; var absent = !hasOwn(propsData, key); var value = propsData[key]; // boolean casting var booleanIndex = getTypeIndex(Boolean, prop.type); if (booleanIndex > -1) { if (absent && !hasOwn(prop, 'default')) { value = false; } else if (value === '' || value === hyphenate(key)) { // only cast empty string / same name to boolean if // boolean has higher priority var stringIndex = getTypeIndex(String, prop.type); if (stringIndex < 0 || booleanIndex < stringIndex) { value = true; } } } // check default value if (value === undefined) { value = getPropDefaultValue(vm, prop, key); // since the default value is a fresh copy, // make sure to observe it. var prevShouldObserve = shouldObserve; toggleObserving(true); observe(value); toggleObserving(prevShouldObserve); } { assertProp(prop, key, value, vm, absent); } return value } /** * Get the default value of a prop. */ function getPropDefaultValue (vm, prop, key) { // no default, return undefined if (!hasOwn(prop, 'default')) { return undefined } var def = prop.default; // warn against non-factory defaults for Object & Array if (isObject(def)) { warn( 'Invalid default value for prop "' + key + '": ' + 'Props with type Object/Array must use a factory function ' + 'to return the default value.', vm ); } // the raw prop value was also undefined from previous render, // return previous default value to avoid unnecessary watcher trigger if (vm && vm.$options.propsData && vm.$options.propsData[key] === undefined && vm._props[key] !== undefined ) { return vm._props[key] } // call factory function for non-Function types // a value is Function if its prototype is function even across different execution context return typeof def === 'function' && getType(prop.type) !== 'Function' ? def.call(vm) : def } /** * Assert whether a prop is valid. */ function assertProp ( prop, name, value, vm, absent ) { if (prop.required && absent) { warn( 'Missing required prop: "' + name + '"', vm ); return } if (value == null && !prop.required) { return } var type = prop.type; var valid = !type || type === true; var expectedTypes = []; if (type) { if (!Array.isArray(type)) { type = [type]; } for (var i = 0; i < type.length && !valid; i++) { var assertedType = assertType(value, type[i]); expectedTypes.push(assertedType.expectedType || ''); valid = assertedType.valid; } } if (!valid) { warn( getInvalidTypeMessage(name, value, expectedTypes), vm ); return } var validator = prop.validator; if (validator) { if (!validator(value)) { warn( 'Invalid prop: custom validator check failed for prop "' + name + '".', vm ); } } } var simpleCheckRE = /^(String|Number|Boolean|Function|Symbol)$/; function assertType (value, type) { var valid; var expectedType = getType(type); if (simpleCheckRE.test(expectedType)) { var t = typeof value; valid = t === expectedType.toLowerCase(); // for primitive wrapper objects if (!valid && t === 'object') { valid = value instanceof type; } } else if (expectedType === 'Object') { valid = isPlainObject(value); } else if (expectedType === 'Array') { valid = Array.isArray(value); } else { valid = value instanceof type; } return { valid: valid, expectedType: expectedType } } /** * Use function string name to check built-in types, * because a simple equality check will fail when running * across different vms / iframes. */ function getType (fn) { var match = fn && fn.toString().match(/^\s*function (\w+)/); return match ? match[1] : '' } function isSameType (a, b) { return getType(a) === getType(b) } function getTypeIndex (type, expectedTypes) { if (!Array.isArray(expectedTypes)) { return isSameType(expectedTypes, type) ? 0 : -1 } for (var i = 0, len = expectedTypes.length; i < len; i++) { if (isSameType(expectedTypes[i], type)) { return i } } return -1 } function getInvalidTypeMessage (name, value, expectedTypes) { var message = "Invalid prop: type check failed for prop \"" + name + "\"." + " Expected " + (expectedTypes.map(capitalize).join(', ')); var expectedType = expectedTypes[0]; var receivedType = toRawType(value); var expectedValue = styleValue(value, expectedType); var receivedValue = styleValue(value, receivedType); // check if we need to specify expected value if (expectedTypes.length === 1 && isExplicable(expectedType) && !isBoolean(expectedType, receivedType)) { message += " with value " + expectedValue; } message += ", got " + receivedType + " "; // check if we need to specify received value if (isExplicable(receivedType)) { message += "with value " + receivedValue + "."; } return message } function styleValue (value, type) { if (type === 'String') { return ("\"" + value + "\"") } else if (type === 'Number') { return ("" + (Number(value))) } else { return ("" + value) } } function isExplicable (value) { var explicitTypes = ['string', 'number', 'boolean']; return explicitTypes.some(function (elem) { return value.toLowerCase() === elem; }) } function isBoolean () { var args = [], len = arguments.length; while ( len-- ) args[ len ] = arguments[ len ]; return args.some(function (elem) { return elem.toLowerCase() === 'boolean'; }) } /* */ function handleError (err, vm, info) { // Deactivate deps tracking while processing error handler to avoid possible infinite rendering. // See: https://github.com/vuejs/vuex/issues/1505 pushTarget(); try { if (vm) { var cur = vm; while ((cur = cur.$parent)) { var hooks = cur.$options.errorCaptured; if (hooks) { for (var i = 0; i < hooks.length; i++) { try { var capture = hooks[i].call(cur, err, vm, info) === false; if (capture) { return } } catch (e) { globalHandleError(e, cur, 'errorCaptured hook'); } } } } } globalHandleError(err, vm, info); } finally { popTarget(); } } function invokeWithErrorHandling ( handler, context, args, vm, info ) { var res; try { res = args ? handler.apply(context, args) : handler.call(context); if (res && !res._isVue && isPromise(res) && !res._handled) { res.catch(function (e) { return handleError(e, vm, info + " (Promise/async)"); }); // issue #9511 // avoid catch triggering multiple times when nested calls res._handled = true; } } catch (e) { handleError(e, vm, info); } return res } function globalHandleError (err, vm, info) { if (config.errorHandler) { try { return config.errorHandler.call(null, err, vm, info) } catch (e) { // if the user intentionally throws the original error in the handler, // do not log it twice if (e !== err) { logError(e, null, 'config.errorHandler'); } } } logError(err, vm, info); } function logError (err, vm, info) { { warn(("Error in " + info + ": \"" + (err.toString()) + "\""), vm); } /* istanbul ignore else */ if ((inBrowser || inWeex) && typeof console !== 'undefined') { console.error(err); } else { throw err } } /* */ var isUsingMicroTask = false; var callbacks = []; var pending = false; function flushCallbacks () { pending = false; var copies = callbacks.slice(0); callbacks.length = 0; for (var i = 0; i < copies.length; i++) { copies[i](); } } // Here we have async deferring wrappers using microtasks. // In 2.5 we used (macro) tasks (in combination with microtasks). // However, it has subtle problems when state is changed right before repaint // (e.g. #6813, out-in transitions). // Also, using (macro) tasks in event handler would cause some weird behaviors // that cannot be circumvented (e.g. #7109, #7153, #7546, #7834, #8109). // So we now use microtasks everywhere, again. // A major drawback of this tradeoff is that there are some scenarios // where microtasks have too high a priority and fire in between supposedly // sequential events (e.g. #4521, #6690, which have workarounds) // or even between bubbling of the same event (#6566). var timerFunc; // The nextTick behavior leverages the microtask queue, which can be accessed // via either native Promise.then or MutationObserver. // MutationObserver has wider support, however it is seriously bugged in // UIWebView in iOS >= 9.3.3 when triggered in touch event handlers. It // completely stops working after triggering a few times... so, if native // Promise is available, we will use it: /* istanbul ignore next, $flow-disable-line */ if (typeof Promise !== 'undefined' && isNative(Promise)) { var p = Promise.resolve(); timerFunc = function () { p.then(flushCallbacks); // In problematic UIWebViews, Promise.then doesn't completely break, but // it can get stuck in a weird state where callbacks are pushed into the // microtask queue but the queue isn't being flushed, until the browser // needs to do some other work, e.g. handle a timer. Therefore we can // "force" the microtask queue to be flushed by adding an empty timer. if (isIOS) { setTimeout(noop); } }; isUsingMicroTask = true; } else if (!isIE && typeof MutationObserver !== 'undefined' && ( isNative(MutationObserver) || // PhantomJS and iOS 7.x MutationObserver.toString() === '[object MutationObserverConstructor]' )) { // Use MutationObserver where native Promise is not available, // e.g. PhantomJS, iOS7, Android 4.4 // (#6466 MutationObserver is unreliable in IE11) var counter = 1; var observer = new MutationObserver(flushCallbacks); var textNode = document.createTextNode(String(counter)); observer.observe(textNode, { characterData: true }); timerFunc = function () { counter = (counter + 1) % 2; textNode.data = String(counter); }; isUsingMicroTask = true; } else if (typeof setImmediate !== 'undefined' && isNative(setImmediate)) { // Fallback to setImmediate. // Technically it leverages the (macro) task queue, // but it is still a better choice than setTimeout. timerFunc = function () { setImmediate(flushCallbacks); }; } else { // Fallback to setTimeout. timerFunc = function () { setTimeout(flushCallbacks, 0); }; } function nextTick (cb, ctx) { var _resolve; callbacks.push(function () { if (cb) { try { cb.call(ctx); } catch (e) { handleError(e, ctx, 'nextTick'); } } else if (_resolve) { _resolve(ctx); } }); if (!pending) { pending = true; timerFunc(); } // $flow-disable-line if (!cb && typeof Promise !== 'undefined') { return new Promise(function (resolve) { _resolve = resolve; }) } } /* */ var mark; var measure; { var perf = inBrowser && window.performance; /* istanbul ignore if */ if ( perf && perf.mark && perf.measure && perf.clearMarks && perf.clearMeasures ) { mark = function (tag) { return perf.mark(tag); }; measure = function (name, startTag, endTag) { perf.measure(name, startTag, endTag); perf.clearMarks(startTag); perf.clearMarks(endTag); // perf.clearMeasures(name) }; } } /* not type checking this file because flow doesn't play well with Proxy */ var initProxy; { var allowedGlobals = makeMap( 'Infinity,undefined,NaN,isFinite,isNaN,' + 'parseFloat,parseInt,decodeURI,decodeURIComponent,encodeURI,encodeURIComponent,' + 'Math,Number,Date,Array,Object,Boolean,String,RegExp,Map,Set,JSON,Intl,' + 'require' // for Webpack/Browserify ); var warnNonPresent = function (target, key) { warn( "Property or method \"" + key + "\" is not defined on the instance but " + 'referenced during render. Make sure that this property is reactive, ' + 'either in the data option, or for class-based components, by ' + 'initializing the property. ' + 'See: https://vuejs.org/v2/guide/reactivity.html#Declaring-Reactive-Properties.', target ); }; var warnReservedPrefix = function (target, key) { warn( "Property \"" + key + "\" must be accessed with \"$data." + key + "\" because " + 'properties starting with "$" or "_" are not proxied in the Vue instance to ' + 'prevent conflicts with Vue internals. ' + 'See: https://vuejs.org/v2/api/#data', target ); }; var hasProxy = typeof Proxy !== 'undefined' && isNative(Proxy); if (hasProxy) { var isBuiltInModifier = makeMap('stop,prevent,self,ctrl,shift,alt,meta,exact'); config.keyCodes = new Proxy(config.keyCodes, { set: function set (target, key, value) { if (isBuiltInModifier(key)) { warn(("Avoid overwriting built-in modifier in config.keyCodes: ." + key)); return false } else { target[key] = value; return true } } }); } var hasHandler = { has: function has (target, key) { var has = key in target; var isAllowed = allowedGlobals(key) || (typeof key === 'string' && key.charAt(0) === '_' && !(key in target.$data)); if (!has && !isAllowed) { if (key in target.$data) { warnReservedPrefix(target, key); } else { warnNonPresent(target, key); } } return has || !isAllowed } }; var getHandler = { get: function get (target, key) { if (typeof key === 'string' && !(key in target)) { if (key in target.$data) { warnReservedPrefix(target, key); } else { warnNonPresent(target, key); } } return target[key] } }; initProxy = function initProxy (vm) { if (hasProxy) { // determine which proxy handler to use var options = vm.$options; var handlers = options.render && options.render._withStripped ? getHandler : hasHandler; vm._renderProxy = new Proxy(vm, handlers); } else { vm._renderProxy = vm; } }; } /* */ var seenObjects = new _Set(); /** * Recursively traverse an object to evoke all converted * getters, so that every nested property inside the object * is collected as a "deep" dependency. */ function traverse (val) { _traverse(val, seenObjects); seenObjects.clear(); } function _traverse (val, seen) { var i, keys; var isA = Array.isArray(val); if ((!isA && !isObject(val)) || Object.isFrozen(val) || val instanceof VNode) { return } if (val.__ob__) { var depId = val.__ob__.dep.id; if (seen.has(depId)) { return } seen.add(depId); } if (isA) { i = val.length; while (i--) { _traverse(val[i], seen); } } else { keys = Object.keys(val); i = keys.length; while (i--) { _traverse(val[keys[i]], seen); } } } /* */ var normalizeEvent = cached(function (name) { var passive = name.charAt(0) === '&'; name = passive ? name.slice(1) : name; var once$$1 = name.charAt(0) === '~'; // Prefixed last, checked first name = once$$1 ? name.slice(1) : name; var capture = name.charAt(0) === '!'; name = capture ? name.slice(1) : name; return { name: name, once: once$$1, capture: capture, passive: passive } }); function createFnInvoker (fns, vm) { function invoker () { var arguments$1 = arguments; var fns = invoker.fns; if (Array.isArray(fns)) { var cloned = fns.slice(); for (var i = 0; i < cloned.length; i++) { invokeWithErrorHandling(cloned[i], null, arguments$1, vm, "v-on handler"); } } else { // return handler return value for single handlers return invokeWithErrorHandling(fns, null, arguments, vm, "v-on handler") } } invoker.fns = fns; return invoker } function updateListeners ( on, oldOn, add, remove$$1, createOnceHandler, vm ) { var name, cur, old, event; for (name in on) { cur = on[name]; old = oldOn[name]; event = normalizeEvent(name); if (isUndef(cur)) { warn( "Invalid handler for event \"" + (event.name) + "\": got " + String(cur), vm ); } else if (isUndef(old)) { if (isUndef(cur.fns)) { cur = on[name] = createFnInvoker(cur, vm); } if (isTrue(event.once)) { cur = on[name] = createOnceHandler(event.name, cur, event.capture); } add(event.name, cur, event.capture, event.passive, event.params); } else if (cur !== old) { old.fns = cur; on[name] = old; } } for (name in oldOn) { if (isUndef(on[name])) { event = normalizeEvent(name); remove$$1(event.name, oldOn[name], event.capture); } } } /* */ function mergeVNodeHook (def, hookKey, hook) { if (def instanceof VNode) { def = def.data.hook || (def.data.hook = {}); } var invoker; var oldHook = def[hookKey]; function wrappedHook () { hook.apply(this, arguments); // important: remove merged hook to ensure it's called only once // and prevent memory leak remove(invoker.fns, wrappedHook); } if (isUndef(oldHook)) { // no existing hook invoker = createFnInvoker([wrappedHook]); } else { /* istanbul ignore if */ if (isDef(oldHook.fns) && isTrue(oldHook.merged)) { // already a merged invoker invoker = oldHook; invoker.fns.push(wrappedHook); } else { // existing plain hook invoker = createFnInvoker([oldHook, wrappedHook]); } } invoker.merged = true; def[hookKey] = invoker; } /* */ function extractPropsFromVNodeData ( data, Ctor, tag ) { // we are only extracting raw values here. // validation and default values are handled in the child // component itself. var propOptions = Ctor.options.props; if (isUndef(propOptions)) { return } var res = {}; var attrs = data.attrs; var props = data.props; if (isDef(attrs) || isDef(props)) { for (var key in propOptions) { var altKey = hyphenate(key); { var keyInLowerCase = key.toLowerCase(); if ( key !== keyInLowerCase && attrs && hasOwn(attrs, keyInLowerCase) ) { tip( "Prop \"" + keyInLowerCase + "\" is passed to component " + (formatComponentName(tag || Ctor)) + ", but the declared prop name is" + " \"" + key + "\". " + "Note that HTML attributes are case-insensitive and camelCased " + "props need to use their kebab-case equivalents when using in-DOM " + "templates. You should probably use \"" + altKey + "\" instead of \"" + key + "\"." ); } } checkProp(res, props, key, altKey, true) || checkProp(res, attrs, key, altKey, false); } } return res } function checkProp ( res, hash, key, altKey, preserve ) { if (isDef(hash)) { if (hasOwn(hash, key)) { res[key] = hash[key]; if (!preserve) { delete hash[key]; } return true } else if (hasOwn(hash, altKey)) { res[key] = hash[altKey]; if (!preserve) { delete hash[altKey]; } return true } } return false } /* */ // The template compiler attempts to minimize the need for normalization by // statically analyzing the template at compile time. // // For plain HTML markup, normalization can be completely skipped because the // generated render function is guaranteed to return Array<VNode>. There are // two cases where extra normalization is needed: // 1. When the children contains components - because a functional component // may return an Array instead of a single root. In this case, just a simple // normalization is needed - if any child is an Array, we flatten the whole // thing with Array.prototype.concat. It is guaranteed to be only 1-level deep // because functional components already normalize their own children. function simpleNormalizeChildren (children) { for (var i = 0; i < children.length; i++) { if (Array.isArray(children[i])) { return Array.prototype.concat.apply([], children) } } return children } // 2. When the children contains constructs that always generated nested Arrays, // e.g. <template>, <slot>, v-for, or when the children is provided by user // with hand-written render functions / JSX. In such cases a full normalization // is needed to cater to all possible types of children values. function normalizeChildren (children) { return isPrimitive(children) ? [createTextVNode(children)] : Array.isArray(children) ? normalizeArrayChildren(children) : undefined } function isTextNode (node) { return isDef(node) && isDef(node.text) && isFalse(node.isComment) } function normalizeArrayChildren (children, nestedIndex) { var res = []; var i, c, lastIndex, last; for (i = 0; i < children.length; i++) { c = children[i]; if (isUndef(c) || typeof c === 'boolean') { continue } lastIndex = res.length - 1; last = res[lastIndex]; // nested if (Array.isArray(c)) { if (c.length > 0) { c = normalizeArrayChildren(c, ((nestedIndex || '') + "_" + i)); // merge adjacent text nodes if (isTextNode(c[0]) && isTextNode(last)) { res[lastIndex] = createTextVNode(last.text + (c[0]).text); c.shift(); } res.push.apply(res, c); } } else if (isPrimitive(c)) { if (isTextNode(last)) { // merge adjacent text nodes // this is necessary for SSR hydration because text nodes are // essentially merged when rendered to HTML strings res[lastIndex] = createTextVNode(last.text + c); } else if (c !== '') { // convert primitive to vnode res.push(createTextVNode(c)); } } else { if (isTextNode(c) && isTextNode(last)) { // merge adjacent text nodes res[lastIndex] = createTextVNode(last.text + c.text); } else { // default key for nested array children (likely generated by v-for) if (isTrue(children._isVList) && isDef(c.tag) && isUndef(c.key) && isDef(nestedIndex)) { c.key = "__vlist" + nestedIndex + "_" + i + "__"; } res.push(c); } } } return res } /* */ function initProvide (vm) { var provide = vm.$options.provide; if (provide) { vm._provided = typeof provide === 'function' ? provide.call(vm) : provide; } } function initInjections (vm) { var result = resolveInject(vm.$options.inject, vm); if (result) { toggleObserving(false); Object.keys(result).forEach(function (key) { /* istanbul ignore else */ { defineReactive$$1(vm, key, result[key], function () { warn( "Avoid mutating an injected value directly since the changes will be " + "overwritten whenever the provided component re-renders. " + "injection being mutated: \"" + key + "\"", vm ); }); } }); toggleObserving(true); } } function resolveInject (inject, vm) { if (inject) { // inject is :any because flow is not smart enough to figure out cached var result = Object.create(null); var keys = hasSymbol ? Reflect.ownKeys(inject) : Object.keys(inject); for (var i = 0; i < keys.length; i++) { var key = keys[i]; // #6574 in case the inject object is observed... if (key === '__ob__') { continue } var provideKey = inject[key].from; var source = vm; while (source) { if (source._provided && hasOwn(source._provided, provideKey)) { result[key] = source._provided[provideKey]; break } source = source.$parent; } if (!source) { if ('default' in inject[key]) { var provideDefault = inject[key].default; result[key] = typeof provideDefault === 'function' ? provideDefault.call(vm) : provideDefault; } else { warn(("Injection \"" + key + "\" not found"), vm); } } } return result } } /* */ /** * Runtime helper for resolving raw children VNodes into a slot object. */ function resolveSlots ( children, context ) { if (!children || !children.length) { return {} } var slots = {}; for (var i = 0, l = children.length; i < l; i++) { var child = children[i]; var data = child.data; // remove slot attribute if the node is resolved as a Vue slot node if (data && data.attrs && data.attrs.slot) { delete data.attrs.slot; } // named slots should only be respected if the vnode was rendered in the // same context. if ((child.context === context || child.fnContext === context) && data && data.slot != null ) { var name = data.slot; var slot = (slots[name] || (slots[name] = [])); if (child.tag === 'template') { slot.push.apply(slot, child.children || []); } else { slot.push(child); } } else { (slots.default || (slots.default = [])).push(child); } } // ignore slots that contains only whitespace for (var name$1 in slots) { if (slots[name$1].every(isWhitespace)) { delete slots[name$1]; } } return slots } function isWhitespace (node) { return (node.isComment && !node.asyncFactory) || node.text === ' ' } /* */ function normalizeScopedSlots ( slots, normalSlots, prevSlots ) { var res; var hasNormalSlots = Object.keys(normalSlots).length > 0; var isStable = slots ? !!slots.$stable : !hasNormalSlots; var key = slots && slots.$key; if (!slots) { res = {}; } else if (slots._normalized) { // fast path 1: child component re-render only, parent did not change return slots._normalized } else if ( isStable && prevSlots && prevSlots !== emptyObject && key === prevSlots.$key && !hasNormalSlots && !prevSlots.$hasNormal ) { // fast path 2: stable scoped slots w/ no normal slots to proxy, // only need to normalize once return prevSlots } else { res = {}; for (var key$1 in slots) { if (slots[key$1] && key$1[0] !== '$') { res[key$1] = normalizeScopedSlot(normalSlots, key$1, slots[key$1]); } } } // expose normal slots on scopedSlots for (var key$2 in normalSlots) { if (!(key$2 in res)) { res[key$2] = proxyNormalSlot(normalSlots, key$2); } } // avoriaz seems to mock a non-extensible $scopedSlots object // and when that is passed down this would cause an error if (slots && Object.isExtensible(slots)) { (slots)._normalized = res; } def(res, '$stable', isStable); def(res, '$key', key); def(res, '$hasNormal', hasNormalSlots); return res } function normalizeScopedSlot(normalSlots, key, fn) { var normalized = function () { var res = arguments.length ? fn.apply(null, arguments) : fn({}); res = res && typeof res === 'object' && !Array.isArray(res) ? [res] // single vnode : normalizeChildren(res); return res && ( res.length === 0 || (res.length === 1 && res[0].isComment) // #9658 ) ? undefined : res }; // this is a slot using the new v-slot syntax without scope. although it is // compiled as a scoped slot, render fn users would expect it to be present // on this.$slots because the usage is semantically a normal slot. if (fn.proxy) { Object.defineProperty(normalSlots, key, { get: normalized, enumerable: true, configurable: true }); } return normalized } function proxyNormalSlot(slots, key) { return function () { return slots[key]; } } /* */ /** * Runtime helper for rendering v-for lists. */ function renderList ( val, render ) { var ret, i, l, keys, key; if (Array.isArray(val) || typeof val === 'string') { ret = new Array(val.length); for (i = 0, l = val.length; i < l; i++) { ret[i] = render(val[i], i); } } else if (typeof val === 'number') { ret = new Array(val); for (i = 0; i < val; i++) { ret[i] = render(i + 1, i); } } else if (isObject(val)) { if (hasSymbol && val[Symbol.iterator]) { ret = []; var iterator = val[Symbol.iterator](); var result = iterator.next(); while (!result.done) { ret.push(render(result.value, ret.length)); result = iterator.next(); } } else { keys = Object.keys(val); ret = new Array(keys.length); for (i = 0, l = keys.length; i < l; i++) { key = keys[i]; ret[i] = render(val[key], key, i); } } } if (!isDef(ret)) { ret = []; } (ret)._isVList = true; return ret } /* */ /** * Runtime helper for rendering <slot> */ function renderSlot ( name, fallback, props, bindObject ) { var scopedSlotFn = this.$scopedSlots[name]; var nodes; if (scopedSlotFn) { // scoped slot props = props || {}; if (bindObject) { if (!isObject(bindObject)) { warn( 'slot v-bind without argument expects an Object', this ); } props = extend(extend({}, bindObject), props); } nodes = scopedSlotFn(props) || fallback; } else { nodes = this.$slots[name] || fallback; } var target = props && props.slot; if (target) { return this.$createElement('template', { slot: target }, nodes) } else { return nodes } } /* */ /** * Runtime helper for resolving filters */ function resolveFilter (id) { return resolveAsset(this.$options, 'filters', id, true) || identity } /* */ function isKeyNotMatch (expect, actual) { if (Array.isArray(expect)) { return expect.indexOf(actual) === -1 } else { return expect !== actual } } /** * Runtime helper for checking keyCodes from config. * exposed as Vue.prototype._k * passing in eventKeyName as last argument separately for backwards compat */ function checkKeyCodes ( eventKeyCode, key, builtInKeyCode, eventKeyName, builtInKeyName ) { var mappedKeyCode = config.keyCodes[key] || builtInKeyCode; if (builtInKeyName && eventKeyName && !config.keyCodes[key]) { return isKeyNotMatch(builtInKeyName, eventKeyName) } else if (mappedKeyCode) { return isKeyNotMatch(mappedKeyCode, eventKeyCode) } else if (eventKeyName) { return hyphenate(eventKeyName) !== key } } /* */ /** * Runtime helper for merging v-bind="object" into a VNode's data. */ function bindObjectProps ( data, tag, value, asProp, isSync ) { if (value) { if (!isObject(value)) { warn( 'v-bind without argument expects an Object or Array value', this ); } else { if (Array.isArray(value)) { value = toObject(value); } var hash; var loop = function ( key ) { if ( key === 'class' || key === 'style' || isReservedAttribute(key) ) { hash = data; } else { var type = data.attrs && data.attrs.type; hash = asProp || config.mustUseProp(tag, type, key) ? data.domProps || (data.domProps = {}) : data.attrs || (data.attrs = {}); } var camelizedKey = camelize(key); var hyphenatedKey = hyphenate(key); if (!(camelizedKey in hash) && !(hyphenatedKey in hash)) { hash[key] = value[key]; if (isSync) { var on = data.on || (data.on = {}); on[("update:" + key)] = function ($event) { value[key] = $event; }; } } }; for (var key in value) loop( key ); } } return data } /* */ /** * Runtime helper for rendering static trees. */ function renderStatic ( index, isInFor ) { var cached = this._staticTrees || (this._staticTrees = []); var tree = cached[index]; // if has already-rendered static tree and not inside v-for, // we can reuse the same tree. if (tree && !isInFor) { return tree } // otherwise, render a fresh tree. tree = cached[index] = this.$options.staticRenderFns[index].call( this._renderProxy, null, this // for render fns generated for functional component templates ); markStatic(tree, ("__static__" + index), false); return tree } /** * Runtime helper for v-once. * Effectively it means marking the node as static with a unique key. */ function markOnce ( tree, index, key ) { markStatic(tree, ("__once__" + index + (key ? ("_" + key) : "")), true); return tree } function markStatic ( tree, key, isOnce ) { if (Array.isArray(tree)) { for (var i = 0; i < tree.length; i++) { if (tree[i] && typeof tree[i] !== 'string') { markStaticNode(tree[i], (key + "_" + i), isOnce); } } } else { markStaticNode(tree, key, isOnce); } } function markStaticNode (node, key, isOnce) { node.isStatic = true; node.key = key; node.isOnce = isOnce; } /* */ function bindObjectListeners (data, value) { if (value) { if (!isPlainObject(value)) { warn( 'v-on without argument expects an Object value', this ); } else { var on = data.on = data.on ? extend({}, data.on) : {}; for (var key in value) { var existing = on[key]; var ours = value[key]; on[key] = existing ? [].concat(existing, ours) : ours; } } } return data } /* */ function resolveScopedSlots ( fns, // see flow/vnode res, // the following are added in 2.6 hasDynamicKeys, contentHashKey ) { res = res || { $stable: !hasDynamicKeys }; for (var i = 0; i < fns.length; i++) { var slot = fns[i]; if (Array.isArray(slot)) { resolveScopedSlots(slot, res, hasDynamicKeys); } else if (slot) { // marker for reverse proxying v-slot without scope on this.$slots if (slot.proxy) { slot.fn.proxy = true; } res[slot.key] = slot.fn; } } if (contentHashKey) { (res).$key = contentHashKey; } return res } /* */ function bindDynamicKeys (baseObj, values) { for (var i = 0; i < values.length; i += 2) { var key = values[i]; if (typeof key === 'string' && key) { baseObj[values[i]] = values[i + 1]; } else if (key !== '' && key !== null) { // null is a special value for explicitly removing a binding warn( ("Invalid value for dynamic directive argument (expected string or null): " + key), this ); } } return baseObj } // helper to dynamically append modifier runtime markers to event names. // ensure only append when value is already string, otherwise it will be cast // to string and cause the type check to miss. function prependModifier (value, symbol) { return typeof value === 'string' ? symbol + value : value } /* */ function installRenderHelpers (target) { target._o = markOnce; target._n = toNumber; target._s = toString; target._l = renderList; target._t = renderSlot; target._q = looseEqual; target._i = looseIndexOf; target._m = renderStatic; target._f = resolveFilter; target._k = checkKeyCodes; target._b = bindObjectProps; target._v = createTextVNode; target._e = createEmptyVNode; target._u = resolveScopedSlots; target._g = bindObjectListeners; target._d = bindDynamicKeys; target._p = prependModifier; } /* */ function FunctionalRenderContext ( data, props, children, parent, Ctor ) { var this$1 = this; var options = Ctor.options; // ensure the createElement function in functional components // gets a unique context - this is necessary for correct named slot check var contextVm; if (hasOwn(parent, '_uid')) { contextVm = Object.create(parent); // $flow-disable-line contextVm._original = parent; } else { // the context vm passed in is a functional context as well. // in this case we want to make sure we are able to get a hold to the // real context instance. contextVm = parent; // $flow-disable-line parent = parent._original; } var isCompiled = isTrue(options._compiled); var needNormalization = !isCompiled; this.data = data; this.props = props; this.children = children; this.parent = parent; this.listeners = data.on || emptyObject; this.injections = resolveInject(options.inject, parent); this.slots = function () { if (!this$1.$slots) { normalizeScopedSlots( data.scopedSlots, this$1.$slots = resolveSlots(children, parent) ); } return this$1.$slots }; Object.defineProperty(this, 'scopedSlots', ({ enumerable: true, get: function get () { return normalizeScopedSlots(data.scopedSlots, this.slots()) } })); // support for compiled functional template if (isCompiled) { // exposing $options for renderStatic() this.$options = options; // pre-resolve slots for renderSlot() this.$slots = this.slots(); this.$scopedSlots = normalizeScopedSlots(data.scopedSlots, this.$slots); } if (options._scopeId) { this._c = function (a, b, c, d) { var vnode = createElement(contextVm, a, b, c, d, needNormalization); if (vnode && !Array.isArray(vnode)) { vnode.fnScopeId = options._scopeId; vnode.fnContext = parent; } return vnode }; } else { this._c = function (a, b, c, d) { return createElement(contextVm, a, b, c, d, needNormalization); }; } } installRenderHelpers(FunctionalRenderContext.prototype); function createFunctionalComponent ( Ctor, propsData, data, contextVm, children ) { var options = Ctor.options; var props = {}; var propOptions = options.props; if (isDef(propOptions)) { for (var key in propOptions) { props[key] = validateProp(key, propOptions, propsData || emptyObject); } } else { if (isDef(data.attrs)) { mergeProps(props, data.attrs); } if (isDef(data.props)) { mergeProps(props, data.props); } } var renderContext = new FunctionalRenderContext( data, props, children, contextVm, Ctor ); var vnode = options.render.call(null, renderContext._c, renderContext); if (vnode instanceof VNode) { return cloneAndMarkFunctionalResult(vnode, data, renderContext.parent, options, renderContext) } else if (Array.isArray(vnode)) { var vnodes = normalizeChildren(vnode) || []; var res = new Array(vnodes.length); for (var i = 0; i < vnodes.length; i++) { res[i] = cloneAndMarkFunctionalResult(vnodes[i], data, renderContext.parent, options, renderContext); } return res } } function cloneAndMarkFunctionalResult (vnode, data, contextVm, options, renderContext) { // #7817 clone node before setting fnContext, otherwise if the node is reused // (e.g. it was from a cached normal slot) the fnContext causes named slots // that should not be matched to match. var clone = cloneVNode(vnode); clone.fnContext = contextVm; clone.fnOptions = options; { (clone.devtoolsMeta = clone.devtoolsMeta || {}).renderContext = renderContext; } if (data.slot) { (clone.data || (clone.data = {})).slot = data.slot; } return clone } function mergeProps (to, from) { for (var key in from) { to[camelize(key)] = from[key]; } } /* */ /* */ /* */ /* */ // inline hooks to be invoked on component VNodes during patch var componentVNodeHooks = { init: function init (vnode, hydrating) { if ( vnode.componentInstance && !vnode.componentInstance._isDestroyed && vnode.data.keepAlive ) { // kept-alive components, treat as a patch var mountedNode = vnode; // work around flow componentVNodeHooks.prepatch(mountedNode, mountedNode); } else { var child = vnode.componentInstance = createComponentInstanceForVnode( vnode, activeInstance ); child.$mount(hydrating ? vnode.elm : undefined, hydrating); } }, prepatch: function prepatch (oldVnode, vnode) { var options = vnode.componentOptions; var child = vnode.componentInstance = oldVnode.componentInstance; updateChildComponent( child, options.propsData, // updated props options.listeners, // updated listeners vnode, // new parent vnode options.children // new children ); }, insert: function insert (vnode) { var context = vnode.context; var componentInstance = vnode.componentInstance; if (!componentInstance._isMounted) { componentInstance._isMounted = true; callHook(componentInstance, 'mounted'); } if (vnode.data.keepAlive) { if (context._isMounted) { // vue-router#1212 // During updates, a kept-alive component's child components may // change, so directly walking the tree here may call activated hooks // on incorrect children. Instead we push them into a queue which will // be processed after the whole patch process ended. queueActivatedComponent(componentInstance); } else { activateChildComponent(componentInstance, true /* direct */); } } }, destroy: function destroy (vnode) { var componentInstance = vnode.componentInstance; if (!componentInstance._isDestroyed) { if (!vnode.data.keepAlive) { componentInstance.$destroy(); } else { deactivateChildComponent(componentInstance, true /* direct */); } } } }; var hooksToMerge = Object.keys(componentVNodeHooks); function createComponent ( Ctor, data, context, children, tag ) { if (isUndef(Ctor)) { return } var baseCtor = context.$options._base; // plain options object: turn it into a constructor if (isObject(Ctor)) { Ctor = baseCtor.extend(Ctor); } // if at this stage it's not a constructor or an async component factory, // reject. if (typeof Ctor !== 'function') { { warn(("Invalid Component definition: " + (String(Ctor))), context); } return } // async component var asyncFactory; if (isUndef(Ctor.cid)) { asyncFactory = Ctor; Ctor = resolveAsyncComponent(asyncFactory, baseCtor); if (Ctor === undefined) { // return a placeholder node for async component, which is rendered // as a comment node but preserves all the raw information for the node. // the information will be used for async server-rendering and hydration. return createAsyncPlaceholder( asyncFactory, data, context, children, tag ) } } data = data || {}; // resolve constructor options in case global mixins are applied after // component constructor creation resolveConstructorOptions(Ctor); // transform component v-model data into props & events if (isDef(data.model)) { transformModel(Ctor.options, data); } // extract props var propsData = extractPropsFromVNodeData(data, Ctor, tag); // functional component if (isTrue(Ctor.options.functional)) { return createFunctionalComponent(Ctor, propsData, data, context, children) } // extract listeners, since these needs to be treated as // child component listeners instead of DOM listeners var listeners = data.on; // replace with listeners with .native modifier // so it gets processed during parent component patch. data.on = data.nativeOn; if (isTrue(Ctor.options.abstract)) { // abstract components do not keep anything // other than props & listeners & slot // work around flow var slot = data.slot; data = {}; if (slot) { data.slot = slot; } } // install component management hooks onto the placeholder node installComponentHooks(data); // return a placeholder vnode var name = Ctor.options.name || tag; var vnode = new VNode( ("vue-component-" + (Ctor.cid) + (name ? ("-" + name) : '')), data, undefined, undefined, undefined, context, { Ctor: Ctor, propsData: propsData, listeners: listeners, tag: tag, children: children }, asyncFactory ); return vnode } function createComponentInstanceForVnode ( vnode, // we know it's MountedComponentVNode but flow doesn't parent // activeInstance in lifecycle state ) { var options = { _isComponent: true, _parentVnode: vnode, parent: parent }; // check inline-template render functions var inlineTemplate = vnode.data.inlineTemplate; if (isDef(inlineTemplate)) { options.render = inlineTemplate.render; options.staticRenderFns = inlineTemplate.staticRenderFns; } return new vnode.componentOptions.Ctor(options) } function installComponentHooks (data) { var hooks = data.hook || (data.hook = {}); for (var i = 0; i < hooksToMerge.length; i++) { var key = hooksToMerge[i]; var existing = hooks[key]; var toMerge = componentVNodeHooks[key]; if (existing !== toMerge && !(existing && existing._merged)) { hooks[key] = existing ? mergeHook$1(toMerge, existing) : toMerge; } } } function mergeHook$1 (f1, f2) { var merged = function (a, b) { // flow complains about extra args which is why we use any f1(a, b); f2(a, b); }; merged._merged = true; return merged } // transform component v-model info (value and callback) into // prop and event handler respectively. function transformModel (options, data) { var prop = (options.model && options.model.prop) || 'value'; var event = (options.model && options.model.event) || 'input' ;(data.attrs || (data.attrs = {}))[prop] = data.model.value; var on = data.on || (data.on = {}); var existing = on[event]; var callback = data.model.callback; if (isDef(existing)) { if ( Array.isArray(existing) ? existing.indexOf(callback) === -1 : existing !== callback ) { on[event] = [callback].concat(existing); } } else { on[event] = callback; } } /* */ var SIMPLE_NORMALIZE = 1; var ALWAYS_NORMALIZE = 2; // wrapper function for providing a more flexible interface // without getting yelled at by flow function createElement ( context, tag, data, children, normalizationType, alwaysNormalize ) { if (Array.isArray(data) || isPrimitive(data)) { normalizationType = children; children = data; data = undefined; } if (isTrue(alwaysNormalize)) { normalizationType = ALWAYS_NORMALIZE; } return _createElement(context, tag, data, children, normalizationType) } function _createElement ( context, tag, data, children, normalizationType ) { if (isDef(data) && isDef((data).__ob__)) { warn( "Avoid using observed data object as vnode data: " + (JSON.stringify(data)) + "\n" + 'Always create fresh vnode data objects in each render!', context ); return createEmptyVNode() } // object syntax in v-bind if (isDef(data) && isDef(data.is)) { tag = data.is; } if (!tag) { // in case of component :is set to falsy value return createEmptyVNode() } // warn against non-primitive key if (isDef(data) && isDef(data.key) && !isPrimitive(data.key) ) { { warn( 'Avoid using non-primitive value as key, ' + 'use string/number value instead.', context ); } } // support single function children as default scoped slot if (Array.isArray(children) && typeof children[0] === 'function' ) { data = data || {}; data.scopedSlots = { default: children[0] }; children.length = 0; } if (normalizationType === ALWAYS_NORMALIZE) { children = normalizeChildren(children); } else if (normalizationType === SIMPLE_NORMALIZE) { children = simpleNormalizeChildren(children); } var vnode, ns; if (typeof tag === 'string') { var Ctor; ns = (context.$vnode && context.$vnode.ns) || config.getTagNamespace(tag); if (config.isReservedTag(tag)) { // platform built-in elements if (isDef(data) && isDef(data.nativeOn)) { warn( ("The .native modifier for v-on is only valid on components but it was used on <" + tag + ">."), context ); } vnode = new VNode( config.parsePlatformTagName(tag), data, children, undefined, undefined, context ); } else if ((!data || !data.pre) && isDef(Ctor = resolveAsset(context.$options, 'components', tag))) { // component vnode = createComponent(Ctor, data, context, children, tag); } else { // unknown or unlisted namespaced elements // check at runtime because it may get assigned a namespace when its // parent normalizes children vnode = new VNode( tag, data, children, undefined, undefined, context ); } } else { // direct component options / constructor vnode = createComponent(tag, data, context, children); } if (Array.isArray(vnode)) { return vnode } else if (isDef(vnode)) { if (isDef(ns)) { applyNS(vnode, ns); } if (isDef(data)) { registerDeepBindings(data); } return vnode } else { return createEmptyVNode() } } function applyNS (vnode, ns, force) { vnode.ns = ns; if (vnode.tag === 'foreignObject') { // use default namespace inside foreignObject ns = undefined; force = true; } if (isDef(vnode.children)) { for (var i = 0, l = vnode.children.length; i < l; i++) { var child = vnode.children[i]; if (isDef(child.tag) && ( isUndef(child.ns) || (isTrue(force) && child.tag !== 'svg'))) { applyNS(child, ns, force); } } } } // ref #5318 // necessary to ensure parent re-render when deep bindings like :style and // :class are used on slot nodes function registerDeepBindings (data) { if (isObject(data.style)) { traverse(data.style); } if (isObject(data.class)) { traverse(data.class); } } /* */ function initRender (vm) { vm._vnode = null; // the root of the child tree vm._staticTrees = null; // v-once cached trees var options = vm.$options; var parentVnode = vm.$vnode = options._parentVnode; // the placeholder node in parent tree var renderContext = parentVnode && parentVnode.context; vm.$slots = resolveSlots(options._renderChildren, renderContext); vm.$scopedSlots = emptyObject; // bind the createElement fn to this instance // so that we get proper render context inside it. // args order: tag, data, children, normalizationType, alwaysNormalize // internal version is used by render functions compiled from templates vm._c = function (a, b, c, d) { return createElement(vm, a, b, c, d, false); }; // normalization is always applied for the public version, used in // user-written render functions. vm.$createElement = function (a, b, c, d) { return createElement(vm, a, b, c, d, true); }; // $attrs & $listeners are exposed for easier HOC creation. // they need to be reactive so that HOCs using them are always updated var parentData = parentVnode && parentVnode.data; /* istanbul ignore else */ { defineReactive$$1(vm, '$attrs', parentData && parentData.attrs || emptyObject, function () { !isUpdatingChildComponent && warn("$attrs is readonly.", vm); }, true); defineReactive$$1(vm, '$listeners', options._parentListeners || emptyObject, function () { !isUpdatingChildComponent && warn("$listeners is readonly.", vm); }, true); } } var currentRenderingInstance = null; function renderMixin (Vue) { // install runtime convenience helpers installRenderHelpers(Vue.prototype); Vue.prototype.$nextTick = function (fn) { return nextTick(fn, this) }; Vue.prototype._render = function () { var vm = this; var ref = vm.$options; var render = ref.render; var _parentVnode = ref._parentVnode; if (_parentVnode) { vm.$scopedSlots = normalizeScopedSlots( _parentVnode.data.scopedSlots, vm.$slots, vm.$scopedSlots ); } // set parent vnode. this allows render functions to have access // to the data on the placeholder node. vm.$vnode = _parentVnode; // render self var vnode; try { // There's no need to maintain a stack because all render fns are called // separately from one another. Nested component's render fns are called // when parent component is patched. currentRenderingInstance = vm; vnode = render.call(vm._renderProxy, vm.$createElement); } catch (e) { handleError(e, vm, "render"); // return error render result, // or previous vnode to prevent render error causing blank component /* istanbul ignore else */ if (vm.$options.renderError) { try { vnode = vm.$options.renderError.call(vm._renderProxy, vm.$createElement, e); } catch (e) { handleError(e, vm, "renderError"); vnode = vm._vnode; } } else { vnode = vm._vnode; } } finally { currentRenderingInstance = null; } // if the returned array contains only a single node, allow it if (Array.isArray(vnode) && vnode.length === 1) { vnode = vnode[0]; } // return empty vnode in case the render function errored out if (!(vnode instanceof VNode)) { if (Array.isArray(vnode)) { warn( 'Multiple root nodes returned from render function. Render function ' + 'should return a single root node.', vm ); } vnode = createEmptyVNode(); } // set parent vnode.parent = _parentVnode; return vnode }; } /* */ function ensureCtor (comp, base) { if ( comp.__esModule || (hasSymbol && comp[Symbol.toStringTag] === 'Module') ) { comp = comp.default; } return isObject(comp) ? base.extend(comp) : comp } function createAsyncPlaceholder ( factory, data, context, children, tag ) { var node = createEmptyVNode(); node.asyncFactory = factory; node.asyncMeta = { data: data, context: context, children: children, tag: tag }; return node } function resolveAsyncComponent ( factory, baseCtor ) { if (isTrue(factory.error) && isDef(factory.errorComp)) { return factory.errorComp } if (isDef(factory.resolved)) { return factory.resolved } var owner = currentRenderingInstance; if (owner && isDef(factory.owners) && factory.owners.indexOf(owner) === -1) { // already pending factory.owners.push(owner); } if (isTrue(factory.loading) && isDef(factory.loadingComp)) { return factory.loadingComp } if (owner && !isDef(factory.owners)) { var owners = factory.owners = [owner]; var sync = true; var timerLoading = null; var timerTimeout = null ;(owner).$on('hook:destroyed', function () { return remove(owners, owner); }); var forceRender = function (renderCompleted) { for (var i = 0, l = owners.length; i < l; i++) { (owners[i]).$forceUpdate(); } if (renderCompleted) { owners.length = 0; if (timerLoading !== null) { clearTimeout(timerLoading); timerLoading = null; } if (timerTimeout !== null) { clearTimeout(timerTimeout); timerTimeout = null; } } }; var resolve = once(function (res) { // cache resolved factory.resolved = ensureCtor(res, baseCtor); // invoke callbacks only if this is not a synchronous resolve // (async resolves are shimmed as synchronous during SSR) if (!sync) { forceRender(true); } else { owners.length = 0; } }); var reject = once(function (reason) { warn( "Failed to resolve async component: " + (String(factory)) + (reason ? ("\nReason: " + reason) : '') ); if (isDef(factory.errorComp)) { factory.error = true; forceRender(true); } }); var res = factory(resolve, reject); if (isObject(res)) { if (isPromise(res)) { // () => Promise if (isUndef(factory.resolved)) { res.then(resolve, reject); } } else if (isPromise(res.component)) { res.component.then(resolve, reject); if (isDef(res.error)) { factory.errorComp = ensureCtor(res.error, baseCtor); } if (isDef(res.loading)) { factory.loadingComp = ensureCtor(res.loading, baseCtor); if (res.delay === 0) { factory.loading = true; } else { timerLoading = setTimeout(function () { timerLoading = null; if (isUndef(factory.resolved) && isUndef(factory.error)) { factory.loading = true; forceRender(false); } }, res.delay || 200); } } if (isDef(res.timeout)) { timerTimeout = setTimeout(function () { timerTimeout = null; if (isUndef(factory.resolved)) { reject( "timeout (" + (res.timeout) + "ms)" ); } }, res.timeout); } } } sync = false; // return in case resolved synchronously return factory.loading ? factory.loadingComp : factory.resolved } } /* */ function isAsyncPlaceholder (node) { return node.isComment && node.asyncFactory } /* */ function getFirstComponentChild (children) { if (Array.isArray(children)) { for (var i = 0; i < children.length; i++) { var c = children[i]; if (isDef(c) && (isDef(c.componentOptions) || isAsyncPlaceholder(c))) { return c } } } } /* */ /* */ function initEvents (vm) { vm._events = Object.create(null); vm._hasHookEvent = false; // init parent attached events var listeners = vm.$options._parentListeners; if (listeners) { updateComponentListeners(vm, listeners); } } var target; function add (event, fn) { target.$on(event, fn); } function remove$1 (event, fn) { target.$off(event, fn); } function createOnceHandler (event, fn) { var _target = target; return function onceHandler () { var res = fn.apply(null, arguments); if (res !== null) { _target.$off(event, onceHandler); } } } function updateComponentListeners ( vm, listeners, oldListeners ) { target = vm; updateListeners(listeners, oldListeners || {}, add, remove$1, createOnceHandler, vm); target = undefined; } function eventsMixin (Vue) { var hookRE = /^hook:/; Vue.prototype.$on = function (event, fn) { var vm = this; if (Array.isArray(event)) { for (var i = 0, l = event.length; i < l; i++) { vm.$on(event[i], fn); } } else { (vm._events[event] || (vm._events[event] = [])).push(fn); // optimize hook:event cost by using a boolean flag marked at registration // instead of a hash lookup if (hookRE.test(event)) { vm._hasHookEvent = true; } } return vm }; Vue.prototype.$once = function (event, fn) { var vm = this; function on () { vm.$off(event, on); fn.apply(vm, arguments); } on.fn = fn; vm.$on(event, on); return vm }; Vue.prototype.$off = function (event, fn) { var vm = this; // all if (!arguments.length) { vm._events = Object.create(null); return vm } // array of events if (Array.isArray(event)) { for (var i$1 = 0, l = event.length; i$1 < l; i$1++) { vm.$off(event[i$1], fn); } return vm } // specific event var cbs = vm._events[event]; if (!cbs) { return vm } if (!fn) { vm._events[event] = null; return vm } // specific handler var cb; var i = cbs.length; while (i--) { cb = cbs[i]; if (cb === fn || cb.fn === fn) { cbs.splice(i, 1); break } } return vm }; Vue.prototype.$emit = function (event) { var vm = this; { var lowerCaseEvent = event.toLowerCase(); if (lowerCaseEvent !== event && vm._events[lowerCaseEvent]) { tip( "Event \"" + lowerCaseEvent + "\" is emitted in component " + (formatComponentName(vm)) + " but the handler is registered for \"" + event + "\". " + "Note that HTML attributes are case-insensitive and you cannot use " + "v-on to listen to camelCase events when using in-DOM templates. " + "You should probably use \"" + (hyphenate(event)) + "\" instead of \"" + event + "\"." ); } } var cbs = vm._events[event]; if (cbs) { cbs = cbs.length > 1 ? toArray(cbs) : cbs; var args = toArray(arguments, 1); var info = "event handler for \"" + event + "\""; for (var i = 0, l = cbs.length; i < l; i++) { invokeWithErrorHandling(cbs[i], vm, args, vm, info); } } return vm }; } /* */ var activeInstance = null; var isUpdatingChildComponent = false; function setActiveInstance(vm) { var prevActiveInstance = activeInstance; activeInstance = vm; return function () { activeInstance = prevActiveInstance; } } function initLifecycle (vm) { var options = vm.$options; // locate first non-abstract parent var parent = options.parent; if (parent && !options.abstract) { while (parent.$options.abstract && parent.$parent) { parent = parent.$parent; } parent.$children.push(vm); } vm.$parent = parent; vm.$root = parent ? parent.$root : vm; vm.$children = []; vm.$refs = {}; vm._watcher = null; vm._inactive = null; vm._directInactive = false; vm._isMounted = false; vm._isDestroyed = false; vm._isBeingDestroyed = false; } function lifecycleMixin (Vue) { Vue.prototype._update = function (vnode, hydrating) { var vm = this; var prevEl = vm.$el; var prevVnode = vm._vnode; var restoreActiveInstance = setActiveInstance(vm); vm._vnode = vnode; // Vue.prototype.__patch__ is injected in entry points // based on the rendering backend used. if (!prevVnode) { // initial render vm.$el = vm.__patch__(vm.$el, vnode, hydrating, false /* removeOnly */); } else { // updates vm.$el = vm.__patch__(prevVnode, vnode); } restoreActiveInstance(); // update __vue__ reference if (prevEl) { prevEl.__vue__ = null; } if (vm.$el) { vm.$el.__vue__ = vm; } // if parent is an HOC, update its $el as well if (vm.$vnode && vm.$parent && vm.$vnode === vm.$parent._vnode) { vm.$parent.$el = vm.$el; } // updated hook is called by the scheduler to ensure that children are // updated in a parent's updated hook. }; Vue.prototype.$forceUpdate = function () { var vm = this; if (vm._watcher) { vm._watcher.update(); } }; Vue.prototype.$destroy = function () { var vm = this; if (vm._isBeingDestroyed) { return } callHook(vm, 'beforeDestroy'); vm._isBeingDestroyed = true; // remove self from parent var parent = vm.$parent; if (parent && !parent._isBeingDestroyed && !vm.$options.abstract) { remove(parent.$children, vm); } // teardown watchers if (vm._watcher) { vm._watcher.teardown(); } var i = vm._watchers.length; while (i--) { vm._watchers[i].teardown(); } // remove reference from data ob // frozen object may not have observer. if (vm._data.__ob__) { vm._data.__ob__.vmCount--; } // call the last hook... vm._isDestroyed = true; // invoke destroy hooks on current rendered tree vm.__patch__(vm._vnode, null); // fire destroyed hook callHook(vm, 'destroyed'); // turn off all instance listeners. vm.$off(); // remove __vue__ reference if (vm.$el) { vm.$el.__vue__ = null; } // release circular reference (#6759) if (vm.$vnode) { vm.$vnode.parent = null; } }; } function mountComponent ( vm, el, hydrating ) { vm.$el = el; if (!vm.$options.render) { vm.$options.render = createEmptyVNode; { /* istanbul ignore if */ if ((vm.$options.template && vm.$options.template.charAt(0) !== '#') || vm.$options.el || el) { warn( 'You are using the runtime-only build of Vue where the template ' + 'compiler is not available. Either pre-compile the templates into ' + 'render functions, or use the compiler-included build.', vm ); } else { warn( 'Failed to mount component: template or render function not defined.', vm ); } } } callHook(vm, 'beforeMount'); var updateComponent; /* istanbul ignore if */ if (config.performance && mark) { updateComponent = function () { var name = vm._name; var id = vm._uid; var startTag = "vue-perf-start:" + id; var endTag = "vue-perf-end:" + id; mark(startTag); var vnode = vm._render(); mark(endTag); measure(("vue " + name + " render"), startTag, endTag); mark(startTag); vm._update(vnode, hydrating); mark(endTag); measure(("vue " + name + " patch"), startTag, endTag); }; } else { updateComponent = function () { vm._update(vm._render(), hydrating); }; } // we set this to vm._watcher inside the watcher's constructor // since the watcher's initial patch may call $forceUpdate (e.g. inside child // component's mounted hook), which relies on vm._watcher being already defined new Watcher(vm, updateComponent, noop, { before: function before () { if (vm._isMounted && !vm._isDestroyed) { callHook(vm, 'beforeUpdate'); } } }, true /* isRenderWatcher */); hydrating = false; // manually mounted instance, call mounted on self // mounted is called for render-created child components in its inserted hook if (vm.$vnode == null) { vm._isMounted = true; callHook(vm, 'mounted'); } return vm } function updateChildComponent ( vm, propsData, listeners, parentVnode, renderChildren ) { { isUpdatingChildComponent = true; } // determine whether component has slot children // we need to do this before overwriting $options._renderChildren. // check if there are dynamic scopedSlots (hand-written or compiled but with // dynamic slot names). Static scoped slots compiled from template has the // "$stable" marker. var newScopedSlots = parentVnode.data.scopedSlots; var oldScopedSlots = vm.$scopedSlots; var hasDynamicScopedSlot = !!( (newScopedSlots && !newScopedSlots.$stable) || (oldScopedSlots !== emptyObject && !oldScopedSlots.$stable) || (newScopedSlots && vm.$scopedSlots.$key !== newScopedSlots.$key) ); // Any static slot children from the parent may have changed during parent's // update. Dynamic scoped slots may also have changed. In such cases, a forced // update is necessary to ensure correctness. var needsForceUpdate = !!( renderChildren || // has new static slots vm.$options._renderChildren || // has old static slots hasDynamicScopedSlot ); vm.$options._parentVnode = parentVnode; vm.$vnode = parentVnode; // update vm's placeholder node without re-render if (vm._vnode) { // update child tree's parent vm._vnode.parent = parentVnode; } vm.$options._renderChildren = renderChildren; // update $attrs and $listeners hash // these are also reactive so they may trigger child update if the child // used them during render vm.$attrs = parentVnode.data.attrs || emptyObject; vm.$listeners = listeners || emptyObject; // update props if (propsData && vm.$options.props) { toggleObserving(false); var props = vm._props; var propKeys = vm.$options._propKeys || []; for (var i = 0; i < propKeys.length; i++) { var key = propKeys[i]; var propOptions = vm.$options.props; // wtf flow? props[key] = validateProp(key, propOptions, propsData, vm); } toggleObserving(true); // keep a copy of raw propsData vm.$options.propsData = propsData; } // update listeners listeners = listeners || emptyObject; var oldListeners = vm.$options._parentListeners; vm.$options._parentListeners = listeners; updateComponentListeners(vm, listeners, oldListeners); // resolve slots + force update if has children if (needsForceUpdate) { vm.$slots = resolveSlots(renderChildren, parentVnode.context); vm.$forceUpdate(); } { isUpdatingChildComponent = false; } } function isInInactiveTree (vm) { while (vm && (vm = vm.$parent)) { if (vm._inactive) { return true } } return false } function activateChildComponent (vm, direct) { if (direct) { vm._directInactive = false; if (isInInactiveTree(vm)) { return } } else if (vm._directInactive) { return } if (vm._inactive || vm._inactive === null) { vm._inactive = false; for (var i = 0; i < vm.$children.length; i++) { activateChildComponent(vm.$children[i]); } callHook(vm, 'activated'); } } function deactivateChildComponent (vm, direct) { if (direct) { vm._directInactive = true; if (isInInactiveTree(vm)) { return } } if (!vm._inactive) { vm._inactive = true; for (var i = 0; i < vm.$children.length; i++) { deactivateChildComponent(vm.$children[i]); } callHook(vm, 'deactivated'); } } function callHook (vm, hook) { // #7573 disable dep collection when invoking lifecycle hooks pushTarget(); var handlers = vm.$options[hook]; var info = hook + " hook"; if (handlers) { for (var i = 0, j = handlers.length; i < j; i++) { invokeWithErrorHandling(handlers[i], vm, null, vm, info); } } if (vm._hasHookEvent) { vm.$emit('hook:' + hook); } popTarget(); } /* */ var MAX_UPDATE_COUNT = 100; var queue = []; var activatedChildren = []; var has = {}; var circular = {}; var waiting = false; var flushing = false; var index = 0; /** * Reset the scheduler's state. */ function resetSchedulerState () { index = queue.length = activatedChildren.length = 0; has = {}; { circular = {}; } waiting = flushing = false; } // Async edge case #6566 requires saving the timestamp when event listeners are // attached. However, calling performance.now() has a perf overhead especially // if the page has thousands of event listeners. Instead, we take a timestamp // every time the scheduler flushes and use that for all event listeners // attached during that flush. var currentFlushTimestamp = 0; // Async edge case fix requires storing an event listener's attach timestamp. var getNow = Date.now; // Determine what event timestamp the browser is using. Annoyingly, the // timestamp can either be hi-res (relative to page load) or low-res // (relative to UNIX epoch), so in order to compare time we have to use the // same timestamp type when saving the flush timestamp. // All IE versions use low-res event timestamps, and have problematic clock // implementations (#9632) if (inBrowser && !isIE) { var performance = window.performance; if ( performance && typeof performance.now === 'function' && getNow() > document.createEvent('Event').timeStamp ) { // if the event timestamp, although evaluated AFTER the Date.now(), is // smaller than it, it means the event is using a hi-res timestamp, // and we need to use the hi-res version for event listener timestamps as // well. getNow = function () { return performance.now(); }; } } /** * Flush both queues and run the watchers. */ function flushSchedulerQueue () { currentFlushTimestamp = getNow(); flushing = true; var watcher, id; // Sort queue before flush. // This ensures that: // 1. Components are updated from parent to child. (because parent is always // created before the child) // 2. A component's user watchers are run before its render watcher (because // user watchers are created before the render watcher) // 3. If a component is destroyed during a parent component's watcher run, // its watchers can be skipped. queue.sort(function (a, b) { return a.id - b.id; }); // do not cache length because more watchers might be pushed // as we run existing watchers for (index = 0; index < queue.length; index++) { watcher = queue[index]; if (watcher.before) { watcher.before(); } id = watcher.id; has[id] = null; watcher.run(); // in dev build, check and stop circular updates. if (has[id] != null) { circular[id] = (circular[id] || 0) + 1; if (circular[id] > MAX_UPDATE_COUNT) { warn( 'You may have an infinite update loop ' + ( watcher.user ? ("in watcher with expression \"" + (watcher.expression) + "\"") : "in a component render function." ), watcher.vm ); break } } } // keep copies of post queues before resetting state var activatedQueue = activatedChildren.slice(); var updatedQueue = queue.slice(); resetSchedulerState(); // call component updated and activated hooks callActivatedHooks(activatedQueue); callUpdatedHooks(updatedQueue); // devtool hook /* istanbul ignore if */ if (devtools && config.devtools) { devtools.emit('flush'); } } function callUpdatedHooks (queue) { var i = queue.length; while (i--) { var watcher = queue[i]; var vm = watcher.vm; if (vm._watcher === watcher && vm._isMounted && !vm._isDestroyed) { callHook(vm, 'updated'); } } } /** * Queue a kept-alive component that was activated during patch. * The queue will be processed after the entire tree has been patched. */ function queueActivatedComponent (vm) { // setting _inactive to false here so that a render function can // rely on checking whether it's in an inactive tree (e.g. router-view) vm._inactive = false; activatedChildren.push(vm); } function callActivatedHooks (queue) { for (var i = 0; i < queue.length; i++) { queue[i]._inactive = true; activateChildComponent(queue[i], true /* true */); } } /** * Push a watcher into the watcher queue. * Jobs with duplicate IDs will be skipped unless it's * pushed when the queue is being flushed. */ function queueWatcher (watcher) { var id = watcher.id; if (has[id] == null) { has[id] = true; if (!flushing) { queue.push(watcher); } else { // if already flushing, splice the watcher based on its id // if already past its id, it will be run next immediately. var i = queue.length - 1; while (i > index && queue[i].id > watcher.id) { i--; } queue.splice(i + 1, 0, watcher); } // queue the flush if (!waiting) { waiting = true; if (!config.async) { flushSchedulerQueue(); return } nextTick(flushSchedulerQueue); } } } /* */ var uid$2 = 0; /** * A watcher parses an expression, collects dependencies, * and fires callback when the expression value changes. * This is used for both the $watch() api and directives. */ var Watcher = function Watcher ( vm, expOrFn, cb, options, isRenderWatcher ) { this.vm = vm; if (isRenderWatcher) { vm._watcher = this; } vm._watchers.push(this); // options if (options) { this.deep = !!options.deep; this.user = !!options.user; this.lazy = !!options.lazy; this.sync = !!options.sync; this.before = options.before; } else { this.deep = this.user = this.lazy = this.sync = false; } this.cb = cb; this.id = ++uid$2; // uid for batching this.active = true; this.dirty = this.lazy; // for lazy watchers this.deps = []; this.newDeps = []; this.depIds = new _Set(); this.newDepIds = new _Set(); this.expression = expOrFn.toString(); // parse expression for getter if (typeof expOrFn === 'function') { this.getter = expOrFn; } else { this.getter = parsePath(expOrFn); if (!this.getter) { this.getter = noop; warn( "Failed watching path: \"" + expOrFn + "\" " + 'Watcher only accepts simple dot-delimited paths. ' + 'For full control, use a function instead.', vm ); } } this.value = this.lazy ? undefined : this.get(); }; /** * Evaluate the getter, and re-collect dependencies. */ Watcher.prototype.get = function get () { pushTarget(this); var value; var vm = this.vm; try { value = this.getter.call(vm, vm); } catch (e) { if (this.user) { handleError(e, vm, ("getter for watcher \"" + (this.expression) + "\"")); } else { throw e } } finally { // "touch" every property so they are all tracked as // dependencies for deep watching if (this.deep) { traverse(value); } popTarget(); this.cleanupDeps(); } return value }; /** * Add a dependency to this directive. */ Watcher.prototype.addDep = function addDep (dep) { var id = dep.id; if (!this.newDepIds.has(id)) { this.newDepIds.add(id); this.newDeps.push(dep); if (!this.depIds.has(id)) { dep.addSub(this); } } }; /** * Clean up for dependency collection. */ Watcher.prototype.cleanupDeps = function cleanupDeps () { var i = this.deps.length; while (i--) { var dep = this.deps[i]; if (!this.newDepIds.has(dep.id)) { dep.removeSub(this); } } var tmp = this.depIds; this.depIds = this.newDepIds; this.newDepIds = tmp; this.newDepIds.clear(); tmp = this.deps; this.deps = this.newDeps; this.newDeps = tmp; this.newDeps.length = 0; }; /** * Subscriber interface. * Will be called when a dependency changes. */ Watcher.prototype.update = function update () { /* istanbul ignore else */ if (this.lazy) { this.dirty = true; } else if (this.sync) { this.run(); } else { queueWatcher(this); } }; /** * Scheduler job interface. * Will be called by the scheduler. */ Watcher.prototype.run = function run () { if (this.active) { var value = this.get(); if ( value !== this.value || // Deep watchers and watchers on Object/Arrays should fire even // when the value is the same, because the value may // have mutated. isObject(value) || this.deep ) { // set new value var oldValue = this.value; this.value = value; if (this.user) { try { this.cb.call(this.vm, value, oldValue); } catch (e) { handleError(e, this.vm, ("callback for watcher \"" + (this.expression) + "\"")); } } else { this.cb.call(this.vm, value, oldValue); } } } }; /** * Evaluate the value of the watcher. * This only gets called for lazy watchers. */ Watcher.prototype.evaluate = function evaluate () { this.value = this.get(); this.dirty = false; }; /** * Depend on all deps collected by this watcher. */ Watcher.prototype.depend = function depend () { var i = this.deps.length; while (i--) { this.deps[i].depend(); } }; /** * Remove self from all dependencies' subscriber list. */ Watcher.prototype.teardown = function teardown () { if (this.active) { // remove self from vm's watcher list // this is a somewhat expensive operation so we skip it // if the vm is being destroyed. if (!this.vm._isBeingDestroyed) { remove(this.vm._watchers, this); } var i = this.deps.length; while (i--) { this.deps[i].removeSub(this); } this.active = false; } }; /* */ var sharedPropertyDefinition = { enumerable: true, configurable: true, get: noop, set: noop }; function proxy (target, sourceKey, key) { sharedPropertyDefinition.get = function proxyGetter () { return this[sourceKey][key] }; sharedPropertyDefinition.set = function proxySetter (val) { this[sourceKey][key] = val; }; Object.defineProperty(target, key, sharedPropertyDefinition); } function initState (vm) { vm._watchers = []; var opts = vm.$options; if (opts.props) { initProps(vm, opts.props); } if (opts.methods) { initMethods(vm, opts.methods); } if (opts.data) { initData(vm); } else { observe(vm._data = {}, true /* asRootData */); } if (opts.computed) { initComputed(vm, opts.computed); } if (opts.watch && opts.watch !== nativeWatch) { initWatch(vm, opts.watch); } } function initProps (vm, propsOptions) { var propsData = vm.$options.propsData || {}; var props = vm._props = {}; // cache prop keys so that future props updates can iterate using Array // instead of dynamic object key enumeration. var keys = vm.$options._propKeys = []; var isRoot = !vm.$parent; // root instance props should be converted if (!isRoot) { toggleObserving(false); } var loop = function ( key ) { keys.push(key); var value = validateProp(key, propsOptions, propsData, vm); /* istanbul ignore else */ { var hyphenatedKey = hyphenate(key); if (isReservedAttribute(hyphenatedKey) || config.isReservedAttr(hyphenatedKey)) { warn( ("\"" + hyphenatedKey + "\" is a reserved attribute and cannot be used as component prop."), vm ); } defineReactive$$1(props, key, value, function () { if (!isRoot && !isUpdatingChildComponent) { warn( "Avoid mutating a prop directly since the value will be " + "overwritten whenever the parent component re-renders. " + "Instead, use a data or computed property based on the prop's " + "value. Prop being mutated: \"" + key + "\"", vm ); } }); } // static props are already proxied on the component's prototype // during Vue.extend(). We only need to proxy props defined at // instantiation here. if (!(key in vm)) { proxy(vm, "_props", key); } }; for (var key in propsOptions) loop( key ); toggleObserving(true); } function initData (vm) { var data = vm.$options.data; data = vm._data = typeof data === 'function' ? getData(data, vm) : data || {}; if (!isPlainObject(data)) { data = {}; warn( 'data functions should return an object:\n' + 'https://vuejs.org/v2/guide/components.html#data-Must-Be-a-Function', vm ); } // proxy data on instance var keys = Object.keys(data); var props = vm.$options.props; var methods = vm.$options.methods; var i = keys.length; while (i--) { var key = keys[i]; { if (methods && hasOwn(methods, key)) { warn( ("Method \"" + key + "\" has already been defined as a data property."), vm ); } } if (props && hasOwn(props, key)) { warn( "The data property \"" + key + "\" is already declared as a prop. " + "Use prop default value instead.", vm ); } else if (!isReserved(key)) { proxy(vm, "_data", key); } } // observe data observe(data, true /* asRootData */); } function getData (data, vm) { // #7573 disable dep collection when invoking data getters pushTarget(); try { return data.call(vm, vm) } catch (e) { handleError(e, vm, "data()"); return {} } finally { popTarget(); } } var computedWatcherOptions = { lazy: true }; function initComputed (vm, computed) { // $flow-disable-line var watchers = vm._computedWatchers = Object.create(null); // computed properties are just getters during SSR var isSSR = isServerRendering(); for (var key in computed) { var userDef = computed[key]; var getter = typeof userDef === 'function' ? userDef : userDef.get; if (getter == null) { warn( ("Getter is missing for computed property \"" + key + "\"."), vm ); } if (!isSSR) { // create internal watcher for the computed property. watchers[key] = new Watcher( vm, getter || noop, noop, computedWatcherOptions ); } // component-defined computed properties are already defined on the // component prototype. We only need to define computed properties defined // at instantiation here. if (!(key in vm)) { defineComputed(vm, key, userDef); } else { if (key in vm.$data) { warn(("The computed property \"" + key + "\" is already defined in data."), vm); } else if (vm.$options.props && key in vm.$options.props) { warn(("The computed property \"" + key + "\" is already defined as a prop."), vm); } } } } function defineComputed ( target, key, userDef ) { var shouldCache = !isServerRendering(); if (typeof userDef === 'function') { sharedPropertyDefinition.get = shouldCache ? createComputedGetter(key) : createGetterInvoker(userDef); sharedPropertyDefinition.set = noop; } else { sharedPropertyDefinition.get = userDef.get ? shouldCache && userDef.cache !== false ? createComputedGetter(key) : createGetterInvoker(userDef.get) : noop; sharedPropertyDefinition.set = userDef.set || noop; } if (sharedPropertyDefinition.set === noop) { sharedPropertyDefinition.set = function () { warn( ("Computed property \"" + key + "\" was assigned to but it has no setter."), this ); }; } Object.defineProperty(target, key, sharedPropertyDefinition); } function createComputedGetter (key) { return function computedGetter () { var watcher = this._computedWatchers && this._computedWatchers[key]; if (watcher) { if (watcher.dirty) { watcher.evaluate(); } if (Dep.target) { watcher.depend(); } return watcher.value } } } function createGetterInvoker(fn) { return function computedGetter () { return fn.call(this, this) } } function initMethods (vm, methods) { var props = vm.$options.props; for (var key in methods) { { if (typeof methods[key] !== 'function') { warn( "Method \"" + key + "\" has type \"" + (typeof methods[key]) + "\" in the component definition. " + "Did you reference the function correctly?", vm ); } if (props && hasOwn(props, key)) { warn( ("Method \"" + key + "\" has already been defined as a prop."), vm ); } if ((key in vm) && isReserved(key)) { warn( "Method \"" + key + "\" conflicts with an existing Vue instance method. " + "Avoid defining component methods that start with _ or $." ); } } vm[key] = typeof methods[key] !== 'function' ? noop : bind(methods[key], vm); } } function initWatch (vm, watch) { for (var key in watch) { var handler = watch[key]; if (Array.isArray(handler)) { for (var i = 0; i < handler.length; i++) { createWatcher(vm, key, handler[i]); } } else { createWatcher(vm, key, handler); } } } function createWatcher ( vm, expOrFn, handler, options ) { if (isPlainObject(handler)) { options = handler; handler = handler.handler; } if (typeof handler === 'string') { handler = vm[handler]; } return vm.$watch(expOrFn, handler, options) } function stateMixin (Vue) { // flow somehow has problems with directly declared definition object // when using Object.defineProperty, so we have to procedurally build up // the object here. var dataDef = {}; dataDef.get = function () { return this._data }; var propsDef = {}; propsDef.get = function () { return this._props }; { dataDef.set = function () { warn( 'Avoid replacing instance root $data. ' + 'Use nested data properties instead.', this ); }; propsDef.set = function () { warn("$props is readonly.", this); }; } Object.defineProperty(Vue.prototype, '$data', dataDef); Object.defineProperty(Vue.prototype, '$props', propsDef); Vue.prototype.$set = set; Vue.prototype.$delete = del; Vue.prototype.$watch = function ( expOrFn, cb, options ) { var vm = this; if (isPlainObject(cb)) { return createWatcher(vm, expOrFn, cb, options) } options = options || {}; options.user = true; var watcher = new Watcher(vm, expOrFn, cb, options); if (options.immediate) { try { cb.call(vm, watcher.value); } catch (error) { handleError(error, vm, ("callback for immediate watcher \"" + (watcher.expression) + "\"")); } } return function unwatchFn () { watcher.teardown(); } }; } /* */ var uid$3 = 0; function initMixin (Vue) { Vue.prototype._init = function (options) { var vm = this; // a uid vm._uid = uid$3++; var startTag, endTag; /* istanbul ignore if */ if (config.performance && mark) { startTag = "vue-perf-start:" + (vm._uid); endTag = "vue-perf-end:" + (vm._uid); mark(startTag); } // a flag to avoid this being observed vm._isVue = true; // merge options if (options && options._isComponent) { // optimize internal component instantiation // since dynamic options merging is pretty slow, and none of the // internal component options needs special treatment. initInternalComponent(vm, options); } else { vm.$options = mergeOptions( resolveConstructorOptions(vm.constructor), options || {}, vm ); } /* istanbul ignore else */ { initProxy(vm); } // expose real self vm._self = vm; initLifecycle(vm); initEvents(vm); initRender(vm); callHook(vm, 'beforeCreate'); initInjections(vm); // resolve injections before data/props initState(vm); initProvide(vm); // resolve provide after data/props callHook(vm, 'created'); /* istanbul ignore if */ if (config.performance && mark) { vm._name = formatComponentName(vm, false); mark(endTag); measure(("vue " + (vm._name) + " init"), startTag, endTag); } if (vm.$options.el) { vm.$mount(vm.$options.el); } }; } function initInternalComponent (vm, options) { var opts = vm.$options = Object.create(vm.constructor.options); // doing this because it's faster than dynamic enumeration. var parentVnode = options._parentVnode; opts.parent = options.parent; opts._parentVnode = parentVnode; var vnodeComponentOptions = parentVnode.componentOptions; opts.propsData = vnodeComponentOptions.propsData; opts._parentListeners = vnodeComponentOptions.listeners; opts._renderChildren = vnodeComponentOptions.children; opts._componentTag = vnodeComponentOptions.tag; if (options.render) { opts.render = options.render; opts.staticRenderFns = options.staticRenderFns; } } function resolveConstructorOptions (Ctor) { var options = Ctor.options; if (Ctor.super) { var superOptions = resolveConstructorOptions(Ctor.super); var cachedSuperOptions = Ctor.superOptions; if (superOptions !== cachedSuperOptions) { // super option changed, // need to resolve new options. Ctor.superOptions = superOptions; // check if there are any late-modified/attached options (#4976) var modifiedOptions = resolveModifiedOptions(Ctor); // update base extend options if (modifiedOptions) { extend(Ctor.extendOptions, modifiedOptions); } options = Ctor.options = mergeOptions(superOptions, Ctor.extendOptions); if (options.name) { options.components[options.name] = Ctor; } } } return options } function resolveModifiedOptions (Ctor) { var modified; var latest = Ctor.options; var sealed = Ctor.sealedOptions; for (var key in latest) { if (latest[key] !== sealed[key]) { if (!modified) { modified = {}; } modified[key] = latest[key]; } } return modified } function Vue (options) { if (!(this instanceof Vue) ) { warn('Vue is a constructor and should be called with the `new` keyword'); } this._init(options); } initMixin(Vue); stateMixin(Vue); eventsMixin(Vue); lifecycleMixin(Vue); renderMixin(Vue); /* */ function initUse (Vue) { Vue.use = function (plugin) { var installedPlugins = (this._installedPlugins || (this._installedPlugins = [])); if (installedPlugins.indexOf(plugin) > -1) { return this } // additional parameters var args = toArray(arguments, 1); args.unshift(this); if (typeof plugin.install === 'function') { plugin.install.apply(plugin, args); } else if (typeof plugin === 'function') { plugin.apply(null, args); } installedPlugins.push(plugin); return this }; } /* */ function initMixin$1 (Vue) { Vue.mixin = function (mixin) { this.options = mergeOptions(this.options, mixin); return this }; } /* */ function initExtend (Vue) { /** * Each instance constructor, including Vue, has a unique * cid. This enables us to create wrapped "child * constructors" for prototypal inheritance and cache them. */ Vue.cid = 0; var cid = 1; /** * Class inheritance */ Vue.extend = function (extendOptions) { extendOptions = extendOptions || {}; var Super = this; var SuperId = Super.cid; var cachedCtors = extendOptions._Ctor || (extendOptions._Ctor = {}); if (cachedCtors[SuperId]) { return cachedCtors[SuperId] } var name = extendOptions.name || Super.options.name; if (name) { validateComponentName(name); } var Sub = function VueComponent (options) { this._init(options); }; Sub.prototype = Object.create(Super.prototype); Sub.prototype.constructor = Sub; Sub.cid = cid++; Sub.options = mergeOptions( Super.options, extendOptions ); Sub['super'] = Super; // For props and computed properties, we define the proxy getters on // the Vue instances at extension time, on the extended prototype. This // avoids Object.defineProperty calls for each instance created. if (Sub.options.props) { initProps$1(Sub); } if (Sub.options.computed) { initComputed$1(Sub); } // allow further extension/mixin/plugin usage Sub.extend = Super.extend; Sub.mixin = Super.mixin; Sub.use = Super.use; // create asset registers, so extended classes // can have their private assets too. ASSET_TYPES.forEach(function (type) { Sub[type] = Super[type]; }); // enable recursive self-lookup if (name) { Sub.options.components[name] = Sub; } // keep a reference to the super options at extension time. // later at instantiation we can check if Super's options have // been updated. Sub.superOptions = Super.options; Sub.extendOptions = extendOptions; Sub.sealedOptions = extend({}, Sub.options); // cache constructor cachedCtors[SuperId] = Sub; return Sub }; } function initProps$1 (Comp) { var props = Comp.options.props; for (var key in props) { proxy(Comp.prototype, "_props", key); } } function initComputed$1 (Comp) { var computed = Comp.options.computed; for (var key in computed) { defineComputed(Comp.prototype, key, computed[key]); } } /* */ function initAssetRegisters (Vue) { /** * Create asset registration methods. */ ASSET_TYPES.forEach(function (type) { Vue[type] = function ( id, definition ) { if (!definition) { return this.options[type + 's'][id] } else { /* istanbul ignore if */ if (type === 'component') { validateComponentName(id); } if (type === 'component' && isPlainObject(definition)) { definition.name = definition.name || id; definition = this.options._base.extend(definition); } if (type === 'directive' && typeof definition === 'function') { definition = { bind: definition, update: definition }; } this.options[type + 's'][id] = definition; return definition } }; }); } /* */ function getComponentName (opts) { return opts && (opts.Ctor.options.name || opts.tag) } function matches (pattern, name) { if (Array.isArray(pattern)) { return pattern.indexOf(name) > -1 } else if (typeof pattern === 'string') { return pattern.split(',').indexOf(name) > -1 } else if (isRegExp(pattern)) { return pattern.test(name) } /* istanbul ignore next */ return false } function pruneCache (keepAliveInstance, filter) { var cache = keepAliveInstance.cache; var keys = keepAliveInstance.keys; var _vnode = keepAliveInstance._vnode; for (var key in cache) { var cachedNode = cache[key]; if (cachedNode) { var name = getComponentName(cachedNode.componentOptions); if (name && !filter(name)) { pruneCacheEntry(cache, key, keys, _vnode); } } } } function pruneCacheEntry ( cache, key, keys, current ) { var cached$$1 = cache[key]; if (cached$$1 && (!current || cached$$1.tag !== current.tag)) { cached$$1.componentInstance.$destroy(); } cache[key] = null; remove(keys, key); } var patternTypes = [String, RegExp, Array]; var KeepAlive = { name: 'keep-alive', abstract: true, props: { include: patternTypes, exclude: patternTypes, max: [String, Number] }, created: function created () { this.cache = Object.create(null); this.keys = []; }, destroyed: function destroyed () { for (var key in this.cache) { pruneCacheEntry(this.cache, key, this.keys); } }, mounted: function mounted () { var this$1 = this; this.$watch('include', function (val) { pruneCache(this$1, function (name) { return matches(val, name); }); }); this.$watch('exclude', function (val) { pruneCache(this$1, function (name) { return !matches(val, name); }); }); }, render: function render () { var slot = this.$slots.default; var vnode = getFirstComponentChild(slot); var componentOptions = vnode && vnode.componentOptions; if (componentOptions) { // check pattern var name = getComponentName(componentOptions); var ref = this; var include = ref.include; var exclude = ref.exclude; if ( // not included (include && (!name || !matches(include, name))) || // excluded (exclude && name && matches(exclude, name)) ) { return vnode } var ref$1 = this; var cache = ref$1.cache; var keys = ref$1.keys; var key = vnode.key == null // same constructor may get registered as different local components // so cid alone is not enough (#3269) ? componentOptions.Ctor.cid + (componentOptions.tag ? ("::" + (componentOptions.tag)) : '') : vnode.key; if (cache[key]) { vnode.componentInstance = cache[key].componentInstance; // make current key freshest remove(keys, key); keys.push(key); } else { cache[key] = vnode; keys.push(key); // prune oldest entry if (this.max && keys.length > parseInt(this.max)) { pruneCacheEntry(cache, keys[0], keys, this._vnode); } } vnode.data.keepAlive = true; } return vnode || (slot && slot[0]) } }; var builtInComponents = { KeepAlive: KeepAlive }; /* */ function initGlobalAPI (Vue) { // config var configDef = {}; configDef.get = function () { return config; }; { configDef.set = function () { warn( 'Do not replace the Vue.config object, set individual fields instead.' ); }; } Object.defineProperty(Vue, 'config', configDef); // exposed util methods. // NOTE: these are not considered part of the public API - avoid relying on // them unless you are aware of the risk. Vue.util = { warn: warn, extend: extend, mergeOptions: mergeOptions, defineReactive: defineReactive$$1 }; Vue.set = set; Vue.delete = del; Vue.nextTick = nextTick; // 2.6 explicit observable API Vue.observable = function (obj) { observe(obj); return obj }; Vue.options = Object.create(null); ASSET_TYPES.forEach(function (type) { Vue.options[type + 's'] = Object.create(null); }); // this is used to identify the "base" constructor to extend all plain-object // components with in Weex's multi-instance scenarios. Vue.options._base = Vue; extend(Vue.options.components, builtInComponents); initUse(Vue); initMixin$1(Vue); initExtend(Vue); initAssetRegisters(Vue); } initGlobalAPI(Vue); Object.defineProperty(Vue.prototype, '$isServer', { get: isServerRendering }); Object.defineProperty(Vue.prototype, '$ssrContext', { get: function get () { /* istanbul ignore next */ return this.$vnode && this.$vnode.ssrContext } }); // expose FunctionalRenderContext for ssr runtime helper installation Object.defineProperty(Vue, 'FunctionalRenderContext', { value: FunctionalRenderContext }); Vue.version = '2.6.12'; /* */ // these are reserved for web because they are directly compiled away // during template compilation var isReservedAttr = makeMap('style,class'); // attributes that should be using props for binding var acceptValue = makeMap('input,textarea,option,select,progress'); var mustUseProp = function (tag, type, attr) { return ( (attr === 'value' && acceptValue(tag)) && type !== 'button' || (attr === 'selected' && tag === 'option') || (attr === 'checked' && tag === 'input') || (attr === 'muted' && tag === 'video') ) }; var isEnumeratedAttr = makeMap('contenteditable,draggable,spellcheck'); var isValidContentEditableValue = makeMap('events,caret,typing,plaintext-only'); var convertEnumeratedValue = function (key, value) { return isFalsyAttrValue(value) || value === 'false' ? 'false' // allow arbitrary string value for contenteditable : key === 'contenteditable' && isValidContentEditableValue(value) ? value : 'true' }; var isBooleanAttr = makeMap( 'allowfullscreen,async,autofocus,autoplay,checked,compact,controls,declare,' + 'default,defaultchecked,defaultmuted,defaultselected,defer,disabled,' + 'enabled,formnovalidate,hidden,indeterminate,inert,ismap,itemscope,loop,multiple,' + 'muted,nohref,noresize,noshade,novalidate,nowrap,open,pauseonexit,readonly,' + 'required,reversed,scoped,seamless,selected,sortable,translate,' + 'truespeed,typemustmatch,visible' ); var xlinkNS = 'http://www.w3.org/1999/xlink'; var isXlink = function (name) { return name.charAt(5) === ':' && name.slice(0, 5) === 'xlink' }; var getXlinkProp = function (name) { return isXlink(name) ? name.slice(6, name.length) : '' }; var isFalsyAttrValue = function (val) { return val == null || val === false }; /* */ function genClassForVnode (vnode) { var data = vnode.data; var parentNode = vnode; var childNode = vnode; while (isDef(childNode.componentInstance)) { childNode = childNode.componentInstance._vnode; if (childNode && childNode.data) { data = mergeClassData(childNode.data, data); } } while (isDef(parentNode = parentNode.parent)) { if (parentNode && parentNode.data) { data = mergeClassData(data, parentNode.data); } } return renderClass(data.staticClass, data.class) } function mergeClassData (child, parent) { return { staticClass: concat(child.staticClass, parent.staticClass), class: isDef(child.class) ? [child.class, parent.class] : parent.class } } function renderClass ( staticClass, dynamicClass ) { if (isDef(staticClass) || isDef(dynamicClass)) { return concat(staticClass, stringifyClass(dynamicClass)) } /* istanbul ignore next */ return '' } function concat (a, b) { return a ? b ? (a + ' ' + b) : a : (b || '') } function stringifyClass (value) { if (Array.isArray(value)) { return stringifyArray(value) } if (isObject(value)) { return stringifyObject(value) } if (typeof value === 'string') { return value } /* istanbul ignore next */ return '' } function stringifyArray (value) { var res = ''; var stringified; for (var i = 0, l = value.length; i < l; i++) { if (isDef(stringified = stringifyClass(value[i])) && stringified !== '') { if (res) { res += ' '; } res += stringified; } } return res } function stringifyObject (value) { var res = ''; for (var key in value) { if (value[key]) { if (res) { res += ' '; } res += key; } } return res } /* */ var namespaceMap = { svg: 'http://www.w3.org/2000/svg', math: 'http://www.w3.org/1998/Math/MathML' }; var isHTMLTag = makeMap( 'html,body,base,head,link,meta,style,title,' + 'address,article,aside,footer,header,h1,h2,h3,h4,h5,h6,hgroup,nav,section,' + 'div,dd,dl,dt,figcaption,figure,picture,hr,img,li,main,ol,p,pre,ul,' + 'a,b,abbr,bdi,bdo,br,cite,code,data,dfn,em,i,kbd,mark,q,rp,rt,rtc,ruby,' + 's,samp,small,span,strong,sub,sup,time,u,var,wbr,area,audio,map,track,video,' + 'embed,object,param,source,canvas,script,noscript,del,ins,' + 'caption,col,colgroup,table,thead,tbody,td,th,tr,' + 'button,datalist,fieldset,form,input,label,legend,meter,optgroup,option,' + 'output,progress,select,textarea,' + 'details,dialog,menu,menuitem,summary,' + 'content,element,shadow,template,blockquote,iframe,tfoot' ); // this map is intentionally selective, only covering SVG elements that may // contain child elements. var isSVG = makeMap( 'svg,animate,circle,clippath,cursor,defs,desc,ellipse,filter,font-face,' + 'foreignObject,g,glyph,image,line,marker,mask,missing-glyph,path,pattern,' + 'polygon,polyline,rect,switch,symbol,text,textpath,tspan,use,view', true ); var isPreTag = function (tag) { return tag === 'pre'; }; var isReservedTag = function (tag) { return isHTMLTag(tag) || isSVG(tag) }; function getTagNamespace (tag) { if (isSVG(tag)) { return 'svg' } // basic support for MathML // note it doesn't support other MathML elements being component roots if (tag === 'math') { return 'math' } } var unknownElementCache = Object.create(null); function isUnknownElement (tag) { /* istanbul ignore if */ if (!inBrowser) { return true } if (isReservedTag(tag)) { return false } tag = tag.toLowerCase(); /* istanbul ignore if */ if (unknownElementCache[tag] != null) { return unknownElementCache[tag] } var el = document.createElement(tag); if (tag.indexOf('-') > -1) { // http://stackoverflow.com/a/28210364/1070244 return (unknownElementCache[tag] = ( el.constructor === window.HTMLUnknownElement || el.constructor === window.HTMLElement )) } else { return (unknownElementCache[tag] = /HTMLUnknownElement/.test(el.toString())) } } var isTextInputType = makeMap('text,number,password,search,email,tel,url'); /* */ /** * Query an element selector if it's not an element already. */ function query (el) { if (typeof el === 'string') { var selected = document.querySelector(el); if (!selected) { warn( 'Cannot find element: ' + el ); return document.createElement('div') } return selected } else { return el } } /* */ function createElement$1 (tagName, vnode) { var elm = document.createElement(tagName); if (tagName !== 'select') { return elm } // false or null will remove the attribute but undefined will not if (vnode.data && vnode.data.attrs && vnode.data.attrs.multiple !== undefined) { elm.setAttribute('multiple', 'multiple'); } return elm } function createElementNS (namespace, tagName) { return document.createElementNS(namespaceMap[namespace], tagName) } function createTextNode (text) { return document.createTextNode(text) } function createComment (text) { return document.createComment(text) } function insertBefore (parentNode, newNode, referenceNode) { parentNode.insertBefore(newNode, referenceNode); } function removeChild (node, child) { node.removeChild(child); } function appendChild (node, child) { node.appendChild(child); } function parentNode (node) { return node.parentNode } function nextSibling (node) { return node.nextSibling } function tagName (node) { return node.tagName } function setTextContent (node, text) { node.textContent = text; } function setStyleScope (node, scopeId) { node.setAttribute(scopeId, ''); } var nodeOps = /*#__PURE__*/Object.freeze({ createElement: createElement$1, createElementNS: createElementNS, createTextNode: createTextNode, createComment: createComment, insertBefore: insertBefore, removeChild: removeChild, appendChild: appendChild, parentNode: parentNode, nextSibling: nextSibling, tagName: tagName, setTextContent: setTextContent, setStyleScope: setStyleScope }); /* */ var ref = { create: function create (_, vnode) { registerRef(vnode); }, update: function update (oldVnode, vnode) { if (oldVnode.data.ref !== vnode.data.ref) { registerRef(oldVnode, true); registerRef(vnode); } }, destroy: function destroy (vnode) { registerRef(vnode, true); } }; function registerRef (vnode, isRemoval) { var key = vnode.data.ref; if (!isDef(key)) { return } var vm = vnode.context; var ref = vnode.componentInstance || vnode.elm; var refs = vm.$refs; if (isRemoval) { if (Array.isArray(refs[key])) { remove(refs[key], ref); } else if (refs[key] === ref) { refs[key] = undefined; } } else { if (vnode.data.refInFor) { if (!Array.isArray(refs[key])) { refs[key] = [ref]; } else if (refs[key].indexOf(ref) < 0) { // $flow-disable-line refs[key].push(ref); } } else { refs[key] = ref; } } } /** * Virtual DOM patching algorithm based on Snabbdom by * Simon Friis Vindum (@paldepind) * Licensed under the MIT License * https://github.com/paldepind/snabbdom/blob/master/LICENSE * * modified by Evan You (@yyx990803) * * Not type-checking this because this file is perf-critical and the cost * of making flow understand it is not worth it. */ var emptyNode = new VNode('', {}, []); var hooks = ['create', 'activate', 'update', 'remove', 'destroy']; function sameVnode (a, b) { return ( a.key === b.key && ( ( a.tag === b.tag && a.isComment === b.isComment && isDef(a.data) === isDef(b.data) && sameInputType(a, b) ) || ( isTrue(a.isAsyncPlaceholder) && a.asyncFactory === b.asyncFactory && isUndef(b.asyncFactory.error) ) ) ) } function sameInputType (a, b) { if (a.tag !== 'input') { return true } var i; var typeA = isDef(i = a.data) && isDef(i = i.attrs) && i.type; var typeB = isDef(i = b.data) && isDef(i = i.attrs) && i.type; return typeA === typeB || isTextInputType(typeA) && isTextInputType(typeB) } function createKeyToOldIdx (children, beginIdx, endIdx) { var i, key; var map = {}; for (i = beginIdx; i <= endIdx; ++i) { key = children[i].key; if (isDef(key)) { map[key] = i; } } return map } function createPatchFunction (backend) { var i, j; var cbs = {}; var modules = backend.modules; var nodeOps = backend.nodeOps; for (i = 0; i < hooks.length; ++i) { cbs[hooks[i]] = []; for (j = 0; j < modules.length; ++j) { if (isDef(modules[j][hooks[i]])) { cbs[hooks[i]].push(modules[j][hooks[i]]); } } } function emptyNodeAt (elm) { return new VNode(nodeOps.tagName(elm).toLowerCase(), {}, [], undefined, elm) } function createRmCb (childElm, listeners) { function remove$$1 () { if (--remove$$1.listeners === 0) { removeNode(childElm); } } remove$$1.listeners = listeners; return remove$$1 } function removeNode (el) { var parent = nodeOps.parentNode(el); // element may have already been removed due to v-html / v-text if (isDef(parent)) { nodeOps.removeChild(parent, el); } } function isUnknownElement$$1 (vnode, inVPre) { return ( !inVPre && !vnode.ns && !( config.ignoredElements.length && config.ignoredElements.some(function (ignore) { return isRegExp(ignore) ? ignore.test(vnode.tag) : ignore === vnode.tag }) ) && config.isUnknownElement(vnode.tag) ) } var creatingElmInVPre = 0; function createElm ( vnode, insertedVnodeQueue, parentElm, refElm, nested, ownerArray, index ) { if (isDef(vnode.elm) && isDef(ownerArray)) { // This vnode was used in a previous render! // now it's used as a new node, overwriting its elm would cause // potential patch errors down the road when it's used as an insertion // reference node. Instead, we clone the node on-demand before creating // associated DOM element for it. vnode = ownerArray[index] = cloneVNode(vnode); } vnode.isRootInsert = !nested; // for transition enter check if (createComponent(vnode, insertedVnodeQueue, parentElm, refElm)) { return } var data = vnode.data; var children = vnode.children; var tag = vnode.tag; if (isDef(tag)) { { if (data && data.pre) { creatingElmInVPre++; } if (isUnknownElement$$1(vnode, creatingElmInVPre)) { warn( 'Unknown custom element: <' + tag + '> - did you ' + 'register the component correctly? For recursive components, ' + 'make sure to provide the "name" option.', vnode.context ); } } vnode.elm = vnode.ns ? nodeOps.createElementNS(vnode.ns, tag) : nodeOps.createElement(tag, vnode); setScope(vnode); /* istanbul ignore if */ { createChildren(vnode, children, insertedVnodeQueue); if (isDef(data)) { invokeCreateHooks(vnode, insertedVnodeQueue); } insert(parentElm, vnode.elm, refElm); } if (data && data.pre) { creatingElmInVPre--; } } else if (isTrue(vnode.isComment)) { vnode.elm = nodeOps.createComment(vnode.text); insert(parentElm, vnode.elm, refElm); } else { vnode.elm = nodeOps.createTextNode(vnode.text); insert(parentElm, vnode.elm, refElm); } } function createComponent (vnode, insertedVnodeQueue, parentElm, refElm) { var i = vnode.data; if (isDef(i)) { var isReactivated = isDef(vnode.componentInstance) && i.keepAlive; if (isDef(i = i.hook) && isDef(i = i.init)) { i(vnode, false /* hydrating */); } // after calling the init hook, if the vnode is a child component // it should've created a child instance and mounted it. the child // component also has set the placeholder vnode's elm. // in that case we can just return the element and be done. if (isDef(vnode.componentInstance)) { initComponent(vnode, insertedVnodeQueue); insert(parentElm, vnode.elm, refElm); if (isTrue(isReactivated)) { reactivateComponent(vnode, insertedVnodeQueue, parentElm, refElm); } return true } } } function initComponent (vnode, insertedVnodeQueue) { if (isDef(vnode.data.pendingInsert)) { insertedVnodeQueue.push.apply(insertedVnodeQueue, vnode.data.pendingInsert); vnode.data.pendingInsert = null; } vnode.elm = vnode.componentInstance.$el; if (isPatchable(vnode)) { invokeCreateHooks(vnode, insertedVnodeQueue); setScope(vnode); } else { // empty component root. // skip all element-related modules except for ref (#3455) registerRef(vnode); // make sure to invoke the insert hook insertedVnodeQueue.push(vnode); } } function reactivateComponent (vnode, insertedVnodeQueue, parentElm, refElm) { var i; // hack for #4339: a reactivated component with inner transition // does not trigger because the inner node's created hooks are not called // again. It's not ideal to involve module-specific logic in here but // there doesn't seem to be a better way to do it. var innerNode = vnode; while (innerNode.componentInstance) { innerNode = innerNode.componentInstance._vnode; if (isDef(i = innerNode.data) && isDef(i = i.transition)) { for (i = 0; i < cbs.activate.length; ++i) { cbs.activate[i](emptyNode, innerNode); } insertedVnodeQueue.push(innerNode); break } } // unlike a newly created component, // a reactivated keep-alive component doesn't insert itself insert(parentElm, vnode.elm, refElm); } function insert (parent, elm, ref$$1) { if (isDef(parent)) { if (isDef(ref$$1)) { if (nodeOps.parentNode(ref$$1) === parent) { nodeOps.insertBefore(parent, elm, ref$$1); } } else { nodeOps.appendChild(parent, elm); } } } function createChildren (vnode, children, insertedVnodeQueue) { if (Array.isArray(children)) { { checkDuplicateKeys(children); } for (var i = 0; i < children.length; ++i) { createElm(children[i], insertedVnodeQueue, vnode.elm, null, true, children, i); } } else if (isPrimitive(vnode.text)) { nodeOps.appendChild(vnode.elm, nodeOps.createTextNode(String(vnode.text))); } } function isPatchable (vnode) { while (vnode.componentInstance) { vnode = vnode.componentInstance._vnode; } return isDef(vnode.tag) } function invokeCreateHooks (vnode, insertedVnodeQueue) { for (var i$1 = 0; i$1 < cbs.create.length; ++i$1) { cbs.create[i$1](emptyNode, vnode); } i = vnode.data.hook; // Reuse variable if (isDef(i)) { if (isDef(i.create)) { i.create(emptyNode, vnode); } if (isDef(i.insert)) { insertedVnodeQueue.push(vnode); } } } // set scope id attribute for scoped CSS. // this is implemented as a special case to avoid the overhead // of going through the normal attribute patching process. function setScope (vnode) { var i; if (isDef(i = vnode.fnScopeId)) { nodeOps.setStyleScope(vnode.elm, i); } else { var ancestor = vnode; while (ancestor) { if (isDef(i = ancestor.context) && isDef(i = i.$options._scopeId)) { nodeOps.setStyleScope(vnode.elm, i); } ancestor = ancestor.parent; } } // for slot content they should also get the scopeId from the host instance. if (isDef(i = activeInstance) && i !== vnode.context && i !== vnode.fnContext && isDef(i = i.$options._scopeId) ) { nodeOps.setStyleScope(vnode.elm, i); } } function addVnodes (parentElm, refElm, vnodes, startIdx, endIdx, insertedVnodeQueue) { for (; startIdx <= endIdx; ++startIdx) { createElm(vnodes[startIdx], insertedVnodeQueue, parentElm, refElm, false, vnodes, startIdx); } } function invokeDestroyHook (vnode) { var i, j; var data = vnode.data; if (isDef(data)) { if (isDef(i = data.hook) && isDef(i = i.destroy)) { i(vnode); } for (i = 0; i < cbs.destroy.length; ++i) { cbs.destroy[i](vnode); } } if (isDef(i = vnode.children)) { for (j = 0; j < vnode.children.length; ++j) { invokeDestroyHook(vnode.children[j]); } } } function removeVnodes (vnodes, startIdx, endIdx) { for (; startIdx <= endIdx; ++startIdx) { var ch = vnodes[startIdx]; if (isDef(ch)) { if (isDef(ch.tag)) { removeAndInvokeRemoveHook(ch); invokeDestroyHook(ch); } else { // Text node removeNode(ch.elm); } } } } function removeAndInvokeRemoveHook (vnode, rm) { if (isDef(rm) || isDef(vnode.data)) { var i; var listeners = cbs.remove.length + 1; if (isDef(rm)) { // we have a recursively passed down rm callback // increase the listeners count rm.listeners += listeners; } else { // directly removing rm = createRmCb(vnode.elm, listeners); } // recursively invoke hooks on child component root node if (isDef(i = vnode.componentInstance) && isDef(i = i._vnode) && isDef(i.data)) { removeAndInvokeRemoveHook(i, rm); } for (i = 0; i < cbs.remove.length; ++i) { cbs.remove[i](vnode, rm); } if (isDef(i = vnode.data.hook) && isDef(i = i.remove)) { i(vnode, rm); } else { rm(); } } else { removeNode(vnode.elm); } } function updateChildren (parentElm, oldCh, newCh, insertedVnodeQueue, removeOnly) { var oldStartIdx = 0; var newStartIdx = 0; var oldEndIdx = oldCh.length - 1; var oldStartVnode = oldCh[0]; var oldEndVnode = oldCh[oldEndIdx]; var newEndIdx = newCh.length - 1; var newStartVnode = newCh[0]; var newEndVnode = newCh[newEndIdx]; var oldKeyToIdx, idxInOld, vnodeToMove, refElm; // removeOnly is a special flag used only by <transition-group> // to ensure removed elements stay in correct relative positions // during leaving transitions var canMove = !removeOnly; { checkDuplicateKeys(newCh); } while (oldStartIdx <= oldEndIdx && newStartIdx <= newEndIdx) { if (isUndef(oldStartVnode)) { oldStartVnode = oldCh[++oldStartIdx]; // Vnode has been moved left } else if (isUndef(oldEndVnode)) { oldEndVnode = oldCh[--oldEndIdx]; } else if (sameVnode(oldStartVnode, newStartVnode)) { patchVnode(oldStartVnode, newStartVnode, insertedVnodeQueue, newCh, newStartIdx); oldStartVnode = oldCh[++oldStartIdx]; newStartVnode = newCh[++newStartIdx]; } else if (sameVnode(oldEndVnode, newEndVnode)) { patchVnode(oldEndVnode, newEndVnode, insertedVnodeQueue, newCh, newEndIdx); oldEndVnode = oldCh[--oldEndIdx]; newEndVnode = newCh[--newEndIdx]; } else if (sameVnode(oldStartVnode, newEndVnode)) { // Vnode moved right patchVnode(oldStartVnode, newEndVnode, insertedVnodeQueue, newCh, newEndIdx); canMove && nodeOps.insertBefore(parentElm, oldStartVnode.elm, nodeOps.nextSibling(oldEndVnode.elm)); oldStartVnode = oldCh[++oldStartIdx]; newEndVnode = newCh[--newEndIdx]; } else if (sameVnode(oldEndVnode, newStartVnode)) { // Vnode moved left patchVnode(oldEndVnode, newStartVnode, insertedVnodeQueue, newCh, newStartIdx); canMove && nodeOps.insertBefore(parentElm, oldEndVnode.elm, oldStartVnode.elm); oldEndVnode = oldCh[--oldEndIdx]; newStartVnode = newCh[++newStartIdx]; } else { if (isUndef(oldKeyToIdx)) { oldKeyToIdx = createKeyToOldIdx(oldCh, oldStartIdx, oldEndIdx); } idxInOld = isDef(newStartVnode.key) ? oldKeyToIdx[newStartVnode.key] : findIdxInOld(newStartVnode, oldCh, oldStartIdx, oldEndIdx); if (isUndef(idxInOld)) { // New element createElm(newStartVnode, insertedVnodeQueue, parentElm, oldStartVnode.elm, false, newCh, newStartIdx); } else { vnodeToMove = oldCh[idxInOld]; if (sameVnode(vnodeToMove, newStartVnode)) { patchVnode(vnodeToMove, newStartVnode, insertedVnodeQueue, newCh, newStartIdx); oldCh[idxInOld] = undefined; canMove && nodeOps.insertBefore(parentElm, vnodeToMove.elm, oldStartVnode.elm); } else { // same key but different element. treat as new element createElm(newStartVnode, insertedVnodeQueue, parentElm, oldStartVnode.elm, false, newCh, newStartIdx); } } newStartVnode = newCh[++newStartIdx]; } } if (oldStartIdx > oldEndIdx) { refElm = isUndef(newCh[newEndIdx + 1]) ? null : newCh[newEndIdx + 1].elm; addVnodes(parentElm, refElm, newCh, newStartIdx, newEndIdx, insertedVnodeQueue); } else if (newStartIdx > newEndIdx) { removeVnodes(oldCh, oldStartIdx, oldEndIdx); } } function checkDuplicateKeys (children) { var seenKeys = {}; for (var i = 0; i < children.length; i++) { var vnode = children[i]; var key = vnode.key; if (isDef(key)) { if (seenKeys[key]) { warn( ("Duplicate keys detected: '" + key + "'. This may cause an update error."), vnode.context ); } else { seenKeys[key] = true; } } } } function findIdxInOld (node, oldCh, start, end) { for (var i = start; i < end; i++) { var c = oldCh[i]; if (isDef(c) && sameVnode(node, c)) { return i } } } function patchVnode ( oldVnode, vnode, insertedVnodeQueue, ownerArray, index, removeOnly ) { if (oldVnode === vnode) { return } if (isDef(vnode.elm) && isDef(ownerArray)) { // clone reused vnode vnode = ownerArray[index] = cloneVNode(vnode); } var elm = vnode.elm = oldVnode.elm; if (isTrue(oldVnode.isAsyncPlaceholder)) { if (isDef(vnode.asyncFactory.resolved)) { hydrate(oldVnode.elm, vnode, insertedVnodeQueue); } else { vnode.isAsyncPlaceholder = true; } return } // reuse element for static trees. // note we only do this if the vnode is cloned - // if the new node is not cloned it means the render functions have been // reset by the hot-reload-api and we need to do a proper re-render. if (isTrue(vnode.isStatic) && isTrue(oldVnode.isStatic) && vnode.key === oldVnode.key && (isTrue(vnode.isCloned) || isTrue(vnode.isOnce)) ) { vnode.componentInstance = oldVnode.componentInstance; return } var i; var data = vnode.data; if (isDef(data) && isDef(i = data.hook) && isDef(i = i.prepatch)) { i(oldVnode, vnode); } var oldCh = oldVnode.children; var ch = vnode.children; if (isDef(data) && isPatchable(vnode)) { for (i = 0; i < cbs.update.length; ++i) { cbs.update[i](oldVnode, vnode); } if (isDef(i = data.hook) && isDef(i = i.update)) { i(oldVnode, vnode); } } if (isUndef(vnode.text)) { if (isDef(oldCh) && isDef(ch)) { if (oldCh !== ch) { updateChildren(elm, oldCh, ch, insertedVnodeQueue, removeOnly); } } else if (isDef(ch)) { { checkDuplicateKeys(ch); } if (isDef(oldVnode.text)) { nodeOps.setTextContent(elm, ''); } addVnodes(elm, null, ch, 0, ch.length - 1, insertedVnodeQueue); } else if (isDef(oldCh)) { removeVnodes(oldCh, 0, oldCh.length - 1); } else if (isDef(oldVnode.text)) { nodeOps.setTextContent(elm, ''); } } else if (oldVnode.text !== vnode.text) { nodeOps.setTextContent(elm, vnode.text); } if (isDef(data)) { if (isDef(i = data.hook) && isDef(i = i.postpatch)) { i(oldVnode, vnode); } } } function invokeInsertHook (vnode, queue, initial) { // delay insert hooks for component root nodes, invoke them after the // element is really inserted if (isTrue(initial) && isDef(vnode.parent)) { vnode.parent.data.pendingInsert = queue; } else { for (var i = 0; i < queue.length; ++i) { queue[i].data.hook.insert(queue[i]); } } } var hydrationBailed = false; // list of modules that can skip create hook during hydration because they // are already rendered on the client or has no need for initialization // Note: style is excluded because it relies on initial clone for future // deep updates (#7063). var isRenderedModule = makeMap('attrs,class,staticClass,staticStyle,key'); // Note: this is a browser-only function so we can assume elms are DOM nodes. function hydrate (elm, vnode, insertedVnodeQueue, inVPre) { var i; var tag = vnode.tag; var data = vnode.data; var children = vnode.children; inVPre = inVPre || (data && data.pre); vnode.elm = elm; if (isTrue(vnode.isComment) && isDef(vnode.asyncFactory)) { vnode.isAsyncPlaceholder = true; return true } // assert node match { if (!assertNodeMatch(elm, vnode, inVPre)) { return false } } if (isDef(data)) { if (isDef(i = data.hook) && isDef(i = i.init)) { i(vnode, true /* hydrating */); } if (isDef(i = vnode.componentInstance)) { // child component. it should have hydrated its own tree. initComponent(vnode, insertedVnodeQueue); return true } } if (isDef(tag)) { if (isDef(children)) { // empty element, allow client to pick up and populate children if (!elm.hasChildNodes()) { createChildren(vnode, children, insertedVnodeQueue); } else { // v-html and domProps: innerHTML if (isDef(i = data) && isDef(i = i.domProps) && isDef(i = i.innerHTML)) { if (i !== elm.innerHTML) { /* istanbul ignore if */ if (typeof console !== 'undefined' && !hydrationBailed ) { hydrationBailed = true; console.warn('Parent: ', elm); console.warn('server innerHTML: ', i); console.warn('client innerHTML: ', elm.innerHTML); } return false } } else { // iterate and compare children lists var childrenMatch = true; var childNode = elm.firstChild; for (var i$1 = 0; i$1 < children.length; i$1++) { if (!childNode || !hydrate(childNode, children[i$1], insertedVnodeQueue, inVPre)) { childrenMatch = false; break } childNode = childNode.nextSibling; } // if childNode is not null, it means the actual childNodes list is // longer than the virtual children list. if (!childrenMatch || childNode) { /* istanbul ignore if */ if (typeof console !== 'undefined' && !hydrationBailed ) { hydrationBailed = true; console.warn('Parent: ', elm); console.warn('Mismatching childNodes vs. VNodes: ', elm.childNodes, children); } return false } } } } if (isDef(data)) { var fullInvoke = false; for (var key in data) { if (!isRenderedModule(key)) { fullInvoke = true; invokeCreateHooks(vnode, insertedVnodeQueue); break } } if (!fullInvoke && data['class']) { // ensure collecting deps for deep class bindings for future updates traverse(data['class']); } } } else if (elm.data !== vnode.text) { elm.data = vnode.text; } return true } function assertNodeMatch (node, vnode, inVPre) { if (isDef(vnode.tag)) { return vnode.tag.indexOf('vue-component') === 0 || ( !isUnknownElement$$1(vnode, inVPre) && vnode.tag.toLowerCase() === (node.tagName && node.tagName.toLowerCase()) ) } else { return node.nodeType === (vnode.isComment ? 8 : 3) } } return function patch (oldVnode, vnode, hydrating, removeOnly) { if (isUndef(vnode)) { if (isDef(oldVnode)) { invokeDestroyHook(oldVnode); } return } var isInitialPatch = false; var insertedVnodeQueue = []; if (isUndef(oldVnode)) { // empty mount (likely as component), create new root element isInitialPatch = true; createElm(vnode, insertedVnodeQueue); } else { var isRealElement = isDef(oldVnode.nodeType); if (!isRealElement && sameVnode(oldVnode, vnode)) { // patch existing root node patchVnode(oldVnode, vnode, insertedVnodeQueue, null, null, removeOnly); } else { if (isRealElement) { // mounting to a real element // check if this is server-rendered content and if we can perform // a successful hydration. if (oldVnode.nodeType === 1 && oldVnode.hasAttribute(SSR_ATTR)) { oldVnode.removeAttribute(SSR_ATTR); hydrating = true; } if (isTrue(hydrating)) { if (hydrate(oldVnode, vnode, insertedVnodeQueue)) { invokeInsertHook(vnode, insertedVnodeQueue, true); return oldVnode } else { warn( 'The client-side rendered virtual DOM tree is not matching ' + 'server-rendered content. This is likely caused by incorrect ' + 'HTML markup, for example nesting block-level elements inside ' + '<p>, or missing <tbody>. Bailing hydration and performing ' + 'full client-side render.' ); } } // either not server-rendered, or hydration failed. // create an empty node and replace it oldVnode = emptyNodeAt(oldVnode); } // replacing existing element var oldElm = oldVnode.elm; var parentElm = nodeOps.parentNode(oldElm); // create new node createElm( vnode, insertedVnodeQueue, // extremely rare edge case: do not insert if old element is in a // leaving transition. Only happens when combining transition + // keep-alive + HOCs. (#4590) oldElm._leaveCb ? null : parentElm, nodeOps.nextSibling(oldElm) ); // update parent placeholder node element, recursively if (isDef(vnode.parent)) { var ancestor = vnode.parent; var patchable = isPatchable(vnode); while (ancestor) { for (var i = 0; i < cbs.destroy.length; ++i) { cbs.destroy[i](ancestor); } ancestor.elm = vnode.elm; if (patchable) { for (var i$1 = 0; i$1 < cbs.create.length; ++i$1) { cbs.create[i$1](emptyNode, ancestor); } // #6513 // invoke insert hooks that may have been merged by create hooks. // e.g. for directives that uses the "inserted" hook. var insert = ancestor.data.hook.insert; if (insert.merged) { // start at index 1 to avoid re-invoking component mounted hook for (var i$2 = 1; i$2 < insert.fns.length; i$2++) { insert.fns[i$2](); } } } else { registerRef(ancestor); } ancestor = ancestor.parent; } } // destroy old node if (isDef(parentElm)) { removeVnodes([oldVnode], 0, 0); } else if (isDef(oldVnode.tag)) { invokeDestroyHook(oldVnode); } } } invokeInsertHook(vnode, insertedVnodeQueue, isInitialPatch); return vnode.elm } } /* */ var directives = { create: updateDirectives, update: updateDirectives, destroy: function unbindDirectives (vnode) { updateDirectives(vnode, emptyNode); } }; function updateDirectives (oldVnode, vnode) { if (oldVnode.data.directives || vnode.data.directives) { _update(oldVnode, vnode); } } function _update (oldVnode, vnode) { var isCreate = oldVnode === emptyNode; var isDestroy = vnode === emptyNode; var oldDirs = normalizeDirectives$1(oldVnode.data.directives, oldVnode.context); var newDirs = normalizeDirectives$1(vnode.data.directives, vnode.context); var dirsWithInsert = []; var dirsWithPostpatch = []; var key, oldDir, dir; for (key in newDirs) { oldDir = oldDirs[key]; dir = newDirs[key]; if (!oldDir) { // new directive, bind callHook$1(dir, 'bind', vnode, oldVnode); if (dir.def && dir.def.inserted) { dirsWithInsert.push(dir); } } else { // existing directive, update dir.oldValue = oldDir.value; dir.oldArg = oldDir.arg; callHook$1(dir, 'update', vnode, oldVnode); if (dir.def && dir.def.componentUpdated) { dirsWithPostpatch.push(dir); } } } if (dirsWithInsert.length) { var callInsert = function () { for (var i = 0; i < dirsWithInsert.length; i++) { callHook$1(dirsWithInsert[i], 'inserted', vnode, oldVnode); } }; if (isCreate) { mergeVNodeHook(vnode, 'insert', callInsert); } else { callInsert(); } } if (dirsWithPostpatch.length) { mergeVNodeHook(vnode, 'postpatch', function () { for (var i = 0; i < dirsWithPostpatch.length; i++) { callHook$1(dirsWithPostpatch[i], 'componentUpdated', vnode, oldVnode); } }); } if (!isCreate) { for (key in oldDirs) { if (!newDirs[key]) { // no longer present, unbind callHook$1(oldDirs[key], 'unbind', oldVnode, oldVnode, isDestroy); } } } } var emptyModifiers = Object.create(null); function normalizeDirectives$1 ( dirs, vm ) { var res = Object.create(null); if (!dirs) { // $flow-disable-line return res } var i, dir; for (i = 0; i < dirs.length; i++) { dir = dirs[i]; if (!dir.modifiers) { // $flow-disable-line dir.modifiers = emptyModifiers; } res[getRawDirName(dir)] = dir; dir.def = resolveAsset(vm.$options, 'directives', dir.name, true); } // $flow-disable-line return res } function getRawDirName (dir) { return dir.rawName || ((dir.name) + "." + (Object.keys(dir.modifiers || {}).join('.'))) } function callHook$1 (dir, hook, vnode, oldVnode, isDestroy) { var fn = dir.def && dir.def[hook]; if (fn) { try { fn(vnode.elm, dir, vnode, oldVnode, isDestroy); } catch (e) { handleError(e, vnode.context, ("directive " + (dir.name) + " " + hook + " hook")); } } } var baseModules = [ ref, directives ]; /* */ function updateAttrs (oldVnode, vnode) { var opts = vnode.componentOptions; if (isDef(opts) && opts.Ctor.options.inheritAttrs === false) { return } if (isUndef(oldVnode.data.attrs) && isUndef(vnode.data.attrs)) { return } var key, cur, old; var elm = vnode.elm; var oldAttrs = oldVnode.data.attrs || {}; var attrs = vnode.data.attrs || {}; // clone observed objects, as the user probably wants to mutate it if (isDef(attrs.__ob__)) { attrs = vnode.data.attrs = extend({}, attrs); } for (key in attrs) { cur = attrs[key]; old = oldAttrs[key]; if (old !== cur) { setAttr(elm, key, cur); } } // #4391: in IE9, setting type can reset value for input[type=radio] // #6666: IE/Edge forces progress value down to 1 before setting a max /* istanbul ignore if */ if ((isIE || isEdge) && attrs.value !== oldAttrs.value) { setAttr(elm, 'value', attrs.value); } for (key in oldAttrs) { if (isUndef(attrs[key])) { if (isXlink(key)) { elm.removeAttributeNS(xlinkNS, getXlinkProp(key)); } else if (!isEnumeratedAttr(key)) { elm.removeAttribute(key); } } } } function setAttr (el, key, value) { if (el.tagName.indexOf('-') > -1) { baseSetAttr(el, key, value); } else if (isBooleanAttr(key)) { // set attribute for blank value // e.g. <option disabled>Select one</option> if (isFalsyAttrValue(value)) { el.removeAttribute(key); } else { // technically allowfullscreen is a boolean attribute for <iframe>, // but Flash expects a value of "true" when used on <embed> tag value = key === 'allowfullscreen' && el.tagName === 'EMBED' ? 'true' : key; el.setAttribute(key, value); } } else if (isEnumeratedAttr(key)) { el.setAttribute(key, convertEnumeratedValue(key, value)); } else if (isXlink(key)) { if (isFalsyAttrValue(value)) { el.removeAttributeNS(xlinkNS, getXlinkProp(key)); } else { el.setAttributeNS(xlinkNS, key, value); } } else { baseSetAttr(el, key, value); } } function baseSetAttr (el, key, value) { if (isFalsyAttrValue(value)) { el.removeAttribute(key); } else { // #7138: IE10 & 11 fires input event when setting placeholder on // <textarea>... block the first input event and remove the blocker // immediately. /* istanbul ignore if */ if ( isIE && !isIE9 && el.tagName === 'TEXTAREA' && key === 'placeholder' && value !== '' && !el.__ieph ) { var blocker = function (e) { e.stopImmediatePropagation(); el.removeEventListener('input', blocker); }; el.addEventListener('input', blocker); // $flow-disable-line el.__ieph = true; /* IE placeholder patched */ } el.setAttribute(key, value); } } var attrs = { create: updateAttrs, update: updateAttrs }; /* */ function updateClass (oldVnode, vnode) { var el = vnode.elm; var data = vnode.data; var oldData = oldVnode.data; if ( isUndef(data.staticClass) && isUndef(data.class) && ( isUndef(oldData) || ( isUndef(oldData.staticClass) && isUndef(oldData.class) ) ) ) { return } var cls = genClassForVnode(vnode); // handle transition classes var transitionClass = el._transitionClasses; if (isDef(transitionClass)) { cls = concat(cls, stringifyClass(transitionClass)); } // set the class if (cls !== el._prevClass) { el.setAttribute('class', cls); el._prevClass = cls; } } var klass = { create: updateClass, update: updateClass }; /* */ var validDivisionCharRE = /[\w).+\-_$\]]/; function parseFilters (exp) { var inSingle = false; var inDouble = false; var inTemplateString = false; var inRegex = false; var curly = 0; var square = 0; var paren = 0; var lastFilterIndex = 0; var c, prev, i, expression, filters; for (i = 0; i < exp.length; i++) { prev = c; c = exp.charCodeAt(i); if (inSingle) { if (c === 0x27 && prev !== 0x5C) { inSingle = false; } } else if (inDouble) { if (c === 0x22 && prev !== 0x5C) { inDouble = false; } } else if (inTemplateString) { if (c === 0x60 && prev !== 0x5C) { inTemplateString = false; } } else if (inRegex) { if (c === 0x2f && prev !== 0x5C) { inRegex = false; } } else if ( c === 0x7C && // pipe exp.charCodeAt(i + 1) !== 0x7C && exp.charCodeAt(i - 1) !== 0x7C && !curly && !square && !paren ) { if (expression === undefined) { // first filter, end of expression lastFilterIndex = i + 1; expression = exp.slice(0, i).trim(); } else { pushFilter(); } } else { switch (c) { case 0x22: inDouble = true; break // " case 0x27: inSingle = true; break // ' case 0x60: inTemplateString = true; break // ` case 0x28: paren++; break // ( case 0x29: paren--; break // ) case 0x5B: square++; break // [ case 0x5D: square--; break // ] case 0x7B: curly++; break // { case 0x7D: curly--; break // } } if (c === 0x2f) { // / var j = i - 1; var p = (void 0); // find first non-whitespace prev char for (; j >= 0; j--) { p = exp.charAt(j); if (p !== ' ') { break } } if (!p || !validDivisionCharRE.test(p)) { inRegex = true; } } } } if (expression === undefined) { expression = exp.slice(0, i).trim(); } else if (lastFilterIndex !== 0) { pushFilter(); } function pushFilter () { (filters || (filters = [])).push(exp.slice(lastFilterIndex, i).trim()); lastFilterIndex = i + 1; } if (filters) { for (i = 0; i < filters.length; i++) { expression = wrapFilter(expression, filters[i]); } } return expression } function wrapFilter (exp, filter) { var i = filter.indexOf('('); if (i < 0) { // _f: resolveFilter return ("_f(\"" + filter + "\")(" + exp + ")") } else { var name = filter.slice(0, i); var args = filter.slice(i + 1); return ("_f(\"" + name + "\")(" + exp + (args !== ')' ? ',' + args : args)) } } /* */ /* eslint-disable no-unused-vars */ function baseWarn (msg, range) { console.error(("[Vue compiler]: " + msg)); } /* eslint-enable no-unused-vars */ function pluckModuleFunction ( modules, key ) { return modules ? modules.map(function (m) { return m[key]; }).filter(function (_) { return _; }) : [] } function addProp (el, name, value, range, dynamic) { (el.props || (el.props = [])).push(rangeSetItem({ name: name, value: value, dynamic: dynamic }, range)); el.plain = false; } function addAttr (el, name, value, range, dynamic) { var attrs = dynamic ? (el.dynamicAttrs || (el.dynamicAttrs = [])) : (el.attrs || (el.attrs = [])); attrs.push(rangeSetItem({ name: name, value: value, dynamic: dynamic }, range)); el.plain = false; } // add a raw attr (use this in preTransforms) function addRawAttr (el, name, value, range) { el.attrsMap[name] = value; el.attrsList.push(rangeSetItem({ name: name, value: value }, range)); } function addDirective ( el, name, rawName, value, arg, isDynamicArg, modifiers, range ) { (el.directives || (el.directives = [])).push(rangeSetItem({ name: name, rawName: rawName, value: value, arg: arg, isDynamicArg: isDynamicArg, modifiers: modifiers }, range)); el.plain = false; } function prependModifierMarker (symbol, name, dynamic) { return dynamic ? ("_p(" + name + ",\"" + symbol + "\")") : symbol + name // mark the event as captured } function addHandler ( el, name, value, modifiers, important, warn, range, dynamic ) { modifiers = modifiers || emptyObject; // warn prevent and passive modifier /* istanbul ignore if */ if ( warn && modifiers.prevent && modifiers.passive ) { warn( 'passive and prevent can\'t be used together. ' + 'Passive handler can\'t prevent default event.', range ); } // normalize click.right and click.middle since they don't actually fire // this is technically browser-specific, but at least for now browsers are // the only target envs that have right/middle clicks. if (modifiers.right) { if (dynamic) { name = "(" + name + ")==='click'?'contextmenu':(" + name + ")"; } else if (name === 'click') { name = 'contextmenu'; delete modifiers.right; } } else if (modifiers.middle) { if (dynamic) { name = "(" + name + ")==='click'?'mouseup':(" + name + ")"; } else if (name === 'click') { name = 'mouseup'; } } // check capture modifier if (modifiers.capture) { delete modifiers.capture; name = prependModifierMarker('!', name, dynamic); } if (modifiers.once) { delete modifiers.once; name = prependModifierMarker('~', name, dynamic); } /* istanbul ignore if */ if (modifiers.passive) { delete modifiers.passive; name = prependModifierMarker('&', name, dynamic); } var events; if (modifiers.native) { delete modifiers.native; events = el.nativeEvents || (el.nativeEvents = {}); } else { events = el.events || (el.events = {}); } var newHandler = rangeSetItem({ value: value.trim(), dynamic: dynamic }, range); if (modifiers !== emptyObject) { newHandler.modifiers = modifiers; } var handlers = events[name]; /* istanbul ignore if */ if (Array.isArray(handlers)) { important ? handlers.unshift(newHandler) : handlers.push(newHandler); } else if (handlers) { events[name] = important ? [newHandler, handlers] : [handlers, newHandler]; } else { events[name] = newHandler; } el.plain = false; } function getRawBindingAttr ( el, name ) { return el.rawAttrsMap[':' + name] || el.rawAttrsMap['v-bind:' + name] || el.rawAttrsMap[name] } function getBindingAttr ( el, name, getStatic ) { var dynamicValue = getAndRemoveAttr(el, ':' + name) || getAndRemoveAttr(el, 'v-bind:' + name); if (dynamicValue != null) { return parseFilters(dynamicValue) } else if (getStatic !== false) { var staticValue = getAndRemoveAttr(el, name); if (staticValue != null) { return JSON.stringify(staticValue) } } } // note: this only removes the attr from the Array (attrsList) so that it // doesn't get processed by processAttrs. // By default it does NOT remove it from the map (attrsMap) because the map is // needed during codegen. function getAndRemoveAttr ( el, name, removeFromMap ) { var val; if ((val = el.attrsMap[name]) != null) { var list = el.attrsList; for (var i = 0, l = list.length; i < l; i++) { if (list[i].name === name) { list.splice(i, 1); break } } } if (removeFromMap) { delete el.attrsMap[name]; } return val } function getAndRemoveAttrByRegex ( el, name ) { var list = el.attrsList; for (var i = 0, l = list.length; i < l; i++) { var attr = list[i]; if (name.test(attr.name)) { list.splice(i, 1); return attr } } } function rangeSetItem ( item, range ) { if (range) { if (range.start != null) { item.start = range.start; } if (range.end != null) { item.end = range.end; } } return item } /* */ /** * Cross-platform code generation for component v-model */ function genComponentModel ( el, value, modifiers ) { var ref = modifiers || {}; var number = ref.number; var trim = ref.trim; var baseValueExpression = '$$v'; var valueExpression = baseValueExpression; if (trim) { valueExpression = "(typeof " + baseValueExpression + " === 'string'" + "? " + baseValueExpression + ".trim()" + ": " + baseValueExpression + ")"; } if (number) { valueExpression = "_n(" + valueExpression + ")"; } var assignment = genAssignmentCode(value, valueExpression); el.model = { value: ("(" + value + ")"), expression: JSON.stringify(value), callback: ("function (" + baseValueExpression + ") {" + assignment + "}") }; } /** * Cross-platform codegen helper for generating v-model value assignment code. */ function genAssignmentCode ( value, assignment ) { var res = parseModel(value); if (res.key === null) { return (value + "=" + assignment) } else { return ("$set(" + (res.exp) + ", " + (res.key) + ", " + assignment + ")") } } /** * Parse a v-model expression into a base path and a final key segment. * Handles both dot-path and possible square brackets. * * Possible cases: * * - test * - test[key] * - test[test1[key]] * - test["a"][key] * - xxx.test[a[a].test1[key]] * - test.xxx.a["asa"][test1[key]] * */ var len, str, chr, index$1, expressionPos, expressionEndPos; function parseModel (val) { // Fix https://github.com/vuejs/vue/pull/7730 // allow v-model="obj.val " (trailing whitespace) val = val.trim(); len = val.length; if (val.indexOf('[') < 0 || val.lastIndexOf(']') < len - 1) { index$1 = val.lastIndexOf('.'); if (index$1 > -1) { return { exp: val.slice(0, index$1), key: '"' + val.slice(index$1 + 1) + '"' } } else { return { exp: val, key: null } } } str = val; index$1 = expressionPos = expressionEndPos = 0; while (!eof()) { chr = next(); /* istanbul ignore if */ if (isStringStart(chr)) { parseString(chr); } else if (chr === 0x5B) { parseBracket(chr); } } return { exp: val.slice(0, expressionPos), key: val.slice(expressionPos + 1, expressionEndPos) } } function next () { return str.charCodeAt(++index$1) } function eof () { return index$1 >= len } function isStringStart (chr) { return chr === 0x22 || chr === 0x27 } function parseBracket (chr) { var inBracket = 1; expressionPos = index$1; while (!eof()) { chr = next(); if (isStringStart(chr)) { parseString(chr); continue } if (chr === 0x5B) { inBracket++; } if (chr === 0x5D) { inBracket--; } if (inBracket === 0) { expressionEndPos = index$1; break } } } function parseString (chr) { var stringQuote = chr; while (!eof()) { chr = next(); if (chr === stringQuote) { break } } } /* */ var warn$1; // in some cases, the event used has to be determined at runtime // so we used some reserved tokens during compile. var RANGE_TOKEN = '__r'; var CHECKBOX_RADIO_TOKEN = '__c'; function model ( el, dir, _warn ) { warn$1 = _warn; var value = dir.value; var modifiers = dir.modifiers; var tag = el.tag; var type = el.attrsMap.type; { // inputs with type="file" are read only and setting the input's // value will throw an error. if (tag === 'input' && type === 'file') { warn$1( "<" + (el.tag) + " v-model=\"" + value + "\" type=\"file\">:\n" + "File inputs are read only. Use a v-on:change listener instead.", el.rawAttrsMap['v-model'] ); } } if (el.component) { genComponentModel(el, value, modifiers); // component v-model doesn't need extra runtime return false } else if (tag === 'select') { genSelect(el, value, modifiers); } else if (tag === 'input' && type === 'checkbox') { genCheckboxModel(el, value, modifiers); } else if (tag === 'input' && type === 'radio') { genRadioModel(el, value, modifiers); } else if (tag === 'input' || tag === 'textarea') { genDefaultModel(el, value, modifiers); } else if (!config.isReservedTag(tag)) { genComponentModel(el, value, modifiers); // component v-model doesn't need extra runtime return false } else { warn$1( "<" + (el.tag) + " v-model=\"" + value + "\">: " + "v-model is not supported on this element type. " + 'If you are working with contenteditable, it\'s recommended to ' + 'wrap a library dedicated for that purpose inside a custom component.', el.rawAttrsMap['v-model'] ); } // ensure runtime directive metadata return true } function genCheckboxModel ( el, value, modifiers ) { var number = modifiers && modifiers.number; var valueBinding = getBindingAttr(el, 'value') || 'null'; var trueValueBinding = getBindingAttr(el, 'true-value') || 'true'; var falseValueBinding = getBindingAttr(el, 'false-value') || 'false'; addProp(el, 'checked', "Array.isArray(" + value + ")" + "?_i(" + value + "," + valueBinding + ")>-1" + ( trueValueBinding === 'true' ? (":(" + value + ")") : (":_q(" + value + "," + trueValueBinding + ")") ) ); addHandler(el, 'change', "var $$a=" + value + "," + '$$el=$event.target,' + "$$c=$$el.checked?(" + trueValueBinding + "):(" + falseValueBinding + ");" + 'if(Array.isArray($$a)){' + "var $$v=" + (number ? '_n(' + valueBinding + ')' : valueBinding) + "," + '$$i=_i($$a,$$v);' + "if($$el.checked){$$i<0&&(" + (genAssignmentCode(value, '$$a.concat([$$v])')) + ")}" + "else{$$i>-1&&(" + (genAssignmentCode(value, '$$a.slice(0,$$i).concat($$a.slice($$i+1))')) + ")}" + "}else{" + (genAssignmentCode(value, '$$c')) + "}", null, true ); } function genRadioModel ( el, value, modifiers ) { var number = modifiers && modifiers.number; var valueBinding = getBindingAttr(el, 'value') || 'null'; valueBinding = number ? ("_n(" + valueBinding + ")") : valueBinding; addProp(el, 'checked', ("_q(" + value + "," + valueBinding + ")")); addHandler(el, 'change', genAssignmentCode(value, valueBinding), null, true); } function genSelect ( el, value, modifiers ) { var number = modifiers && modifiers.number; var selectedVal = "Array.prototype.filter" + ".call($event.target.options,function(o){return o.selected})" + ".map(function(o){var val = \"_value\" in o ? o._value : o.value;" + "return " + (number ? '_n(val)' : 'val') + "})"; var assignment = '$event.target.multiple ? $$selectedVal : $$selectedVal[0]'; var code = "var $$selectedVal = " + selectedVal + ";"; code = code + " " + (genAssignmentCode(value, assignment)); addHandler(el, 'change', code, null, true); } function genDefaultModel ( el, value, modifiers ) { var type = el.attrsMap.type; // warn if v-bind:value conflicts with v-model // except for inputs with v-bind:type { var value$1 = el.attrsMap['v-bind:value'] || el.attrsMap[':value']; var typeBinding = el.attrsMap['v-bind:type'] || el.attrsMap[':type']; if (value$1 && !typeBinding) { var binding = el.attrsMap['v-bind:value'] ? 'v-bind:value' : ':value'; warn$1( binding + "=\"" + value$1 + "\" conflicts with v-model on the same element " + 'because the latter already expands to a value binding internally', el.rawAttrsMap[binding] ); } } var ref = modifiers || {}; var lazy = ref.lazy; var number = ref.number; var trim = ref.trim; var needCompositionGuard = !lazy && type !== 'range'; var event = lazy ? 'change' : type === 'range' ? RANGE_TOKEN : 'input'; var valueExpression = '$event.target.value'; if (trim) { valueExpression = "$event.target.value.trim()"; } if (number) { valueExpression = "_n(" + valueExpression + ")"; } var code = genAssignmentCode(value, valueExpression); if (needCompositionGuard) { code = "if($event.target.composing)return;" + code; } addProp(el, 'value', ("(" + value + ")")); addHandler(el, event, code, null, true); if (trim || number) { addHandler(el, 'blur', '$forceUpdate()'); } } /* */ // normalize v-model event tokens that can only be determined at runtime. // it's important to place the event as the first in the array because // the whole point is ensuring the v-model callback gets called before // user-attached handlers. function normalizeEvents (on) { /* istanbul ignore if */ if (isDef(on[RANGE_TOKEN])) { // IE input[type=range] only supports `change` event var event = isIE ? 'change' : 'input'; on[event] = [].concat(on[RANGE_TOKEN], on[event] || []); delete on[RANGE_TOKEN]; } // This was originally intended to fix #4521 but no longer necessary // after 2.5. Keeping it for backwards compat with generated code from < 2.4 /* istanbul ignore if */ if (isDef(on[CHECKBOX_RADIO_TOKEN])) { on.change = [].concat(on[CHECKBOX_RADIO_TOKEN], on.change || []); delete on[CHECKBOX_RADIO_TOKEN]; } } var target$1; function createOnceHandler$1 (event, handler, capture) { var _target = target$1; // save current target element in closure return function onceHandler () { var res = handler.apply(null, arguments); if (res !== null) { remove$2(event, onceHandler, capture, _target); } } } // #9446: Firefox <= 53 (in particular, ESR 52) has incorrect Event.timeStamp // implementation and does not fire microtasks in between event propagation, so // safe to exclude. var useMicrotaskFix = isUsingMicroTask && !(isFF && Number(isFF[1]) <= 53); function add$1 ( name, handler, capture, passive ) { // async edge case #6566: inner click event triggers patch, event handler // attached to outer element during patch, and triggered again. This // happens because browsers fire microtask ticks between event propagation. // the solution is simple: we save the timestamp when a handler is attached, // and the handler would only fire if the event passed to it was fired // AFTER it was attached. if (useMicrotaskFix) { var attachedTimestamp = currentFlushTimestamp; var original = handler; handler = original._wrapper = function (e) { if ( // no bubbling, should always fire. // this is just a safety net in case event.timeStamp is unreliable in // certain weird environments... e.target === e.currentTarget || // event is fired after handler attachment e.timeStamp >= attachedTimestamp || // bail for environments that have buggy event.timeStamp implementations // #9462 iOS 9 bug: event.timeStamp is 0 after history.pushState // #9681 QtWebEngine event.timeStamp is negative value e.timeStamp <= 0 || // #9448 bail if event is fired in another document in a multi-page // electron/nw.js app, since event.timeStamp will be using a different // starting reference e.target.ownerDocument !== document ) { return original.apply(this, arguments) } }; } target$1.addEventListener( name, handler, supportsPassive ? { capture: capture, passive: passive } : capture ); } function remove$2 ( name, handler, capture, _target ) { (_target || target$1).removeEventListener( name, handler._wrapper || handler, capture ); } function updateDOMListeners (oldVnode, vnode) { if (isUndef(oldVnode.data.on) && isUndef(vnode.data.on)) { return } var on = vnode.data.on || {}; var oldOn = oldVnode.data.on || {}; target$1 = vnode.elm; normalizeEvents(on); updateListeners(on, oldOn, add$1, remove$2, createOnceHandler$1, vnode.context); target$1 = undefined; } var events = { create: updateDOMListeners, update: updateDOMListeners }; /* */ var svgContainer; function updateDOMProps (oldVnode, vnode) { if (isUndef(oldVnode.data.domProps) && isUndef(vnode.data.domProps)) { return } var key, cur; var elm = vnode.elm; var oldProps = oldVnode.data.domProps || {}; var props = vnode.data.domProps || {}; // clone observed objects, as the user probably wants to mutate it if (isDef(props.__ob__)) { props = vnode.data.domProps = extend({}, props); } for (key in oldProps) { if (!(key in props)) { elm[key] = ''; } } for (key in props) { cur = props[key]; // ignore children if the node has textContent or innerHTML, // as these will throw away existing DOM nodes and cause removal errors // on subsequent patches (#3360) if (key === 'textContent' || key === 'innerHTML') { if (vnode.children) { vnode.children.length = 0; } if (cur === oldProps[key]) { continue } // #6601 work around Chrome version <= 55 bug where single textNode // replaced by innerHTML/textContent retains its parentNode property if (elm.childNodes.length === 1) { elm.removeChild(elm.childNodes[0]); } } if (key === 'value' && elm.tagName !== 'PROGRESS') { // store value as _value as well since // non-string values will be stringified elm._value = cur; // avoid resetting cursor position when value is the same var strCur = isUndef(cur) ? '' : String(cur); if (shouldUpdateValue(elm, strCur)) { elm.value = strCur; } } else if (key === 'innerHTML' && isSVG(elm.tagName) && isUndef(elm.innerHTML)) { // IE doesn't support innerHTML for SVG elements svgContainer = svgContainer || document.createElement('div'); svgContainer.innerHTML = "<svg>" + cur + "</svg>"; var svg = svgContainer.firstChild; while (elm.firstChild) { elm.removeChild(elm.firstChild); } while (svg.firstChild) { elm.appendChild(svg.firstChild); } } else if ( // skip the update if old and new VDOM state is the same. // `value` is handled separately because the DOM value may be temporarily // out of sync with VDOM state due to focus, composition and modifiers. // This #4521 by skipping the unnecessary `checked` update. cur !== oldProps[key] ) { // some property updates can throw // e.g. `value` on <progress> w/ non-finite value try { elm[key] = cur; } catch (e) {} } } } // check platforms/web/util/attrs.js acceptValue function shouldUpdateValue (elm, checkVal) { return (!elm.composing && ( elm.tagName === 'OPTION' || isNotInFocusAndDirty(elm, checkVal) || isDirtyWithModifiers(elm, checkVal) )) } function isNotInFocusAndDirty (elm, checkVal) { // return true when textbox (.number and .trim) loses focus and its value is // not equal to the updated value var notInFocus = true; // #6157 // work around IE bug when accessing document.activeElement in an iframe try { notInFocus = document.activeElement !== elm; } catch (e) {} return notInFocus && elm.value !== checkVal } function isDirtyWithModifiers (elm, newVal) { var value = elm.value; var modifiers = elm._vModifiers; // injected by v-model runtime if (isDef(modifiers)) { if (modifiers.number) { return toNumber(value) !== toNumber(newVal) } if (modifiers.trim) { return value.trim() !== newVal.trim() } } return value !== newVal } var domProps = { create: updateDOMProps, update: updateDOMProps }; /* */ var parseStyleText = cached(function (cssText) { var res = {}; var listDelimiter = /;(?![^(]*\))/g; var propertyDelimiter = /:(.+)/; cssText.split(listDelimiter).forEach(function (item) { if (item) { var tmp = item.split(propertyDelimiter); tmp.length > 1 && (res[tmp[0].trim()] = tmp[1].trim()); } }); return res }); // merge static and dynamic style data on the same vnode function normalizeStyleData (data) { var style = normalizeStyleBinding(data.style); // static style is pre-processed into an object during compilation // and is always a fresh object, so it's safe to merge into it return data.staticStyle ? extend(data.staticStyle, style) : style } // normalize possible array / string values into Object function normalizeStyleBinding (bindingStyle) { if (Array.isArray(bindingStyle)) { return toObject(bindingStyle) } if (typeof bindingStyle === 'string') { return parseStyleText(bindingStyle) } return bindingStyle } /** * parent component style should be after child's * so that parent component's style could override it */ function getStyle (vnode, checkChild) { var res = {}; var styleData; if (checkChild) { var childNode = vnode; while (childNode.componentInstance) { childNode = childNode.componentInstance._vnode; if ( childNode && childNode.data && (styleData = normalizeStyleData(childNode.data)) ) { extend(res, styleData); } } } if ((styleData = normalizeStyleData(vnode.data))) { extend(res, styleData); } var parentNode = vnode; while ((parentNode = parentNode.parent)) { if (parentNode.data && (styleData = normalizeStyleData(parentNode.data))) { extend(res, styleData); } } return res } /* */ var cssVarRE = /^--/; var importantRE = /\s*!important$/; var setProp = function (el, name, val) { /* istanbul ignore if */ if (cssVarRE.test(name)) { el.style.setProperty(name, val); } else if (importantRE.test(val)) { el.style.setProperty(hyphenate(name), val.replace(importantRE, ''), 'important'); } else { var normalizedName = normalize(name); if (Array.isArray(val)) { // Support values array created by autoprefixer, e.g. // {display: ["-webkit-box", "-ms-flexbox", "flex"]} // Set them one by one, and the browser will only set those it can recognize for (var i = 0, len = val.length; i < len; i++) { el.style[normalizedName] = val[i]; } } else { el.style[normalizedName] = val; } } }; var vendorNames = ['Webkit', 'Moz', 'ms']; var emptyStyle; var normalize = cached(function (prop) { emptyStyle = emptyStyle || document.createElement('div').style; prop = camelize(prop); if (prop !== 'filter' && (prop in emptyStyle)) { return prop } var capName = prop.charAt(0).toUpperCase() + prop.slice(1); for (var i = 0; i < vendorNames.length; i++) { var name = vendorNames[i] + capName; if (name in emptyStyle) { return name } } }); function updateStyle (oldVnode, vnode) { var data = vnode.data; var oldData = oldVnode.data; if (isUndef(data.staticStyle) && isUndef(data.style) && isUndef(oldData.staticStyle) && isUndef(oldData.style) ) { return } var cur, name; var el = vnode.elm; var oldStaticStyle = oldData.staticStyle; var oldStyleBinding = oldData.normalizedStyle || oldData.style || {}; // if static style exists, stylebinding already merged into it when doing normalizeStyleData var oldStyle = oldStaticStyle || oldStyleBinding; var style = normalizeStyleBinding(vnode.data.style) || {}; // store normalized style under a different key for next diff // make sure to clone it if it's reactive, since the user likely wants // to mutate it. vnode.data.normalizedStyle = isDef(style.__ob__) ? extend({}, style) : style; var newStyle = getStyle(vnode, true); for (name in oldStyle) { if (isUndef(newStyle[name])) { setProp(el, name, ''); } } for (name in newStyle) { cur = newStyle[name]; if (cur !== oldStyle[name]) { // ie9 setting to null has no effect, must use empty string setProp(el, name, cur == null ? '' : cur); } } } var style = { create: updateStyle, update: updateStyle }; /* */ var whitespaceRE = /\s+/; /** * Add class with compatibility for SVG since classList is not supported on * SVG elements in IE */ function addClass (el, cls) { /* istanbul ignore if */ if (!cls || !(cls = cls.trim())) { return } /* istanbul ignore else */ if (el.classList) { if (cls.indexOf(' ') > -1) { cls.split(whitespaceRE).forEach(function (c) { return el.classList.add(c); }); } else { el.classList.add(cls); } } else { var cur = " " + (el.getAttribute('class') || '') + " "; if (cur.indexOf(' ' + cls + ' ') < 0) { el.setAttribute('class', (cur + cls).trim()); } } } /** * Remove class with compatibility for SVG since classList is not supported on * SVG elements in IE */ function removeClass (el, cls) { /* istanbul ignore if */ if (!cls || !(cls = cls.trim())) { return } /* istanbul ignore else */ if (el.classList) { if (cls.indexOf(' ') > -1) { cls.split(whitespaceRE).forEach(function (c) { return el.classList.remove(c); }); } else { el.classList.remove(cls); } if (!el.classList.length) { el.removeAttribute('class'); } } else { var cur = " " + (el.getAttribute('class') || '') + " "; var tar = ' ' + cls + ' '; while (cur.indexOf(tar) >= 0) { cur = cur.replace(tar, ' '); } cur = cur.trim(); if (cur) { el.setAttribute('class', cur); } else { el.removeAttribute('class'); } } } /* */ function resolveTransition (def$$1) { if (!def$$1) { return } /* istanbul ignore else */ if (typeof def$$1 === 'object') { var res = {}; if (def$$1.css !== false) { extend(res, autoCssTransition(def$$1.name || 'v')); } extend(res, def$$1); return res } else if (typeof def$$1 === 'string') { return autoCssTransition(def$$1) } } var autoCssTransition = cached(function (name) { return { enterClass: (name + "-enter"), enterToClass: (name + "-enter-to"), enterActiveClass: (name + "-enter-active"), leaveClass: (name + "-leave"), leaveToClass: (name + "-leave-to"), leaveActiveClass: (name + "-leave-active") } }); var hasTransition = inBrowser && !isIE9; var TRANSITION = 'transition'; var ANIMATION = 'animation'; // Transition property/event sniffing var transitionProp = 'transition'; var transitionEndEvent = 'transitionend'; var animationProp = 'animation'; var animationEndEvent = 'animationend'; if (hasTransition) { /* istanbul ignore if */ if (window.ontransitionend === undefined && window.onwebkittransitionend !== undefined ) { transitionProp = 'WebkitTransition'; transitionEndEvent = 'webkitTransitionEnd'; } if (window.onanimationend === undefined && window.onwebkitanimationend !== undefined ) { animationProp = 'WebkitAnimation'; animationEndEvent = 'webkitAnimationEnd'; } } // binding to window is necessary to make hot reload work in IE in strict mode var raf = inBrowser ? window.requestAnimationFrame ? window.requestAnimationFrame.bind(window) : setTimeout : /* istanbul ignore next */ function (fn) { return fn(); }; function nextFrame (fn) { raf(function () { raf(fn); }); } function addTransitionClass (el, cls) { var transitionClasses = el._transitionClasses || (el._transitionClasses = []); if (transitionClasses.indexOf(cls) < 0) { transitionClasses.push(cls); addClass(el, cls); } } function removeTransitionClass (el, cls) { if (el._transitionClasses) { remove(el._transitionClasses, cls); } removeClass(el, cls); } function whenTransitionEnds ( el, expectedType, cb ) { var ref = getTransitionInfo(el, expectedType); var type = ref.type; var timeout = ref.timeout; var propCount = ref.propCount; if (!type) { return cb() } var event = type === TRANSITION ? transitionEndEvent : animationEndEvent; var ended = 0; var end = function () { el.removeEventListener(event, onEnd); cb(); }; var onEnd = function (e) { if (e.target === el) { if (++ended >= propCount) { end(); } } }; setTimeout(function () { if (ended < propCount) { end(); } }, timeout + 1); el.addEventListener(event, onEnd); } var transformRE = /\b(transform|all)(,|$)/; function getTransitionInfo (el, expectedType) { var styles = window.getComputedStyle(el); // JSDOM may return undefined for transition properties var transitionDelays = (styles[transitionProp + 'Delay'] || '').split(', '); var transitionDurations = (styles[transitionProp + 'Duration'] || '').split(', '); var transitionTimeout = getTimeout(transitionDelays, transitionDurations); var animationDelays = (styles[animationProp + 'Delay'] || '').split(', '); var animationDurations = (styles[animationProp + 'Duration'] || '').split(', '); var animationTimeout = getTimeout(animationDelays, animationDurations); var type; var timeout = 0; var propCount = 0; /* istanbul ignore if */ if (expectedType === TRANSITION) { if (transitionTimeout > 0) { type = TRANSITION; timeout = transitionTimeout; propCount = transitionDurations.length; } } else if (expectedType === ANIMATION) { if (animationTimeout > 0) { type = ANIMATION; timeout = animationTimeout; propCount = animationDurations.length; } } else { timeout = Math.max(transitionTimeout, animationTimeout); type = timeout > 0 ? transitionTimeout > animationTimeout ? TRANSITION : ANIMATION : null; propCount = type ? type === TRANSITION ? transitionDurations.length : animationDurations.length : 0; } var hasTransform = type === TRANSITION && transformRE.test(styles[transitionProp + 'Property']); return { type: type, timeout: timeout, propCount: propCount, hasTransform: hasTransform } } function getTimeout (delays, durations) { /* istanbul ignore next */ while (delays.length < durations.length) { delays = delays.concat(delays); } return Math.max.apply(null, durations.map(function (d, i) { return toMs(d) + toMs(delays[i]) })) } // Old versions of Chromium (below 61.0.3163.100) formats floating pointer numbers // in a locale-dependent way, using a comma instead of a dot. // If comma is not replaced with a dot, the input will be rounded down (i.e. acting // as a floor function) causing unexpected behaviors function toMs (s) { return Number(s.slice(0, -1).replace(',', '.')) * 1000 } /* */ function enter (vnode, toggleDisplay) { var el = vnode.elm; // call leave callback now if (isDef(el._leaveCb)) { el._leaveCb.cancelled = true; el._leaveCb(); } var data = resolveTransition(vnode.data.transition); if (isUndef(data)) { return } /* istanbul ignore if */ if (isDef(el._enterCb) || el.nodeType !== 1) { return } var css = data.css; var type = data.type; var enterClass = data.enterClass; var enterToClass = data.enterToClass; var enterActiveClass = data.enterActiveClass; var appearClass = data.appearClass; var appearToClass = data.appearToClass; var appearActiveClass = data.appearActiveClass; var beforeEnter = data.beforeEnter; var enter = data.enter; var afterEnter = data.afterEnter; var enterCancelled = data.enterCancelled; var beforeAppear = data.beforeAppear; var appear = data.appear; var afterAppear = data.afterAppear; var appearCancelled = data.appearCancelled; var duration = data.duration; // activeInstance will always be the <transition> component managing this // transition. One edge case to check is when the <transition> is placed // as the root node of a child component. In that case we need to check // <transition>'s parent for appear check. var context = activeInstance; var transitionNode = activeInstance.$vnode; while (transitionNode && transitionNode.parent) { context = transitionNode.context; transitionNode = transitionNode.parent; } var isAppear = !context._isMounted || !vnode.isRootInsert; if (isAppear && !appear && appear !== '') { return } var startClass = isAppear && appearClass ? appearClass : enterClass; var activeClass = isAppear && appearActiveClass ? appearActiveClass : enterActiveClass; var toClass = isAppear && appearToClass ? appearToClass : enterToClass; var beforeEnterHook = isAppear ? (beforeAppear || beforeEnter) : beforeEnter; var enterHook = isAppear ? (typeof appear === 'function' ? appear : enter) : enter; var afterEnterHook = isAppear ? (afterAppear || afterEnter) : afterEnter; var enterCancelledHook = isAppear ? (appearCancelled || enterCancelled) : enterCancelled; var explicitEnterDuration = toNumber( isObject(duration) ? duration.enter : duration ); if (explicitEnterDuration != null) { checkDuration(explicitEnterDuration, 'enter', vnode); } var expectsCSS = css !== false && !isIE9; var userWantsControl = getHookArgumentsLength(enterHook); var cb = el._enterCb = once(function () { if (expectsCSS) { removeTransitionClass(el, toClass); removeTransitionClass(el, activeClass); } if (cb.cancelled) { if (expectsCSS) { removeTransitionClass(el, startClass); } enterCancelledHook && enterCancelledHook(el); } else { afterEnterHook && afterEnterHook(el); } el._enterCb = null; }); if (!vnode.data.show) { // remove pending leave element on enter by injecting an insert hook mergeVNodeHook(vnode, 'insert', function () { var parent = el.parentNode; var pendingNode = parent && parent._pending && parent._pending[vnode.key]; if (pendingNode && pendingNode.tag === vnode.tag && pendingNode.elm._leaveCb ) { pendingNode.elm._leaveCb(); } enterHook && enterHook(el, cb); }); } // start enter transition beforeEnterHook && beforeEnterHook(el); if (expectsCSS) { addTransitionClass(el, startClass); addTransitionClass(el, activeClass); nextFrame(function () { removeTransitionClass(el, startClass); if (!cb.cancelled) { addTransitionClass(el, toClass); if (!userWantsControl) { if (isValidDuration(explicitEnterDuration)) { setTimeout(cb, explicitEnterDuration); } else { whenTransitionEnds(el, type, cb); } } } }); } if (vnode.data.show) { toggleDisplay && toggleDisplay(); enterHook && enterHook(el, cb); } if (!expectsCSS && !userWantsControl) { cb(); } } function leave (vnode, rm) { var el = vnode.elm; // call enter callback now if (isDef(el._enterCb)) { el._enterCb.cancelled = true; el._enterCb(); } var data = resolveTransition(vnode.data.transition); if (isUndef(data) || el.nodeType !== 1) { return rm() } /* istanbul ignore if */ if (isDef(el._leaveCb)) { return } var css = data.css; var type = data.type; var leaveClass = data.leaveClass; var leaveToClass = data.leaveToClass; var leaveActiveClass = data.leaveActiveClass; var beforeLeave = data.beforeLeave; var leave = data.leave; var afterLeave = data.afterLeave; var leaveCancelled = data.leaveCancelled; var delayLeave = data.delayLeave; var duration = data.duration; var expectsCSS = css !== false && !isIE9; var userWantsControl = getHookArgumentsLength(leave); var explicitLeaveDuration = toNumber( isObject(duration) ? duration.leave : duration ); if (isDef(explicitLeaveDuration)) { checkDuration(explicitLeaveDuration, 'leave', vnode); } var cb = el._leaveCb = once(function () { if (el.parentNode && el.parentNode._pending) { el.parentNode._pending[vnode.key] = null; } if (expectsCSS) { removeTransitionClass(el, leaveToClass); removeTransitionClass(el, leaveActiveClass); } if (cb.cancelled) { if (expectsCSS) { removeTransitionClass(el, leaveClass); } leaveCancelled && leaveCancelled(el); } else { rm(); afterLeave && afterLeave(el); } el._leaveCb = null; }); if (delayLeave) { delayLeave(performLeave); } else { performLeave(); } function performLeave () { // the delayed leave may have already been cancelled if (cb.cancelled) { return } // record leaving element if (!vnode.data.show && el.parentNode) { (el.parentNode._pending || (el.parentNode._pending = {}))[(vnode.key)] = vnode; } beforeLeave && beforeLeave(el); if (expectsCSS) { addTransitionClass(el, leaveClass); addTransitionClass(el, leaveActiveClass); nextFrame(function () { removeTransitionClass(el, leaveClass); if (!cb.cancelled) { addTransitionClass(el, leaveToClass); if (!userWantsControl) { if (isValidDuration(explicitLeaveDuration)) { setTimeout(cb, explicitLeaveDuration); } else { whenTransitionEnds(el, type, cb); } } } }); } leave && leave(el, cb); if (!expectsCSS && !userWantsControl) { cb(); } } } // only used in dev mode function checkDuration (val, name, vnode) { if (typeof val !== 'number') { warn( "<transition> explicit " + name + " duration is not a valid number - " + "got " + (JSON.stringify(val)) + ".", vnode.context ); } else if (isNaN(val)) { warn( "<transition> explicit " + name + " duration is NaN - " + 'the duration expression might be incorrect.', vnode.context ); } } function isValidDuration (val) { return typeof val === 'number' && !isNaN(val) } /** * Normalize a transition hook's argument length. The hook may be: * - a merged hook (invoker) with the original in .fns * - a wrapped component method (check ._length) * - a plain function (.length) */ function getHookArgumentsLength (fn) { if (isUndef(fn)) { return false } var invokerFns = fn.fns; if (isDef(invokerFns)) { // invoker return getHookArgumentsLength( Array.isArray(invokerFns) ? invokerFns[0] : invokerFns ) } else { return (fn._length || fn.length) > 1 } } function _enter (_, vnode) { if (vnode.data.show !== true) { enter(vnode); } } var transition = inBrowser ? { create: _enter, activate: _enter, remove: function remove$$1 (vnode, rm) { /* istanbul ignore else */ if (vnode.data.show !== true) { leave(vnode, rm); } else { rm(); } } } : {}; var platformModules = [ attrs, klass, events, domProps, style, transition ]; /* */ // the directive module should be applied last, after all // built-in modules have been applied. var modules = platformModules.concat(baseModules); var patch = createPatchFunction({ nodeOps: nodeOps, modules: modules }); /** * Not type checking this file because flow doesn't like attaching * properties to Elements. */ /* istanbul ignore if */ if (isIE9) { // http://www.matts411.com/post/internet-explorer-9-oninput/ document.addEventListener('selectionchange', function () { var el = document.activeElement; if (el && el.vmodel) { trigger(el, 'input'); } }); } var directive = { inserted: function inserted (el, binding, vnode, oldVnode) { if (vnode.tag === 'select') { // #6903 if (oldVnode.elm && !oldVnode.elm._vOptions) { mergeVNodeHook(vnode, 'postpatch', function () { directive.componentUpdated(el, binding, vnode); }); } else { setSelected(el, binding, vnode.context); } el._vOptions = [].map.call(el.options, getValue); } else if (vnode.tag === 'textarea' || isTextInputType(el.type)) { el._vModifiers = binding.modifiers; if (!binding.modifiers.lazy) { el.addEventListener('compositionstart', onCompositionStart); el.addEventListener('compositionend', onCompositionEnd); // Safari < 10.2 & UIWebView doesn't fire compositionend when // switching focus before confirming composition choice // this also fixes the issue where some browsers e.g. iOS Chrome // fires "change" instead of "input" on autocomplete. el.addEventListener('change', onCompositionEnd); /* istanbul ignore if */ if (isIE9) { el.vmodel = true; } } } }, componentUpdated: function componentUpdated (el, binding, vnode) { if (vnode.tag === 'select') { setSelected(el, binding, vnode.context); // in case the options rendered by v-for have changed, // it's possible that the value is out-of-sync with the rendered options. // detect such cases and filter out values that no longer has a matching // option in the DOM. var prevOptions = el._vOptions; var curOptions = el._vOptions = [].map.call(el.options, getValue); if (curOptions.some(function (o, i) { return !looseEqual(o, prevOptions[i]); })) { // trigger change event if // no matching option found for at least one value var needReset = el.multiple ? binding.value.some(function (v) { return hasNoMatchingOption(v, curOptions); }) : binding.value !== binding.oldValue && hasNoMatchingOption(binding.value, curOptions); if (needReset) { trigger(el, 'change'); } } } } }; function setSelected (el, binding, vm) { actuallySetSelected(el, binding, vm); /* istanbul ignore if */ if (isIE || isEdge) { setTimeout(function () { actuallySetSelected(el, binding, vm); }, 0); } } function actuallySetSelected (el, binding, vm) { var value = binding.value; var isMultiple = el.multiple; if (isMultiple && !Array.isArray(value)) { warn( "<select multiple v-model=\"" + (binding.expression) + "\"> " + "expects an Array value for its binding, but got " + (Object.prototype.toString.call(value).slice(8, -1)), vm ); return } var selected, option; for (var i = 0, l = el.options.length; i < l; i++) { option = el.options[i]; if (isMultiple) { selected = looseIndexOf(value, getValue(option)) > -1; if (option.selected !== selected) { option.selected = selected; } } else { if (looseEqual(getValue(option), value)) { if (el.selectedIndex !== i) { el.selectedIndex = i; } return } } } if (!isMultiple) { el.selectedIndex = -1; } } function hasNoMatchingOption (value, options) { return options.every(function (o) { return !looseEqual(o, value); }) } function getValue (option) { return '_value' in option ? option._value : option.value } function onCompositionStart (e) { e.target.composing = true; } function onCompositionEnd (e) { // prevent triggering an input event for no reason if (!e.target.composing) { return } e.target.composing = false; trigger(e.target, 'input'); } function trigger (el, type) { var e = document.createEvent('HTMLEvents'); e.initEvent(type, true, true); el.dispatchEvent(e); } /* */ // recursively search for possible transition defined inside the component root function locateNode (vnode) { return vnode.componentInstance && (!vnode.data || !vnode.data.transition) ? locateNode(vnode.componentInstance._vnode) : vnode } var show = { bind: function bind (el, ref, vnode) { var value = ref.value; vnode = locateNode(vnode); var transition$$1 = vnode.data && vnode.data.transition; var originalDisplay = el.__vOriginalDisplay = el.style.display === 'none' ? '' : el.style.display; if (value && transition$$1) { vnode.data.show = true; enter(vnode, function () { el.style.display = originalDisplay; }); } else { el.style.display = value ? originalDisplay : 'none'; } }, update: function update (el, ref, vnode) { var value = ref.value; var oldValue = ref.oldValue; /* istanbul ignore if */ if (!value === !oldValue) { return } vnode = locateNode(vnode); var transition$$1 = vnode.data && vnode.data.transition; if (transition$$1) { vnode.data.show = true; if (value) { enter(vnode, function () { el.style.display = el.__vOriginalDisplay; }); } else { leave(vnode, function () { el.style.display = 'none'; }); } } else { el.style.display = value ? el.__vOriginalDisplay : 'none'; } }, unbind: function unbind ( el, binding, vnode, oldVnode, isDestroy ) { if (!isDestroy) { el.style.display = el.__vOriginalDisplay; } } }; var platformDirectives = { model: directive, show: show }; /* */ var transitionProps = { name: String, appear: Boolean, css: Boolean, mode: String, type: String, enterClass: String, leaveClass: String, enterToClass: String, leaveToClass: String, enterActiveClass: String, leaveActiveClass: String, appearClass: String, appearActiveClass: String, appearToClass: String, duration: [Number, String, Object] }; // in case the child is also an abstract component, e.g. <keep-alive> // we want to recursively retrieve the real component to be rendered function getRealChild (vnode) { var compOptions = vnode && vnode.componentOptions; if (compOptions && compOptions.Ctor.options.abstract) { return getRealChild(getFirstComponentChild(compOptions.children)) } else { return vnode } } function extractTransitionData (comp) { var data = {}; var options = comp.$options; // props for (var key in options.propsData) { data[key] = comp[key]; } // events. // extract listeners and pass them directly to the transition methods var listeners = options._parentListeners; for (var key$1 in listeners) { data[camelize(key$1)] = listeners[key$1]; } return data } function placeholder (h, rawChild) { if (/\d-keep-alive$/.test(rawChild.tag)) { return h('keep-alive', { props: rawChild.componentOptions.propsData }) } } function hasParentTransition (vnode) { while ((vnode = vnode.parent)) { if (vnode.data.transition) { return true } } } function isSameChild (child, oldChild) { return oldChild.key === child.key && oldChild.tag === child.tag } var isNotTextNode = function (c) { return c.tag || isAsyncPlaceholder(c); }; var isVShowDirective = function (d) { return d.name === 'show'; }; var Transition = { name: 'transition', props: transitionProps, abstract: true, render: function render (h) { var this$1 = this; var children = this.$slots.default; if (!children) { return } // filter out text nodes (possible whitespaces) children = children.filter(isNotTextNode); /* istanbul ignore if */ if (!children.length) { return } // warn multiple elements if (children.length > 1) { warn( '<transition> can only be used on a single element. Use ' + '<transition-group> for lists.', this.$parent ); } var mode = this.mode; // warn invalid mode if (mode && mode !== 'in-out' && mode !== 'out-in' ) { warn( 'invalid <transition> mode: ' + mode, this.$parent ); } var rawChild = children[0]; // if this is a component root node and the component's // parent container node also has transition, skip. if (hasParentTransition(this.$vnode)) { return rawChild } // apply transition data to child // use getRealChild() to ignore abstract components e.g. keep-alive var child = getRealChild(rawChild); /* istanbul ignore if */ if (!child) { return rawChild } if (this._leaving) { return placeholder(h, rawChild) } // ensure a key that is unique to the vnode type and to this transition // component instance. This key will be used to remove pending leaving nodes // during entering. var id = "__transition-" + (this._uid) + "-"; child.key = child.key == null ? child.isComment ? id + 'comment' : id + child.tag : isPrimitive(child.key) ? (String(child.key).indexOf(id) === 0 ? child.key : id + child.key) : child.key; var data = (child.data || (child.data = {})).transition = extractTransitionData(this); var oldRawChild = this._vnode; var oldChild = getRealChild(oldRawChild); // mark v-show // so that the transition module can hand over the control to the directive if (child.data.directives && child.data.directives.some(isVShowDirective)) { child.data.show = true; } if ( oldChild && oldChild.data && !isSameChild(child, oldChild) && !isAsyncPlaceholder(oldChild) && // #6687 component root is a comment node !(oldChild.componentInstance && oldChild.componentInstance._vnode.isComment) ) { // replace old child transition data with fresh one // important for dynamic transitions! var oldData = oldChild.data.transition = extend({}, data); // handle transition mode if (mode === 'out-in') { // return placeholder node and queue update when leave finishes this._leaving = true; mergeVNodeHook(oldData, 'afterLeave', function () { this$1._leaving = false; this$1.$forceUpdate(); }); return placeholder(h, rawChild) } else if (mode === 'in-out') { if (isAsyncPlaceholder(child)) { return oldRawChild } var delayedLeave; var performLeave = function () { delayedLeave(); }; mergeVNodeHook(data, 'afterEnter', performLeave); mergeVNodeHook(data, 'enterCancelled', performLeave); mergeVNodeHook(oldData, 'delayLeave', function (leave) { delayedLeave = leave; }); } } return rawChild } }; /* */ var props = extend({ tag: String, moveClass: String }, transitionProps); delete props.mode; var TransitionGroup = { props: props, beforeMount: function beforeMount () { var this$1 = this; var update = this._update; this._update = function (vnode, hydrating) { var restoreActiveInstance = setActiveInstance(this$1); // force removing pass this$1.__patch__( this$1._vnode, this$1.kept, false, // hydrating true // removeOnly (!important, avoids unnecessary moves) ); this$1._vnode = this$1.kept; restoreActiveInstance(); update.call(this$1, vnode, hydrating); }; }, render: function render (h) { var tag = this.tag || this.$vnode.data.tag || 'span'; var map = Object.create(null); var prevChildren = this.prevChildren = this.children; var rawChildren = this.$slots.default || []; var children = this.children = []; var transitionData = extractTransitionData(this); for (var i = 0; i < rawChildren.length; i++) { var c = rawChildren[i]; if (c.tag) { if (c.key != null && String(c.key).indexOf('__vlist') !== 0) { children.push(c); map[c.key] = c ;(c.data || (c.data = {})).transition = transitionData; } else { var opts = c.componentOptions; var name = opts ? (opts.Ctor.options.name || opts.tag || '') : c.tag; warn(("<transition-group> children must be keyed: <" + name + ">")); } } } if (prevChildren) { var kept = []; var removed = []; for (var i$1 = 0; i$1 < prevChildren.length; i$1++) { var c$1 = prevChildren[i$1]; c$1.data.transition = transitionData; c$1.data.pos = c$1.elm.getBoundingClientRect(); if (map[c$1.key]) { kept.push(c$1); } else { removed.push(c$1); } } this.kept = h(tag, null, kept); this.removed = removed; } return h(tag, null, children) }, updated: function updated () { var children = this.prevChildren; var moveClass = this.moveClass || ((this.name || 'v') + '-move'); if (!children.length || !this.hasMove(children[0].elm, moveClass)) { return } // we divide the work into three loops to avoid mixing DOM reads and writes // in each iteration - which helps prevent layout thrashing. children.forEach(callPendingCbs); children.forEach(recordPosition); children.forEach(applyTranslation); // force reflow to put everything in position // assign to this to avoid being removed in tree-shaking // $flow-disable-line this._reflow = document.body.offsetHeight; children.forEach(function (c) { if (c.data.moved) { var el = c.elm; var s = el.style; addTransitionClass(el, moveClass); s.transform = s.WebkitTransform = s.transitionDuration = ''; el.addEventListener(transitionEndEvent, el._moveCb = function cb (e) { if (e && e.target !== el) { return } if (!e || /transform$/.test(e.propertyName)) { el.removeEventListener(transitionEndEvent, cb); el._moveCb = null; removeTransitionClass(el, moveClass); } }); } }); }, methods: { hasMove: function hasMove (el, moveClass) { /* istanbul ignore if */ if (!hasTransition) { return false } /* istanbul ignore if */ if (this._hasMove) { return this._hasMove } // Detect whether an element with the move class applied has // CSS transitions. Since the element may be inside an entering // transition at this very moment, we make a clone of it and remove // all other transition classes applied to ensure only the move class // is applied. var clone = el.cloneNode(); if (el._transitionClasses) { el._transitionClasses.forEach(function (cls) { removeClass(clone, cls); }); } addClass(clone, moveClass); clone.style.display = 'none'; this.$el.appendChild(clone); var info = getTransitionInfo(clone); this.$el.removeChild(clone); return (this._hasMove = info.hasTransform) } } }; function callPendingCbs (c) { /* istanbul ignore if */ if (c.elm._moveCb) { c.elm._moveCb(); } /* istanbul ignore if */ if (c.elm._enterCb) { c.elm._enterCb(); } } function recordPosition (c) { c.data.newPos = c.elm.getBoundingClientRect(); } function applyTranslation (c) { var oldPos = c.data.pos; var newPos = c.data.newPos; var dx = oldPos.left - newPos.left; var dy = oldPos.top - newPos.top; if (dx || dy) { c.data.moved = true; var s = c.elm.style; s.transform = s.WebkitTransform = "translate(" + dx + "px," + dy + "px)"; s.transitionDuration = '0s'; } } var platformComponents = { Transition: Transition, TransitionGroup: TransitionGroup }; /* */ // install platform specific utils Vue.config.mustUseProp = mustUseProp; Vue.config.isReservedTag = isReservedTag; Vue.config.isReservedAttr = isReservedAttr; Vue.config.getTagNamespace = getTagNamespace; Vue.config.isUnknownElement = isUnknownElement; // install platform runtime directives & components extend(Vue.options.directives, platformDirectives); extend(Vue.options.components, platformComponents); // install platform patch function Vue.prototype.__patch__ = inBrowser ? patch : noop; // public mount method Vue.prototype.$mount = function ( el, hydrating ) { el = el && inBrowser ? query(el) : undefined; return mountComponent(this, el, hydrating) }; // devtools global hook /* istanbul ignore next */ if (inBrowser) { setTimeout(function () { if (config.devtools) { if (devtools) { devtools.emit('init', Vue); } else { console[console.info ? 'info' : 'log']( 'Download the Vue Devtools extension for a better development experience:\n' + 'https://github.com/vuejs/vue-devtools' ); } } if (config.productionTip !== false && typeof console !== 'undefined' ) { console[console.info ? 'info' : 'log']( "You are running Vue in development mode.\n" + "Make sure to turn on production mode when deploying for production.\n" + "See more tips at https://vuejs.org/guide/deployment.html" ); } }, 0); } /* */ var defaultTagRE = /\{\{((?:.|\r?\n)+?)\}\}/g; var regexEscapeRE = /[-.*+?^${}()|[\]\/\\]/g; var buildRegex = cached(function (delimiters) { var open = delimiters[0].replace(regexEscapeRE, '\\$&'); var close = delimiters[1].replace(regexEscapeRE, '\\$&'); return new RegExp(open + '((?:.|\\n)+?)' + close, 'g') }); function parseText ( text, delimiters ) { var tagRE = delimiters ? buildRegex(delimiters) : defaultTagRE; if (!tagRE.test(text)) { return } var tokens = []; var rawTokens = []; var lastIndex = tagRE.lastIndex = 0; var match, index, tokenValue; while ((match = tagRE.exec(text))) { index = match.index; // push text token if (index > lastIndex) { rawTokens.push(tokenValue = text.slice(lastIndex, index)); tokens.push(JSON.stringify(tokenValue)); } // tag token var exp = parseFilters(match[1].trim()); tokens.push(("_s(" + exp + ")")); rawTokens.push({ '@binding': exp }); lastIndex = index + match[0].length; } if (lastIndex < text.length) { rawTokens.push(tokenValue = text.slice(lastIndex)); tokens.push(JSON.stringify(tokenValue)); } return { expression: tokens.join('+'), tokens: rawTokens } } /* */ function transformNode (el, options) { var warn = options.warn || baseWarn; var staticClass = getAndRemoveAttr(el, 'class'); if (staticClass) { var res = parseText(staticClass, options.delimiters); if (res) { warn( "class=\"" + staticClass + "\": " + 'Interpolation inside attributes has been removed. ' + 'Use v-bind or the colon shorthand instead. For example, ' + 'instead of <div class="{{ val }}">, use <div :class="val">.', el.rawAttrsMap['class'] ); } } if (staticClass) { el.staticClass = JSON.stringify(staticClass); } var classBinding = getBindingAttr(el, 'class', false /* getStatic */); if (classBinding) { el.classBinding = classBinding; } } function genData (el) { var data = ''; if (el.staticClass) { data += "staticClass:" + (el.staticClass) + ","; } if (el.classBinding) { data += "class:" + (el.classBinding) + ","; } return data } var klass$1 = { staticKeys: ['staticClass'], transformNode: transformNode, genData: genData }; /* */ function transformNode$1 (el, options) { var warn = options.warn || baseWarn; var staticStyle = getAndRemoveAttr(el, 'style'); if (staticStyle) { /* istanbul ignore if */ { var res = parseText(staticStyle, options.delimiters); if (res) { warn( "style=\"" + staticStyle + "\": " + 'Interpolation inside attributes has been removed. ' + 'Use v-bind or the colon shorthand instead. For example, ' + 'instead of <div style="{{ val }}">, use <div :style="val">.', el.rawAttrsMap['style'] ); } } el.staticStyle = JSON.stringify(parseStyleText(staticStyle)); } var styleBinding = getBindingAttr(el, 'style', false /* getStatic */); if (styleBinding) { el.styleBinding = styleBinding; } } function genData$1 (el) { var data = ''; if (el.staticStyle) { data += "staticStyle:" + (el.staticStyle) + ","; } if (el.styleBinding) { data += "style:(" + (el.styleBinding) + "),"; } return data } var style$1 = { staticKeys: ['staticStyle'], transformNode: transformNode$1, genData: genData$1 }; /* */ var decoder; var he = { decode: function decode (html) { decoder = decoder || document.createElement('div'); decoder.innerHTML = html; return decoder.textContent } }; /* */ var isUnaryTag = makeMap( 'area,base,br,col,embed,frame,hr,img,input,isindex,keygen,' + 'link,meta,param,source,track,wbr' ); // Elements that you can, intentionally, leave open // (and which close themselves) var canBeLeftOpenTag = makeMap( 'colgroup,dd,dt,li,options,p,td,tfoot,th,thead,tr,source' ); // HTML5 tags https://html.spec.whatwg.org/multipage/indices.html#elements-3 // Phrasing Content https://html.spec.whatwg.org/multipage/dom.html#phrasing-content var isNonPhrasingTag = makeMap( 'address,article,aside,base,blockquote,body,caption,col,colgroup,dd,' + 'details,dialog,div,dl,dt,fieldset,figcaption,figure,footer,form,' + 'h1,h2,h3,h4,h5,h6,head,header,hgroup,hr,html,legend,li,menuitem,meta,' + 'optgroup,option,param,rp,rt,source,style,summary,tbody,td,tfoot,th,thead,' + 'title,tr,track' ); /** * Not type-checking this file because it's mostly vendor code. */ // Regular Expressions for parsing tags and attributes var attribute = /^\s*([^\s"'<>\/=]+)(?:\s*(=)\s*(?:"([^"]*)"+|'([^']*)'+|([^\s"'=<>`]+)))?/; var dynamicArgAttribute = /^\s*((?:v-[\w-]+:|@|:|#)\[[^=]+\][^\s"'<>\/=]*)(?:\s*(=)\s*(?:"([^"]*)"+|'([^']*)'+|([^\s"'=<>`]+)))?/; var ncname = "[a-zA-Z_][\\-\\.0-9_a-zA-Z" + (unicodeRegExp.source) + "]*"; var qnameCapture = "((?:" + ncname + "\\:)?" + ncname + ")"; var startTagOpen = new RegExp(("^<" + qnameCapture)); var startTagClose = /^\s*(\/?)>/; var endTag = new RegExp(("^<\\/" + qnameCapture + "[^>]*>")); var doctype = /^<!DOCTYPE [^>]+>/i; // #7298: escape - to avoid being passed as HTML comment when inlined in page var comment = /^<!\--/; var conditionalComment = /^<!\[/; // Special Elements (can contain anything) var isPlainTextElement = makeMap('script,style,textarea', true); var reCache = {}; var decodingMap = { '<': '<', '>': '>', '"': '"', '&': '&', ' ': '\n', '	': '\t', ''': "'" }; var encodedAttr = /&(?:lt|gt|quot|amp|#39);/g; var encodedAttrWithNewLines = /&(?:lt|gt|quot|amp|#39|#10|#9);/g; // #5992 var isIgnoreNewlineTag = makeMap('pre,textarea', true); var shouldIgnoreFirstNewline = function (tag, html) { return tag && isIgnoreNewlineTag(tag) && html[0] === '\n'; }; function decodeAttr (value, shouldDecodeNewlines) { var re = shouldDecodeNewlines ? encodedAttrWithNewLines : encodedAttr; return value.replace(re, function (match) { return decodingMap[match]; }) } function parseHTML (html, options) { var stack = []; var expectHTML = options.expectHTML; var isUnaryTag$$1 = options.isUnaryTag || no; var canBeLeftOpenTag$$1 = options.canBeLeftOpenTag || no; var index = 0; var last, lastTag; while (html) { last = html; // Make sure we're not in a plaintext content element like script/style if (!lastTag || !isPlainTextElement(lastTag)) { var textEnd = html.indexOf('<'); if (textEnd === 0) { // Comment: if (comment.test(html)) { var commentEnd = html.indexOf('-->'); if (commentEnd >= 0) { if (options.shouldKeepComment) { options.comment(html.substring(4, commentEnd), index, index + commentEnd + 3); } advance(commentEnd + 3); continue } } // http://en.wikipedia.org/wiki/Conditional_comment#Downlevel-revealed_conditional_comment if (conditionalComment.test(html)) { var conditionalEnd = html.indexOf(']>'); if (conditionalEnd >= 0) { advance(conditionalEnd + 2); continue } } // Doctype: var doctypeMatch = html.match(doctype); if (doctypeMatch) { advance(doctypeMatch[0].length); continue } // End tag: var endTagMatch = html.match(endTag); if (endTagMatch) { var curIndex = index; advance(endTagMatch[0].length); parseEndTag(endTagMatch[1], curIndex, index); continue } // Start tag: var startTagMatch = parseStartTag(); if (startTagMatch) { handleStartTag(startTagMatch); if (shouldIgnoreFirstNewline(startTagMatch.tagName, html)) { advance(1); } continue } } var text = (void 0), rest = (void 0), next = (void 0); if (textEnd >= 0) { rest = html.slice(textEnd); while ( !endTag.test(rest) && !startTagOpen.test(rest) && !comment.test(rest) && !conditionalComment.test(rest) ) { // < in plain text, be forgiving and treat it as text next = rest.indexOf('<', 1); if (next < 0) { break } textEnd += next; rest = html.slice(textEnd); } text = html.substring(0, textEnd); } if (textEnd < 0) { text = html; } if (text) { advance(text.length); } if (options.chars && text) { options.chars(text, index - text.length, index); } } else { var endTagLength = 0; var stackedTag = lastTag.toLowerCase(); var reStackedTag = reCache[stackedTag] || (reCache[stackedTag] = new RegExp('([\\s\\S]*?)(</' + stackedTag + '[^>]*>)', 'i')); var rest$1 = html.replace(reStackedTag, function (all, text, endTag) { endTagLength = endTag.length; if (!isPlainTextElement(stackedTag) && stackedTag !== 'noscript') { text = text .replace(/<!\--([\s\S]*?)-->/g, '$1') // #7298 .replace(/<!\[CDATA\[([\s\S]*?)]]>/g, '$1'); } if (shouldIgnoreFirstNewline(stackedTag, text)) { text = text.slice(1); } if (options.chars) { options.chars(text); } return '' }); index += html.length - rest$1.length; html = rest$1; parseEndTag(stackedTag, index - endTagLength, index); } if (html === last) { options.chars && options.chars(html); if (!stack.length && options.warn) { options.warn(("Mal-formatted tag at end of template: \"" + html + "\""), { start: index + html.length }); } break } } // Clean up any remaining tags parseEndTag(); function advance (n) { index += n; html = html.substring(n); } function parseStartTag () { var start = html.match(startTagOpen); if (start) { var match = { tagName: start[1], attrs: [], start: index }; advance(start[0].length); var end, attr; while (!(end = html.match(startTagClose)) && (attr = html.match(dynamicArgAttribute) || html.match(attribute))) { attr.start = index; advance(attr[0].length); attr.end = index; match.attrs.push(attr); } if (end) { match.unarySlash = end[1]; advance(end[0].length); match.end = index; return match } } } function handleStartTag (match) { var tagName = match.tagName; var unarySlash = match.unarySlash; if (expectHTML) { if (lastTag === 'p' && isNonPhrasingTag(tagName)) { parseEndTag(lastTag); } if (canBeLeftOpenTag$$1(tagName) && lastTag === tagName) { parseEndTag(tagName); } } var unary = isUnaryTag$$1(tagName) || !!unarySlash; var l = match.attrs.length; var attrs = new Array(l); for (var i = 0; i < l; i++) { var args = match.attrs[i]; var value = args[3] || args[4] || args[5] || ''; var shouldDecodeNewlines = tagName === 'a' && args[1] === 'href' ? options.shouldDecodeNewlinesForHref : options.shouldDecodeNewlines; attrs[i] = { name: args[1], value: decodeAttr(value, shouldDecodeNewlines) }; if (options.outputSourceRange) { attrs[i].start = args.start + args[0].match(/^\s*/).length; attrs[i].end = args.end; } } if (!unary) { stack.push({ tag: tagName, lowerCasedTag: tagName.toLowerCase(), attrs: attrs, start: match.start, end: match.end }); lastTag = tagName; } if (options.start) { options.start(tagName, attrs, unary, match.start, match.end); } } function parseEndTag (tagName, start, end) { var pos, lowerCasedTagName; if (start == null) { start = index; } if (end == null) { end = index; } // Find the closest opened tag of the same type if (tagName) { lowerCasedTagName = tagName.toLowerCase(); for (pos = stack.length - 1; pos >= 0; pos--) { if (stack[pos].lowerCasedTag === lowerCasedTagName) { break } } } else { // If no tag name is provided, clean shop pos = 0; } if (pos >= 0) { // Close all the open elements, up the stack for (var i = stack.length - 1; i >= pos; i--) { if (i > pos || !tagName && options.warn ) { options.warn( ("tag <" + (stack[i].tag) + "> has no matching end tag."), { start: stack[i].start, end: stack[i].end } ); } if (options.end) { options.end(stack[i].tag, start, end); } } // Remove the open elements from the stack stack.length = pos; lastTag = pos && stack[pos - 1].tag; } else if (lowerCasedTagName === 'br') { if (options.start) { options.start(tagName, [], true, start, end); } } else if (lowerCasedTagName === 'p') { if (options.start) { options.start(tagName, [], false, start, end); } if (options.end) { options.end(tagName, start, end); } } } } /* */ var onRE = /^@|^v-on:/; var dirRE = /^v-|^@|^:|^#/; var forAliasRE = /([\s\S]*?)\s+(?:in|of)\s+([\s\S]*)/; var forIteratorRE = /,([^,\}\]]*)(?:,([^,\}\]]*))?$/; var stripParensRE = /^\(|\)$/g; var dynamicArgRE = /^\[.*\]$/; var argRE = /:(.*)$/; var bindRE = /^:|^\.|^v-bind:/; var modifierRE = /\.[^.\]]+(?=[^\]]*$)/g; var slotRE = /^v-slot(:|$)|^#/; var lineBreakRE = /[\r\n]/; var whitespaceRE$1 = /\s+/g; var invalidAttributeRE = /[\s"'<>\/=]/; var decodeHTMLCached = cached(he.decode); var emptySlotScopeToken = "_empty_"; // configurable state var warn$2; var delimiters; var transforms; var preTransforms; var postTransforms; var platformIsPreTag; var platformMustUseProp; var platformGetTagNamespace; var maybeComponent; function createASTElement ( tag, attrs, parent ) { return { type: 1, tag: tag, attrsList: attrs, attrsMap: makeAttrsMap(attrs), rawAttrsMap: {}, parent: parent, children: [] } } /** * Convert HTML string to AST. */ function parse ( template, options ) { warn$2 = options.warn || baseWarn; platformIsPreTag = options.isPreTag || no; platformMustUseProp = options.mustUseProp || no; platformGetTagNamespace = options.getTagNamespace || no; var isReservedTag = options.isReservedTag || no; maybeComponent = function (el) { return !!el.component || !isReservedTag(el.tag); }; transforms = pluckModuleFunction(options.modules, 'transformNode'); preTransforms = pluckModuleFunction(options.modules, 'preTransformNode'); postTransforms = pluckModuleFunction(options.modules, 'postTransformNode'); delimiters = options.delimiters; var stack = []; var preserveWhitespace = options.preserveWhitespace !== false; var whitespaceOption = options.whitespace; var root; var currentParent; var inVPre = false; var inPre = false; var warned = false; function warnOnce (msg, range) { if (!warned) { warned = true; warn$2(msg, range); } } function closeElement (element) { trimEndingWhitespace(element); if (!inVPre && !element.processed) { element = processElement(element, options); } // tree management if (!stack.length && element !== root) { // allow root elements with v-if, v-else-if and v-else if (root.if && (element.elseif || element.else)) { { checkRootConstraints(element); } addIfCondition(root, { exp: element.elseif, block: element }); } else { warnOnce( "Component template should contain exactly one root element. " + "If you are using v-if on multiple elements, " + "use v-else-if to chain them instead.", { start: element.start } ); } } if (currentParent && !element.forbidden) { if (element.elseif || element.else) { processIfConditions(element, currentParent); } else { if (element.slotScope) { // scoped slot // keep it in the children list so that v-else(-if) conditions can // find it as the prev node. var name = element.slotTarget || '"default"' ;(currentParent.scopedSlots || (currentParent.scopedSlots = {}))[name] = element; } currentParent.children.push(element); element.parent = currentParent; } } // final children cleanup // filter out scoped slots element.children = element.children.filter(function (c) { return !(c).slotScope; }); // remove trailing whitespace node again trimEndingWhitespace(element); // check pre state if (element.pre) { inVPre = false; } if (platformIsPreTag(element.tag)) { inPre = false; } // apply post-transforms for (var i = 0; i < postTransforms.length; i++) { postTransforms[i](element, options); } } function trimEndingWhitespace (el) { // remove trailing whitespace node if (!inPre) { var lastNode; while ( (lastNode = el.children[el.children.length - 1]) && lastNode.type === 3 && lastNode.text === ' ' ) { el.children.pop(); } } } function checkRootConstraints (el) { if (el.tag === 'slot' || el.tag === 'template') { warnOnce( "Cannot use <" + (el.tag) + "> as component root element because it may " + 'contain multiple nodes.', { start: el.start } ); } if (el.attrsMap.hasOwnProperty('v-for')) { warnOnce( 'Cannot use v-for on stateful component root element because ' + 'it renders multiple elements.', el.rawAttrsMap['v-for'] ); } } parseHTML(template, { warn: warn$2, expectHTML: options.expectHTML, isUnaryTag: options.isUnaryTag, canBeLeftOpenTag: options.canBeLeftOpenTag, shouldDecodeNewlines: options.shouldDecodeNewlines, shouldDecodeNewlinesForHref: options.shouldDecodeNewlinesForHref, shouldKeepComment: options.comments, outputSourceRange: options.outputSourceRange, start: function start (tag, attrs, unary, start$1, end) { // check namespace. // inherit parent ns if there is one var ns = (currentParent && currentParent.ns) || platformGetTagNamespace(tag); // handle IE svg bug /* istanbul ignore if */ if (isIE && ns === 'svg') { attrs = guardIESVGBug(attrs); } var element = createASTElement(tag, attrs, currentParent); if (ns) { element.ns = ns; } { if (options.outputSourceRange) { element.start = start$1; element.end = end; element.rawAttrsMap = element.attrsList.reduce(function (cumulated, attr) { cumulated[attr.name] = attr; return cumulated }, {}); } attrs.forEach(function (attr) { if (invalidAttributeRE.test(attr.name)) { warn$2( "Invalid dynamic argument expression: attribute names cannot contain " + "spaces, quotes, <, >, / or =.", { start: attr.start + attr.name.indexOf("["), end: attr.start + attr.name.length } ); } }); } if (isForbiddenTag(element) && !isServerRendering()) { element.forbidden = true; warn$2( 'Templates should only be responsible for mapping the state to the ' + 'UI. Avoid placing tags with side-effects in your templates, such as ' + "<" + tag + ">" + ', as they will not be parsed.', { start: element.start } ); } // apply pre-transforms for (var i = 0; i < preTransforms.length; i++) { element = preTransforms[i](element, options) || element; } if (!inVPre) { processPre(element); if (element.pre) { inVPre = true; } } if (platformIsPreTag(element.tag)) { inPre = true; } if (inVPre) { processRawAttrs(element); } else if (!element.processed) { // structural directives processFor(element); processIf(element); processOnce(element); } if (!root) { root = element; { checkRootConstraints(root); } } if (!unary) { currentParent = element; stack.push(element); } else { closeElement(element); } }, end: function end (tag, start, end$1) { var element = stack[stack.length - 1]; // pop stack stack.length -= 1; currentParent = stack[stack.length - 1]; if (options.outputSourceRange) { element.end = end$1; } closeElement(element); }, chars: function chars (text, start, end) { if (!currentParent) { { if (text === template) { warnOnce( 'Component template requires a root element, rather than just text.', { start: start } ); } else if ((text = text.trim())) { warnOnce( ("text \"" + text + "\" outside root element will be ignored."), { start: start } ); } } return } // IE textarea placeholder bug /* istanbul ignore if */ if (isIE && currentParent.tag === 'textarea' && currentParent.attrsMap.placeholder === text ) { return } var children = currentParent.children; if (inPre || text.trim()) { text = isTextTag(currentParent) ? text : decodeHTMLCached(text); } else if (!children.length) { // remove the whitespace-only node right after an opening tag text = ''; } else if (whitespaceOption) { if (whitespaceOption === 'condense') { // in condense mode, remove the whitespace node if it contains // line break, otherwise condense to a single space text = lineBreakRE.test(text) ? '' : ' '; } else { text = ' '; } } else { text = preserveWhitespace ? ' ' : ''; } if (text) { if (!inPre && whitespaceOption === 'condense') { // condense consecutive whitespaces into single space text = text.replace(whitespaceRE$1, ' '); } var res; var child; if (!inVPre && text !== ' ' && (res = parseText(text, delimiters))) { child = { type: 2, expression: res.expression, tokens: res.tokens, text: text }; } else if (text !== ' ' || !children.length || children[children.length - 1].text !== ' ') { child = { type: 3, text: text }; } if (child) { if (options.outputSourceRange) { child.start = start; child.end = end; } children.push(child); } } }, comment: function comment (text, start, end) { // adding anything as a sibling to the root node is forbidden // comments should still be allowed, but ignored if (currentParent) { var child = { type: 3, text: text, isComment: true }; if (options.outputSourceRange) { child.start = start; child.end = end; } currentParent.children.push(child); } } }); return root } function processPre (el) { if (getAndRemoveAttr(el, 'v-pre') != null) { el.pre = true; } } function processRawAttrs (el) { var list = el.attrsList; var len = list.length; if (len) { var attrs = el.attrs = new Array(len); for (var i = 0; i < len; i++) { attrs[i] = { name: list[i].name, value: JSON.stringify(list[i].value) }; if (list[i].start != null) { attrs[i].start = list[i].start; attrs[i].end = list[i].end; } } } else if (!el.pre) { // non root node in pre blocks with no attributes el.plain = true; } } function processElement ( element, options ) { processKey(element); // determine whether this is a plain element after // removing structural attributes element.plain = ( !element.key && !element.scopedSlots && !element.attrsList.length ); processRef(element); processSlotContent(element); processSlotOutlet(element); processComponent(element); for (var i = 0; i < transforms.length; i++) { element = transforms[i](element, options) || element; } processAttrs(element); return element } function processKey (el) { var exp = getBindingAttr(el, 'key'); if (exp) { { if (el.tag === 'template') { warn$2( "<template> cannot be keyed. Place the key on real elements instead.", getRawBindingAttr(el, 'key') ); } if (el.for) { var iterator = el.iterator2 || el.iterator1; var parent = el.parent; if (iterator && iterator === exp && parent && parent.tag === 'transition-group') { warn$2( "Do not use v-for index as key on <transition-group> children, " + "this is the same as not using keys.", getRawBindingAttr(el, 'key'), true /* tip */ ); } } } el.key = exp; } } function processRef (el) { var ref = getBindingAttr(el, 'ref'); if (ref) { el.ref = ref; el.refInFor = checkInFor(el); } } function processFor (el) { var exp; if ((exp = getAndRemoveAttr(el, 'v-for'))) { var res = parseFor(exp); if (res) { extend(el, res); } else { warn$2( ("Invalid v-for expression: " + exp), el.rawAttrsMap['v-for'] ); } } } function parseFor (exp) { var inMatch = exp.match(forAliasRE); if (!inMatch) { return } var res = {}; res.for = inMatch[2].trim(); var alias = inMatch[1].trim().replace(stripParensRE, ''); var iteratorMatch = alias.match(forIteratorRE); if (iteratorMatch) { res.alias = alias.replace(forIteratorRE, '').trim(); res.iterator1 = iteratorMatch[1].trim(); if (iteratorMatch[2]) { res.iterator2 = iteratorMatch[2].trim(); } } else { res.alias = alias; } return res } function processIf (el) { var exp = getAndRemoveAttr(el, 'v-if'); if (exp) { el.if = exp; addIfCondition(el, { exp: exp, block: el }); } else { if (getAndRemoveAttr(el, 'v-else') != null) { el.else = true; } var elseif = getAndRemoveAttr(el, 'v-else-if'); if (elseif) { el.elseif = elseif; } } } function processIfConditions (el, parent) { var prev = findPrevElement(parent.children); if (prev && prev.if) { addIfCondition(prev, { exp: el.elseif, block: el }); } else { warn$2( "v-" + (el.elseif ? ('else-if="' + el.elseif + '"') : 'else') + " " + "used on element <" + (el.tag) + "> without corresponding v-if.", el.rawAttrsMap[el.elseif ? 'v-else-if' : 'v-else'] ); } } function findPrevElement (children) { var i = children.length; while (i--) { if (children[i].type === 1) { return children[i] } else { if (children[i].text !== ' ') { warn$2( "text \"" + (children[i].text.trim()) + "\" between v-if and v-else(-if) " + "will be ignored.", children[i] ); } children.pop(); } } } function addIfCondition (el, condition) { if (!el.ifConditions) { el.ifConditions = []; } el.ifConditions.push(condition); } function processOnce (el) { var once$$1 = getAndRemoveAttr(el, 'v-once'); if (once$$1 != null) { el.once = true; } } // handle content being passed to a component as slot, // e.g. <template slot="xxx">, <div slot-scope="xxx"> function processSlotContent (el) { var slotScope; if (el.tag === 'template') { slotScope = getAndRemoveAttr(el, 'scope'); /* istanbul ignore if */ if (slotScope) { warn$2( "the \"scope\" attribute for scoped slots have been deprecated and " + "replaced by \"slot-scope\" since 2.5. The new \"slot-scope\" attribute " + "can also be used on plain elements in addition to <template> to " + "denote scoped slots.", el.rawAttrsMap['scope'], true ); } el.slotScope = slotScope || getAndRemoveAttr(el, 'slot-scope'); } else if ((slotScope = getAndRemoveAttr(el, 'slot-scope'))) { /* istanbul ignore if */ if (el.attrsMap['v-for']) { warn$2( "Ambiguous combined usage of slot-scope and v-for on <" + (el.tag) + "> " + "(v-for takes higher priority). Use a wrapper <template> for the " + "scoped slot to make it clearer.", el.rawAttrsMap['slot-scope'], true ); } el.slotScope = slotScope; } // slot="xxx" var slotTarget = getBindingAttr(el, 'slot'); if (slotTarget) { el.slotTarget = slotTarget === '""' ? '"default"' : slotTarget; el.slotTargetDynamic = !!(el.attrsMap[':slot'] || el.attrsMap['v-bind:slot']); // preserve slot as an attribute for native shadow DOM compat // only for non-scoped slots. if (el.tag !== 'template' && !el.slotScope) { addAttr(el, 'slot', slotTarget, getRawBindingAttr(el, 'slot')); } } // 2.6 v-slot syntax { if (el.tag === 'template') { // v-slot on <template> var slotBinding = getAndRemoveAttrByRegex(el, slotRE); if (slotBinding) { { if (el.slotTarget || el.slotScope) { warn$2( "Unexpected mixed usage of different slot syntaxes.", el ); } if (el.parent && !maybeComponent(el.parent)) { warn$2( "<template v-slot> can only appear at the root level inside " + "the receiving component", el ); } } var ref = getSlotName(slotBinding); var name = ref.name; var dynamic = ref.dynamic; el.slotTarget = name; el.slotTargetDynamic = dynamic; el.slotScope = slotBinding.value || emptySlotScopeToken; // force it into a scoped slot for perf } } else { // v-slot on component, denotes default slot var slotBinding$1 = getAndRemoveAttrByRegex(el, slotRE); if (slotBinding$1) { { if (!maybeComponent(el)) { warn$2( "v-slot can only be used on components or <template>.", slotBinding$1 ); } if (el.slotScope || el.slotTarget) { warn$2( "Unexpected mixed usage of different slot syntaxes.", el ); } if (el.scopedSlots) { warn$2( "To avoid scope ambiguity, the default slot should also use " + "<template> syntax when there are other named slots.", slotBinding$1 ); } } // add the component's children to its default slot var slots = el.scopedSlots || (el.scopedSlots = {}); var ref$1 = getSlotName(slotBinding$1); var name$1 = ref$1.name; var dynamic$1 = ref$1.dynamic; var slotContainer = slots[name$1] = createASTElement('template', [], el); slotContainer.slotTarget = name$1; slotContainer.slotTargetDynamic = dynamic$1; slotContainer.children = el.children.filter(function (c) { if (!c.slotScope) { c.parent = slotContainer; return true } }); slotContainer.slotScope = slotBinding$1.value || emptySlotScopeToken; // remove children as they are returned from scopedSlots now el.children = []; // mark el non-plain so data gets generated el.plain = false; } } } } function getSlotName (binding) { var name = binding.name.replace(slotRE, ''); if (!name) { if (binding.name[0] !== '#') { name = 'default'; } else { warn$2( "v-slot shorthand syntax requires a slot name.", binding ); } } return dynamicArgRE.test(name) // dynamic [name] ? { name: name.slice(1, -1), dynamic: true } // static name : { name: ("\"" + name + "\""), dynamic: false } } // handle <slot/> outlets function processSlotOutlet (el) { if (el.tag === 'slot') { el.slotName = getBindingAttr(el, 'name'); if (el.key) { warn$2( "`key` does not work on <slot> because slots are abstract outlets " + "and can possibly expand into multiple elements. " + "Use the key on a wrapping element instead.", getRawBindingAttr(el, 'key') ); } } } function processComponent (el) { var binding; if ((binding = getBindingAttr(el, 'is'))) { el.component = binding; } if (getAndRemoveAttr(el, 'inline-template') != null) { el.inlineTemplate = true; } } function processAttrs (el) { var list = el.attrsList; var i, l, name, rawName, value, modifiers, syncGen, isDynamic; for (i = 0, l = list.length; i < l; i++) { name = rawName = list[i].name; value = list[i].value; if (dirRE.test(name)) { // mark element as dynamic el.hasBindings = true; // modifiers modifiers = parseModifiers(name.replace(dirRE, '')); // support .foo shorthand syntax for the .prop modifier if (modifiers) { name = name.replace(modifierRE, ''); } if (bindRE.test(name)) { // v-bind name = name.replace(bindRE, ''); value = parseFilters(value); isDynamic = dynamicArgRE.test(name); if (isDynamic) { name = name.slice(1, -1); } if ( value.trim().length === 0 ) { warn$2( ("The value for a v-bind expression cannot be empty. Found in \"v-bind:" + name + "\"") ); } if (modifiers) { if (modifiers.prop && !isDynamic) { name = camelize(name); if (name === 'innerHtml') { name = 'innerHTML'; } } if (modifiers.camel && !isDynamic) { name = camelize(name); } if (modifiers.sync) { syncGen = genAssignmentCode(value, "$event"); if (!isDynamic) { addHandler( el, ("update:" + (camelize(name))), syncGen, null, false, warn$2, list[i] ); if (hyphenate(name) !== camelize(name)) { addHandler( el, ("update:" + (hyphenate(name))), syncGen, null, false, warn$2, list[i] ); } } else { // handler w/ dynamic event name addHandler( el, ("\"update:\"+(" + name + ")"), syncGen, null, false, warn$2, list[i], true // dynamic ); } } } if ((modifiers && modifiers.prop) || ( !el.component && platformMustUseProp(el.tag, el.attrsMap.type, name) )) { addProp(el, name, value, list[i], isDynamic); } else { addAttr(el, name, value, list[i], isDynamic); } } else if (onRE.test(name)) { // v-on name = name.replace(onRE, ''); isDynamic = dynamicArgRE.test(name); if (isDynamic) { name = name.slice(1, -1); } addHandler(el, name, value, modifiers, false, warn$2, list[i], isDynamic); } else { // normal directives name = name.replace(dirRE, ''); // parse arg var argMatch = name.match(argRE); var arg = argMatch && argMatch[1]; isDynamic = false; if (arg) { name = name.slice(0, -(arg.length + 1)); if (dynamicArgRE.test(arg)) { arg = arg.slice(1, -1); isDynamic = true; } } addDirective(el, name, rawName, value, arg, isDynamic, modifiers, list[i]); if (name === 'model') { checkForAliasModel(el, value); } } } else { // literal attribute { var res = parseText(value, delimiters); if (res) { warn$2( name + "=\"" + value + "\": " + 'Interpolation inside attributes has been removed. ' + 'Use v-bind or the colon shorthand instead. For example, ' + 'instead of <div id="{{ val }}">, use <div :id="val">.', list[i] ); } } addAttr(el, name, JSON.stringify(value), list[i]); // #6887 firefox doesn't update muted state if set via attribute // even immediately after element creation if (!el.component && name === 'muted' && platformMustUseProp(el.tag, el.attrsMap.type, name)) { addProp(el, name, 'true', list[i]); } } } } function checkInFor (el) { var parent = el; while (parent) { if (parent.for !== undefined) { return true } parent = parent.parent; } return false } function parseModifiers (name) { var match = name.match(modifierRE); if (match) { var ret = {}; match.forEach(function (m) { ret[m.slice(1)] = true; }); return ret } } function makeAttrsMap (attrs) { var map = {}; for (var i = 0, l = attrs.length; i < l; i++) { if ( map[attrs[i].name] && !isIE && !isEdge ) { warn$2('duplicate attribute: ' + attrs[i].name, attrs[i]); } map[attrs[i].name] = attrs[i].value; } return map } // for script (e.g. type="x/template") or style, do not decode content function isTextTag (el) { return el.tag === 'script' || el.tag === 'style' } function isForbiddenTag (el) { return ( el.tag === 'style' || (el.tag === 'script' && ( !el.attrsMap.type || el.attrsMap.type === 'text/javascript' )) ) } var ieNSBug = /^xmlns:NS\d+/; var ieNSPrefix = /^NS\d+:/; /* istanbul ignore next */ function guardIESVGBug (attrs) { var res = []; for (var i = 0; i < attrs.length; i++) { var attr = attrs[i]; if (!ieNSBug.test(attr.name)) { attr.name = attr.name.replace(ieNSPrefix, ''); res.push(attr); } } return res } function checkForAliasModel (el, value) { var _el = el; while (_el) { if (_el.for && _el.alias === value) { warn$2( "<" + (el.tag) + " v-model=\"" + value + "\">: " + "You are binding v-model directly to a v-for iteration alias. " + "This will not be able to modify the v-for source array because " + "writing to the alias is like modifying a function local variable. " + "Consider using an array of objects and use v-model on an object property instead.", el.rawAttrsMap['v-model'] ); } _el = _el.parent; } } /* */ function preTransformNode (el, options) { if (el.tag === 'input') { var map = el.attrsMap; if (!map['v-model']) { return } var typeBinding; if (map[':type'] || map['v-bind:type']) { typeBinding = getBindingAttr(el, 'type'); } if (!map.type && !typeBinding && map['v-bind']) { typeBinding = "(" + (map['v-bind']) + ").type"; } if (typeBinding) { var ifCondition = getAndRemoveAttr(el, 'v-if', true); var ifConditionExtra = ifCondition ? ("&&(" + ifCondition + ")") : ""; var hasElse = getAndRemoveAttr(el, 'v-else', true) != null; var elseIfCondition = getAndRemoveAttr(el, 'v-else-if', true); // 1. checkbox var branch0 = cloneASTElement(el); // process for on the main node processFor(branch0); addRawAttr(branch0, 'type', 'checkbox'); processElement(branch0, options); branch0.processed = true; // prevent it from double-processed branch0.if = "(" + typeBinding + ")==='checkbox'" + ifConditionExtra; addIfCondition(branch0, { exp: branch0.if, block: branch0 }); // 2. add radio else-if condition var branch1 = cloneASTElement(el); getAndRemoveAttr(branch1, 'v-for', true); addRawAttr(branch1, 'type', 'radio'); processElement(branch1, options); addIfCondition(branch0, { exp: "(" + typeBinding + ")==='radio'" + ifConditionExtra, block: branch1 }); // 3. other var branch2 = cloneASTElement(el); getAndRemoveAttr(branch2, 'v-for', true); addRawAttr(branch2, ':type', typeBinding); processElement(branch2, options); addIfCondition(branch0, { exp: ifCondition, block: branch2 }); if (hasElse) { branch0.else = true; } else if (elseIfCondition) { branch0.elseif = elseIfCondition; } return branch0 } } } function cloneASTElement (el) { return createASTElement(el.tag, el.attrsList.slice(), el.parent) } var model$1 = { preTransformNode: preTransformNode }; var modules$1 = [ klass$1, style$1, model$1 ]; /* */ function text (el, dir) { if (dir.value) { addProp(el, 'textContent', ("_s(" + (dir.value) + ")"), dir); } } /* */ function html (el, dir) { if (dir.value) { addProp(el, 'innerHTML', ("_s(" + (dir.value) + ")"), dir); } } var directives$1 = { model: model, text: text, html: html }; /* */ var baseOptions = { expectHTML: true, modules: modules$1, directives: directives$1, isPreTag: isPreTag, isUnaryTag: isUnaryTag, mustUseProp: mustUseProp, canBeLeftOpenTag: canBeLeftOpenTag, isReservedTag: isReservedTag, getTagNamespace: getTagNamespace, staticKeys: genStaticKeys(modules$1) }; /* */ var isStaticKey; var isPlatformReservedTag; var genStaticKeysCached = cached(genStaticKeys$1); /** * Goal of the optimizer: walk the generated template AST tree * and detect sub-trees that are purely static, i.e. parts of * the DOM that never needs to change. * * Once we detect these sub-trees, we can: * * 1. Hoist them into constants, so that we no longer need to * create fresh nodes for them on each re-render; * 2. Completely skip them in the patching process. */ function optimize (root, options) { if (!root) { return } isStaticKey = genStaticKeysCached(options.staticKeys || ''); isPlatformReservedTag = options.isReservedTag || no; // first pass: mark all non-static nodes. markStatic$1(root); // second pass: mark static roots. markStaticRoots(root, false); } function genStaticKeys$1 (keys) { return makeMap( 'type,tag,attrsList,attrsMap,plain,parent,children,attrs,start,end,rawAttrsMap' + (keys ? ',' + keys : '') ) } function markStatic$1 (node) { node.static = isStatic(node); if (node.type === 1) { // do not make component slot content static. this avoids // 1. components not able to mutate slot nodes // 2. static slot content fails for hot-reloading if ( !isPlatformReservedTag(node.tag) && node.tag !== 'slot' && node.attrsMap['inline-template'] == null ) { return } for (var i = 0, l = node.children.length; i < l; i++) { var child = node.children[i]; markStatic$1(child); if (!child.static) { node.static = false; } } if (node.ifConditions) { for (var i$1 = 1, l$1 = node.ifConditions.length; i$1 < l$1; i$1++) { var block = node.ifConditions[i$1].block; markStatic$1(block); if (!block.static) { node.static = false; } } } } } function markStaticRoots (node, isInFor) { if (node.type === 1) { if (node.static || node.once) { node.staticInFor = isInFor; } // For a node to qualify as a static root, it should have children that // are not just static text. Otherwise the cost of hoisting out will // outweigh the benefits and it's better off to just always render it fresh. if (node.static && node.children.length && !( node.children.length === 1 && node.children[0].type === 3 )) { node.staticRoot = true; return } else { node.staticRoot = false; } if (node.children) { for (var i = 0, l = node.children.length; i < l; i++) { markStaticRoots(node.children[i], isInFor || !!node.for); } } if (node.ifConditions) { for (var i$1 = 1, l$1 = node.ifConditions.length; i$1 < l$1; i$1++) { markStaticRoots(node.ifConditions[i$1].block, isInFor); } } } } function isStatic (node) { if (node.type === 2) { // expression return false } if (node.type === 3) { // text return true } return !!(node.pre || ( !node.hasBindings && // no dynamic bindings !node.if && !node.for && // not v-if or v-for or v-else !isBuiltInTag(node.tag) && // not a built-in isPlatformReservedTag(node.tag) && // not a component !isDirectChildOfTemplateFor(node) && Object.keys(node).every(isStaticKey) )) } function isDirectChildOfTemplateFor (node) { while (node.parent) { node = node.parent; if (node.tag !== 'template') { return false } if (node.for) { return true } } return false } /* */ var fnExpRE = /^([\w$_]+|\([^)]*?\))\s*=>|^function(?:\s+[\w$]+)?\s*\(/; var fnInvokeRE = /\([^)]*?\);*$/; var simplePathRE = /^[A-Za-z_$][\w$]*(?:\.[A-Za-z_$][\w$]*|\['[^']*?']|\["[^"]*?"]|\[\d+]|\[[A-Za-z_$][\w$]*])*$/; // KeyboardEvent.keyCode aliases var keyCodes = { esc: 27, tab: 9, enter: 13, space: 32, up: 38, left: 37, right: 39, down: 40, 'delete': [8, 46] }; // KeyboardEvent.key aliases var keyNames = { // #7880: IE11 and Edge use `Esc` for Escape key name. esc: ['Esc', 'Escape'], tab: 'Tab', enter: 'Enter', // #9112: IE11 uses `Spacebar` for Space key name. space: [' ', 'Spacebar'], // #7806: IE11 uses key names without `Arrow` prefix for arrow keys. up: ['Up', 'ArrowUp'], left: ['Left', 'ArrowLeft'], right: ['Right', 'ArrowRight'], down: ['Down', 'ArrowDown'], // #9112: IE11 uses `Del` for Delete key name. 'delete': ['Backspace', 'Delete', 'Del'] }; // #4868: modifiers that prevent the execution of the listener // need to explicitly return null so that we can determine whether to remove // the listener for .once var genGuard = function (condition) { return ("if(" + condition + ")return null;"); }; var modifierCode = { stop: '$event.stopPropagation();', prevent: '$event.preventDefault();', self: genGuard("$event.target !== $event.currentTarget"), ctrl: genGuard("!$event.ctrlKey"), shift: genGuard("!$event.shiftKey"), alt: genGuard("!$event.altKey"), meta: genGuard("!$event.metaKey"), left: genGuard("'button' in $event && $event.button !== 0"), middle: genGuard("'button' in $event && $event.button !== 1"), right: genGuard("'button' in $event && $event.button !== 2") }; function genHandlers ( events, isNative ) { var prefix = isNative ? 'nativeOn:' : 'on:'; var staticHandlers = ""; var dynamicHandlers = ""; for (var name in events) { var handlerCode = genHandler(events[name]); if (events[name] && events[name].dynamic) { dynamicHandlers += name + "," + handlerCode + ","; } else { staticHandlers += "\"" + name + "\":" + handlerCode + ","; } } staticHandlers = "{" + (staticHandlers.slice(0, -1)) + "}"; if (dynamicHandlers) { return prefix + "_d(" + staticHandlers + ",[" + (dynamicHandlers.slice(0, -1)) + "])" } else { return prefix + staticHandlers } } function genHandler (handler) { if (!handler) { return 'function(){}' } if (Array.isArray(handler)) { return ("[" + (handler.map(function (handler) { return genHandler(handler); }).join(',')) + "]") } var isMethodPath = simplePathRE.test(handler.value); var isFunctionExpression = fnExpRE.test(handler.value); var isFunctionInvocation = simplePathRE.test(handler.value.replace(fnInvokeRE, '')); if (!handler.modifiers) { if (isMethodPath || isFunctionExpression) { return handler.value } return ("function($event){" + (isFunctionInvocation ? ("return " + (handler.value)) : handler.value) + "}") // inline statement } else { var code = ''; var genModifierCode = ''; var keys = []; for (var key in handler.modifiers) { if (modifierCode[key]) { genModifierCode += modifierCode[key]; // left/right if (keyCodes[key]) { keys.push(key); } } else if (key === 'exact') { var modifiers = (handler.modifiers); genModifierCode += genGuard( ['ctrl', 'shift', 'alt', 'meta'] .filter(function (keyModifier) { return !modifiers[keyModifier]; }) .map(function (keyModifier) { return ("$event." + keyModifier + "Key"); }) .join('||') ); } else { keys.push(key); } } if (keys.length) { code += genKeyFilter(keys); } // Make sure modifiers like prevent and stop get executed after key filtering if (genModifierCode) { code += genModifierCode; } var handlerCode = isMethodPath ? ("return " + (handler.value) + "($event)") : isFunctionExpression ? ("return (" + (handler.value) + ")($event)") : isFunctionInvocation ? ("return " + (handler.value)) : handler.value; return ("function($event){" + code + handlerCode + "}") } } function genKeyFilter (keys) { return ( // make sure the key filters only apply to KeyboardEvents // #9441: can't use 'keyCode' in $event because Chrome autofill fires fake // key events that do not have keyCode property... "if(!$event.type.indexOf('key')&&" + (keys.map(genFilterCode).join('&&')) + ")return null;" ) } function genFilterCode (key) { var keyVal = parseInt(key, 10); if (keyVal) { return ("$event.keyCode!==" + keyVal) } var keyCode = keyCodes[key]; var keyName = keyNames[key]; return ( "_k($event.keyCode," + (JSON.stringify(key)) + "," + (JSON.stringify(keyCode)) + "," + "$event.key," + "" + (JSON.stringify(keyName)) + ")" ) } /* */ function on (el, dir) { if (dir.modifiers) { warn("v-on without argument does not support modifiers."); } el.wrapListeners = function (code) { return ("_g(" + code + "," + (dir.value) + ")"); }; } /* */ function bind$1 (el, dir) { el.wrapData = function (code) { return ("_b(" + code + ",'" + (el.tag) + "'," + (dir.value) + "," + (dir.modifiers && dir.modifiers.prop ? 'true' : 'false') + (dir.modifiers && dir.modifiers.sync ? ',true' : '') + ")") }; } /* */ var baseDirectives = { on: on, bind: bind$1, cloak: noop }; /* */ var CodegenState = function CodegenState (options) { this.options = options; this.warn = options.warn || baseWarn; this.transforms = pluckModuleFunction(options.modules, 'transformCode'); this.dataGenFns = pluckModuleFunction(options.modules, 'genData'); this.directives = extend(extend({}, baseDirectives), options.directives); var isReservedTag = options.isReservedTag || no; this.maybeComponent = function (el) { return !!el.component || !isReservedTag(el.tag); }; this.onceId = 0; this.staticRenderFns = []; this.pre = false; }; function generate ( ast, options ) { var state = new CodegenState(options); var code = ast ? genElement(ast, state) : '_c("div")'; return { render: ("with(this){return " + code + "}"), staticRenderFns: state.staticRenderFns } } function genElement (el, state) { if (el.parent) { el.pre = el.pre || el.parent.pre; } if (el.staticRoot && !el.staticProcessed) { return genStatic(el, state) } else if (el.once && !el.onceProcessed) { return genOnce(el, state) } else if (el.for && !el.forProcessed) { return genFor(el, state) } else if (el.if && !el.ifProcessed) { return genIf(el, state) } else if (el.tag === 'template' && !el.slotTarget && !state.pre) { return genChildren(el, state) || 'void 0' } else if (el.tag === 'slot') { return genSlot(el, state) } else { // component or element var code; if (el.component) { code = genComponent(el.component, el, state); } else { var data; if (!el.plain || (el.pre && state.maybeComponent(el))) { data = genData$2(el, state); } var children = el.inlineTemplate ? null : genChildren(el, state, true); code = "_c('" + (el.tag) + "'" + (data ? ("," + data) : '') + (children ? ("," + children) : '') + ")"; } // module transforms for (var i = 0; i < state.transforms.length; i++) { code = state.transforms[i](el, code); } return code } } // hoist static sub-trees out function genStatic (el, state) { el.staticProcessed = true; // Some elements (templates) need to behave differently inside of a v-pre // node. All pre nodes are static roots, so we can use this as a location to // wrap a state change and reset it upon exiting the pre node. var originalPreState = state.pre; if (el.pre) { state.pre = el.pre; } state.staticRenderFns.push(("with(this){return " + (genElement(el, state)) + "}")); state.pre = originalPreState; return ("_m(" + (state.staticRenderFns.length - 1) + (el.staticInFor ? ',true' : '') + ")") } // v-once function genOnce (el, state) { el.onceProcessed = true; if (el.if && !el.ifProcessed) { return genIf(el, state) } else if (el.staticInFor) { var key = ''; var parent = el.parent; while (parent) { if (parent.for) { key = parent.key; break } parent = parent.parent; } if (!key) { state.warn( "v-once can only be used inside v-for that is keyed. ", el.rawAttrsMap['v-once'] ); return genElement(el, state) } return ("_o(" + (genElement(el, state)) + "," + (state.onceId++) + "," + key + ")") } else { return genStatic(el, state) } } function genIf ( el, state, altGen, altEmpty ) { el.ifProcessed = true; // avoid recursion return genIfConditions(el.ifConditions.slice(), state, altGen, altEmpty) } function genIfConditions ( conditions, state, altGen, altEmpty ) { if (!conditions.length) { return altEmpty || '_e()' } var condition = conditions.shift(); if (condition.exp) { return ("(" + (condition.exp) + ")?" + (genTernaryExp(condition.block)) + ":" + (genIfConditions(conditions, state, altGen, altEmpty))) } else { return ("" + (genTernaryExp(condition.block))) } // v-if with v-once should generate code like (a)?_m(0):_m(1) function genTernaryExp (el) { return altGen ? altGen(el, state) : el.once ? genOnce(el, state) : genElement(el, state) } } function genFor ( el, state, altGen, altHelper ) { var exp = el.for; var alias = el.alias; var iterator1 = el.iterator1 ? ("," + (el.iterator1)) : ''; var iterator2 = el.iterator2 ? ("," + (el.iterator2)) : ''; if (state.maybeComponent(el) && el.tag !== 'slot' && el.tag !== 'template' && !el.key ) { state.warn( "<" + (el.tag) + " v-for=\"" + alias + " in " + exp + "\">: component lists rendered with " + "v-for should have explicit keys. " + "See https://vuejs.org/guide/list.html#key for more info.", el.rawAttrsMap['v-for'], true /* tip */ ); } el.forProcessed = true; // avoid recursion return (altHelper || '_l') + "((" + exp + ")," + "function(" + alias + iterator1 + iterator2 + "){" + "return " + ((altGen || genElement)(el, state)) + '})' } function genData$2 (el, state) { var data = '{'; // directives first. // directives may mutate the el's other properties before they are generated. var dirs = genDirectives(el, state); if (dirs) { data += dirs + ','; } // key if (el.key) { data += "key:" + (el.key) + ","; } // ref if (el.ref) { data += "ref:" + (el.ref) + ","; } if (el.refInFor) { data += "refInFor:true,"; } // pre if (el.pre) { data += "pre:true,"; } // record original tag name for components using "is" attribute if (el.component) { data += "tag:\"" + (el.tag) + "\","; } // module data generation functions for (var i = 0; i < state.dataGenFns.length; i++) { data += state.dataGenFns[i](el); } // attributes if (el.attrs) { data += "attrs:" + (genProps(el.attrs)) + ","; } // DOM props if (el.props) { data += "domProps:" + (genProps(el.props)) + ","; } // event handlers if (el.events) { data += (genHandlers(el.events, false)) + ","; } if (el.nativeEvents) { data += (genHandlers(el.nativeEvents, true)) + ","; } // slot target // only for non-scoped slots if (el.slotTarget && !el.slotScope) { data += "slot:" + (el.slotTarget) + ","; } // scoped slots if (el.scopedSlots) { data += (genScopedSlots(el, el.scopedSlots, state)) + ","; } // component v-model if (el.model) { data += "model:{value:" + (el.model.value) + ",callback:" + (el.model.callback) + ",expression:" + (el.model.expression) + "},"; } // inline-template if (el.inlineTemplate) { var inlineTemplate = genInlineTemplate(el, state); if (inlineTemplate) { data += inlineTemplate + ","; } } data = data.replace(/,$/, '') + '}'; // v-bind dynamic argument wrap // v-bind with dynamic arguments must be applied using the same v-bind object // merge helper so that class/style/mustUseProp attrs are handled correctly. if (el.dynamicAttrs) { data = "_b(" + data + ",\"" + (el.tag) + "\"," + (genProps(el.dynamicAttrs)) + ")"; } // v-bind data wrap if (el.wrapData) { data = el.wrapData(data); } // v-on data wrap if (el.wrapListeners) { data = el.wrapListeners(data); } return data } function genDirectives (el, state) { var dirs = el.directives; if (!dirs) { return } var res = 'directives:['; var hasRuntime = false; var i, l, dir, needRuntime; for (i = 0, l = dirs.length; i < l; i++) { dir = dirs[i]; needRuntime = true; var gen = state.directives[dir.name]; if (gen) { // compile-time directive that manipulates AST. // returns true if it also needs a runtime counterpart. needRuntime = !!gen(el, dir, state.warn); } if (needRuntime) { hasRuntime = true; res += "{name:\"" + (dir.name) + "\",rawName:\"" + (dir.rawName) + "\"" + (dir.value ? (",value:(" + (dir.value) + "),expression:" + (JSON.stringify(dir.value))) : '') + (dir.arg ? (",arg:" + (dir.isDynamicArg ? dir.arg : ("\"" + (dir.arg) + "\""))) : '') + (dir.modifiers ? (",modifiers:" + (JSON.stringify(dir.modifiers))) : '') + "},"; } } if (hasRuntime) { return res.slice(0, -1) + ']' } } function genInlineTemplate (el, state) { var ast = el.children[0]; if (el.children.length !== 1 || ast.type !== 1) { state.warn( 'Inline-template components must have exactly one child element.', { start: el.start } ); } if (ast && ast.type === 1) { var inlineRenderFns = generate(ast, state.options); return ("inlineTemplate:{render:function(){" + (inlineRenderFns.render) + "},staticRenderFns:[" + (inlineRenderFns.staticRenderFns.map(function (code) { return ("function(){" + code + "}"); }).join(',')) + "]}") } } function genScopedSlots ( el, slots, state ) { // by default scoped slots are considered "stable", this allows child // components with only scoped slots to skip forced updates from parent. // but in some cases we have to bail-out of this optimization // for example if the slot contains dynamic names, has v-if or v-for on them... var needsForceUpdate = el.for || Object.keys(slots).some(function (key) { var slot = slots[key]; return ( slot.slotTargetDynamic || slot.if || slot.for || containsSlotChild(slot) // is passing down slot from parent which may be dynamic ) }); // #9534: if a component with scoped slots is inside a conditional branch, // it's possible for the same component to be reused but with different // compiled slot content. To avoid that, we generate a unique key based on // the generated code of all the slot contents. var needsKey = !!el.if; // OR when it is inside another scoped slot or v-for (the reactivity may be // disconnected due to the intermediate scope variable) // #9438, #9506 // TODO: this can be further optimized by properly analyzing in-scope bindings // and skip force updating ones that do not actually use scope variables. if (!needsForceUpdate) { var parent = el.parent; while (parent) { if ( (parent.slotScope && parent.slotScope !== emptySlotScopeToken) || parent.for ) { needsForceUpdate = true; break } if (parent.if) { needsKey = true; } parent = parent.parent; } } var generatedSlots = Object.keys(slots) .map(function (key) { return genScopedSlot(slots[key], state); }) .join(','); return ("scopedSlots:_u([" + generatedSlots + "]" + (needsForceUpdate ? ",null,true" : "") + (!needsForceUpdate && needsKey ? (",null,false," + (hash(generatedSlots))) : "") + ")") } function hash(str) { var hash = 5381; var i = str.length; while(i) { hash = (hash * 33) ^ str.charCodeAt(--i); } return hash >>> 0 } function containsSlotChild (el) { if (el.type === 1) { if (el.tag === 'slot') { return true } return el.children.some(containsSlotChild) } return false } function genScopedSlot ( el, state ) { var isLegacySyntax = el.attrsMap['slot-scope']; if (el.if && !el.ifProcessed && !isLegacySyntax) { return genIf(el, state, genScopedSlot, "null") } if (el.for && !el.forProcessed) { return genFor(el, state, genScopedSlot) } var slotScope = el.slotScope === emptySlotScopeToken ? "" : String(el.slotScope); var fn = "function(" + slotScope + "){" + "return " + (el.tag === 'template' ? el.if && isLegacySyntax ? ("(" + (el.if) + ")?" + (genChildren(el, state) || 'undefined') + ":undefined") : genChildren(el, state) || 'undefined' : genElement(el, state)) + "}"; // reverse proxy v-slot without scope on this.$slots var reverseProxy = slotScope ? "" : ",proxy:true"; return ("{key:" + (el.slotTarget || "\"default\"") + ",fn:" + fn + reverseProxy + "}") } function genChildren ( el, state, checkSkip, altGenElement, altGenNode ) { var children = el.children; if (children.length) { var el$1 = children[0]; // optimize single v-for if (children.length === 1 && el$1.for && el$1.tag !== 'template' && el$1.tag !== 'slot' ) { var normalizationType = checkSkip ? state.maybeComponent(el$1) ? ",1" : ",0" : ""; return ("" + ((altGenElement || genElement)(el$1, state)) + normalizationType) } var normalizationType$1 = checkSkip ? getNormalizationType(children, state.maybeComponent) : 0; var gen = altGenNode || genNode; return ("[" + (children.map(function (c) { return gen(c, state); }).join(',')) + "]" + (normalizationType$1 ? ("," + normalizationType$1) : '')) } } // determine the normalization needed for the children array. // 0: no normalization needed // 1: simple normalization needed (possible 1-level deep nested array) // 2: full normalization needed function getNormalizationType ( children, maybeComponent ) { var res = 0; for (var i = 0; i < children.length; i++) { var el = children[i]; if (el.type !== 1) { continue } if (needsNormalization(el) || (el.ifConditions && el.ifConditions.some(function (c) { return needsNormalization(c.block); }))) { res = 2; break } if (maybeComponent(el) || (el.ifConditions && el.ifConditions.some(function (c) { return maybeComponent(c.block); }))) { res = 1; } } return res } function needsNormalization (el) { return el.for !== undefined || el.tag === 'template' || el.tag === 'slot' } function genNode (node, state) { if (node.type === 1) { return genElement(node, state) } else if (node.type === 3 && node.isComment) { return genComment(node) } else { return genText(node) } } function genText (text) { return ("_v(" + (text.type === 2 ? text.expression // no need for () because already wrapped in _s() : transformSpecialNewlines(JSON.stringify(text.text))) + ")") } function genComment (comment) { return ("_e(" + (JSON.stringify(comment.text)) + ")") } function genSlot (el, state) { var slotName = el.slotName || '"default"'; var children = genChildren(el, state); var res = "_t(" + slotName + (children ? ("," + children) : ''); var attrs = el.attrs || el.dynamicAttrs ? genProps((el.attrs || []).concat(el.dynamicAttrs || []).map(function (attr) { return ({ // slot props are camelized name: camelize(attr.name), value: attr.value, dynamic: attr.dynamic }); })) : null; var bind$$1 = el.attrsMap['v-bind']; if ((attrs || bind$$1) && !children) { res += ",null"; } if (attrs) { res += "," + attrs; } if (bind$$1) { res += (attrs ? '' : ',null') + "," + bind$$1; } return res + ')' } // componentName is el.component, take it as argument to shun flow's pessimistic refinement function genComponent ( componentName, el, state ) { var children = el.inlineTemplate ? null : genChildren(el, state, true); return ("_c(" + componentName + "," + (genData$2(el, state)) + (children ? ("," + children) : '') + ")") } function genProps (props) { var staticProps = ""; var dynamicProps = ""; for (var i = 0; i < props.length; i++) { var prop = props[i]; var value = transformSpecialNewlines(prop.value); if (prop.dynamic) { dynamicProps += (prop.name) + "," + value + ","; } else { staticProps += "\"" + (prop.name) + "\":" + value + ","; } } staticProps = "{" + (staticProps.slice(0, -1)) + "}"; if (dynamicProps) { return ("_d(" + staticProps + ",[" + (dynamicProps.slice(0, -1)) + "])") } else { return staticProps } } // #3895, #4268 function transformSpecialNewlines (text) { return text .replace(/\u2028/g, '\\u2028') .replace(/\u2029/g, '\\u2029') } /* */ // these keywords should not appear inside expressions, but operators like // typeof, instanceof and in are allowed var prohibitedKeywordRE = new RegExp('\\b' + ( 'do,if,for,let,new,try,var,case,else,with,await,break,catch,class,const,' + 'super,throw,while,yield,delete,export,import,return,switch,default,' + 'extends,finally,continue,debugger,function,arguments' ).split(',').join('\\b|\\b') + '\\b'); // these unary operators should not be used as property/method names var unaryOperatorsRE = new RegExp('\\b' + ( 'delete,typeof,void' ).split(',').join('\\s*\\([^\\)]*\\)|\\b') + '\\s*\\([^\\)]*\\)'); // strip strings in expressions var stripStringRE = /'(?:[^'\\]|\\.)*'|"(?:[^"\\]|\\.)*"|`(?:[^`\\]|\\.)*\$\{|\}(?:[^`\\]|\\.)*`|`(?:[^`\\]|\\.)*`/g; // detect problematic expressions in a template function detectErrors (ast, warn) { if (ast) { checkNode(ast, warn); } } function checkNode (node, warn) { if (node.type === 1) { for (var name in node.attrsMap) { if (dirRE.test(name)) { var value = node.attrsMap[name]; if (value) { var range = node.rawAttrsMap[name]; if (name === 'v-for') { checkFor(node, ("v-for=\"" + value + "\""), warn, range); } else if (name === 'v-slot' || name[0] === '#') { checkFunctionParameterExpression(value, (name + "=\"" + value + "\""), warn, range); } else if (onRE.test(name)) { checkEvent(value, (name + "=\"" + value + "\""), warn, range); } else { checkExpression(value, (name + "=\"" + value + "\""), warn, range); } } } } if (node.children) { for (var i = 0; i < node.children.length; i++) { checkNode(node.children[i], warn); } } } else if (node.type === 2) { checkExpression(node.expression, node.text, warn, node); } } function checkEvent (exp, text, warn, range) { var stripped = exp.replace(stripStringRE, ''); var keywordMatch = stripped.match(unaryOperatorsRE); if (keywordMatch && stripped.charAt(keywordMatch.index - 1) !== '$') { warn( "avoid using JavaScript unary operator as property name: " + "\"" + (keywordMatch[0]) + "\" in expression " + (text.trim()), range ); } checkExpression(exp, text, warn, range); } function checkFor (node, text, warn, range) { checkExpression(node.for || '', text, warn, range); checkIdentifier(node.alias, 'v-for alias', text, warn, range); checkIdentifier(node.iterator1, 'v-for iterator', text, warn, range); checkIdentifier(node.iterator2, 'v-for iterator', text, warn, range); } function checkIdentifier ( ident, type, text, warn, range ) { if (typeof ident === 'string') { try { new Function(("var " + ident + "=_")); } catch (e) { warn(("invalid " + type + " \"" + ident + "\" in expression: " + (text.trim())), range); } } } function checkExpression (exp, text, warn, range) { try { new Function(("return " + exp)); } catch (e) { var keywordMatch = exp.replace(stripStringRE, '').match(prohibitedKeywordRE); if (keywordMatch) { warn( "avoid using JavaScript keyword as property name: " + "\"" + (keywordMatch[0]) + "\"\n Raw expression: " + (text.trim()), range ); } else { warn( "invalid expression: " + (e.message) + " in\n\n" + " " + exp + "\n\n" + " Raw expression: " + (text.trim()) + "\n", range ); } } } function checkFunctionParameterExpression (exp, text, warn, range) { try { new Function(exp, ''); } catch (e) { warn( "invalid function parameter expression: " + (e.message) + " in\n\n" + " " + exp + "\n\n" + " Raw expression: " + (text.trim()) + "\n", range ); } } /* */ var range = 2; function generateCodeFrame ( source, start, end ) { if ( start === void 0 ) start = 0; if ( end === void 0 ) end = source.length; var lines = source.split(/\r?\n/); var count = 0; var res = []; for (var i = 0; i < lines.length; i++) { count += lines[i].length + 1; if (count >= start) { for (var j = i - range; j <= i + range || end > count; j++) { if (j < 0 || j >= lines.length) { continue } res.push(("" + (j + 1) + (repeat$1(" ", 3 - String(j + 1).length)) + "| " + (lines[j]))); var lineLength = lines[j].length; if (j === i) { // push underline var pad = start - (count - lineLength) + 1; var length = end > count ? lineLength - pad : end - start; res.push(" | " + repeat$1(" ", pad) + repeat$1("^", length)); } else if (j > i) { if (end > count) { var length$1 = Math.min(end - count, lineLength); res.push(" | " + repeat$1("^", length$1)); } count += lineLength + 1; } } break } } return res.join('\n') } function repeat$1 (str, n) { var result = ''; if (n > 0) { while (true) { // eslint-disable-line if (n & 1) { result += str; } n >>>= 1; if (n <= 0) { break } str += str; } } return result } /* */ function createFunction (code, errors) { try { return new Function(code) } catch (err) { errors.push({ err: err, code: code }); return noop } } function createCompileToFunctionFn (compile) { var cache = Object.create(null); return function compileToFunctions ( template, options, vm ) { options = extend({}, options); var warn$$1 = options.warn || warn; delete options.warn; /* istanbul ignore if */ { // detect possible CSP restriction try { new Function('return 1'); } catch (e) { if (e.toString().match(/unsafe-eval|CSP/)) { warn$$1( 'It seems you are using the standalone build of Vue.js in an ' + 'environment with Content Security Policy that prohibits unsafe-eval. ' + 'The template compiler cannot work in this environment. Consider ' + 'relaxing the policy to allow unsafe-eval or pre-compiling your ' + 'templates into render functions.' ); } } } // check cache var key = options.delimiters ? String(options.delimiters) + template : template; if (cache[key]) { return cache[key] } // compile var compiled = compile(template, options); // check compilation errors/tips { if (compiled.errors && compiled.errors.length) { if (options.outputSourceRange) { compiled.errors.forEach(function (e) { warn$$1( "Error compiling template:\n\n" + (e.msg) + "\n\n" + generateCodeFrame(template, e.start, e.end), vm ); }); } else { warn$$1( "Error compiling template:\n\n" + template + "\n\n" + compiled.errors.map(function (e) { return ("- " + e); }).join('\n') + '\n', vm ); } } if (compiled.tips && compiled.tips.length) { if (options.outputSourceRange) { compiled.tips.forEach(function (e) { return tip(e.msg, vm); }); } else { compiled.tips.forEach(function (msg) { return tip(msg, vm); }); } } } // turn code into functions var res = {}; var fnGenErrors = []; res.render = createFunction(compiled.render, fnGenErrors); res.staticRenderFns = compiled.staticRenderFns.map(function (code) { return createFunction(code, fnGenErrors) }); // check function generation errors. // this should only happen if there is a bug in the compiler itself. // mostly for codegen development use /* istanbul ignore if */ { if ((!compiled.errors || !compiled.errors.length) && fnGenErrors.length) { warn$$1( "Failed to generate render function:\n\n" + fnGenErrors.map(function (ref) { var err = ref.err; var code = ref.code; return ((err.toString()) + " in\n\n" + code + "\n"); }).join('\n'), vm ); } } return (cache[key] = res) } } /* */ function createCompilerCreator (baseCompile) { return function createCompiler (baseOptions) { function compile ( template, options ) { var finalOptions = Object.create(baseOptions); var errors = []; var tips = []; var warn = function (msg, range, tip) { (tip ? tips : errors).push(msg); }; if (options) { if (options.outputSourceRange) { // $flow-disable-line var leadingSpaceLength = template.match(/^\s*/)[0].length; warn = function (msg, range, tip) { var data = { msg: msg }; if (range) { if (range.start != null) { data.start = range.start + leadingSpaceLength; } if (range.end != null) { data.end = range.end + leadingSpaceLength; } } (tip ? tips : errors).push(data); }; } // merge custom modules if (options.modules) { finalOptions.modules = (baseOptions.modules || []).concat(options.modules); } // merge custom directives if (options.directives) { finalOptions.directives = extend( Object.create(baseOptions.directives || null), options.directives ); } // copy other options for (var key in options) { if (key !== 'modules' && key !== 'directives') { finalOptions[key] = options[key]; } } } finalOptions.warn = warn; var compiled = baseCompile(template.trim(), finalOptions); { detectErrors(compiled.ast, warn); } compiled.errors = errors; compiled.tips = tips; return compiled } return { compile: compile, compileToFunctions: createCompileToFunctionFn(compile) } } } /* */ // `createCompilerCreator` allows creating compilers that use alternative // parser/optimizer/codegen, e.g the SSR optimizing compiler. // Here we just export a default compiler using the default parts. var createCompiler = createCompilerCreator(function baseCompile ( template, options ) { var ast = parse(template.trim(), options); if (options.optimize !== false) { optimize(ast, options); } var code = generate(ast, options); return { ast: ast, render: code.render, staticRenderFns: code.staticRenderFns } }); /* */ var ref$1 = createCompiler(baseOptions); var compileToFunctions = ref$1.compileToFunctions; /* */ // check whether current browser encodes a char inside attribute values var div; function getShouldDecode (href) { div = div || document.createElement('div'); div.innerHTML = href ? "<a href=\"\n\"/>" : "<div a=\"\n\"/>"; return div.innerHTML.indexOf(' ') > 0 } // #3663: IE encodes newlines inside attribute values while other browsers don't var shouldDecodeNewlines = inBrowser ? getShouldDecode(false) : false; // #6828: chrome encodes content in a[href] var shouldDecodeNewlinesForHref = inBrowser ? getShouldDecode(true) : false; /* */ var idToTemplate = cached(function (id) { var el = query(id); return el && el.innerHTML }); var mount = Vue.prototype.$mount; Vue.prototype.$mount = function ( el, hydrating ) { el = el && query(el); /* istanbul ignore if */ if (el === document.body || el === document.documentElement) { warn( "Do not mount Vue to <html> or <body> - mount to normal elements instead." ); return this } var options = this.$options; // resolve template/el and convert to render function if (!options.render) { var template = options.template; if (template) { if (typeof template === 'string') { if (template.charAt(0) === '#') { template = idToTemplate(template); /* istanbul ignore if */ if (!template) { warn( ("Template element not found or is empty: " + (options.template)), this ); } } } else if (template.nodeType) { template = template.innerHTML; } else { { warn('invalid template option:' + template, this); } return this } } else if (el) { template = getOuterHTML(el); } if (template) { /* istanbul ignore if */ if (config.performance && mark) { mark('compile'); } var ref = compileToFunctions(template, { outputSourceRange: "development" !== 'production', shouldDecodeNewlines: shouldDecodeNewlines, shouldDecodeNewlinesForHref: shouldDecodeNewlinesForHref, delimiters: options.delimiters, comments: options.comments }, this); var render = ref.render; var staticRenderFns = ref.staticRenderFns; options.render = render; options.staticRenderFns = staticRenderFns; /* istanbul ignore if */ if (config.performance && mark) { mark('compile end'); measure(("vue " + (this._name) + " compile"), 'compile', 'compile end'); } } } return mount.call(this, el, hydrating) }; /** * Get outerHTML of elements, taking care * of SVG elements in IE as well. */ function getOuterHTML (el) { if (el.outerHTML) { return el.outerHTML } else { var container = document.createElement('div'); container.appendChild(el.cloneNode(true)); return container.innerHTML } } Vue.compile = compileToFunctions; return Vue; })); }); var Vue = unwrapExports(vue); var vue2Collapse = createCommonjsModule(function (module, exports) { !function(t,e){module.exports=e();}("undefined"!=typeof self?self:commonjsGlobal,function(){return function(t){function e(s){if(n[s])return n[s].exports;var o=n[s]={i:s,l:!1,exports:{}};return t[s].call(o.exports,o,o.exports,e),o.l=!0,o.exports}var n={};return e.m=t,e.c=n,e.d=function(t,n,s){e.o(t,n)||Object.defineProperty(t,n,{configurable:!1,enumerable:!0,get:s});},e.n=function(t){var n=t&&t.__esModule?function(){return t.default}:function(){return t};return e.d(n,"a",n),n},e.o=function(t,e){return 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this.isTrackingValues&&(t=this.$data._value),t?[].concat(t):[]},optionList:function(){return this.options.concat(this.pushTags?this.pushedTags:[])},searchEl:function(){return this.$scopedSlots.search?this.$refs.selectedOptions.querySelector(this.searchInputQuerySelector):this.$refs.search},scope:function(){var t=this,e={search:this.search,loading:this.loading,searching:this.searching,filteredOptions:this.filteredOptions};return {search:{attributes:m({disabled:this.disabled,placeholder:this.searchPlaceholder,tabindex:this.tabindex,readonly:!this.searchable,id:this.inputId,"aria-autocomplete":"list","aria-labelledby":"vs".concat(this.uid,"__combobox"),"aria-controls":"vs".concat(this.uid,"__listbox"),ref:"search",type:"search",autocomplete:this.autocomplete,value:this.search},this.dropdownOpen&&this.filteredOptions[this.typeAheadPointer]?{"aria-activedescendant":"vs".concat(this.uid,"__option-").concat(this.typeAheadPointer)}:{}),events:{compositionstart:function(){return t.isComposing=!0},compositionend:function(){return t.isComposing=!1},keydown:this.onSearchKeyDown,blur:this.onSearchBlur,focus:this.onSearchFocus,input:function(e){return t.search=e.target.value}}},spinner:{loading:this.mutableLoading},noOptions:{search:this.search,loading:this.loading,searching:this.searching},openIndicator:{attributes:{ref:"openIndicator",role:"presentation",class:"vs__open-indicator"}},listHeader:e,listFooter:e,header:m({},e,{deselect:this.deselect}),footer:m({},e,{deselect:this.deselect})}},childComponents:function(){return m({},d,{},this.components)},stateClasses:function(){return {"vs--open":this.dropdownOpen,"vs--single":!this.multiple,"vs--searching":this.searching&&!this.noDrop,"vs--searchable":this.searchable&&!this.noDrop,"vs--unsearchable":!this.searchable,"vs--loading":this.mutableLoading,"vs--disabled":this.disabled}},searching:function(){return !!this.search},dropdownOpen:function(){return !this.noDrop&&(this.open&&!this.mutableLoading)},searchPlaceholder:function(){if(this.isValueEmpty&&this.placeholder)return this.placeholder},filteredOptions:function(){var t=[].concat(this.optionList);if(!this.filterable&&!this.taggable)return t;var e=this.search.length?this.filter(t,this.search,this):t;if(this.taggable&&this.search.length){var n=this.createOption(this.search);this.optionExists(n)||e.unshift(n);}return e},isValueEmpty:function(){return 0===this.selectedValue.length},showClearButton:function(){return !this.multiple&&this.clearable&&!this.open&&!this.isValueEmpty}}},O=(n(7),h(_,(function(){var t=this,e=t.$createElement,n=t._self._c||e;return n("div",{staticClass:"v-select",class:t.stateClasses,attrs:{dir:t.dir}},[t._t("header",null,null,t.scope.header),t._v(" "),n("div",{ref:"toggle",staticClass:"vs__dropdown-toggle",attrs:{id:"vs"+t.uid+"__combobox",role:"combobox","aria-expanded":t.dropdownOpen.toString(),"aria-owns":"vs"+t.uid+"__listbox","aria-label":"Search for option"},on:{mousedown:function(e){return t.toggleDropdown(e)}}},[n("div",{ref:"selectedOptions",staticClass:"vs__selected-options"},[t._l(t.selectedValue,(function(e){return t._t("selected-option-container",[n("span",{key:t.getOptionKey(e),staticClass:"vs__selected"},[t._t("selected-option",[t._v("\n "+t._s(t.getOptionLabel(e))+"\n ")],null,t.normalizeOptionForSlot(e)),t._v(" "),t.multiple?n("button",{ref:"deselectButtons",refInFor:!0,staticClass:"vs__deselect",attrs:{disabled:t.disabled,type:"button",title:"Deselect "+t.getOptionLabel(e),"aria-label":"Deselect "+t.getOptionLabel(e)},on:{click:function(n){return t.deselect(e)}}},[n(t.childComponents.Deselect,{tag:"component"})],1):t._e()],2)],{option:t.normalizeOptionForSlot(e),deselect:t.deselect,multiple:t.multiple,disabled:t.disabled})})),t._v(" "),t._t("search",[n("input",t._g(t._b({staticClass:"vs__search"},"input",t.scope.search.attributes,!1),t.scope.search.events))],null,t.scope.search)],2),t._v(" "),n("div",{ref:"actions",staticClass:"vs__actions"},[n("button",{directives:[{name:"show",rawName:"v-show",value:t.showClearButton,expression:"showClearButton"}],ref:"clearButton",staticClass:"vs__clear",attrs:{disabled:t.disabled,type:"button",title:"Clear Selected","aria-label":"Clear Selected"},on:{click:t.clearSelection}},[n(t.childComponents.Deselect,{tag:"component"})],1),t._v(" "),t._t("open-indicator",[t.noDrop?t._e():n(t.childComponents.OpenIndicator,t._b({tag:"component"},"component",t.scope.openIndicator.attributes,!1))],null,t.scope.openIndicator),t._v(" "),t._t("spinner",[n("div",{directives:[{name:"show",rawName:"v-show",value:t.mutableLoading,expression:"mutableLoading"}],staticClass:"vs__spinner"},[t._v("Loading...")])],null,t.scope.spinner)],2)]),t._v(" "),n("transition",{attrs:{name:t.transition}},[t.dropdownOpen?n("ul",{directives:[{name:"append-to-body",rawName:"v-append-to-body"}],key:"vs"+t.uid+"__listbox",ref:"dropdownMenu",staticClass:"vs__dropdown-menu",attrs:{id:"vs"+t.uid+"__listbox",role:"listbox",tabindex:"-1"},on:{mousedown:function(e){return e.preventDefault(),t.onMousedown(e)},mouseup:t.onMouseUp}},[t._t("list-header",null,null,t.scope.listHeader),t._v(" "),t._l(t.filteredOptions,(function(e,o){return n("li",{key:t.getOptionKey(e),staticClass:"vs__dropdown-option",class:{"vs__dropdown-option--selected":t.isOptionSelected(e),"vs__dropdown-option--highlight":o===t.typeAheadPointer,"vs__dropdown-option--disabled":!t.selectable(e)},attrs:{role:"option",id:"vs"+t.uid+"__option-"+o,"aria-selected":o===t.typeAheadPointer||null},on:{mouseover:function(n){t.selectable(e)&&(t.typeAheadPointer=o);},mousedown:function(n){n.preventDefault(),n.stopPropagation(),t.selectable(e)&&t.select(e);}}},[t._t("option",[t._v("\n "+t._s(t.getOptionLabel(e))+"\n ")],null,t.normalizeOptionForSlot(e))],2)})),t._v(" "),0===t.filteredOptions.length?n("li",{staticClass:"vs__no-options"},[t._t("no-options",[t._v("Sorry, no matching options.")],null,t.scope.noOptions)],2):t._e(),t._v(" "),t._t("list-footer",null,null,t.scope.listFooter)],2):n("ul",{staticStyle:{display:"none",visibility:"hidden"},attrs:{id:"vs"+t.uid+"__listbox",role:"listbox"}})]),t._v(" "),t._t("footer",null,null,t.scope.footer)],2)}),[],!1,null,null,null).exports),w={ajax:p,pointer:u,pointerScroll:c};n.d(e,"VueSelect",(function(){return O})),n.d(e,"mixins",(function(){return w}));e.default=O;}])})); }); var vSelect = unwrapExports(vueSelect); vueSelect.VueSelect; /**! * @fileOverview Kickass library to create and place poppers near their reference elements. * @version 1.16.1 * @license * Copyright (c) 2016 Federico Zivolo and contributors * * Permission is hereby granted, free of charge, to any person obtaining a copy * of this software and associated documentation files (the "Software"), to deal * in the Software without restriction, including without limitation the rights * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell * copies of the Software, and to permit persons to whom the Software is * furnished to do so, subject to the following conditions: * * The above copyright notice and this permission notice shall be included in all * copies or substantial portions of the Software. * * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE * SOFTWARE. */ var isBrowser = typeof window !== 'undefined' && typeof document !== 'undefined' && typeof navigator !== 'undefined'; var timeoutDuration = function () { var longerTimeoutBrowsers = ['Edge', 'Trident', 'Firefox']; for (var i = 0; i < longerTimeoutBrowsers.length; i += 1) { if (isBrowser && navigator.userAgent.indexOf(longerTimeoutBrowsers[i]) >= 0) { return 1; } } return 0; }(); function microtaskDebounce(fn) { var called = false; return function () { if (called) { return; } called = true; window.Promise.resolve().then(function () { called = false; fn(); }); }; } function taskDebounce(fn) { var scheduled = false; return function () { if (!scheduled) { scheduled = true; setTimeout(function () { scheduled = false; fn(); }, timeoutDuration); } }; } var supportsMicroTasks = isBrowser && window.Promise; /** * Create a debounced version of a method, that's asynchronously deferred * but called in the minimum time possible. * * @method * @memberof Popper.Utils * @argument {Function} fn * @returns {Function} */ var debounce = supportsMicroTasks ? microtaskDebounce : taskDebounce; /** * Check if the given variable is a function * @method * @memberof Popper.Utils * @argument {Any} functionToCheck - variable to check * @returns {Boolean} answer to: is a function? */ function isFunction$1(functionToCheck) { var getType = {}; return functionToCheck && getType.toString.call(functionToCheck) === '[object Function]'; } /** * Get CSS computed property of the given element * @method * @memberof Popper.Utils * @argument {Eement} element * @argument {String} property */ function getStyleComputedProperty(element, property) { if (element.nodeType !== 1) { return []; } // NOTE: 1 DOM access here var window = element.ownerDocument.defaultView; var css = window.getComputedStyle(element, null); return property ? css[property] : css; } /** * Returns the parentNode or the host of the element * @method * @memberof Popper.Utils * @argument {Element} element * @returns {Element} parent */ function getParentNode(element) { if (element.nodeName === 'HTML') { return element; } return element.parentNode || element.host; } /** * Returns the scrolling parent of the given element * @method * @memberof Popper.Utils * @argument {Element} element * @returns {Element} scroll parent */ function getScrollParent(element) { // Return body, `getScroll` will take care to get the correct `scrollTop` from it if (!element) { return document.body; } switch (element.nodeName) { case 'HTML': case 'BODY': return element.ownerDocument.body; case '#document': return element.body; } // Firefox want us to check `-x` and `-y` variations as well var _getStyleComputedProp = getStyleComputedProperty(element), overflow = _getStyleComputedProp.overflow, overflowX = _getStyleComputedProp.overflowX, overflowY = _getStyleComputedProp.overflowY; if (/(auto|scroll|overlay)/.test(overflow + overflowY + overflowX)) { return element; } return getScrollParent(getParentNode(element)); } /** * Returns the reference node of the reference object, or the reference object itself. * @method * @memberof Popper.Utils * @param {Element|Object} reference - the reference element (the popper will be relative to this) * @returns {Element} parent */ function getReferenceNode(reference) { return reference && reference.referenceNode ? reference.referenceNode : reference; } var isIE11 = isBrowser && !!(window.MSInputMethodContext && document.documentMode); var isIE10 = isBrowser && /MSIE 10/.test(navigator.userAgent); /** * Determines if the browser is Internet Explorer * @method * @memberof Popper.Utils * @param {Number} version to check * @returns {Boolean} isIE */ function isIE$1(version) { if (version === 11) { return isIE11; } if (version === 10) { return isIE10; } return isIE11 || isIE10; } /** * Returns the offset parent of the given element * @method * @memberof Popper.Utils * @argument {Element} element * @returns {Element} offset parent */ function getOffsetParent(element) { if (!element) { return document.documentElement; } var noOffsetParent = isIE$1(10) ? document.body : null; // NOTE: 1 DOM access here var offsetParent = element.offsetParent || null; // Skip hidden elements which don't have an offsetParent while (offsetParent === noOffsetParent && element.nextElementSibling) { offsetParent = (element = element.nextElementSibling).offsetParent; } var nodeName = offsetParent && offsetParent.nodeName; if (!nodeName || nodeName === 'BODY' || nodeName === 'HTML') { return element ? element.ownerDocument.documentElement : document.documentElement; } // .offsetParent will return the closest TH, TD or TABLE in case // no offsetParent is present, I hate this job... if (['TH', 'TD', 'TABLE'].indexOf(offsetParent.nodeName) !== -1 && getStyleComputedProperty(offsetParent, 'position') === 'static') { return getOffsetParent(offsetParent); } return offsetParent; } function isOffsetContainer(element) { var nodeName = element.nodeName; if (nodeName === 'BODY') { return false; } return nodeName === 'HTML' || getOffsetParent(element.firstElementChild) === element; } /** * Finds the root node (document, shadowDOM root) of the given element * @method * @memberof Popper.Utils * @argument {Element} node * @returns {Element} root node */ function getRoot(node) { if (node.parentNode !== null) { return getRoot(node.parentNode); } return node; } /** * Finds the offset parent common to the two provided nodes * @method * @memberof Popper.Utils * @argument {Element} element1 * @argument {Element} element2 * @returns {Element} common offset parent */ function findCommonOffsetParent(element1, element2) { // This check is needed to avoid errors in case one of the elements isn't defined for any reason if (!element1 || !element1.nodeType || !element2 || !element2.nodeType) { return document.documentElement; } // Here we make sure to give as "start" the element that comes first in the DOM var order = element1.compareDocumentPosition(element2) & Node.DOCUMENT_POSITION_FOLLOWING; var start = order ? element1 : element2; var end = order ? element2 : element1; // Get common ancestor container var range = document.createRange(); range.setStart(start, 0); range.setEnd(end, 0); var commonAncestorContainer = range.commonAncestorContainer; // Both nodes are inside #document if (element1 !== commonAncestorContainer && element2 !== commonAncestorContainer || start.contains(end)) { if (isOffsetContainer(commonAncestorContainer)) { return commonAncestorContainer; } return getOffsetParent(commonAncestorContainer); } // one of the nodes is inside shadowDOM, find which one var element1root = getRoot(element1); if (element1root.host) { return findCommonOffsetParent(element1root.host, element2); } else { return findCommonOffsetParent(element1, getRoot(element2).host); } } /** * Gets the scroll value of the given element in the given side (top and left) * @method * @memberof Popper.Utils * @argument {Element} element * @argument {String} side `top` or `left` * @returns {number} amount of scrolled pixels */ function getScroll(element) { var side = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : 'top'; var upperSide = side === 'top' ? 'scrollTop' : 'scrollLeft'; var nodeName = element.nodeName; if (nodeName === 'BODY' || nodeName === 'HTML') { var html = element.ownerDocument.documentElement; var scrollingElement = element.ownerDocument.scrollingElement || html; return scrollingElement[upperSide]; } return element[upperSide]; } /* * Sum or subtract the element scroll values (left and top) from a given rect object * @method * @memberof Popper.Utils * @param {Object} rect - Rect object you want to change * @param {HTMLElement} element - The element from the function reads the scroll values * @param {Boolean} subtract - set to true if you want to subtract the scroll values * @return {Object} rect - The modifier rect object */ function includeScroll(rect, element) { var subtract = arguments.length > 2 && arguments[2] !== undefined ? arguments[2] : false; var scrollTop = getScroll(element, 'top'); var scrollLeft = getScroll(element, 'left'); var modifier = subtract ? -1 : 1; rect.top += scrollTop * modifier; rect.bottom += scrollTop * modifier; rect.left += scrollLeft * modifier; rect.right += scrollLeft * modifier; return rect; } /* * Helper to detect borders of a given element * @method * @memberof Popper.Utils * @param {CSSStyleDeclaration} styles * Result of `getStyleComputedProperty` on the given element * @param {String} axis - `x` or `y` * @return {number} borders - The borders size of the given axis */ function getBordersSize(styles, axis) { var sideA = axis === 'x' ? 'Left' : 'Top'; var sideB = sideA === 'Left' ? 'Right' : 'Bottom'; return parseFloat(styles['border' + sideA + 'Width']) + parseFloat(styles['border' + sideB + 'Width']); } function getSize(axis, body, html, computedStyle) { return Math.max(body['offset' + axis], body['scroll' + axis], html['client' + axis], html['offset' + axis], html['scroll' + axis], isIE$1(10) ? parseInt(html['offset' + axis]) + parseInt(computedStyle['margin' + (axis === 'Height' ? 'Top' : 'Left')]) + parseInt(computedStyle['margin' + (axis === 'Height' ? 'Bottom' : 'Right')]) : 0); } function getWindowSizes(document) { var body = document.body; var html = document.documentElement; var computedStyle = isIE$1(10) && getComputedStyle(html); return { height: getSize('Height', body, html, computedStyle), width: getSize('Width', body, html, computedStyle) }; } var classCallCheck = function (instance, Constructor) { if (!(instance instanceof Constructor)) { throw new TypeError("Cannot call a class as a function"); } }; var createClass = function () { function defineProperties(target, props) { for (var i = 0; i < props.length; i++) { var descriptor = props[i]; descriptor.enumerable = descriptor.enumerable || false; descriptor.configurable = true; if ("value" in descriptor) descriptor.writable = true; Object.defineProperty(target, descriptor.key, descriptor); } } return function (Constructor, protoProps, staticProps) { if (protoProps) defineProperties(Constructor.prototype, protoProps); if (staticProps) defineProperties(Constructor, staticProps); return Constructor; }; }(); var defineProperty$1 = function (obj, key, value) { if (key in obj) { Object.defineProperty(obj, key, { value: value, enumerable: true, configurable: true, writable: true }); } else { obj[key] = value; } return obj; }; var _extends$1 = Object.assign || function (target) { for (var i = 1; i < arguments.length; i++) { var source = arguments[i]; for (var key in source) { if (Object.prototype.hasOwnProperty.call(source, key)) { target[key] = source[key]; } } } return target; }; /** * Given element offsets, generate an output similar to getBoundingClientRect * @method * @memberof Popper.Utils * @argument {Object} offsets * @returns {Object} ClientRect like output */ function getClientRect(offsets) { return _extends$1({}, offsets, { right: offsets.left + offsets.width, bottom: offsets.top + offsets.height }); } /** * Get bounding client rect of given element * @method * @memberof Popper.Utils * @param {HTMLElement} element * @return {Object} client rect */ function getBoundingClientRect(element) { var rect = {}; // IE10 10 FIX: Please, don't ask, the element isn't // considered in DOM in some circumstances... // This isn't reproducible in IE10 compatibility mode of IE11 try { if (isIE$1(10)) { rect = element.getBoundingClientRect(); var scrollTop = getScroll(element, 'top'); var scrollLeft = getScroll(element, 'left'); rect.top += scrollTop; rect.left += scrollLeft; rect.bottom += scrollTop; rect.right += scrollLeft; } else { rect = element.getBoundingClientRect(); } } catch (e) {} var result = { left: rect.left, top: rect.top, width: rect.right - rect.left, height: rect.bottom - rect.top }; // subtract scrollbar size from sizes var sizes = element.nodeName === 'HTML' ? getWindowSizes(element.ownerDocument) : {}; var width = sizes.width || element.clientWidth || result.width; var height = sizes.height || element.clientHeight || result.height; var horizScrollbar = element.offsetWidth - width; var vertScrollbar = element.offsetHeight - height; // if an hypothetical scrollbar is detected, we must be sure it's not a `border` // we make this check conditional for performance reasons if (horizScrollbar || vertScrollbar) { var styles = getStyleComputedProperty(element); horizScrollbar -= getBordersSize(styles, 'x'); vertScrollbar -= getBordersSize(styles, 'y'); result.width -= horizScrollbar; result.height -= vertScrollbar; } return getClientRect(result); } function getOffsetRectRelativeToArbitraryNode(children, parent) { var fixedPosition = arguments.length > 2 && arguments[2] !== undefined ? arguments[2] : false; var isIE10 = isIE$1(10); var isHTML = parent.nodeName === 'HTML'; var childrenRect = getBoundingClientRect(children); var parentRect = getBoundingClientRect(parent); var scrollParent = getScrollParent(children); var styles = getStyleComputedProperty(parent); var borderTopWidth = parseFloat(styles.borderTopWidth); var borderLeftWidth = parseFloat(styles.borderLeftWidth); // In cases where the parent is fixed, we must ignore negative scroll in offset calc if (fixedPosition && isHTML) { parentRect.top = Math.max(parentRect.top, 0); parentRect.left = Math.max(parentRect.left, 0); } var offsets = getClientRect({ top: childrenRect.top - parentRect.top - borderTopWidth, left: childrenRect.left - parentRect.left - borderLeftWidth, width: childrenRect.width, height: childrenRect.height }); offsets.marginTop = 0; offsets.marginLeft = 0; // Subtract margins of documentElement in case it's being used as parent // we do this only on HTML because it's the only element that behaves // differently when margins are applied to it. The margins are included in // the box of the documentElement, in the other cases not. if (!isIE10 && isHTML) { var marginTop = parseFloat(styles.marginTop); var marginLeft = parseFloat(styles.marginLeft); offsets.top -= borderTopWidth - marginTop; offsets.bottom -= borderTopWidth - marginTop; offsets.left -= borderLeftWidth - marginLeft; offsets.right -= borderLeftWidth - marginLeft; // Attach marginTop and marginLeft because in some circumstances we may need them offsets.marginTop = marginTop; offsets.marginLeft = marginLeft; } if (isIE10 && !fixedPosition ? parent.contains(scrollParent) : parent === scrollParent && scrollParent.nodeName !== 'BODY') { offsets = includeScroll(offsets, parent); } return offsets; } function getViewportOffsetRectRelativeToArtbitraryNode(element) { var excludeScroll = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : false; var html = element.ownerDocument.documentElement; var relativeOffset = getOffsetRectRelativeToArbitraryNode(element, html); var width = Math.max(html.clientWidth, window.innerWidth || 0); var height = Math.max(html.clientHeight, window.innerHeight || 0); var scrollTop = !excludeScroll ? getScroll(html) : 0; var scrollLeft = !excludeScroll ? getScroll(html, 'left') : 0; var offset = { top: scrollTop - relativeOffset.top + relativeOffset.marginTop, left: scrollLeft - relativeOffset.left + relativeOffset.marginLeft, width: width, height: height }; return getClientRect(offset); } /** * Check if the given element is fixed or is inside a fixed parent * @method * @memberof Popper.Utils * @argument {Element} element * @argument {Element} customContainer * @returns {Boolean} answer to "isFixed?" */ function isFixed(element) { var nodeName = element.nodeName; if (nodeName === 'BODY' || nodeName === 'HTML') { return false; } if (getStyleComputedProperty(element, 'position') === 'fixed') { return true; } var parentNode = getParentNode(element); if (!parentNode) { return false; } return isFixed(parentNode); } /** * Finds the first parent of an element that has a transformed property defined * @method * @memberof Popper.Utils * @argument {Element} element * @returns {Element} first transformed parent or documentElement */ function getFixedPositionOffsetParent(element) { // This check is needed to avoid errors in case one of the elements isn't defined for any reason if (!element || !element.parentElement || isIE$1()) { return document.documentElement; } var el = element.parentElement; while (el && getStyleComputedProperty(el, 'transform') === 'none') { el = el.parentElement; } return el || document.documentElement; } /** * Computed the boundaries limits and return them * @method * @memberof Popper.Utils * @param {HTMLElement} popper * @param {HTMLElement} reference * @param {number} padding * @param {HTMLElement} boundariesElement - Element used to define the boundaries * @param {Boolean} fixedPosition - Is in fixed position mode * @returns {Object} Coordinates of the boundaries */ function getBoundaries(popper, reference, padding, boundariesElement) { var fixedPosition = arguments.length > 4 && arguments[4] !== undefined ? arguments[4] : false; // NOTE: 1 DOM access here var boundaries = { top: 0, left: 0 }; var offsetParent = fixedPosition ? getFixedPositionOffsetParent(popper) : findCommonOffsetParent(popper, getReferenceNode(reference)); // Handle viewport case if (boundariesElement === 'viewport') { boundaries = getViewportOffsetRectRelativeToArtbitraryNode(offsetParent, fixedPosition); } else { // Handle other cases based on DOM element used as boundaries var boundariesNode = void 0; if (boundariesElement === 'scrollParent') { boundariesNode = getScrollParent(getParentNode(reference)); if (boundariesNode.nodeName === 'BODY') { boundariesNode = popper.ownerDocument.documentElement; } } else if (boundariesElement === 'window') { boundariesNode = popper.ownerDocument.documentElement; } else { boundariesNode = boundariesElement; } var offsets = getOffsetRectRelativeToArbitraryNode(boundariesNode, offsetParent, fixedPosition); // In case of HTML, we need a different computation if (boundariesNode.nodeName === 'HTML' && !isFixed(offsetParent)) { var _getWindowSizes = getWindowSizes(popper.ownerDocument), height = _getWindowSizes.height, width = _getWindowSizes.width; boundaries.top += offsets.top - offsets.marginTop; boundaries.bottom = height + offsets.top; boundaries.left += offsets.left - offsets.marginLeft; boundaries.right = width + offsets.left; } else { // for all the other DOM elements, this one is good boundaries = offsets; } } // Add paddings padding = padding || 0; var isPaddingNumber = typeof padding === 'number'; boundaries.left += isPaddingNumber ? padding : padding.left || 0; boundaries.top += isPaddingNumber ? padding : padding.top || 0; boundaries.right -= isPaddingNumber ? padding : padding.right || 0; boundaries.bottom -= isPaddingNumber ? padding : padding.bottom || 0; return boundaries; } function getArea(_ref) { var width = _ref.width, height = _ref.height; return width * height; } /** * Utility used to transform the `auto` placement to the placement with more * available space. * @method * @memberof Popper.Utils * @argument {Object} data - The data object generated by update method * @argument {Object} options - Modifiers configuration and options * @returns {Object} The data object, properly modified */ function computeAutoPlacement(placement, refRect, popper, reference, boundariesElement) { var padding = arguments.length > 5 && arguments[5] !== undefined ? arguments[5] : 0; if (placement.indexOf('auto') === -1) { return placement; } var boundaries = getBoundaries(popper, reference, padding, boundariesElement); var rects = { top: { width: boundaries.width, height: refRect.top - boundaries.top }, right: { width: boundaries.right - refRect.right, height: boundaries.height }, bottom: { width: boundaries.width, height: boundaries.bottom - refRect.bottom }, left: { width: refRect.left - boundaries.left, height: boundaries.height } }; var sortedAreas = Object.keys(rects).map(function (key) { return _extends$1({ key: key }, rects[key], { area: getArea(rects[key]) }); }).sort(function (a, b) { return b.area - a.area; }); var filteredAreas = sortedAreas.filter(function (_ref2) { var width = _ref2.width, height = _ref2.height; return width >= popper.clientWidth && height >= popper.clientHeight; }); var computedPlacement = filteredAreas.length > 0 ? filteredAreas[0].key : sortedAreas[0].key; var variation = placement.split('-')[1]; return computedPlacement + (variation ? '-' + variation : ''); } /** * Get offsets to the reference element * @method * @memberof Popper.Utils * @param {Object} state * @param {Element} popper - the popper element * @param {Element} reference - the reference element (the popper will be relative to this) * @param {Element} fixedPosition - is in fixed position mode * @returns {Object} An object containing the offsets which will be applied to the popper */ function getReferenceOffsets(state, popper, reference) { var fixedPosition = arguments.length > 3 && arguments[3] !== undefined ? arguments[3] : null; var commonOffsetParent = fixedPosition ? getFixedPositionOffsetParent(popper) : findCommonOffsetParent(popper, getReferenceNode(reference)); return getOffsetRectRelativeToArbitraryNode(reference, commonOffsetParent, fixedPosition); } /** * Get the outer sizes of the given element (offset size + margins) * @method * @memberof Popper.Utils * @argument {Element} element * @returns {Object} object containing width and height properties */ function getOuterSizes(element) { var window = element.ownerDocument.defaultView; var styles = window.getComputedStyle(element); var x = parseFloat(styles.marginTop || 0) + parseFloat(styles.marginBottom || 0); var y = parseFloat(styles.marginLeft || 0) + parseFloat(styles.marginRight || 0); var result = { width: element.offsetWidth + y, height: element.offsetHeight + x }; return result; } /** * Get the opposite placement of the given one * @method * @memberof Popper.Utils * @argument {String} placement * @returns {String} flipped placement */ function getOppositePlacement(placement) { var hash = { left: 'right', right: 'left', bottom: 'top', top: 'bottom' }; return placement.replace(/left|right|bottom|top/g, function (matched) { return hash[matched]; }); } /** * Get offsets to the popper * @method * @memberof Popper.Utils * @param {Object} position - CSS position the Popper will get applied * @param {HTMLElement} popper - the popper element * @param {Object} referenceOffsets - the reference offsets (the popper will be relative to this) * @param {String} placement - one of the valid placement options * @returns {Object} popperOffsets - An object containing the offsets which will be applied to the popper */ function getPopperOffsets(popper, referenceOffsets, placement) { placement = placement.split('-')[0]; // Get popper node sizes var popperRect = getOuterSizes(popper); // Add position, width and height to our offsets object var popperOffsets = { width: popperRect.width, height: popperRect.height }; // depending by the popper placement we have to compute its offsets slightly differently var isHoriz = ['right', 'left'].indexOf(placement) !== -1; var mainSide = isHoriz ? 'top' : 'left'; var secondarySide = isHoriz ? 'left' : 'top'; var measurement = isHoriz ? 'height' : 'width'; var secondaryMeasurement = !isHoriz ? 'height' : 'width'; popperOffsets[mainSide] = referenceOffsets[mainSide] + referenceOffsets[measurement] / 2 - popperRect[measurement] / 2; if (placement === secondarySide) { popperOffsets[secondarySide] = referenceOffsets[secondarySide] - popperRect[secondaryMeasurement]; } else { popperOffsets[secondarySide] = referenceOffsets[getOppositePlacement(secondarySide)]; } return popperOffsets; } /** * Mimics the `find` method of Array * @method * @memberof Popper.Utils * @argument {Array} arr * @argument prop * @argument value * @returns index or -1 */ function find$1(arr, check) { // use native find if supported if (Array.prototype.find) { return arr.find(check); } // use `filter` to obtain the same behavior of `find` return arr.filter(check)[0]; } /** * Return the index of the matching object * @method * @memberof Popper.Utils * @argument {Array} arr * @argument prop * @argument value * @returns index or -1 */ function findIndex(arr, prop, value) { // use native findIndex if supported if (Array.prototype.findIndex) { return arr.findIndex(function (cur) { return cur[prop] === value; }); } // use `find` + `indexOf` if `findIndex` isn't supported var match = find$1(arr, function (obj) { return obj[prop] === value; }); return arr.indexOf(match); } /** * Loop trough the list of modifiers and run them in order, * each of them will then edit the data object. * @method * @memberof Popper.Utils * @param {dataObject} data * @param {Array} modifiers * @param {String} ends - Optional modifier name used as stopper * @returns {dataObject} */ function runModifiers(modifiers, data, ends) { var modifiersToRun = ends === undefined ? modifiers : modifiers.slice(0, findIndex(modifiers, 'name', ends)); modifiersToRun.forEach(function (modifier) { if (modifier['function']) { // eslint-disable-line dot-notation console.warn('`modifier.function` is deprecated, use `modifier.fn`!'); } var fn = modifier['function'] || modifier.fn; // eslint-disable-line dot-notation if (modifier.enabled && isFunction$1(fn)) { // Add properties to offsets to make them a complete clientRect object // we do this before each modifier to make sure the previous one doesn't // mess with these values data.offsets.popper = getClientRect(data.offsets.popper); data.offsets.reference = getClientRect(data.offsets.reference); data = fn(data, modifier); } }); return data; } /** * Updates the position of the popper, computing the new offsets and applying * the new style.<br /> * Prefer `scheduleUpdate` over `update` because of performance reasons. * @method * @memberof Popper */ function update() { // if popper is destroyed, don't perform any further update if (this.state.isDestroyed) { return; } var data = { instance: this, styles: {}, arrowStyles: {}, attributes: {}, flipped: false, offsets: {} }; // compute reference element offsets data.offsets.reference = getReferenceOffsets(this.state, this.popper, this.reference, this.options.positionFixed); // compute auto placement, store placement inside the data object, // modifiers will be able to edit `placement` if needed // and refer to originalPlacement to know the original value data.placement = computeAutoPlacement(this.options.placement, data.offsets.reference, this.popper, this.reference, this.options.modifiers.flip.boundariesElement, this.options.modifiers.flip.padding); // store the computed placement inside `originalPlacement` data.originalPlacement = data.placement; data.positionFixed = this.options.positionFixed; // compute the popper offsets data.offsets.popper = getPopperOffsets(this.popper, data.offsets.reference, data.placement); data.offsets.popper.position = this.options.positionFixed ? 'fixed' : 'absolute'; // run the modifiers data = runModifiers(this.modifiers, data); // the first `update` will call `onCreate` callback // the other ones will call `onUpdate` callback if (!this.state.isCreated) { this.state.isCreated = true; this.options.onCreate(data); } else { this.options.onUpdate(data); } } /** * Helper used to know if the given modifier is enabled. * @method * @memberof Popper.Utils * @returns {Boolean} */ function isModifierEnabled(modifiers, modifierName) { return modifiers.some(function (_ref) { var name = _ref.name, enabled = _ref.enabled; return enabled && name === modifierName; }); } /** * Get the prefixed supported property name * @method * @memberof Popper.Utils * @argument {String} property (camelCase) * @returns {String} prefixed property (camelCase or PascalCase, depending on the vendor prefix) */ function getSupportedPropertyName(property) { var prefixes = [false, 'ms', 'Webkit', 'Moz', 'O']; var upperProp = property.charAt(0).toUpperCase() + property.slice(1); for (var i = 0; i < prefixes.length; i++) { var prefix = prefixes[i]; var toCheck = prefix ? '' + prefix + upperProp : property; if (typeof document.body.style[toCheck] !== 'undefined') { return toCheck; } } return null; } /** * Destroys the popper. * @method * @memberof Popper */ function destroy() { this.state.isDestroyed = true; // touch DOM only if `applyStyle` modifier is enabled if (isModifierEnabled(this.modifiers, 'applyStyle')) { this.popper.removeAttribute('x-placement'); this.popper.style.position = ''; this.popper.style.top = ''; this.popper.style.left = ''; this.popper.style.right = ''; this.popper.style.bottom = ''; this.popper.style.willChange = ''; this.popper.style[getSupportedPropertyName('transform')] = ''; } this.disableEventListeners(); // remove the popper if user explicitly asked for the deletion on destroy // do not use `remove` because IE11 doesn't support it if (this.options.removeOnDestroy) { this.popper.parentNode.removeChild(this.popper); } return this; } /** * Get the window associated with the element * @argument {Element} element * @returns {Window} */ function getWindow(element) { var ownerDocument = element.ownerDocument; return ownerDocument ? ownerDocument.defaultView : window; } function attachToScrollParents(scrollParent, event, callback, scrollParents) { var isBody = scrollParent.nodeName === 'BODY'; var target = isBody ? scrollParent.ownerDocument.defaultView : scrollParent; target.addEventListener(event, callback, { passive: true }); if (!isBody) { attachToScrollParents(getScrollParent(target.parentNode), event, callback, scrollParents); } scrollParents.push(target); } /** * Setup needed event listeners used to update the popper position * @method * @memberof Popper.Utils * @private */ function setupEventListeners(reference, options, state, updateBound) { // Resize event listener on window state.updateBound = updateBound; getWindow(reference).addEventListener('resize', state.updateBound, { passive: true }); // Scroll event listener on scroll parents var scrollElement = getScrollParent(reference); attachToScrollParents(scrollElement, 'scroll', state.updateBound, state.scrollParents); state.scrollElement = scrollElement; state.eventsEnabled = true; return state; } /** * It will add resize/scroll events and start recalculating * position of the popper element when they are triggered. * @method * @memberof Popper */ function enableEventListeners() { if (!this.state.eventsEnabled) { this.state = setupEventListeners(this.reference, this.options, this.state, this.scheduleUpdate); } } /** * Remove event listeners used to update the popper position * @method * @memberof Popper.Utils * @private */ function removeEventListeners(reference, state) { // Remove resize event listener on window getWindow(reference).removeEventListener('resize', state.updateBound); // Remove scroll event listener on scroll parents state.scrollParents.forEach(function (target) { target.removeEventListener('scroll', state.updateBound); }); // Reset state state.updateBound = null; state.scrollParents = []; state.scrollElement = null; state.eventsEnabled = false; return state; } /** * It will remove resize/scroll events and won't recalculate popper position * when they are triggered. It also won't trigger `onUpdate` callback anymore, * unless you call `update` method manually. * @method * @memberof Popper */ function disableEventListeners() { if (this.state.eventsEnabled) { cancelAnimationFrame(this.scheduleUpdate); this.state = removeEventListeners(this.reference, this.state); } } /** * Tells if a given input is a number * @method * @memberof Popper.Utils * @param {*} input to check * @return {Boolean} */ function isNumeric(n) { return n !== '' && !isNaN(parseFloat(n)) && isFinite(n); } /** * Set the style to the given popper * @method * @memberof Popper.Utils * @argument {Element} element - Element to apply the style to * @argument {Object} styles * Object with a list of properties and values which will be applied to the element */ function setStyles(element, styles) { Object.keys(styles).forEach(function (prop) { var unit = ''; // add unit if the value is numeric and is one of the following if (['width', 'height', 'top', 'right', 'bottom', 'left'].indexOf(prop) !== -1 && isNumeric(styles[prop])) { unit = 'px'; } element.style[prop] = styles[prop] + unit; }); } /** * Set the attributes to the given popper * @method * @memberof Popper.Utils * @argument {Element} element - Element to apply the attributes to * @argument {Object} styles * Object with a list of properties and values which will be applied to the element */ function setAttributes(element, attributes) { Object.keys(attributes).forEach(function (prop) { var value = attributes[prop]; if (value !== false) { element.setAttribute(prop, attributes[prop]); } else { element.removeAttribute(prop); } }); } /** * @function * @memberof Modifiers * @argument {Object} data - The data object generated by `update` method * @argument {Object} data.styles - List of style properties - values to apply to popper element * @argument {Object} data.attributes - List of attribute properties - values to apply to popper element * @argument {Object} options - Modifiers configuration and options * @returns {Object} The same data object */ function applyStyle(data) { // any property present in `data.styles` will be applied to the popper, // in this way we can make the 3rd party modifiers add custom styles to it // Be aware, modifiers could override the properties defined in the previous // lines of this modifier! setStyles(data.instance.popper, data.styles); // any property present in `data.attributes` will be applied to the popper, // they will be set as HTML attributes of the element setAttributes(data.instance.popper, data.attributes); // if arrowElement is defined and arrowStyles has some properties if (data.arrowElement && Object.keys(data.arrowStyles).length) { setStyles(data.arrowElement, data.arrowStyles); } return data; } /** * Set the x-placement attribute before everything else because it could be used * to add margins to the popper margins needs to be calculated to get the * correct popper offsets. * @method * @memberof Popper.modifiers * @param {HTMLElement} reference - The reference element used to position the popper * @param {HTMLElement} popper - The HTML element used as popper * @param {Object} options - Popper.js options */ function applyStyleOnLoad(reference, popper, options, modifierOptions, state) { // compute reference element offsets var referenceOffsets = getReferenceOffsets(state, popper, reference, options.positionFixed); // compute auto placement, store placement inside the data object, // modifiers will be able to edit `placement` if needed // and refer to originalPlacement to know the original value var placement = computeAutoPlacement(options.placement, referenceOffsets, popper, reference, options.modifiers.flip.boundariesElement, options.modifiers.flip.padding); popper.setAttribute('x-placement', placement); // Apply `position` to popper before anything else because // without the position applied we can't guarantee correct computations setStyles(popper, { position: options.positionFixed ? 'fixed' : 'absolute' }); return options; } /** * @function * @memberof Popper.Utils * @argument {Object} data - The data object generated by `update` method * @argument {Boolean} shouldRound - If the offsets should be rounded at all * @returns {Object} The popper's position offsets rounded * * The tale of pixel-perfect positioning. It's still not 100% perfect, but as * good as it can be within reason. * Discussion here: https://github.com/FezVrasta/popper.js/pull/715 * * Low DPI screens cause a popper to be blurry if not using full pixels (Safari * as well on High DPI screens). * * Firefox prefers no rounding for positioning and does not have blurriness on * high DPI screens. * * Only horizontal placement and left/right values need to be considered. */ function getRoundedOffsets(data, shouldRound) { var _data$offsets = data.offsets, popper = _data$offsets.popper, reference = _data$offsets.reference; var round = Math.round, floor = Math.floor; var noRound = function noRound(v) { return v; }; var referenceWidth = round(reference.width); var popperWidth = round(popper.width); var isVertical = ['left', 'right'].indexOf(data.placement) !== -1; var isVariation = data.placement.indexOf('-') !== -1; var sameWidthParity = referenceWidth % 2 === popperWidth % 2; var bothOddWidth = referenceWidth % 2 === 1 && popperWidth % 2 === 1; var horizontalToInteger = !shouldRound ? noRound : isVertical || isVariation || sameWidthParity ? round : floor; var verticalToInteger = !shouldRound ? noRound : round; return { left: horizontalToInteger(bothOddWidth && !isVariation && shouldRound ? popper.left - 1 : popper.left), top: verticalToInteger(popper.top), bottom: verticalToInteger(popper.bottom), right: horizontalToInteger(popper.right) }; } var isFirefox = isBrowser && /Firefox/i.test(navigator.userAgent); /** * @function * @memberof Modifiers * @argument {Object} data - The data object generated by `update` method * @argument {Object} options - Modifiers configuration and options * @returns {Object} The data object, properly modified */ function computeStyle(data, options) { var x = options.x, y = options.y; var popper = data.offsets.popper; // Remove this legacy support in Popper.js v2 var legacyGpuAccelerationOption = find$1(data.instance.modifiers, function (modifier) { return modifier.name === 'applyStyle'; }).gpuAcceleration; if (legacyGpuAccelerationOption !== undefined) { console.warn('WARNING: `gpuAcceleration` option moved to `computeStyle` modifier and will not be supported in future versions of Popper.js!'); } var gpuAcceleration = legacyGpuAccelerationOption !== undefined ? legacyGpuAccelerationOption : options.gpuAcceleration; var offsetParent = getOffsetParent(data.instance.popper); var offsetParentRect = getBoundingClientRect(offsetParent); // Styles var styles = { position: popper.position }; var offsets = getRoundedOffsets(data, window.devicePixelRatio < 2 || !isFirefox); var sideA = x === 'bottom' ? 'top' : 'bottom'; var sideB = y === 'right' ? 'left' : 'right'; // if gpuAcceleration is set to `true` and transform is supported, // we use `translate3d` to apply the position to the popper we // automatically use the supported prefixed version if needed var prefixedProperty = getSupportedPropertyName('transform'); // now, let's make a step back and look at this code closely (wtf?) // If the content of the popper grows once it's been positioned, it // may happen that the popper gets misplaced because of the new content // overflowing its reference element // To avoid this problem, we provide two options (x and y), which allow // the consumer to define the offset origin. // If we position a popper on top of a reference element, we can set // `x` to `top` to make the popper grow towards its top instead of // its bottom. var left = void 0, top = void 0; if (sideA === 'bottom') { // when offsetParent is <html> the positioning is relative to the bottom of the screen (excluding the scrollbar) // and not the bottom of the html element if (offsetParent.nodeName === 'HTML') { top = -offsetParent.clientHeight + offsets.bottom; } else { top = -offsetParentRect.height + offsets.bottom; } } else { top = offsets.top; } if (sideB === 'right') { if (offsetParent.nodeName === 'HTML') { left = -offsetParent.clientWidth + offsets.right; } else { left = -offsetParentRect.width + offsets.right; } } else { left = offsets.left; } if (gpuAcceleration && prefixedProperty) { styles[prefixedProperty] = 'translate3d(' + left + 'px, ' + top + 'px, 0)'; styles[sideA] = 0; styles[sideB] = 0; styles.willChange = 'transform'; } else { // othwerise, we use the standard `top`, `left`, `bottom` and `right` properties var invertTop = sideA === 'bottom' ? -1 : 1; var invertLeft = sideB === 'right' ? -1 : 1; styles[sideA] = top * invertTop; styles[sideB] = left * invertLeft; styles.willChange = sideA + ', ' + sideB; } // Attributes var attributes = { 'x-placement': data.placement }; // Update `data` attributes, styles and arrowStyles data.attributes = _extends$1({}, attributes, data.attributes); data.styles = _extends$1({}, styles, data.styles); data.arrowStyles = _extends$1({}, data.offsets.arrow, data.arrowStyles); return data; } /** * Helper used to know if the given modifier depends from another one.<br /> * It checks if the needed modifier is listed and enabled. * @method * @memberof Popper.Utils * @param {Array} modifiers - list of modifiers * @param {String} requestingName - name of requesting modifier * @param {String} requestedName - name of requested modifier * @returns {Boolean} */ function isModifierRequired(modifiers, requestingName, requestedName) { var requesting = find$1(modifiers, function (_ref) { var name = _ref.name; return name === requestingName; }); var isRequired = !!requesting && modifiers.some(function (modifier) { return modifier.name === requestedName && modifier.enabled && modifier.order < requesting.order; }); if (!isRequired) { var _requesting = '`' + requestingName + '`'; var requested = '`' + requestedName + '`'; console.warn(requested + ' modifier is required by ' + _requesting + ' modifier in order to work, be sure to include it before ' + _requesting + '!'); } return isRequired; } /** * @function * @memberof Modifiers * @argument {Object} data - The data object generated by update method * @argument {Object} options - Modifiers configuration and options * @returns {Object} The data object, properly modified */ function arrow(data, options) { var _data$offsets$arrow; // arrow depends on keepTogether in order to work if (!isModifierRequired(data.instance.modifiers, 'arrow', 'keepTogether')) { return data; } var arrowElement = options.element; // if arrowElement is a string, suppose it's a CSS selector if (typeof arrowElement === 'string') { arrowElement = data.instance.popper.querySelector(arrowElement); // if arrowElement is not found, don't run the modifier if (!arrowElement) { return data; } } else { // if the arrowElement isn't a query selector we must check that the // provided DOM node is child of its popper node if (!data.instance.popper.contains(arrowElement)) { console.warn('WARNING: `arrow.element` must be child of its popper element!'); return data; } } var placement = data.placement.split('-')[0]; var _data$offsets = data.offsets, popper = _data$offsets.popper, reference = _data$offsets.reference; var isVertical = ['left', 'right'].indexOf(placement) !== -1; var len = isVertical ? 'height' : 'width'; var sideCapitalized = isVertical ? 'Top' : 'Left'; var side = sideCapitalized.toLowerCase(); var altSide = isVertical ? 'left' : 'top'; var opSide = isVertical ? 'bottom' : 'right'; var arrowElementSize = getOuterSizes(arrowElement)[len]; // // extends keepTogether behavior making sure the popper and its // reference have enough pixels in conjunction // // top/left side if (reference[opSide] - arrowElementSize < popper[side]) { data.offsets.popper[side] -= popper[side] - (reference[opSide] - arrowElementSize); } // bottom/right side if (reference[side] + arrowElementSize > popper[opSide]) { data.offsets.popper[side] += reference[side] + arrowElementSize - popper[opSide]; } data.offsets.popper = getClientRect(data.offsets.popper); // compute center of the popper var center = reference[side] + reference[len] / 2 - arrowElementSize / 2; // Compute the sideValue using the updated popper offsets // take popper margin in account because we don't have this info available var css = getStyleComputedProperty(data.instance.popper); var popperMarginSide = parseFloat(css['margin' + sideCapitalized]); var popperBorderSide = parseFloat(css['border' + sideCapitalized + 'Width']); var sideValue = center - data.offsets.popper[side] - popperMarginSide - popperBorderSide; // prevent arrowElement from being placed not contiguously to its popper sideValue = Math.max(Math.min(popper[len] - arrowElementSize, sideValue), 0); data.arrowElement = arrowElement; data.offsets.arrow = (_data$offsets$arrow = {}, defineProperty$1(_data$offsets$arrow, side, Math.round(sideValue)), defineProperty$1(_data$offsets$arrow, altSide, ''), _data$offsets$arrow); return data; } /** * Get the opposite placement variation of the given one * @method * @memberof Popper.Utils * @argument {String} placement variation * @returns {String} flipped placement variation */ function getOppositeVariation(variation) { if (variation === 'end') { return 'start'; } else if (variation === 'start') { return 'end'; } return variation; } /** * List of accepted placements to use as values of the `placement` option.<br /> * Valid placements are: * - `auto` * - `top` * - `right` * - `bottom` * - `left` * * Each placement can have a variation from this list: * - `-start` * - `-end` * * Variations are interpreted easily if you think of them as the left to right * written languages. Horizontally (`top` and `bottom`), `start` is left and `end` * is right.<br /> * Vertically (`left` and `right`), `start` is top and `end` is bottom. * * Some valid examples are: * - `top-end` (on top of reference, right aligned) * - `right-start` (on right of reference, top aligned) * - `bottom` (on bottom, centered) * - `auto-end` (on the side with more space available, alignment depends by placement) * * @static * @type {Array} * @enum {String} * @readonly * @method placements * @memberof Popper */ var placements = ['auto-start', 'auto', 'auto-end', 'top-start', 'top', 'top-end', 'right-start', 'right', 'right-end', 'bottom-end', 'bottom', 'bottom-start', 'left-end', 'left', 'left-start']; // Get rid of `auto` `auto-start` and `auto-end` var validPlacements = placements.slice(3); /** * Given an initial placement, returns all the subsequent placements * clockwise (or counter-clockwise). * * @method * @memberof Popper.Utils * @argument {String} placement - A valid placement (it accepts variations) * @argument {Boolean} counter - Set to true to walk the placements counterclockwise * @returns {Array} placements including their variations */ function clockwise(placement) { var counter = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : false; var index = validPlacements.indexOf(placement); var arr = validPlacements.slice(index + 1).concat(validPlacements.slice(0, index)); return counter ? arr.reverse() : arr; } var BEHAVIORS = { FLIP: 'flip', CLOCKWISE: 'clockwise', COUNTERCLOCKWISE: 'counterclockwise' }; /** * @function * @memberof Modifiers * @argument {Object} data - The data object generated by update method * @argument {Object} options - Modifiers configuration and options * @returns {Object} The data object, properly modified */ function flip(data, options) { // if `inner` modifier is enabled, we can't use the `flip` modifier if (isModifierEnabled(data.instance.modifiers, 'inner')) { return data; } if (data.flipped && data.placement === data.originalPlacement) { // seems like flip is trying to loop, probably there's not enough space on any of the flippable sides return data; } var boundaries = getBoundaries(data.instance.popper, data.instance.reference, options.padding, options.boundariesElement, data.positionFixed); var placement = data.placement.split('-')[0]; var placementOpposite = getOppositePlacement(placement); var variation = data.placement.split('-')[1] || ''; var flipOrder = []; switch (options.behavior) { case BEHAVIORS.FLIP: flipOrder = [placement, placementOpposite]; break; case BEHAVIORS.CLOCKWISE: flipOrder = clockwise(placement); break; case BEHAVIORS.COUNTERCLOCKWISE: flipOrder = clockwise(placement, true); break; default: flipOrder = options.behavior; } flipOrder.forEach(function (step, index) { if (placement !== step || flipOrder.length === index + 1) { return data; } placement = data.placement.split('-')[0]; placementOpposite = getOppositePlacement(placement); var popperOffsets = data.offsets.popper; var refOffsets = data.offsets.reference; // using floor because the reference offsets may contain decimals we are not going to consider here var floor = Math.floor; var overlapsRef = placement === 'left' && floor(popperOffsets.right) > floor(refOffsets.left) || placement === 'right' && floor(popperOffsets.left) < floor(refOffsets.right) || placement === 'top' && floor(popperOffsets.bottom) > floor(refOffsets.top) || placement === 'bottom' && floor(popperOffsets.top) < floor(refOffsets.bottom); var overflowsLeft = floor(popperOffsets.left) < floor(boundaries.left); var overflowsRight = floor(popperOffsets.right) > floor(boundaries.right); var overflowsTop = floor(popperOffsets.top) < floor(boundaries.top); var overflowsBottom = floor(popperOffsets.bottom) > floor(boundaries.bottom); var overflowsBoundaries = placement === 'left' && overflowsLeft || placement === 'right' && overflowsRight || placement === 'top' && overflowsTop || placement === 'bottom' && overflowsBottom; // flip the variation if required var isVertical = ['top', 'bottom'].indexOf(placement) !== -1; // flips variation if reference element overflows boundaries var flippedVariationByRef = !!options.flipVariations && (isVertical && variation === 'start' && overflowsLeft || isVertical && variation === 'end' && overflowsRight || !isVertical && variation === 'start' && overflowsTop || !isVertical && variation === 'end' && overflowsBottom); // flips variation if popper content overflows boundaries var flippedVariationByContent = !!options.flipVariationsByContent && (isVertical && variation === 'start' && overflowsRight || isVertical && variation === 'end' && overflowsLeft || !isVertical && variation === 'start' && overflowsBottom || !isVertical && variation === 'end' && overflowsTop); var flippedVariation = flippedVariationByRef || flippedVariationByContent; if (overlapsRef || overflowsBoundaries || flippedVariation) { // this boolean to detect any flip loop data.flipped = true; if (overlapsRef || overflowsBoundaries) { placement = flipOrder[index + 1]; } if (flippedVariation) { variation = getOppositeVariation(variation); } data.placement = placement + (variation ? '-' + variation : ''); // this object contains `position`, we want to preserve it along with // any additional property we may add in the future data.offsets.popper = _extends$1({}, data.offsets.popper, getPopperOffsets(data.instance.popper, data.offsets.reference, data.placement)); data = runModifiers(data.instance.modifiers, data, 'flip'); } }); return data; } /** * @function * @memberof Modifiers * @argument {Object} data - The data object generated by update method * @argument {Object} options - Modifiers configuration and options * @returns {Object} The data object, properly modified */ function keepTogether(data) { var _data$offsets = data.offsets, popper = _data$offsets.popper, reference = _data$offsets.reference; var placement = data.placement.split('-')[0]; var floor = Math.floor; var isVertical = ['top', 'bottom'].indexOf(placement) !== -1; var side = isVertical ? 'right' : 'bottom'; var opSide = isVertical ? 'left' : 'top'; var measurement = isVertical ? 'width' : 'height'; if (popper[side] < floor(reference[opSide])) { data.offsets.popper[opSide] = floor(reference[opSide]) - popper[measurement]; } if (popper[opSide] > floor(reference[side])) { data.offsets.popper[opSide] = floor(reference[side]); } return data; } /** * Converts a string containing value + unit into a px value number * @function * @memberof {modifiers~offset} * @private * @argument {String} str - Value + unit string * @argument {String} measurement - `height` or `width` * @argument {Object} popperOffsets * @argument {Object} referenceOffsets * @returns {Number|String} * Value in pixels, or original string if no values were extracted */ function toValue(str, measurement, popperOffsets, referenceOffsets) { // separate value from unit var split = str.match(/((?:\-|\+)?\d*\.?\d*)(.*)/); var value = +split[1]; var unit = split[2]; // If it's not a number it's an operator, I guess if (!value) { return str; } if (unit.indexOf('%') === 0) { var element = void 0; switch (unit) { case '%p': element = popperOffsets; break; case '%': case '%r': default: element = referenceOffsets; } var rect = getClientRect(element); return rect[measurement] / 100 * value; } else if (unit === 'vh' || unit === 'vw') { // if is a vh or vw, we calculate the size based on the viewport var size = void 0; if (unit === 'vh') { size = Math.max(document.documentElement.clientHeight, window.innerHeight || 0); } else { size = Math.max(document.documentElement.clientWidth, window.innerWidth || 0); } return size / 100 * value; } else { // if is an explicit pixel unit, we get rid of the unit and keep the value // if is an implicit unit, it's px, and we return just the value return value; } } /** * Parse an `offset` string to extrapolate `x` and `y` numeric offsets. * @function * @memberof {modifiers~offset} * @private * @argument {String} offset * @argument {Object} popperOffsets * @argument {Object} referenceOffsets * @argument {String} basePlacement * @returns {Array} a two cells array with x and y offsets in numbers */ function parseOffset(offset, popperOffsets, referenceOffsets, basePlacement) { var offsets = [0, 0]; // Use height if placement is left or right and index is 0 otherwise use width // in this way the first offset will use an axis and the second one // will use the other one var useHeight = ['right', 'left'].indexOf(basePlacement) !== -1; // Split the offset string to obtain a list of values and operands // The regex addresses values with the plus or minus sign in front (+10, -20, etc) var fragments = offset.split(/(\+|\-)/).map(function (frag) { return frag.trim(); }); // Detect if the offset string contains a pair of values or a single one // they could be separated by comma or space var divider = fragments.indexOf(find$1(fragments, function (frag) { return frag.search(/,|\s/) !== -1; })); if (fragments[divider] && fragments[divider].indexOf(',') === -1) { console.warn('Offsets separated by white space(s) are deprecated, use a comma (,) instead.'); } // If divider is found, we divide the list of values and operands to divide // them by ofset X and Y. var splitRegex = /\s*,\s*|\s+/; var ops = divider !== -1 ? [fragments.slice(0, divider).concat([fragments[divider].split(splitRegex)[0]]), [fragments[divider].split(splitRegex)[1]].concat(fragments.slice(divider + 1))] : [fragments]; // Convert the values with units to absolute pixels to allow our computations ops = ops.map(function (op, index) { // Most of the units rely on the orientation of the popper var measurement = (index === 1 ? !useHeight : useHeight) ? 'height' : 'width'; var mergeWithPrevious = false; return op // This aggregates any `+` or `-` sign that aren't considered operators // e.g.: 10 + +5 => [10, +, +5] .reduce(function (a, b) { if (a[a.length - 1] === '' && ['+', '-'].indexOf(b) !== -1) { a[a.length - 1] = b; mergeWithPrevious = true; return a; } else if (mergeWithPrevious) { a[a.length - 1] += b; mergeWithPrevious = false; return a; } else { return a.concat(b); } }, []) // Here we convert the string values into number values (in px) .map(function (str) { return toValue(str, measurement, popperOffsets, referenceOffsets); }); }); // Loop trough the offsets arrays and execute the operations ops.forEach(function (op, index) { op.forEach(function (frag, index2) { if (isNumeric(frag)) { offsets[index] += frag * (op[index2 - 1] === '-' ? -1 : 1); } }); }); return offsets; } /** * @function * @memberof Modifiers * @argument {Object} data - The data object generated by update method * @argument {Object} options - Modifiers configuration and options * @argument {Number|String} options.offset=0 * The offset value as described in the modifier description * @returns {Object} The data object, properly modified */ function offset(data, _ref) { var offset = _ref.offset; var placement = data.placement, _data$offsets = data.offsets, popper = _data$offsets.popper, reference = _data$offsets.reference; var basePlacement = placement.split('-')[0]; var offsets = void 0; if (isNumeric(+offset)) { offsets = [+offset, 0]; } else { offsets = parseOffset(offset, popper, reference, basePlacement); } if (basePlacement === 'left') { popper.top += offsets[0]; popper.left -= offsets[1]; } else if (basePlacement === 'right') { popper.top += offsets[0]; popper.left += offsets[1]; } else if (basePlacement === 'top') { popper.left += offsets[0]; popper.top -= offsets[1]; } else if (basePlacement === 'bottom') { popper.left += offsets[0]; popper.top += offsets[1]; } data.popper = popper; return data; } /** * @function * @memberof Modifiers * @argument {Object} data - The data object generated by `update` method * @argument {Object} options - Modifiers configuration and options * @returns {Object} The data object, properly modified */ function preventOverflow(data, options) { var boundariesElement = options.boundariesElement || getOffsetParent(data.instance.popper); // If offsetParent is the reference element, we really want to // go one step up and use the next offsetParent as reference to // avoid to make this modifier completely useless and look like broken if (data.instance.reference === boundariesElement) { boundariesElement = getOffsetParent(boundariesElement); } // NOTE: DOM access here // resets the popper's position so that the document size can be calculated excluding // the size of the popper element itself var transformProp = getSupportedPropertyName('transform'); var popperStyles = data.instance.popper.style; // assignment to help minification var top = popperStyles.top, left = popperStyles.left, transform = popperStyles[transformProp]; popperStyles.top = ''; popperStyles.left = ''; popperStyles[transformProp] = ''; var boundaries = getBoundaries(data.instance.popper, data.instance.reference, options.padding, boundariesElement, data.positionFixed); // NOTE: DOM access here // restores the original style properties after the offsets have been computed popperStyles.top = top; popperStyles.left = left; popperStyles[transformProp] = transform; options.boundaries = boundaries; var order = options.priority; var popper = data.offsets.popper; var check = { primary: function primary(placement) { var value = popper[placement]; if (popper[placement] < boundaries[placement] && !options.escapeWithReference) { value = Math.max(popper[placement], boundaries[placement]); } return defineProperty$1({}, placement, value); }, secondary: function secondary(placement) { var mainSide = placement === 'right' ? 'left' : 'top'; var value = popper[mainSide]; if (popper[placement] > boundaries[placement] && !options.escapeWithReference) { value = Math.min(popper[mainSide], boundaries[placement] - (placement === 'right' ? popper.width : popper.height)); } return defineProperty$1({}, mainSide, value); } }; order.forEach(function (placement) { var side = ['left', 'top'].indexOf(placement) !== -1 ? 'primary' : 'secondary'; popper = _extends$1({}, popper, check[side](placement)); }); data.offsets.popper = popper; return data; } /** * @function * @memberof Modifiers * @argument {Object} data - The data object generated by `update` method * @argument {Object} options - Modifiers configuration and options * @returns {Object} The data object, properly modified */ function shift(data) { var placement = data.placement; var basePlacement = placement.split('-')[0]; var shiftvariation = placement.split('-')[1]; // if shift shiftvariation is specified, run the modifier if (shiftvariation) { var _data$offsets = data.offsets, reference = _data$offsets.reference, popper = _data$offsets.popper; var isVertical = ['bottom', 'top'].indexOf(basePlacement) !== -1; var side = isVertical ? 'left' : 'top'; var measurement = isVertical ? 'width' : 'height'; var shiftOffsets = { start: defineProperty$1({}, side, reference[side]), end: defineProperty$1({}, side, reference[side] + reference[measurement] - popper[measurement]) }; data.offsets.popper = _extends$1({}, popper, shiftOffsets[shiftvariation]); } return data; } /** * @function * @memberof Modifiers * @argument {Object} data - The data object generated by update method * @argument {Object} options - Modifiers configuration and options * @returns {Object} The data object, properly modified */ function hide(data) { if (!isModifierRequired(data.instance.modifiers, 'hide', 'preventOverflow')) { return data; } var refRect = data.offsets.reference; var bound = find$1(data.instance.modifiers, function (modifier) { return modifier.name === 'preventOverflow'; }).boundaries; if (refRect.bottom < bound.top || refRect.left > bound.right || refRect.top > bound.bottom || refRect.right < bound.left) { // Avoid unnecessary DOM access if visibility hasn't changed if (data.hide === true) { return data; } data.hide = true; data.attributes['x-out-of-boundaries'] = ''; } else { // Avoid unnecessary DOM access if visibility hasn't changed if (data.hide === false) { return data; } data.hide = false; data.attributes['x-out-of-boundaries'] = false; } return data; } /** * @function * @memberof Modifiers * @argument {Object} data - The data object generated by `update` method * @argument {Object} options - Modifiers configuration and options * @returns {Object} The data object, properly modified */ function inner(data) { var placement = data.placement; var basePlacement = placement.split('-')[0]; var _data$offsets = data.offsets, popper = _data$offsets.popper, reference = _data$offsets.reference; var isHoriz = ['left', 'right'].indexOf(basePlacement) !== -1; var subtractLength = ['top', 'left'].indexOf(basePlacement) === -1; popper[isHoriz ? 'left' : 'top'] = reference[basePlacement] - (subtractLength ? popper[isHoriz ? 'width' : 'height'] : 0); data.placement = getOppositePlacement(placement); data.offsets.popper = getClientRect(popper); return data; } /** * Modifier function, each modifier can have a function of this type assigned * to its `fn` property.<br /> * These functions will be called on each update, this means that you must * make sure they are performant enough to avoid performance bottlenecks. * * @function ModifierFn * @argument {dataObject} data - The data object generated by `update` method * @argument {Object} options - Modifiers configuration and options * @returns {dataObject} The data object, properly modified */ /** * Modifiers are plugins used to alter the behavior of your poppers.<br /> * Popper.js uses a set of 9 modifiers to provide all the basic functionalities * needed by the library. * * Usually you don't want to override the `order`, `fn` and `onLoad` props. * All the other properties are configurations that could be tweaked. * @namespace modifiers */ var modifiers = { /** * Modifier used to shift the popper on the start or end of its reference * element.<br /> * It will read the variation of the `placement` property.<br /> * It can be one either `-end` or `-start`. * @memberof modifiers * @inner */ shift: { /** @prop {number} order=100 - Index used to define the order of execution */ order: 100, /** @prop {Boolean} enabled=true - Whether the modifier is enabled or not */ enabled: true, /** @prop {ModifierFn} */ fn: shift }, /** * The `offset` modifier can shift your popper on both its axis. * * It accepts the following units: * - `px` or unit-less, interpreted as pixels * - `%` or `%r`, percentage relative to the length of the reference element * - `%p`, percentage relative to the length of the popper element * - `vw`, CSS viewport width unit * - `vh`, CSS viewport height unit * * For length is intended the main axis relative to the placement of the popper.<br /> * This means that if the placement is `top` or `bottom`, the length will be the * `width`. In case of `left` or `right`, it will be the `height`. * * You can provide a single value (as `Number` or `String`), or a pair of values * as `String` divided by a comma or one (or more) white spaces.<br /> * The latter is a deprecated method because it leads to confusion and will be * removed in v2.<br /> * Additionally, it accepts additions and subtractions between different units. * Note that multiplications and divisions aren't supported. * * Valid examples are: * ``` * 10 * '10%' * '10, 10' * '10%, 10' * '10 + 10%' * '10 - 5vh + 3%' * '-10px + 5vh, 5px - 6%' * ``` * > **NB**: If you desire to apply offsets to your poppers in a way that may make them overlap * > with their reference element, unfortunately, you will have to disable the `flip` modifier. * > You can read more on this at this [issue](https://github.com/FezVrasta/popper.js/issues/373). * * @memberof modifiers * @inner */ offset: { /** @prop {number} order=200 - Index used to define the order of execution */ order: 200, /** @prop {Boolean} enabled=true - Whether the modifier is enabled or not */ enabled: true, /** @prop {ModifierFn} */ fn: offset, /** @prop {Number|String} offset=0 * The offset value as described in the modifier description */ offset: 0 }, /** * Modifier used to prevent the popper from being positioned outside the boundary. * * A scenario exists where the reference itself is not within the boundaries.<br /> * We can say it has "escaped the boundaries" — or just "escaped".<br /> * In this case we need to decide whether the popper should either: * * - detach from the reference and remain "trapped" in the boundaries, or * - if it should ignore the boundary and "escape with its reference" * * When `escapeWithReference` is set to`true` and reference is completely * outside its boundaries, the popper will overflow (or completely leave) * the boundaries in order to remain attached to the edge of the reference. * * @memberof modifiers * @inner */ preventOverflow: { /** @prop {number} order=300 - Index used to define the order of execution */ order: 300, /** @prop {Boolean} enabled=true - Whether the modifier is enabled or not */ enabled: true, /** @prop {ModifierFn} */ fn: preventOverflow, /** * @prop {Array} [priority=['left','right','top','bottom']] * Popper will try to prevent overflow following these priorities by default, * then, it could overflow on the left and on top of the `boundariesElement` */ priority: ['left', 'right', 'top', 'bottom'], /** * @prop {number} padding=5 * Amount of pixel used to define a minimum distance between the boundaries * and the popper. This makes sure the popper always has a little padding * between the edges of its container */ padding: 5, /** * @prop {String|HTMLElement} boundariesElement='scrollParent' * Boundaries used by the modifier. Can be `scrollParent`, `window`, * `viewport` or any DOM element. */ boundariesElement: 'scrollParent' }, /** * Modifier used to make sure the reference and its popper stay near each other * without leaving any gap between the two. Especially useful when the arrow is * enabled and you want to ensure that it points to its reference element. * It cares only about the first axis. You can still have poppers with margin * between the popper and its reference element. * @memberof modifiers * @inner */ keepTogether: { /** @prop {number} order=400 - Index used to define the order of execution */ order: 400, /** @prop {Boolean} enabled=true - Whether the modifier is enabled or not */ enabled: true, /** @prop {ModifierFn} */ fn: keepTogether }, /** * This modifier is used to move the `arrowElement` of the popper to make * sure it is positioned between the reference element and its popper element. * It will read the outer size of the `arrowElement` node to detect how many * pixels of conjunction are needed. * * It has no effect if no `arrowElement` is provided. * @memberof modifiers * @inner */ arrow: { /** @prop {number} order=500 - Index used to define the order of execution */ order: 500, /** @prop {Boolean} enabled=true - Whether the modifier is enabled or not */ enabled: true, /** @prop {ModifierFn} */ fn: arrow, /** @prop {String|HTMLElement} element='[x-arrow]' - Selector or node used as arrow */ element: '[x-arrow]' }, /** * Modifier used to flip the popper's placement when it starts to overlap its * reference element. * * Requires the `preventOverflow` modifier before it in order to work. * * **NOTE:** this modifier will interrupt the current update cycle and will * restart it if it detects the need to flip the placement. * @memberof modifiers * @inner */ flip: { /** @prop {number} order=600 - Index used to define the order of execution */ order: 600, /** @prop {Boolean} enabled=true - Whether the modifier is enabled or not */ enabled: true, /** @prop {ModifierFn} */ fn: flip, /** * @prop {String|Array} behavior='flip' * The behavior used to change the popper's placement. It can be one of * `flip`, `clockwise`, `counterclockwise` or an array with a list of valid * placements (with optional variations) */ behavior: 'flip', /** * @prop {number} padding=5 * The popper will flip if it hits the edges of the `boundariesElement` */ padding: 5, /** * @prop {String|HTMLElement} boundariesElement='viewport' * The element which will define the boundaries of the popper position. * The popper will never be placed outside of the defined boundaries * (except if `keepTogether` is enabled) */ boundariesElement: 'viewport', /** * @prop {Boolean} flipVariations=false * The popper will switch placement variation between `-start` and `-end` when * the reference element overlaps its boundaries. * * The original placement should have a set variation. */ flipVariations: false, /** * @prop {Boolean} flipVariationsByContent=false * The popper will switch placement variation between `-start` and `-end` when * the popper element overlaps its reference boundaries. * * The original placement should have a set variation. */ flipVariationsByContent: false }, /** * Modifier used to make the popper flow toward the inner of the reference element. * By default, when this modifier is disabled, the popper will be placed outside * the reference element. * @memberof modifiers * @inner */ inner: { /** @prop {number} order=700 - Index used to define the order of execution */ order: 700, /** @prop {Boolean} enabled=false - Whether the modifier is enabled or not */ enabled: false, /** @prop {ModifierFn} */ fn: inner }, /** * Modifier used to hide the popper when its reference element is outside of the * popper boundaries. It will set a `x-out-of-boundaries` attribute which can * be used to hide with a CSS selector the popper when its reference is * out of boundaries. * * Requires the `preventOverflow` modifier before it in order to work. * @memberof modifiers * @inner */ hide: { /** @prop {number} order=800 - Index used to define the order of execution */ order: 800, /** @prop {Boolean} enabled=true - Whether the modifier is enabled or not */ enabled: true, /** @prop {ModifierFn} */ fn: hide }, /** * Computes the style that will be applied to the popper element to gets * properly positioned. * * Note that this modifier will not touch the DOM, it just prepares the styles * so that `applyStyle` modifier can apply it. This separation is useful * in case you need to replace `applyStyle` with a custom implementation. * * This modifier has `850` as `order` value to maintain backward compatibility * with previous versions of Popper.js. Expect the modifiers ordering method * to change in future major versions of the library. * * @memberof modifiers * @inner */ computeStyle: { /** @prop {number} order=850 - Index used to define the order of execution */ order: 850, /** @prop {Boolean} enabled=true - Whether the modifier is enabled or not */ enabled: true, /** @prop {ModifierFn} */ fn: computeStyle, /** * @prop {Boolean} gpuAcceleration=true * If true, it uses the CSS 3D transformation to position the popper. * Otherwise, it will use the `top` and `left` properties */ gpuAcceleration: true, /** * @prop {string} [x='bottom'] * Where to anchor the X axis (`bottom` or `top`). AKA X offset origin. * Change this if your popper should grow in a direction different from `bottom` */ x: 'bottom', /** * @prop {string} [x='left'] * Where to anchor the Y axis (`left` or `right`). AKA Y offset origin. * Change this if your popper should grow in a direction different from `right` */ y: 'right' }, /** * Applies the computed styles to the popper element. * * All the DOM manipulations are limited to this modifier. This is useful in case * you want to integrate Popper.js inside a framework or view library and you * want to delegate all the DOM manipulations to it. * * Note that if you disable this modifier, you must make sure the popper element * has its position set to `absolute` before Popper.js can do its work! * * Just disable this modifier and define your own to achieve the desired effect. * * @memberof modifiers * @inner */ applyStyle: { /** @prop {number} order=900 - Index used to define the order of execution */ order: 900, /** @prop {Boolean} enabled=true - Whether the modifier is enabled or not */ enabled: true, /** @prop {ModifierFn} */ fn: applyStyle, /** @prop {Function} */ onLoad: applyStyleOnLoad, /** * @deprecated since version 1.10.0, the property moved to `computeStyle` modifier * @prop {Boolean} gpuAcceleration=true * If true, it uses the CSS 3D transformation to position the popper. * Otherwise, it will use the `top` and `left` properties */ gpuAcceleration: undefined } }; /** * The `dataObject` is an object containing all the information used by Popper.js. * This object is passed to modifiers and to the `onCreate` and `onUpdate` callbacks. * @name dataObject * @property {Object} data.instance The Popper.js instance * @property {String} data.placement Placement applied to popper * @property {String} data.originalPlacement Placement originally defined on init * @property {Boolean} data.flipped True if popper has been flipped by flip modifier * @property {Boolean} data.hide True if the reference element is out of boundaries, useful to know when to hide the popper * @property {HTMLElement} data.arrowElement Node used as arrow by arrow modifier * @property {Object} data.styles Any CSS property defined here will be applied to the popper. It expects the JavaScript nomenclature (eg. `marginBottom`) * @property {Object} data.arrowStyles Any CSS property defined here will be applied to the popper arrow. It expects the JavaScript nomenclature (eg. `marginBottom`) * @property {Object} data.boundaries Offsets of the popper boundaries * @property {Object} data.offsets The measurements of popper, reference and arrow elements * @property {Object} data.offsets.popper `top`, `left`, `width`, `height` values * @property {Object} data.offsets.reference `top`, `left`, `width`, `height` values * @property {Object} data.offsets.arrow] `top` and `left` offsets, only one of them will be different from 0 */ /** * Default options provided to Popper.js constructor.<br /> * These can be overridden using the `options` argument of Popper.js.<br /> * To override an option, simply pass an object with the same * structure of the `options` object, as the 3rd argument. For example: * ``` * new Popper(ref, pop, { * modifiers: { * preventOverflow: { enabled: false } * } * }) * ``` * @type {Object} * @static * @memberof Popper */ var Defaults = { /** * Popper's placement. * @prop {Popper.placements} placement='bottom' */ placement: 'bottom', /** * Set this to true if you want popper to position it self in 'fixed' mode * @prop {Boolean} positionFixed=false */ positionFixed: false, /** * Whether events (resize, scroll) are initially enabled. * @prop {Boolean} eventsEnabled=true */ eventsEnabled: true, /** * Set to true if you want to automatically remove the popper when * you call the `destroy` method. * @prop {Boolean} removeOnDestroy=false */ removeOnDestroy: false, /** * Callback called when the popper is created.<br /> * By default, it is set to no-op.<br /> * Access Popper.js instance with `data.instance`. * @prop {onCreate} */ onCreate: function onCreate() {}, /** * Callback called when the popper is updated. This callback is not called * on the initialization/creation of the popper, but only on subsequent * updates.<br /> * By default, it is set to no-op.<br /> * Access Popper.js instance with `data.instance`. * @prop {onUpdate} */ onUpdate: function onUpdate() {}, /** * List of modifiers used to modify the offsets before they are applied to the popper. * They provide most of the functionalities of Popper.js. * @prop {modifiers} */ modifiers: modifiers }; /** * @callback onCreate * @param {dataObject} data */ /** * @callback onUpdate * @param {dataObject} data */ // Utils // Methods var Popper = function () { /** * Creates a new Popper.js instance. * @class Popper * @param {Element|referenceObject} reference - The reference element used to position the popper * @param {Element} popper - The HTML / XML element used as the popper * @param {Object} options - Your custom options to override the ones defined in [Defaults](#defaults) * @return {Object} instance - The generated Popper.js instance */ function Popper(reference, popper) { var _this = this; var options = arguments.length > 2 && arguments[2] !== undefined ? arguments[2] : {}; classCallCheck(this, Popper); this.scheduleUpdate = function () { return requestAnimationFrame(_this.update); }; // make update() debounced, so that it only runs at most once-per-tick this.update = debounce(this.update.bind(this)); // with {} we create a new object with the options inside it this.options = _extends$1({}, Popper.Defaults, options); // init state this.state = { isDestroyed: false, isCreated: false, scrollParents: [] }; // get reference and popper elements (allow jQuery wrappers) this.reference = reference && reference.jquery ? reference[0] : reference; this.popper = popper && popper.jquery ? popper[0] : popper; // Deep merge modifiers options this.options.modifiers = {}; Object.keys(_extends$1({}, Popper.Defaults.modifiers, options.modifiers)).forEach(function (name) { _this.options.modifiers[name] = _extends$1({}, Popper.Defaults.modifiers[name] || {}, options.modifiers ? options.modifiers[name] : {}); }); // Refactoring modifiers' list (Object => Array) this.modifiers = Object.keys(this.options.modifiers).map(function (name) { return _extends$1({ name: name }, _this.options.modifiers[name]); }) // sort the modifiers by order .sort(function (a, b) { return a.order - b.order; }); // modifiers have the ability to execute arbitrary code when Popper.js get inited // such code is executed in the same order of its modifier // they could add new properties to their options configuration // BE AWARE: don't add options to `options.modifiers.name` but to `modifierOptions`! this.modifiers.forEach(function (modifierOptions) { if (modifierOptions.enabled && isFunction$1(modifierOptions.onLoad)) { modifierOptions.onLoad(_this.reference, _this.popper, _this.options, modifierOptions, _this.state); } }); // fire the first update to position the popper in the right place this.update(); var eventsEnabled = this.options.eventsEnabled; if (eventsEnabled) { // setup event listeners, they will take care of update the position in specific situations this.enableEventListeners(); } this.state.eventsEnabled = eventsEnabled; } // We can't use class properties because they don't get listed in the // class prototype and break stuff like Sinon stubs createClass(Popper, [{ key: 'update', value: function update$$1() { return update.call(this); } }, { key: 'destroy', value: function destroy$$1() { return destroy.call(this); } }, { key: 'enableEventListeners', value: function enableEventListeners$$1() { return enableEventListeners.call(this); } }, { key: 'disableEventListeners', value: function disableEventListeners$$1() { return disableEventListeners.call(this); } /** * Schedules an update. It will run on the next UI update available. * @method scheduleUpdate * @memberof Popper */ /** * Collection of utilities useful when writing custom modifiers. * Starting from version 1.7, this method is available only if you * include `popper-utils.js` before `popper.js`. * * **DEPRECATION**: This way to access PopperUtils is deprecated * and will be removed in v2! Use the PopperUtils module directly instead. * Due to the high instability of the methods contained in Utils, we can't * guarantee them to follow semver. Use them at your own risk! * @static * @private * @type {Object} * @deprecated since version 1.8 * @member Utils * @memberof Popper */ }]); return Popper; }(); /** * The `referenceObject` is an object that provides an interface compatible with Popper.js * and lets you use it as replacement of a real DOM node.<br /> * You can use this method to position a popper relatively to a set of coordinates * in case you don't have a DOM node to use as reference. * * ``` * new Popper(referenceObject, popperNode); * ``` * * NB: This feature isn't supported in Internet Explorer 10. * @name referenceObject * @property {Function} data.getBoundingClientRect * A function that returns a set of coordinates compatible with the native `getBoundingClientRect` method. * @property {number} data.clientWidth * An ES6 getter that will return the width of the virtual reference element. * @property {number} data.clientHeight * An ES6 getter that will return the height of the virtual reference element. */ Popper.Utils = (typeof window !== 'undefined' ? window : global).PopperUtils; Popper.placements = placements; Popper.Defaults = Defaults; /** * Removes all key-value entries from the list cache. * * @private * @name clear * @memberOf ListCache */ function listCacheClear() { this.__data__ = []; this.size = 0; } var _listCacheClear = listCacheClear; /** * Performs a * [`SameValueZero`](http://ecma-international.org/ecma-262/7.0/#sec-samevaluezero) * comparison between two values to determine if they are equivalent. * * @static * @memberOf _ * @since 4.0.0 * @category Lang * @param {*} value The value to compare. * @param {*} other The other value to compare. * @returns {boolean} Returns `true` if the values are equivalent, else `false`. * @example * * var object = { 'a': 1 }; * var other = { 'a': 1 }; * * _.eq(object, object); * // => true * * _.eq(object, other); * // => false * * _.eq('a', 'a'); * // => true * * _.eq('a', Object('a')); * // => false * * _.eq(NaN, NaN); * // => true */ function eq(value, other) { return value === other || (value !== value && other !== other); } var eq_1 = eq; /** * Gets the index at which the `key` is found in `array` of key-value pairs. * * @private * @param {Array} array The array to inspect. * @param {*} key The key to search for. * @returns {number} Returns the index of the matched value, else `-1`. */ function assocIndexOf(array, key) { var length = array.length; while (length--) { if (eq_1(array[length][0], key)) { return length; } } return -1; } var _assocIndexOf = assocIndexOf; /** Used for built-in method references. */ var arrayProto = Array.prototype; /** Built-in value references. */ var splice = arrayProto.splice; /** * Removes `key` and its value from the list cache. * * @private * @name delete * @memberOf ListCache * @param {string} key The key of the value to remove. * @returns {boolean} Returns `true` if the entry was removed, else `false`. */ function listCacheDelete(key) { var data = this.__data__, index = _assocIndexOf(data, key); if (index < 0) { return false; } var lastIndex = data.length - 1; if (index == lastIndex) { data.pop(); } else { splice.call(data, index, 1); } --this.size; return true; } var _listCacheDelete = listCacheDelete; /** * Gets the list cache value for `key`. * * @private * @name get * @memberOf ListCache * @param {string} key The key of the value to get. * @returns {*} Returns the entry value. */ function listCacheGet(key) { var data = this.__data__, index = _assocIndexOf(data, key); return index < 0 ? undefined : data[index][1]; } var _listCacheGet = listCacheGet; /** * Checks if a list cache value for `key` exists. * * @private * @name has * @memberOf ListCache * @param {string} key The key of the entry to check. * @returns {boolean} Returns `true` if an entry for `key` exists, else `false`. */ function listCacheHas(key) { return _assocIndexOf(this.__data__, key) > -1; } var _listCacheHas = listCacheHas; /** * Sets the list cache `key` to `value`. * * @private * @name set * @memberOf ListCache * @param {string} key The key of the value to set. * @param {*} value The value to set. * @returns {Object} Returns the list cache instance. */ function listCacheSet(key, value) { var data = this.__data__, index = _assocIndexOf(data, key); if (index < 0) { ++this.size; data.push([key, value]); } else { data[index][1] = value; } return this; } var _listCacheSet = listCacheSet; /** * Creates an list cache object. * * @private * @constructor * @param {Array} [entries] The key-value pairs to cache. */ function ListCache(entries) { var index = -1, length = entries == null ? 0 : entries.length; this.clear(); while (++index < length) { var entry = entries[index]; this.set(entry[0], entry[1]); } } // Add methods to `ListCache`. ListCache.prototype.clear = _listCacheClear; ListCache.prototype['delete'] = _listCacheDelete; ListCache.prototype.get = _listCacheGet; ListCache.prototype.has = _listCacheHas; ListCache.prototype.set = _listCacheSet; var _ListCache = ListCache; /** * Removes all key-value entries from the stack. * * @private * @name clear * @memberOf Stack */ function stackClear() { this.__data__ = new _ListCache; this.size = 0; } var _stackClear = stackClear; /** * Removes `key` and its value from the stack. * * @private * @name delete * @memberOf Stack * @param {string} key The key of the value to remove. * @returns {boolean} Returns `true` if the entry was removed, else `false`. */ function stackDelete(key) { var data = this.__data__, result = data['delete'](key); this.size = data.size; return result; } var _stackDelete = stackDelete; /** * Gets the stack value for `key`. * * @private * @name get * @memberOf Stack * @param {string} key The key of the value to get. * @returns {*} Returns the entry value. */ function stackGet(key) { return this.__data__.get(key); } var _stackGet = stackGet; /** * Checks if a stack value for `key` exists. * * @private * @name has * @memberOf Stack * @param {string} key The key of the entry to check. * @returns {boolean} Returns `true` if an entry for `key` exists, else `false`. */ function stackHas(key) { return this.__data__.has(key); } var _stackHas = stackHas; /** Detect free variable `global` from Node.js. */ var freeGlobal = typeof commonjsGlobal == 'object' && commonjsGlobal && commonjsGlobal.Object === Object && commonjsGlobal; var _freeGlobal = freeGlobal; /** Detect free variable `self`. */ var freeSelf = typeof self == 'object' && self && self.Object === Object && self; /** Used as a reference to the global object. */ var root = _freeGlobal || freeSelf || Function('return this')(); var _root = root; /** Built-in value references. */ var Symbol$1 = _root.Symbol; var _Symbol = Symbol$1; /** Used for built-in method references. */ var objectProto$e = Object.prototype; /** Used to check objects for own properties. */ var hasOwnProperty$b = objectProto$e.hasOwnProperty; /** * Used to resolve the * [`toStringTag`](http://ecma-international.org/ecma-262/7.0/#sec-object.prototype.tostring) * of values. */ var nativeObjectToString$1 = objectProto$e.toString; /** Built-in value references. */ var symToStringTag$1 = _Symbol ? _Symbol.toStringTag : undefined; /** * A specialized version of `baseGetTag` which ignores `Symbol.toStringTag` values. * * @private * @param {*} value The value to query. * @returns {string} Returns the raw `toStringTag`. */ function getRawTag(value) { var isOwn = hasOwnProperty$b.call(value, symToStringTag$1), tag = value[symToStringTag$1]; try { value[symToStringTag$1] = undefined; var unmasked = true; } catch (e) {} var result = nativeObjectToString$1.call(value); if (unmasked) { if (isOwn) { value[symToStringTag$1] = tag; } else { delete value[symToStringTag$1]; } } return result; } var _getRawTag = getRawTag; /** Used for built-in method references. */ var objectProto$d = Object.prototype; /** * Used to resolve the * [`toStringTag`](http://ecma-international.org/ecma-262/7.0/#sec-object.prototype.tostring) * of values. */ var nativeObjectToString = objectProto$d.toString; /** * Converts `value` to a string using `Object.prototype.toString`. * * @private * @param {*} value The value to convert. * @returns {string} Returns the converted string. */ function objectToString(value) { return nativeObjectToString.call(value); } var _objectToString = objectToString; /** `Object#toString` result references. */ var nullTag = '[object Null]', undefinedTag = '[object Undefined]'; /** Built-in value references. */ var symToStringTag = _Symbol ? _Symbol.toStringTag : undefined; /** * The base implementation of `getTag` without fallbacks for buggy environments. * * @private * @param {*} value The value to query. * @returns {string} Returns the `toStringTag`. */ function baseGetTag(value) { if (value == null) { return value === undefined ? undefinedTag : nullTag; } return (symToStringTag && symToStringTag in Object(value)) ? _getRawTag(value) : _objectToString(value); } var _baseGetTag = baseGetTag; /** * Checks if `value` is the * [language type](http://www.ecma-international.org/ecma-262/7.0/#sec-ecmascript-language-types) * of `Object`. (e.g. arrays, functions, objects, regexes, `new Number(0)`, and `new String('')`) * * @static * @memberOf _ * @since 0.1.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is an object, else `false`. * @example * * _.isObject({}); * // => true * * _.isObject([1, 2, 3]); * // => true * * _.isObject(_.noop); * // => true * * _.isObject(null); * // => false */ function isObject(value) { var type = typeof value; return value != null && (type == 'object' || type == 'function'); } var isObject_1 = isObject; /** `Object#toString` result references. */ var asyncTag = '[object AsyncFunction]', funcTag$1 = '[object Function]', genTag = '[object GeneratorFunction]', proxyTag = '[object Proxy]'; /** * Checks if `value` is classified as a `Function` object. * * @static * @memberOf _ * @since 0.1.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a function, else `false`. * @example * * _.isFunction(_); * // => true * * _.isFunction(/abc/); * // => false */ function isFunction(value) { if (!isObject_1(value)) { return false; } // The use of `Object#toString` avoids issues with the `typeof` operator // in Safari 9 which returns 'object' for typed arrays and other constructors. var tag = _baseGetTag(value); return tag == funcTag$1 || tag == genTag || tag == asyncTag || tag == proxyTag; } var isFunction_1 = isFunction; /** Used to detect overreaching core-js shims. */ var coreJsData = _root['__core-js_shared__']; var _coreJsData = coreJsData; /** Used to detect methods masquerading as native. */ var maskSrcKey = (function() { var uid = /[^.]+$/.exec(_coreJsData && _coreJsData.keys && _coreJsData.keys.IE_PROTO || ''); return uid ? ('Symbol(src)_1.' + uid) : ''; }()); /** * Checks if `func` has its source masked. * * @private * @param {Function} func The function to check. * @returns {boolean} Returns `true` if `func` is masked, else `false`. */ function isMasked(func) { return !!maskSrcKey && (maskSrcKey in func); } var _isMasked = isMasked; /** Used for built-in method references. */ var funcProto$2 = Function.prototype; /** Used to resolve the decompiled source of functions. */ var funcToString$2 = funcProto$2.toString; /** * Converts `func` to its source code. * * @private * @param {Function} func The function to convert. * @returns {string} Returns the source code. */ function toSource(func) { if (func != null) { try { return funcToString$2.call(func); } catch (e) {} try { return (func + ''); } catch (e) {} } return ''; } var _toSource = toSource; /** * Used to match `RegExp` * [syntax characters](http://ecma-international.org/ecma-262/7.0/#sec-patterns). */ var reRegExpChar = /[\\^$.*+?()[\]{}|]/g; /** Used to detect host constructors (Safari). */ var reIsHostCtor = /^\[object .+?Constructor\]$/; /** Used for built-in method references. */ var funcProto$1 = Function.prototype, objectProto$c = Object.prototype; /** Used to resolve the decompiled source of functions. */ var funcToString$1 = funcProto$1.toString; /** Used to check objects for own properties. */ var hasOwnProperty$a = objectProto$c.hasOwnProperty; /** Used to detect if a method is native. */ var reIsNative = RegExp('^' + funcToString$1.call(hasOwnProperty$a).replace(reRegExpChar, '\\$&') .replace(/hasOwnProperty|(function).*?(?=\\\()| for .+?(?=\\\])/g, '$1.*?') + '$' ); /** * The base implementation of `_.isNative` without bad shim checks. * * @private * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a native function, * else `false`. */ function baseIsNative(value) { if (!isObject_1(value) || _isMasked(value)) { return false; } var pattern = isFunction_1(value) ? reIsNative : reIsHostCtor; return pattern.test(_toSource(value)); } var _baseIsNative = baseIsNative; /** * Gets the value at `key` of `object`. * * @private * @param {Object} [object] The object to query. * @param {string} key The key of the property to get. * @returns {*} Returns the property value. */ function getValue(object, key) { return object == null ? undefined : object[key]; } var _getValue = getValue; /** * Gets the native function at `key` of `object`. * * @private * @param {Object} object The object to query. * @param {string} key The key of the method to get. * @returns {*} Returns the function if it's native, else `undefined`. */ function getNative(object, key) { var value = _getValue(object, key); return _baseIsNative(value) ? value : undefined; } var _getNative = getNative; /* Built-in method references that are verified to be native. */ var Map = _getNative(_root, 'Map'); var _Map = Map; /* Built-in method references that are verified to be native. */ var nativeCreate = _getNative(Object, 'create'); var _nativeCreate = nativeCreate; /** * Removes all key-value entries from the hash. * * @private * @name clear * @memberOf Hash */ function hashClear() { this.__data__ = _nativeCreate ? _nativeCreate(null) : {}; this.size = 0; } var _hashClear = hashClear; /** * Removes `key` and its value from the hash. * * @private * @name delete * @memberOf Hash * @param {Object} hash The hash to modify. * @param {string} key The key of the value to remove. * @returns {boolean} Returns `true` if the entry was removed, else `false`. */ function hashDelete(key) { var result = this.has(key) && delete this.__data__[key]; this.size -= result ? 1 : 0; return result; } var _hashDelete = hashDelete; /** Used to stand-in for `undefined` hash values. */ var HASH_UNDEFINED$2 = '__lodash_hash_undefined__'; /** Used for built-in method references. */ var objectProto$b = Object.prototype; /** Used to check objects for own properties. */ var hasOwnProperty$9 = objectProto$b.hasOwnProperty; /** * Gets the hash value for `key`. * * @private * @name get * @memberOf Hash * @param {string} key The key of the value to get. * @returns {*} Returns the entry value. */ function hashGet(key) { var data = this.__data__; if (_nativeCreate) { var result = data[key]; return result === HASH_UNDEFINED$2 ? undefined : result; } return hasOwnProperty$9.call(data, key) ? data[key] : undefined; } var _hashGet = hashGet; /** Used for built-in method references. */ var objectProto$a = Object.prototype; /** Used to check objects for own properties. */ var hasOwnProperty$8 = objectProto$a.hasOwnProperty; /** * Checks if a hash value for `key` exists. * * @private * @name has * @memberOf Hash * @param {string} key The key of the entry to check. * @returns {boolean} Returns `true` if an entry for `key` exists, else `false`. */ function hashHas(key) { var data = this.__data__; return _nativeCreate ? (data[key] !== undefined) : hasOwnProperty$8.call(data, key); } var _hashHas = hashHas; /** Used to stand-in for `undefined` hash values. */ var HASH_UNDEFINED$1 = '__lodash_hash_undefined__'; /** * Sets the hash `key` to `value`. * * @private * @name set * @memberOf Hash * @param {string} key The key of the value to set. * @param {*} value The value to set. * @returns {Object} Returns the hash instance. */ function hashSet(key, value) { var data = this.__data__; this.size += this.has(key) ? 0 : 1; data[key] = (_nativeCreate && value === undefined) ? HASH_UNDEFINED$1 : value; return this; } var _hashSet = hashSet; /** * Creates a hash object. * * @private * @constructor * @param {Array} [entries] The key-value pairs to cache. */ function Hash(entries) { var index = -1, length = entries == null ? 0 : entries.length; this.clear(); while (++index < length) { var entry = entries[index]; this.set(entry[0], entry[1]); } } // Add methods to `Hash`. Hash.prototype.clear = _hashClear; Hash.prototype['delete'] = _hashDelete; Hash.prototype.get = _hashGet; Hash.prototype.has = _hashHas; Hash.prototype.set = _hashSet; var _Hash = Hash; /** * Removes all key-value entries from the map. * * @private * @name clear * @memberOf MapCache */ function mapCacheClear() { this.size = 0; this.__data__ = { 'hash': new _Hash, 'map': new (_Map || _ListCache), 'string': new _Hash }; } var _mapCacheClear = mapCacheClear; /** * Checks if `value` is suitable for use as unique object key. * * @private * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is suitable, else `false`. */ function isKeyable(value) { var type = typeof value; return (type == 'string' || type == 'number' || type == 'symbol' || type == 'boolean') ? (value !== '__proto__') : (value === null); } var _isKeyable = isKeyable; /** * Gets the data for `map`. * * @private * @param {Object} map The map to query. * @param {string} key The reference key. * @returns {*} Returns the map data. */ function getMapData(map, key) { var data = map.__data__; return _isKeyable(key) ? data[typeof key == 'string' ? 'string' : 'hash'] : data.map; } var _getMapData = getMapData; /** * Removes `key` and its value from the map. * * @private * @name delete * @memberOf MapCache * @param {string} key The key of the value to remove. * @returns {boolean} Returns `true` if the entry was removed, else `false`. */ function mapCacheDelete(key) { var result = _getMapData(this, key)['delete'](key); this.size -= result ? 1 : 0; return result; } var _mapCacheDelete = mapCacheDelete; /** * Gets the map value for `key`. * * @private * @name get * @memberOf MapCache * @param {string} key The key of the value to get. * @returns {*} Returns the entry value. */ function mapCacheGet(key) { return _getMapData(this, key).get(key); } var _mapCacheGet = mapCacheGet; /** * Checks if a map value for `key` exists. * * @private * @name has * @memberOf MapCache * @param {string} key The key of the entry to check. * @returns {boolean} Returns `true` if an entry for `key` exists, else `false`. */ function mapCacheHas(key) { return _getMapData(this, key).has(key); } var _mapCacheHas = mapCacheHas; /** * Sets the map `key` to `value`. * * @private * @name set * @memberOf MapCache * @param {string} key The key of the value to set. * @param {*} value The value to set. * @returns {Object} Returns the map cache instance. */ function mapCacheSet(key, value) { var data = _getMapData(this, key), size = data.size; data.set(key, value); this.size += data.size == size ? 0 : 1; return this; } var _mapCacheSet = mapCacheSet; /** * Creates a map cache object to store key-value pairs. * * @private * @constructor * @param {Array} [entries] The key-value pairs to cache. */ function MapCache(entries) { var index = -1, length = entries == null ? 0 : entries.length; this.clear(); while (++index < length) { var entry = entries[index]; this.set(entry[0], entry[1]); } } // Add methods to `MapCache`. MapCache.prototype.clear = _mapCacheClear; MapCache.prototype['delete'] = _mapCacheDelete; MapCache.prototype.get = _mapCacheGet; MapCache.prototype.has = _mapCacheHas; MapCache.prototype.set = _mapCacheSet; var _MapCache = MapCache; /** Used as the size to enable large array optimizations. */ var LARGE_ARRAY_SIZE = 200; /** * Sets the stack `key` to `value`. * * @private * @name set * @memberOf Stack * @param {string} key The key of the value to set. * @param {*} value The value to set. * @returns {Object} Returns the stack cache instance. */ function stackSet(key, value) { var data = this.__data__; if (data instanceof _ListCache) { var pairs = data.__data__; if (!_Map || (pairs.length < LARGE_ARRAY_SIZE - 1)) { pairs.push([key, value]); this.size = ++data.size; return this; } data = this.__data__ = new _MapCache(pairs); } data.set(key, value); this.size = data.size; return this; } var _stackSet = stackSet; /** * Creates a stack cache object to store key-value pairs. * * @private * @constructor * @param {Array} [entries] The key-value pairs to cache. */ function Stack(entries) { var data = this.__data__ = new _ListCache(entries); this.size = data.size; } // Add methods to `Stack`. Stack.prototype.clear = _stackClear; Stack.prototype['delete'] = _stackDelete; Stack.prototype.get = _stackGet; Stack.prototype.has = _stackHas; Stack.prototype.set = _stackSet; var _Stack = Stack; /** Used to stand-in for `undefined` hash values. */ var HASH_UNDEFINED = '__lodash_hash_undefined__'; /** * Adds `value` to the array cache. * * @private * @name add * @memberOf SetCache * @alias push * @param {*} value The value to cache. * @returns {Object} Returns the cache instance. */ function setCacheAdd(value) { this.__data__.set(value, HASH_UNDEFINED); return this; } var _setCacheAdd = setCacheAdd; /** * Checks if `value` is in the array cache. * * @private * @name has * @memberOf SetCache * @param {*} value The value to search for. * @returns {number} Returns `true` if `value` is found, else `false`. */ function setCacheHas(value) { return this.__data__.has(value); } var _setCacheHas = setCacheHas; /** * * Creates an array cache object to store unique values. * * @private * @constructor * @param {Array} [values] The values to cache. */ function SetCache(values) { var index = -1, length = values == null ? 0 : values.length; this.__data__ = new _MapCache; while (++index < length) { this.add(values[index]); } } // Add methods to `SetCache`. SetCache.prototype.add = SetCache.prototype.push = _setCacheAdd; SetCache.prototype.has = _setCacheHas; var _SetCache = SetCache; /** * A specialized version of `_.some` for arrays without support for iteratee * shorthands. * * @private * @param {Array} [array] The array to iterate over. * @param {Function} predicate The function invoked per iteration. * @returns {boolean} Returns `true` if any element passes the predicate check, * else `false`. */ function arraySome(array, predicate) { var index = -1, length = array == null ? 0 : array.length; while (++index < length) { if (predicate(array[index], index, array)) { return true; } } return false; } var _arraySome = arraySome; /** * Checks if a `cache` value for `key` exists. * * @private * @param {Object} cache The cache to query. * @param {string} key The key of the entry to check. * @returns {boolean} Returns `true` if an entry for `key` exists, else `false`. */ function cacheHas(cache, key) { return cache.has(key); } var _cacheHas = cacheHas; /** Used to compose bitmasks for value comparisons. */ var COMPARE_PARTIAL_FLAG$3 = 1, COMPARE_UNORDERED_FLAG$1 = 2; /** * A specialized version of `baseIsEqualDeep` for arrays with support for * partial deep comparisons. * * @private * @param {Array} array The array to compare. * @param {Array} other The other array to compare. * @param {number} bitmask The bitmask flags. See `baseIsEqual` for more details. * @param {Function} customizer The function to customize comparisons. * @param {Function} equalFunc The function to determine equivalents of values. * @param {Object} stack Tracks traversed `array` and `other` objects. * @returns {boolean} Returns `true` if the arrays are equivalent, else `false`. */ function equalArrays(array, other, bitmask, customizer, equalFunc, stack) { var isPartial = bitmask & COMPARE_PARTIAL_FLAG$3, arrLength = array.length, othLength = other.length; if (arrLength != othLength && !(isPartial && othLength > arrLength)) { return false; } // Check that cyclic values are equal. var arrStacked = stack.get(array); var othStacked = stack.get(other); if (arrStacked && othStacked) { return arrStacked == other && othStacked == array; } var index = -1, result = true, seen = (bitmask & COMPARE_UNORDERED_FLAG$1) ? new _SetCache : undefined; stack.set(array, other); stack.set(other, array); // Ignore non-index properties. while (++index < arrLength) { var arrValue = array[index], othValue = other[index]; if (customizer) { var compared = isPartial ? customizer(othValue, arrValue, index, other, array, stack) : customizer(arrValue, othValue, index, array, other, stack); } if (compared !== undefined) { if (compared) { continue; } result = false; break; } // Recursively compare arrays (susceptible to call stack limits). if (seen) { if (!_arraySome(other, function(othValue, othIndex) { if (!_cacheHas(seen, othIndex) && (arrValue === othValue || equalFunc(arrValue, othValue, bitmask, customizer, stack))) { return seen.push(othIndex); } })) { result = false; break; } } else if (!( arrValue === othValue || equalFunc(arrValue, othValue, bitmask, customizer, stack) )) { result = false; break; } } stack['delete'](array); stack['delete'](other); return result; } var _equalArrays = equalArrays; /** Built-in value references. */ var Uint8Array = _root.Uint8Array; var _Uint8Array = Uint8Array; /** * Converts `map` to its key-value pairs. * * @private * @param {Object} map The map to convert. * @returns {Array} Returns the key-value pairs. */ function mapToArray(map) { var index = -1, result = Array(map.size); map.forEach(function(value, key) { result[++index] = [key, value]; }); return result; } var _mapToArray = mapToArray; /** * Converts `set` to an array of its values. * * @private * @param {Object} set The set to convert. * @returns {Array} Returns the values. */ function setToArray(set) { var index = -1, result = Array(set.size); set.forEach(function(value) { result[++index] = value; }); return result; } var _setToArray = setToArray; /** Used to compose bitmasks for value comparisons. */ var COMPARE_PARTIAL_FLAG$2 = 1, COMPARE_UNORDERED_FLAG = 2; /** `Object#toString` result references. */ var boolTag$1 = '[object Boolean]', dateTag$1 = '[object Date]', errorTag$1 = '[object Error]', mapTag$2 = '[object Map]', numberTag$1 = '[object Number]', regexpTag$1 = '[object RegExp]', setTag$2 = '[object Set]', stringTag$1 = '[object String]', symbolTag = '[object Symbol]'; var arrayBufferTag$1 = '[object ArrayBuffer]', dataViewTag$2 = '[object DataView]'; /** Used to convert symbols to primitives and strings. */ var symbolProto = _Symbol ? _Symbol.prototype : undefined, symbolValueOf = symbolProto ? symbolProto.valueOf : undefined; /** * A specialized version of `baseIsEqualDeep` for comparing objects of * the same `toStringTag`. * * **Note:** This function only supports comparing values with tags of * `Boolean`, `Date`, `Error`, `Number`, `RegExp`, or `String`. * * @private * @param {Object} object The object to compare. * @param {Object} other The other object to compare. * @param {string} tag The `toStringTag` of the objects to compare. * @param {number} bitmask The bitmask flags. See `baseIsEqual` for more details. * @param {Function} customizer The function to customize comparisons. * @param {Function} equalFunc The function to determine equivalents of values. * @param {Object} stack Tracks traversed `object` and `other` objects. * @returns {boolean} Returns `true` if the objects are equivalent, else `false`. */ function equalByTag(object, other, tag, bitmask, customizer, equalFunc, stack) { switch (tag) { case dataViewTag$2: if ((object.byteLength != other.byteLength) || (object.byteOffset != other.byteOffset)) { return false; } object = object.buffer; other = other.buffer; case arrayBufferTag$1: if ((object.byteLength != other.byteLength) || !equalFunc(new _Uint8Array(object), new _Uint8Array(other))) { return false; } return true; case boolTag$1: case dateTag$1: case numberTag$1: // Coerce booleans to `1` or `0` and dates to milliseconds. // Invalid dates are coerced to `NaN`. return eq_1(+object, +other); case errorTag$1: return object.name == other.name && object.message == other.message; case regexpTag$1: case stringTag$1: // Coerce regexes to strings and treat strings, primitives and objects, // as equal. See http://www.ecma-international.org/ecma-262/7.0/#sec-regexp.prototype.tostring // for more details. return object == (other + ''); case mapTag$2: var convert = _mapToArray; case setTag$2: var isPartial = bitmask & COMPARE_PARTIAL_FLAG$2; convert || (convert = _setToArray); if (object.size != other.size && !isPartial) { return false; } // Assume cyclic values are equal. var stacked = stack.get(object); if (stacked) { return stacked == other; } bitmask |= COMPARE_UNORDERED_FLAG; // Recursively compare objects (susceptible to call stack limits). stack.set(object, other); var result = _equalArrays(convert(object), convert(other), bitmask, customizer, equalFunc, stack); stack['delete'](object); return result; case symbolTag: if (symbolValueOf) { return symbolValueOf.call(object) == symbolValueOf.call(other); } } return false; } var _equalByTag = equalByTag; /** * Appends the elements of `values` to `array`. * * @private * @param {Array} array The array to modify. * @param {Array} values The values to append. * @returns {Array} Returns `array`. */ function arrayPush(array, values) { var index = -1, length = values.length, offset = array.length; while (++index < length) { array[offset + index] = values[index]; } return array; } var _arrayPush = arrayPush; /** * Checks if `value` is classified as an `Array` object. * * @static * @memberOf _ * @since 0.1.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is an array, else `false`. * @example * * _.isArray([1, 2, 3]); * // => true * * _.isArray(document.body.children); * // => false * * _.isArray('abc'); * // => false * * _.isArray(_.noop); * // => false */ var isArray = Array.isArray; var isArray_1 = isArray; /** * The base implementation of `getAllKeys` and `getAllKeysIn` which uses * `keysFunc` and `symbolsFunc` to get the enumerable property names and * symbols of `object`. * * @private * @param {Object} object The object to query. * @param {Function} keysFunc The function to get the keys of `object`. * @param {Function} symbolsFunc The function to get the symbols of `object`. * @returns {Array} Returns the array of property names and symbols. */ function baseGetAllKeys(object, keysFunc, symbolsFunc) { var result = keysFunc(object); return isArray_1(object) ? result : _arrayPush(result, symbolsFunc(object)); } var _baseGetAllKeys = baseGetAllKeys; /** * A specialized version of `_.filter` for arrays without support for * iteratee shorthands. * * @private * @param {Array} [array] The array to iterate over. * @param {Function} predicate The function invoked per iteration. * @returns {Array} Returns the new filtered array. */ function arrayFilter(array, predicate) { var index = -1, length = array == null ? 0 : array.length, resIndex = 0, result = []; while (++index < length) { var value = array[index]; if (predicate(value, index, array)) { result[resIndex++] = value; } } return result; } var _arrayFilter = arrayFilter; /** * This method returns a new empty array. * * @static * @memberOf _ * @since 4.13.0 * @category Util * @returns {Array} Returns the new empty array. * @example * * var arrays = _.times(2, _.stubArray); * * console.log(arrays); * // => [[], []] * * console.log(arrays[0] === arrays[1]); * // => false */ function stubArray() { return []; } var stubArray_1 = stubArray; /** Used for built-in method references. */ var objectProto$9 = Object.prototype; /** Built-in value references. */ var propertyIsEnumerable$1 = objectProto$9.propertyIsEnumerable; /* Built-in method references for those with the same name as other `lodash` methods. */ var nativeGetSymbols = Object.getOwnPropertySymbols; /** * Creates an array of the own enumerable symbols of `object`. * * @private * @param {Object} object The object to query. * @returns {Array} Returns the array of symbols. */ var getSymbols = !nativeGetSymbols ? stubArray_1 : function(object) { if (object == null) { return []; } object = Object(object); return _arrayFilter(nativeGetSymbols(object), function(symbol) { return propertyIsEnumerable$1.call(object, symbol); }); }; var _getSymbols = getSymbols; /** * The base implementation of `_.times` without support for iteratee shorthands * or max array length checks. * * @private * @param {number} n The number of times to invoke `iteratee`. * @param {Function} iteratee The function invoked per iteration. * @returns {Array} Returns the array of results. */ function baseTimes(n, iteratee) { var index = -1, result = Array(n); while (++index < n) { result[index] = iteratee(index); } return result; } var _baseTimes = baseTimes; /** * Checks if `value` is object-like. A value is object-like if it's not `null` * and has a `typeof` result of "object". * * @static * @memberOf _ * @since 4.0.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is object-like, else `false`. * @example * * _.isObjectLike({}); * // => true * * _.isObjectLike([1, 2, 3]); * // => true * * _.isObjectLike(_.noop); * // => false * * _.isObjectLike(null); * // => false */ function isObjectLike(value) { return value != null && typeof value == 'object'; } var isObjectLike_1 = isObjectLike; /** `Object#toString` result references. */ var argsTag$2 = '[object Arguments]'; /** * The base implementation of `_.isArguments`. * * @private * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is an `arguments` object, */ function baseIsArguments(value) { return isObjectLike_1(value) && _baseGetTag(value) == argsTag$2; } var _baseIsArguments = baseIsArguments; /** Used for built-in method references. */ var objectProto$8 = Object.prototype; /** Used to check objects for own properties. */ var hasOwnProperty$7 = objectProto$8.hasOwnProperty; /** Built-in value references. */ var propertyIsEnumerable = objectProto$8.propertyIsEnumerable; /** * Checks if `value` is likely an `arguments` object. * * @static * @memberOf _ * @since 0.1.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is an `arguments` object, * else `false`. * @example * * _.isArguments(function() { return arguments; }()); * // => true * * _.isArguments([1, 2, 3]); * // => false */ var isArguments = _baseIsArguments(function() { return arguments; }()) ? _baseIsArguments : function(value) { return isObjectLike_1(value) && hasOwnProperty$7.call(value, 'callee') && !propertyIsEnumerable.call(value, 'callee'); }; var isArguments_1 = isArguments; /** * This method returns `false`. * * @static * @memberOf _ * @since 4.13.0 * @category Util * @returns {boolean} Returns `false`. * @example * * _.times(2, _.stubFalse); * // => [false, false] */ function stubFalse() { return false; } var stubFalse_1 = stubFalse; var isBuffer_1 = createCommonjsModule(function (module, exports) { /** Detect free variable `exports`. */ var freeExports = exports && !exports.nodeType && exports; /** Detect free variable `module`. */ var freeModule = freeExports && 'object' == 'object' && module && !module.nodeType && module; /** Detect the popular CommonJS extension `module.exports`. */ var moduleExports = freeModule && freeModule.exports === freeExports; /** Built-in value references. */ var Buffer = moduleExports ? _root.Buffer : undefined; /* Built-in method references for those with the same name as other `lodash` methods. */ var nativeIsBuffer = Buffer ? Buffer.isBuffer : undefined; /** * Checks if `value` is a buffer. * * @static * @memberOf _ * @since 4.3.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a buffer, else `false`. * @example * * _.isBuffer(new Buffer(2)); * // => true * * _.isBuffer(new Uint8Array(2)); * // => false */ var isBuffer = nativeIsBuffer || stubFalse_1; module.exports = isBuffer; }); /** Used as references for various `Number` constants. */ var MAX_SAFE_INTEGER$1 = 9007199254740991; /** Used to detect unsigned integer values. */ var reIsUint = /^(?:0|[1-9]\d*)$/; /** * Checks if `value` is a valid array-like index. * * @private * @param {*} value The value to check. * @param {number} [length=MAX_SAFE_INTEGER] The upper bounds of a valid index. * @returns {boolean} Returns `true` if `value` is a valid index, else `false`. */ function isIndex(value, length) { var type = typeof value; length = length == null ? MAX_SAFE_INTEGER$1 : length; return !!length && (type == 'number' || (type != 'symbol' && reIsUint.test(value))) && (value > -1 && value % 1 == 0 && value < length); } var _isIndex = isIndex; /** Used as references for various `Number` constants. */ var MAX_SAFE_INTEGER = 9007199254740991; /** * Checks if `value` is a valid array-like length. * * **Note:** This method is loosely based on * [`ToLength`](http://ecma-international.org/ecma-262/7.0/#sec-tolength). * * @static * @memberOf _ * @since 4.0.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a valid length, else `false`. * @example * * _.isLength(3); * // => true * * _.isLength(Number.MIN_VALUE); * // => false * * _.isLength(Infinity); * // => false * * _.isLength('3'); * // => false */ function isLength(value) { return typeof value == 'number' && value > -1 && value % 1 == 0 && value <= MAX_SAFE_INTEGER; } var isLength_1 = isLength; /** `Object#toString` result references. */ var argsTag$1 = '[object Arguments]', arrayTag$1 = '[object Array]', boolTag = '[object Boolean]', dateTag = '[object Date]', errorTag = '[object Error]', funcTag = '[object Function]', mapTag$1 = '[object Map]', numberTag = '[object Number]', objectTag$3 = '[object Object]', regexpTag = '[object RegExp]', setTag$1 = '[object Set]', stringTag = '[object String]', weakMapTag$1 = '[object WeakMap]'; var arrayBufferTag = '[object ArrayBuffer]', dataViewTag$1 = '[object DataView]', float32Tag = '[object Float32Array]', float64Tag = '[object Float64Array]', int8Tag = '[object Int8Array]', int16Tag = '[object Int16Array]', int32Tag = '[object Int32Array]', uint8Tag = '[object Uint8Array]', uint8ClampedTag = '[object Uint8ClampedArray]', uint16Tag = '[object Uint16Array]', uint32Tag = '[object Uint32Array]'; /** Used to identify `toStringTag` values of typed arrays. */ var typedArrayTags = {}; typedArrayTags[float32Tag] = typedArrayTags[float64Tag] = typedArrayTags[int8Tag] = typedArrayTags[int16Tag] = typedArrayTags[int32Tag] = typedArrayTags[uint8Tag] = typedArrayTags[uint8ClampedTag] = typedArrayTags[uint16Tag] = typedArrayTags[uint32Tag] = true; typedArrayTags[argsTag$1] = typedArrayTags[arrayTag$1] = typedArrayTags[arrayBufferTag] = typedArrayTags[boolTag] = typedArrayTags[dataViewTag$1] = typedArrayTags[dateTag] = typedArrayTags[errorTag] = typedArrayTags[funcTag] = typedArrayTags[mapTag$1] = typedArrayTags[numberTag] = typedArrayTags[objectTag$3] = typedArrayTags[regexpTag] = typedArrayTags[setTag$1] = typedArrayTags[stringTag] = typedArrayTags[weakMapTag$1] = false; /** * The base implementation of `_.isTypedArray` without Node.js optimizations. * * @private * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a typed array, else `false`. */ function baseIsTypedArray(value) { return isObjectLike_1(value) && isLength_1(value.length) && !!typedArrayTags[_baseGetTag(value)]; } var _baseIsTypedArray = baseIsTypedArray; /** * The base implementation of `_.unary` without support for storing metadata. * * @private * @param {Function} func The function to cap arguments for. * @returns {Function} Returns the new capped function. */ function baseUnary(func) { return function(value) { return func(value); }; } var _baseUnary = baseUnary; var _nodeUtil = createCommonjsModule(function (module, exports) { /** Detect free variable `exports`. */ var freeExports = exports && !exports.nodeType && exports; /** Detect free variable `module`. */ var freeModule = freeExports && 'object' == 'object' && module && !module.nodeType && module; /** Detect the popular CommonJS extension `module.exports`. */ var moduleExports = freeModule && freeModule.exports === freeExports; /** Detect free variable `process` from Node.js. */ var freeProcess = moduleExports && _freeGlobal.process; /** Used to access faster Node.js helpers. */ var nodeUtil = (function() { try { // Use `util.types` for Node.js 10+. var types = freeModule && freeModule.require && freeModule.require('util').types; if (types) { return types; } // Legacy `process.binding('util')` for Node.js < 10. return freeProcess && freeProcess.binding && freeProcess.binding('util'); } catch (e) {} }()); module.exports = nodeUtil; }); /* Node.js helper references. */ var nodeIsTypedArray = _nodeUtil && _nodeUtil.isTypedArray; /** * Checks if `value` is classified as a typed array. * * @static * @memberOf _ * @since 3.0.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a typed array, else `false`. * @example * * _.isTypedArray(new Uint8Array); * // => true * * _.isTypedArray([]); * // => false */ var isTypedArray = nodeIsTypedArray ? _baseUnary(nodeIsTypedArray) : _baseIsTypedArray; var isTypedArray_1 = isTypedArray; /** Used for built-in method references. */ var objectProto$7 = Object.prototype; /** Used to check objects for own properties. */ var hasOwnProperty$6 = objectProto$7.hasOwnProperty; /** * Creates an array of the enumerable property names of the array-like `value`. * * @private * @param {*} value The value to query. * @param {boolean} inherited Specify returning inherited property names. * @returns {Array} Returns the array of property names. */ function arrayLikeKeys(value, inherited) { var isArr = isArray_1(value), isArg = !isArr && isArguments_1(value), isBuff = !isArr && !isArg && isBuffer_1(value), isType = !isArr && !isArg && !isBuff && isTypedArray_1(value), skipIndexes = isArr || isArg || isBuff || isType, result = skipIndexes ? _baseTimes(value.length, String) : [], length = result.length; for (var key in value) { if ((inherited || hasOwnProperty$6.call(value, key)) && !(skipIndexes && ( // Safari 9 has enumerable `arguments.length` in strict mode. key == 'length' || // Node.js 0.10 has enumerable non-index properties on buffers. (isBuff && (key == 'offset' || key == 'parent')) || // PhantomJS 2 has enumerable non-index properties on typed arrays. (isType && (key == 'buffer' || key == 'byteLength' || key == 'byteOffset')) || // Skip index properties. _isIndex(key, length) ))) { result.push(key); } } return result; } var _arrayLikeKeys = arrayLikeKeys; /** Used for built-in method references. */ var objectProto$6 = Object.prototype; /** * Checks if `value` is likely a prototype object. * * @private * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a prototype, else `false`. */ function isPrototype(value) { var Ctor = value && value.constructor, proto = (typeof Ctor == 'function' && Ctor.prototype) || objectProto$6; return value === proto; } var _isPrototype = isPrototype; /** * Creates a unary function that invokes `func` with its argument transformed. * * @private * @param {Function} func The function to wrap. * @param {Function} transform The argument transform. * @returns {Function} Returns the new function. */ function overArg(func, transform) { return function(arg) { return func(transform(arg)); }; } var _overArg = overArg; /* Built-in method references for those with the same name as other `lodash` methods. */ var nativeKeys = _overArg(Object.keys, Object); var _nativeKeys = nativeKeys; /** Used for built-in method references. */ var objectProto$5 = Object.prototype; /** Used to check objects for own properties. */ var hasOwnProperty$5 = objectProto$5.hasOwnProperty; /** * The base implementation of `_.keys` which doesn't treat sparse arrays as dense. * * @private * @param {Object} object The object to query. * @returns {Array} Returns the array of property names. */ function baseKeys(object) { if (!_isPrototype(object)) { return _nativeKeys(object); } var result = []; for (var key in Object(object)) { if (hasOwnProperty$5.call(object, key) && key != 'constructor') { result.push(key); } } return result; } var _baseKeys = baseKeys; /** * Checks if `value` is array-like. A value is considered array-like if it's * not a function and has a `value.length` that's an integer greater than or * equal to `0` and less than or equal to `Number.MAX_SAFE_INTEGER`. * * @static * @memberOf _ * @since 4.0.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is array-like, else `false`. * @example * * _.isArrayLike([1, 2, 3]); * // => true * * _.isArrayLike(document.body.children); * // => true * * _.isArrayLike('abc'); * // => true * * _.isArrayLike(_.noop); * // => false */ function isArrayLike(value) { return value != null && isLength_1(value.length) && !isFunction_1(value); } var isArrayLike_1 = isArrayLike; /** * Creates an array of the own enumerable property names of `object`. * * **Note:** Non-object values are coerced to objects. See the * [ES spec](http://ecma-international.org/ecma-262/7.0/#sec-object.keys) * for more details. * * @static * @since 0.1.0 * @memberOf _ * @category Object * @param {Object} object The object to query. * @returns {Array} Returns the array of property names. * @example * * function Foo() { * this.a = 1; * this.b = 2; * } * * Foo.prototype.c = 3; * * _.keys(new Foo); * // => ['a', 'b'] (iteration order is not guaranteed) * * _.keys('hi'); * // => ['0', '1'] */ function keys(object) { return isArrayLike_1(object) ? _arrayLikeKeys(object) : _baseKeys(object); } var keys_1 = keys; /** * Creates an array of own enumerable property names and symbols of `object`. * * @private * @param {Object} object The object to query. * @returns {Array} Returns the array of property names and symbols. */ function getAllKeys(object) { return _baseGetAllKeys(object, keys_1, _getSymbols); } var _getAllKeys = getAllKeys; /** Used to compose bitmasks for value comparisons. */ var COMPARE_PARTIAL_FLAG$1 = 1; /** Used for built-in method references. */ var objectProto$4 = Object.prototype; /** Used to check objects for own properties. */ var hasOwnProperty$4 = objectProto$4.hasOwnProperty; /** * A specialized version of `baseIsEqualDeep` for objects with support for * partial deep comparisons. * * @private * @param {Object} object The object to compare. * @param {Object} other The other object to compare. * @param {number} bitmask The bitmask flags. See `baseIsEqual` for more details. * @param {Function} customizer The function to customize comparisons. * @param {Function} equalFunc The function to determine equivalents of values. * @param {Object} stack Tracks traversed `object` and `other` objects. * @returns {boolean} Returns `true` if the objects are equivalent, else `false`. */ function equalObjects(object, other, bitmask, customizer, equalFunc, stack) { var isPartial = bitmask & COMPARE_PARTIAL_FLAG$1, objProps = _getAllKeys(object), objLength = objProps.length, othProps = _getAllKeys(other), othLength = othProps.length; if (objLength != othLength && !isPartial) { return false; } var index = objLength; while (index--) { var key = objProps[index]; if (!(isPartial ? key in other : hasOwnProperty$4.call(other, key))) { return false; } } // Check that cyclic values are equal. var objStacked = stack.get(object); var othStacked = stack.get(other); if (objStacked && othStacked) { return objStacked == other && othStacked == object; } var result = true; stack.set(object, other); stack.set(other, object); var skipCtor = isPartial; while (++index < objLength) { key = objProps[index]; var objValue = object[key], othValue = other[key]; if (customizer) { var compared = isPartial ? customizer(othValue, objValue, key, other, object, stack) : customizer(objValue, othValue, key, object, other, stack); } // Recursively compare objects (susceptible to call stack limits). if (!(compared === undefined ? (objValue === othValue || equalFunc(objValue, othValue, bitmask, customizer, stack)) : compared )) { result = false; break; } skipCtor || (skipCtor = key == 'constructor'); } if (result && !skipCtor) { var objCtor = object.constructor, othCtor = other.constructor; // Non `Object` object instances with different constructors are not equal. if (objCtor != othCtor && ('constructor' in object && 'constructor' in other) && !(typeof objCtor == 'function' && objCtor instanceof objCtor && typeof othCtor == 'function' && othCtor instanceof othCtor)) { result = false; } } stack['delete'](object); stack['delete'](other); return result; } var _equalObjects = equalObjects; /* Built-in method references that are verified to be native. */ var DataView = _getNative(_root, 'DataView'); var _DataView = DataView; /* Built-in method references that are verified to be native. */ var Promise$1 = _getNative(_root, 'Promise'); var _Promise = Promise$1; /* Built-in method references that are verified to be native. */ var Set$1 = _getNative(_root, 'Set'); var _Set = Set$1; /* Built-in method references that are verified to be native. */ var WeakMap = _getNative(_root, 'WeakMap'); var _WeakMap = WeakMap; /** `Object#toString` result references. */ var mapTag = '[object Map]', objectTag$2 = '[object Object]', promiseTag = '[object Promise]', setTag = '[object Set]', weakMapTag = '[object WeakMap]'; var dataViewTag = '[object DataView]'; /** Used to detect maps, sets, and weakmaps. */ var dataViewCtorString = _toSource(_DataView), mapCtorString = _toSource(_Map), promiseCtorString = _toSource(_Promise), setCtorString = _toSource(_Set), weakMapCtorString = _toSource(_WeakMap); /** * Gets the `toStringTag` of `value`. * * @private * @param {*} value The value to query. * @returns {string} Returns the `toStringTag`. */ var getTag = _baseGetTag; // Fallback for data views, maps, sets, and weak maps in IE 11 and promises in Node.js < 6. if ((_DataView && getTag(new _DataView(new ArrayBuffer(1))) != dataViewTag) || (_Map && getTag(new _Map) != mapTag) || (_Promise && getTag(_Promise.resolve()) != promiseTag) || (_Set && getTag(new _Set) != setTag) || (_WeakMap && getTag(new _WeakMap) != weakMapTag)) { getTag = function(value) { var result = _baseGetTag(value), Ctor = result == objectTag$2 ? value.constructor : undefined, ctorString = Ctor ? _toSource(Ctor) : ''; if (ctorString) { switch (ctorString) { case dataViewCtorString: return dataViewTag; case mapCtorString: return mapTag; case promiseCtorString: return promiseTag; case setCtorString: return setTag; case weakMapCtorString: return weakMapTag; } } return result; }; } var _getTag = getTag; /** Used to compose bitmasks for value comparisons. */ var COMPARE_PARTIAL_FLAG = 1; /** `Object#toString` result references. */ var argsTag = '[object Arguments]', arrayTag = '[object Array]', objectTag$1 = '[object Object]'; /** Used for built-in method references. */ var objectProto$3 = Object.prototype; /** Used to check objects for own properties. */ var hasOwnProperty$3 = objectProto$3.hasOwnProperty; /** * A specialized version of `baseIsEqual` for arrays and objects which performs * deep comparisons and tracks traversed objects enabling objects with circular * references to be compared. * * @private * @param {Object} object The object to compare. * @param {Object} other The other object to compare. * @param {number} bitmask The bitmask flags. See `baseIsEqual` for more details. * @param {Function} customizer The function to customize comparisons. * @param {Function} equalFunc The function to determine equivalents of values. * @param {Object} [stack] Tracks traversed `object` and `other` objects. * @returns {boolean} Returns `true` if the objects are equivalent, else `false`. */ function baseIsEqualDeep(object, other, bitmask, customizer, equalFunc, stack) { var objIsArr = isArray_1(object), othIsArr = isArray_1(other), objTag = objIsArr ? arrayTag : _getTag(object), othTag = othIsArr ? arrayTag : _getTag(other); objTag = objTag == argsTag ? objectTag$1 : objTag; othTag = othTag == argsTag ? objectTag$1 : othTag; var objIsObj = objTag == objectTag$1, othIsObj = othTag == objectTag$1, isSameTag = objTag == othTag; if (isSameTag && isBuffer_1(object)) { if (!isBuffer_1(other)) { return false; } objIsArr = true; objIsObj = false; } if (isSameTag && !objIsObj) { stack || (stack = new _Stack); return (objIsArr || isTypedArray_1(object)) ? _equalArrays(object, other, bitmask, customizer, equalFunc, stack) : _equalByTag(object, other, objTag, bitmask, customizer, equalFunc, stack); } if (!(bitmask & COMPARE_PARTIAL_FLAG)) { var objIsWrapped = objIsObj && hasOwnProperty$3.call(object, '__wrapped__'), othIsWrapped = othIsObj && hasOwnProperty$3.call(other, '__wrapped__'); if (objIsWrapped || othIsWrapped) { var objUnwrapped = objIsWrapped ? object.value() : object, othUnwrapped = othIsWrapped ? other.value() : other; stack || (stack = new _Stack); return equalFunc(objUnwrapped, othUnwrapped, bitmask, customizer, stack); } } if (!isSameTag) { return false; } stack || (stack = new _Stack); return _equalObjects(object, other, bitmask, customizer, equalFunc, stack); } var _baseIsEqualDeep = baseIsEqualDeep; /** * The base implementation of `_.isEqual` which supports partial comparisons * and tracks traversed objects. * * @private * @param {*} value The value to compare. * @param {*} other The other value to compare. * @param {boolean} bitmask The bitmask flags. * 1 - Unordered comparison * 2 - Partial comparison * @param {Function} [customizer] The function to customize comparisons. * @param {Object} [stack] Tracks traversed `value` and `other` objects. * @returns {boolean} Returns `true` if the values are equivalent, else `false`. */ function baseIsEqual(value, other, bitmask, customizer, stack) { if (value === other) { return true; } if (value == null || other == null || (!isObjectLike_1(value) && !isObjectLike_1(other))) { return value !== value && other !== other; } return _baseIsEqualDeep(value, other, bitmask, customizer, baseIsEqual, stack); } var _baseIsEqual = baseIsEqual; /** * Performs a deep comparison between two values to determine if they are * equivalent. * * **Note:** This method supports comparing arrays, array buffers, booleans, * date objects, error objects, maps, numbers, `Object` objects, regexes, * sets, strings, symbols, and typed arrays. `Object` objects are compared * by their own, not inherited, enumerable properties. Functions and DOM * nodes are compared by strict equality, i.e. `===`. * * @static * @memberOf _ * @since 0.1.0 * @category Lang * @param {*} value The value to compare. * @param {*} other The other value to compare. * @returns {boolean} Returns `true` if the values are equivalent, else `false`. * @example * * var object = { 'a': 1 }; * var other = { 'a': 1 }; * * _.isEqual(object, other); * // => true * * object === other; * // => false */ function isEqual(value, other) { return _baseIsEqual(value, other); } var isEqual_1 = isEqual; function getInternetExplorerVersion() { var ua = window.navigator.userAgent; var msie = ua.indexOf('MSIE '); if (msie > 0) { // IE 10 or older => return version number return parseInt(ua.substring(msie + 5, ua.indexOf('.', msie)), 10); } var trident = ua.indexOf('Trident/'); if (trident > 0) { // IE 11 => return version number var rv = ua.indexOf('rv:'); return parseInt(ua.substring(rv + 3, ua.indexOf('.', rv)), 10); } var edge = ua.indexOf('Edge/'); if (edge > 0) { // Edge (IE 12+) => return version number return parseInt(ua.substring(edge + 5, ua.indexOf('.', edge)), 10); } // other browser return -1; } // let isIE; function initCompat () { if (!initCompat.init) { initCompat.init = true; isIE = getInternetExplorerVersion() !== -1; } } var script$9 = { name: 'ResizeObserver', props: { emitOnMount: { type: Boolean, default: false, }, ignoreWidth: { type: Boolean, default: false, }, ignoreHeight: { type: Boolean, default: false, }, }, mounted () { initCompat(); this.$nextTick(() => { this._w = this.$el.offsetWidth; this._h = this.$el.offsetHeight; if (this.emitOnMount) { this.emitSize(); } }); const object = document.createElement('object'); this._resizeObject = object; object.setAttribute('aria-hidden', 'true'); object.setAttribute('tabindex', -1); object.onload = this.addResizeHandlers; object.type = 'text/html'; if (isIE) { this.$el.appendChild(object); } object.data = 'about:blank'; if (!isIE) { this.$el.appendChild(object); } }, beforeDestroy () { this.removeResizeHandlers(); }, methods: { compareAndNotify () { if ((!this.ignoreWidth && this._w !== this.$el.offsetWidth) || (!this.ignoreHeight && this._h !== this.$el.offsetHeight)) { this._w = this.$el.offsetWidth; this._h = this.$el.offsetHeight; this.emitSize(); } }, emitSize () { this.$emit('notify', { width: this._w, height: this._h, }); }, addResizeHandlers () { this._resizeObject.contentDocument.defaultView.addEventListener('resize', this.compareAndNotify); this.compareAndNotify(); }, removeResizeHandlers () { if (this._resizeObject && this._resizeObject.onload) { if (!isIE && this._resizeObject.contentDocument) { this._resizeObject.contentDocument.defaultView.removeEventListener('resize', this.compareAndNotify); } this.$el.removeChild(this._resizeObject); this._resizeObject.onload = null; this._resizeObject = null; } }, }, }; function normalizeComponent$2(template, style, script, scopeId, isFunctionalTemplate, moduleIdentifier /* server only */ , shadowMode, createInjector, createInjectorSSR, createInjectorShadow) { if (typeof shadowMode !== 'boolean') { createInjectorSSR = createInjector; createInjector = shadowMode; shadowMode = false; } // Vue.extend constructor export interop. var options = typeof script === 'function' ? script.options : script; // render functions if (template && template.render) { options.render = template.render; options.staticRenderFns = template.staticRenderFns; options._compiled = true; // functional template if (isFunctionalTemplate) { options.functional = true; } } // scopedId if (scopeId) { options._scopeId = scopeId; } var hook; if (moduleIdentifier) { // server build hook = function hook(context) { // 2.3 injection context = context || // cached call this.$vnode && this.$vnode.ssrContext || // stateful this.parent && this.parent.$vnode && this.parent.$vnode.ssrContext; // functional // 2.2 with runInNewContext: true if (!context && typeof __VUE_SSR_CONTEXT__ !== 'undefined') { context = __VUE_SSR_CONTEXT__; } // inject component styles if (style) { style.call(this, createInjectorSSR(context)); } // register component module identifier for async chunk inference if (context && context._registeredComponents) { context._registeredComponents.add(moduleIdentifier); } }; // used by ssr in case component is cached and beforeCreate // never gets called options._ssrRegister = hook; } else if (style) { hook = shadowMode ? function (context) { style.call(this, createInjectorShadow(context, this.$root.$options.shadowRoot)); } : function (context) { style.call(this, createInjector(context)); }; } if (hook) { if (options.functional) { // register for functional component in vue file var originalRender = options.render; options.render = function renderWithStyleInjection(h, context) { hook.call(context); return originalRender(h, context); }; } else { // inject component registration as beforeCreate hook var existing = options.beforeCreate; options.beforeCreate = existing ? [].concat(existing, hook) : [hook]; } } return script; } /* script */ const __vue_script__$9 = script$9; /* template */ var __vue_render__$9 = function() { var _vm = this; var _h = _vm.$createElement; var _c = _vm._self._c || _h; return _c("div", { staticClass: "resize-observer", attrs: { tabindex: "-1" } }) }; var __vue_staticRenderFns__$9 = []; __vue_render__$9._withStripped = true; /* style */ const __vue_inject_styles__$9 = undefined; /* scoped */ const __vue_scope_id__$9 = "data-v-8859cc6c"; /* module identifier */ const __vue_module_identifier__$9 = undefined; /* functional template */ const __vue_is_functional_template__$9 = false; /* style inject */ /* style inject SSR */ /* style inject shadow dom */ const __vue_component__$9 = /*#__PURE__*/normalizeComponent$2( { render: __vue_render__$9, staticRenderFns: __vue_staticRenderFns__$9 }, __vue_inject_styles__$9, __vue_script__$9, __vue_scope_id__$9, __vue_is_functional_template__$9, __vue_module_identifier__$9, false, undefined, undefined, undefined ); function install$1(Vue) { // eslint-disable-next-line vue/component-definition-name-casing Vue.component('resize-observer', __vue_component__$9); Vue.component('ResizeObserver', __vue_component__$9); } var plugin$1 = { // eslint-disable-next-line no-undef version: "1.0.0", install: install$1 }; var GlobalVue$1 = null; if (typeof window !== 'undefined') { GlobalVue$1 = window.Vue; } else if (typeof global !== 'undefined') { GlobalVue$1 = global.Vue; } if (GlobalVue$1) { GlobalVue$1.use(plugin$1); } var defineProperty = (function() { try { var func = _getNative(Object, 'defineProperty'); func({}, '', {}); return func; } catch (e) {} }()); var _defineProperty$2 = defineProperty; /** * The base implementation of `assignValue` and `assignMergeValue` without * value checks. * * @private * @param {Object} object The object to modify. * @param {string} key The key of the property to assign. * @param {*} value The value to assign. */ function baseAssignValue(object, key, value) { if (key == '__proto__' && _defineProperty$2) { _defineProperty$2(object, key, { 'configurable': true, 'enumerable': true, 'value': value, 'writable': true }); } else { object[key] = value; } } var _baseAssignValue = baseAssignValue; /** * This function is like `assignValue` except that it doesn't assign * `undefined` values. * * @private * @param {Object} object The object to modify. * @param {string} key The key of the property to assign. * @param {*} value The value to assign. */ function assignMergeValue(object, key, value) { if ((value !== undefined && !eq_1(object[key], value)) || (value === undefined && !(key in object))) { _baseAssignValue(object, key, value); } } var _assignMergeValue = assignMergeValue; /** * Creates a base function for methods like `_.forIn` and `_.forOwn`. * * @private * @param {boolean} [fromRight] Specify iterating from right to left. * @returns {Function} Returns the new base function. */ function createBaseFor(fromRight) { return function(object, iteratee, keysFunc) { var index = -1, iterable = Object(object), props = keysFunc(object), length = props.length; while (length--) { var key = props[fromRight ? length : ++index]; if (iteratee(iterable[key], key, iterable) === false) { break; } } return object; }; } var _createBaseFor = createBaseFor; /** * The base implementation of `baseForOwn` which iterates over `object` * properties returned by `keysFunc` and invokes `iteratee` for each property. * Iteratee functions may exit iteration early by explicitly returning `false`. * * @private * @param {Object} object The object to iterate over. * @param {Function} iteratee The function invoked per iteration. * @param {Function} keysFunc The function to get the keys of `object`. * @returns {Object} Returns `object`. */ var baseFor = _createBaseFor(); var _baseFor = baseFor; var _cloneBuffer = createCommonjsModule(function (module, exports) { /** Detect free variable `exports`. */ var freeExports = exports && !exports.nodeType && exports; /** Detect free variable `module`. */ var freeModule = freeExports && 'object' == 'object' && module && !module.nodeType && module; /** Detect the popular CommonJS extension `module.exports`. */ var moduleExports = freeModule && freeModule.exports === freeExports; /** Built-in value references. */ var Buffer = moduleExports ? _root.Buffer : undefined, allocUnsafe = Buffer ? Buffer.allocUnsafe : undefined; /** * Creates a clone of `buffer`. * * @private * @param {Buffer} buffer The buffer to clone. * @param {boolean} [isDeep] Specify a deep clone. * @returns {Buffer} Returns the cloned buffer. */ function cloneBuffer(buffer, isDeep) { if (isDeep) { return buffer.slice(); } var length = buffer.length, result = allocUnsafe ? allocUnsafe(length) : new buffer.constructor(length); buffer.copy(result); return result; } module.exports = cloneBuffer; }); /** * Creates a clone of `arrayBuffer`. * * @private * @param {ArrayBuffer} arrayBuffer The array buffer to clone. * @returns {ArrayBuffer} Returns the cloned array buffer. */ function cloneArrayBuffer(arrayBuffer) { var result = new arrayBuffer.constructor(arrayBuffer.byteLength); new _Uint8Array(result).set(new _Uint8Array(arrayBuffer)); return result; } var _cloneArrayBuffer = cloneArrayBuffer; /** * Creates a clone of `typedArray`. * * @private * @param {Object} typedArray The typed array to clone. * @param {boolean} [isDeep] Specify a deep clone. * @returns {Object} Returns the cloned typed array. */ function cloneTypedArray(typedArray, isDeep) { var buffer = isDeep ? _cloneArrayBuffer(typedArray.buffer) : typedArray.buffer; return new typedArray.constructor(buffer, typedArray.byteOffset, typedArray.length); } var _cloneTypedArray = cloneTypedArray; /** * Copies the values of `source` to `array`. * * @private * @param {Array} source The array to copy values from. * @param {Array} [array=[]] The array to copy values to. * @returns {Array} Returns `array`. */ function copyArray(source, array) { var index = -1, length = source.length; array || (array = Array(length)); while (++index < length) { array[index] = source[index]; } return array; } var _copyArray = copyArray; /** Built-in value references. */ var objectCreate = Object.create; /** * The base implementation of `_.create` without support for assigning * properties to the created object. * * @private * @param {Object} proto The object to inherit from. * @returns {Object} Returns the new object. */ var baseCreate = (function() { function object() {} return function(proto) { if (!isObject_1(proto)) { return {}; } if (objectCreate) { return objectCreate(proto); } object.prototype = proto; var result = new object; object.prototype = undefined; return result; }; }()); var _baseCreate = baseCreate; /** Built-in value references. */ var getPrototype = _overArg(Object.getPrototypeOf, Object); var _getPrototype = getPrototype; /** * Initializes an object clone. * * @private * @param {Object} object The object to clone. * @returns {Object} Returns the initialized clone. */ function initCloneObject(object) { return (typeof object.constructor == 'function' && !_isPrototype(object)) ? _baseCreate(_getPrototype(object)) : {}; } var _initCloneObject = initCloneObject; /** * This method is like `_.isArrayLike` except that it also checks if `value` * is an object. * * @static * @memberOf _ * @since 4.0.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is an array-like object, * else `false`. * @example * * _.isArrayLikeObject([1, 2, 3]); * // => true * * _.isArrayLikeObject(document.body.children); * // => true * * _.isArrayLikeObject('abc'); * // => false * * _.isArrayLikeObject(_.noop); * // => false */ function isArrayLikeObject(value) { return isObjectLike_1(value) && isArrayLike_1(value); } var isArrayLikeObject_1 = isArrayLikeObject; /** `Object#toString` result references. */ var objectTag = '[object Object]'; /** Used for built-in method references. */ var funcProto = Function.prototype, objectProto$2 = Object.prototype; /** Used to resolve the decompiled source of functions. */ var funcToString = funcProto.toString; /** Used to check objects for own properties. */ var hasOwnProperty$2 = objectProto$2.hasOwnProperty; /** Used to infer the `Object` constructor. */ var objectCtorString = funcToString.call(Object); /** * Checks if `value` is a plain object, that is, an object created by the * `Object` constructor or one with a `[[Prototype]]` of `null`. * * @static * @memberOf _ * @since 0.8.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a plain object, else `false`. * @example * * function Foo() { * this.a = 1; * } * * _.isPlainObject(new Foo); * // => false * * _.isPlainObject([1, 2, 3]); * // => false * * _.isPlainObject({ 'x': 0, 'y': 0 }); * // => true * * _.isPlainObject(Object.create(null)); * // => true */ function isPlainObject(value) { if (!isObjectLike_1(value) || _baseGetTag(value) != objectTag) { return false; } var proto = _getPrototype(value); if (proto === null) { return true; } var Ctor = hasOwnProperty$2.call(proto, 'constructor') && proto.constructor; return typeof Ctor == 'function' && Ctor instanceof Ctor && funcToString.call(Ctor) == objectCtorString; } var isPlainObject_1 = isPlainObject; /** * Gets the value at `key`, unless `key` is "__proto__" or "constructor". * * @private * @param {Object} object The object to query. * @param {string} key The key of the property to get. * @returns {*} Returns the property value. */ function safeGet(object, key) { if (key === 'constructor' && typeof object[key] === 'function') { return; } if (key == '__proto__') { return; } return object[key]; } var _safeGet = safeGet; /** Used for built-in method references. */ var objectProto$1 = Object.prototype; /** Used to check objects for own properties. */ var hasOwnProperty$1 = objectProto$1.hasOwnProperty; /** * Assigns `value` to `key` of `object` if the existing value is not equivalent * using [`SameValueZero`](http://ecma-international.org/ecma-262/7.0/#sec-samevaluezero) * for equality comparisons. * * @private * @param {Object} object The object to modify. * @param {string} key The key of the property to assign. * @param {*} value The value to assign. */ function assignValue(object, key, value) { var objValue = object[key]; if (!(hasOwnProperty$1.call(object, key) && eq_1(objValue, value)) || (value === undefined && !(key in object))) { _baseAssignValue(object, key, value); } } var _assignValue = assignValue; /** * Copies properties of `source` to `object`. * * @private * @param {Object} source The object to copy properties from. * @param {Array} props The property identifiers to copy. * @param {Object} [object={}] The object to copy properties to. * @param {Function} [customizer] The function to customize copied values. * @returns {Object} Returns `object`. */ function copyObject(source, props, object, customizer) { var isNew = !object; object || (object = {}); var index = -1, length = props.length; while (++index < length) { var key = props[index]; var newValue = customizer ? customizer(object[key], source[key], key, object, source) : undefined; if (newValue === undefined) { newValue = source[key]; } if (isNew) { _baseAssignValue(object, key, newValue); } else { _assignValue(object, key, newValue); } } return object; } var _copyObject = copyObject; /** * This function is like * [`Object.keys`](http://ecma-international.org/ecma-262/7.0/#sec-object.keys) * except that it includes inherited enumerable properties. * * @private * @param {Object} object The object to query. * @returns {Array} Returns the array of property names. */ function nativeKeysIn(object) { var result = []; if (object != null) { for (var key in Object(object)) { result.push(key); } } return result; } var _nativeKeysIn = nativeKeysIn; /** Used for built-in method references. */ var objectProto = Object.prototype; /** Used to check objects for own properties. */ var hasOwnProperty = objectProto.hasOwnProperty; /** * The base implementation of `_.keysIn` which doesn't treat sparse arrays as dense. * * @private * @param {Object} object The object to query. * @returns {Array} Returns the array of property names. */ function baseKeysIn(object) { if (!isObject_1(object)) { return _nativeKeysIn(object); } var isProto = _isPrototype(object), result = []; for (var key in object) { if (!(key == 'constructor' && (isProto || !hasOwnProperty.call(object, key)))) { result.push(key); } } return result; } var _baseKeysIn = baseKeysIn; /** * Creates an array of the own and inherited enumerable property names of `object`. * * **Note:** Non-object values are coerced to objects. * * @static * @memberOf _ * @since 3.0.0 * @category Object * @param {Object} object The object to query. * @returns {Array} Returns the array of property names. * @example * * function Foo() { * this.a = 1; * this.b = 2; * } * * Foo.prototype.c = 3; * * _.keysIn(new Foo); * // => ['a', 'b', 'c'] (iteration order is not guaranteed) */ function keysIn(object) { return isArrayLike_1(object) ? _arrayLikeKeys(object, true) : _baseKeysIn(object); } var keysIn_1 = keysIn; /** * Converts `value` to a plain object flattening inherited enumerable string * keyed properties of `value` to own properties of the plain object. * * @static * @memberOf _ * @since 3.0.0 * @category Lang * @param {*} value The value to convert. * @returns {Object} Returns the converted plain object. * @example * * function Foo() { * this.b = 2; * } * * Foo.prototype.c = 3; * * _.assign({ 'a': 1 }, new Foo); * // => { 'a': 1, 'b': 2 } * * _.assign({ 'a': 1 }, _.toPlainObject(new Foo)); * // => { 'a': 1, 'b': 2, 'c': 3 } */ function toPlainObject(value) { return _copyObject(value, keysIn_1(value)); } var toPlainObject_1 = toPlainObject; /** * A specialized version of `baseMerge` for arrays and objects which performs * deep merges and tracks traversed objects enabling objects with circular * references to be merged. * * @private * @param {Object} object The destination object. * @param {Object} source The source object. * @param {string} key The key of the value to merge. * @param {number} srcIndex The index of `source`. * @param {Function} mergeFunc The function to merge values. * @param {Function} [customizer] The function to customize assigned values. * @param {Object} [stack] Tracks traversed source values and their merged * counterparts. */ function baseMergeDeep(object, source, key, srcIndex, mergeFunc, customizer, stack) { var objValue = _safeGet(object, key), srcValue = _safeGet(source, key), stacked = stack.get(srcValue); if (stacked) { _assignMergeValue(object, key, stacked); return; } var newValue = customizer ? customizer(objValue, srcValue, (key + ''), object, source, stack) : undefined; var isCommon = newValue === undefined; if (isCommon) { var isArr = isArray_1(srcValue), isBuff = !isArr && isBuffer_1(srcValue), isTyped = !isArr && !isBuff && isTypedArray_1(srcValue); newValue = srcValue; if (isArr || isBuff || isTyped) { if (isArray_1(objValue)) { newValue = objValue; } else if (isArrayLikeObject_1(objValue)) { newValue = _copyArray(objValue); } else if (isBuff) { isCommon = false; newValue = _cloneBuffer(srcValue, true); } else if (isTyped) { isCommon = false; newValue = _cloneTypedArray(srcValue, true); } else { newValue = []; } } else if (isPlainObject_1(srcValue) || isArguments_1(srcValue)) { newValue = objValue; if (isArguments_1(objValue)) { newValue = toPlainObject_1(objValue); } else if (!isObject_1(objValue) || isFunction_1(objValue)) { newValue = _initCloneObject(srcValue); } } else { isCommon = false; } } if (isCommon) { // Recursively merge objects and arrays (susceptible to call stack limits). stack.set(srcValue, newValue); mergeFunc(newValue, srcValue, srcIndex, customizer, stack); stack['delete'](srcValue); } _assignMergeValue(object, key, newValue); } var _baseMergeDeep = baseMergeDeep; /** * The base implementation of `_.merge` without support for multiple sources. * * @private * @param {Object} object The destination object. * @param {Object} source The source object. * @param {number} srcIndex The index of `source`. * @param {Function} [customizer] The function to customize merged values. * @param {Object} [stack] Tracks traversed source values and their merged * counterparts. */ function baseMerge(object, source, srcIndex, customizer, stack) { if (object === source) { return; } _baseFor(source, function(srcValue, key) { stack || (stack = new _Stack); if (isObject_1(srcValue)) { _baseMergeDeep(object, source, key, srcIndex, baseMerge, customizer, stack); } else { var newValue = customizer ? customizer(_safeGet(object, key), srcValue, (key + ''), object, source, stack) : undefined; if (newValue === undefined) { newValue = srcValue; } _assignMergeValue(object, key, newValue); } }, keysIn_1); } var _baseMerge = baseMerge; /** * This method returns the first argument it receives. * * @static * @since 0.1.0 * @memberOf _ * @category Util * @param {*} value Any value. * @returns {*} Returns `value`. * @example * * var object = { 'a': 1 }; * * console.log(_.identity(object) === object); * // => true */ function identity(value) { return value; } var identity_1 = identity; /** * A faster alternative to `Function#apply`, this function invokes `func` * with the `this` binding of `thisArg` and the arguments of `args`. * * @private * @param {Function} func The function to invoke. * @param {*} thisArg The `this` binding of `func`. * @param {Array} args The arguments to invoke `func` with. * @returns {*} Returns the result of `func`. */ function apply(func, thisArg, args) { switch (args.length) { case 0: return func.call(thisArg); case 1: return func.call(thisArg, args[0]); case 2: return func.call(thisArg, args[0], args[1]); case 3: return func.call(thisArg, args[0], args[1], args[2]); } return func.apply(thisArg, args); } var _apply = apply; /* Built-in method references for those with the same name as other `lodash` methods. */ var nativeMax = Math.max; /** * A specialized version of `baseRest` which transforms the rest array. * * @private * @param {Function} func The function to apply a rest parameter to. * @param {number} [start=func.length-1] The start position of the rest parameter. * @param {Function} transform The rest array transform. * @returns {Function} Returns the new function. */ function overRest(func, start, transform) { start = nativeMax(start === undefined ? (func.length - 1) : start, 0); return function() { var args = arguments, index = -1, length = nativeMax(args.length - start, 0), array = Array(length); while (++index < length) { array[index] = args[start + index]; } index = -1; var otherArgs = Array(start + 1); while (++index < start) { otherArgs[index] = args[index]; } otherArgs[start] = transform(array); return _apply(func, this, otherArgs); }; } var _overRest = overRest; /** * Creates a function that returns `value`. * * @static * @memberOf _ * @since 2.4.0 * @category Util * @param {*} value The value to return from the new function. * @returns {Function} Returns the new constant function. * @example * * var objects = _.times(2, _.constant({ 'a': 1 })); * * console.log(objects); * // => [{ 'a': 1 }, { 'a': 1 }] * * console.log(objects[0] === objects[1]); * // => true */ function constant(value) { return function() { return value; }; } var constant_1 = constant; /** * The base implementation of `setToString` without support for hot loop shorting. * * @private * @param {Function} func The function to modify. * @param {Function} string The `toString` result. * @returns {Function} Returns `func`. */ var baseSetToString = !_defineProperty$2 ? identity_1 : function(func, string) { return _defineProperty$2(func, 'toString', { 'configurable': true, 'enumerable': false, 'value': constant_1(string), 'writable': true }); }; var _baseSetToString = baseSetToString; /** Used to detect hot functions by number of calls within a span of milliseconds. */ var HOT_COUNT = 800, HOT_SPAN = 16; /* Built-in method references for those with the same name as other `lodash` methods. */ var nativeNow = Date.now; /** * Creates a function that'll short out and invoke `identity` instead * of `func` when it's called `HOT_COUNT` or more times in `HOT_SPAN` * milliseconds. * * @private * @param {Function} func The function to restrict. * @returns {Function} Returns the new shortable function. */ function shortOut(func) { var count = 0, lastCalled = 0; return function() { var stamp = nativeNow(), remaining = HOT_SPAN - (stamp - lastCalled); lastCalled = stamp; if (remaining > 0) { if (++count >= HOT_COUNT) { return arguments[0]; } } else { count = 0; } return func.apply(undefined, arguments); }; } var _shortOut = shortOut; /** * Sets the `toString` method of `func` to return `string`. * * @private * @param {Function} func The function to modify. * @param {Function} string The `toString` result. * @returns {Function} Returns `func`. */ var setToString = _shortOut(_baseSetToString); var _setToString = setToString; /** * The base implementation of `_.rest` which doesn't validate or coerce arguments. * * @private * @param {Function} func The function to apply a rest parameter to. * @param {number} [start=func.length-1] The start position of the rest parameter. * @returns {Function} Returns the new function. */ function baseRest(func, start) { return _setToString(_overRest(func, start, identity_1), func + ''); } var _baseRest = baseRest; /** * Checks if the given arguments are from an iteratee call. * * @private * @param {*} value The potential iteratee value argument. * @param {*} index The potential iteratee index or key argument. * @param {*} object The potential iteratee object argument. * @returns {boolean} Returns `true` if the arguments are from an iteratee call, * else `false`. */ function isIterateeCall(value, index, object) { if (!isObject_1(object)) { return false; } var type = typeof index; if (type == 'number' ? (isArrayLike_1(object) && _isIndex(index, object.length)) : (type == 'string' && index in object) ) { return eq_1(object[index], value); } return false; } var _isIterateeCall = isIterateeCall; /** * Creates a function like `_.assign`. * * @private * @param {Function} assigner The function to assign values. * @returns {Function} Returns the new assigner function. */ function createAssigner(assigner) { return _baseRest(function(object, sources) { var index = -1, length = sources.length, customizer = length > 1 ? sources[length - 1] : undefined, guard = length > 2 ? sources[2] : undefined; customizer = (assigner.length > 3 && typeof customizer == 'function') ? (length--, customizer) : undefined; if (guard && _isIterateeCall(sources[0], sources[1], guard)) { customizer = length < 3 ? undefined : customizer; length = 1; } object = Object(object); while (++index < length) { var source = sources[index]; if (source) { assigner(object, source, index, customizer); } } return object; }); } var _createAssigner = createAssigner; /** * This method is like `_.assign` except that it recursively merges own and * inherited enumerable string keyed properties of source objects into the * destination object. Source properties that resolve to `undefined` are * skipped if a destination value exists. Array and plain object properties * are merged recursively. Other objects and value types are overridden by * assignment. Source objects are applied from left to right. Subsequent * sources overwrite property assignments of previous sources. * * **Note:** This method mutates `object`. * * @static * @memberOf _ * @since 0.5.0 * @category Object * @param {Object} object The destination object. * @param {...Object} [sources] The source objects. * @returns {Object} Returns `object`. * @example * * var object = { * 'a': [{ 'b': 2 }, { 'd': 4 }] * }; * * var other = { * 'a': [{ 'c': 3 }, { 'e': 5 }] * }; * * _.merge(object, other); * // => { 'a': [{ 'b': 2, 'c': 3 }, { 'd': 4, 'e': 5 }] } */ var merge = _createAssigner(function(object, source, srcIndex) { _baseMerge(object, source, srcIndex); }); var merge_1 = merge; function _typeof$1(obj) { "@babel/helpers - typeof"; if (typeof Symbol === "function" && typeof Symbol.iterator === "symbol") { _typeof$1 = function (obj) { return typeof obj; }; } else { _typeof$1 = function (obj) { return obj && typeof Symbol === "function" && obj.constructor === Symbol && obj !== Symbol.prototype ? "symbol" : typeof obj; }; } return _typeof$1(obj); } function _classCallCheck(instance, Constructor) { if (!(instance instanceof Constructor)) { throw new TypeError("Cannot call a class as a function"); } } function _defineProperties(target, props) { for (var i = 0; i < props.length; i++) { var descriptor = props[i]; descriptor.enumerable = descriptor.enumerable || false; descriptor.configurable = true; if ("value" in descriptor) descriptor.writable = true; Object.defineProperty(target, descriptor.key, descriptor); } } function _createClass(Constructor, protoProps, staticProps) { if (protoProps) _defineProperties(Constructor.prototype, protoProps); if (staticProps) _defineProperties(Constructor, staticProps); return Constructor; } function _defineProperty$1(obj, key, value) { if (key in obj) { Object.defineProperty(obj, key, { value: value, enumerable: true, configurable: true, writable: true }); } else { obj[key] = value; } return obj; } function ownKeys(object, enumerableOnly) { var keys = Object.keys(object); if (Object.getOwnPropertySymbols) { var symbols = Object.getOwnPropertySymbols(object); if (enumerableOnly) symbols = symbols.filter(function (sym) { return Object.getOwnPropertyDescriptor(object, sym).enumerable; }); keys.push.apply(keys, symbols); } return keys; } function _objectSpread2(target) { for (var i = 1; i < arguments.length; i++) { var source = arguments[i] != null ? arguments[i] : {}; if (i % 2) { ownKeys(Object(source), true).forEach(function (key) { _defineProperty$1(target, key, source[key]); }); } else if (Object.getOwnPropertyDescriptors) { Object.defineProperties(target, Object.getOwnPropertyDescriptors(source)); } else { ownKeys(Object(source)).forEach(function (key) { Object.defineProperty(target, key, Object.getOwnPropertyDescriptor(source, key)); }); } } return target; } var SVGAnimatedString = function SVGAnimatedString() {}; if (typeof window !== 'undefined') { SVGAnimatedString = window.SVGAnimatedString; } function convertToArray(value) { if (typeof value === 'string') { value = value.split(' '); } return value; } /** * Add classes to an element. * This method checks to ensure that the classes don't already exist before adding them. * It uses el.className rather than classList in order to be IE friendly. * @param {object} el - The element to add the classes to. * @param {classes} string - List of space separated classes to be added to the element. */ function addClasses(el, classes) { var newClasses = convertToArray(classes); var classList; if (el.className instanceof SVGAnimatedString) { classList = convertToArray(el.className.baseVal); } else { classList = convertToArray(el.className); } newClasses.forEach(function (newClass) { if (classList.indexOf(newClass) === -1) { classList.push(newClass); } }); if (el instanceof SVGElement) { el.setAttribute('class', classList.join(' ')); } else { el.className = classList.join(' '); } } /** * Remove classes from an element. * It uses el.className rather than classList in order to be IE friendly. * @export * @param {any} el The element to remove the classes from. * @param {any} classes List of space separated classes to be removed from the element. */ function removeClasses(el, classes) { var newClasses = convertToArray(classes); var classList; if (el.className instanceof SVGAnimatedString) { classList = convertToArray(el.className.baseVal); } else { classList = convertToArray(el.className); } newClasses.forEach(function (newClass) { var index = classList.indexOf(newClass); if (index !== -1) { classList.splice(index, 1); } }); if (el instanceof SVGElement) { el.setAttribute('class', classList.join(' ')); } else { el.className = classList.join(' '); } } var supportsPassive = false; if (typeof window !== 'undefined') { supportsPassive = false; try { var opts = Object.defineProperty({}, 'passive', { get: function get() { supportsPassive = true; } }); window.addEventListener('test', null, opts); } catch (e) {} } var DEFAULT_OPTIONS = { container: false, delay: 0, html: false, placement: 'top', title: '', template: '<div class="tooltip" role="tooltip"><div class="tooltip-arrow"></div><div class="tooltip-inner"></div></div>', trigger: 'hover focus', offset: 0 }; var openTooltips = []; var Tooltip = /*#__PURE__*/function () { /** * Create a new Tooltip.js instance * @class Tooltip * @param {HTMLElement} reference - The DOM node used as reference of the tooltip (it can be a jQuery element). * @param {Object} options * @param {String} options.placement=bottom * Placement of the popper accepted values: `top(-start, -end), right(-start, -end), bottom(-start, -end), * left(-start, -end)` * @param {HTMLElement|String|false} options.container=false - Append the tooltip to a specific element. * @param {Number|Object} options.delay=0 * Delay showing and hiding the tooltip (ms) - does not apply to manual trigger type. * If a number is supplied, delay is applied to both hide/show. * Object structure is: `{ show: 500, hide: 100 }` * @param {Boolean} options.html=false - Insert HTML into the tooltip. If false, the content will inserted with `innerText`. * @param {String|PlacementFunction} options.placement='top' - One of the allowed placements, or a function returning one of them. * @param {String} [options.template='<div class="tooltip" role="tooltip"><div class="tooltip-arrow"></div><div class="tooltip-inner"></div></div>'] * Base HTML to used when creating the tooltip. * The tooltip's `title` will be injected into the `.tooltip-inner` or `.tooltip__inner`. * `.tooltip-arrow` or `.tooltip__arrow` will become the tooltip's arrow. * The outermost wrapper element should have the `.tooltip` class. * @param {String|HTMLElement|TitleFunction} options.title='' - Default title value if `title` attribute isn't present. * @param {String} [options.trigger='hover focus'] * How tooltip is triggered - click, hover, focus, manual. * You may pass multiple triggers; separate them with a space. `manual` cannot be combined with any other trigger. * @param {HTMLElement} options.boundariesElement * The element used as boundaries for the tooltip. For more information refer to Popper.js' * [boundariesElement docs](https://popper.js.org/popper-documentation.html) * @param {Number|String} options.offset=0 - Offset of the tooltip relative to its reference. For more information refer to Popper.js' * [offset docs](https://popper.js.org/popper-documentation.html) * @param {Object} options.popperOptions={} - Popper options, will be passed directly to popper instance. For more information refer to Popper.js' * [options docs](https://popper.js.org/popper-documentation.html) * @param {string} [options.ariaId] Id used for accessibility * @return {Object} instance - The generated tooltip instance */ function Tooltip(_reference, _options) { var _this = this; _classCallCheck(this, Tooltip); _defineProperty$1(this, "_events", []); _defineProperty$1(this, "_setTooltipNodeEvent", function (evt, reference, delay, options) { var relatedreference = evt.relatedreference || evt.toElement || evt.relatedTarget; var callback = function callback(evt2) { var relatedreference2 = evt2.relatedreference || evt2.toElement || evt2.relatedTarget; // Remove event listener after call _this._tooltipNode.removeEventListener(evt.type, callback); // If the new reference is not the reference element if (!reference.contains(relatedreference2)) { // Schedule to hide tooltip _this._scheduleHide(reference, options.delay, options, evt2); } }; if (_this._tooltipNode.contains(relatedreference)) { // listen to mouseleave on the tooltip element to be able to hide the tooltip _this._tooltipNode.addEventListener(evt.type, callback); return true; } return false; }); // apply user options over default ones _options = _objectSpread2(_objectSpread2({}, DEFAULT_OPTIONS), _options); _reference.jquery && (_reference = _reference[0]); this.show = this.show.bind(this); this.hide = this.hide.bind(this); // cache reference and options this.reference = _reference; this.options = _options; // set initial state this._isOpen = false; this._init(); } // // Public methods // /** * Reveals an element's tooltip. This is considered a "manual" triggering of the tooltip. * Tooltips with zero-length titles are never displayed. * @method Tooltip#show * @memberof Tooltip */ _createClass(Tooltip, [{ key: "show", value: function show() { this._show(this.reference, this.options); } /** * Hides an element’s tooltip. This is considered a “manual” triggering of the tooltip. * @method Tooltip#hide * @memberof Tooltip */ }, { key: "hide", value: function hide() { this._hide(); } /** * Hides and destroys an element’s tooltip. * @method Tooltip#dispose * @memberof Tooltip */ }, { key: "dispose", value: function dispose() { this._dispose(); } /** * Toggles an element’s tooltip. This is considered a “manual” triggering of the tooltip. * @method Tooltip#toggle * @memberof Tooltip */ }, { key: "toggle", value: function toggle() { if (this._isOpen) { return this.hide(); } else { return this.show(); } } }, { key: "setClasses", value: function setClasses(classes) { this._classes = classes; } }, { key: "setContent", value: function setContent(content) { this.options.title = content; if (this._tooltipNode) { this._setContent(content, this.options); } } }, { key: "setOptions", value: function setOptions(options) { var classesUpdated = false; var classes = options && options.classes || directive.options.defaultClass; if (!isEqual_1(this._classes, classes)) { this.setClasses(classes); classesUpdated = true; } options = getOptions(options); var needPopperUpdate = false; var needRestart = false; if (this.options.offset !== options.offset || this.options.placement !== options.placement) { needPopperUpdate = true; } if (this.options.template !== options.template || this.options.trigger !== options.trigger || this.options.container !== options.container || classesUpdated) { needRestart = true; } for (var key in options) { this.options[key] = options[key]; } if (this._tooltipNode) { if (needRestart) { var isOpen = this._isOpen; this.dispose(); this._init(); if (isOpen) { this.show(); } } else if (needPopperUpdate) { this.popperInstance.update(); } } } // // Private methods // }, { key: "_init", value: function _init() { // get events list var events = typeof this.options.trigger === 'string' ? this.options.trigger.split(' ') : []; this._isDisposed = false; this._enableDocumentTouch = events.indexOf('manual') === -1; events = events.filter(function (trigger) { return ['click', 'hover', 'focus'].indexOf(trigger) !== -1; }); // set event listeners this._setEventListeners(this.reference, events, this.options); // title attribute this.$_originalTitle = this.reference.getAttribute('title'); this.reference.removeAttribute('title'); this.reference.setAttribute('data-original-title', this.$_originalTitle); } /** * Creates a new tooltip node * @memberof Tooltip * @private * @param {HTMLElement} reference * @param {String} template * @param {String|HTMLElement|TitleFunction} title * @param {Boolean} allowHtml * @return {HTMLelement} tooltipNode */ }, { key: "_create", value: function _create(reference, template) { var _this2 = this; // create tooltip element var tooltipGenerator = window.document.createElement('div'); tooltipGenerator.innerHTML = template.trim(); var tooltipNode = tooltipGenerator.childNodes[0]; // add unique ID to our tooltip (needed for accessibility reasons) tooltipNode.id = this.options.ariaId || "tooltip_".concat(Math.random().toString(36).substr(2, 10)); // Initially hide the tooltip // The attribute will be switched in a next frame so // CSS transitions can play tooltipNode.setAttribute('aria-hidden', 'true'); if (this.options.autoHide && this.options.trigger.indexOf('hover') !== -1) { tooltipNode.addEventListener('mouseenter', function (evt) { return _this2._scheduleHide(reference, _this2.options.delay, _this2.options, evt); }); tooltipNode.addEventListener('click', function (evt) { return _this2._scheduleHide(reference, _this2.options.delay, _this2.options, evt); }); } // return the generated tooltip node return tooltipNode; } }, { key: "_setContent", value: function _setContent(content, options) { var _this3 = this; this.asyncContent = false; this._applyContent(content, options).then(function () { if (!_this3.popperInstance) return; _this3.popperInstance.update(); }); } }, { key: "_applyContent", value: function _applyContent(title, options) { var _this4 = this; return new Promise(function (resolve, reject) { var allowHtml = options.html; var rootNode = _this4._tooltipNode; if (!rootNode) return; var titleNode = rootNode.querySelector(_this4.options.innerSelector); if (title.nodeType === 1) { // if title is a node, append it only if allowHtml is true if (allowHtml) { while (titleNode.firstChild) { titleNode.removeChild(titleNode.firstChild); } titleNode.appendChild(title); } } else if (typeof title === 'function') { // if title is a function, call it and set innerText or innerHtml depending by `allowHtml` value var result = title(); if (result && typeof result.then === 'function') { _this4.asyncContent = true; options.loadingClass && addClasses(rootNode, options.loadingClass); if (options.loadingContent) { _this4._applyContent(options.loadingContent, options); } result.then(function (asyncResult) { options.loadingClass && removeClasses(rootNode, options.loadingClass); return _this4._applyContent(asyncResult, options); }).then(resolve).catch(reject); } else { _this4._applyContent(result, options).then(resolve).catch(reject); } return; } else { // if it's just a simple text, set innerText or innerHtml depending by `allowHtml` value allowHtml ? titleNode.innerHTML = title : titleNode.innerText = title; } resolve(); }); } }, { key: "_show", value: function _show(reference, options) { if (options && typeof options.container === 'string') { var container = document.querySelector(options.container); if (!container) return; } clearTimeout(this._disposeTimer); options = Object.assign({}, options); delete options.offset; var updateClasses = true; if (this._tooltipNode) { addClasses(this._tooltipNode, this._classes); updateClasses = false; } var result = this._ensureShown(reference, options); if (updateClasses && this._tooltipNode) { addClasses(this._tooltipNode, this._classes); } addClasses(reference, ['v-tooltip-open']); return result; } }, { key: "_ensureShown", value: function _ensureShown(reference, options) { var _this5 = this; // don't show if it's already visible if (this._isOpen) { return this; } this._isOpen = true; openTooltips.push(this); // if the tooltipNode already exists, just show it if (this._tooltipNode) { this._tooltipNode.style.display = ''; this._tooltipNode.setAttribute('aria-hidden', 'false'); this.popperInstance.enableEventListeners(); this.popperInstance.update(); if (this.asyncContent) { this._setContent(options.title, options); } return this; } // get title var title = reference.getAttribute('title') || options.title; // don't show tooltip if no title is defined if (!title) { return this; } // create tooltip node var tooltipNode = this._create(reference, options.template); this._tooltipNode = tooltipNode; // Add `aria-describedby` to our reference element for accessibility reasons reference.setAttribute('aria-describedby', tooltipNode.id); // append tooltip to container var container = this._findContainer(options.container, reference); this._append(tooltipNode, container); var popperOptions = _objectSpread2(_objectSpread2({}, options.popperOptions), {}, { placement: options.placement }); popperOptions.modifiers = _objectSpread2(_objectSpread2({}, popperOptions.modifiers), {}, { arrow: { element: this.options.arrowSelector } }); if (options.boundariesElement) { popperOptions.modifiers.preventOverflow = { boundariesElement: options.boundariesElement }; } this.popperInstance = new Popper(reference, tooltipNode, popperOptions); this._setContent(title, options); // Fix position requestAnimationFrame(function () { if (!_this5._isDisposed && _this5.popperInstance) { _this5.popperInstance.update(); // Show the tooltip requestAnimationFrame(function () { if (!_this5._isDisposed) { _this5._isOpen && tooltipNode.setAttribute('aria-hidden', 'false'); } else { _this5.dispose(); } }); } else { _this5.dispose(); } }); return this; } }, { key: "_noLongerOpen", value: function _noLongerOpen() { var index = openTooltips.indexOf(this); if (index !== -1) { openTooltips.splice(index, 1); } } }, { key: "_hide", value: function _hide() /* reference, options */ { var _this6 = this; // don't hide if it's already hidden if (!this._isOpen) { return this; } this._isOpen = false; this._noLongerOpen(); // hide tooltipNode this._tooltipNode.style.display = 'none'; this._tooltipNode.setAttribute('aria-hidden', 'true'); if (this.popperInstance) { this.popperInstance.disableEventListeners(); } clearTimeout(this._disposeTimer); var disposeTime = directive.options.disposeTimeout; if (disposeTime !== null) { this._disposeTimer = setTimeout(function () { if (_this6._tooltipNode) { _this6._tooltipNode.removeEventListener('mouseenter', _this6.hide); _this6._tooltipNode.removeEventListener('click', _this6.hide); // Don't remove popper instance, just the HTML element _this6._removeTooltipNode(); } }, disposeTime); } removeClasses(this.reference, ['v-tooltip-open']); return this; } }, { key: "_removeTooltipNode", value: function _removeTooltipNode() { if (!this._tooltipNode) return; var parentNode = this._tooltipNode.parentNode; if (parentNode) { parentNode.removeChild(this._tooltipNode); this.reference.removeAttribute('aria-describedby'); } this._tooltipNode = null; } }, { key: "_dispose", value: function _dispose() { var _this7 = this; this._isDisposed = true; this.reference.removeAttribute('data-original-title'); if (this.$_originalTitle) { this.reference.setAttribute('title', this.$_originalTitle); } // remove event listeners first to prevent any unexpected behaviour this._events.forEach(function (_ref) { var func = _ref.func, event = _ref.event; _this7.reference.removeEventListener(event, func); }); this._events = []; if (this._tooltipNode) { this._hide(); this._tooltipNode.removeEventListener('mouseenter', this.hide); this._tooltipNode.removeEventListener('click', this.hide); // destroy instance this.popperInstance.destroy(); // destroy tooltipNode if removeOnDestroy is not set, as popperInstance.destroy() already removes the element if (!this.popperInstance.options.removeOnDestroy) { this._removeTooltipNode(); } } else { this._noLongerOpen(); } return this; } }, { key: "_findContainer", value: function _findContainer(container, reference) { // if container is a query, get the relative element if (typeof container === 'string') { container = window.document.querySelector(container); } else if (container === false) { // if container is `false`, set it to reference parent container = reference.parentNode; } return container; } /** * Append tooltip to container * @memberof Tooltip * @private * @param {HTMLElement} tooltip * @param {HTMLElement|String|false} container */ }, { key: "_append", value: function _append(tooltipNode, container) { container.appendChild(tooltipNode); } }, { key: "_setEventListeners", value: function _setEventListeners(reference, events, options) { var _this8 = this; var directEvents = []; var oppositeEvents = []; events.forEach(function (event) { switch (event) { case 'hover': directEvents.push('mouseenter'); oppositeEvents.push('mouseleave'); if (_this8.options.hideOnTargetClick) oppositeEvents.push('click'); break; case 'focus': directEvents.push('focus'); oppositeEvents.push('blur'); if (_this8.options.hideOnTargetClick) oppositeEvents.push('click'); break; case 'click': directEvents.push('click'); oppositeEvents.push('click'); break; } }); // schedule show tooltip directEvents.forEach(function (event) { var func = function func(evt) { if (_this8._isOpen === true) { return; } evt.usedByTooltip = true; _this8._scheduleShow(reference, options.delay, options, evt); }; _this8._events.push({ event: event, func: func }); reference.addEventListener(event, func); }); // schedule hide tooltip oppositeEvents.forEach(function (event) { var func = function func(evt) { if (evt.usedByTooltip === true) { return; } _this8._scheduleHide(reference, options.delay, options, evt); }; _this8._events.push({ event: event, func: func }); reference.addEventListener(event, func); }); } }, { key: "_onDocumentTouch", value: function _onDocumentTouch(event) { if (this._enableDocumentTouch) { this._scheduleHide(this.reference, this.options.delay, this.options, event); } } }, { key: "_scheduleShow", value: function _scheduleShow(reference, delay, options /*, evt */ ) { var _this9 = this; // defaults to 0 var computedDelay = delay && delay.show || delay || 0; clearTimeout(this._scheduleTimer); this._scheduleTimer = window.setTimeout(function () { return _this9._show(reference, options); }, computedDelay); } }, { key: "_scheduleHide", value: function _scheduleHide(reference, delay, options, evt) { var _this10 = this; // defaults to 0 var computedDelay = delay && delay.hide || delay || 0; clearTimeout(this._scheduleTimer); this._scheduleTimer = window.setTimeout(function () { if (_this10._isOpen === false) { return; } if (!_this10._tooltipNode.ownerDocument.body.contains(_this10._tooltipNode)) { return; } // if we are hiding because of a mouseleave, we must check that the new // reference isn't the tooltip, because in this case we don't want to hide it if (evt.type === 'mouseleave') { var isSet = _this10._setTooltipNodeEvent(evt, reference, delay, options); // if we set the new event, don't hide the tooltip yet // the new event will take care to hide it if necessary if (isSet) { return; } } _this10._hide(reference, options); }, computedDelay); } }]); return Tooltip; }(); // Hide tooltips on touch devices if (typeof document !== 'undefined') { document.addEventListener('touchstart', function (event) { for (var i = 0; i < openTooltips.length; i++) { openTooltips[i]._onDocumentTouch(event); } }, supportsPassive ? { passive: true, capture: true } : true); } /** * Placement function, its context is the Tooltip instance. * @memberof Tooltip * @callback PlacementFunction * @param {HTMLElement} tooltip - tooltip DOM node. * @param {HTMLElement} reference - reference DOM node. * @return {String} placement - One of the allowed placement options. */ /** * Title function, its context is the Tooltip instance. * @memberof Tooltip * @callback TitleFunction * @return {String} placement - The desired title. */ var state = { enabled: true }; var positions = ['top', 'top-start', 'top-end', 'right', 'right-start', 'right-end', 'bottom', 'bottom-start', 'bottom-end', 'left', 'left-start', 'left-end']; var defaultOptions = { // Default tooltip placement relative to target element defaultPlacement: 'top', // Default CSS classes applied to the tooltip element defaultClass: 'vue-tooltip-theme', // Default CSS classes applied to the target element of the tooltip defaultTargetClass: 'has-tooltip', // Is the content HTML by default? defaultHtml: true, // Default HTML template of the tooltip element // It must include `tooltip-arrow` & `tooltip-inner` CSS classes (can be configured, see below) // Change if the classes conflict with other libraries (for example bootstrap) defaultTemplate: '<div class="tooltip" role="tooltip"><div class="tooltip-arrow"></div><div class="tooltip-inner"></div></div>', // Selector used to get the arrow element in the tooltip template defaultArrowSelector: '.tooltip-arrow, .tooltip__arrow', // Selector used to get the inner content element in the tooltip template defaultInnerSelector: '.tooltip-inner, .tooltip__inner', // Delay (ms) defaultDelay: 0, // Default events that trigger the tooltip defaultTrigger: 'hover focus', // Default position offset (px) defaultOffset: 0, // Default container where the tooltip will be appended defaultContainer: 'body', defaultBoundariesElement: undefined, defaultPopperOptions: {}, // Class added when content is loading defaultLoadingClass: 'tooltip-loading', // Displayed when tooltip content is loading defaultLoadingContent: '...', // Hide on mouseover tooltip autoHide: true, // Close tooltip on click on tooltip target? defaultHideOnTargetClick: true, // Auto destroy tooltip DOM nodes (ms) disposeTimeout: 5000, // Options for popover popover: { defaultPlacement: 'bottom', // Use the `popoverClass` prop for theming defaultClass: 'vue-popover-theme', // Base class (change if conflicts with other libraries) defaultBaseClass: 'tooltip popover', // Wrapper class (contains arrow and inner) defaultWrapperClass: 'wrapper', // Inner content class defaultInnerClass: 'tooltip-inner popover-inner', // Arrow class defaultArrowClass: 'tooltip-arrow popover-arrow', // Class added when popover is open defaultOpenClass: 'open', defaultDelay: 0, defaultTrigger: 'click', defaultOffset: 0, defaultContainer: 'body', defaultBoundariesElement: undefined, defaultPopperOptions: {}, // Hides if clicked outside of popover defaultAutoHide: true, // Update popper on content resize defaultHandleResize: true } }; function getOptions(options) { var result = { placement: typeof options.placement !== 'undefined' ? options.placement : directive.options.defaultPlacement, delay: typeof options.delay !== 'undefined' ? options.delay : directive.options.defaultDelay, html: typeof options.html !== 'undefined' ? options.html : directive.options.defaultHtml, template: typeof options.template !== 'undefined' ? options.template : directive.options.defaultTemplate, arrowSelector: typeof options.arrowSelector !== 'undefined' ? options.arrowSelector : directive.options.defaultArrowSelector, innerSelector: typeof options.innerSelector !== 'undefined' ? options.innerSelector : directive.options.defaultInnerSelector, trigger: typeof options.trigger !== 'undefined' ? options.trigger : directive.options.defaultTrigger, offset: typeof options.offset !== 'undefined' ? options.offset : directive.options.defaultOffset, container: typeof options.container !== 'undefined' ? options.container : directive.options.defaultContainer, boundariesElement: typeof options.boundariesElement !== 'undefined' ? options.boundariesElement : directive.options.defaultBoundariesElement, autoHide: typeof options.autoHide !== 'undefined' ? options.autoHide : directive.options.autoHide, hideOnTargetClick: typeof options.hideOnTargetClick !== 'undefined' ? options.hideOnTargetClick : directive.options.defaultHideOnTargetClick, loadingClass: typeof options.loadingClass !== 'undefined' ? options.loadingClass : directive.options.defaultLoadingClass, loadingContent: typeof options.loadingContent !== 'undefined' ? options.loadingContent : directive.options.defaultLoadingContent, popperOptions: _objectSpread2({}, typeof options.popperOptions !== 'undefined' ? options.popperOptions : directive.options.defaultPopperOptions) }; if (result.offset) { var typeofOffset = _typeof$1(result.offset); var offset = result.offset; // One value -> switch if (typeofOffset === 'number' || typeofOffset === 'string' && offset.indexOf(',') === -1) { offset = "0, ".concat(offset); } if (!result.popperOptions.modifiers) { result.popperOptions.modifiers = {}; } result.popperOptions.modifiers.offset = { offset: offset }; } if (result.trigger && result.trigger.indexOf('click') !== -1) { result.hideOnTargetClick = false; } return result; } function getPlacement(value, modifiers) { var placement = value.placement; for (var i = 0; i < positions.length; i++) { var pos = positions[i]; if (modifiers[pos]) { placement = pos; } } return placement; } function getContent(value) { var type = _typeof$1(value); if (type === 'string') { return value; } else if (value && type === 'object') { return value.content; } else { return false; } } function createTooltip(el, value) { var modifiers = arguments.length > 2 && arguments[2] !== undefined ? arguments[2] : {}; var content = getContent(value); var classes = typeof value.classes !== 'undefined' ? value.classes : directive.options.defaultClass; var opts = _objectSpread2({ title: content }, getOptions(_objectSpread2(_objectSpread2({}, _typeof$1(value) === 'object' ? value : {}), {}, { placement: getPlacement(value, modifiers) }))); var tooltip = el._tooltip = new Tooltip(el, opts); tooltip.setClasses(classes); tooltip._vueEl = el; // Class on target var targetClasses = typeof value.targetClasses !== 'undefined' ? value.targetClasses : directive.options.defaultTargetClass; el._tooltipTargetClasses = targetClasses; addClasses(el, targetClasses); return tooltip; } function destroyTooltip(el) { if (el._tooltip) { el._tooltip.dispose(); delete el._tooltip; delete el._tooltipOldShow; } if (el._tooltipTargetClasses) { removeClasses(el, el._tooltipTargetClasses); delete el._tooltipTargetClasses; } } function bind(el, _ref) { var value = _ref.value; _ref.oldValue; var modifiers = _ref.modifiers; var content = getContent(value); if (!content || !state.enabled) { destroyTooltip(el); } else { var tooltip; if (el._tooltip) { tooltip = el._tooltip; // Content tooltip.setContent(content); // Options tooltip.setOptions(_objectSpread2(_objectSpread2({}, value), {}, { placement: getPlacement(value, modifiers) })); } else { tooltip = createTooltip(el, value, modifiers); } // Manual show if (typeof value.show !== 'undefined' && value.show !== el._tooltipOldShow) { el._tooltipOldShow = value.show; value.show ? tooltip.show() : tooltip.hide(); } } } var directive = { options: defaultOptions, bind: bind, update: bind, unbind: function unbind(el) { destroyTooltip(el); } }; function addListeners(el) { el.addEventListener('click', onClick); el.addEventListener('touchstart', onTouchStart, supportsPassive ? { passive: true } : false); } function removeListeners(el) { el.removeEventListener('click', onClick); el.removeEventListener('touchstart', onTouchStart); el.removeEventListener('touchend', onTouchEnd); el.removeEventListener('touchcancel', onTouchCancel); } function onClick(event) { var el = event.currentTarget; event.closePopover = !el.$_vclosepopover_touch; event.closeAllPopover = el.$_closePopoverModifiers && !!el.$_closePopoverModifiers.all; } function onTouchStart(event) { if (event.changedTouches.length === 1) { var el = event.currentTarget; el.$_vclosepopover_touch = true; var touch = event.changedTouches[0]; el.$_vclosepopover_touchPoint = touch; el.addEventListener('touchend', onTouchEnd); el.addEventListener('touchcancel', onTouchCancel); } } function onTouchEnd(event) { var el = event.currentTarget; el.$_vclosepopover_touch = false; if (event.changedTouches.length === 1) { var touch = event.changedTouches[0]; var firstTouch = el.$_vclosepopover_touchPoint; event.closePopover = Math.abs(touch.screenY - firstTouch.screenY) < 20 && Math.abs(touch.screenX - firstTouch.screenX) < 20; event.closeAllPopover = el.$_closePopoverModifiers && !!el.$_closePopoverModifiers.all; } } function onTouchCancel(event) { var el = event.currentTarget; el.$_vclosepopover_touch = false; } var vclosepopover = { bind: function bind(el, _ref) { var value = _ref.value, modifiers = _ref.modifiers; el.$_closePopoverModifiers = modifiers; if (typeof value === 'undefined' || value) { addListeners(el); } }, update: function update(el, _ref2) { var value = _ref2.value, oldValue = _ref2.oldValue, modifiers = _ref2.modifiers; el.$_closePopoverModifiers = modifiers; if (value !== oldValue) { if (typeof value === 'undefined' || value) { addListeners(el); } else { removeListeners(el); } } }, unbind: function unbind(el) { removeListeners(el); } }; function getDefault(key) { var value = directive.options.popover[key]; if (typeof value === 'undefined') { return directive.options[key]; } return value; } var isIOS = false; if (typeof window !== 'undefined' && typeof navigator !== 'undefined') { isIOS = /iPad|iPhone|iPod/.test(navigator.userAgent) && !window.MSStream; } var openPopovers = []; var Element = function Element() {}; if (typeof window !== 'undefined') { Element = window.Element; } var script$8 = { name: 'VPopover', components: { ResizeObserver: __vue_component__$9 }, props: { open: { type: Boolean, default: false }, disabled: { type: Boolean, default: false }, placement: { type: String, default: function _default() { return getDefault('defaultPlacement'); } }, delay: { type: [String, Number, Object], default: function _default() { return getDefault('defaultDelay'); } }, offset: { type: [String, Number], default: function _default() { return getDefault('defaultOffset'); } }, trigger: { type: String, default: function _default() { return getDefault('defaultTrigger'); } }, container: { type: [String, Object, Element, Boolean], default: function _default() { return getDefault('defaultContainer'); } }, boundariesElement: { type: [String, Element], default: function _default() { return getDefault('defaultBoundariesElement'); } }, popperOptions: { type: Object, default: function _default() { return getDefault('defaultPopperOptions'); } }, popoverClass: { type: [String, Array], default: function _default() { return getDefault('defaultClass'); } }, popoverBaseClass: { type: [String, Array], default: function _default() { return directive.options.popover.defaultBaseClass; } }, popoverInnerClass: { type: [String, Array], default: function _default() { return directive.options.popover.defaultInnerClass; } }, popoverWrapperClass: { type: [String, Array], default: function _default() { return directive.options.popover.defaultWrapperClass; } }, popoverArrowClass: { type: [String, Array], default: function _default() { return directive.options.popover.defaultArrowClass; } }, autoHide: { type: Boolean, default: function _default() { return directive.options.popover.defaultAutoHide; } }, handleResize: { type: Boolean, default: function _default() { return directive.options.popover.defaultHandleResize; } }, openGroup: { type: String, default: null }, openClass: { type: [String, Array], default: function _default() { return directive.options.popover.defaultOpenClass; } }, ariaId: { default: null } }, data: function data() { return { isOpen: false, id: Math.random().toString(36).substr(2, 10) }; }, computed: { cssClass: function cssClass() { return _defineProperty$1({}, this.openClass, this.isOpen); }, popoverId: function popoverId() { return "popover_".concat(this.ariaId != null ? this.ariaId : this.id); } }, watch: { open: function open(val) { if (val) { this.show(); } else { this.hide(); } }, disabled: function disabled(val, oldVal) { if (val !== oldVal) { if (val) { this.hide(); } else if (this.open) { this.show(); } } }, container: function container(val) { if (this.isOpen && this.popperInstance) { var popoverNode = this.$refs.popover; var reference = this.$refs.trigger; var container = this.$_findContainer(this.container, reference); if (!container) { console.warn('No container for popover', this); return; } container.appendChild(popoverNode); this.popperInstance.scheduleUpdate(); } }, trigger: function trigger(val) { this.$_removeEventListeners(); this.$_addEventListeners(); }, placement: function placement(val) { var _this = this; this.$_updatePopper(function () { _this.popperInstance.options.placement = val; }); }, offset: '$_restartPopper', boundariesElement: '$_restartPopper', popperOptions: { handler: '$_restartPopper', deep: true } }, created: function created() { this.$_isDisposed = false; this.$_mounted = false; this.$_events = []; this.$_preventOpen = false; }, mounted: function mounted() { var popoverNode = this.$refs.popover; popoverNode.parentNode && popoverNode.parentNode.removeChild(popoverNode); this.$_init(); if (this.open) { this.show(); } }, deactivated: function deactivated() { this.hide(); }, beforeDestroy: function beforeDestroy() { this.dispose(); }, methods: { show: function show() { var _this2 = this; var _ref2 = arguments.length > 0 && arguments[0] !== undefined ? arguments[0] : {}, event = _ref2.event; _ref2.skipDelay; var _ref2$force = _ref2.force, force = _ref2$force === void 0 ? false : _ref2$force; if (force || !this.disabled) { this.$_scheduleShow(event); this.$emit('show'); } this.$emit('update:open', true); this.$_beingShowed = true; requestAnimationFrame(function () { _this2.$_beingShowed = false; }); }, hide: function hide() { var _ref3 = arguments.length > 0 && arguments[0] !== undefined ? arguments[0] : {}, event = _ref3.event; _ref3.skipDelay; this.$_scheduleHide(event); this.$emit('hide'); this.$emit('update:open', false); }, dispose: function dispose() { this.$_isDisposed = true; this.$_removeEventListeners(); this.hide({ skipDelay: true }); if (this.popperInstance) { this.popperInstance.destroy(); // destroy tooltipNode if removeOnDestroy is not set, as popperInstance.destroy() already removes the element if (!this.popperInstance.options.removeOnDestroy) { var popoverNode = this.$refs.popover; popoverNode.parentNode && popoverNode.parentNode.removeChild(popoverNode); } } this.$_mounted = false; this.popperInstance = null; this.isOpen = false; this.$emit('dispose'); }, $_init: function $_init() { if (this.trigger.indexOf('manual') === -1) { this.$_addEventListeners(); } }, $_show: function $_show() { var _this3 = this; var reference = this.$refs.trigger; var popoverNode = this.$refs.popover; clearTimeout(this.$_disposeTimer); // Already open if (this.isOpen) { return; } // Popper is already initialized if (this.popperInstance) { this.isOpen = true; this.popperInstance.enableEventListeners(); this.popperInstance.scheduleUpdate(); } if (!this.$_mounted) { var container = this.$_findContainer(this.container, reference); if (!container) { console.warn('No container for popover', this); return; } container.appendChild(popoverNode); this.$_mounted = true; this.isOpen = false; if (this.popperInstance) { requestAnimationFrame(function () { if (!_this3.hidden) { _this3.isOpen = true; } }); } } if (!this.popperInstance) { var popperOptions = _objectSpread2(_objectSpread2({}, this.popperOptions), {}, { placement: this.placement }); popperOptions.modifiers = _objectSpread2(_objectSpread2({}, popperOptions.modifiers), {}, { arrow: _objectSpread2(_objectSpread2({}, popperOptions.modifiers && popperOptions.modifiers.arrow), {}, { element: this.$refs.arrow }) }); if (this.offset) { var offset = this.$_getOffset(); popperOptions.modifiers.offset = _objectSpread2(_objectSpread2({}, popperOptions.modifiers && popperOptions.modifiers.offset), {}, { offset: offset }); } if (this.boundariesElement) { popperOptions.modifiers.preventOverflow = _objectSpread2(_objectSpread2({}, popperOptions.modifiers && popperOptions.modifiers.preventOverflow), {}, { boundariesElement: this.boundariesElement }); } this.popperInstance = new Popper(reference, popoverNode, popperOptions); // Fix position requestAnimationFrame(function () { if (_this3.hidden) { _this3.hidden = false; _this3.$_hide(); return; } if (!_this3.$_isDisposed && _this3.popperInstance) { _this3.popperInstance.scheduleUpdate(); // Show the tooltip requestAnimationFrame(function () { if (_this3.hidden) { _this3.hidden = false; _this3.$_hide(); return; } if (!_this3.$_isDisposed) { _this3.isOpen = true; } else { _this3.dispose(); } }); } else { _this3.dispose(); } }); } var openGroup = this.openGroup; if (openGroup) { var popover; for (var i = 0; i < openPopovers.length; i++) { popover = openPopovers[i]; if (popover.openGroup !== openGroup) { popover.hide(); popover.$emit('close-group'); } } } openPopovers.push(this); this.$emit('apply-show'); }, $_hide: function $_hide() { var _this4 = this; // Already hidden if (!this.isOpen) { return; } var index = openPopovers.indexOf(this); if (index !== -1) { openPopovers.splice(index, 1); } this.isOpen = false; if (this.popperInstance) { this.popperInstance.disableEventListeners(); } clearTimeout(this.$_disposeTimer); var disposeTime = directive.options.popover.disposeTimeout || directive.options.disposeTimeout; if (disposeTime !== null) { this.$_disposeTimer = setTimeout(function () { var popoverNode = _this4.$refs.popover; if (popoverNode) { // Don't remove popper instance, just the HTML element popoverNode.parentNode && popoverNode.parentNode.removeChild(popoverNode); _this4.$_mounted = false; } }, disposeTime); } this.$emit('apply-hide'); }, $_findContainer: function $_findContainer(container, reference) { // if container is a query, get the relative element if (typeof container === 'string') { container = window.document.querySelector(container); } else if (container === false) { // if container is `false`, set it to reference parent container = reference.parentNode; } return container; }, $_getOffset: function $_getOffset() { var typeofOffset = _typeof$1(this.offset); var offset = this.offset; // One value -> switch if (typeofOffset === 'number' || typeofOffset === 'string' && offset.indexOf(',') === -1) { offset = "0, ".concat(offset); } return offset; }, $_addEventListeners: function $_addEventListeners() { var _this5 = this; var reference = this.$refs.trigger; var directEvents = []; var oppositeEvents = []; var events = typeof this.trigger === 'string' ? this.trigger.split(' ').filter(function (trigger) { return ['click', 'hover', 'focus'].indexOf(trigger) !== -1; }) : []; events.forEach(function (event) { switch (event) { case 'hover': directEvents.push('mouseenter'); oppositeEvents.push('mouseleave'); break; case 'focus': directEvents.push('focus'); oppositeEvents.push('blur'); break; case 'click': directEvents.push('click'); oppositeEvents.push('click'); break; } }); // schedule show tooltip directEvents.forEach(function (event) { var func = function func(event) { if (_this5.isOpen) { return; } event.usedByTooltip = true; !_this5.$_preventOpen && _this5.show({ event: event }); _this5.hidden = false; }; _this5.$_events.push({ event: event, func: func }); reference.addEventListener(event, func); }); // schedule hide tooltip oppositeEvents.forEach(function (event) { var func = function func(event) { if (event.usedByTooltip) { return; } _this5.hide({ event: event }); _this5.hidden = true; }; _this5.$_events.push({ event: event, func: func }); reference.addEventListener(event, func); }); }, $_scheduleShow: function $_scheduleShow() { var skipDelay = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : false; clearTimeout(this.$_scheduleTimer); if (skipDelay) { this.$_show(); } else { // defaults to 0 var computedDelay = parseInt(this.delay && this.delay.show || this.delay || 0); this.$_scheduleTimer = setTimeout(this.$_show.bind(this), computedDelay); } }, $_scheduleHide: function $_scheduleHide() { var _this6 = this; var event = arguments.length > 0 && arguments[0] !== undefined ? arguments[0] : null; var skipDelay = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : false; clearTimeout(this.$_scheduleTimer); if (skipDelay) { this.$_hide(); } else { // defaults to 0 var computedDelay = parseInt(this.delay && this.delay.hide || this.delay || 0); this.$_scheduleTimer = setTimeout(function () { if (!_this6.isOpen) { return; } // if we are hiding because of a mouseleave, we must check that the new // reference isn't the tooltip, because in this case we don't want to hide it if (event && event.type === 'mouseleave') { var isSet = _this6.$_setTooltipNodeEvent(event); // if we set the new event, don't hide the tooltip yet // the new event will take care to hide it if necessary if (isSet) { return; } } _this6.$_hide(); }, computedDelay); } }, $_setTooltipNodeEvent: function $_setTooltipNodeEvent(event) { var _this7 = this; var reference = this.$refs.trigger; var popoverNode = this.$refs.popover; var relatedreference = event.relatedreference || event.toElement || event.relatedTarget; var callback = function callback(event2) { var relatedreference2 = event2.relatedreference || event2.toElement || event2.relatedTarget; // Remove event listener after call popoverNode.removeEventListener(event.type, callback); // If the new reference is not the reference element if (!reference.contains(relatedreference2)) { // Schedule to hide tooltip _this7.hide({ event: event2 }); } }; if (popoverNode.contains(relatedreference)) { // listen to mouseleave on the tooltip element to be able to hide the tooltip popoverNode.addEventListener(event.type, callback); return true; } return false; }, $_removeEventListeners: function $_removeEventListeners() { var reference = this.$refs.trigger; this.$_events.forEach(function (_ref4) { var func = _ref4.func, event = _ref4.event; reference.removeEventListener(event, func); }); this.$_events = []; }, $_updatePopper: function $_updatePopper(cb) { if (this.popperInstance) { cb(); if (this.isOpen) this.popperInstance.scheduleUpdate(); } }, $_restartPopper: function $_restartPopper() { if (this.popperInstance) { var isOpen = this.isOpen; this.dispose(); this.$_isDisposed = false; this.$_init(); if (isOpen) { this.show({ skipDelay: true, force: true }); } } }, $_handleGlobalClose: function $_handleGlobalClose(event) { var _this8 = this; var touch = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : false; if (this.$_beingShowed) return; this.hide({ event: event }); if (event.closePopover) { this.$emit('close-directive'); } else { this.$emit('auto-hide'); } if (touch) { this.$_preventOpen = true; setTimeout(function () { _this8.$_preventOpen = false; }, 300); } }, $_handleResize: function $_handleResize() { if (this.isOpen && this.popperInstance) { this.popperInstance.scheduleUpdate(); this.$emit('resize'); } } } }; if (typeof document !== 'undefined' && typeof window !== 'undefined') { if (isIOS) { document.addEventListener('touchend', handleGlobalTouchend, supportsPassive ? { passive: true, capture: true } : true); } else { window.addEventListener('click', handleGlobalClick, true); } } function handleGlobalClick(event) { handleGlobalClose(event); } function handleGlobalTouchend(event) { handleGlobalClose(event, true); } function handleGlobalClose(event) { var touch = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : false; var _loop = function _loop(i) { var popover = openPopovers[i]; if (popover.$refs.popover) { var contains = popover.$refs.popover.contains(event.target); requestAnimationFrame(function () { if (event.closeAllPopover || event.closePopover && contains || popover.autoHide && !contains) { popover.$_handleGlobalClose(event, touch); } }); } }; // Delay so that close directive has time to set values for (var i = 0; i < openPopovers.length; i++) { _loop(i); } } function normalizeComponent$1(template, style, script, scopeId, isFunctionalTemplate, moduleIdentifier /* server only */, shadowMode, createInjector, createInjectorSSR, createInjectorShadow) { if (typeof shadowMode !== 'boolean') { createInjectorSSR = createInjector; createInjector = shadowMode; shadowMode = false; } // Vue.extend constructor export interop. const options = typeof script === 'function' ? script.options : script; // render functions if (template && template.render) { options.render = template.render; options.staticRenderFns = template.staticRenderFns; options._compiled = true; // functional template if (isFunctionalTemplate) { options.functional = true; } } // scopedId if (scopeId) { options._scopeId = scopeId; } let hook; if (moduleIdentifier) { // server build hook = function (context) { // 2.3 injection context = context || // cached call (this.$vnode && this.$vnode.ssrContext) || // stateful (this.parent && this.parent.$vnode && this.parent.$vnode.ssrContext); // functional // 2.2 with runInNewContext: true if (!context && typeof __VUE_SSR_CONTEXT__ !== 'undefined') { context = __VUE_SSR_CONTEXT__; } // inject component styles if (style) { style.call(this, createInjectorSSR(context)); } // register component module identifier for async chunk inference if (context && context._registeredComponents) { context._registeredComponents.add(moduleIdentifier); } }; // used by ssr in case component is cached and beforeCreate // never gets called options._ssrRegister = hook; } else if (style) { hook = shadowMode ? function (context) { style.call(this, createInjectorShadow(context, this.$root.$options.shadowRoot)); } : function (context) { style.call(this, createInjector(context)); }; } if (hook) { if (options.functional) { // register for functional component in vue file const originalRender = options.render; options.render = function renderWithStyleInjection(h, context) { hook.call(context); return originalRender(h, context); }; } else { // inject component registration as beforeCreate hook const existing = options.beforeCreate; options.beforeCreate = existing ? [].concat(existing, hook) : [hook]; } } return script; } /* script */ var __vue_script__$8 = script$8; /* template */ var __vue_render__$8 = function __vue_render__() { var _vm = this; var _h = _vm.$createElement; var _c = _vm._self._c || _h; return _c("div", { staticClass: "v-popover", class: _vm.cssClass }, [_c("div", { ref: "trigger", staticClass: "trigger", staticStyle: { display: "inline-block" }, attrs: { "aria-describedby": _vm.isOpen ? _vm.popoverId : undefined, tabindex: _vm.trigger.indexOf("focus") !== -1 ? 0 : undefined } }, [_vm._t("default")], 2), _vm._v(" "), _c("div", { ref: "popover", class: [_vm.popoverBaseClass, _vm.popoverClass, _vm.cssClass], style: { visibility: _vm.isOpen ? "visible" : "hidden" }, attrs: { id: _vm.popoverId, "aria-hidden": _vm.isOpen ? "false" : "true", tabindex: _vm.autoHide ? 0 : undefined }, on: { keyup: function keyup($event) { if (!$event.type.indexOf("key") && _vm._k($event.keyCode, "esc", 27, $event.key, ["Esc", "Escape"])) { return null; } _vm.autoHide && _vm.hide(); } } }, [_c("div", { class: _vm.popoverWrapperClass }, [_c("div", { ref: "inner", class: _vm.popoverInnerClass, staticStyle: { position: "relative" } }, [_c("div", [_vm._t("popover", null, { isOpen: _vm.isOpen })], 2), _vm._v(" "), _vm.handleResize ? _c("ResizeObserver", { on: { notify: _vm.$_handleResize } }) : _vm._e()], 1), _vm._v(" "), _c("div", { ref: "arrow", class: _vm.popoverArrowClass })])])]); }; var __vue_staticRenderFns__$8 = []; __vue_render__$8._withStripped = true; /* style */ var __vue_inject_styles__$8 = undefined; /* scoped */ var __vue_scope_id__$8 = undefined; /* module identifier */ var __vue_module_identifier__$8 = undefined; /* functional template */ var __vue_is_functional_template__$8 = false; /* style inject */ /* style inject SSR */ /* style inject shadow dom */ var __vue_component__$8 = /*#__PURE__*/normalizeComponent$1({ render: __vue_render__$8, staticRenderFns: __vue_staticRenderFns__$8 }, __vue_inject_styles__$8, __vue_script__$8, __vue_scope_id__$8, __vue_is_functional_template__$8, __vue_module_identifier__$8, false, undefined, undefined, undefined); function styleInject(css, ref) { if ( ref === void 0 ) ref = {}; var insertAt = ref.insertAt; if (!css || typeof document === 'undefined') { return; } var head = document.head || document.getElementsByTagName('head')[0]; var style = document.createElement('style'); style.type = 'text/css'; if (insertAt === 'top') { if (head.firstChild) { head.insertBefore(style, head.firstChild); } else { head.appendChild(style); } } else { head.appendChild(style); } if (style.styleSheet) { style.styleSheet.cssText = css; } else { style.appendChild(document.createTextNode(css)); } } var css_248z = ".resize-observer[data-v-8859cc6c]{position:absolute;top:0;left:0;z-index:-1;width:100%;height:100%;border:none;background-color:transparent;pointer-events:none;display:block;overflow:hidden;opacity:0}.resize-observer[data-v-8859cc6c] object{display:block;position:absolute;top:0;left:0;height:100%;width:100%;overflow:hidden;pointer-events:none;z-index:-1}"; styleInject(css_248z); function install(Vue) { var options = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : {}; if (install.installed) return; install.installed = true; var finalOptions = {}; merge_1(finalOptions, defaultOptions, options); plugin.options = finalOptions; directive.options = finalOptions; Vue.directive('tooltip', directive); Vue.directive('close-popover', vclosepopover); Vue.component('VPopover', __vue_component__$8); } var plugin = { install: install, get enabled() { return state.enabled; }, set enabled(value) { state.enabled = value; } }; // Auto-install var GlobalVue = null; if (typeof window !== 'undefined') { GlobalVue = window.Vue; } else if (typeof global !== 'undefined') { GlobalVue = global.Vue; } if (GlobalVue) { GlobalVue.use(plugin); } var dist = createCommonjsModule(function (module, exports) { !function(e,t){module.exports=t();}(window,function(){return i={},o.m=n=[function(e,t,n){var i=n(6);"string"==typeof i&&(i=[[e.i,i,""]]),i.locals&&(e.exports=i.locals);(0, n(4).default)("27d83796",i,!1,{});},function(e,t,n){var i=n(8);"string"==typeof i&&(i=[[e.i,i,""]]),i.locals&&(e.exports=i.locals);(0, n(4).default)("0e783494",i,!1,{});},function(e,t,n){var i=n(10);"string"==typeof i&&(i=[[e.i,i,""]]),i.locals&&(e.exports=i.locals);(0, n(4).default)("17757f60",i,!1,{});},function(e,t){e.exports=function(n){var a=[];return a.toString=function(){return this.map(function(e){var t=function(e,t){var n=e[1]||"",i=e[3];if(!i)return n;if(t&&"function"==typeof btoa){var o=function(e){return "/*# sourceMappingURL=data:application/json;charset=utf-8;base64,"+btoa(unescape(encodeURIComponent(JSON.stringify(e))))+" */"}(i),r=i.sources.map(function(e){return "/*# sourceURL="+i.sourceRoot+e+" */"});return [n].concat(r).concat([o]).join("\n")}return [n].join("\n")}(e,n);return e[2]?"@media "+e[2]+"{"+t+"}":t}).join("")},a.i=function(e,t){"string"==typeof e&&(e=[[null,e,""]]);for(var n={},i=0;i<this.length;i++){var o=this[i][0];"number"==typeof o&&(n[o]=!0);}for(i=0;i<e.length;i++){var r=e[i];"number"==typeof r[0]&&n[r[0]]||(t&&!r[2]?r[2]=t:t&&(r[2]="("+r[2]+") and ("+t+")"),a.push(r));}},a};},function(e,t,n){function l(e,t){for(var n=[],i={},o=0;o<t.length;o++){var r=t[o],a=r[0],s={id:e+":"+o,css:r[1],media:r[2],sourceMap:r[3]};i[a]?i[a].parts.push(s):n.push(i[a]={id:a,parts:[s]});}return n}n.r(t),n.d(t,"default",function(){return p});var i="undefined"!=typeof document;if("undefined"!=typeof DEBUG&&DEBUG&&!i)throw new Error("vue-style-loader cannot be used in a non-browser environment. 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height: 100vh;\n background: rgba(0, 0, 0, 0.2);\n z-index: 999;\n opacity: 1;\n}\n.v--modal-overlay.scrollable {\n height: 100%;\n min-height: 100vh;\n overflow-y: auto;\n -webkit-overflow-scrolling: touch;\n}\n.v--modal-overlay .v--modal-background-click {\n width: 100%;\n min-height: 100%;\n height: auto;\n}\n.v--modal-overlay .v--modal-box {\n position: relative;\n overflow: hidden;\n box-sizing: border-box;\n}\n.v--modal-overlay.scrollable .v--modal-box {\n margin-bottom: 2px;\n}\n.v--modal {\n background-color: white;\n text-align: left;\n border-radius: 3px;\n box-shadow: 0 20px 60px -2px rgba(27, 33, 58, 0.4);\n padding: 0;\n}\n.v--modal.v--modal-fullscreen {\n width: 100vw;\n height: 100vh;\n margin: 0;\n left: 0;\n top: 0;\n}\n.v--modal-top-right {\n display: block;\n position: absolute;\n right: 0;\n top: 0;\n}\n.overlay-fade-enter-active,\n.overlay-fade-leave-active {\n transition: all 0.2s;\n}\n.overlay-fade-enter,\n.overlay-fade-leave-active {\n opacity: 0;\n}\n.nice-modal-fade-enter-active,\n.nice-modal-fade-leave-active {\n transition: all 0.4s;\n}\n.nice-modal-fade-enter,\n.nice-modal-fade-leave-active {\n opacity: 0;\n transform: translateY(-20px);\n}\n",""]);},function(e,t,n){var i=n(2);n.n(i).a;},function(e,t,n){(e.exports=n(3)(!1)).push([e.i,"\n.vue-dialog div {\n box-sizing: border-box;\n}\n.vue-dialog .dialog-flex {\n width: 100%;\n height: 100%;\n}\n.vue-dialog .dialog-content {\n flex: 1 0 auto;\n width: 100%;\n padding: 15px;\n font-size: 14px;\n}\n.vue-dialog .dialog-c-title {\n font-weight: 600;\n padding-bottom: 15px;\n}\n.vue-dialog .dialog-c-text {\n}\n.vue-dialog .vue-dialog-buttons {\n display: flex;\n flex: 0 1 auto;\n width: 100%;\n border-top: 1px solid #eee;\n}\n.vue-dialog .vue-dialog-buttons-none {\n width: 100%;\n padding-bottom: 15px;\n}\n.vue-dialog-button {\n font-size: 12px !important;\n background: transparent;\n padding: 0;\n margin: 0;\n border: 0;\n cursor: pointer;\n box-sizing: border-box;\n 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"),n("transition",{attrs:{name:t.transition},on:{"before-enter":t.beforeTransitionEnter,"after-enter":t.afterTransitionEnter,"after-leave":t.afterTransitionLeave}},[t.visibility.modal?n("div",{ref:"modal",class:t.modalClass,style:t.modalStyle,attrs:{role:"dialog","aria-modal":"true"}},[t._t("default"),t._v(" "),t.resizable&&!t.isAutoHeight?n("resizer",{attrs:{"min-width":t.minWidth,"min-height":t.minHeight,"max-width":t.maxWidth,"max-height":t.maxHeight},on:{resize:t.handleModalResize}}):t._e()],2):t._e()])],1)]):t._e()])}function o(){var e=this.$createElement;return (this._self._c||e)("div",{class:this.className})}function r(e,t){return function(e){if(Array.isArray(e))return e}(e)||function(e,t){var n=[],i=!0,o=!1,r=void 0;try{for(var a,s=e[Symbol.iterator]();!(i=(a=s.next()).done)&&(n.push(a.value),!t||n.length!==t);i=!0);}catch(e){o=!0,r=e;}finally{try{i||null==s.return||s.return();}finally{if(o)throw r}}return n}(e,t)||function(){throw new TypeError("Invalid attempt to destructure 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x={name:"VueJsModal",props:{name:{required:!0,type:String},delay:{type:Number,default:0},resizable:{type:Boolean,default:!1},adaptive:{type:Boolean,default:!1},draggable:{type:[Boolean,String],default:!1},scrollable:{type:Boolean,default:!1},reset:{type:Boolean,default:!1},overlayTransition:{type:String,default:"overlay-fade"},transition:{type:String},clickToClose:{type:Boolean,default:!0},classes:{type:[String,Array],default:"v--modal"},styles:{type:[String,Array,Object]},minWidth:{type:Number,default:0,validator:function(e){return 0<=e}},minHeight:{type:Number,default:0,validator:function(e){return 0<=e}},maxWidth:{type:Number,default:Number.MAX_SAFE_INTEGER},maxHeight:{type:Number,default:Number.MAX_SAFE_INTEGER},width:{type:[Number,String],default:600,validator:g},height:{type:[Number,String],default:300,validator:function(e){return "auto"===e||g(e)}},pivotX:{type:Number,default:.5,validator:function(e){return 0<=e&&e<=1}},pivotY:{type:Number,default:.5,validator:function(e){return 0<=e&&e<=1}}},components:{Resizer:p},data:function(){return {visible:!1,visibility:{modal:!1,overlay:!1},shift:{left:0,top:0},modal:{width:0,widthType:"px",height:0,heightType:"px",renderedHeight:0},viewportHeight:0,viewportWidth:0,mutationObserver:null}},created:function(){this.setInitialSize();},beforeMount:function(){var t=this;if(A.event.$on("toggle",this.handleToggleEvent),window.addEventListener("resize",this.handleWindowResize),this.handleWindowResize(),this.scrollable&&!this.isAutoHeight&&console.warn('Modal "'.concat(this.name,'" has scrollable flag set to true ')+'but height is not "auto" ('.concat(this.height,")")),this.isAutoHeight){var e=function(){if("undefined"!=typeof window)for(var e=["","WebKit","Moz","O","Ms"],t=0;t<e.length;t++){var n=e[t]+"MutationObserver";if(n in window)return window[n]}return !1}();e?this.mutationObserver=new e(function(e){t.updateRenderedHeight();}):console.warn("MutationObserver was not found. 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e=this.viewportHeight,t=this.modal,n=this.isAutoHeight,i=this.adaptive,o=this.minHeight,r=this.maxHeight,a="%"===t.heightType?e/100*t.height:t.height;if(n)return this.modal.renderedHeight;var s=Math.max(o,Math.min(e,r));return i?c(o,s,a):a},overlayClass:function(){return {"v--modal-overlay":!0,scrollable:this.scrollable&&this.isAutoHeight}},modalClass:function(){return ["v--modal-box",this.classes]},stylesProp:function(){return "string"==typeof this.styles?this.styles.split(";").map(function(e){return e.trim()}).filter(Boolean).map(function(e){return e.split(":")}).reduce(function(e,t){var n=r(t,2);return a({},e,s({},n[0],n[1]))},{}):this.styles},modalStyle:function(){return [this.stylesProp,{top:this.position.top+"px",left:this.position.left+"px",width:this.trueModalWidth+"px",height:this.isAutoHeight?"auto":this.trueModalHeight+"px"}]}},watch:{visible:function(e){var t=this;e?(this.visibility.overlay=!0,setTimeout(function(){t.visibility.modal=!0,t.$nextTick(function(){t.addDraggableListeners(),t.callAfterEvent(!0);});},this.delay)):(this.visibility.modal=!1,setTimeout(function(){t.visibility.overlay=!1,t.$nextTick(function(){t.removeDraggableListeners(),t.callAfterEvent(!1);});},this.delay));}},methods:{handleToggleEvent:function(e,t,n){if(this.name===e){var i=void 0===t?!this.visible:t;this.toggle(i,n);}},setInitialSize:function(){var e=this.modal,t=v(this.width),n=v(this.height);e.width=t.value,e.widthType=t.type,e.height=n.value,e.heightType=n.type;},handleEscapeKeyUp:function(e){27===e.which&&this.visible&&this.$modal.hide(this.name);},handleWindowResize:function(){this.viewportWidth=l(),this.viewportHeight=window.innerHeight,this.ensureShiftInWindowBounds();},createModalEvent:function(e){var t=0<arguments.length&&void 0!==e?e:{};return function(e){var t=0<arguments.length&&void 0!==e?e:{};return 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a=!1,s=this.createModalEvent({stop:function(){a=!0;},state:e,params:t});this.$emit(r,s),a||(this.visible=e,"before-open"==r&&"undefined"!=typeof document&&document.activeElement&&"BODY"!==document.activeElement.tagName&&document.activeElement.blur&&document.activeElement.blur());}},getDraggableElement:function(){var e="string"!=typeof this.draggable?".v--modal-box":this.draggable;return e?this.$refs.overlay.querySelector(e):null},handleBackgroundClick:function(){this.clickToClose&&this.toggle(!1);},callAfterEvent:function(e){e?this.connectObserver():this.disconnectObserver();var t=e?"opened":"closed",n=this.createModalEvent({state:e});this.$emit(t,n);},addDraggableListeners:function(){var r=this;if(this.draggable){var e=this.getDraggableElement();if(e){var a=0,s=0,l=0,u=0,d=function(e){return e.touches&&0<e.touches.length?e.touches[0]:e},t=function(e){var t=e.target;if(!t||"INPUT"!==t.nodeName&&"TEXTAREA"!==t.nodeName&&"SELECT"!==t.nodeName){var n=d(e),i=n.clientX,o=n.clientY;document.addEventListener("mousemove",c),document.addEventListener("touchmove",c),document.addEventListener("mouseup",h),document.addEventListener("touchend",h),a=i,s=o,l=r.shift.left,u=r.shift.top;}},c=function(e){var t=d(e),n=t.clientX,i=t.clientY;r.shift.left=l+n-a,r.shift.top=u+i-s,e.preventDefault();},h=function 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e=this.viewportHeight,t=this.viewportWidth,n=this.shift,i=this.pivotX,o=this.pivotY,r=this.trueModalWidth,a=this.trueModalHeight,s=t-r,l=Math.max(e-a,0),u=n.left+i*s,d=n.top+o*l;this.shift.left-=u-c(0,s,u),this.shift.top-=d-c(0,l,d);}}},E=(n(7),h(x,i,[],!1,null,null,null));E.options.__file="src/Modal.vue";function _(){var n=this,e=n.$createElement,i=n._self._c||e;return i("modal",{attrs:{name:"dialog",height:"auto",classes:["v--modal","vue-dialog",this.params.class],width:n.width,"pivot-y":.3,adaptive:!0,clickToClose:n.clickToClose,transition:n.transition},on:{"before-open":n.beforeOpened,"before-close":n.beforeClosed,opened:function(e){n.$emit("opened",e);},closed:function(e){n.$emit("closed",e);}}},[i("div",{staticClass:"dialog-content"},[n.params.title?i("div",{staticClass:"dialog-c-title",domProps:{innerHTML:n._s(n.params.title||"")}}):n._e(),n._v(" 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i("modal",n._g(n._b({key:t.id,on:{closed:function(e){n.remove(t.id);}}},"modal",t.modalAttrs,!1),t.modalListeners),[i(t.component,n._g(n._b({tag:"component",on:{close:function(e){n.$modal.hide(t.modalAttrs.name);}}},"component",t.componentAttrs,!1),n.$listeners))],1)}))}var M=k.exports;function C(e,t,n){return t in e?Object.defineProperty(e,t,{value:n,enumerable:!0,configurable:!0,writable:!0}):e[t]=n,e}T._withStripped=!0;var $=h({data:function(){return {modals:[]}},created:function(){this.$root._dynamicContainer=this;},methods:{add:function(e,t,n,i){var o=this,r=1<arguments.length&&void 0!==t?t:{},a=2<arguments.length&&void 0!==n?n:{},s=3<arguments.length&&void 0!==i?i:{},l=d(),u=a.name||"_dynamic_modal_"+l;this.modals.push({id:l,modalAttrs:function(t){for(var e=1;e<arguments.length;e++){var n=null!=arguments[e]?arguments[e]:{},i=Object.keys(n);"function"==typeof Object.getOwnPropertySymbols&&(i=i.concat(Object.getOwnPropertySymbols(n).filter(function(e){return 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n._dynamicContainer},H={install:function(a,e){var s=1<arguments.length&&void 0!==e?e:{};if(!this.installed){this.installed=!0,this.event=new a,this.rootInstance=null;var t=s.componentName||"Modal",l=s.dynamicDefaults||{},o=function(e,t,n,i){var o=n&&n.root?n.root:H.rootInstance,r=N(a,s,o);r?r.add(e,t,function(t){for(var e=1;e<arguments.length;e++){var n=null!=arguments[e]?arguments[e]:{},i=Object.keys(n);"function"==typeof Object.getOwnPropertySymbols&&(i=i.concat(Object.getOwnPropertySymbols(n).filter(function(e){return Object.getOwnPropertyDescriptor(n,e).enumerable}))),i.forEach(function(e){L(t,e,n[e]);});}return t}({},l,n),i):console.warn("[vue-js-modal] In order to render dynamic modals, a <modals-container> component must be present on the page.");};a.prototype.$modal={show:function(e){for(var t=arguments.length,n=new Array(1<t?t-1:0),i=1;i<t;i++)n[i-1]=arguments[i];switch(z(e)){case"string":return function(e,t){H.event.$emit("toggle",e,!0,t);}.apply(void 0,[e].concat(n));case"object":case"function":return s.dynamic?o.apply(void 0,[e].concat(n)):console.warn("[vue-js-modal] $modal() received object as a first argument, but dynamic modals are switched off. https://github.com/euvl/vue-js-modal/#dynamic-modals");default:console.warn("[vue-js-modal] $modal() received an unsupported argument as a first argument.",e);}},hide:function(e,t){H.event.$emit("toggle",e,!1,t);},toggle:function(e,t){H.event.$emit("toggle",e,void 0,t);}},a.component(t,S),s.dialog&&a.component("VDialog",M),s.dynamic&&(a.component("ModalsContainer",j),a.mixin({beforeMount:function(){null===H.rootInstance&&(H.rootInstance=this.$root);}}));}}},A=t.default=H;}],o.c=i,o.d=function(e,t,n){o.o(e,t)||Object.defineProperty(e,t,{enumerable:!0,get:n});},o.r=function(e){"undefined"!=typeof Symbol&&Symbol.toStringTag&&Object.defineProperty(e,Symbol.toStringTag,{value:"Module"}),Object.defineProperty(e,"__esModule",{value:!0});},o.t=function(t,e){if(1&e&&(t=o(t)),8&e)return t;if(4&e&&"object"==typeof t&&t&&t.__esModule)return t;var n=Object.create(null);if(o.r(n),Object.defineProperty(n,"default",{enumerable:!0,value:t}),2&e&&"string"!=typeof t)for(var i in t)o.d(n,i,function(e){return t[e]}.bind(null,i));return n},o.n=function(e){var t=e&&e.__esModule?function(){return e.default}:function(){return e};return o.d(t,"a",t),t},o.o=function(e,t){return Object.prototype.hasOwnProperty.call(e,t)},o.p="/dist/",o(o.s=11);function o(e){if(i[e])return i[e].exports;var t=i[e]={i:e,l:!1,exports:{}};return n[e].call(t.exports,t,t.exports,o),t.l=!0,t.exports}var n,i;}); }); var VModal = unwrapExports(dist); // // // // // // // // // // // // // var script$7 = { name: 'Menu', props: { items: { type: Array, required: true, validator: function (value) { return value.length === value .filter(item => item.click && 'function' === typeof item.click && item.text && item.text.length).length; } } }, methods: { setStyles: function() { this.$refs.target.$refs.arrow.style.borderColor = this.bgColor; this.$refs.target.$refs.inner.style.background = this.bgColor; this.$refs.target.$refs.inner.style.color = this.color; } }, created() { // There's a nonconformant setup for the default color scheme for some reason. This is the actual hover color. let hoverColor = _SEARCHWP.misc.colors.current; if ( '#0073aa' === hoverColor ) { hoverColor = '#00b9eb'; } this.hoverColor = hoverColor; }, data() { return { bgColor: _SEARCHWP.misc.colors.base, color: _SEARCHWP.misc.colors.text, hoverColor: '' } } }; function normalizeComponent(template, style, script, scopeId, isFunctionalTemplate, moduleIdentifier /* server only */, shadowMode, createInjector, createInjectorSSR, createInjectorShadow) { if (typeof shadowMode !== 'boolean') { createInjectorSSR = createInjector; createInjector = shadowMode; shadowMode = false; } // Vue.extend constructor export interop. const options = typeof script === 'function' ? script.options : script; // render functions if (template && template.render) { options.render = template.render; options.staticRenderFns = template.staticRenderFns; options._compiled = true; // functional template if (isFunctionalTemplate) { options.functional = true; } } // scopedId if (scopeId) { options._scopeId = scopeId; } let hook; if (moduleIdentifier) { // server build hook = function (context) { // 2.3 injection context = context || // cached call (this.$vnode && this.$vnode.ssrContext) || // stateful (this.parent && this.parent.$vnode && this.parent.$vnode.ssrContext); // functional // 2.2 with runInNewContext: true if (!context && typeof __VUE_SSR_CONTEXT__ !== 'undefined') { context = __VUE_SSR_CONTEXT__; } // inject component styles if (style) { style.call(this, createInjectorSSR(context)); } // register component module identifier for async chunk inference if (context && context._registeredComponents) { context._registeredComponents.add(moduleIdentifier); } }; // used by ssr in case component is cached and beforeCreate // never gets called options._ssrRegister = hook; } else if (style) { hook = shadowMode ? function (context) { style.call(this, createInjectorShadow(context, this.$root.$options.shadowRoot)); } : function (context) { style.call(this, createInjector(context)); }; } if (hook) { if (options.functional) { // register for functional component in vue file const originalRender = options.render; options.render = function renderWithStyleInjection(h, context) { hook.call(context); return originalRender(h, context); }; } else { // inject component registration as beforeCreate hook const existing = options.beforeCreate; options.beforeCreate = existing ? [].concat(existing, hook) : [hook]; } } return script; } /* script */ const __vue_script__$7 = script$7; /* template */ var __vue_render__$7 = function () {var _vm=this;var _h=_vm.$createElement;var _c=_vm._self._c||_h;return _c('v-popover',{ref:"target",attrs:{"offset":"5"},on:{"show":_vm.setStyles}},[_vm._t("default"),_vm._v(" "),_c('template',{slot:"popover"},[_c('ul',{style:({ color: _vm.hoverColor })},_vm._l((_vm.items),function(item,index){return _c('li',{key:index},[_c('button',{directives:[{name:"close-popover",rawName:"v-close-popover"}],on:{"click":function($event){$event.stopPropagation();return item.click()}}},[_vm._v(_vm._s(item.text))])])}),0)])],2)}; var __vue_staticRenderFns__$7 = []; /* style */ const __vue_inject_styles__$7 = undefined; /* scoped */ const __vue_scope_id__$7 = undefined; /* module identifier */ const __vue_module_identifier__$7 = undefined; /* functional template */ const __vue_is_functional_template__$7 = false; /* style inject */ /* style inject SSR */ /* style inject shadow dom */ const __vue_component__$7 = /*#__PURE__*/normalizeComponent( { render: __vue_render__$7, staticRenderFns: __vue_staticRenderFns__$7 }, __vue_inject_styles__$7, __vue_script__$7, __vue_scope_id__$7, __vue_is_functional_template__$7, __vue_module_identifier__$7, false, undefined, undefined, undefined ); // // // // // // // // // // // // // // // // // // // // // // // // // // // // // // // // // // // var script$6 = { name: 'MetaBox', props: { label: String, active: { type: Boolean, default: false }, collapsible: { type: Boolean, default: false } }, computed: { expanded: function() { return this.collapsible ? this.active : true; } }, methods: { toggleExpanded() { if (this.collapsible) { this.$emit('afterToggle', !this.expanded); } else { this.$refs.collapseWrapper.open(); } }, triggerToggle() { this.$refs.collapseWrapper.toggle(); } } }; /* script */ const __vue_script__$6 = script$6; /* template */ var __vue_render__$6 = function () {var _vm=this;var _h=_vm.$createElement;var _c=_vm._self._c||_h;return _c('v-collapse-wrapper',{ref:"collapseWrapper",class:[ 'searchwp-meta-box', 'postbox', _vm.expanded ? '' : 'closed' ],attrs:{"active":_vm.active || _vm.expanded},on:{"afterToggle":_vm.toggleExpanded}},[_c('h2',{directives:[{name:"collapse-toggle",rawName:"v-collapse-toggle"}],class:['searchwp-meta-box-heading', 'hndle', _vm.collapsible ? '' : 'searchwp-meta-box-heading-locked']},[(_vm.collapsible)?_c('button',{staticClass:"handlediv",attrs:{"type":"button","aria-expanded":_vm.expanded},on:{"click":function($event){$event.stopPropagation();return _vm.triggerToggle($event)}}},[_c('span',{staticClass:"screen-reader-text"},[_vm._v("Toggle panel: "+_vm._s(_vm.label))]),_vm._v(" "),_c('span',{staticClass:"toggle-indicator",attrs:{"aria-hidden":_vm.expanded}})]):_vm._e(),_vm._v(" "),_c('span',{staticClass:"searchwp-meta-box-heading__label"},[_vm._t("heading")],2)]),_vm._v(" "),_c('div',{directives:[{name:"collapse-content",rawName:"v-collapse-content"}]},[_vm._t("content")],2)])}; var __vue_staticRenderFns__$6 = []; /* style */ const __vue_inject_styles__$6 = undefined; /* scoped */ const __vue_scope_id__$6 = undefined; /* module identifier */ const __vue_module_identifier__$6 = undefined; /* functional template */ const __vue_is_functional_template__$6 = false; /* style inject */ /* style inject SSR */ /* style inject shadow dom */ const __vue_component__$6 = /*#__PURE__*/normalizeComponent( { render: __vue_render__$6, staticRenderFns: __vue_staticRenderFns__$6 }, __vue_inject_styles__$6, __vue_script__$6, __vue_scope_id__$6, __vue_is_functional_template__$6, __vue_module_identifier__$6, false, undefined, undefined, undefined ); // // // // // // // // // // // // // // var script$5 = { name: 'Tooltip', props: { content: String, icon: { type: String, default: 'dashicons dashicons-info', required: false }, placement: { type: String, default: 'auto', required: false } } }; /* script */ const __vue_script__$5 = script$5; /* template */ var __vue_render__$5 = function () {var _vm=this;var _h=_vm.$createElement;var _c=_vm._self._c||_h;return _c('span',{staticClass:"searchwp-tooltip"},[_c('span',[_c('span',[_vm._t("default")],2),_vm._v(" "),_c('span',{directives:[{name:"tooltip",rawName:"v-tooltip",value:({content: _vm.content, placement: _vm.placement}),expression:"{content: content, placement: placement}"}],class:_vm.icon})])])}; var __vue_staticRenderFns__$5 = []; /* style */ const __vue_inject_styles__$5 = undefined; /* scoped */ const __vue_scope_id__$5 = undefined; /* module identifier */ const __vue_module_identifier__$5 = undefined; /* functional template */ const __vue_is_functional_template__$5 = false; /* style inject */ /* style inject SSR */ /* style inject shadow dom */ const __vue_component__$5 = /*#__PURE__*/normalizeComponent( { render: __vue_render__$5, staticRenderFns: __vue_staticRenderFns__$5 }, __vue_inject_styles__$5, __vue_script__$5, __vue_scope_id__$5, __vue_is_functional_template__$5, __vue_module_identifier__$5, false, undefined, undefined, undefined ); var lodash_isequal = createCommonjsModule(function (module, exports) { /** * Lodash (Custom Build) <https://lodash.com/> * Build: `lodash modularize exports="npm" -o ./` * Copyright JS Foundation and other contributors <https://js.foundation/> * Released under MIT license <https://lodash.com/license> * Based on Underscore.js 1.8.3 <http://underscorejs.org/LICENSE> * Copyright Jeremy Ashkenas, DocumentCloud and Investigative Reporters & Editors */ /** Used as the size to enable large array optimizations. */ var LARGE_ARRAY_SIZE = 200; /** Used to stand-in for `undefined` hash values. */ var HASH_UNDEFINED = '__lodash_hash_undefined__'; /** Used to compose bitmasks for value comparisons. */ var COMPARE_PARTIAL_FLAG = 1, COMPARE_UNORDERED_FLAG = 2; /** Used as references for various `Number` constants. */ var MAX_SAFE_INTEGER = 9007199254740991; /** `Object#toString` result references. */ var argsTag = '[object Arguments]', arrayTag = '[object Array]', asyncTag = '[object AsyncFunction]', boolTag = '[object Boolean]', dateTag = '[object Date]', errorTag = '[object Error]', funcTag = '[object Function]', genTag = '[object GeneratorFunction]', mapTag = '[object Map]', numberTag = '[object Number]', nullTag = '[object Null]', objectTag = '[object Object]', promiseTag = '[object Promise]', proxyTag = '[object Proxy]', regexpTag = '[object RegExp]', setTag = '[object Set]', stringTag = '[object String]', symbolTag = '[object Symbol]', undefinedTag = '[object Undefined]', weakMapTag = '[object WeakMap]'; var arrayBufferTag = '[object ArrayBuffer]', dataViewTag = '[object DataView]', float32Tag = '[object Float32Array]', float64Tag = '[object Float64Array]', int8Tag = '[object Int8Array]', int16Tag = '[object Int16Array]', int32Tag = '[object Int32Array]', uint8Tag = '[object Uint8Array]', uint8ClampedTag = '[object Uint8ClampedArray]', uint16Tag = '[object Uint16Array]', uint32Tag = '[object Uint32Array]'; /** * Used to match `RegExp` * [syntax characters](http://ecma-international.org/ecma-262/7.0/#sec-patterns). */ var reRegExpChar = /[\\^$.*+?()[\]{}|]/g; /** Used to detect host constructors (Safari). */ var reIsHostCtor = /^\[object .+?Constructor\]$/; /** Used to detect unsigned integer values. */ var reIsUint = /^(?:0|[1-9]\d*)$/; /** Used to identify `toStringTag` values of typed arrays. */ var typedArrayTags = {}; typedArrayTags[float32Tag] = typedArrayTags[float64Tag] = typedArrayTags[int8Tag] = typedArrayTags[int16Tag] = typedArrayTags[int32Tag] = typedArrayTags[uint8Tag] = typedArrayTags[uint8ClampedTag] = typedArrayTags[uint16Tag] = typedArrayTags[uint32Tag] = true; typedArrayTags[argsTag] = typedArrayTags[arrayTag] = typedArrayTags[arrayBufferTag] = typedArrayTags[boolTag] = typedArrayTags[dataViewTag] = typedArrayTags[dateTag] = typedArrayTags[errorTag] = typedArrayTags[funcTag] = typedArrayTags[mapTag] = typedArrayTags[numberTag] = typedArrayTags[objectTag] = typedArrayTags[regexpTag] = typedArrayTags[setTag] = typedArrayTags[stringTag] = typedArrayTags[weakMapTag] = false; /** Detect free variable `global` from Node.js. */ var freeGlobal = typeof commonjsGlobal == 'object' && commonjsGlobal && commonjsGlobal.Object === Object && commonjsGlobal; /** Detect free variable `self`. */ var freeSelf = typeof self == 'object' && self && self.Object === Object && self; /** Used as a reference to the global object. */ var root = freeGlobal || freeSelf || Function('return this')(); /** Detect free variable `exports`. */ var freeExports = exports && !exports.nodeType && exports; /** Detect free variable `module`. */ var freeModule = freeExports && 'object' == 'object' && module && !module.nodeType && module; /** Detect the popular CommonJS extension `module.exports`. */ var moduleExports = freeModule && freeModule.exports === freeExports; /** Detect free variable `process` from Node.js. */ var freeProcess = moduleExports && freeGlobal.process; /** Used to access faster Node.js helpers. */ var nodeUtil = (function() { try { return freeProcess && freeProcess.binding && freeProcess.binding('util'); } catch (e) {} }()); /* Node.js helper references. */ var nodeIsTypedArray = nodeUtil && nodeUtil.isTypedArray; /** * A specialized version of `_.filter` for arrays without support for * iteratee shorthands. * * @private * @param {Array} [array] The array to iterate over. * @param {Function} predicate The function invoked per iteration. * @returns {Array} Returns the new filtered array. */ function arrayFilter(array, predicate) { var index = -1, length = array == null ? 0 : array.length, resIndex = 0, result = []; while (++index < length) { var value = array[index]; if (predicate(value, index, array)) { result[resIndex++] = value; } } return result; } /** * Appends the elements of `values` to `array`. * * @private * @param {Array} array The array to modify. * @param {Array} values The values to append. * @returns {Array} Returns `array`. */ function arrayPush(array, values) { var index = -1, length = values.length, offset = array.length; while (++index < length) { array[offset + index] = values[index]; } return array; } /** * A specialized version of `_.some` for arrays without support for iteratee * shorthands. * * @private * @param {Array} [array] The array to iterate over. * @param {Function} predicate The function invoked per iteration. * @returns {boolean} Returns `true` if any element passes the predicate check, * else `false`. */ function arraySome(array, predicate) { var index = -1, length = array == null ? 0 : array.length; while (++index < length) { if (predicate(array[index], index, array)) { return true; } } return false; } /** * The base implementation of `_.times` without support for iteratee shorthands * or max array length checks. * * @private * @param {number} n The number of times to invoke `iteratee`. * @param {Function} iteratee The function invoked per iteration. * @returns {Array} Returns the array of results. */ function baseTimes(n, iteratee) { var index = -1, result = Array(n); while (++index < n) { result[index] = iteratee(index); } return result; } /** * The base implementation of `_.unary` without support for storing metadata. * * @private * @param {Function} func The function to cap arguments for. * @returns {Function} Returns the new capped function. */ function baseUnary(func) { return function(value) { return func(value); }; } /** * Checks if a `cache` value for `key` exists. * * @private * @param {Object} cache The cache to query. * @param {string} key The key of the entry to check. * @returns {boolean} Returns `true` if an entry for `key` exists, else `false`. */ function cacheHas(cache, key) { return cache.has(key); } /** * Gets the value at `key` of `object`. * * @private * @param {Object} [object] The object to query. * @param {string} key The key of the property to get. * @returns {*} Returns the property value. */ function getValue(object, key) { return object == null ? undefined : object[key]; } /** * Converts `map` to its key-value pairs. * * @private * @param {Object} map The map to convert. * @returns {Array} Returns the key-value pairs. */ function mapToArray(map) { var index = -1, result = Array(map.size); map.forEach(function(value, key) { result[++index] = [key, value]; }); return result; } /** * Creates a unary function that invokes `func` with its argument transformed. * * @private * @param {Function} func The function to wrap. * @param {Function} transform The argument transform. * @returns {Function} Returns the new function. */ function overArg(func, transform) { return function(arg) { return func(transform(arg)); }; } /** * Converts `set` to an array of its values. * * @private * @param {Object} set The set to convert. * @returns {Array} Returns the values. */ function setToArray(set) { var index = -1, result = Array(set.size); set.forEach(function(value) { result[++index] = value; }); return result; } /** Used for built-in method references. */ var arrayProto = Array.prototype, funcProto = Function.prototype, objectProto = Object.prototype; /** Used to detect overreaching core-js shims. */ var coreJsData = root['__core-js_shared__']; /** Used to resolve the decompiled source of functions. */ var funcToString = funcProto.toString; /** Used to check objects for own properties. */ var hasOwnProperty = objectProto.hasOwnProperty; /** Used to detect methods masquerading as native. */ var maskSrcKey = (function() { var uid = /[^.]+$/.exec(coreJsData && coreJsData.keys && coreJsData.keys.IE_PROTO || ''); return uid ? ('Symbol(src)_1.' + uid) : ''; }()); /** * Used to resolve the * [`toStringTag`](http://ecma-international.org/ecma-262/7.0/#sec-object.prototype.tostring) * of values. */ var nativeObjectToString = objectProto.toString; /** Used to detect if a method is native. */ var reIsNative = RegExp('^' + funcToString.call(hasOwnProperty).replace(reRegExpChar, '\\$&') .replace(/hasOwnProperty|(function).*?(?=\\\()| for .+?(?=\\\])/g, '$1.*?') + '$' ); /** Built-in value references. */ var Buffer = moduleExports ? root.Buffer : undefined, Symbol = root.Symbol, Uint8Array = root.Uint8Array, propertyIsEnumerable = objectProto.propertyIsEnumerable, splice = arrayProto.splice, symToStringTag = Symbol ? Symbol.toStringTag : undefined; /* Built-in method references for those with the same name as other `lodash` methods. */ var nativeGetSymbols = Object.getOwnPropertySymbols, nativeIsBuffer = Buffer ? Buffer.isBuffer : undefined, nativeKeys = overArg(Object.keys, Object); /* Built-in method references that are verified to be native. */ var DataView = getNative(root, 'DataView'), Map = getNative(root, 'Map'), Promise = getNative(root, 'Promise'), Set = getNative(root, 'Set'), WeakMap = getNative(root, 'WeakMap'), nativeCreate = getNative(Object, 'create'); /** Used to detect maps, sets, and weakmaps. */ var dataViewCtorString = toSource(DataView), mapCtorString = toSource(Map), promiseCtorString = toSource(Promise), setCtorString = toSource(Set), weakMapCtorString = toSource(WeakMap); /** Used to convert symbols to primitives and strings. */ var symbolProto = Symbol ? Symbol.prototype : undefined, symbolValueOf = symbolProto ? symbolProto.valueOf : undefined; /** * Creates a hash object. * * @private * @constructor * @param {Array} [entries] The key-value pairs to cache. */ function Hash(entries) { var index = -1, length = entries == null ? 0 : entries.length; this.clear(); while (++index < length) { var entry = entries[index]; this.set(entry[0], entry[1]); } } /** * Removes all key-value entries from the hash. * * @private * @name clear * @memberOf Hash */ function hashClear() { this.__data__ = nativeCreate ? nativeCreate(null) : {}; this.size = 0; } /** * Removes `key` and its value from the hash. * * @private * @name delete * @memberOf Hash * @param {Object} hash The hash to modify. * @param {string} key The key of the value to remove. * @returns {boolean} Returns `true` if the entry was removed, else `false`. */ function hashDelete(key) { var result = this.has(key) && delete this.__data__[key]; this.size -= result ? 1 : 0; return result; } /** * Gets the hash value for `key`. * * @private * @name get * @memberOf Hash * @param {string} key The key of the value to get. * @returns {*} Returns the entry value. */ function hashGet(key) { var data = this.__data__; if (nativeCreate) { var result = data[key]; return result === HASH_UNDEFINED ? undefined : result; } return hasOwnProperty.call(data, key) ? data[key] : undefined; } /** * Checks if a hash value for `key` exists. * * @private * @name has * @memberOf Hash * @param {string} key The key of the entry to check. * @returns {boolean} Returns `true` if an entry for `key` exists, else `false`. */ function hashHas(key) { var data = this.__data__; return nativeCreate ? (data[key] !== undefined) : hasOwnProperty.call(data, key); } /** * Sets the hash `key` to `value`. * * @private * @name set * @memberOf Hash * @param {string} key The key of the value to set. * @param {*} value The value to set. * @returns {Object} Returns the hash instance. */ function hashSet(key, value) { var data = this.__data__; this.size += this.has(key) ? 0 : 1; data[key] = (nativeCreate && value === undefined) ? HASH_UNDEFINED : value; return this; } // Add methods to `Hash`. Hash.prototype.clear = hashClear; Hash.prototype['delete'] = hashDelete; Hash.prototype.get = hashGet; Hash.prototype.has = hashHas; Hash.prototype.set = hashSet; /** * Creates an list cache object. * * @private * @constructor * @param {Array} [entries] The key-value pairs to cache. */ function ListCache(entries) { var index = -1, length = entries == null ? 0 : entries.length; this.clear(); while (++index < length) { var entry = entries[index]; this.set(entry[0], entry[1]); } } /** * Removes all key-value entries from the list cache. * * @private * @name clear * @memberOf ListCache */ function listCacheClear() { this.__data__ = []; this.size = 0; } /** * Removes `key` and its value from the list cache. * * @private * @name delete * @memberOf ListCache * @param {string} key The key of the value to remove. * @returns {boolean} Returns `true` if the entry was removed, else `false`. */ function listCacheDelete(key) { var data = this.__data__, index = assocIndexOf(data, key); if (index < 0) { return false; } var lastIndex = data.length - 1; if (index == lastIndex) { data.pop(); } else { splice.call(data, index, 1); } --this.size; return true; } /** * Gets the list cache value for `key`. * * @private * @name get * @memberOf ListCache * @param {string} key The key of the value to get. * @returns {*} Returns the entry value. */ function listCacheGet(key) { var data = this.__data__, index = assocIndexOf(data, key); return index < 0 ? undefined : data[index][1]; } /** * Checks if a list cache value for `key` exists. * * @private * @name has * @memberOf ListCache * @param {string} key The key of the entry to check. * @returns {boolean} Returns `true` if an entry for `key` exists, else `false`. */ function listCacheHas(key) { return assocIndexOf(this.__data__, key) > -1; } /** * Sets the list cache `key` to `value`. * * @private * @name set * @memberOf ListCache * @param {string} key The key of the value to set. * @param {*} value The value to set. * @returns {Object} Returns the list cache instance. */ function listCacheSet(key, value) { var data = this.__data__, index = assocIndexOf(data, key); if (index < 0) { ++this.size; data.push([key, value]); } else { data[index][1] = value; } return this; } // Add methods to `ListCache`. ListCache.prototype.clear = listCacheClear; ListCache.prototype['delete'] = listCacheDelete; ListCache.prototype.get = listCacheGet; ListCache.prototype.has = listCacheHas; ListCache.prototype.set = listCacheSet; /** * Creates a map cache object to store key-value pairs. * * @private * @constructor * @param {Array} [entries] The key-value pairs to cache. */ function MapCache(entries) { var index = -1, length = entries == null ? 0 : entries.length; this.clear(); while (++index < length) { var entry = entries[index]; this.set(entry[0], entry[1]); } } /** * Removes all key-value entries from the map. * * @private * @name clear * @memberOf MapCache */ function mapCacheClear() { this.size = 0; this.__data__ = { 'hash': new Hash, 'map': new (Map || ListCache), 'string': new Hash }; } /** * Removes `key` and its value from the map. * * @private * @name delete * @memberOf MapCache * @param {string} key The key of the value to remove. * @returns {boolean} Returns `true` if the entry was removed, else `false`. */ function mapCacheDelete(key) { var result = getMapData(this, key)['delete'](key); this.size -= result ? 1 : 0; return result; } /** * Gets the map value for `key`. * * @private * @name get * @memberOf MapCache * @param {string} key The key of the value to get. * @returns {*} Returns the entry value. */ function mapCacheGet(key) { return getMapData(this, key).get(key); } /** * Checks if a map value for `key` exists. * * @private * @name has * @memberOf MapCache * @param {string} key The key of the entry to check. * @returns {boolean} Returns `true` if an entry for `key` exists, else `false`. */ function mapCacheHas(key) { return getMapData(this, key).has(key); } /** * Sets the map `key` to `value`. * * @private * @name set * @memberOf MapCache * @param {string} key The key of the value to set. * @param {*} value The value to set. * @returns {Object} Returns the map cache instance. */ function mapCacheSet(key, value) { var data = getMapData(this, key), size = data.size; data.set(key, value); this.size += data.size == size ? 0 : 1; return this; } // Add methods to `MapCache`. MapCache.prototype.clear = mapCacheClear; MapCache.prototype['delete'] = mapCacheDelete; MapCache.prototype.get = mapCacheGet; MapCache.prototype.has = mapCacheHas; MapCache.prototype.set = mapCacheSet; /** * * Creates an array cache object to store unique values. * * @private * @constructor * @param {Array} [values] The values to cache. */ function SetCache(values) { var index = -1, length = values == null ? 0 : values.length; this.__data__ = new MapCache; while (++index < length) { this.add(values[index]); } } /** * Adds `value` to the array cache. * * @private * @name add * @memberOf SetCache * @alias push * @param {*} value The value to cache. * @returns {Object} Returns the cache instance. */ function setCacheAdd(value) { this.__data__.set(value, HASH_UNDEFINED); return this; } /** * Checks if `value` is in the array cache. * * @private * @name has * @memberOf SetCache * @param {*} value The value to search for. * @returns {number} Returns `true` if `value` is found, else `false`. */ function setCacheHas(value) { return this.__data__.has(value); } // Add methods to `SetCache`. SetCache.prototype.add = SetCache.prototype.push = setCacheAdd; SetCache.prototype.has = setCacheHas; /** * Creates a stack cache object to store key-value pairs. * * @private * @constructor * @param {Array} [entries] The key-value pairs to cache. */ function Stack(entries) { var data = this.__data__ = new ListCache(entries); this.size = data.size; } /** * Removes all key-value entries from the stack. * * @private * @name clear * @memberOf Stack */ function stackClear() { this.__data__ = new ListCache; this.size = 0; } /** * Removes `key` and its value from the stack. * * @private * @name delete * @memberOf Stack * @param {string} key The key of the value to remove. * @returns {boolean} Returns `true` if the entry was removed, else `false`. */ function stackDelete(key) { var data = this.__data__, result = data['delete'](key); this.size = data.size; return result; } /** * Gets the stack value for `key`. * * @private * @name get * @memberOf Stack * @param {string} key The key of the value to get. * @returns {*} Returns the entry value. */ function stackGet(key) { return this.__data__.get(key); } /** * Checks if a stack value for `key` exists. * * @private * @name has * @memberOf Stack * @param {string} key The key of the entry to check. * @returns {boolean} Returns `true` if an entry for `key` exists, else `false`. */ function stackHas(key) { return this.__data__.has(key); } /** * Sets the stack `key` to `value`. * * @private * @name set * @memberOf Stack * @param {string} key The key of the value to set. * @param {*} value The value to set. * @returns {Object} Returns the stack cache instance. */ function stackSet(key, value) { var data = this.__data__; if (data instanceof ListCache) { var pairs = data.__data__; if (!Map || (pairs.length < LARGE_ARRAY_SIZE - 1)) { pairs.push([key, value]); this.size = ++data.size; return this; } data = this.__data__ = new MapCache(pairs); } data.set(key, value); this.size = data.size; return this; } // Add methods to `Stack`. Stack.prototype.clear = stackClear; Stack.prototype['delete'] = stackDelete; Stack.prototype.get = stackGet; Stack.prototype.has = stackHas; Stack.prototype.set = stackSet; /** * Creates an array of the enumerable property names of the array-like `value`. * * @private * @param {*} value The value to query. * @param {boolean} inherited Specify returning inherited property names. * @returns {Array} Returns the array of property names. */ function arrayLikeKeys(value, inherited) { var isArr = isArray(value), isArg = !isArr && isArguments(value), isBuff = !isArr && !isArg && isBuffer(value), isType = !isArr && !isArg && !isBuff && isTypedArray(value), skipIndexes = isArr || isArg || isBuff || isType, result = skipIndexes ? baseTimes(value.length, String) : [], length = result.length; for (var key in value) { if ((inherited || hasOwnProperty.call(value, key)) && !(skipIndexes && ( // Safari 9 has enumerable `arguments.length` in strict mode. key == 'length' || // Node.js 0.10 has enumerable non-index properties on buffers. (isBuff && (key == 'offset' || key == 'parent')) || // PhantomJS 2 has enumerable non-index properties on typed arrays. (isType && (key == 'buffer' || key == 'byteLength' || key == 'byteOffset')) || // Skip index properties. isIndex(key, length) ))) { result.push(key); } } return result; } /** * Gets the index at which the `key` is found in `array` of key-value pairs. * * @private * @param {Array} array The array to inspect. * @param {*} key The key to search for. * @returns {number} Returns the index of the matched value, else `-1`. */ function assocIndexOf(array, key) { var length = array.length; while (length--) { if (eq(array[length][0], key)) { return length; } } return -1; } /** * The base implementation of `getAllKeys` and `getAllKeysIn` which uses * `keysFunc` and `symbolsFunc` to get the enumerable property names and * symbols of `object`. * * @private * @param {Object} object The object to query. * @param {Function} keysFunc The function to get the keys of `object`. * @param {Function} symbolsFunc The function to get the symbols of `object`. * @returns {Array} Returns the array of property names and symbols. */ function baseGetAllKeys(object, keysFunc, symbolsFunc) { var result = keysFunc(object); return isArray(object) ? result : arrayPush(result, symbolsFunc(object)); } /** * The base implementation of `getTag` without fallbacks for buggy environments. * * @private * @param {*} value The value to query. * @returns {string} Returns the `toStringTag`. */ function baseGetTag(value) { if (value == null) { return value === undefined ? undefinedTag : nullTag; } return (symToStringTag && symToStringTag in Object(value)) ? getRawTag(value) : objectToString(value); } /** * The base implementation of `_.isArguments`. * * @private * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is an `arguments` object, */ function baseIsArguments(value) { return isObjectLike(value) && baseGetTag(value) == argsTag; } /** * The base implementation of `_.isEqual` which supports partial comparisons * and tracks traversed objects. * * @private * @param {*} value The value to compare. * @param {*} other The other value to compare. * @param {boolean} bitmask The bitmask flags. * 1 - Unordered comparison * 2 - Partial comparison * @param {Function} [customizer] The function to customize comparisons. * @param {Object} [stack] Tracks traversed `value` and `other` objects. * @returns {boolean} Returns `true` if the values are equivalent, else `false`. */ function baseIsEqual(value, other, bitmask, customizer, stack) { if (value === other) { return true; } if (value == null || other == null || (!isObjectLike(value) && !isObjectLike(other))) { return value !== value && other !== other; } return baseIsEqualDeep(value, other, bitmask, customizer, baseIsEqual, stack); } /** * A specialized version of `baseIsEqual` for arrays and objects which performs * deep comparisons and tracks traversed objects enabling objects with circular * references to be compared. * * @private * @param {Object} object The object to compare. * @param {Object} other The other object to compare. * @param {number} bitmask The bitmask flags. See `baseIsEqual` for more details. * @param {Function} customizer The function to customize comparisons. * @param {Function} equalFunc The function to determine equivalents of values. * @param {Object} [stack] Tracks traversed `object` and `other` objects. * @returns {boolean} Returns `true` if the objects are equivalent, else `false`. */ function baseIsEqualDeep(object, other, bitmask, customizer, equalFunc, stack) { var objIsArr = isArray(object), othIsArr = isArray(other), objTag = objIsArr ? arrayTag : getTag(object), othTag = othIsArr ? arrayTag : getTag(other); objTag = objTag == argsTag ? objectTag : objTag; othTag = othTag == argsTag ? objectTag : othTag; var objIsObj = objTag == objectTag, othIsObj = othTag == objectTag, isSameTag = objTag == othTag; if (isSameTag && isBuffer(object)) { if (!isBuffer(other)) { return false; } objIsArr = true; objIsObj = false; } if (isSameTag && !objIsObj) { stack || (stack = new Stack); return (objIsArr || isTypedArray(object)) ? equalArrays(object, other, bitmask, customizer, equalFunc, stack) : equalByTag(object, other, objTag, bitmask, customizer, equalFunc, stack); } if (!(bitmask & COMPARE_PARTIAL_FLAG)) { var objIsWrapped = objIsObj && hasOwnProperty.call(object, '__wrapped__'), othIsWrapped = othIsObj && hasOwnProperty.call(other, '__wrapped__'); if (objIsWrapped || othIsWrapped) { var objUnwrapped = objIsWrapped ? object.value() : object, othUnwrapped = othIsWrapped ? other.value() : other; stack || (stack = new Stack); return equalFunc(objUnwrapped, othUnwrapped, bitmask, customizer, stack); } } if (!isSameTag) { return false; } stack || (stack = new Stack); return equalObjects(object, other, bitmask, customizer, equalFunc, stack); } /** * The base implementation of `_.isNative` without bad shim checks. * * @private * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a native function, * else `false`. */ function baseIsNative(value) { if (!isObject(value) || isMasked(value)) { return false; } var pattern = isFunction(value) ? reIsNative : reIsHostCtor; return pattern.test(toSource(value)); } /** * The base implementation of `_.isTypedArray` without Node.js optimizations. * * @private * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a typed array, else `false`. */ function baseIsTypedArray(value) { return isObjectLike(value) && isLength(value.length) && !!typedArrayTags[baseGetTag(value)]; } /** * The base implementation of `_.keys` which doesn't treat sparse arrays as dense. * * @private * @param {Object} object The object to query. * @returns {Array} Returns the array of property names. */ function baseKeys(object) { if (!isPrototype(object)) { return nativeKeys(object); } var result = []; for (var key in Object(object)) { if (hasOwnProperty.call(object, key) && key != 'constructor') { result.push(key); } } return result; } /** * A specialized version of `baseIsEqualDeep` for arrays with support for * partial deep comparisons. * * @private * @param {Array} array The array to compare. * @param {Array} other The other array to compare. * @param {number} bitmask The bitmask flags. See `baseIsEqual` for more details. * @param {Function} customizer The function to customize comparisons. * @param {Function} equalFunc The function to determine equivalents of values. * @param {Object} stack Tracks traversed `array` and `other` objects. * @returns {boolean} Returns `true` if the arrays are equivalent, else `false`. */ function equalArrays(array, other, bitmask, customizer, equalFunc, stack) { var isPartial = bitmask & COMPARE_PARTIAL_FLAG, arrLength = array.length, othLength = other.length; if (arrLength != othLength && !(isPartial && othLength > arrLength)) { return false; } // Assume cyclic values are equal. var stacked = stack.get(array); if (stacked && stack.get(other)) { return stacked == other; } var index = -1, result = true, seen = (bitmask & COMPARE_UNORDERED_FLAG) ? new SetCache : undefined; stack.set(array, other); stack.set(other, array); // Ignore non-index properties. while (++index < arrLength) { var arrValue = array[index], othValue = other[index]; if (customizer) { var compared = isPartial ? customizer(othValue, arrValue, index, other, array, stack) : customizer(arrValue, othValue, index, array, other, stack); } if (compared !== undefined) { if (compared) { continue; } result = false; break; } // Recursively compare arrays (susceptible to call stack limits). if (seen) { if (!arraySome(other, function(othValue, othIndex) { if (!cacheHas(seen, othIndex) && (arrValue === othValue || equalFunc(arrValue, othValue, bitmask, customizer, stack))) { return seen.push(othIndex); } })) { result = false; break; } } else if (!( arrValue === othValue || equalFunc(arrValue, othValue, bitmask, customizer, stack) )) { result = false; break; } } stack['delete'](array); stack['delete'](other); return result; } /** * A specialized version of `baseIsEqualDeep` for comparing objects of * the same `toStringTag`. * * **Note:** This function only supports comparing values with tags of * `Boolean`, `Date`, `Error`, `Number`, `RegExp`, or `String`. * * @private * @param {Object} object The object to compare. * @param {Object} other The other object to compare. * @param {string} tag The `toStringTag` of the objects to compare. * @param {number} bitmask The bitmask flags. See `baseIsEqual` for more details. * @param {Function} customizer The function to customize comparisons. * @param {Function} equalFunc The function to determine equivalents of values. * @param {Object} stack Tracks traversed `object` and `other` objects. * @returns {boolean} Returns `true` if the objects are equivalent, else `false`. */ function equalByTag(object, other, tag, bitmask, customizer, equalFunc, stack) { switch (tag) { case dataViewTag: if ((object.byteLength != other.byteLength) || (object.byteOffset != other.byteOffset)) { return false; } object = object.buffer; other = other.buffer; case arrayBufferTag: if ((object.byteLength != other.byteLength) || !equalFunc(new Uint8Array(object), new Uint8Array(other))) { return false; } return true; case boolTag: case dateTag: case numberTag: // Coerce booleans to `1` or `0` and dates to milliseconds. // Invalid dates are coerced to `NaN`. return eq(+object, +other); case errorTag: return object.name == other.name && object.message == other.message; case regexpTag: case stringTag: // Coerce regexes to strings and treat strings, primitives and objects, // as equal. See http://www.ecma-international.org/ecma-262/7.0/#sec-regexp.prototype.tostring // for more details. return object == (other + ''); case mapTag: var convert = mapToArray; case setTag: var isPartial = bitmask & COMPARE_PARTIAL_FLAG; convert || (convert = setToArray); if (object.size != other.size && !isPartial) { return false; } // Assume cyclic values are equal. var stacked = stack.get(object); if (stacked) { return stacked == other; } bitmask |= COMPARE_UNORDERED_FLAG; // Recursively compare objects (susceptible to call stack limits). stack.set(object, other); var result = equalArrays(convert(object), convert(other), bitmask, customizer, equalFunc, stack); stack['delete'](object); return result; case symbolTag: if (symbolValueOf) { return symbolValueOf.call(object) == symbolValueOf.call(other); } } return false; } /** * A specialized version of `baseIsEqualDeep` for objects with support for * partial deep comparisons. * * @private * @param {Object} object The object to compare. * @param {Object} other The other object to compare. * @param {number} bitmask The bitmask flags. See `baseIsEqual` for more details. * @param {Function} customizer The function to customize comparisons. * @param {Function} equalFunc The function to determine equivalents of values. * @param {Object} stack Tracks traversed `object` and `other` objects. * @returns {boolean} Returns `true` if the objects are equivalent, else `false`. */ function equalObjects(object, other, bitmask, customizer, equalFunc, stack) { var isPartial = bitmask & COMPARE_PARTIAL_FLAG, objProps = getAllKeys(object), objLength = objProps.length, othProps = getAllKeys(other), othLength = othProps.length; if (objLength != othLength && !isPartial) { return false; } var index = objLength; while (index--) { var key = objProps[index]; if (!(isPartial ? key in other : hasOwnProperty.call(other, key))) { return false; } } // Assume cyclic values are equal. var stacked = stack.get(object); if (stacked && stack.get(other)) { return stacked == other; } var result = true; stack.set(object, other); stack.set(other, object); var skipCtor = isPartial; while (++index < objLength) { key = objProps[index]; var objValue = object[key], othValue = other[key]; if (customizer) { var compared = isPartial ? customizer(othValue, objValue, key, other, object, stack) : customizer(objValue, othValue, key, object, other, stack); } // Recursively compare objects (susceptible to call stack limits). if (!(compared === undefined ? (objValue === othValue || equalFunc(objValue, othValue, bitmask, customizer, stack)) : compared )) { result = false; break; } skipCtor || (skipCtor = key == 'constructor'); } if (result && !skipCtor) { var objCtor = object.constructor, othCtor = other.constructor; // Non `Object` object instances with different constructors are not equal. if (objCtor != othCtor && ('constructor' in object && 'constructor' in other) && !(typeof objCtor == 'function' && objCtor instanceof objCtor && typeof othCtor == 'function' && othCtor instanceof othCtor)) { result = false; } } stack['delete'](object); stack['delete'](other); return result; } /** * Creates an array of own enumerable property names and symbols of `object`. * * @private * @param {Object} object The object to query. * @returns {Array} Returns the array of property names and symbols. */ function getAllKeys(object) { return baseGetAllKeys(object, keys, getSymbols); } /** * Gets the data for `map`. * * @private * @param {Object} map The map to query. * @param {string} key The reference key. * @returns {*} Returns the map data. */ function getMapData(map, key) { var data = map.__data__; return isKeyable(key) ? data[typeof key == 'string' ? 'string' : 'hash'] : data.map; } /** * Gets the native function at `key` of `object`. * * @private * @param {Object} object The object to query. * @param {string} key The key of the method to get. * @returns {*} Returns the function if it's native, else `undefined`. */ function getNative(object, key) { var value = getValue(object, key); return baseIsNative(value) ? value : undefined; } /** * A specialized version of `baseGetTag` which ignores `Symbol.toStringTag` values. * * @private * @param {*} value The value to query. * @returns {string} Returns the raw `toStringTag`. */ function getRawTag(value) { var isOwn = hasOwnProperty.call(value, symToStringTag), tag = value[symToStringTag]; try { value[symToStringTag] = undefined; var unmasked = true; } catch (e) {} var result = nativeObjectToString.call(value); if (unmasked) { if (isOwn) { value[symToStringTag] = tag; } else { delete value[symToStringTag]; } } return result; } /** * Creates an array of the own enumerable symbols of `object`. * * @private * @param {Object} object The object to query. * @returns {Array} Returns the array of symbols. */ var getSymbols = !nativeGetSymbols ? stubArray : function(object) { if (object == null) { return []; } object = Object(object); return arrayFilter(nativeGetSymbols(object), function(symbol) { return propertyIsEnumerable.call(object, symbol); }); }; /** * Gets the `toStringTag` of `value`. * * @private * @param {*} value The value to query. * @returns {string} Returns the `toStringTag`. */ var getTag = baseGetTag; // Fallback for data views, maps, sets, and weak maps in IE 11 and promises in Node.js < 6. if ((DataView && getTag(new DataView(new ArrayBuffer(1))) != dataViewTag) || (Map && getTag(new Map) != mapTag) || (Promise && getTag(Promise.resolve()) != promiseTag) || (Set && getTag(new Set) != setTag) || (WeakMap && getTag(new WeakMap) != weakMapTag)) { getTag = function(value) { var result = baseGetTag(value), Ctor = result == objectTag ? value.constructor : undefined, ctorString = Ctor ? toSource(Ctor) : ''; if (ctorString) { switch (ctorString) { case dataViewCtorString: return dataViewTag; case mapCtorString: return mapTag; case promiseCtorString: return promiseTag; case setCtorString: return setTag; case weakMapCtorString: return weakMapTag; } } return result; }; } /** * Checks if `value` is a valid array-like index. * * @private * @param {*} value The value to check. * @param {number} [length=MAX_SAFE_INTEGER] The upper bounds of a valid index. * @returns {boolean} Returns `true` if `value` is a valid index, else `false`. */ function isIndex(value, length) { length = length == null ? MAX_SAFE_INTEGER : length; return !!length && (typeof value == 'number' || reIsUint.test(value)) && (value > -1 && value % 1 == 0 && value < length); } /** * Checks if `value` is suitable for use as unique object key. * * @private * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is suitable, else `false`. */ function isKeyable(value) { var type = typeof value; return (type == 'string' || type == 'number' || type == 'symbol' || type == 'boolean') ? (value !== '__proto__') : (value === null); } /** * Checks if `func` has its source masked. * * @private * @param {Function} func The function to check. * @returns {boolean} Returns `true` if `func` is masked, else `false`. */ function isMasked(func) { return !!maskSrcKey && (maskSrcKey in func); } /** * Checks if `value` is likely a prototype object. * * @private * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a prototype, else `false`. */ function isPrototype(value) { var Ctor = value && value.constructor, proto = (typeof Ctor == 'function' && Ctor.prototype) || objectProto; return value === proto; } /** * Converts `value` to a string using `Object.prototype.toString`. * * @private * @param {*} value The value to convert. * @returns {string} Returns the converted string. */ function objectToString(value) { return nativeObjectToString.call(value); } /** * Converts `func` to its source code. * * @private * @param {Function} func The function to convert. * @returns {string} Returns the source code. */ function toSource(func) { if (func != null) { try { return funcToString.call(func); } catch (e) {} try { return (func + ''); } catch (e) {} } return ''; } /** * Performs a * [`SameValueZero`](http://ecma-international.org/ecma-262/7.0/#sec-samevaluezero) * comparison between two values to determine if they are equivalent. * * @static * @memberOf _ * @since 4.0.0 * @category Lang * @param {*} value The value to compare. * @param {*} other The other value to compare. * @returns {boolean} Returns `true` if the values are equivalent, else `false`. * @example * * var object = { 'a': 1 }; * var other = { 'a': 1 }; * * _.eq(object, object); * // => true * * _.eq(object, other); * // => false * * _.eq('a', 'a'); * // => true * * _.eq('a', Object('a')); * // => false * * _.eq(NaN, NaN); * // => true */ function eq(value, other) { return value === other || (value !== value && other !== other); } /** * Checks if `value` is likely an `arguments` object. * * @static * @memberOf _ * @since 0.1.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is an `arguments` object, * else `false`. * @example * * _.isArguments(function() { return arguments; }()); * // => true * * _.isArguments([1, 2, 3]); * // => false */ var isArguments = baseIsArguments(function() { return arguments; }()) ? baseIsArguments : function(value) { return isObjectLike(value) && hasOwnProperty.call(value, 'callee') && !propertyIsEnumerable.call(value, 'callee'); }; /** * Checks if `value` is classified as an `Array` object. * * @static * @memberOf _ * @since 0.1.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is an array, else `false`. * @example * * _.isArray([1, 2, 3]); * // => true * * _.isArray(document.body.children); * // => false * * _.isArray('abc'); * // => false * * _.isArray(_.noop); * // => false */ var isArray = Array.isArray; /** * Checks if `value` is array-like. A value is considered array-like if it's * not a function and has a `value.length` that's an integer greater than or * equal to `0` and less than or equal to `Number.MAX_SAFE_INTEGER`. * * @static * @memberOf _ * @since 4.0.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is array-like, else `false`. * @example * * _.isArrayLike([1, 2, 3]); * // => true * * _.isArrayLike(document.body.children); * // => true * * _.isArrayLike('abc'); * // => true * * _.isArrayLike(_.noop); * // => false */ function isArrayLike(value) { return value != null && isLength(value.length) && !isFunction(value); } /** * Checks if `value` is a buffer. * * @static * @memberOf _ * @since 4.3.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a buffer, else `false`. * @example * * _.isBuffer(new Buffer(2)); * // => true * * _.isBuffer(new Uint8Array(2)); * // => false */ var isBuffer = nativeIsBuffer || stubFalse; /** * Performs a deep comparison between two values to determine if they are * equivalent. * * **Note:** This method supports comparing arrays, array buffers, booleans, * date objects, error objects, maps, numbers, `Object` objects, regexes, * sets, strings, symbols, and typed arrays. `Object` objects are compared * by their own, not inherited, enumerable properties. Functions and DOM * nodes are compared by strict equality, i.e. `===`. * * @static * @memberOf _ * @since 0.1.0 * @category Lang * @param {*} value The value to compare. * @param {*} other The other value to compare. * @returns {boolean} Returns `true` if the values are equivalent, else `false`. * @example * * var object = { 'a': 1 }; * var other = { 'a': 1 }; * * _.isEqual(object, other); * // => true * * object === other; * // => false */ function isEqual(value, other) { return baseIsEqual(value, other); } /** * Checks if `value` is classified as a `Function` object. * * @static * @memberOf _ * @since 0.1.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a function, else `false`. * @example * * _.isFunction(_); * // => true * * _.isFunction(/abc/); * // => false */ function isFunction(value) { if (!isObject(value)) { return false; } // The use of `Object#toString` avoids issues with the `typeof` operator // in Safari 9 which returns 'object' for typed arrays and other constructors. var tag = baseGetTag(value); return tag == funcTag || tag == genTag || tag == asyncTag || tag == proxyTag; } /** * Checks if `value` is a valid array-like length. * * **Note:** This method is loosely based on * [`ToLength`](http://ecma-international.org/ecma-262/7.0/#sec-tolength). * * @static * @memberOf _ * @since 4.0.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a valid length, else `false`. * @example * * _.isLength(3); * // => true * * _.isLength(Number.MIN_VALUE); * // => false * * _.isLength(Infinity); * // => false * * _.isLength('3'); * // => false */ function isLength(value) { return typeof value == 'number' && value > -1 && value % 1 == 0 && value <= MAX_SAFE_INTEGER; } /** * Checks if `value` is the * [language type](http://www.ecma-international.org/ecma-262/7.0/#sec-ecmascript-language-types) * of `Object`. (e.g. arrays, functions, objects, regexes, `new Number(0)`, and `new String('')`) * * @static * @memberOf _ * @since 0.1.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is an object, else `false`. * @example * * _.isObject({}); * // => true * * _.isObject([1, 2, 3]); * // => true * * _.isObject(_.noop); * // => true * * _.isObject(null); * // => false */ function isObject(value) { var type = typeof value; return value != null && (type == 'object' || type == 'function'); } /** * Checks if `value` is object-like. A value is object-like if it's not `null` * and has a `typeof` result of "object". * * @static * @memberOf _ * @since 4.0.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is object-like, else `false`. * @example * * _.isObjectLike({}); * // => true * * _.isObjectLike([1, 2, 3]); * // => true * * _.isObjectLike(_.noop); * // => false * * _.isObjectLike(null); * // => false */ function isObjectLike(value) { return value != null && typeof value == 'object'; } /** * Checks if `value` is classified as a typed array. * * @static * @memberOf _ * @since 3.0.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a typed array, else `false`. * @example * * _.isTypedArray(new Uint8Array); * // => true * * _.isTypedArray([]); * // => false */ var isTypedArray = nodeIsTypedArray ? baseUnary(nodeIsTypedArray) : baseIsTypedArray; /** * Creates an array of the own enumerable property names of `object`. * * **Note:** Non-object values are coerced to objects. See the * [ES spec](http://ecma-international.org/ecma-262/7.0/#sec-object.keys) * for more details. * * @static * @since 0.1.0 * @memberOf _ * @category Object * @param {Object} object The object to query. * @returns {Array} Returns the array of property names. * @example * * function Foo() { * this.a = 1; * this.b = 2; * } * * Foo.prototype.c = 3; * * _.keys(new Foo); * // => ['a', 'b'] (iteration order is not guaranteed) * * _.keys('hi'); * // => ['0', '1'] */ function keys(object) { return isArrayLike(object) ? arrayLikeKeys(object) : baseKeys(object); } /** * This method returns a new empty array. * * @static * @memberOf _ * @since 4.13.0 * @category Util * @returns {Array} Returns the new empty array. * @example * * var arrays = _.times(2, _.stubArray); * * console.log(arrays); * // => [[], []] * * console.log(arrays[0] === arrays[1]); * // => false */ function stubArray() { return []; } /** * This method returns `false`. * * @static * @memberOf _ * @since 4.13.0 * @category Util * @returns {boolean} Returns `false`. * @example * * _.times(2, _.stubFalse); * // => [false, false] */ function stubFalse() { return false; } module.exports = isEqual; }); lodash_isequal.isEqual; /**! * Sortable 1.10.2 * @author RubaXa <trash@rubaxa.org> * @author owenm <owen23355@gmail.com> * @license MIT */ function _typeof(obj) { if (typeof Symbol === "function" && typeof Symbol.iterator === "symbol") { _typeof = function (obj) { return typeof obj; }; } else { _typeof = function (obj) { return obj && typeof Symbol === "function" && obj.constructor === Symbol && obj !== Symbol.prototype ? "symbol" : typeof obj; }; } return _typeof(obj); } function _defineProperty(obj, key, value) { if (key in obj) { Object.defineProperty(obj, key, { value: value, enumerable: true, configurable: true, writable: true }); } else { obj[key] = value; } return obj; } function _extends() { _extends = Object.assign || function (target) { for (var i = 1; i < arguments.length; i++) { var source = arguments[i]; for (var key in source) { if (Object.prototype.hasOwnProperty.call(source, key)) { target[key] = source[key]; } } } return target; }; return _extends.apply(this, arguments); } function _objectSpread(target) { for (var i = 1; i < arguments.length; i++) { var source = arguments[i] != null ? arguments[i] : {}; var ownKeys = Object.keys(source); if (typeof Object.getOwnPropertySymbols === 'function') { ownKeys = ownKeys.concat(Object.getOwnPropertySymbols(source).filter(function (sym) { return Object.getOwnPropertyDescriptor(source, sym).enumerable; })); } ownKeys.forEach(function (key) { _defineProperty(target, key, source[key]); }); } return target; } function _objectWithoutPropertiesLoose(source, excluded) { if (source == null) return {}; var target = {}; var sourceKeys = Object.keys(source); var key, i; for (i = 0; i < sourceKeys.length; i++) { key = sourceKeys[i]; if (excluded.indexOf(key) >= 0) continue; target[key] = source[key]; } return target; } function _objectWithoutProperties(source, excluded) { if (source == null) return {}; var target = _objectWithoutPropertiesLoose(source, excluded); var key, i; if (Object.getOwnPropertySymbols) { var sourceSymbolKeys = Object.getOwnPropertySymbols(source); for (i = 0; i < sourceSymbolKeys.length; i++) { key = sourceSymbolKeys[i]; if (excluded.indexOf(key) >= 0) continue; if (!Object.prototype.propertyIsEnumerable.call(source, key)) continue; target[key] = source[key]; } } return target; } var version = "1.10.2"; function userAgent(pattern) { if (typeof window !== 'undefined' && window.navigator) { return !! /*@__PURE__*/ navigator.userAgent.match(pattern); } } var IE11OrLess = userAgent(/(?:Trident.*rv[ :]?11\.|msie|iemobile|Windows Phone)/i); var Edge = userAgent(/Edge/i); var FireFox = userAgent(/firefox/i); var Safari = userAgent(/safari/i) && !userAgent(/chrome/i) && !userAgent(/android/i); var IOS = userAgent(/iP(ad|od|hone)/i); var ChromeForAndroid = userAgent(/chrome/i) && userAgent(/android/i); var captureMode = { capture: false, passive: false }; function on(el, event, fn) { el.addEventListener(event, fn, !IE11OrLess && captureMode); } function off(el, event, fn) { el.removeEventListener(event, fn, !IE11OrLess && captureMode); } function matches( /**HTMLElement*/ el, /**String*/ selector) { if (!selector) return; selector[0] === '>' && (selector = selector.substring(1)); if (el) { try { if (el.matches) { return el.matches(selector); } else if (el.msMatchesSelector) { return el.msMatchesSelector(selector); } else if (el.webkitMatchesSelector) { return el.webkitMatchesSelector(selector); } } catch (_) { return false; } } return false; } function getParentOrHost(el) { return el.host && el !== document && el.host.nodeType ? el.host : el.parentNode; } function closest( /**HTMLElement*/ el, /**String*/ selector, /**HTMLElement*/ ctx, includeCTX) { if (el) { ctx = ctx || document; do { if (selector != null && (selector[0] === '>' ? el.parentNode === ctx && matches(el, selector) : matches(el, selector)) || includeCTX && el === ctx) { return el; } if (el === ctx) break; /* jshint boss:true */ } while (el = getParentOrHost(el)); } return null; } var R_SPACE = /\s+/g; function toggleClass(el, name, state) { if (el && name) { if (el.classList) { el.classList[state ? 'add' : 'remove'](name); } else { var className = (' ' + el.className + ' ').replace(R_SPACE, ' ').replace(' ' + name + ' ', ' '); el.className = (className + (state ? ' ' + name : '')).replace(R_SPACE, ' '); } } } function css(el, prop, val) { var style = el && el.style; if (style) { if (val === void 0) { if (document.defaultView && document.defaultView.getComputedStyle) { val = document.defaultView.getComputedStyle(el, ''); } else if (el.currentStyle) { val = el.currentStyle; } return prop === void 0 ? val : val[prop]; } else { if (!(prop in style) && prop.indexOf('webkit') === -1) { prop = '-webkit-' + prop; } style[prop] = val + (typeof val === 'string' ? '' : 'px'); } } } function matrix(el, selfOnly) { var appliedTransforms = ''; if (typeof el === 'string') { appliedTransforms = el; } else { do { var transform = css(el, 'transform'); if (transform && transform !== 'none') { appliedTransforms = transform + ' ' + appliedTransforms; } /* jshint boss:true */ } while (!selfOnly && (el = el.parentNode)); } var matrixFn = window.DOMMatrix || window.WebKitCSSMatrix || window.CSSMatrix || window.MSCSSMatrix; /*jshint -W056 */ return matrixFn && new matrixFn(appliedTransforms); } function find(ctx, tagName, iterator) { if (ctx) { var list = ctx.getElementsByTagName(tagName), i = 0, n = list.length; if (iterator) { for (; i < n; i++) { iterator(list[i], i); } } return list; } return []; } function getWindowScrollingElement() { var scrollingElement = document.scrollingElement; if (scrollingElement) { return scrollingElement; } else { return document.documentElement; } } /** * Returns the "bounding client rect" of given element * @param {HTMLElement} el The element whose boundingClientRect is wanted * @param {[Boolean]} relativeToContainingBlock Whether the rect should be relative to the containing block of (including) the container * @param {[Boolean]} relativeToNonStaticParent Whether the rect should be relative to the relative parent of (including) the contaienr * @param {[Boolean]} undoScale Whether the container's scale() should be undone * @param {[HTMLElement]} container The parent the element will be placed in * @return {Object} The boundingClientRect of el, with specified adjustments */ function getRect(el, relativeToContainingBlock, relativeToNonStaticParent, undoScale, container) { if (!el.getBoundingClientRect && el !== window) return; var elRect, top, left, bottom, right, height, width; if (el !== window && el !== getWindowScrollingElement()) { elRect = el.getBoundingClientRect(); top = elRect.top; left = elRect.left; bottom = elRect.bottom; right = elRect.right; height = elRect.height; width = elRect.width; } else { top = 0; left = 0; bottom = window.innerHeight; right = window.innerWidth; height = window.innerHeight; width = window.innerWidth; } if ((relativeToContainingBlock || relativeToNonStaticParent) && el !== window) { // Adjust for translate() container = container || el.parentNode; // solves #1123 (see: https://stackoverflow.com/a/37953806/6088312) // Not needed on <= IE11 if (!IE11OrLess) { do { if (container && container.getBoundingClientRect && (css(container, 'transform') !== 'none' || relativeToNonStaticParent && css(container, 'position') !== 'static')) { var containerRect = container.getBoundingClientRect(); // Set relative to edges of padding box of container top -= containerRect.top + parseInt(css(container, 'border-top-width')); left -= containerRect.left + parseInt(css(container, 'border-left-width')); bottom = top + elRect.height; right = left + elRect.width; break; } /* jshint boss:true */ } while (container = container.parentNode); } } if (undoScale && el !== window) { // Adjust for scale() var elMatrix = matrix(container || el), scaleX = elMatrix && elMatrix.a, scaleY = elMatrix && elMatrix.d; if (elMatrix) { top /= scaleY; left /= scaleX; width /= scaleX; height /= scaleY; bottom = top + height; right = left + width; } } return { top: top, left: left, bottom: bottom, right: right, width: width, height: height }; } /** * Checks if a side of an element is scrolled past a side of its parents * @param {HTMLElement} el The element who's side being scrolled out of view is in question * @param {String} elSide Side of the element in question ('top', 'left', 'right', 'bottom') * @param {String} parentSide Side of the parent in question ('top', 'left', 'right', 'bottom') * @return {HTMLElement} The parent scroll element that the el's side is scrolled past, or null if there is no such element */ function isScrolledPast(el, elSide, parentSide) { var parent = getParentAutoScrollElement(el, true), elSideVal = getRect(el)[elSide]; /* jshint boss:true */ while (parent) { var parentSideVal = getRect(parent)[parentSide], visible = void 0; if (parentSide === 'top' || parentSide === 'left') { visible = elSideVal >= parentSideVal; } else { visible = elSideVal <= parentSideVal; } if (!visible) return parent; if (parent === getWindowScrollingElement()) break; parent = getParentAutoScrollElement(parent, false); } return false; } /** * Gets nth child of el, ignoring hidden children, sortable's elements (does not ignore clone if it's visible) * and non-draggable elements * @param {HTMLElement} el The parent element * @param {Number} childNum The index of the child * @param {Object} options Parent Sortable's options * @return {HTMLElement} The child at index childNum, or null if not found */ function getChild(el, childNum, options) { var currentChild = 0, i = 0, children = el.children; while (i < children.length) { if (children[i].style.display !== 'none' && children[i] !== Sortable.ghost && children[i] !== Sortable.dragged && closest(children[i], options.draggable, el, false)) { if (currentChild === childNum) { return children[i]; } currentChild++; } i++; } return null; } /** * Gets the last child in the el, ignoring ghostEl or invisible elements (clones) * @param {HTMLElement} el Parent element * @param {selector} selector Any other elements that should be ignored * @return {HTMLElement} The last child, ignoring ghostEl */ function lastChild(el, selector) { var last = el.lastElementChild; while (last && (last === Sortable.ghost || css(last, 'display') === 'none' || selector && !matches(last, selector))) { last = last.previousElementSibling; } return last || null; } /** * Returns the index of an element within its parent for a selected set of * elements * @param {HTMLElement} el * @param {selector} selector * @return {number} */ function index(el, selector) { var index = 0; if (!el || !el.parentNode) { return -1; } /* jshint boss:true */ while (el = el.previousElementSibling) { if (el.nodeName.toUpperCase() !== 'TEMPLATE' && el !== Sortable.clone && (!selector || matches(el, selector))) { index++; } } return index; } /** * Returns the scroll offset of the given element, added with all the scroll offsets of parent elements. * The value is returned in real pixels. * @param {HTMLElement} el * @return {Array} Offsets in the format of [left, top] */ function getRelativeScrollOffset(el) { var offsetLeft = 0, offsetTop = 0, winScroller = getWindowScrollingElement(); if (el) { do { var elMatrix = matrix(el), scaleX = elMatrix.a, scaleY = elMatrix.d; offsetLeft += el.scrollLeft * scaleX; offsetTop += el.scrollTop * scaleY; } while (el !== winScroller && (el = el.parentNode)); } return [offsetLeft, offsetTop]; } /** * Returns the index of the object within the given array * @param {Array} arr Array that may or may not hold the object * @param {Object} obj An object that has a key-value pair unique to and identical to a key-value pair in the object you want to find * @return {Number} The index of the object in the array, or -1 */ function indexOfObject(arr, obj) { for (var i in arr) { if (!arr.hasOwnProperty(i)) continue; for (var key in obj) { if (obj.hasOwnProperty(key) && obj[key] === arr[i][key]) return Number(i); } } return -1; } function getParentAutoScrollElement(el, includeSelf) { // skip to window if (!el || !el.getBoundingClientRect) return getWindowScrollingElement(); var elem = el; var gotSelf = false; do { // we don't need to get elem css if it isn't even overflowing in the first place (performance) if (elem.clientWidth < elem.scrollWidth || elem.clientHeight < elem.scrollHeight) { var elemCSS = css(elem); if (elem.clientWidth < elem.scrollWidth && (elemCSS.overflowX == 'auto' || elemCSS.overflowX == 'scroll') || elem.clientHeight < elem.scrollHeight && (elemCSS.overflowY == 'auto' || elemCSS.overflowY == 'scroll')) { if (!elem.getBoundingClientRect || elem === document.body) return getWindowScrollingElement(); if (gotSelf || includeSelf) return elem; gotSelf = true; } } /* jshint boss:true */ } while (elem = elem.parentNode); return getWindowScrollingElement(); } function extend(dst, src) { if (dst && src) { for (var key in src) { if (src.hasOwnProperty(key)) { dst[key] = src[key]; } } } return dst; } function isRectEqual(rect1, rect2) { return Math.round(rect1.top) === Math.round(rect2.top) && Math.round(rect1.left) === Math.round(rect2.left) && Math.round(rect1.height) === Math.round(rect2.height) && Math.round(rect1.width) === Math.round(rect2.width); } var _throttleTimeout; function throttle(callback, ms) { return function () { if (!_throttleTimeout) { var args = arguments, _this = this; if (args.length === 1) { callback.call(_this, args[0]); } else { callback.apply(_this, args); } _throttleTimeout = setTimeout(function () { _throttleTimeout = void 0; }, ms); } }; } function cancelThrottle() { clearTimeout(_throttleTimeout); _throttleTimeout = void 0; } function scrollBy(el, x, y) { el.scrollLeft += x; el.scrollTop += y; } function clone(el) { var Polymer = window.Polymer; var $ = window.jQuery || window.Zepto; if (Polymer && Polymer.dom) { return Polymer.dom(el).cloneNode(true); } else if ($) { return $(el).clone(true)[0]; } else { return el.cloneNode(true); } } var expando = 'Sortable' + new Date().getTime(); function AnimationStateManager() { var animationStates = [], animationCallbackId; return { captureAnimationState: function captureAnimationState() { animationStates = []; if (!this.options.animation) return; var children = [].slice.call(this.el.children); children.forEach(function (child) { if (css(child, 'display') === 'none' || child === Sortable.ghost) return; animationStates.push({ target: child, rect: getRect(child) }); var fromRect = _objectSpread({}, animationStates[animationStates.length - 1].rect); // If animating: compensate for current animation if (child.thisAnimationDuration) { var childMatrix = matrix(child, true); if (childMatrix) { fromRect.top -= childMatrix.f; fromRect.left -= childMatrix.e; } } child.fromRect = fromRect; }); }, addAnimationState: function addAnimationState(state) { animationStates.push(state); }, removeAnimationState: function removeAnimationState(target) { animationStates.splice(indexOfObject(animationStates, { target: target }), 1); }, animateAll: function animateAll(callback) { var _this = this; if (!this.options.animation) { clearTimeout(animationCallbackId); if (typeof callback === 'function') callback(); return; } var animating = false, animationTime = 0; animationStates.forEach(function (state) { var time = 0, target = state.target, fromRect = target.fromRect, toRect = getRect(target), prevFromRect = target.prevFromRect, prevToRect = target.prevToRect, animatingRect = state.rect, targetMatrix = matrix(target, true); if (targetMatrix) { // Compensate for current animation toRect.top -= targetMatrix.f; toRect.left -= targetMatrix.e; } target.toRect = toRect; if (target.thisAnimationDuration) { // Could also check if animatingRect is between fromRect and toRect if (isRectEqual(prevFromRect, toRect) && !isRectEqual(fromRect, toRect) && // Make sure animatingRect is on line between toRect & fromRect (animatingRect.top - toRect.top) / (animatingRect.left - toRect.left) === (fromRect.top - toRect.top) / (fromRect.left - toRect.left)) { // If returning to same place as started from animation and on same axis time = calculateRealTime(animatingRect, prevFromRect, prevToRect, _this.options); } } // if fromRect != toRect: animate if (!isRectEqual(toRect, fromRect)) { target.prevFromRect = fromRect; target.prevToRect = toRect; if (!time) { time = _this.options.animation; } _this.animate(target, animatingRect, toRect, time); } if (time) { animating = true; animationTime = Math.max(animationTime, time); clearTimeout(target.animationResetTimer); target.animationResetTimer = setTimeout(function () { target.animationTime = 0; target.prevFromRect = null; target.fromRect = null; target.prevToRect = null; target.thisAnimationDuration = null; }, time); target.thisAnimationDuration = time; } }); clearTimeout(animationCallbackId); if (!animating) { if (typeof callback === 'function') callback(); } else { animationCallbackId = setTimeout(function () { if (typeof callback === 'function') callback(); }, animationTime); } animationStates = []; }, animate: function animate(target, currentRect, toRect, duration) { if (duration) { css(target, 'transition', ''); css(target, 'transform', ''); var elMatrix = matrix(this.el), scaleX = elMatrix && elMatrix.a, scaleY = elMatrix && elMatrix.d, translateX = (currentRect.left - toRect.left) / (scaleX || 1), translateY = (currentRect.top - toRect.top) / (scaleY || 1); target.animatingX = !!translateX; target.animatingY = !!translateY; css(target, 'transform', 'translate3d(' + translateX + 'px,' + translateY + 'px,0)'); repaint(target); // repaint css(target, 'transition', 'transform ' + duration + 'ms' + (this.options.easing ? ' ' + this.options.easing : '')); css(target, 'transform', 'translate3d(0,0,0)'); typeof target.animated === 'number' && clearTimeout(target.animated); target.animated = setTimeout(function () { css(target, 'transition', ''); css(target, 'transform', ''); target.animated = false; target.animatingX = false; target.animatingY = false; }, duration); } } }; } function repaint(target) { return target.offsetWidth; } function calculateRealTime(animatingRect, fromRect, toRect, options) { return Math.sqrt(Math.pow(fromRect.top - animatingRect.top, 2) + Math.pow(fromRect.left - animatingRect.left, 2)) / Math.sqrt(Math.pow(fromRect.top - toRect.top, 2) + Math.pow(fromRect.left - toRect.left, 2)) * options.animation; } var plugins = []; var defaults = { initializeByDefault: true }; var PluginManager = { mount: function mount(plugin) { // Set default static properties for (var option in defaults) { if (defaults.hasOwnProperty(option) && !(option in plugin)) { plugin[option] = defaults[option]; } } plugins.push(plugin); }, pluginEvent: function pluginEvent(eventName, sortable, evt) { var _this = this; this.eventCanceled = false; evt.cancel = function () { _this.eventCanceled = true; }; var eventNameGlobal = eventName + 'Global'; plugins.forEach(function (plugin) { if (!sortable[plugin.pluginName]) return; // Fire global events if it exists in this sortable if (sortable[plugin.pluginName][eventNameGlobal]) { sortable[plugin.pluginName][eventNameGlobal](_objectSpread({ sortable: sortable }, evt)); } // Only fire plugin event if plugin is enabled in this sortable, // and plugin has event defined if (sortable.options[plugin.pluginName] && sortable[plugin.pluginName][eventName]) { sortable[plugin.pluginName][eventName](_objectSpread({ sortable: sortable }, evt)); } }); }, initializePlugins: function initializePlugins(sortable, el, defaults, options) { plugins.forEach(function (plugin) { var pluginName = plugin.pluginName; if (!sortable.options[pluginName] && !plugin.initializeByDefault) return; var initialized = new plugin(sortable, el, sortable.options); initialized.sortable = sortable; initialized.options = sortable.options; sortable[pluginName] = initialized; // Add default options from plugin _extends(defaults, initialized.defaults); }); for (var option in sortable.options) { if (!sortable.options.hasOwnProperty(option)) continue; var modified = this.modifyOption(sortable, option, sortable.options[option]); if (typeof modified !== 'undefined') { sortable.options[option] = modified; } } }, getEventProperties: function getEventProperties(name, sortable) { var eventProperties = {}; plugins.forEach(function (plugin) { if (typeof plugin.eventProperties !== 'function') return; _extends(eventProperties, plugin.eventProperties.call(sortable[plugin.pluginName], name)); }); return eventProperties; }, modifyOption: function modifyOption(sortable, name, value) { var modifiedValue; plugins.forEach(function (plugin) { // Plugin must exist on the Sortable if (!sortable[plugin.pluginName]) return; // If static option listener exists for this option, call in the context of the Sortable's instance of this plugin if (plugin.optionListeners && typeof plugin.optionListeners[name] === 'function') { modifiedValue = plugin.optionListeners[name].call(sortable[plugin.pluginName], value); } }); return modifiedValue; } }; function dispatchEvent(_ref) { var sortable = _ref.sortable, rootEl = _ref.rootEl, name = _ref.name, targetEl = _ref.targetEl, cloneEl = _ref.cloneEl, toEl = _ref.toEl, fromEl = _ref.fromEl, oldIndex = _ref.oldIndex, newIndex = _ref.newIndex, oldDraggableIndex = _ref.oldDraggableIndex, newDraggableIndex = _ref.newDraggableIndex, originalEvent = _ref.originalEvent, putSortable = _ref.putSortable, extraEventProperties = _ref.extraEventProperties; sortable = sortable || rootEl && rootEl[expando]; if (!sortable) return; var evt, options = sortable.options, onName = 'on' + name.charAt(0).toUpperCase() + name.substr(1); // Support for new CustomEvent feature if (window.CustomEvent && !IE11OrLess && !Edge) { evt = new CustomEvent(name, { bubbles: true, cancelable: true }); } else { evt = document.createEvent('Event'); evt.initEvent(name, true, true); } evt.to = toEl || rootEl; evt.from = fromEl || rootEl; evt.item = targetEl || rootEl; evt.clone = cloneEl; evt.oldIndex = oldIndex; evt.newIndex = newIndex; evt.oldDraggableIndex = oldDraggableIndex; evt.newDraggableIndex = newDraggableIndex; evt.originalEvent = originalEvent; evt.pullMode = putSortable ? putSortable.lastPutMode : undefined; var allEventProperties = _objectSpread({}, extraEventProperties, PluginManager.getEventProperties(name, sortable)); for (var option in allEventProperties) { evt[option] = allEventProperties[option]; } if (rootEl) { rootEl.dispatchEvent(evt); } if (options[onName]) { options[onName].call(sortable, evt); } } var pluginEvent = function pluginEvent(eventName, sortable) { var _ref = arguments.length > 2 && arguments[2] !== undefined ? arguments[2] : {}, originalEvent = _ref.evt, data = _objectWithoutProperties(_ref, ["evt"]); PluginManager.pluginEvent.bind(Sortable)(eventName, sortable, _objectSpread({ dragEl: dragEl, parentEl: parentEl, ghostEl: ghostEl, rootEl: rootEl, nextEl: nextEl, lastDownEl: lastDownEl, cloneEl: cloneEl, cloneHidden: cloneHidden, dragStarted: moved, putSortable: putSortable, activeSortable: Sortable.active, originalEvent: originalEvent, oldIndex: oldIndex, oldDraggableIndex: oldDraggableIndex, newIndex: newIndex, newDraggableIndex: newDraggableIndex, hideGhostForTarget: _hideGhostForTarget, unhideGhostForTarget: _unhideGhostForTarget, cloneNowHidden: function cloneNowHidden() { cloneHidden = true; }, cloneNowShown: function cloneNowShown() { cloneHidden = false; }, dispatchSortableEvent: function dispatchSortableEvent(name) { _dispatchEvent({ sortable: sortable, name: name, originalEvent: originalEvent }); } }, data)); }; function _dispatchEvent(info) { dispatchEvent(_objectSpread({ putSortable: putSortable, cloneEl: cloneEl, targetEl: dragEl, rootEl: rootEl, oldIndex: oldIndex, oldDraggableIndex: oldDraggableIndex, newIndex: newIndex, newDraggableIndex: newDraggableIndex }, info)); } var dragEl, parentEl, ghostEl, rootEl, nextEl, lastDownEl, cloneEl, cloneHidden, oldIndex, newIndex, oldDraggableIndex, newDraggableIndex, activeGroup, putSortable, awaitingDragStarted = false, ignoreNextClick = false, sortables = [], tapEvt, touchEvt, lastDx, lastDy, tapDistanceLeft, tapDistanceTop, moved, lastTarget, lastDirection, pastFirstInvertThresh = false, isCircumstantialInvert = false, targetMoveDistance, // For positioning ghost absolutely ghostRelativeParent, ghostRelativeParentInitialScroll = [], // (left, top) _silent = false, savedInputChecked = []; /** @const */ var documentExists = typeof document !== 'undefined', PositionGhostAbsolutely = IOS, CSSFloatProperty = Edge || IE11OrLess ? 'cssFloat' : 'float', // This will not pass for IE9, because IE9 DnD only works on anchors supportDraggable = documentExists && !ChromeForAndroid && !IOS && 'draggable' in document.createElement('div'), supportCssPointerEvents = function () { if (!documentExists) return; // false when <= IE11 if (IE11OrLess) { return false; } var el = document.createElement('x'); el.style.cssText = 'pointer-events:auto'; return el.style.pointerEvents === 'auto'; }(), _detectDirection = function _detectDirection(el, options) { var elCSS = css(el), elWidth = parseInt(elCSS.width) - parseInt(elCSS.paddingLeft) - parseInt(elCSS.paddingRight) - parseInt(elCSS.borderLeftWidth) - parseInt(elCSS.borderRightWidth), child1 = getChild(el, 0, options), child2 = getChild(el, 1, options), firstChildCSS = child1 && css(child1), secondChildCSS = child2 && css(child2), firstChildWidth = firstChildCSS && parseInt(firstChildCSS.marginLeft) + parseInt(firstChildCSS.marginRight) + getRect(child1).width, secondChildWidth = secondChildCSS && parseInt(secondChildCSS.marginLeft) + parseInt(secondChildCSS.marginRight) + getRect(child2).width; if (elCSS.display === 'flex') { return elCSS.flexDirection === 'column' || elCSS.flexDirection === 'column-reverse' ? 'vertical' : 'horizontal'; } if (elCSS.display === 'grid') { return elCSS.gridTemplateColumns.split(' ').length <= 1 ? 'vertical' : 'horizontal'; } if (child1 && firstChildCSS["float"] && firstChildCSS["float"] !== 'none') { var touchingSideChild2 = firstChildCSS["float"] === 'left' ? 'left' : 'right'; return child2 && (secondChildCSS.clear === 'both' || secondChildCSS.clear === touchingSideChild2) ? 'vertical' : 'horizontal'; } return child1 && (firstChildCSS.display === 'block' || firstChildCSS.display === 'flex' || firstChildCSS.display === 'table' || firstChildCSS.display === 'grid' || firstChildWidth >= elWidth && elCSS[CSSFloatProperty] === 'none' || child2 && elCSS[CSSFloatProperty] === 'none' && firstChildWidth + secondChildWidth > elWidth) ? 'vertical' : 'horizontal'; }, _dragElInRowColumn = function _dragElInRowColumn(dragRect, targetRect, vertical) { var dragElS1Opp = vertical ? dragRect.left : dragRect.top, dragElS2Opp = vertical ? dragRect.right : dragRect.bottom, dragElOppLength = vertical ? dragRect.width : dragRect.height, targetS1Opp = vertical ? targetRect.left : targetRect.top, targetS2Opp = vertical ? targetRect.right : targetRect.bottom, targetOppLength = vertical ? targetRect.width : targetRect.height; return dragElS1Opp === targetS1Opp || dragElS2Opp === targetS2Opp || dragElS1Opp + dragElOppLength / 2 === targetS1Opp + targetOppLength / 2; }, /** * Detects first nearest empty sortable to X and Y position using emptyInsertThreshold. * @param {Number} x X position * @param {Number} y Y position * @return {HTMLElement} Element of the first found nearest Sortable */ _detectNearestEmptySortable = function _detectNearestEmptySortable(x, y) { var ret; sortables.some(function (sortable) { if (lastChild(sortable)) return; var rect = getRect(sortable), threshold = sortable[expando].options.emptyInsertThreshold, insideHorizontally = x >= rect.left - threshold && x <= rect.right + threshold, insideVertically = y >= rect.top - threshold && y <= rect.bottom + threshold; if (threshold && insideHorizontally && insideVertically) { return ret = sortable; } }); return ret; }, _prepareGroup = function _prepareGroup(options) { function toFn(value, pull) { return function (to, from, dragEl, evt) { var sameGroup = to.options.group.name && from.options.group.name && to.options.group.name === from.options.group.name; if (value == null && (pull || sameGroup)) { // Default pull value // Default pull and put value if same group return true; } else if (value == null || value === false) { return false; } else if (pull && value === 'clone') { return value; } else if (typeof value === 'function') { return toFn(value(to, from, dragEl, evt), pull)(to, from, dragEl, evt); } else { var otherGroup = (pull ? to : from).options.group.name; return value === true || typeof value === 'string' && value === otherGroup || value.join && value.indexOf(otherGroup) > -1; } }; } var group = {}; var originalGroup = options.group; if (!originalGroup || _typeof(originalGroup) != 'object') { originalGroup = { name: originalGroup }; } group.name = originalGroup.name; group.checkPull = toFn(originalGroup.pull, true); group.checkPut = toFn(originalGroup.put); group.revertClone = originalGroup.revertClone; options.group = group; }, _hideGhostForTarget = function _hideGhostForTarget() { if (!supportCssPointerEvents && ghostEl) { css(ghostEl, 'display', 'none'); } }, _unhideGhostForTarget = function _unhideGhostForTarget() { if (!supportCssPointerEvents && ghostEl) { css(ghostEl, 'display', ''); } }; // #1184 fix - Prevent click event on fallback if dragged but item not changed position if (documentExists) { document.addEventListener('click', function (evt) { if (ignoreNextClick) { evt.preventDefault(); evt.stopPropagation && evt.stopPropagation(); evt.stopImmediatePropagation && evt.stopImmediatePropagation(); ignoreNextClick = false; return false; } }, true); } var nearestEmptyInsertDetectEvent = function nearestEmptyInsertDetectEvent(evt) { if (dragEl) { evt = evt.touches ? evt.touches[0] : evt; var nearest = _detectNearestEmptySortable(evt.clientX, evt.clientY); if (nearest) { // Create imitation event var event = {}; for (var i in evt) { if (evt.hasOwnProperty(i)) { event[i] = evt[i]; } } event.target = event.rootEl = nearest; event.preventDefault = void 0; event.stopPropagation = void 0; nearest[expando]._onDragOver(event); } } }; var _checkOutsideTargetEl = function _checkOutsideTargetEl(evt) { if (dragEl) { dragEl.parentNode[expando]._isOutsideThisEl(evt.target); } }; /** * @class Sortable * @param {HTMLElement} el * @param {Object} [options] */ function Sortable(el, options) { if (!(el && el.nodeType && el.nodeType === 1)) { throw "Sortable: `el` must be an HTMLElement, not ".concat({}.toString.call(el)); } this.el = el; // root element this.options = options = _extends({}, options); // Export instance el[expando] = this; var defaults = { group: null, sort: true, disabled: false, store: null, handle: null, draggable: /^[uo]l$/i.test(el.nodeName) ? '>li' : '>*', swapThreshold: 1, // percentage; 0 <= x <= 1 invertSwap: false, // invert always invertedSwapThreshold: null, // will be set to same as swapThreshold if default removeCloneOnHide: true, direction: function direction() { return _detectDirection(el, this.options); }, ghostClass: 'sortable-ghost', chosenClass: 'sortable-chosen', dragClass: 'sortable-drag', ignore: 'a, img', filter: null, preventOnFilter: true, animation: 0, easing: null, setData: function setData(dataTransfer, dragEl) { dataTransfer.setData('Text', dragEl.textContent); }, dropBubble: false, dragoverBubble: false, dataIdAttr: 'data-id', delay: 0, delayOnTouchOnly: false, touchStartThreshold: (Number.parseInt ? Number : window).parseInt(window.devicePixelRatio, 10) || 1, forceFallback: false, fallbackClass: 'sortable-fallback', fallbackOnBody: false, fallbackTolerance: 0, fallbackOffset: { x: 0, y: 0 }, supportPointer: Sortable.supportPointer !== false && 'PointerEvent' in window, emptyInsertThreshold: 5 }; PluginManager.initializePlugins(this, el, defaults); // Set default options for (var name in defaults) { !(name in options) && (options[name] = defaults[name]); } _prepareGroup(options); // Bind all private methods for (var fn in this) { if (fn.charAt(0) === '_' && typeof this[fn] === 'function') { this[fn] = this[fn].bind(this); } } // Setup drag mode this.nativeDraggable = options.forceFallback ? false : supportDraggable; if (this.nativeDraggable) { // Touch start threshold cannot be greater than the native dragstart threshold this.options.touchStartThreshold = 1; } // Bind events if (options.supportPointer) { on(el, 'pointerdown', this._onTapStart); } else { on(el, 'mousedown', this._onTapStart); on(el, 'touchstart', this._onTapStart); } if (this.nativeDraggable) { on(el, 'dragover', this); on(el, 'dragenter', this); } sortables.push(this.el); // Restore sorting options.store && options.store.get && this.sort(options.store.get(this) || []); // Add animation state manager _extends(this, AnimationStateManager()); } Sortable.prototype = /** @lends Sortable.prototype */ { constructor: Sortable, _isOutsideThisEl: function _isOutsideThisEl(target) { if (!this.el.contains(target) && target !== this.el) { lastTarget = null; } }, _getDirection: function _getDirection(evt, target) { return typeof this.options.direction === 'function' ? this.options.direction.call(this, evt, target, dragEl) : this.options.direction; }, _onTapStart: function _onTapStart( /** Event|TouchEvent */ evt) { if (!evt.cancelable) return; var _this = this, el = this.el, options = this.options, preventOnFilter = options.preventOnFilter, type = evt.type, touch = evt.touches && evt.touches[0] || evt.pointerType && evt.pointerType === 'touch' && evt, target = (touch || evt).target, originalTarget = evt.target.shadowRoot && (evt.path && evt.path[0] || evt.composedPath && evt.composedPath()[0]) || target, filter = options.filter; _saveInputCheckedState(el); // Don't trigger start event when an element is been dragged, otherwise the evt.oldindex always wrong when set option.group. if (dragEl) { return; } if (/mousedown|pointerdown/.test(type) && evt.button !== 0 || options.disabled) { return; // only left button and enabled } // cancel dnd if original target is content editable if (originalTarget.isContentEditable) { return; } target = closest(target, options.draggable, el, false); if (target && target.animated) { return; } if (lastDownEl === target) { // Ignoring duplicate `down` return; } // Get the index of the dragged element within its parent oldIndex = index(target); oldDraggableIndex = index(target, options.draggable); // Check filter if (typeof filter === 'function') { if (filter.call(this, evt, target, this)) { _dispatchEvent({ sortable: _this, rootEl: originalTarget, name: 'filter', targetEl: target, toEl: el, fromEl: el }); pluginEvent('filter', _this, { evt: evt }); preventOnFilter && evt.cancelable && evt.preventDefault(); return; // cancel dnd } } else if (filter) { filter = filter.split(',').some(function (criteria) { criteria = closest(originalTarget, criteria.trim(), el, false); if (criteria) { _dispatchEvent({ sortable: _this, rootEl: criteria, name: 'filter', targetEl: target, fromEl: el, toEl: el }); pluginEvent('filter', _this, { evt: evt }); return true; } }); if (filter) { preventOnFilter && evt.cancelable && evt.preventDefault(); return; // cancel dnd } } if (options.handle && !closest(originalTarget, options.handle, el, false)) { return; } // Prepare `dragstart` this._prepareDragStart(evt, touch, target); }, _prepareDragStart: function _prepareDragStart( /** Event */ evt, /** Touch */ touch, /** HTMLElement */ target) { var _this = this, el = _this.el, options = _this.options, ownerDocument = el.ownerDocument, dragStartFn; if (target && !dragEl && target.parentNode === el) { var dragRect = getRect(target); rootEl = el; dragEl = target; parentEl = dragEl.parentNode; nextEl = dragEl.nextSibling; lastDownEl = target; activeGroup = options.group; Sortable.dragged = dragEl; tapEvt = { target: dragEl, clientX: (touch || evt).clientX, clientY: (touch || evt).clientY }; tapDistanceLeft = tapEvt.clientX - dragRect.left; tapDistanceTop = tapEvt.clientY - dragRect.top; this._lastX = (touch || evt).clientX; this._lastY = (touch || evt).clientY; dragEl.style['will-change'] = 'all'; dragStartFn = function dragStartFn() { pluginEvent('delayEnded', _this, { evt: evt }); if (Sortable.eventCanceled) { _this._onDrop(); return; } // Delayed drag has been triggered // we can re-enable the events: touchmove/mousemove _this._disableDelayedDragEvents(); if (!FireFox && _this.nativeDraggable) { dragEl.draggable = true; } // Bind the events: dragstart/dragend _this._triggerDragStart(evt, touch); // Drag start event _dispatchEvent({ sortable: _this, name: 'choose', originalEvent: evt }); // Chosen item toggleClass(dragEl, options.chosenClass, true); }; // Disable "draggable" options.ignore.split(',').forEach(function (criteria) { find(dragEl, criteria.trim(), _disableDraggable); }); on(ownerDocument, 'dragover', nearestEmptyInsertDetectEvent); on(ownerDocument, 'mousemove', nearestEmptyInsertDetectEvent); on(ownerDocument, 'touchmove', nearestEmptyInsertDetectEvent); on(ownerDocument, 'mouseup', _this._onDrop); on(ownerDocument, 'touchend', _this._onDrop); on(ownerDocument, 'touchcancel', _this._onDrop); // Make dragEl draggable (must be before delay for FireFox) if (FireFox && this.nativeDraggable) { this.options.touchStartThreshold = 4; dragEl.draggable = true; } pluginEvent('delayStart', this, { evt: evt }); // Delay is impossible for native DnD in Edge or IE if (options.delay && (!options.delayOnTouchOnly || touch) && (!this.nativeDraggable || !(Edge || IE11OrLess))) { if (Sortable.eventCanceled) { this._onDrop(); return; } // If the user moves the pointer or let go the click or touch // before the delay has been reached: // disable the delayed drag on(ownerDocument, 'mouseup', _this._disableDelayedDrag); on(ownerDocument, 'touchend', _this._disableDelayedDrag); on(ownerDocument, 'touchcancel', _this._disableDelayedDrag); on(ownerDocument, 'mousemove', _this._delayedDragTouchMoveHandler); on(ownerDocument, 'touchmove', _this._delayedDragTouchMoveHandler); options.supportPointer && on(ownerDocument, 'pointermove', _this._delayedDragTouchMoveHandler); _this._dragStartTimer = setTimeout(dragStartFn, options.delay); } else { dragStartFn(); } } }, _delayedDragTouchMoveHandler: function _delayedDragTouchMoveHandler( /** TouchEvent|PointerEvent **/ e) { var touch = e.touches ? e.touches[0] : e; if (Math.max(Math.abs(touch.clientX - this._lastX), Math.abs(touch.clientY - this._lastY)) >= Math.floor(this.options.touchStartThreshold / (this.nativeDraggable && window.devicePixelRatio || 1))) { this._disableDelayedDrag(); } }, _disableDelayedDrag: function _disableDelayedDrag() { dragEl && _disableDraggable(dragEl); clearTimeout(this._dragStartTimer); this._disableDelayedDragEvents(); }, _disableDelayedDragEvents: function _disableDelayedDragEvents() { var ownerDocument = this.el.ownerDocument; off(ownerDocument, 'mouseup', this._disableDelayedDrag); off(ownerDocument, 'touchend', this._disableDelayedDrag); off(ownerDocument, 'touchcancel', this._disableDelayedDrag); off(ownerDocument, 'mousemove', this._delayedDragTouchMoveHandler); off(ownerDocument, 'touchmove', this._delayedDragTouchMoveHandler); off(ownerDocument, 'pointermove', this._delayedDragTouchMoveHandler); }, _triggerDragStart: function _triggerDragStart( /** Event */ evt, /** Touch */ touch) { touch = touch || evt.pointerType == 'touch' && evt; if (!this.nativeDraggable || touch) { if (this.options.supportPointer) { on(document, 'pointermove', this._onTouchMove); } else if (touch) { on(document, 'touchmove', this._onTouchMove); } else { on(document, 'mousemove', this._onTouchMove); } } else { on(dragEl, 'dragend', this); on(rootEl, 'dragstart', this._onDragStart); } try { if (document.selection) { // Timeout neccessary for IE9 _nextTick(function () { document.selection.empty(); }); } else { window.getSelection().removeAllRanges(); } } catch (err) {} }, _dragStarted: function _dragStarted(fallback, evt) { awaitingDragStarted = false; if (rootEl && dragEl) { pluginEvent('dragStarted', this, { evt: evt }); if (this.nativeDraggable) { on(document, 'dragover', _checkOutsideTargetEl); } var options = this.options; // Apply effect !fallback && toggleClass(dragEl, options.dragClass, false); toggleClass(dragEl, options.ghostClass, true); Sortable.active = this; fallback && this._appendGhost(); // Drag start event _dispatchEvent({ sortable: this, name: 'start', originalEvent: evt }); } else { this._nulling(); } }, _emulateDragOver: function _emulateDragOver() { if (touchEvt) { this._lastX = touchEvt.clientX; this._lastY = touchEvt.clientY; _hideGhostForTarget(); var target = document.elementFromPoint(touchEvt.clientX, touchEvt.clientY); var parent = target; while (target && target.shadowRoot) { target = target.shadowRoot.elementFromPoint(touchEvt.clientX, touchEvt.clientY); if (target === parent) break; parent = target; } dragEl.parentNode[expando]._isOutsideThisEl(target); if (parent) { do { if (parent[expando]) { var inserted = void 0; inserted = parent[expando]._onDragOver({ clientX: touchEvt.clientX, clientY: touchEvt.clientY, target: target, rootEl: parent }); if (inserted && !this.options.dragoverBubble) { break; } } target = parent; // store last element } /* jshint boss:true */ while (parent = parent.parentNode); } _unhideGhostForTarget(); } }, _onTouchMove: function _onTouchMove( /**TouchEvent*/ evt) { if (tapEvt) { var options = this.options, fallbackTolerance = options.fallbackTolerance, fallbackOffset = options.fallbackOffset, touch = evt.touches ? evt.touches[0] : evt, ghostMatrix = ghostEl && matrix(ghostEl, true), scaleX = ghostEl && ghostMatrix && ghostMatrix.a, scaleY = ghostEl && ghostMatrix && ghostMatrix.d, relativeScrollOffset = PositionGhostAbsolutely && ghostRelativeParent && getRelativeScrollOffset(ghostRelativeParent), dx = (touch.clientX - tapEvt.clientX + fallbackOffset.x) / (scaleX || 1) + (relativeScrollOffset ? relativeScrollOffset[0] - ghostRelativeParentInitialScroll[0] : 0) / (scaleX || 1), dy = (touch.clientY - tapEvt.clientY + fallbackOffset.y) / (scaleY || 1) + (relativeScrollOffset ? relativeScrollOffset[1] - ghostRelativeParentInitialScroll[1] : 0) / (scaleY || 1); // only set the status to dragging, when we are actually dragging if (!Sortable.active && !awaitingDragStarted) { if (fallbackTolerance && Math.max(Math.abs(touch.clientX - this._lastX), Math.abs(touch.clientY - this._lastY)) < fallbackTolerance) { return; } this._onDragStart(evt, true); } if (ghostEl) { if (ghostMatrix) { ghostMatrix.e += dx - (lastDx || 0); ghostMatrix.f += dy - (lastDy || 0); } else { ghostMatrix = { a: 1, b: 0, c: 0, d: 1, e: dx, f: dy }; } var cssMatrix = "matrix(".concat(ghostMatrix.a, ",").concat(ghostMatrix.b, ",").concat(ghostMatrix.c, ",").concat(ghostMatrix.d, ",").concat(ghostMatrix.e, ",").concat(ghostMatrix.f, ")"); css(ghostEl, 'webkitTransform', cssMatrix); css(ghostEl, 'mozTransform', cssMatrix); css(ghostEl, 'msTransform', cssMatrix); css(ghostEl, 'transform', cssMatrix); lastDx = dx; lastDy = dy; touchEvt = touch; } evt.cancelable && evt.preventDefault(); } }, _appendGhost: function _appendGhost() { // Bug if using scale(): https://stackoverflow.com/questions/2637058 // Not being adjusted for if (!ghostEl) { var container = this.options.fallbackOnBody ? document.body : rootEl, rect = getRect(dragEl, true, PositionGhostAbsolutely, true, container), options = this.options; // Position absolutely if (PositionGhostAbsolutely) { // Get relatively positioned parent ghostRelativeParent = container; while (css(ghostRelativeParent, 'position') === 'static' && css(ghostRelativeParent, 'transform') === 'none' && ghostRelativeParent !== document) { ghostRelativeParent = ghostRelativeParent.parentNode; } if (ghostRelativeParent !== document.body && ghostRelativeParent !== document.documentElement) { if (ghostRelativeParent === document) ghostRelativeParent = getWindowScrollingElement(); rect.top += ghostRelativeParent.scrollTop; rect.left += ghostRelativeParent.scrollLeft; } else { ghostRelativeParent = getWindowScrollingElement(); } ghostRelativeParentInitialScroll = getRelativeScrollOffset(ghostRelativeParent); } ghostEl = dragEl.cloneNode(true); toggleClass(ghostEl, options.ghostClass, false); toggleClass(ghostEl, options.fallbackClass, true); toggleClass(ghostEl, options.dragClass, true); css(ghostEl, 'transition', ''); css(ghostEl, 'transform', ''); css(ghostEl, 'box-sizing', 'border-box'); css(ghostEl, 'margin', 0); css(ghostEl, 'top', rect.top); css(ghostEl, 'left', rect.left); css(ghostEl, 'width', rect.width); css(ghostEl, 'height', rect.height); css(ghostEl, 'opacity', '0.8'); css(ghostEl, 'position', PositionGhostAbsolutely ? 'absolute' : 'fixed'); css(ghostEl, 'zIndex', '100000'); css(ghostEl, 'pointerEvents', 'none'); Sortable.ghost = ghostEl; container.appendChild(ghostEl); // Set transform-origin css(ghostEl, 'transform-origin', tapDistanceLeft / parseInt(ghostEl.style.width) * 100 + '% ' + tapDistanceTop / parseInt(ghostEl.style.height) * 100 + '%'); } }, _onDragStart: function _onDragStart( /**Event*/ evt, /**boolean*/ fallback) { var _this = this; var dataTransfer = evt.dataTransfer; var options = _this.options; pluginEvent('dragStart', this, { evt: evt }); if (Sortable.eventCanceled) { this._onDrop(); return; } pluginEvent('setupClone', this); if (!Sortable.eventCanceled) { cloneEl = clone(dragEl); cloneEl.draggable = false; cloneEl.style['will-change'] = ''; this._hideClone(); toggleClass(cloneEl, this.options.chosenClass, false); Sortable.clone = cloneEl; } // #1143: IFrame support workaround _this.cloneId = _nextTick(function () { pluginEvent('clone', _this); if (Sortable.eventCanceled) return; if (!_this.options.removeCloneOnHide) { rootEl.insertBefore(cloneEl, dragEl); } _this._hideClone(); _dispatchEvent({ sortable: _this, name: 'clone' }); }); !fallback && toggleClass(dragEl, options.dragClass, true); // Set proper drop events if (fallback) { ignoreNextClick = true; _this._loopId = setInterval(_this._emulateDragOver, 50); } else { // Undo what was set in _prepareDragStart before drag started off(document, 'mouseup', _this._onDrop); off(document, 'touchend', _this._onDrop); off(document, 'touchcancel', _this._onDrop); if (dataTransfer) { dataTransfer.effectAllowed = 'move'; options.setData && options.setData.call(_this, dataTransfer, dragEl); } on(document, 'drop', _this); // #1276 fix: css(dragEl, 'transform', 'translateZ(0)'); } awaitingDragStarted = true; _this._dragStartId = _nextTick(_this._dragStarted.bind(_this, fallback, evt)); on(document, 'selectstart', _this); moved = true; if (Safari) { css(document.body, 'user-select', 'none'); } }, // Returns true - if no further action is needed (either inserted or another condition) _onDragOver: function _onDragOver( /**Event*/ evt) { var el = this.el, target = evt.target, dragRect, targetRect, revert, options = this.options, group = options.group, activeSortable = Sortable.active, isOwner = activeGroup === group, canSort = options.sort, fromSortable = putSortable || activeSortable, vertical, _this = this, completedFired = false; if (_silent) return; function dragOverEvent(name, extra) { pluginEvent(name, _this, _objectSpread({ evt: evt, isOwner: isOwner, axis: vertical ? 'vertical' : 'horizontal', revert: revert, dragRect: dragRect, targetRect: targetRect, canSort: canSort, fromSortable: fromSortable, target: target, completed: completed, onMove: function onMove(target, after) { return _onMove(rootEl, el, dragEl, dragRect, target, getRect(target), evt, after); }, changed: changed }, extra)); } // Capture animation state function capture() { dragOverEvent('dragOverAnimationCapture'); _this.captureAnimationState(); if (_this !== fromSortable) { fromSortable.captureAnimationState(); } } // Return invocation when dragEl is inserted (or completed) function completed(insertion) { dragOverEvent('dragOverCompleted', { insertion: insertion }); if (insertion) { // Clones must be hidden before folding animation to capture dragRectAbsolute properly if (isOwner) { activeSortable._hideClone(); } else { activeSortable._showClone(_this); } if (_this !== fromSortable) { // Set ghost class to new sortable's ghost class toggleClass(dragEl, putSortable ? putSortable.options.ghostClass : activeSortable.options.ghostClass, false); toggleClass(dragEl, options.ghostClass, true); } if (putSortable !== _this && _this !== Sortable.active) { putSortable = _this; } else if (_this === Sortable.active && putSortable) { putSortable = null; } // Animation if (fromSortable === _this) { _this._ignoreWhileAnimating = target; } _this.animateAll(function () { dragOverEvent('dragOverAnimationComplete'); _this._ignoreWhileAnimating = null; }); if (_this !== fromSortable) { fromSortable.animateAll(); fromSortable._ignoreWhileAnimating = null; } } // Null lastTarget if it is not inside a previously swapped element if (target === dragEl && !dragEl.animated || target === el && !target.animated) { lastTarget = null; } // no bubbling and not fallback if (!options.dragoverBubble && !evt.rootEl && target !== document) { dragEl.parentNode[expando]._isOutsideThisEl(evt.target); // Do not detect for empty insert if already inserted !insertion && nearestEmptyInsertDetectEvent(evt); } !options.dragoverBubble && evt.stopPropagation && evt.stopPropagation(); return completedFired = true; } // Call when dragEl has been inserted function changed() { newIndex = index(dragEl); newDraggableIndex = index(dragEl, options.draggable); _dispatchEvent({ sortable: _this, name: 'change', toEl: el, newIndex: newIndex, newDraggableIndex: newDraggableIndex, originalEvent: evt }); } if (evt.preventDefault !== void 0) { evt.cancelable && evt.preventDefault(); } target = closest(target, options.draggable, el, true); dragOverEvent('dragOver'); if (Sortable.eventCanceled) return completedFired; if (dragEl.contains(evt.target) || target.animated && target.animatingX && target.animatingY || _this._ignoreWhileAnimating === target) { return completed(false); } ignoreNextClick = false; if (activeSortable && !options.disabled && (isOwner ? canSort || (revert = !rootEl.contains(dragEl)) // Reverting item into the original list : putSortable === this || (this.lastPutMode = activeGroup.checkPull(this, activeSortable, dragEl, evt)) && group.checkPut(this, activeSortable, dragEl, evt))) { vertical = this._getDirection(evt, target) === 'vertical'; dragRect = getRect(dragEl); dragOverEvent('dragOverValid'); if (Sortable.eventCanceled) return completedFired; if (revert) { parentEl = rootEl; // actualization capture(); this._hideClone(); dragOverEvent('revert'); if (!Sortable.eventCanceled) { if (nextEl) { rootEl.insertBefore(dragEl, nextEl); } else { rootEl.appendChild(dragEl); } } return completed(true); } var elLastChild = lastChild(el, options.draggable); if (!elLastChild || _ghostIsLast(evt, vertical, this) && !elLastChild.animated) { // If already at end of list: Do not insert if (elLastChild === dragEl) { return completed(false); } // assign target only if condition is true if (elLastChild && el === evt.target) { target = elLastChild; } if (target) { targetRect = getRect(target); } if (_onMove(rootEl, el, dragEl, dragRect, target, targetRect, evt, !!target) !== false) { capture(); el.appendChild(dragEl); parentEl = el; // actualization changed(); return completed(true); } } else if (target.parentNode === el) { targetRect = getRect(target); var direction = 0, targetBeforeFirstSwap, differentLevel = dragEl.parentNode !== el, differentRowCol = !_dragElInRowColumn(dragEl.animated && dragEl.toRect || dragRect, target.animated && target.toRect || targetRect, vertical), side1 = vertical ? 'top' : 'left', scrolledPastTop = isScrolledPast(target, 'top', 'top') || isScrolledPast(dragEl, 'top', 'top'), scrollBefore = scrolledPastTop ? scrolledPastTop.scrollTop : void 0; if (lastTarget !== target) { targetBeforeFirstSwap = targetRect[side1]; pastFirstInvertThresh = false; isCircumstantialInvert = !differentRowCol && options.invertSwap || differentLevel; } direction = _getSwapDirection(evt, target, targetRect, vertical, differentRowCol ? 1 : options.swapThreshold, options.invertedSwapThreshold == null ? options.swapThreshold : options.invertedSwapThreshold, isCircumstantialInvert, lastTarget === target); var sibling; if (direction !== 0) { // Check if target is beside dragEl in respective direction (ignoring hidden elements) var dragIndex = index(dragEl); do { dragIndex -= direction; sibling = parentEl.children[dragIndex]; } while (sibling && (css(sibling, 'display') === 'none' || sibling === ghostEl)); } // If dragEl is already beside target: Do not insert if (direction === 0 || sibling === target) { return completed(false); } lastTarget = target; lastDirection = direction; var nextSibling = target.nextElementSibling, after = false; after = direction === 1; var moveVector = _onMove(rootEl, el, dragEl, dragRect, target, targetRect, evt, after); if (moveVector !== false) { if (moveVector === 1 || moveVector === -1) { after = moveVector === 1; } _silent = true; setTimeout(_unsilent, 30); capture(); if (after && !nextSibling) { el.appendChild(dragEl); } else { target.parentNode.insertBefore(dragEl, after ? nextSibling : target); } // Undo chrome's scroll adjustment (has no effect on other browsers) if (scrolledPastTop) { scrollBy(scrolledPastTop, 0, scrollBefore - scrolledPastTop.scrollTop); } parentEl = dragEl.parentNode; // actualization // must be done before animation if (targetBeforeFirstSwap !== undefined && !isCircumstantialInvert) { targetMoveDistance = Math.abs(targetBeforeFirstSwap - getRect(target)[side1]); } changed(); return completed(true); } } if (el.contains(dragEl)) { return completed(false); } } return false; }, _ignoreWhileAnimating: null, _offMoveEvents: function _offMoveEvents() { off(document, 'mousemove', this._onTouchMove); off(document, 'touchmove', this._onTouchMove); off(document, 'pointermove', this._onTouchMove); off(document, 'dragover', nearestEmptyInsertDetectEvent); off(document, 'mousemove', nearestEmptyInsertDetectEvent); off(document, 'touchmove', nearestEmptyInsertDetectEvent); }, _offUpEvents: function _offUpEvents() { var ownerDocument = this.el.ownerDocument; off(ownerDocument, 'mouseup', this._onDrop); off(ownerDocument, 'touchend', this._onDrop); off(ownerDocument, 'pointerup', this._onDrop); off(ownerDocument, 'touchcancel', this._onDrop); off(document, 'selectstart', this); }, _onDrop: function _onDrop( /**Event*/ evt) { var el = this.el, options = this.options; // Get the index of the dragged element within its parent newIndex = index(dragEl); newDraggableIndex = index(dragEl, options.draggable); pluginEvent('drop', this, { evt: evt }); parentEl = dragEl && dragEl.parentNode; // Get again after plugin event newIndex = index(dragEl); newDraggableIndex = index(dragEl, options.draggable); if (Sortable.eventCanceled) { this._nulling(); return; } awaitingDragStarted = false; isCircumstantialInvert = false; pastFirstInvertThresh = false; clearInterval(this._loopId); clearTimeout(this._dragStartTimer); _cancelNextTick(this.cloneId); _cancelNextTick(this._dragStartId); // Unbind events if (this.nativeDraggable) { off(document, 'drop', this); off(el, 'dragstart', this._onDragStart); } this._offMoveEvents(); this._offUpEvents(); if (Safari) { css(document.body, 'user-select', ''); } css(dragEl, 'transform', ''); if (evt) { if (moved) { evt.cancelable && evt.preventDefault(); !options.dropBubble && evt.stopPropagation(); } ghostEl && ghostEl.parentNode && ghostEl.parentNode.removeChild(ghostEl); if (rootEl === parentEl || putSortable && putSortable.lastPutMode !== 'clone') { // Remove clone(s) cloneEl && cloneEl.parentNode && cloneEl.parentNode.removeChild(cloneEl); } if (dragEl) { if (this.nativeDraggable) { off(dragEl, 'dragend', this); } _disableDraggable(dragEl); dragEl.style['will-change'] = ''; // Remove classes // ghostClass is added in dragStarted if (moved && !awaitingDragStarted) { toggleClass(dragEl, putSortable ? putSortable.options.ghostClass : this.options.ghostClass, false); } toggleClass(dragEl, this.options.chosenClass, false); // Drag stop event _dispatchEvent({ sortable: this, name: 'unchoose', toEl: parentEl, newIndex: null, newDraggableIndex: null, originalEvent: evt }); if (rootEl !== parentEl) { if (newIndex >= 0) { // Add event _dispatchEvent({ rootEl: parentEl, name: 'add', toEl: parentEl, fromEl: rootEl, originalEvent: evt }); // Remove event _dispatchEvent({ sortable: this, name: 'remove', toEl: parentEl, originalEvent: evt }); // drag from one list and drop into another _dispatchEvent({ rootEl: parentEl, name: 'sort', toEl: parentEl, fromEl: rootEl, originalEvent: evt }); _dispatchEvent({ sortable: this, name: 'sort', toEl: parentEl, originalEvent: evt }); } putSortable && putSortable.save(); } else { if (newIndex !== oldIndex) { if (newIndex >= 0) { // drag & drop within the same list _dispatchEvent({ sortable: this, name: 'update', toEl: parentEl, originalEvent: evt }); _dispatchEvent({ sortable: this, name: 'sort', toEl: parentEl, originalEvent: evt }); } } } if (Sortable.active) { /* jshint eqnull:true */ if (newIndex == null || newIndex === -1) { newIndex = oldIndex; newDraggableIndex = oldDraggableIndex; } _dispatchEvent({ sortable: this, name: 'end', toEl: parentEl, originalEvent: evt }); // Save sorting this.save(); } } } this._nulling(); }, _nulling: function _nulling() { pluginEvent('nulling', this); rootEl = dragEl = parentEl = ghostEl = nextEl = cloneEl = lastDownEl = cloneHidden = tapEvt = touchEvt = moved = newIndex = newDraggableIndex = oldIndex = oldDraggableIndex = lastTarget = lastDirection = putSortable = activeGroup = Sortable.dragged = Sortable.ghost = Sortable.clone = Sortable.active = null; savedInputChecked.forEach(function (el) { el.checked = true; }); savedInputChecked.length = lastDx = lastDy = 0; }, handleEvent: function handleEvent( /**Event*/ evt) { switch (evt.type) { case 'drop': case 'dragend': this._onDrop(evt); break; case 'dragenter': case 'dragover': if (dragEl) { this._onDragOver(evt); _globalDragOver(evt); } break; case 'selectstart': evt.preventDefault(); break; } }, /** * Serializes the item into an array of string. * @returns {String[]} */ toArray: function toArray() { var order = [], el, children = this.el.children, i = 0, n = children.length, options = this.options; for (; i < n; i++) { el = children[i]; if (closest(el, options.draggable, this.el, false)) { order.push(el.getAttribute(options.dataIdAttr) || _generateId(el)); } } return order; }, /** * Sorts the elements according to the array. * @param {String[]} order order of the items */ sort: function sort(order) { var items = {}, rootEl = this.el; this.toArray().forEach(function (id, i) { var el = rootEl.children[i]; if (closest(el, this.options.draggable, rootEl, false)) { items[id] = el; } }, this); order.forEach(function (id) { if (items[id]) { rootEl.removeChild(items[id]); rootEl.appendChild(items[id]); } }); }, /** * Save the current sorting */ save: function save() { var store = this.options.store; store && store.set && store.set(this); }, /** * For each element in the set, get the first element that matches the selector by testing the element itself and traversing up through its ancestors in the DOM tree. * @param {HTMLElement} el * @param {String} [selector] default: `options.draggable` * @returns {HTMLElement|null} */ closest: function closest$1(el, selector) { return closest(el, selector || this.options.draggable, this.el, false); }, /** * Set/get option * @param {string} name * @param {*} [value] * @returns {*} */ option: function option(name, value) { var options = this.options; if (value === void 0) { return options[name]; } else { var modifiedValue = PluginManager.modifyOption(this, name, value); if (typeof modifiedValue !== 'undefined') { options[name] = modifiedValue; } else { options[name] = value; } if (name === 'group') { _prepareGroup(options); } } }, /** * Destroy */ destroy: function destroy() { pluginEvent('destroy', this); var el = this.el; el[expando] = null; off(el, 'mousedown', this._onTapStart); off(el, 'touchstart', this._onTapStart); off(el, 'pointerdown', this._onTapStart); if (this.nativeDraggable) { off(el, 'dragover', this); off(el, 'dragenter', this); } // Remove draggable attributes Array.prototype.forEach.call(el.querySelectorAll('[draggable]'), function (el) { el.removeAttribute('draggable'); }); this._onDrop(); this._disableDelayedDragEvents(); sortables.splice(sortables.indexOf(this.el), 1); this.el = el = null; }, _hideClone: function _hideClone() { if (!cloneHidden) { pluginEvent('hideClone', this); if (Sortable.eventCanceled) return; css(cloneEl, 'display', 'none'); if (this.options.removeCloneOnHide && cloneEl.parentNode) { cloneEl.parentNode.removeChild(cloneEl); } cloneHidden = true; } }, _showClone: function _showClone(putSortable) { if (putSortable.lastPutMode !== 'clone') { this._hideClone(); return; } if (cloneHidden) { pluginEvent('showClone', this); if (Sortable.eventCanceled) return; // show clone at dragEl or original position if (rootEl.contains(dragEl) && !this.options.group.revertClone) { rootEl.insertBefore(cloneEl, dragEl); } else if (nextEl) { rootEl.insertBefore(cloneEl, nextEl); } else { rootEl.appendChild(cloneEl); } if (this.options.group.revertClone) { this.animate(dragEl, cloneEl); } css(cloneEl, 'display', ''); cloneHidden = false; } } }; function _globalDragOver( /**Event*/ evt) { if (evt.dataTransfer) { evt.dataTransfer.dropEffect = 'move'; } evt.cancelable && evt.preventDefault(); } function _onMove(fromEl, toEl, dragEl, dragRect, targetEl, targetRect, originalEvent, willInsertAfter) { var evt, sortable = fromEl[expando], onMoveFn = sortable.options.onMove, retVal; // Support for new CustomEvent feature if (window.CustomEvent && !IE11OrLess && !Edge) { evt = new CustomEvent('move', { bubbles: true, cancelable: true }); } else { evt = document.createEvent('Event'); evt.initEvent('move', true, true); } evt.to = toEl; evt.from = fromEl; evt.dragged = dragEl; evt.draggedRect = dragRect; evt.related = targetEl || toEl; evt.relatedRect = targetRect || getRect(toEl); evt.willInsertAfter = willInsertAfter; evt.originalEvent = originalEvent; fromEl.dispatchEvent(evt); if (onMoveFn) { retVal = onMoveFn.call(sortable, evt, originalEvent); } return retVal; } function _disableDraggable(el) { el.draggable = false; } function _unsilent() { _silent = false; } function _ghostIsLast(evt, vertical, sortable) { var rect = getRect(lastChild(sortable.el, sortable.options.draggable)); var spacer = 10; return vertical ? evt.clientX > rect.right + spacer || evt.clientX <= rect.right && evt.clientY > rect.bottom && evt.clientX >= rect.left : evt.clientX > rect.right && evt.clientY > rect.top || evt.clientX <= rect.right && evt.clientY > rect.bottom + spacer; } function _getSwapDirection(evt, target, targetRect, vertical, swapThreshold, invertedSwapThreshold, invertSwap, isLastTarget) { var mouseOnAxis = vertical ? evt.clientY : evt.clientX, targetLength = vertical ? targetRect.height : targetRect.width, targetS1 = vertical ? targetRect.top : targetRect.left, targetS2 = vertical ? targetRect.bottom : targetRect.right, invert = false; if (!invertSwap) { // Never invert or create dragEl shadow when target movemenet causes mouse to move past the end of regular swapThreshold if (isLastTarget && targetMoveDistance < targetLength * swapThreshold) { // multiplied only by swapThreshold because mouse will already be inside target by (1 - threshold) * targetLength / 2 // check if past first invert threshold on side opposite of lastDirection if (!pastFirstInvertThresh && (lastDirection === 1 ? mouseOnAxis > targetS1 + targetLength * invertedSwapThreshold / 2 : mouseOnAxis < targetS2 - targetLength * invertedSwapThreshold / 2)) { // past first invert threshold, do not restrict inverted threshold to dragEl shadow pastFirstInvertThresh = true; } if (!pastFirstInvertThresh) { // dragEl shadow (target move distance shadow) if (lastDirection === 1 ? mouseOnAxis < targetS1 + targetMoveDistance // over dragEl shadow : mouseOnAxis > targetS2 - targetMoveDistance) { return -lastDirection; } } else { invert = true; } } else { // Regular if (mouseOnAxis > targetS1 + targetLength * (1 - swapThreshold) / 2 && mouseOnAxis < targetS2 - targetLength * (1 - swapThreshold) / 2) { return _getInsertDirection(target); } } } invert = invert || invertSwap; if (invert) { // Invert of regular if (mouseOnAxis < targetS1 + targetLength * invertedSwapThreshold / 2 || mouseOnAxis > targetS2 - targetLength * invertedSwapThreshold / 2) { return mouseOnAxis > targetS1 + targetLength / 2 ? 1 : -1; } } return 0; } /** * Gets the direction dragEl must be swapped relative to target in order to make it * seem that dragEl has been "inserted" into that element's position * @param {HTMLElement} target The target whose position dragEl is being inserted at * @return {Number} Direction dragEl must be swapped */ function _getInsertDirection(target) { if (index(dragEl) < index(target)) { return 1; } else { return -1; } } /** * Generate id * @param {HTMLElement} el * @returns {String} * @private */ function _generateId(el) { var str = el.tagName + el.className + el.src + el.href + el.textContent, i = str.length, sum = 0; while (i--) { sum += str.charCodeAt(i); } return sum.toString(36); } function _saveInputCheckedState(root) { savedInputChecked.length = 0; var inputs = root.getElementsByTagName('input'); var idx = inputs.length; while (idx--) { var el = inputs[idx]; el.checked && savedInputChecked.push(el); } } function _nextTick(fn) { return setTimeout(fn, 0); } function _cancelNextTick(id) { return clearTimeout(id); } // Fixed #973: if (documentExists) { on(document, 'touchmove', function (evt) { if ((Sortable.active || awaitingDragStarted) && evt.cancelable) { evt.preventDefault(); } }); } // Export utils Sortable.utils = { on: on, off: off, css: css, find: find, is: function is(el, selector) { return !!closest(el, selector, el, false); }, extend: extend, throttle: throttle, closest: closest, toggleClass: toggleClass, clone: clone, index: index, nextTick: _nextTick, cancelNextTick: _cancelNextTick, detectDirection: _detectDirection, getChild: getChild }; /** * Get the Sortable instance of an element * @param {HTMLElement} element The element * @return {Sortable|undefined} The instance of Sortable */ Sortable.get = function (element) { return element[expando]; }; /** * Mount a plugin to Sortable * @param {...SortablePlugin|SortablePlugin[]} plugins Plugins being mounted */ Sortable.mount = function () { for (var _len = arguments.length, plugins = new Array(_len), _key = 0; _key < _len; _key++) { plugins[_key] = arguments[_key]; } if (plugins[0].constructor === Array) plugins = plugins[0]; plugins.forEach(function (plugin) { if (!plugin.prototype || !plugin.prototype.constructor) { throw "Sortable: Mounted plugin must be a constructor function, not ".concat({}.toString.call(plugin)); } if (plugin.utils) Sortable.utils = _objectSpread({}, Sortable.utils, plugin.utils); PluginManager.mount(plugin); }); }; /** * Create sortable instance * @param {HTMLElement} el * @param {Object} [options] */ Sortable.create = function (el, options) { return new Sortable(el, options); }; // Export Sortable.version = version; var autoScrolls = [], scrollEl, scrollRootEl, scrolling = false, lastAutoScrollX, lastAutoScrollY, touchEvt$1, pointerElemChangedInterval; function AutoScrollPlugin() { function AutoScroll() { this.defaults = { scroll: true, scrollSensitivity: 30, scrollSpeed: 10, bubbleScroll: true }; // Bind all private methods for (var fn in this) { if (fn.charAt(0) === '_' && typeof this[fn] === 'function') { this[fn] = this[fn].bind(this); } } } AutoScroll.prototype = { dragStarted: function dragStarted(_ref) { var originalEvent = _ref.originalEvent; if (this.sortable.nativeDraggable) { on(document, 'dragover', this._handleAutoScroll); } else { if (this.options.supportPointer) { on(document, 'pointermove', this._handleFallbackAutoScroll); } else if (originalEvent.touches) { on(document, 'touchmove', this._handleFallbackAutoScroll); } else { on(document, 'mousemove', this._handleFallbackAutoScroll); } } }, dragOverCompleted: function dragOverCompleted(_ref2) { var originalEvent = _ref2.originalEvent; // For when bubbling is canceled and using fallback (fallback 'touchmove' always reached) if (!this.options.dragOverBubble && !originalEvent.rootEl) { this._handleAutoScroll(originalEvent); } }, drop: function drop() { if (this.sortable.nativeDraggable) { off(document, 'dragover', this._handleAutoScroll); } else { off(document, 'pointermove', this._handleFallbackAutoScroll); off(document, 'touchmove', this._handleFallbackAutoScroll); off(document, 'mousemove', this._handleFallbackAutoScroll); } clearPointerElemChangedInterval(); clearAutoScrolls(); cancelThrottle(); }, nulling: function nulling() { touchEvt$1 = scrollRootEl = scrollEl = scrolling = pointerElemChangedInterval = lastAutoScrollX = lastAutoScrollY = null; autoScrolls.length = 0; }, _handleFallbackAutoScroll: function _handleFallbackAutoScroll(evt) { this._handleAutoScroll(evt, true); }, _handleAutoScroll: function _handleAutoScroll(evt, fallback) { var _this = this; var x = (evt.touches ? evt.touches[0] : evt).clientX, y = (evt.touches ? evt.touches[0] : evt).clientY, elem = document.elementFromPoint(x, y); touchEvt$1 = evt; // IE does not seem to have native autoscroll, // Edge's autoscroll seems too conditional, // MACOS Safari does not have autoscroll, // Firefox and Chrome are good if (fallback || Edge || IE11OrLess || Safari) { autoScroll(evt, this.options, elem, fallback); // Listener for pointer element change var ogElemScroller = getParentAutoScrollElement(elem, true); if (scrolling && (!pointerElemChangedInterval || x !== lastAutoScrollX || y !== lastAutoScrollY)) { pointerElemChangedInterval && clearPointerElemChangedInterval(); // Detect for pointer elem change, emulating native DnD behaviour pointerElemChangedInterval = setInterval(function () { var newElem = getParentAutoScrollElement(document.elementFromPoint(x, y), true); if (newElem !== ogElemScroller) { ogElemScroller = newElem; clearAutoScrolls(); } autoScroll(evt, _this.options, newElem, fallback); }, 10); lastAutoScrollX = x; lastAutoScrollY = y; } } else { // if DnD is enabled (and browser has good autoscrolling), first autoscroll will already scroll, so get parent autoscroll of first autoscroll if (!this.options.bubbleScroll || getParentAutoScrollElement(elem, true) === getWindowScrollingElement()) { clearAutoScrolls(); return; } autoScroll(evt, this.options, getParentAutoScrollElement(elem, false), false); } } }; return _extends(AutoScroll, { pluginName: 'scroll', initializeByDefault: true }); } function clearAutoScrolls() { autoScrolls.forEach(function (autoScroll) { clearInterval(autoScroll.pid); }); autoScrolls = []; } function clearPointerElemChangedInterval() { clearInterval(pointerElemChangedInterval); } var autoScroll = throttle(function (evt, options, rootEl, isFallback) { // Bug: https://bugzilla.mozilla.org/show_bug.cgi?id=505521 if (!options.scroll) return; var x = (evt.touches ? evt.touches[0] : evt).clientX, y = (evt.touches ? evt.touches[0] : evt).clientY, sens = options.scrollSensitivity, speed = options.scrollSpeed, winScroller = getWindowScrollingElement(); var scrollThisInstance = false, scrollCustomFn; // New scroll root, set scrollEl if (scrollRootEl !== rootEl) { scrollRootEl = rootEl; clearAutoScrolls(); scrollEl = options.scroll; scrollCustomFn = options.scrollFn; if (scrollEl === true) { scrollEl = getParentAutoScrollElement(rootEl, true); } } var layersOut = 0; var currentParent = scrollEl; do { var el = currentParent, rect = getRect(el), top = rect.top, bottom = rect.bottom, left = rect.left, right = rect.right, width = rect.width, height = rect.height, canScrollX = void 0, canScrollY = void 0, scrollWidth = el.scrollWidth, scrollHeight = el.scrollHeight, elCSS = css(el), scrollPosX = el.scrollLeft, scrollPosY = el.scrollTop; if (el === winScroller) { canScrollX = width < scrollWidth && (elCSS.overflowX === 'auto' || elCSS.overflowX === 'scroll' || elCSS.overflowX === 'visible'); canScrollY = height < scrollHeight && (elCSS.overflowY === 'auto' || elCSS.overflowY === 'scroll' || elCSS.overflowY === 'visible'); } else { canScrollX = width < scrollWidth && (elCSS.overflowX === 'auto' || elCSS.overflowX === 'scroll'); canScrollY = height < scrollHeight && (elCSS.overflowY === 'auto' || elCSS.overflowY === 'scroll'); } var vx = canScrollX && (Math.abs(right - x) <= sens && scrollPosX + width < scrollWidth) - (Math.abs(left - x) <= sens && !!scrollPosX); var vy = canScrollY && (Math.abs(bottom - y) <= sens && scrollPosY + height < scrollHeight) - (Math.abs(top - y) <= sens && !!scrollPosY); if (!autoScrolls[layersOut]) { for (var i = 0; i <= layersOut; i++) { if (!autoScrolls[i]) { autoScrolls[i] = {}; } } } if (autoScrolls[layersOut].vx != vx || autoScrolls[layersOut].vy != vy || autoScrolls[layersOut].el !== el) { autoScrolls[layersOut].el = el; autoScrolls[layersOut].vx = vx; autoScrolls[layersOut].vy = vy; clearInterval(autoScrolls[layersOut].pid); if (vx != 0 || vy != 0) { scrollThisInstance = true; /* jshint loopfunc:true */ autoScrolls[layersOut].pid = setInterval(function () { // emulate drag over during autoscroll (fallback), emulating native DnD behaviour if (isFallback && this.layer === 0) { Sortable.active._onTouchMove(touchEvt$1); // To move ghost if it is positioned absolutely } var scrollOffsetY = autoScrolls[this.layer].vy ? autoScrolls[this.layer].vy * speed : 0; var scrollOffsetX = autoScrolls[this.layer].vx ? autoScrolls[this.layer].vx * speed : 0; if (typeof scrollCustomFn === 'function') { if (scrollCustomFn.call(Sortable.dragged.parentNode[expando], scrollOffsetX, scrollOffsetY, evt, touchEvt$1, autoScrolls[this.layer].el) !== 'continue') { return; } } scrollBy(autoScrolls[this.layer].el, scrollOffsetX, scrollOffsetY); }.bind({ layer: layersOut }), 24); } } layersOut++; } while (options.bubbleScroll && currentParent !== winScroller && (currentParent = getParentAutoScrollElement(currentParent, false))); scrolling = scrollThisInstance; // in case another function catches scrolling as false in between when it is not }, 30); var drop = function drop(_ref) { var originalEvent = _ref.originalEvent, putSortable = _ref.putSortable, dragEl = _ref.dragEl, activeSortable = _ref.activeSortable, dispatchSortableEvent = _ref.dispatchSortableEvent, hideGhostForTarget = _ref.hideGhostForTarget, unhideGhostForTarget = _ref.unhideGhostForTarget; if (!originalEvent) return; var toSortable = putSortable || activeSortable; hideGhostForTarget(); var touch = originalEvent.changedTouches && originalEvent.changedTouches.length ? originalEvent.changedTouches[0] : originalEvent; var target = document.elementFromPoint(touch.clientX, touch.clientY); unhideGhostForTarget(); if (toSortable && !toSortable.el.contains(target)) { dispatchSortableEvent('spill'); this.onSpill({ dragEl: dragEl, putSortable: putSortable }); } }; function Revert() {} Revert.prototype = { startIndex: null, dragStart: function dragStart(_ref2) { var oldDraggableIndex = _ref2.oldDraggableIndex; this.startIndex = oldDraggableIndex; }, onSpill: function onSpill(_ref3) { var dragEl = _ref3.dragEl, putSortable = _ref3.putSortable; this.sortable.captureAnimationState(); if (putSortable) { putSortable.captureAnimationState(); } var nextSibling = getChild(this.sortable.el, this.startIndex, this.options); if (nextSibling) { this.sortable.el.insertBefore(dragEl, nextSibling); } else { this.sortable.el.appendChild(dragEl); } this.sortable.animateAll(); if (putSortable) { putSortable.animateAll(); } }, drop: drop }; _extends(Revert, { pluginName: 'revertOnSpill' }); function Remove() {} Remove.prototype = { onSpill: function onSpill(_ref4) { var dragEl = _ref4.dragEl, putSortable = _ref4.putSortable; var parentSortable = putSortable || this.sortable; parentSortable.captureAnimationState(); dragEl.parentNode && dragEl.parentNode.removeChild(dragEl); parentSortable.animateAll(); }, drop: drop }; _extends(Remove, { pluginName: 'removeOnSpill' }); Sortable.mount(new AutoScrollPlugin()); Sortable.mount(Remove, Revert); var vuedraggable_umd = createCommonjsModule(function (module, exports) { (function webpackUniversalModuleDefinition(root, factory) { module.exports = factory(Sortable); })((typeof self !== 'undefined' ? self : commonjsGlobal), function(__WEBPACK_EXTERNAL_MODULE_a352__) { return /******/ (function(modules) { // webpackBootstrap /******/ // The module cache /******/ var installedModules = {}; /******/ /******/ // The require function /******/ function __webpack_require__(moduleId) { /******/ /******/ // Check if module is in cache /******/ if(installedModules[moduleId]) { /******/ return installedModules[moduleId].exports; /******/ } /******/ // Create a new module (and put it into the cache) /******/ var module = installedModules[moduleId] = { /******/ i: moduleId, /******/ l: false, /******/ exports: {} /******/ }; /******/ /******/ // Execute the module function /******/ modules[moduleId].call(module.exports, module, module.exports, __webpack_require__); /******/ /******/ // Flag the module as loaded /******/ module.l = true; /******/ /******/ // Return the exports of the module /******/ return module.exports; /******/ } /******/ /******/ /******/ // expose the modules object (__webpack_modules__) /******/ __webpack_require__.m = modules; /******/ /******/ // expose the module cache /******/ __webpack_require__.c = installedModules; /******/ /******/ // define getter function for harmony exports /******/ __webpack_require__.d = function(exports, name, getter) { /******/ if(!__webpack_require__.o(exports, name)) { /******/ Object.defineProperty(exports, name, { enumerable: true, get: getter }); /******/ } /******/ }; /******/ /******/ // define __esModule on exports /******/ __webpack_require__.r = function(exports) { /******/ if(typeof Symbol !== 'undefined' && Symbol.toStringTag) { /******/ Object.defineProperty(exports, Symbol.toStringTag, { value: 'Module' }); /******/ } /******/ Object.defineProperty(exports, '__esModule', { value: true }); /******/ }; /******/ /******/ // create a fake namespace object /******/ // mode & 1: value is a module id, require it /******/ // mode & 2: merge all properties of value into the ns /******/ // mode & 4: return value when already ns object /******/ // mode & 8|1: behave like require /******/ __webpack_require__.t = function(value, mode) { /******/ if(mode & 1) value = __webpack_require__(value); /******/ if(mode & 8) return value; /******/ if((mode & 4) && typeof value === 'object' && value && value.__esModule) return value; /******/ var ns = Object.create(null); /******/ __webpack_require__.r(ns); /******/ Object.defineProperty(ns, 'default', { enumerable: true, value: value }); /******/ if(mode & 2 && typeof value != 'string') for(var key in value) __webpack_require__.d(ns, key, function(key) { return value[key]; }.bind(null, key)); /******/ return ns; /******/ }; /******/ /******/ // getDefaultExport function for compatibility with non-harmony modules /******/ __webpack_require__.n = function(module) { /******/ var getter = module && module.__esModule ? /******/ function getDefault() { return module['default']; } : /******/ function getModuleExports() { return module; }; /******/ __webpack_require__.d(getter, 'a', getter); /******/ return getter; /******/ }; /******/ /******/ // Object.prototype.hasOwnProperty.call /******/ __webpack_require__.o = function(object, property) { return Object.prototype.hasOwnProperty.call(object, property); }; /******/ /******/ // __webpack_public_path__ /******/ __webpack_require__.p = ""; /******/ /******/ /******/ // Load entry module and return exports /******/ return __webpack_require__(__webpack_require__.s = "fb15"); /******/ }) /************************************************************************/ /******/ ({ /***/ "01f9": /***/ (function(module, exports, __webpack_require__) { var LIBRARY = __webpack_require__("2d00"); var $export = __webpack_require__("5ca1"); var redefine = __webpack_require__("2aba"); var hide = __webpack_require__("32e9"); var Iterators = __webpack_require__("84f2"); var $iterCreate = __webpack_require__("41a0"); var setToStringTag = __webpack_require__("7f20"); var getPrototypeOf = __webpack_require__("38fd"); var ITERATOR = __webpack_require__("2b4c")('iterator'); var BUGGY = !([].keys && 'next' in [].keys()); // Safari has buggy iterators w/o `next` var FF_ITERATOR = '@@iterator'; var KEYS = 'keys'; var VALUES = 'values'; var returnThis = function () { return this; }; module.exports = function (Base, NAME, Constructor, next, DEFAULT, IS_SET, FORCED) { $iterCreate(Constructor, NAME, next); var getMethod = function (kind) { if (!BUGGY && kind in proto) return proto[kind]; switch (kind) { case KEYS: return function keys() { return new Constructor(this, kind); }; case VALUES: return function values() { return new Constructor(this, kind); }; } return function entries() { return new Constructor(this, kind); }; }; var TAG = NAME + ' Iterator'; var DEF_VALUES = DEFAULT == VALUES; var VALUES_BUG = false; var proto = Base.prototype; var $native = proto[ITERATOR] || proto[FF_ITERATOR] || DEFAULT && proto[DEFAULT]; var $default = $native || getMethod(DEFAULT); var $entries = DEFAULT ? !DEF_VALUES ? $default : getMethod('entries') : undefined; var $anyNative = NAME == 'Array' ? proto.entries || $native : $native; var methods, key, IteratorPrototype; // Fix native if ($anyNative) { IteratorPrototype = getPrototypeOf($anyNative.call(new Base())); if (IteratorPrototype !== Object.prototype && IteratorPrototype.next) { // Set @@toStringTag to native iterators setToStringTag(IteratorPrototype, TAG, true); // fix for some old engines if (!LIBRARY && typeof IteratorPrototype[ITERATOR] != 'function') hide(IteratorPrototype, ITERATOR, returnThis); } } // fix Array#{values, @@iterator}.name in V8 / FF if (DEF_VALUES && $native && $native.name !== VALUES) { VALUES_BUG = true; $default = function values() { return $native.call(this); }; } // Define iterator if ((!LIBRARY || FORCED) && (BUGGY || VALUES_BUG || !proto[ITERATOR])) { hide(proto, ITERATOR, $default); } // Plug for library Iterators[NAME] = $default; Iterators[TAG] = returnThis; if (DEFAULT) { methods = { values: DEF_VALUES ? $default : getMethod(VALUES), keys: IS_SET ? $default : getMethod(KEYS), entries: $entries }; if (FORCED) for (key in methods) { if (!(key in proto)) redefine(proto, key, methods[key]); } else $export($export.P + $export.F * (BUGGY || VALUES_BUG), NAME, methods); } return methods; }; /***/ }), /***/ "02f4": /***/ (function(module, exports, __webpack_require__) { var toInteger = __webpack_require__("4588"); var defined = __webpack_require__("be13"); // true -> String#at // false -> String#codePointAt module.exports = function (TO_STRING) { return function (that, pos) { var s = String(defined(that)); var i = toInteger(pos); var l = s.length; var a, b; if (i < 0 || i >= l) return TO_STRING ? '' : undefined; a = s.charCodeAt(i); return a < 0xd800 || a > 0xdbff || i + 1 === l || (b = s.charCodeAt(i + 1)) < 0xdc00 || b > 0xdfff ? TO_STRING ? s.charAt(i) : a : TO_STRING ? s.slice(i, i + 2) : (a - 0xd800 << 10) + (b - 0xdc00) + 0x10000; }; }; /***/ }), /***/ "0390": /***/ (function(module, exports, __webpack_require__) { var at = __webpack_require__("02f4")(true); // `AdvanceStringIndex` abstract operation // https://tc39.github.io/ecma262/#sec-advancestringindex module.exports = function (S, index, unicode) { return index + (unicode ? at(S, index).length : 1); }; /***/ }), /***/ "0bfb": /***/ (function(module, exports, __webpack_require__) { // 21.2.5.3 get RegExp.prototype.flags var anObject = __webpack_require__("cb7c"); module.exports = function () { var that = anObject(this); var result = ''; if (that.global) result += 'g'; if (that.ignoreCase) result += 'i'; if (that.multiline) result += 'm'; if (that.unicode) result += 'u'; if (that.sticky) result += 'y'; return result; }; /***/ }), /***/ "0d58": /***/ (function(module, exports, __webpack_require__) { // 19.1.2.14 / 15.2.3.14 Object.keys(O) var $keys = __webpack_require__("ce10"); var enumBugKeys = __webpack_require__("e11e"); module.exports = Object.keys || function keys(O) { return $keys(O, enumBugKeys); }; /***/ }), /***/ "1495": /***/ (function(module, exports, __webpack_require__) { var dP = __webpack_require__("86cc"); var anObject = __webpack_require__("cb7c"); var getKeys = __webpack_require__("0d58"); module.exports = __webpack_require__("9e1e") ? Object.defineProperties : function defineProperties(O, Properties) { anObject(O); var keys = getKeys(Properties); var length = keys.length; var i = 0; var P; while (length > i) dP.f(O, P = keys[i++], Properties[P]); return O; }; /***/ }), /***/ "214f": /***/ (function(module, exports, __webpack_require__) { __webpack_require__("b0c5"); var redefine = __webpack_require__("2aba"); var hide = __webpack_require__("32e9"); var fails = __webpack_require__("79e5"); var defined = __webpack_require__("be13"); var wks = __webpack_require__("2b4c"); var regexpExec = __webpack_require__("520a"); var SPECIES = wks('species'); var REPLACE_SUPPORTS_NAMED_GROUPS = !fails(function () { // #replace needs built-in support for named groups. // #match works fine because it just return the exec results, even if it has // a "grops" property. var re = /./; re.exec = function () { var result = []; result.groups = { a: '7' }; return result; }; return ''.replace(re, '$<a>') !== '7'; }); var SPLIT_WORKS_WITH_OVERWRITTEN_EXEC = (function () { // Chrome 51 has a buggy "split" implementation when RegExp#exec !== nativeExec var re = /(?:)/; var originalExec = re.exec; re.exec = function () { return originalExec.apply(this, arguments); }; var result = 'ab'.split(re); return result.length === 2 && result[0] === 'a' && result[1] === 'b'; })(); module.exports = function (KEY, length, exec) { var SYMBOL = wks(KEY); var DELEGATES_TO_SYMBOL = !fails(function () { // String methods call symbol-named RegEp methods var O = {}; O[SYMBOL] = function () { return 7; }; return ''[KEY](O) != 7; }); var DELEGATES_TO_EXEC = DELEGATES_TO_SYMBOL ? !fails(function () { // Symbol-named RegExp methods call .exec var execCalled = false; var re = /a/; re.exec = function () { execCalled = true; return null; }; if (KEY === 'split') { // RegExp[@@split] doesn't call the regex's exec method, but first creates // a new one. We need to return the patched regex when creating the new one. re.constructor = {}; re.constructor[SPECIES] = function () { return re; }; } re[SYMBOL](''); return !execCalled; }) : undefined; if ( !DELEGATES_TO_SYMBOL || !DELEGATES_TO_EXEC || (KEY === 'replace' && !REPLACE_SUPPORTS_NAMED_GROUPS) || (KEY === 'split' && !SPLIT_WORKS_WITH_OVERWRITTEN_EXEC) ) { var nativeRegExpMethod = /./[SYMBOL]; var fns = exec( defined, SYMBOL, ''[KEY], function maybeCallNative(nativeMethod, regexp, str, arg2, forceStringMethod) { if (regexp.exec === regexpExec) { if (DELEGATES_TO_SYMBOL && !forceStringMethod) { // The native String method already delegates to @@method (this // polyfilled function), leasing to infinite recursion. // We avoid it by directly calling the native @@method method. return { done: true, value: nativeRegExpMethod.call(regexp, str, arg2) }; } return { done: true, value: nativeMethod.call(str, regexp, arg2) }; } return { done: false }; } ); var strfn = fns[0]; var rxfn = fns[1]; redefine(String.prototype, KEY, strfn); hide(RegExp.prototype, SYMBOL, length == 2 // 21.2.5.8 RegExp.prototype[@@replace](string, replaceValue) // 21.2.5.11 RegExp.prototype[@@split](string, limit) ? function (string, arg) { return rxfn.call(string, this, arg); } // 21.2.5.6 RegExp.prototype[@@match](string) // 21.2.5.9 RegExp.prototype[@@search](string) : function (string) { return rxfn.call(string, this); } ); } }; /***/ }), /***/ "230e": /***/ (function(module, exports, __webpack_require__) { var isObject = __webpack_require__("d3f4"); var document = __webpack_require__("7726").document; // typeof document.createElement is 'object' in old IE var is = isObject(document) && isObject(document.createElement); module.exports = function (it) { return is ? document.createElement(it) : {}; }; /***/ }), /***/ "23c6": /***/ (function(module, exports, __webpack_require__) { // getting tag from 19.1.3.6 Object.prototype.toString() var cof = __webpack_require__("2d95"); var TAG = __webpack_require__("2b4c")('toStringTag'); // ES3 wrong here var ARG = cof(function () { return arguments; }()) == 'Arguments'; // fallback for IE11 Script Access Denied error var tryGet = function (it, key) { try { return it[key]; } catch (e) { /* empty */ } }; module.exports = function (it) { var O, T, B; return it === undefined ? 'Undefined' : it === null ? 'Null' // @@toStringTag case : typeof (T = tryGet(O = Object(it), TAG)) == 'string' ? T // builtinTag case : ARG ? cof(O) // ES3 arguments fallback : (B = cof(O)) == 'Object' && typeof O.callee == 'function' ? 'Arguments' : B; }; /***/ }), /***/ "2621": /***/ (function(module, exports) { exports.f = Object.getOwnPropertySymbols; /***/ }), /***/ "2aba": /***/ (function(module, exports, __webpack_require__) { var global = __webpack_require__("7726"); var hide = __webpack_require__("32e9"); var has = __webpack_require__("69a8"); var SRC = __webpack_require__("ca5a")('src'); var $toString = __webpack_require__("fa5b"); var TO_STRING = 'toString'; var TPL = ('' + $toString).split(TO_STRING); __webpack_require__("8378").inspectSource = function (it) { return $toString.call(it); }; (module.exports = function (O, key, val, safe) { var isFunction = typeof val == 'function'; if (isFunction) has(val, 'name') || hide(val, 'name', key); if (O[key] === val) return; if (isFunction) has(val, SRC) || hide(val, SRC, O[key] ? '' + O[key] : TPL.join(String(key))); if (O === global) { O[key] = val; } else if (!safe) { delete O[key]; hide(O, key, val); } else if (O[key]) { O[key] = val; } else { hide(O, key, val); } // add fake Function#toString for correct work wrapped methods / constructors with methods like LoDash isNative })(Function.prototype, TO_STRING, function toString() { return typeof this == 'function' && this[SRC] || $toString.call(this); }); /***/ }), /***/ "2aeb": /***/ (function(module, exports, __webpack_require__) { // 19.1.2.2 / 15.2.3.5 Object.create(O [, Properties]) var anObject = __webpack_require__("cb7c"); var dPs = __webpack_require__("1495"); var enumBugKeys = __webpack_require__("e11e"); var IE_PROTO = __webpack_require__("613b")('IE_PROTO'); var Empty = function () { /* empty */ }; var PROTOTYPE = 'prototype'; // Create object with fake `null` prototype: use iframe Object with cleared prototype var createDict = function () { // Thrash, waste and sodomy: IE GC bug var iframe = __webpack_require__("230e")('iframe'); var i = enumBugKeys.length; var lt = '<'; var gt = '>'; var iframeDocument; iframe.style.display = 'none'; __webpack_require__("fab2").appendChild(iframe); iframe.src = 'javascript:'; // eslint-disable-line no-script-url // createDict = iframe.contentWindow.Object; // html.removeChild(iframe); iframeDocument = iframe.contentWindow.document; iframeDocument.open(); iframeDocument.write(lt + 'script' + gt + 'document.F=Object' + lt + '/script' + gt); iframeDocument.close(); createDict = iframeDocument.F; while (i--) delete createDict[PROTOTYPE][enumBugKeys[i]]; return createDict(); }; module.exports = Object.create || function create(O, Properties) { var result; if (O !== null) { Empty[PROTOTYPE] = anObject(O); result = new Empty(); Empty[PROTOTYPE] = null; // add "__proto__" for Object.getPrototypeOf polyfill result[IE_PROTO] = O; } else result = createDict(); return Properties === undefined ? result : dPs(result, Properties); }; /***/ }), /***/ "2b4c": /***/ (function(module, exports, __webpack_require__) { var store = __webpack_require__("5537")('wks'); var uid = __webpack_require__("ca5a"); var Symbol = __webpack_require__("7726").Symbol; var USE_SYMBOL = typeof Symbol == 'function'; var $exports = module.exports = function (name) { return store[name] || (store[name] = USE_SYMBOL && Symbol[name] || (USE_SYMBOL ? Symbol : uid)('Symbol.' + name)); }; $exports.store = store; /***/ }), /***/ "2d00": /***/ (function(module, exports) { module.exports = false; /***/ }), /***/ "2d95": /***/ (function(module, exports) { var toString = {}.toString; module.exports = function (it) { return toString.call(it).slice(8, -1); }; /***/ }), /***/ "2fdb": /***/ (function(module, exports, __webpack_require__) { // 21.1.3.7 String.prototype.includes(searchString, position = 0) var $export = __webpack_require__("5ca1"); var context = __webpack_require__("d2c8"); var INCLUDES = 'includes'; $export($export.P + $export.F * __webpack_require__("5147")(INCLUDES), 'String', { includes: function includes(searchString /* , position = 0 */) { return !!~context(this, searchString, INCLUDES) .indexOf(searchString, arguments.length > 1 ? arguments[1] : undefined); } }); /***/ }), /***/ "32e9": /***/ (function(module, exports, __webpack_require__) { var dP = __webpack_require__("86cc"); var createDesc = __webpack_require__("4630"); module.exports = __webpack_require__("9e1e") ? function (object, key, value) { return dP.f(object, key, createDesc(1, value)); } : function (object, key, value) { object[key] = value; return object; }; /***/ }), /***/ "38fd": /***/ (function(module, exports, __webpack_require__) { // 19.1.2.9 / 15.2.3.2 Object.getPrototypeOf(O) var has = __webpack_require__("69a8"); var toObject = __webpack_require__("4bf8"); var IE_PROTO = __webpack_require__("613b")('IE_PROTO'); var ObjectProto = Object.prototype; module.exports = Object.getPrototypeOf || function (O) { O = toObject(O); if (has(O, IE_PROTO)) return O[IE_PROTO]; if (typeof O.constructor == 'function' && O instanceof O.constructor) { return O.constructor.prototype; } return O instanceof Object ? ObjectProto : null; }; /***/ }), /***/ "41a0": /***/ (function(module, exports, __webpack_require__) { var create = __webpack_require__("2aeb"); var descriptor = __webpack_require__("4630"); var setToStringTag = __webpack_require__("7f20"); var IteratorPrototype = {}; // 25.1.2.1.1 %IteratorPrototype%[@@iterator]() __webpack_require__("32e9")(IteratorPrototype, __webpack_require__("2b4c")('iterator'), function () { return this; }); module.exports = function (Constructor, NAME, next) { Constructor.prototype = create(IteratorPrototype, { next: descriptor(1, next) }); setToStringTag(Constructor, NAME + ' Iterator'); }; /***/ }), /***/ "456d": /***/ (function(module, exports, __webpack_require__) { // 19.1.2.14 Object.keys(O) var toObject = __webpack_require__("4bf8"); var $keys = __webpack_require__("0d58"); __webpack_require__("5eda")('keys', function () { return function keys(it) { return $keys(toObject(it)); }; }); /***/ }), /***/ "4588": /***/ (function(module, exports) { // 7.1.4 ToInteger var ceil = Math.ceil; var floor = Math.floor; module.exports = function (it) { return isNaN(it = +it) ? 0 : (it > 0 ? floor : ceil)(it); }; /***/ }), /***/ "4630": /***/ (function(module, exports) { module.exports = function (bitmap, value) { return { enumerable: !(bitmap & 1), configurable: !(bitmap & 2), writable: !(bitmap & 4), value: value }; }; /***/ }), /***/ "4bf8": /***/ (function(module, exports, __webpack_require__) { // 7.1.13 ToObject(argument) var defined = __webpack_require__("be13"); module.exports = function (it) { return Object(defined(it)); }; /***/ }), /***/ "5147": /***/ (function(module, exports, __webpack_require__) { var MATCH = __webpack_require__("2b4c")('match'); module.exports = function (KEY) { var re = /./; try { '/./'[KEY](re); } catch (e) { try { re[MATCH] = false; return !'/./'[KEY](re); } catch (f) { /* empty */ } } return true; }; /***/ }), /***/ "520a": /***/ (function(module, exports, __webpack_require__) { var regexpFlags = __webpack_require__("0bfb"); var nativeExec = RegExp.prototype.exec; // This always refers to the native implementation, because the // String#replace polyfill uses ./fix-regexp-well-known-symbol-logic.js, // which loads this file before patching the method. var nativeReplace = String.prototype.replace; var patchedExec = nativeExec; var LAST_INDEX = 'lastIndex'; var UPDATES_LAST_INDEX_WRONG = (function () { var re1 = /a/, re2 = /b*/g; nativeExec.call(re1, 'a'); nativeExec.call(re2, 'a'); return re1[LAST_INDEX] !== 0 || re2[LAST_INDEX] !== 0; })(); // nonparticipating capturing group, copied from es5-shim's String#split patch. var NPCG_INCLUDED = /()??/.exec('')[1] !== undefined; var PATCH = UPDATES_LAST_INDEX_WRONG || NPCG_INCLUDED; if (PATCH) { patchedExec = function exec(str) { var re = this; var lastIndex, reCopy, match, i; if (NPCG_INCLUDED) { reCopy = new RegExp('^' + re.source + '$(?!\\s)', regexpFlags.call(re)); } if (UPDATES_LAST_INDEX_WRONG) lastIndex = re[LAST_INDEX]; match = nativeExec.call(re, str); if (UPDATES_LAST_INDEX_WRONG && match) { re[LAST_INDEX] = re.global ? match.index + match[0].length : lastIndex; } if (NPCG_INCLUDED && match && match.length > 1) { // Fix browsers whose `exec` methods don't consistently return `undefined` // for NPCG, like IE8. NOTE: This doesn' work for /(.?)?/ // eslint-disable-next-line no-loop-func nativeReplace.call(match[0], reCopy, function () { for (i = 1; i < arguments.length - 2; i++) { if (arguments[i] === undefined) match[i] = undefined; } }); } return match; }; } module.exports = patchedExec; /***/ }), /***/ "52a7": /***/ (function(module, exports) { exports.f = {}.propertyIsEnumerable; /***/ }), /***/ "5537": /***/ (function(module, exports, __webpack_require__) { var core = __webpack_require__("8378"); var global = __webpack_require__("7726"); var SHARED = '__core-js_shared__'; var store = global[SHARED] || (global[SHARED] = {}); (module.exports = function (key, value) { return store[key] || (store[key] = value !== undefined ? value : {}); })('versions', []).push({ version: core.version, mode: __webpack_require__("2d00") ? 'pure' : 'global', copyright: '© 2019 Denis Pushkarev (zloirock.ru)' }); /***/ }), /***/ "5ca1": /***/ (function(module, exports, __webpack_require__) { var global = __webpack_require__("7726"); var core = __webpack_require__("8378"); var hide = __webpack_require__("32e9"); var redefine = __webpack_require__("2aba"); var ctx = __webpack_require__("9b43"); var PROTOTYPE = 'prototype'; var $export = function (type, name, source) { var IS_FORCED = type & $export.F; var IS_GLOBAL = type & $export.G; var IS_STATIC = type & $export.S; var IS_PROTO = type & $export.P; var IS_BIND = type & $export.B; var target = IS_GLOBAL ? global : IS_STATIC ? global[name] || (global[name] = {}) : (global[name] || {})[PROTOTYPE]; var exports = IS_GLOBAL ? core : core[name] || (core[name] = {}); var expProto = exports[PROTOTYPE] || (exports[PROTOTYPE] = {}); var key, own, out, exp; if (IS_GLOBAL) source = name; for (key in source) { // contains in native own = !IS_FORCED && target && target[key] !== undefined; // export native or passed out = (own ? target : source)[key]; // bind timers to global for call from export context exp = IS_BIND && own ? ctx(out, global) : IS_PROTO && typeof out == 'function' ? ctx(Function.call, out) : out; // extend global if (target) redefine(target, key, out, type & $export.U); // export if (exports[key] != out) hide(exports, key, exp); if (IS_PROTO && expProto[key] != out) expProto[key] = out; } }; global.core = core; // type bitmap $export.F = 1; // forced $export.G = 2; // global $export.S = 4; // static $export.P = 8; // proto $export.B = 16; // bind $export.W = 32; // wrap $export.U = 64; // safe $export.R = 128; // real proto method for `library` module.exports = $export; /***/ }), /***/ "5eda": /***/ (function(module, exports, __webpack_require__) { // most Object methods by ES6 should accept primitives var $export = __webpack_require__("5ca1"); var core = __webpack_require__("8378"); var fails = __webpack_require__("79e5"); module.exports = function (KEY, exec) { var fn = (core.Object || {})[KEY] || Object[KEY]; var exp = {}; exp[KEY] = exec(fn); $export($export.S + $export.F * fails(function () { fn(1); }), 'Object', exp); }; /***/ }), /***/ "5f1b": /***/ (function(module, exports, __webpack_require__) { var classof = __webpack_require__("23c6"); var builtinExec = RegExp.prototype.exec; // `RegExpExec` abstract operation // https://tc39.github.io/ecma262/#sec-regexpexec module.exports = function (R, S) { var exec = R.exec; if (typeof exec === 'function') { var result = exec.call(R, S); if (typeof result !== 'object') { throw new TypeError('RegExp exec method returned something other than an Object or null'); } return result; } if (classof(R) !== 'RegExp') { throw new TypeError('RegExp#exec called on incompatible receiver'); } return builtinExec.call(R, S); }; /***/ }), /***/ "613b": /***/ (function(module, exports, __webpack_require__) { var shared = __webpack_require__("5537")('keys'); var uid = __webpack_require__("ca5a"); module.exports = function (key) { return shared[key] || (shared[key] = uid(key)); }; /***/ }), /***/ "626a": /***/ (function(module, exports, __webpack_require__) { // fallback for non-array-like ES3 and non-enumerable old V8 strings var cof = __webpack_require__("2d95"); // eslint-disable-next-line no-prototype-builtins module.exports = Object('z').propertyIsEnumerable(0) ? Object : function (it) { return cof(it) == 'String' ? it.split('') : Object(it); }; /***/ }), /***/ "6762": /***/ (function(module, exports, __webpack_require__) { // https://github.com/tc39/Array.prototype.includes var $export = __webpack_require__("5ca1"); var $includes = __webpack_require__("c366")(true); $export($export.P, 'Array', { includes: function includes(el /* , fromIndex = 0 */) { return $includes(this, el, arguments.length > 1 ? arguments[1] : undefined); } }); __webpack_require__("9c6c")('includes'); /***/ }), /***/ "6821": /***/ (function(module, exports, __webpack_require__) { // to indexed object, toObject with fallback for non-array-like ES3 strings var IObject = __webpack_require__("626a"); var defined = __webpack_require__("be13"); module.exports = function (it) { return IObject(defined(it)); }; /***/ }), /***/ "69a8": /***/ (function(module, exports) { var hasOwnProperty = {}.hasOwnProperty; module.exports = function (it, key) { return hasOwnProperty.call(it, key); }; /***/ }), /***/ "6a99": /***/ (function(module, exports, __webpack_require__) { // 7.1.1 ToPrimitive(input [, PreferredType]) var isObject = __webpack_require__("d3f4"); // instead of the ES6 spec version, we didn't implement @@toPrimitive case // and the second argument - flag - preferred type is a string module.exports = function (it, S) { if (!isObject(it)) return it; var fn, val; if (S && typeof (fn = it.toString) == 'function' && !isObject(val = fn.call(it))) return val; if (typeof (fn = it.valueOf) == 'function' && !isObject(val = fn.call(it))) return val; if (!S && typeof (fn = it.toString) == 'function' && !isObject(val = fn.call(it))) return val; throw TypeError("Can't convert object to primitive value"); }; /***/ }), /***/ "7333": /***/ (function(module, exports, __webpack_require__) { // 19.1.2.1 Object.assign(target, source, ...) var getKeys = __webpack_require__("0d58"); var gOPS = __webpack_require__("2621"); var pIE = __webpack_require__("52a7"); var toObject = __webpack_require__("4bf8"); var IObject = __webpack_require__("626a"); var $assign = Object.assign; // should work with symbols and should have deterministic property order (V8 bug) module.exports = !$assign || __webpack_require__("79e5")(function () { var A = {}; var B = {}; // eslint-disable-next-line no-undef var S = Symbol(); var K = 'abcdefghijklmnopqrst'; A[S] = 7; K.split('').forEach(function (k) { B[k] = k; }); return $assign({}, A)[S] != 7 || Object.keys($assign({}, B)).join('') != K; }) ? function assign(target, source) { // eslint-disable-line no-unused-vars var T = toObject(target); var aLen = arguments.length; var index = 1; var getSymbols = gOPS.f; var isEnum = pIE.f; while (aLen > index) { var S = IObject(arguments[index++]); var keys = getSymbols ? getKeys(S).concat(getSymbols(S)) : getKeys(S); var length = keys.length; var j = 0; var key; while (length > j) if (isEnum.call(S, key = keys[j++])) T[key] = S[key]; } return T; } : $assign; /***/ }), /***/ "7726": /***/ (function(module, exports) { // https://github.com/zloirock/core-js/issues/86#issuecomment-115759028 var global = module.exports = typeof window != 'undefined' && window.Math == Math ? window : typeof self != 'undefined' && self.Math == Math ? self // eslint-disable-next-line no-new-func : Function('return this')(); if (typeof __g == 'number') __g = global; // eslint-disable-line no-undef /***/ }), /***/ "77f1": /***/ (function(module, exports, __webpack_require__) { var toInteger = __webpack_require__("4588"); var max = Math.max; var min = Math.min; module.exports = function (index, length) { index = toInteger(index); return index < 0 ? max(index + length, 0) : min(index, length); }; /***/ }), /***/ "79e5": /***/ (function(module, exports) { module.exports = function (exec) { try { return !!exec(); } catch (e) { return true; } }; /***/ }), /***/ "7f20": /***/ (function(module, exports, __webpack_require__) { var def = __webpack_require__("86cc").f; var has = __webpack_require__("69a8"); var TAG = __webpack_require__("2b4c")('toStringTag'); module.exports = function (it, tag, stat) { if (it && !has(it = stat ? it : it.prototype, TAG)) def(it, TAG, { configurable: true, value: tag }); }; /***/ }), /***/ "8378": /***/ (function(module, exports) { var core = module.exports = { version: '2.6.5' }; if (typeof __e == 'number') __e = core; // eslint-disable-line no-undef /***/ }), /***/ "84f2": /***/ (function(module, exports) { module.exports = {}; /***/ }), /***/ "86cc": /***/ (function(module, exports, __webpack_require__) { var anObject = __webpack_require__("cb7c"); var IE8_DOM_DEFINE = __webpack_require__("c69a"); var toPrimitive = __webpack_require__("6a99"); var dP = Object.defineProperty; exports.f = __webpack_require__("9e1e") ? Object.defineProperty : function defineProperty(O, P, Attributes) { anObject(O); P = toPrimitive(P, true); anObject(Attributes); if (IE8_DOM_DEFINE) try { return dP(O, P, Attributes); } catch (e) { /* empty */ } if ('get' in Attributes || 'set' in Attributes) throw TypeError('Accessors not supported!'); if ('value' in Attributes) O[P] = Attributes.value; return O; }; /***/ }), /***/ "9b43": /***/ (function(module, exports, __webpack_require__) { // optional / simple context binding var aFunction = __webpack_require__("d8e8"); module.exports = function (fn, that, length) { aFunction(fn); if (that === undefined) return fn; switch (length) { case 1: return function (a) { return fn.call(that, a); }; case 2: return function (a, b) { return fn.call(that, a, b); }; case 3: return function (a, b, c) { return fn.call(that, a, b, c); }; } return function (/* ...args */) { return fn.apply(that, arguments); }; }; /***/ }), /***/ "9c6c": /***/ (function(module, exports, __webpack_require__) { // 22.1.3.31 Array.prototype[@@unscopables] var UNSCOPABLES = __webpack_require__("2b4c")('unscopables'); var ArrayProto = Array.prototype; if (ArrayProto[UNSCOPABLES] == undefined) __webpack_require__("32e9")(ArrayProto, UNSCOPABLES, {}); module.exports = function (key) { ArrayProto[UNSCOPABLES][key] = true; }; /***/ }), /***/ "9def": /***/ (function(module, exports, __webpack_require__) { // 7.1.15 ToLength var toInteger = __webpack_require__("4588"); var min = Math.min; module.exports = function (it) { return it > 0 ? min(toInteger(it), 0x1fffffffffffff) : 0; // pow(2, 53) - 1 == 9007199254740991 }; /***/ }), /***/ "9e1e": /***/ (function(module, exports, __webpack_require__) { // Thank's IE8 for his funny defineProperty module.exports = !__webpack_require__("79e5")(function () { return Object.defineProperty({}, 'a', { get: function () { return 7; } }).a != 7; }); /***/ }), /***/ "a352": /***/ (function(module, exports) { module.exports = __WEBPACK_EXTERNAL_MODULE_a352__; /***/ }), /***/ "a481": /***/ (function(module, exports, __webpack_require__) { var anObject = __webpack_require__("cb7c"); var toObject = __webpack_require__("4bf8"); var toLength = __webpack_require__("9def"); var toInteger = __webpack_require__("4588"); var advanceStringIndex = __webpack_require__("0390"); var regExpExec = __webpack_require__("5f1b"); var max = Math.max; var min = Math.min; var floor = Math.floor; var SUBSTITUTION_SYMBOLS = /\$([$&`']|\d\d?|<[^>]*>)/g; var SUBSTITUTION_SYMBOLS_NO_NAMED = /\$([$&`']|\d\d?)/g; var maybeToString = function (it) { return it === undefined ? it : String(it); }; // @@replace logic __webpack_require__("214f")('replace', 2, function (defined, REPLACE, $replace, maybeCallNative) { return [ // `String.prototype.replace` method // https://tc39.github.io/ecma262/#sec-string.prototype.replace function replace(searchValue, replaceValue) { var O = defined(this); var fn = searchValue == undefined ? undefined : searchValue[REPLACE]; return fn !== undefined ? fn.call(searchValue, O, replaceValue) : $replace.call(String(O), searchValue, replaceValue); }, // `RegExp.prototype[@@replace]` method // https://tc39.github.io/ecma262/#sec-regexp.prototype-@@replace function (regexp, replaceValue) { var res = maybeCallNative($replace, regexp, this, replaceValue); if (res.done) return res.value; var rx = anObject(regexp); var S = String(this); var functionalReplace = typeof replaceValue === 'function'; if (!functionalReplace) replaceValue = String(replaceValue); var global = rx.global; if (global) { var fullUnicode = rx.unicode; rx.lastIndex = 0; } var results = []; while (true) { var result = regExpExec(rx, S); if (result === null) break; results.push(result); if (!global) break; var matchStr = String(result[0]); if (matchStr === '') rx.lastIndex = advanceStringIndex(S, toLength(rx.lastIndex), fullUnicode); } var accumulatedResult = ''; var nextSourcePosition = 0; for (var i = 0; i < results.length; i++) { result = results[i]; var matched = String(result[0]); var position = max(min(toInteger(result.index), S.length), 0); var captures = []; // NOTE: This is equivalent to // captures = result.slice(1).map(maybeToString) // but for some reason `nativeSlice.call(result, 1, result.length)` (called in // the slice polyfill when slicing native arrays) "doesn't work" in safari 9 and // causes a crash (https://pastebin.com/N21QzeQA) when trying to debug it. for (var j = 1; j < result.length; j++) captures.push(maybeToString(result[j])); var namedCaptures = result.groups; if (functionalReplace) { var replacerArgs = [matched].concat(captures, position, S); if (namedCaptures !== undefined) replacerArgs.push(namedCaptures); var replacement = String(replaceValue.apply(undefined, replacerArgs)); } else { replacement = getSubstitution(matched, S, position, captures, namedCaptures, replaceValue); } if (position >= nextSourcePosition) { accumulatedResult += S.slice(nextSourcePosition, position) + replacement; nextSourcePosition = position + matched.length; } } return accumulatedResult + S.slice(nextSourcePosition); } ]; // https://tc39.github.io/ecma262/#sec-getsubstitution function getSubstitution(matched, str, position, captures, namedCaptures, replacement) { var tailPos = position + matched.length; var m = captures.length; var symbols = SUBSTITUTION_SYMBOLS_NO_NAMED; if (namedCaptures !== undefined) { namedCaptures = toObject(namedCaptures); symbols = SUBSTITUTION_SYMBOLS; } return $replace.call(replacement, symbols, function (match, ch) { var capture; switch (ch.charAt(0)) { case '$': return '$'; case '&': return matched; case '`': return str.slice(0, position); case "'": return str.slice(tailPos); case '<': capture = namedCaptures[ch.slice(1, -1)]; break; default: // \d\d? var n = +ch; if (n === 0) return match; if (n > m) { var f = floor(n / 10); if (f === 0) return match; if (f <= m) return captures[f - 1] === undefined ? ch.charAt(1) : captures[f - 1] + ch.charAt(1); return match; } capture = captures[n - 1]; } return capture === undefined ? '' : capture; }); } }); /***/ }), /***/ "aae3": /***/ (function(module, exports, __webpack_require__) { // 7.2.8 IsRegExp(argument) var isObject = __webpack_require__("d3f4"); var cof = __webpack_require__("2d95"); var MATCH = __webpack_require__("2b4c")('match'); module.exports = function (it) { var isRegExp; return isObject(it) && ((isRegExp = it[MATCH]) !== undefined ? !!isRegExp : cof(it) == 'RegExp'); }; /***/ }), /***/ "ac6a": /***/ (function(module, exports, __webpack_require__) { var $iterators = __webpack_require__("cadf"); var getKeys = __webpack_require__("0d58"); var redefine = __webpack_require__("2aba"); var global = __webpack_require__("7726"); var hide = __webpack_require__("32e9"); var Iterators = __webpack_require__("84f2"); var wks = __webpack_require__("2b4c"); var ITERATOR = wks('iterator'); var TO_STRING_TAG = wks('toStringTag'); var ArrayValues = Iterators.Array; var DOMIterables = { CSSRuleList: true, // TODO: Not spec compliant, should be false. CSSStyleDeclaration: false, CSSValueList: false, ClientRectList: false, DOMRectList: false, DOMStringList: false, DOMTokenList: true, DataTransferItemList: false, FileList: false, HTMLAllCollection: false, HTMLCollection: false, HTMLFormElement: false, HTMLSelectElement: false, MediaList: true, // TODO: Not spec compliant, should be false. MimeTypeArray: false, NamedNodeMap: false, NodeList: true, PaintRequestList: false, Plugin: false, PluginArray: false, SVGLengthList: false, SVGNumberList: false, SVGPathSegList: false, SVGPointList: false, SVGStringList: false, SVGTransformList: false, SourceBufferList: false, StyleSheetList: true, // TODO: Not spec compliant, should be false. TextTrackCueList: false, TextTrackList: false, TouchList: false }; for (var collections = getKeys(DOMIterables), i = 0; i < collections.length; i++) { var NAME = collections[i]; var explicit = DOMIterables[NAME]; var Collection = global[NAME]; var proto = Collection && Collection.prototype; var key; if (proto) { if (!proto[ITERATOR]) hide(proto, ITERATOR, ArrayValues); if (!proto[TO_STRING_TAG]) hide(proto, TO_STRING_TAG, NAME); Iterators[NAME] = ArrayValues; if (explicit) for (key in $iterators) if (!proto[key]) redefine(proto, key, $iterators[key], true); } } /***/ }), /***/ "b0c5": /***/ (function(module, exports, __webpack_require__) { var regexpExec = __webpack_require__("520a"); __webpack_require__("5ca1")({ target: 'RegExp', proto: true, forced: regexpExec !== /./.exec }, { exec: regexpExec }); /***/ }), /***/ "be13": /***/ (function(module, exports) { // 7.2.1 RequireObjectCoercible(argument) module.exports = function (it) { if (it == undefined) throw TypeError("Can't call method on " + it); return it; }; /***/ }), /***/ "c366": /***/ (function(module, exports, __webpack_require__) { // false -> Array#indexOf // true -> Array#includes var toIObject = __webpack_require__("6821"); var toLength = __webpack_require__("9def"); var toAbsoluteIndex = __webpack_require__("77f1"); module.exports = function (IS_INCLUDES) { return function ($this, el, fromIndex) { var O = toIObject($this); var length = toLength(O.length); var index = toAbsoluteIndex(fromIndex, length); var value; // Array#includes uses SameValueZero equality algorithm // eslint-disable-next-line no-self-compare if (IS_INCLUDES && el != el) while (length > index) { value = O[index++]; // eslint-disable-next-line no-self-compare if (value != value) return true; // Array#indexOf ignores holes, Array#includes - not } else for (;length > index; index++) if (IS_INCLUDES || index in O) { if (O[index] === el) return IS_INCLUDES || index || 0; } return !IS_INCLUDES && -1; }; }; /***/ }), /***/ "c649": /***/ (function(module, __webpack_exports__, __webpack_require__) { /* WEBPACK VAR INJECTION */(function(global) {/* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "c", function() { return insertNodeAt; }); /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "a", function() { return camelize; }); /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "b", function() { return console; }); /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "d", function() { return removeNode; }); /* harmony import */ __webpack_require__("a481"); function getConsole() { if (typeof window !== "undefined") { return window.console; } return global.console; } var console = getConsole(); function cached(fn) { var cache = Object.create(null); return function cachedFn(str) { var hit = cache[str]; return hit || (cache[str] = fn(str)); }; } var regex = /-(\w)/g; var camelize = cached(function (str) { return str.replace(regex, function (_, c) { return c ? c.toUpperCase() : ""; }); }); function removeNode(node) { if (node.parentElement !== null) { node.parentElement.removeChild(node); } } function insertNodeAt(fatherNode, node, position) { var refNode = position === 0 ? fatherNode.children[0] : fatherNode.children[position - 1].nextSibling; fatherNode.insertBefore(node, refNode); } /* WEBPACK VAR INJECTION */}.call(this, __webpack_require__("c8ba"))); /***/ }), /***/ "c69a": /***/ (function(module, exports, __webpack_require__) { module.exports = !__webpack_require__("9e1e") && !__webpack_require__("79e5")(function () { return Object.defineProperty(__webpack_require__("230e")('div'), 'a', { get: function () { return 7; } }).a != 7; }); /***/ }), /***/ "c8ba": /***/ (function(module, exports) { var g; // This works in non-strict mode g = (function() { return this; })(); try { // This works if eval is allowed (see CSP) g = g || new Function("return this")(); } catch (e) { // This works if the window reference is available if (typeof window === "object") g = window; } // g can still be undefined, but nothing to do about it... // We return undefined, instead of nothing here, so it's // easier to handle this case. if(!global) { ...} module.exports = g; /***/ }), /***/ "ca5a": /***/ (function(module, exports) { var id = 0; var px = Math.random(); module.exports = function (key) { return 'Symbol('.concat(key === undefined ? '' : key, ')_', (++id + px).toString(36)); }; /***/ }), /***/ "cadf": /***/ (function(module, exports, __webpack_require__) { var addToUnscopables = __webpack_require__("9c6c"); var step = __webpack_require__("d53b"); var Iterators = __webpack_require__("84f2"); var toIObject = __webpack_require__("6821"); // 22.1.3.4 Array.prototype.entries() // 22.1.3.13 Array.prototype.keys() // 22.1.3.29 Array.prototype.values() // 22.1.3.30 Array.prototype[@@iterator]() module.exports = __webpack_require__("01f9")(Array, 'Array', function (iterated, kind) { this._t = toIObject(iterated); // target this._i = 0; // next index this._k = kind; // kind // 22.1.5.2.1 %ArrayIteratorPrototype%.next() }, function () { var O = this._t; var kind = this._k; var index = this._i++; if (!O || index >= O.length) { this._t = undefined; return step(1); } if (kind == 'keys') return step(0, index); if (kind == 'values') return step(0, O[index]); return step(0, [index, O[index]]); }, 'values'); // argumentsList[@@iterator] is %ArrayProto_values% (9.4.4.6, 9.4.4.7) Iterators.Arguments = Iterators.Array; addToUnscopables('keys'); addToUnscopables('values'); addToUnscopables('entries'); /***/ }), /***/ "cb7c": /***/ (function(module, exports, __webpack_require__) { var isObject = __webpack_require__("d3f4"); module.exports = function (it) { if (!isObject(it)) throw TypeError(it + ' is not an object!'); return it; }; /***/ }), /***/ "ce10": /***/ (function(module, exports, __webpack_require__) { var has = __webpack_require__("69a8"); var toIObject = __webpack_require__("6821"); var arrayIndexOf = __webpack_require__("c366")(false); var IE_PROTO = __webpack_require__("613b")('IE_PROTO'); module.exports = function (object, names) { var O = toIObject(object); var i = 0; var result = []; var key; for (key in O) if (key != IE_PROTO) has(O, key) && result.push(key); // Don't enum bug & hidden keys while (names.length > i) if (has(O, key = names[i++])) { ~arrayIndexOf(result, key) || result.push(key); } return result; }; /***/ }), /***/ "d2c8": /***/ (function(module, exports, __webpack_require__) { // helper for String#{startsWith, endsWith, includes} var isRegExp = __webpack_require__("aae3"); var defined = __webpack_require__("be13"); module.exports = function (that, searchString, NAME) { if (isRegExp(searchString)) throw TypeError('String#' + NAME + " doesn't accept regex!"); return String(defined(that)); }; /***/ }), /***/ "d3f4": /***/ (function(module, exports) { module.exports = function (it) { return typeof it === 'object' ? it !== null : typeof it === 'function'; }; /***/ }), /***/ "d53b": /***/ (function(module, exports) { module.exports = function (done, value) { return { value: value, done: !!done }; }; /***/ }), /***/ "d8e8": /***/ (function(module, exports) { module.exports = function (it) { if (typeof it != 'function') throw TypeError(it + ' is not a function!'); return it; }; /***/ }), /***/ "e11e": /***/ (function(module, exports) { // IE 8- don't enum bug keys module.exports = ( 'constructor,hasOwnProperty,isPrototypeOf,propertyIsEnumerable,toLocaleString,toString,valueOf' ).split(','); /***/ }), /***/ "f559": /***/ (function(module, exports, __webpack_require__) { // 21.1.3.18 String.prototype.startsWith(searchString [, position ]) var $export = __webpack_require__("5ca1"); var toLength = __webpack_require__("9def"); var context = __webpack_require__("d2c8"); var STARTS_WITH = 'startsWith'; var $startsWith = ''[STARTS_WITH]; $export($export.P + $export.F * __webpack_require__("5147")(STARTS_WITH), 'String', { startsWith: function startsWith(searchString /* , position = 0 */) { var that = context(this, searchString, STARTS_WITH); var index = toLength(Math.min(arguments.length > 1 ? arguments[1] : undefined, that.length)); var search = String(searchString); return $startsWith ? $startsWith.call(that, search, index) : that.slice(index, index + search.length) === search; } }); /***/ }), /***/ "f6fd": /***/ (function(module, exports) { // document.currentScript polyfill by Adam Miller // MIT license (function(document){ var currentScript = "currentScript", scripts = document.getElementsByTagName('script'); // Live NodeList collection // If browser needs currentScript polyfill, add get currentScript() to the document object if (!(currentScript in document)) { Object.defineProperty(document, currentScript, { get: function(){ // IE 6-10 supports script readyState // IE 10+ support stack trace try { throw new Error(); } catch (err) { // Find the second match for the "at" string to get file src url from stack. // Specifically works with the format of stack traces in IE. var i, res = ((/.*at [^\(]*\((.*):.+:.+\)$/ig).exec(err.stack) || [false])[1]; // For all scripts on the page, if src matches or if ready state is interactive, return the script tag for(i in scripts){ if(scripts[i].src == res || scripts[i].readyState == "interactive"){ return scripts[i]; } } // If no match, return null return null; } } }); } })(document); /***/ }), /***/ "f751": /***/ (function(module, exports, __webpack_require__) { // 19.1.3.1 Object.assign(target, source) var $export = __webpack_require__("5ca1"); $export($export.S + $export.F, 'Object', { assign: __webpack_require__("7333") }); /***/ }), /***/ "fa5b": /***/ (function(module, exports, __webpack_require__) { module.exports = __webpack_require__("5537")('native-function-to-string', Function.toString); /***/ }), /***/ "fab2": /***/ (function(module, exports, __webpack_require__) { var document = __webpack_require__("7726").document; module.exports = document && document.documentElement; /***/ }), /***/ "fb15": /***/ (function(module, __webpack_exports__, __webpack_require__) { // ESM COMPAT FLAG __webpack_require__.r(__webpack_exports__); // CONCATENATED MODULE: ./node_modules/@vue/cli-service/lib/commands/build/setPublicPath.js // This file is imported into lib/wc client bundles. if (typeof window !== 'undefined') { { __webpack_require__("f6fd"); } var setPublicPath_i; if ((setPublicPath_i = window.document.currentScript) && (setPublicPath_i = setPublicPath_i.src.match(/(.+\/)[^/]+\.js(\?.*)?$/))) { __webpack_require__.p = setPublicPath_i[1]; // eslint-disable-line } } // EXTERNAL MODULE: ./node_modules/core-js/modules/es6.object.assign.js __webpack_require__("f751"); // EXTERNAL MODULE: ./node_modules/core-js/modules/es6.string.starts-with.js __webpack_require__("f559"); // EXTERNAL MODULE: ./node_modules/core-js/modules/web.dom.iterable.js __webpack_require__("ac6a"); // EXTERNAL MODULE: ./node_modules/core-js/modules/es6.array.iterator.js __webpack_require__("cadf"); // EXTERNAL MODULE: ./node_modules/core-js/modules/es6.object.keys.js __webpack_require__("456d"); // CONCATENATED MODULE: ./node_modules/@babel/runtime/helpers/esm/arrayWithHoles.js function _arrayWithHoles(arr) { if (Array.isArray(arr)) return arr; } // CONCATENATED MODULE: ./node_modules/@babel/runtime/helpers/esm/iterableToArrayLimit.js function _iterableToArrayLimit(arr, i) { if (typeof Symbol === "undefined" || !(Symbol.iterator in Object(arr))) return; var _arr = []; var _n = true; var _d = false; var _e = undefined; try { for (var _i = arr[Symbol.iterator](), _s; !(_n = (_s = _i.next()).done); _n = true) { _arr.push(_s.value); if (i && _arr.length === i) break; } } catch (err) { _d = true; _e = err; } finally { try { if (!_n && _i["return"] != null) _i["return"](); } finally { if (_d) throw _e; } } return _arr; } // CONCATENATED MODULE: ./node_modules/@babel/runtime/helpers/esm/arrayLikeToArray.js function _arrayLikeToArray(arr, len) { if (len == null || len > arr.length) len = arr.length; for (var i = 0, arr2 = new Array(len); i < len; i++) { arr2[i] = arr[i]; } return arr2; } // CONCATENATED MODULE: ./node_modules/@babel/runtime/helpers/esm/unsupportedIterableToArray.js function _unsupportedIterableToArray(o, minLen) { if (!o) return; if (typeof o === "string") return _arrayLikeToArray(o, minLen); var n = Object.prototype.toString.call(o).slice(8, -1); if (n === "Object" && o.constructor) n = o.constructor.name; if (n === "Map" || n === "Set") return Array.from(o); if (n === "Arguments" || /^(?:Ui|I)nt(?:8|16|32)(?:Clamped)?Array$/.test(n)) return _arrayLikeToArray(o, minLen); } // CONCATENATED MODULE: ./node_modules/@babel/runtime/helpers/esm/nonIterableRest.js 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."); } // CONCATENATED MODULE: ./node_modules/@babel/runtime/helpers/esm/slicedToArray.js function _slicedToArray(arr, i) { return _arrayWithHoles(arr) || _iterableToArrayLimit(arr, i) || _unsupportedIterableToArray(arr, i) || _nonIterableRest(); } // EXTERNAL MODULE: ./node_modules/core-js/modules/es7.array.includes.js __webpack_require__("6762"); // EXTERNAL MODULE: ./node_modules/core-js/modules/es6.string.includes.js __webpack_require__("2fdb"); // CONCATENATED MODULE: ./node_modules/@babel/runtime/helpers/esm/arrayWithoutHoles.js function _arrayWithoutHoles(arr) { if (Array.isArray(arr)) return _arrayLikeToArray(arr); } // CONCATENATED MODULE: ./node_modules/@babel/runtime/helpers/esm/iterableToArray.js function _iterableToArray(iter) { if (typeof Symbol !== "undefined" && Symbol.iterator in Object(iter)) return Array.from(iter); } // CONCATENATED MODULE: ./node_modules/@babel/runtime/helpers/esm/nonIterableSpread.js 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."); } // CONCATENATED MODULE: ./node_modules/@babel/runtime/helpers/esm/toConsumableArray.js function _toConsumableArray(arr) { return _arrayWithoutHoles(arr) || _iterableToArray(arr) || _unsupportedIterableToArray(arr) || _nonIterableSpread(); } // EXTERNAL MODULE: external {"commonjs":"sortablejs","commonjs2":"sortablejs","amd":"sortablejs","root":"Sortable"} var external_commonjs_sortablejs_commonjs2_sortablejs_amd_sortablejs_root_Sortable_ = __webpack_require__("a352"); var external_commonjs_sortablejs_commonjs2_sortablejs_amd_sortablejs_root_Sortable_default = /*#__PURE__*/__webpack_require__.n(external_commonjs_sortablejs_commonjs2_sortablejs_amd_sortablejs_root_Sortable_); // EXTERNAL MODULE: ./src/util/helper.js var helper = __webpack_require__("c649"); // CONCATENATED MODULE: ./src/vuedraggable.js function buildAttribute(object, propName, value) { if (value === undefined) { return object; } object = object || {}; object[propName] = value; return object; } function computeVmIndex(vnodes, element) { return vnodes.map(function (elt) { return elt.elm; }).indexOf(element); } function _computeIndexes(slots, children, isTransition, footerOffset) { if (!slots) { return []; } var elmFromNodes = slots.map(function (elt) { return elt.elm; }); var footerIndex = children.length - footerOffset; var rawIndexes = _toConsumableArray(children).map(function (elt, idx) { return idx >= footerIndex ? elmFromNodes.length : elmFromNodes.indexOf(elt); }); return isTransition ? rawIndexes.filter(function (ind) { return ind !== -1; }) : rawIndexes; } function emit(evtName, evtData) { var _this = this; this.$nextTick(function () { return _this.$emit(evtName.toLowerCase(), evtData); }); } function delegateAndEmit(evtName) { var _this2 = this; return function (evtData) { if (_this2.realList !== null) { _this2["onDrag" + evtName](evtData); } emit.call(_this2, evtName, evtData); }; } function isTransitionName(name) { return ["transition-group", "TransitionGroup"].includes(name); } function vuedraggable_isTransition(slots) { if (!slots || slots.length !== 1) { return false; } var _slots = _slicedToArray(slots, 1), componentOptions = _slots[0].componentOptions; if (!componentOptions) { return false; } return isTransitionName(componentOptions.tag); } function getSlot(slot, scopedSlot, key) { return slot[key] || (scopedSlot[key] ? scopedSlot[key]() : undefined); } function computeChildrenAndOffsets(children, slot, scopedSlot) { var headerOffset = 0; var footerOffset = 0; var header = getSlot(slot, scopedSlot, "header"); if (header) { headerOffset = header.length; children = children ? [].concat(_toConsumableArray(header), _toConsumableArray(children)) : _toConsumableArray(header); } var footer = getSlot(slot, scopedSlot, "footer"); if (footer) { footerOffset = footer.length; children = children ? [].concat(_toConsumableArray(children), _toConsumableArray(footer)) : _toConsumableArray(footer); } return { children: children, headerOffset: headerOffset, footerOffset: footerOffset }; } function getComponentAttributes($attrs, componentData) { var attributes = null; var update = function update(name, value) { attributes = buildAttribute(attributes, name, value); }; var attrs = Object.keys($attrs).filter(function (key) { return key === "id" || key.startsWith("data-"); }).reduce(function (res, key) { res[key] = $attrs[key]; return res; }, {}); update("attrs", attrs); if (!componentData) { return attributes; } var on = componentData.on, props = componentData.props, componentDataAttrs = componentData.attrs; update("on", on); update("props", props); Object.assign(attributes.attrs, componentDataAttrs); return attributes; } var eventsListened = ["Start", "Add", "Remove", "Update", "End"]; var eventsToEmit = ["Choose", "Unchoose", "Sort", "Filter", "Clone"]; var readonlyProperties = ["Move"].concat(eventsListened, eventsToEmit).map(function (evt) { return "on" + evt; }); var draggingElement = null; var props = { options: Object, list: { type: Array, required: false, default: null }, value: { type: Array, required: false, default: null }, noTransitionOnDrag: { type: Boolean, default: false }, clone: { type: Function, default: function _default(original) { return original; } }, element: { type: String, default: "div" }, tag: { type: String, default: null }, move: { type: Function, default: null }, componentData: { type: Object, required: false, default: null } }; var draggableComponent = { name: "draggable", inheritAttrs: false, props: props, data: function data() { return { transitionMode: false, noneFunctionalComponentMode: false }; }, render: function render(h) { var slots = this.$slots.default; this.transitionMode = vuedraggable_isTransition(slots); var _computeChildrenAndOf = computeChildrenAndOffsets(slots, this.$slots, this.$scopedSlots), children = _computeChildrenAndOf.children, headerOffset = _computeChildrenAndOf.headerOffset, footerOffset = _computeChildrenAndOf.footerOffset; this.headerOffset = headerOffset; this.footerOffset = footerOffset; var attributes = getComponentAttributes(this.$attrs, this.componentData); return h(this.getTag(), attributes, children); }, created: function created() { if (this.list !== null && this.value !== null) { helper["b" /* console */].error("Value and list props are mutually exclusive! Please set one or another."); } if (this.element !== "div") { helper["b" /* console */].warn("Element props is deprecated please use tag props instead. See https://github.com/SortableJS/Vue.Draggable/blob/master/documentation/migrate.md#element-props"); } if (this.options !== undefined) { helper["b" /* console */].warn("Options props is deprecated, add sortable options directly as vue.draggable item, or use v-bind. See https://github.com/SortableJS/Vue.Draggable/blob/master/documentation/migrate.md#options-props"); } }, mounted: function mounted() { var _this3 = this; this.noneFunctionalComponentMode = this.getTag().toLowerCase() !== this.$el.nodeName.toLowerCase() && !this.getIsFunctional(); if (this.noneFunctionalComponentMode && this.transitionMode) { throw new Error("Transition-group inside component is not supported. Please alter tag value or remove transition-group. Current tag value: ".concat(this.getTag())); } var optionsAdded = {}; eventsListened.forEach(function (elt) { optionsAdded["on" + elt] = delegateAndEmit.call(_this3, elt); }); eventsToEmit.forEach(function (elt) { optionsAdded["on" + elt] = emit.bind(_this3, elt); }); var attributes = Object.keys(this.$attrs).reduce(function (res, key) { res[Object(helper["a" /* camelize */])(key)] = _this3.$attrs[key]; return res; }, {}); var options = Object.assign({}, this.options, attributes, optionsAdded, { onMove: function onMove(evt, originalEvent) { return _this3.onDragMove(evt, originalEvent); } }); !("draggable" in options) && (options.draggable = ">*"); this._sortable = new external_commonjs_sortablejs_commonjs2_sortablejs_amd_sortablejs_root_Sortable_default.a(this.rootContainer, options); this.computeIndexes(); }, beforeDestroy: function beforeDestroy() { if (this._sortable !== undefined) this._sortable.destroy(); }, computed: { rootContainer: function rootContainer() { return this.transitionMode ? this.$el.children[0] : this.$el; }, realList: function realList() { return this.list ? this.list : this.value; } }, watch: { options: { handler: function handler(newOptionValue) { this.updateOptions(newOptionValue); }, deep: true }, $attrs: { handler: function handler(newOptionValue) { this.updateOptions(newOptionValue); }, deep: true }, realList: function realList() { this.computeIndexes(); } }, methods: { getIsFunctional: function getIsFunctional() { var fnOptions = this._vnode.fnOptions; return fnOptions && fnOptions.functional; }, getTag: function getTag() { return this.tag || this.element; }, updateOptions: function updateOptions(newOptionValue) { for (var property in newOptionValue) { var value = Object(helper["a" /* camelize */])(property); if (readonlyProperties.indexOf(value) === -1) { this._sortable.option(value, newOptionValue[property]); } } }, getChildrenNodes: function getChildrenNodes() { if (this.noneFunctionalComponentMode) { return this.$children[0].$slots.default; } var rawNodes = this.$slots.default; return this.transitionMode ? rawNodes[0].child.$slots.default : rawNodes; }, computeIndexes: function computeIndexes() { var _this4 = this; this.$nextTick(function () { _this4.visibleIndexes = _computeIndexes(_this4.getChildrenNodes(), _this4.rootContainer.children, _this4.transitionMode, _this4.footerOffset); }); }, getUnderlyingVm: function getUnderlyingVm(htmlElt) { var index = computeVmIndex(this.getChildrenNodes() || [], htmlElt); if (index === -1) { //Edge case during move callback: related element might be //an element different from collection return null; } var element = this.realList[index]; return { index: index, element: element }; }, getUnderlyingPotencialDraggableComponent: function getUnderlyingPotencialDraggableComponent(_ref) { var vue = _ref.__vue__; if (!vue || !vue.$options || !isTransitionName(vue.$options._componentTag)) { if (!("realList" in vue) && vue.$children.length === 1 && "realList" in vue.$children[0]) return vue.$children[0]; return vue; } return vue.$parent; }, emitChanges: function emitChanges(evt) { var _this5 = this; this.$nextTick(function () { _this5.$emit("change", evt); }); }, alterList: function alterList(onList) { if (this.list) { onList(this.list); return; } var newList = _toConsumableArray(this.value); onList(newList); this.$emit("input", newList); }, spliceList: function spliceList() { var _arguments = arguments; var spliceList = function spliceList(list) { return list.splice.apply(list, _toConsumableArray(_arguments)); }; this.alterList(spliceList); }, updatePosition: function updatePosition(oldIndex, newIndex) { var updatePosition = function updatePosition(list) { return list.splice(newIndex, 0, list.splice(oldIndex, 1)[0]); }; this.alterList(updatePosition); }, getRelatedContextFromMoveEvent: function getRelatedContextFromMoveEvent(_ref2) { var to = _ref2.to, related = _ref2.related; var component = this.getUnderlyingPotencialDraggableComponent(to); if (!component) { return { component: component }; } var list = component.realList; var context = { list: list, component: component }; if (to !== related && list && component.getUnderlyingVm) { var destination = component.getUnderlyingVm(related); if (destination) { return Object.assign(destination, context); } } return context; }, getVmIndex: function getVmIndex(domIndex) { var indexes = this.visibleIndexes; var numberIndexes = indexes.length; return domIndex > numberIndexes - 1 ? numberIndexes : indexes[domIndex]; }, getComponent: function getComponent() { return this.$slots.default[0].componentInstance; }, resetTransitionData: function resetTransitionData(index) { if (!this.noTransitionOnDrag || !this.transitionMode) { return; } var nodes = this.getChildrenNodes(); nodes[index].data = null; var transitionContainer = this.getComponent(); transitionContainer.children = []; transitionContainer.kept = undefined; }, onDragStart: function onDragStart(evt) { this.context = this.getUnderlyingVm(evt.item); evt.item._underlying_vm_ = this.clone(this.context.element); draggingElement = evt.item; }, onDragAdd: function onDragAdd(evt) { var element = evt.item._underlying_vm_; if (element === undefined) { return; } Object(helper["d" /* removeNode */])(evt.item); var newIndex = this.getVmIndex(evt.newIndex); this.spliceList(newIndex, 0, element); this.computeIndexes(); var added = { element: element, newIndex: newIndex }; this.emitChanges({ added: added }); }, onDragRemove: function onDragRemove(evt) { Object(helper["c" /* insertNodeAt */])(this.rootContainer, evt.item, evt.oldIndex); if (evt.pullMode === "clone") { Object(helper["d" /* removeNode */])(evt.clone); return; } var oldIndex = this.context.index; this.spliceList(oldIndex, 1); var removed = { element: this.context.element, oldIndex: oldIndex }; this.resetTransitionData(oldIndex); this.emitChanges({ removed: removed }); }, onDragUpdate: function onDragUpdate(evt) { Object(helper["d" /* removeNode */])(evt.item); Object(helper["c" /* insertNodeAt */])(evt.from, evt.item, evt.oldIndex); var oldIndex = this.context.index; var newIndex = this.getVmIndex(evt.newIndex); this.updatePosition(oldIndex, newIndex); var moved = { element: this.context.element, oldIndex: oldIndex, newIndex: newIndex }; this.emitChanges({ moved: moved }); }, updateProperty: function updateProperty(evt, propertyName) { evt.hasOwnProperty(propertyName) && (evt[propertyName] += this.headerOffset); }, computeFutureIndex: function computeFutureIndex(relatedContext, evt) { if (!relatedContext.element) { return 0; } var domChildren = _toConsumableArray(evt.to.children).filter(function (el) { return el.style["display"] !== "none"; }); var currentDOMIndex = domChildren.indexOf(evt.related); var currentIndex = relatedContext.component.getVmIndex(currentDOMIndex); var draggedInList = domChildren.indexOf(draggingElement) !== -1; return draggedInList || !evt.willInsertAfter ? currentIndex : currentIndex + 1; }, onDragMove: function onDragMove(evt, originalEvent) { var onMove = this.move; if (!onMove || !this.realList) { return true; } var relatedContext = this.getRelatedContextFromMoveEvent(evt); var draggedContext = this.context; var futureIndex = this.computeFutureIndex(relatedContext, evt); Object.assign(draggedContext, { futureIndex: futureIndex }); var sendEvt = Object.assign({}, evt, { relatedContext: relatedContext, draggedContext: draggedContext }); return onMove(sendEvt, originalEvent); }, onDragEnd: function onDragEnd() { this.computeIndexes(); draggingElement = null; } } }; if (typeof window !== "undefined" && "Vue" in window) { window.Vue.component("draggable", draggableComponent); } /* harmony default export */ var vuedraggable = (draggableComponent); // CONCATENATED MODULE: ./node_modules/@vue/cli-service/lib/commands/build/entry-lib.js /* harmony default export */ __webpack_exports__["default"] = (vuedraggable); /***/ }) /******/ })["default"]; }); }); var draggable = unwrapExports(vuedraggable_umd); function __(source, placeholders = []) { let strings = _SEARCHWP.i18n; let translated = strings.hasOwnProperty(source) ? strings[source] : source; if (placeholders.length) { placeholders.forEach(function(placeholder, placeholderIndex) { translated = translated.replace( "{{ searchwpPlaceholder" + parseInt(placeholderIndex + 1, 10) + " }}", placeholder ); }); } return translated; } var lodash_clonedeep = createCommonjsModule(function (module, exports) { /** * lodash (Custom Build) <https://lodash.com/> * Build: `lodash modularize exports="npm" -o ./` * Copyright jQuery Foundation and other contributors <https://jquery.org/> * Released under MIT license <https://lodash.com/license> * Based on Underscore.js 1.8.3 <http://underscorejs.org/LICENSE> * Copyright Jeremy Ashkenas, DocumentCloud and Investigative Reporters & Editors */ /** Used as the size to enable large array optimizations. */ var LARGE_ARRAY_SIZE = 200; /** Used to stand-in for `undefined` hash values. */ var HASH_UNDEFINED = '__lodash_hash_undefined__'; /** Used as references for various `Number` constants. */ var MAX_SAFE_INTEGER = 9007199254740991; /** `Object#toString` result references. */ var argsTag = '[object Arguments]', arrayTag = '[object Array]', boolTag = '[object Boolean]', dateTag = '[object Date]', errorTag = '[object Error]', funcTag = '[object Function]', genTag = '[object GeneratorFunction]', mapTag = '[object Map]', numberTag = '[object Number]', objectTag = '[object Object]', promiseTag = '[object Promise]', regexpTag = '[object RegExp]', setTag = '[object Set]', stringTag = '[object String]', symbolTag = '[object Symbol]', weakMapTag = '[object WeakMap]'; var arrayBufferTag = '[object ArrayBuffer]', dataViewTag = '[object DataView]', float32Tag = '[object Float32Array]', float64Tag = '[object Float64Array]', int8Tag = '[object Int8Array]', int16Tag = '[object Int16Array]', int32Tag = '[object Int32Array]', uint8Tag = '[object Uint8Array]', uint8ClampedTag = '[object Uint8ClampedArray]', uint16Tag = '[object Uint16Array]', uint32Tag = '[object Uint32Array]'; /** * Used to match `RegExp` * [syntax characters](http://ecma-international.org/ecma-262/7.0/#sec-patterns). */ var reRegExpChar = /[\\^$.*+?()[\]{}|]/g; /** Used to match `RegExp` flags from their coerced string values. */ var reFlags = /\w*$/; /** Used to detect host constructors (Safari). */ var reIsHostCtor = /^\[object .+?Constructor\]$/; /** Used to detect unsigned integer values. */ var reIsUint = /^(?:0|[1-9]\d*)$/; /** Used to identify `toStringTag` values supported by `_.clone`. */ var cloneableTags = {}; cloneableTags[argsTag] = cloneableTags[arrayTag] = cloneableTags[arrayBufferTag] = cloneableTags[dataViewTag] = cloneableTags[boolTag] = cloneableTags[dateTag] = cloneableTags[float32Tag] = cloneableTags[float64Tag] = cloneableTags[int8Tag] = cloneableTags[int16Tag] = cloneableTags[int32Tag] = cloneableTags[mapTag] = cloneableTags[numberTag] = cloneableTags[objectTag] = cloneableTags[regexpTag] = cloneableTags[setTag] = cloneableTags[stringTag] = cloneableTags[symbolTag] = cloneableTags[uint8Tag] = cloneableTags[uint8ClampedTag] = cloneableTags[uint16Tag] = cloneableTags[uint32Tag] = true; cloneableTags[errorTag] = cloneableTags[funcTag] = cloneableTags[weakMapTag] = false; /** Detect free variable `global` from Node.js. */ var freeGlobal = typeof commonjsGlobal == 'object' && commonjsGlobal && commonjsGlobal.Object === Object && commonjsGlobal; /** Detect free variable `self`. */ var freeSelf = typeof self == 'object' && self && self.Object === Object && self; /** Used as a reference to the global object. */ var root = freeGlobal || freeSelf || Function('return this')(); /** Detect free variable `exports`. */ var freeExports = exports && !exports.nodeType && exports; /** Detect free variable `module`. */ var freeModule = freeExports && 'object' == 'object' && module && !module.nodeType && module; /** Detect the popular CommonJS extension `module.exports`. */ var moduleExports = freeModule && freeModule.exports === freeExports; /** * Adds the key-value `pair` to `map`. * * @private * @param {Object} map The map to modify. * @param {Array} pair The key-value pair to add. * @returns {Object} Returns `map`. */ function addMapEntry(map, pair) { // Don't return `map.set` because it's not chainable in IE 11. map.set(pair[0], pair[1]); return map; } /** * Adds `value` to `set`. * * @private * @param {Object} set The set to modify. * @param {*} value The value to add. * @returns {Object} Returns `set`. */ function addSetEntry(set, value) { // Don't return `set.add` because it's not chainable in IE 11. set.add(value); return set; } /** * A specialized version of `_.forEach` for arrays without support for * iteratee shorthands. * * @private * @param {Array} [array] The array to iterate over. * @param {Function} iteratee The function invoked per iteration. * @returns {Array} Returns `array`. */ function arrayEach(array, iteratee) { var index = -1, length = array ? array.length : 0; while (++index < length) { if (iteratee(array[index], index, array) === false) { break; } } return array; } /** * Appends the elements of `values` to `array`. * * @private * @param {Array} array The array to modify. * @param {Array} values The values to append. * @returns {Array} Returns `array`. */ function arrayPush(array, values) { var index = -1, length = values.length, offset = array.length; while (++index < length) { array[offset + index] = values[index]; } return array; } /** * A specialized version of `_.reduce` for arrays without support for * iteratee shorthands. * * @private * @param {Array} [array] The array to iterate over. * @param {Function} iteratee The function invoked per iteration. * @param {*} [accumulator] The initial value. * @param {boolean} [initAccum] Specify using the first element of `array` as * the initial value. * @returns {*} Returns the accumulated value. */ function arrayReduce(array, iteratee, accumulator, initAccum) { var index = -1, length = array ? array.length : 0; if (initAccum && length) { accumulator = array[++index]; } while (++index < length) { accumulator = iteratee(accumulator, array[index], index, array); } return accumulator; } /** * The base implementation of `_.times` without support for iteratee shorthands * or max array length checks. * * @private * @param {number} n The number of times to invoke `iteratee`. * @param {Function} iteratee The function invoked per iteration. * @returns {Array} Returns the array of results. */ function baseTimes(n, iteratee) { var index = -1, result = Array(n); while (++index < n) { result[index] = iteratee(index); } return result; } /** * Gets the value at `key` of `object`. * * @private * @param {Object} [object] The object to query. * @param {string} key The key of the property to get. * @returns {*} Returns the property value. */ function getValue(object, key) { return object == null ? undefined : object[key]; } /** * Checks if `value` is a host object in IE < 9. * * @private * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a host object, else `false`. */ function isHostObject(value) { // Many host objects are `Object` objects that can coerce to strings // despite having improperly defined `toString` methods. var result = false; if (value != null && typeof value.toString != 'function') { try { result = !!(value + ''); } catch (e) {} } return result; } /** * Converts `map` to its key-value pairs. * * @private * @param {Object} map The map to convert. * @returns {Array} Returns the key-value pairs. */ function mapToArray(map) { var index = -1, result = Array(map.size); map.forEach(function(value, key) { result[++index] = [key, value]; }); return result; } /** * Creates a unary function that invokes `func` with its argument transformed. * * @private * @param {Function} func The function to wrap. * @param {Function} transform The argument transform. * @returns {Function} Returns the new function. */ function overArg(func, transform) { return function(arg) { return func(transform(arg)); }; } /** * Converts `set` to an array of its values. * * @private * @param {Object} set The set to convert. * @returns {Array} Returns the values. */ function setToArray(set) { var index = -1, result = Array(set.size); set.forEach(function(value) { result[++index] = value; }); return result; } /** Used for built-in method references. */ var arrayProto = Array.prototype, funcProto = Function.prototype, objectProto = Object.prototype; /** Used to detect overreaching core-js shims. */ var coreJsData = root['__core-js_shared__']; /** Used to detect methods masquerading as native. */ var maskSrcKey = (function() { var uid = /[^.]+$/.exec(coreJsData && coreJsData.keys && coreJsData.keys.IE_PROTO || ''); return uid ? ('Symbol(src)_1.' + uid) : ''; }()); /** Used to resolve the decompiled source of functions. */ var funcToString = funcProto.toString; /** Used to check objects for own properties. */ var hasOwnProperty = objectProto.hasOwnProperty; /** * Used to resolve the * [`toStringTag`](http://ecma-international.org/ecma-262/7.0/#sec-object.prototype.tostring) * of values. */ var objectToString = objectProto.toString; /** Used to detect if a method is native. */ var reIsNative = RegExp('^' + funcToString.call(hasOwnProperty).replace(reRegExpChar, '\\$&') .replace(/hasOwnProperty|(function).*?(?=\\\()| for .+?(?=\\\])/g, '$1.*?') + '$' ); /** Built-in value references. */ var Buffer = moduleExports ? root.Buffer : undefined, Symbol = root.Symbol, Uint8Array = root.Uint8Array, getPrototype = overArg(Object.getPrototypeOf, Object), objectCreate = Object.create, propertyIsEnumerable = objectProto.propertyIsEnumerable, splice = arrayProto.splice; /* Built-in method references for those with the same name as other `lodash` methods. */ var nativeGetSymbols = Object.getOwnPropertySymbols, nativeIsBuffer = Buffer ? Buffer.isBuffer : undefined, nativeKeys = overArg(Object.keys, Object); /* Built-in method references that are verified to be native. */ var DataView = getNative(root, 'DataView'), Map = getNative(root, 'Map'), Promise = getNative(root, 'Promise'), Set = getNative(root, 'Set'), WeakMap = getNative(root, 'WeakMap'), nativeCreate = getNative(Object, 'create'); /** Used to detect maps, sets, and weakmaps. */ var dataViewCtorString = toSource(DataView), mapCtorString = toSource(Map), promiseCtorString = toSource(Promise), setCtorString = toSource(Set), weakMapCtorString = toSource(WeakMap); /** Used to convert symbols to primitives and strings. */ var symbolProto = Symbol ? Symbol.prototype : undefined, symbolValueOf = symbolProto ? symbolProto.valueOf : undefined; /** * Creates a hash object. * * @private * @constructor * @param {Array} [entries] The key-value pairs to cache. */ function Hash(entries) { var index = -1, length = entries ? entries.length : 0; this.clear(); while (++index < length) { var entry = entries[index]; this.set(entry[0], entry[1]); } } /** * Removes all key-value entries from the hash. * * @private * @name clear * @memberOf Hash */ function hashClear() { this.__data__ = nativeCreate ? nativeCreate(null) : {}; } /** * Removes `key` and its value from the hash. * * @private * @name delete * @memberOf Hash * @param {Object} hash The hash to modify. * @param {string} key The key of the value to remove. * @returns {boolean} Returns `true` if the entry was removed, else `false`. */ function hashDelete(key) { return this.has(key) && delete this.__data__[key]; } /** * Gets the hash value for `key`. * * @private * @name get * @memberOf Hash * @param {string} key The key of the value to get. * @returns {*} Returns the entry value. */ function hashGet(key) { var data = this.__data__; if (nativeCreate) { var result = data[key]; return result === HASH_UNDEFINED ? undefined : result; } return hasOwnProperty.call(data, key) ? data[key] : undefined; } /** * Checks if a hash value for `key` exists. * * @private * @name has * @memberOf Hash * @param {string} key The key of the entry to check. * @returns {boolean} Returns `true` if an entry for `key` exists, else `false`. */ function hashHas(key) { var data = this.__data__; return nativeCreate ? data[key] !== undefined : hasOwnProperty.call(data, key); } /** * Sets the hash `key` to `value`. * * @private * @name set * @memberOf Hash * @param {string} key The key of the value to set. * @param {*} value The value to set. * @returns {Object} Returns the hash instance. */ function hashSet(key, value) { var data = this.__data__; data[key] = (nativeCreate && value === undefined) ? HASH_UNDEFINED : value; return this; } // Add methods to `Hash`. Hash.prototype.clear = hashClear; Hash.prototype['delete'] = hashDelete; Hash.prototype.get = hashGet; Hash.prototype.has = hashHas; Hash.prototype.set = hashSet; /** * Creates an list cache object. * * @private * @constructor * @param {Array} [entries] The key-value pairs to cache. */ function ListCache(entries) { var index = -1, length = entries ? entries.length : 0; this.clear(); while (++index < length) { var entry = entries[index]; this.set(entry[0], entry[1]); } } /** * Removes all key-value entries from the list cache. * * @private * @name clear * @memberOf ListCache */ function listCacheClear() { this.__data__ = []; } /** * Removes `key` and its value from the list cache. * * @private * @name delete * @memberOf ListCache * @param {string} key The key of the value to remove. * @returns {boolean} Returns `true` if the entry was removed, else `false`. */ function listCacheDelete(key) { var data = this.__data__, index = assocIndexOf(data, key); if (index < 0) { return false; } var lastIndex = data.length - 1; if (index == lastIndex) { data.pop(); } else { splice.call(data, index, 1); } return true; } /** * Gets the list cache value for `key`. * * @private * @name get * @memberOf ListCache * @param {string} key The key of the value to get. * @returns {*} Returns the entry value. */ function listCacheGet(key) { var data = this.__data__, index = assocIndexOf(data, key); return index < 0 ? undefined : data[index][1]; } /** * Checks if a list cache value for `key` exists. * * @private * @name has * @memberOf ListCache * @param {string} key The key of the entry to check. * @returns {boolean} Returns `true` if an entry for `key` exists, else `false`. */ function listCacheHas(key) { return assocIndexOf(this.__data__, key) > -1; } /** * Sets the list cache `key` to `value`. * * @private * @name set * @memberOf ListCache * @param {string} key The key of the value to set. * @param {*} value The value to set. * @returns {Object} Returns the list cache instance. */ function listCacheSet(key, value) { var data = this.__data__, index = assocIndexOf(data, key); if (index < 0) { data.push([key, value]); } else { data[index][1] = value; } return this; } // Add methods to `ListCache`. ListCache.prototype.clear = listCacheClear; ListCache.prototype['delete'] = listCacheDelete; ListCache.prototype.get = listCacheGet; ListCache.prototype.has = listCacheHas; ListCache.prototype.set = listCacheSet; /** * Creates a map cache object to store key-value pairs. * * @private * @constructor * @param {Array} [entries] The key-value pairs to cache. */ function MapCache(entries) { var index = -1, length = entries ? entries.length : 0; this.clear(); while (++index < length) { var entry = entries[index]; this.set(entry[0], entry[1]); } } /** * Removes all key-value entries from the map. * * @private * @name clear * @memberOf MapCache */ function mapCacheClear() { this.__data__ = { 'hash': new Hash, 'map': new (Map || ListCache), 'string': new Hash }; } /** * Removes `key` and its value from the map. * * @private * @name delete * @memberOf MapCache * @param {string} key The key of the value to remove. * @returns {boolean} Returns `true` if the entry was removed, else `false`. */ function mapCacheDelete(key) { return getMapData(this, key)['delete'](key); } /** * Gets the map value for `key`. * * @private * @name get * @memberOf MapCache * @param {string} key The key of the value to get. * @returns {*} Returns the entry value. */ function mapCacheGet(key) { return getMapData(this, key).get(key); } /** * Checks if a map value for `key` exists. * * @private * @name has * @memberOf MapCache * @param {string} key The key of the entry to check. * @returns {boolean} Returns `true` if an entry for `key` exists, else `false`. */ function mapCacheHas(key) { return getMapData(this, key).has(key); } /** * Sets the map `key` to `value`. * * @private * @name set * @memberOf MapCache * @param {string} key The key of the value to set. * @param {*} value The value to set. * @returns {Object} Returns the map cache instance. */ function mapCacheSet(key, value) { getMapData(this, key).set(key, value); return this; } // Add methods to `MapCache`. MapCache.prototype.clear = mapCacheClear; MapCache.prototype['delete'] = mapCacheDelete; MapCache.prototype.get = mapCacheGet; MapCache.prototype.has = mapCacheHas; MapCache.prototype.set = mapCacheSet; /** * Creates a stack cache object to store key-value pairs. * * @private * @constructor * @param {Array} [entries] The key-value pairs to cache. */ function Stack(entries) { this.__data__ = new ListCache(entries); } /** * Removes all key-value entries from the stack. * * @private * @name clear * @memberOf Stack */ function stackClear() { this.__data__ = new ListCache; } /** * Removes `key` and its value from the stack. * * @private * @name delete * @memberOf Stack * @param {string} key The key of the value to remove. * @returns {boolean} Returns `true` if the entry was removed, else `false`. */ function stackDelete(key) { return this.__data__['delete'](key); } /** * Gets the stack value for `key`. * * @private * @name get * @memberOf Stack * @param {string} key The key of the value to get. * @returns {*} Returns the entry value. */ function stackGet(key) { return this.__data__.get(key); } /** * Checks if a stack value for `key` exists. * * @private * @name has * @memberOf Stack * @param {string} key The key of the entry to check. * @returns {boolean} Returns `true` if an entry for `key` exists, else `false`. */ function stackHas(key) { return this.__data__.has(key); } /** * Sets the stack `key` to `value`. * * @private * @name set * @memberOf Stack * @param {string} key The key of the value to set. * @param {*} value The value to set. * @returns {Object} Returns the stack cache instance. */ function stackSet(key, value) { var cache = this.__data__; if (cache instanceof ListCache) { var pairs = cache.__data__; if (!Map || (pairs.length < LARGE_ARRAY_SIZE - 1)) { pairs.push([key, value]); return this; } cache = this.__data__ = new MapCache(pairs); } cache.set(key, value); return this; } // Add methods to `Stack`. Stack.prototype.clear = stackClear; Stack.prototype['delete'] = stackDelete; Stack.prototype.get = stackGet; Stack.prototype.has = stackHas; Stack.prototype.set = stackSet; /** * Creates an array of the enumerable property names of the array-like `value`. * * @private * @param {*} value The value to query. * @param {boolean} inherited Specify returning inherited property names. * @returns {Array} Returns the array of property names. */ function arrayLikeKeys(value, inherited) { // Safari 8.1 makes `arguments.callee` enumerable in strict mode. // Safari 9 makes `arguments.length` enumerable in strict mode. var result = (isArray(value) || isArguments(value)) ? baseTimes(value.length, String) : []; var length = result.length, skipIndexes = !!length; for (var key in value) { if ((inherited || hasOwnProperty.call(value, key)) && !(skipIndexes && (key == 'length' || isIndex(key, length)))) { result.push(key); } } return result; } /** * Assigns `value` to `key` of `object` if the existing value is not equivalent * using [`SameValueZero`](http://ecma-international.org/ecma-262/7.0/#sec-samevaluezero) * for equality comparisons. * * @private * @param {Object} object The object to modify. * @param {string} key The key of the property to assign. * @param {*} value The value to assign. */ function assignValue(object, key, value) { var objValue = object[key]; if (!(hasOwnProperty.call(object, key) && eq(objValue, value)) || (value === undefined && !(key in object))) { object[key] = value; } } /** * Gets the index at which the `key` is found in `array` of key-value pairs. * * @private * @param {Array} array The array to inspect. * @param {*} key The key to search for. * @returns {number} Returns the index of the matched value, else `-1`. */ function assocIndexOf(array, key) { var length = array.length; while (length--) { if (eq(array[length][0], key)) { return length; } } return -1; } /** * The base implementation of `_.assign` without support for multiple sources * or `customizer` functions. * * @private * @param {Object} object The destination object. * @param {Object} source The source object. * @returns {Object} Returns `object`. */ function baseAssign(object, source) { return object && copyObject(source, keys(source), object); } /** * The base implementation of `_.clone` and `_.cloneDeep` which tracks * traversed objects. * * @private * @param {*} value The value to clone. * @param {boolean} [isDeep] Specify a deep clone. * @param {boolean} [isFull] Specify a clone including symbols. * @param {Function} [customizer] The function to customize cloning. * @param {string} [key] The key of `value`. * @param {Object} [object] The parent object of `value`. * @param {Object} [stack] Tracks traversed objects and their clone counterparts. * @returns {*} Returns the cloned value. */ function baseClone(value, isDeep, isFull, customizer, key, object, stack) { var result; if (customizer) { result = object ? customizer(value, key, object, stack) : customizer(value); } if (result !== undefined) { return result; } if (!isObject(value)) { return value; } var isArr = isArray(value); if (isArr) { result = initCloneArray(value); if (!isDeep) { return copyArray(value, result); } } else { var tag = getTag(value), isFunc = tag == funcTag || tag == genTag; if (isBuffer(value)) { return cloneBuffer(value, isDeep); } if (tag == objectTag || tag == argsTag || (isFunc && !object)) { if (isHostObject(value)) { return object ? value : {}; } result = initCloneObject(isFunc ? {} : value); if (!isDeep) { return copySymbols(value, baseAssign(result, value)); } } else { if (!cloneableTags[tag]) { return object ? value : {}; } result = initCloneByTag(value, tag, baseClone, isDeep); } } // Check for circular references and return its corresponding clone. stack || (stack = new Stack); var stacked = stack.get(value); if (stacked) { return stacked; } stack.set(value, result); if (!isArr) { var props = isFull ? getAllKeys(value) : keys(value); } arrayEach(props || value, function(subValue, key) { if (props) { key = subValue; subValue = value[key]; } // Recursively populate clone (susceptible to call stack limits). assignValue(result, key, baseClone(subValue, isDeep, isFull, customizer, key, value, stack)); }); return result; } /** * The base implementation of `_.create` without support for assigning * properties to the created object. * * @private * @param {Object} prototype The object to inherit from. * @returns {Object} Returns the new object. */ function baseCreate(proto) { return isObject(proto) ? objectCreate(proto) : {}; } /** * The base implementation of `getAllKeys` and `getAllKeysIn` which uses * `keysFunc` and `symbolsFunc` to get the enumerable property names and * symbols of `object`. * * @private * @param {Object} object The object to query. * @param {Function} keysFunc The function to get the keys of `object`. * @param {Function} symbolsFunc The function to get the symbols of `object`. * @returns {Array} Returns the array of property names and symbols. */ function baseGetAllKeys(object, keysFunc, symbolsFunc) { var result = keysFunc(object); return isArray(object) ? result : arrayPush(result, symbolsFunc(object)); } /** * The base implementation of `getTag`. * * @private * @param {*} value The value to query. * @returns {string} Returns the `toStringTag`. */ function baseGetTag(value) { return objectToString.call(value); } /** * The base implementation of `_.isNative` without bad shim checks. * * @private * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a native function, * else `false`. */ function baseIsNative(value) { if (!isObject(value) || isMasked(value)) { return false; } var pattern = (isFunction(value) || isHostObject(value)) ? reIsNative : reIsHostCtor; return pattern.test(toSource(value)); } /** * The base implementation of `_.keys` which doesn't treat sparse arrays as dense. * * @private * @param {Object} object The object to query. * @returns {Array} Returns the array of property names. */ function baseKeys(object) { if (!isPrototype(object)) { return nativeKeys(object); } var result = []; for (var key in Object(object)) { if (hasOwnProperty.call(object, key) && key != 'constructor') { result.push(key); } } return result; } /** * Creates a clone of `buffer`. * * @private * @param {Buffer} buffer The buffer to clone. * @param {boolean} [isDeep] Specify a deep clone. * @returns {Buffer} Returns the cloned buffer. */ function cloneBuffer(buffer, isDeep) { if (isDeep) { return buffer.slice(); } var result = new buffer.constructor(buffer.length); buffer.copy(result); return result; } /** * Creates a clone of `arrayBuffer`. * * @private * @param {ArrayBuffer} arrayBuffer The array buffer to clone. * @returns {ArrayBuffer} Returns the cloned array buffer. */ function cloneArrayBuffer(arrayBuffer) { var result = new arrayBuffer.constructor(arrayBuffer.byteLength); new Uint8Array(result).set(new Uint8Array(arrayBuffer)); return result; } /** * Creates a clone of `dataView`. * * @private * @param {Object} dataView The data view to clone. * @param {boolean} [isDeep] Specify a deep clone. * @returns {Object} Returns the cloned data view. */ function cloneDataView(dataView, isDeep) { var buffer = isDeep ? cloneArrayBuffer(dataView.buffer) : dataView.buffer; return new dataView.constructor(buffer, dataView.byteOffset, dataView.byteLength); } /** * Creates a clone of `map`. * * @private * @param {Object} map The map to clone. * @param {Function} cloneFunc The function to clone values. * @param {boolean} [isDeep] Specify a deep clone. * @returns {Object} Returns the cloned map. */ function cloneMap(map, isDeep, cloneFunc) { var array = isDeep ? cloneFunc(mapToArray(map), true) : mapToArray(map); return arrayReduce(array, addMapEntry, new map.constructor); } /** * Creates a clone of `regexp`. * * @private * @param {Object} regexp The regexp to clone. * @returns {Object} Returns the cloned regexp. */ function cloneRegExp(regexp) { var result = new regexp.constructor(regexp.source, reFlags.exec(regexp)); result.lastIndex = regexp.lastIndex; return result; } /** * Creates a clone of `set`. * * @private * @param {Object} set The set to clone. * @param {Function} cloneFunc The function to clone values. * @param {boolean} [isDeep] Specify a deep clone. * @returns {Object} Returns the cloned set. */ function cloneSet(set, isDeep, cloneFunc) { var array = isDeep ? cloneFunc(setToArray(set), true) : setToArray(set); return arrayReduce(array, addSetEntry, new set.constructor); } /** * Creates a clone of the `symbol` object. * * @private * @param {Object} symbol The symbol object to clone. * @returns {Object} Returns the cloned symbol object. */ function cloneSymbol(symbol) { return symbolValueOf ? Object(symbolValueOf.call(symbol)) : {}; } /** * Creates a clone of `typedArray`. * * @private * @param {Object} typedArray The typed array to clone. * @param {boolean} [isDeep] Specify a deep clone. * @returns {Object} Returns the cloned typed array. */ function cloneTypedArray(typedArray, isDeep) { var buffer = isDeep ? cloneArrayBuffer(typedArray.buffer) : typedArray.buffer; return new typedArray.constructor(buffer, typedArray.byteOffset, typedArray.length); } /** * Copies the values of `source` to `array`. * * @private * @param {Array} source The array to copy values from. * @param {Array} [array=[]] The array to copy values to. * @returns {Array} Returns `array`. */ function copyArray(source, array) { var index = -1, length = source.length; array || (array = Array(length)); while (++index < length) { array[index] = source[index]; } return array; } /** * Copies properties of `source` to `object`. * * @private * @param {Object} source The object to copy properties from. * @param {Array} props The property identifiers to copy. * @param {Object} [object={}] The object to copy properties to. * @param {Function} [customizer] The function to customize copied values. * @returns {Object} Returns `object`. */ function copyObject(source, props, object, customizer) { object || (object = {}); var index = -1, length = props.length; while (++index < length) { var key = props[index]; var newValue = customizer ? customizer(object[key], source[key], key, object, source) : undefined; assignValue(object, key, newValue === undefined ? source[key] : newValue); } return object; } /** * Copies own symbol properties of `source` to `object`. * * @private * @param {Object} source The object to copy symbols from. * @param {Object} [object={}] The object to copy symbols to. * @returns {Object} Returns `object`. */ function copySymbols(source, object) { return copyObject(source, getSymbols(source), object); } /** * Creates an array of own enumerable property names and symbols of `object`. * * @private * @param {Object} object The object to query. * @returns {Array} Returns the array of property names and symbols. */ function getAllKeys(object) { return baseGetAllKeys(object, keys, getSymbols); } /** * Gets the data for `map`. * * @private * @param {Object} map The map to query. * @param {string} key The reference key. * @returns {*} Returns the map data. */ function getMapData(map, key) { var data = map.__data__; return isKeyable(key) ? data[typeof key == 'string' ? 'string' : 'hash'] : data.map; } /** * Gets the native function at `key` of `object`. * * @private * @param {Object} object The object to query. * @param {string} key The key of the method to get. * @returns {*} Returns the function if it's native, else `undefined`. */ function getNative(object, key) { var value = getValue(object, key); return baseIsNative(value) ? value : undefined; } /** * Creates an array of the own enumerable symbol properties of `object`. * * @private * @param {Object} object The object to query. * @returns {Array} Returns the array of symbols. */ var getSymbols = nativeGetSymbols ? overArg(nativeGetSymbols, Object) : stubArray; /** * Gets the `toStringTag` of `value`. * * @private * @param {*} value The value to query. * @returns {string} Returns the `toStringTag`. */ var getTag = baseGetTag; // Fallback for data views, maps, sets, and weak maps in IE 11, // for data views in Edge < 14, and promises in Node.js. if ((DataView && getTag(new DataView(new ArrayBuffer(1))) != dataViewTag) || (Map && getTag(new Map) != mapTag) || (Promise && getTag(Promise.resolve()) != promiseTag) || (Set && getTag(new Set) != setTag) || (WeakMap && getTag(new WeakMap) != weakMapTag)) { getTag = function(value) { var result = objectToString.call(value), Ctor = result == objectTag ? value.constructor : undefined, ctorString = Ctor ? toSource(Ctor) : undefined; if (ctorString) { switch (ctorString) { case dataViewCtorString: return dataViewTag; case mapCtorString: return mapTag; case promiseCtorString: return promiseTag; case setCtorString: return setTag; case weakMapCtorString: return weakMapTag; } } return result; }; } /** * Initializes an array clone. * * @private * @param {Array} array The array to clone. * @returns {Array} Returns the initialized clone. */ function initCloneArray(array) { var length = array.length, result = array.constructor(length); // Add properties assigned by `RegExp#exec`. if (length && typeof array[0] == 'string' && hasOwnProperty.call(array, 'index')) { result.index = array.index; result.input = array.input; } return result; } /** * Initializes an object clone. * * @private * @param {Object} object The object to clone. * @returns {Object} Returns the initialized clone. */ function initCloneObject(object) { return (typeof object.constructor == 'function' && !isPrototype(object)) ? baseCreate(getPrototype(object)) : {}; } /** * Initializes an object clone based on its `toStringTag`. * * **Note:** This function only supports cloning values with tags of * `Boolean`, `Date`, `Error`, `Number`, `RegExp`, or `String`. * * @private * @param {Object} object The object to clone. * @param {string} tag The `toStringTag` of the object to clone. * @param {Function} cloneFunc The function to clone values. * @param {boolean} [isDeep] Specify a deep clone. * @returns {Object} Returns the initialized clone. */ function initCloneByTag(object, tag, cloneFunc, isDeep) { var Ctor = object.constructor; switch (tag) { case arrayBufferTag: return cloneArrayBuffer(object); case boolTag: case dateTag: return new Ctor(+object); case dataViewTag: return cloneDataView(object, isDeep); case float32Tag: case float64Tag: case int8Tag: case int16Tag: case int32Tag: case uint8Tag: case uint8ClampedTag: case uint16Tag: case uint32Tag: return cloneTypedArray(object, isDeep); case mapTag: return cloneMap(object, isDeep, cloneFunc); case numberTag: case stringTag: return new Ctor(object); case regexpTag: return cloneRegExp(object); case setTag: return cloneSet(object, isDeep, cloneFunc); case symbolTag: return cloneSymbol(object); } } /** * Checks if `value` is a valid array-like index. * * @private * @param {*} value The value to check. * @param {number} [length=MAX_SAFE_INTEGER] The upper bounds of a valid index. * @returns {boolean} Returns `true` if `value` is a valid index, else `false`. */ function isIndex(value, length) { length = length == null ? MAX_SAFE_INTEGER : length; return !!length && (typeof value == 'number' || reIsUint.test(value)) && (value > -1 && value % 1 == 0 && value < length); } /** * Checks if `value` is suitable for use as unique object key. * * @private * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is suitable, else `false`. */ function isKeyable(value) { var type = typeof value; return (type == 'string' || type == 'number' || type == 'symbol' || type == 'boolean') ? (value !== '__proto__') : (value === null); } /** * Checks if `func` has its source masked. * * @private * @param {Function} func The function to check. * @returns {boolean} Returns `true` if `func` is masked, else `false`. */ function isMasked(func) { return !!maskSrcKey && (maskSrcKey in func); } /** * Checks if `value` is likely a prototype object. * * @private * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a prototype, else `false`. */ function isPrototype(value) { var Ctor = value && value.constructor, proto = (typeof Ctor == 'function' && Ctor.prototype) || objectProto; return value === proto; } /** * Converts `func` to its source code. * * @private * @param {Function} func The function to process. * @returns {string} Returns the source code. */ function toSource(func) { if (func != null) { try { return funcToString.call(func); } catch (e) {} try { return (func + ''); } catch (e) {} } return ''; } /** * This method is like `_.clone` except that it recursively clones `value`. * * @static * @memberOf _ * @since 1.0.0 * @category Lang * @param {*} value The value to recursively clone. * @returns {*} Returns the deep cloned value. * @see _.clone * @example * * var objects = [{ 'a': 1 }, { 'b': 2 }]; * * var deep = _.cloneDeep(objects); * console.log(deep[0] === objects[0]); * // => false */ function cloneDeep(value) { return baseClone(value, true, true); } /** * Performs a * [`SameValueZero`](http://ecma-international.org/ecma-262/7.0/#sec-samevaluezero) * comparison between two values to determine if they are equivalent. * * @static * @memberOf _ * @since 4.0.0 * @category Lang * @param {*} value The value to compare. * @param {*} other The other value to compare. * @returns {boolean} Returns `true` if the values are equivalent, else `false`. * @example * * var object = { 'a': 1 }; * var other = { 'a': 1 }; * * _.eq(object, object); * // => true * * _.eq(object, other); * // => false * * _.eq('a', 'a'); * // => true * * _.eq('a', Object('a')); * // => false * * _.eq(NaN, NaN); * // => true */ function eq(value, other) { return value === other || (value !== value && other !== other); } /** * Checks if `value` is likely an `arguments` object. * * @static * @memberOf _ * @since 0.1.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is an `arguments` object, * else `false`. * @example * * _.isArguments(function() { return arguments; }()); * // => true * * _.isArguments([1, 2, 3]); * // => false */ function isArguments(value) { // Safari 8.1 makes `arguments.callee` enumerable in strict mode. return isArrayLikeObject(value) && hasOwnProperty.call(value, 'callee') && (!propertyIsEnumerable.call(value, 'callee') || objectToString.call(value) == argsTag); } /** * Checks if `value` is classified as an `Array` object. * * @static * @memberOf _ * @since 0.1.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is an array, else `false`. * @example * * _.isArray([1, 2, 3]); * // => true * * _.isArray(document.body.children); * // => false * * _.isArray('abc'); * // => false * * _.isArray(_.noop); * // => false */ var isArray = Array.isArray; /** * Checks if `value` is array-like. A value is considered array-like if it's * not a function and has a `value.length` that's an integer greater than or * equal to `0` and less than or equal to `Number.MAX_SAFE_INTEGER`. * * @static * @memberOf _ * @since 4.0.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is array-like, else `false`. * @example * * _.isArrayLike([1, 2, 3]); * // => true * * _.isArrayLike(document.body.children); * // => true * * _.isArrayLike('abc'); * // => true * * _.isArrayLike(_.noop); * // => false */ function isArrayLike(value) { return value != null && isLength(value.length) && !isFunction(value); } /** * This method is like `_.isArrayLike` except that it also checks if `value` * is an object. * * @static * @memberOf _ * @since 4.0.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is an array-like object, * else `false`. * @example * * _.isArrayLikeObject([1, 2, 3]); * // => true * * _.isArrayLikeObject(document.body.children); * // => true * * _.isArrayLikeObject('abc'); * // => false * * _.isArrayLikeObject(_.noop); * // => false */ function isArrayLikeObject(value) { return isObjectLike(value) && isArrayLike(value); } /** * Checks if `value` is a buffer. * * @static * @memberOf _ * @since 4.3.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a buffer, else `false`. * @example * * _.isBuffer(new Buffer(2)); * // => true * * _.isBuffer(new Uint8Array(2)); * // => false */ var isBuffer = nativeIsBuffer || stubFalse; /** * Checks if `value` is classified as a `Function` object. * * @static * @memberOf _ * @since 0.1.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a function, else `false`. * @example * * _.isFunction(_); * // => true * * _.isFunction(/abc/); * // => false */ function isFunction(value) { // The use of `Object#toString` avoids issues with the `typeof` operator // in Safari 8-9 which returns 'object' for typed array and other constructors. var tag = isObject(value) ? objectToString.call(value) : ''; return tag == funcTag || tag == genTag; } /** * Checks if `value` is a valid array-like length. * * **Note:** This method is loosely based on * [`ToLength`](http://ecma-international.org/ecma-262/7.0/#sec-tolength). * * @static * @memberOf _ * @since 4.0.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is a valid length, else `false`. * @example * * _.isLength(3); * // => true * * _.isLength(Number.MIN_VALUE); * // => false * * _.isLength(Infinity); * // => false * * _.isLength('3'); * // => false */ function isLength(value) { return typeof value == 'number' && value > -1 && value % 1 == 0 && value <= MAX_SAFE_INTEGER; } /** * Checks if `value` is the * [language type](http://www.ecma-international.org/ecma-262/7.0/#sec-ecmascript-language-types) * of `Object`. (e.g. arrays, functions, objects, regexes, `new Number(0)`, and `new String('')`) * * @static * @memberOf _ * @since 0.1.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is an object, else `false`. * @example * * _.isObject({}); * // => true * * _.isObject([1, 2, 3]); * // => true * * _.isObject(_.noop); * // => true * * _.isObject(null); * // => false */ function isObject(value) { var type = typeof value; return !!value && (type == 'object' || type == 'function'); } /** * Checks if `value` is object-like. A value is object-like if it's not `null` * and has a `typeof` result of "object". * * @static * @memberOf _ * @since 4.0.0 * @category Lang * @param {*} value The value to check. * @returns {boolean} Returns `true` if `value` is object-like, else `false`. * @example * * _.isObjectLike({}); * // => true * * _.isObjectLike([1, 2, 3]); * // => true * * _.isObjectLike(_.noop); * // => false * * _.isObjectLike(null); * // => false */ function isObjectLike(value) { return !!value && typeof value == 'object'; } /** * Creates an array of the own enumerable property names of `object`. * * **Note:** Non-object values are coerced to objects. See the * [ES spec](http://ecma-international.org/ecma-262/7.0/#sec-object.keys) * for more details. * * @static * @since 0.1.0 * @memberOf _ * @category Object * @param {Object} object The object to query. * @returns {Array} Returns the array of property names. * @example * * function Foo() { * this.a = 1; * this.b = 2; * } * * Foo.prototype.c = 3; * * _.keys(new Foo); * // => ['a', 'b'] (iteration order is not guaranteed) * * _.keys('hi'); * // => ['0', '1'] */ function keys(object) { return isArrayLike(object) ? arrayLikeKeys(object) : baseKeys(object); } /** * This method returns a new empty array. * * @static * @memberOf _ * @since 4.13.0 * @category Util * @returns {Array} Returns the new empty array. * @example * * var arrays = _.times(2, _.stubArray); * * console.log(arrays); * // => [[], []] * * console.log(arrays[0] === arrays[1]); * // => false */ function stubArray() { return []; } /** * This method returns `false`. * * @static * @memberOf _ * @since 4.13.0 * @category Util * @returns {boolean} Returns `false`. * @example * * _.times(2, _.stubFalse); * // => [false, false] */ function stubFalse() { return false; } module.exports = cloneDeep; }); lodash_clonedeep.cloneDeep; // // // // // // // // // // // // // // var script$4 = { name: 'Checkbox', model: { prop: 'checked', event: 'change' }, props: { checked: { type: Boolean }, id: { type: String, required: true }, disabled: { type: Boolean, default: false } }, watch: { val(value) { this.$emit('change', value); } }, data() { return { val: this.checked, }; } }; /* script */ const __vue_script__$4 = script$4; /* template */ var __vue_render__$4 = function () {var _vm=this;var _h=_vm.$createElement;var _c=_vm._self._c||_h;return _c('div',{staticClass:"searchwp-checkbox"},[_c('div',{staticClass:"searchwp-checkbox-input"},[_c('input',{directives:[{name:"model",rawName:"v-model",value:(_vm.val),expression:"val"}],attrs:{"type":"checkbox","disabled":_vm.disabled,"id":_vm.id},domProps:{"checked":Array.isArray(_vm.val)?_vm._i(_vm.val,null)>-1:(_vm.val)},on:{"change":function($event){var $$a=_vm.val,$$el=$event.target,$$c=$$el.checked?(true):(false);if(Array.isArray($$a)){var $$v=null,$$i=_vm._i($$a,$$v);if($$el.checked){$$i<0&&(_vm.val=$$a.concat([$$v]));}else {$$i>-1&&(_vm.val=$$a.slice(0,$$i).concat($$a.slice($$i+1)));}}else {_vm.val=$$c;}}}}),_vm._v(" "),_c('label',{attrs:{"for":_vm.id}},[_vm._t("default")],2)]),_vm._v(" "),_vm._t("description")],2)}; var __vue_staticRenderFns__$4 = []; /* style */ const __vue_inject_styles__$4 = undefined; /* scoped */ const __vue_scope_id__$4 = undefined; /* module identifier */ const __vue_module_identifier__$4 = undefined; /* functional template */ const __vue_is_functional_template__$4 = false; /* style inject */ /* style inject SSR */ /* style inject shadow dom */ const __vue_component__$4 = /*#__PURE__*/normalizeComponent( { render: __vue_render__$4, staticRenderFns: __vue_staticRenderFns__$4 }, __vue_inject_styles__$4, __vue_script__$4, __vue_scope_id__$4, __vue_is_functional_template__$4, __vue_module_identifier__$4, false, undefined, undefined, undefined ); // var script$3 = { name: 'Synonyms', components: { draggable, Checkbox: __vue_component__$4, MetaBox: __vue_component__$6, Tooltip: __vue_component__$5, Menu: __vue_component__$7 }, computed: { updated: function() { return !lodash_isequal(this.original, this.synonyms); }, i18nSynonymsNote: function() { return { template: '<p>' + __('_synonyms_note') + '</p>' }; }, menuItems: function() { let vm = this; let items = [ { text: __('Sort ASC'), click: function() { vm.sort('ASC'); } }, { text: __('Sort DESC'), click: function() { vm.sort('DESC'); } }, { text: __('Remove All'), click: function() { vm.clear(); } } ]; return items; } }, methods: { remove: function(index) { this.synonyms.splice(index, 1); }, add: function() { this.synonyms.push({ sources: '', synonyms: '', replace: false }); }, save: function() { let vm = this; jQuery.post(ajaxurl, { _ajax_nonce: _SEARCHWP.nonce, action: _SEARCHWP.prefix + 'synonyms_update', synonyms: JSON.stringify(vm.synonyms) }, function(response) { vm.synonyms = lodash_clonedeep(response.data); vm.original = lodash_clonedeep(response.data); }); }, checkForUnsaved: function(event) { if (this.updated) { event.preventDefault(); // Chrome requires returnValue to be set. event.returnValue = ''; } }, sort: function(direction) { this.synonyms = this.synonyms.sort(function(a, b) { if (a.sources.toLowerCase() > b.sources.toLowerCase()) { return 'asc' === direction.toLowerCase() ? 1 : -1; } else if (b.sources.toLowerCase() > a.sources.toLowerCase()) { return 'asc' === direction.toLowerCase() ? -1 : 1; } else { return 0; } }); }, clear: function() { this.synonyms = []; } }, beforeMount() { window.addEventListener('beforeunload', this.checkForUnsaved); }, beforeDestroy() { window.removeEventListener('beforeunload', this.checkForUnsaved); }, data() { return { original: lodash_clonedeep(_SEARCHWP.synonyms), synonyms: lodash_clonedeep(_SEARCHWP.synonyms), } } }; /* script */ const __vue_script__$3 = script$3; /* template */ var __vue_render__$3 = function () {var _vm=this;var _h=_vm.$createElement;var _c=_vm._self._c||_h;return _c('MetaBox',{staticClass:"searchwp-synonyms",attrs:{"active":true,"label":'Synonyms'},scopedSlots:_vm._u([{key:"heading",fn:function(){return [_c('span',[_vm._v(_vm._s(_vm._f("i18n")('Synonyms')))]),_vm._v(" "),_c('Menu',{attrs:{"items":_vm.menuItems}},[_c('button',{staticClass:"button"},[_vm._v(_vm._s(_vm._f("i18n")('Actions')))])]),_vm._v(" "),_c('button',{staticClass:"button",on:{"click":function($event){$event.stopPropagation();return _vm.add()}}},[_vm._v("\n\t\t\t"+_vm._s(_vm._f("i18n")('Add New'))+"\n\t\t")]),_vm._v(" "),_c('button',{staticClass:"button button-primary",attrs:{"disabled":!_vm.updated},on:{"click":function($event){$event.stopPropagation();return _vm.save()}}},[_vm._v("\n\t\t\t"+_vm._s(_vm._f("i18n")('Save'))+"\n\t\t")])]},proxy:true},{key:"content",fn:function(){return [_c('div',{staticClass:"inside"},[_c(_vm.i18nSynonymsNote,{tag:"component"}),_vm._v(" "),(!_vm.synonyms.length)?_c('p',{staticClass:"description"},[_vm._v(_vm._s(_vm._f("i18n")('_no_synonyms_note')))]):_c('table',[_c('thead',[_c('tr',[_c('th',[_c('Tooltip',{attrs:{"content":_vm._f("i18n")('_synonyms_term_tooltip')}},[_vm._v(_vm._s(_vm._f("i18n")('Search Term(s)')))])],1),_vm._v(" "),_c('th',[_c('Tooltip',{attrs:{"content":_vm._f("i18n")('_synonyms_synonyms_tooltip')}},[_vm._v(_vm._s(_vm._f("i18n")('Synonym(s)')))])],1),_vm._v(" "),_c('th',[_c('Tooltip',{attrs:{"content":_vm._f("i18n")('_synonyms_replace_tooltip')}},[_vm._v(_vm._s(_vm._f("i18n")('Replace')))])],1)])]),_vm._v(" "),_c('draggable',{attrs:{"tag":'tbody'},model:{value:(_vm.synonyms),callback:function ($$v) {_vm.synonyms=$$v;},expression:"synonyms"}},_vm._l((_vm.synonyms),function(synonym,index){return _c('tr',{key:index + ( synonym.replace ? 'y' : 'n' )},[_c('td',[_c('div',{staticClass:"searchwp-synonyms-synonym-wrapper searchwp-actions--mini"},[_c('button',{staticClass:"button searchwp-button-subtle",on:{"click":function($event){return _vm.remove(index)}}},[_c('span',{staticClass:"dashicons dashicons-no-alt"})]),_vm._v(" "),_c('input',{directives:[{name:"model",rawName:"v-model",value:(synonym.sources),expression:"synonym.sources"}],attrs:{"type":"text"},domProps:{"value":(synonym.sources)},on:{"keyup":function($event){if(!$event.type.indexOf('key')&&_vm._k($event.keyCode,"enter",13,$event.key,"Enter")){ return null; }return _vm.add($event)},"input":function($event){if($event.target.composing){ return; }_vm.$set(synonym, "sources", $event.target.value);}}})])]),_vm._v(" "),_c('td',[_c('input',{directives:[{name:"model",rawName:"v-model",value:(synonym.synonyms),expression:"synonym.synonyms"}],attrs:{"type":"text"},domProps:{"value":(synonym.synonyms)},on:{"keyup":function($event){if(!$event.type.indexOf('key')&&_vm._k($event.keyCode,"enter",13,$event.key,"Enter")){ return null; }return _vm.add($event)},"input":function($event){if($event.target.composing){ return; }_vm.$set(synonym, "synonyms", $event.target.value);}}})]),_vm._v(" "),_c('td',[_c('Checkbox',{attrs:{"id":'searchwp-synonym-' + index,"value":1,"checked":!!synonym.replace},on:{"change":function(value) { synonym.replace = value; }}},[_vm._v(_vm._s(_vm._f("i18n")('Replace')))])],1)])}),0)],1)],1)]},proxy:true}])})}; var __vue_staticRenderFns__$3 = []; /* style */ const __vue_inject_styles__$3 = undefined; /* scoped */ const __vue_scope_id__$3 = undefined; /* module identifier */ const __vue_module_identifier__$3 = undefined; /* functional template */ const __vue_is_functional_template__$3 = false; /* style inject */ /* style inject SSR */ /* style inject shadow dom */ const __vue_component__$3 = /*#__PURE__*/normalizeComponent( { render: __vue_render__$3, staticRenderFns: __vue_staticRenderFns__$3 }, __vue_inject_styles__$3, __vue_script__$3, __vue_scope_id__$3, __vue_is_functional_template__$3, __vue_module_identifier__$3, false, undefined, undefined, undefined ); // var script$2 = { name: 'Modal', props: { name: { type: String, required: true }, label: { type: String, required: true }, showAction: { type: Boolean, required: false, default: true }, actionLabel: { type: String, required: false, default: __('Done') }, actionIsPrimary: { type: Boolean, required: false, default: true }, maxWidth: { type: Number, required: false, default: 640 } }, methods: { hide: function() { this.$modal.hide(this.name); this.$emit('hide'); } }, computed: { borderColor: function() { return _SEARCHWP.misc.colors.border; } } }; /* script */ const __vue_script__$2 = script$2; /* template */ var __vue_render__$2 = function () {var _vm=this;var _h=_vm.$createElement;var _c=_vm._self._c||_h;return _c('v-modal',{attrs:{"name":_vm.name,"minWidth":400,"maxWidth":_vm.maxWidth,"width":'80%',"adaptive":true,"clickToClose":false,"height":"auto","scrollable":true},on:{"closed":function($event){return _vm.$emit('closed')}}},[_c('div',{staticClass:"searchwp-modal"},[_c('div',{staticClass:"searchwp-modal-heading"},[_c('h3',{staticClass:"searchwp-modal-heading-label"},[_vm._v(_vm._s(_vm.label))]),_vm._v(" "),(_vm.showAction)?_c('ul',{staticClass:"searchwp-actions"},[_c('li',[_c('button',{class:['button', _vm.actionIsPrimary ? 'button-primary' : ''],attrs:{"type":"button"},on:{"click":_vm.hide}},[_vm._v(_vm._s(_vm.actionLabel))])])]):_vm._e()]),_vm._v(" "),_c('div',{staticClass:"searchwp-modal-content",style:({ borderColor: _vm.borderColor })},[_c('div',{staticClass:"searchwp-modal-content-container"},[_vm._t("default")],2)])])])}; var __vue_staticRenderFns__$2 = []; /* style */ const __vue_inject_styles__$2 = undefined; /* scoped */ const __vue_scope_id__$2 = undefined; /* module identifier */ const __vue_module_identifier__$2 = undefined; /* functional template */ const __vue_is_functional_template__$2 = false; /* style inject */ /* style inject SSR */ /* style inject shadow dom */ const __vue_component__$2 = /*#__PURE__*/normalizeComponent( { render: __vue_render__$2, staticRenderFns: __vue_staticRenderFns__$2 }, __vue_inject_styles__$2, __vue_script__$2, __vue_scope_id__$2, __vue_is_functional_template__$2, __vue_module_identifier__$2, false, undefined, undefined, undefined ); // var script$1 = { name: 'Stopwords', components: { Menu: __vue_component__$7, Modal: __vue_component__$2, MetaBox: __vue_component__$6 }, computed: { i18nStopwordsNote: function() { return { template: '<p>' + __('_stopwords_note') + '</p>' }; }, updated: function() { return !lodash_isequal(this.original, this.stopwords); }, availableStopwordsSuggestions: function() { return this.stopwordsSuggestions.filter(stopword => -1 === this.stopwords.indexOf(stopword.token)); }, menuItems: function() { let vm = this; let items = [ { text: __('Sort Alphabetically'), click: function() { vm.sort(); } }, { text: __('Restore Defaults'), click: function() { vm.stopwords = vm.defaults; } }, { text: __('Clear Stopwords'), click: function() { vm.clear(); } } ]; if (this.stopwordsSuggestions) { items.unshift({ text: __('View Suggestions'), click: function() { vm.$modal.show('suggestions'); } }); } return items; } }, methods: { focusInput: function(el) { this.$refs.stopwordsInput.$refs.search.focus(); }, add: function(stopword) { this.stopwords.push(stopword); }, clear: function() { this.stopwords = []; }, sort: function() { this.stopwords = this.stopwords.sort(function(a, b) { if (a.toLowerCase() > b.toLowerCase()) { return 1; } else if (b.toLowerCase() > a.toLowerCase()) { return -1; } else { return 0; } }); }, save: function() { let vm = this; jQuery.post(ajaxurl, { _ajax_nonce: _SEARCHWP.nonce, action: _SEARCHWP.prefix + 'stopwords_update', stopwords: JSON.stringify(vm.stopwords) }, function(response) { vm.stopwords = lodash_clonedeep(response.data); vm.original = lodash_clonedeep(response.data); }); }, normalize: function(stopwords) { this.stopwords = stopwords .reduce((arr, stopword) => arr.concat( stopword.split(',').map(stopword => stopword.trim().toLowerCase()) ), []) .filter((stopword, idx, array) => array.indexOf(stopword) === idx); }, checkForUnsaved: function(event) { if (this.updated) { event.preventDefault(); // Chrome requires returnValue to be set. event.returnValue = ''; } } }, created() { let vm = this; if (!_SEARCHWP.stopwords.suggest) { return; } jQuery.post(ajaxurl, { _ajax_nonce: _SEARCHWP.nonce, action: _SEARCHWP.prefix + 'stopwords_suggestions' }, function(response) { if (response.success) { vm.stopwordsSuggestions = response.data; vm.loadingSuggestions = false; } }); }, beforeMount() { window.addEventListener('beforeunload', this.checkForUnsaved); }, beforeDestroy() { window.removeEventListener('beforeunload', this.checkForUnsaved); }, data() { return { loadingSuggestions: true, original: lodash_clonedeep(_SEARCHWP.stopwords.list), stopwords: lodash_clonedeep(_SEARCHWP.stopwords.list), defaults: lodash_clonedeep(_SEARCHWP.stopwords.defaults), stopwordsSuggestions: [] } } }; /* script */ const __vue_script__$1 = script$1; /* template */ var __vue_render__$1 = function () {var _vm=this;var _h=_vm.$createElement;var _c=_vm._self._c||_h;return _c('MetaBox',{staticClass:"searchwp-stopwords",attrs:{"active":true,"label":'Stopwords'},scopedSlots:_vm._u([{key:"heading",fn:function(){return [_c('span',[_vm._v(_vm._s(_vm._f("i18n")('Stopwords')))]),_vm._v(" "),_c('Menu',{attrs:{"items":_vm.menuItems}},[_c('button',{staticClass:"button"},[_vm._v(_vm._s(_vm._f("i18n")('Actions')))])]),_vm._v(" "),_c('button',{staticClass:"button button-primary",attrs:{"disabled":!_vm.updated},on:{"click":function($event){$event.stopPropagation();return _vm.save()}}},[_vm._v("\n\t\t\t"+_vm._s(_vm._f("i18n")('Save'))+"\n\t\t")])]},proxy:true},{key:"content",fn:function(){return [_c('div',{staticClass:"inside searchwp-stopwords-input",on:{"click":_vm.focusInput}},[_c(_vm.i18nStopwordsNote,{tag:"component"}),_vm._v(" "),(!_vm.stopwords.length)?_c('p',{staticClass:"description"},[_vm._v(_vm._s(_vm._f("i18n")('_no_stopwords_note')))]):_vm._e(),_vm._v(" "),_c('v-select',{ref:"stopwordsInput",class:'searchwp-input-tags',attrs:{"multiple":true,"noDrop":true,"searchable":true,"filterable":false,"taggable":true},on:{"input":_vm.normalize},model:{value:(_vm.stopwords),callback:function ($$v) {_vm.stopwords=$$v;},expression:"stopwords"}})],1),_vm._v(" "),_c('Modal',{attrs:{"name":'suggestions',"label":_vm._f("i18n")('Suggested Stopwords'),"actionIsPrimary":true,"actionLabel":_vm._f("i18n")('Done')}},[_c('p',[_vm._v(_vm._s(_vm._f("i18n")('_suggested_stopwords_note')))]),_vm._v(" "),(!_vm.availableStopwordsSuggestions.length)?_c('p',{staticClass:"description"},[_vm._v(_vm._s(_vm._f("i18n")('_no_suggested_stopwords_note')))]):_c('table',{staticClass:"searchwp-data-table"},[_c('thead',[_c('tr',[_c('th',[_vm._v(_vm._s(_vm._f("i18n")('Term')))]),_vm._v(" "),_c('th',[_vm._v(_vm._s(_vm._f("i18n")('Prevalence')))]),_vm._v(" "),_c('th',[_vm._v(_vm._s(_vm._f("i18n")('Add Stopword')))])])]),_vm._v(" "),_c('tbody',_vm._l((_vm.availableStopwordsSuggestions),function(suggestion,index){return _c('tr',{key:index},[_c('td',[_vm._v(_vm._s(suggestion.token))]),_vm._v(" "),_c('td',[_vm._v(_vm._s(suggestion.prevalence)+"%")]),_vm._v(" "),_c('td',[_c('button',{staticClass:"button",on:{"click":function($event){return _vm.add(suggestion.token)}}},[_c('span',[_vm._v(_vm._s(_vm._f("i18n")('Add Stopword')))])])])])}),0)])])]},proxy:true}])})}; var __vue_staticRenderFns__$1 = []; /* style */ const __vue_inject_styles__$1 = undefined; /* scoped */ const __vue_scope_id__$1 = undefined; /* module identifier */ const __vue_module_identifier__$1 = undefined; /* functional template */ const __vue_is_functional_template__$1 = false; /* style inject */ /* style inject SSR */ /* style inject shadow dom */ const __vue_component__$1 = /*#__PURE__*/normalizeComponent( { render: __vue_render__$1, staticRenderFns: __vue_staticRenderFns__$1 }, __vue_inject_styles__$1, __vue_script__$1, __vue_scope_id__$1, __vue_is_functional_template__$1, __vue_module_identifier__$1, false, undefined, undefined, undefined ); // var script = { name: 'Settings', components: { Stopwords: __vue_component__$1, Synonyms: __vue_component__$3 } }; /* script */ const __vue_script__ = script; /* template */ var __vue_render__ = function () {var _vm=this;var _h=_vm.$createElement;var _c=_vm._self._c||_h;return _c('div',{class:['searchwp-settings' ]},[_c('div',{staticClass:"searchwp-settings-view-header"},[_c('h1',[_vm._v(_vm._s(_vm._f("i18n")('SearchWP Settings')))])]),_vm._v(" "),_c('div',{class:['searchwp-settings-types' ]},[_c('Stopwords'),_vm._v(" "),_c('Synonyms')],1)])}; var __vue_staticRenderFns__ = []; /* style */ const __vue_inject_styles__ = undefined; /* scoped */ const __vue_scope_id__ = undefined; /* module identifier */ const __vue_module_identifier__ = undefined; /* functional template */ const __vue_is_functional_template__ = false; /* style inject */ /* style inject SSR */ /* style inject shadow dom */ const __vue_component__ = /*#__PURE__*/normalizeComponent( { render: __vue_render__, staticRenderFns: __vue_staticRenderFns__ }, __vue_inject_styles__, __vue_script__, __vue_scope_id__, __vue_is_functional_template__, __vue_module_identifier__, false, undefined, undefined, undefined ); Vue.use(VueCollapse); Vue.use(plugin); Vue.use(VModal, {componentName: 'v-modal'}); vSelect.props.components.default = () => ({ Deselect: { render: createElement => createElement('span', { class: 'dashicons dashicons-no-alt' } ), }, OpenIndicator: { render: createElement => createElement('span', { class: 'dashicons dashicons-arrow-down-alt2' } ), }, }); Vue.component('v-select', vSelect); Vue.filter('i18n', function (source, placeholders = []) { return __( source, placeholders ); }); new Vue({ el: '#searchwp-settings', render: h => h(__vue_component__) }); }());