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x=class{baseUrl=\"\";securityData=null;securityWorker;abortControllers=new Map;customFetch=(...e)=>fetch(...e);baseApiParams={credentials:\"same-origin\",headers:{},redirect:\"follow\",referrerPolicy:\"no-referrer\"};constructor(e={}){Object.assign(this,e)}setSecurityData=e=>{this.securityData=e};encodeQueryParam(e,t){return`${encodeURIComponent(e)}=${encodeURIComponent(typeof t==\"number\"?t:`${t}`)}`}addQueryParam(e,t){return this.encodeQueryParam(t,e[t])}addArrayQueryParam(e,t){return e[t].map(n=>this.encodeQueryParam(t,n)).join(\"&\")}toQueryString(e){let t=e||{};return Object.keys(t).filter(n=>typeof t[n]<\"u\").map(n=>Array.isArray(t[n])?this.addArrayQueryParam(t,n):this.addQueryParam(t,n)).join(\"&\")}addQueryParams(e){let t=this.toQueryString(e);return t?`?${t}`:\"\"}contentFormatters={[\"application/json\"]:e=>e!==null&&(typeof e==\"object\"||typeof e==\"string\")?JSON.stringify(e):e,[\"text/plain\"]:e=>e!==null&&typeof e!=\"string\"?JSON.stringify(e):e,[\"multipart/form-data\"]:e=>Object.keys(e||{}).reduce((t,r)=>{let n=e[r];return t.append(r,n instanceof Blob?n:typeof n==\"object\"&&n!==null?JSON.stringify(n):`${n}`),t},new FormData),[\"application/x-www-form-urlencoded\"]:e=>this.toQueryString(e)};mergeRequestParams(e,t){return{...this.baseApiParams,...e,...t||{},headers:{...this.baseApiParams.headers||{},...e.headers||{},...t&&t.headers||{}}}}createAbortSignal=e=>{if(this.abortControllers.has(e)){let r=this.abortControllers.get(e);return r?r.signal:void 0}let t=new AbortController;return this.abortControllers.set(e,t),t.signal};abortRequest=e=>{let t=this.abortControllers.get(e);t&&(t.abort(),this.abortControllers.delete(e))};request=async({body:e,secure:t,path:r,type:n,query:a,format:E,baseUrl:g,cancelToken:o,...C})=>{let y=(typeof t==\"boolean\"?t:this.baseApiParams.secure)&&this.securityWorker&&await this.securityWorker(this.securityData)||{},s=this.mergeRequestParams(C,y),d=a&&this.toQueryString(a),S=this.contentFormatters[n||\"application/json\"],l=E||s.format;return this.customFetch(`${g||this.baseUrl||\"\"}${r}${d?`?${d}`:\"\"}`,{...s,headers:{...s.headers||{},...n&&n!==\"multipart/form-data\"?{\"Content-Type\":n}:{}},signal:o?this.createAbortSignal(o):s.signal,body:typeof e>\"u\"||e===null?null:S(e)}).then(async c=>{let i=c;i.data=null,i.error=null;let u=l?await c[l]().then(p=>(i.ok?i.data=p:i.error=p,i)).catch(p=>(i.error=p,i)):i;if(o&&this.abortControllers.delete(o),!c.ok)throw u;return u})}};var I=class extends x{setLocale=(e,t={})=>this.request({path:`/api/client-area/locale/${e}`,method:\"POST\",secure:!0,...t});download=(e,t,r={})=>this.request({path:`/api/client-area/application/${e}/file`,method:\"POST\",body:t,secure:!0,type:\"application/json\",...r});upload=(e,t,r={})=>this.request({path:`/api/client-area/application/${e}/file`,method:\"PUT\",body:t,secure:!0,type:\"multipart/form-data\",...r});startLivenessCheckData=(e,t={})=>this.request({path:`/api/client-area/application/${e}/liveness-check`,method:\"GET\",secure:!0,...t});finalizeLivenessCheck=(e,t={})=>this.request({path:`/api/client-area/application/${e}/liveness-check`,method:\"POST\",secure:!0,...t});connectionGet=(e,t,r={})=>this.request({path:`/api/client-area/application/${e}/connection/${t}`,method:\"GET\",secure:!0,...r});entityDisconnectEntity=(e,t,r,n,a={})=>this.request({path:`/api/client-area/application/${e}/entity/${t}/${r}/${n}`,method:\"DELETE\",secure:!0,...a});entityConnectExisting=(e,t,r,n,a,E={})=>this.request({path:`/api/client-area/application/${e}/entity/${t}/${r}/${n}`,method:\"PUT\",body:a,secure:!0,type:\"application/json\",...E});entityConnectNew=(e,t,r,n,a,E={})=>this.request({path:`/api/client-area/application/${e}/entity/${t}/${r}/new/${n}`,method:\"PUT\",body:a,secure:!0,type:\"application/json\",...E});segmentsRead=(e,t,r={})=>this.request({path:`/api/client-area/application/${e}/segments`,method:\"POST\",body:t,secure:!0,type:\"application/json\",...r});segmentsWrite=(e,t,r={})=>this.request({path:`/api/client-area/application/${e}/segments`,method:\"PUT\",body:t,secure:!0,type:\"application/json\",...r});segmentsBasicInfoRead=(e,t,r={})=>this.request({path:`/api/client-area/application/${e}/${t}/basic`,method:\"GET\",secure:!0,...r});listApplications=(e={})=>this.request({path:\"/api/client-area/applications\",method:\"GET\",secure:!0,...e});createApplication=(e,t={})=>this.request({path:\"/api/client-area/applications\",method:\"POST\",body:e,secure:!0,type:\"application/json\",...t});entityGet=(e,t={})=>this.request({path:`/api/client-area/application/${e}`,method:\"GET\",secure:!0,...t});submitApplication=(e,t={})=>this.request({path:`/api/client-area/application/${e}`,method:\"POST\",secure:!0,...t});cancelApplication=(e,t={})=>this.request({path:`/api/client-area/application/${e}`,method:\"DELETE\",secure:!0,...t});listClientCaseRequests=(e={})=>this.request({path:\"/api/client-area/client_case_requests\",method:\"GET\",secure:!0,...e});openClientCaseRequest=(e,t={})=>this.request({path:`/api/client-area/client_case_requests/${e}`,method:\"GET\",secure:!0,...t});respondClientCaseRequest=(e,t,r={})=>this.request({path:`/api/client-area/client_case_requests/${e}`,method:\"POST\",body:t,secure:!0,type:\"application/json\",...r});uploadClientCaseRequestFile=(e,t,r={})=>this.request({path:`/api/client-area/client_case_requests/${e}/file`,method:\"PUT\",body:t,secure:!0,type:\"multipart/form-data\",...r});deleteClientCaseRequestFile=(e,t,r={})=>this.request({path:`/api/client-area/client_case_requests/${e}/file`,method:\"DELETE\",body:t,secure:!0,type:\"application/json\",...r});login=(e,t={})=>this.request({path:\"/api/client-area/login\",method:\"POST\",body:e,secure:!0,type:\"application/json\",...t})};var D=class{baseUrl=\"\";securityData=null;securityWorker;abortControllers=new Map;customFetch=(...e)=>fetch(...e);baseApiParams={credentials:\"same-origin\",headers:{},redirect:\"follow\",referrerPolicy:\"no-referrer\"};constructor(e={}){Object.assign(this,e)}setSecurityData=e=>{this.securityData=e};encodeQueryParam(e,t){return`${encodeURIComponent(e)}=${encodeURIComponent(typeof t==\"number\"?t:`${t}`)}`}addQueryParam(e,t){return this.encodeQueryParam(t,e[t])}addArrayQueryParam(e,t){return e[t].map(n=>this.encodeQueryParam(t,n)).join(\"&\")}toQueryString(e){let t=e||{};return Object.keys(t).filter(n=>typeof t[n]<\"u\").map(n=>Array.isArray(t[n])?this.addArrayQueryParam(t,n):this.addQueryParam(t,n)).join(\"&\")}addQueryParams(e){let t=this.toQueryString(e);return t?`?${t}`:\"\"}contentFormatters={[\"application/json\"]:e=>e!==null&&(typeof e==\"object\"||typeof e==\"string\")?JSON.stringify(e):e,[\"text/plain\"]:e=>e!==null&&typeof e!=\"string\"?JSON.stringify(e):e,[\"multipart/form-data\"]:e=>Object.keys(e||{}).reduce((t,r)=>{let n=e[r];return t.append(r,n instanceof Blob?n:typeof n==\"object\"&&n!==null?JSON.stringify(n):`${n}`),t},new FormData),[\"application/x-www-form-urlencoded\"]:e=>this.toQueryString(e)};mergeRequestParams(e,t){return{...this.baseApiParams,...e,...t||{},headers:{...this.baseApiParams.headers||{},...e.headers||{},...t&&t.headers||{}}}}createAbortSignal=e=>{if(this.abortControllers.has(e)){let r=this.abortControllers.get(e);return r?r.signal:void 0}let t=new AbortController;return this.abortControllers.set(e,t),t.signal};abortRequest=e=>{let t=this.abortControllers.get(e);t&&(t.abort(),this.abortControllers.delete(e))};request=async({body:e,secure:t,path:r,type:n,query:a,format:E,baseUrl:g,cancelToken:o,...C})=>{let y=(typeof t==\"boolean\"?t:this.baseApiParams.secure)&&this.securityWorker&&await this.securityWorker(this.securityData)||{},s=this.mergeRequestParams(C,y),d=a&&this.toQueryString(a),S=this.contentFormatters[n||\"application/json\"],l=E||s.format;return this.customFetch(`${g||this.baseUrl||\"\"}${r}${d?`?${d}`:\"\"}`,{...s,headers:{...s.headers||{},...n&&n!==\"multipart/form-data\"?{\"Content-Type\":n}:{}},signal:o?this.createAbortSignal(o):s.signal,body:typeof e>\"u\"||e===null?null:S(e)}).then(async c=>{let i=c;i.data=null,i.error=null;let u=l?await c[l]().then(p=>(i.ok?i.data=p:i.error=p,i)).catch(p=>(i.error=p,i)):i;if(o&&this.abortControllers.delete(o),!c.ok)throw u;return u})}};var f=class extends D{getFrontendIr=(e,t,r={})=>this.request({path:`/${e}/gen.${t}.frontend.ir.json`,method:\"GET\",...r});getScripts=(e,t={})=>this.request({path:`/${e}/gen.scripts.json`,method:\"GET\",...t});getClientAreaIr=(e,t,r={})=>this.request({path:`/${e}/gen.${t}.client_area.ir.json`,method:\"GET\",...r})};var T=class{baseUrl=\"\";securityData=null;securityWorker;abortControllers=new Map;customFetch=(...e)=>fetch(...e);baseApiParams={credentials:\"same-origin\",headers:{},redirect:\"follow\",referrerPolicy:\"no-referrer\"};constructor(e={}){Object.assign(this,e)}setSecurityData=e=>{this.securityData=e};encodeQueryParam(e,t){return`${encodeURIComponent(e)}=${encodeURIComponent(typeof t==\"number\"?t:`${t}`)}`}addQueryParam(e,t){return this.encodeQueryParam(t,e[t])}addArrayQueryParam(e,t){return e[t].map(n=>this.encodeQueryParam(t,n)).join(\"&\")}toQueryString(e){let t=e||{};return Object.keys(t).filter(n=>typeof t[n]<\"u\").map(n=>Array.isArray(t[n])?this.addArrayQueryParam(t,n):this.addQueryParam(t,n)).join(\"&\")}addQueryParams(e){let t=this.toQueryString(e);return t?`?${t}`:\"\"}contentFormatters={[\"application/json\"]:e=>e!==null&&(typeof e==\"object\"||typeof e==\"string\")?JSON.stringify(e):e,[\"text/plain\"]:e=>e!==null&&typeof 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this.securityWorker(this.securityData)||{},s=this.mergeRequestParams(C,y),d=a&&this.toQueryString(a),S=this.contentFormatters[n||\"application/json\"],l=E||s.format;return this.customFetch(`${g||this.baseUrl||\"\"}${r}${d?`?${d}`:\"\"}`,{...s,headers:{...s.headers||{},...n&&n!==\"multipart/form-data\"?{\"Content-Type\":n}:{}},signal:o?this.createAbortSignal(o):s.signal,body:typeof e>\"u\"||e===null?null:S(e)}).then(async c=>{let i=c;i.data=null,i.error=null;let u=l?await c[l]().then(p=>(i.ok?i.data=p:i.error=p,i)).catch(p=>(i.error=p,i)):i;if(o&&this.abortControllers.delete(o),!c.ok)throw u;return u})}};var v=class extends T{tokenControllerMockGuard=(e={})=>this.request({path:\"/tokens/mock\",method:\"GET\",...e});tokenControllerCreateToken=(e,t={})=>this.request({path:\"/tokens\",method:\"POST\",body:e,type:\"application/json\",...t});tokenControllerListTokens=(e={})=>this.request({path:\"/tokens\",method:\"GET\",...e});tokenControllerDeleteToken=(e,t={})=>this.request({path:`/tokens/${e}`,method:\"DELETE\",...t})};var b=class{baseUrl=\"\";securityData=null;securityWorker;abortControllers=new Map;customFetch=(...e)=>fetch(...e);baseApiParams={credentials:\"same-origin\",headers:{},redirect:\"follow\",referrerPolicy:\"no-referrer\"};constructor(e={}){Object.assign(this,e)}setSecurityData=e=>{this.securityData=e};encodeQueryParam(e,t){return`${encodeURIComponent(e)}=${encodeURIComponent(typeof t==\"number\"?t:`${t}`)}`}addQueryParam(e,t){return this.encodeQueryParam(t,e[t])}addArrayQueryParam(e,t){return e[t].map(n=>this.encodeQueryParam(t,n)).join(\"&\")}toQueryString(e){let t=e||{};return Object.keys(t).filter(n=>typeof t[n]<\"u\").map(n=>Array.isArray(t[n])?this.addArrayQueryParam(t,n):this.addQueryParam(t,n)).join(\"&\")}addQueryParams(e){let t=this.toQueryString(e);return t?`?${t}`:\"\"}contentFormatters={[\"application/json\"]:e=>e!==null&&(typeof e==\"object\"||typeof e==\"string\")?JSON.stringify(e):e,[\"text/plain\"]:e=>e!==null&&typeof e!=\"string\"?JSON.stringify(e):e,[\"multipart/form-data\"]:e=>Object.keys(e||{}).reduce((t,r)=>{let n=e[r];return t.append(r,n instanceof Blob?n:typeof n==\"object\"&&n!==null?JSON.stringify(n):`${n}`),t},new FormData),[\"application/x-www-form-urlencoded\"]:e=>this.toQueryString(e)};mergeRequestParams(e,t){return{...this.baseApiParams,...e,...t||{},headers:{...this.baseApiParams.headers||{},...e.headers||{},...t&&t.headers||{}}}}createAbortSignal=e=>{if(this.abortControllers.has(e)){let r=this.abortControllers.get(e);return r?r.signal:void 0}let t=new AbortController;return this.abortControllers.set(e,t),t.signal};abortRequest=e=>{let t=this.abortControllers.get(e);t&&(t.abort(),this.abortControllers.delete(e))};request=async({body:e,secure:t,path:r,type:n,query:a,format:E,baseUrl:g,cancelToken:o,...C})=>{let y=(typeof t==\"boolean\"?t:this.baseApiParams.secure)&&this.securityWorker&&await this.securityWorker(this.securityData)||{},s=this.mergeRequestParams(C,y),d=a&&this.toQueryString(a),S=this.contentFormatters[n||\"application/json\"],l=E||s.format;return this.customFetch(`${g||this.baseUrl||\"\"}${r}${d?`?${d}`:\"\"}`,{...s,headers:{...s.headers||{},...n&&n!==\"multipart/form-data\"?{\"Content-Type\":n}:{}},signal:o?this.createAbortSignal(o):s.signal,body:typeof e>\"u\"||e===null?null:S(e)}).then(async c=>{let i=c;i.data=null,i.error=null;let u=l?await c[l]().then(p=>(i.ok?i.data=p:i.error=p,i)).catch(p=>(i.error=p,i)):i;if(o&&this.abortControllers.delete(o),!c.ok)throw u;return u})}};var P=class extends b{getConfig=(e,t={})=>this.request({path:`/api/config/${e}`,method:\"GET\",...t});getClientAreaSettings=(e={})=>this.request({path:\"/api/client-area/settings\",method:\"GET\",...e});getClientAreaSettingsByTenant=(e,t={})=>this.request({path:`/api/client-area/${e}`,method:\"GET\",...t})};var R=m=>{let e;return{init:t=>{e=new m({baseUrl:t})},getInstance:()=>{if(!e)throw new Error(\"API client is not initialized\");return e}}},O=m=>{let e;return{init:(t,r)=>{e=new m({baseUrl:t,customFetch:r})},getInstance:()=>{if(!e)throw new Error(\"API client is not initialized\");return e}}};var ue=O(h),me=R(h),Ee=O(I),ge=R(I),Ce=R(f),ye=R(P),Se=O(v);var N={};var _={};var F={};var M={};var U={};export{ue as BackendClient,me as BackendNoAuthClient,N as BackendTypes,Ee as CABackendClient,ge as CABackendNoAuthClient,_ as CATypes,Ce as CSClient,F as CSTypes,Se as PublicApiClient,M as PublicApiTypes,ye as TDMClient,U as TDMTypes};\n//# sourceMappingURL=index.mjs.map","!function(t,e){\"object\"==typeof exports&&\"undefined\"!=typeof module?module.exports=e():\"function\"==typeof define&&define.amd?define(e):(t=\"undefined\"!=typeof globalThis?globalThis:t||self).dayjs=e()}(this,(function(){\"use strict\";var t=1e3,e=6e4,n=36e5,r=\"millisecond\",i=\"second\",s=\"minute\",u=\"hour\",a=\"day\",o=\"week\",f=\"month\",h=\"quarter\",c=\"year\",d=\"date\",l=\"Invalid Date\",$=/^(\\d{4})[-/]?(\\d{1,2})?[-/]?(\\d{0,2})[Tt\\s]*(\\d{1,2})?:?(\\d{1,2})?:?(\\d{1,2})?[.:]?(\\d+)?$/,y=/\\[([^\\]]+)]|Y{1,4}|M{1,4}|D{1,2}|d{1,4}|H{1,2}|h{1,2}|a|A|m{1,2}|s{1,2}|Z{1,2}|SSS/g,M={name:\"en\",weekdays:\"Sunday_Monday_Tuesday_Wednesday_Thursday_Friday_Saturday\".split(\"_\"),months:\"January_February_March_April_May_June_July_August_September_October_November_December\".split(\"_\"),ordinal:function(t){var e=[\"th\",\"st\",\"nd\",\"rd\"],n=t%100;return\"[\"+t+(e[(n-20)%10]||e[n]||e[0])+\"]\"}},m=function(t,e,n){var r=String(t);return!r||r.length>=e?t:\"\"+Array(e+1-r.length).join(n)+t},v={s:m,z:function(t){var e=-t.utcOffset(),n=Math.abs(e),r=Math.floor(n/60),i=n%60;return(e<=0?\"+\":\"-\")+m(r,2,\"0\")+\":\"+m(i,2,\"0\")},m:function t(e,n){if(e.date()1)return t(u[0])}else{var a=e.name;D[a]=e,i=a}return!r&&i&&(g=i),i||!r&&g},w=function(t,e){if(p(t))return t.clone();var n=\"object\"==typeof e?e:{};return n.date=t,n.args=arguments,new _(n)},O=v;O.l=S,O.i=p,O.w=function(t,e){return w(t,{locale:e.$L,utc:e.$u,x:e.$x,$offset:e.$offset})};var _=function(){function M(t){this.$L=S(t.locale,null,!0),this.parse(t)}var m=M.prototype;return m.parse=function(t){this.$d=function(t){var e=t.date,n=t.utc;if(null===e)return new Date(NaN);if(O.u(e))return new Date;if(e instanceof Date)return new Date(e);if(\"string\"==typeof e&&!/Z$/i.test(e)){var r=e.match($);if(r){var i=r[2]-1||0,s=(r[7]||\"0\").substring(0,3);return n?new Date(Date.UTC(r[1],i,r[3]||1,r[4]||0,r[5]||0,r[6]||0,s)):new 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{String} Readable file size String\n */\nfunction filesize (arg, {\n\tbits = false,\n\tpad = false,\n\tbase = -1,\n\tround = 2,\n\tlocale = EMPTY,\n\tlocaleOptions = {},\n\tseparator = EMPTY,\n\tspacer = SPACE,\n\tsymbols = {},\n\tstandard = EMPTY,\n\toutput = STRING,\n\tfullform = false,\n\tfullforms = [],\n\texponent = -1,\n\troundingMethod = ROUND,\n\tprecision = 0\n} = {}) {\n\tlet e = exponent,\n\t\tnum = Number(arg),\n\t\tresult = [],\n\t\tval = 0,\n\t\tu = EMPTY;\n\n\t// Sync base & standard\n\tif (base === -1 && standard.length === 0) {\n\t\tbase = 10;\n\t\tstandard = JEDEC;\n\t} else if (base === -1 && standard.length > 0) {\n\t\tstandard = standard === IEC ? IEC : JEDEC;\n\t\tbase = standard === IEC ? 2 : 10;\n\t} else {\n\t\tbase = base === 2 ? 2 : 10;\n\t\tstandard = base === 10 ? JEDEC : standard === JEDEC ? JEDEC : IEC;\n\t}\n\n\tconst ceil = base === 10 ? 1000 : 1024,\n\t\tfull = fullform === true,\n\t\tneg = num < 0,\n\t\troundingFunc = Math[roundingMethod];\n\n\tif (isNaN(arg)) {\n\t\tthrow new TypeError(INVALID_NUMBER);\n\t}\n\n\tif (typeof roundingFunc !== FUNCTION) {\n\t\tthrow new TypeError(INVALID_ROUND);\n\t}\n\n\t// Flipping a negative number to determine the size\n\tif (neg) {\n\t\tnum = -num;\n\t}\n\n\t// Determining the exponent\n\tif (e === -1 || isNaN(e)) {\n\t\te = Math.floor(Math.log(num) / Math.log(ceil));\n\n\t\tif (e < 0) {\n\t\t\te = 0;\n\t\t}\n\t}\n\n\t// Exceeding supported length, time to reduce & multiply\n\tif (e > 8) {\n\t\tif (precision > 0) {\n\t\t\tprecision += 8 - e;\n\t\t}\n\n\t\te = 8;\n\t}\n\n\tif (output === EXPONENT) {\n\t\treturn e;\n\t}\n\n\t// Zero is now a special case because bytes divide by 1\n\tif (num === 0) {\n\t\tresult[0] = 0;\n\t\tu = result[1] = strings.symbol[standard][bits ? BITS : BYTES][e];\n\t} else {\n\t\tval = num / (base === 2 ? Math.pow(2, e * 10) : Math.pow(1000, e));\n\n\t\tif (bits) {\n\t\t\tval = val * 8;\n\n\t\t\tif (val >= ceil && e < 8) {\n\t\t\t\tval = val / ceil;\n\t\t\t\te++;\n\t\t\t}\n\t\t}\n\n\t\tconst p = Math.pow(10, e > 0 ? round : 0);\n\t\tresult[0] = roundingFunc(val * p) / p;\n\n\t\tif (result[0] === ceil && e < 8 && exponent === -1) {\n\t\t\tresult[0] = 1;\n\t\t\te++;\n\t\t}\n\n\t\tu = result[1] = base === 10 && e === 1 ? bits ? SI_KBIT : SI_KBYTE : strings.symbol[standard][bits ? BITS : BYTES][e];\n\t}\n\n\t// Decorating a 'diff'\n\tif (neg) {\n\t\tresult[0] = -result[0];\n\t}\n\n\t// Setting optional precision\n\tif (precision > 0) {\n\t\tresult[0] = result[0].toPrecision(precision);\n\t}\n\n\t// Applying custom symbol\n\tresult[1] = symbols[result[1]] || result[1];\n\n\tif (locale === true) {\n\t\tresult[0] = result[0].toLocaleString();\n\t} else if (locale.length > 0) {\n\t\tresult[0] = result[0].toLocaleString(locale, localeOptions);\n\t} else if (separator.length > 0) {\n\t\tresult[0] = result[0].toString().replace(PERIOD, separator);\n\t}\n\n\tif (pad && Number.isInteger(result[0]) === false && round > 0) {\n\t\tconst x = separator || PERIOD,\n\t\t\ttmp = result[0].toString().split(x),\n\t\t\ts = tmp[1] || EMPTY,\n\t\t\tl = s.length,\n\t\t\tn = round - l;\n\n\t\tresult[0] = `${tmp[0]}${x}${s.padEnd(l + n, ZERO)}`;\n\t}\n\n\tif (full) {\n\t\tresult[1] = fullforms[e] ? fullforms[e] : strings.fullform[standard][e] + (bits ? BIT : BYTE) + (result[0] === 1 ? EMPTY : S);\n\t}\n\n\t// Returning Array, Object, or String (default)\n\treturn output === ARRAY ? result : output === OBJECT ? {\n\t\tvalue: result[0],\n\t\tsymbol: result[1],\n\t\texponent: e,\n\t\tunit: u\n\t} : result.join(spacer);\n}\n\n// Partial application for functional programming\nfilesize.partial = opt => arg => filesize(arg, opt);\n\nexport { filesize as default };\n","!function(t,s){\"object\"==typeof exports&&\"undefined\"!=typeof module?module.exports=s():\"function\"==typeof define&&define.amd?define(s):(t=\"undefined\"!=typeof globalThis?globalThis:t||self).dayjs_plugin_duration=s()}(this,(function(){\"use strict\";var t,s,n=1e3,i=6e4,e=36e5,r=864e5,o=/\\[([^\\]]+)]|Y{1,4}|M{1,4}|D{1,2}|d{1,4}|H{1,2}|h{1,2}|a|A|m{1,2}|s{1,2}|Z{1,2}|SSS/g,u=31536e6,h=2592e6,a=/^(-|\\+)?P(?:([-+]?[0-9,.]*)Y)?(?:([-+]?[0-9,.]*)M)?(?:([-+]?[0-9,.]*)W)?(?:([-+]?[0-9,.]*)D)?(?:T(?:([-+]?[0-9,.]*)H)?(?:([-+]?[0-9,.]*)M)?(?:([-+]?[0-9,.]*)S)?)?$/,d={years:u,months:h,days:r,hours:e,minutes:i,seconds:n,milliseconds:1,weeks:6048e5},c=function(t){return t instanceof p},f=function(t,s,n){return new p(t,n,s.$l)},m=function(t){return s.p(t)+\"s\"},l=function(t){return t<0},$=function(t){return l(t)?Math.ceil(t):Math.floor(t)},y=function(t){return Math.abs(t)},g=function(t,s){return t?l(t)?{negative:!0,format:\"\"+y(t)+s}:{negative:!1,format:\"\"+t+s}:{negative:!1,format:\"\"}},p=function(){function l(t,s,n){var i=this;if(this.$d={},this.$l=n,void 0===t&&(this.$ms=0,this.parseFromMilliseconds()),s)return f(t*d[m(s)],this);if(\"number\"==typeof t)return this.$ms=t,this.parseFromMilliseconds(),this;if(\"object\"==typeof t)return Object.keys(t).forEach((function(s){i.$d[m(s)]=t[s]})),this.calMilliseconds(),this;if(\"string\"==typeof t){var e=t.match(a);if(e){var r=e.slice(2).map((function(t){return null!=t?Number(t):0}));return this.$d.years=r[0],this.$d.months=r[1],this.$d.weeks=r[2],this.$d.days=r[3],this.$d.hours=r[4],this.$d.minutes=r[5],this.$d.seconds=r[6],this.calMilliseconds(),this}}return this}var y=l.prototype;return y.calMilliseconds=function(){var t=this;this.$ms=Object.keys(this.$d).reduce((function(s,n){return s+(t.$d[n]||0)*d[n]}),0)},y.parseFromMilliseconds=function(){var t=this.$ms;this.$d.years=$(t/u),t%=u,this.$d.months=$(t/h),t%=h,this.$d.days=$(t/r),t%=r,this.$d.hours=$(t/e),t%=e,this.$d.minutes=$(t/i),t%=i,this.$d.seconds=$(t/n),t%=n,this.$d.milliseconds=t},y.toISOString=function(){var t=g(this.$d.years,\"Y\"),s=g(this.$d.months,\"M\"),n=+this.$d.days||0;this.$d.weeks&&(n+=7*this.$d.weeks);var i=g(n,\"D\"),e=g(this.$d.hours,\"H\"),r=g(this.$d.minutes,\"M\"),o=this.$d.seconds||0;this.$d.milliseconds&&(o+=this.$d.milliseconds/1e3);var u=g(o,\"S\"),h=t.negative||s.negative||i.negative||e.negative||r.negative||u.negative,a=e.format||r.format||u.format?\"T\":\"\",d=(h?\"-\":\"\")+\"P\"+t.format+s.format+i.format+a+e.format+r.format+u.format;return\"P\"===d||\"-P\"===d?\"P0D\":d},y.toJSON=function(){return this.toISOString()},y.format=function(t){var n=t||\"YYYY-MM-DDTHH:mm:ss\",i={Y:this.$d.years,YY:s.s(this.$d.years,2,\"0\"),YYYY:s.s(this.$d.years,4,\"0\"),M:this.$d.months,MM:s.s(this.$d.months,2,\"0\"),D:this.$d.days,DD:s.s(this.$d.days,2,\"0\"),H:this.$d.hours,HH:s.s(this.$d.hours,2,\"0\"),m:this.$d.minutes,mm:s.s(this.$d.minutes,2,\"0\"),s:this.$d.seconds,ss:s.s(this.$d.seconds,2,\"0\"),SSS:s.s(this.$d.milliseconds,3,\"0\")};return n.replace(o,(function(t,s){return s||String(i[t])}))},y.as=function(t){return this.$ms/d[m(t)]},y.get=function(t){var s=this.$ms,n=m(t);return\"milliseconds\"===n?s%=1e3:s=\"weeks\"===n?$(s/d[n]):this.$d[n],0===s?0:s},y.add=function(t,s,n){var i;return i=s?t*d[m(s)]:c(t)?t.$ms:f(t,this).$ms,f(this.$ms+i*(n?-1:1),this)},y.subtract=function(t,s){return this.add(t,s,!0)},y.locale=function(t){var s=this.clone();return s.$l=t,s},y.clone=function(){return f(this.$ms,this)},y.humanize=function(s){return t().add(this.$ms,\"ms\").locale(this.$l).fromNow(!s)},y.milliseconds=function(){return this.get(\"milliseconds\")},y.asMilliseconds=function(){return this.as(\"milliseconds\")},y.seconds=function(){return this.get(\"seconds\")},y.asSeconds=function(){return this.as(\"seconds\")},y.minutes=function(){return this.get(\"minutes\")},y.asMinutes=function(){return this.as(\"minutes\")},y.hours=function(){return this.get(\"hours\")},y.asHours=function(){return this.as(\"hours\")},y.days=function(){return this.get(\"days\")},y.asDays=function(){return this.as(\"days\")},y.weeks=function(){return this.get(\"weeks\")},y.asWeeks=function(){return this.as(\"weeks\")},y.months=function(){return this.get(\"months\")},y.asMonths=function(){return this.as(\"months\")},y.years=function(){return this.get(\"years\")},y.asYears=function(){return this.as(\"years\")},l}();return function(n,i,e){t=e,s=e().$utils(),e.duration=function(t,s){var n=e.locale();return f(t,{$l:n},s)},e.isDuration=c;var r=i.prototype.add,o=i.prototype.subtract;i.prototype.add=function(t,s){return c(t)&&(t=t.asMilliseconds()),r.bind(this)(t,s)},i.prototype.subtract=function(t,s){return c(t)&&(t=t.asMilliseconds()),o.bind(this)(t,s)}}}));","var util;\n(function (util) {\n util.assertEqual = (val) => val;\n function assertIs(_arg) { }\n util.assertIs = assertIs;\n function assertNever(_x) {\n throw new Error();\n }\n util.assertNever = assertNever;\n util.arrayToEnum = (items) => {\n const obj = {};\n for (const item of items) {\n obj[item] = item;\n }\n return obj;\n };\n util.getValidEnumValues = (obj) => {\n const validKeys = util.objectKeys(obj).filter((k) => typeof obj[obj[k]] !== \"number\");\n const filtered = {};\n for (const k of validKeys) {\n filtered[k] = obj[k];\n }\n return util.objectValues(filtered);\n };\n util.objectValues = (obj) => {\n return util.objectKeys(obj).map(function (e) {\n return obj[e];\n });\n };\n util.objectKeys = typeof Object.keys === \"function\" // eslint-disable-line ban/ban\n ? (obj) => Object.keys(obj) // eslint-disable-line ban/ban\n : (object) => {\n const keys = [];\n for (const key in object) {\n if (Object.prototype.hasOwnProperty.call(object, key)) {\n keys.push(key);\n }\n }\n return keys;\n };\n util.find = (arr, checker) => {\n for (const item of arr) {\n if (checker(item))\n return item;\n }\n return undefined;\n };\n util.isInteger = typeof Number.isInteger === \"function\"\n ? (val) => Number.isInteger(val) // eslint-disable-line ban/ban\n : (val) => typeof val === \"number\" && isFinite(val) && Math.floor(val) === val;\n function joinValues(array, separator = \" | \") {\n return array\n .map((val) => (typeof val === \"string\" ? `'${val}'` : val))\n .join(separator);\n }\n util.joinValues = joinValues;\n util.jsonStringifyReplacer = (_, value) => {\n if (typeof value === \"bigint\") {\n return value.toString();\n }\n return value;\n };\n})(util || (util = {}));\nvar objectUtil;\n(function (objectUtil) {\n objectUtil.mergeShapes = (first, second) => {\n return {\n ...first,\n ...second, // second overwrites first\n };\n };\n})(objectUtil || (objectUtil = {}));\nconst ZodParsedType = util.arrayToEnum([\n \"string\",\n \"nan\",\n \"number\",\n \"integer\",\n \"float\",\n \"boolean\",\n \"date\",\n \"bigint\",\n \"symbol\",\n \"function\",\n \"undefined\",\n \"null\",\n \"array\",\n \"object\",\n \"unknown\",\n \"promise\",\n \"void\",\n \"never\",\n \"map\",\n \"set\",\n]);\nconst getParsedType = (data) => {\n const t = typeof data;\n switch (t) {\n case \"undefined\":\n return ZodParsedType.undefined;\n case \"string\":\n return ZodParsedType.string;\n case \"number\":\n return isNaN(data) ? ZodParsedType.nan : ZodParsedType.number;\n case \"boolean\":\n return ZodParsedType.boolean;\n case \"function\":\n return ZodParsedType.function;\n case \"bigint\":\n return ZodParsedType.bigint;\n case \"symbol\":\n return ZodParsedType.symbol;\n case \"object\":\n if (Array.isArray(data)) {\n return ZodParsedType.array;\n }\n if (data === null) {\n return ZodParsedType.null;\n }\n if (data.then &&\n typeof data.then === \"function\" &&\n data.catch &&\n typeof data.catch === \"function\") {\n return ZodParsedType.promise;\n }\n if (typeof Map !== \"undefined\" && data instanceof Map) {\n return ZodParsedType.map;\n }\n if (typeof Set !== \"undefined\" && data instanceof Set) {\n return ZodParsedType.set;\n }\n if (typeof Date !== \"undefined\" && data instanceof Date) {\n return ZodParsedType.date;\n }\n return ZodParsedType.object;\n default:\n return ZodParsedType.unknown;\n }\n};\n\nconst ZodIssueCode = util.arrayToEnum([\n \"invalid_type\",\n \"invalid_literal\",\n \"custom\",\n \"invalid_union\",\n \"invalid_union_discriminator\",\n \"invalid_enum_value\",\n \"unrecognized_keys\",\n \"invalid_arguments\",\n \"invalid_return_type\",\n \"invalid_date\",\n \"invalid_string\",\n \"too_small\",\n \"too_big\",\n \"invalid_intersection_types\",\n \"not_multiple_of\",\n \"not_finite\",\n]);\nconst quotelessJson = (obj) => {\n const json = JSON.stringify(obj, null, 2);\n return json.replace(/\"([^\"]+)\":/g, \"$1:\");\n};\nclass ZodError extends Error {\n constructor(issues) {\n super();\n this.issues = [];\n this.addIssue = (sub) => {\n this.issues = [...this.issues, sub];\n };\n this.addIssues = (subs = []) => {\n this.issues = [...this.issues, ...subs];\n };\n const actualProto = new.target.prototype;\n if (Object.setPrototypeOf) {\n // eslint-disable-next-line ban/ban\n Object.setPrototypeOf(this, actualProto);\n }\n else {\n this.__proto__ = actualProto;\n }\n this.name = \"ZodError\";\n this.issues = issues;\n }\n get errors() {\n return this.issues;\n }\n format(_mapper) {\n const mapper = _mapper ||\n function (issue) {\n return issue.message;\n };\n const fieldErrors = { _errors: [] };\n const processError = (error) => {\n for (const issue of error.issues) {\n if (issue.code === \"invalid_union\") {\n issue.unionErrors.map(processError);\n }\n else if (issue.code === \"invalid_return_type\") {\n processError(issue.returnTypeError);\n }\n else if (issue.code === \"invalid_arguments\") {\n processError(issue.argumentsError);\n }\n else if (issue.path.length === 0) {\n fieldErrors._errors.push(mapper(issue));\n }\n else {\n let curr = fieldErrors;\n let i = 0;\n while (i < issue.path.length) {\n const el = issue.path[i];\n const terminal = i === issue.path.length - 1;\n if (!terminal) {\n curr[el] = curr[el] || { _errors: [] };\n // if (typeof el === \"string\") {\n // curr[el] = curr[el] || { _errors: [] };\n // } else if (typeof el === \"number\") {\n // const errorArray: any = [];\n // errorArray._errors = [];\n // curr[el] = curr[el] || errorArray;\n // }\n }\n else {\n curr[el] = curr[el] || { _errors: [] };\n curr[el]._errors.push(mapper(issue));\n }\n curr = curr[el];\n i++;\n }\n }\n }\n };\n processError(this);\n return fieldErrors;\n }\n toString() {\n return this.message;\n }\n get message() {\n return JSON.stringify(this.issues, util.jsonStringifyReplacer, 2);\n }\n get isEmpty() {\n return this.issues.length === 0;\n }\n flatten(mapper = (issue) => issue.message) {\n const fieldErrors = {};\n const formErrors = [];\n for (const sub of this.issues) {\n if (sub.path.length > 0) {\n fieldErrors[sub.path[0]] = fieldErrors[sub.path[0]] || [];\n fieldErrors[sub.path[0]].push(mapper(sub));\n }\n else {\n formErrors.push(mapper(sub));\n }\n }\n return { formErrors, fieldErrors };\n }\n get formErrors() {\n return this.flatten();\n }\n}\nZodError.create = (issues) => {\n const error = new ZodError(issues);\n return error;\n};\n\nconst errorMap = (issue, _ctx) => {\n let message;\n switch (issue.code) {\n case ZodIssueCode.invalid_type:\n if (issue.received === ZodParsedType.undefined) {\n message = \"Required\";\n }\n else {\n message = `Expected ${issue.expected}, received ${issue.received}`;\n }\n break;\n case ZodIssueCode.invalid_literal:\n message = `Invalid literal value, expected ${JSON.stringify(issue.expected, util.jsonStringifyReplacer)}`;\n break;\n case ZodIssueCode.unrecognized_keys:\n message = `Unrecognized key(s) in object: ${util.joinValues(issue.keys, \", \")}`;\n break;\n case ZodIssueCode.invalid_union:\n message = `Invalid input`;\n break;\n case ZodIssueCode.invalid_union_discriminator:\n message = `Invalid discriminator value. Expected ${util.joinValues(issue.options)}`;\n break;\n case ZodIssueCode.invalid_enum_value:\n message = `Invalid enum value. Expected ${util.joinValues(issue.options)}, received '${issue.received}'`;\n break;\n case ZodIssueCode.invalid_arguments:\n message = `Invalid function arguments`;\n break;\n case ZodIssueCode.invalid_return_type:\n message = `Invalid function return type`;\n break;\n case ZodIssueCode.invalid_date:\n message = `Invalid date`;\n break;\n case ZodIssueCode.invalid_string:\n if (typeof issue.validation === \"object\") {\n if (\"includes\" in issue.validation) {\n message = `Invalid input: must include \"${issue.validation.includes}\"`;\n if (typeof issue.validation.position === \"number\") {\n message = `${message} at one or more positions greater than or equal to ${issue.validation.position}`;\n }\n }\n else if (\"startsWith\" in issue.validation) {\n message = `Invalid input: must start with \"${issue.validation.startsWith}\"`;\n }\n else if (\"endsWith\" in issue.validation) {\n message = `Invalid input: must end with \"${issue.validation.endsWith}\"`;\n }\n else {\n util.assertNever(issue.validation);\n }\n }\n else if (issue.validation !== \"regex\") {\n message = `Invalid ${issue.validation}`;\n }\n else {\n message = \"Invalid\";\n }\n break;\n case ZodIssueCode.too_small:\n if (issue.type === \"array\")\n message = `Array must contain ${issue.exact ? \"exactly\" : issue.inclusive ? `at least` : `more than`} ${issue.minimum} element(s)`;\n else if (issue.type === \"string\")\n message = `String must contain ${issue.exact ? \"exactly\" : issue.inclusive ? `at least` : `over`} ${issue.minimum} character(s)`;\n else if (issue.type === \"number\")\n message = `Number must be ${issue.exact\n ? `exactly equal to `\n : issue.inclusive\n ? `greater than or equal to `\n : `greater than `}${issue.minimum}`;\n else if (issue.type === \"date\")\n message = `Date must be ${issue.exact\n ? `exactly equal to `\n : issue.inclusive\n ? `greater than or equal to `\n : `greater than `}${new Date(Number(issue.minimum))}`;\n else\n message = \"Invalid input\";\n break;\n case ZodIssueCode.too_big:\n if (issue.type === \"array\")\n message = `Array must contain ${issue.exact ? `exactly` : issue.inclusive ? `at most` : `less than`} ${issue.maximum} element(s)`;\n else if (issue.type === \"string\")\n message = `String must contain ${issue.exact ? `exactly` : issue.inclusive ? `at most` : `under`} ${issue.maximum} character(s)`;\n else if (issue.type === \"number\")\n message = `Number must be ${issue.exact\n ? `exactly`\n : issue.inclusive\n ? `less than or equal to`\n : `less than`} ${issue.maximum}`;\n else if (issue.type === \"bigint\")\n message = `BigInt must be ${issue.exact\n ? `exactly`\n : issue.inclusive\n ? `less than or equal to`\n : `less than`} ${issue.maximum}`;\n else if (issue.type === \"date\")\n message = `Date must be ${issue.exact\n ? `exactly`\n : issue.inclusive\n ? `smaller than or equal to`\n : `smaller than`} ${new Date(Number(issue.maximum))}`;\n else\n message = \"Invalid input\";\n break;\n case ZodIssueCode.custom:\n message = `Invalid input`;\n break;\n case ZodIssueCode.invalid_intersection_types:\n message = `Intersection results could not be merged`;\n break;\n case ZodIssueCode.not_multiple_of:\n message = `Number must be a multiple of ${issue.multipleOf}`;\n break;\n case ZodIssueCode.not_finite:\n message = \"Number must be finite\";\n break;\n default:\n message = _ctx.defaultError;\n util.assertNever(issue);\n }\n return { message };\n};\n\nlet overrideErrorMap = errorMap;\nfunction setErrorMap(map) {\n overrideErrorMap = map;\n}\nfunction getErrorMap() {\n return overrideErrorMap;\n}\n\nconst makeIssue = (params) => {\n const { data, path, errorMaps, issueData } = params;\n const fullPath = [...path, ...(issueData.path || [])];\n const fullIssue = {\n ...issueData,\n path: fullPath,\n };\n let errorMessage = \"\";\n const maps = errorMaps\n .filter((m) => !!m)\n .slice()\n .reverse();\n for (const map of maps) {\n errorMessage = map(fullIssue, { data, defaultError: errorMessage }).message;\n }\n return {\n ...issueData,\n path: fullPath,\n message: issueData.message || errorMessage,\n };\n};\nconst EMPTY_PATH = [];\nfunction addIssueToContext(ctx, issueData) {\n const issue = makeIssue({\n issueData: issueData,\n data: ctx.data,\n path: ctx.path,\n errorMaps: [\n ctx.common.contextualErrorMap,\n ctx.schemaErrorMap,\n getErrorMap(),\n errorMap, // then global default map\n ].filter((x) => !!x),\n });\n ctx.common.issues.push(issue);\n}\nclass ParseStatus {\n constructor() {\n this.value = \"valid\";\n }\n dirty() {\n if (this.value === \"valid\")\n this.value = \"dirty\";\n }\n abort() {\n if (this.value !== \"aborted\")\n this.value = \"aborted\";\n }\n static mergeArray(status, results) {\n const arrayValue = [];\n for (const s of results) {\n if (s.status === \"aborted\")\n return INVALID;\n if (s.status === \"dirty\")\n status.dirty();\n arrayValue.push(s.value);\n }\n return { status: status.value, value: arrayValue };\n }\n static async mergeObjectAsync(status, pairs) {\n const syncPairs = [];\n for (const pair of pairs) {\n syncPairs.push({\n key: await pair.key,\n value: await pair.value,\n });\n }\n return ParseStatus.mergeObjectSync(status, syncPairs);\n }\n static mergeObjectSync(status, pairs) {\n const finalObject = {};\n for (const pair of pairs) {\n const { key, value } = pair;\n if (key.status === \"aborted\")\n return INVALID;\n if (value.status === \"aborted\")\n return INVALID;\n if (key.status === \"dirty\")\n status.dirty();\n if (value.status === \"dirty\")\n status.dirty();\n if (typeof value.value !== \"undefined\" || pair.alwaysSet) {\n finalObject[key.value] = value.value;\n }\n }\n return { status: status.value, value: finalObject };\n }\n}\nconst INVALID = Object.freeze({\n status: \"aborted\",\n});\nconst DIRTY = (value) => ({ status: \"dirty\", value });\nconst OK = (value) => ({ status: \"valid\", value });\nconst isAborted = (x) => x.status === \"aborted\";\nconst isDirty = (x) => x.status === \"dirty\";\nconst isValid = (x) => x.status === \"valid\";\nconst isAsync = (x) => typeof Promise !== \"undefined\" && x instanceof Promise;\n\nvar errorUtil;\n(function (errorUtil) {\n errorUtil.errToObj = (message) => typeof message === \"string\" ? { message } : message || {};\n errorUtil.toString = (message) => typeof message === \"string\" ? message : message === null || message === void 0 ? void 0 : message.message;\n})(errorUtil || (errorUtil = {}));\n\nclass ParseInputLazyPath {\n constructor(parent, value, path, key) {\n this._cachedPath = [];\n this.parent = parent;\n this.data = value;\n this._path = path;\n this._key = key;\n }\n get path() {\n if (!this._cachedPath.length) {\n if (this._key instanceof Array) {\n this._cachedPath.push(...this._path, ...this._key);\n }\n else {\n this._cachedPath.push(...this._path, this._key);\n }\n }\n return this._cachedPath;\n }\n}\nconst handleResult = (ctx, result) => {\n if (isValid(result)) {\n return { success: true, data: result.value };\n }\n else {\n if (!ctx.common.issues.length) {\n throw new Error(\"Validation failed but no issues detected.\");\n }\n return {\n success: false,\n get error() {\n if (this._error)\n return this._error;\n const error = new ZodError(ctx.common.issues);\n this._error = error;\n return this._error;\n },\n };\n }\n};\nfunction processCreateParams(params) {\n if (!params)\n return {};\n const { errorMap, invalid_type_error, required_error, description } = params;\n if (errorMap && (invalid_type_error || required_error)) {\n throw new Error(`Can't use \"invalid_type_error\" or \"required_error\" in conjunction with custom error map.`);\n }\n if (errorMap)\n return { errorMap: errorMap, description };\n const customMap = (iss, ctx) => {\n if (iss.code !== \"invalid_type\")\n return { message: ctx.defaultError };\n if (typeof ctx.data === \"undefined\") {\n return { message: required_error !== null && required_error !== void 0 ? required_error : ctx.defaultError };\n }\n return { message: invalid_type_error !== null && invalid_type_error !== void 0 ? invalid_type_error : ctx.defaultError };\n };\n return { errorMap: customMap, description };\n}\nclass ZodType {\n constructor(def) {\n /** Alias of safeParseAsync */\n this.spa = this.safeParseAsync;\n this._def = def;\n this.parse = this.parse.bind(this);\n this.safeParse = this.safeParse.bind(this);\n this.parseAsync = this.parseAsync.bind(this);\n this.safeParseAsync = this.safeParseAsync.bind(this);\n this.spa = this.spa.bind(this);\n this.refine = this.refine.bind(this);\n this.refinement = this.refinement.bind(this);\n this.superRefine = this.superRefine.bind(this);\n this.optional = this.optional.bind(this);\n this.nullable = this.nullable.bind(this);\n this.nullish = this.nullish.bind(this);\n this.array = this.array.bind(this);\n this.promise = this.promise.bind(this);\n this.or = this.or.bind(this);\n this.and = this.and.bind(this);\n this.transform = this.transform.bind(this);\n this.brand = this.brand.bind(this);\n this.default = this.default.bind(this);\n this.catch = this.catch.bind(this);\n this.describe = this.describe.bind(this);\n this.pipe = this.pipe.bind(this);\n this.isNullable = this.isNullable.bind(this);\n this.isOptional = this.isOptional.bind(this);\n }\n get description() {\n return this._def.description;\n }\n _getType(input) {\n return getParsedType(input.data);\n }\n _getOrReturnCtx(input, ctx) {\n return (ctx || {\n common: input.parent.common,\n data: input.data,\n parsedType: getParsedType(input.data),\n schemaErrorMap: this._def.errorMap,\n path: input.path,\n parent: input.parent,\n });\n }\n _processInputParams(input) {\n return {\n status: new ParseStatus(),\n ctx: {\n common: input.parent.common,\n data: input.data,\n parsedType: getParsedType(input.data),\n schemaErrorMap: this._def.errorMap,\n path: input.path,\n parent: input.parent,\n },\n };\n }\n _parseSync(input) {\n const result = this._parse(input);\n if (isAsync(result)) {\n throw new Error(\"Synchronous parse encountered promise.\");\n }\n return result;\n }\n _parseAsync(input) {\n const result = this._parse(input);\n return Promise.resolve(result);\n }\n parse(data, params) {\n const result = this.safeParse(data, params);\n if (result.success)\n return result.data;\n throw result.error;\n }\n safeParse(data, params) {\n var _a;\n const ctx = {\n common: {\n issues: [],\n async: (_a = params === null || params === void 0 ? void 0 : params.async) !== null && _a !== void 0 ? _a : false,\n contextualErrorMap: params === null || params === void 0 ? void 0 : params.errorMap,\n },\n path: (params === null || params === void 0 ? void 0 : params.path) || [],\n schemaErrorMap: this._def.errorMap,\n parent: null,\n data,\n parsedType: getParsedType(data),\n };\n const result = this._parseSync({ data, path: ctx.path, parent: ctx });\n return handleResult(ctx, result);\n }\n async parseAsync(data, params) {\n const result = await this.safeParseAsync(data, params);\n if (result.success)\n return result.data;\n throw result.error;\n }\n async safeParseAsync(data, params) {\n const ctx = {\n common: {\n issues: [],\n contextualErrorMap: params === null || params === void 0 ? void 0 : params.errorMap,\n async: true,\n },\n path: (params === null || params === void 0 ? void 0 : params.path) || [],\n schemaErrorMap: this._def.errorMap,\n parent: null,\n data,\n parsedType: getParsedType(data),\n };\n const maybeAsyncResult = this._parse({ data, path: ctx.path, parent: ctx });\n const result = await (isAsync(maybeAsyncResult)\n ? maybeAsyncResult\n : Promise.resolve(maybeAsyncResult));\n return handleResult(ctx, result);\n }\n refine(check, message) {\n const getIssueProperties = (val) => {\n if (typeof message === \"string\" || typeof message === \"undefined\") {\n return { message };\n }\n else if (typeof message === \"function\") {\n return message(val);\n }\n else {\n return message;\n }\n };\n return this._refinement((val, ctx) => {\n const result = check(val);\n const setError = () => ctx.addIssue({\n code: ZodIssueCode.custom,\n ...getIssueProperties(val),\n });\n if (typeof Promise !== \"undefined\" && result instanceof Promise) {\n return result.then((data) => {\n if (!data) {\n setError();\n return false;\n }\n else {\n return true;\n }\n });\n }\n if (!result) {\n setError();\n return false;\n }\n else {\n return true;\n }\n });\n }\n refinement(check, refinementData) {\n return this._refinement((val, ctx) => {\n if (!check(val)) {\n ctx.addIssue(typeof refinementData === \"function\"\n ? refinementData(val, ctx)\n : refinementData);\n return false;\n }\n else {\n return true;\n }\n });\n }\n _refinement(refinement) {\n return new ZodEffects({\n schema: this,\n typeName: ZodFirstPartyTypeKind.ZodEffects,\n effect: { type: \"refinement\", refinement },\n });\n }\n superRefine(refinement) {\n return this._refinement(refinement);\n }\n optional() {\n return ZodOptional.create(this, this._def);\n }\n nullable() {\n return ZodNullable.create(this, this._def);\n }\n nullish() {\n return this.nullable().optional();\n }\n array() {\n return ZodArray.create(this, this._def);\n }\n promise() {\n return ZodPromise.create(this, this._def);\n }\n or(option) {\n return ZodUnion.create([this, option], this._def);\n }\n and(incoming) {\n return ZodIntersection.create(this, incoming, this._def);\n }\n transform(transform) {\n return new ZodEffects({\n ...processCreateParams(this._def),\n schema: this,\n typeName: ZodFirstPartyTypeKind.ZodEffects,\n effect: { type: \"transform\", transform },\n });\n }\n default(def) {\n const defaultValueFunc = typeof def === \"function\" ? def : () => def;\n return new ZodDefault({\n ...processCreateParams(this._def),\n innerType: this,\n defaultValue: defaultValueFunc,\n typeName: ZodFirstPartyTypeKind.ZodDefault,\n });\n }\n brand() {\n return new ZodBranded({\n typeName: ZodFirstPartyTypeKind.ZodBranded,\n type: this,\n ...processCreateParams(this._def),\n });\n }\n catch(def) {\n const catchValueFunc = typeof def === \"function\" ? def : () => def;\n return new ZodCatch({\n ...processCreateParams(this._def),\n innerType: this,\n catchValue: catchValueFunc,\n typeName: ZodFirstPartyTypeKind.ZodCatch,\n });\n }\n describe(description) {\n const This = this.constructor;\n return new This({\n ...this._def,\n description,\n });\n }\n pipe(target) {\n return ZodPipeline.create(this, target);\n }\n isOptional() {\n return this.safeParse(undefined).success;\n }\n isNullable() {\n return this.safeParse(null).success;\n }\n}\nconst cuidRegex = /^c[^\\s-]{8,}$/i;\nconst cuid2Regex = /^[a-z][a-z0-9]*$/;\nconst ulidRegex = /[0-9A-HJKMNP-TV-Z]{26}/;\nconst uuidRegex = /^([a-f0-9]{8}-[a-f0-9]{4}-[1-5][a-f0-9]{3}-[a-f0-9]{4}-[a-f0-9]{12}|00000000-0000-0000-0000-000000000000)$/i;\n// from https://stackoverflow.com/a/46181/1550155\n// old version: too slow, didn't support unicode\n// const emailRegex = /^((([a-z]|\\d|[!#\\$%&'\\*\\+\\-\\/=\\?\\^_`{\\|}~]|[\\u00A0-\\uD7FF\\uF900-\\uFDCF\\uFDF0-\\uFFEF])+(\\.([a-z]|\\d|[!#\\$%&'\\*\\+\\-\\/=\\?\\^_`{\\|}~]|[\\u00A0-\\uD7FF\\uF900-\\uFDCF\\uFDF0-\\uFFEF])+)*)|((\\x22)((((\\x20|\\x09)*(\\x0d\\x0a))?(\\x20|\\x09)+)?(([\\x01-\\x08\\x0b\\x0c\\x0e-\\x1f\\x7f]|\\x21|[\\x23-\\x5b]|[\\x5d-\\x7e]|[\\u00A0-\\uD7FF\\uF900-\\uFDCF\\uFDF0-\\uFFEF])|(\\\\([\\x01-\\x09\\x0b\\x0c\\x0d-\\x7f]|[\\u00A0-\\uD7FF\\uF900-\\uFDCF\\uFDF0-\\uFFEF]))))*(((\\x20|\\x09)*(\\x0d\\x0a))?(\\x20|\\x09)+)?(\\x22)))@((([a-z]|\\d|[\\u00A0-\\uD7FF\\uF900-\\uFDCF\\uFDF0-\\uFFEF])|(([a-z]|\\d|[\\u00A0-\\uD7FF\\uF900-\\uFDCF\\uFDF0-\\uFFEF])([a-z]|\\d|-|\\.|_|~|[\\u00A0-\\uD7FF\\uF900-\\uFDCF\\uFDF0-\\uFFEF])*([a-z]|\\d|[\\u00A0-\\uD7FF\\uF900-\\uFDCF\\uFDF0-\\uFFEF])))\\.)+(([a-z]|[\\u00A0-\\uD7FF\\uF900-\\uFDCF\\uFDF0-\\uFFEF])|(([a-z]|[\\u00A0-\\uD7FF\\uF900-\\uFDCF\\uFDF0-\\uFFEF])([a-z]|\\d|-|\\.|_|~|[\\u00A0-\\uD7FF\\uF900-\\uFDCF\\uFDF0-\\uFFEF])*([a-z]|[\\u00A0-\\uD7FF\\uF900-\\uFDCF\\uFDF0-\\uFFEF])))$/i;\n//old email regex\n// const emailRegex = /^(([^<>()[\\].,;:\\s@\"]+(\\.[^<>()[\\].,;:\\s@\"]+)*)|(\".+\"))@((?!-)([^<>()[\\].,;:\\s@\"]+\\.)+[^<>()[\\].,;:\\s@\"]{1,})[^-<>()[\\].,;:\\s@\"]$/i;\n// eslint-disable-next-line\nconst emailRegex = /^(([^<>()[\\]\\\\.,;:\\s@\\\"]+(\\.[^<>()[\\]\\\\.,;:\\s@\\\"]+)*)|(\\\".+\\\"))@((\\[(((25[0-5])|(2[0-4][0-9])|(1[0-9]{2})|([0-9]{1,2}))\\.){3}((25[0-5])|(2[0-4][0-9])|(1[0-9]{2})|([0-9]{1,2}))\\])|(\\[IPv6:(([a-f0-9]{1,4}:){7}|::([a-f0-9]{1,4}:){0,6}|([a-f0-9]{1,4}:){1}:([a-f0-9]{1,4}:){0,5}|([a-f0-9]{1,4}:){2}:([a-f0-9]{1,4}:){0,4}|([a-f0-9]{1,4}:){3}:([a-f0-9]{1,4}:){0,3}|([a-f0-9]{1,4}:){4}:([a-f0-9]{1,4}:){0,2}|([a-f0-9]{1,4}:){5}:([a-f0-9]{1,4}:){0,1})([a-f0-9]{1,4}|(((25[0-5])|(2[0-4][0-9])|(1[0-9]{2})|([0-9]{1,2}))\\.){3}((25[0-5])|(2[0-4][0-9])|(1[0-9]{2})|([0-9]{1,2})))\\])|([A-Za-z0-9]([A-Za-z0-9-]*[A-Za-z0-9])*(\\.[A-Za-z]{2,})+))$/;\n// from https://thekevinscott.com/emojis-in-javascript/#writing-a-regular-expression\nconst emojiRegex = /^(\\p{Extended_Pictographic}|\\p{Emoji_Component})+$/u;\nconst ipv4Regex = /^(((25[0-5])|(2[0-4][0-9])|(1[0-9]{2})|([0-9]{1,2}))\\.){3}((25[0-5])|(2[0-4][0-9])|(1[0-9]{2})|([0-9]{1,2}))$/;\nconst ipv6Regex = /^(([a-f0-9]{1,4}:){7}|::([a-f0-9]{1,4}:){0,6}|([a-f0-9]{1,4}:){1}:([a-f0-9]{1,4}:){0,5}|([a-f0-9]{1,4}:){2}:([a-f0-9]{1,4}:){0,4}|([a-f0-9]{1,4}:){3}:([a-f0-9]{1,4}:){0,3}|([a-f0-9]{1,4}:){4}:([a-f0-9]{1,4}:){0,2}|([a-f0-9]{1,4}:){5}:([a-f0-9]{1,4}:){0,1})([a-f0-9]{1,4}|(((25[0-5])|(2[0-4][0-9])|(1[0-9]{2})|([0-9]{1,2}))\\.){3}((25[0-5])|(2[0-4][0-9])|(1[0-9]{2})|([0-9]{1,2})))$/;\n// Adapted from https://stackoverflow.com/a/3143231\nconst datetimeRegex = (args) => {\n if (args.precision) {\n if (args.offset) {\n return new RegExp(`^\\\\d{4}-\\\\d{2}-\\\\d{2}T\\\\d{2}:\\\\d{2}:\\\\d{2}\\\\.\\\\d{${args.precision}}(([+-]\\\\d{2}(:?\\\\d{2})?)|Z)$`);\n }\n else {\n return new RegExp(`^\\\\d{4}-\\\\d{2}-\\\\d{2}T\\\\d{2}:\\\\d{2}:\\\\d{2}\\\\.\\\\d{${args.precision}}Z$`);\n }\n }\n else if (args.precision === 0) {\n if (args.offset) {\n return new RegExp(`^\\\\d{4}-\\\\d{2}-\\\\d{2}T\\\\d{2}:\\\\d{2}:\\\\d{2}(([+-]\\\\d{2}(:?\\\\d{2})?)|Z)$`);\n }\n else {\n return new RegExp(`^\\\\d{4}-\\\\d{2}-\\\\d{2}T\\\\d{2}:\\\\d{2}:\\\\d{2}Z$`);\n }\n }\n else {\n if (args.offset) {\n return new RegExp(`^\\\\d{4}-\\\\d{2}-\\\\d{2}T\\\\d{2}:\\\\d{2}:\\\\d{2}(\\\\.\\\\d+)?(([+-]\\\\d{2}(:?\\\\d{2})?)|Z)$`);\n }\n else {\n return new RegExp(`^\\\\d{4}-\\\\d{2}-\\\\d{2}T\\\\d{2}:\\\\d{2}:\\\\d{2}(\\\\.\\\\d+)?Z$`);\n }\n }\n};\nfunction isValidIP(ip, version) {\n if ((version === \"v4\" || !version) && ipv4Regex.test(ip)) {\n return true;\n }\n if ((version === \"v6\" || !version) && ipv6Regex.test(ip)) {\n return true;\n }\n return false;\n}\nclass ZodString extends ZodType {\n constructor() {\n super(...arguments);\n this._regex = (regex, validation, message) => this.refinement((data) => regex.test(data), {\n validation,\n code: ZodIssueCode.invalid_string,\n ...errorUtil.errToObj(message),\n });\n /**\n * @deprecated Use z.string().min(1) instead.\n * @see {@link ZodString.min}\n */\n this.nonempty = (message) => this.min(1, errorUtil.errToObj(message));\n this.trim = () => new ZodString({\n ...this._def,\n checks: [...this._def.checks, { kind: \"trim\" }],\n });\n this.toLowerCase = () => new ZodString({\n ...this._def,\n checks: [...this._def.checks, { kind: \"toLowerCase\" }],\n });\n this.toUpperCase = () => new ZodString({\n ...this._def,\n checks: [...this._def.checks, { kind: \"toUpperCase\" }],\n });\n }\n _parse(input) {\n if (this._def.coerce) {\n input.data = String(input.data);\n }\n const parsedType = this._getType(input);\n if (parsedType !== ZodParsedType.string) {\n const ctx = this._getOrReturnCtx(input);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.string,\n received: ctx.parsedType,\n }\n //\n );\n return INVALID;\n }\n const status = new ParseStatus();\n let ctx = undefined;\n for (const check of this._def.checks) {\n if (check.kind === \"min\") {\n if (input.data.length < check.value) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n code: ZodIssueCode.too_small,\n minimum: check.value,\n type: \"string\",\n inclusive: true,\n exact: false,\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"max\") {\n if (input.data.length > check.value) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n code: ZodIssueCode.too_big,\n maximum: check.value,\n type: \"string\",\n inclusive: true,\n exact: false,\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"length\") {\n const tooBig = input.data.length > check.value;\n const tooSmall = input.data.length < check.value;\n if (tooBig || tooSmall) {\n ctx = this._getOrReturnCtx(input, ctx);\n if (tooBig) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.too_big,\n maximum: check.value,\n type: \"string\",\n inclusive: true,\n exact: true,\n message: check.message,\n });\n }\n else if (tooSmall) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.too_small,\n minimum: check.value,\n type: \"string\",\n inclusive: true,\n exact: true,\n message: check.message,\n });\n }\n status.dirty();\n }\n }\n else if (check.kind === \"email\") {\n if (!emailRegex.test(input.data)) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n validation: \"email\",\n code: ZodIssueCode.invalid_string,\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"emoji\") {\n if (!emojiRegex.test(input.data)) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n validation: \"emoji\",\n code: ZodIssueCode.invalid_string,\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"uuid\") {\n if (!uuidRegex.test(input.data)) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n validation: \"uuid\",\n code: ZodIssueCode.invalid_string,\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"cuid\") {\n if (!cuidRegex.test(input.data)) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n validation: \"cuid\",\n code: ZodIssueCode.invalid_string,\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"cuid2\") {\n if (!cuid2Regex.test(input.data)) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n validation: \"cuid2\",\n code: ZodIssueCode.invalid_string,\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"ulid\") {\n if (!ulidRegex.test(input.data)) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n validation: \"ulid\",\n code: ZodIssueCode.invalid_string,\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"url\") {\n try {\n new URL(input.data);\n }\n catch (_a) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n validation: \"url\",\n code: ZodIssueCode.invalid_string,\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"regex\") {\n check.regex.lastIndex = 0;\n const testResult = check.regex.test(input.data);\n if (!testResult) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n validation: \"regex\",\n code: ZodIssueCode.invalid_string,\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"trim\") {\n input.data = input.data.trim();\n }\n else if (check.kind === \"includes\") {\n if (!input.data.includes(check.value, check.position)) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_string,\n validation: { includes: check.value, position: check.position },\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"toLowerCase\") {\n input.data = input.data.toLowerCase();\n }\n else if (check.kind === \"toUpperCase\") {\n input.data = input.data.toUpperCase();\n }\n else if (check.kind === \"startsWith\") {\n if (!input.data.startsWith(check.value)) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_string,\n validation: { startsWith: check.value },\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"endsWith\") {\n if (!input.data.endsWith(check.value)) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_string,\n validation: { endsWith: check.value },\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"datetime\") {\n const regex = datetimeRegex(check);\n if (!regex.test(input.data)) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_string,\n validation: \"datetime\",\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"ip\") {\n if (!isValidIP(input.data, check.version)) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n validation: \"ip\",\n code: ZodIssueCode.invalid_string,\n message: check.message,\n });\n status.dirty();\n }\n }\n else {\n util.assertNever(check);\n }\n }\n return { status: status.value, value: input.data };\n }\n _addCheck(check) {\n return new ZodString({\n ...this._def,\n checks: [...this._def.checks, check],\n });\n }\n email(message) {\n return this._addCheck({ kind: \"email\", ...errorUtil.errToObj(message) });\n }\n url(message) {\n return this._addCheck({ kind: \"url\", ...errorUtil.errToObj(message) });\n }\n emoji(message) {\n return this._addCheck({ kind: \"emoji\", ...errorUtil.errToObj(message) });\n }\n uuid(message) {\n return this._addCheck({ kind: \"uuid\", ...errorUtil.errToObj(message) });\n }\n cuid(message) {\n return this._addCheck({ kind: \"cuid\", ...errorUtil.errToObj(message) });\n }\n cuid2(message) {\n return this._addCheck({ kind: \"cuid2\", ...errorUtil.errToObj(message) });\n }\n ulid(message) {\n return this._addCheck({ kind: \"ulid\", ...errorUtil.errToObj(message) });\n }\n ip(options) {\n return this._addCheck({ kind: \"ip\", ...errorUtil.errToObj(options) });\n }\n datetime(options) {\n var _a;\n if (typeof options === \"string\") {\n return this._addCheck({\n kind: \"datetime\",\n precision: null,\n offset: false,\n message: options,\n });\n }\n return this._addCheck({\n kind: \"datetime\",\n precision: typeof (options === null || options === void 0 ? void 0 : options.precision) === \"undefined\" ? null : options === null || options === void 0 ? void 0 : options.precision,\n offset: (_a = options === null || options === void 0 ? void 0 : options.offset) !== null && _a !== void 0 ? _a : false,\n ...errorUtil.errToObj(options === null || options === void 0 ? void 0 : options.message),\n });\n }\n regex(regex, message) {\n return this._addCheck({\n kind: \"regex\",\n regex: regex,\n ...errorUtil.errToObj(message),\n });\n }\n includes(value, options) {\n return this._addCheck({\n kind: \"includes\",\n value: value,\n position: options === null || options === void 0 ? void 0 : options.position,\n ...errorUtil.errToObj(options === null || options === void 0 ? void 0 : options.message),\n });\n }\n startsWith(value, message) {\n return this._addCheck({\n kind: \"startsWith\",\n value: value,\n ...errorUtil.errToObj(message),\n });\n }\n endsWith(value, message) {\n return this._addCheck({\n kind: \"endsWith\",\n value: value,\n ...errorUtil.errToObj(message),\n });\n }\n min(minLength, message) {\n return this._addCheck({\n kind: \"min\",\n value: minLength,\n ...errorUtil.errToObj(message),\n });\n }\n max(maxLength, message) {\n return this._addCheck({\n kind: \"max\",\n value: maxLength,\n ...errorUtil.errToObj(message),\n });\n }\n length(len, message) {\n return this._addCheck({\n kind: \"length\",\n value: len,\n ...errorUtil.errToObj(message),\n });\n }\n get isDatetime() {\n return !!this._def.checks.find((ch) => ch.kind === \"datetime\");\n }\n get isEmail() {\n return !!this._def.checks.find((ch) => ch.kind === \"email\");\n }\n get isURL() {\n return !!this._def.checks.find((ch) => ch.kind === \"url\");\n }\n get isEmoji() {\n return !!this._def.checks.find((ch) => ch.kind === \"emoji\");\n }\n get isUUID() {\n return !!this._def.checks.find((ch) => ch.kind === \"uuid\");\n }\n get isCUID() {\n return !!this._def.checks.find((ch) => ch.kind === \"cuid\");\n }\n get isCUID2() {\n return !!this._def.checks.find((ch) => ch.kind === \"cuid2\");\n }\n get isULID() {\n return !!this._def.checks.find((ch) => ch.kind === \"ulid\");\n }\n get isIP() {\n return !!this._def.checks.find((ch) => ch.kind === \"ip\");\n }\n get minLength() {\n let min = null;\n for (const ch of this._def.checks) {\n if (ch.kind === \"min\") {\n if (min === null || ch.value > min)\n min = ch.value;\n }\n }\n return min;\n }\n get maxLength() {\n let max = null;\n for (const ch of this._def.checks) {\n if (ch.kind === \"max\") {\n if (max === null || ch.value < max)\n max = ch.value;\n }\n }\n return max;\n }\n}\nZodString.create = (params) => {\n var _a;\n return new ZodString({\n checks: [],\n typeName: ZodFirstPartyTypeKind.ZodString,\n coerce: (_a = params === null || params === void 0 ? void 0 : params.coerce) !== null && _a !== void 0 ? _a : false,\n ...processCreateParams(params),\n });\n};\n// https://stackoverflow.com/questions/3966484/why-does-modulus-operator-return-fractional-number-in-javascript/31711034#31711034\nfunction floatSafeRemainder(val, step) {\n const valDecCount = (val.toString().split(\".\")[1] || \"\").length;\n const stepDecCount = (step.toString().split(\".\")[1] || \"\").length;\n const decCount = valDecCount > stepDecCount ? valDecCount : stepDecCount;\n const valInt = parseInt(val.toFixed(decCount).replace(\".\", \"\"));\n const stepInt = parseInt(step.toFixed(decCount).replace(\".\", \"\"));\n return (valInt % stepInt) / Math.pow(10, decCount);\n}\nclass ZodNumber extends ZodType {\n constructor() {\n super(...arguments);\n this.min = this.gte;\n this.max = this.lte;\n this.step = this.multipleOf;\n }\n _parse(input) {\n if (this._def.coerce) {\n input.data = Number(input.data);\n }\n const parsedType = this._getType(input);\n if (parsedType !== ZodParsedType.number) {\n const ctx = this._getOrReturnCtx(input);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.number,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n let ctx = undefined;\n const status = new ParseStatus();\n for (const check of this._def.checks) {\n if (check.kind === \"int\") {\n if (!util.isInteger(input.data)) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: \"integer\",\n received: \"float\",\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"min\") {\n const tooSmall = check.inclusive\n ? input.data < check.value\n : input.data <= check.value;\n if (tooSmall) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n code: ZodIssueCode.too_small,\n minimum: check.value,\n type: \"number\",\n inclusive: check.inclusive,\n exact: false,\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"max\") {\n const tooBig = check.inclusive\n ? input.data > check.value\n : input.data >= check.value;\n if (tooBig) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n code: ZodIssueCode.too_big,\n maximum: check.value,\n type: \"number\",\n inclusive: check.inclusive,\n exact: false,\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"multipleOf\") {\n if (floatSafeRemainder(input.data, check.value) !== 0) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n code: ZodIssueCode.not_multiple_of,\n multipleOf: check.value,\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"finite\") {\n if (!Number.isFinite(input.data)) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n code: ZodIssueCode.not_finite,\n message: check.message,\n });\n status.dirty();\n }\n }\n else {\n util.assertNever(check);\n }\n }\n return { status: status.value, value: input.data };\n }\n gte(value, message) {\n return this.setLimit(\"min\", value, true, errorUtil.toString(message));\n }\n gt(value, message) {\n return this.setLimit(\"min\", value, false, errorUtil.toString(message));\n }\n lte(value, message) {\n return this.setLimit(\"max\", value, true, errorUtil.toString(message));\n }\n lt(value, message) {\n return this.setLimit(\"max\", value, false, errorUtil.toString(message));\n }\n setLimit(kind, value, inclusive, message) {\n return new ZodNumber({\n ...this._def,\n checks: [\n ...this._def.checks,\n {\n kind,\n value,\n inclusive,\n message: errorUtil.toString(message),\n },\n ],\n });\n }\n _addCheck(check) {\n return new ZodNumber({\n ...this._def,\n checks: [...this._def.checks, check],\n });\n }\n int(message) {\n return this._addCheck({\n kind: \"int\",\n message: errorUtil.toString(message),\n });\n }\n positive(message) {\n return this._addCheck({\n kind: \"min\",\n value: 0,\n inclusive: false,\n message: errorUtil.toString(message),\n });\n }\n negative(message) {\n return this._addCheck({\n kind: \"max\",\n value: 0,\n inclusive: false,\n message: errorUtil.toString(message),\n });\n }\n nonpositive(message) {\n return this._addCheck({\n kind: \"max\",\n value: 0,\n inclusive: true,\n message: errorUtil.toString(message),\n });\n }\n nonnegative(message) {\n return this._addCheck({\n kind: \"min\",\n value: 0,\n inclusive: true,\n message: errorUtil.toString(message),\n });\n }\n multipleOf(value, message) {\n return this._addCheck({\n kind: \"multipleOf\",\n value: value,\n message: errorUtil.toString(message),\n });\n }\n finite(message) {\n return this._addCheck({\n kind: \"finite\",\n message: errorUtil.toString(message),\n });\n }\n safe(message) {\n return this._addCheck({\n kind: \"min\",\n inclusive: true,\n value: Number.MIN_SAFE_INTEGER,\n message: errorUtil.toString(message),\n })._addCheck({\n kind: \"max\",\n inclusive: true,\n value: Number.MAX_SAFE_INTEGER,\n message: errorUtil.toString(message),\n });\n }\n get minValue() {\n let min = null;\n for (const ch of this._def.checks) {\n if (ch.kind === \"min\") {\n if (min === null || ch.value > min)\n min = ch.value;\n }\n }\n return min;\n }\n get maxValue() {\n let max = null;\n for (const ch of this._def.checks) {\n if (ch.kind === \"max\") {\n if (max === null || ch.value < max)\n max = ch.value;\n }\n }\n return max;\n }\n get isInt() {\n return !!this._def.checks.find((ch) => ch.kind === \"int\" ||\n (ch.kind === \"multipleOf\" && util.isInteger(ch.value)));\n }\n get isFinite() {\n let max = null, min = null;\n for (const ch of this._def.checks) {\n if (ch.kind === \"finite\" ||\n ch.kind === \"int\" ||\n ch.kind === \"multipleOf\") {\n return true;\n }\n else if (ch.kind === \"min\") {\n if (min === null || ch.value > min)\n min = ch.value;\n }\n else if (ch.kind === \"max\") {\n if (max === null || ch.value < max)\n max = ch.value;\n }\n }\n return Number.isFinite(min) && Number.isFinite(max);\n }\n}\nZodNumber.create = (params) => {\n return new ZodNumber({\n checks: [],\n typeName: ZodFirstPartyTypeKind.ZodNumber,\n coerce: (params === null || params === void 0 ? void 0 : params.coerce) || false,\n ...processCreateParams(params),\n });\n};\nclass ZodBigInt extends ZodType {\n constructor() {\n super(...arguments);\n this.min = this.gte;\n this.max = this.lte;\n }\n _parse(input) {\n if (this._def.coerce) {\n input.data = BigInt(input.data);\n }\n const parsedType = this._getType(input);\n if (parsedType !== ZodParsedType.bigint) {\n const ctx = this._getOrReturnCtx(input);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.bigint,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n let ctx = undefined;\n const status = new ParseStatus();\n for (const check of this._def.checks) {\n if (check.kind === \"min\") {\n const tooSmall = check.inclusive\n ? input.data < check.value\n : input.data <= check.value;\n if (tooSmall) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n code: ZodIssueCode.too_small,\n type: \"bigint\",\n minimum: check.value,\n inclusive: check.inclusive,\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"max\") {\n const tooBig = check.inclusive\n ? input.data > check.value\n : input.data >= check.value;\n if (tooBig) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n code: ZodIssueCode.too_big,\n type: \"bigint\",\n maximum: check.value,\n inclusive: check.inclusive,\n message: check.message,\n });\n status.dirty();\n }\n }\n else if (check.kind === \"multipleOf\") {\n if (input.data % check.value !== BigInt(0)) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n code: ZodIssueCode.not_multiple_of,\n multipleOf: check.value,\n message: check.message,\n });\n status.dirty();\n }\n }\n else {\n util.assertNever(check);\n }\n }\n return { status: status.value, value: input.data };\n }\n gte(value, message) {\n return this.setLimit(\"min\", value, true, errorUtil.toString(message));\n }\n gt(value, message) {\n return this.setLimit(\"min\", value, false, errorUtil.toString(message));\n }\n lte(value, message) {\n return this.setLimit(\"max\", value, true, errorUtil.toString(message));\n }\n lt(value, message) {\n return this.setLimit(\"max\", value, false, errorUtil.toString(message));\n }\n setLimit(kind, value, inclusive, message) {\n return new ZodBigInt({\n ...this._def,\n checks: [\n ...this._def.checks,\n {\n kind,\n value,\n inclusive,\n message: errorUtil.toString(message),\n },\n ],\n });\n }\n _addCheck(check) {\n return new ZodBigInt({\n ...this._def,\n checks: [...this._def.checks, check],\n });\n }\n positive(message) {\n return this._addCheck({\n kind: \"min\",\n value: BigInt(0),\n inclusive: false,\n message: errorUtil.toString(message),\n });\n }\n negative(message) {\n return this._addCheck({\n kind: \"max\",\n value: BigInt(0),\n inclusive: false,\n message: errorUtil.toString(message),\n });\n }\n nonpositive(message) {\n return this._addCheck({\n kind: \"max\",\n value: BigInt(0),\n inclusive: true,\n message: errorUtil.toString(message),\n });\n }\n nonnegative(message) {\n return this._addCheck({\n kind: \"min\",\n value: BigInt(0),\n inclusive: true,\n message: errorUtil.toString(message),\n });\n }\n multipleOf(value, message) {\n return this._addCheck({\n kind: \"multipleOf\",\n value,\n message: errorUtil.toString(message),\n });\n }\n get minValue() {\n let min = null;\n for (const ch of this._def.checks) {\n if (ch.kind === \"min\") {\n if (min === null || ch.value > min)\n min = ch.value;\n }\n }\n return min;\n }\n get maxValue() {\n let max = null;\n for (const ch of this._def.checks) {\n if (ch.kind === \"max\") {\n if (max === null || ch.value < max)\n max = ch.value;\n }\n }\n return max;\n }\n}\nZodBigInt.create = (params) => {\n var _a;\n return new ZodBigInt({\n checks: [],\n typeName: ZodFirstPartyTypeKind.ZodBigInt,\n coerce: (_a = params === null || params === void 0 ? void 0 : params.coerce) !== null && _a !== void 0 ? _a : false,\n ...processCreateParams(params),\n });\n};\nclass ZodBoolean extends ZodType {\n _parse(input) {\n if (this._def.coerce) {\n input.data = Boolean(input.data);\n }\n const parsedType = this._getType(input);\n if (parsedType !== ZodParsedType.boolean) {\n const ctx = this._getOrReturnCtx(input);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.boolean,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n return OK(input.data);\n }\n}\nZodBoolean.create = (params) => {\n return new ZodBoolean({\n typeName: ZodFirstPartyTypeKind.ZodBoolean,\n coerce: (params === null || params === void 0 ? void 0 : params.coerce) || false,\n ...processCreateParams(params),\n });\n};\nclass ZodDate extends ZodType {\n _parse(input) {\n if (this._def.coerce) {\n input.data = new Date(input.data);\n }\n const parsedType = this._getType(input);\n if (parsedType !== ZodParsedType.date) {\n const ctx = this._getOrReturnCtx(input);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.date,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n if (isNaN(input.data.getTime())) {\n const ctx = this._getOrReturnCtx(input);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_date,\n });\n return INVALID;\n }\n const status = new ParseStatus();\n let ctx = undefined;\n for (const check of this._def.checks) {\n if (check.kind === \"min\") {\n if (input.data.getTime() < check.value) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n code: ZodIssueCode.too_small,\n message: check.message,\n inclusive: true,\n exact: false,\n minimum: check.value,\n type: \"date\",\n });\n status.dirty();\n }\n }\n else if (check.kind === \"max\") {\n if (input.data.getTime() > check.value) {\n ctx = this._getOrReturnCtx(input, ctx);\n addIssueToContext(ctx, {\n code: ZodIssueCode.too_big,\n message: check.message,\n inclusive: true,\n exact: false,\n maximum: check.value,\n type: \"date\",\n });\n status.dirty();\n }\n }\n else {\n util.assertNever(check);\n }\n }\n return {\n status: status.value,\n value: new Date(input.data.getTime()),\n };\n }\n _addCheck(check) {\n return new ZodDate({\n ...this._def,\n checks: [...this._def.checks, check],\n });\n }\n min(minDate, message) {\n return this._addCheck({\n kind: \"min\",\n value: minDate.getTime(),\n message: errorUtil.toString(message),\n });\n }\n max(maxDate, message) {\n return this._addCheck({\n kind: \"max\",\n value: maxDate.getTime(),\n message: errorUtil.toString(message),\n });\n }\n get minDate() {\n let min = null;\n for (const ch of this._def.checks) {\n if (ch.kind === \"min\") {\n if (min === null || ch.value > min)\n min = ch.value;\n }\n }\n return min != null ? new Date(min) : null;\n }\n get maxDate() {\n let max = null;\n for (const ch of this._def.checks) {\n if (ch.kind === \"max\") {\n if (max === null || ch.value < max)\n max = ch.value;\n }\n }\n return max != null ? new Date(max) : null;\n }\n}\nZodDate.create = (params) => {\n return new ZodDate({\n checks: [],\n coerce: (params === null || params === void 0 ? void 0 : params.coerce) || false,\n typeName: ZodFirstPartyTypeKind.ZodDate,\n ...processCreateParams(params),\n });\n};\nclass ZodSymbol extends ZodType {\n _parse(input) {\n const parsedType = this._getType(input);\n if (parsedType !== ZodParsedType.symbol) {\n const ctx = this._getOrReturnCtx(input);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.symbol,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n return OK(input.data);\n }\n}\nZodSymbol.create = (params) => {\n return new ZodSymbol({\n typeName: ZodFirstPartyTypeKind.ZodSymbol,\n ...processCreateParams(params),\n });\n};\nclass ZodUndefined extends ZodType {\n _parse(input) {\n const parsedType = this._getType(input);\n if (parsedType !== ZodParsedType.undefined) {\n const ctx = this._getOrReturnCtx(input);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.undefined,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n return OK(input.data);\n }\n}\nZodUndefined.create = (params) => {\n return new ZodUndefined({\n typeName: ZodFirstPartyTypeKind.ZodUndefined,\n ...processCreateParams(params),\n });\n};\nclass ZodNull extends ZodType {\n _parse(input) {\n const parsedType = this._getType(input);\n if (parsedType !== ZodParsedType.null) {\n const ctx = this._getOrReturnCtx(input);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.null,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n return OK(input.data);\n }\n}\nZodNull.create = (params) => {\n return new ZodNull({\n typeName: ZodFirstPartyTypeKind.ZodNull,\n ...processCreateParams(params),\n });\n};\nclass ZodAny extends ZodType {\n constructor() {\n super(...arguments);\n // to prevent instances of other classes from extending ZodAny. this causes issues with catchall in ZodObject.\n this._any = true;\n }\n _parse(input) {\n return OK(input.data);\n }\n}\nZodAny.create = (params) => {\n return new ZodAny({\n typeName: ZodFirstPartyTypeKind.ZodAny,\n ...processCreateParams(params),\n });\n};\nclass ZodUnknown extends ZodType {\n constructor() {\n super(...arguments);\n // required\n this._unknown = true;\n }\n _parse(input) {\n return OK(input.data);\n }\n}\nZodUnknown.create = (params) => {\n return new ZodUnknown({\n typeName: ZodFirstPartyTypeKind.ZodUnknown,\n ...processCreateParams(params),\n });\n};\nclass ZodNever extends ZodType {\n _parse(input) {\n const ctx = this._getOrReturnCtx(input);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.never,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n}\nZodNever.create = (params) => {\n return new ZodNever({\n typeName: ZodFirstPartyTypeKind.ZodNever,\n ...processCreateParams(params),\n });\n};\nclass ZodVoid extends ZodType {\n _parse(input) {\n const parsedType = this._getType(input);\n if (parsedType !== ZodParsedType.undefined) {\n const ctx = this._getOrReturnCtx(input);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.void,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n return OK(input.data);\n }\n}\nZodVoid.create = (params) => {\n return new ZodVoid({\n typeName: ZodFirstPartyTypeKind.ZodVoid,\n ...processCreateParams(params),\n });\n};\nclass ZodArray extends ZodType {\n _parse(input) {\n const { ctx, status } = this._processInputParams(input);\n const def = this._def;\n if (ctx.parsedType !== ZodParsedType.array) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.array,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n if (def.exactLength !== null) {\n const tooBig = ctx.data.length > def.exactLength.value;\n const tooSmall = ctx.data.length < def.exactLength.value;\n if (tooBig || tooSmall) {\n addIssueToContext(ctx, {\n code: tooBig ? ZodIssueCode.too_big : ZodIssueCode.too_small,\n minimum: (tooSmall ? def.exactLength.value : undefined),\n maximum: (tooBig ? def.exactLength.value : undefined),\n type: \"array\",\n inclusive: true,\n exact: true,\n message: def.exactLength.message,\n });\n status.dirty();\n }\n }\n if (def.minLength !== null) {\n if (ctx.data.length < def.minLength.value) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.too_small,\n minimum: def.minLength.value,\n type: \"array\",\n inclusive: true,\n exact: false,\n message: def.minLength.message,\n });\n status.dirty();\n }\n }\n if (def.maxLength !== null) {\n if (ctx.data.length > def.maxLength.value) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.too_big,\n maximum: def.maxLength.value,\n type: \"array\",\n inclusive: true,\n exact: false,\n message: def.maxLength.message,\n });\n status.dirty();\n }\n }\n if (ctx.common.async) {\n return Promise.all([...ctx.data].map((item, i) => {\n return def.type._parseAsync(new ParseInputLazyPath(ctx, item, ctx.path, i));\n })).then((result) => {\n return ParseStatus.mergeArray(status, result);\n });\n }\n const result = [...ctx.data].map((item, i) => {\n return def.type._parseSync(new ParseInputLazyPath(ctx, item, ctx.path, i));\n });\n return ParseStatus.mergeArray(status, result);\n }\n get element() {\n return this._def.type;\n }\n min(minLength, message) {\n return new ZodArray({\n ...this._def,\n minLength: { value: minLength, message: errorUtil.toString(message) },\n });\n }\n max(maxLength, message) {\n return new ZodArray({\n ...this._def,\n maxLength: { value: maxLength, message: errorUtil.toString(message) },\n });\n }\n length(len, message) {\n return new ZodArray({\n ...this._def,\n exactLength: { value: len, message: errorUtil.toString(message) },\n });\n }\n nonempty(message) {\n return this.min(1, message);\n }\n}\nZodArray.create = (schema, params) => {\n return new ZodArray({\n type: schema,\n minLength: null,\n maxLength: null,\n exactLength: null,\n typeName: ZodFirstPartyTypeKind.ZodArray,\n ...processCreateParams(params),\n });\n};\nfunction deepPartialify(schema) {\n if (schema instanceof ZodObject) {\n const newShape = {};\n for (const key in schema.shape) {\n const fieldSchema = schema.shape[key];\n newShape[key] = ZodOptional.create(deepPartialify(fieldSchema));\n }\n return new ZodObject({\n ...schema._def,\n shape: () => newShape,\n });\n }\n else if (schema instanceof ZodArray) {\n return new ZodArray({\n ...schema._def,\n type: deepPartialify(schema.element),\n });\n }\n else if (schema instanceof ZodOptional) {\n return ZodOptional.create(deepPartialify(schema.unwrap()));\n }\n else if (schema instanceof ZodNullable) {\n return ZodNullable.create(deepPartialify(schema.unwrap()));\n }\n else if (schema instanceof ZodTuple) {\n return ZodTuple.create(schema.items.map((item) => deepPartialify(item)));\n }\n else {\n return schema;\n }\n}\nclass ZodObject extends ZodType {\n constructor() {\n super(...arguments);\n this._cached = null;\n /**\n * @deprecated In most cases, this is no longer needed - unknown properties are now silently stripped.\n * If you want to pass through unknown properties, use `.passthrough()` instead.\n */\n this.nonstrict = this.passthrough;\n // extend<\n // Augmentation extends ZodRawShape,\n // NewOutput extends util.flatten<{\n // [k in keyof Augmentation | keyof Output]: k extends keyof Augmentation\n // ? Augmentation[k][\"_output\"]\n // : k extends keyof Output\n // ? Output[k]\n // : never;\n // }>,\n // NewInput extends util.flatten<{\n // [k in keyof Augmentation | keyof Input]: k extends keyof Augmentation\n // ? Augmentation[k][\"_input\"]\n // : k extends keyof Input\n // ? Input[k]\n // : never;\n // }>\n // >(\n // augmentation: Augmentation\n // ): ZodObject<\n // extendShape,\n // UnknownKeys,\n // Catchall,\n // NewOutput,\n // NewInput\n // > {\n // return new ZodObject({\n // ...this._def,\n // shape: () => ({\n // ...this._def.shape(),\n // ...augmentation,\n // }),\n // }) as any;\n // }\n /**\n * @deprecated Use `.extend` instead\n * */\n this.augment = this.extend;\n }\n _getCached() {\n if (this._cached !== null)\n return this._cached;\n const shape = this._def.shape();\n const keys = util.objectKeys(shape);\n return (this._cached = { shape, keys });\n }\n _parse(input) {\n const parsedType = this._getType(input);\n if (parsedType !== ZodParsedType.object) {\n const ctx = this._getOrReturnCtx(input);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.object,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n const { status, ctx } = this._processInputParams(input);\n const { shape, keys: shapeKeys } = this._getCached();\n const extraKeys = [];\n if (!(this._def.catchall instanceof ZodNever &&\n this._def.unknownKeys === \"strip\")) {\n for (const key in ctx.data) {\n if (!shapeKeys.includes(key)) {\n extraKeys.push(key);\n }\n }\n }\n const pairs = [];\n for (const key of shapeKeys) {\n const keyValidator = shape[key];\n const value = ctx.data[key];\n pairs.push({\n key: { status: \"valid\", value: key },\n value: keyValidator._parse(new ParseInputLazyPath(ctx, value, ctx.path, key)),\n alwaysSet: key in ctx.data,\n });\n }\n if (this._def.catchall instanceof ZodNever) {\n const unknownKeys = this._def.unknownKeys;\n if (unknownKeys === \"passthrough\") {\n for (const key of extraKeys) {\n pairs.push({\n key: { status: \"valid\", value: key },\n value: { status: \"valid\", value: ctx.data[key] },\n });\n }\n }\n else if (unknownKeys === \"strict\") {\n if (extraKeys.length > 0) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.unrecognized_keys,\n keys: extraKeys,\n });\n status.dirty();\n }\n }\n else if (unknownKeys === \"strip\") ;\n else {\n throw new Error(`Internal ZodObject error: invalid unknownKeys value.`);\n }\n }\n else {\n // run catchall validation\n const catchall = this._def.catchall;\n for (const key of extraKeys) {\n const value = ctx.data[key];\n pairs.push({\n key: { status: \"valid\", value: key },\n value: catchall._parse(new ParseInputLazyPath(ctx, value, ctx.path, key) //, ctx.child(key), value, getParsedType(value)\n ),\n alwaysSet: key in ctx.data,\n });\n }\n }\n if (ctx.common.async) {\n return Promise.resolve()\n .then(async () => {\n const syncPairs = [];\n for (const pair of pairs) {\n const key = await pair.key;\n syncPairs.push({\n key,\n value: await pair.value,\n alwaysSet: pair.alwaysSet,\n });\n }\n return syncPairs;\n })\n .then((syncPairs) => {\n return ParseStatus.mergeObjectSync(status, syncPairs);\n });\n }\n else {\n return ParseStatus.mergeObjectSync(status, pairs);\n }\n }\n get shape() {\n return this._def.shape();\n }\n strict(message) {\n errorUtil.errToObj;\n return new ZodObject({\n ...this._def,\n unknownKeys: \"strict\",\n ...(message !== undefined\n ? {\n errorMap: (issue, ctx) => {\n var _a, _b, _c, _d;\n const defaultError = (_c = (_b = (_a = this._def).errorMap) === null || _b === void 0 ? void 0 : _b.call(_a, issue, ctx).message) !== null && _c !== void 0 ? _c : ctx.defaultError;\n if (issue.code === \"unrecognized_keys\")\n return {\n message: (_d = errorUtil.errToObj(message).message) !== null && _d !== void 0 ? _d : defaultError,\n };\n return {\n message: defaultError,\n };\n },\n }\n : {}),\n });\n }\n strip() {\n return new ZodObject({\n ...this._def,\n unknownKeys: \"strip\",\n });\n }\n passthrough() {\n return new ZodObject({\n ...this._def,\n unknownKeys: \"passthrough\",\n });\n }\n // const AugmentFactory =\n // (def: Def) =>\n // (\n // augmentation: Augmentation\n // ): ZodObject<\n // extendShape, Augmentation>,\n // Def[\"unknownKeys\"],\n // Def[\"catchall\"]\n // > => {\n // return new ZodObject({\n // ...def,\n // shape: () => ({\n // ...def.shape(),\n // ...augmentation,\n // }),\n // }) as any;\n // };\n extend(augmentation) {\n return new ZodObject({\n ...this._def,\n shape: () => ({\n ...this._def.shape(),\n ...augmentation,\n }),\n });\n }\n /**\n * Prior to zod@1.0.12 there was a bug in the\n * inferred type of merged objects. Please\n * upgrade if you are experiencing issues.\n */\n merge(merging) {\n const merged = new ZodObject({\n unknownKeys: merging._def.unknownKeys,\n catchall: merging._def.catchall,\n shape: () => ({\n ...this._def.shape(),\n ...merging._def.shape(),\n }),\n typeName: ZodFirstPartyTypeKind.ZodObject,\n });\n return merged;\n }\n // merge<\n // Incoming extends AnyZodObject,\n // Augmentation extends Incoming[\"shape\"],\n // NewOutput extends {\n // [k in keyof Augmentation | keyof Output]: k extends keyof Augmentation\n // ? Augmentation[k][\"_output\"]\n // : k extends keyof Output\n // ? Output[k]\n // : never;\n // },\n // NewInput extends {\n // [k in keyof Augmentation | keyof Input]: k extends keyof Augmentation\n // ? Augmentation[k][\"_input\"]\n // : k extends keyof Input\n // ? Input[k]\n // : never;\n // }\n // >(\n // merging: Incoming\n // ): ZodObject<\n // extendShape>,\n // Incoming[\"_def\"][\"unknownKeys\"],\n // Incoming[\"_def\"][\"catchall\"],\n // NewOutput,\n // NewInput\n // > {\n // const merged: any = new ZodObject({\n // unknownKeys: merging._def.unknownKeys,\n // catchall: merging._def.catchall,\n // shape: () =>\n // objectUtil.mergeShapes(this._def.shape(), merging._def.shape()),\n // typeName: ZodFirstPartyTypeKind.ZodObject,\n // }) as any;\n // return merged;\n // }\n setKey(key, schema) {\n return this.augment({ [key]: schema });\n }\n // merge(\n // merging: Incoming\n // ): //ZodObject = (merging) => {\n // ZodObject<\n // extendShape>,\n // Incoming[\"_def\"][\"unknownKeys\"],\n // Incoming[\"_def\"][\"catchall\"]\n // > {\n // // const mergedShape = objectUtil.mergeShapes(\n // // this._def.shape(),\n // // merging._def.shape()\n // // );\n // const merged: any = new ZodObject({\n // unknownKeys: merging._def.unknownKeys,\n // catchall: merging._def.catchall,\n // shape: () =>\n // objectUtil.mergeShapes(this._def.shape(), merging._def.shape()),\n // typeName: ZodFirstPartyTypeKind.ZodObject,\n // }) as any;\n // return merged;\n // }\n catchall(index) {\n return new ZodObject({\n ...this._def,\n catchall: index,\n });\n }\n pick(mask) {\n const shape = {};\n util.objectKeys(mask).forEach((key) => {\n if (mask[key] && this.shape[key]) {\n shape[key] = this.shape[key];\n }\n });\n return new ZodObject({\n ...this._def,\n shape: () => shape,\n });\n }\n omit(mask) {\n const shape = {};\n util.objectKeys(this.shape).forEach((key) => {\n if (!mask[key]) {\n shape[key] = this.shape[key];\n }\n });\n return new ZodObject({\n ...this._def,\n shape: () => shape,\n });\n }\n /**\n * @deprecated\n */\n deepPartial() {\n return deepPartialify(this);\n }\n partial(mask) {\n const newShape = {};\n util.objectKeys(this.shape).forEach((key) => {\n const fieldSchema = this.shape[key];\n if (mask && !mask[key]) {\n newShape[key] = fieldSchema;\n }\n else {\n newShape[key] = fieldSchema.optional();\n }\n });\n return new ZodObject({\n ...this._def,\n shape: () => newShape,\n });\n }\n required(mask) {\n const newShape = {};\n util.objectKeys(this.shape).forEach((key) => {\n if (mask && !mask[key]) {\n newShape[key] = this.shape[key];\n }\n else {\n const fieldSchema = this.shape[key];\n let newField = fieldSchema;\n while (newField instanceof ZodOptional) {\n newField = newField._def.innerType;\n }\n newShape[key] = newField;\n }\n });\n return new ZodObject({\n ...this._def,\n shape: () => newShape,\n });\n }\n keyof() {\n return createZodEnum(util.objectKeys(this.shape));\n }\n}\nZodObject.create = (shape, params) => {\n return new ZodObject({\n shape: () => shape,\n unknownKeys: \"strip\",\n catchall: ZodNever.create(),\n typeName: ZodFirstPartyTypeKind.ZodObject,\n ...processCreateParams(params),\n });\n};\nZodObject.strictCreate = (shape, params) => {\n return new ZodObject({\n shape: () => shape,\n unknownKeys: \"strict\",\n catchall: ZodNever.create(),\n typeName: ZodFirstPartyTypeKind.ZodObject,\n ...processCreateParams(params),\n });\n};\nZodObject.lazycreate = (shape, params) => {\n return new ZodObject({\n shape,\n unknownKeys: \"strip\",\n catchall: ZodNever.create(),\n typeName: ZodFirstPartyTypeKind.ZodObject,\n ...processCreateParams(params),\n });\n};\nclass ZodUnion extends ZodType {\n _parse(input) {\n const { ctx } = this._processInputParams(input);\n const options = this._def.options;\n function handleResults(results) {\n // return first issue-free validation if it exists\n for (const result of results) {\n if (result.result.status === \"valid\") {\n return result.result;\n }\n }\n for (const result of results) {\n if (result.result.status === \"dirty\") {\n // add issues from dirty option\n ctx.common.issues.push(...result.ctx.common.issues);\n return result.result;\n }\n }\n // return invalid\n const unionErrors = results.map((result) => new ZodError(result.ctx.common.issues));\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_union,\n unionErrors,\n });\n return INVALID;\n }\n if (ctx.common.async) {\n return Promise.all(options.map(async (option) => {\n const childCtx = {\n ...ctx,\n common: {\n ...ctx.common,\n issues: [],\n },\n parent: null,\n };\n return {\n result: await option._parseAsync({\n data: ctx.data,\n path: ctx.path,\n parent: childCtx,\n }),\n ctx: childCtx,\n };\n })).then(handleResults);\n }\n else {\n let dirty = undefined;\n const issues = [];\n for (const option of options) {\n const childCtx = {\n ...ctx,\n common: {\n ...ctx.common,\n issues: [],\n },\n parent: null,\n };\n const result = option._parseSync({\n data: ctx.data,\n path: ctx.path,\n parent: childCtx,\n });\n if (result.status === \"valid\") {\n return result;\n }\n else if (result.status === \"dirty\" && !dirty) {\n dirty = { result, ctx: childCtx };\n }\n if (childCtx.common.issues.length) {\n issues.push(childCtx.common.issues);\n }\n }\n if (dirty) {\n ctx.common.issues.push(...dirty.ctx.common.issues);\n return dirty.result;\n }\n const unionErrors = issues.map((issues) => new ZodError(issues));\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_union,\n unionErrors,\n });\n return INVALID;\n }\n }\n get options() {\n return this._def.options;\n }\n}\nZodUnion.create = (types, params) => {\n return new ZodUnion({\n options: types,\n typeName: ZodFirstPartyTypeKind.ZodUnion,\n ...processCreateParams(params),\n });\n};\n/////////////////////////////////////////////////////\n/////////////////////////////////////////////////////\n////////// //////////\n////////// ZodDiscriminatedUnion //////////\n////////// //////////\n/////////////////////////////////////////////////////\n/////////////////////////////////////////////////////\nconst getDiscriminator = (type) => {\n if (type instanceof ZodLazy) {\n return getDiscriminator(type.schema);\n }\n else if (type instanceof ZodEffects) {\n return getDiscriminator(type.innerType());\n }\n else if (type instanceof ZodLiteral) {\n return [type.value];\n }\n else if (type instanceof ZodEnum) {\n return type.options;\n }\n else if (type instanceof ZodNativeEnum) {\n // eslint-disable-next-line ban/ban\n return Object.keys(type.enum);\n }\n else if (type instanceof ZodDefault) {\n return getDiscriminator(type._def.innerType);\n }\n else if (type instanceof ZodUndefined) {\n return [undefined];\n }\n else if (type instanceof ZodNull) {\n return [null];\n }\n else {\n return null;\n }\n};\nclass ZodDiscriminatedUnion extends ZodType {\n _parse(input) {\n const { ctx } = this._processInputParams(input);\n if (ctx.parsedType !== ZodParsedType.object) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.object,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n const discriminator = this.discriminator;\n const discriminatorValue = ctx.data[discriminator];\n const option = this.optionsMap.get(discriminatorValue);\n if (!option) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_union_discriminator,\n options: Array.from(this.optionsMap.keys()),\n path: [discriminator],\n });\n return INVALID;\n }\n if (ctx.common.async) {\n return option._parseAsync({\n data: ctx.data,\n path: ctx.path,\n parent: ctx,\n });\n }\n else {\n return option._parseSync({\n data: ctx.data,\n path: ctx.path,\n parent: ctx,\n });\n }\n }\n get discriminator() {\n return this._def.discriminator;\n }\n get options() {\n return this._def.options;\n }\n get optionsMap() {\n return this._def.optionsMap;\n }\n /**\n * The constructor of the discriminated union schema. Its behaviour is very similar to that of the normal z.union() constructor.\n * However, it only allows a union of objects, all of which need to share a discriminator property. This property must\n * have a different value for each object in the union.\n * @param discriminator the name of the discriminator property\n * @param types an array of object schemas\n * @param params\n */\n static create(discriminator, options, params) {\n // Get all the valid discriminator values\n const optionsMap = new Map();\n // try {\n for (const type of options) {\n const discriminatorValues = getDiscriminator(type.shape[discriminator]);\n if (!discriminatorValues) {\n throw new Error(`A discriminator value for key \\`${discriminator}\\` could not be extracted from all schema options`);\n }\n for (const value of discriminatorValues) {\n if (optionsMap.has(value)) {\n throw new Error(`Discriminator property ${String(discriminator)} has duplicate value ${String(value)}`);\n }\n optionsMap.set(value, type);\n }\n }\n return new ZodDiscriminatedUnion({\n typeName: ZodFirstPartyTypeKind.ZodDiscriminatedUnion,\n discriminator,\n options,\n optionsMap,\n ...processCreateParams(params),\n });\n }\n}\nfunction mergeValues(a, b) {\n const aType = getParsedType(a);\n const bType = getParsedType(b);\n if (a === b) {\n return { valid: true, data: a };\n }\n else if (aType === ZodParsedType.object && bType === ZodParsedType.object) {\n const bKeys = util.objectKeys(b);\n const sharedKeys = util\n .objectKeys(a)\n .filter((key) => bKeys.indexOf(key) !== -1);\n const newObj = { ...a, ...b };\n for (const key of sharedKeys) {\n const sharedValue = mergeValues(a[key], b[key]);\n if (!sharedValue.valid) {\n return { valid: false };\n }\n newObj[key] = sharedValue.data;\n }\n return { valid: true, data: newObj };\n }\n else if (aType === ZodParsedType.array && bType === ZodParsedType.array) {\n if (a.length !== b.length) {\n return { valid: false };\n }\n const newArray = [];\n for (let index = 0; index < a.length; index++) {\n const itemA = a[index];\n const itemB = b[index];\n const sharedValue = mergeValues(itemA, itemB);\n if (!sharedValue.valid) {\n return { valid: false };\n }\n newArray.push(sharedValue.data);\n }\n return { valid: true, data: newArray };\n }\n else if (aType === ZodParsedType.date &&\n bType === ZodParsedType.date &&\n +a === +b) {\n return { valid: true, data: a };\n }\n else {\n return { valid: false };\n }\n}\nclass ZodIntersection extends ZodType {\n _parse(input) {\n const { status, ctx } = this._processInputParams(input);\n const handleParsed = (parsedLeft, parsedRight) => {\n if (isAborted(parsedLeft) || isAborted(parsedRight)) {\n return INVALID;\n }\n const merged = mergeValues(parsedLeft.value, parsedRight.value);\n if (!merged.valid) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_intersection_types,\n });\n return INVALID;\n }\n if (isDirty(parsedLeft) || isDirty(parsedRight)) {\n status.dirty();\n }\n return { status: status.value, value: merged.data };\n };\n if (ctx.common.async) {\n return Promise.all([\n this._def.left._parseAsync({\n data: ctx.data,\n path: ctx.path,\n parent: ctx,\n }),\n this._def.right._parseAsync({\n data: ctx.data,\n path: ctx.path,\n parent: ctx,\n }),\n ]).then(([left, right]) => handleParsed(left, right));\n }\n else {\n return handleParsed(this._def.left._parseSync({\n data: ctx.data,\n path: ctx.path,\n parent: ctx,\n }), this._def.right._parseSync({\n data: ctx.data,\n path: ctx.path,\n parent: ctx,\n }));\n }\n }\n}\nZodIntersection.create = (left, right, params) => {\n return new ZodIntersection({\n left: left,\n right: right,\n typeName: ZodFirstPartyTypeKind.ZodIntersection,\n ...processCreateParams(params),\n });\n};\nclass ZodTuple extends ZodType {\n _parse(input) {\n const { status, ctx } = this._processInputParams(input);\n if (ctx.parsedType !== ZodParsedType.array) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.array,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n if (ctx.data.length < this._def.items.length) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.too_small,\n minimum: this._def.items.length,\n inclusive: true,\n exact: false,\n type: \"array\",\n });\n return INVALID;\n }\n const rest = this._def.rest;\n if (!rest && ctx.data.length > this._def.items.length) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.too_big,\n maximum: this._def.items.length,\n inclusive: true,\n exact: false,\n type: \"array\",\n });\n status.dirty();\n }\n const items = [...ctx.data]\n .map((item, itemIndex) => {\n const schema = this._def.items[itemIndex] || this._def.rest;\n if (!schema)\n return null;\n return schema._parse(new ParseInputLazyPath(ctx, item, ctx.path, itemIndex));\n })\n .filter((x) => !!x); // filter nulls\n if (ctx.common.async) {\n return Promise.all(items).then((results) => {\n return ParseStatus.mergeArray(status, results);\n });\n }\n else {\n return ParseStatus.mergeArray(status, items);\n }\n }\n get items() {\n return this._def.items;\n }\n rest(rest) {\n return new ZodTuple({\n ...this._def,\n rest,\n });\n }\n}\nZodTuple.create = (schemas, params) => {\n if (!Array.isArray(schemas)) {\n throw new Error(\"You must pass an array of schemas to z.tuple([ ... ])\");\n }\n return new ZodTuple({\n items: schemas,\n typeName: ZodFirstPartyTypeKind.ZodTuple,\n rest: null,\n ...processCreateParams(params),\n });\n};\nclass ZodRecord extends ZodType {\n get keySchema() {\n return this._def.keyType;\n }\n get valueSchema() {\n return this._def.valueType;\n }\n _parse(input) {\n const { status, ctx } = this._processInputParams(input);\n if (ctx.parsedType !== ZodParsedType.object) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.object,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n const pairs = [];\n const keyType = this._def.keyType;\n const valueType = this._def.valueType;\n for (const key in ctx.data) {\n pairs.push({\n key: keyType._parse(new ParseInputLazyPath(ctx, key, ctx.path, key)),\n value: valueType._parse(new ParseInputLazyPath(ctx, ctx.data[key], ctx.path, key)),\n });\n }\n if (ctx.common.async) {\n return ParseStatus.mergeObjectAsync(status, pairs);\n }\n else {\n return ParseStatus.mergeObjectSync(status, pairs);\n }\n }\n get element() {\n return this._def.valueType;\n }\n static create(first, second, third) {\n if (second instanceof ZodType) {\n return new ZodRecord({\n keyType: first,\n valueType: second,\n typeName: ZodFirstPartyTypeKind.ZodRecord,\n ...processCreateParams(third),\n });\n }\n return new ZodRecord({\n keyType: ZodString.create(),\n valueType: first,\n typeName: ZodFirstPartyTypeKind.ZodRecord,\n ...processCreateParams(second),\n });\n }\n}\nclass ZodMap extends ZodType {\n _parse(input) {\n const { status, ctx } = this._processInputParams(input);\n if (ctx.parsedType !== ZodParsedType.map) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.map,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n const keyType = this._def.keyType;\n const valueType = this._def.valueType;\n const pairs = [...ctx.data.entries()].map(([key, value], index) => {\n return {\n key: keyType._parse(new ParseInputLazyPath(ctx, key, ctx.path, [index, \"key\"])),\n value: valueType._parse(new ParseInputLazyPath(ctx, value, ctx.path, [index, \"value\"])),\n };\n });\n if (ctx.common.async) {\n const finalMap = new Map();\n return Promise.resolve().then(async () => {\n for (const pair of pairs) {\n const key = await pair.key;\n const value = await pair.value;\n if (key.status === \"aborted\" || value.status === \"aborted\") {\n return INVALID;\n }\n if (key.status === \"dirty\" || value.status === \"dirty\") {\n status.dirty();\n }\n finalMap.set(key.value, value.value);\n }\n return { status: status.value, value: finalMap };\n });\n }\n else {\n const finalMap = new Map();\n for (const pair of pairs) {\n const key = pair.key;\n const value = pair.value;\n if (key.status === \"aborted\" || value.status === \"aborted\") {\n return INVALID;\n }\n if (key.status === \"dirty\" || value.status === \"dirty\") {\n status.dirty();\n }\n finalMap.set(key.value, value.value);\n }\n return { status: status.value, value: finalMap };\n }\n }\n}\nZodMap.create = (keyType, valueType, params) => {\n return new ZodMap({\n valueType,\n keyType,\n typeName: ZodFirstPartyTypeKind.ZodMap,\n ...processCreateParams(params),\n });\n};\nclass ZodSet extends ZodType {\n _parse(input) {\n const { status, ctx } = this._processInputParams(input);\n if (ctx.parsedType !== ZodParsedType.set) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.set,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n const def = this._def;\n if (def.minSize !== null) {\n if (ctx.data.size < def.minSize.value) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.too_small,\n minimum: def.minSize.value,\n type: \"set\",\n inclusive: true,\n exact: false,\n message: def.minSize.message,\n });\n status.dirty();\n }\n }\n if (def.maxSize !== null) {\n if (ctx.data.size > def.maxSize.value) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.too_big,\n maximum: def.maxSize.value,\n type: \"set\",\n inclusive: true,\n exact: false,\n message: def.maxSize.message,\n });\n status.dirty();\n }\n }\n const valueType = this._def.valueType;\n function finalizeSet(elements) {\n const parsedSet = new Set();\n for (const element of elements) {\n if (element.status === \"aborted\")\n return INVALID;\n if (element.status === \"dirty\")\n status.dirty();\n parsedSet.add(element.value);\n }\n return { status: status.value, value: parsedSet };\n }\n const elements = [...ctx.data.values()].map((item, i) => valueType._parse(new ParseInputLazyPath(ctx, item, ctx.path, i)));\n if (ctx.common.async) {\n return Promise.all(elements).then((elements) => finalizeSet(elements));\n }\n else {\n return finalizeSet(elements);\n }\n }\n min(minSize, message) {\n return new ZodSet({\n ...this._def,\n minSize: { value: minSize, message: errorUtil.toString(message) },\n });\n }\n max(maxSize, message) {\n return new ZodSet({\n ...this._def,\n maxSize: { value: maxSize, message: errorUtil.toString(message) },\n });\n }\n size(size, message) {\n return this.min(size, message).max(size, message);\n }\n nonempty(message) {\n return this.min(1, message);\n }\n}\nZodSet.create = (valueType, params) => {\n return new ZodSet({\n valueType,\n minSize: null,\n maxSize: null,\n typeName: ZodFirstPartyTypeKind.ZodSet,\n ...processCreateParams(params),\n });\n};\nclass ZodFunction extends ZodType {\n constructor() {\n super(...arguments);\n this.validate = this.implement;\n }\n _parse(input) {\n const { ctx } = this._processInputParams(input);\n if (ctx.parsedType !== ZodParsedType.function) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.function,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n function makeArgsIssue(args, error) {\n return makeIssue({\n data: args,\n path: ctx.path,\n errorMaps: [\n ctx.common.contextualErrorMap,\n ctx.schemaErrorMap,\n getErrorMap(),\n errorMap,\n ].filter((x) => !!x),\n issueData: {\n code: ZodIssueCode.invalid_arguments,\n argumentsError: error,\n },\n });\n }\n function makeReturnsIssue(returns, error) {\n return makeIssue({\n data: returns,\n path: ctx.path,\n errorMaps: [\n ctx.common.contextualErrorMap,\n ctx.schemaErrorMap,\n getErrorMap(),\n errorMap,\n ].filter((x) => !!x),\n issueData: {\n code: ZodIssueCode.invalid_return_type,\n returnTypeError: error,\n },\n });\n }\n const params = { errorMap: ctx.common.contextualErrorMap };\n const fn = ctx.data;\n if (this._def.returns instanceof ZodPromise) {\n return OK(async (...args) => {\n const error = new ZodError([]);\n const parsedArgs = await this._def.args\n .parseAsync(args, params)\n .catch((e) => {\n error.addIssue(makeArgsIssue(args, e));\n throw error;\n });\n const result = await fn(...parsedArgs);\n const parsedReturns = await this._def.returns._def.type\n .parseAsync(result, params)\n .catch((e) => {\n error.addIssue(makeReturnsIssue(result, e));\n throw error;\n });\n return parsedReturns;\n });\n }\n else {\n return OK((...args) => {\n const parsedArgs = this._def.args.safeParse(args, params);\n if (!parsedArgs.success) {\n throw new ZodError([makeArgsIssue(args, parsedArgs.error)]);\n }\n const result = fn(...parsedArgs.data);\n const parsedReturns = this._def.returns.safeParse(result, params);\n if (!parsedReturns.success) {\n throw new ZodError([makeReturnsIssue(result, parsedReturns.error)]);\n }\n return parsedReturns.data;\n });\n }\n }\n parameters() {\n return this._def.args;\n }\n returnType() {\n return this._def.returns;\n }\n args(...items) {\n return new ZodFunction({\n ...this._def,\n args: ZodTuple.create(items).rest(ZodUnknown.create()),\n });\n }\n returns(returnType) {\n return new ZodFunction({\n ...this._def,\n returns: returnType,\n });\n }\n implement(func) {\n const validatedFunc = this.parse(func);\n return validatedFunc;\n }\n strictImplement(func) {\n const validatedFunc = this.parse(func);\n return validatedFunc;\n }\n static create(args, returns, params) {\n return new ZodFunction({\n args: (args\n ? args\n : ZodTuple.create([]).rest(ZodUnknown.create())),\n returns: returns || ZodUnknown.create(),\n typeName: ZodFirstPartyTypeKind.ZodFunction,\n ...processCreateParams(params),\n });\n }\n}\nclass ZodLazy extends ZodType {\n get schema() {\n return this._def.getter();\n }\n _parse(input) {\n const { ctx } = this._processInputParams(input);\n const lazySchema = this._def.getter();\n return lazySchema._parse({ data: ctx.data, path: ctx.path, parent: ctx });\n }\n}\nZodLazy.create = (getter, params) => {\n return new ZodLazy({\n getter: getter,\n typeName: ZodFirstPartyTypeKind.ZodLazy,\n ...processCreateParams(params),\n });\n};\nclass ZodLiteral extends ZodType {\n _parse(input) {\n if (input.data !== this._def.value) {\n const ctx = this._getOrReturnCtx(input);\n addIssueToContext(ctx, {\n received: ctx.data,\n code: ZodIssueCode.invalid_literal,\n expected: this._def.value,\n });\n return INVALID;\n }\n return { status: \"valid\", value: input.data };\n }\n get value() {\n return this._def.value;\n }\n}\nZodLiteral.create = (value, params) => {\n return new ZodLiteral({\n value: value,\n typeName: ZodFirstPartyTypeKind.ZodLiteral,\n ...processCreateParams(params),\n });\n};\nfunction createZodEnum(values, params) {\n return new ZodEnum({\n values: values,\n typeName: ZodFirstPartyTypeKind.ZodEnum,\n ...processCreateParams(params),\n });\n}\nclass ZodEnum extends ZodType {\n _parse(input) {\n if (typeof input.data !== \"string\") {\n const ctx = this._getOrReturnCtx(input);\n const expectedValues = this._def.values;\n addIssueToContext(ctx, {\n expected: util.joinValues(expectedValues),\n received: ctx.parsedType,\n code: ZodIssueCode.invalid_type,\n });\n return INVALID;\n }\n if (this._def.values.indexOf(input.data) === -1) {\n const ctx = this._getOrReturnCtx(input);\n const expectedValues = this._def.values;\n addIssueToContext(ctx, {\n received: ctx.data,\n code: ZodIssueCode.invalid_enum_value,\n options: expectedValues,\n });\n return INVALID;\n }\n return OK(input.data);\n }\n get options() {\n return this._def.values;\n }\n get enum() {\n const enumValues = {};\n for (const val of this._def.values) {\n enumValues[val] = val;\n }\n return enumValues;\n }\n get Values() {\n const enumValues = {};\n for (const val of this._def.values) {\n enumValues[val] = val;\n }\n return enumValues;\n }\n get Enum() {\n const enumValues = {};\n for (const val of this._def.values) {\n enumValues[val] = val;\n }\n return enumValues;\n }\n extract(values) {\n return ZodEnum.create(values);\n }\n exclude(values) {\n return ZodEnum.create(this.options.filter((opt) => !values.includes(opt)));\n }\n}\nZodEnum.create = createZodEnum;\nclass ZodNativeEnum extends ZodType {\n _parse(input) {\n const nativeEnumValues = util.getValidEnumValues(this._def.values);\n const ctx = this._getOrReturnCtx(input);\n if (ctx.parsedType !== ZodParsedType.string &&\n ctx.parsedType !== ZodParsedType.number) {\n const expectedValues = util.objectValues(nativeEnumValues);\n addIssueToContext(ctx, {\n expected: util.joinValues(expectedValues),\n received: ctx.parsedType,\n code: ZodIssueCode.invalid_type,\n });\n return INVALID;\n }\n if (nativeEnumValues.indexOf(input.data) === -1) {\n const expectedValues = util.objectValues(nativeEnumValues);\n addIssueToContext(ctx, {\n received: ctx.data,\n code: ZodIssueCode.invalid_enum_value,\n options: expectedValues,\n });\n return INVALID;\n }\n return OK(input.data);\n }\n get enum() {\n return this._def.values;\n }\n}\nZodNativeEnum.create = (values, params) => {\n return new ZodNativeEnum({\n values: values,\n typeName: ZodFirstPartyTypeKind.ZodNativeEnum,\n ...processCreateParams(params),\n });\n};\nclass ZodPromise extends ZodType {\n unwrap() {\n return this._def.type;\n }\n _parse(input) {\n const { ctx } = this._processInputParams(input);\n if (ctx.parsedType !== ZodParsedType.promise &&\n ctx.common.async === false) {\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.promise,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n const promisified = ctx.parsedType === ZodParsedType.promise\n ? ctx.data\n : Promise.resolve(ctx.data);\n return OK(promisified.then((data) => {\n return this._def.type.parseAsync(data, {\n path: ctx.path,\n errorMap: ctx.common.contextualErrorMap,\n });\n }));\n }\n}\nZodPromise.create = (schema, params) => {\n return new ZodPromise({\n type: schema,\n typeName: ZodFirstPartyTypeKind.ZodPromise,\n ...processCreateParams(params),\n });\n};\nclass ZodEffects extends ZodType {\n innerType() {\n return this._def.schema;\n }\n sourceType() {\n return this._def.schema._def.typeName === ZodFirstPartyTypeKind.ZodEffects\n ? this._def.schema.sourceType()\n : this._def.schema;\n }\n _parse(input) {\n const { status, ctx } = this._processInputParams(input);\n const effect = this._def.effect || null;\n if (effect.type === \"preprocess\") {\n const processed = effect.transform(ctx.data);\n if (ctx.common.async) {\n return Promise.resolve(processed).then((processed) => {\n return this._def.schema._parseAsync({\n data: processed,\n path: ctx.path,\n parent: ctx,\n });\n });\n }\n else {\n return this._def.schema._parseSync({\n data: processed,\n path: ctx.path,\n parent: ctx,\n });\n }\n }\n const checkCtx = {\n addIssue: (arg) => {\n addIssueToContext(ctx, arg);\n if (arg.fatal) {\n status.abort();\n }\n else {\n status.dirty();\n }\n },\n get path() {\n return ctx.path;\n },\n };\n checkCtx.addIssue = checkCtx.addIssue.bind(checkCtx);\n if (effect.type === \"refinement\") {\n const executeRefinement = (acc\n // effect: RefinementEffect\n ) => {\n const result = effect.refinement(acc, checkCtx);\n if (ctx.common.async) {\n return Promise.resolve(result);\n }\n if (result instanceof Promise) {\n throw new Error(\"Async refinement encountered during synchronous parse operation. Use .parseAsync instead.\");\n }\n return acc;\n };\n if (ctx.common.async === false) {\n const inner = this._def.schema._parseSync({\n data: ctx.data,\n path: ctx.path,\n parent: ctx,\n });\n if (inner.status === \"aborted\")\n return INVALID;\n if (inner.status === \"dirty\")\n status.dirty();\n // return value is ignored\n executeRefinement(inner.value);\n return { status: status.value, value: inner.value };\n }\n else {\n return this._def.schema\n ._parseAsync({ data: ctx.data, path: ctx.path, parent: ctx })\n .then((inner) => {\n if (inner.status === \"aborted\")\n return INVALID;\n if (inner.status === \"dirty\")\n status.dirty();\n return executeRefinement(inner.value).then(() => {\n return { status: status.value, value: inner.value };\n });\n });\n }\n }\n if (effect.type === \"transform\") {\n if (ctx.common.async === false) {\n const base = this._def.schema._parseSync({\n data: ctx.data,\n path: ctx.path,\n parent: ctx,\n });\n if (!isValid(base))\n return base;\n const result = effect.transform(base.value, checkCtx);\n if (result instanceof Promise) {\n throw new Error(`Asynchronous transform encountered during synchronous parse operation. Use .parseAsync instead.`);\n }\n return { status: status.value, value: result };\n }\n else {\n return this._def.schema\n ._parseAsync({ data: ctx.data, path: ctx.path, parent: ctx })\n .then((base) => {\n if (!isValid(base))\n return base;\n return Promise.resolve(effect.transform(base.value, checkCtx)).then((result) => ({ status: status.value, value: result }));\n });\n }\n }\n util.assertNever(effect);\n }\n}\nZodEffects.create = (schema, effect, params) => {\n return new ZodEffects({\n schema,\n typeName: ZodFirstPartyTypeKind.ZodEffects,\n effect,\n ...processCreateParams(params),\n });\n};\nZodEffects.createWithPreprocess = (preprocess, schema, params) => {\n return new ZodEffects({\n schema,\n effect: { type: \"preprocess\", transform: preprocess },\n typeName: ZodFirstPartyTypeKind.ZodEffects,\n ...processCreateParams(params),\n });\n};\nclass ZodOptional extends ZodType {\n _parse(input) {\n const parsedType = this._getType(input);\n if (parsedType === ZodParsedType.undefined) {\n return OK(undefined);\n }\n return this._def.innerType._parse(input);\n }\n unwrap() {\n return this._def.innerType;\n }\n}\nZodOptional.create = (type, params) => {\n return new ZodOptional({\n innerType: type,\n typeName: ZodFirstPartyTypeKind.ZodOptional,\n ...processCreateParams(params),\n });\n};\nclass ZodNullable extends ZodType {\n _parse(input) {\n const parsedType = this._getType(input);\n if (parsedType === ZodParsedType.null) {\n return OK(null);\n }\n return this._def.innerType._parse(input);\n }\n unwrap() {\n return this._def.innerType;\n }\n}\nZodNullable.create = (type, params) => {\n return new ZodNullable({\n innerType: type,\n typeName: ZodFirstPartyTypeKind.ZodNullable,\n ...processCreateParams(params),\n });\n};\nclass ZodDefault extends ZodType {\n _parse(input) {\n const { ctx } = this._processInputParams(input);\n let data = ctx.data;\n if (ctx.parsedType === ZodParsedType.undefined) {\n data = this._def.defaultValue();\n }\n return this._def.innerType._parse({\n data,\n path: ctx.path,\n parent: ctx,\n });\n }\n removeDefault() {\n return this._def.innerType;\n }\n}\nZodDefault.create = (type, params) => {\n return new ZodDefault({\n innerType: type,\n typeName: ZodFirstPartyTypeKind.ZodDefault,\n defaultValue: typeof params.default === \"function\"\n ? params.default\n : () => params.default,\n ...processCreateParams(params),\n });\n};\nclass ZodCatch extends ZodType {\n _parse(input) {\n const { ctx } = this._processInputParams(input);\n // newCtx is used to not collect issues from inner types in ctx\n const newCtx = {\n ...ctx,\n common: {\n ...ctx.common,\n issues: [],\n },\n };\n const result = this._def.innerType._parse({\n data: newCtx.data,\n path: newCtx.path,\n parent: {\n ...newCtx,\n },\n });\n if (isAsync(result)) {\n return result.then((result) => {\n return {\n status: \"valid\",\n value: result.status === \"valid\"\n ? result.value\n : this._def.catchValue({\n get error() {\n return new ZodError(newCtx.common.issues);\n },\n input: newCtx.data,\n }),\n };\n });\n }\n else {\n return {\n status: \"valid\",\n value: result.status === \"valid\"\n ? result.value\n : this._def.catchValue({\n get error() {\n return new ZodError(newCtx.common.issues);\n },\n input: newCtx.data,\n }),\n };\n }\n }\n removeCatch() {\n return this._def.innerType;\n }\n}\nZodCatch.create = (type, params) => {\n return new ZodCatch({\n innerType: type,\n typeName: ZodFirstPartyTypeKind.ZodCatch,\n catchValue: typeof params.catch === \"function\" ? params.catch : () => params.catch,\n ...processCreateParams(params),\n });\n};\nclass ZodNaN extends ZodType {\n _parse(input) {\n const parsedType = this._getType(input);\n if (parsedType !== ZodParsedType.nan) {\n const ctx = this._getOrReturnCtx(input);\n addIssueToContext(ctx, {\n code: ZodIssueCode.invalid_type,\n expected: ZodParsedType.nan,\n received: ctx.parsedType,\n });\n return INVALID;\n }\n return { status: \"valid\", value: input.data };\n }\n}\nZodNaN.create = (params) => {\n return new ZodNaN({\n typeName: ZodFirstPartyTypeKind.ZodNaN,\n ...processCreateParams(params),\n });\n};\nconst BRAND = Symbol(\"zod_brand\");\nclass ZodBranded extends ZodType {\n _parse(input) {\n const { ctx } = this._processInputParams(input);\n const data = ctx.data;\n return this._def.type._parse({\n data,\n path: ctx.path,\n parent: ctx,\n });\n }\n unwrap() {\n return this._def.type;\n }\n}\nclass ZodPipeline extends ZodType {\n _parse(input) {\n const { status, ctx } = this._processInputParams(input);\n if (ctx.common.async) {\n const handleAsync = async () => {\n const inResult = await this._def.in._parseAsync({\n data: ctx.data,\n path: ctx.path,\n parent: ctx,\n });\n if (inResult.status === \"aborted\")\n return INVALID;\n if (inResult.status === \"dirty\") {\n status.dirty();\n return DIRTY(inResult.value);\n }\n else {\n return this._def.out._parseAsync({\n data: inResult.value,\n path: ctx.path,\n parent: ctx,\n });\n }\n };\n return handleAsync();\n }\n else {\n const inResult = this._def.in._parseSync({\n data: ctx.data,\n path: ctx.path,\n parent: ctx,\n });\n if (inResult.status === \"aborted\")\n return INVALID;\n if (inResult.status === \"dirty\") {\n status.dirty();\n return {\n status: \"dirty\",\n value: inResult.value,\n };\n }\n else {\n return this._def.out._parseSync({\n data: inResult.value,\n path: ctx.path,\n parent: ctx,\n });\n }\n }\n }\n static create(a, b) {\n return new ZodPipeline({\n in: a,\n out: b,\n typeName: ZodFirstPartyTypeKind.ZodPipeline,\n });\n }\n}\nconst custom = (check, params = {}, \n/*\n * @deprecated\n *\n * Pass `fatal` into the params object instead:\n *\n * ```ts\n * z.string().custom((val) => val.length > 5, { fatal: false })\n * ```\n *\n */\nfatal) => {\n if (check)\n return ZodAny.create().superRefine((data, ctx) => {\n var _a, _b;\n if (!check(data)) {\n const p = typeof params === \"function\"\n ? params(data)\n : typeof params === \"string\"\n ? { message: params }\n : params;\n const _fatal = (_b = (_a = p.fatal) !== null && _a !== void 0 ? _a : fatal) !== null && _b !== void 0 ? _b : true;\n const p2 = typeof p === \"string\" ? { message: p } : p;\n ctx.addIssue({ code: \"custom\", ...p2, fatal: _fatal });\n }\n });\n return ZodAny.create();\n};\nconst late = {\n object: ZodObject.lazycreate,\n};\nvar ZodFirstPartyTypeKind;\n(function (ZodFirstPartyTypeKind) {\n ZodFirstPartyTypeKind[\"ZodString\"] = \"ZodString\";\n ZodFirstPartyTypeKind[\"ZodNumber\"] = \"ZodNumber\";\n ZodFirstPartyTypeKind[\"ZodNaN\"] = \"ZodNaN\";\n ZodFirstPartyTypeKind[\"ZodBigInt\"] = \"ZodBigInt\";\n ZodFirstPartyTypeKind[\"ZodBoolean\"] = \"ZodBoolean\";\n ZodFirstPartyTypeKind[\"ZodDate\"] = \"ZodDate\";\n ZodFirstPartyTypeKind[\"ZodSymbol\"] = \"ZodSymbol\";\n ZodFirstPartyTypeKind[\"ZodUndefined\"] = \"ZodUndefined\";\n ZodFirstPartyTypeKind[\"ZodNull\"] = \"ZodNull\";\n ZodFirstPartyTypeKind[\"ZodAny\"] = \"ZodAny\";\n ZodFirstPartyTypeKind[\"ZodUnknown\"] = \"ZodUnknown\";\n ZodFirstPartyTypeKind[\"ZodNever\"] = \"ZodNever\";\n ZodFirstPartyTypeKind[\"ZodVoid\"] = \"ZodVoid\";\n ZodFirstPartyTypeKind[\"ZodArray\"] = \"ZodArray\";\n ZodFirstPartyTypeKind[\"ZodObject\"] = \"ZodObject\";\n ZodFirstPartyTypeKind[\"ZodUnion\"] = \"ZodUnion\";\n ZodFirstPartyTypeKind[\"ZodDiscriminatedUnion\"] = \"ZodDiscriminatedUnion\";\n ZodFirstPartyTypeKind[\"ZodIntersection\"] = \"ZodIntersection\";\n ZodFirstPartyTypeKind[\"ZodTuple\"] = \"ZodTuple\";\n ZodFirstPartyTypeKind[\"ZodRecord\"] = \"ZodRecord\";\n ZodFirstPartyTypeKind[\"ZodMap\"] = \"ZodMap\";\n ZodFirstPartyTypeKind[\"ZodSet\"] = \"ZodSet\";\n ZodFirstPartyTypeKind[\"ZodFunction\"] = \"ZodFunction\";\n ZodFirstPartyTypeKind[\"ZodLazy\"] = \"ZodLazy\";\n ZodFirstPartyTypeKind[\"ZodLiteral\"] = \"ZodLiteral\";\n ZodFirstPartyTypeKind[\"ZodEnum\"] = \"ZodEnum\";\n ZodFirstPartyTypeKind[\"ZodEffects\"] = \"ZodEffects\";\n ZodFirstPartyTypeKind[\"ZodNativeEnum\"] = \"ZodNativeEnum\";\n ZodFirstPartyTypeKind[\"ZodOptional\"] = \"ZodOptional\";\n ZodFirstPartyTypeKind[\"ZodNullable\"] = \"ZodNullable\";\n ZodFirstPartyTypeKind[\"ZodDefault\"] = \"ZodDefault\";\n ZodFirstPartyTypeKind[\"ZodCatch\"] = \"ZodCatch\";\n ZodFirstPartyTypeKind[\"ZodPromise\"] = \"ZodPromise\";\n ZodFirstPartyTypeKind[\"ZodBranded\"] = \"ZodBranded\";\n ZodFirstPartyTypeKind[\"ZodPipeline\"] = \"ZodPipeline\";\n})(ZodFirstPartyTypeKind || (ZodFirstPartyTypeKind = {}));\nconst instanceOfType = (\n// const instanceOfType = any>(\ncls, params = {\n message: `Input not instance of ${cls.name}`,\n}) => custom((data) => data instanceof cls, params);\nconst stringType = ZodString.create;\nconst numberType = ZodNumber.create;\nconst nanType = ZodNaN.create;\nconst bigIntType = ZodBigInt.create;\nconst booleanType = ZodBoolean.create;\nconst dateType = ZodDate.create;\nconst symbolType = ZodSymbol.create;\nconst undefinedType = ZodUndefined.create;\nconst nullType = ZodNull.create;\nconst anyType = ZodAny.create;\nconst unknownType = ZodUnknown.create;\nconst neverType = ZodNever.create;\nconst voidType = ZodVoid.create;\nconst arrayType = ZodArray.create;\nconst objectType = ZodObject.create;\nconst strictObjectType = ZodObject.strictCreate;\nconst unionType = ZodUnion.create;\nconst discriminatedUnionType = ZodDiscriminatedUnion.create;\nconst intersectionType = ZodIntersection.create;\nconst tupleType = ZodTuple.create;\nconst recordType = ZodRecord.create;\nconst mapType = ZodMap.create;\nconst setType = ZodSet.create;\nconst functionType = ZodFunction.create;\nconst lazyType = ZodLazy.create;\nconst literalType = ZodLiteral.create;\nconst enumType = ZodEnum.create;\nconst nativeEnumType = ZodNativeEnum.create;\nconst promiseType = ZodPromise.create;\nconst effectsType = ZodEffects.create;\nconst optionalType = ZodOptional.create;\nconst nullableType = ZodNullable.create;\nconst preprocessType = ZodEffects.createWithPreprocess;\nconst pipelineType = ZodPipeline.create;\nconst ostring = () => stringType().optional();\nconst onumber = () => numberType().optional();\nconst oboolean = () => booleanType().optional();\nconst coerce = {\n string: ((arg) => ZodString.create({ ...arg, coerce: true })),\n number: ((arg) => ZodNumber.create({ ...arg, coerce: true })),\n boolean: ((arg) => ZodBoolean.create({\n ...arg,\n coerce: true,\n })),\n bigint: ((arg) => ZodBigInt.create({ ...arg, coerce: true })),\n date: ((arg) => ZodDate.create({ ...arg, coerce: true })),\n};\nconst NEVER = INVALID;\n\nvar z = /*#__PURE__*/Object.freeze({\n __proto__: null,\n defaultErrorMap: errorMap,\n setErrorMap: setErrorMap,\n getErrorMap: getErrorMap,\n makeIssue: makeIssue,\n EMPTY_PATH: EMPTY_PATH,\n addIssueToContext: addIssueToContext,\n ParseStatus: ParseStatus,\n INVALID: INVALID,\n DIRTY: DIRTY,\n OK: OK,\n isAborted: isAborted,\n isDirty: isDirty,\n isValid: isValid,\n isAsync: isAsync,\n get util () { return util; },\n get objectUtil () { return objectUtil; },\n ZodParsedType: ZodParsedType,\n getParsedType: getParsedType,\n ZodType: ZodType,\n ZodString: ZodString,\n ZodNumber: ZodNumber,\n ZodBigInt: ZodBigInt,\n ZodBoolean: ZodBoolean,\n ZodDate: ZodDate,\n ZodSymbol: ZodSymbol,\n ZodUndefined: ZodUndefined,\n ZodNull: ZodNull,\n ZodAny: ZodAny,\n ZodUnknown: ZodUnknown,\n ZodNever: ZodNever,\n ZodVoid: ZodVoid,\n ZodArray: ZodArray,\n ZodObject: ZodObject,\n ZodUnion: ZodUnion,\n ZodDiscriminatedUnion: ZodDiscriminatedUnion,\n ZodIntersection: ZodIntersection,\n ZodTuple: ZodTuple,\n ZodRecord: ZodRecord,\n ZodMap: ZodMap,\n ZodSet: ZodSet,\n ZodFunction: ZodFunction,\n ZodLazy: ZodLazy,\n ZodLiteral: ZodLiteral,\n ZodEnum: ZodEnum,\n ZodNativeEnum: ZodNativeEnum,\n ZodPromise: ZodPromise,\n ZodEffects: ZodEffects,\n ZodTransformer: ZodEffects,\n ZodOptional: ZodOptional,\n ZodNullable: ZodNullable,\n ZodDefault: ZodDefault,\n ZodCatch: ZodCatch,\n ZodNaN: ZodNaN,\n BRAND: BRAND,\n ZodBranded: ZodBranded,\n ZodPipeline: ZodPipeline,\n custom: custom,\n Schema: ZodType,\n ZodSchema: ZodType,\n late: late,\n get ZodFirstPartyTypeKind () { return ZodFirstPartyTypeKind; },\n coerce: coerce,\n any: anyType,\n array: arrayType,\n bigint: bigIntType,\n boolean: booleanType,\n date: dateType,\n discriminatedUnion: discriminatedUnionType,\n effect: effectsType,\n 'enum': enumType,\n 'function': functionType,\n 'instanceof': instanceOfType,\n intersection: intersectionType,\n lazy: lazyType,\n literal: literalType,\n map: mapType,\n nan: nanType,\n nativeEnum: nativeEnumType,\n never: neverType,\n 'null': nullType,\n nullable: nullableType,\n number: numberType,\n object: objectType,\n oboolean: oboolean,\n onumber: onumber,\n optional: optionalType,\n ostring: ostring,\n pipeline: pipelineType,\n preprocess: preprocessType,\n promise: promiseType,\n record: recordType,\n set: setType,\n strictObject: strictObjectType,\n string: stringType,\n symbol: symbolType,\n transformer: effectsType,\n tuple: tupleType,\n 'undefined': undefinedType,\n union: unionType,\n unknown: unknownType,\n 'void': voidType,\n NEVER: NEVER,\n ZodIssueCode: ZodIssueCode,\n quotelessJson: quotelessJson,\n ZodError: ZodError\n});\n\nexport { BRAND, DIRTY, EMPTY_PATH, INVALID, NEVER, OK, ParseStatus, ZodType as Schema, ZodAny, ZodArray, ZodBigInt, ZodBoolean, ZodBranded, ZodCatch, ZodDate, ZodDefault, ZodDiscriminatedUnion, ZodEffects, ZodEnum, ZodError, ZodFirstPartyTypeKind, ZodFunction, ZodIntersection, ZodIssueCode, ZodLazy, ZodLiteral, ZodMap, ZodNaN, ZodNativeEnum, ZodNever, ZodNull, ZodNullable, ZodNumber, ZodObject, ZodOptional, ZodParsedType, ZodPipeline, ZodPromise, ZodRecord, ZodType as ZodSchema, ZodSet, ZodString, ZodSymbol, ZodEffects as ZodTransformer, ZodTuple, ZodType, ZodUndefined, ZodUnion, ZodUnknown, ZodVoid, addIssueToContext, anyType as any, arrayType as array, bigIntType as bigint, booleanType as boolean, coerce, custom, dateType as date, z as default, errorMap as defaultErrorMap, discriminatedUnionType as discriminatedUnion, effectsType as effect, enumType as enum, functionType as function, getErrorMap, getParsedType, instanceOfType as instanceof, intersectionType as intersection, isAborted, isAsync, isDirty, isValid, late, lazyType as lazy, literalType as literal, makeIssue, mapType as map, nanType as nan, nativeEnumType as nativeEnum, neverType as never, nullType as null, nullableType as nullable, numberType as number, objectType as object, objectUtil, oboolean, onumber, optionalType as optional, ostring, pipelineType as pipeline, preprocessType as preprocess, promiseType as promise, quotelessJson, recordType as record, setType as set, setErrorMap, strictObjectType as strictObject, stringType as string, symbolType as symbol, effectsType as transformer, tupleType as tuple, undefinedType as undefined, unionType as union, unknownType as unknown, util, voidType as void, z };\n","// This file is a workaround for a bug in web browsers' \"native\"\n// ES6 importing system which is uncapable of importing \"*.json\" files.\n// https://github.com/catamphetamine/libphonenumber-js/issues/239\nexport default 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{\n\t\tif (typeof arg === 'string' || typeof arg === 'number') {\n\t\t\treturn arg;\n\t\t}\n\n\t\tif (typeof arg !== 'object') {\n\t\t\treturn '';\n\t\t}\n\n\t\tif (Array.isArray(arg)) {\n\t\t\treturn classNames.apply(null, arg);\n\t\t}\n\n\t\tif (arg.toString !== Object.prototype.toString && !arg.toString.toString().includes('[native code]')) {\n\t\t\treturn arg.toString();\n\t\t}\n\n\t\tvar classes = '';\n\n\t\tfor (var key in arg) {\n\t\t\tif (hasOwn.call(arg, key) && arg[key]) {\n\t\t\t\tclasses = appendClass(classes, key);\n\t\t\t}\n\t\t}\n\n\t\treturn classes;\n\t}\n\n\tfunction appendClass (value, newClass) {\n\t\tif (!newClass) {\n\t\t\treturn value;\n\t\t}\n\t\n\t\tif (value) {\n\t\t\treturn value + ' ' + newClass;\n\t\t}\n\t\n\t\treturn value + newClass;\n\t}\n\n\tif (typeof module !== 'undefined' && module.exports) {\n\t\tclassNames.default = classNames;\n\t\tmodule.exports = classNames;\n\t} else if (typeof define === 'function' && typeof define.amd === 'object' && define.amd) {\n\t\t// register as 'classnames', consistent with npm package name\n\t\tdefine('classnames', [], function () {\n\t\t\treturn classNames;\n\t\t});\n\t} else {\n\t\twindow.classNames = classNames;\n\t}\n}());\n","// Edits text `value` (if `operation` is passed) and repositions the `caret` if needed.\n//\n// Example:\n//\n// value - '88005553535'\n// caret - 2 // starting from 0; is positioned before the first zero\n// operation - 'Backspace'\n//\n// Returns\n// {\n// \tvalue: '8005553535'\n// \tcaret: 1\n// }\n//\n// Currently supports just 'Delete' and 'Backspace' operations\n//\nexport default function edit(value, caret, operation) {\n switch (operation) {\n case 'Backspace':\n // If there exists the previous character,\n // then erase it and reposition the caret.\n if (caret > 0) {\n // Remove the previous character\n value = value.slice(0, caret - 1) + value.slice(caret); // Position the caret where the previous (erased) character was\n\n caret--;\n }\n\n break;\n\n case 'Delete':\n // Remove current digit (if any)\n value = value.slice(0, caret) + value.slice(caret + 1);\n break;\n }\n\n return {\n value: value,\n caret: caret\n };\n}\n//# sourceMappingURL=edit.js.map","// Parses the `text`.\n//\n// Returns `{ value, caret }` where `caret` is\n// the caret position inside `value`\n// corresponding to the `caret_position` inside `text`.\n//\n// The `text` is parsed by feeding each character sequentially to\n// `parse_character(character, value, context)` function\n// and appending the result (if it's not `undefined`) to `value`.\n//\n// `context` argument is just a utility empty object that is shared within the bounds\n// of parsing a single input string. The `_parse()` function could use that object\n// to store any kind of \"flags\" in it in order to alter its behavior based when\n// parsing next characters within the same string. Or it could completely ignore it.\n//\n// Example:\n//\n// `text` is `8 (800) 555-35-35`,\n// `caret_position` is `4` (before the first `0`).\n// `parse_character` is `(character, value) =>\n// if (character >= '0' && character <= '9') { return character }`.\n//\n// then `parse()` outputs `{ value: '88005553535', caret: 2 }`.\n//\nexport default function parse(text, caret_position, parse_character) {\n var context = {};\n var value = '';\n var focused_input_character_index = 0;\n var index = 0;\n\n while (index < text.length) {\n var character = parse_character(text[index], value, context);\n\n if (character !== undefined) {\n value += character;\n\n if (caret_position !== undefined) {\n if (caret_position === index) {\n focused_input_character_index = value.length - 1;\n } else if (caret_position > index) {\n focused_input_character_index = value.length;\n }\n }\n }\n\n index++;\n } // If caret position wasn't specified\n\n\n if (caret_position === undefined) {\n // Then set caret position to \"after the last input character\"\n focused_input_character_index = value.length;\n }\n\n var result = {\n value: value,\n caret: focused_input_character_index\n };\n return result;\n}\n//# sourceMappingURL=parse.js.map","function _createForOfIteratorHelperLoose(o, allowArrayLike) { var it = typeof Symbol !== \"undefined\" && o[Symbol.iterator] || o[\"@@iterator\"]; if (it) return (it = it.call(o)).next.bind(it); if (Array.isArray(o) || (it = _unsupportedIterableToArray(o)) || allowArrayLike && o && typeof o.length === \"number\") { if (it) o = it; var i = 0; return function () { if (i >= o.length) return { done: true }; return { done: false, value: o[i++] }; }; } throw new TypeError(\"Invalid attempt to iterate non-iterable instance.\\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method.\"); }\n\nfunction _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); }\n\nfunction _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; }\n\n// Counts all occurences of a symbol in a string\nexport function count_occurences(symbol, string) {\n var count = 0; // Using `.split('')` here instead of normal `for ... of`\n // because the importing application doesn't neccessarily include an ES6 polyfill.\n // The `.split('')` approach discards \"exotic\" UTF-8 characters\n // (the ones consisting of four bytes)\n // but template placeholder characters don't fall into that range\n // so skipping such miscellaneous \"exotic\" characters\n // won't matter here for just counting placeholder character occurrences.\n\n for (var _iterator = _createForOfIteratorHelperLoose(string.split('')), _step; !(_step = _iterator()).done;) {\n var character = _step.value;\n\n if (character === symbol) {\n count++;\n }\n }\n\n return count;\n}\n//# sourceMappingURL=helpers.js.map","import { count_occurences } from './helpers.js';\nexport default function closeBraces(retained_template, template) {\n var placeholder = arguments.length > 2 && arguments[2] !== undefined ? arguments[2] : 'x';\n var empty_placeholder = arguments.length > 3 && arguments[3] !== undefined ? arguments[3] : ' ';\n var cut_before = retained_template.length;\n var opening_braces = count_occurences('(', retained_template);\n var closing_braces = count_occurences(')', retained_template);\n var dangling_braces = opening_braces - closing_braces;\n\n while (dangling_braces > 0 && cut_before < template.length) {\n retained_template += template[cut_before].replace(placeholder, empty_placeholder);\n\n if (template[cut_before] === ')') {\n dangling_braces--;\n }\n\n cut_before++;\n }\n\n return retained_template;\n}\n//# sourceMappingURL=closeBraces.js.map","function _createForOfIteratorHelperLoose(o, allowArrayLike) { var it = typeof Symbol !== \"undefined\" && o[Symbol.iterator] || o[\"@@iterator\"]; if (it) return (it = it.call(o)).next.bind(it); if (Array.isArray(o) || (it = _unsupportedIterableToArray(o)) || allowArrayLike && o && typeof o.length === \"number\") { if (it) o = it; var i = 0; return function () { if (i >= o.length) return { done: true }; return { done: false, value: o[i++] }; }; } throw new TypeError(\"Invalid attempt to iterate non-iterable instance.\\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method.\"); }\n\nfunction _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); }\n\nfunction _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; }\n\nimport { count_occurences } from './helpers.js';\nimport close_braces from './closeBraces.js'; // Takes a `template` where character placeholders\n// are denoted by 'x'es (e.g. 'x (xxx) xxx-xx-xx').\n//\n// Returns a function which takes `value` characters\n// and returns the `template` filled with those characters.\n// If the `template` can only be partially filled\n// then it is cut off.\n//\n// If `should_close_braces` is `true`,\n// then it will also make sure all dangling braces are closed,\n// e.g. \"8 (8\" -> \"8 (8 )\" (iPhone style phone number input).\n//\n\nexport default function (template) {\n var placeholder = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : 'x';\n var should_close_braces = arguments.length > 2 ? arguments[2] : undefined;\n\n if (!template) {\n return function (value) {\n return {\n text: value\n };\n };\n }\n\n var characters_in_template = count_occurences(placeholder, template);\n return function (value) {\n if (!value) {\n return {\n text: '',\n template: template\n };\n }\n\n var value_character_index = 0;\n var filled_in_template = ''; // Using `.split('')` here instead of normal `for ... of`\n // because the importing application doesn't neccessarily include an ES6 polyfill.\n // The `.split('')` approach discards \"exotic\" UTF-8 characters\n // (the ones consisting of four bytes)\n // but template placeholder characters don't fall into that range\n // and appending UTF-8 characters to a string in parts still works.\n\n for (var _iterator = _createForOfIteratorHelperLoose(template.split('')), _step; !(_step = _iterator()).done;) {\n var character = _step.value;\n\n if (character !== placeholder) {\n filled_in_template += character;\n continue;\n }\n\n filled_in_template += value[value_character_index];\n value_character_index++; // If the last available value character has been filled in,\n // then return the filled in template\n // (either trim the right part or retain it,\n // if no more character placeholders in there)\n\n if (value_character_index === value.length) {\n // If there are more character placeholders\n // in the right part of the template\n // then simply trim it.\n if (value.length < characters_in_template) {\n break;\n }\n }\n }\n\n if (should_close_braces) {\n filled_in_template = close_braces(filled_in_template, template);\n }\n\n return {\n text: filled_in_template,\n template: template\n };\n };\n}\n//# sourceMappingURL=templateFormatter.js.map","import template_formatter from './templateFormatter.js'; // Formats `value` value preserving `caret` at the same character.\n//\n// `{ value, caret }` attribute is the result of `parse()` function call.\n//\n// Returns `{ text, caret }` where the new `caret` is the caret position\n// inside `text` text corresponding to the original `caret` position inside `value`.\n//\n// `formatter(value)` is a function returning `{ text, template }`.\n//\n// `text` is the `value` value formatted using `template`.\n// It may either cut off the non-filled right part of the `template`\n// or it may fill the non-filled character placeholders\n// in the right part of the `template` with `spacer`\n// which is a space (' ') character by default.\n//\n// `template` is the template used to format the `value`.\n// It can be either a full-length template or a partial template.\n//\n// `formatter` can also be a string — a `template`\n// where character placeholders are denoted by 'x'es.\n// In this case `formatter` function is automatically created.\n//\n// Example:\n//\n// `value` is '880',\n// `caret` is `2` (before the first `0`)\n//\n// `formatter` is `'880' =>\n// { text: '8 (80 )', template: 'x (xxx) xxx-xx-xx' }`\n//\n// The result is `{ text: '8 (80 )', caret: 4 }`.\n//\n\nexport default function format(value, caret, formatter) {\n if (typeof formatter === 'string') {\n formatter = template_formatter(formatter);\n }\n\n var _ref = formatter(value) || {},\n text = _ref.text,\n template = _ref.template;\n\n if (text === undefined) {\n text = value;\n }\n\n if (template) {\n if (caret === undefined) {\n caret = text.length;\n } else {\n var index = 0;\n var found = false;\n var possibly_last_input_character_index = -1;\n\n while (index < text.length && index < template.length) {\n // Character placeholder found\n if (text[index] !== template[index]) {\n if (caret === 0) {\n found = true;\n caret = index;\n break;\n }\n\n possibly_last_input_character_index = index;\n caret--;\n }\n\n index++;\n } // If the caret was positioned after last input character,\n // then the text caret index is just after the last input character.\n\n\n if (!found) {\n caret = possibly_last_input_character_index + 1;\n }\n }\n }\n\n return {\n text: text,\n caret: caret\n };\n}\n//# sourceMappingURL=format.js.map","export function isReadOnly(element) {\n return element.hasAttribute('readonly');\n} // Gets selection bounds\n\nexport function getSelection(element) {\n // If no selection, return nothing\n if (element.selectionStart === element.selectionEnd) {\n return;\n }\n\n return {\n start: element.selectionStart,\n end: element.selectionEnd\n };\n} // Key codes\n\nexport var Keys = {\n Backspace: 8,\n Delete: 46\n}; // Finds out the operation to be intercepted and performed\n// based on the key down event `keyCode`.\n\nexport function getOperation(event) {\n switch (event.keyCode) {\n case Keys.Backspace:\n return 'Backspace';\n\n case Keys.Delete:\n return 'Delete';\n }\n} // Gets caret position\n\nexport function getCaretPosition(element) {\n return element.selectionStart;\n} // Sets caret position\n\nexport function setCaretPosition(element, caret_position) {\n // Sanity check\n if (caret_position === undefined) {\n return;\n } // Set caret position.\n // There has been an issue with caret positioning on Android devices.\n // https://github.com/catamphetamine/input-format/issues/2\n // I was revisiting this issue and looked for similar issues in other libraries.\n // For example, there's [`text-mask`](https://github.com/text-mask/text-mask) library.\n // They've had exactly the same issue when the caret seemingly refused to be repositioned programmatically.\n // The symptoms were the same: whenever the caret passed through a non-digit character of a mask (a whitespace, a bracket, a dash, etc), it looked as if it placed itself one character before its correct position.\n // https://github.com/text-mask/text-mask/issues/300\n // They seem to have found a basic fix for it: calling `input.setSelectionRange()` in a timeout rather than instantly for Android devices.\n // https://github.com/text-mask/text-mask/pull/400/files\n // I've implemented the same workaround here.\n\n\n if (isAndroid()) {\n setTimeout(function () {\n return element.setSelectionRange(caret_position, caret_position);\n }, 0);\n } else {\n element.setSelectionRange(caret_position, caret_position);\n }\n}\n\nfunction isAndroid() {\n // `navigator` is not defined when running mocha tests.\n if (typeof navigator !== 'undefined') {\n return ANDROID_USER_AGENT_REG_EXP.test(navigator.userAgent);\n }\n}\n\nvar ANDROID_USER_AGENT_REG_EXP = /Android/i;\n//# sourceMappingURL=dom.js.map","import edit from './edit.js';\nimport parse from './parse.js';\nimport format from './format.js';\nimport { isReadOnly, getOperation, getSelection, getCaretPosition, setCaretPosition } from './dom.js'; // Deprecated.\n// I don't know why this function exists.\n\nexport function onCut(event, input, _parse, _format, on_change) {\n if (isReadOnly(input)) {\n return;\n } // The actual cut hasn't happened just yet hence the timeout.\n\n\n setTimeout(function () {\n return formatInputText(input, _parse, _format, undefined, on_change);\n }, 0);\n} // Deprecated.\n// I don't know why this function exists.\n\nexport function onPaste(event, input, _parse, _format, on_change) {\n if (isReadOnly(input)) {\n return;\n }\n\n var selection = getSelection(input); // If selection is made,\n // just erase the selected text\n // prior to pasting\n\n if (selection) {\n eraseSelection(input, selection);\n }\n\n formatInputText(input, _parse, _format, undefined, on_change);\n}\nexport function onChange(event, input, _parse, _format, on_change) {\n formatInputText(input, _parse, _format, undefined, on_change);\n} // \"Delete\" and \"Backspace\" keys are special\n// in a way that they're not handled by the regular `onChange()` handler\n// and instead are intercepted and re-applied manually.\n// The reason is that normally hitting \"Backspace\" or \"Delete\"\n// results in erasing a character, but that character might be any character,\n// while it would be a better \"user experience\" if it erased not just any character\n// but the closest \"meaningful\" character.\n// For example, if a template is `(xxx) xxx-xxxx`,\n// and the `` value is `(111) 222-3333`,\n// then, if a user begins erasing the `3333` part via \"Backspace\"\n// and reaches the \"-\" character, then it would just erase the \"-\" character.\n// Nothing wrong with that, but it would be a better \"user experience\"\n// if hitting \"Backspace\" at that position would erase the closest \"meaningful\"\n// character, which would be the rightmost `2`.\n// So, what this `onKeyDown()` handler does is it intercepts\n// \"Backspace\" and \"Delete\" keys and re-applies those operations manually\n// following the logic described above.\n\nexport function onKeyDown(event, input, _parse, _format, on_change) {\n if (isReadOnly(input)) {\n return;\n }\n\n var operation = getOperation(event);\n\n switch (operation) {\n case 'Delete':\n case 'Backspace':\n // Intercept this operation and perform it manually.\n event.preventDefault();\n var selection = getSelection(input); // If a selection is made, just erase the selected text.\n\n if (selection) {\n eraseSelection(input, selection);\n return formatInputText(input, _parse, _format, undefined, on_change);\n } // Else, perform the (character erasing) operation manually.\n\n\n return formatInputText(input, _parse, _format, operation, on_change);\n\n default: // Will be handled normally as part of the `onChange` handler.\n\n }\n}\n/**\r\n * Erases the selected text inside an ``.\r\n * @param {DOMElement} input\r\n * @param {Selection} selection\r\n */\n\nfunction eraseSelection(input, selection) {\n var text = input.value;\n text = text.slice(0, selection.start) + text.slice(selection.end);\n input.value = text;\n setCaretPosition(input, selection.start);\n}\n/**\r\n * Parses and re-formats `` textual value.\r\n * E.g. when a user enters something into the ``\r\n * that raw input must first be parsed and the re-formatted properly.\r\n * Is called either after some user input (e.g. entered a character, pasted something)\r\n * or after the user performed an `operation` (e.g. \"Backspace\", \"Delete\").\r\n * @param {DOMElement} input\r\n * @param {Function} parse\r\n * @param {Function} format\r\n * @param {string} [operation] - The operation that triggered `` textual value change. E.g. \"Backspace\", \"Delete\".\r\n * @param {Function} onChange\r\n */\n\n\nfunction formatInputText(input, _parse, _format, operation, on_change) {\n // Parse `` textual value.\n // Get the `value` and `caret` position.\n var _parse2 = parse(input.value, getCaretPosition(input), _parse),\n value = _parse2.value,\n caret = _parse2.caret; // If a user performed an operation (\"Backspace\", \"Delete\")\n // then apply that operation and get the new `value` and `caret` position.\n\n\n if (operation) {\n var newValueAndCaret = edit(value, caret, operation);\n value = newValueAndCaret.value;\n caret = newValueAndCaret.caret;\n } // Format the `value`.\n // (and reposition the caret accordingly)\n\n\n var formatted = format(value, caret, _format);\n var text = formatted.text;\n caret = formatted.caret; // Set `` textual value manually\n // to prevent React from resetting the caret position\n // later inside a subsequent `render()`.\n // Doesn't work for custom `inputComponent`s for some reason.\n\n input.value = text; // Position the caret properly.\n\n setCaretPosition(input, caret); // If the `` textual value did change,\n // then the parsed `value` may have changed too.\n\n on_change(value);\n}\n//# sourceMappingURL=inputControl.js.map","var _excluded = [\"value\", \"parse\", \"format\", \"inputComponent\", \"onChange\", \"onKeyDown\"];\n\nfunction _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); }\n\nfunction _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; }\n\nfunction _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; }\n\n// This is just `./ReactInput.js` rewritten in Hooks.\nimport React, { useCallback, useRef } from 'react';\nimport PropTypes from 'prop-types';\nimport { onChange as onInputChange, onKeyDown as onInputKeyDown } from '../inputControl.js'; // Usage:\n//\n// this.setState({ phone })}\n// \tparse={character => character}\n// \tformat={value => ({ text: value, template: 'xxxxxxxx' })}/>\n//\n\nfunction Input(_ref, ref) {\n var value = _ref.value,\n parse = _ref.parse,\n format = _ref.format,\n InputComponent = _ref.inputComponent,\n onChange = _ref.onChange,\n onKeyDown = _ref.onKeyDown,\n rest = _objectWithoutProperties(_ref, _excluded);\n\n var internalRef = useRef();\n var setRef = useCallback(function (instance) {\n internalRef.current = instance;\n\n if (ref) {\n if (typeof ref === 'function') {\n ref(instance);\n } else {\n ref.current = instance;\n }\n }\n }, [ref]);\n\n var _onChange = useCallback(function (event) {\n return onInputChange(event, internalRef.current, parse, format, onChange);\n }, [internalRef, parse, format, onChange]);\n\n var _onKeyDown = useCallback(function (event) {\n if (onKeyDown) {\n onKeyDown(event);\n }\n\n return onInputKeyDown(event, internalRef.current, parse, format, onChange);\n }, [internalRef, parse, format, onChange, onKeyDown]);\n\n return /*#__PURE__*/React.createElement(InputComponent, _extends({}, rest, {\n ref: setRef,\n value: format(isEmptyValue(value) ? '' : value).text,\n onKeyDown: _onKeyDown,\n onChange: _onChange\n }));\n}\n\nInput = /*#__PURE__*/React.forwardRef(Input);\nInput.propTypes = {\n // Parses a single characher of `` text.\n parse: PropTypes.func.isRequired,\n // Formats `value` into `` text.\n format: PropTypes.func.isRequired,\n // Renders `` by default.\n inputComponent: PropTypes.elementType.isRequired,\n // `` `type` attribute.\n type: PropTypes.string.isRequired,\n // Is parsed from text.\n value: PropTypes.string,\n // This handler is called each time `` text is changed.\n onChange: PropTypes.func.isRequired,\n // Passthrough\n onKeyDown: PropTypes.func,\n onCut: PropTypes.func,\n onPaste: PropTypes.func\n};\nInput.defaultProps = {\n // Renders `` by default.\n inputComponent: 'input',\n // `` `type` attribute.\n type: 'text'\n};\nexport default Input;\n\nfunction isEmptyValue(value) {\n return value === undefined || value === null;\n}\n//# sourceMappingURL=Input.js.map","function _typeof(obj) { \"@babel/helpers - typeof\"; return _typeof = \"function\" == typeof Symbol && \"symbol\" == typeof Symbol.iterator ? function (obj) { return typeof obj; } : function (obj) { return obj && \"function\" == typeof Symbol && obj.constructor === Symbol && obj !== Symbol.prototype ? \"symbol\" : typeof obj; }, _typeof(obj); }\n\nfunction _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); } }\n\nfunction _createClass(Constructor, protoProps, staticProps) { if (protoProps) _defineProperties(Constructor.prototype, protoProps); if (staticProps) _defineProperties(Constructor, staticProps); Object.defineProperty(Constructor, \"prototype\", { writable: false }); return Constructor; }\n\nfunction _classCallCheck(instance, Constructor) { if (!(instance instanceof Constructor)) { throw new TypeError(\"Cannot call a class as a function\"); } }\n\nfunction _inherits(subClass, superClass) { if (typeof superClass !== \"function\" && superClass !== null) { throw new TypeError(\"Super expression must either be null or a function\"); } subClass.prototype = Object.create(superClass && superClass.prototype, { constructor: { value: subClass, writable: true, configurable: true } }); Object.defineProperty(subClass, \"prototype\", { writable: false }); if (superClass) _setPrototypeOf(subClass, superClass); }\n\nfunction _createSuper(Derived) { var hasNativeReflectConstruct = _isNativeReflectConstruct(); return function _createSuperInternal() { var Super = _getPrototypeOf(Derived), result; if (hasNativeReflectConstruct) { var NewTarget = _getPrototypeOf(this).constructor; result = Reflect.construct(Super, arguments, NewTarget); } else { result = Super.apply(this, arguments); } return _possibleConstructorReturn(this, result); }; }\n\nfunction _possibleConstructorReturn(self, call) { if (call && (_typeof(call) === \"object\" || typeof call === \"function\")) { return call; } else if (call !== void 0) { throw new TypeError(\"Derived constructors may only return object or undefined\"); } return _assertThisInitialized(self); }\n\nfunction _assertThisInitialized(self) { if (self === void 0) { throw new ReferenceError(\"this hasn't been initialised - super() hasn't been called\"); } return self; }\n\nfunction _wrapNativeSuper(Class) { var _cache = typeof Map === \"function\" ? new Map() : undefined; _wrapNativeSuper = function _wrapNativeSuper(Class) { if (Class === null || !_isNativeFunction(Class)) return Class; if (typeof Class !== \"function\") { throw new TypeError(\"Super expression must either be null or a function\"); } if (typeof _cache !== \"undefined\") { if (_cache.has(Class)) return _cache.get(Class); _cache.set(Class, Wrapper); } function Wrapper() { return _construct(Class, arguments, _getPrototypeOf(this).constructor); } Wrapper.prototype = Object.create(Class.prototype, { constructor: { value: Wrapper, enumerable: false, writable: true, configurable: true } }); return _setPrototypeOf(Wrapper, Class); }; return _wrapNativeSuper(Class); }\n\nfunction _construct(Parent, args, Class) { if (_isNativeReflectConstruct()) { _construct = Reflect.construct; } else { _construct = function _construct(Parent, args, Class) { var a = [null]; a.push.apply(a, args); var Constructor = Function.bind.apply(Parent, a); var instance = new Constructor(); if (Class) _setPrototypeOf(instance, Class.prototype); return instance; }; } return _construct.apply(null, arguments); }\n\nfunction _isNativeReflectConstruct() { if (typeof Reflect === \"undefined\" || !Reflect.construct) return false; if (Reflect.construct.sham) return false; if (typeof Proxy === \"function\") return true; try { Boolean.prototype.valueOf.call(Reflect.construct(Boolean, [], function () {})); return true; } catch (e) { return false; } }\n\nfunction _isNativeFunction(fn) { return Function.toString.call(fn).indexOf(\"[native code]\") !== -1; }\n\nfunction _setPrototypeOf(o, p) { _setPrototypeOf = Object.setPrototypeOf || function _setPrototypeOf(o, p) { o.__proto__ = p; return o; }; return _setPrototypeOf(o, p); }\n\nfunction _getPrototypeOf(o) { _getPrototypeOf = Object.setPrototypeOf ? Object.getPrototypeOf : function _getPrototypeOf(o) { return o.__proto__ || Object.getPrototypeOf(o); }; return _getPrototypeOf(o); }\n\n// https://stackoverflow.com/a/46971044/970769\n// \"Breaking changes in Typescript 2.1\"\n// \"Extending built-ins like Error, Array, and Map may no longer work.\"\n// \"As a recommendation, you can manually adjust the prototype immediately after any super(...) calls.\"\n// https://github.com/Microsoft/TypeScript-wiki/blob/main/Breaking-Changes.md#extending-built-ins-like-error-array-and-map-may-no-longer-work\nvar ParseError = /*#__PURE__*/function (_Error) {\n _inherits(ParseError, _Error);\n\n var _super = _createSuper(ParseError);\n\n function ParseError(code) {\n var _this;\n\n _classCallCheck(this, ParseError);\n\n _this = _super.call(this, code); // Set the prototype explicitly.\n // Any subclass of FooError will have to manually set the prototype as well.\n\n Object.setPrototypeOf(_assertThisInitialized(_this), ParseError.prototype);\n _this.name = _this.constructor.name;\n return _this;\n }\n\n return _createClass(ParseError);\n}( /*#__PURE__*/_wrapNativeSuper(Error));\n\nexport { ParseError as default };\n//# sourceMappingURL=ParseError.js.map","// The minimum length of the national significant number.\nexport var MIN_LENGTH_FOR_NSN = 2; // The ITU says the maximum length should be 15,\n// but one can find longer numbers in Germany.\n\nexport var MAX_LENGTH_FOR_NSN = 17; // The maximum length of the country calling code.\n\nexport var MAX_LENGTH_COUNTRY_CODE = 3; // Digits accepted in phone numbers\n// (ascii, fullwidth, arabic-indic, and eastern arabic digits).\n\nexport var VALID_DIGITS = \"0-9\\uFF10-\\uFF19\\u0660-\\u0669\\u06F0-\\u06F9\"; // `DASHES` will be right after the opening square bracket of the \"character class\"\n\nvar DASHES = \"-\\u2010-\\u2015\\u2212\\u30FC\\uFF0D\";\nvar SLASHES = \"\\uFF0F/\";\nvar DOTS = \"\\uFF0E.\";\nexport var WHITESPACE = \" \\xA0\\xAD\\u200B\\u2060\\u3000\";\nvar BRACKETS = \"()\\uFF08\\uFF09\\uFF3B\\uFF3D\\\\[\\\\]\"; // export const OPENING_BRACKETS = '(\\uFF08\\uFF3B\\\\\\['\n\nvar TILDES = \"~\\u2053\\u223C\\uFF5E\"; // Regular expression of acceptable punctuation found in phone numbers. This\n// excludes punctuation found as a leading character only. This consists of dash\n// characters, white space characters, full stops, slashes, square brackets,\n// parentheses and tildes. Full-width variants are also present.\n\nexport var VALID_PUNCTUATION = \"\".concat(DASHES).concat(SLASHES).concat(DOTS).concat(WHITESPACE).concat(BRACKETS).concat(TILDES);\nexport var PLUS_CHARS = \"+\\uFF0B\"; // const LEADING_PLUS_CHARS_PATTERN = new RegExp('^[' + PLUS_CHARS + ']+')\n//# sourceMappingURL=constants.js.map","// Copy-pasted from:\n// https://github.com/substack/semver-compare/blob/master/index.js\n//\n// Inlining this function because some users reported issues with\n// importing from `semver-compare` in a browser with ES6 \"native\" modules.\n//\n// Fixes `semver-compare` not being able to compare versions with alpha/beta/etc \"tags\".\n// https://github.com/catamphetamine/libphonenumber-js/issues/381\nexport default function (a, b) {\n a = a.split('-');\n b = b.split('-');\n var pa = a[0].split('.');\n var pb = b[0].split('.');\n\n for (var i = 0; i < 3; i++) {\n var na = Number(pa[i]);\n var nb = Number(pb[i]);\n if (na > nb) return 1;\n if (nb > na) return -1;\n if (!isNaN(na) && isNaN(nb)) return 1;\n if (isNaN(na) && !isNaN(nb)) return -1;\n }\n\n if (a[1] && b[1]) {\n return a[1] > b[1] ? 1 : a[1] < b[1] ? -1 : 0;\n }\n\n return !a[1] && b[1] ? 1 : a[1] && !b[1] ? -1 : 0;\n}\n//# sourceMappingURL=semver-compare.js.map","var objectConstructor = {}.constructor;\nexport default function isObject(object) {\n return object !== undefined && object !== null && object.constructor === objectConstructor;\n}\n//# sourceMappingURL=isObject.js.map","function _typeof(obj) { \"@babel/helpers - typeof\"; return _typeof = \"function\" == typeof Symbol && \"symbol\" == typeof Symbol.iterator ? function (obj) { return typeof obj; } : function (obj) { return obj && \"function\" == typeof Symbol && obj.constructor === Symbol && obj !== Symbol.prototype ? \"symbol\" : typeof obj; }, _typeof(obj); }\n\nfunction _classCallCheck(instance, Constructor) { if (!(instance instanceof Constructor)) { throw new TypeError(\"Cannot call a class as a function\"); } }\n\nfunction _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); } }\n\nfunction _createClass(Constructor, protoProps, staticProps) { if (protoProps) _defineProperties(Constructor.prototype, protoProps); if (staticProps) _defineProperties(Constructor, staticProps); Object.defineProperty(Constructor, \"prototype\", { writable: false }); return Constructor; }\n\nimport compare from './tools/semver-compare.js';\nimport isObject from './helpers/isObject.js'; // Added \"possibleLengths\" and renamed\n// \"country_phone_code_to_countries\" to \"country_calling_codes\".\n\nvar V2 = '1.0.18'; // Added \"idd_prefix\" and \"default_idd_prefix\".\n\nvar V3 = '1.2.0'; // Moved `001` country code to \"nonGeographic\" section of metadata.\n\nvar V4 = '1.7.35';\nvar DEFAULT_EXT_PREFIX = ' ext. ';\nvar CALLING_CODE_REG_EXP = /^\\d+$/;\n/**\r\n * See: https://gitlab.com/catamphetamine/libphonenumber-js/blob/master/METADATA.md\r\n */\n\nvar Metadata = /*#__PURE__*/function () {\n function Metadata(metadata) {\n _classCallCheck(this, Metadata);\n\n validateMetadata(metadata);\n this.metadata = metadata;\n setVersion.call(this, metadata);\n }\n\n _createClass(Metadata, [{\n key: \"getCountries\",\n value: function getCountries() {\n return Object.keys(this.metadata.countries).filter(function (_) {\n return _ !== '001';\n });\n }\n }, {\n key: \"getCountryMetadata\",\n value: function getCountryMetadata(countryCode) {\n return this.metadata.countries[countryCode];\n }\n }, {\n key: \"nonGeographic\",\n value: function nonGeographic() {\n if (this.v1 || this.v2 || this.v3) return; // `nonGeographical` was a typo.\n // It's present in metadata generated from `1.7.35` to `1.7.37`.\n // The test case could be found by searching for \"nonGeographical\".\n\n return this.metadata.nonGeographic || this.metadata.nonGeographical;\n }\n }, {\n key: \"hasCountry\",\n value: function hasCountry(country) {\n return this.getCountryMetadata(country) !== undefined;\n }\n }, {\n key: \"hasCallingCode\",\n value: function hasCallingCode(callingCode) {\n if (this.getCountryCodesForCallingCode(callingCode)) {\n return true;\n }\n\n if (this.nonGeographic()) {\n if (this.nonGeographic()[callingCode]) {\n return true;\n }\n } else {\n // A hacky workaround for old custom metadata (generated before V4).\n var countryCodes = this.countryCallingCodes()[callingCode];\n\n if (countryCodes && countryCodes.length === 1 && countryCodes[0] === '001') {\n return true;\n }\n }\n }\n }, {\n key: \"isNonGeographicCallingCode\",\n value: function isNonGeographicCallingCode(callingCode) {\n if (this.nonGeographic()) {\n return this.nonGeographic()[callingCode] ? true : false;\n } else {\n return this.getCountryCodesForCallingCode(callingCode) ? false : true;\n }\n } // Deprecated.\n\n }, {\n key: \"country\",\n value: function country(countryCode) {\n return this.selectNumberingPlan(countryCode);\n }\n }, {\n key: \"selectNumberingPlan\",\n value: function selectNumberingPlan(countryCode, callingCode) {\n // Supports just passing `callingCode` as the first argument.\n if (countryCode && CALLING_CODE_REG_EXP.test(countryCode)) {\n callingCode = countryCode;\n countryCode = null;\n }\n\n if (countryCode && countryCode !== '001') {\n if (!this.hasCountry(countryCode)) {\n throw new Error(\"Unknown country: \".concat(countryCode));\n }\n\n this.numberingPlan = new NumberingPlan(this.getCountryMetadata(countryCode), this);\n } else if (callingCode) {\n if (!this.hasCallingCode(callingCode)) {\n throw new Error(\"Unknown calling code: \".concat(callingCode));\n }\n\n this.numberingPlan = new NumberingPlan(this.getNumberingPlanMetadata(callingCode), this);\n } else {\n this.numberingPlan = undefined;\n }\n\n return this;\n }\n }, {\n key: \"getCountryCodesForCallingCode\",\n value: function getCountryCodesForCallingCode(callingCode) {\n var countryCodes = this.countryCallingCodes()[callingCode];\n\n if (countryCodes) {\n // Metadata before V4 included \"non-geographic entity\" calling codes\n // inside `country_calling_codes` (for example, `\"881\":[\"001\"]`).\n // Now the semantics of `country_calling_codes` has changed:\n // it's specifically for \"countries\" now.\n // Older versions of custom metadata will simply skip parsing\n // \"non-geographic entity\" phone numbers with new versions\n // of this library: it's not considered a bug,\n // because such numbers are extremely rare,\n // and developers extremely rarely use custom metadata.\n if (countryCodes.length === 1 && countryCodes[0].length === 3) {\n return;\n }\n\n return countryCodes;\n }\n }\n }, {\n key: \"getCountryCodeForCallingCode\",\n value: function getCountryCodeForCallingCode(callingCode) {\n var countryCodes = this.getCountryCodesForCallingCode(callingCode);\n\n if (countryCodes) {\n return countryCodes[0];\n }\n }\n }, {\n key: \"getNumberingPlanMetadata\",\n value: function getNumberingPlanMetadata(callingCode) {\n var countryCode = this.getCountryCodeForCallingCode(callingCode);\n\n if (countryCode) {\n return this.getCountryMetadata(countryCode);\n }\n\n if (this.nonGeographic()) {\n var metadata = this.nonGeographic()[callingCode];\n\n if (metadata) {\n return metadata;\n }\n } else {\n // A hacky workaround for old custom metadata (generated before V4).\n // In that metadata, there was no concept of \"non-geographic\" metadata\n // so metadata for `001` country code was stored along with other countries.\n // The test case can be found by searching for:\n // \"should work around `nonGeographic` metadata not existing\".\n var countryCodes = this.countryCallingCodes()[callingCode];\n\n if (countryCodes && countryCodes.length === 1 && countryCodes[0] === '001') {\n return this.metadata.countries['001'];\n }\n }\n } // Deprecated.\n\n }, {\n key: \"countryCallingCode\",\n value: function countryCallingCode() {\n return this.numberingPlan.callingCode();\n } // Deprecated.\n\n }, {\n key: \"IDDPrefix\",\n value: function IDDPrefix() {\n return this.numberingPlan.IDDPrefix();\n } // Deprecated.\n\n }, {\n key: \"defaultIDDPrefix\",\n value: function defaultIDDPrefix() {\n return this.numberingPlan.defaultIDDPrefix();\n } // Deprecated.\n\n }, {\n key: \"nationalNumberPattern\",\n value: function nationalNumberPattern() {\n return this.numberingPlan.nationalNumberPattern();\n } // Deprecated.\n\n }, {\n key: \"possibleLengths\",\n value: function possibleLengths() {\n return this.numberingPlan.possibleLengths();\n } // Deprecated.\n\n }, {\n key: \"formats\",\n value: function formats() {\n return this.numberingPlan.formats();\n } // Deprecated.\n\n }, {\n key: \"nationalPrefixForParsing\",\n value: function nationalPrefixForParsing() {\n return this.numberingPlan.nationalPrefixForParsing();\n } // Deprecated.\n\n }, {\n key: \"nationalPrefixTransformRule\",\n value: function nationalPrefixTransformRule() {\n return this.numberingPlan.nationalPrefixTransformRule();\n } // Deprecated.\n\n }, {\n key: \"leadingDigits\",\n value: function leadingDigits() {\n return this.numberingPlan.leadingDigits();\n } // Deprecated.\n\n }, {\n key: \"hasTypes\",\n value: function hasTypes() {\n return this.numberingPlan.hasTypes();\n } // Deprecated.\n\n }, {\n key: \"type\",\n value: function type(_type) {\n return this.numberingPlan.type(_type);\n } // Deprecated.\n\n }, {\n key: \"ext\",\n value: function ext() {\n return this.numberingPlan.ext();\n }\n }, {\n key: \"countryCallingCodes\",\n value: function countryCallingCodes() {\n if (this.v1) return this.metadata.country_phone_code_to_countries;\n return this.metadata.country_calling_codes;\n } // Deprecated.\n\n }, {\n key: \"chooseCountryByCountryCallingCode\",\n value: function chooseCountryByCountryCallingCode(callingCode) {\n return this.selectNumberingPlan(callingCode);\n }\n }, {\n key: \"hasSelectedNumberingPlan\",\n value: function hasSelectedNumberingPlan() {\n return this.numberingPlan !== undefined;\n }\n }]);\n\n return Metadata;\n}();\n\nexport { Metadata as default };\n\nvar NumberingPlan = /*#__PURE__*/function () {\n function NumberingPlan(metadata, globalMetadataObject) {\n _classCallCheck(this, NumberingPlan);\n\n this.globalMetadataObject = globalMetadataObject;\n this.metadata = metadata;\n setVersion.call(this, globalMetadataObject.metadata);\n }\n\n _createClass(NumberingPlan, [{\n key: \"callingCode\",\n value: function callingCode() {\n return this.metadata[0];\n } // Formatting information for regions which share\n // a country calling code is contained by only one region\n // for performance reasons. For example, for NANPA region\n // (\"North American Numbering Plan Administration\",\n // which includes USA, Canada, Cayman Islands, Bahamas, etc)\n // it will be contained in the metadata for `US`.\n\n }, {\n key: \"getDefaultCountryMetadataForRegion\",\n value: function getDefaultCountryMetadataForRegion() {\n return this.globalMetadataObject.getNumberingPlanMetadata(this.callingCode());\n } // Is always present.\n\n }, {\n key: \"IDDPrefix\",\n value: function IDDPrefix() {\n if (this.v1 || this.v2) return;\n return this.metadata[1];\n } // Is only present when a country supports multiple IDD prefixes.\n\n }, {\n key: \"defaultIDDPrefix\",\n value: function defaultIDDPrefix() {\n if (this.v1 || this.v2) return;\n return this.metadata[12];\n }\n }, {\n key: \"nationalNumberPattern\",\n value: function nationalNumberPattern() {\n if (this.v1 || this.v2) return this.metadata[1];\n return this.metadata[2];\n } // \"possible length\" data is always present in Google's metadata.\n\n }, {\n key: \"possibleLengths\",\n value: function possibleLengths() {\n if (this.v1) return;\n return this.metadata[this.v2 ? 2 : 3];\n }\n }, {\n key: \"_getFormats\",\n value: function _getFormats(metadata) {\n return metadata[this.v1 ? 2 : this.v2 ? 3 : 4];\n } // For countries of the same region (e.g. NANPA)\n // formats are all stored in the \"main\" country for that region.\n // E.g. \"RU\" and \"KZ\", \"US\" and \"CA\".\n\n }, {\n key: \"formats\",\n value: function formats() {\n var _this = this;\n\n var formats = this._getFormats(this.metadata) || this._getFormats(this.getDefaultCountryMetadataForRegion()) || [];\n return formats.map(function (_) {\n return new Format(_, _this);\n });\n }\n }, {\n key: \"nationalPrefix\",\n value: function nationalPrefix() {\n return this.metadata[this.v1 ? 3 : this.v2 ? 4 : 5];\n }\n }, {\n key: \"_getNationalPrefixFormattingRule\",\n value: function _getNationalPrefixFormattingRule(metadata) {\n return metadata[this.v1 ? 4 : this.v2 ? 5 : 6];\n } // For countries of the same region (e.g. NANPA)\n // national prefix formatting rule is stored in the \"main\" country for that region.\n // E.g. \"RU\" and \"KZ\", \"US\" and \"CA\".\n\n }, {\n key: \"nationalPrefixFormattingRule\",\n value: function nationalPrefixFormattingRule() {\n return this._getNationalPrefixFormattingRule(this.metadata) || this._getNationalPrefixFormattingRule(this.getDefaultCountryMetadataForRegion());\n }\n }, {\n key: \"_nationalPrefixForParsing\",\n value: function _nationalPrefixForParsing() {\n return this.metadata[this.v1 ? 5 : this.v2 ? 6 : 7];\n }\n }, {\n key: \"nationalPrefixForParsing\",\n value: function nationalPrefixForParsing() {\n // If `national_prefix_for_parsing` is not set explicitly,\n // then infer it from `national_prefix` (if any)\n return this._nationalPrefixForParsing() || this.nationalPrefix();\n }\n }, {\n key: \"nationalPrefixTransformRule\",\n value: function nationalPrefixTransformRule() {\n return this.metadata[this.v1 ? 6 : this.v2 ? 7 : 8];\n }\n }, {\n key: \"_getNationalPrefixIsOptionalWhenFormatting\",\n value: function _getNationalPrefixIsOptionalWhenFormatting() {\n return !!this.metadata[this.v1 ? 7 : this.v2 ? 8 : 9];\n } // For countries of the same region (e.g. NANPA)\n // \"national prefix is optional when formatting\" flag is\n // stored in the \"main\" country for that region.\n // E.g. \"RU\" and \"KZ\", \"US\" and \"CA\".\n\n }, {\n key: \"nationalPrefixIsOptionalWhenFormattingInNationalFormat\",\n value: function nationalPrefixIsOptionalWhenFormattingInNationalFormat() {\n return this._getNationalPrefixIsOptionalWhenFormatting(this.metadata) || this._getNationalPrefixIsOptionalWhenFormatting(this.getDefaultCountryMetadataForRegion());\n }\n }, {\n key: \"leadingDigits\",\n value: function leadingDigits() {\n return this.metadata[this.v1 ? 8 : this.v2 ? 9 : 10];\n }\n }, {\n key: \"types\",\n value: function types() {\n return this.metadata[this.v1 ? 9 : this.v2 ? 10 : 11];\n }\n }, {\n key: \"hasTypes\",\n value: function hasTypes() {\n // Versions 1.2.0 - 1.2.4: can be `[]`.\n\n /* istanbul ignore next */\n if (this.types() && this.types().length === 0) {\n return false;\n } // Versions <= 1.2.4: can be `undefined`.\n // Version >= 1.2.5: can be `0`.\n\n\n return !!this.types();\n }\n }, {\n key: \"type\",\n value: function type(_type2) {\n if (this.hasTypes() && getType(this.types(), _type2)) {\n return new Type(getType(this.types(), _type2), this);\n }\n }\n }, {\n key: \"ext\",\n value: function ext() {\n if (this.v1 || this.v2) return DEFAULT_EXT_PREFIX;\n return this.metadata[13] || DEFAULT_EXT_PREFIX;\n }\n }]);\n\n return NumberingPlan;\n}();\n\nvar Format = /*#__PURE__*/function () {\n function Format(format, metadata) {\n _classCallCheck(this, Format);\n\n this._format = format;\n this.metadata = metadata;\n }\n\n _createClass(Format, [{\n key: \"pattern\",\n value: function pattern() {\n return this._format[0];\n }\n }, {\n key: \"format\",\n value: function format() {\n return this._format[1];\n }\n }, {\n key: \"leadingDigitsPatterns\",\n value: function leadingDigitsPatterns() {\n return this._format[2] || [];\n }\n }, {\n key: \"nationalPrefixFormattingRule\",\n value: function nationalPrefixFormattingRule() {\n return this._format[3] || this.metadata.nationalPrefixFormattingRule();\n }\n }, {\n key: \"nationalPrefixIsOptionalWhenFormattingInNationalFormat\",\n value: function nationalPrefixIsOptionalWhenFormattingInNationalFormat() {\n return !!this._format[4] || this.metadata.nationalPrefixIsOptionalWhenFormattingInNationalFormat();\n }\n }, {\n key: \"nationalPrefixIsMandatoryWhenFormattingInNationalFormat\",\n value: function nationalPrefixIsMandatoryWhenFormattingInNationalFormat() {\n // National prefix is omitted if there's no national prefix formatting rule\n // set for this country, or when the national prefix formatting rule\n // contains no national prefix itself, or when this rule is set but\n // national prefix is optional for this phone number format\n // (and it is not enforced explicitly)\n return this.usesNationalPrefix() && !this.nationalPrefixIsOptionalWhenFormattingInNationalFormat();\n } // Checks whether national prefix formatting rule contains national prefix.\n\n }, {\n key: \"usesNationalPrefix\",\n value: function usesNationalPrefix() {\n return this.nationalPrefixFormattingRule() && // Check that national prefix formatting rule is not a \"dummy\" one.\n !FIRST_GROUP_ONLY_PREFIX_PATTERN.test(this.nationalPrefixFormattingRule()) // In compressed metadata, `this.nationalPrefixFormattingRule()` is `0`\n // when `national_prefix_formatting_rule` is not present.\n // So, `true` or `false` are returned explicitly here, so that\n // `0` number isn't returned.\n ? true : false;\n }\n }, {\n key: \"internationalFormat\",\n value: function internationalFormat() {\n return this._format[5] || this.format();\n }\n }]);\n\n return Format;\n}();\n/**\r\n * A pattern that is used to determine if the national prefix formatting rule\r\n * has the first group only, i.e., does not start with the national prefix.\r\n * Note that the pattern explicitly allows for unbalanced parentheses.\r\n */\n\n\nvar FIRST_GROUP_ONLY_PREFIX_PATTERN = /^\\(?\\$1\\)?$/;\n\nvar Type = /*#__PURE__*/function () {\n function Type(type, metadata) {\n _classCallCheck(this, Type);\n\n this.type = type;\n this.metadata = metadata;\n }\n\n _createClass(Type, [{\n key: \"pattern\",\n value: function pattern() {\n if (this.metadata.v1) return this.type;\n return this.type[0];\n }\n }, {\n key: \"possibleLengths\",\n value: function possibleLengths() {\n if (this.metadata.v1) return;\n return this.type[1] || this.metadata.possibleLengths();\n }\n }]);\n\n return Type;\n}();\n\nfunction getType(types, type) {\n switch (type) {\n case 'FIXED_LINE':\n return types[0];\n\n case 'MOBILE':\n return types[1];\n\n case 'TOLL_FREE':\n return types[2];\n\n case 'PREMIUM_RATE':\n return types[3];\n\n case 'PERSONAL_NUMBER':\n return types[4];\n\n case 'VOICEMAIL':\n return types[5];\n\n case 'UAN':\n return types[6];\n\n case 'PAGER':\n return types[7];\n\n case 'VOIP':\n return types[8];\n\n case 'SHARED_COST':\n return types[9];\n }\n}\n\nexport function validateMetadata(metadata) {\n if (!metadata) {\n throw new Error('[libphonenumber-js] `metadata` argument not passed. Check your arguments.');\n } // `country_phone_code_to_countries` was renamed to\n // `country_calling_codes` in `1.0.18`.\n\n\n if (!isObject(metadata) || !isObject(metadata.countries)) {\n throw new Error(\"[libphonenumber-js] `metadata` argument was passed but it's not a valid metadata. Must be an object having `.countries` child object property. Got \".concat(isObject(metadata) ? 'an object of shape: { ' + Object.keys(metadata).join(', ') + ' }' : 'a ' + typeOf(metadata) + ': ' + metadata, \".\"));\n }\n} // Babel transforms `typeof` into some \"branches\"\n// so istanbul will show this as \"branch not covered\".\n\n/* istanbul ignore next */\n\nvar typeOf = function typeOf(_) {\n return _typeof(_);\n};\n/**\r\n * Returns extension prefix for a country.\r\n * @param {string} country\r\n * @param {object} metadata\r\n * @return {string?}\r\n * @example\r\n * // Returns \" ext. \"\r\n * getExtPrefix(\"US\")\r\n */\n\n\nexport function getExtPrefix(country, metadata) {\n metadata = new Metadata(metadata);\n\n if (metadata.hasCountry(country)) {\n return metadata.country(country).ext();\n }\n\n return DEFAULT_EXT_PREFIX;\n}\n/**\r\n * Returns \"country calling code\" for a country.\r\n * Throws an error if the country doesn't exist or isn't supported by this library.\r\n * @param {string} country\r\n * @param {object} metadata\r\n * @return {string}\r\n * @example\r\n * // Returns \"44\"\r\n * getCountryCallingCode(\"GB\")\r\n */\n\nexport function getCountryCallingCode(country, metadata) {\n metadata = new Metadata(metadata);\n\n if (metadata.hasCountry(country)) {\n return metadata.country(country).countryCallingCode();\n }\n\n throw new Error(\"Unknown country: \".concat(country));\n}\nexport function isSupportedCountry(country, metadata) {\n // metadata = new Metadata(metadata)\n // return metadata.hasCountry(country)\n return metadata.countries.hasOwnProperty(country);\n}\n\nfunction setVersion(metadata) {\n var version = metadata.version;\n\n if (typeof version === 'number') {\n this.v1 = version === 1;\n this.v2 = version === 2;\n this.v3 = version === 3;\n this.v4 = version === 4;\n } else {\n if (!version) {\n this.v1 = true;\n } else if (compare(version, V3) === -1) {\n this.v2 = true;\n } else if (compare(version, V4) === -1) {\n this.v3 = true;\n } else {\n this.v4 = true;\n }\n }\n} // const ISO_COUNTRY_CODE = /^[A-Z]{2}$/\n// function isCountryCode(countryCode) {\n// \treturn ISO_COUNTRY_CODE.test(countryCodeOrCountryCallingCode)\n// }\n//# sourceMappingURL=metadata.js.map","import { VALID_DIGITS } from '../../constants.js'; // The RFC 3966 format for extensions.\n\nvar RFC3966_EXTN_PREFIX = ';ext=';\n/**\r\n * Helper method for constructing regular expressions for parsing. Creates\r\n * an expression that captures up to max_length digits.\r\n * @return {string} RegEx pattern to capture extension digits.\r\n */\n\nvar getExtensionDigitsPattern = function getExtensionDigitsPattern(maxLength) {\n return \"([\".concat(VALID_DIGITS, \"]{1,\").concat(maxLength, \"})\");\n};\n/**\r\n * Helper initialiser method to create the regular-expression pattern to match\r\n * extensions.\r\n * Copy-pasted from Google's `libphonenumber`:\r\n * https://github.com/google/libphonenumber/blob/55b2646ec9393f4d3d6661b9c82ef9e258e8b829/javascript/i18n/phonenumbers/phonenumberutil.js#L759-L766\r\n * @return {string} RegEx pattern to capture extensions.\r\n */\n\n\nexport default function createExtensionPattern(purpose) {\n // We cap the maximum length of an extension based on the ambiguity of the way\n // the extension is prefixed. As per ITU, the officially allowed length for\n // extensions is actually 40, but we don't support this since we haven't seen real\n // examples and this introduces many false interpretations as the extension labels\n // are not standardized.\n\n /** @type {string} */\n var extLimitAfterExplicitLabel = '20';\n /** @type {string} */\n\n var extLimitAfterLikelyLabel = '15';\n /** @type {string} */\n\n var extLimitAfterAmbiguousChar = '9';\n /** @type {string} */\n\n var extLimitWhenNotSure = '6';\n /** @type {string} */\n\n var possibleSeparatorsBetweenNumberAndExtLabel = \"[ \\xA0\\\\t,]*\"; // Optional full stop (.) or colon, followed by zero or more spaces/tabs/commas.\n\n /** @type {string} */\n\n var possibleCharsAfterExtLabel = \"[:\\\\.\\uFF0E]?[ \\xA0\\\\t,-]*\";\n /** @type {string} */\n\n var optionalExtnSuffix = \"#?\"; // Here the extension is called out in more explicit way, i.e mentioning it obvious\n // patterns like \"ext.\".\n\n /** @type {string} */\n\n var explicitExtLabels = \"(?:e?xt(?:ensi(?:o\\u0301?|\\xF3))?n?|\\uFF45?\\uFF58\\uFF54\\uFF4E?|\\u0434\\u043E\\u0431|anexo)\"; // One-character symbols that can be used to indicate an extension, and less\n // commonly used or more ambiguous extension labels.\n\n /** @type {string} */\n\n var ambiguousExtLabels = \"(?:[x\\uFF58#\\uFF03~\\uFF5E]|int|\\uFF49\\uFF4E\\uFF54)\"; // When extension is not separated clearly.\n\n /** @type {string} */\n\n var ambiguousSeparator = \"[- ]+\"; // This is the same as possibleSeparatorsBetweenNumberAndExtLabel, but not matching\n // comma as extension label may have it.\n\n /** @type {string} */\n\n var possibleSeparatorsNumberExtLabelNoComma = \"[ \\xA0\\\\t]*\"; // \",,\" is commonly used for auto dialling the extension when connected. First\n // comma is matched through possibleSeparatorsBetweenNumberAndExtLabel, so we do\n // not repeat it here. Semi-colon works in Iphone and Android also to pop up a\n // button with the extension number following.\n\n /** @type {string} */\n\n var autoDiallingAndExtLabelsFound = \"(?:,{2}|;)\";\n /** @type {string} */\n\n var rfcExtn = RFC3966_EXTN_PREFIX + getExtensionDigitsPattern(extLimitAfterExplicitLabel);\n /** @type {string} */\n\n var explicitExtn = possibleSeparatorsBetweenNumberAndExtLabel + explicitExtLabels + possibleCharsAfterExtLabel + getExtensionDigitsPattern(extLimitAfterExplicitLabel) + optionalExtnSuffix;\n /** @type {string} */\n\n var ambiguousExtn = possibleSeparatorsBetweenNumberAndExtLabel + ambiguousExtLabels + possibleCharsAfterExtLabel + getExtensionDigitsPattern(extLimitAfterAmbiguousChar) + optionalExtnSuffix;\n /** @type {string} */\n\n var americanStyleExtnWithSuffix = ambiguousSeparator + getExtensionDigitsPattern(extLimitWhenNotSure) + \"#\";\n /** @type {string} */\n\n var autoDiallingExtn = possibleSeparatorsNumberExtLabelNoComma + autoDiallingAndExtLabelsFound + possibleCharsAfterExtLabel + getExtensionDigitsPattern(extLimitAfterLikelyLabel) + optionalExtnSuffix;\n /** @type {string} */\n\n var onlyCommasExtn = possibleSeparatorsNumberExtLabelNoComma + \"(?:,)+\" + possibleCharsAfterExtLabel + getExtensionDigitsPattern(extLimitAfterAmbiguousChar) + optionalExtnSuffix; // The first regular expression covers RFC 3966 format, where the extension is added\n // using \";ext=\". The second more generic where extension is mentioned with explicit\n // labels like \"ext:\". In both the above cases we allow more numbers in extension than\n // any other extension labels. The third one captures when single character extension\n // labels or less commonly used labels are used. In such cases we capture fewer\n // extension digits in order to reduce the chance of falsely interpreting two\n // numbers beside each other as a number + extension. The fourth one covers the\n // special case of American numbers where the extension is written with a hash\n // at the end, such as \"- 503#\". The fifth one is exclusively for extension\n // autodialling formats which are used when dialling and in this case we accept longer\n // extensions. The last one is more liberal on the number of commas that acts as\n // extension labels, so we have a strict cap on the number of digits in such extensions.\n\n return rfcExtn + \"|\" + explicitExtn + \"|\" + ambiguousExtn + \"|\" + americanStyleExtnWithSuffix + \"|\" + autoDiallingExtn + \"|\" + onlyCommasExtn;\n}\n//# sourceMappingURL=createExtensionPattern.js.map","import { MIN_LENGTH_FOR_NSN, VALID_DIGITS, VALID_PUNCTUATION, PLUS_CHARS } from '../constants.js';\nimport createExtensionPattern from './extension/createExtensionPattern.js'; // Regular expression of viable phone numbers. This is location independent.\n// Checks we have at least three leading digits, and only valid punctuation,\n// alpha characters and digits in the phone number. Does not include extension\n// data. The symbol 'x' is allowed here as valid punctuation since it is often\n// used as a placeholder for carrier codes, for example in Brazilian phone\n// numbers. We also allow multiple '+' characters at the start.\n//\n// Corresponds to the following:\n// [digits]{minLengthNsn}|\n// plus_sign*\n// (([punctuation]|[star])*[digits]){3,}([punctuation]|[star]|[digits]|[alpha])*\n//\n// The first reg-ex is to allow short numbers (two digits long) to be parsed if\n// they are entered as \"15\" etc, but only if there is no punctuation in them.\n// The second expression restricts the number of digits to three or more, but\n// then allows them to be in international form, and to have alpha-characters\n// and punctuation. We split up the two reg-exes here and combine them when\n// creating the reg-ex VALID_PHONE_NUMBER_PATTERN itself so we can prefix it\n// with ^ and append $ to each branch.\n//\n// \"Note VALID_PUNCTUATION starts with a -,\n// so must be the first in the range\" (c) Google devs.\n// (wtf did they mean by saying that; probably nothing)\n//\n\nvar MIN_LENGTH_PHONE_NUMBER_PATTERN = '[' + VALID_DIGITS + ']{' + MIN_LENGTH_FOR_NSN + '}'; //\n// And this is the second reg-exp:\n// (see MIN_LENGTH_PHONE_NUMBER_PATTERN for a full description of this reg-exp)\n//\n\nexport var VALID_PHONE_NUMBER = '[' + PLUS_CHARS + ']{0,1}' + '(?:' + '[' + VALID_PUNCTUATION + ']*' + '[' + VALID_DIGITS + ']' + '){3,}' + '[' + VALID_PUNCTUATION + VALID_DIGITS + ']*'; // This regular expression isn't present in Google's `libphonenumber`\n// and is only used to determine whether the phone number being input\n// is too short for it to even consider it a \"valid\" number.\n// This is just a way to differentiate between a really invalid phone\n// number like \"abcde\" and a valid phone number that a user has just\n// started inputting, like \"+1\" or \"1\": both these cases would be\n// considered `NOT_A_NUMBER` by Google's `libphonenumber`, but this\n// library can provide a more detailed error message — whether it's\n// really \"not a number\", or is it just a start of a valid phone number.\n\nvar VALID_PHONE_NUMBER_START_REG_EXP = new RegExp('^' + '[' + PLUS_CHARS + ']{0,1}' + '(?:' + '[' + VALID_PUNCTUATION + ']*' + '[' + VALID_DIGITS + ']' + '){1,2}' + '$', 'i');\nexport var VALID_PHONE_NUMBER_WITH_EXTENSION = VALID_PHONE_NUMBER + // Phone number extensions\n'(?:' + createExtensionPattern() + ')?'; // The combined regular expression for valid phone numbers:\n//\n\nvar VALID_PHONE_NUMBER_PATTERN = new RegExp( // Either a short two-digit-only phone number\n'^' + MIN_LENGTH_PHONE_NUMBER_PATTERN + '$' + '|' + // Or a longer fully parsed phone number (min 3 characters)\n'^' + VALID_PHONE_NUMBER_WITH_EXTENSION + '$', 'i'); // Checks to see if the string of characters could possibly be a phone number at\n// all. At the moment, checks to see that the string begins with at least 2\n// digits, ignoring any punctuation commonly found in phone numbers. This method\n// does not require the number to be normalized in advance - but does assume\n// that leading non-number symbols have been removed, such as by the method\n// `extract_possible_number`.\n//\n\nexport default function isViablePhoneNumber(number) {\n return number.length >= MIN_LENGTH_FOR_NSN && VALID_PHONE_NUMBER_PATTERN.test(number);\n} // This is just a way to differentiate between a really invalid phone\n// number like \"abcde\" and a valid phone number that a user has just\n// started inputting, like \"+1\" or \"1\": both these cases would be\n// considered `NOT_A_NUMBER` by Google's `libphonenumber`, but this\n// library can provide a more detailed error message — whether it's\n// really \"not a number\", or is it just a start of a valid phone number.\n\nexport function isViablePhoneNumberStart(number) {\n return VALID_PHONE_NUMBER_START_REG_EXP.test(number);\n}\n//# sourceMappingURL=isViablePhoneNumber.js.map","import createExtensionPattern from './createExtensionPattern.js'; // Regexp of all known extension prefixes used by different regions followed by\n// 1 or more valid digits, for use when parsing.\n\nvar EXTN_PATTERN = new RegExp('(?:' + createExtensionPattern() + ')$', 'i'); // Strips any extension (as in, the part of the number dialled after the call is\n// connected, usually indicated with extn, ext, x or similar) from the end of\n// the number, and returns it.\n\nexport default function extractExtension(number) {\n var start = number.search(EXTN_PATTERN);\n\n if (start < 0) {\n return {};\n } // If we find a potential extension, and the number preceding this is a viable\n // number, we assume it is an extension.\n\n\n var numberWithoutExtension = number.slice(0, start);\n var matches = number.match(EXTN_PATTERN);\n var i = 1;\n\n while (i < matches.length) {\n if (matches[i]) {\n return {\n number: numberWithoutExtension,\n ext: matches[i]\n };\n }\n\n i++;\n }\n}\n//# sourceMappingURL=extractExtension.js.map","function _createForOfIteratorHelperLoose(o, allowArrayLike) { var it = typeof Symbol !== \"undefined\" && o[Symbol.iterator] || o[\"@@iterator\"]; if (it) return (it = it.call(o)).next.bind(it); if (Array.isArray(o) || (it = _unsupportedIterableToArray(o)) || allowArrayLike && o && typeof o.length === \"number\") { if (it) o = it; var i = 0; return function () { if (i >= o.length) return { done: true }; return { done: false, value: o[i++] }; }; } throw new TypeError(\"Invalid attempt to iterate non-iterable instance.\\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method.\"); }\n\nfunction _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); }\n\nfunction _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; }\n\n// These mappings map a character (key) to a specific digit that should\n// replace it for normalization purposes. Non-European digits that\n// may be used in phone numbers are mapped to a European equivalent.\n//\n// E.g. in Iraq they don't write `+442323234` but rather `+٤٤٢٣٢٣٢٣٤`.\n//\nexport var DIGITS = {\n '0': '0',\n '1': '1',\n '2': '2',\n '3': '3',\n '4': '4',\n '5': '5',\n '6': '6',\n '7': '7',\n '8': '8',\n '9': '9',\n \"\\uFF10\": '0',\n // Fullwidth digit 0\n \"\\uFF11\": '1',\n // Fullwidth digit 1\n \"\\uFF12\": '2',\n // Fullwidth digit 2\n \"\\uFF13\": '3',\n // Fullwidth digit 3\n \"\\uFF14\": '4',\n // Fullwidth digit 4\n \"\\uFF15\": '5',\n // Fullwidth digit 5\n \"\\uFF16\": '6',\n // Fullwidth digit 6\n \"\\uFF17\": '7',\n // Fullwidth digit 7\n \"\\uFF18\": '8',\n // Fullwidth digit 8\n \"\\uFF19\": '9',\n // Fullwidth digit 9\n \"\\u0660\": '0',\n // Arabic-indic digit 0\n \"\\u0661\": '1',\n // Arabic-indic digit 1\n \"\\u0662\": '2',\n // Arabic-indic digit 2\n \"\\u0663\": '3',\n // Arabic-indic digit 3\n \"\\u0664\": '4',\n // Arabic-indic digit 4\n \"\\u0665\": '5',\n // Arabic-indic digit 5\n \"\\u0666\": '6',\n // Arabic-indic digit 6\n \"\\u0667\": '7',\n // Arabic-indic digit 7\n \"\\u0668\": '8',\n // Arabic-indic digit 8\n \"\\u0669\": '9',\n // Arabic-indic digit 9\n \"\\u06F0\": '0',\n // Eastern-Arabic digit 0\n \"\\u06F1\": '1',\n // Eastern-Arabic digit 1\n \"\\u06F2\": '2',\n // Eastern-Arabic digit 2\n \"\\u06F3\": '3',\n // Eastern-Arabic digit 3\n \"\\u06F4\": '4',\n // Eastern-Arabic digit 4\n \"\\u06F5\": '5',\n // Eastern-Arabic digit 5\n \"\\u06F6\": '6',\n // Eastern-Arabic digit 6\n \"\\u06F7\": '7',\n // Eastern-Arabic digit 7\n \"\\u06F8\": '8',\n // Eastern-Arabic digit 8\n \"\\u06F9\": '9' // Eastern-Arabic digit 9\n\n};\nexport function parseDigit(character) {\n return DIGITS[character];\n}\n/**\r\n * Parses phone number digits from a string.\r\n * Drops all punctuation leaving only digits.\r\n * Also converts wide-ascii and arabic-indic numerals to conventional numerals.\r\n * E.g. in Iraq they don't write `+442323234` but rather `+٤٤٢٣٢٣٢٣٤`.\r\n * @param {string} string\r\n * @return {string}\r\n * @example\r\n * ```js\r\n * parseDigits('8 (800) 555')\r\n * // Outputs '8800555'.\r\n * ```\r\n */\n\nexport default function parseDigits(string) {\n var result = ''; // Using `.split('')` here instead of normal `for ... of`\n // because the importing application doesn't neccessarily include an ES6 polyfill.\n // The `.split('')` approach discards \"exotic\" UTF-8 characters\n // (the ones consisting of four bytes) but digits\n // (including non-European ones) don't fall into that range\n // so such \"exotic\" characters would be discarded anyway.\n\n for (var _iterator = _createForOfIteratorHelperLoose(string.split('')), _step; !(_step = _iterator()).done;) {\n var character = _step.value;\n var digit = parseDigit(character);\n\n if (digit) {\n result += digit;\n }\n }\n\n return result;\n}\n//# sourceMappingURL=parseDigits.js.map","function _createForOfIteratorHelperLoose(o, allowArrayLike) { var it = typeof Symbol !== \"undefined\" && o[Symbol.iterator] || o[\"@@iterator\"]; if (it) return (it = it.call(o)).next.bind(it); if (Array.isArray(o) || (it = _unsupportedIterableToArray(o)) || allowArrayLike && o && typeof o.length === \"number\") { if (it) o = it; var i = 0; return function () { if (i >= o.length) return { done: true }; return { done: false, value: o[i++] }; }; } throw new TypeError(\"Invalid attempt to iterate non-iterable instance.\\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method.\"); }\n\nfunction _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); }\n\nfunction _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; }\n\nimport { parseDigit } from './helpers/parseDigits.js';\n/**\r\n * Parses phone number characters from a string.\r\n * Drops all punctuation leaving only digits and the leading `+` sign (if any).\r\n * Also converts wide-ascii and arabic-indic numerals to conventional numerals.\r\n * E.g. in Iraq they don't write `+442323234` but rather `+٤٤٢٣٢٣٢٣٤`.\r\n * @param {string} string\r\n * @return {string}\r\n * @example\r\n * ```js\r\n * // Outputs '8800555'.\r\n * parseIncompletePhoneNumber('8 (800) 555')\r\n * // Outputs '+7800555'.\r\n * parseIncompletePhoneNumber('+7 800 555')\r\n * ```\r\n */\n\nexport default function parseIncompletePhoneNumber(string) {\n var result = ''; // Using `.split('')` here instead of normal `for ... of`\n // because the importing application doesn't neccessarily include an ES6 polyfill.\n // The `.split('')` approach discards \"exotic\" UTF-8 characters\n // (the ones consisting of four bytes) but digits\n // (including non-European ones) don't fall into that range\n // so such \"exotic\" characters would be discarded anyway.\n\n for (var _iterator = _createForOfIteratorHelperLoose(string.split('')), _step; !(_step = _iterator()).done;) {\n var character = _step.value;\n result += parsePhoneNumberCharacter(character, result) || '';\n }\n\n return result;\n}\n/**\r\n * Parses next character while parsing phone number digits (including a `+`)\r\n * from text: discards everything except `+` and digits, and `+` is only allowed\r\n * at the start of a phone number.\r\n * For example, is used in `react-phone-number-input` where it uses\r\n * [`input-format`](https://gitlab.com/catamphetamine/input-format).\r\n * @param {string} character - Yet another character from raw input string.\r\n * @param {string?} prevParsedCharacters - Previous parsed characters.\r\n * @param {function?} emitEvent - An optional \"emit event\" function.\r\n * @return {string?} The parsed character.\r\n */\n\nexport function parsePhoneNumberCharacter(character, prevParsedCharacters, emitEvent) {\n // Only allow a leading `+`.\n if (character === '+') {\n // If this `+` is not the first parsed character\n // then discard it.\n if (prevParsedCharacters) {\n // `emitEvent` argument was added to this `export`ed function on Dec 26th, 2023.\n // Any 3rd-party code that used to `import` and call this function before that\n // won't be passing any `emitEvent` argument.\n //\n // The addition of the `emitEvent` argument was to fix the slightly-weird behavior\n // of parsing an input string when the user inputs something like `\"2+7\"\n // https://github.com/catamphetamine/react-phone-number-input/issues/437\n //\n // If the parser encounters an unexpected `+` in a string being parsed\n // then it simply discards that out-of-place `+` and any following characters.\n //\n if (typeof emitEvent === 'function') {\n emitEvent('end');\n }\n\n return;\n }\n\n return '+';\n } // Allow digits.\n\n\n return parseDigit(character);\n}\n//# sourceMappingURL=parseIncompletePhoneNumber.js.map","function _createForOfIteratorHelperLoose(o, allowArrayLike) { var it = typeof Symbol !== \"undefined\" && o[Symbol.iterator] || o[\"@@iterator\"]; if (it) return (it = it.call(o)).next.bind(it); if (Array.isArray(o) || (it = _unsupportedIterableToArray(o)) || allowArrayLike && o && typeof o.length === \"number\") { if (it) o = it; var i = 0; return function () { if (i >= o.length) return { done: true }; return { done: false, value: o[i++] }; }; } throw new TypeError(\"Invalid attempt to iterate non-iterable instance.\\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method.\"); }\n\nfunction _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); }\n\nfunction _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; }\n\n/**\r\n * Merges two arrays.\r\n * @param {*} a\r\n * @param {*} b\r\n * @return {*}\r\n */\nexport default function mergeArrays(a, b) {\n var merged = a.slice();\n\n for (var _iterator = _createForOfIteratorHelperLoose(b), _step; !(_step = _iterator()).done;) {\n var element = _step.value;\n\n if (a.indexOf(element) < 0) {\n merged.push(element);\n }\n }\n\n return merged.sort(function (a, b) {\n return a - b;\n }); // ES6 version, requires Set polyfill.\n // let merged = new Set(a)\n // for (const element of b) {\n // \tmerged.add(i)\n // }\n // return Array.from(merged).sort((a, b) => a - b)\n}\n//# sourceMappingURL=mergeArrays.js.map","import mergeArrays from './mergeArrays.js';\nexport default function checkNumberLength(nationalNumber, metadata) {\n return checkNumberLengthForType(nationalNumber, undefined, metadata);\n} // Checks whether a number is possible for the country based on its length.\n// Should only be called for the \"new\" metadata which has \"possible lengths\".\n\nexport function checkNumberLengthForType(nationalNumber, type, metadata) {\n var type_info = metadata.type(type); // There should always be \"\" set for every type element.\n // This is declared in the XML schema.\n // For size efficiency, where a sub-description (e.g. fixed-line)\n // has the same \"\" as the \"general description\", this is missing,\n // so we fall back to the \"general description\". Where no numbers of the type\n // exist at all, there is one possible length (-1) which is guaranteed\n // not to match the length of any real phone number.\n\n var possible_lengths = type_info && type_info.possibleLengths() || metadata.possibleLengths(); // let local_lengths = type_info && type.possibleLengthsLocal() || metadata.possibleLengthsLocal()\n // Metadata before version `1.0.18` didn't contain `possible_lengths`.\n\n if (!possible_lengths) {\n return 'IS_POSSIBLE';\n }\n\n if (type === 'FIXED_LINE_OR_MOBILE') {\n // No such country in metadata.\n\n /* istanbul ignore next */\n if (!metadata.type('FIXED_LINE')) {\n // The rare case has been encountered where no fixedLine data is available\n // (true for some non-geographic entities), so we just check mobile.\n return checkNumberLengthForType(nationalNumber, 'MOBILE', metadata);\n }\n\n var mobile_type = metadata.type('MOBILE');\n\n if (mobile_type) {\n // Merge the mobile data in if there was any. \"Concat\" creates a new\n // array, it doesn't edit possible_lengths in place, so we don't need a copy.\n // Note that when adding the possible lengths from mobile, we have\n // to again check they aren't empty since if they are this indicates\n // they are the same as the general desc and should be obtained from there.\n possible_lengths = mergeArrays(possible_lengths, mobile_type.possibleLengths()); // The current list is sorted; we need to merge in the new list and\n // re-sort (duplicates are okay). Sorting isn't so expensive because\n // the lists are very small.\n // if (local_lengths) {\n // \tlocal_lengths = mergeArrays(local_lengths, mobile_type.possibleLengthsLocal())\n // } else {\n // \tlocal_lengths = mobile_type.possibleLengthsLocal()\n // }\n }\n } // If the type doesn't exist then return 'INVALID_LENGTH'.\n else if (type && !type_info) {\n return 'INVALID_LENGTH';\n }\n\n var actual_length = nationalNumber.length; // In `libphonenumber-js` all \"local-only\" formats are dropped for simplicity.\n // // This is safe because there is never an overlap beween the possible lengths\n // // and the local-only lengths; this is checked at build time.\n // if (local_lengths && local_lengths.indexOf(nationalNumber.length) >= 0)\n // {\n // \treturn 'IS_POSSIBLE_LOCAL_ONLY'\n // }\n\n var minimum_length = possible_lengths[0];\n\n if (minimum_length === actual_length) {\n return 'IS_POSSIBLE';\n }\n\n if (minimum_length > actual_length) {\n return 'TOO_SHORT';\n }\n\n if (possible_lengths[possible_lengths.length - 1] < actual_length) {\n return 'TOO_LONG';\n } // We skip the first element since we've already checked it.\n\n\n return possible_lengths.indexOf(actual_length, 1) >= 0 ? 'IS_POSSIBLE' : 'INVALID_LENGTH';\n}\n//# sourceMappingURL=checkNumberLength.js.map","import Metadata from './metadata.js';\nimport checkNumberLength from './helpers/checkNumberLength.js';\n/**\r\n * Checks if a phone number is \"possible\" (basically just checks its length).\r\n *\r\n * isPossible(phoneNumberInstance, { ..., v2: true }, metadata)\r\n *\r\n * isPossible({ phone: '8005553535', country: 'RU' }, { ... }, metadata)\r\n * isPossible({ phone: '8005553535', country: 'RU' }, undefined, metadata)\r\n *\r\n * @param {object|PhoneNumber} input — If `options.v2: true` flag is passed, the `input` should be a `PhoneNumber` instance. Otherwise, it should be an object of shape `{ phone: '...', country: '...' }`.\r\n * @param {object} [options]\r\n * @param {object} metadata\r\n * @return {string}\r\n */\n\nexport default function isPossiblePhoneNumber(input, options, metadata) {\n /* istanbul ignore if */\n if (options === undefined) {\n options = {};\n }\n\n metadata = new Metadata(metadata);\n\n if (options.v2) {\n if (!input.countryCallingCode) {\n throw new Error('Invalid phone number object passed');\n }\n\n metadata.selectNumberingPlan(input.countryCallingCode);\n } else {\n if (!input.phone) {\n return false;\n }\n\n if (input.country) {\n if (!metadata.hasCountry(input.country)) {\n throw new Error(\"Unknown country: \".concat(input.country));\n }\n\n metadata.country(input.country);\n } else {\n if (!input.countryCallingCode) {\n throw new Error('Invalid phone number object passed');\n }\n\n metadata.selectNumberingPlan(input.countryCallingCode);\n }\n } // Old metadata (< 1.0.18) had no \"possible length\" data.\n\n\n if (metadata.possibleLengths()) {\n return isPossibleNumber(input.phone || input.nationalNumber, metadata);\n } else {\n // There was a bug between `1.7.35` and `1.7.37` where \"possible_lengths\"\n // were missing for \"non-geographical\" numbering plans.\n // Just assume the number is possible in such cases:\n // it's unlikely that anyone generated their custom metadata\n // in that short period of time (one day).\n // This code can be removed in some future major version update.\n if (input.countryCallingCode && metadata.isNonGeographicCallingCode(input.countryCallingCode)) {\n // \"Non-geographic entities\" did't have `possibleLengths`\n // due to a bug in metadata generation process.\n return true;\n } else {\n throw new Error('Missing \"possibleLengths\" in metadata. Perhaps the metadata has been generated before v1.0.18.');\n }\n }\n}\nexport function isPossibleNumber(nationalNumber, metadata) {\n //, isInternational) {\n switch (checkNumberLength(nationalNumber, metadata)) {\n case 'IS_POSSIBLE':\n return true;\n // This library ignores \"local-only\" phone numbers (for simplicity).\n // See the readme for more info on what are \"local-only\" phone numbers.\n // case 'IS_POSSIBLE_LOCAL_ONLY':\n // \treturn !isInternational\n\n default:\n return false;\n }\n}\n//# sourceMappingURL=isPossible.js.map","/**\r\n * Checks whether the entire input sequence can be matched\r\n * against the regular expression.\r\n * @return {boolean}\r\n */\nexport default function matchesEntirely(text, regular_expression) {\n // If assigning the `''` default value is moved to the arguments above,\n // code coverage would decrease for some weird reason.\n text = text || '';\n return new RegExp('^(?:' + regular_expression + ')$').test(text);\n}\n//# sourceMappingURL=matchesEntirely.js.map","function _createForOfIteratorHelperLoose(o, allowArrayLike) { var it = typeof Symbol !== \"undefined\" && o[Symbol.iterator] || o[\"@@iterator\"]; if (it) return (it = it.call(o)).next.bind(it); if (Array.isArray(o) || (it = _unsupportedIterableToArray(o)) || allowArrayLike && o && typeof o.length === \"number\") { if (it) o = it; var i = 0; return function () { if (i >= o.length) return { done: true }; return { done: false, value: o[i++] }; }; } throw new TypeError(\"Invalid attempt to iterate non-iterable instance.\\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method.\"); }\n\nfunction _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); }\n\nfunction _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; }\n\nimport Metadata from '../metadata.js';\nimport matchesEntirely from './matchesEntirely.js';\nvar NON_FIXED_LINE_PHONE_TYPES = ['MOBILE', 'PREMIUM_RATE', 'TOLL_FREE', 'SHARED_COST', 'VOIP', 'PERSONAL_NUMBER', 'PAGER', 'UAN', 'VOICEMAIL']; // Finds out national phone number type (fixed line, mobile, etc)\n\nexport default function getNumberType(input, options, metadata) {\n // If assigning the `{}` default value is moved to the arguments above,\n // code coverage would decrease for some weird reason.\n options = options || {}; // When `parse()` returns an empty object — `{}` —\n // that means that the phone number is malformed,\n // so it can't possibly be valid.\n\n if (!input.country && !input.countryCallingCode) {\n return;\n }\n\n metadata = new Metadata(metadata);\n metadata.selectNumberingPlan(input.country, input.countryCallingCode);\n var nationalNumber = options.v2 ? input.nationalNumber : input.phone; // The following is copy-pasted from the original function:\n // https://github.com/googlei18n/libphonenumber/blob/3ea547d4fbaa2d0b67588904dfa5d3f2557c27ff/javascript/i18n/phonenumbers/phonenumberutil.js#L2835\n // Is this national number even valid for this country\n\n if (!matchesEntirely(nationalNumber, metadata.nationalNumberPattern())) {\n return;\n } // Is it fixed line number\n\n\n if (isNumberTypeEqualTo(nationalNumber, 'FIXED_LINE', metadata)) {\n // Because duplicate regular expressions are removed\n // to reduce metadata size, if \"mobile\" pattern is \"\"\n // then it means it was removed due to being a duplicate of the fixed-line pattern.\n //\n if (metadata.type('MOBILE') && metadata.type('MOBILE').pattern() === '') {\n return 'FIXED_LINE_OR_MOBILE';\n } // `MOBILE` type pattern isn't included if it matched `FIXED_LINE` one.\n // For example, for \"US\" country.\n // Old metadata (< `1.0.18`) had a specific \"types\" data structure\n // that happened to be `undefined` for `MOBILE` in that case.\n // Newer metadata (>= `1.0.18`) has another data structure that is\n // not `undefined` for `MOBILE` in that case (it's just an empty array).\n // So this `if` is just for backwards compatibility with old metadata.\n\n\n if (!metadata.type('MOBILE')) {\n return 'FIXED_LINE_OR_MOBILE';\n } // Check if the number happens to qualify as both fixed line and mobile.\n // (no such country in the minimal metadata set)\n\n /* istanbul ignore if */\n\n\n if (isNumberTypeEqualTo(nationalNumber, 'MOBILE', metadata)) {\n return 'FIXED_LINE_OR_MOBILE';\n }\n\n return 'FIXED_LINE';\n }\n\n for (var _iterator = _createForOfIteratorHelperLoose(NON_FIXED_LINE_PHONE_TYPES), _step; !(_step = _iterator()).done;) {\n var type = _step.value;\n\n if (isNumberTypeEqualTo(nationalNumber, type, metadata)) {\n return type;\n }\n }\n}\nexport function isNumberTypeEqualTo(nationalNumber, type, metadata) {\n type = metadata.type(type);\n\n if (!type || !type.pattern()) {\n return false;\n } // Check if any possible number lengths are present;\n // if so, we use them to avoid checking\n // the validation pattern if they don't match.\n // If they are absent, this means they match\n // the general description, which we have\n // already checked before a specific number type.\n\n\n if (type.possibleLengths() && type.possibleLengths().indexOf(nationalNumber.length) < 0) {\n return false;\n }\n\n return matchesEntirely(nationalNumber, type.pattern());\n}\n//# sourceMappingURL=getNumberType.js.map","import Metadata from './metadata.js';\nimport matchesEntirely from './helpers/matchesEntirely.js';\nimport getNumberType from './helpers/getNumberType.js';\n/**\r\n * Checks if a given phone number is valid.\r\n *\r\n * isValid(phoneNumberInstance, { ..., v2: true }, metadata)\r\n *\r\n * isPossible({ phone: '8005553535', country: 'RU' }, { ... }, metadata)\r\n * isPossible({ phone: '8005553535', country: 'RU' }, undefined, metadata)\r\n *\r\n * If the `number` is a string, it will be parsed to an object,\r\n * but only if it contains only valid phone number characters (including punctuation).\r\n * If the `number` is an object, it is used as is.\r\n *\r\n * The optional `defaultCountry` argument is the default country.\r\n * I.e. it does not restrict to just that country,\r\n * e.g. in those cases where several countries share\r\n * the same phone numbering rules (NANPA, Britain, etc).\r\n * For example, even though the number `07624 369230`\r\n * belongs to the Isle of Man (\"IM\" country code)\r\n * calling `isValidNumber('07624369230', 'GB', metadata)`\r\n * still returns `true` because the country is not restricted to `GB`,\r\n * it's just that `GB` is the default one for the phone numbering rules.\r\n * For restricting the country see `isValidNumberForRegion()`\r\n * though restricting a country might not be a good idea.\r\n * https://github.com/googlei18n/libphonenumber/blob/master/FAQ.md#when-should-i-use-isvalidnumberforregion\r\n *\r\n * Examples:\r\n *\r\n * ```js\r\n * isValidNumber('+78005553535', metadata)\r\n * isValidNumber('8005553535', 'RU', metadata)\r\n * isValidNumber('88005553535', 'RU', metadata)\r\n * isValidNumber({ phone: '8005553535', country: 'RU' }, metadata)\r\n * ```\r\n */\n\nexport default function isValidNumber(input, options, metadata) {\n // If assigning the `{}` default value is moved to the arguments above,\n // code coverage would decrease for some weird reason.\n options = options || {};\n metadata = new Metadata(metadata);\n /**\r\n * Checks if a phone number is \"possible\" (basically just checks its length).\r\n *\r\n * @param {object|PhoneNumber} input — If `options.v2: true` flag is passed, the `input` should be a `PhoneNumber` instance. Otherwise, it should be an object of shape `{ phone: '...', country: '...' }`.\r\n * @param {object} [options]\r\n * @param {object} metadata\r\n * @return {string}\r\n */\n\n metadata.selectNumberingPlan(input.country, input.countryCallingCode); // By default, countries only have type regexps when it's required for\n // distinguishing different countries having the same `countryCallingCode`.\n\n if (metadata.hasTypes()) {\n return getNumberType(input, options, metadata.metadata) !== undefined;\n } // If there are no type regexps for this country in metadata then use\n // `nationalNumberPattern` as a \"better than nothing\" replacement.\n\n\n var nationalNumber = options.v2 ? input.nationalNumber : input.phone;\n return matchesEntirely(nationalNumber, metadata.nationalNumberPattern());\n}\n//# sourceMappingURL=isValid.js.map","import Metadata from '../metadata.js';\n/**\r\n * Returns a list of countries that the phone number could potentially belong to.\r\n * @param {string} callingCode — Calling code.\r\n * @param {string} nationalNumber — National (significant) number.\r\n * @param {object} metadata — Metadata.\r\n * @return {string[]} A list of possible countries.\r\n */\n\nexport default function getPossibleCountriesForNumber(callingCode, nationalNumber, metadata) {\n var _metadata = new Metadata(metadata);\n\n var possibleCountries = _metadata.getCountryCodesForCallingCode(callingCode);\n\n if (!possibleCountries) {\n return [];\n }\n\n return possibleCountries.filter(function (country) {\n return couldNationalNumberBelongToCountry(nationalNumber, country, metadata);\n });\n}\n\nfunction couldNationalNumberBelongToCountry(nationalNumber, country, metadata) {\n var _metadata = new Metadata(metadata);\n\n _metadata.selectNumberingPlan(country);\n\n if (_metadata.numberingPlan.possibleLengths().indexOf(nationalNumber.length) >= 0) {\n return true;\n }\n\n return false;\n}\n//# sourceMappingURL=getPossibleCountriesForNumber.js.map","import { VALID_PUNCTUATION } from '../constants.js'; // Removes brackets and replaces dashes with spaces.\n//\n// E.g. \"(999) 111-22-33\" -> \"999 111 22 33\"\n//\n// For some reason Google's metadata contains ``s with brackets and dashes.\n// Meanwhile, there's no single opinion about using punctuation in international phone numbers.\n//\n// For example, Google's `` for USA is `+1 213-373-4253`.\n// And here's a quote from WikiPedia's \"North American Numbering Plan\" page:\n// https://en.wikipedia.org/wiki/North_American_Numbering_Plan\n//\n// \"The country calling code for all countries participating in the NANP is 1.\n// In international format, an NANP number should be listed as +1 301 555 01 00,\n// where 301 is an area code (Maryland).\"\n//\n// I personally prefer the international format without any punctuation.\n// For example, brackets are remnants of the old age, meaning that the\n// phone number part in brackets (so called \"area code\") can be omitted\n// if dialing within the same \"area\".\n// And hyphens were clearly introduced for splitting local numbers into memorizable groups.\n// For example, remembering \"5553535\" is difficult but \"555-35-35\" is much simpler.\n// Imagine a man taking a bus from home to work and seeing an ad with a phone number.\n// He has a couple of seconds to memorize that number until it passes by.\n// If it were spaces instead of hyphens the man wouldn't necessarily get it,\n// but with hyphens instead of spaces the grouping is more explicit.\n// I personally think that hyphens introduce visual clutter,\n// so I prefer replacing them with spaces in international numbers.\n// In the modern age all output is done on displays where spaces are clearly distinguishable\n// so hyphens can be safely replaced with spaces without losing any legibility.\n//\n\nexport default function applyInternationalSeparatorStyle(formattedNumber) {\n return formattedNumber.replace(new RegExp(\"[\".concat(VALID_PUNCTUATION, \"]+\"), 'g'), ' ').trim();\n}\n//# sourceMappingURL=applyInternationalSeparatorStyle.js.map","import applyInternationalSeparatorStyle from './applyInternationalSeparatorStyle.js'; // This was originally set to $1 but there are some countries for which the\n// first group is not used in the national pattern (e.g. Argentina) so the $1\n// group does not match correctly. Therefore, we use `\\d`, so that the first\n// group actually used in the pattern will be matched.\n\nexport var FIRST_GROUP_PATTERN = /(\\$\\d)/;\nexport default function formatNationalNumberUsingFormat(number, format, _ref) {\n var useInternationalFormat = _ref.useInternationalFormat,\n withNationalPrefix = _ref.withNationalPrefix,\n carrierCode = _ref.carrierCode,\n metadata = _ref.metadata;\n var formattedNumber = number.replace(new RegExp(format.pattern()), useInternationalFormat ? format.internationalFormat() : // This library doesn't use `domestic_carrier_code_formatting_rule`,\n // because that one is only used when formatting phone numbers\n // for dialing from a mobile phone, and this is not a dialing library.\n // carrierCode && format.domesticCarrierCodeFormattingRule()\n // \t// First, replace the $CC in the formatting rule with the desired carrier code.\n // \t// Then, replace the $FG in the formatting rule with the first group\n // \t// and the carrier code combined in the appropriate way.\n // \t? format.format().replace(FIRST_GROUP_PATTERN, format.domesticCarrierCodeFormattingRule().replace('$CC', carrierCode))\n // \t: (\n // \t\twithNationalPrefix && format.nationalPrefixFormattingRule()\n // \t\t\t? format.format().replace(FIRST_GROUP_PATTERN, format.nationalPrefixFormattingRule())\n // \t\t\t: format.format()\n // \t)\n withNationalPrefix && format.nationalPrefixFormattingRule() ? format.format().replace(FIRST_GROUP_PATTERN, format.nationalPrefixFormattingRule()) : format.format());\n\n if (useInternationalFormat) {\n return applyInternationalSeparatorStyle(formattedNumber);\n }\n\n return formattedNumber;\n}\n//# sourceMappingURL=formatNationalNumberUsingFormat.js.map","import Metadata from '../metadata.js';\n/**\r\n * Pattern that makes it easy to distinguish whether a region has a single\r\n * international dialing prefix or not. If a region has a single international\r\n * prefix (e.g. 011 in USA), it will be represented as a string that contains\r\n * a sequence of ASCII digits, and possibly a tilde, which signals waiting for\r\n * the tone. If there are multiple available international prefixes in a\r\n * region, they will be represented as a regex string that always contains one\r\n * or more characters that are not ASCII digits or a tilde.\r\n */\n\nvar SINGLE_IDD_PREFIX_REG_EXP = /^[\\d]+(?:[~\\u2053\\u223C\\uFF5E][\\d]+)?$/; // For regions that have multiple IDD prefixes\n// a preferred IDD prefix is returned.\n\nexport default function getIddPrefix(country, callingCode, metadata) {\n var countryMetadata = new Metadata(metadata);\n countryMetadata.selectNumberingPlan(country, callingCode);\n\n if (countryMetadata.defaultIDDPrefix()) {\n return countryMetadata.defaultIDDPrefix();\n }\n\n if (SINGLE_IDD_PREFIX_REG_EXP.test(countryMetadata.IDDPrefix())) {\n return countryMetadata.IDDPrefix();\n }\n}\n//# sourceMappingURL=getIddPrefix.js.map","function _slicedToArray(arr, i) { return _arrayWithHoles(arr) || _iterableToArrayLimit(arr, i) || _unsupportedIterableToArray(arr, i) || _nonIterableRest(); }\n\nfunction _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.\"); }\n\nfunction _iterableToArrayLimit(arr, i) { var _i = arr == null ? null : typeof Symbol !== \"undefined\" && arr[Symbol.iterator] || arr[\"@@iterator\"]; if (_i == null) return; var _arr = []; var _n = true; var _d = false; var _s, _e; try { for (_i = _i.call(arr); !(_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; }\n\nfunction _arrayWithHoles(arr) { if (Array.isArray(arr)) return arr; }\n\nfunction _createForOfIteratorHelperLoose(o, allowArrayLike) { var it = typeof Symbol !== \"undefined\" && o[Symbol.iterator] || o[\"@@iterator\"]; if (it) return (it = it.call(o)).next.bind(it); if (Array.isArray(o) || (it = _unsupportedIterableToArray(o)) || allowArrayLike && o && typeof o.length === \"number\") { if (it) o = it; var i = 0; return function () { if (i >= o.length) return { done: true }; return { done: false, value: o[i++] }; }; } throw new TypeError(\"Invalid attempt to iterate non-iterable instance.\\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method.\"); }\n\nfunction _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); }\n\nfunction _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; }\n\nimport isViablePhoneNumber from './isViablePhoneNumber.js'; // https://www.ietf.org/rfc/rfc3966.txt\n\n/**\r\n * @param {string} text - Phone URI (RFC 3966).\r\n * @return {object} `{ ?number, ?ext }`.\r\n */\n\nexport function parseRFC3966(text) {\n var number;\n var ext; // Replace \"tel:\" with \"tel=\" for parsing convenience.\n\n text = text.replace(/^tel:/, 'tel=');\n\n for (var _iterator = _createForOfIteratorHelperLoose(text.split(';')), _step; !(_step = _iterator()).done;) {\n var part = _step.value;\n\n var _part$split = part.split('='),\n _part$split2 = _slicedToArray(_part$split, 2),\n name = _part$split2[0],\n value = _part$split2[1];\n\n switch (name) {\n case 'tel':\n number = value;\n break;\n\n case 'ext':\n ext = value;\n break;\n\n case 'phone-context':\n // Only \"country contexts\" are supported.\n // \"Domain contexts\" are ignored.\n if (value[0] === '+') {\n number = value + number;\n }\n\n break;\n }\n } // If the phone number is not viable, then abort.\n\n\n if (!isViablePhoneNumber(number)) {\n return {};\n }\n\n var result = {\n number: number\n };\n\n if (ext) {\n result.ext = ext;\n }\n\n return result;\n}\n/**\r\n * @param {object} - `{ ?number, ?extension }`.\r\n * @return {string} Phone URI (RFC 3966).\r\n */\n\nexport function formatRFC3966(_ref) {\n var number = _ref.number,\n ext = _ref.ext;\n\n if (!number) {\n return '';\n }\n\n if (number[0] !== '+') {\n throw new Error(\"\\\"formatRFC3966()\\\" expects \\\"number\\\" to be in E.164 format.\");\n }\n\n return \"tel:\".concat(number).concat(ext ? ';ext=' + ext : '');\n}\n//# sourceMappingURL=RFC3966.js.map","function _createForOfIteratorHelperLoose(o, allowArrayLike) { var it = typeof Symbol !== \"undefined\" && o[Symbol.iterator] || o[\"@@iterator\"]; if (it) return (it = it.call(o)).next.bind(it); if (Array.isArray(o) || (it = _unsupportedIterableToArray(o)) || allowArrayLike && o && typeof o.length === \"number\") { if (it) o = it; var i = 0; return function () { if (i >= o.length) return { done: true }; return { done: false, value: o[i++] }; }; } throw new TypeError(\"Invalid attempt to iterate non-iterable instance.\\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method.\"); }\n\nfunction _unsupportedIterableToArray(o, minLen) { if (!o) return; if (typeof o === \"string\") return _arrayLikeToArray(o, minLen); var n = Object.prototype.toString.call(o).slice(8, -1); if (n === \"Object\" && o.constructor) n = o.constructor.name; if (n === \"Map\" || n === \"Set\") return Array.from(o); if (n === \"Arguments\" || /^(?:Ui|I)nt(?:8|16|32)(?:Clamped)?Array$/.test(n)) return _arrayLikeToArray(o, minLen); }\n\nfunction _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; }\n\nfunction ownKeys(object, enumerableOnly) { var keys = Object.keys(object); if (Object.getOwnPropertySymbols) { var symbols = Object.getOwnPropertySymbols(object); enumerableOnly && (symbols = symbols.filter(function (sym) { return Object.getOwnPropertyDescriptor(object, sym).enumerable; })), keys.push.apply(keys, symbols); } return keys; }\n\nfunction _objectSpread(target) { for (var i = 1; i < arguments.length; i++) { var source = null != arguments[i] ? arguments[i] : {}; i % 2 ? ownKeys(Object(source), !0).forEach(function (key) { _defineProperty(target, key, source[key]); }) : Object.getOwnPropertyDescriptors ? Object.defineProperties(target, Object.getOwnPropertyDescriptors(source)) : ownKeys(Object(source)).forEach(function (key) { Object.defineProperty(target, key, Object.getOwnPropertyDescriptor(source, key)); }); } return target; }\n\nfunction _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; }\n\n// This is a port of Google Android `libphonenumber`'s\n// `phonenumberutil.js` of December 31th, 2018.\n//\n// https://github.com/googlei18n/libphonenumber/commits/master/javascript/i18n/phonenumbers/phonenumberutil.js\nimport matchesEntirely from './helpers/matchesEntirely.js';\nimport formatNationalNumberUsingFormat from './helpers/formatNationalNumberUsingFormat.js';\nimport Metadata, { getCountryCallingCode } from './metadata.js';\nimport getIddPrefix from './helpers/getIddPrefix.js';\nimport { formatRFC3966 } from './helpers/RFC3966.js';\nvar DEFAULT_OPTIONS = {\n formatExtension: function formatExtension(formattedNumber, extension, metadata) {\n return \"\".concat(formattedNumber).concat(metadata.ext()).concat(extension);\n }\n};\n/**\r\n * Formats a phone number.\r\n *\r\n * format(phoneNumberInstance, 'INTERNATIONAL', { ..., v2: true }, metadata)\r\n * format(phoneNumberInstance, 'NATIONAL', { ..., v2: true }, metadata)\r\n *\r\n * format({ phone: '8005553535', country: 'RU' }, 'INTERNATIONAL', { ... }, metadata)\r\n * format({ phone: '8005553535', country: 'RU' }, 'NATIONAL', undefined, metadata)\r\n *\r\n * @param {object|PhoneNumber} input — If `options.v2: true` flag is passed, the `input` should be a `PhoneNumber` instance. Otherwise, it should be an object of shape `{ phone: '...', country: '...' }`.\r\n * @param {string} format\r\n * @param {object} [options]\r\n * @param {object} metadata\r\n * @return {string}\r\n */\n\nexport default function formatNumber(input, format, options, metadata) {\n // Apply default options.\n if (options) {\n options = _objectSpread(_objectSpread({}, DEFAULT_OPTIONS), options);\n } else {\n options = DEFAULT_OPTIONS;\n }\n\n metadata = new Metadata(metadata);\n\n if (input.country && input.country !== '001') {\n // Validate `input.country`.\n if (!metadata.hasCountry(input.country)) {\n throw new Error(\"Unknown country: \".concat(input.country));\n }\n\n metadata.country(input.country);\n } else if (input.countryCallingCode) {\n metadata.selectNumberingPlan(input.countryCallingCode);\n } else return input.phone || '';\n\n var countryCallingCode = metadata.countryCallingCode();\n var nationalNumber = options.v2 ? input.nationalNumber : input.phone; // This variable should have been declared inside `case`s\n // but Babel has a bug and it says \"duplicate variable declaration\".\n\n var number;\n\n switch (format) {\n case 'NATIONAL':\n // Legacy argument support.\n // (`{ country: ..., phone: '' }`)\n if (!nationalNumber) {\n return '';\n }\n\n number = formatNationalNumber(nationalNumber, input.carrierCode, 'NATIONAL', metadata, options);\n return addExtension(number, input.ext, metadata, options.formatExtension);\n\n case 'INTERNATIONAL':\n // Legacy argument support.\n // (`{ country: ..., phone: '' }`)\n if (!nationalNumber) {\n return \"+\".concat(countryCallingCode);\n }\n\n number = formatNationalNumber(nationalNumber, null, 'INTERNATIONAL', metadata, options);\n number = \"+\".concat(countryCallingCode, \" \").concat(number);\n return addExtension(number, input.ext, metadata, options.formatExtension);\n\n case 'E.164':\n // `E.164` doesn't define \"phone number extensions\".\n return \"+\".concat(countryCallingCode).concat(nationalNumber);\n\n case 'RFC3966':\n return formatRFC3966({\n number: \"+\".concat(countryCallingCode).concat(nationalNumber),\n ext: input.ext\n });\n // For reference, here's Google's IDD formatter:\n // https://github.com/google/libphonenumber/blob/32719cf74e68796788d1ca45abc85dcdc63ba5b9/java/libphonenumber/src/com/google/i18n/phonenumbers/PhoneNumberUtil.java#L1546\n // Not saying that this IDD formatter replicates it 1:1, but it seems to work.\n // Who would even need to format phone numbers in IDD format anyway?\n\n case 'IDD':\n if (!options.fromCountry) {\n return; // throw new Error('`fromCountry` option not passed for IDD-prefixed formatting.')\n }\n\n var formattedNumber = formatIDD(nationalNumber, input.carrierCode, countryCallingCode, options.fromCountry, metadata);\n return addExtension(formattedNumber, input.ext, metadata, options.formatExtension);\n\n default:\n throw new Error(\"Unknown \\\"format\\\" argument passed to \\\"formatNumber()\\\": \\\"\".concat(format, \"\\\"\"));\n }\n}\n\nfunction formatNationalNumber(number, carrierCode, formatAs, metadata, options) {\n var format = chooseFormatForNumber(metadata.formats(), number);\n\n if (!format) {\n return number;\n }\n\n return formatNationalNumberUsingFormat(number, format, {\n useInternationalFormat: formatAs === 'INTERNATIONAL',\n withNationalPrefix: format.nationalPrefixIsOptionalWhenFormattingInNationalFormat() && options && options.nationalPrefix === false ? false : true,\n carrierCode: carrierCode,\n metadata: metadata\n });\n}\n\nexport function chooseFormatForNumber(availableFormats, nationalNnumber) {\n for (var _iterator = _createForOfIteratorHelperLoose(availableFormats), _step; !(_step = _iterator()).done;) {\n var format = _step.value;\n\n // Validate leading digits.\n // The test case for \"else path\" could be found by searching for\n // \"format.leadingDigitsPatterns().length === 0\".\n if (format.leadingDigitsPatterns().length > 0) {\n // The last leading_digits_pattern is used here, as it is the most detailed\n var lastLeadingDigitsPattern = format.leadingDigitsPatterns()[format.leadingDigitsPatterns().length - 1]; // If leading digits don't match then move on to the next phone number format\n\n if (nationalNnumber.search(lastLeadingDigitsPattern) !== 0) {\n continue;\n }\n } // Check that the national number matches the phone number format regular expression\n\n\n if (matchesEntirely(nationalNnumber, format.pattern())) {\n return format;\n }\n }\n}\n\nfunction addExtension(formattedNumber, ext, metadata, formatExtension) {\n return ext ? formatExtension(formattedNumber, ext, metadata) : formattedNumber;\n}\n\nfunction formatIDD(nationalNumber, carrierCode, countryCallingCode, fromCountry, metadata) {\n var fromCountryCallingCode = getCountryCallingCode(fromCountry, metadata.metadata); // When calling within the same country calling code.\n\n if (fromCountryCallingCode === countryCallingCode) {\n var formattedNumber = formatNationalNumber(nationalNumber, carrierCode, 'NATIONAL', metadata); // For NANPA regions, return the national format for these regions\n // but prefix it with the country calling code.\n\n if (countryCallingCode === '1') {\n return countryCallingCode + ' ' + formattedNumber;\n } // If regions share a country calling code, the country calling code need\n // not be dialled. This also applies when dialling within a region, so this\n // if clause covers both these cases. Technically this is the case for\n // dialling from La Reunion to other overseas departments of France (French\n // Guiana, Martinique, Guadeloupe), but not vice versa - so we don't cover\n // this edge case for now and for those cases return the version including\n // country calling code. Details here:\n // http://www.petitfute.com/voyage/225-info-pratiques-reunion\n //\n\n\n return formattedNumber;\n }\n\n var iddPrefix = getIddPrefix(fromCountry, undefined, metadata.metadata);\n\n if (iddPrefix) {\n return \"\".concat(iddPrefix, \" \").concat(countryCallingCode, \" \").concat(formatNationalNumber(nationalNumber, null, 'INTERNATIONAL', metadata));\n }\n}\n//# sourceMappingURL=format.js.map","function ownKeys(object, enumerableOnly) { var keys = Object.keys(object); if (Object.getOwnPropertySymbols) { var symbols = Object.getOwnPropertySymbols(object); enumerableOnly && (symbols = symbols.filter(function (sym) { return Object.getOwnPropertyDescriptor(object, sym).enumerable; })), keys.push.apply(keys, symbols); } return keys; }\n\nfunction _objectSpread(target) { for (var i = 1; i < arguments.length; i++) { var source = null != arguments[i] ? arguments[i] : {}; i % 2 ? ownKeys(Object(source), !0).forEach(function (key) { _defineProperty(target, key, source[key]); }) : Object.getOwnPropertyDescriptors ? Object.defineProperties(target, Object.getOwnPropertyDescriptors(source)) : ownKeys(Object(source)).forEach(function (key) { Object.defineProperty(target, key, Object.getOwnPropertyDescriptor(source, key)); }); } return target; }\n\nfunction _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; }\n\nfunction _classCallCheck(instance, Constructor) { if (!(instance instanceof Constructor)) { throw new TypeError(\"Cannot call a class as a function\"); } }\n\nfunction _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); } }\n\nfunction _createClass(Constructor, protoProps, staticProps) { if (protoProps) _defineProperties(Constructor.prototype, protoProps); if (staticProps) _defineProperties(Constructor, staticProps); Object.defineProperty(Constructor, \"prototype\", { writable: false }); return Constructor; }\n\nimport Metadata from './metadata.js';\nimport isPossibleNumber from './isPossible.js';\nimport isValidNumber from './isValid.js'; // import checkNumberLength from './helpers/checkNumberLength.js'\n\nimport getNumberType from './helpers/getNumberType.js';\nimport getPossibleCountriesForNumber from './helpers/getPossibleCountriesForNumber.js';\nimport formatNumber from './format.js';\nvar USE_NON_GEOGRAPHIC_COUNTRY_CODE = false;\n\nvar PhoneNumber = /*#__PURE__*/function () {\n /**\r\n * @param {string} countryOrCountryCallingCode\r\n * @param {string} nationalNumber\r\n * @param {object} metadata — Metadata JSON\r\n * @return {PhoneNumber}\r\n */\n function PhoneNumber(countryOrCountryCallingCode, nationalNumber, metadata) {\n _classCallCheck(this, PhoneNumber);\n\n if (!countryOrCountryCallingCode) {\n throw new TypeError('`country` or `countryCallingCode` not passed');\n }\n\n if (!nationalNumber) {\n throw new TypeError('`nationalNumber` not passed');\n }\n\n if (!metadata) {\n throw new TypeError('`metadata` not passed');\n }\n\n var _getCountryAndCountry = getCountryAndCountryCallingCode(countryOrCountryCallingCode, metadata),\n country = _getCountryAndCountry.country,\n countryCallingCode = _getCountryAndCountry.countryCallingCode;\n\n this.country = country;\n this.countryCallingCode = countryCallingCode;\n this.nationalNumber = nationalNumber;\n this.number = '+' + this.countryCallingCode + this.nationalNumber; // Exclude `metadata` property output from `PhoneNumber.toString()`\n // so that it doesn't clutter the console output of Node.js.\n // Previously, when Node.js did `console.log(new PhoneNumber(...))`,\n // it would output the whole internal structure of the `metadata` object.\n\n this.getMetadata = function () {\n return metadata;\n };\n }\n\n _createClass(PhoneNumber, [{\n key: \"setExt\",\n value: function setExt(ext) {\n this.ext = ext;\n }\n }, {\n key: \"getPossibleCountries\",\n value: function getPossibleCountries() {\n if (this.country) {\n return [this.country];\n }\n\n return getPossibleCountriesForNumber(this.countryCallingCode, this.nationalNumber, this.getMetadata());\n }\n }, {\n key: \"isPossible\",\n value: function isPossible() {\n return isPossibleNumber(this, {\n v2: true\n }, this.getMetadata());\n }\n }, {\n key: \"isValid\",\n value: function isValid() {\n return isValidNumber(this, {\n v2: true\n }, this.getMetadata());\n }\n }, {\n key: \"isNonGeographic\",\n value: function isNonGeographic() {\n var metadata = new Metadata(this.getMetadata());\n return metadata.isNonGeographicCallingCode(this.countryCallingCode);\n }\n }, {\n key: \"isEqual\",\n value: function isEqual(phoneNumber) {\n return this.number === phoneNumber.number && this.ext === phoneNumber.ext;\n } // This function was originally meant to be an equivalent for `validatePhoneNumberLength()`,\n // but later it was found out that it doesn't include the possible `TOO_SHORT` result\n // returned from `parsePhoneNumberWithError()` in the original `validatePhoneNumberLength()`,\n // so eventually I simply commented out this method from the `PhoneNumber` class\n // and just left the `validatePhoneNumberLength()` function, even though that one would require\n // and additional step to also validate the actual country / calling code of the phone number.\n // validateLength() {\n // \tconst metadata = new Metadata(this.getMetadata())\n // \tmetadata.selectNumberingPlan(this.countryCallingCode)\n // \tconst result = checkNumberLength(this.nationalNumber, metadata)\n // \tif (result !== 'IS_POSSIBLE') {\n // \t\treturn result\n // \t}\n // }\n\n }, {\n key: \"getType\",\n value: function getType() {\n return getNumberType(this, {\n v2: true\n }, this.getMetadata());\n }\n }, {\n key: \"format\",\n value: function format(_format, options) {\n return formatNumber(this, _format, options ? _objectSpread(_objectSpread({}, options), {}, {\n v2: true\n }) : {\n v2: true\n }, this.getMetadata());\n }\n }, {\n key: \"formatNational\",\n value: function formatNational(options) {\n return this.format('NATIONAL', options);\n }\n }, {\n key: \"formatInternational\",\n value: function formatInternational(options) {\n return this.format('INTERNATIONAL', options);\n }\n }, {\n key: \"getURI\",\n value: function getURI(options) {\n return this.format('RFC3966', options);\n }\n }]);\n\n return PhoneNumber;\n}();\n\nexport { PhoneNumber as default };\n\nvar isCountryCode = function isCountryCode(value) {\n return /^[A-Z]{2}$/.test(value);\n};\n\nfunction getCountryAndCountryCallingCode(countryOrCountryCallingCode, metadataJson) {\n var country;\n var countryCallingCode;\n var metadata = new Metadata(metadataJson); // If country code is passed then derive `countryCallingCode` from it.\n // Also store the country code as `.country`.\n\n if (isCountryCode(countryOrCountryCallingCode)) {\n country = countryOrCountryCallingCode;\n metadata.selectNumberingPlan(country);\n countryCallingCode = metadata.countryCallingCode();\n } else {\n countryCallingCode = countryOrCountryCallingCode;\n /* istanbul ignore if */\n\n if (USE_NON_GEOGRAPHIC_COUNTRY_CODE) {\n if (metadata.isNonGeographicCallingCode(countryCallingCode)) {\n country = '001';\n }\n }\n }\n\n return {\n country: country,\n countryCallingCode: countryCallingCode\n };\n}\n//# sourceMappingURL=PhoneNumber.js.map","import Metadata from '../metadata.js';\nimport { VALID_DIGITS } from '../constants.js';\nvar CAPTURING_DIGIT_PATTERN = new RegExp('([' + VALID_DIGITS + '])');\nexport default function stripIddPrefix(number, country, callingCode, metadata) {\n if (!country) {\n return;\n } // Check if the number is IDD-prefixed.\n\n\n var countryMetadata = new Metadata(metadata);\n countryMetadata.selectNumberingPlan(country, callingCode);\n var IDDPrefixPattern = new RegExp(countryMetadata.IDDPrefix());\n\n if (number.search(IDDPrefixPattern) !== 0) {\n return;\n } // Strip IDD prefix.\n\n\n number = number.slice(number.match(IDDPrefixPattern)[0].length); // If there're any digits after an IDD prefix,\n // then those digits are a country calling code.\n // Since no country code starts with a `0`,\n // the code below validates that the next digit (if present) is not `0`.\n\n var matchedGroups = number.match(CAPTURING_DIGIT_PATTERN);\n\n if (matchedGroups && matchedGroups[1] != null && matchedGroups[1].length > 0) {\n if (matchedGroups[1] === '0') {\n return;\n }\n }\n\n return number;\n}\n//# sourceMappingURL=stripIddPrefix.js.map","/**\r\n * Strips any national prefix (such as 0, 1) present in a\r\n * (possibly incomplete) number provided.\r\n * \"Carrier codes\" are only used in Colombia and Brazil,\r\n * and only when dialing within those countries from a mobile phone to a fixed line number.\r\n * Sometimes it won't actually strip national prefix\r\n * and will instead prepend some digits to the `number`:\r\n * for example, when number `2345678` is passed with `VI` country selected,\r\n * it will return `{ number: \"3402345678\" }`, because `340` area code is prepended.\r\n * @param {string} number — National number digits.\r\n * @param {object} metadata — Metadata with country selected.\r\n * @return {object} `{ nationalNumber: string, nationalPrefix: string? carrierCode: string? }`. Even if a national prefix was extracted, it's not necessarily present in the returned object, so don't rely on its presence in the returned object in order to find out whether a national prefix has been extracted or not.\r\n */\nexport default function extractNationalNumberFromPossiblyIncompleteNumber(number, metadata) {\n if (number && metadata.numberingPlan.nationalPrefixForParsing()) {\n // See METADATA.md for the description of\n // `national_prefix_for_parsing` and `national_prefix_transform_rule`.\n // Attempt to parse the first digits as a national prefix.\n var prefixPattern = new RegExp('^(?:' + metadata.numberingPlan.nationalPrefixForParsing() + ')');\n var prefixMatch = prefixPattern.exec(number);\n\n if (prefixMatch) {\n var nationalNumber;\n var carrierCode; // https://gitlab.com/catamphetamine/libphonenumber-js/-/blob/master/METADATA.md#national_prefix_for_parsing--national_prefix_transform_rule\n // If a `national_prefix_for_parsing` has any \"capturing groups\"\n // then it means that the national (significant) number is equal to\n // those \"capturing groups\" transformed via `national_prefix_transform_rule`,\n // and nothing could be said about the actual national prefix:\n // what is it and was it even there.\n // If a `national_prefix_for_parsing` doesn't have any \"capturing groups\",\n // then everything it matches is a national prefix.\n // To determine whether `national_prefix_for_parsing` matched any\n // \"capturing groups\", the value of the result of calling `.exec()`\n // is looked at, and if it has non-undefined values where there're\n // \"capturing groups\" in the regular expression, then it means\n // that \"capturing groups\" have been matched.\n // It's not possible to tell whether there'll be any \"capturing gropus\"\n // before the matching process, because a `national_prefix_for_parsing`\n // could exhibit both behaviors.\n\n var capturedGroupsCount = prefixMatch.length - 1;\n var hasCapturedGroups = capturedGroupsCount > 0 && prefixMatch[capturedGroupsCount];\n\n if (metadata.nationalPrefixTransformRule() && hasCapturedGroups) {\n nationalNumber = number.replace(prefixPattern, metadata.nationalPrefixTransformRule()); // If there's more than one captured group,\n // then carrier code is the second one.\n\n if (capturedGroupsCount > 1) {\n carrierCode = prefixMatch[1];\n }\n } // If there're no \"capturing groups\",\n // or if there're \"capturing groups\" but no\n // `national_prefix_transform_rule`,\n // then just strip the national prefix from the number,\n // and possibly a carrier code.\n // Seems like there could be more.\n else {\n // `prefixBeforeNationalNumber` is the whole substring matched by\n // the `national_prefix_for_parsing` regular expression.\n // There seem to be no guarantees that it's just a national prefix.\n // For example, if there's a carrier code, it's gonna be a\n // part of `prefixBeforeNationalNumber` too.\n var prefixBeforeNationalNumber = prefixMatch[0];\n nationalNumber = number.slice(prefixBeforeNationalNumber.length); // If there's at least one captured group,\n // then carrier code is the first one.\n\n if (hasCapturedGroups) {\n carrierCode = prefixMatch[1];\n }\n } // Tries to guess whether a national prefix was present in the input.\n // This is not something copy-pasted from Google's library:\n // they don't seem to have an equivalent for that.\n // So this isn't an \"officially approved\" way of doing something like that.\n // But since there seems no other existing method, this library uses it.\n\n\n var nationalPrefix;\n\n if (hasCapturedGroups) {\n var possiblePositionOfTheFirstCapturedGroup = number.indexOf(prefixMatch[1]);\n var possibleNationalPrefix = number.slice(0, possiblePositionOfTheFirstCapturedGroup); // Example: an Argentinian (AR) phone number `0111523456789`.\n // `prefixMatch[0]` is `01115`, and `$1` is `11`,\n // and the rest of the phone number is `23456789`.\n // The national number is transformed via `9$1` to `91123456789`.\n // National prefix `0` is detected being present at the start.\n // if (possibleNationalPrefix.indexOf(metadata.numberingPlan.nationalPrefix()) === 0) {\n\n if (possibleNationalPrefix === metadata.numberingPlan.nationalPrefix()) {\n nationalPrefix = metadata.numberingPlan.nationalPrefix();\n }\n } else {\n nationalPrefix = prefixMatch[0];\n }\n\n return {\n nationalNumber: nationalNumber,\n nationalPrefix: nationalPrefix,\n carrierCode: carrierCode\n };\n }\n }\n\n return {\n nationalNumber: number\n };\n}\n//# sourceMappingURL=extractNationalNumberFromPossiblyIncompleteNumber.js.map","import extractNationalNumberFromPossiblyIncompleteNumber from './extractNationalNumberFromPossiblyIncompleteNumber.js';\nimport matchesEntirely from './matchesEntirely.js';\nimport checkNumberLength from './checkNumberLength.js';\n/**\r\n * Strips national prefix and carrier code from a complete phone number.\r\n * The difference from the non-\"FromCompleteNumber\" function is that\r\n * it won't extract national prefix if the resultant number is too short\r\n * to be a complete number for the selected phone numbering plan.\r\n * @param {string} number — Complete phone number digits.\r\n * @param {Metadata} metadata — Metadata with a phone numbering plan selected.\r\n * @return {object} `{ nationalNumber: string, carrierCode: string? }`.\r\n */\n\nexport default function extractNationalNumber(number, metadata) {\n // Parsing national prefixes and carrier codes\n // is only required for local phone numbers\n // but some people don't understand that\n // and sometimes write international phone numbers\n // with national prefixes (or maybe even carrier codes).\n // http://ucken.blogspot.ru/2016/03/trunk-prefixes-in-skype4b.html\n // Google's original library forgives such mistakes\n // and so does this library, because it has been requested:\n // https://github.com/catamphetamine/libphonenumber-js/issues/127\n var _extractNationalNumbe = extractNationalNumberFromPossiblyIncompleteNumber(number, metadata),\n carrierCode = _extractNationalNumbe.carrierCode,\n nationalNumber = _extractNationalNumbe.nationalNumber;\n\n if (nationalNumber !== number) {\n if (!shouldHaveExtractedNationalPrefix(number, nationalNumber, metadata)) {\n // Don't strip the national prefix.\n return {\n nationalNumber: number\n };\n } // Check the national (significant) number length after extracting national prefix and carrier code.\n // Legacy generated metadata (before `1.0.18`) didn't support the \"possible lengths\" feature.\n\n\n if (metadata.possibleLengths()) {\n // The number remaining after stripping the national prefix and carrier code\n // should be long enough to have a possible length for the country.\n // Otherwise, don't strip the national prefix and carrier code,\n // since the original number could be a valid number.\n // This check has been copy-pasted \"as is\" from Google's original library:\n // https://github.com/google/libphonenumber/blob/876268eb1ad6cdc1b7b5bef17fc5e43052702d57/java/libphonenumber/src/com/google/i18n/phonenumbers/PhoneNumberUtil.java#L3236-L3250\n // It doesn't check for the \"possibility\" of the original `number`.\n // I guess it's fine not checking that one. It works as is anyway.\n if (!isPossibleIncompleteNationalNumber(nationalNumber, metadata)) {\n // Don't strip the national prefix.\n return {\n nationalNumber: number\n };\n }\n }\n }\n\n return {\n nationalNumber: nationalNumber,\n carrierCode: carrierCode\n };\n} // In some countries, the same digit could be a national prefix\n// or a leading digit of a valid phone number.\n// For example, in Russia, national prefix is `8`,\n// and also `800 555 35 35` is a valid number\n// in which `8` is not a national prefix, but the first digit\n// of a national (significant) number.\n// Same's with Belarus:\n// `82004910060` is a valid national (significant) number,\n// but `2004910060` is not.\n// To support such cases (to prevent the code from always stripping\n// national prefix), a condition is imposed: a national prefix\n// is not extracted when the original number is \"viable\" and the\n// resultant number is not, a \"viable\" national number being the one\n// that matches `national_number_pattern`.\n\nfunction shouldHaveExtractedNationalPrefix(nationalNumberBefore, nationalNumberAfter, metadata) {\n // The equivalent in Google's code is:\n // https://github.com/google/libphonenumber/blob/e326fa1fc4283bb05eb35cb3c15c18f98a31af33/java/libphonenumber/src/com/google/i18n/phonenumbers/PhoneNumberUtil.java#L2969-L3004\n if (matchesEntirely(nationalNumberBefore, metadata.nationalNumberPattern()) && !matchesEntirely(nationalNumberAfter, metadata.nationalNumberPattern())) {\n return false;\n } // This \"is possible\" national number (length) check has been commented out\n // because it's superceded by the (effectively) same check done in the\n // `extractNationalNumber()` function after it calls `shouldHaveExtractedNationalPrefix()`.\n // In other words, why run the same check twice if it could only be run once.\n // // Check the national (significant) number length after extracting national prefix and carrier code.\n // // Fixes a minor \"weird behavior\" bug: https://gitlab.com/catamphetamine/libphonenumber-js/-/issues/57\n // // (Legacy generated metadata (before `1.0.18`) didn't support the \"possible lengths\" feature).\n // if (metadata.possibleLengths()) {\n // \tif (isPossibleIncompleteNationalNumber(nationalNumberBefore, metadata) &&\n // \t\t!isPossibleIncompleteNationalNumber(nationalNumberAfter, metadata)) {\n // \t\treturn false\n // \t}\n // }\n\n\n return true;\n}\n\nfunction isPossibleIncompleteNationalNumber(nationalNumber, metadata) {\n switch (checkNumberLength(nationalNumber, metadata)) {\n case 'TOO_SHORT':\n case 'INVALID_LENGTH':\n // This library ignores \"local-only\" phone numbers (for simplicity).\n // See the readme for more info on what are \"local-only\" phone numbers.\n // case 'IS_POSSIBLE_LOCAL_ONLY':\n return false;\n\n default:\n return true;\n }\n}\n//# sourceMappingURL=extractNationalNumber.js.map","import Metadata from '../metadata.js';\nimport matchesEntirely from './matchesEntirely.js';\nimport extractNationalNumber from './extractNationalNumber.js';\nimport checkNumberLength from './checkNumberLength.js';\nimport getCountryCallingCode from '../getCountryCallingCode.js';\n/**\r\n * Sometimes some people incorrectly input international phone numbers\r\n * without the leading `+`. This function corrects such input.\r\n * @param {string} number — Phone number digits.\r\n * @param {string?} country\r\n * @param {string?} callingCode\r\n * @param {object} metadata\r\n * @return {object} `{ countryCallingCode: string?, number: string }`.\r\n */\n\nexport default function extractCountryCallingCodeFromInternationalNumberWithoutPlusSign(number, country, callingCode, metadata) {\n var countryCallingCode = country ? getCountryCallingCode(country, metadata) : callingCode;\n\n if (number.indexOf(countryCallingCode) === 0) {\n metadata = new Metadata(metadata);\n metadata.selectNumberingPlan(country, callingCode);\n var possibleShorterNumber = number.slice(countryCallingCode.length);\n\n var _extractNationalNumbe = extractNationalNumber(possibleShorterNumber, metadata),\n possibleShorterNationalNumber = _extractNationalNumbe.nationalNumber;\n\n var _extractNationalNumbe2 = extractNationalNumber(number, metadata),\n nationalNumber = _extractNationalNumbe2.nationalNumber; // If the number was not valid before but is valid now,\n // or if it was too long before, we consider the number\n // with the country calling code stripped to be a better result\n // and keep that instead.\n // For example, in Germany (+49), `49` is a valid area code,\n // so if a number starts with `49`, it could be both a valid\n // national German number or an international number without\n // a leading `+`.\n\n\n if (!matchesEntirely(nationalNumber, metadata.nationalNumberPattern()) && matchesEntirely(possibleShorterNationalNumber, metadata.nationalNumberPattern()) || checkNumberLength(nationalNumber, metadata) === 'TOO_LONG') {\n return {\n countryCallingCode: countryCallingCode,\n number: possibleShorterNumber\n };\n }\n }\n\n return {\n number: number\n };\n}\n//# sourceMappingURL=extractCountryCallingCodeFromInternationalNumberWithoutPlusSign.js.map","import stripIddPrefix from './stripIddPrefix.js';\nimport extractCountryCallingCodeFromInternationalNumberWithoutPlusSign from './extractCountryCallingCodeFromInternationalNumberWithoutPlusSign.js';\nimport Metadata from '../metadata.js';\nimport { MAX_LENGTH_COUNTRY_CODE } from '../constants.js';\n/**\r\n * Converts a phone number digits (possibly with a `+`)\r\n * into a calling code and the rest phone number digits.\r\n * The \"rest phone number digits\" could include\r\n * a national prefix, carrier code, and national\r\n * (significant) number.\r\n * @param {string} number — Phone number digits (possibly with a `+`).\r\n * @param {string} [country] — Default country.\r\n * @param {string} [callingCode] — Default calling code (some phone numbering plans are non-geographic).\r\n * @param {object} metadata\r\n * @return {object} `{ countryCallingCodeSource: string?, countryCallingCode: string?, number: string }`\r\n * @example\r\n * // Returns `{ countryCallingCode: \"1\", number: \"2133734253\" }`.\r\n * extractCountryCallingCode('2133734253', 'US', null, metadata)\r\n * extractCountryCallingCode('2133734253', null, '1', metadata)\r\n * extractCountryCallingCode('+12133734253', null, null, metadata)\r\n * extractCountryCallingCode('+12133734253', 'RU', null, metadata)\r\n */\n\nexport default function extractCountryCallingCode(number, country, callingCode, metadata) {\n if (!number) {\n return {};\n }\n\n var isNumberWithIddPrefix; // If this is not an international phone number,\n // then either extract an \"IDD\" prefix, or extract a\n // country calling code from a number by autocorrecting it\n // by prepending a leading `+` in cases when it starts\n // with the country calling code.\n // https://wikitravel.org/en/International_dialling_prefix\n // https://github.com/catamphetamine/libphonenumber-js/issues/376\n\n if (number[0] !== '+') {\n // Convert an \"out-of-country\" dialing phone number\n // to a proper international phone number.\n var numberWithoutIDD = stripIddPrefix(number, country, callingCode, metadata); // If an IDD prefix was stripped then\n // convert the number to international one\n // for subsequent parsing.\n\n if (numberWithoutIDD && numberWithoutIDD !== number) {\n isNumberWithIddPrefix = true;\n number = '+' + numberWithoutIDD;\n } else {\n // Check to see if the number starts with the country calling code\n // for the default country. If so, we remove the country calling code,\n // and do some checks on the validity of the number before and after.\n // https://github.com/catamphetamine/libphonenumber-js/issues/376\n if (country || callingCode) {\n var _extractCountryCallin = extractCountryCallingCodeFromInternationalNumberWithoutPlusSign(number, country, callingCode, metadata),\n countryCallingCode = _extractCountryCallin.countryCallingCode,\n shorterNumber = _extractCountryCallin.number;\n\n if (countryCallingCode) {\n return {\n countryCallingCodeSource: 'FROM_NUMBER_WITHOUT_PLUS_SIGN',\n countryCallingCode: countryCallingCode,\n number: shorterNumber\n };\n }\n }\n\n return {\n // No need to set it to `UNSPECIFIED`. It can be just `undefined`.\n // countryCallingCodeSource: 'UNSPECIFIED',\n number: number\n };\n }\n } // Fast abortion: country codes do not begin with a '0'\n\n\n if (number[1] === '0') {\n return {};\n }\n\n metadata = new Metadata(metadata); // The thing with country phone codes\n // is that they are orthogonal to each other\n // i.e. there's no such country phone code A\n // for which country phone code B exists\n // where B starts with A.\n // Therefore, while scanning digits,\n // if a valid country code is found,\n // that means that it is the country code.\n //\n\n var i = 2;\n\n while (i - 1 <= MAX_LENGTH_COUNTRY_CODE && i <= number.length) {\n var _countryCallingCode = number.slice(1, i);\n\n if (metadata.hasCallingCode(_countryCallingCode)) {\n metadata.selectNumberingPlan(_countryCallingCode);\n return {\n countryCallingCodeSource: isNumberWithIddPrefix ? 'FROM_NUMBER_WITH_IDD' : 'FROM_NUMBER_WITH_PLUS_SIGN',\n countryCallingCode: _countryCallingCode,\n number: number.slice(i)\n };\n }\n\n i++;\n }\n\n return {};\n} // The possible values for the returned `countryCallingCodeSource` are:\n//\n// Copy-pasted from:\n// https://github.com/google/libphonenumber/blob/master/resources/phonenumber.proto\n//\n// // The source from which the country_code is derived. This is not set in the\n// // general parsing method, but in the method that parses and keeps raw_input.\n// // New fields could be added upon request.\n// enum CountryCodeSource {\n// // Default value returned if this is not set, because the phone number was\n// // created using parse, not parseAndKeepRawInput. hasCountryCodeSource will\n// // return false if this is the case.\n// UNSPECIFIED = 0;\n//\n// // The country_code is derived based on a phone number with a leading \"+\",\n// // e.g. the French number \"+33 1 42 68 53 00\".\n// FROM_NUMBER_WITH_PLUS_SIGN = 1;\n//\n// // The country_code is derived based on a phone number with a leading IDD,\n// // e.g. the French number \"011 33 1 42 68 53 00\", as it is dialled from US.\n// FROM_NUMBER_WITH_IDD = 5;\n//\n// // The country_code is derived based on a phone number without a leading\n// // \"+\", e.g. the French number \"33 1 42 68 53 00\" when defaultCountry is\n// // supplied as France.\n// FROM_NUMBER_WITHOUT_PLUS_SIGN = 10;\n//\n// // The country_code is derived NOT based on the phone number itself, but\n// // from the defaultCountry parameter provided in the parsing function by the\n// // clients. This happens mostly for numbers written in the national format\n// // (without country code). For example, this would be set when parsing the\n// // French number \"01 42 68 53 00\", when defaultCountry is supplied as\n// // France.\n// FROM_DEFAULT_COUNTRY = 20;\n// }\n//# sourceMappingURL=extractCountryCallingCode.js.map","function _createForOfIteratorHelperLoose(o, allowArrayLike) { var it = typeof Symbol !== \"undefined\" && o[Symbol.iterator] || o[\"@@iterator\"]; if (it) return (it = it.call(o)).next.bind(it); if (Array.isArray(o) || (it = _unsupportedIterableToArray(o)) || allowArrayLike && o && typeof o.length === \"number\") { if (it) o = it; var i = 0; return function () { if (i >= o.length) return { done: true }; return { done: false, value: o[i++] }; }; } throw new TypeError(\"Invalid attempt to iterate non-iterable instance.\\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method.\"); }\n\nfunction _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); }\n\nfunction _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; }\n\nimport Metadata from '../metadata.js';\nimport getNumberType from './getNumberType.js';\nexport default function getCountryByNationalNumber(nationalPhoneNumber, _ref) {\n var countries = _ref.countries,\n defaultCountry = _ref.defaultCountry,\n metadata = _ref.metadata;\n // Re-create `metadata` because it will be selecting a `country`.\n metadata = new Metadata(metadata);\n var matchingCountries = [];\n\n for (var _iterator = _createForOfIteratorHelperLoose(countries), _step; !(_step = _iterator()).done;) {\n var country = _step.value;\n metadata.country(country); // \"Leading digits\" patterns are only defined for about 20% of all countries.\n // By definition, matching \"leading digits\" is a sufficient but not a necessary\n // condition for a phone number to belong to a country.\n // The point of \"leading digits\" check is that it's the fastest one to get a match.\n // https://gitlab.com/catamphetamine/libphonenumber-js/blob/master/METADATA.md#leading_digits\n // I'd suppose that \"leading digits\" patterns are mutually exclusive for different countries\n // because of the intended use of that feature.\n\n if (metadata.leadingDigits()) {\n if (nationalPhoneNumber && nationalPhoneNumber.search(metadata.leadingDigits()) === 0) {\n return country;\n }\n } // Else perform full validation with all of those\n // fixed-line/mobile/etc regular expressions.\n else if (getNumberType({\n phone: nationalPhoneNumber,\n country: country\n }, undefined, metadata.metadata)) {\n // If the `defaultCountry` is among the `matchingCountries` then return it.\n if (defaultCountry) {\n if (country === defaultCountry) {\n return country;\n }\n\n matchingCountries.push(country);\n } else {\n return country;\n }\n }\n } // Return the first (\"main\") one of the `matchingCountries`.\n\n\n if (matchingCountries.length > 0) {\n return matchingCountries[0];\n }\n}\n//# sourceMappingURL=getCountryByNationalNumber.js.map","import getCountryByNationalNumber from './getCountryByNationalNumber.js';\nvar USE_NON_GEOGRAPHIC_COUNTRY_CODE = false;\nexport default function getCountryByCallingCode(callingCode, _ref) {\n var nationalPhoneNumber = _ref.nationalNumber,\n defaultCountry = _ref.defaultCountry,\n metadata = _ref.metadata;\n\n /* istanbul ignore if */\n if (USE_NON_GEOGRAPHIC_COUNTRY_CODE) {\n if (metadata.isNonGeographicCallingCode(callingCode)) {\n return '001';\n }\n }\n\n var possibleCountries = metadata.getCountryCodesForCallingCode(callingCode);\n\n if (!possibleCountries) {\n return;\n } // If there's just one country corresponding to the country code,\n // then just return it, without further phone number digits validation.\n\n\n if (possibleCountries.length === 1) {\n return possibleCountries[0];\n }\n\n return getCountryByNationalNumber(nationalPhoneNumber, {\n countries: possibleCountries,\n defaultCountry: defaultCountry,\n metadata: metadata.metadata\n });\n}\n//# sourceMappingURL=getCountryByCallingCode.js.map","// When phone numbers are written in `RFC3966` format — `\"tel:+12133734253\"` —\n// they can have their \"calling code\" part written separately in a `phone-context` parameter.\n// Example: `\"tel:12133734253;phone-context=+1\"`.\n// This function parses the full phone number from the local number and the `phone-context`\n// when the `phone-context` contains a `+` sign.\nimport { VALID_DIGITS // PLUS_CHARS\n} from '../constants.js';\nexport var PLUS_SIGN = '+';\nvar RFC3966_VISUAL_SEPARATOR_ = '[\\\\-\\\\.\\\\(\\\\)]?';\nvar RFC3966_PHONE_DIGIT_ = '(' + '[' + VALID_DIGITS + ']' + '|' + RFC3966_VISUAL_SEPARATOR_ + ')';\nvar RFC3966_GLOBAL_NUMBER_DIGITS_ = '^' + '\\\\' + PLUS_SIGN + RFC3966_PHONE_DIGIT_ + '*' + '[' + VALID_DIGITS + ']' + RFC3966_PHONE_DIGIT_ + '*' + '$';\n/**\r\n * Regular expression of valid global-number-digits for the phone-context\r\n * parameter, following the syntax defined in RFC3966.\r\n */\n\nvar RFC3966_GLOBAL_NUMBER_DIGITS_PATTERN_ = new RegExp(RFC3966_GLOBAL_NUMBER_DIGITS_, 'g'); // In this port of Google's library, we don't accept alpha characters in phone numbers.\n// const ALPHANUM_ = VALID_ALPHA_ + VALID_DIGITS\n\nvar ALPHANUM_ = VALID_DIGITS;\nvar RFC3966_DOMAINLABEL_ = '[' + ALPHANUM_ + ']+((\\\\-)*[' + ALPHANUM_ + '])*';\nvar VALID_ALPHA_ = 'a-zA-Z';\nvar RFC3966_TOPLABEL_ = '[' + VALID_ALPHA_ + ']+((\\\\-)*[' + ALPHANUM_ + '])*';\nvar RFC3966_DOMAINNAME_ = '^(' + RFC3966_DOMAINLABEL_ + '\\\\.)*' + RFC3966_TOPLABEL_ + '\\\\.?$';\n/**\r\n * Regular expression of valid domainname for the phone-context parameter,\r\n * following the syntax defined in RFC3966.\r\n */\n\nvar RFC3966_DOMAINNAME_PATTERN_ = new RegExp(RFC3966_DOMAINNAME_, 'g');\nexport var RFC3966_PREFIX_ = 'tel:';\nexport var RFC3966_PHONE_CONTEXT_ = ';phone-context=';\nexport var RFC3966_ISDN_SUBADDRESS_ = ';isub=';\n/**\r\n * Extracts the value of the phone-context parameter of `numberToExtractFrom`,\r\n * following the syntax defined in RFC3966.\r\n *\r\n * @param {string} numberToExtractFrom\r\n * @return {string|null} the extracted string (possibly empty), or `null` if no phone-context parameter is found.\r\n */\n\nexport default function extractPhoneContext(numberToExtractFrom) {\n var indexOfPhoneContext = numberToExtractFrom.indexOf(RFC3966_PHONE_CONTEXT_); // If no phone-context parameter is present\n\n if (indexOfPhoneContext < 0) {\n return null;\n }\n\n var phoneContextStart = indexOfPhoneContext + RFC3966_PHONE_CONTEXT_.length; // If phone-context parameter is empty\n\n if (phoneContextStart >= numberToExtractFrom.length) {\n return '';\n }\n\n var phoneContextEnd = numberToExtractFrom.indexOf(';', phoneContextStart); // If phone-context is not the last parameter\n\n if (phoneContextEnd >= 0) {\n return numberToExtractFrom.substring(phoneContextStart, phoneContextEnd);\n } else {\n return numberToExtractFrom.substring(phoneContextStart);\n }\n}\n/**\r\n * Returns whether the value of phoneContext follows the syntax defined in RFC3966.\r\n *\r\n * @param {string|null} phoneContext\r\n * @return {boolean}\r\n */\n\nexport function isPhoneContextValid(phoneContext) {\n if (phoneContext === null) {\n return true;\n }\n\n if (phoneContext.length === 0) {\n return false;\n } // Does phone-context value match pattern of global-number-digits or domainname.\n\n\n return RFC3966_GLOBAL_NUMBER_DIGITS_PATTERN_.test(phoneContext) || RFC3966_DOMAINNAME_PATTERN_.test(phoneContext);\n}\n//# sourceMappingURL=extractPhoneContext.js.map","import extractPhoneContext, { isPhoneContextValid, PLUS_SIGN, RFC3966_PREFIX_, RFC3966_PHONE_CONTEXT_, RFC3966_ISDN_SUBADDRESS_ } from './extractPhoneContext.js';\nimport ParseError from '../ParseError.js';\n/**\r\n * @param {string} numberToParse\r\n * @param {string} nationalNumber\r\n * @return {}\r\n */\n\nexport default function extractFormattedPhoneNumberFromPossibleRfc3966NumberUri(numberToParse, _ref) {\n var extractFormattedPhoneNumber = _ref.extractFormattedPhoneNumber;\n var phoneContext = extractPhoneContext(numberToParse);\n\n if (!isPhoneContextValid(phoneContext)) {\n throw new ParseError('NOT_A_NUMBER');\n }\n\n var phoneNumberString;\n\n if (phoneContext === null) {\n // Extract a possible number from the string passed in.\n // (this strips leading characters that could not be the start of a phone number)\n phoneNumberString = extractFormattedPhoneNumber(numberToParse) || '';\n } else {\n phoneNumberString = ''; // If the phone context contains a phone number prefix, we need to capture\n // it, whereas domains will be ignored.\n\n if (phoneContext.charAt(0) === PLUS_SIGN) {\n phoneNumberString += phoneContext;\n } // Now append everything between the \"tel:\" prefix and the phone-context.\n // This should include the national number, an optional extension or\n // isdn-subaddress component. Note we also handle the case when \"tel:\" is\n // missing, as we have seen in some of the phone number inputs.\n // In that case, we append everything from the beginning.\n\n\n var indexOfRfc3966Prefix = numberToParse.indexOf(RFC3966_PREFIX_);\n var indexOfNationalNumber; // RFC 3966 \"tel:\" prefix is preset at this stage because\n // `isPhoneContextValid()` requires it to be present.\n\n /* istanbul ignore else */\n\n if (indexOfRfc3966Prefix >= 0) {\n indexOfNationalNumber = indexOfRfc3966Prefix + RFC3966_PREFIX_.length;\n } else {\n indexOfNationalNumber = 0;\n }\n\n var indexOfPhoneContext = numberToParse.indexOf(RFC3966_PHONE_CONTEXT_);\n phoneNumberString += numberToParse.substring(indexOfNationalNumber, indexOfPhoneContext);\n } // Delete the isdn-subaddress and everything after it if it is present.\n // Note extension won't appear at the same time with isdn-subaddress\n // according to paragraph 5.3 of the RFC3966 spec.\n\n\n var indexOfIsdn = phoneNumberString.indexOf(RFC3966_ISDN_SUBADDRESS_);\n\n if (indexOfIsdn > 0) {\n phoneNumberString = phoneNumberString.substring(0, indexOfIsdn);\n } // If both phone context and isdn-subaddress are absent but other\n // parameters are present, the parameters are left in nationalNumber.\n // This is because we are concerned about deleting content from a potential\n // number string when there is no strong evidence that the number is\n // actually written in RFC3966.\n\n\n if (phoneNumberString !== '') {\n return phoneNumberString;\n }\n}\n//# sourceMappingURL=extractFormattedPhoneNumberFromPossibleRfc3966NumberUri.js.map","// This is a port of Google Android `libphonenumber`'s\n// `phonenumberutil.js` of December 31th, 2018.\n//\n// https://github.com/googlei18n/libphonenumber/commits/master/javascript/i18n/phonenumbers/phonenumberutil.js\nimport { VALID_DIGITS, PLUS_CHARS, MIN_LENGTH_FOR_NSN, MAX_LENGTH_FOR_NSN } from './constants.js';\nimport ParseError from './ParseError.js';\nimport Metadata from './metadata.js';\nimport isViablePhoneNumber, { isViablePhoneNumberStart } from './helpers/isViablePhoneNumber.js';\nimport extractExtension from './helpers/extension/extractExtension.js';\nimport parseIncompletePhoneNumber from './parseIncompletePhoneNumber.js';\nimport getCountryCallingCode from './getCountryCallingCode.js';\nimport { isPossibleNumber } from './isPossible.js'; // import { parseRFC3966 } from './helpers/RFC3966.js'\n\nimport PhoneNumber from './PhoneNumber.js';\nimport matchesEntirely from './helpers/matchesEntirely.js';\nimport extractCountryCallingCode from './helpers/extractCountryCallingCode.js';\nimport extractNationalNumber from './helpers/extractNationalNumber.js';\nimport stripIddPrefix from './helpers/stripIddPrefix.js';\nimport getCountryByCallingCode from './helpers/getCountryByCallingCode.js';\nimport extractFormattedPhoneNumberFromPossibleRfc3966NumberUri from './helpers/extractFormattedPhoneNumberFromPossibleRfc3966NumberUri.js'; // We don't allow input strings for parsing to be longer than 250 chars.\n// This prevents malicious input from consuming CPU.\n\nvar MAX_INPUT_STRING_LENGTH = 250; // This consists of the plus symbol, digits, and arabic-indic digits.\n\nvar PHONE_NUMBER_START_PATTERN = new RegExp('[' + PLUS_CHARS + VALID_DIGITS + ']'); // Regular expression of trailing characters that we want to remove.\n// A trailing `#` is sometimes used when writing phone numbers with extensions in US.\n// Example: \"+1 (645) 123 1234-910#\" number has extension \"910\".\n\nvar AFTER_PHONE_NUMBER_END_PATTERN = new RegExp('[^' + VALID_DIGITS + '#' + ']+$');\nvar USE_NON_GEOGRAPHIC_COUNTRY_CODE = false; // Examples:\n//\n// ```js\n// parse('8 (800) 555-35-35', 'RU')\n// parse('8 (800) 555-35-35', 'RU', metadata)\n// parse('8 (800) 555-35-35', { country: { default: 'RU' } })\n// parse('8 (800) 555-35-35', { country: { default: 'RU' } }, metadata)\n// parse('+7 800 555 35 35')\n// parse('+7 800 555 35 35', metadata)\n// ```\n//\n\n/**\r\n * Parses a phone number.\r\n *\r\n * parse('123456789', { defaultCountry: 'RU', v2: true }, metadata)\r\n * parse('123456789', { defaultCountry: 'RU' }, metadata)\r\n * parse('123456789', undefined, metadata)\r\n *\r\n * @param {string} input\r\n * @param {object} [options]\r\n * @param {object} metadata\r\n * @return {object|PhoneNumber?} If `options.v2: true` flag is passed, it returns a `PhoneNumber?` instance. Otherwise, returns an object of shape `{ phone: '...', country: '...' }` (or just `{}` if no phone number was parsed).\r\n */\n\nexport default function parse(text, options, metadata) {\n // If assigning the `{}` default value is moved to the arguments above,\n // code coverage would decrease for some weird reason.\n options = options || {};\n metadata = new Metadata(metadata); // Validate `defaultCountry`.\n\n if (options.defaultCountry && !metadata.hasCountry(options.defaultCountry)) {\n if (options.v2) {\n throw new ParseError('INVALID_COUNTRY');\n }\n\n throw new Error(\"Unknown country: \".concat(options.defaultCountry));\n } // Parse the phone number.\n\n\n var _parseInput = parseInput(text, options.v2, options.extract),\n formattedPhoneNumber = _parseInput.number,\n ext = _parseInput.ext,\n error = _parseInput.error; // If the phone number is not viable then return nothing.\n\n\n if (!formattedPhoneNumber) {\n if (options.v2) {\n if (error === 'TOO_SHORT') {\n throw new ParseError('TOO_SHORT');\n }\n\n throw new ParseError('NOT_A_NUMBER');\n }\n\n return {};\n }\n\n var _parsePhoneNumber = parsePhoneNumber(formattedPhoneNumber, options.defaultCountry, options.defaultCallingCode, metadata),\n country = _parsePhoneNumber.country,\n nationalNumber = _parsePhoneNumber.nationalNumber,\n countryCallingCode = _parsePhoneNumber.countryCallingCode,\n countryCallingCodeSource = _parsePhoneNumber.countryCallingCodeSource,\n carrierCode = _parsePhoneNumber.carrierCode;\n\n if (!metadata.hasSelectedNumberingPlan()) {\n if (options.v2) {\n throw new ParseError('INVALID_COUNTRY');\n }\n\n return {};\n } // Validate national (significant) number length.\n\n\n if (!nationalNumber || nationalNumber.length < MIN_LENGTH_FOR_NSN) {\n // Won't throw here because the regexp already demands length > 1.\n\n /* istanbul ignore if */\n if (options.v2) {\n throw new ParseError('TOO_SHORT');\n } // Google's demo just throws an error in this case.\n\n\n return {};\n } // Validate national (significant) number length.\n //\n // A sidenote:\n //\n // They say that sometimes national (significant) numbers\n // can be longer than `MAX_LENGTH_FOR_NSN` (e.g. in Germany).\n // https://github.com/googlei18n/libphonenumber/blob/7e1748645552da39c4e1ba731e47969d97bdb539/resources/phonenumber.proto#L36\n // Such numbers will just be discarded.\n //\n\n\n if (nationalNumber.length > MAX_LENGTH_FOR_NSN) {\n if (options.v2) {\n throw new ParseError('TOO_LONG');\n } // Google's demo just throws an error in this case.\n\n\n return {};\n }\n\n if (options.v2) {\n var phoneNumber = new PhoneNumber(countryCallingCode, nationalNumber, metadata.metadata);\n\n if (country) {\n phoneNumber.country = country;\n }\n\n if (carrierCode) {\n phoneNumber.carrierCode = carrierCode;\n }\n\n if (ext) {\n phoneNumber.ext = ext;\n }\n\n phoneNumber.__countryCallingCodeSource = countryCallingCodeSource;\n return phoneNumber;\n } // Check if national phone number pattern matches the number.\n // National number pattern is different for each country,\n // even for those ones which are part of the \"NANPA\" group.\n\n\n var valid = (options.extended ? metadata.hasSelectedNumberingPlan() : country) ? matchesEntirely(nationalNumber, metadata.nationalNumberPattern()) : false;\n\n if (!options.extended) {\n return valid ? result(country, nationalNumber, ext) : {};\n } // isInternational: countryCallingCode !== undefined\n\n\n return {\n country: country,\n countryCallingCode: countryCallingCode,\n carrierCode: carrierCode,\n valid: valid,\n possible: valid ? true : options.extended === true && metadata.possibleLengths() && isPossibleNumber(nationalNumber, metadata) ? true : false,\n phone: nationalNumber,\n ext: ext\n };\n}\n/**\r\n * Extracts a formatted phone number from text.\r\n * Doesn't guarantee that the extracted phone number\r\n * is a valid phone number (for example, doesn't validate its length).\r\n * @param {string} text\r\n * @param {boolean} [extract] — If `false`, then will parse the entire `text` as a phone number.\r\n * @param {boolean} [throwOnError] — By default, it won't throw if the text is too long.\r\n * @return {string}\r\n * @example\r\n * // Returns \"(213) 373-4253\".\r\n * extractFormattedPhoneNumber(\"Call (213) 373-4253 for assistance.\")\r\n */\n\nfunction _extractFormattedPhoneNumber(text, extract, throwOnError) {\n if (!text) {\n return;\n }\n\n if (text.length > MAX_INPUT_STRING_LENGTH) {\n if (throwOnError) {\n throw new ParseError('TOO_LONG');\n }\n\n return;\n }\n\n if (extract === false) {\n return text;\n } // Attempt to extract a possible number from the string passed in\n\n\n var startsAt = text.search(PHONE_NUMBER_START_PATTERN);\n\n if (startsAt < 0) {\n return;\n }\n\n return text // Trim everything to the left of the phone number\n .slice(startsAt) // Remove trailing non-numerical characters\n .replace(AFTER_PHONE_NUMBER_END_PATTERN, '');\n}\n/**\r\n * @param {string} text - Input.\r\n * @param {boolean} v2 - Legacy API functions don't pass `v2: true` flag.\r\n * @param {boolean} [extract] - Whether to extract a phone number from `text`, or attempt to parse the entire text as a phone number.\r\n * @return {object} `{ ?number, ?ext }`.\r\n */\n\n\nfunction parseInput(text, v2, extract) {\n // // Parse RFC 3966 phone number URI.\n // if (text && text.indexOf('tel:') === 0) {\n // \treturn parseRFC3966(text)\n // }\n // let number = extractFormattedPhoneNumber(text, extract, v2)\n var number = extractFormattedPhoneNumberFromPossibleRfc3966NumberUri(text, {\n extractFormattedPhoneNumber: function extractFormattedPhoneNumber(text) {\n return _extractFormattedPhoneNumber(text, extract, v2);\n }\n }); // If the phone number is not viable, then abort.\n\n if (!number) {\n return {};\n }\n\n if (!isViablePhoneNumber(number)) {\n if (isViablePhoneNumberStart(number)) {\n return {\n error: 'TOO_SHORT'\n };\n }\n\n return {};\n } // Attempt to parse extension first, since it doesn't require region-specific\n // data and we want to have the non-normalised number here.\n\n\n var withExtensionStripped = extractExtension(number);\n\n if (withExtensionStripped.ext) {\n return withExtensionStripped;\n }\n\n return {\n number: number\n };\n}\n/**\r\n * Creates `parse()` result object.\r\n */\n\n\nfunction result(country, nationalNumber, ext) {\n var result = {\n country: country,\n phone: nationalNumber\n };\n\n if (ext) {\n result.ext = ext;\n }\n\n return result;\n}\n/**\r\n * Parses a viable phone number.\r\n * @param {string} formattedPhoneNumber — Example: \"(213) 373-4253\".\r\n * @param {string} [defaultCountry]\r\n * @param {string} [defaultCallingCode]\r\n * @param {Metadata} metadata\r\n * @return {object} Returns `{ country: string?, countryCallingCode: string?, nationalNumber: string? }`.\r\n */\n\n\nfunction parsePhoneNumber(formattedPhoneNumber, defaultCountry, defaultCallingCode, metadata) {\n // Extract calling code from phone number.\n var _extractCountryCallin = extractCountryCallingCode(parseIncompletePhoneNumber(formattedPhoneNumber), defaultCountry, defaultCallingCode, metadata.metadata),\n countryCallingCodeSource = _extractCountryCallin.countryCallingCodeSource,\n countryCallingCode = _extractCountryCallin.countryCallingCode,\n number = _extractCountryCallin.number; // Choose a country by `countryCallingCode`.\n\n\n var country;\n\n if (countryCallingCode) {\n metadata.selectNumberingPlan(countryCallingCode);\n } // If `formattedPhoneNumber` is passed in \"national\" format\n // then `number` is defined and `countryCallingCode` is `undefined`.\n else if (number && (defaultCountry || defaultCallingCode)) {\n metadata.selectNumberingPlan(defaultCountry, defaultCallingCode);\n\n if (defaultCountry) {\n country = defaultCountry;\n } else {\n /* istanbul ignore if */\n if (USE_NON_GEOGRAPHIC_COUNTRY_CODE) {\n if (metadata.isNonGeographicCallingCode(defaultCallingCode)) {\n country = '001';\n }\n }\n }\n\n countryCallingCode = defaultCallingCode || getCountryCallingCode(defaultCountry, metadata.metadata);\n } else return {};\n\n if (!number) {\n return {\n countryCallingCodeSource: countryCallingCodeSource,\n countryCallingCode: countryCallingCode\n };\n }\n\n var _extractNationalNumbe = extractNationalNumber(parseIncompletePhoneNumber(number), metadata),\n nationalNumber = _extractNationalNumbe.nationalNumber,\n carrierCode = _extractNationalNumbe.carrierCode; // Sometimes there are several countries\n // corresponding to the same country phone code\n // (e.g. NANPA countries all having `1` country phone code).\n // Therefore, to reliably determine the exact country,\n // national (significant) number should have been parsed first.\n //\n // When `metadata.json` is generated, all \"ambiguous\" country phone codes\n // get their countries populated with the full set of\n // \"phone number type\" regular expressions.\n //\n\n\n var exactCountry = getCountryByCallingCode(countryCallingCode, {\n nationalNumber: nationalNumber,\n defaultCountry: defaultCountry,\n metadata: metadata\n });\n\n if (exactCountry) {\n country = exactCountry;\n /* istanbul ignore if */\n\n if (exactCountry === '001') {// Can't happen with `USE_NON_GEOGRAPHIC_COUNTRY_CODE` being `false`.\n // If `USE_NON_GEOGRAPHIC_COUNTRY_CODE` is set to `true` for some reason,\n // then remove the \"istanbul ignore if\".\n } else {\n metadata.country(country);\n }\n }\n\n return {\n country: country,\n countryCallingCode: countryCallingCode,\n countryCallingCodeSource: countryCallingCodeSource,\n nationalNumber: nationalNumber,\n carrierCode: carrierCode\n };\n}\n//# sourceMappingURL=parse.js.map","function ownKeys(object, enumerableOnly) { var keys = Object.keys(object); if (Object.getOwnPropertySymbols) { var symbols = Object.getOwnPropertySymbols(object); enumerableOnly && (symbols = symbols.filter(function (sym) { return Object.getOwnPropertyDescriptor(object, sym).enumerable; })), keys.push.apply(keys, symbols); } return keys; }\n\nfunction _objectSpread(target) { for (var i = 1; i < arguments.length; i++) { var source = null != arguments[i] ? arguments[i] : {}; i % 2 ? ownKeys(Object(source), !0).forEach(function (key) { _defineProperty(target, key, source[key]); }) : Object.getOwnPropertyDescriptors ? Object.defineProperties(target, Object.getOwnPropertyDescriptors(source)) : ownKeys(Object(source)).forEach(function (key) { Object.defineProperty(target, key, Object.getOwnPropertyDescriptor(source, key)); }); } return target; }\n\nfunction _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; }\n\nimport parse from './parse.js';\nexport default function parsePhoneNumberWithError(text, options, metadata) {\n return parse(text, _objectSpread(_objectSpread({}, options), {}, {\n v2: true\n }), metadata);\n}\n//# sourceMappingURL=parsePhoneNumberWithError_.js.map","function ownKeys(object, enumerableOnly) { var keys = Object.keys(object); if (Object.getOwnPropertySymbols) { var symbols = Object.getOwnPropertySymbols(object); enumerableOnly && (symbols = symbols.filter(function (sym) { return Object.getOwnPropertyDescriptor(object, sym).enumerable; })), keys.push.apply(keys, symbols); } return keys; }\n\nfunction _objectSpread(target) { for (var i = 1; i < arguments.length; i++) { var source = null != arguments[i] ? arguments[i] : {}; i % 2 ? ownKeys(Object(source), !0).forEach(function (key) { _defineProperty(target, key, source[key]); }) : Object.getOwnPropertyDescriptors ? Object.defineProperties(target, Object.getOwnPropertyDescriptors(source)) : ownKeys(Object(source)).forEach(function (key) { Object.defineProperty(target, key, Object.getOwnPropertyDescriptor(source, key)); }); } return target; }\n\nfunction _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; }\n\nfunction _slicedToArray(arr, i) { return _arrayWithHoles(arr) || _iterableToArrayLimit(arr, i) || _unsupportedIterableToArray(arr, i) || _nonIterableRest(); }\n\nfunction _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.\"); }\n\nfunction _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); }\n\nfunction _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; }\n\nfunction _iterableToArrayLimit(arr, i) { var _i = arr == null ? null : typeof Symbol !== \"undefined\" && arr[Symbol.iterator] || arr[\"@@iterator\"]; if (_i == null) return; var _arr = []; var _n = true; var _d = false; var _s, _e; try { for (_i = _i.call(arr); !(_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; }\n\nfunction _arrayWithHoles(arr) { if (Array.isArray(arr)) return arr; }\n\nimport isObject from './helpers/isObject.js'; // Extracts the following properties from function arguments:\n// * input `text`\n// * `options` object\n// * `metadata` JSON\n\nexport default function normalizeArguments(args) {\n var _Array$prototype$slic = Array.prototype.slice.call(args),\n _Array$prototype$slic2 = _slicedToArray(_Array$prototype$slic, 4),\n arg_1 = _Array$prototype$slic2[0],\n arg_2 = _Array$prototype$slic2[1],\n arg_3 = _Array$prototype$slic2[2],\n arg_4 = _Array$prototype$slic2[3];\n\n var text;\n var options;\n var metadata; // If the phone number is passed as a string.\n // `parsePhoneNumber('88005553535', ...)`.\n\n if (typeof arg_1 === 'string') {\n text = arg_1;\n } else throw new TypeError('A text for parsing must be a string.'); // If \"default country\" argument is being passed then move it to `options`.\n // `parsePhoneNumber('88005553535', 'RU', [options], metadata)`.\n\n\n if (!arg_2 || typeof arg_2 === 'string') {\n if (arg_4) {\n options = arg_3;\n metadata = arg_4;\n } else {\n options = undefined;\n metadata = arg_3;\n }\n\n if (arg_2) {\n options = _objectSpread({\n defaultCountry: arg_2\n }, options);\n }\n } // `defaultCountry` is not passed.\n // Example: `parsePhoneNumber('+78005553535', [options], metadata)`.\n else if (isObject(arg_2)) {\n if (arg_3) {\n options = arg_2;\n metadata = arg_3;\n } else {\n metadata = arg_2;\n }\n } else throw new Error(\"Invalid second argument: \".concat(arg_2));\n\n return {\n text: text,\n options: options,\n metadata: metadata\n };\n}\n//# sourceMappingURL=normalizeArguments.js.map","function ownKeys(object, enumerableOnly) { var keys = Object.keys(object); if (Object.getOwnPropertySymbols) { var symbols = Object.getOwnPropertySymbols(object); enumerableOnly && (symbols = symbols.filter(function (sym) { return Object.getOwnPropertyDescriptor(object, sym).enumerable; })), keys.push.apply(keys, symbols); } return keys; }\n\nfunction _objectSpread(target) { for (var i = 1; i < arguments.length; i++) { var source = null != arguments[i] ? arguments[i] : {}; i % 2 ? ownKeys(Object(source), !0).forEach(function (key) { _defineProperty(target, key, source[key]); }) : Object.getOwnPropertyDescriptors ? Object.defineProperties(target, Object.getOwnPropertyDescriptors(source)) : ownKeys(Object(source)).forEach(function (key) { Object.defineProperty(target, key, Object.getOwnPropertyDescriptor(source, key)); }); } return target; }\n\nfunction _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; }\n\nimport parsePhoneNumberWithError from './parsePhoneNumberWithError_.js';\nimport ParseError from './ParseError.js';\nimport { isSupportedCountry } from './metadata.js';\nexport default function parsePhoneNumber(text, options, metadata) {\n // Validate `defaultCountry`.\n if (options && options.defaultCountry && !isSupportedCountry(options.defaultCountry, metadata)) {\n options = _objectSpread(_objectSpread({}, options), {}, {\n defaultCountry: undefined\n });\n } // Parse phone number.\n\n\n try {\n return parsePhoneNumberWithError(text, options, metadata);\n } catch (error) {\n /* istanbul ignore else */\n if (error instanceof ParseError) {//\n } else {\n throw error;\n }\n }\n}\n//# sourceMappingURL=parsePhoneNumber_.js.map","import normalizeArguments from './normalizeArguments.js';\nimport parsePhoneNumber_ from './parsePhoneNumber_.js';\nexport default function parsePhoneNumber() {\n var _normalizeArguments = normalizeArguments(arguments),\n text = _normalizeArguments.text,\n options = _normalizeArguments.options,\n metadata = _normalizeArguments.metadata;\n\n return parsePhoneNumber_(text, options, metadata);\n}\n//# sourceMappingURL=parsePhoneNumber.js.map","function ownKeys(object, enumerableOnly) { var keys = Object.keys(object); if (Object.getOwnPropertySymbols) { var symbols = Object.getOwnPropertySymbols(object); enumerableOnly && (symbols = symbols.filter(function (sym) { return Object.getOwnPropertyDescriptor(object, sym).enumerable; })), keys.push.apply(keys, symbols); } return keys; }\n\nfunction _objectSpread(target) { for (var i = 1; i < arguments.length; i++) { var source = null != arguments[i] ? arguments[i] : {}; i % 2 ? ownKeys(Object(source), !0).forEach(function (key) { _defineProperty(target, key, source[key]); }) : Object.getOwnPropertyDescriptors ? Object.defineProperties(target, Object.getOwnPropertyDescriptors(source)) : ownKeys(Object(source)).forEach(function (key) { Object.defineProperty(target, key, Object.getOwnPropertyDescriptor(source, key)); }); } return target; }\n\nfunction _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; }\n\nimport normalizeArguments from './normalizeArguments.js';\nimport parsePhoneNumber from './parsePhoneNumber_.js';\nexport default function isPossiblePhoneNumber() {\n var _normalizeArguments = normalizeArguments(arguments),\n text = _normalizeArguments.text,\n options = _normalizeArguments.options,\n metadata = _normalizeArguments.metadata;\n\n options = _objectSpread(_objectSpread({}, options), {}, {\n extract: false\n });\n var phoneNumber = parsePhoneNumber(text, options, metadata);\n return phoneNumber && phoneNumber.isPossible() || false;\n}\n//# sourceMappingURL=isPossiblePhoneNumber.js.map","function _classCallCheck(instance, Constructor) { if (!(instance instanceof Constructor)) { throw new TypeError(\"Cannot call a class as a function\"); } }\n\nfunction _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); } }\n\nfunction _createClass(Constructor, protoProps, staticProps) { if (protoProps) _defineProperties(Constructor.prototype, protoProps); if (staticProps) _defineProperties(Constructor, staticProps); Object.defineProperty(Constructor, \"prototype\", { writable: false }); return Constructor; }\n\n// This \"state\" object simply holds the state of the \"AsYouType\" parser:\n//\n// * `country?: string`\n// * `callingCode?: string`\n// * `digits: string`\n// * `international: boolean`\n// * `missingPlus: boolean`\n// * `IDDPrefix?: string`\n// * `carrierCode?: string`\n// * `nationalPrefix?: string`\n// * `nationalSignificantNumber?: string`\n// * `nationalSignificantNumberMatchesInput: boolean`\n// * `complexPrefixBeforeNationalSignificantNumber?: string`\n//\n// `state.country` and `state.callingCode` aren't required to be in sync.\n// For example, `state.country` could be `\"AR\"` and `state.callingCode` could be `undefined`.\n// So `state.country` and `state.callingCode` are totally independent.\n//\nvar AsYouTypeState = /*#__PURE__*/function () {\n function AsYouTypeState(_ref) {\n var onCountryChange = _ref.onCountryChange,\n onCallingCodeChange = _ref.onCallingCodeChange;\n\n _classCallCheck(this, AsYouTypeState);\n\n this.onCountryChange = onCountryChange;\n this.onCallingCodeChange = onCallingCodeChange;\n }\n\n _createClass(AsYouTypeState, [{\n key: \"reset\",\n value: function reset(_ref2) {\n var country = _ref2.country,\n callingCode = _ref2.callingCode;\n this.international = false;\n this.missingPlus = false;\n this.IDDPrefix = undefined;\n this.callingCode = undefined;\n this.digits = '';\n this.resetNationalSignificantNumber();\n this.initCountryAndCallingCode(country, callingCode);\n }\n }, {\n key: \"resetNationalSignificantNumber\",\n value: function resetNationalSignificantNumber() {\n this.nationalSignificantNumber = this.getNationalDigits();\n this.nationalSignificantNumberMatchesInput = true;\n this.nationalPrefix = undefined;\n this.carrierCode = undefined;\n this.complexPrefixBeforeNationalSignificantNumber = undefined;\n }\n }, {\n key: \"update\",\n value: function update(properties) {\n for (var _i = 0, _Object$keys = Object.keys(properties); _i < _Object$keys.length; _i++) {\n var key = _Object$keys[_i];\n this[key] = properties[key];\n }\n }\n }, {\n key: \"initCountryAndCallingCode\",\n value: function initCountryAndCallingCode(country, callingCode) {\n this.setCountry(country);\n this.setCallingCode(callingCode);\n }\n }, {\n key: \"setCountry\",\n value: function setCountry(country) {\n this.country = country;\n this.onCountryChange(country);\n }\n }, {\n key: \"setCallingCode\",\n value: function setCallingCode(callingCode) {\n this.callingCode = callingCode;\n this.onCallingCodeChange(callingCode, this.country);\n }\n }, {\n key: \"startInternationalNumber\",\n value: function startInternationalNumber(country, callingCode) {\n // Prepend the `+` to parsed input.\n this.international = true; // If a default country was set then reset it\n // because an explicitly international phone\n // number is being entered.\n\n this.initCountryAndCallingCode(country, callingCode);\n }\n }, {\n key: \"appendDigits\",\n value: function appendDigits(nextDigits) {\n this.digits += nextDigits;\n }\n }, {\n key: \"appendNationalSignificantNumberDigits\",\n value: function appendNationalSignificantNumberDigits(nextDigits) {\n this.nationalSignificantNumber += nextDigits;\n }\n /**\r\n * Returns the part of `this.digits` that corresponds to the national number.\r\n * Basically, all digits that have been input by the user, except for the\r\n * international prefix and the country calling code part\r\n * (if the number is an international one).\r\n * @return {string}\r\n */\n\n }, {\n key: \"getNationalDigits\",\n value: function getNationalDigits() {\n if (this.international) {\n return this.digits.slice((this.IDDPrefix ? this.IDDPrefix.length : 0) + (this.callingCode ? this.callingCode.length : 0));\n }\n\n return this.digits;\n }\n }, {\n key: \"getDigitsWithoutInternationalPrefix\",\n value: function getDigitsWithoutInternationalPrefix() {\n if (this.international) {\n if (this.IDDPrefix) {\n return this.digits.slice(this.IDDPrefix.length);\n }\n }\n\n return this.digits;\n }\n }]);\n\n return AsYouTypeState;\n}();\n\nexport { AsYouTypeState as default };\n//# sourceMappingURL=AsYouTypeState.js.map","function _createForOfIteratorHelperLoose(o, allowArrayLike) { var it = typeof Symbol !== \"undefined\" && o[Symbol.iterator] || o[\"@@iterator\"]; if (it) return (it = it.call(o)).next.bind(it); if (Array.isArray(o) || (it = _unsupportedIterableToArray(o)) || allowArrayLike && o && typeof o.length === \"number\") { if (it) o = it; var i = 0; return function () { if (i >= o.length) return { done: true }; return { done: false, value: o[i++] }; }; } throw new TypeError(\"Invalid attempt to iterate non-iterable instance.\\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method.\"); }\n\nfunction _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); }\n\nfunction _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; }\n\n// Should be the same as `DIGIT_PLACEHOLDER` in `libphonenumber-metadata-generator`.\nexport var DIGIT_PLACEHOLDER = 'x'; // '\\u2008' (punctuation space)\n\nvar DIGIT_PLACEHOLDER_MATCHER = new RegExp(DIGIT_PLACEHOLDER); // Counts all occurences of a symbol in a string.\n// Unicode-unsafe (because using `.split()`).\n\nexport function countOccurences(symbol, string) {\n var count = 0; // Using `.split('')` to iterate through a string here\n // to avoid requiring `Symbol.iterator` polyfill.\n // `.split('')` is generally not safe for Unicode,\n // but in this particular case for counting brackets it is safe.\n // for (const character of string)\n\n for (var _iterator = _createForOfIteratorHelperLoose(string.split('')), _step; !(_step = _iterator()).done;) {\n var character = _step.value;\n\n if (character === symbol) {\n count++;\n }\n }\n\n return count;\n} // Repeats a string (or a symbol) N times.\n// http://stackoverflow.com/questions/202605/repeat-string-javascript\n\nexport function repeat(string, times) {\n if (times < 1) {\n return '';\n }\n\n var result = '';\n\n while (times > 1) {\n if (times & 1) {\n result += string;\n }\n\n times >>= 1;\n string += string;\n }\n\n return result + string;\n}\nexport function cutAndStripNonPairedParens(string, cutBeforeIndex) {\n if (string[cutBeforeIndex] === ')') {\n cutBeforeIndex++;\n }\n\n return stripNonPairedParens(string.slice(0, cutBeforeIndex));\n}\nexport function closeNonPairedParens(template, cut_before) {\n var retained_template = template.slice(0, cut_before);\n var opening_braces = countOccurences('(', retained_template);\n var closing_braces = countOccurences(')', retained_template);\n var dangling_braces = opening_braces - closing_braces;\n\n while (dangling_braces > 0 && cut_before < template.length) {\n if (template[cut_before] === ')') {\n dangling_braces--;\n }\n\n cut_before++;\n }\n\n return template.slice(0, cut_before);\n}\nexport function stripNonPairedParens(string) {\n var dangling_braces = [];\n var i = 0;\n\n while (i < string.length) {\n if (string[i] === '(') {\n dangling_braces.push(i);\n } else if (string[i] === ')') {\n dangling_braces.pop();\n }\n\n i++;\n }\n\n var start = 0;\n var cleared_string = '';\n dangling_braces.push(string.length);\n\n for (var _i = 0, _dangling_braces = dangling_braces; _i < _dangling_braces.length; _i++) {\n var index = _dangling_braces[_i];\n cleared_string += string.slice(start, index);\n start = index + 1;\n }\n\n return cleared_string;\n}\nexport function populateTemplateWithDigits(template, position, digits) {\n // Using `.split('')` to iterate through a string here\n // to avoid requiring `Symbol.iterator` polyfill.\n // `.split('')` is generally not safe for Unicode,\n // but in this particular case for `digits` it is safe.\n // for (const digit of digits)\n for (var _iterator2 = _createForOfIteratorHelperLoose(digits.split('')), _step2; !(_step2 = _iterator2()).done;) {\n var digit = _step2.value;\n\n // If there is room for more digits in current `template`,\n // then set the next digit in the `template`,\n // and return the formatted digits so far.\n // If more digits are entered than the current format could handle.\n if (template.slice(position + 1).search(DIGIT_PLACEHOLDER_MATCHER) < 0) {\n return;\n }\n\n position = template.search(DIGIT_PLACEHOLDER_MATCHER);\n template = template.replace(DIGIT_PLACEHOLDER_MATCHER, digit);\n }\n\n return [template, position];\n}\n//# sourceMappingURL=AsYouTypeFormatter.util.js.map","import checkNumberLength from './helpers/checkNumberLength.js';\nimport parseDigits from './helpers/parseDigits.js';\nimport formatNationalNumberUsingFormat from './helpers/formatNationalNumberUsingFormat.js';\nexport default function formatCompleteNumber(state, format, _ref) {\n var metadata = _ref.metadata,\n shouldTryNationalPrefixFormattingRule = _ref.shouldTryNationalPrefixFormattingRule,\n getSeparatorAfterNationalPrefix = _ref.getSeparatorAfterNationalPrefix;\n var matcher = new RegExp(\"^(?:\".concat(format.pattern(), \")$\"));\n\n if (matcher.test(state.nationalSignificantNumber)) {\n return formatNationalNumberWithAndWithoutNationalPrefixFormattingRule(state, format, {\n metadata: metadata,\n shouldTryNationalPrefixFormattingRule: shouldTryNationalPrefixFormattingRule,\n getSeparatorAfterNationalPrefix: getSeparatorAfterNationalPrefix\n });\n }\n}\nexport function canFormatCompleteNumber(nationalSignificantNumber, metadata) {\n return checkNumberLength(nationalSignificantNumber, metadata) === 'IS_POSSIBLE';\n}\n\nfunction formatNationalNumberWithAndWithoutNationalPrefixFormattingRule(state, format, _ref2) {\n var metadata = _ref2.metadata,\n shouldTryNationalPrefixFormattingRule = _ref2.shouldTryNationalPrefixFormattingRule,\n getSeparatorAfterNationalPrefix = _ref2.getSeparatorAfterNationalPrefix;\n // `format` has already been checked for `nationalPrefix` requirement.\n var nationalSignificantNumber = state.nationalSignificantNumber,\n international = state.international,\n nationalPrefix = state.nationalPrefix,\n carrierCode = state.carrierCode; // Format the number with using `national_prefix_formatting_rule`.\n // If the resulting formatted number is a valid formatted number, then return it.\n //\n // Google's AsYouType formatter is different in a way that it doesn't try\n // to format using the \"national prefix formatting rule\", and instead it\n // simply prepends a national prefix followed by a \" \" character.\n // This code does that too, but as a fallback.\n // The reason is that \"national prefix formatting rule\" may use parentheses,\n // which wouldn't be included has it used the simpler Google's way.\n //\n\n if (shouldTryNationalPrefixFormattingRule(format)) {\n var formattedNumber = formatNationalNumber(state, format, {\n useNationalPrefixFormattingRule: true,\n getSeparatorAfterNationalPrefix: getSeparatorAfterNationalPrefix,\n metadata: metadata\n });\n\n if (formattedNumber) {\n return formattedNumber;\n }\n } // Format the number without using `national_prefix_formatting_rule`.\n\n\n return formatNationalNumber(state, format, {\n useNationalPrefixFormattingRule: false,\n getSeparatorAfterNationalPrefix: getSeparatorAfterNationalPrefix,\n metadata: metadata\n });\n}\n\nfunction formatNationalNumber(state, format, _ref3) {\n var metadata = _ref3.metadata,\n useNationalPrefixFormattingRule = _ref3.useNationalPrefixFormattingRule,\n getSeparatorAfterNationalPrefix = _ref3.getSeparatorAfterNationalPrefix;\n var formattedNationalNumber = formatNationalNumberUsingFormat(state.nationalSignificantNumber, format, {\n carrierCode: state.carrierCode,\n useInternationalFormat: state.international,\n withNationalPrefix: useNationalPrefixFormattingRule,\n metadata: metadata\n });\n\n if (!useNationalPrefixFormattingRule) {\n if (state.nationalPrefix) {\n // If a national prefix was extracted, then just prepend it,\n // followed by a \" \" character.\n formattedNationalNumber = state.nationalPrefix + getSeparatorAfterNationalPrefix(format) + formattedNationalNumber;\n } else if (state.complexPrefixBeforeNationalSignificantNumber) {\n formattedNationalNumber = state.complexPrefixBeforeNationalSignificantNumber + ' ' + formattedNationalNumber;\n }\n }\n\n if (isValidFormattedNationalNumber(formattedNationalNumber, state)) {\n return formattedNationalNumber;\n }\n} // Check that the formatted phone number contains exactly\n// the same digits that have been input by the user.\n// For example, when \"0111523456789\" is input for `AR` country,\n// the extracted `this.nationalSignificantNumber` is \"91123456789\",\n// which means that the national part of `this.digits` isn't simply equal to\n// `this.nationalPrefix` + `this.nationalSignificantNumber`.\n//\n// Also, a `format` can add extra digits to the `this.nationalSignificantNumber`\n// being formatted via `metadata[country].national_prefix_transform_rule`.\n// For example, for `VI` country, it prepends `340` to the national number,\n// and if this check hasn't been implemented, then there would be a bug\n// when `340` \"area coude\" is \"duplicated\" during input for `VI` country:\n// https://github.com/catamphetamine/libphonenumber-js/issues/318\n//\n// So, all these \"gotchas\" are filtered out.\n//\n// In the original Google's code, the comments say:\n// \"Check that we didn't remove nor add any extra digits when we matched\n// this formatting pattern. This usually happens after we entered the last\n// digit during AYTF. Eg: In case of MX, we swallow mobile token (1) when\n// formatted but AYTF should retain all the number entered and not change\n// in order to match a format (of same leading digits and length) display\n// in that way.\"\n// \"If it's the same (i.e entered number and format is same), then it's\n// safe to return this in formatted number as nothing is lost / added.\"\n// Otherwise, don't use this format.\n// https://github.com/google/libphonenumber/commit/3e7c1f04f5e7200f87fb131e6f85c6e99d60f510#diff-9149457fa9f5d608a11bb975c6ef4bc5\n// https://github.com/google/libphonenumber/commit/3ac88c7106e7dcb553bcc794b15f19185928a1c6#diff-2dcb77e833422ee304da348b905cde0b\n//\n\n\nfunction isValidFormattedNationalNumber(formattedNationalNumber, state) {\n return parseDigits(formattedNationalNumber) === state.getNationalDigits();\n}\n//# sourceMappingURL=AsYouTypeFormatter.complete.js.map","function _classCallCheck(instance, Constructor) { if (!(instance instanceof Constructor)) { throw new TypeError(\"Cannot call a class as a function\"); } }\n\nfunction _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); } }\n\nfunction _createClass(Constructor, protoProps, staticProps) { if (protoProps) _defineProperties(Constructor.prototype, protoProps); if (staticProps) _defineProperties(Constructor, staticProps); Object.defineProperty(Constructor, \"prototype\", { writable: false }); return Constructor; }\n\nvar PatternParser = /*#__PURE__*/function () {\n function PatternParser() {\n _classCallCheck(this, PatternParser);\n }\n\n _createClass(PatternParser, [{\n key: \"parse\",\n value: function parse(pattern) {\n this.context = [{\n or: true,\n instructions: []\n }];\n this.parsePattern(pattern);\n\n if (this.context.length !== 1) {\n throw new Error('Non-finalized contexts left when pattern parse ended');\n }\n\n var _this$context$ = this.context[0],\n branches = _this$context$.branches,\n instructions = _this$context$.instructions;\n\n if (branches) {\n return {\n op: '|',\n args: branches.concat([expandSingleElementArray(instructions)])\n };\n }\n /* istanbul ignore if */\n\n\n if (instructions.length === 0) {\n throw new Error('Pattern is required');\n }\n\n if (instructions.length === 1) {\n return instructions[0];\n }\n\n return instructions;\n }\n }, {\n key: \"startContext\",\n value: function startContext(context) {\n this.context.push(context);\n }\n }, {\n key: \"endContext\",\n value: function endContext() {\n this.context.pop();\n }\n }, {\n key: \"getContext\",\n value: function getContext() {\n return this.context[this.context.length - 1];\n }\n }, {\n key: \"parsePattern\",\n value: function parsePattern(pattern) {\n if (!pattern) {\n throw new Error('Pattern is required');\n }\n\n var match = pattern.match(OPERATOR);\n\n if (!match) {\n if (ILLEGAL_CHARACTER_REGEXP.test(pattern)) {\n throw new Error(\"Illegal characters found in a pattern: \".concat(pattern));\n }\n\n this.getContext().instructions = this.getContext().instructions.concat(pattern.split(''));\n return;\n }\n\n var operator = match[1];\n var before = pattern.slice(0, match.index);\n var rightPart = pattern.slice(match.index + operator.length);\n\n switch (operator) {\n case '(?:':\n if (before) {\n this.parsePattern(before);\n }\n\n this.startContext({\n or: true,\n instructions: [],\n branches: []\n });\n break;\n\n case ')':\n if (!this.getContext().or) {\n throw new Error('\")\" operator must be preceded by \"(?:\" operator');\n }\n\n if (before) {\n this.parsePattern(before);\n }\n\n if (this.getContext().instructions.length === 0) {\n throw new Error('No instructions found after \"|\" operator in an \"or\" group');\n }\n\n var _this$getContext = this.getContext(),\n branches = _this$getContext.branches;\n\n branches.push(expandSingleElementArray(this.getContext().instructions));\n this.endContext();\n this.getContext().instructions.push({\n op: '|',\n args: branches\n });\n break;\n\n case '|':\n if (!this.getContext().or) {\n throw new Error('\"|\" operator can only be used inside \"or\" groups');\n }\n\n if (before) {\n this.parsePattern(before);\n } // The top-level is an implicit \"or\" group, if required.\n\n\n if (!this.getContext().branches) {\n // `branches` are not defined only for the root implicit \"or\" operator.\n\n /* istanbul ignore else */\n if (this.context.length === 1) {\n this.getContext().branches = [];\n } else {\n throw new Error('\"branches\" not found in an \"or\" group context');\n }\n }\n\n this.getContext().branches.push(expandSingleElementArray(this.getContext().instructions));\n this.getContext().instructions = [];\n break;\n\n case '[':\n if (before) {\n this.parsePattern(before);\n }\n\n this.startContext({\n oneOfSet: true\n });\n break;\n\n case ']':\n if (!this.getContext().oneOfSet) {\n throw new Error('\"]\" operator must be preceded by \"[\" operator');\n }\n\n this.endContext();\n this.getContext().instructions.push({\n op: '[]',\n args: parseOneOfSet(before)\n });\n break;\n\n /* istanbul ignore next */\n\n default:\n throw new Error(\"Unknown operator: \".concat(operator));\n }\n\n if (rightPart) {\n this.parsePattern(rightPart);\n }\n }\n }]);\n\n return PatternParser;\n}();\n\nexport { PatternParser as default };\n\nfunction parseOneOfSet(pattern) {\n var values = [];\n var i = 0;\n\n while (i < pattern.length) {\n if (pattern[i] === '-') {\n if (i === 0 || i === pattern.length - 1) {\n throw new Error(\"Couldn't parse a one-of set pattern: \".concat(pattern));\n }\n\n var prevValue = pattern[i - 1].charCodeAt(0) + 1;\n var nextValue = pattern[i + 1].charCodeAt(0) - 1;\n var value = prevValue;\n\n while (value <= nextValue) {\n values.push(String.fromCharCode(value));\n value++;\n }\n } else {\n values.push(pattern[i]);\n }\n\n i++;\n }\n\n return values;\n}\n\nvar ILLEGAL_CHARACTER_REGEXP = /[\\(\\)\\[\\]\\?\\:\\|]/;\nvar OPERATOR = new RegExp( // any of:\n'(' + // or operator\n'\\\\|' + // or\n'|' + // or group start\n'\\\\(\\\\?\\\\:' + // or\n'|' + // or group end\n'\\\\)' + // or\n'|' + // one-of set start\n'\\\\[' + // or\n'|' + // one-of set end\n'\\\\]' + ')');\n\nfunction expandSingleElementArray(array) {\n if (array.length === 1) {\n return array[0];\n }\n\n return array;\n}\n//# sourceMappingURL=AsYouTypeFormatter.PatternParser.js.map","function _createForOfIteratorHelperLoose(o, allowArrayLike) { var it = typeof Symbol !== \"undefined\" && o[Symbol.iterator] || o[\"@@iterator\"]; if (it) return (it = it.call(o)).next.bind(it); if (Array.isArray(o) || (it = _unsupportedIterableToArray(o)) || allowArrayLike && o && typeof o.length === \"number\") { if (it) o = it; var i = 0; return function () { if (i >= o.length) return { done: true }; return { done: false, value: o[i++] }; }; } throw new TypeError(\"Invalid attempt to iterate non-iterable instance.\\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method.\"); }\n\nfunction _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); }\n\nfunction _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; }\n\nfunction _classCallCheck(instance, Constructor) { if (!(instance instanceof Constructor)) { throw new TypeError(\"Cannot call a class as a function\"); } }\n\nfunction _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); } }\n\nfunction _createClass(Constructor, protoProps, staticProps) { if (protoProps) _defineProperties(Constructor.prototype, protoProps); if (staticProps) _defineProperties(Constructor, staticProps); Object.defineProperty(Constructor, \"prototype\", { writable: false }); return Constructor; }\n\nimport PatternParser from './AsYouTypeFormatter.PatternParser.js';\n\nvar PatternMatcher = /*#__PURE__*/function () {\n function PatternMatcher(pattern) {\n _classCallCheck(this, PatternMatcher);\n\n this.matchTree = new PatternParser().parse(pattern);\n }\n\n _createClass(PatternMatcher, [{\n key: \"match\",\n value: function match(string) {\n var _ref = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : {},\n allowOverflow = _ref.allowOverflow;\n\n if (!string) {\n throw new Error('String is required');\n }\n\n var result = _match(string.split(''), this.matchTree, true);\n\n if (result && result.match) {\n delete result.matchedChars;\n }\n\n if (result && result.overflow) {\n if (!allowOverflow) {\n return;\n }\n }\n\n return result;\n }\n }]);\n\n return PatternMatcher;\n}();\n/**\r\n * Matches `characters` against a pattern compiled into a `tree`.\r\n * @param {string[]} characters\r\n * @param {Tree} tree — A pattern compiled into a `tree`. See the `*.d.ts` file for the description of the `tree` structure.\r\n * @param {boolean} last — Whether it's the last (rightmost) subtree on its level of the match tree.\r\n * @return {object} See the `*.d.ts` file for the description of the result object.\r\n */\n\n\nexport { PatternMatcher as default };\n\nfunction _match(characters, tree, last) {\n // If `tree` is a string, then `tree` is a single character.\n // That's because when a pattern is parsed, multi-character-string parts\n // of a pattern are compiled into arrays of single characters.\n // I still wrote this piece of code for a \"general\" hypothetical case\n // when `tree` could be a string of several characters, even though\n // such case is not possible with the current implementation.\n if (typeof tree === 'string') {\n var characterString = characters.join('');\n\n if (tree.indexOf(characterString) === 0) {\n // `tree` is always a single character.\n // If `tree.indexOf(characterString) === 0`\n // then `characters.length === tree.length`.\n\n /* istanbul ignore else */\n if (characters.length === tree.length) {\n return {\n match: true,\n matchedChars: characters\n };\n } // `tree` is always a single character.\n // If `tree.indexOf(characterString) === 0`\n // then `characters.length === tree.length`.\n\n /* istanbul ignore next */\n\n\n return {\n partialMatch: true // matchedChars: characters\n\n };\n }\n\n if (characterString.indexOf(tree) === 0) {\n if (last) {\n // The `else` path is not possible because `tree` is always a single character.\n // The `else` case for `characters.length > tree.length` would be\n // `characters.length <= tree.length` which means `characters.length <= 1`.\n // `characters` array can't be empty, so that means `characters === [tree]`,\n // which would also mean `tree.indexOf(characterString) === 0` and that'd mean\n // that the `if (tree.indexOf(characterString) === 0)` condition before this\n // `if` condition would be entered, and returned from there, not reaching this code.\n\n /* istanbul ignore else */\n if (characters.length > tree.length) {\n return {\n overflow: true\n };\n }\n }\n\n return {\n match: true,\n matchedChars: characters.slice(0, tree.length)\n };\n }\n\n return;\n }\n\n if (Array.isArray(tree)) {\n var restCharacters = characters.slice();\n var i = 0;\n\n while (i < tree.length) {\n var subtree = tree[i];\n\n var result = _match(restCharacters, subtree, last && i === tree.length - 1);\n\n if (!result) {\n return;\n } else if (result.overflow) {\n return result;\n } else if (result.match) {\n // Continue with the next subtree with the rest of the characters.\n restCharacters = restCharacters.slice(result.matchedChars.length);\n\n if (restCharacters.length === 0) {\n if (i === tree.length - 1) {\n return {\n match: true,\n matchedChars: characters\n };\n } else {\n return {\n partialMatch: true // matchedChars: characters\n\n };\n }\n }\n } else {\n /* istanbul ignore else */\n if (result.partialMatch) {\n return {\n partialMatch: true // matchedChars: characters\n\n };\n } else {\n throw new Error(\"Unsupported match result:\\n\".concat(JSON.stringify(result, null, 2)));\n }\n }\n\n i++;\n } // If `last` then overflow has already been checked\n // by the last element of the `tree` array.\n\n /* istanbul ignore if */\n\n\n if (last) {\n return {\n overflow: true\n };\n }\n\n return {\n match: true,\n matchedChars: characters.slice(0, characters.length - restCharacters.length)\n };\n }\n\n switch (tree.op) {\n case '|':\n var partialMatch;\n\n for (var _iterator = _createForOfIteratorHelperLoose(tree.args), _step; !(_step = _iterator()).done;) {\n var branch = _step.value;\n\n var _result = _match(characters, branch, last);\n\n if (_result) {\n if (_result.overflow) {\n return _result;\n } else if (_result.match) {\n return {\n match: true,\n matchedChars: _result.matchedChars\n };\n } else {\n /* istanbul ignore else */\n if (_result.partialMatch) {\n partialMatch = true;\n } else {\n throw new Error(\"Unsupported match result:\\n\".concat(JSON.stringify(_result, null, 2)));\n }\n }\n }\n }\n\n if (partialMatch) {\n return {\n partialMatch: true // matchedChars: ...\n\n };\n } // Not even a partial match.\n\n\n return;\n\n case '[]':\n for (var _iterator2 = _createForOfIteratorHelperLoose(tree.args), _step2; !(_step2 = _iterator2()).done;) {\n var _char = _step2.value;\n\n if (characters[0] === _char) {\n if (characters.length === 1) {\n return {\n match: true,\n matchedChars: characters\n };\n }\n\n if (last) {\n return {\n overflow: true\n };\n }\n\n return {\n match: true,\n matchedChars: [_char]\n };\n }\n } // No character matches.\n\n\n return;\n\n /* istanbul ignore next */\n\n default:\n throw new Error(\"Unsupported instruction tree: \".concat(tree));\n }\n}\n//# sourceMappingURL=AsYouTypeFormatter.PatternMatcher.js.map","function _createForOfIteratorHelperLoose(o, allowArrayLike) { var it = typeof Symbol !== \"undefined\" && o[Symbol.iterator] || o[\"@@iterator\"]; if (it) return (it = it.call(o)).next.bind(it); if (Array.isArray(o) || (it = _unsupportedIterableToArray(o)) || allowArrayLike && o && typeof o.length === \"number\") { if (it) o = it; var i = 0; return function () { if (i >= o.length) return { done: true }; return { done: false, value: o[i++] }; }; } throw new TypeError(\"Invalid attempt to iterate non-iterable instance.\\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method.\"); }\n\nfunction _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); }\n\nfunction _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; }\n\nfunction _classCallCheck(instance, Constructor) { if (!(instance instanceof Constructor)) { throw new TypeError(\"Cannot call a class as a function\"); } }\n\nfunction _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); } }\n\nfunction _createClass(Constructor, protoProps, staticProps) { if (protoProps) _defineProperties(Constructor.prototype, protoProps); if (staticProps) _defineProperties(Constructor, staticProps); Object.defineProperty(Constructor, \"prototype\", { writable: false }); return Constructor; }\n\nimport { DIGIT_PLACEHOLDER, countOccurences, repeat, cutAndStripNonPairedParens, closeNonPairedParens, stripNonPairedParens, populateTemplateWithDigits } from './AsYouTypeFormatter.util.js';\nimport formatCompleteNumber, { canFormatCompleteNumber } from './AsYouTypeFormatter.complete.js';\nimport PatternMatcher from './AsYouTypeFormatter.PatternMatcher.js';\nimport parseDigits from './helpers/parseDigits.js';\nexport { DIGIT_PLACEHOLDER } from './AsYouTypeFormatter.util.js';\nimport { FIRST_GROUP_PATTERN } from './helpers/formatNationalNumberUsingFormat.js';\nimport { VALID_PUNCTUATION } from './constants.js';\nimport applyInternationalSeparatorStyle from './helpers/applyInternationalSeparatorStyle.js'; // Used in phone number format template creation.\n// Could be any digit, I guess.\n\nvar DUMMY_DIGIT = '9'; // I don't know why is it exactly `15`\n\nvar LONGEST_NATIONAL_PHONE_NUMBER_LENGTH = 15; // Create a phone number consisting only of the digit 9 that matches the\n// `number_pattern` by applying the pattern to the \"longest phone number\" string.\n\nvar LONGEST_DUMMY_PHONE_NUMBER = repeat(DUMMY_DIGIT, LONGEST_NATIONAL_PHONE_NUMBER_LENGTH); // A set of characters that, if found in a national prefix formatting rules, are an indicator to\n// us that we should separate the national prefix from the number when formatting.\n\nvar NATIONAL_PREFIX_SEPARATORS_PATTERN = /[- ]/; // Deprecated: Google has removed some formatting pattern related code from their repo.\n// https://github.com/googlei18n/libphonenumber/commit/a395b4fef3caf57c4bc5f082e1152a4d2bd0ba4c\n// \"We no longer have numbers in formatting matching patterns, only \\d.\"\n// Because this library supports generating custom metadata\n// some users may still be using old metadata so the relevant\n// code seems to stay until some next major version update.\n\nvar SUPPORT_LEGACY_FORMATTING_PATTERNS = true; // A pattern that is used to match character classes in regular expressions.\n// An example of a character class is \"[1-4]\".\n\nvar CREATE_CHARACTER_CLASS_PATTERN = SUPPORT_LEGACY_FORMATTING_PATTERNS && function () {\n return /\\[([^\\[\\]])*\\]/g;\n}; // Any digit in a regular expression that actually denotes a digit. For\n// example, in the regular expression \"80[0-2]\\d{6,10}\", the first 2 digits\n// (8 and 0) are standalone digits, but the rest are not.\n// Two look-aheads are needed because the number following \\\\d could be a\n// two-digit number, since the phone number can be as long as 15 digits.\n\n\nvar CREATE_STANDALONE_DIGIT_PATTERN = SUPPORT_LEGACY_FORMATTING_PATTERNS && function () {\n return /\\d(?=[^,}][^,}])/g;\n}; // A regular expression that is used to determine if a `format` is\n// suitable to be used in the \"as you type formatter\".\n// A `format` is suitable when the resulting formatted number has\n// the same digits as the user has entered.\n//\n// In the simplest case, that would mean that the format\n// doesn't add any additional digits when formatting a number.\n// Google says that it also shouldn't add \"star\" (`*`) characters,\n// like it does in some Israeli formats.\n// Such basic format would only contain \"valid punctuation\"\n// and \"captured group\" identifiers ($1, $2, etc).\n//\n// An example of a format that adds additional digits:\n//\n// Country: `AR` (Argentina).\n// Format:\n// {\n// \"pattern\": \"(\\\\d)(\\\\d{2})(\\\\d{4})(\\\\d{4})\",\n// \"leading_digits_patterns\": [\"91\"],\n// \"national_prefix_formatting_rule\": \"0$1\",\n// \"format\": \"$2 15-$3-$4\",\n// \"international_format\": \"$1 $2 $3-$4\"\n// }\n//\n// In the format above, the `format` adds `15` to the digits when formatting a number.\n// A sidenote: this format actually is suitable because `national_prefix_for_parsing`\n// has previously removed `15` from a national number, so re-adding `15` in `format`\n// doesn't actually result in any extra digits added to user's input.\n// But verifying that would be a complex procedure, so the code chooses a simpler path:\n// it simply filters out all `format`s that contain anything but \"captured group\" ids.\n//\n// This regular expression is called `ELIGIBLE_FORMAT_PATTERN` in Google's\n// `libphonenumber` code.\n//\n\n\nvar NON_ALTERING_FORMAT_REG_EXP = new RegExp('[' + VALID_PUNCTUATION + ']*' + // Google developers say:\n// \"We require that the first matching group is present in the\n// output pattern to ensure no data is lost while formatting.\"\n'\\\\$1' + '[' + VALID_PUNCTUATION + ']*' + '(\\\\$\\\\d[' + VALID_PUNCTUATION + ']*)*' + '$'); // This is the minimum length of the leading digits of a phone number\n// to guarantee the first \"leading digits pattern\" for a phone number format\n// to be preemptive.\n\nvar MIN_LEADING_DIGITS_LENGTH = 3;\n\nvar AsYouTypeFormatter = /*#__PURE__*/function () {\n function AsYouTypeFormatter(_ref) {\n var state = _ref.state,\n metadata = _ref.metadata;\n\n _classCallCheck(this, AsYouTypeFormatter);\n\n this.metadata = metadata;\n this.resetFormat();\n }\n\n _createClass(AsYouTypeFormatter, [{\n key: \"resetFormat\",\n value: function resetFormat() {\n this.chosenFormat = undefined;\n this.template = undefined;\n this.nationalNumberTemplate = undefined;\n this.populatedNationalNumberTemplate = undefined;\n this.populatedNationalNumberTemplatePosition = -1;\n }\n }, {\n key: \"reset\",\n value: function reset(numberingPlan, state) {\n this.resetFormat();\n\n if (numberingPlan) {\n this.isNANP = numberingPlan.callingCode() === '1';\n this.matchingFormats = numberingPlan.formats();\n\n if (state.nationalSignificantNumber) {\n this.narrowDownMatchingFormats(state);\n }\n } else {\n this.isNANP = undefined;\n this.matchingFormats = [];\n }\n }\n /**\r\n * Formats an updated phone number.\r\n * @param {string} nextDigits — Additional phone number digits.\r\n * @param {object} state — `AsYouType` state.\r\n * @return {[string]} Returns undefined if the updated phone number can't be formatted using any of the available formats.\r\n */\n\n }, {\n key: \"format\",\n value: function format(nextDigits, state) {\n var _this = this;\n\n // See if the phone number digits can be formatted as a complete phone number.\n // If not, use the results from `formatNationalNumberWithNextDigits()`,\n // which formats based on the chosen formatting pattern.\n //\n // Attempting to format complete phone number first is how it's done\n // in Google's `libphonenumber`, so this library just follows it.\n // Google's `libphonenumber` code doesn't explain in detail why does it\n // attempt to format digits as a complete phone number\n // instead of just going with a previoulsy (or newly) chosen `format`:\n //\n // \"Checks to see if there is an exact pattern match for these digits.\n // If so, we should use this instead of any other formatting template\n // whose leadingDigitsPattern also matches the input.\"\n //\n if (canFormatCompleteNumber(state.nationalSignificantNumber, this.metadata)) {\n for (var _iterator = _createForOfIteratorHelperLoose(this.matchingFormats), _step; !(_step = _iterator()).done;) {\n var format = _step.value;\n var formattedCompleteNumber = formatCompleteNumber(state, format, {\n metadata: this.metadata,\n shouldTryNationalPrefixFormattingRule: function shouldTryNationalPrefixFormattingRule(format) {\n return _this.shouldTryNationalPrefixFormattingRule(format, {\n international: state.international,\n nationalPrefix: state.nationalPrefix\n });\n },\n getSeparatorAfterNationalPrefix: function getSeparatorAfterNationalPrefix(format) {\n return _this.getSeparatorAfterNationalPrefix(format);\n }\n });\n\n if (formattedCompleteNumber) {\n this.resetFormat();\n this.chosenFormat = format;\n this.setNationalNumberTemplate(formattedCompleteNumber.replace(/\\d/g, DIGIT_PLACEHOLDER), state);\n this.populatedNationalNumberTemplate = formattedCompleteNumber; // With a new formatting template, the matched position\n // using the old template needs to be reset.\n\n this.populatedNationalNumberTemplatePosition = this.template.lastIndexOf(DIGIT_PLACEHOLDER);\n return formattedCompleteNumber;\n }\n }\n } // Format the digits as a partial (incomplete) phone number\n // using the previously chosen formatting pattern (or a newly chosen one).\n\n\n return this.formatNationalNumberWithNextDigits(nextDigits, state);\n } // Formats the next phone number digits.\n\n }, {\n key: \"formatNationalNumberWithNextDigits\",\n value: function formatNationalNumberWithNextDigits(nextDigits, state) {\n var previouslyChosenFormat = this.chosenFormat; // Choose a format from the list of matching ones.\n\n var newlyChosenFormat = this.chooseFormat(state);\n\n if (newlyChosenFormat) {\n if (newlyChosenFormat === previouslyChosenFormat) {\n // If it can format the next (current) digits\n // using the previously chosen phone number format\n // then return the updated formatted number.\n return this.formatNextNationalNumberDigits(nextDigits);\n } else {\n // If a more appropriate phone number format\n // has been chosen for these \"leading digits\",\n // then re-format the national phone number part\n // using the newly selected format.\n return this.formatNextNationalNumberDigits(state.getNationalDigits());\n }\n }\n }\n }, {\n key: \"narrowDownMatchingFormats\",\n value: function narrowDownMatchingFormats(_ref2) {\n var _this2 = this;\n\n var nationalSignificantNumber = _ref2.nationalSignificantNumber,\n nationalPrefix = _ref2.nationalPrefix,\n international = _ref2.international;\n var leadingDigits = nationalSignificantNumber; // \"leading digits\" pattern list starts with a\n // \"leading digits\" pattern fitting a maximum of 3 leading digits.\n // So, after a user inputs 3 digits of a national (significant) phone number\n // this national (significant) number can already be formatted.\n // The next \"leading digits\" pattern is for 4 leading digits max,\n // and the \"leading digits\" pattern after it is for 5 leading digits max, etc.\n // This implementation is different from Google's\n // in that it searches for a fitting format\n // even if the user has entered less than\n // `MIN_LEADING_DIGITS_LENGTH` digits of a national number.\n // Because some leading digit patterns already match for a single first digit.\n\n var leadingDigitsPatternIndex = leadingDigits.length - MIN_LEADING_DIGITS_LENGTH;\n\n if (leadingDigitsPatternIndex < 0) {\n leadingDigitsPatternIndex = 0;\n }\n\n this.matchingFormats = this.matchingFormats.filter(function (format) {\n return _this2.formatSuits(format, international, nationalPrefix) && _this2.formatMatches(format, leadingDigits, leadingDigitsPatternIndex);\n }); // If there was a phone number format chosen\n // and it no longer holds given the new leading digits then reset it.\n // The test for this `if` condition is marked as:\n // \"Reset a chosen format when it no longer holds given the new leading digits\".\n // To construct a valid test case for this one can find a country\n // in `PhoneNumberMetadata.xml` yielding one format for 3 ``\n // and yielding another format for 4 `` (Australia in this case).\n\n if (this.chosenFormat && this.matchingFormats.indexOf(this.chosenFormat) === -1) {\n this.resetFormat();\n }\n }\n }, {\n key: \"formatSuits\",\n value: function formatSuits(format, international, nationalPrefix) {\n // When a prefix before a national (significant) number is\n // simply a national prefix, then it's parsed as `this.nationalPrefix`.\n // In more complex cases, a prefix before national (significant) number\n // could include a national prefix as well as some \"capturing groups\",\n // and in that case there's no info whether a national prefix has been parsed.\n // If national prefix is not used when formatting a phone number\n // using this format, but a national prefix has been entered by the user,\n // and was extracted, then discard such phone number format.\n // In Google's \"AsYouType\" formatter code, the equivalent would be this part:\n // https://github.com/google/libphonenumber/blob/0a45cfd96e71cad8edb0e162a70fcc8bd9728933/java/libphonenumber/src/com/google/i18n/phonenumbers/AsYouTypeFormatter.java#L175-L184\n if (nationalPrefix && !format.usesNationalPrefix() && // !format.domesticCarrierCodeFormattingRule() &&\n !format.nationalPrefixIsOptionalWhenFormattingInNationalFormat()) {\n return false;\n } // If national prefix is mandatory for this phone number format\n // and there're no guarantees that a national prefix is present in user input\n // then discard this phone number format as not suitable.\n // In Google's \"AsYouType\" formatter code, the equivalent would be this part:\n // https://github.com/google/libphonenumber/blob/0a45cfd96e71cad8edb0e162a70fcc8bd9728933/java/libphonenumber/src/com/google/i18n/phonenumbers/AsYouTypeFormatter.java#L185-L193\n\n\n if (!international && !nationalPrefix && format.nationalPrefixIsMandatoryWhenFormattingInNationalFormat()) {\n return false;\n }\n\n return true;\n }\n }, {\n key: \"formatMatches\",\n value: function formatMatches(format, leadingDigits, leadingDigitsPatternIndex) {\n var leadingDigitsPatternsCount = format.leadingDigitsPatterns().length; // If this format is not restricted to a certain\n // leading digits pattern then it fits.\n // The test case could be found by searching for \"leadingDigitsPatternsCount === 0\".\n\n if (leadingDigitsPatternsCount === 0) {\n return true;\n } // Start narrowing down the list of possible formats based on the leading digits.\n // (only previously matched formats take part in the narrowing down process)\n // `leading_digits_patterns` start with 3 digits min\n // and then go up from there one digit at a time.\n\n\n leadingDigitsPatternIndex = Math.min(leadingDigitsPatternIndex, leadingDigitsPatternsCount - 1);\n var leadingDigitsPattern = format.leadingDigitsPatterns()[leadingDigitsPatternIndex]; // Google imposes a requirement on the leading digits\n // to be minimum 3 digits long in order to be eligible\n // for checking those with a leading digits pattern.\n //\n // Since `leading_digits_patterns` start with 3 digits min,\n // Google's original `libphonenumber` library only starts\n // excluding any non-matching formats only when the\n // national number entered so far is at least 3 digits long,\n // otherwise format matching would give false negatives.\n //\n // For example, when the digits entered so far are `2`\n // and the leading digits pattern is `21` –\n // it's quite obvious in this case that the format could be the one\n // but due to the absence of further digits it would give false negative.\n //\n // Also, `leading_digits_patterns` doesn't always correspond to a single\n // digits count. For example, `60|8` pattern would already match `8`\n // but the `60` part would require having at least two leading digits,\n // so the whole pattern would require inputting two digits first in order to\n // decide on whether it matches the input, even when the input is \"80\".\n //\n // This library — `libphonenumber-js` — allows filtering by `leading_digits_patterns`\n // even when there's only 1 or 2 digits of the national (significant) number.\n // To do that, it uses a non-strict pattern matcher written specifically for that.\n //\n\n if (leadingDigits.length < MIN_LEADING_DIGITS_LENGTH) {\n // Before leading digits < 3 matching was implemented:\n // return true\n //\n // After leading digits < 3 matching was implemented:\n try {\n return new PatternMatcher(leadingDigitsPattern).match(leadingDigits, {\n allowOverflow: true\n }) !== undefined;\n } catch (error)\n /* istanbul ignore next */\n {\n // There's a slight possibility that there could be some undiscovered bug\n // in the pattern matcher code. Since the \"leading digits < 3 matching\"\n // feature is not \"essential\" for operation, it can fall back to the old way\n // in case of any issues rather than halting the application's execution.\n console.error(error);\n return true;\n }\n } // If at least `MIN_LEADING_DIGITS_LENGTH` digits of a national number are\n // available then use the usual regular expression matching.\n //\n // The whole pattern is wrapped in round brackets (`()`) because\n // the pattern can use \"or\" operator (`|`) at the top level of the pattern.\n //\n\n\n return new RegExp(\"^(\".concat(leadingDigitsPattern, \")\")).test(leadingDigits);\n }\n }, {\n key: \"getFormatFormat\",\n value: function getFormatFormat(format, international) {\n return international ? format.internationalFormat() : format.format();\n }\n }, {\n key: \"chooseFormat\",\n value: function chooseFormat(state) {\n var _this3 = this;\n\n var _loop = function _loop() {\n var format = _step2.value;\n\n // If this format is currently being used\n // and is still suitable, then stick to it.\n if (_this3.chosenFormat === format) {\n return \"break\";\n } // Sometimes, a formatting rule inserts additional digits in a phone number,\n // and \"as you type\" formatter can't do that: it should only use the digits\n // that the user has input.\n //\n // For example, in Argentina, there's a format for mobile phone numbers:\n //\n // {\n // \"pattern\": \"(\\\\d)(\\\\d{2})(\\\\d{4})(\\\\d{4})\",\n // \"leading_digits_patterns\": [\"91\"],\n // \"national_prefix_formatting_rule\": \"0$1\",\n // \"format\": \"$2 15-$3-$4\",\n // \"international_format\": \"$1 $2 $3-$4\"\n // }\n //\n // In that format, `international_format` is used instead of `format`\n // because `format` inserts `15` in the formatted number,\n // and `AsYouType` formatter should only use the digits\n // the user has actually input, without adding any extra digits.\n // In this case, it wouldn't make a difference, because the `15`\n // is first stripped when applying `national_prefix_for_parsing`\n // and then re-added when using `format`, so in reality it doesn't\n // add any new digits to the number, but to detect that, the code\n // would have to be more complex: it would have to try formatting\n // the digits using the format and then see if any digits have\n // actually been added or removed, and then, every time a new digit\n // is input, it should re-check whether the chosen format doesn't\n // alter the digits.\n //\n // Google's code doesn't go that far, and so does this library:\n // it simply requires that a `format` doesn't add any additonal\n // digits to user's input.\n //\n // Also, people in general should move from inputting phone numbers\n // in national format (possibly with national prefixes)\n // and use international phone number format instead:\n // it's a logical thing in the modern age of mobile phones,\n // globalization and the internet.\n //\n\n /* istanbul ignore if */\n\n\n if (!NON_ALTERING_FORMAT_REG_EXP.test(_this3.getFormatFormat(format, state.international))) {\n return \"continue\";\n }\n\n if (!_this3.createTemplateForFormat(format, state)) {\n // Remove the format if it can't generate a template.\n _this3.matchingFormats = _this3.matchingFormats.filter(function (_) {\n return _ !== format;\n });\n return \"continue\";\n }\n\n _this3.chosenFormat = format;\n return \"break\";\n };\n\n // When there are multiple available formats, the formatter uses the first\n // format where a formatting template could be created.\n //\n // For some weird reason, `istanbul` says \"else path not taken\"\n // for the `for of` line below. Supposedly that means that\n // the loop doesn't ever go over the last element in the list.\n // That's true because there always is `this.chosenFormat`\n // when `this.matchingFormats` is non-empty.\n // And, for some weird reason, it doesn't think that the case\n // with empty `this.matchingFormats` qualifies for a valid \"else\" path.\n // So simply muting this `istanbul` warning.\n // It doesn't skip the contents of the `for of` loop,\n // it just skips the `for of` line.\n //\n\n /* istanbul ignore next */\n for (var _iterator2 = _createForOfIteratorHelperLoose(this.matchingFormats.slice()), _step2; !(_step2 = _iterator2()).done;) {\n var _ret = _loop();\n\n if (_ret === \"break\") break;\n if (_ret === \"continue\") continue;\n }\n\n if (!this.chosenFormat) {\n // No format matches the national (significant) phone number.\n this.resetFormat();\n }\n\n return this.chosenFormat;\n }\n }, {\n key: \"createTemplateForFormat\",\n value: function createTemplateForFormat(format, state) {\n // The formatter doesn't format numbers when numberPattern contains '|', e.g.\n // (20|3)\\d{4}. In those cases we quickly return.\n // (Though there's no such format in current metadata)\n\n /* istanbul ignore if */\n if (SUPPORT_LEGACY_FORMATTING_PATTERNS && format.pattern().indexOf('|') >= 0) {\n return;\n } // Get formatting template for this phone number format\n\n\n var template = this.getTemplateForFormat(format, state); // If the national number entered is too long\n // for any phone number format, then abort.\n\n if (template) {\n this.setNationalNumberTemplate(template, state);\n return true;\n }\n }\n }, {\n key: \"getSeparatorAfterNationalPrefix\",\n value: function getSeparatorAfterNationalPrefix(format) {\n // `US` metadata doesn't have a `national_prefix_formatting_rule`,\n // so the `if` condition below doesn't apply to `US`,\n // but in reality there shoudl be a separator\n // between a national prefix and a national (significant) number.\n // So `US` national prefix separator is a \"special\" \"hardcoded\" case.\n if (this.isNANP) {\n return ' ';\n } // If a `format` has a `national_prefix_formatting_rule`\n // and that rule has a separator after a national prefix,\n // then it means that there should be a separator\n // between a national prefix and a national (significant) number.\n\n\n if (format && format.nationalPrefixFormattingRule() && NATIONAL_PREFIX_SEPARATORS_PATTERN.test(format.nationalPrefixFormattingRule())) {\n return ' ';\n } // At this point, there seems to be no clear evidence that\n // there should be a separator between a national prefix\n // and a national (significant) number. So don't insert one.\n\n\n return '';\n }\n }, {\n key: \"getInternationalPrefixBeforeCountryCallingCode\",\n value: function getInternationalPrefixBeforeCountryCallingCode(_ref3, options) {\n var IDDPrefix = _ref3.IDDPrefix,\n missingPlus = _ref3.missingPlus;\n\n if (IDDPrefix) {\n return options && options.spacing === false ? IDDPrefix : IDDPrefix + ' ';\n }\n\n if (missingPlus) {\n return '';\n }\n\n return '+';\n }\n }, {\n key: \"getTemplate\",\n value: function getTemplate(state) {\n if (!this.template) {\n return;\n } // `this.template` holds the template for a \"complete\" phone number.\n // The currently entered phone number is most likely not \"complete\",\n // so trim all non-populated digits.\n\n\n var index = -1;\n var i = 0;\n var internationalPrefix = state.international ? this.getInternationalPrefixBeforeCountryCallingCode(state, {\n spacing: false\n }) : '';\n\n while (i < internationalPrefix.length + state.getDigitsWithoutInternationalPrefix().length) {\n index = this.template.indexOf(DIGIT_PLACEHOLDER, index + 1);\n i++;\n }\n\n return cutAndStripNonPairedParens(this.template, index + 1);\n }\n }, {\n key: \"setNationalNumberTemplate\",\n value: function setNationalNumberTemplate(template, state) {\n this.nationalNumberTemplate = template;\n this.populatedNationalNumberTemplate = template; // With a new formatting template, the matched position\n // using the old template needs to be reset.\n\n this.populatedNationalNumberTemplatePosition = -1; // For convenience, the public `.template` property\n // contains the whole international number\n // if the phone number being input is international:\n // 'x' for the '+' sign, 'x'es for the country phone code,\n // a spacebar and then the template for the formatted national number.\n\n if (state.international) {\n this.template = this.getInternationalPrefixBeforeCountryCallingCode(state).replace(/[\\d\\+]/g, DIGIT_PLACEHOLDER) + repeat(DIGIT_PLACEHOLDER, state.callingCode.length) + ' ' + template;\n } else {\n this.template = template;\n }\n }\n /**\r\n * Generates formatting template for a national phone number,\r\n * optionally containing a national prefix, for a format.\r\n * @param {Format} format\r\n * @param {string} nationalPrefix\r\n * @return {string}\r\n */\n\n }, {\n key: \"getTemplateForFormat\",\n value: function getTemplateForFormat(format, _ref4) {\n var nationalSignificantNumber = _ref4.nationalSignificantNumber,\n international = _ref4.international,\n nationalPrefix = _ref4.nationalPrefix,\n complexPrefixBeforeNationalSignificantNumber = _ref4.complexPrefixBeforeNationalSignificantNumber;\n var pattern = format.pattern();\n /* istanbul ignore else */\n\n if (SUPPORT_LEGACY_FORMATTING_PATTERNS) {\n pattern = pattern // Replace anything in the form of [..] with \\d\n .replace(CREATE_CHARACTER_CLASS_PATTERN(), '\\\\d') // Replace any standalone digit (not the one in `{}`) with \\d\n .replace(CREATE_STANDALONE_DIGIT_PATTERN(), '\\\\d');\n } // Generate a dummy national number (consisting of `9`s)\n // that fits this format's `pattern`.\n //\n // This match will always succeed,\n // because the \"longest dummy phone number\"\n // has enough length to accomodate any possible\n // national phone number format pattern.\n //\n\n\n var digits = LONGEST_DUMMY_PHONE_NUMBER.match(pattern)[0]; // If the national number entered is too long\n // for any phone number format, then abort.\n\n if (nationalSignificantNumber.length > digits.length) {\n return;\n } // Get a formatting template which can be used to efficiently format\n // a partial number where digits are added one by one.\n // Below `strictPattern` is used for the\n // regular expression (with `^` and `$`).\n // This wasn't originally in Google's `libphonenumber`\n // and I guess they don't really need it\n // because they're not using \"templates\" to format phone numbers\n // but I added `strictPattern` after encountering\n // South Korean phone number formatting bug.\n //\n // Non-strict regular expression bug demonstration:\n //\n // this.nationalSignificantNumber : `111111111` (9 digits)\n //\n // pattern : (\\d{2})(\\d{3,4})(\\d{4})\n // format : `$1 $2 $3`\n // digits : `9999999999` (10 digits)\n //\n // '9999999999'.replace(new RegExp(/(\\d{2})(\\d{3,4})(\\d{4})/g), '$1 $2 $3') = \"99 9999 9999\"\n //\n // template : xx xxxx xxxx\n //\n // But the correct template in this case is `xx xxx xxxx`.\n // The template was generated incorrectly because of the\n // `{3,4}` variability in the `pattern`.\n //\n // The fix is, if `this.nationalSignificantNumber` has already sufficient length\n // to satisfy the `pattern` completely then `this.nationalSignificantNumber`\n // is used instead of `digits`.\n\n\n var strictPattern = new RegExp('^' + pattern + '$');\n var nationalNumberDummyDigits = nationalSignificantNumber.replace(/\\d/g, DUMMY_DIGIT); // If `this.nationalSignificantNumber` has already sufficient length\n // to satisfy the `pattern` completely then use it\n // instead of `digits`.\n\n if (strictPattern.test(nationalNumberDummyDigits)) {\n digits = nationalNumberDummyDigits;\n }\n\n var numberFormat = this.getFormatFormat(format, international);\n var nationalPrefixIncludedInTemplate; // If a user did input a national prefix (and that's guaranteed),\n // and if a `format` does have a national prefix formatting rule,\n // then see if that national prefix formatting rule\n // prepends exactly the same national prefix the user has input.\n // If that's the case, then use the `format` with the national prefix formatting rule.\n // Otherwise, use the `format` without the national prefix formatting rule,\n // and prepend a national prefix manually to it.\n\n if (this.shouldTryNationalPrefixFormattingRule(format, {\n international: international,\n nationalPrefix: nationalPrefix\n })) {\n var numberFormatWithNationalPrefix = numberFormat.replace(FIRST_GROUP_PATTERN, format.nationalPrefixFormattingRule()); // If `national_prefix_formatting_rule` of a `format` simply prepends\n // national prefix at the start of a national (significant) number,\n // then such formatting can be used with `AsYouType` formatter.\n // There seems to be no `else` case: everywhere in metadata,\n // national prefix formatting rule is national prefix + $1,\n // or `($1)`, in which case such format isn't even considered\n // when the user has input a national prefix.\n\n /* istanbul ignore else */\n\n if (parseDigits(format.nationalPrefixFormattingRule()) === (nationalPrefix || '') + parseDigits('$1')) {\n numberFormat = numberFormatWithNationalPrefix;\n nationalPrefixIncludedInTemplate = true; // Replace all digits of the national prefix in the formatting template\n // with `DIGIT_PLACEHOLDER`s.\n\n if (nationalPrefix) {\n var i = nationalPrefix.length;\n\n while (i > 0) {\n numberFormat = numberFormat.replace(/\\d/, DIGIT_PLACEHOLDER);\n i--;\n }\n }\n }\n } // Generate formatting template for this phone number format.\n\n\n var template = digits // Format the dummy phone number according to the format.\n .replace(new RegExp(pattern), numberFormat) // Replace each dummy digit with a DIGIT_PLACEHOLDER.\n .replace(new RegExp(DUMMY_DIGIT, 'g'), DIGIT_PLACEHOLDER); // If a prefix of a national (significant) number is not as simple\n // as just a basic national prefix, then just prepend such prefix\n // before the national (significant) number, optionally spacing\n // the two with a whitespace.\n\n if (!nationalPrefixIncludedInTemplate) {\n if (complexPrefixBeforeNationalSignificantNumber) {\n // Prepend the prefix to the template manually.\n template = repeat(DIGIT_PLACEHOLDER, complexPrefixBeforeNationalSignificantNumber.length) + ' ' + template;\n } else if (nationalPrefix) {\n // Prepend national prefix to the template manually.\n template = repeat(DIGIT_PLACEHOLDER, nationalPrefix.length) + this.getSeparatorAfterNationalPrefix(format) + template;\n }\n }\n\n if (international) {\n template = applyInternationalSeparatorStyle(template);\n }\n\n return template;\n }\n }, {\n key: \"formatNextNationalNumberDigits\",\n value: function formatNextNationalNumberDigits(digits) {\n var result = populateTemplateWithDigits(this.populatedNationalNumberTemplate, this.populatedNationalNumberTemplatePosition, digits);\n\n if (!result) {\n // Reset the format.\n this.resetFormat();\n return;\n }\n\n this.populatedNationalNumberTemplate = result[0];\n this.populatedNationalNumberTemplatePosition = result[1]; // Return the formatted phone number so far.\n\n return cutAndStripNonPairedParens(this.populatedNationalNumberTemplate, this.populatedNationalNumberTemplatePosition + 1); // The old way which was good for `input-format` but is not so good\n // for `react-phone-number-input`'s default input (`InputBasic`).\n // return closeNonPairedParens(this.populatedNationalNumberTemplate, this.populatedNationalNumberTemplatePosition + 1)\n // \t.replace(new RegExp(DIGIT_PLACEHOLDER, 'g'), ' ')\n }\n }, {\n key: \"shouldTryNationalPrefixFormattingRule\",\n value: function shouldTryNationalPrefixFormattingRule(format, _ref5) {\n var international = _ref5.international,\n nationalPrefix = _ref5.nationalPrefix;\n\n if (format.nationalPrefixFormattingRule()) {\n // In some countries, `national_prefix_formatting_rule` is `($1)`,\n // so it applies even if the user hasn't input a national prefix.\n // `format.usesNationalPrefix()` detects such cases.\n var usesNationalPrefix = format.usesNationalPrefix();\n\n if (usesNationalPrefix && nationalPrefix || !usesNationalPrefix && !international) {\n return true;\n }\n }\n }\n }]);\n\n return AsYouTypeFormatter;\n}();\n\nexport { AsYouTypeFormatter as default };\n//# sourceMappingURL=AsYouTypeFormatter.js.map","function _slicedToArray(arr, i) { return _arrayWithHoles(arr) || _iterableToArrayLimit(arr, i) || _unsupportedIterableToArray(arr, i) || _nonIterableRest(); }\n\nfunction _nonIterableRest() { throw new TypeError(\"Invalid attempt to destructure non-iterable instance.\\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method.\"); }\n\nfunction _unsupportedIterableToArray(o, minLen) { if (!o) return; if (typeof o === \"string\") return _arrayLikeToArray(o, minLen); var n = Object.prototype.toString.call(o).slice(8, -1); if (n === \"Object\" && o.constructor) n = o.constructor.name; if (n === \"Map\" || n === \"Set\") return Array.from(o); if (n === \"Arguments\" || /^(?:Ui|I)nt(?:8|16|32)(?:Clamped)?Array$/.test(n)) return _arrayLikeToArray(o, minLen); }\n\nfunction _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; }\n\nfunction _iterableToArrayLimit(arr, i) { var _i = arr == null ? null : typeof Symbol !== \"undefined\" && arr[Symbol.iterator] || arr[\"@@iterator\"]; if (_i == null) return; var _arr = []; var _n = true; var _d = false; var _s, _e; try { for (_i = _i.call(arr); !(_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; }\n\nfunction _arrayWithHoles(arr) { if (Array.isArray(arr)) return arr; }\n\nfunction _classCallCheck(instance, Constructor) { if (!(instance instanceof Constructor)) { throw new TypeError(\"Cannot call a class as a function\"); } }\n\nfunction _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); } }\n\nfunction _createClass(Constructor, protoProps, staticProps) { if (protoProps) _defineProperties(Constructor.prototype, protoProps); if (staticProps) _defineProperties(Constructor, staticProps); Object.defineProperty(Constructor, \"prototype\", { writable: false }); return Constructor; }\n\nimport _extractCountryCallingCode from './helpers/extractCountryCallingCode.js';\nimport extractCountryCallingCodeFromInternationalNumberWithoutPlusSign from './helpers/extractCountryCallingCodeFromInternationalNumberWithoutPlusSign.js';\nimport extractNationalNumberFromPossiblyIncompleteNumber from './helpers/extractNationalNumberFromPossiblyIncompleteNumber.js';\nimport stripIddPrefix from './helpers/stripIddPrefix.js';\nimport parseDigits from './helpers/parseDigits.js';\nimport { VALID_DIGITS, VALID_PUNCTUATION, PLUS_CHARS } from './constants.js';\nvar VALID_FORMATTED_PHONE_NUMBER_DIGITS_PART = '[' + VALID_PUNCTUATION + VALID_DIGITS + ']+';\nvar VALID_FORMATTED_PHONE_NUMBER_DIGITS_PART_PATTERN = new RegExp('^' + VALID_FORMATTED_PHONE_NUMBER_DIGITS_PART + '$', 'i');\nvar VALID_FORMATTED_PHONE_NUMBER_PART = '(?:' + '[' + PLUS_CHARS + ']' + '[' + VALID_PUNCTUATION + VALID_DIGITS + ']*' + '|' + '[' + VALID_PUNCTUATION + VALID_DIGITS + ']+' + ')';\nvar AFTER_PHONE_NUMBER_DIGITS_END_PATTERN = new RegExp('[^' + VALID_PUNCTUATION + VALID_DIGITS + ']+' + '.*' + '$'); // Tests whether `national_prefix_for_parsing` could match\n// different national prefixes.\n// Matches anything that's not a digit or a square bracket.\n\nvar COMPLEX_NATIONAL_PREFIX = /[^\\d\\[\\]]/;\n\nvar AsYouTypeParser = /*#__PURE__*/function () {\n function AsYouTypeParser(_ref) {\n var defaultCountry = _ref.defaultCountry,\n defaultCallingCode = _ref.defaultCallingCode,\n metadata = _ref.metadata,\n onNationalSignificantNumberChange = _ref.onNationalSignificantNumberChange;\n\n _classCallCheck(this, AsYouTypeParser);\n\n this.defaultCountry = defaultCountry;\n this.defaultCallingCode = defaultCallingCode;\n this.metadata = metadata;\n this.onNationalSignificantNumberChange = onNationalSignificantNumberChange;\n }\n\n _createClass(AsYouTypeParser, [{\n key: \"input\",\n value: function input(text, state) {\n var _extractFormattedDigi = extractFormattedDigitsAndPlus(text),\n _extractFormattedDigi2 = _slicedToArray(_extractFormattedDigi, 2),\n formattedDigits = _extractFormattedDigi2[0],\n hasPlus = _extractFormattedDigi2[1];\n\n var digits = parseDigits(formattedDigits); // Checks for a special case: just a leading `+` has been entered.\n\n var justLeadingPlus;\n\n if (hasPlus) {\n if (!state.digits) {\n state.startInternationalNumber();\n\n if (!digits) {\n justLeadingPlus = true;\n }\n }\n }\n\n if (digits) {\n this.inputDigits(digits, state);\n }\n\n return {\n digits: digits,\n justLeadingPlus: justLeadingPlus\n };\n }\n /**\r\n * Inputs \"next\" phone number digits.\r\n * @param {string} digits\r\n * @return {string} [formattedNumber] Formatted national phone number (if it can be formatted at this stage). Returning `undefined` means \"don't format the national phone number at this stage\".\r\n */\n\n }, {\n key: \"inputDigits\",\n value: function inputDigits(nextDigits, state) {\n var digits = state.digits;\n var hasReceivedThreeLeadingDigits = digits.length < 3 && digits.length + nextDigits.length >= 3; // Append phone number digits.\n\n state.appendDigits(nextDigits); // Attempt to extract IDD prefix:\n // Some users input their phone number in international format,\n // but in an \"out-of-country\" dialing format instead of using the leading `+`.\n // https://github.com/catamphetamine/libphonenumber-js/issues/185\n // Detect such numbers as soon as there're at least 3 digits.\n // Google's library attempts to extract IDD prefix at 3 digits,\n // so this library just copies that behavior.\n // I guess that's because the most commot IDD prefixes are\n // `00` (Europe) and `011` (US).\n // There exist really long IDD prefixes too:\n // for example, in Australia the default IDD prefix is `0011`,\n // and it could even be as long as `14880011`.\n // An IDD prefix is extracted here, and then every time when\n // there's a new digit and the number couldn't be formatted.\n\n if (hasReceivedThreeLeadingDigits) {\n this.extractIddPrefix(state);\n }\n\n if (this.isWaitingForCountryCallingCode(state)) {\n if (!this.extractCountryCallingCode(state)) {\n return;\n }\n } else {\n state.appendNationalSignificantNumberDigits(nextDigits);\n } // If a phone number is being input in international format,\n // then it's not valid for it to have a national prefix.\n // Still, some people incorrectly input such numbers with a national prefix.\n // In such cases, only attempt to strip a national prefix if the number becomes too long.\n // (but that is done later, not here)\n\n\n if (!state.international) {\n if (!this.hasExtractedNationalSignificantNumber) {\n this.extractNationalSignificantNumber(state.getNationalDigits(), function (stateUpdate) {\n return state.update(stateUpdate);\n });\n }\n }\n }\n }, {\n key: \"isWaitingForCountryCallingCode\",\n value: function isWaitingForCountryCallingCode(_ref2) {\n var international = _ref2.international,\n callingCode = _ref2.callingCode;\n return international && !callingCode;\n } // Extracts a country calling code from a number\n // being entered in internatonal format.\n\n }, {\n key: \"extractCountryCallingCode\",\n value: function extractCountryCallingCode(state) {\n var _extractCountryCallin = _extractCountryCallingCode('+' + state.getDigitsWithoutInternationalPrefix(), this.defaultCountry, this.defaultCallingCode, this.metadata.metadata),\n countryCallingCode = _extractCountryCallin.countryCallingCode,\n number = _extractCountryCallin.number;\n\n if (countryCallingCode) {\n state.setCallingCode(countryCallingCode);\n state.update({\n nationalSignificantNumber: number\n });\n return true;\n }\n }\n }, {\n key: \"reset\",\n value: function reset(numberingPlan) {\n if (numberingPlan) {\n this.hasSelectedNumberingPlan = true;\n\n var nationalPrefixForParsing = numberingPlan._nationalPrefixForParsing();\n\n this.couldPossiblyExtractAnotherNationalSignificantNumber = nationalPrefixForParsing && COMPLEX_NATIONAL_PREFIX.test(nationalPrefixForParsing);\n } else {\n this.hasSelectedNumberingPlan = undefined;\n this.couldPossiblyExtractAnotherNationalSignificantNumber = undefined;\n }\n }\n /**\r\n * Extracts a national (significant) number from user input.\r\n * Google's library is different in that it only applies `national_prefix_for_parsing`\r\n * and doesn't apply `national_prefix_transform_rule` after that.\r\n * https://github.com/google/libphonenumber/blob/a3d70b0487875475e6ad659af404943211d26456/java/libphonenumber/src/com/google/i18n/phonenumbers/AsYouTypeFormatter.java#L539\r\n * @return {boolean} [extracted]\r\n */\n\n }, {\n key: \"extractNationalSignificantNumber\",\n value: function extractNationalSignificantNumber(nationalDigits, setState) {\n if (!this.hasSelectedNumberingPlan) {\n return;\n }\n\n var _extractNationalNumbe = extractNationalNumberFromPossiblyIncompleteNumber(nationalDigits, this.metadata),\n nationalPrefix = _extractNationalNumbe.nationalPrefix,\n nationalNumber = _extractNationalNumbe.nationalNumber,\n carrierCode = _extractNationalNumbe.carrierCode;\n\n if (nationalNumber === nationalDigits) {\n return;\n }\n\n this.onExtractedNationalNumber(nationalPrefix, carrierCode, nationalNumber, nationalDigits, setState);\n return true;\n }\n /**\r\n * In Google's code this function is called \"attempt to extract longer NDD\".\r\n * \"Some national prefixes are a substring of others\", they say.\r\n * @return {boolean} [result] — Returns `true` if extracting a national prefix produced different results from what they were.\r\n */\n\n }, {\n key: \"extractAnotherNationalSignificantNumber\",\n value: function extractAnotherNationalSignificantNumber(nationalDigits, prevNationalSignificantNumber, setState) {\n if (!this.hasExtractedNationalSignificantNumber) {\n return this.extractNationalSignificantNumber(nationalDigits, setState);\n }\n\n if (!this.couldPossiblyExtractAnotherNationalSignificantNumber) {\n return;\n }\n\n var _extractNationalNumbe2 = extractNationalNumberFromPossiblyIncompleteNumber(nationalDigits, this.metadata),\n nationalPrefix = _extractNationalNumbe2.nationalPrefix,\n nationalNumber = _extractNationalNumbe2.nationalNumber,\n carrierCode = _extractNationalNumbe2.carrierCode; // If a national prefix has been extracted previously,\n // then it's always extracted as additional digits are added.\n // That's assuming `extractNationalNumberFromPossiblyIncompleteNumber()`\n // doesn't do anything different from what it currently does.\n // So, just in case, here's this check, though it doesn't occur.\n\n /* istanbul ignore if */\n\n\n if (nationalNumber === prevNationalSignificantNumber) {\n return;\n }\n\n this.onExtractedNationalNumber(nationalPrefix, carrierCode, nationalNumber, nationalDigits, setState);\n return true;\n }\n }, {\n key: \"onExtractedNationalNumber\",\n value: function onExtractedNationalNumber(nationalPrefix, carrierCode, nationalSignificantNumber, nationalDigits, setState) {\n var complexPrefixBeforeNationalSignificantNumber;\n var nationalSignificantNumberMatchesInput; // This check also works with empty `this.nationalSignificantNumber`.\n\n var nationalSignificantNumberIndex = nationalDigits.lastIndexOf(nationalSignificantNumber); // If the extracted national (significant) number is the\n // last substring of the `digits`, then it means that it hasn't been altered:\n // no digits have been removed from the national (significant) number\n // while applying `national_prefix_transform_rule`.\n // https://gitlab.com/catamphetamine/libphonenumber-js/-/blob/master/METADATA.md#national_prefix_for_parsing--national_prefix_transform_rule\n\n if (nationalSignificantNumberIndex >= 0 && nationalSignificantNumberIndex === nationalDigits.length - nationalSignificantNumber.length) {\n nationalSignificantNumberMatchesInput = true; // If a prefix of a national (significant) number is not as simple\n // as just a basic national prefix, then such prefix is stored in\n // `this.complexPrefixBeforeNationalSignificantNumber` property and will be\n // prepended \"as is\" to the national (significant) number to produce\n // a formatted result.\n\n var prefixBeforeNationalNumber = nationalDigits.slice(0, nationalSignificantNumberIndex); // `prefixBeforeNationalNumber` is always non-empty,\n // because `onExtractedNationalNumber()` isn't called\n // when a national (significant) number hasn't been actually \"extracted\":\n // when a national (significant) number is equal to the national part of `digits`,\n // then `onExtractedNationalNumber()` doesn't get called.\n\n if (prefixBeforeNationalNumber !== nationalPrefix) {\n complexPrefixBeforeNationalSignificantNumber = prefixBeforeNationalNumber;\n }\n }\n\n setState({\n nationalPrefix: nationalPrefix,\n carrierCode: carrierCode,\n nationalSignificantNumber: nationalSignificantNumber,\n nationalSignificantNumberMatchesInput: nationalSignificantNumberMatchesInput,\n complexPrefixBeforeNationalSignificantNumber: complexPrefixBeforeNationalSignificantNumber\n }); // `onExtractedNationalNumber()` is only called when\n // the national (significant) number actually did change.\n\n this.hasExtractedNationalSignificantNumber = true;\n this.onNationalSignificantNumberChange();\n }\n }, {\n key: \"reExtractNationalSignificantNumber\",\n value: function reExtractNationalSignificantNumber(state) {\n // Attempt to extract a national prefix.\n //\n // Some people incorrectly input national prefix\n // in an international phone number.\n // For example, some people write British phone numbers as `+44(0)...`.\n //\n // Also, in some rare cases, it is valid for a national prefix\n // to be a part of an international phone number.\n // For example, mobile phone numbers in Mexico are supposed to be\n // dialled internationally using a `1` national prefix,\n // so the national prefix will be part of an international number.\n //\n // Quote from:\n // https://www.mexperience.com/dialing-cell-phones-in-mexico/\n //\n // \"Dialing a Mexican cell phone from abroad\n // When you are calling a cell phone number in Mexico from outside Mexico,\n // it’s necessary to dial an additional “1” after Mexico’s country code\n // (which is “52”) and before the area code.\n // You also ignore the 045, and simply dial the area code and the\n // cell phone’s number.\n //\n // If you don’t add the “1”, you’ll receive a recorded announcement\n // asking you to redial using it.\n //\n // For example, if you are calling from the USA to a cell phone\n // in Mexico City, you would dial +52 – 1 – 55 – 1234 5678.\n // (Note that this is different to calling a land line in Mexico City\n // from abroad, where the number dialed would be +52 – 55 – 1234 5678)\".\n //\n // Google's demo output:\n // https://libphonenumber.appspot.com/phonenumberparser?number=%2b5215512345678&country=MX\n //\n if (this.extractAnotherNationalSignificantNumber(state.getNationalDigits(), state.nationalSignificantNumber, function (stateUpdate) {\n return state.update(stateUpdate);\n })) {\n return true;\n } // If no format matches the phone number, then it could be\n // \"a really long IDD\" (quote from a comment in Google's library).\n // An IDD prefix is first extracted when the user has entered at least 3 digits,\n // and then here — every time when there's a new digit and the number\n // couldn't be formatted.\n // For example, in Australia the default IDD prefix is `0011`,\n // and it could even be as long as `14880011`.\n //\n // Could also check `!hasReceivedThreeLeadingDigits` here\n // to filter out the case when this check duplicates the one\n // already performed when there're 3 leading digits,\n // but it's not a big deal, and in most cases there\n // will be a suitable `format` when there're 3 leading digits.\n //\n\n\n if (this.extractIddPrefix(state)) {\n this.extractCallingCodeAndNationalSignificantNumber(state);\n return true;\n } // Google's AsYouType formatter supports sort of an \"autocorrection\" feature\n // when it \"autocorrects\" numbers that have been input for a country\n // with that country's calling code.\n // Such \"autocorrection\" feature looks weird, but different people have been requesting it:\n // https://github.com/catamphetamine/libphonenumber-js/issues/376\n // https://github.com/catamphetamine/libphonenumber-js/issues/375\n // https://github.com/catamphetamine/libphonenumber-js/issues/316\n\n\n if (this.fixMissingPlus(state)) {\n this.extractCallingCodeAndNationalSignificantNumber(state);\n return true;\n }\n }\n }, {\n key: \"extractIddPrefix\",\n value: function extractIddPrefix(state) {\n // An IDD prefix can't be present in a number written with a `+`.\n // Also, don't re-extract an IDD prefix if has already been extracted.\n var international = state.international,\n IDDPrefix = state.IDDPrefix,\n digits = state.digits,\n nationalSignificantNumber = state.nationalSignificantNumber;\n\n if (international || IDDPrefix) {\n return;\n } // Some users input their phone number in \"out-of-country\"\n // dialing format instead of using the leading `+`.\n // https://github.com/catamphetamine/libphonenumber-js/issues/185\n // Detect such numbers.\n\n\n var numberWithoutIDD = stripIddPrefix(digits, this.defaultCountry, this.defaultCallingCode, this.metadata.metadata);\n\n if (numberWithoutIDD !== undefined && numberWithoutIDD !== digits) {\n // If an IDD prefix was stripped then convert the IDD-prefixed number\n // to international number for subsequent parsing.\n state.update({\n IDDPrefix: digits.slice(0, digits.length - numberWithoutIDD.length)\n });\n this.startInternationalNumber(state, {\n country: undefined,\n callingCode: undefined\n });\n return true;\n }\n }\n }, {\n key: \"fixMissingPlus\",\n value: function fixMissingPlus(state) {\n if (!state.international) {\n var _extractCountryCallin2 = extractCountryCallingCodeFromInternationalNumberWithoutPlusSign(state.digits, this.defaultCountry, this.defaultCallingCode, this.metadata.metadata),\n newCallingCode = _extractCountryCallin2.countryCallingCode,\n number = _extractCountryCallin2.number;\n\n if (newCallingCode) {\n state.update({\n missingPlus: true\n });\n this.startInternationalNumber(state, {\n country: state.country,\n callingCode: newCallingCode\n });\n return true;\n }\n }\n }\n }, {\n key: \"startInternationalNumber\",\n value: function startInternationalNumber(state, _ref3) {\n var country = _ref3.country,\n callingCode = _ref3.callingCode;\n state.startInternationalNumber(country, callingCode); // If a national (significant) number has been extracted before, reset it.\n\n if (state.nationalSignificantNumber) {\n state.resetNationalSignificantNumber();\n this.onNationalSignificantNumberChange();\n this.hasExtractedNationalSignificantNumber = undefined;\n }\n }\n }, {\n key: \"extractCallingCodeAndNationalSignificantNumber\",\n value: function extractCallingCodeAndNationalSignificantNumber(state) {\n if (this.extractCountryCallingCode(state)) {\n // `this.extractCallingCode()` is currently called when the number\n // couldn't be formatted during the standard procedure.\n // Normally, the national prefix would be re-extracted\n // for an international number if such number couldn't be formatted,\n // but since it's already not able to be formatted,\n // there won't be yet another retry, so also extract national prefix here.\n this.extractNationalSignificantNumber(state.getNationalDigits(), function (stateUpdate) {\n return state.update(stateUpdate);\n });\n }\n }\n }]);\n\n return AsYouTypeParser;\n}();\n/**\r\n * Extracts formatted phone number from text (if there's any).\r\n * @param {string} text\r\n * @return {string} [formattedPhoneNumber]\r\n */\n\n\nexport { AsYouTypeParser as default };\n\nfunction extractFormattedPhoneNumber(text) {\n // Attempt to extract a possible number from the string passed in.\n var startsAt = text.search(VALID_FORMATTED_PHONE_NUMBER_PART);\n\n if (startsAt < 0) {\n return;\n } // Trim everything to the left of the phone number.\n\n\n text = text.slice(startsAt); // Trim the `+`.\n\n var hasPlus;\n\n if (text[0] === '+') {\n hasPlus = true;\n text = text.slice('+'.length);\n } // Trim everything to the right of the phone number.\n\n\n text = text.replace(AFTER_PHONE_NUMBER_DIGITS_END_PATTERN, ''); // Re-add the previously trimmed `+`.\n\n if (hasPlus) {\n text = '+' + text;\n }\n\n return text;\n}\n/**\r\n * Extracts formatted phone number digits (and a `+`) from text (if there're any).\r\n * @param {string} text\r\n * @return {any[]}\r\n */\n\n\nfunction _extractFormattedDigitsAndPlus(text) {\n // Extract a formatted phone number part from text.\n var extractedNumber = extractFormattedPhoneNumber(text) || ''; // Trim a `+`.\n\n if (extractedNumber[0] === '+') {\n return [extractedNumber.slice('+'.length), true];\n }\n\n return [extractedNumber];\n}\n/**\r\n * Extracts formatted phone number digits (and a `+`) from text (if there're any).\r\n * @param {string} text\r\n * @return {any[]}\r\n */\n\n\nexport function extractFormattedDigitsAndPlus(text) {\n var _extractFormattedDigi3 = _extractFormattedDigitsAndPlus(text),\n _extractFormattedDigi4 = _slicedToArray(_extractFormattedDigi3, 2),\n formattedDigits = _extractFormattedDigi4[0],\n hasPlus = _extractFormattedDigi4[1]; // If the extracted phone number part\n // can possibly be a part of some valid phone number\n // then parse phone number characters from a formatted phone number.\n\n\n if (!VALID_FORMATTED_PHONE_NUMBER_DIGITS_PART_PATTERN.test(formattedDigits)) {\n formattedDigits = '';\n }\n\n return [formattedDigits, hasPlus];\n}\n//# sourceMappingURL=AsYouTypeParser.js.map","function _slicedToArray(arr, i) { return _arrayWithHoles(arr) || _iterableToArrayLimit(arr, i) || _unsupportedIterableToArray(arr, i) || _nonIterableRest(); }\n\nfunction _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.\"); }\n\nfunction _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); }\n\nfunction _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; }\n\nfunction _iterableToArrayLimit(arr, i) { var _i = arr == null ? null : typeof Symbol !== \"undefined\" && arr[Symbol.iterator] || arr[\"@@iterator\"]; if (_i == null) return; var _arr = []; var _n = true; var _d = false; var _s, _e; try { for (_i = _i.call(arr); !(_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; }\n\nfunction _arrayWithHoles(arr) { if (Array.isArray(arr)) return arr; }\n\nfunction _classCallCheck(instance, Constructor) { if (!(instance instanceof Constructor)) { throw new TypeError(\"Cannot call a class as a function\"); } }\n\nfunction _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); } }\n\nfunction _createClass(Constructor, protoProps, staticProps) { if (protoProps) _defineProperties(Constructor.prototype, protoProps); if (staticProps) _defineProperties(Constructor, staticProps); Object.defineProperty(Constructor, \"prototype\", { writable: false }); return Constructor; }\n\nimport Metadata from './metadata.js';\nimport PhoneNumber from './PhoneNumber.js';\nimport AsYouTypeState from './AsYouTypeState.js';\nimport AsYouTypeFormatter, { DIGIT_PLACEHOLDER } from './AsYouTypeFormatter.js';\nimport AsYouTypeParser, { extractFormattedDigitsAndPlus } from './AsYouTypeParser.js';\nimport getCountryByCallingCode from './helpers/getCountryByCallingCode.js';\nimport getCountryByNationalNumber from './helpers/getCountryByNationalNumber.js';\nimport isObject from './helpers/isObject.js';\nvar USE_NON_GEOGRAPHIC_COUNTRY_CODE = false;\n\nvar AsYouType = /*#__PURE__*/function () {\n /**\r\n * @param {(string|object)?} [optionsOrDefaultCountry] - The default country used for parsing non-international phone numbers. Can also be an `options` object.\r\n * @param {Object} metadata\r\n */\n function AsYouType(optionsOrDefaultCountry, metadata) {\n _classCallCheck(this, AsYouType);\n\n this.metadata = new Metadata(metadata);\n\n var _this$getCountryAndCa = this.getCountryAndCallingCode(optionsOrDefaultCountry),\n _this$getCountryAndCa2 = _slicedToArray(_this$getCountryAndCa, 2),\n defaultCountry = _this$getCountryAndCa2[0],\n defaultCallingCode = _this$getCountryAndCa2[1]; // `this.defaultCountry` and `this.defaultCallingCode` aren't required to be in sync.\n // For example, `this.defaultCountry` could be `\"AR\"` and `this.defaultCallingCode` could be `undefined`.\n // So `this.defaultCountry` and `this.defaultCallingCode` are totally independent.\n\n\n this.defaultCountry = defaultCountry;\n this.defaultCallingCode = defaultCallingCode;\n this.reset();\n }\n\n _createClass(AsYouType, [{\n key: \"getCountryAndCallingCode\",\n value: function getCountryAndCallingCode(optionsOrDefaultCountry) {\n // Set `defaultCountry` and `defaultCallingCode` options.\n var defaultCountry;\n var defaultCallingCode; // Turns out `null` also has type \"object\". Weird.\n\n if (optionsOrDefaultCountry) {\n if (isObject(optionsOrDefaultCountry)) {\n defaultCountry = optionsOrDefaultCountry.defaultCountry;\n defaultCallingCode = optionsOrDefaultCountry.defaultCallingCode;\n } else {\n defaultCountry = optionsOrDefaultCountry;\n }\n }\n\n if (defaultCountry && !this.metadata.hasCountry(defaultCountry)) {\n defaultCountry = undefined;\n }\n\n if (defaultCallingCode) {\n /* istanbul ignore if */\n if (USE_NON_GEOGRAPHIC_COUNTRY_CODE) {\n if (this.metadata.isNonGeographicCallingCode(defaultCallingCode)) {\n defaultCountry = '001';\n }\n }\n }\n\n return [defaultCountry, defaultCallingCode];\n }\n /**\r\n * Inputs \"next\" phone number characters.\r\n * @param {string} text\r\n * @return {string} Formatted phone number characters that have been input so far.\r\n */\n\n }, {\n key: \"input\",\n value: function input(text) {\n var _this$parser$input = this.parser.input(text, this.state),\n digits = _this$parser$input.digits,\n justLeadingPlus = _this$parser$input.justLeadingPlus;\n\n if (justLeadingPlus) {\n this.formattedOutput = '+';\n } else if (digits) {\n this.determineTheCountryIfNeeded(); // Match the available formats by the currently available leading digits.\n\n if (this.state.nationalSignificantNumber) {\n this.formatter.narrowDownMatchingFormats(this.state);\n }\n\n var formattedNationalNumber;\n\n if (this.metadata.hasSelectedNumberingPlan()) {\n formattedNationalNumber = this.formatter.format(digits, this.state);\n }\n\n if (formattedNationalNumber === undefined) {\n // See if another national (significant) number could be re-extracted.\n if (this.parser.reExtractNationalSignificantNumber(this.state)) {\n this.determineTheCountryIfNeeded(); // If it could, then re-try formatting the new national (significant) number.\n\n var nationalDigits = this.state.getNationalDigits();\n\n if (nationalDigits) {\n formattedNationalNumber = this.formatter.format(nationalDigits, this.state);\n }\n }\n }\n\n this.formattedOutput = formattedNationalNumber ? this.getFullNumber(formattedNationalNumber) : this.getNonFormattedNumber();\n }\n\n return this.formattedOutput;\n }\n }, {\n key: \"reset\",\n value: function reset() {\n var _this = this;\n\n this.state = new AsYouTypeState({\n onCountryChange: function onCountryChange(country) {\n // Before version `1.6.0`, the official `AsYouType` formatter API\n // included the `.country` property of an `AsYouType` instance.\n // Since that property (along with the others) have been moved to\n // `this.state`, `this.country` property is emulated for compatibility\n // with the old versions.\n _this.country = country;\n },\n onCallingCodeChange: function onCallingCodeChange(callingCode, country) {\n _this.metadata.selectNumberingPlan(country, callingCode);\n\n _this.formatter.reset(_this.metadata.numberingPlan, _this.state);\n\n _this.parser.reset(_this.metadata.numberingPlan);\n }\n });\n this.formatter = new AsYouTypeFormatter({\n state: this.state,\n metadata: this.metadata\n });\n this.parser = new AsYouTypeParser({\n defaultCountry: this.defaultCountry,\n defaultCallingCode: this.defaultCallingCode,\n metadata: this.metadata,\n state: this.state,\n onNationalSignificantNumberChange: function onNationalSignificantNumberChange() {\n _this.determineTheCountryIfNeeded();\n\n _this.formatter.reset(_this.metadata.numberingPlan, _this.state);\n }\n });\n this.state.reset({\n country: this.defaultCountry,\n callingCode: this.defaultCallingCode\n });\n this.formattedOutput = '';\n return this;\n }\n /**\r\n * Returns `true` if the phone number is being input in international format.\r\n * In other words, returns `true` if and only if the parsed phone number starts with a `\"+\"`.\r\n * @return {boolean}\r\n */\n\n }, {\n key: \"isInternational\",\n value: function isInternational() {\n return this.state.international;\n }\n /**\r\n * Returns the \"calling code\" part of the phone number when it's being input\r\n * in an international format.\r\n * If no valid calling code has been entered so far, returns `undefined`.\r\n * @return {string} [callingCode]\r\n */\n\n }, {\n key: \"getCallingCode\",\n value: function getCallingCode() {\n // If the number is being input in national format and some \"default calling code\"\n // has been passed to `AsYouType` constructor, then `this.state.callingCode`\n // is equal to that \"default calling code\".\n //\n // If the number is being input in national format and no \"default calling code\"\n // has been passed to `AsYouType` constructor, then returns `undefined`,\n // even if a \"default country\" has been passed to `AsYouType` constructor.\n //\n if (this.isInternational()) {\n return this.state.callingCode;\n }\n } // A legacy alias.\n\n }, {\n key: \"getCountryCallingCode\",\n value: function getCountryCallingCode() {\n return this.getCallingCode();\n }\n /**\r\n * Returns a two-letter country code of the phone number.\r\n * Returns `undefined` for \"non-geographic\" phone numbering plans.\r\n * Returns `undefined` if no phone number has been input yet.\r\n * @return {string} [country]\r\n */\n\n }, {\n key: \"getCountry\",\n value: function getCountry() {\n var digits = this.state.digits; // Return `undefined` if no digits have been input yet.\n\n if (digits) {\n return this._getCountry();\n }\n }\n /**\r\n * Returns a two-letter country code of the phone number.\r\n * Returns `undefined` for \"non-geographic\" phone numbering plans.\r\n * @return {string} [country]\r\n */\n\n }, {\n key: \"_getCountry\",\n value: function _getCountry() {\n var country = this.state.country;\n /* istanbul ignore if */\n\n if (USE_NON_GEOGRAPHIC_COUNTRY_CODE) {\n // `AsYouType.getCountry()` returns `undefined`\n // for \"non-geographic\" phone numbering plans.\n if (country === '001') {\n return;\n }\n }\n\n return country;\n }\n }, {\n key: \"determineTheCountryIfNeeded\",\n value: function determineTheCountryIfNeeded() {\n // Suppose a user enters a phone number in international format,\n // and there're several countries corresponding to that country calling code,\n // and a country has been derived from the number, and then\n // a user enters one more digit and the number is no longer\n // valid for the derived country, so the country should be re-derived\n // on every new digit in those cases.\n //\n // If the phone number is being input in national format,\n // then it could be a case when `defaultCountry` wasn't specified\n // when creating `AsYouType` instance, and just `defaultCallingCode` was specified,\n // and that \"calling code\" could correspond to a \"non-geographic entity\",\n // or there could be several countries corresponding to that country calling code.\n // In those cases, `this.country` is `undefined` and should be derived\n // from the number. Again, if country calling code is ambiguous, then\n // `this.country` should be re-derived with each new digit.\n //\n if (!this.state.country || this.isCountryCallingCodeAmbiguous()) {\n this.determineTheCountry();\n }\n } // Prepends `+CountryCode ` in case of an international phone number\n\n }, {\n key: \"getFullNumber\",\n value: function getFullNumber(formattedNationalNumber) {\n var _this2 = this;\n\n if (this.isInternational()) {\n var prefix = function prefix(text) {\n return _this2.formatter.getInternationalPrefixBeforeCountryCallingCode(_this2.state, {\n spacing: text ? true : false\n }) + text;\n };\n\n var callingCode = this.state.callingCode;\n\n if (!callingCode) {\n return prefix(\"\".concat(this.state.getDigitsWithoutInternationalPrefix()));\n }\n\n if (!formattedNationalNumber) {\n return prefix(callingCode);\n }\n\n return prefix(\"\".concat(callingCode, \" \").concat(formattedNationalNumber));\n }\n\n return formattedNationalNumber;\n }\n }, {\n key: \"getNonFormattedNationalNumberWithPrefix\",\n value: function getNonFormattedNationalNumberWithPrefix() {\n var _this$state = this.state,\n nationalSignificantNumber = _this$state.nationalSignificantNumber,\n complexPrefixBeforeNationalSignificantNumber = _this$state.complexPrefixBeforeNationalSignificantNumber,\n nationalPrefix = _this$state.nationalPrefix;\n var number = nationalSignificantNumber;\n var prefix = complexPrefixBeforeNationalSignificantNumber || nationalPrefix;\n\n if (prefix) {\n number = prefix + number;\n }\n\n return number;\n }\n }, {\n key: \"getNonFormattedNumber\",\n value: function getNonFormattedNumber() {\n var nationalSignificantNumberMatchesInput = this.state.nationalSignificantNumberMatchesInput;\n return this.getFullNumber(nationalSignificantNumberMatchesInput ? this.getNonFormattedNationalNumberWithPrefix() : this.state.getNationalDigits());\n }\n }, {\n key: \"getNonFormattedTemplate\",\n value: function getNonFormattedTemplate() {\n var number = this.getNonFormattedNumber();\n\n if (number) {\n return number.replace(/[\\+\\d]/g, DIGIT_PLACEHOLDER);\n }\n }\n }, {\n key: \"isCountryCallingCodeAmbiguous\",\n value: function isCountryCallingCodeAmbiguous() {\n var callingCode = this.state.callingCode;\n var countryCodes = this.metadata.getCountryCodesForCallingCode(callingCode);\n return countryCodes && countryCodes.length > 1;\n } // Determines the country of the phone number\n // entered so far based on the country phone code\n // and the national phone number.\n\n }, {\n key: \"determineTheCountry\",\n value: function determineTheCountry() {\n this.state.setCountry(getCountryByCallingCode(this.isInternational() ? this.state.callingCode : this.defaultCallingCode, {\n nationalNumber: this.state.nationalSignificantNumber,\n defaultCountry: this.defaultCountry,\n metadata: this.metadata\n }));\n }\n /**\r\n * Returns a E.164 phone number value for the user's input.\r\n *\r\n * For example, for country `\"US\"` and input `\"(222) 333-4444\"`\r\n * it will return `\"+12223334444\"`.\r\n *\r\n * For international phone number input, it will also auto-correct\r\n * some minor errors such as using a national prefix when writing\r\n * an international phone number. For example, if the user inputs\r\n * `\"+44 0 7400 000000\"` then it will return an auto-corrected\r\n * `\"+447400000000\"` phone number value.\r\n *\r\n * Will return `undefined` if no digits have been input,\r\n * or when inputting a phone number in national format and no\r\n * default country or default \"country calling code\" have been set.\r\n *\r\n * @return {string} [value]\r\n */\n\n }, {\n key: \"getNumberValue\",\n value: function getNumberValue() {\n var _this$state2 = this.state,\n digits = _this$state2.digits,\n callingCode = _this$state2.callingCode,\n country = _this$state2.country,\n nationalSignificantNumber = _this$state2.nationalSignificantNumber; // Will return `undefined` if no digits have been input.\n\n if (!digits) {\n return;\n }\n\n if (this.isInternational()) {\n if (callingCode) {\n return '+' + callingCode + nationalSignificantNumber;\n } else {\n return '+' + digits;\n }\n } else {\n if (country || callingCode) {\n var callingCode_ = country ? this.metadata.countryCallingCode() : callingCode;\n return '+' + callingCode_ + nationalSignificantNumber;\n }\n }\n }\n /**\r\n * Returns an instance of `PhoneNumber` class.\r\n * Will return `undefined` if no national (significant) number\r\n * digits have been entered so far, or if no `defaultCountry` has been\r\n * set and the user enters a phone number not in international format.\r\n */\n\n }, {\n key: \"getNumber\",\n value: function getNumber() {\n var _this$state3 = this.state,\n nationalSignificantNumber = _this$state3.nationalSignificantNumber,\n carrierCode = _this$state3.carrierCode,\n callingCode = _this$state3.callingCode; // `this._getCountry()` is basically same as `this.state.country`\n // with the only change that it return `undefined` in case of a\n // \"non-geographic\" numbering plan instead of `\"001\"` \"internal use\" value.\n\n var country = this._getCountry();\n\n if (!nationalSignificantNumber) {\n return;\n } // `state.country` and `state.callingCode` aren't required to be in sync.\n // For example, `country` could be `\"AR\"` and `callingCode` could be `undefined`.\n // So `country` and `callingCode` are totally independent.\n\n\n if (!country && !callingCode) {\n return;\n } // By default, if `defaultCountry` parameter was passed when\n // creating `AsYouType` instance, `state.country` is gonna be\n // that `defaultCountry`, which doesn't entirely conform with\n // `parsePhoneNumber()`'s behavior where it attempts to determine\n // the country more precisely in cases when multiple countries\n // could correspond to the same `countryCallingCode`.\n // https://gitlab.com/catamphetamine/libphonenumber-js/-/issues/103#note_1417192969\n //\n // Because `AsYouType.getNumber()` method is supposed to be a 1:1\n // equivalent for `parsePhoneNumber(AsYouType.getNumberValue())`,\n // then it should also behave accordingly in cases of `country` ambiguity.\n // That's how users of this library would expect it to behave anyway.\n //\n\n\n if (country) {\n if (country === this.defaultCountry) {\n // `state.country` and `state.callingCode` aren't required to be in sync.\n // For example, `state.country` could be `\"AR\"` and `state.callingCode` could be `undefined`.\n // So `state.country` and `state.callingCode` are totally independent.\n var metadata = new Metadata(this.metadata.metadata);\n metadata.selectNumberingPlan(country);\n\n var _callingCode = metadata.numberingPlan.callingCode();\n\n var ambiguousCountries = this.metadata.getCountryCodesForCallingCode(_callingCode);\n\n if (ambiguousCountries.length > 1) {\n var exactCountry = getCountryByNationalNumber(nationalSignificantNumber, {\n countries: ambiguousCountries,\n defaultCountry: this.defaultCountry,\n metadata: this.metadata.metadata\n });\n\n if (exactCountry) {\n country = exactCountry;\n }\n }\n }\n }\n\n var phoneNumber = new PhoneNumber(country || callingCode, nationalSignificantNumber, this.metadata.metadata);\n\n if (carrierCode) {\n phoneNumber.carrierCode = carrierCode;\n } // Phone number extensions are not supported by \"As You Type\" formatter.\n\n\n return phoneNumber;\n }\n /**\r\n * Returns `true` if the phone number is \"possible\".\r\n * Is just a shortcut for `PhoneNumber.isPossible()`.\r\n * @return {boolean}\r\n */\n\n }, {\n key: \"isPossible\",\n value: function isPossible() {\n var phoneNumber = this.getNumber();\n\n if (!phoneNumber) {\n return false;\n }\n\n return phoneNumber.isPossible();\n }\n /**\r\n * Returns `true` if the phone number is \"valid\".\r\n * Is just a shortcut for `PhoneNumber.isValid()`.\r\n * @return {boolean}\r\n */\n\n }, {\n key: \"isValid\",\n value: function isValid() {\n var phoneNumber = this.getNumber();\n\n if (!phoneNumber) {\n return false;\n }\n\n return phoneNumber.isValid();\n }\n /**\r\n * @deprecated\r\n * This method is used in `react-phone-number-input/source/input-control.js`\r\n * in versions before `3.0.16`.\r\n */\n\n }, {\n key: \"getNationalNumber\",\n value: function getNationalNumber() {\n return this.state.nationalSignificantNumber;\n }\n /**\r\n * Returns the phone number characters entered by the user.\r\n * @return {string}\r\n */\n\n }, {\n key: \"getChars\",\n value: function getChars() {\n return (this.state.international ? '+' : '') + this.state.digits;\n }\n /**\r\n * Returns the template for the formatted phone number.\r\n * @return {string}\r\n */\n\n }, {\n key: \"getTemplate\",\n value: function getTemplate() {\n return this.formatter.getTemplate(this.state) || this.getNonFormattedTemplate() || '';\n }\n }]);\n\n return AsYouType;\n}();\n\nexport { AsYouType as default };\n//# sourceMappingURL=AsYouType.js.map","import Metadata from './metadata.js';\nexport default function getCountries(metadata) {\n return new Metadata(metadata).getCountries();\n}\n//# sourceMappingURL=getCountries.js.map","import AsYouType from './AsYouType.js';\n/**\r\n * Formats a (possibly incomplete) phone number.\r\n * The phone number can be either in E.164 format\r\n * or in a form of national number digits.\r\n * @param {string} value - A possibly incomplete phone number. Either in E.164 format or in a form of national number digits.\r\n * @param {string|object} [optionsOrDefaultCountry] - A two-letter (\"ISO 3166-1 alpha-2\") country code, or an object of shape `{ defaultCountry?: string, defaultCallingCode?: string }`.\r\n * @return {string} Formatted (possibly incomplete) phone number.\r\n */\n\nexport default function formatIncompletePhoneNumber(value, optionsOrDefaultCountry, metadata) {\n if (!metadata) {\n metadata = optionsOrDefaultCountry;\n optionsOrDefaultCountry = undefined;\n }\n\n return new AsYouType(optionsOrDefaultCountry, metadata).input(value);\n}\n//# sourceMappingURL=formatIncompletePhoneNumber.js.map","import { getCountryCallingCode } from 'libphonenumber-js/core';\nexport function getInputValuePrefix(_ref) {\n var country = _ref.country,\n international = _ref.international,\n withCountryCallingCode = _ref.withCountryCallingCode,\n metadata = _ref.metadata;\n return country && international && !withCountryCallingCode ? \"+\".concat(getCountryCallingCode(country, metadata)) : '';\n}\nexport function removeInputValuePrefix(value, prefix) {\n if (prefix) {\n value = value.slice(prefix.length);\n\n if (value[0] === ' ') {\n value = value.slice(1);\n }\n }\n\n return value;\n}\n//# sourceMappingURL=inputValuePrefix.js.map","import { parsePhoneNumberCharacter } from 'libphonenumber-js/core';\n/**\r\n * Parses next character while parsing phone number digits (including a `+`)\r\n * from text: discards everything except `+` and digits, and `+` is only allowed\r\n * at the start of a phone number.\r\n * For example, is used in `react-phone-number-input` where it uses\r\n * [`input-format`](https://gitlab.com/catamphetamine/input-format).\r\n * @param {string} character - Yet another character from raw input string.\r\n * @param {string?} prevParsedCharacters - Previous parsed characters.\r\n * @param {object?} context - An optional object that could be used by this function to set arbitrary \"flags\". The object should be shared within the parsing of the whole string.\r\n * @return {string?} The parsed character.\r\n */\n\nexport default function parsePhoneNumberCharacter_(character, prevParsedCharacters, context) {\n // `context` argument was added as a third argument of `parse()` function\n // in `input-format` package on Dec 26th, 2023. So it could potentially be\n // `undefined` here if a 3rd-party app somehow ends up with this newer version\n // of `react-phone-number-input` and an older version of `input-format`.\n // Dunno how, but just in case, it could be `undefined` here and it wouldn't break.\n // Maybe it's not required to handle `undefined` case here.\n //\n // The addition of the `context` argument was to fix the slightly-weird behavior\n // of parsing an input string when the user inputs something like `\"2+7\"\n // https://github.com/catamphetamine/react-phone-number-input/issues/437\n //\n // If the parser encounters an unexpected `+` in a string being parsed\n // then it simply discards that out-of-place `+` and any following characters.\n //\n if (context && context.ignoreRest) {\n return;\n }\n\n var emitEvent = function emitEvent(eventName) {\n if (context) {\n switch (eventName) {\n case 'end':\n context.ignoreRest = true;\n break;\n }\n }\n };\n\n return parsePhoneNumberCharacter(character, prevParsedCharacters, emitEvent);\n}\n//# sourceMappingURL=parsePhoneNumberCharacter.js.map","var _excluded = [\"country\", \"international\", \"withCountryCallingCode\", \"metadata\"];\n\nfunction _extends() { _extends = Object.assign ? Object.assign.bind() : 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); }\n\nfunction _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; }\n\nfunction _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; }\n\nimport React, { useCallback } from 'react';\nimport PropTypes from 'prop-types';\nimport Input from 'input-format/react';\nimport { AsYouType } from 'libphonenumber-js/core';\nimport { getInputValuePrefix, removeInputValuePrefix } from './helpers/inputValuePrefix.js';\nimport parsePhoneNumberCharacter from './helpers/parsePhoneNumberCharacter.js';\nexport function createInput(defaultMetadata) {\n /**\r\n * `InputSmart` is a \"smarter\" implementation of a `Component`\r\n * that can be passed to ``. It parses and formats\r\n * the user's and maintains the caret's position in the process.\r\n * The caret positioning is maintained using `input-format` library.\r\n * Relies on being run in a DOM environment for calling caret positioning functions.\r\n */\n function InputSmart(_ref, ref) {\n var country = _ref.country,\n international = _ref.international,\n withCountryCallingCode = _ref.withCountryCallingCode,\n _ref$metadata = _ref.metadata,\n metadata = _ref$metadata === void 0 ? defaultMetadata : _ref$metadata,\n rest = _objectWithoutProperties(_ref, _excluded);\n\n var format = useCallback(function (value) {\n // \"As you type\" formatter.\n var formatter = new AsYouType(country, metadata);\n var prefix = getInputValuePrefix({\n country: country,\n international: international,\n withCountryCallingCode: withCountryCallingCode,\n metadata: metadata\n }); // Format the number.\n\n var text = formatter.input(prefix + value);\n var template = formatter.getTemplate();\n\n if (prefix) {\n text = removeInputValuePrefix(text, prefix); // `AsYouType.getTemplate()` can be `undefined`.\n\n if (template) {\n template = removeInputValuePrefix(template, prefix);\n }\n }\n\n return {\n text: text,\n template: template\n };\n }, [country, metadata]);\n return /*#__PURE__*/React.createElement(Input, _extends({}, rest, {\n ref: ref,\n parse: parsePhoneNumberCharacter,\n format: format\n }));\n }\n\n InputSmart = /*#__PURE__*/React.forwardRef(InputSmart);\n InputSmart.propTypes = {\n /**\r\n * The parsed phone number.\r\n * \"Parsed\" not in a sense of \"E.164\"\r\n * but rather in a sense of \"having only\r\n * digits and possibly a leading plus character\".\r\n * Examples: `\"\"`, `\"+\"`, `\"+123\"`, `\"123\"`.\r\n */\n value: PropTypes.string.isRequired,\n\n /**\r\n * A function of `value: string`.\r\n * Updates the `value` property.\r\n */\n onChange: PropTypes.func.isRequired,\n\n /**\r\n * A two-letter country code for formatting `value`\r\n * as a national phone number (e.g. `(800) 555 35 35`).\r\n * E.g. \"US\", \"RU\", etc.\r\n * If no `country` is passed then `value`\r\n * is formatted as an international phone number.\r\n * (e.g. `+7 800 555 35 35`)\r\n * Perhaps the `country` property should have been called `defaultCountry`\r\n * because if `value` is an international number then `country` is ignored.\r\n */\n country: PropTypes.string,\n\n /**\r\n * If `country` property is passed along with `international={true}` property\r\n * then the phone number will be input in \"international\" format for that `country`\r\n * (without \"country calling code\").\r\n * For example, if `country=\"US\"` property is passed to \"without country select\" input\r\n * then the phone number will be input in the \"national\" format for `US` (`(213) 373-4253`).\r\n * But if both `country=\"US\"` and `international={true}` properties are passed then\r\n * the phone number will be input in the \"international\" format for `US` (`213 373 4253`)\r\n * (without \"country calling code\" `+1`).\r\n */\n international: PropTypes.bool,\n\n /**\r\n * If `country` and `international` properties are set,\r\n * then by default it won't include \"country calling code\" in the input field.\r\n * To change that, pass `withCountryCallingCode` property,\r\n * and it will include \"country calling code\" in the input field.\r\n */\n withCountryCallingCode: PropTypes.bool,\n\n /**\r\n * `libphonenumber-js` metadata.\r\n */\n metadata: PropTypes.object\n };\n return InputSmart;\n}\nexport default createInput();\n//# sourceMappingURL=InputSmart.js.map","var _excluded = [\"value\", \"onChange\", \"country\", \"international\", \"withCountryCallingCode\", \"metadata\", \"inputComponent\"];\n\nfunction _extends() { _extends = Object.assign ? Object.assign.bind() : 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); }\n\nfunction _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; }\n\nfunction _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; }\n\nimport React, { useCallback } from 'react';\nimport PropTypes from 'prop-types';\nimport { parseIncompletePhoneNumber, formatIncompletePhoneNumber } from 'libphonenumber-js/core';\nimport { getInputValuePrefix, removeInputValuePrefix } from './helpers/inputValuePrefix.js';\nexport function createInput(defaultMetadata) {\n /**\r\n * `InputBasic` is the most basic implementation of a `Component`\r\n * that can be passed to ``. It parses and formats\r\n * the user's input but doesn't control the caret in the process:\r\n * when erasing or inserting digits in the middle of a phone number\r\n * the caret usually jumps to the end (this is the expected behavior).\r\n * Why does `InputBasic` exist when there's `InputSmart`?\r\n * One reason is working around the [Samsung Galaxy smart caret positioning bug]\r\n * (https://github.com/catamphetamine/react-phone-number-input/issues/75).\r\n * Another reason is that, unlike `InputSmart`, it doesn't require DOM environment.\r\n */\n function InputBasic(_ref, ref) {\n var value = _ref.value,\n onChange = _ref.onChange,\n country = _ref.country,\n international = _ref.international,\n withCountryCallingCode = _ref.withCountryCallingCode,\n _ref$metadata = _ref.metadata,\n metadata = _ref$metadata === void 0 ? defaultMetadata : _ref$metadata,\n _ref$inputComponent = _ref.inputComponent,\n Input = _ref$inputComponent === void 0 ? 'input' : _ref$inputComponent,\n rest = _objectWithoutProperties(_ref, _excluded);\n\n var prefix = getInputValuePrefix({\n country: country,\n international: international,\n withCountryCallingCode: withCountryCallingCode,\n metadata: metadata\n });\n\n var _onChange = useCallback(function (event) {\n var newValue = parseIncompletePhoneNumber(event.target.value); // By default, if a value is something like `\"(123)\"`\n // then Backspace would only erase the rightmost brace\n // becoming something like `\"(123\"`\n // which would give the same `\"123\"` value\n // which would then be formatted back to `\"(123)\"`\n // and so a user wouldn't be able to erase the phone number.\n // Working around this issue with this simple hack.\n\n if (newValue === value) {\n var newValueFormatted = format(prefix, newValue, country, metadata);\n\n if (newValueFormatted.indexOf(event.target.value) === 0) {\n // Trim the last digit (or plus sign).\n newValue = newValue.slice(0, -1);\n }\n }\n\n onChange(newValue);\n }, [prefix, value, onChange, country, metadata]);\n\n return /*#__PURE__*/React.createElement(Input, _extends({}, rest, {\n ref: ref,\n value: format(prefix, value, country, metadata),\n onChange: _onChange\n }));\n }\n\n InputBasic = /*#__PURE__*/React.forwardRef(InputBasic);\n InputBasic.propTypes = {\n /**\r\n * The parsed phone number.\r\n * \"Parsed\" not in a sense of \"E.164\"\r\n * but rather in a sense of \"having only\r\n * digits and possibly a leading plus character\".\r\n * Examples: `\"\"`, `\"+\"`, `\"+123\"`, `\"123\"`.\r\n */\n value: PropTypes.string.isRequired,\n\n /**\r\n * A function of `value: string`.\r\n * Updates the `value` property.\r\n */\n onChange: PropTypes.func.isRequired,\n\n /**\r\n * A two-letter country code for formatting `value`\r\n * as a national phone number (e.g. `(800) 555 35 35`).\r\n * E.g. \"US\", \"RU\", etc.\r\n * If no `country` is passed then `value`\r\n * is formatted as an international phone number.\r\n * (e.g. `+7 800 555 35 35`)\r\n * Perhaps the `country` property should have been called `defaultCountry`\r\n * because if `value` is an international number then `country` is ignored.\r\n */\n country: PropTypes.string,\n\n /**\r\n * If `country` property is passed along with `international={true}` property\r\n * then the phone number will be input in \"international\" format for that `country`\r\n * (without \"country calling code\").\r\n * For example, if `country=\"US\"` property is passed to \"without country select\" input\r\n * then the phone number will be input in the \"national\" format for `US` (`(213) 373-4253`).\r\n * But if both `country=\"US\"` and `international={true}` properties are passed then\r\n * the phone number will be input in the \"international\" format for `US` (`213 373 4253`)\r\n * (without \"country calling code\" `+1`).\r\n */\n international: PropTypes.bool,\n\n /**\r\n * If `country` and `international` properties are set,\r\n * then by default it won't include \"country calling code\" in the input field.\r\n * To change that, pass `withCountryCallingCode` property,\r\n * and it will include \"country calling code\" in the input field.\r\n */\n withCountryCallingCode: PropTypes.bool,\n\n /**\r\n * `libphonenumber-js` metadata.\r\n */\n metadata: PropTypes.object,\n\n /**\r\n * The `` component.\r\n */\n inputComponent: PropTypes.elementType\n };\n return InputBasic;\n}\nexport default createInput();\n\nfunction format(prefix, value, country, metadata) {\n return removeInputValuePrefix(formatIncompletePhoneNumber(prefix + value, country, metadata), prefix);\n}\n//# sourceMappingURL=InputBasic.js.map","/**\r\n * Creates Unicode flag from a two-letter ISO country code.\r\n * https://stackoverflow.com/questions/24050671/how-to-put-japan-flag-character-in-a-string\r\n * @param {string} country — A two-letter ISO country code (case-insensitive).\r\n * @return {string}\r\n */\nexport default function getCountryFlag(country) {\n return getRegionalIndicatorSymbol(country[0]) + getRegionalIndicatorSymbol(country[1]);\n}\n/**\r\n * Converts a letter to a Regional Indicator Symbol.\r\n * @param {string} letter\r\n * @return {string}\r\n */\n\nfunction getRegionalIndicatorSymbol(letter) {\n return String.fromCodePoint(0x1F1E6 - 65 + letter.toUpperCase().charCodeAt(0));\n}\n//# sourceMappingURL=unicode.js.map","var _excluded = [\"value\", \"onChange\", \"options\", \"disabled\", \"readOnly\"],\n _excluded2 = [\"value\", \"options\", \"className\", \"iconComponent\", \"getIconAspectRatio\", \"arrowComponent\", \"unicodeFlags\"];\n\nfunction _createForOfIteratorHelperLoose(o, allowArrayLike) { var it = typeof Symbol !== \"undefined\" && o[Symbol.iterator] || o[\"@@iterator\"]; if (it) return (it = it.call(o)).next.bind(it); if (Array.isArray(o) || (it = _unsupportedIterableToArray(o)) || allowArrayLike && o && typeof o.length === \"number\") { if (it) o = it; var i = 0; return function () { if (i >= o.length) return { done: true }; return { done: false, value: o[i++] }; }; } throw new TypeError(\"Invalid attempt to iterate non-iterable instance.\\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method.\"); }\n\nfunction _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); }\n\nfunction _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; }\n\nfunction _extends() { _extends = Object.assign ? Object.assign.bind() : 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); }\n\nfunction _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; }\n\nfunction _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; }\n\nimport React, { useCallback, useMemo } from 'react';\nimport PropTypes from 'prop-types';\nimport classNames from 'classnames';\nimport getUnicodeFlagIcon from 'country-flag-icons/unicode';\nexport default function CountrySelect(_ref) {\n var value = _ref.value,\n onChange = _ref.onChange,\n options = _ref.options,\n disabled = _ref.disabled,\n readOnly = _ref.readOnly,\n rest = _objectWithoutProperties(_ref, _excluded);\n\n var onChange_ = useCallback(function (event) {\n var value = event.target.value;\n onChange(value === 'ZZ' ? undefined : value);\n }, [onChange]);\n var selectedOption = useMemo(function () {\n return getSelectedOption(options, value);\n }, [options, value]); // \"ZZ\" means \"International\".\n // (HTML requires each `