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qmk_firmware/assets/chunks/framework.8zKZLKO7.js

10456 lines
308 KiB
JavaScript

/**
* @vue/shared v3.5.30
* (c) 2018-present Yuxi (Evan) You and Vue contributors
* @license MIT
**/
// @__NO_SIDE_EFFECTS__
function makeMap(str) {
const map = /* @__PURE__ */ Object.create(null);
for (const key of str.split(",")) map[key] = 1;
return (val) => val in map;
}
const EMPTY_OBJ = {};
const EMPTY_ARR = [];
const NOOP = () => {
};
const NO = () => false;
const isOn = (key) => key.charCodeAt(0) === 111 && key.charCodeAt(1) === 110 && // uppercase letter
(key.charCodeAt(2) > 122 || key.charCodeAt(2) < 97);
const isModelListener = (key) => key.startsWith("onUpdate:");
const extend = Object.assign;
const remove = (arr, el) => {
const i = arr.indexOf(el);
if (i > -1) {
arr.splice(i, 1);
}
};
const hasOwnProperty$1 = Object.prototype.hasOwnProperty;
const hasOwn = (val, key) => hasOwnProperty$1.call(val, key);
const isArray = Array.isArray;
const isMap = (val) => toTypeString(val) === "[object Map]";
const isSet = (val) => toTypeString(val) === "[object Set]";
const isDate = (val) => toTypeString(val) === "[object Date]";
const isFunction = (val) => typeof val === "function";
const isString = (val) => typeof val === "string";
const isSymbol = (val) => typeof val === "symbol";
const isObject$1 = (val) => val !== null && typeof val === "object";
const isPromise = (val) => {
return (isObject$1(val) || isFunction(val)) && isFunction(val.then) && isFunction(val.catch);
};
const objectToString = Object.prototype.toString;
const toTypeString = (value) => objectToString.call(value);
const toRawType = (value) => {
return toTypeString(value).slice(8, -1);
};
const isPlainObject = (val) => toTypeString(val) === "[object Object]";
const isIntegerKey = (key) => isString(key) && key !== "NaN" && key[0] !== "-" && "" + parseInt(key, 10) === key;
const isReservedProp = /* @__PURE__ */ makeMap(
// the leading comma is intentional so empty string "" is also included
",key,ref,ref_for,ref_key,onVnodeBeforeMount,onVnodeMounted,onVnodeBeforeUpdate,onVnodeUpdated,onVnodeBeforeUnmount,onVnodeUnmounted"
);
const cacheStringFunction = (fn) => {
const cache = /* @__PURE__ */ Object.create(null);
return (str) => {
const hit = cache[str];
return hit || (cache[str] = fn(str));
};
};
const camelizeRE = /-\w/g;
const camelize = cacheStringFunction(
(str) => {
return str.replace(camelizeRE, (c) => c.slice(1).toUpperCase());
}
);
const hyphenateRE = /\B([A-Z])/g;
const hyphenate = cacheStringFunction(
(str) => str.replace(hyphenateRE, "-$1").toLowerCase()
);
const capitalize = cacheStringFunction((str) => {
return str.charAt(0).toUpperCase() + str.slice(1);
});
const toHandlerKey = cacheStringFunction(
(str) => {
const s = str ? `on${capitalize(str)}` : ``;
return s;
}
);
const hasChanged = (value, oldValue) => !Object.is(value, oldValue);
const invokeArrayFns = (fns, ...arg) => {
for (let i = 0; i < fns.length; i++) {
fns[i](...arg);
}
};
const def = (obj, key, value, writable = false) => {
Object.defineProperty(obj, key, {
configurable: true,
enumerable: false,
writable,
value
});
};
const looseToNumber = (val) => {
const n = parseFloat(val);
return isNaN(n) ? val : n;
};
const toNumber = (val) => {
const n = isString(val) ? Number(val) : NaN;
return isNaN(n) ? val : n;
};
let _globalThis;
const getGlobalThis = () => {
return _globalThis || (_globalThis = typeof globalThis !== "undefined" ? globalThis : typeof self !== "undefined" ? self : typeof window !== "undefined" ? window : typeof global !== "undefined" ? global : {});
};
function normalizeStyle(value) {
if (isArray(value)) {
const res = {};
for (let i = 0; i < value.length; i++) {
const item = value[i];
const normalized = isString(item) ? parseStringStyle(item) : normalizeStyle(item);
if (normalized) {
for (const key in normalized) {
res[key] = normalized[key];
}
}
}
return res;
} else if (isString(value) || isObject$1(value)) {
return value;
}
}
const listDelimiterRE = /;(?![^(]*\))/g;
const propertyDelimiterRE = /:([^]+)/;
const styleCommentRE = /\/\*[^]*?\*\//g;
function parseStringStyle(cssText) {
const ret = {};
cssText.replace(styleCommentRE, "").split(listDelimiterRE).forEach((item) => {
if (item) {
const tmp = item.split(propertyDelimiterRE);
tmp.length > 1 && (ret[tmp[0].trim()] = tmp[1].trim());
}
});
return ret;
}
function stringifyStyle(styles) {
if (!styles) return "";
if (isString(styles)) return styles;
let ret = "";
for (const key in styles) {
const value = styles[key];
if (isString(value) || typeof value === "number") {
const normalizedKey = key.startsWith(`--`) ? key : hyphenate(key);
ret += `${normalizedKey}:${value};`;
}
}
return ret;
}
function normalizeClass(value) {
let res = "";
if (isString(value)) {
res = value;
} else if (isArray(value)) {
for (let i = 0; i < value.length; i++) {
const normalized = normalizeClass(value[i]);
if (normalized) {
res += normalized + " ";
}
}
} else if (isObject$1(value)) {
for (const name in value) {
if (value[name]) {
res += name + " ";
}
}
}
return res.trim();
}
const specialBooleanAttrs = `itemscope,allowfullscreen,formnovalidate,ismap,nomodule,novalidate,readonly`;
const isSpecialBooleanAttr = /* @__PURE__ */ makeMap(specialBooleanAttrs);
const isBooleanAttr = /* @__PURE__ */ makeMap(
specialBooleanAttrs + `,async,autofocus,autoplay,controls,default,defer,disabled,hidden,inert,loop,open,required,reversed,scoped,seamless,checked,muted,multiple,selected`
);
function includeBooleanAttr(value) {
return !!value || value === "";
}
const isKnownHtmlAttr = /* @__PURE__ */ makeMap(
`accept,accept-charset,accesskey,action,align,allow,alt,async,autocapitalize,autocomplete,autofocus,autoplay,background,bgcolor,border,buffered,capture,challenge,charset,checked,cite,class,code,codebase,color,cols,colspan,content,contenteditable,contextmenu,controls,coords,crossorigin,csp,data,datetime,decoding,default,defer,dir,dirname,disabled,download,draggable,dropzone,enctype,enterkeyhint,for,form,formaction,formenctype,formmethod,formnovalidate,formtarget,headers,height,hidden,high,href,hreflang,http-equiv,icon,id,importance,inert,integrity,ismap,itemprop,keytype,kind,label,lang,language,loading,list,loop,low,manifest,max,maxlength,minlength,media,min,multiple,muted,name,novalidate,open,optimum,pattern,ping,placeholder,poster,preload,radiogroup,readonly,referrerpolicy,rel,required,reversed,rows,rowspan,sandbox,scope,scoped,selected,shape,size,sizes,slot,span,spellcheck,src,srcdoc,srclang,srcset,start,step,style,summary,tabindex,target,title,translate,type,usemap,value,width,wrap`
);
const isKnownSvgAttr = /* @__PURE__ */ makeMap(
`xmlns,accent-height,accumulate,additive,alignment-baseline,alphabetic,amplitude,arabic-form,ascent,attributeName,attributeType,azimuth,baseFrequency,baseline-shift,baseProfile,bbox,begin,bias,by,calcMode,cap-height,class,clip,clipPathUnits,clip-path,clip-rule,color,color-interpolation,color-interpolation-filters,color-profile,color-rendering,contentScriptType,contentStyleType,crossorigin,cursor,cx,cy,d,decelerate,descent,diffuseConstant,direction,display,divisor,dominant-baseline,dur,dx,dy,edgeMode,elevation,enable-background,end,exponent,fill,fill-opacity,fill-rule,filter,filterRes,filterUnits,flood-color,flood-opacity,font-family,font-size,font-size-adjust,font-stretch,font-style,font-variant,font-weight,format,from,fr,fx,fy,g1,g2,glyph-name,glyph-orientation-horizontal,glyph-orientation-vertical,glyphRef,gradientTransform,gradientUnits,hanging,height,href,hreflang,horiz-adv-x,horiz-origin-x,id,ideographic,image-rendering,in,in2,intercept,k,k1,k2,k3,k4,kernelMatrix,kernelUnitLength,kerning,keyPoints,keySplines,keyTimes,lang,lengthAdjust,letter-spacing,lighting-color,limitingConeAngle,local,marker-end,marker-mid,marker-start,markerHeight,markerUnits,markerWidth,mask,maskContentUnits,maskUnits,mathematical,max,media,method,min,mode,name,numOctaves,offset,opacity,operator,order,orient,orientation,origin,overflow,overline-position,overline-thickness,panose-1,paint-order,path,pathLength,patternContentUnits,patternTransform,patternUnits,ping,pointer-events,points,pointsAtX,pointsAtY,pointsAtZ,preserveAlpha,preserveAspectRatio,primitiveUnits,r,radius,referrerPolicy,refX,refY,rel,rendering-intent,repeatCount,repeatDur,requiredExtensions,requiredFeatures,restart,result,rotate,rx,ry,scale,seed,shape-rendering,slope,spacing,specularConstant,specularExponent,speed,spreadMethod,startOffset,stdDeviation,stemh,stemv,stitchTiles,stop-color,stop-opacity,strikethrough-position,strikethrough-thickness,string,stroke,stroke-dasharray,stroke-dashoffset,stroke-linecap,stroke-linejoin,stroke-miterlimit,stroke-opacity,stroke-width,style,surfaceScale,systemLanguage,tabindex,tableValues,target,targetX,targetY,text-anchor,text-decoration,text-rendering,textLength,to,transform,transform-origin,type,u1,u2,underline-position,underline-thickness,unicode,unicode-bidi,unicode-range,units-per-em,v-alphabetic,v-hanging,v-ideographic,v-mathematical,values,vector-effect,version,vert-adv-y,vert-origin-x,vert-origin-y,viewBox,viewTarget,visibility,width,widths,word-spacing,writing-mode,x,x-height,x1,x2,xChannelSelector,xlink:actuate,xlink:arcrole,xlink:href,xlink:role,xlink:show,xlink:title,xlink:type,xmlns:xlink,xml:base,xml:lang,xml:space,y,y1,y2,yChannelSelector,z,zoomAndPan`
);
function isRenderableAttrValue(value) {
if (value == null) {
return false;
}
const type = typeof value;
return type === "string" || type === "number" || type === "boolean";
}
const cssVarNameEscapeSymbolsRE = /[ !"#$%&'()*+,./:;<=>?@[\\\]^`{|}~]/g;
function getEscapedCssVarName(key, doubleEscape) {
return key.replace(
cssVarNameEscapeSymbolsRE,
(s) => `\\${s}`
);
}
function looseCompareArrays(a, b) {
if (a.length !== b.length) return false;
let equal = true;
for (let i = 0; equal && i < a.length; i++) {
equal = looseEqual(a[i], b[i]);
}
return equal;
}
function looseEqual(a, b) {
if (a === b) return true;
let aValidType = isDate(a);
let bValidType = isDate(b);
if (aValidType || bValidType) {
return aValidType && bValidType ? a.getTime() === b.getTime() : false;
}
aValidType = isSymbol(a);
bValidType = isSymbol(b);
if (aValidType || bValidType) {
return a === b;
}
aValidType = isArray(a);
bValidType = isArray(b);
if (aValidType || bValidType) {
return aValidType && bValidType ? looseCompareArrays(a, b) : false;
}
aValidType = isObject$1(a);
bValidType = isObject$1(b);
if (aValidType || bValidType) {
if (!aValidType || !bValidType) {
return false;
}
const aKeysCount = Object.keys(a).length;
const bKeysCount = Object.keys(b).length;
if (aKeysCount !== bKeysCount) {
return false;
}
for (const key in a) {
const aHasKey = a.hasOwnProperty(key);
const bHasKey = b.hasOwnProperty(key);
if (aHasKey && !bHasKey || !aHasKey && bHasKey || !looseEqual(a[key], b[key])) {
return false;
}
}
}
return String(a) === String(b);
}
const isRef$1 = (val) => {
return !!(val && val["__v_isRef"] === true);
};
const toDisplayString = (val) => {
return isString(val) ? val : val == null ? "" : isArray(val) || isObject$1(val) && (val.toString === objectToString || !isFunction(val.toString)) ? isRef$1(val) ? toDisplayString(val.value) : JSON.stringify(val, replacer, 2) : String(val);
};
const replacer = (_key, val) => {
if (isRef$1(val)) {
return replacer(_key, val.value);
} else if (isMap(val)) {
return {
[`Map(${val.size})`]: [...val.entries()].reduce(
(entries, [key, val2], i) => {
entries[stringifySymbol(key, i) + " =>"] = val2;
return entries;
},
{}
)
};
} else if (isSet(val)) {
return {
[`Set(${val.size})`]: [...val.values()].map((v) => stringifySymbol(v))
};
} else if (isSymbol(val)) {
return stringifySymbol(val);
} else if (isObject$1(val) && !isArray(val) && !isPlainObject(val)) {
return String(val);
}
return val;
};
const stringifySymbol = (v, i = "") => {
var _a;
return (
// Symbol.description in es2019+ so we need to cast here to pass
// the lib: es2016 check
isSymbol(v) ? `Symbol(${(_a = v.description) != null ? _a : i})` : v
);
};
function normalizeCssVarValue(value) {
if (value == null) {
return "initial";
}
if (typeof value === "string") {
return value === "" ? " " : value;
}
return String(value);
}
/**
* @vue/reactivity v3.5.30
* (c) 2018-present Yuxi (Evan) You and Vue contributors
* @license MIT
**/
let activeEffectScope;
class EffectScope {
// TODO isolatedDeclarations "__v_skip"
constructor(detached = false) {
this.detached = detached;
this._active = true;
this._on = 0;
this.effects = [];
this.cleanups = [];
this._isPaused = false;
this.__v_skip = true;
this.parent = activeEffectScope;
if (!detached && activeEffectScope) {
this.index = (activeEffectScope.scopes || (activeEffectScope.scopes = [])).push(
this
) - 1;
}
}
get active() {
return this._active;
}
pause() {
if (this._active) {
this._isPaused = true;
let i, l;
if (this.scopes) {
for (i = 0, l = this.scopes.length; i < l; i++) {
this.scopes[i].pause();
}
}
for (i = 0, l = this.effects.length; i < l; i++) {
this.effects[i].pause();
}
}
}
/**
* Resumes the effect scope, including all child scopes and effects.
*/
resume() {
if (this._active) {
if (this._isPaused) {
this._isPaused = false;
let i, l;
if (this.scopes) {
for (i = 0, l = this.scopes.length; i < l; i++) {
this.scopes[i].resume();
}
}
for (i = 0, l = this.effects.length; i < l; i++) {
this.effects[i].resume();
}
}
}
}
run(fn) {
if (this._active) {
const currentEffectScope = activeEffectScope;
try {
activeEffectScope = this;
return fn();
} finally {
activeEffectScope = currentEffectScope;
}
}
}
/**
* This should only be called on non-detached scopes
* @internal
*/
on() {
if (++this._on === 1) {
this.prevScope = activeEffectScope;
activeEffectScope = this;
}
}
/**
* This should only be called on non-detached scopes
* @internal
*/
off() {
if (this._on > 0 && --this._on === 0) {
activeEffectScope = this.prevScope;
this.prevScope = void 0;
}
}
stop(fromParent) {
if (this._active) {
this._active = false;
let i, l;
for (i = 0, l = this.effects.length; i < l; i++) {
this.effects[i].stop();
}
this.effects.length = 0;
for (i = 0, l = this.cleanups.length; i < l; i++) {
this.cleanups[i]();
}
this.cleanups.length = 0;
if (this.scopes) {
for (i = 0, l = this.scopes.length; i < l; i++) {
this.scopes[i].stop(true);
}
this.scopes.length = 0;
}
if (!this.detached && this.parent && !fromParent) {
const last = this.parent.scopes.pop();
if (last && last !== this) {
this.parent.scopes[this.index] = last;
last.index = this.index;
}
}
this.parent = void 0;
}
}
}
function getCurrentScope() {
return activeEffectScope;
}
function onScopeDispose(fn, failSilently = false) {
if (activeEffectScope) {
activeEffectScope.cleanups.push(fn);
}
}
let activeSub;
const pausedQueueEffects = /* @__PURE__ */ new WeakSet();
class ReactiveEffect {
constructor(fn) {
this.fn = fn;
this.deps = void 0;
this.depsTail = void 0;
this.flags = 1 | 4;
this.next = void 0;
this.cleanup = void 0;
this.scheduler = void 0;
if (activeEffectScope && activeEffectScope.active) {
activeEffectScope.effects.push(this);
}
}
pause() {
this.flags |= 64;
}
resume() {
if (this.flags & 64) {
this.flags &= -65;
if (pausedQueueEffects.has(this)) {
pausedQueueEffects.delete(this);
this.trigger();
}
}
}
/**
* @internal
*/
notify() {
if (this.flags & 2 && !(this.flags & 32)) {
return;
}
if (!(this.flags & 8)) {
batch(this);
}
}
run() {
if (!(this.flags & 1)) {
return this.fn();
}
this.flags |= 2;
cleanupEffect(this);
prepareDeps(this);
const prevEffect = activeSub;
const prevShouldTrack = shouldTrack;
activeSub = this;
shouldTrack = true;
try {
return this.fn();
} finally {
cleanupDeps(this);
activeSub = prevEffect;
shouldTrack = prevShouldTrack;
this.flags &= -3;
}
}
stop() {
if (this.flags & 1) {
for (let link2 = this.deps; link2; link2 = link2.nextDep) {
removeSub(link2);
}
this.deps = this.depsTail = void 0;
cleanupEffect(this);
this.onStop && this.onStop();
this.flags &= -2;
}
}
trigger() {
if (this.flags & 64) {
pausedQueueEffects.add(this);
} else if (this.scheduler) {
this.scheduler();
} else {
this.runIfDirty();
}
}
/**
* @internal
*/
runIfDirty() {
if (isDirty(this)) {
this.run();
}
}
get dirty() {
return isDirty(this);
}
}
let batchDepth = 0;
let batchedSub;
let batchedComputed;
function batch(sub, isComputed = false) {
sub.flags |= 8;
if (isComputed) {
sub.next = batchedComputed;
batchedComputed = sub;
return;
}
sub.next = batchedSub;
batchedSub = sub;
}
function startBatch() {
batchDepth++;
}
function endBatch() {
if (--batchDepth > 0) {
return;
}
if (batchedComputed) {
let e = batchedComputed;
batchedComputed = void 0;
while (e) {
const next = e.next;
e.next = void 0;
e.flags &= -9;
e = next;
}
}
let error;
while (batchedSub) {
let e = batchedSub;
batchedSub = void 0;
while (e) {
const next = e.next;
e.next = void 0;
e.flags &= -9;
if (e.flags & 1) {
try {
;
e.trigger();
} catch (err) {
if (!error) error = err;
}
}
e = next;
}
}
if (error) throw error;
}
function prepareDeps(sub) {
for (let link2 = sub.deps; link2; link2 = link2.nextDep) {
link2.version = -1;
link2.prevActiveLink = link2.dep.activeLink;
link2.dep.activeLink = link2;
}
}
function cleanupDeps(sub) {
let head;
let tail = sub.depsTail;
let link2 = tail;
while (link2) {
const prev = link2.prevDep;
if (link2.version === -1) {
if (link2 === tail) tail = prev;
removeSub(link2);
removeDep(link2);
} else {
head = link2;
}
link2.dep.activeLink = link2.prevActiveLink;
link2.prevActiveLink = void 0;
link2 = prev;
}
sub.deps = head;
sub.depsTail = tail;
}
function isDirty(sub) {
for (let link2 = sub.deps; link2; link2 = link2.nextDep) {
if (link2.dep.version !== link2.version || link2.dep.computed && (refreshComputed(link2.dep.computed) || link2.dep.version !== link2.version)) {
return true;
}
}
if (sub._dirty) {
return true;
}
return false;
}
function refreshComputed(computed2) {
if (computed2.flags & 4 && !(computed2.flags & 16)) {
return;
}
computed2.flags &= -17;
if (computed2.globalVersion === globalVersion) {
return;
}
computed2.globalVersion = globalVersion;
if (!computed2.isSSR && computed2.flags & 128 && (!computed2.deps && !computed2._dirty || !isDirty(computed2))) {
return;
}
computed2.flags |= 2;
const dep = computed2.dep;
const prevSub = activeSub;
const prevShouldTrack = shouldTrack;
activeSub = computed2;
shouldTrack = true;
try {
prepareDeps(computed2);
const value = computed2.fn(computed2._value);
if (dep.version === 0 || hasChanged(value, computed2._value)) {
computed2.flags |= 128;
computed2._value = value;
dep.version++;
}
} catch (err) {
dep.version++;
throw err;
} finally {
activeSub = prevSub;
shouldTrack = prevShouldTrack;
cleanupDeps(computed2);
computed2.flags &= -3;
}
}
function removeSub(link2, soft = false) {
const { dep, prevSub, nextSub } = link2;
if (prevSub) {
prevSub.nextSub = nextSub;
link2.prevSub = void 0;
}
if (nextSub) {
nextSub.prevSub = prevSub;
link2.nextSub = void 0;
}
if (dep.subs === link2) {
dep.subs = prevSub;
if (!prevSub && dep.computed) {
dep.computed.flags &= -5;
for (let l = dep.computed.deps; l; l = l.nextDep) {
removeSub(l, true);
}
}
}
if (!soft && !--dep.sc && dep.map) {
dep.map.delete(dep.key);
}
}
function removeDep(link2) {
const { prevDep, nextDep } = link2;
if (prevDep) {
prevDep.nextDep = nextDep;
link2.prevDep = void 0;
}
if (nextDep) {
nextDep.prevDep = prevDep;
link2.nextDep = void 0;
}
}
let shouldTrack = true;
const trackStack = [];
function pauseTracking() {
trackStack.push(shouldTrack);
shouldTrack = false;
}
function resetTracking() {
const last = trackStack.pop();
shouldTrack = last === void 0 ? true : last;
}
function cleanupEffect(e) {
const { cleanup } = e;
e.cleanup = void 0;
if (cleanup) {
const prevSub = activeSub;
activeSub = void 0;
try {
cleanup();
} finally {
activeSub = prevSub;
}
}
}
let globalVersion = 0;
class Link {
constructor(sub, dep) {
this.sub = sub;
this.dep = dep;
this.version = dep.version;
this.nextDep = this.prevDep = this.nextSub = this.prevSub = this.prevActiveLink = void 0;
}
}
class Dep {
// TODO isolatedDeclarations "__v_skip"
constructor(computed2) {
this.computed = computed2;
this.version = 0;
this.activeLink = void 0;
this.subs = void 0;
this.map = void 0;
this.key = void 0;
this.sc = 0;
this.__v_skip = true;
}
track(debugInfo) {
if (!activeSub || !shouldTrack || activeSub === this.computed) {
return;
}
let link2 = this.activeLink;
if (link2 === void 0 || link2.sub !== activeSub) {
link2 = this.activeLink = new Link(activeSub, this);
if (!activeSub.deps) {
activeSub.deps = activeSub.depsTail = link2;
} else {
link2.prevDep = activeSub.depsTail;
activeSub.depsTail.nextDep = link2;
activeSub.depsTail = link2;
}
addSub(link2);
} else if (link2.version === -1) {
link2.version = this.version;
if (link2.nextDep) {
const next = link2.nextDep;
next.prevDep = link2.prevDep;
if (link2.prevDep) {
link2.prevDep.nextDep = next;
}
link2.prevDep = activeSub.depsTail;
link2.nextDep = void 0;
activeSub.depsTail.nextDep = link2;
activeSub.depsTail = link2;
if (activeSub.deps === link2) {
activeSub.deps = next;
}
}
}
return link2;
}
trigger(debugInfo) {
this.version++;
globalVersion++;
this.notify(debugInfo);
}
notify(debugInfo) {
startBatch();
try {
if (false) ;
for (let link2 = this.subs; link2; link2 = link2.prevSub) {
if (link2.sub.notify()) {
;
link2.sub.dep.notify();
}
}
} finally {
endBatch();
}
}
}
function addSub(link2) {
link2.dep.sc++;
if (link2.sub.flags & 4) {
const computed2 = link2.dep.computed;
if (computed2 && !link2.dep.subs) {
computed2.flags |= 4 | 16;
for (let l = computed2.deps; l; l = l.nextDep) {
addSub(l);
}
}
const currentTail = link2.dep.subs;
if (currentTail !== link2) {
link2.prevSub = currentTail;
if (currentTail) currentTail.nextSub = link2;
}
link2.dep.subs = link2;
}
}
const targetMap = /* @__PURE__ */ new WeakMap();
const ITERATE_KEY = /* @__PURE__ */ Symbol(
""
);
const MAP_KEY_ITERATE_KEY = /* @__PURE__ */ Symbol(
""
);
const ARRAY_ITERATE_KEY = /* @__PURE__ */ Symbol(
""
);
function track(target, type, key) {
if (shouldTrack && activeSub) {
let depsMap = targetMap.get(target);
if (!depsMap) {
targetMap.set(target, depsMap = /* @__PURE__ */ new Map());
}
let dep = depsMap.get(key);
if (!dep) {
depsMap.set(key, dep = new Dep());
dep.map = depsMap;
dep.key = key;
}
{
dep.track();
}
}
}
function trigger(target, type, key, newValue, oldValue, oldTarget) {
const depsMap = targetMap.get(target);
if (!depsMap) {
globalVersion++;
return;
}
const run = (dep) => {
if (dep) {
{
dep.trigger();
}
}
};
startBatch();
if (type === "clear") {
depsMap.forEach(run);
} else {
const targetIsArray = isArray(target);
const isArrayIndex = targetIsArray && isIntegerKey(key);
if (targetIsArray && key === "length") {
const newLength = Number(newValue);
depsMap.forEach((dep, key2) => {
if (key2 === "length" || key2 === ARRAY_ITERATE_KEY || !isSymbol(key2) && key2 >= newLength) {
run(dep);
}
});
} else {
if (key !== void 0 || depsMap.has(void 0)) {
run(depsMap.get(key));
}
if (isArrayIndex) {
run(depsMap.get(ARRAY_ITERATE_KEY));
}
switch (type) {
case "add":
if (!targetIsArray) {
run(depsMap.get(ITERATE_KEY));
if (isMap(target)) {
run(depsMap.get(MAP_KEY_ITERATE_KEY));
}
} else if (isArrayIndex) {
run(depsMap.get("length"));
}
break;
case "delete":
if (!targetIsArray) {
run(depsMap.get(ITERATE_KEY));
if (isMap(target)) {
run(depsMap.get(MAP_KEY_ITERATE_KEY));
}
}
break;
case "set":
if (isMap(target)) {
run(depsMap.get(ITERATE_KEY));
}
break;
}
}
}
endBatch();
}
function getDepFromReactive(object, key) {
const depMap = targetMap.get(object);
return depMap && depMap.get(key);
}
function reactiveReadArray(array) {
const raw = /* @__PURE__ */ toRaw(array);
if (raw === array) return raw;
track(raw, "iterate", ARRAY_ITERATE_KEY);
return /* @__PURE__ */ isShallow(array) ? raw : raw.map(toReactive);
}
function shallowReadArray(arr) {
track(arr = /* @__PURE__ */ toRaw(arr), "iterate", ARRAY_ITERATE_KEY);
return arr;
}
function toWrapped(target, item) {
if (/* @__PURE__ */ isReadonly(target)) {
return /* @__PURE__ */ isReactive(target) ? toReadonly(toReactive(item)) : toReadonly(item);
}
return toReactive(item);
}
const arrayInstrumentations = {
__proto__: null,
[Symbol.iterator]() {
return iterator(this, Symbol.iterator, (item) => toWrapped(this, item));
},
concat(...args) {
return reactiveReadArray(this).concat(
...args.map((x) => isArray(x) ? reactiveReadArray(x) : x)
);
},
entries() {
return iterator(this, "entries", (value) => {
value[1] = toWrapped(this, value[1]);
return value;
});
},
every(fn, thisArg) {
return apply(this, "every", fn, thisArg, void 0, arguments);
},
filter(fn, thisArg) {
return apply(
this,
"filter",
fn,
thisArg,
(v) => v.map((item) => toWrapped(this, item)),
arguments
);
},
find(fn, thisArg) {
return apply(
this,
"find",
fn,
thisArg,
(item) => toWrapped(this, item),
arguments
);
},
findIndex(fn, thisArg) {
return apply(this, "findIndex", fn, thisArg, void 0, arguments);
},
findLast(fn, thisArg) {
return apply(
this,
"findLast",
fn,
thisArg,
(item) => toWrapped(this, item),
arguments
);
},
findLastIndex(fn, thisArg) {
return apply(this, "findLastIndex", fn, thisArg, void 0, arguments);
},
// flat, flatMap could benefit from ARRAY_ITERATE but are not straight-forward to implement
forEach(fn, thisArg) {
return apply(this, "forEach", fn, thisArg, void 0, arguments);
},
includes(...args) {
return searchProxy(this, "includes", args);
},
indexOf(...args) {
return searchProxy(this, "indexOf", args);
},
join(separator) {
return reactiveReadArray(this).join(separator);
},
// keys() iterator only reads `length`, no optimization required
lastIndexOf(...args) {
return searchProxy(this, "lastIndexOf", args);
},
map(fn, thisArg) {
return apply(this, "map", fn, thisArg, void 0, arguments);
},
pop() {
return noTracking(this, "pop");
},
push(...args) {
return noTracking(this, "push", args);
},
reduce(fn, ...args) {
return reduce(this, "reduce", fn, args);
},
reduceRight(fn, ...args) {
return reduce(this, "reduceRight", fn, args);
},
shift() {
return noTracking(this, "shift");
},
// slice could use ARRAY_ITERATE but also seems to beg for range tracking
some(fn, thisArg) {
return apply(this, "some", fn, thisArg, void 0, arguments);
},
splice(...args) {
return noTracking(this, "splice", args);
},
toReversed() {
return reactiveReadArray(this).toReversed();
},
toSorted(comparer) {
return reactiveReadArray(this).toSorted(comparer);
},
toSpliced(...args) {
return reactiveReadArray(this).toSpliced(...args);
},
unshift(...args) {
return noTracking(this, "unshift", args);
},
values() {
return iterator(this, "values", (item) => toWrapped(this, item));
}
};
function iterator(self2, method, wrapValue) {
const arr = shallowReadArray(self2);
const iter = arr[method]();
if (arr !== self2 && !/* @__PURE__ */ isShallow(self2)) {
iter._next = iter.next;
iter.next = () => {
const result = iter._next();
if (!result.done) {
result.value = wrapValue(result.value);
}
return result;
};
}
return iter;
}
const arrayProto = Array.prototype;
function apply(self2, method, fn, thisArg, wrappedRetFn, args) {
const arr = shallowReadArray(self2);
const needsWrap = arr !== self2 && !/* @__PURE__ */ isShallow(self2);
const methodFn = arr[method];
if (methodFn !== arrayProto[method]) {
const result2 = methodFn.apply(self2, args);
return needsWrap ? toReactive(result2) : result2;
}
let wrappedFn = fn;
if (arr !== self2) {
if (needsWrap) {
wrappedFn = function(item, index) {
return fn.call(this, toWrapped(self2, item), index, self2);
};
} else if (fn.length > 2) {
wrappedFn = function(item, index) {
return fn.call(this, item, index, self2);
};
}
}
const result = methodFn.call(arr, wrappedFn, thisArg);
return needsWrap && wrappedRetFn ? wrappedRetFn(result) : result;
}
function reduce(self2, method, fn, args) {
const arr = shallowReadArray(self2);
const needsWrap = arr !== self2 && !/* @__PURE__ */ isShallow(self2);
let wrappedFn = fn;
let wrapInitialAccumulator = false;
if (arr !== self2) {
if (needsWrap) {
wrapInitialAccumulator = args.length === 0;
wrappedFn = function(acc, item, index) {
if (wrapInitialAccumulator) {
wrapInitialAccumulator = false;
acc = toWrapped(self2, acc);
}
return fn.call(this, acc, toWrapped(self2, item), index, self2);
};
} else if (fn.length > 3) {
wrappedFn = function(acc, item, index) {
return fn.call(this, acc, item, index, self2);
};
}
}
const result = arr[method](wrappedFn, ...args);
return wrapInitialAccumulator ? toWrapped(self2, result) : result;
}
function searchProxy(self2, method, args) {
const arr = /* @__PURE__ */ toRaw(self2);
track(arr, "iterate", ARRAY_ITERATE_KEY);
const res = arr[method](...args);
if ((res === -1 || res === false) && /* @__PURE__ */ isProxy(args[0])) {
args[0] = /* @__PURE__ */ toRaw(args[0]);
return arr[method](...args);
}
return res;
}
function noTracking(self2, method, args = []) {
pauseTracking();
startBatch();
const res = (/* @__PURE__ */ toRaw(self2))[method].apply(self2, args);
endBatch();
resetTracking();
return res;
}
const isNonTrackableKeys = /* @__PURE__ */ makeMap(`__proto__,__v_isRef,__isVue`);
const builtInSymbols = new Set(
/* @__PURE__ */ Object.getOwnPropertyNames(Symbol).filter((key) => key !== "arguments" && key !== "caller").map((key) => Symbol[key]).filter(isSymbol)
);
function hasOwnProperty(key) {
if (!isSymbol(key)) key = String(key);
const obj = /* @__PURE__ */ toRaw(this);
track(obj, "has", key);
return obj.hasOwnProperty(key);
}
class BaseReactiveHandler {
constructor(_isReadonly = false, _isShallow = false) {
this._isReadonly = _isReadonly;
this._isShallow = _isShallow;
}
get(target, key, receiver) {
if (key === "__v_skip") return target["__v_skip"];
const isReadonly2 = this._isReadonly, isShallow2 = this._isShallow;
if (key === "__v_isReactive") {
return !isReadonly2;
} else if (key === "__v_isReadonly") {
return isReadonly2;
} else if (key === "__v_isShallow") {
return isShallow2;
} else if (key === "__v_raw") {
if (receiver === (isReadonly2 ? isShallow2 ? shallowReadonlyMap : readonlyMap : isShallow2 ? shallowReactiveMap : reactiveMap).get(target) || // receiver is not the reactive proxy, but has the same prototype
// this means the receiver is a user proxy of the reactive proxy
Object.getPrototypeOf(target) === Object.getPrototypeOf(receiver)) {
return target;
}
return;
}
const targetIsArray = isArray(target);
if (!isReadonly2) {
let fn;
if (targetIsArray && (fn = arrayInstrumentations[key])) {
return fn;
}
if (key === "hasOwnProperty") {
return hasOwnProperty;
}
}
const res = Reflect.get(
target,
key,
// if this is a proxy wrapping a ref, return methods using the raw ref
// as receiver so that we don't have to call `toRaw` on the ref in all
// its class methods
/* @__PURE__ */ isRef(target) ? target : receiver
);
if (isSymbol(key) ? builtInSymbols.has(key) : isNonTrackableKeys(key)) {
return res;
}
if (!isReadonly2) {
track(target, "get", key);
}
if (isShallow2) {
return res;
}
if (/* @__PURE__ */ isRef(res)) {
const value = targetIsArray && isIntegerKey(key) ? res : res.value;
return isReadonly2 && isObject$1(value) ? /* @__PURE__ */ readonly(value) : value;
}
if (isObject$1(res)) {
return isReadonly2 ? /* @__PURE__ */ readonly(res) : /* @__PURE__ */ reactive(res);
}
return res;
}
}
class MutableReactiveHandler extends BaseReactiveHandler {
constructor(isShallow2 = false) {
super(false, isShallow2);
}
set(target, key, value, receiver) {
let oldValue = target[key];
const isArrayWithIntegerKey = isArray(target) && isIntegerKey(key);
if (!this._isShallow) {
const isOldValueReadonly = /* @__PURE__ */ isReadonly(oldValue);
if (!/* @__PURE__ */ isShallow(value) && !/* @__PURE__ */ isReadonly(value)) {
oldValue = /* @__PURE__ */ toRaw(oldValue);
value = /* @__PURE__ */ toRaw(value);
}
if (!isArrayWithIntegerKey && /* @__PURE__ */ isRef(oldValue) && !/* @__PURE__ */ isRef(value)) {
if (isOldValueReadonly) {
return true;
} else {
oldValue.value = value;
return true;
}
}
}
const hadKey = isArrayWithIntegerKey ? Number(key) < target.length : hasOwn(target, key);
const result = Reflect.set(
target,
key,
value,
/* @__PURE__ */ isRef(target) ? target : receiver
);
if (target === /* @__PURE__ */ toRaw(receiver)) {
if (!hadKey) {
trigger(target, "add", key, value);
} else if (hasChanged(value, oldValue)) {
trigger(target, "set", key, value);
}
}
return result;
}
deleteProperty(target, key) {
const hadKey = hasOwn(target, key);
target[key];
const result = Reflect.deleteProperty(target, key);
if (result && hadKey) {
trigger(target, "delete", key, void 0);
}
return result;
}
has(target, key) {
const result = Reflect.has(target, key);
if (!isSymbol(key) || !builtInSymbols.has(key)) {
track(target, "has", key);
}
return result;
}
ownKeys(target) {
track(
target,
"iterate",
isArray(target) ? "length" : ITERATE_KEY
);
return Reflect.ownKeys(target);
}
}
class ReadonlyReactiveHandler extends BaseReactiveHandler {
constructor(isShallow2 = false) {
super(true, isShallow2);
}
set(target, key) {
return true;
}
deleteProperty(target, key) {
return true;
}
}
const mutableHandlers = /* @__PURE__ */ new MutableReactiveHandler();
const readonlyHandlers = /* @__PURE__ */ new ReadonlyReactiveHandler();
const shallowReactiveHandlers = /* @__PURE__ */ new MutableReactiveHandler(true);
const shallowReadonlyHandlers = /* @__PURE__ */ new ReadonlyReactiveHandler(true);
const toShallow = (value) => value;
const getProto = (v) => Reflect.getPrototypeOf(v);
function createIterableMethod(method, isReadonly2, isShallow2) {
return function(...args) {
const target = this["__v_raw"];
const rawTarget = /* @__PURE__ */ toRaw(target);
const targetIsMap = isMap(rawTarget);
const isPair = method === "entries" || method === Symbol.iterator && targetIsMap;
const isKeyOnly = method === "keys" && targetIsMap;
const innerIterator = target[method](...args);
const wrap = isShallow2 ? toShallow : isReadonly2 ? toReadonly : toReactive;
!isReadonly2 && track(
rawTarget,
"iterate",
isKeyOnly ? MAP_KEY_ITERATE_KEY : ITERATE_KEY
);
return extend(
// inheriting all iterator properties
Object.create(innerIterator),
{
// iterator protocol
next() {
const { value, done } = innerIterator.next();
return done ? { value, done } : {
value: isPair ? [wrap(value[0]), wrap(value[1])] : wrap(value),
done
};
}
}
);
};
}
function createReadonlyMethod(type) {
return function(...args) {
return type === "delete" ? false : type === "clear" ? void 0 : this;
};
}
function createInstrumentations(readonly2, shallow) {
const instrumentations = {
get(key) {
const target = this["__v_raw"];
const rawTarget = /* @__PURE__ */ toRaw(target);
const rawKey = /* @__PURE__ */ toRaw(key);
if (!readonly2) {
if (hasChanged(key, rawKey)) {
track(rawTarget, "get", key);
}
track(rawTarget, "get", rawKey);
}
const { has } = getProto(rawTarget);
const wrap = shallow ? toShallow : readonly2 ? toReadonly : toReactive;
if (has.call(rawTarget, key)) {
return wrap(target.get(key));
} else if (has.call(rawTarget, rawKey)) {
return wrap(target.get(rawKey));
} else if (target !== rawTarget) {
target.get(key);
}
},
get size() {
const target = this["__v_raw"];
!readonly2 && track(/* @__PURE__ */ toRaw(target), "iterate", ITERATE_KEY);
return target.size;
},
has(key) {
const target = this["__v_raw"];
const rawTarget = /* @__PURE__ */ toRaw(target);
const rawKey = /* @__PURE__ */ toRaw(key);
if (!readonly2) {
if (hasChanged(key, rawKey)) {
track(rawTarget, "has", key);
}
track(rawTarget, "has", rawKey);
}
return key === rawKey ? target.has(key) : target.has(key) || target.has(rawKey);
},
forEach(callback, thisArg) {
const observed = this;
const target = observed["__v_raw"];
const rawTarget = /* @__PURE__ */ toRaw(target);
const wrap = shallow ? toShallow : readonly2 ? toReadonly : toReactive;
!readonly2 && track(rawTarget, "iterate", ITERATE_KEY);
return target.forEach((value, key) => {
return callback.call(thisArg, wrap(value), wrap(key), observed);
});
}
};
extend(
instrumentations,
readonly2 ? {
add: createReadonlyMethod("add"),
set: createReadonlyMethod("set"),
delete: createReadonlyMethod("delete"),
clear: createReadonlyMethod("clear")
} : {
add(value) {
const target = /* @__PURE__ */ toRaw(this);
const proto = getProto(target);
const rawValue = /* @__PURE__ */ toRaw(value);
const valueToAdd = !shallow && !/* @__PURE__ */ isShallow(value) && !/* @__PURE__ */ isReadonly(value) ? rawValue : value;
const hadKey = proto.has.call(target, valueToAdd) || hasChanged(value, valueToAdd) && proto.has.call(target, value) || hasChanged(rawValue, valueToAdd) && proto.has.call(target, rawValue);
if (!hadKey) {
target.add(valueToAdd);
trigger(target, "add", valueToAdd, valueToAdd);
}
return this;
},
set(key, value) {
if (!shallow && !/* @__PURE__ */ isShallow(value) && !/* @__PURE__ */ isReadonly(value)) {
value = /* @__PURE__ */ toRaw(value);
}
const target = /* @__PURE__ */ toRaw(this);
const { has, get } = getProto(target);
let hadKey = has.call(target, key);
if (!hadKey) {
key = /* @__PURE__ */ toRaw(key);
hadKey = has.call(target, key);
}
const oldValue = get.call(target, key);
target.set(key, value);
if (!hadKey) {
trigger(target, "add", key, value);
} else if (hasChanged(value, oldValue)) {
trigger(target, "set", key, value);
}
return this;
},
delete(key) {
const target = /* @__PURE__ */ toRaw(this);
const { has, get } = getProto(target);
let hadKey = has.call(target, key);
if (!hadKey) {
key = /* @__PURE__ */ toRaw(key);
hadKey = has.call(target, key);
}
get ? get.call(target, key) : void 0;
const result = target.delete(key);
if (hadKey) {
trigger(target, "delete", key, void 0);
}
return result;
},
clear() {
const target = /* @__PURE__ */ toRaw(this);
const hadItems = target.size !== 0;
const result = target.clear();
if (hadItems) {
trigger(
target,
"clear",
void 0,
void 0
);
}
return result;
}
}
);
const iteratorMethods = [
"keys",
"values",
"entries",
Symbol.iterator
];
iteratorMethods.forEach((method) => {
instrumentations[method] = createIterableMethod(method, readonly2, shallow);
});
return instrumentations;
}
function createInstrumentationGetter(isReadonly2, shallow) {
const instrumentations = createInstrumentations(isReadonly2, shallow);
return (target, key, receiver) => {
if (key === "__v_isReactive") {
return !isReadonly2;
} else if (key === "__v_isReadonly") {
return isReadonly2;
} else if (key === "__v_raw") {
return target;
}
return Reflect.get(
hasOwn(instrumentations, key) && key in target ? instrumentations : target,
key,
receiver
);
};
}
const mutableCollectionHandlers = {
get: /* @__PURE__ */ createInstrumentationGetter(false, false)
};
const shallowCollectionHandlers = {
get: /* @__PURE__ */ createInstrumentationGetter(false, true)
};
const readonlyCollectionHandlers = {
get: /* @__PURE__ */ createInstrumentationGetter(true, false)
};
const shallowReadonlyCollectionHandlers = {
get: /* @__PURE__ */ createInstrumentationGetter(true, true)
};
const reactiveMap = /* @__PURE__ */ new WeakMap();
const shallowReactiveMap = /* @__PURE__ */ new WeakMap();
const readonlyMap = /* @__PURE__ */ new WeakMap();
const shallowReadonlyMap = /* @__PURE__ */ new WeakMap();
function targetTypeMap(rawType) {
switch (rawType) {
case "Object":
case "Array":
return 1;
case "Map":
case "Set":
case "WeakMap":
case "WeakSet":
return 2;
default:
return 0;
}
}
function getTargetType(value) {
return value["__v_skip"] || !Object.isExtensible(value) ? 0 : targetTypeMap(toRawType(value));
}
// @__NO_SIDE_EFFECTS__
function reactive(target) {
if (/* @__PURE__ */ isReadonly(target)) {
return target;
}
return createReactiveObject(
target,
false,
mutableHandlers,
mutableCollectionHandlers,
reactiveMap
);
}
// @__NO_SIDE_EFFECTS__
function shallowReactive(target) {
return createReactiveObject(
target,
false,
shallowReactiveHandlers,
shallowCollectionHandlers,
shallowReactiveMap
);
}
// @__NO_SIDE_EFFECTS__
function readonly(target) {
return createReactiveObject(
target,
true,
readonlyHandlers,
readonlyCollectionHandlers,
readonlyMap
);
}
// @__NO_SIDE_EFFECTS__
function shallowReadonly(target) {
return createReactiveObject(
target,
true,
shallowReadonlyHandlers,
shallowReadonlyCollectionHandlers,
shallowReadonlyMap
);
}
function createReactiveObject(target, isReadonly2, baseHandlers, collectionHandlers, proxyMap) {
if (!isObject$1(target)) {
return target;
}
if (target["__v_raw"] && !(isReadonly2 && target["__v_isReactive"])) {
return target;
}
const targetType = getTargetType(target);
if (targetType === 0) {
return target;
}
const existingProxy = proxyMap.get(target);
if (existingProxy) {
return existingProxy;
}
const proxy = new Proxy(
target,
targetType === 2 ? collectionHandlers : baseHandlers
);
proxyMap.set(target, proxy);
return proxy;
}
// @__NO_SIDE_EFFECTS__
function isReactive(value) {
if (/* @__PURE__ */ isReadonly(value)) {
return /* @__PURE__ */ isReactive(value["__v_raw"]);
}
return !!(value && value["__v_isReactive"]);
}
// @__NO_SIDE_EFFECTS__
function isReadonly(value) {
return !!(value && value["__v_isReadonly"]);
}
// @__NO_SIDE_EFFECTS__
function isShallow(value) {
return !!(value && value["__v_isShallow"]);
}
// @__NO_SIDE_EFFECTS__
function isProxy(value) {
return value ? !!value["__v_raw"] : false;
}
// @__NO_SIDE_EFFECTS__
function toRaw(observed) {
const raw = observed && observed["__v_raw"];
return raw ? /* @__PURE__ */ toRaw(raw) : observed;
}
function markRaw(value) {
if (!hasOwn(value, "__v_skip") && Object.isExtensible(value)) {
def(value, "__v_skip", true);
}
return value;
}
const toReactive = (value) => isObject$1(value) ? /* @__PURE__ */ reactive(value) : value;
const toReadonly = (value) => isObject$1(value) ? /* @__PURE__ */ readonly(value) : value;
// @__NO_SIDE_EFFECTS__
function isRef(r) {
return r ? r["__v_isRef"] === true : false;
}
// @__NO_SIDE_EFFECTS__
function ref(value) {
return createRef(value, false);
}
// @__NO_SIDE_EFFECTS__
function shallowRef(value) {
return createRef(value, true);
}
function createRef(rawValue, shallow) {
if (/* @__PURE__ */ isRef(rawValue)) {
return rawValue;
}
return new RefImpl(rawValue, shallow);
}
class RefImpl {
constructor(value, isShallow2) {
this.dep = new Dep();
this["__v_isRef"] = true;
this["__v_isShallow"] = false;
this._rawValue = isShallow2 ? value : /* @__PURE__ */ toRaw(value);
this._value = isShallow2 ? value : toReactive(value);
this["__v_isShallow"] = isShallow2;
}
get value() {
{
this.dep.track();
}
return this._value;
}
set value(newValue) {
const oldValue = this._rawValue;
const useDirectValue = this["__v_isShallow"] || /* @__PURE__ */ isShallow(newValue) || /* @__PURE__ */ isReadonly(newValue);
newValue = useDirectValue ? newValue : /* @__PURE__ */ toRaw(newValue);
if (hasChanged(newValue, oldValue)) {
this._rawValue = newValue;
this._value = useDirectValue ? newValue : toReactive(newValue);
{
this.dep.trigger();
}
}
}
}
function unref(ref2) {
return /* @__PURE__ */ isRef(ref2) ? ref2.value : ref2;
}
function toValue(source) {
return isFunction(source) ? source() : unref(source);
}
const shallowUnwrapHandlers = {
get: (target, key, receiver) => key === "__v_raw" ? target : unref(Reflect.get(target, key, receiver)),
set: (target, key, value, receiver) => {
const oldValue = target[key];
if (/* @__PURE__ */ isRef(oldValue) && !/* @__PURE__ */ isRef(value)) {
oldValue.value = value;
return true;
} else {
return Reflect.set(target, key, value, receiver);
}
}
};
function proxyRefs(objectWithRefs) {
return /* @__PURE__ */ isReactive(objectWithRefs) ? objectWithRefs : new Proxy(objectWithRefs, shallowUnwrapHandlers);
}
class CustomRefImpl {
constructor(factory) {
this["__v_isRef"] = true;
this._value = void 0;
const dep = this.dep = new Dep();
const { get, set } = factory(dep.track.bind(dep), dep.trigger.bind(dep));
this._get = get;
this._set = set;
}
get value() {
return this._value = this._get();
}
set value(newVal) {
this._set(newVal);
}
}
function customRef(factory) {
return new CustomRefImpl(factory);
}
class ObjectRefImpl {
constructor(_object, _key, _defaultValue) {
this._object = _object;
this._key = _key;
this._defaultValue = _defaultValue;
this["__v_isRef"] = true;
this._value = void 0;
this._raw = /* @__PURE__ */ toRaw(_object);
let shallow = true;
let obj = _object;
if (!isArray(_object) || !isIntegerKey(String(_key))) {
do {
shallow = !/* @__PURE__ */ isProxy(obj) || /* @__PURE__ */ isShallow(obj);
} while (shallow && (obj = obj["__v_raw"]));
}
this._shallow = shallow;
}
get value() {
let val = this._object[this._key];
if (this._shallow) {
val = unref(val);
}
return this._value = val === void 0 ? this._defaultValue : val;
}
set value(newVal) {
if (this._shallow && /* @__PURE__ */ isRef(this._raw[this._key])) {
const nestedRef = this._object[this._key];
if (/* @__PURE__ */ isRef(nestedRef)) {
nestedRef.value = newVal;
return;
}
}
this._object[this._key] = newVal;
}
get dep() {
return getDepFromReactive(this._raw, this._key);
}
}
class GetterRefImpl {
constructor(_getter) {
this._getter = _getter;
this["__v_isRef"] = true;
this["__v_isReadonly"] = true;
this._value = void 0;
}
get value() {
return this._value = this._getter();
}
}
// @__NO_SIDE_EFFECTS__
function toRef$1(source, key, defaultValue) {
if (/* @__PURE__ */ isRef(source)) {
return source;
} else if (isFunction(source)) {
return new GetterRefImpl(source);
} else if (isObject$1(source) && arguments.length > 1) {
return propertyToRef(source, key, defaultValue);
} else {
return /* @__PURE__ */ ref(source);
}
}
function propertyToRef(source, key, defaultValue) {
return new ObjectRefImpl(source, key, defaultValue);
}
class ComputedRefImpl {
constructor(fn, setter, isSSR) {
this.fn = fn;
this.setter = setter;
this._value = void 0;
this.dep = new Dep(this);
this.__v_isRef = true;
this.deps = void 0;
this.depsTail = void 0;
this.flags = 16;
this.globalVersion = globalVersion - 1;
this.next = void 0;
this.effect = this;
this["__v_isReadonly"] = !setter;
this.isSSR = isSSR;
}
/**
* @internal
*/
notify() {
this.flags |= 16;
if (!(this.flags & 8) && // avoid infinite self recursion
activeSub !== this) {
batch(this, true);
return true;
}
}
get value() {
const link2 = this.dep.track();
refreshComputed(this);
if (link2) {
link2.version = this.dep.version;
}
return this._value;
}
set value(newValue) {
if (this.setter) {
this.setter(newValue);
}
}
}
// @__NO_SIDE_EFFECTS__
function computed$1(getterOrOptions, debugOptions, isSSR = false) {
let getter;
let setter;
if (isFunction(getterOrOptions)) {
getter = getterOrOptions;
} else {
getter = getterOrOptions.get;
setter = getterOrOptions.set;
}
const cRef = new ComputedRefImpl(getter, setter, isSSR);
return cRef;
}
const INITIAL_WATCHER_VALUE = {};
const cleanupMap = /* @__PURE__ */ new WeakMap();
let activeWatcher = void 0;
function onWatcherCleanup(cleanupFn, failSilently = false, owner = activeWatcher) {
if (owner) {
let cleanups = cleanupMap.get(owner);
if (!cleanups) cleanupMap.set(owner, cleanups = []);
cleanups.push(cleanupFn);
}
}
function watch$1(source, cb, options = EMPTY_OBJ) {
const { immediate, deep, once, scheduler, augmentJob, call } = options;
const reactiveGetter = (source2) => {
if (deep) return source2;
if (/* @__PURE__ */ isShallow(source2) || deep === false || deep === 0)
return traverse(source2, 1);
return traverse(source2);
};
let effect2;
let getter;
let cleanup;
let boundCleanup;
let forceTrigger = false;
let isMultiSource = false;
if (/* @__PURE__ */ isRef(source)) {
getter = () => source.value;
forceTrigger = /* @__PURE__ */ isShallow(source);
} else if (/* @__PURE__ */ isReactive(source)) {
getter = () => reactiveGetter(source);
forceTrigger = true;
} else if (isArray(source)) {
isMultiSource = true;
forceTrigger = source.some((s) => /* @__PURE__ */ isReactive(s) || /* @__PURE__ */ isShallow(s));
getter = () => source.map((s) => {
if (/* @__PURE__ */ isRef(s)) {
return s.value;
} else if (/* @__PURE__ */ isReactive(s)) {
return reactiveGetter(s);
} else if (isFunction(s)) {
return call ? call(s, 2) : s();
} else ;
});
} else if (isFunction(source)) {
if (cb) {
getter = call ? () => call(source, 2) : source;
} else {
getter = () => {
if (cleanup) {
pauseTracking();
try {
cleanup();
} finally {
resetTracking();
}
}
const currentEffect = activeWatcher;
activeWatcher = effect2;
try {
return call ? call(source, 3, [boundCleanup]) : source(boundCleanup);
} finally {
activeWatcher = currentEffect;
}
};
}
} else {
getter = NOOP;
}
if (cb && deep) {
const baseGetter = getter;
const depth = deep === true ? Infinity : deep;
getter = () => traverse(baseGetter(), depth);
}
const scope = getCurrentScope();
const watchHandle = () => {
effect2.stop();
if (scope && scope.active) {
remove(scope.effects, effect2);
}
};
if (once && cb) {
const _cb = cb;
cb = (...args) => {
_cb(...args);
watchHandle();
};
}
let oldValue = isMultiSource ? new Array(source.length).fill(INITIAL_WATCHER_VALUE) : INITIAL_WATCHER_VALUE;
const job = (immediateFirstRun) => {
if (!(effect2.flags & 1) || !effect2.dirty && !immediateFirstRun) {
return;
}
if (cb) {
const newValue = effect2.run();
if (deep || forceTrigger || (isMultiSource ? newValue.some((v, i) => hasChanged(v, oldValue[i])) : hasChanged(newValue, oldValue))) {
if (cleanup) {
cleanup();
}
const currentWatcher = activeWatcher;
activeWatcher = effect2;
try {
const args = [
newValue,
// pass undefined as the old value when it's changed for the first time
oldValue === INITIAL_WATCHER_VALUE ? void 0 : isMultiSource && oldValue[0] === INITIAL_WATCHER_VALUE ? [] : oldValue,
boundCleanup
];
oldValue = newValue;
call ? call(cb, 3, args) : (
// @ts-expect-error
cb(...args)
);
} finally {
activeWatcher = currentWatcher;
}
}
} else {
effect2.run();
}
};
if (augmentJob) {
augmentJob(job);
}
effect2 = new ReactiveEffect(getter);
effect2.scheduler = scheduler ? () => scheduler(job, false) : job;
boundCleanup = (fn) => onWatcherCleanup(fn, false, effect2);
cleanup = effect2.onStop = () => {
const cleanups = cleanupMap.get(effect2);
if (cleanups) {
if (call) {
call(cleanups, 4);
} else {
for (const cleanup2 of cleanups) cleanup2();
}
cleanupMap.delete(effect2);
}
};
if (cb) {
if (immediate) {
job(true);
} else {
oldValue = effect2.run();
}
} else if (scheduler) {
scheduler(job.bind(null, true), true);
} else {
effect2.run();
}
watchHandle.pause = effect2.pause.bind(effect2);
watchHandle.resume = effect2.resume.bind(effect2);
watchHandle.stop = watchHandle;
return watchHandle;
}
function traverse(value, depth = Infinity, seen2) {
if (depth <= 0 || !isObject$1(value) || value["__v_skip"]) {
return value;
}
seen2 = seen2 || /* @__PURE__ */ new Map();
if ((seen2.get(value) || 0) >= depth) {
return value;
}
seen2.set(value, depth);
depth--;
if (/* @__PURE__ */ isRef(value)) {
traverse(value.value, depth, seen2);
} else if (isArray(value)) {
for (let i = 0; i < value.length; i++) {
traverse(value[i], depth, seen2);
}
} else if (isSet(value) || isMap(value)) {
value.forEach((v) => {
traverse(v, depth, seen2);
});
} else if (isPlainObject(value)) {
for (const key in value) {
traverse(value[key], depth, seen2);
}
for (const key of Object.getOwnPropertySymbols(value)) {
if (Object.prototype.propertyIsEnumerable.call(value, key)) {
traverse(value[key], depth, seen2);
}
}
}
return value;
}
/**
* @vue/runtime-core v3.5.30
* (c) 2018-present Yuxi (Evan) You and Vue contributors
* @license MIT
**/
const stack = [];
let isWarning = false;
function warn$1(msg, ...args) {
if (isWarning) return;
isWarning = true;
pauseTracking();
const instance = stack.length ? stack[stack.length - 1].component : null;
const appWarnHandler = instance && instance.appContext.config.warnHandler;
const trace = getComponentTrace();
if (appWarnHandler) {
callWithErrorHandling(
appWarnHandler,
instance,
11,
[
// eslint-disable-next-line no-restricted-syntax
msg + args.map((a) => {
var _a, _b;
return (_b = (_a = a.toString) == null ? void 0 : _a.call(a)) != null ? _b : JSON.stringify(a);
}).join(""),
instance && instance.proxy,
trace.map(
({ vnode }) => `at <${formatComponentName(instance, vnode.type)}>`
).join("\n"),
trace
]
);
} else {
const warnArgs = [`[Vue warn]: ${msg}`, ...args];
if (trace.length && // avoid spamming console during tests
true) {
warnArgs.push(`
`, ...formatTrace(trace));
}
console.warn(...warnArgs);
}
resetTracking();
isWarning = false;
}
function getComponentTrace() {
let currentVNode = stack[stack.length - 1];
if (!currentVNode) {
return [];
}
const normalizedStack = [];
while (currentVNode) {
const last = normalizedStack[0];
if (last && last.vnode === currentVNode) {
last.recurseCount++;
} else {
normalizedStack.push({
vnode: currentVNode,
recurseCount: 0
});
}
const parentInstance = currentVNode.component && currentVNode.component.parent;
currentVNode = parentInstance && parentInstance.vnode;
}
return normalizedStack;
}
function formatTrace(trace) {
const logs = [];
trace.forEach((entry, i) => {
logs.push(...i === 0 ? [] : [`
`], ...formatTraceEntry(entry));
});
return logs;
}
function formatTraceEntry({ vnode, recurseCount }) {
const postfix = recurseCount > 0 ? `... (${recurseCount} recursive calls)` : ``;
const isRoot = vnode.component ? vnode.component.parent == null : false;
const open = ` at <${formatComponentName(
vnode.component,
vnode.type,
isRoot
)}`;
const close = `>` + postfix;
return vnode.props ? [open, ...formatProps(vnode.props), close] : [open + close];
}
function formatProps(props) {
const res = [];
const keys = Object.keys(props);
keys.slice(0, 3).forEach((key) => {
res.push(...formatProp(key, props[key]));
});
if (keys.length > 3) {
res.push(` ...`);
}
return res;
}
function formatProp(key, value, raw) {
if (isString(value)) {
value = JSON.stringify(value);
return raw ? value : [`${key}=${value}`];
} else if (typeof value === "number" || typeof value === "boolean" || value == null) {
return raw ? value : [`${key}=${value}`];
} else if (/* @__PURE__ */ isRef(value)) {
value = formatProp(key, /* @__PURE__ */ toRaw(value.value), true);
return raw ? value : [`${key}=Ref<`, value, `>`];
} else if (isFunction(value)) {
return [`${key}=fn${value.name ? `<${value.name}>` : ``}`];
} else {
value = /* @__PURE__ */ toRaw(value);
return raw ? value : [`${key}=`, value];
}
}
function callWithErrorHandling(fn, instance, type, args) {
try {
return args ? fn(...args) : fn();
} catch (err) {
handleError(err, instance, type);
}
}
function callWithAsyncErrorHandling(fn, instance, type, args) {
if (isFunction(fn)) {
const res = callWithErrorHandling(fn, instance, type, args);
if (res && isPromise(res)) {
res.catch((err) => {
handleError(err, instance, type);
});
}
return res;
}
if (isArray(fn)) {
const values = [];
for (let i = 0; i < fn.length; i++) {
values.push(callWithAsyncErrorHandling(fn[i], instance, type, args));
}
return values;
}
}
function handleError(err, instance, type, throwInDev = true) {
const contextVNode = instance ? instance.vnode : null;
const { errorHandler, throwUnhandledErrorInProduction } = instance && instance.appContext.config || EMPTY_OBJ;
if (instance) {
let cur = instance.parent;
const exposedInstance = instance.proxy;
const errorInfo = `https://vuejs.org/error-reference/#runtime-${type}`;
while (cur) {
const errorCapturedHooks = cur.ec;
if (errorCapturedHooks) {
for (let i = 0; i < errorCapturedHooks.length; i++) {
if (errorCapturedHooks[i](err, exposedInstance, errorInfo) === false) {
return;
}
}
}
cur = cur.parent;
}
if (errorHandler) {
pauseTracking();
callWithErrorHandling(errorHandler, null, 10, [
err,
exposedInstance,
errorInfo
]);
resetTracking();
return;
}
}
logError(err, type, contextVNode, throwInDev, throwUnhandledErrorInProduction);
}
function logError(err, type, contextVNode, throwInDev = true, throwInProd = false) {
if (throwInProd) {
throw err;
} else {
console.error(err);
}
}
const queue = [];
let flushIndex = -1;
const pendingPostFlushCbs = [];
let activePostFlushCbs = null;
let postFlushIndex = 0;
const resolvedPromise = /* @__PURE__ */ Promise.resolve();
let currentFlushPromise = null;
function nextTick(fn) {
const p2 = currentFlushPromise || resolvedPromise;
return fn ? p2.then(this ? fn.bind(this) : fn) : p2;
}
function findInsertionIndex(id) {
let start = flushIndex + 1;
let end = queue.length;
while (start < end) {
const middle = start + end >>> 1;
const middleJob = queue[middle];
const middleJobId = getId(middleJob);
if (middleJobId < id || middleJobId === id && middleJob.flags & 2) {
start = middle + 1;
} else {
end = middle;
}
}
return start;
}
function queueJob(job) {
if (!(job.flags & 1)) {
const jobId = getId(job);
const lastJob = queue[queue.length - 1];
if (!lastJob || // fast path when the job id is larger than the tail
!(job.flags & 2) && jobId >= getId(lastJob)) {
queue.push(job);
} else {
queue.splice(findInsertionIndex(jobId), 0, job);
}
job.flags |= 1;
queueFlush();
}
}
function queueFlush() {
if (!currentFlushPromise) {
currentFlushPromise = resolvedPromise.then(flushJobs);
}
}
function queuePostFlushCb(cb) {
if (!isArray(cb)) {
if (activePostFlushCbs && cb.id === -1) {
activePostFlushCbs.splice(postFlushIndex + 1, 0, cb);
} else if (!(cb.flags & 1)) {
pendingPostFlushCbs.push(cb);
cb.flags |= 1;
}
} else {
pendingPostFlushCbs.push(...cb);
}
queueFlush();
}
function flushPreFlushCbs(instance, seen2, i = flushIndex + 1) {
for (; i < queue.length; i++) {
const cb = queue[i];
if (cb && cb.flags & 2) {
if (instance && cb.id !== instance.uid) {
continue;
}
queue.splice(i, 1);
i--;
if (cb.flags & 4) {
cb.flags &= -2;
}
cb();
if (!(cb.flags & 4)) {
cb.flags &= -2;
}
}
}
}
function flushPostFlushCbs(seen2) {
if (pendingPostFlushCbs.length) {
const deduped = [...new Set(pendingPostFlushCbs)].sort(
(a, b) => getId(a) - getId(b)
);
pendingPostFlushCbs.length = 0;
if (activePostFlushCbs) {
activePostFlushCbs.push(...deduped);
return;
}
activePostFlushCbs = deduped;
for (postFlushIndex = 0; postFlushIndex < activePostFlushCbs.length; postFlushIndex++) {
const cb = activePostFlushCbs[postFlushIndex];
if (cb.flags & 4) {
cb.flags &= -2;
}
if (!(cb.flags & 8)) cb();
cb.flags &= -2;
}
activePostFlushCbs = null;
postFlushIndex = 0;
}
}
const getId = (job) => job.id == null ? job.flags & 2 ? -1 : Infinity : job.id;
function flushJobs(seen2) {
try {
for (flushIndex = 0; flushIndex < queue.length; flushIndex++) {
const job = queue[flushIndex];
if (job && !(job.flags & 8)) {
if (false) ;
if (job.flags & 4) {
job.flags &= ~1;
}
callWithErrorHandling(
job,
job.i,
job.i ? 15 : 14
);
if (!(job.flags & 4)) {
job.flags &= ~1;
}
}
}
} finally {
for (; flushIndex < queue.length; flushIndex++) {
const job = queue[flushIndex];
if (job) {
job.flags &= -2;
}
}
flushIndex = -1;
queue.length = 0;
flushPostFlushCbs();
currentFlushPromise = null;
if (queue.length || pendingPostFlushCbs.length) {
flushJobs();
}
}
}
let currentRenderingInstance = null;
let currentScopeId = null;
function setCurrentRenderingInstance(instance) {
const prev = currentRenderingInstance;
currentRenderingInstance = instance;
currentScopeId = instance && instance.type.__scopeId || null;
return prev;
}
function withCtx(fn, ctx = currentRenderingInstance, isNonScopedSlot) {
if (!ctx) return fn;
if (fn._n) {
return fn;
}
const renderFnWithContext = (...args) => {
if (renderFnWithContext._d) {
setBlockTracking(-1);
}
const prevInstance = setCurrentRenderingInstance(ctx);
let res;
try {
res = fn(...args);
} finally {
setCurrentRenderingInstance(prevInstance);
if (renderFnWithContext._d) {
setBlockTracking(1);
}
}
return res;
};
renderFnWithContext._n = true;
renderFnWithContext._c = true;
renderFnWithContext._d = true;
return renderFnWithContext;
}
function withDirectives(vnode, directives) {
if (currentRenderingInstance === null) {
return vnode;
}
const instance = getComponentPublicInstance(currentRenderingInstance);
const bindings = vnode.dirs || (vnode.dirs = []);
for (let i = 0; i < directives.length; i++) {
let [dir, value, arg, modifiers = EMPTY_OBJ] = directives[i];
if (dir) {
if (isFunction(dir)) {
dir = {
mounted: dir,
updated: dir
};
}
if (dir.deep) {
traverse(value);
}
bindings.push({
dir,
instance,
value,
oldValue: void 0,
arg,
modifiers
});
}
}
return vnode;
}
function invokeDirectiveHook(vnode, prevVNode, instance, name) {
const bindings = vnode.dirs;
const oldBindings = prevVNode && prevVNode.dirs;
for (let i = 0; i < bindings.length; i++) {
const binding = bindings[i];
if (oldBindings) {
binding.oldValue = oldBindings[i].value;
}
let hook = binding.dir[name];
if (hook) {
pauseTracking();
callWithAsyncErrorHandling(hook, instance, 8, [
vnode.el,
binding,
vnode,
prevVNode
]);
resetTracking();
}
}
}
function provide(key, value) {
if (currentInstance) {
let provides = currentInstance.provides;
const parentProvides = currentInstance.parent && currentInstance.parent.provides;
if (parentProvides === provides) {
provides = currentInstance.provides = Object.create(parentProvides);
}
provides[key] = value;
}
}
function inject(key, defaultValue, treatDefaultAsFactory = false) {
const instance = getCurrentInstance();
if (instance || currentApp) {
let provides = currentApp ? currentApp._context.provides : instance ? instance.parent == null || instance.ce ? instance.vnode.appContext && instance.vnode.appContext.provides : instance.parent.provides : void 0;
if (provides && key in provides) {
return provides[key];
} else if (arguments.length > 1) {
return treatDefaultAsFactory && isFunction(defaultValue) ? defaultValue.call(instance && instance.proxy) : defaultValue;
} else ;
}
}
function hasInjectionContext() {
return !!(getCurrentInstance() || currentApp);
}
const ssrContextKey = /* @__PURE__ */ Symbol.for("v-scx");
const useSSRContext = () => {
{
const ctx = inject(ssrContextKey);
return ctx;
}
};
function watchEffect(effect2, options) {
return doWatch(effect2, null, options);
}
function watchPostEffect(effect2, options) {
return doWatch(
effect2,
null,
{ flush: "post" }
);
}
function watch(source, cb, options) {
return doWatch(source, cb, options);
}
function doWatch(source, cb, options = EMPTY_OBJ) {
const { immediate, deep, flush, once } = options;
const baseWatchOptions = extend({}, options);
const runsImmediately = cb && immediate || !cb && flush !== "post";
let ssrCleanup;
if (isInSSRComponentSetup) {
if (flush === "sync") {
const ctx = useSSRContext();
ssrCleanup = ctx.__watcherHandles || (ctx.__watcherHandles = []);
} else if (!runsImmediately) {
const watchStopHandle = () => {
};
watchStopHandle.stop = NOOP;
watchStopHandle.resume = NOOP;
watchStopHandle.pause = NOOP;
return watchStopHandle;
}
}
const instance = currentInstance;
baseWatchOptions.call = (fn, type, args) => callWithAsyncErrorHandling(fn, instance, type, args);
let isPre = false;
if (flush === "post") {
baseWatchOptions.scheduler = (job) => {
queuePostRenderEffect(job, instance && instance.suspense);
};
} else if (flush !== "sync") {
isPre = true;
baseWatchOptions.scheduler = (job, isFirstRun) => {
if (isFirstRun) {
job();
} else {
queueJob(job);
}
};
}
baseWatchOptions.augmentJob = (job) => {
if (cb) {
job.flags |= 4;
}
if (isPre) {
job.flags |= 2;
if (instance) {
job.id = instance.uid;
job.i = instance;
}
}
};
const watchHandle = watch$1(source, cb, baseWatchOptions);
if (isInSSRComponentSetup) {
if (ssrCleanup) {
ssrCleanup.push(watchHandle);
} else if (runsImmediately) {
watchHandle();
}
}
return watchHandle;
}
function instanceWatch(source, value, options) {
const publicThis = this.proxy;
const getter = isString(source) ? source.includes(".") ? createPathGetter(publicThis, source) : () => publicThis[source] : source.bind(publicThis, publicThis);
let cb;
if (isFunction(value)) {
cb = value;
} else {
cb = value.handler;
options = value;
}
const reset = setCurrentInstance(this);
const res = doWatch(getter, cb.bind(publicThis), options);
reset();
return res;
}
function createPathGetter(ctx, path) {
const segments = path.split(".");
return () => {
let cur = ctx;
for (let i = 0; i < segments.length && cur; i++) {
cur = cur[segments[i]];
}
return cur;
};
}
const TeleportEndKey = /* @__PURE__ */ Symbol("_vte");
const isTeleport = (type) => type.__isTeleport;
const isTeleportDisabled = (props) => props && (props.disabled || props.disabled === "");
const isTeleportDeferred = (props) => props && (props.defer || props.defer === "");
const isTargetSVG = (target) => typeof SVGElement !== "undefined" && target instanceof SVGElement;
const isTargetMathML = (target) => typeof MathMLElement === "function" && target instanceof MathMLElement;
const resolveTarget = (props, select) => {
const targetSelector = props && props.to;
if (isString(targetSelector)) {
if (!select) {
return null;
} else {
const target = select(targetSelector);
return target;
}
} else {
return targetSelector;
}
};
const TeleportImpl = {
name: "Teleport",
__isTeleport: true,
process(n1, n2, container, anchor, parentComponent, parentSuspense, namespace, slotScopeIds, optimized, internals) {
const {
mc: mountChildren,
pc: patchChildren,
pbc: patchBlockChildren,
o: { insert, querySelector, createText, createComment }
} = internals;
const disabled = isTeleportDisabled(n2.props);
let { shapeFlag, children, dynamicChildren } = n2;
if (n1 == null) {
const placeholder = n2.el = createText("");
const mainAnchor = n2.anchor = createText("");
insert(placeholder, container, anchor);
insert(mainAnchor, container, anchor);
const mount = (container2, anchor2) => {
if (shapeFlag & 16) {
mountChildren(
children,
container2,
anchor2,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
}
};
const mountToTarget = () => {
const target = n2.target = resolveTarget(n2.props, querySelector);
const targetAnchor = prepareAnchor(target, n2, createText, insert);
if (target) {
if (namespace !== "svg" && isTargetSVG(target)) {
namespace = "svg";
} else if (namespace !== "mathml" && isTargetMathML(target)) {
namespace = "mathml";
}
if (parentComponent && parentComponent.isCE) {
(parentComponent.ce._teleportTargets || (parentComponent.ce._teleportTargets = /* @__PURE__ */ new Set())).add(target);
}
if (!disabled) {
mount(target, targetAnchor);
updateCssVars(n2, false);
}
}
};
if (disabled) {
mount(container, mainAnchor);
updateCssVars(n2, true);
}
if (isTeleportDeferred(n2.props)) {
n2.el.__isMounted = false;
queuePostRenderEffect(() => {
mountToTarget();
delete n2.el.__isMounted;
}, parentSuspense);
} else {
mountToTarget();
}
} else {
if (isTeleportDeferred(n2.props) && n1.el.__isMounted === false) {
queuePostRenderEffect(() => {
TeleportImpl.process(
n1,
n2,
container,
anchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized,
internals
);
}, parentSuspense);
return;
}
n2.el = n1.el;
n2.targetStart = n1.targetStart;
const mainAnchor = n2.anchor = n1.anchor;
const target = n2.target = n1.target;
const targetAnchor = n2.targetAnchor = n1.targetAnchor;
const wasDisabled = isTeleportDisabled(n1.props);
const currentContainer = wasDisabled ? container : target;
const currentAnchor = wasDisabled ? mainAnchor : targetAnchor;
if (namespace === "svg" || isTargetSVG(target)) {
namespace = "svg";
} else if (namespace === "mathml" || isTargetMathML(target)) {
namespace = "mathml";
}
if (dynamicChildren) {
patchBlockChildren(
n1.dynamicChildren,
dynamicChildren,
currentContainer,
parentComponent,
parentSuspense,
namespace,
slotScopeIds
);
traverseStaticChildren(n1, n2, true);
} else if (!optimized) {
patchChildren(
n1,
n2,
currentContainer,
currentAnchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
false
);
}
if (disabled) {
if (!wasDisabled) {
moveTeleport(
n2,
container,
mainAnchor,
internals,
1
);
} else {
if (n2.props && n1.props && n2.props.to !== n1.props.to) {
n2.props.to = n1.props.to;
}
}
} else {
if ((n2.props && n2.props.to) !== (n1.props && n1.props.to)) {
const nextTarget = n2.target = resolveTarget(
n2.props,
querySelector
);
if (nextTarget) {
moveTeleport(
n2,
nextTarget,
null,
internals,
0
);
}
} else if (wasDisabled) {
moveTeleport(
n2,
target,
targetAnchor,
internals,
1
);
}
}
updateCssVars(n2, disabled);
}
},
remove(vnode, parentComponent, parentSuspense, { um: unmount, o: { remove: hostRemove } }, doRemove) {
const {
shapeFlag,
children,
anchor,
targetStart,
targetAnchor,
target,
props
} = vnode;
if (target) {
hostRemove(targetStart);
hostRemove(targetAnchor);
}
doRemove && hostRemove(anchor);
if (shapeFlag & 16) {
const shouldRemove = doRemove || !isTeleportDisabled(props);
for (let i = 0; i < children.length; i++) {
const child = children[i];
unmount(
child,
parentComponent,
parentSuspense,
shouldRemove,
!!child.dynamicChildren
);
}
}
},
move: moveTeleport,
hydrate: hydrateTeleport
};
function moveTeleport(vnode, container, parentAnchor, { o: { insert }, m: move }, moveType = 2) {
if (moveType === 0) {
insert(vnode.targetAnchor, container, parentAnchor);
}
const { el, anchor, shapeFlag, children, props } = vnode;
const isReorder = moveType === 2;
if (isReorder) {
insert(el, container, parentAnchor);
}
if (!isReorder || isTeleportDisabled(props)) {
if (shapeFlag & 16) {
for (let i = 0; i < children.length; i++) {
move(
children[i],
container,
parentAnchor,
2
);
}
}
}
if (isReorder) {
insert(anchor, container, parentAnchor);
}
}
function hydrateTeleport(node, vnode, parentComponent, parentSuspense, slotScopeIds, optimized, {
o: { nextSibling, parentNode, querySelector, insert, createText }
}, hydrateChildren) {
function hydrateAnchor(target2, targetNode) {
let targetAnchor = targetNode;
while (targetAnchor) {
if (targetAnchor && targetAnchor.nodeType === 8) {
if (targetAnchor.data === "teleport start anchor") {
vnode.targetStart = targetAnchor;
} else if (targetAnchor.data === "teleport anchor") {
vnode.targetAnchor = targetAnchor;
target2._lpa = vnode.targetAnchor && nextSibling(vnode.targetAnchor);
break;
}
}
targetAnchor = nextSibling(targetAnchor);
}
}
function hydrateDisabledTeleport(node2, vnode2) {
vnode2.anchor = hydrateChildren(
nextSibling(node2),
vnode2,
parentNode(node2),
parentComponent,
parentSuspense,
slotScopeIds,
optimized
);
}
const target = vnode.target = resolveTarget(
vnode.props,
querySelector
);
const disabled = isTeleportDisabled(vnode.props);
if (target) {
const targetNode = target._lpa || target.firstChild;
if (vnode.shapeFlag & 16) {
if (disabled) {
hydrateDisabledTeleport(node, vnode);
hydrateAnchor(target, targetNode);
if (!vnode.targetAnchor) {
prepareAnchor(
target,
vnode,
createText,
insert,
// if target is the same as the main view, insert anchors before current node
// to avoid hydrating mismatch
parentNode(node) === target ? node : null
);
}
} else {
vnode.anchor = nextSibling(node);
hydrateAnchor(target, targetNode);
if (!vnode.targetAnchor) {
prepareAnchor(target, vnode, createText, insert);
}
hydrateChildren(
targetNode && nextSibling(targetNode),
vnode,
target,
parentComponent,
parentSuspense,
slotScopeIds,
optimized
);
}
}
updateCssVars(vnode, disabled);
} else if (disabled) {
if (vnode.shapeFlag & 16) {
hydrateDisabledTeleport(node, vnode);
vnode.targetStart = node;
vnode.targetAnchor = nextSibling(node);
}
}
return vnode.anchor && nextSibling(vnode.anchor);
}
const Teleport = TeleportImpl;
function updateCssVars(vnode, isDisabled) {
const ctx = vnode.ctx;
if (ctx && ctx.ut) {
let node, anchor;
if (isDisabled) {
node = vnode.el;
anchor = vnode.anchor;
} else {
node = vnode.targetStart;
anchor = vnode.targetAnchor;
}
while (node && node !== anchor) {
if (node.nodeType === 1) node.setAttribute("data-v-owner", ctx.uid);
node = node.nextSibling;
}
ctx.ut();
}
}
function prepareAnchor(target, vnode, createText, insert, anchor = null) {
const targetStart = vnode.targetStart = createText("");
const targetAnchor = vnode.targetAnchor = createText("");
targetStart[TeleportEndKey] = targetAnchor;
if (target) {
insert(targetStart, target, anchor);
insert(targetAnchor, target, anchor);
}
return targetAnchor;
}
const leaveCbKey = /* @__PURE__ */ Symbol("_leaveCb");
const enterCbKey = /* @__PURE__ */ Symbol("_enterCb");
function useTransitionState() {
const state = {
isMounted: false,
isLeaving: false,
isUnmounting: false,
leavingVNodes: /* @__PURE__ */ new Map()
};
onMounted(() => {
state.isMounted = true;
});
onBeforeUnmount(() => {
state.isUnmounting = true;
});
return state;
}
const TransitionHookValidator = [Function, Array];
const BaseTransitionPropsValidators = {
mode: String,
appear: Boolean,
persisted: Boolean,
// enter
onBeforeEnter: TransitionHookValidator,
onEnter: TransitionHookValidator,
onAfterEnter: TransitionHookValidator,
onEnterCancelled: TransitionHookValidator,
// leave
onBeforeLeave: TransitionHookValidator,
onLeave: TransitionHookValidator,
onAfterLeave: TransitionHookValidator,
onLeaveCancelled: TransitionHookValidator,
// appear
onBeforeAppear: TransitionHookValidator,
onAppear: TransitionHookValidator,
onAfterAppear: TransitionHookValidator,
onAppearCancelled: TransitionHookValidator
};
const recursiveGetSubtree = (instance) => {
const subTree = instance.subTree;
return subTree.component ? recursiveGetSubtree(subTree.component) : subTree;
};
const BaseTransitionImpl = {
name: `BaseTransition`,
props: BaseTransitionPropsValidators,
setup(props, { slots }) {
const instance = getCurrentInstance();
const state = useTransitionState();
return () => {
const children = slots.default && getTransitionRawChildren(slots.default(), true);
if (!children || !children.length) {
return;
}
const child = findNonCommentChild(children);
const rawProps = /* @__PURE__ */ toRaw(props);
const { mode } = rawProps;
if (state.isLeaving) {
return emptyPlaceholder(child);
}
const innerChild = getInnerChild$1(child);
if (!innerChild) {
return emptyPlaceholder(child);
}
let enterHooks = resolveTransitionHooks(
innerChild,
rawProps,
state,
instance,
// #11061, ensure enterHooks is fresh after clone
(hooks) => enterHooks = hooks
);
if (innerChild.type !== Comment) {
setTransitionHooks(innerChild, enterHooks);
}
let oldInnerChild = instance.subTree && getInnerChild$1(instance.subTree);
if (oldInnerChild && oldInnerChild.type !== Comment && !isSameVNodeType(oldInnerChild, innerChild) && recursiveGetSubtree(instance).type !== Comment) {
let leavingHooks = resolveTransitionHooks(
oldInnerChild,
rawProps,
state,
instance
);
setTransitionHooks(oldInnerChild, leavingHooks);
if (mode === "out-in" && innerChild.type !== Comment) {
state.isLeaving = true;
leavingHooks.afterLeave = () => {
state.isLeaving = false;
if (!(instance.job.flags & 8)) {
instance.update();
}
delete leavingHooks.afterLeave;
oldInnerChild = void 0;
};
return emptyPlaceholder(child);
} else if (mode === "in-out" && innerChild.type !== Comment) {
leavingHooks.delayLeave = (el, earlyRemove, delayedLeave) => {
const leavingVNodesCache = getLeavingNodesForType(
state,
oldInnerChild
);
leavingVNodesCache[String(oldInnerChild.key)] = oldInnerChild;
el[leaveCbKey] = () => {
earlyRemove();
el[leaveCbKey] = void 0;
delete enterHooks.delayedLeave;
oldInnerChild = void 0;
};
enterHooks.delayedLeave = () => {
delayedLeave();
delete enterHooks.delayedLeave;
oldInnerChild = void 0;
};
};
} else {
oldInnerChild = void 0;
}
} else if (oldInnerChild) {
oldInnerChild = void 0;
}
return child;
};
}
};
function findNonCommentChild(children) {
let child = children[0];
if (children.length > 1) {
for (const c of children) {
if (c.type !== Comment) {
child = c;
break;
}
}
}
return child;
}
const BaseTransition = BaseTransitionImpl;
function getLeavingNodesForType(state, vnode) {
const { leavingVNodes } = state;
let leavingVNodesCache = leavingVNodes.get(vnode.type);
if (!leavingVNodesCache) {
leavingVNodesCache = /* @__PURE__ */ Object.create(null);
leavingVNodes.set(vnode.type, leavingVNodesCache);
}
return leavingVNodesCache;
}
function resolveTransitionHooks(vnode, props, state, instance, postClone) {
const {
appear,
mode,
persisted = false,
onBeforeEnter,
onEnter,
onAfterEnter,
onEnterCancelled,
onBeforeLeave,
onLeave,
onAfterLeave,
onLeaveCancelled,
onBeforeAppear,
onAppear,
onAfterAppear,
onAppearCancelled
} = props;
const key = String(vnode.key);
const leavingVNodesCache = getLeavingNodesForType(state, vnode);
const callHook2 = (hook, args) => {
hook && callWithAsyncErrorHandling(
hook,
instance,
9,
args
);
};
const callAsyncHook = (hook, args) => {
const done = args[1];
callHook2(hook, args);
if (isArray(hook)) {
if (hook.every((hook2) => hook2.length <= 1)) done();
} else if (hook.length <= 1) {
done();
}
};
const hooks = {
mode,
persisted,
beforeEnter(el) {
let hook = onBeforeEnter;
if (!state.isMounted) {
if (appear) {
hook = onBeforeAppear || onBeforeEnter;
} else {
return;
}
}
if (el[leaveCbKey]) {
el[leaveCbKey](
true
/* cancelled */
);
}
const leavingVNode = leavingVNodesCache[key];
if (leavingVNode && isSameVNodeType(vnode, leavingVNode) && leavingVNode.el[leaveCbKey]) {
leavingVNode.el[leaveCbKey]();
}
callHook2(hook, [el]);
},
enter(el) {
if (leavingVNodesCache[key] === vnode) return;
let hook = onEnter;
let afterHook = onAfterEnter;
let cancelHook = onEnterCancelled;
if (!state.isMounted) {
if (appear) {
hook = onAppear || onEnter;
afterHook = onAfterAppear || onAfterEnter;
cancelHook = onAppearCancelled || onEnterCancelled;
} else {
return;
}
}
let called = false;
el[enterCbKey] = (cancelled) => {
if (called) return;
called = true;
if (cancelled) {
callHook2(cancelHook, [el]);
} else {
callHook2(afterHook, [el]);
}
if (hooks.delayedLeave) {
hooks.delayedLeave();
}
el[enterCbKey] = void 0;
};
const done = el[enterCbKey].bind(null, false);
if (hook) {
callAsyncHook(hook, [el, done]);
} else {
done();
}
},
leave(el, remove2) {
const key2 = String(vnode.key);
if (el[enterCbKey]) {
el[enterCbKey](
true
/* cancelled */
);
}
if (state.isUnmounting) {
return remove2();
}
callHook2(onBeforeLeave, [el]);
let called = false;
el[leaveCbKey] = (cancelled) => {
if (called) return;
called = true;
remove2();
if (cancelled) {
callHook2(onLeaveCancelled, [el]);
} else {
callHook2(onAfterLeave, [el]);
}
el[leaveCbKey] = void 0;
if (leavingVNodesCache[key2] === vnode) {
delete leavingVNodesCache[key2];
}
};
const done = el[leaveCbKey].bind(null, false);
leavingVNodesCache[key2] = vnode;
if (onLeave) {
callAsyncHook(onLeave, [el, done]);
} else {
done();
}
},
clone(vnode2) {
const hooks2 = resolveTransitionHooks(
vnode2,
props,
state,
instance,
postClone
);
if (postClone) postClone(hooks2);
return hooks2;
}
};
return hooks;
}
function emptyPlaceholder(vnode) {
if (isKeepAlive(vnode)) {
vnode = cloneVNode(vnode);
vnode.children = null;
return vnode;
}
}
function getInnerChild$1(vnode) {
if (!isKeepAlive(vnode)) {
if (isTeleport(vnode.type) && vnode.children) {
return findNonCommentChild(vnode.children);
}
return vnode;
}
if (vnode.component) {
return vnode.component.subTree;
}
const { shapeFlag, children } = vnode;
if (children) {
if (shapeFlag & 16) {
return children[0];
}
if (shapeFlag & 32 && isFunction(children.default)) {
return children.default();
}
}
}
function setTransitionHooks(vnode, hooks) {
if (vnode.shapeFlag & 6 && vnode.component) {
vnode.transition = hooks;
setTransitionHooks(vnode.component.subTree, hooks);
} else if (vnode.shapeFlag & 128) {
vnode.ssContent.transition = hooks.clone(vnode.ssContent);
vnode.ssFallback.transition = hooks.clone(vnode.ssFallback);
} else {
vnode.transition = hooks;
}
}
function getTransitionRawChildren(children, keepComment = false, parentKey) {
let ret = [];
let keyedFragmentCount = 0;
for (let i = 0; i < children.length; i++) {
let child = children[i];
const key = parentKey == null ? child.key : String(parentKey) + String(child.key != null ? child.key : i);
if (child.type === Fragment) {
if (child.patchFlag & 128) keyedFragmentCount++;
ret = ret.concat(
getTransitionRawChildren(child.children, keepComment, key)
);
} else if (keepComment || child.type !== Comment) {
ret.push(key != null ? cloneVNode(child, { key }) : child);
}
}
if (keyedFragmentCount > 1) {
for (let i = 0; i < ret.length; i++) {
ret[i].patchFlag = -2;
}
}
return ret;
}
// @__NO_SIDE_EFFECTS__
function defineComponent(options, extraOptions) {
return isFunction(options) ? (
// #8236: extend call and options.name access are considered side-effects
// by Rollup, so we have to wrap it in a pure-annotated IIFE.
/* @__PURE__ */ (() => extend({ name: options.name }, extraOptions, { setup: options }))()
) : options;
}
function useId() {
const i = getCurrentInstance();
if (i) {
return (i.appContext.config.idPrefix || "v") + "-" + i.ids[0] + i.ids[1]++;
}
return "";
}
function markAsyncBoundary(instance) {
instance.ids = [instance.ids[0] + instance.ids[2]++ + "-", 0, 0];
}
function isTemplateRefKey(refs, key) {
let desc;
return !!((desc = Object.getOwnPropertyDescriptor(refs, key)) && !desc.configurable);
}
const pendingSetRefMap = /* @__PURE__ */ new WeakMap();
function setRef(rawRef, oldRawRef, parentSuspense, vnode, isUnmount = false) {
if (isArray(rawRef)) {
rawRef.forEach(
(r, i) => setRef(
r,
oldRawRef && (isArray(oldRawRef) ? oldRawRef[i] : oldRawRef),
parentSuspense,
vnode,
isUnmount
)
);
return;
}
if (isAsyncWrapper(vnode) && !isUnmount) {
if (vnode.shapeFlag & 512 && vnode.type.__asyncResolved && vnode.component.subTree.component) {
setRef(rawRef, oldRawRef, parentSuspense, vnode.component.subTree);
}
return;
}
const refValue = vnode.shapeFlag & 4 ? getComponentPublicInstance(vnode.component) : vnode.el;
const value = isUnmount ? null : refValue;
const { i: owner, r: ref3 } = rawRef;
const oldRef = oldRawRef && oldRawRef.r;
const refs = owner.refs === EMPTY_OBJ ? owner.refs = {} : owner.refs;
const setupState = owner.setupState;
const rawSetupState = /* @__PURE__ */ toRaw(setupState);
const canSetSetupRef = setupState === EMPTY_OBJ ? NO : (key) => {
if (isTemplateRefKey(refs, key)) {
return false;
}
return hasOwn(rawSetupState, key);
};
const canSetRef = (ref22, key) => {
if (key && isTemplateRefKey(refs, key)) {
return false;
}
return true;
};
if (oldRef != null && oldRef !== ref3) {
invalidatePendingSetRef(oldRawRef);
if (isString(oldRef)) {
refs[oldRef] = null;
if (canSetSetupRef(oldRef)) {
setupState[oldRef] = null;
}
} else if (/* @__PURE__ */ isRef(oldRef)) {
const oldRawRefAtom = oldRawRef;
if (canSetRef(oldRef, oldRawRefAtom.k)) {
oldRef.value = null;
}
if (oldRawRefAtom.k) refs[oldRawRefAtom.k] = null;
}
}
if (isFunction(ref3)) {
callWithErrorHandling(ref3, owner, 12, [value, refs]);
} else {
const _isString = isString(ref3);
const _isRef = /* @__PURE__ */ isRef(ref3);
if (_isString || _isRef) {
const doSet = () => {
if (rawRef.f) {
const existing = _isString ? canSetSetupRef(ref3) ? setupState[ref3] : refs[ref3] : canSetRef() || !rawRef.k ? ref3.value : refs[rawRef.k];
if (isUnmount) {
isArray(existing) && remove(existing, refValue);
} else {
if (!isArray(existing)) {
if (_isString) {
refs[ref3] = [refValue];
if (canSetSetupRef(ref3)) {
setupState[ref3] = refs[ref3];
}
} else {
const newVal = [refValue];
if (canSetRef(ref3, rawRef.k)) {
ref3.value = newVal;
}
if (rawRef.k) refs[rawRef.k] = newVal;
}
} else if (!existing.includes(refValue)) {
existing.push(refValue);
}
}
} else if (_isString) {
refs[ref3] = value;
if (canSetSetupRef(ref3)) {
setupState[ref3] = value;
}
} else if (_isRef) {
if (canSetRef(ref3, rawRef.k)) {
ref3.value = value;
}
if (rawRef.k) refs[rawRef.k] = value;
} else ;
};
if (value) {
const job = () => {
doSet();
pendingSetRefMap.delete(rawRef);
};
job.id = -1;
pendingSetRefMap.set(rawRef, job);
queuePostRenderEffect(job, parentSuspense);
} else {
invalidatePendingSetRef(rawRef);
doSet();
}
}
}
}
function invalidatePendingSetRef(rawRef) {
const pendingSetRef = pendingSetRefMap.get(rawRef);
if (pendingSetRef) {
pendingSetRef.flags |= 8;
pendingSetRefMap.delete(rawRef);
}
}
let hasLoggedMismatchError = false;
const logMismatchError = () => {
if (hasLoggedMismatchError) {
return;
}
console.error("Hydration completed but contains mismatches.");
hasLoggedMismatchError = true;
};
const isSVGContainer = (container) => container.namespaceURI.includes("svg") && container.tagName !== "foreignObject";
const isMathMLContainer = (container) => container.namespaceURI.includes("MathML");
const getContainerType = (container) => {
if (container.nodeType !== 1) return void 0;
if (isSVGContainer(container)) return "svg";
if (isMathMLContainer(container)) return "mathml";
return void 0;
};
const isComment = (node) => node.nodeType === 8;
function createHydrationFunctions(rendererInternals) {
const {
mt: mountComponent,
p: patch,
o: {
patchProp: patchProp2,
createText,
nextSibling,
parentNode,
remove: remove2,
insert,
createComment
}
} = rendererInternals;
const hydrate = (vnode, container) => {
if (!container.hasChildNodes()) {
warn$1(
`Attempting to hydrate existing markup but container is empty. Performing full mount instead.`
);
patch(null, vnode, container);
flushPostFlushCbs();
container._vnode = vnode;
return;
}
hydrateNode(container.firstChild, vnode, null, null, null);
flushPostFlushCbs();
container._vnode = vnode;
};
const hydrateNode = (node, vnode, parentComponent, parentSuspense, slotScopeIds, optimized = false) => {
optimized = optimized || !!vnode.dynamicChildren;
const isFragmentStart = isComment(node) && node.data === "[";
const onMismatch = () => handleMismatch(
node,
vnode,
parentComponent,
parentSuspense,
slotScopeIds,
isFragmentStart
);
const { type, ref: ref3, shapeFlag, patchFlag } = vnode;
let domType = node.nodeType;
vnode.el = node;
if (patchFlag === -2) {
optimized = false;
vnode.dynamicChildren = null;
}
let nextNode = null;
switch (type) {
case Text:
if (domType !== 3) {
if (vnode.children === "") {
insert(vnode.el = createText(""), parentNode(node), node);
nextNode = node;
} else {
nextNode = onMismatch();
}
} else {
if (node.data !== vnode.children) {
warn$1(
`Hydration text mismatch in`,
node.parentNode,
`
- rendered on server: ${JSON.stringify(
node.data
)}
- expected on client: ${JSON.stringify(vnode.children)}`
);
logMismatchError();
node.data = vnode.children;
}
nextNode = nextSibling(node);
}
break;
case Comment:
if (isTemplateNode(node)) {
nextNode = nextSibling(node);
replaceNode(
vnode.el = node.content.firstChild,
node,
parentComponent
);
} else if (domType !== 8 || isFragmentStart) {
nextNode = onMismatch();
} else {
nextNode = nextSibling(node);
}
break;
case Static:
if (isFragmentStart) {
node = nextSibling(node);
domType = node.nodeType;
}
if (domType === 1 || domType === 3) {
nextNode = node;
const needToAdoptContent = !vnode.children.length;
for (let i = 0; i < vnode.staticCount; i++) {
if (needToAdoptContent)
vnode.children += nextNode.nodeType === 1 ? nextNode.outerHTML : nextNode.data;
if (i === vnode.staticCount - 1) {
vnode.anchor = nextNode;
}
nextNode = nextSibling(nextNode);
}
return isFragmentStart ? nextSibling(nextNode) : nextNode;
} else {
onMismatch();
}
break;
case Fragment:
if (!isFragmentStart) {
nextNode = onMismatch();
} else {
nextNode = hydrateFragment(
node,
vnode,
parentComponent,
parentSuspense,
slotScopeIds,
optimized
);
}
break;
default:
if (shapeFlag & 1) {
if ((domType !== 1 || vnode.type.toLowerCase() !== node.tagName.toLowerCase()) && !isTemplateNode(node)) {
nextNode = onMismatch();
} else {
nextNode = hydrateElement(
node,
vnode,
parentComponent,
parentSuspense,
slotScopeIds,
optimized
);
}
} else if (shapeFlag & 6) {
vnode.slotScopeIds = slotScopeIds;
const container = parentNode(node);
if (isFragmentStart) {
nextNode = locateClosingAnchor(node);
} else if (isComment(node) && node.data === "teleport start") {
nextNode = locateClosingAnchor(node, node.data, "teleport end");
} else {
nextNode = nextSibling(node);
}
mountComponent(
vnode,
container,
null,
parentComponent,
parentSuspense,
getContainerType(container),
optimized
);
if (isAsyncWrapper(vnode) && !vnode.type.__asyncResolved) {
let subTree;
if (isFragmentStart) {
subTree = createVNode(Fragment);
subTree.anchor = nextNode ? nextNode.previousSibling : container.lastChild;
} else {
subTree = node.nodeType === 3 ? createTextVNode("") : createVNode("div");
}
subTree.el = node;
vnode.component.subTree = subTree;
}
} else if (shapeFlag & 64) {
if (domType !== 8) {
nextNode = onMismatch();
} else {
nextNode = vnode.type.hydrate(
node,
vnode,
parentComponent,
parentSuspense,
slotScopeIds,
optimized,
rendererInternals,
hydrateChildren
);
}
} else if (shapeFlag & 128) {
nextNode = vnode.type.hydrate(
node,
vnode,
parentComponent,
parentSuspense,
getContainerType(parentNode(node)),
slotScopeIds,
optimized,
rendererInternals,
hydrateNode
);
} else {
warn$1("Invalid HostVNode type:", type, `(${typeof type})`);
}
}
if (ref3 != null) {
setRef(ref3, null, parentSuspense, vnode);
}
return nextNode;
};
const hydrateElement = (el, vnode, parentComponent, parentSuspense, slotScopeIds, optimized) => {
optimized = optimized || !!vnode.dynamicChildren;
const { type, props, patchFlag, shapeFlag, dirs, transition } = vnode;
const forcePatch = type === "input" || type === "option";
if (forcePatch || patchFlag !== -1) {
if (dirs) {
invokeDirectiveHook(vnode, null, parentComponent, "created");
}
let needCallTransitionHooks = false;
if (isTemplateNode(el)) {
needCallTransitionHooks = needTransition(
null,
// no need check parentSuspense in hydration
transition
) && parentComponent && parentComponent.vnode.props && parentComponent.vnode.props.appear;
const content = el.content.firstChild;
if (needCallTransitionHooks) {
const cls = content.getAttribute("class");
if (cls) content.$cls = cls;
transition.beforeEnter(content);
}
replaceNode(content, el, parentComponent);
vnode.el = el = content;
}
if (shapeFlag & 16 && // skip if element has innerHTML / textContent
!(props && (props.innerHTML || props.textContent))) {
let next = hydrateChildren(
el.firstChild,
vnode,
el,
parentComponent,
parentSuspense,
slotScopeIds,
optimized
);
let hasWarned2 = false;
while (next) {
if (!isMismatchAllowed(
el,
1
/* CHILDREN */
)) {
if (!hasWarned2) {
warn$1(
`Hydration children mismatch on`,
el,
`
Server rendered element contains more child nodes than client vdom.`
);
hasWarned2 = true;
}
logMismatchError();
}
const cur = next;
next = next.nextSibling;
remove2(cur);
}
} else if (shapeFlag & 8) {
let clientText = vnode.children;
if (clientText[0] === "\n" && (el.tagName === "PRE" || el.tagName === "TEXTAREA")) {
clientText = clientText.slice(1);
}
const { textContent } = el;
if (textContent !== clientText && // innerHTML normalize \r\n or \r into a single \n in the DOM
textContent !== clientText.replace(/\r\n|\r/g, "\n")) {
if (!isMismatchAllowed(
el,
0
/* TEXT */
)) {
warn$1(
`Hydration text content mismatch on`,
el,
`
- rendered on server: ${textContent}
- expected on client: ${clientText}`
);
logMismatchError();
}
el.textContent = vnode.children;
}
}
if (props) {
{
const isCustomElement = el.tagName.includes("-");
for (const key in props) {
if (
// #11189 skip if this node has directives that have created hooks
// as it could have mutated the DOM in any possible way
!(dirs && dirs.some((d) => d.dir.created)) && propHasMismatch(el, key, props[key], vnode, parentComponent)
) {
logMismatchError();
}
if (forcePatch && (key.endsWith("value") || key === "indeterminate") || isOn(key) && !isReservedProp(key) || // force hydrate v-bind with .prop modifiers
key[0] === "." || isCustomElement && !isReservedProp(key)) {
patchProp2(el, key, null, props[key], void 0, parentComponent);
}
}
}
}
let vnodeHooks;
if (vnodeHooks = props && props.onVnodeBeforeMount) {
invokeVNodeHook(vnodeHooks, parentComponent, vnode);
}
if (dirs) {
invokeDirectiveHook(vnode, null, parentComponent, "beforeMount");
}
if ((vnodeHooks = props && props.onVnodeMounted) || dirs || needCallTransitionHooks) {
queueEffectWithSuspense(() => {
vnodeHooks && invokeVNodeHook(vnodeHooks, parentComponent, vnode);
needCallTransitionHooks && transition.enter(el);
dirs && invokeDirectiveHook(vnode, null, parentComponent, "mounted");
}, parentSuspense);
}
}
return el.nextSibling;
};
const hydrateChildren = (node, parentVNode, container, parentComponent, parentSuspense, slotScopeIds, optimized) => {
optimized = optimized || !!parentVNode.dynamicChildren;
const children = parentVNode.children;
const l = children.length;
let hasWarned2 = false;
for (let i = 0; i < l; i++) {
const vnode = optimized ? children[i] : children[i] = normalizeVNode(children[i]);
const isText = vnode.type === Text;
if (node) {
if (isText && !optimized) {
if (i + 1 < l && normalizeVNode(children[i + 1]).type === Text) {
insert(
createText(
node.data.slice(vnode.children.length)
),
container,
nextSibling(node)
);
node.data = vnode.children;
}
}
node = hydrateNode(
node,
vnode,
parentComponent,
parentSuspense,
slotScopeIds,
optimized
);
} else if (isText && !vnode.children) {
insert(vnode.el = createText(""), container);
} else {
if (!isMismatchAllowed(
container,
1
/* CHILDREN */
)) {
if (!hasWarned2) {
warn$1(
`Hydration children mismatch on`,
container,
`
Server rendered element contains fewer child nodes than client vdom.`
);
hasWarned2 = true;
}
logMismatchError();
}
patch(
null,
vnode,
container,
null,
parentComponent,
parentSuspense,
getContainerType(container),
slotScopeIds
);
}
}
return node;
};
const hydrateFragment = (node, vnode, parentComponent, parentSuspense, slotScopeIds, optimized) => {
const { slotScopeIds: fragmentSlotScopeIds } = vnode;
if (fragmentSlotScopeIds) {
slotScopeIds = slotScopeIds ? slotScopeIds.concat(fragmentSlotScopeIds) : fragmentSlotScopeIds;
}
const container = parentNode(node);
const next = hydrateChildren(
nextSibling(node),
vnode,
container,
parentComponent,
parentSuspense,
slotScopeIds,
optimized
);
if (next && isComment(next) && next.data === "]") {
return nextSibling(vnode.anchor = next);
} else {
logMismatchError();
insert(vnode.anchor = createComment(`]`), container, next);
return next;
}
};
const handleMismatch = (node, vnode, parentComponent, parentSuspense, slotScopeIds, isFragment) => {
if (!isMismatchAllowed(
node.parentElement,
1
/* CHILDREN */
)) {
warn$1(
`Hydration node mismatch:
- rendered on server:`,
node,
node.nodeType === 3 ? `(text)` : isComment(node) && node.data === "[" ? `(start of fragment)` : ``,
`
- expected on client:`,
vnode.type
);
logMismatchError();
}
vnode.el = null;
if (isFragment) {
const end = locateClosingAnchor(node);
while (true) {
const next2 = nextSibling(node);
if (next2 && next2 !== end) {
remove2(next2);
} else {
break;
}
}
}
const next = nextSibling(node);
const container = parentNode(node);
remove2(node);
patch(
null,
vnode,
container,
next,
parentComponent,
parentSuspense,
getContainerType(container),
slotScopeIds
);
if (parentComponent) {
parentComponent.vnode.el = vnode.el;
updateHOCHostEl(parentComponent, vnode.el);
}
return next;
};
const locateClosingAnchor = (node, open = "[", close = "]") => {
let match = 0;
while (node) {
node = nextSibling(node);
if (node && isComment(node)) {
if (node.data === open) match++;
if (node.data === close) {
if (match === 0) {
return nextSibling(node);
} else {
match--;
}
}
}
}
return node;
};
const replaceNode = (newNode, oldNode, parentComponent) => {
const parentNode2 = oldNode.parentNode;
if (parentNode2) {
parentNode2.replaceChild(newNode, oldNode);
}
let parent = parentComponent;
while (parent) {
if (parent.vnode.el === oldNode) {
parent.vnode.el = parent.subTree.el = newNode;
}
parent = parent.parent;
}
};
const isTemplateNode = (node) => {
return node.nodeType === 1 && node.tagName === "TEMPLATE";
};
return [hydrate, hydrateNode];
}
function propHasMismatch(el, key, clientValue, vnode, instance) {
let mismatchType;
let mismatchKey;
let actual;
let expected;
if (key === "class") {
if (el.$cls) {
actual = el.$cls;
delete el.$cls;
} else {
actual = el.getAttribute("class");
}
expected = normalizeClass(clientValue);
if (!isSetEqual(toClassSet(actual || ""), toClassSet(expected))) {
mismatchType = 2;
mismatchKey = `class`;
}
} else if (key === "style") {
actual = el.getAttribute("style") || "";
expected = isString(clientValue) ? clientValue : stringifyStyle(normalizeStyle(clientValue));
const actualMap = toStyleMap(actual);
const expectedMap = toStyleMap(expected);
if (vnode.dirs) {
for (const { dir, value } of vnode.dirs) {
if (dir.name === "show" && !value) {
expectedMap.set("display", "none");
}
}
}
if (instance) {
resolveCssVars(instance, vnode, expectedMap);
}
if (!isMapEqual(actualMap, expectedMap)) {
mismatchType = 3;
mismatchKey = "style";
}
} else if (el instanceof SVGElement && isKnownSvgAttr(key) || el instanceof HTMLElement && (isBooleanAttr(key) || isKnownHtmlAttr(key))) {
if (isBooleanAttr(key)) {
actual = el.hasAttribute(key);
expected = includeBooleanAttr(clientValue);
} else if (clientValue == null) {
actual = el.hasAttribute(key);
expected = false;
} else {
if (el.hasAttribute(key)) {
actual = el.getAttribute(key);
} else if (key === "value" && el.tagName === "TEXTAREA") {
actual = el.value;
} else {
actual = false;
}
expected = isRenderableAttrValue(clientValue) ? String(clientValue) : false;
}
if (actual !== expected) {
mismatchType = 4;
mismatchKey = key;
}
}
if (mismatchType != null && !isMismatchAllowed(el, mismatchType)) {
const format = (v) => v === false ? `(not rendered)` : `${mismatchKey}="${v}"`;
const preSegment = `Hydration ${MismatchTypeString[mismatchType]} mismatch on`;
const postSegment = `
- rendered on server: ${format(actual)}
- expected on client: ${format(expected)}
Note: this mismatch is check-only. The DOM will not be rectified in production due to performance overhead.
You should fix the source of the mismatch.`;
{
warn$1(preSegment, el, postSegment);
}
return true;
}
return false;
}
function toClassSet(str) {
return new Set(str.trim().split(/\s+/));
}
function isSetEqual(a, b) {
if (a.size !== b.size) {
return false;
}
for (const s of a) {
if (!b.has(s)) {
return false;
}
}
return true;
}
function toStyleMap(str) {
const styleMap = /* @__PURE__ */ new Map();
for (const item of str.split(";")) {
let [key, value] = item.split(":");
key = key.trim();
value = value && value.trim();
if (key && value) {
styleMap.set(key, value);
}
}
return styleMap;
}
function isMapEqual(a, b) {
if (a.size !== b.size) {
return false;
}
for (const [key, value] of a) {
if (value !== b.get(key)) {
return false;
}
}
return true;
}
function resolveCssVars(instance, vnode, expectedMap) {
const root = instance.subTree;
if (instance.getCssVars && (vnode === root || root && root.type === Fragment && root.children.includes(vnode))) {
const cssVars = instance.getCssVars();
for (const key in cssVars) {
const value = normalizeCssVarValue(cssVars[key]);
expectedMap.set(`--${getEscapedCssVarName(key)}`, value);
}
}
if (vnode === root && instance.parent) {
resolveCssVars(instance.parent, instance.vnode, expectedMap);
}
}
const allowMismatchAttr = "data-allow-mismatch";
const MismatchTypeString = {
[
0
/* TEXT */
]: "text",
[
1
/* CHILDREN */
]: "children",
[
2
/* CLASS */
]: "class",
[
3
/* STYLE */
]: "style",
[
4
/* ATTRIBUTE */
]: "attribute"
};
function isMismatchAllowed(el, allowedType) {
if (allowedType === 0 || allowedType === 1) {
while (el && !el.hasAttribute(allowMismatchAttr)) {
el = el.parentElement;
}
}
const allowedAttr = el && el.getAttribute(allowMismatchAttr);
if (allowedAttr == null) {
return false;
} else if (allowedAttr === "") {
return true;
} else {
const list = allowedAttr.split(",");
if (allowedType === 0 && list.includes("children")) {
return true;
}
return list.includes(MismatchTypeString[allowedType]);
}
}
getGlobalThis().requestIdleCallback || ((cb) => setTimeout(cb, 1));
getGlobalThis().cancelIdleCallback || ((id) => clearTimeout(id));
function forEachElement(node, cb) {
if (isComment(node) && node.data === "[") {
let depth = 1;
let next = node.nextSibling;
while (next) {
if (next.nodeType === 1) {
const result = cb(next);
if (result === false) {
break;
}
} else if (isComment(next)) {
if (next.data === "]") {
if (--depth === 0) break;
} else if (next.data === "[") {
depth++;
}
}
next = next.nextSibling;
}
} else {
cb(node);
}
}
const isAsyncWrapper = (i) => !!i.type.__asyncLoader;
// @__NO_SIDE_EFFECTS__
function defineAsyncComponent(source) {
if (isFunction(source)) {
source = { loader: source };
}
const {
loader,
loadingComponent,
errorComponent,
delay = 200,
hydrate: hydrateStrategy,
timeout,
// undefined = never times out
suspensible = true,
onError: userOnError
} = source;
let pendingRequest = null;
let resolvedComp;
let retries = 0;
const retry = () => {
retries++;
pendingRequest = null;
return load();
};
const load = () => {
let thisRequest;
return pendingRequest || (thisRequest = pendingRequest = loader().catch((err) => {
err = err instanceof Error ? err : new Error(String(err));
if (userOnError) {
return new Promise((resolve2, reject) => {
const userRetry = () => resolve2(retry());
const userFail = () => reject(err);
userOnError(err, userRetry, userFail, retries + 1);
});
} else {
throw err;
}
}).then((comp) => {
if (thisRequest !== pendingRequest && pendingRequest) {
return pendingRequest;
}
if (comp && (comp.__esModule || comp[Symbol.toStringTag] === "Module")) {
comp = comp.default;
}
resolvedComp = comp;
return comp;
}));
};
return /* @__PURE__ */ defineComponent({
name: "AsyncComponentWrapper",
__asyncLoader: load,
__asyncHydrate(el, instance, hydrate) {
let patched = false;
(instance.bu || (instance.bu = [])).push(() => patched = true);
const performHydrate = () => {
if (patched) {
return;
}
hydrate();
};
const doHydrate = hydrateStrategy ? () => {
const teardown = hydrateStrategy(
performHydrate,
(cb) => forEachElement(el, cb)
);
if (teardown) {
(instance.bum || (instance.bum = [])).push(teardown);
}
} : performHydrate;
if (resolvedComp) {
doHydrate();
} else {
load().then(() => !instance.isUnmounted && doHydrate());
}
},
get __asyncResolved() {
return resolvedComp;
},
setup() {
const instance = currentInstance;
markAsyncBoundary(instance);
if (resolvedComp) {
return () => createInnerComp(resolvedComp, instance);
}
const onError = (err) => {
pendingRequest = null;
handleError(
err,
instance,
13,
!errorComponent
);
};
if (suspensible && instance.suspense || isInSSRComponentSetup) {
return load().then((comp) => {
return () => createInnerComp(comp, instance);
}).catch((err) => {
onError(err);
return () => errorComponent ? createVNode(errorComponent, {
error: err
}) : null;
});
}
const loaded = /* @__PURE__ */ ref(false);
const error = /* @__PURE__ */ ref();
const delayed = /* @__PURE__ */ ref(!!delay);
if (delay) {
setTimeout(() => {
delayed.value = false;
}, delay);
}
if (timeout != null) {
setTimeout(() => {
if (!loaded.value && !error.value) {
const err = new Error(
`Async component timed out after ${timeout}ms.`
);
onError(err);
error.value = err;
}
}, timeout);
}
load().then(() => {
loaded.value = true;
if (instance.parent && isKeepAlive(instance.parent.vnode)) {
instance.parent.update();
}
}).catch((err) => {
onError(err);
error.value = err;
});
return () => {
if (loaded.value && resolvedComp) {
return createInnerComp(resolvedComp, instance);
} else if (error.value && errorComponent) {
return createVNode(errorComponent, {
error: error.value
});
} else if (loadingComponent && !delayed.value) {
return createInnerComp(
loadingComponent,
instance
);
}
};
}
});
}
function createInnerComp(comp, parent) {
const { ref: ref22, props, children, ce } = parent.vnode;
const vnode = createVNode(comp, props, children);
vnode.ref = ref22;
vnode.ce = ce;
delete parent.vnode.ce;
return vnode;
}
const isKeepAlive = (vnode) => vnode.type.__isKeepAlive;
function onActivated(hook, target) {
registerKeepAliveHook(hook, "a", target);
}
function onDeactivated(hook, target) {
registerKeepAliveHook(hook, "da", target);
}
function registerKeepAliveHook(hook, type, target = currentInstance) {
const wrappedHook = hook.__wdc || (hook.__wdc = () => {
let current = target;
while (current) {
if (current.isDeactivated) {
return;
}
current = current.parent;
}
return hook();
});
injectHook(type, wrappedHook, target);
if (target) {
let current = target.parent;
while (current && current.parent) {
if (isKeepAlive(current.parent.vnode)) {
injectToKeepAliveRoot(wrappedHook, type, target, current);
}
current = current.parent;
}
}
}
function injectToKeepAliveRoot(hook, type, target, keepAliveRoot) {
const injected = injectHook(
type,
hook,
keepAliveRoot,
true
/* prepend */
);
onUnmounted(() => {
remove(keepAliveRoot[type], injected);
}, target);
}
function injectHook(type, hook, target = currentInstance, prepend = false) {
if (target) {
const hooks = target[type] || (target[type] = []);
const wrappedHook = hook.__weh || (hook.__weh = (...args) => {
pauseTracking();
const reset = setCurrentInstance(target);
const res = callWithAsyncErrorHandling(hook, target, type, args);
reset();
resetTracking();
return res;
});
if (prepend) {
hooks.unshift(wrappedHook);
} else {
hooks.push(wrappedHook);
}
return wrappedHook;
}
}
const createHook = (lifecycle) => (hook, target = currentInstance) => {
if (!isInSSRComponentSetup || lifecycle === "sp") {
injectHook(lifecycle, (...args) => hook(...args), target);
}
};
const onBeforeMount = createHook("bm");
const onMounted = createHook("m");
const onBeforeUpdate = createHook(
"bu"
);
const onUpdated = createHook("u");
const onBeforeUnmount = createHook(
"bum"
);
const onUnmounted = createHook("um");
const onServerPrefetch = createHook(
"sp"
);
const onRenderTriggered = createHook("rtg");
const onRenderTracked = createHook("rtc");
function onErrorCaptured(hook, target = currentInstance) {
injectHook("ec", hook, target);
}
const COMPONENTS = "components";
function resolveComponent(name, maybeSelfReference) {
return resolveAsset(COMPONENTS, name, true, maybeSelfReference) || name;
}
const NULL_DYNAMIC_COMPONENT = /* @__PURE__ */ Symbol.for("v-ndc");
function resolveDynamicComponent(component) {
if (isString(component)) {
return resolveAsset(COMPONENTS, component, false) || component;
} else {
return component || NULL_DYNAMIC_COMPONENT;
}
}
function resolveAsset(type, name, warnMissing = true, maybeSelfReference = false) {
const instance = currentRenderingInstance || currentInstance;
if (instance) {
const Component = instance.type;
{
const selfName = getComponentName(
Component,
false
);
if (selfName && (selfName === name || selfName === camelize(name) || selfName === capitalize(camelize(name)))) {
return Component;
}
}
const res = (
// local registration
// check instance[type] first which is resolved for options API
resolve(instance[type] || Component[type], name) || // global registration
resolve(instance.appContext[type], name)
);
if (!res && maybeSelfReference) {
return Component;
}
return res;
}
}
function resolve(registry, name) {
return registry && (registry[name] || registry[camelize(name)] || registry[capitalize(camelize(name))]);
}
function renderList(source, renderItem, cache, index) {
let ret;
const cached = cache;
const sourceIsArray = isArray(source);
if (sourceIsArray || isString(source)) {
const sourceIsReactiveArray = sourceIsArray && /* @__PURE__ */ isReactive(source);
let needsWrap = false;
let isReadonlySource = false;
if (sourceIsReactiveArray) {
needsWrap = !/* @__PURE__ */ isShallow(source);
isReadonlySource = /* @__PURE__ */ isReadonly(source);
source = shallowReadArray(source);
}
ret = new Array(source.length);
for (let i = 0, l = source.length; i < l; i++) {
ret[i] = renderItem(
needsWrap ? isReadonlySource ? toReadonly(toReactive(source[i])) : toReactive(source[i]) : source[i],
i,
void 0,
cached
);
}
} else if (typeof source === "number") {
{
ret = new Array(source);
for (let i = 0; i < source; i++) {
ret[i] = renderItem(i + 1, i, void 0, cached);
}
}
} else if (isObject$1(source)) {
if (source[Symbol.iterator]) {
ret = Array.from(
source,
(item, i) => renderItem(item, i, void 0, cached)
);
} else {
const keys = Object.keys(source);
ret = new Array(keys.length);
for (let i = 0, l = keys.length; i < l; i++) {
const key = keys[i];
ret[i] = renderItem(source[key], key, i, cached);
}
}
} else {
ret = [];
}
return ret;
}
function renderSlot(slots, name, props = {}, fallback, noSlotted) {
if (currentRenderingInstance.ce || currentRenderingInstance.parent && isAsyncWrapper(currentRenderingInstance.parent) && currentRenderingInstance.parent.ce) {
const hasProps = Object.keys(props).length > 0;
if (name !== "default") props.name = name;
return openBlock(), createBlock(
Fragment,
null,
[createVNode("slot", props, fallback && fallback())],
hasProps ? -2 : 64
);
}
let slot = slots[name];
if (slot && slot._c) {
slot._d = false;
}
openBlock();
const validSlotContent = slot && ensureValidVNode(slot(props));
const slotKey = props.key || // slot content array of a dynamic conditional slot may have a branch
// key attached in the `createSlots` helper, respect that
validSlotContent && validSlotContent.key;
const rendered = createBlock(
Fragment,
{
key: (slotKey && !isSymbol(slotKey) ? slotKey : `_${name}`) + // #7256 force differentiate fallback content from actual content
(!validSlotContent && fallback ? "_fb" : "")
},
validSlotContent || (fallback ? fallback() : []),
validSlotContent && slots._ === 1 ? 64 : -2
);
if (!noSlotted && rendered.scopeId) {
rendered.slotScopeIds = [rendered.scopeId + "-s"];
}
if (slot && slot._c) {
slot._d = true;
}
return rendered;
}
function ensureValidVNode(vnodes) {
return vnodes.some((child) => {
if (!isVNode(child)) return true;
if (child.type === Comment) return false;
if (child.type === Fragment && !ensureValidVNode(child.children))
return false;
return true;
}) ? vnodes : null;
}
function toHandlers(obj, preserveCaseIfNecessary) {
const ret = {};
for (const key in obj) {
ret[/[A-Z]/.test(key) ? `on:${key}` : toHandlerKey(key)] = obj[key];
}
return ret;
}
const getPublicInstance = (i) => {
if (!i) return null;
if (isStatefulComponent(i)) return getComponentPublicInstance(i);
return getPublicInstance(i.parent);
};
const publicPropertiesMap = (
// Move PURE marker to new line to workaround compiler discarding it
// due to type annotation
/* @__PURE__ */ extend(/* @__PURE__ */ Object.create(null), {
$: (i) => i,
$el: (i) => i.vnode.el,
$data: (i) => i.data,
$props: (i) => i.props,
$attrs: (i) => i.attrs,
$slots: (i) => i.slots,
$refs: (i) => i.refs,
$parent: (i) => getPublicInstance(i.parent),
$root: (i) => getPublicInstance(i.root),
$host: (i) => i.ce,
$emit: (i) => i.emit,
$options: (i) => resolveMergedOptions(i),
$forceUpdate: (i) => i.f || (i.f = () => {
queueJob(i.update);
}),
$nextTick: (i) => i.n || (i.n = nextTick.bind(i.proxy)),
$watch: (i) => instanceWatch.bind(i)
})
);
const hasSetupBinding = (state, key) => state !== EMPTY_OBJ && !state.__isScriptSetup && hasOwn(state, key);
const PublicInstanceProxyHandlers = {
get({ _: instance }, key) {
if (key === "__v_skip") {
return true;
}
const { ctx, setupState, data, props, accessCache, type, appContext } = instance;
if (key[0] !== "$") {
const n = accessCache[key];
if (n !== void 0) {
switch (n) {
case 1:
return setupState[key];
case 2:
return data[key];
case 4:
return ctx[key];
case 3:
return props[key];
}
} else if (hasSetupBinding(setupState, key)) {
accessCache[key] = 1;
return setupState[key];
} else if (data !== EMPTY_OBJ && hasOwn(data, key)) {
accessCache[key] = 2;
return data[key];
} else if (hasOwn(props, key)) {
accessCache[key] = 3;
return props[key];
} else if (ctx !== EMPTY_OBJ && hasOwn(ctx, key)) {
accessCache[key] = 4;
return ctx[key];
} else if (shouldCacheAccess) {
accessCache[key] = 0;
}
}
const publicGetter = publicPropertiesMap[key];
let cssModule, globalProperties;
if (publicGetter) {
if (key === "$attrs") {
track(instance.attrs, "get", "");
}
return publicGetter(instance);
} else if (
// css module (injected by vue-loader)
(cssModule = type.__cssModules) && (cssModule = cssModule[key])
) {
return cssModule;
} else if (ctx !== EMPTY_OBJ && hasOwn(ctx, key)) {
accessCache[key] = 4;
return ctx[key];
} else if (
// global properties
globalProperties = appContext.config.globalProperties, hasOwn(globalProperties, key)
) {
{
return globalProperties[key];
}
} else ;
},
set({ _: instance }, key, value) {
const { data, setupState, ctx } = instance;
if (hasSetupBinding(setupState, key)) {
setupState[key] = value;
return true;
} else if (data !== EMPTY_OBJ && hasOwn(data, key)) {
data[key] = value;
return true;
} else if (hasOwn(instance.props, key)) {
return false;
}
if (key[0] === "$" && key.slice(1) in instance) {
return false;
} else {
{
ctx[key] = value;
}
}
return true;
},
has({
_: { data, setupState, accessCache, ctx, appContext, props, type }
}, key) {
let cssModules;
return !!(accessCache[key] || data !== EMPTY_OBJ && key[0] !== "$" && hasOwn(data, key) || hasSetupBinding(setupState, key) || hasOwn(props, key) || hasOwn(ctx, key) || hasOwn(publicPropertiesMap, key) || hasOwn(appContext.config.globalProperties, key) || (cssModules = type.__cssModules) && cssModules[key]);
},
defineProperty(target, key, descriptor) {
if (descriptor.get != null) {
target._.accessCache[key] = 0;
} else if (hasOwn(descriptor, "value")) {
this.set(target, key, descriptor.value, null);
}
return Reflect.defineProperty(target, key, descriptor);
}
};
function useSlots() {
return getContext().slots;
}
function getContext(calledFunctionName) {
const i = getCurrentInstance();
return i.setupContext || (i.setupContext = createSetupContext(i));
}
function normalizePropsOrEmits(props) {
return isArray(props) ? props.reduce(
(normalized, p2) => (normalized[p2] = null, normalized),
{}
) : props;
}
let shouldCacheAccess = true;
function applyOptions(instance) {
const options = resolveMergedOptions(instance);
const publicThis = instance.proxy;
const ctx = instance.ctx;
shouldCacheAccess = false;
if (options.beforeCreate) {
callHook$1(options.beforeCreate, instance, "bc");
}
const {
// state
data: dataOptions,
computed: computedOptions,
methods,
watch: watchOptions,
provide: provideOptions,
inject: injectOptions,
// lifecycle
created,
beforeMount,
mounted,
beforeUpdate,
updated,
activated,
deactivated,
beforeDestroy,
beforeUnmount,
destroyed,
unmounted,
render,
renderTracked,
renderTriggered,
errorCaptured,
serverPrefetch,
// public API
expose,
inheritAttrs,
// assets
components,
directives,
filters
} = options;
const checkDuplicateProperties = null;
if (injectOptions) {
resolveInjections(injectOptions, ctx, checkDuplicateProperties);
}
if (methods) {
for (const key in methods) {
const methodHandler = methods[key];
if (isFunction(methodHandler)) {
{
ctx[key] = methodHandler.bind(publicThis);
}
}
}
}
if (dataOptions) {
const data = dataOptions.call(publicThis, publicThis);
if (!isObject$1(data)) ;
else {
instance.data = /* @__PURE__ */ reactive(data);
}
}
shouldCacheAccess = true;
if (computedOptions) {
for (const key in computedOptions) {
const opt = computedOptions[key];
const get = isFunction(opt) ? opt.bind(publicThis, publicThis) : isFunction(opt.get) ? opt.get.bind(publicThis, publicThis) : NOOP;
const set = !isFunction(opt) && isFunction(opt.set) ? opt.set.bind(publicThis) : NOOP;
const c = computed({
get,
set
});
Object.defineProperty(ctx, key, {
enumerable: true,
configurable: true,
get: () => c.value,
set: (v) => c.value = v
});
}
}
if (watchOptions) {
for (const key in watchOptions) {
createWatcher(watchOptions[key], ctx, publicThis, key);
}
}
if (provideOptions) {
const provides = isFunction(provideOptions) ? provideOptions.call(publicThis) : provideOptions;
Reflect.ownKeys(provides).forEach((key) => {
provide(key, provides[key]);
});
}
if (created) {
callHook$1(created, instance, "c");
}
function registerLifecycleHook(register, hook) {
if (isArray(hook)) {
hook.forEach((_hook) => register(_hook.bind(publicThis)));
} else if (hook) {
register(hook.bind(publicThis));
}
}
registerLifecycleHook(onBeforeMount, beforeMount);
registerLifecycleHook(onMounted, mounted);
registerLifecycleHook(onBeforeUpdate, beforeUpdate);
registerLifecycleHook(onUpdated, updated);
registerLifecycleHook(onActivated, activated);
registerLifecycleHook(onDeactivated, deactivated);
registerLifecycleHook(onErrorCaptured, errorCaptured);
registerLifecycleHook(onRenderTracked, renderTracked);
registerLifecycleHook(onRenderTriggered, renderTriggered);
registerLifecycleHook(onBeforeUnmount, beforeUnmount);
registerLifecycleHook(onUnmounted, unmounted);
registerLifecycleHook(onServerPrefetch, serverPrefetch);
if (isArray(expose)) {
if (expose.length) {
const exposed = instance.exposed || (instance.exposed = {});
expose.forEach((key) => {
Object.defineProperty(exposed, key, {
get: () => publicThis[key],
set: (val) => publicThis[key] = val,
enumerable: true
});
});
} else if (!instance.exposed) {
instance.exposed = {};
}
}
if (render && instance.render === NOOP) {
instance.render = render;
}
if (inheritAttrs != null) {
instance.inheritAttrs = inheritAttrs;
}
if (components) instance.components = components;
if (directives) instance.directives = directives;
if (serverPrefetch) {
markAsyncBoundary(instance);
}
}
function resolveInjections(injectOptions, ctx, checkDuplicateProperties = NOOP) {
if (isArray(injectOptions)) {
injectOptions = normalizeInject(injectOptions);
}
for (const key in injectOptions) {
const opt = injectOptions[key];
let injected;
if (isObject$1(opt)) {
if ("default" in opt) {
injected = inject(
opt.from || key,
opt.default,
true
);
} else {
injected = inject(opt.from || key);
}
} else {
injected = inject(opt);
}
if (/* @__PURE__ */ isRef(injected)) {
Object.defineProperty(ctx, key, {
enumerable: true,
configurable: true,
get: () => injected.value,
set: (v) => injected.value = v
});
} else {
ctx[key] = injected;
}
}
}
function callHook$1(hook, instance, type) {
callWithAsyncErrorHandling(
isArray(hook) ? hook.map((h2) => h2.bind(instance.proxy)) : hook.bind(instance.proxy),
instance,
type
);
}
function createWatcher(raw, ctx, publicThis, key) {
let getter = key.includes(".") ? createPathGetter(publicThis, key) : () => publicThis[key];
if (isString(raw)) {
const handler = ctx[raw];
if (isFunction(handler)) {
{
watch(getter, handler);
}
}
} else if (isFunction(raw)) {
{
watch(getter, raw.bind(publicThis));
}
} else if (isObject$1(raw)) {
if (isArray(raw)) {
raw.forEach((r) => createWatcher(r, ctx, publicThis, key));
} else {
const handler = isFunction(raw.handler) ? raw.handler.bind(publicThis) : ctx[raw.handler];
if (isFunction(handler)) {
watch(getter, handler, raw);
}
}
} else ;
}
function resolveMergedOptions(instance) {
const base = instance.type;
const { mixins, extends: extendsOptions } = base;
const {
mixins: globalMixins,
optionsCache: cache,
config: { optionMergeStrategies }
} = instance.appContext;
const cached = cache.get(base);
let resolved;
if (cached) {
resolved = cached;
} else if (!globalMixins.length && !mixins && !extendsOptions) {
{
resolved = base;
}
} else {
resolved = {};
if (globalMixins.length) {
globalMixins.forEach(
(m) => mergeOptions(resolved, m, optionMergeStrategies, true)
);
}
mergeOptions(resolved, base, optionMergeStrategies);
}
if (isObject$1(base)) {
cache.set(base, resolved);
}
return resolved;
}
function mergeOptions(to, from, strats, asMixin = false) {
const { mixins, extends: extendsOptions } = from;
if (extendsOptions) {
mergeOptions(to, extendsOptions, strats, true);
}
if (mixins) {
mixins.forEach(
(m) => mergeOptions(to, m, strats, true)
);
}
for (const key in from) {
if (asMixin && key === "expose") ;
else {
const strat = internalOptionMergeStrats[key] || strats && strats[key];
to[key] = strat ? strat(to[key], from[key]) : from[key];
}
}
return to;
}
const internalOptionMergeStrats = {
data: mergeDataFn,
props: mergeEmitsOrPropsOptions,
emits: mergeEmitsOrPropsOptions,
// objects
methods: mergeObjectOptions,
computed: mergeObjectOptions,
// lifecycle
beforeCreate: mergeAsArray,
created: mergeAsArray,
beforeMount: mergeAsArray,
mounted: mergeAsArray,
beforeUpdate: mergeAsArray,
updated: mergeAsArray,
beforeDestroy: mergeAsArray,
beforeUnmount: mergeAsArray,
destroyed: mergeAsArray,
unmounted: mergeAsArray,
activated: mergeAsArray,
deactivated: mergeAsArray,
errorCaptured: mergeAsArray,
serverPrefetch: mergeAsArray,
// assets
components: mergeObjectOptions,
directives: mergeObjectOptions,
// watch
watch: mergeWatchOptions,
// provide / inject
provide: mergeDataFn,
inject: mergeInject
};
function mergeDataFn(to, from) {
if (!from) {
return to;
}
if (!to) {
return from;
}
return function mergedDataFn() {
return extend(
isFunction(to) ? to.call(this, this) : to,
isFunction(from) ? from.call(this, this) : from
);
};
}
function mergeInject(to, from) {
return mergeObjectOptions(normalizeInject(to), normalizeInject(from));
}
function normalizeInject(raw) {
if (isArray(raw)) {
const res = {};
for (let i = 0; i < raw.length; i++) {
res[raw[i]] = raw[i];
}
return res;
}
return raw;
}
function mergeAsArray(to, from) {
return to ? [...new Set([].concat(to, from))] : from;
}
function mergeObjectOptions(to, from) {
return to ? extend(/* @__PURE__ */ Object.create(null), to, from) : from;
}
function mergeEmitsOrPropsOptions(to, from) {
if (to) {
if (isArray(to) && isArray(from)) {
return [.../* @__PURE__ */ new Set([...to, ...from])];
}
return extend(
/* @__PURE__ */ Object.create(null),
normalizePropsOrEmits(to),
normalizePropsOrEmits(from != null ? from : {})
);
} else {
return from;
}
}
function mergeWatchOptions(to, from) {
if (!to) return from;
if (!from) return to;
const merged = extend(/* @__PURE__ */ Object.create(null), to);
for (const key in from) {
merged[key] = mergeAsArray(to[key], from[key]);
}
return merged;
}
function createAppContext() {
return {
app: null,
config: {
isNativeTag: NO,
performance: false,
globalProperties: {},
optionMergeStrategies: {},
errorHandler: void 0,
warnHandler: void 0,
compilerOptions: {}
},
mixins: [],
components: {},
directives: {},
provides: /* @__PURE__ */ Object.create(null),
optionsCache: /* @__PURE__ */ new WeakMap(),
propsCache: /* @__PURE__ */ new WeakMap(),
emitsCache: /* @__PURE__ */ new WeakMap()
};
}
let uid$1 = 0;
function createAppAPI(render, hydrate) {
return function createApp2(rootComponent, rootProps = null) {
if (!isFunction(rootComponent)) {
rootComponent = extend({}, rootComponent);
}
if (rootProps != null && !isObject$1(rootProps)) {
rootProps = null;
}
const context = createAppContext();
const installedPlugins = /* @__PURE__ */ new WeakSet();
const pluginCleanupFns = [];
let isMounted = false;
const app = context.app = {
_uid: uid$1++,
_component: rootComponent,
_props: rootProps,
_container: null,
_context: context,
_instance: null,
version,
get config() {
return context.config;
},
set config(v) {
},
use(plugin, ...options) {
if (installedPlugins.has(plugin)) ;
else if (plugin && isFunction(plugin.install)) {
installedPlugins.add(plugin);
plugin.install(app, ...options);
} else if (isFunction(plugin)) {
installedPlugins.add(plugin);
plugin(app, ...options);
} else ;
return app;
},
mixin(mixin) {
{
if (!context.mixins.includes(mixin)) {
context.mixins.push(mixin);
}
}
return app;
},
component(name, component) {
if (!component) {
return context.components[name];
}
context.components[name] = component;
return app;
},
directive(name, directive) {
if (!directive) {
return context.directives[name];
}
context.directives[name] = directive;
return app;
},
mount(rootContainer, isHydrate, namespace) {
if (!isMounted) {
const vnode = app._ceVNode || createVNode(rootComponent, rootProps);
vnode.appContext = context;
if (namespace === true) {
namespace = "svg";
} else if (namespace === false) {
namespace = void 0;
}
if (isHydrate && hydrate) {
hydrate(vnode, rootContainer);
} else {
render(vnode, rootContainer, namespace);
}
isMounted = true;
app._container = rootContainer;
rootContainer.__vue_app__ = app;
return getComponentPublicInstance(vnode.component);
}
},
onUnmount(cleanupFn) {
pluginCleanupFns.push(cleanupFn);
},
unmount() {
if (isMounted) {
callWithAsyncErrorHandling(
pluginCleanupFns,
app._instance,
16
);
render(null, app._container);
delete app._container.__vue_app__;
}
},
provide(key, value) {
context.provides[key] = value;
return app;
},
runWithContext(fn) {
const lastApp = currentApp;
currentApp = app;
try {
return fn();
} finally {
currentApp = lastApp;
}
}
};
return app;
};
}
let currentApp = null;
const getModelModifiers = (props, modelName) => {
return modelName === "modelValue" || modelName === "model-value" ? props.modelModifiers : props[`${modelName}Modifiers`] || props[`${camelize(modelName)}Modifiers`] || props[`${hyphenate(modelName)}Modifiers`];
};
function emit(instance, event, ...rawArgs) {
if (instance.isUnmounted) return;
const props = instance.vnode.props || EMPTY_OBJ;
let args = rawArgs;
const isModelListener2 = event.startsWith("update:");
const modifiers = isModelListener2 && getModelModifiers(props, event.slice(7));
if (modifiers) {
if (modifiers.trim) {
args = rawArgs.map((a) => isString(a) ? a.trim() : a);
}
if (modifiers.number) {
args = rawArgs.map(looseToNumber);
}
}
let handlerName;
let handler = props[handlerName = toHandlerKey(event)] || // also try camelCase event handler (#2249)
props[handlerName = toHandlerKey(camelize(event))];
if (!handler && isModelListener2) {
handler = props[handlerName = toHandlerKey(hyphenate(event))];
}
if (handler) {
callWithAsyncErrorHandling(
handler,
instance,
6,
args
);
}
const onceHandler = props[handlerName + `Once`];
if (onceHandler) {
if (!instance.emitted) {
instance.emitted = {};
} else if (instance.emitted[handlerName]) {
return;
}
instance.emitted[handlerName] = true;
callWithAsyncErrorHandling(
onceHandler,
instance,
6,
args
);
}
}
const mixinEmitsCache = /* @__PURE__ */ new WeakMap();
function normalizeEmitsOptions(comp, appContext, asMixin = false) {
const cache = asMixin ? mixinEmitsCache : appContext.emitsCache;
const cached = cache.get(comp);
if (cached !== void 0) {
return cached;
}
const raw = comp.emits;
let normalized = {};
let hasExtends = false;
if (!isFunction(comp)) {
const extendEmits = (raw2) => {
const normalizedFromExtend = normalizeEmitsOptions(raw2, appContext, true);
if (normalizedFromExtend) {
hasExtends = true;
extend(normalized, normalizedFromExtend);
}
};
if (!asMixin && appContext.mixins.length) {
appContext.mixins.forEach(extendEmits);
}
if (comp.extends) {
extendEmits(comp.extends);
}
if (comp.mixins) {
comp.mixins.forEach(extendEmits);
}
}
if (!raw && !hasExtends) {
if (isObject$1(comp)) {
cache.set(comp, null);
}
return null;
}
if (isArray(raw)) {
raw.forEach((key) => normalized[key] = null);
} else {
extend(normalized, raw);
}
if (isObject$1(comp)) {
cache.set(comp, normalized);
}
return normalized;
}
function isEmitListener(options, key) {
if (!options || !isOn(key)) {
return false;
}
key = key.slice(2).replace(/Once$/, "");
return hasOwn(options, key[0].toLowerCase() + key.slice(1)) || hasOwn(options, hyphenate(key)) || hasOwn(options, key);
}
function markAttrsAccessed() {
}
function renderComponentRoot(instance) {
const {
type: Component,
vnode,
proxy,
withProxy,
propsOptions: [propsOptions],
slots,
attrs,
emit: emit2,
render,
renderCache,
props,
data,
setupState,
ctx,
inheritAttrs
} = instance;
const prev = setCurrentRenderingInstance(instance);
let result;
let fallthroughAttrs;
try {
if (vnode.shapeFlag & 4) {
const proxyToUse = withProxy || proxy;
const thisProxy = false ? new Proxy(proxyToUse, {
get(target, key, receiver) {
warn$1(
`Property '${String(
key
)}' was accessed via 'this'. Avoid using 'this' in templates.`
);
return Reflect.get(target, key, receiver);
}
}) : proxyToUse;
result = normalizeVNode(
render.call(
thisProxy,
proxyToUse,
renderCache,
false ? /* @__PURE__ */ shallowReadonly(props) : props,
setupState,
data,
ctx
)
);
fallthroughAttrs = attrs;
} else {
const render2 = Component;
if (false) ;
result = normalizeVNode(
render2.length > 1 ? render2(
false ? /* @__PURE__ */ shallowReadonly(props) : props,
false ? {
get attrs() {
markAttrsAccessed();
return /* @__PURE__ */ shallowReadonly(attrs);
},
slots,
emit: emit2
} : { attrs, slots, emit: emit2 }
) : render2(
false ? /* @__PURE__ */ shallowReadonly(props) : props,
null
)
);
fallthroughAttrs = Component.props ? attrs : getFunctionalFallthrough(attrs);
}
} catch (err) {
blockStack.length = 0;
handleError(err, instance, 1);
result = createVNode(Comment);
}
let root = result;
if (fallthroughAttrs && inheritAttrs !== false) {
const keys = Object.keys(fallthroughAttrs);
const { shapeFlag } = root;
if (keys.length) {
if (shapeFlag & (1 | 6)) {
if (propsOptions && keys.some(isModelListener)) {
fallthroughAttrs = filterModelListeners(
fallthroughAttrs,
propsOptions
);
}
root = cloneVNode(root, fallthroughAttrs, false, true);
}
}
}
if (vnode.dirs) {
root = cloneVNode(root, null, false, true);
root.dirs = root.dirs ? root.dirs.concat(vnode.dirs) : vnode.dirs;
}
if (vnode.transition) {
setTransitionHooks(root, vnode.transition);
}
{
result = root;
}
setCurrentRenderingInstance(prev);
return result;
}
const getFunctionalFallthrough = (attrs) => {
let res;
for (const key in attrs) {
if (key === "class" || key === "style" || isOn(key)) {
(res || (res = {}))[key] = attrs[key];
}
}
return res;
};
const filterModelListeners = (attrs, props) => {
const res = {};
for (const key in attrs) {
if (!isModelListener(key) || !(key.slice(9) in props)) {
res[key] = attrs[key];
}
}
return res;
};
function shouldUpdateComponent(prevVNode, nextVNode, optimized) {
const { props: prevProps, children: prevChildren, component } = prevVNode;
const { props: nextProps, children: nextChildren, patchFlag } = nextVNode;
const emits = component.emitsOptions;
if (nextVNode.dirs || nextVNode.transition) {
return true;
}
if (optimized && patchFlag >= 0) {
if (patchFlag & 1024) {
return true;
}
if (patchFlag & 16) {
if (!prevProps) {
return !!nextProps;
}
return hasPropsChanged(prevProps, nextProps, emits);
} else if (patchFlag & 8) {
const dynamicProps = nextVNode.dynamicProps;
for (let i = 0; i < dynamicProps.length; i++) {
const key = dynamicProps[i];
if (hasPropValueChanged(nextProps, prevProps, key) && !isEmitListener(emits, key)) {
return true;
}
}
}
} else {
if (prevChildren || nextChildren) {
if (!nextChildren || !nextChildren.$stable) {
return true;
}
}
if (prevProps === nextProps) {
return false;
}
if (!prevProps) {
return !!nextProps;
}
if (!nextProps) {
return true;
}
return hasPropsChanged(prevProps, nextProps, emits);
}
return false;
}
function hasPropsChanged(prevProps, nextProps, emitsOptions) {
const nextKeys = Object.keys(nextProps);
if (nextKeys.length !== Object.keys(prevProps).length) {
return true;
}
for (let i = 0; i < nextKeys.length; i++) {
const key = nextKeys[i];
if (hasPropValueChanged(nextProps, prevProps, key) && !isEmitListener(emitsOptions, key)) {
return true;
}
}
return false;
}
function hasPropValueChanged(nextProps, prevProps, key) {
const nextProp = nextProps[key];
const prevProp = prevProps[key];
if (key === "style" && isObject$1(nextProp) && isObject$1(prevProp)) {
return !looseEqual(nextProp, prevProp);
}
return nextProp !== prevProp;
}
function updateHOCHostEl({ vnode, parent }, el) {
while (parent) {
const root = parent.subTree;
if (root.suspense && root.suspense.activeBranch === vnode) {
root.el = vnode.el;
}
if (root === vnode) {
(vnode = parent.vnode).el = el;
parent = parent.parent;
} else {
break;
}
}
}
const internalObjectProto = {};
const createInternalObject = () => Object.create(internalObjectProto);
const isInternalObject = (obj) => Object.getPrototypeOf(obj) === internalObjectProto;
function initProps(instance, rawProps, isStateful, isSSR = false) {
const props = {};
const attrs = createInternalObject();
instance.propsDefaults = /* @__PURE__ */ Object.create(null);
setFullProps(instance, rawProps, props, attrs);
for (const key in instance.propsOptions[0]) {
if (!(key in props)) {
props[key] = void 0;
}
}
if (isStateful) {
instance.props = isSSR ? props : /* @__PURE__ */ shallowReactive(props);
} else {
if (!instance.type.props) {
instance.props = attrs;
} else {
instance.props = props;
}
}
instance.attrs = attrs;
}
function updateProps(instance, rawProps, rawPrevProps, optimized) {
const {
props,
attrs,
vnode: { patchFlag }
} = instance;
const rawCurrentProps = /* @__PURE__ */ toRaw(props);
const [options] = instance.propsOptions;
let hasAttrsChanged = false;
if (
// always force full diff in dev
// - #1942 if hmr is enabled with sfc component
// - vite#872 non-sfc component used by sfc component
(optimized || patchFlag > 0) && !(patchFlag & 16)
) {
if (patchFlag & 8) {
const propsToUpdate = instance.vnode.dynamicProps;
for (let i = 0; i < propsToUpdate.length; i++) {
let key = propsToUpdate[i];
if (isEmitListener(instance.emitsOptions, key)) {
continue;
}
const value = rawProps[key];
if (options) {
if (hasOwn(attrs, key)) {
if (value !== attrs[key]) {
attrs[key] = value;
hasAttrsChanged = true;
}
} else {
const camelizedKey = camelize(key);
props[camelizedKey] = resolvePropValue(
options,
rawCurrentProps,
camelizedKey,
value,
instance,
false
);
}
} else {
if (value !== attrs[key]) {
attrs[key] = value;
hasAttrsChanged = true;
}
}
}
}
} else {
if (setFullProps(instance, rawProps, props, attrs)) {
hasAttrsChanged = true;
}
let kebabKey;
for (const key in rawCurrentProps) {
if (!rawProps || // for camelCase
!hasOwn(rawProps, key) && // it's possible the original props was passed in as kebab-case
// and converted to camelCase (#955)
((kebabKey = hyphenate(key)) === key || !hasOwn(rawProps, kebabKey))) {
if (options) {
if (rawPrevProps && // for camelCase
(rawPrevProps[key] !== void 0 || // for kebab-case
rawPrevProps[kebabKey] !== void 0)) {
props[key] = resolvePropValue(
options,
rawCurrentProps,
key,
void 0,
instance,
true
);
}
} else {
delete props[key];
}
}
}
if (attrs !== rawCurrentProps) {
for (const key in attrs) {
if (!rawProps || !hasOwn(rawProps, key) && true) {
delete attrs[key];
hasAttrsChanged = true;
}
}
}
}
if (hasAttrsChanged) {
trigger(instance.attrs, "set", "");
}
}
function setFullProps(instance, rawProps, props, attrs) {
const [options, needCastKeys] = instance.propsOptions;
let hasAttrsChanged = false;
let rawCastValues;
if (rawProps) {
for (let key in rawProps) {
if (isReservedProp(key)) {
continue;
}
const value = rawProps[key];
let camelKey;
if (options && hasOwn(options, camelKey = camelize(key))) {
if (!needCastKeys || !needCastKeys.includes(camelKey)) {
props[camelKey] = value;
} else {
(rawCastValues || (rawCastValues = {}))[camelKey] = value;
}
} else if (!isEmitListener(instance.emitsOptions, key)) {
if (!(key in attrs) || value !== attrs[key]) {
attrs[key] = value;
hasAttrsChanged = true;
}
}
}
}
if (needCastKeys) {
const rawCurrentProps = /* @__PURE__ */ toRaw(props);
const castValues = rawCastValues || EMPTY_OBJ;
for (let i = 0; i < needCastKeys.length; i++) {
const key = needCastKeys[i];
props[key] = resolvePropValue(
options,
rawCurrentProps,
key,
castValues[key],
instance,
!hasOwn(castValues, key)
);
}
}
return hasAttrsChanged;
}
function resolvePropValue(options, props, key, value, instance, isAbsent) {
const opt = options[key];
if (opt != null) {
const hasDefault = hasOwn(opt, "default");
if (hasDefault && value === void 0) {
const defaultValue = opt.default;
if (opt.type !== Function && !opt.skipFactory && isFunction(defaultValue)) {
const { propsDefaults } = instance;
if (key in propsDefaults) {
value = propsDefaults[key];
} else {
const reset = setCurrentInstance(instance);
value = propsDefaults[key] = defaultValue.call(
null,
props
);
reset();
}
} else {
value = defaultValue;
}
if (instance.ce) {
instance.ce._setProp(key, value);
}
}
if (opt[
0
/* shouldCast */
]) {
if (isAbsent && !hasDefault) {
value = false;
} else if (opt[
1
/* shouldCastTrue */
] && (value === "" || value === hyphenate(key))) {
value = true;
}
}
}
return value;
}
const mixinPropsCache = /* @__PURE__ */ new WeakMap();
function normalizePropsOptions(comp, appContext, asMixin = false) {
const cache = asMixin ? mixinPropsCache : appContext.propsCache;
const cached = cache.get(comp);
if (cached) {
return cached;
}
const raw = comp.props;
const normalized = {};
const needCastKeys = [];
let hasExtends = false;
if (!isFunction(comp)) {
const extendProps = (raw2) => {
hasExtends = true;
const [props, keys] = normalizePropsOptions(raw2, appContext, true);
extend(normalized, props);
if (keys) needCastKeys.push(...keys);
};
if (!asMixin && appContext.mixins.length) {
appContext.mixins.forEach(extendProps);
}
if (comp.extends) {
extendProps(comp.extends);
}
if (comp.mixins) {
comp.mixins.forEach(extendProps);
}
}
if (!raw && !hasExtends) {
if (isObject$1(comp)) {
cache.set(comp, EMPTY_ARR);
}
return EMPTY_ARR;
}
if (isArray(raw)) {
for (let i = 0; i < raw.length; i++) {
const normalizedKey = camelize(raw[i]);
if (validatePropName(normalizedKey)) {
normalized[normalizedKey] = EMPTY_OBJ;
}
}
} else if (raw) {
for (const key in raw) {
const normalizedKey = camelize(key);
if (validatePropName(normalizedKey)) {
const opt = raw[key];
const prop = normalized[normalizedKey] = isArray(opt) || isFunction(opt) ? { type: opt } : extend({}, opt);
const propType = prop.type;
let shouldCast = false;
let shouldCastTrue = true;
if (isArray(propType)) {
for (let index = 0; index < propType.length; ++index) {
const type = propType[index];
const typeName = isFunction(type) && type.name;
if (typeName === "Boolean") {
shouldCast = true;
break;
} else if (typeName === "String") {
shouldCastTrue = false;
}
}
} else {
shouldCast = isFunction(propType) && propType.name === "Boolean";
}
prop[
0
/* shouldCast */
] = shouldCast;
prop[
1
/* shouldCastTrue */
] = shouldCastTrue;
if (shouldCast || hasOwn(prop, "default")) {
needCastKeys.push(normalizedKey);
}
}
}
}
const res = [normalized, needCastKeys];
if (isObject$1(comp)) {
cache.set(comp, res);
}
return res;
}
function validatePropName(key) {
if (key[0] !== "$" && !isReservedProp(key)) {
return true;
}
return false;
}
const isInternalKey = (key) => key === "_" || key === "_ctx" || key === "$stable";
const normalizeSlotValue = (value) => isArray(value) ? value.map(normalizeVNode) : [normalizeVNode(value)];
const normalizeSlot = (key, rawSlot, ctx) => {
if (rawSlot._n) {
return rawSlot;
}
const normalized = withCtx((...args) => {
if (false) ;
return normalizeSlotValue(rawSlot(...args));
}, ctx);
normalized._c = false;
return normalized;
};
const normalizeObjectSlots = (rawSlots, slots, instance) => {
const ctx = rawSlots._ctx;
for (const key in rawSlots) {
if (isInternalKey(key)) continue;
const value = rawSlots[key];
if (isFunction(value)) {
slots[key] = normalizeSlot(key, value, ctx);
} else if (value != null) {
const normalized = normalizeSlotValue(value);
slots[key] = () => normalized;
}
}
};
const normalizeVNodeSlots = (instance, children) => {
const normalized = normalizeSlotValue(children);
instance.slots.default = () => normalized;
};
const assignSlots = (slots, children, optimized) => {
for (const key in children) {
if (optimized || !isInternalKey(key)) {
slots[key] = children[key];
}
}
};
const initSlots = (instance, children, optimized) => {
const slots = instance.slots = createInternalObject();
if (instance.vnode.shapeFlag & 32) {
const type = children._;
if (type) {
assignSlots(slots, children, optimized);
if (optimized) {
def(slots, "_", type, true);
}
} else {
normalizeObjectSlots(children, slots);
}
} else if (children) {
normalizeVNodeSlots(instance, children);
}
};
const updateSlots = (instance, children, optimized) => {
const { vnode, slots } = instance;
let needDeletionCheck = true;
let deletionComparisonTarget = EMPTY_OBJ;
if (vnode.shapeFlag & 32) {
const type = children._;
if (type) {
if (optimized && type === 1) {
needDeletionCheck = false;
} else {
assignSlots(slots, children, optimized);
}
} else {
needDeletionCheck = !children.$stable;
normalizeObjectSlots(children, slots);
}
deletionComparisonTarget = children;
} else if (children) {
normalizeVNodeSlots(instance, children);
deletionComparisonTarget = { default: 1 };
}
if (needDeletionCheck) {
for (const key in slots) {
if (!isInternalKey(key) && deletionComparisonTarget[key] == null) {
delete slots[key];
}
}
}
};
const queuePostRenderEffect = queueEffectWithSuspense;
function createRenderer(options) {
return baseCreateRenderer(options);
}
function createHydrationRenderer(options) {
return baseCreateRenderer(options, createHydrationFunctions);
}
function baseCreateRenderer(options, createHydrationFns) {
const target = getGlobalThis();
target.__VUE__ = true;
const {
insert: hostInsert,
remove: hostRemove,
patchProp: hostPatchProp,
createElement: hostCreateElement,
createText: hostCreateText,
createComment: hostCreateComment,
setText: hostSetText,
setElementText: hostSetElementText,
parentNode: hostParentNode,
nextSibling: hostNextSibling,
setScopeId: hostSetScopeId = NOOP,
insertStaticContent: hostInsertStaticContent
} = options;
const patch = (n1, n2, container, anchor = null, parentComponent = null, parentSuspense = null, namespace = void 0, slotScopeIds = null, optimized = !!n2.dynamicChildren) => {
if (n1 === n2) {
return;
}
if (n1 && !isSameVNodeType(n1, n2)) {
anchor = getNextHostNode(n1);
unmount(n1, parentComponent, parentSuspense, true);
n1 = null;
}
if (n2.patchFlag === -2) {
optimized = false;
n2.dynamicChildren = null;
}
const { type, ref: ref3, shapeFlag } = n2;
switch (type) {
case Text:
processText(n1, n2, container, anchor);
break;
case Comment:
processCommentNode(n1, n2, container, anchor);
break;
case Static:
if (n1 == null) {
mountStaticNode(n2, container, anchor, namespace);
}
break;
case Fragment:
processFragment(
n1,
n2,
container,
anchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
break;
default:
if (shapeFlag & 1) {
processElement(
n1,
n2,
container,
anchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
} else if (shapeFlag & 6) {
processComponent(
n1,
n2,
container,
anchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
} else if (shapeFlag & 64) {
type.process(
n1,
n2,
container,
anchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized,
internals
);
} else if (shapeFlag & 128) {
type.process(
n1,
n2,
container,
anchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized,
internals
);
} else ;
}
if (ref3 != null && parentComponent) {
setRef(ref3, n1 && n1.ref, parentSuspense, n2 || n1, !n2);
} else if (ref3 == null && n1 && n1.ref != null) {
setRef(n1.ref, null, parentSuspense, n1, true);
}
};
const processText = (n1, n2, container, anchor) => {
if (n1 == null) {
hostInsert(
n2.el = hostCreateText(n2.children),
container,
anchor
);
} else {
const el = n2.el = n1.el;
if (n2.children !== n1.children) {
hostSetText(el, n2.children);
}
}
};
const processCommentNode = (n1, n2, container, anchor) => {
if (n1 == null) {
hostInsert(
n2.el = hostCreateComment(n2.children || ""),
container,
anchor
);
} else {
n2.el = n1.el;
}
};
const mountStaticNode = (n2, container, anchor, namespace) => {
[n2.el, n2.anchor] = hostInsertStaticContent(
n2.children,
container,
anchor,
namespace,
n2.el,
n2.anchor
);
};
const moveStaticNode = ({ el, anchor }, container, nextSibling) => {
let next;
while (el && el !== anchor) {
next = hostNextSibling(el);
hostInsert(el, container, nextSibling);
el = next;
}
hostInsert(anchor, container, nextSibling);
};
const removeStaticNode = ({ el, anchor }) => {
let next;
while (el && el !== anchor) {
next = hostNextSibling(el);
hostRemove(el);
el = next;
}
hostRemove(anchor);
};
const processElement = (n1, n2, container, anchor, parentComponent, parentSuspense, namespace, slotScopeIds, optimized) => {
if (n2.type === "svg") {
namespace = "svg";
} else if (n2.type === "math") {
namespace = "mathml";
}
if (n1 == null) {
mountElement(
n2,
container,
anchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
} else {
const customElement = n1.el && n1.el._isVueCE ? n1.el : null;
try {
if (customElement) {
customElement._beginPatch();
}
patchElement(
n1,
n2,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
} finally {
if (customElement) {
customElement._endPatch();
}
}
}
};
const mountElement = (vnode, container, anchor, parentComponent, parentSuspense, namespace, slotScopeIds, optimized) => {
let el;
let vnodeHook;
const { props, shapeFlag, transition, dirs } = vnode;
el = vnode.el = hostCreateElement(
vnode.type,
namespace,
props && props.is,
props
);
if (shapeFlag & 8) {
hostSetElementText(el, vnode.children);
} else if (shapeFlag & 16) {
mountChildren(
vnode.children,
el,
null,
parentComponent,
parentSuspense,
resolveChildrenNamespace(vnode, namespace),
slotScopeIds,
optimized
);
}
if (dirs) {
invokeDirectiveHook(vnode, null, parentComponent, "created");
}
setScopeId(el, vnode, vnode.scopeId, slotScopeIds, parentComponent);
if (props) {
for (const key in props) {
if (key !== "value" && !isReservedProp(key)) {
hostPatchProp(el, key, null, props[key], namespace, parentComponent);
}
}
if ("value" in props) {
hostPatchProp(el, "value", null, props.value, namespace);
}
if (vnodeHook = props.onVnodeBeforeMount) {
invokeVNodeHook(vnodeHook, parentComponent, vnode);
}
}
if (dirs) {
invokeDirectiveHook(vnode, null, parentComponent, "beforeMount");
}
const needCallTransitionHooks = needTransition(parentSuspense, transition);
if (needCallTransitionHooks) {
transition.beforeEnter(el);
}
hostInsert(el, container, anchor);
if ((vnodeHook = props && props.onVnodeMounted) || needCallTransitionHooks || dirs) {
queuePostRenderEffect(() => {
vnodeHook && invokeVNodeHook(vnodeHook, parentComponent, vnode);
needCallTransitionHooks && transition.enter(el);
dirs && invokeDirectiveHook(vnode, null, parentComponent, "mounted");
}, parentSuspense);
}
};
const setScopeId = (el, vnode, scopeId, slotScopeIds, parentComponent) => {
if (scopeId) {
hostSetScopeId(el, scopeId);
}
if (slotScopeIds) {
for (let i = 0; i < slotScopeIds.length; i++) {
hostSetScopeId(el, slotScopeIds[i]);
}
}
if (parentComponent) {
let subTree = parentComponent.subTree;
if (vnode === subTree || isSuspense(subTree.type) && (subTree.ssContent === vnode || subTree.ssFallback === vnode)) {
const parentVNode = parentComponent.vnode;
setScopeId(
el,
parentVNode,
parentVNode.scopeId,
parentVNode.slotScopeIds,
parentComponent.parent
);
}
}
};
const mountChildren = (children, container, anchor, parentComponent, parentSuspense, namespace, slotScopeIds, optimized, start = 0) => {
for (let i = start; i < children.length; i++) {
const child = children[i] = optimized ? cloneIfMounted(children[i]) : normalizeVNode(children[i]);
patch(
null,
child,
container,
anchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
}
};
const patchElement = (n1, n2, parentComponent, parentSuspense, namespace, slotScopeIds, optimized) => {
const el = n2.el = n1.el;
let { patchFlag, dynamicChildren, dirs } = n2;
patchFlag |= n1.patchFlag & 16;
const oldProps = n1.props || EMPTY_OBJ;
const newProps = n2.props || EMPTY_OBJ;
let vnodeHook;
parentComponent && toggleRecurse(parentComponent, false);
if (vnodeHook = newProps.onVnodeBeforeUpdate) {
invokeVNodeHook(vnodeHook, parentComponent, n2, n1);
}
if (dirs) {
invokeDirectiveHook(n2, n1, parentComponent, "beforeUpdate");
}
parentComponent && toggleRecurse(parentComponent, true);
if (oldProps.innerHTML && newProps.innerHTML == null || oldProps.textContent && newProps.textContent == null) {
hostSetElementText(el, "");
}
if (dynamicChildren) {
patchBlockChildren(
n1.dynamicChildren,
dynamicChildren,
el,
parentComponent,
parentSuspense,
resolveChildrenNamespace(n2, namespace),
slotScopeIds
);
} else if (!optimized) {
patchChildren(
n1,
n2,
el,
null,
parentComponent,
parentSuspense,
resolveChildrenNamespace(n2, namespace),
slotScopeIds,
false
);
}
if (patchFlag > 0) {
if (patchFlag & 16) {
patchProps(el, oldProps, newProps, parentComponent, namespace);
} else {
if (patchFlag & 2) {
if (oldProps.class !== newProps.class) {
hostPatchProp(el, "class", null, newProps.class, namespace);
}
}
if (patchFlag & 4) {
hostPatchProp(el, "style", oldProps.style, newProps.style, namespace);
}
if (patchFlag & 8) {
const propsToUpdate = n2.dynamicProps;
for (let i = 0; i < propsToUpdate.length; i++) {
const key = propsToUpdate[i];
const prev = oldProps[key];
const next = newProps[key];
if (next !== prev || key === "value") {
hostPatchProp(el, key, prev, next, namespace, parentComponent);
}
}
}
}
if (patchFlag & 1) {
if (n1.children !== n2.children) {
hostSetElementText(el, n2.children);
}
}
} else if (!optimized && dynamicChildren == null) {
patchProps(el, oldProps, newProps, parentComponent, namespace);
}
if ((vnodeHook = newProps.onVnodeUpdated) || dirs) {
queuePostRenderEffect(() => {
vnodeHook && invokeVNodeHook(vnodeHook, parentComponent, n2, n1);
dirs && invokeDirectiveHook(n2, n1, parentComponent, "updated");
}, parentSuspense);
}
};
const patchBlockChildren = (oldChildren, newChildren, fallbackContainer, parentComponent, parentSuspense, namespace, slotScopeIds) => {
for (let i = 0; i < newChildren.length; i++) {
const oldVNode = oldChildren[i];
const newVNode = newChildren[i];
const container = (
// oldVNode may be an errored async setup() component inside Suspense
// which will not have a mounted element
oldVNode.el && // - In the case of a Fragment, we need to provide the actual parent
// of the Fragment itself so it can move its children.
(oldVNode.type === Fragment || // - In the case of different nodes, there is going to be a replacement
// which also requires the correct parent container
!isSameVNodeType(oldVNode, newVNode) || // - In the case of a component, it could contain anything.
oldVNode.shapeFlag & (6 | 64 | 128)) ? hostParentNode(oldVNode.el) : (
// In other cases, the parent container is not actually used so we
// just pass the block element here to avoid a DOM parentNode call.
fallbackContainer
)
);
patch(
oldVNode,
newVNode,
container,
null,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
true
);
}
};
const patchProps = (el, oldProps, newProps, parentComponent, namespace) => {
if (oldProps !== newProps) {
if (oldProps !== EMPTY_OBJ) {
for (const key in oldProps) {
if (!isReservedProp(key) && !(key in newProps)) {
hostPatchProp(
el,
key,
oldProps[key],
null,
namespace,
parentComponent
);
}
}
}
for (const key in newProps) {
if (isReservedProp(key)) continue;
const next = newProps[key];
const prev = oldProps[key];
if (next !== prev && key !== "value") {
hostPatchProp(el, key, prev, next, namespace, parentComponent);
}
}
if ("value" in newProps) {
hostPatchProp(el, "value", oldProps.value, newProps.value, namespace);
}
}
};
const processFragment = (n1, n2, container, anchor, parentComponent, parentSuspense, namespace, slotScopeIds, optimized) => {
const fragmentStartAnchor = n2.el = n1 ? n1.el : hostCreateText("");
const fragmentEndAnchor = n2.anchor = n1 ? n1.anchor : hostCreateText("");
let { patchFlag, dynamicChildren, slotScopeIds: fragmentSlotScopeIds } = n2;
if (fragmentSlotScopeIds) {
slotScopeIds = slotScopeIds ? slotScopeIds.concat(fragmentSlotScopeIds) : fragmentSlotScopeIds;
}
if (n1 == null) {
hostInsert(fragmentStartAnchor, container, anchor);
hostInsert(fragmentEndAnchor, container, anchor);
mountChildren(
// #10007
// such fragment like `<></>` will be compiled into
// a fragment which doesn't have a children.
// In this case fallback to an empty array
n2.children || [],
container,
fragmentEndAnchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
} else {
if (patchFlag > 0 && patchFlag & 64 && dynamicChildren && // #2715 the previous fragment could've been a BAILed one as a result
// of renderSlot() with no valid children
n1.dynamicChildren && n1.dynamicChildren.length === dynamicChildren.length) {
patchBlockChildren(
n1.dynamicChildren,
dynamicChildren,
container,
parentComponent,
parentSuspense,
namespace,
slotScopeIds
);
if (
// #2080 if the stable fragment has a key, it's a <template v-for> that may
// get moved around. Make sure all root level vnodes inherit el.
// #2134 or if it's a component root, it may also get moved around
// as the component is being moved.
n2.key != null || parentComponent && n2 === parentComponent.subTree
) {
traverseStaticChildren(
n1,
n2,
true
/* shallow */
);
}
} else {
patchChildren(
n1,
n2,
container,
fragmentEndAnchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
}
}
};
const processComponent = (n1, n2, container, anchor, parentComponent, parentSuspense, namespace, slotScopeIds, optimized) => {
n2.slotScopeIds = slotScopeIds;
if (n1 == null) {
if (n2.shapeFlag & 512) {
parentComponent.ctx.activate(
n2,
container,
anchor,
namespace,
optimized
);
} else {
mountComponent(
n2,
container,
anchor,
parentComponent,
parentSuspense,
namespace,
optimized
);
}
} else {
updateComponent(n1, n2, optimized);
}
};
const mountComponent = (initialVNode, container, anchor, parentComponent, parentSuspense, namespace, optimized) => {
const instance = initialVNode.component = createComponentInstance(
initialVNode,
parentComponent,
parentSuspense
);
if (isKeepAlive(initialVNode)) {
instance.ctx.renderer = internals;
}
{
setupComponent(instance, false, optimized);
}
if (instance.asyncDep) {
parentSuspense && parentSuspense.registerDep(instance, setupRenderEffect, optimized);
if (!initialVNode.el) {
const placeholder = instance.subTree = createVNode(Comment);
processCommentNode(null, placeholder, container, anchor);
initialVNode.placeholder = placeholder.el;
}
} else {
setupRenderEffect(
instance,
initialVNode,
container,
anchor,
parentSuspense,
namespace,
optimized
);
}
};
const updateComponent = (n1, n2, optimized) => {
const instance = n2.component = n1.component;
if (shouldUpdateComponent(n1, n2, optimized)) {
if (instance.asyncDep && !instance.asyncResolved) {
updateComponentPreRender(instance, n2, optimized);
return;
} else {
instance.next = n2;
instance.update();
}
} else {
n2.el = n1.el;
instance.vnode = n2;
}
};
const setupRenderEffect = (instance, initialVNode, container, anchor, parentSuspense, namespace, optimized) => {
const componentUpdateFn = () => {
if (!instance.isMounted) {
let vnodeHook;
const { el, props } = initialVNode;
const { bm, m, parent, root, type } = instance;
const isAsyncWrapperVNode = isAsyncWrapper(initialVNode);
toggleRecurse(instance, false);
if (bm) {
invokeArrayFns(bm);
}
if (!isAsyncWrapperVNode && (vnodeHook = props && props.onVnodeBeforeMount)) {
invokeVNodeHook(vnodeHook, parent, initialVNode);
}
toggleRecurse(instance, true);
if (el && hydrateNode) {
const hydrateSubTree = () => {
instance.subTree = renderComponentRoot(instance);
hydrateNode(
el,
instance.subTree,
instance,
parentSuspense,
null
);
};
if (isAsyncWrapperVNode && type.__asyncHydrate) {
type.__asyncHydrate(
el,
instance,
hydrateSubTree
);
} else {
hydrateSubTree();
}
} else {
if (root.ce && root.ce._hasShadowRoot()) {
root.ce._injectChildStyle(
type,
instance.parent ? instance.parent.type : void 0
);
}
const subTree = instance.subTree = renderComponentRoot(instance);
patch(
null,
subTree,
container,
anchor,
instance,
parentSuspense,
namespace
);
initialVNode.el = subTree.el;
}
if (m) {
queuePostRenderEffect(m, parentSuspense);
}
if (!isAsyncWrapperVNode && (vnodeHook = props && props.onVnodeMounted)) {
const scopedInitialVNode = initialVNode;
queuePostRenderEffect(
() => invokeVNodeHook(vnodeHook, parent, scopedInitialVNode),
parentSuspense
);
}
if (initialVNode.shapeFlag & 256 || parent && isAsyncWrapper(parent.vnode) && parent.vnode.shapeFlag & 256) {
instance.a && queuePostRenderEffect(instance.a, parentSuspense);
}
instance.isMounted = true;
initialVNode = container = anchor = null;
} else {
let { next, bu, u, parent, vnode } = instance;
{
const nonHydratedAsyncRoot = locateNonHydratedAsyncRoot(instance);
if (nonHydratedAsyncRoot) {
if (next) {
next.el = vnode.el;
updateComponentPreRender(instance, next, optimized);
}
nonHydratedAsyncRoot.asyncDep.then(() => {
queuePostRenderEffect(() => {
if (!instance.isUnmounted) update();
}, parentSuspense);
});
return;
}
}
let originNext = next;
let vnodeHook;
toggleRecurse(instance, false);
if (next) {
next.el = vnode.el;
updateComponentPreRender(instance, next, optimized);
} else {
next = vnode;
}
if (bu) {
invokeArrayFns(bu);
}
if (vnodeHook = next.props && next.props.onVnodeBeforeUpdate) {
invokeVNodeHook(vnodeHook, parent, next, vnode);
}
toggleRecurse(instance, true);
const nextTree = renderComponentRoot(instance);
const prevTree = instance.subTree;
instance.subTree = nextTree;
patch(
prevTree,
nextTree,
// parent may have changed if it's in a teleport
hostParentNode(prevTree.el),
// anchor may have changed if it's in a fragment
getNextHostNode(prevTree),
instance,
parentSuspense,
namespace
);
next.el = nextTree.el;
if (originNext === null) {
updateHOCHostEl(instance, nextTree.el);
}
if (u) {
queuePostRenderEffect(u, parentSuspense);
}
if (vnodeHook = next.props && next.props.onVnodeUpdated) {
queuePostRenderEffect(
() => invokeVNodeHook(vnodeHook, parent, next, vnode),
parentSuspense
);
}
}
};
instance.scope.on();
const effect2 = instance.effect = new ReactiveEffect(componentUpdateFn);
instance.scope.off();
const update = instance.update = effect2.run.bind(effect2);
const job = instance.job = effect2.runIfDirty.bind(effect2);
job.i = instance;
job.id = instance.uid;
effect2.scheduler = () => queueJob(job);
toggleRecurse(instance, true);
update();
};
const updateComponentPreRender = (instance, nextVNode, optimized) => {
nextVNode.component = instance;
const prevProps = instance.vnode.props;
instance.vnode = nextVNode;
instance.next = null;
updateProps(instance, nextVNode.props, prevProps, optimized);
updateSlots(instance, nextVNode.children, optimized);
pauseTracking();
flushPreFlushCbs(instance);
resetTracking();
};
const patchChildren = (n1, n2, container, anchor, parentComponent, parentSuspense, namespace, slotScopeIds, optimized = false) => {
const c1 = n1 && n1.children;
const prevShapeFlag = n1 ? n1.shapeFlag : 0;
const c2 = n2.children;
const { patchFlag, shapeFlag } = n2;
if (patchFlag > 0) {
if (patchFlag & 128) {
patchKeyedChildren(
c1,
c2,
container,
anchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
return;
} else if (patchFlag & 256) {
patchUnkeyedChildren(
c1,
c2,
container,
anchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
return;
}
}
if (shapeFlag & 8) {
if (prevShapeFlag & 16) {
unmountChildren(c1, parentComponent, parentSuspense);
}
if (c2 !== c1) {
hostSetElementText(container, c2);
}
} else {
if (prevShapeFlag & 16) {
if (shapeFlag & 16) {
patchKeyedChildren(
c1,
c2,
container,
anchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
} else {
unmountChildren(c1, parentComponent, parentSuspense, true);
}
} else {
if (prevShapeFlag & 8) {
hostSetElementText(container, "");
}
if (shapeFlag & 16) {
mountChildren(
c2,
container,
anchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
}
}
}
};
const patchUnkeyedChildren = (c1, c2, container, anchor, parentComponent, parentSuspense, namespace, slotScopeIds, optimized) => {
c1 = c1 || EMPTY_ARR;
c2 = c2 || EMPTY_ARR;
const oldLength = c1.length;
const newLength = c2.length;
const commonLength = Math.min(oldLength, newLength);
let i;
for (i = 0; i < commonLength; i++) {
const nextChild = c2[i] = optimized ? cloneIfMounted(c2[i]) : normalizeVNode(c2[i]);
patch(
c1[i],
nextChild,
container,
null,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
}
if (oldLength > newLength) {
unmountChildren(
c1,
parentComponent,
parentSuspense,
true,
false,
commonLength
);
} else {
mountChildren(
c2,
container,
anchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized,
commonLength
);
}
};
const patchKeyedChildren = (c1, c2, container, parentAnchor, parentComponent, parentSuspense, namespace, slotScopeIds, optimized) => {
let i = 0;
const l2 = c2.length;
let e1 = c1.length - 1;
let e2 = l2 - 1;
while (i <= e1 && i <= e2) {
const n1 = c1[i];
const n2 = c2[i] = optimized ? cloneIfMounted(c2[i]) : normalizeVNode(c2[i]);
if (isSameVNodeType(n1, n2)) {
patch(
n1,
n2,
container,
null,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
} else {
break;
}
i++;
}
while (i <= e1 && i <= e2) {
const n1 = c1[e1];
const n2 = c2[e2] = optimized ? cloneIfMounted(c2[e2]) : normalizeVNode(c2[e2]);
if (isSameVNodeType(n1, n2)) {
patch(
n1,
n2,
container,
null,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
} else {
break;
}
e1--;
e2--;
}
if (i > e1) {
if (i <= e2) {
const nextPos = e2 + 1;
const anchor = nextPos < l2 ? c2[nextPos].el : parentAnchor;
while (i <= e2) {
patch(
null,
c2[i] = optimized ? cloneIfMounted(c2[i]) : normalizeVNode(c2[i]),
container,
anchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
i++;
}
}
} else if (i > e2) {
while (i <= e1) {
unmount(c1[i], parentComponent, parentSuspense, true);
i++;
}
} else {
const s1 = i;
const s2 = i;
const keyToNewIndexMap = /* @__PURE__ */ new Map();
for (i = s2; i <= e2; i++) {
const nextChild = c2[i] = optimized ? cloneIfMounted(c2[i]) : normalizeVNode(c2[i]);
if (nextChild.key != null) {
keyToNewIndexMap.set(nextChild.key, i);
}
}
let j;
let patched = 0;
const toBePatched = e2 - s2 + 1;
let moved = false;
let maxNewIndexSoFar = 0;
const newIndexToOldIndexMap = new Array(toBePatched);
for (i = 0; i < toBePatched; i++) newIndexToOldIndexMap[i] = 0;
for (i = s1; i <= e1; i++) {
const prevChild = c1[i];
if (patched >= toBePatched) {
unmount(prevChild, parentComponent, parentSuspense, true);
continue;
}
let newIndex;
if (prevChild.key != null) {
newIndex = keyToNewIndexMap.get(prevChild.key);
} else {
for (j = s2; j <= e2; j++) {
if (newIndexToOldIndexMap[j - s2] === 0 && isSameVNodeType(prevChild, c2[j])) {
newIndex = j;
break;
}
}
}
if (newIndex === void 0) {
unmount(prevChild, parentComponent, parentSuspense, true);
} else {
newIndexToOldIndexMap[newIndex - s2] = i + 1;
if (newIndex >= maxNewIndexSoFar) {
maxNewIndexSoFar = newIndex;
} else {
moved = true;
}
patch(
prevChild,
c2[newIndex],
container,
null,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
patched++;
}
}
const increasingNewIndexSequence = moved ? getSequence(newIndexToOldIndexMap) : EMPTY_ARR;
j = increasingNewIndexSequence.length - 1;
for (i = toBePatched - 1; i >= 0; i--) {
const nextIndex = s2 + i;
const nextChild = c2[nextIndex];
const anchorVNode = c2[nextIndex + 1];
const anchor = nextIndex + 1 < l2 ? (
// #13559, #14173 fallback to el placeholder for unresolved async component
anchorVNode.el || resolveAsyncComponentPlaceholder(anchorVNode)
) : parentAnchor;
if (newIndexToOldIndexMap[i] === 0) {
patch(
null,
nextChild,
container,
anchor,
parentComponent,
parentSuspense,
namespace,
slotScopeIds,
optimized
);
} else if (moved) {
if (j < 0 || i !== increasingNewIndexSequence[j]) {
move(nextChild, container, anchor, 2);
} else {
j--;
}
}
}
}
};
const move = (vnode, container, anchor, moveType, parentSuspense = null) => {
const { el, type, transition, children, shapeFlag } = vnode;
if (shapeFlag & 6) {
move(vnode.component.subTree, container, anchor, moveType);
return;
}
if (shapeFlag & 128) {
vnode.suspense.move(container, anchor, moveType);
return;
}
if (shapeFlag & 64) {
type.move(vnode, container, anchor, internals);
return;
}
if (type === Fragment) {
hostInsert(el, container, anchor);
for (let i = 0; i < children.length; i++) {
move(children[i], container, anchor, moveType);
}
hostInsert(vnode.anchor, container, anchor);
return;
}
if (type === Static) {
moveStaticNode(vnode, container, anchor);
return;
}
const needTransition2 = moveType !== 2 && shapeFlag & 1 && transition;
if (needTransition2) {
if (moveType === 0) {
transition.beforeEnter(el);
hostInsert(el, container, anchor);
queuePostRenderEffect(() => transition.enter(el), parentSuspense);
} else {
const { leave, delayLeave, afterLeave } = transition;
const remove22 = () => {
if (vnode.ctx.isUnmounted) {
hostRemove(el);
} else {
hostInsert(el, container, anchor);
}
};
const performLeave = () => {
if (el._isLeaving) {
el[leaveCbKey](
true
/* cancelled */
);
}
leave(el, () => {
remove22();
afterLeave && afterLeave();
});
};
if (delayLeave) {
delayLeave(el, remove22, performLeave);
} else {
performLeave();
}
}
} else {
hostInsert(el, container, anchor);
}
};
const unmount = (vnode, parentComponent, parentSuspense, doRemove = false, optimized = false) => {
const {
type,
props,
ref: ref3,
children,
dynamicChildren,
shapeFlag,
patchFlag,
dirs,
cacheIndex
} = vnode;
if (patchFlag === -2) {
optimized = false;
}
if (ref3 != null) {
pauseTracking();
setRef(ref3, null, parentSuspense, vnode, true);
resetTracking();
}
if (cacheIndex != null) {
parentComponent.renderCache[cacheIndex] = void 0;
}
if (shapeFlag & 256) {
parentComponent.ctx.deactivate(vnode);
return;
}
const shouldInvokeDirs = shapeFlag & 1 && dirs;
const shouldInvokeVnodeHook = !isAsyncWrapper(vnode);
let vnodeHook;
if (shouldInvokeVnodeHook && (vnodeHook = props && props.onVnodeBeforeUnmount)) {
invokeVNodeHook(vnodeHook, parentComponent, vnode);
}
if (shapeFlag & 6) {
unmountComponent(vnode.component, parentSuspense, doRemove);
} else {
if (shapeFlag & 128) {
vnode.suspense.unmount(parentSuspense, doRemove);
return;
}
if (shouldInvokeDirs) {
invokeDirectiveHook(vnode, null, parentComponent, "beforeUnmount");
}
if (shapeFlag & 64) {
vnode.type.remove(
vnode,
parentComponent,
parentSuspense,
internals,
doRemove
);
} else if (dynamicChildren && // #5154
// when v-once is used inside a block, setBlockTracking(-1) marks the
// parent block with hasOnce: true
// so that it doesn't take the fast path during unmount - otherwise
// components nested in v-once are never unmounted.
!dynamicChildren.hasOnce && // #1153: fast path should not be taken for non-stable (v-for) fragments
(type !== Fragment || patchFlag > 0 && patchFlag & 64)) {
unmountChildren(
dynamicChildren,
parentComponent,
parentSuspense,
false,
true
);
} else if (type === Fragment && patchFlag & (128 | 256) || !optimized && shapeFlag & 16) {
unmountChildren(children, parentComponent, parentSuspense);
}
if (doRemove) {
remove2(vnode);
}
}
if (shouldInvokeVnodeHook && (vnodeHook = props && props.onVnodeUnmounted) || shouldInvokeDirs) {
queuePostRenderEffect(() => {
vnodeHook && invokeVNodeHook(vnodeHook, parentComponent, vnode);
shouldInvokeDirs && invokeDirectiveHook(vnode, null, parentComponent, "unmounted");
}, parentSuspense);
}
};
const remove2 = (vnode) => {
const { type, el, anchor, transition } = vnode;
if (type === Fragment) {
{
removeFragment(el, anchor);
}
return;
}
if (type === Static) {
removeStaticNode(vnode);
return;
}
const performRemove = () => {
hostRemove(el);
if (transition && !transition.persisted && transition.afterLeave) {
transition.afterLeave();
}
};
if (vnode.shapeFlag & 1 && transition && !transition.persisted) {
const { leave, delayLeave } = transition;
const performLeave = () => leave(el, performRemove);
if (delayLeave) {
delayLeave(vnode.el, performRemove, performLeave);
} else {
performLeave();
}
} else {
performRemove();
}
};
const removeFragment = (cur, end) => {
let next;
while (cur !== end) {
next = hostNextSibling(cur);
hostRemove(cur);
cur = next;
}
hostRemove(end);
};
const unmountComponent = (instance, parentSuspense, doRemove) => {
const { bum, scope, job, subTree, um, m, a } = instance;
invalidateMount(m);
invalidateMount(a);
if (bum) {
invokeArrayFns(bum);
}
scope.stop();
if (job) {
job.flags |= 8;
unmount(subTree, instance, parentSuspense, doRemove);
}
if (um) {
queuePostRenderEffect(um, parentSuspense);
}
queuePostRenderEffect(() => {
instance.isUnmounted = true;
}, parentSuspense);
};
const unmountChildren = (children, parentComponent, parentSuspense, doRemove = false, optimized = false, start = 0) => {
for (let i = start; i < children.length; i++) {
unmount(children[i], parentComponent, parentSuspense, doRemove, optimized);
}
};
const getNextHostNode = (vnode) => {
if (vnode.shapeFlag & 6) {
return getNextHostNode(vnode.component.subTree);
}
if (vnode.shapeFlag & 128) {
return vnode.suspense.next();
}
const el = hostNextSibling(vnode.anchor || vnode.el);
const teleportEnd = el && el[TeleportEndKey];
return teleportEnd ? hostNextSibling(teleportEnd) : el;
};
let isFlushing = false;
const render = (vnode, container, namespace) => {
let instance;
if (vnode == null) {
if (container._vnode) {
unmount(container._vnode, null, null, true);
instance = container._vnode.component;
}
} else {
patch(
container._vnode || null,
vnode,
container,
null,
null,
null,
namespace
);
}
container._vnode = vnode;
if (!isFlushing) {
isFlushing = true;
flushPreFlushCbs(instance);
flushPostFlushCbs();
isFlushing = false;
}
};
const internals = {
p: patch,
um: unmount,
m: move,
r: remove2,
mt: mountComponent,
mc: mountChildren,
pc: patchChildren,
pbc: patchBlockChildren,
n: getNextHostNode,
o: options
};
let hydrate;
let hydrateNode;
if (createHydrationFns) {
[hydrate, hydrateNode] = createHydrationFns(
internals
);
}
return {
render,
hydrate,
createApp: createAppAPI(render, hydrate)
};
}
function resolveChildrenNamespace({ type, props }, currentNamespace) {
return currentNamespace === "svg" && type === "foreignObject" || currentNamespace === "mathml" && type === "annotation-xml" && props && props.encoding && props.encoding.includes("html") ? void 0 : currentNamespace;
}
function toggleRecurse({ effect: effect2, job }, allowed) {
if (allowed) {
effect2.flags |= 32;
job.flags |= 4;
} else {
effect2.flags &= -33;
job.flags &= -5;
}
}
function needTransition(parentSuspense, transition) {
return (!parentSuspense || parentSuspense && !parentSuspense.pendingBranch) && transition && !transition.persisted;
}
function traverseStaticChildren(n1, n2, shallow = false) {
const ch1 = n1.children;
const ch2 = n2.children;
if (isArray(ch1) && isArray(ch2)) {
for (let i = 0; i < ch1.length; i++) {
const c1 = ch1[i];
let c2 = ch2[i];
if (c2.shapeFlag & 1 && !c2.dynamicChildren) {
if (c2.patchFlag <= 0 || c2.patchFlag === 32) {
c2 = ch2[i] = cloneIfMounted(ch2[i]);
c2.el = c1.el;
}
if (!shallow && c2.patchFlag !== -2)
traverseStaticChildren(c1, c2);
}
if (c2.type === Text) {
if (c2.patchFlag === -1) {
c2 = ch2[i] = cloneIfMounted(c2);
}
c2.el = c1.el;
}
if (c2.type === Comment && !c2.el) {
c2.el = c1.el;
}
}
}
}
function getSequence(arr) {
const p2 = arr.slice();
const result = [0];
let i, j, u, v, c;
const len = arr.length;
for (i = 0; i < len; i++) {
const arrI = arr[i];
if (arrI !== 0) {
j = result[result.length - 1];
if (arr[j] < arrI) {
p2[i] = j;
result.push(i);
continue;
}
u = 0;
v = result.length - 1;
while (u < v) {
c = u + v >> 1;
if (arr[result[c]] < arrI) {
u = c + 1;
} else {
v = c;
}
}
if (arrI < arr[result[u]]) {
if (u > 0) {
p2[i] = result[u - 1];
}
result[u] = i;
}
}
}
u = result.length;
v = result[u - 1];
while (u-- > 0) {
result[u] = v;
v = p2[v];
}
return result;
}
function locateNonHydratedAsyncRoot(instance) {
const subComponent = instance.subTree.component;
if (subComponent) {
if (subComponent.asyncDep && !subComponent.asyncResolved) {
return subComponent;
} else {
return locateNonHydratedAsyncRoot(subComponent);
}
}
}
function invalidateMount(hooks) {
if (hooks) {
for (let i = 0; i < hooks.length; i++)
hooks[i].flags |= 8;
}
}
function resolveAsyncComponentPlaceholder(anchorVnode) {
if (anchorVnode.placeholder) {
return anchorVnode.placeholder;
}
const instance = anchorVnode.component;
if (instance) {
return resolveAsyncComponentPlaceholder(instance.subTree);
}
return null;
}
const isSuspense = (type) => type.__isSuspense;
function queueEffectWithSuspense(fn, suspense) {
if (suspense && suspense.pendingBranch) {
if (isArray(fn)) {
suspense.effects.push(...fn);
} else {
suspense.effects.push(fn);
}
} else {
queuePostFlushCb(fn);
}
}
const Fragment = /* @__PURE__ */ Symbol.for("v-fgt");
const Text = /* @__PURE__ */ Symbol.for("v-txt");
const Comment = /* @__PURE__ */ Symbol.for("v-cmt");
const Static = /* @__PURE__ */ Symbol.for("v-stc");
const blockStack = [];
let currentBlock = null;
function openBlock(disableTracking = false) {
blockStack.push(currentBlock = disableTracking ? null : []);
}
function closeBlock() {
blockStack.pop();
currentBlock = blockStack[blockStack.length - 1] || null;
}
let isBlockTreeEnabled = 1;
function setBlockTracking(value, inVOnce = false) {
isBlockTreeEnabled += value;
if (value < 0 && currentBlock && inVOnce) {
currentBlock.hasOnce = true;
}
}
function setupBlock(vnode) {
vnode.dynamicChildren = isBlockTreeEnabled > 0 ? currentBlock || EMPTY_ARR : null;
closeBlock();
if (isBlockTreeEnabled > 0 && currentBlock) {
currentBlock.push(vnode);
}
return vnode;
}
function createElementBlock(type, props, children, patchFlag, dynamicProps, shapeFlag) {
return setupBlock(
createBaseVNode(
type,
props,
children,
patchFlag,
dynamicProps,
shapeFlag,
true
)
);
}
function createBlock(type, props, children, patchFlag, dynamicProps) {
return setupBlock(
createVNode(
type,
props,
children,
patchFlag,
dynamicProps,
true
)
);
}
function isVNode(value) {
return value ? value.__v_isVNode === true : false;
}
function isSameVNodeType(n1, n2) {
return n1.type === n2.type && n1.key === n2.key;
}
const normalizeKey = ({ key }) => key != null ? key : null;
const normalizeRef = ({
ref: ref3,
ref_key,
ref_for
}) => {
if (typeof ref3 === "number") {
ref3 = "" + ref3;
}
return ref3 != null ? isString(ref3) || /* @__PURE__ */ isRef(ref3) || isFunction(ref3) ? { i: currentRenderingInstance, r: ref3, k: ref_key, f: !!ref_for } : ref3 : null;
};
function createBaseVNode(type, props = null, children = null, patchFlag = 0, dynamicProps = null, shapeFlag = type === Fragment ? 0 : 1, isBlockNode = false, needFullChildrenNormalization = false) {
const vnode = {
__v_isVNode: true,
__v_skip: true,
type,
props,
key: props && normalizeKey(props),
ref: props && normalizeRef(props),
scopeId: currentScopeId,
slotScopeIds: null,
children,
component: null,
suspense: null,
ssContent: null,
ssFallback: null,
dirs: null,
transition: null,
el: null,
anchor: null,
target: null,
targetStart: null,
targetAnchor: null,
staticCount: 0,
shapeFlag,
patchFlag,
dynamicProps,
dynamicChildren: null,
appContext: null,
ctx: currentRenderingInstance
};
if (needFullChildrenNormalization) {
normalizeChildren(vnode, children);
if (shapeFlag & 128) {
type.normalize(vnode);
}
} else if (children) {
vnode.shapeFlag |= isString(children) ? 8 : 16;
}
if (isBlockTreeEnabled > 0 && // avoid a block node from tracking itself
!isBlockNode && // has current parent block
currentBlock && // presence of a patch flag indicates this node needs patching on updates.
// component nodes also should always be patched, because even if the
// component doesn't need to update, it needs to persist the instance on to
// the next vnode so that it can be properly unmounted later.
(vnode.patchFlag > 0 || shapeFlag & 6) && // the EVENTS flag is only for hydration and if it is the only flag, the
// vnode should not be considered dynamic due to handler caching.
vnode.patchFlag !== 32) {
currentBlock.push(vnode);
}
return vnode;
}
const createVNode = _createVNode;
function _createVNode(type, props = null, children = null, patchFlag = 0, dynamicProps = null, isBlockNode = false) {
if (!type || type === NULL_DYNAMIC_COMPONENT) {
type = Comment;
}
if (isVNode(type)) {
const cloned = cloneVNode(
type,
props,
true
/* mergeRef: true */
);
if (children) {
normalizeChildren(cloned, children);
}
if (isBlockTreeEnabled > 0 && !isBlockNode && currentBlock) {
if (cloned.shapeFlag & 6) {
currentBlock[currentBlock.indexOf(type)] = cloned;
} else {
currentBlock.push(cloned);
}
}
cloned.patchFlag = -2;
return cloned;
}
if (isClassComponent(type)) {
type = type.__vccOpts;
}
if (props) {
props = guardReactiveProps(props);
let { class: klass, style } = props;
if (klass && !isString(klass)) {
props.class = normalizeClass(klass);
}
if (isObject$1(style)) {
if (/* @__PURE__ */ isProxy(style) && !isArray(style)) {
style = extend({}, style);
}
props.style = normalizeStyle(style);
}
}
const shapeFlag = isString(type) ? 1 : isSuspense(type) ? 128 : isTeleport(type) ? 64 : isObject$1(type) ? 4 : isFunction(type) ? 2 : 0;
return createBaseVNode(
type,
props,
children,
patchFlag,
dynamicProps,
shapeFlag,
isBlockNode,
true
);
}
function guardReactiveProps(props) {
if (!props) return null;
return /* @__PURE__ */ isProxy(props) || isInternalObject(props) ? extend({}, props) : props;
}
function cloneVNode(vnode, extraProps, mergeRef = false, cloneTransition = false) {
const { props, ref: ref3, patchFlag, children, transition } = vnode;
const mergedProps = extraProps ? mergeProps(props || {}, extraProps) : props;
const cloned = {
__v_isVNode: true,
__v_skip: true,
type: vnode.type,
props: mergedProps,
key: mergedProps && normalizeKey(mergedProps),
ref: extraProps && extraProps.ref ? (
// #2078 in the case of <component :is="vnode" ref="extra"/>
// if the vnode itself already has a ref, cloneVNode will need to merge
// the refs so the single vnode can be set on multiple refs
mergeRef && ref3 ? isArray(ref3) ? ref3.concat(normalizeRef(extraProps)) : [ref3, normalizeRef(extraProps)] : normalizeRef(extraProps)
) : ref3,
scopeId: vnode.scopeId,
slotScopeIds: vnode.slotScopeIds,
children,
target: vnode.target,
targetStart: vnode.targetStart,
targetAnchor: vnode.targetAnchor,
staticCount: vnode.staticCount,
shapeFlag: vnode.shapeFlag,
// if the vnode is cloned with extra props, we can no longer assume its
// existing patch flag to be reliable and need to add the FULL_PROPS flag.
// note: preserve flag for fragments since they use the flag for children
// fast paths only.
patchFlag: extraProps && vnode.type !== Fragment ? patchFlag === -1 ? 16 : patchFlag | 16 : patchFlag,
dynamicProps: vnode.dynamicProps,
dynamicChildren: vnode.dynamicChildren,
appContext: vnode.appContext,
dirs: vnode.dirs,
transition,
// These should technically only be non-null on mounted VNodes. However,
// they *should* be copied for kept-alive vnodes. So we just always copy
// them since them being non-null during a mount doesn't affect the logic as
// they will simply be overwritten.
component: vnode.component,
suspense: vnode.suspense,
ssContent: vnode.ssContent && cloneVNode(vnode.ssContent),
ssFallback: vnode.ssFallback && cloneVNode(vnode.ssFallback),
placeholder: vnode.placeholder,
el: vnode.el,
anchor: vnode.anchor,
ctx: vnode.ctx,
ce: vnode.ce
};
if (transition && cloneTransition) {
setTransitionHooks(
cloned,
transition.clone(cloned)
);
}
return cloned;
}
function createTextVNode(text = " ", flag = 0) {
return createVNode(Text, null, text, flag);
}
function createStaticVNode(content, numberOfNodes) {
const vnode = createVNode(Static, null, content);
vnode.staticCount = numberOfNodes;
return vnode;
}
function createCommentVNode(text = "", asBlock = false) {
return asBlock ? (openBlock(), createBlock(Comment, null, text)) : createVNode(Comment, null, text);
}
function normalizeVNode(child) {
if (child == null || typeof child === "boolean") {
return createVNode(Comment);
} else if (isArray(child)) {
return createVNode(
Fragment,
null,
// #3666, avoid reference pollution when reusing vnode
child.slice()
);
} else if (isVNode(child)) {
return cloneIfMounted(child);
} else {
return createVNode(Text, null, String(child));
}
}
function cloneIfMounted(child) {
return child.el === null && child.patchFlag !== -1 || child.memo ? child : cloneVNode(child);
}
function normalizeChildren(vnode, children) {
let type = 0;
const { shapeFlag } = vnode;
if (children == null) {
children = null;
} else if (isArray(children)) {
type = 16;
} else if (typeof children === "object") {
if (shapeFlag & (1 | 64)) {
const slot = children.default;
if (slot) {
slot._c && (slot._d = false);
normalizeChildren(vnode, slot());
slot._c && (slot._d = true);
}
return;
} else {
type = 32;
const slotFlag = children._;
if (!slotFlag && !isInternalObject(children)) {
children._ctx = currentRenderingInstance;
} else if (slotFlag === 3 && currentRenderingInstance) {
if (currentRenderingInstance.slots._ === 1) {
children._ = 1;
} else {
children._ = 2;
vnode.patchFlag |= 1024;
}
}
}
} else if (isFunction(children)) {
children = { default: children, _ctx: currentRenderingInstance };
type = 32;
} else {
children = String(children);
if (shapeFlag & 64) {
type = 16;
children = [createTextVNode(children)];
} else {
type = 8;
}
}
vnode.children = children;
vnode.shapeFlag |= type;
}
function mergeProps(...args) {
const ret = {};
for (let i = 0; i < args.length; i++) {
const toMerge = args[i];
for (const key in toMerge) {
if (key === "class") {
if (ret.class !== toMerge.class) {
ret.class = normalizeClass([ret.class, toMerge.class]);
}
} else if (key === "style") {
ret.style = normalizeStyle([ret.style, toMerge.style]);
} else if (isOn(key)) {
const existing = ret[key];
const incoming = toMerge[key];
if (incoming && existing !== incoming && !(isArray(existing) && existing.includes(incoming))) {
ret[key] = existing ? [].concat(existing, incoming) : incoming;
}
} else if (key !== "") {
ret[key] = toMerge[key];
}
}
}
return ret;
}
function invokeVNodeHook(hook, instance, vnode, prevVNode = null) {
callWithAsyncErrorHandling(hook, instance, 7, [
vnode,
prevVNode
]);
}
const emptyAppContext = createAppContext();
let uid = 0;
function createComponentInstance(vnode, parent, suspense) {
const type = vnode.type;
const appContext = (parent ? parent.appContext : vnode.appContext) || emptyAppContext;
const instance = {
uid: uid++,
vnode,
type,
parent,
appContext,
root: null,
// to be immediately set
next: null,
subTree: null,
// will be set synchronously right after creation
effect: null,
update: null,
// will be set synchronously right after creation
job: null,
scope: new EffectScope(
true
/* detached */
),
render: null,
proxy: null,
exposed: null,
exposeProxy: null,
withProxy: null,
provides: parent ? parent.provides : Object.create(appContext.provides),
ids: parent ? parent.ids : ["", 0, 0],
accessCache: null,
renderCache: [],
// local resolved assets
components: null,
directives: null,
// resolved props and emits options
propsOptions: normalizePropsOptions(type, appContext),
emitsOptions: normalizeEmitsOptions(type, appContext),
// emit
emit: null,
// to be set immediately
emitted: null,
// props default value
propsDefaults: EMPTY_OBJ,
// inheritAttrs
inheritAttrs: type.inheritAttrs,
// state
ctx: EMPTY_OBJ,
data: EMPTY_OBJ,
props: EMPTY_OBJ,
attrs: EMPTY_OBJ,
slots: EMPTY_OBJ,
refs: EMPTY_OBJ,
setupState: EMPTY_OBJ,
setupContext: null,
// suspense related
suspense,
suspenseId: suspense ? suspense.pendingId : 0,
asyncDep: null,
asyncResolved: false,
// lifecycle hooks
// not using enums here because it results in computed properties
isMounted: false,
isUnmounted: false,
isDeactivated: false,
bc: null,
c: null,
bm: null,
m: null,
bu: null,
u: null,
um: null,
bum: null,
da: null,
a: null,
rtg: null,
rtc: null,
ec: null,
sp: null
};
{
instance.ctx = { _: instance };
}
instance.root = parent ? parent.root : instance;
instance.emit = emit.bind(null, instance);
if (vnode.ce) {
vnode.ce(instance);
}
return instance;
}
let currentInstance = null;
const getCurrentInstance = () => currentInstance || currentRenderingInstance;
let internalSetCurrentInstance;
let setInSSRSetupState;
{
const g = getGlobalThis();
const registerGlobalSetter = (key, setter) => {
let setters;
if (!(setters = g[key])) setters = g[key] = [];
setters.push(setter);
return (v) => {
if (setters.length > 1) setters.forEach((set) => set(v));
else setters[0](v);
};
};
internalSetCurrentInstance = registerGlobalSetter(
`__VUE_INSTANCE_SETTERS__`,
(v) => currentInstance = v
);
setInSSRSetupState = registerGlobalSetter(
`__VUE_SSR_SETTERS__`,
(v) => isInSSRComponentSetup = v
);
}
const setCurrentInstance = (instance) => {
const prev = currentInstance;
internalSetCurrentInstance(instance);
instance.scope.on();
return () => {
instance.scope.off();
internalSetCurrentInstance(prev);
};
};
const unsetCurrentInstance = () => {
currentInstance && currentInstance.scope.off();
internalSetCurrentInstance(null);
};
function isStatefulComponent(instance) {
return instance.vnode.shapeFlag & 4;
}
let isInSSRComponentSetup = false;
function setupComponent(instance, isSSR = false, optimized = false) {
isSSR && setInSSRSetupState(isSSR);
const { props, children } = instance.vnode;
const isStateful = isStatefulComponent(instance);
initProps(instance, props, isStateful, isSSR);
initSlots(instance, children, optimized || isSSR);
const setupResult = isStateful ? setupStatefulComponent(instance, isSSR) : void 0;
isSSR && setInSSRSetupState(false);
return setupResult;
}
function setupStatefulComponent(instance, isSSR) {
const Component = instance.type;
instance.accessCache = /* @__PURE__ */ Object.create(null);
instance.proxy = new Proxy(instance.ctx, PublicInstanceProxyHandlers);
const { setup } = Component;
if (setup) {
pauseTracking();
const setupContext = instance.setupContext = setup.length > 1 ? createSetupContext(instance) : null;
const reset = setCurrentInstance(instance);
const setupResult = callWithErrorHandling(
setup,
instance,
0,
[
instance.props,
setupContext
]
);
const isAsyncSetup = isPromise(setupResult);
resetTracking();
reset();
if ((isAsyncSetup || instance.sp) && !isAsyncWrapper(instance)) {
markAsyncBoundary(instance);
}
if (isAsyncSetup) {
setupResult.then(unsetCurrentInstance, unsetCurrentInstance);
if (isSSR) {
return setupResult.then((resolvedResult) => {
handleSetupResult(instance, resolvedResult);
}).catch((e) => {
handleError(e, instance, 0);
});
} else {
instance.asyncDep = setupResult;
}
} else {
handleSetupResult(instance, setupResult);
}
} else {
finishComponentSetup(instance);
}
}
function handleSetupResult(instance, setupResult, isSSR) {
if (isFunction(setupResult)) {
if (instance.type.__ssrInlineRender) {
instance.ssrRender = setupResult;
} else {
instance.render = setupResult;
}
} else if (isObject$1(setupResult)) {
instance.setupState = proxyRefs(setupResult);
} else ;
finishComponentSetup(instance);
}
function finishComponentSetup(instance, isSSR, skipOptions) {
const Component = instance.type;
if (!instance.render) {
instance.render = Component.render || NOOP;
}
{
const reset = setCurrentInstance(instance);
pauseTracking();
try {
applyOptions(instance);
} finally {
resetTracking();
reset();
}
}
}
const attrsProxyHandlers = {
get(target, key) {
track(target, "get", "");
return target[key];
}
};
function createSetupContext(instance) {
const expose = (exposed) => {
instance.exposed = exposed || {};
};
{
return {
attrs: new Proxy(instance.attrs, attrsProxyHandlers),
slots: instance.slots,
emit: instance.emit,
expose
};
}
}
function getComponentPublicInstance(instance) {
if (instance.exposed) {
return instance.exposeProxy || (instance.exposeProxy = new Proxy(proxyRefs(markRaw(instance.exposed)), {
get(target, key) {
if (key in target) {
return target[key];
} else if (key in publicPropertiesMap) {
return publicPropertiesMap[key](instance);
}
},
has(target, key) {
return key in target || key in publicPropertiesMap;
}
}));
} else {
return instance.proxy;
}
}
const classifyRE = /(?:^|[-_])\w/g;
const classify = (str) => str.replace(classifyRE, (c) => c.toUpperCase()).replace(/[-_]/g, "");
function getComponentName(Component, includeInferred = true) {
return isFunction(Component) ? Component.displayName || Component.name : Component.name || includeInferred && Component.__name;
}
function formatComponentName(instance, Component, isRoot = false) {
let name = getComponentName(Component);
if (!name && Component.__file) {
const match = Component.__file.match(/([^/\\]+)\.\w+$/);
if (match) {
name = match[1];
}
}
if (!name && instance) {
const inferFromRegistry = (registry) => {
for (const key in registry) {
if (registry[key] === Component) {
return key;
}
}
};
name = inferFromRegistry(instance.components) || instance.parent && inferFromRegistry(
instance.parent.type.components
) || inferFromRegistry(instance.appContext.components);
}
return name ? classify(name) : isRoot ? `App` : `Anonymous`;
}
function isClassComponent(value) {
return isFunction(value) && "__vccOpts" in value;
}
const computed = (getterOrOptions, debugOptions) => {
const c = /* @__PURE__ */ computed$1(getterOrOptions, debugOptions, isInSSRComponentSetup);
return c;
};
function h(type, propsOrChildren, children) {
try {
setBlockTracking(-1);
const l = arguments.length;
if (l === 2) {
if (isObject$1(propsOrChildren) && !isArray(propsOrChildren)) {
if (isVNode(propsOrChildren)) {
return createVNode(type, null, [propsOrChildren]);
}
return createVNode(type, propsOrChildren);
} else {
return createVNode(type, null, propsOrChildren);
}
} else {
if (l > 3) {
children = Array.prototype.slice.call(arguments, 2);
} else if (l === 3 && isVNode(children)) {
children = [children];
}
return createVNode(type, propsOrChildren, children);
}
} finally {
setBlockTracking(1);
}
}
const version = "3.5.30";
/**
* @vue/runtime-dom v3.5.30
* (c) 2018-present Yuxi (Evan) You and Vue contributors
* @license MIT
**/
let policy = void 0;
const tt = typeof window !== "undefined" && window.trustedTypes;
if (tt) {
try {
policy = /* @__PURE__ */ tt.createPolicy("vue", {
createHTML: (val) => val
});
} catch (e) {
}
}
const unsafeToTrustedHTML = policy ? (val) => policy.createHTML(val) : (val) => val;
const svgNS = "http://www.w3.org/2000/svg";
const mathmlNS = "http://www.w3.org/1998/Math/MathML";
const doc = typeof document !== "undefined" ? document : null;
const templateContainer = doc && /* @__PURE__ */ doc.createElement("template");
const nodeOps = {
insert: (child, parent, anchor) => {
parent.insertBefore(child, anchor || null);
},
remove: (child) => {
const parent = child.parentNode;
if (parent) {
parent.removeChild(child);
}
},
createElement: (tag, namespace, is, props) => {
const el = namespace === "svg" ? doc.createElementNS(svgNS, tag) : namespace === "mathml" ? doc.createElementNS(mathmlNS, tag) : is ? doc.createElement(tag, { is }) : doc.createElement(tag);
if (tag === "select" && props && props.multiple != null) {
el.setAttribute("multiple", props.multiple);
}
return el;
},
createText: (text) => doc.createTextNode(text),
createComment: (text) => doc.createComment(text),
setText: (node, text) => {
node.nodeValue = text;
},
setElementText: (el, text) => {
el.textContent = text;
},
parentNode: (node) => node.parentNode,
nextSibling: (node) => node.nextSibling,
querySelector: (selector) => doc.querySelector(selector),
setScopeId(el, id) {
el.setAttribute(id, "");
},
// __UNSAFE__
// Reason: innerHTML.
// Static content here can only come from compiled templates.
// As long as the user only uses trusted templates, this is safe.
insertStaticContent(content, parent, anchor, namespace, start, end) {
const before = anchor ? anchor.previousSibling : parent.lastChild;
if (start && (start === end || start.nextSibling)) {
while (true) {
parent.insertBefore(start.cloneNode(true), anchor);
if (start === end || !(start = start.nextSibling)) break;
}
} else {
templateContainer.innerHTML = unsafeToTrustedHTML(
namespace === "svg" ? `<svg>${content}</svg>` : namespace === "mathml" ? `<math>${content}</math>` : content
);
const template = templateContainer.content;
if (namespace === "svg" || namespace === "mathml") {
const wrapper = template.firstChild;
while (wrapper.firstChild) {
template.appendChild(wrapper.firstChild);
}
template.removeChild(wrapper);
}
parent.insertBefore(template, anchor);
}
return [
// first
before ? before.nextSibling : parent.firstChild,
// last
anchor ? anchor.previousSibling : parent.lastChild
];
}
};
const TRANSITION = "transition";
const ANIMATION = "animation";
const vtcKey = /* @__PURE__ */ Symbol("_vtc");
const DOMTransitionPropsValidators = {
name: String,
type: String,
css: {
type: Boolean,
default: true
},
duration: [String, Number, Object],
enterFromClass: String,
enterActiveClass: String,
enterToClass: String,
appearFromClass: String,
appearActiveClass: String,
appearToClass: String,
leaveFromClass: String,
leaveActiveClass: String,
leaveToClass: String
};
const TransitionPropsValidators = /* @__PURE__ */ extend(
{},
BaseTransitionPropsValidators,
DOMTransitionPropsValidators
);
const decorate$1 = (t) => {
t.displayName = "Transition";
t.props = TransitionPropsValidators;
return t;
};
const Transition = /* @__PURE__ */ decorate$1(
(props, { slots }) => h(BaseTransition, resolveTransitionProps(props), slots)
);
const callHook = (hook, args = []) => {
if (isArray(hook)) {
hook.forEach((h2) => h2(...args));
} else if (hook) {
hook(...args);
}
};
const hasExplicitCallback = (hook) => {
return hook ? isArray(hook) ? hook.some((h2) => h2.length > 1) : hook.length > 1 : false;
};
function resolveTransitionProps(rawProps) {
const baseProps = {};
for (const key in rawProps) {
if (!(key in DOMTransitionPropsValidators)) {
baseProps[key] = rawProps[key];
}
}
if (rawProps.css === false) {
return baseProps;
}
const {
name = "v",
type,
duration,
enterFromClass = `${name}-enter-from`,
enterActiveClass = `${name}-enter-active`,
enterToClass = `${name}-enter-to`,
appearFromClass = enterFromClass,
appearActiveClass = enterActiveClass,
appearToClass = enterToClass,
leaveFromClass = `${name}-leave-from`,
leaveActiveClass = `${name}-leave-active`,
leaveToClass = `${name}-leave-to`
} = rawProps;
const durations = normalizeDuration(duration);
const enterDuration = durations && durations[0];
const leaveDuration = durations && durations[1];
const {
onBeforeEnter,
onEnter,
onEnterCancelled,
onLeave,
onLeaveCancelled,
onBeforeAppear = onBeforeEnter,
onAppear = onEnter,
onAppearCancelled = onEnterCancelled
} = baseProps;
const finishEnter = (el, isAppear, done, isCancelled) => {
el._enterCancelled = isCancelled;
removeTransitionClass(el, isAppear ? appearToClass : enterToClass);
removeTransitionClass(el, isAppear ? appearActiveClass : enterActiveClass);
done && done();
};
const finishLeave = (el, done) => {
el._isLeaving = false;
removeTransitionClass(el, leaveFromClass);
removeTransitionClass(el, leaveToClass);
removeTransitionClass(el, leaveActiveClass);
done && done();
};
const makeEnterHook = (isAppear) => {
return (el, done) => {
const hook = isAppear ? onAppear : onEnter;
const resolve2 = () => finishEnter(el, isAppear, done);
callHook(hook, [el, resolve2]);
nextFrame(() => {
removeTransitionClass(el, isAppear ? appearFromClass : enterFromClass);
addTransitionClass(el, isAppear ? appearToClass : enterToClass);
if (!hasExplicitCallback(hook)) {
whenTransitionEnds(el, type, enterDuration, resolve2);
}
});
};
};
return extend(baseProps, {
onBeforeEnter(el) {
callHook(onBeforeEnter, [el]);
addTransitionClass(el, enterFromClass);
addTransitionClass(el, enterActiveClass);
},
onBeforeAppear(el) {
callHook(onBeforeAppear, [el]);
addTransitionClass(el, appearFromClass);
addTransitionClass(el, appearActiveClass);
},
onEnter: makeEnterHook(false),
onAppear: makeEnterHook(true),
onLeave(el, done) {
el._isLeaving = true;
const resolve2 = () => finishLeave(el, done);
addTransitionClass(el, leaveFromClass);
if (!el._enterCancelled) {
forceReflow(el);
addTransitionClass(el, leaveActiveClass);
} else {
addTransitionClass(el, leaveActiveClass);
forceReflow(el);
}
nextFrame(() => {
if (!el._isLeaving) {
return;
}
removeTransitionClass(el, leaveFromClass);
addTransitionClass(el, leaveToClass);
if (!hasExplicitCallback(onLeave)) {
whenTransitionEnds(el, type, leaveDuration, resolve2);
}
});
callHook(onLeave, [el, resolve2]);
},
onEnterCancelled(el) {
finishEnter(el, false, void 0, true);
callHook(onEnterCancelled, [el]);
},
onAppearCancelled(el) {
finishEnter(el, true, void 0, true);
callHook(onAppearCancelled, [el]);
},
onLeaveCancelled(el) {
finishLeave(el);
callHook(onLeaveCancelled, [el]);
}
});
}
function normalizeDuration(duration) {
if (duration == null) {
return null;
} else if (isObject$1(duration)) {
return [NumberOf(duration.enter), NumberOf(duration.leave)];
} else {
const n = NumberOf(duration);
return [n, n];
}
}
function NumberOf(val) {
const res = toNumber(val);
return res;
}
function addTransitionClass(el, cls) {
cls.split(/\s+/).forEach((c) => c && el.classList.add(c));
(el[vtcKey] || (el[vtcKey] = /* @__PURE__ */ new Set())).add(cls);
}
function removeTransitionClass(el, cls) {
cls.split(/\s+/).forEach((c) => c && el.classList.remove(c));
const _vtc = el[vtcKey];
if (_vtc) {
_vtc.delete(cls);
if (!_vtc.size) {
el[vtcKey] = void 0;
}
}
}
function nextFrame(cb) {
requestAnimationFrame(() => {
requestAnimationFrame(cb);
});
}
let endId = 0;
function whenTransitionEnds(el, expectedType, explicitTimeout, resolve2) {
const id = el._endId = ++endId;
const resolveIfNotStale = () => {
if (id === el._endId) {
resolve2();
}
};
if (explicitTimeout != null) {
return setTimeout(resolveIfNotStale, explicitTimeout);
}
const { type, timeout, propCount } = getTransitionInfo(el, expectedType);
if (!type) {
return resolve2();
}
const endEvent = type + "end";
let ended = 0;
const end = () => {
el.removeEventListener(endEvent, onEnd);
resolveIfNotStale();
};
const onEnd = (e) => {
if (e.target === el && ++ended >= propCount) {
end();
}
};
setTimeout(() => {
if (ended < propCount) {
end();
}
}, timeout + 1);
el.addEventListener(endEvent, onEnd);
}
function getTransitionInfo(el, expectedType) {
const styles = window.getComputedStyle(el);
const getStyleProperties = (key) => (styles[key] || "").split(", ");
const transitionDelays = getStyleProperties(`${TRANSITION}Delay`);
const transitionDurations = getStyleProperties(`${TRANSITION}Duration`);
const transitionTimeout = getTimeout(transitionDelays, transitionDurations);
const animationDelays = getStyleProperties(`${ANIMATION}Delay`);
const animationDurations = getStyleProperties(`${ANIMATION}Duration`);
const animationTimeout = getTimeout(animationDelays, animationDurations);
let type = null;
let timeout = 0;
let propCount = 0;
if (expectedType === TRANSITION) {
if (transitionTimeout > 0) {
type = TRANSITION;
timeout = transitionTimeout;
propCount = transitionDurations.length;
}
} else if (expectedType === ANIMATION) {
if (animationTimeout > 0) {
type = ANIMATION;
timeout = animationTimeout;
propCount = animationDurations.length;
}
} else {
timeout = Math.max(transitionTimeout, animationTimeout);
type = timeout > 0 ? transitionTimeout > animationTimeout ? TRANSITION : ANIMATION : null;
propCount = type ? type === TRANSITION ? transitionDurations.length : animationDurations.length : 0;
}
const hasTransform = type === TRANSITION && /\b(?:transform|all)(?:,|$)/.test(
getStyleProperties(`${TRANSITION}Property`).toString()
);
return {
type,
timeout,
propCount,
hasTransform
};
}
function getTimeout(delays, durations) {
while (delays.length < durations.length) {
delays = delays.concat(delays);
}
return Math.max(...durations.map((d, i) => toMs(d) + toMs(delays[i])));
}
function toMs(s) {
if (s === "auto") return 0;
return Number(s.slice(0, -1).replace(",", ".")) * 1e3;
}
function forceReflow(el) {
const targetDocument = el ? el.ownerDocument : document;
return targetDocument.body.offsetHeight;
}
function patchClass(el, value, isSVG) {
const transitionClasses = el[vtcKey];
if (transitionClasses) {
value = (value ? [value, ...transitionClasses] : [...transitionClasses]).join(" ");
}
if (value == null) {
el.removeAttribute("class");
} else if (isSVG) {
el.setAttribute("class", value);
} else {
el.className = value;
}
}
const vShowOriginalDisplay = /* @__PURE__ */ Symbol("_vod");
const vShowHidden = /* @__PURE__ */ Symbol("_vsh");
const CSS_VAR_TEXT = /* @__PURE__ */ Symbol("");
const displayRE = /(?:^|;)\s*display\s*:/;
function patchStyle(el, prev, next) {
const style = el.style;
const isCssString = isString(next);
let hasControlledDisplay = false;
if (next && !isCssString) {
if (prev) {
if (!isString(prev)) {
for (const key in prev) {
if (next[key] == null) {
setStyle(style, key, "");
}
}
} else {
for (const prevStyle of prev.split(";")) {
const key = prevStyle.slice(0, prevStyle.indexOf(":")).trim();
if (next[key] == null) {
setStyle(style, key, "");
}
}
}
}
for (const key in next) {
if (key === "display") {
hasControlledDisplay = true;
}
setStyle(style, key, next[key]);
}
} else {
if (isCssString) {
if (prev !== next) {
const cssVarText = style[CSS_VAR_TEXT];
if (cssVarText) {
next += ";" + cssVarText;
}
style.cssText = next;
hasControlledDisplay = displayRE.test(next);
}
} else if (prev) {
el.removeAttribute("style");
}
}
if (vShowOriginalDisplay in el) {
el[vShowOriginalDisplay] = hasControlledDisplay ? style.display : "";
if (el[vShowHidden]) {
style.display = "none";
}
}
}
const importantRE = /\s*!important$/;
function setStyle(style, name, val) {
if (isArray(val)) {
val.forEach((v) => setStyle(style, name, v));
} else {
if (val == null) val = "";
if (name.startsWith("--")) {
style.setProperty(name, val);
} else {
const prefixed = autoPrefix(style, name);
if (importantRE.test(val)) {
style.setProperty(
hyphenate(prefixed),
val.replace(importantRE, ""),
"important"
);
} else {
style[prefixed] = val;
}
}
}
}
const prefixes = ["Webkit", "Moz", "ms"];
const prefixCache = {};
function autoPrefix(style, rawName) {
const cached = prefixCache[rawName];
if (cached) {
return cached;
}
let name = camelize(rawName);
if (name !== "filter" && name in style) {
return prefixCache[rawName] = name;
}
name = capitalize(name);
for (let i = 0; i < prefixes.length; i++) {
const prefixed = prefixes[i] + name;
if (prefixed in style) {
return prefixCache[rawName] = prefixed;
}
}
return rawName;
}
const xlinkNS = "http://www.w3.org/1999/xlink";
function patchAttr(el, key, value, isSVG, instance, isBoolean = isSpecialBooleanAttr(key)) {
if (isSVG && key.startsWith("xlink:")) {
if (value == null) {
el.removeAttributeNS(xlinkNS, key.slice(6, key.length));
} else {
el.setAttributeNS(xlinkNS, key, value);
}
} else {
if (value == null || isBoolean && !includeBooleanAttr(value)) {
el.removeAttribute(key);
} else {
el.setAttribute(
key,
isBoolean ? "" : isSymbol(value) ? String(value) : value
);
}
}
}
function patchDOMProp(el, key, value, parentComponent, attrName) {
if (key === "innerHTML" || key === "textContent") {
if (value != null) {
el[key] = key === "innerHTML" ? unsafeToTrustedHTML(value) : value;
}
return;
}
const tag = el.tagName;
if (key === "value" && tag !== "PROGRESS" && // custom elements may use _value internally
!tag.includes("-")) {
const oldValue = tag === "OPTION" ? el.getAttribute("value") || "" : el.value;
const newValue = value == null ? (
// #11647: value should be set as empty string for null and undefined,
// but <input type="checkbox"> should be set as 'on'.
el.type === "checkbox" ? "on" : ""
) : String(value);
if (oldValue !== newValue || !("_value" in el)) {
el.value = newValue;
}
if (value == null) {
el.removeAttribute(key);
}
el._value = value;
return;
}
let needRemove = false;
if (value === "" || value == null) {
const type = typeof el[key];
if (type === "boolean") {
value = includeBooleanAttr(value);
} else if (value == null && type === "string") {
value = "";
needRemove = true;
} else if (type === "number") {
value = 0;
needRemove = true;
}
}
try {
el[key] = value;
} catch (e) {
}
needRemove && el.removeAttribute(attrName || key);
}
function addEventListener(el, event, handler, options) {
el.addEventListener(event, handler, options);
}
function removeEventListener(el, event, handler, options) {
el.removeEventListener(event, handler, options);
}
const veiKey = /* @__PURE__ */ Symbol("_vei");
function patchEvent(el, rawName, prevValue, nextValue, instance = null) {
const invokers = el[veiKey] || (el[veiKey] = {});
const existingInvoker = invokers[rawName];
if (nextValue && existingInvoker) {
existingInvoker.value = nextValue;
} else {
const [name, options] = parseName(rawName);
if (nextValue) {
const invoker = invokers[rawName] = createInvoker(
nextValue,
instance
);
addEventListener(el, name, invoker, options);
} else if (existingInvoker) {
removeEventListener(el, name, existingInvoker, options);
invokers[rawName] = void 0;
}
}
}
const optionsModifierRE = /(?:Once|Passive|Capture)$/;
function parseName(name) {
let options;
if (optionsModifierRE.test(name)) {
options = {};
let m;
while (m = name.match(optionsModifierRE)) {
name = name.slice(0, name.length - m[0].length);
options[m[0].toLowerCase()] = true;
}
}
const event = name[2] === ":" ? name.slice(3) : hyphenate(name.slice(2));
return [event, options];
}
let cachedNow = 0;
const p = /* @__PURE__ */ Promise.resolve();
const getNow = () => cachedNow || (p.then(() => cachedNow = 0), cachedNow = Date.now());
function createInvoker(initialValue, instance) {
const invoker = (e) => {
if (!e._vts) {
e._vts = Date.now();
} else if (e._vts <= invoker.attached) {
return;
}
callWithAsyncErrorHandling(
patchStopImmediatePropagation(e, invoker.value),
instance,
5,
[e]
);
};
invoker.value = initialValue;
invoker.attached = getNow();
return invoker;
}
function patchStopImmediatePropagation(e, value) {
if (isArray(value)) {
const originalStop = e.stopImmediatePropagation;
e.stopImmediatePropagation = () => {
originalStop.call(e);
e._stopped = true;
};
return value.map(
(fn) => (e2) => !e2._stopped && fn && fn(e2)
);
} else {
return value;
}
}
const isNativeOn = (key) => key.charCodeAt(0) === 111 && key.charCodeAt(1) === 110 && // lowercase letter
key.charCodeAt(2) > 96 && key.charCodeAt(2) < 123;
const patchProp = (el, key, prevValue, nextValue, namespace, parentComponent) => {
const isSVG = namespace === "svg";
if (key === "class") {
patchClass(el, nextValue, isSVG);
} else if (key === "style") {
patchStyle(el, prevValue, nextValue);
} else if (isOn(key)) {
if (!isModelListener(key)) {
patchEvent(el, key, prevValue, nextValue, parentComponent);
}
} else if (key[0] === "." ? (key = key.slice(1), true) : key[0] === "^" ? (key = key.slice(1), false) : shouldSetAsProp(el, key, nextValue, isSVG)) {
patchDOMProp(el, key, nextValue);
if (!el.tagName.includes("-") && (key === "value" || key === "checked" || key === "selected")) {
patchAttr(el, key, nextValue, isSVG, parentComponent, key !== "value");
}
} else if (
// #11081 force set props for possible async custom element
el._isVueCE && // #12408 check if it's declared prop or it's async custom element
(shouldSetAsPropForVueCE(el, key) || // @ts-expect-error _def is private
el._def.__asyncLoader && (/[A-Z]/.test(key) || !isString(nextValue)))
) {
patchDOMProp(el, camelize(key), nextValue, parentComponent, key);
} else {
if (key === "true-value") {
el._trueValue = nextValue;
} else if (key === "false-value") {
el._falseValue = nextValue;
}
patchAttr(el, key, nextValue, isSVG);
}
};
function shouldSetAsProp(el, key, value, isSVG) {
if (isSVG) {
if (key === "innerHTML" || key === "textContent") {
return true;
}
if (key in el && isNativeOn(key) && isFunction(value)) {
return true;
}
return false;
}
if (key === "spellcheck" || key === "draggable" || key === "translate" || key === "autocorrect") {
return false;
}
if (key === "sandbox" && el.tagName === "IFRAME") {
return false;
}
if (key === "form") {
return false;
}
if (key === "list" && el.tagName === "INPUT") {
return false;
}
if (key === "type" && el.tagName === "TEXTAREA") {
return false;
}
if (key === "width" || key === "height") {
const tag = el.tagName;
if (tag === "IMG" || tag === "VIDEO" || tag === "CANVAS" || tag === "SOURCE") {
return false;
}
}
if (isNativeOn(key) && isString(value)) {
return false;
}
return key in el;
}
function shouldSetAsPropForVueCE(el, key) {
const props = (
// @ts-expect-error _def is private
el._def.props
);
if (!props) {
return false;
}
const camelKey = camelize(key);
return Array.isArray(props) ? props.some((prop) => camelize(prop) === camelKey) : Object.keys(props).some((prop) => camelize(prop) === camelKey);
}
const getModelAssigner = (vnode) => {
const fn = vnode.props["onUpdate:modelValue"] || false;
return isArray(fn) ? (value) => invokeArrayFns(fn, value) : fn;
};
function onCompositionStart(e) {
e.target.composing = true;
}
function onCompositionEnd(e) {
const target = e.target;
if (target.composing) {
target.composing = false;
target.dispatchEvent(new Event("input"));
}
}
const assignKey = /* @__PURE__ */ Symbol("_assign");
function castValue(value, trim, number) {
if (trim) value = value.trim();
if (number) value = looseToNumber(value);
return value;
}
const vModelText = {
created(el, { modifiers: { lazy, trim, number } }, vnode) {
el[assignKey] = getModelAssigner(vnode);
const castToNumber = number || vnode.props && vnode.props.type === "number";
addEventListener(el, lazy ? "change" : "input", (e) => {
if (e.target.composing) return;
el[assignKey](castValue(el.value, trim, castToNumber));
});
if (trim || castToNumber) {
addEventListener(el, "change", () => {
el.value = castValue(el.value, trim, castToNumber);
});
}
if (!lazy) {
addEventListener(el, "compositionstart", onCompositionStart);
addEventListener(el, "compositionend", onCompositionEnd);
addEventListener(el, "change", onCompositionEnd);
}
},
// set value on mounted so it's after min/max for type="range"
mounted(el, { value }) {
el.value = value == null ? "" : value;
},
beforeUpdate(el, { value, oldValue, modifiers: { lazy, trim, number } }, vnode) {
el[assignKey] = getModelAssigner(vnode);
if (el.composing) return;
const elValue = (number || el.type === "number") && !/^0\d/.test(el.value) ? looseToNumber(el.value) : el.value;
const newValue = value == null ? "" : value;
if (elValue === newValue) {
return;
}
if (document.activeElement === el && el.type !== "range") {
if (lazy && value === oldValue) {
return;
}
if (trim && el.value.trim() === newValue) {
return;
}
}
el.value = newValue;
}
};
const systemModifiers = ["ctrl", "shift", "alt", "meta"];
const modifierGuards = {
stop: (e) => e.stopPropagation(),
prevent: (e) => e.preventDefault(),
self: (e) => e.target !== e.currentTarget,
ctrl: (e) => !e.ctrlKey,
shift: (e) => !e.shiftKey,
alt: (e) => !e.altKey,
meta: (e) => !e.metaKey,
left: (e) => "button" in e && e.button !== 0,
middle: (e) => "button" in e && e.button !== 1,
right: (e) => "button" in e && e.button !== 2,
exact: (e, modifiers) => systemModifiers.some((m) => e[`${m}Key`] && !modifiers.includes(m))
};
const withModifiers = (fn, modifiers) => {
if (!fn) return fn;
const cache = fn._withMods || (fn._withMods = {});
const cacheKey = modifiers.join(".");
return cache[cacheKey] || (cache[cacheKey] = (event, ...args) => {
for (let i = 0; i < modifiers.length; i++) {
const guard = modifierGuards[modifiers[i]];
if (guard && guard(event, modifiers)) return;
}
return fn(event, ...args);
});
};
const keyNames = {
esc: "escape",
space: " ",
up: "arrow-up",
left: "arrow-left",
right: "arrow-right",
down: "arrow-down",
delete: "backspace"
};
const withKeys = (fn, modifiers) => {
const cache = fn._withKeys || (fn._withKeys = {});
const cacheKey = modifiers.join(".");
return cache[cacheKey] || (cache[cacheKey] = (event) => {
if (!("key" in event)) {
return;
}
const eventKey = hyphenate(event.key);
if (modifiers.some(
(k) => k === eventKey || keyNames[k] === eventKey
)) {
return fn(event);
}
});
};
const rendererOptions = /* @__PURE__ */ extend({ patchProp }, nodeOps);
let renderer;
let enabledHydration = false;
function ensureRenderer() {
return renderer || (renderer = createRenderer(rendererOptions));
}
function ensureHydrationRenderer() {
renderer = enabledHydration ? renderer : createHydrationRenderer(rendererOptions);
enabledHydration = true;
return renderer;
}
const createApp = (...args) => {
const app = ensureRenderer().createApp(...args);
const { mount } = app;
app.mount = (containerOrSelector) => {
const container = normalizeContainer(containerOrSelector);
if (!container) return;
const component = app._component;
if (!isFunction(component) && !component.render && !component.template) {
component.template = container.innerHTML;
}
if (container.nodeType === 1) {
container.textContent = "";
}
const proxy = mount(container, false, resolveRootNamespace(container));
if (container instanceof Element) {
container.removeAttribute("v-cloak");
container.setAttribute("data-v-app", "");
}
return proxy;
};
return app;
};
const createSSRApp = (...args) => {
const app = ensureHydrationRenderer().createApp(...args);
const { mount } = app;
app.mount = (containerOrSelector) => {
const container = normalizeContainer(containerOrSelector);
if (container) {
return mount(container, true, resolveRootNamespace(container));
}
};
return app;
};
function resolveRootNamespace(container) {
if (container instanceof SVGElement) {
return "svg";
}
if (typeof MathMLElement === "function" && container instanceof MathMLElement) {
return "mathml";
}
}
function normalizeContainer(container) {
if (isString(container)) {
const res = document.querySelector(container);
return res;
}
return container;
}
const siteData = window.__VP_SITE_DATA__;
function tryOnScopeDispose(fn) {
if (getCurrentScope()) {
onScopeDispose(fn);
return true;
}
return false;
}
const localProvidedStateMap = /* @__PURE__ */ new WeakMap();
const injectLocal = (...args) => {
var _a;
const key = args[0];
const instance = (_a = getCurrentInstance()) == null ? void 0 : _a.proxy;
if (instance == null && !hasInjectionContext())
throw new Error("injectLocal must be called in setup");
if (instance && localProvidedStateMap.has(instance) && key in localProvidedStateMap.get(instance))
return localProvidedStateMap.get(instance)[key];
return inject(...args);
};
const isClient = typeof window !== "undefined" && typeof document !== "undefined";
typeof WorkerGlobalScope !== "undefined" && globalThis instanceof WorkerGlobalScope;
const notNullish = (val) => val != null;
const toString = Object.prototype.toString;
const isObject = (val) => toString.call(val) === "[object Object]";
const noop = () => {
};
const isIOS = /* @__PURE__ */ getIsIOS();
function getIsIOS() {
var _a, _b;
return isClient && ((_a = window == null ? void 0 : window.navigator) == null ? void 0 : _a.userAgent) && (/iP(?:ad|hone|od)/.test(window.navigator.userAgent) || ((_b = window == null ? void 0 : window.navigator) == null ? void 0 : _b.maxTouchPoints) > 2 && /iPad|Macintosh/.test(window == null ? void 0 : window.navigator.userAgent));
}
function createFilterWrapper(filter, fn) {
function wrapper(...args) {
return new Promise((resolve2, reject) => {
Promise.resolve(filter(() => fn.apply(this, args), { fn, thisArg: this, args })).then(resolve2).catch(reject);
});
}
return wrapper;
}
const bypassFilter = (invoke) => {
return invoke();
};
function debounceFilter(ms, options = {}) {
let timer;
let maxTimer;
let lastRejector = noop;
const _clearTimeout = (timer2) => {
clearTimeout(timer2);
lastRejector();
lastRejector = noop;
};
let lastInvoker;
const filter = (invoke) => {
const duration = toValue(ms);
const maxDuration = toValue(options.maxWait);
if (timer)
_clearTimeout(timer);
if (duration <= 0 || maxDuration !== void 0 && maxDuration <= 0) {
if (maxTimer) {
_clearTimeout(maxTimer);
maxTimer = null;
}
return Promise.resolve(invoke());
}
return new Promise((resolve2, reject) => {
lastRejector = options.rejectOnCancel ? reject : resolve2;
lastInvoker = invoke;
if (maxDuration && !maxTimer) {
maxTimer = setTimeout(() => {
if (timer)
_clearTimeout(timer);
maxTimer = null;
resolve2(lastInvoker());
}, maxDuration);
}
timer = setTimeout(() => {
if (maxTimer)
_clearTimeout(maxTimer);
maxTimer = null;
resolve2(invoke());
}, duration);
});
};
return filter;
}
function throttleFilter(...args) {
let lastExec = 0;
let timer;
let isLeading = true;
let lastRejector = noop;
let lastValue;
let ms;
let trailing;
let leading;
let rejectOnCancel;
if (!/* @__PURE__ */ isRef(args[0]) && typeof args[0] === "object")
({ delay: ms, trailing = true, leading = true, rejectOnCancel = false } = args[0]);
else
[ms, trailing = true, leading = true, rejectOnCancel = false] = args;
const clear = () => {
if (timer) {
clearTimeout(timer);
timer = void 0;
lastRejector();
lastRejector = noop;
}
};
const filter = (_invoke) => {
const duration = toValue(ms);
const elapsed = Date.now() - lastExec;
const invoke = () => {
return lastValue = _invoke();
};
clear();
if (duration <= 0) {
lastExec = Date.now();
return invoke();
}
if (elapsed > duration && (leading || !isLeading)) {
lastExec = Date.now();
invoke();
} else if (trailing) {
lastValue = new Promise((resolve2, reject) => {
lastRejector = rejectOnCancel ? reject : resolve2;
timer = setTimeout(() => {
lastExec = Date.now();
isLeading = true;
resolve2(invoke());
clear();
}, Math.max(0, duration - elapsed));
});
}
if (!leading && !timer)
timer = setTimeout(() => isLeading = true, duration);
isLeading = false;
return lastValue;
};
return filter;
}
function pausableFilter(extendFilter = bypassFilter, options = {}) {
const {
initialState = "active"
} = options;
const isActive2 = toRef(initialState === "active");
function pause() {
isActive2.value = false;
}
function resume() {
isActive2.value = true;
}
const eventFilter = (...args) => {
if (isActive2.value)
extendFilter(...args);
};
return { isActive: /* @__PURE__ */ readonly(isActive2), pause, resume, eventFilter };
}
function pxValue(px) {
return px.endsWith("rem") ? Number.parseFloat(px) * 16 : Number.parseFloat(px);
}
function getLifeCycleTarget(target) {
return getCurrentInstance();
}
function toArray(value) {
return Array.isArray(value) ? value : [value];
}
function toRef(...args) {
if (args.length !== 1)
return /* @__PURE__ */ toRef$1(...args);
const r = args[0];
return typeof r === "function" ? /* @__PURE__ */ readonly(customRef(() => ({ get: r, set: noop }))) : /* @__PURE__ */ ref(r);
}
function useDebounceFn(fn, ms = 200, options = {}) {
return createFilterWrapper(
debounceFilter(ms, options),
fn
);
}
function useThrottleFn(fn, ms = 200, trailing = false, leading = true, rejectOnCancel = false) {
return createFilterWrapper(
throttleFilter(ms, trailing, leading, rejectOnCancel),
fn
);
}
function watchWithFilter(source, cb, options = {}) {
const {
eventFilter = bypassFilter,
...watchOptions
} = options;
return watch(
source,
createFilterWrapper(
eventFilter,
cb
),
watchOptions
);
}
function watchPausable(source, cb, options = {}) {
const {
eventFilter: filter,
initialState = "active",
...watchOptions
} = options;
const { eventFilter, pause, resume, isActive: isActive2 } = pausableFilter(filter, { initialState });
const stop = watchWithFilter(
source,
cb,
{
...watchOptions,
eventFilter
}
);
return { stop, pause, resume, isActive: isActive2 };
}
function tryOnMounted(fn, sync = true, target) {
const instance = getLifeCycleTarget();
if (instance)
onMounted(fn, target);
else if (sync)
fn();
else
nextTick(fn);
}
function watchDebounced(source, cb, options = {}) {
const {
debounce = 0,
maxWait = void 0,
...watchOptions
} = options;
return watchWithFilter(
source,
cb,
{
...watchOptions,
eventFilter: debounceFilter(debounce, { maxWait })
}
);
}
function watchImmediate(source, cb, options) {
return watch(
source,
cb,
{
...options,
immediate: true
}
);
}
function computedAsync(evaluationCallback, initialState, optionsOrRef) {
let options;
if (/* @__PURE__ */ isRef(optionsOrRef)) {
options = {
evaluating: optionsOrRef
};
} else {
options = {};
}
const {
lazy = false,
evaluating = void 0,
shallow = true,
onError = noop
} = options;
const started = /* @__PURE__ */ shallowRef(!lazy);
const current = shallow ? /* @__PURE__ */ shallowRef(initialState) : /* @__PURE__ */ ref(initialState);
let counter = 0;
watchEffect(async (onInvalidate) => {
if (!started.value)
return;
counter++;
const counterAtBeginning = counter;
let hasFinished = false;
if (evaluating) {
Promise.resolve().then(() => {
evaluating.value = true;
});
}
try {
const result = await evaluationCallback((cancelCallback) => {
onInvalidate(() => {
if (evaluating)
evaluating.value = false;
if (!hasFinished)
cancelCallback();
});
});
if (counterAtBeginning === counter)
current.value = result;
} catch (e) {
onError(e);
} finally {
if (evaluating && counterAtBeginning === counter)
evaluating.value = false;
hasFinished = true;
}
});
if (lazy) {
return computed(() => {
started.value = true;
return current.value;
});
} else {
return current;
}
}
const defaultWindow = isClient ? window : void 0;
function unrefElement(elRef) {
var _a;
const plain = toValue(elRef);
return (_a = plain == null ? void 0 : plain.$el) != null ? _a : plain;
}
function useEventListener(...args) {
const cleanups = [];
const cleanup = () => {
cleanups.forEach((fn) => fn());
cleanups.length = 0;
};
const register = (el, event, listener, options) => {
el.addEventListener(event, listener, options);
return () => el.removeEventListener(event, listener, options);
};
const firstParamTargets = computed(() => {
const test = toArray(toValue(args[0])).filter((e) => e != null);
return test.every((e) => typeof e !== "string") ? test : void 0;
});
const stopWatch = watchImmediate(
() => {
var _a, _b;
return [
(_b = (_a = firstParamTargets.value) == null ? void 0 : _a.map((e) => unrefElement(e))) != null ? _b : [defaultWindow].filter((e) => e != null),
toArray(toValue(firstParamTargets.value ? args[1] : args[0])),
toArray(unref(firstParamTargets.value ? args[2] : args[1])),
// @ts-expect-error - TypeScript gets the correct types, but somehow still complains
toValue(firstParamTargets.value ? args[3] : args[2])
];
},
([raw_targets, raw_events, raw_listeners, raw_options]) => {
cleanup();
if (!(raw_targets == null ? void 0 : raw_targets.length) || !(raw_events == null ? void 0 : raw_events.length) || !(raw_listeners == null ? void 0 : raw_listeners.length))
return;
const optionsClone = isObject(raw_options) ? { ...raw_options } : raw_options;
cleanups.push(
...raw_targets.flatMap(
(el) => raw_events.flatMap(
(event) => raw_listeners.map((listener) => register(el, event, listener, optionsClone))
)
)
);
},
{ flush: "post" }
);
const stop = () => {
stopWatch();
cleanup();
};
tryOnScopeDispose(cleanup);
return stop;
}
function useMounted() {
const isMounted = /* @__PURE__ */ shallowRef(false);
const instance = getCurrentInstance();
if (instance) {
onMounted(() => {
isMounted.value = true;
}, instance);
}
return isMounted;
}
function useSupported(callback) {
const isMounted = useMounted();
return computed(() => {
isMounted.value;
return Boolean(callback());
});
}
function createKeyPredicate(keyFilter) {
if (typeof keyFilter === "function")
return keyFilter;
else if (typeof keyFilter === "string")
return (event) => event.key === keyFilter;
else if (Array.isArray(keyFilter))
return (event) => keyFilter.includes(event.key);
return () => true;
}
function onKeyStroke(...args) {
let key;
let handler;
let options = {};
if (args.length === 3) {
key = args[0];
handler = args[1];
options = args[2];
} else if (args.length === 2) {
if (typeof args[1] === "object") {
key = true;
handler = args[0];
options = args[1];
} else {
key = args[0];
handler = args[1];
}
} else {
key = true;
handler = args[0];
}
const {
target = defaultWindow,
eventName = "keydown",
passive = false,
dedupe = false
} = options;
const predicate = createKeyPredicate(key);
const listener = (e) => {
if (e.repeat && toValue(dedupe))
return;
if (predicate(e))
handler(e);
};
return useEventListener(target, eventName, listener, passive);
}
const ssrWidthSymbol = Symbol("vueuse-ssr-width");
function useSSRWidth() {
const ssrWidth = hasInjectionContext() ? injectLocal(ssrWidthSymbol, null) : null;
return typeof ssrWidth === "number" ? ssrWidth : void 0;
}
function useMediaQuery(query, options = {}) {
const { window: window2 = defaultWindow, ssrWidth = useSSRWidth() } = options;
const isSupported = useSupported(() => window2 && "matchMedia" in window2 && typeof window2.matchMedia === "function");
const ssrSupport = /* @__PURE__ */ shallowRef(typeof ssrWidth === "number");
const mediaQuery = /* @__PURE__ */ shallowRef();
const matches = /* @__PURE__ */ shallowRef(false);
const handler = (event) => {
matches.value = event.matches;
};
watchEffect(() => {
if (ssrSupport.value) {
ssrSupport.value = !isSupported.value;
const queryStrings = toValue(query).split(",");
matches.value = queryStrings.some((queryString) => {
const not = queryString.includes("not all");
const minWidth = queryString.match(/\(\s*min-width:\s*(-?\d+(?:\.\d*)?[a-z]+\s*)\)/);
const maxWidth = queryString.match(/\(\s*max-width:\s*(-?\d+(?:\.\d*)?[a-z]+\s*)\)/);
let res = Boolean(minWidth || maxWidth);
if (minWidth && res) {
res = ssrWidth >= pxValue(minWidth[1]);
}
if (maxWidth && res) {
res = ssrWidth <= pxValue(maxWidth[1]);
}
return not ? !res : res;
});
return;
}
if (!isSupported.value)
return;
mediaQuery.value = window2.matchMedia(toValue(query));
matches.value = mediaQuery.value.matches;
});
useEventListener(mediaQuery, "change", handler, { passive: true });
return computed(() => matches.value);
}
const _global = typeof globalThis !== "undefined" ? globalThis : typeof window !== "undefined" ? window : typeof global !== "undefined" ? global : typeof self !== "undefined" ? self : {};
const globalKey = "__vueuse_ssr_handlers__";
const handlers = /* @__PURE__ */ getHandlers();
function getHandlers() {
if (!(globalKey in _global))
_global[globalKey] = _global[globalKey] || {};
return _global[globalKey];
}
function getSSRHandler(key, fallback) {
return handlers[key] || fallback;
}
function usePreferredDark(options) {
return useMediaQuery("(prefers-color-scheme: dark)", options);
}
function guessSerializerType(rawInit) {
return rawInit == null ? "any" : rawInit instanceof Set ? "set" : rawInit instanceof Map ? "map" : rawInit instanceof Date ? "date" : typeof rawInit === "boolean" ? "boolean" : typeof rawInit === "string" ? "string" : typeof rawInit === "object" ? "object" : !Number.isNaN(rawInit) ? "number" : "any";
}
const StorageSerializers = {
boolean: {
read: (v) => v === "true",
write: (v) => String(v)
},
object: {
read: (v) => JSON.parse(v),
write: (v) => JSON.stringify(v)
},
number: {
read: (v) => Number.parseFloat(v),
write: (v) => String(v)
},
any: {
read: (v) => v,
write: (v) => String(v)
},
string: {
read: (v) => v,
write: (v) => String(v)
},
map: {
read: (v) => new Map(JSON.parse(v)),
write: (v) => JSON.stringify(Array.from(v.entries()))
},
set: {
read: (v) => new Set(JSON.parse(v)),
write: (v) => JSON.stringify(Array.from(v))
},
date: {
read: (v) => new Date(v),
write: (v) => v.toISOString()
}
};
const customStorageEventName = "vueuse-storage";
function useStorage(key, defaults2, storage, options = {}) {
var _a;
const {
flush = "pre",
deep = true,
listenToStorageChanges = true,
writeDefaults = true,
mergeDefaults = false,
shallow,
window: window2 = defaultWindow,
eventFilter,
onError = (e) => {
console.error(e);
},
initOnMounted
} = options;
const data = (shallow ? shallowRef : ref)(typeof defaults2 === "function" ? defaults2() : defaults2);
const keyComputed = computed(() => toValue(key));
if (!storage) {
try {
storage = getSSRHandler("getDefaultStorage", () => {
var _a2;
return (_a2 = defaultWindow) == null ? void 0 : _a2.localStorage;
})();
} catch (e) {
onError(e);
}
}
if (!storage)
return data;
const rawInit = toValue(defaults2);
const type = guessSerializerType(rawInit);
const serializer = (_a = options.serializer) != null ? _a : StorageSerializers[type];
const { pause: pauseWatch, resume: resumeWatch } = watchPausable(
data,
() => write(data.value),
{ flush, deep, eventFilter }
);
watch(keyComputed, () => update(), { flush });
if (window2 && listenToStorageChanges) {
tryOnMounted(() => {
if (storage instanceof Storage)
useEventListener(window2, "storage", update, { passive: true });
else
useEventListener(window2, customStorageEventName, updateFromCustomEvent);
if (initOnMounted)
update();
});
}
if (!initOnMounted)
update();
function dispatchWriteEvent(oldValue, newValue) {
if (window2) {
const payload = {
key: keyComputed.value,
oldValue,
newValue,
storageArea: storage
};
window2.dispatchEvent(storage instanceof Storage ? new StorageEvent("storage", payload) : new CustomEvent(customStorageEventName, {
detail: payload
}));
}
}
function write(v) {
try {
const oldValue = storage.getItem(keyComputed.value);
if (v == null) {
dispatchWriteEvent(oldValue, null);
storage.removeItem(keyComputed.value);
} else {
const serialized = serializer.write(v);
if (oldValue !== serialized) {
storage.setItem(keyComputed.value, serialized);
dispatchWriteEvent(oldValue, serialized);
}
}
} catch (e) {
onError(e);
}
}
function read(event) {
const rawValue = event ? event.newValue : storage.getItem(keyComputed.value);
if (rawValue == null) {
if (writeDefaults && rawInit != null)
storage.setItem(keyComputed.value, serializer.write(rawInit));
return rawInit;
} else if (!event && mergeDefaults) {
const value = serializer.read(rawValue);
if (typeof mergeDefaults === "function")
return mergeDefaults(value, rawInit);
else if (type === "object" && !Array.isArray(value))
return { ...rawInit, ...value };
return value;
} else if (typeof rawValue !== "string") {
return rawValue;
} else {
return serializer.read(rawValue);
}
}
function update(event) {
if (event && event.storageArea !== storage)
return;
if (event && event.key == null) {
data.value = rawInit;
return;
}
if (event && event.key !== keyComputed.value)
return;
pauseWatch();
try {
if ((event == null ? void 0 : event.newValue) !== serializer.write(data.value))
data.value = read(event);
} catch (e) {
onError(e);
} finally {
if (event)
nextTick(resumeWatch);
else
resumeWatch();
}
}
function updateFromCustomEvent(event) {
update(event.detail);
}
return data;
}
const CSS_DISABLE_TRANS = "*,*::before,*::after{-webkit-transition:none!important;-moz-transition:none!important;-o-transition:none!important;-ms-transition:none!important;transition:none!important}";
function useColorMode(options = {}) {
const {
selector = "html",
attribute = "class",
initialValue = "auto",
window: window2 = defaultWindow,
storage,
storageKey = "vueuse-color-scheme",
listenToStorageChanges = true,
storageRef,
emitAuto,
disableTransition = true
} = options;
const modes = {
auto: "",
light: "light",
dark: "dark",
...options.modes || {}
};
const preferredDark = usePreferredDark({ window: window2 });
const system = computed(() => preferredDark.value ? "dark" : "light");
const store = storageRef || (storageKey == null ? toRef(initialValue) : useStorage(storageKey, initialValue, storage, { window: window2, listenToStorageChanges }));
const state = computed(() => store.value === "auto" ? system.value : store.value);
const updateHTMLAttrs = getSSRHandler(
"updateHTMLAttrs",
(selector2, attribute2, value) => {
const el = typeof selector2 === "string" ? window2 == null ? void 0 : window2.document.querySelector(selector2) : unrefElement(selector2);
if (!el)
return;
const classesToAdd = /* @__PURE__ */ new Set();
const classesToRemove = /* @__PURE__ */ new Set();
let attributeToChange = null;
if (attribute2 === "class") {
const current = value.split(/\s/g);
Object.values(modes).flatMap((i) => (i || "").split(/\s/g)).filter(Boolean).forEach((v) => {
if (current.includes(v))
classesToAdd.add(v);
else
classesToRemove.add(v);
});
} else {
attributeToChange = { key: attribute2, value };
}
if (classesToAdd.size === 0 && classesToRemove.size === 0 && attributeToChange === null)
return;
let style;
if (disableTransition) {
style = window2.document.createElement("style");
style.appendChild(document.createTextNode(CSS_DISABLE_TRANS));
window2.document.head.appendChild(style);
}
for (const c of classesToAdd) {
el.classList.add(c);
}
for (const c of classesToRemove) {
el.classList.remove(c);
}
if (attributeToChange) {
el.setAttribute(attributeToChange.key, attributeToChange.value);
}
if (disableTransition) {
window2.getComputedStyle(style).opacity;
document.head.removeChild(style);
}
}
);
function defaultOnChanged(mode) {
var _a;
updateHTMLAttrs(selector, attribute, (_a = modes[mode]) != null ? _a : mode);
}
function onChanged(mode) {
if (options.onChanged)
options.onChanged(mode, defaultOnChanged);
else
defaultOnChanged(mode);
}
watch(state, onChanged, { flush: "post", immediate: true });
tryOnMounted(() => onChanged(state.value));
const auto = computed({
get() {
return emitAuto ? store.value : state.value;
},
set(v) {
store.value = v;
}
});
return Object.assign(auto, { store, system, state });
}
function useDark(options = {}) {
const {
valueDark = "dark",
valueLight = ""
} = options;
const mode = useColorMode({
...options,
onChanged: (mode2, defaultHandler) => {
var _a;
if (options.onChanged)
(_a = options.onChanged) == null ? void 0 : _a.call(options, mode2 === "dark", defaultHandler, mode2);
else
defaultHandler(mode2);
},
modes: {
dark: valueDark,
light: valueLight
}
});
const system = computed(() => mode.system.value);
const isDark = computed({
get() {
return mode.value === "dark";
},
set(v) {
const modeVal = v ? "dark" : "light";
if (system.value === modeVal)
mode.value = "auto";
else
mode.value = modeVal;
}
});
return isDark;
}
function resolveElement(el) {
if (typeof Window !== "undefined" && el instanceof Window)
return el.document.documentElement;
if (typeof Document !== "undefined" && el instanceof Document)
return el.documentElement;
return el;
}
const ARRIVED_STATE_THRESHOLD_PIXELS = 1;
function useScroll(element, options = {}) {
const {
throttle = 0,
idle = 200,
onStop = noop,
onScroll = noop,
offset = {
left: 0,
right: 0,
top: 0,
bottom: 0
},
eventListenerOptions = {
capture: false,
passive: true
},
behavior = "auto",
window: window2 = defaultWindow,
onError = (e) => {
console.error(e);
}
} = options;
const internalX = /* @__PURE__ */ shallowRef(0);
const internalY = /* @__PURE__ */ shallowRef(0);
const x = computed({
get() {
return internalX.value;
},
set(x2) {
scrollTo2(x2, void 0);
}
});
const y = computed({
get() {
return internalY.value;
},
set(y2) {
scrollTo2(void 0, y2);
}
});
function scrollTo2(_x, _y) {
var _a, _b, _c, _d;
if (!window2)
return;
const _element = toValue(element);
if (!_element)
return;
(_c = _element instanceof Document ? window2.document.body : _element) == null ? void 0 : _c.scrollTo({
top: (_a = toValue(_y)) != null ? _a : y.value,
left: (_b = toValue(_x)) != null ? _b : x.value,
behavior: toValue(behavior)
});
const scrollContainer = ((_d = _element == null ? void 0 : _element.document) == null ? void 0 : _d.documentElement) || (_element == null ? void 0 : _element.documentElement) || _element;
if (x != null)
internalX.value = scrollContainer.scrollLeft;
if (y != null)
internalY.value = scrollContainer.scrollTop;
}
const isScrolling = /* @__PURE__ */ shallowRef(false);
const arrivedState = /* @__PURE__ */ reactive({
left: true,
right: false,
top: true,
bottom: false
});
const directions = /* @__PURE__ */ reactive({
left: false,
right: false,
top: false,
bottom: false
});
const onScrollEnd = (e) => {
if (!isScrolling.value)
return;
isScrolling.value = false;
directions.left = false;
directions.right = false;
directions.top = false;
directions.bottom = false;
onStop(e);
};
const onScrollEndDebounced = useDebounceFn(onScrollEnd, throttle + idle);
const setArrivedState = (target) => {
var _a;
if (!window2)
return;
const el = ((_a = target == null ? void 0 : target.document) == null ? void 0 : _a.documentElement) || (target == null ? void 0 : target.documentElement) || unrefElement(target);
const { display, flexDirection, direction } = getComputedStyle(el);
const directionMultipler = direction === "rtl" ? -1 : 1;
const scrollLeft = el.scrollLeft;
directions.left = scrollLeft < internalX.value;
directions.right = scrollLeft > internalX.value;
const left = Math.abs(scrollLeft * directionMultipler) <= (offset.left || 0);
const right = Math.abs(scrollLeft * directionMultipler) + el.clientWidth >= el.scrollWidth - (offset.right || 0) - ARRIVED_STATE_THRESHOLD_PIXELS;
if (display === "flex" && flexDirection === "row-reverse") {
arrivedState.left = right;
arrivedState.right = left;
} else {
arrivedState.left = left;
arrivedState.right = right;
}
internalX.value = scrollLeft;
let scrollTop = el.scrollTop;
if (target === window2.document && !scrollTop)
scrollTop = window2.document.body.scrollTop;
directions.top = scrollTop < internalY.value;
directions.bottom = scrollTop > internalY.value;
const top = Math.abs(scrollTop) <= (offset.top || 0);
const bottom = Math.abs(scrollTop) + el.clientHeight >= el.scrollHeight - (offset.bottom || 0) - ARRIVED_STATE_THRESHOLD_PIXELS;
if (display === "flex" && flexDirection === "column-reverse") {
arrivedState.top = bottom;
arrivedState.bottom = top;
} else {
arrivedState.top = top;
arrivedState.bottom = bottom;
}
internalY.value = scrollTop;
};
const onScrollHandler = (e) => {
var _a;
if (!window2)
return;
const eventTarget = (_a = e.target.documentElement) != null ? _a : e.target;
setArrivedState(eventTarget);
isScrolling.value = true;
onScrollEndDebounced(e);
onScroll(e);
};
useEventListener(
element,
"scroll",
throttle ? useThrottleFn(onScrollHandler, throttle, true, false) : onScrollHandler,
eventListenerOptions
);
tryOnMounted(() => {
try {
const _element = toValue(element);
if (!_element)
return;
setArrivedState(_element);
} catch (e) {
onError(e);
}
});
useEventListener(
element,
"scrollend",
onScrollEnd,
eventListenerOptions
);
return {
x,
y,
isScrolling,
arrivedState,
directions,
measure() {
const _element = toValue(element);
if (window2 && _element)
setArrivedState(_element);
}
};
}
function useLocalStorage(key, initialValue, options = {}) {
const { window: window2 = defaultWindow } = options;
return useStorage(key, initialValue, window2 == null ? void 0 : window2.localStorage, options);
}
function checkOverflowScroll(ele) {
const style = window.getComputedStyle(ele);
if (style.overflowX === "scroll" || style.overflowY === "scroll" || style.overflowX === "auto" && ele.clientWidth < ele.scrollWidth || style.overflowY === "auto" && ele.clientHeight < ele.scrollHeight) {
return true;
} else {
const parent = ele.parentNode;
if (!parent || parent.tagName === "BODY")
return false;
return checkOverflowScroll(parent);
}
}
function preventDefault(rawEvent) {
const e = rawEvent || window.event;
const _target = e.target;
if (checkOverflowScroll(_target))
return false;
if (e.touches.length > 1)
return true;
if (e.preventDefault)
e.preventDefault();
return false;
}
const elInitialOverflow = /* @__PURE__ */ new WeakMap();
function useScrollLock(element, initialState = false) {
const isLocked = /* @__PURE__ */ shallowRef(initialState);
let stopTouchMoveListener = null;
let initialOverflow = "";
watch(toRef(element), (el) => {
const target = resolveElement(toValue(el));
if (target) {
const ele = target;
if (!elInitialOverflow.get(ele))
elInitialOverflow.set(ele, ele.style.overflow);
if (ele.style.overflow !== "hidden")
initialOverflow = ele.style.overflow;
if (ele.style.overflow === "hidden")
return isLocked.value = true;
if (isLocked.value)
return ele.style.overflow = "hidden";
}
}, {
immediate: true
});
const lock = () => {
const el = resolveElement(toValue(element));
if (!el || isLocked.value)
return;
if (isIOS) {
stopTouchMoveListener = useEventListener(
el,
"touchmove",
(e) => {
preventDefault(e);
},
{ passive: false }
);
}
el.style.overflow = "hidden";
isLocked.value = true;
};
const unlock = () => {
const el = resolveElement(toValue(element));
if (!el || !isLocked.value)
return;
if (isIOS)
stopTouchMoveListener == null ? void 0 : stopTouchMoveListener();
el.style.overflow = initialOverflow;
elInitialOverflow.delete(el);
isLocked.value = false;
};
tryOnScopeDispose(unlock);
return computed({
get() {
return isLocked.value;
},
set(v) {
if (v)
lock();
else unlock();
}
});
}
function useSessionStorage(key, initialValue, options = {}) {
const { window: window2 = defaultWindow } = options;
return useStorage(key, initialValue, window2 == null ? void 0 : window2.sessionStorage, options);
}
function useWindowScroll(options = {}) {
const { window: window2 = defaultWindow, ...rest } = options;
return useScroll(window2, rest);
}
function useWindowSize(options = {}) {
const {
window: window2 = defaultWindow,
initialWidth = Number.POSITIVE_INFINITY,
initialHeight = Number.POSITIVE_INFINITY,
listenOrientation = true,
includeScrollbar = true,
type = "inner"
} = options;
const width = /* @__PURE__ */ shallowRef(initialWidth);
const height = /* @__PURE__ */ shallowRef(initialHeight);
const update = () => {
if (window2) {
if (type === "outer") {
width.value = window2.outerWidth;
height.value = window2.outerHeight;
} else if (type === "visual" && window2.visualViewport) {
const { width: visualViewportWidth, height: visualViewportHeight, scale } = window2.visualViewport;
width.value = Math.round(visualViewportWidth * scale);
height.value = Math.round(visualViewportHeight * scale);
} else if (includeScrollbar) {
width.value = window2.innerWidth;
height.value = window2.innerHeight;
} else {
width.value = window2.document.documentElement.clientWidth;
height.value = window2.document.documentElement.clientHeight;
}
}
};
update();
tryOnMounted(update);
const listenerOptions = { passive: true };
useEventListener("resize", update, listenerOptions);
if (window2 && type === "visual" && window2.visualViewport) {
useEventListener(window2.visualViewport, "resize", update, listenerOptions);
}
if (listenOrientation) {
const matches = useMediaQuery("(orientation: portrait)");
watch(matches, () => update());
}
return { width, height };
}
const __vite_import_meta_env__ = {};
var define_process_env_default = {};
const EXTERNAL_URL_RE = /^(?:[a-z]+:|\/\/)/i;
const APPEARANCE_KEY = "vitepress-theme-appearance";
const HASH_RE = /#.*$/;
const HASH_OR_QUERY_RE = /[?#].*$/;
const INDEX_OR_EXT_RE = /(?:(^|\/)index)?\.(?:md|html)$/;
const inBrowser = typeof document !== "undefined";
const notFoundPageData = {
relativePath: "404.md",
filePath: "",
title: "404",
description: "Not Found",
headers: [],
frontmatter: { sidebar: false, layout: "page" },
lastUpdated: 0,
isNotFound: true
};
function isActive(currentPath, matchPath, asRegex = false) {
if (matchPath === void 0) {
return false;
}
currentPath = normalize(`/${currentPath}`);
if (asRegex) {
return new RegExp(matchPath).test(currentPath);
}
if (normalize(matchPath) !== currentPath) {
return false;
}
const hashMatch = matchPath.match(HASH_RE);
if (hashMatch) {
return (inBrowser ? location.hash : "") === hashMatch[0];
}
return true;
}
function normalize(path) {
return decodeURI(path).replace(HASH_OR_QUERY_RE, "").replace(INDEX_OR_EXT_RE, "$1");
}
function isExternal(path) {
return EXTERNAL_URL_RE.test(path);
}
function getLocaleForPath(siteData2, relativePath) {
return Object.keys((siteData2 == null ? void 0 : siteData2.locales) || {}).find((key) => key !== "root" && !isExternal(key) && isActive(relativePath, `/${key}/`, true)) || "root";
}
function resolveSiteDataByRoute(siteData2, relativePath) {
var _a, _b, _c, _d, _e, _f, _g;
const localeIndex = getLocaleForPath(siteData2, relativePath);
return Object.assign({}, siteData2, {
localeIndex,
lang: ((_a = siteData2.locales[localeIndex]) == null ? void 0 : _a.lang) ?? siteData2.lang,
dir: ((_b = siteData2.locales[localeIndex]) == null ? void 0 : _b.dir) ?? siteData2.dir,
title: ((_c = siteData2.locales[localeIndex]) == null ? void 0 : _c.title) ?? siteData2.title,
titleTemplate: ((_d = siteData2.locales[localeIndex]) == null ? void 0 : _d.titleTemplate) ?? siteData2.titleTemplate,
description: ((_e = siteData2.locales[localeIndex]) == null ? void 0 : _e.description) ?? siteData2.description,
head: mergeHead(siteData2.head, ((_f = siteData2.locales[localeIndex]) == null ? void 0 : _f.head) ?? []),
themeConfig: {
...siteData2.themeConfig,
...(_g = siteData2.locales[localeIndex]) == null ? void 0 : _g.themeConfig
}
});
}
function createTitle(siteData2, pageData) {
const title = pageData.title || siteData2.title;
const template = pageData.titleTemplate ?? siteData2.titleTemplate;
if (typeof template === "string" && template.includes(":title")) {
return template.replace(/:title/g, title);
}
const templateString = createTitleTemplate(siteData2.title, template);
if (title === templateString.slice(3)) {
return title;
}
return `${title}${templateString}`;
}
function createTitleTemplate(siteTitle, template) {
if (template === false) {
return "";
}
if (template === true || template === void 0) {
return ` | ${siteTitle}`;
}
if (siteTitle === template) {
return "";
}
return ` | ${template}`;
}
function hasTag(head, tag) {
const [tagType, tagAttrs] = tag;
if (tagType !== "meta")
return false;
const keyAttr = Object.entries(tagAttrs)[0];
if (keyAttr == null)
return false;
return head.some(([type, attrs]) => type === tagType && attrs[keyAttr[0]] === keyAttr[1]);
}
function mergeHead(prev, curr) {
return [...prev.filter((tagAttrs) => !hasTag(curr, tagAttrs)), ...curr];
}
const INVALID_CHAR_REGEX = /[\u0000-\u001F"#$&*+,:;<=>?[\]^`{|}\u007F]/g;
const DRIVE_LETTER_REGEX = /^[a-z]:/i;
function sanitizeFileName(name) {
const match = DRIVE_LETTER_REGEX.exec(name);
const driveLetter = match ? match[0] : "";
return driveLetter + name.slice(driveLetter.length).replace(INVALID_CHAR_REGEX, "_").replace(/(^|\/)_+(?=[^/]*$)/, "$1");
}
const KNOWN_EXTENSIONS = /* @__PURE__ */ new Set();
function treatAsHtml(filename) {
if (KNOWN_EXTENSIONS.size === 0) {
const extraExts = typeof process === "object" && (define_process_env_default == null ? void 0 : define_process_env_default.VITE_EXTRA_EXTENSIONS) || (__vite_import_meta_env__ == null ? void 0 : __vite_import_meta_env__.VITE_EXTRA_EXTENSIONS) || "";
("3g2,3gp,aac,ai,apng,au,avif,bin,bmp,cer,class,conf,crl,css,csv,dll,doc,eps,epub,exe,gif,gz,ics,ief,jar,jpe,jpeg,jpg,js,json,jsonld,m4a,man,mid,midi,mjs,mov,mp2,mp3,mp4,mpe,mpeg,mpg,mpp,oga,ogg,ogv,ogx,opus,otf,p10,p7c,p7m,p7s,pdf,png,ps,qt,roff,rtf,rtx,ser,svg,t,tif,tiff,tr,ts,tsv,ttf,txt,vtt,wav,weba,webm,webp,woff,woff2,xhtml,xml,yaml,yml,zip" + (extraExts && typeof extraExts === "string" ? "," + extraExts : "")).split(",").forEach((ext2) => KNOWN_EXTENSIONS.add(ext2));
}
const ext = filename.split(".").pop();
return ext == null || !KNOWN_EXTENSIONS.has(ext.toLowerCase());
}
function escapeRegExp(str) {
return str.replace(/[|\\{}()[\]^$+*?.]/g, "\\$&").replace(/-/g, "\\x2d");
}
const dataSymbol = Symbol();
const siteDataRef = /* @__PURE__ */ shallowRef(siteData);
function initData(route) {
const site = computed(() => resolveSiteDataByRoute(siteDataRef.value, route.data.relativePath));
const appearance = site.value.appearance;
const isDark = appearance === "force-dark" ? /* @__PURE__ */ ref(true) : appearance === "force-auto" ? usePreferredDark() : appearance ? useDark({
storageKey: APPEARANCE_KEY,
initialValue: () => appearance === "dark" ? "dark" : "auto",
...typeof appearance === "object" ? appearance : {}
}) : /* @__PURE__ */ ref(false);
const hashRef = /* @__PURE__ */ ref(inBrowser ? location.hash : "");
if (inBrowser) {
window.addEventListener("hashchange", () => {
hashRef.value = location.hash;
});
}
watch(() => route.data, () => {
hashRef.value = inBrowser ? location.hash : "";
});
return {
site,
theme: computed(() => site.value.themeConfig),
page: computed(() => route.data),
frontmatter: computed(() => route.data.frontmatter),
params: computed(() => route.data.params),
lang: computed(() => site.value.lang),
dir: computed(() => route.data.frontmatter.dir || site.value.dir),
localeIndex: computed(() => site.value.localeIndex || "root"),
title: computed(() => createTitle(site.value, route.data)),
description: computed(() => route.data.description || site.value.description),
isDark,
hash: computed(() => hashRef.value)
};
}
function useData() {
const data = inject(dataSymbol);
if (!data) {
throw new Error("vitepress data not properly injected in app");
}
return data;
}
function joinPath(base, path) {
return `${base}${path}`.replace(/\/+/g, "/");
}
function withBase(path) {
return EXTERNAL_URL_RE.test(path) || !path.startsWith("/") ? path : joinPath(siteDataRef.value.base, path);
}
function pathToFile(path) {
let pagePath = path.replace(/\.html$/, "");
pagePath = decodeURIComponent(pagePath);
pagePath = pagePath.replace(/\/$/, "/index");
{
if (inBrowser) {
const base = "/";
pagePath = sanitizeFileName(pagePath.slice(base.length).replace(/\//g, "_") || "index") + ".md";
let pageHash = __VP_HASH_MAP__[pagePath.toLowerCase()];
if (!pageHash) {
pagePath = pagePath.endsWith("_index.md") ? pagePath.slice(0, -9) + ".md" : pagePath.slice(0, -3) + "_index.md";
pageHash = __VP_HASH_MAP__[pagePath.toLowerCase()];
}
if (!pageHash)
return null;
pagePath = `${base}${"assets"}/${pagePath}.${pageHash}.js`;
} else {
pagePath = `./${sanitizeFileName(pagePath.slice(1).replace(/\//g, "_"))}.md.js`;
}
}
return pagePath;
}
let contentUpdatedCallbacks = [];
function onContentUpdated(fn) {
contentUpdatedCallbacks.push(fn);
onUnmounted(() => {
contentUpdatedCallbacks = contentUpdatedCallbacks.filter((f) => f !== fn);
});
}
function getScrollOffset() {
let scrollOffset = siteDataRef.value.scrollOffset;
let offset = 0;
let padding = 24;
if (typeof scrollOffset === "object" && "padding" in scrollOffset) {
padding = scrollOffset.padding;
scrollOffset = scrollOffset.selector;
}
if (typeof scrollOffset === "number") {
offset = scrollOffset;
} else if (typeof scrollOffset === "string") {
offset = tryOffsetSelector(scrollOffset, padding);
} else if (Array.isArray(scrollOffset)) {
for (const selector of scrollOffset) {
const res = tryOffsetSelector(selector, padding);
if (res) {
offset = res;
break;
}
}
}
return offset;
}
function tryOffsetSelector(selector, padding) {
const el = document.querySelector(selector);
if (!el)
return 0;
const bot = el.getBoundingClientRect().bottom;
if (bot < 0)
return 0;
return bot + padding;
}
const RouterSymbol = Symbol();
const fakeHost = "http://a.com";
const getDefaultRoute = () => ({
path: "/",
component: null,
data: notFoundPageData
});
function createRouter(loadPageModule, fallbackComponent) {
const route = /* @__PURE__ */ reactive(getDefaultRoute());
const router = {
route,
go
};
async function go(href = inBrowser ? location.href : "/") {
var _a, _b;
href = normalizeHref(href);
if (await ((_a = router.onBeforeRouteChange) == null ? void 0 : _a.call(router, href)) === false)
return;
if (inBrowser && href !== normalizeHref(location.href)) {
history.replaceState({ scrollPosition: window.scrollY }, "");
history.pushState({}, "", href);
}
await loadPage(href);
await ((_b = router.onAfterRouteChange ?? router.onAfterRouteChanged) == null ? void 0 : _b(href));
}
let latestPendingPath = null;
async function loadPage(href, scrollPosition = 0, isRetry = false) {
var _a, _b;
if (await ((_a = router.onBeforePageLoad) == null ? void 0 : _a.call(router, href)) === false)
return;
const targetLoc = new URL(href, fakeHost);
const pendingPath = latestPendingPath = targetLoc.pathname;
try {
let page = await loadPageModule(pendingPath);
if (!page) {
throw new Error(`Page not found: ${pendingPath}`);
}
if (latestPendingPath === pendingPath) {
latestPendingPath = null;
const { default: comp, __pageData } = page;
if (!comp) {
throw new Error(`Invalid route component: ${comp}`);
}
await ((_b = router.onAfterPageLoad) == null ? void 0 : _b.call(router, href));
route.path = inBrowser ? pendingPath : withBase(pendingPath);
route.component = markRaw(comp);
route.data = true ? markRaw(__pageData) : /* @__PURE__ */ readonly(__pageData);
if (inBrowser) {
nextTick(() => {
let actualPathname = siteDataRef.value.base + __pageData.relativePath.replace(/(?:(^|\/)index)?\.md$/, "$1");
if (!siteDataRef.value.cleanUrls && !actualPathname.endsWith("/")) {
actualPathname += ".html";
}
if (actualPathname !== targetLoc.pathname) {
targetLoc.pathname = actualPathname;
href = actualPathname + targetLoc.search + targetLoc.hash;
history.replaceState({}, "", href);
}
if (targetLoc.hash && !scrollPosition) {
let target = null;
try {
target = document.getElementById(decodeURIComponent(targetLoc.hash).slice(1));
} catch (e) {
console.warn(e);
}
if (target) {
scrollTo(target, targetLoc.hash);
return;
}
}
window.scrollTo(0, scrollPosition);
});
}
}
} catch (err) {
if (!/fetch|Page not found/.test(err.message) && !/^\/404(\.html|\/)?$/.test(href)) {
console.error(err);
}
if (!isRetry) {
try {
const res = await fetch(siteDataRef.value.base + "hashmap.json");
window.__VP_HASH_MAP__ = await res.json();
await loadPage(href, scrollPosition, true);
return;
} catch (e) {
}
}
if (latestPendingPath === pendingPath) {
latestPendingPath = null;
route.path = inBrowser ? pendingPath : withBase(pendingPath);
route.component = fallbackComponent ? markRaw(fallbackComponent) : null;
const relativePath = inBrowser ? pendingPath.replace(/(^|\/)$/, "$1index").replace(/(\.html)?$/, ".md").replace(/^\//, "") : "404.md";
route.data = { ...notFoundPageData, relativePath };
}
}
}
if (inBrowser) {
if (history.state === null) {
history.replaceState({}, "");
}
window.addEventListener("click", (e) => {
if (e.defaultPrevented || !(e.target instanceof Element) || e.target.closest("button") || // temporary fix for docsearch action buttons
e.button !== 0 || e.ctrlKey || e.shiftKey || e.altKey || e.metaKey)
return;
const link2 = e.target.closest("a");
if (!link2 || link2.closest(".vp-raw") || link2.hasAttribute("download") || link2.hasAttribute("target"))
return;
const linkHref = link2.getAttribute("href") ?? (link2 instanceof SVGAElement ? link2.getAttribute("xlink:href") : null);
if (linkHref == null)
return;
const { href, origin, pathname, hash, search } = new URL(linkHref, link2.baseURI);
const currentUrl = new URL(location.href);
if (origin === currentUrl.origin && treatAsHtml(pathname)) {
e.preventDefault();
if (pathname === currentUrl.pathname && search === currentUrl.search) {
if (hash !== currentUrl.hash) {
history.pushState({}, "", href);
window.dispatchEvent(new HashChangeEvent("hashchange", {
oldURL: currentUrl.href,
newURL: href
}));
}
if (hash) {
scrollTo(link2, hash, link2.classList.contains("header-anchor"));
} else {
window.scrollTo(0, 0);
}
} else {
go(href);
}
}
}, { capture: true });
window.addEventListener("popstate", async (e) => {
var _a;
if (e.state === null)
return;
const href = normalizeHref(location.href);
await loadPage(href, e.state && e.state.scrollPosition || 0);
await ((_a = router.onAfterRouteChange ?? router.onAfterRouteChanged) == null ? void 0 : _a(href));
});
window.addEventListener("hashchange", (e) => {
e.preventDefault();
});
}
return router;
}
function useRouter() {
const router = inject(RouterSymbol);
if (!router) {
throw new Error("useRouter() is called without provider.");
}
return router;
}
function useRoute() {
return useRouter().route;
}
function scrollTo(el, hash, smooth = false) {
let target = null;
try {
target = el.classList.contains("header-anchor") ? el : document.getElementById(decodeURIComponent(hash).slice(1));
} catch (e) {
console.warn(e);
}
if (target) {
let scrollToTarget = function() {
if (!smooth || Math.abs(targetTop - window.scrollY) > window.innerHeight)
window.scrollTo(0, targetTop);
else
window.scrollTo({ left: 0, top: targetTop, behavior: "smooth" });
};
const targetPadding = parseInt(window.getComputedStyle(target).paddingTop, 10);
const targetTop = window.scrollY + target.getBoundingClientRect().top - getScrollOffset() + targetPadding;
requestAnimationFrame(scrollToTarget);
}
}
function normalizeHref(href) {
const url = new URL(href, fakeHost);
url.pathname = url.pathname.replace(/(^|\/)index(\.html)?$/, "$1");
if (siteDataRef.value.cleanUrls)
url.pathname = url.pathname.replace(/\.html$/, "");
else if (!url.pathname.endsWith("/") && !url.pathname.endsWith(".html"))
url.pathname += ".html";
return url.pathname + url.search + url.hash;
}
const runCbs = () => contentUpdatedCallbacks.forEach((fn) => fn());
const Content = /* @__PURE__ */ defineComponent({
name: "VitePressContent",
props: {
as: { type: [Object, String], default: "div" }
},
setup(props) {
const route = useRoute();
const { frontmatter, site } = useData();
watch(frontmatter, runCbs, { deep: true, flush: "post" });
return () => h(props.as, site.value.contentProps ?? { style: { position: "relative" } }, [
route.component ? h(route.component, {
onVnodeMounted: runCbs,
onVnodeUpdated: runCbs,
onVnodeUnmounted: runCbs
}) : "404 Page Not Found"
]);
}
});
const _export_sfc = (sfc, props) => {
const target = sfc.__vccOpts || sfc;
for (const [key, val] of props) {
target[key] = val;
}
return target;
};
const scriptRel = "modulepreload";
const assetsURL = function(dep) {
return "/" + dep;
};
const seen = {};
const __vitePreload = function preload(baseModule, deps, importerUrl) {
let promise = Promise.resolve();
if (deps && deps.length > 0) {
document.getElementsByTagName("link");
const cspNonceMeta = document.querySelector(
"meta[property=csp-nonce]"
);
const cspNonce = (cspNonceMeta == null ? void 0 : cspNonceMeta.nonce) || (cspNonceMeta == null ? void 0 : cspNonceMeta.getAttribute("nonce"));
promise = Promise.allSettled(
deps.map((dep) => {
dep = assetsURL(dep);
if (dep in seen) return;
seen[dep] = true;
const isCss = dep.endsWith(".css");
const cssSelector = isCss ? '[rel="stylesheet"]' : "";
if (document.querySelector(`link[href="${dep}"]${cssSelector}`)) {
return;
}
const link2 = document.createElement("link");
link2.rel = isCss ? "stylesheet" : scriptRel;
if (!isCss) {
link2.as = "script";
}
link2.crossOrigin = "";
link2.href = dep;
if (cspNonce) {
link2.setAttribute("nonce", cspNonce);
}
document.head.appendChild(link2);
if (isCss) {
return new Promise((res, rej) => {
link2.addEventListener("load", res);
link2.addEventListener(
"error",
() => rej(new Error(`Unable to preload CSS for ${dep}`))
);
});
}
})
);
}
function handlePreloadError(err) {
const e = new Event("vite:preloadError", {
cancelable: true
});
e.payload = err;
window.dispatchEvent(e);
if (!e.defaultPrevented) {
throw err;
}
}
return promise.then((res) => {
for (const item of res || []) {
if (item.status !== "rejected") continue;
handlePreloadError(item.reason);
}
return baseModule().catch(handlePreloadError);
});
};
const ClientOnly = /* @__PURE__ */ defineComponent({
setup(_, { slots }) {
const show = /* @__PURE__ */ ref(false);
onMounted(() => {
show.value = true;
});
return () => show.value && slots.default ? slots.default() : null;
}
});
function useCodeGroups() {
if (inBrowser) {
window.addEventListener("click", (e) => {
var _a;
const el = e.target;
if (el.matches(".vp-code-group input")) {
const group = (_a = el.parentElement) == null ? void 0 : _a.parentElement;
if (!group)
return;
const i = Array.from(group.querySelectorAll("input")).indexOf(el);
if (i < 0)
return;
const blocks = group.querySelector(".blocks");
if (!blocks)
return;
const current = Array.from(blocks.children).find((child) => child.classList.contains("active"));
if (!current)
return;
const next = blocks.children[i];
if (!next || current === next)
return;
current.classList.remove("active");
next.classList.add("active");
const label = group == null ? void 0 : group.querySelector(`label[for="${el.id}"]`);
label == null ? void 0 : label.scrollIntoView({ block: "nearest" });
}
});
}
}
function useCopyCode() {
if (inBrowser) {
const timeoutIdMap = /* @__PURE__ */ new WeakMap();
window.addEventListener("click", (e) => {
var _a;
const el = e.target;
if (el.matches('div[class*="language-"] > button.copy')) {
const parent = el.parentElement;
const sibling = (_a = el.nextElementSibling) == null ? void 0 : _a.nextElementSibling;
if (!parent || !sibling) {
return;
}
const isShell = /language-(shellscript|shell|bash|sh|zsh)/.test(parent.className);
const ignoredNodes = [".vp-copy-ignore", ".diff.remove"];
const clone = sibling.cloneNode(true);
clone.querySelectorAll(ignoredNodes.join(",")).forEach((node) => node.remove());
let text = clone.textContent || "";
if (isShell) {
text = text.replace(/^ *(\$|>) /gm, "").trim();
}
copyToClipboard(text).then(() => {
el.classList.add("copied");
clearTimeout(timeoutIdMap.get(el));
const timeoutId = setTimeout(() => {
el.classList.remove("copied");
el.blur();
timeoutIdMap.delete(el);
}, 2e3);
timeoutIdMap.set(el, timeoutId);
});
}
});
}
}
async function copyToClipboard(text) {
try {
return navigator.clipboard.writeText(text);
} catch {
const element = document.createElement("textarea");
const previouslyFocusedElement = document.activeElement;
element.value = text;
element.setAttribute("readonly", "");
element.style.contain = "strict";
element.style.position = "absolute";
element.style.left = "-9999px";
element.style.fontSize = "12pt";
const selection = document.getSelection();
const originalRange = selection ? selection.rangeCount > 0 && selection.getRangeAt(0) : null;
document.body.appendChild(element);
element.select();
element.selectionStart = 0;
element.selectionEnd = text.length;
document.execCommand("copy");
document.body.removeChild(element);
if (originalRange) {
selection.removeAllRanges();
selection.addRange(originalRange);
}
if (previouslyFocusedElement) {
previouslyFocusedElement.focus();
}
}
}
function useUpdateHead(route, siteDataByRouteRef) {
let isFirstUpdate = true;
let managedHeadElements = [];
const updateHeadTags = (newTags) => {
if (isFirstUpdate) {
isFirstUpdate = false;
newTags.forEach((tag) => {
const headEl = createHeadElement(tag);
for (const el of document.head.children) {
if (el.isEqualNode(headEl)) {
managedHeadElements.push(el);
return;
}
}
});
return;
}
const newElements = newTags.map(createHeadElement);
managedHeadElements.forEach((oldEl, oldIndex) => {
const matchedIndex = newElements.findIndex((newEl) => newEl == null ? void 0 : newEl.isEqualNode(oldEl ?? null));
if (matchedIndex !== -1) {
delete newElements[matchedIndex];
} else {
oldEl == null ? void 0 : oldEl.remove();
delete managedHeadElements[oldIndex];
}
});
newElements.forEach((el) => el && document.head.appendChild(el));
managedHeadElements = [...managedHeadElements, ...newElements].filter(Boolean);
};
watchEffect(() => {
const pageData = route.data;
const siteData2 = siteDataByRouteRef.value;
const pageDescription = pageData && pageData.description;
const frontmatterHead = pageData && pageData.frontmatter.head || [];
const title = createTitle(siteData2, pageData);
if (title !== document.title) {
document.title = title;
}
const description = pageDescription || siteData2.description;
let metaDescriptionElement = document.querySelector(`meta[name=description]`);
if (metaDescriptionElement) {
if (metaDescriptionElement.getAttribute("content") !== description) {
metaDescriptionElement.setAttribute("content", description);
}
} else {
createHeadElement(["meta", { name: "description", content: description }]);
}
updateHeadTags(mergeHead(siteData2.head, filterOutHeadDescription(frontmatterHead)));
});
}
function createHeadElement([tag, attrs, innerHTML]) {
const el = document.createElement(tag);
for (const key in attrs) {
el.setAttribute(key, attrs[key]);
}
if (innerHTML) {
el.innerHTML = innerHTML;
}
if (tag === "script" && attrs.async == null) {
el.async = false;
}
return el;
}
function isMetaDescription(headConfig) {
return headConfig[0] === "meta" && headConfig[1] && headConfig[1].name === "description";
}
function filterOutHeadDescription(head) {
return head.filter((h2) => !isMetaDescription(h2));
}
const hasFetched = /* @__PURE__ */ new Set();
const createLink = () => document.createElement("link");
const viaDOM = (url) => {
const link2 = createLink();
link2.rel = `prefetch`;
link2.href = url;
document.head.appendChild(link2);
};
const viaXHR = (url) => {
const req = new XMLHttpRequest();
req.open("GET", url, req.withCredentials = true);
req.send();
};
let link;
const doFetch = inBrowser && (link = createLink()) && link.relList && link.relList.supports && link.relList.supports("prefetch") ? viaDOM : viaXHR;
function usePrefetch() {
if (!inBrowser) {
return;
}
if (!window.IntersectionObserver) {
return;
}
let conn;
if ((conn = navigator.connection) && (conn.saveData || /2g/.test(conn.effectiveType))) {
return;
}
const rIC = window.requestIdleCallback || setTimeout;
let observer = null;
const observeLinks = () => {
if (observer) {
observer.disconnect();
}
observer = new IntersectionObserver((entries) => {
entries.forEach((entry) => {
if (entry.isIntersecting) {
const link2 = entry.target;
observer.unobserve(link2);
const { pathname } = link2;
if (!hasFetched.has(pathname)) {
hasFetched.add(pathname);
const pageChunkPath = pathToFile(pathname);
if (pageChunkPath)
doFetch(pageChunkPath);
}
}
});
});
rIC(() => {
document.querySelectorAll("#app a").forEach((link2) => {
const { hostname, pathname } = new URL(link2.href instanceof SVGAnimatedString ? link2.href.animVal : link2.href, link2.baseURI);
const extMatch = pathname.match(/\.\w+$/);
if (extMatch && extMatch[0] !== ".html") {
return;
}
if (
// only prefetch same tab navigation, since a new tab will load
// the lean js chunk instead.
link2.target !== "_blank" && // only prefetch inbound links
hostname === location.hostname
) {
if (pathname !== location.pathname) {
observer.observe(link2);
} else {
hasFetched.add(pathname);
}
}
});
});
};
onMounted(observeLinks);
const route = useRoute();
watch(() => route.path, observeLinks);
onUnmounted(() => {
observer && observer.disconnect();
});
}
export {
onBeforeUnmount as $,
getScrollOffset as A,
renderList as B,
resolveComponent as C,
onContentUpdated as D,
createVNode as E,
Fragment as F,
shallowRef as G,
resolveDynamicComponent as H,
EXTERNAL_URL_RE as I,
useRoute as J,
mergeProps as K,
inject as L,
useWindowSize as M,
normalizeStyle as N,
onKeyStroke as O,
nextTick as P,
useWindowScroll as Q,
inBrowser as R,
readonly as S,
Transition as T,
defineAsyncComponent as U,
__vitePreload as V,
useScrollLock as W,
provide as X,
toHandlers as Y,
withKeys as Z,
_export_sfc as _,
createTextVNode as a,
withModifiers as a0,
useSlots as a1,
useId as a2,
reactive as a3,
onBeforeMount as a4,
toRef$1 as a5,
useRouter as a6,
useUpdateHead as a7,
RouterSymbol as a8,
initData as a9,
markRaw as aA,
createApp as aB,
escapeRegExp as aC,
dataSymbol as aa,
Content as ab,
ClientOnly as ac,
siteDataRef as ad,
createRouter as ae,
pathToFile as af,
createSSRApp as ag,
usePrefetch as ah,
useCopyCode as ai,
useCodeGroups as aj,
h as ak,
createStaticVNode as al,
tryOnScopeDispose as am,
toValue as an,
toArray as ao,
unrefElement as ap,
notNullish as aq,
computedAsync as ar,
useSessionStorage as as,
useLocalStorage as at,
watchDebounced as au,
useEventListener as av,
withDirectives as aw,
vModelText as ax,
isRef as ay,
Teleport as az,
createBlock as b,
createElementBlock as c,
defineComponent as d,
createCommentVNode as e,
treatAsHtml as f,
withBase as g,
computed as h,
isExternal as i,
createBaseVNode as j,
unref as k,
isActive as l,
useMediaQuery as m,
normalizeClass as n,
openBlock as o,
ref as p,
watch as q,
renderSlot as r,
watchEffect as s,
toDisplayString as t,
useData as u,
onMounted as v,
withCtx as w,
onUnmounted as x,
watchPostEffect as y,
onUpdated as z
};